xref: /petsc/src/mat/utils/convert.c (revision 78b31e5415da8002fdf1e4c89af509906889cf86)
156fe5c5cSLois Curfman McInnes #ifndef lint
2*78b31e54SBarry Smith static char vcid[] = "$Id: convert.c,v 1.18 1995/05/23 14:28:24 curfman Exp bsmith $";
356fe5c5cSLois Curfman McInnes #endif
456fe5c5cSLois Curfman McInnes 
556fe5c5cSLois Curfman McInnes /* Matrix conversion routines.  For now, this supports only AIJ */
656fe5c5cSLois Curfman McInnes 
756fe5c5cSLois Curfman McInnes #include "mpiaij.h"
8edd2f0e1SBarry Smith #define  ABS(a) ((a > 0) ? a : -a)
956fe5c5cSLois Curfman McInnes 
10f3ba505bSLois Curfman McInnes /* Determines the block diagonals within a subset of a matrix */
11f3ba505bSLois Curfman McInnes /* For now this is just sequential -- not parallel */
12f3ba505bSLois Curfman McInnes 
13f3ba505bSLois Curfman McInnes /*
14f3ba505bSLois Curfman McInnes    MatDetermineDiagonals_Private - Determines the diagonal structure
15f3ba505bSLois Curfman McInnes    of a matrix.
16f3ba505bSLois Curfman McInnes 
17f3ba505bSLois Curfman McInnes    Input Parameters:
18f3ba505bSLois Curfman McInnes .  mat - the matrix
19f3ba505bSLois Curfman McInnes .  nb - block size
20f3ba505bSLois Curfman McInnes .  irows - rows to use
21f3ba505bSLois Curfman McInnes .  icols - columns to use
22f3ba505bSLois Curfman McInnes 
23f3ba505bSLois Curfman McInnes    Output Parameters:
24f3ba505bSLois Curfman McInnes .  ndiag - number of diagonals
25f3ba505bSLois Curfman McInnes .  diagonals - the diagonal numbers
26f3ba505bSLois Curfman McInnes 
27f3ba505bSLois Curfman McInnes    Note:  The user must free the diagonals array.
28f3ba505bSLois Curfman McInnes  */
29f3ba505bSLois Curfman McInnes 
30f3ba505bSLois Curfman McInnes int MatDetermineDiagonals_Private(Mat mat,int nb,int newr,int newc,
31f3ba505bSLois Curfman McInnes             int *rowrange, int *colrange,int *ndiag, int **diagonals)
32f3ba505bSLois Curfman McInnes {
33f3ba505bSLois Curfman McInnes   int    nd, clast, cfirst, ierr, nnc, maxd, nz, *col, *cwork, *diag;
34f3ba505bSLois Curfman McInnes   int    i, j, k, jdiag, cshift, row, dnew, temp;
35f3ba505bSLois Curfman McInnes   Scalar *v;
36f3ba505bSLois Curfman McInnes 
37f3ba505bSLois Curfman McInnes   VALIDHEADER(mat,MAT_COOKIE);
38*78b31e54SBarry Smith   if ((newr%nb) || (newc%nb)) SETERRQ(1,"Invalid block size.");
39f3ba505bSLois Curfman McInnes   cfirst = colrange[0];
40f3ba505bSLois Curfman McInnes   clast  = colrange[newc-1];
41f3ba505bSLois Curfman McInnes   nnc    = clast - cfirst + 1;
42*78b31e54SBarry Smith   cwork  = (int *) PETSCMALLOC( nnc * sizeof(int) );	CHKPTRQ(cwork);
43f3ba505bSLois Curfman McInnes   for (i=0; i<nnc; i++)  cwork[i] = -1;
44f3ba505bSLois Curfman McInnes   for (i=0; i<newc; i++) cwork[colrange[i]-cfirst] = i;
45f3ba505bSLois Curfman McInnes 
46f3ba505bSLois Curfman McInnes   /* Determine which diagonals exist:  compute nd, diag[]: */
47f3ba505bSLois Curfman McInnes   /* Temporarily ssume diag[0] = 0 (main diagonal) */
48f3ba505bSLois Curfman McInnes   maxd = newr + newc - 1;	/* maximum possible diagonals */
49*78b31e54SBarry Smith   diag = (int *)PETSCMALLOC( maxd * sizeof(int) );	CHKPTRQ(diag);
50f3ba505bSLois Curfman McInnes   nd = 1;
51f3ba505bSLois Curfman McInnes   for (i=0; i<maxd; i++) diag[i] = 0;
52f3ba505bSLois Curfman McInnes   for (i=0; i<newr; i++) {
53*78b31e54SBarry Smith     ierr = MatGetRow( mat, rowrange[i], &nz, &col, &v ); CHKERRQ(ierr);
54f3ba505bSLois Curfman McInnes     row = i;
55f3ba505bSLois Curfman McInnes     j   = 0;
56f3ba505bSLois Curfman McInnes     /* Skip values until we reach the first column */
57f3ba505bSLois Curfman McInnes     while (j < nz && col[j] < cfirst) j++;
58f3ba505bSLois Curfman McInnes     while (j < nz) {
59f3ba505bSLois Curfman McInnes       if (clast < col[j]) break;
60f3ba505bSLois Curfman McInnes       cshift = cwork[col[j] - cfirst];
61f3ba505bSLois Curfman McInnes       if (cshift >= 0) {
62f3ba505bSLois Curfman McInnes         /* Determine if diagonal block already exits for valid colum */
63f3ba505bSLois Curfman McInnes         dnew = 1;
64f3ba505bSLois Curfman McInnes         jdiag = row/nb - cshift/nb;
65f3ba505bSLois Curfman McInnes         for (k=0; k<nd; k++) {
66f3ba505bSLois Curfman McInnes           if (diag[k] == jdiag) {	/* diagonal exists */
67f3ba505bSLois Curfman McInnes             dnew = 0;	break;
68f3ba505bSLois Curfman McInnes           }
69f3ba505bSLois Curfman McInnes         }
70f3ba505bSLois Curfman McInnes         if (dnew) {
71f3ba505bSLois Curfman McInnes 	  diag[nd] = jdiag;
72f3ba505bSLois Curfman McInnes 	  nd++;
73edd2f0e1SBarry Smith           if (ABS(jdiag) > newr/nb)
74f3ba505bSLois Curfman McInnes              { printf("ERROR jdiag\n"); }
75f3ba505bSLois Curfman McInnes         }
76f3ba505bSLois Curfman McInnes       }
77f3ba505bSLois Curfman McInnes       j++;
78f3ba505bSLois Curfman McInnes     }
79*78b31e54SBarry Smith     ierr = MatRestoreRow( mat, rowrange[i], &nz, &col, &v ); CHKERRQ(ierr);
80f3ba505bSLois Curfman McInnes   }
81f3ba505bSLois Curfman McInnes   /* Sort diagonals in decreasing order. */
82f3ba505bSLois Curfman McInnes   for (k=0; k<nd; k++) {
83f3ba505bSLois Curfman McInnes     for (j=k+1; j<nd; j++) {
84f3ba505bSLois Curfman McInnes       if (diag[k] < diag[j]) {
85f3ba505bSLois Curfman McInnes         temp = diag[k];
86f3ba505bSLois Curfman McInnes         diag[k] = diag[j];
87f3ba505bSLois Curfman McInnes         diag[j] = temp;
88f3ba505bSLois Curfman McInnes       }
89f3ba505bSLois Curfman McInnes     }
90f3ba505bSLois Curfman McInnes   }
91*78b31e54SBarry Smith   PETSCFREE( cwork );
92f3ba505bSLois Curfman McInnes   *ndiag = nd;
93f3ba505bSLois Curfman McInnes   *diagonals = diag;
94f3ba505bSLois Curfman McInnes   return 0;
95f3ba505bSLois Curfman McInnes }
96f3ba505bSLois Curfman McInnes 
9756fe5c5cSLois Curfman McInnes /*
9844ae05bdSLois Curfman McInnes   MatConvert_AIJ - Converts from MATAIJ format to another format. For
9944ae05bdSLois Curfman McInnes   parallel formats, the new matrix distribution is determined by PETSc.
10056fe5c5cSLois Curfman McInnes  */
1015c378462SLois Curfman McInnes int MatConvert_AIJ(Mat mat, MatType newtype, Mat *newmat)
10256fe5c5cSLois Curfman McInnes {
1031fb19edaSLois Curfman McInnes   Mat_AIJ *aij = (Mat_AIJ *) mat->data;
10456fe5c5cSLois Curfman McInnes   Scalar  *vwork;
10544ae05bdSLois Curfman McInnes   int     i, ierr, nz, m = aij->m, n = aij->n, *cwork, rstart, rend;
10656fe5c5cSLois Curfman McInnes 
107*78b31e54SBarry Smith   if (mat->type != MATAIJ) SETERRQ(1,"Input matrix must be MATAIJ.");
10856fe5c5cSLois Curfman McInnes   switch (newtype) {
1091fb19edaSLois Curfman McInnes     case MATROW:
1106b5873e3SBarry Smith       ierr = MatCreateSequentialRow(mat->comm,m,n,0,aij->ilen,newmat);
111*78b31e54SBarry Smith       CHKERRQ(ierr); break;
11244ae05bdSLois Curfman McInnes     case MATMPIROW:
11344ae05bdSLois Curfman McInnes       ierr = MatCreateMPIRow(MPI_COMM_WORLD,PETSC_DECIDE,PETSC_DECIDE,
11444ae05bdSLois Curfman McInnes              m,n,0,0,0,0,newmat); /* Could do smarter memory allocation */
115*78b31e54SBarry Smith       CHKERRQ(ierr); break;
11644ae05bdSLois Curfman McInnes     case MATMPIAIJ:
11744ae05bdSLois Curfman McInnes       ierr = MatCreateMPIAIJ(MPI_COMM_WORLD,PETSC_DECIDE,PETSC_DECIDE,
11844ae05bdSLois Curfman McInnes              m,n,0,0,0,0,newmat); /* Could do smarter memory allocation */
119*78b31e54SBarry Smith       CHKERRQ(ierr); break;
1201fb19edaSLois Curfman McInnes     case MATDENSE:
1216b5873e3SBarry Smith       ierr = MatCreateSequentialDense(mat->comm,m,n,newmat);
122*78b31e54SBarry Smith       CHKERRQ(ierr); break;
123f3ba505bSLois Curfman McInnes     case MATBDIAG:
124f3ba505bSLois Curfman McInnes     { int nb = 1; /* Default block size = 1 */
125f3ba505bSLois Curfman McInnes       int ndiag, *diag, *rr, *cr;
126*78b31e54SBarry Smith       rr = (int *) PETSCMALLOC( (m+n) * sizeof(int) ); CHKPTRQ(rr);
127f3ba505bSLois Curfman McInnes       cr = rr + m;
128f3ba505bSLois Curfman McInnes       for (i=0; i<m; i++) rr[i] = i;
129f3ba505bSLois Curfman McInnes       for (i=0; i<n; i++) cr[i] = i;
130df60cc22SBarry Smith       OptionsGetInt(0,"-mat_bdiag_bsize",&nb);
131f3ba505bSLois Curfman McInnes       ierr = MatDetermineDiagonals_Private(mat,nb,m,n,rr,cr,&ndiag,&diag);
132*78b31e54SBarry Smith       CHKERRQ(ierr);
133f3ba505bSLois Curfman McInnes       ierr = MatCreateSequentialBDiag(mat->comm,m,n,ndiag,nb,diag,0,newmat);
134*78b31e54SBarry Smith       CHKERRQ(ierr);
135*78b31e54SBarry Smith       PETSCFREE(rr), PETSCFREE(diag);
13644ae05bdSLois Curfman McInnes       break;
13744ae05bdSLois Curfman McInnes     }
13844ae05bdSLois Curfman McInnes     case MATMPIBDIAG:
13944ae05bdSLois Curfman McInnes     { int nb = 1; /* Default block size = 1 */
14044ae05bdSLois Curfman McInnes       int ndiag, *diag, *rr, *cr;
141*78b31e54SBarry Smith       rr = (int *) PETSCMALLOC( (m+n) * sizeof(int) ); CHKPTRQ(rr);
14244ae05bdSLois Curfman McInnes       cr = rr + m;
14344ae05bdSLois Curfman McInnes       for (i=0; i<m; i++) rr[i] = i;
14444ae05bdSLois Curfman McInnes       for (i=0; i<n; i++) cr[i] = i;
14544ae05bdSLois Curfman McInnes       OptionsGetInt(0,"-mat_bdiag_bsize",&nb);
14644ae05bdSLois Curfman McInnes       ierr = MatDetermineDiagonals_Private(mat,nb,m,n,rr,cr,&ndiag,&diag);
147*78b31e54SBarry Smith       CHKERRQ(ierr);
14844ae05bdSLois Curfman McInnes       ierr = MatCreateMPIBDiag(MPI_COMM_WORLD,PETSC_DECIDE,m,n,ndiag,nb,
149*78b31e54SBarry Smith              diag,0,newmat); CHKERRQ(ierr);
150*78b31e54SBarry Smith       PETSCFREE(rr), PETSCFREE(diag);
151*78b31e54SBarry Smith       CHKERRQ(ierr); break;
15256fe5c5cSLois Curfman McInnes     }
153f3ba505bSLois Curfman McInnes     default:
154*78b31e54SBarry Smith       SETERRQ(1,"Matrix type is not currently supported.");
155f3ba505bSLois Curfman McInnes   }
156*78b31e54SBarry Smith   ierr = MatGetOwnershipRange(*newmat,&rstart,&rend); CHKERRQ(ierr);
15744ae05bdSLois Curfman McInnes   for (i=rstart; i<rend; i++) {
158*78b31e54SBarry Smith     ierr = MatGetRow(mat,i,&nz,&cwork,&vwork); CHKERRQ(ierr);
159edae2e7dSBarry Smith     ierr = MatSetValues(*newmat,1,&i,nz,cwork,vwork,INSERTVALUES);
160*78b31e54SBarry Smith            CHKERRQ(ierr);
161*78b31e54SBarry Smith     ierr = MatRestoreRow(mat,i,&nz,&cwork,&vwork); CHKERRQ(ierr);
16256fe5c5cSLois Curfman McInnes   }
163*78b31e54SBarry Smith   ierr = MatAssemblyBegin(*newmat,FINAL_ASSEMBLY); CHKERRQ(ierr);
164*78b31e54SBarry Smith   ierr = MatAssemblyEnd(*newmat,FINAL_ASSEMBLY); CHKERRQ(ierr);
16556fe5c5cSLois Curfman McInnes   return 0;
16656fe5c5cSLois Curfman McInnes }
16756fe5c5cSLois Curfman McInnes /* ------------------------------------------------------------------ */
16856fe5c5cSLois Curfman McInnes /*
1691fb19edaSLois Curfman McInnes   MatConvert_MPIAIJ - Converts from MATMPIAIJ format to another
17056fe5c5cSLois Curfman McInnes   parallel format.
17156fe5c5cSLois Curfman McInnes  */
1725c378462SLois Curfman McInnes int MatConvert_MPIAIJ(Mat mat, MatType newtype, Mat *newmat)
17356fe5c5cSLois Curfman McInnes {
1741fb19edaSLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
175abc0e9e4SLois Curfman McInnes   Mat_AIJ    *Ad = (Mat_AIJ *)(aij->A->data), *Bd = (Mat_AIJ *)(aij->B->data);
176abc0e9e4SLois Curfman McInnes   int        ierr, nz, i, ig,rstart = aij->rstart, m = aij->m, *cwork;
17756fe5c5cSLois Curfman McInnes   Scalar     *vwork;
17856fe5c5cSLois Curfman McInnes 
179*78b31e54SBarry Smith   if (mat->type != MATMPIAIJ) SETERRQ(1,"Input matrix must be MATMPIAIJ.");
18056fe5c5cSLois Curfman McInnes   switch (newtype) {
1811fb19edaSLois Curfman McInnes     case MATMPIROW:
18256fe5c5cSLois Curfman McInnes       for (i=0; i<m; i++)
1832eb8c8abSBarry Smith         {ierr = MatCreateMPIRow(mat->comm,m,aij->n,aij->M,aij->N,0,Ad->ilen,
184*78b31e54SBarry Smith 			0,Bd->ilen,newmat); CHKERRQ(ierr); }
185abc0e9e4SLois Curfman McInnes       break;
18656fe5c5cSLois Curfman McInnes     default:
187*78b31e54SBarry Smith       SETERRQ(1,"Only MATMPIROW is currently suported.");
18856fe5c5cSLois Curfman McInnes   }
189abc0e9e4SLois Curfman McInnes   /* Each processor converts its local rows */
19056fe5c5cSLois Curfman McInnes   for (i=0; i<m; i++) {
19156fe5c5cSLois Curfman McInnes     ig   = i + rstart;
192*78b31e54SBarry Smith     ierr = MatGetRow(mat,ig,&nz,&cwork,&vwork);	CHKERRQ(ierr);
19356fe5c5cSLois Curfman McInnes     ierr = MatSetValues(*newmat,1,&ig,nz,cwork,vwork,
194*78b31e54SBarry Smith 		INSERTVALUES); CHKERRQ(ierr);
195*78b31e54SBarry Smith     ierr = MatRestoreRow(mat,ig,&nz,&cwork,&vwork); CHKERRQ(ierr);
19656fe5c5cSLois Curfman McInnes   }
197*78b31e54SBarry Smith   ierr = MatAssemblyBegin(*newmat,FINAL_ASSEMBLY); CHKERRQ(ierr);
198*78b31e54SBarry Smith   ierr = MatAssemblyEnd(*newmat,FINAL_ASSEMBLY); CHKERRQ(ierr);
19956fe5c5cSLois Curfman McInnes   return 0;
20056fe5c5cSLois Curfman McInnes }
201