Chaste Commit::f2ff7ee04e70ac9d06c57344df8d017dbb12b97b
SimpleLinearEllipticSolver.hpp
1/*
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34*/
35
36#ifndef SIMPLELINEARELLIPTICSOLVER_HPP_
37#define SIMPLELINEARELLIPTICSOLVER_HPP_
38
39#include "AbstractAssemblerSolverHybrid.hpp"
40#include "AbstractStaticLinearPdeSolver.hpp"
41#include "AbstractLinearEllipticPde.hpp"
42
48template<unsigned ELEMENT_DIM, unsigned SPACE_DIM>
50 : public AbstractAssemblerSolverHybrid<ELEMENT_DIM, SPACE_DIM, 1, NORMAL>,
51 public AbstractStaticLinearPdeSolver<ELEMENT_DIM, SPACE_DIM, 1>
52{
53protected:
54
57
70 virtual c_matrix<double, 1*(ELEMENT_DIM+1), 1*(ELEMENT_DIM+1)> ComputeMatrixTerm(
71 c_vector<double, ELEMENT_DIM+1>& rPhi,
72 c_matrix<double, SPACE_DIM, ELEMENT_DIM+1>& rGradPhi,
74 c_vector<double,1>& rU,
75 c_matrix<double,1,SPACE_DIM>& rGradU,
77
89 virtual c_vector<double,1*(ELEMENT_DIM+1)> ComputeVectorTerm(
90 c_vector<double, ELEMENT_DIM+1>& rPhi,
91 c_matrix<double, SPACE_DIM, ELEMENT_DIM+1>& rGradPhi,
93 c_vector<double,1>& rU,
94 c_matrix<double,1,SPACE_DIM>& rGradU,
96
97
98 // Note: does not have to provide a ComputeVectorSurfaceTerm for surface integrals,
99 // the parent AbstractAssemblerSolverHybrid assumes natural Neumann BCs and uses a
100 // NaturalNeumannSurfaceTermAssembler for assembling this part of the vector.
101
110 void SetupLinearSystem(Vec currentSolution, bool computeMatrix)
111 {
112 this->SetupGivenLinearSystem(currentSolution, computeMatrix, this->mpLinearSystem);
113 }
114
115public:
116
127
134 void InitialiseForSolve(Vec initialSolution = nullptr);
135};
136
137#endif /*SIMPLELINEARELLIPTICSOLVER_HPP_*/
void SetupGivenLinearSystem(Vec currentSolution, bool computeMatrix, LinearSystem *pLinearSystem)
void InitialiseForSolve(Vec initialSolution=nullptr)
AbstractLinearEllipticPde< ELEMENT_DIM, SPACE_DIM > * mpEllipticPde
void SetupLinearSystem(Vec currentSolution, bool computeMatrix)
virtual c_vector< double, 1 *(ELEMENT_DIM+1)> ComputeVectorTerm(c_vector< double, ELEMENT_DIM+1 > &rPhi, c_matrix< double, SPACE_DIM, ELEMENT_DIM+1 > &rGradPhi, ChastePoint< SPACE_DIM > &rX, c_vector< double, 1 > &rU, c_matrix< double, 1, SPACE_DIM > &rGradU, Element< ELEMENT_DIM, SPACE_DIM > *pElement)
virtual c_matrix< double, 1 *(ELEMENT_DIM+1), 1 *(ELEMENT_DIM+1)> ComputeMatrixTerm(c_vector< double, ELEMENT_DIM+1 > &rPhi, c_matrix< double, SPACE_DIM, ELEMENT_DIM+1 > &rGradPhi, ChastePoint< SPACE_DIM > &rX, c_vector< double, 1 > &rU, c_matrix< double, 1, SPACE_DIM > &rGradU, Element< ELEMENT_DIM, SPACE_DIM > *pElement)