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1 ;;; elisp-mode.el --- Emacs Lisp mode -*- lexical-binding:t -*-
2
3 ;; Copyright (C) 1985-1986, 1999-2015 Free Software Foundation, Inc.
4
5 ;; Maintainer: emacs-devel@gnu.org
6 ;; Keywords: lisp, languages
7 ;; Package: emacs
8
9 ;; This file is part of GNU Emacs.
10
11 ;; GNU Emacs is free software: you can redistribute it and/or modify
12 ;; it under the terms of the GNU General Public License as published by
13 ;; the Free Software Foundation, either version 3 of the License, or
14 ;; (at your option) any later version.
15
16 ;; GNU Emacs is distributed in the hope that it will be useful,
17 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
18 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19 ;; GNU General Public License for more details.
20
21 ;; You should have received a copy of the GNU General Public License
22 ;; along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>.
23
24 ;;; Commentary:
25
26 ;; The major mode for editing Emacs Lisp code.
27 ;; This mode is documented in the Emacs manual.
28
29 ;;; Code:
30
31 (require 'cl-generic)
32 (require 'lisp-mode)
33 (eval-when-compile (require 'cl-lib))
34
35 (define-abbrev-table 'emacs-lisp-mode-abbrev-table ()
36 "Abbrev table for Emacs Lisp mode.
37 It has `lisp-mode-abbrev-table' as its parent."
38 :parents (list lisp-mode-abbrev-table))
39
40 (defvar emacs-lisp-mode-syntax-table
41 (let ((table (make-syntax-table lisp--mode-syntax-table)))
42 (modify-syntax-entry ?\[ "(] " table)
43 (modify-syntax-entry ?\] ")[ " table)
44 table)
45 "Syntax table used in `emacs-lisp-mode'.")
46
47 (defvar emacs-lisp-mode-map
48 (let ((map (make-sparse-keymap "Emacs-Lisp"))
49 (menu-map (make-sparse-keymap "Emacs-Lisp"))
50 (lint-map (make-sparse-keymap))
51 (prof-map (make-sparse-keymap))
52 (tracing-map (make-sparse-keymap)))
53 (set-keymap-parent map lisp-mode-shared-map)
54 (define-key map "\e\t" 'completion-at-point)
55 (define-key map "\e\C-x" 'eval-defun)
56 (define-key map "\e\C-q" 'indent-pp-sexp)
57 (bindings--define-key map [menu-bar emacs-lisp]
58 (cons "Emacs-Lisp" menu-map))
59 (bindings--define-key menu-map [eldoc]
60 '(menu-item "Auto-Display Documentation Strings" eldoc-mode
61 :button (:toggle . (bound-and-true-p eldoc-mode))
62 :help "Display the documentation string for the item under cursor"))
63 (bindings--define-key menu-map [checkdoc]
64 '(menu-item "Check Documentation Strings" checkdoc
65 :help "Check documentation strings for style requirements"))
66 (bindings--define-key menu-map [re-builder]
67 '(menu-item "Construct Regexp" re-builder
68 :help "Construct a regexp interactively"))
69 (bindings--define-key menu-map [tracing] (cons "Tracing" tracing-map))
70 (bindings--define-key tracing-map [tr-a]
71 '(menu-item "Untrace All" untrace-all
72 :help "Untrace all currently traced functions"))
73 (bindings--define-key tracing-map [tr-uf]
74 '(menu-item "Untrace Function..." untrace-function
75 :help "Untrace function, and possibly activate all remaining advice"))
76 (bindings--define-key tracing-map [tr-sep] menu-bar-separator)
77 (bindings--define-key tracing-map [tr-q]
78 '(menu-item "Trace Function Quietly..." trace-function-background
79 :help "Trace the function with trace output going quietly to a buffer"))
80 (bindings--define-key tracing-map [tr-f]
81 '(menu-item "Trace Function..." trace-function
82 :help "Trace the function given as an argument"))
83 (bindings--define-key menu-map [profiling] (cons "Profiling" prof-map))
84 (bindings--define-key prof-map [prof-restall]
85 '(menu-item "Remove Instrumentation for All Functions" elp-restore-all
86 :help "Restore the original definitions of all functions being profiled"))
87 (bindings--define-key prof-map [prof-restfunc]
88 '(menu-item "Remove Instrumentation for Function..." elp-restore-function
89 :help "Restore an instrumented function to its original definition"))
90
91 (bindings--define-key prof-map [sep-rem] menu-bar-separator)
92 (bindings--define-key prof-map [prof-resall]
93 '(menu-item "Reset Counters for All Functions" elp-reset-all
94 :help "Reset the profiling information for all functions being profiled"))
95 (bindings--define-key prof-map [prof-resfunc]
96 '(menu-item "Reset Counters for Function..." elp-reset-function
97 :help "Reset the profiling information for a function"))
98 (bindings--define-key prof-map [prof-res]
99 '(menu-item "Show Profiling Results" elp-results
100 :help "Display current profiling results"))
101 (bindings--define-key prof-map [prof-pack]
102 '(menu-item "Instrument Package..." elp-instrument-package
103 :help "Instrument for profiling all function that start with a prefix"))
104 (bindings--define-key prof-map [prof-func]
105 '(menu-item "Instrument Function..." elp-instrument-function
106 :help "Instrument a function for profiling"))
107 ;; Maybe this should be in a separate submenu from the ELP stuff?
108 (bindings--define-key prof-map [sep-natprof] menu-bar-separator)
109 (bindings--define-key prof-map [prof-natprof-stop]
110 '(menu-item "Stop Native Profiler" profiler-stop
111 :help "Stop recording profiling information"
112 :enable (and (featurep 'profiler)
113 (profiler-running-p))))
114 (bindings--define-key prof-map [prof-natprof-report]
115 '(menu-item "Show Profiler Report" profiler-report
116 :help "Show the current profiler report"
117 :enable (and (featurep 'profiler)
118 (profiler-running-p))))
119 (bindings--define-key prof-map [prof-natprof-start]
120 '(menu-item "Start Native Profiler..." profiler-start
121 :help "Start recording profiling information"))
122
123 (bindings--define-key menu-map [lint] (cons "Linting" lint-map))
124 (bindings--define-key lint-map [lint-di]
125 '(menu-item "Lint Directory..." elint-directory
126 :help "Lint a directory"))
127 (bindings--define-key lint-map [lint-f]
128 '(menu-item "Lint File..." elint-file
129 :help "Lint a file"))
130 (bindings--define-key lint-map [lint-b]
131 '(menu-item "Lint Buffer" elint-current-buffer
132 :help "Lint the current buffer"))
133 (bindings--define-key lint-map [lint-d]
134 '(menu-item "Lint Defun" elint-defun
135 :help "Lint the function at point"))
136 (bindings--define-key menu-map [edebug-defun]
137 '(menu-item "Instrument Function for Debugging" edebug-defun
138 :help "Evaluate the top level form point is in, stepping through with Edebug"
139 :keys "C-u C-M-x"))
140 (bindings--define-key menu-map [separator-byte] menu-bar-separator)
141 (bindings--define-key menu-map [disas]
142 '(menu-item "Disassemble Byte Compiled Object..." disassemble
143 :help "Print disassembled code for OBJECT in a buffer"))
144 (bindings--define-key menu-map [byte-recompile]
145 '(menu-item "Byte-recompile Directory..." byte-recompile-directory
146 :help "Recompile every `.el' file in DIRECTORY that needs recompilation"))
147 (bindings--define-key menu-map [emacs-byte-compile-and-load]
148 '(menu-item "Byte-compile and Load" emacs-lisp-byte-compile-and-load
149 :help "Byte-compile the current file (if it has changed), then load compiled code"))
150 (bindings--define-key menu-map [byte-compile]
151 '(menu-item "Byte-compile This File" emacs-lisp-byte-compile
152 :help "Byte compile the file containing the current buffer"))
153 (bindings--define-key menu-map [separator-eval] menu-bar-separator)
154 (bindings--define-key menu-map [ielm]
155 '(menu-item "Interactive Expression Evaluation" ielm
156 :help "Interactively evaluate Emacs Lisp expressions"))
157 (bindings--define-key menu-map [eval-buffer]
158 '(menu-item "Evaluate Buffer" eval-buffer
159 :help "Execute the current buffer as Lisp code"))
160 (bindings--define-key menu-map [eval-region]
161 '(menu-item "Evaluate Region" eval-region
162 :help "Execute the region as Lisp code"
163 :enable mark-active))
164 (bindings--define-key menu-map [eval-sexp]
165 '(menu-item "Evaluate Last S-expression" eval-last-sexp
166 :help "Evaluate sexp before point; print value in echo area"))
167 (bindings--define-key menu-map [separator-format] menu-bar-separator)
168 (bindings--define-key menu-map [comment-region]
169 '(menu-item "Comment Out Region" comment-region
170 :help "Comment or uncomment each line in the region"
171 :enable mark-active))
172 (bindings--define-key menu-map [indent-region]
173 '(menu-item "Indent Region" indent-region
174 :help "Indent each nonblank line in the region"
175 :enable mark-active))
176 (bindings--define-key menu-map [indent-line]
177 '(menu-item "Indent Line" lisp-indent-line))
178 map)
179 "Keymap for Emacs Lisp mode.
180 All commands in `lisp-mode-shared-map' are inherited by this map.")
181
182 (defun emacs-lisp-byte-compile ()
183 "Byte compile the file containing the current buffer."
184 (interactive)
185 (if buffer-file-name
186 (byte-compile-file buffer-file-name)
187 (error "The buffer must be saved in a file first")))
188
189 (defun emacs-lisp-byte-compile-and-load ()
190 "Byte-compile the current file (if it has changed), then load compiled code."
191 (interactive)
192 (or buffer-file-name
193 (error "The buffer must be saved in a file first"))
194 (require 'bytecomp)
195 ;; Recompile if file or buffer has changed since last compilation.
196 (if (and (buffer-modified-p)
197 (y-or-n-p (format "Save buffer %s first? " (buffer-name))))
198 (save-buffer))
199 (byte-recompile-file buffer-file-name nil 0 t))
200
201 (defun emacs-lisp-macroexpand ()
202 "Macroexpand the form after point.
203 Comments in the form will be lost."
204 (interactive)
205 (let* ((start (point))
206 (exp (read (current-buffer)))
207 ;; Compute it before, since it may signal errors.
208 (new (macroexpand-1 exp)))
209 (if (equal exp new)
210 (message "Not a macro call, nothing to expand")
211 (delete-region start (point))
212 (pp new (current-buffer))
213 (if (bolp) (delete-char -1))
214 (indent-region start (point)))))
215
216 (defcustom emacs-lisp-mode-hook nil
217 "Hook run when entering Emacs Lisp mode."
218 :options '(eldoc-mode imenu-add-menubar-index checkdoc-minor-mode)
219 :type 'hook
220 :group 'lisp)
221
222 ;;;###autoload
223 (define-derived-mode emacs-lisp-mode prog-mode "Emacs-Lisp"
224 "Major mode for editing Lisp code to run in Emacs.
225 Commands:
226 Delete converts tabs to spaces as it moves back.
227 Blank lines separate paragraphs. Semicolons start comments.
228
229 \\{emacs-lisp-mode-map}"
230 :group 'lisp
231 (defvar xref-find-function)
232 (defvar xref-identifier-completion-table-function)
233 (defvar project-search-path-function)
234 (lisp-mode-variables nil nil 'elisp)
235 (add-hook 'after-load-functions #'elisp--font-lock-flush-elisp-buffers)
236 (setq-local electric-pair-text-pairs
237 (append '((?\` . ?\') (?‘ . ?’)) electric-pair-text-pairs))
238 (setq-local electric-quote-string t)
239 (setq imenu-case-fold-search nil)
240 (add-function :before-until (local 'eldoc-documentation-function)
241 #'elisp-eldoc-documentation-function)
242 (setq-local xref-find-function #'elisp-xref-find)
243 (setq-local xref-identifier-completion-table-function
244 #'elisp--xref-identifier-completion-table)
245 (setq-local project-search-path-function #'elisp-search-path)
246 (add-hook 'completion-at-point-functions
247 #'elisp-completion-at-point nil 'local))
248
249 ;; Font-locking support.
250
251 (defun elisp--font-lock-flush-elisp-buffers (&optional file)
252 ;; FIXME: Aren't we only ever called from after-load-functions?
253 ;; Don't flush during load unless called from after-load-functions.
254 ;; In that case, FILE is non-nil. It's somehow strange that
255 ;; load-in-progress is t when an after-load-function is called since
256 ;; that should run *after* the load...
257 (when (or (not load-in-progress) file)
258 ;; FIXME: If the loaded file did not define any macros, there shouldn't
259 ;; be any need to font-lock-flush all the Elisp buffers.
260 (dolist (buf (buffer-list))
261 (with-current-buffer buf
262 (when (derived-mode-p 'emacs-lisp-mode)
263 ;; So as to take into account new macros that may have been defined
264 ;; by the just-loaded file.
265 (font-lock-flush))))))
266
267 ;;; Completion at point for Elisp
268
269 (defun elisp--local-variables-1 (vars sexp)
270 "Return the vars locally bound around the witness, or nil if not found."
271 (let (res)
272 (while
273 (unless
274 (setq res
275 (pcase sexp
276 (`(,(or `let `let*) ,bindings)
277 (let ((vars vars))
278 (when (eq 'let* (car sexp))
279 (dolist (binding (cdr (reverse bindings)))
280 (push (or (car-safe binding) binding) vars)))
281 (elisp--local-variables-1
282 vars (car (cdr-safe (car (last bindings)))))))
283 (`(,(or `let `let*) ,bindings . ,body)
284 (let ((vars vars))
285 (dolist (binding bindings)
286 (push (or (car-safe binding) binding) vars))
287 (elisp--local-variables-1 vars (car (last body)))))
288 (`(lambda ,_args)
289 ;; FIXME: Look for the witness inside `args'.
290 (setq sexp nil))
291 (`(lambda ,args . ,body)
292 (elisp--local-variables-1
293 (append (remq '&optional (remq '&rest args)) vars)
294 (car (last body))))
295 (`(condition-case ,_ ,e) (elisp--local-variables-1 vars e))
296 (`(condition-case ,v ,_ . ,catches)
297 (elisp--local-variables-1
298 (cons v vars) (cdr (car (last catches)))))
299 (`(quote . ,_)
300 ;; FIXME: Look for the witness inside sexp.
301 (setq sexp nil))
302 ;; FIXME: Handle `cond'.
303 (`(,_ . ,_)
304 (elisp--local-variables-1 vars (car (last sexp))))
305 (`elisp--witness--lisp (or vars '(nil)))
306 (_ nil)))
307 ;; We didn't find the witness in the last element so we try to
308 ;; backtrack to the last-but-one.
309 (setq sexp (ignore-errors (butlast sexp)))))
310 res))
311
312 (defun elisp--local-variables ()
313 "Return a list of locally let-bound variables at point."
314 (save-excursion
315 (skip-syntax-backward "w_")
316 (let* ((ppss (syntax-ppss))
317 (txt (buffer-substring-no-properties (or (car (nth 9 ppss)) (point))
318 (or (nth 8 ppss) (point))))
319 (closer ()))
320 (dolist (p (nth 9 ppss))
321 (push (cdr (syntax-after p)) closer))
322 (setq closer (apply #'string closer))
323 (let* ((sexp (condition-case nil
324 (car (read-from-string
325 (concat txt "elisp--witness--lisp" closer)))
326 ((invalid-read-syntax end-of-file) nil)))
327 (macroexpand-advice (lambda (expander form &rest args)
328 (condition-case nil
329 (apply expander form args)
330 (error form))))
331 (sexp
332 (unwind-protect
333 (progn
334 (advice-add 'macroexpand :around macroexpand-advice)
335 (macroexpand-all sexp))
336 (advice-remove 'macroexpand macroexpand-advice)))
337 (vars (elisp--local-variables-1 nil sexp)))
338 (delq nil
339 (mapcar (lambda (var)
340 (and (symbolp var)
341 (not (string-match (symbol-name var) "\\`[&_]"))
342 ;; Eliminate uninterned vars.
343 (intern-soft var)
344 var))
345 vars))))))
346
347 (defvar elisp--local-variables-completion-table
348 ;; Use `defvar' rather than `defconst' since defconst would purecopy this
349 ;; value, which would doubly fail: it would fail because purecopy can't
350 ;; handle the recursive bytecode object, and it would fail because it would
351 ;; move `lastpos' and `lastvars' to pure space where they'd be immutable!
352 (let ((lastpos nil) (lastvars nil))
353 (letrec ((hookfun (lambda ()
354 (setq lastpos nil)
355 (remove-hook 'post-command-hook hookfun))))
356 (completion-table-dynamic
357 (lambda (_string)
358 (save-excursion
359 (skip-syntax-backward "_w")
360 (let ((newpos (cons (point) (current-buffer))))
361 (unless (equal lastpos newpos)
362 (add-hook 'post-command-hook hookfun)
363 (setq lastpos newpos)
364 (setq lastvars
365 (mapcar #'symbol-name (elisp--local-variables))))))
366 lastvars)))))
367
368 (defun elisp--expect-function-p (pos)
369 "Return non-nil if the symbol at point is expected to be a function."
370 (or
371 (and (eq (char-before pos) ?')
372 (eq (char-before (1- pos)) ?#))
373 (save-excursion
374 (let ((parent (nth 1 (syntax-ppss pos))))
375 (when parent
376 (goto-char parent)
377 (and
378 (looking-at (concat "(\\(cl-\\)?"
379 (regexp-opt '("declare-function"
380 "function" "defadvice"
381 "callf" "callf2"
382 "defsetf"))
383 "[ \t\r\n]+"))
384 (eq (match-end 0) pos)))))))
385
386 (defun elisp--form-quoted-p (pos)
387 "Return non-nil if the form at POS is not evaluated.
388 It can be quoted, or be inside a quoted form."
389 ;; FIXME: Do some macro expansion maybe.
390 (save-excursion
391 (let ((state (syntax-ppss pos)))
392 (or (nth 8 state) ; Code inside strings usually isn't evaluated.
393 ;; FIXME: The 9th element is undocumented.
394 (let ((nesting (cons (point) (reverse (nth 9 state))))
395 res)
396 (while (and nesting (not res))
397 (goto-char (pop nesting))
398 (cond
399 ((or (eq (char-after) ?\[)
400 (progn
401 (skip-chars-backward " ")
402 (memq (char-before) '(?' ?` ?‘))))
403 (setq res t))
404 ((eq (char-before) ?,)
405 (setq nesting nil))))
406 res)))))
407
408 ;; FIXME: Support for Company brings in features which straddle eldoc.
409 ;; We should consolidate this, so that major modes can provide all that
410 ;; data all at once:
411 ;; - a function to extract "the reference at point" (may be more complex
412 ;; than a mere string, to distinguish various namespaces).
413 ;; - a function to jump to such a reference.
414 ;; - a function to show the signature/interface of such a reference.
415 ;; - a function to build a help-buffer about that reference.
416 ;; FIXME: Those functions should also be used by the normal completion code in
417 ;; the *Completions* buffer.
418
419 (defun elisp--company-doc-buffer (str)
420 (let ((symbol (intern-soft str)))
421 ;; FIXME: we really don't want to "display-buffer and then undo it".
422 (save-window-excursion
423 ;; Make sure we don't display it in another frame, otherwise
424 ;; save-window-excursion won't be able to undo it.
425 (let ((display-buffer-overriding-action
426 '(nil . ((inhibit-switch-frame . t)))))
427 (ignore-errors
428 (cond
429 ((fboundp symbol) (describe-function symbol))
430 ((boundp symbol) (describe-variable symbol))
431 ((featurep symbol) (describe-package symbol))
432 ((facep symbol) (describe-face symbol))
433 (t (signal 'user-error nil)))
434 (help-buffer))))))
435
436 (defun elisp--company-doc-string (str)
437 (let* ((symbol (intern-soft str))
438 (doc (if (fboundp symbol)
439 (documentation symbol t)
440 (documentation-property symbol 'variable-documentation t))))
441 (and (stringp doc)
442 (string-match ".*$" doc)
443 (match-string 0 doc))))
444
445 ;; can't (require 'find-func) in a preloaded file
446 (declare-function find-library-name "find-func" (library))
447 (declare-function find-function-library "find-func" (function &optional l-o v))
448
449 (defun elisp--company-location (str)
450 (let ((sym (intern-soft str)))
451 (cond
452 ((fboundp sym) (find-definition-noselect sym nil))
453 ((boundp sym) (find-definition-noselect sym 'defvar))
454 ((featurep sym)
455 (require 'find-func)
456 (cons (find-file-noselect (find-library-name
457 (symbol-name sym)))
458 0))
459 ((facep sym) (find-definition-noselect sym 'defface)))))
460
461 (defun elisp-completion-at-point ()
462 "Function used for `completion-at-point-functions' in `emacs-lisp-mode'."
463 (with-syntax-table emacs-lisp-mode-syntax-table
464 (let* ((pos (point))
465 (beg (condition-case nil
466 (save-excursion
467 (backward-sexp 1)
468 (skip-chars-forward "`',‘#")
469 (point))
470 (scan-error pos)))
471 (end
472 (unless (or (eq beg (point-max))
473 (member (char-syntax (char-after beg))
474 '(?\s ?\" ?\( ?\))))
475 (condition-case nil
476 (save-excursion
477 (goto-char beg)
478 (forward-sexp 1)
479 (skip-chars-backward "'’")
480 (when (>= (point) pos)
481 (point)))
482 (scan-error pos))))
483 ;; t if in function position.
484 (funpos (eq (char-before beg) ?\())
485 (quoted (elisp--form-quoted-p beg)))
486 (when (and end (or (not (nth 8 (syntax-ppss)))
487 (memq (char-before beg) '(?` ?‘))))
488 (let ((table-etc
489 (if (or (not funpos) quoted)
490 ;; FIXME: We could look at the first element of the list and
491 ;; use it to provide a more specific completion table in some
492 ;; cases. E.g. filter out keywords that are not understood by
493 ;; the macro/function being called.
494 (cond
495 ((elisp--expect-function-p beg)
496 (list nil obarray
497 :predicate #'fboundp
498 :company-doc-buffer #'elisp--company-doc-buffer
499 :company-docsig #'elisp--company-doc-string
500 :company-location #'elisp--company-location))
501 (quoted
502 (list nil obarray
503 ;; Don't include all symbols (bug#16646).
504 :predicate (lambda (sym)
505 (or (boundp sym)
506 (fboundp sym)
507 (featurep sym)
508 (symbol-plist sym)))
509 :annotation-function
510 (lambda (str) (if (fboundp (intern-soft str)) " <f>"))
511 :company-doc-buffer #'elisp--company-doc-buffer
512 :company-docsig #'elisp--company-doc-string
513 :company-location #'elisp--company-location))
514 (t
515 (list nil (completion-table-merge
516 elisp--local-variables-completion-table
517 (apply-partially #'completion-table-with-predicate
518 obarray
519 #'boundp
520 'strict))
521 :company-doc-buffer #'elisp--company-doc-buffer
522 :company-docsig #'elisp--company-doc-string
523 :company-location #'elisp--company-location)))
524 ;; Looks like a funcall position. Let's double check.
525 (save-excursion
526 (goto-char (1- beg))
527 (let ((parent
528 (condition-case nil
529 (progn (up-list -1) (forward-char 1)
530 (let ((c (char-after)))
531 (if (eq c ?\() ?\(
532 (if (memq (char-syntax c) '(?w ?_))
533 (read (current-buffer))))))
534 (error nil))))
535 (pcase parent
536 ;; FIXME: Rather than hardcode special cases here,
537 ;; we should use something like a symbol-property.
538 (`declare
539 (list t (mapcar (lambda (x) (symbol-name (car x)))
540 (delete-dups
541 ;; FIXME: We should include some
542 ;; docstring with each entry.
543 (append
544 macro-declarations-alist
545 defun-declarations-alist)))))
546 ((and (or `condition-case `condition-case-unless-debug)
547 (guard (save-excursion
548 (ignore-errors
549 (forward-sexp 2)
550 (< (point) beg)))))
551 (list t obarray
552 :predicate (lambda (sym) (get sym 'error-conditions))))
553 ((and (or ?\( `let `let*)
554 (guard (save-excursion
555 (goto-char (1- beg))
556 (when (eq parent ?\()
557 (up-list -1))
558 (forward-symbol -1)
559 (looking-at "\\_<let\\*?\\_>"))))
560 (list t obarray
561 :predicate #'boundp
562 :company-doc-buffer #'elisp--company-doc-buffer
563 :company-docsig #'elisp--company-doc-string
564 :company-location #'elisp--company-location))
565 (_ (list nil obarray
566 :predicate #'fboundp
567 :company-doc-buffer #'elisp--company-doc-buffer
568 :company-docsig #'elisp--company-doc-string
569 :company-location #'elisp--company-location
570 ))))))))
571 (nconc (list beg end)
572 (if (null (car table-etc))
573 (cdr table-etc)
574 (cons
575 (if (memq (char-syntax (or (char-after end) ?\s))
576 '(?\s ?>))
577 (cadr table-etc)
578 (apply-partially 'completion-table-with-terminator
579 " " (cadr table-etc)))
580 (cddr table-etc)))))))))
581
582 (define-obsolete-function-alias
583 'lisp-completion-at-point 'elisp-completion-at-point "25.1")
584
585 ;;; Xref backend
586
587 (declare-function xref-make-bogus-location "xref" (message))
588 (declare-function xref-make "xref" (summary location))
589 (declare-function xref-collect-references "xref" (symbol dir))
590
591 (defun elisp-xref-find (action id)
592 (require 'find-func)
593 ;; FIXME: use information in source near point to filter results:
594 ;; (dvc-log-edit ...) - exclude 'feature
595 ;; (require 'dvc-log-edit) - only 'feature
596 ;; Semantic may provide additional information
597 (pcase action
598 (`definitions
599 (let ((sym (intern-soft id)))
600 (when sym
601 (elisp--xref-find-definitions sym))))
602 (`references
603 (elisp--xref-find-references id))
604 (`apropos
605 (elisp--xref-find-apropos id))))
606
607 ;; WORKAROUND: This is nominally a constant, but the text properties
608 ;; are not preserved thru dump if use defconst. See bug#21237.
609 (defvar elisp--xref-format
610 (let ((str "(%s %s)"))
611 (put-text-property 1 3 'face 'font-lock-keyword-face str)
612 (put-text-property 4 6 'face 'font-lock-function-name-face str)
613 str))
614
615 ;; WORKAROUND: This is nominally a constant, but the text properties
616 ;; are not preserved thru dump if use defconst. See bug#21237.
617 (defvar elisp--xref-format-extra
618 (let ((str "(%s %s %s)"))
619 (put-text-property 1 3 'face 'font-lock-keyword-face str)
620 (put-text-property 4 6 'face 'font-lock-function-name-face str)
621 str))
622
623 (defvar find-feature-regexp)
624
625 (defun elisp--xref-make-xref (type symbol file &optional summary)
626 "Return an xref for TYPE SYMBOL in FILE.
627 TYPE must be a type in 'find-function-regexp-alist' (use nil for
628 'defun). If SUMMARY is non-nil, use it for the summary;
629 otherwise build the summary from TYPE and SYMBOL."
630 (xref-make (or summary
631 (format elisp--xref-format (or type 'defun) symbol))
632 (xref-make-elisp-location symbol type file)))
633
634 (defun elisp--xref-find-definitions (symbol)
635 ;; The file name is not known when `symbol' is defined via interactive eval.
636 (let (xrefs)
637 ;; alphabetical by result type symbol
638
639 ;; FIXME: advised function; list of advice functions
640
641 ;; FIXME: aliased variable
642
643 (when (and (symbolp symbol)
644 (symbol-function symbol)
645 (symbolp (symbol-function symbol)))
646 ;; aliased function
647 (let* ((alias-symbol symbol)
648 (alias-file (symbol-file alias-symbol))
649 (real-symbol (symbol-function symbol))
650 (real-file (find-lisp-object-file-name real-symbol 'defun)))
651
652 (when real-file
653 (push (elisp--xref-make-xref nil real-symbol real-file) xrefs))
654
655 (when alias-file
656 (push (elisp--xref-make-xref 'defalias alias-symbol alias-file) xrefs))))
657
658 (when (facep symbol)
659 (let ((file (find-lisp-object-file-name symbol 'defface)))
660 (when file
661 (push (elisp--xref-make-xref 'defface symbol file) xrefs))))
662
663 (when (fboundp symbol)
664 (let ((file (find-lisp-object-file-name symbol (symbol-function symbol)))
665 generic doc)
666 (when file
667 (cond
668 ((eq file 'C-source)
669 ;; First call to find-lisp-object-file-name for an object
670 ;; defined in C; the doc strings from the C source have
671 ;; not been loaded yet. Second call will return "src/*.c"
672 ;; in file; handled by 't' case below.
673 (push (elisp--xref-make-xref nil symbol (help-C-file-name (symbol-function symbol) 'subr)) xrefs))
674
675 ((and (setq doc (documentation symbol t))
676 ;; This doc string is defined in cl-macs.el cl-defstruct
677 (string-match "Constructor for objects of type `\\(.*\\)'" doc))
678 ;; `symbol' is a name for the default constructor created by
679 ;; cl-defstruct, so return the location of the cl-defstruct.
680 (let* ((type-name (match-string 1 doc))
681 (type-symbol (intern type-name))
682 (file (find-lisp-object-file-name type-symbol 'define-type))
683 (summary (format elisp--xref-format-extra
684 'cl-defstruct
685 (concat "(" type-name)
686 (concat "(:constructor " (symbol-name symbol) "))"))))
687 (push (elisp--xref-make-xref 'define-type type-symbol file summary) xrefs)
688 ))
689
690 ((setq generic (cl--generic symbol))
691 ;; A generic function. If there is a default method, it
692 ;; will appear in the method table, with no
693 ;; specializers.
694 ;;
695 ;; If the default method is declared by the cl-defgeneric
696 ;; declaration, it will have the same location as the
697 ;; cl-defgeneric, so we want to exclude it from the
698 ;; result. In this case, it will have a null doc
699 ;; string. User declarations of default methods may also
700 ;; have null doc strings, but we hope that is
701 ;; rare. Perhaps this heuristic will discourage that.
702 (dolist (method (cl--generic-method-table generic))
703 (let* ((info (cl--generic-method-info method));; qual-string combined-args doconly
704 (specializers (cl--generic-method-specializers method))
705 (met-name (cons symbol specializers))
706 (file (find-lisp-object-file-name met-name 'cl-defmethod)))
707 (when (and file
708 (or specializers ;; default method has null specializers
709 (nth 2 info))) ;; assuming only co-located default has null doc string
710 (if specializers
711 (let ((summary (format elisp--xref-format-extra 'cl-defmethod symbol (nth 1 info))))
712 (push (elisp--xref-make-xref 'cl-defmethod met-name file summary) xrefs))
713
714 (let ((summary (format elisp--xref-format-extra 'cl-defmethod symbol "()")))
715 (push (elisp--xref-make-xref 'cl-defmethod met-name file summary) xrefs))))
716 ))
717
718 (if (and (setq doc (documentation symbol t))
719 ;; This doc string is created somewhere in
720 ;; cl--generic-make-function for an implicit
721 ;; defgeneric.
722 (string-match "\n\n(fn ARG &rest ARGS)" doc))
723 ;; This symbol is an implicitly defined defgeneric, so
724 ;; don't return it.
725 nil
726 (push (elisp--xref-make-xref 'cl-defgeneric symbol file) xrefs))
727 )
728
729 (t
730 (push (elisp--xref-make-xref nil symbol file) xrefs))
731 ))))
732
733 (when (boundp symbol)
734 ;; A variable
735 (let ((file (find-lisp-object-file-name symbol 'defvar)))
736 (when file
737 (cond
738 ((eq file 'C-source)
739 ;; The doc strings from the C source have not been loaded
740 ;; yet; help-C-file-name does that. Second call will
741 ;; return "src/*.c" in file; handled below.
742 (push (elisp--xref-make-xref 'defvar symbol (help-C-file-name symbol 'var)) xrefs))
743
744 ((string= "src/" (substring file 0 4))
745 ;; The variable is defined in a C source file; don't check
746 ;; for define-minor-mode.
747 (push (elisp--xref-make-xref 'defvar symbol file) xrefs))
748
749 ((memq symbol minor-mode-list)
750 ;; The symbol is a minor mode. These should be defined by
751 ;; "define-minor-mode", which means the variable and the
752 ;; function are declared in the same place. So we return only
753 ;; the function, arbitrarily.
754 ;;
755 ;; There is an exception, when the variable is defined in C
756 ;; code, as for abbrev-mode.
757 ;;
758 ;; IMPROVEME: If the user is searching for the identifier at
759 ;; point, we can determine whether it is a variable or
760 ;; function by looking at the source code near point.
761 ;;
762 ;; IMPROVEME: The user may actually be asking "do any
763 ;; variables by this name exist"; we need a way to specify
764 ;; that.
765 nil)
766
767 (t
768 (push (elisp--xref-make-xref 'defvar symbol file) xrefs))
769
770 ))))
771
772 (when (featurep symbol)
773 (let ((file (ignore-errors
774 (find-library-name (symbol-name symbol)))))
775 (when file
776 (push (elisp--xref-make-xref 'feature symbol file) xrefs))))
777
778 xrefs))
779
780 (declare-function project-search-path "project")
781 (declare-function project-current "project")
782
783 (defun elisp--xref-find-references (symbol)
784 (cl-mapcan
785 (lambda (dir)
786 (xref-collect-references symbol dir))
787 (project-search-path (project-current))))
788
789 (defun elisp--xref-find-apropos (regexp)
790 (apply #'nconc
791 (let (lst)
792 (dolist (sym (apropos-internal regexp))
793 (push (elisp--xref-find-definitions sym) lst))
794 (nreverse lst))))
795
796 (defvar elisp--xref-identifier-completion-table
797 (apply-partially #'completion-table-with-predicate
798 obarray
799 (lambda (sym)
800 (or (boundp sym)
801 (fboundp sym)
802 (featurep sym)
803 (facep sym)))
804 'strict))
805
806 (defun elisp--xref-identifier-completion-table ()
807 elisp--xref-identifier-completion-table)
808
809 (cl-defstruct (xref-elisp-location
810 (:constructor xref-make-elisp-location (symbol type file)))
811 "Location of an Emacs Lisp symbol definition."
812 symbol type file)
813
814 (cl-defmethod xref-location-marker ((l xref-elisp-location))
815 (pcase-let (((cl-struct xref-elisp-location symbol type file) l))
816 (let ((buffer-point (find-function-search-for-symbol symbol type file)))
817 (with-current-buffer (car buffer-point)
818 (goto-char (or (cdr buffer-point) (point-min)))
819 (point-marker)))))
820
821 (cl-defmethod xref-location-group ((l xref-elisp-location))
822 (xref-elisp-location-file l))
823
824 (defun elisp-search-path ()
825 (defvar package-user-dir)
826 (cons package-user-dir load-path))
827
828 ;;; Elisp Interaction mode
829
830 (defvar lisp-interaction-mode-map
831 (let ((map (make-sparse-keymap))
832 (menu-map (make-sparse-keymap "Lisp-Interaction")))
833 (set-keymap-parent map lisp-mode-shared-map)
834 (define-key map "\e\C-x" 'eval-defun)
835 (define-key map "\e\C-q" 'indent-pp-sexp)
836 (define-key map "\e\t" 'completion-at-point)
837 (define-key map "\n" 'eval-print-last-sexp)
838 (bindings--define-key map [menu-bar lisp-interaction]
839 (cons "Lisp-Interaction" menu-map))
840 (bindings--define-key menu-map [eval-defun]
841 '(menu-item "Evaluate Defun" eval-defun
842 :help "Evaluate the top-level form containing point, or after point"))
843 (bindings--define-key menu-map [eval-print-last-sexp]
844 '(menu-item "Evaluate and Print" eval-print-last-sexp
845 :help "Evaluate sexp before point; print value into current buffer"))
846 (bindings--define-key menu-map [edebug-defun-lisp-interaction]
847 '(menu-item "Instrument Function for Debugging" edebug-defun
848 :help "Evaluate the top level form point is in, stepping through with Edebug"
849 :keys "C-u C-M-x"))
850 (bindings--define-key menu-map [indent-pp-sexp]
851 '(menu-item "Indent or Pretty-Print" indent-pp-sexp
852 :help "Indent each line of the list starting just after point, or prettyprint it"))
853 (bindings--define-key menu-map [complete-symbol]
854 '(menu-item "Complete Lisp Symbol" completion-at-point
855 :help "Perform completion on Lisp symbol preceding point"))
856 map)
857 "Keymap for Lisp Interaction mode.
858 All commands in `lisp-mode-shared-map' are inherited by this map.")
859
860 (define-derived-mode lisp-interaction-mode emacs-lisp-mode "Lisp Interaction"
861 "Major mode for typing and evaluating Lisp forms.
862 Like Lisp mode except that \\[eval-print-last-sexp] evals the Lisp expression
863 before point, and prints its value into the buffer, advancing point.
864 Note that printing is controlled by `eval-expression-print-length'
865 and `eval-expression-print-level'.
866
867 Commands:
868 Delete converts tabs to spaces as it moves back.
869 Paragraphs are separated only by blank lines.
870 Semicolons start comments.
871
872 \\{lisp-interaction-mode-map}"
873 :abbrev-table nil)
874
875 ;;; Emacs Lisp Byte-Code mode
876
877 (eval-and-compile
878 (defconst emacs-list-byte-code-comment-re
879 (concat "\\(#\\)@\\([0-9]+\\) "
880 ;; Make sure it's a docstring and not a lazy-loaded byte-code.
881 "\\(?:[^(]\\|([^\"]\\)")))
882
883 (defun elisp--byte-code-comment (end &optional _point)
884 "Try to syntactically mark the #@NNN ....^_ docstrings in byte-code files."
885 (let ((ppss (syntax-ppss)))
886 (when (and (nth 4 ppss)
887 (eq (char-after (nth 8 ppss)) ?#))
888 (let* ((n (save-excursion
889 (goto-char (nth 8 ppss))
890 (when (looking-at emacs-list-byte-code-comment-re)
891 (string-to-number (match-string 2)))))
892 ;; `maxdiff' tries to make sure the loop below terminates.
893 (maxdiff n))
894 (when n
895 (let* ((bchar (match-end 2))
896 (b (position-bytes bchar)))
897 (goto-char (+ b n))
898 (while (let ((diff (- (position-bytes (point)) b n)))
899 (unless (zerop diff)
900 (when (> diff maxdiff) (setq diff maxdiff))
901 (forward-char (- diff))
902 (setq maxdiff (if (> diff 0) diff
903 (max (1- maxdiff) 1)))
904 t))))
905 (if (<= (point) end)
906 (put-text-property (1- (point)) (point)
907 'syntax-table
908 (string-to-syntax "> b"))
909 (goto-char end)))))))
910
911 (defun elisp-byte-code-syntax-propertize (start end)
912 (elisp--byte-code-comment end (point))
913 (funcall
914 (syntax-propertize-rules
915 (emacs-list-byte-code-comment-re
916 (1 (prog1 "< b" (elisp--byte-code-comment end (point))))))
917 start end))
918
919 ;;;###autoload
920 (add-to-list 'auto-mode-alist '("\\.elc\\'" . elisp-byte-code-mode))
921 ;;;###autoload
922 (define-derived-mode elisp-byte-code-mode emacs-lisp-mode
923 "Elisp-Byte-Code"
924 "Major mode for *.elc files."
925 ;; TODO: Add way to disassemble byte-code under point.
926 (setq-local open-paren-in-column-0-is-defun-start nil)
927 (setq-local syntax-propertize-function
928 #'elisp-byte-code-syntax-propertize))
929
930
931 ;;; Globally accessible functionality
932
933 (defun eval-print-last-sexp (&optional eval-last-sexp-arg-internal)
934 "Evaluate sexp before point; print value into current buffer.
935
936 Normally, this function truncates long output according to the value
937 of the variables `eval-expression-print-length' and
938 `eval-expression-print-level'. With a prefix argument of zero,
939 however, there is no such truncation. Such a prefix argument
940 also causes integers to be printed in several additional formats
941 \(octal, hexadecimal, and character).
942
943 If `eval-expression-debug-on-error' is non-nil, which is the default,
944 this command arranges for all errors to enter the debugger."
945 (interactive "P")
946 (let ((standard-output (current-buffer)))
947 (terpri)
948 (eval-last-sexp (or eval-last-sexp-arg-internal t))
949 (terpri)))
950
951
952 (defun last-sexp-setup-props (beg end value alt1 alt2)
953 "Set up text properties for the output of `elisp--eval-last-sexp'.
954 BEG and END are the start and end of the output in current-buffer.
955 VALUE is the Lisp value printed, ALT1 and ALT2 are strings for the
956 alternative printed representations that can be displayed."
957 (let ((map (make-sparse-keymap)))
958 (define-key map "\C-m" 'elisp-last-sexp-toggle-display)
959 (define-key map [down-mouse-2] 'mouse-set-point)
960 (define-key map [mouse-2] 'elisp-last-sexp-toggle-display)
961 (add-text-properties
962 beg end
963 `(printed-value (,value ,alt1 ,alt2)
964 mouse-face highlight
965 keymap ,map
966 help-echo "RET, mouse-2: toggle abbreviated display"
967 rear-nonsticky (mouse-face keymap help-echo
968 printed-value)))))
969
970
971 (defun elisp-last-sexp-toggle-display (&optional _arg)
972 "Toggle between abbreviated and unabbreviated printed representations."
973 (interactive "P")
974 (save-restriction
975 (widen)
976 (let ((value (get-text-property (point) 'printed-value)))
977 (when value
978 (let ((beg (or (previous-single-property-change (min (point-max) (1+ (point)))
979 'printed-value)
980 (point)))
981 (end (or (next-single-char-property-change (point) 'printed-value) (point)))
982 (standard-output (current-buffer))
983 (point (point)))
984 (delete-region beg end)
985 (insert (nth 1 value))
986 (or (= beg point)
987 (setq point (1- (point))))
988 (last-sexp-setup-props beg (point)
989 (nth 0 value)
990 (nth 2 value)
991 (nth 1 value))
992 (goto-char (min (point-max) point)))))))
993
994 (defun prin1-char (char) ;FIXME: Move it, e.g. to simple.el.
995 "Return a string representing CHAR as a character rather than as an integer.
996 If CHAR is not a character, return nil."
997 (and (integerp char)
998 (eventp char)
999 (let ((c (event-basic-type char))
1000 (mods (event-modifiers char))
1001 string)
1002 ;; Prevent ?A from turning into ?\S-a.
1003 (if (and (memq 'shift mods)
1004 (zerop (logand char ?\S-\^@))
1005 (not (let ((case-fold-search nil))
1006 (char-equal c (upcase c)))))
1007 (setq c (upcase c) mods nil))
1008 ;; What string are we considering using?
1009 (condition-case nil
1010 (setq string
1011 (concat
1012 "?"
1013 (mapconcat
1014 (lambda (modif)
1015 (cond ((eq modif 'super) "\\s-")
1016 (t (string ?\\ (upcase (aref (symbol-name modif) 0)) ?-))))
1017 mods "")
1018 (cond
1019 ((memq c '(?\; ?\( ?\) ?\{ ?\} ?\[ ?\] ?\" ?\' ?\\)) (string ?\\ c))
1020 ((eq c 127) "\\C-?")
1021 (t
1022 (string c)))))
1023 (error nil))
1024 ;; Verify the string reads a CHAR, not to some other character.
1025 ;; If it doesn't, return nil instead.
1026 (and string
1027 (= (car (read-from-string string)) char)
1028 string))))
1029
1030 (defun elisp--preceding-sexp ()
1031 "Return sexp before the point."
1032 (let ((opoint (point))
1033 (left-quote ?‘)
1034 expr)
1035 (save-excursion
1036 (with-syntax-table emacs-lisp-mode-syntax-table
1037 ;; If this sexp appears to be enclosed in `...' or ‘...’
1038 ;; then ignore the surrounding quotes.
1039 (cond ((eq (preceding-char) ?’)
1040 (progn (forward-char -1) (setq opoint (point))))
1041 ((or (eq (following-char) ?\')
1042 (eq (preceding-char) ?\'))
1043 (setq left-quote ?\`)))
1044 (forward-sexp -1)
1045 ;; If we were after `?\e' (or similar case),
1046 ;; use the whole thing, not just the `e'.
1047 (when (eq (preceding-char) ?\\)
1048 (forward-char -1)
1049 (when (eq (preceding-char) ??)
1050 (forward-char -1)))
1051
1052 ;; Skip over hash table read syntax.
1053 (and (> (point) (1+ (point-min)))
1054 (looking-back "#s" (- (point) 2))
1055 (forward-char -2))
1056
1057 ;; Skip over `#N='s.
1058 (when (eq (preceding-char) ?=)
1059 (let (labeled-p)
1060 (save-excursion
1061 (skip-chars-backward "0-9#=")
1062 (setq labeled-p (looking-at "\\(#[0-9]+=\\)+")))
1063 (when labeled-p
1064 (forward-sexp -1))))
1065
1066 (save-restriction
1067 (if (eq (following-char) left-quote)
1068 ;; vladimir@cs.ualberta.ca 30-Jul-1997: Skip ` in `variable' so
1069 ;; that the value is returned, not the name.
1070 (forward-char))
1071 (when (looking-at ",@?") (goto-char (match-end 0)))
1072 (narrow-to-region (point-min) opoint)
1073 (setq expr (read (current-buffer)))
1074 ;; If it's an (interactive ...) form, it's more useful to show how an
1075 ;; interactive call would use it.
1076 ;; FIXME: Is it really the right place for this?
1077 (when (eq (car-safe expr) 'interactive)
1078 (setq expr
1079 `(call-interactively
1080 (lambda (&rest args) ,expr args))))
1081 expr)))))
1082 (define-obsolete-function-alias 'preceding-sexp 'elisp--preceding-sexp "25.1")
1083
1084 (defun elisp--eval-last-sexp (eval-last-sexp-arg-internal)
1085 "Evaluate sexp before point; print value in the echo area.
1086 If EVAL-LAST-SEXP-ARG-INTERNAL is non-nil, print output into
1087 current buffer. If EVAL-LAST-SEXP-ARG-INTERNAL is `0', print
1088 output with no limit on the length and level of lists, and
1089 include additional formats for integers \(octal, hexadecimal, and
1090 character)."
1091 (let ((standard-output (if eval-last-sexp-arg-internal (current-buffer) t)))
1092 ;; Setup the lexical environment if lexical-binding is enabled.
1093 (elisp--eval-last-sexp-print-value
1094 (eval (eval-sexp-add-defvars (elisp--preceding-sexp)) lexical-binding)
1095 eval-last-sexp-arg-internal)))
1096
1097
1098 (defun elisp--eval-last-sexp-print-value (value &optional eval-last-sexp-arg-internal)
1099 (let ((unabbreviated (let ((print-length nil) (print-level nil))
1100 (prin1-to-string value)))
1101 (print-length (and (not (zerop (prefix-numeric-value
1102 eval-last-sexp-arg-internal)))
1103 eval-expression-print-length))
1104 (print-level (and (not (zerop (prefix-numeric-value
1105 eval-last-sexp-arg-internal)))
1106 eval-expression-print-level))
1107 (beg (point))
1108 end)
1109 (prog1
1110 (prin1 value)
1111 (let ((str (eval-expression-print-format value)))
1112 (if str (princ str)))
1113 (setq end (point))
1114 (when (and (bufferp standard-output)
1115 (or (not (null print-length))
1116 (not (null print-level)))
1117 (not (string= unabbreviated
1118 (buffer-substring-no-properties beg end))))
1119 (last-sexp-setup-props beg end value
1120 unabbreviated
1121 (buffer-substring-no-properties beg end))
1122 ))))
1123
1124
1125 (defvar elisp--eval-last-sexp-fake-value (make-symbol "t"))
1126
1127 (defun eval-sexp-add-defvars (exp &optional pos)
1128 "Prepend EXP with all the `defvar's that precede it in the buffer.
1129 POS specifies the starting position where EXP was found and defaults to point."
1130 (setq exp (macroexpand-all exp)) ;Eager macro-expansion.
1131 (if (not lexical-binding)
1132 exp
1133 (save-excursion
1134 (unless pos (setq pos (point)))
1135 (let ((vars ()))
1136 (goto-char (point-min))
1137 (while (re-search-forward
1138 "(def\\(?:var\\|const\\|custom\\)[ \t\n]+\\([^; '()\n\t]+\\)"
1139 pos t)
1140 (let ((var (intern (match-string 1))))
1141 (and (not (special-variable-p var))
1142 (save-excursion
1143 (zerop (car (syntax-ppss (match-beginning 0)))))
1144 (push var vars))))
1145 `(progn ,@(mapcar (lambda (v) `(defvar ,v)) vars) ,exp)))))
1146
1147 (defun eval-last-sexp (eval-last-sexp-arg-internal)
1148 "Evaluate sexp before point; print value in the echo area.
1149 Interactively, with prefix argument, print output into current buffer.
1150
1151 Normally, this function truncates long output according to the value
1152 of the variables `eval-expression-print-length' and
1153 `eval-expression-print-level'. With a prefix argument of zero,
1154 however, there is no such truncation. Such a prefix argument
1155 also causes integers to be printed in several additional formats
1156 \(octal, hexadecimal, and character).
1157
1158 If `eval-expression-debug-on-error' is non-nil, which is the default,
1159 this command arranges for all errors to enter the debugger."
1160 (interactive "P")
1161 (if (null eval-expression-debug-on-error)
1162 (elisp--eval-last-sexp eval-last-sexp-arg-internal)
1163 (let ((value
1164 (let ((debug-on-error elisp--eval-last-sexp-fake-value))
1165 (cons (elisp--eval-last-sexp eval-last-sexp-arg-internal)
1166 debug-on-error))))
1167 (unless (eq (cdr value) elisp--eval-last-sexp-fake-value)
1168 (setq debug-on-error (cdr value)))
1169 (car value))))
1170
1171 (defun elisp--eval-defun-1 (form)
1172 "Treat some expressions specially.
1173 Reset the `defvar' and `defcustom' variables to the initial value.
1174 \(For `defcustom', use the :set function if there is one.)
1175 Reinitialize the face according to the `defface' specification."
1176 ;; The code in edebug-defun should be consistent with this, but not
1177 ;; the same, since this gets a macroexpanded form.
1178 (cond ((not (listp form))
1179 form)
1180 ((and (eq (car form) 'defvar)
1181 (cdr-safe (cdr-safe form))
1182 (boundp (cadr form)))
1183 ;; Force variable to be re-set.
1184 `(progn (defvar ,(nth 1 form) nil ,@(nthcdr 3 form))
1185 (setq-default ,(nth 1 form) ,(nth 2 form))))
1186 ;; `defcustom' is now macroexpanded to
1187 ;; `custom-declare-variable' with a quoted value arg.
1188 ((and (eq (car form) 'custom-declare-variable)
1189 (default-boundp (eval (nth 1 form) lexical-binding)))
1190 ;; Force variable to be bound, using :set function if specified.
1191 (let ((setfunc (memq :set form)))
1192 (when setfunc
1193 (setq setfunc (car-safe (cdr-safe setfunc)))
1194 (or (functionp setfunc) (setq setfunc nil)))
1195 (funcall (or setfunc 'set-default)
1196 (eval (nth 1 form) lexical-binding)
1197 ;; The second arg is an expression that evaluates to
1198 ;; an expression. The second evaluation is the one
1199 ;; normally performed not by normal execution but by
1200 ;; custom-initialize-set (for example), which does not
1201 ;; use lexical-binding.
1202 (eval (eval (nth 2 form) lexical-binding))))
1203 form)
1204 ;; `defface' is macroexpanded to `custom-declare-face'.
1205 ((eq (car form) 'custom-declare-face)
1206 ;; Reset the face.
1207 (let ((face-symbol (eval (nth 1 form) lexical-binding)))
1208 (setq face-new-frame-defaults
1209 (assq-delete-all face-symbol face-new-frame-defaults))
1210 (put face-symbol 'face-defface-spec nil)
1211 (put face-symbol 'face-override-spec nil))
1212 form)
1213 ((eq (car form) 'progn)
1214 (cons 'progn (mapcar #'elisp--eval-defun-1 (cdr form))))
1215 (t form)))
1216
1217 (defun elisp--eval-defun ()
1218 "Evaluate defun that point is in or before.
1219 The value is displayed in the echo area.
1220 If the current defun is actually a call to `defvar',
1221 then reset the variable using the initial value expression
1222 even if the variable already has some other value.
1223 \(Normally `defvar' does not change the variable's value
1224 if it already has a value.\)
1225
1226 Return the result of evaluation."
1227 ;; FIXME: the print-length/level bindings should only be applied while
1228 ;; printing, not while evaluating.
1229 (let ((debug-on-error eval-expression-debug-on-error)
1230 (print-length eval-expression-print-length)
1231 (print-level eval-expression-print-level))
1232 (save-excursion
1233 ;; Arrange for eval-region to "read" the (possibly) altered form.
1234 ;; eval-region handles recording which file defines a function or
1235 ;; variable.
1236 (let ((standard-output t)
1237 beg end form)
1238 ;; Read the form from the buffer, and record where it ends.
1239 (save-excursion
1240 (end-of-defun)
1241 (beginning-of-defun)
1242 (setq beg (point))
1243 (setq form (read (current-buffer)))
1244 (setq end (point)))
1245 ;; Alter the form if necessary.
1246 (let ((form (eval-sexp-add-defvars
1247 (elisp--eval-defun-1 (macroexpand form)))))
1248 (eval-region beg end standard-output
1249 (lambda (_ignore)
1250 ;; Skipping to the end of the specified region
1251 ;; will make eval-region return.
1252 (goto-char end)
1253 form))))))
1254 (let ((str (eval-expression-print-format (car values))))
1255 (if str (princ str)))
1256 ;; The result of evaluation has been put onto VALUES. So return it.
1257 (car values))
1258
1259 (defun eval-defun (edebug-it)
1260 "Evaluate the top-level form containing point, or after point.
1261
1262 If the current defun is actually a call to `defvar' or `defcustom',
1263 evaluating it this way resets the variable using its initial value
1264 expression (using the defcustom's :set function if there is one), even
1265 if the variable already has some other value. \(Normally `defvar' and
1266 `defcustom' do not alter the value if there already is one.) In an
1267 analogous way, evaluating a `defface' overrides any customizations of
1268 the face, so that it becomes defined exactly as the `defface' expression
1269 says.
1270
1271 If `eval-expression-debug-on-error' is non-nil, which is the default,
1272 this command arranges for all errors to enter the debugger.
1273
1274 With a prefix argument, instrument the code for Edebug.
1275
1276 If acting on a `defun' for FUNCTION, and the function was
1277 instrumented, `Edebug: FUNCTION' is printed in the echo area. If not
1278 instrumented, just FUNCTION is printed.
1279
1280 If not acting on a `defun', the result of evaluation is displayed in
1281 the echo area. This display is controlled by the variables
1282 `eval-expression-print-length' and `eval-expression-print-level',
1283 which see."
1284 (interactive "P")
1285 (cond (edebug-it
1286 (require 'edebug)
1287 (eval-defun (not edebug-all-defs)))
1288 (t
1289 (if (null eval-expression-debug-on-error)
1290 (elisp--eval-defun)
1291 (let (new-value value)
1292 (let ((debug-on-error elisp--eval-last-sexp-fake-value))
1293 (setq value (elisp--eval-defun))
1294 (setq new-value debug-on-error))
1295 (unless (eq elisp--eval-last-sexp-fake-value new-value)
1296 (setq debug-on-error new-value))
1297 value)))))
1298
1299 ;;; ElDoc Support
1300
1301 (defvar elisp--eldoc-last-data (make-vector 3 nil)
1302 "Bookkeeping; elements are as follows:
1303 0 - contains the last symbol read from the buffer.
1304 1 - contains the string last displayed in the echo area for variables,
1305 or argument string for functions.
1306 2 - 'function if function args, 'variable if variable documentation.")
1307
1308 (defun elisp-eldoc-documentation-function ()
1309 "`eldoc-documentation-function' (which see) for Emacs Lisp."
1310 (let ((current-symbol (elisp--current-symbol))
1311 (current-fnsym (elisp--fnsym-in-current-sexp)))
1312 (cond ((null current-fnsym)
1313 nil)
1314 ((eq current-symbol (car current-fnsym))
1315 (or (apply #'elisp-get-fnsym-args-string current-fnsym)
1316 (elisp-get-var-docstring current-symbol)))
1317 (t
1318 (or (elisp-get-var-docstring current-symbol)
1319 (apply #'elisp-get-fnsym-args-string current-fnsym))))))
1320
1321 (defun elisp-get-fnsym-args-string (sym &optional index prefix)
1322 "Return a string containing the parameter list of the function SYM.
1323 If SYM is a subr and no arglist is obtainable from the docstring
1324 or elsewhere, return a 1-line docstring."
1325 (let ((argstring
1326 (cond
1327 ((not (and sym (symbolp sym) (fboundp sym))) nil)
1328 ((and (eq sym (aref elisp--eldoc-last-data 0))
1329 (eq 'function (aref elisp--eldoc-last-data 2)))
1330 (aref elisp--eldoc-last-data 1))
1331 (t
1332 (let* ((advertised (gethash (indirect-function sym)
1333 advertised-signature-table t))
1334 doc
1335 (args
1336 (cond
1337 ((listp advertised) advertised)
1338 ((setq doc (help-split-fundoc
1339 (condition-case nil (documentation sym t)
1340 (invalid-function nil))
1341 sym))
1342 (car doc))
1343 (t (help-function-arglist sym)))))
1344 ;; Stringify, and store before highlighting, downcasing, etc.
1345 (elisp--last-data-store sym (elisp-function-argstring args)
1346 'function))))))
1347 ;; Highlight, truncate.
1348 (if argstring
1349 (elisp--highlight-function-argument
1350 sym argstring index
1351 (or prefix
1352 (concat (propertize (symbol-name sym) 'face
1353 (if (functionp sym)
1354 'font-lock-function-name-face
1355 'font-lock-keyword-face))
1356 ": "))))))
1357
1358 (defun elisp--highlight-function-argument (sym args index prefix)
1359 "Highlight argument INDEX in ARGS list for function SYM.
1360 In the absence of INDEX, just call `eldoc-docstring-format-sym-doc'."
1361 ;; FIXME: This should probably work on the list representation of `args'
1362 ;; rather than its string representation.
1363 ;; FIXME: This function is much too long, we need to split it up!
1364 (let ((start nil)
1365 (end 0)
1366 (argument-face 'eldoc-highlight-function-argument)
1367 (args-lst (mapcar (lambda (x)
1368 (replace-regexp-in-string
1369 "\\`[(]\\|[)]\\'" "" x))
1370 (split-string args))))
1371 ;; Find the current argument in the argument string. We need to
1372 ;; handle `&rest' and informal `...' properly.
1373 ;;
1374 ;; FIXME: What to do with optional arguments, like in
1375 ;; (defun NAME ARGLIST [DOCSTRING] BODY...) case?
1376 ;; The problem is there is no robust way to determine if
1377 ;; the current argument is indeed a docstring.
1378
1379 ;; When `&key' is used finding position based on `index'
1380 ;; would be wrong, so find the arg at point and determine
1381 ;; position in ARGS based on this current arg.
1382 (when (string-match "&key" args)
1383 (let* (case-fold-search
1384 key-have-value
1385 (sym-name (symbol-name sym))
1386 (cur-w (current-word))
1387 (args-lst-ak (cdr (member "&key" args-lst)))
1388 (limit (save-excursion
1389 (when (re-search-backward sym-name nil t)
1390 (match-end 0))))
1391 (cur-a (if (and cur-w (string-match ":\\([^ ()]*\\)" cur-w))
1392 (substring cur-w 1)
1393 (save-excursion
1394 (let (split)
1395 (when (re-search-backward ":\\([^()\n]*\\)" limit t)
1396 (setq split (split-string (match-string 1) " " t))
1397 (prog1 (car split)
1398 (when (cdr split)
1399 (setq key-have-value t))))))))
1400 ;; If `cur-a' is not one of `args-lst-ak'
1401 ;; assume user is entering an unknown key
1402 ;; referenced in last position in signature.
1403 (other-key-arg (and (stringp cur-a)
1404 args-lst-ak
1405 (not (member (upcase cur-a) args-lst-ak))
1406 (upcase (car (last args-lst-ak))))))
1407 (unless (string= cur-w sym-name)
1408 ;; The last keyword have already a value
1409 ;; i.e :foo a b and cursor is at b.
1410 ;; If signature have also `&rest'
1411 ;; (assume it is after the `&key' section)
1412 ;; go to the arg after `&rest'.
1413 (if (and key-have-value
1414 (save-excursion
1415 (not (re-search-forward ":.*" (point-at-eol) t)))
1416 (string-match "&rest \\([^ ()]*\\)" args))
1417 (setq index nil ; Skip next block based on positional args.
1418 start (match-beginning 1)
1419 end (match-end 1))
1420 ;; If `cur-a' is nil probably cursor is on a positional arg
1421 ;; before `&key', in this case, exit this block and determine
1422 ;; position with `index'.
1423 (when (and cur-a ; A keyword arg (dot removed) or nil.
1424 (or (string-match
1425 (concat "\\_<" (upcase cur-a) "\\_>") args)
1426 (string-match
1427 (concat "\\_<" other-key-arg "\\_>") args)))
1428 (setq index nil ; Skip next block based on positional args.
1429 start (match-beginning 0)
1430 end (match-end 0)))))))
1431 ;; Handle now positional arguments.
1432 (while (and index (>= index 1))
1433 (if (string-match "[^ ()]+" args end)
1434 (progn
1435 (setq start (match-beginning 0)
1436 end (match-end 0))
1437 (let ((argument (match-string 0 args)))
1438 (cond ((string= argument "&rest")
1439 ;; All the rest arguments are the same.
1440 (setq index 1))
1441 ((string= argument "&optional")) ; Skip.
1442 ((string= argument "&allow-other-keys")) ; Skip.
1443 ;; Back to index 0 in ARG1 ARG2 ARG2 ARG3 etc...
1444 ;; like in `setq'.
1445 ((or (and (string-match-p "\\.\\.\\.\\'" argument)
1446 (string= argument (car (last args-lst))))
1447 (and (string-match-p "\\.\\.\\.\\'"
1448 (substring args 1 (1- (length args))))
1449 (= (length (remove "..." args-lst)) 2)
1450 (> index 1) (eq (logand index 1) 1)))
1451 (setq index 0))
1452 (t
1453 (setq index (1- index))))))
1454 (setq end (length args)
1455 start (1- end)
1456 argument-face 'font-lock-warning-face
1457 index 0)))
1458 (let ((doc args))
1459 (when start
1460 (setq doc (copy-sequence args))
1461 (add-text-properties start end (list 'face argument-face) doc))
1462 (setq doc (eldoc-docstring-format-sym-doc prefix doc))
1463 doc)))
1464
1465 ;; Return a string containing a brief (one-line) documentation string for
1466 ;; the variable.
1467 (defun elisp-get-var-docstring (sym)
1468 (cond ((not sym) nil)
1469 ((and (eq sym (aref elisp--eldoc-last-data 0))
1470 (eq 'variable (aref elisp--eldoc-last-data 2)))
1471 (aref elisp--eldoc-last-data 1))
1472 (t
1473 (let ((doc (documentation-property sym 'variable-documentation t)))
1474 (when doc
1475 (let ((doc (eldoc-docstring-format-sym-doc
1476 sym (elisp--docstring-first-line doc)
1477 'font-lock-variable-name-face)))
1478 (elisp--last-data-store sym doc 'variable)))))))
1479
1480 (defun elisp--last-data-store (symbol doc type)
1481 (aset elisp--eldoc-last-data 0 symbol)
1482 (aset elisp--eldoc-last-data 1 doc)
1483 (aset elisp--eldoc-last-data 2 type)
1484 doc)
1485
1486 ;; Note that any leading `*' in the docstring (which indicates the variable
1487 ;; is a user option) is removed.
1488 (defun elisp--docstring-first-line (doc)
1489 (and (stringp doc)
1490 (substitute-command-keys
1491 (save-match-data
1492 ;; Don't use "^" in the regexp below since it may match
1493 ;; anywhere in the doc-string.
1494 (let ((start (if (string-match "\\`\\*" doc) (match-end 0) 0)))
1495 (cond ((string-match "\n" doc)
1496 (substring doc start (match-beginning 0)))
1497 ((zerop start) doc)
1498 (t (substring doc start))))))))
1499 \f
1500 ;; Return a list of current function name and argument index.
1501 (defun elisp--fnsym-in-current-sexp ()
1502 (save-excursion
1503 (let ((argument-index (1- (elisp--beginning-of-sexp))))
1504 ;; If we are at the beginning of function name, this will be -1.
1505 (when (< argument-index 0)
1506 (setq argument-index 0))
1507 ;; Don't do anything if current word is inside a string.
1508 (if (= (or (char-after (1- (point))) 0) ?\")
1509 nil
1510 (list (elisp--current-symbol) argument-index)))))
1511
1512 ;; Move to the beginning of current sexp. Return the number of nested
1513 ;; sexp the point was over or after.
1514 (defun elisp--beginning-of-sexp ()
1515 (let ((parse-sexp-ignore-comments t)
1516 (num-skipped-sexps 0))
1517 (condition-case _
1518 (progn
1519 ;; First account for the case the point is directly over a
1520 ;; beginning of a nested sexp.
1521 (condition-case _
1522 (let ((p (point)))
1523 (forward-sexp -1)
1524 (forward-sexp 1)
1525 (when (< (point) p)
1526 (setq num-skipped-sexps 1)))
1527 (error))
1528 (while
1529 (let ((p (point)))
1530 (forward-sexp -1)
1531 (when (< (point) p)
1532 (setq num-skipped-sexps (1+ num-skipped-sexps))))))
1533 (error))
1534 num-skipped-sexps))
1535
1536 ;; returns nil unless current word is an interned symbol.
1537 (defun elisp--current-symbol ()
1538 (let ((c (char-after (point))))
1539 (and c
1540 (memq (char-syntax c) '(?w ?_))
1541 (intern-soft (current-word)))))
1542
1543 (defun elisp-function-argstring (arglist)
1544 "Return ARGLIST as a string enclosed by ().
1545 ARGLIST is either a string, or a list of strings or symbols."
1546 (let ((str (cond ((stringp arglist) arglist)
1547 ((not (listp arglist)) nil)
1548 (t (help--make-usage-docstring 'toto arglist)))))
1549 (if (and str (string-match "\\`([^ )]+ ?" str))
1550 (replace-match "(" t t str)
1551 str)))
1552
1553 (provide 'elisp-mode)
1554 ;;; elisp-mode.el ends here