34#pragma GCC system_header
41#ifdef __glibcxx_node_extract
45#pragma GCC diagnostic push
46#pragma GCC diagnostic ignored "-Wc++11-extensions"
48namespace std _GLIBCXX_VISIBILITY(default)
50_GLIBCXX_BEGIN_NAMESPACE_VERSION
53 template<
typename _Tp,
typename _Hash>
58 __is_nothrow_invocable<const _Hash&, const _Tp&>>>;
63 template<
typename _Equal,
typename _Hash,
typename _Allocator>
64 using _Hashtable_enable_default_ctor
65 = _Enable_default_constructor<__and_<is_default_constructible<_Equal>,
68 __detail::_Hash_node_base>;
185 template<
typename _Key,
typename _Value,
typename _Alloc,
186 typename _ExtractKey,
typename _Equal,
187 typename _Hash,
typename _RangeHash,
typename _Unused,
188 typename _RehashPolicy,
typename _Traits>
190 :
public __detail::_Hashtable_base<_Key, _Value, _ExtractKey, _Equal,
191 _Hash, _RangeHash, _Unused, _Traits>,
192 public __detail::_Map_base<_Key, _Value, _Alloc, _ExtractKey, _Equal,
193 _Hash, _RangeHash, _Unused,
194 _RehashPolicy, _Traits>,
195 public __detail::_Rehash_base<_Key, _Value, _Alloc, _ExtractKey, _Equal,
196 _Hash, _RangeHash, _Unused,
197 _RehashPolicy, _Traits>,
198 private __detail::_Hashtable_alloc<
199 __alloc_rebind<_Alloc,
200 __detail::_Hash_node<_Value,
201 _Traits::__hash_cached::value>>>,
202 private _Hashtable_enable_default_ctor<_Equal, _Hash, _Alloc>
204 static_assert(is_same<typename remove_cv<_Value>::type, _Value>::value,
205 "unordered container must have a non-const, non-volatile value_type");
206#if __cplusplus > 201703L || defined __STRICT_ANSI__
207 static_assert(is_same<typename _Alloc::value_type, _Value>{},
208 "unordered container must have the same value_type as its allocator");
210 static_assert(is_copy_constructible<_Hash>::value,
211 "hash function must be copy constructible");
213 using __traits_type = _Traits;
214 using __hash_cached =
typename __traits_type::__hash_cached;
215 using __constant_iterators =
typename __traits_type::__constant_iterators;
216 using __node_type = __detail::_Hash_node<_Value, __hash_cached::value>;
217 using __node_alloc_type = __alloc_rebind<_Alloc, __node_type>;
219 using __hashtable_alloc = __detail::_Hashtable_alloc<__node_alloc_type>;
221 using __node_value_type =
222 __detail::_Hash_node_value<_Value, __hash_cached::value>;
223 using __node_ptr =
typename __hashtable_alloc::__node_ptr;
224 using __value_alloc_traits =
225 typename __hashtable_alloc::__value_alloc_traits;
226 using __node_alloc_traits =
227 typename __hashtable_alloc::__node_alloc_traits;
228 using __node_base =
typename __hashtable_alloc::__node_base;
229 using __node_base_ptr =
typename __hashtable_alloc::__node_base_ptr;
230 using __buckets_ptr =
typename __hashtable_alloc::__buckets_ptr;
232 using __enable_default_ctor
233 = _Hashtable_enable_default_ctor<_Equal, _Hash, _Alloc>;
234 using __rehash_guard_t
235 = __detail::_RehashStateGuard<_RehashPolicy>;
238 typedef _Key key_type;
239 typedef _Value value_type;
240 typedef _Alloc allocator_type;
241 typedef _Equal key_equal;
245 typedef typename __value_alloc_traits::pointer pointer;
246 typedef typename __value_alloc_traits::const_pointer const_pointer;
247 typedef value_type& reference;
248 typedef const value_type& const_reference;
251 = __detail::_Node_iterator<_Value, __constant_iterators::value,
252 __hash_cached::value>;
255 = __detail::_Node_const_iterator<_Value, __constant_iterators::value,
256 __hash_cached::value>;
258 using local_iterator = __detail::_Local_iterator<key_type, _Value,
259 _ExtractKey, _Hash, _RangeHash, _Unused,
260 __constant_iterators::value,
261 __hash_cached::value>;
263 using const_local_iterator = __detail::_Local_const_iterator<
265 _ExtractKey, _Hash, _RangeHash, _Unused,
266 __constant_iterators::value, __hash_cached::value>;
269 using __rehash_type = _RehashPolicy;
271 using __unique_keys =
typename __traits_type::__unique_keys;
273 using __hashtable_base = __detail::
274 _Hashtable_base<_Key, _Value, _ExtractKey,
275 _Equal, _Hash, _RangeHash, _Unused, _Traits>;
277 using __hash_code_base =
typename __hashtable_base::__hash_code_base;
278 using __hash_code =
typename __hashtable_base::__hash_code;
279 using __ireturn_type = __conditional_t<__unique_keys::value,
283 using __map_base = __detail::_Map_base<_Key, _Value, _Alloc, _ExtractKey,
284 _Equal, _Hash, _RangeHash, _Unused,
285 _RehashPolicy, _Traits>;
287 using __rehash_base = __detail::_Rehash_base<_Key, _Value, _Alloc,
289 _Hash, _RangeHash, _Unused,
290 _RehashPolicy, _Traits>;
292 using __node_builder_t = __detail::_NodeBuilder<_ExtractKey>;
298 _Scoped_node(__node_ptr __n, __hashtable_alloc* __h)
299 : _M_h(__h), _M_node(__n) { }
302 template<
typename... _Args>
303 _Scoped_node(__hashtable_alloc* __h, _Args&&... __args)
305 _M_node(__h->_M_allocate_node(std::
forward<_Args>(__args)...))
309 ~_Scoped_node() {
if (_M_node) _M_h->_M_deallocate_node(_M_node); };
311 _Scoped_node(
const _Scoped_node&) =
delete;
312 _Scoped_node& operator=(
const _Scoped_node&) =
delete;
314 __hashtable_alloc* _M_h;
322 struct __hash_code_base_access : __hash_code_base
323 {
using __hash_code_base::_M_bucket_index; };
326 static_assert(is_nothrow_default_constructible<_RangeHash>::value,
327 "Functor used to map hash code to bucket index"
328 " must be nothrow default constructible");
329 static_assert(
noexcept(
331 "Functor used to map hash code to bucket index must be"
335 static_assert(is_nothrow_default_constructible<_ExtractKey>::value,
336 "_ExtractKey must be nothrow default constructible");
337 static_assert(
noexcept(
339 "_ExtractKey functor must be noexcept invocable");
341 template<
typename _Keya,
typename _Valuea,
typename _Alloca,
342 typename _ExtractKeya,
typename _Equala,
343 typename _Hasha,
typename _RangeHasha,
typename _Unuseda,
344 typename _RehashPolicya,
typename _Traitsa,
346 friend struct __detail::_Map_base;
349 using size_type =
typename __hashtable_base::size_type;
350 using difference_type =
typename __hashtable_base::difference_type;
352#ifdef __glibcxx_node_extract
353 using node_type = _Node_handle<_Key, _Value, __node_alloc_type>;
354 using insert_return_type = _Node_insert_return<iterator, node_type>;
358 __buckets_ptr _M_buckets = &_M_single_bucket;
359 size_type _M_bucket_count = 1;
360 __node_base _M_before_begin;
361 size_type _M_element_count = 0;
362 _RehashPolicy _M_rehash_policy;
370 __node_base_ptr _M_single_bucket =
nullptr;
375 if (
auto __begin = _M_begin())
376 _M_buckets[_M_bucket_index(*__begin)] = &_M_before_begin;
380 _M_update_bbegin(__node_ptr __n)
382 _M_before_begin._M_nxt = __n;
387 _M_uses_single_bucket(__buckets_ptr __bkts)
const
388 {
return __builtin_expect(__bkts == &_M_single_bucket,
false); }
391 _M_uses_single_bucket()
const
392 {
return _M_uses_single_bucket(_M_buckets); }
394 static constexpr size_t
395 __small_size_threshold() noexcept
398 __detail::_Hashtable_hash_traits<_Hash>::__small_size_threshold();
402 _M_base_alloc() {
return *
this; }
405 _M_allocate_buckets(size_type __bkt_count)
407 if (__builtin_expect(__bkt_count == 1,
false))
409 _M_single_bucket =
nullptr;
410 return &_M_single_bucket;
413 return __hashtable_alloc::_M_allocate_buckets(__bkt_count);
417 _M_deallocate_buckets(__buckets_ptr __bkts, size_type __bkt_count)
419 if (_M_uses_single_bucket(__bkts))
422 __hashtable_alloc::_M_deallocate_buckets(__bkts, __bkt_count);
426 _M_deallocate_buckets()
427 { _M_deallocate_buckets(_M_buckets, _M_bucket_count); }
432 _M_bucket_begin(size_type __bkt)
const
434 __node_base_ptr __n = _M_buckets[__bkt];
435 return __n ?
static_cast<__node_ptr
>(__n->_M_nxt) : nullptr;
440 {
return static_cast<__node_ptr
>(_M_before_begin._M_nxt); }
444 template<
typename _Ht>
446 _M_assign_elements(_Ht&&);
448 template<
typename _Ht>
450 _M_assign(_Ht&& __ht)
452 __detail::_AllocNode<__node_alloc_type> __alloc_node_gen(*
this);
456 template<
typename _Ht,
typename _NodeGenerator>
458 _M_assign(_Ht&&, _NodeGenerator&);
461 _M_move_assign(_Hashtable&&, true_type);
464 _M_move_assign(_Hashtable&&, false_type);
469 _Hashtable(const _Hash& __h, const _Equal& __eq,
470 const allocator_type& __a)
471 : __hashtable_base(__h, __eq),
472 __hashtable_alloc(__node_alloc_type(__a)),
473 __enable_default_ctor(_Enable_default_constructor_tag{})
476 template<
bool _No_realloc = true>
477 static constexpr bool
480#if __cpp_constexpr >= 201304
481# pragma GCC diagnostic push
482# pragma GCC diagnostic ignored "-Wc++17-extensions"
483 if constexpr (_No_realloc)
484 if constexpr (is_nothrow_copy_constructible<_Hash>::value)
485 return is_nothrow_copy_constructible<_Equal>::value;
487# pragma GCC diagnostic pop
489 return __and_<__bool_constant<_No_realloc>,
490 is_nothrow_copy_constructible<_Hash>,
491 is_nothrow_copy_constructible<_Equal>>::value;
495 _Hashtable(_Hashtable&& __ht, __node_alloc_type&& __a,
497 noexcept(_S_nothrow_move());
499 _Hashtable(_Hashtable&&, __node_alloc_type&&,
502 template<
typename _InputIterator>
503 _Hashtable(_InputIterator __first, _InputIterator __last,
504 size_type __bkt_count_hint,
505 const _Hash&,
const _Equal&,
const allocator_type&,
508 template<
typename _InputIterator>
509 _Hashtable(_InputIterator __first, _InputIterator __last,
510 size_type __bkt_count_hint,
511 const _Hash&,
const _Equal&,
const allocator_type&,
516 _Hashtable() =
default;
518 _Hashtable(
const _Hashtable&);
520 _Hashtable(
const _Hashtable&,
const allocator_type&);
523 _Hashtable(size_type __bkt_count_hint,
524 const _Hash& __hf = _Hash(),
525 const key_equal& __eql = key_equal(),
526 const allocator_type& __a = allocator_type());
529 _Hashtable(_Hashtable&& __ht)
530 noexcept(_S_nothrow_move())
531 : _Hashtable(std::move(__ht), std::move(__ht._M_node_allocator()),
535 _Hashtable(_Hashtable&& __ht,
const allocator_type& __a)
536 noexcept(_S_nothrow_move<__node_alloc_traits::_S_always_equal()>())
537 : _Hashtable(std::move(__ht), __node_alloc_type(__a),
538 typename __node_alloc_traits::is_always_equal{})
542 _Hashtable(
const allocator_type& __a)
543 : __hashtable_alloc(__node_alloc_type(__a)),
544 __enable_default_ctor(_Enable_default_constructor_tag{})
547 template<
typename _InputIterator>
548 _Hashtable(_InputIterator __f, _InputIterator __l,
549 size_type __bkt_count_hint = 0,
550 const _Hash& __hf = _Hash(),
551 const key_equal& __eql = key_equal(),
552 const allocator_type& __a = allocator_type())
553 : _Hashtable(__f, __l, __bkt_count_hint, __hf, __eql, __a,
557 _Hashtable(initializer_list<value_type> __l,
558 size_type __bkt_count_hint = 0,
559 const _Hash& __hf = _Hash(),
560 const key_equal& __eql = key_equal(),
561 const allocator_type& __a = allocator_type())
562 : _Hashtable(__l.begin(), __l.end(), __bkt_count_hint,
563 __hf, __eql, __a, __unique_keys{})
567 operator=(
const _Hashtable& __ht);
570 operator=(_Hashtable&& __ht)
571 noexcept(__node_alloc_traits::_S_nothrow_move()
572 && is_nothrow_move_assignable<_Hash>::value
573 && is_nothrow_move_assignable<_Equal>::value)
575 constexpr bool __move_storage =
576 __node_alloc_traits::_S_propagate_on_move_assign()
577 || __node_alloc_traits::_S_always_equal();
578 _M_move_assign(
std::move(__ht), __bool_constant<__move_storage>());
582#pragma GCC diagnostic push
583#pragma GCC diagnostic ignored "-Wc++17-extensions"
585 operator=(initializer_list<value_type> __l)
587 using __reuse_or_alloc_node_gen_t =
588 __detail::_ReuseOrAllocNode<__node_alloc_type>;
590 __reuse_or_alloc_node_gen_t __roan(_M_begin(), *
this);
591 _M_before_begin._M_nxt =
nullptr;
595 auto __l_bkt_count = _M_rehash_policy._M_bkt_for_elements(__l.size());
599 if (_M_bucket_count < __l_bkt_count)
600 rehash(__l_bkt_count);
604 for (
auto& __e : __l)
606 const key_type& __k = _ExtractKey{}(__e);
608 if constexpr (__unique_keys::value)
610 if (
auto __loc = _M_locate(__k))
614 __code = __loc._M_hash_code;
615 __bkt = __loc._M_bucket_index;
620 __code = this->_M_hash_code(__k);
621 __bkt = _M_bucket_index(__code);
624 _M_insert_unique_node(__bkt, __code, __roan(__e));
629#pragma GCC diagnostic pop
631 ~_Hashtable() noexcept;
635 noexcept(__and_<__is_nothrow_swappable<_Hash>,
636 __is_nothrow_swappable<_Equal>>::value);
641 {
return iterator(_M_begin()); }
644 begin() const noexcept
645 {
return const_iterator(_M_begin()); }
649 {
return iterator(
nullptr); }
653 {
return const_iterator(
nullptr); }
656 cbegin() const noexcept
657 {
return const_iterator(_M_begin()); }
660 cend() const noexcept
661 {
return const_iterator(
nullptr); }
664 size() const noexcept
665 {
return _M_element_count; }
667 _GLIBCXX_NODISCARD
bool
668 empty() const noexcept
669 {
return size() == 0; }
672 get_allocator() const noexcept
673 {
return allocator_type(this->_M_node_allocator()); }
676 max_size() const noexcept
677 {
return __node_alloc_traits::max_size(this->_M_node_allocator()); }
682 {
return this->_M_eq(); }
688 bucket_count() const noexcept
689 {
return _M_bucket_count; }
692 max_bucket_count() const noexcept
693 {
return max_size(); }
696 bucket_size(size_type __bkt)
const
700 bucket(
const key_type& __k)
const
701 {
return _M_bucket_index(this->_M_hash_code(__k)); }
703#ifdef __glibcxx_associative_heterogeneous_insertion
704 template <
typename _Kt>
706 _M_bucket_tr(
const _Kt& __k)
const
707 {
return _M_bucket_index(this->_M_hash_code_tr(__k)); }
711 begin(size_type __bkt)
713 return local_iterator(*
this, _M_bucket_begin(__bkt),
714 __bkt, _M_bucket_count);
719 {
return local_iterator(*
this,
nullptr, __bkt, _M_bucket_count); }
722 begin(size_type __bkt)
const
724 return const_local_iterator(*
this, _M_bucket_begin(__bkt),
725 __bkt, _M_bucket_count);
729 end(size_type __bkt)
const
730 {
return const_local_iterator(*
this,
nullptr, __bkt, _M_bucket_count); }
734 cbegin(size_type __bkt)
const
736 return const_local_iterator(*
this, _M_bucket_begin(__bkt),
737 __bkt, _M_bucket_count);
741 cend(size_type __bkt)
const
742 {
return const_local_iterator(*
this,
nullptr, __bkt, _M_bucket_count); }
745 load_factor() const noexcept
747 return static_cast<float>(size()) /
static_cast<float>(bucket_count());
756 __rehash_policy()
const
757 {
return _M_rehash_policy; }
760 __rehash_policy(
const _RehashPolicy& __pol)
761 { _M_rehash_policy = __pol; }
765 find(
const key_type& __k);
768 find(
const key_type& __k)
const;
771 count(
const key_type& __k)
const;
774 equal_range(
const key_type& __k);
777 equal_range(
const key_type& __k)
const;
779#ifdef __glibcxx_generic_unordered_lookup
780 template<
typename _Kt,
781 typename = __has_is_transparent_t<_Hash, _Kt>,
782 typename = __has_is_transparent_t<_Equal, _Kt>>
784 _M_find_tr(
const _Kt& __k);
786 template<
typename _Kt,
787 typename = __has_is_transparent_t<_Hash, _Kt>,
788 typename = __has_is_transparent_t<_Equal, _Kt>>
790 _M_find_tr(
const _Kt& __k)
const;
792 template<
typename _Kt,
793 typename = __has_is_transparent_t<_Hash, _Kt>,
794 typename = __has_is_transparent_t<_Equal, _Kt>>
796 _M_count_tr(
const _Kt& __k)
const;
798 template<
typename _Kt,
799 typename = __has_is_transparent_t<_Hash, _Kt>,
800 typename = __has_is_transparent_t<_Equal, _Kt>>
801 pair<iterator, iterator>
802 _M_equal_range_tr(
const _Kt& __k);
804 template<
typename _Kt,
805 typename = __has_is_transparent_t<_Hash, _Kt>,
806 typename = __has_is_transparent_t<_Equal, _Kt>>
807 pair<const_iterator, const_iterator>
808 _M_equal_range_tr(
const _Kt& __k)
const;
811 void _M_rehash_insert(size_type __n);
816 _M_bucket_index(
const __node_value_type& __n)
const noexcept
817 {
return __hash_code_base::_M_bucket_index(__n, _M_bucket_count); }
820 _M_bucket_index(__hash_code __c)
const
821 {
return __hash_code_base::_M_bucket_index(__c, _M_bucket_count); }
823#pragma GCC diagnostic push
824#pragma GCC diagnostic ignored "-Wc++17-extensions"
829 _M_hash_code_ext(
const __node_value_type& __from)
const
831 if constexpr (__and_<__hash_cached, is_empty<_Hash>>::value)
832 return __from._M_hash_code;
834 return this->_M_hash_code(_ExtractKey{}(__from._M_v()));
840 _M_bucket_index_ext(
const __node_value_type& __from)
const
841 {
return _RangeHash{}(_M_hash_code_ext(__from), _M_bucket_count); }
844 _M_copy_code(__node_value_type& __to,
845 const __node_value_type& __from)
const
847 if constexpr (__hash_cached::value)
848 __to._M_hash_code = _M_hash_code_ext(__from);
852 _M_store_code(__node_value_type& __to, __hash_code __code)
const
854 if constexpr (__hash_cached::value)
855 __to._M_hash_code = __code;
857#pragma GCC diagnostic pop
864 size_type __bkt,
const key_type& __k, __hash_code __code)
const
865 {
return _M_find_before_node_tr<key_type>(__bkt, __k, __code); }
867 template<
typename _Kt>
869 _M_find_before_node_tr(size_type,
const _Kt&, __hash_code)
const;
873 struct __location_type
876 explicit operator bool() const noexcept
877 {
return static_cast<bool>(_M_before); }
880 explicit operator iterator() const noexcept
881 {
return iterator(_M_node()); }
884 explicit operator const_iterator() const noexcept
885 {
return const_iterator(_M_node()); }
888 __node_ptr _M_node()
const
891 return static_cast<__node_ptr
>(_M_before->_M_nxt);
895 __node_base_ptr _M_before{};
896 __hash_code _M_hash_code{};
897 size_type _M_bucket_index = size_type(-1);
916 _M_locate(
const key_type& __k)
const
917 {
return _M_locate_tr<key_type>(__k); }
919 template <
typename _Kt>
921 _M_locate_tr(
const _Kt& __k)
const;
924 _M_find_node(size_type __bkt,
const key_type& __key,
925 __hash_code __c)
const
927 if (__node_base_ptr __before_n = _M_find_before_node(__bkt, __key, __c))
928 return static_cast<__node_ptr
>(__before_n->_M_nxt);
932 template<
typename _Kt>
934 _M_find_node_tr(size_type __bkt,
const _Kt& __key,
935 __hash_code __c)
const
937 if (
auto __before_n = _M_find_before_node_tr(__bkt, __key, __c))
938 return static_cast<__node_ptr
>(__before_n->_M_nxt);
944 _M_insert_bucket_begin(size_type __bkt, __node_ptr __node)
946 if (_M_buckets[__bkt])
950 __node->_M_nxt = _M_buckets[__bkt]->_M_nxt;
951 _M_buckets[__bkt]->_M_nxt = __node;
958 __node->_M_nxt = _M_before_begin._M_nxt;
959 _M_before_begin._M_nxt = __node;
964 _M_buckets[_M_bucket_index(*__node->_M_next())] = __node;
966 _M_buckets[__bkt] = &_M_before_begin;
972 _M_remove_bucket_begin(size_type __bkt, __node_ptr __next_n,
973 size_type __next_bkt)
976 _M_buckets[__bkt] =
nullptr;
977 else if (__next_bkt != __bkt)
979 _M_buckets[__next_bkt] = _M_buckets[__bkt];
980 _M_buckets[__bkt] =
nullptr;
986 _M_get_previous_node(size_type __bkt, __node_ptr __n);
988 pair<__node_ptr, __hash_code>
989 _M_compute_hash_code(__node_ptr __hint,
const key_type& __k)
const;
998 _M_insert_unique_node(size_type __bkt, __hash_code,
999 __node_ptr __n, size_type __n_elt = 1);
1004 _M_insert_multi_node(__node_ptr __hint,
1005 __hash_code __code, __node_ptr __n);
1007 template<
typename... _Args>
1009 _M_emplace_uniq(_Args&&... __args);
1011#pragma GCC diagnostic push
1012#pragma GCC diagnostic ignored "-Wc++14-extensions"
1013 template<
typename _Arg,
typename _DArg = __remove_cvref_t<_Arg>,
1014 typename = _ExtractKey>
1015 static constexpr bool __is_key_type =
false;
1017 template<
typename _Arg>
1018 static constexpr bool
1019 __is_key_type<_Arg, key_type, __detail::_Identity> =
true;
1021 template<
typename _Arg,
typename _Arg1,
typename _Arg2>
1022 static constexpr bool
1023 __is_key_type<_Arg, pair<_Arg1, _Arg2>, __detail::_Select1st>
1024 = is_same<__remove_cvref_t<_Arg1>, key_type>::value;
1025#pragma GCC diagnostic pop
1027 template<
typename... _Args>
1029 _M_emplace_multi(const_iterator, _Args&&... __args);
1032 _M_erase(size_type __bkt, __node_base_ptr __prev_n, __node_ptr __n);
1035 _M_erase_some(size_type __bkt, __node_base_ptr __prev_n, __node_ptr __n);
1037 template<
typename _InputIterator>
1039 _M_insert_range_multi(_InputIterator __first, _InputIterator __last);
1042#pragma GCC diagnostic push
1043#pragma GCC diagnostic ignored "-Wc++17-extensions"
1045 template<
typename... _Args>
1047 emplace(_Args&&... __args)
1049 if constexpr (__unique_keys::value)
1055 template<
typename... _Args>
1057 emplace_hint(const_iterator __hint, _Args&&... __args)
1059 if constexpr (__unique_keys::value)
1067 insert(
const value_type& __v)
1069 if constexpr (__unique_keys::value)
1070 return _M_emplace_uniq(__v);
1072 return _M_emplace_multi(cend(), __v);
1076 insert(const_iterator __hint,
const value_type& __v)
1078 if constexpr (__unique_keys::value)
1079 return _M_emplace_uniq(__v).first;
1081 return _M_emplace_multi(__hint, __v);
1085 insert(value_type&& __v)
1087 if constexpr (__unique_keys::value)
1090 return _M_emplace_multi(cend(),
std::move(__v));
1094 insert(const_iterator __hint, value_type&& __v)
1096 if constexpr (__unique_keys::value)
1097 return _M_emplace_uniq(
std::move(__v)).first;
1099 return _M_emplace_multi(__hint,
std::move(__v));
1102#ifdef __glibcxx_unordered_map_try_emplace
1103 template<
typename _KType,
typename... _Args>
1105 try_emplace(const_iterator, _KType&& __k, _Args&&... __args)
1110 if (
auto __loc = _M_locate(__k))
1111 return { iterator(__loc),
false };
1114 __code = __loc._M_hash_code;
1115 __bkt = __loc._M_bucket_index;
1118 _Scoped_node __node {
1124 auto __it = _M_insert_unique_node(__bkt, __code, __node._M_node);
1125 __node._M_node =
nullptr;
1126 return { __it,
true };
1129#ifdef __glibcxx_associative_heterogeneous_insertion
1130 template<
typename _Kt>
1132 _M_insert_tr(_Kt&& __k)
1134 auto __loc = _M_locate_tr(__k);
1136 return { iterator(__loc),
false };
1138 _Scoped_node __node(
1140 auto __it = _M_insert_unique_node(
1141 __loc._M_bucket_index, __loc._M_hash_code, __node._M_node);
1142 __node._M_node =
nullptr;
1143 return { __it,
true };
1149 insert(initializer_list<value_type> __l)
1150 { this->insert(__l.begin(), __l.end()); }
1152 template<
typename _InputIterator>
1154 insert(_InputIterator __first, _InputIterator __last)
1156 if constexpr (__unique_keys::value)
1157 for (; __first != __last; ++__first)
1158 _M_emplace_uniq(*__first);
1160 return _M_insert_range_multi(__first, __last);
1164 template<
typename _Pair,
1165 typename = _Require<__not_<is_same<_Key, _Value>>,
1166 is_constructible<value_type, _Pair&&>>>
1170 if constexpr (__unique_keys::value)
1177 template<
typename _Pair,
1178 typename = _Require<__not_<is_same<_Key, _Value>>,
1179 is_constructible<value_type, _Pair&&>>>
1181 insert(const_iterator __hint, _Pair&& __v)
1183 if constexpr (__unique_keys::value)
1188#pragma GCC diagnostic pop
1192 erase(const_iterator);
1197 erase(iterator __it)
1198 {
return erase(const_iterator(__it)); }
1201 erase(
const key_type& __k);
1203 template <
typename _Kt>
1205 _M_erase_tr(
const _Kt& __k);
1208 erase(const_iterator, const_iterator);
1215 void rehash(size_type __bkt_count);
1220#if __glibcxx_node_extract
1223 _M_reinsert_node(node_type&& __nh)
1225 insert_return_type __ret;
1227 __ret.position = end();
1230 __glibcxx_assert(get_allocator() == __nh.get_allocator());
1232 if (
auto __loc = _M_locate(__nh._M_key()))
1235 __ret.position = iterator(__loc);
1236 __ret.inserted =
false;
1240 auto __code = __loc._M_hash_code;
1241 auto __bkt = __loc._M_bucket_index;
1243 = _M_insert_unique_node(__bkt, __code, __nh._M_ptr);
1244 __ret.inserted =
true;
1253 _M_reinsert_node_multi(const_iterator __hint, node_type&& __nh)
1258 __glibcxx_assert(get_allocator() == __nh.get_allocator());
1260 const key_type& __k = __nh._M_key();
1261 auto __code = this->_M_hash_code(__k);
1263 = _M_insert_multi_node(__hint._M_cur, __code, __nh._M_ptr);
1270 _M_extract_node(
size_t __bkt, __node_base_ptr __prev_n)
1272 __node_ptr __n =
static_cast<__node_ptr
>(__prev_n->_M_nxt);
1273 if (__prev_n == _M_buckets[__bkt])
1274 _M_remove_bucket_begin(__bkt, __n->_M_next(),
1275 __n->_M_nxt ? _M_bucket_index(*__n->_M_next()) : 0);
1276 else if (__n->_M_nxt)
1278 size_type __next_bkt = _M_bucket_index(*__n->_M_next());
1279 if (__next_bkt != __bkt)
1280 _M_buckets[__next_bkt] = __prev_n;
1283 __prev_n->_M_nxt = __n->_M_nxt;
1284 __n->_M_nxt =
nullptr;
1286 return { __n, this->_M_node_allocator() };
1293 template<
typename _H2>
1295 _M_src_hash_code(
const _H2&,
const __node_value_type& __src_n)
const
1297 if constexpr (__and_<__hash_cached,
1298 is_same<_H2, _Hash>, is_empty<_Hash>>::value)
1300 return __src_n._M_hash_code;
1302 return this->_M_hash_code(_ExtractKey{}(__src_n._M_v()));
1308 extract(const_iterator __pos)
1310 size_t __bkt = _M_bucket_index(*__pos._M_cur);
1311 return _M_extract_node(__bkt,
1312 _M_get_previous_node(__bkt, __pos._M_cur));
1317 extract(
const _Key& __k)
1318 {
return _M_extract_tr<_Key>(__k); }
1320 template <
typename _Kt>
1322 _M_extract_tr(
const _Kt& __k)
1325 __hash_code __code = this->_M_hash_code_tr(__k);
1326 std::size_t __bkt = _M_bucket_index(__code);
1327 if (__node_base_ptr __prev_node =
1328 _M_find_before_node_tr(__bkt, __k, __code))
1329 __nh = _M_extract_node(__bkt, __prev_node);
1335 _M_merge_unique(_Hashtable& __src)
1337 __glibcxx_assert(get_allocator() == __src.get_allocator());
1339 using _PTr = pointer_traits<__node_base_ptr>;
1341 auto __n_elt = __src.size();
1342 size_type __first = 1;
1345 auto __prev = _PTr::pointer_to(__src._M_before_begin);
1348 const auto __next = __prev->_M_nxt;
1349 const auto& __node =
static_cast<__node_type&
>(*__next);
1350 const key_type& __k = _ExtractKey{}(__node._M_v());
1351 const auto __loc = _M_locate(__k);
1358 auto __src_bkt = __src._M_bucket_index(__node);
1359 auto __nh = __src._M_extract_node(__src_bkt, __prev);
1360 _M_insert_unique_node(__loc._M_bucket_index, __loc._M_hash_code,
1361 __nh._M_ptr, __first * __n_elt + 1);
1368 template<
typename _Compatible_Hashtable>
1370 _M_merge_unique(_Compatible_Hashtable& __src)
1372 static_assert(is_same_v<
typename _Compatible_Hashtable::node_type,
1373 node_type>,
"Node types are compatible");
1374 __glibcxx_assert(get_allocator() == __src.get_allocator());
1376 auto __n_elt = __src.size();
1377 size_type __first = 1;
1380 for (
auto __i = __src.cbegin(), __end = __src.cend(); __i != __end;)
1384 const key_type& __k = _ExtractKey{}(*__pos);
1385 const auto __loc = _M_locate(__k);
1389 auto __nh = __src.extract(__pos);
1390 _M_insert_unique_node(__loc._M_bucket_index,
1391 __loc._M_hash_code, __nh._M_ptr,
1392 __first * __n_elt + 1);
1400 _M_merge_multi(_Hashtable& __src)
1402 __glibcxx_assert(get_allocator() == __src.get_allocator());
1404 if (__src.size() == 0) [[__unlikely__]]
1407 using _PTr = pointer_traits<__node_base_ptr>;
1409 __node_ptr __hint =
nullptr;
1410 this->reserve(size() + __src.size());
1413 auto __prev = _PTr::pointer_to(__src._M_before_begin);
1416 const auto& __node =
static_cast<__node_type&
>(*__prev->_M_nxt);
1418 auto __code = _M_hash_code_ext(__node);
1420 size_type __src_bkt = __src._M_bucket_index(__node);
1421 auto __nh = __src._M_extract_node(__src_bkt, __prev);
1422 __hint = _M_insert_multi_node(__hint, __code, __nh._M_ptr)._M_cur;
1425 while (__prev->_M_nxt !=
nullptr);
1429 template<
typename _Compatible_Hashtable>
1431 _M_merge_multi(_Compatible_Hashtable& __src)
1433 static_assert(is_same_v<
typename _Compatible_Hashtable::node_type,
1434 node_type>,
"Node types are compatible");
1435 __glibcxx_assert(get_allocator() == __src.get_allocator());
1437 __node_ptr __hint =
nullptr;
1438 this->reserve(size() + __src.size());
1441 for (
auto __i = __src.cbegin(), __end = __src.cend(); __i != __end;)
1445 = _M_src_hash_code(__src.hash_function(), *__pos._M_cur);
1446 auto __nh = __src.extract(__pos);
1447 __hint = _M_insert_multi_node(__hint, __code, __nh._M_ptr)._M_cur;
1454 _M_equal(
const _Hashtable& __other)
const;
1458 void _M_rehash(size_type __bkt_count, true_type __uks);
1461 void _M_rehash(size_type __bkt_count, false_type __uks);
1465 template<
typename _Key,
typename _Value,
typename _Alloc,
1466 typename _ExtractKey,
typename _Equal,
1467 typename _Hash,
typename _RangeHash,
typename _Unused,
1468 typename _RehashPolicy,
typename _Traits>
1469 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1470 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1472 const _Hash& __h,
const _Equal& __eq,
const allocator_type& __a)
1473 : _Hashtable(__h, __eq, __a)
1475 auto __bkt_count = _M_rehash_policy._M_next_bkt(__bkt_count_hint);
1476 if (__bkt_count > _M_bucket_count)
1478 _M_buckets = _M_allocate_buckets(__bkt_count);
1479 _M_bucket_count = __bkt_count;
1483 template<
typename _Key,
typename _Value,
typename _Alloc,
1484 typename _ExtractKey,
typename _Equal,
1485 typename _Hash,
typename _RangeHash,
typename _Unused,
1486 typename _RehashPolicy,
typename _Traits>
1487 template<
typename _InputIterator>
1489 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1490 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1491 _Hashtable(_InputIterator __f, _InputIterator __l,
1492 size_type __bkt_count_hint,
1493 const _Hash& __h,
const _Equal& __eq,
1494 const allocator_type& __a, true_type )
1495 : _Hashtable(__bkt_count_hint, __h, __eq, __a)
1496 { this->insert(__f, __l); }
1498 template<
typename _Key,
typename _Value,
typename _Alloc,
1499 typename _ExtractKey,
typename _Equal,
1500 typename _Hash,
typename _RangeHash,
typename _Unused,
1501 typename _RehashPolicy,
typename _Traits>
1502 template<
typename _InputIterator>
1503 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1504 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1505 _Hashtable(_InputIterator __f, _InputIterator __l,
1506 size_type __bkt_count_hint,
1507 const _Hash& __h,
const _Equal& __eq,
1508 const allocator_type& __a, false_type __uks)
1509 : _Hashtable(__h, __eq, __a)
1511 auto __nb_elems = __detail::__distance_fw(__f, __l);
1513 _M_rehash_policy._M_next_bkt(
1514 std::max(_M_rehash_policy._M_bkt_for_elements(__nb_elems),
1517 if (__bkt_count > _M_bucket_count)
1519 _M_buckets = _M_allocate_buckets(__bkt_count);
1520 _M_bucket_count = __bkt_count;
1523 for (; __f != __l; ++__f)
1524 _M_emplace_multi(cend(), *__f);
1527 template<
typename _Key,
typename _Value,
typename _Alloc,
1528 typename _ExtractKey,
typename _Equal,
1529 typename _Hash,
typename _RangeHash,
typename _Unused,
1530 typename _RehashPolicy,
typename _Traits>
1532 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1533 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1534 operator=(
const _Hashtable& __ht)
1540 if (__node_alloc_traits::_S_propagate_on_copy_assign())
1542 auto& __this_alloc = this->_M_node_allocator();
1543 auto& __that_alloc = __ht._M_node_allocator();
1544 if (!__node_alloc_traits::_S_always_equal()
1545 && __this_alloc != __that_alloc)
1548 this->_M_deallocate_nodes(_M_begin());
1549 _M_before_begin._M_nxt =
nullptr;
1550 _M_deallocate_buckets();
1551 _M_buckets =
nullptr;
1552 std::__alloc_on_copy(__this_alloc, __that_alloc);
1553 __hashtable_base::operator=(__ht);
1554 _M_bucket_count = __ht._M_bucket_count;
1555 _M_element_count = __ht._M_element_count;
1556 _M_rehash_policy = __ht._M_rehash_policy;
1560 ~_Guard() {
if (_M_ht) _M_ht->_M_reset(); }
1565 _Guard __guard{
this};
1567 __guard._M_ht =
nullptr;
1570 std::__alloc_on_copy(__this_alloc, __that_alloc);
1574 _M_assign_elements(__ht);
1578 template<
typename _Key,
typename _Value,
typename _Alloc,
1579 typename _ExtractKey,
typename _Equal,
1580 typename _Hash,
typename _RangeHash,
typename _Unused,
1581 typename _RehashPolicy,
typename _Traits>
1582 template<
typename _Ht>
1584 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1585 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1586 _M_assign_elements(_Ht&& __ht)
1588 using __reuse_or_alloc_node_gen_t =
1589 __detail::_ReuseOrAllocNode<__node_alloc_type>;
1591 __buckets_ptr __former_buckets =
nullptr;
1592 std::size_t __former_bucket_count = _M_bucket_count;
1593 __rehash_guard_t __rehash_guard(_M_rehash_policy);
1595 if (_M_bucket_count != __ht._M_bucket_count)
1597 __former_buckets = _M_buckets;
1598 _M_buckets = _M_allocate_buckets(__ht._M_bucket_count);
1599 _M_bucket_count = __ht._M_bucket_count;
1602 std::fill_n(_M_buckets, _M_bucket_count,
nullptr);
1607 _M_element_count = __ht._M_element_count;
1608 _M_rehash_policy = __ht._M_rehash_policy;
1609 __reuse_or_alloc_node_gen_t __roan(_M_begin(), *
this);
1610 _M_before_begin._M_nxt =
nullptr;
1612 if (__former_buckets)
1613 _M_deallocate_buckets(__former_buckets, __former_bucket_count);
1614 __rehash_guard._M_guarded_obj =
nullptr;
1618 if (__former_buckets)
1621 _M_deallocate_buckets();
1622 _M_buckets = __former_buckets;
1623 _M_bucket_count = __former_bucket_count;
1625 std::fill_n(_M_buckets, _M_bucket_count,
nullptr);
1626 __throw_exception_again;
1630 template<
typename _Key,
typename _Value,
typename _Alloc,
1631 typename _ExtractKey,
typename _Equal,
1632 typename _Hash,
typename _RangeHash,
typename _Unused,
1633 typename _RehashPolicy,
typename _Traits>
1634 template<
typename _Ht,
typename _NodeGenerator>
1636 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1637 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1638 _M_assign(_Ht&& __ht, _NodeGenerator& __node_gen)
1647 if (_M_dealloc_buckets)
1648 _M_ht->_M_deallocate_buckets();
1651 _Hashtable* _M_ht =
nullptr;
1652 bool _M_dealloc_buckets =
false;
1658 _M_buckets = _M_allocate_buckets(_M_bucket_count);
1659 __guard._M_dealloc_buckets =
true;
1662 if (!__ht._M_before_begin._M_nxt)
1665 __guard._M_ht =
this;
1667 using _FromVal = __conditional_t<is_lvalue_reference<_Ht>::value,
1668 const value_type&, value_type&&>;
1672 __node_ptr __ht_n = __ht._M_begin();
1674 = __node_gen(
static_cast<_FromVal
>(__ht_n->_M_v()));
1675 _M_copy_code(*__this_n, *__ht_n);
1676 _M_update_bbegin(__this_n);
1679 __node_ptr __prev_n = __this_n;
1680 for (__ht_n = __ht_n->_M_next(); __ht_n; __ht_n = __ht_n->_M_next())
1682 __this_n = __node_gen(
static_cast<_FromVal
>(__ht_n->_M_v()));
1683 __prev_n->_M_nxt = __this_n;
1684 _M_copy_code(*__this_n, *__ht_n);
1685 size_type __bkt = _M_bucket_index(*__this_n);
1686 if (!_M_buckets[__bkt])
1687 _M_buckets[__bkt] = __prev_n;
1688 __prev_n = __this_n;
1690 __guard._M_ht =
nullptr;
1693 template<
typename _Key,
typename _Value,
typename _Alloc,
1694 typename _ExtractKey,
typename _Equal,
1695 typename _Hash,
typename _RangeHash,
typename _Unused,
1696 typename _RehashPolicy,
typename _Traits>
1698 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1699 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1702 _M_rehash_policy._M_reset();
1703 _M_bucket_count = 1;
1704 _M_single_bucket =
nullptr;
1705 _M_buckets = &_M_single_bucket;
1706 _M_before_begin._M_nxt =
nullptr;
1707 _M_element_count = 0;
1710 template<
typename _Key,
typename _Value,
typename _Alloc,
1711 typename _ExtractKey,
typename _Equal,
1712 typename _Hash,
typename _RangeHash,
typename _Unused,
1713 typename _RehashPolicy,
typename _Traits>
1715 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1716 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1717 _M_move_assign(_Hashtable&& __ht, true_type)
1722 this->_M_deallocate_nodes(_M_begin());
1723 _M_deallocate_buckets();
1724 __hashtable_base::operator=(
std::move(__ht));
1725 _M_rehash_policy = __ht._M_rehash_policy;
1726 if (!__ht._M_uses_single_bucket())
1727 _M_buckets = __ht._M_buckets;
1730 _M_buckets = &_M_single_bucket;
1731 _M_single_bucket = __ht._M_single_bucket;
1734 _M_bucket_count = __ht._M_bucket_count;
1735 _M_before_begin._M_nxt = __ht._M_before_begin._M_nxt;
1736 _M_element_count = __ht._M_element_count;
1737 std::__alloc_on_move(this->_M_node_allocator(), __ht._M_node_allocator());
1744 template<
typename _Key,
typename _Value,
typename _Alloc,
1745 typename _ExtractKey,
typename _Equal,
1746 typename _Hash,
typename _RangeHash,
typename _Unused,
1747 typename _RehashPolicy,
typename _Traits>
1749 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1750 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1751 _M_move_assign(_Hashtable&& __ht, false_type)
1753 if (__ht._M_node_allocator() == this->_M_node_allocator())
1754 _M_move_assign(
std::move(__ht), true_type{});
1763 template<
typename _Key,
typename _Value,
typename _Alloc,
1764 typename _ExtractKey,
typename _Equal,
1765 typename _Hash,
typename _RangeHash,
typename _Unused,
1766 typename _RehashPolicy,
typename _Traits>
1768 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1769 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1770 _Hashtable(
const _Hashtable& __ht)
1771 : __hashtable_base(__ht),
1773 __rehash_base(__ht),
1775 __node_alloc_traits::_S_select_on_copy(__ht._M_node_allocator())),
1776 __enable_default_ctor(__ht),
1777 _M_buckets(nullptr),
1778 _M_bucket_count(__ht._M_bucket_count),
1779 _M_element_count(__ht._M_element_count),
1780 _M_rehash_policy(__ht._M_rehash_policy)
1785 template<
typename _Key,
typename _Value,
typename _Alloc,
1786 typename _ExtractKey,
typename _Equal,
1787 typename _Hash,
typename _RangeHash,
typename _Unused,
1788 typename _RehashPolicy,
typename _Traits>
1789 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1790 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1791 _Hashtable(_Hashtable&& __ht, __node_alloc_type&& __a,
1793 noexcept(_S_nothrow_move())
1794 : __hashtable_base(__ht),
1796 __rehash_base(__ht),
1797 __hashtable_alloc(
std::move(__a)),
1798 __enable_default_ctor(__ht),
1799 _M_buckets(__ht._M_buckets),
1800 _M_bucket_count(__ht._M_bucket_count),
1801 _M_before_begin(__ht._M_before_begin._M_nxt),
1802 _M_element_count(__ht._M_element_count),
1803 _M_rehash_policy(__ht._M_rehash_policy)
1806 if (__ht._M_uses_single_bucket())
1808 _M_buckets = &_M_single_bucket;
1809 _M_single_bucket = __ht._M_single_bucket;
1818 template<
typename _Key,
typename _Value,
typename _Alloc,
1819 typename _ExtractKey,
typename _Equal,
1820 typename _Hash,
typename _RangeHash,
typename _Unused,
1821 typename _RehashPolicy,
typename _Traits>
1823 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1824 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1825 _Hashtable(
const _Hashtable& __ht,
const allocator_type& __a)
1826 : __hashtable_base(__ht),
1828 __rehash_base(__ht),
1829 __hashtable_alloc(__node_alloc_type(__a)),
1830 __enable_default_ctor(__ht),
1832 _M_bucket_count(__ht._M_bucket_count),
1833 _M_element_count(__ht._M_element_count),
1834 _M_rehash_policy(__ht._M_rehash_policy)
1839 template<
typename _Key,
typename _Value,
typename _Alloc,
1840 typename _ExtractKey,
typename _Equal,
1841 typename _Hash,
typename _RangeHash,
typename _Unused,
1842 typename _RehashPolicy,
typename _Traits>
1843 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1844 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1845 _Hashtable(_Hashtable&& __ht, __node_alloc_type&& __a,
1847 : __hashtable_base(__ht),
1849 __rehash_base(__ht),
1850 __hashtable_alloc(
std::move(__a)),
1851 __enable_default_ctor(__ht),
1852 _M_buckets(nullptr),
1853 _M_bucket_count(__ht._M_bucket_count),
1854 _M_element_count(__ht._M_element_count),
1855 _M_rehash_policy(__ht._M_rehash_policy)
1857 if (__ht._M_node_allocator() == this->_M_node_allocator())
1859 if (__ht._M_uses_single_bucket())
1861 _M_buckets = &_M_single_bucket;
1862 _M_single_bucket = __ht._M_single_bucket;
1865 _M_buckets = __ht._M_buckets;
1869 _M_update_bbegin(__ht._M_begin());
1875 using _Fwd_Ht = __conditional_t<
1876 __move_if_noexcept_cond<value_type>::value,
1877 const _Hashtable&, _Hashtable&&>;
1883 template<
typename _Key,
typename _Value,
typename _Alloc,
1884 typename _ExtractKey,
typename _Equal,
1885 typename _Hash,
typename _RangeHash,
typename _Unused,
1886 typename _RehashPolicy,
typename _Traits>
1887 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1888 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1889 ~_Hashtable() noexcept
1896 static_assert(
noexcept(declval<const __hash_code_base_access&>()
1897 ._M_bucket_index(declval<const __node_value_type&>(),
1899 "Cache the hash code or qualify your functors involved"
1900 " in hash code and bucket index computation with noexcept");
1902 this->_M_deallocate_nodes(_M_begin());
1903 _M_deallocate_buckets();
1906 template<
typename _Key,
typename _Value,
typename _Alloc,
1907 typename _ExtractKey,
typename _Equal,
1908 typename _Hash,
typename _RangeHash,
typename _Unused,
1909 typename _RehashPolicy,
typename _Traits>
1911 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1912 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1913 swap(_Hashtable& __x)
1914 noexcept(__and_<__is_nothrow_swappable<_Hash>,
1915 __is_nothrow_swappable<_Equal>>::value)
1918 swap(__hash_code_base::_M_hash._M_obj,
1919 __x.__hash_code_base::_M_hash._M_obj);
1920 swap(__hashtable_base::_M_equal._M_obj,
1921 __x.__hashtable_base::_M_equal._M_obj);
1923#pragma GCC diagnostic push
1924#pragma GCC diagnostic ignored "-Wc++17-extensions"
1925 if constexpr (__node_alloc_traits::propagate_on_container_swap::value)
1926 swap(this->_M_node_allocator(), __x._M_node_allocator());
1927#pragma GCC diagnostic pop
1929 std::swap(_M_rehash_policy, __x._M_rehash_policy);
1932 if (this->_M_uses_single_bucket())
1934 if (!__x._M_uses_single_bucket())
1936 _M_buckets = __x._M_buckets;
1937 __x._M_buckets = &__x._M_single_bucket;
1940 else if (__x._M_uses_single_bucket())
1942 __x._M_buckets = _M_buckets;
1943 _M_buckets = &_M_single_bucket;
1946 std::swap(_M_buckets, __x._M_buckets);
1948 std::swap(_M_bucket_count, __x._M_bucket_count);
1949 std::swap(_M_before_begin._M_nxt, __x._M_before_begin._M_nxt);
1950 std::swap(_M_element_count, __x._M_element_count);
1951 std::swap(_M_single_bucket, __x._M_single_bucket);
1956 __x._M_update_bbegin();
1959 template<
typename _Key,
typename _Value,
typename _Alloc,
1960 typename _ExtractKey,
typename _Equal,
1961 typename _Hash,
typename _RangeHash,
typename _Unused,
1962 typename _RehashPolicy,
typename _Traits>
1964 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1965 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1966 find(
const key_type& __k)
1968 {
return iterator(_M_locate(__k)); }
1970 template<
typename _Key,
typename _Value,
typename _Alloc,
1971 typename _ExtractKey,
typename _Equal,
1972 typename _Hash,
typename _RangeHash,
typename _Unused,
1973 typename _RehashPolicy,
typename _Traits>
1975 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1976 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1977 find(
const key_type& __k)
const
1979 {
return const_iterator(_M_locate(__k)); }
1981#ifdef __glibcxx_generic_unordered_lookup
1982 template<
typename _Key,
typename _Value,
typename _Alloc,
1983 typename _ExtractKey,
typename _Equal,
1984 typename _Hash,
typename _RangeHash,
typename _Unused,
1985 typename _RehashPolicy,
typename _Traits>
1986 template<
typename _Kt,
typename,
typename>
1988 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
1989 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
1990 _M_find_tr(
const _Kt& __k)
1993 if (size() <= __small_size_threshold())
1995 for (
auto __n = _M_begin(); __n; __n = __n->_M_next())
1996 if (this->_M_key_equals_tr(__k, *__n))
1997 return iterator(__n);
2001 __hash_code __code = this->_M_hash_code_tr(__k);
2002 std::size_t __bkt = _M_bucket_index(__code);
2003 return iterator(_M_find_node_tr(__bkt, __k, __code));
2006 template<
typename _Key,
typename _Value,
typename _Alloc,
2007 typename _ExtractKey,
typename _Equal,
2008 typename _Hash,
typename _RangeHash,
typename _Unused,
2009 typename _RehashPolicy,
typename _Traits>
2010 template<
typename _Kt,
typename,
typename>
2012 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2013 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2014 _M_find_tr(
const _Kt& __k)
const
2017 if (size() <= __small_size_threshold())
2019 for (
auto __n = _M_begin(); __n; __n = __n->_M_next())
2020 if (this->_M_key_equals_tr(__k, *__n))
2021 return const_iterator(__n);
2025 __hash_code __code = this->_M_hash_code_tr(__k);
2026 std::size_t __bkt = _M_bucket_index(__code);
2027 return const_iterator(_M_find_node_tr(__bkt, __k, __code));
2031 template<
typename _Key,
typename _Value,
typename _Alloc,
2032 typename _ExtractKey,
typename _Equal,
2033 typename _Hash,
typename _RangeHash,
typename _Unused,
2034 typename _RehashPolicy,
typename _Traits>
2036 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2037 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2038 count(
const key_type& __k)
const
2041 auto __it = find(__k);
2045 if (__unique_keys::value)
2048 size_type __result = 1;
2049 for (
auto __ref = __it++;
2050 __it._M_cur && this->_M_node_equals(*__ref._M_cur, *__it._M_cur);
2057#ifdef __glibcxx_generic_unordered_lookup
2058 template<
typename _Key,
typename _Value,
typename _Alloc,
2059 typename _ExtractKey,
typename _Equal,
2060 typename _Hash,
typename _RangeHash,
typename _Unused,
2061 typename _RehashPolicy,
typename _Traits>
2062 template<
typename _Kt,
typename,
typename>
2064 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2065 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2066 _M_count_tr(
const _Kt& __k)
const
2069 if (size() <= __small_size_threshold())
2071 size_type __result = 0;
2072 for (
auto __n = _M_begin(); __n; __n = __n->_M_next())
2074 if (this->_M_key_equals_tr(__k, *__n))
2087 __hash_code __code = this->_M_hash_code_tr(__k);
2088 std::size_t __bkt = _M_bucket_index(__code);
2089 auto __n = _M_find_node_tr(__bkt, __k, __code);
2094 size_type __result = 1;
2096 __it._M_cur && this->_M_equals_tr(__k, __code, *__it._M_cur);
2104 template<
typename _Key,
typename _Value,
typename _Alloc,
2105 typename _ExtractKey,
typename _Equal,
2106 typename _Hash,
typename _RangeHash,
typename _Unused,
2107 typename _RehashPolicy,
typename _Traits>
2109 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2110 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2111 equal_range(
const key_type& __k)
2112 -> pair<iterator, iterator>
2114 auto __ite = find(__k);
2116 return { __ite, __ite };
2118 auto __beg = __ite++;
2119 if (__unique_keys::value)
2120 return { __beg, __ite };
2122 while (__ite._M_cur && this->_M_node_equals(*__beg._M_cur, *__ite._M_cur))
2125 return { __beg, __ite };
2128 template<
typename _Key,
typename _Value,
typename _Alloc,
2129 typename _ExtractKey,
typename _Equal,
2130 typename _Hash,
typename _RangeHash,
typename _Unused,
2131 typename _RehashPolicy,
typename _Traits>
2133 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2134 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2135 equal_range(
const key_type& __k)
const
2136 -> pair<const_iterator, const_iterator>
2138 auto __ite = find(__k);
2140 return { __ite, __ite };
2142 auto __beg = __ite++;
2143 if (__unique_keys::value)
2144 return { __beg, __ite };
2146 while (__ite._M_cur && this->_M_node_equals(*__beg._M_cur, *__ite._M_cur))
2149 return { __beg, __ite };
2152#ifdef __glibcxx_generic_unordered_lookup
2153 template<
typename _Key,
typename _Value,
typename _Alloc,
2154 typename _ExtractKey,
typename _Equal,
2155 typename _Hash,
typename _RangeHash,
typename _Unused,
2156 typename _RehashPolicy,
typename _Traits>
2157 template<
typename _Kt,
typename,
typename>
2159 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2160 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2161 _M_equal_range_tr(
const _Kt& __k)
2162 -> pair<iterator, iterator>
2164 if (size() <= __small_size_threshold())
2166 __node_ptr __n, __beg =
nullptr;
2167 for (__n = _M_begin(); __n; __n = __n->_M_next())
2169 if (this->_M_key_equals_tr(__k, *__n))
2180 return { iterator(__beg), iterator(__n) };
2183 __hash_code __code = this->_M_hash_code_tr(__k);
2184 std::size_t __bkt = _M_bucket_index(__code);
2185 auto __n = _M_find_node_tr(__bkt, __k, __code);
2186 iterator __ite(__n);
2188 return { __ite, __ite };
2190 auto __beg = __ite++;
2191 while (__ite._M_cur && this->_M_equals_tr(__k, __code, *__ite._M_cur))
2194 return { __beg, __ite };
2197 template<
typename _Key,
typename _Value,
typename _Alloc,
2198 typename _ExtractKey,
typename _Equal,
2199 typename _Hash,
typename _RangeHash,
typename _Unused,
2200 typename _RehashPolicy,
typename _Traits>
2201 template<
typename _Kt,
typename,
typename>
2203 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2204 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2205 _M_equal_range_tr(
const _Kt& __k)
const
2206 -> pair<const_iterator, const_iterator>
2208 if (size() <= __small_size_threshold())
2210 __node_ptr __n, __beg =
nullptr;
2211 for (__n = _M_begin(); __n; __n = __n->_M_next())
2213 if (this->_M_key_equals_tr(__k, *__n))
2224 return { const_iterator(__beg), const_iterator(__n) };
2227 __hash_code __code = this->_M_hash_code_tr(__k);
2228 std::size_t __bkt = _M_bucket_index(__code);
2229 auto __n = _M_find_node_tr(__bkt, __k, __code);
2230 const_iterator __ite(__n);
2232 return { __ite, __ite };
2234 auto __beg = __ite++;
2235 while (__ite._M_cur && this->_M_equals_tr(__k, __code, *__ite._M_cur))
2238 return { __beg, __ite };
2244 template<
typename _Key,
typename _Value,
typename _Alloc,
2245 typename _ExtractKey,
typename _Equal,
2246 typename _Hash,
typename _RangeHash,
typename _Unused,
2247 typename _RehashPolicy,
typename _Traits>
2248 template<
typename _Kt>
2250 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2251 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2252 _M_find_before_node_tr(size_type __bkt,
const _Kt& __k,
2253 __hash_code __code)
const
2256 __node_base_ptr __prev_p = _M_buckets[__bkt];
2260 for (__node_ptr __p =
static_cast<__node_ptr
>(__prev_p->_M_nxt);;
2261 __p = __p->_M_next())
2263 if (this->_M_equals_tr(__k, __code, *__p))
2266 if (__builtin_expect (
2267 !__p->_M_nxt || _M_bucket_index(*__p->_M_next()) != __bkt, 0))
2275 template<
typename _Key,
typename _Value,
typename _Alloc,
2276 typename _ExtractKey,
typename _Equal,
2277 typename _Hash,
typename _RangeHash,
typename _Unused,
2278 typename _RehashPolicy,
typename _Traits>
2279 template <
typename _Kt>
2281 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2282 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2283 _M_locate_tr(
const _Kt& __k)
const
2286 __location_type __loc;
2287 const auto __size = size();
2289 if (__size <= __small_size_threshold())
2291 __loc._M_before = pointer_traits<__node_base_ptr>::
2292 pointer_to(
const_cast<__node_base&
>(_M_before_begin));
2293 while (__loc._M_before->_M_nxt)
2295 if (this->_M_key_equals_tr(__k, *__loc._M_node()))
2297 __loc._M_before = __loc._M_before->_M_nxt;
2299 __loc._M_before =
nullptr;
2302 __loc._M_hash_code = this->_M_hash_code_tr(__k);
2303 __loc._M_bucket_index = _M_bucket_index(__loc._M_hash_code);
2305 if (__size > __small_size_threshold())
2306 __loc._M_before = _M_find_before_node_tr(
2307 __loc._M_bucket_index, __k, __loc._M_hash_code);
2312 template<
typename _Key,
typename _Value,
typename _Alloc,
2313 typename _ExtractKey,
typename _Equal,
2314 typename _Hash,
typename _RangeHash,
typename _Unused,
2315 typename _RehashPolicy,
typename _Traits>
2317 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2318 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2319 _M_get_previous_node(size_type __bkt, __node_ptr __n)
2322 __node_base_ptr __prev_n = _M_buckets[__bkt];
2323 while (__prev_n->_M_nxt != __n)
2324 __prev_n = __prev_n->_M_nxt;
2328#pragma GCC diagnostic push
2329#pragma GCC diagnostic ignored "-Wc++17-extensions"
2330 template<
typename _Key,
typename _Value,
typename _Alloc,
2331 typename _ExtractKey,
typename _Equal,
2332 typename _Hash,
typename _RangeHash,
typename _Unused,
2333 typename _RehashPolicy,
typename _Traits>
2334 template<
typename... _Args>
2336 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2337 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2338 _M_emplace_uniq(_Args&&... __args)
2339 -> pair<iterator, bool>
2341 const key_type* __kp =
nullptr;
2343 if constexpr (
sizeof...(_Args) == 1)
2345 if constexpr (__is_key_type<_Args...>)
2347 const auto& __key = _ExtractKey{}(__args...);
2351 else if constexpr (
sizeof...(_Args) == 2)
2353 if constexpr (__is_key_type<
pair<
const _Args&...>>)
2355 pair<
const _Args&...> __refs(__args...);
2356 const auto& __key = _ExtractKey{}(__refs);
2361 _Scoped_node __node { __node_ptr(),
this };
2362 __hash_code __code = 0;
2363 size_type __bkt = 0;
2365 if (__kp ==
nullptr)
2370 const key_type& __key = _ExtractKey{}(__node._M_node->_M_v());
2374 if (
auto __loc = _M_locate(*__kp))
2376 return { iterator(__loc),
false };
2379 __code = __loc._M_hash_code;
2380 __bkt = __loc._M_bucket_index;
2383 if (!__node._M_node)
2388 auto __pos = _M_insert_unique_node(__bkt, __code, __node._M_node);
2389 __node._M_node =
nullptr;
2390 return { __pos,
true };
2393#pragma GCC diagnostic pop
2395 template<
typename _Key,
typename _Value,
typename _Alloc,
2396 typename _ExtractKey,
typename _Equal,
2397 typename _Hash,
typename _RangeHash,
typename _Unused,
2398 typename _RehashPolicy,
typename _Traits>
2399 template<
typename... _Args>
2401 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2402 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2403 _M_emplace_multi(const_iterator __hint, _Args&&... __args)
2408 const key_type& __k = _ExtractKey{}(__node._M_node->_M_v());
2410 auto __res = this->_M_compute_hash_code(__hint._M_cur, __k);
2412 = _M_insert_multi_node(__res.first, __res.second, __node._M_node);
2413 __node._M_node =
nullptr;
2417 template<
typename _Key,
typename _Value,
typename _Alloc,
2418 typename _ExtractKey,
typename _Equal,
2419 typename _Hash,
typename _RangeHash,
typename _Unused,
2420 typename _RehashPolicy,
typename _Traits>
2422 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2423 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2424 _M_rehash_insert(size_type __n)
2430 __rehash_guard_t __rehash_guard(_M_rehash_policy);
2431 __pair_type __do_rehash
2432 = _M_rehash_policy._M_need_rehash(_M_bucket_count, _M_element_count, __n);
2434 if (__do_rehash.first)
2435 _M_rehash(__do_rehash.second, false_type{});
2437 __rehash_guard._M_guarded_obj =
nullptr;
2441 template<
typename _Key,
typename _Value,
typename _Alloc,
2442 typename _ExtractKey,
typename _Equal,
2443 typename _Hash,
typename _RangeHash,
typename _Unused,
2444 typename _RehashPolicy,
typename _Traits>
2445 template<
typename _InputIterator>
2447 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2448 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2449 _M_insert_range_multi(_InputIterator __first, _InputIterator __last)
2451 _M_rehash_insert(__detail::__distance_fw(__first, __last));
2452 for (; __first != __last; ++__first)
2453 _M_emplace_multi(cend(), *__first);
2456 template<
typename _Key,
typename _Value,
typename _Alloc,
2457 typename _ExtractKey,
typename _Equal,
2458 typename _Hash,
typename _RangeHash,
typename _Unused,
2459 typename _RehashPolicy,
typename _Traits>
2461 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2462 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2463 _M_compute_hash_code(__node_ptr __hint,
const key_type& __k)
const
2464 -> pair<__node_ptr, __hash_code>
2466 if (size() <= __small_size_threshold())
2470 for (
auto __it = __hint; __it; __it = __it->_M_next())
2471 if (this->_M_key_equals(__k, *__it))
2472 return { __it, this->_M_hash_code(*__it) };
2475 for (
auto __it = _M_begin(); __it != __hint; __it = __it->_M_next())
2476 if (this->_M_key_equals(__k, *__it))
2477 return { __it, this->_M_hash_code(*__it) };
2482 return { __hint, this->_M_hash_code(__k) };
2485 template<
typename _Key,
typename _Value,
typename _Alloc,
2486 typename _ExtractKey,
typename _Equal,
2487 typename _Hash,
typename _RangeHash,
typename _Unused,
2488 typename _RehashPolicy,
typename _Traits>
2490 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2491 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2492 _M_insert_unique_node(size_type __bkt, __hash_code __code,
2493 __node_ptr __node, size_type __n_elt)
2496 __rehash_guard_t __rehash_guard(_M_rehash_policy);
2498 = _M_rehash_policy._M_need_rehash(_M_bucket_count, _M_element_count,
2501 if (__do_rehash.
first)
2503 _M_rehash(__do_rehash.
second, true_type{});
2504 __bkt = _M_bucket_index(__code);
2507 __rehash_guard._M_guarded_obj =
nullptr;
2508 _M_store_code(*__node, __code);
2511 _M_insert_bucket_begin(__bkt, __node);
2513 return iterator(__node);
2516 template<
typename _Key,
typename _Value,
typename _Alloc,
2517 typename _ExtractKey,
typename _Equal,
2518 typename _Hash,
typename _RangeHash,
typename _Unused,
2519 typename _RehashPolicy,
typename _Traits>
2521 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2522 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2523 _M_insert_multi_node(__node_ptr __hint,
2524 __hash_code __code, __node_ptr __node)
2527 __rehash_guard_t __rehash_guard(_M_rehash_policy);
2529 = _M_rehash_policy._M_need_rehash(_M_bucket_count, _M_element_count, 1);
2531 if (__do_rehash.
first)
2532 _M_rehash(__do_rehash.
second, false_type{});
2534 __rehash_guard._M_guarded_obj =
nullptr;
2535 _M_store_code(*__node, __code);
2536 const key_type& __k = _ExtractKey{}(__node->_M_v());
2537 size_type __bkt = _M_bucket_index(__code);
2541 __node_base_ptr __prev
2542 = __builtin_expect(__hint !=
nullptr,
false)
2543 && this->_M_equals(__k, __code, *__hint)
2545 : _M_find_before_node(__bkt, __k, __code);
2550 __node->_M_nxt = __prev->_M_nxt;
2551 __prev->_M_nxt = __node;
2552 if (__builtin_expect(__prev == __hint,
false))
2556 && !this->_M_equals(__k, __code, *__node->_M_next()))
2558 size_type __next_bkt = _M_bucket_index(*__node->_M_next());
2559 if (__next_bkt != __bkt)
2560 _M_buckets[__next_bkt] = __node;
2567 _M_insert_bucket_begin(__bkt, __node);
2569 return iterator(__node);
2572 template<
typename _Key,
typename _Value,
typename _Alloc,
2573 typename _ExtractKey,
typename _Equal,
2574 typename _Hash,
typename _RangeHash,
typename _Unused,
2575 typename _RehashPolicy,
typename _Traits>
2577 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2578 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2579 erase(const_iterator __it)
2582 __node_ptr __n = __it._M_cur;
2583 std::size_t __bkt = _M_bucket_index(*__n);
2588 __node_base_ptr __prev_n = _M_get_previous_node(__bkt, __n);
2589 return _M_erase(__bkt, __prev_n, __n);
2592 template<
typename _Key,
typename _Value,
typename _Alloc,
2593 typename _ExtractKey,
typename _Equal,
2594 typename _Hash,
typename _RangeHash,
typename _Unused,
2595 typename _RehashPolicy,
typename _Traits>
2597 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2598 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2599 _M_erase(size_type __bkt, __node_base_ptr __prev_n, __node_ptr __n)
2602 if (__prev_n == _M_buckets[__bkt])
2603 _M_remove_bucket_begin(__bkt, __n->_M_next(),
2604 __n->_M_nxt ? _M_bucket_index(*__n->_M_next()) : 0);
2605 else if (__n->_M_nxt)
2607 size_type __next_bkt = _M_bucket_index(*__n->_M_next());
2608 if (__next_bkt != __bkt)
2609 _M_buckets[__next_bkt] = __prev_n;
2612 __prev_n->_M_nxt = __n->_M_nxt;
2613 iterator __result(__n->_M_next());
2614 this->_M_deallocate_node(__n);
2620#pragma GCC diagnostic push
2621#pragma GCC diagnostic ignored "-Wc++17-extensions"
2623 template<
typename _Key,
typename _Value,
typename _Alloc,
2624 typename _ExtractKey,
typename _Equal,
2625 typename _Hash,
typename _RangeHash,
typename _Unused,
2626 typename _RehashPolicy,
typename _Traits>
2628 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2629 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2630 erase(
const key_type& __k)
2633 auto __loc = _M_locate(__k);
2637 __node_base_ptr __prev_n = __loc._M_before;
2638 __node_ptr __n = __loc._M_node();
2639 auto __bkt = __loc._M_bucket_index;
2640 if (__bkt == size_type(-1))
2641 __bkt = _M_bucket_index(*__n);
2642 if constexpr (__unique_keys::value)
2644 _M_erase(__bkt, __prev_n, __n);
2648 return _M_erase_some(__bkt, __prev_n, __n);
2651 template<
typename _Key,
typename _Value,
typename _Alloc,
2652 typename _ExtractKey,
typename _Equal,
2653 typename _Hash,
typename _RangeHash,
typename _Unused,
2654 typename _RehashPolicy,
typename _Traits>
2656 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2657 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2658 _M_erase_some(size_type __bkt, __node_base_ptr __prev_n, __node_ptr __n)
2667 __node_ptr __n_last = __n->_M_next();
2668 while (__n_last && this->_M_node_equals(*__n, *__n_last))
2669 __n_last = __n_last->_M_next();
2671 std::size_t __n_last_bkt
2672 = __n_last ? _M_bucket_index(*__n_last) : __bkt;
2675 size_type __result = 0;
2678 __node_ptr __p = __n->_M_next();
2679 this->_M_deallocate_node(__n);
2683 while (__n != __n_last);
2685 _M_element_count -= __result;
2686 if (__prev_n == _M_buckets[__bkt])
2687 _M_remove_bucket_begin(__bkt, __n_last, __n_last_bkt);
2688 else if (__n_last_bkt != __bkt)
2689 _M_buckets[__n_last_bkt] = __prev_n;
2690 __prev_n->_M_nxt = __n_last;
2694 template<
typename _Key,
typename _Value,
typename _Alloc,
2695 typename _ExtractKey,
typename _Equal,
2696 typename _Hash,
typename _RangeHash,
typename _Unused,
2697 typename _RehashPolicy,
typename _Traits>
2698 template <
typename _Kt>
2700 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2701 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2702 _M_erase_tr(
const _Kt& __k)
2705 auto __loc = _M_locate_tr(__k);
2709 __node_base_ptr __prev_n = __loc._M_before;
2710 __node_ptr __n = __loc._M_node();
2711 auto __bkt = __loc._M_bucket_index;
2712 if (__bkt == size_type(-1))
2713 __bkt = _M_bucket_index(*__n);
2714 if constexpr (__unique_keys::value)
2716 _M_erase(__bkt, __prev_n, __n);
2720 return _M_erase_some(__bkt, __prev_n, __n);
2723#pragma GCC diagnostic pop
2725 template<
typename _Key,
typename _Value,
typename _Alloc,
2726 typename _ExtractKey,
typename _Equal,
2727 typename _Hash,
typename _RangeHash,
typename _Unused,
2728 typename _RehashPolicy,
typename _Traits>
2730 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2731 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2732 erase(const_iterator __first, const_iterator __last)
2735 __node_ptr __n = __first._M_cur;
2736 __node_ptr __last_n = __last._M_cur;
2737 if (__n == __last_n)
2738 return iterator(__n);
2740 std::size_t __bkt = _M_bucket_index(*__n);
2742 __node_base_ptr __prev_n = _M_get_previous_node(__bkt, __n);
2743 bool __is_bucket_begin = __n == _M_bucket_begin(__bkt);
2744 std::size_t __n_bkt = __bkt;
2749 __node_ptr __tmp = __n;
2750 __n = __n->_M_next();
2751 this->_M_deallocate_node(__tmp);
2755 __n_bkt = _M_bucket_index(*__n);
2757 while (__n != __last_n && __n_bkt == __bkt);
2758 if (__is_bucket_begin)
2759 _M_remove_bucket_begin(__bkt, __n, __n_bkt);
2760 if (__n == __last_n)
2762 __is_bucket_begin =
true;
2766 if (__n && (__n_bkt != __bkt || __is_bucket_begin))
2767 _M_buckets[__n_bkt] = __prev_n;
2768 __prev_n->_M_nxt = __n;
2769 return iterator(__n);
2772 template<
typename _Key,
typename _Value,
typename _Alloc,
2773 typename _ExtractKey,
typename _Equal,
2774 typename _Hash,
typename _RangeHash,
typename _Unused,
2775 typename _RehashPolicy,
typename _Traits>
2777 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2778 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2781 this->_M_deallocate_nodes(_M_begin());
2782 std::fill_n(_M_buckets, _M_bucket_count,
nullptr);
2783 _M_element_count = 0;
2784 _M_before_begin._M_nxt =
nullptr;
2787 template<
typename _Key,
typename _Value,
typename _Alloc,
2788 typename _ExtractKey,
typename _Equal,
2789 typename _Hash,
typename _RangeHash,
typename _Unused,
2790 typename _RehashPolicy,
typename _Traits>
2792 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2793 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2794 rehash(size_type __bkt_count)
2796 __rehash_guard_t __rehash_guard(_M_rehash_policy);
2798 =
std::max(_M_rehash_policy._M_bkt_for_elements(_M_element_count + 1),
2800 __bkt_count = _M_rehash_policy._M_next_bkt(__bkt_count);
2802 if (__bkt_count != _M_bucket_count)
2804 _M_rehash(__bkt_count, __unique_keys{});
2805 __rehash_guard._M_guarded_obj =
nullptr;
2810 template<
typename _Key,
typename _Value,
typename _Alloc,
2811 typename _ExtractKey,
typename _Equal,
2812 typename _Hash,
typename _RangeHash,
typename _Unused,
2813 typename _RehashPolicy,
typename _Traits>
2815 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2816 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2817 _M_rehash(size_type __bkt_count, true_type )
2819 __buckets_ptr __new_buckets = _M_allocate_buckets(__bkt_count);
2820 __node_ptr __p = _M_begin();
2821 _M_before_begin._M_nxt =
nullptr;
2822 std::size_t __bbegin_bkt = 0;
2825 __node_ptr __next = __p->_M_next();
2827 = __hash_code_base::_M_bucket_index(*__p, __bkt_count);
2828 if (!__new_buckets[__bkt])
2830 __p->_M_nxt = _M_before_begin._M_nxt;
2831 _M_before_begin._M_nxt = __p;
2832 __new_buckets[__bkt] = &_M_before_begin;
2834 __new_buckets[__bbegin_bkt] = __p;
2835 __bbegin_bkt = __bkt;
2839 __p->_M_nxt = __new_buckets[__bkt]->_M_nxt;
2840 __new_buckets[__bkt]->_M_nxt = __p;
2846 _M_deallocate_buckets();
2847 _M_bucket_count = __bkt_count;
2848 _M_buckets = __new_buckets;
2853 template<
typename _Key,
typename _Value,
typename _Alloc,
2854 typename _ExtractKey,
typename _Equal,
2855 typename _Hash,
typename _RangeHash,
typename _Unused,
2856 typename _RehashPolicy,
typename _Traits>
2858 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2859 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2860 _M_rehash(size_type __bkt_count, false_type )
2862 __buckets_ptr __new_buckets = _M_allocate_buckets(__bkt_count);
2863 __node_ptr __p = _M_begin();
2864 _M_before_begin._M_nxt =
nullptr;
2865 std::size_t __bbegin_bkt = 0;
2866 std::size_t __prev_bkt = 0;
2867 __node_ptr __prev_p =
nullptr;
2868 bool __check_bucket =
false;
2872 __node_ptr __next = __p->_M_next();
2874 = __hash_code_base::_M_bucket_index(*__p, __bkt_count);
2876 if (__prev_p && __prev_bkt == __bkt)
2881 __p->_M_nxt = __prev_p->_M_nxt;
2882 __prev_p->_M_nxt = __p;
2889 __check_bucket =
true;
2897 if (__prev_p->_M_nxt)
2899 std::size_t __next_bkt
2900 = __hash_code_base::_M_bucket_index(
2901 *__prev_p->_M_next(), __bkt_count);
2902 if (__next_bkt != __prev_bkt)
2903 __new_buckets[__next_bkt] = __prev_p;
2905 __check_bucket =
false;
2908 if (!__new_buckets[__bkt])
2910 __p->_M_nxt = _M_before_begin._M_nxt;
2911 _M_before_begin._M_nxt = __p;
2912 __new_buckets[__bkt] = &_M_before_begin;
2914 __new_buckets[__bbegin_bkt] = __p;
2915 __bbegin_bkt = __bkt;
2919 __p->_M_nxt = __new_buckets[__bkt]->_M_nxt;
2920 __new_buckets[__bkt]->_M_nxt = __p;
2928 if (__check_bucket && __prev_p->_M_nxt)
2930 std::size_t __next_bkt
2931 = __hash_code_base::_M_bucket_index(*__prev_p->_M_next(),
2933 if (__next_bkt != __prev_bkt)
2934 __new_buckets[__next_bkt] = __prev_p;
2937 _M_deallocate_buckets();
2938 _M_bucket_count = __bkt_count;
2939 _M_buckets = __new_buckets;
2942#pragma GCC diagnostic push
2943#pragma GCC diagnostic ignored "-Wc++17-extensions"
2948 template<
typename _Key,
typename _Value,
typename _Alloc,
2949 typename _ExtractKey,
typename _Equal,
2950 typename _Hash,
typename _RangeHash,
typename _Unused,
2951 typename _RehashPolicy,
typename _Traits>
2953 _Hashtable<_Key, _Value, _Alloc, _ExtractKey, _Equal,
2954 _Hash, _RangeHash, _Unused, _RehashPolicy, _Traits>::
2955 _M_equal(
const _Hashtable& __other)
const
2957 if (size() != __other.size())
2960 if constexpr (__unique_keys::value)
2961 for (
auto __x_n = _M_begin(); __x_n; __x_n = __x_n->_M_next())
2963 std::size_t __ybkt = __other._M_bucket_index_ext(*__x_n);
2964 auto __prev_n = __other._M_buckets[__ybkt];
2968 for (__node_ptr __n =
static_cast<__node_ptr
>(__prev_n->_M_nxt);;
2969 __n = __n->_M_next())
2971 if (__n->_M_v() == __x_n->_M_v())
2975 || __other._M_bucket_index(*__n->_M_next()) != __ybkt)
2980 for (
auto __x_n = _M_begin(); __x_n;)
2982 std::size_t __x_count = 1;
2983 auto __x_n_end = __x_n->_M_next();
2985 && key_eq()(_ExtractKey{}(__x_n->_M_v()),
2986 _ExtractKey{}(__x_n_end->_M_v()));
2987 __x_n_end = __x_n_end->_M_next())
2990 std::size_t __ybkt = __other._M_bucket_index_ext(*__x_n);
2991 auto __y_prev_n = __other._M_buckets[__ybkt];
2995 __node_ptr __y_n =
static_cast<__node_ptr
>(__y_prev_n->_M_nxt);
2998 if (key_eq()(_ExtractKey{}(__y_n->_M_v()),
2999 _ExtractKey{}(__x_n->_M_v())))
3002 auto __y_ref_n = __y_n;
3003 for (__y_n = __y_n->_M_next(); __y_n; __y_n = __y_n->_M_next())
3004 if (!__other._M_node_equals(*__y_ref_n, *__y_n))
3007 if (!__y_n || __other._M_bucket_index(*__y_n) != __ybkt)
3011 auto __y_n_end = __y_n;
3012 for (; __y_n_end; __y_n_end = __y_n_end->_M_next())
3013 if (--__x_count == 0)
3019 const_iterator __itx(__x_n), __itx_end(__x_n_end);
3020 const_iterator __ity(__y_n);
3021 if (!std::is_permutation(__itx, __itx_end, __ity))
3029#pragma GCC diagnostic pop
3031#ifdef __glibcxx_node_extract
3032 template<
typename,
typename,
typename>
class _Hash_merge_helper { };
3035#if __cpp_deduction_guides >= 201606
3037 template<
typename _Hash>
3038 using _RequireNotAllocatorOrIntegral
3039 = __enable_if_t<!__or_<is_integral<_Hash>, __is_allocator<_Hash>>::value>;
3042#ifdef __glibcxx_associative_heterogeneous_erasure
3043template <
typename _Kt,
typename _Container>
3044 concept __heterogeneous_hash_key =
3045 __transparent_comparator<typename _Container::hasher> &&
3046 __transparent_comparator<typename _Container::key_equal> &&
3047 __heterogeneous_key<_Kt, _Container>;
3051_GLIBCXX_END_NAMESPACE_VERSION
3054#pragma GCC diagnostic pop
__bool_constant< true > true_type
The type used as a compile-time boolean with true value.
pair(_T1, _T2) -> pair< _T1, _T2 >
Two pairs are equal iff their members are equal.
auto declval() noexcept -> decltype(__declval< _Tp >(0))
constexpr tuple< _Elements &&... > forward_as_tuple(_Elements &&... __args) noexcept
Create a tuple of lvalue or rvalue references to the arguments.
constexpr std::remove_reference< _Tp >::type && move(_Tp &&__t) noexcept
Convert a value to an rvalue.
constexpr piecewise_construct_t piecewise_construct
Tag for piecewise construction of std::pair objects.
constexpr _Tp * __addressof(_Tp &__r) noexcept
Same as C++11 std::addressof.
constexpr _Tp && forward(typename std::remove_reference< _Tp >::type &__t) noexcept
Forward an lvalue.
constexpr const _Tp & max(const _Tp &, const _Tp &)
This does what you think it does.
ISO C++ entities toplevel namespace is std.
constexpr iterator_traits< _InputIterator >::difference_type distance(_InputIterator __first, _InputIterator __last)
A generalization of pointer arithmetic.
Struct holding two objects of arbitrary type.
_T1 first
The first member.
_T2 second
The second member.