334 lines
		
	
	
		
			6.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			334 lines
		
	
	
		
			6.3 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/**
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 * vim: set ts=4 :
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 * =============================================================================
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 * SourceMod
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 * Copyright (C) 2004-2008 AlliedModders LLC.  All rights reserved.
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 * =============================================================================
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 *
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 * This program is free software; you can redistribute it and/or modify it under
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 * the terms of the GNU General Public License, version 3.0, as published by the
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 * Free Software Foundation.
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 * 
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 * This program is distributed in the hope that it will be useful, but WITHOUT
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 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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 * FOR A PARTICULAR PURPOSE.  See the GNU General Public License for more
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 * details.
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 *
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 * You should have received a copy of the GNU General Public License along with
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 * this program.  If not, see <http://www.gnu.org/licenses/>.
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 *
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 * As a special exception, AlliedModders LLC gives you permission to link the
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 * code of this program (as well as its derivative works) to "Half-Life 2," the
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 * "Source Engine," the "SourcePawn JIT," and any Game MODs that run on software
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 * by the Valve Corporation.  You must obey the GNU General Public License in
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 * all respects for all other code used.  Additionally, AlliedModders LLC grants
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 * this exception to all derivative works.  AlliedModders LLC defines further
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 * exceptions, found in LICENSE.txt (as of this writing, version JULY-31-2007),
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 * or <http://www.sourcemod.net/license.php>.
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 *
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 * Version: $Id$
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 */
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#ifndef _INCLUDE_SM_QUEUE_H
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#define _INCLUDE_SM_QUEUE_H
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#include <new>
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#include <stdlib.h>
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#include <sh_stack.h>
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using namespace SourceHook;
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/*
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	A circular, doubly-linked List with one sentinel node
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	Empty:
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	m_Head = sentinel
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	m_Head->next = m_Head;
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	m_Head->prev = m_Head;
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	One element:
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	m_Head = sentinel
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	m_Head->next = node1
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	m_Head->prev = node1
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	node1->next = m_Head
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	node1->prev = m_Head
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	Two elements:
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	m_Head = sentinel
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	m_Head->next = node1
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	m_Head->prev = node2
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	node1->next = node2
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	node1->prev = m_Head
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	node2->next = m_Head
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	node2->prev = node1
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*/
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template <class T>
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class Queue
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{
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public:
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	class iterator;
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	friend class iterator;
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	class QueueNode
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	{
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	public:
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		T obj;
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		QueueNode *next;
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		QueueNode *prev;
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	};
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private:
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	// Initializes the sentinel node.
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	QueueNode *_Initialize()
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	{
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		QueueNode *n = (QueueNode *)malloc(sizeof(QueueNode));
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		n->next = n;
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		n->prev = n;
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		return n;
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	}
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public:
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	Queue() : m_Head(_Initialize()), m_Size(0)
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	{
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	}
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	Queue(const Queue &src) : m_Head(_Initialize()), m_Size(0)
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	{
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		iterator iter;
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		for (iter=src.begin(); iter!=src.end(); iter++)
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		{
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			push_back( (*iter) );
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		}
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	}
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	~Queue()
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	{
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		clear();
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		// Don't forget to free the sentinel
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		if (m_Head)
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		{
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			free(m_Head);
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			m_Head = NULL;
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		}
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		while (!m_FreeNodes.empty())
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		{
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			free(m_FreeNodes.front());
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			m_FreeNodes.pop();
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		}
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	}
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	void push(const T &obj)
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	{
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		QueueNode *node;
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		if (m_FreeNodes.empty())
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		{
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			node = (QueueNode *)malloc(sizeof(QueueNode));
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		} else {
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			node = m_FreeNodes.front();
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			m_FreeNodes.pop();
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		}
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		/* Copy the object */
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		new (&node->obj) T(obj);
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		/* Install into the Queue */
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		node->prev = m_Head->prev;
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		node->next = m_Head;
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		m_Head->prev->next = node;
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		m_Head->prev = node;
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		m_Size++;
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	}
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	size_t size() const
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	{
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		return m_Size;
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	}
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	void clear()
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	{
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		QueueNode *node = m_Head->next;
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		QueueNode *temp;
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		m_Head->next = m_Head;
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		m_Head->prev = m_Head;
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		// Iterate through the nodes until we find g_Head (the sentinel) again
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		while (node != m_Head)
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		{
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			temp = node->next;
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			node->obj.~T();
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			m_FreeNodes.push(node);
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			node = temp;
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		}
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		m_Size = 0;
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	}
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	bool empty() const
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	{
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		return (m_Size == 0);
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	}
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private:
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	QueueNode *m_Head;
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	size_t m_Size;
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	CStack<QueueNode *> m_FreeNodes;
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public:
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	class iterator
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	{
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		friend class Queue;
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	public:
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		iterator()
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		{
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			m_This = NULL;
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		}
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		iterator(const Queue &src)
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		{
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			m_This = src.m_Head;
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		}
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		iterator(QueueNode *n) : m_This(n)
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		{
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		}
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		iterator(const iterator &where)
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		{
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			m_This = where.m_This;
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		}
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		//pre decrement
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		iterator & operator--()
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		{
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			if (m_This)
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				m_This = m_This->prev;
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			return *this;
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		}
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		//post decrement
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		iterator operator--(int)
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		{
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			iterator old(*this);
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			if (m_This)
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				m_This = m_This->prev;
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			return old;
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		}	
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		//pre increment
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		iterator & operator++()
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		{
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			if (m_This)
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				m_This = m_This->next;
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			return *this;
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		}
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		//post increment
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		iterator operator++(int)
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		{
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			iterator old(*this);
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			if (m_This)
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				m_This = m_This->next;
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			return old;
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		}
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		const T & operator * () const
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		{
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			return m_This->obj;
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		}
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		T & operator * ()
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		{
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			return m_This->obj;
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		}
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		T * operator -> ()
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		{
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			return &(m_This->obj);
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		}
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		const T * operator -> () const
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		{
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			return &(m_This->obj);
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		}
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		bool operator != (const iterator &where) const
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		{
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			return (m_This != where.m_This);
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		}
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		bool operator ==(const iterator &where) const
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		{
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			return (m_This == where.m_This);
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		}
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	private:
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		QueueNode *m_This;
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	};
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public:
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	iterator begin() const
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	{
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		return iterator(m_Head->next);
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	}
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	iterator end() const
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	{
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		return iterator(m_Head);
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	}
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	iterator erase(iterator &where)
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	{
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		QueueNode *pNode = where.m_This;
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		iterator iter(where);
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		iter++;
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		// Works for all cases: empty Queue, erasing first element, erasing tail, erasing in the middle...
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		pNode->prev->next = pNode->next;
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		pNode->next->prev = pNode->prev;
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		pNode->obj.~T();
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		m_FreeNodes.push(pNode);
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		m_Size--;
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		return iter;
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	}
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public:
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	void remove(const T & obj)
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	{
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		iterator b;
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		for (b=begin(); b!=end(); b++)
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		{
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			if ( (*b) == obj )
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			{
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				erase( b );
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				break;
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			}
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		}
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	}
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	template <typename U>
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	iterator find(const U & equ) const
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	{
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		iterator iter;
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		for (iter=begin(); iter!=end(); iter++)
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		{
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			if ( (*iter) == equ )
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			{
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				return iter;
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			}
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		}
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		return end();
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	}
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	Queue & operator =(const Queue &src)
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	{
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		clear();
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		iterator iter;
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		for (iter=src.begin(); iter!=src.end(); iter++)
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		{
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			push_back( (*iter) );
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		}
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		return *this;
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	}
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public:
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	T & first() const
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	{
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		iterator i = begin();
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		return (*i);
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	}
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	void pop()
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	{
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		iterator iter = begin();
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		erase(iter);
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	}
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};
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#endif //_INCLUDE_SM_QUEUE_H
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