chiark / gitweb /
src/codegen-proto.lisp: Rewrite `block' printing longhand.
[sod] / src / codegen-proto.lisp
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1;;; -*-lisp-*-
2;;;
dea4d055 3;;; Code generation protocol
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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
28;;;--------------------------------------------------------------------------
29;;; Temporary names.
30
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31;; Protocol.
32
33(export 'format-temporary-name)
34(defgeneric format-temporary-name (var stream)
1f1d88f5 35 (:documentation
dea4d055 36 "Write the name of a temporary variable VAR to STREAM."))
1f1d88f5 37
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38(export 'var-in-use-p)
39(defgeneric var-in-use-p (var)
40 (:documentation
3109662a 41 "Answer whether VAR is currently being used. See `with-temporary-var'.")
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42 (:method (var)
43 "Non-temporary variables are always in use."
1d8cc67a 44 (declare (ignore var))
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45 t))
46(defgeneric (setf var-in-use-p) (value var)
47 (:documentation
3109662a 48 "Record whether VAR is currently being used. See `with-temporary-var'."))
1f1d88f5 49
dea4d055 50;; Root class.
1f1d88f5 51
1344e1f9 52(export '(temporary-name temp-tag))
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53(defclass temporary-name ()
54 ((tag :initarg :tag :reader temp-tag))
55 (:documentation
56 "Base class for temporary variable and argument names."))
1f1d88f5 57
dea4d055 58;; Important temporary names.
1f1d88f5 59
dea4d055 60(export '(*sod-ap* *sod-master-ap*))
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61(defparameter *sod-ap*
62 (make-instance 'temporary-name :tag "sod__ap"))
63(defparameter *sod-master-ap*
64 (make-instance 'temporary-name :tag "sod__master_ap"))
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65(defparameter *sod-tmp-ap*
66 (make-instance 'temporary-name :tag "sod__tmp_ap"))
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67(defparameter *sod-tmp-val*
68 (make-instance 'temporary-name :tag "sod__t"))
1f1d88f5 69
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70(export '*null-pointer*)
71(defparameter *null-pointer* "NULL")
72
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73;;;--------------------------------------------------------------------------
74;;; Instructions.
75
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76;; Classes.
77
78(export 'inst)
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79(defclass inst () ()
80 (:documentation
81 "A base class for instructions.
82
83 An `instruction' is anything which might be useful to string into a code
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84 generator. Both statements and expressions can be represented by trees of
85 instructions. The `definst' macro is a convenient way of defining new
86 instructions.
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87
88 The only important protocol for instructions is output, which is achieved
3109662a 89 by calling `print-object' with `*print-escape*' nil.
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90
91 This doesn't really do very much, but it acts as a handy marker for
92 instruction subclasses."))
93
dea4d055 94(export 'inst-metric)
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95(defgeneric inst-metric (inst)
96 (:documentation
97 "Returns a `metric' describing how complicated INST is.
98
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99 The default metric of an inst node is simply 1; `inst' subclasses
100 generated by `definst' (q.v.) have an automatically generated method which
101 returns one plus the sum of the metrics of the node's children.
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102
103 This isn't intended to be a particularly rigorous definition. Its purpose
104 is to allow code generators to make decisions about inlining or calling
105 code fairly simply.")
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106 (:method ((inst t))
107 (declare (ignore inst))
108 1)
109 (:method ((inst null))
1d8cc67a 110 (declare (ignore inst))
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111 1)
112 (:method ((inst list))
113 (reduce #'+ inst :key #'inst-metric)))
1f1d88f5 114
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115;; Instruction definition.
116
117(export 'definst)
418752c5 118(defmacro definst (code (streamvar &key export) args &body body)
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119 "Define an instruction type and describe how to output it.
120
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121 An `inst' can represent any structured piece of output syntax: a
122 statement, expression or declaration, for example. This macro defines the
123 following things:
1f1d88f5 124
3109662a 125 * A class `CODE-inst' to represent the instruction.
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126
127 * Instance slots named after the ARGS, with matching keyword initargs,
3109662a 128 and `inst-ARG' readers.
1f1d88f5 129
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130 * A constructor `make-CODE-inst' which accepts the ARGS (as an ordinary
131 BVL) as arguments and returns a fresh instance.
1f1d88f5 132
3109662a 133 * A print method, which prints a diagnostic dump if `*print-escape*' is
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134 set, or invokes the BODY (with STREAMVAR bound to the output stream)
135 otherwise. The BODY is expected to produce target code at this
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136 point.
137
138 If EXPORT is non-nil, then export the `CODE-inst' and `make-CODE-inst'
139 symbols."
1f1d88f5 140
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141 (let* ((inst-var (gensym "INST"))
142 (class-name (symbolicate code '-inst))
143 (constructor-name (symbolicate 'make- code '-inst))
144 (slots (mapcan (lambda (arg)
145 (if (listp arg) (list (car arg))
146 (let ((name (symbol-name arg)))
147 (if (and (plusp (length name))
148 (char/= (char name 0) #\&))
149 (list arg)
150 nil))))
151 args))
152 (keys (mapcar (lambda (arg) (intern (symbol-name arg) :keyword))
153 slots)))
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154 `(progn
155 (defclass ,class-name (inst)
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156 ,(mapcar (lambda (slot key)
157 `(,slot :initarg ,key
158 :reader ,(symbolicate 'inst- slot)))
159 slots keys))
418752c5 160 (defun ,constructor-name (,@args)
167524b5 161 (make-instance ',class-name ,@(mappend #'list keys slots)))
1f1d88f5 162 (defmethod inst-metric ((,inst-var ,class-name))
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163 (with-slots (,@slots) ,inst-var
164 (+ 1 ,@(mapcar (lambda (slot) `(inst-metric ,slot)) slots))))
1f1d88f5 165 (defmethod print-object ((,inst-var ,class-name) ,streamvar)
167524b5 166 (with-slots (,@slots) ,inst-var
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167 (if *print-escape*
168 (print-unreadable-object (,inst-var ,streamvar :type t)
169 (format stream "~@<~@{~S ~@_~S~^ ~_~}~:>"
167524b5 170 ,@(mappend #'list keys slots)))
fc09e191 171 (block ,code ,@body))))
34c51b1c 172 ,@(and export `((export '(,class-name ,constructor-name
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173 ,@(mapcar (lambda (slot)
174 (symbolicate 'inst- slot))
175 slots)))))
418752c5 176 ',code)))
1f1d88f5 177
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178;; Formatting utilities.
179
1f1d88f5 180(defun format-compound-statement* (stream child morep thunk)
3109662a 181 "Underlying function for `format-compound-statement'."
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182 (cond ((typep child 'block-inst)
183 (funcall thunk stream)
184 (write-char #\space stream)
185 (princ child stream)
186 (when morep (write-char #\space stream)))
187 (t
188 (pprint-logical-block (stream nil)
189 (funcall thunk stream)
190 (write-char #\space stream)
191 (pprint-indent :block 2 stream)
192 (pprint-newline :linear stream)
193 (princ child stream)
194 (pprint-indent :block 0 stream)
195 (case morep
196 (:space
197 (write-char #\space stream)
198 (pprint-newline :linear stream))
dea4d055 199 ((t)
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200 (pprint-newline :mandatory stream)))))))
201
dea4d055 202(export 'format-compound-statement)
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203(defmacro format-compound-statement
204 ((stream child &optional morep) &body body)
205 "Format a compound statement to STREAM.
206
207 The introductory material is printed by BODY. The CHILD is formatted
3109662a 208 properly according to whether it's a `block-inst'. If MOREP is true, then
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209 allow for more stuff following the child."
210 `(format-compound-statement* ,stream ,child ,morep
211 (lambda (,stream) ,@body)))
212
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213;; Important instruction classes.
214
215;; HACK: Some of the slot names we'd like to use are external symbols in our
216;; package or the `common-lisp' package. Use gensyms for these slot names to
217;; prevent them from leaking.
218
167524b5 219(definst var (stream :export t) (name #1=#:type &optional init)
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220 (pprint-c-type #1# stream name)
221 (when init
222 (format stream " = ~A" init))
223 (write-char #\; stream))
224
225(definst function (stream :export t) (name #1=#:type body)
226 (pprint-logical-block (stream nil)
227 (princ "static " stream)
228 (pprint-c-type #1# stream name)
229 (format stream "~:@_~A~:@_~:@_" body)))
230
231;; Expression statements.
232(definst expr (stream :export t) (#1=#:expr)
233 (format stream "~A;" #1#))
234(definst set (stream :export t) (var #1=#:expr)
235 (format stream "~@<~A = ~@_~2I~A;~:>" var #1#))
236(definst update (stream :export t) (var op #1=#:expr)
237 (format stream "~@<~A ~A= ~@_~2I~A;~:>" var op #1#))
238
239;; Special kinds of expressions.
167524b5 240(definst call (stream :export t) (#1=#:func &rest args)
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241 (format stream "~A(~@<~{~A~^, ~_~}~:>)" #1# args))
242
243;; Simple statements.
244(definst return (stream :export t) (#1=#:expr)
245 (format stream "return~@[ (~A)~];" #1#))
246(definst break (stream :export t) ()
247 (format stream "break;"))
248(definst continue (stream :export t) ()
249 (format stream "continue;"))
250
251;; Compound statements.
252
253(definst block (stream :export t) (decls body)
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254 (write-char #\{ stream)
255 (pprint-newline :mandatory stream)
256 (pprint-logical-block (stream nil)
257 (let ((newlinep nil))
258 (flet ((newline ()
259 (if newlinep
260 (pprint-newline :mandatory stream)
261 (setf newlinep t))))
262 (pprint-indent :block 2 stream)
263 (write-string " " stream)
264 (when decls
265 (dolist (decl decls)
266 (newline)
267 (write decl :stream stream))
268 (when body (newline)))
269 (dolist (inst body)
270 (newline)
271 (write inst :stream stream)))))
272 (pprint-newline :mandatory stream)
273 (write-char #\} stream))
77d83e01 274
167524b5 275(definst if (stream :export t) (#1=#:cond conseq &optional alt)
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276 (let ((stmt "if"))
277 (loop (format-compound-statement (stream conseq (if alt t nil))
278 (format stream "~A (~A)" stmt #1#))
279 (typecase alt
280 (null (return))
281 (if-inst (setf stmt "else if"
282 #1# (inst-cond alt)
283 conseq (inst-conseq alt)
284 alt (inst-alt alt)))
285 (t (format-compound-statement (stream alt)
286 (format stream "else"))
287 (return))))))
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288
289(definst while (stream :export t) (#1=#:cond body)
290 (format-compound-statement (stream body)
291 (format stream "while (~A)" #1#)))
292
293(definst do-while (stream :export t) (body #1=#:cond)
294 (format-compound-statement (stream body :space)
295 (write-string "do" stream))
296 (format stream "while (~A);" #1#))
297
1f1d88f5 298;;;--------------------------------------------------------------------------
dea4d055 299;;; Code generation.
1f1d88f5 300
dea4d055 301;; Accessors.
1f1d88f5 302
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303(export 'codegen-functions)
304(defgeneric codegen-functions (codegen)
1f1d88f5 305 (:documentation
3109662a 306 "Return the list of `function-inst's of completed functions."))
1f1d88f5 307
dea4d055 308(export 'ensure-var)
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309(defgeneric ensure-var (codegen name type &optional init)
310 (:documentation
311 "Add a variable to CODEGEN's list.
312
3109662a 313 The variable is called NAME (which should be comparable using `equal' and
1f1d88f5 314 print to an identifier) and has the given TYPE. If INIT is present and
3109662a 315 non-nil it is an expression `inst' used to provide the variable with an
dea4d055 316 initial value."))
1f1d88f5 317
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318(export '(emit-inst emit-insts))
319(defgeneric emit-inst (codegen inst)
320 (:documentation
321 "Add INST to the end of CODEGEN's list of instructions."))
322(defgeneric emit-insts (codegen insts)
323 (:documentation
324 "Add a list of INSTS to the end of CODEGEN's list of instructions.")
325 (:method (codegen insts)
326 (dolist (inst insts) (emit-inst codegen inst))))
1f1d88f5 327
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328(export '(emit-decl emit-decls))
329(defgeneric emit-decl (codegen inst)
330 (:documentation
331 "Add INST to the end of CODEGEN's list of declarations."))
332(defgeneric emit-decls (codegen insts)
333 (:documentation
334 "Add a list of INSTS to the end of CODEGEN's list of declarations."))
335
dea4d055 336(export 'codegen-push)
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337(defgeneric codegen-push (codegen)
338 (:documentation
339 "Pushes the current code generation state onto a stack.
340
dea4d055 341 The state consists of the accumulated variables and instructions."))
1f1d88f5 342
dea4d055 343(export 'codegen-pop)
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344(defgeneric codegen-pop (codegen)
345 (:documentation
346 "Pops a saved state off of the CODEGEN's stack.
347
348 Returns the newly accumulated variables and instructions as lists, as
dea4d055 349 separate values."))
1f1d88f5 350
dea4d055 351(export 'codegen-add-function)
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352(defgeneric codegen-add-function (codegen function)
353 (:documentation
354 "Adds a function to CODEGEN's list.
355
356 Actually, we're not picky: FUNCTION can be any kind of object that you're
3109662a 357 willing to find in the list returned by `codegen-functions'."))
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358
359(export 'temporary-var)
360(defgeneric temporary-var (codegen type)
361 (:documentation
362 "Return the name of a temporary variable.
363
364 The temporary variable will have the given TYPE, and will be marked
365 in-use. You should clear the in-use flag explicitly when you've finished
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366 with the variable -- or, better, use `with-temporary-var' to do the
367 cleanup automatically."))
1f1d88f5 368
dea4d055 369(export 'codegen-build-function)
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370(defun codegen-build-function (codegen name type vars insts)
371 "Build a function and add it to CODEGEN's list.
372
373 Returns the function's name."
374 (codegen-add-function codegen
375 (make-function-inst name type
376 (make-block-inst vars insts)))
377 name)
378
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379(export 'codegen-pop-block)
380(defgeneric codegen-pop-block (codegen)
381 (:documentation
3109662a 382 "Makes a block (`block-inst') out of the completed code in CODEGEN.")
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383 (:method (codegen)
384 (multiple-value-bind (vars insts) (codegen-pop codegen)
385 (make-block-inst vars insts))))
386
387(export 'codegen-pop-function)
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388(defgeneric codegen-pop-function (codegen name type)
389 (:documentation
390 "Makes a function out of the completed code in CODEGEN.
391
392 The NAME can be any object you like. The TYPE should be a function type
393 object which includes argument names. The return value is the NAME.")
dea4d055 394 (:method (codegen name type)
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395 (multiple-value-bind (vars insts) (codegen-pop codegen)
396 (codegen-build-function codegen name type vars insts))))
397
dea4d055 398(export 'with-temporary-var)
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399(defmacro with-temporary-var ((codegen var type) &body body)
400 "Evaluate BODY with VAR bound to a temporary variable name.
401
402 During BODY, VAR will be marked in-use; when BODY ends, VAR will be marked
9ec578d9 403 available for re-use."
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404 (multiple-value-bind (doc decls body) (parse-body body :docp nil)
405 (declare (ignore doc))
406 `(let ((,var (temporary-var ,codegen ,type)))
407 ,@decls
408 (unwind-protect
409 (progn ,@body)
410 (setf (var-in-use-p ,var) nil)))))
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411
412;;;--------------------------------------------------------------------------
413;;; Code generation idioms.
414
dea4d055 415(export 'deliver-expr)
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416(defun deliver-expr (codegen target expr)
417 "Emit code to deliver the value of EXPR to the TARGET.
418
419 The TARGET may be one of the following.
420
3109662a 421 * `:void', indicating that the value is to be discarded. The expression
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422 will still be evaluated.
423
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424 * `:void-return', indicating that the value is to be discarded (as for
425 `:void') and furthermore a `return' from the current function should
426 be forced after computing the value.
1f1d88f5 427
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428 * `:return', indicating that the value is to be returned from the
429 current function.
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430
431 * A variable name, indicating that the value is to be stored in the
432 variable.
433
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434 In the cases of `:return', `:void' and `:void-return' targets, it is valid
435 for EXPR to be nil; this signifies that no computation needs to be
436 performed. Variable-name targets require an expression."
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437
438 (case target
439 (:return (emit-inst codegen (make-return-inst expr)))
440 (:void (when expr (emit-inst codegen (make-expr-inst expr))))
441 (:void-return (when expr (emit-inst codegen (make-expr-inst expr)))
442 (emit-inst codegen (make-return-inst nil)))
443 (t (emit-inst codegen (make-set-inst target expr)))))
444
dea4d055 445(export 'convert-stmts)
1f1d88f5 446(defun convert-stmts (codegen target type func)
3109662a 447 "Invoke FUNC to deliver a value to a non-`:return' target.
1f1d88f5 448
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449 FUNC is a function which accepts a single argument, a non-`:return'
450 target, and generates statements which deliver a value (see
451 `deliver-expr') of the specified TYPE to this target. In general, the
452 generated code will have the form
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453
454 setup instructions...
3109662a 455 (deliver-expr CODEGEN TARGET (compute value...))
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456 cleanup instructions...
457
458 where the cleanup instructions are essential to the proper working of the
459 generated program.
460
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461 The `convert-stmts' function will call FUNC to generate code, and arrange
462 that its value is correctly delivered to TARGET, regardless of what the
463 TARGET is -- i.e., it lifts the restriction to non-`:return' targets. It
464 does this by inventing a new temporary variable."
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465
466 (case target
467 (:return (with-temporary-var (codegen var type)
468 (funcall func var)
469 (deliver-expr codegen target var)))
470 (:void-return (funcall func :void)
471 (emit-inst codegen (make-return-inst nil)))
472 (t (funcall func target))))
473
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474(export 'deliver-call)
475(defun deliver-call (codegen target func &rest args)
476 "Emit a statement to call FUNC with ARGS and deliver the result to TARGET."
167524b5 477 (deliver-expr codegen target (apply #'make-call-inst func args)))
357885be 478
1f1d88f5 479;;;----- That's all, folks --------------------------------------------------