1*9ba83ac0SJeremy L Thompson // Copyright (c) 2017-2026, 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. 31d102b48SJeremy L Thompson // 43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause 51d102b48SJeremy L Thompson // 63d8e8822SJeremy L Thompson // This file is part of CEED: http://github.com/ceed 71d102b48SJeremy L Thompson 8c0b5abf0SJeremy L Thompson #include <ceed/types.h> 9c9c2c079SJeremy L Thompson 102b730f8bSJeremy L Thompson CEED_QFUNCTION(setup_mass)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 111d102b48SJeremy L Thompson const CeedScalar *J = in[0], *weight = in[1]; 121d102b48SJeremy L Thompson CeedScalar *rho = out[0]; 131d102b48SJeremy L Thompson for (CeedInt i = 0; i < Q; i++) { 141d102b48SJeremy L Thompson rho[i] = weight[i] * (J[i + Q * 0] * J[i + Q * 3] - J[i + Q * 1] * J[i + Q * 2]); 151d102b48SJeremy L Thompson } 161d102b48SJeremy L Thompson return 0; 171d102b48SJeremy L Thompson } 181d102b48SJeremy L Thompson 192b730f8bSJeremy L Thompson CEED_QFUNCTION(setup_diff)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 201d102b48SJeremy L Thompson // At every quadrature point, compute qw/det(J).adj(J).adj(J)^T and store 211d102b48SJeremy L Thompson // the symmetric part of the result. 221d102b48SJeremy L Thompson 231d102b48SJeremy L Thompson // in[0] is Jacobians with shape [2, nc=2, Q] 241d102b48SJeremy L Thompson // in[1] is quadrature weights, size (Q) 251d102b48SJeremy L Thompson const CeedScalar *J = in[0], *qw = in[1]; 261d102b48SJeremy L Thompson 271d102b48SJeremy L Thompson // out[0] is qdata, size (Q) 281d102b48SJeremy L Thompson CeedScalar *qd = out[0]; 291d102b48SJeremy L Thompson 301d102b48SJeremy L Thompson // Quadrature point loop 311d102b48SJeremy L Thompson for (CeedInt i = 0; i < Q; i++) { 321d102b48SJeremy L Thompson // J: 0 2 qd: 0 2 adj(J): J22 -J12 331d102b48SJeremy L Thompson // 1 3 2 1 -J21 J11 341d102b48SJeremy L Thompson const CeedScalar J11 = J[i + Q * 0]; 351d102b48SJeremy L Thompson const CeedScalar J21 = J[i + Q * 1]; 361d102b48SJeremy L Thompson const CeedScalar J12 = J[i + Q * 2]; 371d102b48SJeremy L Thompson const CeedScalar J22 = J[i + Q * 3]; 381d102b48SJeremy L Thompson const CeedScalar w = qw[i] / (J11 * J22 - J21 * J12); 391d102b48SJeremy L Thompson qd[i + Q * 0] = w * (J12 * J12 + J22 * J22); 401d102b48SJeremy L Thompson qd[i + Q * 1] = w * (J11 * J11 + J21 * J21); 411d102b48SJeremy L Thompson qd[i + Q * 2] = -w * (J11 * J12 + J21 * J22); 421d102b48SJeremy L Thompson } 431d102b48SJeremy L Thompson 441d102b48SJeremy L Thompson return 0; 451d102b48SJeremy L Thompson } 461d102b48SJeremy L Thompson 472b730f8bSJeremy L Thompson CEED_QFUNCTION(apply)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 481d102b48SJeremy L Thompson // in[0] is gradient u, shape [2, nc=1, Q] 491d102b48SJeremy L Thompson // in[1] is mass quadrature data, size (Q) 505107b09fSJeremy L Thompson // in[2] is Poisson quadrature data, size (3*Q) 511d102b48SJeremy L Thompson // in[3] is u, size (Q) 521d102b48SJeremy L Thompson const CeedScalar *du = in[0], *qd_mass = in[1], *qd_diff = in[2], *u = in[3]; 531d102b48SJeremy L Thompson 541d102b48SJeremy L Thompson // out[0] is output to multiply against v, size (Q) 551d102b48SJeremy L Thompson // out[1] is output to multiply against gradient v, shape [2, nc=1, Q] 561d102b48SJeremy L Thompson CeedScalar *v = out[0], *dv = out[1]; 571d102b48SJeremy L Thompson 581d102b48SJeremy L Thompson // Quadrature point loop 591d102b48SJeremy L Thompson for (CeedInt i = 0; i < Q; i++) { 601d102b48SJeremy L Thompson // Mass 611d102b48SJeremy L Thompson v[i] = qd_mass[i] * u[i]; 621d102b48SJeremy L Thompson // Diff 631d102b48SJeremy L Thompson const CeedScalar du0 = du[i + Q * 0]; 641d102b48SJeremy L Thompson const CeedScalar du1 = du[i + Q * 1]; 651d102b48SJeremy L Thompson dv[i + Q * 0] = qd_diff[i + Q * 0] * du0 + qd_diff[i + Q * 2] * du1; 661d102b48SJeremy L Thompson dv[i + Q * 1] = qd_diff[i + Q * 2] * du0 + qd_diff[i + Q * 1] * du1; 671d102b48SJeremy L Thompson } 681d102b48SJeremy L Thompson 691d102b48SJeremy L Thompson return 0; 701d102b48SJeremy L Thompson } 711d102b48SJeremy L Thompson 722b730f8bSJeremy L Thompson CEED_QFUNCTION(apply_lin)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 731d102b48SJeremy L Thompson // in[0] is gradient u, shape [2, nc=1, Q] 745107b09fSJeremy L Thompson // in[1] is assembled quadrature data, size (9*Q) 751d102b48SJeremy L Thompson // in[2] is u, size (Q) 761d102b48SJeremy L Thompson const CeedScalar *du = in[0], *qd = in[1], *u = in[2]; 771d102b48SJeremy L Thompson 781d102b48SJeremy L Thompson // out[0] is output to multiply against v, size (Q) 791d102b48SJeremy L Thompson // out[1] is output to multiply against gradient v, shape [2, nc=1, Q] 801d102b48SJeremy L Thompson CeedScalar *v = out[0], *dv = out[1]; 811d102b48SJeremy L Thompson 821d102b48SJeremy L Thompson // Quadrature point loop 831d102b48SJeremy L Thompson for (CeedInt i = 0; i < Q; i++) { 841d102b48SJeremy L Thompson const CeedScalar du0 = du[i + Q * 0]; 851d102b48SJeremy L Thompson const CeedScalar du1 = du[i + Q * 1]; 861d102b48SJeremy L Thompson v[i + Q * 0] = qd[i + Q * 0] * du0 + qd[i + Q * 3] * du1 + qd[i + Q * 6] * u[i]; 871d102b48SJeremy L Thompson dv[i + Q * 0] = qd[i + Q * 1] * du0 + qd[i + Q * 4] * du1 + qd[i + Q * 7] * u[i]; 881d102b48SJeremy L Thompson dv[i + Q * 1] = qd[i + Q * 2] * du0 + qd[i + Q * 5] * du1 + qd[i + Q * 8] * u[i]; 891d102b48SJeremy L Thompson } 901d102b48SJeremy L Thompson 911d102b48SJeremy L Thompson return 0; 921d102b48SJeremy L Thompson } 93