MFEM v4.8.0
Finite element discretization library
All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Friends Pages
mfem::TransposeIntegrator Class Reference

#include <bilininteg.hpp>

Inheritance diagram for mfem::TransposeIntegrator:
[legend]
Collaboration diagram for mfem::TransposeIntegrator:
[legend]

Public Member Functions

 TransposeIntegrator (BilinearFormIntegrator *bfi_, int own_bfi_=1)
 
void SetIntRule (const IntegrationRule *ir) override
 Prescribe a fixed IntegrationRule to use, or set to null to let the integrator choose an appropriate rule.
 
void AssembleElementMatrix (const FiniteElement &el, ElementTransformation &Trans, DenseMatrix &elmat) override
 Given a particular Finite Element computes the element matrix elmat.
 
void AssembleElementMatrix2 (const FiniteElement &trial_fe, const FiniteElement &test_fe, ElementTransformation &Trans, DenseMatrix &elmat) override
 
void AssembleFaceMatrix (const FiniteElement &el1, const FiniteElement &el2, FaceElementTransformations &Trans, DenseMatrix &elmat) override
 
void AssembleFaceMatrix (const FiniteElement &trial_fe1, const FiniteElement &test_fe1, const FiniteElement &trial_fe2, const FiniteElement &test_fe2, FaceElementTransformations &Trans, DenseMatrix &elmat) override
 
void AssemblePA (const FiniteElementSpace &fes) override
 Method defining partial assembly.
 
void AssemblePA (const FiniteElementSpace &trial_fes, const FiniteElementSpace &test_fes) override
 
void AssemblePAInteriorFaces (const FiniteElementSpace &fes) override
 
void AssemblePABoundaryFaces (const FiniteElementSpace &fes) override
 
void AddMultTransposePA (const Vector &x, Vector &y) const override
 Method for partially assembled transposed action.
 
void AddMultPA (const Vector &x, Vector &y) const override
 Method for partially assembled action.
 
void AssembleEA (const FiniteElementSpace &fes, Vector &emat, const bool add) override
 Method defining element assembly.
 
void AssembleEAInteriorFaces (const FiniteElementSpace &fes, Vector &ea_data_int, Vector &ea_data_ext, const bool add) override
 
void AssembleEABoundaryFaces (const FiniteElementSpace &fes, Vector &ea_data_bdr, const bool add) override
 
virtual ~TransposeIntegrator ()
 
virtual void AssembleFaceMatrix (const FiniteElement &trial_face_fe, const FiniteElement &test_fe1, const FiniteElement &test_fe2, FaceElementTransformations &Trans, DenseMatrix &elmat)
 
virtual void AssembleEAInteriorFaces (const FiniteElementSpace &trial_fes, const FiniteElementSpace &test_fes, Vector &emat, const bool add=true)
 Method defining element assembly for mixed trace integrators.
 
- Public Member Functions inherited from mfem::BilinearFormIntegrator
virtual void AssembleNURBSPA (const FiniteElementSpace &fes)
 Method defining partial assembly on NURBS patches.
 
virtual void AssemblePABoundary (const FiniteElementSpace &fes)
 
virtual void AssembleDiagonalPA (Vector &diag)
 Assemble diagonal and add it to Vector diag.
 
virtual void AssembleDiagonalPA_ADAt (const Vector &D, Vector &diag)
 Assemble diagonal of ADAT ( A is this integrator) and add it to diag.
 
virtual void AddMultNURBSPA (const Vector &x, Vector &y) const
 Method for partially assembled action on NURBS patches.
 
void AssembleMF (const FiniteElementSpace &fes) override
 Method defining matrix-free assembly.
 
void AddMultMF (const Vector &x, Vector &y) const override
 
virtual void AddMultTransposeMF (const Vector &x, Vector &y) const
 
virtual void AssembleDiagonalMF (Vector &diag)
 Assemble diagonal and add it to Vector diag.
 
virtual void AssembleEABoundary (const FiniteElementSpace &fes, Vector &ea_data_bdr, const bool add=true)
 
virtual void AssemblePatchMatrix (const int patch, const FiniteElementSpace &fes, SparseMatrix *&smat)
 
virtual void AssembleTraceFaceMatrix (int elem, const FiniteElement &trial_face_fe, const FiniteElement &test_fe, FaceElementTransformations &Trans, DenseMatrix &elmat)
 
void AssembleElementVector (const FiniteElement &el, ElementTransformation &Tr, const Vector &elfun, Vector &elvect) override
 Perform the local action of the BilinearFormIntegrator. Note that the default implementation in the base class is general but not efficient.
 
void AssembleFaceVector (const FiniteElement &el1, const FiniteElement &el2, FaceElementTransformations &Tr, const Vector &elfun, Vector &elvect) override
 Perform the local action of the BilinearFormIntegrator resulting from a face integral term. Note that the default implementation in the base class is general but not efficient.
 
void AssembleElementGrad (const FiniteElement &el, ElementTransformation &Tr, const Vector &elfun, DenseMatrix &elmat) override
 Assemble the local gradient matrix.
 
void AssembleFaceGrad (const FiniteElement &el1, const FiniteElement &el2, FaceElementTransformations &Tr, const Vector &elfun, DenseMatrix &elmat) override
 Assemble the local action of the gradient of the NonlinearFormIntegrator resulting from a face integral term.
 
virtual void ComputeElementFlux (const FiniteElement &el, ElementTransformation &Trans, Vector &u, const FiniteElement &fluxelem, Vector &flux, bool with_coef=true, const IntegrationRule *ir=NULL)
 Virtual method required for Zienkiewicz-Zhu type error estimators.
 
virtual real_t ComputeFluxEnergy (const FiniteElement &fluxelem, ElementTransformation &Trans, Vector &flux, Vector *d_energy=NULL)
 Virtual method required for Zienkiewicz-Zhu type error estimators.
 
virtual bool RequiresFaceNormalDerivatives () const
 For bilinear forms on element faces, specifies if the normal derivatives are needed on the faces or just the face restriction.
 
virtual void AddMultPAFaceNormalDerivatives (const Vector &x, const Vector &dxdn, Vector &y, Vector &dydn) const
 Method for partially assembled action.
 
virtual ~BilinearFormIntegrator ()
 
- Public Member Functions inherited from mfem::NonlinearFormIntegrator
void SetIntegrationMode (Mode m)
 
bool Patchwise () const
 
void SetPAMemoryType (MemoryType mt)
 
virtual real_t GetElementEnergy (const FiniteElement &el, ElementTransformation &Tr, const Vector &elfun)
 Compute the local energy.
 
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 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.
 
ceed::OperatorGetCeedOp ()
 
virtual ~NonlinearFormIntegrator ()
 
- Public Member Functions inherited from mfem::Integrator
 Integrator (const IntegrationRule *ir=NULL)
 Create a new Integrator, optionally providing a prescribed quadrature rule to use in assembly.
 
void SetIntegrationRule (const IntegrationRule &ir)
 Prescribe a fixed IntegrationRule to use. Sets the NURBS patch integration rule to null.
 
void SetNURBSPatchIntRule (NURBSMeshRules *pr)
 Sets an integration rule for use on NURBS patches.
 
bool HasNURBSPatchIntRule () const
 Check if a NURBS patch integration rule has been set.
 
const IntegrationRuleGetIntRule () const
 Directly return the IntRule pointer (possibly null) without checking for NURBS patch rules or falling back on a default.
 
const IntegrationRuleGetIntegrationRule () const
 Equivalent to GetIntRule, but retained for backward compatibility with applications.
 

Additional Inherited Members

- Public Types inherited from mfem::NonlinearFormIntegrator
enum  Mode { ELEMENTWISE = 0 , PATCHWISE = 1 , PATCHWISE_REDUCED = 2 }
 
- Protected Member Functions inherited from mfem::BilinearFormIntegrator
 BilinearFormIntegrator (const IntegrationRule *ir=NULL)
 
- Protected Member Functions inherited from mfem::NonlinearFormIntegrator
 NonlinearFormIntegrator (const IntegrationRule *ir=NULL)
 
- Protected Member Functions inherited from mfem::Integrator
const IntegrationRuleGetIntegrationRule (const FiniteElement &trial_fe, const FiniteElement &test_fe, const ElementTransformation &trans) const
 Returns an integration rule based on the arguments and internal state of the Integrator object.
 
const IntegrationRuleGetIntegrationRule (const FiniteElement &el, const ElementTransformation &trans) const
 Returns an integration rule based on the arguments and internal state. (Version for identical trial_fe and test_fe)
 
virtual const IntegrationRuleGetDefaultIntegrationRule (const FiniteElement &trial_fe, const FiniteElement &test_fe, const ElementTransformation &trans) const
 Subclasses should override to choose a default integration rule.
 
- Protected Attributes inherited from mfem::NonlinearFormIntegrator
Mode integrationMode = Mode::ELEMENTWISE
 
ceed::OperatorceedOp
 
MemoryType pa_mt = MemoryType::DEFAULT
 
- Protected Attributes inherited from mfem::Integrator
const IntegrationRuleIntRule
 
NURBSMeshRulespatchRules = nullptr
 

Detailed Description

Wraps a given BilinearFormIntegrator and transposes the resulting element matrices. See for example ex9, ex9p.

Definition at line 330 of file bilininteg.hpp.

Constructor & Destructor Documentation

◆ TransposeIntegrator()

mfem::TransposeIntegrator::TransposeIntegrator ( BilinearFormIntegrator * bfi_,
int own_bfi_ = 1 )
inline

Definition at line 339 of file bilininteg.hpp.

◆ ~TransposeIntegrator()

virtual mfem::TransposeIntegrator::~TransposeIntegrator ( )
inlinevirtual

Definition at line 410 of file bilininteg.hpp.

Member Function Documentation

◆ AddMultPA()

void mfem::TransposeIntegrator::AddMultPA ( const Vector & x,
Vector & y ) const
inlineoverridevirtual

Method for partially assembled action.

Perform the action of integrator on the input x and add the result to the output y. Both x and y are E-vectors, i.e. they represent the element-wise discontinuous version of the FE space.

This method can be called only after the method AssemblePA() has been called.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 392 of file bilininteg.hpp.

◆ AddMultTransposePA()

void mfem::TransposeIntegrator::AddMultTransposePA ( const Vector & x,
Vector & y ) const
inlineoverridevirtual

Method for partially assembled transposed action.

Perform the transpose action of integrator on the input x and add the result to the output y. Both x and y are E-vectors, i.e. they represent the element-wise discontinuous version of the FE space.

This method can be called only after the method AssemblePA() has been called.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 387 of file bilininteg.hpp.

◆ AssembleEA()

void mfem::TransposeIntegrator::AssembleEA ( const FiniteElementSpace & fes,
Vector & emat,
const bool add )
overridevirtual

Method defining element assembly.

The result of the element assembly is added to the emat Vector if add is true. Otherwise, if add is false, we set emat.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 18 of file bilininteg_transpose_ea.cpp.

◆ AssembleEABoundaryFaces()

void mfem::TransposeIntegrator::AssembleEABoundaryFaces ( const FiniteElementSpace & fes,
Vector & ea_data_bdr,
const bool add )
overridevirtual

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 134 of file bilininteg_transpose_ea.cpp.

◆ AssembleEAInteriorFaces() [1/2]

void mfem::TransposeIntegrator::AssembleEAInteriorFaces ( const FiniteElementSpace & fes,
Vector & ea_data_int,
Vector & ea_data_ext,
const bool add )
overridevirtual

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 63 of file bilininteg_transpose_ea.cpp.

◆ AssembleEAInteriorFaces() [2/2]

void mfem::BilinearFormIntegrator::AssembleEAInteriorFaces ( const FiniteElementSpace & trial_fes,
const FiniteElementSpace & test_fes,
Vector & emat,
const bool add = true )
virtual

Method defining element assembly for mixed trace integrators.

This is the element assembly analogue of AssembleFaceMatrix(const FiniteElement&, const FiniteElement&, const FiniteElement&, FaceElementTransformations&, DenseMatrix&).

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 141 of file bilininteg.cpp.

◆ AssembleElementMatrix()

void mfem::TransposeIntegrator::AssembleElementMatrix ( const FiniteElement & el,
ElementTransformation & Trans,
DenseMatrix & elmat )
overridevirtual

Given a particular Finite Element computes the element matrix elmat.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 254 of file bilininteg.cpp.

◆ AssembleElementMatrix2()

void mfem::TransposeIntegrator::AssembleElementMatrix2 ( const FiniteElement & trial_fe,
const FiniteElement & test_fe,
ElementTransformation & Trans,
DenseMatrix & elmat )
overridevirtual

Compute the local matrix representation of a bilinear form a(u,v) defined on different trial (given by u) and test (given by v) spaces. The rows in the local matrix correspond to the test dofs and the columns – to the trial dofs.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 262 of file bilininteg.cpp.

◆ AssembleFaceMatrix() [1/3]

void mfem::TransposeIntegrator::AssembleFaceMatrix ( const FiniteElement & el1,
const FiniteElement & el2,
FaceElementTransformations & Trans,
DenseMatrix & elmat )
overridevirtual

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 271 of file bilininteg.cpp.

◆ AssembleFaceMatrix() [2/3]

void mfem::BilinearFormIntegrator::AssembleFaceMatrix ( const FiniteElement & trial_face_fe,
const FiniteElement & test_fe1,
const FiniteElement & test_fe2,
FaceElementTransformations & Trans,
DenseMatrix & elmat )
virtual

Abstract method used for assembling TraceFaceIntegrators in a MixedBilinearForm.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 185 of file bilininteg.cpp.

◆ AssembleFaceMatrix() [3/3]

void mfem::TransposeIntegrator::AssembleFaceMatrix ( const FiniteElement & trial_fe1,
const FiniteElement & test_fe1,
const FiniteElement & trial_fe2,
const FiniteElement & test_fe2,
FaceElementTransformations & Trans,
DenseMatrix & elmat )
overridevirtual

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 280 of file bilininteg.cpp.

◆ AssemblePA() [1/2]

void mfem::TransposeIntegrator::AssemblePA ( const FiniteElementSpace & fes)
inlineoverridevirtual

Method defining partial assembly.

The result of the partial assembly is stored internally so that it can be used later in the methods AddMultPA() and AddMultTransposePA().

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 366 of file bilininteg.hpp.

◆ AssemblePA() [2/2]

void mfem::TransposeIntegrator::AssemblePA ( const FiniteElementSpace & trial_fes,
const FiniteElementSpace & test_fes )
inlineoverridevirtual

Used with BilinearFormIntegrators that have different spaces.

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 371 of file bilininteg.hpp.

◆ AssemblePABoundaryFaces()

void mfem::TransposeIntegrator::AssemblePABoundaryFaces ( const FiniteElementSpace & fes)
inlineoverridevirtual

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 382 of file bilininteg.hpp.

◆ AssemblePAInteriorFaces()

void mfem::TransposeIntegrator::AssemblePAInteriorFaces ( const FiniteElementSpace & fes)
inlineoverridevirtual

Reimplemented from mfem::BilinearFormIntegrator.

Definition at line 377 of file bilininteg.hpp.

◆ SetIntRule()

void mfem::TransposeIntegrator::SetIntRule ( const IntegrationRule * ir)
overridevirtual

Prescribe a fixed IntegrationRule to use, or set to null to let the integrator choose an appropriate rule.

This method allows setting a custom integration rule to use on each element during assembly, overriding the default choice if it is non-null. Passing a non-null value will set the Integrator's NURBS patch integration rule to null to avoid ambiguity in GetIntegrationRule.

Reimplemented from mfem::Integrator.

Definition at line 248 of file bilininteg.cpp.


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