use guile eval for elisp tree-il
[bpt/guile.git] / module / language / cps.scm
1 ;;; Continuation-passing style (CPS) intermediate language (IL)
2
3 ;; Copyright (C) 2013, 2014, 2015 Free Software Foundation, Inc.
4
5 ;;;; This library is free software; you can redistribute it and/or
6 ;;;; modify it under the terms of the GNU Lesser General Public
7 ;;;; License as published by the Free Software Foundation; either
8 ;;;; version 3 of the License, or (at your option) any later version.
9 ;;;;
10 ;;;; This library is distributed in the hope that it will be useful,
11 ;;;; but WITHOUT ANY WARRANTY; without even the implied warranty of
12 ;;;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 ;;;; Lesser General Public License for more details.
14 ;;;;
15 ;;;; You should have received a copy of the GNU Lesser General Public
16 ;;;; License along with this library; if not, write to the Free Software
17 ;;;; Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
18
19 ;;; Commentary:
20 ;;;
21 ;;; This is the continuation-passing style (CPS) intermediate language
22 ;;; (IL) for Guile.
23 ;;;
24 ;;; There are two kinds of terms in CPS: terms that bind continuations,
25 ;;; and terms that call continuations.
26 ;;;
27 ;;; $letk binds a set of mutually recursive continuations, each one an
28 ;;; instance of $cont. A $cont declares the name of a continuation, and
29 ;;; then contains as a subterm the particular continuation instance:
30 ;;; $kargs for continuations that bind values, $ktail for the tail
31 ;;; continuation, etc.
32 ;;;
33 ;;; $continue nodes call continuations. The expression contained in the
34 ;;; $continue node determines the value or values that are passed to the
35 ;;; target continuation: $const to pass a constant value, $values to
36 ;;; pass multiple named values, etc. $continue nodes also record the source at which
37 ;;;
38 ;;; Additionally there is $letrec, a term that binds mutually recursive
39 ;;; functions. The contification pass will turn $letrec into $letk if
40 ;;; it can do so. Otherwise, the closure conversion pass will desugar
41 ;;; $letrec into an equivalent sequence of make-closure primcalls and
42 ;;; subsequent initializations of the captured variables of the
43 ;;; closures. You can think of $letrec as pertaining to "high CPS",
44 ;;; whereas later passes will only see "low CPS", which does not have
45 ;;; $letrec.
46 ;;;
47 ;;; This particular formulation of CPS was inspired by Andrew Kennedy's
48 ;;; 2007 paper, "Compiling with Continuations, Continued". All Guile
49 ;;; hackers should read that excellent paper! As in Kennedy's paper,
50 ;;; continuations are second-class, and may be thought of as basic block
51 ;;; labels. All values are bound to variables using continuation calls:
52 ;;; even constants!
53 ;;;
54 ;;; There are some Guile-specific quirks as well:
55 ;;;
56 ;;; - $kreceive represents a continuation that receives multiple values,
57 ;;; but which truncates them to some number of required values,
58 ;;; possibly with a rest list.
59 ;;;
60 ;;; - $kfun labels an entry point for a $fun (a function), and
61 ;;; contains a $ktail representing the formal argument which is the
62 ;;; function's continuation.
63 ;;;
64 ;;; - $kfun also contain a $kclause continuation, corresponding to
65 ;;; the first case-lambda clause of the function. $kclause actually
66 ;;; contains the clause body, and the subsequent clause (if any).
67 ;;; This is because the $kclause logically matches or doesn't match
68 ;;; a given set of actual arguments against a formal arity, then
69 ;;; proceeds to a "body" continuation (which is a $kargs).
70 ;;;
71 ;;; That's to say that a $fun can be matched like this:
72 ;;;
73 ;;; (match f
74 ;;; (($ $fun
75 ;;; ($ $cont kfun
76 ;;; ($ $kfun src meta self ($ $cont ktail ($ $ktail))
77 ;;; ($ $kclause arity
78 ;;; ($ $cont kbody ($ $kargs names syms body))
79 ;;; alternate))))
80 ;;; #t))
81 ;;;
82 ;;; A $continue to ktail is in tail position. $kfun, $kclause,
83 ;;; and $ktail will never be seen elsewhere in a CPS term.
84 ;;;
85 ;;; - $prompt continues to the body of the prompt, having pushed on a
86 ;;; prompt whose handler will continue at its "handler"
87 ;;; continuation. The continuation of the prompt is responsible for
88 ;;; popping the prompt.
89 ;;;
90 ;;; In summary:
91 ;;;
92 ;;; - $letk, $letrec, and $continue are terms.
93 ;;;
94 ;;; - $cont is a continuation, containing a continuation body ($kargs,
95 ;;; $ktail, etc).
96 ;;;
97 ;;; - $continue terms contain an expression ($call, $const, $fun,
98 ;;; etc).
99 ;;;
100 ;;; See (language tree-il compile-cps) for details on how Tree-IL
101 ;;; converts to CPS.
102 ;;;
103 ;;; Code:
104
105 (define-module (language cps)
106 #:use-module (ice-9 match)
107 #:use-module ((srfi srfi-1) #:select (fold))
108 #:use-module (srfi srfi-9)
109 #:use-module (srfi srfi-9 gnu)
110 #:use-module (srfi srfi-11)
111 #:export (;; Helper.
112 $arity
113 make-$arity
114
115 ;; Terms.
116 $letk $continue
117
118 ;; Continuations.
119 $cont
120
121 ;; Continuation bodies.
122 $kreceive $kargs $kfun $ktail $kclause
123
124 ;; Expressions.
125 $const $prim $fun $rec $closure $branch
126 $call $callk $primcall $values $prompt
127
128 ;; First-order CPS root.
129 $program
130
131 ;; Fresh names.
132 label-counter var-counter
133 fresh-label fresh-var
134 with-fresh-name-state compute-max-label-and-var
135 let-fresh
136
137 ;; Building macros.
138 build-cps-term build-cps-cont build-cps-exp
139 rewrite-cps-term rewrite-cps-cont rewrite-cps-exp
140
141 ;; Misc.
142 parse-cps unparse-cps
143 make-global-cont-folder make-local-cont-folder
144 fold-conts fold-local-conts
145 visit-cont-successors))
146
147 ;; FIXME: Use SRFI-99, when Guile adds it.
148 (define-syntax define-record-type*
149 (lambda (x)
150 (define (id-append ctx . syms)
151 (datum->syntax ctx (apply symbol-append (map syntax->datum syms))))
152 (syntax-case x ()
153 ((_ name field ...)
154 (and (identifier? #'name) (and-map identifier? #'(field ...)))
155 (with-syntax ((cons (id-append #'name #'make- #'name))
156 (pred (id-append #'name #'name #'?))
157 ((getter ...) (map (lambda (f)
158 (id-append f #'name #'- f))
159 #'(field ...))))
160 #'(define-record-type name
161 (cons field ...)
162 pred
163 (field getter)
164 ...))))))
165
166 (define-syntax-rule (define-cps-type name field ...)
167 (begin
168 (define-record-type* name field ...)
169 (set-record-type-printer! name print-cps)))
170
171 (define (print-cps exp port)
172 (format port "#<cps ~S>" (unparse-cps exp)))
173
174 ;; Helper.
175 (define-record-type* $arity req opt rest kw allow-other-keys?)
176
177 ;; Terms.
178 (define-cps-type $letk conts body)
179 (define-cps-type $continue k src exp)
180
181 ;; Continuations
182 (define-cps-type $cont k cont)
183 (define-cps-type $kreceive arity k)
184 (define-cps-type $kargs names syms body)
185 (define-cps-type $kfun src meta self tail clause)
186 (define-cps-type $ktail)
187 (define-cps-type $kclause arity cont alternate)
188
189 ;; Expressions.
190 (define-cps-type $const val)
191 (define-cps-type $prim name)
192 (define-cps-type $fun body) ; Higher-order.
193 (define-cps-type $rec names syms funs) ; Higher-order.
194 (define-cps-type $closure label nfree) ; First-order.
195 (define-cps-type $branch k exp)
196 (define-cps-type $call proc args)
197 (define-cps-type $callk k proc args) ; First-order.
198 (define-cps-type $primcall name args)
199 (define-cps-type $values args)
200 (define-cps-type $prompt escape? tag handler)
201
202 ;; The root of a higher-order CPS term is $cont containing a $kfun. The
203 ;; root of a first-order CPS term is a $program.
204 (define-cps-type $program funs)
205
206 (define label-counter (make-parameter #f))
207 (define var-counter (make-parameter #f))
208
209 (define (fresh-label)
210 (let ((count (or (label-counter)
211 (error "fresh-label outside with-fresh-name-state"))))
212 (label-counter (1+ count))
213 count))
214
215 (define (fresh-var)
216 (let ((count (or (var-counter)
217 (error "fresh-var outside with-fresh-name-state"))))
218 (var-counter (1+ count))
219 count))
220
221 (define-syntax-rule (let-fresh (label ...) (var ...) body ...)
222 (let ((label (fresh-label)) ...
223 (var (fresh-var)) ...)
224 body ...))
225
226 (define-syntax-rule (with-fresh-name-state fun body ...)
227 (call-with-values (lambda () (compute-max-label-and-var fun))
228 (lambda (max-label max-var)
229 (parameterize ((label-counter (1+ max-label))
230 (var-counter (1+ max-var)))
231 body ...))))
232
233 (define-syntax build-arity
234 (syntax-rules (unquote)
235 ((_ (unquote exp)) exp)
236 ((_ (req opt rest kw allow-other-keys?))
237 (make-$arity req opt rest kw allow-other-keys?))))
238
239 (define-syntax build-cont-body
240 (syntax-rules (unquote $kreceive $kargs $kfun $ktail $kclause)
241 ((_ (unquote exp))
242 exp)
243 ((_ ($kreceive req rest kargs))
244 (make-$kreceive (make-$arity req '() rest '() #f) kargs))
245 ((_ ($kargs (name ...) (unquote syms) body))
246 (make-$kargs (list name ...) syms (build-cps-term body)))
247 ((_ ($kargs (name ...) (sym ...) body))
248 (make-$kargs (list name ...) (list sym ...) (build-cps-term body)))
249 ((_ ($kargs names syms body))
250 (make-$kargs names syms (build-cps-term body)))
251 ((_ ($kfun src meta self tail clause))
252 (make-$kfun src meta self (build-cps-cont tail) (build-cps-cont clause)))
253 ((_ ($ktail))
254 (make-$ktail))
255 ((_ ($kclause arity cont alternate))
256 (make-$kclause (build-arity arity) (build-cps-cont cont)
257 (build-cps-cont alternate)))))
258
259 (define-syntax build-cps-cont
260 (syntax-rules (unquote)
261 ((_ (unquote exp)) exp)
262 ((_ (k cont)) (make-$cont k (build-cont-body cont)))))
263
264 (define-syntax build-cps-exp
265 (syntax-rules (unquote
266 $const $prim $fun $rec $closure $branch
267 $call $callk $primcall $values $prompt)
268 ((_ (unquote exp)) exp)
269 ((_ ($const val)) (make-$const val))
270 ((_ ($prim name)) (make-$prim name))
271 ((_ ($fun body)) (make-$fun (build-cps-cont body)))
272 ((_ ($rec names gensyms funs)) (make-$rec names gensyms funs))
273 ((_ ($closure k nfree)) (make-$closure k nfree))
274 ((_ ($call proc (unquote args))) (make-$call proc args))
275 ((_ ($call proc (arg ...))) (make-$call proc (list arg ...)))
276 ((_ ($call proc args)) (make-$call proc args))
277 ((_ ($callk k proc (unquote args))) (make-$callk k proc args))
278 ((_ ($callk k proc (arg ...))) (make-$callk k proc (list arg ...)))
279 ((_ ($callk k proc args)) (make-$callk k proc args))
280 ((_ ($primcall name (unquote args))) (make-$primcall name args))
281 ((_ ($primcall name (arg ...))) (make-$primcall name (list arg ...)))
282 ((_ ($primcall name args)) (make-$primcall name args))
283 ((_ ($values (unquote args))) (make-$values args))
284 ((_ ($values (arg ...))) (make-$values (list arg ...)))
285 ((_ ($values args)) (make-$values args))
286 ((_ ($branch k exp)) (make-$branch k (build-cps-exp exp)))
287 ((_ ($prompt escape? tag handler))
288 (make-$prompt escape? tag handler))))
289
290 (define-syntax build-cps-term
291 (syntax-rules (unquote $letk $letk* $letconst $program $continue)
292 ((_ (unquote exp))
293 exp)
294 ((_ ($letk (unquote conts) body))
295 (make-$letk conts (build-cps-term body)))
296 ((_ ($letk (cont ...) body))
297 (make-$letk (list (build-cps-cont cont) ...)
298 (build-cps-term body)))
299 ((_ ($letk* () body))
300 (build-cps-term body))
301 ((_ ($letk* (cont conts ...) body))
302 (build-cps-term ($letk (cont) ($letk* (conts ...) body))))
303 ((_ ($letconst () body))
304 (build-cps-term body))
305 ((_ ($letconst ((name sym val) tail ...) body))
306 (let-fresh (kconst) ()
307 (build-cps-term
308 ($letk ((kconst ($kargs (name) (sym) ($letconst (tail ...) body))))
309 ($continue kconst (let ((props (source-properties val)))
310 (and (pair? props) props))
311 ($const val))))))
312 ((_ ($program (unquote conts)))
313 (make-$program conts))
314 ((_ ($program (cont ...)))
315 (make-$program (list (build-cps-cont cont) ...)))
316 ((_ ($program conts))
317 (make-$program conts))
318 ((_ ($continue k src exp))
319 (make-$continue k src (build-cps-exp exp)))))
320
321 (define-syntax-rule (rewrite-cps-term x (pat body) ...)
322 (match x
323 (pat (build-cps-term body)) ...))
324 (define-syntax-rule (rewrite-cps-cont x (pat body) ...)
325 (match x
326 (pat (build-cps-cont body)) ...))
327 (define-syntax-rule (rewrite-cps-exp x (pat body) ...)
328 (match x
329 (pat (build-cps-exp body)) ...))
330
331 (define (parse-cps exp)
332 (define (src exp)
333 (let ((props (source-properties exp)))
334 (and (pair? props) props)))
335 (match exp
336 ;; Continuations.
337 (('letconst k (name sym c) body)
338 (build-cps-term
339 ($letk ((k ($kargs (name) (sym)
340 ,(parse-cps body))))
341 ($continue k (src exp) ($const c)))))
342 (('let k (name sym val) body)
343 (build-cps-term
344 ($letk ((k ($kargs (name) (sym)
345 ,(parse-cps body))))
346 ,(parse-cps val))))
347 (('letk (cont ...) body)
348 (build-cps-term
349 ($letk ,(map parse-cps cont) ,(parse-cps body))))
350 (('k sym body)
351 (build-cps-cont
352 (sym ,(parse-cps body))))
353 (('kreceive req rest k)
354 (build-cont-body ($kreceive req rest k)))
355 (('kargs names syms body)
356 (build-cont-body ($kargs names syms ,(parse-cps body))))
357 (('kfun src meta self tail clause)
358 (build-cont-body
359 ($kfun (src exp) meta self ,(parse-cps tail)
360 ,(and=> clause parse-cps))))
361 (('ktail)
362 (build-cont-body
363 ($ktail)))
364 (('kclause (req opt rest kw allow-other-keys?) body)
365 (build-cont-body
366 ($kclause (req opt rest kw allow-other-keys?)
367 ,(parse-cps body)
368 ,#f)))
369 (('kclause (req opt rest kw allow-other-keys?) body alternate)
370 (build-cont-body
371 ($kclause (req opt rest kw allow-other-keys?)
372 ,(parse-cps body)
373 ,(parse-cps alternate))))
374 (('kseq body)
375 (build-cont-body ($kargs () () ,(parse-cps body))))
376
377 ;; Calls.
378 (('continue k exp)
379 (build-cps-term ($continue k (src exp) ,(parse-cps exp))))
380 (('const exp)
381 (build-cps-exp ($const exp)))
382 (('prim name)
383 (build-cps-exp ($prim name)))
384 (('fun body)
385 (build-cps-exp ($fun ,(parse-cps body))))
386 (('closure k nfree)
387 (build-cps-exp ($closure k nfree)))
388 (('rec (name sym fun) ...)
389 (build-cps-exp ($rec name sym (map parse-cps fun))))
390 (('program (cont ...))
391 (build-cps-term ($program ,(map parse-cps cont))))
392 (('call proc arg ...)
393 (build-cps-exp ($call proc arg)))
394 (('callk k proc arg ...)
395 (build-cps-exp ($callk k proc arg)))
396 (('primcall name arg ...)
397 (build-cps-exp ($primcall name arg)))
398 (('branch k exp)
399 (build-cps-exp ($branch k ,(parse-cps exp))))
400 (('values arg ...)
401 (build-cps-exp ($values arg)))
402 (('prompt escape? tag handler)
403 (build-cps-exp ($prompt escape? tag handler)))
404 (_
405 (error "unexpected cps" exp))))
406
407 (define (unparse-cps exp)
408 (match exp
409 ;; Continuations.
410 (($ $letk (($ $cont k ($ $kargs (name) (sym) body)))
411 ($ $continue k src ($ $const c)))
412 `(letconst ,k (,name ,sym ,c)
413 ,(unparse-cps body)))
414 (($ $letk (($ $cont k ($ $kargs (name) (sym) body))) val)
415 `(let ,k (,name ,sym ,(unparse-cps val))
416 ,(unparse-cps body)))
417 (($ $letk conts body)
418 `(letk ,(map unparse-cps conts) ,(unparse-cps body)))
419 (($ $cont sym body)
420 `(k ,sym ,(unparse-cps body)))
421 (($ $kreceive ($ $arity req () rest '() #f) k)
422 `(kreceive ,req ,rest ,k))
423 (($ $kargs () () body)
424 `(kseq ,(unparse-cps body)))
425 (($ $kargs names syms body)
426 `(kargs ,names ,syms ,(unparse-cps body)))
427 (($ $kfun src meta self tail clause)
428 `(kfun ,meta ,self ,(unparse-cps tail) ,(unparse-cps clause)))
429 (($ $ktail)
430 `(ktail))
431 (($ $kclause ($ $arity req opt rest kw allow-other-keys?) body alternate)
432 `(kclause (,req ,opt ,rest ,kw ,allow-other-keys?) ,(unparse-cps body)
433 . ,(if alternate (list (unparse-cps alternate)) '())))
434
435 ;; Calls.
436 (($ $continue k src exp)
437 `(continue ,k ,(unparse-cps exp)))
438 (($ $const val)
439 `(const ,val))
440 (($ $prim name)
441 `(prim ,name))
442 (($ $fun body)
443 `(fun ,(unparse-cps body)))
444 (($ $closure k nfree)
445 `(closure ,k ,nfree))
446 (($ $rec names syms funs)
447 `(rec ,@(map (lambda (name sym fun)
448 (list name sym (unparse-cps fun)))
449 names syms funs)))
450 (($ $program conts)
451 `(program ,(map unparse-cps conts)))
452 (($ $call proc args)
453 `(call ,proc ,@args))
454 (($ $callk k proc args)
455 `(callk ,k ,proc ,@args))
456 (($ $primcall name args)
457 `(primcall ,name ,@args))
458 (($ $branch k exp)
459 `(branch ,k ,(unparse-cps exp)))
460 (($ $values args)
461 `(values ,@args))
462 (($ $prompt escape? tag handler)
463 `(prompt ,escape? ,tag ,handler))
464 (_
465 (error "unexpected cps" exp))))
466
467 (define-syntax-rule (make-global-cont-folder seed ...)
468 (lambda (proc cont seed ...)
469 (define (cont-folder cont seed ...)
470 (match cont
471 (($ $cont k cont)
472 (let-values (((seed ...) (proc k cont seed ...)))
473 (match cont
474 (($ $kargs names syms body)
475 (term-folder body seed ...))
476
477 (($ $kfun src meta self tail clause)
478 (let-values (((seed ...) (cont-folder tail seed ...)))
479 (if clause
480 (cont-folder clause seed ...)
481 (values seed ...))))
482
483 (($ $kclause arity body alternate)
484 (let-values (((seed ...) (cont-folder body seed ...)))
485 (if alternate
486 (cont-folder alternate seed ...)
487 (values seed ...))))
488
489 (_ (values seed ...)))))))
490
491 (define (fun-folder fun seed ...)
492 (match fun
493 (($ $fun body)
494 (cont-folder body seed ...))))
495
496 (define (term-folder term seed ...)
497 (match term
498 (($ $letk conts body)
499 (let-values (((seed ...) (term-folder body seed ...)))
500 (let lp ((conts conts) (seed seed) ...)
501 (if (null? conts)
502 (values seed ...)
503 (let-values (((seed ...) (cont-folder (car conts) seed ...)))
504 (lp (cdr conts) seed ...))))))
505
506 (($ $continue k src exp)
507 (match exp
508 (($ $fun) (fun-folder exp seed ...))
509 (($ $rec names syms funs)
510 (let lp ((funs funs) (seed seed) ...)
511 (if (null? funs)
512 (values seed ...)
513 (let-values (((seed ...) (fun-folder (car funs) seed ...)))
514 (lp (cdr funs) seed ...)))))
515 (_ (values seed ...))))))
516
517 (cont-folder cont seed ...)))
518
519 (define-syntax-rule (make-local-cont-folder seed ...)
520 (lambda (proc cont seed ...)
521 (define (cont-folder cont seed ...)
522 (match cont
523 (($ $cont k (and cont ($ $kargs names syms body)))
524 (let-values (((seed ...) (proc k cont seed ...)))
525 (term-folder body seed ...)))
526 (($ $cont k cont)
527 (proc k cont seed ...))))
528 (define (term-folder term seed ...)
529 (match term
530 (($ $letk conts body)
531 (let-values (((seed ...) (term-folder body seed ...)))
532 (let lp ((conts conts) (seed seed) ...)
533 (match conts
534 (() (values seed ...))
535 ((cont) (cont-folder cont seed ...))
536 ((cont . conts)
537 (let-values (((seed ...) (cont-folder cont seed ...)))
538 (lp conts seed ...)))))))
539 (_ (values seed ...))))
540 (define (clause-folder clause seed ...)
541 (match clause
542 (($ $cont k (and cont ($ $kclause arity body alternate)))
543 (let-values (((seed ...) (proc k cont seed ...)))
544 (if alternate
545 (let-values (((seed ...) (cont-folder body seed ...)))
546 (clause-folder alternate seed ...))
547 (cont-folder body seed ...))))))
548 (match cont
549 (($ $cont k (and cont ($ $kfun src meta self tail clause)))
550 (let*-values (((seed ...) (proc k cont seed ...))
551 ((seed ...) (if clause
552 (clause-folder clause seed ...)
553 (values seed ...))))
554 (cont-folder tail seed ...))))))
555
556 (define (compute-max-label-and-var fun)
557 (match fun
558 (($ $cont)
559 ((make-global-cont-folder max-label max-var)
560 (lambda (label cont max-label max-var)
561 (values (max label max-label)
562 (match cont
563 (($ $kargs names vars body)
564 (fold max max-var vars))
565 (($ $kfun src meta self)
566 (max self max-var))
567 (_ max-var))))
568 fun -1 -1))
569 (($ $program conts)
570 (define (fold/2 proc in s0 s1)
571 (if (null? in)
572 (values s0 s1)
573 (let-values (((s0 s1) (proc (car in) s0 s1)))
574 (fold/2 proc (cdr in) s0 s1))))
575 (let lp ((conts conts) (max-label -1) (max-var -1))
576 (if (null? conts)
577 (values max-label max-var)
578 (call-with-values (lambda ()
579 ((make-local-cont-folder max-label max-var)
580 (lambda (label cont max-label max-var)
581 (values (max label max-label)
582 (match cont
583 (($ $kargs names vars body)
584 (fold max max-var vars))
585 (($ $kfun src meta self)
586 (max self max-var))
587 (_ max-var))))
588 (car conts) max-label max-var))
589 (lambda (max-label max-var)
590 (lp (cdr conts) max-label max-var))))))))
591
592 (define (fold-conts proc seed fun)
593 ((make-global-cont-folder seed) proc fun seed))
594
595 (define (fold-local-conts proc seed fun)
596 ((make-local-cont-folder seed) proc fun seed))
597
598 (define (visit-cont-successors proc cont)
599 (match cont
600 (($ $kargs names syms body)
601 (let lp ((body body))
602 (match body
603 (($ $letk conts body) (lp body))
604 (($ $continue k src exp)
605 (match exp
606 (($ $prompt escape? tag handler) (proc k handler))
607 (($ $branch kt) (proc k kt))
608 (_ (proc k)))))))
609
610 (($ $kreceive arity k) (proc k))
611
612 (($ $kclause arity ($ $cont kbody) #f) (proc kbody))
613
614 (($ $kclause arity ($ $cont kbody) ($ $cont kalt)) (proc kbody kalt))
615
616 (($ $kfun src meta self tail ($ $cont clause)) (proc clause))
617
618 (($ $kfun src meta self tail #f) (proc))
619
620 (($ $ktail) (proc))))