1eb9c0419SKris Buschelman /* 242c57489SHong Zhang Defines projective product routines where A is a SeqAIJ matrix 3eb9c0419SKris Buschelman C = P^T * A * P 4eb9c0419SKris Buschelman */ 5eb9c0419SKris Buschelman 6231952e2SKris Buschelman #include "src/mat/impls/aij/seq/aij.h" /*I "petscmat.h" I*/ 7eb9c0419SKris Buschelman #include "src/mat/utils/freespace.h" 855a3bba9SHong Zhang #include "petscbt.h" 9eb9c0419SKris Buschelman 10ff134f7aSHong Zhang #undef __FUNCT__ 119af31e4aSHong Zhang #define __FUNCT__ "MatPtAP_SeqAIJ_SeqAIJ" 12*7ba1a0bfSKris Buschelman PetscErrorCode MatPtAP_SeqAIJ(Mat A,Mat P,MatReuse scall,PetscReal fill,Mat *C) 139af31e4aSHong Zhang { 14dfbe8321SBarry Smith PetscErrorCode ierr; 15b1d57f15SBarry Smith 169af31e4aSHong Zhang PetscFunctionBegin; 179af31e4aSHong Zhang if (scall == MAT_INITIAL_MATRIX){ 18d20bfe6fSHong Zhang ierr = PetscLogEventBegin(MAT_PtAPSymbolic,A,P,0,0);CHKERRQ(ierr); 19*7ba1a0bfSKris Buschelman ierr = MatPtAPSymbolic(A,P,fill,C);CHKERRQ(ierr); 20d20bfe6fSHong Zhang ierr = PetscLogEventEnd(MAT_PtAPSymbolic,A,P,0,0);CHKERRQ(ierr); 219af31e4aSHong Zhang } 22d20bfe6fSHong Zhang ierr = PetscLogEventBegin(MAT_PtAPNumeric,A,P,0,0);CHKERRQ(ierr); 23*7ba1a0bfSKris Buschelman ierr = MatPtAPNumeric(A,P,*C);CHKERRQ(ierr); 24d20bfe6fSHong Zhang ierr = PetscLogEventEnd(MAT_PtAPNumeric,A,P,0,0);CHKERRQ(ierr); 259af31e4aSHong Zhang PetscFunctionReturn(0); 269af31e4aSHong Zhang } 279af31e4aSHong Zhang 28eb9c0419SKris Buschelman #undef __FUNCT__ 29*7ba1a0bfSKris Buschelman #define __FUNCT__ "MatPtAPSymbolic_SeqAIJ" 30*7ba1a0bfSKris Buschelman PetscErrorCode MatPtAPSymbolic_SeqAIJ(Mat A,Mat P,PetscReal fill,Mat *C) 31*7ba1a0bfSKris Buschelman { 32*7ba1a0bfSKris Buschelman PetscErrorCode ierr; 33*7ba1a0bfSKris Buschelman 34*7ba1a0bfSKris Buschelman PetscFunctionBegin; 35*7ba1a0bfSKris Buschelman if (!P->ops->ptapsymbolic_seqaij) { 36*7ba1a0bfSKris Buschelman SETERRQ2(PETSC_ERR_SUP,"Not implemented for A=%s and P=%s",A->type_name,P->type_name); 37*7ba1a0bfSKris Buschelman } 38*7ba1a0bfSKris Buschelman ierr = (*P->ops->ptapsymbolic_seqaij)(A,P,fill,C);CHKERRQ(ierr); 39*7ba1a0bfSKris Buschelman PetscFunctionReturn(0); 40*7ba1a0bfSKris Buschelman } 41*7ba1a0bfSKris Buschelman 42*7ba1a0bfSKris Buschelman #undef __FUNCT__ 43*7ba1a0bfSKris Buschelman #define __FUNCT__ "MatPtAPNumeric_SeqAIJ" 44*7ba1a0bfSKris Buschelman PetscErrorCode MatPtAPNumeric_SeqAIJ(Mat A,Mat P,Mat C) 45*7ba1a0bfSKris Buschelman { 46*7ba1a0bfSKris Buschelman PetscErrorCode ierr; 47*7ba1a0bfSKris Buschelman 48*7ba1a0bfSKris Buschelman PetscFunctionBegin; 49*7ba1a0bfSKris Buschelman if (!P->ops->ptapnumeric_seqaij) { 50*7ba1a0bfSKris Buschelman SETERRQ2(PETSC_ERR_SUP,"Not implemented for A=%s and P=%s",A->type_name,P->type_name); 51*7ba1a0bfSKris Buschelman } 52*7ba1a0bfSKris Buschelman ierr = (*P->ops->ptapnumeric_seqaij)(A,P,C);CHKERRQ(ierr); 53*7ba1a0bfSKris Buschelman PetscFunctionReturn(0); 54*7ba1a0bfSKris Buschelman } 55*7ba1a0bfSKris Buschelman 56*7ba1a0bfSKris Buschelman #undef __FUNCT__ 579af31e4aSHong Zhang #define __FUNCT__ "MatPtAPSymbolic_SeqAIJ_SeqAIJ" 5855a3bba9SHong Zhang PetscErrorCode MatPtAPSymbolic_SeqAIJ_SeqAIJ(Mat A,Mat P,PetscReal fill,Mat *C) 5955a3bba9SHong Zhang { 60dfbe8321SBarry Smith PetscErrorCode ierr; 61d20bfe6fSHong Zhang FreeSpaceList free_space=PETSC_NULL,current_space=PETSC_NULL; 62d20bfe6fSHong Zhang Mat_SeqAIJ *a = (Mat_SeqAIJ*)A->data,*p = (Mat_SeqAIJ*)P->data,*c; 6355a3bba9SHong Zhang PetscInt *pti,*ptj,*ptJ,*ai=a->i,*aj=a->j,*ajj,*pi=p->i,*pj=p->j,*pjj; 64b8374ebeSBarry Smith PetscInt *ci,*cj,*ptadenserow,*ptasparserow,*ptaj; 6555a3bba9SHong Zhang PetscInt an=A->N,am=A->M,pn=P->N,pm=P->M; 66b8374ebeSBarry Smith PetscInt i,j,k,ptnzi,arow,anzj,ptanzi,prow,pnzj,cnzi,nlnk,*lnk; 67d20bfe6fSHong Zhang MatScalar *ca; 6855a3bba9SHong Zhang PetscBT lnkbt; 69eb9c0419SKris Buschelman 70eb9c0419SKris Buschelman PetscFunctionBegin; 71d20bfe6fSHong Zhang /* Get ij structure of P^T */ 72eb9c0419SKris Buschelman ierr = MatGetSymbolicTranspose_SeqAIJ(P,&pti,&ptj);CHKERRQ(ierr); 73d20bfe6fSHong Zhang ptJ=ptj; 74eb9c0419SKris Buschelman 75d20bfe6fSHong Zhang /* Allocate ci array, arrays for fill computation and */ 76d20bfe6fSHong Zhang /* free space for accumulating nonzero column info */ 7755a3bba9SHong Zhang ierr = PetscMalloc((pn+1)*sizeof(PetscInt),&ci);CHKERRQ(ierr); 78d20bfe6fSHong Zhang ci[0] = 0; 79eb9c0419SKris Buschelman 8055a3bba9SHong Zhang ierr = PetscMalloc((2*an+1)*sizeof(PetscInt),&ptadenserow);CHKERRQ(ierr); 8155a3bba9SHong Zhang ierr = PetscMemzero(ptadenserow,(2*an+1)*sizeof(PetscInt));CHKERRQ(ierr); 82d20bfe6fSHong Zhang ptasparserow = ptadenserow + an; 8355a3bba9SHong Zhang 8455a3bba9SHong Zhang /* create and initialize a linked list */ 8555a3bba9SHong Zhang nlnk = pn+1; 8655a3bba9SHong Zhang ierr = PetscLLCreate(pn,pn,nlnk,lnk,lnkbt);CHKERRQ(ierr); 87eb9c0419SKris Buschelman 88d20bfe6fSHong Zhang /* Set initial free space to be nnz(A) scaled by aspect ratio of P. */ 89d20bfe6fSHong Zhang /* This should be reasonable if sparsity of PtAP is similar to that of A. */ 90d20bfe6fSHong Zhang ierr = GetMoreSpace((ai[am]/pm)*pn,&free_space); 91d20bfe6fSHong Zhang current_space = free_space; 92d20bfe6fSHong Zhang 93d20bfe6fSHong Zhang /* Determine symbolic info for each row of C: */ 94d20bfe6fSHong Zhang for (i=0;i<pn;i++) { 95d20bfe6fSHong Zhang ptnzi = pti[i+1] - pti[i]; 96d20bfe6fSHong Zhang ptanzi = 0; 97d20bfe6fSHong Zhang /* Determine symbolic row of PtA: */ 98d20bfe6fSHong Zhang for (j=0;j<ptnzi;j++) { 99d20bfe6fSHong Zhang arow = *ptJ++; 100d20bfe6fSHong Zhang anzj = ai[arow+1] - ai[arow]; 101d20bfe6fSHong Zhang ajj = aj + ai[arow]; 102d20bfe6fSHong Zhang for (k=0;k<anzj;k++) { 103d20bfe6fSHong Zhang if (!ptadenserow[ajj[k]]) { 104d20bfe6fSHong Zhang ptadenserow[ajj[k]] = -1; 105d20bfe6fSHong Zhang ptasparserow[ptanzi++] = ajj[k]; 106d20bfe6fSHong Zhang } 107d20bfe6fSHong Zhang } 108d20bfe6fSHong Zhang } 109d20bfe6fSHong Zhang /* Using symbolic info for row of PtA, determine symbolic info for row of C: */ 110d20bfe6fSHong Zhang ptaj = ptasparserow; 111d20bfe6fSHong Zhang cnzi = 0; 112d20bfe6fSHong Zhang for (j=0;j<ptanzi;j++) { 113d20bfe6fSHong Zhang prow = *ptaj++; 114d20bfe6fSHong Zhang pnzj = pi[prow+1] - pi[prow]; 115d20bfe6fSHong Zhang pjj = pj + pi[prow]; 11655a3bba9SHong Zhang /* add non-zero cols of P into the sorted linked list lnk */ 11755a3bba9SHong Zhang ierr = PetscLLAdd(pnzj,pjj,pn,nlnk,lnk,lnkbt);CHKERRQ(ierr); 11855a3bba9SHong Zhang cnzi += nlnk; 119d20bfe6fSHong Zhang } 120d20bfe6fSHong Zhang 121d20bfe6fSHong Zhang /* If free space is not available, make more free space */ 122d20bfe6fSHong Zhang /* Double the amount of total space in the list */ 123d20bfe6fSHong Zhang if (current_space->local_remaining<cnzi) { 124d20bfe6fSHong Zhang ierr = GetMoreSpace(current_space->total_array_size,¤t_space);CHKERRQ(ierr); 125d20bfe6fSHong Zhang } 126d20bfe6fSHong Zhang 127d20bfe6fSHong Zhang /* Copy data into free space, and zero out denserows */ 12855a3bba9SHong Zhang ierr = PetscLLClean(pn,pn,cnzi,lnk,current_space->array,lnkbt);CHKERRQ(ierr); 129d20bfe6fSHong Zhang current_space->array += cnzi; 130d20bfe6fSHong Zhang current_space->local_used += cnzi; 131d20bfe6fSHong Zhang current_space->local_remaining -= cnzi; 132d20bfe6fSHong Zhang 133d20bfe6fSHong Zhang for (j=0;j<ptanzi;j++) { 134d20bfe6fSHong Zhang ptadenserow[ptasparserow[j]] = 0; 135d20bfe6fSHong Zhang } 136d20bfe6fSHong Zhang /* Aside: Perhaps we should save the pta info for the numerical factorization. */ 137d20bfe6fSHong Zhang /* For now, we will recompute what is needed. */ 138d20bfe6fSHong Zhang ci[i+1] = ci[i] + cnzi; 139d20bfe6fSHong Zhang } 140d20bfe6fSHong Zhang /* nnz is now stored in ci[ptm], column indices are in the list of free space */ 141d20bfe6fSHong Zhang /* Allocate space for cj, initialize cj, and */ 142d20bfe6fSHong Zhang /* destroy list of free space and other temporary array(s) */ 14355a3bba9SHong Zhang ierr = PetscMalloc((ci[pn]+1)*sizeof(PetscInt),&cj);CHKERRQ(ierr); 144d20bfe6fSHong Zhang ierr = MakeSpaceContiguous(&free_space,cj);CHKERRQ(ierr); 145d20bfe6fSHong Zhang ierr = PetscFree(ptadenserow);CHKERRQ(ierr); 14655a3bba9SHong Zhang ierr = PetscLLDestroy(lnk,lnkbt);CHKERRQ(ierr); 147d20bfe6fSHong Zhang 148d20bfe6fSHong Zhang /* Allocate space for ca */ 149d20bfe6fSHong Zhang ierr = PetscMalloc((ci[pn]+1)*sizeof(MatScalar),&ca);CHKERRQ(ierr); 150d20bfe6fSHong Zhang ierr = PetscMemzero(ca,(ci[pn]+1)*sizeof(MatScalar));CHKERRQ(ierr); 151d20bfe6fSHong Zhang 152d20bfe6fSHong Zhang /* put together the new matrix */ 153d20bfe6fSHong Zhang ierr = MatCreateSeqAIJWithArrays(A->comm,pn,pn,ci,cj,ca,C);CHKERRQ(ierr); 154d20bfe6fSHong Zhang 155d20bfe6fSHong Zhang /* MatCreateSeqAIJWithArrays flags matrix so PETSc doesn't free the user's arrays. */ 156d20bfe6fSHong Zhang /* Since these are PETSc arrays, change flags to free them as necessary. */ 157d20bfe6fSHong Zhang c = (Mat_SeqAIJ *)((*C)->data); 158d20bfe6fSHong Zhang c->freedata = PETSC_TRUE; 159d20bfe6fSHong Zhang c->nonew = 0; 160d20bfe6fSHong Zhang 161d20bfe6fSHong Zhang /* Clean up. */ 162d20bfe6fSHong Zhang ierr = MatRestoreSymbolicTranspose_SeqAIJ(P,&pti,&ptj);CHKERRQ(ierr); 163eb9c0419SKris Buschelman 164eb9c0419SKris Buschelman PetscFunctionReturn(0); 165eb9c0419SKris Buschelman } 166eb9c0419SKris Buschelman 167eb9c0419SKris Buschelman #undef __FUNCT__ 1689af31e4aSHong Zhang #define __FUNCT__ "MatPtAPNumeric_SeqAIJ_SeqAIJ" 169dfbe8321SBarry Smith PetscErrorCode MatPtAPNumeric_SeqAIJ_SeqAIJ(Mat A,Mat P,Mat C) 170dfbe8321SBarry Smith { 171dfbe8321SBarry Smith PetscErrorCode ierr; 172b1d57f15SBarry Smith PetscInt flops=0; 173d20bfe6fSHong Zhang Mat_SeqAIJ *a = (Mat_SeqAIJ *) A->data; 174d20bfe6fSHong Zhang Mat_SeqAIJ *p = (Mat_SeqAIJ *) P->data; 175d20bfe6fSHong Zhang Mat_SeqAIJ *c = (Mat_SeqAIJ *) C->data; 176b1d57f15SBarry Smith PetscInt *ai=a->i,*aj=a->j,*apj,*apjdense,*pi=p->i,*pj=p->j,*pJ=p->j,*pjj; 177b1d57f15SBarry Smith PetscInt *ci=c->i,*cj=c->j,*cjj; 178b1d57f15SBarry Smith PetscInt am=A->M,cn=C->N,cm=C->M; 179b1d57f15SBarry Smith PetscInt i,j,k,anzi,pnzi,apnzj,nextap,pnzj,prow,crow; 180d20bfe6fSHong Zhang MatScalar *aa=a->a,*apa,*pa=p->a,*pA=p->a,*paj,*ca=c->a,*caj; 181eb9c0419SKris Buschelman 182eb9c0419SKris Buschelman PetscFunctionBegin; 183d20bfe6fSHong Zhang /* Allocate temporary array for storage of one row of A*P */ 184b1d57f15SBarry Smith ierr = PetscMalloc(cn*(sizeof(MatScalar)+2*sizeof(PetscInt)),&apa);CHKERRQ(ierr); 185b1d57f15SBarry Smith ierr = PetscMemzero(apa,cn*(sizeof(MatScalar)+2*sizeof(PetscInt)));CHKERRQ(ierr); 186eb9c0419SKris Buschelman 187b1d57f15SBarry Smith apj = (PetscInt *)(apa + cn); 188d20bfe6fSHong Zhang apjdense = apj + cn; 189d20bfe6fSHong Zhang 190d20bfe6fSHong Zhang /* Clear old values in C */ 191d20bfe6fSHong Zhang ierr = PetscMemzero(ca,ci[cm]*sizeof(MatScalar));CHKERRQ(ierr); 192d20bfe6fSHong Zhang 193d20bfe6fSHong Zhang for (i=0;i<am;i++) { 194d20bfe6fSHong Zhang /* Form sparse row of A*P */ 195d20bfe6fSHong Zhang anzi = ai[i+1] - ai[i]; 196d20bfe6fSHong Zhang apnzj = 0; 197d20bfe6fSHong Zhang for (j=0;j<anzi;j++) { 198d20bfe6fSHong Zhang prow = *aj++; 199d20bfe6fSHong Zhang pnzj = pi[prow+1] - pi[prow]; 200d20bfe6fSHong Zhang pjj = pj + pi[prow]; 201d20bfe6fSHong Zhang paj = pa + pi[prow]; 202d20bfe6fSHong Zhang for (k=0;k<pnzj;k++) { 203d20bfe6fSHong Zhang if (!apjdense[pjj[k]]) { 204d20bfe6fSHong Zhang apjdense[pjj[k]] = -1; 205d20bfe6fSHong Zhang apj[apnzj++] = pjj[k]; 206d20bfe6fSHong Zhang } 207d20bfe6fSHong Zhang apa[pjj[k]] += (*aa)*paj[k]; 208d20bfe6fSHong Zhang } 209d20bfe6fSHong Zhang flops += 2*pnzj; 210d20bfe6fSHong Zhang aa++; 211d20bfe6fSHong Zhang } 212d20bfe6fSHong Zhang 213d20bfe6fSHong Zhang /* Sort the j index array for quick sparse axpy. */ 214d6509036SKris Buschelman /* Note: a array does not need sorting as it is in dense storage locations. */ 215d20bfe6fSHong Zhang ierr = PetscSortInt(apnzj,apj);CHKERRQ(ierr); 216d20bfe6fSHong Zhang 217d20bfe6fSHong Zhang /* Compute P^T*A*P using outer product (P^T)[:,j]*(A*P)[j,:]. */ 218d20bfe6fSHong Zhang pnzi = pi[i+1] - pi[i]; 219d20bfe6fSHong Zhang for (j=0;j<pnzi;j++) { 220d20bfe6fSHong Zhang nextap = 0; 221d20bfe6fSHong Zhang crow = *pJ++; 222d20bfe6fSHong Zhang cjj = cj + ci[crow]; 223d20bfe6fSHong Zhang caj = ca + ci[crow]; 224d20bfe6fSHong Zhang /* Perform sparse axpy operation. Note cjj includes apj. */ 225d20bfe6fSHong Zhang for (k=0;nextap<apnzj;k++) { 226d20bfe6fSHong Zhang if (cjj[k]==apj[nextap]) { 227d20bfe6fSHong Zhang caj[k] += (*pA)*apa[apj[nextap++]]; 228d20bfe6fSHong Zhang } 229d20bfe6fSHong Zhang } 230d20bfe6fSHong Zhang flops += 2*apnzj; 231d20bfe6fSHong Zhang pA++; 232d20bfe6fSHong Zhang } 233d20bfe6fSHong Zhang 234d20bfe6fSHong Zhang /* Zero the current row info for A*P */ 235d20bfe6fSHong Zhang for (j=0;j<apnzj;j++) { 236d20bfe6fSHong Zhang apa[apj[j]] = 0.; 237d20bfe6fSHong Zhang apjdense[apj[j]] = 0; 238d20bfe6fSHong Zhang } 239d20bfe6fSHong Zhang } 240d20bfe6fSHong Zhang 241d20bfe6fSHong Zhang /* Assemble the final matrix and clean up */ 242d20bfe6fSHong Zhang ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 243d20bfe6fSHong Zhang ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 244d20bfe6fSHong Zhang ierr = PetscFree(apa);CHKERRQ(ierr); 245d20bfe6fSHong Zhang ierr = PetscLogFlops(flops);CHKERRQ(ierr); 246d20bfe6fSHong Zhang 247eb9c0419SKris Buschelman PetscFunctionReturn(0); 248eb9c0419SKris Buschelman } 249