opm-simulators
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Opm::ISTLSolverRuntimeOptionProxy< TypeTag > Class Template Reference

ISTLSolverRuntimeOptionProxy selects the appropriate ISTLSolver runtime based on CLI options. More...

#include <ISTLSolverRuntimeOptionProxy.hpp>

Inheritance diagram for Opm::ISTLSolverRuntimeOptionProxy< TypeTag >:
Opm::AbstractISTLSolver< TypeTag >

Public Types

using SparseMatrixAdapter = GetPropType<TypeTag, Properties::SparseMatrixAdapter>
using Vector = GetPropType<TypeTag, Properties::GlobalEqVector>
using Simulator = GetPropType<TypeTag, Properties::Simulator>
using Matrix = typename SparseMatrixAdapter::IstlMatrix
using CommunicationType = Dune::Communication<int>
Public Types inherited from Opm::AbstractISTLSolver< TypeTag >
using CommunicationType = Dune::Communication<int>
using SparseMatrixAdapter = GetPropType<TypeTag, Properties::SparseMatrixAdapter>
using Vector = GetPropType<TypeTag, Properties::GlobalEqVector>
using Matrix = typename SparseMatrixAdapter::IstlMatrix

Public Member Functions

 ISTLSolverRuntimeOptionProxy (const Simulator &simulator, const FlowLinearSolverParameters &parameters, bool forceSerial=false)
 Construct a system solver.
 ISTLSolverRuntimeOptionProxy (const Simulator &simulator)
 Construct a system solver.
void eraseMatrix () override
 Signals that the memory for the matrix internally in the solver could be erased.
void setActiveSolver (int num) override
 Set the active solver by its index.
int numAvailableSolvers () const override
 Get the number of available solvers.
void prepare (const SparseMatrixAdapter &M, Vector &b) override
 Prepare the solver with the given sparse matrix and right-hand side vector.
void prepare (const Matrix &M, Vector &b) override
 Prepare the solver with the given matrix and right-hand side vector.
void setResidual (Vector &b) override
 Set the residual vector.
void getResidual (Vector &b) const override
 Get the residual vector.
void setMatrix (const SparseMatrixAdapter &M) override
 Set the matrix for the solver.
bool solve (Vector &x) override
 Solve the system of equations Ax = b.
int iterations () const override
 Get the number of iterations used in the last solve.
const CommunicationType * comm () const override
 Get the communication object used by the solver.
int getSolveCount () const override
 Get the count of how many times the solver has been called.

Static Public Member Functions

static void registerParameters ()

Additional Inherited Members

Static Protected Member Functions inherited from Opm::AbstractISTLSolver< TypeTag >
static bool checkConvergence (const Dune::InverseOperatorResult &result, const FlowLinearSolverParameters &parameters)
 Check the convergence of the linear solver.

Detailed Description

template<class TypeTag>
class Opm::ISTLSolverRuntimeOptionProxy< TypeTag >

ISTLSolverRuntimeOptionProxy selects the appropriate ISTLSolver runtime based on CLI options.

Constructor & Destructor Documentation

◆ ISTLSolverRuntimeOptionProxy() [1/2]

template<class TypeTag>
Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::ISTLSolverRuntimeOptionProxy ( const Simulator & simulator,
const FlowLinearSolverParameters & parameters,
bool forceSerial = false )
inline

Construct a system solver.

Parameters
[in]simulatorThe opm-models simulator object
[in]parametersExplicit parameters for solver setup, do not read them from command line parameters.
[in]forceSerialIf true, will set up a serial linear solver only, local to the current rank, instead of creating a parallel (MPI distributed) linear solver.

◆ ISTLSolverRuntimeOptionProxy() [2/2]

template<class TypeTag>
Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::ISTLSolverRuntimeOptionProxy ( const Simulator & simulator)
inlineexplicit

Construct a system solver.

Parameters
[in]simulatorThe opm-models simulator object

Member Function Documentation

◆ comm()

template<class TypeTag>
const CommunicationType * Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::comm ( ) const
inlineoverridevirtual

Get the communication object used by the solver.

This method returns a pointer to the communication object used by the solver.

Returns
A pointer to the communication object.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ eraseMatrix()

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::eraseMatrix ( )
inlineoverridevirtual

Signals that the memory for the matrix internally in the solver could be erased.

Note
This call could be ignored by the solver, but it is a hint that the solver does not need the matrix anymore.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ getResidual()

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::getResidual ( Vector & b) const
inlineoverridevirtual

Get the residual vector.

This method retrieves the current residual vector from the solver.

Parameters
bThe vector to store the residual.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ getSolveCount()

template<class TypeTag>
int Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::getSolveCount ( ) const
inlineoverridevirtual

Get the count of how many times the solver has been called.

This method returns the number of times the solve() method has been called.

Returns
The count of solve calls.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ iterations()

template<class TypeTag>
int Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::iterations ( ) const
inlineoverridevirtual

Get the number of iterations used in the last solve.

This method returns the number of iterations that the solver performed during the last call to solve().

Returns
The number of iterations.
Note
This value is only valid after a call to solve().

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ numAvailableSolvers()

template<class TypeTag>
int Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::numAvailableSolvers ( ) const
inlineoverridevirtual

Get the number of available solvers.

Returns
The number of solvers that can be used.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ prepare() [1/2]

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::prepare ( const Matrix & M,
Vector & b )
inlineoverridevirtual

Prepare the solver with the given matrix and right-hand side vector.

This method initializes the solver with the provided matrix and vector, preparing it for solving the system of equations.

Parameters
MThe matrix representing the system of equations.
bThe right-hand side vector.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ prepare() [2/2]

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::prepare ( const SparseMatrixAdapter & M,
Vector & b )
inlineoverridevirtual

Prepare the solver with the given sparse matrix and right-hand side vector.

This method initializes the solver with the provided sparse matrix and vector, preparing it for solving the system of equations.

Parameters
MThe sparse matrix representing the system of equations.
bThe right-hand side vector.
Note
This method should be called in addition to setResidual() and setMatrix() before calling solve().

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ setActiveSolver()

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::setActiveSolver ( int num)
inlineoverridevirtual

Set the active solver by its index.

Parameters
numThe index of the solver to set as active.
Note
The index corresponds to the order in which solvers are registered.

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ setMatrix()

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::setMatrix ( const SparseMatrixAdapter & M)
inlineoverridevirtual

Set the matrix for the solver.

This method sets the matrix that the solver will use to solve the system of equations.

Parameters
MThe sparse matrix adapter containing the matrix data.
Note
This method should be called in addition to prepare() and setResidual() before calling solve().

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ setResidual()

template<class TypeTag>
void Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::setResidual ( Vector & b)
inlineoverridevirtual

Set the residual vector.

This method sets the residual vector for the solver.

Parameters
bThe residual vector to set.
Note
This method should be called in addition to prepare() and setMatrix() before calling solve().

Implements Opm::AbstractISTLSolver< TypeTag >.

◆ solve()

template<class TypeTag>
bool Opm::ISTLSolverRuntimeOptionProxy< TypeTag >::solve ( Vector & x)
inlineoverridevirtual

Solve the system of equations Ax = b.

This method solves the linear system represented by the matrix A and the right-hand side vector b, storing the solution in vector x.

Parameters
xThe vector to store the solution.
Returns
true if the solver converged, false otherwise.

Before this function is called, the following function calls should have been made:

Implements Opm::AbstractISTLSolver< TypeTag >.


The documentation for this class was generated from the following files: