1 ;;;; This software is part of the SBCL system. See the README file for
4 ;;;; This software is derived from software originally released by Xerox
5 ;;;; Corporation. Copyright and release statements follow. Later modifications
6 ;;;; to the software are in the public domain and are provided with
7 ;;;; absolutely no warranty. See the COPYING and CREDITS files for more
10 ;;;; copyright information from original PCL sources:
12 ;;;; Copyright (c) 1985, 1986, 1987, 1988, 1989, 1990 Xerox Corporation.
13 ;;;; All rights reserved.
15 ;;;; Use and copying of this software and preparation of derivative works based
16 ;;;; upon this software are permitted. Any distribution of this software or
17 ;;;; derivative works must comply with all applicable United States export
20 ;;;; This software is made available AS IS, and Xerox Corporation makes no
21 ;;;; warranty about the software, its performance or its conformity to any
26 (defmethod slot-accessor-function ((slotd effective-slot-definition) type)
28 (reader (slot-definition-reader-function slotd))
29 (writer (slot-definition-writer-function slotd))
30 (boundp (slot-definition-boundp-function slotd))))
32 (defmethod (setf slot-accessor-function) (function
33 (slotd effective-slot-definition)
36 (reader (setf (slot-definition-reader-function slotd) function))
37 (writer (setf (slot-definition-writer-function slotd) function))
38 (boundp (setf (slot-definition-boundp-function slotd) function))))
40 (defconstant +slotd-reader-function-std-p+ 1)
41 (defconstant +slotd-writer-function-std-p+ 2)
42 (defconstant +slotd-boundp-function-std-p+ 4)
43 (defconstant +slotd-all-function-std-p+ 7)
45 (defmethod slot-accessor-std-p ((slotd effective-slot-definition) type)
46 (let ((flags (slot-value slotd 'accessor-flags)))
47 (declare (type fixnum flags))
49 (eql +slotd-all-function-std-p+ flags)
50 (let ((mask (ecase type
51 (reader +slotd-reader-function-std-p+)
52 (writer +slotd-writer-function-std-p+)
53 (boundp +slotd-boundp-function-std-p+))))
54 (declare (type fixnum mask))
55 (not (zerop (the fixnum (logand mask flags))))))))
57 (defmethod (setf slot-accessor-std-p) (value
58 (slotd effective-slot-definition)
60 (let ((mask (ecase type
61 (reader +slotd-reader-function-std-p+)
62 (writer +slotd-writer-function-std-p+)
63 (boundp +slotd-boundp-function-std-p+)))
64 (flags (slot-value slotd 'accessor-flags)))
65 (declare (type fixnum mask flags))
66 (setf (slot-value slotd 'accessor-flags)
68 (the fixnum (logior mask flags))
69 (the fixnum (logand (the fixnum (lognot mask)) flags)))))
72 (defmethod initialize-internal-slot-functions ((slotd
73 effective-slot-definition))
74 (let* ((name (slot-value slotd 'name))
75 (class (slot-value slotd '%class)))
76 (dolist (type '(reader writer boundp))
77 (let* ((gf-name (ecase type
78 (reader 'slot-value-using-class)
79 (writer '(setf slot-value-using-class))
80 (boundp 'slot-boundp-using-class)))
81 (gf (gdefinition gf-name)))
82 (compute-slot-accessor-info slotd type gf)))))
84 ;;; CMUCL (Gerd PCL 2003-04-25) comment:
86 ;;; Compute an effective method for SLOT-VALUE-USING-CLASS, (SETF
87 ;;; SLOT-VALUE-USING-CLASS) or SLOT-BOUNDP-USING-CLASS for reading/
88 ;;; writing/testing effective slot SLOTD.
90 ;;; TYPE is one of the symbols READER, WRITER or BOUNDP, depending on
91 ;;; GF. Store the effective method in the effective slot definition
92 ;;; object itself; these GFs have special dispatch functions calling
93 ;;; effective methods directly retrieved from effective slot
94 ;;; definition objects, as an optimization.
96 ;;; FIXME: Change the function name to COMPUTE-SVUC-SLOTD-FUNCTION,
98 (defmethod compute-slot-accessor-info ((slotd effective-slot-definition)
100 (let* ((name (slot-value slotd 'name))
101 (class (slot-value slotd '%class))
102 (old-slotd (find-slot-definition class name))
103 (old-std-p (and old-slotd (slot-accessor-std-p old-slotd 'all))))
104 (multiple-value-bind (function std-p)
105 (if (eq *boot-state* 'complete)
106 (get-accessor-method-function gf type class slotd)
107 (get-optimized-std-accessor-method-function class slotd type))
108 (setf (slot-accessor-std-p slotd type) std-p)
109 (setf (slot-accessor-function slotd type) function))
110 (when (and old-slotd (not (eq old-std-p (slot-accessor-std-p slotd 'all))))
111 (push (cons class name) *pv-table-cache-update-info*))))
113 (defmethod slot-definition-allocation ((slotd structure-slot-definition))
116 ;;;; various class accessors that are a little more complicated than can be
117 ;;;; done with automatically generated reader methods
119 (defmethod class-prototype :before (class)
120 (unless (class-finalized-p class)
121 (error "~@<~S is not finalized.~:@>" class)))
123 ;;; KLUDGE: For some reason factoring the common body into a function
124 ;;; breaks PCL bootstrapping, so just generate it with a macrolet for
126 (macrolet ((def (class)
127 `(defmethod class-prototype ((class ,class))
128 (with-slots (prototype) class
130 (setf prototype (allocate-instance class)))))))
132 (def condition-class)
133 (def structure-class))
135 (defmethod class-direct-default-initargs ((class slot-class))
136 (plist-value class 'direct-default-initargs))
138 (defmethod class-default-initargs ((class slot-class))
139 (plist-value class 'default-initargs))
141 (defmethod class-slot-cells ((class std-class))
142 (plist-value class 'class-slot-cells))
143 (defmethod (setf class-slot-cells) (new-value (class std-class))
144 (setf (plist-value class 'class-slot-cells) new-value))
146 ;;;; class accessors that are even a little bit more complicated than those
147 ;;;; above. These have a protocol for updating them, we must implement that
150 ;;; Maintaining the direct subclasses backpointers. The update methods are
151 ;;; here, the values are read by an automatically generated reader method.
152 (defmethod add-direct-subclass ((class class) (subclass class))
153 (with-slots (direct-subclasses) class
154 (pushnew subclass direct-subclasses)
156 (defmethod remove-direct-subclass ((class class) (subclass class))
157 (with-slots (direct-subclasses) class
158 (setq direct-subclasses (remove subclass direct-subclasses))
161 ;;; Maintaining the direct-methods and direct-generic-functions backpointers.
163 ;;; There are four generic functions involved, each has one method for the
164 ;;; class case and another method for the damned EQL specializers. All of
165 ;;; these are specified methods and appear in their specified place in the
168 ;;; ADD-DIRECT-METHOD
169 ;;; REMOVE-DIRECT-METHOD
170 ;;; SPECIALIZER-DIRECT-METHODS
171 ;;; SPECIALIZER-DIRECT-GENERIC-FUNCTIONS
173 ;;; In each case, we maintain one value which is a cons. The car is the list
174 ;;; methods. The cdr is a list of the generic functions. The cdr is always
176 (defmethod add-direct-method ((specializer class) (method method))
177 (with-slots (direct-methods) specializer
178 (setf (car direct-methods) (adjoin method (car direct-methods)) ;PUSH
179 (cdr direct-methods) ()))
181 (defmethod remove-direct-method ((specializer class) (method method))
182 (with-slots (direct-methods) specializer
183 (setf (car direct-methods) (remove method (car direct-methods))
184 (cdr direct-methods) ()))
187 (defmethod specializer-direct-methods ((specializer class))
188 (with-slots (direct-methods) specializer
189 (car direct-methods)))
191 (defmethod specializer-direct-generic-functions ((specializer class))
192 (with-slots (direct-methods) specializer
193 (or (cdr direct-methods)
194 (setf (cdr direct-methods)
196 (dolist (m (car direct-methods))
197 ;; the old PCL code used COLLECTING-ONCE which used
198 ;; #'EQ to check for newness
199 (pushnew (method-generic-function m) collect :test #'eq))
200 (nreverse collect))))))
202 ;;; This hash table is used to store the direct methods and direct generic
203 ;;; functions of EQL specializers. Each value in the table is the cons.
204 (defvar *eql-specializer-methods* (make-hash-table :test 'eql))
205 (defvar *class-eq-specializer-methods* (make-hash-table :test 'eq))
207 (defmethod specializer-method-table ((specializer eql-specializer))
208 *eql-specializer-methods*)
210 (defmethod specializer-method-table ((specializer class-eq-specializer))
211 *class-eq-specializer-methods*)
213 (defmethod add-direct-method ((specializer specializer-with-object)
215 (let* ((object (specializer-object specializer))
216 (table (specializer-method-table specializer))
217 (entry (gethash object table)))
220 (setf (gethash object table)
222 (setf (car entry) (adjoin method (car entry))
226 (defmethod remove-direct-method ((specializer specializer-with-object)
228 (let* ((object (specializer-object specializer))
229 (entry (gethash object (specializer-method-table specializer))))
231 (setf (car entry) (remove method (car entry))
235 (defmethod specializer-direct-methods ((specializer specializer-with-object))
236 (car (gethash (specializer-object specializer)
237 (specializer-method-table specializer))))
239 (defmethod specializer-direct-generic-functions ((specializer
240 specializer-with-object))
241 (let* ((object (specializer-object specializer))
242 (entry (gethash object (specializer-method-table specializer))))
247 (dolist (m (car entry))
248 (pushnew (method-generic-function m) collect :test #'eq))
249 (nreverse collect)))))))
251 (defun map-specializers (function)
252 (map-all-classes (lambda (class)
253 (funcall function (class-eq-specializer class))
254 (funcall function class)))
255 (maphash (lambda (object methods)
256 (declare (ignore methods))
257 (intern-eql-specializer object))
258 *eql-specializer-methods*)
259 (maphash (lambda (object specl)
260 (declare (ignore object))
261 (funcall function specl))
262 *eql-specializer-table*)
265 (defun map-all-generic-functions (function)
266 (let ((all-generic-functions (make-hash-table :test 'eq)))
267 (map-specializers (lambda (specl)
268 (dolist (gf (specializer-direct-generic-functions
270 (unless (gethash gf all-generic-functions)
271 (setf (gethash gf all-generic-functions) t)
272 (funcall function gf))))))
275 (defmethod shared-initialize :after ((specl class-eq-specializer)
278 (declare (ignore slot-names))
279 (setf (slot-value specl '%type) `(class-eq ,(specializer-class specl))))
281 (defmethod shared-initialize :after ((specl eql-specializer) slot-names &key)
282 (declare (ignore slot-names))
283 (setf (slot-value specl '%type)
284 `(eql ,(specializer-object specl)))
285 (setf (info :type :translator specl)
286 (constantly (make-member-type :members (list (specializer-object specl))))))
288 (defun real-load-defclass (name metaclass-name supers slots other
289 readers writers slot-names source-location safe-p)
290 (with-single-package-locked-error (:symbol name "defining ~S as a class")
291 (%compiler-defclass name readers writers slot-names)
292 (let ((res (apply #'ensure-class name :metaclass metaclass-name
293 :direct-superclasses supers
295 :definition-source source-location
300 (setf (gdefinition 'load-defclass) #'real-load-defclass)
302 (defun ensure-class (name &rest args)
303 (apply #'ensure-class-using-class
304 (let ((class (find-class name nil)))
305 (when (and class (eq name (class-name class)))
306 ;; NAME is the proper name of CLASS, so redefine it
311 (defmethod ensure-class-using-class ((class null) name &rest args &key)
312 (multiple-value-bind (meta initargs)
313 (frob-ensure-class-args args)
314 (setf class (apply #'make-instance meta :name name initargs))
315 (without-package-locks
316 (setf (find-class name) class))
317 (set-class-type-translation class name)
320 (defmethod ensure-class-using-class ((class pcl-class) name &rest args &key)
321 (multiple-value-bind (meta initargs)
322 (frob-ensure-class-args args)
323 (unless (eq (class-of class) meta)
324 (apply #'change-class class meta initargs))
325 (apply #'reinitialize-instance class initargs)
326 (without-package-locks
327 (setf (find-class name) class))
328 (set-class-type-translation class name)
331 (defun frob-ensure-class-args (args)
332 (let (metaclass metaclassp reversed-plist)
333 (flet ((frob-superclass (s)
336 ((legal-class-name-p s)
337 (or (find-class s nil)
338 (ensure-class s :metaclass 'forward-referenced-class)))
339 (t (error "Not a class or a legal class name: ~S." s)))))
340 (doplist (key val) args
341 (cond ((eq key :metaclass)
343 (setf metaclass val metaclassp key)))
345 (when (eq key :direct-superclasses)
346 (setf val (mapcar #'frob-superclass val)))
347 (setf reversed-plist (list* val key reversed-plist)))))
348 (values (cond (metaclassp
349 (if (classp metaclass)
351 (find-class metaclass)))
352 (t *the-class-standard-class*))
353 (nreverse reversed-plist)))))
355 (defmethod shared-initialize :after
356 ((class std-class) slot-names &key
357 (direct-superclasses nil direct-superclasses-p)
358 (direct-slots nil direct-slots-p)
359 (direct-default-initargs nil direct-default-initargs-p))
360 (cond (direct-superclasses-p
361 (setq direct-superclasses
362 (or direct-superclasses
363 (list (if (funcallable-standard-class-p class)
364 *the-class-funcallable-standard-object*
365 *the-class-standard-object*))))
366 (dolist (superclass direct-superclasses)
367 (unless (validate-superclass class superclass)
368 (error "~@<The class ~S was specified as a ~
369 super-class of the class ~S, ~
370 but the meta-classes ~S and ~S are incompatible. ~
371 Define a method for ~S to avoid this error.~@:>"
372 superclass class (class-of superclass) (class-of class)
373 'validate-superclass)))
374 (setf (slot-value class 'direct-superclasses) direct-superclasses))
376 (setq direct-superclasses (slot-value class 'direct-superclasses))))
379 (setf (slot-value class 'direct-slots)
380 (mapcar (lambda (pl) (make-direct-slotd class pl))
382 (slot-value class 'direct-slots)))
383 (if direct-default-initargs-p
384 (setf (plist-value class 'direct-default-initargs)
385 direct-default-initargs)
386 (setq direct-default-initargs
387 (plist-value class 'direct-default-initargs)))
388 (setf (plist-value class 'class-slot-cells)
389 (let ((old-class-slot-cells (plist-value class 'class-slot-cells))
391 (dolist (dslotd direct-slots)
392 (when (eq :class (slot-definition-allocation dslotd))
394 (let* ((name (slot-definition-name dslotd))
395 (old (assoc name old-class-slot-cells)))
398 (member name slot-names))
399 (let* ((initfunction (slot-definition-initfunction dslotd))
400 (value (if initfunction
401 (funcall initfunction)
403 (push (cons name value) collect))
404 (push old collect)))))
406 (add-direct-subclasses class direct-superclasses)
407 (if (class-finalized-p class)
408 ;; required by AMOP, "Reinitialization of Class Metaobjects"
409 (finalize-inheritance class)
410 (update-class class nil))
411 (add-slot-accessors class direct-slots)
412 (make-preliminary-layout class))
414 (defmethod shared-initialize :after ((class forward-referenced-class)
415 slot-names &key &allow-other-keys)
416 (declare (ignore slot-names))
417 (make-preliminary-layout class))
419 (defvar *allow-forward-referenced-classes-in-cpl-p* nil)
421 ;;; Give CLASS a preliminary layout if it doesn't have one already, to
422 ;;; make it known to the type system.
423 (defun make-preliminary-layout (class)
424 (flet ((compute-preliminary-cpl (root)
425 (let ((*allow-forward-referenced-classes-in-cpl-p* t))
426 (compute-class-precedence-list root))))
427 (without-package-locks
428 (unless (class-finalized-p class)
429 (let ((name (class-name class)))
430 ;; KLUDGE: This is fairly horrible. We need to make a
431 ;; full-fledged CLASSOID here, not just tell the compiler that
432 ;; some class is forthcoming, because there are legitimate
433 ;; questions one can ask of the type system, implemented in
434 ;; terms of CLASSOIDs, involving forward-referenced classes. So.
435 (let ((layout (make-wrapper 0 class)))
436 (setf (slot-value class 'wrapper) layout)
437 (let ((cpl (compute-preliminary-cpl class)))
438 (setf (layout-inherits layout)
439 (order-layout-inherits
440 (map 'simple-vector #'class-wrapper
441 (reverse (rest cpl))))))
442 (register-layout layout :invalidate t)
443 (set-class-type-translation class (layout-classoid layout)))))
444 (mapc #'make-preliminary-layout (class-direct-subclasses class)))))
447 (defmethod shared-initialize :before ((class class) slot-names &key name)
448 (declare (ignore slot-names name))
449 ;; FIXME: Could this just be CLASS instead of `(CLASS ,CLASS)? If not,
450 ;; why not? (See also similar expression in !BOOTSTRAP-INITIALIZE-CLASS.)
451 (setf (slot-value class '%type) `(class ,class))
452 (setf (slot-value class 'class-eq-specializer)
453 (make-instance 'class-eq-specializer :class class)))
455 (defmethod reinitialize-instance :before ((class slot-class) &key direct-superclasses)
456 (dolist (old-super (set-difference (class-direct-superclasses class) direct-superclasses))
457 (remove-direct-subclass old-super class))
458 (remove-slot-accessors class (class-direct-slots class)))
460 (defmethod reinitialize-instance :after ((class slot-class)
463 (map-dependents class
465 (apply #'update-dependent class dependent initargs))))
467 (defmethod reinitialize-instance :after ((class condition-class) &key)
468 (let* ((name (class-name class))
469 (classoid (find-classoid name))
470 (slots (condition-classoid-slots classoid)))
471 ;; to balance the REMOVE-SLOT-ACCESSORS call in
472 ;; REINITIALIZE-INSTANCE :BEFORE (SLOT-CLASS).
474 (let ((slot-name (condition-slot-name slot)))
475 (dolist (reader (condition-slot-readers slot))
476 ;; FIXME: see comment in SHARED-INITIALIZE :AFTER
477 ;; (CONDITION-CLASS T), below. -- CSR, 2005-11-18
478 (sb-kernel::install-condition-slot-reader reader name slot-name))
479 (dolist (writer (condition-slot-writers slot))
480 (sb-kernel::install-condition-slot-writer writer name slot-name))))))
482 (defmethod shared-initialize :after ((class condition-class) slot-names
483 &key direct-slots direct-superclasses)
484 (declare (ignore slot-names))
485 (let ((classoid (find-classoid (class-name class))))
486 (with-slots (wrapper %class-precedence-list cpl-available-p
487 prototype (direct-supers direct-superclasses))
489 (setf (slot-value class 'direct-slots)
490 (mapcar (lambda (pl) (make-direct-slotd class pl))
492 (setf (slot-value class 'finalized-p) t)
493 (setf (classoid-pcl-class classoid) class)
494 (setq direct-supers direct-superclasses)
495 (setq wrapper (classoid-layout classoid))
496 (setq %class-precedence-list (compute-class-precedence-list class))
497 (setq cpl-available-p t)
498 (add-direct-subclasses class direct-superclasses)
499 (setf (slot-value class 'slots) (compute-slots class))))
500 ;; Comment from Gerd's PCL, 2003-05-15:
502 ;; We don't ADD-SLOT-ACCESSORS here because we don't want to
503 ;; override condition accessors with generic functions. We do this
506 ;; ??? What does the above comment mean and why is it a good idea?
507 ;; CMUCL (which still as of 2005-11-18 uses this code and has this
508 ;; comment) loses slot information in its condition classes:
509 ;; DIRECT-SLOTS is always NIL. We have the right information, so we
510 ;; remove slot accessors but never put them back. I've added a
511 ;; REINITIALIZE-INSTANCE :AFTER (CONDITION-CLASS) method, but what
512 ;; was meant to happen? -- CSR, 2005-11-18
513 (update-pv-table-cache-info class))
515 (defmethod direct-slot-definition-class ((class condition-class)
517 (declare (ignore initargs))
518 (find-class 'condition-direct-slot-definition))
520 (defmethod effective-slot-definition-class ((class condition-class)
522 (declare (ignore initargs))
523 (find-class 'condition-effective-slot-definition))
525 (defmethod finalize-inheritance ((class condition-class))
526 (aver (slot-value class 'finalized-p))
529 (defmethod compute-effective-slot-definition
530 ((class condition-class) slot-name dslotds)
531 (let ((slotd (call-next-method)))
532 (setf (slot-definition-reader-function slotd)
534 (handler-case (condition-reader-function x slot-name)
535 ;; FIXME: FIND-SLOT-DEFAULT throws an error if the slot
536 ;; is unbound; maybe it should be a CELL-ERROR of some
538 (error () (values (slot-unbound class x slot-name))))))
539 (setf (slot-definition-writer-function slotd)
541 (condition-writer-function x v slot-name)))
542 (setf (slot-definition-boundp-function slotd)
544 (multiple-value-bind (v c)
545 (ignore-errors (condition-reader-function x slot-name))
550 (defmethod compute-slots ((class condition-class))
551 (mapcan (lambda (superclass)
552 (mapcar (lambda (dslotd)
553 (compute-effective-slot-definition
554 class (slot-definition-name dslotd) (list dslotd)))
555 (class-direct-slots superclass)))
556 (reverse (slot-value class '%class-precedence-list))))
558 (defmethod compute-slots :around ((class condition-class))
559 (let ((eslotds (call-next-method)))
560 (mapc #'initialize-internal-slot-functions eslotds)
563 (defmethod shared-initialize :after
564 ((slotd structure-slot-definition) slot-names &key
565 (allocation :instance) allocation-class)
566 (declare (ignore slot-names allocation-class))
567 (unless (eq allocation :instance)
568 (error "Structure slots must have :INSTANCE allocation.")))
570 (defun make-structure-class-defstruct-form (name direct-slots include)
571 (let* ((conc-name (format-symbol *package* "~S structure class " name))
572 (constructor (format-symbol *package* "~Aconstructor" conc-name))
573 (defstruct `(defstruct (,name
575 `((:include ,(class-name include))))
577 (:conc-name ,conc-name)
578 (:constructor ,constructor ())
580 ,@(mapcar (lambda (slot)
581 `(,(slot-definition-name slot)
584 (reader-names (mapcar (lambda (slotd)
585 (list 'slot-accessor name
586 (slot-definition-name slotd)
589 (writer-names (mapcar (lambda (slotd)
590 (list 'slot-accessor name
591 (slot-definition-name slotd)
595 (mapcar (lambda (slotd reader-name)
597 (slot-definition-defstruct-accessor-symbol
599 `(defun ,reader-name (obj)
600 (declare (type ,name obj))
602 direct-slots reader-names))
604 (mapcar (lambda (slotd writer-name)
606 (slot-definition-defstruct-accessor-symbol
608 `(defun ,writer-name (nv obj)
609 (declare (type ,name obj))
610 (setf (,accessor obj) nv))))
611 direct-slots writer-names))
615 ,@readers-init ,@writers-init
617 (values defstruct-form constructor reader-names writer-names)))
619 (defun make-defstruct-allocation-function (class)
620 ;; FIXME: Why don't we go class->layout->info == dd
621 (let ((dd (find-defstruct-description (class-name class))))
623 (sb-kernel::%make-instance-with-layout
624 (sb-kernel::compiler-layout-or-lose (dd-name dd))))))
626 (defmethod shared-initialize :after
627 ((class structure-class) slot-names &key
628 (direct-superclasses nil direct-superclasses-p)
629 (direct-slots nil direct-slots-p)
630 direct-default-initargs)
631 (declare (ignore slot-names direct-default-initargs))
632 (if direct-superclasses-p
633 (setf (slot-value class 'direct-superclasses)
634 (or direct-superclasses
635 (setq direct-superclasses
636 (and (not (eq (class-name class) 'structure-object))
637 (list *the-class-structure-object*)))))
638 (setq direct-superclasses (slot-value class 'direct-superclasses)))
639 (let* ((name (class-name class))
640 (from-defclass-p (slot-value class 'from-defclass-p))
641 (defstruct-p (or from-defclass-p (not (structure-type-p name)))))
643 (setf (slot-value class 'direct-slots)
647 (let* ((slot-name (getf pl :name))
649 (format-symbol *package*
650 "~S structure class ~A"
652 (setq pl (list* :defstruct-accessor-symbol
654 (make-direct-slotd class pl))
656 (setq direct-slots (slot-value class 'direct-slots)))
658 (let ((include (car (slot-value class 'direct-superclasses))))
659 (multiple-value-bind (defstruct-form constructor reader-names writer-names)
660 (make-structure-class-defstruct-form name direct-slots include)
661 (unless (structure-type-p name) (eval defstruct-form))
662 (mapc (lambda (dslotd reader-name writer-name)
663 (let* ((reader (gdefinition reader-name))
664 (writer (when (fboundp writer-name)
665 (gdefinition writer-name))))
666 (setf (slot-value dslotd 'internal-reader-function)
668 (setf (slot-value dslotd 'internal-writer-function)
670 direct-slots reader-names writer-names)
671 (setf (slot-value class 'defstruct-form) defstruct-form)
672 (setf (slot-value class 'defstruct-constructor) constructor)))
673 (setf (slot-value class 'defstruct-constructor)
674 (make-defstruct-allocation-function class)))
675 (add-direct-subclasses class direct-superclasses)
676 (setf (slot-value class '%class-precedence-list)
677 (compute-class-precedence-list class))
678 (setf (slot-value class 'cpl-available-p) t)
679 (setf (slot-value class 'slots) (compute-slots class))
680 (let ((lclass (find-classoid (class-name class))))
681 (setf (classoid-pcl-class lclass) class)
682 (setf (slot-value class 'wrapper) (classoid-layout lclass)))
683 (setf (slot-value class 'finalized-p) t)
684 (update-pv-table-cache-info class)
685 (add-slot-accessors class direct-slots)))
687 (defmethod direct-slot-definition-class ((class structure-class) &rest initargs)
688 (declare (ignore initargs))
689 (find-class 'structure-direct-slot-definition))
691 (defmethod finalize-inheritance ((class structure-class))
692 nil) ; always finalized
694 (defun add-slot-accessors (class dslotds)
695 (fix-slot-accessors class dslotds 'add))
697 (defun remove-slot-accessors (class dslotds)
698 (fix-slot-accessors class dslotds 'remove))
700 (defun fix-slot-accessors (class dslotds add/remove)
701 (flet ((fix (gfspec name r/w doc)
702 (let ((gf (cond ((eq add/remove 'add)
703 (or (find-generic-function gfspec nil)
704 (ensure-generic-function
705 gfspec :lambda-list (case r/w
707 (w '(new-value object))))))
709 (find-generic-function gfspec nil)))))
712 (r (if (eq add/remove 'add)
713 (add-reader-method class gf name doc)
714 (remove-reader-method class gf)))
715 (w (if (eq add/remove 'add)
716 (add-writer-method class gf name doc)
717 (remove-writer-method class gf))))))))
718 (dolist (dslotd dslotds)
719 (let ((slot-name (slot-definition-name dslotd))
720 (slot-doc (%slot-definition-documentation dslotd)))
721 (dolist (r (slot-definition-readers dslotd))
722 (fix r slot-name 'r slot-doc))
723 (dolist (w (slot-definition-writers dslotd))
724 (fix w slot-name 'w slot-doc))))))
726 (defun add-direct-subclasses (class supers)
727 (dolist (super supers)
728 (unless (memq class (class-direct-subclasses class))
729 (add-direct-subclass super class))))
731 (defmethod finalize-inheritance ((class std-class))
732 (update-class class t))
734 (defmethod finalize-inheritance ((class forward-referenced-class))
735 ;; FIXME: should we not be thinking a bit about what kinds of error
736 ;; we're throwing? Maybe we need a clos-error type to mix in? Or
737 ;; possibly a forward-referenced-class-error, though that's
738 ;; difficult given e.g. class precedence list calculations...
740 "~@<FINALIZE-INHERITANCE was called on a forward referenced class:~
745 (defun class-has-a-forward-referenced-superclass-p (class)
746 (or (forward-referenced-class-p class)
747 (some #'class-has-a-forward-referenced-superclass-p
748 (class-direct-superclasses class))))
750 ;;; This is called by :after shared-initialize whenever a class is initialized
751 ;;; or reinitialized. The class may or may not be finalized.
752 (defun update-class (class finalizep)
753 (without-package-locks
754 (when (or finalizep (class-finalized-p class))
755 (update-cpl class (compute-class-precedence-list class))
756 ;; This invocation of UPDATE-SLOTS, in practice, finalizes the
758 (update-slots class (compute-slots class))
759 (update-gfs-of-class class)
760 (update-initargs class (compute-default-initargs class))
761 (update-ctors 'finalize-inheritance :class class))
762 (dolist (sub (class-direct-subclasses class))
763 (update-class sub nil))))
765 (define-condition cpl-protocol-violation (reference-condition error)
766 ((class :initarg :class :reader cpl-protocol-violation-class)
767 (cpl :initarg :cpl :reader cpl-protocol-violation-cpl))
768 (:default-initargs :references (list '(:sbcl :node "Metaobject Protocol")))
771 (format s "~@<Protocol violation: the ~S class ~S ~
772 ~:[has~;does not have~] the class ~S in its ~
773 class precedence list: ~S.~@:>"
774 (class-name (class-of (cpl-protocol-violation-class c)))
775 (cpl-protocol-violation-class c)
776 (eq (class-of (cpl-protocol-violation-class c))
777 *the-class-funcallable-standard-class*)
778 (find-class 'function)
779 (cpl-protocol-violation-cpl c)))))
781 (defun update-cpl (class cpl)
782 (when (eq (class-of class) *the-class-standard-class*)
783 (when (find (find-class 'function) cpl)
784 (error 'cpl-protocol-violation :class class :cpl cpl)))
785 (when (eq (class-of class) *the-class-funcallable-standard-class*)
786 (unless (find (find-class 'function) cpl)
787 (error 'cpl-protocol-violation :class class :cpl cpl)))
788 (if (class-finalized-p class)
789 (unless (and (equal (class-precedence-list class) cpl)
791 (when (position :class (class-direct-slots c)
792 :key #'slot-definition-allocation)
794 ;; comment from the old CMU CL sources:
795 ;; Need to have the cpl setup before update-lisp-class-layout
796 ;; is called on CMU CL.
797 (setf (slot-value class '%class-precedence-list) cpl)
798 (setf (slot-value class 'cpl-available-p) t)
799 (force-cache-flushes class))
801 (setf (slot-value class '%class-precedence-list) cpl)
802 (setf (slot-value class 'cpl-available-p) t)))
803 (update-class-can-precede-p cpl))
805 (defun update-class-can-precede-p (cpl)
807 (let ((first (car cpl)))
808 (dolist (c (cdr cpl))
809 (pushnew c (slot-value first 'can-precede-list))))
810 (update-class-can-precede-p (cdr cpl))))
812 (defun class-can-precede-p (class1 class2)
813 (member class2 (class-can-precede-list class1)))
815 (defun update-slots (class eslotds)
816 (let ((instance-slots ())
818 (dolist (eslotd eslotds)
819 (let ((alloc (slot-definition-allocation eslotd)))
821 (:instance (push eslotd instance-slots))
822 (:class (push eslotd class-slots)))))
824 ;; If there is a change in the shape of the instances then the
825 ;; old class is now obsolete.
826 (let* ((nlayout (mapcar #'slot-definition-name
827 (sort instance-slots #'<
828 :key #'slot-definition-location)))
829 (nslots (length nlayout))
830 (nwrapper-class-slots (compute-class-slots class-slots))
831 (owrapper (when (class-finalized-p class)
832 (class-wrapper class)))
833 (olayout (when owrapper
834 (wrapper-instance-slots-layout owrapper)))
835 (owrapper-class-slots (and owrapper (wrapper-class-slots owrapper)))
837 (cond ((null owrapper)
838 (make-wrapper nslots class))
839 ((and (equal nlayout olayout)
841 (loop for o in owrapper-class-slots
842 for n in nwrapper-class-slots
843 do (unless (eq (car o) (car n)) (return t)))))
846 ;; This will initialize the new wrapper to have the
847 ;; same state as the old wrapper. We will then have
848 ;; to change that. This may seem like wasted work
849 ;; (and it is), but the spec requires that we call
850 ;; MAKE-INSTANCES-OBSOLETE.
851 (make-instances-obsolete class)
852 (class-wrapper class)))))
854 (with-slots (wrapper slots) class
855 (update-lisp-class-layout class nwrapper)
857 (wrapper-instance-slots-layout nwrapper) nlayout
858 (wrapper-class-slots nwrapper) nwrapper-class-slots
859 (wrapper-no-of-instance-slots nwrapper) nslots
861 (do* ((slots (slot-value class 'slots) (cdr slots))
866 "~@<slot names with the same SYMBOL-NAME but ~
867 different SYMBOL-PACKAGE (possible package problem) ~
868 for class ~S:~4I~@:_~<~@{~S~^~:@_~}~:>~@:>"
870 (let* ((slot (car slots))
871 (oslots (remove (slot-definition-name slot) (cdr slots)
873 :key #'slot-definition-name)))
875 (pushnew (cons (slot-definition-name slot)
876 (mapcar #'slot-definition-name oslots))
878 :test #'string= :key #'car)))))
879 (setf (slot-value class 'finalized-p) t)
880 (unless (eq owrapper nwrapper)
881 (update-pv-table-cache-info class)
882 (maybe-update-standard-class-locations class)))))
884 (defun compute-class-slots (eslotds)
886 (dolist (eslotd eslotds (nreverse collect))
887 (let ((cell (assoc (slot-definition-name eslotd)
889 (slot-definition-allocation-class eslotd)))))
891 (push cell collect)))))
893 (defun update-gfs-of-class (class)
894 (when (and (class-finalized-p class)
895 (let ((cpl (class-precedence-list class)))
896 (or (member *the-class-slot-class* cpl)
897 (member *the-class-standard-effective-slot-definition*
899 (let ((gf-table (make-hash-table :test 'eq)))
900 (labels ((collect-gfs (class)
901 (dolist (gf (specializer-direct-generic-functions class))
902 (setf (gethash gf gf-table) t))
903 (mapc #'collect-gfs (class-direct-superclasses class))))
905 (maphash (lambda (gf ignore)
906 (declare (ignore ignore))
907 (update-gf-dfun class gf))
910 (defun update-initargs (class inits)
911 (setf (plist-value class 'default-initargs) inits))
913 (defmethod compute-default-initargs ((class slot-class))
914 (let ((initargs (loop for c in (class-precedence-list class)
915 append (class-direct-default-initargs c))))
916 (delete-duplicates initargs :test #'eq :key #'car :from-end t)))
918 ;;;; protocols for constructing direct and effective slot definitions
920 (defmethod direct-slot-definition-class ((class std-class) &rest initargs)
921 (declare (ignore initargs))
922 (find-class 'standard-direct-slot-definition))
924 (defun make-direct-slotd (class initargs)
925 (apply #'make-instance
926 (apply #'direct-slot-definition-class class initargs)
930 ;;; I (CSR) am not sure, but I believe that the particular order of
931 ;;; slots is quite important: it is ideal to attempt to have a
932 ;;; constant slot location for the same notional slots as much as
933 ;;; possible, so that clever discriminating functions (ONE-INDEX et
934 ;;; al.) have a chance of working. The below at least walks through
935 ;;; the slots predictably, but maybe it would be good to compute some
936 ;;; kind of optimal slot layout by looking at locations of slots in
938 (defun std-compute-slots (class)
939 ;; As specified, we must call COMPUTE-EFFECTIVE-SLOT-DEFINITION once
940 ;; for each different slot name we find in our superclasses. Each
941 ;; call receives the class and a list of the dslotds with that name.
942 ;; The list is in most-specific-first order.
943 (let ((name-dslotds-alist ()))
944 (dolist (c (reverse (class-precedence-list class)))
945 (dolist (slot (class-direct-slots c))
946 (let* ((name (slot-definition-name slot))
947 (entry (assq name name-dslotds-alist)))
949 (push slot (cdr entry))
950 (push (list name slot) name-dslotds-alist)))))
951 (mapcar (lambda (direct)
952 (compute-effective-slot-definition class
955 (nreverse name-dslotds-alist))))
957 (defmethod compute-slots ((class standard-class))
958 (std-compute-slots class))
959 (defmethod compute-slots ((class funcallable-standard-class))
960 (std-compute-slots class))
962 (defun std-compute-slots-around (class eslotds)
964 (dolist (eslotd eslotds eslotds)
965 (setf (slot-definition-location eslotd)
966 (case (slot-definition-allocation eslotd)
970 (let* ((name (slot-definition-name eslotd))
973 (slot-definition-allocation-class eslotd)
974 ;; we get here if the user adds an extra slot
976 (setf (slot-definition-allocation-class eslotd)
978 ;; which raises the question of what we should
979 ;; do if we find that said user has added a slot
980 ;; with the same name as another slot...
981 (cell (or (assq name (class-slot-cells from-class))
982 (let ((c (cons name +slot-unbound+)))
983 (push c (class-slot-cells from-class))
986 (if (eq +slot-unbound+ (cdr cell))
987 ;; We may have inherited an initfunction
988 (let ((initfun (slot-definition-initfunction eslotd)))
990 (rplacd cell (funcall initfun))
993 (unless (slot-definition-class eslotd)
994 (setf (slot-definition-class eslotd) class))
995 (initialize-internal-slot-functions eslotd))))
997 (defmethod compute-slots :around ((class standard-class))
998 (let ((eslotds (call-next-method)))
999 (std-compute-slots-around class eslotds)))
1000 (defmethod compute-slots :around ((class funcallable-standard-class))
1001 (let ((eslotds (call-next-method)))
1002 (std-compute-slots-around class eslotds)))
1004 (defmethod compute-slots ((class structure-class))
1005 (mapcan (lambda (superclass)
1006 (mapcar (lambda (dslotd)
1007 (compute-effective-slot-definition
1009 (slot-definition-name dslotd)
1011 (class-direct-slots superclass)))
1012 (reverse (slot-value class '%class-precedence-list))))
1014 (defmethod compute-slots :around ((class structure-class))
1015 (let ((eslotds (call-next-method)))
1016 (mapc #'initialize-internal-slot-functions eslotds)
1019 (defmethod compute-effective-slot-definition ((class slot-class) name dslotds)
1020 (declare (ignore name))
1021 (let* ((initargs (compute-effective-slot-definition-initargs class dslotds))
1022 (class (apply #'effective-slot-definition-class class initargs)))
1023 (apply #'make-instance class initargs)))
1025 (defmethod effective-slot-definition-class ((class std-class) &rest initargs)
1026 (declare (ignore initargs))
1027 (find-class 'standard-effective-slot-definition))
1029 (defmethod effective-slot-definition-class ((class structure-class) &rest initargs)
1030 (declare (ignore initargs))
1031 (find-class 'structure-effective-slot-definition))
1033 (defmethod compute-effective-slot-definition-initargs
1034 ((class slot-class) direct-slotds)
1040 (allocation-class nil)
1042 (type-check-function nil)
1044 (documentationp nil)
1049 (dolist (slotd direct-slotds)
1052 (setq name (slot-definition-name slotd)
1055 (when (slot-definition-initfunction slotd)
1056 (setq initform (slot-definition-initform slotd)
1057 initfunction (slot-definition-initfunction slotd)
1059 (unless documentationp
1060 (when (%slot-definition-documentation slotd)
1061 (setq documentation (%slot-definition-documentation slotd)
1064 (setq allocation (slot-definition-allocation slotd)
1065 allocation-class (slot-definition-class slotd)
1067 (setq initargs (append (slot-definition-initargs slotd) initargs))
1068 (let ((fun (slot-definition-type-check-function slotd)))
1070 (setf type-check-function
1071 (if type-check-function
1072 (let ((old-function type-check-function))
1074 (funcall old-function value)
1075 (funcall fun value)))
1077 (let ((slotd-type (slot-definition-type slotd)))
1079 ((eq type t) slotd-type)
1080 ;; This pairwise type intersection is perhaps a
1081 ;; little inefficient and inelegant, but it's
1082 ;; unlikely to lie on the critical path. Shout
1083 ;; if I'm wrong. -- CSR, 2005-11-24
1085 (specifier-type `(and ,type ,slotd-type)))))))))
1088 :initfunction initfunction
1090 :allocation allocation
1091 :allocation-class allocation-class
1093 'type-check-function type-check-function
1095 :documentation documentation)))
1097 (defmethod compute-effective-slot-definition-initargs :around
1098 ((class structure-class) direct-slotds)
1099 (let ((slotd (car direct-slotds)))
1100 (list* :defstruct-accessor-symbol
1101 (slot-definition-defstruct-accessor-symbol slotd)
1102 :internal-reader-function
1103 (slot-definition-internal-reader-function slotd)
1104 :internal-writer-function
1105 (slot-definition-internal-writer-function slotd)
1106 (call-next-method))))
1108 ;;; NOTE: For bootstrapping considerations, these can't use MAKE-INSTANCE
1109 ;;; to make the method object. They have to use make-a-method which
1110 ;;; is a specially bootstrapped mechanism for making standard methods.
1111 (defmethod reader-method-class ((class slot-class) direct-slot &rest initargs)
1112 (declare (ignore direct-slot initargs))
1113 (find-class 'standard-reader-method))
1115 (defmethod add-reader-method ((class slot-class) generic-function slot-name slot-documentation)
1116 (add-method generic-function
1117 (make-a-method 'standard-reader-method
1119 (list (or (class-name class) 'object))
1121 (make-reader-method-function class slot-name)
1122 (or slot-documentation "automatically generated reader method")
1123 :slot-name slot-name
1125 :method-class-function #'reader-method-class)))
1127 (defmethod writer-method-class ((class slot-class) direct-slot &rest initargs)
1128 (declare (ignore direct-slot initargs))
1129 (find-class 'standard-writer-method))
1131 (defmethod add-writer-method ((class slot-class) generic-function slot-name slot-documentation)
1132 (add-method generic-function
1133 (make-a-method 'standard-writer-method
1135 (list 'new-value (or (class-name class) 'object))
1136 (list *the-class-t* class)
1137 (make-writer-method-function class slot-name)
1138 (or slot-documentation "automatically generated writer method")
1139 :slot-name slot-name
1141 :method-class-function #'writer-method-class)))
1143 (defmethod add-boundp-method ((class slot-class) generic-function slot-name slot-documentation)
1144 (add-method generic-function
1145 (make-a-method (constantly (find-class 'standard-boundp-method))
1148 (list (or (class-name class) 'object))
1150 (make-boundp-method-function class slot-name)
1151 (or slot-documentation "automatically generated boundp method")
1154 (defmethod remove-reader-method ((class slot-class) generic-function)
1155 (let ((method (get-method generic-function () (list class) nil)))
1156 (when method (remove-method generic-function method))))
1158 (defmethod remove-writer-method ((class slot-class) generic-function)
1160 (get-method generic-function () (list *the-class-t* class) nil)))
1161 (when method (remove-method generic-function method))))
1163 (defmethod remove-boundp-method ((class slot-class) generic-function)
1164 (let ((method (get-method generic-function () (list class) nil)))
1165 (when method (remove-method generic-function method))))
1167 ;;; MAKE-READER-METHOD-FUNCTION and MAKE-WRITER-METHOD-FUNCTION
1168 ;;; function are NOT part of the standard protocol. They are however
1169 ;;; useful; PCL makes use of them internally and documents them for
1170 ;;; PCL users. (FIXME: but SBCL certainly doesn't)
1172 ;;; *** This needs work to make type testing by the writer functions which
1173 ;;; *** do type testing faster. The idea would be to have one constructor
1174 ;;; *** for each possible type test.
1176 ;;; *** There is a subtle bug here which is going to have to be fixed.
1177 ;;; *** Namely, the simplistic use of the template has to be fixed. We
1178 ;;; *** have to give the OPTIMIZE-SLOT-VALUE method the user might have
1179 ;;; *** defined for this metaclass a chance to run.
1181 (defmethod make-reader-method-function ((class slot-class) slot-name)
1182 (make-std-reader-method-function class slot-name))
1184 (defmethod make-writer-method-function ((class slot-class) slot-name)
1185 (make-std-writer-method-function class slot-name))
1187 (defmethod make-boundp-method-function ((class slot-class) slot-name)
1188 (make-std-boundp-method-function class slot-name))
1190 (defmethod compatible-meta-class-change-p (class proto-new-class)
1191 (eq (class-of class) (class-of proto-new-class)))
1193 (defmethod validate-superclass ((class class) (superclass class))
1194 (or (eq superclass *the-class-t*)
1195 (eq (class-of class) (class-of superclass))
1196 (and (eq (class-of superclass) *the-class-standard-class*)
1197 (eq (class-of class) *the-class-funcallable-standard-class*))
1198 (and (eq (class-of superclass) *the-class-funcallable-standard-class*)
1199 (eq (class-of class) *the-class-standard-class*))))
1201 ;;; What this does depends on which of the four possible values of
1202 ;;; LAYOUT-INVALID the PCL wrapper has; the simplest case is when it
1203 ;;; is (:FLUSH <wrapper>) or (:OBSOLETE <wrapper>), when there is
1204 ;;; nothing to do, as the new wrapper has already been created. If
1205 ;;; LAYOUT-INVALID returns NIL, then we invalidate it (setting it to
1206 ;;; (:FLUSH <wrapper>); UPDATE-SLOTS later gets to choose whether or
1207 ;;; not to "upgrade" this to (:OBSOLETE <wrapper>).
1209 ;;; This leaves the case where LAYOUT-INVALID returns T, which happens
1210 ;;; when REGISTER-LAYOUT has invalidated a superclass of CLASS (which
1211 ;;; invalidated all the subclasses in SB-KERNEL land). Again, here we
1212 ;;; must flush the caches and allow UPDATE-SLOTS to decide whether to
1213 ;;; obsolete the wrapper.
1215 ;;; FIXME: either here or in INVALID-WRAPPER-P looks like a good place
1216 ;;; for (AVER (NOT (EQ (LAYOUT-INVALID OWRAPPER)
1217 ;;; :UNINITIALIZED)))
1219 ;;; Thanks to Gerd Moellmann for the explanation. -- CSR, 2002-10-29
1220 (defun force-cache-flushes (class)
1221 (let* ((owrapper (class-wrapper class)))
1222 ;; We only need to do something if the wrapper is still valid. If
1223 ;; the wrapper isn't valid, state will be FLUSH or OBSOLETE, and
1224 ;; both of those will already be doing what we want. In
1225 ;; particular, we must be sure we never change an OBSOLETE into a
1226 ;; FLUSH since OBSOLETE means do what FLUSH does and then some.
1227 (when (or (not (invalid-wrapper-p owrapper))
1228 ;; KLUDGE: despite the observations above, this remains
1229 ;; a violation of locality or what might be considered
1230 ;; good style. There has to be a better way! -- CSR,
1232 (eq (layout-invalid owrapper) t))
1233 (let ((nwrapper (make-wrapper (wrapper-no-of-instance-slots owrapper)
1235 (setf (wrapper-instance-slots-layout nwrapper)
1236 (wrapper-instance-slots-layout owrapper))
1237 (setf (wrapper-class-slots nwrapper)
1238 (wrapper-class-slots owrapper))
1240 (update-lisp-class-layout class nwrapper)
1241 (setf (slot-value class 'wrapper) nwrapper)
1242 ;; Use :OBSOLETE instead of :FLUSH if any superclass has
1244 (if (find-if (lambda (x)
1245 (and (consp x) (eq :obsolete (car x))))
1246 (layout-inherits owrapper)
1247 :key #'layout-invalid)
1248 (invalidate-wrapper owrapper :obsolete nwrapper)
1249 (invalidate-wrapper owrapper :flush nwrapper)))))))
1251 (defun flush-cache-trap (owrapper nwrapper instance)
1252 (declare (ignore owrapper))
1253 (set-wrapper instance nwrapper))
1255 ;;; MAKE-INSTANCES-OBSOLETE can be called by user code. It will cause
1256 ;;; the next access to the instance (as defined in 88-002R) to trap
1257 ;;; through the UPDATE-INSTANCE-FOR-REDEFINED-CLASS mechanism.
1258 (defmethod make-instances-obsolete ((class std-class))
1259 (let* ((owrapper (class-wrapper class))
1260 (nwrapper (make-wrapper (wrapper-no-of-instance-slots owrapper)
1262 (unless (class-finalized-p class)
1263 (if (class-has-a-forward-referenced-superclass-p class)
1264 (return-from make-instances-obsolete class)
1265 (update-cpl class (compute-class-precedence-list class))))
1266 (setf (wrapper-instance-slots-layout nwrapper)
1267 (wrapper-instance-slots-layout owrapper))
1268 (setf (wrapper-class-slots nwrapper)
1269 (wrapper-class-slots owrapper))
1271 (update-lisp-class-layout class nwrapper)
1272 (setf (slot-value class 'wrapper) nwrapper)
1273 (invalidate-wrapper owrapper :obsolete nwrapper)
1276 (defmethod make-instances-obsolete ((class symbol))
1277 (make-instances-obsolete (find-class class))
1278 ;; ANSI wants the class name when called with a symbol.
1281 ;;; OBSOLETE-INSTANCE-TRAP is the internal trap that is called when we
1282 ;;; see an obsolete instance. The times when it is called are:
1283 ;;; - when the instance is involved in method lookup
1284 ;;; - when attempting to access a slot of an instance
1286 ;;; It is not called by class-of, wrapper-of, or any of the low-level
1287 ;;; instance access macros.
1289 ;;; Of course these times when it is called are an internal
1290 ;;; implementation detail of PCL and are not part of the documented
1291 ;;; description of when the obsolete instance update happens. The
1292 ;;; documented description is as it appears in 88-002R.
1294 ;;; This has to return the new wrapper, so it counts on all the
1295 ;;; methods on obsolete-instance-trap-internal to return the new
1296 ;;; wrapper. It also does a little internal error checking to make
1297 ;;; sure that the traps are only happening when they should, and that
1298 ;;; the trap methods are computing appropriate new wrappers.
1300 ;;; OBSOLETE-INSTANCE-TRAP might be called on structure instances
1301 ;;; after a structure is redefined. In most cases,
1302 ;;; OBSOLETE-INSTANCE-TRAP will not be able to fix the old instance,
1303 ;;; so it must signal an error. The hard part of this is that the
1304 ;;; error system and debugger might cause OBSOLETE-INSTANCE-TRAP to be
1305 ;;; called again, so in that case, we have to return some reasonable
1306 ;;; wrapper, instead.
1308 (defvar *in-obsolete-instance-trap* nil)
1309 (defvar *the-wrapper-of-structure-object*
1310 (class-wrapper (find-class 'structure-object)))
1312 (define-condition obsolete-structure (error)
1313 ((datum :reader obsolete-structure-datum :initarg :datum))
1315 (lambda (condition stream)
1316 ;; Don't try to print the structure, since it probably won't work.
1318 "~@<obsolete structure error for a structure of type ~2I~_~S~:>"
1319 (type-of (obsolete-structure-datum condition))))))
1321 (defun obsolete-instance-trap (owrapper nwrapper instance)
1322 (if (not (pcl-instance-p instance))
1323 (if *in-obsolete-instance-trap*
1324 *the-wrapper-of-structure-object*
1325 (let ((*in-obsolete-instance-trap* t))
1326 (error 'obsolete-structure :datum instance)))
1327 (let* ((class (wrapper-class* nwrapper))
1328 (copy (allocate-instance class)) ;??? allocate-instance ???
1329 (olayout (wrapper-instance-slots-layout owrapper))
1330 (nlayout (wrapper-instance-slots-layout nwrapper))
1331 (oslots (get-slots instance))
1332 (nslots (get-slots copy))
1333 (oclass-slots (wrapper-class-slots owrapper))
1338 ;; local --> local transfer value
1339 ;; local --> shared discard value, discard slot
1340 ;; local --> -- discard slot
1341 ;; shared --> local transfer value
1342 ;; shared --> shared -- (cf SHARED-INITIALIZE :AFTER STD-CLASS)
1343 ;; shared --> -- discard value
1344 ;; -- --> local add slot
1347 ;; Go through all the old local slots.
1349 (dolist (name olayout)
1350 (let ((npos (posq name nlayout)))
1352 (setf (clos-slots-ref nslots npos)
1353 (clos-slots-ref oslots opos))
1355 (push name discarded)
1356 (unless (eq (clos-slots-ref oslots opos) +slot-unbound+)
1357 (setf (getf plist name) (clos-slots-ref oslots opos))))))
1360 ;; Go through all the old shared slots.
1361 (dolist (oclass-slot-and-val oclass-slots)
1362 (let ((name (car oclass-slot-and-val))
1363 (val (cdr oclass-slot-and-val)))
1364 (let ((npos (posq name nlayout)))
1366 (setf (clos-slots-ref nslots npos) val)))))
1368 ;; Go through all the new local slots to compute the added slots.
1369 (dolist (nlocal nlayout)
1370 (unless (or (memq nlocal olayout)
1371 (assq nlocal oclass-slots))
1372 (push nlocal added)))
1374 (swap-wrappers-and-slots instance copy)
1376 (update-instance-for-redefined-class instance
1382 (defun change-class-internal (instance new-class initargs)
1383 (let* ((old-class (class-of instance))
1384 (copy (allocate-instance new-class))
1385 (new-wrapper (get-wrapper copy))
1386 (old-wrapper (class-wrapper old-class))
1387 (old-layout (wrapper-instance-slots-layout old-wrapper))
1388 (new-layout (wrapper-instance-slots-layout new-wrapper))
1389 (old-slots (get-slots instance))
1390 (new-slots (get-slots copy))
1391 (old-class-slots (wrapper-class-slots old-wrapper)))
1393 ;; "The values of local slots specified by both the class CTO and
1394 ;; CFROM are retained. If such a local slot was unbound, it
1395 ;; remains unbound."
1396 (let ((new-position 0))
1397 (dolist (new-slot new-layout)
1398 (let ((old-position (posq new-slot old-layout)))
1400 (setf (clos-slots-ref new-slots new-position)
1401 (clos-slots-ref old-slots old-position))))
1402 (incf new-position)))
1404 ;; "The values of slots specified as shared in the class CFROM and
1405 ;; as local in the class CTO are retained."
1406 (dolist (slot-and-val old-class-slots)
1407 (let ((position (posq (car slot-and-val) new-layout)))
1409 (setf (clos-slots-ref new-slots position) (cdr slot-and-val)))))
1411 ;; Make the copy point to the old instance's storage, and make the
1412 ;; old instance point to the new storage.
1413 (swap-wrappers-and-slots instance copy)
1415 (apply #'update-instance-for-different-class copy instance initargs)
1418 (defmethod change-class ((instance standard-object) (new-class standard-class)
1420 (unless (class-finalized-p new-class)
1421 (finalize-inheritance new-class))
1422 (let ((cpl (class-precedence-list new-class)))
1426 `(when (eq class (find-class ',class-name))
1427 (error 'metaobject-initialization-violation
1428 :format-control "~@<Cannot ~S objects into ~S metaobjects.~@:>"
1429 :format-arguments (list 'change-class ',class-name)
1430 :references (list '(:amop :initialization ,class-name))))))
1432 (frob generic-function)
1434 (frob slot-definition))))
1435 (change-class-internal instance new-class initargs))
1437 (defmethod change-class ((instance forward-referenced-class)
1438 (new-class standard-class) &rest initargs)
1439 (let ((cpl (class-precedence-list new-class)))
1441 (error 'metaobject-initialization-violation
1443 "~@<Cannot ~S ~S objects into non-~S objects.~@:>"
1445 (list 'change-class 'forward-referenced-class 'class)
1447 (list '(:amop :generic-function ensure-class-using-class)
1448 '(:amop :initialization class))))
1449 (when (eq class (find-class 'class))
1451 (change-class-internal instance new-class initargs))
1453 (defmethod change-class ((instance funcallable-standard-object)
1454 (new-class funcallable-standard-class)
1456 (let ((cpl (class-precedence-list new-class)))
1460 `(when (eq class (find-class ',class-name))
1461 (error 'metaobject-initialization-violation
1462 :format-control "~@<Cannot ~S objects into ~S metaobjects.~@:>"
1463 :format-arguments (list 'change-class ',class-name)
1464 :references (list '(:amop :initialization ,class-name))))))
1466 (frob generic-function)
1468 (frob slot-definition))))
1469 (change-class-internal instance new-class initargs))
1471 (defmethod change-class ((instance standard-object)
1472 (new-class funcallable-standard-class)
1474 (declare (ignore initargs))
1475 (error "You can't change the class of ~S to ~S~@
1476 because it isn't already an instance with metaclass ~S."
1477 instance new-class 'standard-class))
1479 (defmethod change-class ((instance funcallable-standard-object)
1480 (new-class standard-class)
1482 (declare (ignore initargs))
1483 (error "You can't change the class of ~S to ~S~@
1484 because it isn't already an instance with metaclass ~S."
1485 instance new-class 'funcallable-standard-class))
1487 (defmethod change-class ((instance t) (new-class-name symbol) &rest initargs)
1488 (apply #'change-class instance (find-class new-class-name) initargs))
1490 ;;;; The metaclass BUILT-IN-CLASS
1492 ;;;; This metaclass is something of a weird creature. By this point, all
1493 ;;;; instances of it which will exist have been created, and no instance
1494 ;;;; is ever created by calling MAKE-INSTANCE.
1496 ;;;; But, there are other parts of the protocol we must follow and those
1497 ;;;; definitions appear here.
1499 (macrolet ((def (name args control)
1500 `(defmethod ,name ,args
1501 (declare (ignore initargs))
1502 (error 'metaobject-initialization-violation
1503 :format-control ,(format nil "~@<~A~@:>" control)
1504 :format-arguments (list ',name)
1505 :references (list '(:amop :initialization "Class"))))))
1506 (def initialize-instance ((class built-in-class) &rest initargs)
1507 "Cannot ~S an instance of BUILT-IN-CLASS.")
1508 (def reinitialize-instance ((class built-in-class) &rest initargs)
1509 "Cannot ~S an instance of BUILT-IN-CLASS."))
1511 (macrolet ((def (name)
1512 `(defmethod ,name ((class built-in-class)) nil)))
1513 (def class-direct-slots)
1515 (def class-direct-default-initargs)
1516 (def class-default-initargs))
1518 (defmethod validate-superclass ((c class) (s built-in-class))
1519 (or (eq s *the-class-t*) (eq s *the-class-stream*)
1520 ;; FIXME: bad things happen if someone tries to mix in both
1521 ;; FILE-STREAM and STRING-STREAM (as they have the same
1522 ;; layout-depthoid). Is there any way we can provide a useful
1523 ;; error message? -- CSR, 2005-05-03
1524 (eq s *the-class-file-stream*) (eq s *the-class-string-stream*)
1525 ;; This probably shouldn't be mixed in with certain other
1526 ;; classes, too, but it seems to work both with STANDARD-OBJECT
1527 ;; and FUNCALLABLE-STANDARD-OBJECT
1528 (eq s *the-class-sequence*)))
1530 ;;; Some necessary methods for FORWARD-REFERENCED-CLASS
1531 (defmethod class-direct-slots ((class forward-referenced-class)) ())
1532 (defmethod class-direct-default-initargs ((class forward-referenced-class)) ())
1533 (macrolet ((def (method)
1534 `(defmethod ,method ((class forward-referenced-class))
1535 (error "~@<~I~S was called on a forward referenced class:~2I~_~S~:>"
1537 (def class-default-initargs)
1538 (def class-precedence-list)
1541 (defmethod validate-superclass ((c slot-class)
1542 (f forward-referenced-class))
1545 (defmethod add-dependent ((metaobject dependent-update-mixin) dependent)
1546 (pushnew dependent (plist-value metaobject 'dependents)))
1548 (defmethod remove-dependent ((metaobject dependent-update-mixin) dependent)
1549 (setf (plist-value metaobject 'dependents)
1550 (delete dependent (plist-value metaobject 'dependents))))
1552 (defmethod map-dependents ((metaobject dependent-update-mixin) function)
1553 (dolist (dependent (plist-value metaobject 'dependents))
1554 (funcall function dependent)))