1be1d678aSKris Buschelman #define PETSCMAT_DLL 21c2a3de1SBarry Smith 3397b6df1SKris Buschelman /* 4c2b5dc30SHong Zhang Provides an interface to the MUMPS sparse solver 5397b6df1SKris Buschelman */ 6397b6df1SKris Buschelman #include "src/mat/impls/aij/seq/aij.h" 7397b6df1SKris Buschelman #include "src/mat/impls/aij/mpi/mpiaij.h" 8397b6df1SKris Buschelman #include "src/mat/impls/sbaij/seq/sbaij.h" 9397b6df1SKris Buschelman #include "src/mat/impls/sbaij/mpi/mpisbaij.h" 10397b6df1SKris Buschelman 11397b6df1SKris Buschelman EXTERN_C_BEGIN 12397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 13397b6df1SKris Buschelman #include "zmumps_c.h" 14397b6df1SKris Buschelman #else 15397b6df1SKris Buschelman #include "dmumps_c.h" 16397b6df1SKris Buschelman #endif 17397b6df1SKris Buschelman EXTERN_C_END 18397b6df1SKris Buschelman #define JOB_INIT -1 19397b6df1SKris Buschelman #define JOB_END -2 20397b6df1SKris Buschelman /* macros s.t. indices match MUMPS documentation */ 21397b6df1SKris Buschelman #define ICNTL(I) icntl[(I)-1] 22397b6df1SKris Buschelman #define CNTL(I) cntl[(I)-1] 23397b6df1SKris Buschelman #define INFOG(I) infog[(I)-1] 24a7aca84bSHong Zhang #define INFO(I) info[(I)-1] 25397b6df1SKris Buschelman #define RINFOG(I) rinfog[(I)-1] 26adc1d99fSHong Zhang #define RINFO(I) rinfo[(I)-1] 27397b6df1SKris Buschelman 28397b6df1SKris Buschelman typedef struct { 29397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 30397b6df1SKris Buschelman ZMUMPS_STRUC_C id; 31397b6df1SKris Buschelman #else 32397b6df1SKris Buschelman DMUMPS_STRUC_C id; 33397b6df1SKris Buschelman #endif 34397b6df1SKris Buschelman MatStructure matstruc; 35c1490034SHong Zhang PetscMPIInt myid,size; 36c1490034SHong Zhang int *irn,*jcn,sym; 37397b6df1SKris Buschelman PetscScalar *val; 38397b6df1SKris Buschelman MPI_Comm comm_mumps; 39397b6df1SKris Buschelman 40c338a77dSKris Buschelman PetscTruth isAIJ,CleanUpMUMPS; 416849ba73SBarry Smith PetscErrorCode (*MatDuplicate)(Mat,MatDuplicateOption,Mat*); 426849ba73SBarry Smith PetscErrorCode (*MatView)(Mat,PetscViewer); 436849ba73SBarry Smith PetscErrorCode (*MatAssemblyEnd)(Mat,MatAssemblyType); 446849ba73SBarry Smith PetscErrorCode (*MatLUFactorSymbolic)(Mat,IS,IS,MatFactorInfo*,Mat*); 456849ba73SBarry Smith PetscErrorCode (*MatCholeskyFactorSymbolic)(Mat,IS,MatFactorInfo*,Mat*); 466849ba73SBarry Smith PetscErrorCode (*MatDestroy)(Mat); 476849ba73SBarry Smith PetscErrorCode (*specialdestroy)(Mat); 486849ba73SBarry Smith PetscErrorCode (*MatPreallocate)(Mat,int,int,int*,int,int*); 49f0c56d0fSKris Buschelman } Mat_MUMPS; 50f0c56d0fSKris Buschelman 51dfbe8321SBarry Smith EXTERN PetscErrorCode MatDuplicate_MUMPS(Mat,MatDuplicateOption,Mat*); 52892f6c3fSKris Buschelman EXTERN_C_BEGIN 5375179d2cSHong Zhang PetscErrorCode PETSCMAT_DLLEXPORT MatConvert_SBAIJ_SBAIJMUMPS(Mat,MatType,MatReuse,Mat*); 54892f6c3fSKris Buschelman EXTERN_C_END 55397b6df1SKris Buschelman /* convert Petsc mpiaij matrix to triples: row[nz], col[nz], val[nz] */ 56397b6df1SKris Buschelman /* 57397b6df1SKris Buschelman input: 5875747be1SHong Zhang A - matrix in mpiaij or mpisbaij (bs=1) format 59397b6df1SKris Buschelman shift - 0: C style output triple; 1: Fortran style output triple. 60397b6df1SKris Buschelman valOnly - FALSE: spaces are allocated and values are set for the triple 61397b6df1SKris Buschelman TRUE: only the values in v array are updated 62397b6df1SKris Buschelman output: 63397b6df1SKris Buschelman nnz - dim of r, c, and v (number of local nonzero entries of A) 64397b6df1SKris Buschelman r, c, v - row and col index, matrix values (matrix triples) 65397b6df1SKris Buschelman */ 66dfbe8321SBarry Smith PetscErrorCode MatConvertToTriples(Mat A,int shift,PetscTruth valOnly,int *nnz,int **r, int **c, PetscScalar **v) { 67c1490034SHong Zhang PetscInt *ai, *aj, *bi, *bj, rstart,nz, *garray; 68dfbe8321SBarry Smith PetscErrorCode ierr; 69c1490034SHong Zhang PetscInt i,j,jj,jB,irow,m=A->m,*ajj,*bjj,countA,countB,colA_start,jcol; 70c1490034SHong Zhang PetscInt *row,*col; 71397b6df1SKris Buschelman PetscScalar *av, *bv,*val; 72f0c56d0fSKris Buschelman Mat_MUMPS *mumps=(Mat_MUMPS*)A->spptr; 73397b6df1SKris Buschelman 74397b6df1SKris Buschelman PetscFunctionBegin; 75397b6df1SKris Buschelman if (mumps->isAIJ){ 76397b6df1SKris Buschelman Mat_MPIAIJ *mat = (Mat_MPIAIJ*)A->data; 77397b6df1SKris Buschelman Mat_SeqAIJ *aa=(Mat_SeqAIJ*)(mat->A)->data; 78397b6df1SKris Buschelman Mat_SeqAIJ *bb=(Mat_SeqAIJ*)(mat->B)->data; 79397b6df1SKris Buschelman nz = aa->nz + bb->nz; 80397b6df1SKris Buschelman ai=aa->i; aj=aa->j; bi=bb->i; bj=bb->j; rstart= mat->rstart; 81397b6df1SKris Buschelman garray = mat->garray; 82397b6df1SKris Buschelman av=aa->a; bv=bb->a; 83397b6df1SKris Buschelman 84397b6df1SKris Buschelman } else { 85397b6df1SKris Buschelman Mat_MPISBAIJ *mat = (Mat_MPISBAIJ*)A->data; 86397b6df1SKris Buschelman Mat_SeqSBAIJ *aa=(Mat_SeqSBAIJ*)(mat->A)->data; 87397b6df1SKris Buschelman Mat_SeqBAIJ *bb=(Mat_SeqBAIJ*)(mat->B)->data; 88521d7252SBarry Smith if (A->bs > 1) SETERRQ1(PETSC_ERR_SUP," bs=%d is not supported yet\n", A->bs); 896c6c5352SBarry Smith nz = aa->nz + bb->nz; 90397b6df1SKris Buschelman ai=aa->i; aj=aa->j; bi=bb->i; bj=bb->j; rstart= mat->rstart; 91397b6df1SKris Buschelman garray = mat->garray; 92397b6df1SKris Buschelman av=aa->a; bv=bb->a; 93397b6df1SKris Buschelman } 94397b6df1SKris Buschelman 95397b6df1SKris Buschelman if (!valOnly){ 967c307921SBarry Smith ierr = PetscMalloc(nz*sizeof(PetscInt) ,&row);CHKERRQ(ierr); 977c307921SBarry Smith ierr = PetscMalloc(nz*sizeof(PetscInt),&col);CHKERRQ(ierr); 98397b6df1SKris Buschelman ierr = PetscMalloc(nz*sizeof(PetscScalar),&val);CHKERRQ(ierr); 99397b6df1SKris Buschelman *r = row; *c = col; *v = val; 100397b6df1SKris Buschelman } else { 101397b6df1SKris Buschelman row = *r; col = *c; val = *v; 102397b6df1SKris Buschelman } 103397b6df1SKris Buschelman *nnz = nz; 104397b6df1SKris Buschelman 105028e57e8SHong Zhang jj = 0; irow = rstart; 106397b6df1SKris Buschelman for ( i=0; i<m; i++ ) { 107397b6df1SKris Buschelman ajj = aj + ai[i]; /* ptr to the beginning of this row */ 108397b6df1SKris Buschelman countA = ai[i+1] - ai[i]; 109397b6df1SKris Buschelman countB = bi[i+1] - bi[i]; 110397b6df1SKris Buschelman bjj = bj + bi[i]; 111397b6df1SKris Buschelman 112397b6df1SKris Buschelman /* get jB, the starting local col index for the 2nd B-part */ 113397b6df1SKris Buschelman colA_start = rstart + ajj[0]; /* the smallest col index for A */ 11475747be1SHong Zhang j=-1; 11575747be1SHong Zhang do { 11675747be1SHong Zhang j++; 11775747be1SHong Zhang if (j == countB) break; 118397b6df1SKris Buschelman jcol = garray[bjj[j]]; 11975747be1SHong Zhang } while (jcol < colA_start); 12075747be1SHong Zhang jB = j; 121397b6df1SKris Buschelman 122397b6df1SKris Buschelman /* B-part, smaller col index */ 123397b6df1SKris Buschelman colA_start = rstart + ajj[0]; /* the smallest col index for A */ 124397b6df1SKris Buschelman for (j=0; j<jB; j++){ 125397b6df1SKris Buschelman jcol = garray[bjj[j]]; 126397b6df1SKris Buschelman if (!valOnly){ 127397b6df1SKris Buschelman row[jj] = irow + shift; col[jj] = jcol + shift; 12875747be1SHong Zhang 129397b6df1SKris Buschelman } 130397b6df1SKris Buschelman val[jj++] = *bv++; 131397b6df1SKris Buschelman } 132397b6df1SKris Buschelman /* A-part */ 133397b6df1SKris Buschelman for (j=0; j<countA; j++){ 134397b6df1SKris Buschelman if (!valOnly){ 135397b6df1SKris Buschelman row[jj] = irow + shift; col[jj] = rstart + ajj[j] + shift; 136397b6df1SKris Buschelman } 137397b6df1SKris Buschelman val[jj++] = *av++; 138397b6df1SKris Buschelman } 139397b6df1SKris Buschelman /* B-part, larger col index */ 140397b6df1SKris Buschelman for (j=jB; j<countB; j++){ 141397b6df1SKris Buschelman if (!valOnly){ 142397b6df1SKris Buschelman row[jj] = irow + shift; col[jj] = garray[bjj[j]] + shift; 143397b6df1SKris Buschelman } 144397b6df1SKris Buschelman val[jj++] = *bv++; 145397b6df1SKris Buschelman } 146397b6df1SKris Buschelman irow++; 147397b6df1SKris Buschelman } 148397b6df1SKris Buschelman 149397b6df1SKris Buschelman PetscFunctionReturn(0); 150397b6df1SKris Buschelman } 151397b6df1SKris Buschelman 152c338a77dSKris Buschelman EXTERN_C_BEGIN 153c338a77dSKris Buschelman #undef __FUNCT__ 154c338a77dSKris Buschelman #define __FUNCT__ "MatConvert_MUMPS_Base" 15575179d2cSHong Zhang PetscErrorCode PETSCMAT_DLLEXPORT MatConvert_MUMPS_Base(Mat A,MatType type,MatReuse reuse,Mat *newmat) \ 156521d7252SBarry Smith { 157dfbe8321SBarry Smith PetscErrorCode ierr; 158c338a77dSKris Buschelman Mat B=*newmat; 159f0c56d0fSKris Buschelman Mat_MUMPS *mumps=(Mat_MUMPS*)A->spptr; 160901853e0SKris Buschelman void (*f)(void); 161c338a77dSKris Buschelman 162c338a77dSKris Buschelman PetscFunctionBegin; 163ceb03754SKris Buschelman if (reuse == MAT_INITIAL_MATRIX) { 164c338a77dSKris Buschelman ierr = MatDuplicate(A,MAT_COPY_VALUES,&B);CHKERRQ(ierr); 165c338a77dSKris Buschelman } 166f0c56d0fSKris Buschelman B->ops->duplicate = mumps->MatDuplicate; 167f0c56d0fSKris Buschelman B->ops->view = mumps->MatView; 168f0c56d0fSKris Buschelman B->ops->assemblyend = mumps->MatAssemblyEnd; 169f0c56d0fSKris Buschelman B->ops->lufactorsymbolic = mumps->MatLUFactorSymbolic; 170f0c56d0fSKris Buschelman B->ops->choleskyfactorsymbolic = mumps->MatCholeskyFactorSymbolic; 171f0c56d0fSKris Buschelman B->ops->destroy = mumps->MatDestroy; 172901853e0SKris Buschelman 173*f68b968cSBarry Smith ierr = PetscObjectQueryFunction((PetscObject)B,"MatMPISBAIJSetPreallocation_C",(PetscVoidStarFunction)&f);CHKERRQ(ierr); 174901853e0SKris Buschelman if (f) { 175*f68b968cSBarry Smith ierr = PetscObjectComposeFunction((PetscObject)B,"MatMPISBAIJSetPreallocation_C","",(PetscVoidFunction)mumps->MatPreallocate);CHKERRQ(ierr); 176901853e0SKris Buschelman } 177f0c56d0fSKris Buschelman ierr = PetscFree(mumps);CHKERRQ(ierr); 178901853e0SKris Buschelman 179901853e0SKris Buschelman ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_seqaij_aijmumps_C","",PETSC_NULL);CHKERRQ(ierr); 180901853e0SKris Buschelman ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_aijmumps_seqaij_C","",PETSC_NULL);CHKERRQ(ierr); 181901853e0SKris Buschelman ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_mpiaij_aijmumps_C","",PETSC_NULL);CHKERRQ(ierr); 182901853e0SKris Buschelman ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_aijmumps_mpiaij_C","",PETSC_NULL);CHKERRQ(ierr); 1832895b8caSSatish Balay ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_seqsbaij_sbaijmumps_C","",PETSC_NULL);CHKERRQ(ierr); 1842895b8caSSatish Balay ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_sbaijmumps_seqsbaij_C","",PETSC_NULL);CHKERRQ(ierr); 185901853e0SKris Buschelman ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_mpisbaij_sbaijmumps_C","",PETSC_NULL);CHKERRQ(ierr); 186901853e0SKris Buschelman ierr = PetscObjectComposeFunction((PetscObject)B,"MatConvert_sbaijmumps_mpisbaij_C","",PETSC_NULL);CHKERRQ(ierr); 187901853e0SKris Buschelman 188901853e0SKris Buschelman ierr = PetscObjectChangeTypeName((PetscObject)B,type);CHKERRQ(ierr); 189c338a77dSKris Buschelman *newmat = B; 190c338a77dSKris Buschelman PetscFunctionReturn(0); 191c338a77dSKris Buschelman } 192c338a77dSKris Buschelman EXTERN_C_END 193c338a77dSKris Buschelman 194397b6df1SKris Buschelman #undef __FUNCT__ 1953924e44cSKris Buschelman #define __FUNCT__ "MatDestroy_MUMPS" 196dfbe8321SBarry Smith PetscErrorCode MatDestroy_MUMPS(Mat A) 197dfbe8321SBarry Smith { 198f0c56d0fSKris Buschelman Mat_MUMPS *lu=(Mat_MUMPS*)A->spptr; 199dfbe8321SBarry Smith PetscErrorCode ierr; 200c1490034SHong Zhang PetscMPIInt size=lu->size; 2016849ba73SBarry Smith PetscErrorCode (*specialdestroy)(Mat); 202397b6df1SKris Buschelman PetscFunctionBegin; 203397b6df1SKris Buschelman if (lu->CleanUpMUMPS) { 204397b6df1SKris Buschelman /* Terminate instance, deallocate memories */ 205397b6df1SKris Buschelman lu->id.job=JOB_END; 206397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 207397b6df1SKris Buschelman zmumps_c(&lu->id); 208397b6df1SKris Buschelman #else 209397b6df1SKris Buschelman dmumps_c(&lu->id); 210397b6df1SKris Buschelman #endif 211c338a77dSKris Buschelman if (lu->irn) { 212c338a77dSKris Buschelman ierr = PetscFree(lu->irn);CHKERRQ(ierr); 213c338a77dSKris Buschelman } 214c338a77dSKris Buschelman if (lu->jcn) { 215c338a77dSKris Buschelman ierr = PetscFree(lu->jcn);CHKERRQ(ierr); 216c338a77dSKris Buschelman } 217c338a77dSKris Buschelman if (size>1 && lu->val) { 218c338a77dSKris Buschelman ierr = PetscFree(lu->val);CHKERRQ(ierr); 219c338a77dSKris Buschelman } 220397b6df1SKris Buschelman ierr = MPI_Comm_free(&(lu->comm_mumps));CHKERRQ(ierr); 221397b6df1SKris Buschelman } 222a39386dcSKris Buschelman specialdestroy = lu->specialdestroy; 223a39386dcSKris Buschelman ierr = (*specialdestroy)(A);CHKERRQ(ierr); 224c338a77dSKris Buschelman ierr = (*A->ops->destroy)(A);CHKERRQ(ierr); 225397b6df1SKris Buschelman PetscFunctionReturn(0); 226397b6df1SKris Buschelman } 227397b6df1SKris Buschelman 228397b6df1SKris Buschelman #undef __FUNCT__ 229a39386dcSKris Buschelman #define __FUNCT__ "MatDestroy_AIJMUMPS" 230dfbe8321SBarry Smith PetscErrorCode MatDestroy_AIJMUMPS(Mat A) 231dfbe8321SBarry Smith { 2326849ba73SBarry Smith PetscErrorCode ierr; 2336849ba73SBarry Smith int size; 234a39386dcSKris Buschelman 235a39386dcSKris Buschelman PetscFunctionBegin; 236a39386dcSKris Buschelman ierr = MPI_Comm_size(A->comm,&size);CHKERRQ(ierr); 237a39386dcSKris Buschelman if (size==1) { 238ceb03754SKris Buschelman ierr = MatConvert_MUMPS_Base(A,MATSEQAIJ,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 239a39386dcSKris Buschelman } else { 240ceb03754SKris Buschelman ierr = MatConvert_MUMPS_Base(A,MATMPIAIJ,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 241a39386dcSKris Buschelman } 242a39386dcSKris Buschelman PetscFunctionReturn(0); 243a39386dcSKris Buschelman } 244a39386dcSKris Buschelman 245a39386dcSKris Buschelman #undef __FUNCT__ 246a39386dcSKris Buschelman #define __FUNCT__ "MatDestroy_SBAIJMUMPS" 247dfbe8321SBarry Smith PetscErrorCode MatDestroy_SBAIJMUMPS(Mat A) 248dfbe8321SBarry Smith { 2496849ba73SBarry Smith PetscErrorCode ierr; 2506849ba73SBarry Smith int size; 251a39386dcSKris Buschelman 252a39386dcSKris Buschelman PetscFunctionBegin; 253a39386dcSKris Buschelman ierr = MPI_Comm_size(A->comm,&size);CHKERRQ(ierr); 254a39386dcSKris Buschelman if (size==1) { 255ceb03754SKris Buschelman ierr = MatConvert_MUMPS_Base(A,MATSEQSBAIJ,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 256a39386dcSKris Buschelman } else { 257ceb03754SKris Buschelman ierr = MatConvert_MUMPS_Base(A,MATMPISBAIJ,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 258a39386dcSKris Buschelman } 259a39386dcSKris Buschelman PetscFunctionReturn(0); 260a39386dcSKris Buschelman } 261a39386dcSKris Buschelman 262a39386dcSKris Buschelman #undef __FUNCT__ 263c338a77dSKris Buschelman #define __FUNCT__ "MatFactorInfo_MUMPS" 264dfbe8321SBarry Smith PetscErrorCode MatFactorInfo_MUMPS(Mat A,PetscViewer viewer) { 265f0c56d0fSKris Buschelman Mat_MUMPS *lu=(Mat_MUMPS*)A->spptr; 266dfbe8321SBarry Smith PetscErrorCode ierr; 267397b6df1SKris Buschelman 268397b6df1SKris Buschelman PetscFunctionBegin; 269c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer,"MUMPS run parameters:\n");CHKERRQ(ierr); 270c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," SYM (matrix type): %d \n",lu->id.sym);CHKERRQ(ierr); 271c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," PAR (host participation): %d \n",lu->id.par);CHKERRQ(ierr); 272c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(4) (level of printing): %d \n",lu->id.ICNTL(4));CHKERRQ(ierr); 273c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(5) (input mat struct): %d \n",lu->id.ICNTL(5));CHKERRQ(ierr); 274c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(6) (matrix prescaling): %d \n",lu->id.ICNTL(6));CHKERRQ(ierr); 275c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(7) (matrix ordering): %d \n",lu->id.ICNTL(7));CHKERRQ(ierr); 276c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(9) (A/A^T x=b is solved): %d \n",lu->id.ICNTL(9));CHKERRQ(ierr); 277c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(10) (max num of refinements): %d \n",lu->id.ICNTL(10));CHKERRQ(ierr); 278c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(11) (error analysis): %d \n",lu->id.ICNTL(11));CHKERRQ(ierr); 279958c9bccSBarry Smith if (!lu->myid && lu->id.ICNTL(11)>0) { 280c338a77dSKris Buschelman ierr = PetscPrintf(PETSC_COMM_SELF," RINFOG(4) (inf norm of input mat): %g\n",lu->id.RINFOG(4));CHKERRQ(ierr); 281c338a77dSKris Buschelman ierr = PetscPrintf(PETSC_COMM_SELF," RINFOG(5) (inf norm of solution): %g\n",lu->id.RINFOG(5));CHKERRQ(ierr); 282c338a77dSKris Buschelman ierr = PetscPrintf(PETSC_COMM_SELF," RINFOG(6) (inf norm of residual): %g\n",lu->id.RINFOG(6));CHKERRQ(ierr); 283c338a77dSKris Buschelman ierr = PetscPrintf(PETSC_COMM_SELF," RINFOG(7),RINFOG(8) (backward error est): %g, %g\n",lu->id.RINFOG(7),lu->id.RINFOG(8));CHKERRQ(ierr); 284c338a77dSKris Buschelman ierr = PetscPrintf(PETSC_COMM_SELF," RINFOG(9) (error estimate): %g \n",lu->id.RINFOG(9));CHKERRQ(ierr); 285c338a77dSKris Buschelman ierr = PetscPrintf(PETSC_COMM_SELF," RINFOG(10),RINFOG(11)(condition numbers): %g, %g\n",lu->id.RINFOG(10),lu->id.RINFOG(11));CHKERRQ(ierr); 286c338a77dSKris Buschelman 287c338a77dSKris Buschelman } 288c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(12) (efficiency control): %d \n",lu->id.ICNTL(12));CHKERRQ(ierr); 289c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(13) (efficiency control): %d \n",lu->id.ICNTL(13));CHKERRQ(ierr); 290adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," ICNTL(14) (percentage of estimated workspace increase): %d \n",lu->id.ICNTL(14));CHKERRQ(ierr); 291c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(15) (efficiency control): %d \n",lu->id.ICNTL(15));CHKERRQ(ierr); 292c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," ICNTL(18) (input mat struct): %d \n",lu->id.ICNTL(18));CHKERRQ(ierr); 293c338a77dSKris Buschelman 294c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," CNTL(1) (relative pivoting threshold): %g \n",lu->id.CNTL(1));CHKERRQ(ierr); 295c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," CNTL(2) (stopping criterion of refinement): %g \n",lu->id.CNTL(2));CHKERRQ(ierr); 296c338a77dSKris Buschelman ierr = PetscViewerASCIIPrintf(viewer," CNTL(3) (absolute pivoting threshold): %g \n",lu->id.CNTL(3));CHKERRQ(ierr); 29757f0c58bSHong Zhang 29857f0c58bSHong Zhang /* infomation local to each processor */ 299958c9bccSBarry Smith if (!lu->myid) ierr = PetscPrintf(PETSC_COMM_SELF, " RINFO(1) (local estimated flops for the elimination after analysis): \n");CHKERRQ(ierr); 30057f0c58bSHong Zhang ierr = PetscSynchronizedPrintf(A->comm," [%d] %g \n",lu->myid,lu->id.RINFO(1));CHKERRQ(ierr); 30157f0c58bSHong Zhang ierr = PetscSynchronizedFlush(A->comm); 302958c9bccSBarry Smith if (!lu->myid) ierr = PetscPrintf(PETSC_COMM_SELF, " RINFO(2) (local estimated flops for the assembly after factorization): \n");CHKERRQ(ierr); 30357f0c58bSHong Zhang ierr = PetscSynchronizedPrintf(A->comm," [%d] %g \n",lu->myid,lu->id.RINFO(2));CHKERRQ(ierr); 30457f0c58bSHong Zhang ierr = PetscSynchronizedFlush(A->comm); 305958c9bccSBarry Smith if (!lu->myid) ierr = PetscPrintf(PETSC_COMM_SELF, " RINFO(3) (local estimated flops for the elimination after factorization): \n");CHKERRQ(ierr); 30657f0c58bSHong Zhang ierr = PetscSynchronizedPrintf(A->comm," [%d] %g \n",lu->myid,lu->id.RINFO(3));CHKERRQ(ierr); 30757f0c58bSHong Zhang ierr = PetscSynchronizedFlush(A->comm); 308adc1d99fSHong Zhang 309958c9bccSBarry Smith if (!lu->myid){ /* information from the host */ 310adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," RINFOG(1) (global estimated flops for the elimination after analysis): %g \n",lu->id.RINFOG(1));CHKERRQ(ierr); 311adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," RINFOG(2) (global estimated flops for the assembly after factorization): %g \n",lu->id.RINFOG(2));CHKERRQ(ierr); 312adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," RINFOG(3) (global estimated flops for the elimination after factorization): %g \n",lu->id.RINFOG(3));CHKERRQ(ierr); 313adc1d99fSHong Zhang 314adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(3) (estimated real workspace for factors on all processors after analysis): %d \n",lu->id.INFOG(3));CHKERRQ(ierr); 315adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(4) (estimated integer workspace for factors on all processors after analysis): %d \n",lu->id.INFOG(4));CHKERRQ(ierr); 316adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(5) (estimated maximum front size in the complete tree): %d \n",lu->id.INFOG(5));CHKERRQ(ierr); 317adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(6) (number of nodes in the complete tree): %d \n",lu->id.INFOG(6));CHKERRQ(ierr); 318adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(7) (ordering option effectively uese after analysis): %d \n",lu->id.INFOG(7));CHKERRQ(ierr); 319adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(8) (structural symmetry in percent of the permuted matrix after analysis): %d \n",lu->id.INFOG(8));CHKERRQ(ierr); 320adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(9) (total real space store the matrix factors after analysis): %d \n",lu->id.INFOG(9));CHKERRQ(ierr); 321adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(10) (total integer space store the matrix factors after analysis): %d \n",lu->id.INFOG(10));CHKERRQ(ierr); 322adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(11) (order of largest frontal matrix): %d \n",lu->id.INFOG(11));CHKERRQ(ierr); 323adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(12) (number of off-diagonal pivots): %d \n",lu->id.INFOG(12));CHKERRQ(ierr); 324adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(13) (number of delayed pivots after factorization): %d \n",lu->id.INFOG(13));CHKERRQ(ierr); 325adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(14) (number of memory compress after factorization): %d \n",lu->id.INFOG(14));CHKERRQ(ierr); 326adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(15) (number of steps of iterative refinement after solution): %d \n",lu->id.INFOG(15));CHKERRQ(ierr); 327adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(16) (estimated size (in million of bytes) of all MUMPS internal data for factorization after analysis: value on the most memory consuming processor): %d \n",lu->id.INFOG(16));CHKERRQ(ierr); 328adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(17) (estimated size of all MUMPS internal data for factorization after analysis: sum over all processors): %d \n",lu->id.INFOG(17));CHKERRQ(ierr); 329adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(18) (size of all MUMPS internal data allocated during factorization: value on the most memory consuming processor): %d \n",lu->id.INFOG(18));CHKERRQ(ierr); 330adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(19) (size of all MUMPS internal data allocated during factorization: sum over all processors): %d \n",lu->id.INFOG(19));CHKERRQ(ierr); 331adc1d99fSHong Zhang ierr = PetscViewerASCIIPrintf(viewer," INFOG(20) (estimated number of entries in the factors): %d \n",lu->id.INFOG(20));CHKERRQ(ierr); 332adc1d99fSHong Zhang } 333adc1d99fSHong Zhang 334397b6df1SKris Buschelman PetscFunctionReturn(0); 335397b6df1SKris Buschelman } 336397b6df1SKris Buschelman 337397b6df1SKris Buschelman #undef __FUNCT__ 338c1490034SHong Zhang #define __FUNCT__ "MatView_MUMPS" 339c1490034SHong Zhang PetscErrorCode MatView_MUMPS(Mat A,PetscViewer viewer) { 340dfbe8321SBarry Smith PetscErrorCode ierr; 34132077d6dSBarry Smith PetscTruth iascii; 342397b6df1SKris Buschelman PetscViewerFormat format; 343f0c56d0fSKris Buschelman Mat_MUMPS *mumps=(Mat_MUMPS*)(A->spptr); 344397b6df1SKris Buschelman 345397b6df1SKris Buschelman PetscFunctionBegin; 346397b6df1SKris Buschelman ierr = (*mumps->MatView)(A,viewer);CHKERRQ(ierr); 347397b6df1SKris Buschelman 34832077d6dSBarry Smith ierr = PetscTypeCompare((PetscObject)viewer,PETSC_VIEWER_ASCII,&iascii);CHKERRQ(ierr); 34932077d6dSBarry Smith if (iascii) { 350397b6df1SKris Buschelman ierr = PetscViewerGetFormat(viewer,&format);CHKERRQ(ierr); 351397b6df1SKris Buschelman if (format == PETSC_VIEWER_ASCII_FACTOR_INFO) { 352397b6df1SKris Buschelman ierr = MatFactorInfo_MUMPS(A,viewer);CHKERRQ(ierr); 353397b6df1SKris Buschelman } 354397b6df1SKris Buschelman } 355397b6df1SKris Buschelman PetscFunctionReturn(0); 356397b6df1SKris Buschelman } 357397b6df1SKris Buschelman 358397b6df1SKris Buschelman #undef __FUNCT__ 359f0c56d0fSKris Buschelman #define __FUNCT__ "MatSolve_AIJMUMPS" 360dfbe8321SBarry Smith PetscErrorCode MatSolve_AIJMUMPS(Mat A,Vec b,Vec x) { 361f0c56d0fSKris Buschelman Mat_MUMPS *lu=(Mat_MUMPS*)A->spptr; 362d54de34fSKris Buschelman PetscScalar *array; 363397b6df1SKris Buschelman Vec x_seq; 364397b6df1SKris Buschelman IS iden; 365397b6df1SKris Buschelman VecScatter scat; 366dfbe8321SBarry Smith PetscErrorCode ierr; 367397b6df1SKris Buschelman 368397b6df1SKris Buschelman PetscFunctionBegin; 369397b6df1SKris Buschelman if (lu->size > 1){ 370397b6df1SKris Buschelman if (!lu->myid){ 371397b6df1SKris Buschelman ierr = VecCreateSeq(PETSC_COMM_SELF,A->N,&x_seq);CHKERRQ(ierr); 372397b6df1SKris Buschelman ierr = ISCreateStride(PETSC_COMM_SELF,A->N,0,1,&iden);CHKERRQ(ierr); 373397b6df1SKris Buschelman } else { 374397b6df1SKris Buschelman ierr = VecCreateSeq(PETSC_COMM_SELF,0,&x_seq);CHKERRQ(ierr); 375397b6df1SKris Buschelman ierr = ISCreateStride(PETSC_COMM_SELF,0,0,1,&iden);CHKERRQ(ierr); 376397b6df1SKris Buschelman } 377397b6df1SKris Buschelman ierr = VecScatterCreate(b,iden,x_seq,iden,&scat);CHKERRQ(ierr); 378397b6df1SKris Buschelman ierr = ISDestroy(iden);CHKERRQ(ierr); 379397b6df1SKris Buschelman 380397b6df1SKris Buschelman ierr = VecScatterBegin(b,x_seq,INSERT_VALUES,SCATTER_FORWARD,scat);CHKERRQ(ierr); 381397b6df1SKris Buschelman ierr = VecScatterEnd(b,x_seq,INSERT_VALUES,SCATTER_FORWARD,scat);CHKERRQ(ierr); 382397b6df1SKris Buschelman if (!lu->myid) {ierr = VecGetArray(x_seq,&array);CHKERRQ(ierr);} 383397b6df1SKris Buschelman } else { /* size == 1 */ 384397b6df1SKris Buschelman ierr = VecCopy(b,x);CHKERRQ(ierr); 385397b6df1SKris Buschelman ierr = VecGetArray(x,&array);CHKERRQ(ierr); 386397b6df1SKris Buschelman } 387397b6df1SKris Buschelman if (!lu->myid) { /* define rhs on the host */ 388397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 389397b6df1SKris Buschelman lu->id.rhs = (mumps_double_complex*)array; 390397b6df1SKris Buschelman #else 391397b6df1SKris Buschelman lu->id.rhs = array; 392397b6df1SKris Buschelman #endif 393397b6df1SKris Buschelman } 394397b6df1SKris Buschelman 395397b6df1SKris Buschelman /* solve phase */ 396397b6df1SKris Buschelman lu->id.job=3; 397397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 398397b6df1SKris Buschelman zmumps_c(&lu->id); 399397b6df1SKris Buschelman #else 400397b6df1SKris Buschelman dmumps_c(&lu->id); 401397b6df1SKris Buschelman #endif 402397b6df1SKris Buschelman if (lu->id.INFOG(1) < 0) { 40379a5c55eSBarry Smith SETERRQ1(PETSC_ERR_LIB,"Error reported by MUMPS in solve phase: INFOG(1)=%d\n",lu->id.INFOG(1)); 404397b6df1SKris Buschelman } 405397b6df1SKris Buschelman 406397b6df1SKris Buschelman /* convert mumps solution x_seq to petsc mpi x */ 407397b6df1SKris Buschelman if (lu->size > 1) { 408397b6df1SKris Buschelman if (!lu->myid){ 409397b6df1SKris Buschelman ierr = VecRestoreArray(x_seq,&array);CHKERRQ(ierr); 410397b6df1SKris Buschelman } 411397b6df1SKris Buschelman ierr = VecScatterBegin(x_seq,x,INSERT_VALUES,SCATTER_REVERSE,scat);CHKERRQ(ierr); 412397b6df1SKris Buschelman ierr = VecScatterEnd(x_seq,x,INSERT_VALUES,SCATTER_REVERSE,scat);CHKERRQ(ierr); 413397b6df1SKris Buschelman ierr = VecScatterDestroy(scat);CHKERRQ(ierr); 414397b6df1SKris Buschelman ierr = VecDestroy(x_seq);CHKERRQ(ierr); 415397b6df1SKris Buschelman } else { 416397b6df1SKris Buschelman ierr = VecRestoreArray(x,&array);CHKERRQ(ierr); 417397b6df1SKris Buschelman } 418397b6df1SKris Buschelman 419397b6df1SKris Buschelman PetscFunctionReturn(0); 420397b6df1SKris Buschelman } 421397b6df1SKris Buschelman 422a58c3f20SHong Zhang /* 423a58c3f20SHong Zhang input: 424a58c3f20SHong Zhang F: numeric factor 425a58c3f20SHong Zhang output: 426a58c3f20SHong Zhang nneg: total number of negative pivots 427a58c3f20SHong Zhang nzero: 0 428a58c3f20SHong Zhang npos: (global dimension of F) - nneg 429a58c3f20SHong Zhang */ 430a58c3f20SHong Zhang 431a58c3f20SHong Zhang #undef __FUNCT__ 432a58c3f20SHong Zhang #define __FUNCT__ "MatGetInertia_SBAIJMUMPS" 433dfbe8321SBarry Smith PetscErrorCode MatGetInertia_SBAIJMUMPS(Mat F,int *nneg,int *nzero,int *npos) 434a58c3f20SHong Zhang { 435a58c3f20SHong Zhang Mat_MUMPS *lu =(Mat_MUMPS*)F->spptr; 436dfbe8321SBarry Smith PetscErrorCode ierr; 437c1490034SHong Zhang PetscMPIInt size; 438a58c3f20SHong Zhang 439a58c3f20SHong Zhang PetscFunctionBegin; 440bcb30aebSHong Zhang ierr = MPI_Comm_size(F->comm,&size);CHKERRQ(ierr); 441bcb30aebSHong Zhang /* MUMPS 4.3.1 calls ScaLAPACK when ICNTL(13)=0 (default), which does not offer the possibility to compute the inertia of a dense matrix. Set ICNTL(13)=1 to skip ScaLAPACK */ 442bcb30aebSHong Zhang if (size > 1 && lu->id.ICNTL(13) != 1){ 44379a5c55eSBarry Smith SETERRQ1(PETSC_ERR_ARG_WRONG,"ICNTL(13)=%d. -mat_mumps_icntl_13 must be set as 1 for correct global matrix inertia\n",lu->id.INFOG(13)); 444bcb30aebSHong Zhang } 445a58c3f20SHong Zhang if (nneg){ 446a58c3f20SHong Zhang if (!lu->myid){ 447a58c3f20SHong Zhang *nneg = lu->id.INFOG(12); 448a58c3f20SHong Zhang } 449bcb30aebSHong Zhang ierr = MPI_Bcast(nneg,1,MPI_INT,0,lu->comm_mumps);CHKERRQ(ierr); 450a58c3f20SHong Zhang } 451a58c3f20SHong Zhang if (nzero) *nzero = 0; 452a58c3f20SHong Zhang if (npos) *npos = F->M - (*nneg); 453a58c3f20SHong Zhang PetscFunctionReturn(0); 454a58c3f20SHong Zhang } 455a58c3f20SHong Zhang 456397b6df1SKris Buschelman #undef __FUNCT__ 45719facb7aSBarry Smith #define __FUNCT__ "MatFactorNumeric_AIJMUMPS" 458af281ebdSHong Zhang PetscErrorCode MatFactorNumeric_AIJMUMPS(Mat A,MatFactorInfo *info,Mat *F) 459af281ebdSHong Zhang { 460f0c56d0fSKris Buschelman Mat_MUMPS *lu =(Mat_MUMPS*)(*F)->spptr; 461f0c56d0fSKris Buschelman Mat_MUMPS *lua=(Mat_MUMPS*)(A)->spptr; 4626849ba73SBarry Smith PetscErrorCode ierr; 4636666c085SHong Zhang PetscInt rnz,nnz,nz=0,i,M=A->M,*ai,*aj,icntl; 464397b6df1SKris Buschelman PetscTruth valOnly,flg; 465e09efc27SHong Zhang Mat F_diag; 466397b6df1SKris Buschelman 467397b6df1SKris Buschelman PetscFunctionBegin; 468397b6df1SKris Buschelman if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){ 469f0c56d0fSKris Buschelman (*F)->ops->solve = MatSolve_AIJMUMPS; 470397b6df1SKris Buschelman 471397b6df1SKris Buschelman /* Initialize a MUMPS instance */ 472397b6df1SKris Buschelman ierr = MPI_Comm_rank(A->comm, &lu->myid); 473397b6df1SKris Buschelman ierr = MPI_Comm_size(A->comm,&lu->size);CHKERRQ(ierr); 47475747be1SHong Zhang lua->myid = lu->myid; lua->size = lu->size; 475397b6df1SKris Buschelman lu->id.job = JOB_INIT; 476397b6df1SKris Buschelman ierr = MPI_Comm_dup(A->comm,&(lu->comm_mumps));CHKERRQ(ierr); 477a0e2756fSSatish Balay ierr = MPICCommToFortranComm(lu->comm_mumps,&(lu->id.comm_fortran));CHKERRQ(ierr); 478397b6df1SKris Buschelman 479397b6df1SKris Buschelman /* Set mumps options */ 480397b6df1SKris Buschelman ierr = PetscOptionsBegin(A->comm,A->prefix,"MUMPS Options","Mat");CHKERRQ(ierr); 481397b6df1SKris Buschelman lu->id.par=1; /* host participates factorizaton and solve */ 482397b6df1SKris Buschelman lu->id.sym=lu->sym; 483397b6df1SKris Buschelman if (lu->sym == 2){ 484397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_sym","SYM: (1,2)","None",lu->id.sym,&icntl,&flg);CHKERRQ(ierr); 485397b6df1SKris Buschelman if (flg && icntl == 1) lu->id.sym=icntl; /* matrix is spd */ 486397b6df1SKris Buschelman } 487397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 488397b6df1SKris Buschelman zmumps_c(&lu->id); 489397b6df1SKris Buschelman #else 490397b6df1SKris Buschelman dmumps_c(&lu->id); 491397b6df1SKris Buschelman #endif 492397b6df1SKris Buschelman 493397b6df1SKris Buschelman if (lu->size == 1){ 494397b6df1SKris Buschelman lu->id.ICNTL(18) = 0; /* centralized assembled matrix input */ 495397b6df1SKris Buschelman } else { 496397b6df1SKris Buschelman lu->id.ICNTL(18) = 3; /* distributed assembled matrix input */ 497397b6df1SKris Buschelman } 498397b6df1SKris Buschelman 499397b6df1SKris Buschelman icntl=-1; 500397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_4","ICNTL(4): level of printing (0 to 4)","None",lu->id.ICNTL(4),&icntl,&flg);CHKERRQ(ierr); 50119facb7aSBarry Smith if ((flg && icntl > 0) || PetscLogPrintInfo) { 502397b6df1SKris Buschelman lu->id.ICNTL(4)=icntl; /* and use mumps default icntl(i), i=1,2,3 */ 503397b6df1SKris Buschelman } else { /* no output */ 504397b6df1SKris Buschelman lu->id.ICNTL(1) = 0; /* error message, default= 6 */ 505397b6df1SKris Buschelman lu->id.ICNTL(2) = -1; /* output stream for diagnostic printing, statistics, and warning. default=0 */ 506397b6df1SKris Buschelman lu->id.ICNTL(3) = -1; /* output stream for global information, default=6 */ 507397b6df1SKris Buschelman lu->id.ICNTL(4) = 0; /* level of printing, 0,1,2,3,4, default=2 */ 508397b6df1SKris Buschelman } 509397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_6","ICNTL(6): matrix prescaling (0 to 7)","None",lu->id.ICNTL(6),&lu->id.ICNTL(6),PETSC_NULL);CHKERRQ(ierr); 510397b6df1SKris Buschelman icntl=-1; 511397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_7","ICNTL(7): matrix ordering (0 to 7)","None",lu->id.ICNTL(7),&icntl,&flg);CHKERRQ(ierr); 512397b6df1SKris Buschelman if (flg) { 513397b6df1SKris Buschelman if (icntl== 1){ 514397b6df1SKris Buschelman SETERRQ(PETSC_ERR_SUP,"pivot order be set by the user in PERM_IN -- not supported by the PETSc/MUMPS interface\n"); 515397b6df1SKris Buschelman } else { 516397b6df1SKris Buschelman lu->id.ICNTL(7) = icntl; 517397b6df1SKris Buschelman } 518397b6df1SKris Buschelman } 519397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_9","ICNTL(9): A or A^T x=b to be solved. 1: A; otherwise: A^T","None",lu->id.ICNTL(9),&lu->id.ICNTL(9),PETSC_NULL);CHKERRQ(ierr); 520397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_10","ICNTL(10): max num of refinements","None",lu->id.ICNTL(10),&lu->id.ICNTL(10),PETSC_NULL);CHKERRQ(ierr); 52194b7f48cSBarry Smith ierr = PetscOptionsInt("-mat_mumps_icntl_11","ICNTL(11): error analysis, a positive value returns statistics (by -ksp_view)","None",lu->id.ICNTL(11),&lu->id.ICNTL(11),PETSC_NULL);CHKERRQ(ierr); 522397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_12","ICNTL(12): efficiency control","None",lu->id.ICNTL(12),&lu->id.ICNTL(12),PETSC_NULL);CHKERRQ(ierr); 523397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_13","ICNTL(13): efficiency control","None",lu->id.ICNTL(13),&lu->id.ICNTL(13),PETSC_NULL);CHKERRQ(ierr); 524adc1d99fSHong Zhang ierr = PetscOptionsInt("-mat_mumps_icntl_14","ICNTL(14): percentage of estimated workspace increase","None",lu->id.ICNTL(14),&lu->id.ICNTL(14),PETSC_NULL);CHKERRQ(ierr); 525397b6df1SKris Buschelman ierr = PetscOptionsInt("-mat_mumps_icntl_15","ICNTL(15): efficiency control","None",lu->id.ICNTL(15),&lu->id.ICNTL(15),PETSC_NULL);CHKERRQ(ierr); 526397b6df1SKris Buschelman 527397b6df1SKris Buschelman ierr = PetscOptionsReal("-mat_mumps_cntl_1","CNTL(1): relative pivoting threshold","None",lu->id.CNTL(1),&lu->id.CNTL(1),PETSC_NULL);CHKERRQ(ierr); 528397b6df1SKris Buschelman ierr = PetscOptionsReal("-mat_mumps_cntl_2","CNTL(2): stopping criterion of refinement","None",lu->id.CNTL(2),&lu->id.CNTL(2),PETSC_NULL);CHKERRQ(ierr); 529397b6df1SKris Buschelman ierr = PetscOptionsReal("-mat_mumps_cntl_3","CNTL(3): absolute pivoting threshold","None",lu->id.CNTL(3),&lu->id.CNTL(3),PETSC_NULL);CHKERRQ(ierr); 530397b6df1SKris Buschelman PetscOptionsEnd(); 531397b6df1SKris Buschelman } 532397b6df1SKris Buschelman 533397b6df1SKris Buschelman /* define matrix A */ 534397b6df1SKris Buschelman switch (lu->id.ICNTL(18)){ 535397b6df1SKris Buschelman case 0: /* centralized assembled matrix input (size=1) */ 536397b6df1SKris Buschelman if (!lu->myid) { 537c36ead0aSKris Buschelman if (lua->isAIJ){ 538397b6df1SKris Buschelman Mat_SeqAIJ *aa = (Mat_SeqAIJ*)A->data; 539397b6df1SKris Buschelman nz = aa->nz; 540397b6df1SKris Buschelman ai = aa->i; aj = aa->j; lu->val = aa->a; 541397b6df1SKris Buschelman } else { 542397b6df1SKris Buschelman Mat_SeqSBAIJ *aa = (Mat_SeqSBAIJ*)A->data; 5436c6c5352SBarry Smith nz = aa->nz; 544397b6df1SKris Buschelman ai = aa->i; aj = aa->j; lu->val = aa->a; 545397b6df1SKris Buschelman } 546397b6df1SKris Buschelman if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){ /* first numeric factorization, get irn and jcn */ 5477c307921SBarry Smith ierr = PetscMalloc(nz*sizeof(PetscInt),&lu->irn);CHKERRQ(ierr); 5487c307921SBarry Smith ierr = PetscMalloc(nz*sizeof(PetscInt),&lu->jcn);CHKERRQ(ierr); 549397b6df1SKris Buschelman nz = 0; 550397b6df1SKris Buschelman for (i=0; i<M; i++){ 551397b6df1SKris Buschelman rnz = ai[i+1] - ai[i]; 552397b6df1SKris Buschelman while (rnz--) { /* Fortran row/col index! */ 553397b6df1SKris Buschelman lu->irn[nz] = i+1; lu->jcn[nz] = (*aj)+1; aj++; nz++; 554397b6df1SKris Buschelman } 555397b6df1SKris Buschelman } 556397b6df1SKris Buschelman } 557397b6df1SKris Buschelman } 558397b6df1SKris Buschelman break; 559397b6df1SKris Buschelman case 3: /* distributed assembled matrix input (size>1) */ 560397b6df1SKris Buschelman if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){ 561397b6df1SKris Buschelman valOnly = PETSC_FALSE; 562397b6df1SKris Buschelman } else { 563397b6df1SKris Buschelman valOnly = PETSC_TRUE; /* only update mat values, not row and col index */ 564397b6df1SKris Buschelman } 565397b6df1SKris Buschelman ierr = MatConvertToTriples(A,1,valOnly, &nnz, &lu->irn, &lu->jcn, &lu->val);CHKERRQ(ierr); 566397b6df1SKris Buschelman break; 567397b6df1SKris Buschelman default: SETERRQ(PETSC_ERR_SUP,"Matrix input format is not supported by MUMPS."); 568397b6df1SKris Buschelman } 569397b6df1SKris Buschelman 570397b6df1SKris Buschelman /* analysis phase */ 571397b6df1SKris Buschelman if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){ 572397b6df1SKris Buschelman lu->id.n = M; 573397b6df1SKris Buschelman switch (lu->id.ICNTL(18)){ 574397b6df1SKris Buschelman case 0: /* centralized assembled matrix input */ 575397b6df1SKris Buschelman if (!lu->myid) { 576397b6df1SKris Buschelman lu->id.nz =nz; lu->id.irn=lu->irn; lu->id.jcn=lu->jcn; 577397b6df1SKris Buschelman if (lu->id.ICNTL(6)>1){ 578397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 579397b6df1SKris Buschelman lu->id.a = (mumps_double_complex*)lu->val; 580397b6df1SKris Buschelman #else 581397b6df1SKris Buschelman lu->id.a = lu->val; 582397b6df1SKris Buschelman #endif 583397b6df1SKris Buschelman } 584397b6df1SKris Buschelman } 585397b6df1SKris Buschelman break; 586397b6df1SKris Buschelman case 3: /* distributed assembled matrix input (size>1) */ 587397b6df1SKris Buschelman lu->id.nz_loc = nnz; 588397b6df1SKris Buschelman lu->id.irn_loc=lu->irn; lu->id.jcn_loc=lu->jcn; 589397b6df1SKris Buschelman if (lu->id.ICNTL(6)>1) { 590397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 591397b6df1SKris Buschelman lu->id.a_loc = (mumps_double_complex*)lu->val; 592397b6df1SKris Buschelman #else 593397b6df1SKris Buschelman lu->id.a_loc = lu->val; 594397b6df1SKris Buschelman #endif 595397b6df1SKris Buschelman } 596397b6df1SKris Buschelman break; 597397b6df1SKris Buschelman } 598397b6df1SKris Buschelman lu->id.job=1; 599397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 600397b6df1SKris Buschelman zmumps_c(&lu->id); 601397b6df1SKris Buschelman #else 602397b6df1SKris Buschelman dmumps_c(&lu->id); 603397b6df1SKris Buschelman #endif 604397b6df1SKris Buschelman if (lu->id.INFOG(1) < 0) { 60579a5c55eSBarry Smith SETERRQ1(PETSC_ERR_LIB,"Error reported by MUMPS in analysis phase: INFOG(1)=%d\n",lu->id.INFOG(1)); 606397b6df1SKris Buschelman } 607397b6df1SKris Buschelman } 608397b6df1SKris Buschelman 609397b6df1SKris Buschelman /* numerical factorization phase */ 610958c9bccSBarry Smith if(!lu->id.ICNTL(18)) { 611a7aca84bSHong Zhang if (!lu->myid) { 612397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 613397b6df1SKris Buschelman lu->id.a = (mumps_double_complex*)lu->val; 614397b6df1SKris Buschelman #else 615397b6df1SKris Buschelman lu->id.a = lu->val; 616397b6df1SKris Buschelman #endif 617397b6df1SKris Buschelman } 618397b6df1SKris Buschelman } else { 619397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 620397b6df1SKris Buschelman lu->id.a_loc = (mumps_double_complex*)lu->val; 621397b6df1SKris Buschelman #else 622397b6df1SKris Buschelman lu->id.a_loc = lu->val; 623397b6df1SKris Buschelman #endif 624397b6df1SKris Buschelman } 625397b6df1SKris Buschelman lu->id.job=2; 626397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX) 627397b6df1SKris Buschelman zmumps_c(&lu->id); 628397b6df1SKris Buschelman #else 629397b6df1SKris Buschelman dmumps_c(&lu->id); 630397b6df1SKris Buschelman #endif 631397b6df1SKris Buschelman if (lu->id.INFOG(1) < 0) { 63219facb7aSBarry Smith if (lu->id.INFO(1) == -13) { 63319facb7aSBarry Smith SETERRQ1(PETSC_ERR_LIB,"Error reported by MUMPS in numerical factorization phase: Cannot allocate required memory %d megabytes\n",lu->id.INFO(2)); 63419facb7aSBarry Smith } else { 63579a5c55eSBarry Smith SETERRQ2(PETSC_ERR_LIB,"Error reported by MUMPS in numerical factorization phase: INFO(1)=%d, INFO(2)=%d\n",lu->id.INFO(1),lu->id.INFO(2)); 636397b6df1SKris Buschelman } 63719facb7aSBarry Smith } 638397b6df1SKris Buschelman 63919facb7aSBarry Smith if (!lu->myid && lu->id.ICNTL(16) > 0){ 64079a5c55eSBarry Smith SETERRQ1(PETSC_ERR_LIB," lu->id.ICNTL(16):=%d\n",lu->id.INFOG(16)); 641397b6df1SKris Buschelman } 642397b6df1SKris Buschelman 6438ada1bb4SHong Zhang if (lu->size > 1){ 644e09efc27SHong Zhang if ((*F)->factor == FACTOR_LU){ 645e09efc27SHong Zhang F_diag = ((Mat_MPIAIJ *)(*F)->data)->A; 646e09efc27SHong Zhang } else { 647e09efc27SHong Zhang F_diag = ((Mat_MPISBAIJ *)(*F)->data)->A; 648e09efc27SHong Zhang } 649e09efc27SHong Zhang F_diag->assembled = PETSC_TRUE; 6508ada1bb4SHong Zhang } 651397b6df1SKris Buschelman (*F)->assembled = PETSC_TRUE; 652397b6df1SKris Buschelman lu->matstruc = SAME_NONZERO_PATTERN; 653ace87b0dSHong Zhang lu->CleanUpMUMPS = PETSC_TRUE; 654397b6df1SKris Buschelman PetscFunctionReturn(0); 655397b6df1SKris Buschelman } 656397b6df1SKris Buschelman 657397b6df1SKris Buschelman /* Note the Petsc r and c permutations are ignored */ 658397b6df1SKris Buschelman #undef __FUNCT__ 659f0c56d0fSKris Buschelman #define __FUNCT__ "MatLUFactorSymbolic_AIJMUMPS" 660dfbe8321SBarry Smith PetscErrorCode MatLUFactorSymbolic_AIJMUMPS(Mat A,IS r,IS c,MatFactorInfo *info,Mat *F) { 661397b6df1SKris Buschelman Mat B; 662f0c56d0fSKris Buschelman Mat_MUMPS *lu; 663dfbe8321SBarry Smith PetscErrorCode ierr; 664397b6df1SKris Buschelman 665397b6df1SKris Buschelman PetscFunctionBegin; 666397b6df1SKris Buschelman /* Create the factorization matrix */ 667f69a0ea3SMatthew Knepley ierr = MatCreate(A->comm,&B);CHKERRQ(ierr); 668f69a0ea3SMatthew Knepley ierr = MatSetSizes(B,A->m,A->n,A->M,A->N);CHKERRQ(ierr); 669be5d1d56SKris Buschelman ierr = MatSetType(B,A->type_name);CHKERRQ(ierr); 670397b6df1SKris Buschelman ierr = MatSeqAIJSetPreallocation(B,0,PETSC_NULL);CHKERRQ(ierr); 671397b6df1SKris Buschelman ierr = MatMPIAIJSetPreallocation(B,0,PETSC_NULL,0,PETSC_NULL);CHKERRQ(ierr); 672397b6df1SKris Buschelman 673f0c56d0fSKris Buschelman B->ops->lufactornumeric = MatFactorNumeric_AIJMUMPS; 674397b6df1SKris Buschelman B->factor = FACTOR_LU; 675f0c56d0fSKris Buschelman lu = (Mat_MUMPS*)B->spptr; 676397b6df1SKris Buschelman lu->sym = 0; 677397b6df1SKris Buschelman lu->matstruc = DIFFERENT_NONZERO_PATTERN; 678397b6df1SKris Buschelman 679397b6df1SKris Buschelman *F = B; 680397b6df1SKris Buschelman PetscFunctionReturn(0); 681397b6df1SKris Buschelman } 682397b6df1SKris Buschelman 683397b6df1SKris Buschelman /* Note the Petsc r permutation is ignored */ 684397b6df1SKris Buschelman #undef __FUNCT__ 685f0c56d0fSKris Buschelman #define __FUNCT__ "MatCholeskyFactorSymbolic_SBAIJMUMPS" 686dfbe8321SBarry Smith PetscErrorCode MatCholeskyFactorSymbolic_SBAIJMUMPS(Mat A,IS r,MatFactorInfo *info,Mat *F) { 687397b6df1SKris Buschelman Mat B; 688f0c56d0fSKris Buschelman Mat_MUMPS *lu; 689dfbe8321SBarry Smith PetscErrorCode ierr; 690397b6df1SKris Buschelman 691397b6df1SKris Buschelman PetscFunctionBegin; 692397b6df1SKris Buschelman /* Create the factorization matrix */ 693f69a0ea3SMatthew Knepley ierr = MatCreate(A->comm,&B);CHKERRQ(ierr); 69475179d2cSHong Zhang ierr = MatSetSizes(B,A->m,A->n,A->M,A->N);CHKERRQ(ierr); 695be5d1d56SKris Buschelman ierr = MatSetType(B,A->type_name);CHKERRQ(ierr); 696efc670deSHong Zhang ierr = MatSeqSBAIJSetPreallocation(B,1,0,PETSC_NULL);CHKERRQ(ierr); 697efc670deSHong Zhang ierr = MatMPISBAIJSetPreallocation(B,1,0,PETSC_NULL,0,PETSC_NULL);CHKERRQ(ierr); 698397b6df1SKris Buschelman 699f0c56d0fSKris Buschelman B->ops->choleskyfactornumeric = MatFactorNumeric_AIJMUMPS; 700a58c3f20SHong Zhang B->ops->getinertia = MatGetInertia_SBAIJMUMPS; 701397b6df1SKris Buschelman B->factor = FACTOR_CHOLESKY; 702f0c56d0fSKris Buschelman lu = (Mat_MUMPS*)B->spptr; 703397b6df1SKris Buschelman lu->sym = 2; 704397b6df1SKris Buschelman lu->matstruc = DIFFERENT_NONZERO_PATTERN; 705397b6df1SKris Buschelman 706397b6df1SKris Buschelman *F = B; 707397b6df1SKris Buschelman PetscFunctionReturn(0); 708397b6df1SKris Buschelman } 709397b6df1SKris Buschelman 710397b6df1SKris Buschelman #undef __FUNCT__ 711f0c56d0fSKris Buschelman #define __FUNCT__ "MatAssemblyEnd_AIJMUMPS" 712dfbe8321SBarry Smith PetscErrorCode MatAssemblyEnd_AIJMUMPS(Mat A,MatAssemblyType mode) { 713dfbe8321SBarry Smith PetscErrorCode ierr; 714f0c56d0fSKris Buschelman Mat_MUMPS *mumps=(Mat_MUMPS*)A->spptr; 715c338a77dSKris Buschelman 716397b6df1SKris Buschelman PetscFunctionBegin; 717c338a77dSKris Buschelman ierr = (*mumps->MatAssemblyEnd)(A,mode);CHKERRQ(ierr); 718f0c56d0fSKris Buschelman 719c338a77dSKris Buschelman mumps->MatLUFactorSymbolic = A->ops->lufactorsymbolic; 720c338a77dSKris Buschelman mumps->MatCholeskyFactorSymbolic = A->ops->choleskyfactorsymbolic; 721f0c56d0fSKris Buschelman A->ops->lufactorsymbolic = MatLUFactorSymbolic_AIJMUMPS; 722397b6df1SKris Buschelman PetscFunctionReturn(0); 723397b6df1SKris Buschelman } 724397b6df1SKris Buschelman 725c338a77dSKris Buschelman EXTERN_C_BEGIN 726c338a77dSKris Buschelman #undef __FUNCT__ 727f0c56d0fSKris Buschelman #define __FUNCT__ "MatConvert_AIJ_AIJMUMPS" 72875179d2cSHong Zhang PetscErrorCode PETSCMAT_DLLEXPORT MatConvert_AIJ_AIJMUMPS(Mat A,MatType newtype,MatReuse reuse,Mat *newmat) 729dfbe8321SBarry Smith { 730dfbe8321SBarry Smith PetscErrorCode ierr; 731521d7252SBarry Smith PetscMPIInt size; 732c338a77dSKris Buschelman MPI_Comm comm; 733c338a77dSKris Buschelman Mat B=*newmat; 734f0c56d0fSKris Buschelman Mat_MUMPS *mumps; 735397b6df1SKris Buschelman 736397b6df1SKris Buschelman PetscFunctionBegin; 737ceb03754SKris Buschelman if (reuse == MAT_INITIAL_MATRIX) { 738c338a77dSKris Buschelman ierr = MatDuplicate(A,MAT_COPY_VALUES,&B);CHKERRQ(ierr); 739397b6df1SKris Buschelman } 740397b6df1SKris Buschelman 741c338a77dSKris Buschelman ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 742f0c56d0fSKris Buschelman ierr = PetscNew(Mat_MUMPS,&mumps);CHKERRQ(ierr); 743c338a77dSKris Buschelman 744f0c56d0fSKris Buschelman mumps->MatDuplicate = A->ops->duplicate; 745c338a77dSKris Buschelman mumps->MatView = A->ops->view; 746c338a77dSKris Buschelman mumps->MatAssemblyEnd = A->ops->assemblyend; 747c338a77dSKris Buschelman mumps->MatLUFactorSymbolic = A->ops->lufactorsymbolic; 748c338a77dSKris Buschelman mumps->MatCholeskyFactorSymbolic = A->ops->choleskyfactorsymbolic; 749c338a77dSKris Buschelman mumps->MatDestroy = A->ops->destroy; 750a39386dcSKris Buschelman mumps->specialdestroy = MatDestroy_AIJMUMPS; 751c338a77dSKris Buschelman mumps->CleanUpMUMPS = PETSC_FALSE; 752f579278aSKris Buschelman mumps->isAIJ = PETSC_TRUE; 753c338a77dSKris Buschelman 7544b68dd72SKris Buschelman B->spptr = (void*)mumps; 755422e82a1SHong Zhang B->ops->duplicate = MatDuplicate_MUMPS; 756c1490034SHong Zhang B->ops->view = MatView_MUMPS; 757f0c56d0fSKris Buschelman B->ops->assemblyend = MatAssemblyEnd_AIJMUMPS; 758f0c56d0fSKris Buschelman B->ops->lufactorsymbolic = MatLUFactorSymbolic_AIJMUMPS; 7593924e44cSKris Buschelman B->ops->destroy = MatDestroy_MUMPS; 760c338a77dSKris Buschelman 761c338a77dSKris Buschelman ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);CHKERRQ(ierr); 762c338a77dSKris Buschelman if (size == 1) { 763c338a77dSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_seqaij_aijmumps_C", 764f0c56d0fSKris Buschelman "MatConvert_AIJ_AIJMUMPS",MatConvert_AIJ_AIJMUMPS);CHKERRQ(ierr); 765c338a77dSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_aijmumps_seqaij_C", 766c338a77dSKris Buschelman "MatConvert_MUMPS_Base",MatConvert_MUMPS_Base);CHKERRQ(ierr); 767c338a77dSKris Buschelman } else { 768c338a77dSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_mpiaij_aijmumps_C", 769f0c56d0fSKris Buschelman "MatConvert_AIJ_AIJMUMPS",MatConvert_AIJ_AIJMUMPS);CHKERRQ(ierr); 770c338a77dSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_aijmumps_mpiaij_C", 771c338a77dSKris Buschelman "MatConvert_MUMPS_Base",MatConvert_MUMPS_Base);CHKERRQ(ierr); 772c338a77dSKris Buschelman } 773c338a77dSKris Buschelman 77463ba0a88SBarry Smith ierr = PetscLogInfo((0,"MatConvert_AIJ_AIJMUMPS:Using MUMPS for LU factorization and solves.\n"));CHKERRQ(ierr); 775c338a77dSKris Buschelman ierr = PetscObjectChangeTypeName((PetscObject)B,newtype);CHKERRQ(ierr); 776c338a77dSKris Buschelman *newmat = B; 777397b6df1SKris Buschelman PetscFunctionReturn(0); 778397b6df1SKris Buschelman } 779c338a77dSKris Buschelman EXTERN_C_END 780397b6df1SKris Buschelman 78124b6179bSKris Buschelman /*MC 782fafad747SKris Buschelman MATAIJMUMPS - MATAIJMUMPS = "aijmumps" - A matrix type providing direct solvers (LU) for distributed 78324b6179bSKris Buschelman and sequential matrices via the external package MUMPS. 78424b6179bSKris Buschelman 78524b6179bSKris Buschelman If MUMPS is installed (see the manual for instructions 78624b6179bSKris Buschelman on how to declare the existence of external packages), 78724b6179bSKris Buschelman a matrix type can be constructed which invokes MUMPS solvers. 78824b6179bSKris Buschelman After calling MatCreate(...,A), simply call MatSetType(A,MATAIJMUMPS). 78924b6179bSKris Buschelman 79024b6179bSKris Buschelman If created with a single process communicator, this matrix type inherits from MATSEQAIJ. 79124b6179bSKris Buschelman Otherwise, this matrix type inherits from MATMPIAIJ. Hence for single process communicators, 79224b6179bSKris Buschelman MatSeqAIJSetPreallocation is supported, and similarly MatMPIAIJSetPreallocation is supported 79324b6179bSKris Buschelman for communicators controlling multiple processes. It is recommended that you call both of 79428b08bd3SKris Buschelman the above preallocation routines for simplicity. One can also call MatConvert for an inplace 79528b08bd3SKris Buschelman conversion to or from the MATSEQAIJ or MATMPIAIJ type (depending on the communicator size) 79628b08bd3SKris Buschelman without data copy. 79724b6179bSKris Buschelman 79824b6179bSKris Buschelman Options Database Keys: 7990bad9183SKris Buschelman + -mat_type aijmumps - sets the matrix type to "aijmumps" during a call to MatSetFromOptions() 80024b6179bSKris Buschelman . -mat_mumps_sym <0,1,2> - 0 the matrix is unsymmetric, 1 symmetric positive definite, 2 symmetric 80124b6179bSKris Buschelman . -mat_mumps_icntl_4 <0,1,2,3,4> - print level 80224b6179bSKris Buschelman . -mat_mumps_icntl_6 <0,...,7> - matrix prescaling options (see MUMPS User's Guide) 80324b6179bSKris Buschelman . -mat_mumps_icntl_7 <0,...,7> - matrix orderings (see MUMPS User's Guide) 80424b6179bSKris Buschelman . -mat_mumps_icntl_9 <1,2> - A or A^T x=b to be solved: 1 denotes A, 2 denotes A^T 80524b6179bSKris Buschelman . -mat_mumps_icntl_10 <n> - maximum number of iterative refinements 80694b7f48cSBarry Smith . -mat_mumps_icntl_11 <n> - error analysis, a positive value returns statistics during -ksp_view 80724b6179bSKris Buschelman . -mat_mumps_icntl_12 <n> - efficiency control (see MUMPS User's Guide) 80824b6179bSKris Buschelman . -mat_mumps_icntl_13 <n> - efficiency control (see MUMPS User's Guide) 80924b6179bSKris Buschelman . -mat_mumps_icntl_14 <n> - efficiency control (see MUMPS User's Guide) 81024b6179bSKris Buschelman . -mat_mumps_icntl_15 <n> - efficiency control (see MUMPS User's Guide) 81124b6179bSKris Buschelman . -mat_mumps_cntl_1 <delta> - relative pivoting threshold 81224b6179bSKris Buschelman . -mat_mumps_cntl_2 <tol> - stopping criterion for refinement 81324b6179bSKris Buschelman - -mat_mumps_cntl_3 <adelta> - absolute pivoting threshold 81424b6179bSKris Buschelman 81524b6179bSKris Buschelman Level: beginner 81624b6179bSKris Buschelman 81724b6179bSKris Buschelman .seealso: MATSBAIJMUMPS 81824b6179bSKris Buschelman M*/ 81924b6179bSKris Buschelman 820397b6df1SKris Buschelman EXTERN_C_BEGIN 821397b6df1SKris Buschelman #undef __FUNCT__ 822f0c56d0fSKris Buschelman #define __FUNCT__ "MatCreate_AIJMUMPS" 823be1d678aSKris Buschelman PetscErrorCode PETSCMAT_DLLEXPORT MatCreate_AIJMUMPS(Mat A) 824dfbe8321SBarry Smith { 825dfbe8321SBarry Smith PetscErrorCode ierr; 826c1490034SHong Zhang PetscMPIInt size; 827e2d9671bSKris Buschelman Mat A_diag; 828397b6df1SKris Buschelman MPI_Comm comm; 829397b6df1SKris Buschelman 830397b6df1SKris Buschelman PetscFunctionBegin; 8315441df8eSKris Buschelman /* Change type name before calling MatSetType to force proper construction of SeqAIJ or MPIAIJ */ 8325441df8eSKris Buschelman /* and AIJMUMPS types */ 8335441df8eSKris Buschelman ierr = PetscObjectChangeTypeName((PetscObject)A,MATAIJMUMPS);CHKERRQ(ierr); 834397b6df1SKris Buschelman ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 835397b6df1SKris Buschelman ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);CHKERRQ(ierr); 836397b6df1SKris Buschelman if (size == 1) { 837397b6df1SKris Buschelman ierr = MatSetType(A,MATSEQAIJ);CHKERRQ(ierr); 838397b6df1SKris Buschelman } else { 839397b6df1SKris Buschelman ierr = MatSetType(A,MATMPIAIJ);CHKERRQ(ierr); 840e2d9671bSKris Buschelman A_diag = ((Mat_MPIAIJ *)A->data)->A; 841ceb03754SKris Buschelman ierr = MatConvert_AIJ_AIJMUMPS(A_diag,MATAIJMUMPS,MAT_REUSE_MATRIX,&A_diag);CHKERRQ(ierr); 842397b6df1SKris Buschelman } 843ceb03754SKris Buschelman ierr = MatConvert_AIJ_AIJMUMPS(A,MATAIJMUMPS,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 844397b6df1SKris Buschelman PetscFunctionReturn(0); 845397b6df1SKris Buschelman } 846397b6df1SKris Buschelman EXTERN_C_END 847397b6df1SKris Buschelman 848f579278aSKris Buschelman #undef __FUNCT__ 849f0c56d0fSKris Buschelman #define __FUNCT__ "MatAssemblyEnd_SBAIJMUMPS" 850dfbe8321SBarry Smith PetscErrorCode MatAssemblyEnd_SBAIJMUMPS(Mat A,MatAssemblyType mode) 851dfbe8321SBarry Smith { 852dfbe8321SBarry Smith PetscErrorCode ierr; 853f0c56d0fSKris Buschelman Mat_MUMPS *mumps=(Mat_MUMPS*)A->spptr; 854f579278aSKris Buschelman 855f579278aSKris Buschelman PetscFunctionBegin; 856f579278aSKris Buschelman ierr = (*mumps->MatAssemblyEnd)(A,mode);CHKERRQ(ierr); 857f579278aSKris Buschelman mumps->MatCholeskyFactorSymbolic = A->ops->choleskyfactorsymbolic; 858f0c56d0fSKris Buschelman A->ops->choleskyfactorsymbolic = MatCholeskyFactorSymbolic_SBAIJMUMPS; 859f579278aSKris Buschelman PetscFunctionReturn(0); 860f579278aSKris Buschelman } 861f579278aSKris Buschelman 862f579278aSKris Buschelman EXTERN_C_BEGIN 863f579278aSKris Buschelman #undef __FUNCT__ 8649c097c71SKris Buschelman #define __FUNCT__ "MatMPISBAIJSetPreallocation_MPISBAIJMUMPS" 865c1490034SHong Zhang PetscErrorCode PETSCMAT_DLLEXPORT MatMPISBAIJSetPreallocation_MPISBAIJMUMPS(Mat B,PetscInt bs,PetscInt d_nz,PetscInt *d_nnz,PetscInt o_nz,PetscInt *o_nnz) 8669c097c71SKris Buschelman { 8679c097c71SKris Buschelman Mat A; 86802217bfdSHong Zhang Mat_MUMPS *mumps=(Mat_MUMPS*)B->spptr; 869dfbe8321SBarry Smith PetscErrorCode ierr; 8709c097c71SKris Buschelman 8719c097c71SKris Buschelman PetscFunctionBegin; 8729c097c71SKris Buschelman /* 8739c097c71SKris Buschelman After performing the MPISBAIJ Preallocation, we need to convert the local diagonal block matrix 8749c097c71SKris Buschelman into MUMPS type so that the block jacobi preconditioner (for example) can use MUMPS. I would 8759c097c71SKris Buschelman like this to be done in the MatCreate routine, but the creation of this inner matrix requires 8769c097c71SKris Buschelman block size info so that PETSc can determine the local size properly. The block size info is set 8779c097c71SKris Buschelman in the preallocation routine. 8789c097c71SKris Buschelman */ 8799c097c71SKris Buschelman ierr = (*mumps->MatPreallocate)(B,bs,d_nz,d_nnz,o_nz,o_nnz); 8809c097c71SKris Buschelman A = ((Mat_MPISBAIJ *)B->data)->A; 881ceb03754SKris Buschelman ierr = MatConvert_SBAIJ_SBAIJMUMPS(A,MATSBAIJMUMPS,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 8829c097c71SKris Buschelman PetscFunctionReturn(0); 8839c097c71SKris Buschelman } 8849c097c71SKris Buschelman EXTERN_C_END 8859c097c71SKris Buschelman 8869c097c71SKris Buschelman EXTERN_C_BEGIN 8879c097c71SKris Buschelman #undef __FUNCT__ 888f0c56d0fSKris Buschelman #define __FUNCT__ "MatConvert_SBAIJ_SBAIJMUMPS" 88975179d2cSHong Zhang PetscErrorCode PETSCMAT_DLLEXPORT MatConvert_SBAIJ_SBAIJMUMPS(Mat A,MatType newtype,MatReuse reuse,Mat *newmat) 890dfbe8321SBarry Smith { 891dfbe8321SBarry Smith PetscErrorCode ierr; 892521d7252SBarry Smith PetscMPIInt size; 893f579278aSKris Buschelman MPI_Comm comm; 894f579278aSKris Buschelman Mat B=*newmat; 895422e82a1SHong Zhang Mat_MUMPS *mumps; 8969c097c71SKris Buschelman void (*f)(void); 897f579278aSKris Buschelman 898f579278aSKris Buschelman PetscFunctionBegin; 899ceb03754SKris Buschelman if (reuse == MAT_INITIAL_MATRIX) { 900f579278aSKris Buschelman ierr = MatDuplicate(A,MAT_COPY_VALUES,&B);CHKERRQ(ierr); 901f579278aSKris Buschelman } 902f579278aSKris Buschelman 903f579278aSKris Buschelman ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 904f0c56d0fSKris Buschelman ierr = PetscNew(Mat_MUMPS,&mumps);CHKERRQ(ierr); 905f579278aSKris Buschelman 906f0c56d0fSKris Buschelman mumps->MatDuplicate = A->ops->duplicate; 907f579278aSKris Buschelman mumps->MatView = A->ops->view; 908f579278aSKris Buschelman mumps->MatAssemblyEnd = A->ops->assemblyend; 909f579278aSKris Buschelman mumps->MatLUFactorSymbolic = A->ops->lufactorsymbolic; 910f579278aSKris Buschelman mumps->MatCholeskyFactorSymbolic = A->ops->choleskyfactorsymbolic; 911f579278aSKris Buschelman mumps->MatDestroy = A->ops->destroy; 912a39386dcSKris Buschelman mumps->specialdestroy = MatDestroy_SBAIJMUMPS; 913f579278aSKris Buschelman mumps->CleanUpMUMPS = PETSC_FALSE; 914f579278aSKris Buschelman mumps->isAIJ = PETSC_FALSE; 915f579278aSKris Buschelman 916f579278aSKris Buschelman B->spptr = (void*)mumps; 917422e82a1SHong Zhang B->ops->duplicate = MatDuplicate_MUMPS; 918c1490034SHong Zhang B->ops->view = MatView_MUMPS; 919f0c56d0fSKris Buschelman B->ops->assemblyend = MatAssemblyEnd_SBAIJMUMPS; 920f0c56d0fSKris Buschelman B->ops->choleskyfactorsymbolic = MatCholeskyFactorSymbolic_SBAIJMUMPS; 9213924e44cSKris Buschelman B->ops->destroy = MatDestroy_MUMPS; 922f579278aSKris Buschelman 923f579278aSKris Buschelman ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);CHKERRQ(ierr); 924f579278aSKris Buschelman if (size == 1) { 925f0c56d0fSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_seqsbaij_sbaijmumps_C", 926f0c56d0fSKris Buschelman "MatConvert_SBAIJ_SBAIJMUMPS",MatConvert_SBAIJ_SBAIJMUMPS);CHKERRQ(ierr); 927f0c56d0fSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_sbaijmumps_seqsbaij_C", 928f579278aSKris Buschelman "MatConvert_MUMPS_Base",MatConvert_MUMPS_Base);CHKERRQ(ierr); 929f579278aSKris Buschelman } else { 9309c097c71SKris Buschelman /* I really don't like needing to know the tag: MatMPISBAIJSetPreallocation_C */ 931*f68b968cSBarry Smith ierr = PetscObjectQueryFunction((PetscObject)B,"MatMPISBAIJSetPreallocation_C",(PetscVoidStarFunction)&f);CHKERRQ(ierr); 932901853e0SKris Buschelman if (f) { /* This case should always be true when this routine is called */ 9336849ba73SBarry Smith mumps->MatPreallocate = (PetscErrorCode (*)(Mat,int,int,int*,int,int*))f; 9349c097c71SKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatMPISBAIJSetPreallocation_C", 9359c097c71SKris Buschelman "MatMPISBAIJSetPreallocation_MPISBAIJMUMPS", 9369c097c71SKris Buschelman MatMPISBAIJSetPreallocation_MPISBAIJMUMPS);CHKERRQ(ierr); 9379c097c71SKris Buschelman } 938f0c56d0fSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_mpisbaij_sbaijmumps_C", 939f0c56d0fSKris Buschelman "MatConvert_SBAIJ_SBAIJMUMPS",MatConvert_SBAIJ_SBAIJMUMPS);CHKERRQ(ierr); 940f0c56d0fSKris Buschelman ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatConvert_sbaijmumps_mpisbaij_C", 941f579278aSKris Buschelman "MatConvert_MUMPS_Base",MatConvert_MUMPS_Base);CHKERRQ(ierr); 942f579278aSKris Buschelman } 943f579278aSKris Buschelman 944c1490034SHong Zhang ierr = PetscLogInfo((0,"MatConvert_SBAIJ_SBAIJMUMPS:Using MUMPS for Cholesky factorization and solves.\n"));CHKERRQ(ierr); 945f579278aSKris Buschelman ierr = PetscObjectChangeTypeName((PetscObject)B,newtype);CHKERRQ(ierr); 946f579278aSKris Buschelman *newmat = B; 947f579278aSKris Buschelman PetscFunctionReturn(0); 948f579278aSKris Buschelman } 949f579278aSKris Buschelman EXTERN_C_END 950f579278aSKris Buschelman 951f0c56d0fSKris Buschelman #undef __FUNCT__ 952422e82a1SHong Zhang #define __FUNCT__ "MatDuplicate_MUMPS" 953dfbe8321SBarry Smith PetscErrorCode MatDuplicate_MUMPS(Mat A, MatDuplicateOption op, Mat *M) { 954dfbe8321SBarry Smith PetscErrorCode ierr; 9558e393735SKris Buschelman Mat_MUMPS *lu=(Mat_MUMPS *)A->spptr; 9568f340917SKris Buschelman 957f0c56d0fSKris Buschelman PetscFunctionBegin; 9588f340917SKris Buschelman ierr = (*lu->MatDuplicate)(A,op,M);CHKERRQ(ierr); 9598e393735SKris Buschelman ierr = PetscMemcpy((*M)->spptr,lu,sizeof(Mat_MUMPS));CHKERRQ(ierr); 960f0c56d0fSKris Buschelman PetscFunctionReturn(0); 961f0c56d0fSKris Buschelman } 962f0c56d0fSKris Buschelman 96324b6179bSKris Buschelman /*MC 964fafad747SKris Buschelman MATSBAIJMUMPS - MATSBAIJMUMPS = "sbaijmumps" - A symmetric matrix type providing direct solvers (Cholesky) for 96524b6179bSKris Buschelman distributed and sequential matrices via the external package MUMPS. 96624b6179bSKris Buschelman 96724b6179bSKris Buschelman If MUMPS is installed (see the manual for instructions 96824b6179bSKris Buschelman on how to declare the existence of external packages), 96924b6179bSKris Buschelman a matrix type can be constructed which invokes MUMPS solvers. 97024b6179bSKris Buschelman After calling MatCreate(...,A), simply call MatSetType(A,MATSBAIJMUMPS). 97124b6179bSKris Buschelman 97224b6179bSKris Buschelman If created with a single process communicator, this matrix type inherits from MATSEQSBAIJ. 97324b6179bSKris Buschelman Otherwise, this matrix type inherits from MATMPISBAIJ. Hence for single process communicators, 97424b6179bSKris Buschelman MatSeqSBAIJSetPreallocation is supported, and similarly MatMPISBAIJSetPreallocation is supported 97524b6179bSKris Buschelman for communicators controlling multiple processes. It is recommended that you call both of 97628b08bd3SKris Buschelman the above preallocation routines for simplicity. One can also call MatConvert for an inplace 97728b08bd3SKris Buschelman conversion to or from the MATSEQSBAIJ or MATMPISBAIJ type (depending on the communicator size) 97828b08bd3SKris Buschelman without data copy. 97924b6179bSKris Buschelman 98024b6179bSKris Buschelman Options Database Keys: 9810bad9183SKris Buschelman + -mat_type sbaijmumps - sets the matrix type to "sbaijmumps" during a call to MatSetFromOptions() 98224b6179bSKris Buschelman . -mat_mumps_sym <0,1,2> - 0 the matrix is unsymmetric, 1 symmetric positive definite, 2 symmetric 98324b6179bSKris Buschelman . -mat_mumps_icntl_4 <0,...,4> - print level 98424b6179bSKris Buschelman . -mat_mumps_icntl_6 <0,...,7> - matrix prescaling options (see MUMPS User's Guide) 98524b6179bSKris Buschelman . -mat_mumps_icntl_7 <0,...,7> - matrix orderings (see MUMPS User's Guide) 98624b6179bSKris Buschelman . -mat_mumps_icntl_9 <1,2> - A or A^T x=b to be solved: 1 denotes A, 2 denotes A^T 98724b6179bSKris Buschelman . -mat_mumps_icntl_10 <n> - maximum number of iterative refinements 98894b7f48cSBarry Smith . -mat_mumps_icntl_11 <n> - error analysis, a positive value returns statistics during -ksp_view 98924b6179bSKris Buschelman . -mat_mumps_icntl_12 <n> - efficiency control (see MUMPS User's Guide) 99024b6179bSKris Buschelman . -mat_mumps_icntl_13 <n> - efficiency control (see MUMPS User's Guide) 99124b6179bSKris Buschelman . -mat_mumps_icntl_14 <n> - efficiency control (see MUMPS User's Guide) 99224b6179bSKris Buschelman . -mat_mumps_icntl_15 <n> - efficiency control (see MUMPS User's Guide) 99324b6179bSKris Buschelman . -mat_mumps_cntl_1 <delta> - relative pivoting threshold 99424b6179bSKris Buschelman . -mat_mumps_cntl_2 <tol> - stopping criterion for refinement 99524b6179bSKris Buschelman - -mat_mumps_cntl_3 <adelta> - absolute pivoting threshold 99624b6179bSKris Buschelman 99724b6179bSKris Buschelman Level: beginner 99824b6179bSKris Buschelman 99924b6179bSKris Buschelman .seealso: MATAIJMUMPS 100024b6179bSKris Buschelman M*/ 100124b6179bSKris Buschelman 1002397b6df1SKris Buschelman EXTERN_C_BEGIN 1003397b6df1SKris Buschelman #undef __FUNCT__ 1004f0c56d0fSKris Buschelman #define __FUNCT__ "MatCreate_SBAIJMUMPS" 1005be1d678aSKris Buschelman PetscErrorCode PETSCMAT_DLLEXPORT MatCreate_SBAIJMUMPS(Mat A) 1006dfbe8321SBarry Smith { 10076849ba73SBarry Smith PetscErrorCode ierr; 10088ada1bb4SHong Zhang PetscMPIInt size; 1009397b6df1SKris Buschelman 1010397b6df1SKris Buschelman PetscFunctionBegin; 10115441df8eSKris Buschelman /* Change type name before calling MatSetType to force proper construction of SeqSBAIJ or MPISBAIJ */ 10125441df8eSKris Buschelman /* and SBAIJMUMPS types */ 10135441df8eSKris Buschelman ierr = PetscObjectChangeTypeName((PetscObject)A,MATSBAIJMUMPS);CHKERRQ(ierr); 10145441df8eSKris Buschelman ierr = MPI_Comm_size(A->comm,&size);CHKERRQ(ierr);CHKERRQ(ierr); 1015397b6df1SKris Buschelman if (size == 1) { 1016397b6df1SKris Buschelman ierr = MatSetType(A,MATSEQSBAIJ);CHKERRQ(ierr); 1017397b6df1SKris Buschelman } else { 1018397b6df1SKris Buschelman ierr = MatSetType(A,MATMPISBAIJ);CHKERRQ(ierr); 1019397b6df1SKris Buschelman } 1020ceb03754SKris Buschelman ierr = MatConvert_SBAIJ_SBAIJMUMPS(A,MATSBAIJMUMPS,MAT_REUSE_MATRIX,&A);CHKERRQ(ierr); 1021397b6df1SKris Buschelman PetscFunctionReturn(0); 1022397b6df1SKris Buschelman } 1023397b6df1SKris Buschelman EXTERN_C_END 1024