Intrepid2
Intrepid2_HCURL_WEDGE_I1_FEM.hpp
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42 
49 #ifndef __INTREPID2_HCURL_WEDGE_I1_FEM_HPP__
50 #define __INTREPID2_HCURL_WEDGE_I1_FEM_HPP__
51 
52 #include "Intrepid2_Basis.hpp"
53 
54 namespace Intrepid2 {
55 
109  namespace Impl {
110 
115  public:
116  typedef struct Wedge<6> cell_topology_type;
117 
121  template<EOperator opType>
122  struct Serial {
123  template<typename OutputViewType,
124  typename inputViewType>
125  KOKKOS_INLINE_FUNCTION
126  static void
127  getValues( OutputViewType output,
128  const inputViewType input );
129 
130  };
131 
132  template<typename ExecSpaceType,
133  typename outputValueValueType, class ...outputValueProperties,
134  typename inputPointValueType, class ...inputPointProperties>
135  static void
136  getValues( Kokkos::DynRankView<outputValueValueType,outputValueProperties...> outputValues,
137  const Kokkos::DynRankView<inputPointValueType, inputPointProperties...> inputPoints,
138  const EOperator operatorType);
139 
143  template<typename outputValueViewType,
144  typename inputPointViewType,
145  EOperator opType>
146  struct Functor {
147  outputValueViewType _outputValues;
148  const inputPointViewType _inputPoints;
149 
150  KOKKOS_INLINE_FUNCTION
151  Functor( outputValueViewType outputValues_,
152  inputPointViewType inputPoints_ )
153  : _outputValues(outputValues_), _inputPoints(inputPoints_) {}
154 
155  KOKKOS_INLINE_FUNCTION
156  void operator()(const ordinal_type pt) const {
157  switch (opType) {
158  case OPERATOR_VALUE : {
159  auto output = Kokkos::subview( _outputValues, Kokkos::ALL(), pt, Kokkos::ALL() );
160  const auto input = Kokkos::subview( _inputPoints, pt, Kokkos::ALL() );
161  Serial<opType>::getValues( output, input );
162  break;
163  }
164  case OPERATOR_CURL : {
165  auto output = Kokkos::subview( _outputValues, Kokkos::ALL(), pt, Kokkos::ALL() );
166  const auto input = Kokkos::subview( _inputPoints, pt, Kokkos::ALL() );
167  Serial<opType>::getValues( output, input );
168  break;
169  }
170  default: {
171  INTREPID2_TEST_FOR_ABORT( opType != OPERATOR_VALUE &&
172  opType != OPERATOR_CURL,
173  ">>> ERROR: (Intrepid2::Basis_HCURL_WEDGE_I1_FEM::Serial::getValues) operator is not supported");
174  }
175  }
176  }
177  };
178  };
179  }
180 
181  template<typename ExecSpaceType = void,
182  typename outputValueType = double,
183  typename pointValueType = double>
184  class Basis_HCURL_WEDGE_I1_FEM : public Basis<ExecSpaceType, outputValueType, pointValueType> {
185  public:
189 
190  using ordinal_type_array_1d_host INTREPID2_DEPRECATED_TYPENAME_REPLACEMENT("use OrdinalTypeArray1DHost instead","OrdinalTypeArray1DHost") = OrdinalTypeArray1DHost INTREPID2_DEPRECATED_TYPENAME_TRAILING_ATTRIBUTE("use OrdinalTypeArray1DHost instead");
191  using ordinal_type_array_2d_host INTREPID2_DEPRECATED_TYPENAME_REPLACEMENT("use OrdinalTypeArray2DHost instead","OrdinalTypeArray2DHost") = OrdinalTypeArray2DHost INTREPID2_DEPRECATED_TYPENAME_TRAILING_ATTRIBUTE("use OrdinalTypeArray2DHost instead");
192  using ordinal_type_array_3d_host INTREPID2_DEPRECATED_TYPENAME_REPLACEMENT("use OrdinalTypeArray3DHost instead","OrdinalTypeArray3DHost") = OrdinalTypeArray3DHost INTREPID2_DEPRECATED_TYPENAME_TRAILING_ATTRIBUTE("use OrdinalTypeArray3DHost instead");
193 
197 
201 
202  using outputViewType INTREPID2_DEPRECATED_TYPENAME_REPLACEMENT("use OutputViewType instead","OutputViewType") = OutputViewType INTREPID2_DEPRECATED_TYPENAME_TRAILING_ATTRIBUTE("use OutputViewType instead");
203  using pointViewType INTREPID2_DEPRECATED_TYPENAME_REPLACEMENT("use PointViewType instead","PointViewType") = PointViewType INTREPID2_DEPRECATED_TYPENAME_TRAILING_ATTRIBUTE("use PointViewType instead");
204  using scalarViewType INTREPID2_DEPRECATED_TYPENAME_REPLACEMENT("use ScalarViewType instead","ScalarViewType") = ScalarViewType INTREPID2_DEPRECATED_TYPENAME_TRAILING_ATTRIBUTE("use ScalarViewType instead");
205 
207 
208  virtual
209  void
210  getValues( OutputViewType outputValues,
211  const PointViewType inputPoints,
212  const EOperator operatorType = OPERATOR_VALUE ) const {
213 #ifdef HAVE_INTREPID2_DEBUG
214  // Verify arguments
215  Intrepid2::getValues_HCURL_Args(outputValues,
216  inputPoints,
217  operatorType,
218  this->getBaseCellTopology(),
219  this->getCardinality() );
220 #endif
221  Impl::Basis_HCURL_WEDGE_I1_FEM::
222  getValues<ExecSpaceType>( outputValues,
223  inputPoints,
224  operatorType );
225  }
226 
227  virtual
228  void
229  getDofCoords( ScalarViewType dofCoords ) const {
230 #ifdef HAVE_INTREPID2_DEBUG
231  // Verify rank of output array.
232  INTREPID2_TEST_FOR_EXCEPTION( dofCoords.rank() != 2, std::invalid_argument,
233  ">>> ERROR: (Intrepid2::Basis_HCURL_WEDGE_I1_FEM::getDofCoords) rank = 2 required for dofCoords array");
234  // Verify 0th dimension of output array.
235  INTREPID2_TEST_FOR_EXCEPTION( static_cast<ordinal_type>(dofCoords.extent(0)) != this->basisCardinality_, std::invalid_argument,
236  ">>> ERROR: (Intrepid2::Basis_HCURL_WEDGE_I1_FEM::getDofCoords) mismatch in number of dof and 0th dimension of dofCoords array");
237  // Verify 1st dimension of output array.
238  INTREPID2_TEST_FOR_EXCEPTION( dofCoords.extent(1) != this->basisCellTopology_.getDimension(), std::invalid_argument,
239  ">>> ERROR: (Intrepid2::Basis_HCURL_WEDGE_I1_FEM::getDofCoords) incorrect reference cell (1st) dimension in dofCoords array");
240 #endif
241  Kokkos::deep_copy(dofCoords, this->dofCoords_);
242  }
243 
244  virtual
245  const char*
246  getName() const {
247  return "Intrepid2_HCURL_WEDGE_I1_FEM";
248  }
249 
250  virtual
251  bool
253  return true;
254  }
255 
256  };
257 }// namespace Intrepid2
258 
260 
261 #endif
Implementation of the default H(curl)-compatible FEM basis of degree 1 on Wedge cell.
Kokkos::View< ordinal_type *, typename ExecSpaceType::array_layout, Kokkos::HostSpace > OrdinalTypeArray1DHost
View type for 1d host array.
Kokkos::View< ordinal_type **, typename ExecSpaceType::array_layout, Kokkos::HostSpace > OrdinalTypeArray2DHost
View type for 2d host array.
ordinal_type basisCardinality_
Cardinality of the basis, i.e., the number of basis functions/degrees-of-freedom. ...
See Intrepid2::Basis_HCURL_WEDGE_I1_FEM.
An abstract base class that defines interface for concrete basis implementations for Finite Element (...
shards::CellTopology getBaseCellTopology() const
Returns the base cell topology for which the basis is defined. See Shards documentation https://trili...
Kokkos::DynRankView< scalarType, ExecSpaceType > dofCoords_
Coordinates of degrees-of-freedom for basis functions defined in physical space.
ordinal_type getCardinality() const
Returns cardinality of the basis.
virtual void getDofCoords(ScalarViewType dofCoords) const
Returns spatial locations (coordinates) of degrees of freedom on the reference cell.
virtual bool requireOrientation() const
True if orientation is required.
Kokkos::DynRankView< OutputValueType, Kokkos::LayoutStride, ExecSpaceType > OutputViewType
View type for basis value output.
Kokkos::View< ordinal_type ***, typename ExecSpaceType::array_layout, Kokkos::HostSpace > OrdinalTypeArray3DHost
View type for 3d host array.
virtual void getValues(OutputViewType outputValues, const PointViewType inputPoints, const EOperator operatorType=OPERATOR_VALUE) const
Evaluation of a FEM basis on a reference cell.
Kokkos::DynRankView< PointValueType, Kokkos::LayoutStride, ExecSpaceType > PointViewType
View type for input points.
virtual const char * getName() const
Returns basis name.
Kokkos::DynRankView< scalarType, Kokkos::LayoutStride, ExecSpaceType > ScalarViewType
View type for scalars.
Definition file for FEM basis functions of degree 1 for H(curl) functions on WEDGE cells...
Header file for the abstract base class Intrepid2::Basis.
shards::CellTopology basisCellTopology_
Base topology of the cells for which the basis is defined. See the Shards package for definition of b...