IBAMR
An adaptive and distributed-memory parallel implementation of the immersed boundary (IB) method
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IBTK::KrylovLinearSolverPoissonSolverInterface Class Reference

Class KrylovLinearSolverPoissonSolverInterface provides an interface for KrylovLinearSolvers that are to be used as Poisson solvers. More...

#include </home/runner/work/IBAMR/IBAMR/ibtk/include/ibtk/KrylovLinearSolverPoissonSolverInterface.h>

Inheritance diagram for IBTK::KrylovLinearSolverPoissonSolverInterface:
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Public Member Functions

 KrylovLinearSolverPoissonSolverInterface ()=default
 
 ~KrylovLinearSolverPoissonSolverInterface ()=default
 
void setPoissonSpecifications (const SAMRAI::solv::PoissonSpecifications &poisson_spec) override
 Set the SAMRAI::solv::PoissonSpecifications object used to specify the coefficients for the scalar-valued or vector-valued Laplace operator.
 
void setPhysicalBcCoef (SAMRAI::solv::RobinBcCoefStrategy< NDIM > *bc_coef) override
 Set the SAMRAI::solv::RobinBcCoefStrategy object used to specify physical boundary conditions. More...
 
void setPhysicalBcCoefs (const std::vector< SAMRAI::solv::RobinBcCoefStrategy< NDIM > * > &bc_coefs) override
 Set the SAMRAI::solv::RobinBcCoefStrategy objects used to specify physical boundary conditions. More...
 
- Public Member Functions inherited from IBTK::PoissonSolver
 PoissonSolver ()=default
 Default constructor.
 
 ~PoissonSolver ()=default
 Default destructor.
 
- Public Member Functions inherited from IBTK::GeneralSolver
 GeneralSolver ()=default
 Constructor.
 
virtual ~GeneralSolver ()=default
 Empty virtual destructor.
 
const std::stringgetName () const
 Return the object name.
 
virtual bool getIsInitialized () const
 Return whether the operator is initialized.
 
virtual void setHomogeneousBc (bool homogeneous_bc)
 Set whether the solver should use homogeneous boundary conditions.
 
virtual bool getHomogeneousBc () const
 Return whether the solver is using homogeneous boundary conditions.
 
virtual void setSolutionTime (double solution_time)
 Set the time at which the solution is to be evaluated.
 
virtual double getSolutionTime () const
 Get the time at which the solution is being evaluated.
 
virtual void setTimeInterval (double current_time, double new_time)
 Set the current time interval.
 
virtual std::pair< double, double > getTimeInterval () const
 Get the current time interval.
 
virtual double getDt () const
 Get the current time step size.
 
virtual void setHierarchyMathOps (SAMRAI::tbox::Pointer< HierarchyMathOps > hier_math_ops)
 Set the HierarchyMathOps object used by the solver.
 
virtual SAMRAI::tbox::Pointer< HierarchyMathOpsgetHierarchyMathOps () const
 Get the HierarchyMathOps object used by the solver.
 
virtual bool solveSystem (SAMRAI::solv::SAMRAIVectorReal< NDIM, double > &x, SAMRAI::solv::SAMRAIVectorReal< NDIM, double > &b)=0
 Solve the system of equations. More...
 
virtual void initializeSolverState (const SAMRAI::solv::SAMRAIVectorReal< NDIM, double > &x, const SAMRAI::solv::SAMRAIVectorReal< NDIM, double > &b)
 Compute hierarchy dependent data required for solving $F[x]=b$. More...
 
virtual void deallocateSolverState ()
 Remove all hierarchy dependent data allocated by initializeSolverState(). More...
 
virtual void setMaxIterations (int max_iterations)
 Set the maximum number of nonlinear iterations to use per solve.
 
virtual int getMaxIterations () const
 Get the maximum number of nonlinear iterations to use per solve.
 
virtual void setAbsoluteTolerance (double abs_residual_tol)
 Set the absolute residual tolerance for convergence.
 
virtual double getAbsoluteTolerance () const
 Get the absolute residual tolerance for convergence.
 
virtual void setRelativeTolerance (double rel_residual_tol)
 Set the relative residual tolerance for convergence.
 
virtual double getRelativeTolerance () const
 Get the relative residual tolerance for convergence.
 
virtual int getNumIterations () const
 Return the iteration count from the most recent solve.
 
virtual double getResidualNorm () const
 Return the residual norm from the most recent iteration.
 
virtual void setLoggingEnabled (bool enable_logging=true)
 Enable or disable logging.
 
virtual bool getLoggingEnabled () const
 Determine whether logging is enabled or disabled.
 
virtual void printClassData (std::ostream &stream)
 Print class data to stream.
 

Additional Inherited Members

- Protected Member Functions inherited from IBTK::PoissonSolver
void initSpecialized (const std::string &object_name, bool homogeneous_bc) override
 
- Protected Member Functions inherited from IBTK::GeneralSolver
void init (const std::string &object_name, bool homogeneous_bc)
 
- Protected Attributes inherited from IBTK::PoissonSolver
SAMRAI::solv::PoissonSpecifications d_poisson_spec = SAMRAI::solv::PoissonSpecifications("")
 
std::unique_ptr< SAMRAI::solv::RobinBcCoefStrategy< NDIM > > d_default_bc_coef
 
std::vector< SAMRAI::solv::RobinBcCoefStrategy< NDIM > * > d_bc_coefs
 
- Protected Attributes inherited from IBTK::GeneralSolver
std::string d_object_name = "unitialized"
 
bool d_is_initialized = false
 
bool d_homogeneous_bc = false
 
double d_solution_time = std::numeric_limits<double>::quiet_NaN()
 
double d_current_time = std::numeric_limits<double>::quiet_NaN()
 
double d_new_time = std::numeric_limits<double>::quiet_NaN()
 
double d_rel_residual_tol = 0.0
 
double d_abs_residual_tol = 0.0
 
int d_max_iterations = 100
 
int d_current_iterations = 0
 
double d_current_residual_norm = std::numeric_limits<double>::quiet_NaN()
 
SAMRAI::tbox::Pointer< HierarchyMathOpsd_hier_math_ops
 
bool d_hier_math_ops_external = false
 
bool d_enable_logging = false
 

Detailed Description

Class KrylovLinearSolverPoissonSolverInterface provides an interface for KrylovLinearSolvers that are to be used as Poisson solvers.

This class is intented to be used to create a (trivial) subclass of an existing implementation of KrylovLinearSolver that also supports the PoissonSolver interface.

See also
PETScKrylovPoissonSolver

Constructor & Destructor Documentation

◆ KrylovLinearSolverPoissonSolverInterface()

IBTK::KrylovLinearSolverPoissonSolverInterface::KrylovLinearSolverPoissonSolverInterface ( )
default

Default constructor.

◆ ~KrylovLinearSolverPoissonSolverInterface()

IBTK::KrylovLinearSolverPoissonSolverInterface::~KrylovLinearSolverPoissonSolverInterface ( )
default

Destructor.

Member Function Documentation

◆ setPhysicalBcCoef()

void IBTK::KrylovLinearSolverPoissonSolverInterface::setPhysicalBcCoef ( SAMRAI::solv::RobinBcCoefStrategy< NDIM > *  bc_coef)
overridevirtual

Set the SAMRAI::solv::RobinBcCoefStrategy object used to specify physical boundary conditions.

Note
bc_coef may be NULL. In this case, default boundary conditions (as supplied to the class constructor) are employed.
Parameters
bc_coefPointer to an object that can set the Robin boundary condition coefficients

Reimplemented from IBTK::PoissonSolver.

◆ setPhysicalBcCoefs()

void IBTK::KrylovLinearSolverPoissonSolverInterface::setPhysicalBcCoefs ( const std::vector< SAMRAI::solv::RobinBcCoefStrategy< NDIM > * > &  bc_coefs)
overridevirtual

Set the SAMRAI::solv::RobinBcCoefStrategy objects used to specify physical boundary conditions.

Note
Any of the elements of bc_coefs may be NULL. In this case, default boundary conditions (as supplied to the class constructor) are employed for that data depth.
Parameters
bc_coefsVector of pointers to objects that can set the Robin boundary condition coefficients

Reimplemented from IBTK::PoissonSolver.


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