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1 @c -*-texinfo-*-
2 @c This is part of the GNU Emacs Lisp Reference Manual.
3 @c Copyright (C) 1997-2011 Free Software Foundation, Inc.
4 @c See the file elisp.texi for copying conditions.
5 @setfilename ../../info/customize
6 @node Customization, Loading, Macros, Top
7 @chapter Writing Customization Definitions
8
9 @cindex customization definitions
10 This chapter describes how to declare user options for customization,
11 and also customization groups for classifying them. We use the term
12 @dfn{customization item} to include both kinds of customization
13 definitions---as well as face definitions (@pxref{Defining Faces}).
14
15 @menu
16 * Common Keywords:: Common keyword arguments for all kinds of
17 customization declarations.
18 * Group Definitions:: Writing customization group definitions.
19 * Variable Definitions:: Declaring user options.
20 * Customization Types:: Specifying the type of a user option.
21 @end menu
22
23 @node Common Keywords
24 @section Common Item Keywords
25
26 @cindex customization keywords
27 All kinds of customization declarations (for variables and groups, and
28 for faces) accept keyword arguments for specifying various information.
29 This section describes some keywords that apply to all kinds.
30
31 All of these keywords, except @code{:tag}, can be used more than once
32 in a given item. Each use of the keyword has an independent effect.
33 The keyword @code{:tag} is an exception because any given item can only
34 display one name.
35
36 @table @code
37 @item :tag @var{label}
38 @kindex tag@r{, customization keyword}
39 Use @var{label}, a string, instead of the item's name, to label the
40 item in customization menus and buffers. @strong{Don't use a tag
41 which is substantially different from the item's real name; that would
42 cause confusion.}
43
44 @kindex group@r{, customization keyword}
45 @item :group @var{group}
46 Put this customization item in group @var{group}. When you use
47 @code{:group} in a @code{defgroup}, it makes the new group a subgroup of
48 @var{group}.
49
50 If you use this keyword more than once, you can put a single item into
51 more than one group. Displaying any of those groups will show this
52 item. Please don't overdo this, since the result would be annoying.
53
54 @item :link @var{link-data}
55 @kindex link@r{, customization keyword}
56 Include an external link after the documentation string for this item.
57 This is a sentence containing an active field which references some
58 other documentation.
59
60 There are several alternatives you can use for @var{link-data}:
61
62 @table @code
63 @item (custom-manual @var{info-node})
64 Link to an Info node; @var{info-node} is a string which specifies the
65 node name, as in @code{"(emacs)Top"}. The link appears as
66 @samp{[Manual]} in the customization buffer and enters the built-in
67 Info reader on @var{info-node}.
68
69 @item (info-link @var{info-node})
70 Like @code{custom-manual} except that the link appears
71 in the customization buffer with the Info node name.
72
73 @item (url-link @var{url})
74 Link to a web page; @var{url} is a string which specifies the
75 @acronym{URL}. The link appears in the customization buffer as
76 @var{url} and invokes the WWW browser specified by
77 @code{browse-url-browser-function}.
78
79 @item (emacs-commentary-link @var{library})
80 Link to the commentary section of a library; @var{library} is a string
81 which specifies the library name.
82
83 @item (emacs-library-link @var{library})
84 Link to an Emacs Lisp library file; @var{library} is a string which
85 specifies the library name.
86
87 @item (file-link @var{file})
88 Link to a file; @var{file} is a string which specifies the name of the
89 file to visit with @code{find-file} when the user invokes this link.
90
91 @item (function-link @var{function})
92 Link to the documentation of a function; @var{function} is a string
93 which specifies the name of the function to describe with
94 @code{describe-function} when the user invokes this link.
95
96 @item (variable-link @var{variable})
97 Link to the documentation of a variable; @var{variable} is a string
98 which specifies the name of the variable to describe with
99 @code{describe-variable} when the user invokes this link.
100
101 @item (custom-group-link @var{group})
102 Link to another customization group. Invoking it creates a new
103 customization buffer for @var{group}.
104 @end table
105
106 You can specify the text to use in the customization buffer by adding
107 @code{:tag @var{name}} after the first element of the @var{link-data};
108 for example, @code{(info-link :tag "foo" "(emacs)Top")} makes a link to
109 the Emacs manual which appears in the buffer as @samp{foo}.
110
111 An item can have more than one external link; however, most items have
112 none at all.
113
114 @item :load @var{file}
115 @kindex load@r{, customization keyword}
116 Load file @var{file} (a string) before displaying this customization
117 item (@pxref{Loading}). Loading is done with @code{load}, and only if
118 the file is not already loaded.
119
120 @item :require @var{feature}
121 @kindex require@r{, customization keyword}
122 Execute @code{(require '@var{feature})} when your saved customizations
123 set the value of this item. @var{feature} should be a symbol.
124
125 The most common reason to use @code{:require} is when a variable enables
126 a feature such as a minor mode, and just setting the variable won't have
127 any effect unless the code which implements the mode is loaded.
128
129 @item :version @var{version}
130 @kindex version@r{, customization keyword}
131 This keyword specifies that the item was first introduced in Emacs
132 version @var{version}, or that its default value was changed in that
133 version. The value @var{version} must be a string.
134
135 @item :package-version '(@var{package} . @var{version})
136 @kindex package-version@r{, customization keyword}
137 This keyword specifies that the item was first introduced in
138 @var{package} version @var{version}, or that its meaning or default
139 value was changed in that version. The value of @var{package} is a
140 symbol and @var{version} is a string.
141
142 This keyword takes priority over @code{:version}.
143
144 @var{package} should be the official name of the package, such as MH-E
145 or Gnus. If the package @var{package} is released as part of Emacs,
146 @var{package} and @var{version} should appear in the value of
147 @code{customize-package-emacs-version-alist}.
148 @end table
149
150 Packages distributed as part of Emacs that use the
151 @code{:package-version} keyword must also update the
152 @code{customize-package-emacs-version-alist} variable.
153
154 @defvar customize-package-emacs-version-alist
155 This alist provides a mapping for the versions of Emacs that are
156 associated with versions of a package listed in the
157 @code{:package-version} keyword. Its elements look like this:
158
159 @example
160 (@var{package} (@var{pversion} . @var{eversion})@dots{})
161 @end example
162
163 For each @var{package}, which is a symbol, there are one or more
164 elements that contain a package version @var{pversion} with an
165 associated Emacs version @var{eversion}. These versions are strings.
166 For example, the MH-E package updates this alist with the following:
167
168 @smallexample
169 (add-to-list 'customize-package-emacs-version-alist
170 '(MH-E ("6.0" . "22.1") ("6.1" . "22.1") ("7.0" . "22.1")
171 ("7.1" . "22.1") ("7.2" . "22.1") ("7.3" . "22.1")
172 ("7.4" . "22.1") ("8.0" . "22.1")))
173 @end smallexample
174
175 The value of @var{package} needs to be unique and it needs to match
176 the @var{package} value appearing in the @code{:package-version}
177 keyword. Since the user might see the value in a error message, a good
178 choice is the official name of the package, such as MH-E or Gnus.
179 @end defvar
180
181 @node Group Definitions
182 @section Defining Customization Groups
183 @cindex define customization group
184 @cindex customization groups, defining
185
186 Each Emacs Lisp package should have one main customization group which
187 contains all the options, faces and other groups in the package. If the
188 package has a small number of options and faces, use just one group and
189 put everything in it. When there are more than twelve or so options and
190 faces, then you should structure them into subgroups, and put the
191 subgroups under the package's main customization group. It is OK to
192 put some of the options and faces in the package's main group alongside
193 the subgroups.
194
195 The package's main or only group should be a member of one or more of
196 the standard customization groups. (To display the full list of them,
197 use @kbd{M-x customize}.) Choose one or more of them (but not too
198 many), and add your group to each of them using the @code{:group}
199 keyword.
200
201 The way to declare new customization groups is with @code{defgroup}.
202
203 @defmac defgroup group members doc [keyword value]@dots{}
204 Declare @var{group} as a customization group containing @var{members}.
205 Do not quote the symbol @var{group}. The argument @var{doc} specifies
206 the documentation string for the group.
207
208 The argument @var{members} is a list specifying an initial set of
209 customization items to be members of the group. However, most often
210 @var{members} is @code{nil}, and you specify the group's members by
211 using the @code{:group} keyword when defining those members.
212
213 If you want to specify group members through @var{members}, each element
214 should have the form @code{(@var{name} @var{widget})}. Here @var{name}
215 is a symbol, and @var{widget} is a widget type for editing that symbol.
216 Useful widgets are @code{custom-variable} for a variable,
217 @code{custom-face} for a face, and @code{custom-group} for a group.
218
219 When you introduce a new group into Emacs, use the @code{:version}
220 keyword in the @code{defgroup}; then you need not use it for
221 the individual members of the group.
222
223 In addition to the common keywords (@pxref{Common Keywords}), you can
224 also use this keyword in @code{defgroup}:
225
226 @table @code
227 @item :prefix @var{prefix}
228 @kindex prefix@r{, @code{defgroup} keyword}
229 If the name of an item in the group starts with @var{prefix}, then the
230 tag for that item is constructed (by default) by omitting @var{prefix}.
231
232 One group can have any number of prefixes.
233 @end table
234 @end defmac
235
236 The prefix-discarding feature is currently turned off, which means
237 that @code{:prefix} currently has no effect. We did this because we
238 found that discarding the specified prefixes often led to confusing
239 names for options. This happened because the people who wrote the
240 @code{defgroup} definitions for various groups added @code{:prefix}
241 keywords whenever they make logical sense---that is, whenever the
242 variables in the library have a common prefix.
243
244 In order to obtain good results with @code{:prefix}, it would be
245 necessary to check the specific effects of discarding a particular
246 prefix, given the specific items in a group and their names and
247 documentation. If the resulting text is not clear, then @code{:prefix}
248 should not be used in that case.
249
250 It should be possible to recheck all the customization groups, delete
251 the @code{:prefix} specifications which give unclear results, and then
252 turn this feature back on, if someone would like to do the work.
253
254 @node Variable Definitions
255 @section Defining Customization Variables
256 @cindex define customization options
257 @cindex customization variables, how to define
258
259 Use @code{defcustom} to declare user-customizable variables.
260
261 @defmac defcustom option standard doc [keyword value]@dots{}
262 This macro declares @var{option} as a customizable @dfn{user option}.
263 You should not quote @var{option}.
264
265 This causes the function @code{user-variable-p} to return @code{t}
266 when given @var{option} as an argument. @xref{Defining Variables}.
267 The argument @var{doc} specifies the documentation string for the
268 variable. (Note that there is no need to start @var{doc} with a
269 @samp{*}.)
270
271 The argument @var{standard} is an expression that specifies the
272 standard value for @var{option}. Evaluating the @code{defcustom} form
273 evaluates @var{standard}, but does not necessarily install the
274 standard value. If @var{option} already has a default value,
275 @code{defcustom} does not change it. If the user has saved a
276 customization for @var{option}, @code{defcustom} installs the user's
277 customized value as @var{option}'s default value. If neither of those
278 cases applies, @code{defcustom} installs the result of evaluating
279 @var{standard} as the default value.
280
281 The expression @var{standard} can be evaluated at various other times,
282 too---whenever the customization facility needs to know @var{option}'s
283 standard value. So be sure to use an expression which is harmless to
284 evaluate at any time. We recommend avoiding backquotes in
285 @var{standard}, because they are not expanded when editing the value,
286 so list values will appear to have the wrong structure.
287
288 Every @code{defcustom} should specify @code{:group} at least once.
289
290 If you specify the @code{:set} keyword, to make the variable take other
291 special actions when set through the customization buffer, the
292 variable's documentation string should tell the user specifically how
293 to do the same job in hand-written Lisp code.
294
295 When you evaluate a @code{defcustom} form with @kbd{C-M-x} in Emacs Lisp
296 mode (@code{eval-defun}), a special feature of @code{eval-defun}
297 arranges to set the variable unconditionally, without testing whether
298 its value is void. (The same feature applies to @code{defvar}.)
299 @xref{Defining Variables}.
300
301 If you put a @code{defcustom} in a file that is preloaded at dump time
302 (@pxref{Building Emacs}), and the standard value installed for the
303 variable at that time might not be correct, use
304 @code{custom-reevaluate-setting}, described below, to re-evaluate the
305 standard value during or after Emacs startup.
306 @end defmac
307
308 @code{defcustom} accepts the following additional keywords:
309
310 @table @code
311 @item :type @var{type}
312 Use @var{type} as the data type for this option. It specifies which
313 values are legitimate, and how to display the value.
314 @xref{Customization Types}, for more information.
315
316 @item :options @var{value-list}
317 @kindex options@r{, @code{defcustom} keyword}
318 Specify the list of reasonable values for use in this
319 option. The user is not restricted to using only these values, but they
320 are offered as convenient alternatives.
321
322 This is meaningful only for certain types, currently including
323 @code{hook}, @code{plist} and @code{alist}. See the definition of the
324 individual types for a description of how to use @code{:options}.
325
326 @item :set @var{setfunction}
327 @kindex set@r{, @code{defcustom} keyword}
328 Specify @var{setfunction} as the way to change the value of this
329 option. The function @var{setfunction} should take two arguments, a
330 symbol (the option name) and the new value, and should do whatever is
331 necessary to update the value properly for this option (which may not
332 mean simply setting the option as a Lisp variable). The default for
333 @var{setfunction} is @code{set-default}.
334
335 @item :get @var{getfunction}
336 @kindex get@r{, @code{defcustom} keyword}
337 Specify @var{getfunction} as the way to extract the value of this
338 option. The function @var{getfunction} should take one argument, a
339 symbol, and should return whatever customize should use as the
340 ``current value'' for that symbol (which need not be the symbol's Lisp
341 value). The default is @code{default-value}.
342
343 You have to really understand the workings of Custom to use
344 @code{:get} correctly. It is meant for values that are treated in
345 Custom as variables but are not actually stored in Lisp variables. It
346 is almost surely a mistake to specify @code{getfunction} for a value
347 that really is stored in a Lisp variable.
348
349 @item :initialize @var{function}
350 @kindex initialize@r{, @code{defcustom} keyword}
351 @var{function} should be a function used to initialize the variable
352 when the @code{defcustom} is evaluated. It should take two arguments,
353 the option name (a symbol) and the value. Here are some predefined
354 functions meant for use in this way:
355
356 @table @code
357 @item custom-initialize-set
358 Use the variable's @code{:set} function to initialize the variable, but
359 do not reinitialize it if it is already non-void.
360
361 @item custom-initialize-default
362 Like @code{custom-initialize-set}, but use the function
363 @code{set-default} to set the variable, instead of the variable's
364 @code{:set} function. This is the usual choice for a variable whose
365 @code{:set} function enables or disables a minor mode; with this choice,
366 defining the variable will not call the minor mode function, but
367 customizing the variable will do so.
368
369 @item custom-initialize-reset
370 Always use the @code{:set} function to initialize the variable. If
371 the variable is already non-void, reset it by calling the @code{:set}
372 function using the current value (returned by the @code{:get} method).
373 This is the default @code{:initialize} function.
374
375 @item custom-initialize-changed
376 Use the @code{:set} function to initialize the variable, if it is
377 already set or has been customized; otherwise, just use
378 @code{set-default}.
379
380 @item custom-initialize-safe-set
381 @itemx custom-initialize-safe-default
382 These functions behave like @code{custom-initialize-set}
383 (@code{custom-initialize-default}, respectively), but catch errors.
384 If an error occurs during initialization, they set the variable to
385 @code{nil} using @code{set-default}, and throw no error.
386
387 These two functions are only meant for options defined in pre-loaded
388 files, where some variables or functions used to compute the option's
389 value may not yet be defined. The option normally gets updated in
390 @file{startup.el}, ignoring the previously computed value. Because of
391 this typical usage, the value which these two functions compute
392 normally only matters when, after startup, one unsets the option's
393 value and then reevaluates the defcustom. By that time, the necessary
394 variables and functions will be defined, so there will not be an error.
395 @end table
396
397 @item :risky @var{value}
398 @kindex risky@r{, @code{defcustom} keyword}
399 Set the variable's @code{risky-local-variable} property to
400 @var{value} (@pxref{File Local Variables}).
401
402 @item :safe @var{function}
403 @kindex safe@r{, @code{defcustom} keyword}
404 Set the variable's @code{safe-local-variable} property to
405 @var{function} (@pxref{File Local Variables}).
406
407 @item :set-after @var{variables}
408 @kindex set-after@r{, @code{defcustom} keyword}
409 When setting variables according to saved customizations, make sure to
410 set the variables @var{variables} before this one; in other words, delay
411 setting this variable until after those others have been handled. Use
412 @code{:set-after} if setting this variable won't work properly unless
413 those other variables already have their intended values.
414 @end table
415
416 It is useful to specify the @code{:require} keyword for an option
417 that ``turns on'' a certain feature. This causes Emacs to load the
418 feature, if it is not already loaded, whenever the option is set.
419 @xref{Common Keywords}. Here is an example, from the library
420 @file{saveplace.el}:
421
422 @example
423 (defcustom save-place nil
424 "Non-nil means automatically save place in each file..."
425 :type 'boolean
426 :require 'saveplace
427 :group 'save-place)
428 @end example
429
430 If a customization item has a type such as @code{hook} or
431 @code{alist}, which supports @code{:options}, you can add additional
432 values to the list from outside the @code{defcustom} declaration by
433 calling @code{custom-add-frequent-value}. For example, if you define a
434 function @code{my-lisp-mode-initialization} intended to be called from
435 @code{emacs-lisp-mode-hook}, you might want to add that to the list of
436 reasonable values for @code{emacs-lisp-mode-hook}, but not by editing
437 its definition. You can do it thus:
438
439 @example
440 (custom-add-frequent-value 'emacs-lisp-mode-hook
441 'my-lisp-mode-initialization)
442 @end example
443
444 @defun custom-add-frequent-value symbol value
445 For the customization option @var{symbol}, add @var{value} to the
446 list of reasonable values.
447
448 The precise effect of adding a value depends on the customization type
449 of @var{symbol}.
450 @end defun
451
452 Internally, @code{defcustom} uses the symbol property
453 @code{standard-value} to record the expression for the standard value,
454 @code{saved-value} to record the value saved by the user with the
455 customization buffer, and @code{customized-value} to record the value
456 set by the user with the customization buffer, but not saved.
457 @xref{Property Lists}. These properties are lists, the car of which
458 is an expression that evaluates to the value.
459
460 @defun custom-reevaluate-setting symbol
461 This function re-evaluates the standard value of @var{symbol}, which
462 should be a user option declared via @code{defcustom}. (If the
463 variable was customized, this function re-evaluates the saved value
464 instead.) This is useful for customizable options that are defined
465 before their value could be computed correctly, such as variables
466 defined in packages that are loaded at dump time, but depend on the
467 run-time information. For example, the value could be a file whose
468 precise name depends on the hierarchy of files when Emacs runs, or a
469 name of a program that needs to be searched at run time.
470
471 A good place to put calls to this function is in the function
472 @code{command-line} that is run during startup (@pxref{Startup Summary})
473 or in the various hooks it calls.
474 @end defun
475
476 @node Customization Types
477 @section Customization Types
478
479 @cindex customization types
480 When you define a user option with @code{defcustom}, you must specify
481 its @dfn{customization type}. That is a Lisp object which describes (1)
482 which values are legitimate and (2) how to display the value in the
483 customization buffer for editing.
484
485 @kindex type@r{, @code{defcustom} keyword}
486 You specify the customization type in @code{defcustom} with the
487 @code{:type} keyword. The argument of @code{:type} is evaluated, but
488 only once when the @code{defcustom} is executed, so it isn't useful
489 for the value to vary. Normally we use a quoted constant. For
490 example:
491
492 @example
493 (defcustom diff-command "diff"
494 "The command to use to run diff."
495 :type '(string)
496 :group 'diff)
497 @end example
498
499 In general, a customization type is a list whose first element is a
500 symbol, one of the customization type names defined in the following
501 sections. After this symbol come a number of arguments, depending on
502 the symbol. Between the type symbol and its arguments, you can
503 optionally write keyword-value pairs (@pxref{Type Keywords}).
504
505 Some type symbols do not use any arguments; those are called
506 @dfn{simple types}. For a simple type, if you do not use any
507 keyword-value pairs, you can omit the parentheses around the type
508 symbol. For example just @code{string} as a customization type is
509 equivalent to @code{(string)}.
510
511 All customization types are implemented as widgets; see @ref{Top, ,
512 Introduction, widget, The Emacs Widget Library}, for details.
513
514 @menu
515 * Simple Types:: Simple customization types: sexp, integer, number,
516 string, file, directory, alist.
517 * Composite Types:: Build new types from other types or data.
518 * Splicing into Lists:: Splice elements into list with @code{:inline}.
519 * Type Keywords:: Keyword-argument pairs in a customization type.
520 * Defining New Types:: Give your type a name.
521 @end menu
522
523 @node Simple Types
524 @subsection Simple Types
525
526 This section describes all the simple customization types.
527
528 @table @code
529 @item sexp
530 The value may be any Lisp object that can be printed and read back. You
531 can use @code{sexp} as a fall-back for any option, if you don't want to
532 take the time to work out a more specific type to use.
533
534 @item integer
535 The value must be an integer, and is represented textually
536 in the customization buffer.
537
538 @item number
539 The value must be a number (floating point or integer), and is
540 represented textually in the customization buffer.
541
542 @item float
543 The value must be a floating point number, and is represented
544 textually in the customization buffer.
545
546 @item string
547 The value must be a string, and the customization buffer shows just the
548 contents, with no delimiting @samp{"} characters and no quoting with
549 @samp{\}.
550
551 @item regexp
552 Like @code{string} except that the string must be a valid regular
553 expression.
554
555 @item character
556 The value must be a character code. A character code is actually an
557 integer, but this type shows the value by inserting the character in the
558 buffer, rather than by showing the number.
559
560 @item file
561 The value must be a file name, and you can do completion with
562 @kbd{M-@key{TAB}}.
563
564 @item (file :must-match t)
565 The value must be a file name for an existing file, and you can do
566 completion with @kbd{M-@key{TAB}}.
567
568 @item directory
569 The value must be a directory name, and you can do completion with
570 @kbd{M-@key{TAB}}.
571
572 @item hook
573 The value must be a list of functions (or a single function, but that is
574 obsolete usage). This customization type is used for hook variables.
575 You can use the @code{:options} keyword in a hook variable's
576 @code{defcustom} to specify a list of functions recommended for use in
577 the hook; see @ref{Variable Definitions}.
578
579 @item alist
580 The value must be a list of cons-cells, the @sc{car} of each cell
581 representing a key, and the @sc{cdr} of the same cell representing an
582 associated value. The user can add and delete key/value pairs, and
583 edit both the key and the value of each pair.
584
585 You can specify the key and value types like this:
586
587 @smallexample
588 (alist :key-type @var{key-type} :value-type @var{value-type})
589 @end smallexample
590
591 @noindent
592 where @var{key-type} and @var{value-type} are customization type
593 specifications. The default key type is @code{sexp}, and the default
594 value type is @code{sexp}.
595
596 The user can add any key matching the specified key type, but you can
597 give some keys a preferential treatment by specifying them with the
598 @code{:options} (see @ref{Variable Definitions}). The specified keys
599 will always be shown in the customize buffer (together with a suitable
600 value), with a checkbox to include or exclude or disable the key/value
601 pair from the alist. The user will not be able to edit the keys
602 specified by the @code{:options} keyword argument.
603
604 The argument to the @code{:options} keywords should be a list of
605 specifications for reasonable keys in the alist. Ordinarily, they are
606 simply atoms, which stand for themselves as. For example:
607
608 @smallexample
609 :options '("foo" "bar" "baz")
610 @end smallexample
611
612 @noindent
613 specifies that there are three ``known'' keys, namely @code{"foo"},
614 @code{"bar"} and @code{"baz"}, which will always be shown first.
615
616 You may want to restrict the value type for specific keys, for
617 example, the value associated with the @code{"bar"} key can only be an
618 integer. You can specify this by using a list instead of an atom in
619 the list. The first element will specify the key, like before, while
620 the second element will specify the value type. For example:
621
622 @smallexample
623 :options '("foo" ("bar" integer) "baz")
624 @end smallexample
625
626 Finally, you may want to change how the key is presented. By default,
627 the key is simply shown as a @code{const}, since the user cannot change
628 the special keys specified with the @code{:options} keyword. However,
629 you may want to use a more specialized type for presenting the key, like
630 @code{function-item} if you know it is a symbol with a function binding.
631 This is done by using a customization type specification instead of a
632 symbol for the key.
633
634 @smallexample
635 :options '("foo" ((function-item some-function) integer)
636 "baz")
637 @end smallexample
638
639 Many alists use lists with two elements, instead of cons cells. For
640 example,
641
642 @smallexample
643 (defcustom list-alist '(("foo" 1) ("bar" 2) ("baz" 3))
644 "Each element is a list of the form (KEY VALUE).")
645 @end smallexample
646
647 @noindent
648 instead of
649
650 @smallexample
651 (defcustom cons-alist '(("foo" . 1) ("bar" . 2) ("baz" . 3))
652 "Each element is a cons-cell (KEY . VALUE).")
653 @end smallexample
654
655 Because of the way lists are implemented on top of cons cells, you can
656 treat @code{list-alist} in the example above as a cons cell alist, where
657 the value type is a list with a single element containing the real
658 value.
659
660 @smallexample
661 (defcustom list-alist '(("foo" 1) ("bar" 2) ("baz" 3))
662 "Each element is a list of the form (KEY VALUE)."
663 :type '(alist :value-type (group integer)))
664 @end smallexample
665
666 The @code{group} widget is used here instead of @code{list} only because
667 the formatting is better suited for the purpose.
668
669 Similarly, you can have alists with more values associated with each
670 key, using variations of this trick:
671
672 @smallexample
673 (defcustom person-data '(("brian" 50 t)
674 ("dorith" 55 nil)
675 ("ken" 52 t))
676 "Alist of basic info about people.
677 Each element has the form (NAME AGE MALE-FLAG)."
678 :type '(alist :value-type (group integer boolean)))
679
680 (defcustom pets '(("brian")
681 ("dorith" "dog" "guppy")
682 ("ken" "cat"))
683 "Alist of people's pets.
684 In an element (KEY . VALUE), KEY is the person's name,
685 and the VALUE is a list of that person's pets."
686 :type '(alist :value-type (repeat string)))
687 @end smallexample
688
689 @item plist
690 The @code{plist} custom type is similar to the @code{alist} (see above),
691 except that the information is stored as a property list, i.e. a list of
692 this form:
693
694 @smallexample
695 (@var{key} @var{value} @var{key} @var{value} @var{key} @var{value} @dots{})
696 @end smallexample
697
698 The default @code{:key-type} for @code{plist} is @code{symbol},
699 rather than @code{sexp}.
700
701 @item symbol
702 The value must be a symbol. It appears in the customization buffer as
703 the name of the symbol.
704
705 @item function
706 The value must be either a lambda expression or a function name. When
707 it is a function name, you can do completion with @kbd{M-@key{TAB}}.
708
709 @item variable
710 The value must be a variable name, and you can do completion with
711 @kbd{M-@key{TAB}}.
712
713 @item face
714 The value must be a symbol which is a face name, and you can do
715 completion with @kbd{M-@key{TAB}}.
716
717 @item boolean
718 The value is boolean---either @code{nil} or @code{t}. Note that by
719 using @code{choice} and @code{const} together (see the next section),
720 you can specify that the value must be @code{nil} or @code{t}, but also
721 specify the text to describe each value in a way that fits the specific
722 meaning of the alternative.
723
724 @item coding-system
725 The value must be a coding-system name, and you can do completion with
726 @kbd{M-@key{TAB}}.
727
728 @item color
729 The value must be a valid color name, and you can do completion with
730 @kbd{M-@key{TAB}}. A sample is provided.
731 @end table
732
733 @node Composite Types
734 @subsection Composite Types
735 @cindex composite types (customization)
736
737 When none of the simple types is appropriate, you can use composite
738 types, which build new types from other types or from specified data.
739 The specified types or data are called the @dfn{arguments} of the
740 composite type. The composite type normally looks like this:
741
742 @example
743 (@var{constructor} @var{arguments}@dots{})
744 @end example
745
746 @noindent
747 but you can also add keyword-value pairs before the arguments, like
748 this:
749
750 @example
751 (@var{constructor} @r{@{}@var{keyword} @var{value}@r{@}}@dots{} @var{arguments}@dots{})
752 @end example
753
754 Here is a table of constructors and how to use them to write
755 composite types:
756
757 @table @code
758 @item (cons @var{car-type} @var{cdr-type})
759 The value must be a cons cell, its @sc{car} must fit @var{car-type}, and
760 its @sc{cdr} must fit @var{cdr-type}. For example, @code{(cons string
761 symbol)} is a customization type which matches values such as
762 @code{("foo" . foo)}.
763
764 In the customization buffer, the @sc{car} and the @sc{cdr} are
765 displayed and edited separately, each according to the type
766 that you specify for it.
767
768 @item (list @var{element-types}@dots{})
769 The value must be a list with exactly as many elements as the
770 @var{element-types} given; and each element must fit the
771 corresponding @var{element-type}.
772
773 For example, @code{(list integer string function)} describes a list of
774 three elements; the first element must be an integer, the second a
775 string, and the third a function.
776
777 In the customization buffer, each element is displayed and edited
778 separately, according to the type specified for it.
779
780 @item (group @var{element-types}@dots{})
781 This works like @code{list} except for the formatting
782 of text in the Custom buffer. @code{list} labels each
783 element value with its tag; @code{group} does not.
784
785 @item (vector @var{element-types}@dots{})
786 Like @code{list} except that the value must be a vector instead of a
787 list. The elements work the same as in @code{list}.
788
789 @item (choice @var{alternative-types}@dots{})
790 The value must fit at least one of @var{alternative-types}.
791 For example, @code{(choice integer string)} allows either an
792 integer or a string.
793
794 In the customization buffer, the user selects an alternative
795 using a menu, and can then edit the value in the usual way for that
796 alternative.
797
798 Normally the strings in this menu are determined automatically from the
799 choices; however, you can specify different strings for the menu by
800 including the @code{:tag} keyword in the alternatives. For example, if
801 an integer stands for a number of spaces, while a string is text to use
802 verbatim, you might write the customization type this way,
803
804 @example
805 (choice (integer :tag "Number of spaces")
806 (string :tag "Literal text"))
807 @end example
808
809 @noindent
810 so that the menu offers @samp{Number of spaces} and @samp{Literal text}.
811
812 In any alternative for which @code{nil} is not a valid value, other than
813 a @code{const}, you should specify a valid default for that alternative
814 using the @code{:value} keyword. @xref{Type Keywords}.
815
816 If some values are covered by more than one of the alternatives,
817 customize will choose the first alternative that the value fits. This
818 means you should always list the most specific types first, and the
819 most general last. Here's an example of proper usage:
820
821 @example
822 (choice (const :tag "Off" nil)
823 symbol (sexp :tag "Other"))
824 @end example
825
826 @noindent
827 This way, the special value @code{nil} is not treated like other
828 symbols, and symbols are not treated like other Lisp expressions.
829
830 @item (radio @var{element-types}@dots{})
831 This is similar to @code{choice}, except that the choices are displayed
832 using `radio buttons' rather than a menu. This has the advantage of
833 displaying documentation for the choices when applicable and so is often
834 a good choice for a choice between constant functions
835 (@code{function-item} customization types).
836
837 @item (const @var{value})
838 The value must be @var{value}---nothing else is allowed.
839
840 The main use of @code{const} is inside of @code{choice}. For example,
841 @code{(choice integer (const nil))} allows either an integer or
842 @code{nil}.
843
844 @code{:tag} is often used with @code{const}, inside of @code{choice}.
845 For example,
846
847 @example
848 (choice (const :tag "Yes" t)
849 (const :tag "No" nil)
850 (const :tag "Ask" foo))
851 @end example
852
853 @noindent
854 describes a variable for which @code{t} means yes, @code{nil} means no,
855 and @code{foo} means ``ask.''
856
857 @item (other @var{value})
858 This alternative can match any Lisp value, but if the user chooses this
859 alternative, that selects the value @var{value}.
860
861 The main use of @code{other} is as the last element of @code{choice}.
862 For example,
863
864 @example
865 (choice (const :tag "Yes" t)
866 (const :tag "No" nil)
867 (other :tag "Ask" foo))
868 @end example
869
870 @noindent
871 describes a variable for which @code{t} means yes, @code{nil} means no,
872 and anything else means ``ask.'' If the user chooses @samp{Ask} from
873 the menu of alternatives, that specifies the value @code{foo}; but any
874 other value (not @code{t}, @code{nil} or @code{foo}) displays as
875 @samp{Ask}, just like @code{foo}.
876
877 @item (function-item @var{function})
878 Like @code{const}, but used for values which are functions. This
879 displays the documentation string as well as the function name.
880 The documentation string is either the one you specify with
881 @code{:doc}, or @var{function}'s own documentation string.
882
883 @item (variable-item @var{variable})
884 Like @code{const}, but used for values which are variable names. This
885 displays the documentation string as well as the variable name. The
886 documentation string is either the one you specify with @code{:doc}, or
887 @var{variable}'s own documentation string.
888
889 @item (set @var{types}@dots{})
890 The value must be a list, and each element of the list must match one of
891 the @var{types} specified.
892
893 This appears in the customization buffer as a checklist, so that each of
894 @var{types} may have either one corresponding element or none. It is
895 not possible to specify two different elements that match the same one
896 of @var{types}. For example, @code{(set integer symbol)} allows one
897 integer and/or one symbol in the list; it does not allow multiple
898 integers or multiple symbols. As a result, it is rare to use
899 nonspecific types such as @code{integer} in a @code{set}.
900
901 Most often, the @var{types} in a @code{set} are @code{const} types, as
902 shown here:
903
904 @example
905 (set (const :bold) (const :italic))
906 @end example
907
908 Sometimes they describe possible elements in an alist:
909
910 @example
911 (set (cons :tag "Height" (const height) integer)
912 (cons :tag "Width" (const width) integer))
913 @end example
914
915 @noindent
916 That lets the user specify a height value optionally
917 and a width value optionally.
918
919 @item (repeat @var{element-type})
920 The value must be a list and each element of the list must fit the type
921 @var{element-type}. This appears in the customization buffer as a
922 list of elements, with @samp{[INS]} and @samp{[DEL]} buttons for adding
923 more elements or removing elements.
924
925 @item (restricted-sexp :match-alternatives @var{criteria})
926 This is the most general composite type construct. The value may be
927 any Lisp object that satisfies one of @var{criteria}. @var{criteria}
928 should be a list, and each element should be one of these
929 possibilities:
930
931 @itemize @bullet
932 @item
933 A predicate---that is, a function of one argument that has no side
934 effects, and returns either @code{nil} or non-@code{nil} according to
935 the argument. Using a predicate in the list says that objects for which
936 the predicate returns non-@code{nil} are acceptable.
937
938 @item
939 A quoted constant---that is, @code{'@var{object}}. This sort of element
940 in the list says that @var{object} itself is an acceptable value.
941 @end itemize
942
943 For example,
944
945 @example
946 (restricted-sexp :match-alternatives
947 (integerp 't 'nil))
948 @end example
949
950 @noindent
951 allows integers, @code{t} and @code{nil} as legitimate values.
952
953 The customization buffer shows all legitimate values using their read
954 syntax, and the user edits them textually.
955 @end table
956
957 Here is a table of the keywords you can use in keyword-value pairs
958 in a composite type:
959
960 @table @code
961 @item :tag @var{tag}
962 Use @var{tag} as the name of this alternative, for user communication
963 purposes. This is useful for a type that appears inside of a
964 @code{choice}.
965
966 @item :match-alternatives @var{criteria}
967 @kindex match-alternatives@r{, customization keyword}
968 Use @var{criteria} to match possible values. This is used only in
969 @code{restricted-sexp}.
970
971 @item :args @var{argument-list}
972 @kindex args@r{, customization keyword}
973 Use the elements of @var{argument-list} as the arguments of the type
974 construct. For instance, @code{(const :args (foo))} is equivalent to
975 @code{(const foo)}. You rarely need to write @code{:args} explicitly,
976 because normally the arguments are recognized automatically as
977 whatever follows the last keyword-value pair.
978 @end table
979
980 @node Splicing into Lists
981 @subsection Splicing into Lists
982
983 The @code{:inline} feature lets you splice a variable number of
984 elements into the middle of a list or vector. You use it in a
985 @code{set}, @code{choice} or @code{repeat} type which appears among the
986 element-types of a @code{list} or @code{vector}.
987
988 Normally, each of the element-types in a @code{list} or @code{vector}
989 describes one and only one element of the list or vector. Thus, if an
990 element-type is a @code{repeat}, that specifies a list of unspecified
991 length which appears as one element.
992
993 But when the element-type uses @code{:inline}, the value it matches is
994 merged directly into the containing sequence. For example, if it
995 matches a list with three elements, those become three elements of the
996 overall sequence. This is analogous to using @samp{,@@} in the backquote
997 construct.
998
999 For example, to specify a list whose first element must be @code{baz}
1000 and whose remaining arguments should be zero or more of @code{foo} and
1001 @code{bar}, use this customization type:
1002
1003 @example
1004 (list (const baz) (set :inline t (const foo) (const bar)))
1005 @end example
1006
1007 @noindent
1008 This matches values such as @code{(baz)}, @code{(baz foo)}, @code{(baz bar)}
1009 and @code{(baz foo bar)}.
1010
1011 When the element-type is a @code{choice}, you use @code{:inline} not
1012 in the @code{choice} itself, but in (some of) the alternatives of the
1013 @code{choice}. For example, to match a list which must start with a
1014 file name, followed either by the symbol @code{t} or two strings, use
1015 this customization type:
1016
1017 @example
1018 (list file
1019 (choice (const t)
1020 (list :inline t string string)))
1021 @end example
1022
1023 @noindent
1024 If the user chooses the first alternative in the choice, then the
1025 overall list has two elements and the second element is @code{t}. If
1026 the user chooses the second alternative, then the overall list has three
1027 elements and the second and third must be strings.
1028
1029 @node Type Keywords
1030 @subsection Type Keywords
1031
1032 You can specify keyword-argument pairs in a customization type after the
1033 type name symbol. Here are the keywords you can use, and their
1034 meanings:
1035
1036 @table @code
1037 @item :value @var{default}
1038 This is used for a type that appears as an alternative inside of
1039 @code{choice}; it specifies the default value to use, at first, if and
1040 when the user selects this alternative with the menu in the
1041 customization buffer.
1042
1043 Of course, if the actual value of the option fits this alternative, it
1044 will appear showing the actual value, not @var{default}.
1045
1046 If @code{nil} is not a valid value for the alternative, then it is
1047 essential to specify a valid default with @code{:value}.
1048
1049 @item :format @var{format-string}
1050 @kindex format@r{, customization keyword}
1051 This string will be inserted in the buffer to represent the value
1052 corresponding to the type. The following @samp{%} escapes are available
1053 for use in @var{format-string}:
1054
1055 @table @samp
1056 @item %[@var{button}%]
1057 Display the text @var{button} marked as a button. The @code{:action}
1058 attribute specifies what the button will do if the user invokes it;
1059 its value is a function which takes two arguments---the widget which
1060 the button appears in, and the event.
1061
1062 There is no way to specify two different buttons with different
1063 actions.
1064
1065 @item %@{@var{sample}%@}
1066 Show @var{sample} in a special face specified by @code{:sample-face}.
1067
1068 @item %v
1069 Substitute the item's value. How the value is represented depends on
1070 the kind of item, and (for variables) on the customization type.
1071
1072 @item %d
1073 Substitute the item's documentation string.
1074
1075 @item %h
1076 Like @samp{%d}, but if the documentation string is more than one line,
1077 add an active field to control whether to show all of it or just the
1078 first line.
1079
1080 @item %t
1081 Substitute the tag here. You specify the tag with the @code{:tag}
1082 keyword.
1083
1084 @item %%
1085 Display a literal @samp{%}.
1086 @end table
1087
1088 @item :action @var{action}
1089 @kindex action@r{, customization keyword}
1090 Perform @var{action} if the user clicks on a button.
1091
1092 @item :button-face @var{face}
1093 @kindex button-face@r{, customization keyword}
1094 Use the face @var{face} (a face name or a list of face names) for button
1095 text displayed with @samp{%[@dots{}%]}.
1096
1097 @item :button-prefix @var{prefix}
1098 @itemx :button-suffix @var{suffix}
1099 @kindex button-prefix@r{, customization keyword}
1100 @kindex button-suffix@r{, customization keyword}
1101 These specify the text to display before and after a button.
1102 Each can be:
1103
1104 @table @asis
1105 @item @code{nil}
1106 No text is inserted.
1107
1108 @item a string
1109 The string is inserted literally.
1110
1111 @item a symbol
1112 The symbol's value is used.
1113 @end table
1114
1115 @item :tag @var{tag}
1116 Use @var{tag} (a string) as the tag for the value (or part of the value)
1117 that corresponds to this type.
1118
1119 @item :doc @var{doc}
1120 @kindex doc@r{, customization keyword}
1121 Use @var{doc} as the documentation string for this value (or part of the
1122 value) that corresponds to this type. In order for this to work, you
1123 must specify a value for @code{:format}, and use @samp{%d} or @samp{%h}
1124 in that value.
1125
1126 The usual reason to specify a documentation string for a type is to
1127 provide more information about the meanings of alternatives inside a
1128 @code{:choice} type or the parts of some other composite type.
1129
1130 @item :help-echo @var{motion-doc}
1131 @kindex help-echo@r{, customization keyword}
1132 When you move to this item with @code{widget-forward} or
1133 @code{widget-backward}, it will display the string @var{motion-doc} in
1134 the echo area. In addition, @var{motion-doc} is used as the mouse
1135 @code{help-echo} string and may actually be a function or form evaluated
1136 to yield a help string. If it is a function, it is called with one
1137 argument, the widget.
1138
1139 @item :match @var{function}
1140 @kindex match@r{, customization keyword}
1141 Specify how to decide whether a value matches the type. The
1142 corresponding value, @var{function}, should be a function that accepts
1143 two arguments, a widget and a value; it should return non-@code{nil} if
1144 the value is acceptable.
1145
1146 @item :validate @var{function}
1147 Specify a validation function for input. @var{function} takes a
1148 widget as an argument, and should return @code{nil} if the widget's
1149 current value is valid for the widget. Otherwise, it should return
1150 the widget containing the invalid data, and set that widget's
1151 @code{:error} property to a string explaining the error.
1152
1153 @ignore
1154 @item :indent @var{columns}
1155 Indent this item by @var{columns} columns. The indentation is used for
1156 @samp{%n}, and automatically for group names, for checklists and radio
1157 buttons, and for editable lists. It affects the whole of the
1158 item except for the first line.
1159
1160 @item :offset @var{extra}
1161 Indent the subitems of this item @var{extra} columns more than this
1162 item itself. By default, subitems are indented the same as their
1163 parent.
1164
1165 @item :extra-offset @var{n}
1166 Add @var{n} extra spaces to this item's indentation, compared to its
1167 parent's indentation.
1168
1169 @item :notify @var{function}
1170 Call @var{function} each time the item or a subitem is changed. The
1171 function gets two or three arguments. The first argument is the item
1172 itself, the second argument is the item that was changed, and the
1173 third argument is the event leading to the change, if any.
1174
1175 @item :menu-tag @var{tag-string}
1176 Use @var{tag-string} in the menu when the widget is used as an option
1177 in a @code{menu-choice} widget.
1178
1179 @item :menu-tag-get
1180 A function used for finding the tag when the widget is used as an option
1181 in a @code{menu-choice} widget. By default, the tag used will be either the
1182 @code{:menu-tag} or @code{:tag} property if present, or the @code{princ}
1183 representation of the @code{:value} property if not.
1184
1185 @item :tab-order
1186 Specify the order in which widgets are traversed with
1187 @code{widget-forward} or @code{widget-backward}. This is only partially
1188 implemented.
1189
1190 @enumerate a
1191 @item
1192 Widgets with tabbing order @code{-1} are ignored.
1193
1194 @item
1195 (Unimplemented) When on a widget with tabbing order @var{n}, go to the
1196 next widget in the buffer with tabbing order @var{n+1} or @code{nil},
1197 whichever comes first.
1198
1199 @item
1200 When on a widget with no tabbing order specified, go to the next widget
1201 in the buffer with a positive tabbing order, or @code{nil}
1202 @end enumerate
1203
1204 @item :parent
1205 The parent of a nested widget (e.g., a @code{menu-choice} item or an
1206 element of a @code{editable-list} widget).
1207
1208 @item :sibling-args
1209 This keyword is only used for members of a @code{radio-button-choice} or
1210 @code{checklist}. The value should be a list of extra keyword
1211 arguments, which will be used when creating the @code{radio-button} or
1212 @code{checkbox} associated with this item.
1213 @end ignore
1214 @end table
1215
1216 @node Defining New Types
1217 @subsection Defining New Types
1218
1219 In the previous sections we have described how to construct elaborate
1220 type specifications for @code{defcustom}. In some cases you may want
1221 to give such a type specification a name. The obvious case is when
1222 you are using the same type for many user options: rather than repeat
1223 the specification for each option, you can give the type specification
1224 a name, and use that name each @code{defcustom}. The other case is
1225 when a user option's value is a recursive data structure. To make it
1226 possible for a datatype to refer to itself, it needs to have a name.
1227
1228 Since custom types are implemented as widgets, the way to define a new
1229 customize type is to define a new widget. We are not going to describe
1230 the widget interface here in details, see @ref{Top, , Introduction,
1231 widget, The Emacs Widget Library}, for that. Instead we are going to
1232 demonstrate the minimal functionality needed for defining new customize
1233 types by a simple example.
1234
1235 @example
1236 (define-widget 'binary-tree-of-string 'lazy
1237 "A binary tree made of cons-cells and strings."
1238 :offset 4
1239 :tag "Node"
1240 :type '(choice (string :tag "Leaf" :value "")
1241 (cons :tag "Interior"
1242 :value ("" . "")
1243 binary-tree-of-string
1244 binary-tree-of-string)))
1245
1246 (defcustom foo-bar ""
1247 "Sample variable holding a binary tree of strings."
1248 :type 'binary-tree-of-string)
1249 @end example
1250
1251 The function to define a new widget is called @code{define-widget}. The
1252 first argument is the symbol we want to make a new widget type. The
1253 second argument is a symbol representing an existing widget, the new
1254 widget is going to be defined in terms of difference from the existing
1255 widget. For the purpose of defining new customization types, the
1256 @code{lazy} widget is perfect, because it accepts a @code{:type} keyword
1257 argument with the same syntax as the keyword argument to
1258 @code{defcustom} with the same name. The third argument is a
1259 documentation string for the new widget. You will be able to see that
1260 string with the @kbd{M-x widget-browse @key{RET} binary-tree-of-string
1261 @key{RET}} command.
1262
1263 After these mandatory arguments follow the keyword arguments. The most
1264 important is @code{:type}, which describes the data type we want to match
1265 with this widget. Here a @code{binary-tree-of-string} is described as
1266 being either a string, or a cons-cell whose car and cdr are themselves
1267 both @code{binary-tree-of-string}. Note the reference to the widget
1268 type we are currently in the process of defining. The @code{:tag}
1269 attribute is a string to name the widget in the user interface, and the
1270 @code{:offset} argument is there to ensure that child nodes are
1271 indented four spaces relative to the parent node, making the tree
1272 structure apparent in the customization buffer.
1273
1274 The @code{defcustom} shows how the new widget can be used as an ordinary
1275 customization type.
1276
1277 The reason for the name @code{lazy} is that the other composite
1278 widgets convert their inferior widgets to internal form when the
1279 widget is instantiated in a buffer. This conversion is recursive, so
1280 the inferior widgets will convert @emph{their} inferior widgets. If
1281 the data structure is itself recursive, this conversion is an infinite
1282 recursion. The @code{lazy} widget prevents the recursion: it convert
1283 its @code{:type} argument only when needed.