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1 // boost heap: skew heap
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2 //
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3 // Copyright (C) 2010 Tim Blechmann
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4 //
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5 // Distributed under the Boost Software License, Version 1.0. (See
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6 // accompanying file LICENSE_1_0.txt or copy at
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7 // http://www.boost.org/LICENSE_1_0.txt)
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8
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9 #ifndef BOOST_HEAP_SKEW_HEAP_HPP
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10 #define BOOST_HEAP_SKEW_HEAP_HPP
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11
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12 #include <algorithm>
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13 #include <utility>
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14 #include <vector>
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15
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16 #include <boost/assert.hpp>
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17 #include <boost/array.hpp>
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18
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19 #include <boost/heap/detail/heap_comparison.hpp>
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20 #include <boost/heap/detail/heap_node.hpp>
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21 #include <boost/heap/detail/stable_heap.hpp>
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22 #include <boost/heap/detail/tree_iterator.hpp>
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23
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24 #ifdef BOOST_HAS_PRAGMA_ONCE
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25 #pragma once
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26 #endif
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27
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28 #ifndef BOOST_DOXYGEN_INVOKED
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29 #ifdef BOOST_HEAP_SANITYCHECKS
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30 #define BOOST_HEAP_ASSERT BOOST_ASSERT
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31 #else
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32 #define BOOST_HEAP_ASSERT(expression)
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33 #endif
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34 #endif
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35
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36 namespace boost {
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37 namespace heap {
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38 namespace detail {
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39
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40 template <typename node_pointer, bool store_parent_pointer>
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41 struct parent_holder
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42 {
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43 parent_holder(void):
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44 parent_(NULL)
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45 {}
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46
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47 void set_parent(node_pointer parent)
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48 {
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49 BOOST_HEAP_ASSERT(static_cast<node_pointer>(this) != parent);
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50 parent_ = parent;
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51 }
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52
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53 node_pointer get_parent(void) const
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54 {
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55 return parent_;
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56 }
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57
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58 node_pointer parent_;
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59 };
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60
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61 template <typename node_pointer>
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62 struct parent_holder<node_pointer, false>
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63 {
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64 void set_parent(node_pointer parent)
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65 {}
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66
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67 node_pointer get_parent(void) const
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68 {
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69 return NULL;
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70 }
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71 };
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72
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73
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74 template <typename value_type, bool store_parent_pointer>
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75 struct skew_heap_node:
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76 parent_holder<skew_heap_node<value_type, store_parent_pointer>*, store_parent_pointer>
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77 {
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78 typedef parent_holder<skew_heap_node<value_type, store_parent_pointer>*, store_parent_pointer> super_t;
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79
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80 typedef boost::array<skew_heap_node*, 2> child_list_type;
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81 typedef typename child_list_type::iterator child_iterator;
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82 typedef typename child_list_type::const_iterator const_child_iterator;
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83
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84 skew_heap_node(value_type const & v):
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85 value(v)
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86 {
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87 children.assign(0);
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88 }
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89
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90 #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
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91 skew_heap_node(value_type && v):
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92 value(v)
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93 {
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94 children.assign(0);
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95 }
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96 #endif
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97
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98 template <typename Alloc>
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99 skew_heap_node (skew_heap_node const & rhs, Alloc & allocator, skew_heap_node * parent):
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100 value(rhs.value)
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101 {
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102 super_t::set_parent(parent);
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103 node_cloner<skew_heap_node, skew_heap_node, Alloc> cloner(allocator);
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104 clone_child(0, rhs, cloner);
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105 clone_child(1, rhs, cloner);
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106 }
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107
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108 template <typename Cloner>
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109 void clone_child(int index, skew_heap_node const & rhs, Cloner & cloner)
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110 {
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111 if (rhs.children[index])
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112 children[index] = cloner(*rhs.children[index], this);
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113 else
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114 children[index] = NULL;
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115 }
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116
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117 template <typename Alloc>
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118 void clear_subtree(Alloc & alloc)
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119 {
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120 node_disposer<skew_heap_node, skew_heap_node, Alloc> disposer(alloc);
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121 dispose_child(children[0], disposer);
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122 dispose_child(children[1], disposer);
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123 }
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124
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125 template <typename Disposer>
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126 void dispose_child(skew_heap_node * node, Disposer & disposer)
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127 {
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128 if (node)
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129 disposer(node);
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130 }
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131
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132 std::size_t count_children(void) const
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133 {
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134 size_t ret = 1;
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135 if (children[0])
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136 ret += children[0]->count_children();
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137 if (children[1])
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138 ret += children[1]->count_children();
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139
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140 return ret;
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141 }
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142
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143 template <typename HeapBase>
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144 bool is_heap(typename HeapBase::value_compare const & cmp) const
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145 {
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146 for (const_child_iterator it = children.begin(); it != children.end(); ++it) {
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147 const skew_heap_node * child = *it;
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148
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149 if (child == NULL)
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150 continue;
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151
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152 if (store_parent_pointer)
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153 BOOST_HEAP_ASSERT(child->get_parent() == this);
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154
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155 if (cmp(HeapBase::get_value(value), HeapBase::get_value(child->value)) ||
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156 !child->is_heap<HeapBase>(cmp))
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157 return false;
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158 }
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159 return true;
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160 }
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161
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162 value_type value;
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163 boost::array<skew_heap_node*, 2> children;
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164 };
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165
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166
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167 typedef parameter::parameters<boost::parameter::optional<tag::allocator>,
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168 boost::parameter::optional<tag::compare>,
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169 boost::parameter::optional<tag::stable>,
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170 boost::parameter::optional<tag::store_parent_pointer>,
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171 boost::parameter::optional<tag::stability_counter_type>,
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172 boost::parameter::optional<tag::constant_time_size>,
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173 boost::parameter::optional<tag::mutable_>
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174 > skew_heap_signature;
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175
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176 template <typename T, typename BoundArgs>
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177 struct make_skew_heap_base
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178 {
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179 static const bool constant_time_size = parameter::binding<BoundArgs,
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180 tag::constant_time_size,
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181 boost::mpl::true_
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182 >::type::value;
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183
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184 typedef typename make_heap_base<T, BoundArgs, constant_time_size>::type base_type;
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185 typedef typename make_heap_base<T, BoundArgs, constant_time_size>::allocator_argument allocator_argument;
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186 typedef typename make_heap_base<T, BoundArgs, constant_time_size>::compare_argument compare_argument;
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187
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188 static const bool is_mutable = extract_mutable<BoundArgs>::value;
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189 static const bool store_parent_pointer = parameter::binding<BoundArgs,
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190 tag::store_parent_pointer,
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191 boost::mpl::false_>::type::value || is_mutable;
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192
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193 typedef skew_heap_node<typename base_type::internal_type, store_parent_pointer> node_type;
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194
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195 typedef typename allocator_argument::template rebind<node_type>::other allocator_type;
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196
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197 struct type:
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198 base_type,
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199 allocator_type
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200 {
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201 type(compare_argument const & arg):
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202 base_type(arg)
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203 {}
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204
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205 #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
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206 type(type && rhs):
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207 base_type(std::move(static_cast<base_type&>(rhs))),
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208 allocator_type(std::move(static_cast<allocator_type&>(rhs)))
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209 {}
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210
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211 type(type const & rhs):
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212 base_type(rhs),
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213 allocator_type(rhs)
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214 {}
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215
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216 type & operator=(type && rhs)
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217 {
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218 base_type::operator=(std::move(static_cast<base_type&>(rhs)));
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219 allocator_type::operator=(std::move(static_cast<allocator_type&>(rhs)));
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220 return *this;
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221 }
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222
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223 type & operator=(type const & rhs)
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224 {
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225 base_type::operator=(static_cast<base_type const &>(rhs));
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226 allocator_type::operator=(static_cast<allocator_type const &>(rhs));
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227 return *this;
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228 }
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229 #endif
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230 };
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231 };
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232
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233 } /* namespace detail */
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234
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235 /**
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236 * \class skew_heap
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237 * \brief skew heap
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238 *
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239 *
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240 * The template parameter T is the type to be managed by the container.
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241 * The user can specify additional options and if no options are provided default options are used.
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242 *
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243 * The container supports the following options:
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244 * - \c boost::heap::compare<>, defaults to \c compare<std::less<T> >
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245 * - \c boost::heap::stable<>, defaults to \c stable<false>
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246 * - \c boost::heap::stability_counter_type<>, defaults to \c stability_counter_type<boost::uintmax_t>
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247 * - \c boost::heap::allocator<>, defaults to \c allocator<std::allocator<T> >
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248 * - \c boost::heap::constant_time_size<>, defaults to \c constant_time_size<true>
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249 * - \c boost::heap::store_parent_pointer<>, defaults to \c store_parent_pointer<true>. Maintaining a parent pointer adds some
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250 * maintenance and size overhead, but iterating a heap is more efficient.
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251 * - \c boost::heap::mutable<>, defaults to \c mutable<false>.
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252 *
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253 */
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254 #ifdef BOOST_DOXYGEN_INVOKED
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255 template<class T, class ...Options>
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256 #else
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257 template <typename T,
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258 class A0 = boost::parameter::void_,
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259 class A1 = boost::parameter::void_,
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260 class A2 = boost::parameter::void_,
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261 class A3 = boost::parameter::void_,
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262 class A4 = boost::parameter::void_,
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263 class A5 = boost::parameter::void_,
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264 class A6 = boost::parameter::void_
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265 >
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266 #endif
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267 class skew_heap:
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268 private detail::make_skew_heap_base<T,
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269 typename detail::skew_heap_signature::bind<A0, A1, A2, A3, A4, A5, A6>::type
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270 >::type
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271 {
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272 typedef typename detail::skew_heap_signature::bind<A0, A1, A2, A3, A4, A5, A6>::type bound_args;
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273 typedef detail::make_skew_heap_base<T, bound_args> base_maker;
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274 typedef typename base_maker::type super_t;
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275
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276 typedef typename super_t::internal_type internal_type;
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277 typedef typename super_t::size_holder_type size_holder;
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278 typedef typename base_maker::allocator_argument allocator_argument;
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279
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280 static const bool store_parent_pointer = base_maker::store_parent_pointer;
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281 template <typename Heap1, typename Heap2>
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282 friend struct heap_merge_emulate;
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283
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284 struct implementation_defined:
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285 detail::extract_allocator_types<typename base_maker::allocator_argument>
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286 {
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287 typedef T value_type;
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288
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289 typedef typename base_maker::compare_argument value_compare;
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290 typedef typename base_maker::allocator_type allocator_type;
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291
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292 typedef typename base_maker::node_type node;
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293 typedef typename allocator_type::pointer node_pointer;
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294 typedef typename allocator_type::const_pointer const_node_pointer;
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295
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296 typedef detail::value_extractor<value_type, internal_type, super_t> value_extractor;
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297
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298 typedef boost::array<node_pointer, 2> child_list_type;
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299 typedef typename child_list_type::iterator child_list_iterator;
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300
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301 typedef typename boost::mpl::if_c<false,
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302 detail::recursive_tree_iterator<node,
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303 child_list_iterator,
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304 const value_type,
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305 value_extractor,
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306 detail::list_iterator_converter<node,
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307 child_list_type
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308 >
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309 >,
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310 detail::tree_iterator<node,
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311 const value_type,
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312 allocator_type,
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313 value_extractor,
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314 detail::dereferencer<node>,
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315 true,
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316 false,
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317 value_compare
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318 >
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319 >::type iterator;
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320
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321 typedef iterator const_iterator;
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322
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323 typedef detail::tree_iterator<node,
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324 const value_type,
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325 allocator_type,
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326 value_extractor,
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327 detail::dereferencer<node>,
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328 true,
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329 true,
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330 value_compare
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331 > ordered_iterator;
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332
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333 typedef typename detail::extract_allocator_types<typename base_maker::allocator_argument>::reference reference;
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334 typedef detail::node_handle<node_pointer, super_t, reference> handle_type;
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335 };
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336
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337 typedef typename implementation_defined::value_extractor value_extractor;
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338 typedef typename implementation_defined::node node;
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339 typedef typename implementation_defined::node_pointer node_pointer;
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340
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341 public:
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342 typedef T value_type;
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343
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344 typedef typename implementation_defined::size_type size_type;
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345 typedef typename implementation_defined::difference_type difference_type;
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346 typedef typename implementation_defined::value_compare value_compare;
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347 typedef typename implementation_defined::allocator_type allocator_type;
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348 typedef typename implementation_defined::reference reference;
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349 typedef typename implementation_defined::const_reference const_reference;
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350 typedef typename implementation_defined::pointer pointer;
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351 typedef typename implementation_defined::const_pointer const_pointer;
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352
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353 /// \copydoc boost::heap::priority_queue::iterator
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354 typedef typename implementation_defined::iterator iterator;
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355 typedef typename implementation_defined::const_iterator const_iterator;
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356 typedef typename implementation_defined::ordered_iterator ordered_iterator;
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357
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358 static const bool constant_time_size = super_t::constant_time_size;
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359 static const bool has_ordered_iterators = true;
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360 static const bool is_mergable = true;
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361 static const bool is_stable = detail::extract_stable<bound_args>::value;
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362 static const bool has_reserve = false;
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363 static const bool is_mutable = detail::extract_mutable<bound_args>::value;
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364
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365 typedef typename mpl::if_c<is_mutable, typename implementation_defined::handle_type, void*>::type handle_type;
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366
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367 /// \copydoc boost::heap::priority_queue::priority_queue(value_compare const &)
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368 explicit skew_heap(value_compare const & cmp = value_compare()):
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369 super_t(cmp), root(NULL)
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370 {}
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371
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372 /// \copydoc boost::heap::priority_queue::priority_queue(priority_queue const &)
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|
373 skew_heap(skew_heap const & rhs):
|
Chris@16
|
374 super_t(rhs), root(0)
|
Chris@16
|
375 {
|
Chris@16
|
376 if (rhs.empty())
|
Chris@16
|
377 return;
|
Chris@16
|
378
|
Chris@16
|
379 clone_tree(rhs);
|
Chris@16
|
380 size_holder::set_size(rhs.get_size());
|
Chris@16
|
381 }
|
Chris@16
|
382
|
Chris@16
|
383 /// \copydoc boost::heap::priority_queue::operator=(priority_queue const & rhs)
|
Chris@16
|
384 skew_heap & operator=(skew_heap const & rhs)
|
Chris@16
|
385 {
|
Chris@16
|
386 clear();
|
Chris@16
|
387 size_holder::set_size(rhs.get_size());
|
Chris@16
|
388 static_cast<super_t&>(*this) = rhs;
|
Chris@16
|
389
|
Chris@16
|
390 clone_tree(rhs);
|
Chris@16
|
391 return *this;
|
Chris@16
|
392 }
|
Chris@16
|
393
|
Chris@16
|
394 #ifndef BOOST_NO_CXX11_RVALUE_REFERENCES
|
Chris@16
|
395 /// \copydoc boost::heap::priority_queue::priority_queue(priority_queue &&)
|
Chris@16
|
396 skew_heap(skew_heap && rhs):
|
Chris@16
|
397 super_t(std::move(rhs)), root(rhs.root)
|
Chris@16
|
398 {
|
Chris@16
|
399 rhs.root = NULL;
|
Chris@16
|
400 }
|
Chris@16
|
401
|
Chris@16
|
402 /// \copydoc boost::heap::priority_queue::operator=(priority_queue &&)
|
Chris@16
|
403 skew_heap & operator=(skew_heap && rhs)
|
Chris@16
|
404 {
|
Chris@16
|
405 super_t::operator=(std::move(rhs));
|
Chris@16
|
406 root = rhs.root;
|
Chris@16
|
407 rhs.root = NULL;
|
Chris@16
|
408 return *this;
|
Chris@16
|
409 }
|
Chris@16
|
410 #endif
|
Chris@16
|
411
|
Chris@16
|
412 ~skew_heap(void)
|
Chris@16
|
413 {
|
Chris@16
|
414 clear();
|
Chris@16
|
415 }
|
Chris@16
|
416
|
Chris@16
|
417 /**
|
Chris@16
|
418 * \b Effects: Adds a new element to the priority queue.
|
Chris@16
|
419 *
|
Chris@16
|
420 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
421 *
|
Chris@16
|
422 * */
|
Chris@16
|
423 typename mpl::if_c<is_mutable, handle_type, void>::type push(value_type const & v)
|
Chris@16
|
424 {
|
Chris@16
|
425 typedef typename mpl::if_c<is_mutable, push_handle, push_void>::type push_helper;
|
Chris@16
|
426 return push_helper::push(this, v);
|
Chris@16
|
427 }
|
Chris@16
|
428
|
Chris@16
|
429 #if !defined(BOOST_NO_CXX11_RVALUE_REFERENCES) && !defined(BOOST_NO_CXX11_VARIADIC_TEMPLATES)
|
Chris@16
|
430 /**
|
Chris@16
|
431 * \b Effects: Adds a new element to the priority queue. The element is directly constructed in-place.
|
Chris@16
|
432 *
|
Chris@16
|
433 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
434 *
|
Chris@16
|
435 * */
|
Chris@16
|
436 template <typename... Args>
|
Chris@16
|
437 typename mpl::if_c<is_mutable, handle_type, void>::type emplace(Args&&... args)
|
Chris@16
|
438 {
|
Chris@16
|
439 typedef typename mpl::if_c<is_mutable, push_handle, push_void>::type push_helper;
|
Chris@16
|
440 return push_helper::emplace(this, std::forward<Args>(args)...);
|
Chris@16
|
441 }
|
Chris@16
|
442 #endif
|
Chris@16
|
443
|
Chris@16
|
444 /// \copydoc boost::heap::priority_queue::empty
|
Chris@16
|
445 bool empty(void) const
|
Chris@16
|
446 {
|
Chris@16
|
447 return root == NULL;
|
Chris@16
|
448 }
|
Chris@16
|
449
|
Chris@16
|
450 /// \copydoc boost::heap::binomial_heap::size
|
Chris@16
|
451 size_type size(void) const
|
Chris@16
|
452 {
|
Chris@16
|
453 if (constant_time_size)
|
Chris@16
|
454 return size_holder::get_size();
|
Chris@16
|
455
|
Chris@16
|
456 if (root == NULL)
|
Chris@16
|
457 return 0;
|
Chris@16
|
458 else
|
Chris@16
|
459 return root->count_children();
|
Chris@16
|
460 }
|
Chris@16
|
461
|
Chris@16
|
462 /// \copydoc boost::heap::priority_queue::max_size
|
Chris@16
|
463 size_type max_size(void) const
|
Chris@16
|
464 {
|
Chris@16
|
465 return allocator_type::max_size();
|
Chris@16
|
466 }
|
Chris@16
|
467
|
Chris@16
|
468 /// \copydoc boost::heap::priority_queue::clear
|
Chris@16
|
469 void clear(void)
|
Chris@16
|
470 {
|
Chris@16
|
471 if (empty())
|
Chris@16
|
472 return;
|
Chris@16
|
473
|
Chris@16
|
474 root->template clear_subtree<allocator_type>(*this);
|
Chris@16
|
475 root->~node();
|
Chris@16
|
476 allocator_type::deallocate(root, 1);
|
Chris@16
|
477
|
Chris@16
|
478 root = NULL;
|
Chris@16
|
479 size_holder::set_size(0);
|
Chris@16
|
480 }
|
Chris@16
|
481
|
Chris@16
|
482 /// \copydoc boost::heap::priority_queue::get_allocator
|
Chris@16
|
483 allocator_type get_allocator(void) const
|
Chris@16
|
484 {
|
Chris@16
|
485 return *this;
|
Chris@16
|
486 }
|
Chris@16
|
487
|
Chris@16
|
488 /// \copydoc boost::heap::priority_queue::swap
|
Chris@16
|
489 void swap(skew_heap & rhs)
|
Chris@16
|
490 {
|
Chris@16
|
491 super_t::swap(rhs);
|
Chris@16
|
492 std::swap(root, rhs.root);
|
Chris@16
|
493 }
|
Chris@16
|
494
|
Chris@16
|
495 /// \copydoc boost::heap::priority_queue::top
|
Chris@16
|
496 const_reference top(void) const
|
Chris@16
|
497 {
|
Chris@16
|
498 BOOST_ASSERT(!empty());
|
Chris@16
|
499
|
Chris@16
|
500 return super_t::get_value(root->value);
|
Chris@16
|
501 }
|
Chris@16
|
502
|
Chris@16
|
503 /**
|
Chris@16
|
504 * \b Effects: Removes the top element from the priority queue.
|
Chris@16
|
505 *
|
Chris@16
|
506 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
507 *
|
Chris@16
|
508 * */
|
Chris@16
|
509 void pop(void)
|
Chris@16
|
510 {
|
Chris@16
|
511 BOOST_ASSERT(!empty());
|
Chris@16
|
512
|
Chris@16
|
513 node_pointer top = root;
|
Chris@16
|
514
|
Chris@16
|
515 root = merge_children(root);
|
Chris@16
|
516 size_holder::decrement();
|
Chris@16
|
517
|
Chris@16
|
518 if (root)
|
Chris@16
|
519 BOOST_HEAP_ASSERT(root->get_parent() == NULL);
|
Chris@16
|
520 else
|
Chris@16
|
521 BOOST_HEAP_ASSERT(size_holder::get_size() == 0);
|
Chris@16
|
522
|
Chris@16
|
523 top->~node();
|
Chris@16
|
524 allocator_type::deallocate(top, 1);
|
Chris@16
|
525 sanity_check();
|
Chris@16
|
526 }
|
Chris@16
|
527
|
Chris@16
|
528 /// \copydoc boost::heap::priority_queue::begin
|
Chris@16
|
529 iterator begin(void) const
|
Chris@16
|
530 {
|
Chris@16
|
531 return iterator(root, super_t::value_comp());
|
Chris@16
|
532 }
|
Chris@16
|
533
|
Chris@16
|
534 /// \copydoc boost::heap::priority_queue::end
|
Chris@16
|
535 iterator end(void) const
|
Chris@16
|
536 {
|
Chris@16
|
537 return iterator();
|
Chris@16
|
538 }
|
Chris@16
|
539
|
Chris@16
|
540 /// \copydoc boost::heap::fibonacci_heap::ordered_begin
|
Chris@16
|
541 ordered_iterator ordered_begin(void) const
|
Chris@16
|
542 {
|
Chris@16
|
543 return ordered_iterator(root, super_t::value_comp());
|
Chris@16
|
544 }
|
Chris@16
|
545
|
Chris@16
|
546 /// \copydoc boost::heap::fibonacci_heap::ordered_begin
|
Chris@16
|
547 ordered_iterator ordered_end(void) const
|
Chris@16
|
548 {
|
Chris@16
|
549 return ordered_iterator(0, super_t::value_comp());
|
Chris@16
|
550 }
|
Chris@16
|
551
|
Chris@16
|
552 /**
|
Chris@16
|
553 * \b Effects: Merge all elements from rhs into this
|
Chris@16
|
554 *
|
Chris@16
|
555 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
556 *
|
Chris@16
|
557 * */
|
Chris@16
|
558 void merge(skew_heap & rhs)
|
Chris@16
|
559 {
|
Chris@16
|
560 if (rhs.empty())
|
Chris@16
|
561 return;
|
Chris@16
|
562
|
Chris@16
|
563 merge_node(rhs.root);
|
Chris@16
|
564
|
Chris@16
|
565 size_holder::add(rhs.get_size());
|
Chris@16
|
566 rhs.set_size(0);
|
Chris@16
|
567 rhs.root = NULL;
|
Chris@16
|
568 sanity_check();
|
Chris@16
|
569
|
Chris@16
|
570 super_t::set_stability_count((std::max)(super_t::get_stability_count(),
|
Chris@16
|
571 rhs.get_stability_count()));
|
Chris@16
|
572 rhs.set_stability_count(0);
|
Chris@16
|
573 }
|
Chris@16
|
574
|
Chris@16
|
575 /// \copydoc boost::heap::priority_queue::value_comp
|
Chris@16
|
576 value_compare const & value_comp(void) const
|
Chris@16
|
577 {
|
Chris@16
|
578 return super_t::value_comp();
|
Chris@16
|
579 }
|
Chris@16
|
580
|
Chris@16
|
581 /// \copydoc boost::heap::priority_queue::operator<(HeapType const & rhs) const
|
Chris@16
|
582 template <typename HeapType>
|
Chris@16
|
583 bool operator<(HeapType const & rhs) const
|
Chris@16
|
584 {
|
Chris@16
|
585 return detail::heap_compare(*this, rhs);
|
Chris@16
|
586 }
|
Chris@16
|
587
|
Chris@16
|
588 /// \copydoc boost::heap::priority_queue::operator>(HeapType const & rhs) const
|
Chris@16
|
589 template <typename HeapType>
|
Chris@16
|
590 bool operator>(HeapType const & rhs) const
|
Chris@16
|
591 {
|
Chris@16
|
592 return detail::heap_compare(rhs, *this);
|
Chris@16
|
593 }
|
Chris@16
|
594
|
Chris@16
|
595 /// \copydoc boost::heap::priority_queue::operator>=(HeapType const & rhs) const
|
Chris@16
|
596 template <typename HeapType>
|
Chris@16
|
597 bool operator>=(HeapType const & rhs) const
|
Chris@16
|
598 {
|
Chris@16
|
599 return !operator<(rhs);
|
Chris@16
|
600 }
|
Chris@16
|
601
|
Chris@16
|
602 /// \copydoc boost::heap::priority_queue::operator<=(HeapType const & rhs) const
|
Chris@16
|
603 template <typename HeapType>
|
Chris@16
|
604 bool operator<=(HeapType const & rhs) const
|
Chris@16
|
605 {
|
Chris@16
|
606 return !operator>(rhs);
|
Chris@16
|
607 }
|
Chris@16
|
608
|
Chris@16
|
609 /// \copydoc boost::heap::priority_queue::operator==(HeapType const & rhs) const
|
Chris@16
|
610 template <typename HeapType>
|
Chris@16
|
611 bool operator==(HeapType const & rhs) const
|
Chris@16
|
612 {
|
Chris@16
|
613 return detail::heap_equality(*this, rhs);
|
Chris@16
|
614 }
|
Chris@16
|
615
|
Chris@16
|
616 /// \copydoc boost::heap::priority_queue::operator!=(HeapType const & rhs) const
|
Chris@16
|
617 template <typename HeapType>
|
Chris@16
|
618 bool operator!=(HeapType const & rhs) const
|
Chris@16
|
619 {
|
Chris@16
|
620 return !(*this == rhs);
|
Chris@16
|
621 }
|
Chris@16
|
622
|
Chris@16
|
623
|
Chris@16
|
624 /// \copydoc boost::heap::d_ary_heap::s_handle_from_iterator
|
Chris@16
|
625 static handle_type s_handle_from_iterator(iterator const & it)
|
Chris@16
|
626 {
|
Chris@16
|
627 node * ptr = const_cast<node *>(it.get_node());
|
Chris@16
|
628 return handle_type(ptr);
|
Chris@16
|
629 }
|
Chris@16
|
630
|
Chris@16
|
631 /**
|
Chris@16
|
632 * \b Effects: Removes the element handled by \c handle from the priority_queue.
|
Chris@16
|
633 *
|
Chris@16
|
634 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
635 * */
|
Chris@16
|
636 void erase (handle_type object)
|
Chris@16
|
637 {
|
Chris@16
|
638 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
639 node_pointer this_node = object.node_;
|
Chris@16
|
640
|
Chris@16
|
641 unlink_node(this_node);
|
Chris@16
|
642 size_holder::decrement();
|
Chris@16
|
643
|
Chris@16
|
644 sanity_check();
|
Chris@16
|
645 this_node->~node();
|
Chris@16
|
646 allocator_type::deallocate(this_node, 1);
|
Chris@16
|
647 }
|
Chris@16
|
648
|
Chris@16
|
649 /**
|
Chris@16
|
650 * \b Effects: Assigns \c v to the element handled by \c handle & updates the priority queue.
|
Chris@16
|
651 *
|
Chris@16
|
652 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
653 *
|
Chris@16
|
654 * */
|
Chris@16
|
655 void update (handle_type handle, const_reference v)
|
Chris@16
|
656 {
|
Chris@16
|
657 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
658 if (super_t::operator()(super_t::get_value(handle.node_->value), v))
|
Chris@16
|
659 increase(handle, v);
|
Chris@16
|
660 else
|
Chris@16
|
661 decrease(handle, v);
|
Chris@16
|
662 }
|
Chris@16
|
663
|
Chris@16
|
664 /**
|
Chris@16
|
665 * \b Effects: Updates the heap after the element handled by \c handle has been changed.
|
Chris@16
|
666 *
|
Chris@16
|
667 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
668 *
|
Chris@16
|
669 * \b Note: If this is not called, after a handle has been updated, the behavior of the data structure is undefined!
|
Chris@16
|
670 * */
|
Chris@16
|
671 void update (handle_type handle)
|
Chris@16
|
672 {
|
Chris@16
|
673 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
674 node_pointer this_node = handle.node_;
|
Chris@16
|
675
|
Chris@16
|
676 if (this_node->get_parent()) {
|
Chris@16
|
677 if (super_t::operator()(super_t::get_value(this_node->get_parent()->value),
|
Chris@16
|
678 super_t::get_value(this_node->value)))
|
Chris@16
|
679 increase(handle);
|
Chris@16
|
680 else
|
Chris@16
|
681 decrease(handle);
|
Chris@16
|
682 }
|
Chris@16
|
683 else
|
Chris@16
|
684 decrease(handle);
|
Chris@16
|
685 }
|
Chris@16
|
686
|
Chris@16
|
687 /**
|
Chris@16
|
688 * \b Effects: Assigns \c v to the element handled by \c handle & updates the priority queue.
|
Chris@16
|
689 *
|
Chris@16
|
690 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
691 *
|
Chris@16
|
692 * \b Note: The new value is expected to be greater than the current one
|
Chris@16
|
693 * */
|
Chris@16
|
694 void increase (handle_type handle, const_reference v)
|
Chris@16
|
695 {
|
Chris@16
|
696 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
697 handle.node_->value = super_t::make_node(v);
|
Chris@16
|
698 increase(handle);
|
Chris@16
|
699 }
|
Chris@16
|
700
|
Chris@16
|
701 /**
|
Chris@16
|
702 * \b Effects: Updates the heap after the element handled by \c handle has been changed.
|
Chris@16
|
703 *
|
Chris@16
|
704 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
705 *
|
Chris@16
|
706 * \b Note: If this is not called, after a handle has been updated, the behavior of the data structure is undefined!
|
Chris@16
|
707 * */
|
Chris@16
|
708 void increase (handle_type handle)
|
Chris@16
|
709 {
|
Chris@16
|
710 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
711 node_pointer this_node = handle.node_;
|
Chris@16
|
712
|
Chris@16
|
713 if (this_node == root)
|
Chris@16
|
714 return;
|
Chris@16
|
715
|
Chris@16
|
716 node_pointer parent = this_node->get_parent();
|
Chris@16
|
717
|
Chris@16
|
718 if (this_node == parent->children[0])
|
Chris@16
|
719 parent->children[0] = NULL;
|
Chris@16
|
720 else
|
Chris@16
|
721 parent->children[1] = NULL;
|
Chris@16
|
722
|
Chris@16
|
723 this_node->set_parent(NULL);
|
Chris@16
|
724 merge_node(this_node);
|
Chris@16
|
725 }
|
Chris@16
|
726
|
Chris@16
|
727 /**
|
Chris@16
|
728 * \b Effects: Assigns \c v to the element handled by \c handle & updates the priority queue.
|
Chris@16
|
729 *
|
Chris@16
|
730 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
731 *
|
Chris@16
|
732 * \b Note: The new value is expected to be less than the current one
|
Chris@16
|
733 * */
|
Chris@16
|
734 void decrease (handle_type handle, const_reference v)
|
Chris@16
|
735 {
|
Chris@16
|
736 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
737 handle.node_->value = super_t::make_node(v);
|
Chris@16
|
738 decrease(handle);
|
Chris@16
|
739 }
|
Chris@16
|
740
|
Chris@16
|
741 /**
|
Chris@16
|
742 * \b Effects: Updates the heap after the element handled by \c handle has been changed.
|
Chris@16
|
743 *
|
Chris@16
|
744 * \b Complexity: Logarithmic (amortized).
|
Chris@16
|
745 *
|
Chris@16
|
746 * \b Note: The new value is expected to be less than the current one. If this is not called, after a handle has been updated, the behavior of the data structure is undefined!
|
Chris@16
|
747 * */
|
Chris@16
|
748 void decrease (handle_type handle)
|
Chris@16
|
749 {
|
Chris@16
|
750 BOOST_STATIC_ASSERT(is_mutable);
|
Chris@16
|
751 node_pointer this_node = handle.node_;
|
Chris@16
|
752
|
Chris@16
|
753 unlink_node(this_node);
|
Chris@16
|
754 this_node->children.assign(0);
|
Chris@16
|
755 this_node->set_parent(NULL);
|
Chris@16
|
756 merge_node(this_node);
|
Chris@16
|
757 }
|
Chris@16
|
758
|
Chris@16
|
759 private:
|
Chris@16
|
760 #if !defined(BOOST_DOXYGEN_INVOKED)
|
Chris@16
|
761 struct push_void
|
Chris@16
|
762 {
|
Chris@16
|
763 static void push(skew_heap * self, const_reference v)
|
Chris@16
|
764 {
|
Chris@16
|
765 self->push_internal(v);
|
Chris@16
|
766 }
|
Chris@16
|
767
|
Chris@16
|
768 #if !defined(BOOST_NO_CXX11_RVALUE_REFERENCES) && !defined(BOOST_NO_CXX11_VARIADIC_TEMPLATES)
|
Chris@16
|
769 template <class... Args>
|
Chris@16
|
770 static void emplace(skew_heap * self, Args&&... args)
|
Chris@16
|
771 {
|
Chris@16
|
772 self->emplace_internal(std::forward<Args>(args)...);
|
Chris@16
|
773 }
|
Chris@16
|
774 #endif
|
Chris@16
|
775 };
|
Chris@16
|
776
|
Chris@16
|
777 struct push_handle
|
Chris@16
|
778 {
|
Chris@16
|
779 static handle_type push(skew_heap * self, const_reference v)
|
Chris@16
|
780 {
|
Chris@16
|
781 return handle_type(self->push_internal(v));
|
Chris@16
|
782 }
|
Chris@16
|
783
|
Chris@16
|
784 #if !defined(BOOST_NO_CXX11_RVALUE_REFERENCES) && !defined(BOOST_NO_CXX11_VARIADIC_TEMPLATES)
|
Chris@16
|
785 template <class... Args>
|
Chris@16
|
786 static handle_type emplace(skew_heap * self, Args&&... args)
|
Chris@16
|
787 {
|
Chris@16
|
788 return handle_type(self->emplace_internal(std::forward<Args>(args)...));
|
Chris@16
|
789 }
|
Chris@16
|
790 #endif
|
Chris@16
|
791 };
|
Chris@16
|
792
|
Chris@16
|
793 node_pointer push_internal(const_reference v)
|
Chris@16
|
794 {
|
Chris@16
|
795 size_holder::increment();
|
Chris@16
|
796
|
Chris@16
|
797 node_pointer n = super_t::allocate(1);
|
Chris@16
|
798 new(n) node(super_t::make_node(v));
|
Chris@16
|
799
|
Chris@16
|
800 merge_node(n);
|
Chris@16
|
801 return n;
|
Chris@16
|
802 }
|
Chris@16
|
803
|
Chris@16
|
804 #if !defined(BOOST_NO_CXX11_RVALUE_REFERENCES) && !defined(BOOST_NO_CXX11_VARIADIC_TEMPLATES)
|
Chris@16
|
805 template <class... Args>
|
Chris@16
|
806 node_pointer emplace_internal(Args&&... args)
|
Chris@16
|
807 {
|
Chris@16
|
808 size_holder::increment();
|
Chris@16
|
809
|
Chris@16
|
810 node_pointer n = super_t::allocate(1);
|
Chris@16
|
811 new(n) node(super_t::make_node(std::forward<Args>(args)...));
|
Chris@16
|
812
|
Chris@16
|
813 merge_node(n);
|
Chris@16
|
814 return n;
|
Chris@16
|
815 }
|
Chris@16
|
816 #endif
|
Chris@16
|
817
|
Chris@16
|
818 void unlink_node(node_pointer node)
|
Chris@16
|
819 {
|
Chris@16
|
820 node_pointer parent = node->get_parent();
|
Chris@16
|
821 node_pointer merged_children = merge_children(node);
|
Chris@16
|
822
|
Chris@16
|
823 if (parent) {
|
Chris@16
|
824 if (node == parent->children[0])
|
Chris@16
|
825 parent->children[0] = merged_children;
|
Chris@16
|
826 else
|
Chris@16
|
827 parent->children[1] = merged_children;
|
Chris@16
|
828 }
|
Chris@16
|
829 else
|
Chris@16
|
830 root = merged_children;
|
Chris@16
|
831 }
|
Chris@16
|
832
|
Chris@16
|
833 void clone_tree(skew_heap const & rhs)
|
Chris@16
|
834 {
|
Chris@16
|
835 BOOST_HEAP_ASSERT(root == NULL);
|
Chris@16
|
836 if (rhs.empty())
|
Chris@16
|
837 return;
|
Chris@16
|
838
|
Chris@16
|
839 root = allocator_type::allocate(1);
|
Chris@16
|
840
|
Chris@16
|
841 new(root) node(*rhs.root, static_cast<allocator_type&>(*this), NULL);
|
Chris@16
|
842 }
|
Chris@16
|
843
|
Chris@16
|
844 void merge_node(node_pointer other)
|
Chris@16
|
845 {
|
Chris@16
|
846 BOOST_HEAP_ASSERT(other);
|
Chris@16
|
847 if (root != NULL)
|
Chris@16
|
848 root = merge_nodes(root, other, NULL);
|
Chris@16
|
849 else
|
Chris@16
|
850 root = other;
|
Chris@16
|
851 }
|
Chris@16
|
852
|
Chris@16
|
853 node_pointer merge_nodes(node_pointer node1, node_pointer node2, node_pointer new_parent)
|
Chris@16
|
854 {
|
Chris@16
|
855 if (node1 == NULL) {
|
Chris@16
|
856 if (node2)
|
Chris@16
|
857 node2->set_parent(new_parent);
|
Chris@16
|
858 return node2;
|
Chris@16
|
859 }
|
Chris@16
|
860 if (node2 == NULL) {
|
Chris@16
|
861 node1->set_parent(new_parent);
|
Chris@16
|
862 return node1;
|
Chris@16
|
863 }
|
Chris@16
|
864
|
Chris@16
|
865 node_pointer merged = merge_nodes_recursive(node1, node2, new_parent);
|
Chris@16
|
866 return merged;
|
Chris@16
|
867 }
|
Chris@16
|
868
|
Chris@16
|
869 node_pointer merge_children(node_pointer node)
|
Chris@16
|
870 {
|
Chris@16
|
871 node_pointer parent = node->get_parent();
|
Chris@16
|
872 node_pointer merged_children = merge_nodes(node->children[0], node->children[1], parent);
|
Chris@16
|
873
|
Chris@16
|
874 return merged_children;
|
Chris@16
|
875 }
|
Chris@16
|
876
|
Chris@16
|
877 node_pointer merge_nodes_recursive(node_pointer node1, node_pointer node2, node_pointer new_parent)
|
Chris@16
|
878 {
|
Chris@16
|
879 if (super_t::operator()(node1->value, node2->value))
|
Chris@16
|
880 std::swap(node1, node2);
|
Chris@16
|
881
|
Chris@16
|
882 node * parent = node1;
|
Chris@16
|
883 node * child = node2;
|
Chris@16
|
884
|
Chris@16
|
885 if (parent->children[1]) {
|
Chris@16
|
886 node * merged = merge_nodes(parent->children[1], child, parent);
|
Chris@16
|
887 parent->children[1] = merged;
|
Chris@16
|
888 merged->set_parent(parent);
|
Chris@16
|
889 } else {
|
Chris@16
|
890 parent->children[1] = child;
|
Chris@16
|
891 child->set_parent(parent);
|
Chris@16
|
892 }
|
Chris@16
|
893
|
Chris@16
|
894
|
Chris@16
|
895 std::swap(parent->children[0], parent->children[1]);
|
Chris@16
|
896 parent->set_parent(new_parent);
|
Chris@16
|
897 return parent;
|
Chris@16
|
898 }
|
Chris@16
|
899
|
Chris@16
|
900 void sanity_check(void)
|
Chris@16
|
901 {
|
Chris@16
|
902 #ifdef BOOST_HEAP_SANITYCHECKS
|
Chris@16
|
903 if (root)
|
Chris@16
|
904 BOOST_HEAP_ASSERT( root->template is_heap<super_t>(super_t::value_comp()) );
|
Chris@16
|
905
|
Chris@16
|
906 if (constant_time_size) {
|
Chris@16
|
907 size_type stored_size = size_holder::get_size();
|
Chris@16
|
908
|
Chris@16
|
909 size_type counted_size;
|
Chris@16
|
910 if (root == NULL)
|
Chris@16
|
911 counted_size = 0;
|
Chris@16
|
912 else
|
Chris@16
|
913 counted_size = root->count_children();
|
Chris@16
|
914
|
Chris@16
|
915 BOOST_HEAP_ASSERT(counted_size == stored_size);
|
Chris@16
|
916 }
|
Chris@16
|
917 #endif
|
Chris@16
|
918 }
|
Chris@16
|
919
|
Chris@16
|
920 node_pointer root;
|
Chris@16
|
921 #endif
|
Chris@16
|
922 };
|
Chris@16
|
923
|
Chris@16
|
924 } /* namespace heap */
|
Chris@16
|
925 } /* namespace boost */
|
Chris@16
|
926
|
Chris@16
|
927 #undef BOOST_HEAP_ASSERT
|
Chris@16
|
928 #endif /* BOOST_HEAP_SKEW_HEAP_HPP */
|