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deba@1186
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/* -*- C++ -*-
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ladanyi@1435
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 * lemon/radix_heap.h - Part of LEMON, a generic C++ optimization library
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deba@1186
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 *
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deba@1186
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 * Copyright (C) 2005 Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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alpar@1359
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 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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deba@1186
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 *
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deba@1186
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 * Permission to use, modify and distribute this software is granted
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deba@1186
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 * provided that this copyright notice appears in all copies. For
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deba@1186
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 * precise terms see the accompanying LICENSE file.
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deba@1186
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 *
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deba@1186
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 * This software is provided "AS IS" with no warranty of any kind,
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deba@1186
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 * express or implied, and with no claim as to its suitability for any
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deba@1186
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 * purpose.
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deba@1186
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 *
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deba@1186
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 */
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#ifndef LEMON_RADIX_HEAP_H
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deba@1186
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#define LEMON_RADIX_HEAP_H
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///\ingroup auxdat
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///\file
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deba@1186
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///\brief Radix Heap implementation.
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#include <vector>
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#include <lemon/error.h>
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namespace lemon {
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  /// \addtogroup auxdat
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  /// @{
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deba@1331
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  /// \brief Exception thrown by RadixHeap.
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deba@1331
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  ///  
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deba@1331
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  /// This Exception is thrown when a smaller priority
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deba@1331
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  /// is inserted into the \e RadixHeap then the last time erased.
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deba@1331
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  /// \see RadixHeap
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deba@1331
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  /// \author Balazs Dezso
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  class UnderFlowPriorityError : public RuntimeError {
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  public:
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    virtual const char* exceptionName() const {
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      return "lemon::UnderFlowPriorityError";
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    }  
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  };
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deba@1186
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deba@1331
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  /// \brief A Radix Heap implementation.
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deba@1331
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  ///
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deba@1331
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  /// This class implements the \e radix \e heap data structure. A \e heap
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deba@1331
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  /// is a data structure for storing items with specified values called \e
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deba@1331
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  /// priorities in such a way that finding the item with minimum priority is
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deba@1331
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  /// efficient. This heap type can store only items with \e int priority.
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deba@1331
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  /// In a heap one can change the priority of an item, add or erase an 
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  /// item, but the priority cannot be decreased under the last removed 
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  /// item's priority.
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deba@1331
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  ///
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deba@1331
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  /// \param _Item Type of the items to be stored.  
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  /// \param _ItemIntMap A read and writable Item int map, used internally
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deba@1331
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  /// to handle the cross references.
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deba@1331
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  ///
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deba@1331
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  /// \see BinHeap
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  /// \see Dijkstra
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deba@1331
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  /// \author Balazs Dezso
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deba@1186
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  template <typename _Item, typename _ItemIntMap>
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deba@1186
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  class RadixHeap {
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  public:
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    typedef _Item Item;
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    typedef int Prio;
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    typedef _ItemIntMap ItemIntMap;
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deba@1331
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    /// \brief Type to represent the items states.
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deba@1186
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    ///
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    /// Each Item element have a state associated to it. It may be "in heap",
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alpar@1336
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    /// "pre heap" or "post heap". The latter two are indifferent from the
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deba@1331
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    /// heap's point of view, but may be useful to the user.
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deba@1331
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    ///
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    /// The ItemIntMap \e should be initialized in such way that it maps
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deba@1331
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    /// PRE_HEAP (-1) to any element to be put in the heap...
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    enum state_enum {
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      IN_HEAP = 0,
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      PRE_HEAP = -1,
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      POST_HEAP = -2
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deba@1186
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    };
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  private:
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    struct RadixItem {
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      int prev, next, box;
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      Item item;
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      int prio;
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      RadixItem(Item _item, int _prio) : item(_item), prio(_prio) {}
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    };
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    struct RadixBox {
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      int first;
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      int min, size;
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      RadixBox(int _min, int _size) : first(-1), min(_min), size(_size) {}
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    };
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    std::vector<RadixItem> data;
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    std::vector<RadixBox> boxes;
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    ItemIntMap &iim;
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deba@1186
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  public:
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deba@1331
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    /// \brief The constructor.
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deba@1331
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    ///
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deba@1331
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    /// The constructor.
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deba@1331
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    /// \param _iim should be given to the constructor, since it is used
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deba@1331
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    /// internally to handle the cross references. The value of the map
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deba@1331
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    /// should be PRE_HEAP (-1) for each element.
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    explicit RadixHeap(ItemIntMap &_iim) : iim(_iim) {
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      boxes.push_back(RadixBox(0, 1));
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      boxes.push_back(RadixBox(1, 1));
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    }
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deba@1331
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    /// \brief The constructor.
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deba@1331
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    ///
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deba@1331
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    /// The constructor.
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deba@1331
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    ///
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deba@1331
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    /// \param _iim It should be given to the constructor, since it is used
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deba@1331
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    /// internally to handle the cross references. The value of the map
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deba@1331
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    /// should be PRE_HEAP (-1) for each element.
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deba@1331
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    ///
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    /// \param capacity It determines the initial capacity of the heap. 
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    RadixHeap(ItemIntMap &_iim, int capacity) : iim(_iim) {
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      boxes.push_back(RadixBox(0, 1));
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      boxes.push_back(RadixBox(1, 1));
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deba@1186
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      while (upper(boxes.back(), capacity)) {
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	extend();
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      }
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    }
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deba@1186
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deba@1331
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    /// The number of items stored in the heap.
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deba@1331
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    ///
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deba@1331
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    /// \brief Returns the number of items stored in the heap.
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    int size() const { return data.size(); }
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deba@1331
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    /// \brief Checks if the heap stores no items.
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deba@1331
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    ///
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deba@1331
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    /// Returns \c true if and only if the heap stores no items.
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    bool empty() const { return data.empty(); }
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  private:
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    bool upper(int box, Prio prio) {
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      return prio < boxes[box].min;
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deba@1186
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    }
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    bool lower(int box, Prio prio) {
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      return prio >= boxes[box].min + boxes[box].size;
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    }
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deba@1186
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    /// \brief Remove item from the box list.
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deba@1186
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    void remove(int index) {
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deba@1186
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      if (data[index].prev >= 0) {
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deba@1186
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	data[data[index].prev].next = data[index].next;
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deba@1186
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      } else {
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	boxes[data[index].box].first = data[index].next;
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deba@1186
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      }
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deba@1186
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      if (data[index].next >= 0) {
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	data[data[index].next].prev = data[index].prev;
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deba@1186
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      }
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deba@1186
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    }
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deba@1186
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deba@1186
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    /// \brief Insert item into the box list.
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deba@1186
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    void insert(int box, int index) {
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deba@1186
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      if (boxes[box].first == -1) {
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deba@1186
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	boxes[box].first = index;
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deba@1186
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	data[index].next = data[index].prev = -1;
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      } else {
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	data[index].next = boxes[box].first;
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	data[boxes[box].first].prev = index;
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deba@1186
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	data[index].prev = -1;
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	boxes[box].first = index;
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deba@1186
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      }
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      data[index].box = box;
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deba@1186
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    }
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deba@1186
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deba@1186
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    /// \brief Add a new box to the box list.
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deba@1186
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    void extend() {
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      int min = boxes.back().min + boxes.back().size;
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      int size = 2 * boxes.back().size;
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      boxes.push_back(RadixBox(min, size));
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deba@1186
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    }
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deba@1186
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    /// \brief Move an item up into the proper box.
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deba@1186
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    void bubble_up(int index) {
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deba@1205
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      if (!lower(data[index].box, data[index].prio)) return;
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deba@1186
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      remove(index);
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deba@1186
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      int box = findUp(data[index].box, data[index].prio);
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      insert(box, index);      
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deba@1186
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   194  | 
    }
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deba@1186
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    /// \brief Find up the proper box for the item with the given prio.
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deba@1186
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    int findUp(int start, int prio) {
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deba@1186
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      while (lower(start, prio)) {
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deba@1186
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	if (++start == (int)boxes.size()) {
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   200  | 
	  extend();
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deba@1186
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   201  | 
	}
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deba@1186
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   202  | 
      }
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deba@1186
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   203  | 
      return start;
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deba@1186
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   204  | 
    }
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deba@1186
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    /// \brief Move an item down into the proper box.
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deba@1186
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   207  | 
    void bubble_down(int index) {
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deba@1186
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   208  | 
      if (!upper(data[index].box, data[index].prio)) return;
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deba@1186
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      remove(index);
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deba@1186
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   210  | 
      int box = findDown(data[index].box, data[index].prio);
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      insert(box, index);
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deba@1186
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   212  | 
    }
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deba@1186
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    /// \brief Find up the proper box for the item with the given prio.
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deba@1186
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   215  | 
    int findDown(int start, int prio) {
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deba@1186
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   216  | 
      while (upper(start, prio)) {
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deba@1331
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   217  | 
	if (--start < 0) throw UnderFlowPriorityError();
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   218  | 
      }
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deba@1186
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   219  | 
      return start;
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deba@1186
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   220  | 
    }
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deba@1186
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   221  | 
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deba@1186
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    /// \brief Find the first not empty box.
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deba@1186
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   223  | 
    int findFirst() {
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   224  | 
      int first = 0;
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deba@1186
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   225  | 
      while (boxes[first].first == -1) ++first;
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deba@1186
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   226  | 
      return first;
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deba@1186
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   227  | 
    }
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deba@1186
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   228  | 
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deba@1186
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   229  | 
    /// \brief Gives back the minimal prio of the box.
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deba@1186
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   230  | 
    int minValue(int box) {
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deba@1186
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   231  | 
      int min = data[boxes[box].first].prio;
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deba@1186
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   232  | 
      for (int k = boxes[box].first; k != -1; k = data[k].next) {
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deba@1186
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   233  | 
	if (data[k].prio < min) min = data[k].prio;
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   234  | 
      }
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deba@1186
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   235  | 
      return min;
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deba@1186
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   236  | 
    }
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deba@1186
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   237  | 
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deba@1186
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   238  | 
    /// \brief Rearrange the items of the heap and makes the 
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deba@1186
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   239  | 
    /// first box not empty.
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deba@1186
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   240  | 
    void moveDown() {
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deba@1186
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   241  | 
      int box = findFirst();
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deba@1186
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   242  | 
      if (box == 0) return;
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deba@1186
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   243  | 
      int min = minValue(box);
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deba@1186
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   244  | 
      for (int i = 0; i <= box; ++i) {
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deba@1186
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   245  | 
	boxes[i].min = min;
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deba@1186
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   246  | 
	min += boxes[i].size;
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deba@1186
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   247  | 
      }
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deba@1186
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   248  | 
      int curr = boxes[box].first, next;
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deba@1186
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   249  | 
      while (curr != -1) {
 | 
| 
deba@1186
 | 
   250  | 
	next = data[curr].next;
  | 
| 
deba@1186
 | 
   251  | 
	bubble_down(curr);
  | 
| 
deba@1186
 | 
   252  | 
	curr = next;
  | 
| 
deba@1186
 | 
   253  | 
      }      
  | 
| 
deba@1186
 | 
   254  | 
    }
  | 
| 
deba@1186
 | 
   255  | 
  | 
| 
deba@1186
 | 
   256  | 
    void relocate_last(int index) {
 | 
| 
deba@1186
 | 
   257  | 
      if (index != (int)data.size() - 1) {
 | 
| 
deba@1186
 | 
   258  | 
	data[index] = data.back();
  | 
| 
deba@1186
 | 
   259  | 
	if (data[index].prev != -1) {
 | 
| 
deba@1186
 | 
   260  | 
	  data[data[index].prev].next = index;
  | 
| 
deba@1186
 | 
   261  | 
	} else {
 | 
| 
deba@1186
 | 
   262  | 
	  boxes[data[index].box].first = index;
  | 
| 
deba@1186
 | 
   263  | 
	}
  | 
| 
deba@1186
 | 
   264  | 
	if (data[index].next != -1) {
 | 
| 
deba@1186
 | 
   265  | 
	  data[data[index].next].prev = index;
  | 
| 
deba@1186
 | 
   266  | 
	}
  | 
| 
deba@1186
 | 
   267  | 
	iim[data[index].item] = index;
  | 
| 
deba@1186
 | 
   268  | 
      }
  | 
| 
deba@1186
 | 
   269  | 
      data.pop_back();
  | 
| 
deba@1186
 | 
   270  | 
    }
  | 
| 
deba@1186
 | 
   271  | 
  | 
| 
deba@1186
 | 
   272  | 
  public:
  | 
| 
deba@1186
 | 
   273  | 
  | 
| 
deba@1331
 | 
   274  | 
    /// \brief Insert an item into the heap with the given heap.
  | 
| 
deba@1331
 | 
   275  | 
    ///    
  | 
| 
deba@1331
 | 
   276  | 
    /// Adds \c i to the heap with priority \c p. 
  | 
| 
deba@1331
 | 
   277  | 
    /// \param i The item to insert.
  | 
| 
deba@1331
 | 
   278  | 
    /// \param p The priority of the item.
  | 
| 
deba@1186
 | 
   279  | 
    void push(const Item &i, const Prio &p) {
 | 
| 
deba@1186
 | 
   280  | 
      int n = data.size();
  | 
| 
deba@1186
 | 
   281  | 
      iim.set(i, n);
  | 
| 
deba@1186
 | 
   282  | 
      data.push_back(RadixItem(i, p));
  | 
| 
deba@1186
 | 
   283  | 
      while (lower(boxes.size() - 1, p)) {
 | 
| 
deba@1186
 | 
   284  | 
	extend();
  | 
| 
deba@1186
 | 
   285  | 
      }
  | 
| 
deba@1186
 | 
   286  | 
      int box = findDown(boxes.size() - 1, p);
  | 
| 
deba@1186
 | 
   287  | 
      insert(box, n);
  | 
| 
deba@1186
 | 
   288  | 
    }
  | 
| 
deba@1186
 | 
   289  | 
  | 
| 
deba@1331
 | 
   290  | 
    /// \brief Returns the item with minimum priority.
  | 
| 
deba@1331
 | 
   291  | 
    ///
  | 
| 
deba@1331
 | 
   292  | 
    /// This method returns the item with minimum priority.  
  | 
| 
deba@1331
 | 
   293  | 
    /// \pre The heap must be nonempty.  
  | 
| 
deba@1186
 | 
   294  | 
    Item top() const {
 | 
| 
deba@1186
 | 
   295  | 
      const_cast<RadixHeap<Item, ItemIntMap>*>(this)->moveDown();
  | 
| 
deba@1186
 | 
   296  | 
      return data[boxes[0].first].item;
  | 
| 
deba@1186
 | 
   297  | 
    }
  | 
| 
deba@1186
 | 
   298  | 
  | 
| 
deba@1331
 | 
   299  | 
    /// \brief Returns the minimum priority.
  | 
| 
deba@1331
 | 
   300  | 
    ///
  | 
| 
deba@1331
 | 
   301  | 
    /// It returns the minimum priority.
  | 
| 
deba@1331
 | 
   302  | 
    /// \pre The heap must be nonempty.
  | 
| 
deba@1186
 | 
   303  | 
    Prio prio() const {
 | 
| 
deba@1186
 | 
   304  | 
      const_cast<RadixHeap<Item, ItemIntMap>*>(this)->moveDown();
  | 
| 
deba@1186
 | 
   305  | 
      return data[boxes[0].first].prio;
  | 
| 
deba@1186
 | 
   306  | 
     }
  | 
| 
deba@1186
 | 
   307  | 
  | 
| 
deba@1331
 | 
   308  | 
    /// \brief Deletes the item with minimum priority.
  | 
| 
deba@1331
 | 
   309  | 
    ///
  | 
| 
deba@1331
 | 
   310  | 
    /// This method deletes the item with minimum priority.
  | 
| 
deba@1331
 | 
   311  | 
    /// \pre The heap must be non-empty.  
  | 
| 
deba@1186
 | 
   312  | 
    void pop() {
 | 
| 
deba@1186
 | 
   313  | 
      moveDown();
  | 
| 
deba@1186
 | 
   314  | 
      int index = boxes[0].first;
  | 
| 
deba@1186
 | 
   315  | 
      iim[data[index].item] = POST_HEAP;
  | 
| 
deba@1186
 | 
   316  | 
      remove(index);
  | 
| 
deba@1186
 | 
   317  | 
      relocate_last(index);
  | 
| 
deba@1186
 | 
   318  | 
    }
  | 
| 
deba@1186
 | 
   319  | 
  | 
| 
deba@1331
 | 
   320  | 
    /// \brief Deletes \c i from the heap.
  | 
| 
deba@1331
 | 
   321  | 
    ///
  | 
| 
deba@1331
 | 
   322  | 
    /// This method deletes item \c i from the heap, if \c i was
  | 
| 
deba@1331
 | 
   323  | 
    /// already stored in the heap.
  | 
| 
deba@1331
 | 
   324  | 
    /// \param i The item to erase. 
  | 
| 
deba@1186
 | 
   325  | 
    void erase(const Item &i) {
 | 
| 
deba@1186
 | 
   326  | 
      int index = iim[i];
  | 
| 
deba@1186
 | 
   327  | 
      iim[i] = POST_HEAP;
  | 
| 
deba@1186
 | 
   328  | 
      remove(index);
  | 
| 
deba@1186
 | 
   329  | 
      relocate_last(index);
  | 
| 
deba@1186
 | 
   330  | 
   }
  | 
| 
deba@1186
 | 
   331  | 
  | 
| 
deba@1331
 | 
   332  | 
    /// \brief Returns the priority of \c i.
  | 
| 
deba@1331
 | 
   333  | 
    ///
  | 
| 
deba@1331
 | 
   334  | 
    /// This function returns the priority of item \c i.  
  | 
| 
deba@1331
 | 
   335  | 
    /// \pre \c i must be in the heap.
  | 
| 
deba@1331
 | 
   336  | 
    /// \param i The item.
  | 
| 
deba@1186
 | 
   337  | 
    Prio operator[](const Item &i) const {
 | 
| 
deba@1186
 | 
   338  | 
      int idx = iim[i];
  | 
| 
deba@1186
 | 
   339  | 
      return data[idx].prio;
  | 
| 
deba@1186
 | 
   340  | 
    }
  | 
| 
deba@1186
 | 
   341  | 
  | 
| 
deba@1331
 | 
   342  | 
    /// \brief \c i gets to the heap with priority \c p independently 
  | 
| 
deba@1331
 | 
   343  | 
    /// if \c i was already there.
  | 
| 
deba@1331
 | 
   344  | 
    ///
  | 
| 
deba@1331
 | 
   345  | 
    /// This method calls \ref push(\c i, \c p) if \c i is not stored
  | 
| 
deba@1331
 | 
   346  | 
    /// in the heap and sets the priority of \c i to \c p otherwise.
  | 
| 
deba@1331
 | 
   347  | 
    /// It may throw an \e UnderFlowPriorityException. 
  | 
| 
deba@1331
 | 
   348  | 
    /// \param i The item.
  | 
| 
deba@1331
 | 
   349  | 
    /// \param p The priority.
  | 
| 
deba@1186
 | 
   350  | 
    void set(const Item &i, const Prio &p) {
 | 
| 
deba@1186
 | 
   351  | 
      int idx = iim[i];
  | 
| 
deba@1186
 | 
   352  | 
      if( idx < 0 ) {
 | 
| 
deba@1186
 | 
   353  | 
	push(i, p);
  | 
| 
deba@1186
 | 
   354  | 
      }
  | 
| 
deba@1186
 | 
   355  | 
      else if( p >= data[idx].prio ) {
 | 
| 
deba@1186
 | 
   356  | 
	data[idx].prio = p;
  | 
| 
deba@1186
 | 
   357  | 
	bubble_up(idx);
  | 
| 
deba@1186
 | 
   358  | 
      } else {
 | 
| 
deba@1186
 | 
   359  | 
	data[idx].prio = p;
  | 
| 
deba@1186
 | 
   360  | 
	bubble_down(idx);
  | 
| 
deba@1186
 | 
   361  | 
      }
  | 
| 
deba@1186
 | 
   362  | 
    }
  | 
| 
deba@1186
 | 
   363  | 
  | 
| 
deba@1331
 | 
   364  | 
  | 
| 
deba@1331
 | 
   365  | 
    /// \brief Decreases the priority of \c i to \c p.
  | 
| 
deba@1331
 | 
   366  | 
    ///
  | 
| 
deba@1331
 | 
   367  | 
    /// This method decreases the priority of item \c i to \c p.
  | 
| 
deba@1331
 | 
   368  | 
    /// \pre \c i must be stored in the heap with priority at least \c p, and
  | 
| 
deba@1331
 | 
   369  | 
    /// \c should be greater then the last removed item's priority.
  | 
| 
deba@1331
 | 
   370  | 
    /// \param i The item.
  | 
| 
deba@1331
 | 
   371  | 
    /// \param p The priority.
  | 
| 
deba@1186
 | 
   372  | 
    void decrease(const Item &i, const Prio &p) {
 | 
| 
deba@1186
 | 
   373  | 
      int idx = iim[i];
  | 
| 
deba@1186
 | 
   374  | 
      data[idx].prio = p;
  | 
| 
deba@1186
 | 
   375  | 
      bubble_down(idx);
  | 
| 
deba@1186
 | 
   376  | 
    }
  | 
| 
deba@1186
 | 
   377  | 
  | 
| 
deba@1331
 | 
   378  | 
    /// \brief Increases the priority of \c i to \c p.
  | 
| 
deba@1331
 | 
   379  | 
    ///
  | 
| 
deba@1331
 | 
   380  | 
    /// This method sets the priority of item \c i to \c p. 
  | 
| 
deba@1331
 | 
   381  | 
    /// \pre \c i must be stored in the heap with priority at most \c
  | 
| 
deba@1331
 | 
   382  | 
    /// p relative to \c Compare.
  | 
| 
deba@1331
 | 
   383  | 
    /// \param i The item.
  | 
| 
deba@1331
 | 
   384  | 
    /// \param p The priority.
  | 
| 
deba@1186
 | 
   385  | 
    void increase(const Item &i, const Prio &p) {
 | 
| 
deba@1186
 | 
   386  | 
      int idx = iim[i];
  | 
| 
deba@1186
 | 
   387  | 
      data[idx].prio = p;
  | 
| 
deba@1186
 | 
   388  | 
      bubble_up(idx);
  | 
| 
deba@1186
 | 
   389  | 
    }
  | 
| 
deba@1186
 | 
   390  | 
  | 
| 
deba@1331
 | 
   391  | 
    /// \brief Returns if \c item is in, has already been in, or has 
  | 
| 
deba@1331
 | 
   392  | 
    /// never been in the heap.
  | 
| 
deba@1331
 | 
   393  | 
    ///
  | 
| 
deba@1331
 | 
   394  | 
    /// This method returns PRE_HEAP if \c item has never been in the
  | 
| 
deba@1331
 | 
   395  | 
    /// heap, IN_HEAP if it is in the heap at the moment, and POST_HEAP
  | 
| 
deba@1331
 | 
   396  | 
    /// otherwise. In the latter case it is possible that \c item will
  | 
| 
deba@1331
 | 
   397  | 
    /// get back to the heap again.
  | 
| 
deba@1331
 | 
   398  | 
    /// \param i The item.
  | 
| 
deba@1186
 | 
   399  | 
    state_enum state(const Item &i) const {
 | 
| 
deba@1186
 | 
   400  | 
      int s = iim[i];
  | 
| 
deba@1186
 | 
   401  | 
      if( s >= 0 ) s = 0;
  | 
| 
deba@1186
 | 
   402  | 
      return state_enum(s);
  | 
| 
deba@1186
 | 
   403  | 
    }
  | 
| 
deba@1186
 | 
   404  | 
  | 
| 
deba@1186
 | 
   405  | 
  }; // class RadixHeap
  | 
| 
deba@1186
 | 
   406  | 
  | 
| 
deba@1186
 | 
   407  | 
  | 
| 
deba@1186
 | 
   408  | 
  ///@}
  | 
| 
deba@1186
 | 
   409  | 
  | 
| 
deba@1186
 | 
   410  | 
} // namespace lemon
  | 
| 
deba@1186
 | 
   411  | 
  | 
| 
deba@1186
 | 
   412  | 
#endif // LEMON_RADIX_HEAP_H
  |