source: soft/giet_vm/applications/rosenfeld/src/mt19937.c @ 793

Last change on this file since 793 was 772, checked in by meunier, 9 years ago
  • Ajout de l'application rosenfeld
  • Changement du nom du flag O_CREATE en O_CREAT
File size: 6.3 KB
RevLine 
[772]1/*
2   A C-program for MT19937, with initialization improved 2002/1/26.
3   Coded by Takuji Nishimura and Makoto Matsumoto.
4
5   Before using, initialize the state by using init_genrand(seed) 
6   or init_by_array(init_key, key_length).
7
8   Copyright (C) 1997 - 2002, Makoto Matsumoto and Takuji Nishimura,
9   All rights reserved.                         
10
11   Redistribution and use in source and binary forms, with or without
12   modification, are permitted provided that the following conditions
13   are met:
14
15   1. Redistributions of source code must retain the above copyright
16   notice, this list of conditions and the following disclaimer.
17
18   2. Redistributions in binary form must reproduce the above copyright
19   notice, this list of conditions and the following disclaimer in the
20   documentation and/or other materials provided with the distribution.
21
22   3. The names of its contributors may not be used to endorse or promote
23   products derived from this software without specific prior written
24   permission.
25
26   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
27   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
28   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
29   A PARTICULAR PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE COPYRIGHT OWNER OR
30   CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
31   EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
32   PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
33   PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
34   LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
35   NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
36   SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
37
38
39   Any feedback is very welcome.
40http://www.math.sci.hiroshima-u.ac.jp/~m-mat/MT/emt.html
41email: m-mat @ math.sci.hiroshima-u.ac.jp (remove space)
42*/
43
44#include <stdio.h>
45
46#include "nrc_os_config.h"
47
48/* Period parameters */ 
49#define N 624
50#define M 397
51#define MATRIX_A 0x9908b0dfUL   /* constant vector a */
52#define UPPER_MASK 0x80000000UL /* most significant w-r bits */
53#define LOWER_MASK 0x7fffffffUL /* least significant r bits */
54
55static unsigned long mt[N]; /* the array for the state vector  */
56static int mti=N+1; /* mti==N+1 means mt[N] is not initialized */
57
58static int global_seed;
59
60/* initializes mt[N] with a seed */
61void init_genrand(unsigned long s)
62{
63    mt[0]= s & 0xffffffffUL;
64    global_seed = s; // modif LL
65    for (mti=1; mti<N; mti++) {
66        mt[mti] = 
67            (1812433253UL * (mt[mti-1] ^ (mt[mti-1] >> 30)) + mti); 
68        /* See Knuth TAOCP Vol2. 3rd Ed. P.106 for multiplier. */
69        /* In the previous versions, MSBs of the seed affect   */
70        /* only MSBs of the array mt[].                        */
71        /* 2002/01/09 modified by Makoto Matsumoto             */
72        mt[mti] &= 0xffffffffUL;
73        /* for >32 bit machines */
74    }
75}
76
77/* initialize by an array with array-length */
78/* init_key is the array for initializing keys */
79/* key_length is its length */
80/* slight change for C++, 2004/2/26 */
81void init_by_array(unsigned long init_key[], int key_length)
82{
83    int i, j, k;
84    //init_genrand(19650218UL);
85    init_genrand(global_seed);
86    i=1; j=0;
87    k = (N>key_length ? N : key_length);
88    for (; k; k--) {
89        mt[i] = (mt[i] ^ ((mt[i-1] ^ (mt[i-1] >> 30)) * 1664525UL))
90            + init_key[j] + j; /* non linear */
91        mt[i] &= 0xffffffffUL; /* for WORDSIZE > 32 machines */
92        i++; j++;
93        if (i>=N) { mt[0] = mt[N-1]; i=1; }
94        if (j>=key_length) j=0;
95    }
96    for (k=N-1; k; k--) {
97        mt[i] = (mt[i] ^ ((mt[i-1] ^ (mt[i-1] >> 30)) * 1566083941UL))
98            - i; /* non linear */
99        mt[i] &= 0xffffffffUL; /* for WORDSIZE > 32 machines */
100        i++;
101        if (i>=N) { mt[0] = mt[N-1]; i=1; }
102    }
103
104    mt[0] = 0x80000000UL; /* MSB is 1; assuring non-zero initial array */ 
105}
106
107/* generates a random number on [0,0xffffffff]-interval */
108unsigned long genrand_int32(void)
109{
110    unsigned long y;
111    static unsigned long mag01[2]={0x0UL, MATRIX_A};
112    /* mag01[x] = x * MATRIX_A  for x=0,1 */
113
114    if (mti >= N) { /* generate N words at one time */
115        int kk;
116
117        if (mti == N+1)   /* if init_genrand() has not been called, */
118            //init_genrand(5489UL); /* a default initial seed is used */
119            init_genrand(global_seed);
120
121        for (kk=0;kk<N-M;kk++) {
122            y = (mt[kk]&UPPER_MASK)|(mt[kk+1]&LOWER_MASK);
123            mt[kk] = mt[kk+M] ^ (y >> 1) ^ mag01[y & 0x1UL];
124        }
125        for (;kk<N-1;kk++) {
126            y = (mt[kk]&UPPER_MASK)|(mt[kk+1]&LOWER_MASK);
127            mt[kk] = mt[kk+(M-N)] ^ (y >> 1) ^ mag01[y & 0x1UL];
128        }
129        y = (mt[N-1]&UPPER_MASK)|(mt[0]&LOWER_MASK);
130        mt[N-1] = mt[M-1] ^ (y >> 1) ^ mag01[y & 0x1UL];
131
132        mti = 0;
133    }
134
135    y = mt[mti++];
136
137    /* Tempering */
138    y ^= (y >> 11);
139    y ^= (y << 7) & 0x9d2c5680UL;
140    y ^= (y << 15) & 0xefc60000UL;
141    y ^= (y >> 18);
142
143    return y;
144}
145
146/* generates a random number on [0,0x7fffffff]-interval */
147long genrand_int31(void)
148{
149    return (long)(genrand_int32()>>1);
150}
151
152/* generates a random number on [0,1]-real-interval */
153double genrand_real1(void)
154{
155    return genrand_int32()*(1.0/4294967295.0); 
156    /* divided by 2^32-1 */ 
157}
158
159/* generates a random number on [0,1)-real-interval */
160double genrand_real2(void)
161{
162    return genrand_int32()*(1.0/4294967296.0); 
163    /* divided by 2^32 */
164}
165
166/* generates a random number on (0,1)-real-interval */
167double genrand_real3(void)
168{
169    return (((double)genrand_int32()) + 0.5)*(1.0/4294967296.0); 
170    /* divided by 2^32 */
171}
172
173/* generates a random number on [0,1) with 53-bit resolution*/
174double genrand_res53(void) 
175{ 
176    unsigned long a=genrand_int32()>>5, b=genrand_int32()>>6; 
177    return(a*67108864.0+b)*(1.0/9007199254740992.0); 
178} 
179/* These real versions are due to Isaku Wada, 2002/01/09 added */
180
181int test_mt19937(void)
182{
183    int i;
184    unsigned long init[4]={0x123, 0x234, 0x345, 0x456}, length=4;
185    init_by_array(init, length);
186    printf("1000 outputs of genrand_int32()\n");
187    for (i=0; i<1000; i++) {
188        printf("%10lu ", genrand_int32());
189        if (i%5==4) printf("\n");
190    }
191    printf("\n1000 outputs of genrand_real2()\n");
192    for (i=0; i<1000; i++) {
193        printf("%10.8f ", genrand_real2());
194        if (i%5==4) printf("\n");
195    }
196    return 0;
197}
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