xref: /petsc/src/mat/impls/aij/mpi/mpiaij.c (revision 0752156a28ac8f8e9dfaef7ce98457a01bf27fb6)
1a5eb4965SSatish Balay #ifdef PETSC_RCS_HEADER
2*0752156aSBarry Smith static char vcid[] = "$Id: mpiaij.c,v 1.215 1997/09/11 20:39:34 bsmith Exp bsmith $";
3cb512458SBarry Smith #endif
48a729477SBarry Smith 
53369ce9aSBarry Smith #include "pinclude/pviewer.h"
670f55243SBarry Smith #include "src/mat/impls/aij/mpi/mpiaij.h"
7f5eb4b81SSatish Balay #include "src/vec/vecimpl.h"
8d9942c19SSatish Balay #include "src/inline/spops.h"
98a729477SBarry Smith 
109e25ed09SBarry Smith /* local utility routine that creates a mapping from the global column
119e25ed09SBarry Smith number to the local number in the off-diagonal part of the local
129e25ed09SBarry Smith storage of the matrix.  This is done in a non scable way since the
139e25ed09SBarry Smith length of colmap equals the global matrix length.
149e25ed09SBarry Smith */
155615d1e5SSatish Balay #undef __FUNC__
16d4bb536fSBarry Smith #define __FUNC__ "CreateColmap_MPIAIJ_Private"
170a198c4cSBarry Smith int CreateColmap_MPIAIJ_Private(Mat mat)
189e25ed09SBarry Smith {
1944a69424SLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
20ec8511deSBarry Smith   Mat_SeqAIJ *B = (Mat_SeqAIJ*) aij->B->data;
21905e6a2fSBarry Smith   int        n = B->n,i;
22dbb450caSBarry Smith 
23758f045eSSatish Balay   aij->colmap = (int *) PetscMalloc((aij->N+1)*sizeof(int));CHKPTRQ(aij->colmap);
24464493b3SBarry Smith   PLogObjectMemory(mat,aij->N*sizeof(int));
25cddf8d76SBarry Smith   PetscMemzero(aij->colmap,aij->N*sizeof(int));
26905e6a2fSBarry Smith   for ( i=0; i<n; i++ ) aij->colmap[aij->garray[i]] = i+1;
279e25ed09SBarry Smith   return 0;
289e25ed09SBarry Smith }
299e25ed09SBarry Smith 
302493cbb0SBarry Smith extern int DisAssemble_MPIAIJ(Mat);
312493cbb0SBarry Smith 
320520107fSSatish Balay #define CHUNKSIZE   15
3330770e4dSSatish Balay #define MatSetValues_SeqAIJ_A_Private(row,col,value,addv) \
340520107fSSatish Balay { \
350520107fSSatish Balay  \
360520107fSSatish Balay     rp   = aj + ai[row] + shift; ap = aa + ai[row] + shift; \
3730770e4dSSatish Balay     rmax = aimax[row]; nrow = ailen[row];  \
38f5e9677aSSatish Balay     col1 = col - shift; \
39f5e9677aSSatish Balay      \
40ba4e3ef2SSatish Balay     low = 0; high = nrow; \
41ba4e3ef2SSatish Balay     while (high-low > 5) { \
42ba4e3ef2SSatish Balay       t = (low+high)/2; \
43ba4e3ef2SSatish Balay       if (rp[t] > col) high = t; \
44ba4e3ef2SSatish Balay       else             low  = t; \
45ba4e3ef2SSatish Balay     } \
460520107fSSatish Balay       for ( _i=0; _i<nrow; _i++ ) { \
47f5e9677aSSatish Balay         if (rp[_i] > col1) break; \
48f5e9677aSSatish Balay         if (rp[_i] == col1) { \
490520107fSSatish Balay           if (addv == ADD_VALUES) ap[_i] += value;   \
500520107fSSatish Balay           else                  ap[_i] = value; \
5130770e4dSSatish Balay           goto a_noinsert; \
520520107fSSatish Balay         } \
530520107fSSatish Balay       }  \
5489280ab3SLois Curfman McInnes       if (nonew == 1) goto a_noinsert; \
5511ebbc71SLois Curfman McInnes       else if (nonew == -1) SETERRQ(1,0,"Inserting a new nonzero in the matrix"); \
560520107fSSatish Balay       if (nrow >= rmax) { \
570520107fSSatish Balay         /* there is no extra room in row, therefore enlarge */ \
580520107fSSatish Balay         int    new_nz = ai[a->m] + CHUNKSIZE,len,*new_i,*new_j; \
590520107fSSatish Balay         Scalar *new_a; \
600520107fSSatish Balay  \
6111ebbc71SLois Curfman McInnes         if (nonew == -2) SETERRQ(1,0,"Inserting a new nonzero in the matrix"); \
6289280ab3SLois Curfman McInnes  \
630520107fSSatish Balay         /* malloc new storage space */ \
640520107fSSatish Balay         len     = new_nz*(sizeof(int)+sizeof(Scalar))+(a->m+1)*sizeof(int); \
650520107fSSatish Balay         new_a   = (Scalar *) PetscMalloc( len ); CHKPTRQ(new_a); \
660520107fSSatish Balay         new_j   = (int *) (new_a + new_nz); \
670520107fSSatish Balay         new_i   = new_j + new_nz; \
680520107fSSatish Balay  \
690520107fSSatish Balay         /* copy over old data into new slots */ \
700520107fSSatish Balay         for ( ii=0; ii<row+1; ii++ ) {new_i[ii] = ai[ii];} \
710520107fSSatish Balay         for ( ii=row+1; ii<a->m+1; ii++ ) {new_i[ii] = ai[ii]+CHUNKSIZE;} \
720520107fSSatish Balay         PetscMemcpy(new_j,aj,(ai[row]+nrow+shift)*sizeof(int)); \
730520107fSSatish Balay         len = (new_nz - CHUNKSIZE - ai[row] - nrow - shift); \
740520107fSSatish Balay         PetscMemcpy(new_j+ai[row]+shift+nrow+CHUNKSIZE,aj+ai[row]+shift+nrow, \
750520107fSSatish Balay                                                            len*sizeof(int)); \
760520107fSSatish Balay         PetscMemcpy(new_a,aa,(ai[row]+nrow+shift)*sizeof(Scalar)); \
770520107fSSatish Balay         PetscMemcpy(new_a+ai[row]+shift+nrow+CHUNKSIZE,aa+ai[row]+shift+nrow, \
780520107fSSatish Balay                                                            len*sizeof(Scalar));  \
790520107fSSatish Balay         /* free up old matrix storage */ \
80f5e9677aSSatish Balay  \
810520107fSSatish Balay         PetscFree(a->a);  \
820520107fSSatish Balay         if (!a->singlemalloc) {PetscFree(a->i);PetscFree(a->j);} \
830520107fSSatish Balay         aa = a->a = new_a; ai = a->i = new_i; aj = a->j = new_j;  \
840520107fSSatish Balay         a->singlemalloc = 1; \
850520107fSSatish Balay  \
860520107fSSatish Balay         rp   = aj + ai[row] + shift; ap = aa + ai[row] + shift; \
8730770e4dSSatish Balay         rmax = aimax[row] = aimax[row] + CHUNKSIZE; \
880520107fSSatish Balay         PLogObjectMemory(A,CHUNKSIZE*(sizeof(int) + sizeof(Scalar))); \
890520107fSSatish Balay         a->maxnz += CHUNKSIZE; \
900520107fSSatish Balay         a->reallocs++; \
910520107fSSatish Balay       } \
920520107fSSatish Balay       N = nrow++ - 1; a->nz++; \
930520107fSSatish Balay       /* shift up all the later entries in this row */ \
940520107fSSatish Balay       for ( ii=N; ii>=_i; ii-- ) { \
950520107fSSatish Balay         rp[ii+1] = rp[ii]; \
960520107fSSatish Balay         ap[ii+1] = ap[ii]; \
970520107fSSatish Balay       } \
98f5e9677aSSatish Balay       rp[_i] = col1;  \
990520107fSSatish Balay       ap[_i] = value;  \
10030770e4dSSatish Balay       a_noinsert: ; \
1010520107fSSatish Balay       ailen[row] = nrow; \
1020520107fSSatish Balay }
1030a198c4cSBarry Smith 
10430770e4dSSatish Balay #define MatSetValues_SeqAIJ_B_Private(row,col,value,addv) \
10530770e4dSSatish Balay { \
10630770e4dSSatish Balay  \
10730770e4dSSatish Balay     rp   = bj + bi[row] + shift; ap = ba + bi[row] + shift; \
10830770e4dSSatish Balay     rmax = bimax[row]; nrow = bilen[row];  \
10930770e4dSSatish Balay     col1 = col - shift; \
11030770e4dSSatish Balay      \
111ba4e3ef2SSatish Balay     low = 0; high = nrow; \
112ba4e3ef2SSatish Balay     while (high-low > 5) { \
113ba4e3ef2SSatish Balay       t = (low+high)/2; \
114ba4e3ef2SSatish Balay       if (rp[t] > col) high = t; \
115ba4e3ef2SSatish Balay       else             low  = t; \
116ba4e3ef2SSatish Balay     } \
11730770e4dSSatish Balay        for ( _i=0; _i<nrow; _i++ ) { \
11830770e4dSSatish Balay         if (rp[_i] > col1) break; \
11930770e4dSSatish Balay         if (rp[_i] == col1) { \
12030770e4dSSatish Balay           if (addv == ADD_VALUES) ap[_i] += value;   \
12130770e4dSSatish Balay           else                  ap[_i] = value; \
12230770e4dSSatish Balay           goto b_noinsert; \
12330770e4dSSatish Balay         } \
12430770e4dSSatish Balay       }  \
12589280ab3SLois Curfman McInnes       if (nonew == 1) goto b_noinsert; \
12611ebbc71SLois Curfman McInnes       else if (nonew == -1) SETERRQ(1,0,"Inserting a new nonzero in the matrix"); \
12730770e4dSSatish Balay       if (nrow >= rmax) { \
12830770e4dSSatish Balay         /* there is no extra room in row, therefore enlarge */ \
12974c639caSSatish Balay         int    new_nz = bi[b->m] + CHUNKSIZE,len,*new_i,*new_j; \
13030770e4dSSatish Balay         Scalar *new_a; \
13130770e4dSSatish Balay  \
13211ebbc71SLois Curfman McInnes         if (nonew == -2) SETERRQ(1,0,"Inserting a new nonzero in the matrix"); \
13389280ab3SLois Curfman McInnes  \
13430770e4dSSatish Balay         /* malloc new storage space */ \
13574c639caSSatish Balay         len     = new_nz*(sizeof(int)+sizeof(Scalar))+(b->m+1)*sizeof(int); \
13630770e4dSSatish Balay         new_a   = (Scalar *) PetscMalloc( len ); CHKPTRQ(new_a); \
13730770e4dSSatish Balay         new_j   = (int *) (new_a + new_nz); \
13830770e4dSSatish Balay         new_i   = new_j + new_nz; \
13930770e4dSSatish Balay  \
14030770e4dSSatish Balay         /* copy over old data into new slots */ \
14130770e4dSSatish Balay         for ( ii=0; ii<row+1; ii++ ) {new_i[ii] = bi[ii];} \
14274c639caSSatish Balay         for ( ii=row+1; ii<b->m+1; ii++ ) {new_i[ii] = bi[ii]+CHUNKSIZE;} \
14330770e4dSSatish Balay         PetscMemcpy(new_j,bj,(bi[row]+nrow+shift)*sizeof(int)); \
14430770e4dSSatish Balay         len = (new_nz - CHUNKSIZE - bi[row] - nrow - shift); \
14530770e4dSSatish Balay         PetscMemcpy(new_j+bi[row]+shift+nrow+CHUNKSIZE,bj+bi[row]+shift+nrow, \
14630770e4dSSatish Balay                                                            len*sizeof(int)); \
14730770e4dSSatish Balay         PetscMemcpy(new_a,ba,(bi[row]+nrow+shift)*sizeof(Scalar)); \
14830770e4dSSatish Balay         PetscMemcpy(new_a+bi[row]+shift+nrow+CHUNKSIZE,ba+bi[row]+shift+nrow, \
14930770e4dSSatish Balay                                                            len*sizeof(Scalar));  \
15030770e4dSSatish Balay         /* free up old matrix storage */ \
15130770e4dSSatish Balay  \
15274c639caSSatish Balay         PetscFree(b->a);  \
15374c639caSSatish Balay         if (!b->singlemalloc) {PetscFree(b->i);PetscFree(b->j);} \
15474c639caSSatish Balay         ba = b->a = new_a; bi = b->i = new_i; bj = b->j = new_j;  \
15574c639caSSatish Balay         b->singlemalloc = 1; \
15630770e4dSSatish Balay  \
15730770e4dSSatish Balay         rp   = bj + bi[row] + shift; ap = ba + bi[row] + shift; \
15830770e4dSSatish Balay         rmax = bimax[row] = bimax[row] + CHUNKSIZE; \
15974c639caSSatish Balay         PLogObjectMemory(B,CHUNKSIZE*(sizeof(int) + sizeof(Scalar))); \
16074c639caSSatish Balay         b->maxnz += CHUNKSIZE; \
16174c639caSSatish Balay         b->reallocs++; \
16230770e4dSSatish Balay       } \
16374c639caSSatish Balay       N = nrow++ - 1; b->nz++; \
16430770e4dSSatish Balay       /* shift up all the later entries in this row */ \
16530770e4dSSatish Balay       for ( ii=N; ii>=_i; ii-- ) { \
16630770e4dSSatish Balay         rp[ii+1] = rp[ii]; \
16730770e4dSSatish Balay         ap[ii+1] = ap[ii]; \
16830770e4dSSatish Balay       } \
16930770e4dSSatish Balay       rp[_i] = col1;  \
17030770e4dSSatish Balay       ap[_i] = value;  \
17130770e4dSSatish Balay       b_noinsert: ; \
17230770e4dSSatish Balay       bilen[row] = nrow; \
17330770e4dSSatish Balay }
17430770e4dSSatish Balay 
1750520107fSSatish Balay extern int MatSetValues_SeqAIJ(Mat,int,int*,int,int*,Scalar*,InsertMode);
1765615d1e5SSatish Balay #undef __FUNC__
1775615d1e5SSatish Balay #define __FUNC__ "MatSetValues_MPIAIJ"
1788f6be9afSLois Curfman McInnes int MatSetValues_MPIAIJ(Mat mat,int m,int *im,int n,int *in,Scalar *v,InsertMode addv)
1798a729477SBarry Smith {
18044a69424SLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
1814b0e389bSBarry Smith   Scalar     value;
1821eb62cbbSBarry Smith   int        ierr,i,j, rstart = aij->rstart, rend = aij->rend;
1831eb62cbbSBarry Smith   int        cstart = aij->cstart, cend = aij->cend,row,col;
184905e6a2fSBarry Smith   int        roworiented = aij->roworiented;
1858a729477SBarry Smith 
1860520107fSSatish Balay   /* Some Variables required in the macro */
1874ee7247eSSatish Balay   Mat        A = aij->A;
1884ee7247eSSatish Balay   Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data;
18930770e4dSSatish Balay   int        *aimax = a->imax, *ai = a->i, *ailen = a->ilen,*aj = a->j;
19030770e4dSSatish Balay   Scalar     *aa = a->a;
19130770e4dSSatish Balay 
19230770e4dSSatish Balay   Mat        B = aij->B;
19330770e4dSSatish Balay   Mat_SeqAIJ *b = (Mat_SeqAIJ *) B->data;
19430770e4dSSatish Balay   int        *bimax = b->imax, *bi = b->i, *bilen = b->ilen,*bj = b->j;
19530770e4dSSatish Balay   Scalar     *ba = b->a;
19630770e4dSSatish Balay 
197ba4e3ef2SSatish Balay   int        *rp,ii,nrow,_i,rmax, N, col1,low,high,t;
19830770e4dSSatish Balay   int        nonew = a->nonew,shift = a->indexshift;
19930770e4dSSatish Balay   Scalar     *ap;
2004ee7247eSSatish Balay 
2018a729477SBarry Smith   for ( i=0; i<m; i++ ) {
2020a198c4cSBarry Smith #if defined(PETSC_BOPT_g)
203e3372554SBarry Smith     if (im[i] < 0) SETERRQ(1,0,"Negative row");
204e3372554SBarry Smith     if (im[i] >= aij->M) SETERRQ(1,0,"Row too large");
2050a198c4cSBarry Smith #endif
2064b0e389bSBarry Smith     if (im[i] >= rstart && im[i] < rend) {
2074b0e389bSBarry Smith       row = im[i] - rstart;
2081eb62cbbSBarry Smith       for ( j=0; j<n; j++ ) {
2094b0e389bSBarry Smith         if (in[j] >= cstart && in[j] < cend){
2104b0e389bSBarry Smith           col = in[j] - cstart;
2114b0e389bSBarry Smith           if (roworiented) value = v[i*n+j]; else value = v[i+j*m];
21230770e4dSSatish Balay           MatSetValues_SeqAIJ_A_Private(row,col,value,addv);
2130520107fSSatish Balay           /* ierr = MatSetValues_SeqAIJ(aij->A,1,&row,1,&col,&value,addv);CHKERRQ(ierr); */
2141eb62cbbSBarry Smith         }
2150a198c4cSBarry Smith #if defined(PETSC_BOPT_g)
216e3372554SBarry Smith         else if (in[j] < 0) {SETERRQ(1,0,"Negative column");}
217e3372554SBarry Smith         else if (in[j] >= aij->N) {SETERRQ(1,0,"Col too large");}
2180a198c4cSBarry Smith #endif
2191eb62cbbSBarry Smith         else {
220227d817aSBarry Smith           if (mat->was_assembled) {
221905e6a2fSBarry Smith             if (!aij->colmap) {
222905e6a2fSBarry Smith               ierr = CreateColmap_MPIAIJ_Private(mat);CHKERRQ(ierr);
223905e6a2fSBarry Smith             }
224905e6a2fSBarry Smith             col = aij->colmap[in[j]] - 1;
225ec8511deSBarry Smith             if (col < 0 && !((Mat_SeqAIJ*)(aij->A->data))->nonew) {
2262493cbb0SBarry Smith               ierr = DisAssemble_MPIAIJ(mat); CHKERRQ(ierr);
2274b0e389bSBarry Smith               col =  in[j];
2289bf004c3SSatish Balay               /* Reinitialize the variables required by MatSetValues_SeqAIJ_B_Private() */
229f9508a3cSSatish Balay               B = aij->B;
230f9508a3cSSatish Balay               b = (Mat_SeqAIJ *) B->data;
231f9508a3cSSatish Balay               bimax = b->imax; bi = b->i; bilen = b->ilen; bj = b->j;
232f9508a3cSSatish Balay               ba = b->a;
233d6dfbf8fSBarry Smith             }
2349e25ed09SBarry Smith           }
2354b0e389bSBarry Smith           else col = in[j];
2364b0e389bSBarry Smith           if (roworiented) value = v[i*n+j]; else value = v[i+j*m];
23730770e4dSSatish Balay           MatSetValues_SeqAIJ_B_Private(row,col,value,addv);
23830770e4dSSatish Balay           /* ierr = MatSetValues_SeqAIJ(aij->B,1,&row,1,&col,&value,addv);CHKERRQ(ierr); */
2391eb62cbbSBarry Smith         }
2401eb62cbbSBarry Smith       }
2411eb62cbbSBarry Smith     }
2421eb62cbbSBarry Smith     else {
24390f02eecSBarry Smith       if (roworiented && !aij->donotstash) {
2444b0e389bSBarry Smith         ierr = StashValues_Private(&aij->stash,im[i],n,in,v+i*n,addv);CHKERRQ(ierr);
2454b0e389bSBarry Smith       }
2464b0e389bSBarry Smith       else {
24790f02eecSBarry Smith         if (!aij->donotstash) {
2484b0e389bSBarry Smith           row = im[i];
2494b0e389bSBarry Smith           for ( j=0; j<n; j++ ) {
2504b0e389bSBarry Smith             ierr = StashValues_Private(&aij->stash,row,1,in+j,v+i+j*m,addv);CHKERRQ(ierr);
2514b0e389bSBarry Smith           }
2524b0e389bSBarry Smith         }
2531eb62cbbSBarry Smith       }
2548a729477SBarry Smith     }
25590f02eecSBarry Smith   }
2568a729477SBarry Smith   return 0;
2578a729477SBarry Smith }
2588a729477SBarry Smith 
2595615d1e5SSatish Balay #undef __FUNC__
2605615d1e5SSatish Balay #define __FUNC__ "MatGetValues_MPIAIJ"
2618f6be9afSLois Curfman McInnes int MatGetValues_MPIAIJ(Mat mat,int m,int *idxm,int n,int *idxn,Scalar *v)
262b49de8d1SLois Curfman McInnes {
263b49de8d1SLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
264b49de8d1SLois Curfman McInnes   int        ierr,i,j, rstart = aij->rstart, rend = aij->rend;
265b49de8d1SLois Curfman McInnes   int        cstart = aij->cstart, cend = aij->cend,row,col;
266b49de8d1SLois Curfman McInnes 
267b49de8d1SLois Curfman McInnes   for ( i=0; i<m; i++ ) {
268e3372554SBarry Smith     if (idxm[i] < 0) SETERRQ(1,0,"Negative row");
269e3372554SBarry Smith     if (idxm[i] >= aij->M) SETERRQ(1,0,"Row too large");
270b49de8d1SLois Curfman McInnes     if (idxm[i] >= rstart && idxm[i] < rend) {
271b49de8d1SLois Curfman McInnes       row = idxm[i] - rstart;
272b49de8d1SLois Curfman McInnes       for ( j=0; j<n; j++ ) {
273e3372554SBarry Smith         if (idxn[j] < 0) SETERRQ(1,0,"Negative column");
274e3372554SBarry Smith         if (idxn[j] >= aij->N) SETERRQ(1,0,"Col too large");
275b49de8d1SLois Curfman McInnes         if (idxn[j] >= cstart && idxn[j] < cend){
276b49de8d1SLois Curfman McInnes           col = idxn[j] - cstart;
277b49de8d1SLois Curfman McInnes           ierr = MatGetValues(aij->A,1,&row,1,&col,v+i*n+j); CHKERRQ(ierr);
278b49de8d1SLois Curfman McInnes         }
279b49de8d1SLois Curfman McInnes         else {
280905e6a2fSBarry Smith           if (!aij->colmap) {
281905e6a2fSBarry Smith             ierr = CreateColmap_MPIAIJ_Private(mat);CHKERRQ(ierr);
282905e6a2fSBarry Smith           }
283905e6a2fSBarry Smith           col = aij->colmap[idxn[j]] - 1;
284e60e1c95SSatish Balay           if ((col < 0) || (aij->garray[col] != idxn[j])) *(v+i*n+j) = 0.0;
285d9d09a02SSatish Balay           else {
286b49de8d1SLois Curfman McInnes             ierr = MatGetValues(aij->B,1,&row,1,&col,v+i*n+j); CHKERRQ(ierr);
287b49de8d1SLois Curfman McInnes           }
288b49de8d1SLois Curfman McInnes         }
289b49de8d1SLois Curfman McInnes       }
290d9d09a02SSatish Balay     }
291b49de8d1SLois Curfman McInnes     else {
292e3372554SBarry Smith       SETERRQ(1,0,"Only local values currently supported");
293b49de8d1SLois Curfman McInnes     }
294b49de8d1SLois Curfman McInnes   }
295b49de8d1SLois Curfman McInnes   return 0;
296b49de8d1SLois Curfman McInnes }
297b49de8d1SLois Curfman McInnes 
2985615d1e5SSatish Balay #undef __FUNC__
2995615d1e5SSatish Balay #define __FUNC__ "MatAssemblyBegin_MPIAIJ"
3008f6be9afSLois Curfman McInnes int MatAssemblyBegin_MPIAIJ(Mat mat,MatAssemblyType mode)
3018a729477SBarry Smith {
30244a69424SLois Curfman McInnes   Mat_MPIAIJ  *aij = (Mat_MPIAIJ *) mat->data;
303d6dfbf8fSBarry Smith   MPI_Comm    comm = mat->comm;
30417699dbbSLois Curfman McInnes   int         size = aij->size, *owners = aij->rowners;
30517699dbbSLois Curfman McInnes   int         rank = aij->rank,tag = mat->tag, *owner,*starts,count,ierr;
3061eb62cbbSBarry Smith   MPI_Request *send_waits,*recv_waits;
3076abc6512SBarry Smith   int         *nprocs,i,j,idx,*procs,nsends,nreceives,nmax,*work;
3081eb62cbbSBarry Smith   InsertMode  addv;
3091eb62cbbSBarry Smith   Scalar      *rvalues,*svalues;
3101eb62cbbSBarry Smith 
3111eb62cbbSBarry Smith   /* make sure all processors are either in INSERTMODE or ADDMODE */
31247794344SBarry Smith   MPI_Allreduce(&mat->insertmode,&addv,1,MPI_INT,MPI_BOR,comm);
313dbb450caSBarry Smith   if (addv == (ADD_VALUES|INSERT_VALUES)) {
314e3372554SBarry Smith     SETERRQ(1,0,"Some processors inserted others added");
3151eb62cbbSBarry Smith   }
31647794344SBarry Smith   mat->insertmode = addv; /* in case this processor had no cache */
3171eb62cbbSBarry Smith 
3181eb62cbbSBarry Smith   /*  first count number of contributors to each processor */
3190452661fSBarry Smith   nprocs = (int *) PetscMalloc( 2*size*sizeof(int) ); CHKPTRQ(nprocs);
320cddf8d76SBarry Smith   PetscMemzero(nprocs,2*size*sizeof(int)); procs = nprocs + size;
3210452661fSBarry Smith   owner = (int *) PetscMalloc( (aij->stash.n+1)*sizeof(int) ); CHKPTRQ(owner);
3221eb62cbbSBarry Smith   for ( i=0; i<aij->stash.n; i++ ) {
3231eb62cbbSBarry Smith     idx = aij->stash.idx[i];
32417699dbbSLois Curfman McInnes     for ( j=0; j<size; j++ ) {
3251eb62cbbSBarry Smith       if (idx >= owners[j] && idx < owners[j+1]) {
3261eb62cbbSBarry Smith         nprocs[j]++; procs[j] = 1; owner[i] = j; break;
3278a729477SBarry Smith       }
3288a729477SBarry Smith     }
3298a729477SBarry Smith   }
33017699dbbSLois Curfman McInnes   nsends = 0;  for ( i=0; i<size; i++ ) { nsends += procs[i];}
3311eb62cbbSBarry Smith 
3321eb62cbbSBarry Smith   /* inform other processors of number of messages and max length*/
3330452661fSBarry Smith   work = (int *) PetscMalloc( size*sizeof(int) ); CHKPTRQ(work);
33417699dbbSLois Curfman McInnes   MPI_Allreduce(procs, work,size,MPI_INT,MPI_SUM,comm);
33517699dbbSLois Curfman McInnes   nreceives = work[rank];
33617699dbbSLois Curfman McInnes   MPI_Allreduce( nprocs, work,size,MPI_INT,MPI_MAX,comm);
33717699dbbSLois Curfman McInnes   nmax = work[rank];
3380452661fSBarry Smith   PetscFree(work);
3391eb62cbbSBarry Smith 
3401eb62cbbSBarry Smith   /* post receives:
3411eb62cbbSBarry Smith        1) each message will consist of ordered pairs
3421eb62cbbSBarry Smith      (global index,value) we store the global index as a double
343d6dfbf8fSBarry Smith      to simplify the message passing.
3441eb62cbbSBarry Smith        2) since we don't know how long each individual message is we
3451eb62cbbSBarry Smith      allocate the largest needed buffer for each receive. Potentially
3461eb62cbbSBarry Smith      this is a lot of wasted space.
3471eb62cbbSBarry Smith 
3481eb62cbbSBarry Smith 
3491eb62cbbSBarry Smith        This could be done better.
3501eb62cbbSBarry Smith   */
3510452661fSBarry Smith   rvalues = (Scalar *) PetscMalloc(3*(nreceives+1)*(nmax+1)*sizeof(Scalar));
35278b31e54SBarry Smith   CHKPTRQ(rvalues);
3530452661fSBarry Smith   recv_waits = (MPI_Request *) PetscMalloc((nreceives+1)*sizeof(MPI_Request));
35478b31e54SBarry Smith   CHKPTRQ(recv_waits);
3551eb62cbbSBarry Smith   for ( i=0; i<nreceives; i++ ) {
356416022c9SBarry Smith     MPI_Irecv(rvalues+3*nmax*i,3*nmax,MPIU_SCALAR,MPI_ANY_SOURCE,tag,
3571eb62cbbSBarry Smith               comm,recv_waits+i);
3581eb62cbbSBarry Smith   }
3591eb62cbbSBarry Smith 
3601eb62cbbSBarry Smith   /* do sends:
3611eb62cbbSBarry Smith       1) starts[i] gives the starting index in svalues for stuff going to
3621eb62cbbSBarry Smith          the ith processor
3631eb62cbbSBarry Smith   */
3640452661fSBarry Smith   svalues = (Scalar *) PetscMalloc(3*(aij->stash.n+1)*sizeof(Scalar));CHKPTRQ(svalues);
3650452661fSBarry Smith   send_waits = (MPI_Request *) PetscMalloc( (nsends+1)*sizeof(MPI_Request));
36678b31e54SBarry Smith   CHKPTRQ(send_waits);
3670452661fSBarry Smith   starts = (int *) PetscMalloc( size*sizeof(int) ); CHKPTRQ(starts);
3681eb62cbbSBarry Smith   starts[0] = 0;
36917699dbbSLois Curfman McInnes   for ( i=1; i<size; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];}
3701eb62cbbSBarry Smith   for ( i=0; i<aij->stash.n; i++ ) {
3711eb62cbbSBarry Smith     svalues[3*starts[owner[i]]]       = (Scalar)  aij->stash.idx[i];
3721eb62cbbSBarry Smith     svalues[3*starts[owner[i]]+1]     = (Scalar)  aij->stash.idy[i];
3731eb62cbbSBarry Smith     svalues[3*(starts[owner[i]]++)+2] =  aij->stash.array[i];
3741eb62cbbSBarry Smith   }
3750452661fSBarry Smith   PetscFree(owner);
3761eb62cbbSBarry Smith   starts[0] = 0;
37717699dbbSLois Curfman McInnes   for ( i=1; i<size; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];}
3781eb62cbbSBarry Smith   count = 0;
37917699dbbSLois Curfman McInnes   for ( i=0; i<size; i++ ) {
3801eb62cbbSBarry Smith     if (procs[i]) {
381416022c9SBarry Smith       MPI_Isend(svalues+3*starts[i],3*nprocs[i],MPIU_SCALAR,i,tag,
3821eb62cbbSBarry Smith                 comm,send_waits+count++);
3831eb62cbbSBarry Smith     }
3841eb62cbbSBarry Smith   }
3850452661fSBarry Smith   PetscFree(starts); PetscFree(nprocs);
3861eb62cbbSBarry Smith 
3871eb62cbbSBarry Smith   /* Free cache space */
38855908cccSLois Curfman McInnes   PLogInfo(mat,"MatAssemblyBegin_MPIAIJ:Number of off-processor values %d\n",aij->stash.n);
38978b31e54SBarry Smith   ierr = StashDestroy_Private(&aij->stash); CHKERRQ(ierr);
3901eb62cbbSBarry Smith 
3911eb62cbbSBarry Smith   aij->svalues    = svalues;    aij->rvalues    = rvalues;
3921eb62cbbSBarry Smith   aij->nsends     = nsends;     aij->nrecvs     = nreceives;
3931eb62cbbSBarry Smith   aij->send_waits = send_waits; aij->recv_waits = recv_waits;
3941eb62cbbSBarry Smith   aij->rmax       = nmax;
3951eb62cbbSBarry Smith 
3961eb62cbbSBarry Smith   return 0;
3971eb62cbbSBarry Smith }
39844a69424SLois Curfman McInnes extern int MatSetUpMultiply_MPIAIJ(Mat);
3991eb62cbbSBarry Smith 
4005615d1e5SSatish Balay #undef __FUNC__
4015615d1e5SSatish Balay #define __FUNC__ "MatAssemblyEnd_MPIAIJ"
4028f6be9afSLois Curfman McInnes int MatAssemblyEnd_MPIAIJ(Mat mat,MatAssemblyType mode)
4031eb62cbbSBarry Smith {
40444a69424SLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
4051eb62cbbSBarry Smith   MPI_Status  *send_status,recv_status;
406416022c9SBarry Smith   int         imdex,nrecvs = aij->nrecvs, count = nrecvs, i, n, ierr;
407905e6a2fSBarry Smith   int         row,col,other_disassembled;
4081eb62cbbSBarry Smith   Scalar      *values,val;
40947794344SBarry Smith   InsertMode  addv = mat->insertmode;
4101eb62cbbSBarry Smith 
4111eb62cbbSBarry Smith   /*  wait on receives */
4121eb62cbbSBarry Smith   while (count) {
413d6dfbf8fSBarry Smith     MPI_Waitany(nrecvs,aij->recv_waits,&imdex,&recv_status);
4141eb62cbbSBarry Smith     /* unpack receives into our local space */
415d6dfbf8fSBarry Smith     values = aij->rvalues + 3*imdex*aij->rmax;
416c60448a5SBarry Smith     MPI_Get_count(&recv_status,MPIU_SCALAR,&n);
4171eb62cbbSBarry Smith     n = n/3;
4181eb62cbbSBarry Smith     for ( i=0; i<n; i++ ) {
419227d817aSBarry Smith       row = (int) PetscReal(values[3*i]) - aij->rstart;
420227d817aSBarry Smith       col = (int) PetscReal(values[3*i+1]);
4211eb62cbbSBarry Smith       val = values[3*i+2];
4221eb62cbbSBarry Smith       if (col >= aij->cstart && col < aij->cend) {
4231eb62cbbSBarry Smith         col -= aij->cstart;
4246fd7127cSSatish Balay         ierr = MatSetValues(aij->A,1,&row,1,&col,&val,addv); CHKERRQ(ierr);
4251eb62cbbSBarry Smith       }
4261eb62cbbSBarry Smith       else {
42755a1b374SBarry Smith         if (mat->was_assembled || mat->assembled) {
428905e6a2fSBarry Smith           if (!aij->colmap) {
429905e6a2fSBarry Smith             ierr = CreateColmap_MPIAIJ_Private(mat); CHKERRQ(ierr);
430905e6a2fSBarry Smith           }
431905e6a2fSBarry Smith           col = aij->colmap[col] - 1;
432ec8511deSBarry Smith           if (col < 0  && !((Mat_SeqAIJ*)(aij->A->data))->nonew) {
4332493cbb0SBarry Smith             ierr = DisAssemble_MPIAIJ(mat); CHKERRQ(ierr);
434227d817aSBarry Smith             col = (int) PetscReal(values[3*i+1]);
435d6dfbf8fSBarry Smith           }
4369e25ed09SBarry Smith         }
4376fd7127cSSatish Balay         ierr = MatSetValues(aij->B,1,&row,1,&col,&val,addv); CHKERRQ(ierr);
4381eb62cbbSBarry Smith       }
4391eb62cbbSBarry Smith     }
4401eb62cbbSBarry Smith     count--;
4411eb62cbbSBarry Smith   }
4420452661fSBarry Smith   PetscFree(aij->recv_waits); PetscFree(aij->rvalues);
4431eb62cbbSBarry Smith 
4441eb62cbbSBarry Smith   /* wait on sends */
4451eb62cbbSBarry Smith   if (aij->nsends) {
4460a198c4cSBarry Smith     send_status = (MPI_Status *) PetscMalloc(aij->nsends*sizeof(MPI_Status));CHKPTRQ(send_status);
4471eb62cbbSBarry Smith     MPI_Waitall(aij->nsends,aij->send_waits,send_status);
4480452661fSBarry Smith     PetscFree(send_status);
4491eb62cbbSBarry Smith   }
4500452661fSBarry Smith   PetscFree(aij->send_waits); PetscFree(aij->svalues);
4511eb62cbbSBarry Smith 
45278b31e54SBarry Smith   ierr = MatAssemblyBegin(aij->A,mode); CHKERRQ(ierr);
45378b31e54SBarry Smith   ierr = MatAssemblyEnd(aij->A,mode); CHKERRQ(ierr);
4541eb62cbbSBarry Smith 
4552493cbb0SBarry Smith   /* determine if any processor has disassembled, if so we must
4562493cbb0SBarry Smith      also disassemble ourselfs, in order that we may reassemble. */
457227d817aSBarry Smith   MPI_Allreduce(&mat->was_assembled,&other_disassembled,1,MPI_INT,MPI_PROD,mat->comm);
458227d817aSBarry Smith   if (mat->was_assembled && !other_disassembled) {
4592493cbb0SBarry Smith     ierr = DisAssemble_MPIAIJ(mat); CHKERRQ(ierr);
4602493cbb0SBarry Smith   }
4612493cbb0SBarry Smith 
4626d4a8577SBarry Smith   if (!mat->was_assembled && mode == MAT_FINAL_ASSEMBLY) {
46378b31e54SBarry Smith     ierr = MatSetUpMultiply_MPIAIJ(mat); CHKERRQ(ierr);
4645e42470aSBarry Smith   }
46578b31e54SBarry Smith   ierr = MatAssemblyBegin(aij->B,mode); CHKERRQ(ierr);
46678b31e54SBarry Smith   ierr = MatAssemblyEnd(aij->B,mode); CHKERRQ(ierr);
4675e42470aSBarry Smith 
4687a0afa10SBarry Smith   if (aij->rowvalues) {PetscFree(aij->rowvalues); aij->rowvalues = 0;}
4698a729477SBarry Smith   return 0;
4708a729477SBarry Smith }
4718a729477SBarry Smith 
4725615d1e5SSatish Balay #undef __FUNC__
4735615d1e5SSatish Balay #define __FUNC__ "MatZeroEntries_MPIAIJ"
4748f6be9afSLois Curfman McInnes int MatZeroEntries_MPIAIJ(Mat A)
4751eb62cbbSBarry Smith {
47644a69424SLois Curfman McInnes   Mat_MPIAIJ *l = (Mat_MPIAIJ *) A->data;
477dbd7a890SLois Curfman McInnes   int        ierr;
47878b31e54SBarry Smith   ierr = MatZeroEntries(l->A); CHKERRQ(ierr);
47978b31e54SBarry Smith   ierr = MatZeroEntries(l->B); CHKERRQ(ierr);
4801eb62cbbSBarry Smith   return 0;
4811eb62cbbSBarry Smith }
4821eb62cbbSBarry Smith 
4831eb62cbbSBarry Smith /* the code does not do the diagonal entries correctly unless the
4841eb62cbbSBarry Smith    matrix is square and the column and row owerships are identical.
4851eb62cbbSBarry Smith    This is a BUG. The only way to fix it seems to be to access
4861eb62cbbSBarry Smith    aij->A and aij->B directly and not through the MatZeroRows()
4871eb62cbbSBarry Smith    routine.
4881eb62cbbSBarry Smith */
4895615d1e5SSatish Balay #undef __FUNC__
4905615d1e5SSatish Balay #define __FUNC__ "MatZeroRows_MPIAIJ"
4918f6be9afSLois Curfman McInnes int MatZeroRows_MPIAIJ(Mat A,IS is,Scalar *diag)
4921eb62cbbSBarry Smith {
49344a69424SLois Curfman McInnes   Mat_MPIAIJ     *l = (Mat_MPIAIJ *) A->data;
49417699dbbSLois Curfman McInnes   int            i,ierr,N, *rows,*owners = l->rowners,size = l->size;
4956abc6512SBarry Smith   int            *procs,*nprocs,j,found,idx,nsends,*work;
49617699dbbSLois Curfman McInnes   int            nmax,*svalues,*starts,*owner,nrecvs,rank = l->rank;
4975392566eSBarry Smith   int            *rvalues,tag = A->tag,count,base,slen,n,*source;
498d6dfbf8fSBarry Smith   int            *lens,imdex,*lrows,*values;
499d6dfbf8fSBarry Smith   MPI_Comm       comm = A->comm;
5001eb62cbbSBarry Smith   MPI_Request    *send_waits,*recv_waits;
5011eb62cbbSBarry Smith   MPI_Status     recv_status,*send_status;
5021eb62cbbSBarry Smith   IS             istmp;
5031eb62cbbSBarry Smith 
50477c4ece6SBarry Smith   ierr = ISGetSize(is,&N); CHKERRQ(ierr);
50578b31e54SBarry Smith   ierr = ISGetIndices(is,&rows); CHKERRQ(ierr);
5061eb62cbbSBarry Smith 
5071eb62cbbSBarry Smith   /*  first count number of contributors to each processor */
5080452661fSBarry Smith   nprocs = (int *) PetscMalloc( 2*size*sizeof(int) ); CHKPTRQ(nprocs);
509cddf8d76SBarry Smith   PetscMemzero(nprocs,2*size*sizeof(int)); procs = nprocs + size;
5100452661fSBarry Smith   owner = (int *) PetscMalloc((N+1)*sizeof(int)); CHKPTRQ(owner); /* see note*/
5111eb62cbbSBarry Smith   for ( i=0; i<N; i++ ) {
5121eb62cbbSBarry Smith     idx = rows[i];
5131eb62cbbSBarry Smith     found = 0;
51417699dbbSLois Curfman McInnes     for ( j=0; j<size; j++ ) {
5151eb62cbbSBarry Smith       if (idx >= owners[j] && idx < owners[j+1]) {
5161eb62cbbSBarry Smith         nprocs[j]++; procs[j] = 1; owner[i] = j; found = 1; break;
5171eb62cbbSBarry Smith       }
5181eb62cbbSBarry Smith     }
519e3372554SBarry Smith     if (!found) SETERRQ(1,0,"Index out of range");
5201eb62cbbSBarry Smith   }
52117699dbbSLois Curfman McInnes   nsends = 0;  for ( i=0; i<size; i++ ) { nsends += procs[i];}
5221eb62cbbSBarry Smith 
5231eb62cbbSBarry Smith   /* inform other processors of number of messages and max length*/
5240452661fSBarry Smith   work = (int *) PetscMalloc( size*sizeof(int) ); CHKPTRQ(work);
52517699dbbSLois Curfman McInnes   MPI_Allreduce( procs, work,size,MPI_INT,MPI_SUM,comm);
52617699dbbSLois Curfman McInnes   nrecvs = work[rank];
52717699dbbSLois Curfman McInnes   MPI_Allreduce( nprocs, work,size,MPI_INT,MPI_MAX,comm);
52817699dbbSLois Curfman McInnes   nmax = work[rank];
5290452661fSBarry Smith   PetscFree(work);
5301eb62cbbSBarry Smith 
5311eb62cbbSBarry Smith   /* post receives:   */
5320452661fSBarry Smith   rvalues = (int *) PetscMalloc((nrecvs+1)*(nmax+1)*sizeof(int)); /*see note */
53378b31e54SBarry Smith   CHKPTRQ(rvalues);
5340452661fSBarry Smith   recv_waits = (MPI_Request *) PetscMalloc((nrecvs+1)*sizeof(MPI_Request));
53578b31e54SBarry Smith   CHKPTRQ(recv_waits);
5361eb62cbbSBarry Smith   for ( i=0; i<nrecvs; i++ ) {
537416022c9SBarry Smith     MPI_Irecv(rvalues+nmax*i,nmax,MPI_INT,MPI_ANY_SOURCE,tag,comm,recv_waits+i);
5381eb62cbbSBarry Smith   }
5391eb62cbbSBarry Smith 
5401eb62cbbSBarry Smith   /* do sends:
5411eb62cbbSBarry Smith       1) starts[i] gives the starting index in svalues for stuff going to
5421eb62cbbSBarry Smith          the ith processor
5431eb62cbbSBarry Smith   */
5440452661fSBarry Smith   svalues = (int *) PetscMalloc( (N+1)*sizeof(int) ); CHKPTRQ(svalues);
5450452661fSBarry Smith   send_waits = (MPI_Request *) PetscMalloc( (nsends+1)*sizeof(MPI_Request));
54678b31e54SBarry Smith   CHKPTRQ(send_waits);
5470452661fSBarry Smith   starts = (int *) PetscMalloc( (size+1)*sizeof(int) ); CHKPTRQ(starts);
5481eb62cbbSBarry Smith   starts[0] = 0;
54917699dbbSLois Curfman McInnes   for ( i=1; i<size; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];}
5501eb62cbbSBarry Smith   for ( i=0; i<N; i++ ) {
5511eb62cbbSBarry Smith     svalues[starts[owner[i]]++] = rows[i];
5521eb62cbbSBarry Smith   }
5531eb62cbbSBarry Smith   ISRestoreIndices(is,&rows);
5541eb62cbbSBarry Smith 
5551eb62cbbSBarry Smith   starts[0] = 0;
55617699dbbSLois Curfman McInnes   for ( i=1; i<size+1; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];}
5571eb62cbbSBarry Smith   count = 0;
55817699dbbSLois Curfman McInnes   for ( i=0; i<size; i++ ) {
5591eb62cbbSBarry Smith     if (procs[i]) {
560416022c9SBarry Smith       MPI_Isend(svalues+starts[i],nprocs[i],MPI_INT,i,tag,comm,send_waits+count++);
5611eb62cbbSBarry Smith     }
5621eb62cbbSBarry Smith   }
5630452661fSBarry Smith   PetscFree(starts);
5641eb62cbbSBarry Smith 
56517699dbbSLois Curfman McInnes   base = owners[rank];
5661eb62cbbSBarry Smith 
5671eb62cbbSBarry Smith   /*  wait on receives */
5680452661fSBarry Smith   lens   = (int *) PetscMalloc( 2*(nrecvs+1)*sizeof(int) ); CHKPTRQ(lens);
5691eb62cbbSBarry Smith   source = lens + nrecvs;
5701eb62cbbSBarry Smith   count  = nrecvs; slen = 0;
5711eb62cbbSBarry Smith   while (count) {
572d6dfbf8fSBarry Smith     MPI_Waitany(nrecvs,recv_waits,&imdex,&recv_status);
5731eb62cbbSBarry Smith     /* unpack receives into our local space */
5741eb62cbbSBarry Smith     MPI_Get_count(&recv_status,MPI_INT,&n);
575d6dfbf8fSBarry Smith     source[imdex]  = recv_status.MPI_SOURCE;
576d6dfbf8fSBarry Smith     lens[imdex]  = n;
5771eb62cbbSBarry Smith     slen += n;
5781eb62cbbSBarry Smith     count--;
5791eb62cbbSBarry Smith   }
5800452661fSBarry Smith   PetscFree(recv_waits);
5811eb62cbbSBarry Smith 
5821eb62cbbSBarry Smith   /* move the data into the send scatter */
5830452661fSBarry Smith   lrows = (int *) PetscMalloc( (slen+1)*sizeof(int) ); CHKPTRQ(lrows);
5841eb62cbbSBarry Smith   count = 0;
5851eb62cbbSBarry Smith   for ( i=0; i<nrecvs; i++ ) {
5861eb62cbbSBarry Smith     values = rvalues + i*nmax;
5871eb62cbbSBarry Smith     for ( j=0; j<lens[i]; j++ ) {
5881eb62cbbSBarry Smith       lrows[count++] = values[j] - base;
5891eb62cbbSBarry Smith     }
5901eb62cbbSBarry Smith   }
5910452661fSBarry Smith   PetscFree(rvalues); PetscFree(lens);
5920452661fSBarry Smith   PetscFree(owner); PetscFree(nprocs);
5931eb62cbbSBarry Smith 
5941eb62cbbSBarry Smith   /* actually zap the local rows */
595029af93fSBarry Smith   ierr = ISCreateGeneral(PETSC_COMM_SELF,slen,lrows,&istmp);CHKERRQ(ierr);
596464493b3SBarry Smith   PLogObjectParent(A,istmp);
5970452661fSBarry Smith   PetscFree(lrows);
59878b31e54SBarry Smith   ierr = MatZeroRows(l->A,istmp,diag); CHKERRQ(ierr);
59978b31e54SBarry Smith   ierr = MatZeroRows(l->B,istmp,0); CHKERRQ(ierr);
60078b31e54SBarry Smith   ierr = ISDestroy(istmp); CHKERRQ(ierr);
6011eb62cbbSBarry Smith 
6021eb62cbbSBarry Smith   /* wait on sends */
6031eb62cbbSBarry Smith   if (nsends) {
6040452661fSBarry Smith     send_status = (MPI_Status *) PetscMalloc(nsends*sizeof(MPI_Status));
60578b31e54SBarry Smith     CHKPTRQ(send_status);
6061eb62cbbSBarry Smith     MPI_Waitall(nsends,send_waits,send_status);
6070452661fSBarry Smith     PetscFree(send_status);
6081eb62cbbSBarry Smith   }
6090452661fSBarry Smith   PetscFree(send_waits); PetscFree(svalues);
6101eb62cbbSBarry Smith 
6111eb62cbbSBarry Smith   return 0;
6121eb62cbbSBarry Smith }
6131eb62cbbSBarry Smith 
6145615d1e5SSatish Balay #undef __FUNC__
6155615d1e5SSatish Balay #define __FUNC__ "MatMult_MPIAIJ"
6168f6be9afSLois Curfman McInnes int MatMult_MPIAIJ(Mat A,Vec xx,Vec yy)
6171eb62cbbSBarry Smith {
618416022c9SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
619fbd6ef76SBarry Smith   int        ierr,nt;
620416022c9SBarry Smith 
621a2ce50c7SBarry Smith   ierr = VecGetLocalSize(xx,&nt);  CHKERRQ(ierr);
622fbd6ef76SBarry Smith   if (nt != a->n) {
623f40265daSLois Curfman McInnes     SETERRQ(1,0,"Incompatible partition of A and xx");
624fbd6ef76SBarry Smith   }
62543a90d84SBarry Smith   ierr = VecScatterBegin(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx); CHKERRQ(ierr);
62638597bd4SSatish Balay   ierr = (*a->A->ops.mult)(a->A,xx,yy); CHKERRQ(ierr);
62743a90d84SBarry Smith   ierr = VecScatterEnd(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx); CHKERRQ(ierr);
62838597bd4SSatish Balay   ierr = (*a->B->ops.multadd)(a->B,a->lvec,yy,yy); CHKERRQ(ierr);
6291eb62cbbSBarry Smith   return 0;
6301eb62cbbSBarry Smith }
6311eb62cbbSBarry Smith 
6325615d1e5SSatish Balay #undef __FUNC__
6335615d1e5SSatish Balay #define __FUNC__ "MatMultAdd_MPIAIJ"
6348f6be9afSLois Curfman McInnes int MatMultAdd_MPIAIJ(Mat A,Vec xx,Vec yy,Vec zz)
635da3a660dSBarry Smith {
636416022c9SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
637da3a660dSBarry Smith   int        ierr;
63843a90d84SBarry Smith   ierr = VecScatterBegin(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx);CHKERRQ(ierr);
63938597bd4SSatish Balay   ierr = (*a->A->ops.multadd)(a->A,xx,yy,zz); CHKERRQ(ierr);
64043a90d84SBarry Smith   ierr = VecScatterEnd(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx);CHKERRQ(ierr);
64138597bd4SSatish Balay   ierr = (*a->B->ops.multadd)(a->B,a->lvec,zz,zz); CHKERRQ(ierr);
642da3a660dSBarry Smith   return 0;
643da3a660dSBarry Smith }
644da3a660dSBarry Smith 
6455615d1e5SSatish Balay #undef __FUNC__
6465615d1e5SSatish Balay #define __FUNC__ "MatMultTrans_MPIAIJ"
6478f6be9afSLois Curfman McInnes int MatMultTrans_MPIAIJ(Mat A,Vec xx,Vec yy)
648da3a660dSBarry Smith {
649416022c9SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
650da3a660dSBarry Smith   int        ierr;
651da3a660dSBarry Smith 
652da3a660dSBarry Smith   /* do nondiagonal part */
65338597bd4SSatish Balay   ierr = (*a->B->ops.multtrans)(a->B,xx,a->lvec); CHKERRQ(ierr);
654da3a660dSBarry Smith   /* send it on its way */
655537820f0SBarry Smith   ierr = VecScatterBegin(a->lvec,yy,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr);
656da3a660dSBarry Smith   /* do local part */
65738597bd4SSatish Balay   ierr = (*a->A->ops.multtrans)(a->A,xx,yy); CHKERRQ(ierr);
658da3a660dSBarry Smith   /* receive remote parts: note this assumes the values are not actually */
659da3a660dSBarry Smith   /* inserted in yy until the next line, which is true for my implementation*/
660da3a660dSBarry Smith   /* but is not perhaps always true. */
661537820f0SBarry Smith   ierr = VecScatterEnd(a->lvec,yy,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr);
662da3a660dSBarry Smith   return 0;
663da3a660dSBarry Smith }
664da3a660dSBarry Smith 
6655615d1e5SSatish Balay #undef __FUNC__
6665615d1e5SSatish Balay #define __FUNC__ "MatMultTransAdd_MPIAIJ"
6678f6be9afSLois Curfman McInnes int MatMultTransAdd_MPIAIJ(Mat A,Vec xx,Vec yy,Vec zz)
668da3a660dSBarry Smith {
669416022c9SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
670da3a660dSBarry Smith   int        ierr;
671da3a660dSBarry Smith 
672da3a660dSBarry Smith   /* do nondiagonal part */
67338597bd4SSatish Balay   ierr = (*a->B->ops.multtrans)(a->B,xx,a->lvec); CHKERRQ(ierr);
674da3a660dSBarry Smith   /* send it on its way */
675537820f0SBarry Smith   ierr = VecScatterBegin(a->lvec,zz,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr);
676da3a660dSBarry Smith   /* do local part */
67738597bd4SSatish Balay   ierr = (*a->A->ops.multtransadd)(a->A,xx,yy,zz); CHKERRQ(ierr);
678da3a660dSBarry Smith   /* receive remote parts: note this assumes the values are not actually */
679da3a660dSBarry Smith   /* inserted in yy until the next line, which is true for my implementation*/
680da3a660dSBarry Smith   /* but is not perhaps always true. */
6810a198c4cSBarry Smith   ierr = VecScatterEnd(a->lvec,zz,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr);
682da3a660dSBarry Smith   return 0;
683da3a660dSBarry Smith }
684da3a660dSBarry Smith 
6851eb62cbbSBarry Smith /*
6861eb62cbbSBarry Smith   This only works correctly for square matrices where the subblock A->A is the
6871eb62cbbSBarry Smith    diagonal block
6881eb62cbbSBarry Smith */
6895615d1e5SSatish Balay #undef __FUNC__
6905615d1e5SSatish Balay #define __FUNC__ "MatGetDiagonal_MPIAIJ"
6918f6be9afSLois Curfman McInnes int MatGetDiagonal_MPIAIJ(Mat A,Vec v)
6921eb62cbbSBarry Smith {
693416022c9SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
69444cd7ae7SLois Curfman McInnes   if (a->M != a->N)
695e3372554SBarry Smith     SETERRQ(1,0,"Supports only square matrix where A->A is diag block");
6965baf8537SBarry Smith   if (a->rstart != a->cstart || a->rend != a->cend) {
697e3372554SBarry Smith     SETERRQ(1,0,"row partition must equal col partition");  }
698416022c9SBarry Smith   return MatGetDiagonal(a->A,v);
6991eb62cbbSBarry Smith }
7001eb62cbbSBarry Smith 
7015615d1e5SSatish Balay #undef __FUNC__
7025615d1e5SSatish Balay #define __FUNC__ "MatScale_MPIAIJ"
7038f6be9afSLois Curfman McInnes int MatScale_MPIAIJ(Scalar *aa,Mat A)
704052efed2SBarry Smith {
705052efed2SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
706052efed2SBarry Smith   int        ierr;
707052efed2SBarry Smith   ierr = MatScale(aa,a->A); CHKERRQ(ierr);
708052efed2SBarry Smith   ierr = MatScale(aa,a->B); CHKERRQ(ierr);
709052efed2SBarry Smith   return 0;
710052efed2SBarry Smith }
711052efed2SBarry Smith 
7125615d1e5SSatish Balay #undef __FUNC__
713d4bb536fSBarry Smith #define __FUNC__ "MatDestroy_MPIAIJ"
7148f6be9afSLois Curfman McInnes int MatDestroy_MPIAIJ(PetscObject obj)
7151eb62cbbSBarry Smith {
7161eb62cbbSBarry Smith   Mat        mat = (Mat) obj;
71744a69424SLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
7181eb62cbbSBarry Smith   int        ierr;
71983e2fdc7SBarry Smith 
720a5a9c739SBarry Smith #if defined(PETSC_LOG)
7216e35fa57SLois Curfman McInnes   PLogObjectState(obj,"Rows=%d, Cols=%d",aij->M,aij->N);
722a5a9c739SBarry Smith #endif
72383e2fdc7SBarry Smith   ierr = StashDestroy_Private(&aij->stash); CHKERRQ(ierr);
7240452661fSBarry Smith   PetscFree(aij->rowners);
72578b31e54SBarry Smith   ierr = MatDestroy(aij->A); CHKERRQ(ierr);
72678b31e54SBarry Smith   ierr = MatDestroy(aij->B); CHKERRQ(ierr);
7270452661fSBarry Smith   if (aij->colmap) PetscFree(aij->colmap);
7280452661fSBarry Smith   if (aij->garray) PetscFree(aij->garray);
7291eb62cbbSBarry Smith   if (aij->lvec)   VecDestroy(aij->lvec);
730a56f8943SBarry Smith   if (aij->Mvctx)  VecScatterDestroy(aij->Mvctx);
7317a0afa10SBarry Smith   if (aij->rowvalues) PetscFree(aij->rowvalues);
7320452661fSBarry Smith   PetscFree(aij);
733a5a9c739SBarry Smith   PLogObjectDestroy(mat);
7340452661fSBarry Smith   PetscHeaderDestroy(mat);
7351eb62cbbSBarry Smith   return 0;
7361eb62cbbSBarry Smith }
737ee50ffe9SBarry Smith 
7385615d1e5SSatish Balay #undef __FUNC__
739d4bb536fSBarry Smith #define __FUNC__ "MatView_MPIAIJ_Binary"
7408f6be9afSLois Curfman McInnes extern int MatView_MPIAIJ_Binary(Mat mat,Viewer viewer)
7411eb62cbbSBarry Smith {
742416022c9SBarry Smith   Mat_MPIAIJ  *aij = (Mat_MPIAIJ *) mat->data;
743416022c9SBarry Smith   int         ierr;
744416022c9SBarry Smith 
74517699dbbSLois Curfman McInnes   if (aij->size == 1) {
746416022c9SBarry Smith     ierr = MatView(aij->A,viewer); CHKERRQ(ierr);
747416022c9SBarry Smith   }
748e3372554SBarry Smith   else SETERRQ(1,0,"Only uniprocessor output supported");
749416022c9SBarry Smith   return 0;
750416022c9SBarry Smith }
751416022c9SBarry Smith 
7525615d1e5SSatish Balay #undef __FUNC__
753d4bb536fSBarry Smith #define __FUNC__ "MatView_MPIAIJ_ASCIIorDraworMatlab"
7548f6be9afSLois Curfman McInnes extern int MatView_MPIAIJ_ASCIIorDraworMatlab(Mat mat,Viewer viewer)
755416022c9SBarry Smith {
75644a69424SLois Curfman McInnes   Mat_MPIAIJ  *aij = (Mat_MPIAIJ *) mat->data;
757dbb450caSBarry Smith   Mat_SeqAIJ* C = (Mat_SeqAIJ*)aij->A->data;
758a56f8943SBarry Smith   int         ierr, format,shift = C->indexshift,rank;
759d636dbe3SBarry Smith   FILE        *fd;
76019bcc07fSBarry Smith   ViewerType  vtype;
761416022c9SBarry Smith 
76219bcc07fSBarry Smith   ierr = ViewerGetType(viewer,&vtype); CHKERRQ(ierr);
76319bcc07fSBarry Smith   if (vtype  == ASCII_FILES_VIEWER || vtype == ASCII_FILE_VIEWER) {
76490ace30eSBarry Smith     ierr = ViewerGetFormat(viewer,&format);
7650a198c4cSBarry Smith     if (format == VIEWER_FORMAT_ASCII_INFO_LONG) {
7664e220ebcSLois Curfman McInnes       MatInfo info;
7674e220ebcSLois Curfman McInnes       int     flg;
768a56f8943SBarry Smith       MPI_Comm_rank(mat->comm,&rank);
76990ace30eSBarry Smith       ierr = ViewerASCIIGetPointer(viewer,&fd); CHKERRQ(ierr);
7704e220ebcSLois Curfman McInnes       ierr = MatGetInfo(mat,MAT_LOCAL,&info);
77195e01e2fSLois Curfman McInnes       ierr = OptionsHasName(PETSC_NULL,"-mat_aij_no_inode",&flg); CHKERRQ(ierr);
77277c4ece6SBarry Smith       PetscSequentialPhaseBegin(mat->comm,1);
77395e01e2fSLois Curfman McInnes       if (flg) fprintf(fd,"[%d] Local rows %d nz %d nz alloced %d mem %d, not using I-node routines\n",
7744e220ebcSLois Curfman McInnes          rank,aij->m,(int)info.nz_used,(int)info.nz_allocated,(int)info.memory);
77595e01e2fSLois Curfman McInnes       else fprintf(fd,"[%d] Local rows %d nz %d nz alloced %d mem %d, using I-node routines\n",
7764e220ebcSLois Curfman McInnes          rank,aij->m,(int)info.nz_used,(int)info.nz_allocated,(int)info.memory);
7774e220ebcSLois Curfman McInnes       ierr = MatGetInfo(aij->A,MAT_LOCAL,&info);
7784e220ebcSLois Curfman McInnes       fprintf(fd,"[%d] on-diagonal part: nz %d \n",rank,(int)info.nz_used);
7794e220ebcSLois Curfman McInnes       ierr = MatGetInfo(aij->B,MAT_LOCAL,&info);
7804e220ebcSLois Curfman McInnes       fprintf(fd,"[%d] off-diagonal part: nz %d \n",rank,(int)info.nz_used);
781a56f8943SBarry Smith       fflush(fd);
78277c4ece6SBarry Smith       PetscSequentialPhaseEnd(mat->comm,1);
783a40aa06bSLois Curfman McInnes       ierr = VecScatterView(aij->Mvctx,viewer); CHKERRQ(ierr);
784416022c9SBarry Smith       return 0;
785416022c9SBarry Smith     }
7860a198c4cSBarry Smith     else if (format == VIEWER_FORMAT_ASCII_INFO) {
78708480c60SBarry Smith       return 0;
78808480c60SBarry Smith     }
789416022c9SBarry Smith   }
790416022c9SBarry Smith 
79119bcc07fSBarry Smith   if (vtype == DRAW_VIEWER) {
79219bcc07fSBarry Smith     Draw       draw;
79319bcc07fSBarry Smith     PetscTruth isnull;
79419bcc07fSBarry Smith     ierr = ViewerDrawGetDraw(viewer,&draw); CHKERRQ(ierr);
79519bcc07fSBarry Smith     ierr = DrawIsNull(draw,&isnull); CHKERRQ(ierr); if (isnull) return 0;
79619bcc07fSBarry Smith   }
79719bcc07fSBarry Smith 
79819bcc07fSBarry Smith   if (vtype == ASCII_FILE_VIEWER) {
79990ace30eSBarry Smith     ierr = ViewerASCIIGetPointer(viewer,&fd); CHKERRQ(ierr);
80077c4ece6SBarry Smith     PetscSequentialPhaseBegin(mat->comm,1);
801d13ab20cSBarry Smith     fprintf(fd,"[%d] rows %d starts %d ends %d cols %d starts %d ends %d\n",
80217699dbbSLois Curfman McInnes            aij->rank,aij->m,aij->rstart,aij->rend,aij->n,aij->cstart,
8031eb62cbbSBarry Smith            aij->cend);
80478b31e54SBarry Smith     ierr = MatView(aij->A,viewer); CHKERRQ(ierr);
80578b31e54SBarry Smith     ierr = MatView(aij->B,viewer); CHKERRQ(ierr);
806d13ab20cSBarry Smith     fflush(fd);
80777c4ece6SBarry Smith     PetscSequentialPhaseEnd(mat->comm,1);
808d13ab20cSBarry Smith   }
809416022c9SBarry Smith   else {
810a56f8943SBarry Smith     int size = aij->size;
811a56f8943SBarry Smith     rank = aij->rank;
81217699dbbSLois Curfman McInnes     if (size == 1) {
81378b31e54SBarry Smith       ierr = MatView(aij->A,viewer); CHKERRQ(ierr);
81495373324SBarry Smith     }
81595373324SBarry Smith     else {
81695373324SBarry Smith       /* assemble the entire matrix onto first processor. */
81795373324SBarry Smith       Mat         A;
818ec8511deSBarry Smith       Mat_SeqAIJ *Aloc;
8192eb8c8abSBarry Smith       int         M = aij->M, N = aij->N,m,*ai,*aj,row,*cols,i,*ct;
82095373324SBarry Smith       Scalar      *a;
8212ee70a88SLois Curfman McInnes 
82217699dbbSLois Curfman McInnes       if (!rank) {
823b4fd4287SBarry Smith         ierr = MatCreateMPIAIJ(mat->comm,M,N,M,N,0,PETSC_NULL,0,PETSC_NULL,&A);
824c451ab25SLois Curfman McInnes                CHKERRQ(ierr);
82595373324SBarry Smith       }
82695373324SBarry Smith       else {
827b4fd4287SBarry Smith         ierr = MatCreateMPIAIJ(mat->comm,0,0,M,N,0,PETSC_NULL,0,PETSC_NULL,&A);
828c451ab25SLois Curfman McInnes                CHKERRQ(ierr);
82995373324SBarry Smith       }
830464493b3SBarry Smith       PLogObjectParent(mat,A);
831416022c9SBarry Smith 
83295373324SBarry Smith       /* copy over the A part */
833ec8511deSBarry Smith       Aloc = (Mat_SeqAIJ*) aij->A->data;
8342ee70a88SLois Curfman McInnes       m = Aloc->m; ai = Aloc->i; aj = Aloc->j; a = Aloc->a;
83595373324SBarry Smith       row = aij->rstart;
836dbb450caSBarry Smith       for ( i=0; i<ai[m]+shift; i++ ) {aj[i] += aij->cstart + shift;}
83795373324SBarry Smith       for ( i=0; i<m; i++ ) {
838416022c9SBarry Smith         ierr = MatSetValues(A,1,&row,ai[i+1]-ai[i],aj,a,INSERT_VALUES);CHKERRQ(ierr);
83995373324SBarry Smith         row++; a += ai[i+1]-ai[i]; aj += ai[i+1]-ai[i];
84095373324SBarry Smith       }
8412ee70a88SLois Curfman McInnes       aj = Aloc->j;
842dbb450caSBarry Smith       for ( i=0; i<ai[m]+shift; i++ ) {aj[i] -= aij->cstart + shift;}
84395373324SBarry Smith 
84495373324SBarry Smith       /* copy over the B part */
845ec8511deSBarry Smith       Aloc = (Mat_SeqAIJ*) aij->B->data;
8462ee70a88SLois Curfman McInnes       m = Aloc->m;  ai = Aloc->i; aj = Aloc->j; a = Aloc->a;
84795373324SBarry Smith       row = aij->rstart;
8480452661fSBarry Smith       ct = cols = (int *) PetscMalloc( (ai[m]+1)*sizeof(int) ); CHKPTRQ(cols);
849dbb450caSBarry Smith       for ( i=0; i<ai[m]+shift; i++ ) {cols[i] = aij->garray[aj[i]+shift];}
85095373324SBarry Smith       for ( i=0; i<m; i++ ) {
851416022c9SBarry Smith         ierr = MatSetValues(A,1,&row,ai[i+1]-ai[i],cols,a,INSERT_VALUES);CHKERRQ(ierr);
85295373324SBarry Smith         row++; a += ai[i+1]-ai[i]; cols += ai[i+1]-ai[i];
85395373324SBarry Smith       }
8540452661fSBarry Smith       PetscFree(ct);
8556d4a8577SBarry Smith       ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr);
8566d4a8577SBarry Smith       ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr);
85717699dbbSLois Curfman McInnes       if (!rank) {
85878b31e54SBarry Smith         ierr = MatView(((Mat_MPIAIJ*)(A->data))->A,viewer); CHKERRQ(ierr);
85995373324SBarry Smith       }
86078b31e54SBarry Smith       ierr = MatDestroy(A); CHKERRQ(ierr);
86195373324SBarry Smith     }
86295373324SBarry Smith   }
8631eb62cbbSBarry Smith   return 0;
8641eb62cbbSBarry Smith }
8651eb62cbbSBarry Smith 
8665615d1e5SSatish Balay #undef __FUNC__
867d4bb536fSBarry Smith #define __FUNC__ "MatView_MPIAIJ"
8688f6be9afSLois Curfman McInnes int MatView_MPIAIJ(PetscObject obj,Viewer viewer)
869416022c9SBarry Smith {
870416022c9SBarry Smith   Mat         mat = (Mat) obj;
871416022c9SBarry Smith   int         ierr;
87219bcc07fSBarry Smith   ViewerType  vtype;
873416022c9SBarry Smith 
87419bcc07fSBarry Smith   ierr = ViewerGetType(viewer,&vtype); CHKERRQ(ierr);
87519bcc07fSBarry Smith   if (vtype == ASCII_FILE_VIEWER || vtype == ASCII_FILES_VIEWER ||
87619bcc07fSBarry Smith       vtype == DRAW_VIEWER       || vtype == MATLAB_VIEWER) {
877d7e8b826SBarry Smith     ierr = MatView_MPIAIJ_ASCIIorDraworMatlab(mat,viewer); CHKERRQ(ierr);
878416022c9SBarry Smith   }
87919bcc07fSBarry Smith   else if (vtype == BINARY_FILE_VIEWER) {
880416022c9SBarry Smith     return MatView_MPIAIJ_Binary(mat,viewer);
881416022c9SBarry Smith   }
882416022c9SBarry Smith   return 0;
883416022c9SBarry Smith }
884416022c9SBarry Smith 
8851eb62cbbSBarry Smith /*
8861eb62cbbSBarry Smith     This has to provide several versions.
8871eb62cbbSBarry Smith 
8881eb62cbbSBarry Smith      2) a) use only local smoothing updating outer values only once.
8891eb62cbbSBarry Smith         b) local smoothing updating outer values each inner iteration
890d6dfbf8fSBarry Smith      3) color updating out values betwen colors.
8911eb62cbbSBarry Smith */
8925615d1e5SSatish Balay #undef __FUNC__
8935615d1e5SSatish Balay #define __FUNC__ "MatRelax_MPIAIJ"
8948f6be9afSLois Curfman McInnes int MatRelax_MPIAIJ(Mat matin,Vec bb,double omega,MatSORType flag,
895dbb450caSBarry Smith                            double fshift,int its,Vec xx)
8968a729477SBarry Smith {
89744a69424SLois Curfman McInnes   Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data;
898d6dfbf8fSBarry Smith   Mat        AA = mat->A, BB = mat->B;
899ec8511deSBarry Smith   Mat_SeqAIJ *A = (Mat_SeqAIJ *) AA->data, *B = (Mat_SeqAIJ *)BB->data;
900c16cb8f2SBarry Smith   Scalar     *b,*x,*xs,*ls,d,*v,sum;
9016abc6512SBarry Smith   int        ierr,*idx, *diag;
902416022c9SBarry Smith   int        n = mat->n, m = mat->m, i,shift = A->indexshift;
9038a729477SBarry Smith 
904d6dfbf8fSBarry Smith   VecGetArray(xx,&x); VecGetArray(bb,&b); VecGetArray(mat->lvec,&ls);
905dbb450caSBarry Smith   xs = x + shift; /* shift by one for index start of 1 */
906dbb450caSBarry Smith   ls = ls + shift;
90783e2fdc7SBarry Smith   if (!A->diag) {ierr = MatMarkDiag_SeqAIJ(AA); CHKERRQ(ierr);}
908d6dfbf8fSBarry Smith   diag = A->diag;
909c16cb8f2SBarry Smith   if ((flag & SOR_LOCAL_SYMMETRIC_SWEEP) == SOR_LOCAL_SYMMETRIC_SWEEP){
910da3a660dSBarry Smith     if (flag & SOR_ZERO_INITIAL_GUESS) {
91138597bd4SSatish Balay       return (*mat->A->ops.relax)(mat->A,bb,omega,flag,fshift,its,xx);
912da3a660dSBarry Smith     }
91343a90d84SBarry Smith     ierr=VecScatterBegin(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);
91478b31e54SBarry Smith     CHKERRQ(ierr);
91543a90d84SBarry Smith     ierr = VecScatterEnd(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);
91678b31e54SBarry Smith     CHKERRQ(ierr);
917d6dfbf8fSBarry Smith     while (its--) {
918d6dfbf8fSBarry Smith       /* go down through the rows */
919d6dfbf8fSBarry Smith       for ( i=0; i<m; i++ ) {
920d6dfbf8fSBarry Smith         n    = A->i[i+1] - A->i[i];
921dbb450caSBarry Smith         idx  = A->j + A->i[i] + shift;
922dbb450caSBarry Smith         v    = A->a + A->i[i] + shift;
923d6dfbf8fSBarry Smith         sum  = b[i];
924d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,xs,v,idx,n);
925dbb450caSBarry Smith         d    = fshift + A->a[diag[i]+shift];
926d6dfbf8fSBarry Smith         n    = B->i[i+1] - B->i[i];
927dbb450caSBarry Smith         idx  = B->j + B->i[i] + shift;
928dbb450caSBarry Smith         v    = B->a + B->i[i] + shift;
929d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,ls,v,idx,n);
93055a1b374SBarry Smith         x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d;
931d6dfbf8fSBarry Smith       }
932d6dfbf8fSBarry Smith       /* come up through the rows */
933d6dfbf8fSBarry Smith       for ( i=m-1; i>-1; i-- ) {
934d6dfbf8fSBarry Smith         n    = A->i[i+1] - A->i[i];
935dbb450caSBarry Smith         idx  = A->j + A->i[i] + shift;
936dbb450caSBarry Smith         v    = A->a + A->i[i] + shift;
937d6dfbf8fSBarry Smith         sum  = b[i];
938d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,xs,v,idx,n);
939dbb450caSBarry Smith         d    = fshift + A->a[diag[i]+shift];
940d6dfbf8fSBarry Smith         n    = B->i[i+1] - B->i[i];
941dbb450caSBarry Smith         idx  = B->j + B->i[i] + shift;
942dbb450caSBarry Smith         v    = B->a + B->i[i] + shift;
943d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,ls,v,idx,n);
94455a1b374SBarry Smith         x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d;
945d6dfbf8fSBarry Smith       }
946d6dfbf8fSBarry Smith     }
947d6dfbf8fSBarry Smith   }
948d6dfbf8fSBarry Smith   else if (flag & SOR_LOCAL_FORWARD_SWEEP){
949da3a660dSBarry Smith     if (flag & SOR_ZERO_INITIAL_GUESS) {
95038597bd4SSatish Balay       return (*mat->A->ops.relax)(mat->A,bb,omega,flag,fshift,its,xx);
951da3a660dSBarry Smith     }
95243a90d84SBarry Smith     ierr=VecScatterBegin(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);
95378b31e54SBarry Smith     CHKERRQ(ierr);
95443a90d84SBarry Smith     ierr = VecScatterEnd(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);
95578b31e54SBarry Smith     CHKERRQ(ierr);
956d6dfbf8fSBarry Smith     while (its--) {
957d6dfbf8fSBarry Smith       for ( i=0; i<m; i++ ) {
958d6dfbf8fSBarry Smith         n    = A->i[i+1] - A->i[i];
959dbb450caSBarry Smith         idx  = A->j + A->i[i] + shift;
960dbb450caSBarry Smith         v    = A->a + A->i[i] + shift;
961d6dfbf8fSBarry Smith         sum  = b[i];
962d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,xs,v,idx,n);
963dbb450caSBarry Smith         d    = fshift + A->a[diag[i]+shift];
964d6dfbf8fSBarry Smith         n    = B->i[i+1] - B->i[i];
965dbb450caSBarry Smith         idx  = B->j + B->i[i] + shift;
966dbb450caSBarry Smith         v    = B->a + B->i[i] + shift;
967d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,ls,v,idx,n);
96855a1b374SBarry Smith         x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d;
969d6dfbf8fSBarry Smith       }
970d6dfbf8fSBarry Smith     }
971d6dfbf8fSBarry Smith   }
972d6dfbf8fSBarry Smith   else if (flag & SOR_LOCAL_BACKWARD_SWEEP){
973da3a660dSBarry Smith     if (flag & SOR_ZERO_INITIAL_GUESS) {
97438597bd4SSatish Balay       return (*mat->A->ops.relax)(mat->A,bb,omega,flag,fshift,its,xx);
975da3a660dSBarry Smith     }
97643a90d84SBarry Smith     ierr = VecScatterBegin(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,
97778b31e54SBarry Smith                             mat->Mvctx); CHKERRQ(ierr);
97843a90d84SBarry Smith     ierr = VecScatterEnd(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,
97978b31e54SBarry Smith                             mat->Mvctx); CHKERRQ(ierr);
980d6dfbf8fSBarry Smith     while (its--) {
981d6dfbf8fSBarry Smith       for ( i=m-1; i>-1; i-- ) {
982d6dfbf8fSBarry Smith         n    = A->i[i+1] - A->i[i];
983dbb450caSBarry Smith         idx  = A->j + A->i[i] + shift;
984dbb450caSBarry Smith         v    = A->a + A->i[i] + shift;
985d6dfbf8fSBarry Smith         sum  = b[i];
986d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,xs,v,idx,n);
987dbb450caSBarry Smith         d    = fshift + A->a[diag[i]+shift];
988d6dfbf8fSBarry Smith         n    = B->i[i+1] - B->i[i];
989dbb450caSBarry Smith         idx  = B->j + B->i[i] + shift;
990dbb450caSBarry Smith         v    = B->a + B->i[i] + shift;
991d6dfbf8fSBarry Smith         SPARSEDENSEMDOT(sum,ls,v,idx,n);
99255a1b374SBarry Smith         x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d;
993d6dfbf8fSBarry Smith       }
994d6dfbf8fSBarry Smith     }
995d6dfbf8fSBarry Smith   }
996c16cb8f2SBarry Smith   else {
997e3372554SBarry Smith     SETERRQ(1,0,"Option not supported");
998c16cb8f2SBarry Smith   }
9998a729477SBarry Smith   return 0;
10008a729477SBarry Smith }
1001a66be287SLois Curfman McInnes 
10025615d1e5SSatish Balay #undef __FUNC__
1003d4bb536fSBarry Smith #define __FUNC__ "MatGetInfo_MPIAIJ"
10048f6be9afSLois Curfman McInnes int MatGetInfo_MPIAIJ(Mat matin,MatInfoType flag,MatInfo *info)
1005a66be287SLois Curfman McInnes {
1006a66be287SLois Curfman McInnes   Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data;
1007a66be287SLois Curfman McInnes   Mat        A = mat->A, B = mat->B;
10084e220ebcSLois Curfman McInnes   int        ierr;
10094e220ebcSLois Curfman McInnes   double     isend[5], irecv[5];
1010a66be287SLois Curfman McInnes 
10114e220ebcSLois Curfman McInnes   info->rows_global    = (double)mat->M;
10124e220ebcSLois Curfman McInnes   info->columns_global = (double)mat->N;
10134e220ebcSLois Curfman McInnes   info->rows_local     = (double)mat->m;
10144e220ebcSLois Curfman McInnes   info->columns_local  = (double)mat->N;
10154e220ebcSLois Curfman McInnes   info->block_size     = 1.0;
10164e220ebcSLois Curfman McInnes   ierr = MatGetInfo(A,MAT_LOCAL,info); CHKERRQ(ierr);
10174e220ebcSLois Curfman McInnes   isend[0] = info->nz_used; isend[1] = info->nz_allocated; isend[2] = info->nz_unneeded;
10184e220ebcSLois Curfman McInnes   isend[3] = info->memory;  isend[4] = info->mallocs;
10194e220ebcSLois Curfman McInnes   ierr = MatGetInfo(B,MAT_LOCAL,info); CHKERRQ(ierr);
10204e220ebcSLois Curfman McInnes   isend[0] += info->nz_used; isend[1] += info->nz_allocated; isend[2] += info->nz_unneeded;
10214e220ebcSLois Curfman McInnes   isend[3] += info->memory;  isend[4] += info->mallocs;
1022a66be287SLois Curfman McInnes   if (flag == MAT_LOCAL) {
10234e220ebcSLois Curfman McInnes     info->nz_used      = isend[0];
10244e220ebcSLois Curfman McInnes     info->nz_allocated = isend[1];
10254e220ebcSLois Curfman McInnes     info->nz_unneeded  = isend[2];
10264e220ebcSLois Curfman McInnes     info->memory       = isend[3];
10274e220ebcSLois Curfman McInnes     info->mallocs      = isend[4];
1028a66be287SLois Curfman McInnes   } else if (flag == MAT_GLOBAL_MAX) {
10294e220ebcSLois Curfman McInnes     MPI_Allreduce(isend,irecv,5,MPI_DOUBLE,MPI_MAX,matin->comm);
10304e220ebcSLois Curfman McInnes     info->nz_used      = irecv[0];
10314e220ebcSLois Curfman McInnes     info->nz_allocated = irecv[1];
10324e220ebcSLois Curfman McInnes     info->nz_unneeded  = irecv[2];
10334e220ebcSLois Curfman McInnes     info->memory       = irecv[3];
10344e220ebcSLois Curfman McInnes     info->mallocs      = irecv[4];
1035a66be287SLois Curfman McInnes   } else if (flag == MAT_GLOBAL_SUM) {
10364e220ebcSLois Curfman McInnes     MPI_Allreduce(isend,irecv,5,MPI_DOUBLE,MPI_SUM,matin->comm);
10374e220ebcSLois Curfman McInnes     info->nz_used      = irecv[0];
10384e220ebcSLois Curfman McInnes     info->nz_allocated = irecv[1];
10394e220ebcSLois Curfman McInnes     info->nz_unneeded  = irecv[2];
10404e220ebcSLois Curfman McInnes     info->memory       = irecv[3];
10414e220ebcSLois Curfman McInnes     info->mallocs      = irecv[4];
1042a66be287SLois Curfman McInnes   }
10434e220ebcSLois Curfman McInnes   info->fill_ratio_given  = 0; /* no parallel LU/ILU/Cholesky */
10444e220ebcSLois Curfman McInnes   info->fill_ratio_needed = 0;
10454e220ebcSLois Curfman McInnes   info->factor_mallocs    = 0;
10464e220ebcSLois Curfman McInnes 
1047a66be287SLois Curfman McInnes   return 0;
1048a66be287SLois Curfman McInnes }
1049a66be287SLois Curfman McInnes 
10505615d1e5SSatish Balay #undef __FUNC__
1051d4bb536fSBarry Smith #define __FUNC__ "MatSetOption_MPIAIJ"
10528f6be9afSLois Curfman McInnes int MatSetOption_MPIAIJ(Mat A,MatOption op)
1053c74985f6SBarry Smith {
1054c0bbcb79SLois Curfman McInnes   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
1055c74985f6SBarry Smith 
10566d4a8577SBarry Smith   if (op == MAT_NO_NEW_NONZERO_LOCATIONS ||
10576d4a8577SBarry Smith       op == MAT_YES_NEW_NONZERO_LOCATIONS ||
10586da5968aSLois Curfman McInnes       op == MAT_COLUMNS_UNSORTED ||
1059c2653b3dSLois Curfman McInnes       op == MAT_COLUMNS_SORTED ||
106096854ed6SLois Curfman McInnes       op == MAT_NEW_NONZERO_ALLOCATION_ERROR ||
1061c2653b3dSLois Curfman McInnes       op == MAT_NEW_NONZERO_LOCATION_ERROR) {
1062b1fbbac0SLois Curfman McInnes         MatSetOption(a->A,op);
1063b1fbbac0SLois Curfman McInnes         MatSetOption(a->B,op);
1064b1fbbac0SLois Curfman McInnes   } else if (op == MAT_ROW_ORIENTED) {
1065aeafbbfcSLois Curfman McInnes     a->roworiented = 1;
1066c0bbcb79SLois Curfman McInnes     MatSetOption(a->A,op);
1067c0bbcb79SLois Curfman McInnes     MatSetOption(a->B,op);
1068b1fbbac0SLois Curfman McInnes   } else if (op == MAT_ROWS_SORTED ||
10696da5968aSLois Curfman McInnes              op == MAT_ROWS_UNSORTED ||
10706d4a8577SBarry Smith              op == MAT_SYMMETRIC ||
10716d4a8577SBarry Smith              op == MAT_STRUCTURALLY_SYMMETRIC ||
10726d4a8577SBarry Smith              op == MAT_YES_NEW_DIAGONALS)
107394a424c1SBarry Smith     PLogInfo(A,"Info:MatSetOption_MPIAIJ:Option ignored\n");
10746d4a8577SBarry Smith   else if (op == MAT_COLUMN_ORIENTED) {
10754b0e389bSBarry Smith     a->roworiented = 0;
10764b0e389bSBarry Smith     MatSetOption(a->A,op);
10774b0e389bSBarry Smith     MatSetOption(a->B,op);
10782b362799SSatish Balay   } else if (op == MAT_IGNORE_OFF_PROC_ENTRIES) {
107990f02eecSBarry Smith     a->donotstash = 1;
108090f02eecSBarry Smith   } else if (op == MAT_NO_NEW_DIAGONALS)
1081e3372554SBarry Smith     {SETERRQ(PETSC_ERR_SUP,0,"MAT_NO_NEW_DIAGONALS");}
1082c0bbcb79SLois Curfman McInnes   else
1083e3372554SBarry Smith     {SETERRQ(PETSC_ERR_SUP,0,"unknown option");}
1084c74985f6SBarry Smith   return 0;
1085c74985f6SBarry Smith }
1086c74985f6SBarry Smith 
10875615d1e5SSatish Balay #undef __FUNC__
1088d4bb536fSBarry Smith #define __FUNC__ "MatGetSize_MPIAIJ"
10898f6be9afSLois Curfman McInnes int MatGetSize_MPIAIJ(Mat matin,int *m,int *n)
1090c74985f6SBarry Smith {
109144a69424SLois Curfman McInnes   Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data;
1092*0752156aSBarry Smith   if (m) *m = mat->M;
1093*0752156aSBarry Smith   if (n) *n = mat->N;
1094c74985f6SBarry Smith   return 0;
1095c74985f6SBarry Smith }
1096c74985f6SBarry Smith 
10975615d1e5SSatish Balay #undef __FUNC__
1098d4bb536fSBarry Smith #define __FUNC__ "MatGetLocalSize_MPIAIJ"
10998f6be9afSLois Curfman McInnes int MatGetLocalSize_MPIAIJ(Mat matin,int *m,int *n)
1100c74985f6SBarry Smith {
110144a69424SLois Curfman McInnes   Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data;
1102*0752156aSBarry Smith   if (m) *m = mat->m;
1103*0752156aSBarry Smith   if (n) *n = mat->N;
1104c74985f6SBarry Smith   return 0;
1105c74985f6SBarry Smith }
1106c74985f6SBarry Smith 
11075615d1e5SSatish Balay #undef __FUNC__
1108d4bb536fSBarry Smith #define __FUNC__ "MatGetOwnershipRange_MPIAIJ"
11098f6be9afSLois Curfman McInnes int MatGetOwnershipRange_MPIAIJ(Mat matin,int *m,int *n)
1110c74985f6SBarry Smith {
111144a69424SLois Curfman McInnes   Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data;
1112c74985f6SBarry Smith   *m = mat->rstart; *n = mat->rend;
1113c74985f6SBarry Smith   return 0;
1114c74985f6SBarry Smith }
1115c74985f6SBarry Smith 
11166d84be18SBarry Smith extern int MatGetRow_SeqAIJ(Mat,int,int*,int**,Scalar**);
11176d84be18SBarry Smith extern int MatRestoreRow_SeqAIJ(Mat,int,int*,int**,Scalar**);
11186d84be18SBarry Smith 
11195615d1e5SSatish Balay #undef __FUNC__
11205615d1e5SSatish Balay #define __FUNC__ "MatGetRow_MPIAIJ"
11216d84be18SBarry Smith int MatGetRow_MPIAIJ(Mat matin,int row,int *nz,int **idx,Scalar **v)
112239e00950SLois Curfman McInnes {
1123154123eaSLois Curfman McInnes   Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data;
112470f0671dSBarry Smith   Scalar     *vworkA, *vworkB, **pvA, **pvB,*v_p;
1125154123eaSLois Curfman McInnes   int        i, ierr, *cworkA, *cworkB, **pcA, **pcB, cstart = mat->cstart;
1126154123eaSLois Curfman McInnes   int        nztot, nzA, nzB, lrow, rstart = mat->rstart, rend = mat->rend;
112770f0671dSBarry Smith   int        *cmap, *idx_p;
112839e00950SLois Curfman McInnes 
1129e3372554SBarry Smith   if (mat->getrowactive == PETSC_TRUE) SETERRQ(1,0,"Already active");
11307a0afa10SBarry Smith   mat->getrowactive = PETSC_TRUE;
11317a0afa10SBarry Smith 
113270f0671dSBarry Smith   if (!mat->rowvalues && (idx || v)) {
11337a0afa10SBarry Smith     /*
11347a0afa10SBarry Smith         allocate enough space to hold information from the longest row.
11357a0afa10SBarry Smith     */
11367a0afa10SBarry Smith     Mat_SeqAIJ *Aa = (Mat_SeqAIJ *) mat->A->data,*Ba = (Mat_SeqAIJ *) mat->B->data;
1137c16cb8f2SBarry Smith     int     max = 1,m = mat->m,tmp;
1138c16cb8f2SBarry Smith     for ( i=0; i<m; i++ ) {
11397a0afa10SBarry Smith       tmp = Aa->i[i+1] - Aa->i[i] + Ba->i[i+1] - Ba->i[i];
11407a0afa10SBarry Smith       if (max < tmp) { max = tmp; }
11417a0afa10SBarry Smith     }
11427a0afa10SBarry Smith     mat->rowvalues = (Scalar *) PetscMalloc( max*(sizeof(int)+sizeof(Scalar)));
11437a0afa10SBarry Smith     CHKPTRQ(mat->rowvalues);
11447a0afa10SBarry Smith     mat->rowindices = (int *) (mat->rowvalues + max);
11457a0afa10SBarry Smith   }
11467a0afa10SBarry Smith 
1147e3372554SBarry Smith   if (row < rstart || row >= rend) SETERRQ(1,0,"Only local rows")
1148abc0e9e4SLois Curfman McInnes   lrow = row - rstart;
114939e00950SLois Curfman McInnes 
1150154123eaSLois Curfman McInnes   pvA = &vworkA; pcA = &cworkA; pvB = &vworkB; pcB = &cworkB;
1151154123eaSLois Curfman McInnes   if (!v)   {pvA = 0; pvB = 0;}
1152154123eaSLois Curfman McInnes   if (!idx) {pcA = 0; if (!v) pcB = 0;}
115338597bd4SSatish Balay   ierr = (*mat->A->ops.getrow)(mat->A,lrow,&nzA,pcA,pvA); CHKERRQ(ierr);
115438597bd4SSatish Balay   ierr = (*mat->B->ops.getrow)(mat->B,lrow,&nzB,pcB,pvB); CHKERRQ(ierr);
1155154123eaSLois Curfman McInnes   nztot = nzA + nzB;
1156154123eaSLois Curfman McInnes 
115770f0671dSBarry Smith   cmap  = mat->garray;
1158154123eaSLois Curfman McInnes   if (v  || idx) {
1159154123eaSLois Curfman McInnes     if (nztot) {
1160154123eaSLois Curfman McInnes       /* Sort by increasing column numbers, assuming A and B already sorted */
116170f0671dSBarry Smith       int imark = -1;
1162154123eaSLois Curfman McInnes       if (v) {
116370f0671dSBarry Smith         *v = v_p = mat->rowvalues;
116439e00950SLois Curfman McInnes         for ( i=0; i<nzB; i++ ) {
116570f0671dSBarry Smith           if (cmap[cworkB[i]] < cstart)   v_p[i] = vworkB[i];
1166154123eaSLois Curfman McInnes           else break;
1167154123eaSLois Curfman McInnes         }
1168154123eaSLois Curfman McInnes         imark = i;
116970f0671dSBarry Smith         for ( i=0; i<nzA; i++ )     v_p[imark+i] = vworkA[i];
117070f0671dSBarry Smith         for ( i=imark; i<nzB; i++ ) v_p[nzA+i]   = vworkB[i];
1171154123eaSLois Curfman McInnes       }
1172154123eaSLois Curfman McInnes       if (idx) {
117370f0671dSBarry Smith         *idx = idx_p = mat->rowindices;
117470f0671dSBarry Smith         if (imark > -1) {
117570f0671dSBarry Smith           for ( i=0; i<imark; i++ ) {
117670f0671dSBarry Smith             idx_p[i] = cmap[cworkB[i]];
117770f0671dSBarry Smith           }
117870f0671dSBarry Smith         } else {
1179154123eaSLois Curfman McInnes           for ( i=0; i<nzB; i++ ) {
118070f0671dSBarry Smith             if (cmap[cworkB[i]] < cstart)   idx_p[i] = cmap[cworkB[i]];
1181154123eaSLois Curfman McInnes             else break;
1182154123eaSLois Curfman McInnes           }
1183154123eaSLois Curfman McInnes           imark = i;
118470f0671dSBarry Smith         }
118570f0671dSBarry Smith         for ( i=0; i<nzA; i++ )     idx_p[imark+i] = cstart + cworkA[i];
118670f0671dSBarry Smith         for ( i=imark; i<nzB; i++ ) idx_p[nzA+i]   = cmap[cworkB[i]];
118739e00950SLois Curfman McInnes       }
118839e00950SLois Curfman McInnes     }
11891ca473b0SSatish Balay     else {
11901ca473b0SSatish Balay       if (idx) *idx = 0;
11911ca473b0SSatish Balay       if (v)   *v   = 0;
11921ca473b0SSatish Balay     }
1193154123eaSLois Curfman McInnes   }
119439e00950SLois Curfman McInnes   *nz = nztot;
119538597bd4SSatish Balay   ierr = (*mat->A->ops.restorerow)(mat->A,lrow,&nzA,pcA,pvA); CHKERRQ(ierr);
119638597bd4SSatish Balay   ierr = (*mat->B->ops.restorerow)(mat->B,lrow,&nzB,pcB,pvB); CHKERRQ(ierr);
119739e00950SLois Curfman McInnes   return 0;
119839e00950SLois Curfman McInnes }
119939e00950SLois Curfman McInnes 
12005615d1e5SSatish Balay #undef __FUNC__
1201d4bb536fSBarry Smith #define __FUNC__ "MatRestoreRow_MPIAIJ"
12026d84be18SBarry Smith int MatRestoreRow_MPIAIJ(Mat mat,int row,int *nz,int **idx,Scalar **v)
120339e00950SLois Curfman McInnes {
12047a0afa10SBarry Smith   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
12057a0afa10SBarry Smith   if (aij->getrowactive == PETSC_FALSE) {
1206e3372554SBarry Smith     SETERRQ(1,0,"MatGetRow not called");
12077a0afa10SBarry Smith   }
12087a0afa10SBarry Smith   aij->getrowactive = PETSC_FALSE;
120939e00950SLois Curfman McInnes   return 0;
121039e00950SLois Curfman McInnes }
121139e00950SLois Curfman McInnes 
12125615d1e5SSatish Balay #undef __FUNC__
12135615d1e5SSatish Balay #define __FUNC__ "MatNorm_MPIAIJ"
12148f6be9afSLois Curfman McInnes int MatNorm_MPIAIJ(Mat mat,NormType type,double *norm)
1215855ac2c5SLois Curfman McInnes {
1216855ac2c5SLois Curfman McInnes   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
1217ec8511deSBarry Smith   Mat_SeqAIJ *amat = (Mat_SeqAIJ*) aij->A->data, *bmat = (Mat_SeqAIJ*) aij->B->data;
1218416022c9SBarry Smith   int        ierr, i, j, cstart = aij->cstart,shift = amat->indexshift;
1219416022c9SBarry Smith   double     sum = 0.0;
122004ca555eSLois Curfman McInnes   Scalar     *v;
122104ca555eSLois Curfman McInnes 
122217699dbbSLois Curfman McInnes   if (aij->size == 1) {
122314183eadSLois Curfman McInnes     ierr =  MatNorm(aij->A,type,norm); CHKERRQ(ierr);
122437fa93a5SLois Curfman McInnes   } else {
122504ca555eSLois Curfman McInnes     if (type == NORM_FROBENIUS) {
122604ca555eSLois Curfman McInnes       v = amat->a;
122704ca555eSLois Curfman McInnes       for (i=0; i<amat->nz; i++ ) {
122804ca555eSLois Curfman McInnes #if defined(PETSC_COMPLEX)
122904ca555eSLois Curfman McInnes         sum += real(conj(*v)*(*v)); v++;
123004ca555eSLois Curfman McInnes #else
123104ca555eSLois Curfman McInnes         sum += (*v)*(*v); v++;
123204ca555eSLois Curfman McInnes #endif
123304ca555eSLois Curfman McInnes       }
123404ca555eSLois Curfman McInnes       v = bmat->a;
123504ca555eSLois Curfman McInnes       for (i=0; i<bmat->nz; i++ ) {
123604ca555eSLois Curfman McInnes #if defined(PETSC_COMPLEX)
123704ca555eSLois Curfman McInnes         sum += real(conj(*v)*(*v)); v++;
123804ca555eSLois Curfman McInnes #else
123904ca555eSLois Curfman McInnes         sum += (*v)*(*v); v++;
124004ca555eSLois Curfman McInnes #endif
124104ca555eSLois Curfman McInnes       }
12426d84be18SBarry Smith       MPI_Allreduce(&sum,norm,1,MPI_DOUBLE,MPI_SUM,mat->comm);
124304ca555eSLois Curfman McInnes       *norm = sqrt(*norm);
124404ca555eSLois Curfman McInnes     }
124504ca555eSLois Curfman McInnes     else if (type == NORM_1) { /* max column norm */
124604ca555eSLois Curfman McInnes       double *tmp, *tmp2;
124704ca555eSLois Curfman McInnes       int    *jj, *garray = aij->garray;
1248758f045eSSatish Balay       tmp  = (double *) PetscMalloc( (aij->N+1)*sizeof(double) ); CHKPTRQ(tmp);
1249758f045eSSatish Balay       tmp2 = (double *) PetscMalloc( (aij->N+1)*sizeof(double) ); CHKPTRQ(tmp2);
1250cddf8d76SBarry Smith       PetscMemzero(tmp,aij->N*sizeof(double));
125104ca555eSLois Curfman McInnes       *norm = 0.0;
125204ca555eSLois Curfman McInnes       v = amat->a; jj = amat->j;
125304ca555eSLois Curfman McInnes       for ( j=0; j<amat->nz; j++ ) {
1254579c6b6fSBarry Smith         tmp[cstart + *jj++ + shift] += PetscAbsScalar(*v);  v++;
125504ca555eSLois Curfman McInnes       }
125604ca555eSLois Curfman McInnes       v = bmat->a; jj = bmat->j;
125704ca555eSLois Curfman McInnes       for ( j=0; j<bmat->nz; j++ ) {
1258579c6b6fSBarry Smith         tmp[garray[*jj++ + shift]] += PetscAbsScalar(*v); v++;
125904ca555eSLois Curfman McInnes       }
12606d84be18SBarry Smith       MPI_Allreduce(tmp,tmp2,aij->N,MPI_DOUBLE,MPI_SUM,mat->comm);
126104ca555eSLois Curfman McInnes       for ( j=0; j<aij->N; j++ ) {
126204ca555eSLois Curfman McInnes         if (tmp2[j] > *norm) *norm = tmp2[j];
126304ca555eSLois Curfman McInnes       }
12640452661fSBarry Smith       PetscFree(tmp); PetscFree(tmp2);
126504ca555eSLois Curfman McInnes     }
126604ca555eSLois Curfman McInnes     else if (type == NORM_INFINITY) { /* max row norm */
1267515d9167SLois Curfman McInnes       double ntemp = 0.0;
126804ca555eSLois Curfman McInnes       for ( j=0; j<amat->m; j++ ) {
1269dbb450caSBarry Smith         v = amat->a + amat->i[j] + shift;
127004ca555eSLois Curfman McInnes         sum = 0.0;
127104ca555eSLois Curfman McInnes         for ( i=0; i<amat->i[j+1]-amat->i[j]; i++ ) {
1272cddf8d76SBarry Smith           sum += PetscAbsScalar(*v); v++;
127304ca555eSLois Curfman McInnes         }
1274dbb450caSBarry Smith         v = bmat->a + bmat->i[j] + shift;
127504ca555eSLois Curfman McInnes         for ( i=0; i<bmat->i[j+1]-bmat->i[j]; i++ ) {
1276cddf8d76SBarry Smith           sum += PetscAbsScalar(*v); v++;
127704ca555eSLois Curfman McInnes         }
1278515d9167SLois Curfman McInnes         if (sum > ntemp) ntemp = sum;
127904ca555eSLois Curfman McInnes       }
12806d84be18SBarry Smith       MPI_Allreduce(&ntemp,norm,1,MPI_DOUBLE,MPI_MAX,mat->comm);
128104ca555eSLois Curfman McInnes     }
128204ca555eSLois Curfman McInnes     else {
1283e3372554SBarry Smith       SETERRQ(1,0,"No support for two norm");
128404ca555eSLois Curfman McInnes     }
128537fa93a5SLois Curfman McInnes   }
1286855ac2c5SLois Curfman McInnes   return 0;
1287855ac2c5SLois Curfman McInnes }
1288855ac2c5SLois Curfman McInnes 
12895615d1e5SSatish Balay #undef __FUNC__
12905615d1e5SSatish Balay #define __FUNC__ "MatTranspose_MPIAIJ"
12918f6be9afSLois Curfman McInnes int MatTranspose_MPIAIJ(Mat A,Mat *matout)
1292b7c46309SBarry Smith {
1293b7c46309SBarry Smith   Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data;
1294dbb450caSBarry Smith   Mat_SeqAIJ *Aloc = (Mat_SeqAIJ *) a->A->data;
1295416022c9SBarry Smith   int        ierr,shift = Aloc->indexshift;
1296416022c9SBarry Smith   Mat        B;
1297b7c46309SBarry Smith   int        M = a->M, N = a->N,m,*ai,*aj,row,*cols,i,*ct;
1298b7c46309SBarry Smith   Scalar     *array;
1299b7c46309SBarry Smith 
1300d4bb536fSBarry Smith   if (matout == PETSC_NULL && M != N) {
1301e3372554SBarry Smith     SETERRQ(1,0,"Square matrix only for in-place");
1302d4bb536fSBarry Smith   }
1303d4bb536fSBarry Smith 
1304d4bb536fSBarry Smith   ierr = MatCreateMPIAIJ(A->comm,a->n,a->m,N,M,0,PETSC_NULL,0,PETSC_NULL,&B);CHKERRQ(ierr);
1305b7c46309SBarry Smith 
1306b7c46309SBarry Smith   /* copy over the A part */
1307ec8511deSBarry Smith   Aloc = (Mat_SeqAIJ*) a->A->data;
1308b7c46309SBarry Smith   m = Aloc->m; ai = Aloc->i; aj = Aloc->j; array = Aloc->a;
1309b7c46309SBarry Smith   row = a->rstart;
1310dbb450caSBarry Smith   for ( i=0; i<ai[m]+shift; i++ ) {aj[i] += a->cstart + shift;}
1311b7c46309SBarry Smith   for ( i=0; i<m; i++ ) {
1312416022c9SBarry Smith     ierr = MatSetValues(B,ai[i+1]-ai[i],aj,1,&row,array,INSERT_VALUES);CHKERRQ(ierr);
1313b7c46309SBarry Smith     row++; array += ai[i+1]-ai[i]; aj += ai[i+1]-ai[i];
1314b7c46309SBarry Smith   }
1315b7c46309SBarry Smith   aj = Aloc->j;
13164af08d9eSBarry Smith   for ( i=0; i<ai[m]+shift; i++ ) {aj[i] -= a->cstart + shift;}
1317b7c46309SBarry Smith 
1318b7c46309SBarry Smith   /* copy over the B part */
1319ec8511deSBarry Smith   Aloc = (Mat_SeqAIJ*) a->B->data;
1320b7c46309SBarry Smith   m = Aloc->m;  ai = Aloc->i; aj = Aloc->j; array = Aloc->a;
1321b7c46309SBarry Smith   row = a->rstart;
13220452661fSBarry Smith   ct = cols = (int *) PetscMalloc( (1+ai[m]-shift)*sizeof(int) ); CHKPTRQ(cols);
1323dbb450caSBarry Smith   for ( i=0; i<ai[m]+shift; i++ ) {cols[i] = a->garray[aj[i]+shift];}
1324b7c46309SBarry Smith   for ( i=0; i<m; i++ ) {
1325416022c9SBarry Smith     ierr = MatSetValues(B,ai[i+1]-ai[i],cols,1,&row,array,INSERT_VALUES);CHKERRQ(ierr);
1326b7c46309SBarry Smith     row++; array += ai[i+1]-ai[i]; cols += ai[i+1]-ai[i];
1327b7c46309SBarry Smith   }
13280452661fSBarry Smith   PetscFree(ct);
13296d4a8577SBarry Smith   ierr = MatAssemblyBegin(B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr);
13306d4a8577SBarry Smith   ierr = MatAssemblyEnd(B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr);
13313638b69dSLois Curfman McInnes   if (matout != PETSC_NULL) {
13320de55854SLois Curfman McInnes     *matout = B;
13330de55854SLois Curfman McInnes   } else {
13340de55854SLois Curfman McInnes     /* This isn't really an in-place transpose .... but free data structures from a */
13350452661fSBarry Smith     PetscFree(a->rowners);
13360de55854SLois Curfman McInnes     ierr = MatDestroy(a->A); CHKERRQ(ierr);
13370de55854SLois Curfman McInnes     ierr = MatDestroy(a->B); CHKERRQ(ierr);
13380452661fSBarry Smith     if (a->colmap) PetscFree(a->colmap);
13390452661fSBarry Smith     if (a->garray) PetscFree(a->garray);
13400de55854SLois Curfman McInnes     if (a->lvec) VecDestroy(a->lvec);
1341a56f8943SBarry Smith     if (a->Mvctx) VecScatterDestroy(a->Mvctx);
13420452661fSBarry Smith     PetscFree(a);
1343f09e8eb9SSatish Balay     PetscMemcpy(A,B,sizeof(struct _p_Mat));
13440452661fSBarry Smith     PetscHeaderDestroy(B);
13450de55854SLois Curfman McInnes   }
1346b7c46309SBarry Smith   return 0;
1347b7c46309SBarry Smith }
1348b7c46309SBarry Smith 
13495615d1e5SSatish Balay #undef __FUNC__
13505615d1e5SSatish Balay #define __FUNC__ "MatDiagonalScale_MPIAIJ"
13514b967eb1SSatish Balay int MatDiagonalScale_MPIAIJ(Mat mat,Vec ll,Vec rr)
1352a008b906SSatish Balay {
13534b967eb1SSatish Balay   Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data;
13544b967eb1SSatish Balay   Mat a = aij->A, b = aij->B;
1355a008b906SSatish Balay   int ierr,s1,s2,s3;
1356a008b906SSatish Balay 
13574b967eb1SSatish Balay   ierr = MatGetLocalSize(mat,&s2,&s3); CHKERRQ(ierr);
13584b967eb1SSatish Balay   if (rr) {
13594b967eb1SSatish Balay     s3 = aij->n;
13604b967eb1SSatish Balay     VecGetLocalSize_Fast(rr,s1);
1361e3372554SBarry Smith     if (s1!=s3) SETERRQ(1,0,"right vector non-conforming local size");
13624b967eb1SSatish Balay     /* Overlap communication with computation. */
136343a90d84SBarry Smith     ierr = VecScatterBegin(rr,aij->lvec,INSERT_VALUES,SCATTER_FORWARD,aij->Mvctx); CHKERRQ(ierr);
1364a008b906SSatish Balay   }
13654b967eb1SSatish Balay   if (ll) {
13664b967eb1SSatish Balay     VecGetLocalSize_Fast(ll,s1);
1367e3372554SBarry Smith     if (s1!=s2) SETERRQ(1,0,"left vector non-conforming local size");
1368c351683dSSatish Balay     ierr = (*b->ops.diagonalscale)(b,ll,0); CHKERRQ(ierr);
13694b967eb1SSatish Balay   }
13704b967eb1SSatish Balay   /* scale  the diagonal block */
1371c351683dSSatish Balay   ierr = (*a->ops.diagonalscale)(a,ll,rr); CHKERRQ(ierr);
13724b967eb1SSatish Balay 
13734b967eb1SSatish Balay   if (rr) {
13744b967eb1SSatish Balay     /* Do a scatter end and then right scale the off-diagonal block */
137543a90d84SBarry Smith     ierr = VecScatterEnd(rr,aij->lvec,INSERT_VALUES,SCATTER_FORWARD,aij->Mvctx); CHKERRQ(ierr);
1376c351683dSSatish Balay     ierr = (*b->ops.diagonalscale)(b,0,aij->lvec); CHKERRQ(ierr);
13774b967eb1SSatish Balay   }
13784b967eb1SSatish Balay 
1379a008b906SSatish Balay   return 0;
1380a008b906SSatish Balay }
1381a008b906SSatish Balay 
1382a008b906SSatish Balay 
1383682d7d0cSBarry Smith extern int MatPrintHelp_SeqAIJ(Mat);
13845615d1e5SSatish Balay #undef __FUNC__
1385d4bb536fSBarry Smith #define __FUNC__ "MatPrintHelp_MPIAIJ"
13868f6be9afSLois Curfman McInnes int MatPrintHelp_MPIAIJ(Mat A)
1387682d7d0cSBarry Smith {
1388682d7d0cSBarry Smith   Mat_MPIAIJ *a   = (Mat_MPIAIJ*) A->data;
1389682d7d0cSBarry Smith 
1390682d7d0cSBarry Smith   if (!a->rank) return MatPrintHelp_SeqAIJ(a->A);
1391682d7d0cSBarry Smith   else return 0;
1392682d7d0cSBarry Smith }
1393682d7d0cSBarry Smith 
13945615d1e5SSatish Balay #undef __FUNC__
1395d4bb536fSBarry Smith #define __FUNC__ "MatGetBlockSize_MPIAIJ"
13968f6be9afSLois Curfman McInnes int MatGetBlockSize_MPIAIJ(Mat A,int *bs)
13975a838052SSatish Balay {
13985a838052SSatish Balay   *bs = 1;
13995a838052SSatish Balay   return 0;
14005a838052SSatish Balay }
14015615d1e5SSatish Balay #undef __FUNC__
1402d4bb536fSBarry Smith #define __FUNC__ "MatSetUnfactored_MPIAIJ"
14038f6be9afSLois Curfman McInnes int MatSetUnfactored_MPIAIJ(Mat A)
1404bb5a7306SBarry Smith {
1405bb5a7306SBarry Smith   Mat_MPIAIJ *a   = (Mat_MPIAIJ*) A->data;
1406bb5a7306SBarry Smith   int        ierr;
1407bb5a7306SBarry Smith   ierr = MatSetUnfactored(a->A); CHKERRQ(ierr);
1408bb5a7306SBarry Smith   return 0;
1409bb5a7306SBarry Smith }
1410bb5a7306SBarry Smith 
1411d4bb536fSBarry Smith #undef __FUNC__
1412d4bb536fSBarry Smith #define __FUNC__ "MatEqual_MPIAIJ"
1413d4bb536fSBarry Smith int MatEqual_MPIAIJ(Mat A, Mat B, PetscTruth *flag)
1414d4bb536fSBarry Smith {
1415d4bb536fSBarry Smith   Mat_MPIAIJ *matB = (Mat_MPIAIJ *) B->data,*matA = (Mat_MPIAIJ *) A->data;
1416d4bb536fSBarry Smith   Mat        a, b, c, d;
1417d4bb536fSBarry Smith   PetscTruth flg;
1418d4bb536fSBarry Smith   int        ierr;
1419d4bb536fSBarry Smith 
1420d4bb536fSBarry Smith   if (B->type != MATMPIAIJ) SETERRQ(1,0,"Matrices must be same type");
1421d4bb536fSBarry Smith   a = matA->A; b = matA->B;
1422d4bb536fSBarry Smith   c = matB->A; d = matB->B;
1423d4bb536fSBarry Smith 
1424d4bb536fSBarry Smith   ierr = MatEqual(a, c, &flg); CHKERRQ(ierr);
1425d4bb536fSBarry Smith   if (flg == PETSC_TRUE) {
1426d4bb536fSBarry Smith     ierr = MatEqual(b, d, &flg); CHKERRQ(ierr);
1427d4bb536fSBarry Smith   }
1428d4bb536fSBarry Smith   MPI_Allreduce(&flg, flag, 1, MPI_INT, MPI_LAND, A->comm);
1429d4bb536fSBarry Smith   return(0);
1430d4bb536fSBarry Smith }
1431d4bb536fSBarry Smith 
14328f6be9afSLois Curfman McInnes extern int MatConvertSameType_MPIAIJ(Mat,Mat *,int);
14332f86bd48SSatish Balay extern int MatIncreaseOverlap_MPIAIJ(Mat , int, IS *, int);
14340a198c4cSBarry Smith extern int MatFDColoringCreate_MPIAIJ(Mat,ISColoring,MatFDColoring);
14350a198c4cSBarry Smith extern int MatGetSubMatrices_MPIAIJ (Mat ,int , IS *,IS *,MatGetSubMatrixCall,Mat **);
14368a729477SBarry Smith /* -------------------------------------------------------------------*/
14372ee70a88SLois Curfman McInnes static struct _MatOps MatOps = {MatSetValues_MPIAIJ,
143839e00950SLois Curfman McInnes        MatGetRow_MPIAIJ,MatRestoreRow_MPIAIJ,
143944a69424SLois Curfman McInnes        MatMult_MPIAIJ,MatMultAdd_MPIAIJ,
144044a69424SLois Curfman McInnes        MatMultTrans_MPIAIJ,MatMultTransAdd_MPIAIJ,
144136ce4990SBarry Smith        0,0,
144236ce4990SBarry Smith        0,0,
144336ce4990SBarry Smith        0,0,
144444a69424SLois Curfman McInnes        MatRelax_MPIAIJ,
1445b7c46309SBarry Smith        MatTranspose_MPIAIJ,
1446d4bb536fSBarry Smith        MatGetInfo_MPIAIJ,MatEqual_MPIAIJ,
1447a008b906SSatish Balay        MatGetDiagonal_MPIAIJ,MatDiagonalScale_MPIAIJ,MatNorm_MPIAIJ,
1448ee50ffe9SBarry Smith        MatAssemblyBegin_MPIAIJ,MatAssemblyEnd_MPIAIJ,
14491eb62cbbSBarry Smith        0,
1450299609e3SLois Curfman McInnes        MatSetOption_MPIAIJ,MatZeroEntries_MPIAIJ,MatZeroRows_MPIAIJ,
145136ce4990SBarry Smith        0,0,0,0,
1452d1710a03SLois Curfman McInnes        MatGetSize_MPIAIJ,MatGetLocalSize_MPIAIJ,MatGetOwnershipRange_MPIAIJ,
145336ce4990SBarry Smith        0,0,
145494a9d846SBarry Smith        0,0,MatConvertSameType_MPIAIJ,0,0,
1455b49de8d1SLois Curfman McInnes        0,0,0,
1456598137ffSSatish Balay        MatGetSubMatrices_MPIAIJ,MatIncreaseOverlap_MPIAIJ,MatGetValues_MPIAIJ,0,
1457052efed2SBarry Smith        MatPrintHelp_MPIAIJ,
14583b2fbd54SBarry Smith        MatScale_MPIAIJ,0,0,0,
14590a198c4cSBarry Smith        MatGetBlockSize_MPIAIJ,0,0,0,0,
1460bb5a7306SBarry Smith        MatFDColoringCreate_MPIAIJ,0,MatSetUnfactored_MPIAIJ};
146136ce4990SBarry Smith 
14628a729477SBarry Smith 
14635615d1e5SSatish Balay #undef __FUNC__
14645615d1e5SSatish Balay #define __FUNC__ "MatCreateMPIAIJ"
14651987afe7SBarry Smith /*@C
1466ff756334SLois Curfman McInnes    MatCreateMPIAIJ - Creates a sparse parallel matrix in AIJ format
14673a511b96SLois Curfman McInnes    (the default parallel PETSc format).  For good matrix assembly performance
14683a511b96SLois Curfman McInnes    the user should preallocate the matrix storage by setting the parameters
14693a511b96SLois Curfman McInnes    d_nz (or d_nnz) and o_nz (or o_nnz).  By setting these parameters accurately,
14703a511b96SLois Curfman McInnes    performance can be increased by more than a factor of 50.
14718a729477SBarry Smith 
14728a729477SBarry Smith    Input Parameters:
14731eb62cbbSBarry Smith .  comm - MPI communicator
14747d3e4905SLois Curfman McInnes .  m - number of local rows (or PETSC_DECIDE to have calculated if M is given)
147592e8d321SLois Curfman McInnes            This value should be the same as the local size used in creating the
147692e8d321SLois Curfman McInnes            y vector for the matrix-vector product y = Ax.
14771a3896d6SBarry Smith .  n - This value should be the same as the local size used in creating the
14781a3896d6SBarry Smith        x vector for the matrix-vector product y = Ax. (or PETSC_DECIDE to have
14791a3896d6SBarry Smith        calculated if N is given) For square matrices n is almost always m.
14807d3e4905SLois Curfman McInnes .  M - number of global rows (or PETSC_DECIDE to have calculated if m is given)
148192e8d321SLois Curfman McInnes .  N - number of global columns (or PETSC_DECIDE to have calculated if n is given)
1482ab693e5aSLois Curfman McInnes .  d_nz - number of nonzeros per row in diagonal portion of local submatrix
1483ff756334SLois Curfman McInnes            (same for all local rows)
14842bd5e0b2SLois Curfman McInnes .  d_nzz - array containing the number of nonzeros in the various rows of the
148592e8d321SLois Curfman McInnes            diagonal portion of the local submatrix (possibly different for each row)
14862bd5e0b2SLois Curfman McInnes            or PETSC_NULL. You must leave room for the diagonal entry even if
14872bd5e0b2SLois Curfman McInnes            it is zero.
14882bd5e0b2SLois Curfman McInnes .  o_nz - number of nonzeros per row in the off-diagonal portion of local
1489ab693e5aSLois Curfman McInnes            submatrix (same for all local rows).
14902bd5e0b2SLois Curfman McInnes .  o_nzz - array containing the number of nonzeros in the various rows of the
14912bd5e0b2SLois Curfman McInnes            off-diagonal portion of the local submatrix (possibly different for
14922bd5e0b2SLois Curfman McInnes            each row) or PETSC_NULL.
14938a729477SBarry Smith 
1494ff756334SLois Curfman McInnes    Output Parameter:
149544cd7ae7SLois Curfman McInnes .  A - the matrix
14968a729477SBarry Smith 
1497ff756334SLois Curfman McInnes    Notes:
1498ff756334SLois Curfman McInnes    The AIJ format (also called the Yale sparse matrix format or
1499ff756334SLois Curfman McInnes    compressed row storage), is fully compatible with standard Fortran 77
15000002213bSLois Curfman McInnes    storage.  That is, the stored row and column indices can begin at
15010002213bSLois Curfman McInnes    either one (as in Fortran) or zero.  See the users manual for details.
1502ff756334SLois Curfman McInnes 
1503ff756334SLois Curfman McInnes    The user MUST specify either the local or global matrix dimensions
1504ff756334SLois Curfman McInnes    (possibly both).
1505ff756334SLois Curfman McInnes 
15065511cfe3SLois Curfman McInnes    By default, this format uses inodes (identical nodes) when possible.
15075511cfe3SLois Curfman McInnes    We search for consecutive rows with the same nonzero structure, thereby
15085511cfe3SLois Curfman McInnes    reusing matrix information to achieve increased efficiency.
15095511cfe3SLois Curfman McInnes 
15105511cfe3SLois Curfman McInnes    Options Database Keys:
15115511cfe3SLois Curfman McInnes $    -mat_aij_no_inode  - Do not use inodes
15126e62573dSLois Curfman McInnes $    -mat_aij_inode_limit <limit> - Set inode limit.
15136e62573dSLois Curfman McInnes $        (max limit=5)
15146e62573dSLois Curfman McInnes $    -mat_aij_oneindex - Internally use indexing starting at 1
15156e62573dSLois Curfman McInnes $        rather than 0.  Note: When calling MatSetValues(),
15166e62573dSLois Curfman McInnes $        the user still MUST index entries starting at 0!
15175511cfe3SLois Curfman McInnes 
1518e0245417SLois Curfman McInnes    Storage Information:
1519e0245417SLois Curfman McInnes    For a square global matrix we define each processor's diagonal portion
1520e0245417SLois Curfman McInnes    to be its local rows and the corresponding columns (a square submatrix);
1521e0245417SLois Curfman McInnes    each processor's off-diagonal portion encompasses the remainder of the
1522e0245417SLois Curfman McInnes    local matrix (a rectangular submatrix).
1523e0245417SLois Curfman McInnes 
1524e0245417SLois Curfman McInnes    The user can specify preallocated storage for the diagonal part of
15255ace5be8SLois Curfman McInnes    the local submatrix with either d_nz or d_nnz (not both).  Set
15265ace5be8SLois Curfman McInnes    d_nz=PETSC_DEFAULT and d_nnz=PETSC_NULL for PETSc to control dynamic
15275ace5be8SLois Curfman McInnes    memory allocation.  Likewise, specify preallocated storage for the
15285ace5be8SLois Curfman McInnes    off-diagonal part of the local submatrix with o_nz or o_nnz (not both).
1529ff756334SLois Curfman McInnes 
15305511cfe3SLois Curfman McInnes    Consider a processor that owns rows 3, 4 and 5 of a parallel matrix. In
15315511cfe3SLois Curfman McInnes    the figure below we depict these three local rows and all columns (0-11).
15322191d07cSBarry Smith 
1533b810aeb4SBarry Smith $          0 1 2 3 4 5 6 7 8 9 10 11
1534b810aeb4SBarry Smith $         -------------------
15355511cfe3SLois Curfman McInnes $  row 3  |  o o o d d d o o o o o o
15365511cfe3SLois Curfman McInnes $  row 4  |  o o o d d d o o o o o o
15375511cfe3SLois Curfman McInnes $  row 5  |  o o o d d d o o o o o o
15385511cfe3SLois Curfman McInnes $         -------------------
1539b810aeb4SBarry Smith $
1540b810aeb4SBarry Smith 
15415511cfe3SLois Curfman McInnes    Thus, any entries in the d locations are stored in the d (diagonal)
15425511cfe3SLois Curfman McInnes    submatrix, and any entries in the o locations are stored in the
15435511cfe3SLois Curfman McInnes    o (off-diagonal) submatrix.  Note that the d and the o submatrices are
15445511cfe3SLois Curfman McInnes    stored simply in the MATSEQAIJ format for compressed row storage.
15455511cfe3SLois Curfman McInnes 
15465511cfe3SLois Curfman McInnes    Now d_nz should indicate the number of nonzeros per row in the d matrix,
15475511cfe3SLois Curfman McInnes    and o_nz should indicate the number of nonzeros per row in the o matrix.
15485511cfe3SLois Curfman McInnes    In general, for PDE problems in which most nonzeros are near the diagonal,
15493d323bbdSBarry Smith    one expects d_nz >> o_nz. For large problems you MUST preallocate memory
155092e8d321SLois Curfman McInnes    or you will get TERRIBLE performance; see the users' manual chapter on
15516da5968aSLois Curfman McInnes    matrices.
15523a511b96SLois Curfman McInnes 
1553dbd7a890SLois Curfman McInnes .keywords: matrix, aij, compressed row, sparse, parallel
1554ff756334SLois Curfman McInnes 
1555fafbff53SBarry Smith .seealso: MatCreate(), MatCreateSeqAIJ(), MatSetValues()
15568a729477SBarry Smith @*/
15571eb62cbbSBarry Smith int MatCreateMPIAIJ(MPI_Comm comm,int m,int n,int M,int N,
155844cd7ae7SLois Curfman McInnes                     int d_nz,int *d_nnz,int o_nz,int *o_nnz,Mat *A)
15598a729477SBarry Smith {
156044cd7ae7SLois Curfman McInnes   Mat          B;
156144cd7ae7SLois Curfman McInnes   Mat_MPIAIJ   *b;
156236ce4990SBarry Smith   int          ierr, i,sum[2],work[2],size;
1563416022c9SBarry Smith 
15643914022bSBarry Smith   MPI_Comm_size(comm,&size);
15653914022bSBarry Smith   if (size == 1) {
15663914022bSBarry Smith     if (M == PETSC_DECIDE) M = m;
15673914022bSBarry Smith     if (N == PETSC_DECIDE) N = n;
15683914022bSBarry Smith     ierr = MatCreateSeqAIJ(comm,M,N,d_nz,d_nnz,A); CHKERRQ(ierr);
15693914022bSBarry Smith     return 0;
15703914022bSBarry Smith   }
15713914022bSBarry Smith 
157244cd7ae7SLois Curfman McInnes   *A = 0;
1573d4bb536fSBarry Smith   PetscHeaderCreate(B,_p_Mat,MAT_COOKIE,MATMPIAIJ,comm,MatDestroy,MatView);
157444cd7ae7SLois Curfman McInnes   PLogObjectCreate(B);
157544cd7ae7SLois Curfman McInnes   B->data       = (void *) (b = PetscNew(Mat_MPIAIJ)); CHKPTRQ(b);
157644cd7ae7SLois Curfman McInnes   PetscMemzero(b,sizeof(Mat_MPIAIJ));
157744cd7ae7SLois Curfman McInnes   PetscMemcpy(&B->ops,&MatOps,sizeof(struct _MatOps));
157844cd7ae7SLois Curfman McInnes   B->destroy    = MatDestroy_MPIAIJ;
157944cd7ae7SLois Curfman McInnes   B->view       = MatView_MPIAIJ;
158044cd7ae7SLois Curfman McInnes   B->factor     = 0;
158144cd7ae7SLois Curfman McInnes   B->assembled  = PETSC_FALSE;
158290f02eecSBarry Smith   B->mapping    = 0;
1583d6dfbf8fSBarry Smith 
158447794344SBarry Smith   B->insertmode = NOT_SET_VALUES;
15859eb4d147SSatish Balay   b->size       = size;
158644cd7ae7SLois Curfman McInnes   MPI_Comm_rank(comm,&b->rank);
15871eb62cbbSBarry Smith 
1588b4fd4287SBarry Smith   if (m == PETSC_DECIDE && (d_nnz != PETSC_NULL || o_nnz != PETSC_NULL))
1589e3372554SBarry Smith     SETERRQ(1,0,"Cannot have PETSC_DECIDE rows but set d_nnz or o_nnz");
15901987afe7SBarry Smith 
1591dbd7a890SLois Curfman McInnes   if (M == PETSC_DECIDE || N == PETSC_DECIDE) {
15921eb62cbbSBarry Smith     work[0] = m; work[1] = n;
1593d65a2f8fSBarry Smith     MPI_Allreduce( work, sum,2,MPI_INT,MPI_SUM,comm );
1594dbd7a890SLois Curfman McInnes     if (M == PETSC_DECIDE) M = sum[0];
1595dbd7a890SLois Curfman McInnes     if (N == PETSC_DECIDE) N = sum[1];
15961eb62cbbSBarry Smith   }
159744cd7ae7SLois Curfman McInnes   if (m == PETSC_DECIDE) {m = M/b->size + ((M % b->size) > b->rank);}
159844cd7ae7SLois Curfman McInnes   if (n == PETSC_DECIDE) {n = N/b->size + ((N % b->size) > b->rank);}
159944cd7ae7SLois Curfman McInnes   b->m = m; B->m = m;
160044cd7ae7SLois Curfman McInnes   b->n = n; B->n = n;
160144cd7ae7SLois Curfman McInnes   b->N = N; B->N = N;
160244cd7ae7SLois Curfman McInnes   b->M = M; B->M = M;
16031eb62cbbSBarry Smith 
16041eb62cbbSBarry Smith   /* build local table of row and column ownerships */
160544cd7ae7SLois Curfman McInnes   b->rowners = (int *) PetscMalloc(2*(b->size+2)*sizeof(int)); CHKPTRQ(b->rowners);
1606f09e8eb9SSatish Balay   PLogObjectMemory(B,2*(b->size+2)*sizeof(int)+sizeof(struct _p_Mat)+sizeof(Mat_MPIAIJ));
1607603f58a4SSatish Balay   b->cowners = b->rowners + b->size + 2;
160844cd7ae7SLois Curfman McInnes   MPI_Allgather(&m,1,MPI_INT,b->rowners+1,1,MPI_INT,comm);
160944cd7ae7SLois Curfman McInnes   b->rowners[0] = 0;
161044cd7ae7SLois Curfman McInnes   for ( i=2; i<=b->size; i++ ) {
161144cd7ae7SLois Curfman McInnes     b->rowners[i] += b->rowners[i-1];
16128a729477SBarry Smith   }
161344cd7ae7SLois Curfman McInnes   b->rstart = b->rowners[b->rank];
161444cd7ae7SLois Curfman McInnes   b->rend   = b->rowners[b->rank+1];
161544cd7ae7SLois Curfman McInnes   MPI_Allgather(&n,1,MPI_INT,b->cowners+1,1,MPI_INT,comm);
161644cd7ae7SLois Curfman McInnes   b->cowners[0] = 0;
161744cd7ae7SLois Curfman McInnes   for ( i=2; i<=b->size; i++ ) {
161844cd7ae7SLois Curfman McInnes     b->cowners[i] += b->cowners[i-1];
16198a729477SBarry Smith   }
162044cd7ae7SLois Curfman McInnes   b->cstart = b->cowners[b->rank];
162144cd7ae7SLois Curfman McInnes   b->cend   = b->cowners[b->rank+1];
16228a729477SBarry Smith 
16235ace5be8SLois Curfman McInnes   if (d_nz == PETSC_DEFAULT) d_nz = 5;
1624029af93fSBarry Smith   ierr = MatCreateSeqAIJ(PETSC_COMM_SELF,m,n,d_nz,d_nnz,&b->A); CHKERRQ(ierr);
162544cd7ae7SLois Curfman McInnes   PLogObjectParent(B,b->A);
16267b8455f0SLois Curfman McInnes   if (o_nz == PETSC_DEFAULT) o_nz = 0;
1627029af93fSBarry Smith   ierr = MatCreateSeqAIJ(PETSC_COMM_SELF,m,N,o_nz,o_nnz,&b->B); CHKERRQ(ierr);
162844cd7ae7SLois Curfman McInnes   PLogObjectParent(B,b->B);
16298a729477SBarry Smith 
16301eb62cbbSBarry Smith   /* build cache for off array entries formed */
163144cd7ae7SLois Curfman McInnes   ierr = StashBuild_Private(&b->stash); CHKERRQ(ierr);
163290f02eecSBarry Smith   b->donotstash  = 0;
163344cd7ae7SLois Curfman McInnes   b->colmap      = 0;
163444cd7ae7SLois Curfman McInnes   b->garray      = 0;
163544cd7ae7SLois Curfman McInnes   b->roworiented = 1;
16368a729477SBarry Smith 
16371eb62cbbSBarry Smith   /* stuff used for matrix vector multiply */
163844cd7ae7SLois Curfman McInnes   b->lvec      = 0;
163944cd7ae7SLois Curfman McInnes   b->Mvctx     = 0;
16408a729477SBarry Smith 
16417a0afa10SBarry Smith   /* stuff for MatGetRow() */
164244cd7ae7SLois Curfman McInnes   b->rowindices   = 0;
164344cd7ae7SLois Curfman McInnes   b->rowvalues    = 0;
164444cd7ae7SLois Curfman McInnes   b->getrowactive = PETSC_FALSE;
16457a0afa10SBarry Smith 
164644cd7ae7SLois Curfman McInnes   *A = B;
1647d6dfbf8fSBarry Smith   return 0;
1648d6dfbf8fSBarry Smith }
1649c74985f6SBarry Smith 
16505615d1e5SSatish Balay #undef __FUNC__
16515615d1e5SSatish Balay #define __FUNC__ "MatConvertSameType_MPIAIJ"
16528f6be9afSLois Curfman McInnes int MatConvertSameType_MPIAIJ(Mat matin,Mat *newmat,int cpvalues)
1653d6dfbf8fSBarry Smith {
1654d6dfbf8fSBarry Smith   Mat        mat;
1655416022c9SBarry Smith   Mat_MPIAIJ *a,*oldmat = (Mat_MPIAIJ *) matin->data;
1656a1b97e82SLois Curfman McInnes   int        ierr, len=0, flg;
1657d6dfbf8fSBarry Smith 
1658416022c9SBarry Smith   *newmat       = 0;
1659d4bb536fSBarry Smith   PetscHeaderCreate(mat,_p_Mat,MAT_COOKIE,MATMPIAIJ,matin->comm,MatDestroy,MatView);
1660a5a9c739SBarry Smith   PLogObjectCreate(mat);
16610452661fSBarry Smith   mat->data       = (void *) (a = PetscNew(Mat_MPIAIJ)); CHKPTRQ(a);
1662416022c9SBarry Smith   PetscMemcpy(&mat->ops,&MatOps,sizeof(struct _MatOps));
166344a69424SLois Curfman McInnes   mat->destroy    = MatDestroy_MPIAIJ;
166444a69424SLois Curfman McInnes   mat->view       = MatView_MPIAIJ;
1665d6dfbf8fSBarry Smith   mat->factor     = matin->factor;
1666c456f294SBarry Smith   mat->assembled  = PETSC_TRUE;
1667d6dfbf8fSBarry Smith 
166844cd7ae7SLois Curfman McInnes   a->m = mat->m   = oldmat->m;
166944cd7ae7SLois Curfman McInnes   a->n = mat->n   = oldmat->n;
167044cd7ae7SLois Curfman McInnes   a->M = mat->M   = oldmat->M;
167144cd7ae7SLois Curfman McInnes   a->N = mat->N   = oldmat->N;
1672d6dfbf8fSBarry Smith 
1673416022c9SBarry Smith   a->rstart       = oldmat->rstart;
1674416022c9SBarry Smith   a->rend         = oldmat->rend;
1675416022c9SBarry Smith   a->cstart       = oldmat->cstart;
1676416022c9SBarry Smith   a->cend         = oldmat->cend;
167717699dbbSLois Curfman McInnes   a->size         = oldmat->size;
167817699dbbSLois Curfman McInnes   a->rank         = oldmat->rank;
167947794344SBarry Smith   mat->insertmode = NOT_SET_VALUES;
1680bcd2baecSBarry Smith   a->rowvalues    = 0;
1681bcd2baecSBarry Smith   a->getrowactive = PETSC_FALSE;
1682d6dfbf8fSBarry Smith 
1683603f58a4SSatish Balay   a->rowners = (int *) PetscMalloc(2*(a->size+2)*sizeof(int)); CHKPTRQ(a->rowners);
1684f09e8eb9SSatish Balay   PLogObjectMemory(mat,2*(a->size+2)*sizeof(int)+sizeof(struct _p_Mat)+sizeof(Mat_MPIAIJ));
1685603f58a4SSatish Balay   a->cowners = a->rowners + a->size + 2;
1686603f58a4SSatish Balay   PetscMemcpy(a->rowners,oldmat->rowners,2*(a->size+2)*sizeof(int));
1687416022c9SBarry Smith   ierr = StashInitialize_Private(&a->stash); CHKERRQ(ierr);
16882ee70a88SLois Curfman McInnes   if (oldmat->colmap) {
16890452661fSBarry Smith     a->colmap = (int *) PetscMalloc((a->N)*sizeof(int));CHKPTRQ(a->colmap);
1690416022c9SBarry Smith     PLogObjectMemory(mat,(a->N)*sizeof(int));
1691416022c9SBarry Smith     PetscMemcpy(a->colmap,oldmat->colmap,(a->N)*sizeof(int));
1692416022c9SBarry Smith   } else a->colmap = 0;
16933f41c07dSBarry Smith   if (oldmat->garray) {
16943f41c07dSBarry Smith     len = ((Mat_SeqAIJ *) (oldmat->B->data))->n;
16953f41c07dSBarry Smith     a->garray = (int *) PetscMalloc((len+1)*sizeof(int)); CHKPTRQ(a->garray);
1696464493b3SBarry Smith     PLogObjectMemory(mat,len*sizeof(int));
16973f41c07dSBarry Smith     if (len) PetscMemcpy(a->garray,oldmat->garray,len*sizeof(int));
1698416022c9SBarry Smith   } else a->garray = 0;
1699d6dfbf8fSBarry Smith 
1700416022c9SBarry Smith   ierr =  VecDuplicate(oldmat->lvec,&a->lvec); CHKERRQ(ierr);
1701416022c9SBarry Smith   PLogObjectParent(mat,a->lvec);
1702a56f8943SBarry Smith   ierr =  VecScatterCopy(oldmat->Mvctx,&a->Mvctx); CHKERRQ(ierr);
1703416022c9SBarry Smith   PLogObjectParent(mat,a->Mvctx);
1704416022c9SBarry Smith   ierr =  MatConvert(oldmat->A,MATSAME,&a->A); CHKERRQ(ierr);
1705416022c9SBarry Smith   PLogObjectParent(mat,a->A);
1706416022c9SBarry Smith   ierr =  MatConvert(oldmat->B,MATSAME,&a->B); CHKERRQ(ierr);
1707416022c9SBarry Smith   PLogObjectParent(mat,a->B);
17085dd7a6c7SBarry Smith   ierr = OptionsHasName(PETSC_NULL,"-help",&flg); CHKERRQ(ierr);
170925cdf11fSBarry Smith   if (flg) {
1710682d7d0cSBarry Smith     ierr = MatPrintHelp(mat); CHKERRQ(ierr);
1711682d7d0cSBarry Smith   }
17128a729477SBarry Smith   *newmat = mat;
17138a729477SBarry Smith   return 0;
17148a729477SBarry Smith }
1715416022c9SBarry Smith 
171677c4ece6SBarry Smith #include "sys.h"
1717416022c9SBarry Smith 
17185615d1e5SSatish Balay #undef __FUNC__
17195615d1e5SSatish Balay #define __FUNC__ "MatLoad_MPIAIJ"
172019bcc07fSBarry Smith int MatLoad_MPIAIJ(Viewer viewer,MatType type,Mat *newmat)
1721416022c9SBarry Smith {
1722d65a2f8fSBarry Smith   Mat          A;
1723416022c9SBarry Smith   int          i, nz, ierr, j,rstart, rend, fd;
1724d65a2f8fSBarry Smith   Scalar       *vals,*svals;
172519bcc07fSBarry Smith   MPI_Comm     comm = ((PetscObject)viewer)->comm;
1726416022c9SBarry Smith   MPI_Status   status;
172717699dbbSLois Curfman McInnes   int          header[4],rank,size,*rowlengths = 0,M,N,m,*rowners,maxnz,*cols;
1728d65a2f8fSBarry Smith   int          *ourlens,*sndcounts = 0,*procsnz = 0, *offlens,jj,*mycols,*smycols;
172919bcc07fSBarry Smith   int          tag = ((PetscObject)viewer)->tag;
1730416022c9SBarry Smith 
173117699dbbSLois Curfman McInnes   MPI_Comm_size(comm,&size); MPI_Comm_rank(comm,&rank);
173217699dbbSLois Curfman McInnes   if (!rank) {
173390ace30eSBarry Smith     ierr = ViewerBinaryGetDescriptor(viewer,&fd); CHKERRQ(ierr);
1734*0752156aSBarry Smith     ierr = PetscBinaryRead(fd,(char *)header,4,PETSC_INT); CHKERRQ(ierr);
1735e3372554SBarry Smith     if (header[0] != MAT_COOKIE) SETERRQ(1,0,"not matrix object");
1736416022c9SBarry Smith   }
1737416022c9SBarry Smith 
1738416022c9SBarry Smith   MPI_Bcast(header+1,3,MPI_INT,0,comm);
1739416022c9SBarry Smith   M = header[1]; N = header[2];
1740416022c9SBarry Smith   /* determine ownership of all rows */
174117699dbbSLois Curfman McInnes   m = M/size + ((M % size) > rank);
17420452661fSBarry Smith   rowners = (int *) PetscMalloc((size+2)*sizeof(int)); CHKPTRQ(rowners);
1743416022c9SBarry Smith   MPI_Allgather(&m,1,MPI_INT,rowners+1,1,MPI_INT,comm);
1744416022c9SBarry Smith   rowners[0] = 0;
174517699dbbSLois Curfman McInnes   for ( i=2; i<=size; i++ ) {
1746416022c9SBarry Smith     rowners[i] += rowners[i-1];
1747416022c9SBarry Smith   }
174817699dbbSLois Curfman McInnes   rstart = rowners[rank];
174917699dbbSLois Curfman McInnes   rend   = rowners[rank+1];
1750416022c9SBarry Smith 
1751416022c9SBarry Smith   /* distribute row lengths to all processors */
17520452661fSBarry Smith   ourlens = (int*) PetscMalloc( 2*(rend-rstart)*sizeof(int) ); CHKPTRQ(ourlens);
1753416022c9SBarry Smith   offlens = ourlens + (rend-rstart);
175417699dbbSLois Curfman McInnes   if (!rank) {
17550452661fSBarry Smith     rowlengths = (int*) PetscMalloc( M*sizeof(int) ); CHKPTRQ(rowlengths);
1756*0752156aSBarry Smith     ierr = PetscBinaryRead(fd,rowlengths,M,PETSC_INT); CHKERRQ(ierr);
17570452661fSBarry Smith     sndcounts = (int*) PetscMalloc( size*sizeof(int) ); CHKPTRQ(sndcounts);
175817699dbbSLois Curfman McInnes     for ( i=0; i<size; i++ ) sndcounts[i] = rowners[i+1] - rowners[i];
1759d65a2f8fSBarry Smith     MPI_Scatterv(rowlengths,sndcounts,rowners,MPI_INT,ourlens,rend-rstart,MPI_INT,0,comm);
17600452661fSBarry Smith     PetscFree(sndcounts);
1761416022c9SBarry Smith   }
1762416022c9SBarry Smith   else {
1763416022c9SBarry Smith     MPI_Scatterv(0,0,0,MPI_INT,ourlens,rend-rstart,MPI_INT, 0,comm);
1764416022c9SBarry Smith   }
1765416022c9SBarry Smith 
176617699dbbSLois Curfman McInnes   if (!rank) {
1767416022c9SBarry Smith     /* calculate the number of nonzeros on each processor */
17680452661fSBarry Smith     procsnz = (int*) PetscMalloc( size*sizeof(int) ); CHKPTRQ(procsnz);
1769cddf8d76SBarry Smith     PetscMemzero(procsnz,size*sizeof(int));
177017699dbbSLois Curfman McInnes     for ( i=0; i<size; i++ ) {
1771416022c9SBarry Smith       for ( j=rowners[i]; j< rowners[i+1]; j++ ) {
1772416022c9SBarry Smith         procsnz[i] += rowlengths[j];
1773416022c9SBarry Smith       }
1774416022c9SBarry Smith     }
17750452661fSBarry Smith     PetscFree(rowlengths);
1776416022c9SBarry Smith 
1777416022c9SBarry Smith     /* determine max buffer needed and allocate it */
1778416022c9SBarry Smith     maxnz = 0;
177917699dbbSLois Curfman McInnes     for ( i=0; i<size; i++ ) {
17800452661fSBarry Smith       maxnz = PetscMax(maxnz,procsnz[i]);
1781416022c9SBarry Smith     }
17820452661fSBarry Smith     cols = (int *) PetscMalloc( maxnz*sizeof(int) ); CHKPTRQ(cols);
1783416022c9SBarry Smith 
1784416022c9SBarry Smith     /* read in my part of the matrix column indices  */
1785416022c9SBarry Smith     nz = procsnz[0];
17860452661fSBarry Smith     mycols = (int *) PetscMalloc( nz*sizeof(int) ); CHKPTRQ(mycols);
1787*0752156aSBarry Smith     ierr = PetscBinaryRead(fd,mycols,nz,PETSC_INT); CHKERRQ(ierr);
1788d65a2f8fSBarry Smith 
1789d65a2f8fSBarry Smith     /* read in every one elses and ship off */
179017699dbbSLois Curfman McInnes     for ( i=1; i<size; i++ ) {
1791d65a2f8fSBarry Smith       nz = procsnz[i];
1792*0752156aSBarry Smith       ierr = PetscBinaryRead(fd,cols,nz,PETSC_INT); CHKERRQ(ierr);
1793d65a2f8fSBarry Smith       MPI_Send(cols,nz,MPI_INT,i,tag,comm);
1794d65a2f8fSBarry Smith     }
17950452661fSBarry Smith     PetscFree(cols);
1796416022c9SBarry Smith   }
1797416022c9SBarry Smith   else {
1798416022c9SBarry Smith     /* determine buffer space needed for message */
1799416022c9SBarry Smith     nz = 0;
1800416022c9SBarry Smith     for ( i=0; i<m; i++ ) {
1801416022c9SBarry Smith       nz += ourlens[i];
1802416022c9SBarry Smith     }
18030452661fSBarry Smith     mycols = (int*) PetscMalloc( nz*sizeof(int) ); CHKPTRQ(mycols);
1804416022c9SBarry Smith 
1805416022c9SBarry Smith     /* receive message of column indices*/
1806d65a2f8fSBarry Smith     MPI_Recv(mycols,nz,MPI_INT,0,tag,comm,&status);
1807416022c9SBarry Smith     MPI_Get_count(&status,MPI_INT,&maxnz);
1808e3372554SBarry Smith     if (maxnz != nz) SETERRQ(1,0,"something is wrong with file");
1809416022c9SBarry Smith   }
1810416022c9SBarry Smith 
1811416022c9SBarry Smith   /* loop over local rows, determining number of off diagonal entries */
1812cddf8d76SBarry Smith   PetscMemzero(offlens,m*sizeof(int));
1813416022c9SBarry Smith   jj = 0;
1814416022c9SBarry Smith   for ( i=0; i<m; i++ ) {
1815416022c9SBarry Smith     for ( j=0; j<ourlens[i]; j++ ) {
1816d65a2f8fSBarry Smith       if (mycols[jj] < rstart || mycols[jj] >= rend) offlens[i]++;
1817416022c9SBarry Smith       jj++;
1818416022c9SBarry Smith     }
1819416022c9SBarry Smith   }
1820d65a2f8fSBarry Smith 
1821d65a2f8fSBarry Smith   /* create our matrix */
1822416022c9SBarry Smith   for ( i=0; i<m; i++ ) {
1823416022c9SBarry Smith     ourlens[i] -= offlens[i];
1824416022c9SBarry Smith   }
1825d65a2f8fSBarry Smith   ierr = MatCreateMPIAIJ(comm,m,PETSC_DECIDE,M,N,0,ourlens,0,offlens,newmat);CHKERRQ(ierr);
1826d65a2f8fSBarry Smith   A = *newmat;
18276d4a8577SBarry Smith   MatSetOption(A,MAT_COLUMNS_SORTED);
1828d65a2f8fSBarry Smith   for ( i=0; i<m; i++ ) {
1829d65a2f8fSBarry Smith     ourlens[i] += offlens[i];
1830d65a2f8fSBarry Smith   }
1831416022c9SBarry Smith 
183217699dbbSLois Curfman McInnes   if (!rank) {
18330452661fSBarry Smith     vals = (Scalar *) PetscMalloc( maxnz*sizeof(Scalar) ); CHKPTRQ(vals);
1834416022c9SBarry Smith 
1835416022c9SBarry Smith     /* read in my part of the matrix numerical values  */
1836416022c9SBarry Smith     nz = procsnz[0];
1837*0752156aSBarry Smith     ierr = PetscBinaryRead(fd,vals,nz,PETSC_SCALAR); CHKERRQ(ierr);
1838d65a2f8fSBarry Smith 
1839d65a2f8fSBarry Smith     /* insert into matrix */
1840d65a2f8fSBarry Smith     jj      = rstart;
1841d65a2f8fSBarry Smith     smycols = mycols;
1842d65a2f8fSBarry Smith     svals   = vals;
1843d65a2f8fSBarry Smith     for ( i=0; i<m; i++ ) {
1844d65a2f8fSBarry Smith       ierr = MatSetValues(A,1,&jj,ourlens[i],smycols,svals,INSERT_VALUES);CHKERRQ(ierr);
1845d65a2f8fSBarry Smith       smycols += ourlens[i];
1846d65a2f8fSBarry Smith       svals   += ourlens[i];
1847d65a2f8fSBarry Smith       jj++;
1848416022c9SBarry Smith     }
1849416022c9SBarry Smith 
1850d65a2f8fSBarry Smith     /* read in other processors and ship out */
185117699dbbSLois Curfman McInnes     for ( i=1; i<size; i++ ) {
1852416022c9SBarry Smith       nz = procsnz[i];
1853*0752156aSBarry Smith       ierr = PetscBinaryRead(fd,vals,nz,PETSC_SCALAR); CHKERRQ(ierr);
1854d65a2f8fSBarry Smith       MPI_Send(vals,nz,MPIU_SCALAR,i,A->tag,comm);
1855416022c9SBarry Smith     }
18560452661fSBarry Smith     PetscFree(procsnz);
1857416022c9SBarry Smith   }
1858d65a2f8fSBarry Smith   else {
1859d65a2f8fSBarry Smith     /* receive numeric values */
18600452661fSBarry Smith     vals = (Scalar*) PetscMalloc( nz*sizeof(Scalar) ); CHKPTRQ(vals);
1861416022c9SBarry Smith 
1862d65a2f8fSBarry Smith     /* receive message of values*/
1863d65a2f8fSBarry Smith     MPI_Recv(vals,nz,MPIU_SCALAR,0,A->tag,comm,&status);
1864d65a2f8fSBarry Smith     MPI_Get_count(&status,MPIU_SCALAR,&maxnz);
1865e3372554SBarry Smith     if (maxnz != nz) SETERRQ(1,0,"something is wrong with file");
1866d65a2f8fSBarry Smith 
1867d65a2f8fSBarry Smith     /* insert into matrix */
1868d65a2f8fSBarry Smith     jj      = rstart;
1869d65a2f8fSBarry Smith     smycols = mycols;
1870d65a2f8fSBarry Smith     svals   = vals;
1871d65a2f8fSBarry Smith     for ( i=0; i<m; i++ ) {
1872d65a2f8fSBarry Smith       ierr = MatSetValues(A,1,&jj,ourlens[i],smycols,svals,INSERT_VALUES);CHKERRQ(ierr);
1873d65a2f8fSBarry Smith       smycols += ourlens[i];
1874d65a2f8fSBarry Smith       svals   += ourlens[i];
1875d65a2f8fSBarry Smith       jj++;
1876d65a2f8fSBarry Smith     }
1877d65a2f8fSBarry Smith   }
18780452661fSBarry Smith   PetscFree(ourlens); PetscFree(vals); PetscFree(mycols); PetscFree(rowners);
1879d65a2f8fSBarry Smith 
18806d4a8577SBarry Smith   ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr);
18816d4a8577SBarry Smith   ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr);
1882416022c9SBarry Smith   return 0;
1883416022c9SBarry Smith }
1884