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algorithm.hpp
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algo_type.hpp
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any_node_and_algorithms.hpp
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array_initializer.hpp
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assert.hpp
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avltree_node.hpp
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bstree_algorithms_base.hpp
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common_slist_algorithms.hpp
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config_begin.hpp
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config_end.hpp
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default_header_holder.hpp
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ebo_functor_holder.hpp
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empty_node_checker.hpp
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equal_to_value.hpp
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exception_disposer.hpp
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function_detector.hpp
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generic_hook.hpp
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get_value_traits.hpp
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hashtable_node.hpp
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has_member_function_callable_with.hpp
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hook_traits.hpp
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iiterator.hpp
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is_stateful_value_traits.hpp
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iterator.hpp
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key_nodeptr_comp.hpp
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list_iterator.hpp
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list_node.hpp
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math.hpp
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minimal_less_equal_header.hpp
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minimal_pair_header.hpp
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mpl.hpp
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node_cloner_disposer.hpp
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node_holder.hpp
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node_to_value.hpp
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parent_from_member.hpp
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rbtree_node.hpp
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reverse_iterator.hpp
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simple_disposers.hpp
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size_holder.hpp
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slist_iterator.hpp
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slist_node.hpp
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std_fwd.hpp
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transform_iterator.hpp
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tree_iterator.hpp
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tree_node.hpp
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tree_value_compare.hpp
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uncast.hpp
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workaround.hpp
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/usr/include/boost/intrusive/detail/rbtree_node.hpp
(6952B)
///////////////////////////////////////////////////////////////////////////// // // (C) Copyright Olaf Krzikalla 2004-2006. // (C) Copyright Ion Gaztanaga 2006-2013. // // Distributed under the Boost Software License, Version 1.0. // (See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt) // // See http://www.boost.org/libs/intrusive for documentation. // ///////////////////////////////////////////////////////////////////////////// #ifndef BOOST_INTRUSIVE_RBTREE_NODE_HPP #define BOOST_INTRUSIVE_RBTREE_NODE_HPP #ifndef BOOST_CONFIG_HPP # include <boost/config.hpp> #endif #if defined(BOOST_HAS_PRAGMA_ONCE) # pragma once #endif #include <boost/intrusive/detail/config_begin.hpp> #include <boost/intrusive/detail/workaround.hpp> #include <boost/intrusive/pointer_rebind.hpp> #include <boost/intrusive/rbtree_algorithms.hpp> #include <boost/intrusive/pointer_plus_bits.hpp> #include <boost/intrusive/detail/mpl.hpp> #include <boost/intrusive/detail/tree_node.hpp> namespace boost { namespace intrusive { ///////////////////////////////////////////////////////////////////////////// // // // Generic node_traits for any pointer type // // // ///////////////////////////////////////////////////////////////////////////// //This is the compact representation: 3 pointers template<class VoidPointer> struct compact_rbtree_node { typedef compact_rbtree_node<VoidPointer> node; typedef typename pointer_rebind<VoidPointer, node >::type node_ptr; typedef typename pointer_rebind<VoidPointer, const node >::type const_node_ptr; enum color { red_t, black_t }; node_ptr parent_, left_, right_; }; //This is the normal representation: 3 pointers + enum template<class VoidPointer> struct rbtree_node { typedef rbtree_node<VoidPointer> node; typedef typename pointer_rebind<VoidPointer, node >::type node_ptr; typedef typename pointer_rebind<VoidPointer, const node >::type const_node_ptr; enum color { red_t, black_t }; node_ptr parent_, left_, right_; color color_; }; //This is the default node traits implementation //using a node with 3 generic pointers plus an enum template<class VoidPointer> struct default_rbtree_node_traits_impl { typedef rbtree_node<VoidPointer> node; typedef typename node::node_ptr node_ptr; typedef typename node::const_node_ptr const_node_ptr; typedef typename node::color color; BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_parent(const const_node_ptr & n) { return n->parent_; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_parent(const node_ptr & n) { return n->parent_; } BOOST_INTRUSIVE_FORCEINLINE static void set_parent(node_ptr n, node_ptr p) { n->parent_ = p; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_left(const const_node_ptr & n) { return n->left_; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_left(const node_ptr & n) { return n->left_; } BOOST_INTRUSIVE_FORCEINLINE static void set_left(node_ptr n, node_ptr l) { n->left_ = l; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_right(const const_node_ptr & n) { return n->right_; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_right(const node_ptr & n) { return n->right_; } BOOST_INTRUSIVE_FORCEINLINE static void set_right(node_ptr n, node_ptr r) { n->right_ = r; } BOOST_INTRUSIVE_FORCEINLINE static color get_color(const const_node_ptr & n) { return n->color_; } BOOST_INTRUSIVE_FORCEINLINE static color get_color(const node_ptr & n) { return n->color_; } BOOST_INTRUSIVE_FORCEINLINE static void set_color(const node_ptr & n, color c) { n->color_ = c; } BOOST_INTRUSIVE_FORCEINLINE static color black() { return node::black_t; } BOOST_INTRUSIVE_FORCEINLINE static color red() { return node::red_t; } }; //This is the compact node traits implementation //using a node with 3 generic pointers template<class VoidPointer> struct compact_rbtree_node_traits_impl { typedef compact_rbtree_node<VoidPointer> node; typedef typename node::node_ptr node_ptr; typedef typename node::const_node_ptr const_node_ptr; typedef pointer_plus_bits<node_ptr, 1> ptr_bit; typedef typename node::color color; BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_parent(const const_node_ptr & n) { return ptr_bit::get_pointer(n->parent_); } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_parent(const node_ptr & n) { return ptr_bit::get_pointer(n->parent_); } BOOST_INTRUSIVE_FORCEINLINE static void set_parent(node_ptr n, node_ptr p) { ptr_bit::set_pointer(n->parent_, p); } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_left(const const_node_ptr & n) { return n->left_; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_left(const node_ptr & n) { return n->left_; } BOOST_INTRUSIVE_FORCEINLINE static void set_left(node_ptr n, node_ptr l) { n->left_ = l; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_right(const const_node_ptr & n) { return n->right_; } BOOST_INTRUSIVE_FORCEINLINE static node_ptr get_right(const node_ptr & n) { return n->right_; } BOOST_INTRUSIVE_FORCEINLINE static void set_right(node_ptr n, node_ptr r) { n->right_ = r; } BOOST_INTRUSIVE_FORCEINLINE static color get_color(const const_node_ptr & n) { return (color)ptr_bit::get_bits(n->parent_); } BOOST_INTRUSIVE_FORCEINLINE static color get_color(const node_ptr & n) { return (color)ptr_bit::get_bits(n->parent_); } BOOST_INTRUSIVE_FORCEINLINE static void set_color(const node_ptr & n, color c) { ptr_bit::set_bits(n->parent_, c != 0); } BOOST_INTRUSIVE_FORCEINLINE static color black() { return node::black_t; } BOOST_INTRUSIVE_FORCEINLINE static color red() { return node::red_t; } }; //Dispatches the implementation based on the boolean template<class VoidPointer, bool Compact> struct rbtree_node_traits_dispatch : public default_rbtree_node_traits_impl<VoidPointer> {}; template<class VoidPointer> struct rbtree_node_traits_dispatch<VoidPointer, true> : public compact_rbtree_node_traits_impl<VoidPointer> {}; //Inherit from rbtree_node_traits_dispatch depending on the embedding capabilities template<class VoidPointer, bool OptimizeSize = false> struct rbtree_node_traits : public rbtree_node_traits_dispatch < VoidPointer , OptimizeSize && (max_pointer_plus_bits < VoidPointer , detail::alignment_of<compact_rbtree_node<VoidPointer> >::value >::value >= 1) > {}; } //namespace intrusive } //namespace boost #include <boost/intrusive/detail/config_end.hpp> #endif //BOOST_INTRUSIVE_RBTREE_NODE_HPP
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