// -*- C++ -*- //===----------------------------------------------------------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// #ifndef _LIBCPP_FLAT_MAP #define _LIBCPP_FLAT_MAP /* Header synopsis #include // see [compare.syn] #include // see [initializer.list.syn] namespace std { struct sorted_unique_t { explicit sorted_unique_t() = default; }; inline constexpr sorted_unique_t sorted_unique{}; // [flat.map], class template flat_map template, class KeyContainer = vector, class MappedContainer = vector> class flat_map { public: // types using key_type = Key; using mapped_type = T; using value_type = pair; using key_compare = Compare; using reference = pair; using const_reference = pair; using size_type = size_t; using difference_type = ptrdiff_t; using iterator = implementation-defined; // see [container.requirements] using const_iterator = implementation-defined; // see [container.requirements] using reverse_iterator = std::reverse_iterator; using const_reverse_iterator = std::reverse_iterator; using key_container_type = KeyContainer; using mapped_container_type = MappedContainer; class value_compare { private: key_compare comp; // exposition only constexpr value_compare(key_compare c) : comp(c) { } // exposition only public: constexpr bool operator()(const_reference x, const_reference y) const { return comp(x.first, y.first); } }; struct containers { key_container_type keys; mapped_container_type values; }; // [flat.map.cons], constructors constexpr flat_map() : flat_map(key_compare()) { } constexpr flat_map(const flat_map&); constexpr flat_map(flat_map&&); constexpr flat_map& operator=(const flat_map&); constexpr flat_map& operator=(flat_map&&); constexpr explicit flat_map(const key_compare& comp) : c(), compare(comp) { } constexpr flat_map(key_container_type key_cont, mapped_container_type mapped_cont, const key_compare& comp = key_compare()); constexpr flat_map(sorted_unique_t, key_container_type key_cont, mapped_container_type mapped_cont, const key_compare& comp = key_compare()); template constexpr flat_map(InputIterator first, InputIterator last, const key_compare& comp = key_compare()) : c(), compare(comp) { insert(first, last); } template constexpr flat_map(sorted_unique_t, InputIterator first, InputIterator last, const key_compare& comp = key_compare()) : c(), compare(comp) { insert(sorted_unique, first, last); } template R> constexpr flat_map(from_range_t, R&& rg) : flat_map(from_range, std::forward(rg), key_compare()) { } template R> constexpr flat_map(from_range_t, R&& rg, const key_compare& comp) : flat_map(comp) { insert_range(std::forward(rg)); } constexpr flat_map(initializer_list il, const key_compare& comp = key_compare()) : flat_map(il.begin(), il.end(), comp) { } constexpr flat_map(sorted_unique_t, initializer_list il, const key_compare& comp = key_compare()) : flat_map(sorted_unique, il.begin(), il.end(), comp) { } // [flat.map.cons.alloc], constructors with allocators template constexpr explicit flat_map(const Alloc& a); template constexpr flat_map(const key_compare& comp, const Alloc& a); template constexpr flat_map(const key_container_type& key_cont, const mapped_container_type& mapped_cont, const Alloc& a); template constexpr flat_map(const key_container_type& key_cont, const mapped_container_type& mapped_cont, const key_compare& comp, const Alloc& a); template constexpr flat_map(sorted_unique_t, const key_container_type& key_cont, const mapped_container_type& mapped_cont, const Alloc& a); template constexpr flat_map(sorted_unique_t, const key_container_type& key_cont, const mapped_container_type& mapped_cont, const key_compare& comp, const Alloc& a); template constexpr flat_map(const flat_map&, const Alloc& a); template constexpr flat_map(flat_map&&, const Alloc& a); template constexpr flat_map(InputIterator first, InputIterator last, const Alloc& a); template constexpr flat_map(InputIterator first, InputIterator last, const key_compare& comp, const Alloc& a); template constexpr flat_map(sorted_unique_t, InputIterator first, InputIterator last, const Alloc& a); template constexpr flat_map(sorted_unique_t, InputIterator first, InputIterator last, const key_compare& comp, const Alloc& a); template R, class Alloc> constexpr flat_map(from_range_t, R&& rg, const Alloc& a); template R, class Alloc> constexpr flat_map(from_range_t, R&& rg, const key_compare& comp, const Alloc& a); template constexpr flat_map(initializer_list il, const Alloc& a); template constexpr flat_map(initializer_list il, const key_compare& comp, const Alloc& a); template constexpr flat_map(sorted_unique_t, initializer_list il, const Alloc& a); template constexpr flat_map(sorted_unique_t, initializer_list il, const key_compare& comp, const Alloc& a); constexpr flat_map& operator=(initializer_list); // iterators constexpr iterator begin() noexcept; constexpr const_iterator begin() const noexcept; constexpr iterator end() noexcept; constexpr const_iterator end() const noexcept; constexpr reverse_iterator rbegin() noexcept; constexpr const_reverse_iterator rbegin() const noexcept; constexpr reverse_iterator rend() noexcept; constexpr const_reverse_iterator rend() const noexcept; constexpr const_iterator cbegin() const noexcept; constexpr const_iterator cend() const noexcept; constexpr const_reverse_iterator crbegin() const noexcept; constexpr const_reverse_iterator crend() const noexcept; // [flat.map.capacity], capacity constexpr bool empty() const noexcept; constexpr size_type size() const noexcept; constexpr size_type max_size() const noexcept; // [flat.map.access], element access constexpr mapped_type& operator[](const key_type& x); constexpr mapped_type& operator[](key_type&& x); template constexpr mapped_type& operator[](K&& x); constexpr mapped_type& at(const key_type& x); constexpr const mapped_type& at(const key_type& x) const; template constexpr mapped_type& at(const K& x); template constexpr const mapped_type& at(const K& x) const; // [flat.map.modifiers], modifiers template constexpr pair emplace(Args&&... args); template constexpr iterator emplace_hint(const_iterator position, Args&&... args); constexpr pair insert(const value_type& x) { return emplace(x); } constexpr pair insert(value_type&& x) { return emplace(std::move(x)); } constexpr iterator insert(const_iterator position, const value_type& x) { return emplace_hint(position, x); } constexpr iterator insert(const_iterator position, value_type&& x) { return emplace_hint(position, std::move(x)); } template constexpr pair insert(P&& x); template constexpr iterator insert(const_iterator position, P&&); template constexpr void insert(InputIterator first, InputIterator last); template constexpr void insert(sorted_unique_t, InputIterator first, InputIterator last); template R> constexpr void insert_range(R&& rg); template R> constexpr void insert_range(sorted_unique_t, R&& rg); constexpr void insert(initializer_list il) { insert(il.begin(), il.end()); } constexpr void insert(sorted_unique_t, initializer_list il) { insert(sorted_unique, il.begin(), il.end()); } constexpr containers extract() &&; constexpr void replace(key_container_type&& key_cont, mapped_container_type&& mapped_cont); template constexpr pair try_emplace(const key_type& k, Args&&... args); template constexpr pair try_emplace(key_type&& k, Args&&... args); template constexpr pair try_emplace(K&& k, Args&&... args); template constexpr iterator try_emplace(const_iterator hint, const key_type& k, Args&&... args); template constexpr iterator try_emplace(const_iterator hint, key_type&& k, Args&&... args); template constexpr iterator try_emplace(const_iterator hint, K&& k, Args&&... args); template constexpr pair insert_or_assign(const key_type& k, M&& obj); template constexpr pair insert_or_assign(key_type&& k, M&& obj); template constexpr pair insert_or_assign(K&& k, M&& obj); template constexpr iterator insert_or_assign(const_iterator hint, const key_type& k, M&& obj); template constexpr iterator insert_or_assign(const_iterator hint, key_type&& k, M&& obj); template constexpr iterator insert_or_assign(const_iterator hint, K&& k, M&& obj); constexpr iterator erase(iterator position); constexpr iterator erase(const_iterator position); constexpr size_type erase(const key_type& x); template constexpr size_type erase(K&& x); constexpr iterator erase(const_iterator first, const_iterator last); constexpr void swap(flat_map& y) noexcept(see below); constexpr void clear() noexcept; // observers constexpr key_compare key_comp() const; constexpr value_compare value_comp() const; constexpr const key_container_type& keys() const noexcept { return c.keys; } constexpr const mapped_container_type& values() const noexcept { return c.values; } // map operations constexpr iterator find(const key_type& x); constexpr const_iterator find(const key_type& x) const; template constexpr iterator find(const K& x); template constexpr const_iterator find(const K& x) const; constexpr size_type count(const key_type& x) const; template constexpr size_type count(const K& x) const; constexpr bool contains(const key_type& x) const; template constexpr bool contains(const K& x) const; constexpr iterator lower_bound(const key_type& x); constexpr const_iterator lower_bound(const key_type& x) const; template constexpr iterator lower_bound(const K& x); template constexpr const_iterator lower_bound(const K& x) const; constexpr iterator upper_bound(const key_type& x); constexpr const_iterator upper_bound(const key_type& x) const; template constexpr iterator upper_bound(const K& x); template constexpr const_iterator upper_bound(const K& x) const; constexpr pair equal_range(const key_type& x); constexpr pair equal_range(const key_type& x) const; template constexpr pair equal_range(const K& x); template constexpr pair equal_range(const K& x) const; friend constexpr bool operator==(const flat_map& x, const flat_map& y); friend constexpr synth-three-way-result operator<=>(const flat_map& x, const flat_map& y); friend constexpr void swap(flat_map& x, flat_map& y) noexcept(noexcept(x.swap(y))) { x.swap(y); } private: containers c; // exposition only key_compare compare; // exposition only struct key-equiv { // exposition only constexpr key-equiv(key_compare c) : comp(c) { } constexpr bool operator()(const_reference x, const_reference y) const { return !comp(x.first, y.first) && !comp(y.first, x.first); } key_compare comp; }; }; template> flat_map(KeyContainer, MappedContainer, Compare = Compare()) -> flat_map; template flat_map(KeyContainer, MappedContainer, Allocator) -> flat_map, KeyContainer, MappedContainer>; template flat_map(KeyContainer, MappedContainer, Compare, Allocator) -> flat_map; template> flat_map(sorted_unique_t, KeyContainer, MappedContainer, Compare = Compare()) -> flat_map; template flat_map(sorted_unique_t, KeyContainer, MappedContainer, Allocator) -> flat_map, KeyContainer, MappedContainer>; template flat_map(sorted_unique_t, KeyContainer, MappedContainer, Compare, Allocator) -> flat_map; template>> flat_map(InputIterator, InputIterator, Compare = Compare()) -> flat_map, iter-mapped-type, Compare>; template>> flat_map(sorted_unique_t, InputIterator, InputIterator, Compare = Compare()) -> flat_map, iter-mapped-type, Compare>; template>, class Allocator = allocator> flat_map(from_range_t, R&&, Compare = Compare(), Allocator = Allocator()) -> flat_map, range-mapped-type, Compare, vector, alloc-rebind>>, vector, alloc-rebind>>>; template flat_map(from_range_t, R&&, Allocator) -> flat_map, range-mapped-type, less>, vector, alloc-rebind>>, vector, alloc-rebind>>>; template> flat_map(initializer_list>, Compare = Compare()) -> flat_map; template> flat_map(sorted_unique_t, initializer_list>, Compare = Compare()) -> flat_map; template struct uses_allocator, Allocator> : bool_constant && uses_allocator_v> { }; // [flat.map.erasure], erasure for flat_map template typename flat_map::size_type erase_if(flat_map& c, Predicate pred); struct sorted_equivalent_t { explicit sorted_equivalent_t() = default; }; inline constexpr sorted_equivalent_t sorted_equivalent{}; // [flat.multimap], class template flat_multimap template, class KeyContainer = vector, class MappedContainer = vector> class flat_multimap { public: // types using key_type = Key; using mapped_type = T; using value_type = pair; using key_compare = Compare; using reference = pair; using const_reference = pair; using size_type = size_t; using difference_type = ptrdiff_t; using iterator = implementation-defined; // see [container.requirements] using const_iterator = implementation-defined; // see [container.requirements] using reverse_iterator = std::reverse_iterator; using const_reverse_iterator = std::reverse_iterator; using key_container_type = KeyContainer; using mapped_container_type = MappedContainer; class value_compare { private: key_compare comp; // exposition only constexpr value_compare(key_compare c) : comp(c) { } // exposition only public: constexpr bool operator()(const_reference x, const_reference y) const { return comp(x.first, y.first); } }; struct containers { key_container_type keys; mapped_container_type values; }; // [flat.multimap.cons], constructors constexpr flat_multimap() : flat_multimap(key_compare()) { } constexpr flat_multimap(const flat_multimap&); constexpr flat_multimap(flat_multimap&&); constexpr flat_multimap& operator=(const flat_multimap&); constexpr flat_multimap& operator=(flat_multimap&&); constexpr explicit flat_multimap(const key_compare& comp) : c(), compare(comp) { } constexpr flat_multimap(key_container_type key_cont, mapped_container_type mapped_cont, const key_compare& comp = key_compare()); constexpr flat_multimap(sorted_equivalent_t, key_container_type key_cont, mapped_container_type mapped_cont, const key_compare& comp = key_compare()); template constexpr flat_multimap(InputIterator first, InputIterator last, const key_compare& comp = key_compare()) : c(), compare(comp) { insert(first, last); } template constexpr flat_multimap(sorted_equivalent_t, InputIterator first, InputIterator last, const key_compare& comp = key_compare()) : c(), compare(comp) { insert(sorted_equivalent, first, last); } template R> constexpr flat_multimap(from_range_t, R&& rg) : flat_multimap(from_range, std::forward(rg), key_compare()) { } template R> constexpr flat_multimap(from_range_t, R&& rg, const key_compare& comp) : flat_multimap(comp) { insert_range(std::forward(rg)); } constexpr flat_multimap(initializer_list il, const key_compare& comp = key_compare()) : flat_multimap(il.begin(), il.end(), comp) { } constexpr flat_multimap(sorted_equivalent_t, initializer_list il, const key_compare& comp = key_compare()) : flat_multimap(sorted_equivalent, il.begin(), il.end(), comp) { } // [flat.multimap.cons.alloc], constructors with allocators template constexpr explicit flat_multimap(const Alloc& a); template constexpr flat_multimap(const key_compare& comp, const Alloc& a); template constexpr flat_multimap(const key_container_type& key_cont, const mapped_container_type& mapped_cont, const Alloc& a); template constexpr flat_multimap(const key_container_type& key_cont, const mapped_container_type& mapped_cont, const key_compare& comp, const Alloc& a); template constexpr flat_multimap(sorted_equivalent_t, const key_container_type& key_cont, const mapped_container_type& mapped_cont, const Alloc& a); template constexpr flat_multimap(sorted_equivalent_t, const key_container_type& key_cont, const mapped_container_type& mapped_cont, const key_compare& comp, const Alloc& a); template constexpr flat_multimap(const flat_multimap&, const Alloc& a); template constexpr flat_multimap(flat_multimap&&, const Alloc& a); template constexpr flat_multimap(InputIterator first, InputIterator last, const Alloc& a); template constexpr flat_multimap(InputIterator first, InputIterator last, const key_compare& comp, const Alloc& a); template constexpr flat_multimap(sorted_equivalent_t, InputIterator first, InputIterator last, const Alloc& a); template constexpr flat_multimap(sorted_equivalent_t, InputIterator first, InputIterator last, const key_compare& comp, const Alloc& a); template R, class Alloc> constexpr flat_multimap(from_range_t, R&& rg, const Alloc& a); template R, class Alloc> constexpr flat_multimap(from_range_t, R&& rg, const key_compare& comp, const Alloc& a); template constexpr flat_multimap(initializer_list il, const Alloc& a); template constexpr flat_multimap(initializer_list il, const key_compare& comp, const Alloc& a); template constexpr flat_multimap(sorted_equivalent_t, initializer_list il, const Alloc& a); template constexpr flat_multimap(sorted_equivalent_t, initializer_list il, const key_compare& comp, const Alloc& a); flat_multimap& operator=(initializer_list); // iterators constexpr iterator begin() noexcept; constexpr const_iterator begin() const noexcept; constexpr iterator end() noexcept; constexpr const_iterator end() const noexcept; constexpr reverse_iterator rbegin() noexcept; constexpr const_reverse_iterator rbegin() const noexcept; constexpr reverse_iterator rend() noexcept; constexpr const_reverse_iterator rend() const noexcept; constexpr const_iterator cbegin() const noexcept; constexpr const_iterator cend() const noexcept; constexpr const_reverse_iterator crbegin() const noexcept; constexpr const_reverse_iterator crend() const noexcept; // capacity constexpr bool empty() const noexcept; constexpr size_type size() const noexcept; constexpr size_type max_size() const noexcept; // modifiers template constexpr iterator emplace(Args&&... args); template constexpr iterator emplace_hint(const_iterator position, Args&&... args); constexpr iterator insert(const value_type& x) { return emplace(x); } constexpr iterator insert(value_type&& x) { return emplace(std::move(x)); } constexpr iterator insert(const_iterator position, const value_type& x) { return emplace_hint(position, x); } constexpr iterator insert(const_iterator position, value_type&& x) { return emplace_hint(position, std::move(x)); } template constexpr iterator insert(P&& x); template constexpr iterator insert(const_iterator position, P&&); template constexpr void insert(InputIterator first, InputIterator last); template constexpr void insert(sorted_equivalent_t, InputIterator first, InputIterator last); template R> constexpr void insert_range(R&& rg); template R> constexpr void insert_range(sorted_equivalent_t, R&& rg); constexpr void insert(initializer_list il) { insert(il.begin(), il.end()); } constexpr void insert(sorted_equivalent_t, initializer_list il) { insert(sorted_equivalent, il.begin(), il.end()); } constexpr containers extract() &&; constexpr void replace(key_container_type&& key_cont, mapped_container_type&& mapped_cont); constexpr iterator erase(iterator position); constexpr iterator erase(const_iterator position); constexpr size_type erase(const key_type& x); template constexpr size_type erase(K&& x); constexpr iterator erase(const_iterator first, const_iterator last); constexpr void swap(flat_multimap&) noexcept(is_nothrow_swappable_v && is_nothrow_swappable_v && is_nothrow_swappable_v); constexpr void clear() noexcept; // observers constexpr key_compare key_comp() const; constexpr value_compare value_comp() const; constexpr const key_container_type& keys() const noexcept { return c.keys; } constexpr const mapped_container_type& values() const noexcept { return c.values; } // map operations constexpr iterator find(const key_type& x); constexpr const_iterator find(const key_type& x) const; template constexpr iterator find(const K& x); template constexpr const_iterator find(const K& x) const; constexpr size_type count(const key_type& x) const; template constexpr size_type count(const K& x) const; constexpr bool contains(const key_type& x) const; template constexpr bool contains(const K& x) const; constexpr iterator lower_bound(const key_type& x); constexpr const_iterator lower_bound(const key_type& x) const; template constexpr iterator lower_bound(const K& x); template constexpr const_iterator lower_bound(const K& x) const; constexpr iterator upper_bound(const key_type& x); constexpr const_iterator upper_bound(const key_type& x) const; template constexpr iterator upper_bound(const K& x); template constexpr const_iterator upper_bound(const K& x) const; constexpr pair equal_range(const key_type& x); constexpr pair equal_range(const key_type& x) const; template constexpr pair equal_range(const K& x); template constexpr pair equal_range(const K& x) const; friend constexpr bool operator==(const flat_multimap& x, const flat_multimap& y); friend constexpr synth-three-way-result operator<=>(const flat_multimap& x, const flat_multimap& y); friend constexpr void swap(flat_multimap& x, flat_multimap& y) noexcept(noexcept(x.swap(y))) { x.swap(y); } private: containers c; // exposition only key_compare compare; // exposition only }; template> flat_multimap(KeyContainer, MappedContainer, Compare = Compare()) -> flat_multimap; template flat_multimap(KeyContainer, MappedContainer, Allocator) -> flat_multimap, KeyContainer, MappedContainer>; template flat_multimap(KeyContainer, MappedContainer, Compare, Allocator) -> flat_multimap; template> flat_multimap(sorted_equivalent_t, KeyContainer, MappedContainer, Compare = Compare()) -> flat_multimap; template flat_multimap(sorted_equivalent_t, KeyContainer, MappedContainer, Allocator) -> flat_multimap, KeyContainer, MappedContainer>; template flat_multimap(sorted_equivalent_t, KeyContainer, MappedContainer, Compare, Allocator) -> flat_multimap; template>> flat_multimap(InputIterator, InputIterator, Compare = Compare()) -> flat_multimap, iter-mapped-type, Compare>; template>> flat_multimap(sorted_equivalent_t, InputIterator, InputIterator, Compare = Compare()) -> flat_multimap, iter-mapped-type, Compare>; template>, class Allocator = allocator> flat_multimap(from_range_t, R&&, Compare = Compare(), Allocator = Allocator()) -> flat_multimap, range-mapped-type, Compare, vector, alloc-rebind>>, vector, alloc-rebind>>>; template flat_multimap(from_range_t, R&&, Allocator) -> flat_multimap, range-mapped-type, less>, vector, alloc-rebind>>, vector, alloc-rebind>>>; template> flat_multimap(initializer_list>, Compare = Compare()) -> flat_multimap; template> flat_multimap(sorted_equivalent_t, initializer_list>, Compare = Compare()) -> flat_multimap; template struct uses_allocator, Allocator> : bool_constant && uses_allocator_v> { }; // [flat.multimap.erasure], erasure for flat_multimap template typename flat_multimap::size_type erase_if(flat_multimap& c, Predicate pred); */ #if __cplusplus < 201103L && defined(_LIBCPP_USE_FROZEN_CXX03_HEADERS) # include <__cxx03/__config> #else # include <__config> # if _LIBCPP_STD_VER >= 23 # include <__flat_map/flat_map.h> # include <__flat_map/flat_multimap.h> # include <__flat_map/sorted_equivalent.h> # include <__flat_map/sorted_unique.h> # endif // for feature-test macros # include // standard required includes // [iterator.range] # include <__iterator/access.h> # include <__iterator/data.h> # include <__iterator/empty.h> # include <__iterator/reverse_access.h> # include <__iterator/size.h> // [flat.map.syn] # include # include # if !defined(_LIBCPP_HAS_NO_PRAGMA_SYSTEM_HEADER) # pragma GCC system_header # endif #endif // __cplusplus < 201103L && defined(_LIBCPP_USE_FROZEN_CXX03_HEADERS) #endif // _LIBCPP_FLAT_MAP