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Florent Xicluna6257a7b2010-03-31 22:01:03 +00001import unittest
Walter Dörwald5edd7852003-06-18 14:26:18 +00002from test import test_support
3
Tim Peters0f336042001-03-18 08:21:57 +00004from random import random
Mark Dickinson95bc9802009-04-24 12:46:53 +00005from math import atan2, isnan, copysign
Tim Peters0f336042001-03-18 08:21:57 +00006
Christian Heimes2f0da532008-02-15 06:57:08 +00007INF = float("inf")
8NAN = float("nan")
Walter Dörwald5edd7852003-06-18 14:26:18 +00009# These tests ensure that complex math does the right thing
Fred Drake68773e72001-12-13 19:57:53 +000010
Walter Dörwald5edd7852003-06-18 14:26:18 +000011class ComplexTest(unittest.TestCase):
Tim Peters0f336042001-03-18 08:21:57 +000012
Walter Dörwald5edd7852003-06-18 14:26:18 +000013 def assertAlmostEqual(self, a, b):
14 if isinstance(a, complex):
15 if isinstance(b, complex):
16 unittest.TestCase.assertAlmostEqual(self, a.real, b.real)
17 unittest.TestCase.assertAlmostEqual(self, a.imag, b.imag)
18 else:
19 unittest.TestCase.assertAlmostEqual(self, a.real, b)
20 unittest.TestCase.assertAlmostEqual(self, a.imag, 0.)
21 else:
22 if isinstance(b, complex):
23 unittest.TestCase.assertAlmostEqual(self, a, b.real)
24 unittest.TestCase.assertAlmostEqual(self, 0., b.imag)
25 else:
26 unittest.TestCase.assertAlmostEqual(self, a, b)
Tim Peters0f336042001-03-18 08:21:57 +000027
Walter Dörwald5edd7852003-06-18 14:26:18 +000028 def assertCloseAbs(self, x, y, eps=1e-9):
Antoine Pitroud0a5e9b2014-10-10 23:49:32 +020029 """Return true iff floats x and y "are close"."""
Walter Dörwald5edd7852003-06-18 14:26:18 +000030 # put the one with larger magnitude second
31 if abs(x) > abs(y):
32 x, y = y, x
33 if y == 0:
34 return abs(x) < eps
35 if x == 0:
36 return abs(y) < eps
37 # check that relative difference < eps
Benjamin Peterson5c8da862009-06-30 22:57:08 +000038 self.assertTrue(abs((x-y)/y) < eps)
Tim Petersc5b235c2001-09-06 23:00:21 +000039
Mark Dickinson95bc9802009-04-24 12:46:53 +000040 def assertFloatsAreIdentical(self, x, y):
41 """assert that floats x and y are identical, in the sense that:
42 (1) both x and y are nans, or
43 (2) both x and y are infinities, with the same sign, or
44 (3) both x and y are zeros, with the same sign, or
45 (4) x and y are both finite and nonzero, and x == y
46
47 """
48 msg = 'floats {!r} and {!r} are not identical'
49
50 if isnan(x) or isnan(y):
51 if isnan(x) and isnan(y):
52 return
53 elif x == y:
54 if x != 0.0:
55 return
56 # both zero; check that signs match
57 elif copysign(1.0, x) == copysign(1.0, y):
58 return
59 else:
60 msg += ': zeros have different signs'
61 self.fail(msg.format(x, y))
62
Walter Dörwald5edd7852003-06-18 14:26:18 +000063 def assertClose(self, x, y, eps=1e-9):
Antoine Pitroud0a5e9b2014-10-10 23:49:32 +020064 """Return true iff complexes x and y "are close"."""
Walter Dörwald5edd7852003-06-18 14:26:18 +000065 self.assertCloseAbs(x.real, y.real, eps)
66 self.assertCloseAbs(x.imag, y.imag, eps)
Tim Peters0f336042001-03-18 08:21:57 +000067
Walter Dörwald5edd7852003-06-18 14:26:18 +000068 def check_div(self, x, y):
69 """Compute complex z=x*y, and check that z/x==y and z/y==x."""
70 z = x * y
71 if x != 0:
72 q = z / x
73 self.assertClose(q, y)
Walter Dörwaldb27cca62003-08-05 15:34:34 +000074 q = z.__div__(x)
75 self.assertClose(q, y)
76 q = z.__truediv__(x)
77 self.assertClose(q, y)
Walter Dörwald5edd7852003-06-18 14:26:18 +000078 if y != 0:
79 q = z / y
80 self.assertClose(q, x)
Walter Dörwaldb27cca62003-08-05 15:34:34 +000081 q = z.__div__(y)
82 self.assertClose(q, x)
83 q = z.__truediv__(y)
84 self.assertClose(q, x)
Tim Peters0f336042001-03-18 08:21:57 +000085
Walter Dörwald5edd7852003-06-18 14:26:18 +000086 def test_div(self):
87 simple_real = [float(i) for i in xrange(-5, 6)]
88 simple_complex = [complex(x, y) for x in simple_real for y in simple_real]
89 for x in simple_complex:
90 for y in simple_complex:
91 self.check_div(x, y)
Tim Peters0f336042001-03-18 08:21:57 +000092
Walter Dörwald5edd7852003-06-18 14:26:18 +000093 # A naive complex division algorithm (such as in 2.0) is very prone to
94 # nonsense errors for these (overflows and underflows).
95 self.check_div(complex(1e200, 1e200), 1+0j)
96 self.check_div(complex(1e-200, 1e-200), 1+0j)
Tim Peters0f336042001-03-18 08:21:57 +000097
Walter Dörwald5edd7852003-06-18 14:26:18 +000098 # Just for fun.
99 for i in xrange(100):
100 self.check_div(complex(random(), random()),
101 complex(random(), random()))
Neal Norwitzfc37af82001-12-29 01:02:21 +0000102
Walter Dörwald5edd7852003-06-18 14:26:18 +0000103 self.assertRaises(ZeroDivisionError, complex.__div__, 1+1j, 0+0j)
104 # FIXME: The following currently crashes on Alpha
105 # self.assertRaises(OverflowError, pow, 1e200+1j, 1e200+1j)
Neal Norwitzfc37af82001-12-29 01:02:21 +0000106
Walter Dörwald5edd7852003-06-18 14:26:18 +0000107 def test_truediv(self):
108 self.assertAlmostEqual(complex.__truediv__(2+0j, 1+1j), 1-1j)
109 self.assertRaises(ZeroDivisionError, complex.__truediv__, 1+1j, 0+0j)
Neal Norwitz5a0f0102001-12-29 14:31:46 +0000110
Antoine Pitroud0a5e9b2014-10-10 23:49:32 +0200111 for denom_real, denom_imag in [(0, NAN), (NAN, 0), (NAN, NAN)]:
112 z = complex(0, 0) / complex(denom_real, denom_imag)
113 self.assertTrue(isnan(z.real))
114 self.assertTrue(isnan(z.imag))
115
Walter Dörwald5edd7852003-06-18 14:26:18 +0000116 def test_floordiv(self):
117 self.assertAlmostEqual(complex.__floordiv__(3+0j, 1.5+0j), 2)
118 self.assertRaises(ZeroDivisionError, complex.__floordiv__, 3+0j, 0+0j)
Neal Norwitzfc37af82001-12-29 01:02:21 +0000119
Walter Dörwald5edd7852003-06-18 14:26:18 +0000120 def test_coerce(self):
121 self.assertRaises(OverflowError, complex.__coerce__, 1+1j, 1L<<10000)
Neal Norwitzfc37af82001-12-29 01:02:21 +0000122
Mark Dickinson81336372010-05-30 12:12:25 +0000123 def test_no_implicit_coerce(self):
124 # Python 2.7 removed implicit coercion from the complex type
125 class A(object):
126 def __coerce__(self, other):
127 raise RuntimeError
128 __hash__ = None
129 def __cmp__(self, other):
130 return -1
131
132 a = A()
133 self.assertRaises(TypeError, lambda: a + 2.0j)
134 self.assertTrue(a < 2.0j)
135
Walter Dörwald5edd7852003-06-18 14:26:18 +0000136 def test_richcompare(self):
Mark Dickinson4ca7c3c2010-05-30 13:18:10 +0000137 self.assertEqual(complex.__eq__(1+1j, 1L<<10000), False)
Walter Dörwald5edd7852003-06-18 14:26:18 +0000138 self.assertEqual(complex.__lt__(1+1j, None), NotImplemented)
139 self.assertIs(complex.__eq__(1+1j, 1+1j), True)
140 self.assertIs(complex.__eq__(1+1j, 2+2j), False)
141 self.assertIs(complex.__ne__(1+1j, 1+1j), False)
142 self.assertIs(complex.__ne__(1+1j, 2+2j), True)
143 self.assertRaises(TypeError, complex.__lt__, 1+1j, 2+2j)
144 self.assertRaises(TypeError, complex.__le__, 1+1j, 2+2j)
145 self.assertRaises(TypeError, complex.__gt__, 1+1j, 2+2j)
146 self.assertRaises(TypeError, complex.__ge__, 1+1j, 2+2j)
Tim Peters0f336042001-03-18 08:21:57 +0000147
Mark Dickinson4ca7c3c2010-05-30 13:18:10 +0000148 def test_richcompare_boundaries(self):
149 def check(n, deltas, is_equal, imag = 0.0):
150 for delta in deltas:
151 i = n + delta
152 z = complex(i, imag)
153 self.assertIs(complex.__eq__(z, i), is_equal(delta))
154 self.assertIs(complex.__ne__(z, i), not is_equal(delta))
155 # For IEEE-754 doubles the following should hold:
156 # x in [2 ** (52 + i), 2 ** (53 + i + 1)] -> x mod 2 ** i == 0
157 # where the interval is representable, of course.
158 for i in range(1, 10):
159 pow = 52 + i
160 mult = 2 ** i
161 check(2 ** pow, range(1, 101), lambda delta: delta % mult == 0)
162 check(2 ** pow, range(1, 101), lambda delta: False, float(i))
163 check(2 ** 53, range(-100, 0), lambda delta: True)
164
Walter Dörwald5edd7852003-06-18 14:26:18 +0000165 def test_mod(self):
166 self.assertRaises(ZeroDivisionError, (1+1j).__mod__, 0+0j)
167
Walter Dörwaldf393fc62003-07-15 18:47:27 +0000168 a = 3.33+4.43j
169 try:
170 a % 0
171 except ZeroDivisionError:
172 pass
173 else:
174 self.fail("modulo parama can't be 0")
175
Walter Dörwald5edd7852003-06-18 14:26:18 +0000176 def test_divmod(self):
177 self.assertRaises(ZeroDivisionError, divmod, 1+1j, 0+0j)
178
179 def test_pow(self):
180 self.assertAlmostEqual(pow(1+1j, 0+0j), 1.0)
181 self.assertAlmostEqual(pow(0+0j, 2+0j), 0.0)
182 self.assertRaises(ZeroDivisionError, pow, 0+0j, 1j)
183 self.assertAlmostEqual(pow(1j, -1), 1/1j)
184 self.assertAlmostEqual(pow(1j, 200), 1)
185 self.assertRaises(ValueError, pow, 1+1j, 1+1j, 1+1j)
186
Walter Dörwaldf393fc62003-07-15 18:47:27 +0000187 a = 3.33+4.43j
188 self.assertEqual(a ** 0j, 1)
189 self.assertEqual(a ** 0.+0.j, 1)
190
191 self.assertEqual(3j ** 0j, 1)
192 self.assertEqual(3j ** 0, 1)
193
194 try:
195 0j ** a
196 except ZeroDivisionError:
197 pass
198 else:
199 self.fail("should fail 0.0 to negative or complex power")
200
201 try:
202 0j ** (3-2j)
203 except ZeroDivisionError:
204 pass
205 else:
206 self.fail("should fail 0.0 to negative or complex power")
207
208 # The following is used to exercise certain code paths
209 self.assertEqual(a ** 105, a ** 105)
210 self.assertEqual(a ** -105, a ** -105)
211 self.assertEqual(a ** -30, a ** -30)
212
213 self.assertEqual(0.0j ** 0, 1)
214
215 b = 5.1+2.3j
216 self.assertRaises(ValueError, pow, a, b, 0)
217
Walter Dörwald5edd7852003-06-18 14:26:18 +0000218 def test_boolcontext(self):
219 for i in xrange(100):
Benjamin Peterson5c8da862009-06-30 22:57:08 +0000220 self.assertTrue(complex(random() + 1e-6, random() + 1e-6))
221 self.assertTrue(not complex(0.0, 0.0))
Walter Dörwald5edd7852003-06-18 14:26:18 +0000222
223 def test_conjugate(self):
224 self.assertClose(complex(5.3, 9.8).conjugate(), 5.3-9.8j)
225
226 def test_constructor(self):
227 class OS:
228 def __init__(self, value): self.value = value
229 def __complex__(self): return self.value
230 class NS(object):
231 def __init__(self, value): self.value = value
232 def __complex__(self): return self.value
233 self.assertEqual(complex(OS(1+10j)), 1+10j)
234 self.assertEqual(complex(NS(1+10j)), 1+10j)
235 self.assertRaises(TypeError, complex, OS(None))
236 self.assertRaises(TypeError, complex, NS(None))
237
238 self.assertAlmostEqual(complex("1+10j"), 1+10j)
239 self.assertAlmostEqual(complex(10), 10+0j)
240 self.assertAlmostEqual(complex(10.0), 10+0j)
241 self.assertAlmostEqual(complex(10L), 10+0j)
242 self.assertAlmostEqual(complex(10+0j), 10+0j)
243 self.assertAlmostEqual(complex(1,10), 1+10j)
244 self.assertAlmostEqual(complex(1,10L), 1+10j)
245 self.assertAlmostEqual(complex(1,10.0), 1+10j)
246 self.assertAlmostEqual(complex(1L,10), 1+10j)
247 self.assertAlmostEqual(complex(1L,10L), 1+10j)
248 self.assertAlmostEqual(complex(1L,10.0), 1+10j)
249 self.assertAlmostEqual(complex(1.0,10), 1+10j)
250 self.assertAlmostEqual(complex(1.0,10L), 1+10j)
251 self.assertAlmostEqual(complex(1.0,10.0), 1+10j)
252 self.assertAlmostEqual(complex(3.14+0j), 3.14+0j)
253 self.assertAlmostEqual(complex(3.14), 3.14+0j)
254 self.assertAlmostEqual(complex(314), 314.0+0j)
255 self.assertAlmostEqual(complex(314L), 314.0+0j)
256 self.assertAlmostEqual(complex(3.14+0j, 0j), 3.14+0j)
257 self.assertAlmostEqual(complex(3.14, 0.0), 3.14+0j)
258 self.assertAlmostEqual(complex(314, 0), 314.0+0j)
259 self.assertAlmostEqual(complex(314L, 0L), 314.0+0j)
260 self.assertAlmostEqual(complex(0j, 3.14j), -3.14+0j)
261 self.assertAlmostEqual(complex(0.0, 3.14j), -3.14+0j)
262 self.assertAlmostEqual(complex(0j, 3.14), 3.14j)
263 self.assertAlmostEqual(complex(0.0, 3.14), 3.14j)
264 self.assertAlmostEqual(complex("1"), 1+0j)
265 self.assertAlmostEqual(complex("1j"), 1j)
266 self.assertAlmostEqual(complex(), 0)
267 self.assertAlmostEqual(complex("-1"), -1)
268 self.assertAlmostEqual(complex("+1"), +1)
Collin Wintere38051d2007-03-09 20:33:07 +0000269 self.assertAlmostEqual(complex("(1+2j)"), 1+2j)
270 self.assertAlmostEqual(complex("(1.3+2.2j)"), 1.3+2.2j)
Mark Dickinson95bc9802009-04-24 12:46:53 +0000271 self.assertAlmostEqual(complex("3.14+1J"), 3.14+1j)
272 self.assertAlmostEqual(complex(" ( +3.14-6J )"), 3.14-6j)
273 self.assertAlmostEqual(complex(" ( +3.14-J )"), 3.14-1j)
274 self.assertAlmostEqual(complex(" ( +3.14+j )"), 3.14+1j)
275 self.assertAlmostEqual(complex("J"), 1j)
276 self.assertAlmostEqual(complex("( j )"), 1j)
277 self.assertAlmostEqual(complex("+J"), 1j)
278 self.assertAlmostEqual(complex("( -j)"), -1j)
279 self.assertAlmostEqual(complex('1e-500'), 0.0 + 0.0j)
280 self.assertAlmostEqual(complex('-1e-500j'), 0.0 - 0.0j)
281 self.assertAlmostEqual(complex('-1e-500+1e-500j'), -0.0 + 0.0j)
Walter Dörwald5edd7852003-06-18 14:26:18 +0000282
283 class complex2(complex): pass
284 self.assertAlmostEqual(complex(complex2(1+1j)), 1+1j)
285 self.assertAlmostEqual(complex(real=17, imag=23), 17+23j)
286 self.assertAlmostEqual(complex(real=17+23j), 17+23j)
287 self.assertAlmostEqual(complex(real=17+23j, imag=23), 17+46j)
288 self.assertAlmostEqual(complex(real=1+2j, imag=3+4j), -3+5j)
289
Guido van Rossum715ec182007-11-27 22:38:36 +0000290 # check that the sign of a zero in the real or imaginary part
291 # is preserved when constructing from two floats. (These checks
292 # are harmless on systems without support for signed zeros.)
293 def split_zeros(x):
294 """Function that produces different results for 0. and -0."""
295 return atan2(x, -1.)
296
297 self.assertEqual(split_zeros(complex(1., 0.).imag), split_zeros(0.))
298 self.assertEqual(split_zeros(complex(1., -0.).imag), split_zeros(-0.))
299 self.assertEqual(split_zeros(complex(0., 1.).real), split_zeros(0.))
300 self.assertEqual(split_zeros(complex(-0., 1.).real), split_zeros(-0.))
301
Walter Dörwald5edd7852003-06-18 14:26:18 +0000302 c = 3.14 + 1j
Benjamin Peterson5c8da862009-06-30 22:57:08 +0000303 self.assertTrue(complex(c) is c)
Walter Dörwald5edd7852003-06-18 14:26:18 +0000304 del c
305
306 self.assertRaises(TypeError, complex, "1", "1")
307 self.assertRaises(TypeError, complex, 1, "1")
308
Walter Dörwald5edd7852003-06-18 14:26:18 +0000309 if test_support.have_unicode:
310 self.assertEqual(complex(unicode(" 3.14+J ")), 3.14+1j)
311
312 # SF bug 543840: complex(string) accepts strings with \0
313 # Fixed in 2.3.
314 self.assertRaises(ValueError, complex, '1+1j\0j')
315
316 self.assertRaises(TypeError, int, 5+3j)
317 self.assertRaises(TypeError, long, 5+3j)
318 self.assertRaises(TypeError, float, 5+3j)
319 self.assertRaises(ValueError, complex, "")
320 self.assertRaises(TypeError, complex, None)
321 self.assertRaises(ValueError, complex, "\0")
Collin Wintere38051d2007-03-09 20:33:07 +0000322 self.assertRaises(ValueError, complex, "3\09")
Walter Dörwald5edd7852003-06-18 14:26:18 +0000323 self.assertRaises(TypeError, complex, "1", "2")
324 self.assertRaises(TypeError, complex, "1", 42)
325 self.assertRaises(TypeError, complex, 1, "2")
326 self.assertRaises(ValueError, complex, "1+")
327 self.assertRaises(ValueError, complex, "1+1j+1j")
328 self.assertRaises(ValueError, complex, "--")
Collin Wintere38051d2007-03-09 20:33:07 +0000329 self.assertRaises(ValueError, complex, "(1+2j")
330 self.assertRaises(ValueError, complex, "1+2j)")
331 self.assertRaises(ValueError, complex, "1+(2j)")
332 self.assertRaises(ValueError, complex, "(1+2j)123")
Walter Dörwald5edd7852003-06-18 14:26:18 +0000333 if test_support.have_unicode:
Walter Dörwald5edd7852003-06-18 14:26:18 +0000334 self.assertRaises(ValueError, complex, unicode("x"))
Mark Dickinson95bc9802009-04-24 12:46:53 +0000335 self.assertRaises(ValueError, complex, "1j+2")
336 self.assertRaises(ValueError, complex, "1e1ej")
337 self.assertRaises(ValueError, complex, "1e++1ej")
338 self.assertRaises(ValueError, complex, ")1+2j(")
339 # the following three are accepted by Python 2.6
340 self.assertRaises(ValueError, complex, "1..1j")
341 self.assertRaises(ValueError, complex, "1.11.1j")
342 self.assertRaises(ValueError, complex, "1e1.1j")
Walter Dörwald5edd7852003-06-18 14:26:18 +0000343
Mark Dickinsonc04c7c52009-10-26 22:28:14 +0000344 if test_support.have_unicode:
345 # check that complex accepts long unicode strings
346 self.assertEqual(type(complex(unicode("1"*500))), complex)
347
Walter Dörwald5edd7852003-06-18 14:26:18 +0000348 class EvilExc(Exception):
Tim Peters478c1052003-06-29 05:46:54 +0000349 pass
Walter Dörwald5edd7852003-06-18 14:26:18 +0000350
351 class evilcomplex:
352 def __complex__(self):
353 raise EvilExc
354
355 self.assertRaises(EvilExc, complex, evilcomplex())
356
357 class float2:
358 def __init__(self, value):
359 self.value = value
360 def __float__(self):
361 return self.value
362
363 self.assertAlmostEqual(complex(float2(42.)), 42)
364 self.assertAlmostEqual(complex(real=float2(17.), imag=float2(23.)), 17+23j)
365 self.assertRaises(TypeError, complex, float2(None))
366
Brett Cannonc3647ac2005-04-26 03:45:26 +0000367 class complex0(complex):
368 """Test usage of __complex__() when inheriting from 'complex'"""
369 def __complex__(self):
370 return 42j
371
372 class complex1(complex):
373 """Test usage of __complex__() with a __new__() method"""
374 def __new__(self, value=0j):
375 return complex.__new__(self, 2*value)
376 def __complex__(self):
377 return self
378
379 class complex2(complex):
380 """Make sure that __complex__() calls fail if anything other than a
381 complex is returned"""
382 def __complex__(self):
383 return None
384
385 self.assertAlmostEqual(complex(complex0(1j)), 42j)
386 self.assertAlmostEqual(complex(complex1(1j)), 2j)
387 self.assertRaises(TypeError, complex, complex2(1j))
388
Mark Dickinson82b34c52010-02-21 12:57:35 +0000389 def test_subclass(self):
390 class xcomplex(complex):
391 def __add__(self,other):
392 return xcomplex(complex(self) + other)
393 __radd__ = __add__
394
395 def __sub__(self,other):
396 return xcomplex(complex(self) + other)
397 __rsub__ = __sub__
398
399 def __mul__(self,other):
400 return xcomplex(complex(self) * other)
401 __rmul__ = __mul__
402
403 def __div__(self,other):
404 return xcomplex(complex(self) / other)
405
406 def __rdiv__(self,other):
407 return xcomplex(other / complex(self))
408
409 __truediv__ = __div__
410 __rtruediv__ = __rdiv__
411
412 def __floordiv__(self,other):
413 return xcomplex(complex(self) // other)
414
415 def __rfloordiv__(self,other):
416 return xcomplex(other // complex(self))
417
418 def __pow__(self,other):
419 return xcomplex(complex(self) ** other)
420
421 def __rpow__(self,other):
422 return xcomplex(other ** complex(self) )
423
424 def __mod__(self,other):
425 return xcomplex(complex(self) % other)
426
427 def __rmod__(self,other):
428 return xcomplex(other % complex(self))
429
430 infix_binops = ('+', '-', '*', '**', '%', '//', '/')
431 xcomplex_values = (xcomplex(1), xcomplex(123.0),
432 xcomplex(-10+2j), xcomplex(3+187j),
433 xcomplex(3-78j))
434 test_values = (1, 123.0, 10-19j, xcomplex(1+2j),
435 xcomplex(1+87j), xcomplex(10+90j))
436
437 for op in infix_binops:
438 for x in xcomplex_values:
439 for y in test_values:
440 a = 'x %s y' % op
441 b = 'y %s x' % op
442 self.assertTrue(type(eval(a)) is type(eval(b)) is xcomplex)
443
Walter Dörwald5edd7852003-06-18 14:26:18 +0000444 def test_hash(self):
445 for x in xrange(-30, 30):
446 self.assertEqual(hash(x), hash(complex(x, 0)))
447 x /= 3.0 # now check against floating point
448 self.assertEqual(hash(x), hash(complex(x, 0.)))
449
450 def test_abs(self):
451 nums = [complex(x/3., y/7.) for x in xrange(-9,9) for y in xrange(-9,9)]
452 for num in nums:
453 self.assertAlmostEqual((num.real**2 + num.imag**2) ** 0.5, abs(num))
454
455 def test_repr(self):
456 self.assertEqual(repr(1+6j), '(1+6j)')
Martin v. Löwis70aa1f22004-08-22 21:09:15 +0000457 self.assertEqual(repr(1-6j), '(1-6j)')
Walter Dörwald5edd7852003-06-18 14:26:18 +0000458
Georg Brandl9e281072005-09-17 07:51:15 +0000459 self.assertNotEqual(repr(-(1+0j)), '(-1+-0j)')
460
Collin Wintere38051d2007-03-09 20:33:07 +0000461 self.assertEqual(1-6j,complex(repr(1-6j)))
462 self.assertEqual(1+6j,complex(repr(1+6j)))
463 self.assertEqual(-6j,complex(repr(-6j)))
464 self.assertEqual(6j,complex(repr(6j)))
465
Mark Dickinson95bc9802009-04-24 12:46:53 +0000466 self.assertEqual(repr(complex(1., INF)), "(1+infj)")
467 self.assertEqual(repr(complex(1., -INF)), "(1-infj)")
Christian Heimes2f0da532008-02-15 06:57:08 +0000468 self.assertEqual(repr(complex(INF, 1)), "(inf+1j)")
Mark Dickinson95bc9802009-04-24 12:46:53 +0000469 self.assertEqual(repr(complex(-INF, INF)), "(-inf+infj)")
Christian Heimes2f0da532008-02-15 06:57:08 +0000470 self.assertEqual(repr(complex(NAN, 1)), "(nan+1j)")
Mark Dickinson95bc9802009-04-24 12:46:53 +0000471 self.assertEqual(repr(complex(1, NAN)), "(1+nanj)")
472 self.assertEqual(repr(complex(NAN, NAN)), "(nan+nanj)")
Christian Heimes2f0da532008-02-15 06:57:08 +0000473
Mark Dickinson95bc9802009-04-24 12:46:53 +0000474 self.assertEqual(repr(complex(0, INF)), "infj")
475 self.assertEqual(repr(complex(0, -INF)), "-infj")
476 self.assertEqual(repr(complex(0, NAN)), "nanj")
Christian Heimes2f0da532008-02-15 06:57:08 +0000477
Walter Dörwald5edd7852003-06-18 14:26:18 +0000478 def test_neg(self):
479 self.assertEqual(-(1+6j), -1-6j)
480
Walter Dörwaldf393fc62003-07-15 18:47:27 +0000481 def test_file(self):
482 a = 3.33+4.43j
483 b = 5.1+2.3j
484
485 fo = None
486 try:
487 fo = open(test_support.TESTFN, "wb")
488 print >>fo, a, b
489 fo.close()
490 fo = open(test_support.TESTFN, "rb")
491 self.assertEqual(fo.read(), "%s %s\n" % (a, b))
492 finally:
493 if (fo is not None) and (not fo.closed):
494 fo.close()
Florent Xicluna6257a7b2010-03-31 22:01:03 +0000495 test_support.unlink(test_support.TESTFN)
Walter Dörwald5edd7852003-06-18 14:26:18 +0000496
Alexandre Vassalotti80af6da2008-06-04 20:41:44 +0000497 def test_getnewargs(self):
498 self.assertEqual((1+2j).__getnewargs__(), (1.0, 2.0))
499 self.assertEqual((1-2j).__getnewargs__(), (1.0, -2.0))
500 self.assertEqual((2j).__getnewargs__(), (0.0, 2.0))
501 self.assertEqual((-0j).__getnewargs__(), (0.0, -0.0))
502 self.assertEqual(complex(0, INF).__getnewargs__(), (0.0, INF))
503 self.assertEqual(complex(INF, 0).__getnewargs__(), (INF, 0.0))
504
Mark Dickinson105be772008-01-31 22:17:37 +0000505 if float.__getformat__("double").startswith("IEEE"):
506 def test_plus_minus_0j(self):
507 # test that -0j and 0j literals are not identified
508 z1, z2 = 0j, -0j
Ezio Melotti2623a372010-11-21 13:34:58 +0000509 self.assertEqual(atan2(z1.imag, -1.), atan2(0., -1.))
510 self.assertEqual(atan2(z2.imag, -1.), atan2(-0., -1.))
Mark Dickinson105be772008-01-31 22:17:37 +0000511
Mark Dickinson95bc9802009-04-24 12:46:53 +0000512 @unittest.skipUnless(float.__getformat__("double").startswith("IEEE"),
513 "test requires IEEE 754 doubles")
Mark Dickinsona4e0efa2009-05-20 18:43:07 +0000514 def test_overflow(self):
515 self.assertEqual(complex("1e500"), complex(INF, 0.0))
516 self.assertEqual(complex("-1e500j"), complex(0.0, -INF))
517 self.assertEqual(complex("-1e500+1.8e308j"), complex(-INF, INF))
518
519 @unittest.skipUnless(float.__getformat__("double").startswith("IEEE"),
520 "test requires IEEE 754 doubles")
Mark Dickinson95bc9802009-04-24 12:46:53 +0000521 def test_repr_roundtrip(self):
Mark Dickinson0a6501b2009-04-25 09:47:00 +0000522 vals = [0.0, 1e-500, 1e-315, 1e-200, 0.0123, 3.1415, 1e50, INF, NAN]
Mark Dickinson95bc9802009-04-24 12:46:53 +0000523 vals += [-v for v in vals]
Mark Dickinson0a6501b2009-04-25 09:47:00 +0000524
525 # complex(repr(z)) should recover z exactly, even for complex
526 # numbers involving an infinity, nan, or negative zero
Mark Dickinson95bc9802009-04-24 12:46:53 +0000527 for x in vals:
528 for y in vals:
529 z = complex(x, y)
530 roundtrip = complex(repr(z))
531 self.assertFloatsAreIdentical(z.real, roundtrip.real)
532 self.assertFloatsAreIdentical(z.imag, roundtrip.imag)
533
Mark Dickinson0a6501b2009-04-25 09:47:00 +0000534 # if we predefine some constants, then eval(repr(z)) should
535 # also work, except that it might change the sign of zeros
536 inf, nan = float('inf'), float('nan')
537 infj, nanj = complex(0.0, inf), complex(0.0, nan)
538 for x in vals:
539 for y in vals:
540 z = complex(x, y)
541 roundtrip = eval(repr(z))
542 # adding 0.0 has no effect beside changing -0.0 to 0.0
543 self.assertFloatsAreIdentical(0.0 + z.real,
544 0.0 + roundtrip.real)
545 self.assertFloatsAreIdentical(0.0 + z.imag,
546 0.0 + roundtrip.imag)
547
Eric Smith9139cc62009-04-30 00:58:58 +0000548 def test_format(self):
549 # empty format string is same as str()
550 self.assertEqual(format(1+3j, ''), str(1+3j))
551 self.assertEqual(format(1.5+3.5j, ''), str(1.5+3.5j))
552 self.assertEqual(format(3j, ''), str(3j))
553 self.assertEqual(format(3.2j, ''), str(3.2j))
554 self.assertEqual(format(3+0j, ''), str(3+0j))
555 self.assertEqual(format(3.2+0j, ''), str(3.2+0j))
Mark Dickinson0a6501b2009-04-25 09:47:00 +0000556
Eric Smitha985a3a2009-05-05 18:26:08 +0000557 # empty presentation type should still be analogous to str,
558 # even when format string is nonempty (issue #5920).
559 self.assertEqual(format(3.2+0j, '-'), str(3.2+0j))
560 self.assertEqual(format(3.2+0j, '<'), str(3.2+0j))
561 z = 4/7. - 100j/7.
562 self.assertEqual(format(z, ''), str(z))
563 self.assertEqual(format(z, '-'), str(z))
564 self.assertEqual(format(z, '<'), str(z))
565 self.assertEqual(format(z, '10'), str(z))
Mark Dickinsonaad57bd2010-08-01 10:45:15 +0000566 z = complex(0.0, 3.0)
567 self.assertEqual(format(z, ''), str(z))
568 self.assertEqual(format(z, '-'), str(z))
569 self.assertEqual(format(z, '<'), str(z))
570 self.assertEqual(format(z, '2'), str(z))
571 z = complex(-0.0, 2.0)
572 self.assertEqual(format(z, ''), str(z))
573 self.assertEqual(format(z, '-'), str(z))
574 self.assertEqual(format(z, '<'), str(z))
575 self.assertEqual(format(z, '3'), str(z))
Eric Smitha985a3a2009-05-05 18:26:08 +0000576
Eric Smith9139cc62009-04-30 00:58:58 +0000577 self.assertEqual(format(1+3j, 'g'), '1+3j')
578 self.assertEqual(format(3j, 'g'), '0+3j')
579 self.assertEqual(format(1.5+3.5j, 'g'), '1.5+3.5j')
580
581 self.assertEqual(format(1.5+3.5j, '+g'), '+1.5+3.5j')
582 self.assertEqual(format(1.5-3.5j, '+g'), '+1.5-3.5j')
583 self.assertEqual(format(1.5-3.5j, '-g'), '1.5-3.5j')
584 self.assertEqual(format(1.5+3.5j, ' g'), ' 1.5+3.5j')
585 self.assertEqual(format(1.5-3.5j, ' g'), ' 1.5-3.5j')
586 self.assertEqual(format(-1.5+3.5j, ' g'), '-1.5+3.5j')
587 self.assertEqual(format(-1.5-3.5j, ' g'), '-1.5-3.5j')
588
589 self.assertEqual(format(-1.5-3.5e-20j, 'g'), '-1.5-3.5e-20j')
590 self.assertEqual(format(-1.5-3.5j, 'f'), '-1.500000-3.500000j')
591 self.assertEqual(format(-1.5-3.5j, 'F'), '-1.500000-3.500000j')
592 self.assertEqual(format(-1.5-3.5j, 'e'), '-1.500000e+00-3.500000e+00j')
593 self.assertEqual(format(-1.5-3.5j, '.2e'), '-1.50e+00-3.50e+00j')
594 self.assertEqual(format(-1.5-3.5j, '.2E'), '-1.50E+00-3.50E+00j')
595 self.assertEqual(format(-1.5e10-3.5e5j, '.2G'), '-1.5E+10-3.5E+05j')
596
597 self.assertEqual(format(1.5+3j, '<20g'), '1.5+3j ')
598 self.assertEqual(format(1.5+3j, '*<20g'), '1.5+3j**************')
599 self.assertEqual(format(1.5+3j, '>20g'), ' 1.5+3j')
600 self.assertEqual(format(1.5+3j, '^20g'), ' 1.5+3j ')
601 self.assertEqual(format(1.5+3j, '<20'), '(1.5+3j) ')
602 self.assertEqual(format(1.5+3j, '>20'), ' (1.5+3j)')
603 self.assertEqual(format(1.5+3j, '^20'), ' (1.5+3j) ')
604 self.assertEqual(format(1.123-3.123j, '^20.2'), ' (1.1-3.1j) ')
605
Eric Smithf32d4ac2010-02-22 18:33:47 +0000606 self.assertEqual(format(1.5+3j, '20.2f'), ' 1.50+3.00j')
607 self.assertEqual(format(1.5+3j, '>20.2f'), ' 1.50+3.00j')
Eric Smith9139cc62009-04-30 00:58:58 +0000608 self.assertEqual(format(1.5+3j, '<20.2f'), '1.50+3.00j ')
609 self.assertEqual(format(1.5e20+3j, '<20.2f'), '150000000000000000000.00+3.00j')
610 self.assertEqual(format(1.5e20+3j, '>40.2f'), ' 150000000000000000000.00+3.00j')
611 self.assertEqual(format(1.5e20+3j, '^40,.2f'), ' 150,000,000,000,000,000,000.00+3.00j ')
612 self.assertEqual(format(1.5e21+3j, '^40,.2f'), ' 1,500,000,000,000,000,000,000.00+3.00j ')
613 self.assertEqual(format(1.5e21+3000j, ',.2f'), '1,500,000,000,000,000,000,000.00+3,000.00j')
614
615 # alternate is invalid
616 self.assertRaises(ValueError, (1.5+0.5j).__format__, '#f')
617
618 # zero padding is invalid
619 self.assertRaises(ValueError, (1.5+0.5j).__format__, '010f')
620
621 # '=' alignment is invalid
622 self.assertRaises(ValueError, (1.5+3j).__format__, '=20')
623
624 # integer presentation types are an error
625 for t in 'bcdoxX':
626 self.assertRaises(ValueError, (1.5+0.5j).__format__, t)
627
628 # make sure everything works in ''.format()
629 self.assertEqual('*{0:.3f}*'.format(3.14159+2.71828j), '*3.142+2.718j*')
Mark Dickinson95bc9802009-04-24 12:46:53 +0000630
Eric Smithc4ab8332009-11-29 17:40:57 +0000631 # issue 3382: 'f' and 'F' with inf's and nan's
632 self.assertEqual('{0:f}'.format(INF+0j), 'inf+0.000000j')
633 self.assertEqual('{0:F}'.format(INF+0j), 'INF+0.000000j')
634 self.assertEqual('{0:f}'.format(-INF+0j), '-inf+0.000000j')
635 self.assertEqual('{0:F}'.format(-INF+0j), '-INF+0.000000j')
636 self.assertEqual('{0:f}'.format(complex(INF, INF)), 'inf+infj')
637 self.assertEqual('{0:F}'.format(complex(INF, INF)), 'INF+INFj')
638 self.assertEqual('{0:f}'.format(complex(INF, -INF)), 'inf-infj')
639 self.assertEqual('{0:F}'.format(complex(INF, -INF)), 'INF-INFj')
640 self.assertEqual('{0:f}'.format(complex(-INF, INF)), '-inf+infj')
641 self.assertEqual('{0:F}'.format(complex(-INF, INF)), '-INF+INFj')
642 self.assertEqual('{0:f}'.format(complex(-INF, -INF)), '-inf-infj')
643 self.assertEqual('{0:F}'.format(complex(-INF, -INF)), '-INF-INFj')
644
645 self.assertEqual('{0:f}'.format(complex(NAN, 0)), 'nan+0.000000j')
646 self.assertEqual('{0:F}'.format(complex(NAN, 0)), 'NAN+0.000000j')
647 self.assertEqual('{0:f}'.format(complex(NAN, NAN)), 'nan+nanj')
648 self.assertEqual('{0:F}'.format(complex(NAN, NAN)), 'NAN+NANj')
649
Walter Dörwald5edd7852003-06-18 14:26:18 +0000650def test_main():
Florent Xicluna6257a7b2010-03-31 22:01:03 +0000651 with test_support.check_warnings(("complex divmod.., // and % are "
652 "deprecated", DeprecationWarning)):
653 test_support.run_unittest(ComplexTest)
Walter Dörwald5edd7852003-06-18 14:26:18 +0000654
655if __name__ == "__main__":
656 test_main()