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(define-module (test-suite test-r6rs-base) |
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:use-module ((rnrs base) :version (6)) |
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:use-module ((rnrs conditions) :version (6)) |
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:use-module ((rnrs exceptions) :version (6)) |
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:use-module (test-suite lib)) |
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(define (=? alpha beta) |
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(< (abs (- alpha beta)) 1e-10)) |
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(with-test-prefix "log (2nd arg)" |
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(pass-if "log positive-base" (=? (log 8 2) 3)) |
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(pass-if "log negative-base" (=? (real-part (log 256 -4)) |
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0.6519359443)) |
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(pass-if "log base-one" (= (log 10 1) +inf.0)) |
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(pass-if "log base-zero" |
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(catch #t |
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(lambda () (log 10 0) #f) |
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(lambda args #t)))) |
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(with-test-prefix "boolean=?" |
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(pass-if "boolean=? null" (boolean=?)) |
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(pass-if "boolean=? unary" (boolean=? #f)) |
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(pass-if "boolean=? many" |
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(and (boolean=? #t #t #t) |
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(boolean=? #f #f #f) |
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(not (boolean=? #t #f #t)))) |
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(pass-if "boolean=? mixed type" (not (boolean=? #t #t 'foo)))) |
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(with-test-prefix "symbol=?" |
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(pass-if "symbol=? null" (symbol=?)) |
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(pass-if "symbol=? unary" (symbol=? 'a)) |
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(pass-if "symbol=? many" |
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(and (symbol=? 'a 'a 'a) |
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(symbol=? 'foo 'foo 'foo) |
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(not (symbol=? 'a 'foo 'a)))) |
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(pass-if "symbol=? mixed type" (not (symbol=? 'a 'a 123)))) |
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(with-test-prefix "infinite?" |
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(pass-if "infinite? true on infinities" |
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(and (infinite? +inf.0) (infinite? -inf.0))) |
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(pass-if "infinite? false on non-infities" |
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(and (not (infinite? 123)) (not (infinite? +nan.0))))) |
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(with-test-prefix "finite?" |
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(pass-if "finite? false on infinities" |
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(and (not (finite? +inf.0)) (not (finite? -inf.0)))) |
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(pass-if "finite? true on non-infinities" |
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(and (finite? 123) (finite? 123.0)))) |
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(with-test-prefix "exact-integer-sqrt" |
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(pass-if "exact-integer-sqrt simple" |
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(let-values (((s e) (exact-integer-sqrt 5))) |
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(and (eqv? s 2) (eqv? e 1))))) |
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(with-test-prefix "integer-valued?" |
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(pass-if "true on integers" |
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(and (integer-valued? 3) (integer-valued? 3.0) (integer-valued? 3.0+0.0i))) |
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(pass-if "false on rationals" (not (integer-valued? 3.1))) |
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(pass-if "false on reals" (not (integer-valued? +nan.0)))) |
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(with-test-prefix "rational-valued?" |
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(pass-if "true on integers" (rational-valued? 3)) |
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(pass-if "true on rationals" |
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(and (rational-valued? 3.1) (rational-valued? 3.1+0.0i))) |
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(pass-if "false on reals" |
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(or (not (rational-valued? +nan.0)) |
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(throw 'unresolved)))) |
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(with-test-prefix "real-valued?" |
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(pass-if "true on integers" (real-valued? 3)) |
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(pass-if "true on rationals" (real-valued? 3.1)) |
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(pass-if "true on reals" (real-valued? +nan.0))) |
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(with-test-prefix "vector-for-each" |
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(pass-if "vector-for-each simple" |
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(let ((sum 0)) |
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(vector-for-each (lambda (x) (set! sum (+ sum x))) '#(1 2 3)) |
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(eqv? sum 6)))) |
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(with-test-prefix "vector-map" |
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(pass-if "vector-map simple" |
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(equal? '#(3 2 1) (vector-map (lambda (x) (- 4 x)) '#(1 2 3))))) |
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(with-test-prefix "real-valued?" |
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(pass-if (real-valued? +nan.0)) |
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(pass-if (real-valued? +nan.0+0i)) |
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(pass-if (real-valued? +nan.0+0.0i)) |
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(pass-if (real-valued? +inf.0)) |
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(pass-if (real-valued? -inf.0)) |
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(pass-if (real-valued? +inf.0+0.0i)) |
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(pass-if (real-valued? -inf.0-0.0i)) |
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(pass-if (real-valued? 3)) |
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(pass-if (real-valued? -2.5)) |
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(pass-if (real-valued? -2.5+0i)) |
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(pass-if (real-valued? -2.5+0.0i)) |
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(pass-if (real-valued? -2.5-0i)) |
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(pass-if (real-valued? #e1e10)) |
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(pass-if (real-valued? 1e200)) |
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(pass-if (real-valued? 1e200+0.0i)) |
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(pass-if (real-valued? 6/10)) |
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(pass-if (real-valued? 6/10+0.0i)) |
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(pass-if (real-valued? 6/10+0i)) |
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(pass-if (real-valued? 6/3)) |
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(pass-if (not (real-valued? 3+i))) |
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(pass-if (not (real-valued? -2.5+0.01i))) |
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(pass-if (not (real-valued? +nan.0+0.01i))) |
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(pass-if (not (real-valued? +nan.0+nan.0i))) |
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(pass-if (not (real-valued? +inf.0-0.01i))) |
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(pass-if (not (real-valued? +0.01i))) |
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(pass-if (not (real-valued? -inf.0i)))) |
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(with-test-prefix "rational-valued?" |
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(pass-if (not (rational-valued? +nan.0))) |
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(pass-if (not (rational-valued? +nan.0+0i))) |
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(pass-if (not (rational-valued? +nan.0+0.0i))) |
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(pass-if (not (rational-valued? +inf.0))) |
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(pass-if (not (rational-valued? -inf.0))) |
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(pass-if (not (rational-valued? +inf.0+0.0i))) |
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(pass-if (not (rational-valued? -inf.0-0.0i))) |
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(pass-if (rational-valued? 3)) |
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(pass-if (rational-valued? -2.5)) |
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(pass-if (rational-valued? -2.5+0i)) |
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(pass-if (rational-valued? -2.5+0.0i)) |
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(pass-if (rational-valued? -2.5-0i)) |
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(pass-if (rational-valued? #e1e10)) |
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(pass-if (rational-valued? 1e200)) |
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(pass-if (rational-valued? 1e200+0.0i)) |
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(pass-if (rational-valued? 6/10)) |
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(pass-if (rational-valued? 6/10+0.0i)) |
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(pass-if (rational-valued? 6/10+0i)) |
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(pass-if (rational-valued? 6/3)) |
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(pass-if (not (rational-valued? 3+i))) |
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(pass-if (not (rational-valued? -2.5+0.01i))) |
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(pass-if (not (rational-valued? +nan.0+0.01i))) |
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(pass-if (not (rational-valued? +nan.0+nan.0i))) |
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(pass-if (not (rational-valued? +inf.0-0.01i))) |
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(pass-if (not (rational-valued? +0.01i))) |
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(pass-if (not (rational-valued? -inf.0i)))) |
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(with-test-prefix "integer-valued?" |
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(pass-if (not (integer-valued? +nan.0))) |
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(pass-if (not (integer-valued? +nan.0+0i))) |
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(pass-if (not (integer-valued? +nan.0+0.0i))) |
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(pass-if (not (integer-valued? +inf.0))) |
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(pass-if (not (integer-valued? -inf.0))) |
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(pass-if (not (integer-valued? +inf.0+0.0i))) |
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(pass-if (not (integer-valued? -inf.0-0.0i))) |
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(pass-if (integer-valued? 3)) |
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(pass-if (integer-valued? 3.0)) |
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(pass-if (integer-valued? 3+0i)) |
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(pass-if (integer-valued? 3+0.0i)) |
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(pass-if (integer-valued? 8/4)) |
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(pass-if (integer-valued? #e1e10)) |
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(pass-if (integer-valued? 1e200)) |
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(pass-if (integer-valued? 1e200+0.0i)) |
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(pass-if (not (integer-valued? -2.5))) |
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(pass-if (not (integer-valued? -2.5+0i))) |
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(pass-if (not (integer-valued? -2.5+0.0i))) |
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(pass-if (not (integer-valued? -2.5-0i))) |
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(pass-if (not (integer-valued? 6/10))) |
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(pass-if (not (integer-valued? 6/10+0.0i))) |
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(pass-if (not (integer-valued? 6/10+0i))) |
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(pass-if (not (integer-valued? 3+i))) |
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(pass-if (not (integer-valued? -2.5+0.01i))) |
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(pass-if (not (integer-valued? +nan.0+0.01i))) |
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(pass-if (not (integer-valued? +nan.0+nan.0i))) |
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(pass-if (not (integer-valued? +inf.0-0.01i))) |
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(pass-if (not (integer-valued? +0.01i))) |
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(pass-if (not (integer-valued? -inf.0i)))) |
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(with-test-prefix "assert" |
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(pass-if "assert returns value" (= 1 (assert 1))) |
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(pass-if "assertion-violation" |
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(guard (condition ((assertion-violation? condition) #t)) |
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(assert #f) |
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#f))) |
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(with-test-prefix "string-for-each" |
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(pass-if "reverse string" |
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(let ((s "reverse me") (l '())) |
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(string-for-each (lambda (x) (set! l (cons x l))) s) |
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(equal? "em esrever" (list->string l)))) |
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(pass-if "two strings good" |
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(let ((s1 "two legs good") |
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(s2 "four legs bad") |
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(c '())) |
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(string-for-each (lambda (c1 c2) |
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(set! c (cons* c2 c1 c))) |
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s1 s2) |
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(equal? (list->string c) |
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"ddaobo gs gsegle lr uoowft"))) |
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(pass-if "two strings bad" |
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(let ((s1 "frotz") |
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(s2 "veeblefetzer")) |
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(guard (condition ((assertion-violation? condition) #t)) |
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(string-for-each (lambda (s1 s2) #f) s1 s2) |
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#f))) |
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(pass-if "many strings good" |
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(let ((s1 "foo") |
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(s2 "bar") |
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(s3 "baz") |
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(s4 "zot") |
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(c '())) |
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(string-for-each (lambda (c1 c2 c3 c4) |
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(set! c (cons* c4 c3 c2 c1 c))) |
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s1 s2 s3 s4) |
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(equal? (list->string c) |
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"tzrooaaozbbf"))) |
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(pass-if "many strings bad" |
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(let ((s1 "foo") |
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(s2 "bar") |
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(s3 "baz") |
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(s4 "quux")) |
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(guard (condition ((assertion-violation? condition) #t)) |
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(string-for-each (lambda _ #f) s1 s2 s3 s4) |
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#f)))) |
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