15#ifndef __INTREPID2_HVOL_HEX_CN_FEM_HPP__
16#define __INTREPID2_HVOL_HEX_CN_FEM_HPP__
29 typedef struct Hexahedron<8> cell_topology_type;
33 template<EOperator opType>
35 template<
typename outputValueViewType,
36 typename inputPointViewType,
37 typename workViewType,
38 typename vinvViewType>
39 KOKKOS_INLINE_FUNCTION
41 getValues( outputValueViewType outputValues,
42 const inputPointViewType inputPoints,
44 const vinvViewType vinv,
45 const ordinal_type operatorDn = 0 );
47 KOKKOS_INLINE_FUNCTION
52 template<
typename DeviceType, ordinal_type numPtsPerEval,
53 typename outputValueValueType,
class ...outputValueProperties,
54 typename inputPointValueType,
class ...inputPointProperties,
55 typename vinvValueType,
class ...vinvProperties>
57 getValues( Kokkos::DynRankView<outputValueValueType,outputValueProperties...> outputValues,
58 const Kokkos::DynRankView<inputPointValueType, inputPointProperties...> inputPoints,
59 const Kokkos::DynRankView<vinvValueType, vinvProperties...> vinv,
60 const EOperator operatorType );
65 template<
typename outputValueViewType,
66 typename inputPointViewType,
67 typename vinvViewType,
68 typename workViewType,
70 ordinal_type numPtsEval>
72 outputValueViewType _outputValues;
73 const inputPointViewType _inputPoints;
74 const vinvViewType _vinv;
76 const ordinal_type _opDn;
78 KOKKOS_INLINE_FUNCTION
79 Functor( outputValueViewType outputValues_,
80 inputPointViewType inputPoints_,
83 const ordinal_type opDn_ = 0 )
84 : _outputValues(outputValues_), _inputPoints(inputPoints_),
85 _vinv(vinv_), _work(work_), _opDn(opDn_) {}
87 KOKKOS_INLINE_FUNCTION
88 void operator()(
const size_type iter)
const {
89 const auto ptBegin = Util<ordinal_type>::min(iter*numPtsEval, _inputPoints.extent(0));
90 const auto ptEnd = Util<ordinal_type>::min(ptBegin+numPtsEval, _inputPoints.extent(0));
92 const auto ptRange = Kokkos::pair<ordinal_type,ordinal_type>(ptBegin, ptEnd);
93 const auto input = Kokkos::subview( _inputPoints, ptRange, Kokkos::ALL() );
95 typename workViewType::pointer_type ptr = _work.data() + _work.extent(0)*ptBegin*get_dimension_scalar(_work);
97 auto vcprop = Kokkos::common_view_alloc_prop(_work);
98 workViewType work(Kokkos::view_wrap(ptr,vcprop), (ptEnd-ptBegin)*_work.extent(0));
101 case OPERATOR_VALUE : {
102 auto output = Kokkos::subview( _outputValues, Kokkos::ALL(), ptRange );
103 Serial<opType>::getValues( output, input, work, _vinv );
107 auto output = Kokkos::subview( _outputValues, Kokkos::ALL(), ptRange, Kokkos::ALL() );
108 Serial<opType>::getValues( output, input, work, _vinv, _opDn );
112 INTREPID2_TEST_FOR_ABORT(
true,
113 ">>> ERROR: (Intrepid2::Basis_HVOL_HEX_Cn_FEM::Functor) operator is not supported");
134 template<
typename DeviceType = void,
135 typename outputValueType = double,
136 typename pointValueType =
double>
138 :
public Basis<DeviceType,outputValueType,pointValueType> {
140 using BasisBase = Basis<DeviceType,outputValueType,pointValueType>;
153 const EPointType pointType = POINTTYPE_EQUISPACED);
161 const EOperator operatorType = OPERATOR_VALUE )
const override {
162#ifdef HAVE_INTREPID2_DEBUG
170 Impl::Basis_HVOL_HEX_Cn_FEM::
171 getValues<DeviceType,numPtsPerEval>( outputValues,
178 getScratchSpaceSize( ordinal_type& perTeamSpaceSize,
179 ordinal_type& perThreadSpaceSize,
181 const EOperator operatorType = OPERATOR_VALUE)
const override;
183 KOKKOS_INLINE_FUNCTION
188 const EOperator operatorType,
189 const typename Kokkos::TeamPolicy<typename DeviceType::execution_space>::member_type& team_member,
190 const typename DeviceType::execution_space::scratch_memory_space & scratchStorage,
191 const ordinal_type subcellDim = -1,
192 const ordinal_type subcellOrdinal = -1)
const override;
198#ifdef HAVE_INTREPID2_DEBUG
200 INTREPID2_TEST_FOR_EXCEPTION( dofCoords.rank() != 2, std::invalid_argument,
201 ">>> ERROR: (Intrepid2::Basis_HVOL_HEX_Cn_FEM::getDofCoords) rank = 2 required for dofCoords array");
203 INTREPID2_TEST_FOR_EXCEPTION(
static_cast<ordinal_type
>(dofCoords.extent(0)) != this->getCardinality(), std::invalid_argument,
204 ">>> ERROR: (Intrepid2::Basis_HVOL_HEX_Cn_FEM::getDofCoords) mismatch in number of dof and 0th dimension of dofCoords array");
206 INTREPID2_TEST_FOR_EXCEPTION( dofCoords.extent(1) != this->getBaseCellTopology().getDimension(), std::invalid_argument,
207 ">>> ERROR: (Intrepid2::Basis_HVOL_HEX_Cn_FEM::getDofCoords) incorrect reference cell (1st) dimension in dofCoords array");
209 Kokkos::deep_copy(dofCoords, this->
dofCoords_);
215#ifdef HAVE_INTREPID2_DEBUG
217 INTREPID2_TEST_FOR_EXCEPTION( dofCoeffs.rank() != 1, std::invalid_argument,
218 ">>> ERROR: (Intrepid2::Basis_HVOL_HEX_Cn_FEM::getdofCoeffs) rank = 1 required for dofCoeffs array");
220 INTREPID2_TEST_FOR_EXCEPTION(
static_cast<ordinal_type
>(dofCoeffs.extent(0)) != this->getCardinality(), std::invalid_argument,
221 ">>> ERROR: (Intrepid2::Basis_HVOL_HEX_Cn_FEM::getdofCoeffs) mismatch in number of dof and 0th dimension of dofCoeffs array");
223 Kokkos::deep_copy(dofCoeffs, 1.0);
229 return "Intrepid2_HVOL_HEX_Cn_FEM";
246 Kokkos::DynRankView<typename ScalarViewType::value_type,DeviceType>
vinv_;
247 EPointType pointType_;
Header file for the abstract base class Intrepid2::Basis.
BasisPtr< typename Kokkos::HostSpace::device_type, OutputType, PointType > HostBasisPtr
Pointer to a Basis whose device type is on the host (Kokkos::HostSpace::device_type),...
KOKKOS_INLINE_FUNCTION ordinal_type getPnCardinality(ordinal_type n)
Returns cardinality of Polynomials of order n (P^n).
void getValues_HVOL_Args(const outputValueViewType outputValues, const inputPointViewType inputPoints, const EOperator operatorType, const shards::CellTopology cellTopo, const ordinal_type basisCard)
Runtime check of the arguments for the getValues method in an HVOL-conforming FEM basis....
Definition file for FEM basis functions of degree n for H(vol) functions on HEX cells.
Header file for the Intrepid2::Basis_HVOL_LINE_Cn_FEM class.
virtual const char * getName() const override
Returns basis name.
Basis_HVOL_HEX_Cn_FEM(const ordinal_type order, const EPointType pointType=POINTTYPE_EQUISPACED)
Constructor.
virtual HostBasisPtr< outputValueType, pointValueType > getHostBasis() const override
Creates and returns a Basis object whose DeviceType template argument is Kokkos::HostSpace::device_ty...
virtual void getDofCoeffs(ScalarViewType dofCoeffs) const override
Coefficients for computing degrees of freedom for Lagrangian basis If P is an element of the space sp...
Kokkos::DynRankView< typename ScalarViewType::value_type, ExecutionSpace > vinv_
virtual void getDofCoords(ScalarViewType dofCoords) const override
Returns spatial locations (coordinates) of degrees of freedom on the reference cell.
virtual bool requireOrientation() const override
True if orientation is required.
Kokkos::DynRankView< PointValueType, Kokkos::LayoutStride, DeviceType > PointViewType
virtual KOKKOS_INLINE_FUNCTION void getValues(OutputViewType, const PointViewType, const EOperator, const typename Kokkos::TeamPolicy< ExecutionSpace >::member_type &teamMember, const typename ExecutionSpace::scratch_memory_space &scratchStorage, const ordinal_type subcellDim=-1, const ordinal_type subcellOrdinal=-1) const
Team-level evaluation of basis functions on a reference cell.
Kokkos::DynRankView< OutputValueType, Kokkos::LayoutStride, DeviceType > OutputViewType
Kokkos::View< ordinal_type ***, typename ExecutionSpace::array_layout, Kokkos::HostSpace > OrdinalTypeArray3DHost
ordinal_type basisDegree_
Degree of the largest complete polynomial space that can be represented by the basis.
ordinal_type getCardinality() const
Kokkos::DynRankView< scalarType, Kokkos::LayoutStride, DeviceType > ScalarViewType
Kokkos::DynRankView< scalarType, DeviceType > dofCoords_
Coordinates of degrees-of-freedom for basis functions defined in physical space.
Kokkos::View< ordinal_type **, typename ExecutionSpace::array_layout, Kokkos::HostSpace > OrdinalTypeArray2DHost
shards::CellTopology getBaseCellTopology() const
Kokkos::View< ordinal_type *, typename ExecutionSpace::array_layout, Kokkos::HostSpace > OrdinalTypeArray1DHost
See Intrepid2::Basis_HVOL_HEX_Cn_FEM.
static constexpr ordinal_type MaxNumPtsPerBasisEval
The maximum number of points to eval in serial mode.
See Intrepid2::Basis_HVOL_HEX_Cn_FEM.