- tmp/tmpawsqkqau/{from.md → to.md} +253 -69
tmp/tmpawsqkqau/{from.md → to.md}
RENAMED
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@@ -12,46 +12,47 @@ an unordered associative container, and of an allocator-aware container
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(Table [[tab:containers.allocatoraware]]). It provides the operations
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described in the preceding requirements table for unique keys; that is,
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an `unordered_map` supports the `a_uniq` operations in that table, not
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the `a_eq` operations. For an `unordered_map<Key, T>` the `key type` is
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`Key`, the mapped type is `T`, and the value type is
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-
`
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This section only describes operations on `unordered_map` that are not
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described in one of the requirement tables, or for which there is
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additional semantic information.
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``` cpp
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namespace std {
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template <class Key,
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class T,
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class Hash = hash<Key>,
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class Pred
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class Allocator =
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class unordered_map
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{
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public:
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// types
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// construct/
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unordered_map();
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explicit unordered_map(size_type n,
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const hasher& hf = hasher(),
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const key_equal& eql = key_equal(),
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const allocator_type& a = allocator_type());
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@@ -64,12 +65,12 @@ namespace std {
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unordered_map(const unordered_map&);
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unordered_map(unordered_map&&);
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explicit unordered_map(const Allocator&);
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unordered_map(const unordered_map&, const Allocator&);
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unordered_map(unordered_map&&, const Allocator&);
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unordered_map(initializer_list<value_type>,
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const hasher& hf = hasher(),
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const key_equal& eql = key_equal(),
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const allocator_type& a = allocator_type());
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unordered_map(size_type n, const allocator_type& a)
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: unordered_map(n, hasher(), key_equal(), a) { }
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@@ -87,61 +88,101 @@ namespace std {
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unordered_map(initializer_list<value_type> il, size_type n, const hasher& hf,
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const allocator_type& a)
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: unordered_map(il, n, hf, key_equal(), a) { }
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~unordered_map();
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unordered_map& operator=(const unordered_map&);
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unordered_map& operator=(unordered_map&&)
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unordered_map& operator=(initializer_list<value_type>);
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allocator_type get_allocator() const noexcept;
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//
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bool empty() const noexcept;
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size_type size() const noexcept;
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size_type max_size() const noexcept;
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-
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// iterators
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iterator begin() noexcept;
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const_iterator begin() const noexcept;
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iterator end() noexcept;
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const_iterator end() const noexcept;
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const_iterator cbegin() const noexcept;
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const_iterator cend() const noexcept;
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//
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template <class... Args> pair<iterator, bool> emplace(Args&&... args);
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template <class... Args> iterator emplace_hint(const_iterator position, Args&&... args);
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pair<iterator, bool> insert(const value_type& obj);
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template <class P> pair<iterator, bool> insert(P&& obj);
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iterator insert(const_iterator hint, const value_type& obj);
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template <class P> iterator insert(const_iterator hint, P&& obj);
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template <class InputIterator> void insert(InputIterator first, InputIterator last);
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void insert(initializer_list<value_type>);
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iterator erase(const_iterator position);
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size_type erase(const key_type& k);
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iterator erase(const_iterator first, const_iterator last);
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void clear() noexcept;
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-
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// observers
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hasher hash_function() const;
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key_equal key_eq() const;
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//
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iterator find(const key_type& k);
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const_iterator find(const key_type& k) const;
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size_type count(const key_type& k) const;
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-
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-
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mapped_type& operator[](const key_type& k);
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mapped_type& operator[](key_type&& k);
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mapped_type& at(const key_type& k);
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const mapped_type& at(const key_type& k) const;
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// bucket interface
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size_type bucket_count() const noexcept;
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size_type max_bucket_count() const noexcept;
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size_type bucket_size(size_type n) const;
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size_type bucket(const key_type& k) const;
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local_iterator begin(size_type n);
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@@ -149,31 +190,84 @@ namespace std {
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local_iterator end(size_type n);
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const_local_iterator end(size_type n) const;
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const_local_iterator cbegin(size_type n) const;
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const_local_iterator cend(size_type n) const;
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// hash policy
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float load_factor() const noexcept;
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float max_load_factor() const noexcept;
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void max_load_factor(float z);
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void rehash(size_type n);
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void reserve(size_type n);
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};
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template
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-
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-
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template <class Key, class T, class Hash, class Pred, class Alloc>
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bool operator==(const unordered_map<Key, T, Hash, Pred, Alloc>& a,
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const unordered_map<Key, T, Hash, Pred, Alloc>& b);
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template <class Key, class T, class Hash, class Pred, class Alloc>
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bool operator!=(const unordered_map<Key, T, Hash, Pred, Alloc>& a,
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const unordered_map<Key, T, Hash, Pred, Alloc>& b);
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}
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```
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#### `unordered_map` constructors <a id="unord.map.cnstr">[[unord.map.cnstr]]</a>
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``` cpp
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unordered_map() : unordered_map(size_type(see below)) { }
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explicit unordered_map(size_type n,
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@@ -181,53 +275,52 @@ explicit unordered_map(size_type n,
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const key_equal& eql = key_equal(),
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const allocator_type& a = allocator_type());
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```
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*Effects:* Constructs an empty `unordered_map` using the specified hash
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function, key equality
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buckets. For the default constructor, the number of buckets is
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*implementation-defined*. `max_load_factor()` returns 1.0.
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*Complexity:* Constant.
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``` cpp
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template <class InputIterator>
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unordered_map(InputIterator f, InputIterator l,
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size_type n = see below,
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const hasher& hf = hasher(),
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const key_equal& eql = key_equal(),
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const allocator_type& a = allocator_type());
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```
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*Effects:* Constructs an empty `unordered_map` using the specified hash
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function, key equality
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buckets. If
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*implementation-defined*. Then inserts elements from the range
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`
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*Complexity:* Average case linear, worst case quadratic.
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#### `unordered_map` element access <a id="unord.map.elem">[[unord.map.elem]]</a>
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``` cpp
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mapped_type& operator[](const key_type& k);
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mapped_type& operator[](key_type&& k);
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```
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*
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the first operator, `key_type` shall be `CopyInsertable` into `*this`.
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For the second operator, `key_type` shall be `MoveConstructible`.
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-
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*Effects:* If the `unordered_map` does not already contain an element
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whose key is equivalent to *`k`*, the first operator inserts the value
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`value_type(k, mapped_type())` and the second operator inserts the value
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`value_type(std::move(k), mapped_type())`.
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*Returns:* A reference to `x.second`, where `x` is the (unique) element
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whose key is equivalent to *`k`*.
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-
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*Complexity:* Average case 𝑂(1), worst case 𝑂(`size()`).
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``` cpp
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mapped_type& at(const key_type& k);
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const mapped_type& at(const key_type& k) const;
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```
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@@ -243,31 +336,122 @@ is present.
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``` cpp
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template <class P>
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pair<iterator, bool> insert(P&& obj);
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```
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*Effects:* Equivalent to `return emplace(std::forward<P>(obj))`
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*Remarks:* This signature shall not participate in overload resolution
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unless `
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``` cpp
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template <class P>
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iterator insert(const_iterator hint, P&& obj);
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```
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*Effects:* Equivalent to
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`return emplace_hint(hint, std::forward<P>(obj))`
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*Remarks:* This signature shall not participate in overload resolution
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unless `
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#### `unordered_map` swap <a id="unord.map.swap">[[unord.map.swap]]</a>
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``` cpp
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template <class Key, class T, class Hash, class Pred, class Alloc>
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void swap(unordered_map<Key, T, Hash, Pred, Alloc>& x,
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-
unordered_map<Key, T, Hash, Pred, Alloc>& y)
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```
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*Effects:* `x.swap(y)`.
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(Table [[tab:containers.allocatoraware]]). It provides the operations
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described in the preceding requirements table for unique keys; that is,
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an `unordered_map` supports the `a_uniq` operations in that table, not
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the `a_eq` operations. For an `unordered_map<Key, T>` the `key type` is
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`Key`, the mapped type is `T`, and the value type is
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+
`pair<const Key, T>`.
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| 18 |
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| 19 |
This section only describes operations on `unordered_map` that are not
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| 20 |
described in one of the requirement tables, or for which there is
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additional semantic information.
|
| 22 |
|
| 23 |
``` cpp
|
| 24 |
namespace std {
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| 25 |
template <class Key,
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| 26 |
class T,
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| 27 |
class Hash = hash<Key>,
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| 28 |
+
class Pred = equal_to<Key>,
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| 29 |
+
class Allocator = allocator<pair<const Key, T>>>
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| 30 |
+
class unordered_map {
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public:
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| 32 |
+
// types:
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+
using key_type = Key;
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+
using mapped_type = T;
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+
using value_type = pair<const Key, T>;
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+
using hasher = Hash;
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+
using key_equal = Pred;
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+
using allocator_type = Allocator;
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+
using pointer = typename allocator_traits<Allocator>::pointer;
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+
using const_pointer = typename allocator_traits<Allocator>::const_pointer;
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+
using reference = value_type&;
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+
using const_reference = const value_type&;
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+
using size_type = implementation-defined; // see [container.requirements]
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+
using difference_type = implementation-defined; // see [container.requirements]
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+
using iterator = implementation-defined // type of unordered_map::iterator; // see [container.requirements]
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+
using const_iterator = implementation-defined // type of unordered_map::const_iterator; // see [container.requirements]
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+
using local_iterator = implementation-defined // type of unordered_map::local_iterator; // see [container.requirements]
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+
using const_local_iterator = implementation-defined // type of unordered_map::const_local_iterator; // see [container.requirements]
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+
using node_type = unspecified;
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| 51 |
+
using insert_return_type = INSERT_RETURN_TYPE<iterator, node_type>;
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| 52 |
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+
// [unord.map.cnstr], construct/copy/destroy
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| 54 |
unordered_map();
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| 55 |
explicit unordered_map(size_type n,
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const hasher& hf = hasher(),
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| 57 |
const key_equal& eql = key_equal(),
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| 58 |
const allocator_type& a = allocator_type());
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unordered_map(const unordered_map&);
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unordered_map(unordered_map&&);
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explicit unordered_map(const Allocator&);
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unordered_map(const unordered_map&, const Allocator&);
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unordered_map(unordered_map&&, const Allocator&);
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+
unordered_map(initializer_list<value_type> il,
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+
size_type n = see below,
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| 72 |
const hasher& hf = hasher(),
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| 73 |
const key_equal& eql = key_equal(),
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const allocator_type& a = allocator_type());
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unordered_map(size_type n, const allocator_type& a)
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: unordered_map(n, hasher(), key_equal(), a) { }
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unordered_map(initializer_list<value_type> il, size_type n, const hasher& hf,
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| 89 |
const allocator_type& a)
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| 90 |
: unordered_map(il, n, hf, key_equal(), a) { }
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| 91 |
~unordered_map();
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| 92 |
unordered_map& operator=(const unordered_map&);
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| 93 |
+
unordered_map& operator=(unordered_map&&)
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| 94 |
+
noexcept(allocator_traits<Allocator>::is_always_equal::value &&
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| 95 |
+
is_nothrow_move_assignable_v<Hash> &&
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| 96 |
+
is_nothrow_move_assignable_v<Pred>);
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| 97 |
unordered_map& operator=(initializer_list<value_type>);
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| 98 |
allocator_type get_allocator() const noexcept;
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| 99 |
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| 100 |
+
// iterators:
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iterator begin() noexcept;
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| 102 |
const_iterator begin() const noexcept;
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| 103 |
iterator end() noexcept;
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| 104 |
const_iterator end() const noexcept;
|
| 105 |
const_iterator cbegin() const noexcept;
|
| 106 |
const_iterator cend() const noexcept;
|
| 107 |
|
| 108 |
+
// capacity:
|
| 109 |
+
bool empty() const noexcept;
|
| 110 |
+
size_type size() const noexcept;
|
| 111 |
+
size_type max_size() const noexcept;
|
| 112 |
+
|
| 113 |
+
// [unord.map.modifiers], modifiers
|
| 114 |
template <class... Args> pair<iterator, bool> emplace(Args&&... args);
|
| 115 |
template <class... Args> iterator emplace_hint(const_iterator position, Args&&... args);
|
| 116 |
pair<iterator, bool> insert(const value_type& obj);
|
| 117 |
+
pair<iterator, bool> insert(value_type&& obj);
|
| 118 |
template <class P> pair<iterator, bool> insert(P&& obj);
|
| 119 |
iterator insert(const_iterator hint, const value_type& obj);
|
| 120 |
+
iterator insert(const_iterator hint, value_type&& obj);
|
| 121 |
template <class P> iterator insert(const_iterator hint, P&& obj);
|
| 122 |
template <class InputIterator> void insert(InputIterator first, InputIterator last);
|
| 123 |
void insert(initializer_list<value_type>);
|
| 124 |
|
| 125 |
+
node_type extract(const_iterator position);
|
| 126 |
+
node_type extract(const key_type& x);
|
| 127 |
+
insert_return_type insert(node_type&& nh);
|
| 128 |
+
iterator insert(const_iterator hint, node_type&& nh);
|
| 129 |
+
|
| 130 |
+
template <class... Args>
|
| 131 |
+
pair<iterator, bool> try_emplace(const key_type& k, Args&&... args);
|
| 132 |
+
template <class... Args>
|
| 133 |
+
pair<iterator, bool> try_emplace(key_type&& k, Args&&... args);
|
| 134 |
+
template <class... Args>
|
| 135 |
+
iterator try_emplace(const_iterator hint, const key_type& k, Args&&... args);
|
| 136 |
+
template <class... Args>
|
| 137 |
+
iterator try_emplace(const_iterator hint, key_type&& k, Args&&... args);
|
| 138 |
+
template <class M>
|
| 139 |
+
pair<iterator, bool> insert_or_assign(const key_type& k, M&& obj);
|
| 140 |
+
template <class M>
|
| 141 |
+
pair<iterator, bool> insert_or_assign(key_type&& k, M&& obj);
|
| 142 |
+
template <class M>
|
| 143 |
+
iterator insert_or_assign(const_iterator hint, const key_type& k, M&& obj);
|
| 144 |
+
template <class M>
|
| 145 |
+
iterator insert_or_assign(const_iterator hint, key_type&& k, M&& obj);
|
| 146 |
+
|
| 147 |
+
iterator erase(iterator position);
|
| 148 |
iterator erase(const_iterator position);
|
| 149 |
size_type erase(const key_type& k);
|
| 150 |
iterator erase(const_iterator first, const_iterator last);
|
| 151 |
+
void swap(unordered_map&)
|
| 152 |
+
noexcept(allocator_traits<Allocator>::is_always_equal::value &&
|
| 153 |
+
is_nothrow_swappable_v<Hash> &&
|
| 154 |
+
is_nothrow_swappable_v<Pred>);
|
| 155 |
void clear() noexcept;
|
| 156 |
|
| 157 |
+
template<class H2, class P2>
|
| 158 |
+
void merge(unordered_map<Key, T, H2, P2, Allocator>& source);
|
| 159 |
+
template<class H2, class P2>
|
| 160 |
+
void merge(unordered_map<Key, T, H2, P2, Allocator>&& source);
|
| 161 |
+
template<class H2, class P2>
|
| 162 |
+
void merge(unordered_multimap<Key, T, H2, P2, Allocator>& source);
|
| 163 |
+
template<class H2, class P2>
|
| 164 |
+
void merge(unordered_multimap<Key, T, H2, P2, Allocator>&& source);
|
| 165 |
|
| 166 |
+
// observers:
|
| 167 |
hasher hash_function() const;
|
| 168 |
key_equal key_eq() const;
|
| 169 |
|
| 170 |
+
// map operations:
|
| 171 |
iterator find(const key_type& k);
|
| 172 |
const_iterator find(const key_type& k) const;
|
| 173 |
size_type count(const key_type& k) const;
|
| 174 |
+
pair<iterator, iterator> equal_range(const key_type& k);
|
| 175 |
+
pair<const_iterator, const_iterator> equal_range(const key_type& k) const;
|
| 176 |
|
| 177 |
+
// [unord.map.elem], element access
|
| 178 |
mapped_type& operator[](const key_type& k);
|
| 179 |
mapped_type& operator[](key_type&& k);
|
| 180 |
mapped_type& at(const key_type& k);
|
| 181 |
const mapped_type& at(const key_type& k) const;
|
| 182 |
|
| 183 |
+
// bucket interface:
|
| 184 |
size_type bucket_count() const noexcept;
|
| 185 |
size_type max_bucket_count() const noexcept;
|
| 186 |
size_type bucket_size(size_type n) const;
|
| 187 |
size_type bucket(const key_type& k) const;
|
| 188 |
local_iterator begin(size_type n);
|
|
|
|
| 190 |
local_iterator end(size_type n);
|
| 191 |
const_local_iterator end(size_type n) const;
|
| 192 |
const_local_iterator cbegin(size_type n) const;
|
| 193 |
const_local_iterator cend(size_type n) const;
|
| 194 |
|
| 195 |
+
// hash policy:
|
| 196 |
float load_factor() const noexcept;
|
| 197 |
float max_load_factor() const noexcept;
|
| 198 |
void max_load_factor(float z);
|
| 199 |
void rehash(size_type n);
|
| 200 |
void reserve(size_type n);
|
| 201 |
};
|
| 202 |
|
| 203 |
+
template<class InputIterator,
|
| 204 |
+
class Hash = hash<iter_key_t<InputIterator>>,
|
| 205 |
+
class Pred = equal_to<iter_key_t<InputIterator>>,
|
| 206 |
+
class Allocator = allocator<iter_to_alloc_t<InputIterator>>>
|
| 207 |
+
unordered_map(InputIterator, InputIterator, typename see below::size_type = see below,
|
| 208 |
+
Hash = Hash(), Pred = Pred(), Allocator = Allocator())
|
| 209 |
+
-> unordered_map<iter_key_t<InputIterator>, iter_value_t<InputIterator>, Hash, Pred,
|
| 210 |
+
Allocator>;
|
| 211 |
+
|
| 212 |
+
template<class Key, class T, class Hash = hash<Key>,
|
| 213 |
+
class Pred = equal_to<Key>, class Allocator = allocator<pair<const Key, T>>>
|
| 214 |
+
unordered_map(initializer_list<pair<const Key, T>>,
|
| 215 |
+
typename see below::size_type = see below, Hash = Hash(),
|
| 216 |
+
Pred = Pred(), Allocator = Allocator())
|
| 217 |
+
-> unordered_map<Key, T, Hash, Pred, Allocator>;
|
| 218 |
+
|
| 219 |
+
template<class InputIterator, class Allocator>
|
| 220 |
+
unordered_map(InputIterator, InputIterator, typename see below::size_type, Allocator)
|
| 221 |
+
-> unordered_map<iter_key_t<InputIterator>, iter_val_t<InputIterator>,
|
| 222 |
+
hash<iter_key_t<InputIterator>>, equal_to<iter_key_t<InputIterator>>,
|
| 223 |
+
Allocator>;
|
| 224 |
+
|
| 225 |
+
template<class InputIterator, class Allocator>
|
| 226 |
+
unordered_map(InputIterator, InputIterator, Allocator)
|
| 227 |
+
-> unordered_map<iter_key_t<InputIterator>, iter_val_t<InputIterator>,
|
| 228 |
+
hash<iter_key_t<InputIterator>>, equal_to<iter_key_t<InputIterator>>,
|
| 229 |
+
Allocator>;
|
| 230 |
+
|
| 231 |
+
template<class InputIterator, class Hash, class Allocator>
|
| 232 |
+
unordered_map(InputIterator, InputIterator, typename see below::size_type, Hash, Allocator)
|
| 233 |
+
-> unordered_map<iter_key_t<InputIterator>, iter_val_t<InputIterator>, Hash,
|
| 234 |
+
equal_to<iter_key_t<InputIterator>>, Allocator>;
|
| 235 |
+
|
| 236 |
+
template<class Key, class T, typename Allocator>
|
| 237 |
+
unordered_map(initializer_list<pair<const Key, T>>, typename see below::size_type,
|
| 238 |
+
Allocator)
|
| 239 |
+
-> unordered_map<Key, T, hash<Key>, equal_to<Key>, Allocator>;
|
| 240 |
+
|
| 241 |
+
template<class Key, class T, typename Allocator>
|
| 242 |
+
unordered_map(initializer_list<pair<const Key, T>>, Allocator)
|
| 243 |
+
-> unordered_map<Key, T, hash<Key>, equal_to<Key>, Allocator>;
|
| 244 |
+
|
| 245 |
+
template<class Key, class T, class Hash, class Allocator>
|
| 246 |
+
unordered_map(initializer_list<pair<const Key, T>>, typename see below::size_type, Hash,
|
| 247 |
+
Allocator)
|
| 248 |
+
-> unordered_map<Key, T, Hash, equal_to<Key>, Allocator>;
|
| 249 |
|
| 250 |
template <class Key, class T, class Hash, class Pred, class Alloc>
|
| 251 |
bool operator==(const unordered_map<Key, T, Hash, Pred, Alloc>& a,
|
| 252 |
const unordered_map<Key, T, Hash, Pred, Alloc>& b);
|
| 253 |
template <class Key, class T, class Hash, class Pred, class Alloc>
|
| 254 |
bool operator!=(const unordered_map<Key, T, Hash, Pred, Alloc>& a,
|
| 255 |
const unordered_map<Key, T, Hash, Pred, Alloc>& b);
|
| 256 |
+
|
| 257 |
+
// [unord.map.swap], swap
|
| 258 |
+
template <class Key, class T, class Hash, class Pred, class Alloc>
|
| 259 |
+
void swap(unordered_map<Key, T, Hash, Pred, Alloc>& x,
|
| 260 |
+
unordered_map<Key, T, Hash, Pred, Alloc>& y)
|
| 261 |
+
noexcept(noexcept(x.swap(y)));
|
| 262 |
}
|
| 263 |
```
|
| 264 |
|
| 265 |
+
A `size_type` parameter type in an `unordered_map` deduction guide
|
| 266 |
+
refers to the `size_type` member type of the type deduced by the
|
| 267 |
+
deduction guide.
|
| 268 |
+
|
| 269 |
#### `unordered_map` constructors <a id="unord.map.cnstr">[[unord.map.cnstr]]</a>
|
| 270 |
|
| 271 |
``` cpp
|
| 272 |
unordered_map() : unordered_map(size_type(see below)) { }
|
| 273 |
explicit unordered_map(size_type n,
|
|
|
|
| 275 |
const key_equal& eql = key_equal(),
|
| 276 |
const allocator_type& a = allocator_type());
|
| 277 |
```
|
| 278 |
|
| 279 |
*Effects:* Constructs an empty `unordered_map` using the specified hash
|
| 280 |
+
function, key equality predicate, and allocator, and using at least `n`
|
| 281 |
buckets. For the default constructor, the number of buckets is
|
| 282 |
+
*implementation-defined*. `max_load_factor()` returns `1.0`.
|
| 283 |
|
| 284 |
*Complexity:* Constant.
|
| 285 |
|
| 286 |
``` cpp
|
| 287 |
template <class InputIterator>
|
| 288 |
unordered_map(InputIterator f, InputIterator l,
|
| 289 |
size_type n = see below,
|
| 290 |
const hasher& hf = hasher(),
|
| 291 |
const key_equal& eql = key_equal(),
|
| 292 |
const allocator_type& a = allocator_type());
|
| 293 |
+
unordered_map(initializer_list<value_type> il,
|
| 294 |
+
size_type n = see below,
|
| 295 |
+
const hasher& hf = hasher(),
|
| 296 |
+
const key_equal& eql = key_equal(),
|
| 297 |
+
const allocator_type& a = allocator_type());
|
| 298 |
```
|
| 299 |
|
| 300 |
*Effects:* Constructs an empty `unordered_map` using the specified hash
|
| 301 |
+
function, key equality predicate, and allocator, and using at least `n`
|
| 302 |
+
buckets. If `n` is not provided, the number of buckets is
|
| 303 |
+
*implementation-defined*. Then inserts elements from the range \[`f`,
|
| 304 |
+
`l`) for the first form, or from the range \[`il.begin()`, `il.end()`)
|
| 305 |
+
for the second form. `max_load_factor()` returns `1.0`.
|
| 306 |
|
| 307 |
*Complexity:* Average case linear, worst case quadratic.
|
| 308 |
|
| 309 |
#### `unordered_map` element access <a id="unord.map.elem">[[unord.map.elem]]</a>
|
| 310 |
|
| 311 |
``` cpp
|
| 312 |
mapped_type& operator[](const key_type& k);
|
| 313 |
+
```
|
| 314 |
+
|
| 315 |
+
*Effects:* Equivalent to: `return try_emplace(k).first->second;`
|
| 316 |
+
|
| 317 |
+
``` cpp
|
| 318 |
mapped_type& operator[](key_type&& k);
|
| 319 |
```
|
| 320 |
|
| 321 |
+
*Effects:* Equivalent to: `return try_emplace(move(k)).first->second;`
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| 322 |
|
| 323 |
``` cpp
|
| 324 |
mapped_type& at(const key_type& k);
|
| 325 |
const mapped_type& at(const key_type& k) const;
|
| 326 |
```
|
|
|
|
| 336 |
``` cpp
|
| 337 |
template <class P>
|
| 338 |
pair<iterator, bool> insert(P&& obj);
|
| 339 |
```
|
| 340 |
|
| 341 |
+
*Effects:* Equivalent to: `return emplace(std::forward<P>(obj));`
|
| 342 |
|
| 343 |
*Remarks:* This signature shall not participate in overload resolution
|
| 344 |
+
unless `is_constructible_v<value_type, P&&>` is `true`.
|
| 345 |
|
| 346 |
``` cpp
|
| 347 |
template <class P>
|
| 348 |
iterator insert(const_iterator hint, P&& obj);
|
| 349 |
```
|
| 350 |
|
| 351 |
+
*Effects:* Equivalent to:
|
| 352 |
+
`return emplace_hint(hint, std::forward<P>(obj));`
|
| 353 |
|
| 354 |
*Remarks:* This signature shall not participate in overload resolution
|
| 355 |
+
unless `is_constructible_v<value_type, P&&>` is `true`.
|
| 356 |
+
|
| 357 |
+
``` cpp
|
| 358 |
+
template <class... Args>
|
| 359 |
+
pair<iterator, bool> try_emplace(const key_type& k, Args&&... args);
|
| 360 |
+
template <class... Args>
|
| 361 |
+
iterator try_emplace(const_iterator hint, const key_type& k, Args&&... args);
|
| 362 |
+
```
|
| 363 |
+
|
| 364 |
+
*Requires:* `value_type` shall be `EmplaceConstructible` into
|
| 365 |
+
`unordered_map` from `piecewise_construct`, `forward_as_tuple(k)`,
|
| 366 |
+
`forward_as_tuple(std::forward<Args>(args)...)`.
|
| 367 |
+
|
| 368 |
+
*Effects:* If the map already contains an element whose key is
|
| 369 |
+
equivalent to `k`, there is no effect. Otherwise inserts an object of
|
| 370 |
+
type `value_type` constructed with `piecewise_construct`,
|
| 371 |
+
`forward_as_tuple(k)`, `forward_as_tuple(std::forward<Args>(args)...)`.
|
| 372 |
+
|
| 373 |
+
*Returns:* In the first overload, the `bool` component of the returned
|
| 374 |
+
pair is `true` if and only if the insertion took place. The returned
|
| 375 |
+
iterator points to the map element whose key is equivalent to `k`.
|
| 376 |
+
|
| 377 |
+
*Complexity:* The same as `emplace` and `emplace_hint`, respectively.
|
| 378 |
+
|
| 379 |
+
``` cpp
|
| 380 |
+
template <class... Args>
|
| 381 |
+
pair<iterator, bool> try_emplace(key_type&& k, Args&&... args);
|
| 382 |
+
template <class... Args>
|
| 383 |
+
iterator try_emplace(const_iterator hint, key_type&& k, Args&&... args);
|
| 384 |
+
```
|
| 385 |
+
|
| 386 |
+
*Requires:* `value_type` shall be `EmplaceConstructible` into
|
| 387 |
+
`unordered_map` from `piecewise_construct`,
|
| 388 |
+
`forward_as_tuple(std::move(k))`,
|
| 389 |
+
`forward_as_tuple(std::forward<Args>(args)...)`.
|
| 390 |
+
|
| 391 |
+
*Effects:* If the map already contains an element whose key is
|
| 392 |
+
equivalent to `k`, there is no effect. Otherwise inserts an object of
|
| 393 |
+
type `value_type` constructed with `piecewise_construct`,
|
| 394 |
+
`forward_as_tuple(std::move(k))`,
|
| 395 |
+
`forward_as_tuple(std::forward<Args>(args)...)`.
|
| 396 |
+
|
| 397 |
+
*Returns:* In the first overload, the `bool` component of the returned
|
| 398 |
+
pair is `true` if and only if the insertion took place. The returned
|
| 399 |
+
iterator points to the map element whose key is equivalent to `k`.
|
| 400 |
+
|
| 401 |
+
*Complexity:* The same as `emplace` and `emplace_hint`, respectively.
|
| 402 |
+
|
| 403 |
+
``` cpp
|
| 404 |
+
template <class M>
|
| 405 |
+
pair<iterator, bool> insert_or_assign(const key_type& k, M&& obj);
|
| 406 |
+
template <class M>
|
| 407 |
+
iterator insert_or_assign(const_iterator hint, const key_type& k, M&& obj);
|
| 408 |
+
```
|
| 409 |
+
|
| 410 |
+
*Requires:* `is_assignable_v<mapped_type&, M&&>` shall be `true`.
|
| 411 |
+
`value_type` shall be `EmplaceConstructible` into `unordered_map` from
|
| 412 |
+
`k`, `std::forward<M>(obj)`.
|
| 413 |
+
|
| 414 |
+
*Effects:* If the map already contains an element `e` whose key is
|
| 415 |
+
equivalent to `k`, assigns `std::forward<M>(obj)` to `e.second`.
|
| 416 |
+
Otherwise inserts an object of type `value_type` constructed with `k`,
|
| 417 |
+
`std::forward<M>(obj)`.
|
| 418 |
+
|
| 419 |
+
*Returns:* In the first overload, the `bool` component of the returned
|
| 420 |
+
pair is `true` if and only if the insertion took place. The returned
|
| 421 |
+
iterator points to the map element whose key is equivalent to `k`.
|
| 422 |
+
|
| 423 |
+
*Complexity:* The same as `emplace` and `emplace_hint`, respectively.
|
| 424 |
+
|
| 425 |
+
``` cpp
|
| 426 |
+
template <class M>
|
| 427 |
+
pair<iterator, bool> insert_or_assign(key_type&& k, M&& obj);
|
| 428 |
+
template <class M>
|
| 429 |
+
iterator insert_or_assign(const_iterator hint, key_type&& k, M&& obj);
|
| 430 |
+
```
|
| 431 |
+
|
| 432 |
+
*Requires:* `is_assignable_v<mapped_type&, M&&>` shall be `true`.
|
| 433 |
+
`value_type` shall be `EmplaceConstructible` into `unordered_map` from
|
| 434 |
+
`std::move(k)`, `std::forward<M>(obj)`.
|
| 435 |
+
|
| 436 |
+
*Effects:* If the map already contains an element `e` whose key is
|
| 437 |
+
equivalent to `k`, assigns `std::forward<M>(obj)` to `e.second`.
|
| 438 |
+
Otherwise inserts an object of type `value_type` constructed with
|
| 439 |
+
`std::move(k)`, `std::forward<M>(obj)`.
|
| 440 |
+
|
| 441 |
+
*Returns:* In the first overload, the `bool` component of the returned
|
| 442 |
+
pair is `true` if and only if the insertion took place. The returned
|
| 443 |
+
iterator points to the map element whose key is equivalent to `k`.
|
| 444 |
+
|
| 445 |
+
*Complexity:* The same as `emplace` and `emplace_hint`, respectively.
|
| 446 |
|
| 447 |
#### `unordered_map` swap <a id="unord.map.swap">[[unord.map.swap]]</a>
|
| 448 |
|
| 449 |
``` cpp
|
| 450 |
template <class Key, class T, class Hash, class Pred, class Alloc>
|
| 451 |
void swap(unordered_map<Key, T, Hash, Pred, Alloc>& x,
|
| 452 |
+
unordered_map<Key, T, Hash, Pred, Alloc>& y)
|
| 453 |
+
noexcept(noexcept(x.swap(y)));
|
| 454 |
```
|
| 455 |
|
| 456 |
+
*Effects:* As if by `x.swap(y)`.
|
| 457 |
|