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Raymond Hettinger40f62172002-12-29 23:03:38 +00001#!/usr/bin/env python
2
3import unittest
Tim Peters46c04e12002-05-05 20:40:00 +00004import random
Raymond Hettinger40f62172002-12-29 23:03:38 +00005import time
Raymond Hettinger5f078ff2003-06-24 20:29:04 +00006import pickle
Raymond Hettinger2f726e92003-10-05 09:09:15 +00007import warnings
Mark Dickinsonfef6b132008-07-30 16:20:10 +00008from math import log, exp, sqrt, pi, fsum as msum
Raymond Hettinger40f62172002-12-29 23:03:38 +00009from test import test_support
Tim Peters46c04e12002-05-05 20:40:00 +000010
Raymond Hettinger40f62172002-12-29 23:03:38 +000011class TestBasicOps(unittest.TestCase):
12 # Superclass with tests common to all generators.
13 # Subclasses must arrange for self.gen to retrieve the Random instance
14 # to be tested.
Tim Peters46c04e12002-05-05 20:40:00 +000015
Raymond Hettinger40f62172002-12-29 23:03:38 +000016 def randomlist(self, n):
17 """Helper function to make a list of random numbers"""
18 return [self.gen.random() for i in xrange(n)]
Tim Peters46c04e12002-05-05 20:40:00 +000019
Raymond Hettinger40f62172002-12-29 23:03:38 +000020 def test_autoseed(self):
21 self.gen.seed()
22 state1 = self.gen.getstate()
Raymond Hettinger3081d592003-08-09 18:30:57 +000023 time.sleep(0.1)
Raymond Hettinger40f62172002-12-29 23:03:38 +000024 self.gen.seed() # diffent seeds at different times
25 state2 = self.gen.getstate()
26 self.assertNotEqual(state1, state2)
Tim Peters46c04e12002-05-05 20:40:00 +000027
Raymond Hettinger40f62172002-12-29 23:03:38 +000028 def test_saverestore(self):
29 N = 1000
30 self.gen.seed()
31 state = self.gen.getstate()
32 randseq = self.randomlist(N)
33 self.gen.setstate(state) # should regenerate the same sequence
34 self.assertEqual(randseq, self.randomlist(N))
35
36 def test_seedargs(self):
37 for arg in [None, 0, 0L, 1, 1L, -1, -1L, 10**20, -(10**20),
38 3.14, 1+2j, 'a', tuple('abc')]:
39 self.gen.seed(arg)
40 for arg in [range(3), dict(one=1)]:
41 self.assertRaises(TypeError, self.gen.seed, arg)
Raymond Hettinger58335872004-07-09 14:26:18 +000042 self.assertRaises(TypeError, self.gen.seed, 1, 2)
43 self.assertRaises(TypeError, type(self.gen), [])
Raymond Hettinger40f62172002-12-29 23:03:38 +000044
45 def test_jumpahead(self):
46 self.gen.seed()
47 state1 = self.gen.getstate()
48 self.gen.jumpahead(100)
49 state2 = self.gen.getstate() # s/b distinct from state1
50 self.assertNotEqual(state1, state2)
51 self.gen.jumpahead(100)
52 state3 = self.gen.getstate() # s/b distinct from state2
53 self.assertNotEqual(state2, state3)
54
Ezio Melottif613f352010-08-02 18:10:09 +000055 with test_support._check_py3k_warnings(quiet=True):
56 self.assertRaises(TypeError, self.gen.jumpahead) # needs an arg
57 self.assertRaises(TypeError, self.gen.jumpahead, "ick") # wrong type
58 self.assertRaises(TypeError, self.gen.jumpahead, 2.3) # wrong type
59 self.assertRaises(TypeError, self.gen.jumpahead, 2, 3) # too many
Raymond Hettinger40f62172002-12-29 23:03:38 +000060
61 def test_sample(self):
62 # For the entire allowable range of 0 <= k <= N, validate that
63 # the sample is of the correct length and contains only unique items
64 N = 100
65 population = xrange(N)
66 for k in xrange(N+1):
67 s = self.gen.sample(population, k)
68 self.assertEqual(len(s), k)
Raymond Hettingera690a992003-11-16 16:17:49 +000069 uniq = set(s)
Raymond Hettinger40f62172002-12-29 23:03:38 +000070 self.assertEqual(len(uniq), k)
Raymond Hettingera690a992003-11-16 16:17:49 +000071 self.failUnless(uniq <= set(population))
Raymond Hettinger8ec78812003-01-04 05:55:11 +000072 self.assertEqual(self.gen.sample([], 0), []) # test edge case N==k==0
Raymond Hettinger40f62172002-12-29 23:03:38 +000073
Raymond Hettinger7b0cf762003-01-17 17:23:23 +000074 def test_sample_distribution(self):
75 # For the entire allowable range of 0 <= k <= N, validate that
76 # sample generates all possible permutations
77 n = 5
78 pop = range(n)
79 trials = 10000 # large num prevents false negatives without slowing normal case
80 def factorial(n):
Raymond Hettinger105b0842003-02-04 05:47:30 +000081 return reduce(int.__mul__, xrange(1, n), 1)
Raymond Hettinger7b0cf762003-01-17 17:23:23 +000082 for k in xrange(n):
Raymond Hettingerffdb8bb2004-09-27 15:29:05 +000083 expected = factorial(n) // factorial(n-k)
Raymond Hettinger7b0cf762003-01-17 17:23:23 +000084 perms = {}
85 for i in xrange(trials):
86 perms[tuple(self.gen.sample(pop, k))] = None
87 if len(perms) == expected:
88 break
89 else:
90 self.fail()
91
Raymond Hettinger66d09f12003-09-06 04:25:54 +000092 def test_sample_inputs(self):
93 # SF bug #801342 -- population can be any iterable defining __len__()
Raymond Hettingera690a992003-11-16 16:17:49 +000094 self.gen.sample(set(range(20)), 2)
Raymond Hettinger66d09f12003-09-06 04:25:54 +000095 self.gen.sample(range(20), 2)
96 self.gen.sample(xrange(20), 2)
Raymond Hettinger66d09f12003-09-06 04:25:54 +000097 self.gen.sample(str('abcdefghijklmnopqrst'), 2)
98 self.gen.sample(tuple('abcdefghijklmnopqrst'), 2)
Tim Petersc17976e2006-04-01 00:26:53 +000099
100 def test_sample_on_dicts(self):
101 self.gen.sample(dict.fromkeys('abcdefghijklmnopqrst'), 2)
102
Raymond Hettinger3c3346d2006-03-29 09:13:13 +0000103 # SF bug #1460340 -- random.sample can raise KeyError
104 a = dict.fromkeys(range(10)+range(10,100,2)+range(100,110))
Tim Petersc17976e2006-04-01 00:26:53 +0000105 self.gen.sample(a, 3)
106
107 # A followup to bug #1460340: sampling from a dict could return
108 # a subset of its keys or of its values, depending on the size of
109 # the subset requested.
110 N = 30
111 d = dict((i, complex(i, i)) for i in xrange(N))
112 for k in xrange(N+1):
113 samp = self.gen.sample(d, k)
114 # Verify that we got ints back (keys); the values are complex.
115 for x in samp:
116 self.assert_(type(x) is int)
117 samp.sort()
118 self.assertEqual(samp, range(N))
Raymond Hettinger66d09f12003-09-06 04:25:54 +0000119
Raymond Hettinger40f62172002-12-29 23:03:38 +0000120 def test_gauss(self):
121 # Ensure that the seed() method initializes all the hidden state. In
122 # particular, through 2.2.1 it failed to reset a piece of state used
123 # by (and only by) the .gauss() method.
124
125 for seed in 1, 12, 123, 1234, 12345, 123456, 654321:
126 self.gen.seed(seed)
127 x1 = self.gen.random()
128 y1 = self.gen.gauss(0, 1)
129
130 self.gen.seed(seed)
131 x2 = self.gen.random()
132 y2 = self.gen.gauss(0, 1)
133
134 self.assertEqual(x1, x2)
135 self.assertEqual(y1, y2)
136
Raymond Hettinger5f078ff2003-06-24 20:29:04 +0000137 def test_pickling(self):
138 state = pickle.dumps(self.gen)
139 origseq = [self.gen.random() for i in xrange(10)]
140 newgen = pickle.loads(state)
141 restoredseq = [newgen.random() for i in xrange(10)]
142 self.assertEqual(origseq, restoredseq)
Raymond Hettinger40f62172002-12-29 23:03:38 +0000143
Martin v. Löwis6b449f42007-12-03 19:20:02 +0000144 def test_bug_1727780(self):
145 # verify that version-2-pickles can be loaded
146 # fine, whether they are created on 32-bit or 64-bit
147 # platforms, and that version-3-pickles load fine.
148 files = [("randv2_32.pck", 780),
149 ("randv2_64.pck", 866),
150 ("randv3.pck", 343)]
151 for file, value in files:
152 f = open(test_support.findfile(file),"rb")
153 r = pickle.load(f)
154 f.close()
155 self.assertEqual(r.randrange(1000), value)
156
Raymond Hettinger40f62172002-12-29 23:03:38 +0000157class WichmannHill_TestBasicOps(TestBasicOps):
158 gen = random.WichmannHill()
159
Raymond Hettinger58335872004-07-09 14:26:18 +0000160 def test_setstate_first_arg(self):
161 self.assertRaises(ValueError, self.gen.setstate, (2, None, None))
162
Raymond Hettinger40f62172002-12-29 23:03:38 +0000163 def test_strong_jumpahead(self):
164 # tests that jumpahead(n) semantics correspond to n calls to random()
165 N = 1000
166 s = self.gen.getstate()
167 self.gen.jumpahead(N)
168 r1 = self.gen.random()
169 # now do it the slow way
170 self.gen.setstate(s)
171 for i in xrange(N):
172 self.gen.random()
173 r2 = self.gen.random()
174 self.assertEqual(r1, r2)
175
176 def test_gauss_with_whseed(self):
177 # Ensure that the seed() method initializes all the hidden state. In
178 # particular, through 2.2.1 it failed to reset a piece of state used
179 # by (and only by) the .gauss() method.
180
181 for seed in 1, 12, 123, 1234, 12345, 123456, 654321:
182 self.gen.whseed(seed)
183 x1 = self.gen.random()
184 y1 = self.gen.gauss(0, 1)
185
186 self.gen.whseed(seed)
187 x2 = self.gen.random()
188 y2 = self.gen.gauss(0, 1)
189
190 self.assertEqual(x1, x2)
191 self.assertEqual(y1, y2)
192
Raymond Hettinger2f726e92003-10-05 09:09:15 +0000193 def test_bigrand(self):
194 # Verify warnings are raised when randrange is too large for random()
Brett Cannon672237d2008-09-09 00:49:16 +0000195 with warnings.catch_warnings():
Brett Cannon6d9520c2006-12-13 23:09:53 +0000196 warnings.filterwarnings("error", "Underlying random")
197 self.assertRaises(UserWarning, self.gen.randrange, 2**60)
Raymond Hettinger2f726e92003-10-05 09:09:15 +0000198
Raymond Hettinger23f12412004-09-13 22:23:21 +0000199class SystemRandom_TestBasicOps(TestBasicOps):
200 gen = random.SystemRandom()
Raymond Hettinger356a4592004-08-30 06:14:31 +0000201
202 def test_autoseed(self):
203 # Doesn't need to do anything except not fail
204 self.gen.seed()
205
206 def test_saverestore(self):
207 self.assertRaises(NotImplementedError, self.gen.getstate)
208 self.assertRaises(NotImplementedError, self.gen.setstate, None)
209
210 def test_seedargs(self):
211 # Doesn't need to do anything except not fail
212 self.gen.seed(100)
213
214 def test_jumpahead(self):
215 # Doesn't need to do anything except not fail
216 self.gen.jumpahead(100)
217
218 def test_gauss(self):
219 self.gen.gauss_next = None
220 self.gen.seed(100)
221 self.assertEqual(self.gen.gauss_next, None)
222
223 def test_pickling(self):
224 self.assertRaises(NotImplementedError, pickle.dumps, self.gen)
225
226 def test_53_bits_per_float(self):
227 # This should pass whenever a C double has 53 bit precision.
228 span = 2 ** 53
229 cum = 0
230 for i in xrange(100):
231 cum |= int(self.gen.random() * span)
232 self.assertEqual(cum, span-1)
233
234 def test_bigrand(self):
235 # The randrange routine should build-up the required number of bits
236 # in stages so that all bit positions are active.
237 span = 2 ** 500
238 cum = 0
239 for i in xrange(100):
240 r = self.gen.randrange(span)
241 self.assert_(0 <= r < span)
242 cum |= r
243 self.assertEqual(cum, span-1)
244
245 def test_bigrand_ranges(self):
246 for i in [40,80, 160, 200, 211, 250, 375, 512, 550]:
247 start = self.gen.randrange(2 ** i)
248 stop = self.gen.randrange(2 ** (i-2))
249 if stop <= start:
250 return
251 self.assert_(start <= self.gen.randrange(start, stop) < stop)
252
253 def test_rangelimits(self):
254 for start, stop in [(-2,0), (-(2**60)-2,-(2**60)), (2**60,2**60+2)]:
255 self.assertEqual(set(range(start,stop)),
256 set([self.gen.randrange(start,stop) for i in xrange(100)]))
257
258 def test_genrandbits(self):
259 # Verify ranges
260 for k in xrange(1, 1000):
261 self.assert_(0 <= self.gen.getrandbits(k) < 2**k)
262
263 # Verify all bits active
264 getbits = self.gen.getrandbits
265 for span in [1, 2, 3, 4, 31, 32, 32, 52, 53, 54, 119, 127, 128, 129]:
266 cum = 0
267 for i in xrange(100):
268 cum |= getbits(span)
269 self.assertEqual(cum, 2**span-1)
270
271 # Verify argument checking
272 self.assertRaises(TypeError, self.gen.getrandbits)
273 self.assertRaises(TypeError, self.gen.getrandbits, 1, 2)
274 self.assertRaises(ValueError, self.gen.getrandbits, 0)
275 self.assertRaises(ValueError, self.gen.getrandbits, -1)
276 self.assertRaises(TypeError, self.gen.getrandbits, 10.1)
277
278 def test_randbelow_logic(self, _log=log, int=int):
279 # check bitcount transition points: 2**i and 2**(i+1)-1
280 # show that: k = int(1.001 + _log(n, 2))
281 # is equal to or one greater than the number of bits in n
282 for i in xrange(1, 1000):
283 n = 1L << i # check an exact power of two
284 numbits = i+1
285 k = int(1.00001 + _log(n, 2))
286 self.assertEqual(k, numbits)
287 self.assert_(n == 2**(k-1))
288
289 n += n - 1 # check 1 below the next power of two
290 k = int(1.00001 + _log(n, 2))
291 self.assert_(k in [numbits, numbits+1])
292 self.assert_(2**k > n > 2**(k-2))
293
294 n -= n >> 15 # check a little farther below the next power of two
295 k = int(1.00001 + _log(n, 2))
296 self.assertEqual(k, numbits) # note the stronger assertion
297 self.assert_(2**k > n > 2**(k-1)) # note the stronger assertion
298
299
Raymond Hettinger40f62172002-12-29 23:03:38 +0000300class MersenneTwister_TestBasicOps(TestBasicOps):
301 gen = random.Random()
302
Raymond Hettinger58335872004-07-09 14:26:18 +0000303 def test_setstate_first_arg(self):
304 self.assertRaises(ValueError, self.gen.setstate, (1, None, None))
305
306 def test_setstate_middle_arg(self):
307 # Wrong type, s/b tuple
308 self.assertRaises(TypeError, self.gen.setstate, (2, None, None))
309 # Wrong length, s/b 625
310 self.assertRaises(ValueError, self.gen.setstate, (2, (1,2,3), None))
311 # Wrong type, s/b tuple of 625 ints
312 self.assertRaises(TypeError, self.gen.setstate, (2, ('a',)*625, None))
313 # Last element s/b an int also
314 self.assertRaises(TypeError, self.gen.setstate, (2, (0,)*624+('a',), None))
315
Raymond Hettinger40f62172002-12-29 23:03:38 +0000316 def test_referenceImplementation(self):
317 # Compare the python implementation with results from the original
318 # code. Create 2000 53-bit precision random floats. Compare only
319 # the last ten entries to show that the independent implementations
320 # are tracking. Here is the main() function needed to create the
321 # list of expected random numbers:
322 # void main(void){
323 # int i;
324 # unsigned long init[4]={61731, 24903, 614, 42143}, length=4;
325 # init_by_array(init, length);
326 # for (i=0; i<2000; i++) {
327 # printf("%.15f ", genrand_res53());
328 # if (i%5==4) printf("\n");
329 # }
330 # }
331 expected = [0.45839803073713259,
332 0.86057815201978782,
333 0.92848331726782152,
334 0.35932681119782461,
335 0.081823493762449573,
336 0.14332226470169329,
337 0.084297823823520024,
338 0.53814864671831453,
339 0.089215024911993401,
340 0.78486196105372907]
341
342 self.gen.seed(61731L + (24903L<<32) + (614L<<64) + (42143L<<96))
343 actual = self.randomlist(2000)[-10:]
344 for a, e in zip(actual, expected):
345 self.assertAlmostEqual(a,e,places=14)
346
347 def test_strong_reference_implementation(self):
348 # Like test_referenceImplementation, but checks for exact bit-level
349 # equality. This should pass on any box where C double contains
350 # at least 53 bits of precision (the underlying algorithm suffers
351 # no rounding errors -- all results are exact).
352 from math import ldexp
353
354 expected = [0x0eab3258d2231fL,
355 0x1b89db315277a5L,
356 0x1db622a5518016L,
357 0x0b7f9af0d575bfL,
358 0x029e4c4db82240L,
359 0x04961892f5d673L,
360 0x02b291598e4589L,
361 0x11388382c15694L,
362 0x02dad977c9e1feL,
363 0x191d96d4d334c6L]
Raymond Hettinger40f62172002-12-29 23:03:38 +0000364 self.gen.seed(61731L + (24903L<<32) + (614L<<64) + (42143L<<96))
365 actual = self.randomlist(2000)[-10:]
366 for a, e in zip(actual, expected):
367 self.assertEqual(long(ldexp(a, 53)), e)
368
369 def test_long_seed(self):
370 # This is most interesting to run in debug mode, just to make sure
371 # nothing blows up. Under the covers, a dynamically resized array
372 # is allocated, consuming space proportional to the number of bits
373 # in the seed. Unfortunately, that's a quadratic-time algorithm,
374 # so don't make this horribly big.
375 seed = (1L << (10000 * 8)) - 1 # about 10K bytes
376 self.gen.seed(seed)
377
Raymond Hettinger2f726e92003-10-05 09:09:15 +0000378 def test_53_bits_per_float(self):
379 # This should pass whenever a C double has 53 bit precision.
380 span = 2 ** 53
381 cum = 0
382 for i in xrange(100):
383 cum |= int(self.gen.random() * span)
384 self.assertEqual(cum, span-1)
385
386 def test_bigrand(self):
387 # The randrange routine should build-up the required number of bits
388 # in stages so that all bit positions are active.
389 span = 2 ** 500
390 cum = 0
391 for i in xrange(100):
392 r = self.gen.randrange(span)
393 self.assert_(0 <= r < span)
394 cum |= r
395 self.assertEqual(cum, span-1)
396
397 def test_bigrand_ranges(self):
398 for i in [40,80, 160, 200, 211, 250, 375, 512, 550]:
399 start = self.gen.randrange(2 ** i)
400 stop = self.gen.randrange(2 ** (i-2))
401 if stop <= start:
402 return
403 self.assert_(start <= self.gen.randrange(start, stop) < stop)
404
405 def test_rangelimits(self):
406 for start, stop in [(-2,0), (-(2**60)-2,-(2**60)), (2**60,2**60+2)]:
Raymond Hettingera690a992003-11-16 16:17:49 +0000407 self.assertEqual(set(range(start,stop)),
408 set([self.gen.randrange(start,stop) for i in xrange(100)]))
Raymond Hettinger2f726e92003-10-05 09:09:15 +0000409
410 def test_genrandbits(self):
411 # Verify cross-platform repeatability
412 self.gen.seed(1234567)
413 self.assertEqual(self.gen.getrandbits(100),
414 97904845777343510404718956115L)
415 # Verify ranges
416 for k in xrange(1, 1000):
417 self.assert_(0 <= self.gen.getrandbits(k) < 2**k)
418
419 # Verify all bits active
420 getbits = self.gen.getrandbits
421 for span in [1, 2, 3, 4, 31, 32, 32, 52, 53, 54, 119, 127, 128, 129]:
422 cum = 0
423 for i in xrange(100):
424 cum |= getbits(span)
425 self.assertEqual(cum, 2**span-1)
426
Raymond Hettinger58335872004-07-09 14:26:18 +0000427 # Verify argument checking
428 self.assertRaises(TypeError, self.gen.getrandbits)
429 self.assertRaises(TypeError, self.gen.getrandbits, 'a')
430 self.assertRaises(TypeError, self.gen.getrandbits, 1, 2)
431 self.assertRaises(ValueError, self.gen.getrandbits, 0)
432 self.assertRaises(ValueError, self.gen.getrandbits, -1)
433
Raymond Hettinger2f726e92003-10-05 09:09:15 +0000434 def test_randbelow_logic(self, _log=log, int=int):
435 # check bitcount transition points: 2**i and 2**(i+1)-1
436 # show that: k = int(1.001 + _log(n, 2))
437 # is equal to or one greater than the number of bits in n
438 for i in xrange(1, 1000):
439 n = 1L << i # check an exact power of two
440 numbits = i+1
441 k = int(1.00001 + _log(n, 2))
442 self.assertEqual(k, numbits)
443 self.assert_(n == 2**(k-1))
444
445 n += n - 1 # check 1 below the next power of two
446 k = int(1.00001 + _log(n, 2))
447 self.assert_(k in [numbits, numbits+1])
448 self.assert_(2**k > n > 2**(k-2))
449
450 n -= n >> 15 # check a little farther below the next power of two
451 k = int(1.00001 + _log(n, 2))
452 self.assertEqual(k, numbits) # note the stronger assertion
453 self.assert_(2**k > n > 2**(k-1)) # note the stronger assertion
454
Raymond Hettinger94547f72006-12-20 06:42:06 +0000455 def test_randrange_bug_1590891(self):
456 start = 1000000000000
457 stop = -100000000000000000000
458 step = -200
459 x = self.gen.randrange(start, stop, step)
460 self.assert_(stop < x <= start)
461 self.assertEqual((x+stop)%step, 0)
462
Raymond Hettinger3dd990c2003-01-05 09:20:06 +0000463_gammacoeff = (0.9999999999995183, 676.5203681218835, -1259.139216722289,
464 771.3234287757674, -176.6150291498386, 12.50734324009056,
465 -0.1385710331296526, 0.9934937113930748e-05, 0.1659470187408462e-06)
466
467def gamma(z, cof=_gammacoeff, g=7):
468 z -= 1.0
Raymond Hettinger3c212162008-07-19 00:42:03 +0000469 s = msum([cof[0]] + [cof[i] / (z+i) for i in range(1,len(cof))])
Raymond Hettinger3dd990c2003-01-05 09:20:06 +0000470 z += 0.5
Raymond Hettinger3c212162008-07-19 00:42:03 +0000471 return (z+g)**z / exp(z+g) * sqrt(2.0*pi) * s
Raymond Hettinger3dd990c2003-01-05 09:20:06 +0000472
Raymond Hettinger15ec3732003-01-05 01:08:34 +0000473class TestDistributions(unittest.TestCase):
474 def test_zeroinputs(self):
475 # Verify that distributions can handle a series of zero inputs'
476 g = random.Random()
477 x = [g.random() for i in xrange(50)] + [0.0]*5
478 g.random = x[:].pop; g.uniform(1,10)
479 g.random = x[:].pop; g.paretovariate(1.0)
480 g.random = x[:].pop; g.expovariate(1.0)
481 g.random = x[:].pop; g.weibullvariate(1.0, 1.0)
482 g.random = x[:].pop; g.normalvariate(0.0, 1.0)
483 g.random = x[:].pop; g.gauss(0.0, 1.0)
484 g.random = x[:].pop; g.lognormvariate(0.0, 1.0)
485 g.random = x[:].pop; g.vonmisesvariate(0.0, 1.0)
486 g.random = x[:].pop; g.gammavariate(0.01, 1.0)
487 g.random = x[:].pop; g.gammavariate(1.0, 1.0)
488 g.random = x[:].pop; g.gammavariate(200.0, 1.0)
489 g.random = x[:].pop; g.betavariate(3.0, 3.0)
Raymond Hettingerbbc50ea2008-03-23 13:32:32 +0000490 g.random = x[:].pop; g.triangular(0.0, 1.0, 1.0/3.0)
Raymond Hettinger15ec3732003-01-05 01:08:34 +0000491
Raymond Hettinger3dd990c2003-01-05 09:20:06 +0000492 def test_avg_std(self):
493 # Use integration to test distribution average and standard deviation.
494 # Only works for distributions which do not consume variates in pairs
495 g = random.Random()
496 N = 5000
497 x = [i/float(N) for i in xrange(1,N)]
498 for variate, args, mu, sigmasqrd in [
499 (g.uniform, (1.0,10.0), (10.0+1.0)/2, (10.0-1.0)**2/12),
Raymond Hettingerbbc50ea2008-03-23 13:32:32 +0000500 (g.triangular, (0.0, 1.0, 1.0/3.0), 4.0/9.0, 7.0/9.0/18.0),
Raymond Hettinger3dd990c2003-01-05 09:20:06 +0000501 (g.expovariate, (1.5,), 1/1.5, 1/1.5**2),
502 (g.paretovariate, (5.0,), 5.0/(5.0-1),
503 5.0/((5.0-1)**2*(5.0-2))),
504 (g.weibullvariate, (1.0, 3.0), gamma(1+1/3.0),
505 gamma(1+2/3.0)-gamma(1+1/3.0)**2) ]:
506 g.random = x[:].pop
507 y = []
508 for i in xrange(len(x)):
509 try:
510 y.append(variate(*args))
511 except IndexError:
512 pass
513 s1 = s2 = 0
514 for e in y:
515 s1 += e
516 s2 += (e - mu) ** 2
517 N = len(y)
518 self.assertAlmostEqual(s1/N, mu, 2)
519 self.assertAlmostEqual(s2/(N-1), sigmasqrd, 2)
520
Raymond Hettinger40f62172002-12-29 23:03:38 +0000521class TestModule(unittest.TestCase):
522 def testMagicConstants(self):
523 self.assertAlmostEqual(random.NV_MAGICCONST, 1.71552776992141)
524 self.assertAlmostEqual(random.TWOPI, 6.28318530718)
525 self.assertAlmostEqual(random.LOG4, 1.38629436111989)
526 self.assertAlmostEqual(random.SG_MAGICCONST, 2.50407739677627)
527
528 def test__all__(self):
529 # tests validity but not completeness of the __all__ list
Raymond Hettingera690a992003-11-16 16:17:49 +0000530 self.failUnless(set(random.__all__) <= set(dir(random)))
Raymond Hettinger40f62172002-12-29 23:03:38 +0000531
Georg Brandlb84c1372007-01-21 10:28:43 +0000532 def test_random_subclass_with_kwargs(self):
533 # SF bug #1486663 -- this used to erroneously raise a TypeError
534 class Subclass(random.Random):
535 def __init__(self, newarg=None):
536 random.Random.__init__(self)
537 Subclass(newarg=1)
538
539
Raymond Hettinger105b0842003-02-04 05:47:30 +0000540def test_main(verbose=None):
Raymond Hettingerb8717632004-09-04 20:13:29 +0000541 testclasses = [WichmannHill_TestBasicOps,
Raymond Hettinger40f62172002-12-29 23:03:38 +0000542 MersenneTwister_TestBasicOps,
Raymond Hettinger15ec3732003-01-05 01:08:34 +0000543 TestDistributions,
Raymond Hettingerb8717632004-09-04 20:13:29 +0000544 TestModule]
545
Raymond Hettingerc1c43ca2004-09-05 00:00:42 +0000546 try:
Raymond Hettinger23f12412004-09-13 22:23:21 +0000547 random.SystemRandom().random()
Raymond Hettingerc1c43ca2004-09-05 00:00:42 +0000548 except NotImplementedError:
549 pass
550 else:
Raymond Hettinger23f12412004-09-13 22:23:21 +0000551 testclasses.append(SystemRandom_TestBasicOps)
Raymond Hettingerb8717632004-09-04 20:13:29 +0000552
Raymond Hettinger27922ee2003-05-03 03:38:01 +0000553 test_support.run_unittest(*testclasses)
Raymond Hettinger40f62172002-12-29 23:03:38 +0000554
Raymond Hettinger105b0842003-02-04 05:47:30 +0000555 # verify reference counting
556 import sys
557 if verbose and hasattr(sys, "gettotalrefcount"):
Raymond Hettinger320a1b02003-05-02 22:44:59 +0000558 counts = [None] * 5
559 for i in xrange(len(counts)):
Raymond Hettinger27922ee2003-05-03 03:38:01 +0000560 test_support.run_unittest(*testclasses)
Raymond Hettinger320a1b02003-05-02 22:44:59 +0000561 counts[i] = sys.gettotalrefcount()
Raymond Hettinger105b0842003-02-04 05:47:30 +0000562 print counts
563
Raymond Hettinger40f62172002-12-29 23:03:38 +0000564if __name__ == "__main__":
Raymond Hettinger105b0842003-02-04 05:47:30 +0000565 test_main(verbose=True)