51 template<
class Scalar, 
class ArrayScalar>
 
   54     this -> basisCardinality_  = 6;
 
   55     this -> basisDegree_       = 1;
 
   56     this -> basisCellTopology_ = shards::CellTopology(shards::getCellTopologyData<shards::Hexahedron<8> >() );
 
   57     this -> basisType_         = BASIS_FEM_DEFAULT;
 
   58     this -> basisCoordinates_  = COORDINATES_CARTESIAN;
 
   59     this -> basisTagsAreSet_   = 
false;
 
   62 template<
class Scalar, 
class ArrayScalar>
 
   82   Intrepid::setOrdinalTagData(
this -> tagToOrdinal_,
 
   83                               this -> ordinalToTag_,
 
   85                               this -> basisCardinality_,
 
   94 template<
class Scalar, 
class ArrayScalar>
 
   96                                                            const ArrayScalar &  inputPoints,
 
   97                                                            const EOperator      operatorType)
 const {
 
  100 #ifdef HAVE_INTREPID_DEBUG 
  101   Intrepid::getValues_HDIV_Args<Scalar, ArrayScalar>(outputValues,
 
  104                                                       this -> getBaseCellTopology(),
 
  105                                                       this -> getCardinality() );
 
  109   int dim0 = inputPoints.dimension(0);
 
  116   switch (operatorType) {
 
  118       for (
int i0 = 0; i0 < dim0; i0++) {
 
  119         x = inputPoints(i0, 0);
 
  120         y = inputPoints(i0, 1);
 
  121         z = inputPoints(i0, 2);
 
  124         outputValues(0, i0, 0) = 0.0;
 
  125         outputValues(0, i0, 1) = (y - 1.0)/8.0;
 
  126         outputValues(0, i0, 2) = 0.0;
 
  128         outputValues(1, i0, 0) = (1.0 + x)/8.0;
 
  129         outputValues(1, i0, 1) = 0.0; 
 
  130         outputValues(1, i0, 2) = 0.0;
 
  132         outputValues(2, i0, 0) = 0.0;
 
  133         outputValues(2, i0, 1) = (1.0 + y)/8.0;
 
  134         outputValues(2, i0, 2) = 0.0;
 
  136         outputValues(3, i0, 0) = (x - 1.0)/8.0;
 
  137         outputValues(3, i0, 1) = 0.0;
 
  138         outputValues(3, i0, 2) = 0.0;
 
  140         outputValues(4, i0, 0) = 0.0;
 
  141         outputValues(4, i0, 1) = 0.0;
 
  142         outputValues(4, i0, 2) = (z - 1.0)/8.0;
 
  144         outputValues(5, i0, 0) = 0.0;
 
  145         outputValues(5, i0, 1) = 0.0;
 
  146         outputValues(5, i0, 2) = (1.0 + z)/8.0;
 
  152       for (
int i0 = 0; i0 < dim0; i0++) {
 
  153          outputValues(0, i0) = 0.125;
 
  154          outputValues(1, i0) = 0.125;
 
  155          outputValues(2, i0) = 0.125;
 
  156          outputValues(3, i0) = 0.125;
 
  157          outputValues(4, i0) = 0.125;
 
  158          outputValues(5, i0) = 0.125;
 
  163        TEUCHOS_TEST_FOR_EXCEPTION( (operatorType == OPERATOR_CURL), std::invalid_argument,
 
  164                           ">>> ERROR (Basis_HDIV_HEX_I1_FEM): CURL is invalid operator for HDIV Basis Functions");
 
  168        TEUCHOS_TEST_FOR_EXCEPTION( (operatorType == OPERATOR_GRAD), std::invalid_argument,
 
  169                           ">>> ERROR (Basis_HDIV_HEX_I1_FEM): GRAD is invalid operator for HDIV Basis Functions");
 
  182       TEUCHOS_TEST_FOR_EXCEPTION( ( (operatorType == OPERATOR_D1)    ||
 
  183                             (operatorType == OPERATOR_D2)    ||
 
  184                             (operatorType == OPERATOR_D3)    ||
 
  185                             (operatorType == OPERATOR_D4)    ||
 
  186                             (operatorType == OPERATOR_D5)    ||
 
  187                             (operatorType == OPERATOR_D6)    ||
 
  188                             (operatorType == OPERATOR_D7)    ||
 
  189                             (operatorType == OPERATOR_D8)    ||
 
  190                             (operatorType == OPERATOR_D9)    ||
 
  191                             (operatorType == OPERATOR_D10) ),
 
  192                           std::invalid_argument,
 
  193                           ">>> ERROR (Basis_HDIV_HEX_I1_FEM): Invalid operator type");
 
  197       TEUCHOS_TEST_FOR_EXCEPTION( ( (operatorType != OPERATOR_VALUE) &&
 
  198                             (operatorType != OPERATOR_GRAD)  &&
 
  199                             (operatorType != OPERATOR_CURL)  &&
 
  200                             (operatorType != OPERATOR_DIV)   &&
 
  201                             (operatorType != OPERATOR_D1)    &&
 
  202                             (operatorType != OPERATOR_D2)    &&
 
  203                             (operatorType != OPERATOR_D3)    &&
 
  204                             (operatorType != OPERATOR_D4)    &&
 
  205                             (operatorType != OPERATOR_D5)    &&
 
  206                             (operatorType != OPERATOR_D6)    &&
 
  207                             (operatorType != OPERATOR_D7)    &&
 
  208                             (operatorType != OPERATOR_D8)    &&
 
  209                             (operatorType != OPERATOR_D9)    &&
 
  210                             (operatorType != OPERATOR_D10) ),
 
  211                           std::invalid_argument,
 
  212                           ">>> ERROR (Basis_HDIV_HEX_I1_FEM): Invalid operator type");
 
  218 template<
class Scalar, 
class ArrayScalar>
 
  220                                                            const ArrayScalar &    inputPoints,
 
  221                                                            const ArrayScalar &    cellVertices,
 
  222                                                            const EOperator        operatorType)
 const {
 
  223   TEUCHOS_TEST_FOR_EXCEPTION( (
true), std::logic_error,
 
  224                       ">>> ERROR (Basis_HDIV_HEX_I1_FEM): FEM Basis calling an FVD member function");
 
  227 template<
class Scalar, 
class ArrayScalar>
 
  229 #ifdef HAVE_INTREPID_DEBUG 
  231   TEUCHOS_TEST_FOR_EXCEPTION( !(DofCoords.rank() == 2), std::invalid_argument,
 
  232                       ">>> ERROR: (Intrepid::Basis_HDIV_HEX_I1_FEM::getDofCoords) rank = 2 required for DofCoords array");
 
  234   TEUCHOS_TEST_FOR_EXCEPTION( !( DofCoords.dimension(0) == 
this -> basisCardinality_ ), std::invalid_argument,
 
  235                       ">>> ERROR: (Intrepid::Basis_HDIV_HEX_I1_FEM::getDofCoords) mismatch in number of DoF and 0th dimension of DofCoords array");
 
  237   TEUCHOS_TEST_FOR_EXCEPTION( !( DofCoords.dimension(1) == (int)(
this -> basisCellTopology_.getDimension()) ), std::invalid_argument,
 
  238                       ">>> ERROR: (Intrepid::Basis_HDIV_HEX_I1_FEM::getDofCoords) incorrect reference cell (1st) dimension in DofCoords array");
 
  241   DofCoords(0,0)  =  0.0;   DofCoords(0,1)  = -1.0;   DofCoords(0,2)  = 0.0;
 
  242   DofCoords(1,0)  =  1.0;   DofCoords(1,1)  =  0.0;   DofCoords(1,2)  = 0.0;
 
  243   DofCoords(2,0)  =  0.0;   DofCoords(2,1)  =  1.0;   DofCoords(2,2)  = 0.0;
 
  244   DofCoords(3,0)  = -1.0;   DofCoords(3,1)  =  0.0;   DofCoords(3,2)  = 0.0;
 
  245   DofCoords(4,0)  =  0.0;   DofCoords(4,1)  =  0.0;   DofCoords(4,2)  =  -1.0;
 
  246   DofCoords(5,0)  =  0.0;   DofCoords(5,1)  =  0.0;   DofCoords(5,2)  =  1.0;
 
void getValues(ArrayScalar &outputValues, const ArrayScalar &inputPoints, const EOperator operatorType) const 
Evaluation of a FEM basis on a reference Hexahedron cell. 
void getDofCoords(ArrayScalar &DofCoords) const 
Returns spatial locations (coordinates) of degrees of freedom on a reference Quadrilateral. 
void initializeTags()
Initializes tagToOrdinal_ and ordinalToTag_ lookup arrays. 
Basis_HDIV_HEX_I1_FEM()
Constructor.