Don't run timers in input-pending-p. Its new check-timers param
[bpt/emacs.git] / lisp / subr.el
1 ;;; subr.el --- basic lisp subroutines for Emacs -*- coding: utf-8; lexical-binding:t -*-
2
3 ;; Copyright (C) 1985-1986, 1992, 1994-1995, 1999-2013 Free Software
4 ;; Foundation, Inc.
5
6 ;; Maintainer: FSF
7 ;; Keywords: internal
8 ;; Package: emacs
9
10 ;; This file is part of GNU Emacs.
11
12 ;; GNU Emacs is free software: you can redistribute it and/or modify
13 ;; it under the terms of the GNU General Public License as published by
14 ;; the Free Software Foundation, either version 3 of the License, or
15 ;; (at your option) any later version.
16
17 ;; GNU Emacs is distributed in the hope that it will be useful,
18 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
19 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 ;; GNU General Public License for more details.
21
22 ;; You should have received a copy of the GNU General Public License
23 ;; along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>.
24
25 ;;; Commentary:
26
27 ;;; Code:
28
29 ;; Beware: while this file has tag `utf-8', before it's compiled, it gets
30 ;; loaded as "raw-text", so non-ASCII chars won't work right during bootstrap.
31
32 (defvar custom-declare-variable-list nil
33 "Record `defcustom' calls made before `custom.el' is loaded to handle them.
34 Each element of this list holds the arguments to one call to `defcustom'.")
35
36 ;; Use this, rather than defcustom, in subr.el and other files loaded
37 ;; before custom.el.
38 (defun custom-declare-variable-early (&rest arguments)
39 (setq custom-declare-variable-list
40 (cons arguments custom-declare-variable-list)))
41
42 (defmacro declare-function (_fn _file &optional _arglist _fileonly)
43 "Tell the byte-compiler that function FN is defined, in FILE.
44 Optional ARGLIST is the argument list used by the function.
45 The FILE argument is not used by the byte-compiler, but by the
46 `check-declare' package, which checks that FILE contains a
47 definition for FN. ARGLIST is used by both the byte-compiler
48 and `check-declare' to check for consistency.
49
50 FILE can be either a Lisp file (in which case the \".el\"
51 extension is optional), or a C file. C files are expanded
52 relative to the Emacs \"src/\" directory. Lisp files are
53 searched for using `locate-library', and if that fails they are
54 expanded relative to the location of the file containing the
55 declaration. A FILE with an \"ext:\" prefix is an external file.
56 `check-declare' will check such files if they are found, and skip
57 them without error if they are not.
58
59 FILEONLY non-nil means that `check-declare' will only check that
60 FILE exists, not that it defines FN. This is intended for
61 function-definitions that `check-declare' does not recognize, e.g.
62 `defstruct'.
63
64 To specify a value for FILEONLY without passing an argument list,
65 set ARGLIST to t. This is necessary because nil means an
66 empty argument list, rather than an unspecified one.
67
68 Note that for the purposes of `check-declare', this statement
69 must be the first non-whitespace on a line.
70
71 For more information, see Info node `(elisp)Declaring Functions'."
72 ;; Does nothing - byte-compile-declare-function does the work.
73 nil)
74
75 \f
76 ;;;; Basic Lisp macros.
77
78 (defalias 'not 'null)
79
80 (defmacro noreturn (form)
81 "Evaluate FORM, expecting it not to return.
82 If FORM does return, signal an error."
83 (declare (debug t))
84 `(prog1 ,form
85 (error "Form marked with `noreturn' did return")))
86
87 (defmacro 1value (form)
88 "Evaluate FORM, expecting a constant return value.
89 This is the global do-nothing version. There is also `testcover-1value'
90 that complains if FORM ever does return differing values."
91 (declare (debug t))
92 form)
93
94 (defmacro def-edebug-spec (symbol spec)
95 "Set the `edebug-form-spec' property of SYMBOL according to SPEC.
96 Both SYMBOL and SPEC are unevaluated. The SPEC can be:
97 0 (instrument no arguments); t (instrument all arguments);
98 a symbol (naming a function with an Edebug specification); or a list.
99 The elements of the list describe the argument types; see
100 Info node `(elisp)Specification List' for details."
101 `(put (quote ,symbol) 'edebug-form-spec (quote ,spec)))
102
103 (defmacro lambda (&rest cdr)
104 "Return a lambda expression.
105 A call of the form (lambda ARGS DOCSTRING INTERACTIVE BODY) is
106 self-quoting; the result of evaluating the lambda expression is the
107 expression itself. The lambda expression may then be treated as a
108 function, i.e., stored as the function value of a symbol, passed to
109 `funcall' or `mapcar', etc.
110
111 ARGS should take the same form as an argument list for a `defun'.
112 DOCSTRING is an optional documentation string.
113 If present, it should describe how to call the function.
114 But documentation strings are usually not useful in nameless functions.
115 INTERACTIVE should be a call to the function `interactive', which see.
116 It may also be omitted.
117 BODY should be a list of Lisp expressions.
118
119 \(fn ARGS [DOCSTRING] [INTERACTIVE] BODY)"
120 (declare (doc-string 2) (indent defun)
121 (debug (&define lambda-list
122 [&optional stringp]
123 [&optional ("interactive" interactive)]
124 def-body)))
125 ;; Note that this definition should not use backquotes; subr.el should not
126 ;; depend on backquote.el.
127 (list 'function (cons 'lambda cdr)))
128
129 (defmacro setq-local (var val)
130 "Set variable VAR to value VAL in current buffer."
131 ;; Can't use backquote here, it's too early in the bootstrap.
132 (list 'set (list 'make-local-variable (list 'quote var)) val))
133
134 (defmacro defvar-local (var val &optional docstring)
135 "Define VAR as a buffer-local variable with default value VAL.
136 Like `defvar' but additionally marks the variable as being automatically
137 buffer-local wherever it is set."
138 (declare (debug defvar) (doc-string 3))
139 ;; Can't use backquote here, it's too early in the bootstrap.
140 (list 'progn (list 'defvar var val docstring)
141 (list 'make-variable-buffer-local (list 'quote var))))
142
143 (defun apply-partially (fun &rest args)
144 "Return a function that is a partial application of FUN to ARGS.
145 ARGS is a list of the first N arguments to pass to FUN.
146 The result is a new function which does the same as FUN, except that
147 the first N arguments are fixed at the values with which this function
148 was called."
149 `(closure (t) (&rest args)
150 (apply ',fun ,@(mapcar (lambda (arg) `',arg) args) args)))
151
152 (defmacro push (newelt place)
153 "Add NEWELT to the list stored in the generalized variable PLACE.
154 This is morally equivalent to (setf PLACE (cons NEWELT PLACE)),
155 except that PLACE is only evaluated once (after NEWELT)."
156 (declare (debug (form gv-place)))
157 (if (symbolp place)
158 ;; Important special case, to avoid triggering GV too early in
159 ;; the bootstrap.
160 (list 'setq place
161 (list 'cons newelt place))
162 (require 'macroexp)
163 (macroexp-let2 macroexp-copyable-p v newelt
164 (gv-letplace (getter setter) place
165 (funcall setter `(cons ,v ,getter))))))
166
167 (defmacro pop (place)
168 "Return the first element of PLACE's value, and remove it from the list.
169 PLACE must be a generalized variable whose value is a list.
170 If the value is nil, `pop' returns nil but does not actually
171 change the list."
172 (declare (debug (gv-place)))
173 ;; We use `car-safe' here instead of `car' because the behavior is the same
174 ;; (if it's not a cons cell, the `cdr' would have signaled an error already),
175 ;; but `car-safe' is total, so the byte-compiler can safely remove it if the
176 ;; result is not used.
177 `(car-safe
178 ,(if (symbolp place)
179 ;; So we can use `pop' in the bootstrap before `gv' can be used.
180 (list 'prog1 place (list 'setq place (list 'cdr place)))
181 (gv-letplace (getter setter) place
182 `(prog1 ,getter ,(funcall setter `(cdr ,getter)))))))
183
184 (defmacro when (cond &rest body)
185 "If COND yields non-nil, do BODY, else return nil.
186 When COND yields non-nil, eval BODY forms sequentially and return
187 value of last one, or nil if there are none.
188
189 \(fn COND BODY...)"
190 (declare (indent 1) (debug t))
191 (list 'if cond (cons 'progn body)))
192
193 (defmacro unless (cond &rest body)
194 "If COND yields nil, do BODY, else return nil.
195 When COND yields nil, eval BODY forms sequentially and return
196 value of last one, or nil if there are none.
197
198 \(fn COND BODY...)"
199 (declare (indent 1) (debug t))
200 (cons 'if (cons cond (cons nil body))))
201
202 (defmacro dolist (spec &rest body)
203 "Loop over a list.
204 Evaluate BODY with VAR bound to each car from LIST, in turn.
205 Then evaluate RESULT to get return value, default nil.
206
207 \(fn (VAR LIST [RESULT]) BODY...)"
208 (declare (indent 1) (debug ((symbolp form &optional form) body)))
209 ;; It would be cleaner to create an uninterned symbol,
210 ;; but that uses a lot more space when many functions in many files
211 ;; use dolist.
212 ;; FIXME: This cost disappears in byte-compiled lexical-binding files.
213 (let ((temp '--dolist-tail--))
214 ;; This is not a reliable test, but it does not matter because both
215 ;; semantics are acceptable, tho one is slightly faster with dynamic
216 ;; scoping and the other is slightly faster (and has cleaner semantics)
217 ;; with lexical scoping.
218 (if lexical-binding
219 `(let ((,temp ,(nth 1 spec)))
220 (while ,temp
221 (let ((,(car spec) (car ,temp)))
222 ,@body
223 (setq ,temp (cdr ,temp))))
224 ,@(cdr (cdr spec)))
225 `(let ((,temp ,(nth 1 spec))
226 ,(car spec))
227 (while ,temp
228 (setq ,(car spec) (car ,temp))
229 ,@body
230 (setq ,temp (cdr ,temp)))
231 ,@(if (cdr (cdr spec))
232 `((setq ,(car spec) nil) ,@(cdr (cdr spec))))))))
233
234 (defmacro dotimes (spec &rest body)
235 "Loop a certain number of times.
236 Evaluate BODY with VAR bound to successive integers running from 0,
237 inclusive, to COUNT, exclusive. Then evaluate RESULT to get
238 the return value (nil if RESULT is omitted).
239
240 \(fn (VAR COUNT [RESULT]) BODY...)"
241 (declare (indent 1) (debug dolist))
242 ;; It would be cleaner to create an uninterned symbol,
243 ;; but that uses a lot more space when many functions in many files
244 ;; use dotimes.
245 ;; FIXME: This cost disappears in byte-compiled lexical-binding files.
246 (let ((temp '--dotimes-limit--)
247 (start 0)
248 (end (nth 1 spec)))
249 ;; This is not a reliable test, but it does not matter because both
250 ;; semantics are acceptable, tho one is slightly faster with dynamic
251 ;; scoping and the other has cleaner semantics.
252 (if lexical-binding
253 (let ((counter '--dotimes-counter--))
254 `(let ((,temp ,end)
255 (,counter ,start))
256 (while (< ,counter ,temp)
257 (let ((,(car spec) ,counter))
258 ,@body)
259 (setq ,counter (1+ ,counter)))
260 ,@(if (cddr spec)
261 ;; FIXME: This let often leads to "unused var" warnings.
262 `((let ((,(car spec) ,counter)) ,@(cddr spec))))))
263 `(let ((,temp ,end)
264 (,(car spec) ,start))
265 (while (< ,(car spec) ,temp)
266 ,@body
267 (setq ,(car spec) (1+ ,(car spec))))
268 ,@(cdr (cdr spec))))))
269
270 (defmacro declare (&rest _specs)
271 "Do not evaluate any arguments, and return nil.
272 If a `declare' form appears as the first form in the body of a
273 `defun' or `defmacro' form, SPECS specifies various additional
274 information about the function or macro; these go into effect
275 during the evaluation of the `defun' or `defmacro' form.
276
277 The possible values of SPECS are specified by
278 `defun-declarations-alist' and `macro-declarations-alist'."
279 ;; FIXME: edebug spec should pay attention to defun-declarations-alist.
280 nil)
281
282 (defmacro ignore-errors (&rest body)
283 "Execute BODY; if an error occurs, return nil.
284 Otherwise, return result of last form in BODY.
285 See also `with-demoted-errors' that does something similar
286 without silencing all errors."
287 (declare (debug t) (indent 0))
288 `(condition-case nil (progn ,@body) (error nil)))
289 \f
290 ;;;; Basic Lisp functions.
291
292 (defun ignore (&rest _ignore)
293 "Do nothing and return nil.
294 This function accepts any number of arguments, but ignores them."
295 (interactive)
296 nil)
297
298 ;; Signal a compile-error if the first arg is missing.
299 (defun error (&rest args)
300 "Signal an error, making error message by passing all args to `format'.
301 In Emacs, the convention is that error messages start with a capital
302 letter but *do not* end with a period. Please follow this convention
303 for the sake of consistency."
304 (declare (advertised-calling-convention (string &rest args) "23.1"))
305 (while t
306 (signal 'error (list (apply 'format args)))))
307
308 (defun user-error (format &rest args)
309 "Signal a pilot error, making error message by passing all args to `format'.
310 In Emacs, the convention is that error messages start with a capital
311 letter but *do not* end with a period. Please follow this convention
312 for the sake of consistency.
313 This is just like `error' except that `user-error's are expected to be the
314 result of an incorrect manipulation on the part of the user, rather than the
315 result of an actual problem."
316 (while t
317 (signal 'user-error (list (apply #'format format args)))))
318
319 (defun define-error (name message &optional parent)
320 "Define NAME as a new error signal.
321 MESSAGE is a string that will be output to the echo area if such an error
322 is signaled without being caught by a `condition-case'.
323 PARENT is either a signal or a list of signals from which it inherits.
324 Defaults to `error'."
325 (unless parent (setq parent 'error))
326 (let ((conditions
327 (if (consp parent)
328 (apply #'nconc
329 (mapcar (lambda (parent)
330 (cons parent
331 (or (get parent 'error-conditions)
332 (error "Unknown signal `%s'" parent))))
333 parent))
334 (cons parent (get parent 'error-conditions)))))
335 (put name 'error-conditions
336 (delete-dups (copy-sequence (cons name conditions))))
337 (when message (put name 'error-message message))))
338
339 ;; We put this here instead of in frame.el so that it's defined even on
340 ;; systems where frame.el isn't loaded.
341 (defun frame-configuration-p (object)
342 "Return non-nil if OBJECT seems to be a frame configuration.
343 Any list whose car is `frame-configuration' is assumed to be a frame
344 configuration."
345 (and (consp object)
346 (eq (car object) 'frame-configuration)))
347 \f
348 ;;;; List functions.
349
350 (defsubst caar (x)
351 "Return the car of the car of X."
352 (car (car x)))
353
354 (defsubst cadr (x)
355 "Return the car of the cdr of X."
356 (car (cdr x)))
357
358 (defsubst cdar (x)
359 "Return the cdr of the car of X."
360 (cdr (car x)))
361
362 (defsubst cddr (x)
363 "Return the cdr of the cdr of X."
364 (cdr (cdr x)))
365
366 (defun last (list &optional n)
367 "Return the last link of LIST. Its car is the last element.
368 If LIST is nil, return nil.
369 If N is non-nil, return the Nth-to-last link of LIST.
370 If N is bigger than the length of LIST, return LIST."
371 (if n
372 (and (>= n 0)
373 (let ((m (safe-length list)))
374 (if (< n m) (nthcdr (- m n) list) list)))
375 (and list
376 (nthcdr (1- (safe-length list)) list))))
377
378 (defun butlast (list &optional n)
379 "Return a copy of LIST with the last N elements removed."
380 (if (and n (<= n 0)) list
381 (nbutlast (copy-sequence list) n)))
382
383 (defun nbutlast (list &optional n)
384 "Modifies LIST to remove the last N elements."
385 (let ((m (length list)))
386 (or n (setq n 1))
387 (and (< n m)
388 (progn
389 (if (> n 0) (setcdr (nthcdr (- (1- m) n) list) nil))
390 list))))
391
392 (defun delete-dups (list)
393 "Destructively remove `equal' duplicates from LIST.
394 Store the result in LIST and return it. LIST must be a proper list.
395 Of several `equal' occurrences of an element in LIST, the first
396 one is kept."
397 (let ((tail list))
398 (while tail
399 (setcdr tail (delete (car tail) (cdr tail)))
400 (setq tail (cdr tail))))
401 list)
402
403 ;; See http://lists.gnu.org/archive/html/emacs-devel/2013-05/msg00204.html
404 (defun delete-consecutive-dups (list &optional circular)
405 "Destructively remove `equal' consecutive duplicates from LIST.
406 First and last elements are considered consecutive if CIRCULAR is
407 non-nil."
408 (let ((tail list) last)
409 (while (consp tail)
410 (if (equal (car tail) (cadr tail))
411 (setcdr tail (cddr tail))
412 (setq last (car tail)
413 tail (cdr tail))))
414 (if (and circular
415 (cdr list)
416 (equal last (car list)))
417 (nbutlast list)
418 list)))
419
420 (defun number-sequence (from &optional to inc)
421 "Return a sequence of numbers from FROM to TO (both inclusive) as a list.
422 INC is the increment used between numbers in the sequence and defaults to 1.
423 So, the Nth element of the list is (+ FROM (* N INC)) where N counts from
424 zero. TO is only included if there is an N for which TO = FROM + N * INC.
425 If TO is nil or numerically equal to FROM, return (FROM).
426 If INC is positive and TO is less than FROM, or INC is negative
427 and TO is larger than FROM, return nil.
428 If INC is zero and TO is neither nil nor numerically equal to
429 FROM, signal an error.
430
431 This function is primarily designed for integer arguments.
432 Nevertheless, FROM, TO and INC can be integer or float. However,
433 floating point arithmetic is inexact. For instance, depending on
434 the machine, it may quite well happen that
435 \(number-sequence 0.4 0.6 0.2) returns the one element list (0.4),
436 whereas (number-sequence 0.4 0.8 0.2) returns a list with three
437 elements. Thus, if some of the arguments are floats and one wants
438 to make sure that TO is included, one may have to explicitly write
439 TO as (+ FROM (* N INC)) or use a variable whose value was
440 computed with this exact expression. Alternatively, you can,
441 of course, also replace TO with a slightly larger value
442 \(or a slightly more negative value if INC is negative)."
443 (if (or (not to) (= from to))
444 (list from)
445 (or inc (setq inc 1))
446 (when (zerop inc) (error "The increment can not be zero"))
447 (let (seq (n 0) (next from))
448 (if (> inc 0)
449 (while (<= next to)
450 (setq seq (cons next seq)
451 n (1+ n)
452 next (+ from (* n inc))))
453 (while (>= next to)
454 (setq seq (cons next seq)
455 n (1+ n)
456 next (+ from (* n inc)))))
457 (nreverse seq))))
458
459 (defun copy-tree (tree &optional vecp)
460 "Make a copy of TREE.
461 If TREE is a cons cell, this recursively copies both its car and its cdr.
462 Contrast to `copy-sequence', which copies only along the cdrs. With second
463 argument VECP, this copies vectors as well as conses."
464 (if (consp tree)
465 (let (result)
466 (while (consp tree)
467 (let ((newcar (car tree)))
468 (if (or (consp (car tree)) (and vecp (vectorp (car tree))))
469 (setq newcar (copy-tree (car tree) vecp)))
470 (push newcar result))
471 (setq tree (cdr tree)))
472 (nconc (nreverse result) tree))
473 (if (and vecp (vectorp tree))
474 (let ((i (length (setq tree (copy-sequence tree)))))
475 (while (>= (setq i (1- i)) 0)
476 (aset tree i (copy-tree (aref tree i) vecp)))
477 tree)
478 tree)))
479 \f
480 ;;;; Various list-search functions.
481
482 (defun assoc-default (key alist &optional test default)
483 "Find object KEY in a pseudo-alist ALIST.
484 ALIST is a list of conses or objects. Each element
485 (or the element's car, if it is a cons) is compared with KEY by
486 calling TEST, with two arguments: (i) the element or its car,
487 and (ii) KEY.
488 If that is non-nil, the element matches; then `assoc-default'
489 returns the element's cdr, if it is a cons, or DEFAULT if the
490 element is not a cons.
491
492 If no element matches, the value is nil.
493 If TEST is omitted or nil, `equal' is used."
494 (let (found (tail alist) value)
495 (while (and tail (not found))
496 (let ((elt (car tail)))
497 (when (funcall (or test 'equal) (if (consp elt) (car elt) elt) key)
498 (setq found t value (if (consp elt) (cdr elt) default))))
499 (setq tail (cdr tail)))
500 value))
501
502 (defun assoc-ignore-case (key alist)
503 "Like `assoc', but ignores differences in case and text representation.
504 KEY must be a string. Upper-case and lower-case letters are treated as equal.
505 Unibyte strings are converted to multibyte for comparison."
506 (declare (obsolete assoc-string "22.1"))
507 (assoc-string key alist t))
508
509 (defun assoc-ignore-representation (key alist)
510 "Like `assoc', but ignores differences in text representation.
511 KEY must be a string.
512 Unibyte strings are converted to multibyte for comparison."
513 (declare (obsolete assoc-string "22.1"))
514 (assoc-string key alist nil))
515
516 (defun member-ignore-case (elt list)
517 "Like `member', but ignore differences in case and text representation.
518 ELT must be a string. Upper-case and lower-case letters are treated as equal.
519 Unibyte strings are converted to multibyte for comparison.
520 Non-strings in LIST are ignored."
521 (while (and list
522 (not (and (stringp (car list))
523 (eq t (compare-strings elt 0 nil (car list) 0 nil t)))))
524 (setq list (cdr list)))
525 list)
526
527 (defun assq-delete-all (key alist)
528 "Delete from ALIST all elements whose car is `eq' to KEY.
529 Return the modified alist.
530 Elements of ALIST that are not conses are ignored."
531 (while (and (consp (car alist))
532 (eq (car (car alist)) key))
533 (setq alist (cdr alist)))
534 (let ((tail alist) tail-cdr)
535 (while (setq tail-cdr (cdr tail))
536 (if (and (consp (car tail-cdr))
537 (eq (car (car tail-cdr)) key))
538 (setcdr tail (cdr tail-cdr))
539 (setq tail tail-cdr))))
540 alist)
541
542 (defun rassq-delete-all (value alist)
543 "Delete from ALIST all elements whose cdr is `eq' to VALUE.
544 Return the modified alist.
545 Elements of ALIST that are not conses are ignored."
546 (while (and (consp (car alist))
547 (eq (cdr (car alist)) value))
548 (setq alist (cdr alist)))
549 (let ((tail alist) tail-cdr)
550 (while (setq tail-cdr (cdr tail))
551 (if (and (consp (car tail-cdr))
552 (eq (cdr (car tail-cdr)) value))
553 (setcdr tail (cdr tail-cdr))
554 (setq tail tail-cdr))))
555 alist)
556
557 (defun remove (elt seq)
558 "Return a copy of SEQ with all occurrences of ELT removed.
559 SEQ must be a list, vector, or string. The comparison is done with `equal'."
560 (if (nlistp seq)
561 ;; If SEQ isn't a list, there's no need to copy SEQ because
562 ;; `delete' will return a new object.
563 (delete elt seq)
564 (delete elt (copy-sequence seq))))
565
566 (defun remq (elt list)
567 "Return LIST with all occurrences of ELT removed.
568 The comparison is done with `eq'. Contrary to `delq', this does not use
569 side-effects, and the argument LIST is not modified."
570 (while (and (eq elt (car list)) (setq list (cdr list))))
571 (if (memq elt list)
572 (delq elt (copy-sequence list))
573 list))
574 \f
575 ;;;; Keymap support.
576
577 (defun kbd (keys)
578 "Convert KEYS to the internal Emacs key representation.
579 KEYS should be a string constant in the format used for
580 saving keyboard macros (see `edmacro-mode')."
581 ;; Don't use a defalias, since the `pure' property is only true for
582 ;; the calling convention of `kbd'.
583 (read-kbd-macro keys))
584 (put 'kbd 'pure t)
585
586 (defun undefined ()
587 "Beep to tell the user this binding is undefined."
588 (interactive)
589 (ding))
590
591 ;; Prevent the \{...} documentation construct
592 ;; from mentioning keys that run this command.
593 (put 'undefined 'suppress-keymap t)
594
595 (defun suppress-keymap (map &optional nodigits)
596 "Make MAP override all normally self-inserting keys to be undefined.
597 Normally, as an exception, digits and minus-sign are set to make prefix args,
598 but optional second arg NODIGITS non-nil treats them like other chars."
599 (define-key map [remap self-insert-command] 'undefined)
600 (or nodigits
601 (let (loop)
602 (define-key map "-" 'negative-argument)
603 ;; Make plain numbers do numeric args.
604 (setq loop ?0)
605 (while (<= loop ?9)
606 (define-key map (char-to-string loop) 'digit-argument)
607 (setq loop (1+ loop))))))
608
609 (defun make-composed-keymap (maps &optional parent)
610 "Construct a new keymap composed of MAPS and inheriting from PARENT.
611 When looking up a key in the returned map, the key is looked in each
612 keymap of MAPS in turn until a binding is found.
613 If no binding is found in MAPS, the lookup continues in PARENT, if non-nil.
614 As always with keymap inheritance, a nil binding in MAPS overrides
615 any corresponding binding in PARENT, but it does not override corresponding
616 bindings in other keymaps of MAPS.
617 MAPS can be a list of keymaps or a single keymap.
618 PARENT if non-nil should be a keymap."
619 `(keymap
620 ,@(if (keymapp maps) (list maps) maps)
621 ,@parent))
622
623 (defun define-key-after (keymap key definition &optional after)
624 "Add binding in KEYMAP for KEY => DEFINITION, right after AFTER's binding.
625 This is like `define-key' except that the binding for KEY is placed
626 just after the binding for the event AFTER, instead of at the beginning
627 of the map. Note that AFTER must be an event type (like KEY), NOT a command
628 \(like DEFINITION).
629
630 If AFTER is t or omitted, the new binding goes at the end of the keymap.
631 AFTER should be a single event type--a symbol or a character, not a sequence.
632
633 Bindings are always added before any inherited map.
634
635 The order of bindings in a keymap only matters when it is used as
636 a menu, so this function is not useful for non-menu keymaps."
637 (unless after (setq after t))
638 (or (keymapp keymap)
639 (signal 'wrong-type-argument (list 'keymapp keymap)))
640 (setq key
641 (if (<= (length key) 1) (aref key 0)
642 (setq keymap (lookup-key keymap
643 (apply 'vector
644 (butlast (mapcar 'identity key)))))
645 (aref key (1- (length key)))))
646 (let ((tail keymap) done inserted)
647 (while (and (not done) tail)
648 ;; Delete any earlier bindings for the same key.
649 (if (eq (car-safe (car (cdr tail))) key)
650 (setcdr tail (cdr (cdr tail))))
651 ;; If we hit an included map, go down that one.
652 (if (keymapp (car tail)) (setq tail (car tail)))
653 ;; When we reach AFTER's binding, insert the new binding after.
654 ;; If we reach an inherited keymap, insert just before that.
655 ;; If we reach the end of this keymap, insert at the end.
656 (if (or (and (eq (car-safe (car tail)) after)
657 (not (eq after t)))
658 (eq (car (cdr tail)) 'keymap)
659 (null (cdr tail)))
660 (progn
661 ;; Stop the scan only if we find a parent keymap.
662 ;; Keep going past the inserted element
663 ;; so we can delete any duplications that come later.
664 (if (eq (car (cdr tail)) 'keymap)
665 (setq done t))
666 ;; Don't insert more than once.
667 (or inserted
668 (setcdr tail (cons (cons key definition) (cdr tail))))
669 (setq inserted t)))
670 (setq tail (cdr tail)))))
671
672 (defun map-keymap-sorted (function keymap)
673 "Implement `map-keymap' with sorting.
674 Don't call this function; it is for internal use only."
675 (let (list)
676 (map-keymap (lambda (a b) (push (cons a b) list))
677 keymap)
678 (setq list (sort list
679 (lambda (a b)
680 (setq a (car a) b (car b))
681 (if (integerp a)
682 (if (integerp b) (< a b)
683 t)
684 (if (integerp b) t
685 ;; string< also accepts symbols.
686 (string< a b))))))
687 (dolist (p list)
688 (funcall function (car p) (cdr p)))))
689
690 (defun keymap--menu-item-binding (val)
691 "Return the binding part of a menu-item."
692 (cond
693 ((not (consp val)) val) ;Not a menu-item.
694 ((eq 'menu-item (car val))
695 (let* ((binding (nth 2 val))
696 (plist (nthcdr 3 val))
697 (filter (plist-get plist :filter)))
698 (if filter (funcall filter binding)
699 binding)))
700 ((and (consp (cdr val)) (stringp (cadr val)))
701 (cddr val))
702 ((stringp (car val))
703 (cdr val))
704 (t val))) ;Not a menu-item either.
705
706 (defun keymap--menu-item-with-binding (item binding)
707 "Build a menu-item like ITEM but with its binding changed to BINDING."
708 (cond
709 ((not (consp item)) binding) ;Not a menu-item.
710 ((eq 'menu-item (car item))
711 (setq item (copy-sequence item))
712 (let ((tail (nthcdr 2 item)))
713 (setcar tail binding)
714 ;; Remove any potential filter.
715 (if (plist-get (cdr tail) :filter)
716 (setcdr tail (plist-put (cdr tail) :filter nil))))
717 item)
718 ((and (consp (cdr item)) (stringp (cadr item)))
719 (cons (car item) (cons (cadr item) binding)))
720 (t (cons (car item) binding))))
721
722 (defun keymap--merge-bindings (val1 val2)
723 "Merge bindings VAL1 and VAL2."
724 (let ((map1 (keymap--menu-item-binding val1))
725 (map2 (keymap--menu-item-binding val2)))
726 (if (not (and (keymapp map1) (keymapp map2)))
727 ;; There's nothing to merge: val1 takes precedence.
728 val1
729 (let ((map (list 'keymap map1 map2))
730 (item (if (keymapp val1) (if (keymapp val2) nil val2) val1)))
731 (keymap--menu-item-with-binding item map)))))
732
733 (defun keymap-canonicalize (map)
734 "Return a simpler equivalent keymap.
735 This resolves inheritance and redefinitions. The returned keymap
736 should behave identically to a copy of KEYMAP w.r.t `lookup-key'
737 and use in active keymaps and menus.
738 Subkeymaps may be modified but are not canonicalized."
739 ;; FIXME: Problem with the difference between a nil binding
740 ;; that hides a binding in an inherited map and a nil binding that's ignored
741 ;; to let some further binding visible. Currently a nil binding hides all.
742 ;; FIXME: we may want to carefully (re)order elements in case they're
743 ;; menu-entries.
744 (let ((bindings ())
745 (ranges ())
746 (prompt (keymap-prompt map)))
747 (while (keymapp map)
748 (setq map (map-keymap ;; -internal
749 (lambda (key item)
750 (if (consp key)
751 ;; Treat char-ranges specially.
752 (push (cons key item) ranges)
753 (push (cons key item) bindings)))
754 map)))
755 ;; Create the new map.
756 (setq map (funcall (if ranges 'make-keymap 'make-sparse-keymap) prompt))
757 (dolist (binding ranges)
758 ;; Treat char-ranges specially. FIXME: need to merge as well.
759 (define-key map (vector (car binding)) (cdr binding)))
760 ;; Process the bindings starting from the end.
761 (dolist (binding (prog1 bindings (setq bindings ())))
762 (let* ((key (car binding))
763 (oldbind (assq key bindings)))
764 (push (if (not oldbind)
765 ;; The normal case: no duplicate bindings.
766 binding
767 ;; This is the second binding for this key.
768 (setq bindings (delq oldbind bindings))
769 (cons key (keymap--merge-bindings (cdr binding)
770 (cdr oldbind))))
771 bindings)))
772 (nconc map bindings)))
773
774 (put 'keyboard-translate-table 'char-table-extra-slots 0)
775
776 (defun keyboard-translate (from to)
777 "Translate character FROM to TO on the current terminal.
778 This function creates a `keyboard-translate-table' if necessary
779 and then modifies one entry in it."
780 (or (char-table-p keyboard-translate-table)
781 (setq keyboard-translate-table
782 (make-char-table 'keyboard-translate-table nil)))
783 (aset keyboard-translate-table from to))
784 \f
785 ;;;; Key binding commands.
786
787 (defun global-set-key (key command)
788 "Give KEY a global binding as COMMAND.
789 COMMAND is the command definition to use; usually it is
790 a symbol naming an interactively-callable function.
791 KEY is a key sequence; noninteractively, it is a string or vector
792 of characters or event types, and non-ASCII characters with codes
793 above 127 (such as ISO Latin-1) can be included if you use a vector.
794
795 Note that if KEY has a local binding in the current buffer,
796 that local binding will continue to shadow any global binding
797 that you make with this function."
798 (interactive "KSet key globally: \nCSet key %s to command: ")
799 (or (vectorp key) (stringp key)
800 (signal 'wrong-type-argument (list 'arrayp key)))
801 (define-key (current-global-map) key command))
802
803 (defun local-set-key (key command)
804 "Give KEY a local binding as COMMAND.
805 COMMAND is the command definition to use; usually it is
806 a symbol naming an interactively-callable function.
807 KEY is a key sequence; noninteractively, it is a string or vector
808 of characters or event types, and non-ASCII characters with codes
809 above 127 (such as ISO Latin-1) can be included if you use a vector.
810
811 The binding goes in the current buffer's local map, which in most
812 cases is shared with all other buffers in the same major mode."
813 (interactive "KSet key locally: \nCSet key %s locally to command: ")
814 (let ((map (current-local-map)))
815 (or map
816 (use-local-map (setq map (make-sparse-keymap))))
817 (or (vectorp key) (stringp key)
818 (signal 'wrong-type-argument (list 'arrayp key)))
819 (define-key map key command)))
820
821 (defun global-unset-key (key)
822 "Remove global binding of KEY.
823 KEY is a string or vector representing a sequence of keystrokes."
824 (interactive "kUnset key globally: ")
825 (global-set-key key nil))
826
827 (defun local-unset-key (key)
828 "Remove local binding of KEY.
829 KEY is a string or vector representing a sequence of keystrokes."
830 (interactive "kUnset key locally: ")
831 (if (current-local-map)
832 (local-set-key key nil))
833 nil)
834 \f
835 ;;;; substitute-key-definition and its subroutines.
836
837 (defvar key-substitution-in-progress nil
838 "Used internally by `substitute-key-definition'.")
839
840 (defun substitute-key-definition (olddef newdef keymap &optional oldmap prefix)
841 "Replace OLDDEF with NEWDEF for any keys in KEYMAP now defined as OLDDEF.
842 In other words, OLDDEF is replaced with NEWDEF where ever it appears.
843 Alternatively, if optional fourth argument OLDMAP is specified, we redefine
844 in KEYMAP as NEWDEF those keys which are defined as OLDDEF in OLDMAP.
845
846 If you don't specify OLDMAP, you can usually get the same results
847 in a cleaner way with command remapping, like this:
848 (define-key KEYMAP [remap OLDDEF] NEWDEF)
849 \n(fn OLDDEF NEWDEF KEYMAP &optional OLDMAP)"
850 ;; Don't document PREFIX in the doc string because we don't want to
851 ;; advertise it. It's meant for recursive calls only. Here's its
852 ;; meaning
853
854 ;; If optional argument PREFIX is specified, it should be a key
855 ;; prefix, a string. Redefined bindings will then be bound to the
856 ;; original key, with PREFIX added at the front.
857 (or prefix (setq prefix ""))
858 (let* ((scan (or oldmap keymap))
859 (prefix1 (vconcat prefix [nil]))
860 (key-substitution-in-progress
861 (cons scan key-substitution-in-progress)))
862 ;; Scan OLDMAP, finding each char or event-symbol that
863 ;; has any definition, and act on it with hack-key.
864 (map-keymap
865 (lambda (char defn)
866 (aset prefix1 (length prefix) char)
867 (substitute-key-definition-key defn olddef newdef prefix1 keymap))
868 scan)))
869
870 (defun substitute-key-definition-key (defn olddef newdef prefix keymap)
871 (let (inner-def skipped menu-item)
872 ;; Find the actual command name within the binding.
873 (if (eq (car-safe defn) 'menu-item)
874 (setq menu-item defn defn (nth 2 defn))
875 ;; Skip past menu-prompt.
876 (while (stringp (car-safe defn))
877 (push (pop defn) skipped))
878 ;; Skip past cached key-equivalence data for menu items.
879 (if (consp (car-safe defn))
880 (setq defn (cdr defn))))
881 (if (or (eq defn olddef)
882 ;; Compare with equal if definition is a key sequence.
883 ;; That is useful for operating on function-key-map.
884 (and (or (stringp defn) (vectorp defn))
885 (equal defn olddef)))
886 (define-key keymap prefix
887 (if menu-item
888 (let ((copy (copy-sequence menu-item)))
889 (setcar (nthcdr 2 copy) newdef)
890 copy)
891 (nconc (nreverse skipped) newdef)))
892 ;; Look past a symbol that names a keymap.
893 (setq inner-def
894 (or (indirect-function defn t) defn))
895 ;; For nested keymaps, we use `inner-def' rather than `defn' so as to
896 ;; avoid autoloading a keymap. This is mostly done to preserve the
897 ;; original non-autoloading behavior of pre-map-keymap times.
898 (if (and (keymapp inner-def)
899 ;; Avoid recursively scanning
900 ;; where KEYMAP does not have a submap.
901 (let ((elt (lookup-key keymap prefix)))
902 (or (null elt) (natnump elt) (keymapp elt)))
903 ;; Avoid recursively rescanning keymap being scanned.
904 (not (memq inner-def key-substitution-in-progress)))
905 ;; If this one isn't being scanned already, scan it now.
906 (substitute-key-definition olddef newdef keymap inner-def prefix)))))
907
908 \f
909 ;;;; The global keymap tree.
910
911 ;; global-map, esc-map, and ctl-x-map have their values set up in
912 ;; keymap.c; we just give them docstrings here.
913
914 (defvar global-map nil
915 "Default global keymap mapping Emacs keyboard input into commands.
916 The value is a keymap which is usually (but not necessarily) Emacs's
917 global map.")
918
919 (defvar esc-map nil
920 "Default keymap for ESC (meta) commands.
921 The normal global definition of the character ESC indirects to this keymap.")
922
923 (defvar ctl-x-map nil
924 "Default keymap for C-x commands.
925 The normal global definition of the character C-x indirects to this keymap.")
926
927 (defvar ctl-x-4-map (make-sparse-keymap)
928 "Keymap for subcommands of C-x 4.")
929 (defalias 'ctl-x-4-prefix ctl-x-4-map)
930 (define-key ctl-x-map "4" 'ctl-x-4-prefix)
931
932 (defvar ctl-x-5-map (make-sparse-keymap)
933 "Keymap for frame commands.")
934 (defalias 'ctl-x-5-prefix ctl-x-5-map)
935 (define-key ctl-x-map "5" 'ctl-x-5-prefix)
936
937 \f
938 ;;;; Event manipulation functions.
939
940 (defconst listify-key-sequence-1 (logior 128 ?\M-\C-@))
941
942 (defun listify-key-sequence (key)
943 "Convert a key sequence to a list of events."
944 (if (vectorp key)
945 (append key nil)
946 (mapcar (function (lambda (c)
947 (if (> c 127)
948 (logxor c listify-key-sequence-1)
949 c)))
950 key)))
951
952 (defun eventp (obj)
953 "True if the argument is an event object."
954 (when obj
955 (or (integerp obj)
956 (and (symbolp obj) obj (not (keywordp obj)))
957 (and (consp obj) (symbolp (car obj))))))
958
959 (defun event-modifiers (event)
960 "Return a list of symbols representing the modifier keys in event EVENT.
961 The elements of the list may include `meta', `control',
962 `shift', `hyper', `super', `alt', `click', `double', `triple', `drag',
963 and `down'.
964 EVENT may be an event or an event type. If EVENT is a symbol
965 that has never been used in an event that has been read as input
966 in the current Emacs session, then this function may fail to include
967 the `click' modifier."
968 (let ((type event))
969 (if (listp type)
970 (setq type (car type)))
971 (if (symbolp type)
972 ;; Don't read event-symbol-elements directly since we're not
973 ;; sure the symbol has already been parsed.
974 (cdr (internal-event-symbol-parse-modifiers type))
975 (let ((list nil)
976 (char (logand type (lognot (logior ?\M-\^@ ?\C-\^@ ?\S-\^@
977 ?\H-\^@ ?\s-\^@ ?\A-\^@)))))
978 (if (not (zerop (logand type ?\M-\^@)))
979 (push 'meta list))
980 (if (or (not (zerop (logand type ?\C-\^@)))
981 (< char 32))
982 (push 'control list))
983 (if (or (not (zerop (logand type ?\S-\^@)))
984 (/= char (downcase char)))
985 (push 'shift list))
986 (or (zerop (logand type ?\H-\^@))
987 (push 'hyper list))
988 (or (zerop (logand type ?\s-\^@))
989 (push 'super list))
990 (or (zerop (logand type ?\A-\^@))
991 (push 'alt list))
992 list))))
993
994 (defun event-basic-type (event)
995 "Return the basic type of the given event (all modifiers removed).
996 The value is a printing character (not upper case) or a symbol.
997 EVENT may be an event or an event type. If EVENT is a symbol
998 that has never been used in an event that has been read as input
999 in the current Emacs session, then this function may return nil."
1000 (if (consp event)
1001 (setq event (car event)))
1002 (if (symbolp event)
1003 (car (get event 'event-symbol-elements))
1004 (let* ((base (logand event (1- ?\A-\^@)))
1005 (uncontrolled (if (< base 32) (logior base 64) base)))
1006 ;; There are some numbers that are invalid characters and
1007 ;; cause `downcase' to get an error.
1008 (condition-case ()
1009 (downcase uncontrolled)
1010 (error uncontrolled)))))
1011
1012 (defsubst mouse-movement-p (object)
1013 "Return non-nil if OBJECT is a mouse movement event."
1014 (eq (car-safe object) 'mouse-movement))
1015
1016 (defun mouse-event-p (object)
1017 "Return non-nil if OBJECT is a mouse click event."
1018 ;; is this really correct? maybe remove mouse-movement?
1019 (memq (event-basic-type object) '(mouse-1 mouse-2 mouse-3 mouse-movement)))
1020
1021 (defun event-start (event)
1022 "Return the starting position of EVENT.
1023 EVENT should be a click, drag, or key press event.
1024 If it is a key press event, the return value has the form
1025 (WINDOW POS (0 . 0) 0)
1026 If it is a click or drag event, it has the form
1027 (WINDOW AREA-OR-POS (X . Y) TIMESTAMP OBJECT POS (COL . ROW)
1028 IMAGE (DX . DY) (WIDTH . HEIGHT))
1029 The `posn-' functions access elements of such lists.
1030 For more information, see Info node `(elisp)Click Events'.
1031
1032 If EVENT is a mouse or key press or a mouse click, this is the
1033 position of the event. If EVENT is a drag, this is the starting
1034 position of the drag."
1035 (if (consp event) (nth 1 event)
1036 (or (posn-at-point)
1037 (list (selected-window) (point) '(0 . 0) 0))))
1038
1039 (defun event-end (event)
1040 "Return the ending location of EVENT.
1041 EVENT should be a click, drag, or key press event.
1042 If EVENT is a key press event, the return value has the form
1043 (WINDOW POS (0 . 0) 0)
1044 If EVENT is a click event, this function is the same as
1045 `event-start'. For click and drag events, the return value has
1046 the form
1047 (WINDOW AREA-OR-POS (X . Y) TIMESTAMP OBJECT POS (COL . ROW)
1048 IMAGE (DX . DY) (WIDTH . HEIGHT))
1049 The `posn-' functions access elements of such lists.
1050 For more information, see Info node `(elisp)Click Events'.
1051
1052 If EVENT is a mouse or key press or a mouse click, this is the
1053 position of the event. If EVENT is a drag, this is the starting
1054 position of the drag."
1055 (if (consp event) (nth (if (consp (nth 2 event)) 2 1) event)
1056 (or (posn-at-point)
1057 (list (selected-window) (point) '(0 . 0) 0))))
1058
1059 (defsubst event-click-count (event)
1060 "Return the multi-click count of EVENT, a click or drag event.
1061 The return value is a positive integer."
1062 (if (and (consp event) (integerp (nth 2 event))) (nth 2 event) 1))
1063 \f
1064 ;;;; Extracting fields of the positions in an event.
1065
1066 (defun posnp (obj)
1067 "Return non-nil if OBJ appears to be a valid `posn' object."
1068 (and (windowp (car-safe obj))
1069 (atom (car-safe (setq obj (cdr obj)))) ;AREA-OR-POS.
1070 (integerp (car-safe (car-safe (setq obj (cdr obj))))) ;XOFFSET.
1071 (integerp (car-safe (cdr obj))))) ;TIMESTAMP.
1072
1073 (defsubst posn-window (position)
1074 "Return the window in POSITION.
1075 POSITION should be a list of the form returned by the `event-start'
1076 and `event-end' functions."
1077 (nth 0 position))
1078
1079 (defsubst posn-area (position)
1080 "Return the window area recorded in POSITION, or nil for the text area.
1081 POSITION should be a list of the form returned by the `event-start'
1082 and `event-end' functions."
1083 (let ((area (if (consp (nth 1 position))
1084 (car (nth 1 position))
1085 (nth 1 position))))
1086 (and (symbolp area) area)))
1087
1088 (defun posn-point (position)
1089 "Return the buffer location in POSITION.
1090 POSITION should be a list of the form returned by the `event-start'
1091 and `event-end' functions.
1092 Returns nil if POSITION does not correspond to any buffer location (e.g.
1093 a click on a scroll bar)."
1094 (or (nth 5 position)
1095 (let ((pt (nth 1 position)))
1096 (or (car-safe pt)
1097 ;; Apparently this can also be `vertical-scroll-bar' (bug#13979).
1098 (if (integerp pt) pt)))))
1099
1100 (defun posn-set-point (position)
1101 "Move point to POSITION.
1102 Select the corresponding window as well."
1103 (if (not (windowp (posn-window position)))
1104 (error "Position not in text area of window"))
1105 (select-window (posn-window position))
1106 (if (numberp (posn-point position))
1107 (goto-char (posn-point position))))
1108
1109 (defsubst posn-x-y (position)
1110 "Return the x and y coordinates in POSITION.
1111 The return value has the form (X . Y), where X and Y are given in
1112 pixels. POSITION should be a list of the form returned by
1113 `event-start' and `event-end'."
1114 (nth 2 position))
1115
1116 (declare-function scroll-bar-scale "scroll-bar" (num-denom whole))
1117
1118 (defun posn-col-row (position)
1119 "Return the nominal column and row in POSITION, measured in characters.
1120 The column and row values are approximations calculated from the x
1121 and y coordinates in POSITION and the frame's default character width
1122 and height.
1123 For a scroll-bar event, the result column is 0, and the row
1124 corresponds to the vertical position of the click in the scroll bar.
1125 POSITION should be a list of the form returned by the `event-start'
1126 and `event-end' functions."
1127 (let* ((pair (posn-x-y position))
1128 (window (posn-window position))
1129 (area (posn-area position)))
1130 (cond
1131 ((null window)
1132 '(0 . 0))
1133 ((eq area 'vertical-scroll-bar)
1134 (cons 0 (scroll-bar-scale pair (1- (window-height window)))))
1135 ((eq area 'horizontal-scroll-bar)
1136 (cons (scroll-bar-scale pair (window-width window)) 0))
1137 (t
1138 (let* ((frame (if (framep window) window (window-frame window)))
1139 ;; FIXME: This should take line-spacing properties on
1140 ;; newlines into account.
1141 (spacing (when (display-graphic-p frame)
1142 (or (with-current-buffer (window-buffer window)
1143 line-spacing)
1144 (frame-parameter frame 'line-spacing)))))
1145 (cond ((floatp spacing)
1146 (setq spacing (truncate (* spacing
1147 (frame-char-height frame)))))
1148 ((null spacing)
1149 (setq spacing 0)))
1150 (cons (/ (car pair) (frame-char-width frame))
1151 (- (/ (cdr pair) (+ (frame-char-height frame) spacing))
1152 (if (null (with-current-buffer (window-buffer window)
1153 header-line-format))
1154 0 1))))))))
1155
1156 (defun posn-actual-col-row (position)
1157 "Return the actual column and row in POSITION, measured in characters.
1158 These are the actual row number in the window and character number in that row.
1159 Return nil if POSITION does not contain the actual position; in that case
1160 `posn-col-row' can be used to get approximate values.
1161 POSITION should be a list of the form returned by the `event-start'
1162 and `event-end' functions."
1163 (nth 6 position))
1164
1165 (defsubst posn-timestamp (position)
1166 "Return the timestamp of POSITION.
1167 POSITION should be a list of the form returned by the `event-start'
1168 and `event-end' functions."
1169 (nth 3 position))
1170
1171 (defun posn-string (position)
1172 "Return the string object of POSITION.
1173 Value is a cons (STRING . STRING-POS), or nil if not a string.
1174 POSITION should be a list of the form returned by the `event-start'
1175 and `event-end' functions."
1176 (let ((x (nth 4 position)))
1177 ;; Apparently this can also be `handle' or `below-handle' (bug#13979).
1178 (when (consp x) x)))
1179
1180 (defsubst posn-image (position)
1181 "Return the image object of POSITION.
1182 Value is a list (image ...), or nil if not an image.
1183 POSITION should be a list of the form returned by the `event-start'
1184 and `event-end' functions."
1185 (nth 7 position))
1186
1187 (defsubst posn-object (position)
1188 "Return the object (image or string) of POSITION.
1189 Value is a list (image ...) for an image object, a cons cell
1190 \(STRING . STRING-POS) for a string object, and nil for a buffer position.
1191 POSITION should be a list of the form returned by the `event-start'
1192 and `event-end' functions."
1193 (or (posn-image position) (posn-string position)))
1194
1195 (defsubst posn-object-x-y (position)
1196 "Return the x and y coordinates relative to the object of POSITION.
1197 The return value has the form (DX . DY), where DX and DY are
1198 given in pixels. POSITION should be a list of the form returned
1199 by `event-start' and `event-end'."
1200 (nth 8 position))
1201
1202 (defsubst posn-object-width-height (position)
1203 "Return the pixel width and height of the object of POSITION.
1204 The return value has the form (WIDTH . HEIGHT). POSITION should
1205 be a list of the form returned by `event-start' and `event-end'."
1206 (nth 9 position))
1207
1208 \f
1209 ;;;; Obsolescent names for functions.
1210
1211 (define-obsolete-function-alias 'window-dot 'window-point "22.1")
1212 (define-obsolete-function-alias 'set-window-dot 'set-window-point "22.1")
1213 (define-obsolete-function-alias 'read-input 'read-string "22.1")
1214 (define-obsolete-function-alias 'show-buffer 'set-window-buffer "22.1")
1215 (define-obsolete-function-alias 'eval-current-buffer 'eval-buffer "22.1")
1216 (define-obsolete-function-alias 'string-to-int 'string-to-number "22.1")
1217
1218 (make-obsolete 'forward-point "use (+ (point) N) instead." "23.1")
1219 (make-obsolete 'buffer-has-markers-at nil "24.3")
1220
1221 (defun insert-string (&rest args)
1222 "Mocklisp-compatibility insert function.
1223 Like the function `insert' except that any argument that is a number
1224 is converted into a string by expressing it in decimal."
1225 (declare (obsolete insert "22.1"))
1226 (dolist (el args)
1227 (insert (if (integerp el) (number-to-string el) el))))
1228
1229 (defun makehash (&optional test)
1230 (declare (obsolete make-hash-table "22.1"))
1231 (make-hash-table :test (or test 'eql)))
1232
1233 (defun log10 (x)
1234 "Return (log X 10), the log base 10 of X."
1235 (declare (obsolete log "24.4"))
1236 (log x 10))
1237
1238 ;; These are used by VM and some old programs
1239 (defalias 'focus-frame 'ignore "")
1240 (make-obsolete 'focus-frame "it does nothing." "22.1")
1241 (defalias 'unfocus-frame 'ignore "")
1242 (make-obsolete 'unfocus-frame "it does nothing." "22.1")
1243 (make-obsolete 'make-variable-frame-local
1244 "explicitly check for a frame-parameter instead." "22.2")
1245 (set-advertised-calling-convention
1246 'all-completions '(string collection &optional predicate) "23.1")
1247 (set-advertised-calling-convention 'unintern '(name obarray) "23.3")
1248 (set-advertised-calling-convention 'redirect-frame-focus '(frame focus-frame) "24.3")
1249 (set-advertised-calling-convention 'decode-char '(ch charset) "21.4")
1250 (set-advertised-calling-convention 'encode-char '(ch charset) "21.4")
1251 \f
1252 ;;;; Obsolescence declarations for variables, and aliases.
1253
1254 ;; Special "default-FOO" variables which contain the default value of
1255 ;; the "FOO" variable are nasty. Their implementation is brittle, and
1256 ;; slows down several unrelated variable operations; furthermore, they
1257 ;; can lead to really odd behavior if you decide to make them
1258 ;; buffer-local.
1259
1260 ;; Not used at all in Emacs, last time I checked:
1261 (make-obsolete-variable 'default-mode-line-format 'mode-line-format "23.2")
1262 (make-obsolete-variable 'default-header-line-format 'header-line-format "23.2")
1263 (make-obsolete-variable 'default-line-spacing 'line-spacing "23.2")
1264 (make-obsolete-variable 'default-abbrev-mode 'abbrev-mode "23.2")
1265 (make-obsolete-variable 'default-ctl-arrow 'ctl-arrow "23.2")
1266 (make-obsolete-variable 'default-truncate-lines 'truncate-lines "23.2")
1267 (make-obsolete-variable 'default-left-margin 'left-margin "23.2")
1268 (make-obsolete-variable 'default-tab-width 'tab-width "23.2")
1269 (make-obsolete-variable 'default-case-fold-search 'case-fold-search "23.2")
1270 (make-obsolete-variable 'default-left-margin-width 'left-margin-width "23.2")
1271 (make-obsolete-variable 'default-right-margin-width 'right-margin-width "23.2")
1272 (make-obsolete-variable 'default-left-fringe-width 'left-fringe-width "23.2")
1273 (make-obsolete-variable 'default-right-fringe-width 'right-fringe-width "23.2")
1274 (make-obsolete-variable 'default-fringes-outside-margins 'fringes-outside-margins "23.2")
1275 (make-obsolete-variable 'default-scroll-bar-width 'scroll-bar-width "23.2")
1276 (make-obsolete-variable 'default-vertical-scroll-bar 'vertical-scroll-bar "23.2")
1277 (make-obsolete-variable 'default-indicate-empty-lines 'indicate-empty-lines "23.2")
1278 (make-obsolete-variable 'default-indicate-buffer-boundaries 'indicate-buffer-boundaries "23.2")
1279 (make-obsolete-variable 'default-fringe-indicator-alist 'fringe-indicator-alist "23.2")
1280 (make-obsolete-variable 'default-fringe-cursor-alist 'fringe-cursor-alist "23.2")
1281 (make-obsolete-variable 'default-scroll-up-aggressively 'scroll-up-aggressively "23.2")
1282 (make-obsolete-variable 'default-scroll-down-aggressively 'scroll-down-aggressively "23.2")
1283 (make-obsolete-variable 'default-fill-column 'fill-column "23.2")
1284 (make-obsolete-variable 'default-cursor-type 'cursor-type "23.2")
1285 (make-obsolete-variable 'default-cursor-in-non-selected-windows 'cursor-in-non-selected-windows "23.2")
1286 (make-obsolete-variable 'default-buffer-file-coding-system 'buffer-file-coding-system "23.2")
1287 (make-obsolete-variable 'default-major-mode 'major-mode "23.2")
1288 (make-obsolete-variable 'default-enable-multibyte-characters
1289 "use enable-multibyte-characters or set-buffer-multibyte instead" "23.2")
1290
1291 (make-obsolete-variable 'define-key-rebound-commands nil "23.2")
1292 (make-obsolete-variable 'redisplay-end-trigger-functions 'jit-lock-register "23.1")
1293 (make-obsolete-variable 'deferred-action-list 'post-command-hook "24.1")
1294 (make-obsolete-variable 'deferred-action-function 'post-command-hook "24.1")
1295 (make-obsolete 'window-redisplay-end-trigger nil "23.1")
1296 (make-obsolete 'set-window-redisplay-end-trigger nil "23.1")
1297
1298 (make-obsolete 'process-filter-multibyte-p nil "23.1")
1299 (make-obsolete 'set-process-filter-multibyte nil "23.1")
1300
1301 ;; Lisp manual only updated in 22.1.
1302 (define-obsolete-variable-alias 'executing-macro 'executing-kbd-macro
1303 "before 19.34")
1304
1305 (define-obsolete-variable-alias 'x-lost-selection-hooks
1306 'x-lost-selection-functions "22.1")
1307 (define-obsolete-variable-alias 'x-sent-selection-hooks
1308 'x-sent-selection-functions "22.1")
1309
1310 ;; This was introduced in 21.4 for pre-unicode unification. That
1311 ;; usage was rendered obsolete in 23.1 which uses Unicode internally.
1312 ;; Other uses are possible, so this variable is not _really_ obsolete,
1313 ;; but Stefan insists to mark it so.
1314 (make-obsolete-variable 'translation-table-for-input nil "23.1")
1315
1316 (defvaralias 'messages-buffer-max-lines 'message-log-max)
1317 \f
1318 ;;;; Alternate names for functions - these are not being phased out.
1319
1320 (defalias 'send-string 'process-send-string)
1321 (defalias 'send-region 'process-send-region)
1322 (defalias 'string= 'string-equal)
1323 (defalias 'string< 'string-lessp)
1324 (defalias 'move-marker 'set-marker)
1325 (defalias 'rplaca 'setcar)
1326 (defalias 'rplacd 'setcdr)
1327 (defalias 'beep 'ding) ;preserve lingual purity
1328 (defalias 'indent-to-column 'indent-to)
1329 (defalias 'backward-delete-char 'delete-backward-char)
1330 (defalias 'search-forward-regexp (symbol-function 're-search-forward))
1331 (defalias 'search-backward-regexp (symbol-function 're-search-backward))
1332 (defalias 'int-to-string 'number-to-string)
1333 (defalias 'store-match-data 'set-match-data)
1334 (defalias 'chmod 'set-file-modes)
1335 (defalias 'mkdir 'make-directory)
1336 ;; These are the XEmacs names:
1337 (defalias 'point-at-eol 'line-end-position)
1338 (defalias 'point-at-bol 'line-beginning-position)
1339
1340 (defalias 'user-original-login-name 'user-login-name)
1341
1342 \f
1343 ;;;; Hook manipulation functions.
1344
1345 (defun add-hook (hook function &optional append local)
1346 "Add to the value of HOOK the function FUNCTION.
1347 FUNCTION is not added if already present.
1348 FUNCTION is added (if necessary) at the beginning of the hook list
1349 unless the optional argument APPEND is non-nil, in which case
1350 FUNCTION is added at the end.
1351
1352 The optional fourth argument, LOCAL, if non-nil, says to modify
1353 the hook's buffer-local value rather than its global value.
1354 This makes the hook buffer-local, and it makes t a member of the
1355 buffer-local value. That acts as a flag to run the hook
1356 functions of the global value as well as in the local value.
1357
1358 HOOK should be a symbol, and FUNCTION may be any valid function. If
1359 HOOK is void, it is first set to nil. If HOOK's value is a single
1360 function, it is changed to a list of functions."
1361 (or (boundp hook) (set hook nil))
1362 (or (default-boundp hook) (set-default hook nil))
1363 (if local (unless (local-variable-if-set-p hook)
1364 (set (make-local-variable hook) (list t)))
1365 ;; Detect the case where make-local-variable was used on a hook
1366 ;; and do what we used to do.
1367 (unless (and (consp (symbol-value hook)) (memq t (symbol-value hook)))
1368 (setq local t)))
1369 (let ((hook-value (if local (symbol-value hook) (default-value hook))))
1370 ;; If the hook value is a single function, turn it into a list.
1371 (when (or (not (listp hook-value)) (functionp hook-value))
1372 (setq hook-value (list hook-value)))
1373 ;; Do the actual addition if necessary
1374 (unless (member function hook-value)
1375 (when (stringp function)
1376 (setq function (purecopy function)))
1377 (setq hook-value
1378 (if append
1379 (append hook-value (list function))
1380 (cons function hook-value))))
1381 ;; Set the actual variable
1382 (if local
1383 (progn
1384 ;; If HOOK isn't a permanent local,
1385 ;; but FUNCTION wants to survive a change of modes,
1386 ;; mark HOOK as partially permanent.
1387 (and (symbolp function)
1388 (get function 'permanent-local-hook)
1389 (not (get hook 'permanent-local))
1390 (put hook 'permanent-local 'permanent-local-hook))
1391 (set hook hook-value))
1392 (set-default hook hook-value))))
1393
1394 (defun remove-hook (hook function &optional local)
1395 "Remove from the value of HOOK the function FUNCTION.
1396 HOOK should be a symbol, and FUNCTION may be any valid function. If
1397 FUNCTION isn't the value of HOOK, or, if FUNCTION doesn't appear in the
1398 list of hooks to run in HOOK, then nothing is done. See `add-hook'.
1399
1400 The optional third argument, LOCAL, if non-nil, says to modify
1401 the hook's buffer-local value rather than its default value."
1402 (or (boundp hook) (set hook nil))
1403 (or (default-boundp hook) (set-default hook nil))
1404 ;; Do nothing if LOCAL is t but this hook has no local binding.
1405 (unless (and local (not (local-variable-p hook)))
1406 ;; Detect the case where make-local-variable was used on a hook
1407 ;; and do what we used to do.
1408 (when (and (local-variable-p hook)
1409 (not (and (consp (symbol-value hook))
1410 (memq t (symbol-value hook)))))
1411 (setq local t))
1412 (let ((hook-value (if local (symbol-value hook) (default-value hook))))
1413 ;; Remove the function, for both the list and the non-list cases.
1414 (if (or (not (listp hook-value)) (eq (car hook-value) 'lambda))
1415 (if (equal hook-value function) (setq hook-value nil))
1416 (setq hook-value (delete function (copy-sequence hook-value))))
1417 ;; If the function is on the global hook, we need to shadow it locally
1418 ;;(when (and local (member function (default-value hook))
1419 ;; (not (member (cons 'not function) hook-value)))
1420 ;; (push (cons 'not function) hook-value))
1421 ;; Set the actual variable
1422 (if (not local)
1423 (set-default hook hook-value)
1424 (if (equal hook-value '(t))
1425 (kill-local-variable hook)
1426 (set hook hook-value))))))
1427
1428 (defmacro letrec (binders &rest body)
1429 "Bind variables according to BINDERS then eval BODY.
1430 The value of the last form in BODY is returned.
1431 Each element of BINDERS is a list (SYMBOL VALUEFORM) which binds
1432 SYMBOL to the value of VALUEFORM.
1433 All symbols are bound before the VALUEFORMs are evalled."
1434 ;; Only useful in lexical-binding mode.
1435 ;; As a special-form, we could implement it more efficiently (and cleanly,
1436 ;; making the vars actually unbound during evaluation of the binders).
1437 (declare (debug let) (indent 1))
1438 `(let ,(mapcar #'car binders)
1439 ,@(mapcar (lambda (binder) `(setq ,@binder)) binders)
1440 ,@body))
1441
1442 (defmacro with-wrapper-hook (hook args &rest body)
1443 "Run BODY, using wrapper functions from HOOK with additional ARGS.
1444 HOOK is an abnormal hook. Each hook function in HOOK \"wraps\"
1445 around the preceding ones, like a set of nested `around' advices.
1446
1447 Each hook function should accept an argument list consisting of a
1448 function FUN, followed by the additional arguments in ARGS.
1449
1450 The first hook function in HOOK is passed a FUN that, if it is called
1451 with arguments ARGS, performs BODY (i.e., the default operation).
1452 The FUN passed to each successive hook function is defined based
1453 on the preceding hook functions; if called with arguments ARGS,
1454 it does what the `with-wrapper-hook' call would do if the
1455 preceding hook functions were the only ones present in HOOK.
1456
1457 Each hook function may call its FUN argument as many times as it wishes,
1458 including never. In that case, such a hook function acts to replace
1459 the default definition altogether, and any preceding hook functions.
1460 Of course, a subsequent hook function may do the same thing.
1461
1462 Each hook function definition is used to construct the FUN passed
1463 to the next hook function, if any. The last (or \"outermost\")
1464 FUN is then called once."
1465 (declare (indent 2) (debug (form sexp body))
1466 (obsolete "use a <foo>-function variable modified by add-function."
1467 "24.4"))
1468 ;; We need those two gensyms because CL's lexical scoping is not available
1469 ;; for function arguments :-(
1470 (let ((funs (make-symbol "funs"))
1471 (global (make-symbol "global"))
1472 (argssym (make-symbol "args"))
1473 (runrestofhook (make-symbol "runrestofhook")))
1474 ;; Since the hook is a wrapper, the loop has to be done via
1475 ;; recursion: a given hook function will call its parameter in order to
1476 ;; continue looping.
1477 `(letrec ((,runrestofhook
1478 (lambda (,funs ,global ,argssym)
1479 ;; `funs' holds the functions left on the hook and `global'
1480 ;; holds the functions left on the global part of the hook
1481 ;; (in case the hook is local).
1482 (if (consp ,funs)
1483 (if (eq t (car ,funs))
1484 (funcall ,runrestofhook
1485 (append ,global (cdr ,funs)) nil ,argssym)
1486 (apply (car ,funs)
1487 (apply-partially
1488 (lambda (,funs ,global &rest ,argssym)
1489 (funcall ,runrestofhook ,funs ,global ,argssym))
1490 (cdr ,funs) ,global)
1491 ,argssym))
1492 ;; Once there are no more functions on the hook, run
1493 ;; the original body.
1494 (apply (lambda ,args ,@body) ,argssym)))))
1495 (funcall ,runrestofhook ,hook
1496 ;; The global part of the hook, if any.
1497 ,(if (symbolp hook)
1498 `(if (local-variable-p ',hook)
1499 (default-value ',hook)))
1500 (list ,@args)))))
1501
1502 (defun add-to-list (list-var element &optional append compare-fn)
1503 "Add ELEMENT to the value of LIST-VAR if it isn't there yet.
1504 The test for presence of ELEMENT is done with `equal',
1505 or with COMPARE-FN if that's non-nil.
1506 If ELEMENT is added, it is added at the beginning of the list,
1507 unless the optional argument APPEND is non-nil, in which case
1508 ELEMENT is added at the end.
1509
1510 The return value is the new value of LIST-VAR.
1511
1512 This is handy to add some elements to configuration variables,
1513 but please do not abuse it in Elisp code, where you are usually better off
1514 using `push' or `cl-pushnew'.
1515
1516 If you want to use `add-to-list' on a variable that is not defined
1517 until a certain package is loaded, you should put the call to `add-to-list'
1518 into a hook function that will be run only after loading the package.
1519 `eval-after-load' provides one way to do this. In some cases
1520 other hooks, such as major mode hooks, can do the job."
1521 (declare
1522 (compiler-macro
1523 (lambda (exp)
1524 ;; FIXME: Something like this could be used for `set' as well.
1525 (if (or (not (eq 'quote (car-safe list-var)))
1526 (special-variable-p (cadr list-var))
1527 (not (macroexp-const-p append)))
1528 exp
1529 (let* ((sym (cadr list-var))
1530 (append (eval append))
1531 (msg (format "`add-to-list' can't use lexical var `%s'; use `push' or `cl-pushnew'"
1532 sym))
1533 ;; Big ugly hack so we only output a warning during
1534 ;; byte-compilation, and so we can use
1535 ;; byte-compile-not-lexical-var-p to silence the warning
1536 ;; when a defvar has been seen but not yet executed.
1537 (warnfun (lambda ()
1538 ;; FIXME: We should also emit a warning for let-bound
1539 ;; variables with dynamic binding.
1540 (when (assq sym byte-compile--lexical-environment)
1541 (byte-compile-log-warning msg t :error))))
1542 (code
1543 (macroexp-let2 macroexp-copyable-p x element
1544 `(unless ,(if compare-fn
1545 (progn
1546 (require 'cl-lib)
1547 `(cl-member ,x ,sym :test ,compare-fn))
1548 ;; For bootstrapping reasons, don't rely on
1549 ;; cl--compiler-macro-member for the base case.
1550 `(member ,x ,sym))
1551 ,(if append
1552 `(setq ,sym (append ,sym (list ,x)))
1553 `(push ,x ,sym))))))
1554 (if (not (macroexp--compiling-p))
1555 code
1556 `(progn
1557 (macroexp--funcall-if-compiled ',warnfun)
1558 ,code)))))))
1559 (if (cond
1560 ((null compare-fn)
1561 (member element (symbol-value list-var)))
1562 ((eq compare-fn 'eq)
1563 (memq element (symbol-value list-var)))
1564 ((eq compare-fn 'eql)
1565 (memql element (symbol-value list-var)))
1566 (t
1567 (let ((lst (symbol-value list-var)))
1568 (while (and lst
1569 (not (funcall compare-fn element (car lst))))
1570 (setq lst (cdr lst)))
1571 lst)))
1572 (symbol-value list-var)
1573 (set list-var
1574 (if append
1575 (append (symbol-value list-var) (list element))
1576 (cons element (symbol-value list-var))))))
1577
1578
1579 (defun add-to-ordered-list (list-var element &optional order)
1580 "Add ELEMENT to the value of LIST-VAR if it isn't there yet.
1581 The test for presence of ELEMENT is done with `eq'.
1582
1583 The resulting list is reordered so that the elements are in the
1584 order given by each element's numeric list order. Elements
1585 without a numeric list order are placed at the end of the list.
1586
1587 If the third optional argument ORDER is a number (integer or
1588 float), set the element's list order to the given value. If
1589 ORDER is nil or omitted, do not change the numeric order of
1590 ELEMENT. If ORDER has any other value, remove the numeric order
1591 of ELEMENT if it has one.
1592
1593 The list order for each element is stored in LIST-VAR's
1594 `list-order' property.
1595
1596 The return value is the new value of LIST-VAR."
1597 (let ((ordering (get list-var 'list-order)))
1598 (unless ordering
1599 (put list-var 'list-order
1600 (setq ordering (make-hash-table :weakness 'key :test 'eq))))
1601 (when order
1602 (puthash element (and (numberp order) order) ordering))
1603 (unless (memq element (symbol-value list-var))
1604 (set list-var (cons element (symbol-value list-var))))
1605 (set list-var (sort (symbol-value list-var)
1606 (lambda (a b)
1607 (let ((oa (gethash a ordering))
1608 (ob (gethash b ordering)))
1609 (if (and oa ob)
1610 (< oa ob)
1611 oa)))))))
1612
1613 (defun add-to-history (history-var newelt &optional maxelt keep-all)
1614 "Add NEWELT to the history list stored in the variable HISTORY-VAR.
1615 Return the new history list.
1616 If MAXELT is non-nil, it specifies the maximum length of the history.
1617 Otherwise, the maximum history length is the value of the `history-length'
1618 property on symbol HISTORY-VAR, if set, or the value of the `history-length'
1619 variable.
1620 Remove duplicates of NEWELT if `history-delete-duplicates' is non-nil.
1621 If optional fourth arg KEEP-ALL is non-nil, add NEWELT to history even
1622 if it is empty or a duplicate."
1623 (unless maxelt
1624 (setq maxelt (or (get history-var 'history-length)
1625 history-length)))
1626 (let ((history (symbol-value history-var))
1627 tail)
1628 (when (and (listp history)
1629 (or keep-all
1630 (not (stringp newelt))
1631 (> (length newelt) 0))
1632 (or keep-all
1633 (not (equal (car history) newelt))))
1634 (if history-delete-duplicates
1635 (setq history (delete newelt history)))
1636 (setq history (cons newelt history))
1637 (when (integerp maxelt)
1638 (if (= 0 maxelt)
1639 (setq history nil)
1640 (setq tail (nthcdr (1- maxelt) history))
1641 (when (consp tail)
1642 (setcdr tail nil)))))
1643 (set history-var history)))
1644
1645 \f
1646 ;;;; Mode hooks.
1647
1648 (defvar delay-mode-hooks nil
1649 "If non-nil, `run-mode-hooks' should delay running the hooks.")
1650 (defvar delayed-mode-hooks nil
1651 "List of delayed mode hooks waiting to be run.")
1652 (make-variable-buffer-local 'delayed-mode-hooks)
1653 (put 'delay-mode-hooks 'permanent-local t)
1654
1655 (defvar change-major-mode-after-body-hook nil
1656 "Normal hook run in major mode functions, before the mode hooks.")
1657
1658 (defvar after-change-major-mode-hook nil
1659 "Normal hook run at the very end of major mode functions.")
1660
1661 (defun run-mode-hooks (&rest hooks)
1662 "Run mode hooks `delayed-mode-hooks' and HOOKS, or delay HOOKS.
1663 If the variable `delay-mode-hooks' is non-nil, does not run any hooks,
1664 just adds the HOOKS to the list `delayed-mode-hooks'.
1665 Otherwise, runs hooks in the sequence: `change-major-mode-after-body-hook',
1666 `delayed-mode-hooks' (in reverse order), HOOKS, and finally
1667 `after-change-major-mode-hook'. Major mode functions should use
1668 this instead of `run-hooks' when running their FOO-mode-hook."
1669 (if delay-mode-hooks
1670 ;; Delaying case.
1671 (dolist (hook hooks)
1672 (push hook delayed-mode-hooks))
1673 ;; Normal case, just run the hook as before plus any delayed hooks.
1674 (setq hooks (nconc (nreverse delayed-mode-hooks) hooks))
1675 (setq delayed-mode-hooks nil)
1676 (apply 'run-hooks (cons 'change-major-mode-after-body-hook hooks))
1677 (run-hooks 'after-change-major-mode-hook)))
1678
1679 (defmacro delay-mode-hooks (&rest body)
1680 "Execute BODY, but delay any `run-mode-hooks'.
1681 These hooks will be executed by the first following call to
1682 `run-mode-hooks' that occurs outside any `delayed-mode-hooks' form.
1683 Only affects hooks run in the current buffer."
1684 (declare (debug t) (indent 0))
1685 `(progn
1686 (make-local-variable 'delay-mode-hooks)
1687 (let ((delay-mode-hooks t))
1688 ,@body)))
1689
1690 ;; PUBLIC: find if the current mode derives from another.
1691
1692 (defun derived-mode-p (&rest modes)
1693 "Non-nil if the current major mode is derived from one of MODES.
1694 Uses the `derived-mode-parent' property of the symbol to trace backwards."
1695 (let ((parent major-mode))
1696 (while (and (not (memq parent modes))
1697 (setq parent (get parent 'derived-mode-parent))))
1698 parent))
1699 \f
1700 ;;;; Minor modes.
1701
1702 ;; If a minor mode is not defined with define-minor-mode,
1703 ;; add it here explicitly.
1704 ;; isearch-mode is deliberately excluded, since you should
1705 ;; not call it yourself.
1706 (defvar minor-mode-list '(auto-save-mode auto-fill-mode abbrev-mode
1707 overwrite-mode view-mode
1708 hs-minor-mode)
1709 "List of all minor mode functions.")
1710
1711 (defun add-minor-mode (toggle name &optional keymap after toggle-fun)
1712 "Register a new minor mode.
1713
1714 This is an XEmacs-compatibility function. Use `define-minor-mode' instead.
1715
1716 TOGGLE is a symbol which is the name of a buffer-local variable that
1717 is toggled on or off to say whether the minor mode is active or not.
1718
1719 NAME specifies what will appear in the mode line when the minor mode
1720 is active. NAME should be either a string starting with a space, or a
1721 symbol whose value is such a string.
1722
1723 Optional KEYMAP is the keymap for the minor mode that will be added
1724 to `minor-mode-map-alist'.
1725
1726 Optional AFTER specifies that TOGGLE should be added after AFTER
1727 in `minor-mode-alist'.
1728
1729 Optional TOGGLE-FUN is an interactive function to toggle the mode.
1730 It defaults to (and should by convention be) TOGGLE.
1731
1732 If TOGGLE has a non-nil `:included' property, an entry for the mode is
1733 included in the mode-line minor mode menu.
1734 If TOGGLE has a `:menu-tag', that is used for the menu item's label."
1735 (unless (memq toggle minor-mode-list)
1736 (push toggle minor-mode-list))
1737
1738 (unless toggle-fun (setq toggle-fun toggle))
1739 (unless (eq toggle-fun toggle)
1740 (put toggle :minor-mode-function toggle-fun))
1741 ;; Add the name to the minor-mode-alist.
1742 (when name
1743 (let ((existing (assq toggle minor-mode-alist)))
1744 (if existing
1745 (setcdr existing (list name))
1746 (let ((tail minor-mode-alist) found)
1747 (while (and tail (not found))
1748 (if (eq after (caar tail))
1749 (setq found tail)
1750 (setq tail (cdr tail))))
1751 (if found
1752 (let ((rest (cdr found)))
1753 (setcdr found nil)
1754 (nconc found (list (list toggle name)) rest))
1755 (push (list toggle name) minor-mode-alist))))))
1756 ;; Add the toggle to the minor-modes menu if requested.
1757 (when (get toggle :included)
1758 (define-key mode-line-mode-menu
1759 (vector toggle)
1760 (list 'menu-item
1761 (concat
1762 (or (get toggle :menu-tag)
1763 (if (stringp name) name (symbol-name toggle)))
1764 (let ((mode-name (if (symbolp name) (symbol-value name))))
1765 (if (and (stringp mode-name) (string-match "[^ ]+" mode-name))
1766 (concat " (" (match-string 0 mode-name) ")"))))
1767 toggle-fun
1768 :button (cons :toggle toggle))))
1769
1770 ;; Add the map to the minor-mode-map-alist.
1771 (when keymap
1772 (let ((existing (assq toggle minor-mode-map-alist)))
1773 (if existing
1774 (setcdr existing keymap)
1775 (let ((tail minor-mode-map-alist) found)
1776 (while (and tail (not found))
1777 (if (eq after (caar tail))
1778 (setq found tail)
1779 (setq tail (cdr tail))))
1780 (if found
1781 (let ((rest (cdr found)))
1782 (setcdr found nil)
1783 (nconc found (list (cons toggle keymap)) rest))
1784 (push (cons toggle keymap) minor-mode-map-alist)))))))
1785 \f
1786 ;;;; Load history
1787
1788 (defsubst autoloadp (object)
1789 "Non-nil if OBJECT is an autoload."
1790 (eq 'autoload (car-safe object)))
1791
1792 ;; (defun autoload-type (object)
1793 ;; "Returns the type of OBJECT or `function' or `command' if the type is nil.
1794 ;; OBJECT should be an autoload object."
1795 ;; (when (autoloadp object)
1796 ;; (let ((type (nth 3 object)))
1797 ;; (cond ((null type) (if (nth 2 object) 'command 'function))
1798 ;; ((eq 'keymap t) 'macro)
1799 ;; (type)))))
1800
1801 ;; (defalias 'autoload-file #'cadr
1802 ;; "Return the name of the file from which AUTOLOAD will be loaded.
1803 ;; \n\(fn AUTOLOAD)")
1804
1805 (defun symbol-file (symbol &optional type)
1806 "Return the name of the file that defined SYMBOL.
1807 The value is normally an absolute file name. It can also be nil,
1808 if the definition is not associated with any file. If SYMBOL
1809 specifies an autoloaded function, the value can be a relative
1810 file name without extension.
1811
1812 If TYPE is nil, then any kind of definition is acceptable. If
1813 TYPE is `defun', `defvar', or `defface', that specifies function
1814 definition, variable definition, or face definition only."
1815 (if (and (or (null type) (eq type 'defun))
1816 (symbolp symbol) (fboundp symbol)
1817 (autoloadp (symbol-function symbol)))
1818 (nth 1 (symbol-function symbol))
1819 (let ((files load-history)
1820 file)
1821 (while files
1822 (if (if type
1823 (if (eq type 'defvar)
1824 ;; Variables are present just as their names.
1825 (member symbol (cdr (car files)))
1826 ;; Other types are represented as (TYPE . NAME).
1827 (member (cons type symbol) (cdr (car files))))
1828 ;; We accept all types, so look for variable def
1829 ;; and then for any other kind.
1830 (or (member symbol (cdr (car files)))
1831 (rassq symbol (cdr (car files)))))
1832 (setq file (car (car files)) files nil))
1833 (setq files (cdr files)))
1834 file)))
1835
1836 (defun locate-library (library &optional nosuffix path interactive-call)
1837 "Show the precise file name of Emacs library LIBRARY.
1838 LIBRARY should be a relative file name of the library, a string.
1839 It can omit the suffix (a.k.a. file-name extension) if NOSUFFIX is
1840 nil (which is the default, see below).
1841 This command searches the directories in `load-path' like `\\[load-library]'
1842 to find the file that `\\[load-library] RET LIBRARY RET' would load.
1843 Optional second arg NOSUFFIX non-nil means don't add suffixes `load-suffixes'
1844 to the specified name LIBRARY.
1845
1846 If the optional third arg PATH is specified, that list of directories
1847 is used instead of `load-path'.
1848
1849 When called from a program, the file name is normally returned as a
1850 string. When run interactively, the argument INTERACTIVE-CALL is t,
1851 and the file name is displayed in the echo area."
1852 (interactive (list (completing-read "Locate library: "
1853 (apply-partially
1854 'locate-file-completion-table
1855 load-path (get-load-suffixes)))
1856 nil nil
1857 t))
1858 (let ((file (locate-file library
1859 (or path load-path)
1860 (append (unless nosuffix (get-load-suffixes))
1861 load-file-rep-suffixes))))
1862 (if interactive-call
1863 (if file
1864 (message "Library is file %s" (abbreviate-file-name file))
1865 (message "No library %s in search path" library)))
1866 file))
1867
1868 \f
1869 ;;;; Process stuff.
1870
1871 (defun process-lines (program &rest args)
1872 "Execute PROGRAM with ARGS, returning its output as a list of lines.
1873 Signal an error if the program returns with a non-zero exit status."
1874 (with-temp-buffer
1875 (let ((status (apply 'call-process program nil (current-buffer) nil args)))
1876 (unless (eq status 0)
1877 (error "%s exited with status %s" program status))
1878 (goto-char (point-min))
1879 (let (lines)
1880 (while (not (eobp))
1881 (setq lines (cons (buffer-substring-no-properties
1882 (line-beginning-position)
1883 (line-end-position))
1884 lines))
1885 (forward-line 1))
1886 (nreverse lines)))))
1887
1888 (defun process-live-p (process)
1889 "Returns non-nil if PROCESS is alive.
1890 A process is considered alive if its status is `run', `open',
1891 `listen', `connect' or `stop'."
1892 (memq (process-status process)
1893 '(run open listen connect stop)))
1894
1895 ;; compatibility
1896
1897 (make-obsolete
1898 'process-kill-without-query
1899 "use `process-query-on-exit-flag' or `set-process-query-on-exit-flag'."
1900 "22.1")
1901 (defun process-kill-without-query (process &optional _flag)
1902 "Say no query needed if PROCESS is running when Emacs is exited.
1903 Optional second argument if non-nil says to require a query.
1904 Value is t if a query was formerly required."
1905 (let ((old (process-query-on-exit-flag process)))
1906 (set-process-query-on-exit-flag process nil)
1907 old))
1908
1909 (defun process-kill-buffer-query-function ()
1910 "Ask before killing a buffer that has a running process."
1911 (let ((process (get-buffer-process (current-buffer))))
1912 (or (not process)
1913 (not (memq (process-status process) '(run stop open listen)))
1914 (not (process-query-on-exit-flag process))
1915 (yes-or-no-p
1916 (format "Buffer %S has a running process; kill it? "
1917 (buffer-name (current-buffer)))))))
1918
1919 (add-hook 'kill-buffer-query-functions 'process-kill-buffer-query-function)
1920
1921 ;; process plist management
1922
1923 (defun process-get (process propname)
1924 "Return the value of PROCESS' PROPNAME property.
1925 This is the last value stored with `(process-put PROCESS PROPNAME VALUE)'."
1926 (plist-get (process-plist process) propname))
1927
1928 (defun process-put (process propname value)
1929 "Change PROCESS' PROPNAME property to VALUE.
1930 It can be retrieved with `(process-get PROCESS PROPNAME)'."
1931 (set-process-plist process
1932 (plist-put (process-plist process) propname value)))
1933
1934 \f
1935 ;;;; Input and display facilities.
1936
1937 (defvar read-quoted-char-radix 8
1938 "Radix for \\[quoted-insert] and other uses of `read-quoted-char'.
1939 Legitimate radix values are 8, 10 and 16.")
1940
1941 (custom-declare-variable-early
1942 'read-quoted-char-radix 8
1943 "*Radix for \\[quoted-insert] and other uses of `read-quoted-char'.
1944 Legitimate radix values are 8, 10 and 16."
1945 :type '(choice (const 8) (const 10) (const 16))
1946 :group 'editing-basics)
1947
1948 (defconst read-key-empty-map (make-sparse-keymap))
1949
1950 (defvar read-key-delay 0.01) ;Fast enough for 100Hz repeat rate, hopefully.
1951
1952 (defun read-key (&optional prompt)
1953 "Read a key from the keyboard.
1954 Contrary to `read-event' this will not return a raw event but instead will
1955 obey the input decoding and translations usually done by `read-key-sequence'.
1956 So escape sequences and keyboard encoding are taken into account.
1957 When there's an ambiguity because the key looks like the prefix of
1958 some sort of escape sequence, the ambiguity is resolved via `read-key-delay'."
1959 ;; This overriding-terminal-local-map binding also happens to
1960 ;; disable quail's input methods, so although read-key-sequence
1961 ;; always inherits the input method, in practice read-key does not
1962 ;; inherit the input method (at least not if it's based on quail).
1963 (let ((overriding-terminal-local-map nil)
1964 (overriding-local-map read-key-empty-map)
1965 (echo-keystrokes 0)
1966 (old-global-map (current-global-map))
1967 (timer (run-with-idle-timer
1968 ;; Wait long enough that Emacs has the time to receive and
1969 ;; process all the raw events associated with the single-key.
1970 ;; But don't wait too long, or the user may find the delay
1971 ;; annoying (or keep hitting more keys which may then get
1972 ;; lost or misinterpreted).
1973 ;; This is only relevant for keys which Emacs perceives as
1974 ;; "prefixes", such as C-x (because of the C-x 8 map in
1975 ;; key-translate-table and the C-x @ map in function-key-map)
1976 ;; or ESC (because of terminal escape sequences in
1977 ;; input-decode-map).
1978 read-key-delay t
1979 (lambda ()
1980 (let ((keys (this-command-keys-vector)))
1981 (unless (zerop (length keys))
1982 ;; `keys' is non-empty, so the user has hit at least
1983 ;; one key; there's no point waiting any longer, even
1984 ;; though read-key-sequence thinks we should wait
1985 ;; for more input to decide how to interpret the
1986 ;; current input.
1987 (throw 'read-key keys)))))))
1988 (unwind-protect
1989 (progn
1990 (use-global-map
1991 (let ((map (make-sparse-keymap)))
1992 ;; Don't hide the menu-bar and tool-bar entries.
1993 (define-key map [menu-bar] (lookup-key global-map [menu-bar]))
1994 (define-key map [tool-bar]
1995 ;; This hack avoids evaluating the :filter (Bug#9922).
1996 (or (cdr (assq 'tool-bar global-map))
1997 (lookup-key global-map [tool-bar])))
1998 map))
1999 (aref (catch 'read-key (read-key-sequence-vector prompt nil t)) 0))
2000 (cancel-timer timer)
2001 (use-global-map old-global-map))))
2002
2003 (defun read-quoted-char (&optional prompt)
2004 "Like `read-char', but do not allow quitting.
2005 Also, if the first character read is an octal digit,
2006 we read any number of octal digits and return the
2007 specified character code. Any nondigit terminates the sequence.
2008 If the terminator is RET, it is discarded;
2009 any other terminator is used itself as input.
2010
2011 The optional argument PROMPT specifies a string to use to prompt the user.
2012 The variable `read-quoted-char-radix' controls which radix to use
2013 for numeric input."
2014 (let ((message-log-max nil) done (first t) (code 0) translated)
2015 (while (not done)
2016 (let ((inhibit-quit first)
2017 ;; Don't let C-h get the help message--only help function keys.
2018 (help-char nil)
2019 (help-form
2020 "Type the special character you want to use,
2021 or the octal character code.
2022 RET terminates the character code and is discarded;
2023 any other non-digit terminates the character code and is then used as input."))
2024 (setq translated (read-key (and prompt (format "%s-" prompt))))
2025 (if inhibit-quit (setq quit-flag nil)))
2026 (if (integerp translated)
2027 (setq translated (char-resolve-modifiers translated)))
2028 (cond ((null translated))
2029 ((not (integerp translated))
2030 (setq unread-command-events
2031 (listify-key-sequence (this-single-command-raw-keys))
2032 done t))
2033 ((/= (logand translated ?\M-\^@) 0)
2034 ;; Turn a meta-character into a character with the 0200 bit set.
2035 (setq code (logior (logand translated (lognot ?\M-\^@)) 128)
2036 done t))
2037 ((and (<= ?0 translated)
2038 (< translated (+ ?0 (min 10 read-quoted-char-radix))))
2039 (setq code (+ (* code read-quoted-char-radix) (- translated ?0)))
2040 (and prompt (setq prompt (message "%s %c" prompt translated))))
2041 ((and (<= ?a (downcase translated))
2042 (< (downcase translated)
2043 (+ ?a -10 (min 36 read-quoted-char-radix))))
2044 (setq code (+ (* code read-quoted-char-radix)
2045 (+ 10 (- (downcase translated) ?a))))
2046 (and prompt (setq prompt (message "%s %c" prompt translated))))
2047 ((and (not first) (eq translated ?\C-m))
2048 (setq done t))
2049 ((not first)
2050 (setq unread-command-events
2051 (listify-key-sequence (this-single-command-raw-keys))
2052 done t))
2053 (t (setq code translated
2054 done t)))
2055 (setq first nil))
2056 code))
2057
2058 (defvar read-passwd-map
2059 ;; BEWARE: `defconst' would purecopy it, breaking the sharing with
2060 ;; minibuffer-local-map along the way!
2061 (let ((map (make-sparse-keymap)))
2062 (set-keymap-parent map minibuffer-local-map)
2063 (define-key map "\C-u" #'delete-minibuffer-contents) ;bug#12570
2064 map)
2065 "Keymap used while reading passwords.")
2066
2067 (defun read-passwd (prompt &optional confirm default)
2068 "Read a password, prompting with PROMPT, and return it.
2069 If optional CONFIRM is non-nil, read the password twice to make sure.
2070 Optional DEFAULT is a default password to use instead of empty input.
2071
2072 This function echoes `.' for each character that the user types.
2073
2074 Once the caller uses the password, it can erase the password
2075 by doing (clear-string STRING)."
2076 (if confirm
2077 (let (success)
2078 (while (not success)
2079 (let ((first (read-passwd prompt nil default))
2080 (second (read-passwd "Confirm password: " nil default)))
2081 (if (equal first second)
2082 (progn
2083 (and (arrayp second) (clear-string second))
2084 (setq success first))
2085 (and (arrayp first) (clear-string first))
2086 (and (arrayp second) (clear-string second))
2087 (message "Password not repeated accurately; please start over")
2088 (sit-for 1))))
2089 success)
2090 (let ((hide-chars-fun
2091 (lambda (beg end _len)
2092 (clear-this-command-keys)
2093 (setq beg (min end (max (minibuffer-prompt-end)
2094 beg)))
2095 (dotimes (i (- end beg))
2096 (put-text-property (+ i beg) (+ 1 i beg)
2097 'display (string ?.)))))
2098 minibuf)
2099 (minibuffer-with-setup-hook
2100 (lambda ()
2101 (setq minibuf (current-buffer))
2102 ;; Turn off electricity.
2103 (setq-local post-self-insert-hook nil)
2104 (setq-local buffer-undo-list t)
2105 (setq-local select-active-regions nil)
2106 (use-local-map read-passwd-map)
2107 (setq-local inhibit-modification-hooks nil) ;bug#15501.
2108 (add-hook 'after-change-functions hide-chars-fun nil 'local))
2109 (unwind-protect
2110 (let ((enable-recursive-minibuffers t))
2111 (read-string prompt nil t default)) ; t = "no history"
2112 (when (buffer-live-p minibuf)
2113 (with-current-buffer minibuf
2114 ;; Not sure why but it seems that there might be cases where the
2115 ;; minibuffer is not always properly reset later on, so undo
2116 ;; whatever we've done here (bug#11392).
2117 (remove-hook 'after-change-functions hide-chars-fun 'local)
2118 (kill-local-variable 'post-self-insert-hook)
2119 ;; And of course, don't keep the sensitive data around.
2120 (erase-buffer))))))))
2121
2122 (defun read-number (prompt &optional default)
2123 "Read a numeric value in the minibuffer, prompting with PROMPT.
2124 DEFAULT specifies a default value to return if the user just types RET.
2125 The value of DEFAULT is inserted into PROMPT.
2126 This function is used by the `interactive' code letter `n'."
2127 (let ((n nil)
2128 (default1 (if (consp default) (car default) default)))
2129 (when default1
2130 (setq prompt
2131 (if (string-match "\\(\\):[ \t]*\\'" prompt)
2132 (replace-match (format " (default %s)" default1) t t prompt 1)
2133 (replace-regexp-in-string "[ \t]*\\'"
2134 (format " (default %s) " default1)
2135 prompt t t))))
2136 (while
2137 (progn
2138 (let ((str (read-from-minibuffer
2139 prompt nil nil nil nil
2140 (when default
2141 (if (consp default)
2142 (mapcar 'number-to-string (delq nil default))
2143 (number-to-string default))))))
2144 (condition-case nil
2145 (setq n (cond
2146 ((zerop (length str)) default1)
2147 ((stringp str) (read str))))
2148 (error nil)))
2149 (unless (numberp n)
2150 (message "Please enter a number.")
2151 (sit-for 1)
2152 t)))
2153 n))
2154
2155 (defun read-char-choice (prompt chars &optional inhibit-keyboard-quit)
2156 "Read and return one of CHARS, prompting for PROMPT.
2157 Any input that is not one of CHARS is ignored.
2158
2159 If optional argument INHIBIT-KEYBOARD-QUIT is non-nil, ignore
2160 keyboard-quit events while waiting for a valid input."
2161 (unless (consp chars)
2162 (error "Called `read-char-choice' without valid char choices"))
2163 (let (char done show-help (helpbuf " *Char Help*"))
2164 (let ((cursor-in-echo-area t)
2165 (executing-kbd-macro executing-kbd-macro)
2166 (esc-flag nil))
2167 (save-window-excursion ; in case we call help-form-show
2168 (while (not done)
2169 (unless (get-text-property 0 'face prompt)
2170 (setq prompt (propertize prompt 'face 'minibuffer-prompt)))
2171 (setq char (let ((inhibit-quit inhibit-keyboard-quit))
2172 (read-key prompt)))
2173 (and show-help (buffer-live-p (get-buffer helpbuf))
2174 (kill-buffer helpbuf))
2175 (cond
2176 ((not (numberp char)))
2177 ;; If caller has set help-form, that's enough.
2178 ;; They don't explicitly have to add help-char to chars.
2179 ((and help-form
2180 (eq char help-char)
2181 (setq show-help t)
2182 (help-form-show)))
2183 ((memq char chars)
2184 (setq done t))
2185 ((and executing-kbd-macro (= char -1))
2186 ;; read-event returns -1 if we are in a kbd macro and
2187 ;; there are no more events in the macro. Attempt to
2188 ;; get an event interactively.
2189 (setq executing-kbd-macro nil))
2190 ((not inhibit-keyboard-quit)
2191 (cond
2192 ((and (null esc-flag) (eq char ?\e))
2193 (setq esc-flag t))
2194 ((memq char '(?\C-g ?\e))
2195 (keyboard-quit))))))))
2196 ;; Display the question with the answer. But without cursor-in-echo-area.
2197 (message "%s%s" prompt (char-to-string char))
2198 char))
2199
2200 (defun sit-for (seconds &optional nodisp obsolete)
2201 "Perform redisplay, then wait for SECONDS seconds or until input is available.
2202 SECONDS may be a floating-point value.
2203 \(On operating systems that do not support waiting for fractions of a
2204 second, floating-point values are rounded down to the nearest integer.)
2205
2206 If optional arg NODISP is t, don't redisplay, just wait for input.
2207 Redisplay does not happen if input is available before it starts.
2208
2209 Value is t if waited the full time with no input arriving, and nil otherwise.
2210
2211 An obsolete, but still supported form is
2212 \(sit-for SECONDS &optional MILLISECONDS NODISP)
2213 where the optional arg MILLISECONDS specifies an additional wait period,
2214 in milliseconds; this was useful when Emacs was built without
2215 floating point support."
2216 (declare (advertised-calling-convention (seconds &optional nodisp) "22.1"))
2217 (if (numberp nodisp)
2218 (setq seconds (+ seconds (* 1e-3 nodisp))
2219 nodisp obsolete)
2220 (if obsolete (setq nodisp obsolete)))
2221 (cond
2222 (noninteractive
2223 (sleep-for seconds)
2224 t)
2225 ((input-pending-p t)
2226 nil)
2227 ((<= seconds 0)
2228 (or nodisp (redisplay)))
2229 (t
2230 (or nodisp (redisplay))
2231 ;; FIXME: we should not read-event here at all, because it's much too
2232 ;; difficult to reliably "undo" a read-event by pushing it onto
2233 ;; unread-command-events.
2234 (let ((read (read-event nil t seconds)))
2235 (or (null read)
2236 (progn
2237 ;; If last command was a prefix arg, e.g. C-u, push this event onto
2238 ;; unread-command-events as (t . EVENT) so it will be added to
2239 ;; this-command-keys by read-key-sequence.
2240 (if (eq overriding-terminal-local-map universal-argument-map)
2241 (setq read (cons t read)))
2242 (push read unread-command-events)
2243 nil))))))
2244
2245 ;; Behind display-popup-menus-p test.
2246 (declare-function x-popup-dialog "xmenu.c" (position contents &optional header))
2247
2248 (defun y-or-n-p (prompt)
2249 "Ask user a \"y or n\" question. Return t if answer is \"y\".
2250 PROMPT is the string to display to ask the question. It should
2251 end in a space; `y-or-n-p' adds \"(y or n) \" to it.
2252
2253 No confirmation of the answer is requested; a single character is
2254 enough. SPC also means yes, and DEL means no.
2255
2256 To be precise, this function translates user input into responses
2257 by consulting the bindings in `query-replace-map'; see the
2258 documentation of that variable for more information. In this
2259 case, the useful bindings are `act', `skip', `recenter',
2260 `scroll-up', `scroll-down', and `quit'.
2261 An `act' response means yes, and a `skip' response means no.
2262 A `quit' response means to invoke `keyboard-quit'.
2263 If the user enters `recenter', `scroll-up', or `scroll-down'
2264 responses, perform the requested window recentering or scrolling
2265 and ask again.
2266
2267 Under a windowing system a dialog box will be used if `last-nonmenu-event'
2268 is nil and `use-dialog-box' is non-nil."
2269 ;; ¡Beware! when I tried to edebug this code, Emacs got into a weird state
2270 ;; where all the keys were unbound (i.e. it somehow got triggered
2271 ;; within read-key, apparently). I had to kill it.
2272 (let ((answer 'recenter))
2273 (cond
2274 (noninteractive
2275 (setq prompt (concat prompt
2276 (if (or (zerop (length prompt))
2277 (eq ?\s (aref prompt (1- (length prompt)))))
2278 "" " ")
2279 "(y or n) "))
2280 (let ((temp-prompt prompt))
2281 (while (not (memq answer '(act skip)))
2282 (let ((str (read-string temp-prompt)))
2283 (cond ((member str '("y" "Y")) (setq answer 'act))
2284 ((member str '("n" "N")) (setq answer 'skip))
2285 (t (setq temp-prompt (concat "Please answer y or n. "
2286 prompt))))))))
2287 ((and (display-popup-menus-p)
2288 (listp last-nonmenu-event)
2289 use-dialog-box)
2290 (setq answer
2291 (x-popup-dialog t `(,prompt ("Yes" . act) ("No" . skip)))))
2292 (t
2293 (setq prompt (concat prompt
2294 (if (or (zerop (length prompt))
2295 (eq ?\s (aref prompt (1- (length prompt)))))
2296 "" " ")
2297 "(y or n) "))
2298 (while
2299 (let* ((scroll-actions '(recenter scroll-up scroll-down
2300 scroll-other-window scroll-other-window-down))
2301 (key
2302 (let ((cursor-in-echo-area t))
2303 (when minibuffer-auto-raise
2304 (raise-frame (window-frame (minibuffer-window))))
2305 (read-key (propertize (if (memq answer scroll-actions)
2306 prompt
2307 (concat "Please answer y or n. "
2308 prompt))
2309 'face 'minibuffer-prompt)))))
2310 (setq answer (lookup-key query-replace-map (vector key) t))
2311 (cond
2312 ((memq answer '(skip act)) nil)
2313 ((eq answer 'recenter)
2314 (recenter) t)
2315 ((eq answer 'scroll-up)
2316 (ignore-errors (scroll-up-command)) t)
2317 ((eq answer 'scroll-down)
2318 (ignore-errors (scroll-down-command)) t)
2319 ((eq answer 'scroll-other-window)
2320 (ignore-errors (scroll-other-window)) t)
2321 ((eq answer 'scroll-other-window-down)
2322 (ignore-errors (scroll-other-window-down)) t)
2323 ((or (memq answer '(exit-prefix quit)) (eq key ?\e))
2324 (signal 'quit nil) t)
2325 (t t)))
2326 (ding)
2327 (discard-input))))
2328 (let ((ret (eq answer 'act)))
2329 (unless noninteractive
2330 ;; FIXME this prints one too many spaces, since prompt
2331 ;; already ends in a space. Eg "... (y or n) y".
2332 (message "%s %s" prompt (if ret "y" "n")))
2333 ret)))
2334
2335 \f
2336 ;;; Atomic change groups.
2337
2338 (defmacro atomic-change-group (&rest body)
2339 "Perform BODY as an atomic change group.
2340 This means that if BODY exits abnormally,
2341 all of its changes to the current buffer are undone.
2342 This works regardless of whether undo is enabled in the buffer.
2343
2344 This mechanism is transparent to ordinary use of undo;
2345 if undo is enabled in the buffer and BODY succeeds, the
2346 user can undo the change normally."
2347 (declare (indent 0) (debug t))
2348 (let ((handle (make-symbol "--change-group-handle--"))
2349 (success (make-symbol "--change-group-success--")))
2350 `(let ((,handle (prepare-change-group))
2351 ;; Don't truncate any undo data in the middle of this.
2352 (undo-outer-limit nil)
2353 (undo-limit most-positive-fixnum)
2354 (undo-strong-limit most-positive-fixnum)
2355 (,success nil))
2356 (unwind-protect
2357 (progn
2358 ;; This is inside the unwind-protect because
2359 ;; it enables undo if that was disabled; we need
2360 ;; to make sure that it gets disabled again.
2361 (activate-change-group ,handle)
2362 ,@body
2363 (setq ,success t))
2364 ;; Either of these functions will disable undo
2365 ;; if it was disabled before.
2366 (if ,success
2367 (accept-change-group ,handle)
2368 (cancel-change-group ,handle))))))
2369
2370 (defun prepare-change-group (&optional buffer)
2371 "Return a handle for the current buffer's state, for a change group.
2372 If you specify BUFFER, make a handle for BUFFER's state instead.
2373
2374 Pass the handle to `activate-change-group' afterward to initiate
2375 the actual changes of the change group.
2376
2377 To finish the change group, call either `accept-change-group' or
2378 `cancel-change-group' passing the same handle as argument. Call
2379 `accept-change-group' to accept the changes in the group as final;
2380 call `cancel-change-group' to undo them all. You should use
2381 `unwind-protect' to make sure the group is always finished. The call
2382 to `activate-change-group' should be inside the `unwind-protect'.
2383 Once you finish the group, don't use the handle again--don't try to
2384 finish the same group twice. For a simple example of correct use, see
2385 the source code of `atomic-change-group'.
2386
2387 The handle records only the specified buffer. To make a multibuffer
2388 change group, call this function once for each buffer you want to
2389 cover, then use `nconc' to combine the returned values, like this:
2390
2391 (nconc (prepare-change-group buffer-1)
2392 (prepare-change-group buffer-2))
2393
2394 You can then activate that multibuffer change group with a single
2395 call to `activate-change-group' and finish it with a single call
2396 to `accept-change-group' or `cancel-change-group'."
2397
2398 (if buffer
2399 (list (cons buffer (with-current-buffer buffer buffer-undo-list)))
2400 (list (cons (current-buffer) buffer-undo-list))))
2401
2402 (defun activate-change-group (handle)
2403 "Activate a change group made with `prepare-change-group' (which see)."
2404 (dolist (elt handle)
2405 (with-current-buffer (car elt)
2406 (if (eq buffer-undo-list t)
2407 (setq buffer-undo-list nil)))))
2408
2409 (defun accept-change-group (handle)
2410 "Finish a change group made with `prepare-change-group' (which see).
2411 This finishes the change group by accepting its changes as final."
2412 (dolist (elt handle)
2413 (with-current-buffer (car elt)
2414 (if (eq (cdr elt) t)
2415 (setq buffer-undo-list t)))))
2416
2417 (defun cancel-change-group (handle)
2418 "Finish a change group made with `prepare-change-group' (which see).
2419 This finishes the change group by reverting all of its changes."
2420 (dolist (elt handle)
2421 (with-current-buffer (car elt)
2422 (setq elt (cdr elt))
2423 (save-restriction
2424 ;; Widen buffer temporarily so if the buffer was narrowed within
2425 ;; the body of `atomic-change-group' all changes can be undone.
2426 (widen)
2427 (let ((old-car
2428 (if (consp elt) (car elt)))
2429 (old-cdr
2430 (if (consp elt) (cdr elt))))
2431 ;; Temporarily truncate the undo log at ELT.
2432 (when (consp elt)
2433 (setcar elt nil) (setcdr elt nil))
2434 (unless (eq last-command 'undo) (undo-start))
2435 ;; Make sure there's no confusion.
2436 (when (and (consp elt) (not (eq elt (last pending-undo-list))))
2437 (error "Undoing to some unrelated state"))
2438 ;; Undo it all.
2439 (save-excursion
2440 (while (listp pending-undo-list) (undo-more 1)))
2441 ;; Reset the modified cons cell ELT to its original content.
2442 (when (consp elt)
2443 (setcar elt old-car)
2444 (setcdr elt old-cdr))
2445 ;; Revert the undo info to what it was when we grabbed the state.
2446 (setq buffer-undo-list elt))))))
2447 \f
2448 ;;;; Display-related functions.
2449
2450 ;; For compatibility.
2451 (define-obsolete-function-alias 'redraw-modeline
2452 'force-mode-line-update "24.3")
2453
2454 (defun force-mode-line-update (&optional all)
2455 "Force redisplay of the current buffer's mode line and header line.
2456 With optional non-nil ALL, force redisplay of all mode lines and
2457 header lines. This function also forces recomputation of the
2458 menu bar menus and the frame title."
2459 (if all (with-current-buffer (other-buffer)))
2460 (set-buffer-modified-p (buffer-modified-p)))
2461
2462 (defun momentary-string-display (string pos &optional exit-char message)
2463 "Momentarily display STRING in the buffer at POS.
2464 Display remains until next event is input.
2465 If POS is a marker, only its position is used; its buffer is ignored.
2466 Optional third arg EXIT-CHAR can be a character, event or event
2467 description list. EXIT-CHAR defaults to SPC. If the input is
2468 EXIT-CHAR it is swallowed; otherwise it is then available as
2469 input (as a command if nothing else).
2470 Display MESSAGE (optional fourth arg) in the echo area.
2471 If MESSAGE is nil, instructions to type EXIT-CHAR are displayed there."
2472 (or exit-char (setq exit-char ?\s))
2473 (let ((ol (make-overlay pos pos))
2474 (str (copy-sequence string)))
2475 (unwind-protect
2476 (progn
2477 (save-excursion
2478 (overlay-put ol 'after-string str)
2479 (goto-char pos)
2480 ;; To avoid trouble with out-of-bounds position
2481 (setq pos (point))
2482 ;; If the string end is off screen, recenter now.
2483 (if (<= (window-end nil t) pos)
2484 (recenter (/ (window-height) 2))))
2485 (message (or message "Type %s to continue editing.")
2486 (single-key-description exit-char))
2487 (let ((event (read-key)))
2488 ;; `exit-char' can be an event, or an event description list.
2489 (or (eq event exit-char)
2490 (eq event (event-convert-list exit-char))
2491 (setq unread-command-events
2492 (append (this-single-command-raw-keys))))))
2493 (delete-overlay ol))))
2494
2495 \f
2496 ;;;; Overlay operations
2497
2498 (defun copy-overlay (o)
2499 "Return a copy of overlay O."
2500 (let ((o1 (if (overlay-buffer o)
2501 (make-overlay (overlay-start o) (overlay-end o)
2502 ;; FIXME: there's no easy way to find the
2503 ;; insertion-type of the two markers.
2504 (overlay-buffer o))
2505 (let ((o1 (make-overlay (point-min) (point-min))))
2506 (delete-overlay o1)
2507 o1)))
2508 (props (overlay-properties o)))
2509 (while props
2510 (overlay-put o1 (pop props) (pop props)))
2511 o1))
2512
2513 (defun remove-overlays (&optional beg end name val)
2514 "Clear BEG and END of overlays whose property NAME has value VAL.
2515 Overlays might be moved and/or split.
2516 BEG and END default respectively to the beginning and end of buffer."
2517 ;; This speeds up the loops over overlays.
2518 (unless beg (setq beg (point-min)))
2519 (unless end (setq end (point-max)))
2520 (overlay-recenter end)
2521 (if (< end beg)
2522 (setq beg (prog1 end (setq end beg))))
2523 (save-excursion
2524 (dolist (o (overlays-in beg end))
2525 (when (eq (overlay-get o name) val)
2526 ;; Either push this overlay outside beg...end
2527 ;; or split it to exclude beg...end
2528 ;; or delete it entirely (if it is contained in beg...end).
2529 (if (< (overlay-start o) beg)
2530 (if (> (overlay-end o) end)
2531 (progn
2532 (move-overlay (copy-overlay o)
2533 (overlay-start o) beg)
2534 (move-overlay o end (overlay-end o)))
2535 (move-overlay o (overlay-start o) beg))
2536 (if (> (overlay-end o) end)
2537 (move-overlay o end (overlay-end o))
2538 (delete-overlay o)))))))
2539 \f
2540 ;;;; Miscellanea.
2541
2542 (defvar suspend-hook nil
2543 "Normal hook run by `suspend-emacs', before suspending.")
2544
2545 (defvar suspend-resume-hook nil
2546 "Normal hook run by `suspend-emacs', after Emacs is continued.")
2547
2548 (defvar temp-buffer-show-hook nil
2549 "Normal hook run by `with-output-to-temp-buffer' after displaying the buffer.
2550 When the hook runs, the temporary buffer is current, and the window it
2551 was displayed in is selected.")
2552
2553 (defvar temp-buffer-setup-hook nil
2554 "Normal hook run by `with-output-to-temp-buffer' at the start.
2555 When the hook runs, the temporary buffer is current.
2556 This hook is normally set up with a function to put the buffer in Help
2557 mode.")
2558
2559 (defconst user-emacs-directory
2560 (if (eq system-type 'ms-dos)
2561 ;; MS-DOS cannot have initial dot.
2562 "~/_emacs.d/"
2563 "~/.emacs.d/")
2564 "Directory beneath which additional per-user Emacs-specific files are placed.
2565 Various programs in Emacs store information in this directory.
2566 Note that this should end with a directory separator.
2567 See also `locate-user-emacs-file'.")
2568
2569 (custom-declare-variable-early 'user-emacs-directory-warning t
2570 "Non-nil means warn if cannot access `user-emacs-directory'.
2571 Set this to nil at your own risk..."
2572 :type 'boolean
2573 :group 'initialization
2574 :version "24.4")
2575
2576 (defun locate-user-emacs-file (new-name &optional old-name)
2577 "Return an absolute per-user Emacs-specific file name.
2578 If NEW-NAME exists in `user-emacs-directory', return it.
2579 Else if OLD-NAME is non-nil and ~/OLD-NAME exists, return ~/OLD-NAME.
2580 Else return NEW-NAME in `user-emacs-directory', creating the
2581 directory if it does not exist."
2582 (convert-standard-filename
2583 (let* ((home (concat "~" (or init-file-user "")))
2584 (at-home (and old-name (expand-file-name old-name home)))
2585 (bestname (abbreviate-file-name
2586 (expand-file-name new-name user-emacs-directory))))
2587 (if (and at-home (not (file-readable-p bestname))
2588 (file-readable-p at-home))
2589 at-home
2590 ;; Make sure `user-emacs-directory' exists,
2591 ;; unless we're in batch mode or dumping Emacs.
2592 (or noninteractive
2593 purify-flag
2594 (let (errtype)
2595 (if (file-directory-p user-emacs-directory)
2596 (or (file-accessible-directory-p user-emacs-directory)
2597 (setq errtype "access"))
2598 (let ((umask (default-file-modes)))
2599 (unwind-protect
2600 (progn
2601 (set-default-file-modes ?\700)
2602 (condition-case nil
2603 (make-directory user-emacs-directory)
2604 (error (setq errtype "create"))))
2605 (set-default-file-modes umask))))
2606 (when (and errtype
2607 user-emacs-directory-warning
2608 (not (get 'user-emacs-directory-warning 'this-session)))
2609 ;; Only warn once per Emacs session.
2610 (put 'user-emacs-directory-warning 'this-session t)
2611 (display-warning 'initialization
2612 (format "\
2613 Unable to %s `user-emacs-directory' (%s).
2614 Any data that would normally be written there may be lost!
2615 If you never want to see this message again,
2616 customize the variable `user-emacs-directory-warning'."
2617 errtype user-emacs-directory)))))
2618 bestname))))
2619 \f
2620 ;;;; Misc. useful functions.
2621
2622 (defsubst buffer-narrowed-p ()
2623 "Return non-nil if the current buffer is narrowed."
2624 (/= (- (point-max) (point-min)) (buffer-size)))
2625
2626 (defun find-tag-default-bounds ()
2627 "Determine the boundaries of the default tag, based on text at point.
2628 Return a cons cell with the beginning and end of the found tag.
2629 If there is no plausible default, return nil."
2630 (let (from to bound)
2631 (when (or (progn
2632 ;; Look at text around `point'.
2633 (save-excursion
2634 (skip-syntax-backward "w_") (setq from (point)))
2635 (save-excursion
2636 (skip-syntax-forward "w_") (setq to (point)))
2637 (> to from))
2638 ;; Look between `line-beginning-position' and `point'.
2639 (save-excursion
2640 (and (setq bound (line-beginning-position))
2641 (skip-syntax-backward "^w_" bound)
2642 (> (setq to (point)) bound)
2643 (skip-syntax-backward "w_")
2644 (setq from (point))))
2645 ;; Look between `point' and `line-end-position'.
2646 (save-excursion
2647 (and (setq bound (line-end-position))
2648 (skip-syntax-forward "^w_" bound)
2649 (< (setq from (point)) bound)
2650 (skip-syntax-forward "w_")
2651 (setq to (point)))))
2652 (cons from to))))
2653
2654 (defun find-tag-default ()
2655 "Determine default tag to search for, based on text at point.
2656 If there is no plausible default, return nil."
2657 (let ((bounds (find-tag-default-bounds)))
2658 (when bounds
2659 (buffer-substring-no-properties (car bounds) (cdr bounds)))))
2660
2661 (defun find-tag-default-as-regexp ()
2662 "Return regexp that matches the default tag at point.
2663 If there is no tag at point, return nil.
2664
2665 When in a major mode that does not provide its own
2666 `find-tag-default-function', return a regexp that matches the
2667 symbol at point exactly."
2668 (let* ((tagf (or find-tag-default-function
2669 (get major-mode 'find-tag-default-function)
2670 'find-tag-default))
2671 (tag (funcall tagf)))
2672 (cond ((null tag) nil)
2673 ((eq tagf 'find-tag-default)
2674 (format "\\_<%s\\_>" (regexp-quote tag)))
2675 (t (regexp-quote tag)))))
2676
2677 (defun play-sound (sound)
2678 "SOUND is a list of the form `(sound KEYWORD VALUE...)'.
2679 The following keywords are recognized:
2680
2681 :file FILE - read sound data from FILE. If FILE isn't an
2682 absolute file name, it is searched in `data-directory'.
2683
2684 :data DATA - read sound data from string DATA.
2685
2686 Exactly one of :file or :data must be present.
2687
2688 :volume VOL - set volume to VOL. VOL must an integer in the
2689 range 0..100 or a float in the range 0..1.0. If not specified,
2690 don't change the volume setting of the sound device.
2691
2692 :device DEVICE - play sound on DEVICE. If not specified,
2693 a system-dependent default device name is used.
2694
2695 Note: :data and :device are currently not supported on Windows."
2696 (if (fboundp 'play-sound-internal)
2697 (play-sound-internal sound)
2698 (error "This Emacs binary lacks sound support")))
2699
2700 (declare-function w32-shell-dos-semantics "w32-fns" nil)
2701
2702 (defun shell-quote-argument (argument)
2703 "Quote ARGUMENT for passing as argument to an inferior shell."
2704 (cond
2705 ((eq system-type 'ms-dos)
2706 ;; Quote using double quotes, but escape any existing quotes in
2707 ;; the argument with backslashes.
2708 (let ((result "")
2709 (start 0)
2710 end)
2711 (if (or (null (string-match "[^\"]" argument))
2712 (< (match-end 0) (length argument)))
2713 (while (string-match "[\"]" argument start)
2714 (setq end (match-beginning 0)
2715 result (concat result (substring argument start end)
2716 "\\" (substring argument end (1+ end)))
2717 start (1+ end))))
2718 (concat "\"" result (substring argument start) "\"")))
2719
2720 ((and (eq system-type 'windows-nt) (w32-shell-dos-semantics))
2721
2722 ;; First, quote argument so that CommandLineToArgvW will
2723 ;; understand it. See
2724 ;; http://msdn.microsoft.com/en-us/library/17w5ykft%28v=vs.85%29.aspx
2725 ;; After we perform that level of quoting, escape shell
2726 ;; metacharacters so that cmd won't mangle our argument. If the
2727 ;; argument contains no double quote characters, we can just
2728 ;; surround it with double quotes. Otherwise, we need to prefix
2729 ;; each shell metacharacter with a caret.
2730
2731 (setq argument
2732 ;; escape backslashes at end of string
2733 (replace-regexp-in-string
2734 "\\(\\\\*\\)$"
2735 "\\1\\1"
2736 ;; escape backslashes and quotes in string body
2737 (replace-regexp-in-string
2738 "\\(\\\\*\\)\""
2739 "\\1\\1\\\\\""
2740 argument)))
2741
2742 (if (string-match "[%!\"]" argument)
2743 (concat
2744 "^\""
2745 (replace-regexp-in-string
2746 "\\([%!()\"<>&|^]\\)"
2747 "^\\1"
2748 argument)
2749 "^\"")
2750 (concat "\"" argument "\"")))
2751
2752 (t
2753 (if (equal argument "")
2754 "''"
2755 ;; Quote everything except POSIX filename characters.
2756 ;; This should be safe enough even for really weird shells.
2757 (replace-regexp-in-string
2758 "\n" "'\n'"
2759 (replace-regexp-in-string "[^-0-9a-zA-Z_./\n]" "\\\\\\&" argument))))
2760 ))
2761
2762 (defun string-or-null-p (object)
2763 "Return t if OBJECT is a string or nil.
2764 Otherwise, return nil."
2765 (or (stringp object) (null object)))
2766
2767 (defun booleanp (object)
2768 "Return t if OBJECT is one of the two canonical boolean values: t or nil.
2769 Otherwise, return nil."
2770 (and (memq object '(nil t)) t))
2771
2772 (defun special-form-p (object)
2773 "Non-nil if and only if OBJECT is a special form."
2774 (if (and (symbolp object) (fboundp object))
2775 (setq object (indirect-function object t)))
2776 (and (subrp object) (eq (cdr (subr-arity object)) 'unevalled)))
2777
2778 (defun macrop (object)
2779 "Non-nil if and only if OBJECT is a macro."
2780 (let ((def (indirect-function object t)))
2781 (when (consp def)
2782 (or (eq 'macro (car def))
2783 (and (autoloadp def) (memq (nth 4 def) '(macro t)))))))
2784
2785 (defun field-at-pos (pos)
2786 "Return the field at position POS, taking stickiness etc into account."
2787 (let ((raw-field (get-char-property (field-beginning pos) 'field)))
2788 (if (eq raw-field 'boundary)
2789 (get-char-property (1- (field-end pos)) 'field)
2790 raw-field)))
2791
2792 (defun sha1 (object &optional start end binary)
2793 "Return the SHA1 (Secure Hash Algorithm) of an OBJECT.
2794 OBJECT is either a string or a buffer. Optional arguments START and
2795 END are character positions specifying which portion of OBJECT for
2796 computing the hash. If BINARY is non-nil, return a string in binary
2797 form."
2798 (secure-hash 'sha1 object start end binary))
2799
2800 (defun function-get (f prop &optional autoload)
2801 "Return the value of property PROP of function F.
2802 If AUTOLOAD is non-nil and F is autoloaded, try to autoload it
2803 in the hope that it will set PROP. If AUTOLOAD is `macro', only do it
2804 if it's an autoloaded macro."
2805 (let ((val nil))
2806 (while (and (symbolp f)
2807 (null (setq val (get f prop)))
2808 (fboundp f))
2809 (let ((fundef (symbol-function f)))
2810 (if (and autoload (autoloadp fundef)
2811 (not (equal fundef
2812 (autoload-do-load fundef f
2813 (if (eq autoload 'macro)
2814 'macro)))))
2815 nil ;Re-try `get' on the same `f'.
2816 (setq f fundef))))
2817 val))
2818 \f
2819 ;;;; Support for yanking and text properties.
2820
2821 (defvar yank-handled-properties)
2822 (defvar yank-excluded-properties)
2823
2824 (defun remove-yank-excluded-properties (start end)
2825 "Process text properties between START and END, inserted for a `yank'.
2826 Perform the handling specified by `yank-handled-properties', then
2827 remove properties specified by `yank-excluded-properties'."
2828 (let ((inhibit-read-only t))
2829 (dolist (handler yank-handled-properties)
2830 (let ((prop (car handler))
2831 (fun (cdr handler))
2832 (run-start start))
2833 (while (< run-start end)
2834 (let ((value (get-text-property run-start prop))
2835 (run-end (next-single-property-change
2836 run-start prop nil end)))
2837 (funcall fun value run-start run-end)
2838 (setq run-start run-end)))))
2839 (if (eq yank-excluded-properties t)
2840 (set-text-properties start end nil)
2841 (remove-list-of-text-properties start end yank-excluded-properties))))
2842
2843 (defvar yank-undo-function)
2844
2845 (defun insert-for-yank (string)
2846 "Call `insert-for-yank-1' repetitively for each `yank-handler' segment.
2847
2848 See `insert-for-yank-1' for more details."
2849 (let (to)
2850 (while (setq to (next-single-property-change 0 'yank-handler string))
2851 (insert-for-yank-1 (substring string 0 to))
2852 (setq string (substring string to))))
2853 (insert-for-yank-1 string))
2854
2855 (defun insert-for-yank-1 (string)
2856 "Insert STRING at point for the `yank' command.
2857 This function is like `insert', except it honors the variables
2858 `yank-handled-properties' and `yank-excluded-properties', and the
2859 `yank-handler' text property.
2860
2861 Properties listed in `yank-handled-properties' are processed,
2862 then those listed in `yank-excluded-properties' are discarded.
2863
2864 If STRING has a non-nil `yank-handler' property on its first
2865 character, the normal insert behavior is altered. The value of
2866 the `yank-handler' property must be a list of one to four
2867 elements, of the form (FUNCTION PARAM NOEXCLUDE UNDO).
2868 FUNCTION, if non-nil, should be a function of one argument, an
2869 object to insert; it is called instead of `insert'.
2870 PARAM, if present and non-nil, replaces STRING as the argument to
2871 FUNCTION or `insert'; e.g. if FUNCTION is `yank-rectangle', PARAM
2872 may be a list of strings to insert as a rectangle.
2873 If NOEXCLUDE is present and non-nil, the normal removal of
2874 `yank-excluded-properties' is not performed; instead FUNCTION is
2875 responsible for the removal. This may be necessary if FUNCTION
2876 adjusts point before or after inserting the object.
2877 UNDO, if present and non-nil, should be a function to be called
2878 by `yank-pop' to undo the insertion of the current object. It is
2879 given two arguments, the start and end of the region. FUNCTION
2880 may set `yank-undo-function' to override UNDO."
2881 (let* ((handler (and (stringp string)
2882 (get-text-property 0 'yank-handler string)))
2883 (param (or (nth 1 handler) string))
2884 (opoint (point))
2885 (inhibit-read-only inhibit-read-only)
2886 end)
2887
2888 (setq yank-undo-function t)
2889 (if (nth 0 handler) ; FUNCTION
2890 (funcall (car handler) param)
2891 (insert param))
2892 (setq end (point))
2893
2894 ;; Prevent read-only properties from interfering with the
2895 ;; following text property changes.
2896 (setq inhibit-read-only t)
2897
2898 (unless (nth 2 handler) ; NOEXCLUDE
2899 (remove-yank-excluded-properties opoint end))
2900
2901 ;; If last inserted char has properties, mark them as rear-nonsticky.
2902 (if (and (> end opoint)
2903 (text-properties-at (1- end)))
2904 (put-text-property (1- end) end 'rear-nonsticky t))
2905
2906 (if (eq yank-undo-function t) ; not set by FUNCTION
2907 (setq yank-undo-function (nth 3 handler))) ; UNDO
2908 (if (nth 4 handler) ; COMMAND
2909 (setq this-command (nth 4 handler)))))
2910
2911 (defun insert-buffer-substring-no-properties (buffer &optional start end)
2912 "Insert before point a substring of BUFFER, without text properties.
2913 BUFFER may be a buffer or a buffer name.
2914 Arguments START and END are character positions specifying the substring.
2915 They default to the values of (point-min) and (point-max) in BUFFER."
2916 (let ((opoint (point)))
2917 (insert-buffer-substring buffer start end)
2918 (let ((inhibit-read-only t))
2919 (set-text-properties opoint (point) nil))))
2920
2921 (defun insert-buffer-substring-as-yank (buffer &optional start end)
2922 "Insert before point a part of BUFFER, stripping some text properties.
2923 BUFFER may be a buffer or a buffer name.
2924 Arguments START and END are character positions specifying the substring.
2925 They default to the values of (point-min) and (point-max) in BUFFER.
2926 Before insertion, process text properties according to
2927 `yank-handled-properties' and `yank-excluded-properties'."
2928 ;; Since the buffer text should not normally have yank-handler properties,
2929 ;; there is no need to handle them here.
2930 (let ((opoint (point)))
2931 (insert-buffer-substring buffer start end)
2932 (remove-yank-excluded-properties opoint (point))))
2933
2934 (defun yank-handle-font-lock-face-property (face start end)
2935 "If `font-lock-defaults' is nil, apply FACE as a `face' property.
2936 START and END denote the start and end of the text to act on.
2937 Do nothing if FACE is nil."
2938 (and face
2939 (null font-lock-defaults)
2940 (put-text-property start end 'face face)))
2941
2942 ;; This removes `mouse-face' properties in *Help* buffer buttons:
2943 ;; http://lists.gnu.org/archive/html/emacs-devel/2002-04/msg00648.html
2944 (defun yank-handle-category-property (category start end)
2945 "Apply property category CATEGORY's properties between START and END."
2946 (when category
2947 (let ((start2 start))
2948 (while (< start2 end)
2949 (let ((end2 (next-property-change start2 nil end))
2950 (original (text-properties-at start2)))
2951 (set-text-properties start2 end2 (symbol-plist category))
2952 (add-text-properties start2 end2 original)
2953 (setq start2 end2))))))
2954
2955 \f
2956 ;;;; Synchronous shell commands.
2957
2958 (defun start-process-shell-command (name buffer &rest args)
2959 "Start a program in a subprocess. Return the process object for it.
2960 NAME is name for process. It is modified if necessary to make it unique.
2961 BUFFER is the buffer (or buffer name) to associate with the process.
2962 Process output goes at end of that buffer, unless you specify
2963 an output stream or filter function to handle the output.
2964 BUFFER may be also nil, meaning that this process is not associated
2965 with any buffer
2966 COMMAND is the shell command to run.
2967
2968 An old calling convention accepted any number of arguments after COMMAND,
2969 which were just concatenated to COMMAND. This is still supported but strongly
2970 discouraged."
2971 ;; We used to use `exec' to replace the shell with the command,
2972 ;; but that failed to handle (...) and semicolon, etc.
2973 (start-process name buffer shell-file-name shell-command-switch
2974 (mapconcat 'identity args " ")))
2975 (set-advertised-calling-convention 'start-process-shell-command
2976 '(name buffer command) "23.1")
2977
2978 (defun start-file-process-shell-command (name buffer &rest args)
2979 "Start a program in a subprocess. Return the process object for it.
2980 Similar to `start-process-shell-command', but calls `start-file-process'."
2981 (start-file-process
2982 name buffer
2983 (if (file-remote-p default-directory) "/bin/sh" shell-file-name)
2984 (if (file-remote-p default-directory) "-c" shell-command-switch)
2985 (mapconcat 'identity args " ")))
2986 (set-advertised-calling-convention 'start-file-process-shell-command
2987 '(name buffer command) "23.1")
2988
2989 (defun call-process-shell-command (command &optional infile buffer display
2990 &rest args)
2991 "Execute the shell command COMMAND synchronously in separate process.
2992 The remaining arguments are optional.
2993 The program's input comes from file INFILE (nil means `/dev/null').
2994 Insert output in BUFFER before point; t means current buffer;
2995 nil for BUFFER means discard it; 0 means discard and don't wait.
2996 BUFFER can also have the form (REAL-BUFFER STDERR-FILE); in that case,
2997 REAL-BUFFER says what to do with standard output, as above,
2998 while STDERR-FILE says what to do with standard error in the child.
2999 STDERR-FILE may be nil (discard standard error output),
3000 t (mix it with ordinary output), or a file name string.
3001
3002 Fourth arg DISPLAY non-nil means redisplay buffer as output is inserted.
3003 Remaining arguments are strings passed as additional arguments for COMMAND.
3004 Wildcards and redirection are handled as usual in the shell.
3005
3006 If BUFFER is 0, `call-process-shell-command' returns immediately with value nil.
3007 Otherwise it waits for COMMAND to terminate and returns a numeric exit
3008 status or a signal description string.
3009 If you quit, the process is killed with SIGINT, or SIGKILL if you quit again."
3010 ;; We used to use `exec' to replace the shell with the command,
3011 ;; but that failed to handle (...) and semicolon, etc.
3012 (call-process shell-file-name
3013 infile buffer display
3014 shell-command-switch
3015 (mapconcat 'identity (cons command args) " ")))
3016
3017 (defun process-file-shell-command (command &optional infile buffer display
3018 &rest args)
3019 "Process files synchronously in a separate process.
3020 Similar to `call-process-shell-command', but calls `process-file'."
3021 (process-file
3022 (if (file-remote-p default-directory) "/bin/sh" shell-file-name)
3023 infile buffer display
3024 (if (file-remote-p default-directory) "-c" shell-command-switch)
3025 (mapconcat 'identity (cons command args) " ")))
3026 \f
3027 ;;;; Lisp macros to do various things temporarily.
3028
3029 (defmacro with-current-buffer (buffer-or-name &rest body)
3030 "Execute the forms in BODY with BUFFER-OR-NAME temporarily current.
3031 BUFFER-OR-NAME must be a buffer or the name of an existing buffer.
3032 The value returned is the value of the last form in BODY. See
3033 also `with-temp-buffer'."
3034 (declare (indent 1) (debug t))
3035 `(save-current-buffer
3036 (set-buffer ,buffer-or-name)
3037 ,@body))
3038
3039 (defun internal--before-with-selected-window (window)
3040 (let ((other-frame (window-frame window)))
3041 (list window (selected-window)
3042 ;; Selecting a window on another frame also changes that
3043 ;; frame's frame-selected-window. We must save&restore it.
3044 (unless (eq (selected-frame) other-frame)
3045 (frame-selected-window other-frame))
3046 ;; Also remember the top-frame if on ttys.
3047 (unless (eq (selected-frame) other-frame)
3048 (tty-top-frame other-frame)))))
3049
3050 (defun internal--after-with-selected-window (state)
3051 ;; First reset frame-selected-window.
3052 (when (window-live-p (nth 2 state))
3053 ;; We don't use set-frame-selected-window because it does not
3054 ;; pass the `norecord' argument to Fselect_window.
3055 (select-window (nth 2 state) 'norecord)
3056 (and (frame-live-p (nth 3 state))
3057 (not (eq (tty-top-frame) (nth 3 state)))
3058 (select-frame (nth 3 state) 'norecord)))
3059 ;; Then reset the actual selected-window.
3060 (when (window-live-p (nth 1 state))
3061 (select-window (nth 1 state) 'norecord)))
3062
3063 (defmacro with-selected-window (window &rest body)
3064 "Execute the forms in BODY with WINDOW as the selected window.
3065 The value returned is the value of the last form in BODY.
3066
3067 This macro saves and restores the selected window, as well as the
3068 selected window of each frame. It does not change the order of
3069 recently selected windows. If the previously selected window of
3070 some frame is no longer live at the end of BODY, that frame's
3071 selected window is left alone. If the selected window is no
3072 longer live, then whatever window is selected at the end of BODY
3073 remains selected.
3074
3075 This macro uses `save-current-buffer' to save and restore the
3076 current buffer, since otherwise its normal operation could
3077 potentially make a different buffer current. It does not alter
3078 the buffer list ordering."
3079 (declare (indent 1) (debug t))
3080 `(let ((save-selected-window--state
3081 (internal--before-with-selected-window ,window)))
3082 (save-current-buffer
3083 (unwind-protect
3084 (progn (select-window (car save-selected-window--state) 'norecord)
3085 ,@body)
3086 (internal--after-with-selected-window save-selected-window--state)))))
3087
3088 (defmacro with-selected-frame (frame &rest body)
3089 "Execute the forms in BODY with FRAME as the selected frame.
3090 The value returned is the value of the last form in BODY.
3091
3092 This macro saves and restores the selected frame, and changes the
3093 order of neither the recently selected windows nor the buffers in
3094 the buffer list."
3095 (declare (indent 1) (debug t))
3096 (let ((old-frame (make-symbol "old-frame"))
3097 (old-buffer (make-symbol "old-buffer")))
3098 `(let ((,old-frame (selected-frame))
3099 (,old-buffer (current-buffer)))
3100 (unwind-protect
3101 (progn (select-frame ,frame 'norecord)
3102 ,@body)
3103 (when (frame-live-p ,old-frame)
3104 (select-frame ,old-frame 'norecord))
3105 (when (buffer-live-p ,old-buffer)
3106 (set-buffer ,old-buffer))))))
3107
3108 (defmacro save-window-excursion (&rest body)
3109 "Execute BODY, then restore previous window configuration.
3110 This macro saves the window configuration on the selected frame,
3111 executes BODY, then calls `set-window-configuration' to restore
3112 the saved window configuration. The return value is the last
3113 form in BODY. The window configuration is also restored if BODY
3114 exits nonlocally.
3115
3116 BEWARE: Most uses of this macro introduce bugs.
3117 E.g. it should not be used to try and prevent some code from opening
3118 a new window, since that window may sometimes appear in another frame,
3119 in which case `save-window-excursion' cannot help."
3120 (declare (indent 0) (debug t))
3121 (let ((c (make-symbol "wconfig")))
3122 `(let ((,c (current-window-configuration)))
3123 (unwind-protect (progn ,@body)
3124 (set-window-configuration ,c)))))
3125
3126 (defun internal-temp-output-buffer-show (buffer)
3127 "Internal function for `with-output-to-temp-buffer'."
3128 (with-current-buffer buffer
3129 (set-buffer-modified-p nil)
3130 (goto-char (point-min)))
3131
3132 (if temp-buffer-show-function
3133 (funcall temp-buffer-show-function buffer)
3134 (with-current-buffer buffer
3135 (let* ((window
3136 (let ((window-combination-limit
3137 ;; When `window-combination-limit' equals
3138 ;; `temp-buffer' or `temp-buffer-resize' and
3139 ;; `temp-buffer-resize-mode' is enabled in this
3140 ;; buffer bind it to t so resizing steals space
3141 ;; preferably from the window that was split.
3142 (if (or (eq window-combination-limit 'temp-buffer)
3143 (and (eq window-combination-limit
3144 'temp-buffer-resize)
3145 temp-buffer-resize-mode))
3146 t
3147 window-combination-limit)))
3148 (display-buffer buffer)))
3149 (frame (and window (window-frame window))))
3150 (when window
3151 (unless (eq frame (selected-frame))
3152 (make-frame-visible frame))
3153 (setq minibuffer-scroll-window window)
3154 (set-window-hscroll window 0)
3155 ;; Don't try this with NOFORCE non-nil!
3156 (set-window-start window (point-min) t)
3157 ;; This should not be necessary.
3158 (set-window-point window (point-min))
3159 ;; Run `temp-buffer-show-hook', with the chosen window selected.
3160 (with-selected-window window
3161 (run-hooks 'temp-buffer-show-hook))))))
3162 ;; Return nil.
3163 nil)
3164
3165 ;; Doc is very similar to with-temp-buffer-window.
3166 (defmacro with-output-to-temp-buffer (bufname &rest body)
3167 "Bind `standard-output' to buffer BUFNAME, eval BODY, then show that buffer.
3168
3169 This construct makes buffer BUFNAME empty before running BODY.
3170 It does not make the buffer current for BODY.
3171 Instead it binds `standard-output' to that buffer, so that output
3172 generated with `prin1' and similar functions in BODY goes into
3173 the buffer.
3174
3175 At the end of BODY, this marks buffer BUFNAME unmodified and displays
3176 it in a window, but does not select it. The normal way to do this is
3177 by calling `display-buffer', then running `temp-buffer-show-hook'.
3178 However, if `temp-buffer-show-function' is non-nil, it calls that
3179 function instead (and does not run `temp-buffer-show-hook'). The
3180 function gets one argument, the buffer to display.
3181
3182 The return value of `with-output-to-temp-buffer' is the value of the
3183 last form in BODY. If BODY does not finish normally, the buffer
3184 BUFNAME is not displayed.
3185
3186 This runs the hook `temp-buffer-setup-hook' before BODY,
3187 with the buffer BUFNAME temporarily current. It runs the hook
3188 `temp-buffer-show-hook' after displaying buffer BUFNAME, with that
3189 buffer temporarily current, and the window that was used to display it
3190 temporarily selected. But it doesn't run `temp-buffer-show-hook'
3191 if it uses `temp-buffer-show-function'.
3192
3193 See the related form `with-temp-buffer-window'."
3194 (declare (debug t))
3195 (let ((old-dir (make-symbol "old-dir"))
3196 (buf (make-symbol "buf")))
3197 `(let* ((,old-dir default-directory)
3198 (,buf
3199 (with-current-buffer (get-buffer-create ,bufname)
3200 (prog1 (current-buffer)
3201 (kill-all-local-variables)
3202 ;; FIXME: delete_all_overlays
3203 (setq default-directory ,old-dir)
3204 (setq buffer-read-only nil)
3205 (setq buffer-file-name nil)
3206 (setq buffer-undo-list t)
3207 (let ((inhibit-read-only t)
3208 (inhibit-modification-hooks t))
3209 (erase-buffer)
3210 (run-hooks 'temp-buffer-setup-hook)))))
3211 (standard-output ,buf))
3212 (prog1 (progn ,@body)
3213 (internal-temp-output-buffer-show ,buf)))))
3214
3215 (defmacro with-temp-file (file &rest body)
3216 "Create a new buffer, evaluate BODY there, and write the buffer to FILE.
3217 The value returned is the value of the last form in BODY.
3218 See also `with-temp-buffer'."
3219 (declare (indent 1) (debug t))
3220 (let ((temp-file (make-symbol "temp-file"))
3221 (temp-buffer (make-symbol "temp-buffer")))
3222 `(let ((,temp-file ,file)
3223 (,temp-buffer
3224 (get-buffer-create (generate-new-buffer-name " *temp file*"))))
3225 (unwind-protect
3226 (prog1
3227 (with-current-buffer ,temp-buffer
3228 ,@body)
3229 (with-current-buffer ,temp-buffer
3230 (write-region nil nil ,temp-file nil 0)))
3231 (and (buffer-name ,temp-buffer)
3232 (kill-buffer ,temp-buffer))))))
3233
3234 (defmacro with-temp-message (message &rest body)
3235 "Display MESSAGE temporarily if non-nil while BODY is evaluated.
3236 The original message is restored to the echo area after BODY has finished.
3237 The value returned is the value of the last form in BODY.
3238 MESSAGE is written to the message log buffer if `message-log-max' is non-nil.
3239 If MESSAGE is nil, the echo area and message log buffer are unchanged.
3240 Use a MESSAGE of \"\" to temporarily clear the echo area."
3241 (declare (debug t) (indent 1))
3242 (let ((current-message (make-symbol "current-message"))
3243 (temp-message (make-symbol "with-temp-message")))
3244 `(let ((,temp-message ,message)
3245 (,current-message))
3246 (unwind-protect
3247 (progn
3248 (when ,temp-message
3249 (setq ,current-message (current-message))
3250 (message "%s" ,temp-message))
3251 ,@body)
3252 (and ,temp-message
3253 (if ,current-message
3254 (message "%s" ,current-message)
3255 (message nil)))))))
3256
3257 (defmacro with-temp-buffer (&rest body)
3258 "Create a temporary buffer, and evaluate BODY there like `progn'.
3259 See also `with-temp-file' and `with-output-to-string'."
3260 (declare (indent 0) (debug t))
3261 (let ((temp-buffer (make-symbol "temp-buffer")))
3262 `(let ((,temp-buffer (generate-new-buffer " *temp*")))
3263 ;; FIXME: kill-buffer can change current-buffer in some odd cases.
3264 (with-current-buffer ,temp-buffer
3265 (unwind-protect
3266 (progn ,@body)
3267 (and (buffer-name ,temp-buffer)
3268 (kill-buffer ,temp-buffer)))))))
3269
3270 (defmacro with-silent-modifications (&rest body)
3271 "Execute BODY, pretending it does not modify the buffer.
3272 If BODY performs real modifications to the buffer's text, other
3273 than cosmetic ones, undo data may become corrupted.
3274
3275 This macro will run BODY normally, but doesn't count its buffer
3276 modifications as being buffer modifications. This affects things
3277 like `buffer-modified-p', checking whether the file is locked by
3278 someone else, running buffer modification hooks, and other things
3279 of that nature.
3280
3281 Typically used around modifications of text-properties which do
3282 not really affect the buffer's content."
3283 (declare (debug t) (indent 0))
3284 (let ((modified (make-symbol "modified")))
3285 `(let* ((,modified (buffer-modified-p))
3286 (buffer-undo-list t)
3287 (inhibit-read-only t)
3288 (inhibit-modification-hooks t)
3289 deactivate-mark
3290 ;; Avoid setting and removing file locks and checking
3291 ;; buffer's uptodate-ness w.r.t the underlying file.
3292 buffer-file-name
3293 buffer-file-truename)
3294 (unwind-protect
3295 (progn
3296 ,@body)
3297 (unless ,modified
3298 (restore-buffer-modified-p nil))))))
3299
3300 (defmacro with-output-to-string (&rest body)
3301 "Execute BODY, return the text it sent to `standard-output', as a string."
3302 (declare (indent 0) (debug t))
3303 `(let ((standard-output
3304 (get-buffer-create (generate-new-buffer-name " *string-output*"))))
3305 (unwind-protect
3306 (progn
3307 (let ((standard-output standard-output))
3308 ,@body)
3309 (with-current-buffer standard-output
3310 (buffer-string)))
3311 (kill-buffer standard-output))))
3312
3313 (defmacro with-local-quit (&rest body)
3314 "Execute BODY, allowing quits to terminate BODY but not escape further.
3315 When a quit terminates BODY, `with-local-quit' returns nil but
3316 requests another quit. That quit will be processed as soon as quitting
3317 is allowed once again. (Immediately, if `inhibit-quit' is nil.)"
3318 (declare (debug t) (indent 0))
3319 `(condition-case nil
3320 (let ((inhibit-quit nil))
3321 ,@body)
3322 (quit (setq quit-flag t)
3323 ;; This call is to give a chance to handle quit-flag
3324 ;; in case inhibit-quit is nil.
3325 ;; Without this, it will not be handled until the next function
3326 ;; call, and that might allow it to exit thru a condition-case
3327 ;; that intends to handle the quit signal next time.
3328 (eval '(ignore nil)))))
3329
3330 (defmacro while-no-input (&rest body)
3331 "Execute BODY only as long as there's no pending input.
3332 If input arrives, that ends the execution of BODY,
3333 and `while-no-input' returns t. Quitting makes it return nil.
3334 If BODY finishes, `while-no-input' returns whatever value BODY produced."
3335 (declare (debug t) (indent 0))
3336 (let ((catch-sym (make-symbol "input")))
3337 `(with-local-quit
3338 (catch ',catch-sym
3339 (let ((throw-on-input ',catch-sym))
3340 (or (input-pending-p)
3341 (progn ,@body)))))))
3342
3343 (defmacro condition-case-unless-debug (var bodyform &rest handlers)
3344 "Like `condition-case' except that it does not prevent debugging.
3345 More specifically if `debug-on-error' is set then the debugger will be invoked
3346 even if this catches the signal."
3347 (declare (debug condition-case) (indent 2))
3348 `(condition-case ,var
3349 ,bodyform
3350 ,@(mapcar (lambda (handler)
3351 `((debug ,@(if (listp (car handler)) (car handler)
3352 (list (car handler))))
3353 ,@(cdr handler)))
3354 handlers)))
3355
3356 (define-obsolete-function-alias 'condition-case-no-debug
3357 'condition-case-unless-debug "24.1")
3358
3359 (defmacro with-demoted-errors (format &rest body)
3360 "Run BODY and demote any errors to simple messages.
3361 If `debug-on-error' is non-nil, run BODY without catching its errors.
3362 This is to be used around code which is not expected to signal an error
3363 but which should be robust in the unexpected case that an error is signaled.
3364 For backward compatibility, if FORMAT is not a constant string, it
3365 is assumed to be part of BODY, in which case the message format
3366 used is \"Error: %S\"."
3367 (declare (debug t) (indent 1))
3368 (let ((err (make-symbol "err"))
3369 (format (if (and (stringp format) body) format
3370 (prog1 "Error: %S"
3371 (if format (push format body))))))
3372 `(condition-case-unless-debug ,err
3373 ,(macroexp-progn body)
3374 (error (message ,format ,err) nil))))
3375
3376 (defmacro combine-after-change-calls (&rest body)
3377 "Execute BODY, but don't call the after-change functions till the end.
3378 If BODY makes changes in the buffer, they are recorded
3379 and the functions on `after-change-functions' are called several times
3380 when BODY is finished.
3381 The return value is the value of the last form in BODY.
3382
3383 If `before-change-functions' is non-nil, then calls to the after-change
3384 functions can't be deferred, so in that case this macro has no effect.
3385
3386 Do not alter `after-change-functions' or `before-change-functions'
3387 in BODY."
3388 (declare (indent 0) (debug t))
3389 `(unwind-protect
3390 (let ((combine-after-change-calls t))
3391 . ,body)
3392 (combine-after-change-execute)))
3393
3394 (defmacro with-case-table (table &rest body)
3395 "Execute the forms in BODY with TABLE as the current case table.
3396 The value returned is the value of the last form in BODY."
3397 (declare (indent 1) (debug t))
3398 (let ((old-case-table (make-symbol "table"))
3399 (old-buffer (make-symbol "buffer")))
3400 `(let ((,old-case-table (current-case-table))
3401 (,old-buffer (current-buffer)))
3402 (unwind-protect
3403 (progn (set-case-table ,table)
3404 ,@body)
3405 (with-current-buffer ,old-buffer
3406 (set-case-table ,old-case-table))))))
3407 \f
3408 ;;; Matching and match data.
3409
3410 (defvar save-match-data-internal)
3411
3412 ;; We use save-match-data-internal as the local variable because
3413 ;; that works ok in practice (people should not use that variable elsewhere).
3414 ;; We used to use an uninterned symbol; the compiler handles that properly
3415 ;; now, but it generates slower code.
3416 (defmacro save-match-data (&rest body)
3417 "Execute the BODY forms, restoring the global value of the match data.
3418 The value returned is the value of the last form in BODY."
3419 ;; It is better not to use backquote here,
3420 ;; because that makes a bootstrapping problem
3421 ;; if you need to recompile all the Lisp files using interpreted code.
3422 (declare (indent 0) (debug t))
3423 (list 'let
3424 '((save-match-data-internal (match-data)))
3425 (list 'unwind-protect
3426 (cons 'progn body)
3427 ;; It is safe to free (evaporate) markers immediately here,
3428 ;; as Lisp programs should not copy from save-match-data-internal.
3429 '(set-match-data save-match-data-internal 'evaporate))))
3430
3431 (defun match-string (num &optional string)
3432 "Return string of text matched by last search.
3433 NUM specifies which parenthesized expression in the last regexp.
3434 Value is nil if NUMth pair didn't match, or there were less than NUM pairs.
3435 Zero means the entire text matched by the whole regexp or whole string.
3436 STRING should be given if the last search was by `string-match' on STRING.
3437 If STRING is nil, the current buffer should be the same buffer
3438 the search/match was performed in."
3439 (if (match-beginning num)
3440 (if string
3441 (substring string (match-beginning num) (match-end num))
3442 (buffer-substring (match-beginning num) (match-end num)))))
3443
3444 (defun match-string-no-properties (num &optional string)
3445 "Return string of text matched by last search, without text properties.
3446 NUM specifies which parenthesized expression in the last regexp.
3447 Value is nil if NUMth pair didn't match, or there were less than NUM pairs.
3448 Zero means the entire text matched by the whole regexp or whole string.
3449 STRING should be given if the last search was by `string-match' on STRING.
3450 If STRING is nil, the current buffer should be the same buffer
3451 the search/match was performed in."
3452 (if (match-beginning num)
3453 (if string
3454 (substring-no-properties string (match-beginning num)
3455 (match-end num))
3456 (buffer-substring-no-properties (match-beginning num)
3457 (match-end num)))))
3458
3459
3460 (defun match-substitute-replacement (replacement
3461 &optional fixedcase literal string subexp)
3462 "Return REPLACEMENT as it will be inserted by `replace-match'.
3463 In other words, all back-references in the form `\\&' and `\\N'
3464 are substituted with actual strings matched by the last search.
3465 Optional FIXEDCASE, LITERAL, STRING and SUBEXP have the same
3466 meaning as for `replace-match'."
3467 (let ((match (match-string 0 string)))
3468 (save-match-data
3469 (set-match-data (mapcar (lambda (x)
3470 (if (numberp x)
3471 (- x (match-beginning 0))
3472 x))
3473 (match-data t)))
3474 (replace-match replacement fixedcase literal match subexp))))
3475
3476
3477 (defun looking-back (regexp &optional limit greedy)
3478 "Return non-nil if text before point matches regular expression REGEXP.
3479 Like `looking-at' except matches before point, and is slower.
3480 LIMIT if non-nil speeds up the search by specifying a minimum
3481 starting position, to avoid checking matches that would start
3482 before LIMIT.
3483
3484 If GREEDY is non-nil, extend the match backwards as far as
3485 possible, stopping when a single additional previous character
3486 cannot be part of a match for REGEXP. When the match is
3487 extended, its starting position is allowed to occur before
3488 LIMIT.
3489
3490 As a general recommendation, try to avoid using `looking-back'
3491 wherever possible, since it is slow."
3492 (let ((start (point))
3493 (pos
3494 (save-excursion
3495 (and (re-search-backward (concat "\\(?:" regexp "\\)\\=") limit t)
3496 (point)))))
3497 (if (and greedy pos)
3498 (save-restriction
3499 (narrow-to-region (point-min) start)
3500 (while (and (> pos (point-min))
3501 (save-excursion
3502 (goto-char pos)
3503 (backward-char 1)
3504 (looking-at (concat "\\(?:" regexp "\\)\\'"))))
3505 (setq pos (1- pos)))
3506 (save-excursion
3507 (goto-char pos)
3508 (looking-at (concat "\\(?:" regexp "\\)\\'")))))
3509 (not (null pos))))
3510
3511 (defsubst looking-at-p (regexp)
3512 "\
3513 Same as `looking-at' except this function does not change the match data."
3514 (let ((inhibit-changing-match-data t))
3515 (looking-at regexp)))
3516
3517 (defsubst string-match-p (regexp string &optional start)
3518 "\
3519 Same as `string-match' except this function does not change the match data."
3520 (let ((inhibit-changing-match-data t))
3521 (string-match regexp string start)))
3522
3523 (defun subregexp-context-p (regexp pos &optional start)
3524 "Return non-nil if POS is in a normal subregexp context in REGEXP.
3525 A subregexp context is one where a sub-regexp can appear.
3526 A non-subregexp context is for example within brackets, or within a
3527 repetition bounds operator `\\=\\{...\\}', or right after a `\\'.
3528 If START is non-nil, it should be a position in REGEXP, smaller
3529 than POS, and known to be in a subregexp context."
3530 ;; Here's one possible implementation, with the great benefit that it
3531 ;; reuses the regexp-matcher's own parser, so it understands all the
3532 ;; details of the syntax. A disadvantage is that it needs to match the
3533 ;; error string.
3534 (condition-case err
3535 (progn
3536 (string-match (substring regexp (or start 0) pos) "")
3537 t)
3538 (invalid-regexp
3539 (not (member (cadr err) '("Unmatched [ or [^"
3540 "Unmatched \\{"
3541 "Trailing backslash")))))
3542 ;; An alternative implementation:
3543 ;; (defconst re-context-re
3544 ;; (let* ((harmless-ch "[^\\[]")
3545 ;; (harmless-esc "\\\\[^{]")
3546 ;; (class-harmless-ch "[^][]")
3547 ;; (class-lb-harmless "[^]:]")
3548 ;; (class-lb-colon-maybe-charclass ":\\([a-z]+:]\\)?")
3549 ;; (class-lb (concat "\\[\\(" class-lb-harmless
3550 ;; "\\|" class-lb-colon-maybe-charclass "\\)"))
3551 ;; (class
3552 ;; (concat "\\[^?]?"
3553 ;; "\\(" class-harmless-ch
3554 ;; "\\|" class-lb "\\)*"
3555 ;; "\\[?]")) ; special handling for bare [ at end of re
3556 ;; (braces "\\\\{[0-9,]+\\\\}"))
3557 ;; (concat "\\`\\(" harmless-ch "\\|" harmless-esc
3558 ;; "\\|" class "\\|" braces "\\)*\\'"))
3559 ;; "Matches any prefix that corresponds to a normal subregexp context.")
3560 ;; (string-match re-context-re (substring regexp (or start 0) pos))
3561 )
3562 \f
3563 ;;;; split-string
3564
3565 (defconst split-string-default-separators "[ \f\t\n\r\v]+"
3566 "The default value of separators for `split-string'.
3567
3568 A regexp matching strings of whitespace. May be locale-dependent
3569 \(as yet unimplemented). Should not match non-breaking spaces.
3570
3571 Warning: binding this to a different value and using it as default is
3572 likely to have undesired semantics.")
3573
3574 ;; The specification says that if both SEPARATORS and OMIT-NULLS are
3575 ;; defaulted, OMIT-NULLS should be treated as t. Simplifying the logical
3576 ;; expression leads to the equivalent implementation that if SEPARATORS
3577 ;; is defaulted, OMIT-NULLS is treated as t.
3578 (defun split-string (string &optional separators omit-nulls trim)
3579 "Split STRING into substrings bounded by matches for SEPARATORS.
3580
3581 The beginning and end of STRING, and each match for SEPARATORS, are
3582 splitting points. The substrings matching SEPARATORS are removed, and
3583 the substrings between the splitting points are collected as a list,
3584 which is returned.
3585
3586 If SEPARATORS is non-nil, it should be a regular expression matching text
3587 which separates, but is not part of, the substrings. If nil it defaults to
3588 `split-string-default-separators', normally \"[ \\f\\t\\n\\r\\v]+\", and
3589 OMIT-NULLS is forced to t.
3590
3591 If OMIT-NULLS is t, zero-length substrings are omitted from the list (so
3592 that for the default value of SEPARATORS leading and trailing whitespace
3593 are effectively trimmed). If nil, all zero-length substrings are retained,
3594 which correctly parses CSV format, for example.
3595
3596 If TRIM is non-nil, it should be a regular expression to match
3597 text to trim from the beginning and end of each substring. If trimming
3598 makes the substring empty, it is treated as null.
3599
3600 If you want to trim whitespace from the substrings, the reliably correct
3601 way is using TRIM. Making SEPARATORS match that whitespace gives incorrect
3602 results when there is whitespace at the start or end of STRING. If you
3603 see such calls to `split-string', please fix them.
3604
3605 Note that the effect of `(split-string STRING)' is the same as
3606 `(split-string STRING split-string-default-separators t)'. In the rare
3607 case that you wish to retain zero-length substrings when splitting on
3608 whitespace, use `(split-string STRING split-string-default-separators)'.
3609
3610 Modifies the match data; use `save-match-data' if necessary."
3611 (let* ((keep-nulls (not (if separators omit-nulls t)))
3612 (rexp (or separators split-string-default-separators))
3613 (start 0)
3614 this-start this-end
3615 notfirst
3616 (list nil)
3617 (push-one
3618 ;; Push the substring in range THIS-START to THIS-END
3619 ;; onto LIST, trimming it and perhaps discarding it.
3620 (lambda ()
3621 (when trim
3622 ;; Discard the trim from start of this substring.
3623 (let ((tem (string-match trim string this-start)))
3624 (and (eq tem this-start)
3625 (setq this-start (match-end 0)))))
3626
3627 (when (or keep-nulls (< this-start this-end))
3628 (let ((this (substring string this-start this-end)))
3629
3630 ;; Discard the trim from end of this substring.
3631 (when trim
3632 (let ((tem (string-match (concat trim "\\'") this 0)))
3633 (and tem (< tem (length this))
3634 (setq this (substring this 0 tem)))))
3635
3636 ;; Trimming could make it empty; check again.
3637 (when (or keep-nulls (> (length this) 0))
3638 (push this list)))))))
3639
3640 (while (and (string-match rexp string
3641 (if (and notfirst
3642 (= start (match-beginning 0))
3643 (< start (length string)))
3644 (1+ start) start))
3645 (< start (length string)))
3646 (setq notfirst t)
3647 (setq this-start start this-end (match-beginning 0)
3648 start (match-end 0))
3649
3650 (funcall push-one))
3651
3652 ;; Handle the substring at the end of STRING.
3653 (setq this-start start this-end (length string))
3654 (funcall push-one)
3655
3656 (nreverse list)))
3657
3658 (defun combine-and-quote-strings (strings &optional separator)
3659 "Concatenate the STRINGS, adding the SEPARATOR (default \" \").
3660 This tries to quote the strings to avoid ambiguity such that
3661 (split-string-and-unquote (combine-and-quote-strings strs)) == strs
3662 Only some SEPARATORs will work properly."
3663 (let* ((sep (or separator " "))
3664 (re (concat "[\\\"]" "\\|" (regexp-quote sep))))
3665 (mapconcat
3666 (lambda (str)
3667 (if (string-match re str)
3668 (concat "\"" (replace-regexp-in-string "[\\\"]" "\\\\\\&" str) "\"")
3669 str))
3670 strings sep)))
3671
3672 (defun split-string-and-unquote (string &optional separator)
3673 "Split the STRING into a list of strings.
3674 It understands Emacs Lisp quoting within STRING, such that
3675 (split-string-and-unquote (combine-and-quote-strings strs)) == strs
3676 The SEPARATOR regexp defaults to \"\\s-+\"."
3677 (let ((sep (or separator "\\s-+"))
3678 (i (string-match "\"" string)))
3679 (if (null i)
3680 (split-string string sep t) ; no quoting: easy
3681 (append (unless (eq i 0) (split-string (substring string 0 i) sep t))
3682 (let ((rfs (read-from-string string i)))
3683 (cons (car rfs)
3684 (split-string-and-unquote (substring string (cdr rfs))
3685 sep)))))))
3686
3687 \f
3688 ;;;; Replacement in strings.
3689
3690 (defun subst-char-in-string (fromchar tochar string &optional inplace)
3691 "Replace FROMCHAR with TOCHAR in STRING each time it occurs.
3692 Unless optional argument INPLACE is non-nil, return a new string."
3693 (let ((i (length string))
3694 (newstr (if inplace string (copy-sequence string))))
3695 (while (> i 0)
3696 (setq i (1- i))
3697 (if (eq (aref newstr i) fromchar)
3698 (aset newstr i tochar)))
3699 newstr))
3700
3701 (defun replace-regexp-in-string (regexp rep string &optional
3702 fixedcase literal subexp start)
3703 "Replace all matches for REGEXP with REP in STRING.
3704
3705 Return a new string containing the replacements.
3706
3707 Optional arguments FIXEDCASE, LITERAL and SUBEXP are like the
3708 arguments with the same names of function `replace-match'. If START
3709 is non-nil, start replacements at that index in STRING.
3710
3711 REP is either a string used as the NEWTEXT arg of `replace-match' or a
3712 function. If it is a function, it is called with the actual text of each
3713 match, and its value is used as the replacement text. When REP is called,
3714 the match data are the result of matching REGEXP against a substring
3715 of STRING.
3716
3717 To replace only the first match (if any), make REGEXP match up to \\'
3718 and replace a sub-expression, e.g.
3719 (replace-regexp-in-string \"\\\\(foo\\\\).*\\\\'\" \"bar\" \" foo foo\" nil nil 1)
3720 => \" bar foo\""
3721
3722 ;; To avoid excessive consing from multiple matches in long strings,
3723 ;; don't just call `replace-match' continually. Walk down the
3724 ;; string looking for matches of REGEXP and building up a (reversed)
3725 ;; list MATCHES. This comprises segments of STRING which weren't
3726 ;; matched interspersed with replacements for segments that were.
3727 ;; [For a `large' number of replacements it's more efficient to
3728 ;; operate in a temporary buffer; we can't tell from the function's
3729 ;; args whether to choose the buffer-based implementation, though it
3730 ;; might be reasonable to do so for long enough STRING.]
3731 (let ((l (length string))
3732 (start (or start 0))
3733 matches str mb me)
3734 (save-match-data
3735 (while (and (< start l) (string-match regexp string start))
3736 (setq mb (match-beginning 0)
3737 me (match-end 0))
3738 ;; If we matched the empty string, make sure we advance by one char
3739 (when (= me mb) (setq me (min l (1+ mb))))
3740 ;; Generate a replacement for the matched substring.
3741 ;; Operate only on the substring to minimize string consing.
3742 ;; Set up match data for the substring for replacement;
3743 ;; presumably this is likely to be faster than munging the
3744 ;; match data directly in Lisp.
3745 (string-match regexp (setq str (substring string mb me)))
3746 (setq matches
3747 (cons (replace-match (if (stringp rep)
3748 rep
3749 (funcall rep (match-string 0 str)))
3750 fixedcase literal str subexp)
3751 (cons (substring string start mb) ; unmatched prefix
3752 matches)))
3753 (setq start me))
3754 ;; Reconstruct a string from the pieces.
3755 (setq matches (cons (substring string start l) matches)) ; leftover
3756 (apply #'concat (nreverse matches)))))
3757 \f
3758 (defun string-prefix-p (str1 str2 &optional ignore-case)
3759 "Return non-nil if STR1 is a prefix of STR2.
3760 If IGNORE-CASE is non-nil, the comparison is done without paying attention
3761 to case differences."
3762 (eq t (compare-strings str1 nil nil
3763 str2 0 (length str1) ignore-case)))
3764
3765 (defun bidi-string-mark-left-to-right (str)
3766 "Return a string that can be safely inserted in left-to-right text.
3767
3768 Normally, inserting a string with right-to-left (RTL) script into
3769 a buffer may cause some subsequent text to be displayed as part
3770 of the RTL segment (usually this affects punctuation characters).
3771 This function returns a string which displays as STR but forces
3772 subsequent text to be displayed as left-to-right.
3773
3774 If STR contains any RTL character, this function returns a string
3775 consisting of STR followed by an invisible left-to-right mark
3776 \(LRM) character. Otherwise, it returns STR."
3777 (unless (stringp str)
3778 (signal 'wrong-type-argument (list 'stringp str)))
3779 (if (string-match "\\cR" str)
3780 (concat str (propertize (string ?\x200e) 'invisible t))
3781 str))
3782 \f
3783 ;;;; Specifying things to do later.
3784
3785 (defun load-history-regexp (file)
3786 "Form a regexp to find FILE in `load-history'.
3787 FILE, a string, is described in the function `eval-after-load'."
3788 (if (file-name-absolute-p file)
3789 (setq file (file-truename file)))
3790 (concat (if (file-name-absolute-p file) "\\`" "\\(\\`\\|/\\)")
3791 (regexp-quote file)
3792 (if (file-name-extension file)
3793 ""
3794 ;; Note: regexp-opt can't be used here, since we need to call
3795 ;; this before Emacs has been fully started. 2006-05-21
3796 (concat "\\(" (mapconcat 'regexp-quote load-suffixes "\\|") "\\)?"))
3797 "\\(" (mapconcat 'regexp-quote jka-compr-load-suffixes "\\|")
3798 "\\)?\\'"))
3799
3800 (defun load-history-filename-element (file-regexp)
3801 "Get the first elt of `load-history' whose car matches FILE-REGEXP.
3802 Return nil if there isn't one."
3803 (let* ((loads load-history)
3804 (load-elt (and loads (car loads))))
3805 (save-match-data
3806 (while (and loads
3807 (or (null (car load-elt))
3808 (not (string-match file-regexp (car load-elt)))))
3809 (setq loads (cdr loads)
3810 load-elt (and loads (car loads)))))
3811 load-elt))
3812
3813 (put 'eval-after-load 'lisp-indent-function 1)
3814 (defun eval-after-load (file form)
3815 "Arrange that if FILE is loaded, FORM will be run immediately afterwards.
3816 If FILE is already loaded, evaluate FORM right now.
3817 FORM can be an Elisp expression (in which case it's passed to `eval'),
3818 or a function (in which case it's passed to `funcall' with no argument).
3819
3820 If a matching file is loaded again, FORM will be evaluated again.
3821
3822 If FILE is a string, it may be either an absolute or a relative file
3823 name, and may have an extension (e.g. \".el\") or may lack one, and
3824 additionally may or may not have an extension denoting a compressed
3825 format (e.g. \".gz\").
3826
3827 When FILE is absolute, this first converts it to a true name by chasing
3828 symbolic links. Only a file of this name (see next paragraph regarding
3829 extensions) will trigger the evaluation of FORM. When FILE is relative,
3830 a file whose absolute true name ends in FILE will trigger evaluation.
3831
3832 When FILE lacks an extension, a file name with any extension will trigger
3833 evaluation. Otherwise, its extension must match FILE's. A further
3834 extension for a compressed format (e.g. \".gz\") on FILE will not affect
3835 this name matching.
3836
3837 Alternatively, FILE can be a feature (i.e. a symbol), in which case FORM
3838 is evaluated at the end of any file that `provide's this feature.
3839 If the feature is provided when evaluating code not associated with a
3840 file, FORM is evaluated immediately after the provide statement.
3841
3842 Usually FILE is just a library name like \"font-lock\" or a feature name
3843 like 'font-lock.
3844
3845 This function makes or adds to an entry on `after-load-alist'."
3846 (declare (compiler-macro
3847 (lambda (whole)
3848 (if (eq 'quote (car-safe form))
3849 ;; Quote with lambda so the compiler can look inside.
3850 `(eval-after-load ,file (lambda () ,(nth 1 form)))
3851 whole))))
3852 ;; Add this FORM into after-load-alist (regardless of whether we'll be
3853 ;; evaluating it now).
3854 (let* ((regexp-or-feature
3855 (if (stringp file)
3856 (setq file (purecopy (load-history-regexp file)))
3857 file))
3858 (elt (assoc regexp-or-feature after-load-alist))
3859 (func
3860 (if (functionp form) form
3861 ;; Try to use the "current" lexical/dynamic mode for `form'.
3862 (eval `(lambda () ,form) lexical-binding))))
3863 (unless elt
3864 (setq elt (list regexp-or-feature))
3865 (push elt after-load-alist))
3866 ;; Is there an already loaded file whose name (or `provide' name)
3867 ;; matches FILE?
3868 (prog1 (if (if (stringp file)
3869 (load-history-filename-element regexp-or-feature)
3870 (featurep file))
3871 (funcall func))
3872 (let ((delayed-func
3873 (if (not (symbolp regexp-or-feature)) func
3874 ;; For features, the after-load-alist elements get run when
3875 ;; `provide' is called rather than at the end of the file.
3876 ;; So add an indirection to make sure that `func' is really run
3877 ;; "after-load" in case the provide call happens early.
3878 (lambda ()
3879 (if (not load-file-name)
3880 ;; Not being provided from a file, run func right now.
3881 (funcall func)
3882 (let ((lfn load-file-name)
3883 ;; Don't use letrec, because equal (in
3884 ;; add/remove-hook) would get trapped in a cycle.
3885 (fun (make-symbol "eval-after-load-helper")))
3886 (fset fun (lambda (file)
3887 (when (equal file lfn)
3888 (remove-hook 'after-load-functions fun)
3889 (funcall func))))
3890 (add-hook 'after-load-functions fun 'append)))))))
3891 ;; Add FORM to the element unless it's already there.
3892 (unless (member delayed-func (cdr elt))
3893 (nconc elt (list delayed-func)))))))
3894
3895 (defmacro with-eval-after-load (file &rest body)
3896 "Execute BODY after FILE is loaded.
3897 FILE is normally a feature name, but it can also be a file name,
3898 in case that file does not provide any feature."
3899 (declare (indent 1) (debug t))
3900 `(eval-after-load ,file (lambda () ,@body)))
3901
3902 (defvar after-load-functions nil
3903 "Special hook run after loading a file.
3904 Each function there is called with a single argument, the absolute
3905 name of the file just loaded.")
3906
3907 (defun do-after-load-evaluation (abs-file)
3908 "Evaluate all `eval-after-load' forms, if any, for ABS-FILE.
3909 ABS-FILE, a string, should be the absolute true name of a file just loaded.
3910 This function is called directly from the C code."
3911 ;; Run the relevant eval-after-load forms.
3912 (dolist (a-l-element after-load-alist)
3913 (when (and (stringp (car a-l-element))
3914 (string-match-p (car a-l-element) abs-file))
3915 ;; discard the file name regexp
3916 (mapc #'funcall (cdr a-l-element))))
3917 ;; Complain when the user uses obsolete files.
3918 (when (string-match-p "/obsolete/[^/]*\\'" abs-file)
3919 ;; Maybe we should just use display-warning? This seems yucky...
3920 (let* ((file (file-name-nondirectory abs-file))
3921 (msg (format "Package %s is obsolete!"
3922 (substring file 0
3923 (string-match "\\.elc?\\>" file)))))
3924 ;; Cribbed from cl--compiling-file.
3925 (if (and (boundp 'byte-compile--outbuffer)
3926 (bufferp (symbol-value 'byte-compile--outbuffer))
3927 (equal (buffer-name (symbol-value 'byte-compile--outbuffer))
3928 " *Compiler Output*"))
3929 ;; Don't warn about obsolete files using other obsolete files.
3930 (unless (and (stringp byte-compile-current-file)
3931 (string-match-p "/obsolete/[^/]*\\'"
3932 (expand-file-name
3933 byte-compile-current-file
3934 byte-compile-root-dir)))
3935 (byte-compile-log-warning msg))
3936 (run-with-timer 0 nil
3937 (lambda (msg)
3938 (message "%s" msg)) msg))))
3939
3940 ;; Finally, run any other hook.
3941 (run-hook-with-args 'after-load-functions abs-file))
3942
3943 (defun eval-next-after-load (file)
3944 "Read the following input sexp, and run it whenever FILE is loaded.
3945 This makes or adds to an entry on `after-load-alist'.
3946 FILE should be the name of a library, with no directory name."
3947 (declare (obsolete eval-after-load "23.2"))
3948 (eval-after-load file (read)))
3949
3950 \f
3951 (defun display-delayed-warnings ()
3952 "Display delayed warnings from `delayed-warnings-list'.
3953 Used from `delayed-warnings-hook' (which see)."
3954 (dolist (warning (nreverse delayed-warnings-list))
3955 (apply 'display-warning warning))
3956 (setq delayed-warnings-list nil))
3957
3958 (defun collapse-delayed-warnings ()
3959 "Remove duplicates from `delayed-warnings-list'.
3960 Collapse identical adjacent warnings into one (plus count).
3961 Used from `delayed-warnings-hook' (which see)."
3962 (let ((count 1)
3963 collapsed warning)
3964 (while delayed-warnings-list
3965 (setq warning (pop delayed-warnings-list))
3966 (if (equal warning (car delayed-warnings-list))
3967 (setq count (1+ count))
3968 (when (> count 1)
3969 (setcdr warning (cons (format "%s [%d times]" (cadr warning) count)
3970 (cddr warning)))
3971 (setq count 1))
3972 (push warning collapsed)))
3973 (setq delayed-warnings-list (nreverse collapsed))))
3974
3975 ;; At present this is only used for Emacs internals.
3976 ;; Ref http://lists.gnu.org/archive/html/emacs-devel/2012-02/msg00085.html
3977 (defvar delayed-warnings-hook '(collapse-delayed-warnings
3978 display-delayed-warnings)
3979 "Normal hook run to process and display delayed warnings.
3980 By default, this hook contains functions to consolidate the
3981 warnings listed in `delayed-warnings-list', display them, and set
3982 `delayed-warnings-list' back to nil.")
3983
3984 (defun delay-warning (type message &optional level buffer-name)
3985 "Display a delayed warning.
3986 Aside from going through `delayed-warnings-list', this is equivalent
3987 to `display-warning'."
3988 (push (list type message level buffer-name) delayed-warnings-list))
3989
3990 \f
3991 ;;;; invisibility specs
3992
3993 (defun add-to-invisibility-spec (element)
3994 "Add ELEMENT to `buffer-invisibility-spec'.
3995 See documentation for `buffer-invisibility-spec' for the kind of elements
3996 that can be added."
3997 (if (eq buffer-invisibility-spec t)
3998 (setq buffer-invisibility-spec (list t)))
3999 (setq buffer-invisibility-spec
4000 (cons element buffer-invisibility-spec)))
4001
4002 (defun remove-from-invisibility-spec (element)
4003 "Remove ELEMENT from `buffer-invisibility-spec'."
4004 (if (consp buffer-invisibility-spec)
4005 (setq buffer-invisibility-spec
4006 (delete element buffer-invisibility-spec))))
4007 \f
4008 ;;;; Syntax tables.
4009
4010 (defmacro with-syntax-table (table &rest body)
4011 "Evaluate BODY with syntax table of current buffer set to TABLE.
4012 The syntax table of the current buffer is saved, BODY is evaluated, and the
4013 saved table is restored, even in case of an abnormal exit.
4014 Value is what BODY returns."
4015 (declare (debug t) (indent 1))
4016 (let ((old-table (make-symbol "table"))
4017 (old-buffer (make-symbol "buffer")))
4018 `(let ((,old-table (syntax-table))
4019 (,old-buffer (current-buffer)))
4020 (unwind-protect
4021 (progn
4022 (set-syntax-table ,table)
4023 ,@body)
4024 (save-current-buffer
4025 (set-buffer ,old-buffer)
4026 (set-syntax-table ,old-table))))))
4027
4028 (defun make-syntax-table (&optional oldtable)
4029 "Return a new syntax table.
4030 Create a syntax table which inherits from OLDTABLE (if non-nil) or
4031 from `standard-syntax-table' otherwise."
4032 (let ((table (make-char-table 'syntax-table nil)))
4033 (set-char-table-parent table (or oldtable (standard-syntax-table)))
4034 table))
4035
4036 (defun syntax-after (pos)
4037 "Return the raw syntax descriptor for the char after POS.
4038 If POS is outside the buffer's accessible portion, return nil."
4039 (unless (or (< pos (point-min)) (>= pos (point-max)))
4040 (let ((st (if parse-sexp-lookup-properties
4041 (get-char-property pos 'syntax-table))))
4042 (if (consp st) st
4043 (aref (or st (syntax-table)) (char-after pos))))))
4044
4045 (defun syntax-class (syntax)
4046 "Return the code for the syntax class described by SYNTAX.
4047
4048 SYNTAX should be a raw syntax descriptor; the return value is a
4049 integer which encodes the corresponding syntax class. See Info
4050 node `(elisp)Syntax Table Internals' for a list of codes.
4051
4052 If SYNTAX is nil, return nil."
4053 (and syntax (logand (car syntax) 65535)))
4054 \f
4055 ;; Utility motion commands
4056
4057 ;; Whitespace
4058
4059 (defun forward-whitespace (arg)
4060 "Move point to the end of the next sequence of whitespace chars.
4061 Each such sequence may be a single newline, or a sequence of
4062 consecutive space and/or tab characters.
4063 With prefix argument ARG, do it ARG times if positive, or move
4064 backwards ARG times if negative."
4065 (interactive "^p")
4066 (if (natnump arg)
4067 (re-search-forward "[ \t]+\\|\n" nil 'move arg)
4068 (while (< arg 0)
4069 (if (re-search-backward "[ \t]+\\|\n" nil 'move)
4070 (or (eq (char-after (match-beginning 0)) ?\n)
4071 (skip-chars-backward " \t")))
4072 (setq arg (1+ arg)))))
4073
4074 ;; Symbols
4075
4076 (defun forward-symbol (arg)
4077 "Move point to the next position that is the end of a symbol.
4078 A symbol is any sequence of characters that are in either the
4079 word constituent or symbol constituent syntax class.
4080 With prefix argument ARG, do it ARG times if positive, or move
4081 backwards ARG times if negative."
4082 (interactive "^p")
4083 (if (natnump arg)
4084 (re-search-forward "\\(\\sw\\|\\s_\\)+" nil 'move arg)
4085 (while (< arg 0)
4086 (if (re-search-backward "\\(\\sw\\|\\s_\\)+" nil 'move)
4087 (skip-syntax-backward "w_"))
4088 (setq arg (1+ arg)))))
4089
4090 ;; Syntax blocks
4091
4092 (defun forward-same-syntax (&optional arg)
4093 "Move point past all characters with the same syntax class.
4094 With prefix argument ARG, do it ARG times if positive, or move
4095 backwards ARG times if negative."
4096 (interactive "^p")
4097 (or arg (setq arg 1))
4098 (while (< arg 0)
4099 (skip-syntax-backward
4100 (char-to-string (char-syntax (char-before))))
4101 (setq arg (1+ arg)))
4102 (while (> arg 0)
4103 (skip-syntax-forward (char-to-string (char-syntax (char-after))))
4104 (setq arg (1- arg))))
4105
4106 \f
4107 ;;;; Text clones
4108
4109 (defvar text-clone--maintaining nil)
4110
4111 (defun text-clone--maintain (ol1 after beg end &optional _len)
4112 "Propagate the changes made under the overlay OL1 to the other clones.
4113 This is used on the `modification-hooks' property of text clones."
4114 (when (and after (not undo-in-progress)
4115 (not text-clone--maintaining)
4116 (overlay-start ol1))
4117 (let ((margin (if (overlay-get ol1 'text-clone-spreadp) 1 0)))
4118 (setq beg (max beg (+ (overlay-start ol1) margin)))
4119 (setq end (min end (- (overlay-end ol1) margin)))
4120 (when (<= beg end)
4121 (save-excursion
4122 (when (overlay-get ol1 'text-clone-syntax)
4123 ;; Check content of the clone's text.
4124 (let ((cbeg (+ (overlay-start ol1) margin))
4125 (cend (- (overlay-end ol1) margin)))
4126 (goto-char cbeg)
4127 (save-match-data
4128 (if (not (re-search-forward
4129 (overlay-get ol1 'text-clone-syntax) cend t))
4130 ;; Mark the overlay for deletion.
4131 (setq end cbeg)
4132 (when (< (match-end 0) cend)
4133 ;; Shrink the clone at its end.
4134 (setq end (min end (match-end 0)))
4135 (move-overlay ol1 (overlay-start ol1)
4136 (+ (match-end 0) margin)))
4137 (when (> (match-beginning 0) cbeg)
4138 ;; Shrink the clone at its beginning.
4139 (setq beg (max (match-beginning 0) beg))
4140 (move-overlay ol1 (- (match-beginning 0) margin)
4141 (overlay-end ol1)))))))
4142 ;; Now go ahead and update the clones.
4143 (let ((head (- beg (overlay-start ol1)))
4144 (tail (- (overlay-end ol1) end))
4145 (str (buffer-substring beg end))
4146 (nothing-left t)
4147 (text-clone--maintaining t))
4148 (dolist (ol2 (overlay-get ol1 'text-clones))
4149 (let ((oe (overlay-end ol2)))
4150 (unless (or (eq ol1 ol2) (null oe))
4151 (setq nothing-left nil)
4152 (let ((mod-beg (+ (overlay-start ol2) head)))
4153 ;;(overlay-put ol2 'modification-hooks nil)
4154 (goto-char (- (overlay-end ol2) tail))
4155 (unless (> mod-beg (point))
4156 (save-excursion (insert str))
4157 (delete-region mod-beg (point)))
4158 ;;(overlay-put ol2 'modification-hooks '(text-clone--maintain))
4159 ))))
4160 (if nothing-left (delete-overlay ol1))))))))
4161
4162 (defun text-clone-create (start end &optional spreadp syntax)
4163 "Create a text clone of START...END at point.
4164 Text clones are chunks of text that are automatically kept identical:
4165 changes done to one of the clones will be immediately propagated to the other.
4166
4167 The buffer's content at point is assumed to be already identical to
4168 the one between START and END.
4169 If SYNTAX is provided it's a regexp that describes the possible text of
4170 the clones; the clone will be shrunk or killed if necessary to ensure that
4171 its text matches the regexp.
4172 If SPREADP is non-nil it indicates that text inserted before/after the
4173 clone should be incorporated in the clone."
4174 ;; To deal with SPREADP we can either use an overlay with `nil t' along
4175 ;; with insert-(behind|in-front-of)-hooks or use a slightly larger overlay
4176 ;; (with a one-char margin at each end) with `t nil'.
4177 ;; We opted for a larger overlay because it behaves better in the case
4178 ;; where the clone is reduced to the empty string (we want the overlay to
4179 ;; stay when the clone's content is the empty string and we want to use
4180 ;; `evaporate' to make sure those overlays get deleted when needed).
4181 ;;
4182 (let* ((pt-end (+ (point) (- end start)))
4183 (start-margin (if (or (not spreadp) (bobp) (<= start (point-min)))
4184 0 1))
4185 (end-margin (if (or (not spreadp)
4186 (>= pt-end (point-max))
4187 (>= start (point-max)))
4188 0 1))
4189 ;; FIXME: Reuse overlays at point to extend dups!
4190 (ol1 (make-overlay (- start start-margin) (+ end end-margin) nil t))
4191 (ol2 (make-overlay (- (point) start-margin) (+ pt-end end-margin) nil t))
4192 (dups (list ol1 ol2)))
4193 (overlay-put ol1 'modification-hooks '(text-clone--maintain))
4194 (when spreadp (overlay-put ol1 'text-clone-spreadp t))
4195 (when syntax (overlay-put ol1 'text-clone-syntax syntax))
4196 ;;(overlay-put ol1 'face 'underline)
4197 (overlay-put ol1 'evaporate t)
4198 (overlay-put ol1 'text-clones dups)
4199 ;;
4200 (overlay-put ol2 'modification-hooks '(text-clone--maintain))
4201 (when spreadp (overlay-put ol2 'text-clone-spreadp t))
4202 (when syntax (overlay-put ol2 'text-clone-syntax syntax))
4203 ;;(overlay-put ol2 'face 'underline)
4204 (overlay-put ol2 'evaporate t)
4205 (overlay-put ol2 'text-clones dups)))
4206 \f
4207 ;;;; Mail user agents.
4208
4209 ;; Here we include just enough for other packages to be able
4210 ;; to define them.
4211
4212 (defun define-mail-user-agent (symbol composefunc sendfunc
4213 &optional abortfunc hookvar)
4214 "Define a symbol to identify a mail-sending package for `mail-user-agent'.
4215
4216 SYMBOL can be any Lisp symbol. Its function definition and/or
4217 value as a variable do not matter for this usage; we use only certain
4218 properties on its property list, to encode the rest of the arguments.
4219
4220 COMPOSEFUNC is program callable function that composes an outgoing
4221 mail message buffer. This function should set up the basics of the
4222 buffer without requiring user interaction. It should populate the
4223 standard mail headers, leaving the `to:' and `subject:' headers blank
4224 by default.
4225
4226 COMPOSEFUNC should accept several optional arguments--the same
4227 arguments that `compose-mail' takes. See that function's documentation.
4228
4229 SENDFUNC is the command a user would run to send the message.
4230
4231 Optional ABORTFUNC is the command a user would run to abort the
4232 message. For mail packages that don't have a separate abort function,
4233 this can be `kill-buffer' (the equivalent of omitting this argument).
4234
4235 Optional HOOKVAR is a hook variable that gets run before the message
4236 is actually sent. Callers that use the `mail-user-agent' may
4237 install a hook function temporarily on this hook variable.
4238 If HOOKVAR is nil, `mail-send-hook' is used.
4239
4240 The properties used on SYMBOL are `composefunc', `sendfunc',
4241 `abortfunc', and `hookvar'."
4242 (put symbol 'composefunc composefunc)
4243 (put symbol 'sendfunc sendfunc)
4244 (put symbol 'abortfunc (or abortfunc 'kill-buffer))
4245 (put symbol 'hookvar (or hookvar 'mail-send-hook)))
4246 \f
4247 (defvar called-interactively-p-functions nil
4248 "Special hook called to skip special frames in `called-interactively-p'.
4249 The functions are called with 3 arguments: (I FRAME1 FRAME2),
4250 where FRAME1 is a \"current frame\", FRAME2 is the next frame,
4251 I is the index of the frame after FRAME2. It should return nil
4252 if those frames don't seem special and otherwise, it should return
4253 the number of frames to skip (minus 1).")
4254
4255 (defconst internal--call-interactively (symbol-function 'call-interactively))
4256
4257 (defun called-interactively-p (&optional kind)
4258 "Return t if the containing function was called by `call-interactively'.
4259 If KIND is `interactive', then only return t if the call was made
4260 interactively by the user, i.e. not in `noninteractive' mode nor
4261 when `executing-kbd-macro'.
4262 If KIND is `any', on the other hand, it will return t for any kind of
4263 interactive call, including being called as the binding of a key or
4264 from a keyboard macro, even in `noninteractive' mode.
4265
4266 This function is very brittle, it may fail to return the intended result when
4267 the code is debugged, advised, or instrumented in some form. Some macros and
4268 special forms (such as `condition-case') may also sometimes wrap their bodies
4269 in a `lambda', so any call to `called-interactively-p' from those bodies will
4270 indicate whether that lambda (rather than the surrounding function) was called
4271 interactively.
4272
4273 Instead of using this function, it is cleaner and more reliable to give your
4274 function an extra optional argument whose `interactive' spec specifies
4275 non-nil unconditionally (\"p\" is a good way to do this), or via
4276 \(not (or executing-kbd-macro noninteractive)).
4277
4278 The only known proper use of `interactive' for KIND is in deciding
4279 whether to display a helpful message, or how to display it. If you're
4280 thinking of using it for any other purpose, it is quite likely that
4281 you're making a mistake. Think: what do you want to do when the
4282 command is called from a keyboard macro?"
4283 (declare (advertised-calling-convention (kind) "23.1"))
4284 (when (not (and (eq kind 'interactive)
4285 (or executing-kbd-macro noninteractive)))
4286 (let* ((i 1) ;; 0 is the called-interactively-p frame.
4287 frame nextframe
4288 (get-next-frame
4289 (lambda ()
4290 (setq frame nextframe)
4291 (setq nextframe (backtrace-frame i 'called-interactively-p))
4292 ;; (message "Frame %d = %S" i nextframe)
4293 (setq i (1+ i)))))
4294 (funcall get-next-frame) ;; Get the first frame.
4295 (while
4296 ;; FIXME: The edebug and advice handling should be made modular and
4297 ;; provided directly by edebug.el and nadvice.el.
4298 (progn
4299 ;; frame =(backtrace-frame i-2)
4300 ;; nextframe=(backtrace-frame i-1)
4301 (funcall get-next-frame)
4302 ;; `pcase' would be a fairly good fit here, but it sometimes moves
4303 ;; branches within local functions, which then messes up the
4304 ;; `backtrace-frame' data we get,
4305 (or
4306 ;; Skip special forms (from non-compiled code).
4307 (and frame (null (car frame)))
4308 ;; Skip also `interactive-p' (because we don't want to know if
4309 ;; interactive-p was called interactively but if it's caller was)
4310 ;; and `byte-code' (idem; this appears in subexpressions of things
4311 ;; like condition-case, which are wrapped in a separate bytecode
4312 ;; chunk).
4313 ;; FIXME: For lexical-binding code, this is much worse,
4314 ;; because the frames look like "byte-code -> funcall -> #[...]",
4315 ;; which is not a reliable signature.
4316 (memq (nth 1 frame) '(interactive-p 'byte-code))
4317 ;; Skip package-specific stack-frames.
4318 (let ((skip (run-hook-with-args-until-success
4319 'called-interactively-p-functions
4320 i frame nextframe)))
4321 (pcase skip
4322 (`nil nil)
4323 (`0 t)
4324 (_ (setq i (+ i skip -1)) (funcall get-next-frame)))))))
4325 ;; Now `frame' should be "the function from which we were called".
4326 (pcase (cons frame nextframe)
4327 ;; No subr calls `interactive-p', so we can rule that out.
4328 (`((,_ ,(pred (lambda (f) (subrp (indirect-function f)))) . ,_) . ,_) nil)
4329 ;; In case #<subr call-interactively> without going through the
4330 ;; `call-interactively' symbol (bug#3984).
4331 (`(,_ . (t ,(pred (eq internal--call-interactively)) . ,_)) t)
4332 (`(,_ . (t call-interactively . ,_)) t)))))
4333
4334 (defun interactive-p ()
4335 "Return t if the containing function was run directly by user input.
4336 This means that the function was called with `call-interactively'
4337 \(which includes being called as the binding of a key)
4338 and input is currently coming from the keyboard (not a keyboard macro),
4339 and Emacs is not running in batch mode (`noninteractive' is nil).
4340
4341 The only known proper use of `interactive-p' is in deciding whether to
4342 display a helpful message, or how to display it. If you're thinking
4343 of using it for any other purpose, it is quite likely that you're
4344 making a mistake. Think: what do you want to do when the command is
4345 called from a keyboard macro or in batch mode?
4346
4347 To test whether your function was called with `call-interactively',
4348 either (i) add an extra optional argument and give it an `interactive'
4349 spec that specifies non-nil unconditionally (such as \"p\"); or (ii)
4350 use `called-interactively-p'."
4351 (declare (obsolete called-interactively-p "23.2"))
4352 (called-interactively-p 'interactive))
4353
4354 (defun internal-push-keymap (keymap symbol)
4355 (let ((map (symbol-value symbol)))
4356 (unless (memq keymap map)
4357 (unless (memq 'add-keymap-witness (symbol-value symbol))
4358 (setq map (make-composed-keymap nil (symbol-value symbol)))
4359 (push 'add-keymap-witness (cdr map))
4360 (set symbol map))
4361 (push keymap (cdr map)))))
4362
4363 (defun internal-pop-keymap (keymap symbol)
4364 (let ((map (symbol-value symbol)))
4365 (when (memq keymap map)
4366 (setf (cdr map) (delq keymap (cdr map))))
4367 (let ((tail (cddr map)))
4368 (and (or (null tail) (keymapp tail))
4369 (eq 'add-keymap-witness (nth 1 map))
4370 (set symbol tail)))))
4371
4372 (defun set-temporary-overlay-map (map &optional keep-pred on-exit)
4373 "Set MAP as a temporary keymap taking precedence over most other keymaps.
4374 Note that this does NOT take precedence over the \"overriding\" maps
4375 `overriding-terminal-local-map' and `overriding-local-map' (or the
4376 `keymap' text property). Unlike those maps, if no match for a key is
4377 found in MAP, the normal key lookup sequence then continues.
4378
4379 Normally, MAP is used only once. If the optional argument
4380 KEEP-PRED is t, MAP stays active if a key from MAP is used.
4381 KEEP-PRED can also be a function of no arguments: if it returns
4382 non-nil then MAP stays active.
4383
4384 Optional ON-EXIT argument is a function that is called after the
4385 deactivation of MAP."
4386 (let ((clearfun (make-symbol "clear-temporary-overlay-map")))
4387 ;; Don't use letrec, because equal (in add/remove-hook) would get trapped
4388 ;; in a cycle.
4389 (fset clearfun
4390 (lambda ()
4391 ;; FIXME: Handle the case of multiple temporary-overlay-maps
4392 ;; E.g. if isearch and C-u both use temporary-overlay-maps, Then
4393 ;; the lifetime of the C-u should be nested within the isearch
4394 ;; overlay, so the pre-command-hook of isearch should be
4395 ;; suspended during the C-u one so we don't exit isearch just
4396 ;; because we hit 1 after C-u and that 1 exits isearch whereas it
4397 ;; doesn't exit C-u.
4398 (with-demoted-errors "set-temporary-overlay-map PCH: %S"
4399 (unless (cond ((null keep-pred) nil)
4400 ((eq t keep-pred)
4401 (eq this-command
4402 (lookup-key map (this-command-keys-vector))))
4403 (t (funcall keep-pred)))
4404 (internal-pop-keymap map 'overriding-terminal-local-map)
4405 (remove-hook 'pre-command-hook clearfun)
4406 (when on-exit (funcall on-exit))))))
4407 (add-hook 'pre-command-hook clearfun)
4408 (internal-push-keymap map 'overriding-terminal-local-map)))
4409
4410 ;;;; Progress reporters.
4411
4412 ;; Progress reporter has the following structure:
4413 ;;
4414 ;; (NEXT-UPDATE-VALUE . [NEXT-UPDATE-TIME
4415 ;; MIN-VALUE
4416 ;; MAX-VALUE
4417 ;; MESSAGE
4418 ;; MIN-CHANGE
4419 ;; MIN-TIME])
4420 ;;
4421 ;; This weirdness is for optimization reasons: we want
4422 ;; `progress-reporter-update' to be as fast as possible, so
4423 ;; `(car reporter)' is better than `(aref reporter 0)'.
4424 ;;
4425 ;; NEXT-UPDATE-TIME is a float. While `float-time' loses a couple
4426 ;; digits of precision, it doesn't really matter here. On the other
4427 ;; hand, it greatly simplifies the code.
4428
4429 (defsubst progress-reporter-update (reporter &optional value)
4430 "Report progress of an operation in the echo area.
4431 REPORTER should be the result of a call to `make-progress-reporter'.
4432
4433 If REPORTER is a numerical progress reporter---i.e. if it was
4434 made using non-nil MIN-VALUE and MAX-VALUE arguments to
4435 `make-progress-reporter'---then VALUE should be a number between
4436 MIN-VALUE and MAX-VALUE.
4437
4438 If REPORTER is a non-numerical reporter, VALUE should be nil.
4439
4440 This function is relatively inexpensive. If the change since
4441 last update is too small or insufficient time has passed, it does
4442 nothing."
4443 (when (or (not (numberp value)) ; For pulsing reporter
4444 (>= value (car reporter))) ; For numerical reporter
4445 (progress-reporter-do-update reporter value)))
4446
4447 (defun make-progress-reporter (message &optional min-value max-value
4448 current-value min-change min-time)
4449 "Return progress reporter object for use with `progress-reporter-update'.
4450
4451 MESSAGE is shown in the echo area, with a status indicator
4452 appended to the end. When you call `progress-reporter-done', the
4453 word \"done\" is printed after the MESSAGE. You can change the
4454 MESSAGE of an existing progress reporter by calling
4455 `progress-reporter-force-update'.
4456
4457 MIN-VALUE and MAX-VALUE, if non-nil, are starting (0% complete)
4458 and final (100% complete) states of operation; the latter should
4459 be larger. In this case, the status message shows the percentage
4460 progress.
4461
4462 If MIN-VALUE and/or MAX-VALUE is omitted or nil, the status
4463 message shows a \"spinning\", non-numeric indicator.
4464
4465 Optional CURRENT-VALUE is the initial progress; the default is
4466 MIN-VALUE.
4467 Optional MIN-CHANGE is the minimal change in percents to report;
4468 the default is 1%.
4469 CURRENT-VALUE and MIN-CHANGE do not have any effect if MIN-VALUE
4470 and/or MAX-VALUE are nil.
4471
4472 Optional MIN-TIME specifies the minimum interval time between
4473 echo area updates (default is 0.2 seconds.) If the function
4474 `float-time' is not present, time is not tracked at all. If the
4475 OS is not capable of measuring fractions of seconds, this
4476 parameter is effectively rounded up."
4477 (when (string-match "[[:alnum:]]\\'" message)
4478 (setq message (concat message "...")))
4479 (unless min-time
4480 (setq min-time 0.2))
4481 (let ((reporter
4482 ;; Force a call to `message' now
4483 (cons (or min-value 0)
4484 (vector (if (and (fboundp 'float-time)
4485 (>= min-time 0.02))
4486 (float-time) nil)
4487 min-value
4488 max-value
4489 message
4490 (if min-change (max (min min-change 50) 1) 1)
4491 min-time))))
4492 (progress-reporter-update reporter (or current-value min-value))
4493 reporter))
4494
4495 (defun progress-reporter-force-update (reporter &optional value new-message)
4496 "Report progress of an operation in the echo area unconditionally.
4497
4498 The first two arguments are the same as in `progress-reporter-update'.
4499 NEW-MESSAGE, if non-nil, sets a new message for the reporter."
4500 (let ((parameters (cdr reporter)))
4501 (when new-message
4502 (aset parameters 3 new-message))
4503 (when (aref parameters 0)
4504 (aset parameters 0 (float-time)))
4505 (progress-reporter-do-update reporter value)))
4506
4507 (defvar progress-reporter--pulse-characters ["-" "\\" "|" "/"]
4508 "Characters to use for pulsing progress reporters.")
4509
4510 (defun progress-reporter-do-update (reporter value)
4511 (let* ((parameters (cdr reporter))
4512 (update-time (aref parameters 0))
4513 (min-value (aref parameters 1))
4514 (max-value (aref parameters 2))
4515 (text (aref parameters 3))
4516 (current-time (float-time))
4517 (enough-time-passed
4518 ;; See if enough time has passed since the last update.
4519 (or (not update-time)
4520 (when (>= current-time update-time)
4521 ;; Calculate time for the next update
4522 (aset parameters 0 (+ update-time (aref parameters 5)))))))
4523 (cond ((and min-value max-value)
4524 ;; Numerical indicator
4525 (let* ((one-percent (/ (- max-value min-value) 100.0))
4526 (percentage (if (= max-value min-value)
4527 0
4528 (truncate (/ (- value min-value)
4529 one-percent)))))
4530 ;; Calculate NEXT-UPDATE-VALUE. If we are not printing
4531 ;; message because not enough time has passed, use 1
4532 ;; instead of MIN-CHANGE. This makes delays between echo
4533 ;; area updates closer to MIN-TIME.
4534 (setcar reporter
4535 (min (+ min-value (* (+ percentage
4536 (if enough-time-passed
4537 ;; MIN-CHANGE
4538 (aref parameters 4)
4539 1))
4540 one-percent))
4541 max-value))
4542 (when (integerp value)
4543 (setcar reporter (ceiling (car reporter))))
4544 ;; Only print message if enough time has passed
4545 (when enough-time-passed
4546 (if (> percentage 0)
4547 (message "%s%d%%" text percentage)
4548 (message "%s" text)))))
4549 ;; Pulsing indicator
4550 (enough-time-passed
4551 (let ((index (mod (1+ (car reporter)) 4))
4552 (message-log-max nil))
4553 (setcar reporter index)
4554 (message "%s %s"
4555 text
4556 (aref progress-reporter--pulse-characters
4557 index)))))))
4558
4559 (defun progress-reporter-done (reporter)
4560 "Print reporter's message followed by word \"done\" in echo area."
4561 (message "%sdone" (aref (cdr reporter) 3)))
4562
4563 (defmacro dotimes-with-progress-reporter (spec message &rest body)
4564 "Loop a certain number of times and report progress in the echo area.
4565 Evaluate BODY with VAR bound to successive integers running from
4566 0, inclusive, to COUNT, exclusive. Then evaluate RESULT to get
4567 the return value (nil if RESULT is omitted).
4568
4569 At each iteration MESSAGE followed by progress percentage is
4570 printed in the echo area. After the loop is finished, MESSAGE
4571 followed by word \"done\" is printed. This macro is a
4572 convenience wrapper around `make-progress-reporter' and friends.
4573
4574 \(fn (VAR COUNT [RESULT]) MESSAGE BODY...)"
4575 (declare (indent 2) (debug ((symbolp form &optional form) form body)))
4576 (let ((temp (make-symbol "--dotimes-temp--"))
4577 (temp2 (make-symbol "--dotimes-temp2--"))
4578 (start 0)
4579 (end (nth 1 spec)))
4580 `(let ((,temp ,end)
4581 (,(car spec) ,start)
4582 (,temp2 (make-progress-reporter ,message ,start ,end)))
4583 (while (< ,(car spec) ,temp)
4584 ,@body
4585 (progress-reporter-update ,temp2
4586 (setq ,(car spec) (1+ ,(car spec)))))
4587 (progress-reporter-done ,temp2)
4588 nil ,@(cdr (cdr spec)))))
4589
4590 \f
4591 ;;;; Comparing version strings.
4592
4593 (defconst version-separator "."
4594 "Specify the string used to separate the version elements.
4595
4596 Usually the separator is \".\", but it can be any other string.")
4597
4598
4599 (defconst version-regexp-alist
4600 '(("^[-_+ ]?alpha$" . -3)
4601 ("^[-_+]$" . -3) ; treat "1.2.3-20050920" and "1.2-3" as alpha releases
4602 ("^[-_+ ]cvs$" . -3) ; treat "1.2.3-CVS" as alpha release
4603 ("^[-_+ ]?beta$" . -2)
4604 ("^[-_+ ]?\\(pre\\|rcc\\)$" . -1))
4605 "Specify association between non-numeric version and its priority.
4606
4607 This association is used to handle version string like \"1.0pre2\",
4608 \"0.9alpha1\", etc. It's used by `version-to-list' (which see) to convert the
4609 non-numeric part of a version string to an integer. For example:
4610
4611 String Version Integer List Version
4612 \"1.0pre2\" (1 0 -1 2)
4613 \"1.0PRE2\" (1 0 -1 2)
4614 \"22.8beta3\" (22 8 -2 3)
4615 \"22.8 Beta3\" (22 8 -2 3)
4616 \"0.9alpha1\" (0 9 -3 1)
4617 \"0.9AlphA1\" (0 9 -3 1)
4618 \"0.9 alpha\" (0 9 -3)
4619
4620 Each element has the following form:
4621
4622 (REGEXP . PRIORITY)
4623
4624 Where:
4625
4626 REGEXP regexp used to match non-numeric part of a version string.
4627 It should begin with the `^' anchor and end with a `$' to
4628 prevent false hits. Letter-case is ignored while matching
4629 REGEXP.
4630
4631 PRIORITY a negative integer specifying non-numeric priority of REGEXP.")
4632
4633
4634 (defun version-to-list (ver)
4635 "Convert version string VER into a list of integers.
4636
4637 The version syntax is given by the following EBNF:
4638
4639 VERSION ::= NUMBER ( SEPARATOR NUMBER )*.
4640
4641 NUMBER ::= (0|1|2|3|4|5|6|7|8|9)+.
4642
4643 SEPARATOR ::= `version-separator' (which see)
4644 | `version-regexp-alist' (which see).
4645
4646 The NUMBER part is optional if SEPARATOR is a match for an element
4647 in `version-regexp-alist'.
4648
4649 Examples of valid version syntax:
4650
4651 1.0pre2 1.0.7.5 22.8beta3 0.9alpha1 6.9.30Beta
4652
4653 Examples of invalid version syntax:
4654
4655 1.0prepre2 1.0..7.5 22.8X3 alpha3.2 .5
4656
4657 Examples of version conversion:
4658
4659 Version String Version as a List of Integers
4660 \"1.0.7.5\" (1 0 7 5)
4661 \"1.0pre2\" (1 0 -1 2)
4662 \"1.0PRE2\" (1 0 -1 2)
4663 \"22.8beta3\" (22 8 -2 3)
4664 \"22.8Beta3\" (22 8 -2 3)
4665 \"0.9alpha1\" (0 9 -3 1)
4666 \"0.9AlphA1\" (0 9 -3 1)
4667 \"0.9alpha\" (0 9 -3)
4668
4669 See documentation for `version-separator' and `version-regexp-alist'."
4670 (or (and (stringp ver) (> (length ver) 0))
4671 (error "Invalid version string: '%s'" ver))
4672 ;; Change .x.y to 0.x.y
4673 (if (and (>= (length ver) (length version-separator))
4674 (string-equal (substring ver 0 (length version-separator))
4675 version-separator))
4676 (setq ver (concat "0" ver)))
4677 (save-match-data
4678 (let ((i 0)
4679 (case-fold-search t) ; ignore case in matching
4680 lst s al)
4681 (while (and (setq s (string-match "[0-9]+" ver i))
4682 (= s i))
4683 ;; handle numeric part
4684 (setq lst (cons (string-to-number (substring ver i (match-end 0)))
4685 lst)
4686 i (match-end 0))
4687 ;; handle non-numeric part
4688 (when (and (setq s (string-match "[^0-9]+" ver i))
4689 (= s i))
4690 (setq s (substring ver i (match-end 0))
4691 i (match-end 0))
4692 ;; handle alpha, beta, pre, etc. separator
4693 (unless (string= s version-separator)
4694 (setq al version-regexp-alist)
4695 (while (and al (not (string-match (caar al) s)))
4696 (setq al (cdr al)))
4697 (cond (al
4698 (push (cdar al) lst))
4699 ;; Convert 22.3a to 22.3.1, 22.3b to 22.3.2, etc.
4700 ((string-match "^[-_+ ]?\\([a-zA-Z]\\)$" s)
4701 (push (- (aref (downcase (match-string 1 s)) 0) ?a -1)
4702 lst))
4703 (t (error "Invalid version syntax: '%s'" ver))))))
4704 (if (null lst)
4705 (error "Invalid version syntax: '%s'" ver)
4706 (nreverse lst)))))
4707
4708
4709 (defun version-list-< (l1 l2)
4710 "Return t if L1, a list specification of a version, is lower than L2.
4711
4712 Note that a version specified by the list (1) is equal to (1 0),
4713 \(1 0 0), (1 0 0 0), etc. That is, the trailing zeros are insignificant.
4714 Also, a version given by the list (1) is higher than (1 -1), which in
4715 turn is higher than (1 -2), which is higher than (1 -3)."
4716 (while (and l1 l2 (= (car l1) (car l2)))
4717 (setq l1 (cdr l1)
4718 l2 (cdr l2)))
4719 (cond
4720 ;; l1 not null and l2 not null
4721 ((and l1 l2) (< (car l1) (car l2)))
4722 ;; l1 null and l2 null ==> l1 length = l2 length
4723 ((and (null l1) (null l2)) nil)
4724 ;; l1 not null and l2 null ==> l1 length > l2 length
4725 (l1 (< (version-list-not-zero l1) 0))
4726 ;; l1 null and l2 not null ==> l2 length > l1 length
4727 (t (< 0 (version-list-not-zero l2)))))
4728
4729
4730 (defun version-list-= (l1 l2)
4731 "Return t if L1, a list specification of a version, is equal to L2.
4732
4733 Note that a version specified by the list (1) is equal to (1 0),
4734 \(1 0 0), (1 0 0 0), etc. That is, the trailing zeros are insignificant.
4735 Also, a version given by the list (1) is higher than (1 -1), which in
4736 turn is higher than (1 -2), which is higher than (1 -3)."
4737 (while (and l1 l2 (= (car l1) (car l2)))
4738 (setq l1 (cdr l1)
4739 l2 (cdr l2)))
4740 (cond
4741 ;; l1 not null and l2 not null
4742 ((and l1 l2) nil)
4743 ;; l1 null and l2 null ==> l1 length = l2 length
4744 ((and (null l1) (null l2)))
4745 ;; l1 not null and l2 null ==> l1 length > l2 length
4746 (l1 (zerop (version-list-not-zero l1)))
4747 ;; l1 null and l2 not null ==> l2 length > l1 length
4748 (t (zerop (version-list-not-zero l2)))))
4749
4750
4751 (defun version-list-<= (l1 l2)
4752 "Return t if L1, a list specification of a version, is lower or equal to L2.
4753
4754 Note that integer list (1) is equal to (1 0), (1 0 0), (1 0 0 0),
4755 etc. That is, the trailing zeroes are insignificant. Also, integer
4756 list (1) is greater than (1 -1) which is greater than (1 -2)
4757 which is greater than (1 -3)."
4758 (while (and l1 l2 (= (car l1) (car l2)))
4759 (setq l1 (cdr l1)
4760 l2 (cdr l2)))
4761 (cond
4762 ;; l1 not null and l2 not null
4763 ((and l1 l2) (< (car l1) (car l2)))
4764 ;; l1 null and l2 null ==> l1 length = l2 length
4765 ((and (null l1) (null l2)))
4766 ;; l1 not null and l2 null ==> l1 length > l2 length
4767 (l1 (<= (version-list-not-zero l1) 0))
4768 ;; l1 null and l2 not null ==> l2 length > l1 length
4769 (t (<= 0 (version-list-not-zero l2)))))
4770
4771 (defun version-list-not-zero (lst)
4772 "Return the first non-zero element of LST, which is a list of integers.
4773
4774 If all LST elements are zeros or LST is nil, return zero."
4775 (while (and lst (zerop (car lst)))
4776 (setq lst (cdr lst)))
4777 (if lst
4778 (car lst)
4779 ;; there is no element different of zero
4780 0))
4781
4782
4783 (defun version< (v1 v2)
4784 "Return t if version V1 is lower (older) than V2.
4785
4786 Note that version string \"1\" is equal to \"1.0\", \"1.0.0\", \"1.0.0.0\",
4787 etc. That is, the trailing \".0\"s are insignificant. Also, version
4788 string \"1\" is higher (newer) than \"1pre\", which is higher than \"1beta\",
4789 which is higher than \"1alpha\". Also, \"-CVS\" and \"-NNN\" are treated
4790 as alpha versions."
4791 (version-list-< (version-to-list v1) (version-to-list v2)))
4792
4793
4794 (defun version<= (v1 v2)
4795 "Return t if version V1 is lower (older) than or equal to V2.
4796
4797 Note that version string \"1\" is equal to \"1.0\", \"1.0.0\", \"1.0.0.0\",
4798 etc. That is, the trailing \".0\"s are insignificant. Also, version
4799 string \"1\" is higher (newer) than \"1pre\", which is higher than \"1beta\",
4800 which is higher than \"1alpha\". Also, \"-CVS\" and \"-NNN\" are treated
4801 as alpha versions."
4802 (version-list-<= (version-to-list v1) (version-to-list v2)))
4803
4804 (defun version= (v1 v2)
4805 "Return t if version V1 is equal to V2.
4806
4807 Note that version string \"1\" is equal to \"1.0\", \"1.0.0\", \"1.0.0.0\",
4808 etc. That is, the trailing \".0\"s are insignificant. Also, version
4809 string \"1\" is higher (newer) than \"1pre\", which is higher than \"1beta\",
4810 which is higher than \"1alpha\". Also, \"-CVS\" and \"-NNN\" are treated
4811 as alpha versions."
4812 (version-list-= (version-to-list v1) (version-to-list v2)))
4813
4814 \f
4815 ;;; Misc.
4816 (defconst menu-bar-separator '("--")
4817 "Separator for menus.")
4818
4819 ;; The following statement ought to be in print.c, but `provide' can't
4820 ;; be used there.
4821 ;; http://lists.gnu.org/archive/html/emacs-devel/2009-08/msg00236.html
4822 (when (hash-table-p (car (read-from-string
4823 (prin1-to-string (make-hash-table)))))
4824 (provide 'hashtable-print-readable))
4825
4826 ;; This is used in lisp/Makefile.in and in leim/Makefile.in to
4827 ;; generate file names for autoloads, custom-deps, and finder-data.
4828 (defun unmsys--file-name (file)
4829 "Produce the canonical file name for FILE from its MSYS form.
4830
4831 On systems other than MS-Windows, just returns FILE.
4832 On MS-Windows, converts /d/foo/bar form of file names
4833 passed by MSYS Make into d:/foo/bar that Emacs can grok.
4834
4835 This function is called from lisp/Makefile and leim/Makefile."
4836 (when (and (eq system-type 'windows-nt)
4837 (string-match "\\`/[a-zA-Z]/" file))
4838 (setq file (concat (substring file 1 2) ":" (substring file 2))))
4839 file)
4840
4841
4842 ;;; subr.el ends here