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1 ;;; cl-macs.el --- Common Lisp macros -*-byte-compile-dynamic: t;-*-
3 ;; Copyright (C) 1993, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008
4 ;; Free Software Foundation, Inc.
6 ;; Author: Dave Gillespie <daveg@synaptics.com>
7 ;; Version: 2.02
8 ;; Keywords: extensions
10 ;; This file is part of GNU Emacs.
12 ;; GNU Emacs is free software; you can redistribute it and/or modify
13 ;; it under the terms of the GNU General Public License as published by
14 ;; the Free Software Foundation; either version 3, or (at your option)
15 ;; any later version.
17 ;; GNU Emacs is distributed in the hope that it will be useful,
18 ;; but WITHOUT ANY WARRANTY; without even the implied warranty of
19 ;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 ;; GNU General Public License for more details.
22 ;; You should have received a copy of the GNU General Public License
23 ;; along with GNU Emacs; see the file COPYING. If not, write to the
24 ;; Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
25 ;; Boston, MA 02110-1301, USA.
27 ;;; Commentary:
29 ;; These are extensions to Emacs Lisp that provide a degree of
30 ;; Common Lisp compatibility, beyond what is already built-in
31 ;; in Emacs Lisp.
33 ;; This package was written by Dave Gillespie; it is a complete
34 ;; rewrite of Cesar Quiroz's original cl.el package of December 1986.
36 ;; Bug reports, comments, and suggestions are welcome!
38 ;; This file contains the portions of the Common Lisp extensions
39 ;; package which should be autoloaded, but need only be present
40 ;; if the compiler or interpreter is used---this file is not
41 ;; necessary for executing compiled code.
43 ;; See cl.el for Change Log.
46 ;;; Code:
48 (or (memq 'cl-19 features)
49 (error "Tried to load `cl-macs' before `cl'!"))
52 (defmacro cl-pop2 (place)
53 (list 'prog1 (list 'car (list 'cdr place))
54 (list 'setq place (list 'cdr (list 'cdr place)))))
55 (put 'cl-pop2 'edebug-form-spec 'edebug-sexps)
57 (defvar cl-optimize-safety)
58 (defvar cl-optimize-speed)
61 ;;; This kludge allows macros which use cl-transform-function-property
62 ;;; to be called at compile-time.
64 (require
65 (progn
66 (or (fboundp 'cl-transform-function-property)
67 (defalias 'cl-transform-function-property
68 (function (lambda (n p f)
69 (list 'put (list 'quote n) (list 'quote p)
70 (list 'function (cons 'lambda f)))))))
71 (car (or features (setq features (list 'cl-kludge))))))
74 ;;; Initialization.
76 (defvar cl-old-bc-file-form nil)
78 (defun cl-compile-time-init ()
79 (run-hooks 'cl-hack-bytecomp-hook))
82 ;;; Some predicates for analyzing Lisp forms. These are used by various
83 ;;; macro expanders to optimize the results in certain common cases.
85 (defconst cl-simple-funcs '(car cdr nth aref elt if and or + - 1+ 1- min max
86 car-safe cdr-safe progn prog1 prog2))
87 (defconst cl-safe-funcs '(* / % length memq list vector vectorp
88 < > <= >= = error))
90 ;;; Check if no side effects, and executes quickly.
91 (defun cl-simple-expr-p (x &optional size)
92 (or size (setq size 10))
93 (if (and (consp x) (not (memq (car x) '(quote function function*))))
94 (and (symbolp (car x))
95 (or (memq (car x) cl-simple-funcs)
96 (get (car x) 'side-effect-free))
97 (progn
98 (setq size (1- size))
99 (while (and (setq x (cdr x))
100 (setq size (cl-simple-expr-p (car x) size))))
101 (and (null x) (>= size 0) size)))
102 (and (> size 0) (1- size))))
104 (defun cl-simple-exprs-p (xs)
105 (while (and xs (cl-simple-expr-p (car xs)))
106 (setq xs (cdr xs)))
107 (not xs))
109 ;;; Check if no side effects.
110 (defun cl-safe-expr-p (x)
111 (or (not (and (consp x) (not (memq (car x) '(quote function function*)))))
112 (and (symbolp (car x))
113 (or (memq (car x) cl-simple-funcs)
114 (memq (car x) cl-safe-funcs)
115 (get (car x) 'side-effect-free))
116 (progn
117 (while (and (setq x (cdr x)) (cl-safe-expr-p (car x))))
118 (null x)))))
120 ;;; Check if constant (i.e., no side effects or dependencies).
121 (defun cl-const-expr-p (x)
122 (cond ((consp x)
123 (or (eq (car x) 'quote)
124 (and (memq (car x) '(function function*))
125 (or (symbolp (nth 1 x))
126 (and (eq (car-safe (nth 1 x)) 'lambda) 'func)))))
127 ((symbolp x) (and (memq x '(nil t)) t))
128 (t t)))
130 (defun cl-const-exprs-p (xs)
131 (while (and xs (cl-const-expr-p (car xs)))
132 (setq xs (cdr xs)))
133 (not xs))
135 (defun cl-const-expr-val (x)
136 (and (eq (cl-const-expr-p x) t) (if (consp x) (nth 1 x) x)))
138 (defun cl-expr-access-order (x v)
139 (if (cl-const-expr-p x) v
140 (if (consp x)
141 (progn
142 (while (setq x (cdr x)) (setq v (cl-expr-access-order (car x) v)))
144 (if (eq x (car v)) (cdr v) '(t)))))
146 ;;; Count number of times X refers to Y. Return nil for 0 times.
147 (defun cl-expr-contains (x y)
148 (cond ((equal y x) 1)
149 ((and (consp x) (not (memq (car-safe x) '(quote function function*))))
150 (let ((sum 0))
151 (while x
152 (setq sum (+ sum (or (cl-expr-contains (pop x) y) 0))))
153 (and (> sum 0) sum)))
154 (t nil)))
156 (defun cl-expr-contains-any (x y)
157 (while (and y (not (cl-expr-contains x (car y)))) (pop y))
160 ;;; Check whether X may depend on any of the symbols in Y.
161 (defun cl-expr-depends-p (x y)
162 (and (not (cl-const-expr-p x))
163 (or (not (cl-safe-expr-p x)) (cl-expr-contains-any x y))))
165 ;;; Symbols.
167 (defvar *gensym-counter*)
168 (defun gensym (&optional prefix)
169 "Generate a new uninterned symbol.
170 The name is made by appending a number to PREFIX, default \"G\"."
171 (let ((pfix (if (stringp prefix) prefix "G"))
172 (num (if (integerp prefix) prefix
173 (prog1 *gensym-counter*
174 (setq *gensym-counter* (1+ *gensym-counter*))))))
175 (make-symbol (format "%s%d" pfix num))))
177 (defun gentemp (&optional prefix)
178 "Generate a new interned symbol with a unique name.
179 The name is made by appending a number to PREFIX, default \"G\"."
180 (let ((pfix (if (stringp prefix) prefix "G"))
181 name)
182 (while (intern-soft (setq name (format "%s%d" pfix *gensym-counter*)))
183 (setq *gensym-counter* (1+ *gensym-counter*)))
184 (intern name)))
187 ;;; Program structure.
189 (defmacro defun* (name args &rest body)
190 "Define NAME as a function.
191 Like normal `defun', except ARGLIST allows full Common Lisp conventions,
192 and BODY is implicitly surrounded by (block NAME ...).
194 \(fn NAME ARGLIST [DOCSTRING] BODY...)"
195 (let* ((res (cl-transform-lambda (cons args body) name))
196 (form (list* 'defun name (cdr res))))
197 (if (car res) (list 'progn (car res) form) form)))
199 (defmacro defmacro* (name args &rest body)
200 "Define NAME as a macro.
201 Like normal `defmacro', except ARGLIST allows full Common Lisp conventions,
202 and BODY is implicitly surrounded by (block NAME ...).
204 \(fn NAME ARGLIST [DOCSTRING] BODY...)"
205 (let* ((res (cl-transform-lambda (cons args body) name))
206 (form (list* 'defmacro name (cdr res))))
207 (if (car res) (list 'progn (car res) form) form)))
209 (defmacro function* (func)
210 "Introduce a function.
211 Like normal `function', except that if argument is a lambda form,
212 its argument list allows full Common Lisp conventions."
213 (if (eq (car-safe func) 'lambda)
214 (let* ((res (cl-transform-lambda (cdr func) 'cl-none))
215 (form (list 'function (cons 'lambda (cdr res)))))
216 (if (car res) (list 'progn (car res) form) form))
217 (list 'function func)))
219 (defun cl-transform-function-property (func prop form)
220 (let ((res (cl-transform-lambda form func)))
221 (append '(progn) (cdr (cdr (car res)))
222 (list (list 'put (list 'quote func) (list 'quote prop)
223 (list 'function (cons 'lambda (cdr res))))))))
225 (defconst lambda-list-keywords
226 '(&optional &rest &key &allow-other-keys &aux &whole &body &environment))
228 (defvar cl-macro-environment nil)
229 (defvar bind-block) (defvar bind-defs) (defvar bind-enquote)
230 (defvar bind-inits) (defvar bind-lets) (defvar bind-forms)
232 (defun cl-transform-lambda (form bind-block)
233 (let* ((args (car form)) (body (cdr form)) (orig-args args)
234 (bind-defs nil) (bind-enquote nil)
235 (bind-inits nil) (bind-lets nil) (bind-forms nil)
236 (header nil) (simple-args nil))
237 (while (or (stringp (car body))
238 (memq (car-safe (car body)) '(interactive declare)))
239 (push (pop body) header))
240 (setq args (if (listp args) (copy-list args) (list '&rest args)))
241 (let ((p (last args))) (if (cdr p) (setcdr p (list '&rest (cdr p)))))
242 (if (setq bind-defs (cadr (memq '&cl-defs args)))
243 (setq args (delq '&cl-defs (delq bind-defs args))
244 bind-defs (cadr bind-defs)))
245 (if (setq bind-enquote (memq '&cl-quote args))
246 (setq args (delq '&cl-quote args)))
247 (if (memq '&whole args) (error "&whole not currently implemented"))
248 (let* ((p (memq '&environment args)) (v (cadr p)))
249 (if p (setq args (nconc (delq (car p) (delq v args))
250 (list '&aux (list v 'cl-macro-environment))))))
251 (while (and args (symbolp (car args))
252 (not (memq (car args) '(nil &rest &body &key &aux)))
253 (not (and (eq (car args) '&optional)
254 (or bind-defs (consp (cadr args))))))
255 (push (pop args) simple-args))
256 (or (eq bind-block 'cl-none)
257 (setq body (list (list* 'block bind-block body))))
258 (if (null args)
259 (list* nil (nreverse simple-args) (nconc (nreverse header) body))
260 (if (memq '&optional simple-args) (push '&optional args))
261 (cl-do-arglist args nil (- (length simple-args)
262 (if (memq '&optional simple-args) 1 0)))
263 (setq bind-lets (nreverse bind-lets))
264 (list* (and bind-inits (list* 'eval-when '(compile load eval)
265 (nreverse bind-inits)))
266 (nconc (nreverse simple-args)
267 (list '&rest (car (pop bind-lets))))
268 (nconc (let ((hdr (nreverse header)))
269 ;; Macro expansion can take place in the middle of
270 ;; apparently harmless computation, so it should not
271 ;; touch the match-data.
272 (save-match-data
273 (require 'help-fns)
274 (cons (help-add-fundoc-usage
275 (if (stringp (car hdr)) (pop hdr))
276 ;; orig-args can contain &cl-defs (an internal
277 ;; CL thingy I don't understand), so remove it.
278 (let ((x (memq '&cl-defs orig-args)))
279 (if (null x) orig-args
280 (delq (car x) (remq (cadr x) orig-args)))))
281 hdr)))
282 (list (nconc (list 'let* bind-lets)
283 (nreverse bind-forms) body)))))))
285 (defun cl-do-arglist (args expr &optional num) ; uses bind-*
286 (if (nlistp args)
287 (if (or (memq args lambda-list-keywords) (not (symbolp args)))
288 (error "Invalid argument name: %s" args)
289 (push (list args expr) bind-lets))
290 (setq args (copy-list args))
291 (let ((p (last args))) (if (cdr p) (setcdr p (list '&rest (cdr p)))))
292 (let ((p (memq '&body args))) (if p (setcar p '&rest)))
293 (if (memq '&environment args) (error "&environment used incorrectly"))
294 (let ((save-args args)
295 (restarg (memq '&rest args))
296 (safety (if (cl-compiling-file) cl-optimize-safety 3))
297 (keys nil)
298 (laterarg nil) (exactarg nil) minarg)
299 (or num (setq num 0))
300 (if (listp (cadr restarg))
301 (setq restarg (make-symbol "--cl-rest--"))
302 (setq restarg (cadr restarg)))
303 (push (list restarg expr) bind-lets)
304 (if (eq (car args) '&whole)
305 (push (list (cl-pop2 args) restarg) bind-lets))
306 (let ((p args))
307 (setq minarg restarg)
308 (while (and p (not (memq (car p) lambda-list-keywords)))
309 (or (eq p args) (setq minarg (list 'cdr minarg)))
310 (setq p (cdr p)))
311 (if (memq (car p) '(nil &aux))
312 (setq minarg (list '= (list 'length restarg)
313 (length (ldiff args p)))
314 exactarg (not (eq args p)))))
315 (while (and args (not (memq (car args) lambda-list-keywords)))
316 (let ((poparg (list (if (or (cdr args) (not exactarg)) 'pop 'car)
317 restarg)))
318 (cl-do-arglist
319 (pop args)
320 (if (or laterarg (= safety 0)) poparg
321 (list 'if minarg poparg
322 (list 'signal '(quote wrong-number-of-arguments)
323 (list 'list (and (not (eq bind-block 'cl-none))
324 (list 'quote bind-block))
325 (list 'length restarg)))))))
326 (setq num (1+ num) laterarg t))
327 (while (and (eq (car args) '&optional) (pop args))
328 (while (and args (not (memq (car args) lambda-list-keywords)))
329 (let ((arg (pop args)))
330 (or (consp arg) (setq arg (list arg)))
331 (if (cddr arg) (cl-do-arglist (nth 2 arg) (list 'and restarg t)))
332 (let ((def (if (cdr arg) (nth 1 arg)
333 (or (car bind-defs)
334 (nth 1 (assq (car arg) bind-defs)))))
335 (poparg (list 'pop restarg)))
336 (and def bind-enquote (setq def (list 'quote def)))
337 (cl-do-arglist (car arg)
338 (if def (list 'if restarg poparg def) poparg))
339 (setq num (1+ num))))))
340 (if (eq (car args) '&rest)
341 (let ((arg (cl-pop2 args)))
342 (if (consp arg) (cl-do-arglist arg restarg)))
343 (or (eq (car args) '&key) (= safety 0) exactarg
344 (push (list 'if restarg
345 (list 'signal '(quote wrong-number-of-arguments)
346 (list 'list
347 (and (not (eq bind-block 'cl-none))
348 (list 'quote bind-block))
349 (list '+ num (list 'length restarg)))))
350 bind-forms)))
351 (while (and (eq (car args) '&key) (pop args))
352 (while (and args (not (memq (car args) lambda-list-keywords)))
353 (let ((arg (pop args)))
354 (or (consp arg) (setq arg (list arg)))
355 (let* ((karg (if (consp (car arg)) (caar arg)
356 (intern (format ":%s" (car arg)))))
357 (varg (if (consp (car arg)) (cadar arg) (car arg)))
358 (def (if (cdr arg) (cadr arg)
359 (or (car bind-defs) (cadr (assq varg bind-defs)))))
360 (look (list 'memq (list 'quote karg) restarg)))
361 (and def bind-enquote (setq def (list 'quote def)))
362 (if (cddr arg)
363 (let* ((temp (or (nth 2 arg) (make-symbol "--cl-var--")))
364 (val (list 'car (list 'cdr temp))))
365 (cl-do-arglist temp look)
366 (cl-do-arglist varg
367 (list 'if temp
368 (list 'prog1 val (list 'setq temp t))
369 def)))
370 (cl-do-arglist
371 varg
372 (list 'car
373 (list 'cdr
374 (if (null def)
375 look
376 (list 'or look
377 (if (eq (cl-const-expr-p def) t)
378 (list
379 'quote
380 (list nil (cl-const-expr-val def)))
381 (list 'list nil def))))))))
382 (push karg keys)))))
383 (setq keys (nreverse keys))
384 (or (and (eq (car args) '&allow-other-keys) (pop args))
385 (null keys) (= safety 0)
386 (let* ((var (make-symbol "--cl-keys--"))
387 (allow '(:allow-other-keys))
388 (check (list
389 'while var
390 (list
391 'cond
392 (list (list 'memq (list 'car var)
393 (list 'quote (append keys allow)))
394 (list 'setq var (list 'cdr (list 'cdr var))))
395 (list (list 'car
396 (list 'cdr
397 (list 'memq (cons 'quote allow)
398 restarg)))
399 (list 'setq var nil))
400 (list t
401 (list
402 'error
403 (format "Keyword argument %%s not one of %s"
404 keys)
405 (list 'car var)))))))
406 (push (list 'let (list (list var restarg)) check) bind-forms)))
407 (while (and (eq (car args) '&aux) (pop args))
408 (while (and args (not (memq (car args) lambda-list-keywords)))
409 (if (consp (car args))
410 (if (and bind-enquote (cadar args))
411 (cl-do-arglist (caar args)
412 (list 'quote (cadr (pop args))))
413 (cl-do-arglist (caar args) (cadr (pop args))))
414 (cl-do-arglist (pop args) nil))))
415 (if args (error "Malformed argument list %s" save-args)))))
417 (defun cl-arglist-args (args)
418 (if (nlistp args) (list args)
419 (let ((res nil) (kind nil) arg)
420 (while (consp args)
421 (setq arg (pop args))
422 (if (memq arg lambda-list-keywords) (setq kind arg)
423 (if (eq arg '&cl-defs) (pop args)
424 (and (consp arg) kind (setq arg (car arg)))
425 (and (consp arg) (cdr arg) (eq kind '&key) (setq arg (cadr arg)))
426 (setq res (nconc res (cl-arglist-args arg))))))
427 (nconc res (and args (list args))))))
429 (defmacro destructuring-bind (args expr &rest body)
430 (let* ((bind-lets nil) (bind-forms nil) (bind-inits nil)
431 (bind-defs nil) (bind-block 'cl-none))
432 (cl-do-arglist (or args '(&aux)) expr)
433 (append '(progn) bind-inits
434 (list (nconc (list 'let* (nreverse bind-lets))
435 (nreverse bind-forms) body)))))
438 ;;; The `eval-when' form.
440 (defvar cl-not-toplevel nil)
442 (defmacro eval-when (when &rest body)
443 "Control when BODY is evaluated.
444 If `compile' is in WHEN, BODY is evaluated when compiled at top-level.
445 If `load' is in WHEN, BODY is evaluated when loaded after top-level compile.
446 If `eval' is in WHEN, BODY is evaluated when interpreted or at non-top-level.
448 \(fn (WHEN...) BODY...)"
449 (if (and (fboundp 'cl-compiling-file) (cl-compiling-file)
450 (not cl-not-toplevel) (not (boundp 'for-effect))) ; horrible kludge
451 (let ((comp (or (memq 'compile when) (memq :compile-toplevel when)))
452 (cl-not-toplevel t))
453 (if (or (memq 'load when) (memq :load-toplevel when))
454 (if comp (cons 'progn (mapcar 'cl-compile-time-too body))
455 (list* 'if nil nil body))
456 (progn (if comp (eval (cons 'progn body))) nil)))
457 (and (or (memq 'eval when) (memq :execute when))
458 (cons 'progn body))))
460 (defun cl-compile-time-too (form)
461 (or (and (symbolp (car-safe form)) (get (car-safe form) 'byte-hunk-handler))
462 (setq form (macroexpand
463 form (cons '(eval-when) byte-compile-macro-environment))))
464 (cond ((eq (car-safe form) 'progn)
465 (cons 'progn (mapcar 'cl-compile-time-too (cdr form))))
466 ((eq (car-safe form) 'eval-when)
467 (let ((when (nth 1 form)))
468 (if (or (memq 'eval when) (memq :execute when))
469 (list* 'eval-when (cons 'compile when) (cddr form))
470 form)))
471 (t (eval form) form)))
473 (defmacro load-time-value (form &optional read-only)
474 "Like `progn', but evaluates the body at load time.
475 The result of the body appears to the compiler as a quoted constant."
476 (if (cl-compiling-file)
477 (let* ((temp (gentemp "--cl-load-time--"))
478 (set (list 'set (list 'quote temp) form)))
479 (if (and (fboundp 'byte-compile-file-form-defmumble)
480 (boundp 'this-kind) (boundp 'that-one))
481 (fset 'byte-compile-file-form
482 (list 'lambda '(form)
483 (list 'fset '(quote byte-compile-file-form)
484 (list 'quote
485 (symbol-function 'byte-compile-file-form)))
486 (list 'byte-compile-file-form (list 'quote set))
487 '(byte-compile-file-form form)))
488 (print set (symbol-value 'outbuffer)))
489 (list 'symbol-value (list 'quote temp)))
490 (list 'quote (eval form))))
493 ;;; Conditional control structures.
495 (defmacro case (expr &rest clauses)
496 "Eval EXPR and choose among clauses on that value.
497 Each clause looks like (KEYLIST BODY...). EXPR is evaluated and compared
498 against each key in each KEYLIST; the corresponding BODY is evaluated.
499 If no clause succeeds, case returns nil. A single atom may be used in
500 place of a KEYLIST of one atom. A KEYLIST of t or `otherwise' is
501 allowed only in the final clause, and matches if no other keys match.
502 Key values are compared by `eql'.
503 \n(fn EXPR (KEYLIST BODY...)...)"
504 (let* ((temp (if (cl-simple-expr-p expr 3) expr (make-symbol "--cl-var--")))
505 (head-list nil)
506 (body (cons
507 'cond
508 (mapcar
509 (function
510 (lambda (c)
511 (cons (cond ((memq (car c) '(t otherwise)) t)
512 ((eq (car c) 'ecase-error-flag)
513 (list 'error "ecase failed: %s, %s"
514 temp (list 'quote (reverse head-list))))
515 ((listp (car c))
516 (setq head-list (append (car c) head-list))
517 (list 'member* temp (list 'quote (car c))))
519 (if (memq (car c) head-list)
520 (error "Duplicate key in case: %s"
521 (car c)))
522 (push (car c) head-list)
523 (list 'eql temp (list 'quote (car c)))))
524 (or (cdr c) '(nil)))))
525 clauses))))
526 (if (eq temp expr) body
527 (list 'let (list (list temp expr)) body))))
529 (defmacro ecase (expr &rest clauses)
530 "Like `case', but error if no case fits.
531 `otherwise'-clauses are not allowed.
532 \n(fn EXPR (KEYLIST BODY...)...)"
533 (list* 'case expr (append clauses '((ecase-error-flag)))))
535 (defmacro typecase (expr &rest clauses)
536 "Evals EXPR, chooses among clauses on that value.
537 Each clause looks like (TYPE BODY...). EXPR is evaluated and, if it
538 satisfies TYPE, the corresponding BODY is evaluated. If no clause succeeds,
539 typecase returns nil. A TYPE of t or `otherwise' is allowed only in the
540 final clause, and matches if no other keys match.
541 \n(fn EXPR (TYPE BODY...)...)"
542 (let* ((temp (if (cl-simple-expr-p expr 3) expr (make-symbol "--cl-var--")))
543 (type-list nil)
544 (body (cons
545 'cond
546 (mapcar
547 (function
548 (lambda (c)
549 (cons (cond ((eq (car c) 'otherwise) t)
550 ((eq (car c) 'ecase-error-flag)
551 (list 'error "etypecase failed: %s, %s"
552 temp (list 'quote (reverse type-list))))
554 (push (car c) type-list)
555 (cl-make-type-test temp (car c))))
556 (or (cdr c) '(nil)))))
557 clauses))))
558 (if (eq temp expr) body
559 (list 'let (list (list temp expr)) body))))
561 (defmacro etypecase (expr &rest clauses)
562 "Like `typecase', but error if no case fits.
563 `otherwise'-clauses are not allowed.
564 \n(fn EXPR (TYPE BODY...)...)"
565 (list* 'typecase expr (append clauses '((ecase-error-flag)))))
568 ;;; Blocks and exits.
570 (defmacro block (name &rest body)
571 "Define a lexically-scoped block named NAME.
572 NAME may be any symbol. Code inside the BODY forms can call `return-from'
573 to jump prematurely out of the block. This differs from `catch' and `throw'
574 in two respects: First, the NAME is an unevaluated symbol rather than a
575 quoted symbol or other form; and second, NAME is lexically rather than
576 dynamically scoped: Only references to it within BODY will work. These
577 references may appear inside macro expansions, but not inside functions
578 called from BODY."
579 (if (cl-safe-expr-p (cons 'progn body)) (cons 'progn body)
580 (list 'cl-block-wrapper
581 (list* 'catch (list 'quote (intern (format "--cl-block-%s--" name)))
582 body))))
584 (defvar cl-active-block-names nil)
586 (put 'cl-block-wrapper 'byte-compile 'cl-byte-compile-block)
587 (defun cl-byte-compile-block (cl-form)
588 (if (fboundp 'byte-compile-form-do-effect) ; Check for optimizing compiler
589 (progn
590 (let* ((cl-entry (cons (nth 1 (nth 1 (nth 1 cl-form))) nil))
591 (cl-active-block-names (cons cl-entry cl-active-block-names))
592 (cl-body (byte-compile-top-level
593 (cons 'progn (cddr (nth 1 cl-form))))))
594 (if (cdr cl-entry)
595 (byte-compile-form (list 'catch (nth 1 (nth 1 cl-form)) cl-body))
596 (byte-compile-form cl-body))))
597 (byte-compile-form (nth 1 cl-form))))
599 (put 'cl-block-throw 'byte-compile 'cl-byte-compile-throw)
600 (defun cl-byte-compile-throw (cl-form)
601 (let ((cl-found (assq (nth 1 (nth 1 cl-form)) cl-active-block-names)))
602 (if cl-found (setcdr cl-found t)))
603 (byte-compile-normal-call (cons 'throw (cdr cl-form))))
605 (defmacro return (&optional result)
606 "Return from the block named nil.
607 This is equivalent to `(return-from nil RESULT)'."
608 (list 'return-from nil result))
610 (defmacro return-from (name &optional result)
611 "Return from the block named NAME.
612 This jump out to the innermost enclosing `(block NAME ...)' form,
613 returning RESULT from that form (or nil if RESULT is omitted).
614 This is compatible with Common Lisp, but note that `defun' and
615 `defmacro' do not create implicit blocks as they do in Common Lisp."
616 (let ((name2 (intern (format "--cl-block-%s--" name))))
617 (list 'cl-block-throw (list 'quote name2) result)))
620 ;;; The "loop" macro.
622 (defvar args) (defvar loop-accum-var) (defvar loop-accum-vars)
623 (defvar loop-bindings) (defvar loop-body) (defvar loop-destr-temps)
624 (defvar loop-finally) (defvar loop-finish-flag) (defvar loop-first-flag)
625 (defvar loop-initially) (defvar loop-map-form) (defvar loop-name)
626 (defvar loop-result) (defvar loop-result-explicit)
627 (defvar loop-result-var) (defvar loop-steps) (defvar loop-symbol-macs)
629 (defmacro loop (&rest args)
630 "The Common Lisp `loop' macro.
631 Valid clauses are:
632 for VAR from/upfrom/downfrom NUM to/upto/downto/above/below NUM by NUM,
633 for VAR in LIST by FUNC, for VAR on LIST by FUNC, for VAR = INIT then EXPR,
634 for VAR across ARRAY, repeat NUM, with VAR = INIT, while COND, until COND,
635 always COND, never COND, thereis COND, collect EXPR into VAR,
636 append EXPR into VAR, nconc EXPR into VAR, sum EXPR into VAR,
637 count EXPR into VAR, maximize EXPR into VAR, minimize EXPR into VAR,
638 if COND CLAUSE [and CLAUSE]... else CLAUSE [and CLAUSE...],
639 unless COND CLAUSE [and CLAUSE]... else CLAUSE [and CLAUSE...],
640 do EXPRS..., initially EXPRS..., finally EXPRS..., return EXPR,
641 finally return EXPR, named NAME.
643 \(fn CLAUSE...)"
644 (if (not (memq t (mapcar 'symbolp (delq nil (delq t (copy-list args))))))
645 (list 'block nil (list* 'while t args))
646 (let ((loop-name nil) (loop-bindings nil)
647 (loop-body nil) (loop-steps nil)
648 (loop-result nil) (loop-result-explicit nil)
649 (loop-result-var nil) (loop-finish-flag nil)
650 (loop-accum-var nil) (loop-accum-vars nil)
651 (loop-initially nil) (loop-finally nil)
652 (loop-map-form nil) (loop-first-flag nil)
653 (loop-destr-temps nil) (loop-symbol-macs nil))
654 (setq args (append args '(cl-end-loop)))
655 (while (not (eq (car args) 'cl-end-loop)) (cl-parse-loop-clause))
656 (if loop-finish-flag
657 (push `((,loop-finish-flag t)) loop-bindings))
658 (if loop-first-flag
659 (progn (push `((,loop-first-flag t)) loop-bindings)
660 (push `(setq ,loop-first-flag nil) loop-steps)))
661 (let* ((epilogue (nconc (nreverse loop-finally)
662 (list (or loop-result-explicit loop-result))))
663 (ands (cl-loop-build-ands (nreverse loop-body)))
664 (while-body (nconc (cadr ands) (nreverse loop-steps)))
665 (body (append
666 (nreverse loop-initially)
667 (list (if loop-map-form
668 (list 'block '--cl-finish--
669 (subst
670 (if (eq (car ands) t) while-body
671 (cons `(or ,(car ands)
672 (return-from --cl-finish--
673 nil))
674 while-body))
675 '--cl-map loop-map-form))
676 (list* 'while (car ands) while-body)))
677 (if loop-finish-flag
678 (if (equal epilogue '(nil)) (list loop-result-var)
679 `((if ,loop-finish-flag
680 (progn ,@epilogue) ,loop-result-var)))
681 epilogue))))
682 (if loop-result-var (push (list loop-result-var) loop-bindings))
683 (while loop-bindings
684 (if (cdar loop-bindings)
685 (setq body (list (cl-loop-let (pop loop-bindings) body t)))
686 (let ((lets nil))
687 (while (and loop-bindings
688 (not (cdar loop-bindings)))
689 (push (car (pop loop-bindings)) lets))
690 (setq body (list (cl-loop-let lets body nil))))))
691 (if loop-symbol-macs
692 (setq body (list (list* 'symbol-macrolet loop-symbol-macs body))))
693 (list* 'block loop-name body)))))
695 (defun cl-parse-loop-clause () ; uses args, loop-*
696 (let ((word (pop args))
697 (hash-types '(hash-key hash-keys hash-value hash-values))
698 (key-types '(key-code key-codes key-seq key-seqs
699 key-binding key-bindings)))
700 (cond
702 ((null args)
703 (error "Malformed `loop' macro"))
705 ((eq word 'named)
706 (setq loop-name (pop args)))
708 ((eq word 'initially)
709 (if (memq (car args) '(do doing)) (pop args))
710 (or (consp (car args)) (error "Syntax error on `initially' clause"))
711 (while (consp (car args))
712 (push (pop args) loop-initially)))
714 ((eq word 'finally)
715 (if (eq (car args) 'return)
716 (setq loop-result-explicit (or (cl-pop2 args) '(quote nil)))
717 (if (memq (car args) '(do doing)) (pop args))
718 (or (consp (car args)) (error "Syntax error on `finally' clause"))
719 (if (and (eq (caar args) 'return) (null loop-name))
720 (setq loop-result-explicit (or (nth 1 (pop args)) '(quote nil)))
721 (while (consp (car args))
722 (push (pop args) loop-finally)))))
724 ((memq word '(for as))
725 (let ((loop-for-bindings nil) (loop-for-sets nil) (loop-for-steps nil)
726 (ands nil))
727 (while
728 ;; Use `gensym' rather than `make-symbol'. It's important that
729 ;; (not (eq (symbol-name var1) (symbol-name var2))) because
730 ;; these vars get added to the cl-macro-environment.
731 (let ((var (or (pop args) (gensym "--cl-var--"))))
732 (setq word (pop args))
733 (if (eq word 'being) (setq word (pop args)))
734 (if (memq word '(the each)) (setq word (pop args)))
735 (if (memq word '(buffer buffers))
736 (setq word 'in args (cons '(buffer-list) args)))
737 (cond
739 ((memq word '(from downfrom upfrom to downto upto
740 above below by))
741 (push word args)
742 (if (memq (car args) '(downto above))
743 (error "Must specify `from' value for downward loop"))
744 (let* ((down (or (eq (car args) 'downfrom)
745 (memq (caddr args) '(downto above))))
746 (excl (or (memq (car args) '(above below))
747 (memq (caddr args) '(above below))))
748 (start (and (memq (car args) '(from upfrom downfrom))
749 (cl-pop2 args)))
750 (end (and (memq (car args)
751 '(to upto downto above below))
752 (cl-pop2 args)))
753 (step (and (eq (car args) 'by) (cl-pop2 args)))
754 (end-var (and (not (cl-const-expr-p end))
755 (make-symbol "--cl-var--")))
756 (step-var (and (not (cl-const-expr-p step))
757 (make-symbol "--cl-var--"))))
758 (and step (numberp step) (<= step 0)
759 (error "Loop `by' value is not positive: %s" step))
760 (push (list var (or start 0)) loop-for-bindings)
761 (if end-var (push (list end-var end) loop-for-bindings))
762 (if step-var (push (list step-var step)
763 loop-for-bindings))
764 (if end
765 (push (list
766 (if down (if excl '> '>=) (if excl '< '<=))
767 var (or end-var end)) loop-body))
768 (push (list var (list (if down '- '+) var
769 (or step-var step 1)))
770 loop-for-steps)))
772 ((memq word '(in in-ref on))
773 (let* ((on (eq word 'on))
774 (temp (if (and on (symbolp var))
775 var (make-symbol "--cl-var--"))))
776 (push (list temp (pop args)) loop-for-bindings)
777 (push (list 'consp temp) loop-body)
778 (if (eq word 'in-ref)
779 (push (list var (list 'car temp)) loop-symbol-macs)
780 (or (eq temp var)
781 (progn
782 (push (list var nil) loop-for-bindings)
783 (push (list var (if on temp (list 'car temp)))
784 loop-for-sets))))
785 (push (list temp
786 (if (eq (car args) 'by)
787 (let ((step (cl-pop2 args)))
788 (if (and (memq (car-safe step)
789 '(quote function
790 function*))
791 (symbolp (nth 1 step)))
792 (list (nth 1 step) temp)
793 (list 'funcall step temp)))
794 (list 'cdr temp)))
795 loop-for-steps)))
797 ((eq word '=)
798 (let* ((start (pop args))
799 (then (if (eq (car args) 'then) (cl-pop2 args) start)))
800 (push (list var nil) loop-for-bindings)
801 (if (or ands (eq (car args) 'and))
802 (progn
803 (push `(,var
804 (if ,(or loop-first-flag
805 (setq loop-first-flag
806 (make-symbol "--cl-var--")))
807 ,start ,var))
808 loop-for-sets)
809 (push (list var then) loop-for-steps))
810 (push (list var
811 (if (eq start then) start
812 `(if ,(or loop-first-flag
813 (setq loop-first-flag
814 (make-symbol "--cl-var--")))
815 ,start ,then)))
816 loop-for-sets))))
818 ((memq word '(across across-ref))
819 (let ((temp-vec (make-symbol "--cl-vec--"))
820 (temp-idx (make-symbol "--cl-idx--")))
821 (push (list temp-vec (pop args)) loop-for-bindings)
822 (push (list temp-idx -1) loop-for-bindings)
823 (push (list '< (list 'setq temp-idx (list '1+ temp-idx))
824 (list 'length temp-vec)) loop-body)
825 (if (eq word 'across-ref)
826 (push (list var (list 'aref temp-vec temp-idx))
827 loop-symbol-macs)
828 (push (list var nil) loop-for-bindings)
829 (push (list var (list 'aref temp-vec temp-idx))
830 loop-for-sets))))
832 ((memq word '(element elements))
833 (let ((ref (or (memq (car args) '(in-ref of-ref))
834 (and (not (memq (car args) '(in of)))
835 (error "Expected `of'"))))
836 (seq (cl-pop2 args))
837 (temp-seq (make-symbol "--cl-seq--"))
838 (temp-idx (if (eq (car args) 'using)
839 (if (and (= (length (cadr args)) 2)
840 (eq (caadr args) 'index))
841 (cadr (cl-pop2 args))
842 (error "Bad `using' clause"))
843 (make-symbol "--cl-idx--"))))
844 (push (list temp-seq seq) loop-for-bindings)
845 (push (list temp-idx 0) loop-for-bindings)
846 (if ref
847 (let ((temp-len (make-symbol "--cl-len--")))
848 (push (list temp-len (list 'length temp-seq))
849 loop-for-bindings)
850 (push (list var (list 'elt temp-seq temp-idx))
851 loop-symbol-macs)
852 (push (list '< temp-idx temp-len) loop-body))
853 (push (list var nil) loop-for-bindings)
854 (push (list 'and temp-seq
855 (list 'or (list 'consp temp-seq)
856 (list '< temp-idx
857 (list 'length temp-seq))))
858 loop-body)
859 (push (list var (list 'if (list 'consp temp-seq)
860 (list 'pop temp-seq)
861 (list 'aref temp-seq temp-idx)))
862 loop-for-sets))
863 (push (list temp-idx (list '1+ temp-idx))
864 loop-for-steps)))
866 ((memq word hash-types)
867 (or (memq (car args) '(in of)) (error "Expected `of'"))
868 (let* ((table (cl-pop2 args))
869 (other (if (eq (car args) 'using)
870 (if (and (= (length (cadr args)) 2)
871 (memq (caadr args) hash-types)
872 (not (eq (caadr args) word)))
873 (cadr (cl-pop2 args))
874 (error "Bad `using' clause"))
875 (make-symbol "--cl-var--"))))
876 (if (memq word '(hash-value hash-values))
877 (setq var (prog1 other (setq other var))))
878 (setq loop-map-form
879 `(maphash (lambda (,var ,other) . --cl-map) ,table))))
881 ((memq word '(symbol present-symbol external-symbol
882 symbols present-symbols external-symbols))
883 (let ((ob (and (memq (car args) '(in of)) (cl-pop2 args))))
884 (setq loop-map-form
885 `(mapatoms (lambda (,var) . --cl-map) ,ob))))
887 ((memq word '(overlay overlays extent extents))
888 (let ((buf nil) (from nil) (to nil))
889 (while (memq (car args) '(in of from to))
890 (cond ((eq (car args) 'from) (setq from (cl-pop2 args)))
891 ((eq (car args) 'to) (setq to (cl-pop2 args)))
892 (t (setq buf (cl-pop2 args)))))
893 (setq loop-map-form
894 `(cl-map-extents
895 (lambda (,var ,(make-symbol "--cl-var--"))
896 (progn . --cl-map) nil)
897 ,buf ,from ,to))))
899 ((memq word '(interval intervals))
900 (let ((buf nil) (prop nil) (from nil) (to nil)
901 (var1 (make-symbol "--cl-var1--"))
902 (var2 (make-symbol "--cl-var2--")))
903 (while (memq (car args) '(in of property from to))
904 (cond ((eq (car args) 'from) (setq from (cl-pop2 args)))
905 ((eq (car args) 'to) (setq to (cl-pop2 args)))
906 ((eq (car args) 'property)
907 (setq prop (cl-pop2 args)))
908 (t (setq buf (cl-pop2 args)))))
909 (if (and (consp var) (symbolp (car var)) (symbolp (cdr var)))
910 (setq var1 (car var) var2 (cdr var))
911 (push (list var (list 'cons var1 var2)) loop-for-sets))
912 (setq loop-map-form
913 `(cl-map-intervals
914 (lambda (,var1 ,var2) . --cl-map)
915 ,buf ,prop ,from ,to))))
917 ((memq word key-types)
918 (or (memq (car args) '(in of)) (error "Expected `of'"))
919 (let ((map (cl-pop2 args))
920 (other (if (eq (car args) 'using)
921 (if (and (= (length (cadr args)) 2)
922 (memq (caadr args) key-types)
923 (not (eq (caadr args) word)))
924 (cadr (cl-pop2 args))
925 (error "Bad `using' clause"))
926 (make-symbol "--cl-var--"))))
927 (if (memq word '(key-binding key-bindings))
928 (setq var (prog1 other (setq other var))))
929 (setq loop-map-form
930 `(,(if (memq word '(key-seq key-seqs))
931 'cl-map-keymap-recursively 'map-keymap)
932 (lambda (,var ,other) . --cl-map) ,map))))
934 ((memq word '(frame frames screen screens))
935 (let ((temp (make-symbol "--cl-var--")))
936 (push (list var '(selected-frame))
937 loop-for-bindings)
938 (push (list temp nil) loop-for-bindings)
939 (push (list 'prog1 (list 'not (list 'eq var temp))
940 (list 'or temp (list 'setq temp var)))
941 loop-body)
942 (push (list var (list 'next-frame var))
943 loop-for-steps)))
945 ((memq word '(window windows))
946 (let ((scr (and (memq (car args) '(in of)) (cl-pop2 args)))
947 (temp (make-symbol "--cl-var--")))
948 (push (list var (if scr
949 (list 'frame-selected-window scr)
950 '(selected-window)))
951 loop-for-bindings)
952 (push (list temp nil) loop-for-bindings)
953 (push (list 'prog1 (list 'not (list 'eq var temp))
954 (list 'or temp (list 'setq temp var)))
955 loop-body)
956 (push (list var (list 'next-window var)) loop-for-steps)))
959 (let ((handler (and (symbolp word)
960 (get word 'cl-loop-for-handler))))
961 (if handler
962 (funcall handler var)
963 (error "Expected a `for' preposition, found %s" word)))))
964 (eq (car args) 'and))
965 (setq ands t)
966 (pop args))
967 (if (and ands loop-for-bindings)
968 (push (nreverse loop-for-bindings) loop-bindings)
969 (setq loop-bindings (nconc (mapcar 'list loop-for-bindings)
970 loop-bindings)))
971 (if loop-for-sets
972 (push (list 'progn
973 (cl-loop-let (nreverse loop-for-sets) 'setq ands)
974 t) loop-body))
975 (if loop-for-steps
976 (push (cons (if ands 'psetq 'setq)
977 (apply 'append (nreverse loop-for-steps)))
978 loop-steps))))
980 ((eq word 'repeat)
981 (let ((temp (make-symbol "--cl-var--")))
982 (push (list (list temp (pop args))) loop-bindings)
983 (push (list '>= (list 'setq temp (list '1- temp)) 0) loop-body)))
985 ((memq word '(collect collecting))
986 (let ((what (pop args))
987 (var (cl-loop-handle-accum nil 'nreverse)))
988 (if (eq var loop-accum-var)
989 (push (list 'progn (list 'push what var) t) loop-body)
990 (push (list 'progn
991 (list 'setq var (list 'nconc var (list 'list what)))
992 t) loop-body))))
994 ((memq word '(nconc nconcing append appending))
995 (let ((what (pop args))
996 (var (cl-loop-handle-accum nil 'nreverse)))
997 (push (list 'progn
998 (list 'setq var
999 (if (eq var loop-accum-var)
1000 (list 'nconc
1001 (list (if (memq word '(nconc nconcing))
1002 'nreverse 'reverse)
1003 what)
1004 var)
1005 (list (if (memq word '(nconc nconcing))
1006 'nconc 'append)
1007 var what))) t) loop-body)))
1009 ((memq word '(concat concating))
1010 (let ((what (pop args))
1011 (var (cl-loop-handle-accum "")))
1012 (push (list 'progn (list 'callf 'concat var what) t) loop-body)))
1014 ((memq word '(vconcat vconcating))
1015 (let ((what (pop args))
1016 (var (cl-loop-handle-accum [])))
1017 (push (list 'progn (list 'callf 'vconcat var what) t) loop-body)))
1019 ((memq word '(sum summing))
1020 (let ((what (pop args))
1021 (var (cl-loop-handle-accum 0)))
1022 (push (list 'progn (list 'incf var what) t) loop-body)))
1024 ((memq word '(count counting))
1025 (let ((what (pop args))
1026 (var (cl-loop-handle-accum 0)))
1027 (push (list 'progn (list 'if what (list 'incf var)) t) loop-body)))
1029 ((memq word '(minimize minimizing maximize maximizing))
1030 (let* ((what (pop args))
1031 (temp (if (cl-simple-expr-p what) what (make-symbol "--cl-var--")))
1032 (var (cl-loop-handle-accum nil))
1033 (func (intern (substring (symbol-name word) 0 3)))
1034 (set (list 'setq var (list 'if var (list func var temp) temp))))
1035 (push (list 'progn (if (eq temp what) set
1036 (list 'let (list (list temp what)) set))
1037 t) loop-body)))
1039 ((eq word 'with)
1040 (let ((bindings nil))
1041 (while (progn (push (list (pop args)
1042 (and (eq (car args) '=) (cl-pop2 args)))
1043 bindings)
1044 (eq (car args) 'and))
1045 (pop args))
1046 (push (nreverse bindings) loop-bindings)))
1048 ((eq word 'while)
1049 (push (pop args) loop-body))
1051 ((eq word 'until)
1052 (push (list 'not (pop args)) loop-body))
1054 ((eq word 'always)
1055 (or loop-finish-flag (setq loop-finish-flag (make-symbol "--cl-flag--")))
1056 (push (list 'setq loop-finish-flag (pop args)) loop-body)
1057 (setq loop-result t))
1059 ((eq word 'never)
1060 (or loop-finish-flag (setq loop-finish-flag (make-symbol "--cl-flag--")))
1061 (push (list 'setq loop-finish-flag (list 'not (pop args)))
1062 loop-body)
1063 (setq loop-result t))
1065 ((eq word 'thereis)
1066 (or loop-finish-flag (setq loop-finish-flag (make-symbol "--cl-flag--")))
1067 (or loop-result-var (setq loop-result-var (make-symbol "--cl-var--")))
1068 (push (list 'setq loop-finish-flag
1069 (list 'not (list 'setq loop-result-var (pop args))))
1070 loop-body))
1072 ((memq word '(if when unless))
1073 (let* ((cond (pop args))
1074 (then (let ((loop-body nil))
1075 (cl-parse-loop-clause)
1076 (cl-loop-build-ands (nreverse loop-body))))
1077 (else (let ((loop-body nil))
1078 (if (eq (car args) 'else)
1079 (progn (pop args) (cl-parse-loop-clause)))
1080 (cl-loop-build-ands (nreverse loop-body))))
1081 (simple (and (eq (car then) t) (eq (car else) t))))
1082 (if (eq (car args) 'end) (pop args))
1083 (if (eq word 'unless) (setq then (prog1 else (setq else then))))
1084 (let ((form (cons (if simple (cons 'progn (nth 1 then)) (nth 2 then))
1085 (if simple (nth 1 else) (list (nth 2 else))))))
1086 (if (cl-expr-contains form 'it)
1087 (let ((temp (make-symbol "--cl-var--")))
1088 (push (list temp) loop-bindings)
1089 (setq form (list* 'if (list 'setq temp cond)
1090 (subst temp 'it form))))
1091 (setq form (list* 'if cond form)))
1092 (push (if simple (list 'progn form t) form) loop-body))))
1094 ((memq word '(do doing))
1095 (let ((body nil))
1096 (or (consp (car args)) (error "Syntax error on `do' clause"))
1097 (while (consp (car args)) (push (pop args) body))
1098 (push (cons 'progn (nreverse (cons t body))) loop-body)))
1100 ((eq word 'return)
1101 (or loop-finish-flag (setq loop-finish-flag (make-symbol "--cl-var--")))
1102 (or loop-result-var (setq loop-result-var (make-symbol "--cl-var--")))
1103 (push (list 'setq loop-result-var (pop args)
1104 loop-finish-flag nil) loop-body))
1107 (let ((handler (and (symbolp word) (get word 'cl-loop-handler))))
1108 (or handler (error "Expected a loop keyword, found %s" word))
1109 (funcall handler))))
1110 (if (eq (car args) 'and)
1111 (progn (pop args) (cl-parse-loop-clause)))))
1113 (defun cl-loop-let (specs body par) ; uses loop-*
1114 (let ((p specs) (temps nil) (new nil))
1115 (while (and p (or (symbolp (car-safe (car p))) (null (cadar p))))
1116 (setq p (cdr p)))
1117 (and par p
1118 (progn
1119 (setq par nil p specs)
1120 (while p
1121 (or (cl-const-expr-p (cadar p))
1122 (let ((temp (make-symbol "--cl-var--")))
1123 (push (list temp (cadar p)) temps)
1124 (setcar (cdar p) temp)))
1125 (setq p (cdr p)))))
1126 (while specs
1127 (if (and (consp (car specs)) (listp (caar specs)))
1128 (let* ((spec (caar specs)) (nspecs nil)
1129 (expr (cadr (pop specs)))
1130 (temp (cdr (or (assq spec loop-destr-temps)
1131 (car (push (cons spec (or (last spec 0)
1132 (make-symbol "--cl-var--")))
1133 loop-destr-temps))))))
1134 (push (list temp expr) new)
1135 (while (consp spec)
1136 (push (list (pop spec)
1137 (and expr (list (if spec 'pop 'car) temp)))
1138 nspecs))
1139 (setq specs (nconc (nreverse nspecs) specs)))
1140 (push (pop specs) new)))
1141 (if (eq body 'setq)
1142 (let ((set (cons (if par 'psetq 'setq) (apply 'nconc (nreverse new)))))
1143 (if temps (list 'let* (nreverse temps) set) set))
1144 (list* (if par 'let 'let*)
1145 (nconc (nreverse temps) (nreverse new)) body))))
1147 (defun cl-loop-handle-accum (def &optional func) ; uses args, loop-*
1148 (if (eq (car args) 'into)
1149 (let ((var (cl-pop2 args)))
1150 (or (memq var loop-accum-vars)
1151 (progn (push (list (list var def)) loop-bindings)
1152 (push var loop-accum-vars)))
1153 var)
1154 (or loop-accum-var
1155 (progn
1156 (push (list (list (setq loop-accum-var (make-symbol "--cl-var--")) def))
1157 loop-bindings)
1158 (setq loop-result (if func (list func loop-accum-var)
1159 loop-accum-var))
1160 loop-accum-var))))
1162 (defun cl-loop-build-ands (clauses)
1163 (let ((ands nil)
1164 (body nil))
1165 (while clauses
1166 (if (and (eq (car-safe (car clauses)) 'progn)
1167 (eq (car (last (car clauses))) t))
1168 (if (cdr clauses)
1169 (setq clauses (cons (nconc (butlast (car clauses))
1170 (if (eq (car-safe (cadr clauses))
1171 'progn)
1172 (cdadr clauses)
1173 (list (cadr clauses))))
1174 (cddr clauses)))
1175 (setq body (cdr (butlast (pop clauses)))))
1176 (push (pop clauses) ands)))
1177 (setq ands (or (nreverse ands) (list t)))
1178 (list (if (cdr ands) (cons 'and ands) (car ands))
1179 body
1180 (let ((full (if body
1181 (append ands (list (cons 'progn (append body '(t)))))
1182 ands)))
1183 (if (cdr full) (cons 'and full) (car full))))))
1186 ;;; Other iteration control structures.
1188 (defmacro do (steps endtest &rest body)
1189 "The Common Lisp `do' loop.
1191 \(fn ((VAR INIT [STEP])...) (END-TEST [RESULT...]) BODY...)"
1192 (cl-expand-do-loop steps endtest body nil))
1194 (defmacro do* (steps endtest &rest body)
1195 "The Common Lisp `do*' loop.
1197 \(fn ((VAR INIT [STEP])...) (END-TEST [RESULT...]) BODY...)"
1198 (cl-expand-do-loop steps endtest body t))
1200 (defun cl-expand-do-loop (steps endtest body star)
1201 (list 'block nil
1202 (list* (if star 'let* 'let)
1203 (mapcar (function (lambda (c)
1204 (if (consp c) (list (car c) (nth 1 c)) c)))
1205 steps)
1206 (list* 'while (list 'not (car endtest))
1207 (append body
1208 (let ((sets (mapcar
1209 (function
1210 (lambda (c)
1211 (and (consp c) (cdr (cdr c))
1212 (list (car c) (nth 2 c)))))
1213 steps)))
1214 (setq sets (delq nil sets))
1215 (and sets
1216 (list (cons (if (or star (not (cdr sets)))
1217 'setq 'psetq)
1218 (apply 'append sets)))))))
1219 (or (cdr endtest) '(nil)))))
1221 (defmacro dolist (spec &rest body)
1222 "Loop over a list.
1223 Evaluate BODY with VAR bound to each `car' from LIST, in turn.
1224 Then evaluate RESULT to get return value, default nil.
1226 \(fn (VAR LIST [RESULT]) BODY...)"
1227 (let ((temp (make-symbol "--cl-dolist-temp--")))
1228 (list 'block nil
1229 (list* 'let (list (list temp (nth 1 spec)) (car spec))
1230 (list* 'while temp (list 'setq (car spec) (list 'car temp))
1231 (append body (list (list 'setq temp
1232 (list 'cdr temp)))))
1233 (if (cdr (cdr spec))
1234 (cons (list 'setq (car spec) nil) (cdr (cdr spec)))
1235 '(nil))))))
1237 (defmacro dotimes (spec &rest body)
1238 "Loop a certain number of times.
1239 Evaluate BODY with VAR bound to successive integers from 0, inclusive,
1240 to COUNT, exclusive. Then evaluate RESULT to get return value, default
1241 nil.
1243 \(fn (VAR COUNT [RESULT]) BODY...)"
1244 (let ((temp (make-symbol "--cl-dotimes-temp--")))
1245 (list 'block nil
1246 (list* 'let (list (list temp (nth 1 spec)) (list (car spec) 0))
1247 (list* 'while (list '< (car spec) temp)
1248 (append body (list (list 'incf (car spec)))))
1249 (or (cdr (cdr spec)) '(nil))))))
1251 (defmacro do-symbols (spec &rest body)
1252 "Loop over all symbols.
1253 Evaluate BODY with VAR bound to each interned symbol, or to each symbol
1254 from OBARRAY.
1256 \(fn (VAR [OBARRAY [RESULT]]) BODY...)"
1257 ;; Apparently this doesn't have an implicit block.
1258 (list 'block nil
1259 (list 'let (list (car spec))
1260 (list* 'mapatoms
1261 (list 'function (list* 'lambda (list (car spec)) body))
1262 (and (cadr spec) (list (cadr spec))))
1263 (caddr spec))))
1265 (defmacro do-all-symbols (spec &rest body)
1266 (list* 'do-symbols (list (car spec) nil (cadr spec)) body))
1269 ;;; Assignments.
1271 (defmacro psetq (&rest args)
1272 "Set SYMs to the values VALs in parallel.
1273 This is like `setq', except that all VAL forms are evaluated (in order)
1274 before assigning any symbols SYM to the corresponding values.
1276 \(fn SYM VAL SYM VAL ...)"
1277 (cons 'psetf args))
1280 ;;; Binding control structures.
1282 (defmacro progv (symbols values &rest body)
1283 "Bind SYMBOLS to VALUES dynamically in BODY.
1284 The forms SYMBOLS and VALUES are evaluated, and must evaluate to lists.
1285 Each symbol in the first list is bound to the corresponding value in the
1286 second list (or made unbound if VALUES is shorter than SYMBOLS); then the
1287 BODY forms are executed and their result is returned. This is much like
1288 a `let' form, except that the list of symbols can be computed at run-time."
1289 (list 'let '((cl-progv-save nil))
1290 (list 'unwind-protect
1291 (list* 'progn (list 'cl-progv-before symbols values) body)
1292 '(cl-progv-after))))
1294 ;;; This should really have some way to shadow 'byte-compile properties, etc.
1295 (defmacro flet (bindings &rest body)
1296 "Make temporary function definitions.
1297 This is an analogue of `let' that operates on the function cell of FUNC
1298 rather than its value cell. The FORMs are evaluated with the specified
1299 function definitions in place, then the definitions are undone (the FUNCs
1300 go back to their previous definitions, or lack thereof).
1302 \(fn ((FUNC ARGLIST BODY...) ...) FORM...)"
1303 (list* 'letf*
1304 (mapcar
1305 (function
1306 (lambda (x)
1307 (if (or (and (fboundp (car x))
1308 (eq (car-safe (symbol-function (car x))) 'macro))
1309 (cdr (assq (car x) cl-macro-environment)))
1310 (error "Use `labels', not `flet', to rebind macro names"))
1311 (let ((func (list 'function*
1312 (list 'lambda (cadr x)
1313 (list* 'block (car x) (cddr x))))))
1314 (if (and (cl-compiling-file)
1315 (boundp 'byte-compile-function-environment))
1316 (push (cons (car x) (eval func))
1317 byte-compile-function-environment))
1318 (list (list 'symbol-function (list 'quote (car x))) func))))
1319 bindings)
1320 body))
1322 (defmacro labels (bindings &rest body)
1323 "Make temporary function bindings.
1324 This is like `flet', except the bindings are lexical instead of dynamic.
1325 Unlike `flet', this macro is fully compliant with the Common Lisp standard.
1327 \(fn ((FUNC ARGLIST BODY...) ...) FORM...)"
1328 (let ((vars nil) (sets nil) (cl-macro-environment cl-macro-environment))
1329 (while bindings
1330 ;; Use `gensym' rather than `make-symbol'. It's important that
1331 ;; (not (eq (symbol-name var1) (symbol-name var2))) because these
1332 ;; vars get added to the cl-macro-environment.
1333 (let ((var (gensym "--cl-var--")))
1334 (push var vars)
1335 (push (list 'function* (cons 'lambda (cdar bindings))) sets)
1336 (push var sets)
1337 (push (list (car (pop bindings)) 'lambda '(&rest cl-labels-args)
1338 (list 'list* '(quote funcall) (list 'quote var)
1339 'cl-labels-args))
1340 cl-macro-environment)))
1341 (cl-macroexpand-all (list* 'lexical-let vars (cons (cons 'setq sets) body))
1342 cl-macro-environment)))
1344 ;; The following ought to have a better definition for use with newer
1345 ;; byte compilers.
1346 (defmacro macrolet (bindings &rest body)
1347 "Make temporary macro definitions.
1348 This is like `flet', but for macros instead of functions.
1350 \(fn ((NAME ARGLIST BODY...) ...) FORM...)"
1351 (if (cdr bindings)
1352 (list 'macrolet
1353 (list (car bindings)) (list* 'macrolet (cdr bindings) body))
1354 (if (null bindings) (cons 'progn body)
1355 (let* ((name (caar bindings))
1356 (res (cl-transform-lambda (cdar bindings) name)))
1357 (eval (car res))
1358 (cl-macroexpand-all (cons 'progn body)
1359 (cons (list* name 'lambda (cdr res))
1360 cl-macro-environment))))))
1362 (defmacro symbol-macrolet (bindings &rest body)
1363 "Make symbol macro definitions.
1364 Within the body FORMs, references to the variable NAME will be replaced
1365 by EXPANSION, and (setq NAME ...) will act like (setf EXPANSION ...).
1367 \(fn ((NAME EXPANSION) ...) FORM...)"
1368 (if (cdr bindings)
1369 (list 'symbol-macrolet
1370 (list (car bindings)) (list* 'symbol-macrolet (cdr bindings) body))
1371 (if (null bindings) (cons 'progn body)
1372 (cl-macroexpand-all (cons 'progn body)
1373 (cons (list (symbol-name (caar bindings))
1374 (cadar bindings))
1375 cl-macro-environment)))))
1377 (defvar cl-closure-vars nil)
1378 (defmacro lexical-let (bindings &rest body)
1379 "Like `let', but lexically scoped.
1380 The main visible difference is that lambdas inside BODY will create
1381 lexical closures as in Common Lisp.
1382 \n(fn VARLIST BODY)"
1383 (let* ((cl-closure-vars cl-closure-vars)
1384 (vars (mapcar (function
1385 (lambda (x)
1386 (or (consp x) (setq x (list x)))
1387 (push (make-symbol (format "--cl-%s--" (car x)))
1388 cl-closure-vars)
1389 (set (car cl-closure-vars) [bad-lexical-ref])
1390 (list (car x) (cadr x) (car cl-closure-vars))))
1391 bindings))
1392 (ebody
1393 (cl-macroexpand-all
1394 (cons 'progn body)
1395 (nconc (mapcar (function (lambda (x)
1396 (list (symbol-name (car x))
1397 (list 'symbol-value (caddr x))
1398 t))) vars)
1399 (list '(defun . cl-defun-expander))
1400 cl-macro-environment))))
1401 (if (not (get (car (last cl-closure-vars)) 'used))
1402 (list 'let (mapcar (function (lambda (x)
1403 (list (caddr x) (cadr x)))) vars)
1404 (sublis (mapcar (function (lambda (x)
1405 (cons (caddr x)
1406 (list 'quote (caddr x)))))
1407 vars)
1408 ebody))
1409 (list 'let (mapcar (function (lambda (x)
1410 (list (caddr x)
1411 (list 'make-symbol
1412 (format "--%s--" (car x))))))
1413 vars)
1414 (apply 'append '(setf)
1415 (mapcar (function
1416 (lambda (x)
1417 (list (list 'symbol-value (caddr x)) (cadr x))))
1418 vars))
1419 ebody))))
1421 (defmacro lexical-let* (bindings &rest body)
1422 "Like `let*', but lexically scoped.
1423 The main visible difference is that lambdas inside BODY will create
1424 lexical closures as in Common Lisp.
1425 \n(fn VARLIST BODY)"
1426 (if (null bindings) (cons 'progn body)
1427 (setq bindings (reverse bindings))
1428 (while bindings
1429 (setq body (list (list* 'lexical-let (list (pop bindings)) body))))
1430 (car body)))
1432 (defun cl-defun-expander (func &rest rest)
1433 (list 'progn
1434 (list 'defalias (list 'quote func)
1435 (list 'function (cons 'lambda rest)))
1436 (list 'quote func)))
1439 ;;; Multiple values.
1441 (defmacro multiple-value-bind (vars form &rest body)
1442 "Collect multiple return values.
1443 FORM must return a list; the BODY is then executed with the first N elements
1444 of this list bound (`let'-style) to each of the symbols SYM in turn. This
1445 is analogous to the Common Lisp `multiple-value-bind' macro, using lists to
1446 simulate true multiple return values. For compatibility, (values A B C) is
1447 a synonym for (list A B C).
1449 \(fn (SYM...) FORM BODY)"
1450 (let ((temp (make-symbol "--cl-var--")) (n -1))
1451 (list* 'let* (cons (list temp form)
1452 (mapcar (function
1453 (lambda (v)
1454 (list v (list 'nth (setq n (1+ n)) temp))))
1455 vars))
1456 body)))
1458 (defmacro multiple-value-setq (vars form)
1459 "Collect multiple return values.
1460 FORM must return a list; the first N elements of this list are stored in
1461 each of the symbols SYM in turn. This is analogous to the Common Lisp
1462 `multiple-value-setq' macro, using lists to simulate true multiple return
1463 values. For compatibility, (values A B C) is a synonym for (list A B C).
1465 \(fn (SYM...) FORM)"
1466 (cond ((null vars) (list 'progn form nil))
1467 ((null (cdr vars)) (list 'setq (car vars) (list 'car form)))
1469 (let* ((temp (make-symbol "--cl-var--")) (n 0))
1470 (list 'let (list (list temp form))
1471 (list 'prog1 (list 'setq (pop vars) (list 'car temp))
1472 (cons 'setq (apply 'nconc
1473 (mapcar (function
1474 (lambda (v)
1475 (list v (list
1476 'nth
1477 (setq n (1+ n))
1478 temp))))
1479 vars)))))))))
1482 ;;; Declarations.
1484 (defmacro locally (&rest body) (cons 'progn body))
1485 (defmacro the (type form) form)
1487 (defvar cl-proclaim-history t) ; for future compilers
1488 (defvar cl-declare-stack t) ; for future compilers
1490 (defun cl-do-proclaim (spec hist)
1491 (and hist (listp cl-proclaim-history) (push spec cl-proclaim-history))
1492 (cond ((eq (car-safe spec) 'special)
1493 (if (boundp 'byte-compile-bound-variables)
1494 (setq byte-compile-bound-variables
1495 (append (cdr spec) byte-compile-bound-variables))))
1497 ((eq (car-safe spec) 'inline)
1498 (while (setq spec (cdr spec))
1499 (or (memq (get (car spec) 'byte-optimizer)
1500 '(nil byte-compile-inline-expand))
1501 (error "%s already has a byte-optimizer, can't make it inline"
1502 (car spec)))
1503 (put (car spec) 'byte-optimizer 'byte-compile-inline-expand)))
1505 ((eq (car-safe spec) 'notinline)
1506 (while (setq spec (cdr spec))
1507 (if (eq (get (car spec) 'byte-optimizer)
1508 'byte-compile-inline-expand)
1509 (put (car spec) 'byte-optimizer nil))))
1511 ((eq (car-safe spec) 'optimize)
1512 (let ((speed (assq (nth 1 (assq 'speed (cdr spec)))
1513 '((0 nil) (1 t) (2 t) (3 t))))
1514 (safety (assq (nth 1 (assq 'safety (cdr spec)))
1515 '((0 t) (1 t) (2 t) (3 nil)))))
1516 (if speed (setq cl-optimize-speed (car speed)
1517 byte-optimize (nth 1 speed)))
1518 (if safety (setq cl-optimize-safety (car safety)
1519 byte-compile-delete-errors (nth 1 safety)))))
1521 ((and (eq (car-safe spec) 'warn) (boundp 'byte-compile-warnings))
1522 (if (eq byte-compile-warnings t)
1523 (setq byte-compile-warnings byte-compile-warning-types))
1524 (while (setq spec (cdr spec))
1525 (if (consp (car spec))
1526 (if (eq (cadar spec) 0)
1527 (setq byte-compile-warnings
1528 (delq (caar spec) byte-compile-warnings))
1529 (setq byte-compile-warnings
1530 (adjoin (caar spec) byte-compile-warnings)))))))
1531 nil)
1533 ;;; Process any proclamations made before cl-macs was loaded.
1534 (defvar cl-proclaims-deferred)
1535 (let ((p (reverse cl-proclaims-deferred)))
1536 (while p (cl-do-proclaim (pop p) t))
1537 (setq cl-proclaims-deferred nil))
1539 (defmacro declare (&rest specs)
1540 (if (cl-compiling-file)
1541 (while specs
1542 (if (listp cl-declare-stack) (push (car specs) cl-declare-stack))
1543 (cl-do-proclaim (pop specs) nil)))
1544 nil)
1548 ;;; Generalized variables.
1550 (defmacro define-setf-method (func args &rest body)
1551 "Define a `setf' method.
1552 This method shows how to handle `setf's to places of the form (NAME ARGS...).
1553 The argument forms ARGS are bound according to ARGLIST, as if NAME were
1554 going to be expanded as a macro, then the BODY forms are executed and must
1555 return a list of five elements: a temporary-variables list, a value-forms
1556 list, a store-variables list (of length one), a store-form, and an access-
1557 form. See `defsetf' for a simpler way to define most setf-methods.
1559 \(fn NAME ARGLIST BODY...)"
1560 (append '(eval-when (compile load eval))
1561 (if (stringp (car body))
1562 (list (list 'put (list 'quote func) '(quote setf-documentation)
1563 (pop body))))
1564 (list (cl-transform-function-property
1565 func 'setf-method (cons args body)))))
1566 (defalias 'define-setf-expander 'define-setf-method)
1568 (defmacro defsetf (func arg1 &rest args)
1569 "(defsetf NAME FUNC): define a `setf' method.
1570 This macro is an easy-to-use substitute for `define-setf-method' that works
1571 well for simple place forms. In the simple `defsetf' form, `setf's of
1572 the form (setf (NAME ARGS...) VAL) are transformed to function or macro
1573 calls of the form (FUNC ARGS... VAL). Example:
1575 (defsetf aref aset)
1577 Alternate form: (defsetf NAME ARGLIST (STORE) BODY...).
1578 Here, the above `setf' call is expanded by binding the argument forms ARGS
1579 according to ARGLIST, binding the value form VAL to STORE, then executing
1580 BODY, which must return a Lisp form that does the necessary `setf' operation.
1581 Actually, ARGLIST and STORE may be bound to temporary variables which are
1582 introduced automatically to preserve proper execution order of the arguments.
1583 Example:
1585 (defsetf nth (n x) (v) (list 'setcar (list 'nthcdr n x) v))
1587 \(fn NAME [FUNC | ARGLIST (STORE) BODY...])"
1588 (if (listp arg1)
1589 (let* ((largs nil) (largsr nil)
1590 (temps nil) (tempsr nil)
1591 (restarg nil) (rest-temps nil)
1592 (store-var (car (prog1 (car args) (setq args (cdr args)))))
1593 (store-temp (intern (format "--%s--temp--" store-var)))
1594 (lets1 nil) (lets2 nil)
1595 (docstr nil) (p arg1))
1596 (if (stringp (car args))
1597 (setq docstr (prog1 (car args) (setq args (cdr args)))))
1598 (while (and p (not (eq (car p) '&aux)))
1599 (if (eq (car p) '&rest)
1600 (setq p (cdr p) restarg (car p))
1601 (or (memq (car p) '(&optional &key &allow-other-keys))
1602 (setq largs (cons (if (consp (car p)) (car (car p)) (car p))
1603 largs)
1604 temps (cons (intern (format "--%s--temp--" (car largs)))
1605 temps))))
1606 (setq p (cdr p)))
1607 (setq largs (nreverse largs) temps (nreverse temps))
1608 (if restarg
1609 (setq largsr (append largs (list restarg))
1610 rest-temps (intern (format "--%s--temp--" restarg))
1611 tempsr (append temps (list rest-temps)))
1612 (setq largsr largs tempsr temps))
1613 (let ((p1 largs) (p2 temps))
1614 (while p1
1615 (setq lets1 (cons `(,(car p2)
1616 (make-symbol ,(format "--cl-%s--" (car p1))))
1617 lets1)
1618 lets2 (cons (list (car p1) (car p2)) lets2)
1619 p1 (cdr p1) p2 (cdr p2))))
1620 (if restarg (setq lets2 (cons (list restarg rest-temps) lets2)))
1621 `(define-setf-method ,func ,arg1
1622 ,@(and docstr (list docstr))
1623 (let*
1624 ,(nreverse
1625 (cons `(,store-temp
1626 (make-symbol ,(format "--cl-%s--" store-var)))
1627 (if restarg
1628 `((,rest-temps
1629 (mapcar (lambda (_) (make-symbol "--cl-var--"))
1630 ,restarg))
1631 ,@lets1)
1632 lets1)))
1633 (list ; 'values
1634 (,(if restarg 'list* 'list) ,@tempsr)
1635 (,(if restarg 'list* 'list) ,@largsr)
1636 (list ,store-temp)
1637 (let*
1638 ,(nreverse
1639 (cons (list store-var store-temp)
1640 lets2))
1641 ,@args)
1642 (,(if restarg 'list* 'list)
1643 ,@(cons (list 'quote func) tempsr))))))
1644 `(defsetf ,func (&rest args) (store)
1645 ,(let ((call `(cons ',arg1
1646 (append args (list store)))))
1647 (if (car args)
1648 `(list 'progn ,call store)
1649 call)))))
1651 ;;; Some standard place types from Common Lisp.
1652 (defsetf aref aset)
1653 (defsetf car setcar)
1654 (defsetf cdr setcdr)
1655 (defsetf caar (x) (val) (list 'setcar (list 'car x) val))
1656 (defsetf cadr (x) (val) (list 'setcar (list 'cdr x) val))
1657 (defsetf cdar (x) (val) (list 'setcdr (list 'car x) val))
1658 (defsetf cddr (x) (val) (list 'setcdr (list 'cdr x) val))
1659 (defsetf elt (seq n) (store)
1660 (list 'if (list 'listp seq) (list 'setcar (list 'nthcdr n seq) store)
1661 (list 'aset seq n store)))
1662 (defsetf get put)
1663 (defsetf get* (x y &optional d) (store) (list 'put x y store))
1664 (defsetf gethash (x h &optional d) (store) (list 'puthash x store h))
1665 (defsetf nth (n x) (store) (list 'setcar (list 'nthcdr n x) store))
1666 (defsetf subseq (seq start &optional end) (new)
1667 (list 'progn (list 'replace seq new :start1 start :end1 end) new))
1668 (defsetf symbol-function fset)
1669 (defsetf symbol-plist setplist)
1670 (defsetf symbol-value set)
1672 ;;; Various car/cdr aliases. Note that `cadr' is handled specially.
1673 (defsetf first setcar)
1674 (defsetf second (x) (store) (list 'setcar (list 'cdr x) store))
1675 (defsetf third (x) (store) (list 'setcar (list 'cddr x) store))
1676 (defsetf fourth (x) (store) (list 'setcar (list 'cdddr x) store))
1677 (defsetf fifth (x) (store) (list 'setcar (list 'nthcdr 4 x) store))
1678 (defsetf sixth (x) (store) (list 'setcar (list 'nthcdr 5 x) store))
1679 (defsetf seventh (x) (store) (list 'setcar (list 'nthcdr 6 x) store))
1680 (defsetf eighth (x) (store) (list 'setcar (list 'nthcdr 7 x) store))
1681 (defsetf ninth (x) (store) (list 'setcar (list 'nthcdr 8 x) store))
1682 (defsetf tenth (x) (store) (list 'setcar (list 'nthcdr 9 x) store))
1683 (defsetf rest setcdr)
1685 ;;; Some more Emacs-related place types.
1686 (defsetf buffer-file-name set-visited-file-name t)
1687 (defsetf buffer-modified-p (&optional buf) (flag)
1688 (list 'with-current-buffer buf
1689 (list 'set-buffer-modified-p flag)))
1690 (defsetf buffer-name rename-buffer t)
1691 (defsetf buffer-string () (store)
1692 (list 'progn '(erase-buffer) (list 'insert store)))
1693 (defsetf buffer-substring cl-set-buffer-substring)
1694 (defsetf current-buffer set-buffer)
1695 (defsetf current-case-table set-case-table)
1696 (defsetf current-column move-to-column t)
1697 (defsetf current-global-map use-global-map t)
1698 (defsetf current-input-mode () (store)
1699 (list 'progn (list 'apply 'set-input-mode store) store))
1700 (defsetf current-local-map use-local-map t)
1701 (defsetf current-window-configuration set-window-configuration t)
1702 (defsetf default-file-modes set-default-file-modes t)
1703 (defsetf default-value set-default)
1704 (defsetf documentation-property put)
1705 (defsetf extent-data set-extent-data)
1706 (defsetf extent-face set-extent-face)
1707 (defsetf extent-priority set-extent-priority)
1708 (defsetf extent-end-position (ext) (store)
1709 (list 'progn (list 'set-extent-endpoints (list 'extent-start-position ext)
1710 store) store))
1711 (defsetf extent-start-position (ext) (store)
1712 (list 'progn (list 'set-extent-endpoints store
1713 (list 'extent-end-position ext)) store))
1714 (defsetf face-background (f &optional s) (x) (list 'set-face-background f x s))
1715 (defsetf face-background-pixmap (f &optional s) (x)
1716 (list 'set-face-background-pixmap f x s))
1717 (defsetf face-font (f &optional s) (x) (list 'set-face-font f x s))
1718 (defsetf face-foreground (f &optional s) (x) (list 'set-face-foreground f x s))
1719 (defsetf face-underline-p (f &optional s) (x)
1720 (list 'set-face-underline-p f x s))
1721 (defsetf file-modes set-file-modes t)
1722 (defsetf frame-height set-screen-height t)
1723 (defsetf frame-parameters modify-frame-parameters t)
1724 (defsetf frame-visible-p cl-set-frame-visible-p)
1725 (defsetf frame-width set-screen-width t)
1726 (defsetf frame-parameter set-frame-parameter)
1727 (defsetf getenv setenv t)
1728 (defsetf get-register set-register)
1729 (defsetf global-key-binding global-set-key)
1730 (defsetf keymap-parent set-keymap-parent)
1731 (defsetf local-key-binding local-set-key)
1732 (defsetf mark set-mark t)
1733 (defsetf mark-marker set-mark t)
1734 (defsetf marker-position set-marker t)
1735 (defsetf match-data set-match-data t)
1736 (defsetf mouse-position (scr) (store)
1737 (list 'set-mouse-position scr (list 'car store) (list 'cadr store)
1738 (list 'cddr store)))
1739 (defsetf overlay-get overlay-put)
1740 (defsetf overlay-start (ov) (store)
1741 (list 'progn (list 'move-overlay ov store (list 'overlay-end ov)) store))
1742 (defsetf overlay-end (ov) (store)
1743 (list 'progn (list 'move-overlay ov (list 'overlay-start ov) store) store))
1744 (defsetf point goto-char)
1745 (defsetf point-marker goto-char t)
1746 (defsetf point-max () (store)
1747 (list 'progn (list 'narrow-to-region '(point-min) store) store))
1748 (defsetf point-min () (store)
1749 (list 'progn (list 'narrow-to-region store '(point-max)) store))
1750 (defsetf process-buffer set-process-buffer)
1751 (defsetf process-filter set-process-filter)
1752 (defsetf process-sentinel set-process-sentinel)
1753 (defsetf process-get process-put)
1754 (defsetf read-mouse-position (scr) (store)
1755 (list 'set-mouse-position scr (list 'car store) (list 'cdr store)))
1756 (defsetf screen-height set-screen-height t)
1757 (defsetf screen-width set-screen-width t)
1758 (defsetf selected-window select-window)
1759 (defsetf selected-screen select-screen)
1760 (defsetf selected-frame select-frame)
1761 (defsetf standard-case-table set-standard-case-table)
1762 (defsetf syntax-table set-syntax-table)
1763 (defsetf visited-file-modtime set-visited-file-modtime t)
1764 (defsetf window-buffer set-window-buffer t)
1765 (defsetf window-display-table set-window-display-table t)
1766 (defsetf window-dedicated-p set-window-dedicated-p t)
1767 (defsetf window-height () (store)
1768 (list 'progn (list 'enlarge-window (list '- store '(window-height))) store))
1769 (defsetf window-hscroll set-window-hscroll)
1770 (defsetf window-point set-window-point)
1771 (defsetf window-start set-window-start)
1772 (defsetf window-width () (store)
1773 (list 'progn (list 'enlarge-window (list '- store '(window-width)) t) store))
1774 (defsetf x-get-cutbuffer x-store-cutbuffer t)
1775 (defsetf x-get-cut-buffer x-store-cut-buffer t) ; groan.
1776 (defsetf x-get-secondary-selection x-own-secondary-selection t)
1777 (defsetf x-get-selection x-own-selection t)
1779 ;;; More complex setf-methods.
1780 ;;; These should take &environment arguments, but since full arglists aren't
1781 ;;; available while compiling cl-macs, we fake it by referring to the global
1782 ;;; variable cl-macro-environment directly.
1784 (define-setf-method apply (func arg1 &rest rest)
1785 (or (and (memq (car-safe func) '(quote function function*))
1786 (symbolp (car-safe (cdr-safe func))))
1787 (error "First arg to apply in setf is not (function SYM): %s" func))
1788 (let* ((form (cons (nth 1 func) (cons arg1 rest)))
1789 (method (get-setf-method form cl-macro-environment)))
1790 (list (car method) (nth 1 method) (nth 2 method)
1791 (cl-setf-make-apply (nth 3 method) (cadr func) (car method))
1792 (cl-setf-make-apply (nth 4 method) (cadr func) (car method)))))
1794 (defun cl-setf-make-apply (form func temps)
1795 (if (eq (car form) 'progn)
1796 (list* 'progn (cl-setf-make-apply (cadr form) func temps) (cddr form))
1797 (or (equal (last form) (last temps))
1798 (error "%s is not suitable for use with setf-of-apply" func))
1799 (list* 'apply (list 'quote (car form)) (cdr form))))
1801 (define-setf-method nthcdr (n place)
1802 (let ((method (get-setf-method place cl-macro-environment))
1803 (n-temp (make-symbol "--cl-nthcdr-n--"))
1804 (store-temp (make-symbol "--cl-nthcdr-store--")))
1805 (list (cons n-temp (car method))
1806 (cons n (nth 1 method))
1807 (list store-temp)
1808 (list 'let (list (list (car (nth 2 method))
1809 (list 'cl-set-nthcdr n-temp (nth 4 method)
1810 store-temp)))
1811 (nth 3 method) store-temp)
1812 (list 'nthcdr n-temp (nth 4 method)))))
1814 (define-setf-method getf (place tag &optional def)
1815 (let ((method (get-setf-method place cl-macro-environment))
1816 (tag-temp (make-symbol "--cl-getf-tag--"))
1817 (def-temp (make-symbol "--cl-getf-def--"))
1818 (store-temp (make-symbol "--cl-getf-store--")))
1819 (list (append (car method) (list tag-temp def-temp))
1820 (append (nth 1 method) (list tag def))
1821 (list store-temp)
1822 (list 'let (list (list (car (nth 2 method))
1823 (list 'cl-set-getf (nth 4 method)
1824 tag-temp store-temp)))
1825 (nth 3 method) store-temp)
1826 (list 'getf (nth 4 method) tag-temp def-temp))))
1828 (define-setf-method substring (place from &optional to)
1829 (let ((method (get-setf-method place cl-macro-environment))
1830 (from-temp (make-symbol "--cl-substring-from--"))
1831 (to-temp (make-symbol "--cl-substring-to--"))
1832 (store-temp (make-symbol "--cl-substring-store--")))
1833 (list (append (car method) (list from-temp to-temp))
1834 (append (nth 1 method) (list from to))
1835 (list store-temp)
1836 (list 'let (list (list (car (nth 2 method))
1837 (list 'cl-set-substring (nth 4 method)
1838 from-temp to-temp store-temp)))
1839 (nth 3 method) store-temp)
1840 (list 'substring (nth 4 method) from-temp to-temp))))
1842 ;;; Getting and optimizing setf-methods.
1843 (defun get-setf-method (place &optional env)
1844 "Return a list of five values describing the setf-method for PLACE.
1845 PLACE may be any Lisp form which can appear as the PLACE argument to
1846 a macro like `setf' or `incf'."
1847 (if (symbolp place)
1848 (let ((temp (make-symbol "--cl-setf--")))
1849 (list nil nil (list temp) (list 'setq place temp) place))
1850 (or (and (symbolp (car place))
1851 (let* ((func (car place))
1852 (name (symbol-name func))
1853 (method (get func 'setf-method))
1854 (case-fold-search nil))
1855 (or (and method
1856 (let ((cl-macro-environment env))
1857 (setq method (apply method (cdr place))))
1858 (if (and (consp method) (= (length method) 5))
1859 method
1860 (error "Setf-method for %s returns malformed method"
1861 func)))
1862 (and (save-match-data
1863 (string-match "\\`c[ad][ad][ad]?[ad]?r\\'" name))
1864 (get-setf-method (compiler-macroexpand place)))
1865 (and (eq func 'edebug-after)
1866 (get-setf-method (nth (1- (length place)) place)
1867 env)))))
1868 (if (eq place (setq place (macroexpand place env)))
1869 (if (and (symbolp (car place)) (fboundp (car place))
1870 (symbolp (symbol-function (car place))))
1871 (get-setf-method (cons (symbol-function (car place))
1872 (cdr place)) env)
1873 (error "No setf-method known for %s" (car place)))
1874 (get-setf-method place env)))))
1876 (defun cl-setf-do-modify (place opt-expr)
1877 (let* ((method (get-setf-method place cl-macro-environment))
1878 (temps (car method)) (values (nth 1 method))
1879 (lets nil) (subs nil)
1880 (optimize (and (not (eq opt-expr 'no-opt))
1881 (or (and (not (eq opt-expr 'unsafe))
1882 (cl-safe-expr-p opt-expr))
1883 (cl-setf-simple-store-p (car (nth 2 method))
1884 (nth 3 method)))))
1885 (simple (and optimize (consp place) (cl-simple-exprs-p (cdr place)))))
1886 (while values
1887 (if (or simple (cl-const-expr-p (car values)))
1888 (push (cons (pop temps) (pop values)) subs)
1889 (push (list (pop temps) (pop values)) lets)))
1890 (list (nreverse lets)
1891 (cons (car (nth 2 method)) (sublis subs (nth 3 method)))
1892 (sublis subs (nth 4 method)))))
1894 (defun cl-setf-do-store (spec val)
1895 (let ((sym (car spec))
1896 (form (cdr spec)))
1897 (if (or (cl-const-expr-p val)
1898 (and (cl-simple-expr-p val) (eq (cl-expr-contains form sym) 1))
1899 (cl-setf-simple-store-p sym form))
1900 (subst val sym form)
1901 (list 'let (list (list sym val)) form))))
1903 (defun cl-setf-simple-store-p (sym form)
1904 (and (consp form) (eq (cl-expr-contains form sym) 1)
1905 (eq (nth (1- (length form)) form) sym)
1906 (symbolp (car form)) (fboundp (car form))
1907 (not (eq (car-safe (symbol-function (car form))) 'macro))))
1909 ;;; The standard modify macros.
1910 (defmacro setf (&rest args)
1911 "Set each PLACE to the value of its VAL.
1912 This is a generalized version of `setq'; the PLACEs may be symbolic
1913 references such as (car x) or (aref x i), as well as plain symbols.
1914 For example, (setf (cadar x) y) is equivalent to (setcar (cdar x) y).
1915 The return value is the last VAL in the list.
1917 \(fn PLACE VAL PLACE VAL ...)"
1918 (if (cdr (cdr args))
1919 (let ((sets nil))
1920 (while args (push (list 'setf (pop args) (pop args)) sets))
1921 (cons 'progn (nreverse sets)))
1922 (if (symbolp (car args))
1923 (and args (cons 'setq args))
1924 (let* ((method (cl-setf-do-modify (car args) (nth 1 args)))
1925 (store (cl-setf-do-store (nth 1 method) (nth 1 args))))
1926 (if (car method) (list 'let* (car method) store) store)))))
1928 (defmacro psetf (&rest args)
1929 "Set PLACEs to the values VALs in parallel.
1930 This is like `setf', except that all VAL forms are evaluated (in order)
1931 before assigning any PLACEs to the corresponding values.
1933 \(fn PLACE VAL PLACE VAL ...)"
1934 (let ((p args) (simple t) (vars nil))
1935 (while p
1936 (if (or (not (symbolp (car p))) (cl-expr-depends-p (nth 1 p) vars))
1937 (setq simple nil))
1938 (if (memq (car p) vars)
1939 (error "Destination duplicated in psetf: %s" (car p)))
1940 (push (pop p) vars)
1941 (or p (error "Odd number of arguments to psetf"))
1942 (pop p))
1943 (if simple
1944 (list 'progn (cons 'setf args) nil)
1945 (setq args (reverse args))
1946 (let ((expr (list 'setf (cadr args) (car args))))
1947 (while (setq args (cddr args))
1948 (setq expr (list 'setf (cadr args) (list 'prog1 (car args) expr))))
1949 (list 'progn expr nil)))))
1951 (defun cl-do-pop (place)
1952 (if (cl-simple-expr-p place)
1953 (list 'prog1 (list 'car place) (list 'setf place (list 'cdr place)))
1954 (let* ((method (cl-setf-do-modify place t))
1955 (temp (make-symbol "--cl-pop--")))
1956 (list 'let*
1957 (append (car method)
1958 (list (list temp (nth 2 method))))
1959 (list 'prog1
1960 (list 'car temp)
1961 (cl-setf-do-store (nth 1 method) (list 'cdr temp)))))))
1963 (defmacro remf (place tag)
1964 "Remove TAG from property list PLACE.
1965 PLACE may be a symbol, or any generalized variable allowed by `setf'.
1966 The form returns true if TAG was found and removed, nil otherwise."
1967 (let* ((method (cl-setf-do-modify place t))
1968 (tag-temp (and (not (cl-const-expr-p tag)) (make-symbol "--cl-remf-tag--")))
1969 (val-temp (and (not (cl-simple-expr-p place))
1970 (make-symbol "--cl-remf-place--")))
1971 (ttag (or tag-temp tag))
1972 (tval (or val-temp (nth 2 method))))
1973 (list 'let*
1974 (append (car method)
1975 (and val-temp (list (list val-temp (nth 2 method))))
1976 (and tag-temp (list (list tag-temp tag))))
1977 (list 'if (list 'eq ttag (list 'car tval))
1978 (list 'progn
1979 (cl-setf-do-store (nth 1 method) (list 'cddr tval))
1981 (list 'cl-do-remf tval ttag)))))
1983 (defmacro shiftf (place &rest args)
1984 "Shift left among PLACEs.
1985 Example: (shiftf A B C) sets A to B, B to C, and returns the old A.
1986 Each PLACE may be a symbol, or any generalized variable allowed by `setf'.
1988 \(fn PLACE... VAL)"
1989 (cond
1990 ((null args) place)
1991 ((symbolp place) `(prog1 ,place (setq ,place (shiftf ,@args))))
1993 (let ((method (cl-setf-do-modify place 'unsafe)))
1994 `(let* ,(car method)
1995 (prog1 ,(nth 2 method)
1996 ,(cl-setf-do-store (nth 1 method) `(shiftf ,@args))))))))
1998 (defmacro rotatef (&rest args)
1999 "Rotate left among PLACEs.
2000 Example: (rotatef A B C) sets A to B, B to C, and C to A. It returns nil.
2001 Each PLACE may be a symbol, or any generalized variable allowed by `setf'.
2003 \(fn PLACE...)"
2004 (if (not (memq nil (mapcar 'symbolp args)))
2005 (and (cdr args)
2006 (let ((sets nil)
2007 (first (car args)))
2008 (while (cdr args)
2009 (setq sets (nconc sets (list (pop args) (car args)))))
2010 (nconc (list 'psetf) sets (list (car args) first))))
2011 (let* ((places (reverse args))
2012 (temp (make-symbol "--cl-rotatef--"))
2013 (form temp))
2014 (while (cdr places)
2015 (let ((method (cl-setf-do-modify (pop places) 'unsafe)))
2016 (setq form (list 'let* (car method)
2017 (list 'prog1 (nth 2 method)
2018 (cl-setf-do-store (nth 1 method) form))))))
2019 (let ((method (cl-setf-do-modify (car places) 'unsafe)))
2020 (list 'let* (append (car method) (list (list temp (nth 2 method))))
2021 (cl-setf-do-store (nth 1 method) form) nil)))))
2023 (defmacro letf (bindings &rest body)
2024 "Temporarily bind to PLACEs.
2025 This is the analogue of `let', but with generalized variables (in the
2026 sense of `setf') for the PLACEs. Each PLACE is set to the corresponding
2027 VALUE, then the BODY forms are executed. On exit, either normally or
2028 because of a `throw' or error, the PLACEs are set back to their original
2029 values. Note that this macro is *not* available in Common Lisp.
2030 As a special case, if `(PLACE)' is used instead of `(PLACE VALUE)',
2031 the PLACE is not modified before executing BODY.
2033 \(fn ((PLACE VALUE) ...) BODY...)"
2034 (if (and (not (cdr bindings)) (cdar bindings) (symbolp (caar bindings)))
2035 (list* 'let bindings body)
2036 (let ((lets nil) (sets nil)
2037 (unsets nil) (rev (reverse bindings)))
2038 (while rev
2039 (let* ((place (if (symbolp (caar rev))
2040 (list 'symbol-value (list 'quote (caar rev)))
2041 (caar rev)))
2042 (value (cadar rev))
2043 (method (cl-setf-do-modify place 'no-opt))
2044 (save (make-symbol "--cl-letf-save--"))
2045 (bound (and (memq (car place) '(symbol-value symbol-function))
2046 (make-symbol "--cl-letf-bound--")))
2047 (temp (and (not (cl-const-expr-p value)) (cdr bindings)
2048 (make-symbol "--cl-letf-val--"))))
2049 (setq lets (nconc (car method)
2050 (if bound
2051 (list (list bound
2052 (list (if (eq (car place)
2053 'symbol-value)
2054 'boundp 'fboundp)
2055 (nth 1 (nth 2 method))))
2056 (list save (list 'and bound
2057 (nth 2 method))))
2058 (list (list save (nth 2 method))))
2059 (and temp (list (list temp value)))
2060 lets)
2061 body (list
2062 (list 'unwind-protect
2063 (cons 'progn
2064 (if (cdr (car rev))
2065 (cons (cl-setf-do-store (nth 1 method)
2066 (or temp value))
2067 body)
2068 body))
2069 (if bound
2070 (list 'if bound
2071 (cl-setf-do-store (nth 1 method) save)
2072 (list (if (eq (car place) 'symbol-value)
2073 'makunbound 'fmakunbound)
2074 (nth 1 (nth 2 method))))
2075 (cl-setf-do-store (nth 1 method) save))))
2076 rev (cdr rev))))
2077 (list* 'let* lets body))))
2079 (defmacro letf* (bindings &rest body)
2080 "Temporarily bind to PLACEs.
2081 This is the analogue of `let*', but with generalized variables (in the
2082 sense of `setf') for the PLACEs. Each PLACE is set to the corresponding
2083 VALUE, then the BODY forms are executed. On exit, either normally or
2084 because of a `throw' or error, the PLACEs are set back to their original
2085 values. Note that this macro is *not* available in Common Lisp.
2086 As a special case, if `(PLACE)' is used instead of `(PLACE VALUE)',
2087 the PLACE is not modified before executing BODY.
2089 \(fn ((PLACE VALUE) ...) BODY...)"
2090 (if (null bindings)
2091 (cons 'progn body)
2092 (setq bindings (reverse bindings))
2093 (while bindings
2094 (setq body (list (list* 'letf (list (pop bindings)) body))))
2095 (car body)))
2097 (defmacro callf (func place &rest args)
2098 "Set PLACE to (FUNC PLACE ARGS...).
2099 FUNC should be an unquoted function name. PLACE may be a symbol,
2100 or any generalized variable allowed by `setf'.
2102 \(fn FUNC PLACE ARGS...)"
2103 (let* ((method (cl-setf-do-modify place (cons 'list args)))
2104 (rargs (cons (nth 2 method) args)))
2105 (list 'let* (car method)
2106 (cl-setf-do-store (nth 1 method)
2107 (if (symbolp func) (cons func rargs)
2108 (list* 'funcall (list 'function func)
2109 rargs))))))
2111 (defmacro callf2 (func arg1 place &rest args)
2112 "Set PLACE to (FUNC ARG1 PLACE ARGS...).
2113 Like `callf', but PLACE is the second argument of FUNC, not the first.
2115 \(fn FUNC ARG1 PLACE ARGS...)"
2116 (if (and (cl-safe-expr-p arg1) (cl-simple-expr-p place) (symbolp func))
2117 (list 'setf place (list* func arg1 place args))
2118 (let* ((method (cl-setf-do-modify place (cons 'list args)))
2119 (temp (and (not (cl-const-expr-p arg1)) (make-symbol "--cl-arg1--")))
2120 (rargs (list* (or temp arg1) (nth 2 method) args)))
2121 (list 'let* (append (and temp (list (list temp arg1))) (car method))
2122 (cl-setf-do-store (nth 1 method)
2123 (if (symbolp func) (cons func rargs)
2124 (list* 'funcall (list 'function func)
2125 rargs)))))))
2127 (defmacro define-modify-macro (name arglist func &optional doc)
2128 "Define a `setf'-like modify macro.
2129 If NAME is called, it combines its PLACE argument with the other arguments
2130 from ARGLIST using FUNC: (define-modify-macro incf (&optional (n 1)) +)"
2131 (if (memq '&key arglist) (error "&key not allowed in define-modify-macro"))
2132 (let ((place (make-symbol "--cl-place--")))
2133 (list 'defmacro* name (cons place arglist) doc
2134 (list* (if (memq '&rest arglist) 'list* 'list)
2135 '(quote callf) (list 'quote func) place
2136 (cl-arglist-args arglist)))))
2139 ;;; Structures.
2141 (defmacro defstruct (struct &rest descs)
2142 "Define a struct type.
2143 This macro defines a new Lisp data type called NAME, which contains data
2144 stored in SLOTs. This defines a `make-NAME' constructor, a `copy-NAME'
2145 copier, a `NAME-p' predicate, and setf-able `NAME-SLOT' accessors.
2147 \(fn (NAME OPTIONS...) (SLOT SLOT-OPTS...)...)"
2148 (let* ((name (if (consp struct) (car struct) struct))
2149 (opts (cdr-safe struct))
2150 (slots nil)
2151 (defaults nil)
2152 (conc-name (concat (symbol-name name) "-"))
2153 (constructor (intern (format "make-%s" name)))
2154 (constrs nil)
2155 (copier (intern (format "copy-%s" name)))
2156 (predicate (intern (format "%s-p" name)))
2157 (print-func nil) (print-auto nil)
2158 (safety (if (cl-compiling-file) cl-optimize-safety 3))
2159 (include nil)
2160 (tag (intern (format "cl-struct-%s" name)))
2161 (tag-symbol (intern (format "cl-struct-%s-tags" name)))
2162 (include-descs nil)
2163 (side-eff nil)
2164 (type nil)
2165 (named nil)
2166 (forms nil)
2167 pred-form pred-check)
2168 (if (stringp (car descs))
2169 (push (list 'put (list 'quote name) '(quote structure-documentation)
2170 (pop descs)) forms))
2171 (setq descs (cons '(cl-tag-slot)
2172 (mapcar (function (lambda (x) (if (consp x) x (list x))))
2173 descs)))
2174 (while opts
2175 (let ((opt (if (consp (car opts)) (caar opts) (car opts)))
2176 (args (cdr-safe (pop opts))))
2177 (cond ((eq opt :conc-name)
2178 (if args
2179 (setq conc-name (if (car args)
2180 (symbol-name (car args)) ""))))
2181 ((eq opt :constructor)
2182 (if (cdr args)
2183 (progn
2184 ;; If this defines a constructor of the same name as
2185 ;; the default one, don't define the default.
2186 (if (eq (car args) constructor)
2187 (setq constructor nil))
2188 (push args constrs))
2189 (if args (setq constructor (car args)))))
2190 ((eq opt :copier)
2191 (if args (setq copier (car args))))
2192 ((eq opt :predicate)
2193 (if args (setq predicate (car args))))
2194 ((eq opt :include)
2195 (setq include (car args)
2196 include-descs (mapcar (function
2197 (lambda (x)
2198 (if (consp x) x (list x))))
2199 (cdr args))))
2200 ((eq opt :print-function)
2201 (setq print-func (car args)))
2202 ((eq opt :type)
2203 (setq type (car args)))
2204 ((eq opt :named)
2205 (setq named t))
2206 ((eq opt :initial-offset)
2207 (setq descs (nconc (make-list (car args) '(cl-skip-slot))
2208 descs)))
2210 (error "Slot option %s unrecognized" opt)))))
2211 (if print-func
2212 (setq print-func (list 'progn
2213 (list 'funcall (list 'function print-func)
2214 'cl-x 'cl-s 'cl-n) t))
2215 (or type (and include (not (get include 'cl-struct-print)))
2216 (setq print-auto t
2217 print-func (and (or (not (or include type)) (null print-func))
2218 (list 'progn
2219 (list 'princ (format "#S(%s" name)
2220 'cl-s))))))
2221 (if include
2222 (let ((inc-type (get include 'cl-struct-type))
2223 (old-descs (get include 'cl-struct-slots)))
2224 (or inc-type (error "%s is not a struct name" include))
2225 (and type (not (eq (car inc-type) type))
2226 (error ":type disagrees with :include for %s" name))
2227 (while include-descs
2228 (setcar (memq (or (assq (caar include-descs) old-descs)
2229 (error "No slot %s in included struct %s"
2230 (caar include-descs) include))
2231 old-descs)
2232 (pop include-descs)))
2233 (setq descs (append old-descs (delq (assq 'cl-tag-slot descs) descs))
2234 type (car inc-type)
2235 named (assq 'cl-tag-slot descs))
2236 (if (cadr inc-type) (setq tag name named t))
2237 (let ((incl include))
2238 (while incl
2239 (push (list 'pushnew (list 'quote tag)
2240 (intern (format "cl-struct-%s-tags" incl)))
2241 forms)
2242 (setq incl (get incl 'cl-struct-include)))))
2243 (if type
2244 (progn
2245 (or (memq type '(vector list))
2246 (error "Invalid :type specifier: %s" type))
2247 (if named (setq tag name)))
2248 (setq type 'vector named 'true)))
2249 (or named (setq descs (delq (assq 'cl-tag-slot descs) descs)))
2250 (push (list 'defvar tag-symbol) forms)
2251 (setq pred-form (and named
2252 (let ((pos (- (length descs)
2253 (length (memq (assq 'cl-tag-slot descs)
2254 descs)))))
2255 (if (eq type 'vector)
2256 (list 'and '(vectorp cl-x)
2257 (list '>= '(length cl-x) (length descs))
2258 (list 'memq (list 'aref 'cl-x pos)
2259 tag-symbol))
2260 (if (= pos 0)
2261 (list 'memq '(car-safe cl-x) tag-symbol)
2262 (list 'and '(consp cl-x)
2263 (list 'memq (list 'nth pos 'cl-x)
2264 tag-symbol))))))
2265 pred-check (and pred-form (> safety 0)
2266 (if (and (eq (caadr pred-form) 'vectorp)
2267 (= safety 1))
2268 (cons 'and (cdddr pred-form)) pred-form)))
2269 (let ((pos 0) (descp descs))
2270 (while descp
2271 (let* ((desc (pop descp))
2272 (slot (car desc)))
2273 (if (memq slot '(cl-tag-slot cl-skip-slot))
2274 (progn
2275 (push nil slots)
2276 (push (and (eq slot 'cl-tag-slot) (list 'quote tag))
2277 defaults))
2278 (if (assq slot descp)
2279 (error "Duplicate slots named %s in %s" slot name))
2280 (let ((accessor (intern (format "%s%s" conc-name slot))))
2281 (push slot slots)
2282 (push (nth 1 desc) defaults)
2283 (push (list*
2284 'defsubst* accessor '(cl-x)
2285 (append
2286 (and pred-check
2287 (list (list 'or pred-check
2288 (list 'error
2289 (format "%s accessing a non-%s"
2290 accessor name)))))
2291 (list (if (eq type 'vector) (list 'aref 'cl-x pos)
2292 (if (= pos 0) '(car cl-x)
2293 (list 'nth pos 'cl-x)))))) forms)
2294 (push (cons accessor t) side-eff)
2295 (push (list 'define-setf-method accessor '(cl-x)
2296 (if (cadr (memq :read-only (cddr desc)))
2297 (list 'error (format "%s is a read-only slot"
2298 accessor))
2299 ;; If cl is loaded only for compilation,
2300 ;; the call to cl-struct-setf-expander would
2301 ;; cause a warning because it may not be
2302 ;; defined at run time. Suppress that warning.
2303 (list 'with-no-warnings
2304 (list 'cl-struct-setf-expander 'cl-x
2305 (list 'quote name) (list 'quote accessor)
2306 (and pred-check (list 'quote pred-check))
2307 pos))))
2308 forms)
2309 (if print-auto
2310 (nconc print-func
2311 (list (list 'princ (format " %s" slot) 'cl-s)
2312 (list 'prin1 (list accessor 'cl-x) 'cl-s)))))))
2313 (setq pos (1+ pos))))
2314 (setq slots (nreverse slots)
2315 defaults (nreverse defaults))
2316 (and predicate pred-form
2317 (progn (push (list 'defsubst* predicate '(cl-x)
2318 (if (eq (car pred-form) 'and)
2319 (append pred-form '(t))
2320 (list 'and pred-form t))) forms)
2321 (push (cons predicate 'error-free) side-eff)))
2322 (and copier
2323 (progn (push (list 'defun copier '(x) '(copy-sequence x)) forms)
2324 (push (cons copier t) side-eff)))
2325 (if constructor
2326 (push (list constructor
2327 (cons '&key (delq nil (copy-sequence slots))))
2328 constrs))
2329 (while constrs
2330 (let* ((name (caar constrs))
2331 (args (cadr (pop constrs)))
2332 (anames (cl-arglist-args args))
2333 (make (mapcar* (function (lambda (s d) (if (memq s anames) s d)))
2334 slots defaults)))
2335 (push (list 'defsubst* name
2336 (list* '&cl-defs (list 'quote (cons nil descs)) args)
2337 (cons type make)) forms)
2338 (if (cl-safe-expr-p (cons 'progn (mapcar 'second descs)))
2339 (push (cons name t) side-eff))))
2340 (if print-auto (nconc print-func (list '(princ ")" cl-s) t)))
2341 (if print-func
2342 (push (list 'push
2343 (list 'function
2344 (list 'lambda '(cl-x cl-s cl-n)
2345 (list 'and pred-form print-func)))
2346 'custom-print-functions) forms))
2347 (push (list 'setq tag-symbol (list 'list (list 'quote tag))) forms)
2348 (push (list* 'eval-when '(compile load eval)
2349 (list 'put (list 'quote name) '(quote cl-struct-slots)
2350 (list 'quote descs))
2351 (list 'put (list 'quote name) '(quote cl-struct-type)
2352 (list 'quote (list type (eq named t))))
2353 (list 'put (list 'quote name) '(quote cl-struct-include)
2354 (list 'quote include))
2355 (list 'put (list 'quote name) '(quote cl-struct-print)
2356 print-auto)
2357 (mapcar (function (lambda (x)
2358 (list 'put (list 'quote (car x))
2359 '(quote side-effect-free)
2360 (list 'quote (cdr x)))))
2361 side-eff))
2362 forms)
2363 (cons 'progn (nreverse (cons (list 'quote name) forms)))))
2365 (defun cl-struct-setf-expander (x name accessor pred-form pos)
2366 (let* ((temp (make-symbol "--cl-x--")) (store (make-symbol "--cl-store--")))
2367 (list (list temp) (list x) (list store)
2368 (append '(progn)
2369 (and pred-form
2370 (list (list 'or (subst temp 'cl-x pred-form)
2371 (list 'error
2372 (format
2373 "%s storing a non-%s" accessor name)))))
2374 (list (if (eq (car (get name 'cl-struct-type)) 'vector)
2375 (list 'aset temp pos store)
2376 (list 'setcar
2377 (if (<= pos 5)
2378 (let ((xx temp))
2379 (while (>= (setq pos (1- pos)) 0)
2380 (setq xx (list 'cdr xx)))
2382 (list 'nthcdr pos temp))
2383 store))))
2384 (list accessor temp))))
2387 ;;; Types and assertions.
2389 (defmacro deftype (name arglist &rest body)
2390 "Define NAME as a new data type.
2391 The type name can then be used in `typecase', `check-type', etc."
2392 (list 'eval-when '(compile load eval)
2393 (cl-transform-function-property
2394 name 'cl-deftype-handler (cons (list* '&cl-defs ''('*) arglist) body))))
2396 (defun cl-make-type-test (val type)
2397 (if (symbolp type)
2398 (cond ((get type 'cl-deftype-handler)
2399 (cl-make-type-test val (funcall (get type 'cl-deftype-handler))))
2400 ((memq type '(nil t)) type)
2401 ((eq type 'null) `(null ,val))
2402 ((eq type 'atom) `(atom ,val))
2403 ((eq type 'float) `(floatp-safe ,val))
2404 ((eq type 'real) `(numberp ,val))
2405 ((eq type 'fixnum) `(integerp ,val))
2406 ;; FIXME: Should `character' accept things like ?\C-\M-a ? -stef
2407 ((memq type '(character string-char)) `(char-valid-p ,val))
2409 (let* ((name (symbol-name type))
2410 (namep (intern (concat name "p"))))
2411 (if (fboundp namep) (list namep val)
2412 (list (intern (concat name "-p")) val)))))
2413 (cond ((get (car type) 'cl-deftype-handler)
2414 (cl-make-type-test val (apply (get (car type) 'cl-deftype-handler)
2415 (cdr type))))
2416 ((memq (car type) '(integer float real number))
2417 (delq t (list 'and (cl-make-type-test val (car type))
2418 (if (memq (cadr type) '(* nil)) t
2419 (if (consp (cadr type)) (list '> val (caadr type))
2420 (list '>= val (cadr type))))
2421 (if (memq (caddr type) '(* nil)) t
2422 (if (consp (caddr type)) (list '< val (caaddr type))
2423 (list '<= val (caddr type)))))))
2424 ((memq (car type) '(and or not))
2425 (cons (car type)
2426 (mapcar (function (lambda (x) (cl-make-type-test val x)))
2427 (cdr type))))
2428 ((memq (car type) '(member member*))
2429 (list 'and (list 'member* val (list 'quote (cdr type))) t))
2430 ((eq (car type) 'satisfies) (list (cadr type) val))
2431 (t (error "Bad type spec: %s" type)))))
2433 (defun typep (object type) ; See compiler macro below.
2434 "Check that OBJECT is of type TYPE.
2435 TYPE is a Common Lisp-style type specifier."
2436 (eval (cl-make-type-test 'object type)))
2438 (defmacro check-type (form type &optional string)
2439 "Verify that FORM is of type TYPE; signal an error if not.
2440 STRING is an optional description of the desired type."
2441 (and (or (not (cl-compiling-file))
2442 (< cl-optimize-speed 3) (= cl-optimize-safety 3))
2443 (let* ((temp (if (cl-simple-expr-p form 3)
2444 form (make-symbol "--cl-var--")))
2445 (body (list 'or (cl-make-type-test temp type)
2446 (list 'signal '(quote wrong-type-argument)
2447 (list 'list (or string (list 'quote type))
2448 temp (list 'quote form))))))
2449 (if (eq temp form) (list 'progn body nil)
2450 (list 'let (list (list temp form)) body nil)))))
2452 (defmacro assert (form &optional show-args string &rest args)
2453 "Verify that FORM returns non-nil; signal an error if not.
2454 Second arg SHOW-ARGS means to include arguments of FORM in message.
2455 Other args STRING and ARGS... are arguments to be passed to `error'.
2456 They are not evaluated unless the assertion fails. If STRING is
2457 omitted, a default message listing FORM itself is used."
2458 (and (or (not (cl-compiling-file))
2459 (< cl-optimize-speed 3) (= cl-optimize-safety 3))
2460 (let ((sargs (and show-args (delq nil (mapcar
2461 (function
2462 (lambda (x)
2463 (and (not (cl-const-expr-p x))
2464 x))) (cdr form))))))
2465 (list 'progn
2466 (list 'or form
2467 (if string
2468 (list* 'error string (append sargs args))
2469 (list 'signal '(quote cl-assertion-failed)
2470 (list* 'list (list 'quote form) sargs))))
2471 nil))))
2473 (defmacro ignore-errors (&rest body)
2474 "Execute BODY; if an error occurs, return nil.
2475 Otherwise, return result of last form in BODY."
2476 `(condition-case nil (progn ,@body) (error nil)))
2479 ;;; Compiler macros.
2481 (defmacro define-compiler-macro (func args &rest body)
2482 "Define a compiler-only macro.
2483 This is like `defmacro', but macro expansion occurs only if the call to
2484 FUNC is compiled (i.e., not interpreted). Compiler macros should be used
2485 for optimizing the way calls to FUNC are compiled; the form returned by
2486 BODY should do the same thing as a call to the normal function called
2487 FUNC, though possibly more efficiently. Note that, like regular macros,
2488 compiler macros are expanded repeatedly until no further expansions are
2489 possible. Unlike regular macros, BODY can decide to \"punt\" and leave the
2490 original function call alone by declaring an initial `&whole foo' parameter
2491 and then returning foo."
2492 (let ((p args) (res nil))
2493 (while (consp p) (push (pop p) res))
2494 (setq args (nconc (nreverse res) (and p (list '&rest p)))))
2495 (list 'eval-when '(compile load eval)
2496 (cl-transform-function-property
2497 func 'cl-compiler-macro
2498 (cons (if (memq '&whole args) (delq '&whole args)
2499 (cons '--cl-whole-arg-- args)) body))
2500 (list 'or (list 'get (list 'quote func) '(quote byte-compile))
2501 (list 'put (list 'quote func) '(quote byte-compile)
2502 '(quote cl-byte-compile-compiler-macro)))))
2504 (defun compiler-macroexpand (form)
2505 (while
2506 (let ((func (car-safe form)) (handler nil))
2507 (while (and (symbolp func)
2508 (not (setq handler (get func 'cl-compiler-macro)))
2509 (fboundp func)
2510 (or (not (eq (car-safe (symbol-function func)) 'autoload))
2511 (load (nth 1 (symbol-function func)))))
2512 (setq func (symbol-function func)))
2513 (and handler
2514 (not (eq form (setq form (apply handler form (cdr form))))))))
2515 form)
2517 (defun cl-byte-compile-compiler-macro (form)
2518 (if (eq form (setq form (compiler-macroexpand form)))
2519 (byte-compile-normal-call form)
2520 (byte-compile-form form)))
2522 (defmacro defsubst* (name args &rest body)
2523 "Define NAME as a function.
2524 Like `defun', except the function is automatically declared `inline',
2525 ARGLIST allows full Common Lisp conventions, and BODY is implicitly
2526 surrounded by (block NAME ...).
2528 \(fn NAME ARGLIST [DOCSTRING] BODY...)"
2529 (let* ((argns (cl-arglist-args args)) (p argns)
2530 (pbody (cons 'progn body))
2531 (unsafe (not (cl-safe-expr-p pbody))))
2532 (while (and p (eq (cl-expr-contains args (car p)) 1)) (pop p))
2533 (list 'progn
2534 (if p nil ; give up if defaults refer to earlier args
2535 (list 'define-compiler-macro name
2536 (if (memq '&key args)
2537 (list* '&whole 'cl-whole '&cl-quote args)
2538 (cons '&cl-quote args))
2539 (list* 'cl-defsubst-expand (list 'quote argns)
2540 (list 'quote (list* 'block name body))
2541 (not (or unsafe (cl-expr-access-order pbody argns)))
2542 (and (memq '&key args) 'cl-whole) unsafe argns)))
2543 (list* 'defun* name args body))))
2545 (defun cl-defsubst-expand (argns body simple whole unsafe &rest argvs)
2546 (if (and whole (not (cl-safe-expr-p (cons 'progn argvs)))) whole
2547 (if (cl-simple-exprs-p argvs) (setq simple t))
2548 (let ((lets (delq nil
2549 (mapcar* (function
2550 (lambda (argn argv)
2551 (if (or simple (cl-const-expr-p argv))
2552 (progn (setq body (subst argv argn body))
2553 (and unsafe (list argn argv)))
2554 (list argn argv))))
2555 argns argvs))))
2556 (if lets (list 'let lets body) body))))
2559 ;;; Compile-time optimizations for some functions defined in this package.
2560 ;;; Note that cl.el arranges to force cl-macs to be loaded at compile-time,
2561 ;;; mainly to make sure these macros will be present.
2563 (put 'eql 'byte-compile nil)
2564 (define-compiler-macro eql (&whole form a b)
2565 (cond ((eq (cl-const-expr-p a) t)
2566 (let ((val (cl-const-expr-val a)))
2567 (if (and (numberp val) (not (integerp val)))
2568 (list 'equal a b)
2569 (list 'eq a b))))
2570 ((eq (cl-const-expr-p b) t)
2571 (let ((val (cl-const-expr-val b)))
2572 (if (and (numberp val) (not (integerp val)))
2573 (list 'equal a b)
2574 (list 'eq a b))))
2575 ((cl-simple-expr-p a 5)
2576 (list 'if (list 'numberp a)
2577 (list 'equal a b)
2578 (list 'eq a b)))
2579 ((and (cl-safe-expr-p a)
2580 (cl-simple-expr-p b 5))
2581 (list 'if (list 'numberp b)
2582 (list 'equal a b)
2583 (list 'eq a b)))
2584 (t form)))
2586 (define-compiler-macro member* (&whole form a list &rest keys)
2587 (let ((test (and (= (length keys) 2) (eq (car keys) :test)
2588 (cl-const-expr-val (nth 1 keys)))))
2589 (cond ((eq test 'eq) (list 'memq a list))
2590 ((eq test 'equal) (list 'member a list))
2591 ((or (null keys) (eq test 'eql)) (list 'memql a list))
2592 (t form))))
2594 (define-compiler-macro assoc* (&whole form a list &rest keys)
2595 (let ((test (and (= (length keys) 2) (eq (car keys) :test)
2596 (cl-const-expr-val (nth 1 keys)))))
2597 (cond ((eq test 'eq) (list 'assq a list))
2598 ((eq test 'equal) (list 'assoc a list))
2599 ((and (eq (cl-const-expr-p a) t) (or (null keys) (eq test 'eql)))
2600 (if (floatp-safe (cl-const-expr-val a))
2601 (list 'assoc a list) (list 'assq a list)))
2602 (t form))))
2604 (define-compiler-macro adjoin (&whole form a list &rest keys)
2605 (if (and (cl-simple-expr-p a) (cl-simple-expr-p list)
2606 (not (memq :key keys)))
2607 (list 'if (list* 'member* a list keys) list (list 'cons a list))
2608 form))
2610 (define-compiler-macro list* (arg &rest others)
2611 (let* ((args (reverse (cons arg others)))
2612 (form (car args)))
2613 (while (setq args (cdr args))
2614 (setq form (list 'cons (car args) form)))
2615 form))
2617 (define-compiler-macro get* (sym prop &optional def)
2618 (if def
2619 (list 'getf (list 'symbol-plist sym) prop def)
2620 (list 'get sym prop)))
2622 (define-compiler-macro typep (&whole form val type)
2623 (if (cl-const-expr-p type)
2624 (let ((res (cl-make-type-test val (cl-const-expr-val type))))
2625 (if (or (memq (cl-expr-contains res val) '(nil 1))
2626 (cl-simple-expr-p val)) res
2627 (let ((temp (make-symbol "--cl-var--")))
2628 (list 'let (list (list temp val)) (subst temp val res)))))
2629 form))
2632 (mapc (lambda (y)
2633 (put (car y) 'side-effect-free t)
2634 (put (car y) 'byte-compile 'cl-byte-compile-compiler-macro)
2635 (put (car y) 'cl-compiler-macro
2636 `(lambda (w x)
2637 ,(if (symbolp (cadr y))
2638 `(list ',(cadr y)
2639 (list ',(caddr y) x))
2640 (cons 'list (cdr y))))))
2641 '((first 'car x) (second 'cadr x) (third 'caddr x) (fourth 'cadddr x)
2642 (fifth 'nth 4 x) (sixth 'nth 5 x) (seventh 'nth 6 x)
2643 (eighth 'nth 7 x) (ninth 'nth 8 x) (tenth 'nth 9 x)
2644 (rest 'cdr x) (endp 'null x) (plusp '> x 0) (minusp '< x 0)
2645 (caaar car caar) (caadr car cadr) (cadar car cdar)
2646 (caddr car cddr) (cdaar cdr caar) (cdadr cdr cadr)
2647 (cddar cdr cdar) (cdddr cdr cddr) (caaaar car caaar)
2648 (caaadr car caadr) (caadar car cadar) (caaddr car caddr)
2649 (cadaar car cdaar) (cadadr car cdadr) (caddar car cddar)
2650 (cadddr car cdddr) (cdaaar cdr caaar) (cdaadr cdr caadr)
2651 (cdadar cdr cadar) (cdaddr cdr caddr) (cddaar cdr cdaar)
2652 (cddadr cdr cdadr) (cdddar cdr cddar) (cddddr cdr cdddr) ))
2654 ;;; Things that are inline.
2655 (proclaim '(inline floatp-safe acons map concatenate notany notevery
2656 cl-set-elt revappend nreconc gethash))
2658 ;;; Things that are side-effect-free.
2659 (mapc (lambda (x) (put x 'side-effect-free t))
2660 '(oddp evenp signum last butlast ldiff pairlis gcd lcm
2661 isqrt floor* ceiling* truncate* round* mod* rem* subseq
2662 list-length get* getf))
2664 ;;; Things that are side-effect-and-error-free.
2665 (mapc (lambda (x) (put x 'side-effect-free 'error-free))
2666 '(eql floatp-safe list* subst acons equalp random-state-p
2667 copy-tree sublis))
2670 (run-hooks 'cl-macs-load-hook)
2672 ;;; Local variables:
2673 ;;; byte-compile-warnings: (redefine callargs free-vars unresolved obsolete noruntime)
2674 ;;; End:
2676 ;; arch-tag: afd947a6-b553-4df1-bba5-000be6388f46
2677 ;;; cl-macs.el ends here