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1 @c -*-texinfo-*-
2 @c This is part of the GNU Emacs Lisp Reference Manual.
3 @c Copyright (C) 1990-1995, 1998-1999, 2001-2014 Free Software
4 @c Foundation, Inc.
5 @c See the file elisp.texi for copying conditions.
6 @node System Interface
7 @chapter Operating System Interface
8
9 This chapter is about starting and getting out of Emacs, access to
10 values in the operating system environment, and terminal input, output.
11
12 @xref{Building Emacs}, for related information. @xref{Display}, for
13 additional operating system status information pertaining to the
14 terminal and the screen.
15
16 @menu
17 * Starting Up:: Customizing Emacs startup processing.
18 * Getting Out:: How exiting works (permanent or temporary).
19 * System Environment:: Distinguish the name and kind of system.
20 * User Identification:: Finding the name and user id of the user.
21 * Time of Day:: Getting the current time.
22 * Time Conversion:: Converting a time from numeric form to
23 calendrical data and vice versa.
24 * Time Parsing:: Converting a time from numeric form to text
25 and vice versa.
26 * Processor Run Time:: Getting the run time used by Emacs.
27 * Time Calculations:: Adding, subtracting, comparing times, etc.
28 * Timers:: Setting a timer to call a function at a certain time.
29 * Idle Timers:: Setting a timer to call a function when Emacs has
30 been idle for a certain length of time.
31 * Terminal Input:: Accessing and recording terminal input.
32 * Terminal Output:: Controlling and recording terminal output.
33 * Sound Output:: Playing sounds on the computer's speaker.
34 * X11 Keysyms:: Operating on key symbols for X Windows.
35 * Batch Mode:: Running Emacs without terminal interaction.
36 * Session Management:: Saving and restoring state with X Session Management.
37 * Desktop Notifications:: Desktop notifications.
38 * File Notifications:: File notifications.
39 * Dynamic Libraries:: On-demand loading of support libraries.
40 @end menu
41
42 @node Starting Up
43 @section Starting Up Emacs
44
45 This section describes what Emacs does when it is started, and how you
46 can customize these actions.
47
48 @menu
49 * Startup Summary:: Sequence of actions Emacs performs at startup.
50 * Init File:: Details on reading the init file.
51 * Terminal-Specific:: How the terminal-specific Lisp file is read.
52 * Command-Line Arguments:: How command-line arguments are processed,
53 and how you can customize them.
54 @end menu
55
56 @node Startup Summary
57 @subsection Summary: Sequence of Actions at Startup
58 @cindex initialization of Emacs
59 @cindex startup of Emacs
60 @cindex @file{startup.el}
61
62 When Emacs is started up, it performs the following operations
63 (see @code{normal-top-level} in @file{startup.el}):
64
65 @enumerate
66 @item
67 It adds subdirectories to @code{load-path}, by running the file named
68 @file{subdirs.el} in each directory in the list. Normally, this file
69 adds the directory's subdirectories to the list, and those are scanned
70 in their turn. The files @file{subdirs.el} are normally generated
71 automatically when Emacs is installed.
72
73 @item
74 It loads any @file{leim-list.el} that it finds in the @code{load-path}
75 directories. This file is intended for registering input methods.
76 The search is only for any personal @file{leim-list.el} files that you
77 may have created; it skips the directories containing the standard Emacs
78 libraries (these should contain only a single @file{leim-list.el} file,
79 which is compiled into the Emacs executable).
80
81 @vindex before-init-time
82 @item
83 It sets the variable @code{before-init-time} to the value of
84 @code{current-time} (@pxref{Time of Day}). It also sets
85 @code{after-init-time} to @code{nil}, which signals to Lisp programs
86 that Emacs is being initialized.
87
88 @c set-locale-environment
89 @item
90 It sets the language environment and the terminal coding system,
91 if requested by environment variables such as @env{LANG}.
92
93 @item
94 It does some basic parsing of the command-line arguments.
95
96 @vindex initial-window-system@r{, and startup}
97 @vindex window-system-initialization-alist
98 @item
99 If not running in batch mode, it initializes the window system that
100 the variable @code{initial-window-system} specifies (@pxref{Window
101 Systems, initial-window-system}). The initialization function for
102 each supported window system is specified by
103 @code{window-system-initialization-alist}. If the value
104 of @code{initial-window-system} is @var{windowsystem}, then the
105 appropriate initialization function is defined in the file
106 @file{term/@var{windowsystem}-win.el}. This file should have been
107 compiled into the Emacs executable when it was built.
108
109 @item
110 It runs the normal hook @code{before-init-hook}.
111
112 @item
113 If appropriate, it creates a graphical frame. This is not done if the
114 options @samp{--batch} or @samp{--daemon} were specified.
115
116 @item
117 It initializes the initial frame's faces, and sets up the menu bar
118 and tool bar if needed. If graphical frames are supported, it sets up
119 the tool bar even if the current frame is not a graphical one, since a
120 graphical frame may be created later on.
121
122 @item
123 It use @code{custom-reevaluate-setting} to re-initialize the members
124 of the list @code{custom-delayed-init-variables}. These are any
125 pre-loaded user options whose default value depends on the run-time,
126 rather than build-time, context.
127 @xref{Building Emacs, custom-initialize-delay}.
128
129 @c @item
130 @c It registers the colors available for tty frames.
131
132 @item
133 It loads the library @file{site-start}, if it exists. This is not
134 done if the options @samp{-Q} or @samp{--no-site-file} were specified.
135 @cindex @file{site-start.el}
136
137 @item
138 It loads your init file (@pxref{Init File}). This is not done if the
139 options @samp{-q}, @samp{-Q}, or @samp{--batch} were specified. If
140 the @samp{-u} option was specified, Emacs looks for the init file in
141 that user's home directory instead.
142
143 @item
144 It loads the library @file{default}, if it exists. This is not done
145 if @code{inhibit-default-init} is non-@code{nil}, nor if the options
146 @samp{-q}, @samp{-Q}, or @samp{--batch} were specified.
147 @cindex @file{default.el}
148
149 @item
150 It loads your abbrevs from the file specified by
151 @code{abbrev-file-name}, if that file exists and can be read
152 (@pxref{Abbrev Files, abbrev-file-name}). This is not done if the
153 option @samp{--batch} was specified.
154
155 @item
156 If @code{package-enable-at-startup} is non-@code{nil}, it calls the
157 function @code{package-initialize} to activate any optional Emacs Lisp
158 package that has been installed. @xref{Packaging Basics}.
159
160 @vindex after-init-time
161 @item
162 It sets the variable @code{after-init-time} to the value of
163 @code{current-time}. This variable was set to @code{nil} earlier;
164 setting it to the current time signals that the initialization phase
165 is over, and, together with @code{before-init-time}, provides the
166 measurement of how long it took.
167
168 @item
169 It runs the normal hook @code{after-init-hook}.
170
171 @item
172 If the buffer @file{*scratch*} exists and is still in Fundamental mode
173 (as it should be by default), it sets its major mode according to
174 @code{initial-major-mode}.
175
176 @item
177 If started on a text terminal, it loads the terminal-specific
178 Lisp library (@pxref{Terminal-Specific}), and runs the hook
179 @code{tty-setup-hook}. This is not done
180 in @code{--batch} mode, nor if @code{term-file-prefix} is @code{nil}.
181
182 @c Now command-line calls command-line-1.
183
184 @item
185 It displays the initial echo area message, unless you have suppressed
186 that with @code{inhibit-startup-echo-area-message}.
187
188 @item
189 It processes any command-line options that were not handled earlier.
190
191 @c This next one is back in command-line, but the remaining bits of
192 @c command-line-1 are not done if noninteractive.
193 @item
194 It now exits if the option @code{--batch} was specified.
195
196 @item
197 If @code{initial-buffer-choice} is a string, it visits the file (or
198 directory) with that name. If it is a function, it calls the function
199 with no arguments and selects the buffer that it returns.
200 @ignore
201 @c I do not think this should be mentioned. AFAICS it is just a dodge
202 @c around inhibit-startup-screen not being settable on a site-wide basis.
203 If it is @code{t}, it selects the @file{*scratch*} buffer.
204 @end ignore
205 If the @file{*scratch*} buffer exists and is empty, it inserts
206 @code{initial-scratch-message} into that buffer.
207
208 @c To make things nice and confusing, the next three items can be
209 @c called from two places. If displaying a startup screen, they are
210 @c called in command-line-1 before the startup screen is shown.
211 @c inhibit-startup-hooks is then set and window-setup-hook set to nil.
212 @c If not displaying a startup screen, they are are called in
213 @c normal-top-level.
214 @c FIXME? So it seems they can be called before or after the
215 @c daemon/session restore step?
216
217 @item
218 It runs @code{emacs-startup-hook}.
219
220 @item
221 It calls @code{frame-notice-user-settings}, which modifies the
222 parameters of the selected frame according to whatever the init files
223 specify.
224
225 @item
226 It runs @code{window-setup-hook}. The only difference between this
227 hook and @code{emacs-startup-hook} is that this one runs after the
228 previously mentioned modifications to the frame parameters.
229
230 @item
231 @cindex startup screen
232 It displays the @dfn{startup screen}, which is a special buffer that
233 contains information about copyleft and basic Emacs usage. This is
234 not done if @code{inhibit-startup-screen} or @code{initial-buffer-choice}
235 are non-@code{nil}, or if the @samp{--no-splash} or @samp{-Q} command-line
236 options were specified.
237
238 @c End of command-line-1.
239
240 @c Back to command-line from command-line-1.
241
242 @c This is the point at which we actually exit in batch mode, but the
243 @c last few bits of command-line-1 are not done in batch mode.
244
245 @item
246 If the option @code{--daemon} was specified, it calls
247 @code{server-start} and detaches from the controlling terminal.
248 @xref{Emacs Server,,, emacs, The GNU Emacs Manual}.
249
250 @item
251 If started by the X session manager, it calls
252 @code{emacs-session-restore} passing it as argument the ID of the
253 previous session. @xref{Session Management}.
254
255 @c End of command-line.
256
257 @c Back to normal-top-level from command-line.
258
259 @end enumerate
260
261 @noindent
262 The following options affect some aspects of the startup sequence.
263
264 @defopt inhibit-startup-screen
265 This variable, if non-@code{nil}, inhibits the startup screen. In
266 that case, Emacs typically displays the @file{*scratch*} buffer; but
267 see @code{initial-buffer-choice}, below.
268
269 Do not set this variable in the init file of a new user, or in a way
270 that affects more than one user, as that would prevent new users from
271 receiving information about copyleft and basic Emacs usage.
272
273 @vindex inhibit-startup-message
274 @vindex inhibit-splash-screen
275 @code{inhibit-startup-message} and @code{inhibit-splash-screen} are
276 aliases for this variable.
277 @end defopt
278
279 @defopt initial-buffer-choice
280 If non-@code{nil}, this variable is a string that specifies a file or
281 directory for Emacs to display after starting up, instead of the
282 startup screen.
283 If its value is a function, Emacs calls that function which must
284 return a buffer which is then displayed.
285 If its value is @code{t}, Emacs displays the @file{*scratch*} buffer.
286 @end defopt
287
288 @defopt inhibit-startup-echo-area-message
289 This variable controls the display of the startup echo area message.
290 You can suppress the startup echo area message by adding text with this
291 form to your init file:
292
293 @example
294 (setq inhibit-startup-echo-area-message
295 "@var{your-login-name}")
296 @end example
297
298 Emacs explicitly checks for an expression as shown above in your init
299 file; your login name must appear in the expression as a Lisp string
300 constant. You can also use the Customize interface. Other methods of
301 setting @code{inhibit-startup-echo-area-message} to the same value do
302 not inhibit the startup message. This way, you can easily inhibit the
303 message for yourself if you wish, but thoughtless copying of your init
304 file will not inhibit the message for someone else.
305 @end defopt
306
307 @defopt initial-scratch-message
308 This variable, if non-@code{nil}, should be a string, which is
309 inserted into the @file{*scratch*} buffer when Emacs starts up. If it
310 is @code{nil}, the @file{*scratch*} buffer is empty.
311 @end defopt
312
313 @noindent
314 The following command-line options affect some aspects of the startup
315 sequence. @xref{Initial Options,,, emacs, The GNU Emacs Manual}.
316
317 @table @code
318 @item --no-splash
319 Do not display a splash screen.
320
321 @item --batch
322 Run without an interactive terminal. @xref{Batch Mode}.
323
324 @item --daemon
325 Do not initialize any display; just start a server in the background.
326
327 @item --no-init-file
328 @itemx -q
329 Do not load either the init file, or the @file{default} library.
330
331 @item --no-site-file
332 Do not load the @file{site-start} library.
333
334 @item --quick
335 @itemx -Q
336 Equivalent to @samp{-q --no-site-file --no-splash}.
337 @c and --no-site-lisp, but let's not mention that here.
338 @end table
339
340
341 @node Init File
342 @subsection The Init File
343 @cindex init file
344 @cindex @file{.emacs}
345 @cindex @file{init.el}
346
347 When you start Emacs, it normally attempts to load your @dfn{init
348 file}. This is either a file named @file{.emacs} or @file{.emacs.el}
349 in your home directory, or a file named @file{init.el} in a
350 subdirectory named @file{.emacs.d} in your home directory.
351 @ignore
352 Whichever place you use, you can also compile the file (@pxref{Byte
353 Compilation}); then the actual file loaded will be @file{.emacs.elc}
354 or @file{init.elc}.
355 @end ignore
356
357 The command-line switches @samp{-q}, @samp{-Q}, and @samp{-u}
358 control whether and where to find the init file; @samp{-q} (and the
359 stronger @samp{-Q}) says not to load an init file, while @samp{-u
360 @var{user}} says to load @var{user}'s init file instead of yours.
361 @xref{Entering Emacs,,, emacs, The GNU Emacs Manual}. If neither
362 option is specified, Emacs uses the @env{LOGNAME} environment
363 variable, or the @env{USER} (most systems) or @env{USERNAME} (MS
364 systems) variable, to find your home directory and thus your init
365 file; this way, even if you have su'd, Emacs still loads your own init
366 file. If those environment variables are absent, though, Emacs uses
367 your user-id to find your home directory.
368
369 @cindex default init file
370 An Emacs installation may have a @dfn{default init file}, which is a
371 Lisp library named @file{default.el}. Emacs finds this file through
372 the standard search path for libraries (@pxref{How Programs Do
373 Loading}). The Emacs distribution does not come with this file; it is
374 intended for local customizations. If the default init file exists,
375 it is loaded whenever you start Emacs. But your own personal init
376 file, if any, is loaded first; if it sets @code{inhibit-default-init}
377 to a non-@code{nil} value, then Emacs does not subsequently load the
378 @file{default.el} file. In batch mode, or if you specify @samp{-q}
379 (or @samp{-Q}), Emacs loads neither your personal init file nor
380 the default init file.
381
382 Another file for site-customization is @file{site-start.el}. Emacs
383 loads this @emph{before} the user's init file. You can inhibit the
384 loading of this file with the option @samp{--no-site-file}.
385
386 @defopt site-run-file
387 This variable specifies the site-customization file to load before the
388 user's init file. Its normal value is @code{"site-start"}. The only
389 way you can change it with real effect is to do so before dumping
390 Emacs.
391 @c So why even mention it here. I imagine it is almost never changed.
392 @end defopt
393
394 @xref{Init Examples,, Init File Examples, emacs, The GNU Emacs Manual}, for
395 examples of how to make various commonly desired customizations in your
396 @file{.emacs} file.
397
398 @defopt inhibit-default-init
399 If this variable is non-@code{nil}, it prevents Emacs from loading the
400 default initialization library file. The default value is @code{nil}.
401 @end defopt
402
403 @defvar before-init-hook
404 This normal hook is run, once, just before loading all the init files
405 (@file{site-start.el}, your init file, and @file{default.el}).
406 (The only way to change it with real effect is before dumping Emacs.)
407 @end defvar
408
409 @defvar after-init-hook
410 This normal hook is run, once, just after loading all the init files
411 (@file{site-start.el}, your init file, and @file{default.el}),
412 before loading the terminal-specific library (if started on a text
413 terminal) and processing the command-line action arguments.
414 @end defvar
415
416 @defvar emacs-startup-hook
417 This normal hook is run, once, just after handling the command line
418 arguments. In batch mode, Emacs does not run this hook.
419 @end defvar
420
421 @defvar window-setup-hook
422 This normal hook is very similar to @code{emacs-startup-hook}.
423 The only difference is that it runs slightly later, after setting
424 of the frame parameters. @xref{Startup Summary, window-setup-hook}.
425 @end defvar
426
427 @defvar user-init-file
428 This variable holds the absolute file name of the user's init file. If the
429 actual init file loaded is a compiled file, such as @file{.emacs.elc},
430 the value refers to the corresponding source file.
431 @end defvar
432
433 @defvar user-emacs-directory
434 This variable holds the name of the @file{.emacs.d} directory. It is
435 @file{~/.emacs.d} on all platforms but MS-DOS.
436 @end defvar
437
438 @node Terminal-Specific
439 @subsection Terminal-Specific Initialization
440 @cindex terminal-specific initialization
441
442 Each terminal type can have its own Lisp library that Emacs loads when
443 run on that type of terminal. The library's name is constructed by
444 concatenating the value of the variable @code{term-file-prefix} and the
445 terminal type (specified by the environment variable @env{TERM}).
446 Normally, @code{term-file-prefix} has the value @code{"term/"};
447 changing this is not recommended. If there is an entry matching
448 @env{TERM} in the @code{term-file-aliases} association list,
449 Emacs uses the associated value in place of @env{TERM}.
450 Emacs finds the file in the normal manner, by searching the
451 @code{load-path} directories, and trying the @samp{.elc} and
452 @samp{.el} suffixes.
453
454 @cindex Termcap
455 The usual role of a terminal-specific library is to enable special
456 keys to send sequences that Emacs can recognize. It may also need to
457 set or add to @code{input-decode-map} if the Termcap or Terminfo entry
458 does not specify all the terminal's function keys. @xref{Terminal Input}.
459
460 When the name of the terminal type contains a hyphen or underscore,
461 and no library is found whose name is identical to the terminal's
462 name, Emacs strips from the terminal's name the last hyphen or
463 underscore and everything that follows
464 it, and tries again. This process is repeated until Emacs finds a
465 matching library, or until there are no more hyphens or underscores in the name
466 (i.e., there is no terminal-specific library). For example, if the
467 terminal name is @samp{xterm-256color} and there is no
468 @file{term/xterm-256color.el} library, Emacs tries to load
469 @file{term/xterm.el}. If necessary, the terminal library can evaluate
470 @code{(getenv "TERM")} to find the full name of the terminal type.
471
472 Your init file can prevent the loading of the terminal-specific
473 library by setting the variable @code{term-file-prefix} to @code{nil}.
474
475 You can also arrange to override some of the actions of the
476 terminal-specific library by using @code{tty-setup-hook}. This is
477 a normal hook that Emacs runs after initializing a new text terminal.
478 You could use this hook to define initializations for terminals that do not
479 have their own libraries. @xref{Hooks}.
480
481 @defopt term-file-prefix
482 @cindex @env{TERM} environment variable
483 If the value of this variable is non-@code{nil}, Emacs loads a
484 terminal-specific initialization file as follows:
485
486 @example
487 (load (concat term-file-prefix (getenv "TERM")))
488 @end example
489
490 @noindent
491 You may set the @code{term-file-prefix} variable to @code{nil} in your
492 init file if you do not wish to load the
493 terminal-initialization file.
494
495 On MS-DOS, Emacs sets the @env{TERM} environment variable to @samp{internal}.
496 @end defopt
497
498 @defopt term-file-aliases
499 This variable is an an association list mapping terminal types to
500 their aliases. For example, an element of the form @code{("vt102"
501 . "vt100")} means to treat a terminal of type @samp{vt102} like one of
502 type @samp{vt100}.
503 @end defopt
504
505 @defvar tty-setup-hook
506 This variable is a normal hook that Emacs runs after initializing a
507 new text terminal. (This applies when Emacs starts up in non-windowed
508 mode, and when making a tty @command{emacsclient} connection.) The
509 hook runs after loading your init file (if applicable) and the
510 terminal-specific Lisp file, so you can use it to adjust the
511 definitions made by that file.
512
513 For a related feature, @pxref{Init File, window-setup-hook}.
514 @end defvar
515
516 @node Command-Line Arguments
517 @subsection Command-Line Arguments
518 @cindex command-line arguments
519
520 You can use command-line arguments to request various actions when
521 you start Emacs. Note that the recommended way of using Emacs is to
522 start it just once, after logging in, and then do all editing in the same
523 Emacs session (@pxref{Entering Emacs,,, emacs, The GNU Emacs Manual}).
524 For this reason, you might not use command-line arguments very often;
525 nonetheless, they can be useful when invoking Emacs from session
526 scripts or debugging Emacs. This section describes how Emacs
527 processes command-line arguments.
528
529 @defun command-line
530 This function parses the command line that Emacs was called with,
531 processes it, and (amongst other things) loads the user's init file and
532 displays the startup messages.
533 @end defun
534
535 @defvar command-line-processed
536 The value of this variable is @code{t} once the command line has been
537 processed.
538
539 If you redump Emacs by calling @code{dump-emacs} (@pxref{Building
540 Emacs}), you may wish to set this variable to @code{nil} first in
541 order to cause the new dumped Emacs to process its new command-line
542 arguments.
543 @end defvar
544
545 @defvar command-switch-alist
546 @cindex switches on command line
547 @cindex options on command line
548 @cindex command-line options
549 This variable is an alist of user-defined command-line options and
550 associated handler functions. By default it is empty, but you can
551 add elements if you wish.
552
553 A @dfn{command-line option} is an argument on the command line, which
554 has the form:
555
556 @example
557 -@var{option}
558 @end example
559
560 The elements of the @code{command-switch-alist} look like this:
561
562 @example
563 (@var{option} . @var{handler-function})
564 @end example
565
566 The @sc{car}, @var{option}, is a string, the name of a command-line
567 option (not including the initial hyphen). The @var{handler-function}
568 is called to handle @var{option}, and receives the option name as its
569 sole argument.
570
571 In some cases, the option is followed in the command line by an
572 argument. In these cases, the @var{handler-function} can find all the
573 remaining command-line arguments in the variable
574 @code{command-line-args-left} (see below). (The entire list of
575 command-line arguments is in @code{command-line-args}.)
576
577 The command-line arguments are parsed by the @code{command-line-1}
578 function in the @file{startup.el} file. See also @ref{Emacs
579 Invocation, , Command Line Arguments for Emacs Invocation, emacs, The
580 GNU Emacs Manual}.
581 @end defvar
582
583 @defvar command-line-args
584 The value of this variable is the list of command-line arguments passed
585 to Emacs.
586 @end defvar
587
588 @defvar command-line-args-left
589 @vindex argv
590 The value of this variable is the list of command-line arguments that
591 have not yet been processed.
592 @c Don't mention this, since it is a "bad name for a dynamically bound variable"
593 @c @code{argv} is an alias for this.
594 @end defvar
595
596 @defvar command-line-functions
597 This variable's value is a list of functions for handling an
598 unrecognized command-line argument. Each time the next argument to be
599 processed has no special meaning, the functions in this list are called,
600 in order of appearance, until one of them returns a non-@code{nil}
601 value.
602
603 These functions are called with no arguments. They can access the
604 command-line argument under consideration through the variable
605 @code{argi}, which is bound temporarily at this point. The remaining
606 arguments (not including the current one) are in the variable
607 @code{command-line-args-left}.
608
609 When a function recognizes and processes the argument in @code{argi}, it
610 should return a non-@code{nil} value to say it has dealt with that
611 argument. If it has also dealt with some of the following arguments, it
612 can indicate that by deleting them from @code{command-line-args-left}.
613
614 If all of these functions return @code{nil}, then the argument is treated
615 as a file name to visit.
616 @end defvar
617
618 @node Getting Out
619 @section Getting Out of Emacs
620 @cindex exiting Emacs
621
622 There are two ways to get out of Emacs: you can kill the Emacs job,
623 which exits permanently, or you can suspend it, which permits you to
624 reenter the Emacs process later. (In a graphical environment, you can
625 of course simply switch to another application without doing anything
626 special to Emacs, then switch back to Emacs when you want.)
627
628 @menu
629 * Killing Emacs:: Exiting Emacs irreversibly.
630 * Suspending Emacs:: Exiting Emacs reversibly.
631 @end menu
632
633 @node Killing Emacs
634 @subsection Killing Emacs
635 @cindex killing Emacs
636
637 Killing Emacs means ending the execution of the Emacs process.
638 If you started Emacs from a terminal, the parent process normally
639 resumes control. The low-level primitive for killing Emacs is
640 @code{kill-emacs}.
641
642 @deffn Command kill-emacs &optional exit-data
643 This command calls the hook @code{kill-emacs-hook}, then exits the
644 Emacs process and kills it.
645
646 If @var{exit-data} is an integer, that is used as the exit status of
647 the Emacs process. (This is useful primarily in batch operation; see
648 @ref{Batch Mode}.)
649
650 If @var{exit-data} is a string, its contents are stuffed into the
651 terminal input buffer so that the shell (or whatever program next reads
652 input) can read them.
653 @end deffn
654
655 @cindex SIGTERM
656 @cindex SIGHUP
657 @cindex SIGINT
658 @cindex operating system signal
659 The @code{kill-emacs} function is normally called via the
660 higher-level command @kbd{C-x C-c}
661 (@code{save-buffers-kill-terminal}). @xref{Exiting,,, emacs, The GNU
662 Emacs Manual}. It is also called automatically if Emacs receives a
663 @code{SIGTERM} or @code{SIGHUP} operating system signal (e.g., when the
664 controlling terminal is disconnected), or if it receives a
665 @code{SIGINT} signal while running in batch mode (@pxref{Batch Mode}).
666
667 @defvar kill-emacs-hook
668 This normal hook is run by @code{kill-emacs}, before it kills Emacs.
669
670 Because @code{kill-emacs} can be called in situations where user
671 interaction is impossible (e.g., when the terminal is disconnected),
672 functions on this hook should not attempt to interact with the user.
673 If you want to interact with the user when Emacs is shutting down, use
674 @code{kill-emacs-query-functions}, described below.
675 @end defvar
676
677 When Emacs is killed, all the information in the Emacs process,
678 aside from files that have been saved, is lost. Because killing Emacs
679 inadvertently can lose a lot of work, the
680 @code{save-buffers-kill-terminal} command queries for confirmation if
681 you have buffers that need saving or subprocesses that are running.
682 It also runs the abnormal hook @code{kill-emacs-query-functions}:
683
684 @defvar kill-emacs-query-functions
685 When @code{save-buffers-kill-terminal} is killing Emacs, it calls the
686 functions in this hook, after asking the standard questions and before
687 calling @code{kill-emacs}. The functions are called in order of
688 appearance, with no arguments. Each function can ask for additional
689 confirmation from the user. If any of them returns @code{nil},
690 @code{save-buffers-kill-emacs} does not kill Emacs, and does not run
691 the remaining functions in this hook. Calling @code{kill-emacs}
692 directly does not run this hook.
693 @end defvar
694
695 @node Suspending Emacs
696 @subsection Suspending Emacs
697 @cindex suspending Emacs
698
699 On text terminals, it is possible to @dfn{suspend Emacs}, which
700 means stopping Emacs temporarily and returning control to its superior
701 process, which is usually the shell. This allows you to resume
702 editing later in the same Emacs process, with the same buffers, the
703 same kill ring, the same undo history, and so on. To resume Emacs,
704 use the appropriate command in the parent shell---most likely
705 @code{fg}.
706
707 @cindex controlling terminal
708 Suspending works only on a terminal device from which the Emacs
709 session was started. We call that device the @dfn{controlling
710 terminal} of the session. Suspending is not allowed if the
711 controlling terminal is a graphical terminal. Suspending is usually
712 not relevant in graphical environments, since you can simply switch to
713 another application without doing anything special to Emacs.
714
715 @c FIXME? Are there any systems Emacs still supports that do not
716 @c have SIGTSTP?
717 @cindex SIGTSTP
718 Some operating systems (those without @code{SIGTSTP}, or MS-DOS) do
719 not support suspension of jobs; on these systems, ``suspension''
720 actually creates a new shell temporarily as a subprocess of Emacs.
721 Then you would exit the shell to return to Emacs.
722
723 @deffn Command suspend-emacs &optional string
724 This function stops Emacs and returns control to the superior process.
725 If and when the superior process resumes Emacs, @code{suspend-emacs}
726 returns @code{nil} to its caller in Lisp.
727
728 This function works only on the controlling terminal of the Emacs
729 session; to relinquish control of other tty devices, use
730 @code{suspend-tty} (see below). If the Emacs session uses more than
731 one terminal, you must delete the frames on all the other terminals
732 before suspending Emacs, or this function signals an error.
733 @xref{Multiple Terminals}.
734
735 If @var{string} is non-@code{nil}, its characters are sent to Emacs's
736 superior shell, to be read as terminal input.
737 @c FIXME? It seems to me that shell does echo STRING.
738 The characters in @var{string} are not echoed by the superior shell;
739 only the results appear.
740
741 Before suspending, @code{suspend-emacs} runs the normal hook
742 @code{suspend-hook}. After the user resumes Emacs,
743 @code{suspend-emacs} runs the normal hook @code{suspend-resume-hook}.
744 @xref{Hooks}.
745
746 The next redisplay after resumption will redraw the entire screen,
747 unless the variable @code{no-redraw-on-reenter} is non-@code{nil}.
748 @xref{Refresh Screen}.
749
750 Here is an example of how you could use these hooks:
751
752 @smallexample
753 @group
754 (add-hook 'suspend-hook
755 (lambda () (or (y-or-n-p "Really suspend? ")
756 (error "Suspend canceled"))))
757 @end group
758 (add-hook 'suspend-resume-hook (lambda () (message "Resumed!")
759 (sit-for 2)))
760 @end smallexample
761 @c The sit-for prevents the @code{nil} that suspend-emacs returns
762 @c hiding the message.
763
764 Here is what you would see upon evaluating @code{(suspend-emacs "pwd")}:
765
766 @smallexample
767 @group
768 ---------- Buffer: Minibuffer ----------
769 Really suspend? @kbd{y}
770 ---------- Buffer: Minibuffer ----------
771 @end group
772
773 @group
774 ---------- Parent Shell ----------
775 bash$ /home/username
776 bash$ fg
777 @end group
778
779 @group
780 ---------- Echo Area ----------
781 Resumed!
782 @end group
783 @end smallexample
784
785 @c FIXME? AFAICS, it is echoed.
786 Note that @samp{pwd} is not echoed after Emacs is suspended. But it
787 is read and executed by the shell.
788 @end deffn
789
790 @defvar suspend-hook
791 This variable is a normal hook that Emacs runs before suspending.
792 @end defvar
793
794 @defvar suspend-resume-hook
795 This variable is a normal hook that Emacs runs on resuming
796 after a suspension.
797 @end defvar
798
799 @defun suspend-tty &optional tty
800 If @var{tty} specifies a terminal device used by Emacs, this function
801 relinquishes the device and restores it to its prior state. Frames
802 that used the device continue to exist, but are not updated and Emacs
803 doesn't read input from them. @var{tty} can be a terminal object, a
804 frame (meaning the terminal for that frame), or @code{nil} (meaning
805 the terminal for the selected frame). @xref{Multiple Terminals}.
806
807 If @var{tty} is already suspended, this function does nothing.
808
809 @vindex suspend-tty-functions
810 This function runs the hook @code{suspend-tty-functions}, passing the
811 terminal object as an argument to each function.
812 @end defun
813
814 @defun resume-tty &optional tty
815 This function resumes the previously suspended terminal device
816 @var{tty}; where @var{tty} has the same possible values as it does
817 for @code{suspend-tty}.
818
819 @vindex resume-tty-functions
820 This function reopens the terminal device, re-initializes it, and
821 redraws it with that terminal's selected frame. It then runs the
822 hook @code{resume-tty-functions}, passing the terminal object as an
823 argument to each function.
824
825 If the same device is already used by another Emacs terminal, this
826 function signals an error. If @var{tty} is not suspended, this
827 function does nothing.
828 @end defun
829
830 @defun controlling-tty-p &optional tty
831 This function returns non-@code{nil} if @var{tty} is the
832 controlling terminal of the Emacs session; @var{tty} can be a
833 terminal object, a frame (meaning the terminal for that frame), or
834 @code{nil} (meaning the terminal for the selected frame).
835 @end defun
836
837 @deffn Command suspend-frame
838 This command @dfn{suspends} a frame. For GUI frames, it calls
839 @code{iconify-frame} (@pxref{Visibility of Frames}); for frames on
840 text terminals, it calls either @code{suspend-emacs} or
841 @code{suspend-tty}, depending on whether the frame is displayed on the
842 controlling terminal device or not.
843 @end deffn
844
845 @node System Environment
846 @section Operating System Environment
847 @cindex operating system environment
848
849 Emacs provides access to variables in the operating system environment
850 through various functions. These variables include the name of the
851 system, the user's @acronym{UID}, and so on.
852
853 @defvar system-configuration
854 This variable holds the standard GNU configuration name for the
855 hardware/software configuration of your system, as a string. For
856 example, a typical value for a 64-bit GNU/Linux system is
857 @samp{"x86_64-unknown-linux-gnu"}.
858 @end defvar
859
860 @cindex system type and name
861 @defvar system-type
862 The value of this variable is a symbol indicating the type of operating
863 system Emacs is running on. The possible values are:
864
865 @table @code
866 @item aix
867 IBM's AIX.
868
869 @item berkeley-unix
870 Berkeley BSD and its variants.
871
872 @item cygwin
873 Cygwin, a Posix layer on top of MS-Windows.
874
875 @item darwin
876 Darwin (Mac OS X).
877
878 @item gnu
879 The GNU system (using the GNU kernel, which consists of the HURD and Mach).
880
881 @item gnu/linux
882 A GNU/Linux system---that is, a variant GNU system, using the Linux
883 kernel. (These systems are the ones people often call ``Linux'', but
884 actually Linux is just the kernel, not the whole system.)
885
886 @item gnu/kfreebsd
887 A GNU (glibc-based) system with a FreeBSD kernel.
888
889 @item hpux
890 Hewlett-Packard HPUX operating system.
891
892 @item irix
893 Silicon Graphics Irix system.
894
895 @item ms-dos
896 Microsoft's DOS@. Emacs compiled with DJGPP for MS-DOS binds
897 @code{system-type} to @code{ms-dos} even when you run it on MS-Windows.
898
899 @item usg-unix-v
900 AT&T Unix System V.
901
902 @item windows-nt
903 Microsoft Windows NT, 9X and later. The value of @code{system-type}
904 is always @code{windows-nt}, e.g., even on Windows 7.
905
906 @end table
907
908 We do not wish to add new symbols to make finer distinctions unless it
909 is absolutely necessary! In fact, we hope to eliminate some of these
910 alternatives in the future. If you need to make a finer distinction
911 than @code{system-type} allows for, you can test
912 @code{system-configuration}, e.g., against a regexp.
913 @end defvar
914
915 @defun system-name
916 This function returns the name of the machine you are running on, as a
917 string.
918 @end defun
919
920 The symbol @code{system-name} is a variable as well as a function. In
921 fact, the function returns whatever value the variable
922 @code{system-name} currently holds. Thus, you can set the variable
923 @code{system-name} in case Emacs is confused about the name of your
924 system. The variable is also useful for constructing frame titles
925 (@pxref{Frame Titles}).
926
927 @c FIXME seems like this section is not the best place for this option?
928 @defopt mail-host-address
929 If this variable is non-@code{nil}, it is used instead of
930 @code{system-name} for purposes of generating email addresses. For
931 example, it is used when constructing the default value of
932 @code{user-mail-address}. @xref{User Identification}. (Since this is
933 done when Emacs starts up, the value actually used is the one saved when
934 Emacs was dumped. @xref{Building Emacs}.)
935 @c FIXME sounds like should probably give this a :set-after and some
936 @c custom-initialize-delay voodoo.
937 @end defopt
938
939 @deffn Command getenv var &optional frame
940 @cindex environment variable access
941 This function returns the value of the environment variable @var{var},
942 as a string. @var{var} should be a string. If @var{var} is undefined
943 in the environment, @code{getenv} returns @code{nil}. It returns
944 @samp{""} if @var{var} is set but null. Within Emacs, a list of environment
945 variables and their values is kept in the variable @code{process-environment}.
946
947 @example
948 @group
949 (getenv "USER")
950 @result{} "lewis"
951 @end group
952 @end example
953
954 The shell command @code{printenv} prints all or part of the environment:
955
956 @example
957 @group
958 bash$ printenv
959 PATH=/usr/local/bin:/usr/bin:/bin
960 USER=lewis
961 @end group
962 @group
963 TERM=xterm
964 SHELL=/bin/bash
965 HOME=/home/lewis
966 @end group
967 @dots{}
968 @end example
969 @end deffn
970
971 @deffn Command setenv variable &optional value substitute
972 This command sets the value of the environment variable named
973 @var{variable} to @var{value}. @var{variable} should be a string.
974 Internally, Emacs Lisp can handle any string. However, normally
975 @var{variable} should be a valid shell identifier, that is, a sequence
976 of letters, digits and underscores, starting with a letter or
977 underscore. Otherwise, errors may occur if subprocesses of Emacs try
978 to access the value of @var{variable}. If @var{value} is omitted or
979 @code{nil} (or, interactively, with a prefix argument), @code{setenv}
980 removes @var{variable} from the environment. Otherwise, @var{value}
981 should be a string.
982
983 @c FIXME: Document `substitute-env-vars'? --xfq
984 If the optional argument @var{substitute} is non-@code{nil}, Emacs
985 calls the function @code{substitute-env-vars} to expand any
986 environment variables in @var{value}.
987
988 @code{setenv} works by modifying @code{process-environment}; binding
989 that variable with @code{let} is also reasonable practice.
990
991 @code{setenv} returns the new value of @var{variable}, or @code{nil}
992 if it removed @var{variable} from the environment.
993 @end deffn
994
995 @defvar process-environment
996 This variable is a list of strings, each describing one environment
997 variable. The functions @code{getenv} and @code{setenv} work by means
998 of this variable.
999
1000 @smallexample
1001 @group
1002 process-environment
1003 @result{} ("PATH=/usr/local/bin:/usr/bin:/bin"
1004 "USER=lewis"
1005 @end group
1006 @group
1007 "TERM=xterm"
1008 "SHELL=/bin/bash"
1009 "HOME=/home/lewis"
1010 @dots{})
1011 @end group
1012 @end smallexample
1013
1014 If @code{process-environment} contains ``duplicate'' elements that
1015 specify the same environment variable, the first of these elements
1016 specifies the variable, and the other ``duplicates'' are ignored.
1017 @end defvar
1018
1019 @defvar initial-environment
1020 This variable holds the list of environment variables Emacs inherited
1021 from its parent process when Emacs started.
1022 @end defvar
1023
1024 @defvar path-separator
1025 This variable holds a string that says which character separates
1026 directories in a search path (as found in an environment variable). Its
1027 value is @code{":"} for Unix and GNU systems, and @code{";"} for MS systems.
1028 @end defvar
1029
1030 @defun parse-colon-path path
1031 This function takes a search path string such as the value of
1032 the @env{PATH} environment variable, and splits it at the separators,
1033 returning a list of directory names. @code{nil} in this list means
1034 the current directory. Although the function's name says
1035 ``colon'', it actually uses the value of @code{path-separator}.
1036
1037 @example
1038 (parse-colon-path ":/foo:/bar")
1039 @result{} (nil "/foo/" "/bar/")
1040 @end example
1041 @end defun
1042
1043 @defvar invocation-name
1044 This variable holds the program name under which Emacs was invoked. The
1045 value is a string, and does not include a directory name.
1046 @end defvar
1047
1048 @defvar invocation-directory
1049 This variable holds the directory from which the Emacs executable was
1050 invoked, or @code{nil} if that directory cannot be determined.
1051 @end defvar
1052
1053 @defvar installation-directory
1054 If non-@code{nil}, this is a directory within which to look for the
1055 @file{lib-src} and @file{etc} subdirectories. In an installed Emacs,
1056 it is normally @code{nil}. It is non-@code{nil}
1057 when Emacs can't find those directories in their standard installed
1058 locations, but can find them in a directory related somehow to the one
1059 containing the Emacs executable (i.e., @code{invocation-directory}).
1060 @end defvar
1061
1062 @defun load-average &optional use-float
1063 This function returns the current 1-minute, 5-minute, and 15-minute
1064 system load averages, in a list. The load average indicates the
1065 number of processes trying to run on the system.
1066
1067 By default, the values are integers that are 100 times the system load
1068 averages, but if @var{use-float} is non-@code{nil}, then they are
1069 returned as floating-point numbers without multiplying by 100.
1070
1071 If it is impossible to obtain the load average, this function signals
1072 an error. On some platforms, access to load averages requires
1073 installing Emacs as setuid or setgid so that it can read kernel
1074 information, and that usually isn't advisable.
1075 @c FIXME which platforms are these? Are they still relevant?
1076
1077 If the 1-minute load average is available, but the 5- or 15-minute
1078 averages are not, this function returns a shortened list containing
1079 the available averages.
1080
1081 @example
1082 @group
1083 (load-average)
1084 @result{} (169 48 36)
1085 @end group
1086 @group
1087 (load-average t)
1088 @result{} (1.69 0.48 0.36)
1089 @end group
1090 @end example
1091
1092 The shell command @code{uptime} returns similar information.
1093 @end defun
1094
1095 @defun emacs-pid
1096 This function returns the process @acronym{ID} of the Emacs process,
1097 as an integer.
1098 @end defun
1099
1100 @defvar tty-erase-char
1101 This variable holds the erase character that was selected
1102 in the system's terminal driver, before Emacs was started.
1103 @c FIXME? Seems untrue since 23.1. For me, it is 0.
1104 @c The value is @code{nil} if Emacs is running under a window system.
1105 @end defvar
1106
1107 @node User Identification
1108 @section User Identification
1109 @cindex user identification
1110
1111 @defvar init-file-user
1112 This variable says which user's init files should be used by
1113 Emacs---or @code{nil} if none. @code{""} stands for the user who
1114 originally logged in. The value reflects command-line options such as
1115 @samp{-q} or @samp{-u @var{user}}.
1116
1117 Lisp packages that load files of customizations, or any other sort of
1118 user profile, should obey this variable in deciding where to find it.
1119 They should load the profile of the user name found in this variable.
1120 If @code{init-file-user} is @code{nil}, meaning that the @samp{-q},
1121 @samp{-Q}, or @samp{-batch} option was used, then Lisp packages should
1122 not load any customization files or user profile.
1123 @end defvar
1124
1125 @defopt user-mail-address
1126 This holds the nominal email address of the user who is using Emacs.
1127 Emacs normally sets this variable to a default value after reading your
1128 init files, but not if you have already set it. So you can set the
1129 variable to some other value in your init file if you do not
1130 want to use the default value.
1131 @end defopt
1132
1133 @defun user-login-name &optional uid
1134 This function returns the name under which the user is logged in.
1135 It uses the environment variables @env{LOGNAME} or @env{USER} if
1136 either is set. Otherwise, the value is based on the effective
1137 @acronym{UID}, not the real @acronym{UID}.
1138
1139 If you specify @var{uid} (a number), the result is the user name that
1140 corresponds to @var{uid}, or @code{nil} if there is no such user.
1141 @end defun
1142
1143 @defun user-real-login-name
1144 This function returns the user name corresponding to Emacs's real
1145 @acronym{UID}. This ignores the effective @acronym{UID}, and the
1146 environment variables @env{LOGNAME} and @env{USER}.
1147 @end defun
1148
1149 @defun user-full-name &optional uid
1150 This function returns the full name of the logged-in user---or the value
1151 of the environment variable @env{NAME}, if that is set.
1152
1153 If the Emacs process's user-id does not correspond to any known user (and
1154 provided @code{NAME} is not set), the result is @code{"unknown"}.
1155
1156 If @var{uid} is non-@code{nil}, then it should be a number (a user-id)
1157 or a string (a login name). Then @code{user-full-name} returns the full
1158 name corresponding to that user-id or login name. If you specify a
1159 user-id or login name that isn't defined, it returns @code{nil}.
1160 @end defun
1161
1162 @vindex user-full-name
1163 @vindex user-real-login-name
1164 @vindex user-login-name
1165 The symbols @code{user-login-name}, @code{user-real-login-name} and
1166 @code{user-full-name} are variables as well as functions. The functions
1167 return the same values that the variables hold. These variables allow
1168 you to ``fake out'' Emacs by telling the functions what to return. The
1169 variables are also useful for constructing frame titles (@pxref{Frame
1170 Titles}).
1171
1172 @cindex UID
1173 @defun user-real-uid
1174 This function returns the real @acronym{UID} of the user.
1175 The value may be floating point, in the (unlikely) event that
1176 the UID is too large to fit in a Lisp integer.
1177 @end defun
1178
1179 @defun user-uid
1180 This function returns the effective @acronym{UID} of the user.
1181 The value may be floating point.
1182 @end defun
1183
1184 @cindex GID
1185 @defun group-gid
1186 This function returns the effective @acronym{GID} of the Emacs process.
1187 The value may be floating point.
1188 @end defun
1189
1190 @defun group-real-gid
1191 This function returns the real @acronym{GID} of the Emacs process.
1192 The value may be floating point.
1193 @end defun
1194
1195 @defun system-users
1196 This function returns a list of strings, listing the user names on the
1197 system. If Emacs cannot retrieve this information, the return value
1198 is a list containing just the value of @code{user-real-login-name}.
1199 @end defun
1200
1201 @cindex user groups
1202 @defun system-groups
1203 This function returns a list of strings, listing the names of user
1204 groups on the system. If Emacs cannot retrieve this information, the
1205 return value is @code{nil}.
1206 @end defun
1207
1208
1209 @node Time of Day
1210 @section Time of Day
1211 @cindex time of day
1212
1213 This section explains how to determine the current time and time
1214 zone.
1215
1216 @cindex epoch
1217 Most of these functions represent time as a list of four integers
1218 @code{(@var{sec-high} @var{sec-low} @var{microsec} @var{picosec})}.
1219 This represents the number of seconds from the @dfn{epoch} (January
1220 1, 1970 at 00:00 UTC), using the formula:
1221 @ifnottex
1222 @var{high} * 2**16 + @var{low} + @var{micro} * 10**@minus{}6 +
1223 @var{pico} * 10**@minus{}12.
1224 @end ifnottex
1225 @tex
1226 $high*2^{16} + low + micro*10^{-6} + pico*10^{-12}$.
1227 @end tex
1228 The return value of @code{current-time} represents time using this
1229 form, as do the timestamps in the return values of other functions
1230 such as @code{file-attributes} (@pxref{Definition of
1231 file-attributes}). In some cases, functions may return two- or
1232 three-element lists, with omitted @var{microsec} and @var{picosec}
1233 components defaulting to zero.
1234
1235 @cindex time value
1236 Function arguments, e.g., the @var{time-value} argument to
1237 @code{current-time-string}, accept a more-general @dfn{time value}
1238 format, which can be a list of integers as above, or a single number
1239 for seconds since the epoch, or @code{nil} for the current time. You
1240 can convert a time value into a human-readable string using
1241 @code{current-time-string} and @code{format-time-string}, into a list
1242 of integers using @code{seconds-to-time}, and into other forms using
1243 @code{decode-time} and @code{float-time}. These functions are
1244 described in the following sections.
1245
1246 @defun current-time-string &optional time-value
1247 This function returns the current time and date as a human-readable
1248 string. The format does not vary for the initial part of the string,
1249 which contains the day of week, month, day of month, and time of day
1250 in that order: the number of characters used for these fields is
1251 always the same, so you can reliably
1252 use @code{substring} to extract them. You should count
1253 characters from the beginning of the string rather than from the end,
1254 as the year might not have exactly four digits, and additional
1255 information may some day be added at the end.
1256
1257 The argument @var{time-value}, if given, specifies a time to format,
1258 instead of the current time.
1259
1260 @example
1261 @group
1262 (current-time-string)
1263 @result{} "Wed Oct 14 22:21:05 1987"
1264 @end group
1265 @end example
1266 @end defun
1267
1268 @defun current-time
1269 This function returns the current time, represented as a list of four
1270 integers @code{(@var{sec-high} @var{sec-low} @var{microsec} @var{picosec})}.
1271 These integers have trailing zeros on systems that return time with
1272 lower resolutions. On all current machines @var{picosec} is a
1273 multiple of 1000, but this may change as higher-resolution clocks
1274 become available.
1275 @end defun
1276
1277 @defun float-time &optional time-value
1278 This function returns the current time as a floating-point number of
1279 seconds since the epoch. The optional argument @var{time-value}, if
1280 given, specifies a time to convert instead of the current time.
1281
1282 @emph{Warning}: Since the result is floating point, it may not be
1283 exact. Do not use this function if precise time stamps are required.
1284
1285 @code{time-to-seconds} is an alias for this function.
1286 @end defun
1287
1288 @defun seconds-to-time time-value
1289 This function converts a time value to list-of-integer form.
1290 For example, if @var{time-value} is a number, @code{(time-to-seconds
1291 (seconds-to-time @var{time-value}))} equals the number unless overflow
1292 or rounding errors occur.
1293 @end defun
1294
1295 @defun current-time-zone &optional time-value
1296 @cindex time zone, current
1297 This function returns a list describing the time zone that the user is
1298 in.
1299
1300 The value has the form @code{(@var{offset} @var{name})}. Here
1301 @var{offset} is an integer giving the number of seconds ahead of UTC
1302 (east of Greenwich). A negative value means west of Greenwich. The
1303 second element, @var{name}, is a string giving the name of the time
1304 zone. Both elements change when daylight saving time begins or ends;
1305 if the user has specified a time zone that does not use a seasonal time
1306 adjustment, then the value is constant through time.
1307
1308 If the operating system doesn't supply all the information necessary to
1309 compute the value, the unknown elements of the list are @code{nil}.
1310
1311 The argument @var{time-value}, if given, specifies a time value to
1312 analyze instead of the current time.
1313 @end defun
1314
1315 The current time zone is determined by the @env{TZ} environment
1316 variable. @xref{System Environment}. For example, you can tell Emacs
1317 to use universal time with @code{(setenv "TZ" "UTC0")}. If @env{TZ}
1318 is not in the environment, Emacs uses a platform-dependent default
1319 time zone.
1320
1321 @node Time Conversion
1322 @section Time Conversion
1323 @cindex calendrical information
1324 @cindex time conversion
1325
1326 These functions convert time values (@pxref{Time of Day}) into
1327 calendrical information and vice versa.
1328
1329 Many 32-bit operating systems are limited to system times containing
1330 32 bits of information in their seconds component; these systems
1331 typically handle only the times from 1901-12-13 20:45:52 UTC through
1332 2038-01-19 03:14:07 UTC@. However, 64-bit and some 32-bit operating
1333 systems have larger seconds components, and can represent times far in
1334 the past or future.
1335
1336 Time conversion functions always use the Gregorian calendar, even
1337 for dates before the Gregorian calendar was introduced. Year numbers
1338 count the number of years since the year 1 B.C., and do not skip zero
1339 as traditional Gregorian years do; for example, the year number
1340 @minus{}37 represents the Gregorian year 38 B.C@.
1341
1342 @defun decode-time &optional time-value
1343 This function converts a time value into calendrical information. If
1344 you don't specify @var{time-value}, it decodes the current time. The return
1345 value is a list of nine elements, as follows:
1346
1347 @example
1348 (@var{seconds} @var{minutes} @var{hour} @var{day} @var{month} @var{year} @var{dow} @var{dst} @var{zone})
1349 @end example
1350
1351 Here is what the elements mean:
1352
1353 @table @var
1354 @item seconds
1355 The number of seconds past the minute, as an integer between 0 and 59.
1356 On some operating systems, this is 60 for leap seconds.
1357 @item minutes
1358 The number of minutes past the hour, as an integer between 0 and 59.
1359 @item hour
1360 The hour of the day, as an integer between 0 and 23.
1361 @item day
1362 The day of the month, as an integer between 1 and 31.
1363 @item month
1364 The month of the year, as an integer between 1 and 12.
1365 @item year
1366 The year, an integer typically greater than 1900.
1367 @item dow
1368 The day of week, as an integer between 0 and 6, where 0 stands for
1369 Sunday.
1370 @item dst
1371 @code{t} if daylight saving time is effect, otherwise @code{nil}.
1372 @item zone
1373 An integer indicating the time zone, as the number of seconds east of
1374 Greenwich.
1375 @end table
1376
1377 @strong{Common Lisp Note:} Common Lisp has different meanings for
1378 @var{dow} and @var{zone}.
1379 @end defun
1380
1381 @defun encode-time seconds minutes hour day month year &optional zone
1382 This function is the inverse of @code{decode-time}. It converts seven
1383 items of calendrical data into a list-of-integer time value. For the
1384 meanings of the arguments, see the table above under
1385 @code{decode-time}.
1386
1387 Year numbers less than 100 are not treated specially. If you want them
1388 to stand for years above 1900, or years above 2000, you must alter them
1389 yourself before you call @code{encode-time}.
1390
1391 The optional argument @var{zone} defaults to the current time zone and
1392 its daylight saving time rules. If specified, it can be either a list
1393 (as you would get from @code{current-time-zone}), a string as in the
1394 @env{TZ} environment variable, @code{t} for Universal Time, or an
1395 integer (as you would get from @code{decode-time}). The specified
1396 zone is used without any further alteration for daylight saving time.
1397
1398 If you pass more than seven arguments to @code{encode-time}, the first
1399 six are used as @var{seconds} through @var{year}, the last argument is
1400 used as @var{zone}, and the arguments in between are ignored. This
1401 feature makes it possible to use the elements of a list returned by
1402 @code{decode-time} as the arguments to @code{encode-time}, like this:
1403
1404 @example
1405 (apply 'encode-time (decode-time @dots{}))
1406 @end example
1407
1408 You can perform simple date arithmetic by using out-of-range values for
1409 the @var{seconds}, @var{minutes}, @var{hour}, @var{day}, and @var{month}
1410 arguments; for example, day 0 means the day preceding the given month.
1411
1412 The operating system puts limits on the range of possible time values;
1413 if you try to encode a time that is out of range, an error results.
1414 For instance, years before 1970 do not work on some systems;
1415 on others, years as early as 1901 do work.
1416 @end defun
1417
1418 @node Time Parsing
1419 @section Parsing and Formatting Times
1420 @cindex time parsing
1421 @cindex time formatting
1422 @cindex formatting time values
1423
1424 These functions convert time values to text in a string, and vice versa.
1425 Time values are lists of two to four integers (@pxref{Time of Day}).
1426
1427 @defun date-to-time string
1428 This function parses the time-string @var{string} and returns the
1429 corresponding time value.
1430 @end defun
1431
1432 @defun format-time-string format-string &optional time-value universal
1433
1434 This function converts @var{time-value} (or the current time, if
1435 @var{time-value} is omitted) to a string according to
1436 @var{format-string}. The argument
1437 @var{format-string} may contain @samp{%}-sequences which say to
1438 substitute parts of the time. Here is a table of what the
1439 @samp{%}-sequences mean:
1440
1441 @table @samp
1442 @item %a
1443 This stands for the abbreviated name of the day of week.
1444 @item %A
1445 This stands for the full name of the day of week.
1446 @item %b
1447 This stands for the abbreviated name of the month.
1448 @item %B
1449 This stands for the full name of the month.
1450 @item %c
1451 This is a synonym for @samp{%x %X}.
1452 @item %C
1453 This has a locale-specific meaning. In the default locale (named C), it
1454 is equivalent to @samp{%A, %B %e, %Y}.
1455 @item %d
1456 This stands for the day of month, zero-padded.
1457 @item %D
1458 This is a synonym for @samp{%m/%d/%y}.
1459 @item %e
1460 This stands for the day of month, blank-padded.
1461 @item %h
1462 This is a synonym for @samp{%b}.
1463 @item %H
1464 This stands for the hour (00--23).
1465 @item %I
1466 This stands for the hour (01--12).
1467 @item %j
1468 This stands for the day of the year (001--366).
1469 @item %k
1470 This stands for the hour (0--23), blank padded.
1471 @item %l
1472 This stands for the hour (1--12), blank padded.
1473 @item %m
1474 This stands for the month (01--12).
1475 @item %M
1476 This stands for the minute (00--59).
1477 @item %n
1478 This stands for a newline.
1479 @item %N
1480 This stands for the nanoseconds (000000000--999999999). To ask for
1481 fewer digits, use @samp{%3N} for milliseconds, @samp{%6N} for
1482 microseconds, etc. Any excess digits are discarded, without rounding.
1483 @item %p
1484 This stands for @samp{AM} or @samp{PM}, as appropriate.
1485 @item %r
1486 This is a synonym for @samp{%I:%M:%S %p}.
1487 @item %R
1488 This is a synonym for @samp{%H:%M}.
1489 @item %S
1490 This stands for the seconds (00--59).
1491 @item %t
1492 This stands for a tab character.
1493 @item %T
1494 This is a synonym for @samp{%H:%M:%S}.
1495 @item %U
1496 This stands for the week of the year (01--52), assuming that weeks
1497 start on Sunday.
1498 @item %w
1499 This stands for the numeric day of week (0--6). Sunday is day 0.
1500 @item %W
1501 This stands for the week of the year (01--52), assuming that weeks
1502 start on Monday.
1503 @item %x
1504 This has a locale-specific meaning. In the default locale (named
1505 @samp{C}), it is equivalent to @samp{%D}.
1506 @item %X
1507 This has a locale-specific meaning. In the default locale (named
1508 @samp{C}), it is equivalent to @samp{%T}.
1509 @item %y
1510 This stands for the year without century (00--99).
1511 @item %Y
1512 This stands for the year with century.
1513 @item %Z
1514 This stands for the time zone abbreviation (e.g., @samp{EST}).
1515 @item %z
1516 This stands for the time zone numerical offset (e.g., @samp{-0500}).
1517 @end table
1518
1519 You can also specify the field width and type of padding for any of
1520 these @samp{%}-sequences. This works as in @code{printf}: you write
1521 the field width as digits in the middle of a @samp{%}-sequences. If you
1522 start the field width with @samp{0}, it means to pad with zeros. If you
1523 start the field width with @samp{_}, it means to pad with spaces.
1524
1525 For example, @samp{%S} specifies the number of seconds since the minute;
1526 @samp{%03S} means to pad this with zeros to 3 positions, @samp{%_3S} to
1527 pad with spaces to 3 positions. Plain @samp{%3S} pads with zeros,
1528 because that is how @samp{%S} normally pads to two positions.
1529
1530 The characters @samp{E} and @samp{O} act as modifiers when used between
1531 @samp{%} and one of the letters in the table above. @samp{E} specifies
1532 using the current locale's ``alternative'' version of the date and time.
1533 In a Japanese locale, for example, @code{%Ex} might yield a date format
1534 based on the Japanese Emperors' reigns. @samp{E} is allowed in
1535 @samp{%Ec}, @samp{%EC}, @samp{%Ex}, @samp{%EX}, @samp{%Ey}, and
1536 @samp{%EY}.
1537
1538 @samp{O} means to use the current locale's ``alternative''
1539 representation of numbers, instead of the ordinary decimal digits. This
1540 is allowed with most letters, all the ones that output numbers.
1541
1542 If @var{universal} is non-@code{nil}, that means to describe the time as
1543 Universal Time; @code{nil} means describe it using what Emacs believes
1544 is the local time zone (see @code{current-time-zone}).
1545
1546 This function uses the C library function @code{strftime}
1547 (@pxref{Formatting Calendar Time,,, libc, The GNU C Library Reference
1548 Manual}) to do most of the work. In order to communicate with that
1549 function, it first encodes its argument using the coding system
1550 specified by @code{locale-coding-system} (@pxref{Locales}); after
1551 @code{strftime} returns the resulting string,
1552 @code{format-time-string} decodes the string using that same coding
1553 system.
1554 @end defun
1555
1556 @defun format-seconds format-string seconds
1557 This function converts its argument @var{seconds} into a string of
1558 years, days, hours, etc., according to @var{format-string}. The
1559 argument @var{format-string} may contain @samp{%}-sequences which
1560 control the conversion. Here is a table of what the
1561 @samp{%}-sequences mean:
1562
1563 @table @samp
1564 @item %y
1565 @itemx %Y
1566 The integer number of 365-day years.
1567 @item %d
1568 @itemx %D
1569 The integer number of days.
1570 @item %h
1571 @itemx %H
1572 The integer number of hours.
1573 @item %m
1574 @itemx %M
1575 The integer number of minutes.
1576 @item %s
1577 @itemx %S
1578 The integer number of seconds.
1579 @item %z
1580 Non-printing control flag. When it is used, other specifiers must be
1581 given in the order of decreasing size, i.e., years before days, hours
1582 before minutes, etc. Nothing will be produced in the result string to
1583 the left of @samp{%z} until the first non-zero conversion is
1584 encountered. For example, the default format used by
1585 @code{emacs-uptime} (@pxref{Processor Run Time, emacs-uptime})
1586 @w{@code{"%Y, %D, %H, %M, %z%S"}} means that the number of seconds
1587 will always be produced, but years, days, hours, and minutes will only
1588 be shown if they are non-zero.
1589 @item %%
1590 Produces a literal @samp{%}.
1591 @end table
1592
1593 Upper-case format sequences produce the units in addition to the
1594 numbers, lower-case formats produce only the numbers.
1595
1596 You can also specify the field width by following the @samp{%} with a
1597 number; shorter numbers will be padded with blanks. An optional
1598 period before the width requests zero-padding instead. For example,
1599 @code{"%.3Y"} might produce @code{"004 years"}.
1600
1601 @emph{Warning:} This function works only with values of @var{seconds}
1602 that don't exceed @code{most-positive-fixnum} (@pxref{Integer Basics,
1603 most-positive-fixnum}).
1604 @end defun
1605
1606 @node Processor Run Time
1607 @section Processor Run time
1608 @cindex processor run time
1609 @cindex Emacs process run time
1610
1611 Emacs provides several functions and primitives that return time,
1612 both elapsed and processor time, used by the Emacs process.
1613
1614 @deffn Command emacs-uptime &optional format
1615 @cindex uptime of Emacs
1616 This function returns a string representing the Emacs
1617 @dfn{uptime}---the elapsed wall-clock time this instance of Emacs is
1618 running. The string is formatted by @code{format-seconds} according
1619 to the optional argument @var{format}. For the available format
1620 descriptors, see @ref{Time Parsing, format-seconds}. If @var{format}
1621 is @code{nil} or omitted, it defaults to @code{"%Y, %D, %H, %M,
1622 %z%S"}.
1623
1624 When called interactively, it prints the uptime in the echo area.
1625 @end deffn
1626
1627 @defun get-internal-run-time
1628 This function returns the processor run time used by Emacs as a list
1629 of four integers: @code{(@var{sec-high} @var{sec-low} @var{microsec}
1630 @var{picosec})}, using the same format as @code{current-time}
1631 (@pxref{Time of Day}).
1632
1633 Note that the time returned by this function excludes the time Emacs
1634 was not using the processor, and if the Emacs process has several
1635 threads, the returned value is the sum of the processor times used up
1636 by all Emacs threads.
1637
1638 If the system doesn't provide a way to determine the processor run
1639 time, @code{get-internal-run-time} returns the same time as
1640 @code{current-time}.
1641 @end defun
1642
1643 @deffn Command emacs-init-time
1644 This function returns the duration of the Emacs initialization
1645 (@pxref{Startup Summary}) in seconds, as a string. When called
1646 interactively, it prints the duration in the echo area.
1647 @end deffn
1648
1649 @node Time Calculations
1650 @section Time Calculations
1651 @cindex time calculations
1652 @cindex comparing time values
1653 @cindex calendrical computations
1654
1655 These functions perform calendrical computations using time values
1656 (@pxref{Time of Day}).
1657
1658 @defun time-less-p t1 t2
1659 This returns @code{t} if time value @var{t1} is less than time value
1660 @var{t2}.
1661 @end defun
1662
1663 @defun time-subtract t1 t2
1664 This returns the time difference @var{t1} @minus{} @var{t2} between
1665 two time values, as a time value.
1666 @end defun
1667
1668 @defun time-add t1 t2
1669 This returns the sum of two time values, as a time value.
1670 One argument should represent a time difference rather than a point in time.
1671 Here is how to add a number of seconds to a time value:
1672
1673 @example
1674 (time-add @var{time} @var{seconds})
1675 @end example
1676 @end defun
1677
1678 @defun time-to-days time-value
1679 This function returns the number of days between the beginning of year
1680 1 and @var{time-value}.
1681 @end defun
1682
1683 @defun time-to-day-in-year time-value
1684 This returns the day number within the year corresponding to @var{time-value}.
1685 @end defun
1686
1687 @defun date-leap-year-p year
1688 This function returns @code{t} if @var{year} is a leap year.
1689 @end defun
1690
1691 @node Timers
1692 @section Timers for Delayed Execution
1693 @cindex timer
1694
1695 You can set up a @dfn{timer} to call a function at a specified
1696 future time or after a certain length of idleness.
1697
1698 Emacs cannot run timers at any arbitrary point in a Lisp program; it
1699 can run them only when Emacs could accept output from a subprocess:
1700 namely, while waiting or inside certain primitive functions such as
1701 @code{sit-for} or @code{read-event} which @emph{can} wait. Therefore, a
1702 timer's execution may be delayed if Emacs is busy. However, the time of
1703 execution is very precise if Emacs is idle.
1704
1705 Emacs binds @code{inhibit-quit} to @code{t} before calling the timer
1706 function, because quitting out of many timer functions can leave
1707 things in an inconsistent state. This is normally unproblematical
1708 because most timer functions don't do a lot of work. Indeed, for a
1709 timer to call a function that takes substantial time to run is likely
1710 to be annoying. If a timer function needs to allow quitting, it
1711 should use @code{with-local-quit} (@pxref{Quitting}). For example, if
1712 a timer function calls @code{accept-process-output} to receive output
1713 from an external process, that call should be wrapped inside
1714 @code{with-local-quit}, to ensure that @kbd{C-g} works if the external
1715 process hangs.
1716
1717 It is usually a bad idea for timer functions to alter buffer
1718 contents. When they do, they usually should call @code{undo-boundary}
1719 both before and after changing the buffer, to separate the timer's
1720 changes from user commands' changes and prevent a single undo entry
1721 from growing to be quite large.
1722
1723 Timer functions should also avoid calling functions that cause Emacs
1724 to wait, such as @code{sit-for} (@pxref{Waiting}). This can lead to
1725 unpredictable effects, since other timers (or even the same timer) can
1726 run while waiting. If a timer function needs to perform an action
1727 after a certain time has elapsed, it can do this by scheduling a new
1728 timer.
1729
1730 If a timer function calls functions that can change the match data,
1731 it should save and restore the match data. @xref{Saving Match Data}.
1732
1733 @deffn Command run-at-time time repeat function &rest args
1734 This sets up a timer that calls the function @var{function} with
1735 arguments @var{args} at time @var{time}. If @var{repeat} is a number
1736 (integer or floating point), the timer is scheduled to run again every
1737 @var{repeat} seconds after @var{time}. If @var{repeat} is @code{nil},
1738 the timer runs only once.
1739
1740 @var{time} may specify an absolute or a relative time.
1741
1742 Absolute times may be specified using a string with a limited variety
1743 of formats, and are taken to be times @emph{today}, even if already in
1744 the past. The recognized forms are @samp{@var{xxxx}},
1745 @samp{@var{x}:@var{xx}}, or @samp{@var{xx}:@var{xx}} (military time),
1746 and @samp{@var{xx}am}, @samp{@var{xx}AM}, @samp{@var{xx}pm},
1747 @samp{@var{xx}PM}, @samp{@var{xx}:@var{xx}am},
1748 @samp{@var{xx}:@var{xx}AM}, @samp{@var{xx}:@var{xx}pm}, or
1749 @samp{@var{xx}:@var{xx}PM}. A period can be used instead of a colon
1750 to separate the hour and minute parts.
1751
1752 To specify a relative time as a string, use numbers followed by units.
1753 For example:
1754
1755 @table @samp
1756 @item 1 min
1757 denotes 1 minute from now.
1758 @item 1 min 5 sec
1759 denotes 65 seconds from now.
1760 @item 1 min 2 sec 3 hour 4 day 5 week 6 fortnight 7 month 8 year
1761 denotes exactly 103 months, 123 days, and 10862 seconds from now.
1762 @end table
1763
1764 For relative time values, Emacs considers a month to be exactly thirty
1765 days, and a year to be exactly 365.25 days.
1766
1767 Not all convenient formats are strings. If @var{time} is a number
1768 (integer or floating point), that specifies a relative time measured in
1769 seconds. The result of @code{encode-time} can also be used to specify
1770 an absolute value for @var{time}.
1771
1772 In most cases, @var{repeat} has no effect on when @emph{first} call
1773 takes place---@var{time} alone specifies that. There is one exception:
1774 if @var{time} is @code{t}, then the timer runs whenever the time is a
1775 multiple of @var{repeat} seconds after the epoch. This is useful for
1776 functions like @code{display-time}.
1777
1778 The function @code{run-at-time} returns a timer value that identifies
1779 the particular scheduled future action. You can use this value to call
1780 @code{cancel-timer} (see below).
1781 @end deffn
1782
1783 A repeating timer nominally ought to run every @var{repeat} seconds,
1784 but remember that any invocation of a timer can be late. Lateness of
1785 one repetition has no effect on the scheduled time of the next
1786 repetition. For instance, if Emacs is busy computing for long enough
1787 to cover three scheduled repetitions of the timer, and then starts to
1788 wait, it will immediately call the timer function three times in
1789 immediate succession (presuming no other timers trigger before or
1790 between them). If you want a timer to run again no less than @var{n}
1791 seconds after the last invocation, don't use the @var{repeat} argument.
1792 Instead, the timer function should explicitly reschedule the timer.
1793
1794 @defopt timer-max-repeats
1795 This variable's value specifies the maximum number of times to repeat
1796 calling a timer function in a row, when many previously scheduled
1797 calls were unavoidably delayed.
1798 @end defopt
1799
1800 @defmac with-timeout (seconds timeout-forms@dots{}) body@dots{}
1801 Execute @var{body}, but give up after @var{seconds} seconds. If
1802 @var{body} finishes before the time is up, @code{with-timeout} returns
1803 the value of the last form in @var{body}. If, however, the execution of
1804 @var{body} is cut short by the timeout, then @code{with-timeout}
1805 executes all the @var{timeout-forms} and returns the value of the last
1806 of them.
1807
1808 This macro works by setting a timer to run after @var{seconds} seconds. If
1809 @var{body} finishes before that time, it cancels the timer. If the
1810 timer actually runs, it terminates execution of @var{body}, then
1811 executes @var{timeout-forms}.
1812
1813 Since timers can run within a Lisp program only when the program calls a
1814 primitive that can wait, @code{with-timeout} cannot stop executing
1815 @var{body} while it is in the midst of a computation---only when it
1816 calls one of those primitives. So use @code{with-timeout} only with a
1817 @var{body} that waits for input, not one that does a long computation.
1818 @end defmac
1819
1820 The function @code{y-or-n-p-with-timeout} provides a simple way to use
1821 a timer to avoid waiting too long for an answer. @xref{Yes-or-No
1822 Queries}.
1823
1824 @defun cancel-timer timer
1825 This cancels the requested action for @var{timer}, which should be a
1826 timer---usually, one previously returned by @code{run-at-time} or
1827 @code{run-with-idle-timer}. This cancels the effect of that call to
1828 one of these functions; the arrival of the specified time will not
1829 cause anything special to happen.
1830 @end defun
1831
1832 @node Idle Timers
1833 @section Idle Timers
1834 @cindex idle timers
1835
1836 Here is how to set up a timer that runs when Emacs is idle for a
1837 certain length of time. Aside from how to set them up, idle timers
1838 work just like ordinary timers.
1839
1840 @deffn Command run-with-idle-timer secs repeat function &rest args
1841 Set up a timer which runs the next time Emacs is idle for @var{secs}
1842 seconds. The value of @var{secs} may be a number or a value of the type
1843 returned by @code{current-idle-time}.
1844
1845 If @var{repeat} is @code{nil}, the timer runs just once, the first time
1846 Emacs remains idle for a long enough time. More often @var{repeat} is
1847 non-@code{nil}, which means to run the timer @emph{each time} Emacs
1848 remains idle for @var{secs} seconds.
1849
1850 The function @code{run-with-idle-timer} returns a timer value which you
1851 can use in calling @code{cancel-timer} (@pxref{Timers}).
1852 @end deffn
1853
1854 @cindex idleness
1855 Emacs becomes @dfn{idle} when it starts waiting for user input, and
1856 it remains idle until the user provides some input. If a timer is set
1857 for five seconds of idleness, it runs approximately five seconds after
1858 Emacs first becomes idle. Even if @var{repeat} is non-@code{nil},
1859 this timer will not run again as long as Emacs remains idle, because
1860 the duration of idleness will continue to increase and will not go
1861 down to five seconds again.
1862
1863 Emacs can do various things while idle: garbage collect, autosave or
1864 handle data from a subprocess. But these interludes during idleness do
1865 not interfere with idle timers, because they do not reset the clock of
1866 idleness to zero. An idle timer set for 600 seconds will run when ten
1867 minutes have elapsed since the last user command was finished, even if
1868 subprocess output has been accepted thousands of times within those ten
1869 minutes, and even if there have been garbage collections and autosaves.
1870
1871 When the user supplies input, Emacs becomes non-idle while executing the
1872 input. Then it becomes idle again, and all the idle timers that are
1873 set up to repeat will subsequently run another time, one by one.
1874
1875 Do not write an idle timer function containing a loop which does a
1876 certain amount of processing each time around, and exits when
1877 @code{(input-pending-p)} is non-@code{nil}. This approach seems very
1878 natural but has two problems:
1879
1880 @itemize
1881 @item
1882 It blocks out all process output (since Emacs accepts process output
1883 only while waiting).
1884
1885 @item
1886 It blocks out any idle timers that ought to run during that time.
1887 @end itemize
1888
1889 @noindent
1890 Similarly, do not write an idle timer function that sets up another
1891 idle timer (including the same idle timer) with @var{secs} argument
1892 less than or equal to the current idleness time. Such a timer will
1893 run almost immediately, and continue running again and again, instead
1894 of waiting for the next time Emacs becomes idle. The correct approach
1895 is to reschedule with an appropriate increment of the current value of
1896 the idleness time, as described below.
1897
1898 @defun current-idle-time
1899 If Emacs is idle, this function returns the length of time Emacs has
1900 been idle, as a list of four integers: @code{(@var{sec-high}
1901 @var{sec-low} @var{microsec} @var{picosec})}, using the same format as
1902 @code{current-time} (@pxref{Time of Day}).
1903
1904 When Emacs is not idle, @code{current-idle-time} returns @code{nil}.
1905 This is a convenient way to test whether Emacs is idle.
1906 @end defun
1907
1908 The main use of @code{current-idle-time} is when an idle timer
1909 function wants to ``take a break'' for a while. It can set up another
1910 idle timer to call the same function again, after a few seconds more
1911 idleness. Here's an example:
1912
1913 @example
1914 (defvar my-resume-timer nil
1915 "Timer for `my-timer-function' to reschedule itself, or nil.")
1916
1917 (defun my-timer-function ()
1918 ;; @r{If the user types a command while @code{my-resume-timer}}
1919 ;; @r{is active, the next time this function is called from}
1920 ;; @r{its main idle timer, deactivate @code{my-resume-timer}.}
1921 (when my-resume-timer
1922 (cancel-timer my-resume-timer))
1923 ...@var{do the work for a while}...
1924 (when @var{taking-a-break}
1925 (setq my-resume-timer
1926 (run-with-idle-timer
1927 ;; Compute an idle time @var{break-length}
1928 ;; more than the current value.
1929 (time-add (current-idle-time) @var{break-length})
1930 nil
1931 'my-timer-function))))
1932 @end example
1933
1934 @node Terminal Input
1935 @section Terminal Input
1936 @cindex terminal input
1937
1938 This section describes functions and variables for recording or
1939 manipulating terminal input. See @ref{Display}, for related
1940 functions.
1941
1942 @menu
1943 * Input Modes:: Options for how input is processed.
1944 * Recording Input:: Saving histories of recent or all input events.
1945 @end menu
1946
1947 @node Input Modes
1948 @subsection Input Modes
1949 @cindex input modes
1950 @cindex terminal input modes
1951
1952 @defun set-input-mode interrupt flow meta &optional quit-char
1953 This function sets the mode for reading keyboard input. If
1954 @var{interrupt} is non-@code{nil}, then Emacs uses input interrupts.
1955 If it is @code{nil}, then it uses @sc{cbreak} mode. The default
1956 setting is system-dependent. Some systems always use @sc{cbreak} mode
1957 regardless of what is specified.
1958
1959 When Emacs communicates directly with X, it ignores this argument and
1960 uses interrupts if that is the way it knows how to communicate.
1961
1962 If @var{flow} is non-@code{nil}, then Emacs uses @sc{xon/xoff}
1963 (@kbd{C-q}, @kbd{C-s}) flow control for output to the terminal. This
1964 has no effect except in @sc{cbreak} mode.
1965
1966 The argument @var{meta} controls support for input character codes
1967 above 127. If @var{meta} is @code{t}, Emacs converts characters with
1968 the 8th bit set into Meta characters. If @var{meta} is @code{nil},
1969 Emacs disregards the 8th bit; this is necessary when the terminal uses
1970 it as a parity bit. If @var{meta} is neither @code{t} nor @code{nil},
1971 Emacs uses all 8 bits of input unchanged. This is good for terminals
1972 that use 8-bit character sets.
1973
1974 If @var{quit-char} is non-@code{nil}, it specifies the character to
1975 use for quitting. Normally this character is @kbd{C-g}.
1976 @xref{Quitting}.
1977 @end defun
1978
1979 The @code{current-input-mode} function returns the input mode settings
1980 Emacs is currently using.
1981
1982 @defun current-input-mode
1983 This function returns the current mode for reading keyboard input. It
1984 returns a list, corresponding to the arguments of @code{set-input-mode},
1985 of the form @code{(@var{interrupt} @var{flow} @var{meta} @var{quit})} in
1986 which:
1987 @table @var
1988 @item interrupt
1989 is non-@code{nil} when Emacs is using interrupt-driven input. If
1990 @code{nil}, Emacs is using @sc{cbreak} mode.
1991 @item flow
1992 is non-@code{nil} if Emacs uses @sc{xon/xoff} (@kbd{C-q}, @kbd{C-s})
1993 flow control for output to the terminal. This value is meaningful only
1994 when @var{interrupt} is @code{nil}.
1995 @item meta
1996 is @code{t} if Emacs treats the eighth bit of input characters as
1997 the meta bit; @code{nil} means Emacs clears the eighth bit of every
1998 input character; any other value means Emacs uses all eight bits as the
1999 basic character code.
2000 @item quit
2001 is the character Emacs currently uses for quitting, usually @kbd{C-g}.
2002 @end table
2003 @end defun
2004
2005 @node Recording Input
2006 @subsection Recording Input
2007 @cindex recording input
2008
2009 @defun recent-keys
2010 This function returns a vector containing the last 300 input events from
2011 the keyboard or mouse. All input events are included, whether or not
2012 they were used as parts of key sequences. Thus, you always get the last
2013 300 input events, not counting events generated by keyboard macros.
2014 (These are excluded because they are less interesting for debugging; it
2015 should be enough to see the events that invoked the macros.)
2016
2017 A call to @code{clear-this-command-keys} (@pxref{Command Loop Info})
2018 causes this function to return an empty vector immediately afterward.
2019 @end defun
2020
2021 @deffn Command open-dribble-file filename
2022 @cindex dribble file
2023 This function opens a @dfn{dribble file} named @var{filename}. When a
2024 dribble file is open, each input event from the keyboard or mouse (but
2025 not those from keyboard macros) is written in that file. A
2026 non-character event is expressed using its printed representation
2027 surrounded by @samp{<@dots{}>}. Be aware that sensitive information
2028 (such as passwords) may end up recorded in the dribble file.
2029
2030 You close the dribble file by calling this function with an argument
2031 of @code{nil}.
2032 @end deffn
2033
2034 See also the @code{open-termscript} function (@pxref{Terminal Output}).
2035
2036 @node Terminal Output
2037 @section Terminal Output
2038 @cindex terminal output
2039
2040 The terminal output functions send output to a text terminal, or keep
2041 track of output sent to the terminal. The variable @code{baud-rate}
2042 tells you what Emacs thinks is the output speed of the terminal.
2043
2044 @defopt baud-rate
2045 This variable's value is the output speed of the terminal, as far as
2046 Emacs knows. Setting this variable does not change the speed of actual
2047 data transmission, but the value is used for calculations such as
2048 padding.
2049
2050 It also affects decisions about whether to scroll part of the
2051 screen or repaint on text terminals. @xref{Forcing Redisplay},
2052 for the corresponding functionality on graphical terminals.
2053
2054 The value is measured in baud.
2055 @end defopt
2056
2057 If you are running across a network, and different parts of the
2058 network work at different baud rates, the value returned by Emacs may be
2059 different from the value used by your local terminal. Some network
2060 protocols communicate the local terminal speed to the remote machine, so
2061 that Emacs and other programs can get the proper value, but others do
2062 not. If Emacs has the wrong value, it makes decisions that are less
2063 than optimal. To fix the problem, set @code{baud-rate}.
2064
2065 @defun send-string-to-terminal string &optional terminal
2066 This function sends @var{string} to @var{terminal} without alteration.
2067 Control characters in @var{string} have terminal-dependent effects.
2068 This function operates only on text terminals. @var{terminal} may be
2069 a terminal object, a frame, or @code{nil} for the selected frame's
2070 terminal. In batch mode, @var{string} is sent to @code{stdout} when
2071 @var{terminal} is @code{nil}.
2072
2073 One use of this function is to define function keys on terminals that
2074 have downloadable function key definitions. For example, this is how (on
2075 certain terminals) to define function key 4 to move forward four
2076 characters (by transmitting the characters @kbd{C-u C-f} to the
2077 computer):
2078
2079 @example
2080 @group
2081 (send-string-to-terminal "\eF4\^U\^F")
2082 @result{} nil
2083 @end group
2084 @end example
2085 @end defun
2086
2087 @deffn Command open-termscript filename
2088 @cindex termscript file
2089 This function is used to open a @dfn{termscript file} that will record
2090 all the characters sent by Emacs to the terminal. It returns
2091 @code{nil}. Termscript files are useful for investigating problems
2092 where Emacs garbles the screen, problems that are due to incorrect
2093 Termcap entries or to undesirable settings of terminal options more
2094 often than to actual Emacs bugs. Once you are certain which characters
2095 were actually output, you can determine reliably whether they correspond
2096 to the Termcap specifications in use.
2097
2098 @example
2099 @group
2100 (open-termscript "../junk/termscript")
2101 @result{} nil
2102 @end group
2103 @end example
2104
2105 You close the termscript file by calling this function with an
2106 argument of @code{nil}.
2107
2108 See also @code{open-dribble-file} in @ref{Recording Input}.
2109 @end deffn
2110
2111 @node Sound Output
2112 @section Sound Output
2113 @cindex sound
2114
2115 To play sound using Emacs, use the function @code{play-sound}. Only
2116 certain systems are supported; if you call @code{play-sound} on a
2117 system which cannot really do the job, it gives an error.
2118
2119 @c FIXME: Add indexes for Au and WAV? --xfq
2120 The sound must be stored as a file in RIFF-WAVE format (@samp{.wav})
2121 or Sun Audio format (@samp{.au}).
2122
2123 @defun play-sound sound
2124 This function plays a specified sound. The argument, @var{sound}, has
2125 the form @code{(sound @var{properties}...)}, where the @var{properties}
2126 consist of alternating keywords (particular symbols recognized
2127 specially) and values corresponding to them.
2128
2129 Here is a table of the keywords that are currently meaningful in
2130 @var{sound}, and their meanings:
2131
2132 @table @code
2133 @item :file @var{file}
2134 This specifies the file containing the sound to play.
2135 If the file name is not absolute, it is expanded against
2136 the directory @code{data-directory}.
2137
2138 @item :data @var{data}
2139 This specifies the sound to play without need to refer to a file. The
2140 value, @var{data}, should be a string containing the same bytes as a
2141 sound file. We recommend using a unibyte string.
2142
2143 @item :volume @var{volume}
2144 This specifies how loud to play the sound. It should be a number in the
2145 range of 0 to 1. The default is to use whatever volume has been
2146 specified before.
2147
2148 @item :device @var{device}
2149 This specifies the system device on which to play the sound, as a
2150 string. The default device is system-dependent.
2151 @end table
2152
2153 Before actually playing the sound, @code{play-sound}
2154 calls the functions in the list @code{play-sound-functions}.
2155 Each function is called with one argument, @var{sound}.
2156 @end defun
2157
2158 @deffn Command play-sound-file file &optional volume device
2159 This function is an alternative interface to playing a sound @var{file}
2160 specifying an optional @var{volume} and @var{device}.
2161 @end deffn
2162
2163 @defvar play-sound-functions
2164 A list of functions to be called before playing a sound. Each function
2165 is called with one argument, a property list that describes the sound.
2166 @end defvar
2167
2168 @node X11 Keysyms
2169 @section Operating on X11 Keysyms
2170 @cindex X11 keysyms
2171
2172 To define system-specific X11 keysyms, set the variable
2173 @code{system-key-alist}.
2174
2175 @defvar system-key-alist
2176 This variable's value should be an alist with one element for each
2177 system-specific keysym. Each element has the form @code{(@var{code}
2178 . @var{symbol})}, where @var{code} is the numeric keysym code (not
2179 including the ``vendor specific'' bit,
2180 @ifnottex
2181 @minus{}2**28),
2182 @end ifnottex
2183 @tex
2184 $-2^{28}$),
2185 @end tex
2186 and @var{symbol} is the name for the function key.
2187
2188 For example @code{(168 . mute-acute)} defines a system-specific key (used
2189 by HP X servers) whose numeric code is
2190 @ifnottex
2191 @minus{}2**28
2192 @end ifnottex
2193 @tex
2194 $-2^{28}$
2195 @end tex
2196 + 168.
2197
2198 It is not crucial to exclude from the alist the keysyms of other X
2199 servers; those do no harm, as long as they don't conflict with the ones
2200 used by the X server actually in use.
2201
2202 The variable is always local to the current terminal, and cannot be
2203 buffer-local. @xref{Multiple Terminals}.
2204 @end defvar
2205
2206 You can specify which keysyms Emacs should use for the Meta, Alt, Hyper, and Super modifiers by setting these variables:
2207
2208 @defvar x-alt-keysym
2209 @defvarx x-meta-keysym
2210 @defvarx x-hyper-keysym
2211 @defvarx x-super-keysym
2212 The name of the keysym that should stand for the Alt modifier
2213 (respectively, for Meta, Hyper, and Super). For example, here is
2214 how to swap the Meta and Alt modifiers within Emacs:
2215 @lisp
2216 (setq x-alt-keysym 'meta)
2217 (setq x-meta-keysym 'alt)
2218 @end lisp
2219 @end defvar
2220
2221 @node Batch Mode
2222 @section Batch Mode
2223 @cindex batch mode
2224
2225 The command-line option @samp{-batch} causes Emacs to run
2226 noninteractively. In this mode, Emacs does not read commands from the
2227 terminal, it does not alter the terminal modes, and it does not expect
2228 to be outputting to an erasable screen. The idea is that you specify
2229 Lisp programs to run; when they are finished, Emacs should exit. The
2230 way to specify the programs to run is with @samp{-l @var{file}}, which
2231 loads the library named @var{file}, or @samp{-f @var{function}}, which
2232 calls @var{function} with no arguments, or @samp{--eval @var{form}}.
2233
2234 Any Lisp program output that would normally go to the echo area,
2235 either using @code{message}, or using @code{prin1}, etc., with @code{t}
2236 as the stream, goes instead to Emacs's standard error descriptor when
2237 in batch mode. Similarly, input that would normally come from the
2238 minibuffer is read from the standard input descriptor.
2239 Thus, Emacs behaves much like a noninteractive
2240 application program. (The echo area output that Emacs itself normally
2241 generates, such as command echoing, is suppressed entirely.)
2242
2243 @defvar noninteractive
2244 This variable is non-@code{nil} when Emacs is running in batch mode.
2245 @end defvar
2246
2247 @node Session Management
2248 @section Session Management
2249 @cindex session manager
2250
2251 Emacs supports the X Session Management Protocol, which is used to
2252 suspend and restart applications. In the X Window System, a program
2253 called the @dfn{session manager} is responsible for keeping track of
2254 the applications that are running. When the X server shuts down, the
2255 session manager asks applications to save their state, and delays the
2256 actual shutdown until they respond. An application can also cancel
2257 the shutdown.
2258
2259 When the session manager restarts a suspended session, it directs
2260 these applications to individually reload their saved state. It does
2261 this by specifying a special command-line argument that says what
2262 saved session to restore. For Emacs, this argument is @samp{--smid
2263 @var{session}}.
2264
2265 @defvar emacs-save-session-functions
2266 @cindex session file
2267 Emacs supports saving state via a hook called
2268 @code{emacs-save-session-functions}. Emacs runs this hook when the
2269 session manager tells it that the window system is shutting down. The
2270 functions are called with no arguments, and with the current buffer
2271 set to a temporary buffer. Each function can use @code{insert} to add
2272 Lisp code to this buffer. At the end, Emacs saves the buffer in a
2273 file, called the @dfn{session file}.
2274
2275 @findex emacs-session-restore
2276 Subsequently, when the session manager restarts Emacs, it loads the
2277 session file automatically (@pxref{Loading}). This is performed by a
2278 function named @code{emacs-session-restore}, which is called during
2279 startup. @xref{Startup Summary}.
2280
2281 If a function in @code{emacs-save-session-functions} returns
2282 non-@code{nil}, Emacs tells the session manager to cancel the
2283 shutdown.
2284 @end defvar
2285
2286 Here is an example that just inserts some text into @file{*scratch*} when
2287 Emacs is restarted by the session manager.
2288
2289 @example
2290 @group
2291 (add-hook 'emacs-save-session-functions 'save-yourself-test)
2292 @end group
2293
2294 @group
2295 (defun save-yourself-test ()
2296 (insert "(save-current-buffer
2297 (switch-to-buffer \"*scratch*\")
2298 (insert \"I am restored\"))")
2299 nil)
2300 @end group
2301 @end example
2302
2303 @node Desktop Notifications
2304 @section Desktop Notifications
2305 @cindex desktop notifications
2306 @cindex notifications, on desktop
2307
2308 Emacs is able to send @dfn{notifications} on systems that support the
2309 freedesktop.org Desktop Notifications Specification. In order to use
2310 this functionality, Emacs must have been compiled with D-Bus support,
2311 and the @code{notifications} library must be loaded. @xref{Top, ,
2312 D-Bus,dbus,D-Bus integration in Emacs}.
2313
2314 @defun notifications-notify &rest params
2315 This function sends a notification to the desktop via D-Bus,
2316 consisting of the parameters specified by the @var{params} arguments.
2317 These arguments should consist of alternating keyword and value pairs.
2318 The supported keywords and values are as follows:
2319
2320 @table @code
2321 @item :bus @var{bus}
2322 The D-Bus bus. This argument is needed only if a bus other than
2323 @code{:session} shall be used.
2324
2325 @item :title @var{title}
2326 The notification title.
2327
2328 @item :body @var{text}
2329 The notification body text. Depending on the implementation of the
2330 notification server, the text could contain HTML markups, like
2331 @samp{"<b>bold text</b>"}, hyperlinks, or images. Special HTML
2332 characters must be encoded, as @samp{"Contact
2333 &lt;postmaster@@localhost&gt;!"}.
2334
2335 @item :app-name @var{name}
2336 The name of the application sending the notification. The default is
2337 @code{notifications-application-name}.
2338
2339 @item :replaces-id @var{id}
2340 The notification @var{id} that this notification replaces. @var{id}
2341 must be the result of a previous @code{notifications-notify} call.
2342
2343 @item :app-icon @var{icon-file}
2344 The file name of the notification icon. If set to @code{nil}, no icon
2345 is displayed. The default is @code{notifications-application-icon}.
2346
2347 @item :actions (@var{key} @var{title} @var{key} @var{title} ...)
2348 A list of actions to be applied. @var{key} and @var{title} are both
2349 strings. The default action (usually invoked by clicking the
2350 notification) should have a key named @samp{"default"}. The title can
2351 be anything, though implementations are free not to display it.
2352
2353 @item :timeout @var{timeout}
2354 The timeout time in milliseconds since the display of the notification
2355 at which the notification should automatically close. If @minus{}1, the
2356 notification's expiration time is dependent on the notification
2357 server's settings, and may vary for the type of notification. If 0,
2358 the notification never expires. Default value is @minus{}1.
2359
2360 @item :urgency @var{urgency}
2361 The urgency level. It can be @code{low}, @code{normal}, or @code{critical}.
2362
2363 @item :action-items
2364 When this keyword is given, the @var{title} string of the actions is
2365 interpreted as icon name.
2366
2367 @item :category @var{category}
2368 The type of notification this is, a string. See the
2369 @uref{http://developer.gnome.org/notification-spec/#categories,
2370 Desktop Notifications Specification} for a list of standard
2371 categories.
2372
2373 @item :desktop-entry @var{filename}
2374 This specifies the name of the desktop filename representing the
2375 calling program, like @samp{"emacs"}.
2376
2377 @item :image-data (@var{width} @var{height} @var{rowstride} @var{has-alpha} @var{bits} @var{channels} @var{data})
2378 This is a raw data image format that describes the width, height,
2379 rowstride, whether there is an alpha channel, bits per sample,
2380 channels and image data, respectively.
2381
2382 @item :image-path @var{path}
2383 This is represented either as a URI (@samp{file://} is the only URI
2384 schema supported right now) or a name in a freedesktop.org-compliant
2385 icon theme from @samp{$XDG_DATA_DIRS/icons}.
2386
2387 @item :sound-file @var{filename}
2388 The path to a sound file to play when the notification pops up.
2389
2390 @item :sound-name @var{name}
2391 A themable named sound from the freedesktop.org sound naming
2392 specification from @samp{$XDG_DATA_DIRS/sounds}, to play when the
2393 notification pops up. Similar to the icon name, only for sounds. An
2394 example would be @samp{"message-new-instant"}.
2395
2396 @item :suppress-sound
2397 Causes the server to suppress playing any sounds, if it has that
2398 ability.
2399
2400 @item :resident
2401 When set the server will not automatically remove the notification
2402 when an action has been invoked. The notification will remain resident
2403 in the server until it is explicitly removed by the user or by the
2404 sender. This hint is likely only useful when the server has the
2405 @code{:persistence} capability.
2406
2407 @item :transient
2408 When set the server will treat the notification as transient and
2409 by-pass the server's persistence capability, if it should exist.
2410
2411 @item :x @var{position}
2412 @itemx :y @var{position}
2413 Specifies the X, Y location on the screen that the
2414 notification should point to. Both arguments must be used together.
2415
2416 @item :on-action @var{function}
2417 Function to call when an action is invoked. The notification @var{id}
2418 and the @var{key} of the action are passed as arguments to the
2419 function.
2420
2421 @item :on-close @var{function}
2422 Function to call when the notification has been closed by timeout or
2423 by the user. The function receive the notification @var{id} and the closing
2424 @var{reason} as arguments:
2425
2426 @itemize
2427 @item @code{expired} if the notification has expired
2428 @item @code{dismissed} if the notification was dismissed by the user
2429 @item @code{close-notification} if the notification was closed by a call to
2430 @code{notifications-close-notification}
2431 @item @code{undefined} if the notification server hasn't provided a reason
2432 @end itemize
2433 @end table
2434
2435 Which parameters are accepted by the notification server can be
2436 checked via @code{notifications-get-capabilities}.
2437
2438 This function returns a notification id, an integer, which can be used
2439 to manipulate the notification item with
2440 @code{notifications-close-notification} or the @code{:replaces-id}
2441 argument of another @code{notifications-notify} call. For example:
2442
2443 @example
2444 @group
2445 (defun my-on-action-function (id key)
2446 (message "Message %d, key \"%s\" pressed" id key))
2447 @result{} my-on-action-function
2448 @end group
2449
2450 @group
2451 (defun my-on-close-function (id reason)
2452 (message "Message %d, closed due to \"%s\"" id reason))
2453 @result{} my-on-close-function
2454 @end group
2455
2456 @group
2457 (notifications-notify
2458 :title "Title"
2459 :body "This is <b>important</b>."
2460 :actions '("Confirm" "I agree" "Refuse" "I disagree")
2461 :on-action 'my-on-action-function
2462 :on-close 'my-on-close-function)
2463 @result{} 22
2464 @end group
2465
2466 @group
2467 A message window opens on the desktop. Press "I agree"
2468 @result{} Message 22, key "Confirm" pressed
2469 Message 22, closed due to "dismissed"
2470 @end group
2471 @end example
2472 @end defun
2473
2474 @defun notifications-close-notification id &optional bus
2475 This function closes a notification with identifier @var{id}.
2476 @var{bus} can be a string denoting a D-Bus connection, the default is
2477 @code{:session}.
2478 @end defun
2479
2480 @defun notifications-get-capabilities &optional bus
2481 Returns the capabilities of the notification server, a list of
2482 symbols. @var{bus} can be a string denoting a D-Bus connection, the
2483 default is @code{:session}. The following capabilities can be
2484 expected:
2485
2486 @table @code
2487 @item :actions
2488 The server will provide the specified actions to the user.
2489
2490 @item :body
2491 Supports body text.
2492
2493 @item :body-hyperlinks
2494 The server supports hyperlinks in the notifications.
2495
2496 @item :body-images
2497 The server supports images in the notifications.
2498
2499 @item :body-markup
2500 Supports markup in the body text.
2501
2502 @item :icon-multi
2503 The server will render an animation of all the frames in a given image
2504 array.
2505
2506 @item :icon-static
2507 Supports display of exactly 1 frame of any given image array. This
2508 value is mutually exclusive with @code{:icon-multi}.
2509
2510 @item :persistence
2511 The server supports persistence of notifications.
2512
2513 @item :sound
2514 The server supports sounds on notifications.
2515 @end table
2516
2517 Further vendor-specific caps start with @code{:x-vendor}, like
2518 @code{:x-gnome-foo-cap}.
2519 @end defun
2520
2521 @defun notifications-get-server-information &optional bus
2522 Return information on the notification server, a list of strings.
2523 @var{bus} can be a string denoting a D-Bus connection, the default is
2524 @code{:session}. The returned list is @code{(@var{name} @var{vendor}
2525 @var{version} @var{spec-version})}.
2526
2527 @table @var
2528 @item name
2529 The product name of the server.
2530
2531 @item vendor
2532 The vendor name. For example, @samp{"KDE"}, @samp{"GNOME"}.
2533
2534 @item version
2535 The server's version number.
2536
2537 @item spec-version
2538 The specification version the server is compliant with.
2539 @end table
2540
2541 If @var{SPEC_VERSION} is @code{nil}, the server supports a
2542 specification prior to @samp{"1.0"}.
2543 @end defun
2544
2545 @node File Notifications
2546 @section Notifications on File Changes
2547 @cindex file notifications
2548 @cindex watch, for filesystem events
2549
2550 Several operating systems support watching of filesystems for changes
2551 of files. If configured properly, Emacs links a respective library
2552 like @file{gfilenotify}, @file{inotify}, or @file{w32notify}
2553 statically. These libraries enable watching of filesystems on the
2554 local machine.
2555
2556 It is also possible to watch filesystems on remote machines,
2557 @pxref{Remote Files,, Remote Files, emacs, The GNU Emacs Manual}
2558 This does not depend on one of the libraries linked to Emacs.
2559
2560 Since all these libraries emit different events on notified file
2561 changes, there is the Emacs library @code{filenotify} which provides a
2562 unique interface.
2563
2564 @defun file-notify-add-watch file flags callback
2565 Add a watch for filesystem events pertaining to @var{file}. This
2566 arranges for filesystem events pertaining to @var{file} to be reported
2567 to Emacs.
2568
2569 The returned value is a descriptor for the added watch. Its type
2570 depends on the underlying library, it cannot be assumed to be an
2571 integer as in the example below. It should be used for comparison by
2572 @code{equal} only.
2573
2574 If the @var{file} cannot be watched for some reason, this function
2575 signals a @code{file-notify-error} error.
2576
2577 Sometimes, mounted filesystems cannot be watched for file changes.
2578 This is not detected by this function, a non-@code{nil} return value
2579 does not guarantee that changes on @var{file} will be notified.
2580
2581 @var{flags} is a list of conditions to set what will be watched for.
2582 It can include the following symbols:
2583
2584 @table @code
2585 @item change
2586 watch for file changes
2587 @item attribute-change
2588 watch for file attribute changes, like permissions or modification
2589 time
2590 @end table
2591
2592 If @var{file} is a directory, changes for all files in that directory
2593 will be notified. This does not work recursively.
2594
2595 When any event happens, Emacs will call the @var{callback} function
2596 passing it a single argument @var{event}, which is of the form
2597
2598 @lisp
2599 (@var{descriptor} @var{action} @var{file} [@var{file1}])
2600 @end lisp
2601
2602 @var{descriptor} is the same object as the one returned by this
2603 function. @var{action} is the description of the event. It could be
2604 any one of the following symbols:
2605
2606 @table @code
2607 @item created
2608 @var{file} was created
2609 @item deleted
2610 @var{file} was deleted
2611 @item changed
2612 @var{file} has changed
2613 @item renamed
2614 @var{file} has been renamed to @var{file1}
2615 @item attribute-changed
2616 a @var{file} attribute was changed
2617 @end table
2618
2619 @var{file} and @var{file1} are the name of the file(s) whose event is
2620 being reported. For example:
2621
2622 @example
2623 @group
2624 (require 'filenotify)
2625 @result{} filenotify
2626 @end group
2627
2628 @group
2629 (defun my-notify-callback (event)
2630 (message "Event %S" event))
2631 @result{} my-notify-callback
2632 @end group
2633
2634 @group
2635 (file-notify-add-watch
2636 "/tmp" '(change attribute-change) 'my-notify-callback)
2637 @result{} 35025468
2638 @end group
2639
2640 @group
2641 (write-region "foo" nil "/tmp/foo")
2642 @result{} Event (35025468 created "/tmp/.#foo")
2643 Event (35025468 created "/tmp/foo")
2644 Event (35025468 changed "/tmp/foo")
2645 Event (35025468 deleted "/tmp/.#foo")
2646 @end group
2647
2648 @group
2649 (write-region "bla" nil "/tmp/foo")
2650 @result{} Event (35025468 created "/tmp/.#foo")
2651 Event (35025468 changed "/tmp/foo") [2 times]
2652 Event (35025468 deleted "/tmp/.#foo")
2653 @end group
2654
2655 @group
2656 (set-file-modes "/tmp/foo" (default-file-modes))
2657 @result{} Event (35025468 attribute-changed "/tmp/foo")
2658 @end group
2659 @end example
2660
2661 Whether the action @code{renamed} is returned, depends on the used
2662 watch library. It can be expected, when a directory is watched, and
2663 both @var{file} and @var{file1} belong to this directory. Otherwise,
2664 the actions @code{deleted} and @code{created} could be returned in a
2665 random order.
2666
2667 @example
2668 @group
2669 (rename-file "/tmp/foo" "/tmp/bla")
2670 @result{} Event (35025468 renamed "/tmp/foo" "/tmp/bla")
2671 @end group
2672
2673 @group
2674 (file-notify-add-watch
2675 "/var/tmp" '(change attribute-change) 'my-notify-callback)
2676 @result{} 35025504
2677 @end group
2678
2679 @group
2680 (rename-file "/tmp/bla" "/var/tmp/bla")
2681 @result{} ;; gfilenotify
2682 Event (35025468 renamed "/tmp/bla" "/var/tmp/bla")
2683
2684 @result{} ;; inotify
2685 Event (35025504 created "/var/tmp/bla")
2686 Event (35025468 deleted "/tmp/bla")
2687 @end group
2688 @end example
2689 @end defun
2690
2691 @defun file-notify-rm-watch descriptor
2692 Removes an existing file watch specified by its @var{descriptor}.
2693 @var{descriptor} should be an object returned by
2694 @code{file-notify-add-watch}.
2695 @end defun
2696
2697 @node Dynamic Libraries
2698 @section Dynamically Loaded Libraries
2699 @cindex dynamic libraries
2700
2701 A @dfn{dynamically loaded library} is a library that is loaded on
2702 demand, when its facilities are first needed. Emacs supports such
2703 on-demand loading of support libraries for some of its features.
2704
2705 @defvar dynamic-library-alist
2706 This is an alist of dynamic libraries and external library files
2707 implementing them.
2708
2709 Each element is a list of the form
2710 @w{@code{(@var{library} @var{files}@dots{})}}, where the @code{car} is
2711 a symbol representing a supported external library, and the rest are
2712 strings giving alternate filenames for that library.
2713
2714 Emacs tries to load the library from the files in the order they
2715 appear in the list; if none is found, the Emacs session won't have
2716 access to that library, and the features it provides will be
2717 unavailable.
2718
2719 Image support on some platforms uses this facility. Here's an example
2720 of setting this variable for supporting images on MS-Windows:
2721
2722 @example
2723 (setq dynamic-library-alist
2724 '((xpm "libxpm.dll" "xpm4.dll" "libXpm-nox4.dll")
2725 (png "libpng12d.dll" "libpng12.dll" "libpng.dll"
2726 "libpng13d.dll" "libpng13.dll")
2727 (jpeg "jpeg62.dll" "libjpeg.dll" "jpeg-62.dll"
2728 "jpeg.dll")
2729 (tiff "libtiff3.dll" "libtiff.dll")
2730 (gif "giflib4.dll" "libungif4.dll" "libungif.dll")
2731 (svg "librsvg-2-2.dll")
2732 (gdk-pixbuf "libgdk_pixbuf-2.0-0.dll")
2733 (glib "libglib-2.0-0.dll")
2734 (gobject "libgobject-2.0-0.dll")))
2735 @end example
2736
2737 Note that image types @code{pbm} and @code{xbm} do not need entries in
2738 this variable because they do not depend on external libraries and are
2739 always available in Emacs.
2740
2741 Also note that this variable is not meant to be a generic facility for
2742 accessing external libraries; only those already known by Emacs can
2743 be loaded through it.
2744
2745 This variable is ignored if the given @var{library} is statically
2746 linked into Emacs.
2747 @end defvar