MFEM v4.7.0
Finite element discretization library
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mfem::pLaplaceSL< sizeres > Class Template Reference

#include <example.hpp>

Inheritance diagram for mfem::pLaplaceSL< sizeres >:
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Collaboration diagram for mfem::pLaplaceSL< sizeres >:
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Public Member Functions

 pLaplaceSL ()
 
 pLaplaceSL (Coefficient &pp_)
 
 pLaplaceSL (Coefficient &pp_, Coefficient &q, Coefficient &ld_)
 
virtual ~pLaplaceSL ()
 
virtual real_t GetElementEnergy (const FiniteElement &el, ElementTransformation &trans, const Vector &elfun)
 Compute the local energy.
 
virtual void AssembleElementVector (const FiniteElement &el, ElementTransformation &trans, const Vector &elfun, Vector &elvect)
 Perform the local action of the NonlinearFormIntegrator.
 
virtual void AssembleElementGrad (const FiniteElement &el, ElementTransformation &trans, const Vector &elfun, DenseMatrix &elmat)
 Assemble the local gradient matrix.
 
- Public Member Functions inherited from mfem::NonlinearFormIntegrator
virtual void SetIntRule (const IntegrationRule *ir)
 Prescribe a fixed IntegrationRule to use (when ir != NULL) or let the integrator choose (when ir == NULL).
 
void SetIntegrationMode (Mode m)
 
void SetNURBSPatchIntRule (NURBSMeshRules *pr)
 For patchwise integration, SetNURBSPatchIntRule must be called.
 
bool HasNURBSPatchIntRule () const
 
bool Patchwise () const
 
void SetIntegrationRule (const IntegrationRule &ir)
 Prescribe a fixed IntegrationRule to use.
 
void SetPAMemoryType (MemoryType mt)
 
const IntegrationRuleGetIntegrationRule () const
 Get the integration rule of the integrator (possibly NULL).
 
virtual void AssembleFaceVector (const FiniteElement &el1, const FiniteElement &el2, FaceElementTransformations &Tr, const Vector &elfun, Vector &elvect)
 Perform the local action of the NonlinearFormIntegrator resulting from a face integral term.
 
virtual void AssembleFaceGrad (const FiniteElement &el1, const FiniteElement &el2, FaceElementTransformations &Tr, const Vector &elfun, DenseMatrix &elmat)
 Assemble the local action of the gradient of the NonlinearFormIntegrator resulting from a face integral term.
 
virtual void AssemblePA (const FiniteElementSpace &fes)
 Method defining partial assembly.
 
virtual void AssemblePA (const FiniteElementSpace &trial_fes, const FiniteElementSpace &test_fes)
 
virtual void AssembleGradPA (const Vector &x, const FiniteElementSpace &fes)
 Prepare the integrator for partial assembly (PA) gradient evaluations on the given FE space fes at the state x.
 
virtual real_t GetLocalStateEnergyPA (const Vector &x) const
 Compute the local (to the MPI rank) energy with partial assembly.
 
virtual void AddMultPA (const Vector &x, Vector &y) const
 Method for partially assembled action.
 
virtual void AddMultGradPA (const Vector &x, Vector &y) const
 Method for partially assembled gradient action.
 
virtual void AssembleGradDiagonalPA (Vector &diag) const
 Method for computing the diagonal of the gradient with partial assembly.
 
virtual bool SupportsCeed () const
 Indicates whether this integrator can use a Ceed backend.
 
virtual void AssembleMF (const FiniteElementSpace &fes)
 Method defining fully unassembled operator.
 
virtual void AddMultMF (const Vector &x, Vector &y) const
 
ceed::OperatorGetCeedOp ()
 
virtual ~NonlinearFormIntegrator ()
 

Protected Attributes

Coefficientpp
 
Coefficientcoeff
 
Coefficientload
 
- Protected Attributes inherited from mfem::NonlinearFormIntegrator
const IntegrationRuleIntRule
 
Mode integrationMode = Mode::ELEMENTWISE
 
NURBSMeshRulespatchRules = nullptr
 
ceed::OperatorceedOp
 
MemoryType pa_mt = MemoryType::DEFAULT
 

Additional Inherited Members

- Public Types inherited from mfem::NonlinearFormIntegrator
enum  Mode { ELEMENTWISE = 0 , PATCHWISE = 1 , PATCHWISE_REDUCED = 2 }
 
- Protected Member Functions inherited from mfem::NonlinearFormIntegrator
 NonlinearFormIntegrator (const IntegrationRule *ir=NULL)
 

Detailed Description

template<int sizeres = 10>
class mfem::pLaplaceSL< sizeres >

Implements AD enabled integrator for a p-Laplacian problem. The tangent matrix is computed using the residual of the element. The template argument should be equal to the size of the residual vector (element vector), i.e., the user should specify the size to match the exact vector size for the considered order of the shape functions.

Definition at line 609 of file example.hpp.

Constructor & Destructor Documentation

◆ pLaplaceSL() [1/3]

template<int sizeres = 10>
mfem::pLaplaceSL< sizeres >::pLaplaceSL ( )
inline

Definition at line 617 of file example.hpp.

◆ pLaplaceSL() [2/3]

template<int sizeres = 10>
mfem::pLaplaceSL< sizeres >::pLaplaceSL ( Coefficient & pp_)
inline

Definition at line 624 of file example.hpp.

◆ pLaplaceSL() [3/3]

template<int sizeres = 10>
mfem::pLaplaceSL< sizeres >::pLaplaceSL ( Coefficient & pp_,
Coefficient & q,
Coefficient & ld_ )
inline

Definition at line 626 of file example.hpp.

◆ ~pLaplaceSL()

template<int sizeres = 10>
virtual mfem::pLaplaceSL< sizeres >::~pLaplaceSL ( )
inlinevirtual

Definition at line 630 of file example.hpp.

Member Function Documentation

◆ AssembleElementGrad()

template<int sizeres = 10>
virtual void mfem::pLaplaceSL< sizeres >::AssembleElementGrad ( const FiniteElement & el,
ElementTransformation & Tr,
const Vector & elfun,
DenseMatrix & elmat )
inlinevirtual

Assemble the local gradient matrix.

Reimplemented from mfem::NonlinearFormIntegrator.

Definition at line 770 of file example.hpp.

◆ AssembleElementVector()

template<int sizeres = 10>
virtual void mfem::pLaplaceSL< sizeres >::AssembleElementVector ( const FiniteElement & el,
ElementTransformation & Tr,
const Vector & elfun,
Vector & elvect )
inlinevirtual

Perform the local action of the NonlinearFormIntegrator.

Reimplemented from mfem::NonlinearFormIntegrator.

Definition at line 696 of file example.hpp.

◆ GetElementEnergy()

template<int sizeres = 10>
virtual real_t mfem::pLaplaceSL< sizeres >::GetElementEnergy ( const FiniteElement & el,
ElementTransformation & Tr,
const Vector & elfun )
inlinevirtual

Compute the local energy.

Reimplemented from mfem::NonlinearFormIntegrator.

Definition at line 632 of file example.hpp.

Member Data Documentation

◆ coeff

template<int sizeres = 10>
Coefficient* mfem::pLaplaceSL< sizeres >::coeff
protected

Definition at line 613 of file example.hpp.

◆ load

template<int sizeres = 10>
Coefficient* mfem::pLaplaceSL< sizeres >::load
protected

Definition at line 614 of file example.hpp.

◆ pp

template<int sizeres = 10>
Coefficient* mfem::pLaplaceSL< sizeres >::pp
protected

Definition at line 612 of file example.hpp.


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