355 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
			
		
		
	
	
			355 lines
		
	
	
		
			11 KiB
		
	
	
	
		
			Plaintext
		
	
	
	
	
	
// Boost.Range library
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//
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//  Copyright Neil Groves 2009. Use, modification and
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//  distribution is subject to the Boost Software License, Version
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//  1.0. (See accompanying file LICENSE_1_0.txt or copy at
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//  http://www.boost.org/LICENSE_1_0.txt)
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//
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// Acknowledgements:
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// aschoedl contributed an improvement to the determination
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// of the Reference type parameter.
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//
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// Leonid Gershanovich reported Trac ticket 7376 about the dereference operator
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// requiring identical reference types due to using the ternary if.
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//
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// For more information, see http://www.boost.org/libs/range/
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//
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#ifndef BOOST_RANGE_DETAIL_JOIN_ITERATOR_HPP_INCLUDED
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#define BOOST_RANGE_DETAIL_JOIN_ITERATOR_HPP_INCLUDED
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#include <iterator>
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#include <boost/assert.hpp>
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#include <boost/iterator/iterator_traits.hpp>
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#include <boost/iterator/iterator_facade.hpp>
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#include <boost/range/begin.hpp>
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#include <boost/range/end.hpp>
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#include <boost/range/empty.hpp>
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#include <boost/range/detail/demote_iterator_traversal_tag.hpp>
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#include <boost/range/value_type.hpp>
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#include <boost/type_traits/add_const.hpp>
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#include <boost/type_traits/add_reference.hpp>
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#include <boost/type_traits/remove_const.hpp>
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#include <boost/type_traits/remove_reference.hpp>
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#include <boost/next_prior.hpp>
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namespace boost
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{
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    namespace range_detail
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    {
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template<typename Iterator1, typename Iterator2>
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struct join_iterator_link
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{
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public:
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    join_iterator_link(Iterator1 last1, Iterator2 first2)
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        :    last1(last1)
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        ,    first2(first2)
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    {
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    }
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    Iterator1 last1;
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    Iterator2 first2;
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private:
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    join_iterator_link() /* = delete */ ;
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};
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class join_iterator_begin_tag {};
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class join_iterator_end_tag {};
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template<typename Iterator1
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       , typename Iterator2
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       , typename Reference
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>
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class join_iterator_union
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{
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public:
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    typedef Iterator1 iterator1_t;
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    typedef Iterator2 iterator2_t;
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    join_iterator_union() {}
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    join_iterator_union(unsigned int /*selected*/, const iterator1_t& it1, const iterator2_t& it2) : m_it1(it1), m_it2(it2) {}
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    iterator1_t& it1() { return m_it1; }
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    const iterator1_t& it1() const { return m_it1; }
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    iterator2_t& it2() { return m_it2; }
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    const iterator2_t& it2() const { return m_it2; }
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    Reference dereference(unsigned int selected) const
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    {
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        if (selected)
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            return *m_it2;
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        return *m_it1;
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    }
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    bool equal(const join_iterator_union& other, unsigned int selected) const
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    {
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        return selected
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            ? m_it2 == other.m_it2
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            : m_it1 == other.m_it1;
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    }
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private:
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    iterator1_t m_it1;
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    iterator2_t m_it2;
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};
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template<class Iterator, class Reference>
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class join_iterator_union<Iterator, Iterator, Reference>
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{
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public:
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    typedef Iterator iterator1_t;
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    typedef Iterator iterator2_t;
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    join_iterator_union() {}
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    join_iterator_union(unsigned int selected, const iterator1_t& it1, const iterator2_t& it2)
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        : m_it(selected ? it2 : it1)
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    {
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    }
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    iterator1_t& it1() { return m_it; }
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    const iterator1_t& it1() const { return m_it; }
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    iterator2_t& it2() { return m_it; }
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    const iterator2_t& it2() const { return m_it; }
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    Reference dereference(unsigned int) const
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    {
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        return *m_it;
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    }
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    bool equal(const join_iterator_union& other,
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               unsigned int /*selected*/) const
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    {
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        return m_it == other.m_it;
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    }
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private:
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    iterator1_t m_it;
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};
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template<typename Iterator1
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       , typename Iterator2
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       , typename ValueType = typename iterator_value<Iterator1>::type
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       // find least demanding, commonly supported reference type, in the order &, const&, and by-value:
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       , typename Reference = typename mpl::if_c<
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                !is_reference<typename iterator_reference<Iterator1>::type>::value
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             || !is_reference<typename iterator_reference<Iterator2>::type>::value,
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                        typename remove_const<
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                            typename remove_reference<
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                                typename iterator_reference<Iterator1>::type
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                            >::type
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                        >::type,
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                        typename mpl::if_c<
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                            is_const<
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                                typename remove_reference<
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                                    typename iterator_reference<Iterator1>::type
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                                >::type
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                            >::value
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                            || is_const<
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                                typename remove_reference<
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                                    typename iterator_reference<Iterator2>::type
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                                >::type
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                            >::value,
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                            typename add_const<
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                                typename iterator_reference<Iterator1>::type
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                            >::type,
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                            typename iterator_reference<Iterator1>::type
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                        >::type
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                    >::type
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       , typename Traversal = typename demote_iterator_traversal_tag<
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                                  typename iterator_traversal<Iterator1>::type
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                                , typename iterator_traversal<Iterator2>::type>::type
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>
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class join_iterator
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    : public iterator_facade<join_iterator<Iterator1,Iterator2,ValueType,Reference,Traversal>, ValueType, Traversal, Reference>
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{
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    typedef join_iterator_link<Iterator1, Iterator2> link_t;
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    typedef join_iterator_union<Iterator1, Iterator2, Reference> iterator_union;
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public:
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    typedef Iterator1 iterator1_t;
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    typedef Iterator2 iterator2_t;
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    join_iterator()
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        : m_section(0u)
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        , m_it(0u, iterator1_t(), iterator2_t())
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        , m_link(link_t(iterator1_t(), iterator2_t()))
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    {}
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    join_iterator(unsigned int section, Iterator1 current1, Iterator1 last1, Iterator2 first2, Iterator2 current2)
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        : m_section(section)
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        , m_it(section, current1, current2)
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        , m_link(link_t(last1, first2))
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        {
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        }
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    template<typename Range1, typename Range2>
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    join_iterator(Range1& r1, Range2& r2, join_iterator_begin_tag)
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        : m_section(boost::empty(r1) ? 1u : 0u)
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        , m_it(boost::empty(r1) ? 1u : 0u, boost::begin(r1), boost::begin(r2))
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        , m_link(link_t(boost::end(r1), boost::begin(r2)))
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    {
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    }
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    template<typename Range1, typename Range2>
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    join_iterator(const Range1& r1, const Range2& r2, join_iterator_begin_tag)
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        : m_section(boost::empty(r1) ? 1u : 0u)
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        , m_it(boost::empty(r1) ? 1u : 0u, boost::const_begin(r1), boost::const_begin(r2))
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        , m_link(link_t(boost::const_end(r1), boost::const_begin(r2)))
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    {
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    }
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    template<typename Range1, typename Range2>
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    join_iterator(Range1& r1, Range2& r2, join_iterator_end_tag)
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        : m_section(1u)
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        , m_it(1u, boost::end(r1), boost::end(r2))
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        , m_link(link_t(boost::end(r1), boost::begin(r2)))
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    {
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    }
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    template<typename Range1, typename Range2>
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    join_iterator(const Range1& r1, const Range2& r2, join_iterator_end_tag)
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        : m_section(1u)
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        , m_it(1u, boost::const_end(r1), boost::const_end(r2))
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        , m_link(link_t(boost::const_end(r1), boost::const_begin(r2)))
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    {
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    }
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private:
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    void increment()
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    {
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        if (m_section)
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            ++m_it.it2();
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        else
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        {
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            ++m_it.it1();
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            if (m_it.it1() == m_link.last1)
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            {
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                m_it.it2() = m_link.first2;
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                m_section = 1u;
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            }
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        }
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    }
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    void decrement()
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    {
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        if (m_section)
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        {
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            if (m_it.it2() == m_link.first2)
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            {
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                m_it.it1() = boost::prior(m_link.last1);
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                m_section = 0u;
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            }
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            else
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                --m_it.it2();
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        }
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        else
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            --m_it.it1();
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    }
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    typename join_iterator::reference dereference() const
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    {
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        return m_it.dereference(m_section);
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    }
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    bool equal(const join_iterator& other) const
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    {
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        return m_section == other.m_section
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            && m_it.equal(other.m_it, m_section);
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    }
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    void advance(typename join_iterator::difference_type offset)
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    {
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        if (m_section)
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            advance_from_range2(offset);
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        else
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            advance_from_range1(offset);
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    }
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    typename join_iterator::difference_type distance_to(const join_iterator& other) const
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    {
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        typename join_iterator::difference_type result;
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        if (m_section)
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        {
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            if (other.m_section)
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                result = other.m_it.it2() - m_it.it2();
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            else
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            {
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                result = (m_link.first2 - m_it.it2())
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                       + (other.m_it.it1() - m_link.last1);
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                BOOST_ASSERT( result <= 0 );
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            }
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        }
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        else
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        {
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            if (other.m_section)
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            {
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                result = (m_link.last1 - m_it.it1())
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                       + (other.m_it.it2() - m_link.first2);
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            }
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            else
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                result = other.m_it.it1() - m_it.it1();
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        }
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        return result;
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    }
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    void advance_from_range2(typename join_iterator::difference_type offset)
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    {
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        typedef typename join_iterator::difference_type difference_t;
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        BOOST_ASSERT( m_section == 1u );
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        if (offset < 0)
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        {
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            difference_t r2_dist = m_link.first2 - m_it.it2();
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            BOOST_ASSERT( r2_dist <= 0 );
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            if (offset >= r2_dist)
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                std::advance(m_it.it2(), offset);
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            else
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            {
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                difference_t r1_dist = offset - r2_dist;
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                BOOST_ASSERT( r1_dist <= 0 );
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                m_it.it1() = m_link.last1 + r1_dist;
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                m_section = 0u;
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            }
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        }
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        else
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            std::advance(m_it.it2(), offset);
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    }
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    void advance_from_range1(typename join_iterator::difference_type offset)
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    {
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        typedef typename join_iterator::difference_type difference_t;
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        BOOST_ASSERT( m_section == 0u );
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        if (offset > 0)
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        {
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            difference_t r1_dist = m_link.last1 - m_it.it1();
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            BOOST_ASSERT( r1_dist >= 0 );
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            if (offset < r1_dist)
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                std::advance(m_it.it1(), offset);
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            else
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            {
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                difference_t r2_dist = offset - r1_dist;
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                BOOST_ASSERT( r2_dist >= 0 );
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                m_it.it2() = m_link.first2 + r2_dist;
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                m_section = 1u;
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            }
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        }
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        else
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            std::advance(m_it.it1(), offset);
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    }
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    unsigned int m_section;
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    iterator_union m_it;
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    link_t m_link;
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    friend class ::boost::iterator_core_access;
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};
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    } // namespace range_detail
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} // namespace boost
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#endif // include guard
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