2021-01-30 07:51:39 +01:00
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//
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// MetaObject.h
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//
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// Library: Foundation
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// Package: SharedLibrary
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// Module: ClassLoader
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//
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// Definition of the MetaObject class.
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//
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// Copyright (c) 2004-2006, Applied Informatics Software Engineering GmbH.
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// and Contributors.
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//
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// SPDX-License-Identifier: BSL-1.0
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//
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#ifndef Foundation_MetaObject_INCLUDED
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#define Foundation_MetaObject_INCLUDED
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#include "Poco/Foundation.h"
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#include "Poco/Exception.h"
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#include "Poco/SingletonHolder.h"
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#include <set>
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namespace Poco {
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template <class B>
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class AbstractMetaObject
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/// A MetaObject stores some information
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/// about a C++ class. The MetaObject class
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/// is used by the Manifest class.
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/// AbstractMetaObject is a common base class
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/// for all MetaObject in a rooted class hierarchy.
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/// A MetaObject can also be used as an object
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/// factory for its class.
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{
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public:
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AbstractMetaObject(const char* name): _name(name)
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{
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}
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virtual ~AbstractMetaObject()
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{
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for (auto p: _deleteSet)
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{
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delete p;
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}
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}
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const char* name() const
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{
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return _name;
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}
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virtual B* create() const = 0;
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/// Create a new instance of a class.
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/// Cannot be used for singletons.
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2021-01-30 07:51:39 +01:00
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virtual B& instance() const = 0;
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/// Returns a reference to the only instance
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/// of the class. Used for singletons only.
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virtual bool canCreate() const = 0;
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/// Returns true iff the create method can be used
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/// to create instances of the class.
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/// Returns false if the class is a singleton.
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virtual void destroy(B* pObject) const
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/// If pObject was owned by meta object, the
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/// ownership of the deleted object is removed
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/// and the object is deleted.
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{
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typename ObjectSet::iterator it = _deleteSet.find(pObject);
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if (it != _deleteSet.end())
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{
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_deleteSet.erase(pObject);
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delete pObject;
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}
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}
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B* autoDelete(B* pObject) const
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/// Give ownership of pObject to the meta object.
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/// The meta object will delete all objects it owns
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/// when it is destroyed.
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///
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/// Returns pObject.
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{
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if (this->canCreate()) // guard against singleton
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{
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poco_check_ptr (pObject);
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_deleteSet.insert(pObject);
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}
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else throw InvalidAccessException("Cannot take ownership of", this->name());
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return pObject;
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}
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virtual bool isAutoDelete(B* pObject) const
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/// Returns true if the object is owned
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/// by meta object.
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///
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/// Overloaded in MetaSingleton - returns true
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/// if the class is a singleton.
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{
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return _deleteSet.find(pObject) != _deleteSet.end();
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}
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private:
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AbstractMetaObject();
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AbstractMetaObject(const AbstractMetaObject&);
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AbstractMetaObject& operator = (const AbstractMetaObject&);
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typedef std::set<B*> ObjectSet;
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const char* _name;
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mutable ObjectSet _deleteSet;
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};
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template <class C, class B>
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class MetaObject: public AbstractMetaObject<B>
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/// A MetaObject stores some information
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/// about a C++ class. The MetaObject class
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/// is used by the Manifest class.
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/// A MetaObject can also be used as an object
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/// factory for its class.
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{
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public:
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MetaObject(const char* name): AbstractMetaObject<B>(name)
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{
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}
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~MetaObject()
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{
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}
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B* create() const
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{
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return new C;
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}
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B& instance() const
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{
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throw InvalidAccessException("Not a singleton. Use create() to create instances of", this->name());
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}
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bool canCreate() const
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{
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return true;
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}
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};
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2023-03-23 19:19:11 +01:00
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template <class C, class B>
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class MetaSingleton: public AbstractMetaObject<B>
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/// A SingletonMetaObject disables the create() method
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/// and instead offers an instance() method to access
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/// the single instance of its class.
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{
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public:
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MetaSingleton(const char* name): AbstractMetaObject<B>(name)
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{
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}
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~MetaSingleton()
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{
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}
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B* create() const
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{
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throw InvalidAccessException("Cannot create instances of a singleton class. Use instance() to obtain a", this->name());
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}
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bool canCreate() const
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{
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return false;
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}
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B& instance() const
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{
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return *_object.get();
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}
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bool isAutoDelete(B* /*pObject*/) const
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{
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return true;
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}
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2023-03-23 19:19:11 +01:00
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private:
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mutable SingletonHolder<C> _object;
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};
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2021-01-30 07:51:39 +01:00
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} // namespace Poco
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#endif // Foundation_MetaObject_INCLUDED
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