199 lines
4.7 KiB
C
199 lines
4.7 KiB
C
/*
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This is a maximally equidistributed combined Tausworthe generator
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based on code from GNU Scientific Library 1.5 (30 Jun 2004)
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x_n = (s1_n ^ s2_n ^ s3_n)
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s1_{n+1} = (((s1_n & 4294967294) <<12) ^ (((s1_n <<13) ^ s1_n) >>19))
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s2_{n+1} = (((s2_n & 4294967288) << 4) ^ (((s2_n << 2) ^ s2_n) >>25))
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s3_{n+1} = (((s3_n & 4294967280) <<17) ^ (((s3_n << 3) ^ s3_n) >>11))
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The period of this generator is about 2^88.
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From: P. L'Ecuyer, "Maximally Equidistributed Combined Tausworthe
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Generators", Mathematics of Computation, 65, 213 (1996), 203--213.
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This is available on the net from L'Ecuyer's home page,
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http://www.iro.umontreal.ca/~lecuyer/myftp/papers/tausme.ps
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ftp://ftp.iro.umontreal.ca/pub/simulation/lecuyer/papers/tausme.ps
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There is an erratum in the paper "Tables of Maximally
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Equidistributed Combined LFSR Generators", Mathematics of
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Computation, 68, 225 (1999), 261--269:
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http://www.iro.umontreal.ca/~lecuyer/myftp/papers/tausme2.ps
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... the k_j most significant bits of z_j must be non-
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zero, for each j. (Note: this restriction also applies to the
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computer code given in [4], but was mistakenly not mentioned in
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that paper.)
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This affects the seeding procedure by imposing the requirement
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s1 > 1, s2 > 7, s3 > 15.
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*/
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#include <string.h>
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#include <assert.h>
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#include "rand.h"
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#include "pattern.h"
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#include "../hash.h"
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int arch_random;
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static inline uint64_t __seed(uint64_t x, uint64_t m)
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{
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return (x < m) ? x + m : x;
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}
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static void __init_rand32(struct taus88_state *state, unsigned int seed)
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{
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int cranks = 6;
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#define LCG(x, seed) ((x) * 69069 ^ (seed))
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state->s1 = __seed(LCG((2^31) + (2^17) + (2^7), seed), 1);
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state->s2 = __seed(LCG(state->s1, seed), 7);
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state->s3 = __seed(LCG(state->s2, seed), 15);
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while (cranks--)
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__rand32(state);
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}
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static void __init_rand64(struct taus258_state *state, uint64_t seed)
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{
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int cranks = 6;
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#define LCG64(x, seed) ((x) * 6906969069ULL ^ (seed))
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state->s1 = __seed(LCG64((2^31) + (2^17) + (2^7), seed), 1);
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state->s2 = __seed(LCG64(state->s1, seed), 7);
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state->s3 = __seed(LCG64(state->s2, seed), 15);
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state->s4 = __seed(LCG64(state->s3, seed), 33);
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state->s5 = __seed(LCG64(state->s4, seed), 49);
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while (cranks--)
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__rand64(state);
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}
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void init_rand(struct frand_state *state, bool use64)
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{
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state->use64 = use64;
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if (!use64)
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__init_rand32(&state->state32, 1);
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else
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__init_rand64(&state->state64, 1);
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}
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void init_rand_seed(struct frand_state *state, unsigned int seed, bool use64)
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{
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state->use64 = use64;
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if (!use64)
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__init_rand32(&state->state32, seed);
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else
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__init_rand64(&state->state64, seed);
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}
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void __fill_random_buf(void *buf, unsigned int len, unsigned long seed)
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{
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void *ptr = buf;
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while (len) {
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int this_len;
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if (len >= sizeof(int64_t)) {
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*((int64_t *) ptr) = seed;
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this_len = sizeof(int64_t);
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} else if (len >= sizeof(int32_t)) {
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*((int32_t *) ptr) = seed;
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this_len = sizeof(int32_t);
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} else if (len >= sizeof(int16_t)) {
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*((int16_t *) ptr) = seed;
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this_len = sizeof(int16_t);
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} else {
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*((int8_t *) ptr) = seed;
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this_len = sizeof(int8_t);
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}
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ptr += this_len;
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len -= this_len;
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seed *= GOLDEN_RATIO_PRIME;
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seed >>= 3;
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}
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}
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unsigned long fill_random_buf(struct frand_state *fs, void *buf,
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unsigned int len)
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{
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unsigned long r = __rand(fs);
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if (sizeof(int) != sizeof(long *))
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r *= (unsigned long) __rand(fs);
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__fill_random_buf(buf, len, r);
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return r;
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}
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void __fill_random_buf_percentage(unsigned long seed, void *buf,
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unsigned int percentage,
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unsigned int segment, unsigned int len,
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char *pattern, unsigned int pbytes)
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{
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unsigned int this_len;
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if (percentage == 100) {
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if (pbytes)
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(void)cpy_pattern(pattern, pbytes, buf, len);
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else
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memset(buf, 0, len);
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return;
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}
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if (segment > len)
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segment = len;
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while (len) {
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/*
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* Fill random chunk
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*/
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this_len = (segment * (100 - percentage)) / 100;
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if (this_len > len)
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this_len = len;
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__fill_random_buf(buf, this_len, seed);
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len -= this_len;
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if (!len)
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break;
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buf += this_len;
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if (this_len > len)
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this_len = len;
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else if (len - this_len <= sizeof(long))
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this_len = len;
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if (pbytes)
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(void)cpy_pattern(pattern, pbytes, buf, this_len);
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else
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memset(buf, 0, this_len);
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len -= this_len;
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buf += this_len;
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}
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}
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unsigned long fill_random_buf_percentage(struct frand_state *fs, void *buf,
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unsigned int percentage,
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unsigned int segment, unsigned int len,
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char *pattern, unsigned int pbytes)
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{
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unsigned long r = __rand(fs);
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if (sizeof(int) != sizeof(long *))
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r *= (unsigned long) __rand(fs);
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__fill_random_buf_percentage(r, buf, percentage, segment, len,
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pattern, pbytes);
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return r;
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}
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