1a5eb4965SSatish Balay #ifdef PETSC_RCS_HEADER 2*4787f768SSatish Balay static char vcid[] = "$Id: mpiaij.c,v 1.279 1999/02/11 20:28:21 bsmith Exp balay $"; 3cb512458SBarry Smith #endif 48a729477SBarry Smith 570f55243SBarry Smith #include "src/mat/impls/aij/mpi/mpiaij.h" 6f5eb4b81SSatish Balay #include "src/vec/vecimpl.h" 7d9942c19SSatish Balay #include "src/inline/spops.h" 88a729477SBarry Smith 99e25ed09SBarry Smith /* local utility routine that creates a mapping from the global column 109e25ed09SBarry Smith number to the local number in the off-diagonal part of the local 119e25ed09SBarry Smith storage of the matrix. This is done in a non scable way since the 129e25ed09SBarry Smith length of colmap equals the global matrix length. 139e25ed09SBarry Smith */ 145615d1e5SSatish Balay #undef __FUNC__ 15d4bb536fSBarry Smith #define __FUNC__ "CreateColmap_MPIAIJ_Private" 160a198c4cSBarry Smith int CreateColmap_MPIAIJ_Private(Mat mat) 179e25ed09SBarry Smith { 1844a69424SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 19ec8511deSBarry Smith Mat_SeqAIJ *B = (Mat_SeqAIJ*) aij->B->data; 206dee3f7eSBarry Smith int n = B->n,i; 216dee3f7eSBarry Smith #if defined (USE_CTABLE) 226dee3f7eSBarry Smith int ierr; 236dee3f7eSBarry Smith #endif 24dbb450caSBarry Smith 253a40ed3dSBarry Smith PetscFunctionBegin; 26b1fc9764SSatish Balay #if defined (USE_CTABLE) 27b1fc9764SSatish Balay ierr = TableCreate( &aij->colmap, aij->n/5 ); CHKERRQ(ierr); 28b1fc9764SSatish Balay for ( i=0; i<n; i++ ){ 29b1fc9764SSatish Balay ierr = TableAdd( aij->colmap, aij->garray[i] + 1, i+1 );CHKERRQ(ierr); 30b1fc9764SSatish Balay } 31b1fc9764SSatish Balay #else 32758f045eSSatish Balay aij->colmap = (int *) PetscMalloc((aij->N+1)*sizeof(int));CHKPTRQ(aij->colmap); 33464493b3SBarry Smith PLogObjectMemory(mat,aij->N*sizeof(int)); 34cddf8d76SBarry Smith PetscMemzero(aij->colmap,aij->N*sizeof(int)); 35905e6a2fSBarry Smith for ( i=0; i<n; i++ ) aij->colmap[aij->garray[i]] = i+1; 36b1fc9764SSatish Balay #endif 373a40ed3dSBarry Smith PetscFunctionReturn(0); 389e25ed09SBarry Smith } 399e25ed09SBarry Smith 402493cbb0SBarry Smith extern int DisAssemble_MPIAIJ(Mat); 412493cbb0SBarry Smith 420520107fSSatish Balay #define CHUNKSIZE 15 4330770e4dSSatish Balay #define MatSetValues_SeqAIJ_A_Private(row,col,value,addv) \ 440520107fSSatish Balay { \ 450520107fSSatish Balay \ 460520107fSSatish Balay rp = aj + ai[row] + shift; ap = aa + ai[row] + shift; \ 4730770e4dSSatish Balay rmax = aimax[row]; nrow = ailen[row]; \ 48f5e9677aSSatish Balay col1 = col - shift; \ 49f5e9677aSSatish Balay \ 50ba4e3ef2SSatish Balay low = 0; high = nrow; \ 51ba4e3ef2SSatish Balay while (high-low > 5) { \ 52ba4e3ef2SSatish Balay t = (low+high)/2; \ 53ba4e3ef2SSatish Balay if (rp[t] > col) high = t; \ 54ba4e3ef2SSatish Balay else low = t; \ 55ba4e3ef2SSatish Balay } \ 560520107fSSatish Balay for ( _i=0; _i<nrow; _i++ ) { \ 57f5e9677aSSatish Balay if (rp[_i] > col1) break; \ 58f5e9677aSSatish Balay if (rp[_i] == col1) { \ 590520107fSSatish Balay if (addv == ADD_VALUES) ap[_i] += value; \ 600520107fSSatish Balay else ap[_i] = value; \ 6130770e4dSSatish Balay goto a_noinsert; \ 620520107fSSatish Balay } \ 630520107fSSatish Balay } \ 6489280ab3SLois Curfman McInnes if (nonew == 1) goto a_noinsert; \ 65a8c6a408SBarry Smith else if (nonew == -1) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Inserting a new nonzero into matrix"); \ 660520107fSSatish Balay if (nrow >= rmax) { \ 670520107fSSatish Balay /* there is no extra room in row, therefore enlarge */ \ 680520107fSSatish Balay int new_nz = ai[a->m] + CHUNKSIZE,len,*new_i,*new_j; \ 690520107fSSatish Balay Scalar *new_a; \ 700520107fSSatish Balay \ 71a8c6a408SBarry Smith if (nonew == -2) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Inserting a new nonzero in the matrix"); \ 7289280ab3SLois Curfman McInnes \ 730520107fSSatish Balay /* malloc new storage space */ \ 740520107fSSatish Balay len = new_nz*(sizeof(int)+sizeof(Scalar))+(a->m+1)*sizeof(int); \ 750520107fSSatish Balay new_a = (Scalar *) PetscMalloc( len ); CHKPTRQ(new_a); \ 760520107fSSatish Balay new_j = (int *) (new_a + new_nz); \ 770520107fSSatish Balay new_i = new_j + new_nz; \ 780520107fSSatish Balay \ 790520107fSSatish Balay /* copy over old data into new slots */ \ 800520107fSSatish Balay for ( ii=0; ii<row+1; ii++ ) {new_i[ii] = ai[ii];} \ 810520107fSSatish Balay for ( ii=row+1; ii<a->m+1; ii++ ) {new_i[ii] = ai[ii]+CHUNKSIZE;} \ 820520107fSSatish Balay PetscMemcpy(new_j,aj,(ai[row]+nrow+shift)*sizeof(int)); \ 830520107fSSatish Balay len = (new_nz - CHUNKSIZE - ai[row] - nrow - shift); \ 840520107fSSatish Balay PetscMemcpy(new_j+ai[row]+shift+nrow+CHUNKSIZE,aj+ai[row]+shift+nrow, \ 850520107fSSatish Balay len*sizeof(int)); \ 860520107fSSatish Balay PetscMemcpy(new_a,aa,(ai[row]+nrow+shift)*sizeof(Scalar)); \ 870520107fSSatish Balay PetscMemcpy(new_a+ai[row]+shift+nrow+CHUNKSIZE,aa+ai[row]+shift+nrow, \ 880520107fSSatish Balay len*sizeof(Scalar)); \ 890520107fSSatish Balay /* free up old matrix storage */ \ 90f5e9677aSSatish Balay \ 910520107fSSatish Balay PetscFree(a->a); \ 920520107fSSatish Balay if (!a->singlemalloc) {PetscFree(a->i);PetscFree(a->j);} \ 930520107fSSatish Balay aa = a->a = new_a; ai = a->i = new_i; aj = a->j = new_j; \ 940520107fSSatish Balay a->singlemalloc = 1; \ 950520107fSSatish Balay \ 960520107fSSatish Balay rp = aj + ai[row] + shift; ap = aa + ai[row] + shift; \ 9730770e4dSSatish Balay rmax = aimax[row] = aimax[row] + CHUNKSIZE; \ 980520107fSSatish Balay PLogObjectMemory(A,CHUNKSIZE*(sizeof(int) + sizeof(Scalar))); \ 990520107fSSatish Balay a->maxnz += CHUNKSIZE; \ 1000520107fSSatish Balay a->reallocs++; \ 1010520107fSSatish Balay } \ 1020520107fSSatish Balay N = nrow++ - 1; a->nz++; \ 1030520107fSSatish Balay /* shift up all the later entries in this row */ \ 1040520107fSSatish Balay for ( ii=N; ii>=_i; ii-- ) { \ 1050520107fSSatish Balay rp[ii+1] = rp[ii]; \ 1060520107fSSatish Balay ap[ii+1] = ap[ii]; \ 1070520107fSSatish Balay } \ 108f5e9677aSSatish Balay rp[_i] = col1; \ 1090520107fSSatish Balay ap[_i] = value; \ 11030770e4dSSatish Balay a_noinsert: ; \ 1110520107fSSatish Balay ailen[row] = nrow; \ 1120520107fSSatish Balay } 1130a198c4cSBarry Smith 11430770e4dSSatish Balay #define MatSetValues_SeqAIJ_B_Private(row,col,value,addv) \ 11530770e4dSSatish Balay { \ 11630770e4dSSatish Balay \ 11730770e4dSSatish Balay rp = bj + bi[row] + shift; ap = ba + bi[row] + shift; \ 11830770e4dSSatish Balay rmax = bimax[row]; nrow = bilen[row]; \ 11930770e4dSSatish Balay col1 = col - shift; \ 12030770e4dSSatish Balay \ 121ba4e3ef2SSatish Balay low = 0; high = nrow; \ 122ba4e3ef2SSatish Balay while (high-low > 5) { \ 123ba4e3ef2SSatish Balay t = (low+high)/2; \ 124ba4e3ef2SSatish Balay if (rp[t] > col) high = t; \ 125ba4e3ef2SSatish Balay else low = t; \ 126ba4e3ef2SSatish Balay } \ 12730770e4dSSatish Balay for ( _i=0; _i<nrow; _i++ ) { \ 12830770e4dSSatish Balay if (rp[_i] > col1) break; \ 12930770e4dSSatish Balay if (rp[_i] == col1) { \ 13030770e4dSSatish Balay if (addv == ADD_VALUES) ap[_i] += value; \ 13130770e4dSSatish Balay else ap[_i] = value; \ 13230770e4dSSatish Balay goto b_noinsert; \ 13330770e4dSSatish Balay } \ 13430770e4dSSatish Balay } \ 13589280ab3SLois Curfman McInnes if (nonew == 1) goto b_noinsert; \ 136a8c6a408SBarry Smith else if (nonew == -1) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Inserting a new nonzero into matrix"); \ 13730770e4dSSatish Balay if (nrow >= rmax) { \ 13830770e4dSSatish Balay /* there is no extra room in row, therefore enlarge */ \ 13974c639caSSatish Balay int new_nz = bi[b->m] + CHUNKSIZE,len,*new_i,*new_j; \ 14030770e4dSSatish Balay Scalar *new_a; \ 14130770e4dSSatish Balay \ 142a8c6a408SBarry Smith if (nonew == -2) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Inserting a new nonzero in the matrix"); \ 14389280ab3SLois Curfman McInnes \ 14430770e4dSSatish Balay /* malloc new storage space */ \ 14574c639caSSatish Balay len = new_nz*(sizeof(int)+sizeof(Scalar))+(b->m+1)*sizeof(int); \ 14630770e4dSSatish Balay new_a = (Scalar *) PetscMalloc( len ); CHKPTRQ(new_a); \ 14730770e4dSSatish Balay new_j = (int *) (new_a + new_nz); \ 14830770e4dSSatish Balay new_i = new_j + new_nz; \ 14930770e4dSSatish Balay \ 15030770e4dSSatish Balay /* copy over old data into new slots */ \ 15130770e4dSSatish Balay for ( ii=0; ii<row+1; ii++ ) {new_i[ii] = bi[ii];} \ 15274c639caSSatish Balay for ( ii=row+1; ii<b->m+1; ii++ ) {new_i[ii] = bi[ii]+CHUNKSIZE;} \ 15330770e4dSSatish Balay PetscMemcpy(new_j,bj,(bi[row]+nrow+shift)*sizeof(int)); \ 15430770e4dSSatish Balay len = (new_nz - CHUNKSIZE - bi[row] - nrow - shift); \ 15530770e4dSSatish Balay PetscMemcpy(new_j+bi[row]+shift+nrow+CHUNKSIZE,bj+bi[row]+shift+nrow, \ 15630770e4dSSatish Balay len*sizeof(int)); \ 15730770e4dSSatish Balay PetscMemcpy(new_a,ba,(bi[row]+nrow+shift)*sizeof(Scalar)); \ 15830770e4dSSatish Balay PetscMemcpy(new_a+bi[row]+shift+nrow+CHUNKSIZE,ba+bi[row]+shift+nrow, \ 15930770e4dSSatish Balay len*sizeof(Scalar)); \ 16030770e4dSSatish Balay /* free up old matrix storage */ \ 16130770e4dSSatish Balay \ 16274c639caSSatish Balay PetscFree(b->a); \ 16374c639caSSatish Balay if (!b->singlemalloc) {PetscFree(b->i);PetscFree(b->j);} \ 16474c639caSSatish Balay ba = b->a = new_a; bi = b->i = new_i; bj = b->j = new_j; \ 16574c639caSSatish Balay b->singlemalloc = 1; \ 16630770e4dSSatish Balay \ 16730770e4dSSatish Balay rp = bj + bi[row] + shift; ap = ba + bi[row] + shift; \ 16830770e4dSSatish Balay rmax = bimax[row] = bimax[row] + CHUNKSIZE; \ 16974c639caSSatish Balay PLogObjectMemory(B,CHUNKSIZE*(sizeof(int) + sizeof(Scalar))); \ 17074c639caSSatish Balay b->maxnz += CHUNKSIZE; \ 17174c639caSSatish Balay b->reallocs++; \ 17230770e4dSSatish Balay } \ 17374c639caSSatish Balay N = nrow++ - 1; b->nz++; \ 17430770e4dSSatish Balay /* shift up all the later entries in this row */ \ 17530770e4dSSatish Balay for ( ii=N; ii>=_i; ii-- ) { \ 17630770e4dSSatish Balay rp[ii+1] = rp[ii]; \ 17730770e4dSSatish Balay ap[ii+1] = ap[ii]; \ 17830770e4dSSatish Balay } \ 17930770e4dSSatish Balay rp[_i] = col1; \ 18030770e4dSSatish Balay ap[_i] = value; \ 18130770e4dSSatish Balay b_noinsert: ; \ 18230770e4dSSatish Balay bilen[row] = nrow; \ 18330770e4dSSatish Balay } 18430770e4dSSatish Balay 1850520107fSSatish Balay extern int MatSetValues_SeqAIJ(Mat,int,int*,int,int*,Scalar*,InsertMode); 1865615d1e5SSatish Balay #undef __FUNC__ 1875615d1e5SSatish Balay #define __FUNC__ "MatSetValues_MPIAIJ" 1888f6be9afSLois Curfman McInnes int MatSetValues_MPIAIJ(Mat mat,int m,int *im,int n,int *in,Scalar *v,InsertMode addv) 1898a729477SBarry Smith { 19044a69424SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 1914b0e389bSBarry Smith Scalar value; 1921eb62cbbSBarry Smith int ierr,i,j, rstart = aij->rstart, rend = aij->rend; 1931eb62cbbSBarry Smith int cstart = aij->cstart, cend = aij->cend,row,col; 194905e6a2fSBarry Smith int roworiented = aij->roworiented; 1958a729477SBarry Smith 1960520107fSSatish Balay /* Some Variables required in the macro */ 1974ee7247eSSatish Balay Mat A = aij->A; 1984ee7247eSSatish Balay Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 19930770e4dSSatish Balay int *aimax = a->imax, *ai = a->i, *ailen = a->ilen,*aj = a->j; 20030770e4dSSatish Balay Scalar *aa = a->a; 20130770e4dSSatish Balay 20230770e4dSSatish Balay Mat B = aij->B; 20330770e4dSSatish Balay Mat_SeqAIJ *b = (Mat_SeqAIJ *) B->data; 20430770e4dSSatish Balay int *bimax = b->imax, *bi = b->i, *bilen = b->ilen,*bj = b->j; 20530770e4dSSatish Balay Scalar *ba = b->a; 20630770e4dSSatish Balay 207ba4e3ef2SSatish Balay int *rp,ii,nrow,_i,rmax, N, col1,low,high,t; 20830770e4dSSatish Balay int nonew = a->nonew,shift = a->indexshift; 20930770e4dSSatish Balay Scalar *ap; 2104ee7247eSSatish Balay 2113a40ed3dSBarry Smith PetscFunctionBegin; 2128a729477SBarry Smith for ( i=0; i<m; i++ ) { 2135ef9f2a5SBarry Smith if (im[i] < 0) continue; 2143a40ed3dSBarry Smith #if defined(USE_PETSC_BOPT_g) 215a8c6a408SBarry Smith if (im[i] >= aij->M) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Row too large"); 2160a198c4cSBarry Smith #endif 2174b0e389bSBarry Smith if (im[i] >= rstart && im[i] < rend) { 2184b0e389bSBarry Smith row = im[i] - rstart; 2191eb62cbbSBarry Smith for ( j=0; j<n; j++ ) { 2204b0e389bSBarry Smith if (in[j] >= cstart && in[j] < cend){ 2214b0e389bSBarry Smith col = in[j] - cstart; 2224b0e389bSBarry Smith if (roworiented) value = v[i*n+j]; else value = v[i+j*m]; 22330770e4dSSatish Balay MatSetValues_SeqAIJ_A_Private(row,col,value,addv); 2240520107fSSatish Balay /* ierr = MatSetValues_SeqAIJ(aij->A,1,&row,1,&col,&value,addv);CHKERRQ(ierr); */ 2251eb62cbbSBarry Smith } 2265ef9f2a5SBarry Smith else if (in[j] < 0) continue; 2273a40ed3dSBarry Smith #if defined(USE_PETSC_BOPT_g) 228a8c6a408SBarry Smith else if (in[j] >= aij->N) {SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Column too large");} 2290a198c4cSBarry Smith #endif 2301eb62cbbSBarry Smith else { 231227d817aSBarry Smith if (mat->was_assembled) { 232905e6a2fSBarry Smith if (!aij->colmap) { 233905e6a2fSBarry Smith ierr = CreateColmap_MPIAIJ_Private(mat);CHKERRQ(ierr); 234905e6a2fSBarry Smith } 235b1fc9764SSatish Balay #if defined (USE_CTABLE) 236b1fc9764SSatish Balay col = TableFind( aij->colmap, in[j] + 1 ) - 1; 237b1fc9764SSatish Balay #else 238905e6a2fSBarry Smith col = aij->colmap[in[j]] - 1; 239b1fc9764SSatish Balay #endif 240ec8511deSBarry Smith if (col < 0 && !((Mat_SeqAIJ*)(aij->A->data))->nonew) { 2412493cbb0SBarry Smith ierr = DisAssemble_MPIAIJ(mat); CHKERRQ(ierr); 2424b0e389bSBarry Smith col = in[j]; 2439bf004c3SSatish Balay /* Reinitialize the variables required by MatSetValues_SeqAIJ_B_Private() */ 244f9508a3cSSatish Balay B = aij->B; 245f9508a3cSSatish Balay b = (Mat_SeqAIJ *) B->data; 246f9508a3cSSatish Balay bimax = b->imax; bi = b->i; bilen = b->ilen; bj = b->j; 247f9508a3cSSatish Balay ba = b->a; 248d6dfbf8fSBarry Smith } 249c48de900SBarry Smith } else col = in[j]; 2504b0e389bSBarry Smith if (roworiented) value = v[i*n+j]; else value = v[i+j*m]; 25130770e4dSSatish Balay MatSetValues_SeqAIJ_B_Private(row,col,value,addv); 25230770e4dSSatish Balay /* ierr = MatSetValues_SeqAIJ(aij->B,1,&row,1,&col,&value,addv);CHKERRQ(ierr); */ 2531eb62cbbSBarry Smith } 2541eb62cbbSBarry Smith } 2555ef9f2a5SBarry Smith } else { 25690f02eecSBarry Smith if (roworiented && !aij->donotstash) { 2574b0e389bSBarry Smith ierr = StashValues_Private(&aij->stash,im[i],n,in,v+i*n,addv);CHKERRQ(ierr); 2585ef9f2a5SBarry Smith } else { 25990f02eecSBarry Smith if (!aij->donotstash) { 2604b0e389bSBarry Smith row = im[i]; 2614b0e389bSBarry Smith for ( j=0; j<n; j++ ) { 2624b0e389bSBarry Smith ierr = StashValues_Private(&aij->stash,row,1,in+j,v+i+j*m,addv);CHKERRQ(ierr); 2634b0e389bSBarry Smith } 2644b0e389bSBarry Smith } 2651eb62cbbSBarry Smith } 2668a729477SBarry Smith } 26790f02eecSBarry Smith } 2683a40ed3dSBarry Smith PetscFunctionReturn(0); 2698a729477SBarry Smith } 2708a729477SBarry Smith 2715615d1e5SSatish Balay #undef __FUNC__ 2725615d1e5SSatish Balay #define __FUNC__ "MatGetValues_MPIAIJ" 2738f6be9afSLois Curfman McInnes int MatGetValues_MPIAIJ(Mat mat,int m,int *idxm,int n,int *idxn,Scalar *v) 274b49de8d1SLois Curfman McInnes { 275b49de8d1SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 276b49de8d1SLois Curfman McInnes int ierr,i,j, rstart = aij->rstart, rend = aij->rend; 277b49de8d1SLois Curfman McInnes int cstart = aij->cstart, cend = aij->cend,row,col; 278b49de8d1SLois Curfman McInnes 2793a40ed3dSBarry Smith PetscFunctionBegin; 280b49de8d1SLois Curfman McInnes for ( i=0; i<m; i++ ) { 281a8c6a408SBarry Smith if (idxm[i] < 0) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Negative row"); 282a8c6a408SBarry Smith if (idxm[i] >= aij->M) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Row too large"); 283b49de8d1SLois Curfman McInnes if (idxm[i] >= rstart && idxm[i] < rend) { 284b49de8d1SLois Curfman McInnes row = idxm[i] - rstart; 285b49de8d1SLois Curfman McInnes for ( j=0; j<n; j++ ) { 286a8c6a408SBarry Smith if (idxn[j] < 0) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Negative column"); 287a8c6a408SBarry Smith if (idxn[j] >= aij->N) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Column too large"); 288b49de8d1SLois Curfman McInnes if (idxn[j] >= cstart && idxn[j] < cend){ 289b49de8d1SLois Curfman McInnes col = idxn[j] - cstart; 290b49de8d1SLois Curfman McInnes ierr = MatGetValues(aij->A,1,&row,1,&col,v+i*n+j); CHKERRQ(ierr); 291fa852ad4SSatish Balay } else { 292905e6a2fSBarry Smith if (!aij->colmap) { 293905e6a2fSBarry Smith ierr = CreateColmap_MPIAIJ_Private(mat);CHKERRQ(ierr); 294905e6a2fSBarry Smith } 295b1fc9764SSatish Balay #if defined (USE_CTABLE) 296b1fc9764SSatish Balay col = TableFind( aij->colmap, idxn[j] + 1 ) - 1; 297b1fc9764SSatish Balay #else 298905e6a2fSBarry Smith col = aij->colmap[idxn[j]] - 1; 299b1fc9764SSatish Balay #endif 300e60e1c95SSatish Balay if ((col < 0) || (aij->garray[col] != idxn[j])) *(v+i*n+j) = 0.0; 301d9d09a02SSatish Balay else { 302b49de8d1SLois Curfman McInnes ierr = MatGetValues(aij->B,1,&row,1,&col,v+i*n+j); CHKERRQ(ierr); 303b49de8d1SLois Curfman McInnes } 304b49de8d1SLois Curfman McInnes } 305b49de8d1SLois Curfman McInnes } 306a8c6a408SBarry Smith } else { 307a8c6a408SBarry Smith SETERRQ(PETSC_ERR_SUP,0,"Only local values currently supported"); 308b49de8d1SLois Curfman McInnes } 309b49de8d1SLois Curfman McInnes } 3103a40ed3dSBarry Smith PetscFunctionReturn(0); 311b49de8d1SLois Curfman McInnes } 312b49de8d1SLois Curfman McInnes 3135615d1e5SSatish Balay #undef __FUNC__ 3145615d1e5SSatish Balay #define __FUNC__ "MatAssemblyBegin_MPIAIJ" 3158f6be9afSLois Curfman McInnes int MatAssemblyBegin_MPIAIJ(Mat mat,MatAssemblyType mode) 3168a729477SBarry Smith { 31744a69424SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 318d6dfbf8fSBarry Smith MPI_Comm comm = mat->comm; 31917699dbbSLois Curfman McInnes int size = aij->size, *owners = aij->rowners; 32017699dbbSLois Curfman McInnes int rank = aij->rank,tag = mat->tag, *owner,*starts,count,ierr; 3211eb62cbbSBarry Smith MPI_Request *send_waits,*recv_waits; 3226abc6512SBarry Smith int *nprocs,i,j,idx,*procs,nsends,nreceives,nmax,*work; 3231eb62cbbSBarry Smith InsertMode addv; 3241eb62cbbSBarry Smith Scalar *rvalues,*svalues; 3251eb62cbbSBarry Smith 3263a40ed3dSBarry Smith PetscFunctionBegin; 327b5bd3ad5SBarry Smith if (aij->donotstash) { 328b5bd3ad5SBarry Smith aij->svalues = 0; aij->rvalues = 0; 329b5bd3ad5SBarry Smith aij->nsends = 0; aij->nrecvs = 0; 330b5bd3ad5SBarry Smith aij->send_waits = 0; aij->recv_waits = 0; 331b5bd3ad5SBarry Smith aij->rmax = 0; 332b5bd3ad5SBarry Smith PetscFunctionReturn(0); 333b5bd3ad5SBarry Smith } 334b5bd3ad5SBarry Smith 3351eb62cbbSBarry Smith /* make sure all processors are either in INSERTMODE or ADDMODE */ 336ca161407SBarry Smith ierr = MPI_Allreduce(&mat->insertmode,&addv,1,MPI_INT,MPI_BOR,comm);CHKERRQ(ierr); 337dbb450caSBarry Smith if (addv == (ADD_VALUES|INSERT_VALUES)) { 338a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"Some processors inserted others added"); 3391eb62cbbSBarry Smith } 34047794344SBarry Smith mat->insertmode = addv; /* in case this processor had no cache */ 3411eb62cbbSBarry Smith 3421eb62cbbSBarry Smith /* first count number of contributors to each processor */ 3430452661fSBarry Smith nprocs = (int *) PetscMalloc( 2*size*sizeof(int) ); CHKPTRQ(nprocs); 344cddf8d76SBarry Smith PetscMemzero(nprocs,2*size*sizeof(int)); procs = nprocs + size; 3450452661fSBarry Smith owner = (int *) PetscMalloc( (aij->stash.n+1)*sizeof(int) ); CHKPTRQ(owner); 3461eb62cbbSBarry Smith for ( i=0; i<aij->stash.n; i++ ) { 3471eb62cbbSBarry Smith idx = aij->stash.idx[i]; 34817699dbbSLois Curfman McInnes for ( j=0; j<size; j++ ) { 3491eb62cbbSBarry Smith if (idx >= owners[j] && idx < owners[j+1]) { 3501eb62cbbSBarry Smith nprocs[j]++; procs[j] = 1; owner[i] = j; break; 3518a729477SBarry Smith } 3528a729477SBarry Smith } 3538a729477SBarry Smith } 35417699dbbSLois Curfman McInnes nsends = 0; for ( i=0; i<size; i++ ) { nsends += procs[i];} 3551eb62cbbSBarry Smith 3561eb62cbbSBarry Smith /* inform other processors of number of messages and max length*/ 3570452661fSBarry Smith work = (int *) PetscMalloc( size*sizeof(int) ); CHKPTRQ(work); 358ca161407SBarry Smith ierr = MPI_Allreduce(procs, work,size,MPI_INT,MPI_SUM,comm);CHKERRQ(ierr); 35917699dbbSLois Curfman McInnes nreceives = work[rank]; 360ca161407SBarry Smith ierr = MPI_Allreduce( nprocs, work,size,MPI_INT,MPI_MAX,comm);CHKERRQ(ierr); 36117699dbbSLois Curfman McInnes nmax = work[rank]; 3620452661fSBarry Smith PetscFree(work); 3631eb62cbbSBarry Smith 3641eb62cbbSBarry Smith /* post receives: 3651eb62cbbSBarry Smith 1) each message will consist of ordered pairs 3661eb62cbbSBarry Smith (global index,value) we store the global index as a double 367d6dfbf8fSBarry Smith to simplify the message passing. 3681eb62cbbSBarry Smith 2) since we don't know how long each individual message is we 3691eb62cbbSBarry Smith allocate the largest needed buffer for each receive. Potentially 3701eb62cbbSBarry Smith this is a lot of wasted space. 3711eb62cbbSBarry Smith 3721eb62cbbSBarry Smith 3731eb62cbbSBarry Smith This could be done better. 3741eb62cbbSBarry Smith */ 375ca161407SBarry Smith rvalues = (Scalar *) PetscMalloc(3*(nreceives+1)*(nmax+1)*sizeof(Scalar));CHKPTRQ(rvalues); 376ca161407SBarry Smith recv_waits = (MPI_Request *) PetscMalloc((nreceives+1)*sizeof(MPI_Request));CHKPTRQ(recv_waits); 3771eb62cbbSBarry Smith for ( i=0; i<nreceives; i++ ) { 378ca161407SBarry Smith ierr = MPI_Irecv(rvalues+3*nmax*i,3*nmax,MPIU_SCALAR,MPI_ANY_SOURCE,tag, 379ca161407SBarry Smith comm,recv_waits+i);CHKERRQ(ierr); 3801eb62cbbSBarry Smith } 3811eb62cbbSBarry Smith 3821eb62cbbSBarry Smith /* do sends: 3831eb62cbbSBarry Smith 1) starts[i] gives the starting index in svalues for stuff going to 3841eb62cbbSBarry Smith the ith processor 3851eb62cbbSBarry Smith */ 3860452661fSBarry Smith svalues = (Scalar *) PetscMalloc(3*(aij->stash.n+1)*sizeof(Scalar));CHKPTRQ(svalues); 387ca161407SBarry Smith send_waits = (MPI_Request *) PetscMalloc( (nsends+1)*sizeof(MPI_Request));CHKPTRQ(send_waits); 3880452661fSBarry Smith starts = (int *) PetscMalloc( size*sizeof(int) ); CHKPTRQ(starts); 3891eb62cbbSBarry Smith starts[0] = 0; 39017699dbbSLois Curfman McInnes for ( i=1; i<size; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];} 3911eb62cbbSBarry Smith for ( i=0; i<aij->stash.n; i++ ) { 3921eb62cbbSBarry Smith svalues[3*starts[owner[i]]] = (Scalar) aij->stash.idx[i]; 3931eb62cbbSBarry Smith svalues[3*starts[owner[i]]+1] = (Scalar) aij->stash.idy[i]; 3941eb62cbbSBarry Smith svalues[3*(starts[owner[i]]++)+2] = aij->stash.array[i]; 3951eb62cbbSBarry Smith } 3960452661fSBarry Smith PetscFree(owner); 3971eb62cbbSBarry Smith starts[0] = 0; 39817699dbbSLois Curfman McInnes for ( i=1; i<size; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];} 3991eb62cbbSBarry Smith count = 0; 40017699dbbSLois Curfman McInnes for ( i=0; i<size; i++ ) { 4011eb62cbbSBarry Smith if (procs[i]) { 402ca161407SBarry Smith ierr = MPI_Isend(svalues+3*starts[i],3*nprocs[i],MPIU_SCALAR,i,tag,comm,send_waits+count++);CHKERRQ(ierr); 4031eb62cbbSBarry Smith } 4041eb62cbbSBarry Smith } 405b5bd3ad5SBarry Smith PetscFree(starts); 406b5bd3ad5SBarry Smith PetscFree(nprocs); 4071eb62cbbSBarry Smith 4081eb62cbbSBarry Smith /* Free cache space */ 40910a665d1SBarry Smith PLogInfo(aij->A,"MatAssemblyBegin_MPIAIJ:Number of off-processor values %d\n",aij->stash.n); 41078b31e54SBarry Smith ierr = StashDestroy_Private(&aij->stash); CHKERRQ(ierr); 4111eb62cbbSBarry Smith 4121eb62cbbSBarry Smith aij->svalues = svalues; aij->rvalues = rvalues; 4131eb62cbbSBarry Smith aij->nsends = nsends; aij->nrecvs = nreceives; 4141eb62cbbSBarry Smith aij->send_waits = send_waits; aij->recv_waits = recv_waits; 4151eb62cbbSBarry Smith aij->rmax = nmax; 4161eb62cbbSBarry Smith 4173a40ed3dSBarry Smith PetscFunctionReturn(0); 4181eb62cbbSBarry Smith } 41944a69424SLois Curfman McInnes extern int MatSetUpMultiply_MPIAIJ(Mat); 4201eb62cbbSBarry Smith 4215615d1e5SSatish Balay #undef __FUNC__ 4225615d1e5SSatish Balay #define __FUNC__ "MatAssemblyEnd_MPIAIJ" 4238f6be9afSLois Curfman McInnes int MatAssemblyEnd_MPIAIJ(Mat mat,MatAssemblyType mode) 4241eb62cbbSBarry Smith { 42544a69424SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 4261eb62cbbSBarry Smith MPI_Status *send_status,recv_status; 427416022c9SBarry Smith int imdex,nrecvs = aij->nrecvs, count = nrecvs, i, n, ierr; 428905e6a2fSBarry Smith int row,col,other_disassembled; 4291eb62cbbSBarry Smith Scalar *values,val; 43047794344SBarry Smith InsertMode addv = mat->insertmode; 4311eb62cbbSBarry Smith 4323a40ed3dSBarry Smith PetscFunctionBegin; 433b5bd3ad5SBarry Smith 4341eb62cbbSBarry Smith /* wait on receives */ 4351eb62cbbSBarry Smith while (count) { 436ca161407SBarry Smith ierr = MPI_Waitany(nrecvs,aij->recv_waits,&imdex,&recv_status);CHKERRQ(ierr); 4371eb62cbbSBarry Smith /* unpack receives into our local space */ 438d6dfbf8fSBarry Smith values = aij->rvalues + 3*imdex*aij->rmax; 439ca161407SBarry Smith ierr = MPI_Get_count(&recv_status,MPIU_SCALAR,&n);CHKERRQ(ierr); 4401eb62cbbSBarry Smith n = n/3; 4411eb62cbbSBarry Smith for ( i=0; i<n; i++ ) { 442227d817aSBarry Smith row = (int) PetscReal(values[3*i]) - aij->rstart; 443227d817aSBarry Smith col = (int) PetscReal(values[3*i+1]); 4441eb62cbbSBarry Smith val = values[3*i+2]; 4451eb62cbbSBarry Smith if (col >= aij->cstart && col < aij->cend) { 4461eb62cbbSBarry Smith col -= aij->cstart; 4476fd7127cSSatish Balay ierr = MatSetValues(aij->A,1,&row,1,&col,&val,addv); CHKERRQ(ierr); 4483a40ed3dSBarry Smith } else { 44955a1b374SBarry Smith if (mat->was_assembled || mat->assembled) { 450905e6a2fSBarry Smith if (!aij->colmap) { 451905e6a2fSBarry Smith ierr = CreateColmap_MPIAIJ_Private(mat); CHKERRQ(ierr); 452905e6a2fSBarry Smith } 453b1fc9764SSatish Balay #if defined (USE_CTABLE) 454b1fc9764SSatish Balay col = TableFind( aij->colmap, col + 1 ) - 1; 455b1fc9764SSatish Balay #else 456905e6a2fSBarry Smith col = aij->colmap[col] - 1; 457b1fc9764SSatish Balay #endif 458ec8511deSBarry Smith if (col < 0 && !((Mat_SeqAIJ*)(aij->A->data))->nonew) { 4592493cbb0SBarry Smith ierr = DisAssemble_MPIAIJ(mat); CHKERRQ(ierr); 460227d817aSBarry Smith col = (int) PetscReal(values[3*i+1]); 461d6dfbf8fSBarry Smith } 4629e25ed09SBarry Smith } 4636fd7127cSSatish Balay ierr = MatSetValues(aij->B,1,&row,1,&col,&val,addv); CHKERRQ(ierr); 4641eb62cbbSBarry Smith } 4651eb62cbbSBarry Smith } 4661eb62cbbSBarry Smith count--; 4671eb62cbbSBarry Smith } 468570da906SBarry Smith if (aij->recv_waits) PetscFree(aij->recv_waits); 469570da906SBarry Smith if (aij->rvalues) PetscFree(aij->rvalues); 4701eb62cbbSBarry Smith 4711eb62cbbSBarry Smith /* wait on sends */ 4721eb62cbbSBarry Smith if (aij->nsends) { 4730a198c4cSBarry Smith send_status = (MPI_Status *) PetscMalloc(aij->nsends*sizeof(MPI_Status));CHKPTRQ(send_status); 474ca161407SBarry Smith ierr = MPI_Waitall(aij->nsends,aij->send_waits,send_status);CHKERRQ(ierr); 4750452661fSBarry Smith PetscFree(send_status); 4761eb62cbbSBarry Smith } 477b5bd3ad5SBarry Smith if (aij->send_waits) PetscFree(aij->send_waits); 478b5bd3ad5SBarry Smith if (aij->svalues) PetscFree(aij->svalues); 4791eb62cbbSBarry Smith 48078b31e54SBarry Smith ierr = MatAssemblyBegin(aij->A,mode); CHKERRQ(ierr); 48178b31e54SBarry Smith ierr = MatAssemblyEnd(aij->A,mode); CHKERRQ(ierr); 4821eb62cbbSBarry Smith 4832493cbb0SBarry Smith /* determine if any processor has disassembled, if so we must 4842493cbb0SBarry Smith also disassemble ourselfs, in order that we may reassemble. */ 48541e46ba1SBarry Smith /* 48641e46ba1SBarry Smith if nonzero structure of submatrix B cannot change then we know that 48741e46ba1SBarry Smith no processor disassembled thus we can skip this stuff 48841e46ba1SBarry Smith */ 48941e46ba1SBarry Smith if (!((Mat_SeqAIJ*) aij->B->data)->nonew) { 490ca161407SBarry Smith ierr = MPI_Allreduce(&mat->was_assembled,&other_disassembled,1,MPI_INT,MPI_PROD,mat->comm);CHKERRQ(ierr); 491227d817aSBarry Smith if (mat->was_assembled && !other_disassembled) { 4922493cbb0SBarry Smith ierr = DisAssemble_MPIAIJ(mat); CHKERRQ(ierr); 4932493cbb0SBarry Smith } 49441e46ba1SBarry Smith } 4952493cbb0SBarry Smith 4966d4a8577SBarry Smith if (!mat->was_assembled && mode == MAT_FINAL_ASSEMBLY) { 49778b31e54SBarry Smith ierr = MatSetUpMultiply_MPIAIJ(mat); CHKERRQ(ierr); 4985e42470aSBarry Smith } 49978b31e54SBarry Smith ierr = MatAssemblyBegin(aij->B,mode); CHKERRQ(ierr); 50078b31e54SBarry Smith ierr = MatAssemblyEnd(aij->B,mode); CHKERRQ(ierr); 5015e42470aSBarry Smith 5027a0afa10SBarry Smith if (aij->rowvalues) {PetscFree(aij->rowvalues); aij->rowvalues = 0;} 5033a40ed3dSBarry Smith PetscFunctionReturn(0); 5048a729477SBarry Smith } 5058a729477SBarry Smith 5065615d1e5SSatish Balay #undef __FUNC__ 5075615d1e5SSatish Balay #define __FUNC__ "MatZeroEntries_MPIAIJ" 5088f6be9afSLois Curfman McInnes int MatZeroEntries_MPIAIJ(Mat A) 5091eb62cbbSBarry Smith { 51044a69424SLois Curfman McInnes Mat_MPIAIJ *l = (Mat_MPIAIJ *) A->data; 511dbd7a890SLois Curfman McInnes int ierr; 5123a40ed3dSBarry Smith 5133a40ed3dSBarry Smith PetscFunctionBegin; 51478b31e54SBarry Smith ierr = MatZeroEntries(l->A); CHKERRQ(ierr); 51578b31e54SBarry Smith ierr = MatZeroEntries(l->B); CHKERRQ(ierr); 5163a40ed3dSBarry Smith PetscFunctionReturn(0); 5171eb62cbbSBarry Smith } 5181eb62cbbSBarry Smith 5195615d1e5SSatish Balay #undef __FUNC__ 5205615d1e5SSatish Balay #define __FUNC__ "MatZeroRows_MPIAIJ" 5218f6be9afSLois Curfman McInnes int MatZeroRows_MPIAIJ(Mat A,IS is,Scalar *diag) 5221eb62cbbSBarry Smith { 52344a69424SLois Curfman McInnes Mat_MPIAIJ *l = (Mat_MPIAIJ *) A->data; 52417699dbbSLois Curfman McInnes int i,ierr,N, *rows,*owners = l->rowners,size = l->size; 5256a5c57faSSatish Balay int *procs,*nprocs,j,found,idx,nsends,*work,row; 52617699dbbSLois Curfman McInnes int nmax,*svalues,*starts,*owner,nrecvs,rank = l->rank; 5275392566eSBarry Smith int *rvalues,tag = A->tag,count,base,slen,n,*source; 5286a5c57faSSatish Balay int *lens,imdex,*lrows,*values,rstart=l->rstart; 529d6dfbf8fSBarry Smith MPI_Comm comm = A->comm; 5301eb62cbbSBarry Smith MPI_Request *send_waits,*recv_waits; 5311eb62cbbSBarry Smith MPI_Status recv_status,*send_status; 5321eb62cbbSBarry Smith IS istmp; 5331eb62cbbSBarry Smith 5343a40ed3dSBarry Smith PetscFunctionBegin; 53577c4ece6SBarry Smith ierr = ISGetSize(is,&N); CHKERRQ(ierr); 53678b31e54SBarry Smith ierr = ISGetIndices(is,&rows); CHKERRQ(ierr); 5371eb62cbbSBarry Smith 5381eb62cbbSBarry Smith /* first count number of contributors to each processor */ 5390452661fSBarry Smith nprocs = (int *) PetscMalloc( 2*size*sizeof(int) ); CHKPTRQ(nprocs); 540cddf8d76SBarry Smith PetscMemzero(nprocs,2*size*sizeof(int)); procs = nprocs + size; 5410452661fSBarry Smith owner = (int *) PetscMalloc((N+1)*sizeof(int)); CHKPTRQ(owner); /* see note*/ 5421eb62cbbSBarry Smith for ( i=0; i<N; i++ ) { 5431eb62cbbSBarry Smith idx = rows[i]; 5441eb62cbbSBarry Smith found = 0; 54517699dbbSLois Curfman McInnes for ( j=0; j<size; j++ ) { 5461eb62cbbSBarry Smith if (idx >= owners[j] && idx < owners[j+1]) { 5471eb62cbbSBarry Smith nprocs[j]++; procs[j] = 1; owner[i] = j; found = 1; break; 5481eb62cbbSBarry Smith } 5491eb62cbbSBarry Smith } 550a8c6a408SBarry Smith if (!found) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Index out of range"); 5511eb62cbbSBarry Smith } 55217699dbbSLois Curfman McInnes nsends = 0; for ( i=0; i<size; i++ ) { nsends += procs[i];} 5531eb62cbbSBarry Smith 5541eb62cbbSBarry Smith /* inform other processors of number of messages and max length*/ 5550452661fSBarry Smith work = (int *) PetscMalloc( size*sizeof(int) ); CHKPTRQ(work); 556ca161407SBarry Smith ierr = MPI_Allreduce( procs, work,size,MPI_INT,MPI_SUM,comm);CHKERRQ(ierr); 55717699dbbSLois Curfman McInnes nrecvs = work[rank]; 558ca161407SBarry Smith ierr = MPI_Allreduce( nprocs, work,size,MPI_INT,MPI_MAX,comm);CHKERRQ(ierr); 55917699dbbSLois Curfman McInnes nmax = work[rank]; 5600452661fSBarry Smith PetscFree(work); 5611eb62cbbSBarry Smith 5621eb62cbbSBarry Smith /* post receives: */ 5633a40ed3dSBarry Smith rvalues = (int *) PetscMalloc((nrecvs+1)*(nmax+1)*sizeof(int));CHKPTRQ(rvalues); 564ca161407SBarry Smith recv_waits = (MPI_Request *) PetscMalloc((nrecvs+1)*sizeof(MPI_Request));CHKPTRQ(recv_waits); 5651eb62cbbSBarry Smith for ( i=0; i<nrecvs; i++ ) { 566ca161407SBarry Smith ierr = MPI_Irecv(rvalues+nmax*i,nmax,MPI_INT,MPI_ANY_SOURCE,tag,comm,recv_waits+i);CHKERRQ(ierr); 5671eb62cbbSBarry Smith } 5681eb62cbbSBarry Smith 5691eb62cbbSBarry Smith /* do sends: 5701eb62cbbSBarry Smith 1) starts[i] gives the starting index in svalues for stuff going to 5711eb62cbbSBarry Smith the ith processor 5721eb62cbbSBarry Smith */ 5730452661fSBarry Smith svalues = (int *) PetscMalloc( (N+1)*sizeof(int) ); CHKPTRQ(svalues); 5743a40ed3dSBarry Smith send_waits = (MPI_Request *) PetscMalloc( (nsends+1)*sizeof(MPI_Request));CHKPTRQ(send_waits); 5750452661fSBarry Smith starts = (int *) PetscMalloc( (size+1)*sizeof(int) ); CHKPTRQ(starts); 5761eb62cbbSBarry Smith starts[0] = 0; 57717699dbbSLois Curfman McInnes for ( i=1; i<size; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];} 5781eb62cbbSBarry Smith for ( i=0; i<N; i++ ) { 5791eb62cbbSBarry Smith svalues[starts[owner[i]]++] = rows[i]; 5801eb62cbbSBarry Smith } 5811eb62cbbSBarry Smith ISRestoreIndices(is,&rows); 5821eb62cbbSBarry Smith 5831eb62cbbSBarry Smith starts[0] = 0; 58417699dbbSLois Curfman McInnes for ( i=1; i<size+1; i++ ) { starts[i] = starts[i-1] + nprocs[i-1];} 5851eb62cbbSBarry Smith count = 0; 58617699dbbSLois Curfman McInnes for ( i=0; i<size; i++ ) { 5871eb62cbbSBarry Smith if (procs[i]) { 588ca161407SBarry Smith ierr = MPI_Isend(svalues+starts[i],nprocs[i],MPI_INT,i,tag,comm,send_waits+count++);CHKERRQ(ierr); 5891eb62cbbSBarry Smith } 5901eb62cbbSBarry Smith } 5910452661fSBarry Smith PetscFree(starts); 5921eb62cbbSBarry Smith 59317699dbbSLois Curfman McInnes base = owners[rank]; 5941eb62cbbSBarry Smith 5951eb62cbbSBarry Smith /* wait on receives */ 5960452661fSBarry Smith lens = (int *) PetscMalloc( 2*(nrecvs+1)*sizeof(int) ); CHKPTRQ(lens); 5971eb62cbbSBarry Smith source = lens + nrecvs; 5981eb62cbbSBarry Smith count = nrecvs; slen = 0; 5991eb62cbbSBarry Smith while (count) { 600ca161407SBarry Smith ierr = MPI_Waitany(nrecvs,recv_waits,&imdex,&recv_status);CHKERRQ(ierr); 6011eb62cbbSBarry Smith /* unpack receives into our local space */ 602ca161407SBarry Smith ierr = MPI_Get_count(&recv_status,MPI_INT,&n);CHKERRQ(ierr); 603d6dfbf8fSBarry Smith source[imdex] = recv_status.MPI_SOURCE; 604d6dfbf8fSBarry Smith lens[imdex] = n; 6051eb62cbbSBarry Smith slen += n; 6061eb62cbbSBarry Smith count--; 6071eb62cbbSBarry Smith } 6080452661fSBarry Smith PetscFree(recv_waits); 6091eb62cbbSBarry Smith 6101eb62cbbSBarry Smith /* move the data into the send scatter */ 6110452661fSBarry Smith lrows = (int *) PetscMalloc( (slen+1)*sizeof(int) ); CHKPTRQ(lrows); 6121eb62cbbSBarry Smith count = 0; 6131eb62cbbSBarry Smith for ( i=0; i<nrecvs; i++ ) { 6141eb62cbbSBarry Smith values = rvalues + i*nmax; 6151eb62cbbSBarry Smith for ( j=0; j<lens[i]; j++ ) { 6161eb62cbbSBarry Smith lrows[count++] = values[j] - base; 6171eb62cbbSBarry Smith } 6181eb62cbbSBarry Smith } 6190452661fSBarry Smith PetscFree(rvalues); PetscFree(lens); 6200452661fSBarry Smith PetscFree(owner); PetscFree(nprocs); 6211eb62cbbSBarry Smith 6221eb62cbbSBarry Smith /* actually zap the local rows */ 623029af93fSBarry Smith ierr = ISCreateGeneral(PETSC_COMM_SELF,slen,lrows,&istmp);CHKERRQ(ierr); 624464493b3SBarry Smith PLogObjectParent(A,istmp); 6256a5c57faSSatish Balay 6266eb55b6aSBarry Smith /* 6276eb55b6aSBarry Smith Zero the required rows. If the "diagonal block" of the matrix 6286eb55b6aSBarry Smith is square and the user wishes to set the diagonal we use seperate 6296eb55b6aSBarry Smith code so that MatSetValues() is not called for each diagonal allocating 6306eb55b6aSBarry Smith new memory, thus calling lots of mallocs and slowing things down. 6316eb55b6aSBarry Smith 6326eb55b6aSBarry Smith Contributed by: Mathew Knepley 6336eb55b6aSBarry Smith */ 634e2d53e46SBarry Smith /* must zero l->B before l->A because the (diag) case below may put values into l->B*/ 635e2d53e46SBarry Smith ierr = MatZeroRows(l->B,istmp,0); CHKERRQ(ierr); 6366eb55b6aSBarry Smith if (diag && (l->A->M == l->A->N)) { 6376eb55b6aSBarry Smith ierr = MatZeroRows(l->A,istmp,diag); CHKERRQ(ierr); 638e2d53e46SBarry Smith } else if (diag) { 639e2d53e46SBarry Smith ierr = MatZeroRows(l->A,istmp,0); CHKERRQ(ierr); 640e2d53e46SBarry Smith for ( i = 0; i < slen; i++ ) { 641e2d53e46SBarry Smith row = lrows[i] + rstart; 642e2d53e46SBarry Smith ierr = MatSetValues(A,1,&row,1,&row,diag,INSERT_VALUES);CHKERRQ(ierr); 643e2d53e46SBarry Smith } 644e2d53e46SBarry Smith ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 645e2d53e46SBarry Smith ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 6466eb55b6aSBarry Smith } else { 6476a5c57faSSatish Balay ierr = MatZeroRows(l->A,istmp,0); CHKERRQ(ierr); 6486eb55b6aSBarry Smith } 64978b31e54SBarry Smith ierr = ISDestroy(istmp); CHKERRQ(ierr); 6506a5c57faSSatish Balay PetscFree(lrows); 65172dacd9aSBarry Smith 6521eb62cbbSBarry Smith /* wait on sends */ 6531eb62cbbSBarry Smith if (nsends) { 654ca161407SBarry Smith send_status = (MPI_Status *) PetscMalloc(nsends*sizeof(MPI_Status));CHKPTRQ(send_status); 655ca161407SBarry Smith ierr = MPI_Waitall(nsends,send_waits,send_status);CHKERRQ(ierr); 6560452661fSBarry Smith PetscFree(send_status); 6571eb62cbbSBarry Smith } 6580452661fSBarry Smith PetscFree(send_waits); PetscFree(svalues); 6591eb62cbbSBarry Smith 6603a40ed3dSBarry Smith PetscFunctionReturn(0); 6611eb62cbbSBarry Smith } 6621eb62cbbSBarry Smith 6635615d1e5SSatish Balay #undef __FUNC__ 6645615d1e5SSatish Balay #define __FUNC__ "MatMult_MPIAIJ" 6658f6be9afSLois Curfman McInnes int MatMult_MPIAIJ(Mat A,Vec xx,Vec yy) 6661eb62cbbSBarry Smith { 667416022c9SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 668fbd6ef76SBarry Smith int ierr,nt; 669416022c9SBarry Smith 6703a40ed3dSBarry Smith PetscFunctionBegin; 671a2ce50c7SBarry Smith ierr = VecGetLocalSize(xx,&nt); CHKERRQ(ierr); 672fbd6ef76SBarry Smith if (nt != a->n) { 673a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_SIZ,0,"Incompatible partition of A and xx"); 674fbd6ef76SBarry Smith } 67543a90d84SBarry Smith ierr = VecScatterBegin(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx); CHKERRQ(ierr); 676f830108cSBarry Smith ierr = (*a->A->ops->mult)(a->A,xx,yy); CHKERRQ(ierr); 67743a90d84SBarry Smith ierr = VecScatterEnd(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx); CHKERRQ(ierr); 678f830108cSBarry Smith ierr = (*a->B->ops->multadd)(a->B,a->lvec,yy,yy); CHKERRQ(ierr); 6793a40ed3dSBarry Smith PetscFunctionReturn(0); 6801eb62cbbSBarry Smith } 6811eb62cbbSBarry Smith 6825615d1e5SSatish Balay #undef __FUNC__ 6835615d1e5SSatish Balay #define __FUNC__ "MatMultAdd_MPIAIJ" 6848f6be9afSLois Curfman McInnes int MatMultAdd_MPIAIJ(Mat A,Vec xx,Vec yy,Vec zz) 685da3a660dSBarry Smith { 686416022c9SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 687da3a660dSBarry Smith int ierr; 6883a40ed3dSBarry Smith 6893a40ed3dSBarry Smith PetscFunctionBegin; 69043a90d84SBarry Smith ierr = VecScatterBegin(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx);CHKERRQ(ierr); 691f830108cSBarry Smith ierr = (*a->A->ops->multadd)(a->A,xx,yy,zz); CHKERRQ(ierr); 69243a90d84SBarry Smith ierr = VecScatterEnd(xx,a->lvec,INSERT_VALUES,SCATTER_FORWARD,a->Mvctx);CHKERRQ(ierr); 693f830108cSBarry Smith ierr = (*a->B->ops->multadd)(a->B,a->lvec,zz,zz); CHKERRQ(ierr); 6943a40ed3dSBarry Smith PetscFunctionReturn(0); 695da3a660dSBarry Smith } 696da3a660dSBarry Smith 6975615d1e5SSatish Balay #undef __FUNC__ 6985615d1e5SSatish Balay #define __FUNC__ "MatMultTrans_MPIAIJ" 6998f6be9afSLois Curfman McInnes int MatMultTrans_MPIAIJ(Mat A,Vec xx,Vec yy) 700da3a660dSBarry Smith { 701416022c9SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 702da3a660dSBarry Smith int ierr; 703da3a660dSBarry Smith 7043a40ed3dSBarry Smith PetscFunctionBegin; 705da3a660dSBarry Smith /* do nondiagonal part */ 706f830108cSBarry Smith ierr = (*a->B->ops->multtrans)(a->B,xx,a->lvec); CHKERRQ(ierr); 707da3a660dSBarry Smith /* send it on its way */ 708537820f0SBarry Smith ierr = VecScatterBegin(a->lvec,yy,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr); 709da3a660dSBarry Smith /* do local part */ 710f830108cSBarry Smith ierr = (*a->A->ops->multtrans)(a->A,xx,yy); CHKERRQ(ierr); 711da3a660dSBarry Smith /* receive remote parts: note this assumes the values are not actually */ 712da3a660dSBarry Smith /* inserted in yy until the next line, which is true for my implementation*/ 713da3a660dSBarry Smith /* but is not perhaps always true. */ 714537820f0SBarry Smith ierr = VecScatterEnd(a->lvec,yy,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr); 7153a40ed3dSBarry Smith PetscFunctionReturn(0); 716da3a660dSBarry Smith } 717da3a660dSBarry Smith 7185615d1e5SSatish Balay #undef __FUNC__ 7195615d1e5SSatish Balay #define __FUNC__ "MatMultTransAdd_MPIAIJ" 7208f6be9afSLois Curfman McInnes int MatMultTransAdd_MPIAIJ(Mat A,Vec xx,Vec yy,Vec zz) 721da3a660dSBarry Smith { 722416022c9SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 723da3a660dSBarry Smith int ierr; 724da3a660dSBarry Smith 7253a40ed3dSBarry Smith PetscFunctionBegin; 726da3a660dSBarry Smith /* do nondiagonal part */ 727f830108cSBarry Smith ierr = (*a->B->ops->multtrans)(a->B,xx,a->lvec); CHKERRQ(ierr); 728da3a660dSBarry Smith /* send it on its way */ 729537820f0SBarry Smith ierr = VecScatterBegin(a->lvec,zz,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr); 730da3a660dSBarry Smith /* do local part */ 731f830108cSBarry Smith ierr = (*a->A->ops->multtransadd)(a->A,xx,yy,zz); CHKERRQ(ierr); 732da3a660dSBarry Smith /* receive remote parts: note this assumes the values are not actually */ 733da3a660dSBarry Smith /* inserted in yy until the next line, which is true for my implementation*/ 734da3a660dSBarry Smith /* but is not perhaps always true. */ 7350a198c4cSBarry Smith ierr = VecScatterEnd(a->lvec,zz,ADD_VALUES,SCATTER_REVERSE,a->Mvctx); CHKERRQ(ierr); 7363a40ed3dSBarry Smith PetscFunctionReturn(0); 737da3a660dSBarry Smith } 738da3a660dSBarry Smith 7391eb62cbbSBarry Smith /* 7401eb62cbbSBarry Smith This only works correctly for square matrices where the subblock A->A is the 7411eb62cbbSBarry Smith diagonal block 7421eb62cbbSBarry Smith */ 7435615d1e5SSatish Balay #undef __FUNC__ 7445615d1e5SSatish Balay #define __FUNC__ "MatGetDiagonal_MPIAIJ" 7458f6be9afSLois Curfman McInnes int MatGetDiagonal_MPIAIJ(Mat A,Vec v) 7461eb62cbbSBarry Smith { 7473a40ed3dSBarry Smith int ierr; 748416022c9SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 7493a40ed3dSBarry Smith 7503a40ed3dSBarry Smith PetscFunctionBegin; 751a8c6a408SBarry Smith if (a->M != a->N) SETERRQ(PETSC_ERR_SUP,0,"Supports only square matrix where A->A is diag block"); 7525baf8537SBarry Smith if (a->rstart != a->cstart || a->rend != a->cend) { 753a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_SIZ,0,"row partition must equal col partition"); 7543a40ed3dSBarry Smith } 7553a40ed3dSBarry Smith ierr = MatGetDiagonal(a->A,v);CHKERRQ(ierr); 7563a40ed3dSBarry Smith PetscFunctionReturn(0); 7571eb62cbbSBarry Smith } 7581eb62cbbSBarry Smith 7595615d1e5SSatish Balay #undef __FUNC__ 7605615d1e5SSatish Balay #define __FUNC__ "MatScale_MPIAIJ" 7618f6be9afSLois Curfman McInnes int MatScale_MPIAIJ(Scalar *aa,Mat A) 762052efed2SBarry Smith { 763052efed2SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 764052efed2SBarry Smith int ierr; 7653a40ed3dSBarry Smith 7663a40ed3dSBarry Smith PetscFunctionBegin; 767052efed2SBarry Smith ierr = MatScale(aa,a->A); CHKERRQ(ierr); 768052efed2SBarry Smith ierr = MatScale(aa,a->B); CHKERRQ(ierr); 7693a40ed3dSBarry Smith PetscFunctionReturn(0); 770052efed2SBarry Smith } 771052efed2SBarry Smith 7725615d1e5SSatish Balay #undef __FUNC__ 773d4bb536fSBarry Smith #define __FUNC__ "MatDestroy_MPIAIJ" 774e1311b90SBarry Smith int MatDestroy_MPIAIJ(Mat mat) 7751eb62cbbSBarry Smith { 77644a69424SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 7771eb62cbbSBarry Smith int ierr; 77883e2fdc7SBarry Smith 7793a40ed3dSBarry Smith PetscFunctionBegin; 78070429bc8SBarry Smith if (--mat->refct > 0) PetscFunctionReturn(0); 78170429bc8SBarry Smith 78270429bc8SBarry Smith if (mat->mapping) { 78370429bc8SBarry Smith ierr = ISLocalToGlobalMappingDestroy(mat->mapping); CHKERRQ(ierr); 78470429bc8SBarry Smith } 78570429bc8SBarry Smith if (mat->bmapping) { 78670429bc8SBarry Smith ierr = ISLocalToGlobalMappingDestroy(mat->bmapping); CHKERRQ(ierr); 78770429bc8SBarry Smith } 78861b13de0SBarry Smith if (mat->rmap) { 78961b13de0SBarry Smith ierr = MapDestroy(mat->rmap);CHKERRQ(ierr); 79061b13de0SBarry Smith } 79161b13de0SBarry Smith if (mat->cmap) { 79261b13de0SBarry Smith ierr = MapDestroy(mat->cmap);CHKERRQ(ierr); 79361b13de0SBarry Smith } 7943a40ed3dSBarry Smith #if defined(USE_PETSC_LOG) 795e1311b90SBarry Smith PLogObjectState((PetscObject)mat,"Rows=%d, Cols=%d",aij->M,aij->N); 796a5a9c739SBarry Smith #endif 79783e2fdc7SBarry Smith ierr = StashDestroy_Private(&aij->stash); CHKERRQ(ierr); 7980452661fSBarry Smith PetscFree(aij->rowners); 79978b31e54SBarry Smith ierr = MatDestroy(aij->A); CHKERRQ(ierr); 80078b31e54SBarry Smith ierr = MatDestroy(aij->B); CHKERRQ(ierr); 801b1fc9764SSatish Balay #if defined (USE_CTABLE) 802b1fc9764SSatish Balay if (aij->colmap) TableDelete(aij->colmap); 803b1fc9764SSatish Balay #else 8040452661fSBarry Smith if (aij->colmap) PetscFree(aij->colmap); 805b1fc9764SSatish Balay #endif 8060452661fSBarry Smith if (aij->garray) PetscFree(aij->garray); 8071eb62cbbSBarry Smith if (aij->lvec) VecDestroy(aij->lvec); 808a56f8943SBarry Smith if (aij->Mvctx) VecScatterDestroy(aij->Mvctx); 8097a0afa10SBarry Smith if (aij->rowvalues) PetscFree(aij->rowvalues); 8100452661fSBarry Smith PetscFree(aij); 811a5a9c739SBarry Smith PLogObjectDestroy(mat); 8120452661fSBarry Smith PetscHeaderDestroy(mat); 8133a40ed3dSBarry Smith PetscFunctionReturn(0); 8141eb62cbbSBarry Smith } 815ee50ffe9SBarry Smith 8165615d1e5SSatish Balay #undef __FUNC__ 817d4bb536fSBarry Smith #define __FUNC__ "MatView_MPIAIJ_Binary" 8188f6be9afSLois Curfman McInnes extern int MatView_MPIAIJ_Binary(Mat mat,Viewer viewer) 8191eb62cbbSBarry Smith { 820416022c9SBarry Smith Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 821416022c9SBarry Smith int ierr; 822416022c9SBarry Smith 8233a40ed3dSBarry Smith PetscFunctionBegin; 82417699dbbSLois Curfman McInnes if (aij->size == 1) { 825416022c9SBarry Smith ierr = MatView(aij->A,viewer); CHKERRQ(ierr); 826416022c9SBarry Smith } 827a8c6a408SBarry Smith else SETERRQ(PETSC_ERR_SUP,0,"Only uniprocessor output supported"); 8283a40ed3dSBarry Smith PetscFunctionReturn(0); 829416022c9SBarry Smith } 830416022c9SBarry Smith 8315615d1e5SSatish Balay #undef __FUNC__ 8327b2a1423SBarry Smith #define __FUNC__ "MatView_MPIAIJ_ASCIIorDraworSocket" 8337b2a1423SBarry Smith extern int MatView_MPIAIJ_ASCIIorDraworSocket(Mat mat,Viewer viewer) 834416022c9SBarry Smith { 83544a69424SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 836dbb450caSBarry Smith Mat_SeqAIJ* C = (Mat_SeqAIJ*)aij->A->data; 83777ed5343SBarry Smith int ierr, format,shift = C->indexshift,rank = aij->rank ; 83877ed5343SBarry Smith int size = aij->size; 839d636dbe3SBarry Smith FILE *fd; 84019bcc07fSBarry Smith ViewerType vtype; 841416022c9SBarry Smith 8423a40ed3dSBarry Smith PetscFunctionBegin; 84319bcc07fSBarry Smith ierr = ViewerGetType(viewer,&vtype); CHKERRQ(ierr); 8443f1db9ecSBarry Smith if (PetscTypeCompare(vtype,ASCII_VIEWER)) { 84590ace30eSBarry Smith ierr = ViewerGetFormat(viewer,&format); 8460a198c4cSBarry Smith if (format == VIEWER_FORMAT_ASCII_INFO_LONG) { 8474e220ebcSLois Curfman McInnes MatInfo info; 8484e220ebcSLois Curfman McInnes int flg; 849a56f8943SBarry Smith MPI_Comm_rank(mat->comm,&rank); 85090ace30eSBarry Smith ierr = ViewerASCIIGetPointer(viewer,&fd); CHKERRQ(ierr); 8514e220ebcSLois Curfman McInnes ierr = MatGetInfo(mat,MAT_LOCAL,&info); 85295e01e2fSLois Curfman McInnes ierr = OptionsHasName(PETSC_NULL,"-mat_aij_no_inode",&flg); CHKERRQ(ierr); 85377c4ece6SBarry Smith PetscSequentialPhaseBegin(mat->comm,1); 85495e01e2fSLois Curfman McInnes if (flg) fprintf(fd,"[%d] Local rows %d nz %d nz alloced %d mem %d, not using I-node routines\n", 8554e220ebcSLois Curfman McInnes rank,aij->m,(int)info.nz_used,(int)info.nz_allocated,(int)info.memory); 85695e01e2fSLois Curfman McInnes else fprintf(fd,"[%d] Local rows %d nz %d nz alloced %d mem %d, using I-node routines\n", 8574e220ebcSLois Curfman McInnes rank,aij->m,(int)info.nz_used,(int)info.nz_allocated,(int)info.memory); 8584e220ebcSLois Curfman McInnes ierr = MatGetInfo(aij->A,MAT_LOCAL,&info); 8594e220ebcSLois Curfman McInnes fprintf(fd,"[%d] on-diagonal part: nz %d \n",rank,(int)info.nz_used); 8604e220ebcSLois Curfman McInnes ierr = MatGetInfo(aij->B,MAT_LOCAL,&info); 8614e220ebcSLois Curfman McInnes fprintf(fd,"[%d] off-diagonal part: nz %d \n",rank,(int)info.nz_used); 862a56f8943SBarry Smith fflush(fd); 86377c4ece6SBarry Smith PetscSequentialPhaseEnd(mat->comm,1); 864a40aa06bSLois Curfman McInnes ierr = VecScatterView(aij->Mvctx,viewer); CHKERRQ(ierr); 8653a40ed3dSBarry Smith PetscFunctionReturn(0); 8663a40ed3dSBarry Smith } else if (format == VIEWER_FORMAT_ASCII_INFO) { 8673a40ed3dSBarry Smith PetscFunctionReturn(0); 86808480c60SBarry Smith } 8693f1db9ecSBarry Smith } else if (PetscTypeCompare(vtype,DRAW_VIEWER)) { 87019bcc07fSBarry Smith Draw draw; 87119bcc07fSBarry Smith PetscTruth isnull; 87277ed5343SBarry Smith ierr = ViewerDrawGetDraw(viewer,0,&draw); CHKERRQ(ierr); 8733a40ed3dSBarry Smith ierr = DrawIsNull(draw,&isnull); CHKERRQ(ierr); if (isnull) PetscFunctionReturn(0); 87419bcc07fSBarry Smith } 87519bcc07fSBarry Smith 87617699dbbSLois Curfman McInnes if (size == 1) { 87778b31e54SBarry Smith ierr = MatView(aij->A,viewer); CHKERRQ(ierr); 8783a40ed3dSBarry Smith } else { 87995373324SBarry Smith /* assemble the entire matrix onto first processor. */ 88095373324SBarry Smith Mat A; 881ec8511deSBarry Smith Mat_SeqAIJ *Aloc; 8822eb8c8abSBarry Smith int M = aij->M, N = aij->N,m,*ai,*aj,row,*cols,i,*ct; 88395373324SBarry Smith Scalar *a; 8842ee70a88SLois Curfman McInnes 88517699dbbSLois Curfman McInnes if (!rank) { 88655843e3eSBarry Smith ierr = MatCreateMPIAIJ(mat->comm,M,N,M,N,0,PETSC_NULL,0,PETSC_NULL,&A);CHKERRQ(ierr); 8873a40ed3dSBarry Smith } else { 88855843e3eSBarry Smith ierr = MatCreateMPIAIJ(mat->comm,0,0,M,N,0,PETSC_NULL,0,PETSC_NULL,&A);CHKERRQ(ierr); 88995373324SBarry Smith } 890464493b3SBarry Smith PLogObjectParent(mat,A); 891416022c9SBarry Smith 89295373324SBarry Smith /* copy over the A part */ 893ec8511deSBarry Smith Aloc = (Mat_SeqAIJ*) aij->A->data; 8942ee70a88SLois Curfman McInnes m = Aloc->m; ai = Aloc->i; aj = Aloc->j; a = Aloc->a; 89595373324SBarry Smith row = aij->rstart; 896dbb450caSBarry Smith for ( i=0; i<ai[m]+shift; i++ ) {aj[i] += aij->cstart + shift;} 89795373324SBarry Smith for ( i=0; i<m; i++ ) { 898416022c9SBarry Smith ierr = MatSetValues(A,1,&row,ai[i+1]-ai[i],aj,a,INSERT_VALUES);CHKERRQ(ierr); 89995373324SBarry Smith row++; a += ai[i+1]-ai[i]; aj += ai[i+1]-ai[i]; 90095373324SBarry Smith } 9012ee70a88SLois Curfman McInnes aj = Aloc->j; 902dbb450caSBarry Smith for ( i=0; i<ai[m]+shift; i++ ) {aj[i] -= aij->cstart + shift;} 90395373324SBarry Smith 90495373324SBarry Smith /* copy over the B part */ 905ec8511deSBarry Smith Aloc = (Mat_SeqAIJ*) aij->B->data; 9062ee70a88SLois Curfman McInnes m = Aloc->m; ai = Aloc->i; aj = Aloc->j; a = Aloc->a; 90795373324SBarry Smith row = aij->rstart; 9080452661fSBarry Smith ct = cols = (int *) PetscMalloc( (ai[m]+1)*sizeof(int) ); CHKPTRQ(cols); 909dbb450caSBarry Smith for ( i=0; i<ai[m]+shift; i++ ) {cols[i] = aij->garray[aj[i]+shift];} 91095373324SBarry Smith for ( i=0; i<m; i++ ) { 911416022c9SBarry Smith ierr = MatSetValues(A,1,&row,ai[i+1]-ai[i],cols,a,INSERT_VALUES);CHKERRQ(ierr); 91295373324SBarry Smith row++; a += ai[i+1]-ai[i]; cols += ai[i+1]-ai[i]; 91395373324SBarry Smith } 9140452661fSBarry Smith PetscFree(ct); 9156d4a8577SBarry Smith ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 9166d4a8577SBarry Smith ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 91755843e3eSBarry Smith /* 91855843e3eSBarry Smith Everyone has to call to draw the matrix since the graphics waits are 91955843e3eSBarry Smith synchronized across all processors that share the Draw object 92055843e3eSBarry Smith */ 9213f1db9ecSBarry Smith if (!rank || PetscTypeCompare(vtype,DRAW_VIEWER)) { 92278b31e54SBarry Smith ierr = MatView(((Mat_MPIAIJ*)(A->data))->A,viewer); CHKERRQ(ierr); 92395373324SBarry Smith } 92478b31e54SBarry Smith ierr = MatDestroy(A); CHKERRQ(ierr); 92595373324SBarry Smith } 9263a40ed3dSBarry Smith PetscFunctionReturn(0); 9271eb62cbbSBarry Smith } 9281eb62cbbSBarry Smith 9295615d1e5SSatish Balay #undef __FUNC__ 930d4bb536fSBarry Smith #define __FUNC__ "MatView_MPIAIJ" 931e1311b90SBarry Smith int MatView_MPIAIJ(Mat mat,Viewer viewer) 932416022c9SBarry Smith { 933416022c9SBarry Smith int ierr; 93419bcc07fSBarry Smith ViewerType vtype; 935416022c9SBarry Smith 9363a40ed3dSBarry Smith PetscFunctionBegin; 93719bcc07fSBarry Smith ierr = ViewerGetType(viewer,&vtype); CHKERRQ(ierr); 9383f1db9ecSBarry Smith if (PetscTypeCompare(vtype,ASCII_VIEWER) || PetscTypeCompare(vtype,DRAW_VIEWER) || 9397b2a1423SBarry Smith PetscTypeCompare(vtype,SOCKET_VIEWER)) { 9407b2a1423SBarry Smith ierr = MatView_MPIAIJ_ASCIIorDraworSocket(mat,viewer); CHKERRQ(ierr); 9413f1db9ecSBarry Smith } else if (PetscTypeCompare(vtype,BINARY_VIEWER)) { 9423a40ed3dSBarry Smith ierr = MatView_MPIAIJ_Binary(mat,viewer);CHKERRQ(ierr); 9435cd90555SBarry Smith } else { 9445cd90555SBarry Smith SETERRQ(1,1,"Viewer type not supported by PETSc object"); 945416022c9SBarry Smith } 9463a40ed3dSBarry Smith PetscFunctionReturn(0); 947416022c9SBarry Smith } 948416022c9SBarry Smith 9491eb62cbbSBarry Smith /* 9501eb62cbbSBarry Smith This has to provide several versions. 9511eb62cbbSBarry Smith 9521eb62cbbSBarry Smith 2) a) use only local smoothing updating outer values only once. 9531eb62cbbSBarry Smith b) local smoothing updating outer values each inner iteration 954d6dfbf8fSBarry Smith 3) color updating out values betwen colors. 9551eb62cbbSBarry Smith */ 9565615d1e5SSatish Balay #undef __FUNC__ 9575615d1e5SSatish Balay #define __FUNC__ "MatRelax_MPIAIJ" 9588f6be9afSLois Curfman McInnes int MatRelax_MPIAIJ(Mat matin,Vec bb,double omega,MatSORType flag, 959dbb450caSBarry Smith double fshift,int its,Vec xx) 9608a729477SBarry Smith { 96144a69424SLois Curfman McInnes Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data; 962d6dfbf8fSBarry Smith Mat AA = mat->A, BB = mat->B; 963ec8511deSBarry Smith Mat_SeqAIJ *A = (Mat_SeqAIJ *) AA->data, *B = (Mat_SeqAIJ *)BB->data; 964c16cb8f2SBarry Smith Scalar *b,*x,*xs,*ls,d,*v,sum; 9656abc6512SBarry Smith int ierr,*idx, *diag; 966416022c9SBarry Smith int n = mat->n, m = mat->m, i,shift = A->indexshift; 9678a729477SBarry Smith 9683a40ed3dSBarry Smith PetscFunctionBegin; 9692e8a6d31SBarry Smith ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 9702e8a6d31SBarry Smith ierr = VecGetArray(bb,&b); CHKERRQ(ierr); 9712e8a6d31SBarry Smith ierr = VecGetArray(mat->lvec,&ls);CHKERRQ(ierr); 972dbb450caSBarry Smith xs = x + shift; /* shift by one for index start of 1 */ 973dbb450caSBarry Smith ls = ls + shift; 97483e2fdc7SBarry Smith if (!A->diag) {ierr = MatMarkDiag_SeqAIJ(AA); CHKERRQ(ierr);} 975d6dfbf8fSBarry Smith diag = A->diag; 976c16cb8f2SBarry Smith if ((flag & SOR_LOCAL_SYMMETRIC_SWEEP) == SOR_LOCAL_SYMMETRIC_SWEEP){ 977da3a660dSBarry Smith if (flag & SOR_ZERO_INITIAL_GUESS) { 978f830108cSBarry Smith ierr = (*mat->A->ops->relax)(mat->A,bb,omega,flag,fshift,its,xx);CHKERRQ(ierr); 9792e8a6d31SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 9802e8a6d31SBarry Smith ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 9812e8a6d31SBarry Smith ierr = VecRestoreArray(mat->lvec,&ls);CHKERRQ(ierr); 9823a40ed3dSBarry Smith PetscFunctionReturn(0); 983da3a660dSBarry Smith } 9843a40ed3dSBarry Smith ierr = VecScatterBegin(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);CHKERRQ(ierr); 9853a40ed3dSBarry Smith ierr = VecScatterEnd(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);CHKERRQ(ierr); 986d6dfbf8fSBarry Smith while (its--) { 987d6dfbf8fSBarry Smith /* go down through the rows */ 988d6dfbf8fSBarry Smith for ( i=0; i<m; i++ ) { 989d6dfbf8fSBarry Smith n = A->i[i+1] - A->i[i]; 9904d197716SBarry Smith PLogFlops(4*n+3); 991dbb450caSBarry Smith idx = A->j + A->i[i] + shift; 992dbb450caSBarry Smith v = A->a + A->i[i] + shift; 993d6dfbf8fSBarry Smith sum = b[i]; 994d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 995dbb450caSBarry Smith d = fshift + A->a[diag[i]+shift]; 996d6dfbf8fSBarry Smith n = B->i[i+1] - B->i[i]; 997dbb450caSBarry Smith idx = B->j + B->i[i] + shift; 998dbb450caSBarry Smith v = B->a + B->i[i] + shift; 999d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,ls,v,idx,n); 100055a1b374SBarry Smith x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d; 1001d6dfbf8fSBarry Smith } 1002d6dfbf8fSBarry Smith /* come up through the rows */ 1003d6dfbf8fSBarry Smith for ( i=m-1; i>-1; i-- ) { 1004d6dfbf8fSBarry Smith n = A->i[i+1] - A->i[i]; 10054d197716SBarry Smith PLogFlops(4*n+3) 1006dbb450caSBarry Smith idx = A->j + A->i[i] + shift; 1007dbb450caSBarry Smith v = A->a + A->i[i] + shift; 1008d6dfbf8fSBarry Smith sum = b[i]; 1009d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 1010dbb450caSBarry Smith d = fshift + A->a[diag[i]+shift]; 1011d6dfbf8fSBarry Smith n = B->i[i+1] - B->i[i]; 1012dbb450caSBarry Smith idx = B->j + B->i[i] + shift; 1013dbb450caSBarry Smith v = B->a + B->i[i] + shift; 1014d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,ls,v,idx,n); 101555a1b374SBarry Smith x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d; 1016d6dfbf8fSBarry Smith } 1017d6dfbf8fSBarry Smith } 10183a40ed3dSBarry Smith } else if (flag & SOR_LOCAL_FORWARD_SWEEP){ 1019da3a660dSBarry Smith if (flag & SOR_ZERO_INITIAL_GUESS) { 1020f830108cSBarry Smith ierr = (*mat->A->ops->relax)(mat->A,bb,omega,flag,fshift,its,xx);CHKERRQ(ierr); 10212e8a6d31SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 10222e8a6d31SBarry Smith ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 10232e8a6d31SBarry Smith ierr = VecRestoreArray(mat->lvec,&ls);CHKERRQ(ierr); 10243a40ed3dSBarry Smith PetscFunctionReturn(0); 1025da3a660dSBarry Smith } 10263a40ed3dSBarry Smith ierr = VecScatterBegin(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);CHKERRQ(ierr); 10273a40ed3dSBarry Smith ierr = VecScatterEnd(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);CHKERRQ(ierr); 1028d6dfbf8fSBarry Smith while (its--) { 1029d6dfbf8fSBarry Smith for ( i=0; i<m; i++ ) { 1030d6dfbf8fSBarry Smith n = A->i[i+1] - A->i[i]; 10314d197716SBarry Smith PLogFlops(4*n+3); 1032dbb450caSBarry Smith idx = A->j + A->i[i] + shift; 1033dbb450caSBarry Smith v = A->a + A->i[i] + shift; 1034d6dfbf8fSBarry Smith sum = b[i]; 1035d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 1036dbb450caSBarry Smith d = fshift + A->a[diag[i]+shift]; 1037d6dfbf8fSBarry Smith n = B->i[i+1] - B->i[i]; 1038dbb450caSBarry Smith idx = B->j + B->i[i] + shift; 1039dbb450caSBarry Smith v = B->a + B->i[i] + shift; 1040d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,ls,v,idx,n); 104155a1b374SBarry Smith x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d; 1042d6dfbf8fSBarry Smith } 1043d6dfbf8fSBarry Smith } 10443a40ed3dSBarry Smith } else if (flag & SOR_LOCAL_BACKWARD_SWEEP){ 1045da3a660dSBarry Smith if (flag & SOR_ZERO_INITIAL_GUESS) { 1046f830108cSBarry Smith ierr = (*mat->A->ops->relax)(mat->A,bb,omega,flag,fshift,its,xx);CHKERRQ(ierr); 10472e8a6d31SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 10482e8a6d31SBarry Smith ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 10492e8a6d31SBarry Smith ierr = VecRestoreArray(mat->lvec,&ls);CHKERRQ(ierr); 10503a40ed3dSBarry Smith PetscFunctionReturn(0); 1051da3a660dSBarry Smith } 10522e8a6d31SBarry Smith ierr = VecScatterBegin(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);CHKERRQ(ierr); 10532e8a6d31SBarry Smith ierr = VecScatterEnd(xx,mat->lvec,INSERT_VALUES,SCATTER_FORWARD,mat->Mvctx);CHKERRQ(ierr); 1054d6dfbf8fSBarry Smith while (its--) { 1055d6dfbf8fSBarry Smith for ( i=m-1; i>-1; i-- ) { 1056d6dfbf8fSBarry Smith n = A->i[i+1] - A->i[i]; 10574d197716SBarry Smith PLogFlops(4*n+3); 1058dbb450caSBarry Smith idx = A->j + A->i[i] + shift; 1059dbb450caSBarry Smith v = A->a + A->i[i] + shift; 1060d6dfbf8fSBarry Smith sum = b[i]; 1061d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 1062dbb450caSBarry Smith d = fshift + A->a[diag[i]+shift]; 1063d6dfbf8fSBarry Smith n = B->i[i+1] - B->i[i]; 1064dbb450caSBarry Smith idx = B->j + B->i[i] + shift; 1065dbb450caSBarry Smith v = B->a + B->i[i] + shift; 1066d6dfbf8fSBarry Smith SPARSEDENSEMDOT(sum,ls,v,idx,n); 106755a1b374SBarry Smith x[i] = (1. - omega)*x[i] + omega*(sum + A->a[diag[i]+shift]*x[i])/d; 1068d6dfbf8fSBarry Smith } 1069d6dfbf8fSBarry Smith } 10703a40ed3dSBarry Smith } else { 1071a8c6a408SBarry Smith SETERRQ(PETSC_ERR_SUP,0,"Parallel SOR not supported"); 1072c16cb8f2SBarry Smith } 10732e8a6d31SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 10742e8a6d31SBarry Smith ierr = VecRestoreArray(bb,&b); CHKERRQ(ierr); 10752e8a6d31SBarry Smith ierr = VecRestoreArray(mat->lvec,&ls);CHKERRQ(ierr); 10763a40ed3dSBarry Smith PetscFunctionReturn(0); 10778a729477SBarry Smith } 1078a66be287SLois Curfman McInnes 10795615d1e5SSatish Balay #undef __FUNC__ 1080d4bb536fSBarry Smith #define __FUNC__ "MatGetInfo_MPIAIJ" 10818f6be9afSLois Curfman McInnes int MatGetInfo_MPIAIJ(Mat matin,MatInfoType flag,MatInfo *info) 1082a66be287SLois Curfman McInnes { 1083a66be287SLois Curfman McInnes Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data; 1084a66be287SLois Curfman McInnes Mat A = mat->A, B = mat->B; 10854e220ebcSLois Curfman McInnes int ierr; 10864e220ebcSLois Curfman McInnes double isend[5], irecv[5]; 1087a66be287SLois Curfman McInnes 10883a40ed3dSBarry Smith PetscFunctionBegin; 10894e220ebcSLois Curfman McInnes info->block_size = 1.0; 10904e220ebcSLois Curfman McInnes ierr = MatGetInfo(A,MAT_LOCAL,info); CHKERRQ(ierr); 10914e220ebcSLois Curfman McInnes isend[0] = info->nz_used; isend[1] = info->nz_allocated; isend[2] = info->nz_unneeded; 10924e220ebcSLois Curfman McInnes isend[3] = info->memory; isend[4] = info->mallocs; 10934e220ebcSLois Curfman McInnes ierr = MatGetInfo(B,MAT_LOCAL,info); CHKERRQ(ierr); 10944e220ebcSLois Curfman McInnes isend[0] += info->nz_used; isend[1] += info->nz_allocated; isend[2] += info->nz_unneeded; 10954e220ebcSLois Curfman McInnes isend[3] += info->memory; isend[4] += info->mallocs; 1096a66be287SLois Curfman McInnes if (flag == MAT_LOCAL) { 10974e220ebcSLois Curfman McInnes info->nz_used = isend[0]; 10984e220ebcSLois Curfman McInnes info->nz_allocated = isend[1]; 10994e220ebcSLois Curfman McInnes info->nz_unneeded = isend[2]; 11004e220ebcSLois Curfman McInnes info->memory = isend[3]; 11014e220ebcSLois Curfman McInnes info->mallocs = isend[4]; 1102a66be287SLois Curfman McInnes } else if (flag == MAT_GLOBAL_MAX) { 1103ca161407SBarry Smith ierr = MPI_Allreduce(isend,irecv,5,MPI_DOUBLE,MPI_MAX,matin->comm);CHKERRQ(ierr); 11044e220ebcSLois Curfman McInnes info->nz_used = irecv[0]; 11054e220ebcSLois Curfman McInnes info->nz_allocated = irecv[1]; 11064e220ebcSLois Curfman McInnes info->nz_unneeded = irecv[2]; 11074e220ebcSLois Curfman McInnes info->memory = irecv[3]; 11084e220ebcSLois Curfman McInnes info->mallocs = irecv[4]; 1109a66be287SLois Curfman McInnes } else if (flag == MAT_GLOBAL_SUM) { 1110ca161407SBarry Smith ierr = MPI_Allreduce(isend,irecv,5,MPI_DOUBLE,MPI_SUM,matin->comm);CHKERRQ(ierr); 11114e220ebcSLois Curfman McInnes info->nz_used = irecv[0]; 11124e220ebcSLois Curfman McInnes info->nz_allocated = irecv[1]; 11134e220ebcSLois Curfman McInnes info->nz_unneeded = irecv[2]; 11144e220ebcSLois Curfman McInnes info->memory = irecv[3]; 11154e220ebcSLois Curfman McInnes info->mallocs = irecv[4]; 1116a66be287SLois Curfman McInnes } 11174e220ebcSLois Curfman McInnes info->fill_ratio_given = 0; /* no parallel LU/ILU/Cholesky */ 11184e220ebcSLois Curfman McInnes info->fill_ratio_needed = 0; 11194e220ebcSLois Curfman McInnes info->factor_mallocs = 0; 11208d700155SBarry Smith info->rows_global = (double)mat->M; 11218d700155SBarry Smith info->columns_global = (double)mat->N; 11228d700155SBarry Smith info->rows_local = (double)mat->m; 11238d700155SBarry Smith info->columns_local = (double)mat->N; 11244e220ebcSLois Curfman McInnes 11253a40ed3dSBarry Smith PetscFunctionReturn(0); 1126a66be287SLois Curfman McInnes } 1127a66be287SLois Curfman McInnes 11285615d1e5SSatish Balay #undef __FUNC__ 1129d4bb536fSBarry Smith #define __FUNC__ "MatSetOption_MPIAIJ" 11308f6be9afSLois Curfman McInnes int MatSetOption_MPIAIJ(Mat A,MatOption op) 1131c74985f6SBarry Smith { 1132c0bbcb79SLois Curfman McInnes Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 11331dee9f54SBarry Smith int ierr; 1134c74985f6SBarry Smith 11353a40ed3dSBarry Smith PetscFunctionBegin; 11366d4a8577SBarry Smith if (op == MAT_NO_NEW_NONZERO_LOCATIONS || 11376d4a8577SBarry Smith op == MAT_YES_NEW_NONZERO_LOCATIONS || 11386da5968aSLois Curfman McInnes op == MAT_COLUMNS_UNSORTED || 1139c2653b3dSLois Curfman McInnes op == MAT_COLUMNS_SORTED || 1140*4787f768SSatish Balay op == MAT_NEW_NONZERO_ALLOCATION_ERR || 1141*4787f768SSatish Balay op == MAT_NEW_NONZERO_LOCATION_ERR) { 11421dee9f54SBarry Smith ierr = MatSetOption(a->A,op);CHKERRQ(ierr); 11431dee9f54SBarry Smith ierr = MatSetOption(a->B,op);CHKERRQ(ierr); 1144b1fbbac0SLois Curfman McInnes } else if (op == MAT_ROW_ORIENTED) { 1145aeafbbfcSLois Curfman McInnes a->roworiented = 1; 11461dee9f54SBarry Smith ierr = MatSetOption(a->A,op);CHKERRQ(ierr); 11471dee9f54SBarry Smith ierr = MatSetOption(a->B,op);CHKERRQ(ierr); 1148b1fbbac0SLois Curfman McInnes } else if (op == MAT_ROWS_SORTED || 11496da5968aSLois Curfman McInnes op == MAT_ROWS_UNSORTED || 11506d4a8577SBarry Smith op == MAT_SYMMETRIC || 11516d4a8577SBarry Smith op == MAT_STRUCTURALLY_SYMMETRIC || 11526d4a8577SBarry Smith op == MAT_YES_NEW_DIAGONALS) 1153981c4779SBarry Smith PLogInfo(A,"MatSetOption_MPIAIJ:Option ignored\n"); 11546d4a8577SBarry Smith else if (op == MAT_COLUMN_ORIENTED) { 11554b0e389bSBarry Smith a->roworiented = 0; 11561dee9f54SBarry Smith ierr = MatSetOption(a->A,op);CHKERRQ(ierr); 11571dee9f54SBarry Smith ierr = MatSetOption(a->B,op);CHKERRQ(ierr); 11582b362799SSatish Balay } else if (op == MAT_IGNORE_OFF_PROC_ENTRIES) { 115990f02eecSBarry Smith a->donotstash = 1; 11603a40ed3dSBarry Smith } else if (op == MAT_NO_NEW_DIAGONALS){ 11613a40ed3dSBarry Smith SETERRQ(PETSC_ERR_SUP,0,"MAT_NO_NEW_DIAGONALS"); 11623a40ed3dSBarry Smith } else { 11633a40ed3dSBarry Smith SETERRQ(PETSC_ERR_SUP,0,"unknown option"); 11643a40ed3dSBarry Smith } 11653a40ed3dSBarry Smith PetscFunctionReturn(0); 1166c74985f6SBarry Smith } 1167c74985f6SBarry Smith 11685615d1e5SSatish Balay #undef __FUNC__ 1169d4bb536fSBarry Smith #define __FUNC__ "MatGetSize_MPIAIJ" 11708f6be9afSLois Curfman McInnes int MatGetSize_MPIAIJ(Mat matin,int *m,int *n) 1171c74985f6SBarry Smith { 117244a69424SLois Curfman McInnes Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data; 11733a40ed3dSBarry Smith 11743a40ed3dSBarry Smith PetscFunctionBegin; 11750752156aSBarry Smith if (m) *m = mat->M; 11760752156aSBarry Smith if (n) *n = mat->N; 11773a40ed3dSBarry Smith PetscFunctionReturn(0); 1178c74985f6SBarry Smith } 1179c74985f6SBarry Smith 11805615d1e5SSatish Balay #undef __FUNC__ 1181d4bb536fSBarry Smith #define __FUNC__ "MatGetLocalSize_MPIAIJ" 11828f6be9afSLois Curfman McInnes int MatGetLocalSize_MPIAIJ(Mat matin,int *m,int *n) 1183c74985f6SBarry Smith { 118444a69424SLois Curfman McInnes Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data; 11853a40ed3dSBarry Smith 11863a40ed3dSBarry Smith PetscFunctionBegin; 11870752156aSBarry Smith if (m) *m = mat->m; 1188f830108cSBarry Smith if (n) *n = mat->n; 11893a40ed3dSBarry Smith PetscFunctionReturn(0); 1190c74985f6SBarry Smith } 1191c74985f6SBarry Smith 11925615d1e5SSatish Balay #undef __FUNC__ 1193d4bb536fSBarry Smith #define __FUNC__ "MatGetOwnershipRange_MPIAIJ" 11948f6be9afSLois Curfman McInnes int MatGetOwnershipRange_MPIAIJ(Mat matin,int *m,int *n) 1195c74985f6SBarry Smith { 119644a69424SLois Curfman McInnes Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data; 11973a40ed3dSBarry Smith 11983a40ed3dSBarry Smith PetscFunctionBegin; 1199c74985f6SBarry Smith *m = mat->rstart; *n = mat->rend; 12003a40ed3dSBarry Smith PetscFunctionReturn(0); 1201c74985f6SBarry Smith } 1202c74985f6SBarry Smith 12036d84be18SBarry Smith extern int MatGetRow_SeqAIJ(Mat,int,int*,int**,Scalar**); 12046d84be18SBarry Smith extern int MatRestoreRow_SeqAIJ(Mat,int,int*,int**,Scalar**); 12056d84be18SBarry Smith 12065615d1e5SSatish Balay #undef __FUNC__ 12075615d1e5SSatish Balay #define __FUNC__ "MatGetRow_MPIAIJ" 12086d84be18SBarry Smith int MatGetRow_MPIAIJ(Mat matin,int row,int *nz,int **idx,Scalar **v) 120939e00950SLois Curfman McInnes { 1210154123eaSLois Curfman McInnes Mat_MPIAIJ *mat = (Mat_MPIAIJ *) matin->data; 121170f0671dSBarry Smith Scalar *vworkA, *vworkB, **pvA, **pvB,*v_p; 1212154123eaSLois Curfman McInnes int i, ierr, *cworkA, *cworkB, **pcA, **pcB, cstart = mat->cstart; 1213154123eaSLois Curfman McInnes int nztot, nzA, nzB, lrow, rstart = mat->rstart, rend = mat->rend; 121470f0671dSBarry Smith int *cmap, *idx_p; 121539e00950SLois Curfman McInnes 12163a40ed3dSBarry Smith PetscFunctionBegin; 1217a8c6a408SBarry Smith if (mat->getrowactive == PETSC_TRUE) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"Already active"); 12187a0afa10SBarry Smith mat->getrowactive = PETSC_TRUE; 12197a0afa10SBarry Smith 122070f0671dSBarry Smith if (!mat->rowvalues && (idx || v)) { 12217a0afa10SBarry Smith /* 12227a0afa10SBarry Smith allocate enough space to hold information from the longest row. 12237a0afa10SBarry Smith */ 12247a0afa10SBarry Smith Mat_SeqAIJ *Aa = (Mat_SeqAIJ *) mat->A->data,*Ba = (Mat_SeqAIJ *) mat->B->data; 1225c16cb8f2SBarry Smith int max = 1,m = mat->m,tmp; 1226c16cb8f2SBarry Smith for ( i=0; i<m; i++ ) { 12277a0afa10SBarry Smith tmp = Aa->i[i+1] - Aa->i[i] + Ba->i[i+1] - Ba->i[i]; 12287a0afa10SBarry Smith if (max < tmp) { max = tmp; } 12297a0afa10SBarry Smith } 12303f97c4b0SBarry Smith mat->rowvalues = (Scalar *) PetscMalloc(max*(sizeof(int)+sizeof(Scalar)));CHKPTRQ(mat->rowvalues); 12317a0afa10SBarry Smith mat->rowindices = (int *) (mat->rowvalues + max); 12327a0afa10SBarry Smith } 12337a0afa10SBarry Smith 1234a8c6a408SBarry Smith if (row < rstart || row >= rend) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Only local rows") 1235abc0e9e4SLois Curfman McInnes lrow = row - rstart; 123639e00950SLois Curfman McInnes 1237154123eaSLois Curfman McInnes pvA = &vworkA; pcA = &cworkA; pvB = &vworkB; pcB = &cworkB; 1238154123eaSLois Curfman McInnes if (!v) {pvA = 0; pvB = 0;} 1239154123eaSLois Curfman McInnes if (!idx) {pcA = 0; if (!v) pcB = 0;} 1240f830108cSBarry Smith ierr = (*mat->A->ops->getrow)(mat->A,lrow,&nzA,pcA,pvA); CHKERRQ(ierr); 1241f830108cSBarry Smith ierr = (*mat->B->ops->getrow)(mat->B,lrow,&nzB,pcB,pvB); CHKERRQ(ierr); 1242154123eaSLois Curfman McInnes nztot = nzA + nzB; 1243154123eaSLois Curfman McInnes 124470f0671dSBarry Smith cmap = mat->garray; 1245154123eaSLois Curfman McInnes if (v || idx) { 1246154123eaSLois Curfman McInnes if (nztot) { 1247154123eaSLois Curfman McInnes /* Sort by increasing column numbers, assuming A and B already sorted */ 124870f0671dSBarry Smith int imark = -1; 1249154123eaSLois Curfman McInnes if (v) { 125070f0671dSBarry Smith *v = v_p = mat->rowvalues; 125139e00950SLois Curfman McInnes for ( i=0; i<nzB; i++ ) { 125270f0671dSBarry Smith if (cmap[cworkB[i]] < cstart) v_p[i] = vworkB[i]; 1253154123eaSLois Curfman McInnes else break; 1254154123eaSLois Curfman McInnes } 1255154123eaSLois Curfman McInnes imark = i; 125670f0671dSBarry Smith for ( i=0; i<nzA; i++ ) v_p[imark+i] = vworkA[i]; 125770f0671dSBarry Smith for ( i=imark; i<nzB; i++ ) v_p[nzA+i] = vworkB[i]; 1258154123eaSLois Curfman McInnes } 1259154123eaSLois Curfman McInnes if (idx) { 126070f0671dSBarry Smith *idx = idx_p = mat->rowindices; 126170f0671dSBarry Smith if (imark > -1) { 126270f0671dSBarry Smith for ( i=0; i<imark; i++ ) { 126370f0671dSBarry Smith idx_p[i] = cmap[cworkB[i]]; 126470f0671dSBarry Smith } 126570f0671dSBarry Smith } else { 1266154123eaSLois Curfman McInnes for ( i=0; i<nzB; i++ ) { 126770f0671dSBarry Smith if (cmap[cworkB[i]] < cstart) idx_p[i] = cmap[cworkB[i]]; 1268154123eaSLois Curfman McInnes else break; 1269154123eaSLois Curfman McInnes } 1270154123eaSLois Curfman McInnes imark = i; 127170f0671dSBarry Smith } 127270f0671dSBarry Smith for ( i=0; i<nzA; i++ ) idx_p[imark+i] = cstart + cworkA[i]; 127370f0671dSBarry Smith for ( i=imark; i<nzB; i++ ) idx_p[nzA+i] = cmap[cworkB[i]]; 127439e00950SLois Curfman McInnes } 12753f97c4b0SBarry Smith } else { 12761ca473b0SSatish Balay if (idx) *idx = 0; 12771ca473b0SSatish Balay if (v) *v = 0; 12781ca473b0SSatish Balay } 1279154123eaSLois Curfman McInnes } 128039e00950SLois Curfman McInnes *nz = nztot; 1281f830108cSBarry Smith ierr = (*mat->A->ops->restorerow)(mat->A,lrow,&nzA,pcA,pvA); CHKERRQ(ierr); 1282f830108cSBarry Smith ierr = (*mat->B->ops->restorerow)(mat->B,lrow,&nzB,pcB,pvB); CHKERRQ(ierr); 12833a40ed3dSBarry Smith PetscFunctionReturn(0); 128439e00950SLois Curfman McInnes } 128539e00950SLois Curfman McInnes 12865615d1e5SSatish Balay #undef __FUNC__ 1287d4bb536fSBarry Smith #define __FUNC__ "MatRestoreRow_MPIAIJ" 12886d84be18SBarry Smith int MatRestoreRow_MPIAIJ(Mat mat,int row,int *nz,int **idx,Scalar **v) 128939e00950SLois Curfman McInnes { 12907a0afa10SBarry Smith Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 12913a40ed3dSBarry Smith 12923a40ed3dSBarry Smith PetscFunctionBegin; 12937a0afa10SBarry Smith if (aij->getrowactive == PETSC_FALSE) { 1294a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"MatGetRow not called"); 12957a0afa10SBarry Smith } 12967a0afa10SBarry Smith aij->getrowactive = PETSC_FALSE; 12973a40ed3dSBarry Smith PetscFunctionReturn(0); 129839e00950SLois Curfman McInnes } 129939e00950SLois Curfman McInnes 13005615d1e5SSatish Balay #undef __FUNC__ 13015615d1e5SSatish Balay #define __FUNC__ "MatNorm_MPIAIJ" 13028f6be9afSLois Curfman McInnes int MatNorm_MPIAIJ(Mat mat,NormType type,double *norm) 1303855ac2c5SLois Curfman McInnes { 1304855ac2c5SLois Curfman McInnes Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 1305ec8511deSBarry Smith Mat_SeqAIJ *amat = (Mat_SeqAIJ*) aij->A->data, *bmat = (Mat_SeqAIJ*) aij->B->data; 1306416022c9SBarry Smith int ierr, i, j, cstart = aij->cstart,shift = amat->indexshift; 1307416022c9SBarry Smith double sum = 0.0; 130804ca555eSLois Curfman McInnes Scalar *v; 130904ca555eSLois Curfman McInnes 13103a40ed3dSBarry Smith PetscFunctionBegin; 131117699dbbSLois Curfman McInnes if (aij->size == 1) { 131214183eadSLois Curfman McInnes ierr = MatNorm(aij->A,type,norm); CHKERRQ(ierr); 131337fa93a5SLois Curfman McInnes } else { 131404ca555eSLois Curfman McInnes if (type == NORM_FROBENIUS) { 131504ca555eSLois Curfman McInnes v = amat->a; 131604ca555eSLois Curfman McInnes for (i=0; i<amat->nz; i++ ) { 13173a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 1318e20fef11SSatish Balay sum += PetscReal(PetscConj(*v)*(*v)); v++; 131904ca555eSLois Curfman McInnes #else 132004ca555eSLois Curfman McInnes sum += (*v)*(*v); v++; 132104ca555eSLois Curfman McInnes #endif 132204ca555eSLois Curfman McInnes } 132304ca555eSLois Curfman McInnes v = bmat->a; 132404ca555eSLois Curfman McInnes for (i=0; i<bmat->nz; i++ ) { 13253a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 1326e20fef11SSatish Balay sum += PetscReal(PetscConj(*v)*(*v)); v++; 132704ca555eSLois Curfman McInnes #else 132804ca555eSLois Curfman McInnes sum += (*v)*(*v); v++; 132904ca555eSLois Curfman McInnes #endif 133004ca555eSLois Curfman McInnes } 1331ca161407SBarry Smith ierr = MPI_Allreduce(&sum,norm,1,MPI_DOUBLE,MPI_SUM,mat->comm);CHKERRQ(ierr); 133204ca555eSLois Curfman McInnes *norm = sqrt(*norm); 13333a40ed3dSBarry Smith } else if (type == NORM_1) { /* max column norm */ 133404ca555eSLois Curfman McInnes double *tmp, *tmp2; 133504ca555eSLois Curfman McInnes int *jj, *garray = aij->garray; 1336758f045eSSatish Balay tmp = (double *) PetscMalloc( (aij->N+1)*sizeof(double) ); CHKPTRQ(tmp); 1337758f045eSSatish Balay tmp2 = (double *) PetscMalloc( (aij->N+1)*sizeof(double) ); CHKPTRQ(tmp2); 1338cddf8d76SBarry Smith PetscMemzero(tmp,aij->N*sizeof(double)); 133904ca555eSLois Curfman McInnes *norm = 0.0; 134004ca555eSLois Curfman McInnes v = amat->a; jj = amat->j; 134104ca555eSLois Curfman McInnes for ( j=0; j<amat->nz; j++ ) { 1342579c6b6fSBarry Smith tmp[cstart + *jj++ + shift] += PetscAbsScalar(*v); v++; 134304ca555eSLois Curfman McInnes } 134404ca555eSLois Curfman McInnes v = bmat->a; jj = bmat->j; 134504ca555eSLois Curfman McInnes for ( j=0; j<bmat->nz; j++ ) { 1346579c6b6fSBarry Smith tmp[garray[*jj++ + shift]] += PetscAbsScalar(*v); v++; 134704ca555eSLois Curfman McInnes } 1348ca161407SBarry Smith ierr = MPI_Allreduce(tmp,tmp2,aij->N,MPI_DOUBLE,MPI_SUM,mat->comm);CHKERRQ(ierr); 134904ca555eSLois Curfman McInnes for ( j=0; j<aij->N; j++ ) { 135004ca555eSLois Curfman McInnes if (tmp2[j] > *norm) *norm = tmp2[j]; 135104ca555eSLois Curfman McInnes } 13520452661fSBarry Smith PetscFree(tmp); PetscFree(tmp2); 13533a40ed3dSBarry Smith } else if (type == NORM_INFINITY) { /* max row norm */ 1354515d9167SLois Curfman McInnes double ntemp = 0.0; 135504ca555eSLois Curfman McInnes for ( j=0; j<amat->m; j++ ) { 1356dbb450caSBarry Smith v = amat->a + amat->i[j] + shift; 135704ca555eSLois Curfman McInnes sum = 0.0; 135804ca555eSLois Curfman McInnes for ( i=0; i<amat->i[j+1]-amat->i[j]; i++ ) { 1359cddf8d76SBarry Smith sum += PetscAbsScalar(*v); v++; 136004ca555eSLois Curfman McInnes } 1361dbb450caSBarry Smith v = bmat->a + bmat->i[j] + shift; 136204ca555eSLois Curfman McInnes for ( i=0; i<bmat->i[j+1]-bmat->i[j]; i++ ) { 1363cddf8d76SBarry Smith sum += PetscAbsScalar(*v); v++; 136404ca555eSLois Curfman McInnes } 1365515d9167SLois Curfman McInnes if (sum > ntemp) ntemp = sum; 136604ca555eSLois Curfman McInnes } 1367ca161407SBarry Smith ierr = MPI_Allreduce(&ntemp,norm,1,MPI_DOUBLE,MPI_MAX,mat->comm);CHKERRQ(ierr); 1368ca161407SBarry Smith } else { 1369a8c6a408SBarry Smith SETERRQ(PETSC_ERR_SUP,0,"No support for two norm"); 137004ca555eSLois Curfman McInnes } 137137fa93a5SLois Curfman McInnes } 13723a40ed3dSBarry Smith PetscFunctionReturn(0); 1373855ac2c5SLois Curfman McInnes } 1374855ac2c5SLois Curfman McInnes 13755615d1e5SSatish Balay #undef __FUNC__ 13765615d1e5SSatish Balay #define __FUNC__ "MatTranspose_MPIAIJ" 13778f6be9afSLois Curfman McInnes int MatTranspose_MPIAIJ(Mat A,Mat *matout) 1378b7c46309SBarry Smith { 1379b7c46309SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *) A->data; 1380dbb450caSBarry Smith Mat_SeqAIJ *Aloc = (Mat_SeqAIJ *) a->A->data; 1381416022c9SBarry Smith int ierr,shift = Aloc->indexshift; 1382b7c46309SBarry Smith int M = a->M, N = a->N,m,*ai,*aj,row,*cols,i,*ct; 13833a40ed3dSBarry Smith Mat B; 1384b7c46309SBarry Smith Scalar *array; 1385b7c46309SBarry Smith 13863a40ed3dSBarry Smith PetscFunctionBegin; 1387d4bb536fSBarry Smith if (matout == PETSC_NULL && M != N) { 1388a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_SIZ,0,"Square matrix only for in-place"); 1389d4bb536fSBarry Smith } 1390d4bb536fSBarry Smith 1391d4bb536fSBarry Smith ierr = MatCreateMPIAIJ(A->comm,a->n,a->m,N,M,0,PETSC_NULL,0,PETSC_NULL,&B);CHKERRQ(ierr); 1392b7c46309SBarry Smith 1393b7c46309SBarry Smith /* copy over the A part */ 1394ec8511deSBarry Smith Aloc = (Mat_SeqAIJ*) a->A->data; 1395b7c46309SBarry Smith m = Aloc->m; ai = Aloc->i; aj = Aloc->j; array = Aloc->a; 1396b7c46309SBarry Smith row = a->rstart; 1397dbb450caSBarry Smith for ( i=0; i<ai[m]+shift; i++ ) {aj[i] += a->cstart + shift;} 1398b7c46309SBarry Smith for ( i=0; i<m; i++ ) { 1399416022c9SBarry Smith ierr = MatSetValues(B,ai[i+1]-ai[i],aj,1,&row,array,INSERT_VALUES);CHKERRQ(ierr); 1400b7c46309SBarry Smith row++; array += ai[i+1]-ai[i]; aj += ai[i+1]-ai[i]; 1401b7c46309SBarry Smith } 1402b7c46309SBarry Smith aj = Aloc->j; 14034af08d9eSBarry Smith for ( i=0; i<ai[m]+shift; i++ ) {aj[i] -= a->cstart + shift;} 1404b7c46309SBarry Smith 1405b7c46309SBarry Smith /* copy over the B part */ 1406ec8511deSBarry Smith Aloc = (Mat_SeqAIJ*) a->B->data; 1407b7c46309SBarry Smith m = Aloc->m; ai = Aloc->i; aj = Aloc->j; array = Aloc->a; 1408b7c46309SBarry Smith row = a->rstart; 14090452661fSBarry Smith ct = cols = (int *) PetscMalloc( (1+ai[m]-shift)*sizeof(int) ); CHKPTRQ(cols); 1410dbb450caSBarry Smith for ( i=0; i<ai[m]+shift; i++ ) {cols[i] = a->garray[aj[i]+shift];} 1411b7c46309SBarry Smith for ( i=0; i<m; i++ ) { 1412416022c9SBarry Smith ierr = MatSetValues(B,ai[i+1]-ai[i],cols,1,&row,array,INSERT_VALUES);CHKERRQ(ierr); 1413b7c46309SBarry Smith row++; array += ai[i+1]-ai[i]; cols += ai[i+1]-ai[i]; 1414b7c46309SBarry Smith } 14150452661fSBarry Smith PetscFree(ct); 14166d4a8577SBarry Smith ierr = MatAssemblyBegin(B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 14176d4a8577SBarry Smith ierr = MatAssemblyEnd(B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 14183638b69dSLois Curfman McInnes if (matout != PETSC_NULL) { 14190de55854SLois Curfman McInnes *matout = B; 14200de55854SLois Curfman McInnes } else { 1421f830108cSBarry Smith PetscOps *Abops; 1422f830108cSBarry Smith struct _MatOps *Aops; 1423f830108cSBarry Smith 14240de55854SLois Curfman McInnes /* This isn't really an in-place transpose .... but free data structures from a */ 14250452661fSBarry Smith PetscFree(a->rowners); 14260de55854SLois Curfman McInnes ierr = MatDestroy(a->A); CHKERRQ(ierr); 14270de55854SLois Curfman McInnes ierr = MatDestroy(a->B); CHKERRQ(ierr); 1428b1fc9764SSatish Balay #if defined (USE_CTABLE) 1429b1fc9764SSatish Balay if (a->colmap) TableDelete(a->colmap); 1430b1fc9764SSatish Balay #else 14310452661fSBarry Smith if (a->colmap) PetscFree(a->colmap); 1432b1fc9764SSatish Balay #endif 14330452661fSBarry Smith if (a->garray) PetscFree(a->garray); 14340de55854SLois Curfman McInnes if (a->lvec) VecDestroy(a->lvec); 1435a56f8943SBarry Smith if (a->Mvctx) VecScatterDestroy(a->Mvctx); 14360452661fSBarry Smith PetscFree(a); 1437f830108cSBarry Smith 1438f830108cSBarry Smith /* 1439f830108cSBarry Smith This is horrible, horrible code. We need to keep the 1440f830108cSBarry Smith A pointers for the bops and ops but copy everything 1441f830108cSBarry Smith else from C. 1442f830108cSBarry Smith */ 1443f830108cSBarry Smith Abops = A->bops; 1444f830108cSBarry Smith Aops = A->ops; 1445f09e8eb9SSatish Balay PetscMemcpy(A,B,sizeof(struct _p_Mat)); 1446f830108cSBarry Smith A->bops = Abops; 1447f830108cSBarry Smith A->ops = Aops; 14480452661fSBarry Smith PetscHeaderDestroy(B); 14490de55854SLois Curfman McInnes } 14503a40ed3dSBarry Smith PetscFunctionReturn(0); 1451b7c46309SBarry Smith } 1452b7c46309SBarry Smith 14535615d1e5SSatish Balay #undef __FUNC__ 14545615d1e5SSatish Balay #define __FUNC__ "MatDiagonalScale_MPIAIJ" 14554b967eb1SSatish Balay int MatDiagonalScale_MPIAIJ(Mat mat,Vec ll,Vec rr) 1456a008b906SSatish Balay { 14574b967eb1SSatish Balay Mat_MPIAIJ *aij = (Mat_MPIAIJ *) mat->data; 14584b967eb1SSatish Balay Mat a = aij->A, b = aij->B; 1459a008b906SSatish Balay int ierr,s1,s2,s3; 1460a008b906SSatish Balay 14613a40ed3dSBarry Smith PetscFunctionBegin; 14624b967eb1SSatish Balay ierr = MatGetLocalSize(mat,&s2,&s3); CHKERRQ(ierr); 14634b967eb1SSatish Balay if (rr) { 1464e1311b90SBarry Smith ierr = VecGetLocalSize(rr,&s1);CHKERRQ(ierr); 1465a8c6a408SBarry Smith if (s1!=s3) SETERRQ(PETSC_ERR_ARG_SIZ,0,"right vector non-conforming local size"); 14664b967eb1SSatish Balay /* Overlap communication with computation. */ 146743a90d84SBarry Smith ierr = VecScatterBegin(rr,aij->lvec,INSERT_VALUES,SCATTER_FORWARD,aij->Mvctx); CHKERRQ(ierr); 1468a008b906SSatish Balay } 14694b967eb1SSatish Balay if (ll) { 1470e1311b90SBarry Smith ierr = VecGetLocalSize(ll,&s1);CHKERRQ(ierr); 1471a8c6a408SBarry Smith if (s1!=s2) SETERRQ(PETSC_ERR_ARG_SIZ,0,"left vector non-conforming local size"); 1472f830108cSBarry Smith ierr = (*b->ops->diagonalscale)(b,ll,0); CHKERRQ(ierr); 14734b967eb1SSatish Balay } 14744b967eb1SSatish Balay /* scale the diagonal block */ 1475f830108cSBarry Smith ierr = (*a->ops->diagonalscale)(a,ll,rr); CHKERRQ(ierr); 14764b967eb1SSatish Balay 14774b967eb1SSatish Balay if (rr) { 14784b967eb1SSatish Balay /* Do a scatter end and then right scale the off-diagonal block */ 147943a90d84SBarry Smith ierr = VecScatterEnd(rr,aij->lvec,INSERT_VALUES,SCATTER_FORWARD,aij->Mvctx); CHKERRQ(ierr); 1480f830108cSBarry Smith ierr = (*b->ops->diagonalscale)(b,0,aij->lvec); CHKERRQ(ierr); 14814b967eb1SSatish Balay } 14824b967eb1SSatish Balay 14833a40ed3dSBarry Smith PetscFunctionReturn(0); 1484a008b906SSatish Balay } 1485a008b906SSatish Balay 1486a008b906SSatish Balay 1487682d7d0cSBarry Smith extern int MatPrintHelp_SeqAIJ(Mat); 14885615d1e5SSatish Balay #undef __FUNC__ 1489d4bb536fSBarry Smith #define __FUNC__ "MatPrintHelp_MPIAIJ" 14908f6be9afSLois Curfman McInnes int MatPrintHelp_MPIAIJ(Mat A) 1491682d7d0cSBarry Smith { 1492682d7d0cSBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ*) A->data; 14933a40ed3dSBarry Smith int ierr; 1494682d7d0cSBarry Smith 14953a40ed3dSBarry Smith PetscFunctionBegin; 14963a40ed3dSBarry Smith if (!a->rank) { 14973a40ed3dSBarry Smith ierr = MatPrintHelp_SeqAIJ(a->A);CHKERRQ(ierr); 14983a40ed3dSBarry Smith } 14993a40ed3dSBarry Smith PetscFunctionReturn(0); 1500682d7d0cSBarry Smith } 1501682d7d0cSBarry Smith 15025615d1e5SSatish Balay #undef __FUNC__ 1503d4bb536fSBarry Smith #define __FUNC__ "MatGetBlockSize_MPIAIJ" 15048f6be9afSLois Curfman McInnes int MatGetBlockSize_MPIAIJ(Mat A,int *bs) 15055a838052SSatish Balay { 15063a40ed3dSBarry Smith PetscFunctionBegin; 15075a838052SSatish Balay *bs = 1; 15083a40ed3dSBarry Smith PetscFunctionReturn(0); 15095a838052SSatish Balay } 15105615d1e5SSatish Balay #undef __FUNC__ 1511d4bb536fSBarry Smith #define __FUNC__ "MatSetUnfactored_MPIAIJ" 15128f6be9afSLois Curfman McInnes int MatSetUnfactored_MPIAIJ(Mat A) 1513bb5a7306SBarry Smith { 1514bb5a7306SBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ*) A->data; 1515bb5a7306SBarry Smith int ierr; 15163a40ed3dSBarry Smith 15173a40ed3dSBarry Smith PetscFunctionBegin; 1518bb5a7306SBarry Smith ierr = MatSetUnfactored(a->A); CHKERRQ(ierr); 15193a40ed3dSBarry Smith PetscFunctionReturn(0); 1520bb5a7306SBarry Smith } 1521bb5a7306SBarry Smith 1522d4bb536fSBarry Smith #undef __FUNC__ 1523d4bb536fSBarry Smith #define __FUNC__ "MatEqual_MPIAIJ" 1524d4bb536fSBarry Smith int MatEqual_MPIAIJ(Mat A, Mat B, PetscTruth *flag) 1525d4bb536fSBarry Smith { 1526d4bb536fSBarry Smith Mat_MPIAIJ *matB = (Mat_MPIAIJ *) B->data,*matA = (Mat_MPIAIJ *) A->data; 1527d4bb536fSBarry Smith Mat a, b, c, d; 1528d4bb536fSBarry Smith PetscTruth flg; 1529d4bb536fSBarry Smith int ierr; 1530d4bb536fSBarry Smith 15313a40ed3dSBarry Smith PetscFunctionBegin; 1532a8c6a408SBarry Smith if (B->type != MATMPIAIJ) SETERRQ(PETSC_ERR_ARG_INCOMP,0,"Matrices must be same type"); 1533d4bb536fSBarry Smith a = matA->A; b = matA->B; 1534d4bb536fSBarry Smith c = matB->A; d = matB->B; 1535d4bb536fSBarry Smith 1536d4bb536fSBarry Smith ierr = MatEqual(a, c, &flg); CHKERRQ(ierr); 1537d4bb536fSBarry Smith if (flg == PETSC_TRUE) { 1538d4bb536fSBarry Smith ierr = MatEqual(b, d, &flg); CHKERRQ(ierr); 1539d4bb536fSBarry Smith } 1540ca161407SBarry Smith ierr = MPI_Allreduce(&flg, flag, 1, MPI_INT, MPI_LAND, A->comm);CHKERRQ(ierr); 15413a40ed3dSBarry Smith PetscFunctionReturn(0); 1542d4bb536fSBarry Smith } 1543d4bb536fSBarry Smith 1544cb5b572fSBarry Smith #undef __FUNC__ 1545cb5b572fSBarry Smith #define __FUNC__ "MatCopy_MPIAIJ" 1546cb5b572fSBarry Smith int MatCopy_MPIAIJ(Mat A,Mat B,MatStructure str) 1547cb5b572fSBarry Smith { 1548cb5b572fSBarry Smith int ierr; 1549cb5b572fSBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *)A->data; 1550cb5b572fSBarry Smith Mat_MPIAIJ *b = (Mat_MPIAIJ *)B->data; 1551cb5b572fSBarry Smith 1552cb5b572fSBarry Smith PetscFunctionBegin; 1553cb5b572fSBarry Smith if (str != SAME_NONZERO_PATTERN || B->type != MATMPIAIJ) { 1554cb5b572fSBarry Smith /* because of the column compression in the off-processor part of the matrix a->B, 1555cb5b572fSBarry Smith the number of columns in a->B and b->B may be different, hence we cannot call 1556cb5b572fSBarry Smith the MatCopy() directly on the two parts. If need be, we can provide a more 1557cb5b572fSBarry Smith efficient copy than the MatCopy_Basic() by first uncompressing the a->B matrices 1558cb5b572fSBarry Smith then copying the submatrices */ 1559cb5b572fSBarry Smith ierr = MatCopy_Basic(A,B,str);CHKERRQ(ierr); 1560cb5b572fSBarry Smith } else { 1561cb5b572fSBarry Smith ierr = MatCopy(a->A,b->A,str);CHKERRQ(ierr); 1562cb5b572fSBarry Smith ierr = MatCopy(a->B,b->B,str);CHKERRQ(ierr); 1563cb5b572fSBarry Smith } 1564cb5b572fSBarry Smith PetscFunctionReturn(0); 1565cb5b572fSBarry Smith } 1566cb5b572fSBarry Smith 15672e8a6d31SBarry Smith extern int MatDuplicate_MPIAIJ(Mat,MatDuplicateOption,Mat *); 15682f86bd48SSatish Balay extern int MatIncreaseOverlap_MPIAIJ(Mat , int, IS *, int); 15690a198c4cSBarry Smith extern int MatFDColoringCreate_MPIAIJ(Mat,ISColoring,MatFDColoring); 15707b2a1423SBarry Smith extern int MatGetSubMatrices_MPIAIJ (Mat ,int , IS *,IS *,MatReuse,Mat **); 15717b2a1423SBarry Smith extern int MatGetSubMatrix_MPIAIJ (Mat ,IS,IS,int,MatReuse,Mat *); 157200e6dbe6SBarry Smith 15738a729477SBarry Smith /* -------------------------------------------------------------------*/ 1574cda55fadSBarry Smith static struct _MatOps MatOps_Values = {MatSetValues_MPIAIJ, 1575cda55fadSBarry Smith MatGetRow_MPIAIJ, 1576cda55fadSBarry Smith MatRestoreRow_MPIAIJ, 1577cda55fadSBarry Smith MatMult_MPIAIJ, 1578cda55fadSBarry Smith MatMultAdd_MPIAIJ, 1579cda55fadSBarry Smith MatMultTrans_MPIAIJ, 1580cda55fadSBarry Smith MatMultTransAdd_MPIAIJ, 1581cda55fadSBarry Smith 0, 1582cda55fadSBarry Smith 0, 1583cda55fadSBarry Smith 0, 1584cda55fadSBarry Smith 0, 1585cda55fadSBarry Smith 0, 1586cda55fadSBarry Smith 0, 158744a69424SLois Curfman McInnes MatRelax_MPIAIJ, 1588b7c46309SBarry Smith MatTranspose_MPIAIJ, 1589cda55fadSBarry Smith MatGetInfo_MPIAIJ, 1590cda55fadSBarry Smith MatEqual_MPIAIJ, 1591cda55fadSBarry Smith MatGetDiagonal_MPIAIJ, 1592cda55fadSBarry Smith MatDiagonalScale_MPIAIJ, 1593cda55fadSBarry Smith MatNorm_MPIAIJ, 1594cda55fadSBarry Smith MatAssemblyBegin_MPIAIJ, 1595cda55fadSBarry Smith MatAssemblyEnd_MPIAIJ, 15961eb62cbbSBarry Smith 0, 1597cda55fadSBarry Smith MatSetOption_MPIAIJ, 1598cda55fadSBarry Smith MatZeroEntries_MPIAIJ, 1599cda55fadSBarry Smith MatZeroRows_MPIAIJ, 1600cda55fadSBarry Smith 0, 1601cda55fadSBarry Smith 0, 1602cda55fadSBarry Smith 0, 1603cda55fadSBarry Smith 0, 1604cda55fadSBarry Smith MatGetSize_MPIAIJ, 1605cda55fadSBarry Smith MatGetLocalSize_MPIAIJ, 1606cda55fadSBarry Smith MatGetOwnershipRange_MPIAIJ, 1607cda55fadSBarry Smith 0, 1608cda55fadSBarry Smith 0, 1609cda55fadSBarry Smith 0, 1610cda55fadSBarry Smith 0, 16112e8a6d31SBarry Smith MatDuplicate_MPIAIJ, 1612cda55fadSBarry Smith 0, 1613cda55fadSBarry Smith 0, 1614cda55fadSBarry Smith 0, 1615cda55fadSBarry Smith 0, 1616cda55fadSBarry Smith 0, 1617cda55fadSBarry Smith MatGetSubMatrices_MPIAIJ, 1618cda55fadSBarry Smith MatIncreaseOverlap_MPIAIJ, 1619cda55fadSBarry Smith MatGetValues_MPIAIJ, 1620cb5b572fSBarry Smith MatCopy_MPIAIJ, 1621052efed2SBarry Smith MatPrintHelp_MPIAIJ, 1622cda55fadSBarry Smith MatScale_MPIAIJ, 1623cda55fadSBarry Smith 0, 1624cda55fadSBarry Smith 0, 1625cda55fadSBarry Smith 0, 1626cda55fadSBarry Smith MatGetBlockSize_MPIAIJ, 1627cda55fadSBarry Smith 0, 1628cda55fadSBarry Smith 0, 1629cda55fadSBarry Smith 0, 1630cda55fadSBarry Smith 0, 1631cda55fadSBarry Smith MatFDColoringCreate_MPIAIJ, 1632cda55fadSBarry Smith 0, 1633cda55fadSBarry Smith MatSetUnfactored_MPIAIJ, 1634cda55fadSBarry Smith 0, 1635cda55fadSBarry Smith 0, 1636cda55fadSBarry Smith MatGetSubMatrix_MPIAIJ, 1637cda55fadSBarry Smith 0, 1638cda55fadSBarry Smith 0, 1639cda55fadSBarry Smith MatGetMaps_Petsc}; 164036ce4990SBarry Smith 16412e8a6d31SBarry Smith /* ----------------------------------------------------------------------------------------*/ 16422e8a6d31SBarry Smith 1643fb2e594dSBarry Smith EXTERN_C_BEGIN 16442e8a6d31SBarry Smith #undef __FUNC__ 16452e8a6d31SBarry Smith #define __FUNC__ "MatStoreValues_MPIAIJ" 16462e8a6d31SBarry Smith int MatStoreValues_MPIAIJ(Mat mat) 16472e8a6d31SBarry Smith { 16482e8a6d31SBarry Smith Mat_MPIAIJ *aij = (Mat_MPIAIJ *)mat->data; 16492e8a6d31SBarry Smith int ierr; 16502e8a6d31SBarry Smith 16512e8a6d31SBarry Smith PetscFunctionBegin; 16522e8a6d31SBarry Smith ierr = MatStoreValues(aij->A);CHKERRQ(ierr); 16532e8a6d31SBarry Smith ierr = MatStoreValues(aij->B);CHKERRQ(ierr); 16542e8a6d31SBarry Smith PetscFunctionReturn(0); 16552e8a6d31SBarry Smith } 1656fb2e594dSBarry Smith EXTERN_C_END 16572e8a6d31SBarry Smith 1658fb2e594dSBarry Smith EXTERN_C_BEGIN 16592e8a6d31SBarry Smith #undef __FUNC__ 16602e8a6d31SBarry Smith #define __FUNC__ "MatRetrieveValues_MPIAIJ" 16612e8a6d31SBarry Smith int MatRetrieveValues_MPIAIJ(Mat mat) 16622e8a6d31SBarry Smith { 16632e8a6d31SBarry Smith Mat_MPIAIJ *aij = (Mat_MPIAIJ *)mat->data; 16642e8a6d31SBarry Smith int ierr; 16652e8a6d31SBarry Smith 16662e8a6d31SBarry Smith PetscFunctionBegin; 16672e8a6d31SBarry Smith ierr = MatRetrieveValues(aij->A);CHKERRQ(ierr); 16682e8a6d31SBarry Smith ierr = MatRetrieveValues(aij->B);CHKERRQ(ierr); 16692e8a6d31SBarry Smith PetscFunctionReturn(0); 16702e8a6d31SBarry Smith } 1671fb2e594dSBarry Smith EXTERN_C_END 16728a729477SBarry Smith 167327508adbSBarry Smith #include "pc.h" 167427508adbSBarry Smith EXTERN_C_BEGIN 16755ef9f2a5SBarry Smith extern int MatGetDiagonalBlock_MPIAIJ(Mat,PetscTruth *,MatReuse,Mat *); 167627508adbSBarry Smith EXTERN_C_END 167727508adbSBarry Smith 16785615d1e5SSatish Balay #undef __FUNC__ 16795615d1e5SSatish Balay #define __FUNC__ "MatCreateMPIAIJ" 16801987afe7SBarry Smith /*@C 1681ff756334SLois Curfman McInnes MatCreateMPIAIJ - Creates a sparse parallel matrix in AIJ format 16823a511b96SLois Curfman McInnes (the default parallel PETSc format). For good matrix assembly performance 16833a511b96SLois Curfman McInnes the user should preallocate the matrix storage by setting the parameters 16843a511b96SLois Curfman McInnes d_nz (or d_nnz) and o_nz (or o_nnz). By setting these parameters accurately, 16853a511b96SLois Curfman McInnes performance can be increased by more than a factor of 50. 16868a729477SBarry Smith 1687db81eaa0SLois Curfman McInnes Collective on MPI_Comm 1688db81eaa0SLois Curfman McInnes 16898a729477SBarry Smith Input Parameters: 1690db81eaa0SLois Curfman McInnes + comm - MPI communicator 16917d3e4905SLois Curfman McInnes . m - number of local rows (or PETSC_DECIDE to have calculated if M is given) 169292e8d321SLois Curfman McInnes This value should be the same as the local size used in creating the 169392e8d321SLois Curfman McInnes y vector for the matrix-vector product y = Ax. 16941a3896d6SBarry Smith . n - This value should be the same as the local size used in creating the 16951a3896d6SBarry Smith x vector for the matrix-vector product y = Ax. (or PETSC_DECIDE to have 16961a3896d6SBarry Smith calculated if N is given) For square matrices n is almost always m. 169760d380a7SBarry Smith . M - number of global rows (or PETSC_DETERMINE to have calculated if m is given) 169860d380a7SBarry Smith . N - number of global columns (or PETSC_DETERMINE to have calculated if n is given) 1699af1d9917SSatish Balay . d_nz - number of nonzeros per row in DIAGONAL portion of local submatrix 1700af1d9917SSatish Balay (same value is used for all local rows) 1701af1d9917SSatish Balay . d_nnz - array containing the number of nonzeros in the various rows of the 1702af1d9917SSatish Balay DIAGONAL portion of the local submatrix (possibly different for each row) 1703af1d9917SSatish Balay or PETSC_NULL, if d_nz is used to specify the nonzero structure. 1704af1d9917SSatish Balay The size of this array is equal to the number of local rows, i.e 'm'. 1705af1d9917SSatish Balay You must leave room for the diagonal entry even if it is zero. 1706af1d9917SSatish Balay . o_nz - number of nonzeros per row in the OFF-DIAGONAL portion of local 1707af1d9917SSatish Balay submatrix (same value is used for all local rows). 1708af1d9917SSatish Balay - o_nnz - array containing the number of nonzeros in the various rows of the 1709af1d9917SSatish Balay OFF-DIAGONAL portion of the local submatrix (possibly different for 1710af1d9917SSatish Balay each row) or PETSC_NULL, if o_nz is used to specify the nonzero 1711af1d9917SSatish Balay structure. The size of this array is equal to the number 1712af1d9917SSatish Balay of local rows, i.e 'm'. 17138a729477SBarry Smith 1714ff756334SLois Curfman McInnes Output Parameter: 171544cd7ae7SLois Curfman McInnes . A - the matrix 17168a729477SBarry Smith 1717b259b22eSLois Curfman McInnes Notes: 1718af1d9917SSatish Balay m,n,M,N parameters specify the size of the matrix, and its partitioning across 1719af1d9917SSatish Balay processors, while d_nz,d_nnz,o_nz,o_nnz parameters specify the approximate 1720af1d9917SSatish Balay storage requirements for this matrix. 1721af1d9917SSatish Balay 1722af1d9917SSatish Balay If PETSC_DECIDE or PETSC_DETERMINE is used for a particular argument on one 1723af1d9917SSatish Balay processor than it must be used on all processors that share the object for 1724af1d9917SSatish Balay that argument. 1725be79a94dSBarry Smith 1726ff756334SLois Curfman McInnes The AIJ format (also called the Yale sparse matrix format or 1727ff756334SLois Curfman McInnes compressed row storage), is fully compatible with standard Fortran 77 17280002213bSLois Curfman McInnes storage. That is, the stored row and column indices can begin at 17290002213bSLois Curfman McInnes either one (as in Fortran) or zero. See the users manual for details. 1730ff756334SLois Curfman McInnes 1731ff756334SLois Curfman McInnes The user MUST specify either the local or global matrix dimensions 1732ff756334SLois Curfman McInnes (possibly both). 1733ff756334SLois Curfman McInnes 1734af1d9917SSatish Balay The parallel matrix is partitioned such that the first m0 rows belong to 1735af1d9917SSatish Balay process 0, the next m1 rows belong to process 1, the next m2 rows belong 1736af1d9917SSatish Balay to process 2 etc.. where m0,m1,m2... are the input parameter 'm'. 1737af1d9917SSatish Balay 1738af1d9917SSatish Balay The DIAGONAL portion of the local submatrix of a processor can be defined 1739af1d9917SSatish Balay as the submatrix which is obtained by extraction the part corresponding 1740af1d9917SSatish Balay to the rows r1-r2 and columns r1-r2 of the global matrix, where r1 is the 1741af1d9917SSatish Balay first row that belongs to the processor, and r2 is the last row belonging 1742af1d9917SSatish Balay to the this processor. This is a square mxm matrix. The remaining portion 1743af1d9917SSatish Balay of the local submatrix (mxN) constitute the OFF-DIAGONAL portion. 1744af1d9917SSatish Balay 1745af1d9917SSatish Balay If o_nnz, d_nnz are specified, then o_nz, and d_nz are ignored. 1746af1d9917SSatish Balay 17475511cfe3SLois Curfman McInnes By default, this format uses inodes (identical nodes) when possible. 17485511cfe3SLois Curfman McInnes We search for consecutive rows with the same nonzero structure, thereby 17495511cfe3SLois Curfman McInnes reusing matrix information to achieve increased efficiency. 17505511cfe3SLois Curfman McInnes 17515511cfe3SLois Curfman McInnes Options Database Keys: 1752db81eaa0SLois Curfman McInnes + -mat_aij_no_inode - Do not use inodes 1753db81eaa0SLois Curfman McInnes . -mat_aij_inode_limit <limit> - Sets inode limit (max limit=5) 1754db81eaa0SLois Curfman McInnes - -mat_aij_oneindex - Internally use indexing starting at 1 1755db81eaa0SLois Curfman McInnes rather than 0. Note that when calling MatSetValues(), 1756db81eaa0SLois Curfman McInnes the user still MUST index entries starting at 0! 1757494eafd4SBarry Smith . -mat_mpi - use the parallel matrix data structures even on one processor 1758494eafd4SBarry Smith (defaults to using SeqBAIJ format on one processor) 1759494eafd4SBarry Smith . -mat_mpi - use the parallel matrix data structures even on one processor 1760494eafd4SBarry Smith (defaults to using SeqAIJ format on one processor) 1761494eafd4SBarry Smith 17625511cfe3SLois Curfman McInnes 1763af1d9917SSatish Balay Example usage: 1764e0245417SLois Curfman McInnes 1765af1d9917SSatish Balay Consider the following 8x8 matrix with 34 non-zero values, that is 1766af1d9917SSatish Balay assembled across 3 processors. Lets assume that proc0 owns 3 rows, 1767af1d9917SSatish Balay proc1 owns 3 rows, proc2 owns 2 rows. This division can be shown 1768af1d9917SSatish Balay as follows: 17692191d07cSBarry Smith 1770db81eaa0SLois Curfman McInnes .vb 1771af1d9917SSatish Balay 1 2 0 | 0 3 0 | 0 4 1772af1d9917SSatish Balay Proc0 0 5 6 | 7 0 0 | 8 0 1773af1d9917SSatish Balay 9 0 10 | 11 0 0 | 12 0 1774af1d9917SSatish Balay ------------------------------------- 1775af1d9917SSatish Balay 13 0 14 | 15 16 17 | 0 0 1776af1d9917SSatish Balay Proc1 0 18 0 | 19 20 21 | 0 0 1777af1d9917SSatish Balay 0 0 0 | 22 23 0 | 24 0 1778af1d9917SSatish Balay ------------------------------------- 1779af1d9917SSatish Balay Proc2 25 26 27 | 0 0 28 | 29 0 1780af1d9917SSatish Balay 30 0 0 | 31 32 33 | 0 34 1781db81eaa0SLois Curfman McInnes .ve 1782b810aeb4SBarry Smith 1783af1d9917SSatish Balay This can be represented as a collection of submatrices as: 17845511cfe3SLois Curfman McInnes 1785af1d9917SSatish Balay .vb 1786af1d9917SSatish Balay A B C 1787af1d9917SSatish Balay D E F 1788af1d9917SSatish Balay G H I 1789af1d9917SSatish Balay .ve 1790af1d9917SSatish Balay 1791af1d9917SSatish Balay Where the submatrices A,B,C are owned by proc0, D,E,F are 1792af1d9917SSatish Balay owned by proc1, G,H,I are owned by proc2. 1793af1d9917SSatish Balay 1794af1d9917SSatish Balay The 'm' parameters for proc0,proc1,proc2 are 3,3,2 respectively. 1795af1d9917SSatish Balay The 'n' parameters for proc0,proc1,proc2 are 3,3,2 respectively. 1796af1d9917SSatish Balay The 'M','N' parameters are 8,8, and have the same values on all procs. 1797af1d9917SSatish Balay 1798af1d9917SSatish Balay The DIAGONAL submatrices corresponding to proc0,proc1,proc2 are 1799af1d9917SSatish Balay submatrices [A], [E], [I] respectively. The OFF-DIAGONAL submatrices 1800af1d9917SSatish Balay corresponding to proc0,proc1,proc2 are [BC], [DF], [GH] respectively. 1801af1d9917SSatish Balay Internally, each processor stores the DIAGONAL part, and the OFF-DIAGONAL 1802af1d9917SSatish Balay part as SeqAIJ matrices. for eg: proc1 will store [E] as a SeqAIJ 1803af1d9917SSatish Balay matrix, ans [DF] as another SeqAIJ matrix. 1804af1d9917SSatish Balay 1805af1d9917SSatish Balay When d_nz, o_nz parameters are specified, d_nz storage elements are 1806af1d9917SSatish Balay allocated for every row of the local diagonal submatrix, and o_nz 1807af1d9917SSatish Balay storage locations are allocated for every row of the OFF-DIAGONAL submat. 1808af1d9917SSatish Balay One way to choose d_nz and o_nz is to use the max nonzerors per local 1809af1d9917SSatish Balay rows for each of the local DIAGONAL, and the OFF-DIAGONAL submatrices. 1810af1d9917SSatish Balay In this case, the values of d_nz,o_nz are: 1811af1d9917SSatish Balay .vb 1812af1d9917SSatish Balay proc0 : dnz = 2, o_nz = 2 1813af1d9917SSatish Balay proc1 : dnz = 3, o_nz = 2 1814af1d9917SSatish Balay proc2 : dnz = 1, o_nz = 4 1815af1d9917SSatish Balay .ve 1816af1d9917SSatish Balay We are allocating m*(d_nz+o_nz) storage locations for every proc. This 1817af1d9917SSatish Balay translates to 3*(2+2)=12 for proc0, 3*(3+2)=15 for proc1, 2*(1+4)=10 1818af1d9917SSatish Balay for proc3. i.e we are using 12+15+10=37 storage locations to store 1819af1d9917SSatish Balay 34 values. 1820af1d9917SSatish Balay 1821af1d9917SSatish Balay When d_nnz, o_nnz parameters are specified, the storage is specified 1822af1d9917SSatish Balay for every row, coresponding to both DIAGONAL and OFF-DIAGONAL submatrices. 1823af1d9917SSatish Balay In the above case the values for d_nnz,o_nnz are: 1824af1d9917SSatish Balay .vb 1825af1d9917SSatish Balay proc0: d_nnz = [2,2,2] and o_nnz = [2,2,2] 1826af1d9917SSatish Balay proc1: d_nnz = [3,3,2] and o_nnz = [2,1,1] 1827af1d9917SSatish Balay proc2: d_nnz = [1,1] and o_nnz = [4,4] 1828af1d9917SSatish Balay .ve 1829af1d9917SSatish Balay Here the space allocated is sum of all the above values i.e 34, and 1830af1d9917SSatish Balay hence pre-allocation is perfect. 18313a511b96SLois Curfman McInnes 1832027ccd11SLois Curfman McInnes Level: intermediate 1833027ccd11SLois Curfman McInnes 1834dbd7a890SLois Curfman McInnes .keywords: matrix, aij, compressed row, sparse, parallel 1835ff756334SLois Curfman McInnes 1836fafbff53SBarry Smith .seealso: MatCreate(), MatCreateSeqAIJ(), MatSetValues() 18378a729477SBarry Smith @*/ 1838e1311b90SBarry Smith int MatCreateMPIAIJ(MPI_Comm comm,int m,int n,int M,int N,int d_nz,int *d_nnz,int o_nz,int *o_nnz,Mat *A) 18398a729477SBarry Smith { 184044cd7ae7SLois Curfman McInnes Mat B; 184144cd7ae7SLois Curfman McInnes Mat_MPIAIJ *b; 1842eac7125bSBarry Smith int ierr, i,size,flag1 = 0, flag2 = 0; 1843416022c9SBarry Smith 18443a40ed3dSBarry Smith PetscFunctionBegin; 18453914022bSBarry Smith MPI_Comm_size(comm,&size); 18467be0e774SBarry Smith ierr = OptionsHasName(PETSC_NULL,"-mat_mpiaij",&flag1); CHKERRQ(ierr); 18477be0e774SBarry Smith ierr = OptionsHasName(PETSC_NULL,"-mat_mpi",&flag2); CHKERRQ(ierr); 18487be0e774SBarry Smith if (!flag1 && !flag2 && size == 1) { 18493914022bSBarry Smith if (M == PETSC_DECIDE) M = m; 18503914022bSBarry Smith if (N == PETSC_DECIDE) N = n; 18513914022bSBarry Smith ierr = MatCreateSeqAIJ(comm,M,N,d_nz,d_nnz,A); CHKERRQ(ierr); 18523a40ed3dSBarry Smith PetscFunctionReturn(0); 18533914022bSBarry Smith } 18543914022bSBarry Smith 185544cd7ae7SLois Curfman McInnes *A = 0; 18563f1db9ecSBarry Smith PetscHeaderCreate(B,_p_Mat,struct _MatOps,MAT_COOKIE,MATMPIAIJ,"Mat",comm,MatDestroy,MatView); 185744cd7ae7SLois Curfman McInnes PLogObjectCreate(B); 185844cd7ae7SLois Curfman McInnes B->data = (void *) (b = PetscNew(Mat_MPIAIJ)); CHKPTRQ(b); 185944cd7ae7SLois Curfman McInnes PetscMemzero(b,sizeof(Mat_MPIAIJ)); 1860cda55fadSBarry Smith PetscMemcpy(B->ops,&MatOps_Values,sizeof(struct _MatOps)); 1861e1311b90SBarry Smith B->ops->destroy = MatDestroy_MPIAIJ; 1862e1311b90SBarry Smith B->ops->view = MatView_MPIAIJ; 186344cd7ae7SLois Curfman McInnes B->factor = 0; 186444cd7ae7SLois Curfman McInnes B->assembled = PETSC_FALSE; 186590f02eecSBarry Smith B->mapping = 0; 1866d6dfbf8fSBarry Smith 186747794344SBarry Smith B->insertmode = NOT_SET_VALUES; 18689eb4d147SSatish Balay b->size = size; 186944cd7ae7SLois Curfman McInnes MPI_Comm_rank(comm,&b->rank); 18701eb62cbbSBarry Smith 18713a40ed3dSBarry Smith if (m == PETSC_DECIDE && (d_nnz != PETSC_NULL || o_nnz != PETSC_NULL)) { 1872a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_WRONG,0,"Cannot have PETSC_DECIDE rows but set d_nnz or o_nnz"); 18733a40ed3dSBarry Smith } 18741987afe7SBarry Smith 1875eac7125bSBarry Smith ierr = PetscSplitOwnership(comm,&m,&M);CHKERRQ(ierr); 1876eac7125bSBarry Smith ierr = PetscSplitOwnership(comm,&n,&N);CHKERRQ(ierr); 187744cd7ae7SLois Curfman McInnes b->m = m; B->m = m; 187844cd7ae7SLois Curfman McInnes b->n = n; B->n = n; 187944cd7ae7SLois Curfman McInnes b->N = N; B->N = N; 188044cd7ae7SLois Curfman McInnes b->M = M; B->M = M; 18811eb62cbbSBarry Smith 1882c7fcc2eaSBarry Smith /* the information in the maps duplicates the information computed below, eventually 1883c7fcc2eaSBarry Smith we should remove the duplicate information that is not contained in the maps */ 1884253a16ddSBarry Smith ierr = MapCreateMPI(comm,m,M,&B->rmap);CHKERRQ(ierr); 1885253a16ddSBarry Smith ierr = MapCreateMPI(comm,n,N,&B->cmap);CHKERRQ(ierr); 1886c7fcc2eaSBarry Smith 18871eb62cbbSBarry Smith /* build local table of row and column ownerships */ 188844cd7ae7SLois Curfman McInnes b->rowners = (int *) PetscMalloc(2*(b->size+2)*sizeof(int)); CHKPTRQ(b->rowners); 1889f09e8eb9SSatish Balay PLogObjectMemory(B,2*(b->size+2)*sizeof(int)+sizeof(struct _p_Mat)+sizeof(Mat_MPIAIJ)); 1890603f58a4SSatish Balay b->cowners = b->rowners + b->size + 2; 1891ca161407SBarry Smith ierr = MPI_Allgather(&m,1,MPI_INT,b->rowners+1,1,MPI_INT,comm);CHKERRQ(ierr); 189244cd7ae7SLois Curfman McInnes b->rowners[0] = 0; 189344cd7ae7SLois Curfman McInnes for ( i=2; i<=b->size; i++ ) { 189444cd7ae7SLois Curfman McInnes b->rowners[i] += b->rowners[i-1]; 18958a729477SBarry Smith } 189644cd7ae7SLois Curfman McInnes b->rstart = b->rowners[b->rank]; 189744cd7ae7SLois Curfman McInnes b->rend = b->rowners[b->rank+1]; 1898ca161407SBarry Smith ierr = MPI_Allgather(&n,1,MPI_INT,b->cowners+1,1,MPI_INT,comm);CHKERRQ(ierr); 189944cd7ae7SLois Curfman McInnes b->cowners[0] = 0; 190044cd7ae7SLois Curfman McInnes for ( i=2; i<=b->size; i++ ) { 190144cd7ae7SLois Curfman McInnes b->cowners[i] += b->cowners[i-1]; 19028a729477SBarry Smith } 190344cd7ae7SLois Curfman McInnes b->cstart = b->cowners[b->rank]; 190444cd7ae7SLois Curfman McInnes b->cend = b->cowners[b->rank+1]; 19058a729477SBarry Smith 19065ace5be8SLois Curfman McInnes if (d_nz == PETSC_DEFAULT) d_nz = 5; 1907029af93fSBarry Smith ierr = MatCreateSeqAIJ(PETSC_COMM_SELF,m,n,d_nz,d_nnz,&b->A); CHKERRQ(ierr); 190844cd7ae7SLois Curfman McInnes PLogObjectParent(B,b->A); 19097b8455f0SLois Curfman McInnes if (o_nz == PETSC_DEFAULT) o_nz = 0; 1910029af93fSBarry Smith ierr = MatCreateSeqAIJ(PETSC_COMM_SELF,m,N,o_nz,o_nnz,&b->B); CHKERRQ(ierr); 191144cd7ae7SLois Curfman McInnes PLogObjectParent(B,b->B); 19128a729477SBarry Smith 19131eb62cbbSBarry Smith /* build cache for off array entries formed */ 191444cd7ae7SLois Curfman McInnes ierr = StashBuild_Private(&b->stash); CHKERRQ(ierr); 191590f02eecSBarry Smith b->donotstash = 0; 191644cd7ae7SLois Curfman McInnes b->colmap = 0; 191744cd7ae7SLois Curfman McInnes b->garray = 0; 191844cd7ae7SLois Curfman McInnes b->roworiented = 1; 19198a729477SBarry Smith 19201eb62cbbSBarry Smith /* stuff used for matrix vector multiply */ 192144cd7ae7SLois Curfman McInnes b->lvec = 0; 192244cd7ae7SLois Curfman McInnes b->Mvctx = 0; 19238a729477SBarry Smith 19247a0afa10SBarry Smith /* stuff for MatGetRow() */ 192544cd7ae7SLois Curfman McInnes b->rowindices = 0; 192644cd7ae7SLois Curfman McInnes b->rowvalues = 0; 192744cd7ae7SLois Curfman McInnes b->getrowactive = PETSC_FALSE; 19287a0afa10SBarry Smith 19292e8a6d31SBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatStoreValues_C", 19302e8a6d31SBarry Smith "MatStoreValues_MPIAIJ", 19312e8a6d31SBarry Smith (void*)MatStoreValues_MPIAIJ);CHKERRQ(ierr); 19322e8a6d31SBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatRetrieveValues_C", 19332e8a6d31SBarry Smith "MatRetrieveValues_MPIAIJ", 19342e8a6d31SBarry Smith (void*)MatRetrieveValues_MPIAIJ);CHKERRQ(ierr); 19355ef9f2a5SBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatGetDiagonalBlock_C", 19365ef9f2a5SBarry Smith "MatGetDiagonalBlock_MPIAIJ", 19375ef9f2a5SBarry Smith (void*)MatGetDiagonalBlock_MPIAIJ);CHKERRQ(ierr); 193844cd7ae7SLois Curfman McInnes *A = B; 19393a40ed3dSBarry Smith PetscFunctionReturn(0); 1940d6dfbf8fSBarry Smith } 1941c74985f6SBarry Smith 19425615d1e5SSatish Balay #undef __FUNC__ 19432e8a6d31SBarry Smith #define __FUNC__ "MatDuplicate_MPIAIJ" 19442e8a6d31SBarry Smith int MatDuplicate_MPIAIJ(Mat matin,MatDuplicateOption cpvalues,Mat *newmat) 1945d6dfbf8fSBarry Smith { 1946d6dfbf8fSBarry Smith Mat mat; 1947416022c9SBarry Smith Mat_MPIAIJ *a,*oldmat = (Mat_MPIAIJ *) matin->data; 1948a1b97e82SLois Curfman McInnes int ierr, len=0, flg; 1949d6dfbf8fSBarry Smith 19503a40ed3dSBarry Smith PetscFunctionBegin; 1951416022c9SBarry Smith *newmat = 0; 19523f1db9ecSBarry Smith PetscHeaderCreate(mat,_p_Mat,struct _MatOps,MAT_COOKIE,MATMPIAIJ,"Mat",matin->comm,MatDestroy,MatView); 1953a5a9c739SBarry Smith PLogObjectCreate(mat); 19540452661fSBarry Smith mat->data = (void *) (a = PetscNew(Mat_MPIAIJ)); CHKPTRQ(a); 1955cda55fadSBarry Smith PetscMemcpy(mat->ops,&MatOps_Values,sizeof(struct _MatOps)); 1956e1311b90SBarry Smith mat->ops->destroy = MatDestroy_MPIAIJ; 1957e1311b90SBarry Smith mat->ops->view = MatView_MPIAIJ; 1958d6dfbf8fSBarry Smith mat->factor = matin->factor; 1959c456f294SBarry Smith mat->assembled = PETSC_TRUE; 1960d6dfbf8fSBarry Smith 196144cd7ae7SLois Curfman McInnes a->m = mat->m = oldmat->m; 196244cd7ae7SLois Curfman McInnes a->n = mat->n = oldmat->n; 196344cd7ae7SLois Curfman McInnes a->M = mat->M = oldmat->M; 196444cd7ae7SLois Curfman McInnes a->N = mat->N = oldmat->N; 1965d6dfbf8fSBarry Smith 1966416022c9SBarry Smith a->rstart = oldmat->rstart; 1967416022c9SBarry Smith a->rend = oldmat->rend; 1968416022c9SBarry Smith a->cstart = oldmat->cstart; 1969416022c9SBarry Smith a->cend = oldmat->cend; 197017699dbbSLois Curfman McInnes a->size = oldmat->size; 197117699dbbSLois Curfman McInnes a->rank = oldmat->rank; 197247794344SBarry Smith mat->insertmode = NOT_SET_VALUES; 1973bcd2baecSBarry Smith a->rowvalues = 0; 1974bcd2baecSBarry Smith a->getrowactive = PETSC_FALSE; 1975d6dfbf8fSBarry Smith 1976603f58a4SSatish Balay a->rowners = (int *) PetscMalloc(2*(a->size+2)*sizeof(int)); CHKPTRQ(a->rowners); 1977f09e8eb9SSatish Balay PLogObjectMemory(mat,2*(a->size+2)*sizeof(int)+sizeof(struct _p_Mat)+sizeof(Mat_MPIAIJ)); 1978603f58a4SSatish Balay a->cowners = a->rowners + a->size + 2; 1979603f58a4SSatish Balay PetscMemcpy(a->rowners,oldmat->rowners,2*(a->size+2)*sizeof(int)); 1980416022c9SBarry Smith ierr = StashInitialize_Private(&a->stash); CHKERRQ(ierr); 19812ee70a88SLois Curfman McInnes if (oldmat->colmap) { 1982b1fc9764SSatish Balay #if defined (USE_CTABLE) 1983b1fc9764SSatish Balay ierr = TableCreateCopy( &a->colmap, oldmat->colmap ); CHKERRQ(ierr); 1984b1fc9764SSatish Balay #else 19850452661fSBarry Smith a->colmap = (int *) PetscMalloc((a->N)*sizeof(int));CHKPTRQ(a->colmap); 1986416022c9SBarry Smith PLogObjectMemory(mat,(a->N)*sizeof(int)); 1987416022c9SBarry Smith PetscMemcpy(a->colmap,oldmat->colmap,(a->N)*sizeof(int)); 1988b1fc9764SSatish Balay #endif 1989416022c9SBarry Smith } else a->colmap = 0; 19903f41c07dSBarry Smith if (oldmat->garray) { 19913f41c07dSBarry Smith len = ((Mat_SeqAIJ *) (oldmat->B->data))->n; 19923f41c07dSBarry Smith a->garray = (int *) PetscMalloc((len+1)*sizeof(int)); CHKPTRQ(a->garray); 1993464493b3SBarry Smith PLogObjectMemory(mat,len*sizeof(int)); 19943f41c07dSBarry Smith if (len) PetscMemcpy(a->garray,oldmat->garray,len*sizeof(int)); 1995416022c9SBarry Smith } else a->garray = 0; 1996d6dfbf8fSBarry Smith 1997416022c9SBarry Smith ierr = VecDuplicate(oldmat->lvec,&a->lvec); CHKERRQ(ierr); 1998416022c9SBarry Smith PLogObjectParent(mat,a->lvec); 1999a56f8943SBarry Smith ierr = VecScatterCopy(oldmat->Mvctx,&a->Mvctx); CHKERRQ(ierr); 2000416022c9SBarry Smith PLogObjectParent(mat,a->Mvctx); 20012e8a6d31SBarry Smith ierr = MatDuplicate(oldmat->A,cpvalues,&a->A); CHKERRQ(ierr); 2002416022c9SBarry Smith PLogObjectParent(mat,a->A); 20032e8a6d31SBarry Smith ierr = MatDuplicate(oldmat->B,cpvalues,&a->B); CHKERRQ(ierr); 2004416022c9SBarry Smith PLogObjectParent(mat,a->B); 20055dd7a6c7SBarry Smith ierr = OptionsHasName(PETSC_NULL,"-help",&flg); CHKERRQ(ierr); 200625cdf11fSBarry Smith if (flg) { 2007682d7d0cSBarry Smith ierr = MatPrintHelp(mat); CHKERRQ(ierr); 2008682d7d0cSBarry Smith } 200927508adbSBarry Smith ierr = FListDuplicate(matin->qlist,&mat->qlist);CHKERRQ(ierr); 20108a729477SBarry Smith *newmat = mat; 20113a40ed3dSBarry Smith PetscFunctionReturn(0); 20128a729477SBarry Smith } 2013416022c9SBarry Smith 201477c4ece6SBarry Smith #include "sys.h" 2015416022c9SBarry Smith 20165615d1e5SSatish Balay #undef __FUNC__ 20175615d1e5SSatish Balay #define __FUNC__ "MatLoad_MPIAIJ" 201819bcc07fSBarry Smith int MatLoad_MPIAIJ(Viewer viewer,MatType type,Mat *newmat) 2019416022c9SBarry Smith { 2020d65a2f8fSBarry Smith Mat A; 2021d65a2f8fSBarry Smith Scalar *vals,*svals; 202219bcc07fSBarry Smith MPI_Comm comm = ((PetscObject)viewer)->comm; 2023416022c9SBarry Smith MPI_Status status; 20243a40ed3dSBarry Smith int i, nz, ierr, j,rstart, rend, fd; 202517699dbbSLois Curfman McInnes int header[4],rank,size,*rowlengths = 0,M,N,m,*rowners,maxnz,*cols; 2026d65a2f8fSBarry Smith int *ourlens,*sndcounts = 0,*procsnz = 0, *offlens,jj,*mycols,*smycols; 2027b362ba68SBarry Smith int tag = ((PetscObject)viewer)->tag,cend,cstart,n; 2028416022c9SBarry Smith 20293a40ed3dSBarry Smith PetscFunctionBegin; 203017699dbbSLois Curfman McInnes MPI_Comm_size(comm,&size); MPI_Comm_rank(comm,&rank); 203117699dbbSLois Curfman McInnes if (!rank) { 203290ace30eSBarry Smith ierr = ViewerBinaryGetDescriptor(viewer,&fd); CHKERRQ(ierr); 20330752156aSBarry Smith ierr = PetscBinaryRead(fd,(char *)header,4,PETSC_INT); CHKERRQ(ierr); 2034a8c6a408SBarry Smith if (header[0] != MAT_COOKIE) SETERRQ(PETSC_ERR_FILE_UNEXPECTED,0,"not matrix object"); 2035d64ed03dSBarry Smith if (header[3] < 0) { 2036a8c6a408SBarry Smith SETERRQ(PETSC_ERR_FILE_UNEXPECTED,1,"Matrix in special format on disk, cannot load as MPIAIJ"); 2037d64ed03dSBarry Smith } 20386c5fab8fSBarry Smith } 20396c5fab8fSBarry Smith 2040ca161407SBarry Smith ierr = MPI_Bcast(header+1,3,MPI_INT,0,comm);CHKERRQ(ierr); 2041416022c9SBarry Smith M = header[1]; N = header[2]; 2042416022c9SBarry Smith /* determine ownership of all rows */ 204317699dbbSLois Curfman McInnes m = M/size + ((M % size) > rank); 20440452661fSBarry Smith rowners = (int *) PetscMalloc((size+2)*sizeof(int)); CHKPTRQ(rowners); 2045ca161407SBarry Smith ierr = MPI_Allgather(&m,1,MPI_INT,rowners+1,1,MPI_INT,comm);CHKERRQ(ierr); 2046416022c9SBarry Smith rowners[0] = 0; 204717699dbbSLois Curfman McInnes for ( i=2; i<=size; i++ ) { 2048416022c9SBarry Smith rowners[i] += rowners[i-1]; 2049416022c9SBarry Smith } 205017699dbbSLois Curfman McInnes rstart = rowners[rank]; 205117699dbbSLois Curfman McInnes rend = rowners[rank+1]; 2052416022c9SBarry Smith 2053416022c9SBarry Smith /* distribute row lengths to all processors */ 20540452661fSBarry Smith ourlens = (int*) PetscMalloc( 2*(rend-rstart)*sizeof(int) ); CHKPTRQ(ourlens); 2055416022c9SBarry Smith offlens = ourlens + (rend-rstart); 205617699dbbSLois Curfman McInnes if (!rank) { 20570452661fSBarry Smith rowlengths = (int*) PetscMalloc( M*sizeof(int) ); CHKPTRQ(rowlengths); 20580752156aSBarry Smith ierr = PetscBinaryRead(fd,rowlengths,M,PETSC_INT); CHKERRQ(ierr); 20590452661fSBarry Smith sndcounts = (int*) PetscMalloc( size*sizeof(int) ); CHKPTRQ(sndcounts); 206017699dbbSLois Curfman McInnes for ( i=0; i<size; i++ ) sndcounts[i] = rowners[i+1] - rowners[i]; 2061ca161407SBarry Smith ierr = MPI_Scatterv(rowlengths,sndcounts,rowners,MPI_INT,ourlens,rend-rstart,MPI_INT,0,comm);CHKERRQ(ierr); 20620452661fSBarry Smith PetscFree(sndcounts); 20633a40ed3dSBarry Smith } else { 2064ca161407SBarry Smith ierr = MPI_Scatterv(0,0,0,MPI_INT,ourlens,rend-rstart,MPI_INT, 0,comm);CHKERRQ(ierr); 2065416022c9SBarry Smith } 2066416022c9SBarry Smith 206717699dbbSLois Curfman McInnes if (!rank) { 2068416022c9SBarry Smith /* calculate the number of nonzeros on each processor */ 20690452661fSBarry Smith procsnz = (int*) PetscMalloc( size*sizeof(int) ); CHKPTRQ(procsnz); 2070cddf8d76SBarry Smith PetscMemzero(procsnz,size*sizeof(int)); 207117699dbbSLois Curfman McInnes for ( i=0; i<size; i++ ) { 2072416022c9SBarry Smith for ( j=rowners[i]; j< rowners[i+1]; j++ ) { 2073416022c9SBarry Smith procsnz[i] += rowlengths[j]; 2074416022c9SBarry Smith } 2075416022c9SBarry Smith } 20760452661fSBarry Smith PetscFree(rowlengths); 2077416022c9SBarry Smith 2078416022c9SBarry Smith /* determine max buffer needed and allocate it */ 2079416022c9SBarry Smith maxnz = 0; 208017699dbbSLois Curfman McInnes for ( i=0; i<size; i++ ) { 20810452661fSBarry Smith maxnz = PetscMax(maxnz,procsnz[i]); 2082416022c9SBarry Smith } 20830452661fSBarry Smith cols = (int *) PetscMalloc( maxnz*sizeof(int) ); CHKPTRQ(cols); 2084416022c9SBarry Smith 2085416022c9SBarry Smith /* read in my part of the matrix column indices */ 2086416022c9SBarry Smith nz = procsnz[0]; 20870452661fSBarry Smith mycols = (int *) PetscMalloc( nz*sizeof(int) ); CHKPTRQ(mycols); 20880752156aSBarry Smith ierr = PetscBinaryRead(fd,mycols,nz,PETSC_INT); CHKERRQ(ierr); 2089d65a2f8fSBarry Smith 2090d65a2f8fSBarry Smith /* read in every one elses and ship off */ 209117699dbbSLois Curfman McInnes for ( i=1; i<size; i++ ) { 2092d65a2f8fSBarry Smith nz = procsnz[i]; 20930752156aSBarry Smith ierr = PetscBinaryRead(fd,cols,nz,PETSC_INT); CHKERRQ(ierr); 2094ca161407SBarry Smith ierr = MPI_Send(cols,nz,MPI_INT,i,tag,comm);CHKERRQ(ierr); 2095d65a2f8fSBarry Smith } 20960452661fSBarry Smith PetscFree(cols); 20973a40ed3dSBarry Smith } else { 2098416022c9SBarry Smith /* determine buffer space needed for message */ 2099416022c9SBarry Smith nz = 0; 2100416022c9SBarry Smith for ( i=0; i<m; i++ ) { 2101416022c9SBarry Smith nz += ourlens[i]; 2102416022c9SBarry Smith } 21030452661fSBarry Smith mycols = (int*) PetscMalloc( nz*sizeof(int) ); CHKPTRQ(mycols); 2104416022c9SBarry Smith 2105416022c9SBarry Smith /* receive message of column indices*/ 2106ca161407SBarry Smith ierr = MPI_Recv(mycols,nz,MPI_INT,0,tag,comm,&status);CHKERRQ(ierr); 2107ca161407SBarry Smith ierr = MPI_Get_count(&status,MPI_INT,&maxnz);CHKERRQ(ierr); 2108a8c6a408SBarry Smith if (maxnz != nz) SETERRQ(PETSC_ERR_FILE_UNEXPECTED,0,"something is wrong with file"); 2109416022c9SBarry Smith } 2110416022c9SBarry Smith 2111b362ba68SBarry Smith /* determine column ownership if matrix is not square */ 2112b362ba68SBarry Smith if (N != M) { 2113b362ba68SBarry Smith n = N/size + ((N % size) > rank); 2114b362ba68SBarry Smith ierr = MPI_Scan(&n,&cend,1,MPI_INT,MPI_SUM,comm);CHKERRQ(ierr); 2115b362ba68SBarry Smith cstart = cend - n; 2116b362ba68SBarry Smith } else { 2117b362ba68SBarry Smith cstart = rstart; 2118b362ba68SBarry Smith cend = rend; 2119fb2e594dSBarry Smith n = cend - cstart; 2120b362ba68SBarry Smith } 2121b362ba68SBarry Smith 2122416022c9SBarry Smith /* loop over local rows, determining number of off diagonal entries */ 2123cddf8d76SBarry Smith PetscMemzero(offlens,m*sizeof(int)); 2124416022c9SBarry Smith jj = 0; 2125416022c9SBarry Smith for ( i=0; i<m; i++ ) { 2126416022c9SBarry Smith for ( j=0; j<ourlens[i]; j++ ) { 2127b362ba68SBarry Smith if (mycols[jj] < cstart || mycols[jj] >= cend) offlens[i]++; 2128416022c9SBarry Smith jj++; 2129416022c9SBarry Smith } 2130416022c9SBarry Smith } 2131d65a2f8fSBarry Smith 2132d65a2f8fSBarry Smith /* create our matrix */ 2133416022c9SBarry Smith for ( i=0; i<m; i++ ) { 2134416022c9SBarry Smith ourlens[i] -= offlens[i]; 2135416022c9SBarry Smith } 2136b362ba68SBarry Smith ierr = MatCreateMPIAIJ(comm,m,n,M,N,0,ourlens,0,offlens,newmat);CHKERRQ(ierr); 2137d65a2f8fSBarry Smith A = *newmat; 2138fb2e594dSBarry Smith ierr = MatSetOption(A,MAT_COLUMNS_SORTED); CHKERRQ(ierr); 2139d65a2f8fSBarry Smith for ( i=0; i<m; i++ ) { 2140d65a2f8fSBarry Smith ourlens[i] += offlens[i]; 2141d65a2f8fSBarry Smith } 2142416022c9SBarry Smith 214317699dbbSLois Curfman McInnes if (!rank) { 21440452661fSBarry Smith vals = (Scalar *) PetscMalloc( maxnz*sizeof(Scalar) ); CHKPTRQ(vals); 2145416022c9SBarry Smith 2146416022c9SBarry Smith /* read in my part of the matrix numerical values */ 2147416022c9SBarry Smith nz = procsnz[0]; 21480752156aSBarry Smith ierr = PetscBinaryRead(fd,vals,nz,PETSC_SCALAR); CHKERRQ(ierr); 2149d65a2f8fSBarry Smith 2150d65a2f8fSBarry Smith /* insert into matrix */ 2151d65a2f8fSBarry Smith jj = rstart; 2152d65a2f8fSBarry Smith smycols = mycols; 2153d65a2f8fSBarry Smith svals = vals; 2154d65a2f8fSBarry Smith for ( i=0; i<m; i++ ) { 2155d65a2f8fSBarry Smith ierr = MatSetValues(A,1,&jj,ourlens[i],smycols,svals,INSERT_VALUES);CHKERRQ(ierr); 2156d65a2f8fSBarry Smith smycols += ourlens[i]; 2157d65a2f8fSBarry Smith svals += ourlens[i]; 2158d65a2f8fSBarry Smith jj++; 2159416022c9SBarry Smith } 2160416022c9SBarry Smith 2161d65a2f8fSBarry Smith /* read in other processors and ship out */ 216217699dbbSLois Curfman McInnes for ( i=1; i<size; i++ ) { 2163416022c9SBarry Smith nz = procsnz[i]; 21640752156aSBarry Smith ierr = PetscBinaryRead(fd,vals,nz,PETSC_SCALAR); CHKERRQ(ierr); 2165ca161407SBarry Smith ierr = MPI_Send(vals,nz,MPIU_SCALAR,i,A->tag,comm);CHKERRQ(ierr); 2166416022c9SBarry Smith } 21670452661fSBarry Smith PetscFree(procsnz); 21683a40ed3dSBarry Smith } else { 2169d65a2f8fSBarry Smith /* receive numeric values */ 21700452661fSBarry Smith vals = (Scalar*) PetscMalloc( nz*sizeof(Scalar) ); CHKPTRQ(vals); 2171416022c9SBarry Smith 2172d65a2f8fSBarry Smith /* receive message of values*/ 2173ca161407SBarry Smith ierr = MPI_Recv(vals,nz,MPIU_SCALAR,0,A->tag,comm,&status);CHKERRQ(ierr); 2174ca161407SBarry Smith ierr = MPI_Get_count(&status,MPIU_SCALAR,&maxnz);CHKERRQ(ierr); 2175a8c6a408SBarry Smith if (maxnz != nz) SETERRQ(PETSC_ERR_FILE_UNEXPECTED,0,"something is wrong with file"); 2176d65a2f8fSBarry Smith 2177d65a2f8fSBarry Smith /* insert into matrix */ 2178d65a2f8fSBarry Smith jj = rstart; 2179d65a2f8fSBarry Smith smycols = mycols; 2180d65a2f8fSBarry Smith svals = vals; 2181d65a2f8fSBarry Smith for ( i=0; i<m; i++ ) { 2182d65a2f8fSBarry Smith ierr = MatSetValues(A,1,&jj,ourlens[i],smycols,svals,INSERT_VALUES);CHKERRQ(ierr); 2183d65a2f8fSBarry Smith smycols += ourlens[i]; 2184d65a2f8fSBarry Smith svals += ourlens[i]; 2185d65a2f8fSBarry Smith jj++; 2186d65a2f8fSBarry Smith } 2187d65a2f8fSBarry Smith } 21880452661fSBarry Smith PetscFree(ourlens); PetscFree(vals); PetscFree(mycols); PetscFree(rowners); 2189d65a2f8fSBarry Smith 21906d4a8577SBarry Smith ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 21916d4a8577SBarry Smith ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 21923a40ed3dSBarry Smith PetscFunctionReturn(0); 2193416022c9SBarry Smith } 2194a0ff6018SBarry Smith 219529da9460SBarry Smith #undef __FUNC__ 219629da9460SBarry Smith #define __FUNC__ "MatGetSubMatrix_MPIAIJ" 2197a0ff6018SBarry Smith /* 219829da9460SBarry Smith Not great since it makes two copies of the submatrix, first an SeqAIJ 219929da9460SBarry Smith in local and then by concatenating the local matrices the end result. 220029da9460SBarry Smith Writing it directly would be much like MatGetSubMatrices_MPIAIJ() 2201a0ff6018SBarry Smith */ 22027b2a1423SBarry Smith int MatGetSubMatrix_MPIAIJ(Mat mat,IS isrow,IS iscol,int csize,MatReuse call,Mat *newmat) 2203a0ff6018SBarry Smith { 220400e6dbe6SBarry Smith int ierr, i, m,n,rstart,row,rend,nz,*cwork,size,rank,j; 2205fee21e36SBarry Smith Mat *local,M, Mreuse; 220600e6dbe6SBarry Smith Scalar *vwork,*aa; 220700e6dbe6SBarry Smith MPI_Comm comm = mat->comm; 220800e6dbe6SBarry Smith Mat_SeqAIJ *aij; 220900e6dbe6SBarry Smith int *ii, *jj,nlocal,*dlens,*olens,dlen,olen,jend; 2210a0ff6018SBarry Smith 2211a0ff6018SBarry Smith PetscFunctionBegin; 221200e6dbe6SBarry Smith MPI_Comm_rank(comm,&rank); 221300e6dbe6SBarry Smith MPI_Comm_size(comm,&size); 221400e6dbe6SBarry Smith 2215fee21e36SBarry Smith if (call == MAT_REUSE_MATRIX) { 2216fee21e36SBarry Smith ierr = PetscObjectQuery((PetscObject)*newmat,"SubMatrix",(PetscObject *)&Mreuse);CHKERRQ(ierr); 2217fee21e36SBarry Smith if (!Mreuse) SETERRQ(1,1,"Submatrix passed in was not used before, cannot reuse"); 2218fee21e36SBarry Smith local = &Mreuse; 2219fee21e36SBarry Smith ierr = MatGetSubMatrices(mat,1,&isrow,&iscol,MAT_REUSE_MATRIX,&local);CHKERRQ(ierr); 2220fee21e36SBarry Smith } else { 2221a0ff6018SBarry Smith ierr = MatGetSubMatrices(mat,1,&isrow,&iscol,MAT_INITIAL_MATRIX,&local);CHKERRQ(ierr); 2222fee21e36SBarry Smith Mreuse = *local; 2223fee21e36SBarry Smith PetscFree(local); 2224fee21e36SBarry Smith } 2225a0ff6018SBarry Smith 2226a0ff6018SBarry Smith /* 2227a0ff6018SBarry Smith m - number of local rows 2228a0ff6018SBarry Smith n - number of columns (same on all processors) 2229a0ff6018SBarry Smith rstart - first row in new global matrix generated 2230a0ff6018SBarry Smith */ 2231fee21e36SBarry Smith ierr = MatGetSize(Mreuse,&m,&n);CHKERRQ(ierr); 2232a0ff6018SBarry Smith if (call == MAT_INITIAL_MATRIX) { 2233fee21e36SBarry Smith aij = (Mat_SeqAIJ *) (Mreuse)->data; 2234a8c6a408SBarry Smith if (aij->indexshift) SETERRQ(PETSC_ERR_SUP,1,"No support for index shifted matrix"); 223500e6dbe6SBarry Smith ii = aij->i; 223600e6dbe6SBarry Smith jj = aij->j; 223700e6dbe6SBarry Smith 2238a0ff6018SBarry Smith /* 223900e6dbe6SBarry Smith Determine the number of non-zeros in the diagonal and off-diagonal 224000e6dbe6SBarry Smith portions of the matrix in order to do correct preallocation 2241a0ff6018SBarry Smith */ 224200e6dbe6SBarry Smith 224300e6dbe6SBarry Smith /* first get start and end of "diagonal" columns */ 22446a6a5d1dSBarry Smith if (csize == PETSC_DECIDE) { 224500e6dbe6SBarry Smith nlocal = n/size + ((n % size) > rank); 22466a6a5d1dSBarry Smith } else { 22476a6a5d1dSBarry Smith nlocal = csize; 22486a6a5d1dSBarry Smith } 2249ca161407SBarry Smith ierr = MPI_Scan(&nlocal,&rend,1,MPI_INT,MPI_SUM,comm);CHKERRQ(ierr); 225000e6dbe6SBarry Smith rstart = rend - nlocal; 22516a6a5d1dSBarry Smith if (rank == size - 1 && rend != n) { 22526a6a5d1dSBarry Smith SETERRQ(1,1,"Local column sizes do not add up to total number of columns"); 22536a6a5d1dSBarry Smith } 225400e6dbe6SBarry Smith 225500e6dbe6SBarry Smith /* next, compute all the lengths */ 225600e6dbe6SBarry Smith dlens = (int *) PetscMalloc( (2*m+1)*sizeof(int) );CHKPTRQ(dlens); 225700e6dbe6SBarry Smith olens = dlens + m; 225800e6dbe6SBarry Smith for ( i=0; i<m; i++ ) { 225900e6dbe6SBarry Smith jend = ii[i+1] - ii[i]; 226000e6dbe6SBarry Smith olen = 0; 226100e6dbe6SBarry Smith dlen = 0; 226200e6dbe6SBarry Smith for ( j=0; j<jend; j++ ) { 226300e6dbe6SBarry Smith if ( *jj < rstart || *jj >= rend) olen++; 226400e6dbe6SBarry Smith else dlen++; 226500e6dbe6SBarry Smith jj++; 226600e6dbe6SBarry Smith } 226700e6dbe6SBarry Smith olens[i] = olen; 226800e6dbe6SBarry Smith dlens[i] = dlen; 226900e6dbe6SBarry Smith } 22702d207970SBarry Smith ierr = MatCreateMPIAIJ(comm,m,nlocal,PETSC_DECIDE,n,0,dlens,0,olens,&M);CHKERRQ(ierr); 227100e6dbe6SBarry Smith PetscFree(dlens); 2272a0ff6018SBarry Smith } else { 2273a0ff6018SBarry Smith int ml,nl; 2274a0ff6018SBarry Smith 2275a0ff6018SBarry Smith M = *newmat; 2276a0ff6018SBarry Smith ierr = MatGetLocalSize(M,&ml,&nl);CHKERRQ(ierr); 2277a8c6a408SBarry Smith if (ml != m) SETERRQ(PETSC_ERR_ARG_SIZ,1,"Previous matrix must be same size/layout as request"); 2278a0ff6018SBarry Smith ierr = MatZeroEntries(M);CHKERRQ(ierr); 2279c48de900SBarry Smith /* 2280c48de900SBarry Smith The next two lines are needed so we may call MatSetValues_MPIAIJ() below directly, 2281c48de900SBarry Smith rather than the slower MatSetValues(). 2282c48de900SBarry Smith */ 2283c48de900SBarry Smith M->was_assembled = PETSC_TRUE; 2284c48de900SBarry Smith M->assembled = PETSC_FALSE; 2285a0ff6018SBarry Smith } 2286a0ff6018SBarry Smith ierr = MatGetOwnershipRange(M,&rstart,&rend); CHKERRQ(ierr); 2287fee21e36SBarry Smith aij = (Mat_SeqAIJ *) (Mreuse)->data; 2288a8c6a408SBarry Smith if (aij->indexshift) SETERRQ(PETSC_ERR_SUP,1,"No support for index shifted matrix"); 228900e6dbe6SBarry Smith ii = aij->i; 229000e6dbe6SBarry Smith jj = aij->j; 229100e6dbe6SBarry Smith aa = aij->a; 2292a0ff6018SBarry Smith for (i=0; i<m; i++) { 2293a0ff6018SBarry Smith row = rstart + i; 229400e6dbe6SBarry Smith nz = ii[i+1] - ii[i]; 229500e6dbe6SBarry Smith cwork = jj; jj += nz; 229600e6dbe6SBarry Smith vwork = aa; aa += nz; 22978c638d02SBarry Smith ierr = MatSetValues_MPIAIJ(M,1,&row,nz,cwork,vwork,INSERT_VALUES); CHKERRQ(ierr); 2298a0ff6018SBarry Smith } 2299a0ff6018SBarry Smith 2300a0ff6018SBarry Smith ierr = MatAssemblyBegin(M,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 2301a0ff6018SBarry Smith ierr = MatAssemblyEnd(M,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 2302a0ff6018SBarry Smith *newmat = M; 2303fee21e36SBarry Smith 2304fee21e36SBarry Smith /* save submatrix used in processor for next request */ 2305fee21e36SBarry Smith if (call == MAT_INITIAL_MATRIX) { 2306fee21e36SBarry Smith ierr = PetscObjectCompose((PetscObject)M,"SubMatrix",(PetscObject)Mreuse);CHKERRQ(ierr); 2307fee21e36SBarry Smith ierr = PetscObjectDereference((PetscObject)Mreuse);CHKERRQ(ierr); 2308fee21e36SBarry Smith } 2309fee21e36SBarry Smith 2310a0ff6018SBarry Smith PetscFunctionReturn(0); 2311a0ff6018SBarry Smith } 2312