⭐ 欢迎来到虫虫下载站! | 📦 资源下载 📁 资源专辑 ℹ️ 关于我们
⭐ 虫虫下载站

📄 _hash_map.h

📁 symbian 上的stl_port进过编译的。
💻 H
📖 第 1 页 / 共 2 页
字号:
#else  typedef pair<key_type, data_type> value_type;#endifprivate:  //Specific iterator traits creation  typedef _STLP_PRIV _HashMultimapTraitsT<value_type> _HashMultimapTraits;public:  typedef hashtable<value_type, key_type, _HashFcn, _HashMultimapTraits,                    _STLP_SELECT1ST(value_type,  _Key), _EqualKey, _Alloc > _Ht;  typedef typename _Ht::hasher hasher;  typedef typename _Ht::key_equal key_equal;  typedef typename _Ht::size_type size_type;  typedef typename _Ht::difference_type difference_type;  typedef typename _Ht::pointer pointer;  typedef typename _Ht::const_pointer const_pointer;  typedef typename _Ht::reference reference;  typedef typename _Ht::const_reference const_reference;  typedef typename _Ht::iterator iterator;  typedef typename _Ht::const_iterator const_iterator;  typedef typename _Ht::allocator_type allocator_type;  hasher hash_funct() const { return _M_ht.hash_funct(); }  key_equal key_eq() const { return _M_ht.key_eq(); }  allocator_type get_allocator() const { return _M_ht.get_allocator(); }private:  _Ht _M_ht;  _STLP_KEY_TYPE_FOR_CONT_EXT(key_type)public:  hash_multimap() : _M_ht(100, hasher(), key_equal(), allocator_type()) {}  explicit hash_multimap(size_type __n)    : _M_ht(__n, hasher(), key_equal(), allocator_type()) {}  hash_multimap(size_type __n, const hasher& __hf)    : _M_ht(__n, __hf, key_equal(), allocator_type()) {}  hash_multimap(size_type __n, const hasher& __hf, const key_equal& __eql,                const allocator_type& __a = allocator_type())    : _M_ht(__n, __hf, __eql, __a) {}  hash_multimap(__move_source<_Self> src)    : _M_ht(__move_source<_Ht>(src.get()._M_ht)) {  }#ifdef _STLP_MEMBER_TEMPLATES  template <class _InputIterator>  hash_multimap(_InputIterator __f, _InputIterator __l)    : _M_ht(100, hasher(), key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  template <class _InputIterator>  hash_multimap(_InputIterator __f, _InputIterator __l, size_type __n)    : _M_ht(__n, hasher(), key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  template <class _InputIterator>  hash_multimap(_InputIterator __f, _InputIterator __l, size_type __n,                const hasher& __hf)    : _M_ht(__n, __hf, key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }#  ifdef _STLP_NEEDS_EXTRA_TEMPLATE_CONSTRUCTORS  template <class _InputIterator>  hash_multimap(_InputIterator __f, _InputIterator __l, size_type __n,                const hasher& __hf, const key_equal& __eql)    : _M_ht(__n, __hf, __eql, allocator_type())    { _M_ht.insert_equal(__f, __l); }#  endif  template <class _InputIterator>  hash_multimap(_InputIterator __f, _InputIterator __l, size_type __n,                const hasher& __hf, const key_equal& __eql,                const allocator_type& __a _STLP_ALLOCATOR_TYPE_DFL)    : _M_ht(__n, __hf, __eql, __a)    { _M_ht.insert_equal(__f, __l); }#else  hash_multimap(const value_type* __f, const value_type* __l)    : _M_ht(100, hasher(), key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const value_type* __f, const value_type* __l, size_type __n)    : _M_ht(__n, hasher(), key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const value_type* __f, const value_type* __l, size_type __n,                const hasher& __hf)    : _M_ht(__n, __hf, key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const value_type* __f, const value_type* __l, size_type __n,                const hasher& __hf, const key_equal& __eql,                const allocator_type& __a = allocator_type())    : _M_ht(__n, __hf, __eql, __a)    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const_iterator __f, const_iterator __l)    : _M_ht(100, hasher(), key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const_iterator __f, const_iterator __l, size_type __n)    : _M_ht(__n, hasher(), key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const_iterator __f, const_iterator __l, size_type __n,                const hasher& __hf)    : _M_ht(__n, __hf, key_equal(), allocator_type())    { _M_ht.insert_equal(__f, __l); }  hash_multimap(const_iterator __f, const_iterator __l, size_type __n,                const hasher& __hf, const key_equal& __eql,                const allocator_type& __a = allocator_type())    : _M_ht(__n, __hf, __eql, __a)    { _M_ht.insert_equal(__f, __l); }#endif /*_STLP_MEMBER_TEMPLATES */public:  size_type size() const { return _M_ht.size(); }  size_type max_size() const { return _M_ht.max_size(); }  bool empty() const { return _M_ht.empty(); }  void swap(_Self& __hs) { _M_ht.swap(__hs._M_ht); }  iterator begin() { return _M_ht.begin(); }  iterator end() { return _M_ht.end(); }  const_iterator begin() const { return _M_ht.begin(); }  const_iterator end() const { return _M_ht.end(); }public:  iterator insert(const value_type& __obj)    { return _M_ht.insert_equal(__obj); }#ifdef _STLP_MEMBER_TEMPLATES  template <class _InputIterator>  void insert(_InputIterator __f, _InputIterator __l)    { _M_ht.insert_equal(__f,__l); }#else  void insert(const value_type* __f, const value_type* __l) {    _M_ht.insert_equal(__f,__l);  }  void insert(const_iterator __f, const_iterator __l)    { _M_ht.insert_equal(__f, __l); }#endif /*_STLP_MEMBER_TEMPLATES */  iterator insert_noresize(const value_type& __obj)    { return _M_ht.insert_equal_noresize(__obj); }  _STLP_TEMPLATE_FOR_CONT_EXT  iterator find(const _KT& __key) { return _M_ht.find(__key); }  _STLP_TEMPLATE_FOR_CONT_EXT  const_iterator find(const _KT& __key) const { return _M_ht.find(__key); }  _STLP_TEMPLATE_FOR_CONT_EXT  size_type count(const _KT& __key) const { return _M_ht.count(__key); }  _STLP_TEMPLATE_FOR_CONT_EXT  pair<iterator, iterator>  equal_range(const _KT& __key) { return _M_ht.equal_range(__key); }  _STLP_TEMPLATE_FOR_CONT_EXT  pair<const_iterator, const_iterator>  equal_range(const _KT& __key) const { return _M_ht.equal_range(__key); }  _STLP_TEMPLATE_FOR_CONT_EXT  size_type erase(const _KT& __key) {return _M_ht.erase(__key); }  void erase(iterator __it) { _M_ht.erase(__it); }  void erase(iterator __f, iterator __l) { _M_ht.erase(__f, __l); }  void clear() { _M_ht.clear(); }public:  void resize(size_type __hint) { _M_ht.resize(__hint); }  size_type bucket_count() const { return _M_ht.bucket_count(); }  size_type max_bucket_count() const { return _M_ht.max_bucket_count(); }  size_type elems_in_bucket(size_type __n) const  { return _M_ht.elems_in_bucket(__n); }};#define _STLP_TEMPLATE_HEADER template <class _Key, class _Tp, class _HashFcn, class _EqlKey, class _Alloc>#define _STLP_TEMPLATE_CONTAINER hash_map<_Key,_Tp,_HashFcn,_EqlKey,_Alloc>#include <stl/_relops_hash_cont.h>#undef _STLP_TEMPLATE_CONTAINER#define _STLP_TEMPLATE_CONTAINER hash_multimap<_Key,_Tp,_HashFcn,_EqlKey,_Alloc>#include <stl/_relops_hash_cont.h>#undef _STLP_TEMPLATE_CONTAINER#undef _STLP_TEMPLATE_HEADER#if defined (_STLP_CLASS_PARTIAL_SPECIALIZATION)template <class _Key, class _Tp, class _HashFn,  class _EqKey, class _Alloc>struct __move_traits<hash_map<_Key, _Tp, _HashFn, _EqKey, _Alloc> > :  _STLP_PRIV __move_traits_help<typename hash_map<_Key, _Tp, _HashFn, _EqKey, _Alloc>::_Ht>{};template <class _Key, class _Tp, class _HashFn,  class _EqKey, class _Alloc>struct __move_traits<hash_multimap<_Key, _Tp, _HashFn, _EqKey, _Alloc> > :  _STLP_PRIV __move_traits_help<typename hash_multimap<_Key, _Tp, _HashFn, _EqKey, _Alloc>::_Ht>{};// Specialization of insert_iterator so that it will work for hash_map// and hash_multimap.template <class _Key, class _Tp, class _HashFn,  class _EqKey, class _Alloc>class insert_iterator<hash_map<_Key, _Tp, _HashFn, _EqKey, _Alloc> > {protected:  typedef hash_map<_Key, _Tp, _HashFn, _EqKey, _Alloc> _Container;  _Container* container;public:  typedef _Container          container_type;  typedef output_iterator_tag iterator_category;  typedef void                value_type;  typedef void                difference_type;  typedef void                pointer;  typedef void                reference;  insert_iterator(_Container& __x) : container(&__x) {}  insert_iterator(_Container& __x, typename _Container::iterator)    : container(&__x) {}  insert_iterator<_Container>&  operator=(const typename _Container::value_type& __val) {    container->insert(__val);    return *this;  }  insert_iterator<_Container>& operator*() { return *this; }  insert_iterator<_Container>& operator++() { return *this; }  insert_iterator<_Container>& operator++(int) { return *this; }};template <class _Key, class _Tp, class _HashFn,  class _EqKey, class _Alloc>class insert_iterator<hash_multimap<_Key, _Tp, _HashFn, _EqKey, _Alloc> > {protected:  typedef hash_multimap<_Key, _Tp, _HashFn, _EqKey, _Alloc> _Container;  _Container* container;  typename _Container::iterator iter;public:  typedef _Container          container_type;  typedef output_iterator_tag iterator_category;  typedef void                value_type;  typedef void                difference_type;  typedef void                pointer;  typedef void                reference;  insert_iterator(_Container& __x) : container(&__x) {}  insert_iterator(_Container& __x, typename _Container::iterator)    : container(&__x) {}  insert_iterator<_Container>&  operator=(const typename _Container::value_type& __val) {    container->insert(__val);    return *this;  }  insert_iterator<_Container>& operator*() { return *this; }  insert_iterator<_Container>& operator++() { return *this; }  insert_iterator<_Container>& operator++(int) { return *this; }};#endif /* _STLP_CLASS_PARTIAL_SPECIALIZATION */_STLP_END_NAMESPACE#endif /* _STLP_INTERNAL_HASH_MAP_H */// Local Variables:// mode:C++// End:

⌨️ 快捷键说明

复制代码 Ctrl + C
搜索代码 Ctrl + F
全屏模式 F11
切换主题 Ctrl + Shift + D
显示快捷键 ?
增大字号 Ctrl + =
减小字号 Ctrl + -