Mercurial > hg > xemacs-beta
view lisp/list-mode.el @ 1315:70921960b980
[xemacs-hg @ 2003-02-20 08:19:28 by ben]
check in makefile fixes et al
Makefile.in.in: Major surgery. Move all stuff related to building anything in the
src/ directory into src/. Simplify the dependencies -- everything
in src/ is dependent on the single entry `src' in MAKE_SUBDIRS.
Remove weirdo targets like `all-elc[s]', dump-elc[s], etc.
mule/mule-msw-init.el: Removed.
Delete this file.
mule/mule-win32-init.el: New file, with stuff from mule-msw-init.el -- not just for MS Windows
native, boys and girls!
bytecomp.el: Change code inserted to catch trying to load a Mule-only .elc
file in a non-Mule XEmacs. Formerly you got the rather cryptic
"The required feature `mule' cannot be provided". Now you get
"Loading this file requires Mule support".
finder.el: Remove dependency on which directory this function is invoked
from.
update-elc.el: Don't mess around with ../src/BYTECOMPILE_CHANGE. Now that
Makefile.in.in and xemacs.mak are in sync, both of them use
NEEDTODUMP and the other one isn't used.
dumped-lisp.el: Rewrite in terms of `list' and `nconc' instead of assemble-list, so
we can have arbitrary forms, not just `when-feature'.
very-early-lisp.el: Nuke this file.
finder-inf.el, packages.el, update-elc.el, update-elc-2.el, loadup.el, make-docfile.el: Eliminate references to very-early-lisp.
msw-glyphs.el: Comment clarification.
xemacs.mak: Add macros DO_TEMACS, DO_XEMACS, and a few others; this macro
section is now completely in sync with src/Makefile.in.in. Copy
check-features, load-shadows, and rebuilding finder-inf.el from
src/Makefile.in.in. The main build/dump/recompile process is now
synchronized with src/Makefile.in.in. Change `WARNING' to `NOTE'
and `error checking' to `error-checking' TO avoid tripping
faux warnings and errors in the VC++ IDE.
Makefile.in.in: Major surgery. Move all stuff related to building anything in the
src/ directory from top-level Makefile.in.in to here. Simplify
the dependencies. Rearrange into logical subsections.
Synchronize the main compile/dump/build-elcs section with
xemacs.mak, which is already clean and in good working order.
Remove weirdo targets like `all-elc[s]', dump-elc[s], etc. Add
additional levels of macros \(e.g. DO_TEMACS, DO_XEMACS,
TEMACS_BATCH, XEMACS_BATCH, XEMACS_BATCH_PACKAGES) to factor out
duplicated stuff. Clean up handling of "HEAP_IN_DATA" (Cygwin) so
it doesn't need to ignore the return value from dumping. Add
.NO_PARALLEL since various aspects of building and dumping must be
serialized but do not always have dependencies between them
(this is impossible in some cases). Everything related to src/
now gets built in one pass in this directory by just running
`make' (except the Makefiles themselves and config.h, paths.h,
Emacs.ad.h, and other generated .h files).
console.c: Update list of possibly valid console types.
emacs.c: Rationalize the specifying and handling of the type of the first
frame. This was originally prompted by a workspace in which I got
GTK to compile under C++ and in the process fixed it so it could
coexist with X in the same build -- hence, a combined
TTY/X/MS-Windows/GTK build is now possible under Cygwin. (However,
you can't simultaneously *display* more than one kind of device
connection -- but getting that to work is not that difficult.
Perhaps a project for a bored grad student. I (ben) would do it
but don't see the use.) To make sense of this, I added new
switches that can be used to specifically indicate the window
system: -x [aka --use-x], -tty \[aka --use-tty], -msw [aka
--use-ms-windows], -gtk [aka --use-gtk], and -gnome [aka
--use-gnome, same as --use-gtk]. -nw continues as an alias for
-tty. When none have been given, XEmacs checks for other
parameters implying particular device types (-t -> tty, -display
-> x [or should it have same treatment as DISPLAY below?]), and
has ad-hoc logic afterwards: if env var DISPLAY is set, use x (or
gtk? perhaps should check whether gnome is running), else MS
Windows if it exsits, else TTY if it exists, else stream, and you
must be running in batch mode. This also fixes an existing bug
whereby compiling with no x, no mswin, no tty, when running non-
interactively (e.g. to dump) I get "sorry, must have TTY support".
emacs.c: Turn on Vstack_trace_on_error so that errors are debuggable even
when occurring extremely early in reinitialization.
emacs.c: Try to make sure that the user can see message output under
Windows (i.e. it doesn't just disappear right away) regardless of
when it occurs, e.g. in the middle of creating the first frame.
emacs.c: Define new function `emacs-run-status', indicating whether XEmacs
is noninteractive or interactive, whether raw,
post-dump/pdump-load or run-temacs, whether we are dumping,
whether pdump is in effect.
event-stream.c: It's "mommas are fat", not "momas are fat".
Fix other typo.
event-stream.c: Conditionalize in_menu_callback check on HAVE_MENUBARS,
because it won't exist on w/o menubar support,
lisp.h: More hackery on RETURN_NOT_REACHED. Cygwin v3.2 DOES complain here
if RETURN_NOT_REACHED() is blank, as it is for GCC 2.5+. So make it
blank only for GCC 2.5 through 2.999999999999999.
Declare Vstack_trace_on_error.
profile.c: Need to include "profile.h" to fix warnings.
sheap.c: Don't fatal() when need to rerun Make, just stderr_out() and exit(0).
That way we can distinguish between a dumping failing expectedly
(due to lack of stack space, triggering another dump) and unexpectedly,
in which case, we want to stop building. (or go on, if -K is given)
syntax.c, syntax.h: Use ints where they belong, and enum syntaxcode's where they belong,
and fix warnings thereby.
syntax.h: Fix crash caused by an edge condition in the syntax-cache macros.
text.h: Spacing fixes.
xmotif.h: New file, to get around shadowing warnings.
EmacsManager.c, event-Xt.c, glyphs-x.c, gui-x.c, input-method-motif.c, xmmanagerp.h, xmprimitivep.h: Include xmotif.h.
alloc.c: Conditionalize in_malloc on ERROR_CHECK_MALLOC.
config.h.in, file-coding.h, fileio.c, getloadavg.c, select-x.c, signal.c, sysdep.c, sysfile.h, systime.h, text.c, unicode.c: Eliminate HAVE_WIN32_CODING_SYSTEMS, use WIN32_ANY instead.
Replace defined (WIN32_NATIVE) || defined (CYGWIN) with WIN32_ANY.
lisp.h: More futile attempts to walk and chew gum at the same time when
dealing with subr's that don't return.
author | ben |
---|---|
date | Thu, 20 Feb 2003 08:19:44 +0000 |
parents | abe6d1db359e |
children | 9a1950c1e051 |
line wrap: on
line source
;;; list-mode.el --- Major mode for buffers containing lists of items ;; Copyright (C) 1992-4, 1997 Free Software Foundation, Inc. ;; Copyright (C) 1996, 2000 Ben Wing. ;; Maintainer: XEmacs Development Team ;; Keywords: extensions, dumped ;; This file is part of XEmacs. ;; XEmacs is free software; you can redistribute it and/or modify it ;; under the terms of the GNU General Public License as published by ;; the Free Software Foundation; either version 2, or (at your option) ;; any later version. ;; XEmacs is distributed in the hope that it will be useful, but ;; WITHOUT ANY WARRANTY; without even the implied warranty of ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU ;; General Public License for more details. ;; You should have received a copy of the GNU General Public License ;; along with XEmacs; see the file COPYING. If not, write to the ;; Free Software Foundation, Inc., 59 Temple Place - Suite 330, ;; Boston, MA 02111-1307, USA. ;;; Synched up with: Not synched ;;; Commentary: ;; This file is dumped with XEmacs. ;; Cleanup, merging with FSF by Ben Wing, January 1996 ;;; Code: (defvar list-mode-extent nil) (make-variable-buffer-local 'list-mode-extent) (defvar list-mode-map nil "Local map for buffers containing lists of items.") (or list-mode-map (let ((map (setq list-mode-map (make-sparse-keymap 'list-mode-map)))) (suppress-keymap map) (define-key map 'button2up 'list-mode-item-mouse-selected) (define-key map 'button2 'undefined) (define-key map "\C-m" 'list-mode-item-keyboard-selected) ;; ;; The following calls to `substitute-key-definition' losed because ;; they were based on an incorrect assumption that `forward-char' and ;; `backward-char' are bound to keys in the global map. This might not ;; be the case if a user binds motion keys to different functions, ;; and was not actually the case since 20.5 beta 28 or around. ;; ;; (substitute-key-definition 'forward-char 'next-list-mode-item map ;; global-map) ;; (substitute-key-definition 'backward-char 'previous-list-mode-item map ;; global-map) ;; ;; We bind standard keys to motion commands instead. ;; (dolist (key '(kp-right right (control ?f))) (define-key map key 'next-list-mode-item)) (dolist (key '(kp-left left (control ?b))) (define-key map key 'previous-list-mode-item)))) ;; #### We make list-mode-hook, as well as completion-setup-hook and ;; minibuffer-setup-hook, permanent-local so that it's possible to create ;; buffers in these modes and then set up some buffer-specific ;; customizations without resorting to awful kludges. (The problem here ;; is that when you switch a buffer into a mode, reset-buffer is usually ;; called, which destroys all buffer-local settings that you carefully ;; tried to set up when you created the buffer. Therefore, the only way ;; to set these variables is to use the setup hooks -- but if they are ;; not declared permanent local, then any local hook functions that you ;; put on them (which is exactly what you want to do) also get removed, ;; so you would have to resort to putting a global hook function on the ;; setup hook, and then making sure it gets removed later. I actually ;; added some support for doing this with one-shot hooks, but this is ;; clearly not the correct way to do things, and it fails in some cases, ;; particularly when the buffer gets put into the mode more than once, ;; which typically happens with completion buffers, for example.) In ;; fact, all setup hooks should be made permanent local, but I didn't ;; feel like making a global change like this quite yet. The proper way ;; to do it would be to declare new def-style forms, such as defhook and ;; define-local-setup-hook, which are used to initialize hooks in place ;; of the current generic defvars. --ben (put 'list-mode-hook 'permanent-local t) (defvar list-mode-hook nil "Normal hook run when entering List mode.") (defun list-mode () "Major mode for buffer containing lists of items." (interactive) (kill-all-local-variables) (use-local-map list-mode-map) (setq mode-name "List") (setq major-mode 'list-mode) (add-local-hook 'post-command-hook 'set-list-mode-extent) (add-local-hook 'pre-command-hook 'list-mode-extent-pre-hook) (set (make-local-variable 'next-line-add-newlines) nil) (setq list-mode-extent nil) ;; It is visually disconcerting to have the text cursor disappear within list ;; buffers, especially when moving from window to window, so leave it ;; visible. -- Bob Weiner, 06/20/1999 ; (set-specifier text-cursor-visible-p nil (current-buffer)) (setq buffer-read-only t) (goto-char (point-min)) (run-hooks 'list-mode-hook)) ;; List mode is suitable only for specially formatted data. (put 'list-mode 'mode-class 'special) (defvar list-mode-extent-old-point nil "The value of point when pre-command-hook is called. Used to determine the direction of motion.") (make-variable-buffer-local 'list-mode-extent-old-point) (defun list-mode-extent-pre-hook () (setq list-mode-extent-old-point (point)) ;(setq atomic-extent-goto-char-p nil) ) (defun set-list-mode-extent () "Move to the closest list item and set up the extent for it. This is called from `post-command-hook'." (cond ((get-char-property (point) 'list-mode-item)) ((and (> (point) (point-min)) (get-char-property (1- (point)) 'list-mode-item)) (goto-char (1- (point)))) (t (let ((pos (point)) dirflag) ;this fucks things up more than it helps. ;atomic-extent-goto-char-p as currently defined is all broken, ;since it will be triggered if the command *ever* runs goto-char! ;(if atomic-extent-goto-char-p ; (setq dirflag 1) (if (and list-mode-extent-old-point (> pos list-mode-extent-old-point)) (setq dirflag 1) (setq dirflag -1)) (next-list-mode-item dirflag) (or (get-char-property (point) 'list-mode-item) (next-list-mode-item (- dirflag)))))) (or (and list-mode-extent (eq (current-buffer) (extent-object list-mode-extent))) (progn (setq list-mode-extent (make-extent nil nil (current-buffer))) (set-extent-face list-mode-extent 'list-mode-item-selected))) (let ((ex (extent-at (point) nil 'list-mode-item nil 'at))) (if ex (progn (set-extent-endpoints list-mode-extent (extent-start-position ex) (extent-end-position ex)) (auto-show-make-region-visible (extent-start-position ex) (extent-end-position ex))) (detach-extent list-mode-extent)))) (defun previous-list-mode-item (n) "Move to the previous item in list-mode." (interactive "p") (next-list-mode-item (- n))) (defun next-list-mode-item (n) "Move to the next item in list-mode. With prefix argument N, move N items (negative N means move backward)." (interactive "p") (while (and (> n 0) (not (eobp))) (let ((extent (extent-at (point) (current-buffer) 'list-mode-item)) (end (point-max))) ;; If in a completion, move to the end of it. (if extent (goto-char (extent-end-position extent))) ;; Move to start of next one. (or (extent-at (point) (current-buffer) 'list-mode-item) (goto-char (next-single-property-change (point) 'list-mode-item nil end)))) (setq n (1- n))) (while (and (< n 0) (not (bobp))) (let ((extent (extent-at (point) (current-buffer) 'list-mode-item)) (end (point-min))) ;; If in a completion, move to the start of it. (if extent (goto-char (extent-start-position extent))) ;; Move to the start of that one. (if (setq extent (extent-at (point) (current-buffer) 'list-mode-item nil 'before)) (goto-char (extent-start-position extent)) (goto-char (previous-single-property-change (point) 'list-mode-item nil end)) (if (setq extent (extent-at (point) (current-buffer) 'list-mode-item nil 'before)) (goto-char (extent-start-position extent))))) (setq n (1+ n)))) (defun list-mode-item-selected-1 (extent event) (let ((func (extent-property extent 'list-mode-item-activate-callback)) (user-data (extent-property extent 'list-mode-item-user-data))) (if func (funcall func event extent user-data)))) ;; we could make these two be just one function, but we want to be ;; able to refer to them in DOC strings. (defun list-mode-item-keyboard-selected () (interactive) (list-mode-item-selected-1 (extent-at (point) (current-buffer) 'list-mode-item nil 'at) nil)) (defun list-mode-item-mouse-selected (event) (interactive "e") ;; Sometimes event-closest-point returns nil. ;; So beep instead of bombing. (let ((point (event-closest-point event))) (if point (list-mode-item-selected-1 (extent-at point (event-buffer event) 'list-mode-item nil 'at) event) (ding)))) (defun add-list-mode-item (start end &optional buffer activate-callback user-data) "Add a new list item in list-mode, from START to END in BUFFER. BUFFER defaults to the current buffer. This works by creating an extent for the span of text in question. If ACTIVATE-CALLBACK is non-nil, it should be a function of three arguments (EVENT EXTENT USER-DATA) that will be called when button2 is pressed on the extent. USER-DATA comes from the optional USER-DATA argument." (let ((extent (make-extent start end buffer))) (set-extent-property extent 'list-mode-item t) (set-extent-property extent 'start-open t) (if activate-callback (progn (set-extent-property extent 'mouse-face 'highlight) (set-extent-property extent 'list-mode-item-activate-callback activate-callback) (set-extent-property extent 'list-mode-item-user-data user-data))) extent)) ;; Define the major mode for lists of completions. (defvar completion-highlight-first-word-only nil "*Completion will only highlight the first blank delimited word if t. If the variable in not t or nil, the string is taken as a regexp to match for end of highlight") ;; see comment at list-mode-hook. (put 'completion-setup-hook 'permanent-local t) (defvar completion-setup-hook nil "Normal hook run at the end of setting up the text of a completion buffer. When run, the completion buffer is the current buffer.") ; Unnecessary FSFmacs crock. We frob the extents directly in ; display-completion-list, so no "heuristics" like this are necessary. ;(defvar completion-fixup-function nil ; "A function to customize how completions are identified in completion lists. ;`completion-setup-function' calls this function with no arguments ;each time it has found what it thinks is one completion. ;Point is at the end of the completion in the completion list buffer. ;If this function moves point, it can alter the end of that completion.") (defvar completion-default-help-string '(concat (if (device-on-window-system-p) (substitute-command-keys "Click \\<list-mode-map>\\[list-mode-item-mouse-selected] on a completion to select it.\n") "") (substitute-command-keys "Type \\<minibuffer-local-completion-map>\\[advertised-switch-to-completions] or \\[switch-to-completions] to move to this buffer, for keyboard selection.\n\n")) "Form the evaluate to get a help string for completion lists. This string is inserted at the beginning of the buffer. See `display-completion-list'.") (defun display-completion-list (completions &rest cl-keys) "Display the list of completions, COMPLETIONS, using `standard-output'. Each element may be just a symbol or string or may be a list of two strings to be printed as if concatenated. Frob a mousable extent onto each completion. This extent has properties 'mouse-face (so it highlights when the mouse passes over it) and 'list-mode-item (so it can be located). Keywords: :activate-callback (default is `default-choose-completion') See `add-list-mode-item'. :user-data Value passed to activation callback. :window-width If non-nil, width to use in displaying the list, instead of the actual window's width. :window-height If non-nil, use no more than this many lines, and extend line width as necessary. :help-string (default is the value of `completion-default-help-string') Form to evaluate to get a string to insert at the beginning of the completion list buffer. This is evaluated when that buffer is the current buffer and after it has been put into completion-list-mode. :reference-buffer (default is the current buffer) This specifies the value of `completion-reference-buffer' in the completion buffer. This specifies the buffer (normally a minibuffer) that `default-choose-completion' will insert the completion into. At the end, run the normal hook `completion-setup-hook'. It can find the completion buffer in `standard-output'. If `completion-highlight-first-word-only' is non-nil, then only the start of the string is highlighted." ;; #### I18N3 should set standard-output to be (temporarily) ;; output-translating. (cl-parsing-keywords ((:activate-callback 'default-choose-completion) :user-data :reference-buffer (:help-string completion-default-help-string) (:completion-string "Possible completions are:") :window-width :window-height) () (let ((old-buffer (current-buffer)) (bufferp (bufferp standard-output))) (if bufferp (set-buffer standard-output)) (if (null completions) (princ (gettext "There are no possible completions of what you have typed.")) (let ((win-width (or cl-window-width (if bufferp ;; This needs fixing for the case of windows ;; that aren't the same width's the frame. ;; Sadly, the window it will appear in is not known ;; until after the text has been made. ;; We have to use last-nonminibuf-frame here ;; and not selected-frame because if a ;; minibuffer-only frame is being used it will ;; be the selected-frame at the point this is ;; run. We keep the selected-frame call around ;; just in case. (frame-width (or (last-nonminibuf-frame) (selected-frame))) 80)))) (let ((count 0) (max-width 0) old-max-width) ;; Find longest completion (let ((tail completions)) (while tail (let* ((elt (car tail)) (len (cond ((stringp elt) (length elt)) ((and (consp elt) (stringp (car elt)) (stringp (car (cdr elt)))) (+ (length (car elt)) (length (car (cdr elt))))) (t (signal 'wrong-type-argument (list 'stringp elt)))))) (if (> len max-width) (setq max-width len)) (setq count (1+ count) tail (cdr tail))))) (setq max-width (+ 2 max-width)) ; at least two chars between cols (setq old-max-width max-width) (let ((rows (let ((cols (min (/ win-width max-width) count))) (if (<= cols 1) count (progn ;; re-space the columns (setq max-width (/ win-width cols)) (if (/= (% count cols) 0) ; want ceiling... (1+ (/ count cols)) (/ count cols))))))) (when (and cl-window-height (> rows cl-window-height)) (setq max-width old-max-width) (setq rows cl-window-height)) (when (and (stringp cl-completion-string) (> (length cl-completion-string) 0)) (princ (gettext cl-completion-string)) (terpri)) (let ((tail completions) (r 0) (regexp-string (if (eq t completion-highlight-first-word-only) "[ \t]" completion-highlight-first-word-only))) (while (< r rows) (and (> r 0) (terpri)) (let ((indent 0) (column 0) (tail2 tail)) (while tail2 (let ((elt (car tail2))) (if (/= indent 0) (if bufferp (indent-to indent 2) (while (progn (write-char ?\ ) (setq column (1+ column)) (< column indent))))) (setq indent (+ indent max-width)) (let ((start (point)) end) ;; Frob some mousable extents in there too! (if (consp elt) (progn (princ (car elt)) (princ (car (cdr elt))) (or bufferp (setq column (+ column (length (car elt)) (length (car (cdr elt))))))) (progn (princ elt) (or bufferp (setq column (+ column (length elt)))))) (add-list-mode-item start (progn (setq end (point)) (or (and completion-highlight-first-word-only (goto-char start) (re-search-forward regexp-string end t) (match-beginning 0)) end)) nil cl-activate-callback cl-user-data) (goto-char end))) (setq tail2 (nthcdr rows tail2))) (setq tail (cdr tail) r (1+ r))))))))) (if bufferp (set-buffer old-buffer))) (save-excursion (let ((mainbuf (or cl-reference-buffer (current-buffer)))) (set-buffer standard-output) (completion-list-mode) (make-local-variable 'completion-reference-buffer) (setq completion-reference-buffer mainbuf) ;;; The value 0 is right in most cases, but not for file name completion. ;;; so this has to be turned off. ;;; (setq completion-base-size 0) (goto-char (point-min)) (let ((buffer-read-only nil)) (insert (eval cl-help-string))) ;; unnecessary FSFmacs crock ;;(forward-line 1) ;;(while (re-search-forward "[^ \t\n]+\\( [^ \t\n]+\\)*" nil t) ;; (let ((beg (match-beginning 0)) ;; (end (point))) ;; (if completion-fixup-function ;; (funcall completion-fixup-function)) ;; (put-text-property beg (point) 'mouse-face 'highlight) ;; (put-text-property beg (point) 'list-mode-item t) ;; (goto-char end))))) )) (save-excursion (set-buffer standard-output) (run-hooks 'completion-setup-hook)))) (defvar completion-display-completion-list-function 'display-completion-list "Function to set up the list of completions in the completion buffer. The function is called with one argument, the sorted list of completions. Particular minibuffer interface functions (e.g. `read-file-name') may want to change this. To do that, set a local value for this variable in the minibuffer; that ensures that other minibuffer invocations will not be affected.") (defun minibuffer-completion-help () "Display a list of possible completions of the current minibuffer contents. The list of completions is determined by calling `all-completions', passing it the current minibuffer contents, the value of `minibuffer-completion-table', and the value of `minibuffer-completion-predicate'. The list is displayed by calling the value of `completion-display-completion-list-function' on the sorted list of completions, with the standard output set to the completion buffer." (interactive) (message "Making completion list...") (let ((completions (all-completions (buffer-string) minibuffer-completion-table minibuffer-completion-predicate))) (message nil) (if (null completions) (progn (ding nil 'no-completion) (temp-minibuffer-message " [No completions]")) (with-output-to-temp-buffer "*Completions*" (funcall completion-display-completion-list-function (sort completions #'string-lessp)))))) (define-derived-mode completion-list-mode list-mode "Completion List" "Major mode for buffers showing lists of possible completions. \\{completion-list-mode-map}" (make-local-variable 'completion-base-size) (setq completion-base-size nil)) (let ((map completion-list-mode-map)) (define-key map 'button2up 'mouse-choose-completion) (define-key map 'button2 'undefined) (define-key map "\C-m" 'choose-completion) (define-key map "\e\e\e" 'delete-completion-window) (define-key map "\C-g" 'minibuffer-keyboard-quit) (define-key map "q" 'completion-list-mode-quit) (define-key map " " 'completion-switch-to-minibuffer) ;; [Tab] used to switch to the minibuffer but since [space] does that and ;; since most applications in the world use [Tab] to select the next item ;; in a list, do that in the *Completions* buffer too. -- Bob Weiner, ;; BeOpen.com, 06/23/1999. (define-key map "\t" 'next-list-mode-item)) (defvar completion-reference-buffer nil "Record the buffer that was current when the completion list was requested. This is a local variable in the completion list buffer. Initial value is nil to avoid some compiler warnings.") (defvar completion-base-size nil "Number of chars at beginning of minibuffer not involved in completion. This is a local variable in the completion list buffer but it talks about the buffer in `completion-reference-buffer'. If this is nil, it means to compare text to determine which part of the tail end of the buffer's text is involved in completion.") ;; These names are referenced in the doc string for `completion-list-mode'. (defalias 'choose-completion 'list-mode-item-keyboard-selected) (defalias 'mouse-choose-completion 'list-mode-item-mouse-selected) (defun delete-completion-window () "Delete the completion list window. Go to the window from which completion was requested." (interactive) (let ((buf completion-reference-buffer)) (delete-window (selected-window)) (if (get-buffer-window buf) (select-window (get-buffer-window buf))))) (defun completion-switch-to-minibuffer () "Move from a completions buffer to the active minibuffer window." (interactive) (select-window (minibuffer-window))) (defun completion-list-mode-quit () "Abort any recursive edit and bury the completions buffer." (interactive) (condition-case () (abort-recursive-edit) (error nil)) ;; If there was no recursive edit to abort, simply bury the completions ;; list buffer. (if (eq major-mode 'completion-list-mode) (bury-buffer))) (defun completion-do-in-minibuffer () (interactive "_") (save-excursion (set-buffer (window-buffer (minibuffer-window))) (call-interactively (key-binding (this-command-keys))))) (defun default-choose-completion (event extent buffer) "Click on an alternative in the `*Completions*' buffer to choose it." (and (button-event-p event) ;; Give temporary modes such as isearch a chance to turn off. (run-hooks 'mouse-leave-buffer-hook)) (or buffer (setq buffer (symbol-value-in-buffer 'completion-reference-buffer (or (and (button-event-p event) (event-buffer event)) (current-buffer))))) (save-selected-window (and (button-event-p event) (select-window (event-window event))) (if (and (one-window-p t 'selected-frame) (window-dedicated-p (selected-window))) ;; This is a special buffer's frame (iconify-frame (selected-frame)) (or (window-dedicated-p (selected-window)) (bury-buffer)))) (choose-completion-string (extent-string extent) buffer completion-base-size)) ;; Delete the longest partial match for STRING ;; that can be found before POINT. (defun choose-completion-delete-max-match (string) (let ((len (min (length string) (- (point) (point-min))))) (goto-char (- (point) (length string))) (if completion-ignore-case (setq string (downcase string))) (while (and (> len 0) (let ((tail (buffer-substring (point) (+ (point) len)))) (if completion-ignore-case (setq tail (downcase tail))) (not (string= tail (substring string 0 len))))) (setq len (1- len)) (forward-char 1)) (delete-char len))) ;; Switch to BUFFER and insert the completion choice CHOICE. ;; BASE-SIZE, if non-nil, says how many characters of BUFFER's text ;; to keep. If it is nil, use choose-completion-delete-max-match instead. (defun choose-completion-string (choice &optional buffer base-size) (let ((buffer (or buffer completion-reference-buffer))) ;; If BUFFER is a minibuffer, barf unless it's the currently ;; active minibuffer. (if (and (string-match "\\` \\*Minibuf-[0-9]+\\*\\'" (buffer-name buffer)) (or (not (active-minibuffer-window)) (not (equal buffer (window-buffer (active-minibuffer-window)))))) (error "Minibuffer is not active for completion") ;; Insert the completion into the buffer where completion was requested. (set-buffer buffer) (if base-size (delete-region (+ base-size (point-min)) (point)) (choose-completion-delete-max-match choice)) (insert choice) (remove-text-properties (- (point) (length choice)) (point) '(highlight nil)) ;; Update point in the window that BUFFER is showing in. (let ((window (get-buffer-window buffer t))) (set-window-point window (point))) ;; If completing for the minibuffer, exit it with this choice. (and (equal buffer (window-buffer (minibuffer-window))) minibuffer-completion-table (exit-minibuffer))))) (define-key minibuffer-local-completion-map [prior] 'switch-to-completions) (define-key minibuffer-local-must-match-map [prior] 'switch-to-completions) (define-key minibuffer-local-completion-map "\M-v" 'advertised-switch-to-completions) (define-key minibuffer-local-must-match-map "\M-v" 'advertised-switch-to-completions) (defalias 'advertised-switch-to-completions 'switch-to-completions) (defun switch-to-completions () "Select the completion list window." (interactive) ;; Make sure we have a completions window. (or (get-buffer-window "*Completions*") (minibuffer-completion-help)) (if (not (get-buffer-window "*Completions*")) nil (select-window (get-buffer-window "*Completions*")) (goto-char (next-single-property-change (point-min) 'list-mode-item nil (point-max))))) ;;; list-mode.el ends here