1.0.10.49: deadline refinements
[sbcl.git] / src / pcl / methods.lisp
blobf8f13a7b7230423c41581e0107451aceae51ce6b
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24 (in-package "SB-PCL")
26 ;;; methods
27 ;;;
28 ;;; Methods themselves are simple inanimate objects. Most properties of
29 ;;; methods are immutable, methods cannot be reinitialized. The following
30 ;;; properties of methods can be changed:
31 ;;; METHOD-GENERIC-FUNCTION
33 ;;; initialization
34 ;;;
35 ;;; Error checking is done in before methods. Because of the simplicity of
36 ;;; standard method objects the standard primary method can fill the slots.
37 ;;;
38 ;;; Methods are not reinitializable.
40 (define-condition metaobject-initialization-violation
41 (reference-condition simple-error)
42 ())
44 (macrolet ((def (name args control)
45 `(defmethod ,name ,args
46 (declare (ignore initargs))
47 (error 'metaobject-initialization-violation
48 :format-control ,(format nil "~@<~A~@:>" control)
49 :format-arguments (list ',name)
50 :references (list '(:amop :initialization method))))))
51 (def reinitialize-instance ((method method) &rest initargs)
52 "Method objects cannot be redefined by ~S.")
53 (def change-class ((method method) new &rest initargs)
54 "Method objects cannot be redefined by ~S.")
55 ;; NEW being a subclass of method is dealt with in the general
56 ;; method of CHANGE-CLASS
57 (def update-instance-for-redefined-class ((method method) added discarded
58 plist &rest initargs)
59 "No behaviour specified for ~S on method objects.")
60 (def update-instance-for-different-class (old (new method) &rest initargs)
61 "No behaviour specified for ~S on method objects.")
62 (def update-instance-for-different-class ((old method) new &rest initargs)
63 "No behaviour specified for ~S on method objects."))
65 (define-condition invalid-method-initarg (simple-program-error)
66 ((method :initarg :method :reader invalid-method-initarg-method))
67 (:report
68 (lambda (c s)
69 (format s "~@<In initialization of ~S:~2I~_~?~@:>"
70 (invalid-method-initarg-method c)
71 (simple-condition-format-control c)
72 (simple-condition-format-arguments c)))))
74 (defun invalid-method-initarg (method format-control &rest args)
75 (error 'invalid-method-initarg :method method
76 :format-control format-control :format-arguments args))
78 (defun check-documentation (method doc)
79 (unless (or (null doc) (stringp doc))
80 (invalid-method-initarg method "~@<~S of ~S is neither ~S nor a ~S.~@:>"
81 :documentation doc 'null 'string)))
82 (defun check-lambda-list (method ll)
83 nil)
85 (defun check-method-function (method fun)
86 (unless (functionp fun)
87 (invalid-method-initarg method "~@<~S of ~S is not a ~S.~@:>"
88 :function fun 'function)))
90 (defun check-qualifiers (method qualifiers)
91 (flet ((improper-list ()
92 (invalid-method-initarg method
93 "~@<~S of ~S is an improper list.~@:>"
94 :qualifiers qualifiers)))
95 (dolist-carefully (q qualifiers improper-list)
96 (unless (and q (atom q))
97 (invalid-method-initarg method
98 "~@<~S, in ~S ~S, is not a non-~S atom.~@:>"
99 q :qualifiers qualifiers 'null)))))
101 (defun check-slot-name (method name)
102 (unless (symbolp name)
103 (invalid-method-initarg "~@<~S of ~S is not a ~S.~@:>"
104 :slot-name name 'symbol)))
106 (defun check-specializers (method specializers)
107 (flet ((improper-list ()
108 (invalid-method-initarg method
109 "~@<~S of ~S is an improper list.~@:>"
110 :specializers specializers)))
111 (dolist-carefully (s specializers improper-list)
112 (unless (specializerp s)
113 (invalid-method-initarg method
114 "~@<~S, in ~S ~S, is not a ~S.~@:>"
115 s :specializers specializers 'specializer)))
116 ;; KLUDGE: ANSI says that it's not valid to have methods
117 ;; specializing on classes which are "not defined", leaving
118 ;; unclear what the definedness of a class is; AMOP suggests that
119 ;; forward-referenced-classes, since they have proper names and
120 ;; all, are at least worthy of some level of definition. We allow
121 ;; methods specialized on forward-referenced-classes, but it's
122 ;; non-portable and potentially dubious, so
123 (let ((frcs (remove-if-not #'forward-referenced-class-p specializers)))
124 (unless (null frcs)
125 (style-warn "~@<Defining a method using ~
126 ~V[~;~1{~S~}~;~1{~S and ~S~}~:;~{~#[~;and ~]~S~^, ~}~] ~
127 as ~2:*~V[~;a specializer~:;specializers~].~@:>"
128 (length frcs) frcs)))))
130 (defmethod shared-initialize :before
131 ((method standard-method) slot-names &key
132 qualifiers lambda-list specializers function documentation)
133 (declare (ignore slot-names))
134 ;; FIXME: it's not clear to me (CSR, 2006-08-09) why methods get
135 ;; this extra paranoia and nothing else does; either everything
136 ;; should be aggressively checking initargs, or nothing much should.
137 ;; In either case, it would probably be better to have :type
138 ;; declarations in slots, which would then give a suitable type
139 ;; error (if we implement type-checking for slots...) rather than
140 ;; this hand-crafted thing.
141 (check-qualifiers method qualifiers)
142 (check-lambda-list method lambda-list)
143 (check-specializers method specializers)
144 (check-method-function method function)
145 (check-documentation method documentation))
147 (defmethod shared-initialize :before
148 ((method standard-accessor-method) slot-names &key
149 slot-name slot-definition)
150 (declare (ignore slot-names))
151 (unless slot-definition
152 (check-slot-name method slot-name)))
154 (defmethod shared-initialize :after ((method standard-method) slot-names
155 &rest initargs &key ((method-cell method-cell)))
156 (declare (ignore slot-names method-cell))
157 (initialize-method-function initargs method))
159 (defvar *the-class-generic-function*
160 (find-class 'generic-function))
161 (defvar *the-class-standard-generic-function*
162 (find-class 'standard-generic-function))
164 (defmethod shared-initialize :before
165 ((generic-function standard-generic-function)
166 slot-names
167 &key (name nil namep)
168 (lambda-list () lambda-list-p)
169 argument-precedence-order
170 declarations
171 documentation
172 (method-class nil method-class-supplied-p)
173 (method-combination nil method-combination-supplied-p))
174 (declare (ignore slot-names
175 declarations argument-precedence-order documentation
176 lambda-list lambda-list-p))
178 (when namep
179 (set-fun-name generic-function name))
181 (flet ((initarg-error (initarg value string)
182 (error "when initializing the generic function ~S:~%~
183 The ~S initialization argument was: ~A.~%~
184 It must be ~A."
185 generic-function initarg value string)))
186 (cond (method-class-supplied-p
187 (when (symbolp method-class)
188 (setq method-class (find-class method-class)))
189 (unless (and (classp method-class)
190 (*subtypep (class-eq-specializer method-class)
191 *the-class-method*))
192 (initarg-error :method-class
193 method-class
194 "a subclass of the class METHOD"))
195 (setf (slot-value generic-function 'method-class) method-class))
196 ((slot-boundp generic-function 'method-class))
198 (initarg-error :method-class
199 "not supplied"
200 "a subclass of the class METHOD")))
201 (cond (method-combination-supplied-p
202 (unless (method-combination-p method-combination)
203 (initarg-error :method-combination
204 method-combination
205 "a method combination object")))
206 ((slot-boundp generic-function '%method-combination))
208 (initarg-error :method-combination
209 "not supplied"
210 "a method combination object")))))
212 (defun find-generic-function (name &optional (errorp t))
213 (let ((fun (and (fboundp name) (fdefinition name))))
214 (cond
215 ((and fun (typep fun 'generic-function)) fun)
216 (errorp (error "No generic function named ~S." name))
217 (t nil))))
219 (defun real-add-named-method (generic-function-name qualifiers
220 specializers lambda-list &rest other-initargs)
221 (unless (and (fboundp generic-function-name)
222 (typep (fdefinition generic-function-name) 'generic-function))
223 (style-warn "implicitly creating new generic function ~S"
224 generic-function-name))
225 (let* ((existing-gf (find-generic-function generic-function-name nil))
226 (generic-function
227 (if existing-gf
228 (ensure-generic-function
229 generic-function-name
230 :generic-function-class (class-of existing-gf))
231 (ensure-generic-function generic-function-name)))
232 (proto (method-prototype-for-gf generic-function-name)))
233 ;; FIXME: Destructive modification of &REST list.
234 (setf (getf (getf other-initargs 'plist) :name)
235 (make-method-spec generic-function qualifiers specializers))
236 (let ((new (apply #'make-instance (class-of proto)
237 :qualifiers qualifiers :specializers specializers
238 :lambda-list lambda-list other-initargs)))
239 (add-method generic-function new)
240 new)))
242 (define-condition find-method-length-mismatch
243 (reference-condition simple-error)
245 (:default-initargs :references (list '(:ansi-cl :function find-method))))
247 (defun real-get-method (generic-function qualifiers specializers
248 &optional (errorp t)
249 always-check-specializers)
250 (let ((lspec (length specializers))
251 (methods (generic-function-methods generic-function)))
252 (when (or methods always-check-specializers)
253 (let ((nreq (length (arg-info-metatypes (gf-arg-info
254 generic-function)))))
255 ;; Since we internally bypass FIND-METHOD by using GET-METHOD
256 ;; instead we need to to this here or users may get hit by a
257 ;; failed AVER instead of a sensible error message.
258 (when (/= lspec nreq)
259 (error
260 'find-method-length-mismatch
261 :format-control
262 "~@<The generic function ~S takes ~D required argument~:P; ~
263 was asked to find a method with specializers ~S~@:>"
264 :format-arguments (list generic-function nreq specializers)))))
265 (let ((hit
266 (dolist (method methods)
267 (let ((mspecializers (method-specializers method)))
268 (aver (= lspec (length mspecializers)))
269 (when (and (equal qualifiers (method-qualifiers method))
270 (every #'same-specializer-p specializers
271 (method-specializers method)))
272 (return method))))))
273 (cond (hit hit)
274 ((null errorp) nil)
276 (error "~@<There is no method on ~S with ~
277 ~:[no qualifiers~;~:*qualifiers ~S~] ~
278 and specializers ~S.~@:>"
279 generic-function qualifiers specializers))))))
281 (defmethod find-method ((generic-function standard-generic-function)
282 qualifiers specializers &optional (errorp t))
283 ;; ANSI about FIND-METHOD: "The specializers argument contains the
284 ;; parameter specializers for the method. It must correspond in
285 ;; length to the number of required arguments of the generic
286 ;; function, or an error is signaled."
288 ;; This error checking is done by REAL-GET-METHOD.
289 (real-get-method
290 generic-function qualifiers
291 ;; ANSI for FIND-METHOD seems to imply that in fact specializers
292 ;; should always be passed in parsed form instead of being parsed
293 ;; at this point. Since there's no ANSI-blessed way of getting an
294 ;; EQL specializer, that seems unnecessarily painful, so we are
295 ;; nice to our users. -- CSR, 2007-06-01
296 (parse-specializers generic-function specializers) errorp t))
298 ;;; Compute various information about a generic-function's arglist by looking
299 ;;; at the argument lists of the methods. The hair for trying not to use
300 ;;; &REST arguments lives here.
301 ;;; The values returned are:
302 ;;; number-of-required-arguments
303 ;;; the number of required arguments to this generic-function's
304 ;;; discriminating function
305 ;;; &rest-argument-p
306 ;;; whether or not this generic-function's discriminating
307 ;;; function takes an &rest argument.
308 ;;; specialized-argument-positions
309 ;;; a list of the positions of the arguments this generic-function
310 ;;; specializes (e.g. for a classical generic-function this is the
311 ;;; list: (1)).
312 (defmethod compute-discriminating-function-arglist-info
313 ((generic-function standard-generic-function))
314 ;;(declare (values number-of-required-arguments &rest-argument-p
315 ;; specialized-argument-postions))
316 (let ((number-required nil)
317 (restp nil)
318 (specialized-positions ())
319 (methods (generic-function-methods generic-function)))
320 (dolist (method methods)
321 (multiple-value-setq (number-required restp specialized-positions)
322 (compute-discriminating-function-arglist-info-internal
323 generic-function method number-required restp specialized-positions)))
324 (values number-required restp (sort specialized-positions #'<))))
326 (defun compute-discriminating-function-arglist-info-internal
327 (generic-function method number-of-requireds restp
328 specialized-argument-positions)
329 (declare (ignore generic-function)
330 (type (or null fixnum) number-of-requireds))
331 (let ((requireds 0))
332 (declare (fixnum requireds))
333 ;; Go through this methods arguments seeing how many are required,
334 ;; and whether there is an &rest argument.
335 (dolist (arg (method-lambda-list method))
336 (cond ((eq arg '&aux) (return))
337 ((memq arg '(&optional &rest &key))
338 (return (setq restp t)))
339 ((memq arg lambda-list-keywords))
340 (t (incf requireds))))
341 ;; Now go through this method's type specifiers to see which
342 ;; argument positions are type specified. Treat T specially
343 ;; in the usual sort of way. For efficiency don't bother to
344 ;; keep specialized-argument-positions sorted, rather depend
345 ;; on our caller to do that.
346 (let ((pos 0))
347 (dolist (type-spec (method-specializers method))
348 (unless (eq type-spec *the-class-t*)
349 (pushnew pos specialized-argument-positions))
350 (incf pos)))
351 ;; Finally merge the values for this method into the values
352 ;; for the exisiting methods and return them. Note that if
353 ;; num-of-requireds is NIL it means this is the first method
354 ;; and we depend on that.
355 (values (min (or number-of-requireds requireds) requireds)
356 (or restp
357 (and number-of-requireds (/= number-of-requireds requireds)))
358 specialized-argument-positions)))
360 (defun make-discriminating-function-arglist (number-required-arguments restp)
361 (nconc (let ((args nil))
362 (dotimes (i number-required-arguments)
363 (push (format-symbol *package* ;; ! is this right?
364 "Discriminating Function Arg ~D"
366 args))
367 (nreverse args))
368 (when restp
369 `(&rest ,(format-symbol *package*
370 "Discriminating Function &rest Arg")))))
372 (defmethod generic-function-argument-precedence-order
373 ((gf standard-generic-function))
374 (aver (eq *boot-state* 'complete))
375 (loop with arg-info = (gf-arg-info gf)
376 with lambda-list = (arg-info-lambda-list arg-info)
377 for argument-position in (arg-info-precedence arg-info)
378 collect (nth argument-position lambda-list)))
380 (defmethod generic-function-lambda-list ((gf generic-function))
381 (gf-lambda-list gf))
383 (defmethod gf-fast-method-function-p ((gf standard-generic-function))
384 (gf-info-fast-mf-p (slot-value gf 'arg-info)))
386 (defmethod initialize-instance :after ((gf standard-generic-function)
387 &key (lambda-list nil lambda-list-p)
388 argument-precedence-order)
389 (with-slots (arg-info) gf
390 (if lambda-list-p
391 (set-arg-info gf
392 :lambda-list lambda-list
393 :argument-precedence-order argument-precedence-order)
394 (set-arg-info gf))
395 (when (arg-info-valid-p arg-info)
396 (update-dfun gf))))
398 (defmethod reinitialize-instance :around
399 ((gf standard-generic-function) &rest args &key
400 (lambda-list nil lambda-list-p) (argument-precedence-order nil apo-p))
401 (let ((old-mc (generic-function-method-combination gf)))
402 (prog1 (call-next-method)
403 ;; KLUDGE: EQ is too strong a test.
404 (unless (eq old-mc (generic-function-method-combination gf))
405 (flush-effective-method-cache gf))
406 (cond
407 ((and lambda-list-p apo-p)
408 (set-arg-info gf
409 :lambda-list lambda-list
410 :argument-precedence-order argument-precedence-order))
411 (lambda-list-p (set-arg-info gf :lambda-list lambda-list))
412 (t (set-arg-info gf)))
413 (when (arg-info-valid-p (gf-arg-info gf))
414 (update-dfun gf))
415 (map-dependents gf (lambda (dependent)
416 (apply #'update-dependent gf dependent args))))))
418 (declaim (special *lazy-dfun-compute-p*))
420 (defun set-methods (gf methods)
421 (setf (generic-function-methods gf) nil)
422 (loop (when (null methods) (return gf))
423 (real-add-method gf (pop methods) methods)))
425 (define-condition new-value-specialization (reference-condition error)
426 ((%method :initarg :method :reader new-value-specialization-method))
427 (:report
428 (lambda (c s)
429 (format s "~@<Cannot add method ~S to ~S, as it specializes the ~
430 new-value argument.~@:>"
431 (new-value-specialization-method c)
432 #'(setf slot-value-using-class))))
433 (:default-initargs :references
434 (list '(:sbcl :node "Metaobject Protocol")
435 '(:amop :generic-function (setf slot-value-using-class)))))
437 (defun real-add-method (generic-function method &optional skip-dfun-update-p)
438 (when (method-generic-function method)
439 (error "~@<The method ~S is already part of the generic ~
440 function ~S; it can't be added to another generic ~
441 function until it is removed from the first one.~@:>"
442 method (method-generic-function method)))
443 (flet ((similar-lambda-lists-p (method-a method-b)
444 (multiple-value-bind (a-nreq a-nopt a-keyp a-restp)
445 (analyze-lambda-list (method-lambda-list method-a))
446 (multiple-value-bind (b-nreq b-nopt b-keyp b-restp)
447 (analyze-lambda-list (method-lambda-list method-b))
448 (and (= a-nreq b-nreq)
449 (= a-nopt b-nopt)
450 (eq (or a-keyp a-restp)
451 (or b-keyp b-restp)))))))
452 (let ((lock (gf-lock generic-function)))
453 ;; HANDLER-CASE takes care of releasing the lock and enabling
454 ;; interrupts before going forth with the error.
455 (handler-case
456 ;; System lock because interrupts need to be disabled as
457 ;; well: it would be bad to unwind and leave the gf in an
458 ;; inconsistent state.
459 (sb-thread::with-recursive-system-spinlock (lock)
460 (let* ((qualifiers (method-qualifiers method))
461 (specializers (method-specializers method))
462 (existing (get-method generic-function
463 qualifiers
464 specializers
465 nil)))
467 ;; If there is already a method like this one then we must get
468 ;; rid of it before proceeding. Note that we call the generic
469 ;; function REMOVE-METHOD to remove it rather than doing it in
470 ;; some internal way.
471 (when (and existing (similar-lambda-lists-p existing method))
472 (remove-method generic-function existing))
474 ;; KLUDGE: We have a special case here, as we disallow
475 ;; specializations of the NEW-VALUE argument to (SETF
476 ;; SLOT-VALUE-USING-CLASS). GET-ACCESSOR-METHOD-FUNCTION is
477 ;; the optimizing function here: it precomputes the effective
478 ;; method, assuming that there is no dispatch to be done on
479 ;; the new-value argument.
480 (when (and (eq generic-function #'(setf slot-value-using-class))
481 (not (eq *the-class-t* (first specializers))))
482 (error 'new-value-specialization :method method))
484 (setf (method-generic-function method) generic-function)
485 (pushnew method (generic-function-methods generic-function))
486 (dolist (specializer specializers)
487 (add-direct-method specializer method))
489 ;; KLUDGE: SET-ARG-INFO contains the error-detecting logic for
490 ;; detecting attempts to add methods with incongruent lambda
491 ;; lists. However, according to Gerd Moellmann on cmucl-imp,
492 ;; it also depends on the new method already having been added
493 ;; to the generic function. Therefore, we need to remove it
494 ;; again on error:
495 (let ((remove-again-p t))
496 (unwind-protect
497 (progn
498 (set-arg-info generic-function :new-method method)
499 (setq remove-again-p nil))
500 (when remove-again-p
501 (remove-method generic-function method))))
503 ;; KLUDGE II: ANSI saith that it is not an error to add a
504 ;; method with invalid qualifiers to a generic function of the
505 ;; wrong kind; it's only an error at generic function
506 ;; invocation time; I dunno what the rationale was, and it
507 ;; sucks. Nevertheless, it's probably a programmer error, so
508 ;; let's warn anyway. -- CSR, 2003-08-20
509 (let ((mc (generic-function-method-combination generic-functioN)))
510 (cond
511 ((eq mc *standard-method-combination*)
512 (when (and qualifiers
513 (or (cdr qualifiers)
514 (not (memq (car qualifiers)
515 '(:around :before :after)))))
516 (warn "~@<Invalid qualifiers for standard method ~
517 combination in method ~S:~2I~_~S.~@:>"
518 method qualifiers)))
519 ((short-method-combination-p mc)
520 (let ((mc-name (method-combination-type-name mc)))
521 (when (or (null qualifiers)
522 (cdr qualifiers)
523 (and (neq (car qualifiers) :around)
524 (neq (car qualifiers) mc-name)))
525 (warn "~@<Invalid qualifiers for ~S method combination ~
526 in method ~S:~2I~_~S.~@:>"
527 mc-name method qualifiers))))))
529 (unless skip-dfun-update-p
530 (update-ctors 'add-method
531 :generic-function generic-function
532 :method method)
533 (update-dfun generic-function))
534 (map-dependents generic-function
535 (lambda (dep)
536 (update-dependent generic-function
537 dep 'add-method method)))))
538 (serious-condition (c)
539 (error c)))))
540 generic-function)
542 (defun real-remove-method (generic-function method)
543 (when (eq generic-function (method-generic-function method))
544 (let ((lock (gf-lock generic-function)))
545 ;; System lock because interrupts need to be disabled as well:
546 ;; it would be bad to unwind and leave the gf in an inconsistent
547 ;; state.
548 (sb-thread::with-recursive-system-spinlock (lock)
549 (let* ((specializers (method-specializers method))
550 (methods (generic-function-methods generic-function))
551 (new-methods (remove method methods)))
552 (setf (method-generic-function method) nil
553 (generic-function-methods generic-function) new-methods)
554 (dolist (specializer (method-specializers method))
555 (remove-direct-method specializer method))
556 (set-arg-info generic-function)
557 (update-ctors 'remove-method
558 :generic-function generic-function
559 :method method)
560 (update-dfun generic-function)
561 (map-dependents generic-function
562 (lambda (dep)
563 (update-dependent generic-function
564 dep 'remove-method method)))))))
565 generic-function)
567 (defun compute-applicable-methods-function (generic-function arguments)
568 (values (compute-applicable-methods-using-types
569 generic-function
570 (types-from-args generic-function arguments 'eql))))
572 (defmethod compute-applicable-methods
573 ((generic-function generic-function) arguments)
574 (values (compute-applicable-methods-using-types
575 generic-function
576 (types-from-args generic-function arguments 'eql))))
578 (defmethod compute-applicable-methods-using-classes
579 ((generic-function generic-function) classes)
580 (compute-applicable-methods-using-types
581 generic-function
582 (types-from-args generic-function classes 'class-eq)))
584 (defun proclaim-incompatible-superclasses (classes)
585 (setq classes (mapcar (lambda (class)
586 (if (symbolp class)
587 (find-class class)
588 class))
589 classes))
590 (dolist (class classes)
591 (dolist (other-class classes)
592 (unless (eq class other-class)
593 (pushnew other-class (class-incompatible-superclass-list class))))))
595 (defun superclasses-compatible-p (class1 class2)
596 (let ((cpl1 (cpl-or-nil class1))
597 (cpl2 (cpl-or-nil class2)))
598 (dolist (sc1 cpl1 t)
599 (dolist (ic (class-incompatible-superclass-list sc1))
600 (when (memq ic cpl2)
601 (return-from superclasses-compatible-p nil))))))
603 (mapc
604 #'proclaim-incompatible-superclasses
605 '(;; superclass class
606 (built-in-class std-class structure-class) ; direct subclasses of pcl-class
607 (standard-class funcallable-standard-class)
608 ;; superclass metaobject
609 (class eql-specializer class-eq-specializer method method-combination
610 generic-function slot-definition)
611 ;; metaclass built-in-class
612 (number sequence character ; direct subclasses of t, but not array
613 standard-object structure-object) ; or symbol
614 (number array character symbol ; direct subclasses of t, but not
615 standard-object structure-object) ; sequence
616 (complex float rational) ; direct subclasses of number
617 (integer ratio) ; direct subclasses of rational
618 (list vector) ; direct subclasses of sequence
619 (cons null) ; direct subclasses of list
620 (string bit-vector) ; direct subclasses of vector
623 (defmethod same-specializer-p ((specl1 specializer) (specl2 specializer))
624 (eql specl1 specl2))
626 (defmethod same-specializer-p ((specl1 class) (specl2 class))
627 (eq specl1 specl2))
629 (defmethod specializer-class ((specializer class))
630 specializer)
632 (defmethod same-specializer-p ((specl1 class-eq-specializer)
633 (specl2 class-eq-specializer))
634 (eq (specializer-class specl1) (specializer-class specl2)))
636 (defmethod same-specializer-p ((specl1 eql-specializer)
637 (specl2 eql-specializer))
638 (eq (specializer-object specl1) (specializer-object specl2)))
640 (defmethod specializer-class ((specializer eql-specializer))
641 (class-of (slot-value specializer 'object)))
643 (defun specializer-class-or-nil (specializer)
644 (and (standard-specializer-p specializer)
645 (specializer-class specializer)))
647 (defun error-need-at-least-n-args (function n)
648 (error 'simple-program-error
649 :format-control "~@<The function ~2I~_~S ~I~_requires ~
650 at least ~W argument~:P.~:>"
651 :format-arguments (list function n)))
653 (defun types-from-args (generic-function arguments &optional type-modifier)
654 (multiple-value-bind (nreq applyp metatypes nkeys arg-info)
655 (get-generic-fun-info generic-function)
656 (declare (ignore applyp metatypes nkeys))
657 (let ((types-rev nil))
658 (dotimes-fixnum (i nreq)
660 (unless arguments
661 (error-need-at-least-n-args (generic-function-name generic-function)
662 nreq))
663 (let ((arg (pop arguments)))
664 (push (if type-modifier `(,type-modifier ,arg) arg) types-rev)))
665 (values (nreverse types-rev) arg-info))))
667 (defun get-wrappers-from-classes (nkeys wrappers classes metatypes)
668 (let* ((w wrappers) (w-tail w) (mt-tail metatypes))
669 (dolist (class (if (listp classes) classes (list classes)))
670 (unless (eq t (car mt-tail))
671 (let ((c-w (class-wrapper class)))
672 (unless c-w (return-from get-wrappers-from-classes nil))
673 (if (eql nkeys 1)
674 (setq w c-w)
675 (setf (car w-tail) c-w
676 w-tail (cdr w-tail)))))
677 (setq mt-tail (cdr mt-tail)))
680 (defun sdfun-for-caching (gf classes)
681 (let ((types (mapcar #'class-eq-type classes)))
682 (multiple-value-bind (methods all-applicable-and-sorted-p)
683 (compute-applicable-methods-using-types gf types)
684 (let ((generator (get-secondary-dispatch-function1
685 gf methods types nil t all-applicable-and-sorted-p)))
686 (make-callable gf methods generator
687 nil (mapcar #'class-wrapper classes))))))
689 (defun value-for-caching (gf classes)
690 (let ((methods (compute-applicable-methods-using-types
691 gf (mapcar #'class-eq-type classes))))
692 (method-plist-value (car methods) :constant-value)))
694 (defun default-secondary-dispatch-function (generic-function)
695 (lambda (&rest args)
696 (let ((methods (compute-applicable-methods generic-function args)))
697 (if methods
698 (let ((emf (get-effective-method-function generic-function
699 methods)))
700 (invoke-emf emf args))
701 (apply #'no-applicable-method generic-function args)))))
703 (defun list-eq (x y)
704 (loop (when (atom x) (return (eq x y)))
705 (when (atom y) (return nil))
706 (unless (eq (car x) (car y)) (return nil))
707 (setq x (cdr x)
708 y (cdr y))))
710 (defvar *std-cam-methods* nil)
712 (defun compute-applicable-methods-emf (generic-function)
713 (if (eq *boot-state* 'complete)
714 (let* ((cam (gdefinition 'compute-applicable-methods))
715 (cam-methods (compute-applicable-methods-using-types
716 cam (list `(eql ,generic-function) t))))
717 (values (get-effective-method-function cam cam-methods)
718 (list-eq cam-methods
719 (or *std-cam-methods*
720 (setq *std-cam-methods*
721 (compute-applicable-methods-using-types
722 cam (list `(eql ,cam) t)))))))
723 (values #'compute-applicable-methods-function t)))
725 (defun compute-applicable-methods-emf-std-p (gf)
726 (gf-info-c-a-m-emf-std-p (gf-arg-info gf)))
728 (defvar *old-c-a-m-gf-methods* nil)
730 (defun update-all-c-a-m-gf-info (c-a-m-gf)
731 (let ((methods (generic-function-methods c-a-m-gf)))
732 (if (and *old-c-a-m-gf-methods*
733 (every (lambda (old-method)
734 (member old-method methods))
735 *old-c-a-m-gf-methods*))
736 (let ((gfs-to-do nil)
737 (gf-classes-to-do nil))
738 (dolist (method methods)
739 (unless (member method *old-c-a-m-gf-methods*)
740 (let ((specl (car (method-specializers method))))
741 (if (eql-specializer-p specl)
742 (pushnew (specializer-object specl) gfs-to-do)
743 (pushnew (specializer-class specl) gf-classes-to-do)))))
744 (map-all-generic-functions
745 (lambda (gf)
746 (when (or (member gf gfs-to-do)
747 (dolist (class gf-classes-to-do nil)
748 (member class
749 (class-precedence-list (class-of gf)))))
750 (update-c-a-m-gf-info gf)))))
751 (map-all-generic-functions #'update-c-a-m-gf-info))
752 (setq *old-c-a-m-gf-methods* methods)))
754 (defun update-gf-info (gf)
755 (update-c-a-m-gf-info gf)
756 (update-gf-simple-accessor-type gf))
758 (defun update-c-a-m-gf-info (gf)
759 (unless (early-gf-p gf)
760 (multiple-value-bind (c-a-m-emf std-p)
761 (compute-applicable-methods-emf gf)
762 (let ((arg-info (gf-arg-info gf)))
763 (setf (gf-info-static-c-a-m-emf arg-info) c-a-m-emf)
764 (setf (gf-info-c-a-m-emf-std-p arg-info) std-p)))))
766 (defun update-gf-simple-accessor-type (gf)
767 (let ((arg-info (gf-arg-info gf)))
768 (setf (gf-info-simple-accessor-type arg-info)
769 (let* ((methods (generic-function-methods gf))
770 (class (and methods (class-of (car methods))))
771 (type
772 (and class
773 (cond ((or (eq class *the-class-standard-reader-method*)
774 (eq class *the-class-global-reader-method*))
775 'reader)
776 ((or (eq class *the-class-standard-writer-method*)
777 (eq class *the-class-global-writer-method*))
778 'writer)
779 ((or (eq class *the-class-standard-boundp-method*)
780 (eq class *the-class-global-boundp-method*))
781 'boundp)))))
782 (when (and (gf-info-c-a-m-emf-std-p arg-info)
783 type
784 (dolist (method (cdr methods) t)
785 (unless (eq class (class-of method)) (return nil)))
786 (eq (generic-function-method-combination gf)
787 *standard-method-combination*))
788 type)))))
791 ;;; CMUCL (Gerd's PCL, 2002-04-25) comment:
793 ;;; Return two values. First value is a function to be stored in
794 ;;; effective slot definition SLOTD for reading it with
795 ;;; SLOT-VALUE-USING-CLASS, setting it with (SETF
796 ;;; SLOT-VALUE-USING-CLASS) or testing it with
797 ;;; SLOT-BOUNDP-USING-CLASS. GF is one of these generic functions,
798 ;;; TYPE is one of the symbols READER, WRITER, BOUNDP. CLASS is
799 ;;; SLOTD's class.
801 ;;; Second value is true if the function returned is one of the
802 ;;; optimized standard functions for the purpose, which are used
803 ;;; when only standard methods are applicable.
805 ;;; FIXME: Change all these wacky function names to something sane.
806 (defun get-accessor-method-function (gf type class slotd)
807 (let* ((std-method (standard-svuc-method type))
808 (str-method (structure-svuc-method type))
809 (types1 `((eql ,class) (class-eq ,class) (eql ,slotd)))
810 (types (if (eq type 'writer) `(t ,@types1) types1))
811 (methods (compute-applicable-methods-using-types gf types))
812 (std-p (null (cdr methods))))
813 (values
814 (if std-p
815 (get-optimized-std-accessor-method-function class slotd type)
816 (let* ((optimized-std-fun
817 (get-optimized-std-slot-value-using-class-method-function
818 class slotd type))
819 (method-alist
820 `((,(car (or (member std-method methods)
821 (member str-method methods)
822 (bug "error in ~S"
823 'get-accessor-method-function)))
824 ,optimized-std-fun)))
825 (wrappers
826 (let ((wrappers (list (wrapper-of class)
827 (class-wrapper class)
828 (wrapper-of slotd))))
829 (if (eq type 'writer)
830 (cons (class-wrapper *the-class-t*) wrappers)
831 wrappers)))
832 (sdfun (get-secondary-dispatch-function
833 gf methods types method-alist wrappers)))
834 (get-accessor-from-svuc-method-function class slotd sdfun type)))
835 std-p)))
837 ;;; used by OPTIMIZE-SLOT-VALUE-BY-CLASS-P (vector.lisp)
838 (defun update-slot-value-gf-info (gf type)
839 (unless *new-class*
840 (update-std-or-str-methods gf type))
841 (when (and (standard-svuc-method type) (structure-svuc-method type))
842 (flet ((update-accessor-info (class)
843 (when (class-finalized-p class)
844 (dolist (slotd (class-slots class))
845 (compute-slot-accessor-info slotd type gf)))))
846 (if *new-class*
847 (update-accessor-info *new-class*)
848 (map-all-classes #'update-accessor-info 'slot-object)))))
850 (defvar *standard-slot-value-using-class-method* nil)
851 (defvar *standard-setf-slot-value-using-class-method* nil)
852 (defvar *standard-slot-boundp-using-class-method* nil)
853 (defvar *condition-slot-value-using-class-method* nil)
854 (defvar *condition-setf-slot-value-using-class-method* nil)
855 (defvar *condition-slot-boundp-using-class-method* nil)
856 (defvar *structure-slot-value-using-class-method* nil)
857 (defvar *structure-setf-slot-value-using-class-method* nil)
858 (defvar *structure-slot-boundp-using-class-method* nil)
860 (defun standard-svuc-method (type)
861 (case type
862 (reader *standard-slot-value-using-class-method*)
863 (writer *standard-setf-slot-value-using-class-method*)
864 (boundp *standard-slot-boundp-using-class-method*)))
866 (defun set-standard-svuc-method (type method)
867 (case type
868 (reader (setq *standard-slot-value-using-class-method* method))
869 (writer (setq *standard-setf-slot-value-using-class-method* method))
870 (boundp (setq *standard-slot-boundp-using-class-method* method))))
872 (defun condition-svuc-method (type)
873 (case type
874 (reader *condition-slot-value-using-class-method*)
875 (writer *condition-setf-slot-value-using-class-method*)
876 (boundp *condition-slot-boundp-using-class-method*)))
878 (defun set-condition-svuc-method (type method)
879 (case type
880 (reader (setq *condition-slot-value-using-class-method* method))
881 (writer (setq *condition-setf-slot-value-using-class-method* method))
882 (boundp (setq *condition-slot-boundp-using-class-method* method))))
884 (defun structure-svuc-method (type)
885 (case type
886 (reader *structure-slot-value-using-class-method*)
887 (writer *structure-setf-slot-value-using-class-method*)
888 (boundp *structure-slot-boundp-using-class-method*)))
890 (defun set-structure-svuc-method (type method)
891 (case type
892 (reader (setq *structure-slot-value-using-class-method* method))
893 (writer (setq *structure-setf-slot-value-using-class-method* method))
894 (boundp (setq *structure-slot-boundp-using-class-method* method))))
896 (defun update-std-or-str-methods (gf type)
897 (dolist (method (generic-function-methods gf))
898 (let ((specls (method-specializers method)))
899 (when (and (or (not (eq type 'writer))
900 (eq (pop specls) *the-class-t*))
901 (every #'classp specls))
902 (cond ((and (eq (class-name (car specls)) 'std-class)
903 (eq (class-name (cadr specls)) 'standard-object)
904 (eq (class-name (caddr specls))
905 'standard-effective-slot-definition))
906 (set-standard-svuc-method type method))
907 ((and (eq (class-name (car specls)) 'condition-class)
908 (eq (class-name (cadr specls)) 'condition)
909 (eq (class-name (caddr specls))
910 'condition-effective-slot-definition))
911 (set-condition-svuc-method type method))
912 ((and (eq (class-name (car specls)) 'structure-class)
913 (eq (class-name (cadr specls)) 'structure-object)
914 (eq (class-name (caddr specls))
915 'structure-effective-slot-definition))
916 (set-structure-svuc-method type method)))))))
918 (defun mec-all-classes-internal (spec precompute-p)
919 (let ((wrapper (class-wrapper (specializer-class spec))))
920 (unless (or (not wrapper) (invalid-wrapper-p wrapper))
921 (cons (specializer-class spec)
922 (and (classp spec)
923 precompute-p
924 (not (or (eq spec *the-class-t*)
925 (eq spec *the-class-slot-object*)
926 (eq spec *the-class-standard-object*)
927 (eq spec *the-class-structure-object*)))
928 (let ((sc (class-direct-subclasses spec)))
929 (when sc
930 (mapcan (lambda (class)
931 (mec-all-classes-internal class precompute-p))
932 sc))))))))
934 (defun mec-all-classes (spec precompute-p)
935 (let ((classes (mec-all-classes-internal spec precompute-p)))
936 (if (null (cdr classes))
937 classes
938 (let* ((a-classes (cons nil classes))
939 (tail classes))
940 (loop (when (null (cdr tail))
941 (return (cdr a-classes)))
942 (let ((class (cadr tail))
943 (ttail (cddr tail)))
944 (if (dolist (c ttail nil)
945 (when (eq class c) (return t)))
946 (setf (cdr tail) (cddr tail))
947 (setf tail (cdr tail)))))))))
949 (defun mec-all-class-lists (spec-list precompute-p)
950 (if (null spec-list)
951 (list nil)
952 (let* ((car-all-classes (mec-all-classes (car spec-list)
953 precompute-p))
954 (all-class-lists (mec-all-class-lists (cdr spec-list)
955 precompute-p)))
956 (mapcan (lambda (list)
957 (mapcar (lambda (c) (cons c list)) car-all-classes))
958 all-class-lists))))
960 (defun make-emf-cache (generic-function valuep cache classes-list new-class)
961 (let* ((arg-info (gf-arg-info generic-function))
962 (nkeys (arg-info-nkeys arg-info))
963 (metatypes (arg-info-metatypes arg-info))
964 (wrappers (unless (eq nkeys 1) (make-list nkeys)))
965 (precompute-p (gf-precompute-dfun-and-emf-p arg-info)))
966 (flet ((add-class-list (classes)
967 (when (or (null new-class) (memq new-class classes))
968 (let ((%wrappers (get-wrappers-from-classes
969 nkeys wrappers classes metatypes)))
970 (when (and %wrappers (not (probe-cache cache %wrappers)))
971 (let ((value (cond ((eq valuep t)
972 (sdfun-for-caching generic-function
973 classes))
974 ((eq valuep :constant-value)
975 (value-for-caching generic-function
976 classes)))))
977 ;; need to get them again, as finalization might
978 ;; have happened in between, which would
979 ;; invalidate wrappers.
980 (let ((wrappers (get-wrappers-from-classes
981 nkeys wrappers classes metatypes)))
982 (when (if (atom wrappers)
983 (not (invalid-wrapper-p wrappers))
984 (every (complement #'invalid-wrapper-p)
985 wrappers))
986 (setq cache (fill-cache cache wrappers value))))))))))
987 (if classes-list
988 (mapc #'add-class-list classes-list)
989 (dolist (method (generic-function-methods generic-function))
990 (mapc #'add-class-list
991 (mec-all-class-lists (method-specializers method)
992 precompute-p))))
993 cache)))
995 (defmacro class-test (arg class)
996 (cond
997 ((eq class *the-class-t*) t)
998 ((eq class *the-class-slot-object*)
999 `(not (typep (classoid-of ,arg) 'built-in-classoid)))
1000 ((eq class *the-class-standard-object*)
1001 `(or (std-instance-p ,arg) (fsc-instance-p ,arg)))
1002 ((eq class *the-class-funcallable-standard-object*)
1003 `(fsc-instance-p ,arg))
1005 `(typep ,arg ',(class-name class)))))
1007 (defmacro class-eq-test (arg class)
1008 `(eq (class-of ,arg) ',class))
1010 (defmacro eql-test (arg object)
1011 `(eql ,arg ',object))
1013 (defun dnet-methods-p (form)
1014 (and (consp form)
1015 (or (eq (car form) 'methods)
1016 (eq (car form) 'unordered-methods))))
1018 ;;; This is CASE, but without gensyms.
1019 (defmacro scase (arg &rest clauses)
1020 `(let ((.case-arg. ,arg))
1021 (cond ,@(mapcar (lambda (clause)
1022 (list* (cond ((null (car clause))
1023 nil)
1024 ((consp (car clause))
1025 (if (null (cdar clause))
1026 `(eql .case-arg.
1027 ',(caar clause))
1028 `(member .case-arg.
1029 ',(car clause))))
1030 ((member (car clause) '(t otherwise))
1033 `(eql .case-arg. ',(car clause))))
1035 (cdr clause)))
1036 clauses))))
1038 (defmacro mcase (arg &rest clauses) `(scase ,arg ,@clauses))
1040 (defun generate-discrimination-net (generic-function methods types sorted-p)
1041 (let* ((arg-info (gf-arg-info generic-function))
1042 (c-a-m-emf-std-p (gf-info-c-a-m-emf-std-p arg-info))
1043 (precedence (arg-info-precedence arg-info)))
1044 (generate-discrimination-net-internal
1045 generic-function methods types
1046 (lambda (methods known-types)
1047 (if (or sorted-p
1048 (and c-a-m-emf-std-p
1049 (block one-order-p
1050 (let ((sorted-methods nil))
1051 (map-all-orders
1052 (copy-list methods) precedence
1053 (lambda (methods)
1054 (when sorted-methods (return-from one-order-p nil))
1055 (setq sorted-methods methods)))
1056 (setq methods sorted-methods))
1057 t)))
1058 `(methods ,methods ,known-types)
1059 `(unordered-methods ,methods ,known-types)))
1060 (lambda (position type true-value false-value)
1061 (let ((arg (dfun-arg-symbol position)))
1062 (if (eq (car type) 'eql)
1063 (let* ((false-case-p (and (consp false-value)
1064 (or (eq (car false-value) 'scase)
1065 (eq (car false-value) 'mcase))
1066 (eq arg (cadr false-value))))
1067 (false-clauses (if false-case-p
1068 (cddr false-value)
1069 `((t ,false-value))))
1070 (case-sym (if (and (dnet-methods-p true-value)
1071 (if false-case-p
1072 (eq (car false-value) 'mcase)
1073 (dnet-methods-p false-value)))
1074 'mcase
1075 'scase))
1076 (type-sym `(,(cadr type))))
1077 `(,case-sym ,arg
1078 (,type-sym ,true-value)
1079 ,@false-clauses))
1080 `(if ,(let ((arg (dfun-arg-symbol position)))
1081 (case (car type)
1082 (class `(class-test ,arg ,(cadr type)))
1083 (class-eq `(class-eq-test ,arg ,(cadr type)))))
1084 ,true-value
1085 ,false-value))))
1086 #'identity)))
1088 (defun class-from-type (type)
1089 (if (or (atom type) (eq (car type) t))
1090 *the-class-t*
1091 (case (car type)
1092 (and (dolist (type (cdr type) *the-class-t*)
1093 (when (and (consp type) (not (eq (car type) 'not)))
1094 (return (class-from-type type)))))
1095 (not *the-class-t*)
1096 (eql (class-of (cadr type)))
1097 (class-eq (cadr type))
1098 (class (cadr type)))))
1100 (defun precompute-effective-methods (gf caching-p &optional classes-list-p)
1101 (let* ((arg-info (gf-arg-info gf))
1102 (methods (generic-function-methods gf))
1103 (precedence (arg-info-precedence arg-info))
1104 (*in-precompute-effective-methods-p* t)
1105 (classes-list nil))
1106 (generate-discrimination-net-internal
1107 gf methods nil
1108 (lambda (methods known-types)
1109 (when methods
1110 (when classes-list-p
1111 (push (mapcar #'class-from-type known-types) classes-list))
1112 (let ((no-eql-specls-p (not (methods-contain-eql-specializer-p
1113 methods))))
1114 (map-all-orders
1115 methods precedence
1116 (lambda (methods)
1117 (get-secondary-dispatch-function1
1118 gf methods known-types
1119 nil caching-p no-eql-specls-p))))))
1120 (lambda (position type true-value false-value)
1121 (declare (ignore position type true-value false-value))
1122 nil)
1123 (lambda (type)
1124 (if (and (consp type) (eq (car type) 'eql))
1125 `(class-eq ,(class-of (cadr type)))
1126 type)))
1127 classes-list))
1129 ;;; We know that known-type implies neither new-type nor `(not ,new-type).
1130 (defun augment-type (new-type known-type)
1131 (if (or (eq known-type t)
1132 (eq (car new-type) 'eql))
1133 new-type
1134 (let ((so-far (if (and (consp known-type) (eq (car known-type) 'and))
1135 (cdr known-type)
1136 (list known-type))))
1137 (unless (eq (car new-type) 'not)
1138 (setq so-far
1139 (mapcan (lambda (type)
1140 (unless (*subtypep new-type type)
1141 (list type)))
1142 so-far)))
1143 (if (null so-far)
1144 new-type
1145 `(and ,new-type ,@so-far)))))
1147 (defun generate-discrimination-net-internal
1148 (gf methods types methods-function test-fun type-function)
1149 (let* ((arg-info (gf-arg-info gf))
1150 (precedence (arg-info-precedence arg-info))
1151 (nreq (arg-info-number-required arg-info))
1152 (metatypes (arg-info-metatypes arg-info)))
1153 (labels ((do-column (p-tail contenders known-types)
1154 (if p-tail
1155 (let* ((position (car p-tail))
1156 (known-type (or (nth position types) t)))
1157 (if (eq (nth position metatypes) t)
1158 (do-column (cdr p-tail) contenders
1159 (cons (cons position known-type)
1160 known-types))
1161 (do-methods p-tail contenders
1162 known-type () known-types)))
1163 (funcall methods-function contenders
1164 (let ((k-t (make-list nreq)))
1165 (dolist (index+type known-types)
1166 (setf (nth (car index+type) k-t)
1167 (cdr index+type)))
1168 k-t))))
1169 (do-methods (p-tail contenders known-type winners known-types)
1170 ;; CONTENDERS
1171 ;; is a (sorted) list of methods that must be discriminated.
1172 ;; KNOWN-TYPE
1173 ;; is the type of this argument, constructed from tests
1174 ;; already made.
1175 ;; WINNERS
1176 ;; is a (sorted) list of methods that are potentially
1177 ;; applicable after the discrimination has been made.
1178 (if (null contenders)
1179 (do-column (cdr p-tail)
1180 winners
1181 (cons (cons (car p-tail) known-type)
1182 known-types))
1183 (let* ((position (car p-tail))
1184 (method (car contenders))
1185 (specl (nth position (method-specializers method)))
1186 (type (funcall type-function
1187 (type-from-specializer specl))))
1188 (multiple-value-bind (app-p maybe-app-p)
1189 (specializer-applicable-using-type-p type known-type)
1190 (flet ((determined-to-be (truth-value)
1191 (if truth-value app-p (not maybe-app-p)))
1192 (do-if (truth &optional implied)
1193 (let ((ntype (if truth type `(not ,type))))
1194 (do-methods p-tail
1195 (cdr contenders)
1196 (if implied
1197 known-type
1198 (augment-type ntype known-type))
1199 (if truth
1200 (append winners `(,method))
1201 winners)
1202 known-types))))
1203 (cond ((determined-to-be nil) (do-if nil t))
1204 ((determined-to-be t) (do-if t t))
1205 (t (funcall test-fun position type
1206 (do-if t) (do-if nil))))))))))
1207 (do-column precedence methods ()))))
1209 (defun compute-secondary-dispatch-function (generic-function net &optional
1210 method-alist wrappers)
1211 (function-funcall (compute-secondary-dispatch-function1 generic-function net)
1212 method-alist wrappers))
1214 (defvar *eq-case-table-limit* 15)
1215 (defvar *case-table-limit* 10)
1217 (defun compute-mcase-parameters (case-list)
1218 (unless (eq t (caar (last case-list)))
1219 (error "The key for the last case arg to mcase was not T"))
1220 (let* ((eq-p (dolist (case case-list t)
1221 (unless (or (eq (car case) t)
1222 (symbolp (caar case)))
1223 (return nil))))
1224 (len (1- (length case-list)))
1225 (type (cond ((= len 1)
1226 :simple)
1227 ((<= len
1228 (if eq-p
1229 *eq-case-table-limit*
1230 *case-table-limit*))
1231 :assoc)
1233 :hash-table))))
1234 (list eq-p type)))
1236 (defmacro mlookup (key info default &optional eq-p type)
1237 (unless (or (eq eq-p t) (null eq-p))
1238 (bug "Invalid eq-p argument: ~S" eq-p))
1239 (ecase type
1240 (:simple
1241 `(if (locally
1242 (declare (optimize (inhibit-warnings 3)))
1243 (,(if eq-p 'eq 'eql) ,key (car ,info)))
1244 (cdr ,info)
1245 ,default))
1246 (:assoc
1247 `(dolist (e ,info ,default)
1248 (when (locally
1249 (declare (optimize (inhibit-warnings 3)))
1250 (,(if eq-p 'eq 'eql) (car e) ,key))
1251 (return (cdr e)))))
1252 (:hash-table
1253 `(gethash ,key ,info ,default))))
1255 (defun net-test-converter (form)
1256 (if (atom form)
1257 (default-test-converter form)
1258 (case (car form)
1259 ((invoke-effective-method-function invoke-fast-method-call
1260 invoke-effective-narrow-method-function)
1261 '.call.)
1262 (methods
1263 '.methods.)
1264 (unordered-methods
1265 '.umethods.)
1266 (mcase
1267 `(mlookup ,(cadr form)
1270 ,@(compute-mcase-parameters (cddr form))))
1271 (t (default-test-converter form)))))
1273 (defun net-code-converter (form)
1274 (if (atom form)
1275 (default-code-converter form)
1276 (case (car form)
1277 ((methods unordered-methods)
1278 (let ((gensym (gensym)))
1279 (values gensym
1280 (list gensym))))
1281 (mcase
1282 (let ((mp (compute-mcase-parameters (cddr form)))
1283 (gensym (gensym)) (default (gensym)))
1284 (values `(mlookup ,(cadr form) ,gensym ,default ,@mp)
1285 (list gensym default))))
1287 (default-code-converter form)))))
1289 (defun net-constant-converter (form generic-function)
1290 (or (let ((c (methods-converter form generic-function)))
1291 (when c (list c)))
1292 (if (atom form)
1293 (default-constant-converter form)
1294 (case (car form)
1295 (mcase
1296 (let* ((mp (compute-mcase-parameters (cddr form)))
1297 (list (mapcar (lambda (clause)
1298 (let ((key (car clause))
1299 (meth (cadr clause)))
1300 (cons (if (consp key) (car key) key)
1301 (methods-converter
1302 meth generic-function))))
1303 (cddr form)))
1304 (default (car (last list))))
1305 (list (list* :mcase mp (nbutlast list))
1306 (cdr default))))
1308 (default-constant-converter form))))))
1310 (defun methods-converter (form generic-function)
1311 (cond ((and (consp form) (eq (car form) 'methods))
1312 (cons '.methods.
1313 (get-effective-method-function1 generic-function (cadr form))))
1314 ((and (consp form) (eq (car form) 'unordered-methods))
1315 (default-secondary-dispatch-function generic-function))))
1317 (defun convert-methods (constant method-alist wrappers)
1318 (if (and (consp constant)
1319 (eq (car constant) '.methods.))
1320 (funcall (cdr constant) method-alist wrappers)
1321 constant))
1323 (defun convert-table (constant method-alist wrappers)
1324 (cond ((and (consp constant)
1325 (eq (car constant) :mcase))
1326 (let ((alist (mapcar (lambda (k+m)
1327 (cons (car k+m)
1328 (convert-methods (cdr k+m)
1329 method-alist
1330 wrappers)))
1331 (cddr constant)))
1332 (mp (cadr constant)))
1333 (ecase (cadr mp)
1334 (:simple
1335 (car alist))
1336 (:assoc
1337 alist)
1338 (:hash-table
1339 (let ((table (make-hash-table :test (if (car mp) 'eq 'eql))))
1340 (dolist (k+m alist)
1341 (setf (gethash (car k+m) table) (cdr k+m)))
1342 table)))))))
1344 (defun compute-secondary-dispatch-function1 (generic-function net
1345 &optional function-p)
1346 (cond
1347 ((and (eq (car net) 'methods) (not function-p))
1348 (get-effective-method-function1 generic-function (cadr net)))
1350 (let* ((name (generic-function-name generic-function))
1351 (arg-info (gf-arg-info generic-function))
1352 (metatypes (arg-info-metatypes arg-info))
1353 (nargs (length metatypes))
1354 (applyp (arg-info-applyp arg-info))
1355 (fmc-arg-info (cons nargs applyp))
1356 (arglist (if function-p
1357 (make-dfun-lambda-list nargs applyp)
1358 (make-fast-method-call-lambda-list nargs applyp))))
1359 (multiple-value-bind (cfunction constants)
1360 (get-fun1 `(lambda
1361 ,arglist
1362 ,@(unless function-p
1363 `((declare (ignore .pv. .next-method-call.))))
1364 (locally (declare #.*optimize-speed*)
1365 (let ((emf ,net))
1366 ,(make-emf-call nargs applyp 'emf))))
1367 #'net-test-converter
1368 #'net-code-converter
1369 (lambda (form)
1370 (net-constant-converter form generic-function)))
1371 (lambda (method-alist wrappers)
1372 (let* ((alist (list nil))
1373 (alist-tail alist))
1374 (dolist (constant constants)
1375 (let* ((a (or (dolist (a alist nil)
1376 (when (eq (car a) constant)
1377 (return a)))
1378 (cons constant
1379 (or (convert-table
1380 constant method-alist wrappers)
1381 (convert-methods
1382 constant method-alist wrappers)))))
1383 (new (list a)))
1384 (setf (cdr alist-tail) new)
1385 (setf alist-tail new)))
1386 (let ((function (apply cfunction (mapcar #'cdr (cdr alist)))))
1387 (if function-p
1388 function
1389 (make-fast-method-call
1390 :function (set-fun-name function `(sdfun-method ,name))
1391 :arg-info fmc-arg-info))))))))))
1393 (defvar *show-make-unordered-methods-emf-calls* nil)
1395 (defun make-unordered-methods-emf (generic-function methods)
1396 (when *show-make-unordered-methods-emf-calls*
1397 (format t "~&make-unordered-methods-emf ~S~%"
1398 (generic-function-name generic-function)))
1399 (lambda (&rest args)
1400 (let* ((types (types-from-args generic-function args 'eql))
1401 (smethods (sort-applicable-methods generic-function
1402 methods
1403 types))
1404 (emf (get-effective-method-function generic-function smethods)))
1405 (invoke-emf emf args))))
1407 ;;; The value returned by compute-discriminating-function is a function
1408 ;;; object. It is called a discriminating function because it is called
1409 ;;; when the generic function is called and its role is to discriminate
1410 ;;; on the arguments to the generic function and then call appropriate
1411 ;;; method functions.
1413 ;;; A discriminating function can only be called when it is installed as
1414 ;;; the funcallable instance function of the generic function for which
1415 ;;; it was computed.
1417 ;;; More precisely, if compute-discriminating-function is called with
1418 ;;; an argument <gf1>, and returns a result <df1>, that result must
1419 ;;; not be passed to apply or funcall directly. Rather, <df1> must be
1420 ;;; stored as the funcallable instance function of the same generic
1421 ;;; function <gf1> (using SET-FUNCALLABLE-INSTANCE-FUNCTION). Then the
1422 ;;; generic function can be passed to funcall or apply.
1424 ;;; An important exception is that methods on this generic function are
1425 ;;; permitted to return a function which itself ends up calling the value
1426 ;;; returned by a more specific method. This kind of `encapsulation' of
1427 ;;; discriminating function is critical to many uses of the MOP.
1429 ;;; As an example, the following canonical case is legal:
1431 ;;; (defmethod compute-discriminating-function ((gf my-generic-function))
1432 ;;; (let ((std (call-next-method)))
1433 ;;; (lambda (arg)
1434 ;;; (print (list 'call-to-gf gf arg))
1435 ;;; (funcall std arg))))
1437 ;;; Because many discriminating functions would like to use a dynamic
1438 ;;; strategy in which the precise discriminating function changes with
1439 ;;; time it is important to specify how a discriminating function is
1440 ;;; permitted itself to change the funcallable instance function of the
1441 ;;; generic function.
1443 ;;; Discriminating functions may set the funcallable instance function
1444 ;;; of the generic function, but the new value must be generated by making
1445 ;;; a call to COMPUTE-DISCRIMINATING-FUNCTION. This is to ensure that any
1446 ;;; more specific methods which may have encapsulated the discriminating
1447 ;;; function will get a chance to encapsulate the new, inner discriminating
1448 ;;; function.
1450 ;;; This implies that if a discriminating function wants to modify itself
1451 ;;; it should first store some information in the generic function proper,
1452 ;;; and then call compute-discriminating-function. The appropriate method
1453 ;;; on compute-discriminating-function will see the information stored in
1454 ;;; the generic function and generate a discriminating function accordingly.
1456 ;;; The following is an example of a discriminating function which modifies
1457 ;;; itself in accordance with this protocol:
1459 ;;; (defmethod compute-discriminating-function ((gf my-generic-function))
1460 ;;; (lambda (arg)
1461 ;;; (cond (<some condition>
1462 ;;; <store some info in the generic function>
1463 ;;; (set-funcallable-instance-function
1464 ;;; gf
1465 ;;; (compute-discriminating-function gf))
1466 ;;; (funcall gf arg))
1467 ;;; (t
1468 ;;; <call-a-method-of-gf>))))
1470 ;;; Whereas this code would not be legal:
1472 ;;; (defmethod compute-discriminating-function ((gf my-generic-function))
1473 ;;; (lambda (arg)
1474 ;;; (cond (<some condition>
1475 ;;; (set-funcallable-instance-function
1476 ;;; gf
1477 ;;; (lambda (a) ..))
1478 ;;; (funcall gf arg))
1479 ;;; (t
1480 ;;; <call-a-method-of-gf>))))
1482 ;;; NOTE: All the examples above assume that all instances of the class
1483 ;;; my-generic-function accept only one argument.
1485 (defun slot-value-using-class-dfun (class object slotd)
1486 (declare (ignore class))
1487 (function-funcall (slot-definition-reader-function slotd) object))
1489 (defun setf-slot-value-using-class-dfun (new-value class object slotd)
1490 (declare (ignore class))
1491 (function-funcall (slot-definition-writer-function slotd) new-value object))
1493 (defun slot-boundp-using-class-dfun (class object slotd)
1494 (declare (ignore class))
1495 (function-funcall (slot-definition-boundp-function slotd) object))
1497 (defun special-case-for-compute-discriminating-function-p (gf)
1498 (or (eq gf #'slot-value-using-class)
1499 (eq gf #'(setf slot-value-using-class))
1500 (eq gf #'slot-boundp-using-class)))
1502 (defmethod compute-discriminating-function ((gf standard-generic-function))
1503 (let ((dfun-state (slot-value gf 'dfun-state)))
1504 (when (special-case-for-compute-discriminating-function-p gf)
1505 ;; if we have a special case for
1506 ;; COMPUTE-DISCRIMINATING-FUNCTION, then (at least for the
1507 ;; special cases implemented as of 2006-05-09) any information
1508 ;; in the cache is misplaced.
1509 (aver (null dfun-state)))
1510 (typecase dfun-state
1511 (null
1512 (when (eq gf #'compute-applicable-methods)
1513 (update-all-c-a-m-gf-info gf))
1514 (cond
1515 ((eq gf #'slot-value-using-class)
1516 (update-slot-value-gf-info gf 'reader)
1517 #'slot-value-using-class-dfun)
1518 ((eq gf #'(setf slot-value-using-class))
1519 (update-slot-value-gf-info gf 'writer)
1520 #'setf-slot-value-using-class-dfun)
1521 ((eq gf #'slot-boundp-using-class)
1522 (update-slot-value-gf-info gf 'boundp)
1523 #'slot-boundp-using-class-dfun)
1524 ((gf-precompute-dfun-and-emf-p (slot-value gf 'arg-info))
1525 (make-final-dfun gf))
1527 (make-initial-dfun gf))))
1528 (function dfun-state)
1529 (cons (car dfun-state)))))
1531 (defmethod update-gf-dfun ((class std-class) gf)
1532 (let ((*new-class* class)
1533 (arg-info (gf-arg-info gf)))
1534 (cond
1535 ((special-case-for-compute-discriminating-function-p gf))
1536 ((gf-precompute-dfun-and-emf-p arg-info)
1537 (multiple-value-bind (dfun cache info)
1538 (make-final-dfun-internal gf)
1539 (update-dfun gf dfun cache info))))))
1541 (defmethod (setf class-name) (new-value class)
1542 (let ((classoid (wrapper-classoid (class-wrapper class))))
1543 (if (and new-value (symbolp new-value))
1544 (setf (classoid-name classoid) new-value)
1545 (setf (classoid-name classoid) nil)))
1546 (reinitialize-instance class :name new-value)
1547 new-value)
1549 (defmethod (setf generic-function-name) (new-value generic-function)
1550 (reinitialize-instance generic-function :name new-value)
1551 new-value)
1553 (defmethod function-keyword-parameters ((method standard-method))
1554 (multiple-value-bind (nreq nopt keysp restp allow-other-keys-p
1555 keywords keyword-parameters)
1556 (analyze-lambda-list (if (consp method)
1557 (early-method-lambda-list method)
1558 (method-lambda-list method)))
1559 (declare (ignore nreq nopt keysp restp keywords))
1560 (values keyword-parameters allow-other-keys-p)))
1562 (defun method-ll->generic-function-ll (ll)
1563 (multiple-value-bind
1564 (nreq nopt keysp restp allow-other-keys-p keywords keyword-parameters)
1565 (analyze-lambda-list ll)
1566 (declare (ignore nreq nopt keysp restp allow-other-keys-p keywords))
1567 (remove-if (lambda (s)
1568 (or (memq s keyword-parameters)
1569 (eq s '&allow-other-keys)))
1570 ll)))
1572 ;;; This is based on the rules of method lambda list congruency
1573 ;;; defined in the spec. The lambda list it constructs is the pretty
1574 ;;; union of the lambda lists of the generic function and of all its
1575 ;;; methods. It doesn't take method applicability into account at all
1576 ;;; yet.
1578 ;;; (Notice that we ignore &AUX variables as they're not part of the
1579 ;;; "public interface" of a function.)
1581 (defmethod generic-function-pretty-arglist
1582 ((generic-function standard-generic-function))
1583 (let ((gf-lambda-list (generic-function-lambda-list generic-function))
1584 (methods (generic-function-methods generic-function)))
1585 (if (null methods)
1586 gf-lambda-list
1587 (multiple-value-bind (gf.required gf.optional gf.rest gf.keys gf.allowp)
1588 (%split-arglist gf-lambda-list)
1589 ;; Possibly extend the keyword parameters of the gf by
1590 ;; additional key parameters of its methods:
1591 (let ((methods.keys nil) (methods.allowp nil))
1592 (dolist (m methods)
1593 (multiple-value-bind (m.keyparams m.allow-other-keys)
1594 (function-keyword-parameters m)
1595 (setq methods.keys (union methods.keys m.keyparams :key #'maybe-car))
1596 (setq methods.allowp (or methods.allowp m.allow-other-keys))))
1597 (let ((arglist '()))
1598 (when (or gf.allowp methods.allowp)
1599 (push '&allow-other-keys arglist))
1600 (when (or gf.keys methods.keys)
1601 ;; We make sure that the keys of the gf appear before
1602 ;; those of its methods, since they're probably more
1603 ;; generally appliable.
1604 (setq arglist (nconc (list '&key) gf.keys
1605 (nset-difference methods.keys gf.keys)
1606 arglist)))
1607 (when gf.rest
1608 (setq arglist (nconc (list '&rest gf.rest) arglist)))
1609 (when gf.optional
1610 (setq arglist (nconc (list '&optional) gf.optional arglist)))
1611 (nconc gf.required arglist)))))))
1613 (defun maybe-car (thing)
1614 (if (listp thing)
1615 (car thing)
1616 thing))
1619 (defun %split-arglist (lambda-list)
1620 ;; This function serves to shrink the number of returned values of
1621 ;; PARSE-LAMBDA-LIST to something handier.
1622 (multiple-value-bind (required optional restp rest keyp keys allowp
1623 auxp aux morep more-context more-count)
1624 (parse-lambda-list lambda-list)
1625 (declare (ignore restp keyp auxp aux morep))
1626 (declare (ignore more-context more-count))
1627 (values required optional rest keys allowp)))