mirror of
https://github.com/mruby/mruby
synced 2026-06-08 16:11:16 +00:00
Replace the implementation of method tables in classes/modules.
They are basically the copy of instance variable tables. On my Linux box, memory consumption of `mrbtest` measured by `valgrind` is: - old: 17,683,830 bytes - new: 14,283,749 bytes
This commit is contained in:
@@ -17,7 +17,7 @@ MRB_BEGIN_DECL
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struct RClass {
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MRB_OBJECT_HEADER;
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struct iv_tbl *iv;
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struct kh_mt *mt;
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struct mt_tbl *mt;
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struct RClass *super;
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};
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@@ -77,6 +77,7 @@ struct RClass *mrb_vm_define_class(mrb_state*, mrb_value, mrb_value, mrb_sym);
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struct RClass *mrb_vm_define_module(mrb_state*, mrb_value, mrb_sym);
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MRB_API void mrb_define_method_raw(mrb_state*, struct RClass*, mrb_sym, mrb_method_t);
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MRB_API void mrb_alias_method(mrb_state*, struct RClass *c, mrb_sym a, mrb_sym b);
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MRB_API void mrb_remove_method(mrb_state *mrb, struct RClass *c, mrb_sym sym);
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MRB_API mrb_method_t mrb_method_search_vm(mrb_state*, struct RClass**, mrb_sym);
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MRB_API mrb_method_t mrb_method_search(mrb_state*, struct RClass*, mrb_sym);
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@@ -98,6 +99,11 @@ void mrb_mc_clear_by_class(mrb_state *mrb, struct RClass* c);
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#define mrb_mc_clear_by_class(mrb,c)
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#endif
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/* return non zero to break the loop */
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struct mt_elem;
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typedef int (mrb_mt_foreach_func)(mrb_state*,mrb_sym,struct mt_elem*,void*);
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MRB_API void mrb_mt_foreach(mrb_state*, struct RClass*, mrb_mt_foreach_func*, void*);
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MRB_END_DECL
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#endif /* MRUBY_CLASS_H */
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@@ -168,29 +168,50 @@ mrb_local_variables(mrb_state *mrb, mrb_value self)
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return mrb_hash_keys(mrb, vars);
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}
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KHASH_DECLARE(st, mrb_sym, char, FALSE)
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KHASH_DECLARE(st, mrb_sym, char, FALSE);
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KHASH_DEFINE(st, mrb_sym, char, FALSE, kh_int_hash_func, kh_int_hash_equal);
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union mt_ptr {
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struct RProc *proc;
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mrb_func_t func;
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};
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struct mt_elem {
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union mt_ptr ptr;
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size_t func_p:1;
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mrb_sym key:sizeof(mrb_sym)*8-1;
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};
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struct mt_set {
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khash_t(st) *set;
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khash_t(st) *undef;
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};
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static int
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method_entry_i(mrb_state *mrb, mrb_sym mid, struct mt_elem *e, void *p)
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{
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struct mt_set *s = (struct mt_set*)p;
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if (e->ptr.proc == 0) {
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if (s->undef) {
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kh_put(st, mrb, s->undef, mid);
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}
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}
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else if (s->undef == NULL ||
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kh_get(st, mrb, s->undef, mid) == kh_end(s->undef)) {
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kh_put(st, mrb, s->set, mid);
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}
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return 0;
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}
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static void
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method_entry_loop(mrb_state *mrb, struct RClass *klass, khash_t(st) *set, khash_t(st) *undef)
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{
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khint_t i;
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struct mt_set s;
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khash_t(mt) *h = klass->mt;
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if (!h || kh_size(h) == 0) return;
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for (i=0;i<kh_end(h);i++) {
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if (kh_exist(h, i)) {
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mrb_method_t m = kh_value(h, i);
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if (MRB_METHOD_UNDEF_P(m)) {
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if (undef) {
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kh_put(st, mrb, undef, kh_key(h, i));
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}
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}
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else if (undef == NULL ||
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kh_get(st, mrb, undef, kh_key(h, i)) == kh_end(undef)) {
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kh_put(st, mrb, set, kh_key(h, i));
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}
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}
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}
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s.set = set;
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s.undef = undef;
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mrb_mt_foreach(mrb, klass, method_entry_i, (void*)&s);
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}
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static mrb_value
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@@ -608,28 +629,6 @@ mrb_mod_instance_methods(mrb_state *mrb, mrb_value mod)
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return mrb_class_instance_method_list(mrb, recur, c, 0);
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}
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static void
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remove_method(mrb_state *mrb, mrb_value mod, mrb_sym mid)
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{
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struct RClass *c = mrb_class_ptr(mod);
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khash_t(mt) *h;
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khiter_t k;
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MRB_CLASS_ORIGIN(c);
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h = c->mt;
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if (h) {
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k = kh_get(mt, mrb, h, mid);
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if (k != kh_end(h)) {
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kh_del(mt, mrb, h, k);
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mrb_funcall_id(mrb, mod, MRB_SYM(method_removed), 1, mrb_symbol_value(mid));
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return;
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}
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}
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mrb_name_error(mrb, mid, "method '%n' not defined in %v", mid, mod);
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}
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/* 15.2.2.4.41 */
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/*
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* call-seq:
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@@ -644,11 +643,13 @@ mrb_mod_remove_method(mrb_state *mrb, mrb_value mod)
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{
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mrb_int argc;
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mrb_value *argv;
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struct RClass *c = mrb_class_ptr(mod);
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mrb_get_args(mrb, "*", &argv, &argc);
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mrb_check_frozen(mrb, mrb_obj_ptr(mod));
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while (argc--) {
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remove_method(mrb, mod, mrb_obj_to_sym(mrb, *argv));
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mrb_remove_method(mrb, c, mrb_obj_to_sym(mrb, *argv));
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mrb_funcall_id(mrb, mod, MRB_SYM(method_removed), 1, *argv);
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argv++;
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}
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return mod;
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+472
-36
@@ -18,40 +18,259 @@
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#include <mruby/istruct.h>
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#include <mruby/opcode.h>
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KHASH_DEFINE(mt, mrb_sym, mrb_method_t, TRUE, kh_int_hash_func, kh_int_hash_equal)
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union mt_ptr {
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struct RProc *proc;
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mrb_func_t func;
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};
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struct mt_elem {
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union mt_ptr ptr;
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size_t func_p:1;
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mrb_sym key:sizeof(mrb_sym)*8-1;
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};
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/* method table structure */
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typedef struct mt_tbl {
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size_t size;
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size_t alloc;
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struct mt_elem *table;
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} mt_tbl;
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/* Creates the method table. */
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static mt_tbl*
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mt_new(mrb_state *mrb)
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{
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mt_tbl *t;
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t = (mt_tbl*)mrb_malloc(mrb, sizeof(mt_tbl));
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t->size = 0;
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t->alloc = 0;
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t->table = NULL;
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return t;
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}
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static struct mt_elem *mt_put(mrb_state *mrb, mt_tbl *t, mrb_sym sym, int func_p, union mt_ptr ptr);
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static void
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mt_rehash(mrb_state *mrb, mt_tbl *t)
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{
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size_t old_alloc = t->alloc;
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size_t new_alloc = old_alloc+1;
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struct mt_elem *old_table = t->table;
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khash_power2(new_alloc);
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if (old_alloc == new_alloc) return;
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t->alloc = new_alloc;
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t->size = 0;
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t->table = (struct mt_elem*)mrb_calloc(mrb, sizeof(struct mt_elem), new_alloc);
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for (size_t i = 0; i < old_alloc; i++) {
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struct mt_elem *slot = &old_table[i];
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/* key = 0 means empty or deleted */
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if (slot->key != 0) {
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mt_put(mrb, t, slot->key, slot->func_p, slot->ptr);
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}
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}
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mrb_free(mrb, old_table);
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}
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#define slot_empty_p(slot) ((slot)->key == 0 && (slot)->func_p == 0)
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/* Set the value for the symbol in the method table. */
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static struct mt_elem*
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mt_put(mrb_state *mrb, mt_tbl *t, mrb_sym sym, int func_p, union mt_ptr ptr)
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{
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size_t hash, pos, start;
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struct mt_elem *dslot = NULL;
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if (t->alloc == 0) {
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mt_rehash(mrb, t);
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}
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hash = kh_int_hash_func(mrb, sym);
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start = pos = hash & (t->alloc-1);
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for (;;) {
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struct mt_elem *slot = &t->table[pos];
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if (slot->key == sym) {
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slot->func_p = func_p;
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slot->ptr = ptr;
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return slot;
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}
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else if (slot->key == 0) { /* empty or deleted */
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if (slot->func_p == 0) { /* empty */
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t->size++;
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slot->key = sym;
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slot->func_p = func_p;
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slot->ptr = ptr;
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return slot;
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}
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else if (!dslot) { /* deleted */
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dslot = slot;
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}
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}
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pos = (pos+1) & (t->alloc-1);
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if (pos == start) { /* not found */
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if (dslot) {
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t->size++;
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dslot->key = sym;
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dslot->func_p = func_p;
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dslot->ptr = ptr;
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return dslot;
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}
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/* no room */
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mt_rehash(mrb, t);
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start = pos = hash & (t->alloc-1);
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}
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}
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}
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/* Get a value for a symbol from the method table. */
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static struct mt_elem*
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mt_get(mrb_state *mrb, mt_tbl *t, mrb_sym sym)
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{
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size_t hash, pos, start;
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if (t == NULL) return NULL;
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if (t->alloc == 0) return NULL;
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if (t->size == 0) return NULL;
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hash = kh_int_hash_func(mrb, sym);
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start = pos = hash & (t->alloc-1);
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for (;;) {
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struct mt_elem *slot = &t->table[pos];
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if (slot->key == sym) {
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return slot;
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}
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else if (slot_empty_p(slot)) {
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return NULL;
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}
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pos = (pos+1) & (t->alloc-1);
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if (pos == start) { /* not found */
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return NULL;
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}
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}
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}
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/* Deletes the value for the symbol from the method table. */
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static mrb_bool
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mt_del(mrb_state *mrb, mt_tbl *t, mrb_sym sym)
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{
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size_t hash, pos, start;
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if (t == NULL) return FALSE;
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if (t->alloc == 0) return FALSE;
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if (t->size == 0) return FALSE;
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hash = kh_int_hash_func(mrb, sym);
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start = pos = hash & (t->alloc-1);
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for (;;) {
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struct mt_elem *slot = &t->table[pos];
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if (slot->key == sym) {
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t->size--;
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slot->key = 0;
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slot->func_p = 1;
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return TRUE;
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}
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else if (slot_empty_p(slot)) {
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return FALSE;
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}
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pos = (pos+1) & (t->alloc-1);
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if (pos == start) { /* not found */
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return FALSE;
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}
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}
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}
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/* Copy the method table. */
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static struct mt_tbl*
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mt_copy(mrb_state *mrb, mt_tbl *t)
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{
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mt_tbl *t2;
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size_t i;
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if (t == NULL) return NULL;
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if (t->alloc == 0) return NULL;
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if (t->size == 0) return NULL;
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t2 = mt_new(mrb);
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for (i=0; i<t->alloc; i++) {
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struct mt_elem *slot = &t->table[i];
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if (slot->key) {
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mt_put(mrb, t2, slot->key, slot->func_p, slot->ptr);
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}
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}
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return t2;
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}
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/* Free memory of the method table. */
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static void
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mt_free(mrb_state *mrb, mt_tbl *t)
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{
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mrb_free(mrb, t->table);
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mrb_free(mrb, t);
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}
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MRB_API void
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mrb_mt_foreach(mrb_state *mrb, struct RClass *c, mrb_mt_foreach_func *fn, void *p)
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{
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mt_tbl *t = c->mt;
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size_t i;
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if (t == NULL) return;
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if (t->alloc == 0) return;
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if (t->size == 0) return;
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for (i=0; i<t->alloc; i++) {
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struct mt_elem *slot = &t->table[i];
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if (slot->key) {
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if (fn(mrb, slot->key, slot, p) != 0)
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return;
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}
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}
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return;
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}
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void
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mrb_gc_mark_mt(mrb_state *mrb, struct RClass *c)
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{
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khiter_t k;
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khash_t(mt) *h = c->mt;
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mt_tbl *t = c->mt;
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size_t i;
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if (!h) return;
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for (k = kh_begin(h); k != kh_end(h); k++) {
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if (kh_exist(h, k)) {
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mrb_method_t m = kh_value(h, k);
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if (t == NULL) return;
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if (t->alloc == 0) return;
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if (t->size == 0) return;
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if (MRB_METHOD_PROC_P(m)) {
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struct RProc *p = MRB_METHOD_PROC(m);
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mrb_gc_mark(mrb, (struct RBasic*)p);
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}
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for (i=0; i<t->alloc; i++) {
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struct mt_elem *slot = &t->table[i];
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if (slot->key && !slot->func_p) { /* Proc pointer */
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struct RProc *p = slot->ptr.proc;
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mrb_gc_mark(mrb, (struct RBasic*)p);
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}
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}
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return;
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}
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size_t
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mrb_gc_mark_mt_size(mrb_state *mrb, struct RClass *c)
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{
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khash_t(mt) *h = c->mt;
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struct mt_tbl *h = c->mt;
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if (!h) return 0;
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return kh_size(h);
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return h->size;
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}
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void
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mrb_gc_free_mt(mrb_state *mrb, struct RClass *c)
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{
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kh_destroy(mt, mrb, c->mt);
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if (c->mt) mt_free(mrb, c->mt);
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}
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void
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@@ -107,7 +326,7 @@ prepare_singleton_class(mrb_state *mrb, struct RBasic *o)
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if (o->c->tt == MRB_TT_SCLASS) return;
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sc = (struct RClass*)mrb_obj_alloc(mrb, MRB_TT_SCLASS, mrb->class_class);
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sc->flags |= MRB_FL_CLASS_IS_INHERITED;
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sc->mt = kh_init(mt, mrb);
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sc->mt = mt_new(mrb);
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sc->iv = 0;
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if (o->tt == MRB_TT_CLASS) {
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c = (struct RClass*)o;
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@@ -488,25 +707,30 @@ mrb_define_class_under(mrb_state *mrb, struct RClass *outer, const char *name, s
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MRB_API void
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mrb_define_method_raw(mrb_state *mrb, struct RClass *c, mrb_sym mid, mrb_method_t m)
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{
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khash_t(mt) *h;
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khiter_t k;
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mt_tbl *h;
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union mt_ptr ptr;
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MRB_CLASS_ORIGIN(c);
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h = c->mt;
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mrb_check_frozen(mrb, c);
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if (!h) h = c->mt = kh_init(mt, mrb);
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k = kh_put(mt, mrb, h, mid);
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kh_value(h, k) = m;
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if (MRB_METHOD_PROC_P(m) && !MRB_METHOD_UNDEF_P(m)) {
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if (!h) h = c->mt = mt_new(mrb);
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if (MRB_METHOD_PROC_P(m)) {
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struct RProc *p = MRB_METHOD_PROC(m);
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p->flags |= MRB_PROC_SCOPE;
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p->c = NULL;
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mrb_field_write_barrier(mrb, (struct RBasic*)c, (struct RBasic*)p);
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if (!MRB_PROC_ENV_P(p)) {
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MRB_PROC_SET_TARGET_CLASS(p, c);
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ptr.proc = p;
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if (p) {
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p->flags |= MRB_PROC_SCOPE;
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p->c = NULL;
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mrb_field_write_barrier(mrb, (struct RBasic*)c, (struct RBasic*)p);
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if (!MRB_PROC_ENV_P(p)) {
|
||||
MRB_PROC_SET_TARGET_CLASS(p, c);
|
||||
}
|
||||
}
|
||||
}
|
||||
else {
|
||||
ptr.func = MRB_METHOD_FUNC(m);
|
||||
}
|
||||
mt_put(mrb, h, mid, MRB_METHOD_FUNC_P(m), ptr);
|
||||
mc_clear(mrb);
|
||||
}
|
||||
|
||||
@@ -1103,7 +1327,7 @@ boot_defclass(mrb_state *mrb, struct RClass *super)
|
||||
else {
|
||||
c->super = mrb->object_class;
|
||||
}
|
||||
c->mt = kh_init(mt, mrb);
|
||||
c->mt = mt_new(mrb);
|
||||
return c;
|
||||
}
|
||||
|
||||
@@ -1111,7 +1335,7 @@ static void
|
||||
boot_initmod(mrb_state *mrb, struct RClass *mod)
|
||||
{
|
||||
if (!mod->mt) {
|
||||
mod->mt = kh_init(mt, mrb);
|
||||
mod->mt = mt_new(mrb);
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1201,7 +1425,7 @@ mrb_prepend_module(mrb_state *mrb, struct RClass *c, struct RClass *m)
|
||||
origin->super = c->super;
|
||||
c->super = origin;
|
||||
origin->mt = c->mt;
|
||||
c->mt = kh_init(mt, mrb);
|
||||
c->mt = mt_new(mrb);
|
||||
mrb_field_write_barrier(mrb, (struct RBasic*)c, (struct RBasic*)origin);
|
||||
c->flags |= MRB_FL_CLASS_IS_PREPENDED;
|
||||
}
|
||||
@@ -1428,7 +1652,6 @@ mrb_mc_clear_by_class(mrb_state *mrb, struct RClass *c)
|
||||
MRB_API mrb_method_t
|
||||
mrb_method_search_vm(mrb_state *mrb, struct RClass **cp, mrb_sym mid)
|
||||
{
|
||||
khiter_t k;
|
||||
mrb_method_t m;
|
||||
struct RClass *c = *cp;
|
||||
#ifndef MRB_NO_METHOD_CACHE
|
||||
@@ -1443,14 +1666,19 @@ mrb_method_search_vm(mrb_state *mrb, struct RClass **cp, mrb_sym mid)
|
||||
#endif
|
||||
|
||||
while (c) {
|
||||
khash_t(mt) *h = c->mt;
|
||||
mt_tbl *h = c->mt;
|
||||
|
||||
if (h) {
|
||||
k = kh_get(mt, mrb, h, mid);
|
||||
if (k != kh_end(h)) {
|
||||
m = kh_value(h, k);
|
||||
if (MRB_METHOD_UNDEF_P(m)) break;
|
||||
struct mt_elem *e = mt_get(mrb, h, mid);
|
||||
if (e) {
|
||||
if (e->ptr.proc == 0) break;
|
||||
*cp = c;
|
||||
if (e->func_p) {
|
||||
MRB_METHOD_FROM_FUNC(m, e->ptr.func);
|
||||
}
|
||||
else {
|
||||
MRB_METHOD_FROM_PROC(m, e->ptr.proc);
|
||||
}
|
||||
#ifndef MRB_NO_METHOD_CACHE
|
||||
mc->c = oc;
|
||||
mc->c0 = c;
|
||||
@@ -2003,6 +2231,18 @@ mrb_undef_class_method(mrb_state *mrb, struct RClass *c, const char *name)
|
||||
mrb_undef_method(mrb, mrb_class_ptr(mrb_singleton_class(mrb, mrb_obj_value(c))), name);
|
||||
}
|
||||
|
||||
MRB_API void
|
||||
mrb_remove_method(mrb_state *mrb, struct RClass *c, mrb_sym mid)
|
||||
{
|
||||
mt_tbl *h;
|
||||
|
||||
MRB_CLASS_ORIGIN(c);
|
||||
h = c->mt;
|
||||
|
||||
if (h && mt_del(mrb, h, mid)) return;
|
||||
mrb_name_error(mrb, mid, "method '%n' not defined in %C", mid, c);
|
||||
}
|
||||
|
||||
static mrb_value
|
||||
mrb_mod_undef(mrb_state *mrb, mrb_value mod)
|
||||
{
|
||||
@@ -2262,6 +2502,202 @@ mrb_mod_module_function(mrb_state *mrb, mrb_value mod)
|
||||
return mod;
|
||||
}
|
||||
|
||||
static struct RClass*
|
||||
mrb_singleton_class_clone(mrb_state *mrb, mrb_value obj)
|
||||
{
|
||||
struct RClass *klass = mrb_basic_ptr(obj)->c;
|
||||
|
||||
if (klass->tt != MRB_TT_SCLASS)
|
||||
return klass;
|
||||
else {
|
||||
/* copy singleton(unnamed) class */
|
||||
struct RClass *clone = (struct RClass*)mrb_obj_alloc(mrb, klass->tt, mrb->class_class);
|
||||
|
||||
switch (mrb_type(obj)) {
|
||||
case MRB_TT_CLASS:
|
||||
case MRB_TT_SCLASS:
|
||||
break;
|
||||
default:
|
||||
clone->c = mrb_singleton_class_clone(mrb, mrb_obj_value(klass));
|
||||
break;
|
||||
}
|
||||
clone->super = klass->super;
|
||||
if (klass->iv) {
|
||||
mrb_iv_copy(mrb, mrb_obj_value(clone), mrb_obj_value(klass));
|
||||
mrb_obj_iv_set(mrb, (struct RObject*)clone, MRB_SYM(__attached__), obj);
|
||||
}
|
||||
if (klass->mt) {
|
||||
clone->mt = mt_copy(mrb, klass->mt);
|
||||
}
|
||||
else {
|
||||
clone->mt = mt_new(mrb);
|
||||
}
|
||||
clone->tt = MRB_TT_SCLASS;
|
||||
return clone;
|
||||
}
|
||||
}
|
||||
|
||||
static void
|
||||
copy_class(mrb_state *mrb, mrb_value dst, mrb_value src)
|
||||
{
|
||||
struct RClass *dc = mrb_class_ptr(dst);
|
||||
struct RClass *sc = mrb_class_ptr(src);
|
||||
/* if the origin is not the same as the class, then the origin and
|
||||
the current class need to be copied */
|
||||
if (sc->flags & MRB_FL_CLASS_IS_PREPENDED) {
|
||||
struct RClass *c0 = sc->super;
|
||||
struct RClass *c1 = dc;
|
||||
|
||||
/* copy prepended iclasses */
|
||||
while (!(c0->flags & MRB_FL_CLASS_IS_ORIGIN)) {
|
||||
c1->super = mrb_class_ptr(mrb_obj_dup(mrb, mrb_obj_value(c0)));
|
||||
c1 = c1->super;
|
||||
c0 = c0->super;
|
||||
}
|
||||
c1->super = mrb_class_ptr(mrb_obj_dup(mrb, mrb_obj_value(c0)));
|
||||
c1->super->flags |= MRB_FL_CLASS_IS_ORIGIN;
|
||||
}
|
||||
if (sc->mt) {
|
||||
dc->mt = mt_copy(mrb, sc->mt);
|
||||
}
|
||||
else {
|
||||
dc->mt = mt_new(mrb);
|
||||
}
|
||||
dc->super = sc->super;
|
||||
MRB_SET_INSTANCE_TT(dc, MRB_INSTANCE_TT(sc));
|
||||
}
|
||||
|
||||
/* 15.3.1.3.16 */
|
||||
static mrb_value
|
||||
mrb_obj_init_copy(mrb_state *mrb, mrb_value self)
|
||||
{
|
||||
mrb_value orig = mrb_get_arg1(mrb);
|
||||
|
||||
if (mrb_obj_equal(mrb, self, orig)) return self;
|
||||
if ((mrb_type(self) != mrb_type(orig)) || (mrb_obj_class(mrb, self) != mrb_obj_class(mrb, orig))) {
|
||||
mrb_raise(mrb, E_TYPE_ERROR, "initialize_copy should take same class object");
|
||||
}
|
||||
return self;
|
||||
}
|
||||
|
||||
static void
|
||||
init_copy(mrb_state *mrb, mrb_value dest, mrb_value obj)
|
||||
{
|
||||
switch (mrb_type(obj)) {
|
||||
case MRB_TT_ICLASS:
|
||||
copy_class(mrb, dest, obj);
|
||||
return;
|
||||
case MRB_TT_CLASS:
|
||||
case MRB_TT_MODULE:
|
||||
copy_class(mrb, dest, obj);
|
||||
mrb_iv_copy(mrb, dest, obj);
|
||||
mrb_iv_remove(mrb, dest, MRB_SYM(__classname__));
|
||||
break;
|
||||
case MRB_TT_OBJECT:
|
||||
case MRB_TT_SCLASS:
|
||||
case MRB_TT_HASH:
|
||||
case MRB_TT_DATA:
|
||||
case MRB_TT_EXCEPTION:
|
||||
mrb_iv_copy(mrb, dest, obj);
|
||||
break;
|
||||
case MRB_TT_ISTRUCT:
|
||||
mrb_istruct_copy(dest, obj);
|
||||
break;
|
||||
|
||||
default:
|
||||
break;
|
||||
}
|
||||
if (!mrb_func_basic_p(mrb, dest, MRB_SYM(initialize_copy), mrb_obj_init_copy)) {
|
||||
mrb_funcall_id(mrb, dest, MRB_SYM(initialize_copy), 1, obj);
|
||||
}
|
||||
}
|
||||
|
||||
/* 15.3.1.3.8 */
|
||||
/*
|
||||
* call-seq:
|
||||
* obj.clone -> an_object
|
||||
*
|
||||
* Produces a shallow copy of <i>obj</i>---the instance variables of
|
||||
* <i>obj</i> are copied, but not the objects they reference. Copies
|
||||
* the frozen state of <i>obj</i>. See also the discussion
|
||||
* under <code>Object#dup</code>.
|
||||
*
|
||||
* class Klass
|
||||
* attr_accessor :str
|
||||
* end
|
||||
* s1 = Klass.new #=> #<Klass:0x401b3a38>
|
||||
* s1.str = "Hello" #=> "Hello"
|
||||
* s2 = s1.clone #=> #<Klass:0x401b3998 @str="Hello">
|
||||
* s2.str[1,4] = "i" #=> "i"
|
||||
* s1.inspect #=> "#<Klass:0x401b3a38 @str=\"Hi\">"
|
||||
* s2.inspect #=> "#<Klass:0x401b3998 @str=\"Hi\">"
|
||||
*
|
||||
* This method may have class-specific behavior. If so, that
|
||||
* behavior will be documented under the #+initialize_copy+ method of
|
||||
* the class.
|
||||
*
|
||||
* Some Class(True False Nil Symbol Integer Float) Object cannot clone.
|
||||
*/
|
||||
MRB_API mrb_value
|
||||
mrb_obj_clone(mrb_state *mrb, mrb_value self)
|
||||
{
|
||||
struct RObject *p;
|
||||
mrb_value clone;
|
||||
|
||||
if (mrb_immediate_p(self)) {
|
||||
return self;
|
||||
}
|
||||
if (mrb_sclass_p(self)) {
|
||||
mrb_raise(mrb, E_TYPE_ERROR, "can't clone singleton class");
|
||||
}
|
||||
p = (struct RObject*)mrb_obj_alloc(mrb, mrb_type(self), mrb_obj_class(mrb, self));
|
||||
p->c = mrb_singleton_class_clone(mrb, self);
|
||||
mrb_field_write_barrier(mrb, (struct RBasic*)p, (struct RBasic*)p->c);
|
||||
clone = mrb_obj_value(p);
|
||||
init_copy(mrb, clone, self);
|
||||
p->flags |= mrb_obj_ptr(self)->flags & MRB_FL_OBJ_IS_FROZEN;
|
||||
|
||||
return clone;
|
||||
}
|
||||
|
||||
/* 15.3.1.3.9 */
|
||||
/*
|
||||
* call-seq:
|
||||
* obj.dup -> an_object
|
||||
*
|
||||
* Produces a shallow copy of <i>obj</i>---the instance variables of
|
||||
* <i>obj</i> are copied, but not the objects they reference.
|
||||
* <code>dup</code> copies the frozen state of <i>obj</i>. See also
|
||||
* the discussion under <code>Object#clone</code>. In general,
|
||||
* <code>clone</code> and <code>dup</code> may have different semantics
|
||||
* in descendant classes. While <code>clone</code> is used to duplicate
|
||||
* an object, including its internal state, <code>dup</code> typically
|
||||
* uses the class of the descendant object to create the new instance.
|
||||
*
|
||||
* This method may have class-specific behavior. If so, that
|
||||
* behavior will be documented under the #+initialize_copy+ method of
|
||||
* the class.
|
||||
*/
|
||||
|
||||
MRB_API mrb_value
|
||||
mrb_obj_dup(mrb_state *mrb, mrb_value obj)
|
||||
{
|
||||
struct RBasic *p;
|
||||
mrb_value dup;
|
||||
|
||||
if (mrb_immediate_p(obj)) {
|
||||
return obj;
|
||||
}
|
||||
if (mrb_sclass_p(obj)) {
|
||||
mrb_raise(mrb, E_TYPE_ERROR, "can't dup singleton class");
|
||||
}
|
||||
p = mrb_obj_alloc(mrb, mrb_type(obj), mrb_obj_class(mrb, obj));
|
||||
dup = mrb_obj_value(p);
|
||||
init_copy(mrb, dup, obj);
|
||||
|
||||
return dup;
|
||||
}
|
||||
|
||||
/* implementation of __id__ */
|
||||
mrb_value mrb_obj_id_m(mrb_state *mrb, mrb_value self);
|
||||
/* implementation of instance_eval */
|
||||
|
||||
+1
-190
@@ -218,191 +218,6 @@ mrb_obj_class_m(mrb_state *mrb, mrb_value self)
|
||||
return mrb_obj_value(mrb_obj_class(mrb, self));
|
||||
}
|
||||
|
||||
static struct RClass*
|
||||
mrb_singleton_class_clone(mrb_state *mrb, mrb_value obj)
|
||||
{
|
||||
struct RClass *klass = mrb_basic_ptr(obj)->c;
|
||||
|
||||
if (klass->tt != MRB_TT_SCLASS)
|
||||
return klass;
|
||||
else {
|
||||
/* copy singleton(unnamed) class */
|
||||
struct RClass *clone = (struct RClass*)mrb_obj_alloc(mrb, klass->tt, mrb->class_class);
|
||||
|
||||
switch (mrb_type(obj)) {
|
||||
case MRB_TT_CLASS:
|
||||
case MRB_TT_SCLASS:
|
||||
break;
|
||||
default:
|
||||
clone->c = mrb_singleton_class_clone(mrb, mrb_obj_value(klass));
|
||||
break;
|
||||
}
|
||||
clone->super = klass->super;
|
||||
if (klass->iv) {
|
||||
mrb_iv_copy(mrb, mrb_obj_value(clone), mrb_obj_value(klass));
|
||||
mrb_obj_iv_set(mrb, (struct RObject*)clone, MRB_SYM(__attached__), obj);
|
||||
}
|
||||
if (klass->mt) {
|
||||
clone->mt = kh_copy(mt, mrb, klass->mt);
|
||||
}
|
||||
else {
|
||||
clone->mt = kh_init(mt, mrb);
|
||||
}
|
||||
clone->tt = MRB_TT_SCLASS;
|
||||
return clone;
|
||||
}
|
||||
}
|
||||
|
||||
static void
|
||||
copy_class(mrb_state *mrb, mrb_value dst, mrb_value src)
|
||||
{
|
||||
struct RClass *dc = mrb_class_ptr(dst);
|
||||
struct RClass *sc = mrb_class_ptr(src);
|
||||
/* if the origin is not the same as the class, then the origin and
|
||||
the current class need to be copied */
|
||||
if (sc->flags & MRB_FL_CLASS_IS_PREPENDED) {
|
||||
struct RClass *c0 = sc->super;
|
||||
struct RClass *c1 = dc;
|
||||
|
||||
/* copy prepended iclasses */
|
||||
while (!(c0->flags & MRB_FL_CLASS_IS_ORIGIN)) {
|
||||
c1->super = mrb_class_ptr(mrb_obj_dup(mrb, mrb_obj_value(c0)));
|
||||
c1 = c1->super;
|
||||
c0 = c0->super;
|
||||
}
|
||||
c1->super = mrb_class_ptr(mrb_obj_dup(mrb, mrb_obj_value(c0)));
|
||||
c1->super->flags |= MRB_FL_CLASS_IS_ORIGIN;
|
||||
}
|
||||
if (sc->mt) {
|
||||
dc->mt = kh_copy(mt, mrb, sc->mt);
|
||||
}
|
||||
else {
|
||||
dc->mt = kh_init(mt, mrb);
|
||||
}
|
||||
dc->super = sc->super;
|
||||
MRB_SET_INSTANCE_TT(dc, MRB_INSTANCE_TT(sc));
|
||||
}
|
||||
|
||||
static mrb_value mrb_obj_init_copy(mrb_state *mrb, mrb_value self);
|
||||
|
||||
static void
|
||||
init_copy(mrb_state *mrb, mrb_value dest, mrb_value obj)
|
||||
{
|
||||
switch (mrb_type(obj)) {
|
||||
case MRB_TT_ICLASS:
|
||||
copy_class(mrb, dest, obj);
|
||||
return;
|
||||
case MRB_TT_CLASS:
|
||||
case MRB_TT_MODULE:
|
||||
copy_class(mrb, dest, obj);
|
||||
mrb_iv_copy(mrb, dest, obj);
|
||||
mrb_iv_remove(mrb, dest, MRB_SYM(__classname__));
|
||||
break;
|
||||
case MRB_TT_OBJECT:
|
||||
case MRB_TT_SCLASS:
|
||||
case MRB_TT_HASH:
|
||||
case MRB_TT_DATA:
|
||||
case MRB_TT_EXCEPTION:
|
||||
mrb_iv_copy(mrb, dest, obj);
|
||||
break;
|
||||
case MRB_TT_ISTRUCT:
|
||||
mrb_istruct_copy(dest, obj);
|
||||
break;
|
||||
|
||||
default:
|
||||
break;
|
||||
}
|
||||
if (!mrb_func_basic_p(mrb, dest, MRB_SYM(initialize_copy), mrb_obj_init_copy)) {
|
||||
mrb_funcall_id(mrb, dest, MRB_SYM(initialize_copy), 1, obj);
|
||||
}
|
||||
}
|
||||
|
||||
/* 15.3.1.3.8 */
|
||||
/*
|
||||
* call-seq:
|
||||
* obj.clone -> an_object
|
||||
*
|
||||
* Produces a shallow copy of <i>obj</i>---the instance variables of
|
||||
* <i>obj</i> are copied, but not the objects they reference. Copies
|
||||
* the frozen state of <i>obj</i>. See also the discussion
|
||||
* under <code>Object#dup</code>.
|
||||
*
|
||||
* class Klass
|
||||
* attr_accessor :str
|
||||
* end
|
||||
* s1 = Klass.new #=> #<Klass:0x401b3a38>
|
||||
* s1.str = "Hello" #=> "Hello"
|
||||
* s2 = s1.clone #=> #<Klass:0x401b3998 @str="Hello">
|
||||
* s2.str[1,4] = "i" #=> "i"
|
||||
* s1.inspect #=> "#<Klass:0x401b3a38 @str=\"Hi\">"
|
||||
* s2.inspect #=> "#<Klass:0x401b3998 @str=\"Hi\">"
|
||||
*
|
||||
* This method may have class-specific behavior. If so, that
|
||||
* behavior will be documented under the #+initialize_copy+ method of
|
||||
* the class.
|
||||
*
|
||||
* Some Class(True False Nil Symbol Integer Float) Object cannot clone.
|
||||
*/
|
||||
MRB_API mrb_value
|
||||
mrb_obj_clone(mrb_state *mrb, mrb_value self)
|
||||
{
|
||||
struct RObject *p;
|
||||
mrb_value clone;
|
||||
|
||||
if (mrb_immediate_p(self)) {
|
||||
return self;
|
||||
}
|
||||
if (mrb_sclass_p(self)) {
|
||||
mrb_raise(mrb, E_TYPE_ERROR, "can't clone singleton class");
|
||||
}
|
||||
p = (struct RObject*)mrb_obj_alloc(mrb, mrb_type(self), mrb_obj_class(mrb, self));
|
||||
p->c = mrb_singleton_class_clone(mrb, self);
|
||||
mrb_field_write_barrier(mrb, (struct RBasic*)p, (struct RBasic*)p->c);
|
||||
clone = mrb_obj_value(p);
|
||||
init_copy(mrb, clone, self);
|
||||
p->flags |= mrb_obj_ptr(self)->flags & MRB_FL_OBJ_IS_FROZEN;
|
||||
|
||||
return clone;
|
||||
}
|
||||
|
||||
/* 15.3.1.3.9 */
|
||||
/*
|
||||
* call-seq:
|
||||
* obj.dup -> an_object
|
||||
*
|
||||
* Produces a shallow copy of <i>obj</i>---the instance variables of
|
||||
* <i>obj</i> are copied, but not the objects they reference.
|
||||
* <code>dup</code> copies the frozen state of <i>obj</i>. See also
|
||||
* the discussion under <code>Object#clone</code>. In general,
|
||||
* <code>clone</code> and <code>dup</code> may have different semantics
|
||||
* in descendant classes. While <code>clone</code> is used to duplicate
|
||||
* an object, including its internal state, <code>dup</code> typically
|
||||
* uses the class of the descendant object to create the new instance.
|
||||
*
|
||||
* This method may have class-specific behavior. If so, that
|
||||
* behavior will be documented under the #+initialize_copy+ method of
|
||||
* the class.
|
||||
*/
|
||||
|
||||
MRB_API mrb_value
|
||||
mrb_obj_dup(mrb_state *mrb, mrb_value obj)
|
||||
{
|
||||
struct RBasic *p;
|
||||
mrb_value dup;
|
||||
|
||||
if (mrb_immediate_p(obj)) {
|
||||
return obj;
|
||||
}
|
||||
if (mrb_sclass_p(obj)) {
|
||||
mrb_raise(mrb, E_TYPE_ERROR, "can't dup singleton class");
|
||||
}
|
||||
p = mrb_obj_alloc(mrb, mrb_type(obj), mrb_obj_class(mrb, obj));
|
||||
dup = mrb_obj_value(p);
|
||||
init_copy(mrb, dup, obj);
|
||||
|
||||
return dup;
|
||||
}
|
||||
|
||||
static mrb_value
|
||||
mrb_obj_extend(mrb_state *mrb, mrb_int argc, mrb_value *argv, mrb_value obj)
|
||||
{
|
||||
@@ -493,7 +308,7 @@ mrb_obj_hash(mrb_state *mrb, mrb_value self)
|
||||
}
|
||||
|
||||
/* 15.3.1.3.16 */
|
||||
static mrb_value
|
||||
mrb_value
|
||||
mrb_obj_init_copy(mrb_state *mrb, mrb_value self)
|
||||
{
|
||||
mrb_value orig = mrb_get_arg1(mrb);
|
||||
@@ -505,7 +320,6 @@ mrb_obj_init_copy(mrb_state *mrb, mrb_value self)
|
||||
return self;
|
||||
}
|
||||
|
||||
|
||||
MRB_API mrb_bool
|
||||
mrb_obj_is_instance_of(mrb_state *mrb, mrb_value obj, struct RClass* c)
|
||||
{
|
||||
@@ -568,9 +382,6 @@ mrb_obj_is_kind_of_m(mrb_state *mrb, mrb_value self)
|
||||
return mrb_bool_value(mrb_obj_is_kind_of(mrb, self, c));
|
||||
}
|
||||
|
||||
KHASH_DECLARE(st, mrb_sym, char, FALSE)
|
||||
KHASH_DEFINE(st, mrb_sym, char, FALSE, kh_int_hash_func, kh_int_hash_equal)
|
||||
|
||||
/* 15.3.1.3.32 */
|
||||
/*
|
||||
* call_seq:
|
||||
|
||||
Reference in New Issue
Block a user