431 lines
16 KiB
C++
431 lines
16 KiB
C++
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//////////////////////////////////////////////////////////////////////////////
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//
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// This file is the adaptation for Interprocess of boost/shared_ptr.hpp
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//
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// (C) Copyright Greg Colvin and Beman Dawes 1998, 1999.
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// (C) Copyright Peter Dimov 2001, 2002, 2003
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// (C) Copyright Ion Gaztanaga 2006-2012.
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// Distributed under the Boost Software License, Version 1.0.
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// (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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// See http://www.boost.org/libs/interprocess for documentation.
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//
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//////////////////////////////////////////////////////////////////////////////
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#ifndef BOOST_INTERPROCESS_SHARED_PTR_HPP_INCLUDED
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#define BOOST_INTERPROCESS_SHARED_PTR_HPP_INCLUDED
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#ifndef BOOST_CONFIG_HPP
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# include <boost/config.hpp>
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#endif
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#
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#if defined(BOOST_HAS_PRAGMA_ONCE)
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# pragma once
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#endif
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#include <boost/interprocess/detail/config_begin.hpp>
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#include <boost/interprocess/detail/workaround.hpp>
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#include <boost/interprocess/detail/utilities.hpp>
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#include <boost/interprocess/detail/cast_tags.hpp>
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#include <boost/assert.hpp>
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#include <boost/interprocess/smart_ptr/detail/shared_count.hpp>
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#include <boost/interprocess/detail/mpl.hpp>
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#include <boost/interprocess/detail/nothrow.hpp>
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#include <boost/move/utility_core.hpp>
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#include <boost/interprocess/detail/type_traits.hpp>
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#include <boost/interprocess/allocators/allocator.hpp>
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#include <boost/interprocess/smart_ptr/deleter.hpp>
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#include <boost/static_assert.hpp>
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#include <boost/intrusive/pointer_traits.hpp>
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#include <iosfwd> // for std::basic_ostream
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//!\file
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//!Describes the smart pointer shared_ptr
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namespace boost{
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namespace interprocess{
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template<class T, class VoidAllocator, class Deleter> class weak_ptr;
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template<class T, class VoidAllocator, class Deleter> class enable_shared_from_this;
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namespace ipcdetail{
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template<class T, class VoidAllocator, class Deleter>
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inline void sp_enable_shared_from_this
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(shared_count<T, VoidAllocator, Deleter> const & pn
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,enable_shared_from_this<T, VoidAllocator, Deleter> const*pe
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,T *ptr)
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{
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(void)ptr;
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if(pe != 0){
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pe->_internal_weak_this._internal_assign(pn);
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}
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}
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template<class T, class VoidAllocator, class Deleter>
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inline void sp_enable_shared_from_this(shared_count<T, VoidAllocator, Deleter> const &, ...)
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{}
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} // namespace ipcdetail
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//!shared_ptr stores a pointer to a dynamically allocated object.
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//!The object pointed to is guaranteed to be deleted when the last shared_ptr pointing to
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//!it is destroyed or reset.
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//!
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//!shared_ptr is parameterized on
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//!T (the type of the object pointed to), VoidAllocator (the void allocator to be used
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//!to allocate the auxiliary data) and Deleter (the deleter whose
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//!operator() will be used to delete the object.
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//!
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//!The internal pointer will be of the same pointer type as typename
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//!VoidAllocator::pointer type (that is, if typename VoidAllocator::pointer is
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//!offset_ptr<void>, the internal pointer will be offset_ptr<T>).
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//!
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//!Because the implementation uses reference counting, cycles of shared_ptr
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//!instances will not be reclaimed. For example, if main() holds a
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//!shared_ptr to A, which directly or indirectly holds a shared_ptr back
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//!to A, A's use count will be 2. Destruction of the original shared_ptr
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//!will leave A dangling with a use count of 1.
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//!Use weak_ptr to "break cycles."
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template<class T, class VoidAllocator, class Deleter>
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class shared_ptr
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{
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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private:
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typedef shared_ptr<T, VoidAllocator, Deleter> this_type;
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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public:
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typedef T element_type;
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typedef T value_type;
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typedef typename boost::container::
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allocator_traits<VoidAllocator>::pointer void_ptr;
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typedef typename boost::intrusive::
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pointer_traits<void_ptr>::template
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rebind_pointer<T>::type pointer;
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typedef typename ipcdetail::add_reference
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<value_type>::type reference;
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typedef typename ipcdetail::add_reference
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<const value_type>::type const_reference;
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typedef typename boost::intrusive::
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pointer_traits<void_ptr>::template
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rebind_pointer<const Deleter>::type const_deleter_pointer;
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typedef typename boost::intrusive::
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pointer_traits<void_ptr>::template
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rebind_pointer<const VoidAllocator>::type const_allocator_pointer;
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BOOST_COPYABLE_AND_MOVABLE(shared_ptr)
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public:
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//!Constructs an empty shared_ptr.
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//!Use_count() == 0 && get()== 0.
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shared_ptr()
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: m_pn() // never throws
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{}
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//!Constructs a shared_ptr that owns the pointer p. Auxiliary data will be allocated
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//!with a copy of a and the object will be deleted with a copy of d.
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//!Requirements: Deleter and A's copy constructor must not throw.
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explicit shared_ptr(const pointer&p, const VoidAllocator &a = VoidAllocator(), const Deleter &d = Deleter())
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: m_pn(p, a, d)
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{
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//Check that the pointer passed is of the same type that
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//the pointer the allocator defines or it's a raw pointer
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typedef typename boost::intrusive::
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pointer_traits<pointer>::template
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rebind_pointer<T>::type ParameterPointer;
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BOOST_STATIC_ASSERT((ipcdetail::is_same<pointer, ParameterPointer>::value) ||
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(ipcdetail::is_pointer<pointer>::value));
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ipcdetail::sp_enable_shared_from_this<T, VoidAllocator, Deleter>( m_pn, ipcdetail::to_raw_pointer(p), ipcdetail::to_raw_pointer(p) );
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}
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//!Copy constructs a shared_ptr. If r is empty, constructs an empty shared_ptr. Otherwise, constructs
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//!a shared_ptr that shares ownership with r. Never throws.
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shared_ptr(const shared_ptr &r)
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: m_pn(r.m_pn) // never throws
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{}
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//!Constructs a shared_ptr that shares ownership with other and stores p.
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//!Postconditions: get() == p && use_count() == r.use_count().
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//!Throws: nothing.
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shared_ptr(const shared_ptr &other, const pointer &p)
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: m_pn(other.m_pn, p)
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{}
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//!If r is empty, constructs an empty shared_ptr. Otherwise, constructs
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//!a shared_ptr that shares ownership with r. Never throws.
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template<class Y>
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shared_ptr(shared_ptr<Y, VoidAllocator, Deleter> const & r)
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: m_pn(r.m_pn) // never throws
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{}
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//!Constructs a shared_ptr that shares ownership with r and stores
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//!a copy of the pointer stored in r.
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template<class Y>
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explicit shared_ptr(weak_ptr<Y, VoidAllocator, Deleter> const & r)
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: m_pn(r.m_pn) // may throw
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{}
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//!Move-Constructs a shared_ptr that takes ownership of other resource and
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//!other is put in default-constructed state.
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//!Throws: nothing.
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explicit shared_ptr(BOOST_RV_REF(shared_ptr) other)
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: m_pn()
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{ this->swap(other); }
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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template<class Y>
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shared_ptr(shared_ptr<Y, VoidAllocator, Deleter> const & r, ipcdetail::static_cast_tag)
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: m_pn( pointer(static_cast<T*>(ipcdetail::to_raw_pointer(r.m_pn.to_raw_pointer())))
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, r.m_pn)
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{}
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template<class Y>
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shared_ptr(shared_ptr<Y, VoidAllocator, Deleter> const & r, ipcdetail::const_cast_tag)
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: m_pn( pointer(const_cast<T*>(ipcdetail::to_raw_pointer(r.m_pn.to_raw_pointer())))
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, r.m_pn)
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{}
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template<class Y>
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shared_ptr(shared_ptr<Y, VoidAllocator, Deleter> const & r, ipcdetail::dynamic_cast_tag)
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: m_pn( pointer(dynamic_cast<T*>(ipcdetail::to_raw_pointer(r.m_pn.to_raw_pointer())))
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, r.m_pn)
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{
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if(!m_pn.to_raw_pointer()){ // need to allocate new counter -- the cast failed
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m_pn = ipcdetail::shared_count<T, VoidAllocator, Deleter>();
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}
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}
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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//!Equivalent to shared_ptr(r).swap(*this).
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//!Never throws
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template<class Y>
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shared_ptr & operator=(shared_ptr<Y, VoidAllocator, Deleter> const & r)
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{
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m_pn = r.m_pn; // shared_count::op= doesn't throw
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return *this;
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}
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//!Equivalent to shared_ptr(r).swap(*this).
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//!Never throws
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shared_ptr & operator=(BOOST_COPY_ASSIGN_REF(shared_ptr) r)
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{
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m_pn = r.m_pn; // shared_count::op= doesn't throw
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return *this;
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}
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//!Move-assignment. Equivalent to shared_ptr(other).swap(*this).
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//!Never throws
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shared_ptr & operator=(BOOST_RV_REF(shared_ptr) other) // never throws
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{
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this_type(other).swap(*this);
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return *this;
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}
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//!This is equivalent to:
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//!this_type().swap(*this);
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void reset()
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{
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this_type().swap(*this);
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}
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//!This is equivalent to:
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//!this_type(p, a, d).swap(*this);
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template<class Pointer>
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void reset(const Pointer &p, const VoidAllocator &a = VoidAllocator(), const Deleter &d = Deleter())
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{
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//Check that the pointer passed is of the same type that
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//the pointer the allocator defines or it's a raw pointer
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typedef typename boost::intrusive::
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pointer_traits<Pointer>::template
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rebind_pointer<T>::type ParameterPointer;
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BOOST_STATIC_ASSERT((ipcdetail::is_same<pointer, ParameterPointer>::value) ||
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(ipcdetail::is_pointer<Pointer>::value));
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this_type(p, a, d).swap(*this);
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}
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template<class Y>
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void reset(shared_ptr<Y, VoidAllocator, Deleter> const & r, const pointer &p)
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{
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this_type(r, p).swap(*this);
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}
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//!Returns a reference to the
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//!pointed type
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reference operator* () const // never throws
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{ BOOST_ASSERT(m_pn.to_raw_pointer() != 0); return *m_pn.to_raw_pointer(); }
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//!Returns the pointer pointing
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//!to the owned object
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pointer operator-> () const // never throws
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{ BOOST_ASSERT(m_pn.to_raw_pointer() != 0); return m_pn.to_raw_pointer(); }
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//!Returns the pointer pointing
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//!to the owned object
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pointer get() const // never throws
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{ return m_pn.to_raw_pointer(); }
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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// implicit conversion to "bool"
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void unspecified_bool_type_func() const {}
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typedef void (this_type::*unspecified_bool_type)() const;
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operator unspecified_bool_type() const // never throws
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{ return !m_pn.to_raw_pointer() ? 0 : &this_type::unspecified_bool_type_func; }
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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//!Not operator.
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//!Returns true if this->get() != 0, false otherwise
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bool operator! () const // never throws
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{ return !m_pn.to_raw_pointer(); }
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//!Returns use_count() == 1.
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//!unique() might be faster than use_count()
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bool unique() const // never throws
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{ return m_pn.unique(); }
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//!Returns the number of shared_ptr objects, *this included,
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//!that share ownership with *this, or an unspecified nonnegative
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//!value when *this is empty.
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//!use_count() is not necessarily efficient. Use only for
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//!debugging and testing purposes, not for production code.
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long use_count() const // never throws
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{ return m_pn.use_count(); }
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//!Exchanges the contents of the two
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//!smart pointers.
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void swap(shared_ptr<T, VoidAllocator, Deleter> & other) // never throws
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{ m_pn.swap(other.m_pn); }
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#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
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template<class T2, class A2, class Deleter2>
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bool _internal_less(shared_ptr<T2, A2, Deleter2> const & rhs) const
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{ return m_pn < rhs.m_pn; }
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const_deleter_pointer get_deleter() const
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{ return m_pn.get_deleter(); }
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// const_allocator_pointer get_allocator() const
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// { return m_pn.get_allocator(); }
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private:
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template<class T2, class A2, class Deleter2> friend class shared_ptr;
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template<class T2, class A2, class Deleter2> friend class weak_ptr;
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ipcdetail::shared_count<T, VoidAllocator, Deleter> m_pn; // reference counter
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#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
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}; // shared_ptr
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template<class T, class VoidAllocator, class Deleter, class U, class VoidAllocator2, class Deleter2> inline
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bool operator==(shared_ptr<T, VoidAllocator, Deleter> const & a, shared_ptr<U, VoidAllocator2, Deleter2> const & b)
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{ return a.get() == b.get(); }
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template<class T, class VoidAllocator, class Deleter, class U, class VoidAllocator2, class Deleter2> inline
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bool operator!=(shared_ptr<T, VoidAllocator, Deleter> const & a, shared_ptr<U, VoidAllocator2, Deleter2> const & b)
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{ return a.get() != b.get(); }
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template<class T, class VoidAllocator, class Deleter, class U, class VoidAllocator2, class Deleter2> inline
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bool operator<(shared_ptr<T, VoidAllocator, Deleter> const & a, shared_ptr<U, VoidAllocator2, Deleter2> const & b)
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{ return a._internal_less(b); }
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template<class T, class VoidAllocator, class Deleter> inline
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void swap(shared_ptr<T, VoidAllocator, Deleter> & a, shared_ptr<T, VoidAllocator, Deleter> & b)
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{ a.swap(b); }
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template<class T, class VoidAllocator, class Deleter, class U> inline
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shared_ptr<T, VoidAllocator, Deleter> static_pointer_cast(shared_ptr<U, VoidAllocator, Deleter> const & r)
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{ return shared_ptr<T, VoidAllocator, Deleter>(r, ipcdetail::static_cast_tag()); }
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template<class T, class VoidAllocator, class Deleter, class U> inline
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shared_ptr<T, VoidAllocator, Deleter> const_pointer_cast(shared_ptr<U, VoidAllocator, Deleter> const & r)
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{ return shared_ptr<T, VoidAllocator, Deleter>(r, ipcdetail::const_cast_tag()); }
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template<class T, class VoidAllocator, class Deleter, class U> inline
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shared_ptr<T, VoidAllocator, Deleter> dynamic_pointer_cast(shared_ptr<U, VoidAllocator, Deleter> const & r)
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{ return shared_ptr<T, VoidAllocator, Deleter>(r, ipcdetail::dynamic_cast_tag()); }
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// to_raw_pointer() enables boost::mem_fn to recognize shared_ptr
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template<class T, class VoidAllocator, class Deleter> inline
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T * to_raw_pointer(shared_ptr<T, VoidAllocator, Deleter> const & p)
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{ return p.get(); }
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// operator<<
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template<class E, class T, class Y, class VoidAllocator, class Deleter> inline
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std::basic_ostream<E, T> & operator<<
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(std::basic_ostream<E, T> & os, shared_ptr<Y, VoidAllocator, Deleter> const & p)
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{ os << p.get(); return os; }
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//!Returns the type of a shared pointer
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//!of type T with the allocator boost::interprocess::allocator allocator
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//!and boost::interprocess::deleter deleter
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//!that can be constructed in the given managed segment type.
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template<class T, class ManagedMemory>
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struct managed_shared_ptr
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{
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typedef typename ManagedMemory::template allocator<void>::type void_allocator;
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typedef typename ManagedMemory::template deleter<T>::type deleter;
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typedef shared_ptr< T, void_allocator, deleter> type;
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};
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//!Returns an instance of a shared pointer constructed
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//!with the default allocator and deleter from a pointer
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//!of type T that has been allocated in the passed managed segment
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template<class T, class ManagedMemory>
|
||
|
inline typename managed_shared_ptr<T, ManagedMemory>::type
|
||
|
make_managed_shared_ptr(T *constructed_object, ManagedMemory &managed_memory)
|
||
|
{
|
||
|
return typename managed_shared_ptr<T, ManagedMemory>::type
|
||
|
( constructed_object
|
||
|
, managed_memory.template get_allocator<void>()
|
||
|
, managed_memory.template get_deleter<T>()
|
||
|
);
|
||
|
}
|
||
|
|
||
|
//!Returns an instance of a shared pointer constructed
|
||
|
//!with the default allocator and deleter from a pointer
|
||
|
//!of type T that has been allocated in the passed managed segment.
|
||
|
//!Does not throw, return null shared pointer in error.
|
||
|
template<class T, class ManagedMemory>
|
||
|
inline typename managed_shared_ptr<T, ManagedMemory>::type
|
||
|
make_managed_shared_ptr(T *constructed_object, ManagedMemory &managed_memory, const std::nothrow_t &)
|
||
|
{
|
||
|
BOOST_TRY{
|
||
|
return typename managed_shared_ptr<T, ManagedMemory>::type
|
||
|
( constructed_object
|
||
|
, managed_memory.template get_allocator<void>()
|
||
|
, managed_memory.template get_deleter<T>()
|
||
|
);
|
||
|
}
|
||
|
BOOST_CATCH(...){
|
||
|
return typename managed_shared_ptr<T, ManagedMemory>::type();
|
||
|
} BOOST_CATCH_END
|
||
|
}
|
||
|
|
||
|
|
||
|
} // namespace interprocess
|
||
|
|
||
|
#if !defined(BOOST_INTERPROCESS_DOXYGEN_INVOKED)
|
||
|
|
||
|
#if defined(_MSC_VER) && (_MSC_VER < 1400)
|
||
|
// to_raw_pointer() enables boost::mem_fn to recognize shared_ptr
|
||
|
template<class T, class VoidAllocator, class Deleter> inline
|
||
|
T * to_raw_pointer(boost::interprocess::shared_ptr<T, VoidAllocator, Deleter> const & p)
|
||
|
{ return p.get(); }
|
||
|
#endif
|
||
|
|
||
|
#endif //#ifndef BOOST_INTERPROCESS_DOXYGEN_INVOKED
|
||
|
|
||
|
} // namespace boost
|
||
|
|
||
|
#include <boost/interprocess/detail/config_end.hpp>
|
||
|
|
||
|
#endif // #ifndef BOOST_INTERPROCESS_SHARED_PTR_HPP_INCLUDED
|