blob: a8e1737da7d0d0720f2bd66f62934df93d65b405 [file] [log] [blame]
Guido van Rossum7736b5b2008-01-15 21:44:53 +00001"""Tests for Lib/rational.py."""
2
3from decimal import Decimal
4from test.test_support import run_unittest, verbose
5import math
6import operator
7import rational
8import unittest
9R = rational.Rational
10
11def _components(r):
12 return (r.numerator, r.denominator)
13
14class RationalTest(unittest.TestCase):
15
16 def assertTypedEquals(self, expected, actual):
17 """Asserts that both the types and values are the same."""
18 self.assertEquals(type(expected), type(actual))
19 self.assertEquals(expected, actual)
20
21 def assertRaisesMessage(self, exc_type, message,
22 callable, *args, **kwargs):
23 """Asserts that callable(*args, **kwargs) raises exc_type(message)."""
24 try:
25 callable(*args, **kwargs)
26 except exc_type as e:
27 self.assertEquals(message, str(e))
28 else:
29 self.fail("%s not raised" % exc_type.__name__)
30
31 def testInit(self):
32 self.assertEquals((0, 1), _components(R()))
33 self.assertEquals((7, 1), _components(R(7)))
34 self.assertEquals((7, 3), _components(R(R(7, 3))))
35
36 self.assertEquals((-1, 1), _components(R(-1, 1)))
37 self.assertEquals((-1, 1), _components(R(1, -1)))
38 self.assertEquals((1, 1), _components(R(-2, -2)))
39 self.assertEquals((1, 2), _components(R(5, 10)))
40 self.assertEquals((7, 15), _components(R(7, 15)))
41 self.assertEquals((10**23, 1), _components(R(10**23)))
42
43 self.assertRaisesMessage(ZeroDivisionError, "Rational(12, 0)",
44 R, 12, 0)
45 self.assertRaises(TypeError, R, 1.5)
46 self.assertRaises(TypeError, R, 1.5 + 3j)
47
48 def testFromFloat(self):
49 self.assertRaisesMessage(
50 TypeError, "Rational.from_float() only takes floats, not 3 (int)",
51 R.from_float, 3)
52
53 self.assertEquals((0, 1), _components(R.from_float(-0.0)))
54 self.assertEquals((10, 1), _components(R.from_float(10.0)))
55 self.assertEquals((-5, 2), _components(R.from_float(-2.5)))
56 self.assertEquals((99999999999999991611392, 1),
57 _components(R.from_float(1e23)))
58 self.assertEquals(float(10**23), float(R.from_float(1e23)))
59 self.assertEquals((3602879701896397, 1125899906842624),
60 _components(R.from_float(3.2)))
61 self.assertEquals(3.2, float(R.from_float(3.2)))
62
63 inf = 1e1000
64 nan = inf - inf
65 self.assertRaisesMessage(
66 TypeError, "Cannot convert inf to Rational.",
67 R.from_float, inf)
68 self.assertRaisesMessage(
69 TypeError, "Cannot convert -inf to Rational.",
70 R.from_float, -inf)
71 self.assertRaisesMessage(
72 TypeError, "Cannot convert nan to Rational.",
73 R.from_float, nan)
74
75 def testConversions(self):
76 self.assertTypedEquals(-1, trunc(R(-11, 10)))
77 self.assertTypedEquals(-2, R(-11, 10).__floor__())
78 self.assertTypedEquals(-1, R(-11, 10).__ceil__())
79 self.assertTypedEquals(-1, R(-10, 10).__ceil__())
80
81 self.assertTypedEquals(0, R(-1, 10).__round__())
82 self.assertTypedEquals(0, R(-5, 10).__round__())
83 self.assertTypedEquals(-2, R(-15, 10).__round__())
84 self.assertTypedEquals(-1, R(-7, 10).__round__())
85
86 self.assertEquals(False, bool(R(0, 1)))
87 self.assertEquals(True, bool(R(3, 2)))
88 self.assertTypedEquals(0.1, float(R(1, 10)))
89
90 # Check that __float__ isn't implemented by converting the
91 # numerator and denominator to float before dividing.
92 self.assertRaises(OverflowError, float, int('2'*400+'7'))
93 self.assertAlmostEquals(2.0/3,
94 float(R(int('2'*400+'7'), int('3'*400+'1'))))
95
96 self.assertTypedEquals(0.1+0j, complex(R(1,10)))
97
98 def testRound(self):
99 self.assertTypedEquals(R(-200), R(-150).__round__(-2))
100 self.assertTypedEquals(R(-200), R(-250).__round__(-2))
101 self.assertTypedEquals(R(30), R(26).__round__(-1))
102 self.assertTypedEquals(R(-2, 10), R(-15, 100).__round__(1))
103 self.assertTypedEquals(R(-2, 10), R(-25, 100).__round__(1))
104
105
106 def testArithmetic(self):
107 self.assertEquals(R(1, 2), R(1, 10) + R(2, 5))
108 self.assertEquals(R(-3, 10), R(1, 10) - R(2, 5))
109 self.assertEquals(R(1, 25), R(1, 10) * R(2, 5))
110 self.assertEquals(R(1, 4), R(1, 10) / R(2, 5))
111 self.assertTypedEquals(2, R(9, 10) // R(2, 5))
112 self.assertTypedEquals(10**23, R(10**23, 1) // R(1))
113 self.assertEquals(R(2, 3), R(-7, 3) % R(3, 2))
114 self.assertEquals(R(8, 27), R(2, 3) ** R(3))
115 self.assertEquals(R(27, 8), R(2, 3) ** R(-3))
116 self.assertTypedEquals(2.0, R(4) ** R(1, 2))
117 z = pow(R(-1), R(1, 2))
118 self.assertAlmostEquals(z.real, 0)
119 self.assertEquals(z.imag, 1)
120
121 def testMixedArithmetic(self):
122 self.assertTypedEquals(R(11, 10), R(1, 10) + 1)
123 self.assertTypedEquals(1.1, R(1, 10) + 1.0)
124 self.assertTypedEquals(1.1 + 0j, R(1, 10) + (1.0 + 0j))
125 self.assertTypedEquals(R(11, 10), 1 + R(1, 10))
126 self.assertTypedEquals(1.1, 1.0 + R(1, 10))
127 self.assertTypedEquals(1.1 + 0j, (1.0 + 0j) + R(1, 10))
128
129 self.assertTypedEquals(R(-9, 10), R(1, 10) - 1)
130 self.assertTypedEquals(-0.9, R(1, 10) - 1.0)
131 self.assertTypedEquals(-0.9 + 0j, R(1, 10) - (1.0 + 0j))
132 self.assertTypedEquals(R(9, 10), 1 - R(1, 10))
133 self.assertTypedEquals(0.9, 1.0 - R(1, 10))
134 self.assertTypedEquals(0.9 + 0j, (1.0 + 0j) - R(1, 10))
135
136 self.assertTypedEquals(R(1, 10), R(1, 10) * 1)
137 self.assertTypedEquals(0.1, R(1, 10) * 1.0)
138 self.assertTypedEquals(0.1 + 0j, R(1, 10) * (1.0 + 0j))
139 self.assertTypedEquals(R(1, 10), 1 * R(1, 10))
140 self.assertTypedEquals(0.1, 1.0 * R(1, 10))
141 self.assertTypedEquals(0.1 + 0j, (1.0 + 0j) * R(1, 10))
142
143 self.assertTypedEquals(R(1, 10), R(1, 10) / 1)
144 self.assertTypedEquals(0.1, R(1, 10) / 1.0)
145 self.assertTypedEquals(0.1 + 0j, R(1, 10) / (1.0 + 0j))
146 self.assertTypedEquals(R(10, 1), 1 / R(1, 10))
147 self.assertTypedEquals(10.0, 1.0 / R(1, 10))
148 self.assertTypedEquals(10.0 + 0j, (1.0 + 0j) / R(1, 10))
149
150 self.assertTypedEquals(0, R(1, 10) // 1)
151 # XXX Jeffrey: why does this fail?
152 ##self.assertTypedEquals(0.0, R(1, 10) // 1.0)
153 self.assertTypedEquals(10, 1 // R(1, 10))
154 self.assertTypedEquals(10**23, 10**22 // R(1, 10))
155 # XXX Jeffrey: why does this fail?
156 ##self.assertTypedEquals(10.0, 1.0 // R(1, 10))
157
158 self.assertTypedEquals(R(1, 10), R(1, 10) % 1)
159 self.assertTypedEquals(0.1, R(1, 10) % 1.0)
160 self.assertTypedEquals(R(0, 1), 1 % R(1, 10))
161 self.assertTypedEquals(0.0, 1.0 % R(1, 10))
162
163 # No need for divmod since we don't override it.
164
165 # ** has more interesting conversion rules.
166 self.assertTypedEquals(R(100, 1), R(1, 10) ** -2)
167 self.assertTypedEquals(R(100, 1), R(10, 1) ** 2)
168 self.assertTypedEquals(0.1, R(1, 10) ** 1.0)
169 self.assertTypedEquals(0.1 + 0j, R(1, 10) ** (1.0 + 0j))
170 self.assertTypedEquals(4 , 2 ** R(2, 1))
171 z = pow(-1, R(1, 2))
172 self.assertAlmostEquals(0, z.real)
173 self.assertEquals(1, z.imag)
174 self.assertTypedEquals(R(1, 4) , 2 ** R(-2, 1))
175 self.assertTypedEquals(2.0 , 4 ** R(1, 2))
176 self.assertTypedEquals(0.25, 2.0 ** R(-2, 1))
177 self.assertTypedEquals(1.0 + 0j, (1.0 + 0j) ** R(1, 10))
178
179 def testMixingWithDecimal(self):
180 """Decimal refuses mixed comparisons."""
181 self.assertRaisesMessage(
182 TypeError,
183 "unsupported operand type(s) for +: 'Rational' and 'Decimal'",
184 operator.add, R(3,11), Decimal('3.1415926'))
185 self.assertNotEquals(R(5, 2), Decimal('2.5'))
186
187 def testComparisons(self):
188 self.assertTrue(R(1, 2) < R(2, 3))
189 self.assertFalse(R(1, 2) < R(1, 2))
190 self.assertTrue(R(1, 2) <= R(2, 3))
191 self.assertTrue(R(1, 2) <= R(1, 2))
192 self.assertFalse(R(2, 3) <= R(1, 2))
193 self.assertTrue(R(1, 2) == R(1, 2))
194 self.assertFalse(R(1, 2) == R(1, 3))
195
196 def testMixedLess(self):
197 self.assertTrue(2 < R(5, 2))
198 self.assertFalse(2 < R(4, 2))
199 self.assertTrue(R(5, 2) < 3)
200 self.assertFalse(R(4, 2) < 2)
201
202 self.assertTrue(R(1, 2) < 0.6)
203 self.assertFalse(R(1, 2) < 0.4)
204 self.assertTrue(0.4 < R(1, 2))
205 self.assertFalse(0.5 < R(1, 2))
206
207 def testMixedLessEqual(self):
208 self.assertTrue(0.5 <= R(1, 2))
209 self.assertFalse(0.6 <= R(1, 2))
210 self.assertTrue(R(1, 2) <= 0.5)
211 self.assertFalse(R(1, 2) <= 0.4)
212 self.assertTrue(2 <= R(4, 2))
213 self.assertFalse(2 <= R(3, 2))
214 self.assertTrue(R(4, 2) <= 2)
215 self.assertFalse(R(5, 2) <= 2)
216
217 def testBigFloatComparisons(self):
218 # Because 10**23 can't be represented exactly as a float:
219 self.assertFalse(R(10**23) == float(10**23))
220 # The first test demonstrates why these are important.
221 self.assertFalse(1e23 < float(R(trunc(1e23) + 1)))
222 self.assertTrue(1e23 < R(trunc(1e23) + 1))
223 self.assertFalse(1e23 <= R(trunc(1e23) - 1))
224 self.assertTrue(1e23 > R(trunc(1e23) - 1))
225 self.assertFalse(1e23 >= R(trunc(1e23) + 1))
226
227 def testBigComplexComparisons(self):
228 self.assertFalse(R(10**23) == complex(10**23))
229 self.assertTrue(R(10**23) > complex(10**23))
230 self.assertFalse(R(10**23) <= complex(10**23))
231
232 def testMixedEqual(self):
233 self.assertTrue(0.5 == R(1, 2))
234 self.assertFalse(0.6 == R(1, 2))
235 self.assertTrue(R(1, 2) == 0.5)
236 self.assertFalse(R(1, 2) == 0.4)
237 self.assertTrue(2 == R(4, 2))
238 self.assertFalse(2 == R(3, 2))
239 self.assertTrue(R(4, 2) == 2)
240 self.assertFalse(R(5, 2) == 2)
241
242 def testStringification(self):
243 self.assertEquals("rational.Rational(7,3)", repr(R(7, 3)))
244 self.assertEquals("(7/3)", str(R(7, 3)))
245 self.assertEquals("7", str(R(7, 1)))
246
247 def testHash(self):
248 self.assertEquals(hash(2.5), hash(R(5, 2)))
249 self.assertEquals(hash(10**50), hash(R(10**50)))
250 self.assertNotEquals(hash(float(10**23)), hash(R(10**23)))
251
252 def testApproximatePi(self):
253 # Algorithm borrowed from
254 # http://docs.python.org/lib/decimal-recipes.html
255 three = R(3)
256 lasts, t, s, n, na, d, da = 0, three, 3, 1, 0, 0, 24
257 while abs(s - lasts) > R(1, 10**9):
258 lasts = s
259 n, na = n+na, na+8
260 d, da = d+da, da+32
261 t = (t * n) / d
262 s += t
263 self.assertAlmostEquals(math.pi, s)
264
265 def testApproximateCos1(self):
266 # Algorithm borrowed from
267 # http://docs.python.org/lib/decimal-recipes.html
268 x = R(1)
269 i, lasts, s, fact, num, sign = 0, 0, R(1), 1, 1, 1
270 while abs(s - lasts) > R(1, 10**9):
271 lasts = s
272 i += 2
273 fact *= i * (i-1)
274 num *= x * x
275 sign *= -1
276 s += num / fact * sign
277 self.assertAlmostEquals(math.cos(1), s)
278
279def test_main():
280 run_unittest(RationalTest)
281
282if __name__ == '__main__':
283 test_main()