Chaste  Release::2017.1
AbstractOdeBasedContractionModel.hpp
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34 */
35 
36 #ifndef ABSTRACTODEBASEDCONTRACTIONMODEL_
37 #define ABSTRACTODEBASEDCONTRACTIONMODEL_
38 
39 #include "AbstractOdeSystem.hpp"
40 #include "AbstractContractionModel.hpp"
41 #include "AbstractIvpOdeSolver.hpp"
42 #include "EulerIvpOdeSolver.hpp"
43 
59 {
60 protected:
61 
64  std::vector<double> mTemporaryStateVariables;
65 
67  double mTime;
68 
69 public:
74  AbstractOdeBasedContractionModel(unsigned numStateVariables)
75  : AbstractOdeSystem(numStateVariables),
77  mTime(0.0)
78  {
79  // note mTemporaryStateVariables not resized here - only resized if needed
80  }
81 
82 
93  virtual void RunDoNotUpdate(double startTime, double endTime, double timeStep)
94  {
95  // save the state variables
96  if (mTemporaryStateVariables.size() > 0)
97  {
98  mTemporaryStateVariables.resize(mStateVariables.size());
99  }
100  mTemporaryStateVariables = mStateVariables;
101 
102  // solve (RunAndUpdate just calls SolveAndUpdateStateVariable() using an euler solver)
103  RunAndUpdate(startTime, endTime, timeStep);
104 
105  // put the solution in mTemporaryStateVariables and return the state variables to its
106  // original state
107  for (unsigned i=0; i<mStateVariables.size(); i++)
108  {
109  double soln = mStateVariables[i];
110  mStateVariables[i] = mTemporaryStateVariables[i];
111  mTemporaryStateVariables[i] = soln;
112  }
113 
114  // note that the end time was saved in RunAndUpdate(): mTime = endTime;
115  }
116 
122  {
123  // save the state variables
124  for (unsigned i=0; i<mStateVariables.size(); i++)
125  {
126  mStateVariables[i] = mTemporaryStateVariables[i];
127  }
128  }
129 
142  void RunAndUpdate(double startTime, double endTime, double timeStep)
143  {
144  EulerIvpOdeSolver solver;
145  solver.SolveAndUpdateStateVariable(this, startTime, endTime, timeStep);
146 
147  mTime = endTime;
148  }
149 };
150 
151 
152 #endif /*ABSTRACTODEBASEDSTRETCHINDEPENDENTCONTRACTIONMODEL_*/
virtual void RunDoNotUpdate(double startTime, double endTime, double timeStep)
void RunAndUpdate(double startTime, double endTime, double timeStep)
virtual void SolveAndUpdateStateVariable(AbstractOdeSystem *pAbstractOdeSystem, double startTime, double endTime, double timeStep)
AbstractOdeBasedContractionModel(unsigned numStateVariables)