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EmacsLisp
539 lines
24 KiB
EmacsLisp
;;; nadvice.el --- Light-weight advice primitives for Elisp functions -*- lexical-binding: t -*-
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;; Copyright (C) 2012-2016 Free Software Foundation, Inc.
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;; Author: Stefan Monnier <monnier@iro.umontreal.ca>
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;; Keywords: extensions, lisp, tools
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;; Package: emacs
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;; This program 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 of the License, or
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;; (at your option) any later version.
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;; This program 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 this program. If not, see <http://www.gnu.org/licenses/>.
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;;; Commentary:
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;; This package lets you add behavior (which we call "piece of advice") to
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;; existing functions, like the old `advice.el' package, but with much fewer
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;; bells and whistles. It comes in 2 parts:
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;;
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;; - The first part lets you add/remove functions, similarly to
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;; add/remove-hook, from any "place" (i.e. as accepted by `setf') that
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;; holds a function.
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;; This part provides mainly 2 macros: `add-function' and `remove-function'.
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;;
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;; - The second part provides `advice-add' and `advice-remove' which are
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;; refined version of the previous macros specially tailored for the case
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;; where the place that we want to modify is a `symbol-function'.
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;;; Code:
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;;;; Lightweight advice/hook
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(defvar advice--where-alist
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'((:around "\300\301\302\003#\207" 5)
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(:before "\300\301\002\"\210\300\302\002\"\207" 4)
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(:after "\300\302\002\"\300\301\003\"\210\207" 5)
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(:override "\300\301\"\207" 4)
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(:after-until "\300\302\002\"\206\013\000\300\301\002\"\207" 4)
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(:after-while "\300\302\002\"\205\013\000\300\301\002\"\207" 4)
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(:before-until "\300\301\002\"\206\013\000\300\302\002\"\207" 4)
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(:before-while "\300\301\002\"\205\013\000\300\302\002\"\207" 4)
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(:filter-args "\300\302\301!\"\207" 5)
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(:filter-return "\301\300\302\"!\207" 5))
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"List of descriptions of how to add a function.
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Each element has the form (WHERE BYTECODE STACK) where:
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WHERE is a keyword indicating where the function is added.
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BYTECODE is the corresponding byte-code that will be used.
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STACK is the amount of stack space needed by the byte-code.")
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(defvar advice--bytecodes (mapcar #'cadr advice--where-alist))
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(defun advice--p (object)
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(and (byte-code-function-p object)
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(eq 128 (aref object 0))
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(memq (length object) '(5 6))
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(memq (aref object 1) advice--bytecodes)
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(eq #'apply (aref (aref object 2) 0))))
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(defsubst advice--car (f) (aref (aref f 2) 1))
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(defsubst advice--cdr (f) (aref (aref f 2) 2))
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(defsubst advice--props (f) (aref (aref f 2) 3))
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(defun advice--cd*r (f)
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(while (advice--p f)
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(setq f (advice--cdr f)))
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f)
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(defun advice--make-docstring (function)
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"Build the raw docstring for FUNCTION, presumably advised."
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(let* ((flist (indirect-function function))
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(docfun nil)
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(docstring nil))
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(if (eq 'macro (car-safe flist)) (setq flist (cdr flist)))
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(while (advice--p flist)
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(let ((bytecode (aref flist 1))
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(doc (aref flist 4))
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(where nil))
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;; Hack attack! For advices installed before calling
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;; Snarf-documentation, the integer offset into the DOC file will not
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;; be installed in the "core unadvised function" but in the advice
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;; object instead! So here we try to undo the damage.
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(if (integerp doc) (setq docfun flist))
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(dolist (elem advice--where-alist)
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(if (eq bytecode (cadr elem)) (setq where (car elem))))
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(setq docstring
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(concat
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docstring
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(propertize (format "%s advice: " where)
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'face 'warning)
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(let ((fun (advice--car flist)))
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(if (symbolp fun) (format-message "`%S'" fun)
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(let* ((name (cdr (assq 'name (advice--props flist))))
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(doc (documentation fun t))
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(usage (help-split-fundoc doc function)))
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(if usage (setq doc (cdr usage)))
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(if name
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(if doc
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(format "%s\n%s" name doc)
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(format "%s" name))
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(or doc "No documentation")))))
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"\n")))
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(setq flist (advice--cdr flist)))
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(if docstring (setq docstring (concat docstring "\n")))
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(unless docfun (setq docfun flist))
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(let* ((origdoc (unless (eq function docfun) ;Avoid inf-loops.
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(documentation docfun t)))
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(usage (help-split-fundoc origdoc function)))
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(setq usage (if (null usage)
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(let ((arglist (help-function-arglist flist)))
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(help--make-usage-docstring function arglist))
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(setq origdoc (cdr usage)) (car usage)))
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(help-add-fundoc-usage (concat docstring origdoc) usage))))
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(defun advice-eval-interactive-spec (spec)
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"Evaluate the interactive spec SPEC."
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(cond
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((stringp spec)
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;; There's no direct access to the C code (in call-interactively) that
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;; processes those specs, but that shouldn't stop us, should it?
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;; FIXME: Despite appearances, this is not faithful: SPEC and
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;; (advice-eval-interactive-spec SPEC) will behave subtly differently w.r.t
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;; command-history (and maybe a few other details).
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(call-interactively `(lambda (&rest args) (interactive ,spec) args)))
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;; ((functionp spec) (funcall spec))
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(t (eval spec))))
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(defun advice--interactive-form (function)
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;; Like `interactive-form' but tries to avoid autoloading functions.
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(when (commandp function)
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(if (not (and (symbolp function) (autoloadp (indirect-function function))))
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(interactive-form function)
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`(interactive (advice-eval-interactive-spec
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(cadr (interactive-form ',function)))))))
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(defun advice--make-interactive-form (function main)
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;; TODO: make it so that interactive spec can be a constant which
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;; dynamically checks the advice--car/cdr to do its job.
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;; For that, advice-eval-interactive-spec needs to be more faithful.
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(let* ((iff (advice--interactive-form function))
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(ifm (advice--interactive-form main))
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(fspec (cadr iff)))
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(when (eq 'function (car-safe fspec)) ;; Macroexpanded lambda?
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(setq fspec (nth 1 fspec)))
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(if (functionp fspec)
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`(funcall ',fspec ',(cadr ifm))
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(cadr (or iff ifm)))))
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(defun advice--make-1 (byte-code stack-depth function main props)
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"Build a function value that adds FUNCTION to MAIN."
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(let ((adv-sig (gethash main advertised-signature-table))
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(advice
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(apply #'make-byte-code 128 byte-code
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(vector #'apply function main props) stack-depth nil
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(and (or (commandp function) (commandp main))
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(list (advice--make-interactive-form
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function main))))))
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(when adv-sig (puthash advice adv-sig advertised-signature-table))
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advice))
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(defun advice--make (where function main props)
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"Build a function value that adds FUNCTION to MAIN at WHERE.
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WHERE is a symbol to select an entry in `advice--where-alist'."
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(let ((fd (or (cdr (assq 'depth props)) 0))
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(md (if (advice--p main)
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(or (cdr (assq 'depth (advice--props main))) 0))))
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(if (and md (> fd md))
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;; `function' should go deeper.
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(let ((rest (advice--make where function (advice--cdr main) props)))
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(advice--make-1 (aref main 1) (aref main 3)
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(advice--car main) rest (advice--props main)))
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(let ((desc (assq where advice--where-alist)))
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(unless desc (error "Unknown add-function location `%S'" where))
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(advice--make-1 (nth 1 desc) (nth 2 desc)
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function main props)))))
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(defun advice--member-p (function use-name definition)
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(let ((found nil))
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(while (and (not found) (advice--p definition))
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(if (if (eq use-name :use-both)
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(or (equal function
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(cdr (assq 'name (advice--props definition))))
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(equal function (advice--car definition)))
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(equal function (if use-name
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(cdr (assq 'name (advice--props definition)))
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(advice--car definition))))
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(setq found definition)
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(setq definition (advice--cdr definition))))
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found))
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(defun advice--tweak (flist tweaker)
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(if (not (advice--p flist))
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(funcall tweaker nil flist nil)
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(let ((first (advice--car flist))
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(rest (advice--cdr flist))
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(props (advice--props flist)))
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(let ((val (funcall tweaker first rest props)))
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(if val (car val)
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(let ((nrest (advice--tweak rest tweaker)))
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(if (eq rest nrest) flist
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(advice--make-1 (aref flist 1) (aref flist 3)
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first nrest props))))))))
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;;;###autoload
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(defun advice--remove-function (flist function)
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(advice--tweak flist
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(lambda (first rest props)
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(cond ((not first) rest)
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((or (equal function first)
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(equal function (cdr (assq 'name props))))
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(list (advice--remove-function rest function)))))))
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(defvar advice--buffer-local-function-sample nil
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"keeps an example of the special \"run the default value\" functions.
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These functions play the same role as t in buffer-local hooks, and to recognize
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them, we keep a sample here against which to compare. Each instance is
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different, but `function-equal' will hopefully ignore those differences.")
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(defun advice--set-buffer-local (var val)
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(if (function-equal val advice--buffer-local-function-sample)
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(kill-local-variable var)
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(set (make-local-variable var) val)))
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;;;###autoload
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(defun advice--buffer-local (var)
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"Buffer-local value of VAR, presumed to contain a function."
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(declare (gv-setter advice--set-buffer-local))
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(if (local-variable-p var) (symbol-value var)
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(setq advice--buffer-local-function-sample
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;; This function acts like the t special value in buffer-local hooks.
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(lambda (&rest args) (apply (default-value var) args)))))
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(eval-and-compile
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(defun advice--normalize-place (place)
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(cond ((eq 'local (car-safe place)) `(advice--buffer-local ,@(cdr place)))
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((eq 'var (car-safe place)) (nth 1 place))
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((symbolp place) `(default-value ',place))
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(t place))))
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;;;###autoload
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(defmacro add-function (where place function &optional props)
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;; TODO:
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;; - maybe let `where' specify some kind of predicate and use it
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;; to implement things like mode-local or eieio-defmethod.
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;; Of course, that only makes sense if the predicates of all advices can
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;; be combined and made more efficient.
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;; :before is like a normal add-hook on a normal hook.
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;; :before-while is like add-hook on run-hook-with-args-until-failure.
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;; :before-until is like add-hook on run-hook-with-args-until-success.
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;; Same with :after-* but for (add-hook ... 'append).
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"Add a piece of advice on the function stored at PLACE.
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FUNCTION describes the code to add. WHERE describes where to add it.
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WHERE can be explained by showing the resulting new function, as the
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result of combining FUNCTION and the previous value of PLACE, which we
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call OLDFUN here:
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`:before' (lambda (&rest r) (apply FUNCTION r) (apply OLDFUN r))
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`:after' (lambda (&rest r) (prog1 (apply OLDFUN r) (apply FUNCTION r)))
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`:around' (lambda (&rest r) (apply FUNCTION OLDFUN r))
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`:override' (lambda (&rest r) (apply FUNCTION r))
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`:before-while' (lambda (&rest r) (and (apply FUNCTION r) (apply OLDFUN r)))
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`:before-until' (lambda (&rest r) (or (apply FUNCTION r) (apply OLDFUN r)))
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`:after-while' (lambda (&rest r) (and (apply OLDFUN r) (apply FUNCTION r)))
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`:after-until' (lambda (&rest r) (or (apply OLDFUN r) (apply FUNCTION r)))
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`:filter-args' (lambda (&rest r) (apply OLDFUN (funcall FUNCTION r)))
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`:filter-return'(lambda (&rest r) (funcall FUNCTION (apply OLDFUN r)))
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If FUNCTION was already added, do nothing.
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PROPS is an alist of additional properties, among which the following have
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a special meaning:
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- `name': a string or symbol. It can be used to refer to this piece of advice.
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- `depth': a number indicating a preference w.r.t ordering.
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The default depth is 0. By convention, a depth of 100 means that
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the advice should be innermost (i.e. at the end of the list),
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whereas a depth of -100 means that the advice should be outermost.
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If PLACE is a symbol, its `default-value' will be affected.
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Use (local \\='SYMBOL) if you want to apply FUNCTION to SYMBOL buffer-locally.
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Use (var VAR) if you want to apply FUNCTION to the (lexical) VAR.
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If one of FUNCTION or OLDFUN is interactive, then the resulting function
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is also interactive. There are 3 cases:
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- FUNCTION is not interactive: the interactive spec of OLDFUN is used.
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- The interactive spec of FUNCTION is itself a function: it should take one
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argument (the interactive spec of OLDFUN, which it can pass to
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`advice-eval-interactive-spec') and return the list of arguments to use.
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- Else, use the interactive spec of FUNCTION and ignore the one of OLDFUN."
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(declare
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;;(indent 2)
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(debug (form [&or symbolp ("local" form) ("var" sexp) gv-place]
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form &optional form)))
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`(advice--add-function ,where (gv-ref ,(advice--normalize-place place))
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,function ,props))
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;;;###autoload
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(defun advice--add-function (where ref function props)
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(let* ((name (cdr (assq 'name props)))
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(a (advice--member-p (or name function) (if name t) (gv-deref ref))))
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(when a
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;; The advice is already present. Remove the old one, first.
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(setf (gv-deref ref)
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(advice--remove-function (gv-deref ref)
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(or name (advice--car a)))))
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(setf (gv-deref ref)
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(advice--make where function (gv-deref ref) props))))
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;;;###autoload
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(defmacro remove-function (place function)
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"Remove the FUNCTION piece of advice from PLACE.
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If FUNCTION was not added to PLACE, do nothing.
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Instead of FUNCTION being the actual function, it can also be the `name'
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of the piece of advice."
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(declare (debug ([&or symbolp ("local" form) ("var" sexp) gv-place]
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form)))
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(gv-letplace (getter setter) (advice--normalize-place place)
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(macroexp-let2 nil new `(advice--remove-function ,getter ,function)
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`(unless (eq ,new ,getter) ,(funcall setter new)))))
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(defun advice-function-mapc (f function-def)
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"Apply F to every advice function in FUNCTION-DEF.
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F is called with two arguments: the function that was added, and the
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properties alist that was specified when it was added."
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(while (advice--p function-def)
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(funcall f (advice--car function-def) (advice--props function-def))
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(setq function-def (advice--cdr function-def))))
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(defun advice-function-member-p (advice function-def)
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"Return non-nil if ADVICE is already in FUNCTION-DEF.
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Instead of ADVICE being the actual function, it can also be the `name'
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of the piece of advice."
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(advice--member-p advice :use-both function-def))
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;;;; Specific application of add-function to `symbol-function' for advice.
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(defun advice--subst-main (old new)
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(advice--tweak old
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(lambda (first _rest _props) (if (not first) new))))
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(defun advice--normalize (symbol def)
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(cond
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((special-form-p def)
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;; Not worth the trouble trying to handle this, I think.
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(error "Advice impossible: %S is a special form" symbol))
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((and (symbolp def) (macrop def))
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(let ((newval `(macro . ,(lambda (&rest r) (macroexpand `(,def . ,r))))))
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(put symbol 'advice--saved-rewrite (cons def (cdr newval)))
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newval))
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;; `f' might be a pure (hence read-only) cons!
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((and (eq 'macro (car-safe def))
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(not (ignore-errors (setcdr def (cdr def)) t)))
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(cons 'macro (cdr def)))
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(t def)))
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(defsubst advice--strip-macro (x)
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(if (eq 'macro (car-safe x)) (cdr x) x))
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(defun advice--symbol-function (symbol)
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;; The value conceptually stored in `symbol-function' is split into two
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;; parts:
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;; - the normal function definition.
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;; - the list of advice applied to it.
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;; `advice--symbol-function' is intended to return the second part (i.e. the
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;; list of advice, which includes a hole at the end which typically holds the
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;; first part, but this function doesn't care much which value is found
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;; there).
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;; In the "normal" state both parts are combined into a single value stored
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;; in the "function slot" of the symbol. But the way they are combined is
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;; different depending on whether the definition is a function or a macro.
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;; Also if the function definition is nil (i.e. unbound) or is an autoload,
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;; the second part is stashed away temporarily in the `advice--pending'
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;; symbol property.
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(or (get symbol 'advice--pending)
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(advice--strip-macro (symbol-function symbol))))
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(defun advice--defalias-fset (fsetfun symbol newdef)
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(unless fsetfun (setq fsetfun #'fset))
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(when (get symbol 'advice--saved-rewrite)
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(put symbol 'advice--saved-rewrite nil))
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(setq newdef (advice--normalize symbol newdef))
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(let ((oldadv (advice--symbol-function symbol)))
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(if (and newdef (not (autoloadp newdef)))
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(let* ((snewdef (advice--strip-macro newdef))
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(snewadv (advice--subst-main oldadv snewdef)))
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(put symbol 'advice--pending nil)
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(funcall fsetfun symbol
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(if (eq snewdef newdef) snewadv (cons 'macro snewadv))))
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(unless (eq oldadv (get symbol 'advice--pending))
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(put symbol 'advice--pending (advice--subst-main oldadv nil)))
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(funcall fsetfun symbol newdef))))
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;;;###autoload
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(defun advice-add (symbol where function &optional props)
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"Like `add-function' but for the function named SYMBOL.
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Contrary to `add-function', this will properly handle the cases where SYMBOL
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is defined as a macro, alias, command, ..."
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;; TODO:
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;; - record the advice location, to display in describe-function.
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;; - change all defadvice in lisp/**/*.el.
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;; - obsolete advice.el.
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(let* ((f (symbol-function symbol))
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(nf (advice--normalize symbol f)))
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(unless (eq f nf) (fset symbol nf))
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(add-function where (cond
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((eq (car-safe nf) 'macro) (cdr nf))
|
||
;; Reasons to delay installation of the advice:
|
||
;; - If the function is not yet defined, installing
|
||
;; the advice would affect `fboundp'ness.
|
||
;; - the symbol-function slot of an autoloaded
|
||
;; function is not itself a function value.
|
||
;; - `autoload' does nothing if the function is
|
||
;; not an autoload or undefined.
|
||
((or (not nf) (autoloadp nf))
|
||
(get symbol 'advice--pending))
|
||
(t (symbol-function symbol)))
|
||
function props)
|
||
(put symbol 'function-documentation `(advice--make-docstring ',symbol))
|
||
(add-function :around (get symbol 'defalias-fset-function)
|
||
#'advice--defalias-fset))
|
||
nil)
|
||
|
||
;;;###autoload
|
||
(defun advice-remove (symbol function)
|
||
"Like `remove-function' but for the function named SYMBOL.
|
||
Contrary to `remove-function', this also works when SYMBOL is a macro
|
||
or an autoload and it preserves `fboundp'.
|
||
Instead of the actual function to remove, FUNCTION can also be the `name'
|
||
of the piece of advice."
|
||
(let ((f (symbol-function symbol)))
|
||
(remove-function (cond ;This is `advice--symbol-function' but as a "place".
|
||
((get symbol 'advice--pending)
|
||
(get symbol 'advice--pending))
|
||
((eq (car-safe f) 'macro) (cdr f))
|
||
(t (symbol-function symbol)))
|
||
function)
|
||
(unless (advice--p (advice--symbol-function symbol))
|
||
(remove-function (get symbol 'defalias-fset-function)
|
||
#'advice--defalias-fset)
|
||
(let ((asr (get symbol 'advice--saved-rewrite)))
|
||
(and asr (eq (cdr-safe (symbol-function symbol))
|
||
(cdr asr))
|
||
(fset symbol (car (get symbol 'advice--saved-rewrite)))))))
|
||
nil)
|
||
|
||
;;;###autoload
|
||
(defmacro define-advice (symbol args &rest body)
|
||
"Define an advice and add it to function named SYMBOL.
|
||
See `advice-add' and `add-function' for explanation on the
|
||
arguments. Note if NAME is nil the advice is anonymous;
|
||
otherwise it is named `SYMBOL@NAME'.
|
||
|
||
\(fn SYMBOL (WHERE LAMBDA-LIST &optional NAME DEPTH) &rest BODY)"
|
||
(declare (indent 2) (doc-string 3) (debug (sexp sexp body)))
|
||
(or (listp args) (signal 'wrong-type-argument (list 'listp args)))
|
||
(or (<= 2 (length args) 4)
|
||
(signal 'wrong-number-of-arguments (list 2 4 (length args))))
|
||
(let* ((where (nth 0 args))
|
||
(lambda-list (nth 1 args))
|
||
(name (nth 2 args))
|
||
(depth (nth 3 args))
|
||
(props (and depth `((depth . ,depth))))
|
||
(advice (cond ((null name) `(lambda ,lambda-list ,@body))
|
||
((or (stringp name) (symbolp name))
|
||
(intern (format "%s@%s" symbol name)))
|
||
(t (error "Unrecognized name spec `%S'" name)))))
|
||
`(prog1 ,@(and (symbolp advice) `((defun ,advice ,lambda-list ,@body)))
|
||
(advice-add ',symbol ,where #',advice ,@(and props `(',props))))))
|
||
|
||
(defun advice-mapc (fun symbol)
|
||
"Apply FUN to every advice function in SYMBOL.
|
||
FUN is called with a two arguments: the function that was added, and the
|
||
properties alist that was specified when it was added."
|
||
(advice-function-mapc fun (advice--symbol-function symbol)))
|
||
|
||
;;;###autoload
|
||
(defun advice-member-p (advice symbol)
|
||
"Return non-nil if ADVICE has been added to SYMBOL.
|
||
Instead of ADVICE being the actual function, it can also be the `name'
|
||
of the piece of advice."
|
||
(advice-function-member-p advice (advice--symbol-function symbol)))
|
||
|
||
;; When code is advised, called-interactively-p needs to be taught to skip
|
||
;; the advising frames.
|
||
;; FIXME: This Major Ugly Hack won't handle calls to called-interactively-p
|
||
;; done from the advised function if the deepest advice is an around advice!
|
||
;; In other cases (calls from an advice or calls from the advised function when
|
||
;; the deepest advice is not an around advice), it should hopefully get
|
||
;; it right.
|
||
(add-hook 'called-interactively-p-functions
|
||
#'advice--called-interactively-skip)
|
||
(defun advice--called-interactively-skip (origi frame1 frame2)
|
||
(let* ((i origi)
|
||
(get-next-frame
|
||
(lambda ()
|
||
(setq frame1 frame2)
|
||
(setq frame2 (backtrace-frame i #'called-interactively-p))
|
||
;; (message "Advice Frame %d = %S" i frame2)
|
||
(setq i (1+ i)))))
|
||
(when (and (eq (nth 1 frame2) 'apply)
|
||
(progn
|
||
(funcall get-next-frame)
|
||
(advice--p (indirect-function (nth 1 frame2)))))
|
||
(funcall get-next-frame)
|
||
;; If we now have the symbol, this was the head advice and
|
||
;; we're done.
|
||
(while (advice--p (nth 1 frame1))
|
||
;; This was an inner advice called from some earlier advice.
|
||
;; The stack frames look different depending on the particular
|
||
;; kind of the earlier advice.
|
||
(let ((inneradvice (nth 1 frame1)))
|
||
(if (and (eq (nth 1 frame2) 'apply)
|
||
(progn
|
||
(funcall get-next-frame)
|
||
(advice--p (indirect-function
|
||
(nth 1 frame2)))))
|
||
;; The earlier advice was something like a before/after
|
||
;; advice where the "next" code is called directly by the
|
||
;; advice--p object.
|
||
(funcall get-next-frame)
|
||
;; It's apparently an around advice, where the "next" is
|
||
;; called by the body of the advice in any way it sees fit,
|
||
;; so we need to skip the frames of that body.
|
||
(while
|
||
(progn
|
||
(funcall get-next-frame)
|
||
(and frame2
|
||
(not (and (eq (nth 1 frame2) 'apply)
|
||
(eq (nth 3 frame2) inneradvice))))))
|
||
(funcall get-next-frame)
|
||
(funcall get-next-frame))))
|
||
(- i origi 1))))
|
||
|
||
|
||
(provide 'nadvice)
|
||
;;; nadvice.el ends here
|