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Nektar::MultiRegions::ExpList3D Class Reference

Abstraction of a three-dimensional multi-elemental expansion which is merely a collection of local expansions. More...

#include <ExpList3D.h>

Inheritance diagram for Nektar::MultiRegions::ExpList3D:
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Public Member Functions

 ExpList3D ()
 Default constructor. More...
 
 ExpList3D (const ExpList3D &In)
 Copy constructor. More...
 
 ExpList3D (const ExpList3D &In, const std::vector< unsigned int > &eIDs, const bool DeclareCoeffPhysArrays=true, const Collections::ImplementationType ImpType=Collections::eNoImpType)
 Constructor copying only elements defined in eIds. More...
 
 ExpList3D (const LibUtilities::SessionReaderSharedPtr &pSession, const LibUtilities::BasisKey &TBa, const LibUtilities::BasisKey &TBb, const LibUtilities::BasisKey &TBc, const LibUtilities::BasisKey &HBa, const LibUtilities::BasisKey &HBb, const LibUtilities::BasisKey &HBc, const SpatialDomains::MeshGraphSharedPtr &graph3D, const LibUtilities::PointsType TetNb=LibUtilities::SIZE_PointsType, const Collections::ImplementationType ImpType=Collections::eNoImpType)
 
 ExpList3D (const LibUtilities::SessionReaderSharedPtr &pSession, const SpatialDomains::MeshGraphSharedPtr &graph3D, const std::string &variable="DefaultVar", const Collections::ImplementationType ImpType=Collections::eNoImpType)
 Sets up a list of local expansions based on an input mesh. More...
 
 ExpList3D (const SpatialDomains::ExpansionMap &expansions, const Collections::ImplementationType ImpType=Collections::eNoImpType)
 Sets up a list of local expansions based on an expansion vector. More...
 
virtual ~ExpList3D ()
 Destructor. More...
 
- Public Member Functions inherited from Nektar::MultiRegions::ExpList
 ExpList ()
 The default constructor. More...
 
 ExpList (const LibUtilities::SessionReaderSharedPtr &pSession)
 The default constructor. More...
 
 ExpList (const LibUtilities::SessionReaderSharedPtr &pSession, const SpatialDomains::MeshGraphSharedPtr &pGraph)
 The default constructor. More...
 
 ExpList (const ExpList &in, const std::vector< unsigned int > &eIDs, const bool DeclareCoeffPhysArrays=true)
 Constructor copying only elements defined in eIds. More...
 
 ExpList (const ExpList &in, const bool DeclareCoeffPhysArrays=true)
 The copy constructor. More...
 
virtual ~ExpList ()
 The default destructor. More...
 
int GetNcoeffs (void) const
 Returns the total number of local degrees of freedom $N_{\mathrm{eof}}=\sum_{e=1}^{{N_{\mathrm{el}}}}N^{e}_m$. More...
 
int GetNcoeffs (const int eid) const
 Returns the total number of local degrees of freedom for element eid. More...
 
ExpansionType GetExpType (void)
 Returns the type of the expansion. More...
 
void SetExpType (ExpansionType Type)
 Returns the type of the expansion. More...
 
int EvalBasisNumModesMax (void) const
 Evaulates the maximum number of modes in the elemental basis order over all elements. More...
 
const Array< OneD, int > EvalBasisNumModesMaxPerExp (void) const
 Returns the vector of the number of modes in the elemental basis order over all elements. More...
 
int GetTotPoints (void) const
 Returns the total number of quadrature points m_npoints $=Q_{\mathrm{tot}}$. More...
 
int GetTotPoints (const int eid) const
 Returns the total number of quadrature points for eid's element $=Q_{\mathrm{tot}}$. More...
 
int GetNpoints (void) const
 Returns the total number of quadrature points m_npoints $=Q_{\mathrm{tot}}$. More...
 
int Get1DScaledTotPoints (const NekDouble scale) const
 Returns the total number of qudature points scaled by the factor scale on each 1D direction. More...
 
void SetWaveSpace (const bool wavespace)
 Sets the wave space to the one of the possible configuration true or false. More...
 
void SetModifiedBasis (const bool modbasis)
 Set Modified Basis for the stability analysis. More...
 
void SetPhys (int i, NekDouble val)
 Set the i th value of m_phys to value val. More...
 
bool GetWaveSpace (void) const
 This function returns the third direction expansion condition, which can be in wave space (coefficient) or not It is stored in the variable m_WaveSpace. More...
 
void SetPhys (const Array< OneD, const NekDouble > &inarray)
 Fills the array m_phys. More...
 
void SetPhysArray (Array< OneD, NekDouble > &inarray)
 Sets the array m_phys. More...
 
void SetPhysState (const bool physState)
 This function manually sets whether the array of physical values $\boldsymbol{u}_l$ (implemented as m_phys) is filled or not. More...
 
bool GetPhysState (void) const
 This function indicates whether the array of physical values $\boldsymbol{u}_l$ (implemented as m_phys) is filled or not. More...
 
NekDouble PhysIntegral (void)
 This function integrates a function $f(\boldsymbol{x})$ over the domain consisting of all the elements of the expansion. More...
 
NekDouble PhysIntegral (const Array< OneD, const NekDouble > &inarray)
 This function integrates a function $f(\boldsymbol{x})$ over the domain consisting of all the elements of the expansion. More...
 
void IProductWRTBase_IterPerExp (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function calculates the inner product of a function $f(\boldsymbol{x})$ with respect to all {local} expansion modes $\phi_n^e(\boldsymbol{x})$. More...
 
void IProductWRTBase (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 
void IProductWRTDerivBase (const int dir, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function calculates the inner product of a function $f(\boldsymbol{x})$ with respect to the derivative (in direction. More...
 
void IProductWRTDerivBase (const Array< OneD, const Array< OneD, NekDouble > > &inarray, Array< OneD, NekDouble > &outarray)
 This function calculates the inner product of a function $f(\boldsymbol{x})$ with respect to the derivative (in direction. More...
 
void FwdTrans_IterPerExp (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function elementally evaluates the forward transformation of a function $u(\boldsymbol{x})$ onto the global spectral/hp expansion. More...
 
void FwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 
void MultiplyByElmtInvMass (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function elementally mulplies the coefficient space of Sin my the elemental inverse of the mass matrix. More...
 
void MultiplyByInvMassMatrix (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 
void SmoothField (Array< OneD, NekDouble > &field)
 Smooth a field across elements. More...
 
void HelmSolve (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const FlagList &flags, const StdRegions::ConstFactorMap &factors, const StdRegions::VarCoeffMap &varcoeff=StdRegions::NullVarCoeffMap, const Array< OneD, const NekDouble > &dirForcing=NullNekDouble1DArray, const bool PhysSpaceForcing=true)
 Solve helmholtz problem. More...
 
void LinearAdvectionDiffusionReactionSolve (const Array< OneD, Array< OneD, NekDouble > > &velocity, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const NekDouble lambda, CoeffState coeffstate=eLocal, const Array< OneD, const NekDouble > &dirForcing=NullNekDouble1DArray)
 Solve Advection Diffusion Reaction. More...
 
void LinearAdvectionReactionSolve (const Array< OneD, Array< OneD, NekDouble > > &velocity, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const NekDouble lambda, CoeffState coeffstate=eLocal, const Array< OneD, const NekDouble > &dirForcing=NullNekDouble1DArray)
 Solve Advection Diffusion Reaction. More...
 
void FwdTrans_BndConstrained (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
void BwdTrans_IterPerExp (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function elementally evaluates the backward transformation of the global spectral/hp element expansion. More...
 
void BwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 
void GetCoords (Array< OneD, NekDouble > &coord_0, Array< OneD, NekDouble > &coord_1=NullNekDouble1DArray, Array< OneD, NekDouble > &coord_2=NullNekDouble1DArray)
 This function calculates the coordinates of all the elemental quadrature points $\boldsymbol{x}_i$. More...
 
void HomogeneousFwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal, bool Shuff=true, bool UnShuff=true)
 
void HomogeneousBwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal, bool Shuff=true, bool UnShuff=true)
 
void DealiasedProd (const Array< OneD, NekDouble > &inarray1, const Array< OneD, NekDouble > &inarray2, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 
void DealiasedDotProd (const Array< OneD, Array< OneD, NekDouble > > &inarray1, const Array< OneD, Array< OneD, NekDouble > > &inarray2, Array< OneD, Array< OneD, NekDouble > > &outarray, CoeffState coeffstate=eLocal)
 
void GetBCValues (Array< OneD, NekDouble > &BndVals, const Array< OneD, NekDouble > &TotField, int BndID)
 
void NormVectorIProductWRTBase (Array< OneD, const NekDouble > &V1, Array< OneD, const NekDouble > &V2, Array< OneD, NekDouble > &outarray, int BndID)
 
void NormVectorIProductWRTBase (Array< OneD, Array< OneD, NekDouble > > &V, Array< OneD, NekDouble > &outarray)
 
void ApplyGeomInfo ()
 Apply geometry information to each expansion. More...
 
void Reset ()
 Reset geometry information and reset matrices. More...
 
void WriteTecplotHeader (std::ostream &outfile, std::string var="")
 
void WriteTecplotZone (std::ostream &outfile, int expansion=-1)
 
void WriteTecplotField (std::ostream &outfile, int expansion=-1)
 
void WriteTecplotConnectivity (std::ostream &outfile, int expansion=-1)
 
void WriteVtkHeader (std::ostream &outfile)
 
void WriteVtkFooter (std::ostream &outfile)
 
void WriteVtkPieceHeader (std::ostream &outfile, int expansion, int istrip=0)
 
void WriteVtkPieceFooter (std::ostream &outfile, int expansion)
 
void WriteVtkPieceData (std::ostream &outfile, int expansion, std::string var="v")
 
int GetCoordim (int eid)
 This function returns the dimension of the coordinates of the element eid. More...
 
void SetCoeff (int i, NekDouble val)
 Set the i th coefficiient in m_coeffs to value val. More...
 
void SetCoeffs (int i, NekDouble val)
 Set the i th coefficiient in m_coeffs to value val. More...
 
void SetCoeffsArray (Array< OneD, NekDouble > &inarray)
 Set the m_coeffs array to inarray. More...
 
const Array< OneD, const
NekDouble > & 
GetCoeffs () const
 This function returns (a reference to) the array $\boldsymbol{\hat{u}}_l$ (implemented as m_coeffs) containing all local expansion coefficients. More...
 
void ImposeDirichletConditions (Array< OneD, NekDouble > &outarray)
 Impose Dirichlet Boundary Conditions onto Array. More...
 
void FillBndCondFromField (void)
 Fill Bnd Condition expansion from the values stored in expansion. More...
 
void FillBndCondFromField (const int nreg)
 Fill Bnd Condition expansion in nreg from the values stored in expansion. More...
 
void LocalToGlobal (bool useComm=true)
 Gathers the global coefficients $\boldsymbol{\hat{u}}_g$ from the local coefficients $\boldsymbol{\hat{u}}_l$. More...
 
void LocalToGlobal (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, bool useComm=true)
 
void GlobalToLocal (void)
 Scatters from the global coefficients $\boldsymbol{\hat{u}}_g$ to the local coefficients $\boldsymbol{\hat{u}}_l$. More...
 
void GlobalToLocal (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
NekDouble GetCoeff (int i)
 Get the i th value (coefficient) of m_coeffs. More...
 
NekDouble GetCoeffs (int i)
 Get the i th value (coefficient) of m_coeffs. More...
 
const Array< OneD, const
NekDouble > & 
GetPhys () const
 This function returns (a reference to) the array $\boldsymbol{u}_l$ (implemented as m_phys) containing the function $u^{\delta}(\boldsymbol{x})$ evaluated at the quadrature points. More...
 
NekDouble Linf (const Array< OneD, const NekDouble > &inarray, const Array< OneD, const NekDouble > &soln=NullNekDouble1DArray)
 This function calculates the $L_\infty$ error of the global spectral/hp element approximation. More...
 
NekDouble L2 (const Array< OneD, const NekDouble > &inarray, const Array< OneD, const NekDouble > &soln=NullNekDouble1DArray)
 This function calculates the $L_2$ error with respect to soln of the global spectral/hp element approximation. More...
 
NekDouble H1 (const Array< OneD, const NekDouble > &inarray, const Array< OneD, const NekDouble > &soln=NullNekDouble1DArray)
 Calculates the $H^1$ error of the global spectral/hp element approximation. More...
 
NekDouble Integral (const Array< OneD, const NekDouble > &inarray)
 
Array< OneD, const NekDoubleHomogeneousEnergy (void)
 This function calculates the energy associated with each one of the modesof a 3D homogeneous nD expansion. More...
 
void SetHomo1DSpecVanVisc (Array< OneD, NekDouble > visc)
 This function sets the Spectral Vanishing Viscosity in homogeneous1D expansion. More...
 
Array< OneD, const unsigned int > GetZIDs (void)
 This function returns a vector containing the wave numbers in z-direction associated with the 3D homogenous expansion. Required if a parellelisation is applied in the Fourier direction. More...
 
LibUtilities::TranspositionSharedPtr GetTransposition (void)
 This function returns the transposition class associaed with the homogeneous expansion. More...
 
NekDouble GetHomoLen (void)
 This function returns the Width of homogeneous direction associaed with the homogeneous expansion. More...
 
Array< OneD, const unsigned int > GetYIDs (void)
 This function returns a vector containing the wave numbers in y-direction associated with the 3D homogenous expansion. Required if a parellelisation is applied in the Fourier direction. More...
 
void PhysInterp1DScaled (const NekDouble scale, const Array< OneD, NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function interpolates the physical space points in inarray to outarray using the same points defined in the expansion but where the number of points are rescaled by 1DScale. More...
 
void PhysGalerkinProjection1DScaled (const NekDouble scale, const Array< OneD, NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 This function Galerkin projects the physical space points in inarray to outarray where inarray is assumed to be defined in the expansion but where the number of points are rescaled by 1DScale. More...
 
int GetExpSize (void)
 This function returns the number of elements in the expansion. More...
 
int GetNumElmts (void)
 This function returns the number of elements in the expansion which may be different for a homogeoenous extended expansionp. More...
 
const boost::shared_ptr
< LocalRegions::ExpansionVector
GetExp () const
 This function returns the vector of elements in the expansion. More...
 
LocalRegions::ExpansionSharedPtrGetExp (int n) const
 This function returns (a shared pointer to) the local elemental expansion of the $n^{\mathrm{th}}$ element. More...
 
LocalRegions::ExpansionSharedPtrGetExp (const Array< OneD, const NekDouble > &gloCoord)
 This function returns (a shared pointer to) the local elemental expansion containing the arbitrary point given by gloCoord. More...
 
int GetExpIndex (const Array< OneD, const NekDouble > &gloCoord, NekDouble tol=0.0, bool returnNearestElmt=false)
 
int GetExpIndex (const Array< OneD, const NekDouble > &gloCoords, Array< OneD, NekDouble > &locCoords, NekDouble tol=0.0, bool returnNearestElmt=false)
 
int GetCoeff_Offset (int n) const
 Get the start offset position for a global list of m_coeffs correspoinding to element n. More...
 
int GetPhys_Offset (int n) const
 Get the start offset position for a global list of m_phys correspoinding to element n. More...
 
Array< OneD, NekDouble > & UpdateCoeffs ()
 This function returns (a reference to) the array $\boldsymbol{\hat{u}}_l$ (implemented as m_coeffs) containing all local expansion coefficients. More...
 
Array< OneD, NekDouble > & UpdatePhys ()
 This function returns (a reference to) the array $\boldsymbol{u}_l$ (implemented as m_phys) containing the function $u^{\delta}(\boldsymbol{x})$ evaluated at the quadrature points. More...
 
void PhysDeriv (Direction edir, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &out_d)
 
void PhysDeriv (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &out_d0, Array< OneD, NekDouble > &out_d1=NullNekDouble1DArray, Array< OneD, NekDouble > &out_d2=NullNekDouble1DArray)
 This function discretely evaluates the derivative of a function $f(\boldsymbol{x})$ on the domain consisting of all elements of the expansion. More...
 
void PhysDeriv (const int dir, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &out_d)
 
void CurlCurl (Array< OneD, Array< OneD, NekDouble > > &Vel, Array< OneD, Array< OneD, NekDouble > > &Q)
 
const Array< OneD, const
boost::shared_ptr< ExpList > > & 
GetBndCondExpansions ()
 
boost::shared_ptr< ExpList > & UpdateBndCondExpansion (int i)
 
void Upwind (const Array< OneD, const Array< OneD, NekDouble > > &Vec, const Array< OneD, const NekDouble > &Fwd, const Array< OneD, const NekDouble > &Bwd, Array< OneD, NekDouble > &Upwind)
 
void Upwind (const Array< OneD, const NekDouble > &Vn, const Array< OneD, const NekDouble > &Fwd, const Array< OneD, const NekDouble > &Bwd, Array< OneD, NekDouble > &Upwind)
 
boost::shared_ptr< ExpList > & GetTrace ()
 
boost::shared_ptr
< AssemblyMapDG > & 
GetTraceMap (void)
 
const Array< OneD, const int > & GetTraceBndMap (void)
 
void GetNormals (Array< OneD, Array< OneD, NekDouble > > &normals)
 
void AddTraceIntegral (const Array< OneD, const NekDouble > &Fx, const Array< OneD, const NekDouble > &Fy, Array< OneD, NekDouble > &outarray)
 
void AddTraceIntegral (const Array< OneD, const NekDouble > &Fn, Array< OneD, NekDouble > &outarray)
 
void AddFwdBwdTraceIntegral (const Array< OneD, const NekDouble > &Fwd, const Array< OneD, const NekDouble > &Bwd, Array< OneD, NekDouble > &outarray)
 
void GetFwdBwdTracePhys (Array< OneD, NekDouble > &Fwd, Array< OneD, NekDouble > &Bwd)
 
void GetFwdBwdTracePhys (const Array< OneD, const NekDouble > &field, Array< OneD, NekDouble > &Fwd, Array< OneD, NekDouble > &Bwd)
 
const std::vector< bool > & GetLeftAdjacentFaces (void) const
 
void ExtractTracePhys (Array< OneD, NekDouble > &outarray)
 
void ExtractTracePhys (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
const Array< OneD, const
SpatialDomains::BoundaryConditionShPtr > & 
GetBndConditions ()
 
Array< OneD,
SpatialDomains::BoundaryConditionShPtr > & 
UpdateBndConditions ()
 
void EvaluateBoundaryConditions (const NekDouble time=0.0, const std::string varName="", const NekDouble=NekConstants::kNekUnsetDouble, const NekDouble=NekConstants::kNekUnsetDouble)
 
void GeneralMatrixOp (const GlobalMatrixKey &gkey, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 This function calculates the result of the multiplication of a matrix of type specified by mkey with a vector given by inarray. More...
 
void GeneralMatrixOp_IterPerExp (const GlobalMatrixKey &gkey, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
void SetUpPhysNormals ()
 
void GetBoundaryToElmtMap (Array< OneD, int > &ElmtID, Array< OneD, int > &EdgeID)
 
void GetBndElmtExpansion (int i, boost::shared_ptr< ExpList > &result, const bool DeclareCoeffPhysArrays=true)
 
void ExtractElmtToBndPhys (int i, Array< OneD, NekDouble > &elmt, Array< OneD, NekDouble > &boundary)
 
void ExtractPhysToBndElmt (int i, const Array< OneD, const NekDouble > &phys, Array< OneD, NekDouble > &bndElmt)
 
void ExtractPhysToBnd (int i, const Array< OneD, const NekDouble > &phys, Array< OneD, NekDouble > &bnd)
 
void GetBoundaryNormals (int i, Array< OneD, Array< OneD, NekDouble > > &normals)
 
void GeneralGetFieldDefinitions (std::vector< LibUtilities::FieldDefinitionsSharedPtr > &fielddef, int NumHomoDir=0, Array< OneD, LibUtilities::BasisSharedPtr > &HomoBasis=LibUtilities::NullBasisSharedPtr1DArray, std::vector< NekDouble > &HomoLen=LibUtilities::NullNekDoubleVector, bool homoStrips=false, std::vector< unsigned int > &HomoSIDs=LibUtilities::NullUnsignedIntVector, std::vector< unsigned int > &HomoZIDs=LibUtilities::NullUnsignedIntVector, std::vector< unsigned int > &HomoYIDs=LibUtilities::NullUnsignedIntVector)
 
const
NekOptimize::GlobalOptParamSharedPtr
GetGlobalOptParam (void)
 
std::map< int,
RobinBCInfoSharedPtr
GetRobinBCInfo ()
 
void GetPeriodicEntities (PeriodicMap &periodicVerts, PeriodicMap &periodicEdges, PeriodicMap &periodicFaces=NullPeriodicMap)
 
std::vector
< LibUtilities::FieldDefinitionsSharedPtr
GetFieldDefinitions ()
 
void GetFieldDefinitions (std::vector< LibUtilities::FieldDefinitionsSharedPtr > &fielddef)
 
void AppendFieldData (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata)
 Append the element data listed in elements fielddef->m_ElementIDs onto fielddata. More...
 
void AppendFieldData (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata, Array< OneD, NekDouble > &coeffs)
 Append the data in coeffs listed in elements fielddef->m_ElementIDs onto fielddata. More...
 
void ExtractElmtDataToCoeffs (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata, std::string &field, Array< OneD, NekDouble > &coeffs)
 Extract the data in fielddata into the coeffs using the basic ExpList Elemental expansions rather than planes in homogeneous case. More...
 
void ExtractCoeffsToCoeffs (const boost::shared_ptr< ExpList > &fromExpList, const Array< OneD, const NekDouble > &fromCoeffs, Array< OneD, NekDouble > &toCoeffs)
 Extract the data from fromField using fromExpList the coeffs using the basic ExpList Elemental expansions rather than planes in homogeneous case. More...
 
void ExtractDataToCoeffs (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata, std::string &field, Array< OneD, NekDouble > &coeffs)
 Extract the data in fielddata into the coeffs. More...
 
boost::shared_ptr< ExpListGetSharedThisPtr ()
 Returns a shared pointer to the current object. More...
 
boost::shared_ptr
< LibUtilities::SessionReader
GetSession () const
 Returns the session object. More...
 
boost::shared_ptr
< LibUtilities::Comm
GetComm ()
 Returns the comm object. More...
 
SpatialDomains::MeshGraphSharedPtr GetGraph ()
 
LibUtilities::BasisSharedPtr GetHomogeneousBasis (void)
 
boost::shared_ptr< ExpList > & GetPlane (int n)
 
void CreateCollections (Collections::ImplementationType ImpType=Collections::eNoImpType)
 Construct collections of elements containing a single element type and polynomial order from the list of expansions. More...
 
void ClearGlobalLinSysManager (void)
 

Protected Member Functions

virtual void v_SetUpPhysNormals ()
 Set up the normals on each expansion. More...
 
- Protected Member Functions inherited from Nektar::MultiRegions::ExpList
void SetCoeffPhysOffsets ()
 Definition of the total number of degrees of freedom and quadrature points and offsets to access data. More...
 
boost::shared_ptr< DNekMatGenGlobalMatrixFull (const GlobalLinSysKey &mkey, const boost::shared_ptr< AssemblyMapCG > &locToGloMap)
 
const DNekScalBlkMatSharedPtr GenBlockMatrix (const GlobalMatrixKey &gkey)
 This function assembles the block diagonal matrix of local matrices of the type mtype. More...
 
const DNekScalBlkMatSharedPtrGetBlockMatrix (const GlobalMatrixKey &gkey)
 
void MultiplyByBlockMatrix (const GlobalMatrixKey &gkey, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
boost::shared_ptr< GlobalMatrixGenGlobalMatrix (const GlobalMatrixKey &mkey, const boost::shared_ptr< AssemblyMapCG > &locToGloMap)
 Generates a global matrix from the given key and map. More...
 
void GlobalEigenSystem (const boost::shared_ptr< DNekMat > &Gmat, Array< OneD, NekDouble > &EigValsReal, Array< OneD, NekDouble > &EigValsImag, Array< OneD, NekDouble > &EigVecs=NullNekDouble1DArray)
 
boost::shared_ptr< GlobalLinSysGenGlobalLinSys (const GlobalLinSysKey &mkey, const boost::shared_ptr< AssemblyMapCG > &locToGloMap)
 This operation constructs the global linear system of type mkey. More...
 
boost::shared_ptr< GlobalLinSysGenGlobalBndLinSys (const GlobalLinSysKey &mkey, const AssemblyMapSharedPtr &locToGloMap)
 Generate a GlobalLinSys from information provided by the key "mkey" and the mapping provided in LocToGloBaseMap. More...
 
void ReadGlobalOptimizationParameters ()
 
virtual int v_GetNumElmts (void)
 
virtual const Array< OneD,
const boost::shared_ptr
< ExpList > > & 
v_GetBndCondExpansions (void)
 
virtual boost::shared_ptr
< ExpList > & 
v_UpdateBndCondExpansion (int i)
 
virtual void v_Upwind (const Array< OneD, const Array< OneD, NekDouble > > &Vec, const Array< OneD, const NekDouble > &Fwd, const Array< OneD, const NekDouble > &Bwd, Array< OneD, NekDouble > &Upwind)
 
virtual void v_Upwind (const Array< OneD, const NekDouble > &Vn, const Array< OneD, const NekDouble > &Fwd, const Array< OneD, const NekDouble > &Bwd, Array< OneD, NekDouble > &Upwind)
 
virtual boost::shared_ptr
< ExpList > & 
v_GetTrace ()
 
virtual boost::shared_ptr
< AssemblyMapDG > & 
v_GetTraceMap ()
 
virtual const Array< OneD,
const int > & 
v_GetTraceBndMap ()
 
virtual void v_GetNormals (Array< OneD, Array< OneD, NekDouble > > &normals)
 
virtual void v_AddTraceIntegral (const Array< OneD, const NekDouble > &Fx, const Array< OneD, const NekDouble > &Fy, Array< OneD, NekDouble > &outarray)
 
virtual void v_AddTraceIntegral (const Array< OneD, const NekDouble > &Fn, Array< OneD, NekDouble > &outarray)
 
virtual void v_AddFwdBwdTraceIntegral (const Array< OneD, const NekDouble > &Fwd, const Array< OneD, const NekDouble > &Bwd, Array< OneD, NekDouble > &outarray)
 
virtual void v_GetFwdBwdTracePhys (Array< OneD, NekDouble > &Fwd, Array< OneD, NekDouble > &Bwd)
 
virtual void v_GetFwdBwdTracePhys (const Array< OneD, const NekDouble > &field, Array< OneD, NekDouble > &Fwd, Array< OneD, NekDouble > &Bwd)
 
virtual const std::vector< bool > & v_GetLeftAdjacentFaces (void) const
 
virtual void v_ExtractTracePhys (Array< OneD, NekDouble > &outarray)
 
virtual void v_ExtractTracePhys (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual void v_MultiplyByInvMassMatrix (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate)
 
virtual void v_HelmSolve (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const FlagList &flags, const StdRegions::ConstFactorMap &factors, const StdRegions::VarCoeffMap &varcoeff, const Array< OneD, const NekDouble > &dirForcing, const bool PhysSpaceForcing)
 
virtual void v_LinearAdvectionDiffusionReactionSolve (const Array< OneD, Array< OneD, NekDouble > > &velocity, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const NekDouble lambda, CoeffState coeffstate=eLocal, const Array< OneD, const NekDouble > &dirForcing=NullNekDouble1DArray)
 
virtual void v_LinearAdvectionReactionSolve (const Array< OneD, Array< OneD, NekDouble > > &velocity, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, const NekDouble lambda, CoeffState coeffstate=eLocal, const Array< OneD, const NekDouble > &dirForcing=NullNekDouble1DArray)
 
virtual void v_ImposeDirichletConditions (Array< OneD, NekDouble > &outarray)
 
virtual void v_FillBndCondFromField ()
 
virtual void v_FillBndCondFromField (const int nreg)
 
virtual void v_Reset ()
 Reset geometry information, metrics, matrix managers and geometry information. More...
 
virtual void v_LocalToGlobal (bool UseComm)
 
virtual void v_LocalToGlobal (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, bool UseComm)
 
virtual void v_GlobalToLocal (void)
 
virtual void v_GlobalToLocal (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual void v_BwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate)
 
virtual void v_BwdTrans_IterPerExp (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual void v_FwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate)
 
virtual void v_FwdTrans_IterPerExp (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual void v_SmoothField (Array< OneD, NekDouble > &field)
 
virtual void v_IProductWRTBase (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate)
 
virtual void v_IProductWRTBase_IterPerExp (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual void v_GeneralMatrixOp (const GlobalMatrixKey &gkey, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate)
 
virtual void v_GetCoords (Array< OneD, NekDouble > &coord_0, Array< OneD, NekDouble > &coord_1, Array< OneD, NekDouble > &coord_2=NullNekDouble1DArray)
 
virtual void v_PhysDeriv (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &out_d0, Array< OneD, NekDouble > &out_d1, Array< OneD, NekDouble > &out_d2)
 
virtual void v_PhysDeriv (const int dir, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &out_d)
 
virtual void v_PhysDeriv (Direction edir, const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &out_d)
 
virtual void v_CurlCurl (Array< OneD, Array< OneD, NekDouble > > &Vel, Array< OneD, Array< OneD, NekDouble > > &Q)
 
virtual void v_HomogeneousFwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal, bool Shuff=true, bool UnShuff=true)
 
virtual void v_HomogeneousBwdTrans (const Array< OneD, const NekDouble > &inarray, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal, bool Shuff=true, bool UnShuff=true)
 
virtual void v_DealiasedProd (const Array< OneD, NekDouble > &inarray1, const Array< OneD, NekDouble > &inarray2, Array< OneD, NekDouble > &outarray, CoeffState coeffstate=eLocal)
 
virtual void v_DealiasedDotProd (const Array< OneD, Array< OneD, NekDouble > > &inarray1, const Array< OneD, Array< OneD, NekDouble > > &inarray2, Array< OneD, Array< OneD, NekDouble > > &outarray, CoeffState coeffstate=eLocal)
 
virtual void v_GetBCValues (Array< OneD, NekDouble > &BndVals, const Array< OneD, NekDouble > &TotField, int BndID)
 
virtual void v_NormVectorIProductWRTBase (Array< OneD, const NekDouble > &V1, Array< OneD, const NekDouble > &V2, Array< OneD, NekDouble > &outarray, int BndID)
 
virtual void v_NormVectorIProductWRTBase (Array< OneD, Array< OneD, NekDouble > > &V, Array< OneD, NekDouble > &outarray)
 
virtual void v_GetBoundaryToElmtMap (Array< OneD, int > &ElmtID, Array< OneD, int > &EdgeID)
 
virtual void v_GetBndElmtExpansion (int i, boost::shared_ptr< ExpList > &result, const bool DeclareCoeffPhysArrays)
 
virtual void v_ExtractElmtToBndPhys (int i, Array< OneD, NekDouble > &elmt, Array< OneD, NekDouble > &boundary)
 
virtual void v_ExtractPhysToBndElmt (int i, const Array< OneD, const NekDouble > &phys, Array< OneD, NekDouble > &bndElmt)
 
virtual void v_ExtractPhysToBnd (int i, const Array< OneD, const NekDouble > &phys, Array< OneD, NekDouble > &bnd)
 
virtual void v_GetBoundaryNormals (int i, Array< OneD, Array< OneD, NekDouble > > &normals)
 
virtual std::vector
< LibUtilities::FieldDefinitionsSharedPtr
v_GetFieldDefinitions (void)
 
virtual void v_GetFieldDefinitions (std::vector< LibUtilities::FieldDefinitionsSharedPtr > &fielddef)
 
virtual void v_AppendFieldData (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata)
 
virtual void v_AppendFieldData (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata, Array< OneD, NekDouble > &coeffs)
 
virtual void v_ExtractDataToCoeffs (LibUtilities::FieldDefinitionsSharedPtr &fielddef, std::vector< NekDouble > &fielddata, std::string &field, Array< OneD, NekDouble > &coeffs)
 Extract data from raw field data into expansion list. More...
 
virtual void v_ExtractCoeffsToCoeffs (const boost::shared_ptr< ExpList > &fromExpList, const Array< OneD, const NekDouble > &fromCoeffs, Array< OneD, NekDouble > &toCoeffs)
 
virtual void v_WriteTecplotHeader (std::ostream &outfile, std::string var="")
 
virtual void v_WriteTecplotZone (std::ostream &outfile, int expansion)
 
virtual void v_WriteTecplotField (std::ostream &outfile, int expansion)
 
virtual void v_WriteTecplotConnectivity (std::ostream &outfile, int expansion)
 
virtual void v_WriteVtkPieceData (std::ostream &outfile, int expansion, std::string var)
 
virtual NekDouble v_L2 (const Array< OneD, const NekDouble > &phys, const Array< OneD, const NekDouble > &soln=NullNekDouble1DArray)
 
virtual NekDouble v_Integral (const Array< OneD, const NekDouble > &inarray)
 
virtual Array< OneD, const
NekDouble
v_HomogeneousEnergy (void)
 
virtual
LibUtilities::TranspositionSharedPtr 
v_GetTransposition (void)
 
virtual NekDouble v_GetHomoLen (void)
 
virtual Array< OneD, const
unsigned int > 
v_GetZIDs (void)
 
virtual Array< OneD, const
unsigned int > 
v_GetYIDs (void)
 
virtual void v_ClearGlobalLinSysManager (void)
 
void ExtractFileBCs (const std::string &fileName, LibUtilities::CommSharedPtr comm, const std::string &varName, const boost::shared_ptr< ExpList > locExpList)
 

Private Member Functions

virtual void v_ReadGlobalOptimizationParameters ()
 
virtual void v_WriteVtkPieceHeader (std::ostream &outfile, int expansion, int istrip)
 
virtual void v_PhysInterp1DScaled (const NekDouble scale, const Array< OneD, NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 
virtual void v_PhysGalerkinProjection1DScaled (const NekDouble scale, const Array< OneD, NekDouble > &inarray, Array< OneD, NekDouble > &outarray)
 

Additional Inherited Members

- Public Attributes inherited from Nektar::MultiRegions::ExpList
ExpansionType m_expType
 
- Static Protected Member Functions inherited from Nektar::MultiRegions::ExpList
static
SpatialDomains::BoundaryConditionShPtr 
GetBoundaryCondition (const SpatialDomains::BoundaryConditionCollection &collection, unsigned int index, const std::string &variable)
 
- Protected Attributes inherited from Nektar::MultiRegions::ExpList
LibUtilities::CommSharedPtr m_comm
 Communicator. More...
 
LibUtilities::SessionReaderSharedPtr m_session
 Session. More...
 
SpatialDomains::MeshGraphSharedPtr m_graph
 Mesh associated with this expansion list. More...
 
int m_ncoeffs
 The total number of local degrees of freedom. m_ncoeffs $=N_{\mathrm{eof}}=\sum_{e=1}^{{N_{\mathrm{el}}}}N^{e}_l$. More...
 
int m_npoints
 
Array< OneD, NekDoublem_coeffs
 Concatenation of all local expansion coefficients. More...
 
Array< OneD, NekDoublem_phys
 The global expansion evaluated at the quadrature points. More...
 
bool m_physState
 The state of the array m_phys. More...
 
boost::shared_ptr
< LocalRegions::ExpansionVector
m_exp
 The list of local expansions. More...
 
Collections::CollectionVector m_collections
 
std::vector< int > m_coll_coeff_offset
 Offset of elemental data into the array m_coeffs. More...
 
std::vector< int > m_coll_phys_offset
 Offset of elemental data into the array m_phys. More...
 
Array< OneD, int > m_coeff_offset
 Offset of elemental data into the array m_coeffs. More...
 
Array< OneD, int > m_phys_offset
 Offset of elemental data into the array m_phys. More...
 
NekOptimize::GlobalOptParamSharedPtr m_globalOptParam
 
BlockMatrixMapShPtr m_blockMat
 
bool m_WaveSpace
 
boost::unordered_map< int, int > m_elmtToExpId
 Mapping from geometry ID of element to index inside m_exp. More...
 

Detailed Description

Abstraction of a three-dimensional multi-elemental expansion which is merely a collection of local expansions.

Definition at line 49 of file ExpList3D.h.

Constructor & Destructor Documentation

Nektar::MultiRegions::ExpList3D::ExpList3D ( )

Default constructor.

Definition at line 54 of file ExpList3D.cpp.

References Nektar::MultiRegions::e3D, and Nektar::MultiRegions::ExpList::SetExpType().

54  : ExpList()
55  {
56  SetExpType(e3D);
57  }
ExpList()
The default constructor.
Definition: ExpList.cpp:95
void SetExpType(ExpansionType Type)
Returns the type of the expansion.
Definition: ExpList.cpp:277
Nektar::MultiRegions::ExpList3D::ExpList3D ( const ExpList3D In)

Copy constructor.

Definition at line 59 of file ExpList3D.cpp.

References Nektar::MultiRegions::e3D, and Nektar::MultiRegions::ExpList::SetExpType().

59  : ExpList(In)
60  {
61  SetExpType(e3D);
62  }
ExpList()
The default constructor.
Definition: ExpList.cpp:95
void SetExpType(ExpansionType Type)
Returns the type of the expansion.
Definition: ExpList.cpp:277
Nektar::MultiRegions::ExpList3D::ExpList3D ( const ExpList3D In,
const std::vector< unsigned int > &  eIDs,
const bool  DeclareCoeffPhysArrays = true,
const Collections::ImplementationType  ImpType = Collections::eNoImpType 
)

Constructor copying only elements defined in eIds.

Definition at line 64 of file ExpList3D.cpp.

References Nektar::MemoryManager< DataType >::AllocateSharedPtr(), Nektar::MultiRegions::ExpList::CreateCollections(), Nektar::MultiRegions::e3D, Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::MultiRegions::ExpList::m_coeffs, Nektar::MultiRegions::ExpList::m_globalOptParam, Nektar::MultiRegions::ExpList::m_ncoeffs, Nektar::MultiRegions::ExpList::m_npoints, Nektar::MultiRegions::ExpList::m_phys, Nektar::MultiRegions::ExpList::ReadGlobalOptimizationParameters(), Nektar::MultiRegions::ExpList::SetCoeffPhysOffsets(), and Nektar::MultiRegions::ExpList::SetExpType().

67  :
68  ExpList(In, eIDs, DeclareCoeffPhysArrays)
69  {
70  SetExpType(e3D);
71 
72  // Setup Default optimisation information.
73  int nel = GetExpSize();
76 
78 
79  if (DeclareCoeffPhysArrays)
80  {
81  // Set up m_coeffs, m_phys.
82  m_coeffs = Array<OneD, NekDouble>(m_ncoeffs);
83  m_phys = Array<OneD, NekDouble>(m_npoints);
84  }
85 
87  CreateCollections(ImpType);
88  }
ExpList()
The default constructor.
Definition: ExpList.cpp:95
static boost::shared_ptr< DataType > AllocateSharedPtr()
Allocate a shared pointer from the memory pool.
NekOptimize::GlobalOptParamSharedPtr m_globalOptParam
Definition: ExpList.h:1052
Array< OneD, NekDouble > m_phys
The global expansion evaluated at the quadrature points.
Definition: ExpList.h:1015
Array< OneD, NekDouble > m_coeffs
Concatenation of all local expansion coefficients.
Definition: ExpList.h:998
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
int m_ncoeffs
The total number of local degrees of freedom. m_ncoeffs .
Definition: ExpList.h:976
void SetCoeffPhysOffsets()
Definition of the total number of degrees of freedom and quadrature points and offsets to access data...
Definition: ExpList.cpp:247
void CreateCollections(Collections::ImplementationType ImpType=Collections::eNoImpType)
Construct collections of elements containing a single element type and polynomial order from the list...
Definition: ExpList.cpp:3151
void SetExpType(ExpansionType Type)
Returns the type of the expansion.
Definition: ExpList.cpp:277
Nektar::MultiRegions::ExpList3D::ExpList3D ( const LibUtilities::SessionReaderSharedPtr pSession,
const LibUtilities::BasisKey TBa,
const LibUtilities::BasisKey TBb,
const LibUtilities::BasisKey TBc,
const LibUtilities::BasisKey HBa,
const LibUtilities::BasisKey HBb,
const LibUtilities::BasisKey HBc,
const SpatialDomains::MeshGraphSharedPtr graph3D,
const LibUtilities::PointsType  TetNb = LibUtilities::SIZE_PointsType,
const Collections::ImplementationType  ImpType = Collections::eNoImpType 
)

Definition at line 95 of file ExpList3D.cpp.

References Nektar::MemoryManager< DataType >::AllocateSharedPtr(), ASSERTL0, Nektar::MultiRegions::ExpList::CreateCollections(), Nektar::MultiRegions::e3D, Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::LibUtilities::StdTetData::getNumberOfCoefficients(), Nektar::LibUtilities::BasisKey::GetNumModes(), Nektar::LibUtilities::BasisKey::GetNumPoints(), Nektar::MultiRegions::ExpList::m_coeffs, Nektar::MultiRegions::ExpList::m_globalOptParam, Nektar::MultiRegions::ExpList::m_ncoeffs, Nektar::MultiRegions::ExpList::m_npoints, Nektar::MultiRegions::ExpList::m_phys, Nektar::MultiRegions::ExpList::ReadGlobalOptimizationParameters(), Nektar::MultiRegions::ExpList::SetCoeffPhysOffsets(), Nektar::MultiRegions::ExpList::SetExpType(), and Nektar::LibUtilities::SIZE_PointsType.

104  :
105  ExpList(pSession,graph3D)
106  {
107  SetExpType(e3D);
108 
113 
114  const SpatialDomains::ExpansionMap &expansions = graph3D->GetExpansions();
115 
116  SpatialDomains::ExpansionMap::const_iterator expIt;
117  for (expIt = expansions.begin(); expIt != expansions.end(); ++expIt)
118  {
123 
124  if((TetGeom = boost::dynamic_pointer_cast<SpatialDomains::TetGeom>(expIt->second->m_geomShPtr)))
125  {
127  {
128 // Ntet = MemoryManager<LocalRegions::NodalTetExp>::AllocateSharedPtr(TetBa,TetBb,TetBc,TetNb,TetGeom);
129 // (*m_exp).push_back(Ntet);
130  }
131  else
132  {
134  (*m_exp).push_back(tet);
135  }
136 
137  m_ncoeffs += LibUtilities::StdTetData::getNumberOfCoefficients(TBa.GetNumModes(), TBb.GetNumModes(), TBc.GetNumModes());
138 
139  m_npoints += TBa.GetNumPoints()*TBb.GetNumPoints()*TBc.GetNumPoints();
140  }
141 /*
142  else if((PrismGeom = boost::dynamic_pointer_cast<SpatialDomains::PrismGeom>(expansions[i]->m_geomShPtr)))
143  {
144  prism = MemoryManager<LocalRegions::PrismExp>::AllocateSharedPtr(Ba,Bb,Bc,PrismGeom);
145  (*m_exp).push_back(prism);
146 
147  m_ncoeffs += StdRegions::StdPrismData::getNumberOfCoefficients(Ba.GetNumModes(), Bb.GetNumModes(), Bc.GetNumModes());
148  m_npoints += Ba.GetNumPoints()*Bb.GetNumPoints()*Bc.GetNumPoints();
149 
150  }
151  else if((PyrGeom = boost::dynamic_pointer_cast<SpatialDomains::PyrGeom>(expansions[i]->m_geomShPtr)))
152  {
153  pyramid = MemoryManager<LocalRegions::PyrExp>::AllocateSharedPtr(Ba,Bb,Bc,PyrGeom);
154  (*m_exp).push_back(pyramid);
155 
156  m_ncoeffs += StdRegions::StdPyrData::getNumberOfCoefficients(Ba.GetNumModes(), Bb.GetNumModes(), Bc.GetNumModes());
157  m_npoints += Ba.GetNumPoints()*Bb.GetNumPoints()*Bc.GetNumPoints();
158 
159  }
160 */
161  else if((HexGeom = boost::dynamic_pointer_cast<SpatialDomains::HexGeom>(expIt->second->m_geomShPtr)))
162  {
163  hex = MemoryManager<LocalRegions::HexExp>::AllocateSharedPtr(HBa,HBb,HBc, HexGeom);
164  (*m_exp).push_back(hex);
165 
166  m_ncoeffs += HBa.GetNumModes()*HBb.GetNumModes()*HBc.GetNumModes();
167  m_npoints += HBa.GetNumPoints()*HBb.GetNumPoints()*HBc.GetNumPoints();
168  }
169  else
170  {
171  ASSERTL0(false,"dynamic cast to a proper Geometry3D failed");
172  }
173 
174  }
175 
176  // Setup Default optimisation information.
177  int nel = GetExpSize();
180 
182 
183  // Set up m_coeffs, m_phys.
184  m_coeffs = Array<OneD, NekDouble>(m_ncoeffs);
185  m_phys = Array<OneD, NekDouble>(m_npoints);
186 
188  CreateCollections(ImpType);
189  }
boost::shared_ptr< PyrGeom > PyrGeomSharedPtr
Definition: PyrGeom.h:84
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:198
ExpList()
The default constructor.
Definition: ExpList.cpp:95
static boost::shared_ptr< DataType > AllocateSharedPtr()
Allocate a shared pointer from the memory pool.
NekOptimize::GlobalOptParamSharedPtr m_globalOptParam
Definition: ExpList.h:1052
boost::shared_ptr< HexExp > HexExpSharedPtr
Definition: HexExp.h:57
Array< OneD, NekDouble > m_phys
The global expansion evaluated at the quadrature points.
Definition: ExpList.h:1015
boost::shared_ptr< HexGeom > HexGeomSharedPtr
Definition: HexGeom.h:110
int getNumberOfCoefficients(int Na, int Nb, int Nc)
Definition: ShapeType.hpp:186
Array< OneD, NekDouble > m_coeffs
Concatenation of all local expansion coefficients.
Definition: ExpList.h:998
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
boost::shared_ptr< TetExp > TetExpSharedPtr
Definition: TetExp.h:228
boost::shared_ptr< PyrExp > PyrExpSharedPtr
Definition: PyrExp.h:164
int m_ncoeffs
The total number of local degrees of freedom. m_ncoeffs .
Definition: ExpList.h:976
void SetCoeffPhysOffsets()
Definition of the total number of degrees of freedom and quadrature points and offsets to access data...
Definition: ExpList.cpp:247
boost::shared_ptr< PrismExp > PrismExpSharedPtr
Definition: PrismExp.h:222
boost::shared_ptr< PrismGeom > PrismGeomSharedPtr
Definition: PrismGeom.h:109
boost::shared_ptr< TetGeom > TetGeomSharedPtr
Definition: TetGeom.h:106
void CreateCollections(Collections::ImplementationType ImpType=Collections::eNoImpType)
Construct collections of elements containing a single element type and polynomial order from the list...
Definition: ExpList.cpp:3151
void SetExpType(ExpansionType Type)
Returns the type of the expansion.
Definition: ExpList.cpp:277
std::map< int, ExpansionShPtr > ExpansionMap
Definition: MeshGraph.h:174
Nektar::MultiRegions::ExpList3D::ExpList3D ( const LibUtilities::SessionReaderSharedPtr pSession,
const SpatialDomains::MeshGraphSharedPtr graph3D,
const std::string &  variable = "DefaultVar",
const Collections::ImplementationType  ImpType = Collections::eNoImpType 
)

Sets up a list of local expansions based on an input mesh.

Given a mesh graph3D, containing information about the domain and the spectral/hp element expansion, this constructor fills the list of local expansions {m_exp} with the proper expansions, calculates the total number of quadrature points $\boldsymbol{x}_i$ and the local expansion coefficients $\hat{u}^e_n$ and allocates memory for the arrays m_coeffs and m_phys.

Parameters
graph3DA mesh, containing information about the domain and the spectral/hp element expansion.

Definition at line 203 of file ExpList3D.cpp.

References Nektar::MemoryManager< DataType >::AllocateSharedPtr(), ASSERTL0, Nektar::MultiRegions::ExpList::CreateCollections(), Nektar::MultiRegions::e3D, Nektar::LibUtilities::eGauss_Lagrange, Nektar::LibUtilities::eGLL_Lagrange, Nektar::LibUtilities::BasisKey::GetBasisType(), Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::MultiRegions::ExpList::m_coeffs, Nektar::MultiRegions::ExpList::m_globalOptParam, Nektar::MultiRegions::ExpList::m_ncoeffs, Nektar::MultiRegions::ExpList::m_npoints, Nektar::MultiRegions::ExpList::m_phys, Nektar::MultiRegions::ExpList::ReadGlobalOptimizationParameters(), Nektar::MultiRegions::ExpList::SetCoeffPhysOffsets(), and Nektar::MultiRegions::ExpList::SetExpType().

206  :
207  ExpList(pSession,graph3D)
208  {
209  SetExpType(e3D);
210 
211  int elmtid = 0;
216 
217  const SpatialDomains::ExpansionMap &expansions
218  = graph3D->GetExpansions(variable);
219 
220  SpatialDomains::ExpansionMap::const_iterator expIt;
221  for (expIt = expansions.begin(); expIt != expansions.end(); ++expIt)
222  {
227 
228  if((TetGeom = boost::dynamic_pointer_cast<
229  SpatialDomains::TetGeom>(expIt->second->m_geomShPtr)))
230  {
231  LibUtilities::BasisKey TetBa
232  = expIt->second->m_basisKeyVector[0];
233  LibUtilities::BasisKey TetBb
234  = expIt->second->m_basisKeyVector[1];
235  LibUtilities::BasisKey TetBc
236  = expIt->second->m_basisKeyVector[2];
237 
238  if(TetBa.GetBasisType() == LibUtilities::eGLL_Lagrange ||
239  TetBa.GetBasisType() == LibUtilities::eGauss_Lagrange)
240  {
241  ASSERTL0(false,"LocalRegions::NodalTetExp is not "
242  "implemented yet");
243  }
244  else
245  {
247  ::AllocateSharedPtr(TetBa,TetBb,TetBc,
248  TetGeom);
249  tet->SetElmtId(elmtid++);
250  (*m_exp).push_back(tet);
251  }
252  }
253  else if((PrismGeom = boost::dynamic_pointer_cast<SpatialDomains
254  ::PrismGeom>(expIt->second->m_geomShPtr)))
255  {
256  LibUtilities::BasisKey PrismBa
257  = expIt->second->m_basisKeyVector[0];
258  LibUtilities::BasisKey PrismBb
259  = expIt->second->m_basisKeyVector[1];
260  LibUtilities::BasisKey PrismBc
261  = expIt->second->m_basisKeyVector[2];
262 
264  ::AllocateSharedPtr(PrismBa,PrismBb,
265  PrismBc,PrismGeom);
266  prism->SetElmtId(elmtid++);
267  (*m_exp).push_back(prism);
268  }
269  else if((PyrGeom = boost::dynamic_pointer_cast<
270  SpatialDomains::PyrGeom>(expIt->second->m_geomShPtr)))
271  {
272  LibUtilities::BasisKey PyrBa
273  = expIt->second->m_basisKeyVector[0];
274  LibUtilities::BasisKey PyrBb
275  = expIt->second->m_basisKeyVector[1];
276  LibUtilities::BasisKey PyrBc
277  = expIt->second->m_basisKeyVector[2];
278 
280  ::AllocateSharedPtr(PyrBa,PyrBb,PyrBc,
281  PyrGeom);
282  pyramid->SetElmtId(elmtid++);
283  (*m_exp).push_back(pyramid);
284  }
285  else if((HexGeom = boost::dynamic_pointer_cast<
286  SpatialDomains::HexGeom>(expIt->second->m_geomShPtr)))
287  {
288  LibUtilities::BasisKey HexBa
289  = expIt->second->m_basisKeyVector[0];
290  LibUtilities::BasisKey HexBb
291  = expIt->second->m_basisKeyVector[1];
292  LibUtilities::BasisKey HexBc
293  = expIt->second->m_basisKeyVector[2];
294 
296  ::AllocateSharedPtr(HexBa,HexBb,HexBc,
297  HexGeom);
298  hex->SetElmtId(elmtid++);
299  (*m_exp).push_back(hex);
300  }
301  else
302  {
303  ASSERTL0(false,"dynamic cast to a proper Geometry3D "
304  "failed");
305  }
306 
307  }
308 
309  // Setup Default optimisation information.
310  int nel = GetExpSize();
313 
315 
316  // Set up m_coeffs, m_phys.
317  m_coeffs = Array<OneD, NekDouble>(m_ncoeffs);
318  m_phys = Array<OneD, NekDouble>(m_npoints);
319 
321  CreateCollections(ImpType);
322  }
boost::shared_ptr< PyrGeom > PyrGeomSharedPtr
Definition: PyrGeom.h:84
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:198
ExpList()
The default constructor.
Definition: ExpList.cpp:95
static boost::shared_ptr< DataType > AllocateSharedPtr()
Allocate a shared pointer from the memory pool.
NekOptimize::GlobalOptParamSharedPtr m_globalOptParam
Definition: ExpList.h:1052
Lagrange Polynomials using the Gauss points .
Definition: BasisType.h:54
boost::shared_ptr< HexExp > HexExpSharedPtr
Definition: HexExp.h:57
Array< OneD, NekDouble > m_phys
The global expansion evaluated at the quadrature points.
Definition: ExpList.h:1015
boost::shared_ptr< HexGeom > HexGeomSharedPtr
Definition: HexGeom.h:110
Array< OneD, NekDouble > m_coeffs
Concatenation of all local expansion coefficients.
Definition: ExpList.h:998
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
boost::shared_ptr< TetExp > TetExpSharedPtr
Definition: TetExp.h:228
boost::shared_ptr< PyrExp > PyrExpSharedPtr
Definition: PyrExp.h:164
int m_ncoeffs
The total number of local degrees of freedom. m_ncoeffs .
Definition: ExpList.h:976
void SetCoeffPhysOffsets()
Definition of the total number of degrees of freedom and quadrature points and offsets to access data...
Definition: ExpList.cpp:247
boost::shared_ptr< PrismExp > PrismExpSharedPtr
Definition: PrismExp.h:222
boost::shared_ptr< PrismGeom > PrismGeomSharedPtr
Definition: PrismGeom.h:109
boost::shared_ptr< TetGeom > TetGeomSharedPtr
Definition: TetGeom.h:106
void CreateCollections(Collections::ImplementationType ImpType=Collections::eNoImpType)
Construct collections of elements containing a single element type and polynomial order from the list...
Definition: ExpList.cpp:3151
Lagrange for SEM basis .
Definition: BasisType.h:53
void SetExpType(ExpansionType Type)
Returns the type of the expansion.
Definition: ExpList.cpp:277
std::map< int, ExpansionShPtr > ExpansionMap
Definition: MeshGraph.h:174
Nektar::MultiRegions::ExpList3D::ExpList3D ( const SpatialDomains::ExpansionMap expansions,
const Collections::ImplementationType  ImpType = Collections::eNoImpType 
)

Sets up a list of local expansions based on an expansion vector.

Given an expansion vector expansions, containing information about the domain and the spectral/hp element expansion, this constructor fills the list of local expansions {m_exp} with the proper expansions, calculates the total number of quadrature points $\boldsymbol{x}_i$ and the local expansion coefficients $\hat{u}^e_n$ and allocates memory for the arrays m_coeffs and m_phys.

Parameters
expansionsAn expansion vector, containing information about the domain and the spectral/hp element expansion.

Definition at line 338 of file ExpList3D.cpp.

References Nektar::MemoryManager< DataType >::AllocateSharedPtr(), ASSERTL0, ASSERTL1, Nektar::MultiRegions::ExpList::CreateCollections(), Nektar::MultiRegions::e3D, Nektar::LibUtilities::eGauss_Lagrange, Nektar::LibUtilities::eGLL_Lagrange, Nektar::LibUtilities::BasisKey::GetBasisType(), Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::MultiRegions::ExpList::m_coeffs, Nektar::MultiRegions::ExpList::m_globalOptParam, Nektar::MultiRegions::ExpList::m_ncoeffs, Nektar::MultiRegions::ExpList::m_npoints, Nektar::MultiRegions::ExpList::m_phys, Nektar::MultiRegions::ExpList::SetCoeffPhysOffsets(), and Nektar::MultiRegions::ExpList::SetExpType().

339  :
340  ExpList()
341  {
342  SetExpType(e3D);
343 
344  int elmtid = 0;
349 
350 
351  for(int i = 0; i < expansions.size(); ++i)
352  {
357 
358  SpatialDomains::ExpansionMap::const_iterator expmap = expansions.find(i);
359  ASSERTL1(expmap != expansions.end(), "Unable to find expansion.");
360  const SpatialDomains::ExpansionShPtr exp = expmap->second;
361 
362  if((TetGeom = boost::dynamic_pointer_cast<
363  SpatialDomains::TetGeom>(exp->m_geomShPtr)))
364  {
365  LibUtilities::BasisKey TetBa
366  = exp->m_basisKeyVector[0];
367  LibUtilities::BasisKey TetBb
368  = exp->m_basisKeyVector[1];
369  LibUtilities::BasisKey TetBc
370  = exp->m_basisKeyVector[2];
371 
372  if(TetBa.GetBasisType() == LibUtilities::eGLL_Lagrange ||
373  TetBa.GetBasisType() == LibUtilities::eGauss_Lagrange)
374  {
375  ASSERTL0(false,"LocalRegions::NodalTetExp is not "
376  "implemented yet");
377  }
378  else
379  {
381  ::AllocateSharedPtr(TetBa,TetBb,TetBc,
382  TetGeom);
383  tet->SetElmtId(elmtid++);
384  (*m_exp).push_back(tet);
385  }
386  }
387  else if((PrismGeom = boost::dynamic_pointer_cast<
388  SpatialDomains::PrismGeom>(exp->m_geomShPtr)))
389  {
390  LibUtilities::BasisKey PrismBa
391  = exp->m_basisKeyVector[0];
392  LibUtilities::BasisKey PrismBb
393  = exp->m_basisKeyVector[1];
394  LibUtilities::BasisKey PrismBc
395  = exp->m_basisKeyVector[2];
396 
398  ::AllocateSharedPtr(PrismBa,PrismBb,
399  PrismBc,PrismGeom);
400  prism->SetElmtId(elmtid++);
401  (*m_exp).push_back(prism);
402  }
403  else if((PyrGeom = boost::dynamic_pointer_cast<
404  SpatialDomains::PyrGeom>(exp->m_geomShPtr)))
405  {
406  LibUtilities::BasisKey PyrBa
407  = exp->m_basisKeyVector[0];
408  LibUtilities::BasisKey PyrBb
409  = exp->m_basisKeyVector[1];
410  LibUtilities::BasisKey PyrBc
411  = exp->m_basisKeyVector[2];
412 
414  ::AllocateSharedPtr(PyrBa,PyrBb,PyrBc,
415  PyrGeom);
416  pyramid->SetElmtId(elmtid++);
417  (*m_exp).push_back(pyramid);
418  }
419  else if((HexGeom = boost::dynamic_pointer_cast<
420  SpatialDomains::HexGeom>(exp->m_geomShPtr)))
421  {
422  LibUtilities::BasisKey HexBa
423  = exp->m_basisKeyVector[0];
424  LibUtilities::BasisKey HexBb
425  = exp->m_basisKeyVector[1];
426  LibUtilities::BasisKey HexBc
427  = exp->m_basisKeyVector[2];
428 
430  ::AllocateSharedPtr(HexBa,HexBb,HexBc,
431  HexGeom);
432  hex->SetElmtId(elmtid++);
433  (*m_exp).push_back(hex);
434  }
435  else
436  {
437  ASSERTL0(false,"dynamic cast to a proper Geometry3D "
438  "failed");
439  }
440 
441  }
442 
443  // Setup Default optimisation information.
444  int nel = GetExpSize();
447 
449 
450  // Set up m_coeffs, m_phys.
451  m_coeffs = Array<OneD, NekDouble>(m_ncoeffs);
452  m_phys = Array<OneD, NekDouble>(m_npoints);
453 
454  CreateCollections(ImpType);
455  }
boost::shared_ptr< PyrGeom > PyrGeomSharedPtr
Definition: PyrGeom.h:84
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:198
ExpList()
The default constructor.
Definition: ExpList.cpp:95
static boost::shared_ptr< DataType > AllocateSharedPtr()
Allocate a shared pointer from the memory pool.
NekOptimize::GlobalOptParamSharedPtr m_globalOptParam
Definition: ExpList.h:1052
Lagrange Polynomials using the Gauss points .
Definition: BasisType.h:54
boost::shared_ptr< HexExp > HexExpSharedPtr
Definition: HexExp.h:57
Array< OneD, NekDouble > m_phys
The global expansion evaluated at the quadrature points.
Definition: ExpList.h:1015
boost::shared_ptr< HexGeom > HexGeomSharedPtr
Definition: HexGeom.h:110
Array< OneD, NekDouble > m_coeffs
Concatenation of all local expansion coefficients.
Definition: ExpList.h:998
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
boost::shared_ptr< TetExp > TetExpSharedPtr
Definition: TetExp.h:228
boost::shared_ptr< PyrExp > PyrExpSharedPtr
Definition: PyrExp.h:164
int m_ncoeffs
The total number of local degrees of freedom. m_ncoeffs .
Definition: ExpList.h:976
void SetCoeffPhysOffsets()
Definition of the total number of degrees of freedom and quadrature points and offsets to access data...
Definition: ExpList.cpp:247
boost::shared_ptr< PrismExp > PrismExpSharedPtr
Definition: PrismExp.h:222
boost::shared_ptr< Expansion > ExpansionShPtr
Definition: MeshGraph.h:173
boost::shared_ptr< PrismGeom > PrismGeomSharedPtr
Definition: PrismGeom.h:109
boost::shared_ptr< TetGeom > TetGeomSharedPtr
Definition: TetGeom.h:106
void CreateCollections(Collections::ImplementationType ImpType=Collections::eNoImpType)
Construct collections of elements containing a single element type and polynomial order from the list...
Definition: ExpList.cpp:3151
Lagrange for SEM basis .
Definition: BasisType.h:53
void SetExpType(ExpansionType Type)
Returns the type of the expansion.
Definition: ExpList.cpp:277
#define ASSERTL1(condition, msg)
Assert Level 1 – Debugging which is used whether in FULLDEBUG or DEBUG compilation mode...
Definition: ErrorUtil.hpp:228
Nektar::MultiRegions::ExpList3D::~ExpList3D ( )
virtual

Destructor.

Definition at line 90 of file ExpList3D.cpp.

91  {
92  }

Member Function Documentation

void Nektar::MultiRegions::ExpList3D::v_PhysGalerkinProjection1DScaled ( const NekDouble  scale,
const Array< OneD, NekDouble > &  inarray,
Array< OneD, NekDouble > &  outarray 
)
privatevirtual

Reimplemented from Nektar::MultiRegions::ExpList.

Definition at line 603 of file ExpList3D.cpp.

References Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::MultiRegions::ExpList::m_exp, and Nektar::LibUtilities::PhysGalerkinProject3D().

606  {
607  int cnt,cnt1;
608 
609  cnt = cnt1 = 0;
610  for(int i = 0; i < GetExpSize(); ++i)
611  {
612  // get new points key
613  int pt0 = (*m_exp)[i]->GetNumPoints(0);
614  int pt1 = (*m_exp)[i]->GetNumPoints(1);
615  int pt2 = (*m_exp)[i]->GetNumPoints(2);
616  int npt0 = (int) pt0*scale;
617  int npt1 = (int) pt1*scale;
618  int npt2 = (int) pt2*scale;
619 
620  LibUtilities::PointsKey newPointsKey0(npt0,(*m_exp)[i]->GetPointsType(0));
621  LibUtilities::PointsKey newPointsKey1(npt1,(*m_exp)[i]->GetPointsType(1));
622  LibUtilities::PointsKey newPointsKey2(npt2,(*m_exp)[i]->GetPointsType(2));
623 
624  // Project points;
626  newPointsKey1,
627  newPointsKey2,
628  &inarray[cnt],
629  (*m_exp)[i]->GetBasis(0)->GetPointsKey(),
630  (*m_exp)[i]->GetBasis(1)->GetPointsKey(),
631  (*m_exp)[i]->GetBasis(2)->GetPointsKey(),
632  &outarray[cnt1]);
633 
634  cnt += npt0*npt1*npt2;
635  cnt1 += pt0*pt1*pt2;
636  }
637 
638  }
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
boost::shared_ptr< LocalRegions::ExpansionVector > m_exp
The list of local expansions.
Definition: ExpList.h:1036
void PhysGalerkinProject3D(const BasisKey &fbasis0, const BasisKey &fbasis1, const BasisKey &fbasis2, const Array< OneD, const NekDouble > &from, const BasisKey &tbasis0, const BasisKey &tbasis1, const BasisKey &tbasis2, Array< OneD, NekDouble > &to)
void Nektar::MultiRegions::ExpList3D::v_PhysInterp1DScaled ( const NekDouble  scale,
const Array< OneD, NekDouble > &  inarray,
Array< OneD, NekDouble > &  outarray 
)
privatevirtual

Reimplemented from Nektar::MultiRegions::ExpList.

Definition at line 569 of file ExpList3D.cpp.

References Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::LibUtilities::Interp3D(), and Nektar::MultiRegions::ExpList::m_exp.

572  {
573  int cnt,cnt1;
574 
575  cnt = cnt1 = 0;
576  for(int i = 0; i < GetExpSize(); ++i)
577  {
578  // get new points key
579  int pt0 = (*m_exp)[i]->GetNumPoints(0);
580  int pt1 = (*m_exp)[i]->GetNumPoints(1);
581  int pt2 = (*m_exp)[i]->GetNumPoints(2);
582  int npt0 = (int) pt0*scale;
583  int npt1 = (int) pt1*scale;
584  int npt2 = (int) pt2*scale;
585 
586  LibUtilities::PointsKey newPointsKey0(npt0,(*m_exp)[i]->GetPointsType(0));
587  LibUtilities::PointsKey newPointsKey1(npt1,(*m_exp)[i]->GetPointsType(1));
588  LibUtilities::PointsKey newPointsKey2(npt2,(*m_exp)[i]->GetPointsType(2));
589 
590  // Interpolate points;
591  LibUtilities::Interp3D((*m_exp)[i]->GetBasis(0)->GetPointsKey(),
592  (*m_exp)[i]->GetBasis(1)->GetPointsKey(),
593  (*m_exp)[i]->GetBasis(2)->GetPointsKey(),
594  &inarray[cnt], newPointsKey0,
595  newPointsKey1, newPointsKey2,
596  &outarray[cnt1]);
597 
598  cnt += pt0*pt1*pt2;
599  cnt1 += npt0*npt1*npt2;
600  }
601  }
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
boost::shared_ptr< LocalRegions::ExpansionVector > m_exp
The list of local expansions.
Definition: ExpList.h:1036
void Interp3D(const BasisKey &fbasis0, const BasisKey &fbasis1, const BasisKey &fbasis2, const Array< OneD, const NekDouble > &from, const BasisKey &tbasis0, const BasisKey &tbasis1, const BasisKey &tbasis2, Array< OneD, NekDouble > &to)
this function interpolates a 3D function evaluated at the quadrature points of the 3D basis...
Definition: Interp.cpp:186
void Nektar::MultiRegions::ExpList3D::v_ReadGlobalOptimizationParameters ( )
privatevirtual

Reimplemented from Nektar::MultiRegions::ExpList.

Definition at line 457 of file ExpList3D.cpp.

References Nektar::MemoryManager< DataType >::AllocateSharedPtr(), ASSERTL0, Nektar::LibUtilities::eHexahedron, Nektar::LibUtilities::ePrism, Nektar::LibUtilities::ePyramid, Nektar::LibUtilities::eTetrahedron, Nektar::MultiRegions::ExpList::GetExpSize(), Nektar::MultiRegions::ExpList::m_exp, Nektar::MultiRegions::ExpList::m_globalOptParam, and Nektar::MultiRegions::ExpList::m_session.

458  {
459  Array<OneD, int> NumShape(4,0);
460 
461  for(int i = 0; i < GetExpSize(); ++i)
462  {
463  switch ((*m_exp)[i]->DetShapeType())
464  {
465  case LibUtilities::eTetrahedron: NumShape[0]++; break;
466  case LibUtilities::ePyramid: NumShape[1]++; break;
467  case LibUtilities::ePrism: NumShape[2]++; break;
468  case LibUtilities::eHexahedron: NumShape[3]++; break;
469  default:
470  ASSERTL0(false, "Unknown expansion type.");
471  break;
472  }
473  }
474 
475  int three = 3;
477  ::AllocateSharedPtr(m_session,three,NumShape);
478  }
#define ASSERTL0(condition, msg)
Definition: ErrorUtil.hpp:198
static boost::shared_ptr< DataType > AllocateSharedPtr()
Allocate a shared pointer from the memory pool.
NekOptimize::GlobalOptParamSharedPtr m_globalOptParam
Definition: ExpList.h:1052
int GetExpSize(void)
This function returns the number of elements in the expansion.
Definition: ExpList.h:2046
boost::shared_ptr< LocalRegions::ExpansionVector > m_exp
The list of local expansions.
Definition: ExpList.h:1036
LibUtilities::SessionReaderSharedPtr m_session
Session.
Definition: ExpList.h:969
void Nektar::MultiRegions::ExpList3D::v_SetUpPhysNormals ( )
protectedvirtual

Set up the normals on each expansion.

Reimplemented from Nektar::MultiRegions::ExpList.

Definition at line 557 of file ExpList3D.cpp.

References Nektar::MultiRegions::ExpList::m_exp.

558  {
559  int i, j;
560  for (i = 0; i < m_exp->size(); ++i)
561  {
562  for (j = 0; j < (*m_exp)[i]->GetNfaces(); ++j)
563  {
564  (*m_exp)[i]->ComputeFaceNormal(j);
565  }
566  }
567  }
boost::shared_ptr< LocalRegions::ExpansionVector > m_exp
The list of local expansions.
Definition: ExpList.h:1036
void Nektar::MultiRegions::ExpList3D::v_WriteVtkPieceHeader ( std::ostream &  outfile,
int  expansion,
int  istrip 
)
privatevirtual

Reimplemented from Nektar::MultiRegions::ExpList.

Definition at line 480 of file ExpList3D.cpp.

481  {
482  int i,j,k;
483  int nquad0 = (*m_exp)[expansion]->GetNumPoints(0);
484  int nquad1 = (*m_exp)[expansion]->GetNumPoints(1);
485  int nquad2 = (*m_exp)[expansion]->GetNumPoints(2);
486  int ntot = nquad0*nquad1*nquad2;
487  int ntotminus = (nquad0-1)*(nquad1-1)*(nquad2-1);
488 
489  Array<OneD,NekDouble> coords[3];
490  coords[0] = Array<OneD,NekDouble>(ntot);
491  coords[1] = Array<OneD,NekDouble>(ntot);
492  coords[2] = Array<OneD,NekDouble>(ntot);
493  (*m_exp)[expansion]->GetCoords(coords[0],coords[1],coords[2]);
494 
495  outfile << " <Piece NumberOfPoints=\""
496  << ntot << "\" NumberOfCells=\""
497  << ntotminus << "\">" << endl;
498  outfile << " <Points>" << endl;
499  outfile << " <DataArray type=\"Float64\" "
500  << "NumberOfComponents=\"3\" format=\"ascii\">" << endl;
501  outfile << " ";
502  for (i = 0; i < ntot; ++i)
503  {
504  for (j = 0; j < 3; ++j)
505  {
506  outfile << setprecision(8) << scientific
507  << (float)coords[j][i] << " ";
508  }
509  outfile << endl;
510  }
511 
512  outfile << endl;
513  outfile << " </DataArray>" << endl;
514  outfile << " </Points>" << endl;
515  outfile << " <Cells>" << endl;
516  outfile << " <DataArray type=\"Int32\" "
517  << "Name=\"connectivity\" format=\"ascii\">" << endl;
518  for (i = 0; i < nquad0-1; ++i)
519  {
520  for (j = 0; j < nquad1-1; ++j)
521  {
522  for (k = 0; k < nquad2-1; ++k)
523  {
524  outfile << k*nquad0*nquad1 + j*nquad0 + i << " "
525  << k*nquad0*nquad1 + j*nquad0 + i + 1 << " "
526  << k*nquad0*nquad1 + (j+1)*nquad0 + i + 1 << " "
527  << k*nquad0*nquad1 + (j+1)*nquad0 + i << " "
528  << (k+1)*nquad0*nquad1 + j*nquad0 + i << " "
529  << (k+1)*nquad0*nquad1 + j*nquad0 + i + 1 << " "
530  << (k+1)*nquad0*nquad1 + (j+1)*nquad0 + i + 1 << " "
531  << (k+1)*nquad0*nquad1 + (j+1)*nquad0 + i << " " << endl;
532  }
533  }
534  }
535  outfile << endl;
536  outfile << " </DataArray>" << endl;
537  outfile << " <DataArray type=\"Int32\" "
538  << "Name=\"offsets\" format=\"ascii\">" << endl;
539  for (i = 0; i < ntotminus; ++i)
540  {
541  outfile << i*8+8 << " ";
542  }
543  outfile << endl;
544  outfile << " </DataArray>" << endl;
545  outfile << " <DataArray type=\"UInt8\" "
546  << "Name=\"types\" format=\"ascii\">" << endl;
547  for (i = 0; i < ntotminus; ++i)
548  {
549  outfile << "12 ";
550  }
551  outfile << endl;
552  outfile << " </DataArray>" << endl;
553  outfile << " </Cells>" << endl;
554  outfile << " <PointData>" << endl;
555  }