xref: /libCEED/examples/petsc/qfunctions/bps/bp13.h (revision d4cc18453651bd0f94c1a2e078b2646a92dafdcc)
1*9ba83ac0SJeremy L Thompson // Copyright (c) 2017-2026, Lawrence Livermore National Security, LLC and other CEED contributors.
23c11f1fcSJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
33c11f1fcSJeremy L Thompson //
43c11f1fcSJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause
53c11f1fcSJeremy L Thompson //
63c11f1fcSJeremy L Thompson // This file is part of CEED:  http://github.com/ceed
73c11f1fcSJeremy L Thompson 
83c11f1fcSJeremy L Thompson /// @file
93c11f1fcSJeremy L Thompson /// libCEED QFunctions for diffusion operator example using PETSc
103c11f1fcSJeremy L Thompson 
113c11f1fcSJeremy L Thompson #include <ceed/types.h>
123c11f1fcSJeremy L Thompson #ifndef CEED_RUNNING_JIT_PASS
133c11f1fcSJeremy L Thompson #include <math.h>
143c11f1fcSJeremy L Thompson #endif
153c11f1fcSJeremy L Thompson 
163c11f1fcSJeremy L Thompson // -----------------------------------------------------------------------------
173c11f1fcSJeremy L Thompson // This QFunction sets up the rhs and true solution for the problem
183c11f1fcSJeremy L Thompson // -----------------------------------------------------------------------------
SetupMassDiffRhs(void * ctx,const CeedInt Q,const CeedScalar * const * in,CeedScalar * const * out)193c11f1fcSJeremy L Thompson CEED_QFUNCTION(SetupMassDiffRhs)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
203c11f1fcSJeremy L Thompson #ifndef M_PI
213c11f1fcSJeremy L Thompson #define M_PI 3.14159265358979323846
223c11f1fcSJeremy L Thompson #endif
233c11f1fcSJeremy L Thompson   const CeedScalar *x = in[0], *w = in[1];
243c11f1fcSJeremy L Thompson   CeedScalar       *true_soln = out[0], *rhs = out[1];
253c11f1fcSJeremy L Thompson 
263c11f1fcSJeremy L Thompson   // Quadrature Point Loop
273c11f1fcSJeremy L Thompson   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
283c11f1fcSJeremy L Thompson     const CeedScalar c[3] = {0, 1., 2.};
293c11f1fcSJeremy L Thompson     const CeedScalar k[3] = {1., 2., 3.};
303c11f1fcSJeremy L Thompson 
313c11f1fcSJeremy L Thompson     true_soln[i] = sin(M_PI * (c[0] + k[0] * x[i + Q * 0])) * sin(M_PI * (c[1] + k[1] * x[i + Q * 1])) * sin(M_PI * (c[2] + k[2] * x[i + Q * 2]));
323c11f1fcSJeremy L Thompson 
333c11f1fcSJeremy L Thompson     rhs[i] = w[i + Q * 0] * (M_PI * M_PI * (k[0] * k[0] + k[1] * k[1] + k[2] * k[2]) + 1.0) * true_soln[i];
343c11f1fcSJeremy L Thompson   }  // End of Quadrature Point Loop
353c11f1fcSJeremy L Thompson   return 0;
363c11f1fcSJeremy L Thompson }
373c11f1fcSJeremy L Thompson 
383c11f1fcSJeremy L Thompson // -----------------------------------------------------------------------------
393c11f1fcSJeremy L Thompson // This QFunction applies the mass + diffusion operator for a scalar field.
403c11f1fcSJeremy L Thompson //
413c11f1fcSJeremy L Thompson // Inputs:
423c11f1fcSJeremy L Thompson //   u       - Input vector at quadrature points
433c11f1fcSJeremy L Thompson //   ug      - Input vector gradient at quadrature points
443c11f1fcSJeremy L Thompson //   q_data  - Geometric factors
453c11f1fcSJeremy L Thompson //
463c11f1fcSJeremy L Thompson // Output:
473c11f1fcSJeremy L Thompson //   v      - Output vector (test functions) at quadrature points
483c11f1fcSJeremy L Thompson //   vg     - Output vector (test functions) gradient at quadrature points
493c11f1fcSJeremy L Thompson // -----------------------------------------------------------------------------
MassDiff(void * ctx,CeedInt Q,const CeedScalar * const * in,CeedScalar * const * out)503c11f1fcSJeremy L Thompson CEED_QFUNCTION(MassDiff)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
513c11f1fcSJeremy L Thompson   const CeedScalar *u = in[0], *ug = in[1], *q_data = in[2];
523c11f1fcSJeremy L Thompson   CeedScalar       *v = out[0], *vg = out[1];
533c11f1fcSJeremy L Thompson 
543c11f1fcSJeremy L Thompson   // Quadrature Point Loop
553c11f1fcSJeremy L Thompson   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
563c11f1fcSJeremy L Thompson     // Read spatial derivatives of u
573c11f1fcSJeremy L Thompson     const CeedScalar du[3] = {ug[i + Q * 0], ug[i + Q * 1], ug[i + Q * 2]};
583c11f1fcSJeremy L Thompson     // Read q_data (dXdxdXdx_T symmetric matrix)
593c11f1fcSJeremy L Thompson     const CeedScalar dXdxdXdx_T[3][3] = {
603c11f1fcSJeremy L Thompson         {q_data[i + 1 * Q], q_data[i + 2 * Q], q_data[i + 3 * Q]},
613c11f1fcSJeremy L Thompson         {q_data[i + 2 * Q], q_data[i + 4 * Q], q_data[i + 5 * Q]},
623c11f1fcSJeremy L Thompson         {q_data[i + 3 * Q], q_data[i + 5 * Q], q_data[i + 6 * Q]}
633c11f1fcSJeremy L Thompson     };
643c11f1fcSJeremy L Thompson 
653c11f1fcSJeremy L Thompson     // Mass
663c11f1fcSJeremy L Thompson     v[i] = q_data[i + 0 * Q] * u[i];
673c11f1fcSJeremy L Thompson     // Diff
683c11f1fcSJeremy L Thompson     for (int j = 0; j < 3; j++) {  // j = direction of vg
693c11f1fcSJeremy L Thompson       vg[i + j * Q] = (du[0] * dXdxdXdx_T[0][j] + du[1] * dXdxdXdx_T[1][j] + du[2] * dXdxdXdx_T[2][j]);
703c11f1fcSJeremy L Thompson     }
713c11f1fcSJeremy L Thompson   }  // End of Quadrature Point Loop
723c11f1fcSJeremy L Thompson   return 0;
733c11f1fcSJeremy L Thompson }
743c11f1fcSJeremy L Thompson // -----------------------------------------------------------------------------
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