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// -*- c++ -*-
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#ifndef HUGO_MAPSKELETON_H
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#define HUGO_MAPSKELETON_H
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///\file
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///\brief Map concepts checking classes for testing and documenting.
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namespace hugo {
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/// The namespace of HUGOlib concepts and concept checking classes
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namespace skeleton {
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/// Readable map concept
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template<typename K, typename T>
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class ReadableMap
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{
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public:
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/// Map's key type.
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typedef K KeyType;
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/// Map's value type. (The type of objects associated with the keys).
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typedef T ValueType;
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/// Returns the value associated with a key.
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ValueType operator[](const KeyType &k) const {return ValueType();}
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/// Copy contsructor. (optional)
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ReadableMap(const ReadableMap&) {}
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/// Assignment operator. (optional)
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ReadableMap& operator=(const ReadableMap&) {return *this;}
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ReadableMap() {}
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};
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/// Writable map concept
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template<typename K, typename T>
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class WritableMap
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{
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public:
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/// Map's key type.
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typedef K KeyType;
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/// Map's value type. (The type of objects associated with the keys).
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typedef T ValueType;
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/// Sets the value associated with a key.
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void set(const KeyType &k,const ValueType &t) {}
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WritableMap() {}
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};
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///Read/Writeable map concept
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template<typename K, typename T>
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class ReadWritableMap : public ReadableMap<K,T>,
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public WritableMap<K,T>
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{
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public:
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/// Map's key type.
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typedef K KeyType;
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/// Map's value type. (The type of objects associated with the keys).
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typedef T ValueType;
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/// Returns the value associated with a key.
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ValueType operator[](const KeyType &k) const {return ValueType();}
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/// Sets the value associated with a key.
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void set(const KeyType &k,const ValueType &t) {}
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/// Copy contsructor. (optional)
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ReadWritableMap(const ReadWritableMap&) {}
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/// Assignment operator. (optional)
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ReadWritableMap& operator=(const ReadWritableMap&) {return *this;}
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/// Facility to define a map with an other value type (optional)
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template<typename T1>
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struct rebind {
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/// The type of a map with the given value type
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typedef ReadWritableMap<K,T1> other;
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};
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/// @brief Constructor that copies all keys from the other map and
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/// assigns to them a default value (optional)
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template<typename T1>
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ReadWritableMap(const ReadWritableMap<K,T1> &map, const ValueType &v) {}
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ReadWritableMap() {}
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};
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///Dereferable map concept
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template<typename K, typename T>
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class DereferableMap : public ReadWritableMap<K,T>
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{
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public:
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/// Map's key type.
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typedef K KeyType;
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/// Map's value type. (The type of objects associated with the keys).
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typedef T ValueType;
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/// Map's reference type. (Reference to an object associated with a key)
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typedef ValueType& ReferenceType;
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/// Map's const reference type.
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typedef const ValueType& ConstReferenceType;
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///Returns a reference to the value associated to a key.
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ReferenceType operator[](const KeyType &i);
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///Returns a const reference to the value associated to a key.
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ConstReferenceType operator[](const KeyType &i) const;
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/// Sets the value associated with a key.
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void set(const KeyType &k,const ValueType &t) { operator[](k)=t; }
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/// Copy contsructor. (optional)
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DereferableMap(const DereferableMap&) {}
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/// Assignment operator. (optional)
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DereferableMap& operator=(const DereferableMap&) {return *this;}
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/// Facility to define a map with an other value type (optional)
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template<typename T1>
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struct rebind {
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/// The type of a map with the given value type
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typedef DereferableMap<K,T1> other;
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};
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/// @brief Constructor that copies all keys from the other map and
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/// assigns to them a default value (optional)
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template<typename T1>
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DereferableMap(const DereferableMap<K,T1> &map, const ValueType &v) {}
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DereferableMap() {}
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};
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}
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}
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#endif // HUGO_MAPSKELETON_H
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