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(Describing Characters): Describe PREFIX argument to `key-description'. Correct and clarify definition of `text-char-description'. Describe NEED-VECTOR argument to `read-kbd-macro'. (Help Functions): Clarify definition of `apropos'.
661 lines
25 KiB
Plaintext
661 lines
25 KiB
Plaintext
@c -*-texinfo-*-
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@c This is part of the GNU Emacs Lisp Reference Manual.
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@c Copyright (C) 1990, 1991, 1992, 1993, 1994, 1995, 1998, 1999, 2004
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@c Free Software Foundation, Inc.
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@c See the file elisp.texi for copying conditions.
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@setfilename ../info/help
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@node Documentation, Files, Modes, Top
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@chapter Documentation
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@cindex documentation strings
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GNU Emacs Lisp has convenient on-line help facilities, most of which
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derive their information from the documentation strings associated with
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functions and variables. This chapter describes how to write good
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documentation strings for your Lisp programs, as well as how to write
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programs to access documentation.
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Note that the documentation strings for Emacs are not the same thing
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as the Emacs manual. Manuals have their own source files, written in
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the Texinfo language; documentation strings are specified in the
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definitions of the functions and variables they apply to. A collection
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of documentation strings is not sufficient as a manual because a good
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manual is not organized in that fashion; it is organized in terms of
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topics of discussion.
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@menu
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* Documentation Basics:: Good style for doc strings.
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Where to put them. How Emacs stores them.
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* Accessing Documentation:: How Lisp programs can access doc strings.
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* Keys in Documentation:: Substituting current key bindings.
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* Describing Characters:: Making printable descriptions of
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non-printing characters and key sequences.
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* Help Functions:: Subroutines used by Emacs help facilities.
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@end menu
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@node Documentation Basics
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@comment node-name, next, previous, up
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@section Documentation Basics
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@cindex documentation conventions
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@cindex writing a documentation string
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@cindex string, writing a doc string
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A documentation string is written using the Lisp syntax for strings,
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with double-quote characters surrounding the text of the string. This
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is because it really is a Lisp string object. The string serves as
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documentation when it is written in the proper place in the definition
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of a function or variable. In a function definition, the documentation
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string follows the argument list. In a variable definition, the
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documentation string follows the initial value of the variable.
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When you write a documentation string, make the first line a complete
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sentence (or two complete sentences) since some commands, such as
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@code{apropos}, show only the first line of a multi-line documentation
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string. Also, you should not indent the second line of a documentation
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string, if it has one, because that looks odd when you use @kbd{C-h f}
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(@code{describe-function}) or @kbd{C-h v} (@code{describe-variable}) to
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view the documentation string. @xref{Documentation Tips}.
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Documentation strings can contain several special substrings, which
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stand for key bindings to be looked up in the current keymaps when the
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documentation is displayed. This allows documentation strings to refer
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to the keys for related commands and be accurate even when a user
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rearranges the key bindings. (@xref{Keys in Documentation}.)
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In Emacs Lisp, a documentation string is accessible through the
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function or variable that it describes:
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@itemize @bullet
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@item
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The documentation for a function is stored in the function definition
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itself (@pxref{Lambda Expressions}). The function @code{documentation}
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knows how to extract it.
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@item
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@kindex variable-documentation
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The documentation for a variable is stored in the variable's property
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list under the property name @code{variable-documentation}. The
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function @code{documentation-property} knows how to retrieve it.
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@end itemize
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@cindex @file{DOC} (documentation) file
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@cindex @file{emacs/etc/DOC-@var{version}}
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@cindex @file{etc/DOC-@var{version}}
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To save space, the documentation for preloaded functions and variables
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(including primitive functions and autoloaded functions) is stored in
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the file @file{emacs/etc/DOC-@var{version}}---not inside Emacs. The
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documentation strings for functions and variables loaded during the
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Emacs session from byte-compiled files are stored in those files
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(@pxref{Docs and Compilation}).
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The data structure inside Emacs has an integer offset into the file, or
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a list containing a file name and an integer, in place of the
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documentation string. The functions @code{documentation} and
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@code{documentation-property} use that information to fetch the
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documentation string from the appropriate file; this is transparent to
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the user.
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For information on the uses of documentation strings, see @ref{Help, ,
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Help, emacs, The GNU Emacs Manual}.
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@c Wordy to prevent overfull hbox. --rjc 15mar92
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The @file{emacs/lib-src} directory contains two utilities that you can
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use to print nice-looking hardcopy for the file
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@file{emacs/etc/DOC-@var{version}}. These are @file{sorted-doc} and
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@file{digest-doc}.
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@node Accessing Documentation
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@section Access to Documentation Strings
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@defun documentation-property symbol property &optional verbatim
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This function returns the documentation string that is recorded in
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@var{symbol}'s property list under property @var{property}. It
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retrieves the text from a file if the value calls for that. If the
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property value isn't @code{nil}, isn't a string, and doesn't refer to
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text in a file, then it is evaluated to obtain a string.
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Finally, @code{documentation-property} passes the string through
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@code{substitute-command-keys} to substitute actual key bindings,
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unless @var{verbatim} is non-@code{nil}.
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@smallexample
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@group
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(documentation-property 'command-line-processed
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'variable-documentation)
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@result{} "Non-nil once command line has been processed"
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@end group
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@group
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(symbol-plist 'command-line-processed)
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@result{} (variable-documentation 188902)
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@end group
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@end smallexample
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@end defun
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@defun documentation function &optional verbatim
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This function returns the documentation string of @var{function}.
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If @var{function} is a symbol, this function first looks for the
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@code{function-documentation} property of that symbol; if that has a
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non-@code{nil} value, the documentation comes from that value (if the
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value is not a string, it is evaluated). If @var{function} is not a
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symbol, or if it has no @code{function-documentation} property, then
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@code{documentation} extracts the documentation string from the actual
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function definition, reading it from a file if called for.
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Finally, unless @var{verbatim} is non-@code{nil}, it calls
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@code{substitute-command-keys} so as to return a value containing the
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actual (current) key bindings.
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The function @code{documentation} signals a @code{void-function} error
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if @var{function} has no function definition. However, it is OK if
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the function definition has no documentation string. In that case,
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@code{documentation} returns @code{nil}.
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@end defun
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@c Wordy to prevent overfull hboxes. --rjc 15mar92
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Here is an example of using the two functions, @code{documentation} and
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@code{documentation-property}, to display the documentation strings for
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several symbols in a @samp{*Help*} buffer.
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@anchor{describe-symbols example}
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@smallexample
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@group
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(defun describe-symbols (pattern)
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"Describe the Emacs Lisp symbols matching PATTERN.
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All symbols that have PATTERN in their name are described
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in the `*Help*' buffer."
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(interactive "sDescribe symbols matching: ")
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(let ((describe-func
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(function
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(lambda (s)
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@end group
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@group
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;; @r{Print description of symbol.}
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(if (fboundp s) ; @r{It is a function.}
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(princ
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(format "%s\t%s\n%s\n\n" s
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(if (commandp s)
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(let ((keys (where-is-internal s)))
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(if keys
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(concat
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"Keys: "
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(mapconcat 'key-description
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keys " "))
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"Keys: none"))
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"Function")
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@end group
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@group
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(or (documentation s)
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"not documented"))))
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(if (boundp s) ; @r{It is a variable.}
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@end group
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@group
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(princ
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(format "%s\t%s\n%s\n\n" s
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(if (user-variable-p s)
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"Option " "Variable")
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@end group
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@group
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(or (documentation-property
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s 'variable-documentation)
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"not documented")))))))
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sym-list)
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@end group
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@group
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;; @r{Build a list of symbols that match pattern.}
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(mapatoms (function
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(lambda (sym)
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(if (string-match pattern (symbol-name sym))
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(setq sym-list (cons sym sym-list))))))
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@end group
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@group
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;; @r{Display the data.}
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(with-output-to-temp-buffer "*Help*"
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(mapcar describe-func (sort sym-list 'string<))
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(print-help-return-message))))
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@end group
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@end smallexample
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The @code{describe-symbols} function works like @code{apropos},
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but provides more information.
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@smallexample
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@group
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(describe-symbols "goal")
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---------- Buffer: *Help* ----------
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goal-column Option
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*Semipermanent goal column for vertical motion, as set by @dots{}
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@end group
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@c Do not blithely break or fill these lines.
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@c That makes them incorrect.
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@group
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set-goal-column Keys: C-x C-n
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Set the current horizontal position as a goal for C-n and C-p.
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@end group
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@c DO NOT put a blank line here! That is factually inaccurate!
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@group
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Those commands will move to this position in the line moved to
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rather than trying to keep the same horizontal position.
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With a non-nil argument, clears out the goal column
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so that C-n and C-p resume vertical motion.
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The goal column is stored in the variable `goal-column'.
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@end group
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@group
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temporary-goal-column Variable
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Current goal column for vertical motion.
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It is the column where point was
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at the start of current run of vertical motion commands.
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When the `track-eol' feature is doing its job, the value is 9999.
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---------- Buffer: *Help* ----------
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@end group
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@end smallexample
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The asterisk @samp{*} as the first character of a variable's doc string,
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as shown above for the @code{goal-column} variable, means that it is a
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user option; see the description of @code{defvar} in @ref{Defining
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Variables}.
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@defun Snarf-documentation filename
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@anchor{Definition of Snarf-documentation}
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This function is used only during Emacs initialization, just before
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the runnable Emacs is dumped. It finds the file offsets of the
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documentation strings stored in the file @var{filename}, and records
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them in the in-core function definitions and variable property lists in
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place of the actual strings. @xref{Building Emacs}.
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Emacs reads the file @var{filename} from the @file{emacs/etc} directory.
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When the dumped Emacs is later executed, the same file will be looked
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for in the directory @code{doc-directory}. Usually @var{filename} is
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@code{"DOC-@var{version}"}.
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@end defun
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@c Emacs 19 feature
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@defvar doc-directory
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This variable holds the name of the directory which should contain the
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file @code{"DOC-@var{version}"} that contains documentation strings for
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built-in and preloaded functions and variables.
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In most cases, this is the same as @code{data-directory}. They may be
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different when you run Emacs from the directory where you built it,
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without actually installing it. @xref{Definition of data-directory}.
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In older Emacs versions, @code{exec-directory} was used for this.
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@end defvar
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@node Keys in Documentation
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@section Substituting Key Bindings in Documentation
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@cindex documentation, keys in
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@cindex keys in documentation strings
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@cindex substituting keys in documentation
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When documentation strings refer to key sequences, they should use the
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current, actual key bindings. They can do so using certain special text
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sequences described below. Accessing documentation strings in the usual
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way substitutes current key binding information for these special
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sequences. This works by calling @code{substitute-command-keys}. You
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can also call that function yourself.
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Here is a list of the special sequences and what they mean:
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@table @code
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@item \[@var{command}]
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stands for a key sequence that will invoke @var{command}, or @samp{M-x
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@var{command}} if @var{command} has no key bindings.
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@item \@{@var{mapvar}@}
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stands for a summary of the keymap which is the value of the variable
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@var{mapvar}. The summary is made using @code{describe-bindings}.
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@item \<@var{mapvar}>
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stands for no text itself. It is used only for a side effect: it
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specifies @var{mapvar}'s value as the keymap for any following
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@samp{\[@var{command}]} sequences in this documentation string.
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@item \=
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quotes the following character and is discarded; thus, @samp{\=\[} puts
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@samp{\[} into the output, and @samp{\=\=} puts @samp{\=} into the
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output.
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@end table
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@strong{Please note:} Each @samp{\} must be doubled when written in a
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string in Emacs Lisp.
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@defun substitute-command-keys string
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This function scans @var{string} for the above special sequences and
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replaces them by what they stand for, returning the result as a string.
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This permits display of documentation that refers accurately to the
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user's own customized key bindings.
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@end defun
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Here are examples of the special sequences:
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@smallexample
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@group
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(substitute-command-keys
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"To abort recursive edit, type: \\[abort-recursive-edit]")
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@result{} "To abort recursive edit, type: C-]"
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@end group
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@group
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(substitute-command-keys
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"The keys that are defined for the minibuffer here are:
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\\@{minibuffer-local-must-match-map@}")
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@result{} "The keys that are defined for the minibuffer here are:
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@end group
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? minibuffer-completion-help
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SPC minibuffer-complete-word
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TAB minibuffer-complete
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C-j minibuffer-complete-and-exit
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RET minibuffer-complete-and-exit
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C-g abort-recursive-edit
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"
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@group
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(substitute-command-keys
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"To abort a recursive edit from the minibuffer, type\
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\\<minibuffer-local-must-match-map>\\[abort-recursive-edit].")
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@result{} "To abort a recursive edit from the minibuffer, type C-g."
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@end group
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@end smallexample
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@node Describing Characters
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@section Describing Characters for Help Messages
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These functions convert events, key sequences, or characters to
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textual descriptions. These descriptions are useful for including
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arbitrary text characters or key sequences in messages, because they
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convert non-printing and whitespace characters to sequences of printing
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characters. The description of a non-whitespace printing character is
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the character itself.
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@defun key-description sequence &optional prefix
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@cindex Emacs event standard notation
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This function returns a string containing the Emacs standard notation
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for the input events in @var{sequence}. If @var{prefix} is
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non-@code{nil}, it is a sequence of input events leading up to
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@var{sequence} and is included in the return value. Both arguments
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may be strings, vectors or lists. @xref{Input Events}, for more
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information about valid events.
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@smallexample
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@group
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(key-description [?\M-3 delete])
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@result{} "M-3 <delete>"
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@end group
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@group
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(key-description [delete] "\M-3")
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@result{} "M-3 <delete>"
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@end group
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@end smallexample
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See also the examples for @code{single-key-description}, below.
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@end defun
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@defun single-key-description event &optional no-angles
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@cindex event printing
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@cindex character printing
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@cindex control character printing
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@cindex meta character printing
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This function returns a string describing @var{event} in the standard
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Emacs notation for keyboard input. A normal printing character
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appears as itself, but a control character turns into a string
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starting with @samp{C-}, a meta character turns into a string starting
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with @samp{M-}, and space, tab, etc.@: appear as @samp{SPC},
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@samp{TAB}, etc. A function key symbol appears inside angle brackets
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@samp{<@dots{}>}. An event that is a list appears as the name of the
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symbol in the @sc{car} of the list, inside angle brackets.
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If the optional argument @var{no-angles} is non-@code{nil}, the angle
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brackets around function keys and event symbols are omitted; this is
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for compatibility with old versions of Emacs which didn't use the
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brackets.
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@smallexample
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@group
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(single-key-description ?\C-x)
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@result{} "C-x"
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@end group
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@group
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(key-description "\C-x \M-y \n \t \r \f123")
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@result{} "C-x SPC M-y SPC C-j SPC TAB SPC RET SPC C-l 1 2 3"
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@end group
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@group
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(single-key-description 'delete)
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@result{} "<delete>"
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@end group
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@group
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(single-key-description 'C-mouse-1)
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@result{} "<C-mouse-1>"
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@end group
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@group
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(single-key-description 'C-mouse-1 t)
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@result{} "C-mouse-1"
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@end group
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@end smallexample
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@end defun
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@defun text-char-description character
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This function returns a string describing @var{character} in the
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standard Emacs notation for characters that appear in text---like
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@code{single-key-description}, except that control characters are
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represented with a leading caret (which is how control characters in
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Emacs buffers are usually displayed). Another difference is that
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@code{text-char-description} recognizes the 2**7 bit as the Meta
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character, whereas @code{single-key-description} uses the 2**27 bit
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for Meta.
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@smallexample
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@group
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(text-char-description ?\C-c)
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@result{} "^C"
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@end group
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@group
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(text-char-description ?\M-m)
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@result{} "\xed"
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@end group
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@group
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(text-char-description ?\C-\M-m)
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@result{} "\x8d"
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@end group
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@group
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(text-char-description (+ 128 ?m))
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@result{} "M-m"
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@end group
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@group
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(text-char-description (+ 128 ?\C-m))
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@result{} "M-^M"
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@end group
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@end smallexample
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@end defun
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@defun read-kbd-macro string &optional need-vector
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This function is used mainly for operating on keyboard macros, but it
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can also be used as a rough inverse for @code{key-description}. You
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call it with a string containing key descriptions, separated by spaces;
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it returns a string or vector containing the corresponding events.
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(This may or may not be a single valid key sequence, depending on what
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events you use; @pxref{Keymap Terminology}.) If @var{need-vector} is
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non-@code{nil}, the return value is always a vector.
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@end defun
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@node Help Functions
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@section Help Functions
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Emacs provides a variety of on-line help functions, all accessible to
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the user as subcommands of the prefix @kbd{C-h}. For more information
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about them, see @ref{Help, , Help, emacs, The GNU Emacs Manual}. Here
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we describe some program-level interfaces to the same information.
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@deffn Command apropos regexp &optional do-all
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This function finds all ``meaningful'' symbols whose names contain a
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match for the regular expression @var{regexp}, and returns a list of
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them, with associated documentation (@pxref{Regular Expressions}). It
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also displays the symbols in a buffer named @samp{*Apropos*}, each
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with a one-line description taken from the beginning of its
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documentation string. A symbol is ``meaningful'' if it has a
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definition as a function, variable, or face, or has properties.
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@c Emacs 19 feature
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If @var{do-all} is non-@code{nil}, or if the user option
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@code{apropos-do-all} is non-@code{nil}, then @code{apropos} also
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shows key bindings for the functions that are found; it also shows
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@emph{all} interned symbols, not just meaningful ones (and it lists
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them in the return value as well).
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@end deffn
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@defvar help-map
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The value of this variable is a local keymap for characters following the
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Help key, @kbd{C-h}.
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@end defvar
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@deffn {Prefix Command} help-command
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This symbol is not a function; its function definition cell holds the
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keymap known as @code{help-map}. It is defined in @file{help.el} as
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follows:
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@smallexample
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@group
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(define-key global-map (char-to-string help-char) 'help-command)
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(fset 'help-command help-map)
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@end group
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@end smallexample
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@end deffn
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@defun print-help-return-message &optional function
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This function builds a string that explains how to restore the previous
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state of the windows after a help command. After building the message,
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it applies @var{function} to it if @var{function} is non-@code{nil}.
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Otherwise it calls @code{message} to display it in the echo area.
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This function expects to be called inside a
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@code{with-output-to-temp-buffer} special form, and expects
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@code{standard-output} to have the value bound by that special form.
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For an example of its use, see the long example in @ref{Accessing
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Documentation}.
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@end defun
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@defvar help-char
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The value of this variable is the help character---the character that
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Emacs recognizes as meaning Help. By default, its value is 8, which
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stands for @kbd{C-h}. When Emacs reads this character, if
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@code{help-form} is a non-@code{nil} Lisp expression, it evaluates that
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expression, and displays the result in a window if it is a string.
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Usually the value of @code{help-form} is @code{nil}. Then the
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help character has no special meaning at the level of command input, and
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it becomes part of a key sequence in the normal way. The standard key
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binding of @kbd{C-h} is a prefix key for several general-purpose help
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features.
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The help character is special after prefix keys, too. If it has no
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binding as a subcommand of the prefix key, it runs
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@code{describe-prefix-bindings}, which displays a list of all the
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subcommands of the prefix key.
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@end defvar
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@defvar help-event-list
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The value of this variable is a list of event types that serve as
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alternative ``help characters.'' These events are handled just like the
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event specified by @code{help-char}.
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@end defvar
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@defvar help-form
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If this variable is non-@code{nil}, its value is a form to evaluate
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whenever the character @code{help-char} is read. If evaluating the form
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produces a string, that string is displayed.
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A command that calls @code{read-event} or @code{read-char} probably
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should bind @code{help-form} to a non-@code{nil} expression while it
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does input. (The time when you should not do this is when @kbd{C-h} has
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some other meaning.) Evaluating this expression should result in a
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string that explains what the input is for and how to enter it properly.
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Entry to the minibuffer binds this variable to the value of
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@code{minibuffer-help-form} (@pxref{Definition of minibuffer-help-form}).
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@end defvar
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@defvar prefix-help-command
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This variable holds a function to print help for a prefix key. The
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function is called when the user types a prefix key followed by the help
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character, and the help character has no binding after that prefix. The
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variable's default value is @code{describe-prefix-bindings}.
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@end defvar
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@defun describe-prefix-bindings
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This function calls @code{describe-bindings} to display a list of all
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the subcommands of the prefix key of the most recent key sequence. The
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prefix described consists of all but the last event of that key
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sequence. (The last event is, presumably, the help character.)
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@end defun
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The following two functions are meant for modes that want to provide
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help without relinquishing control, such as the ``electric'' modes.
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Their names begin with @samp{Helper} to distinguish them from the
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ordinary help functions.
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@deffn Command Helper-describe-bindings
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This command pops up a window displaying a help buffer containing a
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listing of all of the key bindings from both the local and global keymaps.
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It works by calling @code{describe-bindings}.
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@end deffn
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@deffn Command Helper-help
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This command provides help for the current mode. It prompts the user
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in the minibuffer with the message @samp{Help (Type ? for further
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options)}, and then provides assistance in finding out what the key
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bindings are, and what the mode is intended for. It returns @code{nil}.
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This can be customized by changing the map @code{Helper-help-map}.
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@end deffn
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@c Emacs 19 feature
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@defvar data-directory
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@anchor{Definition of data-directory}
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This variable holds the name of the directory in which Emacs finds
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certain documentation and text files that come with Emacs. In older
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Emacs versions, @code{exec-directory} was used for this.
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@end defvar
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@c Emacs 19 feature
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@defmac make-help-screen fname help-line help-text help-map
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This macro defines a help command named @var{fname} that acts like a
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prefix key that shows a list of the subcommands it offers.
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When invoked, @var{fname} displays @var{help-text} in a window, then
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reads and executes a key sequence according to @var{help-map}. The
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string @var{help-text} should describe the bindings available in
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@var{help-map}.
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The command @var{fname} is defined to handle a few events itself, by
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scrolling the display of @var{help-text}. When @var{fname} reads one of
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those special events, it does the scrolling and then reads another
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event. When it reads an event that is not one of those few, and which
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has a binding in @var{help-map}, it executes that key's binding and
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then returns.
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The argument @var{help-line} should be a single-line summary of the
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alternatives in @var{help-map}. In the current version of Emacs, this
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argument is used only if you set the option @code{three-step-help} to
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@code{t}.
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This macro is used in the command @code{help-for-help} which is the
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binding of @kbd{C-h C-h}.
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@end defmac
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@defopt three-step-help
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If this variable is non-@code{nil}, commands defined with
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@code{make-help-screen} display their @var{help-line} strings in the
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echo area at first, and display the longer @var{help-text} strings only
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if the user types the help character again.
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@end defopt
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@ignore
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arch-tag: ba36b4c2-e60f-49e2-bc25-61158fdcd815
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@end ignore
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