SFMT.c File Reference

SIMD oriented Fast Mersenne Twister(SFMT). More...

#include <string.h>
#include <assert.h>
#include "SFMT.h"
#include "SFMT-params.h"

Data Structures

struct  W128_T
 128-bit data structure More...

Typedefs

typedef W128_T w128_t
 128-bit data type

Functions

static int idxof (int i)
 This function simulate a 64-bit index of LITTLE ENDIAN in BIG ENDIAN machine.
static void rshift128 (w128_t *out, w128_t const *in, int shift)
 This function simulates SIMD 128-bit right shift by the standard C.
static void lshift128 (w128_t *out, w128_t const *in, int shift)
 This function simulates SIMD 128-bit left shift by the standard C.
static void gen_rand_all (void)
 This function fills the internal state array with pseudorandom integers.
static void gen_rand_array (w128_t *array, int size)
 This function fills the user-specified array with pseudorandom integers.
static uint32_t func1 (uint32_t x)
 This function represents a function used in the initialization by init_by_array.
static uint32_t func2 (uint32_t x)
 This function represents a function used in the initialization by init_by_array.
static void period_certification (void)
 This function certificate the period of 2^{MEXP}.
static void do_recursion (w128_t *r, w128_t *a, w128_t *b, w128_t *c, w128_t *d)
 This function represents the recursion formula.
const char * get_idstring (void)
 This function returns the identification string.
int get_min_array_size32 (void)
 This function returns the minimum size of array used for fill_array32() function.
int get_min_array_size64 (void)
 This function returns the minimum size of array used for fill_array64() function.
uint32_t gen_rand32 (void)
 This function generates and returns 32-bit pseudorandom number.
uint64_t gen_rand64 (void)
 This function generates and returns 64-bit pseudorandom number.
void fill_array32 (uint32_t *array, int size)
 This function generates pseudorandom 32-bit integers in the specified array[] by one call.
void fill_array64 (uint64_t *array, int size)
 This function generates pseudorandom 64-bit integers in the specified array[] by one call.
void init_gen_rand (uint32_t seed)
 This function initializes the internal state array with a 32-bit integer seed.
void init_by_array (uint32_t *init_key, int key_length)
 This function initializes the internal state array, with an array of 32-bit integers used as the seeds.

Variables

static w128_t sfmt [N]
 the 128-bit internal state array
static uint32_t * psfmt32 = &sfmt[0].u[0]
 the 32bit integer pointer to the 128-bit internal state array
static uint64_t * psfmt64 = (uint64_t *)&sfmt[0].u[0]
 the 64bit integer pointer to the 128-bit internal state array
static int idx
 index counter to the 32-bit internal state array
static int initialized = 0
 a flag: it is 0 if and only if the internal state is not yet initialized.
static uint32_t parity [4] = {PARITY1, PARITY2, PARITY3, PARITY4}
 a parity check vector which certificate the period of 2^{MEXP}


Detailed Description

SIMD oriented Fast Mersenne Twister(SFMT).

Author:
Mutsuo Saito (Hiroshima University)

Makoto Matsumoto (Hiroshima University)

Copyright (C) 2006,2007 Mutsuo Saito, Makoto Matsumoto and Hiroshima University. All rights reserved.

The new BSD License is applied to this software, see LICENSE.txt


Typedef Documentation

typedef struct W128_T w128_t

128-bit data type


Function Documentation

static void do_recursion ( w128_t r,
w128_t a,
w128_t b,
w128_t c,
w128_t d 
) [inline, static]

This function represents the recursion formula.

Parameters:
r output
a a 128-bit part of the internal state array
b a 128-bit part of the internal state array
c a 128-bit part of the internal state array
d a 128-bit part of the internal state array

void fill_array32 ( uint32_t *  array,
int  size 
)

This function generates pseudorandom 32-bit integers in the specified array[] by one call.

The number of pseudorandom integers is specified by the argument size, which must be at least 624 and a multiple of four. The generation by this function is much faster than the following gen_rand function.

For initialization, init_gen_rand or init_by_array must be called before the first call of this function. This function can not be used after calling gen_rand function, without initialization.

Parameters:
array an array where pseudorandom 32-bit integers are filled by this function. The pointer to the array must be "aligned" (namely, must be a multiple of 16) in the SIMD version, since it refers to the address of a 128-bit integer. In the standard C version, the pointer is arbitrary.
size the number of 32-bit pseudorandom integers to be generated. size must be a multiple of 4, and greater than or equal to (MEXP / 128 + 1) * 4.
Note:
memalign or posix_memalign is available to get aligned memory. Mac OSX doesn't have these functions, but malloc of OSX returns the pointer to the aligned memory block.

void fill_array64 ( uint64_t *  array,
int  size 
)

This function generates pseudorandom 64-bit integers in the specified array[] by one call.

The number of pseudorandom integers is specified by the argument size, which must be at least 312 and a multiple of two. The generation by this function is much faster than the following gen_rand function.

For initialization, init_gen_rand or init_by_array must be called before the first call of this function. This function can not be used after calling gen_rand function, without initialization.

Parameters:
array an array where pseudorandom 64-bit integers are filled by this function. The pointer to the array must be "aligned" (namely, must be a multiple of 16) in the SIMD version, since it refers to the address of a 128-bit integer. In the standard C version, the pointer is arbitrary.
size the number of 64-bit pseudorandom integers to be generated. size must be a multiple of 2, and greater than or equal to (MEXP / 128 + 1) * 2
Note:
memalign or posix_memalign is available to get aligned memory. Mac OSX doesn't have these functions, but malloc of OSX returns the pointer to the aligned memory block.

static uint32_t func1 ( uint32_t  x  )  [inline, static]

This function represents a function used in the initialization by init_by_array.

Parameters:
x 32-bit integer
Returns:
32-bit integer

static uint32_t func2 ( uint32_t  x  )  [inline, static]

This function represents a function used in the initialization by init_by_array.

Parameters:
x 32-bit integer
Returns:
32-bit integer

uint32_t gen_rand32 ( void   ) 

This function generates and returns 32-bit pseudorandom number.

init_gen_rand or init_by_array must be called before this function.

Returns:
32-bit pseudorandom number

uint64_t gen_rand64 ( void   ) 

This function generates and returns 64-bit pseudorandom number.

init_gen_rand or init_by_array must be called before this function. The function gen_rand64 should not be called after gen_rand32, unless an initialization is again executed.

Returns:
64-bit pseudorandom number

static void gen_rand_all ( void   )  [inline, static]

This function fills the internal state array with pseudorandom integers.

static void gen_rand_array ( w128_t array,
int  size 
) [inline, static]

This function fills the user-specified array with pseudorandom integers.

Parameters:
array an 128-bit array to be filled by pseudorandom numbers.
size number of 128-bit pseudorandom numbers to be generated.

const char* get_idstring ( void   ) 

This function returns the identification string.

The string shows the word size, the Mersenne exponent, and all parameters of this generator.

int get_min_array_size32 ( void   ) 

This function returns the minimum size of array used for fill_array32() function.

Returns:
minimum size of array used for fill_array32() function.

int get_min_array_size64 ( void   ) 

This function returns the minimum size of array used for fill_array64() function.

Returns:
minimum size of array used for fill_array64() function.

static int idxof ( int  i  )  [inline, static]

This function simulate a 64-bit index of LITTLE ENDIAN in BIG ENDIAN machine.

void init_by_array ( uint32_t *  init_key,
int  key_length 
)

This function initializes the internal state array, with an array of 32-bit integers used as the seeds.

Parameters:
init_key the array of 32-bit integers, used as a seed.
key_length the length of init_key.

void init_gen_rand ( uint32_t  seed  ) 

This function initializes the internal state array with a 32-bit integer seed.

Parameters:
seed a 32-bit integer used as the seed.

static void lshift128 ( w128_t out,
w128_t const *  in,
int  shift 
) [inline, static]

This function simulates SIMD 128-bit left shift by the standard C.

The 128-bit integer given in in is shifted by (shift * 8) bits. This function simulates the LITTLE ENDIAN SIMD.

Parameters:
out the output of this function
in the 128-bit data to be shifted
shift the shift value

static void period_certification ( void   )  [static]

This function certificate the period of 2^{MEXP}.

static void rshift128 ( w128_t out,
w128_t const *  in,
int  shift 
) [inline, static]

This function simulates SIMD 128-bit right shift by the standard C.

The 128-bit integer given in in is shifted by (shift * 8) bits. This function simulates the LITTLE ENDIAN SIMD.

Parameters:
out the output of this function
in the 128-bit data to be shifted
shift the shift value


Variable Documentation

int idx [static]

index counter to the 32-bit internal state array

int initialized = 0 [static]

a flag: it is 0 if and only if the internal state is not yet initialized.

uint32_t parity[4] = {PARITY1, PARITY2, PARITY3, PARITY4} [static]

a parity check vector which certificate the period of 2^{MEXP}

uint32_t* psfmt32 = &sfmt[0].u[0] [static]

the 32bit integer pointer to the 128-bit internal state array

uint64_t* psfmt64 = (uint64_t *)&sfmt[0].u[0] [static]

the 64bit integer pointer to the 128-bit internal state array

w128_t sfmt[N] [static]

the 128-bit internal state array


Generated on Sat Oct 6 12:14:32 2007 for SFMT by  doxygen 1.4.7