Actual source code: ex3.c
1: static char help[] = "Demonstrates the use of fast Richardson for SOR. And\n\
2: also tests the MatSOR() routines. Input parameters are:\n\
3: -n <n> : problem dimension\n\n";
5: #include <petscksp.h>
6: #include <petscpc.h>
8: int main(int argc, char **args)
9: {
10: Mat mat; /* matrix */
11: Vec b, ustar, u; /* vectors (RHS, exact solution, approx solution) */
12: PC pc; /* PC context */
13: KSP ksp; /* KSP context */
14: PetscInt n = 10, i, its, col[3];
15: PetscScalar value[3];
16: KSPType kspname;
17: PCType pcname;
19: PetscFunctionBeginUser;
20: PetscCall(PetscInitialize(&argc, &args, NULL, help));
21: PetscCall(PetscOptionsGetInt(NULL, NULL, "-n", &n, NULL));
23: /* Create and initialize vectors */
24: PetscCall(VecCreateSeq(PETSC_COMM_SELF, n, &b));
25: PetscCall(VecCreateSeq(PETSC_COMM_SELF, n, &ustar));
26: PetscCall(VecCreateSeq(PETSC_COMM_SELF, n, &u));
27: PetscCall(VecSet(ustar, 1.0));
29: /* Create and assemble matrix */
30: PetscCall(MatCreate(PETSC_COMM_SELF, &mat));
31: PetscCall(MatSetType(mat, MATSEQAIJ));
32: PetscCall(MatSetSizes(mat, n, n, n, n));
33: PetscCall(MatSetFromOptions(mat));
34: PetscCall(MatSeqAIJSetPreallocation(mat, 3, NULL));
35: PetscCall(MatSeqBAIJSetPreallocation(mat, 1, 3, NULL));
36: PetscCall(MatSeqSBAIJSetPreallocation(mat, 1, 3, NULL));
37: PetscCall(MatSeqSELLSetPreallocation(mat, 3, NULL));
38: value[0] = -1.0;
39: value[1] = 2.0;
40: value[2] = -1.0;
41: for (i = 1; i < n - 1; i++) {
42: col[0] = i - 1;
43: col[1] = i;
44: col[2] = i + 1;
45: PetscCall(MatSetValues(mat, 1, &i, 3, col, value, INSERT_VALUES));
46: }
47: i = n - 1;
48: col[0] = n - 2;
49: col[1] = n - 1;
50: PetscCall(MatSetValues(mat, 1, &i, 2, col, value, INSERT_VALUES));
51: i = 0;
52: col[0] = 0;
53: col[1] = 1;
54: value[0] = 2.0;
55: value[1] = -1.0;
56: PetscCall(MatSetValues(mat, 1, &i, 2, col, value, INSERT_VALUES));
57: PetscCall(MatAssemblyBegin(mat, MAT_FINAL_ASSEMBLY));
58: PetscCall(MatAssemblyEnd(mat, MAT_FINAL_ASSEMBLY));
60: /* Compute right-hand-side vector */
61: PetscCall(MatMult(mat, ustar, b));
63: /* Create PC context and set up data structures */
64: PetscCall(PCCreate(PETSC_COMM_WORLD, &pc));
65: PetscCall(PCSetType(pc, PCNONE));
66: PetscCall(PCSetFromOptions(pc));
67: PetscCall(PCSetOperators(pc, mat, mat));
68: PetscCall(PCSetUp(pc));
70: /* Create KSP context and set up data structures */
71: PetscCall(KSPCreate(PETSC_COMM_WORLD, &ksp));
72: PetscCall(KSPSetType(ksp, KSPRICHARDSON));
73: PetscCall(KSPSetFromOptions(ksp));
74: PetscCall(PCSetOperators(pc, mat, mat));
75: PetscCall(KSPSetPC(ksp, pc));
76: PetscCall(KSPSetUp(ksp));
78: /* Solve the problem */
79: PetscCall(KSPGetType(ksp, &kspname));
80: PetscCall(PCGetType(pc, &pcname));
81: PetscCall(PetscPrintf(PETSC_COMM_SELF, "Running %s with %s preconditioning\n", kspname, pcname));
82: PetscCall(KSPSolve(ksp, b, u));
83: PetscCall(KSPGetIterationNumber(ksp, &its));
84: PetscCall(PetscPrintf(PETSC_COMM_WORLD, "Number of iterations %" PetscInt_FMT "\n", its));
86: /* Free data structures */
87: PetscCall(KSPDestroy(&ksp));
88: PetscCall(VecDestroy(&u));
89: PetscCall(VecDestroy(&ustar));
90: PetscCall(VecDestroy(&b));
91: PetscCall(MatDestroy(&mat));
92: PetscCall(PCDestroy(&pc));
93: PetscCall(PetscFinalize());
94: return 0;
95: }
97: /*TEST
99: testset:
100: args: -ksp_type gmres -ksp_monitor -pc_type sor -pc_sor_symmetric
101: output_file: output/ex3_1.out
102: test:
103: suffix: sor_aij
104: test:
105: suffix: sor_seqbaij
106: args: -mat_type seqbaij
107: test:
108: suffix: sor_seqsbaij
109: args: -mat_type seqsbaij
110: test:
111: suffix: sor_seqsell
112: args: -mat_type seqsell
114: TEST*/