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			189 lines
		
	
	
		
			4.1 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			189 lines
		
	
	
		
			4.1 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
#ifndef BOOST_WEAK_PTR_HPP_INCLUDED
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#define BOOST_WEAK_PTR_HPP_INCLUDED
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//
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//  weak_ptr.hpp
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//
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//  Copyright (c) 2001, 2002, 2003 Peter Dimov
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//
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// Distributed under the Boost Software License, Version 1.0. (See
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// 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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//  See http://www.boost.org/libs/smart_ptr/weak_ptr.htm for documentation.
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//
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#include <memory> // boost.TR1 include order fix
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#include <boost/detail/shared_count.hpp>
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#include <boost/shared_ptr.hpp>
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#ifdef BOOST_MSVC  // moved here to work around VC++ compiler crash
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# pragma warning(push)
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# pragma warning(disable:4284) // odd return type for operator->
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#endif
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namespace boost
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{
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template<class T> class weak_ptr
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{
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private:
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    // Borland 5.5.1 specific workarounds
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    typedef weak_ptr<T> this_type;
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public:
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    typedef T element_type;
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    weak_ptr(): px(0), pn() // never throws in 1.30+
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    {
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    }
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//  generated copy constructor, assignment, destructor are fine
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//
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//  The "obvious" converting constructor implementation:
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//
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//  template<class Y>
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//  weak_ptr(weak_ptr<Y> const & r): px(r.px), pn(r.pn) // never throws
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//  {
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//  }
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//
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//  has a serious problem.
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//
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//  r.px may already have been invalidated. The px(r.px)
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//  conversion may require access to *r.px (virtual inheritance).
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//
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//  It is not possible to avoid spurious access violations since
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//  in multithreaded programs r.px may be invalidated at any point.
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//
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    template<class Y>
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    weak_ptr(weak_ptr<Y> const & r): pn(r.pn) // never throws
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    {
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        px = r.lock().get();
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    }
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    template<class Y>
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    weak_ptr(shared_ptr<Y> const & r): px(r.px), pn(r.pn) // never throws
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    {
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    }
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#if !defined(BOOST_MSVC) || (BOOST_MSVC >= 1300)
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    template<class Y>
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    weak_ptr & operator=(weak_ptr<Y> const & r) // never throws
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    {
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        px = r.lock().get();
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        pn = r.pn;
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        return *this;
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    }
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    template<class Y>
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    weak_ptr & operator=(shared_ptr<Y> const & r) // never throws
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    {
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        px = r.px;
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        pn = r.pn;
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        return *this;
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    }
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#endif
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    shared_ptr<T> lock() const // never throws
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    {
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#if defined(BOOST_HAS_THREADS)
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        // optimization: avoid throw overhead
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        if(expired())
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        {
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            return shared_ptr<element_type>();
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        }
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        try
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        {
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            return shared_ptr<element_type>(*this);
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        }
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        catch(bad_weak_ptr const &)
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        {
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            // Q: how can we get here?
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            // A: another thread may have invalidated r after the use_count test above.
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            return shared_ptr<element_type>();
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        }
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#else
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        // optimization: avoid try/catch overhead when single threaded
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        return expired()? shared_ptr<element_type>(): shared_ptr<element_type>(*this);
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#endif
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    }
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    long use_count() const // never throws
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    {
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        return pn.use_count();
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    }
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    bool expired() const // never throws
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    {
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        return pn.use_count() == 0;
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    }
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    void reset() // never throws in 1.30+
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    {
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        this_type().swap(*this);
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    }
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    void swap(this_type & other) // never throws
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    {
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        std::swap(px, other.px);
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        pn.swap(other.pn);
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    }
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    void _internal_assign(T * px2, boost::detail::shared_count const & pn2)
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    {
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        px = px2;
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        pn = pn2;
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    }
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    template<class Y> bool _internal_less(weak_ptr<Y> const & rhs) const
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    {
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        return pn < rhs.pn;
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    }
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// Tasteless as this may seem, making all members public allows member templates
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// to work in the absence of member template friends. (Matthew Langston)
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#ifndef BOOST_NO_MEMBER_TEMPLATE_FRIENDS
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private:
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    template<class Y> friend class weak_ptr;
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    template<class Y> friend class shared_ptr;
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#endif
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    T * px;                       // contained pointer
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    boost::detail::weak_count pn; // reference counter
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};  // weak_ptr
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template<class T, class U> inline bool operator<(weak_ptr<T> const & a, weak_ptr<U> const & b)
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{
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    return a._internal_less(b);
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}
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template<class T> void swap(weak_ptr<T> & a, weak_ptr<T> & b)
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{
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    a.swap(b);
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}
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} // namespace boost
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#ifdef BOOST_MSVC
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# pragma warning(pop)
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#endif    
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#endif  // #ifndef BOOST_WEAK_PTR_HPP_INCLUDED
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