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272 lines
6.4 KiB
C++
272 lines
6.4 KiB
C++
// (C) Copyright Jeremy Siek 2004.
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// Distributed under the Boost Software License, Version 1.0. (See
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// accompanying file LICENSE_1_0.txt or copy at
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// http://www.boost.org/LICENSE_1_0.txt)
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#ifndef BOOST_FIBONACCI_HEAP_HPP
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#define BOOST_FIBONACCI_HEAP_HPP
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#if defined(__sgi) && !defined(__GNUC__)
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# include <math.h>
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#else
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# include <boost/config/no_tr1/cmath.hpp>
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#endif
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#include <iosfwd>
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#include <vector>
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#include <functional>
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#include <boost/config.hpp>
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#include <boost/property_map/property_map.hpp>
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//
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// An adaptation of Knuth's Fibonacci heap implementation
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// in "The Stanford Graph Base", pages 475-482.
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//
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namespace boost {
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template <class T,
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class Compare = std::less<T>,
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class ID = identity_property_map>
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class fibonacci_heap
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{
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typedef typename boost::property_traits<ID>::value_type size_type;
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typedef T value_type;
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protected:
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typedef fibonacci_heap self;
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typedef std::vector<size_type> LinkVec;
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typedef typename LinkVec::iterator LinkIter;
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public:
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fibonacci_heap(size_type n,
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const Compare& cmp,
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const ID& id = identity_property_map())
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: _key(n), _left(n), _right(n), _p(n), _mark(n), _degree(n),
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_n(0), _root(n), _id(id), _compare(cmp), _child(n),
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#if defined(BOOST_MSVC) || defined(__ICL) // need a new macro?
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new_roots(size_type(log(float(n))) + 5) { }
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#else
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new_roots(size_type(std::log(float(n))) + 5) { }
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#endif
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// 33
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void push(const T& d) {
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++_n;
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size_type v = get(_id, d);
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_key[v] = d;
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_p[v] = nil();
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_degree[v] = 0;
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_mark[v] = false;
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_child[v] = nil();
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if (_root == nil()) {
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_root = _left[v] = _right[v] = v;
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//std::cout << "root added" << std::endl;
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} else {
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size_type u = _left[_root];
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_left[v] = u;
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_right[v] = _root;
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_left[_root] = _right[u] = v;
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if (_compare(d, _key[_root]))
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_root = v;
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//std::cout << "non-root node added" << std::endl;
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}
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}
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T& top() { return _key[_root]; }
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const T& top() const { return _key[_root]; }
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// 38
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void pop() {
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--_n;
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int h = -1;
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size_type v, w;
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if (_root != nil()) {
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if (_degree[_root] == 0) {
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v = _right[_root];
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} else {
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w = _child[_root];
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v = _right[w];
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_right[w] = _right[_root];
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for (w = v; w != _right[_root]; w = _right[w])
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_p[w] = nil();
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}
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while (v != _root) {
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w = _right[v];
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add_tree_to_new_roots(v, new_roots.begin(), h);
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v = w;
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}
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rebuild_root_list(new_roots.begin(), h);
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}
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}
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// 39
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inline void add_tree_to_new_roots(size_type v,
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LinkIter new_roots,
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int& h)
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{
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int r;
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size_type u;
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r = _degree[v];
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while (1) {
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if (h < r) {
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do {
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++h;
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new_roots[h] = (h == r ? v : nil());
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} while (h < r);
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break;
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}
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if (new_roots[r] == nil()) {
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new_roots[r] = v;
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break;
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}
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u = new_roots[r];
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new_roots[r] = nil();
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if (_compare(_key[u], _key[v])) {
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_degree[v] = r;
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_mark[v] = false;
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std::swap(u, v);
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}
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make_child(u, v, r);
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++r;
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}
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_degree[v] = r;
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_mark[v] = false;
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}
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// 40
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void make_child(size_type u, size_type v, size_type r) {
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if (r == 0) {
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_child[v] = u;
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_left[u] = u;
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_right[u] = u;
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} else {
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size_type t = _child[v];
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_right[u] = _right[t];
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_left[u] = t;
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_right[t] = u;
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_left[_right[u]] = u;
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}
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_p[u] = v;
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}
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// 41
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inline void rebuild_root_list(LinkIter new_roots, int& h)
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{
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size_type u, v, w;
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if (h < 0)
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_root = nil();
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else {
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T d;
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u = v = new_roots[h];
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d = _key[u];
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_root = u;
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for (h--; h >= 0; --h)
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if (new_roots[h] != nil()) {
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w = new_roots[h];
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_left[w] = v;
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_right[v] = w;
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if (_compare(_key[w], d)) {
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_root = w;
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d = _key[w];
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}
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v = w;
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}
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_right[v] = u;
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_left[u] = v;
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}
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}
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// 34
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void update(const T& d) {
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size_type v = get(_id, d);
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assert(!_compare(_key[v], d));
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_key[v] = d;
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size_type p = _p[v];
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if (p == nil()) {
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if (_compare(d, _key[_root]))
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_root = v;
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} else if (_compare(d, _key[p]))
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while (1) {
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size_type r = _degree[p];
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if (r >= 2)
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remove_from_family(v, p);
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insert_into_forest(v, d);
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size_type pp = _p[p];
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if (pp == nil()) {
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--_degree[p];
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break;
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}
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if (_mark[p] == false) {
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_mark[p] = true;
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--_degree[p];
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break;
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} else
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--_degree[p];
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v = p;
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p = pp;
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}
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}
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inline size_type size() const { return _n; }
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inline bool empty() const { return _n == 0; }
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void print(std::ostream& os) {
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if (_root != nil()) {
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size_type i = _root;
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do {
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print_recur(i, os);
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os << std::endl;
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i = _right[i];
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} while (i != _root);
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}
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}
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protected:
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// 35
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inline void remove_from_family(size_type v, size_type p) {
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size_type u = _left[v];
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size_type w = _right[v];
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_right[u] = w;
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_left[w] = u;
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if (_child[p] == v)
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_child[p] = w;
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}
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// 36
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inline void insert_into_forest(size_type v, const T& d) {
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_p[v] = nil();
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size_type u = _left[_root];
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_left[v] = u;
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_right[v] = _root;
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_left[_root] = _right[u] = v;
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if (_compare(d, _key[_root]))
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_root = v;
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}
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void print_recur(size_type x, std::ostream& os) {
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if (x != nil()) {
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os << x;
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if (_degree[x] > 0) {
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os << "(";
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size_type i = _child[x];
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do {
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print_recur(i, os); os << " ";
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i = _right[i];
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} while (i != _child[x]);
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os << ")";
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}
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}
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}
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size_type nil() const { return _left.size(); }
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std::vector<T> _key;
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LinkVec _left, _right, _p;
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std::vector<bool> _mark;
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LinkVec _degree;
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size_type _n, _root;
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ID _id;
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Compare _compare;
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LinkVec _child;
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LinkVec new_roots;
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};
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} // namespace boost
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#endif // BOOST_FIBONACCI_HEAP_HPP
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