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1 //////////////////////////////////////////////////////////////////////////////
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2 //
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3 // (C) Copyright Ion Gaztanaga 2005-2013. Distributed under the Boost
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4 // Software License, Version 1.0. (See accompanying file
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5 // LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
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6 //
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7 // See http://www.boost.org/libs/container for documentation.
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8 //
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9 //////////////////////////////////////////////////////////////////////////////
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10
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11 #ifndef BOOST_CONTAINER_ADAPTIVE_POOL_HPP
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12 #define BOOST_CONTAINER_ADAPTIVE_POOL_HPP
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13
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14 #ifndef BOOST_CONFIG_HPP
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15 # include <boost/config.hpp>
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16 #endif
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17
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18 #if defined(BOOST_HAS_PRAGMA_ONCE)
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19 # pragma once
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20 #endif
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21
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22 #include <boost/container/detail/config_begin.hpp>
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23 #include <boost/container/detail/workaround.hpp>
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24 #include <boost/container/container_fwd.hpp>
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25 #include <boost/container/detail/version_type.hpp>
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26 #include <boost/container/throw_exception.hpp>
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27 #include <boost/container/detail/adaptive_node_pool.hpp>
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28 #include <boost/container/detail/multiallocation_chain.hpp>
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29 #include <boost/container/detail/mpl.hpp>
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30 #include <boost/container/detail/alloc_lib_auto_link.hpp>
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31 #include <boost/container/detail/singleton.hpp>
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32 #include <boost/container/detail/placement_new.hpp>
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33
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34 #include <boost/assert.hpp>
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35 #include <boost/static_assert.hpp>
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36 #include <boost/move/utility_core.hpp>
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37 #include <cstddef>
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38
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39
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40 namespace boost {
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41 namespace container {
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42
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43 //!An STL node allocator that uses a modified DLMalloc as memory
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44 //!source.
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45 //!
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46 //!This node allocator shares a segregated storage between all instances
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47 //!of adaptive_pool with equal sizeof(T).
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48 //!
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49 //!NodesPerBlock is the number of nodes allocated at once when the allocator
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50 //!needs runs out of nodes. MaxFreeBlocks is the maximum number of totally free blocks
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51 //!that the adaptive node pool will hold. The rest of the totally free blocks will be
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52 //!deallocated to the memory manager.
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53 //!
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54 //!OverheadPercent is the (approximated) maximum size overhead (1-20%) of the allocator:
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55 //!(memory usable for nodes / total memory allocated from the memory allocator)
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56 template < class T
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57 , std::size_t NodesPerBlock BOOST_CONTAINER_DOCONLY(= ADP_nodes_per_block)
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58 , std::size_t MaxFreeBlocks BOOST_CONTAINER_DOCONLY(= ADP_max_free_blocks)
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59 , std::size_t OverheadPercent BOOST_CONTAINER_DOCONLY(= ADP_overhead_percent)
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60 BOOST_CONTAINER_DOCIGN(BOOST_MOVE_I unsigned Version)
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61 >
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62 class adaptive_pool
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63 {
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64 //!If Version is 1, the allocator is a STL conforming allocator. If Version is 2,
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65 //!the allocator offers advanced expand in place and burst allocation capabilities.
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66 public:
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67 typedef unsigned int allocation_type;
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68 typedef adaptive_pool
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69 <T, NodesPerBlock, MaxFreeBlocks, OverheadPercent
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70 BOOST_CONTAINER_DOCIGN(BOOST_MOVE_I Version)
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71 > self_t;
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72
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73 static const std::size_t nodes_per_block = NodesPerBlock;
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74 static const std::size_t max_free_blocks = MaxFreeBlocks;
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75 static const std::size_t overhead_percent = OverheadPercent;
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76 static const std::size_t real_nodes_per_block = NodesPerBlock;
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77
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78 BOOST_CONTAINER_DOCIGN(BOOST_STATIC_ASSERT((Version <=2)));
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79
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80 public:
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81 //-------
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82 typedef T value_type;
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83 typedef T * pointer;
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84 typedef const T * const_pointer;
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85 typedef typename ::boost::container::
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86 container_detail::unvoid<T>::type & reference;
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87 typedef const typename ::boost::container::
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88 container_detail::unvoid<T>::type & const_reference;
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89 typedef std::size_t size_type;
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90 typedef std::ptrdiff_t difference_type;
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91
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92 typedef boost::container::container_detail::
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93 version_type<self_t, Version> version;
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94
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95 #ifndef BOOST_CONTAINER_DOXYGEN_INVOKED
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96 typedef boost::container::container_detail::
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97 basic_multiallocation_chain<void*> multiallocation_chain_void;
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98 typedef boost::container::container_detail::
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99 transform_multiallocation_chain
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100 <multiallocation_chain_void, T> multiallocation_chain;
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101 #endif //#ifndef BOOST_CONTAINER_DOXYGEN_INVOKED
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102
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103 //!Obtains adaptive_pool from
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104 //!adaptive_pool
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105 template<class T2>
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106 struct rebind
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107 {
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108 typedef adaptive_pool
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109 < T2
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110 , NodesPerBlock
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111 , MaxFreeBlocks
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112 , OverheadPercent
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113 BOOST_CONTAINER_DOCIGN(BOOST_MOVE_I Version)
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114 > other;
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115 };
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116
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117 #ifndef BOOST_CONTAINER_DOXYGEN_INVOKED
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118 private:
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119 //!Not assignable from related adaptive_pool
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120 template<class T2, unsigned Version2, std::size_t N2, std::size_t F2>
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121 adaptive_pool& operator=
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122 (const adaptive_pool<T2, Version2, N2, F2>&);
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123
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124 //!Not assignable from other adaptive_pool
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125 adaptive_pool& operator=(const adaptive_pool&);
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126 #endif //#ifndef BOOST_CONTAINER_DOXYGEN_INVOKED
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127
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128 public:
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129 //!Default constructor
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130 adaptive_pool() BOOST_NOEXCEPT_OR_NOTHROW
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131 {}
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132
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133 //!Copy constructor from other adaptive_pool.
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134 adaptive_pool(const adaptive_pool &) BOOST_NOEXCEPT_OR_NOTHROW
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135 {}
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136
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137 //!Copy constructor from related adaptive_pool.
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138 template<class T2>
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139 adaptive_pool
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140 (const adaptive_pool<T2, NodesPerBlock, MaxFreeBlocks, OverheadPercent
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141 BOOST_CONTAINER_DOCIGN(BOOST_MOVE_I Version)> &) BOOST_NOEXCEPT_OR_NOTHROW
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142 {}
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143
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144 //!Destructor
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145 ~adaptive_pool() BOOST_NOEXCEPT_OR_NOTHROW
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146 {}
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147
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148 //!Returns the number of elements that could be allocated.
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149 //!Never throws
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150 size_type max_size() const BOOST_NOEXCEPT_OR_NOTHROW
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151 { return size_type(-1)/sizeof(T); }
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152
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153 //!Allocate memory for an array of count elements.
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154 //!Throws std::bad_alloc if there is no enough memory
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155 pointer allocate(size_type count, const void * = 0)
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156 {
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157 if(BOOST_UNLIKELY(count > this->max_size()))
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158 boost::container::throw_bad_alloc();
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159
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160 if(Version == 1 && count == 1){
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161 typedef typename container_detail::shared_adaptive_node_pool
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162 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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163 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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164 return pointer(static_cast<T*>(singleton_t::instance().allocate_node()));
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165 }
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166 else{
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167 return static_cast<pointer>(boost_cont_malloc(count*sizeof(T)));
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168 }
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169 }
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170
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171 //!Deallocate allocated memory.
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172 //!Never throws
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173 void deallocate(const pointer &ptr, size_type count) BOOST_NOEXCEPT_OR_NOTHROW
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174 {
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175 (void)count;
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176 if(Version == 1 && count == 1){
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177 typedef container_detail::shared_adaptive_node_pool
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178 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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179 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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180 singleton_t::instance().deallocate_node(ptr);
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181 }
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182 else{
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183 boost_cont_free(ptr);
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184 }
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185 }
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186
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187 pointer allocation_command(allocation_type command,
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188 size_type limit_size,
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189 size_type &prefer_in_recvd_out_size,
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190 pointer &reuse)
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191 {
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192 pointer ret = this->priv_allocation_command(command, limit_size, prefer_in_recvd_out_size, reuse);
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193 if(BOOST_UNLIKELY(!ret && !(command & BOOST_CONTAINER_NOTHROW_ALLOCATION)))
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194 boost::container::throw_bad_alloc();
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195 return ret;
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196 }
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197
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198 //!Returns maximum the number of objects the previously allocated memory
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199 //!pointed by p can hold.
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200 size_type size(pointer p) const BOOST_NOEXCEPT_OR_NOTHROW
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201 { return boost_cont_size(p); }
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202
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203 //!Allocates just one object. Memory allocated with this function
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204 //!must be deallocated only with deallocate_one().
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205 //!Throws bad_alloc if there is no enough memory
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206 pointer allocate_one()
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207 {
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208 typedef container_detail::shared_adaptive_node_pool
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209 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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210 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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211 return (pointer)singleton_t::instance().allocate_node();
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212 }
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213
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214 //!Allocates many elements of size == 1.
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215 //!Elements must be individually deallocated with deallocate_one()
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216 void allocate_individual(std::size_t num_elements, multiallocation_chain &chain)
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217 {
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218 typedef container_detail::shared_adaptive_node_pool
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219 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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220 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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221 singleton_t::instance().allocate_nodes(num_elements, static_cast<typename shared_pool_t::multiallocation_chain&>(chain));
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222 //typename shared_pool_t::multiallocation_chain ch;
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223 //singleton_t::instance().allocate_nodes(num_elements, ch);
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224 //chain.incorporate_after
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225 //(chain.before_begin(), (T*)&*ch.begin(), (T*)&*ch.last(), ch.size());
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226 }
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227
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228 //!Deallocates memory previously allocated with allocate_one().
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229 //!You should never use deallocate_one to deallocate memory allocated
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230 //!with other functions different from allocate_one(). Never throws
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231 void deallocate_one(pointer p) BOOST_NOEXCEPT_OR_NOTHROW
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232 {
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233 typedef container_detail::shared_adaptive_node_pool
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234 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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235 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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236 singleton_t::instance().deallocate_node(p);
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237 }
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238
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239 void deallocate_individual(multiallocation_chain &chain) BOOST_NOEXCEPT_OR_NOTHROW
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240 {
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241 typedef container_detail::shared_adaptive_node_pool
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242 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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243 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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244 //typename shared_pool_t::multiallocation_chain ch(&*chain.begin(), &*chain.last(), chain.size());
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245 //singleton_t::instance().deallocate_nodes(ch);
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246 singleton_t::instance().deallocate_nodes(chain);
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247 }
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248
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249 //!Allocates many elements of size elem_size.
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250 //!Elements must be individually deallocated with deallocate()
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251 void allocate_many(size_type elem_size, std::size_t n_elements, multiallocation_chain &chain)
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252 {
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253 BOOST_STATIC_ASSERT(( Version > 1 ));/*
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254 boost_cont_memchain ch;
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255 BOOST_CONTAINER_MEMCHAIN_INIT(&ch);
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256 if(BOOST_UNLIKELY(!boost_cont_multialloc_nodes(n_elements, elem_size*sizeof(T), DL_MULTIALLOC_DEFAULT_CONTIGUOUS, &ch))){
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257 boost::container::throw_bad_alloc();
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258 }
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259 chain.incorporate_after(chain.before_begin()
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260 ,(T*)BOOST_CONTAINER_MEMCHAIN_FIRSTMEM(&ch)
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261 ,(T*)BOOST_CONTAINER_MEMCHAIN_LASTMEM(&ch)
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262 ,BOOST_CONTAINER_MEMCHAIN_SIZE(&ch) );*/
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263 if(BOOST_UNLIKELY(!boost_cont_multialloc_nodes
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264 (n_elements, elem_size*sizeof(T), DL_MULTIALLOC_DEFAULT_CONTIGUOUS, reinterpret_cast<boost_cont_memchain *>(&chain)))){
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265 boost::container::throw_bad_alloc();
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266 }
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267 }
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268
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269 //!Allocates n_elements elements, each one of size elem_sizes[i]
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270 //!Elements must be individually deallocated with deallocate()
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271 void allocate_many(const size_type *elem_sizes, size_type n_elements, multiallocation_chain &chain)
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272 {
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273 BOOST_STATIC_ASSERT(( Version > 1 ));/*
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274 boost_cont_memchain ch;
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275 BOOST_CONTAINER_MEMCHAIN_INIT(&ch);
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276 if(BOOST_UNLIKELY(!boost_cont_multialloc_arrays(n_elements, elem_sizes, sizeof(T), DL_MULTIALLOC_DEFAULT_CONTIGUOUS, &ch))){
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277 boost::container::throw_bad_alloc();
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278 }
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279 chain.incorporate_after(chain.before_begin()
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280 ,(T*)BOOST_CONTAINER_MEMCHAIN_FIRSTMEM(&ch)
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281 ,(T*)BOOST_CONTAINER_MEMCHAIN_LASTMEM(&ch)
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282 ,BOOST_CONTAINER_MEMCHAIN_SIZE(&ch) );*/
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283 if(BOOST_UNLIKELY(!boost_cont_multialloc_arrays
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284 (n_elements, elem_sizes, sizeof(T), DL_MULTIALLOC_DEFAULT_CONTIGUOUS, reinterpret_cast<boost_cont_memchain *>(&chain)))){
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285 boost::container::throw_bad_alloc();
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286 }
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287 }
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288
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289 void deallocate_many(multiallocation_chain &chain) BOOST_NOEXCEPT_OR_NOTHROW
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290 {/*
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291 boost_cont_memchain ch;
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292 void *beg(&*chain.begin()), *last(&*chain.last());
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293 size_t size(chain.size());
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294 BOOST_CONTAINER_MEMCHAIN_INIT_FROM(&ch, beg, last, size);
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295 boost_cont_multidealloc(&ch);*/
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296 boost_cont_multidealloc(reinterpret_cast<boost_cont_memchain *>(&chain));
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297 }
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298
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299 //!Deallocates all free blocks of the pool
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300 static void deallocate_free_blocks() BOOST_NOEXCEPT_OR_NOTHROW
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301 {
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302 typedef container_detail::shared_adaptive_node_pool
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303 <sizeof(T), NodesPerBlock, MaxFreeBlocks, OverheadPercent> shared_pool_t;
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304 typedef container_detail::singleton_default<shared_pool_t> singleton_t;
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305 singleton_t::instance().deallocate_free_blocks();
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306 }
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307
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308 //!Swaps allocators. Does not throw. If each allocator is placed in a
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309 //!different memory segment, the result is undefined.
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310 friend void swap(adaptive_pool &, adaptive_pool &) BOOST_NOEXCEPT_OR_NOTHROW
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311 {}
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312
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313 //!An allocator always compares to true, as memory allocated with one
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314 //!instance can be deallocated by another instance
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315 friend bool operator==(const adaptive_pool &, const adaptive_pool &) BOOST_NOEXCEPT_OR_NOTHROW
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316 { return true; }
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317
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318 //!An allocator always compares to false, as memory allocated with one
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319 //!instance can be deallocated by another instance
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320 friend bool operator!=(const adaptive_pool &, const adaptive_pool &) BOOST_NOEXCEPT_OR_NOTHROW
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321 { return false; }
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322
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323 private:
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324 pointer priv_allocation_command
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325 (allocation_type command, std::size_t limit_size
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326 ,size_type &prefer_in_recvd_out_size, pointer &reuse_ptr)
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327 {
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328 std::size_t const preferred_size = prefer_in_recvd_out_size;
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329 boost_cont_command_ret_t ret = {0 , 0};
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330 if(BOOST_UNLIKELY(limit_size > this->max_size() || preferred_size > this->max_size())){
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331 return pointer();
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332 }
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333 std::size_t l_size = limit_size*sizeof(T);
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334 std::size_t p_size = preferred_size*sizeof(T);
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335 std::size_t r_size;
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336 {
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337 void* reuse_ptr_void = reuse_ptr;
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338 ret = boost_cont_allocation_command(command, sizeof(T), l_size, p_size, &r_size, reuse_ptr_void);
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339 reuse_ptr = ret.second ? static_cast<T*>(reuse_ptr_void) : 0;
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340 }
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341 prefer_in_recvd_out_size = r_size/sizeof(T);
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342 return (pointer)ret.first;
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343 }
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344 };
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345
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346 } //namespace container {
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347 } //namespace boost {
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348
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349 #include <boost/container/detail/config_end.hpp>
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350
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351 #endif //#ifndef BOOST_CONTAINER_ADAPTIVE_POOL_HPP
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