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00036 namespace Intrepid {
00037
00038 template<class Scalar, class ArrayScalar>
00039 Basis_HDIV_TRI_I1_FEM<Scalar,ArrayScalar>::Basis_HDIV_TRI_I1_FEM()
00040 {
00041 this -> basisCardinality_ = 3;
00042 this -> basisDegree_ = 1;
00043 this -> basisCellTopology_ = shards::CellTopology(shards::getCellTopologyData<shards::Triangle<3> >() );
00044 this -> basisType_ = BASIS_FEM_DEFAULT;
00045 this -> basisCoordinates_ = COORDINATES_CARTESIAN;
00046 this -> basisTagsAreSet_ = false;
00047 }
00048
00049 template<class Scalar, class ArrayScalar>
00050 void Basis_HDIV_TRI_I1_FEM<Scalar, ArrayScalar>::initializeTags() {
00051
00052
00053 int tagSize = 4;
00054 int posScDim = 0;
00055 int posScOrd = 1;
00056 int posDfOrd = 2;
00057
00058
00059 int tags[] = {
00060 2, 0, 0, 1,
00061 2, 1, 0, 1,
00062 2, 2, 0, 1
00063 };
00064
00065
00066 Intrepid::setOrdinalTagData(this -> tagToOrdinal_,
00067 this -> ordinalToTag_,
00068 tags,
00069 this -> basisCardinality_,
00070 tagSize,
00071 posScDim,
00072 posScOrd,
00073 posDfOrd);
00074 }
00075
00076
00077
00078 template<class Scalar, class ArrayScalar>
00079 void Basis_HDIV_TRI_I1_FEM<Scalar, ArrayScalar>::getValues(ArrayScalar & outputValues,
00080 const ArrayScalar & inputPoints,
00081 const EOperator operatorType) const {
00082
00083
00084
00085 #ifdef HAVE_INTREPID_DEBUG
00086 Intrepid::getValues_HDIV_Args<Scalar, ArrayScalar>(outputValues,
00087 inputPoints,
00088 operatorType,
00089 this -> getBaseCellTopology(),
00090 this -> getCardinality() );
00091 #endif
00092
00093
00094
00095 int dim0 = inputPoints.dimension(0);
00096
00097
00098 Scalar x = 0.0;
00099 Scalar y = 0.0;
00100
00101 switch (operatorType) {
00102 case OPERATOR_VALUE:
00103 for (int i0 = 0; i0 < dim0; i0++) {
00104 x = inputPoints(i0, 0);
00105 y = inputPoints(i0, 1);
00106
00107
00108 outputValues(0, i0, 0) = x;
00109 outputValues(0, i0, 1) = y - 1.0;
00110
00111 outputValues(1, i0, 0) = x;
00112 outputValues(1, i0, 1) = y;
00113
00114 outputValues(2, i0, 0) = x - 1.0;
00115 outputValues(2, i0, 1) = y;
00116 }
00117 break;
00118
00119 case OPERATOR_DIV:
00120
00121 for (int i0 = 0; i0 < dim0; i0++) {
00122 outputValues(0, i0) = 2.0;
00123 outputValues(1, i0) = 2.0;
00124 outputValues(2, i0) = 2.0;
00125 }
00126 break;
00127
00128 case OPERATOR_CURL:
00129 TEST_FOR_EXCEPTION( (operatorType == OPERATOR_CURL), std::invalid_argument,
00130 ">>> ERROR (Basis_HDIV_TRI_I1_FEM): CURL is invalid operator for HDIV Basis Functions");
00131 break;
00132
00133 case OPERATOR_GRAD:
00134 TEST_FOR_EXCEPTION( (operatorType == OPERATOR_GRAD), std::invalid_argument,
00135 ">>> ERROR (Basis_HDIV_TRI_I1_FEM): GRAD is invalid operator for HDIV Basis Functions");
00136 break;
00137
00138 case OPERATOR_D1:
00139 case OPERATOR_D2:
00140 case OPERATOR_D3:
00141 case OPERATOR_D4:
00142 case OPERATOR_D5:
00143 case OPERATOR_D6:
00144 case OPERATOR_D7:
00145 case OPERATOR_D8:
00146 case OPERATOR_D9:
00147 case OPERATOR_D10:
00148 TEST_FOR_EXCEPTION( ( (operatorType == OPERATOR_D1) &&
00149 (operatorType == OPERATOR_D2) &&
00150 (operatorType == OPERATOR_D3) &&
00151 (operatorType == OPERATOR_D4) &&
00152 (operatorType == OPERATOR_D5) &&
00153 (operatorType == OPERATOR_D6) &&
00154 (operatorType == OPERATOR_D7) &&
00155 (operatorType == OPERATOR_D8) &&
00156 (operatorType == OPERATOR_D9) &&
00157 (operatorType == OPERATOR_D10) ),
00158 std::invalid_argument,
00159 ">>> ERROR (Basis_HDIV_TRI_I1_FEM): Invalid operator type");
00160 break;
00161
00162 default:
00163 TEST_FOR_EXCEPTION( ( (operatorType != OPERATOR_VALUE) &&
00164 (operatorType != OPERATOR_GRAD) &&
00165 (operatorType != OPERATOR_CURL) &&
00166 (operatorType != OPERATOR_DIV) &&
00167 (operatorType != OPERATOR_D1) &&
00168 (operatorType != OPERATOR_D2) &&
00169 (operatorType != OPERATOR_D3) &&
00170 (operatorType != OPERATOR_D4) &&
00171 (operatorType != OPERATOR_D5) &&
00172 (operatorType != OPERATOR_D6) &&
00173 (operatorType != OPERATOR_D7) &&
00174 (operatorType != OPERATOR_D8) &&
00175 (operatorType != OPERATOR_D9) &&
00176 (operatorType != OPERATOR_D10) ),
00177 std::invalid_argument,
00178 ">>> ERROR (Basis_HDIV_TRI_I1_FEM): Invalid operator type");
00179 }
00180 }
00181
00182
00183
00184 template<class Scalar, class ArrayScalar>
00185 void Basis_HDIV_TRI_I1_FEM<Scalar, ArrayScalar>::getValues(ArrayScalar& outputValues,
00186 const ArrayScalar & inputPoints,
00187 const ArrayScalar & cellVertices,
00188 const EOperator operatorType) const {
00189 TEST_FOR_EXCEPTION( (true), std::logic_error,
00190 ">>> ERROR (Basis_HDIV_TRI_I1_FEM): FEM Basis calling an FVD member function");
00191 }
00192
00193 }