1 ;;;; tests that dynamic-extent functionality works.
3 ;;;; This software is part of the SBCL system. See the README file for
6 ;;;; While most of SBCL is derived from the CMU CL system, the test
7 ;;;; files (like this one) were written from scratch after the fork
10 ;;;; This software is in the public domain and is provided with
11 ;;;; absolutely no warranty. See the COPYING and CREDITS files for
12 ;;;; more information.
14 (when (eq sb-ext
:*evaluator-mode
* :interpret
)
15 (sb-ext:exit
:code
104))
17 (load "compiler-test-util.lisp")
20 (setq sb-c
::*check-consistency
* t
21 sb-ext
:*stack-allocate-dynamic-extent
* t
)
24 (declare (optimize (speed 3) (safety 0) (space 0)))
25 (declare (muffle-conditions style-warning
)) ; re F1 and F2
27 (progn (ignore-errors (error "Foo")) (write-char #\.
))
29 (use-value (new) (f2 new
))))
32 (with-test (:name
:do-not-dxify-restarts
)
33 (let ((a (make-array 100))) (unwind-protect (crashme 'bork
) (fill a
0)))
34 (let ((a (make-array 100))) (unwind-protect (crashme 'bork
) (fill a
0)))
35 (let ((a (make-array 100))) (unwind-protect (crashme 'bork
) (fill a
0)))
36 (let ((a (make-array 100))) (unwind-protect (crashme 'bork
) (fill a
0)))
39 (defmacro defun-with-dx
(name arglist
&body body
)
40 (let ((debug-name (sb-int:symbolicate name
"-HIGH-DEBUG"))
41 (default-name (sb-int:symbolicate name
"-DEFAULT")))
43 (defun ,debug-name
,arglist
44 (declare (optimize debug
))
46 (defun ,default-name
,arglist
48 (defun ,name
(&rest args
)
49 (apply #',debug-name args
)
50 (apply #',default-name args
)))))
52 (declaim (notinline opaque-identity
))
53 (defun opaque-identity (x)
58 (defun-with-dx dxlength
(&rest rest
)
59 (declare (dynamic-extent rest
))
62 (with-test (:name
(:dx-
&rest
:basics
))
63 (assert (= (dxlength 1 2 3) 3))
64 (assert (= (dxlength t t t t t t
) 6))
65 (assert (= (dxlength) 0)))
68 (destructuring-bind (a b c d e f
&rest g
) list
69 (+ a b c d e f
(length g
))))
71 (defun-with-dx dxcaller
(&rest rest
)
72 (declare (dynamic-extent rest
))
75 (with-test (:name
(:dx-
&rest
:pass-down-to-callee
:tail-call
))
76 (assert (= (dxcaller 1 2 3 4 5 6 7) 22)))
78 (defun-with-dx dxcaller-align-1
(x &rest rest
)
79 (declare (dynamic-extent rest
))
82 (with-test (:name
(:dx-
&rest
:pass-down-to-callee
:non-tail-call
))
83 (assert (= (dxcaller-align-1 17 1 2 3 4 5 6 7) 39))
84 (assert (= (dxcaller-align-1 17 1 2 3 4 5 6 7 8) 40)))
88 (defun-with-dx test-nip-values
()
89 (flet ((bar (x &rest y
)
90 (declare (dynamic-extent y
))
94 (multiple-value-call #'values
98 (with-test (:name
(:nip-values
))
99 (assert (equal (multiple-value-list (test-nip-values)) '(1 5 a
))))
101 ;;; LET-variable substitution
103 (defun-with-dx test-let-var-subst1
(x)
104 (let ((y (list x
(1- x
))))
105 (opaque-identity :foo
)
106 (let ((z (the list y
)))
107 (declare (dynamic-extent z
))
110 (with-test (:name
(:let-variable-substitution
))
111 (assert (eql (test-let-var-subst1 17) 2)))
113 (defun-with-dx test-let-var-subst2
(x)
114 (let ((y (list x
(1- x
))))
115 (declare (dynamic-extent y
))
116 (opaque-identity :foo
)
117 (let ((z (the list y
)))
120 (with-test (:name
(:let-variable-substitution-2
))
121 (assert (eql (test-let-var-subst2 17) 2)))
124 ;;; DX propagation through LET-return.
126 (defun-with-dx test-lvar-subst
(x)
127 (let ((y (list x
(1- x
))))
128 (declare (dynamic-extent y
))
129 (second (let ((z (the list y
)))
130 (opaque-identity :foo
)
133 (with-test (:name
(:dx-propagation-through-let-return
))
134 (assert (eql (test-lvar-subst 11) 10)))
136 ;;; this code is incorrect, but the compiler should not fail
137 (defun-with-dx test-let-var-subst-incorrect
(x)
138 (let ((y (list x
(1- x
))))
139 (opaque-identity :foo
)
140 (let ((z (the list y
)))
141 (declare (dynamic-extent z
))
142 (opaque-identity :bar
)
148 (defun-with-dx test-alignment-dx-list
(form)
149 (multiple-value-prog1 (eval form
)
150 (let ((l (list 1 2 3 4)))
151 (declare (dynamic-extent l
))
152 (setq *x
* (copy-list l
)))))
154 (with-test (:name
(:dx-list
:alignment
))
156 (let* ((res (loop for i below n collect i
))
157 (form `(values ,@res
)))
158 (assert (equal (multiple-value-list (test-alignment-dx-list form
)) res
))
159 (assert (equal *x
* '(1 2 3 4))))))
163 (declaim (notinline true
))
168 (defun-with-dx dxclosure
(x)
171 (declare (dynamic-extent #'f
))
174 (with-test (:name
(:dx-closure
))
175 (assert (eq t
(dxclosure 13))))
179 (defun-with-dx dx-value-cell
(x)
180 ;; Not implemented everywhere, yet.
181 #+(or x86 x86-64 mips hppa
)
183 (declare (sb-int:truly-dynamic-extent cell
))
186 (declare (dynamic-extent #'f
))
191 (defun-with-dx cons-on-stack
(x)
192 (let ((cons (cons x x
)))
193 (declare (dynamic-extent cons
))
199 (defun force-make-array-on-stack (n)
200 (declare (optimize safety
))
201 (let ((v (make-array (min n
1))))
202 (declare (sb-int:truly-dynamic-extent v
))
207 (defun-with-dx make-array-on-stack-1
()
208 (let ((v (make-array '(42) :element-type
'single-float
)))
209 (declare (dynamic-extent v
))
214 (defun-with-dx make-array-on-stack-2
(n x
)
215 (declare (integer n
))
216 (let ((v (make-array n
:initial-contents x
)))
217 (declare (sb-int:truly-dynamic-extent v
))
222 (defun-with-dx make-array-on-stack-3
(x y z
)
223 (let ((v (make-array 3
224 :element-type
'fixnum
:initial-contents
(list x y z
)
225 :element-type t
:initial-contents x
)))
226 (declare (sb-int:truly-dynamic-extent v
))
231 (defun-with-dx make-array-on-stack-4
()
232 (let ((v (make-array 3 :initial-contents
'(1 2 3))))
233 (declare (sb-int:truly-dynamic-extent v
))
238 (defun-with-dx make-array-on-stack-5
()
239 (let ((v (make-array 3 :initial-element
12 :element-type t
)))
240 (declare (sb-int:truly-dynamic-extent v
))
245 (defun-with-dx make-array-on-stack-6
()
246 (let ((v (make-array 3 :initial-element
12 :element-type
'(unsigned-byte 8))))
247 (declare (sb-int:truly-dynamic-extent v
))
252 (defun-with-dx make-array-on-stack-7
()
253 (let ((v (make-array 3 :initial-element
12 :element-type
'(signed-byte 8))))
254 (declare (sb-int:truly-dynamic-extent v
))
259 (defun-with-dx make-array-on-stack-8
()
260 (let ((v (make-array 3 :initial-element
12 :element-type
'word
)))
261 (declare (sb-int:truly-dynamic-extent v
))
266 (defun-with-dx make-array-on-stack-9
()
267 (let ((v (make-array 3 :initial-element
12.0 :element-type
'single-float
)))
268 (declare (sb-int:truly-dynamic-extent v
))
273 (defun-with-dx make-array-on-stack-10
()
274 (let ((v (make-array 3 :initial-element
12.0d0
:element-type
'double-float
)))
275 (declare (sb-int:truly-dynamic-extent v
))
280 (defun-with-dx make-array-on-stack-11
()
281 (let ((v (make-array (the integer
(opaque-identity 3)) :initial-element
12.0d0
:element-type
'double-float
)))
282 (declare (sb-int:truly-dynamic-extent v
))
287 (defun-with-dx vector-on-stack
(x y
)
288 (let ((v (vector 1 x
2 y
3)))
289 (declare (sb-int:truly-dynamic-extent v
))
293 (defun-with-dx make-3d-fixed-array-on-stack-1
()
294 (let ((a (make-array '(4 8 3) :initial-element
12 :element-type t
)))
295 (declare (sb-int:truly-dynamic-extent a
))
299 (defun-with-dx make-3d-fixed-array-on-stack-2
(a b c d
)
300 (sb-int:dx-let
((a (make-array '(2 2 1)
302 :initial-contents
`(#((,a
) (,b
)) (#(,c
) (,d
))))))
307 (defun-with-dx make-2d-variable-array-on-stack
()
308 (let* ((n (opaque-identity 5))
309 (a (make-array `(,n
2) :initial-element
12 :element-type t
)))
310 (declare (sb-int:truly-dynamic-extent a
))
315 (defun 2d-array-initializer (n)
319 (3 '((a b c
) (c d e
) (f g h
)))))
321 (defun-with-dx make-2d-array-function-initializer
(n)
322 (let* ((x (opaque-identity n
))
323 (y (opaque-identity x
))
324 (a (make-array `(,x
,y
) :initial-contents
(2d-array-initializer x
))))
325 (declare (sb-int:truly-dynamic-extent a
))
332 (declaim (inline make-list-container
))
333 (defstruct list-container listy-slot
)
334 (defun make-var-length-dx-list (n thunk
)
335 (sb-int:dx-let
((s (make-list-container :listy-slot
(make-list n
))))
337 ;; :stack-allocatable-lists is necessary but not sufficient
338 (with-test (:name
(:dx-list
:make-list
) :skipped-on
(not :x86-64
))
339 (assert (null (ctu:find-named-callees
#'make-var-length-dx-list
)))
340 (assert-no-consing (make-var-length-dx-list
341 50 (lambda (x) (declare (ignore x
))))))
345 (declaim (inline make-fp-struct-1
))
346 (defstruct fp-struct-1
347 (s 0.0 :type single-float
)
348 (d 0.0d0
:type double-float
))
350 (defun-with-dx test-fp-struct-1.1
(s d
)
352 (let ((fp (make-fp-struct-1 :s s
)))
353 (declare (dynamic-extent fp
))
354 (assert (eql s
(fp-struct-1-s fp
)))
355 (assert (eql 0.0d0
(fp-struct-1-d fp
)))))
357 (defun-with-dx test-fp-struct-1.2
(s d
)
359 (let ((fp (make-fp-struct-1 :d d
)))
360 (declare (dynamic-extent fp
))
361 (assert (eql 0.0 (fp-struct-1-s fp
)))
362 (assert (eql d
(fp-struct-1-d fp
)))))
364 (defun-with-dx test-fp-struct-1.3
(s d
)
365 (let ((fp (make-fp-struct-1 :d d
:s s
)))
366 (declare (dynamic-extent fp
))
367 (assert (eql s
(fp-struct-1-s fp
)))
368 (assert (eql d
(fp-struct-1-d fp
)))))
370 (defun-with-dx test-fp-struct-1.4
(s d
)
371 (let ((fp (make-fp-struct-1 :s s
:d d
)))
372 (declare (dynamic-extent fp
))
373 (assert (eql s
(fp-struct-1-s fp
)))
374 (assert (eql d
(fp-struct-1-d fp
)))))
376 (with-test (:name
(:test-fp-struct-1.1
))
377 (test-fp-struct-1.1
123.456 876.243d0
))
378 (with-test (:name
(:test-fp-struct-1.2
))
379 (test-fp-struct-1.2
123.456 876.243d0
))
380 (with-test (:name
(:test-fp-struct-1.3
))
381 (test-fp-struct-1.3
123.456 876.243d0
))
382 (with-test (:name
(:test-fp-struct-1.4
))
383 (test-fp-struct-1.4
123.456 876.243d0
))
385 (declaim (inline make-fp-struct-2
))
386 (defstruct fp-struct-2
387 (d 0.0d0
:type double-float
)
388 (s 0.0 :type single-float
))
390 (defun-with-dx test-fp-struct-2.1
(s d
)
392 (let ((fp (make-fp-struct-2 :s s
)))
393 (declare (dynamic-extent fp
))
394 (assert (eql s
(fp-struct-2-s fp
)))
395 (assert (eql 0.0d0
(fp-struct-2-d fp
)))))
397 (defun-with-dx test-fp-struct-2.2
(s d
)
399 (let ((fp (make-fp-struct-2 :d d
)))
400 (declare (dynamic-extent fp
))
401 (assert (eql 0.0 (fp-struct-2-s fp
)))
402 (assert (eql d
(fp-struct-2-d fp
)))))
404 (defun-with-dx test-fp-struct-2.3
(s d
)
405 (let ((fp (make-fp-struct-2 :d d
:s s
)))
406 (declare (dynamic-extent fp
))
407 (assert (eql s
(fp-struct-2-s fp
)))
408 (assert (eql d
(fp-struct-2-d fp
)))))
410 (defun-with-dx test-fp-struct-2.4
(s d
)
411 (let ((fp (make-fp-struct-2 :s s
:d d
)))
412 (declare (dynamic-extent fp
))
413 (assert (eql s
(fp-struct-2-s fp
)))
414 (assert (eql d
(fp-struct-2-d fp
)))))
416 (with-test (:name
(:test-fp-struct-2.1
))
417 (test-fp-struct-2.1
123.456 876.243d0
))
418 (with-test (:name
(:test-fp-struct-2.2
))
419 (test-fp-struct-2.2
123.456 876.243d0
))
420 (with-test (:name
(:test-fp-struct-2.3
))
421 (test-fp-struct-2.3
123.456 876.243d0
))
422 (with-test (:name
(:test-fp-struct-2.4
))
423 (test-fp-struct-2.4
123.456 876.243d0
))
425 (declaim (inline make-cfp-struct-1
))
426 (defstruct cfp-struct-1
427 (s (complex 0.0) :type
(complex single-float
))
428 (d (complex 0.0d0
) :type
(complex double-float
)))
430 (defun-with-dx test-cfp-struct-1.1
(s d
)
432 (let ((cfp (make-cfp-struct-1 :s s
)))
433 (declare (dynamic-extent cfp
))
434 (assert (eql s
(cfp-struct-1-s cfp
)))
435 (assert (eql (complex 0.0d0
) (cfp-struct-1-d cfp
)))))
437 (defun-with-dx test-cfp-struct-1.2
(s d
)
439 (let ((cfp (make-cfp-struct-1 :d d
)))
440 (declare (dynamic-extent cfp
))
441 (assert (eql (complex 0.0) (cfp-struct-1-s cfp
)))
442 (assert (eql d
(cfp-struct-1-d cfp
)))))
444 (defun-with-dx test-cfp-struct-1.3
(s d
)
445 (let ((cfp (make-cfp-struct-1 :d d
:s s
)))
446 (declare (dynamic-extent cfp
))
447 (assert (eql s
(cfp-struct-1-s cfp
)))
448 (assert (eql d
(cfp-struct-1-d cfp
)))))
450 (defun-with-dx test-cfp-struct-1.4
(s d
)
451 (let ((cfp (make-cfp-struct-1 :s s
:d d
)))
452 (declare (dynamic-extent cfp
))
453 (assert (eql s
(cfp-struct-1-s cfp
)))
454 (assert (eql d
(cfp-struct-1-d cfp
)))))
456 (with-test (:name
(:test-cfp-struct-1.1
))
457 (test-cfp-struct-1.1
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
458 (with-test (:name
(:test-cfp-struct-1.2
))
459 (test-cfp-struct-1.2
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
460 (with-test (:name
(:test-cfp-struct-1.3
))
461 (test-cfp-struct-1.3
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
462 (with-test (:name
(:test-cfp-struct-1.4
))
463 (test-cfp-struct-1.4
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
465 (declaim (inline make-cfp-struct-2
))
466 (defstruct cfp-struct-2
467 (d (complex 0.0d0
) :type
(complex double-float
))
468 (s (complex 0.0) :type
(complex single-float
)))
470 (defun-with-dx test-cfp-struct-2.1
(s d
)
472 (let ((cfp (make-cfp-struct-2 :s s
)))
473 (declare (dynamic-extent cfp
))
474 (assert (eql s
(cfp-struct-2-s cfp
)))
475 (assert (eql (complex 0.0d0
) (cfp-struct-2-d cfp
)))))
477 (defun-with-dx test-cfp-struct-2.2
(s d
)
479 (let ((cfp (make-cfp-struct-2 :d d
)))
480 (declare (dynamic-extent cfp
))
481 (assert (eql (complex 0.0) (cfp-struct-2-s cfp
)))
482 (assert (eql d
(cfp-struct-2-d cfp
)))))
484 (defun-with-dx test-cfp-struct-2.3
(s d
)
485 (let ((cfp (make-cfp-struct-2 :d d
:s s
)))
486 (declare (dynamic-extent cfp
))
487 (assert (eql s
(cfp-struct-2-s cfp
)))
488 (assert (eql d
(cfp-struct-2-d cfp
)))))
490 (defun-with-dx test-cfp-struct-2.4
(s d
)
491 (let ((cfp (make-cfp-struct-2 :s s
:d d
)))
492 (declare (dynamic-extent cfp
))
493 (assert (eql s
(cfp-struct-2-s cfp
)))
494 (assert (eql d
(cfp-struct-2-d cfp
)))))
496 (with-test (:name
(:test-cfp-struct-2.1
))
497 (test-cfp-struct-2.1
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
498 (with-test (:name
(:test-cfp-struct-2.2
))
499 (test-cfp-struct-2.2
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
500 (with-test (:name
(:test-cfp-struct-2.3
))
501 (test-cfp-struct-2.3
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
502 (with-test (:name
(:test-cfp-struct-2.4
))
503 (test-cfp-struct-2.4
(complex 0.123 123.456) (complex 908132.41d0
876.243d0
)))
505 ;; It works to declare a structure constructor INLINE after the DEFSTRUCT
506 ;; was processed, as long as it was in the null lexical environment.
507 ;; In a perfect world, we'd figure out that a variable declared DX which
508 ;; receives the value of a structure constructor defined in the same file
509 ;; and neither expressly INLINE nor NOTINLINE should be locally inlined.
510 ;; But at least this shows that a declaration at the intended use point
511 ;; is sufficient, without also a bracketing INLINE/NOTINLINE at the DEFSTRUCT.
513 ;; Verify the precondition for the assertions that claim that DXifying works
514 ;; even though the MAKE- function was not expressly INLINE when its DEFSTRUCT
516 (dolist (s '(make-foo1 make-foo2 make-foo3
))
517 (assert (null (sb-int:info
:function
:inline-expansion-designator s
))))
521 (defun-with-dx make-foo1-on-stack
(x)
522 (declare (inline make-foo1
))
523 (let ((foo (make-foo1 :x x
)))
524 (declare (dynamic-extent foo
))
525 (assert (eql x
(foo1-x foo
)))))
528 (x 0.0 :type single-float
)
529 (y 0.0d0
:type double-float
)
534 (defun-with-dx make-foo2-on-stack
(x y
)
535 (declare (inline make-foo2
))
537 (let ((foo (make-foo2 :y y
:c
'c
)))
538 (declare (dynamic-extent foo
))
539 (assert (eql 0.0 (foo2-x foo
)))
540 (assert (eql y
(foo2-y foo
)))
541 (assert (eql 'c
(foo2-c foo
)))
542 (assert (eql nil
(foo2-b foo
)))))
544 ;;; Check that constants work out as argument for all relevant
549 (c 2 :type sb-vm
:word
)
550 (d 3.0 :type single-float
)
551 (e 4.0d0
:type double-float
))
553 (defun-with-dx make-foo3-on-stack
()
554 (declare (inline make-foo3
))
555 (let ((foo (make-foo3)))
556 (declare (dynamic-extent foo
))
557 (assert (eql 0 (foo3-a foo
)))
558 (assert (eql 1 (foo3-b foo
)))
559 (assert (eql 2 (foo3-c foo
)))
560 (assert (eql 3.0 (foo3-d foo
)))
561 (assert (eql 4.0d0
(foo3-e foo
)))))
565 (defun-with-dx nested-dx-lists
()
566 (let ((dx (list (list 1 2) (list 3 4))))
567 (declare (dynamic-extent dx
))
571 (defun-with-dx nested-dx-conses
()
572 (let ((dx (cons 1 (cons 2 (cons 3 (cons (cons t t
) nil
))))))
573 (declare (dynamic-extent dx
))
577 (defun-with-dx nested-dx-not-used
(x)
579 (let ((l (setf (car x
) (list x x x
))))
580 (declare (dynamic-extent l
))
585 (defun-with-dx nested-evil-dx-used
(x)
587 (let ((l (list x x x
)))
588 (declare (dynamic-extent l
))
596 (defparameter *bar
* nil
)
597 (declaim (inline make-nested-bad make-nested-good
))
598 (defstruct (nested (:constructor make-nested-bad
(&key bar
&aux
(bar (setf *bar
* bar
))))
599 (:constructor make-nested-good
(&key bar
)))
602 (defun-with-dx nested-good
(y)
603 (let ((x (list (list (make-nested-good :bar
(list (list (make-nested-good :bar
(list y
)))))))))
604 (declare (dynamic-extent x
))
607 (defun-with-dx nested-bad
(y)
608 (let ((x (list (list (make-nested-bad :bar
(list (list (make-nested-bad :bar
(list y
)))))))))
609 (declare (dynamic-extent x
))
610 (unless (equalp (caar x
) (make-nested-good :bar
*bar
*))
611 (error "got ~S, wanted ~S" (caar x
) (make-nested-good :bar
*bar
*)))
612 ;; the NESTED instance itself *should* be DX!
613 (copy-nested (caar x
))))
615 (with-test (:name
:conservative-nested-dx
)
616 ;; NESTED-BAD should not stack-allocate :BAR due to the SETF.
617 (assert (equalp (nested-bad 42) (make-nested-good :bar
*bar
*)))
618 (assert (equalp *bar
* (list (list (make-nested-bad :bar
(list 42)))))))
620 ;;; Conditional nested DX
622 ;; These two test cases prompted a substantial redesign of the STACK
623 ;; phase of the compiler to handle their particular permutation of
626 (with-test (:name
(:bug-1044465
:reduced
))
627 ;; Test case from Stas Boukarev
628 (checked-compile '(lambda (x)
632 (declare (dynamic-extent a
))
636 (with-test (:name
(:bug-1044465
:nasty
))
637 ;; Test case from Alastair Bridgewater
638 (checked-compile '(lambda (x y
)
644 (b (if y x
(return-from bar x
))))
645 (declare (dynamic-extent a
))
649 ;;; multiple uses for dx lvar
651 (defun-with-dx multiple-dx-uses
()
652 (let ((dx (if (true t
)
655 (declare (dynamic-extent dx
))
659 ;;; mapfoo should make the initial cons dx
661 (defun mapcar-negate (x) (mapcar #'- x
))
662 (defun mapcan-reverse (x) (mapcan #'reverse x
))
664 ;;; handler-case and handler-bind should use DX internally
666 (defun dx-handler-bind (x)
667 (handler-bind ((error
669 (break "OOPS: ~S caused ~S" x c
)))
670 ((and serious-condition
(not error
))
672 (break "OOPS2: ~S did ~S" x c
))))
675 (defun dx-handler-case (x)
676 (assert (zerop (handler-case (/ 2 x
)
678 (break "OOPS: ~S caused ~S" x c
)
683 (defun list-delete-some-stuff ()
684 ;; opaque-identity hides the fact that we are calling a destructive function
685 ;; on a constant, which is technically illegal. But no deletion occurs,
686 ;; so it's innocuous. Also these aren't tests of DX, but oh well...
687 (declare (muffle-conditions style-warning
))
688 (delete 'a
(opaque-identity '(x y
)))
689 (delete 'a
(opaque-identity '(x y
)) :from-end t
)
690 (delete-duplicates (opaque-identity '(x y
))))
692 (defvar *a-cons
* (cons nil nil
))
694 (with-test (:name
(:no-consing
:dx-closures
) :skipped-on
(not :stack-allocatable-closures
))
695 (assert-no-consing (dxclosure 42)))
697 (with-test (:name
(:no-consing
:dx-lists
)
698 :skipped-on
(not (and :stack-allocatable-lists
699 :stack-allocatable-fixed-objects
)))
700 (assert-no-consing (dxlength 1 2 3))
701 (assert-no-consing (dxlength t t t t t t
))
702 (assert-no-consing (dxlength))
703 (assert-no-consing (dxcaller 1 2 3 4 5 6 7))
704 (assert-no-consing (test-nip-values))
705 (assert-no-consing (test-let-var-subst2 17))
706 (assert-no-consing (test-lvar-subst 11))
707 (assert-no-consing (nested-dx-lists))
708 (assert-consing (nested-dx-not-used *a-cons
*))
709 (assert-no-consing (nested-evil-dx-used *a-cons
*))
710 (assert-no-consing (mapcar-negate nil
))
711 (assert-no-consing (mapcan-reverse nil
))
712 (assert-no-consing (list-delete-some-stuff))
713 (assert-no-consing (multiple-dx-uses)))
715 (with-test (:name
(:no-consing
:dx-value-cell
)
716 :skipped-on
(not :stack-allocatable-closures
))
717 (assert-no-consing (dx-value-cell 13)))
719 (with-test (:name
(:no-consing
:dx-fixed-objects
)
720 :skipped-on
(not (and :stack-allocatable-fixed-objects
721 :stack-allocatable-closures
)))
722 (assert-no-consing (cons-on-stack 42))
723 (assert-no-consing (make-foo1-on-stack 123))
724 (assert-no-consing (nested-good 42))
725 (assert-no-consing (nested-dx-conses))
726 (assert-no-consing (dx-handler-bind 2))
727 (assert-no-consing (dx-handler-case 2)))
729 (with-test (:name
(:no-consing
:dx-vectors
) :skipped-on
(not :stack-allocatable-vectors
))
730 (assert-no-consing (force-make-array-on-stack 128))
731 (assert-no-consing (make-array-on-stack-2 5 '(1 2.0 3 4.0 5)))
732 (assert-no-consing (make-array-on-stack-3 9 8 7))
733 (assert-no-consing (make-array-on-stack-4))
734 (assert-no-consing (make-array-on-stack-5))
735 (assert-no-consing (vector-on-stack :x
:y
)))
737 (with-test (:name
(:no-consing
:dx-arrays
) :skipped-on
(not :stack-allocatable-vectors
))
738 (assert-no-consing (make-3d-fixed-array-on-stack-1))
739 (assert-no-consing (make-2d-variable-array-on-stack))
740 (assert-no-consing (make-2d-array-function-initializer 1))
741 (assert-no-consing (make-2d-array-function-initializer 2))
742 (assert-no-consing (make-2d-array-function-initializer 3)))
744 (with-test (:name
(:no-consing
:dx-specialized-arrays
)
745 :skipped-on
(not (and :stack-allocatable-vectors
746 :c-stack-is-control-stack
)))
747 (assert-no-consing (make-3d-fixed-array-on-stack-2 0 0 1 1)))
749 (with-test (:name
(:no-consing
:specialized-dx-vectors
)
750 :skipped-on
(not (and :stack-allocatable-vectors
751 :c-stack-is-control-stack
)))
752 (assert-no-consing (make-array-on-stack-1))
753 (assert-no-consing (make-array-on-stack-6))
754 (assert-no-consing (make-array-on-stack-7))
755 (assert-no-consing (make-array-on-stack-8))
756 (assert-no-consing (make-array-on-stack-9))
757 (assert-no-consing (make-array-on-stack-10))
758 (assert-no-consing (make-array-on-stack-11)))
760 (with-test (:name
(:no-consing
:dx-raw-instances
) :skipped-on
(or (not :raw-instance-init-vops
)
761 (not (and :gencgc
:c-stack-is-control-stack
))))
763 (setf a
1.24 b
1.23d0
)
764 (assert-no-consing (make-foo2-on-stack a b
)))
765 (assert-no-consing (make-foo3-on-stack)))
767 ;;; not really DX, but GETHASH and (SETF GETHASH) should not cons
769 (defvar *table
* (make-hash-table))
771 (defun test-hash-table ()
772 (setf (gethash 5 *table
*) 13)
775 (with-test (:name
(:no-consing
:hash-tables
))
776 (assert-no-consing (test-hash-table)))
778 ;;; Both with-pinned-objects and without-gcing should not cons
780 (defun call-without-gcing (fun)
781 (sb-sys:without-gcing
(funcall fun
)))
783 (defun call-with-pinned-object (fun obj
)
784 (sb-sys:with-pinned-objects
(obj)
787 (with-test (:name
(:no-consing
:without-gcing
))
788 (assert-no-consing (call-without-gcing (lambda ()))))
790 (with-test (:name
(:no-consing
:with-pinned-objects
))
791 (assert-no-consing (call-with-pinned-object #'identity
42)))
793 ;;; with-mutex should use DX and not cons
795 (defvar *mutex
* (sb-thread::make-mutex
:name
"mutexlock"))
798 (sb-thread:with-mutex
(*mutex
*)
801 (with-test (:name
(:no-consing
:mutex
) :skipped-on
(not :sb-thread
))
802 (assert-no-consing (test-mutex)))
805 ;;; Bugs found by Paul F. Dietz
807 (with-test (:name
(:dx-bug-misc
:pfdietz
))
808 (checked-compile-and-assert (:optimize
:all
)
810 (let* ((v5 (cons b b
)))
811 (declare (dynamic-extent v5
))
816 (with-test (:name
:bug-1738095
)
817 ;; STACK analysis wasn't marking UVL or DX LVARs that are held live
818 ;; by a DX allocation as being live in blocks along the path from
819 ;; the allocation to the ENTRY node, causing problems when there is
820 ;; a block that is outside the lexical environment of the "earlier"
821 ;; DX allocation (in the case below, such a block would be the first
822 ;; (outermost) use of LIST).
823 (checked-compile '(lambda ()
824 (let ((* (list (let ((* (list nil
)))
825 (declare (dynamic-extent *))
827 (declare (dynamic-extent *))))))
829 (with-test (:name
:bug-1739308
)
830 ;; STACK analysis wasn't propagating DX LVARs back from ENTRY to
831 ;; allocation through non-local-entry environments (below, the CATCH
832 ;; entry point), causing problems when such is the ONLY live path
833 ;; back to the allocation.
834 (checked-compile '(lambda (x y
)
836 (multiple-value-prog1
840 (declare (dynamic-extent s
))
841 (funcall (the function y
) s
)))))
843 ;;; bug reported by Svein Ove Aas
844 (defun svein-2005-ii-07 (x y
)
845 (declare (optimize (speed 3) (space 2) (safety 0) (debug 0)))
846 (let ((args (list* y
1 2 x
)))
847 (declare (dynamic-extent args
))
848 (apply #'aref args
)))
850 (with-test (:name
(:dx-bugs-misc
:svein-2005-ii-07
))
854 #3A
(((1 1 1) (1 1 1) (1 1 1))
855 ((1 1 1) (1 1 1) (4 1 1))
856 ((1 1 1) (1 1 1) (1 1 1))))
859 ;;; bug reported by Brian Downing: stack-allocated arrays were not
860 ;;; filled with zeroes.
861 (defun-with-dx bdowning-2005-iv-16
()
862 (let ((a (make-array 11 :initial-element
0)))
863 (declare (dynamic-extent a
))
864 (assert (every (lambda (x) (eql x
0)) a
))))
866 (with-test (:name
(:dx-bug-misc
:bdowning-2005-iv-16
))
867 #+(or hppa mips x86 x86-64
)
868 (assert-no-consing (bdowning-2005-iv-16))
869 (bdowning-2005-iv-16))
871 (declaim (inline my-nconc
))
872 (defun my-nconc (&rest lists
)
873 (declare (dynamic-extent lists
))
874 (apply #'nconc lists
))
875 (defun-with-dx my-nconc-caller
(a b c
)
876 (let ((l1 (list a b c
))
879 (with-test (:name
:rest-stops-the-buck
)
880 (let ((list1 (my-nconc-caller 1 2 3))
881 (list2 (my-nconc-caller 9 8 7)))
882 (assert (equal list1
'(1 2 3 1 2 3)))
883 (assert (equal list2
'(9 8 7 9 8 7)))))
885 (defun-with-dx let-converted-vars-dx-allocated-bug
(x y z
)
886 (let* ((a (list x y z
))
889 (declare (dynamic-extent c
))
890 (values (first c
) (second c
))))
891 (with-test (:name
:let-converted-vars-dx-allocated-bug
)
892 (multiple-value-bind (i j
) (let-converted-vars-dx-allocated-bug 1 2 3)
893 (assert (and (equal i j
)
894 (equal i
(list 1 2 3))))))
896 ;;; workaround for bug 419 -- real issue remains, but check that the
898 (defun-with-dx bug419
(x)
899 (multiple-value-call #'list
900 (eval '(values 1 2 3))
902 (declare (dynamic-extent x
))
907 (declare (dynamic-extent #'mget
#'mset
))
908 ((lambda (f g
) (eval `(progn ,f
,g
(values 4 5 6)))) #'mget
#'mset
)))))
910 (with-test (:name
(:dx-bug-misc
:bug419
))
911 (assert (equal (bug419 42) '(1 2 3 4 5 6))))
913 ;;; Multiple DX arguments in a local function call
914 (defun test-dx-flet-test (fun n f1 f2 f3
)
915 (let ((res (with-output-to-string (s)
916 (assert (eql n
(ignore-errors (funcall fun s
)))))))
917 (multiple-value-bind (x pos
) (read-from-string res nil
)
918 (assert (equalp f1 x
))
919 (multiple-value-bind (y pos2
) (read-from-string res nil nil
:start pos
)
920 (assert (equalp f2 y
))
921 (assert (equalp f3
(read-from-string res nil nil
:start pos2
))))))
922 #+(or hppa mips x86 x86-64
)
923 (assert-no-consing (assert (eql n
(funcall fun nil
))))
924 (assert (eql n
(funcall fun nil
))))
926 (macrolet ((def (n f1 f2 f3
)
927 (let ((name (sb-pcl::format-symbol
:cl-user
"DX-FLET-TEST.~A" n
)))
929 (defun-with-dx ,name
(s)
931 (declare (dynamic-extent x
))
940 (with-test (:name
(:dx-flet-test
,n
))
941 (test-dx-flet-test #',name
,n
,f1
,f2
,f3
))))))
942 (def 0 (list :one
) (list :two
) (list :three
))
943 (def 1 (make-array 128) (list 1 2 3 4 5 6 7 8) (list 'list
))
944 (def 2 (list 1) (list 2 3) (list 4 5 6 7)))
946 ;;; Test that unknown-values coming after a DX value won't mess up the
948 (defun test-update-uvl-live-sets (x y z
)
949 (declare (optimize speed
(safety 0)))
951 (declare (dynamic-extent a
))
952 (eval `(list (length ',a
) ',b
))))
954 (bar (list x y z
) ; dx push
956 (multiple-value-call 'list
957 (eval '(values 1 2 3)) ; uv push
963 (with-test (:name
(:update-uvl-live-sets
))
964 (assert (equal '((0 4) (3 ((1 2 3 5) 14)))
965 (test-update-uvl-live-sets #() 4 5))))
967 (with-test (:name
:regression-1.0
.23.38)
968 (checked-compile '(lambda ()
969 (declare (muffle-conditions compiler-note
))
971 (let ((res (cons x x
)))
974 (declare (inline make
))
975 (let ((z (make 1 2)))
976 (declare (dynamic-extent z
))
979 (checked-compile '(lambda ()
980 (declare (muffle-conditions compiler-note
))
982 (let ((res (cons x x
)))
985 (declare (inline make
))
986 (let ((z (make 1 2)))
987 (declare (dynamic-extent z
))
991 ;;; On x86 and x86-64 upto 1.0.28.16 LENGTH and WORDS argument
992 ;;; tns to ALLOCATE-VECTOR-ON-STACK could be packed in the same
993 ;;; location, leading to all manner of badness. ...reproducing this
994 ;;; reliably is hard, but this it at least used to break on x86-64.
995 (defun length-and-words-packed-in-same-tn (m)
996 (declare (optimize speed
(safety 0) (debug 0) (space 0)))
997 (let ((array (make-array (max 1 m
) :element-type
'fixnum
)))
998 (declare (dynamic-extent array
))
999 (array-total-size array
)))
1000 (with-test (:name
:length-and-words-packed-in-same-tn
)
1001 (assert (= 1 (length-and-words-packed-in-same-tn -
3))))
1003 (with-test (:name
:handler-case-bogus-compiler-note
1004 :skipped-on
(not (and :stack-allocatable-fixed-objects
1005 :stack-allocatable-closures
)))
1006 ;; Taken from SWANK, used to signal a bogus stack allocation
1009 `(lambda (files fasl-dir load
)
1010 (declare (muffle-conditions style-warning
))
1011 (let ((needs-recompile nil
))
1013 (let ((dest (binary-pathname src fasl-dir
)))
1016 (when (or needs-recompile
1017 (not (probe-file dest
))
1018 (file-newer-p src dest
))
1019 (setq needs-recompile t
)
1020 (ensure-directories-exist dest
)
1021 (compile-file src
:output-file dest
:print nil
:verbose t
))
1023 (load dest
:verbose t
)))
1024 (serious-condition (c)
1025 (handle-loadtime-error c dest
)))))))
1028 (declaim (inline foovector barvector
))
1029 (defun foovector (x y z
)
1030 (let ((v (make-array 3)))
1035 (defun barvector (x y z
)
1036 (make-array 3 :initial-contents
(list x y z
)))
1037 (with-test (:name
:dx-compiler-notes
1038 :skipped-on
(not (and :stack-allocatable-vectors
1039 :stack-allocatable-closures
)))
1040 (flet ((assert-notes (j lambda
)
1041 (let ((notes (nth 4 (multiple-value-list (checked-compile lambda
))))) ; TODO
1042 (unless (= (length notes
) j
)
1043 (error "Wanted ~S notes, got ~S for~% ~S"
1044 j
(length notes
) lambda
)))))
1045 ;; These ones should complain.
1046 (assert-notes 1 `(lambda (x)
1047 (let ((v (make-array x
)))
1048 (declare (dynamic-extent v
))
1050 (assert-notes 2 `(lambda (x)
1051 (let ((y (if (plusp x
)
1054 (declare (dynamic-extent y
))
1057 (assert-notes 1 `(lambda (x)
1058 (let ((y (foovector x x x
)))
1059 (declare (sb-int:truly-dynamic-extent y
))
1062 ;; These ones should not complain.
1063 (assert-notes 0 `(lambda (name)
1065 ((posix-getenv (function c-string c-string
)
1068 (alien-funcall posix-getenv name
)))))
1069 (assert-notes 0 `(lambda (x)
1070 (let ((y (barvector x x x
)))
1071 (declare (dynamic-extent y
))
1074 (assert-notes 0 `(lambda (list)
1075 (declare (optimize (space 0)))
1076 (sort list
(lambda (x y
) ; shut unrelated notes up
1077 (< (truly-the fixnum x
)
1078 (truly-the fixnum y
))))))
1079 (assert-notes 0 `(lambda (other)
1081 (ignore-errors (funcall other s c n
)))))))
1083 ;;; Stack allocating a value cell in HANDLER-CASE would blow up stack
1084 ;;; in an unfortunate loop.
1085 (defun handler-case-eating-stack ()
1086 (declare (muffle-conditions warning
)) ; "dead code detected ... IR1-PHASES"
1088 (do ((n 0 (logand most-positive-fixnum
(1+ n
))))
1090 (multiple-value-bind (value error
) (ignore-errors)
1091 (when (and value error
) nil
))
1093 (assert (= sp
(sb-c::%primitive sb-c
:current-stack-pointer
)))
1094 (setf sp
(sb-c::%primitive sb-c
:current-stack-pointer
))))))
1095 (with-test (:name
:handler-case-eating-stack
1096 :skipped-on
(not (and :stack-allocatable-fixed-objects
1097 :stack-allocatable-closures
)))
1098 (assert-no-consing (handler-case-eating-stack)))
1100 ;;; A nasty bug where RECHECK-DYNAMIC-EXTENT-LVARS thought something was going
1101 ;;; to be stack allocated when it was not, leading to a bogus %NIP-VALUES.
1102 ;;; Fixed by making RECHECK-DYNAMIC-EXTENT-LVARS deal properly with nested DX.
1104 `(simple-array t
(3)))
1105 (declaim (ftype (function (t t t
) vec
) vec
))
1106 (declaim (inline vec
))
1108 (make-array 3 :initial-contents
(list a b c
)))
1109 (defun bad-boy (vec)
1110 (declare (type vec vec
))
1112 (let ((vec (vec (aref vec
0) (aref vec
1) (aref vec
2))))
1113 (declare (dynamic-extent vec
))
1114 (funcall fun vec
))))
1115 (with-test (:name
:recheck-nested-dx-bug
1116 :skipped-on
(not :stack-allocatable-vectors
))
1117 (assert (funcall (bad-boy (vec 1.0 2.0 3.3))
1118 (lambda (vec) (equalp vec
(vec 1.0 2.0 3.3)))))
1119 (flet ((foo (x) (declare (ignore x
))))
1120 (let ((bad-boy (bad-boy (vec 2.0 3.0 4.0))))
1121 (assert-no-consing (funcall bad-boy
#'foo
)))))
1123 (with-test (:name
:bug-497321
)
1124 (flet ((test (lambda &rest args
)
1125 (multiple-value-bind (fun failure-p warnings style-warnings notes
)
1126 (apply #'checked-compile lambda args
)
1127 (declare (ignore fun failure-p
))
1128 (assert (= (length (append warnings style-warnings notes
)) 1)))))
1129 (test `(lambda () (declare (dynamic-extent #'bar
)))
1130 :allow-style-warnings
'style-warning
)
1131 (test `(lambda () (declare (dynamic-extent bar
)))
1132 :allow-style-warnings
'style-warning
)
1133 (test `(lambda (bar) (cons bar
(lambda () (declare (dynamic-extent bar
)))))
1134 :allow-notes
'sb-ext
:compiler-note
)
1137 (cons #'bar
(lambda () (declare (dynamic-extent #'bar
))))))
1138 :allow-notes
'sb-ext
:compiler-note
)))
1140 (with-test (:name
:bug-586105
1141 :skipped-on
(not (and :stack-allocatable-vectors
1142 :stack-allocatable-lists
)))
1144 (let ((vec1 (make-array 1 :initial-contents
(list (list x
))))
1145 (vec2 (make-array 1 :initial-contents
`((,x
))))
1146 (vec3 (make-array 1 :initial-contents
`#((,x
))))
1147 (vec4 (make-array 1 :initial-contents
`(#(,x
)))))
1148 (declare (dynamic-extent vec1 vec2 vec3 vec4
))
1149 (assert (eql x
(car (aref vec1
0))))
1150 (assert (eql x
(car (aref vec2
0))))
1151 (assert (eql x
(car (aref vec3
0))))
1152 (assert (eql x
(elt (aref vec4
0) 0))))))
1153 (assert-no-consing (test 42))))
1155 (defun bug-681092 ()
1156 (declare (optimize speed
))
1159 (declare (dynamic-extent #'bar
))
1160 (do () ((list) (bar))
1163 (with-test (:name
:bug-681092
)
1164 (assert (= 10 (bug-681092))))
1166 ;;;; Including a loop in the flow graph between a DX-allocation and
1167 ;;;; the start of its environment would, for a while, cause executing
1168 ;;;; any of the code in the loop to discard the value. Found via
1169 ;;;; attempting to DX-allocate an array, which triggered the FILL
1170 ;;;; transform, which inserted such a loop.
1171 (defun bug-1472785 (x)
1172 (let ((y (let ((z (cons nil nil
)))
1176 (when (= x i
) (go b2
))
1182 (declare (dynamic-extent y w
))
1184 (with-test (:name
:bug-1472785
)
1185 (assert (null (bug-1472785 1))))
1187 ;;;; &REST lists should stop DX propagation -- not required by ANSI,
1188 ;;;; but required by sanity.
1190 (declaim (inline rest-stops-dx
))
1191 (defun-with-dx rest-stops-dx
(&rest args
)
1192 (declare (dynamic-extent args
))
1193 (apply #'opaque-identity args
))
1195 (defun-with-dx rest-stops-dx-ok
()
1196 (equal '(:foo
) (rest-stops-dx (list :foo
))))
1198 (with-test (:name
:rest-stops-dynamic-extent
)
1199 (assert (rest-stops-dx-ok)))
1201 ;;;; These tests aren't strictly speaking DX, but rather &REST -> &MORE
1203 (with-test (:name
:rest-to-more-conversion
)
1204 (let ((f1 (checked-compile `(lambda (f &rest args
)
1206 (assert-no-consing (assert (eql f1
(funcall f1
#'identity f1
)))))
1207 (let ((f2 (checked-compile `(lambda (f1 f2
&rest args
)
1208 (values (apply f1 args
) (apply f2 args
))))))
1209 (assert-no-consing (multiple-value-bind (a b
)
1210 (funcall f2
(lambda (x y z
) (+ x y z
)) (lambda (x y z
) (- x y z
))
1212 (assert (and (eql 6 a
) (eql -
4 b
))))))
1213 (let ((f3 (checked-compile `(lambda (f &optional x
&rest args
)
1215 (apply f x args
))))))
1216 (assert-no-consing (assert (eql 42 (funcall f3
1217 (lambda (a b c
) (+ a b c
))
1222 (checked-compile `(lambda (f &optional x
&rest args
1223 &key y
&allow-other-keys
)
1225 :allow-style-warnings t
)))
1226 (assert-no-consing (funcall f4
(lambda (y x yk y2 b c
)
1234 (checked-compile-and-assert ()
1235 `(lambda (a b c
&rest args
)
1236 (apply #'list
* a b c args
))
1237 ((1 2 3 4 5 6 '(7)) '(1 2 3 4 5 6 7)))
1238 (checked-compile-and-assert ()
1240 (concatenate 'string x y
))
1241 (("foo" "bar") "foobar"))
1242 (checked-compile-and-assert ()
1243 `(lambda (&rest args
)
1246 (('a
'b
'c
'd
'e
'f
) '(a b c d e f
)
1247 :test
(lambda (values expected
)
1248 (equal (multiple-value-list
1249 (funcall (first values
) 'list
))
1251 (checked-compile-and-assert ()
1252 `(lambda (&rest args
)
1256 (('a
'b
'c
'd
'e
'f
) '(a b c d e f
)
1257 :test
(lambda (values expected
)
1258 (equal (multiple-value-list
1259 (funcall (first values
) 'list
))
1261 (checked-compile-and-assert ()
1262 `(lambda (f &rest args
)
1265 (declare (dynamic-extent #'foo
))
1267 (((lambda (f) (funcall f
'list
)) 'a
'b
'c
'd
'e
'f
)
1269 (checked-compile-and-assert ()
1270 `(lambda (f &rest args
)
1274 (((lambda (f) (funcall f
'list
)) 'a
'b
'c
'd
'e
'f
)
1276 (checked-compile-and-assert ()
1279 (labels ((foo (x &rest rest
)
1280 (apply (lambda (&rest rest2
)
1281 (return-from out
(values-list rest2
)))
1286 ((1 2 3) (values 1 2 3))))
1288 (defun opaque-funcall (function &rest arguments
)
1289 (apply function arguments
))
1291 (with-test (:name
:implicit-value-cells
)
1292 (flet ((test-it (type input output
)
1293 (checked-compile-and-assert ()
1295 (declare (type ,type x
))
1298 (declare (dynamic-extent #'inc
))
1299 (list (opaque-funcall #'inc
) x
)))
1300 ((input) (list output output
)))))
1301 (let ((width sb-vm
:n-word-bits
))
1302 (test-it t
(1- most-positive-fixnum
) most-positive-fixnum
)
1303 (test-it `(unsigned-byte ,(1- width
)) (ash 1 (- width
2)) (1+ (ash 1 (- width
2))))
1304 (test-it `(signed-byte ,width
) (ash -
1 (- width
2)) (1+ (ash -
1 (- width
2))))
1305 (test-it `(unsigned-byte ,width
) (ash 1 (1- width
)) (1+ (ash 1 (1- width
))))
1306 (test-it 'single-float
3f0
4f0
)
1307 (test-it 'double-float
3d0
4d0
)
1308 (test-it '(complex single-float
) #c
(3f0 4f0
) #c
(4f0 4f0
))
1309 (test-it '(complex double-float
) #c
(3d0 4d0
) #c
(4d0 4d0
)))))
1311 (with-test (:name
:sap-implicit-value-cells
)
1312 (let ((f (checked-compile `(lambda (x)
1313 (declare (type system-area-pointer x
))
1315 (setf x
(sb-sys:sap
+ x
16))))
1316 (declare (dynamic-extent #'inc
))
1317 (list (opaque-funcall #'inc
) x
)))))
1318 (width sb-vm
:n-machine-word-bits
))
1319 (assert (every (lambda (x)
1320 (sb-sys:sap
= x
(sb-sys:int-sap
(+ 16 (ash 1 (1- width
))))))
1321 (funcall f
(sb-sys:int-sap
(ash 1 (1- width
))))))))
1323 (with-test (:name
(:&more-bounds
:lp-1154946
))
1324 (checked-compile-and-assert () '(lambda (&rest args
) (car args
)) (() nil
))
1325 (checked-compile-and-assert () '(lambda (&rest args
) (nth 6 args
)) (() nil
))
1326 (checked-compile-and-assert () '(lambda (&rest args
) (cadr args
)) (() nil
))
1327 (checked-compile-and-assert () '(lambda (&rest args
) (third args
)) (() nil
)))
1329 (with-test (:name
:local-notinline-functions
)
1330 (multiple-value-bind (start result end
)
1331 (funcall (checked-compile
1333 (values (sb-kernel:current-sp
)
1334 (flet ((x () (cons 1 2)))
1335 (declare (notinline x
))
1337 (declare (dynamic-extent x
))
1340 (sb-kernel:current-sp
)))))
1341 (assert (sb-sys:sap
= start end
))
1343 (multiple-value-bind (start result end
)
1344 (funcall (checked-compile
1346 (declare (optimize speed
))
1347 (values (sb-kernel:current-sp
)
1348 (flet ((x () (cons 1 2)))
1351 (declare (dynamic-extent x y
))
1355 (sb-kernel:current-sp
)))))
1356 (assert (sb-sys:sap
= start end
))
1360 (with-test (:name
:unused-paremeters-of-an-inlined-function
)
1361 (let ((name (gensym "fun")))
1362 (proclaim `(inline ,name
))
1363 (eval `(defun ,name
(a b
&optional c d
)
1364 (declare (ignore c d
))
1366 (checked-compile-and-assert ()
1371 (declare (dynamic-extent x
))
1374 (() '(2 .
3) :test
(lambda (values expected
)
1375 (equal (multiple-value-list
1376 (funcall (first values
) 2 3))