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Guido van Rossumc6360141990-10-13 19:23:40 +00001# WICHMANN-HILL RANDOM NUMBER GENERATOR
2#
3# Wichmann, B. A. & Hill, I. D. (1982)
4# Algorithm AS 183:
5# An efficient and portable pseudo-random number generator
6# Applied Statistics 31 (1982) 188-190
7#
8# see also:
9# Correction to Algorithm AS 183
10# Applied Statistics 33 (1984) 123
11#
12# McLeod, A. I. (1985)
13# A remark on Algorithm AS 183
14# Applied Statistics 34 (1985),198-200
15#
16#
17# USE:
18# whrandom.random() yields double precision random numbers
19# uniformly distributed between 0 and 1.
20#
Guido van Rossum2db91351992-10-18 17:09:59 +000021# whrandom.seed(x, y, z) must be called before whrandom.random()
Guido van Rossumc6360141990-10-13 19:23:40 +000022# to seed the generator
Guido van Rossum2db91351992-10-18 17:09:59 +000023#
24# There is also an interface to create multiple independent
25# random generators, and to choose from other ranges.
Guido van Rossumc6360141990-10-13 19:23:40 +000026
27
28# Translated by Guido van Rossum from C source provided by
29# Adrian Baddeley.
30
31
Guido van Rossum2db91351992-10-18 17:09:59 +000032class whrandom:
Guido van Rossumc6360141990-10-13 19:23:40 +000033 #
Guido van Rossum2db91351992-10-18 17:09:59 +000034 # Initialize an instance.
35 # Without arguments, initialize from current time.
36 # With arguments (x, y, z), initialize from them.
Guido van Rossumc6360141990-10-13 19:23:40 +000037 #
Guido van Rossum14a6e3d1994-09-14 13:33:57 +000038 def __init__(self, x = 0, y = 0, z = 0):
39 self.seed(x, y, z)
40 #
41 # Set the seed from (x, y, z).
42 # These must be integers in the range [0, 256).
43 #
44 def seed(self, x = 0, y = 0, z = 0):
45 if not type(x) == type(y) == type(z) == type(0):
46 raise TypeError, 'seeds must be integers'
Guido van Rossum67577481997-01-02 18:13:35 +000047 if not (0 <= x < 256 and 0 <= y < 256 and 0 <= z < 256):
Guido van Rossum14a6e3d1994-09-14 13:33:57 +000048 raise ValueError, 'seeds must be in range(0, 256)'
49 if 0 == x == y == z:
Guido van Rossum2db91351992-10-18 17:09:59 +000050 # Initialize from current time
51 import time
Guido van Rossum9cb018e1996-10-21 23:20:03 +000052 t = long(time.time() * 256)
53 t = int((t&0xffffff) | (t>>24))
Guido van Rossum2db91351992-10-18 17:09:59 +000054 t, x = divmod(t, 256)
55 t, y = divmod(t, 256)
56 t, z = divmod(t, 256)
Guido van Rossumb6775db1994-08-01 11:34:53 +000057 self._seed = (x, y, z)
Guido van Rossumc6360141990-10-13 19:23:40 +000058 #
Guido van Rossum2db91351992-10-18 17:09:59 +000059 # Get the next random number in the range [0.0, 1.0).
Guido van Rossumc6360141990-10-13 19:23:40 +000060 #
Guido van Rossum2db91351992-10-18 17:09:59 +000061 def random(self):
62 x, y, z = self._seed
63 #
64 x1, x2 = divmod(x, 177)
65 y1, y2 = divmod(y, 176)
66 z1, z2 = divmod(z, 178)
67 #
68 x = (171 * x2 - 2 * x1) % 30269
69 y = (172 * y2 - 35 * y1) % 30307
70 z = (170 * z2 - 63 * z1) % 30323
71 #
72 self._seed = x, y, z
73 #
74 return (x/30269.0 + y/30307.0 + z/30323.0) % 1.0
75 #
76 # Get a random number in the range [a, b).
77 #
78 def uniform(self, a, b):
79 return a + (b-a) * self.random()
80 #
81 # Get a random integer in the range [a, b] including both end points.
82 #
83 def randint(self, a, b):
84 return a + int(self.random() * (b+1-a))
85 #
86 # Choose a random element from a non-empty sequence.
87 #
88 def choice(self, seq):
89 return seq[int(self.random() * len(seq))]
Guido van Rossumc6360141990-10-13 19:23:40 +000090
91
92# Initialize from the current time
93#
Guido van Rossum7bc817d1993-12-17 15:25:27 +000094_inst = whrandom()
Guido van Rossum2db91351992-10-18 17:09:59 +000095seed = _inst.seed
96random = _inst.random
97uniform = _inst.uniform
98randint = _inst.randint
99choice = _inst.choice