63 "NodalTetElec Points can only interp to other 3d "
64 "point distributions");
75 size_t numpoints = x.size();
89 std::shared_ptr<NodalUtilTetrahedron>
m_util;
#define ASSERTL0(condition, msg)
#define LIB_UTILITIES_EXPORT
NodalTetElec(const NodalTetElec &points)=delete
static std::shared_ptr< PointsBaseType > Create(const PointsKey &key)
static bool initPointsManager[]
void v_CalculatePoints() final
const MatrixSharedPtrType v_GetI(const Array< OneD, const NekDouble > &x, const Array< OneD, const NekDouble > &y, const Array< OneD, const NekDouble > &z) override
const MatrixSharedPtrType v_GetI(const PointsKey &pkey) override
void CalculateInterpMatrix(const Array< OneD, const NekDouble > &xia, const Array< OneD, const NekDouble > &yia, const Array< OneD, const NekDouble > &zia, Array< OneD, NekDouble > &interp)
void NodalPointReorder3d()
void v_CalculateDerivMatrix() final
void v_CalculateWeights() final
std::shared_ptr< NodalUtilTetrahedron > m_util
NodalTetElec(const PointsKey &key)
Stores a set of points of datatype DataT, defined by a PointKey.
size_t GetTotNumPoints() const
std::shared_ptr< NekMatrix< DataType > > MatrixSharedPtrType
const MatrixSharedPtrType GetI(const PointsKey &key)
Defines a specification for a set of points.
size_t GetPointsDim() const
General purpose memory allocation routines with the ability to allocate from thread specific memory p...
PointsManagerT & PointsManager(void)
std::vector< double > z(NPUPPER)
std::vector< double > d(NPUPPER *NPUPPER)