AbstractStaticLinearPdeSolver.hpp

00001 
00002 /*
00003 
00004 Copyright (c) 2005-2015, University of Oxford.
00005 All rights reserved.
00006 
00007 University of Oxford means the Chancellor, Masters and Scholars of the
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00009 Square, Oxford OX1 2JD, UK.
00010 
00011 This file is part of Chaste.
00012 
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00035 */
00036 
00037 #ifndef ABSTRACTSTATICLINEARPDESOLVER_HPP_
00038 #define ABSTRACTSTATICLINEARPDESOLVER_HPP_
00039 
00040 #include "AbstractLinearPdeSolver.hpp"
00041 
00048 template<unsigned ELEMENT_DIM, unsigned SPACE_DIM, unsigned PROBLEM_DIM>
00049 class AbstractStaticLinearPdeSolver : public AbstractLinearPdeSolver<ELEMENT_DIM, SPACE_DIM, PROBLEM_DIM>
00050 {
00051 public:
00052 
00058     AbstractStaticLinearPdeSolver(AbstractTetrahedralMesh<ELEMENT_DIM,SPACE_DIM>* pMesh)
00059         : AbstractLinearPdeSolver<ELEMENT_DIM, SPACE_DIM, PROBLEM_DIM>(pMesh)
00060     {
00061     }
00062 
00069     Vec Solve(Vec initialGuess=NULL);
00070 };
00071 
00072 template<unsigned ELEMENT_DIM, unsigned SPACE_DIM, unsigned PROBLEM_DIM>
00073 Vec AbstractStaticLinearPdeSolver<ELEMENT_DIM, SPACE_DIM, PROBLEM_DIM>::Solve(Vec initialGuess)
00074 {
00075     // Set up the linear system
00076     this->InitialiseForSolve(initialGuess);
00077 
00078     // This method can be overloaded if necessary
00079     this->PrepareForSetupLinearSystem(NULL);
00080 
00081     // This method should be implemented by the concrete class
00082     this->SetupLinearSystem(NULL, true);
00083 
00084     this->FinaliseLinearSystem(NULL);
00085 
00086     // Solve the linear system
00087     Vec solution = this->mpLinearSystem->Solve(initialGuess);
00088 
00089     this->FollowingSolveLinearSystem(solution);
00090 
00091     return solution;
00092 }
00093 
00094 #endif /*ABSTRACTSTATICLINEARPDESOLVER_HPP_*/

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