| 1 | /*
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| 2 | * ManipulablePrototypeFactory.hpp
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| 3 | *
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| 4 | * Created on: Jan 6, 2011
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| 5 | * Author: heber
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| 6 | */
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| 7 |
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| 8 | #ifndef MANIPULABLEDPROTOTYPEFACTORY_HPP_
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| 9 | #define MANIPULABLEDPROTOTYPEFACTORY_HPP_
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| 10 |
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| 11 | // include config.h
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| 12 | #ifdef HAVE_CONFIG_H
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| 13 | #include <config.h>
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| 14 | #endif
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| 15 |
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| 16 | #include <map>
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| 17 | #include <typeinfo>
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| 18 |
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| 19 | #include "CodePatterns/Assert.hpp"
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| 20 |
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| 21 | #include "CodePatterns/ManipulableClone.hpp"
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| 22 |
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| 23 | class ManipulablePrototypeFactoryTest;
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| 24 |
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| 25 | /** \section <ManipulablePrototypeFactory> (Manipulable Prototype Factory Howto)
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| 26 | *
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| 27 | * This template produces the generic manipulable prototype factory pattern.
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| 28 | *
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| 29 | * <h2> Introduction </h2>
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| 30 | *
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| 31 | * The prototype factory is very similar to the factory pattern with one
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| 32 | * important difference: An prototype factory contains prototypes that are
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| 33 | * cloned, whereas a factory contains creation wrappers that just create
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| 34 | * a new object (i.e. without copying any additional information). Here, you
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| 35 | * may additionally \a manipulate the protype at run-time.
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| 36 | *
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| 37 | * A prototype factory is a class that instantiates other types. In order to be
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| 38 | * able to do so the following prerequisites must be met:
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| 39 | * -# there is a list of types the factory should be able to produce
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| 40 | * -# these types have to implement the Clone pattern, i.e. derive from it and
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| 41 | * implement a function clone(), see @ref <Clone> ''(Clone)''.
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| 42 | * -# they all must be derived from a common class (e.g. an interface) which is
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| 43 | * the type of the reference the factory returned the newly created objects
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| 44 | * as.
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| 45 | *
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| 46 | * The reason for the last one is that it is not possible -- except by an ugly
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| 47 | * static_cast -- to retrieve the particular type and if nonetheless needed,
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| 48 | * factory is probably the wrong pattern. After all what a factory does is
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| 49 | * hiding the specifics of a certain subtype, e.g. to control a motor it is not
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| 50 | * necessary to know how fast it goes and what it precisely does, you just need
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| 51 | * need the throttle as a control and some kind of rpm feedback. This control
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| 52 | * and feedback would be the stuff abstracted into the interface class.
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| 53 | *
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| 54 | * <h2>How to make a class Prototype Factory</h2>
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| 55 | *
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| 56 | * If you want to make a class a Prototype Factory you can use the following
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| 57 | * sequence of steps.
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| 58 | *
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| 59 | * Before we begin, we assume the following #defines to represent ...
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| 60 | * - Abstract_Interface_Class: the aforementioned common interface of all
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| 61 | * particular types the factory should produce.
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| 62 | * - Abstract_Encapsulation_Class: we need to connect the interface class (which
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| 63 | * must not be a template) with the types to put into the factory. Hence, we
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| 64 | * need this (templated) class that encapsulates each possible type as its
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| 65 | * template argument while deriving from (and implementing) the abstract
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| 66 | * interface as well.
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| 67 | * - MyManipulablePrototypeFactory: Your specific factory that spills out references to
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| 68 | * Abstract_Interface_Class that are embodied by
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| 69 | * Abstract_Encapsulation_Class instances.
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| 70 | *
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| 71 | * For present code, have a look at RandomNumberDistributionFactory.def,
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| 72 | * RandomNumberDistribution_Encapsulation.hpp and
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| 73 | * RandomNumberDistributionFactory.hpp.
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| 74 | *
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| 75 | * @attention{
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| 76 | * One last \b warning before we begin: Your types should reside in a distinct
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| 77 | * (and not the global) namespace, otherwise you may get strange errors such
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| 78 | * as
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| 79 | * \verbatim
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| 80 | * /usr/include/boost/preprocessor/iteration/detail/local.hpp:34: error: type/value mismatch at argument 1 in template parameter list for âtemplate<class T> class stubâ
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| 81 | * /usr/include/boost/preprocessor/iteration/detail/local.hpp:34: error: expected a type, got â(FactoryTypeList::ListOfKnownTypes)0uâ
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| 82 | * \endverbatim
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| 83 | * i.e. the compiler cannot discern between the enumerated types and the true
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| 84 | * types due.
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| 85 | * @remarks But having your particular types in their own name space is always
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| 86 | * a good idea.
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| 87 | * }
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| 88 | *
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| 89 | * Now beginning, first remember that all we need is a list of already present
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| 90 | * types, i.e. implemented classes. The rest is the stuff below which is all
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| 91 | * you need (and although it looks like quite a lot, it is actually not).
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| 92 | *
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| 93 | * Then, do the following steps:
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| 94 | * - create a file "RandomNumberDistributionFactory.def" containing only
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| 95 | * preprocessor defines as follows:
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| 96 | * @code
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| 97 | * #ifndef RANDOMNUMBERDISTRIBUTIONMANIPULABLEPROTOTYPEFACTORY_DEF_
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| 98 | * #define RANDOMNUMBERDISTRIBUTIONMANIPULABLEPROTOTYPEFACTORY_DEF_
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| 99 | *
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| 100 | * #define type_seq (uniform_smallint)(uniform_int)
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| 101 | * #define Abstract_Interface_Class RandomNumberDistribution
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| 102 | * #define Abstract_Encapsulation_Class RandomNumberDistribution_Encapsulation
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| 103 | * #define type_name_space boost::
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| 104 | * #undef type_suffix
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| 105 | *
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| 106 | * #endif //RANDOMNUMBERDISTRIBUTIONMANIPULABLEPROTOTYPEFACTORY_DEF_
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| 107 | * @endcode
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| 108 | * where \a type_seq is the list of types, each element in round brackets,
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| 109 | * \a Abstract_Interface_Class is the class name of the abstract base class
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| 110 | * which a reference to the factory spills out, and
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| 111 | * \a Abstract_Encapsulation_Class is the class name of the (templated)
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| 112 | * encapsulation class of each type. Optionally, these types may reside in
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| 113 | * some other name_space, define this one via type_name_space (with suffixes
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| 114 | * double colons!). If you need to add something to the types such as "<>",
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| 115 | * do so in type_suffix.
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| 116 | * Note that the first two and the last line are just to avoid double
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| 117 | * inclusion, also the define made therein is used for the following step ...
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| 118 | * - create the undefine file "RandomNumberDistributionFactory.undef" which
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| 119 | * undefines all the previously made definitions to allow for more factories
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| 120 | * created without the danger of the various defines getting in the way of
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| 121 | * each other:
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| 122 | * @code
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| 123 | * #ifdef RANDOMNUMBERDISTRIBUTIONMANIPULABLEPROTOTYPEFACTORY_DEF_
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| 124 | *
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| 125 | * #undef type_seq
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| 126 | * #undef type_seq_size
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| 127 | * #undef Abstract_Interface_Class
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| 128 | * #undef Abstract_Encapsulation_Class
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| 129 | * #undef type_name_space
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| 130 | * #undef type_suffix
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| 131 | *
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| 132 | * #undef RANDOMNUMBERDISTRIBUTIONMANIPULABLEPROTOTYPEFACTORY_DEF_
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| 133 | * #endif
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| 134 | * @endcode
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| 135 | * - Create the encapsulation of the desired types, listed in the above define
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| 136 | * type_seq via a templated class:
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| 137 | * @code
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| 138 | * #include "Clone.hpp" // the creator wrapper
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| 139 | * #include "RandomNumberDistribution.hpp" // the abstract interface class
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| 140 | * template <class type>
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| 141 | * class RandomNumberDistribution_Encapsulation :
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| 142 | * public RandomNumberDistribution, // inherit from abstract interface
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| 143 | * public Clone<RandomNumberDistribution> // the specialized clone pattern
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| 144 | * {
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| 145 | * // Our Prototype Factory is friend because it needs to access protected cstor
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| 146 | * // to instantiate prototypes.
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| 147 | * friend class RandomNumberDistributionFactory;
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| 148 | *
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| 149 | * protected: // no one except factory and ourselves should be allowed to call them
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| 150 | * RandomNumberDistribution_Encapsulation() {} // constructor
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| 151 | * virtual ~RandomNumberDistribution_Encapsulation() {} // virtual destructor
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| 152 | * public:
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| 153 | * // ... some interface functions here with template implementation ...
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| 154 | * // i.e. those defined as virtual functions in the abstract interface
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| 155 | * RandomNumberDistribution* clone() {
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| 156 | * // .. instantiate a clone of this instance ..
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| 157 | * return MyClone;
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| 158 | * };
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| 159 | * private:
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| 160 | * type encapsulated_type; // the instance of the type to encapsulate
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| 161 | * };
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| 162 | * @endcode
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| 163 | * - in the header of your factory put these before any declaration:
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| 164 | * @code
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| 165 | * // has to be appear BEFORE ManipulablePrototypeFactory.hpp is included!
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| 166 | * #include "RandomNumberDistributionFactory.def"
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| 167 | * #include "CodePatterns/FactoryTypeList.hpp"
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| 168 | * #include "RandomNumberDistributionFactory.undef"
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| 169 | * #include "CodePatterns/ManipulablePrototypeFactory.hpp"
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| 170 | * @endcode
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| 171 | * Then declare your factory by inheriting from Factory<Abstract_Interface_Class>
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| 172 | * @code
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| 173 | * class RandomNumberDistributionFactory :
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| 174 | * public Factory<RandomNumberDistribution>
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| 175 | * {
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| 176 | * // place here all other classes as friends that are allowed to access
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| 177 | * // Factory<RandomNumberDistribution>::getPrototypeManipulator()
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| 178 | * public:
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| 179 | * void FillPrototypeTable(); // these are defined automatically
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| 180 | * void EmptyPrototypeTable(); // you don't have to implement them
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| 181 | *
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| 182 | * RandomNumberDistributionFactory();
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| 183 | * virtual ~RandomNumberDistributionFactory();
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| 184 | *
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| 185 | * };
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| 186 | * #include "RandomNumberDistributionFactory.undef"
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| 187 | * @endcode
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| 188 | * where the last includes undefines the defines made in the first step and
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| 189 | * assures that another factory can be created without any old defines
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| 190 | * getting in the way.
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| 191 | * @note FactoryTypeList.hpp is necessary as we can't have a forward
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| 192 | * declaration of an enum which we need in the header of
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| 193 | * ManipulablePrototypeFactory<T>. Hence, there is an extra class the wraps the
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| 194 | * enum which we inherit.
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| 195 | * - finally implement the prototype factory by:
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| 196 | * @code
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| 197 | * #include "RandomNumberDistribution_Encapsulation.hpp"
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| 198 | * #include "RandomNumberDistributionFactory.hpp"
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| 199 | * // has to be included BEFORE ManipulablePrototypeFactory_impl.hpp!
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| 200 | * #include "RandomNumberDistributionFactory.def"
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| 201 | * #include "CodePatterns/ManipulablePrototypeFactory_impl.hpp"
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| 202 | *
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| 203 | * RandomNumberDistributionFactory::RandomNumberDistributionFactory() {
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| 204 | * FillPrototypeTable();
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| 205 | * }
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| 206 | * RandomNumberDistributionFactory::~RandomNumberDistributionFactory() {
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| 207 | * EmptyPrototypeTable();
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| 208 | * }
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| 209 | *
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| 210 | * CONSTRUCT_SINGLETON(RandomNumberDistributionFactory)
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| 211 | * CONSTRUCT_MANIPULABLEPROTOTYPEFACTORY(RandomNumberDistribution)
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| 212 | *
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| 213 | * #include "RandomNumberDistributionFactory.undef"
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| 214 | * @endcode
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| 215 | * @note the two functions within the constructor that fill and empty the
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| 216 | * prototype table are constructed automatically but you have to call them
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| 217 | * because only you (that is RandomNumberDistributionFactory in our case)
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| 218 | * is a true friend of RandomNumberDistribution_Encapsulation and can access
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| 219 | * its cstor and dstor.
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| 220 | *
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| 221 | * That's all.
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| 222 | */
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| 223 | template <class T, class ParamT>
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| 224 | class ManipulablePrototypeFactory : public FactoryTypeList<T>
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| 225 | {
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| 226 | public:
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| 227 | /** Constructor of class ManipulablePrototypeFactory.
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| 228 | *
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| 229 | */
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| 230 | ManipulablePrototypeFactory()
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| 231 | {
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| 232 | FillEnumTable();
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| 233 | // FillPrototypeTable();
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| 234 | }
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| 235 |
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| 236 | /** (virtual) Destructor of class ManipulablePrototypeFactory.
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| 237 | *
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| 238 | */
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| 239 | virtual ~ManipulablePrototypeFactory()
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| 240 | {
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| 241 | // clear out factories map to allow boost::shared_ptr to do their work (i.e. to release mem)
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| 242 | // this is necessary as factory is an object
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| 243 | enums.clear();
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| 244 | names.clear();
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| 245 | // EmptyPrototypeTable();
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| 246 | // PrototypeTable.clear();
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| 247 | }
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| 248 |
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| 249 |
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| 250 | /** Typedef of enumeration of all types known to this factory
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| 251 | *
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| 252 | * @note The true enumeration has to be stored in a wrapper class
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| 253 | * FactoryTypeList because enumerations cannot be forward declared as is
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| 254 | * necessary here.
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| 255 | */
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| 256 | typedef enum FactoryTypeList<T>::ListOfKnownTypes TypeList;
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| 257 |
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| 258 | /** Setter for currenttype to produce.
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| 259 | *
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| 260 | * @param instance_name name of type
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| 261 | */
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| 262 | void setCurrentType(const std::string instance_name)
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| 263 | {
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| 264 | ASSERT(enums.count(instance_name) != 0,
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| 265 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::setCurrentType() - type "+instance_name+" is not registered.");
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| 266 | currenttype = enums[instance_name];
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| 267 | }
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| 268 |
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| 269 | /** Setter for currenttype to produce.
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| 270 | *
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| 271 | * @param instance_type enumeration index of type
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| 272 | */
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| 273 | void setCurrentType(TypeList instance_type)
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| 274 | {
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| 275 | ASSERT(names.count(instance_type) != 0,
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| 276 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::setCurrentType() - enum type "+toString(instance_type)+" is not registered.");
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| 277 | currenttype = instance_type;
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| 278 | }
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| 279 |
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| 280 | /** Getter for currenttype to produce.
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| 281 | *
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| 282 | * @return name of currenttype
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| 283 | */
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| 284 | const std::string & getCurrentTypeName() const
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| 285 | {
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| 286 | return names[currenttype];
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| 287 | }
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| 288 |
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| 289 | /** Getter for currenttype to produce.
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| 290 | *
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| 291 | * @return enumeration index of currenttype
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| 292 | */
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| 293 | TypeList getCurrentTypeEnum() const
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| 294 | {
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| 295 | return currenttype;
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| 296 | }
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| 297 |
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| 298 | /** Getter for desired type of product.
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| 299 | *
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| 300 | * @param enumeration index of product
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| 301 | * @return reference to copy of product
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| 302 | */
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| 303 | T* getProduct(TypeList instance_type) const
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| 304 | {
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| 305 | ASSERT(names.count(instance_type) != 0,
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| 306 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getProduct() - enum type "+toString(instance_type)+" is not registered.");
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| 307 | return ManipulablePrototypeTable[instance_type]->clone();
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| 308 | }
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| 309 |
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| 310 | /** Getter for desired type of product.
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| 311 | *
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| 312 | * @param instance_name name of product
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| 313 | * @return reference to copy of product
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| 314 | */
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| 315 | T* getProduct(const std::string instance_name) const
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| 316 | {
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| 317 | ASSERT(enums.count(instance_name) != 0,
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| 318 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getProduct() - type name "+instance_name+" is not registered.");
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| 319 | return ManipulablePrototypeTable[ enums[instance_name] ]->clone();
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| 320 | }
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| 321 |
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| 322 | /** Getter for desired type of product.
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| 323 | *
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| 324 | * @param instance_type_info object of the desired type
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| 325 | * @return reference to copy of current type product or NULL if type mismatch
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| 326 | */
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| 327 | T* getProduct(const std::type_info &instance_type_info) const
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| 328 | {
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| 329 | ASSERT(types.count(instance_type_info.name()) != 0,
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| 330 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getProduct() - type info name "+instance_type_info.name()+" is not registered.");
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| 331 | return ManipulablePrototypeTable[ types[instance_type_info.name()] ]->clone();
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| 332 | }
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| 333 |
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| 334 | /** Getter for current type of product.
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| 335 | *
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| 336 | * @return reference to copy of current type product
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| 337 | */
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| 338 | T* getProduct() const
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| 339 | {
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| 340 | return ManipulablePrototypeTable[currenttype]->create();
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| 341 | }
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| 342 |
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| 343 | /** Getter for the name of the desired type of product.
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| 344 | *
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| 345 | * @return name of distribution
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| 346 | */
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| 347 | const std::string &getName(TypeList instance_type) const
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| 348 | {
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| 349 | ASSERT(names.count(instance_type) != 0,
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| 350 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getName() - enum type "+toString(instance_type)+" is not registered.");
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| 351 | return names[instance_type];
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| 352 | }
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| 353 |
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| 354 | /** Getter for the enumeration index of the desired type of product.
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| 355 | *
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| 356 | * @return enum of distribution
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| 357 | */
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| 358 | TypeList getEnum(const std::string instance_name) const
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| 359 | {
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| 360 | ASSERT(enums.count(instance_name) != 0,
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| 361 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getEnum() - type name "+instance_name+" is not registered.");
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| 362 | return enums[instance_name];
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| 363 | }
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| 364 |
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| 365 |
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| 366 | protected:
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| 367 | /** Yields true prototype of the product and sets entry to NULL on
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| 368 | * PrototypeTable.
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| 369 | *
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| 370 | * @warning This method is \b intentionally protected such that only
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| 371 | * specific friends are allowed to access it.
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| 372 | * @warning This method performs a dynamic_cast from Clone<IPrototype>* to
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| 373 | * IPrototype*. This prevents also that prototype is cloneable outside of
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| 374 | * factory.
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| 375 | *
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| 376 | * @param instance_name name of product
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| 377 | * @return reference to prototype stored in this factory
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| 378 | */
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| 379 | T& getPrototype(const std::string instance_name)
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| 380 | {
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| 381 | ASSERT(enums.count(instance_name) != 0,
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| 382 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getPrototype() - type name "+instance_name+" is not registered.");
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| 383 | T* prototype = dynamic_cast<T *>(ManipulablePrototypeTable[ enums[instance_name] ]);
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| 384 | return *prototype;
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| 385 | }
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| 386 |
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| 387 | /** Yields true prototype of the product and sets entry to NULL on
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| 388 | * PrototypeTable.
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| 389 | *
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| 390 | * @warning This method is \b intentionally protected such that only
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| 391 | * specific friends are allowed to access it.
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| 392 | *
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| 393 | * @param enumeration index of product
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| 394 | * @return reference to prototype stored in this factory
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| 395 | */
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| 396 | T& getPrototype(TypeList instance_type)
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| 397 | {
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| 398 | ASSERT(names.count(instance_type) != 0,
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| 399 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getPrototype() - enum type "+toString(instance_type)+" is not registered.");
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| 400 | T* prototype = dynamic_cast<T *>(ManipulablePrototypeTable[instance_type]);
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| 401 | return *prototype;
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| 402 | }
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| 403 |
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| 404 | /** Yields true prototype of the product and sets entry to NULL on
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| 405 | * PrototypeTable.
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| 406 | *
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| 407 | * @warning This method is \b intentionally protected such that only
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| 408 | * specific friends are allowed to access it.
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| 409 | *
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| 410 | * @param instance_type_info object of the desired type
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| 411 | * @return reference to prototype stored in this factory
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| 412 | */
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| 413 | T& getPrototype(const std::type_info &instance_type_info)
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| 414 | {
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| 415 | ASSERT(types.count(instance_type_info.name()) != 0,
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| 416 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::getPrototype() - type info name "+instance_type_info.name()+" is not registered.");
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| 417 | T* prototype = dynamic_cast<T *>(ManipulablePrototypeTable[ types[instance_type_info.name()] ]);
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| 418 | return *prototype;
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| 419 | }
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| 420 |
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| 421 | /** Yields true prototype of the currenttype product and sets entry to NULL
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| 422 | * on PrototypeTable.
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| 423 | *
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| 424 | * @warning This method is \b intentionally protected such that only
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| 425 | * specific friends are allowed to access it.
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| 426 | *
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| 427 | * @return reference to prototype stored in this factory
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| 428 | */
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| 429 | T& getPrototype()
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| 430 | {
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| 431 | T* prototype = dynamic_cast<T *>(ManipulablePrototypeTable[ currenttype ]);
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| 432 | return *prototype;
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| 433 | }
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| 434 |
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| 435 | /** Allows for manipulation of the installed prototype via its constructor
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| 436 | * and a defined set of parameters.
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| 437 | *
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| 438 | * @param instance_name name of product
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| 439 | * @param _params set of parameters
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| 440 | */
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| 441 | void manipulatePrototype(const std::string instance_name, const ParamT &_params)
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| 442 | {
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| 443 | ASSERT(enums.count(instance_name) != 0,
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| 444 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::manipulatePrototype() - type name "+instance_name+" is not registered.");
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| 445 | ManipulableClone<T, ParamT> * prototype = ManipulablePrototypeTable[ enums[instance_name] ];
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| 446 | ManipulablePrototypeTable[ enums[instance_name] ] = prototype->manipulatedclone(_params);
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| 447 | delete prototype;
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| 448 | }
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| 449 |
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| 450 | /** Allows for manipulation of the installed prototype via its constructor
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| 451 | * and a defined set of parameters.
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| 452 | *
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| 453 | * @param enumeration index of product
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| 454 | * @param _params set of parameters
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| 455 | */
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| 456 | void manipulatePrototype(TypeList instance_type, const ParamT &_params)
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| 457 | {
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| 458 | ASSERT(names.count(instance_type) != 0,
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| 459 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::manipulatePrototype() - enum type "+toString(instance_type)+" is not registered.");
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| 460 | ManipulableClone<T, ParamT> * prototype = ManipulablePrototypeTable[ instance_type ];
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| 461 | ManipulablePrototypeTable[ instance_type ] = prototype->manipulatedclone(_params);
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| 462 | delete prototype;
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| 463 | }
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| 464 |
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| 465 | /** Allows for manipulation of the installed prototype via its constructor
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| 466 | * and a defined set of parameters.
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| 467 | *
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| 468 | * @param instance_type_info object of the desired type
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| 469 | * @param _params set of parameters
|
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| 470 | */
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| 471 | void manipulatePrototype(const std::type_info &instance_type_info, const ParamT &_params)
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| 472 | {
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| 473 | ASSERT(types.count(instance_type_info.name()) != 0,
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| 474 | "ManipulablePrototypeFactory<"+toString(typeid(T).name())+">::manipulatePrototype() - type info name "+instance_type_info.name()+" is not registered.");
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| 475 | ManipulableClone<T, ParamT> * prototype = ManipulablePrototypeTable[ types[instance_type_info.name()] ];
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| 476 | ManipulablePrototypeTable[ types[instance_type_info.name()] ] = prototype->manipulatedclone(_params);
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| 477 | delete prototype;
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| 478 | }
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| 479 |
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| 480 | /** Allows for manipulation of the installed prototype via its constructor
|
|---|
| 481 | * and a defined set of parameters.
|
|---|
| 482 | *
|
|---|
| 483 | * @param _params set of parameters
|
|---|
| 484 | */
|
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| 485 | void manipulatePrototype(const ParamT &_params)
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| 486 | {
|
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| 487 | ManipulableClone<T, ParamT> * prototype = ManipulablePrototypeTable[ currenttype ];
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| 488 | ManipulablePrototypeTable[ currenttype ] = prototype->manipulatedclone(_params);
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| 489 | delete prototype;
|
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| 490 | }
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| 491 |
|
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| 492 | /** Creates instances of all possible distribution types
|
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| 493 | * and stores them in \a DistributionPrototypeTable.
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| 494 | *
|
|---|
| 495 | * @note This has to be handed down to the actual implementation of the
|
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| 496 | * desired prototype factory class as cstor and dstor of the abstract
|
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| 497 | * encapsulation class are protected (of a @ref <Clone> (Clone)) and hence
|
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| 498 | * cannot be accessed from this class (because we cannot befriend it from
|
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| 499 | * here).
|
|---|
| 500 | */
|
|---|
| 501 | virtual void FillPrototypeTable() = 0;
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| 502 |
|
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| 503 | /** Removes all prototypes from \a PrototypeTable and free's memory.
|
|---|
| 504 | *
|
|---|
| 505 | * \sa FillPrototypeTable()
|
|---|
| 506 | */
|
|---|
| 507 | virtual void EmptyPrototypeTable() = 0;
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| 508 |
|
|---|
| 509 | /** Create association for enums to strings and vice versa
|
|---|
| 510 | * and stores them in \a distributions tables.
|
|---|
| 511 | */
|
|---|
| 512 | void FillEnumTable();
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|---|
| 513 |
|
|---|
| 514 | typedef std::map<
|
|---|
| 515 | std::string,
|
|---|
| 516 | TypeList
|
|---|
| 517 | > TypeMap;
|
|---|
| 518 | typedef std::map<
|
|---|
| 519 | std::string,
|
|---|
| 520 | TypeList
|
|---|
| 521 | > EnumMap;
|
|---|
| 522 | typedef std::map<
|
|---|
| 523 | TypeList,
|
|---|
| 524 | ManipulableClone<T,ParamT> *
|
|---|
| 525 | > InstanceTable;
|
|---|
| 526 | typedef std::map<
|
|---|
| 527 | TypeList,
|
|---|
| 528 | std::string
|
|---|
| 529 | > NameMap;
|
|---|
| 530 |
|
|---|
| 531 | static TypeList currenttype;
|
|---|
| 532 | static TypeMap types;
|
|---|
| 533 | static EnumMap enums;
|
|---|
| 534 | static InstanceTable ManipulablePrototypeTable;
|
|---|
| 535 | static NameMap names;
|
|---|
| 536 | };
|
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| 537 |
|
|---|
| 538 | template <class T, class ParamT> typename ManipulablePrototypeFactory<T,ParamT>::TypeList ManipulablePrototypeFactory<T,ParamT>::currenttype = (typename ManipulablePrototypeFactory<T,ParamT>::TypeList)0;
|
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| 539 | template <class T, class ParamT> typename ManipulablePrototypeFactory<T,ParamT>::TypeMap ManipulablePrototypeFactory<T,ParamT>::types;
|
|---|
| 540 | template <class T, class ParamT> typename ManipulablePrototypeFactory<T,ParamT>::EnumMap ManipulablePrototypeFactory<T,ParamT>::enums;
|
|---|
| 541 | template <class T, class ParamT> typename ManipulablePrototypeFactory<T,ParamT>::NameMap ManipulablePrototypeFactory<T,ParamT>::names;
|
|---|
| 542 | template <class T, class ParamT> typename ManipulablePrototypeFactory<T,ParamT>::InstanceTable ManipulablePrototypeFactory<T,ParamT>::ManipulablePrototypeTable;
|
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| 543 |
|
|---|
| 544 | /**
|
|---|
| 545 | * This define allows simple instantiation of the necessary factory functions
|
|---|
| 546 | * at a chosen place.
|
|---|
| 547 | */
|
|---|
| 548 | #define CONSTRUCT_MANIPULABLEPROTOTYPEFACTORY(InstanceType, ParamType) \
|
|---|
| 549 | template ManipulablePrototypeFactory<InstanceType, ParamType>::ManipulablePrototypeFactory(); \
|
|---|
| 550 | template ManipulablePrototypeFactory<InstanceType, ParamType>::~ManipulablePrototypeFactory(); \
|
|---|
| 551 | template void ManipulablePrototypeFactory<InstanceType, ParamType>::setCurrentType(const std::string instance_name); \
|
|---|
| 552 | template void ManipulablePrototypeFactory<InstanceType, ParamType>::setCurrentType(TypeList instance_type); \
|
|---|
| 553 | template const std::string & ManipulablePrototypeFactory<InstanceType, ParamType>::getCurrentTypeName() const; \
|
|---|
| 554 | template ManipulablePrototypeFactory<InstanceType, ParamType>::TypeList ManipulablePrototypeFactory<InstanceType, ParamType>::getCurrentTypeEnum() const; \
|
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| 555 | template InstanceType* ManipulablePrototypeFactory<InstanceType, ParamType>::getProduct(TypeList instance_type) const; \
|
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| 556 | template InstanceType* ManipulablePrototypeFactory<InstanceType, ParamType>::getProduct(const std::string instance_name) const; \
|
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| 557 | template const std::string &ManipulablePrototypeFactory<InstanceType, ParamType>::getName(TypeList instance_type) const; \
|
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| 558 | template ManipulablePrototypeFactory<InstanceType, ParamType>::TypeList ManipulablePrototypeFactory<InstanceType, ParamType>::getEnum(const std::string instance_name) const;
|
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| 559 |
|
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| 560 |
|
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| 561 | #endif /* MANIPULABLEPROTOTYPEFACTORY_HPP_ */
|
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