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guile/libguile/random.h
Andreas Rottmann 2af6e1351d Fix the range of `random' on 64-bit platforms
For > 32 bit integers still in the fixnum range, scm_random() would
return random numbers with a lower range than specified.

* libguile/random.c (scm_i_mask32): New static inline function.
  (scm_c_random): Use `scm_i_mask32'.
  (scm_c_random64): New function, 64-bit variant of scm_c_random.
  (scm_random): Use `scm_c_random64' instead of forming the 64-bit random
  number in a bogus way.
* libguile/random.h: Added `scm_c_random64'.
2010-08-01 21:53:29 +02:00

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/* classes: h_files */
#ifndef SCM_RANDOM_H
#define SCM_RANDOM_H
/* Copyright (C) 1999,2000,2001, 2006, 2008, 2010 Free Software Foundation, Inc.
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public License
* as published by the Free Software Foundation; either version 3 of
* the License, or (at your option) any later version.
*
* This library is distributed in the hope that it will be useful, but
* WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
* 02110-1301 USA
*/
#include "libguile/__scm.h"
/*
* A plugin interface for RNGs
*
* Using this interface, it is possible for the application to tell
* libguile to use a different RNG. This is desirable if it is
* necessary to use the same RNG everywhere in the application in
* order to prevent interference, if the application uses RNG
* hardware, or if the application has special demands on the RNG.
*
* Look how the default generator is "plugged in" in scm_init_random().
*/
typedef struct scm_t_rstate {
struct scm_t_rng *rng;
double normal_next; /* For scm_c_normal01 */
/* Custom fields follow here */
} scm_t_rstate;
typedef struct scm_t_rng {
size_t rstate_size; /* size of random state */
scm_t_uint32 (*random_bits) (scm_t_rstate *state); /* gives 32 random bits */
void (*init_rstate) (scm_t_rstate *state, const char *seed, int n);
scm_t_rstate *(*copy_rstate) (scm_t_rstate *state);
void (*from_datum) (scm_t_rstate *state, SCM datum);
SCM (*to_datum) (scm_t_rstate *state);
} scm_t_rng;
SCM_API scm_t_rng scm_the_rng;
/*
* Random number library functions
*/
SCM_API scm_t_rstate *scm_c_make_rstate (const char *, int);
SCM_API scm_t_rstate *scm_c_rstate_from_datum (SCM datum);
SCM_API scm_t_rstate *scm_c_default_rstate (void);
#define scm_c_uniform32(RSTATE) ((RSTATE)->rng->random_bits (RSTATE))
SCM_API double scm_c_uniform01 (scm_t_rstate *);
SCM_API double scm_c_normal01 (scm_t_rstate *);
SCM_API double scm_c_exp1 (scm_t_rstate *);
SCM_API scm_t_uint32 scm_c_random (scm_t_rstate *, scm_t_uint32 m);
SCM_API scm_t_uint64 scm_c_random64 (scm_t_rstate *state, scm_t_uint64 m);
SCM_API SCM scm_c_random_bignum (scm_t_rstate *, SCM m);
/*
* Scheme level interface
*/
SCM_API scm_t_bits scm_tc16_rstate;
#define SCM_RSTATEP(obj) SCM_SMOB_PREDICATE (scm_tc16_rstate, obj)
#define SCM_RSTATE(obj) ((scm_t_rstate *) SCM_SMOB_DATA (obj))
SCM_API unsigned char scm_masktab[256];
SCM_API SCM scm_var_random_state;
SCM_API SCM scm_random (SCM n, SCM state);
SCM_API SCM scm_copy_random_state (SCM state);
SCM_API SCM scm_seed_to_random_state (SCM seed);
SCM_API SCM scm_datum_to_random_state (SCM datum);
SCM_API SCM scm_random_state_to_datum (SCM state);
SCM_API SCM scm_random_uniform (SCM state);
SCM_API SCM scm_random_solid_sphere_x (SCM v, SCM state);
SCM_API SCM scm_random_hollow_sphere_x (SCM v, SCM state);
SCM_API SCM scm_random_normal (SCM state);
SCM_API SCM scm_random_normal_vector_x (SCM v, SCM state);
SCM_API SCM scm_random_exp (SCM state);
SCM_INTERNAL void scm_init_random (void);
#endif /* SCM_RANDOM_H */
/*
Local Variables:
c-file-style: "gnu"
End:
*/