xref: /libCEED/examples/petsc/qfunctions/bps/bp1.h (revision 2b730f8b5a9c809740a0b3b302db43a719c636b1)
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.
3cb32e2e7SValeria Barra //
43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause
5cb32e2e7SValeria Barra //
63d8e8822SJeremy L Thompson // This file is part of CEED:  http://github.com/ceed
7cb32e2e7SValeria Barra 
8cb32e2e7SValeria Barra /// @file
9cb32e2e7SValeria Barra /// libCEED QFunctions for mass operator example using PETSc
10cb32e2e7SValeria Barra 
11f6b55d2cSvaleriabarra #ifndef bp1_h
12f6b55d2cSvaleriabarra #define bp1_h
13f6b55d2cSvaleriabarra 
14c9c2c079SJeremy L Thompson #include <ceed.h>
15cb32e2e7SValeria Barra #include <math.h>
16cb32e2e7SValeria Barra 
17e83e87a5Sjeremylt // -----------------------------------------------------------------------------
18ed264d09SValeria Barra // This QFunction sets up the geometric factors required to apply the
19ed264d09SValeria Barra //   mass operator
20ed264d09SValeria Barra //
219b072555Sjeremylt // The quadrature data is stored in the array q_data.
22ed264d09SValeria Barra //
23ed264d09SValeria Barra // We require the determinant of the Jacobian to properly compute integrals of
24ed264d09SValeria Barra //   the form: int( u v )
25ed264d09SValeria Barra //
269b072555Sjeremylt // Qdata: det_J * w
27ed264d09SValeria Barra //
28cb32e2e7SValeria Barra // -----------------------------------------------------------------------------
29*2b730f8bSJeremy L Thompson CEED_QFUNCTION(SetupMassGeo)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
30d4d45553Srezgarshakeri   // Inputs
31d4d45553Srezgarshakeri   const CeedScalar(*J)[3][CEED_Q_VLA] = (const CeedScalar(*)[3][CEED_Q_VLA])in[1];
32d4d45553Srezgarshakeri   const CeedScalar(*w)                = in[2];  // Note: *X = in[0]
33d4d45553Srezgarshakeri   // Outputs
349b072555Sjeremylt   CeedScalar *q_data = out[0];
35cb32e2e7SValeria Barra 
36d4d45553Srezgarshakeri   const CeedInt dim = 3;
37cb32e2e7SValeria Barra   // Quadrature Point Loop
38*2b730f8bSJeremy L Thompson   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
39d4d45553Srezgarshakeri     // Setup
40d4d45553Srezgarshakeri     CeedScalar A[3][3];
41d4d45553Srezgarshakeri     for (CeedInt j = 0; j < dim; j++) {
42d4d45553Srezgarshakeri       for (CeedInt k = 0; k < dim; k++) {
43d4d45553Srezgarshakeri         // Equivalent code with no mod operations:
44d4d45553Srezgarshakeri         // A[k][j] = J[k+1][j+1]*J[k+2][j+2] - J[k+1][j+2]*J[k+2][j+1]
45d4d45553Srezgarshakeri         A[k][j] = J[(k + 1) % dim][(j + 1) % dim][i] * J[(k + 2) % dim][(j + 2) % dim][i] -
46d4d45553Srezgarshakeri                   J[(k + 1) % dim][(j + 2) % dim][i] * J[(k + 2) % dim][(j + 1) % dim][i];
47d4d45553Srezgarshakeri       }
48d4d45553Srezgarshakeri     }
49d4d45553Srezgarshakeri     const CeedScalar detJ = J[0][0][i] * A[0][0] + J[0][1][i] * A[0][1] + J[0][2][i] * A[0][2];
50d4d45553Srezgarshakeri     q_data[i]             = detJ * w[i];
51cb32e2e7SValeria Barra   }  // End of Quadrature Point Loop
52cb32e2e7SValeria Barra   return 0;
53cb32e2e7SValeria Barra }
54cb32e2e7SValeria Barra 
55e83e87a5Sjeremylt // -----------------------------------------------------------------------------
56ed264d09SValeria Barra // This QFunction sets up the rhs and true solution for the problem
57cb32e2e7SValeria Barra // -----------------------------------------------------------------------------
58*2b730f8bSJeremy L Thompson CEED_QFUNCTION(SetupMassRhs)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
59e83e87a5Sjeremylt   const CeedScalar *x = in[0], *w = in[1];
60cb32e2e7SValeria Barra   CeedScalar       *true_soln = out[0], *rhs = out[1];
61cb32e2e7SValeria Barra 
62cb32e2e7SValeria Barra   // Quadrature Point Loop
63*2b730f8bSJeremy L Thompson   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
64cb32e2e7SValeria Barra     true_soln[i] = sqrt(x[i] * x[i] + x[i + Q] * x[i + Q] + x[i + 2 * Q] * x[i + 2 * Q]);
65e83e87a5Sjeremylt     rhs[i]       = w[i] * true_soln[i];
66cb32e2e7SValeria Barra   }  // End of Quadrature Point Loop
67cb32e2e7SValeria Barra   return 0;
68cb32e2e7SValeria Barra }
69cb32e2e7SValeria Barra 
70e83e87a5Sjeremylt // -----------------------------------------------------------------------------
71ed264d09SValeria Barra // This QFunction applies the mass operator for a scalar field.
72ed264d09SValeria Barra //
73ed264d09SValeria Barra // Inputs:
74ed264d09SValeria Barra //   u     - Input vector at quadrature points
759b072555Sjeremylt //   q_data - Geometric factors
76ed264d09SValeria Barra //
77ed264d09SValeria Barra // Output:
78ed264d09SValeria Barra //   v     - Output vector (test functions) at quadrature points
79ed264d09SValeria Barra //
80cb32e2e7SValeria Barra // -----------------------------------------------------------------------------
81*2b730f8bSJeremy L Thompson CEED_QFUNCTION(Mass)(void *ctx, const CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
829b072555Sjeremylt   const CeedScalar *u = in[0], *q_data = in[1];
83cb32e2e7SValeria Barra   CeedScalar       *v = out[0];
84cb32e2e7SValeria Barra 
85cb32e2e7SValeria Barra   // Quadrature Point Loop
86*2b730f8bSJeremy L Thompson   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) v[i] = q_data[i] * u[i];
87cb32e2e7SValeria Barra 
88cb32e2e7SValeria Barra   return 0;
89cb32e2e7SValeria Barra }
90cb32e2e7SValeria Barra // -----------------------------------------------------------------------------
91f6b55d2cSvaleriabarra 
92f6b55d2cSvaleriabarra #endif  // bp1_h
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