1ae2b091fSJames Wright // SPDX-FileCopyrightText: Copyright (c) 2017-2024, HONEE contributors. 2ae2b091fSJames Wright // SPDX-License-Identifier: Apache-2.0 OR BSD-2-Clause 3c7ece6efSJeremy L Thompson #pragma once 4704b8bbeSJames Wright 5704b8bbeSJames Wright #include <ceed.h> 6d0cce58aSJeremy L Thompson #include <math.h> 7704b8bbeSJames Wright 8704b8bbeSJames Wright #ifndef M_PI 9704b8bbeSJames Wright #define M_PI 3.14159265358979323846 10704b8bbeSJames Wright #endif 11704b8bbeSJames Wright 12704b8bbeSJames Wright CEED_QFUNCTION_HELPER CeedScalar Max(CeedScalar a, CeedScalar b) { return a < b ? b : a; } 13704b8bbeSJames Wright CEED_QFUNCTION_HELPER CeedScalar Min(CeedScalar a, CeedScalar b) { return a < b ? a : b; } 14704b8bbeSJames Wright 15bfa7851aSJames Wright CEED_QFUNCTION_HELPER void SwapScalar(CeedScalar *a, CeedScalar *b) { 16bfa7851aSJames Wright CeedScalar temp = *a; 17bfa7851aSJames Wright *a = *b; 18bfa7851aSJames Wright *b = temp; 19bfa7851aSJames Wright } 20bfa7851aSJames Wright 21704b8bbeSJames Wright CEED_QFUNCTION_HELPER CeedScalar Square(CeedScalar x) { return x * x; } 22704b8bbeSJames Wright CEED_QFUNCTION_HELPER CeedScalar Cube(CeedScalar x) { return x * x * x; } 23704b8bbeSJames Wright 24e7754af5SKenneth E. Jansen // @brief Scale vector of length N by scalar alpha 25e7754af5SKenneth E. Jansen CEED_QFUNCTION_HELPER void ScaleN(CeedScalar *u, const CeedScalar alpha, const CeedInt N) { 268e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) u[i] *= alpha; 278e5e3595SJames Wright } 288e5e3595SJames Wright 298e5e3595SJames Wright // @brief Set vector of length N to a value alpha 308e5e3595SJames Wright CEED_QFUNCTION_HELPER void SetValueN(CeedScalar *u, const CeedScalar alpha, const CeedInt N) { 318e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) u[i] = alpha; 328e5e3595SJames Wright } 338e5e3595SJames Wright 348e5e3595SJames Wright // @brief Copy N elements from x to y 358e5e3595SJames Wright CEED_QFUNCTION_HELPER void CopyN(const CeedScalar *x, CeedScalar *y, const CeedInt N) { CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) y[i] = x[i]; } 368e5e3595SJames Wright 378e5e3595SJames Wright // @brief Copy 3x3 matrix from A to B 388e5e3595SJames Wright CEED_QFUNCTION_HELPER void CopyMat3(const CeedScalar A[3][3], CeedScalar B[3][3]) { CopyN((const CeedScalar *)A, (CeedScalar *)B, 9); } 398e5e3595SJames Wright 408e5e3595SJames Wright // @brief Dot product of vectors with N elements 418e5e3595SJames Wright CEED_QFUNCTION_HELPER CeedScalar DotN(const CeedScalar *u, const CeedScalar *v, const CeedInt N) { 428e5e3595SJames Wright CeedScalar output = 0; 438e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) output += u[i] * v[i]; 448e5e3595SJames Wright return output; 45e7754af5SKenneth E. Jansen } 46e7754af5SKenneth E. Jansen 47704b8bbeSJames Wright // @brief Dot product of 3 element vectors 488fff8293SJames Wright CEED_QFUNCTION_HELPER CeedScalar Dot3(const CeedScalar *u, const CeedScalar *v) { return u[0] * v[0] + u[1] * v[1] + u[2] * v[2]; } 49704b8bbeSJames Wright 5064667825SJames Wright // @brief \ell^2 norm of 3 element vectors 5164667825SJames Wright CEED_QFUNCTION_HELPER CeedScalar Norm3(const CeedScalar *u) { return sqrt(u[0] * u[0] + u[1] * u[1] + u[2] * u[2]); } 5264667825SJames Wright 538e5e3595SJames Wright // @brief Cross product of vectors with 3 elements 548e5e3595SJames Wright CEED_QFUNCTION_HELPER void Cross3(const CeedScalar u[3], const CeedScalar v[3], CeedScalar w[3]) { 558e5e3595SJames Wright w[0] = (u[1] * v[2]) - (u[2] * v[1]); 568e5e3595SJames Wright w[1] = (u[2] * v[0]) - (u[0] * v[2]); 578e5e3595SJames Wright w[2] = (u[0] * v[1]) - (u[1] * v[0]); 588e5e3595SJames Wright } 598e5e3595SJames Wright 608e5e3595SJames Wright // @brief Curl of vector given its gradient 618e5e3595SJames Wright CEED_QFUNCTION_HELPER void Curl3(const CeedScalar gradient[3][3], CeedScalar v[3]) { 628e5e3595SJames Wright v[0] = gradient[2][1] - gradient[1][2]; 638e5e3595SJames Wright v[1] = gradient[0][2] - gradient[2][0]; 648e5e3595SJames Wright v[2] = gradient[1][0] - gradient[0][1]; 658e5e3595SJames Wright } 668e5e3595SJames Wright 678e5e3595SJames Wright // @brief Matrix vector product, b = Ax + b. A is NxM, x is M, b is N 688e5e3595SJames Wright CEED_QFUNCTION_HELPER void MatVecNM(const CeedScalar *A, const CeedScalar *x, const CeedInt N, const CeedInt M, const CeedTransposeMode transpose_A, 698e5e3595SJames Wright CeedScalar *b) { 708e5e3595SJames Wright switch (transpose_A) { 718e5e3595SJames Wright case CEED_NOTRANSPOSE: 728e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) b[i] += DotN(&A[i * M], x, M); 738e5e3595SJames Wright break; 748e5e3595SJames Wright case CEED_TRANSPOSE: 758e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < M; i++) { CeedPragmaSIMD for (CeedInt j = 0; j < N; j++) b[i] += A[j * M + i] * x[j]; } 768e5e3595SJames Wright break; 778e5e3595SJames Wright } 788e5e3595SJames Wright } 798e5e3595SJames Wright 808e5e3595SJames Wright // @brief 3x3 Matrix vector product b = Ax + b. 818e5e3595SJames Wright CEED_QFUNCTION_HELPER void MatVec3(const CeedScalar A[3][3], const CeedScalar x[3], const CeedTransposeMode transpose_A, CeedScalar b[3]) { 828e5e3595SJames Wright MatVecNM((const CeedScalar *)A, (const CeedScalar *)x, 3, 3, transpose_A, (CeedScalar *)b); 838e5e3595SJames Wright } 848e5e3595SJames Wright 858e5e3595SJames Wright // @brief Matrix-Matrix product, B = DA + B, where D is diagonal. 868e5e3595SJames Wright // @details A is NxM, D is diagonal NxN, represented by a vector of length N, and B is NxM. Optionally, A may be transposed. 878e5e3595SJames Wright CEED_QFUNCTION_HELPER void MatDiagNM(const CeedScalar *A, const CeedScalar *D, const CeedInt N, const CeedInt M, const CeedTransposeMode transpose_A, 888e5e3595SJames Wright CeedScalar *B) { 898e5e3595SJames Wright switch (transpose_A) { 908e5e3595SJames Wright case CEED_NOTRANSPOSE: 918e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) { CeedPragmaSIMD for (CeedInt j = 0; j < M; j++) B[i * M + j] += D[i] * A[i * M + j]; } 928e5e3595SJames Wright break; 938e5e3595SJames Wright case CEED_TRANSPOSE: 948e5e3595SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < M; i++) { CeedPragmaSIMD for (CeedInt j = 0; j < N; j++) B[i * N + j] += D[i] * A[j * M + i]; } 958e5e3595SJames Wright break; 968e5e3595SJames Wright } 978e5e3595SJames Wright } 988e5e3595SJames Wright 998e5e3595SJames Wright // @brief 3x3 Matrix-Matrix product, B = DA + B, where D is diagonal. 1008e5e3595SJames Wright // @details Optionally, A may be transposed. 1018e5e3595SJames Wright CEED_QFUNCTION_HELPER void MatDiag3(const CeedScalar A[3][3], const CeedScalar D[3], const CeedTransposeMode transpose_A, CeedScalar B[3][3]) { 1028e5e3595SJames Wright MatDiagNM((const CeedScalar *)A, (const CeedScalar *)D, 3, 3, transpose_A, (CeedScalar *)B); 1038e5e3595SJames Wright } 104e975cfccSJames Wright // @brief NxN Matrix-Matrix product, C = AB + C 105e975cfccSJames Wright CEED_QFUNCTION_HELPER void MatMatN(const CeedScalar *A, const CeedScalar *B, const CeedInt N, const CeedTransposeMode transpose_A, 106e975cfccSJames Wright const CeedTransposeMode transpose_B, CeedScalar *C) { 1078e5e3595SJames Wright switch (transpose_A) { 1088e5e3595SJames Wright case CEED_NOTRANSPOSE: 1098e5e3595SJames Wright switch (transpose_B) { 1108e5e3595SJames Wright case CEED_NOTRANSPOSE: 111e975cfccSJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) { 112e975cfccSJames Wright CeedPragmaSIMD for (CeedInt j = 0; j < N; j++) { 113e975cfccSJames Wright CeedPragmaSIMD for (CeedInt k = 0; k < N; k++) C[i * N + j] += A[i * N + k] * B[k * N + j]; 114e975cfccSJames Wright } 1158e5e3595SJames Wright } 1168e5e3595SJames Wright break; 1178e5e3595SJames Wright case CEED_TRANSPOSE: 118e975cfccSJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) { 119e975cfccSJames Wright CeedPragmaSIMD for (CeedInt j = 0; j < N; j++) { 120e975cfccSJames Wright CeedPragmaSIMD for (CeedInt k = 0; k < N; k++) C[i * N + j] += A[i * N + k] * B[j * N + k]; 121e975cfccSJames Wright } 1228e5e3595SJames Wright } 1238e5e3595SJames Wright break; 1248e5e3595SJames Wright } 1258e5e3595SJames Wright break; 1268e5e3595SJames Wright case CEED_TRANSPOSE: 1278e5e3595SJames Wright switch (transpose_B) { 1288e5e3595SJames Wright case CEED_NOTRANSPOSE: 129e975cfccSJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) { 130e975cfccSJames Wright CeedPragmaSIMD for (CeedInt j = 0; j < N; j++) { 131e975cfccSJames Wright CeedPragmaSIMD for (CeedInt k = 0; k < N; k++) C[i * N + j] += A[k * N + i] * B[k * N + j]; 132e975cfccSJames Wright } 1338e5e3595SJames Wright } 1348e5e3595SJames Wright break; 1358e5e3595SJames Wright case CEED_TRANSPOSE: 136e975cfccSJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < N; i++) { 137e975cfccSJames Wright CeedPragmaSIMD for (CeedInt j = 0; j < N; j++) { 138e975cfccSJames Wright CeedPragmaSIMD for (CeedInt k = 0; k < N; k++) C[i * N + j] += A[k * N + i] * B[j * N + k]; 139e975cfccSJames Wright } 1408e5e3595SJames Wright } 1418e5e3595SJames Wright break; 1428e5e3595SJames Wright } 1438e5e3595SJames Wright break; 1448e5e3595SJames Wright } 1458e5e3595SJames Wright } 1468e5e3595SJames Wright 147e975cfccSJames Wright // @brief 3x3 Matrix-Matrix product, C = AB + C 148e975cfccSJames Wright CEED_QFUNCTION_HELPER void MatMat3(const CeedScalar A[3][3], const CeedScalar B[3][3], const CeedTransposeMode transpose_A, 149e975cfccSJames Wright const CeedTransposeMode transpose_B, CeedScalar C[3][3]) { 150e975cfccSJames Wright MatMatN((const CeedScalar *)A, (const CeedScalar *)B, 3, transpose_A, transpose_B, (CeedScalar *)C); 151e975cfccSJames Wright } 152e975cfccSJames Wright 153704b8bbeSJames Wright // @brief Unpack Kelvin-Mandel notation symmetric tensor into full tensor 154704b8bbeSJames Wright CEED_QFUNCTION_HELPER void KMUnpack(const CeedScalar v[6], CeedScalar A[3][3]) { 155704b8bbeSJames Wright const CeedScalar weight = 1 / sqrt(2.); 156704b8bbeSJames Wright A[0][0] = v[0]; 157704b8bbeSJames Wright A[1][1] = v[1]; 158704b8bbeSJames Wright A[2][2] = v[2]; 159704b8bbeSJames Wright A[2][1] = A[1][2] = weight * v[3]; 160704b8bbeSJames Wright A[2][0] = A[0][2] = weight * v[4]; 161704b8bbeSJames Wright A[1][0] = A[0][1] = weight * v[5]; 162704b8bbeSJames Wright } 163704b8bbeSJames Wright 1648e5e3595SJames Wright // @brief Pack full tensor into Kelvin-Mandel notation symmetric tensor 1658e5e3595SJames Wright CEED_QFUNCTION_HELPER void KMPack(const CeedScalar A[3][3], CeedScalar v[6]) { 1668e5e3595SJames Wright const CeedScalar weight = sqrt(2.); 1678e5e3595SJames Wright v[0] = A[0][0]; 1688e5e3595SJames Wright v[1] = A[1][1]; 1698e5e3595SJames Wright v[2] = A[2][2]; 1708e5e3595SJames Wright v[3] = A[2][1] * weight; 1718e5e3595SJames Wright v[4] = A[2][0] * weight; 1728e5e3595SJames Wright v[5] = A[1][0] * weight; 1738e5e3595SJames Wright } 1748e5e3595SJames Wright 1758e5e3595SJames Wright // @brief Calculate metric tensor from mapping, g_{ij} = xi_{k,i} xi_{k,j} = dXdx^T dXdx 1768e5e3595SJames Wright CEED_QFUNCTION_HELPER void KMMetricTensor(const CeedScalar dXdx[3][3], CeedScalar km_g_ij[6]) { 1778e5e3595SJames Wright CeedScalar g_ij[3][3] = {{0.}}; 1788e5e3595SJames Wright MatMat3(dXdx, dXdx, CEED_TRANSPOSE, CEED_NOTRANSPOSE, g_ij); 1798e5e3595SJames Wright KMPack(g_ij, km_g_ij); 1808e5e3595SJames Wright } 1818e5e3595SJames Wright 182e7754af5SKenneth E. Jansen // @brief Linear ramp evaluation 183e7754af5SKenneth E. Jansen CEED_QFUNCTION_HELPER CeedScalar LinearRampCoefficient(CeedScalar amplitude, CeedScalar length, CeedScalar start, CeedScalar x) { 184e7754af5SKenneth E. Jansen if (x < start) { 185e7754af5SKenneth E. Jansen return amplitude; 186e7754af5SKenneth E. Jansen } else if (x < start + length) { 187e7754af5SKenneth E. Jansen return amplitude * ((x - start) * (-1 / length) + 1); 188e7754af5SKenneth E. Jansen } else { 189e7754af5SKenneth E. Jansen return 0; 190e7754af5SKenneth E. Jansen } 191e7754af5SKenneth E. Jansen } 192e7754af5SKenneth E. Jansen 193ade49511SJames Wright /** 194ade49511SJames Wright @brief Pack stored values at quadrature point 195ade49511SJames Wright 196ade49511SJames Wright @param[in] Q Number of quadrature points 197ade49511SJames Wright @param[in] i Current quadrature point 198ade49511SJames Wright @param[in] start Starting index to store components 199ade49511SJames Wright @param[in] num_comp Number of components to store 2006764667bSJames Wright @param[in] values_at_qpnt Local values for quadrature point i 201ade49511SJames Wright @param[out] stored Stored values 202ade49511SJames Wright 203ade49511SJames Wright @return An error code: 0 - success, otherwise - failure 204ade49511SJames Wright **/ 2056764667bSJames Wright CEED_QFUNCTION_HELPER int StoredValuesPack(CeedInt Q, CeedInt i, CeedInt start, CeedInt num_comp, const CeedScalar *values_at_qpnt, 2066764667bSJames Wright CeedScalar *stored) { 2076764667bSJames Wright for (CeedInt j = 0; j < num_comp; j++) stored[(start + j) * Q + i] = values_at_qpnt[j]; 208ade49511SJames Wright 209ade49511SJames Wright return CEED_ERROR_SUCCESS; 210ade49511SJames Wright } 211ade49511SJames Wright 212ade49511SJames Wright /** 213ade49511SJames Wright @brief Unpack stored values at quadrature point 214ade49511SJames Wright 215ade49511SJames Wright @param[in] Q Number of quadrature points 216ade49511SJames Wright @param[in] i Current quadrature point 217ade49511SJames Wright @param[in] start Starting index to store components 218ade49511SJames Wright @param[in] num_comp Number of components to store 219ade49511SJames Wright @param[in] stored Stored values 2206764667bSJames Wright @param[out] values_at_qpnt Local values for quadrature point i 221ade49511SJames Wright 222ade49511SJames Wright @return An error code: 0 - success, otherwise - failure 223ade49511SJames Wright **/ 2246764667bSJames Wright CEED_QFUNCTION_HELPER int StoredValuesUnpack(CeedInt Q, CeedInt i, CeedInt start, CeedInt num_comp, const CeedScalar *stored, 2256764667bSJames Wright CeedScalar *values_at_qpnt) { 2266764667bSJames Wright for (CeedInt j = 0; j < num_comp; j++) values_at_qpnt[j] = stored[(start + j) * Q + i]; 227ade49511SJames Wright 228ade49511SJames Wright return CEED_ERROR_SUCCESS; 229ade49511SJames Wright } 230ade49511SJames Wright 231ade49511SJames Wright /** 232*e1bedf8cSJames Wright @brief Unpack N-D element q_data at quadrature point 233*e1bedf8cSJames Wright 234*e1bedf8cSJames Wright @param[in] dim Dimension of the element 235*e1bedf8cSJames Wright @param[in] Q Number of quadrature points 236*e1bedf8cSJames Wright @param[in] i Current quadrature point 237*e1bedf8cSJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:Setup`) 238*e1bedf8cSJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian, or `NULL` 239*e1bedf8cSJames Wright @param[out] dXdx Inverse of the mapping Jacobian (shape [dim][dim]), or `NULL` 240*e1bedf8cSJames Wright **/ 241*e1bedf8cSJames Wright CEED_QFUNCTION_HELPER void QdataUnpack_ND(CeedInt dim, CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar *dXdx) { 242*e1bedf8cSJames Wright switch (dim) { 243*e1bedf8cSJames Wright case 2: 244*e1bedf8cSJames Wright if (wdetJ) StoredValuesUnpack(Q, i, 0, 1, q_data, wdetJ); 245*e1bedf8cSJames Wright if (dXdx) StoredValuesUnpack(Q, i, 1, 4, q_data, dXdx); 246*e1bedf8cSJames Wright break; 247*e1bedf8cSJames Wright case 3: 248*e1bedf8cSJames Wright if (wdetJ) StoredValuesUnpack(Q, i, 0, 1, q_data, wdetJ); 249*e1bedf8cSJames Wright if (dXdx) StoredValuesUnpack(Q, i, 1, 9, q_data, dXdx); 250*e1bedf8cSJames Wright break; 251*e1bedf8cSJames Wright } 252*e1bedf8cSJames Wright } 253*e1bedf8cSJames Wright 254*e1bedf8cSJames Wright /** 255*e1bedf8cSJames Wright @brief Unpack boundary element q_data for N-D problem at quadrature point 256*e1bedf8cSJames Wright 257*e1bedf8cSJames Wright @param[in] Q Number of quadrature points 258*e1bedf8cSJames Wright @param[in] i Current quadrature point 259*e1bedf8cSJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:SetupBoundary`) 260*e1bedf8cSJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian, or `NULL` 261*e1bedf8cSJames Wright @param[out] dXdx Inverse of the mapping Jacobian (shape [dim - 1][dim]), or `NULL` 262*e1bedf8cSJames Wright @param[out] normal Components of the normal vector (shape [dim]), or `NULL` 263*e1bedf8cSJames Wright **/ 264*e1bedf8cSJames Wright CEED_QFUNCTION_HELPER void QdataBoundaryUnpack_ND(CeedInt dim, CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar *dXdx, 265*e1bedf8cSJames Wright CeedScalar *normal) { 266*e1bedf8cSJames Wright switch (dim) { 267*e1bedf8cSJames Wright case 2: 268*e1bedf8cSJames Wright if (wdetJ) StoredValuesUnpack(Q, i, 0, 1, q_data, wdetJ); 269*e1bedf8cSJames Wright if (normal) StoredValuesUnpack(Q, i, 1, 2, q_data, normal); 270*e1bedf8cSJames Wright break; 271*e1bedf8cSJames Wright case 3: 272*e1bedf8cSJames Wright if (wdetJ) StoredValuesUnpack(Q, i, 0, 1, q_data, wdetJ); 273*e1bedf8cSJames Wright if (normal) StoredValuesUnpack(Q, i, 1, 3, q_data, normal); 274*e1bedf8cSJames Wright if (dXdx) StoredValuesUnpack(Q, i, 4, 6, q_data, (CeedScalar *)dXdx); 275*e1bedf8cSJames Wright break; 276*e1bedf8cSJames Wright } 277*e1bedf8cSJames Wright } 278*e1bedf8cSJames Wright 279*e1bedf8cSJames Wright /** 280ade49511SJames Wright @brief Unpack 3D element q_data at quadrature point 281ade49511SJames Wright 282ade49511SJames Wright @param[in] Q Number of quadrature points 283ade49511SJames Wright @param[in] i Current quadrature point 284ade49511SJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:Setup`) 285ade49511SJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian 286ade49511SJames Wright @param[out] dXdx Inverse of the mapping Jacobian (shape [3][3]) 287ade49511SJames Wright 288ade49511SJames Wright @return An error code: 0 - success, otherwise - failure 289ade49511SJames Wright **/ 290ade49511SJames Wright CEED_QFUNCTION_HELPER int QdataUnpack_3D(CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar dXdx[3][3]) { 291*e1bedf8cSJames Wright QdataUnpack_ND(3, Q, i, q_data, wdetJ, (CeedScalar *)dXdx); 292ade49511SJames Wright return CEED_ERROR_SUCCESS; 293ade49511SJames Wright } 294ade49511SJames Wright 295ade49511SJames Wright /** 296ade49511SJames Wright @brief Unpack boundary element q_data for 3D problem at quadrature point 297ade49511SJames Wright 298ade49511SJames Wright @param[in] Q Number of quadrature points 299ade49511SJames Wright @param[in] i Current quadrature point 3002c512a7bSJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:SetupBoundary`) 301ade49511SJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian, or `NULL` 302ade49511SJames Wright @param[out] dXdx Inverse of the mapping Jacobian (shape [2][3]), or `NULL` 303ade49511SJames Wright @param[out] normal Components of the normal vector (shape [3]), or `NULL` 304ade49511SJames Wright 305ade49511SJames Wright @return An error code: 0 - success, otherwise - failure 306ade49511SJames Wright **/ 307ade49511SJames Wright CEED_QFUNCTION_HELPER int QdataBoundaryUnpack_3D(CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar dXdx[2][3], 308ade49511SJames Wright CeedScalar normal[3]) { 309*e1bedf8cSJames Wright QdataBoundaryUnpack_ND(3, Q, i, q_data, wdetJ, (CeedScalar *)dXdx, normal); 310ade49511SJames Wright return CEED_ERROR_SUCCESS; 311ade49511SJames Wright } 312ade49511SJames Wright 313baadde1fSJames Wright /** 31415c15616SJames Wright @brief Unpack boundary element q_data for 3D problem at quadrature point 31515c15616SJames Wright 31615c15616SJames Wright @param[in] Q Number of quadrature points 31715c15616SJames Wright @param[in] i Current quadrature point 31815c15616SJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:SetupBoundary`) 31915c15616SJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian, or `NULL` 32015c15616SJames Wright @param[out] dXdx Inverse of the mapping Jacobian (shape [2][3]), or `NULL` 32115c15616SJames Wright @param[out] normal Components of the normal vector (shape [3]), or `NULL` 32215c15616SJames Wright 32315c15616SJames Wright @return An error code: 0 - success, otherwise - failure 32415c15616SJames Wright **/ 32515c15616SJames Wright CEED_QFUNCTION_HELPER int QdataBoundaryGradientUnpack_3D(CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar dXdx[2][3], 32615c15616SJames Wright CeedScalar normal[3]) { 32715c15616SJames Wright if (wdetJ) StoredValuesUnpack(Q, i, 0, 1, q_data, wdetJ); 32815c15616SJames Wright if (dXdx) StoredValuesUnpack(Q, i, 1, 9, q_data, (CeedScalar *)dXdx); 32915c15616SJames Wright if (normal) StoredValuesUnpack(Q, i, 10, 3, q_data, normal); 33015c15616SJames Wright return CEED_ERROR_SUCCESS; 33115c15616SJames Wright } 33215c15616SJames Wright 33315c15616SJames Wright /** 334baadde1fSJames Wright @brief Unpack 2D element q_data at quadrature point 335baadde1fSJames Wright 336baadde1fSJames Wright @param[in] Q Number of quadrature points 337baadde1fSJames Wright @param[in] i Current quadrature point 338baadde1fSJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:Setup`) 339baadde1fSJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian 340baadde1fSJames Wright @param[out] dXdx Inverse of the mapping Jacobian (shape [2][2]) 341baadde1fSJames Wright 342baadde1fSJames Wright @return An error code: 0 - success, otherwise - failure 343baadde1fSJames Wright **/ 344baadde1fSJames Wright CEED_QFUNCTION_HELPER int QdataUnpack_2D(CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar dXdx[2][2]) { 345*e1bedf8cSJames Wright QdataUnpack_ND(2, Q, i, q_data, wdetJ, (CeedScalar *)dXdx); 346baadde1fSJames Wright return CEED_ERROR_SUCCESS; 347baadde1fSJames Wright } 348baadde1fSJames Wright 3492c512a7bSJames Wright /** 3502c512a7bSJames Wright @brief Unpack boundary element q_data for 2D problem at quadrature point 3512c512a7bSJames Wright 3522c512a7bSJames Wright @param[in] Q Number of quadrature points 3532c512a7bSJames Wright @param[in] i Current quadrature point 3542c512a7bSJames Wright @param[in] q_data Pointer to q_data (generated by `setupgeo.h:SetupBoundary2d`) 3552c512a7bSJames Wright @param[out] wdetJ Quadrature weight times determinant of the mapping Jacobian, or `NULL` 3562c512a7bSJames Wright @param[out] normal Components of the normal vector (shape [2]), or `NULL` 3572c512a7bSJames Wright 3582c512a7bSJames Wright @return An error code: 0 - success, otherwise - failure 3592c512a7bSJames Wright **/ 3602c512a7bSJames Wright CEED_QFUNCTION_HELPER int QdataBoundaryUnpack_2D(CeedInt Q, CeedInt i, const CeedScalar *q_data, CeedScalar *wdetJ, CeedScalar normal[2]) { 361*e1bedf8cSJames Wright QdataBoundaryUnpack_ND(3, Q, i, q_data, wdetJ, NULL, normal); 3622c512a7bSJames Wright return CEED_ERROR_SUCCESS; 3632c512a7bSJames Wright } 364