chiark / gitweb /
doc/concepts.tex: Typeset method rĂ´le names as identifiers.
[sod] / src / method-impl.lisp
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1;;; -*-lisp-*-
2;;;
dea4d055 3;;; Method combination implementation
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4;;;
5;;; (c) 2009 Straylight/Edgeware
6;;;
7
8;;;----- Licensing notice ---------------------------------------------------
9;;;
e0808c47 10;;; This file is part of the Sensible Object Design, an object system for C.
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11;;;
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.
16;;;
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.
21;;;
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.
25
26(cl:in-package #:sod)
27
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28;;;--------------------------------------------------------------------------
29;;; Message classes.
30
dea4d055 31(export 'basic-message)
1f1d88f5 32(defclass basic-message (sod-message)
1622ed8e 33 ((argument-tail :type list :reader sod-message-argument-tail))
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34 (:documentation
35 "Base class for built-in message classes.
36
37 Provides the basic functionality for the built-in method combinations.
38 This is a separate class so that `special effect' messages can avoid
39 inheriting its default behaviour.
40
dea4d055 41 The function type protocol is implemented on `basic-message' using slot
6e6b0958 42 reader methods. The actual values are computed on demand."))
1f1d88f5 43
6e6b0958 44(define-on-demand-slot basic-message argument-tail (message)
1f1d88f5 45 (let ((seq 0))
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46 (mapcar (lambda (arg)
47 (if (or (eq arg :ellipsis) (argument-name arg)) arg
48 (make-argument (make-instance 'temporary-argument
49 :tag (prog1 seq
50 (incf seq)))
51 (argument-type arg))))
52 (c-function-arguments (sod-message-type message)))))
53
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54(defmethod sod-message-method-class
55 ((message basic-message) (class sod-class) pset)
56 (let ((role (get-property pset :role :keyword nil)))
57 (case role
58 ((:before :after) 'daemon-direct-method)
59 (:around 'delegating-direct-method)
60 ((nil) (error "How odd: a primary method slipped through the net"))
61 (t (error "Unknown method role ~A" role)))))
62
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63(export 'simple-message)
64(defclass simple-message (basic-message)
65 ()
66 (:documentation
67 "Base class for messages with `simple' method combinations.
1f1d88f5 68
dea4d055 69 A simple method combination is one which has only one method role other
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70 than the `before', `after' and `around' methods provided by
71 `basic-message'. We call these `primary' methods, and the programmer
72 designates them by not specifying an explicit role.
1f1d88f5 73
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74 If the programmer doesn't define any primary methods then the effective
75 method is null -- i.e., the method entry pointer shows up as a null
76 pointer."))
77
78(defmethod sod-message-method-class
79 ((message simple-message) (class sod-class) pset)
80 (if (get-property pset :role :keyword nil)
81 (call-next-method)
82 (primary-method-class message)))
1f1d88f5 83
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84(defmethod primary-method-class ((message simple-message))
85 'basic-direct-method)
86
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87;;;--------------------------------------------------------------------------
88;;; Direct method classes.
89
11e41ddf 90(export '(basic-direct-method sod-method-role))
1f1d88f5 91(defclass basic-direct-method (sod-method)
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92 ((role :initarg :role :type symbol :reader sod-method-role)
93 (function-type :type c-function-type :reader sod-method-function-type))
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94 (:documentation
95 "Base class for built-in direct method classes.
96
97 Provides the basic functionality for the built-in direct-method classes.
98 This is a separate class so that `special effect' methods can avoid
99 inheriting its default behaviour and slots.
100
101 A basic method can be assigned a `role', which may be set either as an
dea4d055 102 initarg or using the `:role' property. Roles are used for method
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103 categorization.
104
dea4d055 105 The function type protocol is implemented on `basic-direct-method' using
6e6b0958 106 slot reader methods."))
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107
108(defmethod shared-initialize :after
109 ((method basic-direct-method) slot-names &key pset)
110 (declare (ignore slot-names))
111 (default-slot (method 'role) (get-property pset :role :keyword nil)))
112
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113(defun direct-method-suppliedp-struct-tag (direct-method)
114 (with-slots ((class %class) role message) direct-method
115 (format nil "~A__~@[~(~A~)_~]suppliedp_~A__~A"
116 class role
117 (sod-class-nickname (sod-message-class message))
118 (sod-message-name message))))
119
120(defun effective-method-keyword-struct-tag (effective-method)
121 (with-slots ((class %class) message) effective-method
122 (format nil "~A__keywords_~A__~A"
123 class
124 (sod-class-nickname (sod-message-class message))
125 (sod-message-name message))))
126
127(defun fix-up-keyword-method-args (method args)
128 "Adjust the ARGS to include METHOD's `suppliedp' and keyword arguments.
129
130 Return the adjusted list. The `suppliedp' argument, if any, is prepended
131 to the list; the keyword arguments are added to the end.
132
133 (The input ARGS list is not actually modified.)"
134 (let* ((type (sod-method-type method))
135 (keys (c-function-keywords type))
136 (tag (direct-method-suppliedp-struct-tag method)))
137 (append (and keys
138 (list (make-argument "suppliedp" (c-type (struct tag)))))
139 args
140 (mapcar (lambda (key)
141 (make-argument (argument-name key)
142 (argument-type key)))
143 keys))))
144
6e6b0958 145(define-on-demand-slot basic-direct-method function-type (method)
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146 (let* ((message (sod-method-message method))
147 (type (sod-method-type method))
148 (method-args (c-function-arguments type)))
149 (when (keyword-message-p message)
150 (setf method-args (fix-up-keyword-method-args method method-args)))
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151 (c-type (fun (lisp (c-type-subtype type))
152 ("me" (* (class (sod-method-class method))))
43073476 153 . method-args))))
1f1d88f5 154
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155(defmethod sod-method-description ((method basic-direct-method))
156 (with-slots (role) method
157 (if role (string-downcase role)
158 "primary")))
159
ddee4bb1 160(defmethod sod-method-function-name ((method basic-direct-method))
4b8e5c03 161 (with-slots ((class %class) role message) method
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162 (format nil "~A__~@[~(~A~)_~]method_~A__~A" class role
163 (sod-class-nickname (sod-message-class message))
164 (sod-message-name message))))
165
dea4d055 166(export 'daemon-direct-method)
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167(defclass daemon-direct-method (basic-direct-method)
168 ()
169 (:documentation
170 "A daemon direct method is invoked for side effects and cannot override.
171
172 This is the direct method class for `before' and `after' methods, which
173 cannot choose to override the remaining methods and are not involved in
174 the computation of the final result.
175
176 In C terms, a daemon method must return `void', and is not passed a
177 `next_method' pointer."))
178
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179(defmethod check-method-type ((method daemon-direct-method)
180 (message sod-message)
181 (type c-function-type))
4b8e5c03 182 (with-slots ((msgtype %type)) message
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183 (check-method-return-type type c-type-void)
184 (check-method-argument-lists type msgtype)))
1f1d88f5 185
dea4d055 186(export 'delegating-direct-method)
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187(defclass delegating-direct-method (basic-direct-method)
188 ((next-method-type :type c-function-type
189 :reader sod-method-next-method-type))
190 (:documentation
191 "A delegating direct method can choose to override other methods.
192
193 This is the direct method class for `around' and standard-method-
194 combination primary methods, which are given the choice of computing the
195 entire method's result or delegating to (usually) less-specific methods.
196
197 In C terms, a delegating method is passed a `next_method' pointer so that
198 it can delegate part of its behaviour. (A delegating direct method for a
199 varargs message is also given an additional `va_list' argument,
200 conventionally named `sod__ap_master', which it is expected to pass on to
201 its `next_method' function if necessary.)
202
bf090e02 203 The function type protocol is implemented on `delegating-direct-method'
6e6b0958 204 using slot reader methods.."))
1f1d88f5 205
6e6b0958 206(define-on-demand-slot delegating-direct-method next-method-type (method)
1f1d88f5 207 (let* ((message (sod-method-message method))
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208 (return-type (c-type-subtype (sod-message-type message)))
209 (msgargs (sod-message-argument-tail message))
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210 (arguments (cond ((varargs-message-p message)
211 (cons (make-argument *sod-master-ap*
212 c-type-va-list)
213 (butlast msgargs)))
214 ((keyword-message-p message)
215 (cons (make-argument *sod-keywords*
216 (c-type (* (void :const))))
217 msgargs))
218 (t
219 msgargs))))
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220 (c-type (fun (lisp return-type)
221 ("me" (* (class (sod-method-class method))))
222 . arguments))))
223
224(define-on-demand-slot delegating-direct-method function-type (method)
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225 (let* ((message (sod-method-message method))
226 (type (sod-method-type method))
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227 (method-args (c-function-arguments type))
228 (next-method-arg (make-argument
229 "next_method"
230 (make-pointer-type
231 (commentify-function-type
232 (sod-method-next-method-type method))))))
233 (cond ((varargs-message-p message)
234 (push (make-argument *sod-master-ap* c-type-va-list)
235 method-args)
236 (push next-method-arg method-args))
237 ((keyword-message-p message)
238 (push (make-argument *sod-keywords* (c-type (* (void :const))))
239 method-args)
240 (push next-method-arg method-args)
241 (setf method-args
242 (fix-up-keyword-method-args method method-args)))
243 (t
244 (push next-method-arg method-args)))
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245 (c-type (fun (lisp (c-type-subtype type))
246 ("me" (* (class (sod-method-class method))))
43073476 247 . method-args))))
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248
249;;;--------------------------------------------------------------------------
250;;; Effective method classes.
251
43ce48fd 252(defmethod method-keyword-argument-lists
84b9d17a 253 ((method effective-method) direct-methods state)
43ce48fd 254 (with-slots (message) method
bdaf6dbd 255 (and (keyword-message-p message)
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256 (cons (cons (lambda (arg)
257 (let ((class (sod-message-class message)))
258 (info-with-location
259 message "Type `~A' declared in message ~
260 definition in `~A' (here)"
261 (argument-type arg) class)
262 (report-inheritance-path state class)))
01778b39 263 (c-function-keywords (sod-message-type message)))
fbcba4c0 264 (mapcar (lambda (m)
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265 (cons (lambda (arg)
266 (let ((class (sod-method-class m)))
267 (info-with-location
268 m "Type `~A' declared in ~A direct ~
269 method of `~A' (defined here)"
270 (argument-type arg)
271 (sod-method-description m) class)
272 (report-inheritance-path state class)))
01778b39 273 (c-function-keywords (sod-method-type m))))
fbcba4c0 274 direct-methods)))))
43ce48fd 275
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276(defmethod shared-initialize :after
277 ((method effective-method) slot-names &key direct-methods)
278 (declare (ignore slot-names))
279
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280 ;; Set the keyword argument list. Blame the class as a whole for mismatch
281 ;; errors, because they're fundamentally a non-local problem about the
282 ;; class construction.
283 (with-slots ((class %class) message keywords) method
43ce48fd 284 (setf keywords
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285 (merge-keyword-lists
286 (lambda ()
287 (values class
288 (format nil
289 "methods for message `~A' ~
290 applicable to class `~A'"
291 message class)))
292 (method-keyword-argument-lists method direct-methods
293 (make-inheritance-path-reporter-state class))))))
43073476 294
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295(export '(basic-effective-method
296 effective-method-around-methods effective-method-before-methods
297 effective-method-after-methods))
1f1d88f5 298(defclass basic-effective-method (effective-method)
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299 ((around-methods :initarg :around-methods :initform nil
300 :type list :reader effective-method-around-methods)
301 (before-methods :initarg :before-methods :initform nil
302 :type list :reader effective-method-before-methods)
303 (after-methods :initarg :after-methods :initform nil
304 :type list :reader effective-method-after-methods)
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305 (basic-argument-names :type list
306 :reader effective-method-basic-argument-names)
307 (functions :type list :reader effective-method-functions))
308 (:documentation
309 "Base class for built-in effective method classes.
310
311 This class maintains lists of the applicable `before', `after' and
312 `around' methods and provides behaviour for invoking these methods
313 correctly.
314
dea4d055 315 The argument names protocol is implemented on `basic-effective-method'
6e6b0958 316 using a slot reader method."))
1f1d88f5 317
6e6b0958 318(define-on-demand-slot basic-effective-method basic-argument-names (method)
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319 (let* ((message (effective-method-message method))
320 (raw-tail (sod-message-argument-tail message)))
321 (mapcar #'argument-name (reify-variable-argument-tail raw-tail))))
1f1d88f5 322
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323(defmethod effective-method-function-name ((method effective-method))
324 (let* ((class (effective-method-class method))
325 (message (effective-method-message method))
326 (message-class (sod-message-class message)))
327 (format nil "~A__emethod_~A__~A"
328 class
329 (sod-class-nickname message-class)
330 (sod-message-name message))))
1f1d88f5 331
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332(define-on-demand-slot basic-effective-method functions (method)
333 (compute-method-entry-functions method))
1f1d88f5 334
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335(export 'simple-effective-method)
336(defclass simple-effective-method (basic-effective-method)
337 ((primary-methods :initarg :primary-methods :initform nil
338 :type list :reader effective-method-primary-methods))
1f1d88f5 339 (:documentation
dea4d055 340 "Effective method counterpart to `simple-message'."))
1f1d88f5 341
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342(defmethod shared-initialize :after
343 ((method simple-effective-method) slot-names &key direct-methods)
344 (declare (ignore slot-names))
345 (categorize (method direct-methods :bind ((role (sod-method-role method))))
346 ((primary (null role))
347 (before (eq role :before))
348 (after (eq role :after))
349 (around (eq role :around)))
350 (with-slots (primary-methods before-methods after-methods around-methods)
351 method
352 (setf primary-methods primary
353 before-methods before
354 after-methods (reverse after)
355 around-methods around))))
356
357;;;--------------------------------------------------------------------------
358;;; Code generation.
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359
360(defmethod shared-initialize :after
361 ((codegen method-codegen) slot-names &key)
1d8cc67a 362 (declare (ignore slot-names))
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363 (with-slots (message target) codegen
364 (setf target
e85df3ff 365 (if (eq (c-type-subtype (sod-message-type message)) c-type-void)
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366 :void
367 :return))))
368
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369;;;--------------------------------------------------------------------------
370;;; Invoking direct methods.
1f1d88f5 371
dea4d055 372(export 'basic-effective-method-body)
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373(defun basic-effective-method-body (codegen target method body)
374 "Build the common method-invocation structure.
375
376 Writes to CODEGEN some basic method-invocation instructions. It invokes
377 the `around' methods, from most- to least-specific. If they all delegate,
378 then the `before' methods are run, most-specific first; next, the
379 instructions generated by BODY (invoked with a target argument); then, the
380 `after' methods are run, least-specific first; and, finally, the value
381 delivered by the BODY is returned to the `around' methods. The result
382 returned by the outermost `around' method -- or, if there are none,
383 delivered by the BODY -- is finally delivered to the TARGET."
384
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385 (with-slots (message (class %class)
386 before-methods after-methods around-methods)
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387 method
388 (let* ((message-type (sod-message-type message))
389 (return-type (c-type-subtype message-type))
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390 (basic-tail (effective-method-basic-argument-names method)))
391 (flet ((method-kernel (target)
392 (dolist (before before-methods)
393 (invoke-method codegen :void basic-tail before))
cb35f25e 394 (if (null after-methods)
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395 (funcall body target)
396 (convert-stmts codegen target return-type
397 (lambda (target)
398 (funcall body target)
399 (dolist (after (reverse after-methods))
400 (invoke-method codegen :void
a898c9e2 401 basic-tail after)))))))
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402 (invoke-delegation-chain codegen target basic-tail
403 around-methods #'method-kernel)))))
404
405;;;--------------------------------------------------------------------------
dea4d055 406;;; Method entry points.
1f1d88f5 407
a07d8d00 408(defparameter *method-entry-inline-threshold* 200
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409 "Threshold below which effective method bodies are inlined into entries.
410
411 After the effective method body has been computed, we calculate its
412 metric, multiply by the number of entries we need to generate, and compare
413 it with this threshold. If the metric is below the threshold then we
414 fold the method body into the entry functions; otherwise we split the
415 effective method out into its own function.")
416
1f1d88f5 417(defmethod method-entry-function-name
b426ab51 418 ((method effective-method) (chain-head sod-class) role)
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419 (let* ((class (effective-method-class method))
420 (message (effective-method-message method))
421 (message-class (sod-message-class message)))
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422 (if (or (not (slot-boundp method 'functions))
423 (slot-value method 'functions))
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424 (format nil "~A__mentry~@[__~(~A~)~]_~A__~A__chain_~A"
425 class role
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426 (sod-class-nickname message-class)
427 (sod-message-name message)
428 (sod-class-nickname chain-head))
944caf84 429 *null-pointer*)))
dea4d055 430
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431(defmethod method-entry-slot-name ((entry method-entry))
432 (let* ((method (method-entry-effective-method entry))
433 (message (effective-method-message method))
434 (name (sod-message-name message))
435 (role (method-entry-role entry)))
436 (method-entry-slot-name-by-role entry role name)))
437
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438(defmethod method-entry-function-type ((entry method-entry))
439 (let* ((method (method-entry-effective-method entry))
440 (message (effective-method-message method))
b426ab51 441 (type (sod-message-type message))
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442 (keywordsp (keyword-message-p message))
443 (raw-tail (append (sod-message-argument-tail message)
444 (and keywordsp (list :ellipsis))))
b426ab51 445 (tail (ecase (method-entry-role entry)
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446 ((nil) raw-tail)
447 (:valist (reify-variable-argument-tail raw-tail)))))
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448 (c-type (fun (lisp (c-type-subtype type))
449 ("me" (* (class (method-entry-chain-tail entry))))
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450 . tail))))
451
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452(defgeneric effective-method-keyword-parser-function-name (method)
453 (:documentation
454 "Return the name of the keyword-parsing function for an effective METHOD.
455
456 See `make-keyword-parser-function' for details of what this function
457 actually does."))
458
459(defmethod effective-method-keyword-parser-function-name
460 ((method basic-effective-method))
461 (with-slots ((class %class) message) method
462 (format nil "~A__kwparse_~A__~A"
463 class
464 (sod-class-nickname (sod-message-class message))
465 (sod-message-name message))))
466
467(defun make-keyword-parser-function (codegen method tag set keywords)
468 "Construct and return a keyword-argument parsing function.
469
470 The function is contributed to the CODEGEN, with the name constructed from
471 the effective METHOD. It will populate an argument structure with the
472 given TAG. In case of error, it will mention the name SET in its report.
473 The KEYWORDS are a list of `argument' objects naming the keywords to be
474 accepted.
475
476 The generated function has the signature
477
478 void NAME(struct TAG *kw, va_list *ap, struct kwval *v, size_t n)
479
480 It assumes that AP includes the first keyword name. (This makes it
481 different from the keyword-parsing functions generated by the
482 `KWSET_PARSEFN' macro, but this interface is slightly more convenient and
483 we don't need to cope with functions which accept no required
484 arguments.)"
485
486 ;; Let's start, then.
487 (codegen-push codegen)
488
489 ;; Set up the local variables we'll need.
490 (macrolet ((var (name type)
491 `(ensure-var codegen ,name (c-type ,type))))
492 (var "k" const-string)
493 (var "aap" (* va-list))
494 (var "t" (* (struct "kwtab" :const)))
495 (var "vv" (* (struct "kwval" :const)))
496 (var "nn" size-t))
497
498 (flet ((call (target func &rest args)
499 ;; Call FUNC with ARGS; return result in TARGET.
500
501 (apply #'deliver-call codegen target func args))
502
503 (convert (target type)
504 ;; Fetch the object of TYPE pointed to by `v->val', and store it
505 ;; in TARGET.
506
507 (deliver-expr codegen target
508 (format nil "*(~A)v->val"
509 (make-pointer-type (qualify-c-type
510 type (list :const))))))
511
512 (namecheck (var name conseq alt)
513 ;; Return an instruction: if VAR matches the string NAME then do
514 ;; CONSEQ; otherwise do ALT.
515
516 (make-if-inst (make-call-inst "!strcmp"
517 var (prin1-to-string name))
518 conseq alt)))
519
520 ;; Prepare the main parsing loops. We're going to construct them both at
521 ;; the same time. They're not quite similar enough for it to be
522 ;; worthwhile abstracting this further, but carving up the keywords is
523 ;; too tedious to write out more than once.
524 (let ((va-act (make-expr-inst (make-call-inst "kw_unknown" set "k")))
525 (tab-act (make-expr-inst (make-call-inst "kw_unknown"
526 set "v->kw")))
527 (name (effective-method-keyword-parser-function-name method)))
528
529 ;; Work through the keywords. We're going to be building up the
530 ;; conditional dispatch from the end, so reverse the (nicely sorted)
531 ;; list before processing it.
532 (dolist (key (reverse keywords))
533 (let* ((key-name (argument-name key))
534 (key-type (argument-type key)))
535
536 ;; Handle the varargs case.
537 (codegen-push codegen)
538 (deliver-expr codegen (format nil "kw->~A__suppliedp" key-name) 1)
539 (call (format nil "kw->~A" key-name) "va_arg" "*ap" key-type)
540 (setf va-act (namecheck "k" key-name
541 (codegen-pop-block codegen) va-act))
542
543 ;; Handle the table case.
544 (codegen-push codegen)
545 (deliver-expr codegen (format nil "kw->~A__suppliedp" key-name) 1)
546 (convert (format nil "kw->~A" key-name) key-type)
547 (setf tab-act (namecheck "v->kw" key-name
548 (codegen-pop-block codegen) tab-act))))
549
550 ;; Deal with the special `kw.' keywords read via varargs.
551 (codegen-push codegen)
552 (call "vv" "va_arg" "*ap" (c-type (* (struct "kwval" :const))))
553 (call "nn" "va_arg" "*ap" c-type-size-t)
554 (call :void name "kw" *null-pointer* "vv" "nn")
555 (setf va-act (namecheck "k" "kw.tab"
556 (codegen-pop-block codegen) va-act))
557
558 (codegen-push codegen)
559 (call "aap" "va_arg" "*ap" (c-type (* va-list)))
560 (call :void name "kw" "aap" *null-pointer* 0)
561 (setf va-act (namecheck "k" "kw.va_list"
562 (codegen-pop-block codegen) va-act))
563
564 ;; Finish up the varargs loop.
565 (emit-banner codegen "Parse keywords from the variable-length tail.")
566 (codegen-push codegen)
567 (call "k" "va_arg" "*ap" c-type-const-string)
568 (emit-inst codegen (make-if-inst "!k" (make-break-inst)))
569 (emit-inst codegen va-act)
570 (let ((loop (make-for-inst nil nil nil (codegen-pop-block codegen))))
571 (emit-inst codegen
572 (make-if-inst "ap" (make-block-inst nil (list loop)))))
573
574 ;; Deal with the special `kw.' keywords read from a table.
575 (codegen-push codegen)
576 (deliver-expr codegen "t"
577 (format nil "(~A)v->val"
578 (c-type (* (struct "kwtab" :const)))))
579 (call :void name "kw" *null-pointer* "t->v" "t->n")
580 (setf tab-act (namecheck "v->kw" "kw.tab"
581 (codegen-pop-block codegen) tab-act))
582
583 (emit-banner codegen "Parse keywords from the argument table.")
584 (codegen-push codegen)
585 (convert "aap" (c-type (* va-list)))
586 (call :void name "kw" "aap" *null-pointer* 0)
587 (setf tab-act (namecheck "v->kw" "kw.va_list"
588 (codegen-pop-block codegen) tab-act))
589
590 ;; Finish off the table loop.
591 (codegen-push codegen)
592 (emit-inst codegen tab-act)
593 (emit-inst codegen (make-expr-inst "v++"))
594 (emit-inst codegen (make-expr-inst "n--"))
595 (emit-inst codegen (make-while-inst "n" (codegen-pop-block codegen)))
596
597 ;; Wrap the whole lot up with a nice bow.
598 (let ((message (effective-method-message method)))
599 (codegen-pop-function codegen name
600 (c-type (fun void
601 ("kw" (* (struct tag)))
602 ("ap" (* va-list))
603 ("v" (* (struct "kwval" :const)))
604 ("n" size-t)))
605 "Keyword parsing for `~A.~A' on class `~A'."
606 (sod-class-nickname
607 (sod-message-class message))
608 (sod-message-name message)
609 (effective-method-class method))))))
610
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611(defmethod make-method-entries ((method basic-effective-method)
612 (chain-head sod-class)
613 (chain-tail sod-class))
614 (let ((entries nil)
615 (message (effective-method-message method)))
616 (flet ((make (role)
617 (push (make-instance 'method-entry
618 :method method :role role
619 :chain-head chain-head
620 :chain-tail chain-tail)
621 entries)))
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622 (when (or (varargs-message-p message)
623 (keyword-message-p message))
624 (make :valist))
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625 (make nil)
626 entries)))
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627
628(defmethod compute-method-entry-functions ((method basic-effective-method))
629
630 ;; OK, there's quite a lot of this, so hold tight.
631 ;;
632 ;; The first thing we need to do is find all of the related objects. This
633 ;; is a bit verbose but fairly straightforward.
634 ;;
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635 ;; Next, we generate the effective method body -- using `compute-effective-
636 ;; method-body' of all things. This gives us the declarations and body for
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637 ;; an effective method function, but we don't have an actual function yet.
638 ;;
639 ;; Now we look at the chains which are actually going to need a method
640 ;; entry: only those chains whose tail (most specific) class is a
641 ;; superclass of the class which defined the message need an entry. We
642 ;; build a list of these tail classes.
643 ;;
644 ;; Having done this, we decide whether it's better to generate a standalone
645 ;; effective-method function and call it from each of the method entries,
646 ;; or to inline the effective method body into each of the entries.
647 ;;
648 ;; Most of the complexity here comes from (a) dealing with the two
649 ;; different strategies for constructing method entry functions and (b)
650 ;; (unsurprisingly) the mess involved with dealing with varargs messages.
651
652 (let* ((message (effective-method-message method))
653 (class (effective-method-class method))
654 (message-class (sod-message-class message))
655 (return-type (c-type-subtype (sod-message-type message)))
656 (codegen (make-instance 'method-codegen
657 :message message
658 :class class
659 :method method))
660
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661 ;; Method entry details.
662 (chain-tails (remove-if-not (lambda (super)
663 (sod-subclass-p super message-class))
664 (mapcar #'car
665 (sod-class-chains class))))
666 (n-entries (length chain-tails))
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667 (raw-entry-args (append (sod-message-argument-tail message)
668 (and (keyword-message-p message)
669 (list :ellipsis))))
670 (entry-args (reify-variable-argument-tail raw-entry-args))
671 (parm-n (let ((tail (last (cons (make-argument "me" c-type-void)
672 raw-entry-args) 2)))
673 (and tail (eq (cadr tail) :ellipsis)
674 (argument-name (car tail)))))
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675 (entry-target (codegen-target codegen))
676
677 ;; Effective method function details.
678 (emf-name (effective-method-function-name method))
679 (ilayout-type (c-type (* (struct (ilayout-struct-tag class)))))
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680 (emf-type (c-type (fun (lisp return-type)
681 ("sod__obj" (lisp ilayout-type))
3aab0efa 682 . entry-args))))
1f1d88f5 683
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684 (flet ((setup-entry (tail)
685 (let ((head (sod-class-chain-head tail)))
686 (codegen-push codegen)
687 (ensure-var codegen "sod__obj" ilayout-type
688 (make-convert-to-ilayout-inst class
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689 head "me"))
690 (deliver-call codegen :void "SOD__IGNORE" "sod__obj")))
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691 (finish-entry (tail)
692 (let* ((head (sod-class-chain-head tail))
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693 (role (if parm-n :valist nil))
694 (name (method-entry-function-name method head role))
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695 (type (c-type (fun (lisp return-type)
696 ("me" (* (class tail)))
697 . entry-args))))
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698 (codegen-pop-function codegen name type
699 "~@(~@[~A ~]entry~) function ~:_~
700 for method `~A.~A' ~:_~
701 via chain headed by `~A' ~:_~
702 defined on `~A'."
703 (if parm-n "Indirect argument-tail" nil)
704 (sod-class-nickname message-class)
705 (sod-message-name message)
706 head class)
bf8aadd7 707
43073476 708 ;; If this is a varargs or keyword method then we've made the
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709 ;; `:valist' role. Also make the `nil' role.
710 (when parm-n
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711 (let ((call (apply #'make-call-inst name "me"
712 (mapcar #'argument-name entry-args)))
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713 (main (method-entry-function-name method head nil))
714 (main-type (c-type (fun (lisp return-type)
715 ("me" (* (class tail)))
716 . raw-entry-args))))
717 (codegen-push codegen)
e85df3ff 718 (ensure-var codegen *sod-ap* c-type-va-list)
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719 (convert-stmts codegen entry-target return-type
720 (lambda (target)
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721 (deliver-call codegen :void "va_start"
722 *sod-ap* parm-n)
df9b9a63 723 (deliver-expr codegen target call)
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724 (deliver-call codegen :void "va_end"
725 *sod-ap*)))
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726 (codegen-pop-function codegen main main-type
727 "Variable-length argument list ~:_~
728 entry function ~:_~
729 for method `~A.~A' ~:_~
730 via chain headed by `~A' ~:_~
731 defined on `~A'."
732 (sod-class-nickname message-class)
733 (sod-message-name message)
734 head class))))))
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735
736 ;; Generate the method body. We'll work out what to do with it later.
737 (codegen-push codegen)
4e561d89 738 (let* ((result (if (eq return-type c-type-void) nil
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739 (temporary-var codegen return-type)))
740 (emf-target (or result :void)))
741 (compute-effective-method-body method codegen emf-target)
742 (multiple-value-bind (vars insts) (codegen-pop codegen)
743 (cond ((or (= n-entries 1)
744 (<= (* n-entries (reduce #'+ insts :key #'inst-metric))
745 *method-entry-inline-threshold*))
746
747 ;; The effective method body is simple -- or there's only
748 ;; one of them. We'll inline the method body into the entry
749 ;; functions.
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750 (dolist (tail chain-tails)
751 (setup-entry tail)
9ec578d9 752 (dolist (var vars)
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753 (if (typep var 'var-inst)
754 (ensure-var codegen (inst-name var)
755 (inst-type var) (inst-init var))
756 (emit-decl codegen var)))
9ec578d9 757 (emit-insts codegen insts)
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758 (deliver-expr codegen entry-target result)
759 (finish-entry tail)))
760
761 (t
762
763 ;; The effective method body is complicated and we'd need
764 ;; more than one copy. We'll generate an effective method
765 ;; function and call it a lot.
766 (codegen-build-function codegen emf-name emf-type vars
767 (nconc insts (and result
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768 (list (make-return-inst result))))
769 "Effective method function ~:_for `~A.~A' ~:_~
770 defined on `~A'."
771 (sod-class-nickname message-class)
772 (sod-message-name message)
773 (effective-method-class method))
9ec578d9 774
167524b5 775 (let ((call (apply #'make-call-inst emf-name "sod__obj"
3aab0efa 776 (mapcar #'argument-name entry-args))))
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777 (dolist (tail chain-tails)
778 (setup-entry tail)
bf8aadd7 779 (deliver-expr codegen entry-target call)
9ec578d9 780 (finish-entry tail)))))))
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781
782 (codegen-functions codegen))))
783
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784(defmethod compute-effective-method-body :around
785 ((method basic-effective-method) codegen target)
786 (let* ((message (effective-method-message method))
787 (keywordsp (keyword-message-p message))
788 (keywords (effective-method-keywords method))
789 (ap-addr (format nil "&~A" *sod-tmp-ap*))
790 (set (format nil "\"~A:~A.~A\""
791 (sod-class-name (effective-method-class method))
792 (sod-class-nickname (sod-message-class message))
793 (sod-message-name message))))
794 (labels ((call (target func &rest args)
795 (apply #'deliver-call codegen target func args))
796 (parse-keywords (body)
797 (ensure-var codegen *sod-tmp-ap* c-type-va-list)
798 (call :void "va_copy" *sod-tmp-ap* *sod-ap*)
799 (funcall body)
800 (call :void "va_end" *sod-tmp-ap*)))
801 (cond ((not keywordsp)
802 (call-next-method))
803 ((null keywords)
804 (let ((*keyword-struct-disposition* :null))
805 (parse-keywords (lambda ()
806 (with-temporary-var
807 (codegen kw c-type-const-string)
808 (call kw "va_arg"
809 *sod-tmp-ap* c-type-const-string)
810 (call :void "kw_parseempty" set
811 kw ap-addr *null-pointer* 0))))
812 (call-next-method)))
813 (t
814 (let* ((name
815 (effective-method-keyword-parser-function-name method))
816 (tag (effective-method-keyword-struct-tag method))
817 (kw-addr (format nil "&~A" *sod-keywords*))
818 (*keyword-struct-disposition* :local))
819 (ensure-var codegen *sod-keywords* (c-type (struct tag)))
820 (make-keyword-parser-function codegen method tag set keywords)
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821 (emit-insts codegen
822 (mapcar (lambda (keyword)
823 (make-set-inst
824 (format nil "~A.~A__suppliedp"
825 *sod-keywords*
826 (argument-name keyword))
827 0))
828 keywords))
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829 (parse-keywords (lambda ()
830 (call :void name kw-addr ap-addr
831 *null-pointer* 0)))
832 (call-next-method)))))))
833
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834(defmethod effective-method-live-p ((method simple-effective-method))
835 (effective-method-primary-methods method))
836
837(defmethod compute-method-entry-functions :around ((method effective-method))
838 (if (effective-method-live-p method)
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839 (call-next-method)
840 nil))
841
842(defmethod compute-effective-method-body
843 ((method simple-effective-method) codegen target)
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844 (basic-effective-method-body codegen target method
845 (lambda (target)
846 (simple-method-body method
847 codegen
848 target))))
1f1d88f5 849
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850;;;--------------------------------------------------------------------------
851;;; Standard method combination.
ddee4bb1 852
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853(export 'standard-message)
854(defclass standard-message (simple-message)
855 ()
856 (:documentation
1a93d254 857 "Message class for standard method combinations.
1f1d88f5 858
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859 Standard method combination is a simple method combination where the
860 primary methods are invoked as a delegation chain, from most- to
861 least-specific."))
862
863(export 'standard-effective-method)
864(defclass standard-effective-method (simple-effective-method) ()
865 (:documentation "Effective method counterpart to `standard-message'."))
866
867(defmethod primary-method-class ((message standard-message))
868 'delegating-direct-method)
869
7f2917d2 870(defmethod sod-message-effective-method-class ((message standard-message))
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871 'standard-effective-method)
872
873(defmethod simple-method-body
874 ((method standard-effective-method) codegen target)
875 (invoke-delegation-chain codegen
876 target
877 (effective-method-basic-argument-names method)
878 (effective-method-primary-methods method)
879 nil))
a07d8d00 880
1f1d88f5 881;;;----- That's all, folks --------------------------------------------------