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f5491c9e65
This lets us have constexpr structs/classes that contain Common::List
296 lines
7.3 KiB
C++
296 lines
7.3 KiB
C++
/* ScummVM - Graphic Adventure Engine
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*
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* ScummVM is the legal property of its developers, whose names
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* are too numerous to list here. Please refer to the COPYRIGHT
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* file distributed with this source distribution.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*
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*/
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#ifndef COMMON_LIST_H
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#define COMMON_LIST_H
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#include "common/list_intern.h"
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namespace Common {
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/**
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* @defgroup common_list Lists
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* @ingroup common
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*
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* @brief API for managing doubly linked lists.
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*
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*
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* @{
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*/
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/**
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* Simple doubly linked list, modeled after the list template of the standard
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* C++ library.
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*/
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template<typename t_T>
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class List {
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protected:
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typedef ListInternal::NodeBase NodeBase; /*!< @todo Doc required. */
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typedef ListInternal::Node<t_T> Node; /*!< An element of the doubly linked list. */
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NodeBase _anchor; /*!< Pointer to the position of the element in the list. */
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public:
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typedef ListInternal::Iterator<t_T> iterator; /*!< List iterator. */
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typedef ListInternal::ConstIterator<t_T> const_iterator; /*!< Const-qualified list iterator. */
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typedef t_T value_type; /*!< Value type of the list. */
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typedef uint size_type; /*!< Size type of the list. */
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public:
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/**
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* Construct a new empty list.
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*/
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constexpr List() : _anchor(&_anchor, &_anchor) {}
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List(const List<t_T> &list) { /*!< Construct a new list as a copy of the given @p list. */
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_anchor._prev = &_anchor;
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_anchor._next = &_anchor;
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insert(begin(), list.begin(), list.end());
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}
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~List() {
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clear();
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}
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/**
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* Insert an @p element before @p pos.
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*/
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void insert(iterator pos, const t_T &element) {
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insert(pos._node, element);
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}
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/**
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* Insert elements from @p first to @p last before @p pos.
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*/
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template<typename iterator2>
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void insert(iterator pos, iterator2 first, iterator2 last) {
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for (; first != last; ++first)
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insert(pos, *first);
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}
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/**
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* Delete the element at location @p pos and return an iterator pointing
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* to the element after the one that was deleted.
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*/
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iterator erase(iterator pos) {
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assert(pos != end());
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return iterator(erase(pos._node)._next);
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}
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/**
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* Delete the element at location @p pos and return an iterator pointing
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* to the element before the one that was deleted.
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*/
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iterator reverse_erase(iterator pos) {
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assert(pos != end());
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return iterator(erase(pos._node)._prev);
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}
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/**
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* Delete the elements between @p first and @p last (including @p first but not
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* @p last). Return an iterator pointing to the element after the one
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* that was deleted (that is, @p last).
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*/
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iterator erase(iterator first, iterator last) {
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NodeBase *f = first._node;
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NodeBase *l = last._node;
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while (f != l)
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f = erase(f)._next;
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return last;
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}
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/**
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* Remove all elements that are equal to @p val from the list.
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*/
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void remove(const t_T &val) {
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NodeBase *i = _anchor._next;
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while (i != &_anchor)
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if (val == static_cast<Node *>(i)->_data)
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i = erase(i)._next;
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else
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i = i->_next;
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}
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/** Insert an @p element at the start of the list. */
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void push_front(const t_T &element) {
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insert(_anchor._next, element);
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}
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/** Append an @p element to the end of the list. */
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void push_back(const t_T &element) {
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insert(&_anchor, element);
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}
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/** Remove the first element of the list. */
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void pop_front() {
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assert(!empty());
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erase(_anchor._next);
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}
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/** Remove the last element of the list. */
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void pop_back() {
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assert(!empty());
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erase(_anchor._prev);
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}
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/** Return a reference to the first element of the list. */
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t_T &front() {
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return static_cast<Node *>(_anchor._next)->_data;
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}
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/** Return a reference to the first element of the list. */
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const t_T &front() const {
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return static_cast<Node *>(_anchor._next)->_data;
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}
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/** Return a reference to the last element of the list. */
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t_T &back() {
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return static_cast<Node *>(_anchor._prev)->_data;
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}
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/** Return a reference to the last element of the list. */
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const t_T &back() const {
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return static_cast<Node *>(_anchor._prev)->_data;
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}
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/** Assign a given @p list to this list. */
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List<t_T> &operator=(const List<t_T> &list) {
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if (this != &list) {
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iterator i;
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const iterator e = end();
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const_iterator i2;
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const_iterator e2 = list.end();
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for (i = begin(), i2 = list.begin(); (i != e) && (i2 != e2); ++i, ++i2) {
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static_cast<Node *>(i._node)->_data = static_cast<const Node *>(i2._node)->_data;
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}
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if (i == e)
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insert(i, i2, e2);
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else
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erase(i, e);
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}
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return *this;
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}
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/** Return the size of the list. */
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size_type size() const {
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size_type n = 0;
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for (const NodeBase *cur = _anchor._next; cur != &_anchor; cur = cur->_next)
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++n;
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return n;
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}
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/** Remove all elements from the list. */
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void clear() {
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NodeBase *pos = _anchor._next;
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while (pos != &_anchor) {
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Node *node = static_cast<Node *>(pos);
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pos = pos->_next;
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delete node;
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}
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_anchor._prev = &_anchor;
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_anchor._next = &_anchor;
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}
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/** Check whether the list is empty. */
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bool empty() const {
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return (&_anchor == _anchor._next);
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}
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/** Return an iterator to the start of the list.
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* This can be used, for example, to iterate from the first element
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* of the list to the last element of the list.
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*/
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iterator begin() {
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return iterator(_anchor._next);
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}
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/** Return a reverse iterator to the start of the list.
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* This can be used, for example, to iterate from the last element
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* of the list to the first element of the list.
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*/
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iterator reverse_begin() {
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return iterator(_anchor._prev);
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}
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/** Return an iterator to the end of the list. */
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iterator end() {
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return iterator(&_anchor);
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}
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/** Return a const iterator to the start of the list.
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* This can be used, for example, to iterate from the first element
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* of the list to the last element of the list.
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*/
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const_iterator begin() const {
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return const_iterator(_anchor._next);
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}
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/** Return a const reverse iterator to the start of the list.
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* This can be used, for example, to iterate from the last element
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* of the list to the first element of the list.
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*/
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const_iterator reverse_begin() const {
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return const_iterator(_anchor._prev);
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}
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/** Return a const iterator to the end of the list. */
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const_iterator end() const {
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return const_iterator(const_cast<NodeBase *>(&_anchor));
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}
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protected:
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/**
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* Erase an element at @p pos.
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*/
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NodeBase erase(NodeBase *pos) {
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NodeBase n = *pos;
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Node *node = static_cast<Node *>(pos);
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n._prev->_next = n._next;
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n._next->_prev = n._prev;
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delete node;
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return n;
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}
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/**
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* Insert an @p element before @p pos.
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*/
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void insert(NodeBase *pos, const t_T &element) {
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ListInternal::NodeBase *newNode = new Node(element);
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assert(newNode);
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newNode->_next = pos;
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newNode->_prev = pos->_prev;
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newNode->_prev->_next = newNode;
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newNode->_next->_prev = newNode;
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}
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};
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/** @} */
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} // End of namespace Common
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#endif
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