1a5eb4965SSatish Balay #ifdef PETSC_RCS_HEADER 2*c6e6c036SBarry Smith static char vcid[] = "$Id: aij.c,v 1.305 1999/03/09 04:09:21 bsmith Exp bsmith $"; 317ab2063SBarry Smith #endif 417ab2063SBarry Smith 5d5d45c9bSBarry Smith /* 63369ce9aSBarry Smith Defines the basic matrix operations for the AIJ (compressed row) 7d5d45c9bSBarry Smith matrix storage format. 8d5d45c9bSBarry Smith */ 93369ce9aSBarry Smith 103369ce9aSBarry Smith #include "sys.h" 1170f55243SBarry Smith #include "src/mat/impls/aij/seq/aij.h" 12f5eb4b81SSatish Balay #include "src/vec/vecimpl.h" 13f5eb4b81SSatish Balay #include "src/inline/spops.h" 148d195f9aSBarry Smith #include "src/inline/dot.h" 15eeb667a2SSatish Balay #include "bitarray.h" 1617ab2063SBarry Smith 17a2ce50c7SBarry Smith /* 18a2ce50c7SBarry Smith Basic AIJ format ILU based on drop tolerance 19a2ce50c7SBarry Smith */ 205615d1e5SSatish Balay #undef __FUNC__ 215615d1e5SSatish Balay #define __FUNC__ "MatILUDTFactor_SeqAIJ" 22a2ce50c7SBarry Smith int MatILUDTFactor_SeqAIJ(Mat A,double dt,int maxnz,IS row,IS col,Mat *fact) 23a2ce50c7SBarry Smith { 24a2ce50c7SBarry Smith /* Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; */ 25a2ce50c7SBarry Smith 263a40ed3dSBarry Smith PetscFunctionBegin; 273f1db9ecSBarry Smith SETERRQ(1,0,"Not implemented"); 28d64ed03dSBarry Smith #if !defined(USE_PETSC_DEBUG) 29d64ed03dSBarry Smith PetscFunctionReturn(0); 30d64ed03dSBarry Smith #endif 31a2ce50c7SBarry Smith } 32a2ce50c7SBarry Smith 33bcd2baecSBarry Smith extern int MatToSymmetricIJ_SeqAIJ(int,int*,int*,int,int,int**,int**); 3417ab2063SBarry Smith 355615d1e5SSatish Balay #undef __FUNC__ 365615d1e5SSatish Balay #define __FUNC__ "MatGetRowIJ_SeqAIJ" 378f6be9afSLois Curfman McInnes int MatGetRowIJ_SeqAIJ(Mat A,int oshift,PetscTruth symmetric,int *m,int **ia,int **ja, 386945ee14SBarry Smith PetscTruth *done) 3917ab2063SBarry Smith { 40416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 416945ee14SBarry Smith int ierr,i,ishift; 4217ab2063SBarry Smith 433a40ed3dSBarry Smith PetscFunctionBegin; 4431625ec5SSatish Balay *m = A->m; 453a40ed3dSBarry Smith if (!ia) PetscFunctionReturn(0); 466945ee14SBarry Smith ishift = a->indexshift; 476945ee14SBarry Smith if (symmetric) { 4831625ec5SSatish Balay ierr = MatToSymmetricIJ_SeqAIJ(a->m,a->i,a->j,ishift,oshift,ia,ja); CHKERRQ(ierr); 496945ee14SBarry Smith } else if (oshift == 0 && ishift == -1) { 5031625ec5SSatish Balay int nz = a->i[a->m]; 513b2fbd54SBarry Smith /* malloc space and subtract 1 from i and j indices */ 5231625ec5SSatish Balay *ia = (int *) PetscMalloc( (a->m+1)*sizeof(int) ); CHKPTRQ(*ia); 533b2fbd54SBarry Smith *ja = (int *) PetscMalloc( (nz+1)*sizeof(int) ); CHKPTRQ(*ja); 543b2fbd54SBarry Smith for ( i=0; i<nz; i++ ) (*ja)[i] = a->j[i] - 1; 5531625ec5SSatish Balay for ( i=0; i<a->m+1; i++ ) (*ia)[i] = a->i[i] - 1; 566945ee14SBarry Smith } else if (oshift == 1 && ishift == 0) { 5731625ec5SSatish Balay int nz = a->i[a->m] + 1; 583b2fbd54SBarry Smith /* malloc space and add 1 to i and j indices */ 5931625ec5SSatish Balay *ia = (int *) PetscMalloc( (a->m+1)*sizeof(int) ); CHKPTRQ(*ia); 603b2fbd54SBarry Smith *ja = (int *) PetscMalloc( (nz+1)*sizeof(int) ); CHKPTRQ(*ja); 613b2fbd54SBarry Smith for ( i=0; i<nz; i++ ) (*ja)[i] = a->j[i] + 1; 6231625ec5SSatish Balay for ( i=0; i<a->m+1; i++ ) (*ia)[i] = a->i[i] + 1; 636945ee14SBarry Smith } else { 646945ee14SBarry Smith *ia = a->i; *ja = a->j; 65a2ce50c7SBarry Smith } 66a2ce50c7SBarry Smith 673a40ed3dSBarry Smith PetscFunctionReturn(0); 68a2744918SBarry Smith } 69a2744918SBarry Smith 705615d1e5SSatish Balay #undef __FUNC__ 715615d1e5SSatish Balay #define __FUNC__ "MatRestoreRowIJ_SeqAIJ" 728f6be9afSLois Curfman McInnes int MatRestoreRowIJ_SeqAIJ(Mat A,int oshift,PetscTruth symmetric,int *n,int **ia,int **ja, 736945ee14SBarry Smith PetscTruth *done) 746945ee14SBarry Smith { 756945ee14SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 763b2fbd54SBarry Smith int ishift = a->indexshift; 776945ee14SBarry Smith 783a40ed3dSBarry Smith PetscFunctionBegin; 793a40ed3dSBarry Smith if (!ia) PetscFunctionReturn(0); 803b2fbd54SBarry Smith if (symmetric || (oshift == 0 && ishift == -1) || (oshift == 1 && ishift == 0)) { 816945ee14SBarry Smith PetscFree(*ia); 826945ee14SBarry Smith PetscFree(*ja); 83bcd2baecSBarry Smith } 843a40ed3dSBarry Smith PetscFunctionReturn(0); 8517ab2063SBarry Smith } 8617ab2063SBarry Smith 875615d1e5SSatish Balay #undef __FUNC__ 885615d1e5SSatish Balay #define __FUNC__ "MatGetColumnIJ_SeqAIJ" 8943a90d84SBarry Smith int MatGetColumnIJ_SeqAIJ(Mat A,int oshift,PetscTruth symmetric,int *nn,int **ia,int **ja, 903b2fbd54SBarry Smith PetscTruth *done) 913b2fbd54SBarry Smith { 923b2fbd54SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 93a93ec695SBarry Smith int ierr,i,ishift = a->indexshift,*collengths,*cia,*cja,n = A->n,m = A->m; 94a93ec695SBarry Smith int nz = a->i[m]+ishift,row,*jj,mr,col; 953b2fbd54SBarry Smith 963a40ed3dSBarry Smith PetscFunctionBegin; 973b2fbd54SBarry Smith *nn = A->n; 983a40ed3dSBarry Smith if (!ia) PetscFunctionReturn(0); 993b2fbd54SBarry Smith if (symmetric) { 100179192dfSSatish Balay ierr = MatToSymmetricIJ_SeqAIJ(a->m,a->i,a->j,ishift,oshift,ia,ja); CHKERRQ(ierr); 1013b2fbd54SBarry Smith } else { 10261d2ded1SBarry Smith collengths = (int *) PetscMalloc( (n+1)*sizeof(int) ); CHKPTRQ(collengths); 1033b2fbd54SBarry Smith PetscMemzero(collengths,n*sizeof(int)); 1043b2fbd54SBarry Smith cia = (int *) PetscMalloc( (n+1)*sizeof(int) ); CHKPTRQ(cia); 105a93ec695SBarry Smith cja = (int *) PetscMalloc( (nz+1)*sizeof(int) ); CHKPTRQ(cja); 1063b2fbd54SBarry Smith jj = a->j; 1073b2fbd54SBarry Smith for ( i=0; i<nz; i++ ) { 1083b2fbd54SBarry Smith collengths[jj[i] + ishift]++; 1093b2fbd54SBarry Smith } 1103b2fbd54SBarry Smith cia[0] = oshift; 1113b2fbd54SBarry Smith for ( i=0; i<n; i++) { 1123b2fbd54SBarry Smith cia[i+1] = cia[i] + collengths[i]; 1133b2fbd54SBarry Smith } 1143b2fbd54SBarry Smith PetscMemzero(collengths,n*sizeof(int)); 1153b2fbd54SBarry Smith jj = a->j; 116a93ec695SBarry Smith for ( row=0; row<m; row++ ) { 117a93ec695SBarry Smith mr = a->i[row+1] - a->i[row]; 118a93ec695SBarry Smith for ( i=0; i<mr; i++ ) { 1193b2fbd54SBarry Smith col = *jj++ + ishift; 1203b2fbd54SBarry Smith cja[cia[col] + collengths[col]++ - oshift] = row + oshift; 1213b2fbd54SBarry Smith } 1223b2fbd54SBarry Smith } 1233b2fbd54SBarry Smith PetscFree(collengths); 1243b2fbd54SBarry Smith *ia = cia; *ja = cja; 1253b2fbd54SBarry Smith } 1263b2fbd54SBarry Smith 1273a40ed3dSBarry Smith PetscFunctionReturn(0); 1283b2fbd54SBarry Smith } 1293b2fbd54SBarry Smith 1305615d1e5SSatish Balay #undef __FUNC__ 1315615d1e5SSatish Balay #define __FUNC__ "MatRestoreColumnIJ_SeqAIJ" 13243a90d84SBarry Smith int MatRestoreColumnIJ_SeqAIJ(Mat A,int oshift,PetscTruth symmetric,int *n,int **ia, 1333b2fbd54SBarry Smith int **ja,PetscTruth *done) 1343b2fbd54SBarry Smith { 1353a40ed3dSBarry Smith PetscFunctionBegin; 1363a40ed3dSBarry Smith if (!ia) PetscFunctionReturn(0); 1373b2fbd54SBarry Smith 1383b2fbd54SBarry Smith PetscFree(*ia); 1393b2fbd54SBarry Smith PetscFree(*ja); 1403b2fbd54SBarry Smith 1413a40ed3dSBarry Smith PetscFunctionReturn(0); 1423b2fbd54SBarry Smith } 1433b2fbd54SBarry Smith 144227d817aSBarry Smith #define CHUNKSIZE 15 14517ab2063SBarry Smith 1465615d1e5SSatish Balay #undef __FUNC__ 1475615d1e5SSatish Balay #define __FUNC__ "MatSetValues_SeqAIJ" 14861d2ded1SBarry Smith int MatSetValues_SeqAIJ(Mat A,int m,int *im,int n,int *in,Scalar *v,InsertMode is) 14917ab2063SBarry Smith { 150416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 151416022c9SBarry Smith int *rp,k,low,high,t,ii,row,nrow,i,col,l,rmax, N, sorted = a->sorted; 1524b0e389bSBarry Smith int *imax = a->imax, *ai = a->i, *ailen = a->ilen,roworiented = a->roworiented; 153d5d45c9bSBarry Smith int *aj = a->j, nonew = a->nonew,shift = a->indexshift; 154416022c9SBarry Smith Scalar *ap,value, *aa = a->a; 15517ab2063SBarry Smith 1563a40ed3dSBarry Smith PetscFunctionBegin; 15717ab2063SBarry Smith for ( k=0; k<m; k++ ) { /* loop over added rows */ 158416022c9SBarry Smith row = im[k]; 1595ef9f2a5SBarry Smith if (row < 0) continue; 1603a40ed3dSBarry Smith #if defined(USE_PETSC_BOPT_g) 161a8c6a408SBarry Smith if (row >= a->m) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Row too large"); 1623b2fbd54SBarry Smith #endif 16317ab2063SBarry Smith rp = aj + ai[row] + shift; ap = aa + ai[row] + shift; 16417ab2063SBarry Smith rmax = imax[row]; nrow = ailen[row]; 165416022c9SBarry Smith low = 0; 16617ab2063SBarry Smith for ( l=0; l<n; l++ ) { /* loop over added columns */ 1675ef9f2a5SBarry Smith if (in[l] < 0) continue; 1683a40ed3dSBarry Smith #if defined(USE_PETSC_BOPT_g) 169a8c6a408SBarry Smith if (in[l] >= a->n) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Column too large"); 1703b2fbd54SBarry Smith #endif 1714b0e389bSBarry Smith col = in[l] - shift; 1724b0e389bSBarry Smith if (roworiented) { 1735ef9f2a5SBarry Smith value = v[l + k*n]; 174bef8e0ddSBarry Smith } else { 1754b0e389bSBarry Smith value = v[k + l*m]; 1764b0e389bSBarry Smith } 177416022c9SBarry Smith if (!sorted) low = 0; high = nrow; 178416022c9SBarry Smith while (high-low > 5) { 179416022c9SBarry Smith t = (low+high)/2; 180416022c9SBarry Smith if (rp[t] > col) high = t; 181416022c9SBarry Smith else low = t; 18217ab2063SBarry Smith } 183416022c9SBarry Smith for ( i=low; i<high; i++ ) { 18417ab2063SBarry Smith if (rp[i] > col) break; 18517ab2063SBarry Smith if (rp[i] == col) { 186416022c9SBarry Smith if (is == ADD_VALUES) ap[i] += value; 18717ab2063SBarry Smith else ap[i] = value; 18817ab2063SBarry Smith goto noinsert; 18917ab2063SBarry Smith } 19017ab2063SBarry Smith } 191c2653b3dSLois Curfman McInnes if (nonew == 1) goto noinsert; 192a8c6a408SBarry Smith else if (nonew == -1) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Inserting a new nonzero in the matrix"); 19317ab2063SBarry Smith if (nrow >= rmax) { 19417ab2063SBarry Smith /* there is no extra room in row, therefore enlarge */ 195416022c9SBarry Smith int new_nz = ai[a->m] + CHUNKSIZE,len,*new_i,*new_j; 19617ab2063SBarry Smith Scalar *new_a; 19717ab2063SBarry Smith 198a8c6a408SBarry Smith if (nonew == -2) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Inserting a new nonzero in the matrix"); 19996854ed6SLois Curfman McInnes 20017ab2063SBarry Smith /* malloc new storage space */ 201416022c9SBarry Smith len = new_nz*(sizeof(int)+sizeof(Scalar))+(a->m+1)*sizeof(int); 2020452661fSBarry Smith new_a = (Scalar *) PetscMalloc( len ); CHKPTRQ(new_a); 20317ab2063SBarry Smith new_j = (int *) (new_a + new_nz); 20417ab2063SBarry Smith new_i = new_j + new_nz; 20517ab2063SBarry Smith 20617ab2063SBarry Smith /* copy over old data into new slots */ 20717ab2063SBarry Smith for ( ii=0; ii<row+1; ii++ ) {new_i[ii] = ai[ii];} 208416022c9SBarry Smith for ( ii=row+1; ii<a->m+1; ii++ ) {new_i[ii] = ai[ii]+CHUNKSIZE;} 209416022c9SBarry Smith PetscMemcpy(new_j,aj,(ai[row]+nrow+shift)*sizeof(int)); 210416022c9SBarry Smith len = (new_nz - CHUNKSIZE - ai[row] - nrow - shift); 211416022c9SBarry Smith PetscMemcpy(new_j+ai[row]+shift+nrow+CHUNKSIZE,aj+ai[row]+shift+nrow, 21217ab2063SBarry Smith len*sizeof(int)); 213416022c9SBarry Smith PetscMemcpy(new_a,aa,(ai[row]+nrow+shift)*sizeof(Scalar)); 214416022c9SBarry Smith PetscMemcpy(new_a+ai[row]+shift+nrow+CHUNKSIZE,aa+ai[row]+shift+nrow, 21517ab2063SBarry Smith len*sizeof(Scalar)); 21617ab2063SBarry Smith /* free up old matrix storage */ 2170452661fSBarry Smith PetscFree(a->a); 2180452661fSBarry Smith if (!a->singlemalloc) {PetscFree(a->i);PetscFree(a->j);} 219416022c9SBarry Smith aa = a->a = new_a; ai = a->i = new_i; aj = a->j = new_j; 220416022c9SBarry Smith a->singlemalloc = 1; 22117ab2063SBarry Smith 22217ab2063SBarry Smith rp = aj + ai[row] + shift; ap = aa + ai[row] + shift; 223416022c9SBarry Smith rmax = imax[row] = imax[row] + CHUNKSIZE; 224416022c9SBarry Smith PLogObjectMemory(A,CHUNKSIZE*(sizeof(int) + sizeof(Scalar))); 225416022c9SBarry Smith a->maxnz += CHUNKSIZE; 226b810aeb4SBarry Smith a->reallocs++; 22717ab2063SBarry Smith } 228416022c9SBarry Smith N = nrow++ - 1; a->nz++; 229416022c9SBarry Smith /* shift up all the later entries in this row */ 230416022c9SBarry Smith for ( ii=N; ii>=i; ii-- ) { 23117ab2063SBarry Smith rp[ii+1] = rp[ii]; 23217ab2063SBarry Smith ap[ii+1] = ap[ii]; 23317ab2063SBarry Smith } 23417ab2063SBarry Smith rp[i] = col; 23517ab2063SBarry Smith ap[i] = value; 23617ab2063SBarry Smith noinsert:; 237416022c9SBarry Smith low = i + 1; 23817ab2063SBarry Smith } 23917ab2063SBarry Smith ailen[row] = nrow; 24017ab2063SBarry Smith } 2413a40ed3dSBarry Smith PetscFunctionReturn(0); 24217ab2063SBarry Smith } 24317ab2063SBarry Smith 2445615d1e5SSatish Balay #undef __FUNC__ 2455615d1e5SSatish Balay #define __FUNC__ "MatGetValues_SeqAIJ" 2468f6be9afSLois Curfman McInnes int MatGetValues_SeqAIJ(Mat A,int m,int *im,int n,int *in,Scalar *v) 2477eb43aa7SLois Curfman McInnes { 2487eb43aa7SLois Curfman McInnes Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 249b49de8d1SLois Curfman McInnes int *rp, k, low, high, t, row, nrow, i, col, l, *aj = a->j; 2507eb43aa7SLois Curfman McInnes int *ai = a->i, *ailen = a->ilen, shift = a->indexshift; 2517eb43aa7SLois Curfman McInnes Scalar *ap, *aa = a->a, zero = 0.0; 2527eb43aa7SLois Curfman McInnes 2533a40ed3dSBarry Smith PetscFunctionBegin; 2547eb43aa7SLois Curfman McInnes for ( k=0; k<m; k++ ) { /* loop over rows */ 2557eb43aa7SLois Curfman McInnes row = im[k]; 256a8c6a408SBarry Smith if (row < 0) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Negative row"); 257a8c6a408SBarry Smith if (row >= a->m) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Row too large"); 2587eb43aa7SLois Curfman McInnes rp = aj + ai[row] + shift; ap = aa + ai[row] + shift; 2597eb43aa7SLois Curfman McInnes nrow = ailen[row]; 2607eb43aa7SLois Curfman McInnes for ( l=0; l<n; l++ ) { /* loop over columns */ 261a8c6a408SBarry Smith if (in[l] < 0) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Negative column"); 262a8c6a408SBarry Smith if (in[l] >= a->n) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Column too large"); 2637eb43aa7SLois Curfman McInnes col = in[l] - shift; 2647eb43aa7SLois Curfman McInnes high = nrow; low = 0; /* assume unsorted */ 2657eb43aa7SLois Curfman McInnes while (high-low > 5) { 2667eb43aa7SLois Curfman McInnes t = (low+high)/2; 2677eb43aa7SLois Curfman McInnes if (rp[t] > col) high = t; 2687eb43aa7SLois Curfman McInnes else low = t; 2697eb43aa7SLois Curfman McInnes } 2707eb43aa7SLois Curfman McInnes for ( i=low; i<high; i++ ) { 2717eb43aa7SLois Curfman McInnes if (rp[i] > col) break; 2727eb43aa7SLois Curfman McInnes if (rp[i] == col) { 273b49de8d1SLois Curfman McInnes *v++ = ap[i]; 2747eb43aa7SLois Curfman McInnes goto finished; 2757eb43aa7SLois Curfman McInnes } 2767eb43aa7SLois Curfman McInnes } 277b49de8d1SLois Curfman McInnes *v++ = zero; 2787eb43aa7SLois Curfman McInnes finished:; 2797eb43aa7SLois Curfman McInnes } 2807eb43aa7SLois Curfman McInnes } 2813a40ed3dSBarry Smith PetscFunctionReturn(0); 2827eb43aa7SLois Curfman McInnes } 2837eb43aa7SLois Curfman McInnes 28417ab2063SBarry Smith 2855615d1e5SSatish Balay #undef __FUNC__ 2865615d1e5SSatish Balay #define __FUNC__ "MatView_SeqAIJ_Binary" 287480ef9eaSBarry Smith int MatView_SeqAIJ_Binary(Mat A,Viewer viewer) 28817ab2063SBarry Smith { 289416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 290416022c9SBarry Smith int i, fd, *col_lens, ierr; 29117ab2063SBarry Smith 2923a40ed3dSBarry Smith PetscFunctionBegin; 29390ace30eSBarry Smith ierr = ViewerBinaryGetDescriptor(viewer,&fd); CHKERRQ(ierr); 2940452661fSBarry Smith col_lens = (int *) PetscMalloc( (4+a->m)*sizeof(int) ); CHKPTRQ(col_lens); 295416022c9SBarry Smith col_lens[0] = MAT_COOKIE; 296416022c9SBarry Smith col_lens[1] = a->m; 297416022c9SBarry Smith col_lens[2] = a->n; 298416022c9SBarry Smith col_lens[3] = a->nz; 299416022c9SBarry Smith 300416022c9SBarry Smith /* store lengths of each row and write (including header) to file */ 301416022c9SBarry Smith for ( i=0; i<a->m; i++ ) { 302416022c9SBarry Smith col_lens[4+i] = a->i[i+1] - a->i[i]; 30317ab2063SBarry Smith } 3040752156aSBarry Smith ierr = PetscBinaryWrite(fd,col_lens,4+a->m,PETSC_INT,1); CHKERRQ(ierr); 3050452661fSBarry Smith PetscFree(col_lens); 306416022c9SBarry Smith 307416022c9SBarry Smith /* store column indices (zero start index) */ 308416022c9SBarry Smith if (a->indexshift) { 309416022c9SBarry Smith for ( i=0; i<a->nz; i++ ) a->j[i]--; 31017ab2063SBarry Smith } 3110752156aSBarry Smith ierr = PetscBinaryWrite(fd,a->j,a->nz,PETSC_INT,0); CHKERRQ(ierr); 312416022c9SBarry Smith if (a->indexshift) { 313416022c9SBarry Smith for ( i=0; i<a->nz; i++ ) a->j[i]++; 31417ab2063SBarry Smith } 315416022c9SBarry Smith 316416022c9SBarry Smith /* store nonzero values */ 3170752156aSBarry Smith ierr = PetscBinaryWrite(fd,a->a,a->nz,PETSC_SCALAR,0); CHKERRQ(ierr); 3183a40ed3dSBarry Smith PetscFunctionReturn(0); 31917ab2063SBarry Smith } 320416022c9SBarry Smith 3215615d1e5SSatish Balay #undef __FUNC__ 3225615d1e5SSatish Balay #define __FUNC__ "MatView_SeqAIJ_ASCII" 323480ef9eaSBarry Smith int MatView_SeqAIJ_ASCII(Mat A,Viewer viewer) 324416022c9SBarry Smith { 325416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 326496e697eSBarry Smith int ierr, i,j, m = a->m, shift = a->indexshift, format, flg1,flg2; 32717ab2063SBarry Smith FILE *fd; 32817ab2063SBarry Smith char *outputname; 32917ab2063SBarry Smith 3303a40ed3dSBarry Smith PetscFunctionBegin; 33190ace30eSBarry Smith ierr = ViewerASCIIGetPointer(viewer,&fd); CHKERRQ(ierr); 332fb4b0f7fSBarry Smith ierr = ViewerGetOutputname(viewer,&outputname); CHKERRQ(ierr); 33390ace30eSBarry Smith ierr = ViewerGetFormat(viewer,&format); 334a93ec695SBarry Smith if (format == VIEWER_FORMAT_ASCII_INFO) { 3353a40ed3dSBarry Smith PetscFunctionReturn(0); 3363a40ed3dSBarry Smith } else if (format == VIEWER_FORMAT_ASCII_INFO_LONG) { 337496e697eSBarry Smith ierr = OptionsHasName(PETSC_NULL,"-mat_aij_no_inode",&flg1); CHKERRQ(ierr); 338496e697eSBarry Smith ierr = OptionsHasName(PETSC_NULL,"-mat_no_unroll",&flg2); CHKERRQ(ierr); 3390ef38995SBarry Smith if (flg1 || flg2) ViewerASCIIPrintf(viewer," not using I-node routines\n"); 3400ef38995SBarry Smith else ViewerASCIIPrintf(viewer," using I-node routines: found %d nodes, limit used is %d\n",a->inode.node_count,a->inode.limit); 3413a40ed3dSBarry Smith } else if (format == VIEWER_FORMAT_ASCII_MATLAB) { 342d00d2cf4SBarry Smith int nofinalvalue = 0; 343d00d2cf4SBarry Smith if ((a->i[m] == a->i[m-1]) || (a->j[a->nz-1] != a->n-!shift)) { 344d00d2cf4SBarry Smith nofinalvalue = 1; 345d00d2cf4SBarry Smith } 346416022c9SBarry Smith fprintf(fd,"%% Size = %d %d \n",m,a->n); 3474e220ebcSLois Curfman McInnes fprintf(fd,"%% Nonzeros = %d \n",a->nz); 348d00d2cf4SBarry Smith fprintf(fd,"zzz = zeros(%d,3);\n",a->nz+nofinalvalue); 34917ab2063SBarry Smith fprintf(fd,"zzz = [\n"); 35017ab2063SBarry Smith 35117ab2063SBarry Smith for (i=0; i<m; i++) { 352416022c9SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 3533a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 354e20fef11SSatish Balay fprintf(fd,"%d %d %18.16e + %18.16e i \n",i+1,a->j[j]+!shift,PetscReal(a->a[j]),PetscImaginary(a->a[j])); 35517ab2063SBarry Smith #else 3567a743949SBarry Smith fprintf(fd,"%d %d %18.16e\n", i+1, a->j[j]+!shift, a->a[j]); 35717ab2063SBarry Smith #endif 35817ab2063SBarry Smith } 35917ab2063SBarry Smith } 360d00d2cf4SBarry Smith if (nofinalvalue) { 361d00d2cf4SBarry Smith fprintf(fd,"%d %d %18.16e\n", m, a->n, 0.0); 362d00d2cf4SBarry Smith } 363e24b481bSBarry Smith if (outputname) fprintf(fd,"];\n %s = spconvert(zzz);\n",outputname); 364e24b481bSBarry Smith else fprintf(fd,"];\n M = spconvert(zzz);\n"); 3653a40ed3dSBarry Smith } else if (format == VIEWER_FORMAT_ASCII_COMMON) { 36644cd7ae7SLois Curfman McInnes for ( i=0; i<m; i++ ) { 36744cd7ae7SLois Curfman McInnes fprintf(fd,"row %d:",i); 36844cd7ae7SLois Curfman McInnes for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 3693a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 370e20fef11SSatish Balay if (PetscImaginary(a->a[j]) > 0.0 && PetscReal(a->a[j]) != 0.0) 371e20fef11SSatish Balay fprintf(fd," %d %g + %g i",a->j[j]+shift,PetscReal(a->a[j]),PetscImaginary(a->a[j])); 372e20fef11SSatish Balay else if (PetscImaginary(a->a[j]) < 0.0 && PetscReal(a->a[j]) != 0.0) 373e20fef11SSatish Balay fprintf(fd," %d %g - %g i",a->j[j]+shift,PetscReal(a->a[j]),-PetscImaginary(a->a[j])); 374e20fef11SSatish Balay else if (PetscReal(a->a[j]) != 0.0) 375e20fef11SSatish Balay fprintf(fd," %d %g ",a->j[j]+shift,PetscReal(a->a[j])); 37644cd7ae7SLois Curfman McInnes #else 37744cd7ae7SLois Curfman McInnes if (a->a[j] != 0.0) fprintf(fd," %d %g ",a->j[j]+shift,a->a[j]); 37844cd7ae7SLois Curfman McInnes #endif 37944cd7ae7SLois Curfman McInnes } 38044cd7ae7SLois Curfman McInnes fprintf(fd,"\n"); 38144cd7ae7SLois Curfman McInnes } 38202594712SBarry Smith } else if (format == VIEWER_FORMAT_ASCII_SYMMODU) { 383496be53dSLois Curfman McInnes int nzd=0, fshift=1, *sptr; 3842e44a96cSLois Curfman McInnes sptr = (int *) PetscMalloc( (m+1)*sizeof(int) ); CHKPTRQ(sptr); 385496be53dSLois Curfman McInnes for ( i=0; i<m; i++ ) { 386496be53dSLois Curfman McInnes sptr[i] = nzd+1; 387496be53dSLois Curfman McInnes for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 388496be53dSLois Curfman McInnes if (a->j[j] >= i) { 3893a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 390e20fef11SSatish Balay if (PetscImaginary(a->a[j]) != 0.0 || PetscReal(a->a[j]) != 0.0) nzd++; 391496be53dSLois Curfman McInnes #else 392496be53dSLois Curfman McInnes if (a->a[j] != 0.0) nzd++; 393496be53dSLois Curfman McInnes #endif 394496be53dSLois Curfman McInnes } 395496be53dSLois Curfman McInnes } 396496be53dSLois Curfman McInnes } 3972e44a96cSLois Curfman McInnes sptr[m] = nzd+1; 398496be53dSLois Curfman McInnes fprintf(fd," %d %d\n\n",m,nzd); 3992e44a96cSLois Curfman McInnes for ( i=0; i<m+1; i+=6 ) { 4002e44a96cSLois Curfman McInnes if (i+4<m) fprintf(fd," %d %d %d %d %d %d\n",sptr[i],sptr[i+1],sptr[i+2],sptr[i+3],sptr[i+4],sptr[i+5]); 4012e44a96cSLois Curfman McInnes else if (i+3<m) fprintf(fd," %d %d %d %d %d\n",sptr[i],sptr[i+1],sptr[i+2],sptr[i+3],sptr[i+4]); 4022e44a96cSLois Curfman McInnes else if (i+2<m) fprintf(fd," %d %d %d %d\n",sptr[i],sptr[i+1],sptr[i+2],sptr[i+3]); 4032e44a96cSLois Curfman McInnes else if (i+1<m) fprintf(fd," %d %d %d\n",sptr[i],sptr[i+1],sptr[i+2]); 4042e44a96cSLois Curfman McInnes else if (i<m) fprintf(fd," %d %d\n",sptr[i],sptr[i+1]); 4057272d637SLois Curfman McInnes else fprintf(fd," %d\n",sptr[i]); 406496be53dSLois Curfman McInnes } 407496be53dSLois Curfman McInnes fprintf(fd,"\n"); 408496be53dSLois Curfman McInnes PetscFree(sptr); 409496be53dSLois Curfman McInnes for ( i=0; i<m; i++ ) { 410496be53dSLois Curfman McInnes for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 411496be53dSLois Curfman McInnes if (a->j[j] >= i) fprintf(fd," %d ",a->j[j]+fshift); 412496be53dSLois Curfman McInnes } 413496be53dSLois Curfman McInnes fprintf(fd,"\n"); 414496be53dSLois Curfman McInnes } 415496be53dSLois Curfman McInnes fprintf(fd,"\n"); 416496be53dSLois Curfman McInnes for ( i=0; i<m; i++ ) { 417496be53dSLois Curfman McInnes for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 418496be53dSLois Curfman McInnes if (a->j[j] >= i) { 4193a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 420e20fef11SSatish Balay if (PetscImaginary(a->a[j]) != 0.0 || PetscReal(a->a[j]) != 0.0) 421e20fef11SSatish Balay fprintf(fd," %18.16e %18.16e ",PetscReal(a->a[j]),PetscImaginary(a->a[j])); 422496be53dSLois Curfman McInnes #else 423496be53dSLois Curfman McInnes if (a->a[j] != 0.0) fprintf(fd," %18.16e ",a->a[j]); 424496be53dSLois Curfman McInnes #endif 425496be53dSLois Curfman McInnes } 426496be53dSLois Curfman McInnes } 427496be53dSLois Curfman McInnes fprintf(fd,"\n"); 428496be53dSLois Curfman McInnes } 42902594712SBarry Smith } else if (format == VIEWER_FORMAT_ASCII_DENSE) { 43002594712SBarry Smith int cnt = 0,jcnt; 43102594712SBarry Smith Scalar value; 43202594712SBarry Smith 43302594712SBarry Smith for ( i=0; i<m; i++ ) { 43402594712SBarry Smith jcnt = 0; 43502594712SBarry Smith for ( j=0; j<a->n; j++ ) { 436e24b481bSBarry Smith if ( jcnt < a->i[i+1]-a->i[i] && j == a->j[cnt]) { 43702594712SBarry Smith value = a->a[cnt++]; 438e24b481bSBarry Smith jcnt++; 43902594712SBarry Smith } else { 44002594712SBarry Smith value = 0.0; 44102594712SBarry Smith } 44202594712SBarry Smith #if defined(USE_PETSC_COMPLEX) 44302594712SBarry Smith fprintf(fd," %7.5e+%7.5e i ",PetscReal(value),PetscImaginary(value)); 44402594712SBarry Smith #else 44502594712SBarry Smith fprintf(fd," %7.5e ",value); 44602594712SBarry Smith #endif 44702594712SBarry Smith } 44802594712SBarry Smith fprintf(fd,"\n"); 44902594712SBarry Smith } 4503a40ed3dSBarry Smith } else { 45117ab2063SBarry Smith for ( i=0; i<m; i++ ) { 45217ab2063SBarry Smith fprintf(fd,"row %d:",i); 453416022c9SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 4543a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 455e20fef11SSatish Balay if (PetscImaginary(a->a[j]) > 0.0) { 456e20fef11SSatish Balay fprintf(fd," %d %g + %g i",a->j[j]+shift,PetscReal(a->a[j]),PetscImaginary(a->a[j])); 457e20fef11SSatish Balay } else if (PetscImaginary(a->a[j]) < 0.0) { 458e20fef11SSatish Balay fprintf(fd," %d %g - %g i",a->j[j]+shift,PetscReal(a->a[j]),-PetscImaginary(a->a[j])); 4593a40ed3dSBarry Smith } else { 460e20fef11SSatish Balay fprintf(fd," %d %g ",a->j[j]+shift,PetscReal(a->a[j])); 46117ab2063SBarry Smith } 46217ab2063SBarry Smith #else 463416022c9SBarry Smith fprintf(fd," %d %g ",a->j[j]+shift,a->a[j]); 46417ab2063SBarry Smith #endif 46517ab2063SBarry Smith } 46617ab2063SBarry Smith fprintf(fd,"\n"); 46717ab2063SBarry Smith } 46817ab2063SBarry Smith } 46917ab2063SBarry Smith fflush(fd); 4703a40ed3dSBarry Smith PetscFunctionReturn(0); 471416022c9SBarry Smith } 472416022c9SBarry Smith 4735615d1e5SSatish Balay #undef __FUNC__ 474480ef9eaSBarry Smith #define __FUNC__ "MatView_SeqAIJ_Draw_Zoom" 475480ef9eaSBarry Smith int MatView_SeqAIJ_Draw_Zoom(Draw draw,void *Aa) 476416022c9SBarry Smith { 477480ef9eaSBarry Smith Mat A = (Mat) Aa; 478416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 47977ed5343SBarry Smith int ierr, i,j, m = a->m, shift = a->indexshift,color,rank; 4800513a670SBarry Smith int format; 481480ef9eaSBarry Smith double xl,yl,xr,yr,x_l,x_r,y_l,y_r,maxv = 0.0; 482480ef9eaSBarry Smith Viewer viewer; 48377ed5343SBarry Smith MPI_Comm comm; 484cddf8d76SBarry Smith 4853a40ed3dSBarry Smith PetscFunctionBegin; 48677ed5343SBarry Smith /* 48777ed5343SBarry Smith This is nasty. If this is called from an originally parallel matrix 48877ed5343SBarry Smith then all processes call this, but only the first has the matrix so the 48977ed5343SBarry Smith rest should return immediately. 49077ed5343SBarry Smith */ 49177ed5343SBarry Smith ierr = PetscObjectGetComm((PetscObject)draw,&comm);CHKERRQ(ierr); 49277ed5343SBarry Smith MPI_Comm_rank(comm,&rank); 49377ed5343SBarry Smith if (rank) PetscFunctionReturn(0); 49477ed5343SBarry Smith 495480ef9eaSBarry Smith ierr = PetscObjectQuery((PetscObject)A,"Zoomviewer",(PetscObject*) &viewer);CHKERRQ(ierr); 4960513a670SBarry Smith ierr = ViewerGetFormat(viewer,&format); CHKERRQ(ierr); 49719bcc07fSBarry Smith 498480ef9eaSBarry Smith ierr = DrawGetCoordinates(draw,&xl,&yl,&xr,&yr); CHKERRQ(ierr); 499416022c9SBarry Smith /* loop over matrix elements drawing boxes */ 5000513a670SBarry Smith 5010513a670SBarry Smith if (format != VIEWER_FORMAT_DRAW_CONTOUR) { 5020513a670SBarry Smith /* Blue for negative, Cyan for zero and Red for positive */ 503cddf8d76SBarry Smith color = DRAW_BLUE; 504416022c9SBarry Smith for ( i=0; i<m; i++ ) { 505cddf8d76SBarry Smith y_l = m - i - 1.0; y_r = y_l + 1.0; 506416022c9SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 507cddf8d76SBarry Smith x_l = a->j[j] + shift; x_r = x_l + 1.0; 5083a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 509e20fef11SSatish Balay if (PetscReal(a->a[j]) >= 0.) continue; 510cddf8d76SBarry Smith #else 511cddf8d76SBarry Smith if (a->a[j] >= 0.) continue; 512cddf8d76SBarry Smith #endif 513480ef9eaSBarry Smith ierr = DrawRectangle(draw,x_l,y_l,x_r,y_r,color,color,color,color);CHKERRQ(ierr); 514cddf8d76SBarry Smith } 515cddf8d76SBarry Smith } 516cddf8d76SBarry Smith color = DRAW_CYAN; 517cddf8d76SBarry Smith for ( i=0; i<m; i++ ) { 518cddf8d76SBarry Smith y_l = m - i - 1.0; y_r = y_l + 1.0; 519cddf8d76SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 520cddf8d76SBarry Smith x_l = a->j[j] + shift; x_r = x_l + 1.0; 521cddf8d76SBarry Smith if (a->a[j] != 0.) continue; 522480ef9eaSBarry Smith ierr = DrawRectangle(draw,x_l,y_l,x_r,y_r,color,color,color,color);CHKERRQ(ierr); 523cddf8d76SBarry Smith } 524cddf8d76SBarry Smith } 525cddf8d76SBarry Smith color = DRAW_RED; 526cddf8d76SBarry Smith for ( i=0; i<m; i++ ) { 527cddf8d76SBarry Smith y_l = m - i - 1.0; y_r = y_l + 1.0; 528cddf8d76SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 529cddf8d76SBarry Smith x_l = a->j[j] + shift; x_r = x_l + 1.0; 5303a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 531e20fef11SSatish Balay if (PetscReal(a->a[j]) <= 0.) continue; 532cddf8d76SBarry Smith #else 533cddf8d76SBarry Smith if (a->a[j] <= 0.) continue; 534cddf8d76SBarry Smith #endif 535480ef9eaSBarry Smith ierr = DrawRectangle(draw,x_l,y_l,x_r,y_r,color,color,color,color);CHKERRQ(ierr); 536416022c9SBarry Smith } 537416022c9SBarry Smith } 5380513a670SBarry Smith } else { 5390513a670SBarry Smith /* use contour shading to indicate magnitude of values */ 5400513a670SBarry Smith /* first determine max of all nonzero values */ 5410513a670SBarry Smith int nz = a->nz,count; 5420513a670SBarry Smith Draw popup; 543480ef9eaSBarry Smith double scale; 5440513a670SBarry Smith 5450513a670SBarry Smith for ( i=0; i<nz; i++ ) { 5460513a670SBarry Smith if (PetscAbsScalar(a->a[i]) > maxv) maxv = PetscAbsScalar(a->a[i]); 5470513a670SBarry Smith } 548480ef9eaSBarry Smith scale = (245.0 - DRAW_BASIC_COLORS)/maxv; 549522c5e43SBarry Smith ierr = DrawGetPopup(draw,&popup); CHKERRQ(ierr); 5500513a670SBarry Smith ierr = DrawScalePopup(popup,0.0,maxv); CHKERRQ(ierr); 5510513a670SBarry Smith count = 0; 5520513a670SBarry Smith for ( i=0; i<m; i++ ) { 5530513a670SBarry Smith y_l = m - i - 1.0; y_r = y_l + 1.0; 5540513a670SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 5550513a670SBarry Smith x_l = a->j[j] + shift; x_r = x_l + 1.0; 5566d6b6c30SSatish Balay color = DRAW_BASIC_COLORS + (int)(scale*PetscAbsScalar(a->a[count])); 557480ef9eaSBarry Smith ierr = DrawRectangle(draw,x_l,y_l,x_r,y_r,color,color,color,color);CHKERRQ(ierr); 5580513a670SBarry Smith count++; 5590513a670SBarry Smith } 5600513a670SBarry Smith } 5610513a670SBarry Smith } 562480ef9eaSBarry Smith PetscFunctionReturn(0); 563480ef9eaSBarry Smith } 564cddf8d76SBarry Smith 565480ef9eaSBarry Smith #undef __FUNC__ 566480ef9eaSBarry Smith #define __FUNC__ "MatView_SeqAIJ_Draw" 567480ef9eaSBarry Smith int MatView_SeqAIJ_Draw(Mat A,Viewer viewer) 568480ef9eaSBarry Smith { 569480ef9eaSBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ*) A->data; 570480ef9eaSBarry Smith int ierr; 571480ef9eaSBarry Smith Draw draw; 572480ef9eaSBarry Smith double xr,yr,xl,yl,h,w; 573480ef9eaSBarry Smith 574480ef9eaSBarry Smith PetscTruth isnull; 575480ef9eaSBarry Smith 576480ef9eaSBarry Smith PetscFunctionBegin; 57777ed5343SBarry Smith ierr = ViewerDrawGetDraw(viewer,0,&draw); CHKERRQ(ierr); 578480ef9eaSBarry Smith ierr = DrawIsNull(draw,&isnull); CHKERRQ(ierr); 579480ef9eaSBarry Smith if (isnull) PetscFunctionReturn(0); 580480ef9eaSBarry Smith 581480ef9eaSBarry Smith ierr = PetscObjectCompose((PetscObject)A,"Zoomviewer",(PetscObject)viewer);CHKERRQ(ierr); 582480ef9eaSBarry Smith xr = a->n; yr = a->m; h = yr/10.0; w = xr/10.0; 583480ef9eaSBarry Smith xr += w; yr += h; xl = -w; yl = -h; 584cddf8d76SBarry Smith ierr = DrawSetCoordinates(draw,xl,yl,xr,yr); CHKERRQ(ierr); 585480ef9eaSBarry Smith ierr = DrawZoom(draw,MatView_SeqAIJ_Draw_Zoom,A); CHKERRQ(ierr); 586480ef9eaSBarry Smith ierr = PetscObjectCompose((PetscObject)A,"Zoomviewer",PETSC_NULL);CHKERRQ(ierr); 5873a40ed3dSBarry Smith PetscFunctionReturn(0); 588416022c9SBarry Smith } 589416022c9SBarry Smith 5905615d1e5SSatish Balay #undef __FUNC__ 591d4bb536fSBarry Smith #define __FUNC__ "MatView_SeqAIJ" 592e1311b90SBarry Smith int MatView_SeqAIJ(Mat A,Viewer viewer) 593416022c9SBarry Smith { 594416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ*) A->data; 595bcd2baecSBarry Smith ViewerType vtype; 596bcd2baecSBarry Smith int ierr; 597416022c9SBarry Smith 5983a40ed3dSBarry Smith PetscFunctionBegin; 599bcd2baecSBarry Smith ierr = ViewerGetType(viewer,&vtype); CHKERRQ(ierr); 6007b2a1423SBarry Smith if (PetscTypeCompare(vtype,SOCKET_VIEWER)) { 6017b2a1423SBarry Smith ierr = ViewerSocketPutSparse_Private(viewer,a->m,a->n,a->nz,a->a,a->i,a->j);CHKERRQ(ierr); 6023f1db9ecSBarry Smith } else if (PetscTypeCompare(vtype,ASCII_VIEWER)){ 6033a40ed3dSBarry Smith ierr = MatView_SeqAIJ_ASCII(A,viewer); CHKERRQ(ierr); 6043f1db9ecSBarry Smith } else if (PetscTypeCompare(vtype,BINARY_VIEWER)) { 6053a40ed3dSBarry Smith ierr = MatView_SeqAIJ_Binary(A,viewer); CHKERRQ(ierr); 6063f1db9ecSBarry Smith } else if (PetscTypeCompare(vtype,DRAW_VIEWER)) { 6073a40ed3dSBarry Smith ierr = MatView_SeqAIJ_Draw(A,viewer); CHKERRQ(ierr); 6085cd90555SBarry Smith } else { 6095cd90555SBarry Smith SETERRQ(1,1,"Viewer type not supported by PETSc object"); 61017ab2063SBarry Smith } 6113a40ed3dSBarry Smith PetscFunctionReturn(0); 61217ab2063SBarry Smith } 61319bcc07fSBarry Smith 614c456f294SBarry Smith extern int Mat_AIJ_CheckInode(Mat); 6155615d1e5SSatish Balay #undef __FUNC__ 6165615d1e5SSatish Balay #define __FUNC__ "MatAssemblyEnd_SeqAIJ" 6178f6be9afSLois Curfman McInnes int MatAssemblyEnd_SeqAIJ(Mat A,MatAssemblyType mode) 61817ab2063SBarry Smith { 619416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 62041c01911SSatish Balay int fshift = 0,i,j,*ai = a->i, *aj = a->j, *imax = a->imax,ierr; 62143ee02c3SBarry Smith int m = a->m, *ip, N, *ailen = a->ilen,shift = a->indexshift,rmax = 0; 622416022c9SBarry Smith Scalar *aa = a->a, *ap; 62317ab2063SBarry Smith 6243a40ed3dSBarry Smith PetscFunctionBegin; 6253a40ed3dSBarry Smith if (mode == MAT_FLUSH_ASSEMBLY) PetscFunctionReturn(0); 62617ab2063SBarry Smith 62743ee02c3SBarry Smith if (m) rmax = ailen[0]; /* determine row with most nonzeros */ 62817ab2063SBarry Smith for ( i=1; i<m; i++ ) { 629416022c9SBarry Smith /* move each row back by the amount of empty slots (fshift) before it*/ 63017ab2063SBarry Smith fshift += imax[i-1] - ailen[i-1]; 63194a9d846SBarry Smith rmax = PetscMax(rmax,ailen[i]); 63217ab2063SBarry Smith if (fshift) { 633416022c9SBarry Smith ip = aj + ai[i] + shift; ap = aa + ai[i] + shift; 63417ab2063SBarry Smith N = ailen[i]; 63517ab2063SBarry Smith for ( j=0; j<N; j++ ) { 63617ab2063SBarry Smith ip[j-fshift] = ip[j]; 63717ab2063SBarry Smith ap[j-fshift] = ap[j]; 63817ab2063SBarry Smith } 63917ab2063SBarry Smith } 64017ab2063SBarry Smith ai[i] = ai[i-1] + ailen[i-1]; 64117ab2063SBarry Smith } 64217ab2063SBarry Smith if (m) { 64317ab2063SBarry Smith fshift += imax[m-1] - ailen[m-1]; 64417ab2063SBarry Smith ai[m] = ai[m-1] + ailen[m-1]; 64517ab2063SBarry Smith } 64617ab2063SBarry Smith /* reset ilen and imax for each row */ 64717ab2063SBarry Smith for ( i=0; i<m; i++ ) { 64817ab2063SBarry Smith ailen[i] = imax[i] = ai[i+1] - ai[i]; 64917ab2063SBarry Smith } 650416022c9SBarry Smith a->nz = ai[m] + shift; 65117ab2063SBarry Smith 65217ab2063SBarry Smith /* diagonals may have moved, so kill the diagonal pointers */ 653416022c9SBarry Smith if (fshift && a->diag) { 6540452661fSBarry Smith PetscFree(a->diag); 655416022c9SBarry Smith PLogObjectMemory(A,-(m+1)*sizeof(int)); 656416022c9SBarry Smith a->diag = 0; 65717ab2063SBarry Smith } 6584e220ebcSLois Curfman McInnes PLogInfo(A,"MatAssemblyEnd_SeqAIJ:Matrix size: %d X %d; storage space: %d unneeded, %d used\n", 6594e220ebcSLois Curfman McInnes m,a->n,fshift,a->nz); 66014bcb312SBarry Smith PLogInfo(A,"MatAssemblyEnd_SeqAIJ:Number of mallocs during MatSetValues() is %d\n", 661b810aeb4SBarry Smith a->reallocs); 66294a9d846SBarry Smith PLogInfo(A,"MatAssemblyEnd_SeqAIJ:Most nonzeros in any row is %d\n",rmax); 663dd5f02e7SSatish Balay a->reallocs = 0; 6644e220ebcSLois Curfman McInnes A->info.nz_unneeded = (double)fshift; 6654e220ebcSLois Curfman McInnes 66676dd722bSSatish Balay /* check out for identical nodes. If found, use inode functions */ 66741c01911SSatish Balay ierr = Mat_AIJ_CheckInode(A); CHKERRQ(ierr); 6683a40ed3dSBarry Smith PetscFunctionReturn(0); 66917ab2063SBarry Smith } 67017ab2063SBarry Smith 6715615d1e5SSatish Balay #undef __FUNC__ 6725615d1e5SSatish Balay #define __FUNC__ "MatZeroEntries_SeqAIJ" 6738f6be9afSLois Curfman McInnes int MatZeroEntries_SeqAIJ(Mat A) 67417ab2063SBarry Smith { 675416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 6763a40ed3dSBarry Smith 6773a40ed3dSBarry Smith PetscFunctionBegin; 678cddf8d76SBarry Smith PetscMemzero(a->a,(a->i[a->m]+a->indexshift)*sizeof(Scalar)); 6793a40ed3dSBarry Smith PetscFunctionReturn(0); 68017ab2063SBarry Smith } 681416022c9SBarry Smith 6825615d1e5SSatish Balay #undef __FUNC__ 6835615d1e5SSatish Balay #define __FUNC__ "MatDestroy_SeqAIJ" 684e1311b90SBarry Smith int MatDestroy_SeqAIJ(Mat A) 68517ab2063SBarry Smith { 686416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 68782bf6240SBarry Smith int ierr; 688d5d45c9bSBarry Smith 6893a40ed3dSBarry Smith PetscFunctionBegin; 69094d884c6SBarry Smith if (--A->refct > 0) PetscFunctionReturn(0); 69194d884c6SBarry Smith 69294d884c6SBarry Smith if (A->mapping) { 69394d884c6SBarry Smith ierr = ISLocalToGlobalMappingDestroy(A->mapping); CHKERRQ(ierr); 69494d884c6SBarry Smith } 69594d884c6SBarry Smith if (A->bmapping) { 69694d884c6SBarry Smith ierr = ISLocalToGlobalMappingDestroy(A->bmapping); CHKERRQ(ierr); 69794d884c6SBarry Smith } 69861b13de0SBarry Smith if (A->rmap) { 69961b13de0SBarry Smith ierr = MapDestroy(A->rmap);CHKERRQ(ierr); 70061b13de0SBarry Smith } 70161b13de0SBarry Smith if (A->cmap) { 70261b13de0SBarry Smith ierr = MapDestroy(A->cmap);CHKERRQ(ierr); 70361b13de0SBarry Smith } 70466d5ce97SBarry Smith if (a->idiag) PetscFree(a->idiag); 7053a40ed3dSBarry Smith #if defined(USE_PETSC_LOG) 706e1311b90SBarry Smith PLogObjectState((PetscObject)A,"Rows=%d, Cols=%d, NZ=%d",a->m,a->n,a->nz); 70717ab2063SBarry Smith #endif 7080452661fSBarry Smith PetscFree(a->a); 7090452661fSBarry Smith if (!a->singlemalloc) { PetscFree(a->i); PetscFree(a->j);} 7100452661fSBarry Smith if (a->diag) PetscFree(a->diag); 7110452661fSBarry Smith if (a->ilen) PetscFree(a->ilen); 7120452661fSBarry Smith if (a->imax) PetscFree(a->imax); 7130452661fSBarry Smith if (a->solve_work) PetscFree(a->solve_work); 71476dd722bSSatish Balay if (a->inode.size) PetscFree(a->inode.size); 71582bf6240SBarry Smith if (a->icol) {ierr = ISDestroy(a->icol);CHKERRQ(ierr);} 716be6bf707SBarry Smith if (a->saved_values) PetscFree(a->saved_values); 7170452661fSBarry Smith PetscFree(a); 718eed86810SBarry Smith 719f2655603SLois Curfman McInnes PLogObjectDestroy(A); 720f2655603SLois Curfman McInnes PetscHeaderDestroy(A); 7213a40ed3dSBarry Smith PetscFunctionReturn(0); 72217ab2063SBarry Smith } 72317ab2063SBarry Smith 7245615d1e5SSatish Balay #undef __FUNC__ 7255615d1e5SSatish Balay #define __FUNC__ "MatCompress_SeqAIJ" 7268f6be9afSLois Curfman McInnes int MatCompress_SeqAIJ(Mat A) 72717ab2063SBarry Smith { 7283a40ed3dSBarry Smith PetscFunctionBegin; 7293a40ed3dSBarry Smith PetscFunctionReturn(0); 73017ab2063SBarry Smith } 73117ab2063SBarry Smith 7325615d1e5SSatish Balay #undef __FUNC__ 7335615d1e5SSatish Balay #define __FUNC__ "MatSetOption_SeqAIJ" 7348f6be9afSLois Curfman McInnes int MatSetOption_SeqAIJ(Mat A,MatOption op) 73517ab2063SBarry Smith { 736416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 7373a40ed3dSBarry Smith 7383a40ed3dSBarry Smith PetscFunctionBegin; 7396d4a8577SBarry Smith if (op == MAT_ROW_ORIENTED) a->roworiented = 1; 7406d4a8577SBarry Smith else if (op == MAT_COLUMN_ORIENTED) a->roworiented = 0; 7416d4a8577SBarry Smith else if (op == MAT_COLUMNS_SORTED) a->sorted = 1; 742219d9a1aSLois Curfman McInnes else if (op == MAT_COLUMNS_UNSORTED) a->sorted = 0; 7436d4a8577SBarry Smith else if (op == MAT_NO_NEW_NONZERO_LOCATIONS) a->nonew = 1; 7444787f768SSatish Balay else if (op == MAT_NEW_NONZERO_LOCATION_ERR) a->nonew = -1; 7454787f768SSatish Balay else if (op == MAT_NEW_NONZERO_ALLOCATION_ERR) a->nonew = -2; 7466d4a8577SBarry Smith else if (op == MAT_YES_NEW_NONZERO_LOCATIONS) a->nonew = 0; 7476d4a8577SBarry Smith else if (op == MAT_ROWS_SORTED || 748219d9a1aSLois Curfman McInnes op == MAT_ROWS_UNSORTED || 7496d4a8577SBarry Smith op == MAT_SYMMETRIC || 7506d4a8577SBarry Smith op == MAT_STRUCTURALLY_SYMMETRIC || 75190f02eecSBarry Smith op == MAT_YES_NEW_DIAGONALS || 752b51ba29fSSatish Balay op == MAT_IGNORE_OFF_PROC_ENTRIES|| 753b51ba29fSSatish Balay op == MAT_USE_HASH_TABLE) 754981c4779SBarry Smith PLogInfo(A,"MatSetOption_SeqAIJ:Option ignored\n"); 7553a40ed3dSBarry Smith else if (op == MAT_NO_NEW_DIAGONALS) { 7563a40ed3dSBarry Smith SETERRQ(PETSC_ERR_SUP,0,"MAT_NO_NEW_DIAGONALS"); 7573a40ed3dSBarry Smith } else if (op == MAT_INODE_LIMIT_1) a->inode.limit = 1; 7586d4a8577SBarry Smith else if (op == MAT_INODE_LIMIT_2) a->inode.limit = 2; 7596d4a8577SBarry Smith else if (op == MAT_INODE_LIMIT_3) a->inode.limit = 3; 7606d4a8577SBarry Smith else if (op == MAT_INODE_LIMIT_4) a->inode.limit = 4; 7616d4a8577SBarry Smith else if (op == MAT_INODE_LIMIT_5) a->inode.limit = 5; 7623a40ed3dSBarry Smith else SETERRQ(PETSC_ERR_SUP,0,"unknown option"); 7633a40ed3dSBarry Smith PetscFunctionReturn(0); 76417ab2063SBarry Smith } 76517ab2063SBarry Smith 7665615d1e5SSatish Balay #undef __FUNC__ 7675615d1e5SSatish Balay #define __FUNC__ "MatGetDiagonal_SeqAIJ" 7688f6be9afSLois Curfman McInnes int MatGetDiagonal_SeqAIJ(Mat A,Vec v) 76917ab2063SBarry Smith { 770416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 7713a40ed3dSBarry Smith int i,j, n,shift = a->indexshift,ierr; 77217ab2063SBarry Smith Scalar *x, zero = 0.0; 77317ab2063SBarry Smith 7743a40ed3dSBarry Smith PetscFunctionBegin; 7753a40ed3dSBarry Smith ierr = VecSet(&zero,v);CHKERRQ(ierr); 776e1311b90SBarry Smith ierr = VecGetArray(v,&x);;CHKERRQ(ierr); 777e1311b90SBarry Smith ierr = VecGetLocalSize(v,&n);;CHKERRQ(ierr); 778a8c6a408SBarry Smith if (n != a->m) SETERRQ(PETSC_ERR_ARG_SIZ,0,"Nonconforming matrix and vector"); 779416022c9SBarry Smith for ( i=0; i<a->m; i++ ) { 780416022c9SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 781416022c9SBarry Smith if (a->j[j]+shift == i) { 782416022c9SBarry Smith x[i] = a->a[j]; 78317ab2063SBarry Smith break; 78417ab2063SBarry Smith } 78517ab2063SBarry Smith } 78617ab2063SBarry Smith } 787e1311b90SBarry Smith ierr = VecRestoreArray(v,&x);;CHKERRQ(ierr); 7883a40ed3dSBarry Smith PetscFunctionReturn(0); 78917ab2063SBarry Smith } 79017ab2063SBarry Smith 79117ab2063SBarry Smith /* -------------------------------------------------------*/ 79217ab2063SBarry Smith /* Should check that shapes of vectors and matrices match */ 79317ab2063SBarry Smith /* -------------------------------------------------------*/ 7945615d1e5SSatish Balay #undef __FUNC__ 7955615d1e5SSatish Balay #define __FUNC__ "MatMultTrans_SeqAIJ" 79644cd7ae7SLois Curfman McInnes int MatMultTrans_SeqAIJ(Mat A,Vec xx,Vec yy) 79717ab2063SBarry Smith { 798416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 79917ab2063SBarry Smith Scalar *x, *y, *v, alpha; 800e1311b90SBarry Smith int ierr,m = a->m, n, i, *idx, shift = a->indexshift; 80117ab2063SBarry Smith 8023a40ed3dSBarry Smith PetscFunctionBegin; 803e1311b90SBarry Smith ierr = VecGetArray(xx,&x);CHKERRQ(ierr); 804e1311b90SBarry Smith ierr = VecGetArray(yy,&y);CHKERRQ(ierr); 805cddf8d76SBarry Smith PetscMemzero(y,a->n*sizeof(Scalar)); 80617ab2063SBarry Smith y = y + shift; /* shift for Fortran start by 1 indexing */ 80717ab2063SBarry Smith for ( i=0; i<m; i++ ) { 808416022c9SBarry Smith idx = a->j + a->i[i] + shift; 809416022c9SBarry Smith v = a->a + a->i[i] + shift; 810416022c9SBarry Smith n = a->i[i+1] - a->i[i]; 81117ab2063SBarry Smith alpha = x[i]; 81217ab2063SBarry Smith while (n-->0) {y[*idx++] += alpha * *v++;} 81317ab2063SBarry Smith } 814416022c9SBarry Smith PLogFlops(2*a->nz - a->n); 815e1311b90SBarry Smith ierr = VecRestoreArray(xx,&x);CHKERRQ(ierr); 816e1311b90SBarry Smith ierr = VecRestoreArray(yy,&y);CHKERRQ(ierr); 8173a40ed3dSBarry Smith PetscFunctionReturn(0); 81817ab2063SBarry Smith } 819d5d45c9bSBarry Smith 8205615d1e5SSatish Balay #undef __FUNC__ 8215615d1e5SSatish Balay #define __FUNC__ "MatMultTransAdd_SeqAIJ" 82244cd7ae7SLois Curfman McInnes int MatMultTransAdd_SeqAIJ(Mat A,Vec xx,Vec zz,Vec yy) 82317ab2063SBarry Smith { 824416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 82517ab2063SBarry Smith Scalar *x, *y, *v, alpha; 826e1311b90SBarry Smith int ierr,m = a->m, n, i, *idx,shift = a->indexshift; 82717ab2063SBarry Smith 8283a40ed3dSBarry Smith PetscFunctionBegin; 8292e8a6d31SBarry Smith if (zz != yy) {ierr = VecCopy(zz,yy);CHKERRQ(ierr);} 830e1311b90SBarry Smith ierr = VecGetArray(xx,&x);CHKERRQ(ierr); 831e1311b90SBarry Smith ierr = VecGetArray(yy,&y);CHKERRQ(ierr); 83217ab2063SBarry Smith y = y + shift; /* shift for Fortran start by 1 indexing */ 83317ab2063SBarry Smith for ( i=0; i<m; i++ ) { 834416022c9SBarry Smith idx = a->j + a->i[i] + shift; 835416022c9SBarry Smith v = a->a + a->i[i] + shift; 836416022c9SBarry Smith n = a->i[i+1] - a->i[i]; 83717ab2063SBarry Smith alpha = x[i]; 83817ab2063SBarry Smith while (n-->0) {y[*idx++] += alpha * *v++;} 83917ab2063SBarry Smith } 84090f02eecSBarry Smith PLogFlops(2*a->nz); 841e1311b90SBarry Smith ierr = VecRestoreArray(xx,&x);CHKERRQ(ierr); 842e1311b90SBarry Smith ierr = VecRestoreArray(yy,&y);CHKERRQ(ierr); 8433a40ed3dSBarry Smith PetscFunctionReturn(0); 84417ab2063SBarry Smith } 84517ab2063SBarry Smith 8465615d1e5SSatish Balay #undef __FUNC__ 8475615d1e5SSatish Balay #define __FUNC__ "MatMult_SeqAIJ" 84844cd7ae7SLois Curfman McInnes int MatMult_SeqAIJ(Mat A,Vec xx,Vec yy) 84917ab2063SBarry Smith { 850416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 85117ab2063SBarry Smith Scalar *x, *y, *v, sum; 852e1311b90SBarry Smith int ierr,m = a->m, *idx, shift = a->indexshift,*ii; 8532e40c62eSSatish Balay #if !defined(USE_FORTRAN_KERNEL_MULTAIJ) 854e36a17ebSSatish Balay int n, i, jrow,j; 855e36a17ebSSatish Balay #endif 85617ab2063SBarry Smith 857fee21e36SBarry Smith #if defined(HAVE_PRAGMA_DISJOINT) 858fee21e36SBarry Smith #pragma disjoint(*x,*y,*v) 859fee21e36SBarry Smith #endif 860fee21e36SBarry Smith 8613a40ed3dSBarry Smith PetscFunctionBegin; 862e1311b90SBarry Smith ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 863e1311b90SBarry Smith ierr = VecGetArray(yy,&y); CHKERRQ(ierr); 86417ab2063SBarry Smith x = x + shift; /* shift for Fortran start by 1 indexing */ 865416022c9SBarry Smith idx = a->j; 866d64ed03dSBarry Smith v = a->a; 867416022c9SBarry Smith ii = a->i; 868acc4d009SSatish Balay #if defined(USE_FORTRAN_KERNEL_MULTAIJ) 86929b5ca8aSSatish Balay fortranmultaij_(&m,x,ii,idx+shift,v+shift,y); 8708d195f9aSBarry Smith #else 871d64ed03dSBarry Smith v += shift; /* shift for Fortran start by 1 indexing */ 872d64ed03dSBarry Smith idx += shift; 87317ab2063SBarry Smith for ( i=0; i<m; i++ ) { 8749ea0dfa2SSatish Balay jrow = ii[i]; 8759ea0dfa2SSatish Balay n = ii[i+1] - jrow; 87617ab2063SBarry Smith sum = 0.0; 8779ea0dfa2SSatish Balay for ( j=0; j<n; j++) { 8789ea0dfa2SSatish Balay sum += v[jrow]*x[idx[jrow]]; jrow++; 8799ea0dfa2SSatish Balay } 88017ab2063SBarry Smith y[i] = sum; 88117ab2063SBarry Smith } 8828d195f9aSBarry Smith #endif 883416022c9SBarry Smith PLogFlops(2*a->nz - m); 884e1311b90SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 885e1311b90SBarry Smith ierr = VecRestoreArray(yy,&y); CHKERRQ(ierr); 8863a40ed3dSBarry Smith PetscFunctionReturn(0); 88717ab2063SBarry Smith } 88817ab2063SBarry Smith 8895615d1e5SSatish Balay #undef __FUNC__ 8905615d1e5SSatish Balay #define __FUNC__ "MatMultAdd_SeqAIJ" 89144cd7ae7SLois Curfman McInnes int MatMultAdd_SeqAIJ(Mat A,Vec xx,Vec yy,Vec zz) 89217ab2063SBarry Smith { 893416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 89417ab2063SBarry Smith Scalar *x, *y, *z, *v, sum; 895e1311b90SBarry Smith int ierr,m = a->m, *idx, shift = a->indexshift,*ii; 8962e40c62eSSatish Balay #if !defined(USE_FORTRAN_KERNEL_MULTADDAIJ) 897e36a17ebSSatish Balay int n,i,jrow,j; 898e36a17ebSSatish Balay #endif 8999ea0dfa2SSatish Balay 9003a40ed3dSBarry Smith PetscFunctionBegin; 901e1311b90SBarry Smith ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 902e1311b90SBarry Smith ierr = VecGetArray(yy,&y); CHKERRQ(ierr); 9032e8a6d31SBarry Smith if (zz != yy) { 904e1311b90SBarry Smith ierr = VecGetArray(zz,&z); CHKERRQ(ierr); 9052e8a6d31SBarry Smith } else { 9062e8a6d31SBarry Smith z = y; 9072e8a6d31SBarry Smith } 90817ab2063SBarry Smith x = x + shift; /* shift for Fortran start by 1 indexing */ 909cddf8d76SBarry Smith idx = a->j; 910d64ed03dSBarry Smith v = a->a; 911cddf8d76SBarry Smith ii = a->i; 9122e40c62eSSatish Balay #if defined(USE_FORTRAN_KERNEL_MULTADDAIJ) 91329b5ca8aSSatish Balay fortranmultaddaij_(&m,x,ii,idx+shift,v+shift,y,z); 91402ab625aSSatish Balay #else 915d64ed03dSBarry Smith v += shift; /* shift for Fortran start by 1 indexing */ 916d64ed03dSBarry Smith idx += shift; 91717ab2063SBarry Smith for ( i=0; i<m; i++ ) { 9189ea0dfa2SSatish Balay jrow = ii[i]; 9199ea0dfa2SSatish Balay n = ii[i+1] - jrow; 92017ab2063SBarry Smith sum = y[i]; 9219ea0dfa2SSatish Balay for ( j=0; j<n; j++) { 9229ea0dfa2SSatish Balay sum += v[jrow]*x[idx[jrow]]; jrow++; 9239ea0dfa2SSatish Balay } 92417ab2063SBarry Smith z[i] = sum; 92517ab2063SBarry Smith } 92602ab625aSSatish Balay #endif 927416022c9SBarry Smith PLogFlops(2*a->nz); 928e1311b90SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 929e1311b90SBarry Smith ierr = VecRestoreArray(yy,&y); CHKERRQ(ierr); 9302e8a6d31SBarry Smith if (zz != yy) { 931e1311b90SBarry Smith ierr = VecRestoreArray(zz,&z); CHKERRQ(ierr); 9322e8a6d31SBarry Smith } 9333a40ed3dSBarry Smith PetscFunctionReturn(0); 93417ab2063SBarry Smith } 93517ab2063SBarry Smith 93617ab2063SBarry Smith /* 93717ab2063SBarry Smith Adds diagonal pointers to sparse matrix structure. 93817ab2063SBarry Smith */ 9395615d1e5SSatish Balay #undef __FUNC__ 9405615d1e5SSatish Balay #define __FUNC__ "MatMarkDiag_SeqAIJ" 941416022c9SBarry Smith int MatMarkDiag_SeqAIJ(Mat A) 94217ab2063SBarry Smith { 943416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 944416022c9SBarry Smith int i,j, *diag, m = a->m,shift = a->indexshift; 94517ab2063SBarry Smith 9463a40ed3dSBarry Smith PetscFunctionBegin; 9470452661fSBarry Smith diag = (int *) PetscMalloc( (m+1)*sizeof(int)); CHKPTRQ(diag); 948416022c9SBarry Smith PLogObjectMemory(A,(m+1)*sizeof(int)); 949416022c9SBarry Smith for ( i=0; i<a->m; i++ ) { 95035b0346bSBarry Smith diag[i] = a->i[i+1]; 951416022c9SBarry Smith for ( j=a->i[i]+shift; j<a->i[i+1]+shift; j++ ) { 952416022c9SBarry Smith if (a->j[j]+shift == i) { 95317ab2063SBarry Smith diag[i] = j - shift; 95417ab2063SBarry Smith break; 95517ab2063SBarry Smith } 95617ab2063SBarry Smith } 95717ab2063SBarry Smith } 958416022c9SBarry Smith a->diag = diag; 9593a40ed3dSBarry Smith PetscFunctionReturn(0); 96017ab2063SBarry Smith } 96117ab2063SBarry Smith 962be5855fcSBarry Smith /* 963be5855fcSBarry Smith Checks for missing diagonals 964be5855fcSBarry Smith */ 965be5855fcSBarry Smith #undef __FUNC__ 966be5855fcSBarry Smith #define __FUNC__ "MatMissingDiag_SeqAIJ" 967be5855fcSBarry Smith int MatMissingDiag_SeqAIJ(Mat A) 968be5855fcSBarry Smith { 969be5855fcSBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 970be5855fcSBarry Smith int *diag = a->diag, *jj = a->j,i,shift = a->indexshift; 971be5855fcSBarry Smith 972be5855fcSBarry Smith PetscFunctionBegin; 973be5855fcSBarry Smith for ( i=0; i<a->m; i++ ) { 974be5855fcSBarry Smith if (jj[diag[i]+shift] != i-shift) { 975be5855fcSBarry Smith SETERRQ1(1,1,"Matrix is missing diagonal number %d",i); 976be5855fcSBarry Smith } 977be5855fcSBarry Smith } 978be5855fcSBarry Smith PetscFunctionReturn(0); 979be5855fcSBarry Smith } 980be5855fcSBarry Smith 9815615d1e5SSatish Balay #undef __FUNC__ 9825615d1e5SSatish Balay #define __FUNC__ "MatRelax_SeqAIJ" 983be5855fcSBarry Smith int MatRelax_SeqAIJ(Mat A,Vec bb,double omega,MatSORType flag,double fshift,int its,Vec xx) 98417ab2063SBarry Smith { 985416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 986416022c9SBarry Smith Scalar *x, *b, *bs, d, *xs, sum, *v = a->a,*t,scale,*ts, *xb; 987d5d45c9bSBarry Smith int ierr, *idx, *diag,n = a->n, m = a->m, i, shift = a->indexshift; 98817ab2063SBarry Smith 9893a40ed3dSBarry Smith PetscFunctionBegin; 990e1311b90SBarry Smith ierr = VecGetArray(xx,&x); CHKERRQ(ierr); 991fb2e594dSBarry Smith if (xx != bb) { 992e1311b90SBarry Smith ierr = VecGetArray(bb,&b);CHKERRQ(ierr); 993fb2e594dSBarry Smith } else { 994fb2e594dSBarry Smith b = x; 995fb2e594dSBarry Smith } 996fb2e594dSBarry Smith 997d00d2cf4SBarry Smith if (!a->diag) {ierr = MatMarkDiag_SeqAIJ(A);CHKERRQ(ierr);} 998416022c9SBarry Smith diag = a->diag; 999416022c9SBarry Smith xs = x + shift; /* shifted by one for index start of a or a->j*/ 100017ab2063SBarry Smith if (flag == SOR_APPLY_UPPER) { 100117ab2063SBarry Smith /* apply ( U + D/omega) to the vector */ 100217ab2063SBarry Smith bs = b + shift; 100317ab2063SBarry Smith for ( i=0; i<m; i++ ) { 1004416022c9SBarry Smith d = fshift + a->a[diag[i] + shift]; 1005416022c9SBarry Smith n = a->i[i+1] - diag[i] - 1; 1006488ecbafSBarry Smith PLogFlops(2*n-1); 1007416022c9SBarry Smith idx = a->j + diag[i] + (!shift); 1008416022c9SBarry Smith v = a->a + diag[i] + (!shift); 100917ab2063SBarry Smith sum = b[i]*d/omega; 101017ab2063SBarry Smith SPARSEDENSEDOT(sum,bs,v,idx,n); 101117ab2063SBarry Smith x[i] = sum; 101217ab2063SBarry Smith } 1013cb5b572fSBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 1014fb2e594dSBarry Smith if (bb != xx) {ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr);} 10153a40ed3dSBarry Smith PetscFunctionReturn(0); 101617ab2063SBarry Smith } 101717ab2063SBarry Smith if (flag == SOR_APPLY_LOWER) { 1018a8c6a408SBarry Smith SETERRQ(PETSC_ERR_SUP,0,"SOR_APPLY_LOWER is not done"); 1019f359bf1dSBarry Smith } else if ((flag & SOR_EISENSTAT) && omega == 1.0 && shift == 0 && fshift == 0.0) { 1020fc3d8934SBarry Smith /* Let A = L + U + D; where L is lower trianglar, 1021fc3d8934SBarry Smith U is upper triangular, E is diagonal; This routine applies 1022fc3d8934SBarry Smith 1023fc3d8934SBarry Smith (L + E)^{-1} A (U + E)^{-1} 1024fc3d8934SBarry Smith 1025fc3d8934SBarry Smith to a vector efficiently using Eisenstat's trick. This is for 1026fc3d8934SBarry Smith the case of SSOR preconditioner, so E is D/omega where omega 1027fc3d8934SBarry Smith is the relaxation factor; but in this special case omega == 1 1028fc3d8934SBarry Smith */ 1029f359bf1dSBarry Smith Scalar *idiag; 1030f359bf1dSBarry Smith if (!a->idiag) { 1031f359bf1dSBarry Smith a->idiag = (Scalar *) PetscMalloc(2*m*sizeof(Scalar));CHKPTRQ(a->idiag); 1032f359bf1dSBarry Smith a->ssor = a->idiag + m; 1033*c6e6c036SBarry Smith v = a->a; 1034b4632166SBarry Smith for ( i=0; i<m; i++ ) { a->idiag[i] = 1.0/v[diag[i]];} 1035f359bf1dSBarry Smith } 1036f359bf1dSBarry Smith t = a->ssor; 1037f359bf1dSBarry Smith idiag = a->idiag; 1038fc3d8934SBarry Smith 1039fc3d8934SBarry Smith /* x = (E + U)^{-1} b */ 1040fc3d8934SBarry Smith for ( i=m-1; i>=0; i-- ) { 1041fc3d8934SBarry Smith d = a->a[diag[i]]; 1042fc3d8934SBarry Smith n = a->i[i+1] - diag[i] - 1; 1043fc3d8934SBarry Smith PLogFlops(2*n-1); 1044fc3d8934SBarry Smith idx = a->j + diag[i] + 1; 1045fc3d8934SBarry Smith v = a->a + diag[i] + 1; 1046fc3d8934SBarry Smith sum = b[i]; 1047fc3d8934SBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 1048b4632166SBarry Smith x[i] = sum*idiag[i]; 1049fc3d8934SBarry Smith } 1050fc3d8934SBarry Smith 1051fc3d8934SBarry Smith /* t = b - (2*E - D)x */ 1052fc3d8934SBarry Smith v = a->a; 1053fc3d8934SBarry Smith for ( i=0; i<m; i++ ) { t[i] = b[i] - (v[*diag++])*x[i]; } 1054fc3d8934SBarry Smith PLogFlops(2*m); 1055fc3d8934SBarry Smith 1056fc3d8934SBarry Smith /* t = (E + L)^{-1}t */ 1057fc3d8934SBarry Smith diag = a->diag; 1058fc3d8934SBarry Smith for ( i=0; i<m; i++ ) { 1059fc3d8934SBarry Smith d = a->a[diag[i]]; 1060fc3d8934SBarry Smith n = diag[i] - a->i[i]; 1061fc3d8934SBarry Smith PLogFlops(2*n-1); 1062fc3d8934SBarry Smith idx = a->j + a->i[i]; 1063fc3d8934SBarry Smith v = a->a + a->i[i]; 1064fc3d8934SBarry Smith sum = t[i]; 1065fc3d8934SBarry Smith SPARSEDENSEMDOT(sum,t,v,idx,n); 1066b4632166SBarry Smith t[i] = sum*idiag[i]; 1067fc3d8934SBarry Smith } 1068fc3d8934SBarry Smith 1069fc3d8934SBarry Smith /* x = x + t */ 1070fc3d8934SBarry Smith for ( i=0; i<m; i++ ) { x[i] += t[i]; } 1071b4632166SBarry Smith PLogFlops(m-1); 1072fc3d8934SBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 1073fc3d8934SBarry Smith if (bb != xx) {ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr);} 1074fc3d8934SBarry Smith PetscFunctionReturn(0); 10753a40ed3dSBarry Smith } else if (flag & SOR_EISENSTAT) { 107617ab2063SBarry Smith /* Let A = L + U + D; where L is lower trianglar, 107717ab2063SBarry Smith U is upper triangular, E is diagonal; This routine applies 107817ab2063SBarry Smith 107917ab2063SBarry Smith (L + E)^{-1} A (U + E)^{-1} 108017ab2063SBarry Smith 108117ab2063SBarry Smith to a vector efficiently using Eisenstat's trick. This is for 108217ab2063SBarry Smith the case of SSOR preconditioner, so E is D/omega where omega 108317ab2063SBarry Smith is the relaxation factor. 108417ab2063SBarry Smith */ 10850452661fSBarry Smith t = (Scalar *) PetscMalloc( m*sizeof(Scalar) ); CHKPTRQ(t); 108617ab2063SBarry Smith scale = (2.0/omega) - 1.0; 108717ab2063SBarry Smith 108817ab2063SBarry Smith /* x = (E + U)^{-1} b */ 108917ab2063SBarry Smith for ( i=m-1; i>=0; i-- ) { 1090416022c9SBarry Smith d = fshift + a->a[diag[i] + shift]; 1091416022c9SBarry Smith n = a->i[i+1] - diag[i] - 1; 1092488ecbafSBarry Smith PLogFlops(2*n-1); 1093416022c9SBarry Smith idx = a->j + diag[i] + (!shift); 1094416022c9SBarry Smith v = a->a + diag[i] + (!shift); 109517ab2063SBarry Smith sum = b[i]; 109617ab2063SBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 109717ab2063SBarry Smith x[i] = omega*(sum/d); 109817ab2063SBarry Smith } 109917ab2063SBarry Smith 110017ab2063SBarry Smith /* t = b - (2*E - D)x */ 1101416022c9SBarry Smith v = a->a; 110217ab2063SBarry Smith for ( i=0; i<m; i++ ) { t[i] = b[i] - scale*(v[*diag++ + shift])*x[i]; } 1103fc3d8934SBarry Smith PLogFlops(3*m); 1104488ecbafSBarry Smith 110517ab2063SBarry Smith 110617ab2063SBarry Smith /* t = (E + L)^{-1}t */ 1107416022c9SBarry Smith ts = t + shift; /* shifted by one for index start of a or a->j*/ 1108416022c9SBarry Smith diag = a->diag; 110917ab2063SBarry Smith for ( i=0; i<m; i++ ) { 1110416022c9SBarry Smith d = fshift + a->a[diag[i]+shift]; 1111416022c9SBarry Smith n = diag[i] - a->i[i]; 1112488ecbafSBarry Smith PLogFlops(2*n-1); 1113416022c9SBarry Smith idx = a->j + a->i[i] + shift; 1114416022c9SBarry Smith v = a->a + a->i[i] + shift; 111517ab2063SBarry Smith sum = t[i]; 111617ab2063SBarry Smith SPARSEDENSEMDOT(sum,ts,v,idx,n); 111717ab2063SBarry Smith t[i] = omega*(sum/d); 111817ab2063SBarry Smith } 111917ab2063SBarry Smith 112017ab2063SBarry Smith /* x = x + t */ 112117ab2063SBarry Smith for ( i=0; i<m; i++ ) { x[i] += t[i]; } 1122b4632166SBarry Smith PLogFlops(m-1); 11230452661fSBarry Smith PetscFree(t); 1124cb5b572fSBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 1125fb2e594dSBarry Smith if (bb != xx) {ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr);} 11263a40ed3dSBarry Smith PetscFunctionReturn(0); 112717ab2063SBarry Smith } 112817ab2063SBarry Smith if (flag & SOR_ZERO_INITIAL_GUESS) { 112917ab2063SBarry Smith if (flag & SOR_FORWARD_SWEEP || flag & SOR_LOCAL_FORWARD_SWEEP){ 113017ab2063SBarry Smith for ( i=0; i<m; i++ ) { 1131416022c9SBarry Smith d = fshift + a->a[diag[i]+shift]; 1132416022c9SBarry Smith n = diag[i] - a->i[i]; 1133488ecbafSBarry Smith PLogFlops(2*n-1); 1134416022c9SBarry Smith idx = a->j + a->i[i] + shift; 1135416022c9SBarry Smith v = a->a + a->i[i] + shift; 113617ab2063SBarry Smith sum = b[i]; 113717ab2063SBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 113817ab2063SBarry Smith x[i] = omega*(sum/d); 113917ab2063SBarry Smith } 114017ab2063SBarry Smith xb = x; 11413a40ed3dSBarry Smith } else xb = b; 114217ab2063SBarry Smith if ((flag & SOR_FORWARD_SWEEP || flag & SOR_LOCAL_FORWARD_SWEEP) && 114317ab2063SBarry Smith (flag & SOR_BACKWARD_SWEEP || flag & SOR_LOCAL_BACKWARD_SWEEP)) { 114417ab2063SBarry Smith for ( i=0; i<m; i++ ) { 1145416022c9SBarry Smith x[i] *= a->a[diag[i]+shift]; 114617ab2063SBarry Smith } 1147488ecbafSBarry Smith PLogFlops(m); 114817ab2063SBarry Smith } 114917ab2063SBarry Smith if (flag & SOR_BACKWARD_SWEEP || flag & SOR_LOCAL_BACKWARD_SWEEP){ 115017ab2063SBarry Smith for ( i=m-1; i>=0; i-- ) { 1151416022c9SBarry Smith d = fshift + a->a[diag[i] + shift]; 1152416022c9SBarry Smith n = a->i[i+1] - diag[i] - 1; 1153488ecbafSBarry Smith PLogFlops(2*n-1); 1154416022c9SBarry Smith idx = a->j + diag[i] + (!shift); 1155416022c9SBarry Smith v = a->a + diag[i] + (!shift); 115617ab2063SBarry Smith sum = xb[i]; 115717ab2063SBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 115817ab2063SBarry Smith x[i] = omega*(sum/d); 115917ab2063SBarry Smith } 116017ab2063SBarry Smith } 116117ab2063SBarry Smith its--; 116217ab2063SBarry Smith } 116317ab2063SBarry Smith while (its--) { 116417ab2063SBarry Smith if (flag & SOR_FORWARD_SWEEP || flag & SOR_LOCAL_FORWARD_SWEEP){ 116517ab2063SBarry Smith for ( i=0; i<m; i++ ) { 1166416022c9SBarry Smith d = fshift + a->a[diag[i]+shift]; 1167416022c9SBarry Smith n = a->i[i+1] - a->i[i]; 1168488ecbafSBarry Smith PLogFlops(2*n-1); 1169416022c9SBarry Smith idx = a->j + a->i[i] + shift; 1170416022c9SBarry Smith v = a->a + a->i[i] + shift; 117117ab2063SBarry Smith sum = b[i]; 117217ab2063SBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 11737e33a6baSBarry Smith x[i] = (1. - omega)*x[i] + omega*(sum + a->a[diag[i]+shift]*x[i])/d; 117417ab2063SBarry Smith } 117517ab2063SBarry Smith } 117617ab2063SBarry Smith if (flag & SOR_BACKWARD_SWEEP || flag & SOR_LOCAL_BACKWARD_SWEEP){ 117717ab2063SBarry Smith for ( i=m-1; i>=0; i-- ) { 1178416022c9SBarry Smith d = fshift + a->a[diag[i] + shift]; 1179416022c9SBarry Smith n = a->i[i+1] - a->i[i]; 1180488ecbafSBarry Smith PLogFlops(2*n-1); 1181416022c9SBarry Smith idx = a->j + a->i[i] + shift; 1182416022c9SBarry Smith v = a->a + a->i[i] + shift; 118317ab2063SBarry Smith sum = b[i]; 118417ab2063SBarry Smith SPARSEDENSEMDOT(sum,xs,v,idx,n); 11857e33a6baSBarry Smith x[i] = (1. - omega)*x[i] + omega*(sum + a->a[diag[i]+shift]*x[i])/d; 118617ab2063SBarry Smith } 118717ab2063SBarry Smith } 118817ab2063SBarry Smith } 1189cb5b572fSBarry Smith ierr = VecRestoreArray(xx,&x); CHKERRQ(ierr); 1190fb2e594dSBarry Smith if (bb != xx) {ierr = VecRestoreArray(bb,&b);CHKERRQ(ierr);} 11913a40ed3dSBarry Smith PetscFunctionReturn(0); 119217ab2063SBarry Smith } 119317ab2063SBarry Smith 11945615d1e5SSatish Balay #undef __FUNC__ 11955615d1e5SSatish Balay #define __FUNC__ "MatGetInfo_SeqAIJ" 11968f6be9afSLois Curfman McInnes int MatGetInfo_SeqAIJ(Mat A,MatInfoType flag,MatInfo *info) 119717ab2063SBarry Smith { 1198416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 11994e220ebcSLois Curfman McInnes 12003a40ed3dSBarry Smith PetscFunctionBegin; 12014e220ebcSLois Curfman McInnes info->rows_global = (double)a->m; 12024e220ebcSLois Curfman McInnes info->columns_global = (double)a->n; 12034e220ebcSLois Curfman McInnes info->rows_local = (double)a->m; 12044e220ebcSLois Curfman McInnes info->columns_local = (double)a->n; 12054e220ebcSLois Curfman McInnes info->block_size = 1.0; 12064e220ebcSLois Curfman McInnes info->nz_allocated = (double)a->maxnz; 12074e220ebcSLois Curfman McInnes info->nz_used = (double)a->nz; 12084e220ebcSLois Curfman McInnes info->nz_unneeded = (double)(a->maxnz - a->nz); 12094e220ebcSLois Curfman McInnes info->assemblies = (double)A->num_ass; 12104e220ebcSLois Curfman McInnes info->mallocs = (double)a->reallocs; 12114e220ebcSLois Curfman McInnes info->memory = A->mem; 12124e220ebcSLois Curfman McInnes if (A->factor) { 12134e220ebcSLois Curfman McInnes info->fill_ratio_given = A->info.fill_ratio_given; 12144e220ebcSLois Curfman McInnes info->fill_ratio_needed = A->info.fill_ratio_needed; 12154e220ebcSLois Curfman McInnes info->factor_mallocs = A->info.factor_mallocs; 12164e220ebcSLois Curfman McInnes } else { 12174e220ebcSLois Curfman McInnes info->fill_ratio_given = 0; 12184e220ebcSLois Curfman McInnes info->fill_ratio_needed = 0; 12194e220ebcSLois Curfman McInnes info->factor_mallocs = 0; 12204e220ebcSLois Curfman McInnes } 12213a40ed3dSBarry Smith PetscFunctionReturn(0); 122217ab2063SBarry Smith } 122317ab2063SBarry Smith 122417ab2063SBarry Smith extern int MatLUFactorSymbolic_SeqAIJ(Mat,IS,IS,double,Mat*); 122517ab2063SBarry Smith extern int MatLUFactorNumeric_SeqAIJ(Mat,Mat*); 122617ab2063SBarry Smith extern int MatLUFactor_SeqAIJ(Mat,IS,IS,double); 122717ab2063SBarry Smith extern int MatSolve_SeqAIJ(Mat,Vec,Vec); 122817ab2063SBarry Smith extern int MatSolveAdd_SeqAIJ(Mat,Vec,Vec,Vec); 122917ab2063SBarry Smith extern int MatSolveTrans_SeqAIJ(Mat,Vec,Vec); 123017ab2063SBarry Smith extern int MatSolveTransAdd_SeqAIJ(Mat,Vec,Vec,Vec); 123117ab2063SBarry Smith 12325615d1e5SSatish Balay #undef __FUNC__ 12335615d1e5SSatish Balay #define __FUNC__ "MatZeroRows_SeqAIJ" 12348f6be9afSLois Curfman McInnes int MatZeroRows_SeqAIJ(Mat A,IS is,Scalar *diag) 123517ab2063SBarry Smith { 1236416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 1237416022c9SBarry Smith int i,ierr,N, *rows,m = a->m - 1,shift = a->indexshift; 123817ab2063SBarry Smith 12393a40ed3dSBarry Smith PetscFunctionBegin; 124077c4ece6SBarry Smith ierr = ISGetSize(is,&N); CHKERRQ(ierr); 124117ab2063SBarry Smith ierr = ISGetIndices(is,&rows); CHKERRQ(ierr); 124217ab2063SBarry Smith if (diag) { 124317ab2063SBarry Smith for ( i=0; i<N; i++ ) { 1244a8c6a408SBarry Smith if (rows[i] < 0 || rows[i] > m) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"row out of range"); 12457ae801bdSBarry Smith if (a->ilen[rows[i]] > 0) { 1246416022c9SBarry Smith a->ilen[rows[i]] = 1; 1247416022c9SBarry Smith a->a[a->i[rows[i]]+shift] = *diag; 1248416022c9SBarry Smith a->j[a->i[rows[i]]+shift] = rows[i]+shift; 12497ae801bdSBarry Smith } else { /* in case row was completely empty */ 1250d64ed03dSBarry Smith ierr = MatSetValues_SeqAIJ(A,1,&rows[i],1,&rows[i],diag,INSERT_VALUES);CHKERRQ(ierr); 125117ab2063SBarry Smith } 125217ab2063SBarry Smith } 12533a40ed3dSBarry Smith } else { 125417ab2063SBarry Smith for ( i=0; i<N; i++ ) { 1255a8c6a408SBarry Smith if (rows[i] < 0 || rows[i] > m) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"row out of range"); 1256416022c9SBarry Smith a->ilen[rows[i]] = 0; 125717ab2063SBarry Smith } 125817ab2063SBarry Smith } 12597ae801bdSBarry Smith ierr = ISRestoreIndices(is,&rows);CHKERRQ(ierr); 126043a90d84SBarry Smith ierr = MatAssemblyEnd_SeqAIJ(A,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 12613a40ed3dSBarry Smith PetscFunctionReturn(0); 126217ab2063SBarry Smith } 126317ab2063SBarry Smith 12645615d1e5SSatish Balay #undef __FUNC__ 12655615d1e5SSatish Balay #define __FUNC__ "MatGetSize_SeqAIJ" 12668f6be9afSLois Curfman McInnes int MatGetSize_SeqAIJ(Mat A,int *m,int *n) 126717ab2063SBarry Smith { 1268416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 12693a40ed3dSBarry Smith 12703a40ed3dSBarry Smith PetscFunctionBegin; 12710752156aSBarry Smith if (m) *m = a->m; 12720752156aSBarry Smith if (n) *n = a->n; 12733a40ed3dSBarry Smith PetscFunctionReturn(0); 127417ab2063SBarry Smith } 127517ab2063SBarry Smith 12765615d1e5SSatish Balay #undef __FUNC__ 12775615d1e5SSatish Balay #define __FUNC__ "MatGetOwnershipRange_SeqAIJ" 12788f6be9afSLois Curfman McInnes int MatGetOwnershipRange_SeqAIJ(Mat A,int *m,int *n) 127917ab2063SBarry Smith { 1280416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 12813a40ed3dSBarry Smith 12823a40ed3dSBarry Smith PetscFunctionBegin; 1283416022c9SBarry Smith *m = 0; *n = a->m; 12843a40ed3dSBarry Smith PetscFunctionReturn(0); 128517ab2063SBarry Smith } 1286026e39d0SSatish Balay 12875615d1e5SSatish Balay #undef __FUNC__ 12885615d1e5SSatish Balay #define __FUNC__ "MatGetRow_SeqAIJ" 12894e093b46SBarry Smith int MatGetRow_SeqAIJ(Mat A,int row,int *nz,int **idx,Scalar **v) 129017ab2063SBarry Smith { 1291416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 1292c456f294SBarry Smith int *itmp,i,shift = a->indexshift; 129317ab2063SBarry Smith 12943a40ed3dSBarry Smith PetscFunctionBegin; 1295a8c6a408SBarry Smith if (row < 0 || row >= a->m) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Row out of range"); 129617ab2063SBarry Smith 1297416022c9SBarry Smith *nz = a->i[row+1] - a->i[row]; 1298416022c9SBarry Smith if (v) *v = a->a + a->i[row] + shift; 129917ab2063SBarry Smith if (idx) { 1300416022c9SBarry Smith itmp = a->j + a->i[row] + shift; 13014e093b46SBarry Smith if (*nz && shift) { 13020452661fSBarry Smith *idx = (int *) PetscMalloc( (*nz)*sizeof(int) ); CHKPTRQ(*idx); 130317ab2063SBarry Smith for ( i=0; i<(*nz); i++ ) {(*idx)[i] = itmp[i] + shift;} 13044e093b46SBarry Smith } else if (*nz) { 13054e093b46SBarry Smith *idx = itmp; 130617ab2063SBarry Smith } 130717ab2063SBarry Smith else *idx = 0; 130817ab2063SBarry Smith } 13093a40ed3dSBarry Smith PetscFunctionReturn(0); 131017ab2063SBarry Smith } 131117ab2063SBarry Smith 13125615d1e5SSatish Balay #undef __FUNC__ 13135615d1e5SSatish Balay #define __FUNC__ "MatRestoreRow_SeqAIJ" 13144e093b46SBarry Smith int MatRestoreRow_SeqAIJ(Mat A,int row,int *nz,int **idx,Scalar **v) 131517ab2063SBarry Smith { 13164e093b46SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 13173a40ed3dSBarry Smith 13183a40ed3dSBarry Smith PetscFunctionBegin; 13194e093b46SBarry Smith if (idx) {if (*idx && a->indexshift) PetscFree(*idx);} 13203a40ed3dSBarry Smith PetscFunctionReturn(0); 132117ab2063SBarry Smith } 132217ab2063SBarry Smith 13235615d1e5SSatish Balay #undef __FUNC__ 13245615d1e5SSatish Balay #define __FUNC__ "MatNorm_SeqAIJ" 13258f6be9afSLois Curfman McInnes int MatNorm_SeqAIJ(Mat A,NormType type,double *norm) 132617ab2063SBarry Smith { 1327416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 1328416022c9SBarry Smith Scalar *v = a->a; 132917ab2063SBarry Smith double sum = 0.0; 1330416022c9SBarry Smith int i, j,shift = a->indexshift; 133117ab2063SBarry Smith 13323a40ed3dSBarry Smith PetscFunctionBegin; 133317ab2063SBarry Smith if (type == NORM_FROBENIUS) { 1334416022c9SBarry Smith for (i=0; i<a->nz; i++ ) { 13353a40ed3dSBarry Smith #if defined(USE_PETSC_COMPLEX) 1336e20fef11SSatish Balay sum += PetscReal(PetscConj(*v)*(*v)); v++; 133717ab2063SBarry Smith #else 133817ab2063SBarry Smith sum += (*v)*(*v); v++; 133917ab2063SBarry Smith #endif 134017ab2063SBarry Smith } 134117ab2063SBarry Smith *norm = sqrt(sum); 13423a40ed3dSBarry Smith } else if (type == NORM_1) { 134317ab2063SBarry Smith double *tmp; 1344416022c9SBarry Smith int *jj = a->j; 134566963ce1SSatish Balay tmp = (double *) PetscMalloc( (a->n+1)*sizeof(double) ); CHKPTRQ(tmp); 1346cddf8d76SBarry Smith PetscMemzero(tmp,a->n*sizeof(double)); 134717ab2063SBarry Smith *norm = 0.0; 1348416022c9SBarry Smith for ( j=0; j<a->nz; j++ ) { 1349a2744918SBarry Smith tmp[*jj++ + shift] += PetscAbsScalar(*v); v++; 135017ab2063SBarry Smith } 1351416022c9SBarry Smith for ( j=0; j<a->n; j++ ) { 135217ab2063SBarry Smith if (tmp[j] > *norm) *norm = tmp[j]; 135317ab2063SBarry Smith } 13540452661fSBarry Smith PetscFree(tmp); 13553a40ed3dSBarry Smith } else if (type == NORM_INFINITY) { 135617ab2063SBarry Smith *norm = 0.0; 1357416022c9SBarry Smith for ( j=0; j<a->m; j++ ) { 1358416022c9SBarry Smith v = a->a + a->i[j] + shift; 135917ab2063SBarry Smith sum = 0.0; 1360416022c9SBarry Smith for ( i=0; i<a->i[j+1]-a->i[j]; i++ ) { 1361cddf8d76SBarry Smith sum += PetscAbsScalar(*v); v++; 136217ab2063SBarry Smith } 136317ab2063SBarry Smith if (sum > *norm) *norm = sum; 136417ab2063SBarry Smith } 13653a40ed3dSBarry Smith } else { 1366a8c6a408SBarry Smith SETERRQ(PETSC_ERR_SUP,0,"No support for two norm"); 136717ab2063SBarry Smith } 13683a40ed3dSBarry Smith PetscFunctionReturn(0); 136917ab2063SBarry Smith } 137017ab2063SBarry Smith 13715615d1e5SSatish Balay #undef __FUNC__ 13725615d1e5SSatish Balay #define __FUNC__ "MatTranspose_SeqAIJ" 13738f6be9afSLois Curfman McInnes int MatTranspose_SeqAIJ(Mat A,Mat *B) 137417ab2063SBarry Smith { 1375416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 1376416022c9SBarry Smith Mat C; 1377416022c9SBarry Smith int i, ierr, *aj = a->j, *ai = a->i, m = a->m, len, *col; 1378416022c9SBarry Smith int shift = a->indexshift; 1379d5d45c9bSBarry Smith Scalar *array = a->a; 138017ab2063SBarry Smith 13813a40ed3dSBarry Smith PetscFunctionBegin; 1382a8c6a408SBarry Smith if (B == PETSC_NULL && m != a->n) SETERRQ(PETSC_ERR_ARG_SIZ,0,"Square matrix only for in-place"); 13830452661fSBarry Smith col = (int *) PetscMalloc((1+a->n)*sizeof(int)); CHKPTRQ(col); 1384cddf8d76SBarry Smith PetscMemzero(col,(1+a->n)*sizeof(int)); 138517ab2063SBarry Smith if (shift) { 138617ab2063SBarry Smith for ( i=0; i<ai[m]-1; i++ ) aj[i] -= 1; 138717ab2063SBarry Smith } 138817ab2063SBarry Smith for ( i=0; i<ai[m]+shift; i++ ) col[aj[i]] += 1; 1389416022c9SBarry Smith ierr = MatCreateSeqAIJ(A->comm,a->n,m,0,col,&C); CHKERRQ(ierr); 13900452661fSBarry Smith PetscFree(col); 139117ab2063SBarry Smith for ( i=0; i<m; i++ ) { 139217ab2063SBarry Smith len = ai[i+1]-ai[i]; 1393416022c9SBarry Smith ierr = MatSetValues(C,len,aj,1,&i,array,INSERT_VALUES); CHKERRQ(ierr); 139417ab2063SBarry Smith array += len; aj += len; 139517ab2063SBarry Smith } 139617ab2063SBarry Smith if (shift) { 139717ab2063SBarry Smith for ( i=0; i<ai[m]-1; i++ ) aj[i] += 1; 139817ab2063SBarry Smith } 139917ab2063SBarry Smith 14006d4a8577SBarry Smith ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 14016d4a8577SBarry Smith ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 140217ab2063SBarry Smith 14033638b69dSLois Curfman McInnes if (B != PETSC_NULL) { 1404416022c9SBarry Smith *B = C; 140517ab2063SBarry Smith } else { 1406f830108cSBarry Smith PetscOps *Abops; 14070a6ffc59SBarry Smith MatOps Aops; 1408f830108cSBarry Smith 1409416022c9SBarry Smith /* This isn't really an in-place transpose */ 14100452661fSBarry Smith PetscFree(a->a); 14110452661fSBarry Smith if (!a->singlemalloc) {PetscFree(a->i); PetscFree(a->j);} 14120452661fSBarry Smith if (a->diag) PetscFree(a->diag); 14130452661fSBarry Smith if (a->ilen) PetscFree(a->ilen); 14140452661fSBarry Smith if (a->imax) PetscFree(a->imax); 14150452661fSBarry Smith if (a->solve_work) PetscFree(a->solve_work); 14161073c447SSatish Balay if (a->inode.size) PetscFree(a->inode.size); 14170452661fSBarry Smith PetscFree(a); 1418f830108cSBarry Smith 1419488ecbafSBarry Smith 1420488ecbafSBarry Smith ierr = MapDestroy(A->rmap);CHKERRQ(ierr); 1421488ecbafSBarry Smith ierr = MapDestroy(A->cmap);CHKERRQ(ierr); 1422488ecbafSBarry Smith 1423f830108cSBarry Smith /* 1424f830108cSBarry Smith This is horrible, horrible code. We need to keep the 14258f0f457cSSatish Balay the bops and ops Structures, copy everything from C 14268f0f457cSSatish Balay including the function pointers.. 1427f830108cSBarry Smith */ 14288f0f457cSSatish Balay PetscMemcpy(A->ops,C->ops,sizeof(struct _MatOps)); 14298f0f457cSSatish Balay PetscMemcpy(A->bops,C->bops,sizeof(PetscOps)); 1430f830108cSBarry Smith Abops = A->bops; 1431f830108cSBarry Smith Aops = A->ops; 1432f09e8eb9SSatish Balay PetscMemcpy(A,C,sizeof(struct _p_Mat)); 1433f830108cSBarry Smith A->bops = Abops; 1434f830108cSBarry Smith A->ops = Aops; 143527a8da17SBarry Smith A->qlist = 0; 1436f830108cSBarry Smith 14370452661fSBarry Smith PetscHeaderDestroy(C); 143817ab2063SBarry Smith } 14393a40ed3dSBarry Smith PetscFunctionReturn(0); 144017ab2063SBarry Smith } 144117ab2063SBarry Smith 14425615d1e5SSatish Balay #undef __FUNC__ 14435615d1e5SSatish Balay #define __FUNC__ "MatDiagonalScale_SeqAIJ" 14448f6be9afSLois Curfman McInnes int MatDiagonalScale_SeqAIJ(Mat A,Vec ll,Vec rr) 144517ab2063SBarry Smith { 1446416022c9SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 144717ab2063SBarry Smith Scalar *l,*r,x,*v; 1448e1311b90SBarry Smith int ierr,i,j,m = a->m, n = a->n, M, nz = a->nz, *jj,shift = a->indexshift; 144917ab2063SBarry Smith 14503a40ed3dSBarry Smith PetscFunctionBegin; 145117ab2063SBarry Smith if (ll) { 14523ea7c6a1SSatish Balay /* The local size is used so that VecMPI can be passed to this routine 14533ea7c6a1SSatish Balay by MatDiagonalScale_MPIAIJ */ 1454e1311b90SBarry Smith ierr = VecGetLocalSize(ll,&m);CHKERRQ(ierr); 1455a8c6a408SBarry Smith if (m != a->m) SETERRQ(PETSC_ERR_ARG_SIZ,0,"Left scaling vector wrong length"); 1456e1311b90SBarry Smith ierr = VecGetArray(ll,&l); CHKERRQ(ierr); 1457416022c9SBarry Smith v = a->a; 145817ab2063SBarry Smith for ( i=0; i<m; i++ ) { 145917ab2063SBarry Smith x = l[i]; 1460416022c9SBarry Smith M = a->i[i+1] - a->i[i]; 146117ab2063SBarry Smith for ( j=0; j<M; j++ ) { (*v++) *= x;} 146217ab2063SBarry Smith } 1463e1311b90SBarry Smith ierr = VecRestoreArray(ll,&l); CHKERRQ(ierr); 146444cd7ae7SLois Curfman McInnes PLogFlops(nz); 146517ab2063SBarry Smith } 146617ab2063SBarry Smith if (rr) { 1467e1311b90SBarry Smith ierr = VecGetLocalSize(rr,&n);CHKERRQ(ierr); 1468a8c6a408SBarry Smith if (n != a->n) SETERRQ(PETSC_ERR_ARG_SIZ,0,"Right scaling vector wrong length"); 1469e1311b90SBarry Smith ierr = VecGetArray(rr,&r);CHKERRQ(ierr); 1470416022c9SBarry Smith v = a->a; jj = a->j; 147117ab2063SBarry Smith for ( i=0; i<nz; i++ ) { 147217ab2063SBarry Smith (*v++) *= r[*jj++ + shift]; 147317ab2063SBarry Smith } 1474e1311b90SBarry Smith ierr = VecRestoreArray(rr,&r);CHKERRQ(ierr); 147544cd7ae7SLois Curfman McInnes PLogFlops(nz); 147617ab2063SBarry Smith } 14773a40ed3dSBarry Smith PetscFunctionReturn(0); 147817ab2063SBarry Smith } 147917ab2063SBarry Smith 14805615d1e5SSatish Balay #undef __FUNC__ 14815615d1e5SSatish Balay #define __FUNC__ "MatGetSubMatrix_SeqAIJ" 14827b2a1423SBarry Smith int MatGetSubMatrix_SeqAIJ(Mat A,IS isrow,IS iscol,int csize,MatReuse scall,Mat *B) 148317ab2063SBarry Smith { 1484db02288aSLois Curfman McInnes Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data,*c; 1485d5db1b72SBarry Smith int *smap, i, k, kstart, kend, ierr, oldcols = a->n,*lens; 148699141d43SSatish Balay int row,mat_i,*mat_j,tcol,first,step,*mat_ilen; 1487a2744918SBarry Smith register int sum,lensi; 148899141d43SSatish Balay int *irow, *icol, nrows, ncols, shift = a->indexshift,*ssmap; 148999141d43SSatish Balay int *starts,*j_new,*i_new,*aj = a->j, *ai = a->i,ii,*ailen = a->ilen; 149099141d43SSatish Balay Scalar *a_new,*mat_a; 1491416022c9SBarry Smith Mat C; 1492fee21e36SBarry Smith PetscTruth stride; 149317ab2063SBarry Smith 14943a40ed3dSBarry Smith PetscFunctionBegin; 1495d64ed03dSBarry Smith ierr = ISSorted(isrow,(PetscTruth*)&i);CHKERRQ(ierr); 1496a8c6a408SBarry Smith if (!i) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"ISrow is not sorted"); 1497d64ed03dSBarry Smith ierr = ISSorted(iscol,(PetscTruth*)&i);CHKERRQ(ierr); 1498a8c6a408SBarry Smith if (!i) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"IScol is not sorted"); 149999141d43SSatish Balay 150017ab2063SBarry Smith ierr = ISGetIndices(isrow,&irow); CHKERRQ(ierr); 150117ab2063SBarry Smith ierr = ISGetSize(isrow,&nrows); CHKERRQ(ierr); 150217ab2063SBarry Smith ierr = ISGetSize(iscol,&ncols); CHKERRQ(ierr); 150317ab2063SBarry Smith 1504fee21e36SBarry Smith ierr = ISStrideGetInfo(iscol,&first,&step); CHKERRQ(ierr); 1505fee21e36SBarry Smith ierr = ISStride(iscol,&stride); CHKERRQ(ierr); 1506fee21e36SBarry Smith if (stride && step == 1) { 150702834360SBarry Smith /* special case of contiguous rows */ 150857faeb66SBarry Smith lens = (int *) PetscMalloc((ncols+nrows+1)*sizeof(int)); CHKPTRQ(lens); 150902834360SBarry Smith starts = lens + ncols; 151002834360SBarry Smith /* loop over new rows determining lens and starting points */ 151102834360SBarry Smith for (i=0; i<nrows; i++) { 1512a2744918SBarry Smith kstart = ai[irow[i]]+shift; 1513a2744918SBarry Smith kend = kstart + ailen[irow[i]]; 151402834360SBarry Smith for ( k=kstart; k<kend; k++ ) { 1515d8ced48eSBarry Smith if (aj[k]+shift >= first) { 151602834360SBarry Smith starts[i] = k; 151702834360SBarry Smith break; 151802834360SBarry Smith } 151902834360SBarry Smith } 1520a2744918SBarry Smith sum = 0; 152102834360SBarry Smith while (k < kend) { 1522d8ced48eSBarry Smith if (aj[k++]+shift >= first+ncols) break; 1523a2744918SBarry Smith sum++; 152402834360SBarry Smith } 1525a2744918SBarry Smith lens[i] = sum; 152602834360SBarry Smith } 152702834360SBarry Smith /* create submatrix */ 1528cddf8d76SBarry Smith if (scall == MAT_REUSE_MATRIX) { 152908480c60SBarry Smith int n_cols,n_rows; 153008480c60SBarry Smith ierr = MatGetSize(*B,&n_rows,&n_cols); CHKERRQ(ierr); 1531a8c6a408SBarry Smith if (n_rows != nrows || n_cols != ncols) SETERRQ(PETSC_ERR_ARG_SIZ,0,"Reused submatrix wrong size"); 1532d8ced48eSBarry Smith ierr = MatZeroEntries(*B); CHKERRQ(ierr); 153308480c60SBarry Smith C = *B; 15343a40ed3dSBarry Smith } else { 153502834360SBarry Smith ierr = MatCreateSeqAIJ(A->comm,nrows,ncols,0,lens,&C);CHKERRQ(ierr); 153608480c60SBarry Smith } 1537db02288aSLois Curfman McInnes c = (Mat_SeqAIJ*) C->data; 1538db02288aSLois Curfman McInnes 153902834360SBarry Smith /* loop over rows inserting into submatrix */ 1540db02288aSLois Curfman McInnes a_new = c->a; 1541db02288aSLois Curfman McInnes j_new = c->j; 1542db02288aSLois Curfman McInnes i_new = c->i; 1543db02288aSLois Curfman McInnes i_new[0] = -shift; 154402834360SBarry Smith for (i=0; i<nrows; i++) { 1545a2744918SBarry Smith ii = starts[i]; 1546a2744918SBarry Smith lensi = lens[i]; 1547a2744918SBarry Smith for ( k=0; k<lensi; k++ ) { 1548a2744918SBarry Smith *j_new++ = aj[ii+k] - first; 154902834360SBarry Smith } 1550a2744918SBarry Smith PetscMemcpy(a_new,a->a + starts[i],lensi*sizeof(Scalar)); 1551a2744918SBarry Smith a_new += lensi; 1552a2744918SBarry Smith i_new[i+1] = i_new[i] + lensi; 1553a2744918SBarry Smith c->ilen[i] = lensi; 155402834360SBarry Smith } 15550452661fSBarry Smith PetscFree(lens); 15563a40ed3dSBarry Smith } else { 155702834360SBarry Smith ierr = ISGetIndices(iscol,&icol); CHKERRQ(ierr); 15580452661fSBarry Smith smap = (int *) PetscMalloc((1+oldcols)*sizeof(int)); CHKPTRQ(smap); 155902834360SBarry Smith ssmap = smap + shift; 156099141d43SSatish Balay lens = (int *) PetscMalloc((1+nrows)*sizeof(int)); CHKPTRQ(lens); 1561cddf8d76SBarry Smith PetscMemzero(smap,oldcols*sizeof(int)); 156217ab2063SBarry Smith for ( i=0; i<ncols; i++ ) smap[icol[i]] = i+1; 156302834360SBarry Smith /* determine lens of each row */ 156402834360SBarry Smith for (i=0; i<nrows; i++) { 1565d8ced48eSBarry Smith kstart = ai[irow[i]]+shift; 156602834360SBarry Smith kend = kstart + a->ilen[irow[i]]; 156702834360SBarry Smith lens[i] = 0; 156802834360SBarry Smith for ( k=kstart; k<kend; k++ ) { 1569d8ced48eSBarry Smith if (ssmap[aj[k]]) { 157002834360SBarry Smith lens[i]++; 157102834360SBarry Smith } 157202834360SBarry Smith } 157302834360SBarry Smith } 157417ab2063SBarry Smith /* Create and fill new matrix */ 1575a2744918SBarry Smith if (scall == MAT_REUSE_MATRIX) { 157699141d43SSatish Balay c = (Mat_SeqAIJ *)((*B)->data); 1577a8c6a408SBarry Smith if (c->m != nrows || c->n != ncols) SETERRQ(PETSC_ERR_ARG_SIZ,0,"Cannot reuse matrix. wrong size"); 157899141d43SSatish Balay if (PetscMemcmp(c->ilen,lens, c->m *sizeof(int))) { 1579a8c6a408SBarry Smith SETERRQ(PETSC_ERR_ARG_SIZ,0,"Cannot reuse matrix. wrong no of nonzeros"); 158099141d43SSatish Balay } 158199141d43SSatish Balay PetscMemzero(c->ilen,c->m*sizeof(int)); 158208480c60SBarry Smith C = *B; 15833a40ed3dSBarry Smith } else { 158402834360SBarry Smith ierr = MatCreateSeqAIJ(A->comm,nrows,ncols,0,lens,&C);CHKERRQ(ierr); 158508480c60SBarry Smith } 158699141d43SSatish Balay c = (Mat_SeqAIJ *)(C->data); 158717ab2063SBarry Smith for (i=0; i<nrows; i++) { 158899141d43SSatish Balay row = irow[i]; 158999141d43SSatish Balay kstart = ai[row]+shift; 159099141d43SSatish Balay kend = kstart + a->ilen[row]; 159199141d43SSatish Balay mat_i = c->i[i]+shift; 159299141d43SSatish Balay mat_j = c->j + mat_i; 159399141d43SSatish Balay mat_a = c->a + mat_i; 159499141d43SSatish Balay mat_ilen = c->ilen + i; 159517ab2063SBarry Smith for ( k=kstart; k<kend; k++ ) { 159699141d43SSatish Balay if ((tcol=ssmap[a->j[k]])) { 159799141d43SSatish Balay *mat_j++ = tcol - (!shift); 159899141d43SSatish Balay *mat_a++ = a->a[k]; 159999141d43SSatish Balay (*mat_ilen)++; 160099141d43SSatish Balay 160117ab2063SBarry Smith } 160217ab2063SBarry Smith } 160317ab2063SBarry Smith } 160402834360SBarry Smith /* Free work space */ 160502834360SBarry Smith ierr = ISRestoreIndices(iscol,&icol); CHKERRQ(ierr); 160699141d43SSatish Balay PetscFree(smap); PetscFree(lens); 160702834360SBarry Smith } 16086d4a8577SBarry Smith ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 16096d4a8577SBarry Smith ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 161017ab2063SBarry Smith 161117ab2063SBarry Smith ierr = ISRestoreIndices(isrow,&irow); CHKERRQ(ierr); 1612416022c9SBarry Smith *B = C; 16133a40ed3dSBarry Smith PetscFunctionReturn(0); 161417ab2063SBarry Smith } 161517ab2063SBarry Smith 1616a871dcd8SBarry Smith /* 161763b91edcSBarry Smith note: This can only work for identity for row and col. It would 161863b91edcSBarry Smith be good to check this and otherwise generate an error. 1619a871dcd8SBarry Smith */ 16205615d1e5SSatish Balay #undef __FUNC__ 16215615d1e5SSatish Balay #define __FUNC__ "MatILUFactor_SeqAIJ" 16225ef9f2a5SBarry Smith int MatILUFactor_SeqAIJ(Mat inA,IS row,IS col,MatILUInfo *info) 1623a871dcd8SBarry Smith { 162463b91edcSBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) inA->data; 162508480c60SBarry Smith int ierr; 162663b91edcSBarry Smith Mat outA; 162763b91edcSBarry Smith 16283a40ed3dSBarry Smith PetscFunctionBegin; 16295ef9f2a5SBarry Smith if (info && info->levels != 0) SETERRQ(PETSC_ERR_SUP,0,"Only levels=0 supported"); 1630a871dcd8SBarry Smith 163163b91edcSBarry Smith outA = inA; 163263b91edcSBarry Smith inA->factor = FACTOR_LU; 163363b91edcSBarry Smith a->row = row; 163463b91edcSBarry Smith a->col = col; 163563b91edcSBarry Smith 1636f0ec6fceSSatish Balay /* Create the invert permutation so that it can be used in MatLUFactorNumeric() */ 1637f0ec6fceSSatish Balay ierr = ISInvertPermutation(col,&(a->icol)); CHKERRQ(ierr); 16381e4dd532SSatish Balay PLogObjectParent(inA,a->icol); 1639f0ec6fceSSatish Balay 164094a9d846SBarry Smith if (!a->solve_work) { /* this matrix may have been factored before */ 16410452661fSBarry Smith a->solve_work = (Scalar *) PetscMalloc( (a->m+1)*sizeof(Scalar));CHKPTRQ(a->solve_work); 164294a9d846SBarry Smith } 164363b91edcSBarry Smith 164408480c60SBarry Smith if (!a->diag) { 164508480c60SBarry Smith ierr = MatMarkDiag_SeqAIJ(inA); CHKERRQ(ierr); 164663b91edcSBarry Smith } 164763b91edcSBarry Smith ierr = MatLUFactorNumeric_SeqAIJ(inA,&outA); CHKERRQ(ierr); 16483a40ed3dSBarry Smith PetscFunctionReturn(0); 1649a871dcd8SBarry Smith } 1650a871dcd8SBarry Smith 165174cdf0dfSBarry Smith #include "pinclude/blaslapack.h" 16525615d1e5SSatish Balay #undef __FUNC__ 16535615d1e5SSatish Balay #define __FUNC__ "MatScale_SeqAIJ" 16548f6be9afSLois Curfman McInnes int MatScale_SeqAIJ(Scalar *alpha,Mat inA) 1655f0b747eeSBarry Smith { 1656f0b747eeSBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) inA->data; 1657f0b747eeSBarry Smith int one = 1; 16583a40ed3dSBarry Smith 16593a40ed3dSBarry Smith PetscFunctionBegin; 1660f0b747eeSBarry Smith BLscal_( &a->nz, alpha, a->a, &one ); 1661f0b747eeSBarry Smith PLogFlops(a->nz); 16623a40ed3dSBarry Smith PetscFunctionReturn(0); 1663f0b747eeSBarry Smith } 1664f0b747eeSBarry Smith 16655615d1e5SSatish Balay #undef __FUNC__ 16665615d1e5SSatish Balay #define __FUNC__ "MatGetSubMatrices_SeqAIJ" 16677b2a1423SBarry Smith int MatGetSubMatrices_SeqAIJ(Mat A,int n, IS *irow,IS *icol,MatReuse scall,Mat **B) 1668cddf8d76SBarry Smith { 1669cddf8d76SBarry Smith int ierr,i; 1670cddf8d76SBarry Smith 16713a40ed3dSBarry Smith PetscFunctionBegin; 1672cddf8d76SBarry Smith if (scall == MAT_INITIAL_MATRIX) { 16730452661fSBarry Smith *B = (Mat *) PetscMalloc( (n+1)*sizeof(Mat) ); CHKPTRQ(*B); 1674cddf8d76SBarry Smith } 1675cddf8d76SBarry Smith 1676cddf8d76SBarry Smith for ( i=0; i<n; i++ ) { 16776a6a5d1dSBarry Smith ierr = MatGetSubMatrix_SeqAIJ(A,irow[i],icol[i],PETSC_DECIDE,scall,&(*B)[i]);CHKERRQ(ierr); 1678cddf8d76SBarry Smith } 16793a40ed3dSBarry Smith PetscFunctionReturn(0); 1680cddf8d76SBarry Smith } 1681cddf8d76SBarry Smith 16825615d1e5SSatish Balay #undef __FUNC__ 16835615d1e5SSatish Balay #define __FUNC__ "MatGetBlockSize_SeqAIJ" 16848f6be9afSLois Curfman McInnes int MatGetBlockSize_SeqAIJ(Mat A, int *bs) 16855a838052SSatish Balay { 1686f830108cSBarry Smith PetscFunctionBegin; 16875a838052SSatish Balay *bs = 1; 16883a40ed3dSBarry Smith PetscFunctionReturn(0); 16895a838052SSatish Balay } 16905a838052SSatish Balay 16915615d1e5SSatish Balay #undef __FUNC__ 16925615d1e5SSatish Balay #define __FUNC__ "MatIncreaseOverlap_SeqAIJ" 16938f6be9afSLois Curfman McInnes int MatIncreaseOverlap_SeqAIJ(Mat A, int is_max, IS *is, int ov) 16944dcbc457SBarry Smith { 1695e4d965acSSatish Balay Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 169606763907SSatish Balay int shift, row, i,j,k,l,m,n, *idx,ierr, *nidx, isz, val; 16978a047759SSatish Balay int start, end, *ai, *aj; 1698bbd702dbSSatish Balay BT table; 1699bbd702dbSSatish Balay 17003a40ed3dSBarry Smith PetscFunctionBegin; 17018a047759SSatish Balay shift = a->indexshift; 1702e4d965acSSatish Balay m = a->m; 1703e4d965acSSatish Balay ai = a->i; 17048a047759SSatish Balay aj = a->j+shift; 17058a047759SSatish Balay 1706a8c6a408SBarry Smith if (ov < 0) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"illegal overlap value used"); 170706763907SSatish Balay 170806763907SSatish Balay nidx = (int *) PetscMalloc((m+1)*sizeof(int)); CHKPTRQ(nidx); 1709bbd702dbSSatish Balay ierr = BTCreate(m,table); CHKERRQ(ierr); 171006763907SSatish Balay 1711e4d965acSSatish Balay for ( i=0; i<is_max; i++ ) { 1712b97fc60eSLois Curfman McInnes /* Initialize the two local arrays */ 1713e4d965acSSatish Balay isz = 0; 1714bbd702dbSSatish Balay BTMemzero(m,table); 1715e4d965acSSatish Balay 1716e4d965acSSatish Balay /* Extract the indices, assume there can be duplicate entries */ 17174dcbc457SBarry Smith ierr = ISGetIndices(is[i],&idx); CHKERRQ(ierr); 171877c4ece6SBarry Smith ierr = ISGetSize(is[i],&n); CHKERRQ(ierr); 1719e4d965acSSatish Balay 1720dd097bc3SLois Curfman McInnes /* Enter these into the temp arrays. I.e., mark table[row], enter row into new index */ 1721e4d965acSSatish Balay for ( j=0; j<n ; ++j){ 1722bbd702dbSSatish Balay if(!BTLookupSet(table, idx[j])) { nidx[isz++] = idx[j];} 17234dcbc457SBarry Smith } 172406763907SSatish Balay ierr = ISRestoreIndices(is[i],&idx); CHKERRQ(ierr); 172506763907SSatish Balay ierr = ISDestroy(is[i]); CHKERRQ(ierr); 1726e4d965acSSatish Balay 172704a348a9SBarry Smith k = 0; 172804a348a9SBarry Smith for ( j=0; j<ov; j++){ /* for each overlap */ 172904a348a9SBarry Smith n = isz; 173006763907SSatish Balay for ( ; k<n ; k++){ /* do only those rows in nidx[k], which are not done yet */ 1731e4d965acSSatish Balay row = nidx[k]; 1732e4d965acSSatish Balay start = ai[row]; 1733e4d965acSSatish Balay end = ai[row+1]; 173404a348a9SBarry Smith for ( l = start; l<end ; l++){ 17358a047759SSatish Balay val = aj[l] + shift; 17362a8f2162SSatish Balay if (!BTLookupSet(table,val)) {nidx[isz++] = val;} 1737e4d965acSSatish Balay } 1738e4d965acSSatish Balay } 1739e4d965acSSatish Balay } 1740029af93fSBarry Smith ierr = ISCreateGeneral(PETSC_COMM_SELF, isz, nidx, (is+i)); CHKERRQ(ierr); 1741e4d965acSSatish Balay } 1742bbd702dbSSatish Balay BTDestroy(table); 174306763907SSatish Balay PetscFree(nidx); 17443a40ed3dSBarry Smith PetscFunctionReturn(0); 17454dcbc457SBarry Smith } 174617ab2063SBarry Smith 17470513a670SBarry Smith /* -------------------------------------------------------------- */ 17480513a670SBarry Smith #undef __FUNC__ 17490513a670SBarry Smith #define __FUNC__ "MatPermute_SeqAIJ" 17500513a670SBarry Smith int MatPermute_SeqAIJ(Mat A, IS rowp, IS colp, Mat *B) 17510513a670SBarry Smith { 17520513a670SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 17530513a670SBarry Smith Scalar *vwork; 17540513a670SBarry Smith int i, ierr, nz, m = a->m, n = a->n, *cwork; 17550513a670SBarry Smith int *row,*col,*cnew,j,*lens; 175656cd22aeSBarry Smith IS icolp,irowp; 17570513a670SBarry Smith 17583a40ed3dSBarry Smith PetscFunctionBegin; 175956cd22aeSBarry Smith ierr = ISInvertPermutation(rowp,&irowp); CHKERRQ(ierr); 176056cd22aeSBarry Smith ierr = ISGetIndices(irowp,&row); CHKERRQ(ierr); 176156cd22aeSBarry Smith ierr = ISInvertPermutation(colp,&icolp); CHKERRQ(ierr); 176256cd22aeSBarry Smith ierr = ISGetIndices(icolp,&col); CHKERRQ(ierr); 17630513a670SBarry Smith 17640513a670SBarry Smith /* determine lengths of permuted rows */ 17650513a670SBarry Smith lens = (int *) PetscMalloc( (m+1)*sizeof(int) ); CHKPTRQ(lens); 17660513a670SBarry Smith for (i=0; i<m; i++ ) { 17670513a670SBarry Smith lens[row[i]] = a->i[i+1] - a->i[i]; 17680513a670SBarry Smith } 17690513a670SBarry Smith ierr = MatCreateSeqAIJ(A->comm,m,n,0,lens,B);CHKERRQ(ierr); 17700513a670SBarry Smith PetscFree(lens); 17710513a670SBarry Smith 17720513a670SBarry Smith cnew = (int *) PetscMalloc( n*sizeof(int) ); CHKPTRQ(cnew); 17730513a670SBarry Smith for (i=0; i<m; i++) { 17740513a670SBarry Smith ierr = MatGetRow(A,i,&nz,&cwork,&vwork); CHKERRQ(ierr); 17750513a670SBarry Smith for (j=0; j<nz; j++ ) { cnew[j] = col[cwork[j]];} 17760513a670SBarry Smith ierr = MatSetValues(*B,1,&row[i],nz,cnew,vwork,INSERT_VALUES); CHKERRQ(ierr); 17770513a670SBarry Smith ierr = MatRestoreRow(A,i,&nz,&cwork,&vwork); CHKERRQ(ierr); 17780513a670SBarry Smith } 17790513a670SBarry Smith PetscFree(cnew); 17800513a670SBarry Smith ierr = MatAssemblyBegin(*B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 17810513a670SBarry Smith ierr = MatAssemblyEnd(*B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 178256cd22aeSBarry Smith ierr = ISRestoreIndices(irowp,&row); CHKERRQ(ierr); 178356cd22aeSBarry Smith ierr = ISRestoreIndices(icolp,&col); CHKERRQ(ierr); 178456cd22aeSBarry Smith ierr = ISDestroy(irowp); CHKERRQ(ierr); 178556cd22aeSBarry Smith ierr = ISDestroy(icolp); CHKERRQ(ierr); 17863a40ed3dSBarry Smith PetscFunctionReturn(0); 17870513a670SBarry Smith } 17880513a670SBarry Smith 17895615d1e5SSatish Balay #undef __FUNC__ 17905615d1e5SSatish Balay #define __FUNC__ "MatPrintHelp_SeqAIJ" 1791682d7d0cSBarry Smith int MatPrintHelp_SeqAIJ(Mat A) 1792682d7d0cSBarry Smith { 1793682d7d0cSBarry Smith static int called = 0; 1794682d7d0cSBarry Smith MPI_Comm comm = A->comm; 1795682d7d0cSBarry Smith 17963a40ed3dSBarry Smith PetscFunctionBegin; 17973a40ed3dSBarry Smith if (called) {PetscFunctionReturn(0);} else called = 1; 179876be9ce4SBarry Smith (*PetscHelpPrintf)(comm," Options for MATSEQAIJ and MATMPIAIJ matrix formats (the defaults):\n"); 179976be9ce4SBarry Smith (*PetscHelpPrintf)(comm," -mat_lu_pivotthreshold <threshold>: Set pivoting threshold\n"); 180076be9ce4SBarry Smith (*PetscHelpPrintf)(comm," -mat_aij_oneindex: internal indices begin at 1 instead of the default 0.\n"); 180176be9ce4SBarry Smith (*PetscHelpPrintf)(comm," -mat_aij_no_inode: Do not use inodes\n"); 180276be9ce4SBarry Smith (*PetscHelpPrintf)(comm," -mat_aij_inode_limit <limit>: Set inode limit (max limit=5)\n"); 1803682d7d0cSBarry Smith #if defined(HAVE_ESSL) 180476be9ce4SBarry Smith (*PetscHelpPrintf)(comm," -mat_aij_essl: Use IBM sparse LU factorization and solve.\n"); 1805682d7d0cSBarry Smith #endif 18063a40ed3dSBarry Smith PetscFunctionReturn(0); 1807682d7d0cSBarry Smith } 18088f6be9afSLois Curfman McInnes extern int MatEqual_SeqAIJ(Mat A,Mat B, PetscTruth* flg); 1809a93ec695SBarry Smith extern int MatFDColoringCreate_SeqAIJ(Mat,ISColoring,MatFDColoring); 1810a93ec695SBarry Smith extern int MatColoringPatch_SeqAIJ(Mat,int,int *,ISColoring *); 1811a93ec695SBarry Smith 1812cb5b572fSBarry Smith #undef __FUNC__ 1813cb5b572fSBarry Smith #define __FUNC__ "MatCopy_SeqAIJ" 1814cb5b572fSBarry Smith int MatCopy_SeqAIJ(Mat A,Mat B,MatStructure str) 1815cb5b572fSBarry Smith { 1816be6bf707SBarry Smith int ierr; 1817cb5b572fSBarry Smith 1818cb5b572fSBarry Smith PetscFunctionBegin; 1819be6bf707SBarry Smith if (str == SAME_NONZERO_PATTERN && B->type == MATSEQAIJ) { 1820be6bf707SBarry Smith Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 1821be6bf707SBarry Smith Mat_SeqAIJ *b = (Mat_SeqAIJ *) B->data; 1822be6bf707SBarry Smith 1823be6bf707SBarry Smith if (a->i[a->m]+a->indexshift != b->i[b->m]+a->indexshift) { 1824be6bf707SBarry Smith SETERRQ(1,1,"Number of nonzeros in two matrices are different"); 1825cb5b572fSBarry Smith } 1826be6bf707SBarry Smith PetscMemcpy(b->a,a->a,(a->i[a->m]+a->indexshift)*sizeof(Scalar)); 1827cb5b572fSBarry Smith } else { 1828cb5b572fSBarry Smith ierr = MatCopy_Basic(A,B,str);CHKERRQ(ierr); 1829cb5b572fSBarry Smith } 1830cb5b572fSBarry Smith PetscFunctionReturn(0); 1831cb5b572fSBarry Smith } 1832cb5b572fSBarry Smith 1833682d7d0cSBarry Smith /* -------------------------------------------------------------------*/ 18340a6ffc59SBarry Smith static struct _MatOps MatOps_Values = {MatSetValues_SeqAIJ, 1835cb5b572fSBarry Smith MatGetRow_SeqAIJ, 1836cb5b572fSBarry Smith MatRestoreRow_SeqAIJ, 1837cb5b572fSBarry Smith MatMult_SeqAIJ, 1838cb5b572fSBarry Smith MatMultAdd_SeqAIJ, 1839cb5b572fSBarry Smith MatMultTrans_SeqAIJ, 1840cb5b572fSBarry Smith MatMultTransAdd_SeqAIJ, 1841cb5b572fSBarry Smith MatSolve_SeqAIJ, 1842cb5b572fSBarry Smith MatSolveAdd_SeqAIJ, 1843cb5b572fSBarry Smith MatSolveTrans_SeqAIJ, 1844cb5b572fSBarry Smith MatSolveTransAdd_SeqAIJ, 1845cb5b572fSBarry Smith MatLUFactor_SeqAIJ, 1846cb5b572fSBarry Smith 0, 184717ab2063SBarry Smith MatRelax_SeqAIJ, 184817ab2063SBarry Smith MatTranspose_SeqAIJ, 1849cb5b572fSBarry Smith MatGetInfo_SeqAIJ, 1850cb5b572fSBarry Smith MatEqual_SeqAIJ, 1851cb5b572fSBarry Smith MatGetDiagonal_SeqAIJ, 1852cb5b572fSBarry Smith MatDiagonalScale_SeqAIJ, 1853cb5b572fSBarry Smith MatNorm_SeqAIJ, 1854cb5b572fSBarry Smith 0, 1855cb5b572fSBarry Smith MatAssemblyEnd_SeqAIJ, 185617ab2063SBarry Smith MatCompress_SeqAIJ, 1857cb5b572fSBarry Smith MatSetOption_SeqAIJ, 1858cb5b572fSBarry Smith MatZeroEntries_SeqAIJ, 1859cb5b572fSBarry Smith MatZeroRows_SeqAIJ, 1860cb5b572fSBarry Smith MatLUFactorSymbolic_SeqAIJ, 1861cb5b572fSBarry Smith MatLUFactorNumeric_SeqAIJ, 1862cb5b572fSBarry Smith 0, 1863cb5b572fSBarry Smith 0, 1864cb5b572fSBarry Smith MatGetSize_SeqAIJ, 1865cb5b572fSBarry Smith MatGetSize_SeqAIJ, 1866cb5b572fSBarry Smith MatGetOwnershipRange_SeqAIJ, 1867cb5b572fSBarry Smith MatILUFactorSymbolic_SeqAIJ, 1868cb5b572fSBarry Smith 0, 1869cb5b572fSBarry Smith 0, 1870cb5b572fSBarry Smith 0, 1871be6bf707SBarry Smith MatDuplicate_SeqAIJ, 1872cb5b572fSBarry Smith 0, 1873cb5b572fSBarry Smith 0, 1874cb5b572fSBarry Smith MatILUFactor_SeqAIJ, 1875cb5b572fSBarry Smith 0, 1876cb5b572fSBarry Smith 0, 1877cb5b572fSBarry Smith MatGetSubMatrices_SeqAIJ, 1878cb5b572fSBarry Smith MatIncreaseOverlap_SeqAIJ, 1879cb5b572fSBarry Smith MatGetValues_SeqAIJ, 1880cb5b572fSBarry Smith MatCopy_SeqAIJ, 1881f0b747eeSBarry Smith MatPrintHelp_SeqAIJ, 1882cb5b572fSBarry Smith MatScale_SeqAIJ, 1883cb5b572fSBarry Smith 0, 1884cb5b572fSBarry Smith 0, 18856945ee14SBarry Smith MatILUDTFactor_SeqAIJ, 18866945ee14SBarry Smith MatGetBlockSize_SeqAIJ, 18873b2fbd54SBarry Smith MatGetRowIJ_SeqAIJ, 18883b2fbd54SBarry Smith MatRestoreRowIJ_SeqAIJ, 18893b2fbd54SBarry Smith MatGetColumnIJ_SeqAIJ, 1890a93ec695SBarry Smith MatRestoreColumnIJ_SeqAIJ, 1891a93ec695SBarry Smith MatFDColoringCreate_SeqAIJ, 18920513a670SBarry Smith MatColoringPatch_SeqAIJ, 18930513a670SBarry Smith 0, 1894cda55fadSBarry Smith MatPermute_SeqAIJ, 1895cda55fadSBarry Smith 0, 1896cda55fadSBarry Smith 0, 1897cda55fadSBarry Smith 0, 1898cda55fadSBarry Smith 0, 1899cda55fadSBarry Smith MatGetMaps_Petsc}; 190017ab2063SBarry Smith 190117ab2063SBarry Smith extern int MatUseSuperLU_SeqAIJ(Mat); 190217ab2063SBarry Smith extern int MatUseEssl_SeqAIJ(Mat); 190317ab2063SBarry Smith extern int MatUseDXML_SeqAIJ(Mat); 190417ab2063SBarry Smith 1905fb2e594dSBarry Smith EXTERN_C_BEGIN 19065615d1e5SSatish Balay #undef __FUNC__ 1907bef8e0ddSBarry Smith #define __FUNC__ "MatSeqAIJSetColumnIndices_SeqAIJ" 1908bef8e0ddSBarry Smith int MatSeqAIJSetColumnIndices_SeqAIJ(Mat mat,int *indices) 1909bef8e0ddSBarry Smith { 1910bef8e0ddSBarry Smith Mat_SeqAIJ *aij = (Mat_SeqAIJ *)mat->data; 1911bef8e0ddSBarry Smith int i,nz,n; 1912bef8e0ddSBarry Smith 1913bef8e0ddSBarry Smith PetscFunctionBegin; 1914bef8e0ddSBarry Smith if (aij->indexshift) SETERRQ(1,1,"No support with 1 based indexing"); 1915bef8e0ddSBarry Smith 1916bef8e0ddSBarry Smith nz = aij->maxnz; 1917bef8e0ddSBarry Smith n = aij->n; 1918bef8e0ddSBarry Smith for (i=0; i<nz; i++) { 1919bef8e0ddSBarry Smith aij->j[i] = indices[i]; 1920bef8e0ddSBarry Smith } 1921bef8e0ddSBarry Smith aij->nz = nz; 1922bef8e0ddSBarry Smith for ( i=0; i<n; i++ ) { 1923bef8e0ddSBarry Smith aij->ilen[i] = aij->imax[i]; 1924bef8e0ddSBarry Smith } 1925bef8e0ddSBarry Smith 1926bef8e0ddSBarry Smith PetscFunctionReturn(0); 1927bef8e0ddSBarry Smith } 1928fb2e594dSBarry Smith EXTERN_C_END 1929bef8e0ddSBarry Smith 1930bef8e0ddSBarry Smith #undef __FUNC__ 1931bef8e0ddSBarry Smith #define __FUNC__ "MatSeqAIJSetColumnIndices" 1932bef8e0ddSBarry Smith /*@ 1933bef8e0ddSBarry Smith MatSeqAIJSetColumnIndices - Set the column indices for all the rows 1934bef8e0ddSBarry Smith in the matrix. 1935bef8e0ddSBarry Smith 1936bef8e0ddSBarry Smith Input Parameters: 1937bef8e0ddSBarry Smith + mat - the SeqAIJ matrix 1938bef8e0ddSBarry Smith - indices - the column indices 1939bef8e0ddSBarry Smith 1940bef8e0ddSBarry Smith Notes: 1941bef8e0ddSBarry Smith This can be called if you have precomputed the nonzero structure of the 1942bef8e0ddSBarry Smith matrix and want to provide it to the matrix object to improve the performance 1943bef8e0ddSBarry Smith of the MatSetValues() operation. 1944bef8e0ddSBarry Smith 1945bef8e0ddSBarry Smith You MUST have set the correct numbers of nonzeros per row in the call to 1946bef8e0ddSBarry Smith MatCreateSeqAIJ(). 1947bef8e0ddSBarry Smith 1948bef8e0ddSBarry Smith MUST be called before any calls to MatSetValues(); 1949bef8e0ddSBarry Smith 1950bef8e0ddSBarry Smith @*/ 1951bef8e0ddSBarry Smith int MatSeqAIJSetColumnIndices(Mat mat,int *indices) 1952bef8e0ddSBarry Smith { 1953bef8e0ddSBarry Smith int ierr,(*f)(Mat,int *); 1954bef8e0ddSBarry Smith 1955bef8e0ddSBarry Smith PetscFunctionBegin; 1956bef8e0ddSBarry Smith PetscValidHeaderSpecific(mat,MAT_COOKIE); 1957bef8e0ddSBarry Smith ierr = PetscObjectQueryFunction((PetscObject)mat,"MatSeqAIJSetColumnIndices_C",(void **)&f); 1958bef8e0ddSBarry Smith CHKERRQ(ierr); 1959bef8e0ddSBarry Smith if (f) { 1960bef8e0ddSBarry Smith ierr = (*f)(mat,indices);CHKERRQ(ierr); 1961bef8e0ddSBarry Smith } else { 1962bef8e0ddSBarry Smith SETERRQ(1,1,"Wrong type of matrix to set column indices"); 1963bef8e0ddSBarry Smith } 1964bef8e0ddSBarry Smith PetscFunctionReturn(0); 1965bef8e0ddSBarry Smith } 1966bef8e0ddSBarry Smith 1967be6bf707SBarry Smith /* ----------------------------------------------------------------------------------------*/ 1968be6bf707SBarry Smith 1969fb2e594dSBarry Smith EXTERN_C_BEGIN 1970be6bf707SBarry Smith #undef __FUNC__ 1971be6bf707SBarry Smith #define __FUNC__ "MatStoreValues_SeqAIJ" 1972be6bf707SBarry Smith int MatStoreValues_SeqAIJ(Mat mat) 1973be6bf707SBarry Smith { 1974be6bf707SBarry Smith Mat_SeqAIJ *aij = (Mat_SeqAIJ *)mat->data; 1975be6bf707SBarry Smith int nz = aij->i[aij->m]+aij->indexshift; 1976be6bf707SBarry Smith 1977be6bf707SBarry Smith PetscFunctionBegin; 1978be6bf707SBarry Smith if (aij->nonew != 1) { 1979be6bf707SBarry Smith SETERRQ(1,1,"Must call MatSetOption(A,MAT_NO_NEW_NONZERO_LOCATIONS);first"); 1980be6bf707SBarry Smith } 1981be6bf707SBarry Smith 1982be6bf707SBarry Smith /* allocate space for values if not already there */ 1983be6bf707SBarry Smith if (!aij->saved_values) { 1984be6bf707SBarry Smith aij->saved_values = (Scalar *) PetscMalloc(nz*sizeof(Scalar));CHKPTRQ(aij->saved_values); 1985be6bf707SBarry Smith } 1986be6bf707SBarry Smith 1987be6bf707SBarry Smith /* copy values over */ 1988be6bf707SBarry Smith PetscMemcpy(aij->saved_values,aij->a,nz*sizeof(Scalar)); 1989be6bf707SBarry Smith PetscFunctionReturn(0); 1990be6bf707SBarry Smith } 1991fb2e594dSBarry Smith EXTERN_C_END 1992be6bf707SBarry Smith 1993be6bf707SBarry Smith #undef __FUNC__ 1994be6bf707SBarry Smith #define __FUNC__ "MatStoreValues" 1995be6bf707SBarry Smith /*@ 1996be6bf707SBarry Smith MatStoreValues - Stashes a copy of the matrix values; this allows, for 1997be6bf707SBarry Smith example, reuse of the linear part of a Jacobian, while recomputing the 1998be6bf707SBarry Smith nonlinear portion. 1999be6bf707SBarry Smith 2000be6bf707SBarry Smith Collect on Mat 2001be6bf707SBarry Smith 2002be6bf707SBarry Smith Input Parameters: 2003be6bf707SBarry Smith . mat - the matrix (currently on AIJ matrices support this option) 2004be6bf707SBarry Smith 2005be6bf707SBarry Smith Common Usage, with SNESSolve(): 2006be6bf707SBarry Smith $ Create Jacobian matrix 2007be6bf707SBarry Smith $ Set linear terms into matrix 2008be6bf707SBarry Smith $ Apply boundary conditions to matrix, at this time matrix must have 2009be6bf707SBarry Smith $ final nonzero structure (i.e. setting the nonlinear terms and applying 2010be6bf707SBarry Smith $ boundary conditions again will not change the nonzero structure 2011be6bf707SBarry Smith $ ierr = MatSetOption(mat,MAT_NO_NEW_NONZERO_LOCATIONS); 2012be6bf707SBarry Smith $ ierr = MatStoreValues(mat); 2013be6bf707SBarry Smith $ Call SNESSetJacobian() with matrix 2014be6bf707SBarry Smith $ In your Jacobian routine 2015be6bf707SBarry Smith $ ierr = MatRetrieveValues(mat); 2016be6bf707SBarry Smith $ Set nonlinear terms in matrix 2017be6bf707SBarry Smith 2018be6bf707SBarry Smith Common Usage without SNESSolve(), i.e. when you handle nonlinear solve yourself: 2019be6bf707SBarry Smith $ // build linear portion of Jacobian 2020be6bf707SBarry Smith $ ierr = MatSetOption(mat,MAT_NO_NEW_NONZERO_LOCATIONS); 2021be6bf707SBarry Smith $ ierr = MatStoreValues(mat); 2022be6bf707SBarry Smith $ loop over nonlinear iterations 2023be6bf707SBarry Smith $ ierr = MatRetrieveValues(mat); 2024be6bf707SBarry Smith $ // call MatSetValues(mat,...) to set nonliner portion of Jacobian 2025be6bf707SBarry Smith $ // call MatAssemblyBegin/End() on matrix 2026be6bf707SBarry Smith $ Solve linear system with Jacobian 2027be6bf707SBarry Smith $ endloop 2028be6bf707SBarry Smith 2029be6bf707SBarry Smith Notes: 2030be6bf707SBarry Smith Matrix must already be assemblied before calling this routine 2031be6bf707SBarry Smith Must set the matrix option MatSetOption(mat,MAT_NO_NEW_NONZERO_LOCATIONS); before 2032be6bf707SBarry Smith calling this routine. 2033be6bf707SBarry Smith 2034be6bf707SBarry Smith .seealso: MatRetrieveValues() 2035be6bf707SBarry Smith 2036be6bf707SBarry Smith @*/ 2037be6bf707SBarry Smith int MatStoreValues(Mat mat) 2038be6bf707SBarry Smith { 2039be6bf707SBarry Smith int ierr,(*f)(Mat); 2040be6bf707SBarry Smith 2041be6bf707SBarry Smith PetscFunctionBegin; 2042be6bf707SBarry Smith PetscValidHeaderSpecific(mat,MAT_COOKIE); 2043be6bf707SBarry Smith if (!mat->assembled) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"Not for unassembled matrix"); 2044be6bf707SBarry Smith if (mat->factor) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"Not for factored matrix"); 2045be6bf707SBarry Smith 2046be6bf707SBarry Smith ierr = PetscObjectQueryFunction((PetscObject)mat,"MatStoreValues_C",(void **)&f); 2047be6bf707SBarry Smith CHKERRQ(ierr); 2048be6bf707SBarry Smith if (f) { 2049be6bf707SBarry Smith ierr = (*f)(mat);CHKERRQ(ierr); 2050be6bf707SBarry Smith } else { 2051be6bf707SBarry Smith SETERRQ(1,1,"Wrong type of matrix to store values"); 2052be6bf707SBarry Smith } 2053be6bf707SBarry Smith PetscFunctionReturn(0); 2054be6bf707SBarry Smith } 2055be6bf707SBarry Smith 2056fb2e594dSBarry Smith EXTERN_C_BEGIN 2057be6bf707SBarry Smith #undef __FUNC__ 2058be6bf707SBarry Smith #define __FUNC__ "MatRetrieveValues_SeqAIJ" 2059be6bf707SBarry Smith int MatRetrieveValues_SeqAIJ(Mat mat) 2060be6bf707SBarry Smith { 2061be6bf707SBarry Smith Mat_SeqAIJ *aij = (Mat_SeqAIJ *)mat->data; 2062be6bf707SBarry Smith int nz = aij->i[aij->m]+aij->indexshift; 2063be6bf707SBarry Smith 2064be6bf707SBarry Smith PetscFunctionBegin; 2065be6bf707SBarry Smith if (aij->nonew != 1) { 2066be6bf707SBarry Smith SETERRQ(1,1,"Must call MatSetOption(A,MAT_NO_NEW_NONZERO_LOCATIONS);first"); 2067be6bf707SBarry Smith } 2068be6bf707SBarry Smith if (!aij->saved_values) { 2069be6bf707SBarry Smith SETERRQ(1,1,"Must call MatStoreValues(A);first"); 2070be6bf707SBarry Smith } 2071be6bf707SBarry Smith 2072be6bf707SBarry Smith /* copy values over */ 2073be6bf707SBarry Smith PetscMemcpy(aij->a, aij->saved_values,nz*sizeof(Scalar)); 2074be6bf707SBarry Smith PetscFunctionReturn(0); 2075be6bf707SBarry Smith } 2076fb2e594dSBarry Smith EXTERN_C_END 2077be6bf707SBarry Smith 2078be6bf707SBarry Smith #undef __FUNC__ 2079be6bf707SBarry Smith #define __FUNC__ "MatRetrieveValues" 2080be6bf707SBarry Smith /*@ 2081be6bf707SBarry Smith MatRetrieveValues - Retrieves the copy of the matrix values; this allows, for 2082be6bf707SBarry Smith example, reuse of the linear part of a Jacobian, while recomputing the 2083be6bf707SBarry Smith nonlinear portion. 2084be6bf707SBarry Smith 2085be6bf707SBarry Smith Collect on Mat 2086be6bf707SBarry Smith 2087be6bf707SBarry Smith Input Parameters: 2088be6bf707SBarry Smith . mat - the matrix (currently on AIJ matrices support this option) 2089be6bf707SBarry Smith 2090be6bf707SBarry Smith .seealso: MatStoreValues() 2091be6bf707SBarry Smith 2092be6bf707SBarry Smith @*/ 2093be6bf707SBarry Smith int MatRetrieveValues(Mat mat) 2094be6bf707SBarry Smith { 2095be6bf707SBarry Smith int ierr,(*f)(Mat); 2096be6bf707SBarry Smith 2097be6bf707SBarry Smith PetscFunctionBegin; 2098be6bf707SBarry Smith PetscValidHeaderSpecific(mat,MAT_COOKIE); 2099be6bf707SBarry Smith if (!mat->assembled) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"Not for unassembled matrix"); 2100be6bf707SBarry Smith if (mat->factor) SETERRQ(PETSC_ERR_ARG_WRONGSTATE,0,"Not for factored matrix"); 2101be6bf707SBarry Smith 2102be6bf707SBarry Smith ierr = PetscObjectQueryFunction((PetscObject)mat,"MatRetrieveValues_C",(void **)&f); 2103be6bf707SBarry Smith CHKERRQ(ierr); 2104be6bf707SBarry Smith if (f) { 2105be6bf707SBarry Smith ierr = (*f)(mat);CHKERRQ(ierr); 2106be6bf707SBarry Smith } else { 2107be6bf707SBarry Smith SETERRQ(1,1,"Wrong type of matrix to retrieve values"); 2108be6bf707SBarry Smith } 2109be6bf707SBarry Smith PetscFunctionReturn(0); 2110be6bf707SBarry Smith } 2111be6bf707SBarry Smith 2112be6bf707SBarry Smith /* --------------------------------------------------------------------------------*/ 2113cb5b572fSBarry Smith 2114bef8e0ddSBarry Smith #undef __FUNC__ 21155615d1e5SSatish Balay #define __FUNC__ "MatCreateSeqAIJ" 211617ab2063SBarry Smith /*@C 2117682d7d0cSBarry Smith MatCreateSeqAIJ - Creates a sparse matrix in AIJ (compressed row) format 21180d15e28bSLois Curfman McInnes (the default parallel PETSc format). For good matrix assembly performance 21196e62573dSLois Curfman McInnes the user should preallocate the matrix storage by setting the parameter nz 21202bd5e0b2SLois Curfman McInnes (or the array nzz). By setting these parameters accurately, performance 21212bd5e0b2SLois Curfman McInnes during matrix assembly can be increased by more than a factor of 50. 212217ab2063SBarry Smith 2123db81eaa0SLois Curfman McInnes Collective on MPI_Comm 2124db81eaa0SLois Curfman McInnes 212517ab2063SBarry Smith Input Parameters: 2126db81eaa0SLois Curfman McInnes + comm - MPI communicator, set to PETSC_COMM_SELF 212717ab2063SBarry Smith . m - number of rows 212817ab2063SBarry Smith . n - number of columns 212917ab2063SBarry Smith . nz - number of nonzeros per row (same for all rows) 2130db81eaa0SLois Curfman McInnes - nzz - array containing the number of nonzeros in the various rows 21312bd5e0b2SLois Curfman McInnes (possibly different for each row) or PETSC_NULL 213217ab2063SBarry Smith 213317ab2063SBarry Smith Output Parameter: 2134416022c9SBarry Smith . A - the matrix 213517ab2063SBarry Smith 2136b259b22eSLois Curfman McInnes Notes: 213717ab2063SBarry Smith The AIJ format (also called the Yale sparse matrix format or 213817ab2063SBarry Smith compressed row storage), is fully compatible with standard Fortran 77 21390002213bSLois Curfman McInnes storage. That is, the stored row and column indices can begin at 214044cd7ae7SLois Curfman McInnes either one (as in Fortran) or zero. See the users' manual for details. 214117ab2063SBarry Smith 214217ab2063SBarry Smith Specify the preallocated storage with either nz or nnz (not both). 2143a40aa06bSLois Curfman McInnes Set nz=PETSC_DEFAULT and nnz=PETSC_NULL for PETSc to control dynamic memory 21443d323bbdSBarry Smith allocation. For large problems you MUST preallocate memory or you 21456da5968aSLois Curfman McInnes will get TERRIBLE performance, see the users' manual chapter on matrices. 214617ab2063SBarry Smith 2147682d7d0cSBarry Smith By default, this format uses inodes (identical nodes) when possible, to 21484fca80b9SLois Curfman McInnes improve numerical efficiency of matrix-vector products and solves. We 2149682d7d0cSBarry Smith search for consecutive rows with the same nonzero structure, thereby 21506c7ebb05SLois Curfman McInnes reusing matrix information to achieve increased efficiency. 21516c7ebb05SLois Curfman McInnes 21526c7ebb05SLois Curfman McInnes Options Database Keys: 2153db81eaa0SLois Curfman McInnes + -mat_aij_no_inode - Do not use inodes 2154db81eaa0SLois Curfman McInnes . -mat_aij_inode_limit <limit> - Sets inode limit (max limit=5) 2155db81eaa0SLois Curfman McInnes - -mat_aij_oneindex - Internally use indexing starting at 1 2156db81eaa0SLois Curfman McInnes rather than 0. Note that when calling MatSetValues(), 2157db81eaa0SLois Curfman McInnes the user still MUST index entries starting at 0! 215817ab2063SBarry Smith 2159027ccd11SLois Curfman McInnes Level: intermediate 2160027ccd11SLois Curfman McInnes 2161bef8e0ddSBarry Smith .seealso: MatCreate(), MatCreateMPIAIJ(), MatSetValues(), MatSeqAIJSetColumnIndices() 216217ab2063SBarry Smith @*/ 2163416022c9SBarry Smith int MatCreateSeqAIJ(MPI_Comm comm,int m,int n,int nz,int *nnz, Mat *A) 216417ab2063SBarry Smith { 2165416022c9SBarry Smith Mat B; 2166416022c9SBarry Smith Mat_SeqAIJ *b; 21676945ee14SBarry Smith int i, len, ierr, flg,size; 21686945ee14SBarry Smith 21693a40ed3dSBarry Smith PetscFunctionBegin; 21706945ee14SBarry Smith MPI_Comm_size(comm,&size); 2171a8c6a408SBarry Smith if (size > 1) SETERRQ(PETSC_ERR_ARG_OUTOFRANGE,0,"Comm must be of size 1"); 2172d5d45c9bSBarry Smith 2173416022c9SBarry Smith *A = 0; 21743f1db9ecSBarry Smith PetscHeaderCreate(B,_p_Mat,struct _MatOps,MAT_COOKIE,MATSEQAIJ,"Mat",comm,MatDestroy,MatView); 2175416022c9SBarry Smith PLogObjectCreate(B); 21760452661fSBarry Smith B->data = (void *) (b = PetscNew(Mat_SeqAIJ)); CHKPTRQ(b); 217744cd7ae7SLois Curfman McInnes PetscMemzero(b,sizeof(Mat_SeqAIJ)); 21780a6ffc59SBarry Smith PetscMemcpy(B->ops,&MatOps_Values,sizeof(struct _MatOps)); 2179e1311b90SBarry Smith B->ops->destroy = MatDestroy_SeqAIJ; 2180e1311b90SBarry Smith B->ops->view = MatView_SeqAIJ; 2181416022c9SBarry Smith B->factor = 0; 2182416022c9SBarry Smith B->lupivotthreshold = 1.0; 218390f02eecSBarry Smith B->mapping = 0; 2184e1311b90SBarry Smith ierr = OptionsGetDouble(PETSC_NULL,"-mat_lu_pivotthreshold",&B->lupivotthreshold,&flg);CHKERRQ(ierr); 21857a743949SBarry Smith b->ilu_preserve_row_sums = PETSC_FALSE; 2186e1311b90SBarry Smith ierr = OptionsHasName(PETSC_NULL,"-pc_ilu_preserve_row_sums",(int*)&b->ilu_preserve_row_sums);CHKERRQ(ierr); 2187416022c9SBarry Smith b->row = 0; 2188416022c9SBarry Smith b->col = 0; 218982bf6240SBarry Smith b->icol = 0; 2190416022c9SBarry Smith b->indexshift = 0; 2191b810aeb4SBarry Smith b->reallocs = 0; 219269957df2SSatish Balay ierr = OptionsHasName(PETSC_NULL,"-mat_aij_oneindex", &flg); CHKERRQ(ierr); 219369957df2SSatish Balay if (flg) b->indexshift = -1; 219417ab2063SBarry Smith 219544cd7ae7SLois Curfman McInnes b->m = m; B->m = m; B->M = m; 219644cd7ae7SLois Curfman McInnes b->n = n; B->n = n; B->N = n; 2197a5ae1ecdSBarry Smith 21984d197716SBarry Smith ierr = MapCreateMPI(comm,m,m,&B->rmap);CHKERRQ(ierr); 21994d197716SBarry Smith ierr = MapCreateMPI(comm,n,n,&B->cmap);CHKERRQ(ierr); 2200a5ae1ecdSBarry Smith 22010452661fSBarry Smith b->imax = (int *) PetscMalloc( (m+1)*sizeof(int) ); CHKPTRQ(b->imax); 2202b4fd4287SBarry Smith if (nnz == PETSC_NULL) { 22037b8455f0SLois Curfman McInnes if (nz == PETSC_DEFAULT) nz = 10; 22047b8455f0SLois Curfman McInnes else if (nz <= 0) nz = 1; 2205416022c9SBarry Smith for ( i=0; i<m; i++ ) b->imax[i] = nz; 220617ab2063SBarry Smith nz = nz*m; 22073a40ed3dSBarry Smith } else { 220817ab2063SBarry Smith nz = 0; 2209416022c9SBarry Smith for ( i=0; i<m; i++ ) {b->imax[i] = nnz[i]; nz += nnz[i];} 221017ab2063SBarry Smith } 221117ab2063SBarry Smith 221217ab2063SBarry Smith /* allocate the matrix space */ 2213416022c9SBarry Smith len = nz*(sizeof(int) + sizeof(Scalar)) + (b->m+1)*sizeof(int); 22140452661fSBarry Smith b->a = (Scalar *) PetscMalloc( len ); CHKPTRQ(b->a); 2215416022c9SBarry Smith b->j = (int *) (b->a + nz); 2216cddf8d76SBarry Smith PetscMemzero(b->j,nz*sizeof(int)); 2217416022c9SBarry Smith b->i = b->j + nz; 2218416022c9SBarry Smith b->singlemalloc = 1; 221917ab2063SBarry Smith 2220416022c9SBarry Smith b->i[0] = -b->indexshift; 222117ab2063SBarry Smith for (i=1; i<m+1; i++) { 2222416022c9SBarry Smith b->i[i] = b->i[i-1] + b->imax[i-1]; 222317ab2063SBarry Smith } 222417ab2063SBarry Smith 2225416022c9SBarry Smith /* b->ilen will count nonzeros in each row so far. */ 22260452661fSBarry Smith b->ilen = (int *) PetscMalloc((m+1)*sizeof(int)); 2227f09e8eb9SSatish Balay PLogObjectMemory(B,len+2*(m+1)*sizeof(int)+sizeof(struct _p_Mat)+sizeof(Mat_SeqAIJ)); 2228416022c9SBarry Smith for ( i=0; i<b->m; i++ ) { b->ilen[i] = 0;} 222917ab2063SBarry Smith 2230416022c9SBarry Smith b->nz = 0; 2231416022c9SBarry Smith b->maxnz = nz; 2232416022c9SBarry Smith b->sorted = 0; 2233416022c9SBarry Smith b->roworiented = 1; 2234416022c9SBarry Smith b->nonew = 0; 2235416022c9SBarry Smith b->diag = 0; 2236416022c9SBarry Smith b->solve_work = 0; 223771bd300dSLois Curfman McInnes b->spptr = 0; 2238754ec7b1SSatish Balay b->inode.node_count = 0; 2239754ec7b1SSatish Balay b->inode.size = 0; 22406c7ebb05SLois Curfman McInnes b->inode.limit = 5; 22416c7ebb05SLois Curfman McInnes b->inode.max_limit = 5; 2242be6bf707SBarry Smith b->saved_values = 0; 22434e220ebcSLois Curfman McInnes B->info.nz_unneeded = (double)b->maxnz; 224417ab2063SBarry Smith 2245416022c9SBarry Smith *A = B; 22464e220ebcSLois Curfman McInnes 22474b14c69eSBarry Smith /* SuperLU is not currently supported through PETSc */ 22484b14c69eSBarry Smith #if defined(HAVE_SUPERLU) 224969957df2SSatish Balay ierr = OptionsHasName(PETSC_NULL,"-mat_aij_superlu", &flg); CHKERRQ(ierr); 225069957df2SSatish Balay if (flg) { ierr = MatUseSuperLU_SeqAIJ(B); CHKERRQ(ierr); } 22514b14c69eSBarry Smith #endif 225269957df2SSatish Balay ierr = OptionsHasName(PETSC_NULL,"-mat_aij_essl", &flg); CHKERRQ(ierr); 225369957df2SSatish Balay if (flg) { ierr = MatUseEssl_SeqAIJ(B); CHKERRQ(ierr); } 225469957df2SSatish Balay ierr = OptionsHasName(PETSC_NULL,"-mat_aij_dxml", &flg); CHKERRQ(ierr); 225569957df2SSatish Balay if (flg) { 2256a8c6a408SBarry Smith if (!b->indexshift) SETERRQ( PETSC_ERR_LIB,0,"need -mat_aij_oneindex with -mat_aij_dxml"); 2257416022c9SBarry Smith ierr = MatUseDXML_SeqAIJ(B); CHKERRQ(ierr); 225817ab2063SBarry Smith } 225969957df2SSatish Balay ierr = OptionsHasName(PETSC_NULL,"-help", &flg); CHKERRQ(ierr); 226069957df2SSatish Balay if (flg) {ierr = MatPrintHelp(B); CHKERRQ(ierr); } 2261bef8e0ddSBarry Smith 2262bef8e0ddSBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatSeqAIJSetColumnIndices_C", 2263bef8e0ddSBarry Smith "MatSeqAIJSetColumnIndices_SeqAIJ", 2264bef8e0ddSBarry Smith (void*)MatSeqAIJSetColumnIndices_SeqAIJ);CHKERRQ(ierr); 2265be6bf707SBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatStoreValues_C", 2266be6bf707SBarry Smith "MatStoreValues_SeqAIJ", 2267be6bf707SBarry Smith (void*)MatStoreValues_SeqAIJ);CHKERRQ(ierr); 2268be6bf707SBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatRetrieveValues_C", 2269be6bf707SBarry Smith "MatRetrieveValues_SeqAIJ", 2270be6bf707SBarry Smith (void*)MatRetrieveValues_SeqAIJ);CHKERRQ(ierr); 22713a40ed3dSBarry Smith PetscFunctionReturn(0); 227217ab2063SBarry Smith } 227317ab2063SBarry Smith 22745615d1e5SSatish Balay #undef __FUNC__ 2275be6bf707SBarry Smith #define __FUNC__ "MatDuplicate_SeqAIJ" 2276be6bf707SBarry Smith int MatDuplicate_SeqAIJ(Mat A,MatDuplicateOption cpvalues,Mat *B) 227717ab2063SBarry Smith { 2278416022c9SBarry Smith Mat C; 2279416022c9SBarry Smith Mat_SeqAIJ *c,*a = (Mat_SeqAIJ *) A->data; 2280bef8e0ddSBarry Smith int i,len, m = a->m,shift = a->indexshift,ierr; 228117ab2063SBarry Smith 22823a40ed3dSBarry Smith PetscFunctionBegin; 22834043dd9cSLois Curfman McInnes *B = 0; 22843f1db9ecSBarry Smith PetscHeaderCreate(C,_p_Mat,struct _MatOps,MAT_COOKIE,MATSEQAIJ,"Mat",A->comm,MatDestroy,MatView); 2285416022c9SBarry Smith PLogObjectCreate(C); 22860452661fSBarry Smith C->data = (void *) (c = PetscNew(Mat_SeqAIJ)); CHKPTRQ(c); 2287f830108cSBarry Smith PetscMemcpy(C->ops,A->ops,sizeof(struct _MatOps)); 2288e1311b90SBarry Smith C->ops->destroy = MatDestroy_SeqAIJ; 2289e1311b90SBarry Smith C->ops->view = MatView_SeqAIJ; 2290416022c9SBarry Smith C->factor = A->factor; 2291416022c9SBarry Smith c->row = 0; 2292416022c9SBarry Smith c->col = 0; 229382bf6240SBarry Smith c->icol = 0; 2294416022c9SBarry Smith c->indexshift = shift; 2295c456f294SBarry Smith C->assembled = PETSC_TRUE; 229617ab2063SBarry Smith 229744cd7ae7SLois Curfman McInnes c->m = C->m = a->m; 229844cd7ae7SLois Curfman McInnes c->n = C->n = a->n; 229944cd7ae7SLois Curfman McInnes C->M = a->m; 230044cd7ae7SLois Curfman McInnes C->N = a->n; 230117ab2063SBarry Smith 23020452661fSBarry Smith c->imax = (int *) PetscMalloc((m+1)*sizeof(int)); CHKPTRQ(c->imax); 23030452661fSBarry Smith c->ilen = (int *) PetscMalloc((m+1)*sizeof(int)); CHKPTRQ(c->ilen); 230417ab2063SBarry Smith for ( i=0; i<m; i++ ) { 2305416022c9SBarry Smith c->imax[i] = a->imax[i]; 2306416022c9SBarry Smith c->ilen[i] = a->ilen[i]; 230717ab2063SBarry Smith } 230817ab2063SBarry Smith 230917ab2063SBarry Smith /* allocate the matrix space */ 2310416022c9SBarry Smith c->singlemalloc = 1; 2311416022c9SBarry Smith len = (m+1)*sizeof(int)+(a->i[m])*(sizeof(Scalar)+sizeof(int)); 23120452661fSBarry Smith c->a = (Scalar *) PetscMalloc( len ); CHKPTRQ(c->a); 2313416022c9SBarry Smith c->j = (int *) (c->a + a->i[m] + shift); 2314416022c9SBarry Smith c->i = c->j + a->i[m] + shift; 2315416022c9SBarry Smith PetscMemcpy(c->i,a->i,(m+1)*sizeof(int)); 231617ab2063SBarry Smith if (m > 0) { 2317416022c9SBarry Smith PetscMemcpy(c->j,a->j,(a->i[m]+shift)*sizeof(int)); 2318be6bf707SBarry Smith if (cpvalues == MAT_COPY_VALUES) { 2319416022c9SBarry Smith PetscMemcpy(c->a,a->a,(a->i[m]+shift)*sizeof(Scalar)); 2320be6bf707SBarry Smith } else { 2321be6bf707SBarry Smith PetscMemzero(c->a,(a->i[m]+shift)*sizeof(Scalar)); 232217ab2063SBarry Smith } 232308480c60SBarry Smith } 232417ab2063SBarry Smith 2325f09e8eb9SSatish Balay PLogObjectMemory(C,len+2*(m+1)*sizeof(int)+sizeof(struct _p_Mat)+sizeof(Mat_SeqAIJ)); 2326416022c9SBarry Smith c->sorted = a->sorted; 2327416022c9SBarry Smith c->roworiented = a->roworiented; 2328416022c9SBarry Smith c->nonew = a->nonew; 23297a743949SBarry Smith c->ilu_preserve_row_sums = a->ilu_preserve_row_sums; 2330be6bf707SBarry Smith c->saved_values = 0; 233117ab2063SBarry Smith 2332416022c9SBarry Smith if (a->diag) { 23330452661fSBarry Smith c->diag = (int *) PetscMalloc( (m+1)*sizeof(int) ); CHKPTRQ(c->diag); 2334416022c9SBarry Smith PLogObjectMemory(C,(m+1)*sizeof(int)); 233517ab2063SBarry Smith for ( i=0; i<m; i++ ) { 2336416022c9SBarry Smith c->diag[i] = a->diag[i]; 233717ab2063SBarry Smith } 23383a40ed3dSBarry Smith } else c->diag = 0; 23396c7ebb05SLois Curfman McInnes c->inode.limit = a->inode.limit; 23406c7ebb05SLois Curfman McInnes c->inode.max_limit = a->inode.max_limit; 2341754ec7b1SSatish Balay if (a->inode.size){ 2342daed632aSSatish Balay c->inode.size = (int *) PetscMalloc( (m+1)*sizeof(int) ); CHKPTRQ(c->inode.size); 2343754ec7b1SSatish Balay c->inode.node_count = a->inode.node_count; 2344daed632aSSatish Balay PetscMemcpy( c->inode.size, a->inode.size, (m+1)*sizeof(int)); 2345754ec7b1SSatish Balay } else { 2346754ec7b1SSatish Balay c->inode.size = 0; 2347754ec7b1SSatish Balay c->inode.node_count = 0; 2348754ec7b1SSatish Balay } 2349416022c9SBarry Smith c->nz = a->nz; 2350416022c9SBarry Smith c->maxnz = a->maxnz; 2351416022c9SBarry Smith c->solve_work = 0; 235276dd722bSSatish Balay c->spptr = 0; /* Dangerous -I'm throwing away a->spptr */ 2353754ec7b1SSatish Balay 2354416022c9SBarry Smith *B = C; 23557b2a1423SBarry Smith ierr = FListDuplicate(A->qlist,&C->qlist);CHKERRQ(ierr); 23563a40ed3dSBarry Smith PetscFunctionReturn(0); 235717ab2063SBarry Smith } 235817ab2063SBarry Smith 23595615d1e5SSatish Balay #undef __FUNC__ 23605615d1e5SSatish Balay #define __FUNC__ "MatLoad_SeqAIJ" 236119bcc07fSBarry Smith int MatLoad_SeqAIJ(Viewer viewer,MatType type,Mat *A) 236217ab2063SBarry Smith { 2363416022c9SBarry Smith Mat_SeqAIJ *a; 2364416022c9SBarry Smith Mat B; 236517699dbbSLois Curfman McInnes int i, nz, ierr, fd, header[4],size,*rowlengths = 0,M,N,shift; 2366bcd2baecSBarry Smith MPI_Comm comm; 236717ab2063SBarry Smith 23683a40ed3dSBarry Smith PetscFunctionBegin; 2369e864ced6SBarry Smith ierr = PetscObjectGetComm((PetscObject) viewer,&comm);CHKERRQ(ierr); 237017699dbbSLois Curfman McInnes MPI_Comm_size(comm,&size); 2371a8c6a408SBarry Smith if (size > 1) SETERRQ(PETSC_ERR_ARG_SIZ,0,"view must have one processor"); 237290ace30eSBarry Smith ierr = ViewerBinaryGetDescriptor(viewer,&fd); CHKERRQ(ierr); 23730752156aSBarry Smith ierr = PetscBinaryRead(fd,header,4,PETSC_INT); CHKERRQ(ierr); 2374a8c6a408SBarry Smith if (header[0] != MAT_COOKIE) SETERRQ(PETSC_ERR_FILE_UNEXPECTED,0,"not matrix object in file"); 237517ab2063SBarry Smith M = header[1]; N = header[2]; nz = header[3]; 237617ab2063SBarry Smith 2377d64ed03dSBarry Smith if (nz < 0) { 2378a8c6a408SBarry Smith SETERRQ(PETSC_ERR_FILE_UNEXPECTED,1,"Matrix stored in special format on disk, cannot load as SeqAIJ"); 2379d64ed03dSBarry Smith } 2380d64ed03dSBarry Smith 238117ab2063SBarry Smith /* read in row lengths */ 23820452661fSBarry Smith rowlengths = (int*) PetscMalloc( M*sizeof(int) ); CHKPTRQ(rowlengths); 23830752156aSBarry Smith ierr = PetscBinaryRead(fd,rowlengths,M,PETSC_INT); CHKERRQ(ierr); 238417ab2063SBarry Smith 238517ab2063SBarry Smith /* create our matrix */ 2386416022c9SBarry Smith ierr = MatCreateSeqAIJ(comm,M,N,0,rowlengths,A); CHKERRQ(ierr); 2387416022c9SBarry Smith B = *A; 2388416022c9SBarry Smith a = (Mat_SeqAIJ *) B->data; 2389416022c9SBarry Smith shift = a->indexshift; 239017ab2063SBarry Smith 239117ab2063SBarry Smith /* read in column indices and adjust for Fortran indexing*/ 23920752156aSBarry Smith ierr = PetscBinaryRead(fd,a->j,nz,PETSC_INT); CHKERRQ(ierr); 239317ab2063SBarry Smith if (shift) { 239417ab2063SBarry Smith for ( i=0; i<nz; i++ ) { 2395416022c9SBarry Smith a->j[i] += 1; 239617ab2063SBarry Smith } 239717ab2063SBarry Smith } 239817ab2063SBarry Smith 239917ab2063SBarry Smith /* read in nonzero values */ 24000752156aSBarry Smith ierr = PetscBinaryRead(fd,a->a,nz,PETSC_SCALAR); CHKERRQ(ierr); 240117ab2063SBarry Smith 240217ab2063SBarry Smith /* set matrix "i" values */ 2403416022c9SBarry Smith a->i[0] = -shift; 240417ab2063SBarry Smith for ( i=1; i<= M; i++ ) { 2405416022c9SBarry Smith a->i[i] = a->i[i-1] + rowlengths[i-1]; 2406416022c9SBarry Smith a->ilen[i-1] = rowlengths[i-1]; 240717ab2063SBarry Smith } 24080452661fSBarry Smith PetscFree(rowlengths); 240917ab2063SBarry Smith 24106d4a8577SBarry Smith ierr = MatAssemblyBegin(B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 24116d4a8577SBarry Smith ierr = MatAssemblyEnd(B,MAT_FINAL_ASSEMBLY); CHKERRQ(ierr); 24123a40ed3dSBarry Smith PetscFunctionReturn(0); 241317ab2063SBarry Smith } 241417ab2063SBarry Smith 24155615d1e5SSatish Balay #undef __FUNC__ 24165615d1e5SSatish Balay #define __FUNC__ "MatEqual_SeqAIJ" 24178f6be9afSLois Curfman McInnes int MatEqual_SeqAIJ(Mat A,Mat B, PetscTruth* flg) 24187264ac53SSatish Balay { 24197264ac53SSatish Balay Mat_SeqAIJ *a = (Mat_SeqAIJ *)A->data, *b = (Mat_SeqAIJ *)B->data; 24207264ac53SSatish Balay 24213a40ed3dSBarry Smith PetscFunctionBegin; 2422a8c6a408SBarry Smith if (B->type !=MATSEQAIJ)SETERRQ(PETSC_ERR_ARG_INCOMP,0,"Matrices must be same type"); 24237264ac53SSatish Balay 24247264ac53SSatish Balay /* If the matrix dimensions are not equal, or no of nonzeros or shift */ 24257264ac53SSatish Balay if ((a->m != b->m ) || (a->n !=b->n) ||( a->nz != b->nz)|| 2426bcd2baecSBarry Smith (a->indexshift != b->indexshift)) { 24273a40ed3dSBarry Smith *flg = PETSC_FALSE; PetscFunctionReturn(0); 2428bcd2baecSBarry Smith } 24297264ac53SSatish Balay 24307264ac53SSatish Balay /* if the a->i are the same */ 24318108c231SLois Curfman McInnes if (PetscMemcmp(a->i,b->i,(a->m+1)*sizeof(int))) { 24323a40ed3dSBarry Smith *flg = PETSC_FALSE; PetscFunctionReturn(0); 24337264ac53SSatish Balay } 24347264ac53SSatish Balay 24357264ac53SSatish Balay /* if a->j are the same */ 2436bcd2baecSBarry Smith if (PetscMemcmp(a->j, b->j, (a->nz)*sizeof(int))) { 24373a40ed3dSBarry Smith *flg = PETSC_FALSE; PetscFunctionReturn(0); 2438bcd2baecSBarry Smith } 2439bcd2baecSBarry Smith 2440bcd2baecSBarry Smith /* if a->a are the same */ 244119bcc07fSBarry Smith if (PetscMemcmp(a->a, b->a, (a->nz)*sizeof(Scalar))) { 24423a40ed3dSBarry Smith *flg = PETSC_FALSE; PetscFunctionReturn(0); 24437264ac53SSatish Balay } 244477c4ece6SBarry Smith *flg = PETSC_TRUE; 24453a40ed3dSBarry Smith PetscFunctionReturn(0); 24467264ac53SSatish Balay 24477264ac53SSatish Balay } 2448