xref: /petsc/src/mat/tests/ex155.c (revision b122ec5aa1bd4469eb4e0673542fb7de3f411254)
1 static char help[]="This program illustrates the use of PETSc-fftw interface for parallel real DFT\n";
2 #include <petscmat.h>
3 #include <fftw3-mpi.h>
4 /*extern PetscErrorCode MatCreateVecsFFT(Mat,Vec *,Vec *,Vec *);*/
5 int main(int argc,char **args)
6 {
7   PetscMPIInt    rank,size;
8   PetscInt       N0=4096,N1=4096,N2=256,N3=10,N4=10,N=N0*N1;
9   PetscRandom    rdm;
10   PetscReal      enorm;
11   Vec            x,y,z,input,output;
12   Mat            A;
13   PetscInt       DIM, dim[5],vsize,row,col;
14   PetscReal      fac;
15 
16   CHKERRQ(PetscInitialize(&argc,&args,(char*)0,help));
17   CHKERRMPI(MPI_Comm_size(PETSC_COMM_WORLD, &size));
18   CHKERRMPI(MPI_Comm_rank(PETSC_COMM_WORLD, &rank));
19 
20 #if defined(PETSC_USE_COMPLEX)
21   SETERRQ(PETSC_COMM_WORLD,PETSC_ERR_SUP, "Example for Real DFT. Your current data type is complex!");
22 #endif
23   CHKERRQ(PetscRandomCreate(PETSC_COMM_WORLD, &rdm));
24   CHKERRQ(PetscRandomSetFromOptions(rdm));
25   CHKERRQ(VecCreate(PETSC_COMM_WORLD,&input));
26   CHKERRQ(VecSetSizes(input,PETSC_DECIDE,N));
27   CHKERRQ(VecSetFromOptions(input));
28   CHKERRQ(VecSetRandom(input,rdm));
29   CHKERRQ(VecDuplicate(input,&output));
30 
31   DIM  = 2; dim[0] = N0; dim[1] = N1; dim[2] = N2; dim[3] = N3; dim[4] = N4;
32   CHKERRQ(MatCreateFFT(PETSC_COMM_WORLD,DIM,dim,MATFFTW,&A));
33   CHKERRQ(MatGetLocalSize(A,&row,&col));
34   printf("The Matrix size  is %d and %d from process %d\n",row,col,rank);
35   CHKERRQ(MatCreateVecsFFTW(A,&x,&y,&z));
36 
37   CHKERRQ(VecGetSize(x,&vsize));
38 
39   CHKERRQ(VecGetSize(z,&vsize));
40   printf("The vector size of output from the main routine is %d\n",vsize);
41 
42   CHKERRQ(VecScatterPetscToFFTW(A,input,x));
43   /*CHKERRQ(VecDestroy(&input));*/
44   CHKERRQ(MatMult(A,x,y));
45   CHKERRQ(MatMultTranspose(A,y,z));
46   CHKERRQ(VecScatterFFTWToPetsc(A,z,output));
47   /*CHKERRQ(VecDestroy(&z));*/
48   fac  = 1.0/(PetscReal)N;
49   CHKERRQ(VecScale(output,fac));
50 
51   CHKERRQ(VecAssemblyBegin(input));
52   CHKERRQ(VecAssemblyEnd(input));
53   CHKERRQ(VecAssemblyBegin(output));
54   CHKERRQ(VecAssemblyEnd(output));
55 
56 /*  CHKERRQ(VecView(input,PETSC_VIEWER_STDOUT_WORLD));*/
57 /*  CHKERRQ(VecView(output,PETSC_VIEWER_STDOUT_WORLD));*/
58 
59   CHKERRQ(VecAXPY(output,-1.0,input));
60   CHKERRQ(VecNorm(output,NORM_1,&enorm));
61   if (enorm > 1.e-14) {
62     CHKERRQ(PetscPrintf(PETSC_COMM_SELF,"  Error norm of |x - z| %e\n",enorm));
63   }
64 
65   CHKERRQ(VecDestroy(&x));
66   CHKERRQ(VecDestroy(&y));
67   CHKERRQ(VecDestroy(&z));
68   CHKERRQ(VecDestroy(&output));
69   CHKERRQ(VecDestroy(&input));
70   CHKERRQ(MatDestroy(&A));
71   CHKERRQ(PetscRandomDestroy(&rdm));
72   CHKERRQ(PetscFinalize());
73   return 0;
74 
75 }
76