15fa1c062SBarry Smith #define PETSCMAT_DLL 25fa1c062SBarry Smith 35fa1c062SBarry Smith /* 41472f72bSBarry Smith Defines a matrix-vector product for the MATMPIAIJCRL matrix class. 51472f72bSBarry Smith This class is derived from the MATMPIAIJ class and retains the 65fa1c062SBarry Smith compressed row storage (aka Yale sparse matrix format) but augments 75fa1c062SBarry Smith it with a column oriented storage that is more efficient for 85fa1c062SBarry Smith matrix vector products on Vector machines. 95fa1c062SBarry Smith 105fa1c062SBarry Smith CRL stands for constant row length (that is the same number of columns 115fa1c062SBarry Smith is kept (padded with zeros) for each row of the sparse matrix. 121472f72bSBarry Smith 131472f72bSBarry Smith See src/mat/impls/aij/seq/crl/crl.c for the sequential version 145fa1c062SBarry Smith */ 155fa1c062SBarry Smith 161472f72bSBarry Smith #include "src/mat/impls/aij/mpi/mpiaij.h" 171472f72bSBarry Smith #include "src/mat/impls/aij/seq/crl/crl.h" 185fa1c062SBarry Smith 195fa1c062SBarry Smith #undef __FUNCT__ 201472f72bSBarry Smith #define __FUNCT__ "MatDestroy_MPICRL" 211472f72bSBarry Smith PetscErrorCode MatDestroy_MPICRL(Mat A) 225fa1c062SBarry Smith { 235fa1c062SBarry Smith PetscErrorCode ierr; 241472f72bSBarry Smith Mat_CRL *crl = (Mat_CRL *) A->spptr; 255fa1c062SBarry Smith 261472f72bSBarry Smith /* We are going to convert A back into a MPIAIJ matrix, since we are 271472f72bSBarry Smith * eventually going to use MatDestroy_MPIAIJ() to destroy everything 285fa1c062SBarry Smith * that is not specific to CRL. 295fa1c062SBarry Smith * In preparation for this, reset the operations pointers in A to 301472f72bSBarry Smith * their MPIAIJ versions. */ 311472f72bSBarry Smith A->ops->assemblyend = crl->AssemblyEnd; 321472f72bSBarry Smith A->ops->destroy = crl->MatDestroy; 331472f72bSBarry Smith A->ops->duplicate = crl->MatDuplicate; 345fa1c062SBarry Smith 351472f72bSBarry Smith /* Free everything in the Mat_CRL data structure. */ 365fa1c062SBarry Smith if (crl->icols) { 375fa1c062SBarry Smith ierr = PetscFree2(crl->acols,crl->icols);CHKERRQ(ierr); 385fa1c062SBarry Smith } 391472f72bSBarry Smith /* Free the Mat_CRL struct itself. */ 405fa1c062SBarry Smith ierr = PetscFree(crl);CHKERRQ(ierr); 415fa1c062SBarry Smith 421472f72bSBarry Smith /* Change the type of A back to MPIAIJ and use MatDestroy_MPIAIJ() 435fa1c062SBarry Smith * to destroy everything that remains. */ 441472f72bSBarry Smith ierr = PetscObjectChangeTypeName( (PetscObject)A, MATMPIAIJ);CHKERRQ(ierr); 455fa1c062SBarry Smith /* Note that I don't call MatSetType(). I believe this is because that 465fa1c062SBarry Smith * is only to be called when *building* a matrix. */ 475fa1c062SBarry Smith ierr = (*A->ops->destroy)(A);CHKERRQ(ierr); 485fa1c062SBarry Smith PetscFunctionReturn(0); 495fa1c062SBarry Smith } 505fa1c062SBarry Smith 515fa1c062SBarry Smith #undef __FUNCT__ 521472f72bSBarry Smith #define __FUNCT__ "MPICRL_create_crl" 531472f72bSBarry Smith PetscErrorCode MPICRL_create_crl(Mat A) 545fa1c062SBarry Smith { 551472f72bSBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ *)(A)->data; 56*11285404SBarry Smith Mat_SeqAIJ *Aij = (Mat_SeqAIJ*)(a->A->data), *Bij = (Mat_SeqAIJ*)(a->B->data); 571472f72bSBarry Smith Mat_CRL *crl = (Mat_CRL*) A->spptr; 585fa1c062SBarry Smith PetscInt m = A->m; /* Number of rows in the matrix. */ 59*11285404SBarry Smith PetscInt nd = a->A->n; /* number of columns in diagonal portion */ 601472f72bSBarry Smith PetscInt *aj = Aij->j,*bj = Bij->j; /* From the CSR representation; points to the beginning of each row. */ 611472f72bSBarry Smith PetscInt i, j,rmax = 0,*icols, *ailen = Aij->ilen, *bilen = Bij->ilen; 626873f782SBarry Smith PetscScalar *aa = Aij->a,*ba = Bij->a,*acols,*array; 635fa1c062SBarry Smith PetscErrorCode ierr; 645fa1c062SBarry Smith 655fa1c062SBarry Smith PetscFunctionBegin; 661472f72bSBarry Smith /* determine the row with the most columns */ 671472f72bSBarry Smith for (i=0; i<m; i++) { 681472f72bSBarry Smith rmax = PetscMax(rmax,ailen[i]+bilen[i]); 691472f72bSBarry Smith } 701472f72bSBarry Smith crl->nz = Aij->nz+Bij->nz; 711472f72bSBarry Smith crl->m = A->m; 721472f72bSBarry Smith crl->rmax = rmax; 735fa1c062SBarry Smith ierr = PetscMalloc2(rmax*m,PetscScalar,&crl->acols,rmax*m,PetscInt,&crl->icols);CHKERRQ(ierr); 745fa1c062SBarry Smith acols = crl->acols; 755fa1c062SBarry Smith icols = crl->icols; 765fa1c062SBarry Smith for (i=0; i<m; i++) { 771472f72bSBarry Smith for (j=0; j<ailen[i]; j++) { 785fa1c062SBarry Smith acols[j*m+i] = *aa++; 795fa1c062SBarry Smith icols[j*m+i] = *aj++; 805fa1c062SBarry Smith } 811472f72bSBarry Smith for (;j<ailen[i]+bilen[i]; j++) { 821472f72bSBarry Smith acols[j*m+i] = *ba++; 83*11285404SBarry Smith icols[j*m+i] = nd + *bj++; 841472f72bSBarry Smith } 855fa1c062SBarry Smith for (;j<rmax; j++) { /* empty column entries */ 865fa1c062SBarry Smith acols[j*m+i] = 0.0; 875fa1c062SBarry Smith icols[j*m+i] = (j) ? icols[(j-1)*m+i] : 0; /* handle case where row is EMPTY */ 885fa1c062SBarry Smith } 895fa1c062SBarry Smith } 901472f72bSBarry Smith ierr = PetscLogInfo((A,"MPICRL_create_crl: Percentage of 0's introduced for vectorized multiply %g\n",1.0-((double)(Bij->nz + Bij->nz))/((double)(rmax*m)))); 911472f72bSBarry Smith 92*11285404SBarry Smith ierr = PetscMalloc((a->B->n+nd)*sizeof(PetscScalar),&array);CHKERRQ(ierr); 93*11285404SBarry Smith /* xwork array is actually Bij->n+nd long, but we define xwork this length so can copy into it */ 94*11285404SBarry Smith ierr = VecCreateMPIWithArray(A->comm,nd,PETSC_DECIDE,array,&crl->xwork);CHKERRQ(ierr); 95*11285404SBarry Smith ierr = VecCreateSeqWithArray(PETSC_COMM_SELF,a->B->n,array+nd,&crl->fwork);CHKERRQ(ierr); 96*11285404SBarry Smith crl->xscat = a->Mvctx; 975fa1c062SBarry Smith PetscFunctionReturn(0); 985fa1c062SBarry Smith } 995fa1c062SBarry Smith 1005fa1c062SBarry Smith #undef __FUNCT__ 1011472f72bSBarry Smith #define __FUNCT__ "MatAssemblyEnd_MPICRL" 1021472f72bSBarry Smith PetscErrorCode MatAssemblyEnd_MPICRL(Mat A, MatAssemblyType mode) 1035fa1c062SBarry Smith { 1045fa1c062SBarry Smith PetscErrorCode ierr; 1051472f72bSBarry Smith Mat_CRL *crl = (Mat_CRL*) A->spptr; 1061472f72bSBarry Smith Mat_MPIAIJ *a = (Mat_MPIAIJ*)A->data; 1071472f72bSBarry Smith Mat_SeqAIJ *Aij = (Mat_SeqAIJ*)(a->A->data), *Bij = (Mat_SeqAIJ*)(a->A->data); 1085fa1c062SBarry Smith 1095fa1c062SBarry Smith PetscFunctionBegin; 1101472f72bSBarry Smith if (mode == MAT_FLUSH_ASSEMBLY) PetscFunctionReturn(0); 1115fa1c062SBarry Smith 1121472f72bSBarry Smith /* Since a MATMPICRL matrix is really just a MATMPIAIJ with some 1131472f72bSBarry Smith * extra information, call the AssemblyEnd routine for a MATMPIAIJ. 1141472f72bSBarry Smith * I'm not sure if this is the best way to do this, but it avoids 1151472f72bSBarry Smith * a lot of code duplication. 1161472f72bSBarry Smith * I also note that currently MATMPICRL doesn't know anything about 1171472f72bSBarry Smith * the Mat_CompressedRow data structure that MPIAIJ now uses when there 1181472f72bSBarry Smith * are many zero rows. If the MPIAIJ assembly end routine decides to use 1191472f72bSBarry Smith * this, this may break things. (Don't know... haven't looked at it.) */ 1201472f72bSBarry Smith Aij->inode.use = PETSC_FALSE; 1211472f72bSBarry Smith Bij->inode.use = PETSC_FALSE; 1221472f72bSBarry Smith (*crl->AssemblyEnd)(A, mode); 1235fa1c062SBarry Smith 1241472f72bSBarry Smith /* Now calculate the permutation and grouping information. */ 1251472f72bSBarry Smith ierr = MPICRL_create_crl(A);CHKERRQ(ierr); 1265fa1c062SBarry Smith PetscFunctionReturn(0); 1275fa1c062SBarry Smith } 1285fa1c062SBarry Smith 1291472f72bSBarry Smith extern PetscErrorCode MatMult_CRL(Mat,Vec,Vec); 1301472f72bSBarry Smith extern PetscErrorCode MatDuplicate_CRL(Mat,MatDuplicateOption,Mat*); 1315fa1c062SBarry Smith 1321472f72bSBarry Smith /* MatConvert_MPIAIJ_MPICRL converts a MPIAIJ matrix into a 1331472f72bSBarry Smith * MPICRL matrix. This routine is called by the MatCreate_MPICRL() 1341472f72bSBarry Smith * routine, but can also be used to convert an assembled MPIAIJ matrix 1351472f72bSBarry Smith * into a MPICRL one. */ 1365fa1c062SBarry Smith EXTERN_C_BEGIN 1375fa1c062SBarry Smith #undef __FUNCT__ 1381472f72bSBarry Smith #define __FUNCT__ "MatConvert_MPIAIJ_MPICRL" 1391472f72bSBarry Smith PetscErrorCode PETSCMAT_DLLEXPORT MatConvert_MPIAIJ_MPICRL(Mat A,MatType type,MatReuse reuse,Mat *newmat) 1405fa1c062SBarry Smith { 1411472f72bSBarry Smith /* This routine is only called to convert to MATMPICRL 1421472f72bSBarry Smith * from MATMPIAIJ, so we can ignore 'MatType Type'. */ 1435fa1c062SBarry Smith PetscErrorCode ierr; 1445fa1c062SBarry Smith Mat B = *newmat; 1451472f72bSBarry Smith Mat_CRL *crl; 1465fa1c062SBarry Smith 1475fa1c062SBarry Smith PetscFunctionBegin; 1485fa1c062SBarry Smith if (reuse == MAT_INITIAL_MATRIX) { 1495fa1c062SBarry Smith ierr = MatDuplicate(A,MAT_COPY_VALUES,&B);CHKERRQ(ierr); 1505fa1c062SBarry Smith } 1515fa1c062SBarry Smith 1521472f72bSBarry Smith ierr = PetscNew(Mat_CRL,&crl);CHKERRQ(ierr); 1535fa1c062SBarry Smith B->spptr = (void *) crl; 1545fa1c062SBarry Smith 1551472f72bSBarry Smith /* Save a pointer to the original MPIAIJ assembly end routine, because we 1565fa1c062SBarry Smith * will want to use it later in the CRL assembly end routine. 1571472f72bSBarry Smith * Also, save a pointer to the original MPIAIJ Destroy routine, because we 1585fa1c062SBarry Smith * will want to use it in the CRL destroy routine. */ 1591472f72bSBarry Smith crl->AssemblyEnd = A->ops->assemblyend; 1601472f72bSBarry Smith crl->MatDestroy = A->ops->destroy; 1611472f72bSBarry Smith crl->MatDuplicate = A->ops->duplicate; 1625fa1c062SBarry Smith 1635fa1c062SBarry Smith /* Set function pointers for methods that we inherit from AIJ but 1645fa1c062SBarry Smith * override. */ 1651472f72bSBarry Smith B->ops->duplicate = MatDuplicate_CRL; 1661472f72bSBarry Smith B->ops->assemblyend = MatAssemblyEnd_MPICRL; 1671472f72bSBarry Smith B->ops->destroy = MatDestroy_MPICRL; 1681472f72bSBarry Smith B->ops->mult = MatMult_CRL; 1695fa1c062SBarry Smith 1705fa1c062SBarry Smith /* If A has already been assembled, compute the permutation. */ 1715fa1c062SBarry Smith if (A->assembled == PETSC_TRUE) { 1721472f72bSBarry Smith ierr = MPICRL_create_crl(B);CHKERRQ(ierr); 1735fa1c062SBarry Smith } 1741472f72bSBarry Smith ierr = PetscObjectChangeTypeName((PetscObject)B,MATMPICRL);CHKERRQ(ierr); 1755fa1c062SBarry Smith *newmat = B; 1765fa1c062SBarry Smith PetscFunctionReturn(0); 1775fa1c062SBarry Smith } 1785fa1c062SBarry Smith EXTERN_C_END 1795fa1c062SBarry Smith 1805fa1c062SBarry Smith 1815fa1c062SBarry Smith #undef __FUNCT__ 1821472f72bSBarry Smith #define __FUNCT__ "MatCreateMPICRL" 1835fa1c062SBarry Smith /*@C 1841472f72bSBarry Smith MatCreateMPICRL - Creates a sparse matrix of type MPICRL. 1855fa1c062SBarry Smith This type inherits from AIJ, but stores some additional 1865fa1c062SBarry Smith information that is used to allow better vectorization of 1875fa1c062SBarry Smith the matrix-vector product. At the cost of increased storage, the AIJ formatted 1885fa1c062SBarry Smith matrix can be copied to a format in which pieces of the matrix are 1895fa1c062SBarry Smith stored in ELLPACK format, allowing the vectorized matrix multiply 1905fa1c062SBarry Smith routine to use stride-1 memory accesses. As with the AIJ type, it is 1915fa1c062SBarry Smith important to preallocate matrix storage in order to get good assembly 1925fa1c062SBarry Smith performance. 1935fa1c062SBarry Smith 1945fa1c062SBarry Smith Collective on MPI_Comm 1955fa1c062SBarry Smith 1965fa1c062SBarry Smith Input Parameters: 1975fa1c062SBarry Smith + comm - MPI communicator, set to PETSC_COMM_SELF 1985fa1c062SBarry Smith . m - number of rows 1995fa1c062SBarry Smith . n - number of columns 2005fa1c062SBarry Smith . nz - number of nonzeros per row (same for all rows) 2015fa1c062SBarry Smith - nnz - array containing the number of nonzeros in the various rows 2025fa1c062SBarry Smith (possibly different for each row) or PETSC_NULL 2035fa1c062SBarry Smith 2045fa1c062SBarry Smith Output Parameter: 2055fa1c062SBarry Smith . A - the matrix 2065fa1c062SBarry Smith 2075fa1c062SBarry Smith Notes: 2085fa1c062SBarry Smith If nnz is given then nz is ignored 2095fa1c062SBarry Smith 2105fa1c062SBarry Smith Level: intermediate 2115fa1c062SBarry Smith 2125fa1c062SBarry Smith .keywords: matrix, cray, sparse, parallel 2135fa1c062SBarry Smith 2145fa1c062SBarry Smith .seealso: MatCreate(), MatCreateMPICSRPERM(), MatSetValues() 2155fa1c062SBarry Smith @*/ 2161472f72bSBarry Smith PetscErrorCode PETSCMAT_DLLEXPORT MatCreateMPICRL(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[],Mat *A) 2175fa1c062SBarry Smith { 2185fa1c062SBarry Smith PetscErrorCode ierr; 2195fa1c062SBarry Smith 2205fa1c062SBarry Smith PetscFunctionBegin; 2215fa1c062SBarry Smith ierr = MatCreate(comm,A);CHKERRQ(ierr); 2225fa1c062SBarry Smith ierr = MatSetSizes(*A,m,n,m,n);CHKERRQ(ierr); 2231472f72bSBarry Smith ierr = MatSetType(*A,MATMPICRL);CHKERRQ(ierr); 2241472f72bSBarry Smith ierr = MatMPIAIJSetPreallocation_MPIAIJ(*A,nz,(PetscInt*)nnz,onz,(PetscInt*)onnz);CHKERRQ(ierr); 2255fa1c062SBarry Smith PetscFunctionReturn(0); 2265fa1c062SBarry Smith } 2275fa1c062SBarry Smith 2285fa1c062SBarry Smith 2295fa1c062SBarry Smith EXTERN_C_BEGIN 2305fa1c062SBarry Smith #undef __FUNCT__ 2311472f72bSBarry Smith #define __FUNCT__ "MatCreate_MPICRL" 2321472f72bSBarry Smith PetscErrorCode PETSCMAT_DLLEXPORT MatCreate_MPICRL(Mat A) 2335fa1c062SBarry Smith { 2345fa1c062SBarry Smith PetscErrorCode ierr; 2355fa1c062SBarry Smith 2365fa1c062SBarry Smith PetscFunctionBegin; 2371472f72bSBarry Smith /* Change the type name before calling MatSetType() to force proper construction of MPIAIJ 2381472f72bSBarry Smith and MATMPICRL types. */ 2391472f72bSBarry Smith ierr = PetscObjectChangeTypeName((PetscObject)A,MATMPICRL);CHKERRQ(ierr); 2401472f72bSBarry Smith ierr = MatSetType(A,MATMPIAIJ);CHKERRQ(ierr); 2411472f72bSBarry Smith ierr = MatConvert_MPIAIJ_MPICRL(A,MATMPICRL,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 2425fa1c062SBarry Smith PetscFunctionReturn(0); 2435fa1c062SBarry Smith } 2445fa1c062SBarry Smith EXTERN_C_END 2455fa1c062SBarry Smith 246