mirror of
https://github.com/mruby/mruby
synced 2026-06-08 16:11:16 +00:00
348 lines
7.9 KiB
C
348 lines
7.9 KiB
C
/*
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** random.c - Random module
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**
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** See Copyright Notice in mruby.h
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*/
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#include <mruby.h>
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#include <mruby/variable.h>
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#include <mruby/class.h>
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#include <mruby/data.h>
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#include <mruby/array.h>
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#include "mt19937ar.h"
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#include <time.h>
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static char const MT_STATE_KEY[] = "$mrb_i_mt_state";
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static const struct mrb_data_type mt_state_type = {
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MT_STATE_KEY, mrb_free,
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};
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static mrb_value mrb_random_rand(mrb_state *mrb, mrb_value self);
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static mrb_value mrb_random_srand(mrb_state *mrb, mrb_value self);
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static void
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mt_srand(mt_state *t, unsigned long seed)
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{
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mrb_random_init_genrand(t, seed);
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}
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static unsigned long
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mt_rand(mt_state *t)
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{
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return mrb_random_genrand_int32(t);
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}
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static double
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mt_rand_real(mt_state *t)
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{
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return mrb_random_genrand_real1(t);
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}
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static mrb_value
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mrb_random_mt_srand(mrb_state *mrb, mt_state *t, mrb_value seed)
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{
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if (mrb_nil_p(seed)) {
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seed = mrb_fixnum_value((mrb_int)(time(NULL) + mt_rand(t)));
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if (mrb_fixnum(seed) < 0) {
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seed = mrb_fixnum_value(0 - mrb_fixnum(seed));
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}
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}
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mt_srand(t, (unsigned) mrb_fixnum(seed));
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return seed;
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}
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static mrb_value
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mrb_random_mt_rand(mrb_state *mrb, mt_state *t, mrb_value max)
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{
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mrb_value value;
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if (mrb_fixnum(max) == 0) {
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value = mrb_float_value(mrb, mt_rand_real(t));
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}
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else {
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value = mrb_fixnum_value(mt_rand(t) % mrb_fixnum(max));
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}
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return value;
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}
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static mrb_value
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get_opt(mrb_state* mrb)
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{
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mrb_value arg;
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arg = mrb_nil_value();
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mrb_get_args(mrb, "|o", &arg);
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if (!mrb_nil_p(arg)) {
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arg = mrb_check_convert_type(mrb, arg, MRB_TT_FIXNUM, "Fixnum", "to_int");
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if (mrb_nil_p(arg)) {
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mrb_raise(mrb, E_ARGUMENT_ERROR, "invalid argument type");
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}
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if (mrb_fixnum(arg) < 0) {
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arg = mrb_fixnum_value(0 - mrb_fixnum(arg));
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}
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}
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return arg;
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}
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static mrb_value
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get_random(mrb_state *mrb) {
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return mrb_const_get(mrb,
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mrb_obj_value(mrb_class_get(mrb, "Random")),
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mrb_intern_lit(mrb, "DEFAULT"));
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}
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static mt_state *
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get_random_state(mrb_state *mrb)
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{
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mrb_value random_val = get_random(mrb);
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return DATA_GET_PTR(mrb, random_val, &mt_state_type, mt_state);
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}
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static mrb_value
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mrb_random_g_rand(mrb_state *mrb, mrb_value self)
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{
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mrb_value random = get_random(mrb);
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return mrb_random_rand(mrb, random);
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}
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static mrb_value
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mrb_random_g_srand(mrb_state *mrb, mrb_value self)
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{
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mrb_value random = get_random(mrb);
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return mrb_random_srand(mrb, random);
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}
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static mrb_value
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mrb_random_init(mrb_state *mrb, mrb_value self)
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{
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mrb_value seed;
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mt_state *t;
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seed = get_opt(mrb);
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/* avoid memory leaks */
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t = (mt_state*)DATA_PTR(self);
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if (t) {
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mrb_free(mrb, t);
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}
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mrb_data_init(self, NULL, &mt_state_type);
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t = (mt_state *)mrb_malloc(mrb, sizeof(mt_state));
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t->mti = N + 1;
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seed = mrb_random_mt_srand(mrb, t, seed);
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if (mrb_nil_p(seed)) {
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t->has_seed = FALSE;
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}
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else {
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mrb_assert(mrb_fixnum_p(seed));
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t->has_seed = TRUE;
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t->seed = mrb_fixnum(seed);
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}
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mrb_data_init(self, t, &mt_state_type);
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return self;
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}
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static void
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mrb_random_rand_seed(mrb_state *mrb, mt_state *t)
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{
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if (!t->has_seed) {
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mrb_random_mt_srand(mrb, t, mrb_nil_value());
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}
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}
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static mrb_value
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mrb_random_rand(mrb_state *mrb, mrb_value self)
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{
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mrb_value max;
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mt_state *t = DATA_GET_PTR(mrb, self, &mt_state_type, mt_state);
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max = get_opt(mrb);
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mrb_random_rand_seed(mrb, t);
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return mrb_random_mt_rand(mrb, t, max);
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}
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static mrb_value
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mrb_random_srand(mrb_state *mrb, mrb_value self)
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{
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mrb_value seed;
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mrb_value old_seed;
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mt_state *t = DATA_GET_PTR(mrb, self, &mt_state_type, mt_state);
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seed = get_opt(mrb);
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seed = mrb_random_mt_srand(mrb, t, seed);
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old_seed = t->has_seed? mrb_fixnum_value(t->seed) : mrb_nil_value();
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if (mrb_nil_p(seed)) {
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t->has_seed = FALSE;
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}
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else {
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mrb_assert(mrb_fixnum_p(seed));
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t->has_seed = TRUE;
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t->seed = mrb_fixnum(seed);
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}
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return old_seed;
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}
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/*
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* call-seq:
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* ary.shuffle! -> ary
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*
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* Shuffles elements in self in place.
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*/
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static mrb_value
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mrb_ary_shuffle_bang(mrb_state *mrb, mrb_value ary)
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{
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mrb_int i;
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mt_state *random = NULL;
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if (RARRAY_LEN(ary) > 1) {
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mrb_get_args(mrb, "|d", &random, &mt_state_type);
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if (random == NULL) {
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random = get_random_state(mrb);
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}
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mrb_random_rand_seed(mrb, random);
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mrb_ary_modify(mrb, mrb_ary_ptr(ary));
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for (i = RARRAY_LEN(ary) - 1; i > 0; i--) {
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mrb_int j;
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mrb_value tmp;
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j = mrb_fixnum(mrb_random_mt_rand(mrb, random, mrb_fixnum_value(RARRAY_LEN(ary))));
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tmp = RARRAY_PTR(ary)[i];
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mrb_ary_ptr(ary)->ptr[i] = RARRAY_PTR(ary)[j];
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mrb_ary_ptr(ary)->ptr[j] = tmp;
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}
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}
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return ary;
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}
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/*
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* call-seq:
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* ary.shuffle -> new_ary
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*
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* Returns a new array with elements of self shuffled.
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*/
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static mrb_value
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mrb_ary_shuffle(mrb_state *mrb, mrb_value ary)
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{
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mrb_value new_ary = mrb_ary_new_from_values(mrb, RARRAY_LEN(ary), RARRAY_PTR(ary));
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mrb_ary_shuffle_bang(mrb, new_ary);
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return new_ary;
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}
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/*
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* call-seq:
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* ary.sample -> obj
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* ary.sample(n) -> new_ary
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*
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* Choose a random element or +n+ random elements from the array.
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*
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* The elements are chosen by using random and unique indices into the array
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* in order to ensure that an element doesn't repeat itself unless the array
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* already contained duplicate elements.
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*
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* If the array is empty the first form returns +nil+ and the second form
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* returns an empty array.
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*/
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static mrb_value
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mrb_ary_sample(mrb_state *mrb, mrb_value ary)
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{
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mrb_int n = 0;
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mrb_bool given;
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mt_state *random = NULL;
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mrb_int len;
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mrb_get_args(mrb, "|i?d", &n, &given, &random, &mt_state_type);
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if (random == NULL) {
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random = get_random_state(mrb);
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}
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mrb_random_rand_seed(mrb, random);
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mt_rand(random);
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len = RARRAY_LEN(ary);
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if (!given) { /* pick one element */
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switch (len) {
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case 0:
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return mrb_nil_value();
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case 1:
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return RARRAY_PTR(ary)[0];
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default:
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return RARRAY_PTR(ary)[mt_rand(random) % len];
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}
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}
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else {
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mrb_value result;
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mrb_int i, j;
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if (n < 0) mrb_raise(mrb, E_ARGUMENT_ERROR, "negative sample number");
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if (n > len) n = len;
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result = mrb_ary_new_capa(mrb, n);
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for (i=0; i<n; i++) {
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mrb_int r;
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for (;;) {
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retry:
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r = mt_rand(random) % len;
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for (j=0; j<i; j++) {
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if (mrb_fixnum(RARRAY_PTR(result)[j]) == r) {
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goto retry; /* retry if duplicate */
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}
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}
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break;
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}
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mrb_ary_push(mrb, result, mrb_fixnum_value(r));
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}
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for (i=0; i<n; i++) {
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mrb_ary_set(mrb, result, i, RARRAY_PTR(ary)[mrb_fixnum(RARRAY_PTR(result)[i])]);
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}
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return result;
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}
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}
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void mrb_mruby_random_gem_init(mrb_state *mrb)
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{
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struct RClass *random;
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struct RClass *array = mrb->array_class;
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mrb_define_method(mrb, mrb->kernel_module, "rand", mrb_random_g_rand, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, mrb->kernel_module, "srand", mrb_random_g_srand, MRB_ARGS_OPT(1));
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random = mrb_define_class(mrb, "Random", mrb->object_class);
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MRB_SET_INSTANCE_TT(random, MRB_TT_DATA);
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mrb_define_class_method(mrb, random, "rand", mrb_random_g_rand, MRB_ARGS_OPT(1));
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mrb_define_class_method(mrb, random, "srand", mrb_random_g_srand, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, random, "initialize", mrb_random_init, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, random, "rand", mrb_random_rand, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, random, "srand", mrb_random_srand, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, array, "shuffle", mrb_ary_shuffle, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, array, "shuffle!", mrb_ary_shuffle_bang, MRB_ARGS_OPT(1));
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mrb_define_method(mrb, array, "sample", mrb_ary_sample, MRB_ARGS_OPT(2));
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mrb_const_set(mrb, mrb_obj_value(random), mrb_intern_lit(mrb, "DEFAULT"),
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mrb_obj_new(mrb, random, 0, NULL));
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}
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void mrb_mruby_random_gem_final(mrb_state *mrb)
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{
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}
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