forked from boostorg/container
git grep -h -B1 "^#\s*pragma once" | grep -v pragma | sort | uniq is now clean. [SVN r85952]
159 lines
5.8 KiB
C++
159 lines
5.8 KiB
C++
///////////////////////////////////////////////////////////////////////////////
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//
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// (C) Copyright Ion Gaztanaga 2005-2012. Distributed under the Boost
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// Software License, Version 1.0. (See accompanying file
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// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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//
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// See http://www.boost.org/libs/container for documentation.
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//
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///////////////////////////////////////////////////////////////////////////////
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#ifndef BOOST_CONTAINER_HEAP_ALLOCATOR_V1_HPP
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#define BOOST_CONTAINER_HEAP_ALLOCATOR_V1_HPP
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#if (defined _MSC_VER)
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# pragma once
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#endif
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#include <boost/container/detail/config_begin.hpp>
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#include <boost/container/detail/workaround.hpp>
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#include <boost/intrusive/pointer_traits.hpp>
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#include <boost/container/container_fwd.hpp>
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#include <boost/container/detail/allocation_type.hpp>
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#include <boost/container/detail/utilities.hpp>
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#include <boost/container/detail/version_type.hpp>
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#include <boost/container/exceptions.hpp>
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#include <memory>
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#include <algorithm>
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#include <cstddef>
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//!\file
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//!Describes an heap_allocator_v1 that allocates portions of fixed size
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//!memory buffer (shared memory, mapped file...)
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namespace boost {
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namespace container {
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namespace test {
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//!An STL compatible heap_allocator_v1 that uses a segment manager as
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//!memory source. The internal pointer type will of the same type (raw, smart) as
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//!"typename SegmentManager::void_pointer" type. This allows
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//!placing the heap_allocator_v1 in shared memory, memory mapped-files, etc...*/
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template<class T, class SegmentManager>
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class heap_allocator_v1
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{
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private:
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typedef heap_allocator_v1<T, SegmentManager> self_t;
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typedef SegmentManager segment_manager;
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typedef typename segment_manager::void_pointer aux_pointer_t;
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typedef typename
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boost::pointer_to_other
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<aux_pointer_t, const void>::type cvoid_ptr;
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typedef typename boost::pointer_to_other
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<cvoid_ptr, segment_manager>::type alloc_ptr_t;
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template<class T2, class SegmentManager2>
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heap_allocator_v1& operator=(const heap_allocator_v1<T2, SegmentManager2>&);
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heap_allocator_v1& operator=(const heap_allocator_v1&);
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alloc_ptr_t mp_mngr;
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public:
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typedef T value_type;
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typedef typename boost::pointer_to_other
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<cvoid_ptr, T>::type pointer;
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typedef typename boost::
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pointer_to_other<pointer, const T>::type const_pointer;
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typedef typename detail::add_reference
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<value_type>::type reference;
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typedef typename detail::add_reference
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<const value_type>::type const_reference;
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typedef std::size_t size_type;
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typedef std::ptrdiff_t difference_type;
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//!Obtains an heap_allocator_v1 of other type
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template<class T2>
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struct rebind
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{
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typedef heap_allocator_v1<T2, SegmentManager> other;
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};
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//!Returns the segment manager. Never throws
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segment_manager* get_segment_manager()const
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{ return detail::get_pointer(mp_mngr); }
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/*
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//!Returns address of mutable object. Never throws
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pointer address(reference value) const
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{ return pointer(addressof(value)); }
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//!Returns address of non mutable object. Never throws
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const_pointer address(const_reference value) const
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{ return const_pointer(addressof(value)); }
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*/
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//!Constructor from the segment manager. Never throws
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heap_allocator_v1(segment_manager *segment_mngr)
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: mp_mngr(segment_mngr) { }
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//!Constructor from other heap_allocator_v1. Never throws
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heap_allocator_v1(const heap_allocator_v1 &other)
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: mp_mngr(other.get_segment_manager()){ }
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//!Constructor from related heap_allocator_v1. Never throws
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template<class T2>
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heap_allocator_v1(const heap_allocator_v1<T2, SegmentManager> &other)
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: mp_mngr(other.get_segment_manager()){}
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//!Allocates memory for an array of count elements.
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//!Throws boost::container::bad_alloc if there is no enough memory
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pointer allocate(size_type count, cvoid_ptr hint = 0)
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{ (void)hint; return ::new value_type[count]; }
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//!Deallocates memory previously allocated. Never throws
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void deallocate(const pointer &ptr, size_type)
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{ return ::delete[] detail::get_pointer(ptr) ; }
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//!Construct object, calling constructor.
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//!Throws if T(const T&) throws
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void construct(const pointer &ptr, const_reference value)
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{ new((void*)detail::get_pointer(ptr)) value_type(value); }
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//!Destroys object. Throws if object's destructor throws
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void destroy(const pointer &ptr)
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{ BOOST_ASSERT(ptr != 0); (*ptr).~value_type(); }
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//!Returns the number of elements that could be allocated. Never throws
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size_type max_size() const
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{ return mp_mngr->get_size(); }
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//!Swap segment manager. Does not throw. If each heap_allocator_v1 is placed in
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//!different memory segments, the result is undefined.
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friend void swap(self_t &alloc1, self_t &alloc2)
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{ boost::container::boost::container::swap_dispatch(alloc1.mp_mngr, alloc2.mp_mngr); }
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};
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//!Equality test for same type of heap_allocator_v1
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template<class T, class SegmentManager> inline
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bool operator==(const heap_allocator_v1<T , SegmentManager> &alloc1,
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const heap_allocator_v1<T, SegmentManager> &alloc2)
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{ return alloc1.get_segment_manager() == alloc2.get_segment_manager(); }
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//!Inequality test for same type of heap_allocator_v1
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template<class T, class SegmentManager> inline
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bool operator!=(const heap_allocator_v1<T, SegmentManager> &alloc1,
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const heap_allocator_v1<T, SegmentManager> &alloc2)
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{ return alloc1.get_segment_manager() != alloc2.get_segment_manager(); }
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} //namespace test {
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} //namespace container {
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} //namespace boost {
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#include <boost/container/detail/config_end.hpp>
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#endif //BOOST_CONTAINER_HEAP_ALLOCATOR_V1_HPP
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