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* libguile/numbers.c (scm_numerator, scm_denominator): Handle signed zeroes and infinities in accordance with the corresponding R6RS flonum procedures. * module/rnrs/arithmetic/flonums.scm (flnumerator, fldenominator): Remove special handling of infinities. * test-suite/tests/numbers.test (numerator, denominator): Add tests. Convert existing tests to use 'pass-if-equal'. * test-suite/tests/r6rs-arithmetic-flonums.test (flnumerator): Fix broken test of (flnumerator -0.0).
328 lines
9.6 KiB
Text
328 lines
9.6 KiB
Text
;;; arithmetic-flonums.test --- Test suite for R6RS (rnrs arithmetic flonums)
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;; Copyright (C) 2010, 2011, 2013 Free Software Foundation, Inc.
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;;
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;; This library is free software; you can redistribute it and/or
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;; modify it under the terms of the GNU Lesser General Public
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;; License as published by the Free Software Foundation; either
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;; version 3 of the License, or (at your option) any later version.
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;;
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;; This library is distributed in the hope that it will be useful,
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;; but WITHOUT ANY WARRANTY; without even the implied warranty of
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;; MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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;; Lesser General Public License for more details.
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;;
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;; You should have received a copy of the GNU Lesser General Public
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;; License along with this library; if not, write to the Free Software
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;; Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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(define-module (test-suite test-r6rs-arithmetic-flonums)
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:use-module ((rnrs arithmetic flonums) :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 fake-pi 3.14159265)
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(define (reasonably-close? x y) (< (abs (- x y)) 0.0000001))
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(with-test-prefix "flonum?"
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(pass-if "flonum? is #t on flonum"
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(flonum? 1.5))
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(pass-if "flonum? is #f on complex"
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(not (flonum? 1.5+0.0i)))
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(pass-if "flonum? is #f on exact integer"
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(not (flonum? 3))))
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(with-test-prefix "real->flonum"
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(pass-if "simple"
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(flonum? (real->flonum 3))))
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(with-test-prefix "fl=?"
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(pass-if "fl=? is #t for eqv inputs"
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(fl=? 3.0 3.0 3.0))
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(pass-if "fl=? is #f for non-eqv inputs"
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(not (fl=? 1.5 0.0 3.0)))
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(pass-if "+inf.0 is fl= to itself"
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(fl=? +inf.0 +inf.0))
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(pass-if "0.0 and -0.0 are fl="
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(fl=? 0.0 -0.0)))
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(with-test-prefix "fl<?"
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(pass-if "fl<? is #t for monotonically < inputs"
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(fl<? 1.0 2.0 3.0))
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(pass-if "fl<? is #f for non-monotonically < inputs"
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(not (fl<? 2.0 2.0 1.4))))
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(with-test-prefix "fl<=?"
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(pass-if "fl<=? is #t for monotonically < or = inputs"
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(fl<=? 1.0 1.2 1.2))
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(pass-if "fl<=? is #f non-monotonically < or = inputs"
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(not (fl<=? 2.0 1.0 0.9))))
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(with-test-prefix "fl>?"
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(pass-if "fl>? is #t for monotonically > inputs"
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(fl>? 3.0 2.0 1.0))
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(pass-if "fl>? is #f for non-monotonically > inputs"
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(not (fl>? 1.0 1.0 1.2))))
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(with-test-prefix "fl>=?"
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(pass-if "fl>=? is #t for monotonically > or = inputs"
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(fl>=? 3.0 2.0 2.0))
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(pass-if "fl>=? is #f for non-monotonically > or = inputs"
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(not (fl>=? 1.0 1.2 1.2))))
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(with-test-prefix "flinteger?"
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(pass-if "flinteger? is #t on integer flomnums"
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(flinteger? 1.0))
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(pass-if "flinteger? is #f on non-integer flonums"
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(not (flinteger? 1.5))))
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(with-test-prefix "flzero?"
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(pass-if "flzero? is #t for 0.0 and -0.0"
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(and (flzero? 0.0) (flzero? -0.0)))
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(pass-if "flzero? is #f for non-zero flonums"
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(not (flzero? 1.0))))
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(with-test-prefix "flpositive?"
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(pass-if "flpositive? is #t on positive flonum"
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(flpositive? 1.0))
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(pass-if "flpositive? is #f on negative flonum"
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(not (flpositive? -1.0)))
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(pass-if "0.0 and -0.0 are not flpositive"
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(and (not (flpositive? 0.0)) (not (flpositive? -0.0)))))
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(with-test-prefix "flnegative?"
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(pass-if "flnegative? is #t on negative flonum"
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(flnegative? -1.0))
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(pass-if "flnegative? is #f on positive flonum"
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(not (flnegative? 1.0)))
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(pass-if "0.0 and -0.0 are not flnegative"
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(and (not (flnegative? 0.0)) (not (flnegative? -0.0)))))
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(with-test-prefix "flodd?"
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(pass-if "&assertion raised on non-integer flonum"
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(guard (condition ((assertion-violation? condition) #t) (else #f))
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(begin (flodd? 1.5) #f)))
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(pass-if "flodd? is #t on odd flonums"
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(flodd? 3.0))
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(pass-if "flodd? is #f on even flonums"
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(not (flodd? 2.0))))
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(with-test-prefix "fleven?"
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(pass-if "&assertion raised on non-integer flonum"
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(guard (condition ((assertion-violation? condition) #t) (else #f))
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(begin (fleven? 1.5) #f)))
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(pass-if "fleven? is #t on even flonums"
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(fleven? 2.0))
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(pass-if "fleven? is #f on odd flonums"
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(not (fleven? 3.0))))
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(with-test-prefix "flfinite?"
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(pass-if "flfinite? is #t on non-infinite flonums"
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(flfinite? 2.0))
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(pass-if "flfinite? is #f on infinities"
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(and (not (flfinite? +inf.0)) (not (flfinite? -inf.0))))
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(pass-if "flfinite? is #f on NaNs"
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(not (flfinite? +nan.0))))
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(with-test-prefix "flinfinite?"
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(pass-if "flinfinite? is #t on infinities"
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(and (flinfinite? +inf.0) (flinfinite? -inf.0)))
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(pass-if "flinfinite? is #f on non-infinite flonums"
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(not (flinfinite? 2.0))))
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(with-test-prefix "flnan?"
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(pass-if "flnan? is #t on NaN and -NaN"
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(and (flnan? +nan.0) (flnan? -nan.0)))
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(pass-if "flnan? is #f on non-NaN values"
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(not (flnan? 1.5))))
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(with-test-prefix "flmax"
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(pass-if "simple" (fl=? (flmax 1.0 3.0 2.0) 3.0)))
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(with-test-prefix "flmin"
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(pass-if "simple" (fl=? (flmin -1.0 0.0 2.0) -1.0)))
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(with-test-prefix "fl+"
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(pass-if "simple" (fl=? (fl+ 2.141 1.0 0.1) 3.241))
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(pass-if "zero args" (fl=? (fl+) 0.0)))
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(with-test-prefix "fl*"
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(pass-if "simple" (fl=? (fl* 1.0 2.0 3.0 1.5) 9.0))
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(pass-if "zero args" (fl=? (fl*) 1.0)))
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(with-test-prefix "fl-"
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(pass-if "unary fl- negates argument" (fl=? (fl- 2.0) -2.0))
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(pass-if "simple" (fl=? (fl- 10.5 6.0 0.5) 4.0)))
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(with-test-prefix "fl/"
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(pass-if "unary fl/ returns multiplicative inverse" (fl=? (fl/ 10.0) 0.1))
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(pass-if "simple" (fl=? (fl/ 10.0 2.0 2.0) 2.5)))
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(with-test-prefix "flabs"
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(pass-if "simple" (and (fl=? (flabs -1.0) 1.0) (fl=? (flabs 1.23) 1.23))))
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(with-test-prefix "fldiv-and-mod"
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(pass-if "simple"
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(call-with-values (lambda () (fldiv-and-mod 5.0 2.0))
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(lambda (div mod) (fl=? div 2.0) (fl=? mod 1.0)))))
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(with-test-prefix "fldiv"
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(pass-if "simple" (fl=? (fldiv 5.0 2.0) 2.0)))
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(with-test-prefix "flmod"
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(pass-if "simple" (fl=? (flmod 5.0 2.0) 1.0)))
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(with-test-prefix "fldiv0-and-mod0"
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(pass-if "simple"
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(call-with-values (lambda () (fldiv0-and-mod0 -123.0 10.0))
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(lambda (div mod)
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(and (fl=? div -12.0) (fl=? mod -3.0))))))
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(with-test-prefix "fldiv0"
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(pass-if "simple" (fl=? (fldiv0 -123.0 10.0) -12.0)))
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(with-test-prefix "flmod0"
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(pass-if "simple" (fl=? (flmod0 -123.0 10.0) -3.0)))
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(with-test-prefix "flnumerator"
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(pass-if "simple" (fl=? (flnumerator 0.5) 1.0))
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(pass-if "infinities"
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(and (fl=? (flnumerator +inf.0) +inf.0)
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(fl=? (flnumerator -inf.0) -inf.0)))
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(pass-if "negative zero" (eqv? (flnumerator -0.0) -0.0)))
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(with-test-prefix "fldenominator"
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(pass-if "simple" (fl=? (fldenominator 0.5) 2.0))
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(pass-if "infinities"
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(and (fl=? (fldenominator +inf.0) 1.0)
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(fl=? (fldenominator -inf.0) 1.0)))
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(pass-if "zero" (fl=? (fldenominator 0.0) 1.0)))
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(with-test-prefix "flfloor"
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(pass-if "simple"
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(and (fl=? (flfloor -4.3) -5.0)
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(fl=? (flfloor 3.5) 3.0))))
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(with-test-prefix "flceiling"
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(pass-if "simple"
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(and (fl=? (flceiling -4.3) -4.0)
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(fl=? (flceiling 3.5) 4.0))))
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(with-test-prefix "fltruncate"
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(pass-if "simple"
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(and (fl=? (fltruncate -4.3) -4.0)
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(fl=? (fltruncate 3.5) 3.0))))
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(with-test-prefix "flround"
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(pass-if "simple"
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(and (fl=? (flround -4.3) -4.0)
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(fl=? (flround 3.5) 4.0))))
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(with-test-prefix "flexp"
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(pass-if "infinities"
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(and (fl=? (flexp +inf.0) +inf.0)
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(fl=? (flexp -inf.0) 0.0))))
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(with-test-prefix "fllog"
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(pass-if "unary fllog returns natural log"
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(reasonably-close? (fllog 2.718281828459045) 1.0))
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(pass-if "infinities"
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(and (fl=? (fllog +inf.0) +inf.0)
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(flnan? (fllog -inf.0))))
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(pass-if "negative argument"
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(flnan? (fllog -1.0)))
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(pass-if "zero" (fl=? (fllog 0.0) -inf.0))
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(pass-if "negative zero" (fl=? (fllog -0.0) -inf.0))
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(pass-if "negative zero with base" (fl=? (fllog -0.0 0.5) +inf.0))
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(pass-if "binary fllog returns log in specified base"
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(fl=? (fllog 8.0 2.0) 3.0)))
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(with-test-prefix "flsin"
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(pass-if "simple"
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(and (reasonably-close? (flsin (/ fake-pi 2)) 1.0)
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(reasonably-close? (flsin (/ fake-pi 6)) 0.5))))
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(with-test-prefix "flcos"
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(pass-if "simple"
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(and (fl=? (flcos 0.0) 1.0) (reasonably-close? (flcos (/ fake-pi 3)) 0.5))))
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(with-test-prefix "fltan"
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(pass-if "simple"
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(and (reasonably-close? (fltan (/ fake-pi 4)) 1.0)
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(reasonably-close? (fltan (/ (* 3 fake-pi) 4)) -1.0))))
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(with-test-prefix "flasin"
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(pass-if "simple"
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(and (reasonably-close? (flasin 1.0) (/ fake-pi 2))
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(reasonably-close? (flasin 0.5) (/ fake-pi 6))))
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(pass-if "out of range"
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(flnan? (flasin 2.0))))
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(with-test-prefix "flacos"
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(pass-if "simple"
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(and (fl=? (flacos 1.0) 0.0)
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(reasonably-close? (flacos 0.5) (/ fake-pi 3))))
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(pass-if "out of range"
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(flnan? (flacos 2.0))))
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(with-test-prefix "flatan"
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(pass-if "unary flatan"
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(and (reasonably-close? (flatan 1.0) (/ fake-pi 4))
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(reasonably-close? (flatan -1.0) (/ fake-pi -4))))
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(pass-if "infinities"
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(and (reasonably-close? (flatan -inf.0) -1.5707963267949)
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(reasonably-close? (flatan +inf.0) 1.5707963267949)))
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(pass-if "binary flatan"
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(and (reasonably-close? (flatan 3.5 3.5) (/ fake-pi 4)))))
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(with-test-prefix "flsqrt"
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(pass-if "simple" (fl=? (flsqrt 4.0) 2.0))
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(pass-if "negative" (flnan? (flsqrt -1.0)))
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(pass-if "infinity" (fl=? (flsqrt +inf.0) +inf.0))
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(pass-if "negative zero" (fl=? (flsqrt -0.0) -0.0)))
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(with-test-prefix "flexpt"
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(pass-if "simple" (fl=? (flexpt 2.0 3.0) 8.0))
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(pass-if "negative squared" (fl=? (flexpt -2.0 2.0) 4.0))
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(pass-if "negative cubed" (fl=? (flexpt -2.0 3.0) -8.0))
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(pass-if "negative to non-integer power" (flnan? (flexpt -2.0 2.5))))
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(with-test-prefix "fixnum->flonum"
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(pass-if "simple" (fl=? (fixnum->flonum 100) 100.0)))
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