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root/group/trunk/OOPSE-4/src/utils/GenericFactory.hpp
Revision: 2204
Committed: Fri Apr 15 22:04:00 2005 UTC (19 years, 2 months ago) by gezelter
File size: 8371 byte(s)
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# User Rev Content
1 gezelter 2204 /*
2 gezelter 1930 * Copyright (c) 2005 The University of Notre Dame. All Rights Reserved.
3 tim 1587 *
4 gezelter 1930 * The University of Notre Dame grants you ("Licensee") a
5     * non-exclusive, royalty free, license to use, modify and
6     * redistribute this software in source and binary code form, provided
7     * that the following conditions are met:
8     *
9     * 1. Acknowledgement of the program authors must be made in any
10     * publication of scientific results based in part on use of the
11     * program. An acceptable form of acknowledgement is citation of
12     * the article in which the program was described (Matthew
13     * A. Meineke, Charles F. Vardeman II, Teng Lin, Christopher
14     * J. Fennell and J. Daniel Gezelter, "OOPSE: An Object-Oriented
15     * Parallel Simulation Engine for Molecular Dynamics,"
16     * J. Comput. Chem. 26, pp. 252-271 (2005))
17     *
18     * 2. Redistributions of source code must retain the above copyright
19     * notice, this list of conditions and the following disclaimer.
20     *
21     * 3. Redistributions in binary form must reproduce the above copyright
22     * notice, this list of conditions and the following disclaimer in the
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24     * distribution.
25     *
26     * This software is provided "AS IS," without a warranty of any
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28     * warranties, including any implied warranty of merchantability,
29     * fitness for a particular purpose or non-infringement, are hereby
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40 tim 1587 */
41 gezelter 1930
42 tim 1587 /**
43 tim 1641 * @file GenericFactory.hpp
44 tim 1587 * @author Teng Lin
45 tim 1641 * @date 10/24/2004
46 tim 1587 * @version 1.0
47     */
48     #ifndef UTIL_GENERICFACTORY_HPP
49     #define UTIL_GENERICFACTORY_HPP
50 tim 1643 #include <cassert>
51 tim 1587 #include <map>
52     #include <string>
53 tim 1641 #include <vector>
54    
55 tim 1592 namespace oopse {
56 tim 1641
57 gezelter 2204 /**
58     * @class GenericFactory GenericFactory.hpp "utils/GenericFactory.hpp"
59     * @brief GenericFactory is a template based Object Factory
60     * Factory pattern is used to define an interface for creating an object.
61     *
62     * @param Object the base class of the hierarchy for which you provide the object factory.
63     * @param IdentType the object that identifies the type of the concrete object. Default type is std::string * @param Creator the callable entity that creates objects. This type must support operator(),
64     * taking no parameters and returning a pointer to Object. Default type is function pointer.
65     *
66     * Usage:
67     * @code
68     * //Shape class
69     * class Shape {
70     * ...
71     * };
72     *
73     * //instantiating a new object factory
74     * typedef GenericFactory<Shape> ShapeFactory;
75     *
76     * //Line class
77     * class Line : public Shape{
78     * ...
79     * };
80     *
81     * //declare function to create Line
82     * Shape* createLine() {
83     * return new Line;
84     * }
85     *
86     * //register createLine
87     * //note: must put ShapeFactory::getInstance()->registerCreator("Line", createLine) on the right
88     * //hand side, otherwise the compiler will consider it as a function declaration
89     * const bool registeredLine = ShapeFactory::getInstance()->registerCreator("Line", createLine);
90     *
91     * //Circle class
92     * class Circle : public Shape{
93     * ...
94     * };
95     *
96     * //declare function to create Circle
97     * Shape* createCircle() {
98     * return new Circle;
99     * }
100     *
101     * //register createCircle
102     * const bool registeredCircle = ShapeFactory::getInstance()->registerCreator("Circle", createCircle);
103     *
104     * //create object by ident
105     * Line* line = ShapeFactory::getInstance()->createObject("Line");
106     * Circle* circle = ShapeFactory::getInstance()->createObject("Circle");
107     * @endcode
108     *
109     * Or the user can use predefined macro DECLARE_CREATOR and REGISTER_CREATOR
110     * @code
111     * //Shape class
112     * class Shape {
113     * ...
114     * };
115     *
116     * //instantiating a new object factory
117     * typedef GenericFactory<Shape> ShapeFactory;
118     *
119     * //Line class
120     * class Line : public Shape{
121     * ...
122     * };
123     *
124     * //declare function using macro
125     * DECLARE_CREATOR(Shape, Line)
126     *
127     * //register using macro
128     * REGISTER_CREATOR(ShapeFactory, "Line", Line);
129 tim 1643
130 gezelter 2204 * //Circle class
131     * class Circle : public Shape{
132     * ...
133     * };
134     *
135     * //declare function using macro
136     * DECLARE_CREATOR(Shape, Circle)
137     *
138     * //register using macro
139     * REGISTER_CREATOR(ShapeFactory, "Circle", Circle);
140     * @endcode
141     */
142     template<class Object, typename IdentType = std::string, typename Creator = Object* (*)()>
143     class GenericFactory {
144     public:
145     typedef GenericFactory<Object, IdentType, Creator> FactoryType;
146     typedef std::map<IdentType, Creator> CreatorMapType;
147 tim 1587
148 gezelter 2204 /**
149     * Returns an instance of object factory
150     * @return an instance of object factory
151     */
152     static FactoryType* getInstance(){
153     if (instance_ == NULL)
154     instance_ = new FactoryType;
155     return instance_;
156     }
157 tim 1587
158 gezelter 2204 /**
159     * Registers a creator with a type identifier
160     * @return true if registration is succeed, otherwise return false
161     * @id the identification of the concrete object
162     * @creator the object responsible to create the concrete object
163     */
164     bool registerCreator(const IdentType& id, Creator creator) {
165     return creatorMap_.insert(
166     CreatorMapType::value_type(id, creator)).second;
167     }
168 tim 1587
169 gezelter 2204 /**
170     * Unregisters the creator for the given type identifier. If the type identifier
171     * was previously registered, the function returns true.
172     * @return truethe type identifier was previously registered and the creator is removed,
173     * otherwise return false
174     * @id the identification of the concrete object
175     */
176     bool unregisterCreator(const IdentType& id) {
177     return creatorMap_.erase(id) == 1;
178     }
179 tim 1587
180 gezelter 2204 /**
181     * Looks up the type identifier in the internal map. If it is found, it invokes the
182     * corresponding creator for the type identifier and returns its result.
183     * @return a pointer of the concrete object, return NULL if no creator is registed for
184     * creating this concrete object
185     * @param id the identification of the concrete object
186     */
187     Object* createObject(const IdentType& id) {
188     typename CreatorMapType::iterator i = creatorMap_.find(id);
189     if (i != creatorMap_.end()) {
190     //invoke functor to create object
191     return (i->second)();
192     } else {
193     return NULL;
194     }
195     }
196 tim 1592
197 gezelter 2204 /**
198     * Returns all of the registed type identifiers
199     * @return all of the registed type identifiers
200     */
201     std::vector<IdentType> getIdents() {
202     std::vector<IdentType> idents;
203     typename CreatorMapType::iterator i;
204 tim 1592
205 gezelter 2204 for (i = creatorMap_.begin(); i != creatorMap_.end(); ++i) {
206     idents.push_back(i->first);
207     }
208 tim 1641
209 gezelter 2204 return idents;
210     }
211 tim 1641
212 gezelter 2204 public:
213     static FactoryType* instance_;
214     CreatorMapType creatorMap_;
215     };
216 tim 1587
217 gezelter 2204 /** write out all of the type identifiers to an output stream */
218     template<typename O, typename I, typename C>
219     std::ostream& operator <<(std::ostream& o, GenericFactory<O, I, C>& factory) {
220 tim 1641 std::vector<I> idents;
221     std::vector<I>::iterator i;
222 tim 1587
223 tim 1641 idents = factory.getIdents();
224    
225     o << "Avaliable type identifiers in this factory: " << std::endl;
226     for (i = idents.begin(); i != idents.end(); ++i) {
227 gezelter 2204 o << *i << std::endl;
228 tim 1592 }
229    
230 tim 1641 return o;
231 gezelter 2204 }
232 tim 1641
233 gezelter 2204 //static template class member
234     template<class Object, typename IdentType,typename Creator>
235     GenericFactory<Object,IdentType,Creator>* GenericFactory<Object,IdentType,Creator>::instance_ ;
236 tim 1641
237 tim 1643
238 tim 1641 #define DECLARE_CREATOR(abstractObject, concreteObject) \
239 gezelter 2204 inline abstractObject* create##concreteObject(){ \
240     return new concreteObject; \
241     }
242 tim 1641
243 gezelter 2204 #define REGISTER_CREATOR(factory, ident, concreteObject) \
244     const bool registered##concreteObject = factory::getInstance()->registerCreator(ident, create##concreteObject);
245 tim 1643
246    
247 tim 1592 }//namespace oopse
248     #endif //UTIL_GENERICFACTORY_HPP
249