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			319 lines
		
	
	
		
			9.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			319 lines
		
	
	
		
			9.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
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// Copyright 2008-2009 Daniel James.
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// Distributed under the Boost Software License, Version 1.0. (See accompanying
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// file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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// Gratuitous single linked list.
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//
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// Sadly some STL implementations aren't up to scratch and I need a simple
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// cross-platform container. So here it is.
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#if !defined(UNORDERED_TEST_LIST_HEADER)
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#define UNORDERED_TEST_LIST_HEADER
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#include <boost/limits.hpp>
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#include <iterator>
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#include <functional>
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namespace test
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{
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    template <typename It1, typename It2>
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    bool equal(It1 begin, It1 end, It2 compare)
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    {
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        for(;begin != end; ++begin, ++compare)
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            if(*begin != *compare) return false;
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        return true;
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    }
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    template <typename It1, typename It2, typename Pred>
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    bool equal(It1 begin, It1 end, It2 compare, Pred predicate)
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    {
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        for(;begin != end; ++begin, ++compare)
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            if(!predicate(*begin, *compare)) return false;
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        return true;
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    }
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    template <typename T> class list;
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    namespace test_detail
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    {
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        template <typename T> class list_node;
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        template <typename T> class list_data;
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        template <typename T> class list_iterator;
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        template <typename T> class list_const_iterator;
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        template <typename T>
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        class list_node
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        {
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            list_node(list_node const&);
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            list_node& operator=(list_node const&);
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        public:
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            T value_;
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            list_node* next_;
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            list_node(T const& v) : value_(v), next_(0) {}
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            list_node(T const& v, list_node* n) : value_(v), next_(n) {}
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        };
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        template <typename T>
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        class list_data
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        {
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        public:
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            typedef list_node<T> node;
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            typedef unsigned int size_type;
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            node* first_;
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            node** last_ptr_;
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            size_type size_;
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            list_data() : first_(0), last_ptr_(&first_), size_(0) {}
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            ~list_data() {
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                while(first_) {
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                    node* tmp = first_;
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                    first_ = first_->next_;
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                    delete tmp;
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                }
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            }
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        private:
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            list_data(list_data const&);
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            list_data& operator=(list_data const&);
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        };
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        template <typename T>
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        class list_iterator
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            : public std::iterator<
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                std::forward_iterator_tag, T,
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                  int, T*, T&>
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        {
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            friend class list_const_iterator<T>;
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            friend class test::list<T>;
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            typedef list_node<T> node;
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            typedef list_const_iterator<T> const_iterator;
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            node* ptr_;
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        public:
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            list_iterator() : ptr_(0) {}
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            explicit list_iterator(node* x) : ptr_(x) {}
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            T& operator*() const { return ptr_->value_; }
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            T* operator->() const { return &ptr_->value_; }
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            list_iterator& operator++() {
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                ptr_ = ptr_->next_; return *this; }
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            list_iterator operator++(int) {
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                list_iterator tmp = *this; ptr_ = ptr_->next_; return tmp; }
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            bool operator==(const_iterator y) const { return ptr_ == y.ptr_; }
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            bool operator!=(const_iterator y) const { return ptr_ != y.ptr_; }
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        };
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        template <typename T>
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        class list_const_iterator
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            : public std::iterator<
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                std::forward_iterator_tag, T,
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                  int, T const*, T const&>
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        {
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            friend class list_iterator<T>;
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            friend class test::list<T>;
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            typedef list_node<T> node;
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            typedef list_iterator<T> iterator;
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            typedef list_const_iterator<T> const_iterator;
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            node* ptr_;
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        public:
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            list_const_iterator() : ptr_(0) {}
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            list_const_iterator(list_iterator<T> const& x) : ptr_(x.ptr_) {}
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            T const& operator*() const { return ptr_->value_; }
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            T const* operator->() const { return &ptr_->value_; }
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            list_const_iterator& operator++()
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            {
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                ptr_ = ptr_->next_;
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                return *this;
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            }
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            list_const_iterator operator++(int)
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            {
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                list_const_iterator tmp = *this;
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                ptr_ = ptr_->next_;
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                return tmp;
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            }
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            bool operator==(const_iterator y) const
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            {
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                return ptr_ == y.ptr_;
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            }
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            bool operator!=(const_iterator y) const
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            {
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                return ptr_ != y.ptr_;
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            }
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        };
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    }
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    template <typename T>
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    class list
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    {
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        typedef test::test_detail::list_data<T> data;
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        typedef test::test_detail::list_node<T> node;
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        data data_;
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    public:
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        typedef T value_type;
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        typedef value_type& reference;
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        typedef value_type const& const_reference;
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        typedef unsigned int size_type;
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        typedef test::test_detail::list_iterator<T> iterator;
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        typedef test::test_detail::list_const_iterator<T> const_iterator;
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        list() : data_() {}
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        list(list const& other) : data_() {
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            insert(other.begin(), other.end());
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        }
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        template <class InputIterator>
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        list(InputIterator i, InputIterator j) : data_() {
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            insert(i, j);
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        }
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        list& operator=(list const& other) {
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            clear();
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            insert(other.begin(), other.end());
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            return *this;
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        }
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        iterator begin() { return iterator(data_.first_); }
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        iterator end() { return iterator(); }
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        const_iterator begin() const { return iterator(data_.first_); }
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        const_iterator end() const { return iterator(); }
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        const_iterator cbegin() const { return iterator(data_.first_); }
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        const_iterator cend() const { return iterator(); }
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        template <class InputIterator>
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        void insert(InputIterator i, InputIterator j) {
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            for(; i != j; ++i)
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                push_back(*i);
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        }
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        void push_front(value_type const& v) {
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            data_.first_ = new node(v, data_.first_);
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            if(!data_.size_) data_.last_ptr_ = &(*data_.last_ptr_)->next_;
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            ++data_.size_;
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        }
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        void push_back(value_type const& v) {
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            *data_.last_ptr_ = new node(v);
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            data_.last_ptr_ = &(*data_.last_ptr_)->next_;
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            ++data_.size_;
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        }
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        void clear() {
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            while(data_.first_) {
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                node* tmp = data_.first_;
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                data_.first_ = data_.first_->next_;
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                --data_.size_;
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                delete tmp;
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            }
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            data_.last_ptr_ = &data_.first_;
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        }
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        void erase(const_iterator i, const_iterator j) {
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            node** ptr = &data_.first_;
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            while(*ptr != i.ptr_) {
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                ptr = &(*ptr)->next_;
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            }
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            while(*ptr != j.ptr_) {
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                node* to_delete = *ptr;
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                *ptr = (*ptr)->next_;
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                --data_.size_;
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                delete to_delete;
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            }
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            if(!*ptr) data_.last_ptr_ = ptr;
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        }
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        bool empty() const {
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            return !data_.size_;
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        }
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        size_type size() const {
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            return data_.size_;
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        }
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        void sort() {
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            sort(std::less<T>());
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        }
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        template <typename Less>
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        void sort(Less less = Less()) {
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            if(!empty()) merge_sort(&data_.first_,
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                    (std::numeric_limits<size_type>::max)(), less);
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        }
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        bool operator==(list const& y) const {
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            return size() == y.size() &&
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                test::equal(begin(), end(), y.begin());
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        }
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        bool operator!=(list const& y) const {
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            return !(*this == y);
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        }
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    private:
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        template <typename Less>
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        node** merge_sort(node** l, size_type recurse_limit, Less less)
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        {
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            node** ptr = &(*l)->next_;
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            for(size_type count = 0; count < recurse_limit && *ptr; ++count)
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            {
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                ptr = merge_adjacent_ranges(l, ptr,
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                        merge_sort(ptr, count, less), less);
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            }
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            return ptr;
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        }
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        template <typename Less>
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        node** merge_adjacent_ranges(node** first, node** second,
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                node** third, Less less)
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        {
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            for(;;) {
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                for(;;) {
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                    if(first == second) return third;
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                    if(less((*second)->value_, (*first)->value_)) break;
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                    first = &(*first)->next_;
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                }
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                swap_adjacent_ranges(first, second, third);
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                first = &(*first)->next_;
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                // Since the two ranges we just swapped, the order is now:
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                // first...third...second
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                for(;;) {
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                    if(first == third) return second;
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                    if(!less((*first)->value_, (*third)->value_)) break;
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                    first = &(*first)->next_;
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                }
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                swap_adjacent_ranges(first, third, second);
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                first = &(*first)->next_;
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            }
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        }
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        void swap_adjacent_ranges(node** first, node** second, node** third)
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        {
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            node* tmp = *first;
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            *first = *second;
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            *second = *third;
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            *third = tmp;
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            if(!*second) data_.last_ptr_ = second;
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        }
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    };
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}
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#endif
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