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337 lines
12 KiB
EmacsLisp
337 lines
12 KiB
EmacsLisp
;;; icomplete.el --- minibuffer completion incremental feedback
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;; Copyright (C) 1992, 1993, 1994, 1997, 1999, 2001, 2002, 2003,
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;; 2004, 2005, 2006, 2007, 2008 Free Software Foundation, Inc.
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;; Author: Ken Manheimer <klm@i.am>
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;; Maintainer: Ken Manheimer <klm@i.am>
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;; Created: Mar 1993 Ken Manheimer, klm@nist.gov - first release to usenet
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;; Last update: Ken Manheimer <klm@i.am>, 11/18/1999.
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;; Keywords: help, abbrev
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;; This file is part of GNU Emacs.
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;; GNU Emacs is free software; you can redistribute it and/or modify
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;; it under the terms of the GNU General Public License as published by
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;; the Free Software Foundation; either version 3, or (at your option)
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;; any later version.
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;; GNU Emacs is distributed in the hope that it will be useful,
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;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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;; GNU General Public License for more details.
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;; You should have received a copy of the GNU General Public License
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;; along with GNU Emacs; see the file COPYING. If not, write to the
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;; Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
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;; Boston, MA 02110-1301, USA.
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;;; Commentary:
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;; Loading this package implements a more fine-grained minibuffer
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;; completion feedback scheme. Prospective completions are concisely
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;; indicated within the minibuffer itself, with each successive
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;; keystroke.
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;; See `icomplete-completions' docstring for a description of the
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;; icomplete display format.
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;; See the `icomplete-minibuffer-setup-hook' docstring for a means to
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;; customize icomplete setup for interoperation with other
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;; minibuffer-oriented packages.
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;; To activate icomplete mode, load the package and use the
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;; `icomplete-mode' function. You can subsequently deactivate it by
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;; invoking the function icomplete-mode with a negative prefix-arg
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;; (C-U -1 ESC-x icomplete-mode). Also, you can prevent activation of
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;; the mode during package load by first setting the variable
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;; `icomplete-mode' to nil. Icompletion can be enabled any time after
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;; the package is loaded by invoking icomplete-mode without a prefix
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;; arg.
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;; Thanks to everyone for their suggestions for refinements of this
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;; package. I particularly have to credit Michael Cook, who
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;; implemented an incremental completion style in his 'iswitch'
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;; functions that served as a model for icomplete. Some other
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;; contributors: Noah Friedman (restructuring as minor mode), Colin
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;; Rafferty (lemacs reconciliation), Lars Lindberg, RMS, and others.
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;; klm.
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;;; Code:
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;;;_* Provide
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(provide 'icomplete)
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(defgroup icomplete nil
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"Show completions dynamically in minibuffer."
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:prefix "icomplete-"
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:group 'minibuffer)
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;;;_* User Customization variables
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(defcustom icomplete-prospects-length 80
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"*Length of string displaying the prospects."
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:type 'integer
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:group 'icomplete)
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(defcustom icomplete-compute-delay .3
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"*Completions-computation stall, used only with large-number
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completions - see `icomplete-delay-completions-threshold'."
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:type 'number
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:group 'icomplete)
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(defcustom icomplete-delay-completions-threshold 400
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"*Pending-completions number over which to apply icomplete-compute-delay."
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:type 'integer
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:group 'icomplete)
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(defcustom icomplete-max-delay-chars 3
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"*Maximum number of initial chars to apply icomplete compute delay."
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:type 'integer
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:group 'icomplete)
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(defcustom icomplete-show-key-bindings t
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"*If non-nil, show key bindings as well as completion for sole matches."
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:type 'boolean
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:group 'icomplete)
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(defcustom icomplete-minibuffer-setup-hook nil
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"*Icomplete-specific customization of minibuffer setup.
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This hook is run during minibuffer setup if icomplete is active.
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It is intended for use in customizing icomplete for interoperation
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with other features and packages. For instance:
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\(add-hook 'icomplete-minibuffer-setup-hook
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\(function
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\(lambda ()
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\(make-local-variable 'max-mini-window-height)
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\(setq max-mini-window-height 3))))
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will constrain Emacs to a maximum minibuffer height of 3 lines when
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icompletion is occurring."
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:type 'hook
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:group 'icomplete)
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;;;_* Initialization
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;;;_ + Internal Variables
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;;;_ = icomplete-eoinput nil
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(defvar icomplete-eoinput nil
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"Point where minibuffer input ends and completion info begins.")
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(make-variable-buffer-local 'icomplete-eoinput)
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;;;_ = icomplete-pre-command-hook
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(defvar icomplete-pre-command-hook nil
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"Incremental-minibuffer-completion pre-command-hook.
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Is run in minibuffer before user input when `icomplete-mode' is non-nil.
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Use `icomplete-mode' function to set it up properly for incremental
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minibuffer completion.")
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(add-hook 'icomplete-pre-command-hook 'icomplete-tidy)
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;;;_ = icomplete-post-command-hook
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(defvar icomplete-post-command-hook nil
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"Incremental-minibuffer-completion post-command-hook.
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Is run in minibuffer after user input when `icomplete-mode' is non-nil.
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Use `icomplete-mode' function to set it up properly for incremental
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minibuffer completion.")
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(add-hook 'icomplete-post-command-hook 'icomplete-exhibit)
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(defun icomplete-get-keys (func-name)
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"Return strings naming keys bound to `func-name', or nil if none.
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Examines the prior, not current, buffer, presuming that current buffer
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is minibuffer."
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(if (commandp func-name)
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(save-excursion
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(let* ((sym (intern func-name))
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(buf (other-buffer nil t))
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(keys (with-current-buffer buf (where-is-internal sym))))
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(if keys
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(concat "<"
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(mapconcat 'key-description
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(sort keys
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#'(lambda (x y)
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(< (length x) (length y))))
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", ")
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">"))))))
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;;;_ = icomplete-with-completion-tables
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(defvar icomplete-with-completion-tables '(internal-complete-buffer)
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"Specialized completion tables with which icomplete should operate.
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Icomplete does not operate with any specialized completion tables
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except those on this list.")
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;;;_ > icomplete-mode (&optional prefix)
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;;;###autoload
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(define-minor-mode icomplete-mode
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"Toggle incremental minibuffer completion for this Emacs session.
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With a numeric argument, turn Icomplete mode on if ARG is positive,
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otherwise turn it off."
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:global t :group 'icomplete
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(if icomplete-mode
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;; The following is not really necessary after first time -
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;; no great loss.
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(add-hook 'minibuffer-setup-hook 'icomplete-minibuffer-setup)
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(remove-hook 'minibuffer-setup-hook 'icomplete-minibuffer-setup)))
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;;;_ > icomplete-simple-completing-p ()
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(defun icomplete-simple-completing-p ()
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"Non-nil if current window is minibuffer that's doing simple completion.
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Conditions are:
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the selected window is a minibuffer,
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and not in the middle of macro execution,
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and `minibuffer-completion-table' is not a symbol (which would
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indicate some non-standard, non-simple completion mechanism,
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like file-name and other custom-func completions)."
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(and (window-minibuffer-p (selected-window))
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(not executing-kbd-macro)
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minibuffer-completion-table
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(or (not (functionp minibuffer-completion-table))
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(member minibuffer-completion-table
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icomplete-with-completion-tables))))
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;;;_ > icomplete-minibuffer-setup ()
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(defun icomplete-minibuffer-setup ()
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"Run in minibuffer on activation to establish incremental completion.
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Usually run by inclusion in `minibuffer-setup-hook'."
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(when (and icomplete-mode (icomplete-simple-completing-p))
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(add-hook 'pre-command-hook
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(lambda () (run-hooks 'icomplete-pre-command-hook))
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nil t)
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(add-hook 'post-command-hook
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(lambda () (run-hooks 'icomplete-post-command-hook))
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nil t)
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(run-hooks 'icomplete-minibuffer-setup-hook)))
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;
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;;;_* Completion
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;;;_ > icomplete-tidy ()
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(defun icomplete-tidy ()
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"Remove completions display \(if any) prior to new user input.
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Should be run in on the minibuffer `pre-command-hook'. See `icomplete-mode'
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and `minibuffer-setup-hook'."
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(when (and icomplete-mode icomplete-eoinput)
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(unless (>= icomplete-eoinput (point-max))
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(let ((buffer-undo-list t) ; prevent entry
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deactivate-mark)
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(delete-region icomplete-eoinput (point-max))))
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;; Reestablish the safe value.
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(setq icomplete-eoinput nil)))
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;;;_ > icomplete-exhibit ()
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(defun icomplete-exhibit ()
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"Insert icomplete completions display.
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Should be run via minibuffer `post-command-hook'. See `icomplete-mode'
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and `minibuffer-setup-hook'."
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(when (and icomplete-mode (icomplete-simple-completing-p))
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(save-excursion
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(goto-char (point-max))
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;; Register the end of input, so we know where the extra stuff
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;; (match-status info) begins:
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(setq icomplete-eoinput (point))
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; Insert the match-status information:
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(if (and (> (point-max) (minibuffer-prompt-end))
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buffer-undo-list ; Wait for some user input.
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(or
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;; Don't bother with delay after certain number of chars:
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(> (- (point) (field-beginning)) icomplete-max-delay-chars)
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;; Don't delay if alternatives number is small enough:
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(and (sequencep minibuffer-completion-table)
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(< (length minibuffer-completion-table)
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icomplete-delay-completions-threshold))
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;; Delay - give some grace time for next keystroke, before
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;; embarking on computing completions:
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(sit-for icomplete-compute-delay)))
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(let ((text (while-no-input
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(list
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(icomplete-completions
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(field-string)
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minibuffer-completion-table
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minibuffer-completion-predicate
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(not minibuffer-completion-confirm)))))
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(buffer-undo-list t)
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deactivate-mark)
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;; Do nothing if while-no-input was aborted.
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(if (consp text) (insert (car text))))))))
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;;;_ > icomplete-completions (name candidates predicate require-match)
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(defun icomplete-completions (name candidates predicate require-match)
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"Identify prospective candidates for minibuffer completion.
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The display is updated with each minibuffer keystroke during
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minibuffer completion.
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Prospective completion suffixes (if any) are displayed, bracketed by
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one of \(), \[], or \{} pairs. The choice of brackets is as follows:
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\(...) - a single prospect is identified and matching is enforced,
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\[...] - a single prospect is identified but matching is optional, or
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\{...} - multiple prospects, separated by commas, are indicated, and
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further input is required to distinguish a single one.
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The displays for unambiguous matches have ` [Matched]' appended
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\(whether complete or not), or ` \[No matches]', if no eligible
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matches exist. \(Keybindings for uniquely matched commands
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are exhibited within the square braces.)"
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(let ((comps (all-completions name candidates predicate))
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; "-determined" - only one candidate
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(open-bracket-determined (if require-match "(" "["))
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(close-bracket-determined (if require-match ")" "]")))
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;; `concat'/`mapconcat' is the slow part. With the introduction of
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;; `icomplete-prospects-length', there is no need for `catch'/`throw'.
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(if (null comps) (format " %sNo matches%s"
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open-bracket-determined
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close-bracket-determined)
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(let* ((most-try (try-completion name (mapcar (function list) comps)))
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(most (if (stringp most-try) most-try (car comps)))
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(most-len (length most))
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(determ (and (> most-len (length name))
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(concat open-bracket-determined
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(substring most (length name))
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close-bracket-determined)))
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;;"-prospects" - more than one candidate
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(prospects-len 0)
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prospects most-is-exact comp)
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(if (eq most-try t)
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(setq prospects nil)
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(while (and comps (< prospects-len icomplete-prospects-length))
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(setq comp (substring (car comps) most-len)
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comps (cdr comps))
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(cond ((string-equal comp "") (setq most-is-exact t))
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((member comp prospects))
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(t (setq prospects (cons comp prospects)
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prospects-len (+ (length comp) 1 prospects-len))))))
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(if prospects
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(concat determ
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"{"
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(and most-is-exact ",")
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(mapconcat 'identity
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(sort prospects (function string-lessp))
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",")
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(and comps ",...")
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"}")
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(concat determ
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" [Matched"
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(let ((keys (and icomplete-show-key-bindings
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(commandp (intern-soft most))
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(icomplete-get-keys most))))
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(if keys (concat "; " keys) ""))
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"]"))))))
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;;;_* Local emacs vars.
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;;;Local variables:
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;;;allout-layout: (-2 :)
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;;;End:
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;; arch-tag: 339ec25a-0741-4eb6-be63-997532e89b0f
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;;; icomplete.el ends here
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