269 lines
6.6 KiB
C++
269 lines
6.6 KiB
C++
#ifndef dslist_h_
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#define dslist_h_
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// A simplified implementation of the STL list container class,
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// including the iterator, but not the const_iterators. Three
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// separate classes are defined: a Node class, an iterator class, and
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// the actual list class. The underlying list is doubly-linked, but
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// there is no dummy head node and the list is not circular.
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#include <cassert>
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// -----------------------------------------------------------------
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// NODE CLASS
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template <class T>
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class Node {
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public:
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Node() : next_(NULL), prev_(NULL) {}
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Node(const T& v) : value_(v), next_(NULL), prev_(NULL) {}
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// REPRESENTATION
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T value_;
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Node<T>* next_;
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Node<T>* prev_;
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};
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// A "forward declaration" of this class is needed
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template <class T> class dslist;
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// -----------------------------------------------------------------
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// LIST ITERATOR
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template <class T>
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class list_iterator {
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public:
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// default constructor, copy constructor, assignment operator, & destructor
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list_iterator(Node<T>* p=NULL) : ptr_(p) {}
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// NOTE: the implicit compiler definitions of the copy constructor,
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// assignment operator, and destructor are correct for this class
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// dereferencing operator gives access to the value at the pointer
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T& operator*() { return ptr_->value_; }
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// increment & decrement operators
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list_iterator<T>& operator++() { // pre-increment, e.g., ++iter
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ptr_ = ptr_->next_;
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return *this;
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}
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list_iterator<T> operator++(int) { // post-increment, e.g., iter++
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list_iterator<T> temp(*this);
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ptr_ = ptr_->next_;
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return temp;
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}
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list_iterator<T>& operator--() { // pre-decrement, e.g., --iter
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ptr_ = ptr_->prev_;
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return *this;
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}
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list_iterator<T> operator--(int) { // post-decrement, e.g., iter--
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list_iterator<T> temp(*this);
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ptr_ = ptr_->prev_;
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return temp;
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}
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// the dslist class needs access to the private ptr_ member variable
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friend class dslist<T>;
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// Comparions operators are straightforward
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bool operator==(const list_iterator<T>& r) const {
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return ptr_ == r.ptr_; }
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bool operator!=(const list_iterator<T>& r) const {
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return ptr_ != r.ptr_; }
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private:
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// REPRESENTATION
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Node<T>* ptr_; // ptr to node in the list
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};
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// -----------------------------------------------------------------
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// LIST CLASS DECLARATION
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// Note that it explicitly maintains the size of the list.
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template <class T>
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class dslist {
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public:
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// default constructor, copy constructor, assignment operator, & destructor
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dslist() : head_(NULL), tail_(NULL), size_(0) {}
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dslist(const dslist<T>& old) { copy_list(old); }
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dslist& operator= (const dslist<T>& old);
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~dslist() { destroy_list(); }
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typedef list_iterator<T> iterator;
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// simple accessors & modifiers
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unsigned int size() const { return size_; }
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bool empty() const { return head_ == NULL; }
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void clear() { destroy_list(); }
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// read/write access to contents
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const T& front() const { return head_->value_; }
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T& front() { return head_->value_; }
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const T& back() const { return tail_->value_; }
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T& back() { return tail_->value_; }
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// modify the linked list structure
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void push_front(const T& v);
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void pop_front();
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void push_back(const T& v);
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void pop_back();
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iterator erase(iterator itr);
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iterator insert(iterator itr, const T& v);
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iterator begin() { return iterator(head_); }
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iterator end() { return iterator(NULL); }
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private:
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// private helper functions
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void copy_list(const dslist<T>& old);
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void destroy_list();
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//REPRESENTATION
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Node<T>* head_;
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Node<T>* tail_;
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unsigned int size_;
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};
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// -----------------------------------------------------------------
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// LIST CLASS IMPLEMENTATION
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template <class T>
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dslist<T>& dslist<T>::operator= (const dslist<T>& old) {
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// check for self-assignment
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if (&old != this) {
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destroy_list();
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copy_list(old);
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}
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return *this;
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}
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template <class T>
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void dslist<T>::push_front(const T& v) {
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}
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template <class T>
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void dslist<T>::pop_front() {
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}
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template <class T>
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void dslist<T>::push_back(const T& v) {
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Node<T>* newp = new Node<T>(v);
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// special case: initially empty list
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if (!tail_) {
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head_ = tail_ = newp;
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} else {
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// normal case: at least one node already
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newp->prev_ = tail_;
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tail_->next_ = newp;
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tail_ = newp;
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}
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++size_;
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}
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template <class T>
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void dslist<T>::pop_back() {
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}
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// do these lists look the same (length & contents)?
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template <class T>
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bool operator== (dslist<T>& left, dslist<T>& right) {
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if (left.size() != right.size()) return false;
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typename dslist<T>::iterator left_itr = left.begin();
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typename dslist<T>::iterator right_itr = right.begin();
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// walk over both lists, looking for a mismatched value
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while (left_itr != left.end()) {
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if (*left_itr != *right_itr) return false;
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left_itr++; right_itr++;
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}
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return true;
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}
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template <class T>
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bool operator!= (dslist<T>& left, dslist<T>& right){ return !(left==right); }
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template <class T>
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typename dslist<T>::iterator dslist<T>::erase(iterator itr) {
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assert (size_ > 0);
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--size_;
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iterator result(itr.ptr_->next_);
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// One node left in the list.
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if (itr.ptr_ == head_ && head_ == tail_) {
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head_ = tail_ = 0;
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}
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// Removing the head in a list with at least two nodes
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else if (itr.ptr_ == head_) {
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head_ = head_->next_;
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head_->prev_ = 0;
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}
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// Removing the tail in a list with at least two nodes
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else if (itr.ptr_ == tail_) {
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tail_ = tail_->prev_;
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tail_->next_ = 0;
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}
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// Normal remove
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else {
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itr.ptr_->prev_->next_ = itr.ptr_->next_;
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itr.ptr_->next_->prev_ = itr.ptr_->prev_;
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}
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delete itr.ptr_;
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return result;
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}
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template <class T>
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typename dslist<T>::iterator dslist<T>::insert(iterator itr, const T& v) {
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++size_ ;
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Node<T>* p = new Node<T>(v);
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p->prev_ = itr.ptr_->prev_;
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p->next_ = itr.ptr_;
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itr.ptr_->prev_ = p;
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if (itr.ptr_ == head_)
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head_ = p;
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else
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p->prev_->next_ = p;
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return iterator(p);
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}
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template <class T>
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void dslist<T>::copy_list(const dslist<T>& old) {
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size_ = old.size_;
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// Handle the special case of an empty list.
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if (size_ == 0) {
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head_ = tail_ = 0;
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return;
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}
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// Create a new head node.
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head_ = new Node<T>(old.head_->value_);
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// tail_ will point to the last node created and therefore will move
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// down the new list as it is built
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tail_ = head_;
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// old_p will point to the next node to be copied in the old list
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Node<T>* old_p = old.head_->next_;
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// copy the remainder of the old list, one node at a time
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while (old_p) {
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tail_->next_ = new Node<T>(old_p->value_);
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tail_->next_->prev_ = tail_;
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tail_ = tail_->next_;
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old_p = old_p->next_;
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}
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}
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template <class T>
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void dslist<T>::destroy_list() {
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}
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#endif
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