annotate DEPENDENCIES/generic/include/boost/intrusive/detail/avltree_node.hpp @ 133:4acb5d8d80b6 tip

Don't fail environmental check if README.md exists (but .txt and no-suffix don't)
author Chris Cannam
date Tue, 30 Jul 2019 12:25:44 +0100
parents c530137014c0
children
rev   line source
Chris@16 1 /////////////////////////////////////////////////////////////////////////////
Chris@16 2 //
Chris@16 3 // (C) Copyright Ion Gaztanaga 2007-2013
Chris@16 4 //
Chris@16 5 // Distributed under the Boost Software License, Version 1.0.
Chris@16 6 // (See accompanying file LICENSE_1_0.txt or copy at
Chris@16 7 // http://www.boost.org/LICENSE_1_0.txt)
Chris@16 8 //
Chris@16 9 // See http://www.boost.org/libs/intrusive for documentation.
Chris@16 10 //
Chris@16 11 /////////////////////////////////////////////////////////////////////////////
Chris@16 12
Chris@16 13 #ifndef BOOST_INTRUSIVE_AVLTREE_NODE_HPP
Chris@16 14 #define BOOST_INTRUSIVE_AVLTREE_NODE_HPP
Chris@16 15
Chris@101 16 #ifndef BOOST_CONFIG_HPP
Chris@101 17 # include <boost/config.hpp>
Chris@101 18 #endif
Chris@101 19
Chris@101 20 #if defined(BOOST_HAS_PRAGMA_ONCE)
Chris@101 21 # pragma once
Chris@101 22 #endif
Chris@101 23
Chris@16 24 #include <boost/intrusive/detail/config_begin.hpp>
Chris@101 25 #include <boost/intrusive/pointer_rebind.hpp>
Chris@16 26 #include <boost/intrusive/avltree_algorithms.hpp>
Chris@16 27 #include <boost/intrusive/pointer_plus_bits.hpp>
Chris@16 28 #include <boost/intrusive/detail/mpl.hpp>
Chris@16 29
Chris@16 30 namespace boost {
Chris@16 31 namespace intrusive {
Chris@16 32
Chris@16 33 /////////////////////////////////////////////////////////////////////////////
Chris@16 34 // //
Chris@16 35 // Generic node_traits for any pointer type //
Chris@16 36 // //
Chris@16 37 /////////////////////////////////////////////////////////////////////////////
Chris@16 38
Chris@16 39 //This is the compact representation: 3 pointers
Chris@16 40 template<class VoidPointer>
Chris@16 41 struct compact_avltree_node
Chris@16 42 {
Chris@101 43 typedef typename pointer_rebind<VoidPointer, compact_avltree_node<VoidPointer> >::type node_ptr;
Chris@101 44 typedef typename pointer_rebind<VoidPointer, const compact_avltree_node<VoidPointer> >::type const_node_ptr;
Chris@16 45 enum balance { negative_t, zero_t, positive_t };
Chris@16 46 node_ptr parent_, left_, right_;
Chris@16 47 };
Chris@16 48
Chris@16 49 //This is the normal representation: 3 pointers + enum
Chris@16 50 template<class VoidPointer>
Chris@16 51 struct avltree_node
Chris@16 52 {
Chris@101 53 typedef typename pointer_rebind<VoidPointer, avltree_node<VoidPointer> >::type node_ptr;
Chris@101 54 typedef typename pointer_rebind<VoidPointer, const avltree_node<VoidPointer> >::type const_node_ptr;
Chris@16 55 enum balance { negative_t, zero_t, positive_t };
Chris@16 56 node_ptr parent_, left_, right_;
Chris@16 57 balance balance_;
Chris@16 58 };
Chris@16 59
Chris@16 60 //This is the default node traits implementation
Chris@16 61 //using a node with 3 generic pointers plus an enum
Chris@16 62 template<class VoidPointer>
Chris@16 63 struct default_avltree_node_traits_impl
Chris@16 64 {
Chris@16 65 typedef avltree_node<VoidPointer> node;
Chris@101 66 typedef typename node::node_ptr node_ptr;
Chris@101 67 typedef typename node::const_node_ptr const_node_ptr;
Chris@16 68
Chris@16 69 typedef typename node::balance balance;
Chris@16 70
Chris@16 71 static node_ptr get_parent(const const_node_ptr & n)
Chris@16 72 { return n->parent_; }
Chris@16 73
Chris@16 74 static node_ptr get_parent(const node_ptr & n)
Chris@16 75 { return n->parent_; }
Chris@16 76
Chris@16 77 static void set_parent(const node_ptr & n, const node_ptr & p)
Chris@16 78 { n->parent_ = p; }
Chris@16 79
Chris@16 80 static node_ptr get_left(const const_node_ptr & n)
Chris@16 81 { return n->left_; }
Chris@16 82
Chris@16 83 static node_ptr get_left(const node_ptr & n)
Chris@16 84 { return n->left_; }
Chris@16 85
Chris@16 86 static void set_left(const node_ptr & n, const node_ptr & l)
Chris@16 87 { n->left_ = l; }
Chris@16 88
Chris@16 89 static node_ptr get_right(const const_node_ptr & n)
Chris@16 90 { return n->right_; }
Chris@16 91
Chris@16 92 static node_ptr get_right(const node_ptr & n)
Chris@16 93 { return n->right_; }
Chris@16 94
Chris@16 95 static void set_right(const node_ptr & n, const node_ptr & r)
Chris@16 96 { n->right_ = r; }
Chris@16 97
Chris@16 98 static balance get_balance(const const_node_ptr & n)
Chris@16 99 { return n->balance_; }
Chris@16 100
Chris@16 101 static balance get_balance(const node_ptr & n)
Chris@16 102 { return n->balance_; }
Chris@16 103
Chris@16 104 static void set_balance(const node_ptr & n, balance b)
Chris@16 105 { n->balance_ = b; }
Chris@16 106
Chris@16 107 static balance negative()
Chris@16 108 { return node::negative_t; }
Chris@16 109
Chris@16 110 static balance zero()
Chris@16 111 { return node::zero_t; }
Chris@16 112
Chris@16 113 static balance positive()
Chris@16 114 { return node::positive_t; }
Chris@16 115 };
Chris@16 116
Chris@16 117 //This is the compact node traits implementation
Chris@16 118 //using a node with 3 generic pointers
Chris@16 119 template<class VoidPointer>
Chris@16 120 struct compact_avltree_node_traits_impl
Chris@16 121 {
Chris@16 122 typedef compact_avltree_node<VoidPointer> node;
Chris@101 123 typedef typename node::node_ptr node_ptr;
Chris@101 124 typedef typename node::const_node_ptr const_node_ptr;
Chris@16 125 typedef typename node::balance balance;
Chris@16 126
Chris@16 127 typedef pointer_plus_bits<node_ptr, 2> ptr_bit;
Chris@16 128
Chris@16 129 static node_ptr get_parent(const const_node_ptr & n)
Chris@16 130 { return ptr_bit::get_pointer(n->parent_); }
Chris@16 131
Chris@16 132 static void set_parent(const node_ptr & n, const node_ptr & p)
Chris@16 133 { ptr_bit::set_pointer(n->parent_, p); }
Chris@16 134
Chris@16 135 static node_ptr get_left(const const_node_ptr & n)
Chris@16 136 { return n->left_; }
Chris@16 137
Chris@16 138 static void set_left(const node_ptr & n, const node_ptr & l)
Chris@16 139 { n->left_ = l; }
Chris@16 140
Chris@16 141 static node_ptr get_right(const const_node_ptr & n)
Chris@16 142 { return n->right_; }
Chris@16 143
Chris@16 144 static void set_right(const node_ptr & n, const node_ptr & r)
Chris@16 145 { n->right_ = r; }
Chris@16 146
Chris@16 147 static balance get_balance(const const_node_ptr & n)
Chris@16 148 { return (balance)ptr_bit::get_bits(n->parent_); }
Chris@16 149
Chris@16 150 static void set_balance(const node_ptr & n, balance b)
Chris@16 151 { ptr_bit::set_bits(n->parent_, (std::size_t)b); }
Chris@16 152
Chris@16 153 static balance negative()
Chris@16 154 { return node::negative_t; }
Chris@16 155
Chris@16 156 static balance zero()
Chris@16 157 { return node::zero_t; }
Chris@16 158
Chris@16 159 static balance positive()
Chris@16 160 { return node::positive_t; }
Chris@16 161 };
Chris@16 162
Chris@16 163 //Dispatches the implementation based on the boolean
Chris@16 164 template<class VoidPointer, bool Compact>
Chris@16 165 struct avltree_node_traits_dispatch
Chris@16 166 : public default_avltree_node_traits_impl<VoidPointer>
Chris@16 167 {};
Chris@16 168
Chris@16 169 template<class VoidPointer>
Chris@16 170 struct avltree_node_traits_dispatch<VoidPointer, true>
Chris@16 171 : public compact_avltree_node_traits_impl<VoidPointer>
Chris@16 172 {};
Chris@16 173
Chris@101 174 //Inherit from rbtree_node_traits_dispatch depending on the embedding capabilities
Chris@16 175 template<class VoidPointer, bool OptimizeSize = false>
Chris@16 176 struct avltree_node_traits
Chris@16 177 : public avltree_node_traits_dispatch
Chris@16 178 < VoidPointer
Chris@16 179 , OptimizeSize &&
Chris@16 180 max_pointer_plus_bits
Chris@16 181 < VoidPointer
Chris@16 182 , detail::alignment_of<compact_avltree_node<VoidPointer> >::value
Chris@16 183 >::value >= 2u
Chris@16 184 >
Chris@16 185 {};
Chris@16 186
Chris@16 187 } //namespace intrusive
Chris@16 188 } //namespace boost
Chris@16 189
Chris@16 190 #include <boost/intrusive/detail/config_end.hpp>
Chris@16 191
Chris@16 192 #endif //BOOST_INTRUSIVE_AVLTREE_NODE_HPP