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00028 #ifndef CRYPTSIMULATION1D_HPP_
00029 #define CRYPTSIMULATION1D_HPP_
00030
00031 #include "ChasteSerialization.hpp"
00032 #include <boost/serialization/base_object.hpp>
00033
00034 #include <cmath>
00035 #include <ctime>
00036 #include <iostream>
00037
00038 #include "CellBasedSimulation.hpp"
00039 #include "MeshBasedCellPopulation.hpp"
00040
00045 class CryptSimulation1d : public CellBasedSimulation<1>
00046 {
00047
00048 friend class TestCryptSimulation1d;
00049
00050 private:
00051
00053 friend class boost::serialization::access;
00060 template<class Archive>
00061 void serialize(Archive & archive, const unsigned int version)
00062 {
00063
00064
00065 archive & boost::serialization::base_object<CellBasedSimulation<1> >(*this);
00066 }
00067
00069 MeshBasedCellPopulation<1>* mpStaticCastCellPopulation;
00070
00081 c_vector<double, 1> CalculateCellDivisionVector(CellPtr pParentCell);
00082
00083 public:
00084
00092 CryptSimulation1d(AbstractCellPopulation<1>& rCellPopulation,
00093 bool deleteCellPopulationAndForceCollection=false,
00094 bool initialiseCells=true);
00095
00105 void ApplyCellPopulationBoundaryConditions(const std::vector<c_vector<double,1> >& rOldLocations);
00106
00115 void OutputSimulationParameters(out_stream& rParamsFile);
00116 };
00117
00118
00119
00120 #include "SerializationExportWrapper.hpp"
00121 CHASTE_CLASS_EXPORT(CryptSimulation1d)
00122
00123 namespace boost
00124 {
00125 namespace serialization
00126 {
00130 template<class Archive>
00131 inline void save_construct_data(
00132 Archive & ar, const CryptSimulation1d * t, const BOOST_PFTO unsigned int file_version)
00133 {
00134
00135 const AbstractCellPopulation<1>* p_cell_population = &(t->rGetCellPopulation());
00136 ar & p_cell_population;
00137 }
00138
00142 template<class Archive>
00143 inline void load_construct_data(
00144 Archive & ar, CryptSimulation1d * t, const unsigned int file_version)
00145 {
00146
00147 AbstractCellPopulation<1>* p_cell_population;
00148 ar & p_cell_population;
00149
00150
00151 ::new(t)CryptSimulation1d(*p_cell_population, true, false);
00152 }
00153 }
00154 }
00155
00156 #endif