source: Sophya/trunk/SophyaExt/Blitz/blitz/rand-tt800.h@ 2012

Last change on this file since 2012 was 221, checked in by ansari, 26 years ago

Creation module DPC/Blitz (blitz 0.4) Reza 09/04/99

File size: 3.4 KB
Line 
1/***************************************************************************
2 * blitz/rand-tt800.h Matsumoto and Kurita's TT800 uniform random
3 * number generator.
4 *
5 * $Id: rand-tt800.h,v 1.1.1.1 1999-04-09 17:59:01 ansari Exp $
6 *
7 ***************************************************************************
8 *
9 * The class TT800 encapsulates Makoto Matsumoto and Yoshiharu Kurita's
10 * TT800 twisted generalized feedback shift register (TGFSR) random number
11 * generator. The generator has period 2^800 - 1.
12 *
13 * Contact: M. Matsumoto <matumoto@math.keio.ac.jp>
14 *
15 * See: M. Matsumoto and Y. Kurita, Twisted GFSR Generators II,
16 * ACM Transactions on Modelling and Computer Simulation,
17 * Vol. 4, No. 3, 1994, pages 254-266.
18 *
19 * (c) 1994 Association for Computing Machinery.
20 *
21 * Distributed with consent of the authors.
22 *
23 ***************************************************************************
24 *
25 * $Log: not supported by cvs2svn $
26 * Revision 1.2 1997/07/16 14:51:20 tveldhui
27 * Update: Alpha release 0.2 (Arrays)
28 *
29 * Revision 1.1 1997/02/28 13:39:51 tveldhui
30 * Initial revision
31 *
32 */
33
34#ifndef BZ_RAND_TT800_H
35#define BZ_RAND_TT800_H
36
37#ifndef BZ_RANDOM_H
38 #include <blitz/random.h>
39#endif
40
41BZ_NAMESPACE(blitz)
42
43class TT800 {
44
45public:
46 typedef double T_numtype;
47
48 TT800(double low = 0.0, double high = 1.0, double = 0.0)
49 : low_(low), length_(high-low)
50 {
51 // Initial 25 seeds
52 x[0] = 0x95f24dab; x[1] = 0x0b685215; x[2] = 0xe76ccae7;
53 x[3] = 0xaf3ec239; x[4] = 0x715fad23; x[5] = 0x24a590ad;
54 x[6] = 0x69e4b5ef; x[7] = 0xbf456141; x[8] = 0x96bc1b7b;
55 x[9] = 0xa7bdf825; x[10] = 0xc1de75b7; x[11] = 0x8858a9c9;
56 x[12] = 0x2da87693; x[13] = 0xb657f9dd; x[14] = 0xffdc8a9f;
57 x[15] = 0x8121da71; x[16] = 0x8b823ecb; x[17] = 0x885d05f5;
58 x[18] = 0x4e20cd47; x[19] = 0x5a9ad5d9; x[20] = 0x512c0c03;
59 x[21] = 0xea857ccd; x[22] = 0x4cc1d30f; x[23] = 0x8891a8a1;
60 x[24] = 0xa6b7aadb;
61
62 // Magic vector 'a', don't change
63 mag01[0] = 0;
64 mag01[1] = 0x8ebfd028;
65
66 k = 0;
67 }
68
69 void randomize()
70 {
71 BZ_NOT_IMPLEMENTED(); // NEEDS_WORK
72 }
73
74 double random()
75 {
76 if (k==N)
77 generate();
78
79 unsigned long y = x[k];
80 y ^= (y << 7) & 0x2b5b2500; /* s and b, magic vectors */
81 y ^= (y << 15) & 0xdb8b0000; /* t and c, magic vectors */
82 y &= 0xffffffff; /* you may delete this line if word size = 32 */
83
84 // the following line was added by Makoto Matsumoto in the 1996 version
85 // to improve lower bit's corellation.
86 // Delete this line to use the code published in 1994.
87
88 y ^= (y >> 16); /* added to the 1994 version */
89 k++;
90
91 // NEEDS_WORK: this only generates a random number with
92 // 15 bits of precision. Need 48 bits for double.
93 return low_ + length_ * ( (double) y / (unsigned long) 0xffffffff);
94 }
95
96protected:
97 void generate()
98 {
99 /* generate N words at one time */
100 int kk;
101 for (kk=0;kk<N-M;kk++) {
102 x[kk] = x[kk+M] ^ (x[kk] >> 1) ^ mag01[x[kk] % 2];
103 }
104 for (; kk<N;kk++) {
105 x[kk] = x[kk+(M-N)] ^ (x[kk] >> 1) ^ mag01[x[kk] % 2];
106 }
107 k=0;
108 }
109
110private:
111 enum { N = 25, M = 7 };
112
113 double low_, length_;
114 int k;
115 unsigned long x[N];
116 unsigned long mag01[2];
117};
118
119BZ_NAMESPACE_END
120
121#endif // BZ_RAND_TT800_H
122
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