#pragma once
#include"reverse_iterator.h"
namespace zh
{
template<class T>
struct ListNode
{
ListNode<T>* _next;
ListNode<T>* _prev;
T _data;
ListNode(const T& x = T())
:_data(x)
, _next(nullptr)
, _prev(nullptr)
{}
};
template<class T, class Ref, class Ptr>
struct __list_iterator
{
typedef ListNode<T> Node;
typedef __list_iterator<T, Ref, Ptr> self;
typedef Ref reference;
typedef Ptr pointer;
Node* _node;
__list_iterator(Node* x = Node*())
:_node(x)
{}
self operator++(int)
{
self tmp = *this;
_node = _node->_next;
return tmp;
}
self& operator++()
{
_node = _node->_next;
return *this;
}
self operator--(int)
{
self tmp = *this;
_node = _node->prev;
return tmp;
}
self& operator--()
{
_node = _node->_prev;
return *this;
}
Ref operator*()
{
return _node->_data;
}
Ptr operator->()
{
return &_node->_data;
}
bool operator!=(const self& it) const
{
return _node != it._node;
}
bool operator==(const self& it) const
{
return _node == it._node;
}
};
template<class T>
class list
{
public:
typedef ListNode<T> Node;
typedef __list_iterator<T, T&, T*> iterator;
typedef __list_iterator<T, const T&, const T*> const_iterator;
typedef reverse_iterator<const_iterator, const T&, const T*> const_reverse_iterator;
typedef reverse_iterator<iterator, T&, T*> reverse_iterator;
reverse_iterator rbegin()
{
return reverse_iterator(end());
}
reverse_iterator rend()
{
return reverse_iterator(begin());
}
const_reverse_iterator rbegin() const
{
return const_reverse_iterator(end());
}
reverse_iterator rend() const
{
return const_reverse_iterator(begin());
}
list()
{
_head = new Node;
_head->_next = _head;
_head->_prev = _head;
}
template<class InputIterator>
list(InputIterator first, InputIterator last)
{
_head = new Node;
_head->_next = _head;
_head->_prev = _head;
while (first != last)
{
push_back(*first);
++first;
}
}
list(size_t n, const T& val = T())
{
_head = new Node;
_head->_next = _head;
_head->_prev = _head;
for (size_t i = 0; i < n; ++i)
{
push_back(val);
}
}
list(int n, const T& val = T())
{
_head = new Node;
_head->_next = _head;
_head->_prev = _head;
for (size_t i = 0; i < n; ++i)
{
push_back(val);
}
}
list(const list<T>& lt)
{
_head = new Node;
_head->_next = _head;
_head->_prev = _head;
list<T> tmp(lt.begin(), lt.end());
std::swap(_head, tmp._head);
}
list<T>& operator=(list<T> lt)
{
std::swap(_head, lt._head);
return *this;
}
~list()
{
clear();
delete _head;
_head = nullptr;
}
void clear()
{
iterator it = begin();
while (it != end())
{
iterator del = it++;
delete del._node;
}
_head->_next = _head;
_head->_prev = _head;
}
void push_back(const T& x)
{
Node* tail = _head->_prev;
Node* newnode = new Node(x);
tail->_next = newnode;
newnode->_prev = tail;
_head->_prev = newnode;
newnode->_next = _head;
}
void push_front(const T& x)
{
insert(begin(), x);
}
iterator begin()
{
return iterator(_head->_next);
}
iterator end()
{
return iterator(_head);
}
const_iterator begin() const
{
return const_iterator(_head->_next);
}
const_iterator end() const
{
return const_iterator(_head);
}
iterator insert(iterator pos, const T& x)
{
Node* cur = pos._node;
Node* prev = cur->_prev;
Node* newnode = new Node(x);
prev->_next = newnode;
newnode->_prev = prev;
newnode->_next = cur;
cur->_prev = newnode;
return iterator(newnode);
}
iterator erase(iterator pos)
{
assert(pos != end());
Node* prev = pos._node->_prev;
Node* next = pos._node->_next;
delete pos._node;
prev->_next = next;
next->_prev = prev;
return iterator(next);
}
void pop_back()
{
erare(--end());
}
void pop_front()
{
erase(begin());
}
private:
Node* _head;
};
void test_list1()
{
list<int> lt;
lt.push_back(1);
lt.push_back(2);
lt.push_back(3);
lt.push_back(4);
list<int>::iterator it = lt.begin();
while (it != lt.end())
{
cout << *it << " ";
++it;
}
cout << endl;
}
struct Data
{
int _year;
int _month;
int _day;
Data(int year = 1, int month = 1, int day = 1)
:_year(year)
, _month(month)
, _day(day)
{}
};
void test_list2()
{
list<Data> lt;
lt.push_back(Data());
lt.push_back(Data());
lt.push_back(Data());
lt.push_back(Data());
list<Data>::iterator it = lt.begin();
while (it != lt.end())
{
cout << it->_year << "/" << it->_month << "/" << it->_day << endl;
it++;
}
}
void test_list3()
{
list<int> lt;
lt.push_back(1);
lt.push_back(2);
lt.push_back(3);
lt.push_back(4);
list<int>::iterator it = lt.begin();
lt.insert(it, 3);
list<int>::iterator now = lt.begin();
while (now != lt.end())
{
cout << (*now ) << " ";
++now;
}
cout << endl;
}
void test_list4()
{
list<int> lt1;
lt1.push_back(1);
lt1.push_back(2);
lt1.push_back(3);
lt1.push_back(4);
lt1.push_back(5);
list<int> lt2 = lt1;
for (auto &e : lt2)
{
cout << e << " ";
}
}
void test_list5()
{
list<int> lt;
lt.push_back(1);
lt.push_back(2);
lt.push_back(3);
lt.push_back(4);
lt.push_back(5);
for (auto &e : lt)
{
cout << e << " ";
}
cout << endl;
lt.clear();
lt.push_back(1);
lt.push_back(2);
for (auto &e : lt)
{
cout << e << " ";
}
cout << endl;
}
void test_list6()
{
list<int> lt;
lt.push_back(1);
lt.push_back(2);
lt.push_back(3);
lt.push_back(4);
lt.push_back(5);
zh::list<int>::reverse_iterator it = lt.rbegin();
while (it != lt.rend())
{
cout << *it << " ";
it++;
}
cout << endl;
}
}