2 * lemon/vector_map.h - Part of LEMON, a generic C++ optimization library
4 * Copyright (C) 2005 Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
5 * (Egervary Research Group on Combinatorial Optimization, EGRES).
7 * Permission to use, modify and distribute this software is granted
8 * provided that this copyright notice appears in all copies. For
9 * precise terms see the accompanying LICENSE file.
11 * This software is provided "AS IS" with no warranty of any kind,
12 * express or implied, and with no claim as to its suitability for any
17 #ifndef LEMON_VECTOR_MAP_H
18 #define LEMON_VECTOR_MAP_H
23 #include <lemon/utility.h>
24 #include <lemon/bits/map_iterator.h>
25 #include <lemon/bits/alteration_notifier.h>
26 #include <lemon/concept_check.h>
27 #include <lemon/concept/maps.h>
29 /// \ingroup graphmapfactory
32 ///\brief Vector based graph maps.
36 /// \ingroup graphmapfactory
38 /// \brief Graph map based on the std::vector storage.
40 /// The VectorMap template class is graph map structure what
41 /// automatically updates the map when a key is added to or erased from
42 /// the map. This map factory uses the allocators to implement
43 /// the container functionality. This map factory
44 /// uses the std::vector to implement the container function.
46 /// \param Registry The AlterationNotifier that will notify this map.
47 /// \param Item The item type of the graph items.
48 /// \param Value The value type of the map.
50 /// \author Balazs Dezso
57 class VectorMap : public AlterationNotifier<_Item>::ObserverBase {
60 typedef True AdaptibleTag;
62 /// The graph type of the map.
64 /// The key type of the map.
66 /// The id map type of the map.
67 typedef AlterationNotifier<_Item> Registry;
68 /// The value type of the map.
72 typedef VectorMap Map;
73 /// The base class of the map.
74 typedef typename Registry::ObserverBase Parent;
78 /// The container type of the map.
79 typedef std::vector<Value> Container;
83 /// The reference type of the map;
84 typedef typename Container::reference Reference;
85 /// The pointer type of the map;
86 typedef typename Container::pointer Pointer;
88 /// The const value type of the map.
89 typedef const Value ConstValue;
90 /// The const reference type of the map;
91 typedef typename Container::const_reference ConstReference;
92 /// The pointer type of the map;
93 typedef typename Container::const_pointer ConstPointer;
95 typedef True FullTypeTag;
97 /// \brief Constructor to attach the new map into the registry.
99 /// It constructs a map and attachs it into the registry.
100 /// It adds all the items of the graph to the map.
101 VectorMap(const Graph& _g) : graph(&_g) {
102 attach(_g.getNotifier(_Item()));
106 /// \brief Constructor uses given value to initialize the map.
108 /// It constructs a map uses a given value to initialize the map.
109 /// It adds all the items of the graph to the map.
110 VectorMap(const Graph& _g, const Value& _v) : graph(&_g) {
111 attach(_g.getNotifier(_Item()));
112 container.resize(graph->maxId(_Item()) + 1, _v);
115 /// \brief Copy constructor
117 /// Copy constructor.
118 VectorMap(const VectorMap& _copy)
119 : Parent(), graph(_copy.getGraph()) {
120 if (_copy.attached()) {
121 attach(*_copy.getRegistry());
122 container = _copy.container;
126 /// \brief Destrcutor
129 virtual ~VectorMap() {
138 VectorMap& operator=(const VectorMap&);
142 using Parent::attach;
143 using Parent::detach;
144 using Parent::attached;
146 const Graph* getGraph() const {
152 /// \brief The subcript operator.
154 /// The subscript operator. The map can be subscripted by the
155 /// actual items of the graph.
156 Reference operator[](const Key& key) {
157 return container[graph->id(key)];
160 /// \brief The const subcript operator.
162 /// The const subscript operator. The map can be subscripted by the
163 /// actual items of the graph.
164 ConstReference operator[](const Key& key) const {
165 return container[graph->id(key)];
169 /// \brief The setter function of the map.
171 /// It the same as operator[](key) = value expression.
172 void set(const Key& key, const Value& value) {
173 (*this)[key] = value;
178 /// \brief Adds a new key to the map.
180 /// It adds a new key to the map. It called by the observer registry
181 /// and it overrides the add() member function of the observer base.
182 virtual void add(const Key& key) {
183 int id = graph->id(key);
184 if (id >= (int)container.size()) {
185 container.resize(id + 1);
189 /// \brief Erase a key from the map.
191 /// Erase a key from the map. It called by the observer registry
192 /// and it overrides the erase() member function of the observer base.
193 virtual void erase(const Key&) {}
195 /// \brief Buildes the map.
197 /// It buildes the map. It called by the observer registry
198 /// and it overrides the build() member function of the observer base.
199 virtual void build() {
200 container.resize(graph->maxId(_Item()) + 1);
203 /// \brief Clear the map.
205 /// It erase all items from the map. It called by the observer registry
206 /// and it overrides the clear() member function of the observer base.
207 virtual void clear() {