13d8e8822SJeremy L Thompson // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other CEED contributors. 23d8e8822SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 377841947SLeila Ghaffari // 43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause 577841947SLeila Ghaffari // 63d8e8822SJeremy L Thompson // This file is part of CEED: http://github.com/ceed 777841947SLeila Ghaffari 877841947SLeila Ghaffari /// @file 977841947SLeila Ghaffari /// Geometric factors (3D) for Navier-Stokes example using PETSc 1077841947SLeila Ghaffari 1177841947SLeila Ghaffari #ifndef setup_geo_h 1277841947SLeila Ghaffari #define setup_geo_h 1377841947SLeila Ghaffari 1488b783a1SJames Wright #include <ceed.h> 15c9c2c079SJeremy L Thompson #include <math.h> 1677841947SLeila Ghaffari 1777841947SLeila Ghaffari // ***************************************************************************** 18*ea61e9acSJeremy L Thompson // This QFunction sets up the geometric factors required for integration and coordinate transformations 1977841947SLeila Ghaffari // 2077841947SLeila Ghaffari // Reference (parent) coordinates: X 2177841947SLeila Ghaffari // Physical (current) coordinates: x 2277841947SLeila Ghaffari // Change of coordinate matrix: dxdX_{i,j} = x_{i,j} (indicial notation) 2377841947SLeila Ghaffari // Inverse of change of coordinate matrix: dXdx_{i,j} = (detJ^-1) * X_{i,j} 2477841947SLeila Ghaffari // 2577841947SLeila Ghaffari // All quadrature data is stored in 10 field vector of quadrature data. 2677841947SLeila Ghaffari // 27*ea61e9acSJeremy L Thompson // We require the determinant of the Jacobian to properly compute integrals of the form: int( v u ) 2877841947SLeila Ghaffari // 2977841947SLeila Ghaffari // Determinant of Jacobian: 3077841947SLeila Ghaffari // detJ = J11*A11 + J21*A12 + J31*A13 3177841947SLeila Ghaffari // Jij = Jacobian entry ij 3277841947SLeila Ghaffari // Aij = Adjoint ij 3377841947SLeila Ghaffari // 3477841947SLeila Ghaffari // Stored: w detJ 3577841947SLeila Ghaffari // in q_data[0] 3677841947SLeila Ghaffari // 37*ea61e9acSJeremy L Thompson // We require the transpose of the inverse of the Jacobian to properly compute integrals of the form: int( gradv u ) 3877841947SLeila Ghaffari // 3977841947SLeila Ghaffari // Inverse of Jacobian: 4077841947SLeila Ghaffari // dXdx_i,j = Aij / detJ 4177841947SLeila Ghaffari // 4277841947SLeila Ghaffari // Stored: Aij / detJ 4377841947SLeila Ghaffari // in q_data[1:9] as 4477841947SLeila Ghaffari // (detJ^-1) * [A11 A12 A13] 4577841947SLeila Ghaffari // [A21 A22 A23] 4677841947SLeila Ghaffari // [A31 A32 A33] 4777841947SLeila Ghaffari // ***************************************************************************** 482b730f8bSJeremy L Thompson CEED_QFUNCTION(Setup)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 4977841947SLeila Ghaffari // Inputs 5046603fc5SJames Wright const CeedScalar(*J)[3][CEED_Q_VLA] = (const CeedScalar(*)[3][CEED_Q_VLA])in[0]; 5146603fc5SJames Wright const CeedScalar(*w) = in[1]; 5277841947SLeila Ghaffari 5377841947SLeila Ghaffari // Outputs 5477841947SLeila Ghaffari CeedScalar(*q_data)[CEED_Q_VLA] = (CeedScalar(*)[CEED_Q_VLA])out[0]; 5577841947SLeila Ghaffari 5677841947SLeila Ghaffari CeedPragmaSIMD 5777841947SLeila Ghaffari // Quadrature Point Loop 5877841947SLeila Ghaffari for (CeedInt i = 0; i < Q; i++) { 5977841947SLeila Ghaffari // Setup 6077841947SLeila Ghaffari const CeedScalar J11 = J[0][0][i]; 6177841947SLeila Ghaffari const CeedScalar J21 = J[0][1][i]; 6277841947SLeila Ghaffari const CeedScalar J31 = J[0][2][i]; 6377841947SLeila Ghaffari const CeedScalar J12 = J[1][0][i]; 6477841947SLeila Ghaffari const CeedScalar J22 = J[1][1][i]; 6577841947SLeila Ghaffari const CeedScalar J32 = J[1][2][i]; 6677841947SLeila Ghaffari const CeedScalar J13 = J[2][0][i]; 6777841947SLeila Ghaffari const CeedScalar J23 = J[2][1][i]; 6877841947SLeila Ghaffari const CeedScalar J33 = J[2][2][i]; 6977841947SLeila Ghaffari const CeedScalar A11 = J22 * J33 - J23 * J32; 7077841947SLeila Ghaffari const CeedScalar A12 = J13 * J32 - J12 * J33; 7177841947SLeila Ghaffari const CeedScalar A13 = J12 * J23 - J13 * J22; 7277841947SLeila Ghaffari const CeedScalar A21 = J23 * J31 - J21 * J33; 7377841947SLeila Ghaffari const CeedScalar A22 = J11 * J33 - J13 * J31; 7477841947SLeila Ghaffari const CeedScalar A23 = J13 * J21 - J11 * J23; 7577841947SLeila Ghaffari const CeedScalar A31 = J21 * J32 - J22 * J31; 7677841947SLeila Ghaffari const CeedScalar A32 = J12 * J31 - J11 * J32; 7777841947SLeila Ghaffari const CeedScalar A33 = J11 * J22 - J12 * J21; 7877841947SLeila Ghaffari const CeedScalar detJ = J11 * A11 + J21 * A12 + J31 * A13; 7977841947SLeila Ghaffari 8077841947SLeila Ghaffari // Qdata 8177841947SLeila Ghaffari // -- Interp-to-Interp q_data 8277841947SLeila Ghaffari q_data[0][i] = w[i] * detJ; 8377841947SLeila Ghaffari // -- Interp-to-Grad q_data 8477841947SLeila Ghaffari // Inverse of change of coordinate matrix: X_i,j 8577841947SLeila Ghaffari q_data[1][i] = A11 / detJ; 8677841947SLeila Ghaffari q_data[2][i] = A12 / detJ; 8777841947SLeila Ghaffari q_data[3][i] = A13 / detJ; 8877841947SLeila Ghaffari q_data[4][i] = A21 / detJ; 8977841947SLeila Ghaffari q_data[5][i] = A22 / detJ; 9077841947SLeila Ghaffari q_data[6][i] = A23 / detJ; 9177841947SLeila Ghaffari q_data[7][i] = A31 / detJ; 9277841947SLeila Ghaffari q_data[8][i] = A32 / detJ; 9377841947SLeila Ghaffari q_data[9][i] = A33 / detJ; 9477841947SLeila Ghaffari 9577841947SLeila Ghaffari } // End of Quadrature Point Loop 9677841947SLeila Ghaffari 9777841947SLeila Ghaffari // Return 9877841947SLeila Ghaffari return 0; 9977841947SLeila Ghaffari } 10077841947SLeila Ghaffari 10177841947SLeila Ghaffari // ***************************************************************************** 102*ea61e9acSJeremy L Thompson // This QFunction sets up the geometric factor required for integration when reference coordinates are in 2D and the physical coordinates are in 3D 10377841947SLeila Ghaffari // 10477841947SLeila Ghaffari // Reference (parent) 2D coordinates: X 10577841947SLeila Ghaffari // Physical (current) 3D coordinates: x 10677841947SLeila Ghaffari // Change of coordinate matrix: 10777841947SLeila Ghaffari // dxdX_{i,j} = dx_i/dX_j (indicial notation) [3 * 2] 108ba6664aeSJames Wright // Inverse change of coordinate matrix: 109ba6664aeSJames Wright // dXdx_{i,j} = dX_i/dx_j (indicial notation) [2 * 3] 11077841947SLeila Ghaffari // 11177841947SLeila Ghaffari // (J1,J2,J3) is given by the cross product of the columns of dxdX_{i,j} 11277841947SLeila Ghaffari // 11377841947SLeila Ghaffari // detJb is the magnitude of (J1,J2,J3) 11477841947SLeila Ghaffari // 115ba6664aeSJames Wright // dXdx is calculated via Moore–Penrose inverse: 116ba6664aeSJames Wright // 117ba6664aeSJames Wright // dX_i/dx_j = (dxdX^T dxdX)^(-1) dxdX 118ba6664aeSJames Wright // = (dx_l/dX_i * dx_l/dX_k)^(-1) dx_j/dX_k 119ba6664aeSJames Wright // 120ba6664aeSJames Wright // All quadrature data is stored in 10 field vector of quadrature data. 12177841947SLeila Ghaffari // 12277841947SLeila Ghaffari // We require the determinant of the Jacobian to properly compute integrals of 12377841947SLeila Ghaffari // the form: int( u v ) 12477841947SLeila Ghaffari // 12577841947SLeila Ghaffari // Stored: w detJb 12677841947SLeila Ghaffari // in q_data_sur[0] 12777841947SLeila Ghaffari // 12877841947SLeila Ghaffari // Normal vector = (J1,J2,J3) / detJb 12977841947SLeila Ghaffari // 130ba6664aeSJames Wright // - TODO Could possibly remove normal vector, as it could be calculated in the Qfunction from dXdx 13177841947SLeila Ghaffari // Stored: (J1,J2,J3) / detJb 13277841947SLeila Ghaffari // in q_data_sur[1:3] as 13377841947SLeila Ghaffari // (detJb^-1) * [ J1 ] 13477841947SLeila Ghaffari // [ J2 ] 13577841947SLeila Ghaffari // [ J3 ] 13677841947SLeila Ghaffari // 137ba6664aeSJames Wright // Stored: dXdx_{i,j} 138ba6664aeSJames Wright // in q_data_sur[4:9] as 139ba6664aeSJames Wright // [dXdx_11 dXdx_12 dXdx_13] 140ba6664aeSJames Wright // [dXdx_21 dXdx_22 dXdx_23] 14177841947SLeila Ghaffari // ***************************************************************************** 1422b730f8bSJeremy L Thompson CEED_QFUNCTION(SetupBoundary)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 14377841947SLeila Ghaffari // Inputs 14446603fc5SJames Wright const CeedScalar(*J)[3][CEED_Q_VLA] = (const CeedScalar(*)[3][CEED_Q_VLA])in[0]; 14546603fc5SJames Wright const CeedScalar(*w) = in[1]; 14646603fc5SJames Wright 14777841947SLeila Ghaffari // Outputs 14877841947SLeila Ghaffari CeedScalar(*q_data_sur)[CEED_Q_VLA] = (CeedScalar(*)[CEED_Q_VLA])out[0]; 14977841947SLeila Ghaffari 15077841947SLeila Ghaffari CeedPragmaSIMD 15177841947SLeila Ghaffari // Quadrature Point Loop 15277841947SLeila Ghaffari for (CeedInt i = 0; i < Q; i++) { 15377841947SLeila Ghaffari // Setup 1542b730f8bSJeremy L Thompson const CeedScalar dxdX[3][2] = { 1552b730f8bSJeremy L Thompson {J[0][0][i], J[1][0][i]}, 1562b730f8bSJeremy L Thompson {J[0][1][i], J[1][1][i]}, 1572b730f8bSJeremy L Thompson {J[0][2][i], J[1][2][i]} 15877841947SLeila Ghaffari }; 15977841947SLeila Ghaffari // J1, J2, and J3 are given by the cross product of the columns of dxdX 16077841947SLeila Ghaffari const CeedScalar J1 = dxdX[1][0] * dxdX[2][1] - dxdX[2][0] * dxdX[1][1]; 16177841947SLeila Ghaffari const CeedScalar J2 = dxdX[2][0] * dxdX[0][1] - dxdX[0][0] * dxdX[2][1]; 16277841947SLeila Ghaffari const CeedScalar J3 = dxdX[0][0] * dxdX[1][1] - dxdX[1][0] * dxdX[0][1]; 16377841947SLeila Ghaffari 16477841947SLeila Ghaffari const CeedScalar detJb = sqrt(J1 * J1 + J2 * J2 + J3 * J3); 16577841947SLeila Ghaffari 16677841947SLeila Ghaffari // q_data_sur 16777841947SLeila Ghaffari // -- Interp-to-Interp q_data_sur 16877841947SLeila Ghaffari q_data_sur[0][i] = w[i] * detJb; 16977841947SLeila Ghaffari q_data_sur[1][i] = J1 / detJb; 17077841947SLeila Ghaffari q_data_sur[2][i] = J2 / detJb; 17177841947SLeila Ghaffari q_data_sur[3][i] = J3 / detJb; 17277841947SLeila Ghaffari 173ba6664aeSJames Wright // dxdX_k,j * dxdX_j,k 174ba6664aeSJames Wright CeedScalar dxdXTdxdX[2][2] = {{0.}}; 1752b730f8bSJeremy L Thompson for (CeedInt j = 0; j < 2; j++) { 1762b730f8bSJeremy L Thompson for (CeedInt k = 0; k < 2; k++) { 1772b730f8bSJeremy L Thompson for (CeedInt l = 0; l < 3; l++) dxdXTdxdX[j][k] += dxdX[l][j] * dxdX[l][k]; 1782b730f8bSJeremy L Thompson } 1792b730f8bSJeremy L Thompson } 180ba6664aeSJames Wright 1812b730f8bSJeremy L Thompson const CeedScalar detdxdXTdxdX = dxdXTdxdX[0][0] * dxdXTdxdX[1][1] - dxdXTdxdX[1][0] * dxdXTdxdX[0][1]; 182ba6664aeSJames Wright 183ba6664aeSJames Wright // Compute inverse of dxdXTdxdX 184ba6664aeSJames Wright CeedScalar dxdXTdxdX_inv[2][2]; 185ba6664aeSJames Wright dxdXTdxdX_inv[0][0] = dxdXTdxdX[1][1] / detdxdXTdxdX; 186ba6664aeSJames Wright dxdXTdxdX_inv[0][1] = -dxdXTdxdX[0][1] / detdxdXTdxdX; 187ba6664aeSJames Wright dxdXTdxdX_inv[1][0] = -dxdXTdxdX[1][0] / detdxdXTdxdX; 188ba6664aeSJames Wright dxdXTdxdX_inv[1][1] = dxdXTdxdX[0][0] / detdxdXTdxdX; 189ba6664aeSJames Wright 190ba6664aeSJames Wright // Compute dXdx from dxdXTdxdX^-1 and dxdX 191ba6664aeSJames Wright CeedScalar dXdx[2][3] = {{0.}}; 1922b730f8bSJeremy L Thompson for (CeedInt j = 0; j < 2; j++) { 1932b730f8bSJeremy L Thompson for (CeedInt k = 0; k < 3; k++) { 1942b730f8bSJeremy L Thompson for (CeedInt l = 0; l < 2; l++) dXdx[j][k] += dxdXTdxdX_inv[l][j] * dxdX[k][l]; 1952b730f8bSJeremy L Thompson } 1962b730f8bSJeremy L Thompson } 197ba6664aeSJames Wright 198ba6664aeSJames Wright q_data_sur[4][i] = dXdx[0][0]; 199ba6664aeSJames Wright q_data_sur[5][i] = dXdx[0][1]; 200ba6664aeSJames Wright q_data_sur[6][i] = dXdx[0][2]; 201ba6664aeSJames Wright q_data_sur[7][i] = dXdx[1][0]; 202ba6664aeSJames Wright q_data_sur[8][i] = dXdx[1][1]; 203ba6664aeSJames Wright q_data_sur[9][i] = dXdx[1][2]; 204ba6664aeSJames Wright 20577841947SLeila Ghaffari } // End of Quadrature Point Loop 20677841947SLeila Ghaffari 20777841947SLeila Ghaffari // Return 20877841947SLeila Ghaffari return 0; 20977841947SLeila Ghaffari } 21077841947SLeila Ghaffari 21177841947SLeila Ghaffari // ***************************************************************************** 21277841947SLeila Ghaffari 21377841947SLeila Ghaffari #endif // setup_geo_h 214