3 ;;; Method combination implementation
5 ;;; (c) 2009 Straylight/Edgeware
8 ;;;----- Licensing notice ---------------------------------------------------
10 ;;; This file is part of the Sensble Object Design, an object system for C.
12 ;;; SOD is free software; you can redistribute it and/or modify
13 ;;; it under the terms of the GNU General Public License as published by
14 ;;; the Free Software Foundation; either version 2 of the License, or
15 ;;; (at your option) any later version.
17 ;;; SOD is distributed in the hope that it will be useful,
18 ;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
19 ;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 ;;; GNU General Public License for more details.
22 ;;; You should have received a copy of the GNU General Public License
23 ;;; along with SOD; if not, write to the Free Software Foundation,
24 ;;; Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
28 ;;;--------------------------------------------------------------------------
31 (export 'basic-message)
32 (defclass basic-message (sod-message)
33 ((argument-tail :type list :reader sod-message-argument-tail)
34 (no-varargs-tail :type list :reader sod-message-no-varargs-tail))
36 "Base class for built-in message classes.
38 Provides the basic functionality for the built-in method combinations.
39 This is a separate class so that `special effect' messages can avoid
40 inheriting its default behaviour.
42 The function type protocol is implemented on `basic-message' using slot
43 reader methods. The actual values are computed on demand in methods
44 defined on `slot-unbound'."))
46 (defmethod slot-unbound (class
47 (message basic-message)
48 (slot-name (eql 'argument-tail)))
49 (declare (ignore class))
51 (setf (slot-value message 'argument-tail)
53 (if (or (eq arg :ellipsis) (argument-name arg)) arg
54 (make-argument (make-instance 'temporary-argument
57 (argument-type arg))))
58 (c-function-arguments (sod-message-type message))))))
60 (defmethod slot-unbound (class
61 (message basic-message)
62 (slot-name (eql 'no-varargs-tail)))
63 (declare (ignore class))
64 (setf (slot-value message 'no-varargs-tail)
66 (if (eq arg :ellipsis)
67 (make-argument *sod-ap* (c-type va-list))
69 (sod-message-argument-tail message))))
71 (defmethod sod-message-method-class
72 ((message basic-message) (class sod-class) pset)
73 (let ((role (get-property pset :role :keyword nil)))
75 ((:before :after) 'daemon-direct-method)
76 (:around 'delegating-direct-method)
77 ((nil) (error "How odd: a primary method slipped through the net"))
78 (t (error "Unknown method role ~A" role)))))
80 (export 'simple-message)
81 (defclass simple-message (basic-message)
84 "Base class for messages with `simple' method combinations.
86 A simple method combination is one which has only one method role other
87 than the `before', `after' and `around' methods provided by
88 `basic-message'. We call these `primary' methods, and the programmer
89 designates them by not specifying an explicit role.
91 If the programmer doesn't define any primary methods then the effective
92 method is null -- i.e., the method entry pointer shows up as a null
95 (defmethod sod-message-method-class
96 ((message simple-message) (class sod-class) pset)
97 (if (get-property pset :role :keyword nil)
99 (primary-method-class message)))
101 (defmethod primary-method-class ((message simple-message))
102 'basic-direct-method)
104 ;;;--------------------------------------------------------------------------
105 ;;; Direct method classes.
107 (export 'basic-direct-method)
108 (defclass basic-direct-method (sod-method)
109 ((role :initarg :role :type symbol :reader sod-method-role)
110 (function-type :type c-function-type :reader sod-method-function-type))
112 "Base class for built-in direct method classes.
114 Provides the basic functionality for the built-in direct-method classes.
115 This is a separate class so that `special effect' methods can avoid
116 inheriting its default behaviour and slots.
118 A basic method can be assigned a `role', which may be set either as an
119 initarg or using the `:role' property. Roles are used for method
122 The function type protocol is implemented on `basic-direct-method' using
123 slot reader methods. The actual values are computed on demand in methods
124 defined on `slot-unbound'."))
126 (defmethod shared-initialize :after
127 ((method basic-direct-method) slot-names &key pset)
128 (declare (ignore slot-names))
129 (default-slot (method 'role) (get-property pset :role :keyword nil)))
131 (defmethod slot-unbound
132 (class (method basic-direct-method) (slot-name (eql 'function-type)))
133 (declare (ignore class))
134 (let ((type (sod-method-type method)))
135 (setf (slot-value method 'function-type)
136 (c-type (fun (lisp (c-type-subtype type))
137 ("me" (* (class (sod-method-class method))))
138 . (c-function-arguments type))))))
140 (defmethod sod-method-function-name ((method basic-direct-method))
141 (with-slots (class role message) method
142 (format nil "~A__~@[~(~A~)_~]method_~A__~A" class role
143 (sod-class-nickname (sod-message-class message))
144 (sod-message-name message))))
146 (export 'daemon-direct-method)
147 (defclass daemon-direct-method (basic-direct-method)
150 "A daemon direct method is invoked for side effects and cannot override.
152 This is the direct method class for `before' and `after' methods, which
153 cannot choose to override the remaining methods and are not involved in
154 the computation of the final result.
156 In C terms, a daemon method must return `void', and is not passed a
157 `next_method' pointer."))
159 (defmethod check-method-type ((method daemon-direct-method)
160 (message sod-message)
161 (type c-function-type))
162 (with-slots ((msgtype type)) message
163 (unless (c-type-equal-p (c-type-subtype type) (c-type void))
164 (error "Method return type ~A must be `void'" (c-type-subtype type)))
165 (unless (argument-lists-compatible-p (c-function-arguments msgtype)
166 (c-function-arguments type))
167 (error "Method arguments ~A don't match message ~A" type msgtype))))
169 (export 'delegating-direct-method)
170 (defclass delegating-direct-method (basic-direct-method)
171 ((next-method-type :type c-function-type
172 :reader sod-method-next-method-type))
174 "A delegating direct method can choose to override other methods.
176 This is the direct method class for `around' and standard-method-
177 combination primary methods, which are given the choice of computing the
178 entire method's result or delegating to (usually) less-specific methods.
180 In C terms, a delegating method is passed a `next_method' pointer so that
181 it can delegate part of its behaviour. (A delegating direct method for a
182 varargs message is also given an additional `va_list' argument,
183 conventionally named `sod__ap_master', which it is expected to pass on to
184 its `next_method' function if necessary.)
186 The function type protocol is implemented on `delegating-direct-method'
187 using slot reader methods. The actual values are computed on demand in
188 methods defined on `slot-unbound'."))
190 (defmethod slot-unbound (class
191 (method delegating-direct-method)
192 (slot-name (eql 'next-method-type)))
193 (declare (ignore class))
194 (let* ((message (sod-method-message method))
195 (type (sod-message-type message)))
196 (setf (slot-value method 'next-method-type)
197 (c-type (fun (lisp (c-type-subtype type))
198 ("me" (* (class (sod-method-class method))))
200 (c-function-arguments type))))))
202 (defmethod slot-unbound (class
203 (method delegating-direct-method)
204 (slot-name (eql 'function-type)))
205 (declare (ignore class))
206 (let* ((message (sod-method-message method))
207 (type (sod-method-type method))
208 (method-args (c-function-arguments type)))
209 (setf (slot-value method 'function-type)
210 (c-type (fun (lisp (c-type-subtype type))
211 ("me" (* (class (sod-method-class method))))
212 ("next_method" (* (lisp (commentify-function-type
213 (sod-method-next-method-type
216 (if (varargs-message-p message)
217 (cons (make-argument *sod-master-ap*
222 ;;;--------------------------------------------------------------------------
223 ;;; Effective method classes.
225 (export 'basic-effective-method)
226 (defclass basic-effective-method (effective-method)
227 ((around-methods :initarg :around-methods :initform nil
228 :type list :reader effective-method-around-methods)
229 (before-methods :initarg :before-methods :initform nil
230 :type list :reader effective-method-before-methods)
231 (after-methods :initarg :after-methods :initform nil
232 :type list :reader effective-method-after-methods)
233 (basic-argument-names :type list
234 :reader effective-method-basic-argument-names)
235 (functions :type list :reader effective-method-functions))
237 "Base class for built-in effective method classes.
239 This class maintains lists of the applicable `before', `after' and
240 `around' methods and provides behaviour for invoking these methods
243 The argument names protocol is implemented on `basic-effective-method'
244 using a slot reader method. The actual values are computed on demand in
245 methods defined on `slot-unbound'."))
247 (defmethod slot-unbound (class
248 (method basic-effective-method)
249 (slot-name (eql 'basic-argument-names)))
250 (declare (ignore class))
251 (let ((message (effective-method-message method)))
252 (setf (slot-value method 'basic-argument-names)
253 (subst *sod-master-ap* *sod-ap*
254 (mapcar #'argument-name
255 (sod-message-no-varargs-tail message))))))
257 (defmethod effective-method-function-name ((method effective-method))
258 (let* ((class (effective-method-class method))
259 (message (effective-method-message method))
260 (message-class (sod-message-class message)))
261 (format nil "~A__emethod_~A__~A"
263 (sod-class-nickname message-class)
264 (sod-message-name message))))
266 (defmethod slot-unbound
267 (class (method basic-effective-method) (slot-name (eql 'functions)))
268 (declare (ignore class))
269 (setf (slot-value method 'functions)
270 (compute-method-entry-functions method)))
272 (export 'simple-effective-method)
273 (defclass simple-effective-method (basic-effective-method)
274 ((primary-methods :initarg :primary-methods :initform nil
275 :type list :reader effective-method-primary-methods))
277 "Effective method counterpart to `simple-message'."))
279 (defmethod shared-initialize :after
280 ((method simple-effective-method) slot-names &key direct-methods)
281 (declare (ignore slot-names))
282 (categorize (method direct-methods :bind ((role (sod-method-role method))))
283 ((primary (null role))
284 (before (eq role :before))
285 (after (eq role :after))
286 (around (eq role :around)))
287 (with-slots (primary-methods before-methods after-methods around-methods)
289 (setf primary-methods primary
290 before-methods before
291 after-methods (reverse after)
292 around-methods around))))
294 ;;;--------------------------------------------------------------------------
297 (defmethod shared-initialize :after
298 ((codegen method-codegen) slot-names &key)
299 (declare (ignore slot-names))
300 (with-slots (message target) codegen
302 (if (eq (c-type-subtype (sod-message-type message)) (c-type void))
306 ;;;--------------------------------------------------------------------------
307 ;;; Invoking direct methods.
309 (export 'basic-effective-method-body)
310 (defun basic-effective-method-body (codegen target method body)
311 "Build the common method-invocation structure.
313 Writes to CODEGEN some basic method-invocation instructions. It invokes
314 the `around' methods, from most- to least-specific. If they all delegate,
315 then the `before' methods are run, most-specific first; next, the
316 instructions generated by BODY (invoked with a target argument); then, the
317 `after' methods are run, least-specific first; and, finally, the value
318 delivered by the BODY is returned to the `around' methods. The result
319 returned by the outermost `around' method -- or, if there are none,
320 delivered by the BODY -- is finally delivered to the TARGET."
322 (with-slots (message class before-methods after-methods around-methods)
324 (let* ((message-type (sod-message-type message))
325 (return-type (c-type-subtype message-type))
326 (voidp (eq return-type (c-type void)))
327 (basic-tail (effective-method-basic-argument-names method)))
328 (flet ((method-kernel (target)
329 (dolist (before before-methods)
330 (invoke-method codegen :void basic-tail before))
331 (if (or voidp (null after-methods))
332 (funcall body target)
333 (convert-stmts codegen target return-type
335 (funcall body target)
336 (dolist (after (reverse after-methods))
337 (invoke-method codegen :void
338 basic-tail after)))))))
339 (invoke-delegation-chain codegen target basic-tail
340 around-methods #'method-kernel)))))
342 ;;;--------------------------------------------------------------------------
343 ;;; Method entry points.
345 (defparameter *method-entry-inline-threshold* 200
346 "Threshold below which effective method bodies are inlined into entries.
348 After the effective method body has been computed, we calculate its
349 metric, multiply by the number of entries we need to generate, and compare
350 it with this threshold. If the metric is below the threshold then we
351 fold the method body into the entry functions; otherwise we split the
352 effective method out into its own function.")
354 (defmethod method-entry-function-name
355 ((method effective-method) (chain-head sod-class))
356 (let* ((class (effective-method-class method))
357 (message (effective-method-message method))
358 (message-class (sod-message-class message)))
359 (if (or (not (slot-boundp method 'functions))
360 (slot-value method 'functions))
361 (format nil "~A__mentry_~A__~A__chain_~A"
363 (sod-class-nickname message-class)
364 (sod-message-name message)
365 (sod-class-nickname chain-head))
368 (defmethod method-entry-function-type ((entry method-entry))
369 (let* ((method (method-entry-effective-method entry))
370 (message (effective-method-message method))
371 (type (sod-message-type message)))
372 (c-type (fun (lisp (c-type-subtype type))
373 ("me" (* (class (method-entry-chain-tail entry))))
374 . (sod-message-argument-tail message)))))
376 (defmethod make-method-entry ((method basic-effective-method)
377 (chain-head sod-class) (chain-tail sod-class))
378 (make-instance 'method-entry
380 :chain-head chain-head
381 :chain-tail chain-tail))
383 (defmethod compute-method-entry-functions ((method basic-effective-method))
385 ;; OK, there's quite a lot of this, so hold tight.
387 ;; The first thing we need to do is find all of the related objects. This
388 ;; is a bit verbose but fairly straightforward.
390 ;; Next, we generate the effective method body -- using `compute-effective-
391 ;; method-body' of all things. This gives us the declarations and body for
392 ;; an effective method function, but we don't have an actual function yet.
394 ;; Now we look at the chains which are actually going to need a method
395 ;; entry: only those chains whose tail (most specific) class is a
396 ;; superclass of the class which defined the message need an entry. We
397 ;; build a list of these tail classes.
399 ;; Having done this, we decide whether it's better to generate a standalone
400 ;; effective-method function and call it from each of the method entries,
401 ;; or to inline the effective method body into each of the entries.
403 ;; Most of the complexity here comes from (a) dealing with the two
404 ;; different strategies for constructing method entry functions and (b)
405 ;; (unsurprisingly) the mess involved with dealing with varargs messages.
407 (let* ((message (effective-method-message method))
408 (class (effective-method-class method))
409 (message-class (sod-message-class message))
410 (return-type (c-type-subtype (sod-message-type message)))
411 (codegen (make-instance 'method-codegen
416 ;; Effective method function details.
417 (emf-name (effective-method-function-name method))
418 (ilayout-type (c-type (* (struct (ilayout-struct-tag class)))))
419 (emf-arg-tail (mapcar (lambda (arg)
420 (if (eq (argument-name arg) *sod-ap*)
421 (make-argument *sod-master-ap*
424 (sod-message-no-varargs-tail message)))
425 (emf-type (c-type (fun (lisp return-type)
426 ("sod__obj" (lisp ilayout-type))
427 . (sod-message-no-varargs-tail message))))
429 ;; Method entry details.
430 (chain-tails (remove-if-not (lambda (super)
431 (sod-subclass-p super message-class))
433 (sod-class-chains class))))
434 (n-entries (length chain-tails))
435 (entry-args (sod-message-argument-tail message))
436 (parm-n (do ((prev "me" (car args))
437 (args entry-args (cdr args)))
439 (when (eq (car args) :ellipsis)
441 (entry-target (codegen-target codegen)))
443 (flet ((setup-entry (tail)
444 (let ((head (sod-class-chain-head tail)))
445 (codegen-push codegen)
446 (ensure-var codegen "sod__obj" ilayout-type
447 (make-convert-to-ilayout-inst class
450 (ensure-var codegen *sod-master-ap* (c-type va-list))
452 (make-va-start-inst *sod-master-ap* parm-n)))
454 (emit-inst codegen (make-va-end-inst *sod-master-ap*)))
456 (let* ((head (sod-class-chain-head tail))
457 (name (method-entry-function-name method head))
458 (type (c-type (fun (lisp return-type)
459 ("me" (* (class tail)))
461 (codegen-pop-function codegen name type))))
463 ;; Generate the method body. We'll work out what to do with it later.
464 (codegen-push codegen)
465 (let* ((result (if (eq return-type c-type-void) nil
466 (temporary-var codegen return-type)))
467 (emf-target (or result :void)))
468 (compute-effective-method-body method codegen emf-target)
469 (multiple-value-bind (vars insts) (codegen-pop codegen)
470 (cond ((or (= n-entries 1)
471 (<= (* n-entries (reduce #'+ insts :key #'inst-metric))
472 *method-entry-inline-threshold*))
474 ;; The effective method body is simple -- or there's only
475 ;; one of them. We'll inline the method body into the entry
477 (dolist (tail chain-tails)
480 (if (typep var 'var-inst)
481 (ensure-var codegen (inst-name var)
482 (inst-type var) (inst-init var))
483 (emit-decl codegen var)))
484 (when parm-n (varargs-prologue))
485 (emit-insts codegen insts)
486 (when parm-n (varargs-epilogue))
487 (deliver-expr codegen entry-target result)
488 (finish-entry tail)))
492 ;; The effective method body is complicated and we'd need
493 ;; more than one copy. We'll generate an effective method
494 ;; function and call it a lot.
495 (codegen-build-function codegen emf-name emf-type vars
496 (nconc insts (and result
497 (list (make-return-inst result)))))
499 (let ((call (make-call-inst emf-name
500 (cons "sod__obj" (mapcar #'argument-name
502 (dolist (tail chain-tails)
506 (convert-stmts codegen entry-target return-type
508 (deliver-expr codegen
510 (varargs-epilogue))))
512 (deliver-expr codegen entry-target call)))
513 (finish-entry tail)))))))
515 (codegen-functions codegen))))
517 (defmethod compute-method-entry-functions
518 ((method simple-effective-method))
519 (if (effective-method-primary-methods method)
523 (defmethod compute-effective-method-body
524 ((method simple-effective-method) codegen target)
525 (basic-effective-method-body codegen target method
527 (simple-method-body method
531 ;;;--------------------------------------------------------------------------
532 ;;; Standard method combination.
534 (export 'standard-message)
535 (defclass standard-message (simple-message)
538 "Message class for standard method combinations.
540 Standard method combination is a simple method combination where the
541 primary methods are invoked as a delegation chain, from most- to
544 (export 'standard-effective-method)
545 (defclass standard-effective-method (simple-effective-method) ()
546 (:documentation "Effective method counterpart to `standard-message'."))
548 (defmethod primary-method-class ((message standard-message))
549 'delegating-direct-method)
551 (defmethod message-effective-method-class ((message standard-message))
552 'standard-effective-method)
554 (defmethod simple-method-body
555 ((method standard-effective-method) codegen target)
556 (invoke-delegation-chain codegen
558 (effective-method-basic-argument-names method)
559 (effective-method-primary-methods method)
562 ;;;----- That's all, folks --------------------------------------------------