Merged revisions 74925 via svnmerge from
svn+ssh://pythondev@svn.python.org/python/trunk ........ r74925 | mark.dickinson | 2009-09-18 22:01:50 +0100 (Fri, 18 Sep 2009) | 2 lines Use skipUnless to skip math module tests on non-IEEE 754 platforms. ........
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@ -13,6 +13,11 @@ NAN = float('nan')
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INF = float('inf')
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NINF = float('-inf')
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# decorator for skipping tests on non-IEEE 754 platforms
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requires_IEEE_754 = unittest.skipUnless(
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float.__getformat__("double").startswith("IEEE"),
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"test requires IEEE 754 doubles")
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# detect evidence of double-rounding: fsum is not always correctly
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# rounded on machines that suffer from double rounding.
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x, y = 1e16, 2.9999 # use temporary values to defeat peephole optimizer
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@ -209,33 +214,33 @@ class MathTests(unittest.TestCase):
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self.assertRaises(TypeError, math.ceil, t)
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self.assertRaises(TypeError, math.ceil, t, 0)
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if float.__getformat__("double").startswith("IEEE"):
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def testCopysign(self):
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self.assertRaises(TypeError, math.copysign)
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# copysign should let us distinguish signs of zeros
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self.assertEquals(copysign(1., 0.), 1.)
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self.assertEquals(copysign(1., -0.), -1.)
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self.assertEquals(copysign(INF, 0.), INF)
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self.assertEquals(copysign(INF, -0.), NINF)
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self.assertEquals(copysign(NINF, 0.), INF)
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self.assertEquals(copysign(NINF, -0.), NINF)
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# and of infinities
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self.assertEquals(copysign(1., INF), 1.)
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self.assertEquals(copysign(1., NINF), -1.)
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self.assertEquals(copysign(INF, INF), INF)
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self.assertEquals(copysign(INF, NINF), NINF)
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self.assertEquals(copysign(NINF, INF), INF)
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self.assertEquals(copysign(NINF, NINF), NINF)
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self.assertTrue(math.isnan(copysign(NAN, 1.)))
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self.assertTrue(math.isnan(copysign(NAN, INF)))
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self.assertTrue(math.isnan(copysign(NAN, NINF)))
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self.assertTrue(math.isnan(copysign(NAN, NAN)))
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# copysign(INF, NAN) may be INF or it may be NINF, since
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# we don't know whether the sign bit of NAN is set on any
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# given platform.
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self.assertTrue(math.isinf(copysign(INF, NAN)))
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# similarly, copysign(2., NAN) could be 2. or -2.
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self.assertEquals(abs(copysign(2., NAN)), 2.)
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@requires_IEEE_754
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def testCopysign(self):
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self.assertRaises(TypeError, math.copysign)
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# copysign should let us distinguish signs of zeros
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self.assertEquals(copysign(1., 0.), 1.)
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self.assertEquals(copysign(1., -0.), -1.)
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self.assertEquals(copysign(INF, 0.), INF)
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self.assertEquals(copysign(INF, -0.), NINF)
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self.assertEquals(copysign(NINF, 0.), INF)
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self.assertEquals(copysign(NINF, -0.), NINF)
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# and of infinities
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self.assertEquals(copysign(1., INF), 1.)
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self.assertEquals(copysign(1., NINF), -1.)
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self.assertEquals(copysign(INF, INF), INF)
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self.assertEquals(copysign(INF, NINF), NINF)
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self.assertEquals(copysign(NINF, INF), INF)
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self.assertEquals(copysign(NINF, NINF), NINF)
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self.assertTrue(math.isnan(copysign(NAN, 1.)))
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self.assertTrue(math.isnan(copysign(NAN, INF)))
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self.assertTrue(math.isnan(copysign(NAN, NINF)))
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self.assertTrue(math.isnan(copysign(NAN, NAN)))
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# copysign(INF, NAN) may be INF or it may be NINF, since
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# we don't know whether the sign bit of NAN is set on any
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# given platform.
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self.assertTrue(math.isinf(copysign(INF, NAN)))
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# similarly, copysign(2., NAN) could be 2. or -2.
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self.assertEquals(abs(copysign(2., NAN)), 2.)
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def testCos(self):
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self.assertRaises(TypeError, math.cos)
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@ -364,8 +369,7 @@ class MathTests(unittest.TestCase):
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self.assertEquals(math.frexp(NINF)[0], NINF)
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self.assertTrue(math.isnan(math.frexp(NAN)[0]))
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@unittest.skipUnless(float.__getformat__("double").startswith("IEEE"),
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"test requires IEEE 754 doubles")
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@requires_IEEE_754
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@unittest.skipIf(HAVE_DOUBLE_ROUNDING,
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"fsum is not exact on machines with double rounding")
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def testFsum(self):
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@ -857,9 +861,8 @@ class MathTests(unittest.TestCase):
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else:
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self.fail("sqrt(-1) didn't raise ValueError")
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@requires_IEEE_754
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def test_testfile(self):
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if not float.__getformat__("double").startswith("IEEE"):
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return
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for id, fn, ar, ai, er, ei, flags in parse_testfile(test_file):
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# Skip if either the input or result is complex, or if
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# flags is nonempty
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