xref: /libCEED/tests/t568-operator.c (revision ecc88aeb6e47c91d01ac230341895a796d10ab95)
1 /// @file
2 /// Test assembly of Poisson operator with extra input field (non-square D)
3 /// \test Test assembly of Poisson operator with extra input field (non-square D)
4 #include "t568-operator.h"
5 
6 #include <ceed.h>
7 #include <math.h>
8 #include <stdlib.h>
9 
10 int main(int argc, char **argv) {
11   Ceed                ceed;
12   CeedElemRestriction elem_restriction_x, elem_restriction_u, elem_restriction_q_data;
13   CeedBasis           basis_x, basis_u;
14   CeedQFunction       qf_setup, qf_diff;
15   CeedOperator        op_setup, op_diff;
16   CeedVector          q_data, x, u, v;
17   CeedInt             p = 3, q = 3, dim = 2, num_comp = 2;
18   CeedInt             n_x = 1, n_y = 1;
19   CeedInt             num_elem = n_x * n_y;
20   CeedInt             num_dofs = (n_x * (p - 1) + 1) * (n_y * (p - 1) + 1), num_qpts = num_elem * q * q;
21   CeedInt             ind_x[num_elem * p * p];
22   CeedScalar          assembled_values[num_comp * num_comp * num_dofs * num_dofs];
23   CeedScalar          assembled_true[num_comp * num_comp * num_dofs * num_dofs];
24 
25   CeedInit(argv[1], &ceed);
26 
27   // Vectors
28   CeedVectorCreate(ceed, dim * num_dofs, &x);
29   {
30     CeedScalar x_array[dim * num_dofs];
31 
32     for (CeedInt i = 0; i < n_x * (p - 1) + 1; i++) {
33       for (CeedInt j = 0; j < n_y * (p - 1) + 1; j++) {
34         x_array[i + j * (n_x * 2 + 1) + 0 * num_dofs] = (CeedScalar)i / (n_x * (p - 1));
35         x_array[i + j * (n_x * 2 + 1) + 1 * num_dofs] = (CeedScalar)j / (n_y * (p - 1));
36       }
37     }
38     CeedVectorSetArray(x, CEED_MEM_HOST, CEED_COPY_VALUES, x_array);
39   }
40   CeedVectorCreate(ceed, num_comp * num_dofs, &u);
41   CeedVectorCreate(ceed, num_comp * num_dofs, &v);
42   CeedVectorCreate(ceed, num_qpts * dim * (dim + 1) / 2, &q_data);
43 
44   // Restrictions
45   for (CeedInt i = 0; i < num_elem; i++) {
46     CeedInt col, row, offset;
47 
48     col    = i % n_x;
49     row    = i / n_x;
50     offset = col * (p - 1) + row * (n_x * (p - 1) + 1) * (p - 1);
51     for (CeedInt j = 0; j < p; j++) {
52       for (CeedInt k = 0; k < p; k++) ind_x[p * (p * i + k) + j] = offset + k * p + j;
53     }
54   }
55   CeedElemRestrictionCreate(ceed, num_elem, p * p, dim, num_dofs, dim * num_dofs, CEED_MEM_HOST, CEED_USE_POINTER, ind_x, &elem_restriction_x);
56   CeedElemRestrictionCreate(ceed, num_elem, p * p, num_comp, num_dofs, num_comp * num_dofs, CEED_MEM_HOST, CEED_USE_POINTER, ind_x,
57                             &elem_restriction_u);
58 
59   CeedInt strides_q_data[3] = {1, q * q * num_elem, q * q};
60   CeedElemRestrictionCreateStrided(ceed, num_elem, q * q, dim * (dim + 1) / 2, num_qpts * dim * (dim + 1) / 2, strides_q_data,
61                                    &elem_restriction_q_data);
62 
63   // Bases
64   CeedBasisCreateTensorH1Lagrange(ceed, dim, dim, p, q, CEED_GAUSS, &basis_x);
65   CeedBasisCreateTensorH1Lagrange(ceed, dim, num_comp, p, q, CEED_GAUSS, &basis_u);
66 
67   // QFunctions
68   CeedQFunctionCreateInterior(ceed, 1, setup, setup_loc, &qf_setup);
69   CeedQFunctionAddInput(qf_setup, "dx", dim * dim, CEED_EVAL_GRAD);
70   CeedQFunctionAddInput(qf_setup, "weight", 1, CEED_EVAL_WEIGHT);
71   CeedQFunctionAddOutput(qf_setup, "qdata", dim * (dim + 1) / 2, CEED_EVAL_NONE);
72 
73   CeedQFunctionCreateInterior(ceed, 1, diff, diff_loc, &qf_diff);
74   CeedQFunctionAddInput(qf_diff, "qdata", dim * (dim + 1) / 2, CEED_EVAL_NONE);
75   CeedQFunctionAddInput(qf_diff, "du", num_comp * dim, CEED_EVAL_GRAD);
76   CeedQFunctionAddInput(qf_diff, "dummy u", num_comp, CEED_EVAL_INTERP);
77   CeedQFunctionAddOutput(qf_diff, "dv", num_comp * dim, CEED_EVAL_GRAD);
78 
79   // Operators
80   CeedOperatorCreate(ceed, qf_setup, CEED_QFUNCTION_NONE, CEED_QFUNCTION_NONE, &op_setup);
81   CeedOperatorSetField(op_setup, "weight", CEED_ELEMRESTRICTION_NONE, basis_x, CEED_VECTOR_NONE);
82   CeedOperatorSetField(op_setup, "dx", elem_restriction_x, basis_x, CEED_VECTOR_ACTIVE);
83   CeedOperatorSetField(op_setup, "qdata", elem_restriction_q_data, CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE);
84 
85   CeedOperatorCreate(ceed, qf_diff, CEED_QFUNCTION_NONE, CEED_QFUNCTION_NONE, &op_diff);
86   CeedOperatorSetField(op_diff, "qdata", elem_restriction_q_data, CEED_BASIS_COLLOCATED, q_data);
87   CeedOperatorSetField(op_diff, "du", elem_restriction_u, basis_u, CEED_VECTOR_ACTIVE);
88   CeedOperatorSetField(op_diff, "dummy u", elem_restriction_u, basis_u, CEED_VECTOR_ACTIVE);
89   CeedOperatorSetField(op_diff, "dv", elem_restriction_u, basis_u, CEED_VECTOR_ACTIVE);
90 
91   // Apply Setup Operator
92   CeedOperatorApply(op_setup, x, q_data, CEED_REQUEST_IMMEDIATE);
93 
94   // Fuly assemble operator
95   CeedSize   num_entries;
96   CeedInt   *rows;
97   CeedInt   *cols;
98   CeedVector assembled;
99 
100   for (CeedInt k = 0; k < num_comp * num_comp * num_dofs * num_dofs; k++) {
101     assembled_values[k] = 0.0;
102     assembled_true[k]   = 0.0;
103   }
104   CeedOperatorLinearAssembleSymbolic(op_diff, &num_entries, &rows, &cols);
105   CeedVectorCreate(ceed, num_entries, &assembled);
106   CeedOperatorLinearAssemble(op_diff, assembled);
107   {
108     const CeedScalar *assembled_array;
109 
110     CeedVectorGetArrayRead(assembled, CEED_MEM_HOST, &assembled_array);
111     for (CeedInt k = 0; k < num_entries; k++) assembled_values[rows[k] * num_comp * num_dofs + cols[k]] += assembled_array[k];
112     CeedVectorRestoreArrayRead(assembled, &assembled_array);
113   }
114 
115   // Manually assemble operator
116   CeedInt old_index = -1;
117 
118   CeedVectorSetValue(u, 0.0);
119   for (CeedInt comp_in = 0; comp_in < num_comp; comp_in++) {
120     for (CeedInt node_in = 0; node_in < num_dofs; node_in++) {
121       CeedScalar       *u_array;
122       const CeedScalar *v_array;
123 
124       // Set input
125       CeedVectorGetArray(u, CEED_MEM_HOST, &u_array);
126       CeedInt ind  = node_in + comp_in * num_dofs;
127       u_array[ind] = 1.0;
128       if (ind > 0) u_array[old_index] = 0.0;
129       old_index = ind;
130       CeedVectorRestoreArray(u, &u_array);
131 
132       // Compute effect of DoF j
133       CeedOperatorApply(op_diff, u, v, CEED_REQUEST_IMMEDIATE);
134 
135       CeedVectorGetArrayRead(v, CEED_MEM_HOST, &v_array);
136       for (CeedInt k = 0; k < num_dofs * num_comp; k++) assembled_true[k * num_dofs * num_comp + ind] = v_array[k];
137       CeedVectorRestoreArrayRead(v, &v_array);
138     }
139   }
140 
141   // Check output
142   for (CeedInt node_in = 0; node_in < num_dofs; node_in++) {
143     for (CeedInt comp_in = 0; comp_in < num_comp; comp_in++) {
144       for (CeedInt node_out = 0; node_out < num_dofs; node_out++) {
145         for (CeedInt comp_out = 0; comp_out < num_comp; comp_out++) {
146           const CeedInt    index                = (node_out + comp_out * num_dofs) * num_comp + node_in + comp_in * num_dofs;
147           const CeedScalar assembled_value      = assembled_values[index];
148           const CeedScalar assembled_true_value = assembled_true[index];
149           if (!(fabs(assembled_value - assembled_true_value) < 100. * CEED_EPSILON)) {
150             // LCOV_EXCL_START
151             printf("[(%" CeedInt_FMT ", %" CeedInt_FMT "), (%" CeedInt_FMT ", %" CeedInt_FMT ")] Error in assembly: %f != %f\n", node_out, comp_out,
152                    node_in, comp_in, assembled_value, assembled_true_value);
153             // LCOV_EXCL_STOP
154           }
155         }
156       }
157     }
158   }
159 
160   // Cleanup
161   free(rows);
162   free(cols);
163   CeedVectorDestroy(&x);
164   CeedVectorDestroy(&q_data);
165   CeedVectorDestroy(&u);
166   CeedVectorDestroy(&v);
167   CeedVectorDestroy(&assembled);
168   CeedElemRestrictionDestroy(&elem_restriction_u);
169   CeedElemRestrictionDestroy(&elem_restriction_x);
170   CeedElemRestrictionDestroy(&elem_restriction_q_data);
171   CeedBasisDestroy(&basis_u);
172   CeedBasisDestroy(&basis_x);
173   CeedQFunctionDestroy(&qf_setup);
174   CeedQFunctionDestroy(&qf_diff);
175   CeedOperatorDestroy(&op_setup);
176   CeedOperatorDestroy(&op_diff);
177   CeedDestroy(&ceed);
178   return 0;
179 }
180