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/******************************************************************************
*       SOFA, Simulation Open-Framework Architecture, version 1.0 beta 4      *
*                (c) 2006-2009 MGH, INRIA, USTL, UJF, CNRS                    *
*                                                                             *
* This library is free software; you can redistribute it and/or modify it     *
* under the terms of the GNU Lesser General Public License as published by    *
* the Free Software Foundation; either version 2.1 of the License, or (at     *
* your option) any later version.                                             *
*                                                                             *
* This library is distributed in the hope that it will be useful, but WITHOUT *
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or       *
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License *
* for more details.                                                           *
*                                                                             *
* You should have received a copy of the GNU Lesser General Public License    *
* along with this library; if not, write to the Free Software Foundation,     *
* Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301 USA.          *
*******************************************************************************
*                               SOFA :: Modules                               *
*                                                                             *
* Authors: The SOFA Team and external contributors (see Authors.txt)          *
*                                                                             *
* Contact information: contact@sofa-framework.org                             *
******************************************************************************/
#ifndef SOFA_COMPONENT_TOPOLOGY_HEXA2QUADTOPOLOGICALMAPPING_H
#define SOFA_COMPONENT_TOPOLOGY_HEXA2QUADTOPOLOGICALMAPPING_H

#include <sofa/core/componentmodel/topology/TopologicalMapping.h>

#include <sofa/defaulttype/Vec.h>
#include <map>

#include <sofa/core/BaseMapping.h>

namespace sofa
{

namespace component
{

namespace topology
{
using namespace sofa::defaulttype;

using namespace sofa::component::topology;
using namespace sofa::core::componentmodel::topology;

using namespace sofa::core;

/** 
 * This class, called Hexa2QuadTopologicalMapping, is a specific implementation of the interface TopologicalMapping where :
 *
 * INPUT TOPOLOGY = HexahedronSetTopology
 * OUTPUT TOPOLOGY = QuadSetTopology, as the boundary of the INPUT TOPOLOGY
 *
 * Hexa2QuadTopologicalMapping class is templated by the pair (INPUT TOPOLOGY, OUTPUT TOPOLOGY)
 *
*/
	
	class Hexa2QuadTopologicalMapping : public TopologicalMapping 
	{
        public:

            /** \brief Constructor.
             *
             * @param from the topology issuing TopologyChange objects (the "source").
             * @param to   the topology for which the TopologyChange objects must be translated (the "target").
             */
			Hexa2QuadTopologicalMapping(In* from=NULL, Out* to=NULL);

            /** \brief Destructor.
             *
             * Does nothing.
             */
            virtual ~Hexa2QuadTopologicalMapping();

            /** \brief Initializes the target BaseTopology from the source BaseTopology.
             */
            virtual void init();

			
			/** \brief Translates the TopologyChange objects from the source to the target.
             *
             * Translates each of the TopologyChange objects waiting in the source list so that they have a meaning and
             * reflect the effects of the first topology changes on the second topology.
             *
			 */
			virtual void updateTopologicalMappingTopDown();

			virtual unsigned int getFromIndex(unsigned int ind);

			/// Pre-construction check method called by ObjectFactory.
			///
			/// This implementation read the object1 and object2 attributes and check
			/// if they are compatible with the input and output topology types of this
			/// mapping.
			template<class T>
			static bool canCreate(T*& obj, core::objectmodel::BaseContext* context, core::objectmodel::BaseObjectDescription* arg)
			{
				if (arg->findObject(arg->getAttribute("object1","../..")) == NULL)
					context->serr << "Cannot create "<<className(obj)<<" as object1 is missing."<<context->sendl;
				if (arg->findObject(arg->getAttribute("object2","..")) == NULL)
					context->serr << "Cannot create "<<className(obj)<<" as object2 is missing."<<context->sendl;

				if (arg->findObject(arg->getAttribute("object1","../..")) == NULL || arg->findObject(arg->getAttribute("object2","..")) == NULL)
				  return false;

				BaseMeshTopology* topoIn;
				BaseMeshTopology* topoOut;
				(dynamic_cast<sofa::core::objectmodel::BaseObject*>(arg->findObject(arg->getAttribute("object1","../.."))))->getContext()->get(topoIn);
				(dynamic_cast<sofa::core::objectmodel::BaseObject*>(arg->findObject(arg->getAttribute("object2",".."))))->getContext()->get(topoOut);

				if (dynamic_cast<In*>(topoIn) == NULL)
					return false;
				if (dynamic_cast<Out*>(topoOut) == NULL)
					return false;
				return BaseMapping::canCreate(obj, context, arg);
			}

			/// Construction method called by ObjectFactory.
			///
			/// This implementation read the object1 and object2 attributes to
			/// find the input and output topologies of this mapping.
			template<class T>
			static void create(T*& obj, core::objectmodel::BaseContext* context, core::objectmodel::BaseObjectDescription* arg)
			{
				BaseMeshTopology* topoIn=NULL;
				BaseMeshTopology* topoOut=NULL;
				if (arg)
				  {
				    if (arg->findObject(arg->getAttribute("object1","../..")) != NULL)
				      (dynamic_cast<sofa::core::objectmodel::BaseObject*>(arg->findObject(arg->getAttribute("object1","../.."))))->getContext()->get(topoIn);
				    if (arg->findObject(arg->getAttribute("object2","..")) != NULL)
				      (dynamic_cast<sofa::core::objectmodel::BaseObject*>(arg->findObject(arg->getAttribute("object2",".."))))->getContext()->get(topoOut);
				  }
				obj = new T(
					(arg?dynamic_cast<In*>(topoIn):NULL),
					(arg?dynamic_cast<Out*>(topoOut):NULL));
				if (context) context->addObject(obj);
				if ((arg) && (arg->getAttribute("object1")))
				{
					obj->object1.setValue( arg->getAttribute("object1") );
					arg->removeAttribute("object1");
				}
				if ((arg) && (arg->getAttribute("object2")))
				{
					obj->object2.setValue( arg->getAttribute("object2") );
					arg->removeAttribute("object2");
				}
				if (arg) obj->parse(arg);
			}

		protected:
			Data< std::string > object1;
			Data< std::string > object2;

        };

} // namespace topology

} // namespace component

} // namespace sofa

#endif // SOFA_COMPONENT_TOPOLOGY_HEXA2QUADTOPOLOGICALMAPPING_H