17#include "ruby/internal/config.h"
21#include "debug_counter.h"
24#include "internal/box.h"
25#include "internal/class.h"
26#include "internal/eval.h"
27#include "internal/hash.h"
28#include "internal/object.h"
29#include "internal/string.h"
30#include "internal/variable.h"
80#define METACLASS_OF(k) RBASIC(k)->klass
81#define SET_METACLASS_OF(k, cls) RBASIC_SET_CLASS(k, cls)
83static void rb_class_remove_from_super_subclasses(
VALUE klass);
84static void rb_class_remove_from_module_subclasses(
VALUE klass);
85static void rb_class_classext_free_subclasses(rb_classext_t *ext);
88rb_class_unlink_classext(
VALUE klass,
const rb_box_t *box)
91 st_data_t key = (st_data_t)box->box_object;
92 VALUE obj_id = rb_obj_id(klass);
93 st_delete(box->classext_cow_classes, &obj_id, 0);
94 st_delete(RCLASS_CLASSEXT_TBL(klass), &key, &ext);
95 return (rb_classext_t *)ext;
99rb_class_classext_free(
VALUE klass, rb_classext_t *ext,
bool is_prime)
103 rb_id_table_free(RCLASSEXT_M_TBL(ext));
105 if (!RCLASSEXT_SHARED_CONST_TBL(ext) && (tbl = RCLASSEXT_CONST_TBL(ext)) != NULL) {
106 rb_free_const_table(tbl);
110 rb_class_remove_from_super_subclasses(klass);
111 rb_class_classext_free_subclasses(ext);
114 if (RCLASSEXT_SUPERCLASSES_WITH_SELF(ext)) {
116 xfree(RCLASSEXT_SUPERCLASSES(ext));
125rb_iclass_classext_free(
VALUE klass, rb_classext_t *ext,
bool is_prime)
127 if (RCLASSEXT_ICLASS_IS_ORIGIN(ext) && !RCLASSEXT_ICLASS_ORIGIN_SHARED_MTBL(ext)) {
129 rb_id_table_free(RCLASSEXT_M_TBL(ext));
132 if (RCLASSEXT_CALLABLE_M_TBL(ext) != NULL) {
133 rb_id_table_free(RCLASSEXT_CALLABLE_M_TBL(ext));
137 rb_class_remove_from_super_subclasses(klass);
138 rb_class_remove_from_module_subclasses(klass);
147iclass_free_orphan_classext(
VALUE klass, rb_classext_t *ext)
149 if (RCLASSEXT_ICLASS_IS_ORIGIN(ext) && !RCLASSEXT_ICLASS_ORIGIN_SHARED_MTBL(ext)) {
151 rb_id_table_free(RCLASSEXT_M_TBL(ext));
154 if (RCLASSEXT_CALLABLE_M_TBL(ext) != NULL) {
155 rb_id_table_free(RCLASSEXT_CALLABLE_M_TBL(ext));
167set_box_classext_update(st_data_t *key_ptr, st_data_t *val_ptr, st_data_t a,
int existing)
173 iclass_free_orphan_classext(args->obj, (rb_classext_t *)*val_ptr);
176 rb_bug(
"Updating existing classext for non-iclass never happen");
180 *val_ptr = (st_data_t)args->ext;
186rb_class_set_box_classext(
VALUE obj,
const rb_box_t *box, rb_classext_t *ext)
193 VM_ASSERT(BOX_USER_P(box));
195 st_update(RCLASS_CLASSEXT_TBL(obj), (st_data_t)box->box_object, set_box_classext_update, (st_data_t)&args);
200 rb_gc_writebarrier_remember(obj);
202 st_insert(box->classext_cow_classes, (st_data_t)rb_obj_id(obj), obj);
212static enum rb_id_table_iterator_result
213duplicate_classext_m_tbl_i(
ID key,
VALUE value,
void *data)
216 rb_method_entry_t *me = (rb_method_entry_t *)value;
217 rb_method_table_insert0(arg->klass, arg->tbl, key, me,
false);
218 return ID_TABLE_CONTINUE;
222duplicate_classext_m_tbl(
struct rb_id_table *orig,
VALUE klass,
bool init_missing)
227 return rb_id_table_create(0);
231 tbl = rb_id_table_create(rb_id_table_size(orig));
236 rb_id_table_foreach(orig, duplicate_classext_m_tbl_i, &data);
240static rb_const_entry_t *
241duplicate_classext_const_entry(rb_const_entry_t *src,
VALUE klass)
244 rb_const_entry_t *dst =
ZALLOC(rb_const_entry_t);
246 dst->flag = src->flag;
247 dst->line = src->line;
254static enum rb_id_table_iterator_result
255duplicate_classext_const_tbl_i(
ID key,
VALUE value,
void *data)
258 rb_const_entry_t *entry = duplicate_classext_const_entry((rb_const_entry_t *)value, arg->klass);
260 rb_id_table_insert(arg->tbl, key, (
VALUE)entry);
262 return ID_TABLE_CONTINUE;
273 dst = rb_id_table_create(rb_id_table_size(src));
279 rb_id_table_foreach(src, duplicate_classext_const_tbl_i, (
void *)&data);
285class_duplicate_iclass_classext(
VALUE iclass, rb_classext_t *mod_ext,
const rb_box_t *box)
289 rb_classext_t *src = RCLASS_EXT_PRIME(iclass);
290 rb_classext_t *ext = RCLASS_EXT_TABLE_LOOKUP_INTERNAL(iclass, box);
295 rb_invalidate_method_caches(RCLASSEXT_CALLABLE_M_TBL(ext), RCLASSEXT_CC_TBL(ext));
298 ext =
ZALLOC(rb_classext_t);
300 RCLASSEXT_BOX(ext) = box;
302 RCLASSEXT_SUPER(ext) = RCLASSEXT_SUPER(src);
305 if (RCLASSEXT_ICLASS_IS_ORIGIN(src) && !RCLASSEXT_ICLASS_ORIGIN_SHARED_MTBL(src)) {
306 RCLASSEXT_M_TBL(ext) = duplicate_classext_m_tbl(RCLASSEXT_M_TBL(src), iclass,
true);
309 RCLASSEXT_M_TBL(ext) = RCLASSEXT_M_TBL(mod_ext);
312 RCLASSEXT_CONST_TBL(ext) = RCLASSEXT_CONST_TBL(mod_ext);
313 RCLASSEXT_CVC_TBL(ext) = RCLASSEXT_CVC_TBL(mod_ext);
321 RCLASSEXT_SET_ORIGIN(ext, iclass, RCLASSEXT_ORIGIN(src));
322 RCLASSEXT_ICLASS_IS_ORIGIN(ext) = RCLASSEXT_ICLASS_IS_ORIGIN(src);
323 RCLASSEXT_ICLASS_ORIGIN_SHARED_MTBL(ext) = RCLASSEXT_ICLASS_ORIGIN_SHARED_MTBL(src);
325 RCLASSEXT_SET_INCLUDER(ext, iclass, RCLASSEXT_INCLUDER(src));
329 first_set = RCLASS_SET_BOX_CLASSEXT(iclass, box, ext);
331 RCLASS_SET_PRIME_CLASSEXT_WRITABLE(iclass,
false);
336rb_class_duplicate_classext(rb_classext_t *orig,
VALUE klass,
const rb_box_t *box)
340 rb_classext_t *ext =
ZALLOC(rb_classext_t);
343 RCLASSEXT_BOX(ext) = box;
345 RCLASSEXT_SUPER(ext) = RCLASSEXT_SUPER(orig);
347 RCLASSEXT_M_TBL(ext) = duplicate_classext_m_tbl(RCLASSEXT_M_TBL(orig), klass, dup_iclass);
348 RCLASSEXT_ICLASS_IS_ORIGIN(ext) =
true;
349 RCLASSEXT_ICLASS_ORIGIN_SHARED_MTBL(ext) =
false;
351 if (orig->fields_obj) {
352 RB_OBJ_WRITE(klass, &ext->fields_obj, rb_imemo_fields_clone(orig->fields_obj));
355 if (RCLASSEXT_SHARED_CONST_TBL(orig)) {
356 RCLASSEXT_CONST_TBL(ext) = RCLASSEXT_CONST_TBL(orig);
357 RCLASSEXT_SHARED_CONST_TBL(ext) =
true;
360 RCLASSEXT_CONST_TBL(ext) = duplicate_classext_const_tbl(RCLASSEXT_CONST_TBL(orig), klass);
361 RCLASSEXT_SHARED_CONST_TBL(ext) =
false;
373 VALUE cvc_table = RCLASSEXT_CVC_TBL(orig);
375 cvc_table = rb_marked_id_table_dup(cvc_table);
377 else if (dup_iclass) {
378 cvc_table = rb_marked_id_table_new(2);
380 RB_OBJ_WRITE(klass, &RCLASSEXT_CVC_TBL(ext), cvc_table);
384 RCLASSEXT_SET_ORIGIN(ext, klass, RCLASSEXT_ORIGIN(orig));
393 RCLASSEXT_PERMANENT_CLASSPATH(ext) = RCLASSEXT_PERMANENT_CLASSPATH(orig);
394 RCLASSEXT_CLONED(ext) = RCLASSEXT_CLONED(orig);
395 RCLASSEXT_CLASSPATH(ext) = RCLASSEXT_CLASSPATH(orig);
407 rb_subclass_entry_t *subclass_entry = RCLASSEXT_SUBCLASSES(orig);
408 if (subclass_entry) subclass_entry = subclass_entry->next;
409 while (subclass_entry) {
410 VALUE iclass = subclass_entry->klass;
421 class_duplicate_iclass_classext(iclass, ext, box);
423 subclass_entry = subclass_entry->next;
431rb_class_ensure_writable(
VALUE klass)
434 RCLASS_EXT_WRITABLE(klass);
438 rb_class_classext_foreach_callback_func *func;
443class_classext_foreach_i(st_data_t key, st_data_t value, st_data_t arg)
446 rb_class_classext_foreach_callback_func *func =
foreach_arg->func;
452rb_class_classext_foreach(
VALUE klass, rb_class_classext_foreach_callback_func *func,
void *arg)
454 st_table *tbl = RCLASS_CLASSEXT_TBL(klass);
459 rb_st_foreach(tbl, class_classext_foreach_i, (st_data_t)&
foreach_arg);
461 func(RCLASS_EXT_PRIME(klass),
true, (
VALUE)NULL, arg);
465rb_class_super_of(
VALUE klass)
471rb_class_singleton_p(
VALUE klass)
473 return RCLASS_SINGLETON_P(klass);
477rb_class_variation_count(
VALUE klass)
479 return RCLASS_VARIATION_COUNT(klass);
482static rb_subclass_entry_t *
483push_subclass_entry_to_list(
VALUE super,
VALUE klass)
485 rb_subclass_entry_t *entry, *head;
493 entry =
ZALLOC(rb_subclass_entry_t);
494 entry->klass = klass;
497 head = RCLASS_WRITABLE_SUBCLASSES(super);
499 head =
ZALLOC(rb_subclass_entry_t);
500 RCLASS_SET_SUBCLASSES(super, head);
502 entry->next = head->next;
506 head->next->prev = entry;
515rb_class_subclass_add(
VALUE super,
VALUE klass)
517 if (super && !UNDEF_P(super)) {
520 rb_subclass_entry_t *entry = push_subclass_entry_to_list(super, klass);
521 RCLASS_EXT_PRIME(klass)->subclass_entry = entry;
526rb_module_add_to_subclasses_list(
VALUE module,
VALUE iclass)
528 if (module && !UNDEF_P(module)) {
531 rb_subclass_entry_t *entry = push_subclass_entry_to_list(module, iclass);
532 RCLASS_EXT_PRIME(iclass)->module_subclass_entry = entry;
537rb_subclass_entry_remove(rb_subclass_entry_t *entry)
540 rb_subclass_entry_t *prev = entry->prev, *next = entry->next;
554rb_class_remove_from_super_subclasses(
VALUE klass)
556 rb_classext_t *ext = RCLASS_EXT_PRIME(klass);
557 rb_subclass_entry_t *entry = RCLASSEXT_SUBCLASS_ENTRY(ext);
560 rb_subclass_entry_remove(entry);
561 RCLASSEXT_SUBCLASS_ENTRY(ext) = NULL;
565rb_class_remove_from_module_subclasses(
VALUE klass)
567 rb_classext_t *ext = RCLASS_EXT_PRIME(klass);
568 rb_subclass_entry_t *entry = RCLASSEXT_MODULE_SUBCLASS_ENTRY(ext);
571 rb_subclass_entry_remove(entry);
572 RCLASSEXT_MODULE_SUBCLASS_ENTRY(ext) = NULL;
576rb_class_classext_free_subclasses(rb_classext_t *ext)
578 rb_subclass_entry_t *head = RCLASSEXT_SUBCLASSES(ext);
583 rb_subclass_entry_t *entry = head->next;
586 rb_classext_t *child_ext = RCLASS_EXT_PRIME(entry->klass);
587 if (RCLASSEXT_SUBCLASS_ENTRY(child_ext) == entry) {
588 RCLASSEXT_SUBCLASS_ENTRY(child_ext) = NULL;
590 if (RCLASSEXT_MODULE_SUBCLASS_ENTRY(child_ext) == entry) {
591 RCLASSEXT_MODULE_SUBCLASS_ENTRY(child_ext) = NULL;
599 rb_subclass_entry_t *next = entry->next;
603 RCLASSEXT_SUBCLASSES(ext) = NULL;
610 rb_subclass_entry_t *tmp;
611 rb_subclass_entry_t *cur = RCLASS_SUBCLASSES_FIRST(klass);
615 VALUE curklass = cur->klass;
625class_detach_subclasses(
VALUE klass,
VALUE arg)
627 rb_class_remove_from_super_subclasses(klass);
631class_switch_superclass(
VALUE super,
VALUE klass)
634 class_detach_subclasses(klass,
Qnil);
635 rb_class_subclass_add(super, klass);
652 const rb_box_t *box = rb_current_box();
654 if (!ruby_box_init_done) {
667 if (boxable) flags |= RCLASS_BOXABLE;
669 NEWOBJ_OF(obj,
struct RClass, klass, flags, alloc_size, 0);
673 memset(RCLASS_EXT_PRIME(obj), 0,
sizeof(rb_classext_t));
686 RCLASS_PRIME_BOX((
VALUE)obj) = box;
689 RCLASS_SET_PRIME_CLASSEXT_WRITABLE((
VALUE)obj, !boxable || BOX_USER_P(box));
692 RCLASS_SET_REFINED_CLASS((
VALUE)obj,
Qnil);
700 bool boxable = rb_box_available() && BOX_ROOT_P(rb_current_box());
705class_associate_super(
VALUE klass,
VALUE super,
bool init)
707 if (super && !UNDEF_P(super)) {
712 class_switch_superclass(super, klass);
716 RCLASS_SET_SUPER(klass, super);
719 RCLASS_WRITE_SUPER(klass, super);
721 rb_class_update_superclasses(klass);
728 return class_associate_super(klass, super,
false);
732class_initialize_method_table(
VALUE c)
735 RCLASS_SET_M_TBL(c, rb_id_table_create(0));
739class_clear_method_table(
VALUE c)
741 RCLASS_WRITE_M_TBL(c, rb_id_table_create(0));
745class_boot_boxable(
VALUE super,
bool boxable)
751 class_initialize_method_table(klass);
753 class_associate_super(klass, super,
true);
754 if (super && !UNDEF_P(super)) {
755 rb_class_set_initialized(klass);
773 return class_boot_boxable(super,
false);
777class_superclasses_including_self(
VALUE klass)
779 if (RCLASS_SUPERCLASSES_WITH_SELF_P(klass))
780 return RCLASS_SUPERCLASSES(klass);
782 size_t depth = RCLASS_SUPERCLASS_DEPTH(klass);
785 memcpy(superclasses, RCLASS_SUPERCLASSES(klass),
sizeof(
VALUE) * depth);
786 superclasses[depth] = klass;
792rb_class_update_superclasses(
VALUE klass)
799 if (UNDEF_P(super))
return;
802 if (RCLASS_SUPERCLASSES(klass))
817 rb_class_update_superclasses(super);
820 if (!RCLASS_SUPERCLASS_DEPTH(super))
824 super_depth = RCLASS_SUPERCLASS_DEPTH(super);
825 if (RCLASS_SUPERCLASSES_WITH_SELF_P(super)) {
826 superclasses = RCLASS_SUPERCLASSES(super);
829 superclasses = class_superclasses_including_self(super);
830 RCLASS_WRITE_SUPERCLASSES(super, super_depth, superclasses,
true);
833 size_t depth = super_depth == RCLASS_MAX_SUPERCLASS_DEPTH ? super_depth : super_depth + 1;
834 RCLASS_WRITE_SUPERCLASSES(klass, depth, superclasses,
false);
841 rb_raise(
rb_eTypeError,
"superclass must be an instance of Class (given an instance of %"PRIsVALUE
")",
844 if (RCLASS_SINGLETON_P(super)) {
845 rb_raise(
rb_eTypeError,
"can't make subclass of singleton class");
860 RCLASS_SET_MAX_IV_COUNT(klass, RCLASS_MAX_IV_COUNT(super));
863 RUBY_ASSERT(getenv(
"RUBY_BOX") || RCLASS_PRIME_CLASSEXT_WRITABLE_P(klass));
869rb_class_s_alloc(
VALUE klass)
875clone_method(
VALUE old_klass,
VALUE new_klass,
ID mid,
const rb_method_entry_t *me)
877 if (me->def->type == VM_METHOD_TYPE_ISEQ) {
878 rb_cref_t *new_cref = rb_vm_rewrite_cref(me->def->body.iseq.
cref, old_klass, new_klass);
879 rb_add_method_iseq(new_klass, mid, me->def->body.iseq.
iseqptr, new_cref, METHOD_ENTRY_VISI(me));
882 rb_method_entry_set(new_klass, mid, me, METHOD_ENTRY_VISI(me));
891static enum rb_id_table_iterator_result
892clone_method_i(
ID key,
VALUE value,
void *data)
895 clone_method(arg->old_klass, arg->new_klass, key, (
const rb_method_entry_t *)value);
896 return ID_TABLE_CONTINUE;
907 rb_const_entry_t *nce =
ALLOC(rb_const_entry_t);
908 MEMCPY(nce, ce, rb_const_entry_t, 1);
912 rb_id_table_insert(arg->tbl, key, (
VALUE)nce);
913 return ID_TABLE_CONTINUE;
916static enum rb_id_table_iterator_result
917clone_const_i(
ID key,
VALUE value,
void *data)
919 return clone_const(key, (
const rb_const_entry_t *)value, data);
928 if (RCLASS_INITIALIZED_P(clone)) {
931 if (RCLASS_SINGLETON_P(orig)) {
942cvc_table_entry_alloc(
void)
947static enum rb_id_table_iterator_result
948cvc_table_copy(
ID id,
VALUE val,
void *data)
956 ent = cvc_table_entry_alloc();
959 ent->global_cvar_state = orig_entry->global_cvar_state;
960 rb_marked_id_table_insert(ctx->new_table,
id, (
VALUE)ent);
962 return ID_TABLE_CONTINUE;
968 if (RCLASS_CONST_TBL(clone)) {
969 rb_free_const_table(RCLASS_CONST_TBL(clone));
970 RCLASS_WRITE_CONST_TBL(clone, 0,
false);
972 if (RCLASS_CVC_TBL(orig)) {
973 VALUE rb_cvc_tbl = RCLASS_CVC_TBL(orig);
974 VALUE rb_cvc_tbl_dup = rb_marked_id_table_new(rb_marked_id_table_size(rb_cvc_tbl));
978 ctx.new_table = rb_cvc_tbl_dup;
979 rb_marked_id_table_foreach(rb_cvc_tbl, cvc_table_copy, &ctx);
980 RCLASS_WRITE_CVC_TBL(clone, rb_cvc_tbl_dup);
982 rb_id_table_free(RCLASS_M_TBL(clone));
983 RCLASS_WRITE_M_TBL(clone, 0);
985 rb_fields_tbl_copy(clone, orig);
987 if (RCLASS_CONST_TBL(orig)) {
990 struct rb_id_table *orig_tbl = RCLASS_CONST_TBL(orig);
991 arg.tbl = const_tbl = rb_id_table_create(rb_id_table_size(orig_tbl));
993 rb_id_table_foreach(orig_tbl, clone_const_i, &arg);
994 RCLASS_WRITE_CONST_TBL(clone, const_tbl,
false);
995 rb_gc_writebarrier_remember(clone);
999static bool ensure_origin(
VALUE klass);
1002rb_class_set_initialized(
VALUE klass)
1010rb_module_check_initializable(
VALUE mod)
1012 if (RCLASS_INITIALIZED_P(mod)) {
1026 class_init_copy_check(clone, orig);
1029 rb_module_check_initializable(clone);
1039 rb_class_set_initialized(clone);
1044 RCLASS_SET_CLONED(clone,
true);
1045 RCLASS_SET_CLONED(orig,
true);
1047 if (!RCLASS_SINGLETON_P(
CLASS_OF(clone))) {
1052 RCLASS_SET_ALLOCATOR(clone, RCLASS_ALLOCATOR(orig));
1054 copy_tables(clone, orig);
1055 if (RCLASS_M_TBL(orig)) {
1057 arg.old_klass = orig;
1058 arg.new_klass = clone;
1059 class_initialize_method_table(clone);
1060 rb_id_table_foreach(RCLASS_M_TBL(orig), clone_method_i, &arg);
1063 if (RCLASS_ORIGIN(orig) == orig) {
1068 VALUE orig_origin = RCLASS_ORIGIN(orig);
1069 VALUE prev_clone_p = clone;
1077 ensure_origin(clone);
1078 clone_origin = RCLASS_ORIGIN(clone);
1080 while (p && p != orig_origin) {
1082 rb_bug(
"non iclass between module/class and origin");
1084 clone_p = class_alloc(
T_ICLASS, METACLASS_OF(p));
1085 RCLASS_SET_M_TBL(clone_p, RCLASS_M_TBL(p));
1086 rb_class_set_super(prev_clone_p, clone_p);
1087 prev_clone_p = clone_p;
1088 RCLASS_SET_CONST_TBL(clone_p, RCLASS_CONST_TBL(p),
false);
1090 RCLASS_SET_INCLUDER(clone_p, clone);
1092 add_subclass = TRUE;
1093 if (p != RCLASS_ORIGIN(p)) {
1094 origin[0] = clone_p;
1095 origin[1] = RCLASS_ORIGIN(p);
1098 else if ((origin_len =
RARRAY_LEN(origin_stack)) > 1 &&
1100 RCLASS_WRITE_ORIGIN(
RARRAY_AREF(origin_stack, (origin_len -= 2)), clone_p);
1101 RICLASS_WRITE_ORIGIN_SHARED_MTBL(clone_p);
1103 add_subclass = FALSE;
1106 rb_module_add_to_subclasses_list(METACLASS_OF(p), clone_p);
1111 if (p == orig_origin) {
1113 rb_class_set_super(clone_p, clone_origin);
1114 rb_class_set_super(clone_origin,
RCLASS_SUPER(orig_origin));
1116 copy_tables(clone_origin, orig_origin);
1117 if (RCLASS_M_TBL(orig_origin)) {
1119 arg.old_klass = orig;
1120 arg.new_klass = clone;
1121 class_initialize_method_table(clone_origin);
1122 rb_id_table_foreach(RCLASS_M_TBL(orig_origin), clone_method_i, &arg);
1126 rb_bug(
"no origin for class that has origin");
1129 rb_class_update_superclasses(clone);
1138 return rb_singleton_class_clone_and_attach(obj,
Qundef);
1143rb_singleton_class_clone_and_attach(
VALUE obj,
VALUE attach)
1145 const VALUE klass = METACLASS_OF(obj);
1151 if (!(RCLASS_SINGLETON_P(klass) && RCLASS_ATTACHED_OBJECT(klass) == obj)) {
1157 bool klass_of_clone_is_new;
1162 klass_of_clone_is_new =
true;
1163 RBASIC_SET_CLASS(clone, clone);
1169 klass_of_clone_is_new = (METACLASS_OF(klass) != klass_metaclass_clone);
1170 RBASIC_SET_CLASS(clone, klass_metaclass_clone);
1174 class_initialize_method_table(clone);
1177 rb_fields_tbl_copy(clone, klass);
1178 if (RCLASS_CONST_TBL(klass)) {
1181 arg.tbl = table = rb_id_table_create(rb_id_table_size(RCLASS_CONST_TBL(klass)));
1183 rb_id_table_foreach(RCLASS_CONST_TBL(klass), clone_const_i, &arg);
1184 RCLASS_SET_CONST_TBL(clone, table,
false);
1186 if (!UNDEF_P(attach)) {
1191 arg.old_klass = klass;
1192 arg.new_klass = clone;
1193 rb_id_table_foreach(RCLASS_M_TBL(klass), clone_method_i, &arg);
1195 if (klass_of_clone_is_new) {
1207 if (RCLASS_SINGLETON_P(klass)) {
1208 RCLASS_SET_ATTACHED_OBJECT(klass, obj);
1217#define META_CLASS_OF_CLASS_CLASS_P(k) (METACLASS_OF(k) == (k))
1220rb_singleton_class_has_metaclass_p(
VALUE sklass)
1222 return RCLASS_ATTACHED_OBJECT(METACLASS_OF(sklass)) == sklass;
1226rb_singleton_class_internal_p(
VALUE sklass)
1229 !rb_singleton_class_has_metaclass_p(sklass));
1237#define HAVE_METACLASS_P(k) \
1238 (FL_TEST(METACLASS_OF(k), FL_SINGLETON) && \
1239 rb_singleton_class_has_metaclass_p(k))
1248#define ENSURE_EIGENCLASS(klass) \
1249 (HAVE_METACLASS_P(klass) ? METACLASS_OF(klass) : make_metaclass(klass))
1271 SET_METACLASS_OF(klass, metaclass);
1272 SET_METACLASS_OF(metaclass, metaclass);
1275 VALUE tmp = METACLASS_OF(klass);
1276 SET_METACLASS_OF(klass, metaclass);
1283 rb_class_set_initialized(klass);
1286 rb_class_update_superclasses(METACLASS_OF(metaclass));
1300 VALUE orig_class = METACLASS_OF(obj);
1301 VALUE klass = class_boot_boxable(orig_class,
FL_TEST_RAW(orig_class, RCLASS_BOXABLE));
1304 RBASIC_SET_CLASS(obj, klass);
1306 rb_yjit_invalidate_no_singleton_class(orig_class);
1307 rb_zjit_invalidate_no_singleton_class(orig_class);
1309 SET_METACLASS_OF(klass, METACLASS_OF(
rb_class_real(orig_class)));
1315boot_defclass(
const char *name,
VALUE super)
1318 ID id = rb_intern(name);
1320 rb_const_set((rb_cObject ? rb_cObject : obj),
id, obj);
1321 rb_vm_register_global_object(obj);
1372refinement_import_methods(
int argc,
VALUE *argv,
VALUE refinement)
1401 rb_vm_register_global_object(rb_cObject);
1406 rb_cModule = boot_defclass(
"Module", rb_cObject);
1418 RBASIC_SET_CLASS(rb_cObject,
rb_cClass);
1452 if (!super) super = rb_cObject;
1454 rb_make_metaclass(klass, METACLASS_OF(super));
1472 if (!super) super = rb_cObject;
1474 return rb_funcall(super, inherited, 1, klass);
1481 ID id = rb_intern(name);
1490 rb_raise(
rb_eTypeError,
"superclass mismatch for class %s", name);
1494 rb_vm_register_global_object(klass);
1498 rb_raise(rb_eArgError,
"no super class for '%s'", name);
1501 rb_vm_register_global_object(klass);
1515rb_define_class_id_under_no_pin(
VALUE outer,
ID id,
VALUE super)
1522 rb_raise(
rb_eTypeError,
"%"PRIsVALUE
"::%"PRIsVALUE
" is not a class"
1528 "%"PRIsVALUE
"::%"PRIsVALUE
""
1529 " (%"PRIsVALUE
" is given but was %"PRIsVALUE
")",
1536 rb_raise(rb_eArgError,
"no super class for '%"PRIsVALUE
"::%"PRIsVALUE
"'",
1550 VALUE klass = rb_define_class_id_under_no_pin(outer,
id, super);
1551 rb_vm_register_global_object(klass);
1556rb_module_s_alloc(
VALUE klass)
1559 class_initialize_method_table(mod);
1564module_new(
VALUE klass)
1567 class_initialize_method_table(mdl);
1594 ID id = rb_intern(name);
1597 module = rb_const_get(rb_cObject, id);
1599 rb_raise(
rb_eTypeError,
"%s is not a module (%"PRIsVALUE
")",
1603 rb_vm_register_global_object(module);
1606 module = rb_module_new();
1607 rb_vm_register_global_object(module);
1625 module = rb_const_get_at(outer, id);
1627 rb_raise(
rb_eTypeError,
"%"PRIsVALUE
"::%"PRIsVALUE
" is not a module"
1632 rb_vm_register_global_object(module);
1635 module = rb_module_new();
1638 rb_vm_register_global_object(module);
1644rb_include_class_new(
VALUE module,
VALUE super)
1648 RCLASS_SET_M_TBL(klass, RCLASS_WRITABLE_M_TBL(module));
1650 RCLASS_SET_ORIGIN(klass, klass);
1652 module = METACLASS_OF(module);
1655 if (RCLASS_WRITABLE_CONST_TBL(module)) {
1656 RCLASS_SET_CONST_TBL(klass, RCLASS_WRITABLE_CONST_TBL(module),
true);
1659 RCLASS_WRITE_CONST_TBL(module, rb_id_table_create(0),
false);
1660 RCLASS_SET_CONST_TBL(klass, RCLASS_WRITABLE_CONST_TBL(module),
true);
1663 RCLASS_SET_CVC_TBL(klass, RCLASS_WRITABLE_CVC_TBL(module));
1665 class_associate_super(klass, super,
true);
1666 RBASIC_SET_CLASS(klass, module);
1668 return (
VALUE)klass;
1671static int include_modules_at(
const VALUE klass,
VALUE c,
VALUE module,
int search_super);
1678 rb_class_set_initialized(module);
1679 if (!
NIL_P(rb_refinement_module_get_refined_class(module))) {
1680 rb_raise(rb_eArgError,
"refinement module is not allowed");
1689 ensure_includable(klass, module);
1691 changed = include_modules_at(klass, RCLASS_ORIGIN(klass), module, TRUE);
1693 rb_raise(rb_eArgError,
"cyclic include detected");
1696 rb_subclass_entry_t *iclass = RCLASS_SUBCLASSES_FIRST(klass);
1699 VALUE check_class = iclass->klass;
1702 if (!rb_objspace_garbage_object_p(check_class)) {
1703 while (check_class) {
1704 RUBY_ASSERT(!rb_objspace_garbage_object_p(check_class));
1707 (METACLASS_OF(check_class) == module)) {
1714 include_modules_at(iclass->klass, RCLASS_ORIGIN(iclass->klass), module, TRUE);
1718 iclass = iclass->next;
1723static enum rb_id_table_iterator_result
1724add_refined_method_entry_i(
ID key,
VALUE value,
void *data)
1726 rb_add_refined_method_entry((
VALUE)data, key);
1727 return ID_TABLE_CONTINUE;
1730static enum rb_id_table_iterator_result
1731clear_module_cache_i(
ID id,
VALUE val,
void *data)
1734 rb_clear_method_cache(klass,
id);
1735 return ID_TABLE_CONTINUE;
1739module_in_super_chain(
const VALUE klass,
VALUE module)
1741 struct rb_id_table *
const klass_m_tbl = RCLASS_M_TBL(RCLASS_ORIGIN(klass));
1744 if (klass_m_tbl == RCLASS_M_TBL(module))
1746 module = RCLASS_SUPER(module);
1754static enum rb_id_table_iterator_result
1755clear_constant_cache_i(
ID id,
VALUE value,
void *data)
1758 return ID_TABLE_CONTINUE;
1762do_include_modules_at(
const VALUE klass,
VALUE c,
VALUE module,
int search_super,
bool check_cyclic)
1764 VALUE p, iclass, origin_stack = 0;
1765 int method_changed = 0;
1767 VALUE klass_origin = RCLASS_ORIGIN(klass);
1768 VALUE original_klass = klass;
1770 if (check_cyclic && module_in_super_chain(klass, module))
1775 int superclass_seen = FALSE;
1781 if (klass_origin != c || search_super) {
1787 if (klass_origin == p && !search_super)
1792 if (RCLASS_M_TBL(p) == RCLASS_M_TBL(module)) {
1793 if (!superclass_seen && c_seen) {
1800 superclass_seen = TRUE;
1808 RB_DEBUG_COUNTER_INC(cvar_include_invalidate);
1809 ruby_vm_global_cvar_state++;
1810 tbl = RCLASS_M_TBL(module);
1811 if (tbl && rb_id_table_size(tbl)) {
1814 rb_id_table_foreach(tbl, clear_module_cache_i, (
void *)super_class);
1819 rb_id_table_foreach(tbl, clear_module_cache_i, (
void *)original_klass);
1826 iclass = rb_include_class_new(module, super_class);
1827 c = rb_class_set_super(c, iclass);
1828 RCLASS_SET_INCLUDER(iclass, klass);
1829 if (module != RCLASS_ORIGIN(module)) {
1831 VALUE origin[2] = {iclass, RCLASS_ORIGIN(module)};
1834 else if (origin_stack && (origin_len =
RARRAY_LEN(origin_stack)) > 1 &&
1835 RARRAY_AREF(origin_stack, origin_len - 1) == module) {
1836 RCLASS_WRITE_ORIGIN(
RARRAY_AREF(origin_stack, (origin_len -= 2)), iclass);
1837 RICLASS_WRITE_ORIGIN_SHARED_MTBL(iclass);
1843 rb_module_add_to_subclasses_list(m, iclass);
1846 VALUE refined_class =
1847 rb_refinement_module_get_refined_class(klass);
1849 rb_id_table_foreach(RCLASS_M_TBL(module), add_refined_method_entry_i, (
void *)refined_class);
1853 tbl = RCLASS_CONST_TBL(module);
1854 if (tbl && rb_id_table_size(tbl))
1855 rb_id_table_foreach(tbl, clear_constant_cache_i, NULL);
1857 module = RCLASS_SUPER(module);
1860 return method_changed;
1864include_modules_at(
const VALUE klass,
VALUE c,
VALUE module,
int search_super)
1866 return do_include_modules_at(klass, c, module, search_super,
true);
1869static enum rb_id_table_iterator_result
1870move_refined_method(
ID key,
VALUE value,
void *data)
1872 rb_method_entry_t *me = (rb_method_entry_t *)value;
1874 if (me->def->type == VM_METHOD_TYPE_REFINED) {
1876 struct rb_id_table *tbl = RCLASS_WRITABLE_M_TBL(klass);
1878 if (me->def->body.refined.orig_me) {
1879 const rb_method_entry_t *orig_me = me->def->body.refined.orig_me, *new_me;
1880 RB_OBJ_WRITE(me, &me->def->body.refined.orig_me, NULL);
1881 new_me = rb_method_entry_clone(me);
1882 rb_method_table_insert(klass, tbl, key, new_me);
1883 rb_method_entry_copy(me, orig_me);
1884 return ID_TABLE_CONTINUE;
1887 rb_method_table_insert(klass, tbl, key, me);
1888 return ID_TABLE_DELETE;
1892 return ID_TABLE_CONTINUE;
1896static enum rb_id_table_iterator_result
1897cache_clear_refined_method(
ID key,
VALUE value,
void *data)
1899 rb_method_entry_t *me = (rb_method_entry_t *) value;
1901 if (me->def->type == VM_METHOD_TYPE_REFINED && me->def->body.refined.orig_me) {
1903 rb_clear_method_cache(klass, me->called_id);
1908 return ID_TABLE_CONTINUE;
1912ensure_origin(
VALUE klass)
1914 VALUE origin = RCLASS_ORIGIN(klass);
1915 if (origin == klass) {
1916 origin = class_alloc(
T_ICLASS, klass);
1917 RCLASS_SET_M_TBL(origin, RCLASS_M_TBL(klass));
1919 rb_class_set_super(klass, origin);
1920 RCLASS_WRITE_ORIGIN(klass, origin);
1924 rb_gc_writebarrier_remember(origin);
1926 class_clear_method_table(klass);
1927 rb_id_table_foreach(RCLASS_M_TBL(origin), cache_clear_refined_method, (
void *)klass);
1928 rb_id_table_foreach(RCLASS_M_TBL(origin), move_refined_method, (
void *)klass);
1938 bool klass_had_no_origin;
1940 ensure_includable(klass, module);
1941 if (module_in_super_chain(klass, module))
1942 rb_raise(rb_eArgError,
"cyclic prepend detected");
1944 klass_had_no_origin = ensure_origin(klass);
1945 changed = do_include_modules_at(klass, klass, module, FALSE,
false);
1948 rb_vm_check_redefinition_by_prepend(klass);
1951 rb_subclass_entry_t *iclass = RCLASS_SUBCLASSES_FIRST(klass);
1952 VALUE klass_origin = RCLASS_ORIGIN(klass);
1953 struct rb_id_table *klass_m_tbl = RCLASS_M_TBL(klass);
1954 struct rb_id_table *klass_origin_m_tbl = RCLASS_M_TBL(klass_origin);
1958 if (!rb_objspace_garbage_object_p(iclass->klass)) {
1959 const VALUE subclass = iclass->klass;
1960 if (klass_had_no_origin && klass_origin_m_tbl == RCLASS_M_TBL(subclass)) {
1962 rb_id_table_foreach(RCLASS_M_TBL(subclass), clear_module_cache_i, (
void *)subclass);
1963 RCLASS_WRITE_M_TBL(subclass, klass_m_tbl);
1965 rb_class_set_super(subclass, origin);
1966 RCLASS_SET_INCLUDER(origin, RCLASS_INCLUDER(subclass));
1967 RCLASS_WRITE_ORIGIN(subclass, origin);
1968 RICLASS_SET_ORIGIN_SHARED_MTBL(origin);
1970 include_modules_at(subclass, subclass, module, FALSE);
1973 iclass = iclass->next;
2005 VALUE origin = RCLASS_ORIGIN(mod);
2009 VALUE m = METACLASS_OF(p);
2044 if (METACLASS_OF(p) == mod2)
return Qtrue;
2074 refined_class = rb_refinement_module_get_refined_class(mod);
2078 if (p == refined_class)
break;
2079 if (p != RCLASS_ORIGIN(p))
continue;
2095 bool immediate_only;
2099class_descendants_recursive(
VALUE klass,
VALUE v)
2105 if (!RCLASS_SINGLETON_P(klass)) {
2106 if (data->buffer && data->count < data->maxcount && !rb_objspace_garbage_object_p(klass)) {
2111 if (data->immediate_only)
return;
2113 rb_class_foreach_subclass(klass, class_descendants_recursive, v);
2117class_descendants(
VALUE klass,
bool immediate_only)
2122 rb_class_foreach_subclass(klass, class_descendants_recursive, (
VALUE) &data);
2126 data.maxcount = data.count;
2132 rb_class_foreach_subclass(klass, class_descendants_recursive, (
VALUE) &data);
2135 rb_bug(
"GC must not occur during the subclass iteration of Class#descendants");
2183 return class_descendants(klass,
true);
2206 if (!RCLASS_SINGLETON_P(klass)) {
2207 rb_raise(
rb_eTypeError,
"'%"PRIsVALUE
"' is not a singleton class", klass);
2210 return RCLASS_ATTACHED_OBJECT(klass);
2214ins_methods_push(st_data_t name, st_data_t ary)
2220ins_methods_i(st_data_t name, st_data_t
type, st_data_t ary)
2222 switch ((rb_method_visibility_t)
type) {
2223 case METHOD_VISI_UNDEF:
2224 case METHOD_VISI_PRIVATE:
2227 ins_methods_push(name, ary);
2234ins_methods_type_i(st_data_t name, st_data_t
type, st_data_t ary, rb_method_visibility_t visi)
2236 if ((rb_method_visibility_t)
type == visi) {
2237 ins_methods_push(name, ary);
2243ins_methods_prot_i(st_data_t name, st_data_t
type, st_data_t ary)
2245 return ins_methods_type_i(name,
type, ary, METHOD_VISI_PROTECTED);
2249ins_methods_priv_i(st_data_t name, st_data_t
type, st_data_t ary)
2251 return ins_methods_type_i(name,
type, ary, METHOD_VISI_PRIVATE);
2255ins_methods_pub_i(st_data_t name, st_data_t
type, st_data_t ary)
2257 return ins_methods_type_i(name,
type, ary, METHOD_VISI_PUBLIC);
2261ins_methods_undef_i(st_data_t name, st_data_t
type, st_data_t ary)
2263 return ins_methods_type_i(name,
type, ary, METHOD_VISI_UNDEF);
2271static enum rb_id_table_iterator_result
2272method_entry_i(
ID key,
VALUE value,
void *data)
2274 const rb_method_entry_t *me = (
const rb_method_entry_t *)value;
2276 rb_method_visibility_t
type;
2278 if (me->def->type == VM_METHOD_TYPE_REFINED) {
2279 VALUE owner = me->owner;
2280 me = rb_resolve_refined_method(
Qnil, me);
2281 if (!me)
return ID_TABLE_CONTINUE;
2282 if (!arg->recur && me->owner != owner)
return ID_TABLE_CONTINUE;
2284 if (!st_is_member(arg->list, key)) {
2285 if (UNDEFINED_METHOD_ENTRY_P(me)) {
2286 type = METHOD_VISI_UNDEF;
2289 type = METHOD_ENTRY_VISI(me);
2292 st_add_direct(arg->list, key, (st_data_t)
type);
2294 return ID_TABLE_CONTINUE;
2302 rb_id_table_foreach(m_tbl, method_entry_i, me_arg);
2306particular_class_p(
VALUE mod)
2308 if (!mod)
return false;
2309 if (RCLASS_SINGLETON_P(mod))
return true;
2315class_instance_method_list(
int argc,
const VALUE *argv,
VALUE mod,
int obj,
int (*func) (st_data_t, st_data_t, st_data_t))
2318 int recur = TRUE, prepended = 0;
2323 me_arg.list = st_init_numtable();
2324 me_arg.recur = recur;
2327 for (; particular_class_p(mod); mod =
RCLASS_SUPER(mod)) {
2328 add_instance_method_list(mod, &me_arg);
2332 if (!recur && RCLASS_ORIGIN(mod) != mod) {
2333 mod = RCLASS_ORIGIN(mod);
2338 add_instance_method_list(mod, &me_arg);
2344 st_free_table(me_arg.list);
2388 return class_instance_method_list(argc, argv, mod, 0, ins_methods_i);
2403 return class_instance_method_list(argc, argv, mod, 0, ins_methods_prot_i);
2426 return class_instance_method_list(argc, argv, mod, 0, ins_methods_priv_i);
2441 return class_instance_method_list(argc, argv, mod, 0, ins_methods_pub_i);
2453rb_class_undefined_instance_methods(
VALUE mod)
2456 return class_instance_method_list(1, &include_super, mod, 0, ins_methods_undef_i);
2490rb_obj_methods(
int argc,
const VALUE *argv,
VALUE obj)
2493 if (argc > 0 && !
RTEST(argv[0])) {
2496 return class_instance_method_list(argc, argv,
CLASS_OF(obj), 1, ins_methods_i);
2509rb_obj_protected_methods(
int argc,
const VALUE *argv,
VALUE obj)
2511 return class_instance_method_list(argc, argv,
CLASS_OF(obj), 1, ins_methods_prot_i);
2524rb_obj_private_methods(
int argc,
const VALUE *argv,
VALUE obj)
2526 return class_instance_method_list(argc, argv,
CLASS_OF(obj), 1, ins_methods_priv_i);
2539rb_obj_public_methods(
int argc,
const VALUE *argv,
VALUE obj)
2541 return class_instance_method_list(argc, argv,
CLASS_OF(obj), 1, ins_methods_pub_i);
2580 VALUE ary, klass, origin;
2586 if (RCLASS_SINGLETON_P(obj)) {
2590 origin = RCLASS_ORIGIN(klass);
2591 me_arg.list = st_init_numtable();
2592 me_arg.recur = recur;
2593 if (klass && RCLASS_SINGLETON_P(klass)) {
2594 if ((mtbl = RCLASS_M_TBL(origin)) != 0) rb_id_table_foreach(mtbl, method_entry_i, &me_arg);
2599 if (klass != origin && (mtbl = RCLASS_M_TBL(klass)) != 0) rb_id_table_foreach(mtbl, method_entry_i, &me_arg);
2605 st_free_table(me_arg.list);
2618#ifdef rb_define_method_id
2619#undef rb_define_method_id
2624 rb_add_method_cfunc(klass, mid, func, argc, METHOD_VISI_PUBLIC);
2627#ifdef rb_define_method
2628#undef rb_define_method
2633 rb_add_method_cfunc(klass, rb_intern(name), func, argc, METHOD_VISI_PUBLIC);
2636#ifdef rb_define_protected_method
2637#undef rb_define_protected_method
2642 rb_add_method_cfunc(klass, rb_intern(name), func, argc, METHOD_VISI_PROTECTED);
2645#ifdef rb_define_private_method
2646#undef rb_define_private_method
2651 rb_add_method_cfunc(klass, rb_intern(name), func, argc, METHOD_VISI_PRIVATE);
2657 rb_add_method(klass, rb_intern(name), VM_METHOD_TYPE_UNDEF, 0, METHOD_VISI_UNDEF);
2660static enum rb_id_table_iterator_result
2661undef_method_i(
ID name,
VALUE value,
void *data)
2664 rb_add_method(klass, name, VM_METHOD_TYPE_UNDEF, 0, METHOD_VISI_UNDEF);
2665 return ID_TABLE_CONTINUE;
2669rb_undef_methods_from(
VALUE klass,
VALUE super)
2673 rb_id_table_foreach(mtbl, undef_method_i, (
void *)klass);
2686special_singleton_class_of(
VALUE obj)
2692 default:
return Qnil;
2697rb_special_singleton_class(
VALUE obj)
2699 return special_singleton_class_of(obj);
2712singleton_class_of(
VALUE obj,
bool ensure_eigenclass)
2716 switch (
TYPE(obj)) {
2726 klass = special_singleton_class_of(obj);
2728 rb_bug(
"unknown immediate %p", (
void *)obj);
2732 if (CHILLED_STRING_P(obj)) {
2733 CHILLED_STRING_MUTATED(obj);
2743 RB_VM_LOCK_ENTER_LEV(&lev);
2746 klass = METACLASS_OF(obj);
2747 if (!(RCLASS_SINGLETON_P(klass) &&
2748 RCLASS_ATTACHED_OBJECT(klass) == obj)) {
2749 klass = rb_make_metaclass(obj, klass);
2758 RB_VM_LOCK_LEAVE_LEV(&lev);
2768 if (!RCLASS_SINGLETON_P(x)) {
2791 return rb_special_singleton_class(obj);
2793 klass = METACLASS_OF(obj);
2794 if (!RCLASS_SINGLETON_P(klass))
return Qnil;
2795 if (RCLASS_ATTACHED_OBJECT(klass) != obj)
return Qnil;
2802 return singleton_class_of(obj,
true);
2814#ifdef rb_define_singleton_method
2815#undef rb_define_singleton_method
2823#ifdef rb_define_module_function
2824#undef rb_define_module_function
2833#ifdef rb_define_global_function
2834#undef rb_define_global_function
2845 rb_alias(klass, rb_intern(name1), rb_intern(name2));
2851 rb_attr(klass, rb_intern(name), read, write, FALSE);
2855rb_keyword_error_new(
const char *error,
VALUE keys)
2858 VALUE error_message = rb_sprintf(
"%s keyword%.*s", error,
len > 1,
"s");
2865 if (++i >=
len)
break;
2873NORETURN(
static void rb_keyword_error(
const char *error,
VALUE keys));
2875rb_keyword_error(
const char *error,
VALUE keys)
2880NORETURN(
static void unknown_keyword_error(
VALUE hash,
const ID *table,
int keywords));
2882unknown_keyword_error(
VALUE hash,
const ID *table,
int keywords)
2885 for (i = 0; i < keywords; i++) {
2886 st_data_t key =
ID2SYM(table[i]);
2887 rb_hash_stlike_delete(hash, &key, NULL);
2889 rb_keyword_error(
"unknown", rb_hash_keys(hash));
2894separate_symbol(st_data_t key, st_data_t value, st_data_t arg)
2899 rb_hash_aset(*kwdhash, (
VALUE)key, (
VALUE)value);
2906 VALUE parthash[2] = {0, 0};
2907 VALUE hash = *orighash;
2914 *orighash = parthash[1];
2929#define extract_kwarg(keyword, val) \
2930 (key = (st_data_t)(keyword), values ? \
2931 (rb_hash_stlike_delete(keyword_hash, &key, &(val)) || ((val) = Qundef, 0)) : \
2932 rb_hash_stlike_lookup(keyword_hash, key, NULL))
2934 if (
NIL_P(keyword_hash)) keyword_hash = 0;
2938 optional = -1-optional;
2941 for (; i < required; i++) {
2944 if (extract_kwarg(keyword, values[i])) {
2951 if (!
NIL_P(missing)) {
2952 rb_keyword_error(
"missing", missing);
2956 if (optional && keyword_hash) {
2957 for (i = 0; i < optional; i++) {
2958 if (extract_kwarg(
ID2SYM(table[required+i]), values[required+i])) {
2963 if (!rest && keyword_hash) {
2964 if (
RHASH_SIZE(keyword_hash) > (
unsigned int)(values ? 0 : j)) {
2965 unknown_keyword_error(keyword_hash, table, required+optional);
2968 if (values && !keyword_hash) {
2969 for (i = 0; i < required + optional; i++) {
2988rb_scan_args_parse(
int kw_flag,
const char *fmt,
struct rb_scan_args_t *arg)
2990 const char *p = fmt;
2992 memset(arg, 0,
sizeof(*arg));
2993 arg->kw_flag = kw_flag;
2996 arg->n_lead = *p -
'0';
2999 arg->n_opt = *p -
'0';
3008 arg->n_trail = *p -
'0';
3020 rb_fatal(
"bad scan arg format: %s", fmt);
3025rb_scan_args_assign(
const struct rb_scan_args_t *arg,
int argc,
const VALUE *
const argv, va_list vargs)
3029#define rb_scan_args_next_param() va_arg(vargs, VALUE *)
3030 const int kw_flag = arg->kw_flag;
3031 const int n_lead = arg->n_lead;
3032 const int n_opt = arg->n_opt;
3033 const int n_trail = arg->n_trail;
3034 const int n_mand = n_lead + n_trail;
3035 const bool f_var = arg->f_var;
3036 const bool f_hash = arg->f_hash;
3037 const bool f_block = arg->f_block;
3040 if (f_hash && argc > 0) {
3041 VALUE last = argv[argc - 1];
3042 if (rb_scan_args_keyword_p(kw_flag, last)) {
3043 hash = rb_hash_dup(last);
3048 if (argc < n_mand) {
3053 for (i = 0; i < n_lead; i++) {
3054 var = rb_scan_args_next_param();
3055 if (var) *var = argv[argi];
3059 for (i = 0; i < n_opt; i++) {
3060 var = rb_scan_args_next_param();
3061 if (argi < argc - n_trail) {
3062 if (var) *var = argv[argi];
3066 if (var) *var =
Qnil;
3071 int n_var = argc - argi - n_trail;
3073 var = rb_scan_args_next_param();
3083 for (i = 0; i < n_trail; i++) {
3084 var = rb_scan_args_next_param();
3085 if (var) *var = argv[argi];
3090 var = rb_scan_args_next_param();
3091 if (var) *var = hash;
3095 var = rb_scan_args_next_param();
3110#undef rb_scan_args_next_param
3114rb_scan_args_result(
const struct rb_scan_args_t *
const arg,
int argc)
3116 const int n_lead = arg->n_lead;
3117 const int n_opt = arg->n_opt;
3118 const int n_trail = arg->n_trail;
3119 const int n_mand = n_lead + n_trail;
3120 const bool f_var = arg->f_var;
3138 va_start(vargs,fmt);
3139 argc = rb_scan_args_assign(&arg, argc, argv, vargs);
3141 return rb_scan_args_result(&arg, argc);
3144#undef rb_scan_args_kw
3150 rb_scan_args_parse(kw_flag, fmt, &arg);
3151 va_start(vargs,fmt);
3152 argc = rb_scan_args_assign(&arg, argc, argv, vargs);
3154 return rb_scan_args_result(&arg, argc);
#define RUBY_ASSERT(...)
Asserts that the given expression is truthy if and only if RUBY_DEBUG is truthy.
#define ISDIGIT
@old{rb_isdigit}
#define rb_define_method(klass, mid, func, arity)
Defines klass#mid.
#define rb_define_method_id(klass, mid, func, arity)
Defines klass#mid.
#define rb_define_singleton_method(klass, mid, func, arity)
Defines klass.mid.
#define rb_define_protected_method(klass, mid, func, arity)
Defines klass#mid and makes it protected.
#define rb_define_module_function(klass, mid, func, arity)
Defines klass#mid and makes it a module function.
#define rb_define_private_method(klass, mid, func, arity)
Defines klass#mid and makes it private.
#define rb_define_global_function(mid, func, arity)
Defines rb_mKernel #mid.
#define RUBY_EXTERN
Declaration of externally visible global variables.
static VALUE RB_OBJ_FROZEN_RAW(VALUE obj)
This is an implementation detail of RB_OBJ_FROZEN().
static void RB_FL_SET_RAW(VALUE obj, VALUE flags)
This is an implementation detail of RB_FL_SET().
VALUE rb_class_protected_instance_methods(int argc, const VALUE *argv, VALUE mod)
Identical to rb_class_instance_methods(), except it returns names of methods that are protected only.
static VALUE class_alloc0(enum ruby_value_type type, VALUE klass, bool boxable)
Allocates a struct RClass for a new class, iclass, or module.
void rb_include_module(VALUE klass, VALUE module)
Includes a module to a class.
VALUE rb_refinement_new(void)
Creates a new, anonymous refinement.
VALUE rb_define_class(const char *name, VALUE super)
Defines a top-level class.
VALUE rb_class_new(VALUE super)
Creates a new, anonymous class.
static VALUE make_singleton_class(VALUE obj)
Creates a singleton class for obj.
VALUE rb_singleton_class_clone(VALUE obj)
Clones a singleton class.
void rb_prepend_module(VALUE klass, VALUE module)
Identical to rb_include_module(), except it "prepends" the passed module to the klass,...
VALUE rb_class_subclasses(VALUE klass)
Queries the class's direct descendants.
VALUE rb_singleton_class(VALUE obj)
Finds or creates the singleton class of the passed object.
void Init_class_hierarchy(void)
Initializes the world of objects and classes.
VALUE rb_define_class_under(VALUE outer, const char *name, VALUE super)
Defines a class under the namespace of outer.
VALUE rb_class_attached_object(VALUE klass)
Returns the attached object for a singleton class.
VALUE rb_obj_singleton_methods(int argc, const VALUE *argv, VALUE obj)
Identical to rb_class_instance_methods(), except it returns names of singleton methods instead of ins...
VALUE rb_module_new(void)
Creates a new, anonymous module.
#define META_CLASS_OF_CLASS_CLASS_P(k)
whether k is a meta^(n)-class of Class class
VALUE rb_class_instance_methods(int argc, const VALUE *argv, VALUE mod)
Generates an array of symbols, which are the list of method names defined in the passed class.
void rb_check_inheritable(VALUE super)
Asserts that the given class can derive a child class.
VALUE rb_class_public_instance_methods(int argc, const VALUE *argv, VALUE mod)
Identical to rb_class_instance_methods(), except it returns names of methods that are public only.
VALUE rb_class_boot(VALUE super)
A utility function that wraps class_alloc.
VALUE rb_define_module(const char *name)
Defines a top-level module.
void rb_class_modify_check(VALUE klass)
Asserts that klass is not a frozen class.
VALUE rb_define_module_id_under(VALUE outer, ID id)
Identical to rb_define_module_under(), except it takes the name in ID instead of C's string.
void rb_singleton_class_attached(VALUE klass, VALUE obj)
Attaches a singleton class to its corresponding object.
void rb_freeze_singleton_class(VALUE x)
This is an implementation detail of RB_OBJ_FREEZE().
VALUE rb_mod_included_modules(VALUE mod)
Queries the list of included modules.
VALUE rb_define_class_id_under(VALUE outer, ID id, VALUE super)
Identical to rb_define_class_under(), except it takes the name in ID instead of C's string.
VALUE rb_mod_ancestors(VALUE mod)
Queries the module's ancestors.
static VALUE make_metaclass(VALUE klass)
Creates a metaclass of klass.
VALUE rb_class_inherited(VALUE super, VALUE klass)
Calls Class::inherited.
VALUE rb_mod_include_p(VALUE mod, VALUE mod2)
Queries if the passed module is included by the module.
VALUE rb_class_private_instance_methods(int argc, const VALUE *argv, VALUE mod)
Identical to rb_class_instance_methods(), except it returns names of methods that are private only.
#define ENSURE_EIGENCLASS(klass)
ensures klass belongs to its own eigenclass.
VALUE rb_mod_init_copy(VALUE clone, VALUE orig)
The comment that comes with this function says :nodoc:.
VALUE rb_define_module_under(VALUE outer, const char *name)
Defines a module under the namespace of outer.
VALUE rb_singleton_class_get(VALUE obj)
Returns the singleton class of obj, or nil if obj is not a singleton object.
VALUE rb_define_module_id(ID id)
This is a very badly designed API that creates an anonymous module.
VALUE rb_define_class_id(ID id, VALUE super)
This is a very badly designed API that creates an anonymous class.
void rb_define_alias(VALUE klass, const char *name1, const char *name2)
Defines an alias of a method.
VALUE rb_extract_keywords(VALUE *orighash)
Splits a hash into two.
void rb_define_attr(VALUE klass, const char *name, int read, int write)
Defines public accessor method(s) for an attribute.
void rb_undef_method(VALUE klass, const char *name)
Defines an undef of a method.
int rb_scan_args_kw(int kw_flag, int argc, const VALUE *argv, const char *fmt,...)
Identical to rb_scan_args(), except it also accepts kw_splat.
int rb_scan_args(int argc, const VALUE *argv, const char *fmt,...)
Retrieves argument from argc and argv to given VALUE references according to the format string.
int rb_block_given_p(void)
Determines if the current method is given a block.
int rb_get_kwargs(VALUE keyword_hash, const ID *table, int required, int optional, VALUE *values)
Keyword argument deconstructor.
#define TYPE(_)
Old name of rb_type.
#define FL_SINGLETON
Old name of RUBY_FL_SINGLETON.
#define OBJ_INIT_COPY(obj, orig)
Old name of RB_OBJ_INIT_COPY.
#define ALLOC
Old name of RB_ALLOC.
#define T_STRING
Old name of RUBY_T_STRING.
#define xfree
Old name of ruby_xfree.
#define Qundef
Old name of RUBY_Qundef.
#define T_NIL
Old name of RUBY_T_NIL.
#define T_FLOAT
Old name of RUBY_T_FLOAT.
#define ID2SYM
Old name of RB_ID2SYM.
#define T_BIGNUM
Old name of RUBY_T_BIGNUM.
#define SPECIAL_CONST_P
Old name of RB_SPECIAL_CONST_P.
#define OBJ_FREEZE
Old name of RB_OBJ_FREEZE.
#define T_FIXNUM
Old name of RUBY_T_FIXNUM.
#define UNREACHABLE_RETURN
Old name of RBIMPL_UNREACHABLE_RETURN.
#define ZALLOC
Old name of RB_ZALLOC.
#define FL_SHAREABLE
Old name of RUBY_FL_SHAREABLE.
#define CLASS_OF
Old name of rb_class_of.
#define xmalloc
Old name of ruby_xmalloc.
#define T_MODULE
Old name of RUBY_T_MODULE.
#define T_TRUE
Old name of RUBY_T_TRUE.
#define T_ICLASS
Old name of RUBY_T_ICLASS.
#define FL_TEST_RAW
Old name of RB_FL_TEST_RAW.
#define FL_SET
Old name of RB_FL_SET.
#define T_FALSE
Old name of RUBY_T_FALSE.
#define Qtrue
Old name of RUBY_Qtrue.
#define Qnil
Old name of RUBY_Qnil.
#define Qfalse
Old name of RUBY_Qfalse.
#define NIL_P
Old name of RB_NIL_P.
#define FL_WB_PROTECTED
Old name of RUBY_FL_WB_PROTECTED.
#define T_SYMBOL
Old name of RUBY_T_SYMBOL.
#define T_CLASS
Old name of RUBY_T_CLASS.
#define BUILTIN_TYPE
Old name of RB_BUILTIN_TYPE.
#define FL_TEST
Old name of RB_FL_TEST.
#define CONST_ID
Old name of RUBY_CONST_ID.
#define rb_ary_new2
Old name of rb_ary_new_capa.
#define FL_SET_RAW
Old name of RB_FL_SET_RAW.
#define SYMBOL_P
Old name of RB_SYMBOL_P.
#define OBJ_FROZEN_RAW
Old name of RB_OBJ_FROZEN_RAW.
void rb_exc_raise(VALUE mesg)
Raises an exception in the current thread.
VALUE rb_eTypeError
TypeError exception.
VALUE rb_exc_new_str(VALUE etype, VALUE str)
Identical to rb_exc_new_cstr(), except it takes a Ruby's string instead of C's.
VALUE rb_cClass
Class class.
VALUE rb_mKernel
Kernel module.
VALUE rb_cRefinement
Refinement class.
VALUE rb_cNilClass
NilClass class.
VALUE rb_cHash
Hash class.
VALUE rb_cFalseClass
FalseClass class.
VALUE rb_obj_class(VALUE obj)
Queries the class of an object.
VALUE rb_inspect(VALUE obj)
Generates a human-readable textual representation of the given object.
VALUE rb_cBasicObject
BasicObject class.
VALUE rb_cModule
Module class.
VALUE rb_class_real(VALUE klass)
Finds a "real" class.
VALUE rb_cTrueClass
TrueClass class.
#define RB_OBJ_WRITTEN(old, oldv, young)
Identical to RB_OBJ_WRITE(), except it doesn't write any values, but only a WB declaration.
#define RB_OBJ_WRITE(old, slot, young)
Declaration of a "back" pointer.
VALUE rb_funcall(VALUE recv, ID mid, int n,...)
Calls a method.
#define RGENGC_WB_PROTECTED_CLASS
This is a compile-time flag to enable/disable write barrier for struct RClass.
size_t rb_gc_count(void)
Identical to rb_gc_stat(), with "count" parameter.
VALUE rb_ary_new_from_values(long n, const VALUE *elts)
Identical to rb_ary_new_from_args(), except how objects are passed.
VALUE rb_ary_cat(VALUE ary, const VALUE *train, long len)
Destructively appends multiple elements at the end of the array.
VALUE rb_ary_new(void)
Allocates a new, empty array.
VALUE rb_ary_new_capa(long capa)
Identical to rb_ary_new(), except it additionally specifies how many rooms of objects it should alloc...
VALUE rb_ary_resize(VALUE ary, long len)
Expands or shrinks the passed array to the passed length.
VALUE rb_ary_hidden_new(long capa)
Allocates a hidden (no class) empty array.
VALUE rb_ary_push(VALUE ary, VALUE elem)
Special case of rb_ary_cat() that it adds only one element.
#define UNLIMITED_ARGUMENTS
This macro is used in conjunction with rb_check_arity().
static int rb_check_arity(int argc, int min, int max)
Ensures that the passed integer is in the passed range.
VALUE rb_hash_new(void)
Creates a new, empty hash object.
VALUE rb_block_proc(void)
Constructs a Proc object from implicitly passed components.
VALUE rb_str_append(VALUE dst, VALUE src)
Identical to rb_str_buf_append(), except it converts the right hand side before concatenating.
#define rb_str_cat_cstr(buf, str)
Identical to rb_str_cat(), except it assumes the passed pointer is a pointer to a C string.
VALUE rb_const_get(VALUE space, ID name)
Identical to rb_const_defined(), except it returns the actual defined value.
void rb_const_set(VALUE space, ID name, VALUE val)
Names a constant.
VALUE rb_const_get_at(VALUE space, ID name)
Identical to rb_const_defined_at(), except it returns the actual defined value.
void rb_set_class_path_string(VALUE klass, VALUE space, VALUE name)
Identical to rb_set_class_path(), except it accepts the name as Ruby's string instead of C's.
int rb_const_defined_at(VALUE space, ID name)
Identical to rb_const_defined(), except it doesn't look for parent classes.
VALUE rb_class_path(VALUE mod)
Identical to rb_mod_name(), except it returns #<Class: ...> style inspection for anonymous modules.
int rb_const_defined(VALUE space, ID name)
Queries if the constant is defined at the namespace.
void rb_alias(VALUE klass, ID dst, ID src)
Resembles alias.
void rb_attr(VALUE klass, ID name, int need_reader, int need_writer, int honour_visibility)
This function resembles now-deprecated Module#attr.
void rb_clear_constant_cache_for_id(ID id)
Clears the inline constant caches associated with a particular ID.
static ID rb_intern_const(const char *str)
This is a "tiny optimisation" over rb_intern().
int len
Length of the buffer.
static bool rb_ractor_shareable_p(VALUE obj)
Queries if multiple Ractors can share the passed object or not.
#define MEMCPY(p1, p2, type, n)
Handy macro to call memcpy.
VALUE type(ANYARGS)
ANYARGS-ed function type.
int st_foreach(st_table *q, int_type *w, st_data_t e)
Iteration over the given table.
void rb_hash_foreach(VALUE q, int_type *w, VALUE e)
Iteration over the given hash.
#define RARRAY_LEN
Just another name of rb_array_len.
#define RARRAY_AREF(a, i)
static VALUE RBASIC_CLASS(VALUE obj)
Queries the class of an object.
#define RCLASS_SUPER
Just another name of rb_class_get_superclass.
#define RHASH_SIZE(h)
Queries the size of the hash.
#define RHASH_EMPTY_P(h)
Checks if the hash is empty.
#define RB_SCAN_ARGS_PASS_CALLED_KEYWORDS
Same behaviour as rb_scan_args().
#define RTEST
This is an old name of RB_TEST.
#define ANYARGS
Functions declared using this macro take arbitrary arguments, including void.
rb_cref_t * cref
class reference, should be marked
const rb_iseq_t * iseqptr
iseq pointer, should be separated from iseqval
uintptr_t ID
Type that represents a Ruby identifier such as a variable name.
uintptr_t VALUE
Type that represents a Ruby object.
static void Check_Type(VALUE v, enum ruby_value_type t)
Identical to RB_TYPE_P(), except it raises exceptions on predication failure.
static bool RB_TYPE_P(VALUE obj, enum ruby_value_type t)
Queries if the given object is of given type.
ruby_value_type
C-level type of an object.