xref: /petsc/src/mat/impls/aij/mpi/mumps/mumps.c (revision 8fa425b957949a8af3b436b5cb42983f1b0df28d)
1be1d678aSKris Buschelman #define PETSCMAT_DLL
21c2a3de1SBarry Smith 
3397b6df1SKris Buschelman /*
4c2b5dc30SHong Zhang     Provides an interface to the MUMPS sparse solver
5397b6df1SKris Buschelman */
64e1dd20eSHong Zhang #include "../src/mat/impls/aij/seq/aij.h"  /*I  "petscmat.h"  I*/
77c4f633dSBarry Smith #include "../src/mat/impls/aij/mpi/mpiaij.h"
87c4f633dSBarry Smith #include "../src/mat/impls/sbaij/seq/sbaij.h"
97c4f633dSBarry Smith #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;
36329ec9b3SHong Zhang   PetscInt       *irn,*jcn,sym,nSolve;
37397b6df1SKris Buschelman   PetscScalar    *val;
38397b6df1SKris Buschelman   MPI_Comm       comm_mumps;
39329ec9b3SHong Zhang   VecScatter     scat_rhs, scat_sol;
40c338a77dSKris Buschelman   PetscTruth     isAIJ,CleanUpMUMPS;
41329ec9b3SHong Zhang   Vec            b_seq,x_seq;
4267334b25SHong Zhang   PetscErrorCode (*MatDestroy)(Mat);
43f0c56d0fSKris Buschelman } Mat_MUMPS;
44f0c56d0fSKris Buschelman 
45dfbe8321SBarry Smith EXTERN PetscErrorCode MatDuplicate_MUMPS(Mat,MatDuplicateOption,Mat*);
46b24902e0SBarry Smith 
47397b6df1SKris Buschelman /* convert Petsc mpiaij matrix to triples: row[nz], col[nz], val[nz] */
48397b6df1SKris Buschelman /*
49397b6df1SKris Buschelman   input:
5075747be1SHong Zhang     A       - matrix in mpiaij or mpisbaij (bs=1) format
51397b6df1SKris Buschelman     shift   - 0: C style output triple; 1: Fortran style output triple.
52397b6df1SKris Buschelman     valOnly - FALSE: spaces are allocated and values are set for the triple
53397b6df1SKris Buschelman               TRUE:  only the values in v array are updated
54397b6df1SKris Buschelman   output:
55397b6df1SKris Buschelman     nnz     - dim of r, c, and v (number of local nonzero entries of A)
56397b6df1SKris Buschelman     r, c, v - row and col index, matrix values (matrix triples)
57397b6df1SKris Buschelman  */
58b24902e0SBarry Smith PetscErrorCode MatConvertToTriples(Mat A,int shift,PetscTruth valOnly,int *nnz,int **r, int **c, PetscScalar **v)
59b24902e0SBarry Smith {
60c1490034SHong Zhang   PetscInt       *ai, *aj, *bi, *bj, rstart,nz, *garray;
61dfbe8321SBarry Smith   PetscErrorCode ierr;
62d0f46423SBarry Smith   PetscInt       i,j,jj,jB,irow,m=A->rmap->n,*ajj,*bjj,countA,countB,colA_start,jcol;
63c1490034SHong Zhang   PetscInt       *row,*col;
64397b6df1SKris Buschelman   PetscScalar    *av, *bv,*val;
655c9eb25fSBarry Smith   PetscTruth     isAIJ;
66397b6df1SKris Buschelman 
67397b6df1SKris Buschelman   PetscFunctionBegin;
685c9eb25fSBarry Smith   ierr = PetscTypeCompare((PetscObject)A,MATMPIAIJ,&isAIJ);CHKERRQ(ierr);
695c9eb25fSBarry Smith   if (isAIJ){
70397b6df1SKris Buschelman     Mat_MPIAIJ    *mat =  (Mat_MPIAIJ*)A->data;
71397b6df1SKris Buschelman     Mat_SeqAIJ    *aa=(Mat_SeqAIJ*)(mat->A)->data;
72397b6df1SKris Buschelman     Mat_SeqAIJ    *bb=(Mat_SeqAIJ*)(mat->B)->data;
73397b6df1SKris Buschelman     nz = aa->nz + bb->nz;
74d0f46423SBarry Smith     ai=aa->i; aj=aa->j; bi=bb->i; bj=bb->j; rstart= A->rmap->rstart;
75397b6df1SKris Buschelman     garray = mat->garray;
76397b6df1SKris Buschelman     av=aa->a; bv=bb->a;
77397b6df1SKris Buschelman 
78397b6df1SKris Buschelman   } else {
79397b6df1SKris Buschelman     Mat_MPISBAIJ  *mat =  (Mat_MPISBAIJ*)A->data;
80397b6df1SKris Buschelman     Mat_SeqSBAIJ  *aa=(Mat_SeqSBAIJ*)(mat->A)->data;
81397b6df1SKris Buschelman     Mat_SeqBAIJ    *bb=(Mat_SeqBAIJ*)(mat->B)->data;
82d0f46423SBarry Smith     if (A->rmap->bs > 1) SETERRQ1(PETSC_ERR_SUP," bs=%d is not supported yet\n", A->rmap->bs);
836c6c5352SBarry Smith     nz = aa->nz + bb->nz;
84d0f46423SBarry Smith     ai=aa->i; aj=aa->j; bi=bb->i; bj=bb->j; rstart= A->rmap->rstart;
85397b6df1SKris Buschelman     garray = mat->garray;
86397b6df1SKris Buschelman     av=aa->a; bv=bb->a;
87397b6df1SKris Buschelman   }
88397b6df1SKris Buschelman 
89397b6df1SKris Buschelman   if (!valOnly){
907c307921SBarry Smith     ierr = PetscMalloc(nz*sizeof(PetscInt) ,&row);CHKERRQ(ierr);
917c307921SBarry Smith     ierr = PetscMalloc(nz*sizeof(PetscInt),&col);CHKERRQ(ierr);
92397b6df1SKris Buschelman     ierr = PetscMalloc(nz*sizeof(PetscScalar),&val);CHKERRQ(ierr);
93397b6df1SKris Buschelman     *r = row; *c = col; *v = val;
94397b6df1SKris Buschelman   } else {
95397b6df1SKris Buschelman     row = *r; col = *c; val = *v;
96397b6df1SKris Buschelman   }
97397b6df1SKris Buschelman   *nnz = nz;
98397b6df1SKris Buschelman 
99028e57e8SHong Zhang   jj = 0; irow = rstart;
100397b6df1SKris Buschelman   for ( i=0; i<m; i++ ) {
101397b6df1SKris Buschelman     ajj = aj + ai[i];                 /* ptr to the beginning of this row */
102397b6df1SKris Buschelman     countA = ai[i+1] - ai[i];
103397b6df1SKris Buschelman     countB = bi[i+1] - bi[i];
104397b6df1SKris Buschelman     bjj = bj + bi[i];
105397b6df1SKris Buschelman 
106397b6df1SKris Buschelman     /* get jB, the starting local col index for the 2nd B-part */
107397b6df1SKris Buschelman     colA_start = rstart + ajj[0]; /* the smallest col index for A */
10875747be1SHong Zhang     j=-1;
10975747be1SHong Zhang     do {
11075747be1SHong Zhang       j++;
11175747be1SHong Zhang       if (j == countB) break;
112397b6df1SKris Buschelman       jcol = garray[bjj[j]];
11375747be1SHong Zhang     } while (jcol < colA_start);
11475747be1SHong Zhang     jB = j;
115397b6df1SKris Buschelman 
116397b6df1SKris Buschelman     /* B-part, smaller col index */
117397b6df1SKris Buschelman     colA_start = rstart + ajj[0]; /* the smallest col index for A */
118397b6df1SKris Buschelman     for (j=0; j<jB; j++){
119397b6df1SKris Buschelman       jcol = garray[bjj[j]];
120397b6df1SKris Buschelman       if (!valOnly){
121397b6df1SKris Buschelman         row[jj] = irow + shift; col[jj] = jcol + shift;
12275747be1SHong Zhang 
123397b6df1SKris Buschelman       }
124397b6df1SKris Buschelman       val[jj++] = *bv++;
125397b6df1SKris Buschelman     }
126397b6df1SKris Buschelman     /* A-part */
127397b6df1SKris Buschelman     for (j=0; j<countA; j++){
128397b6df1SKris Buschelman       if (!valOnly){
129397b6df1SKris Buschelman         row[jj] = irow + shift; col[jj] = rstart + ajj[j] + shift;
130397b6df1SKris Buschelman       }
131397b6df1SKris Buschelman       val[jj++] = *av++;
132397b6df1SKris Buschelman     }
133397b6df1SKris Buschelman     /* B-part, larger col index */
134397b6df1SKris Buschelman     for (j=jB; j<countB; j++){
135397b6df1SKris Buschelman       if (!valOnly){
136397b6df1SKris Buschelman         row[jj] = irow + shift; col[jj] = garray[bjj[j]] + shift;
137397b6df1SKris Buschelman       }
138397b6df1SKris Buschelman       val[jj++] = *bv++;
139397b6df1SKris Buschelman     }
140397b6df1SKris Buschelman     irow++;
141397b6df1SKris Buschelman   }
142397b6df1SKris Buschelman   PetscFunctionReturn(0);
143397b6df1SKris Buschelman }
144397b6df1SKris Buschelman 
145397b6df1SKris Buschelman #undef __FUNCT__
1463924e44cSKris Buschelman #define __FUNCT__ "MatDestroy_MUMPS"
147dfbe8321SBarry Smith PetscErrorCode MatDestroy_MUMPS(Mat A)
148dfbe8321SBarry Smith {
149f0c56d0fSKris Buschelman   Mat_MUMPS      *lu=(Mat_MUMPS*)A->spptr;
150dfbe8321SBarry Smith   PetscErrorCode ierr;
151*8fa425b9SSatish Balay   PetscTruth     isSeqAIJ,isSeqSBAIJ;
152b24902e0SBarry Smith 
153397b6df1SKris Buschelman   PetscFunctionBegin;
154*8fa425b9SSatish Balay   ierr = PetscTypeCompare((PetscObject)A,MATSEQAIJ,&isSeqAIJ);CHKERRQ(ierr);
155*8fa425b9SSatish Balay   ierr = PetscTypeCompare((PetscObject)A,MATSEQSBAIJ,&isSeqSBAIJ);CHKERRQ(ierr);
156*8fa425b9SSatish Balay 
157397b6df1SKris Buschelman   if (lu->CleanUpMUMPS) {
158397b6df1SKris Buschelman     /* Terminate instance, deallocate memories */
159*8fa425b9SSatish Balay     if (lu->id.sol_loc){ierr = PetscFree2(lu->id.sol_loc,lu->id.isol_loc);CHKERRQ(ierr);}
160*8fa425b9SSatish Balay     if (lu->scat_rhs){ierr = VecScatterDestroy(lu->scat_rhs);CHKERRQ(ierr);}
161*8fa425b9SSatish Balay     if (lu->b_seq) {ierr = VecDestroy(lu->b_seq);CHKERRQ(ierr);}
1622750af12SHong Zhang     if (lu->nSolve && lu->scat_sol){ierr = VecScatterDestroy(lu->scat_sol);CHKERRQ(ierr);}
1632750af12SHong Zhang     if (lu->nSolve && lu->x_seq){ierr = VecDestroy(lu->x_seq);CHKERRQ(ierr);}
164*8fa425b9SSatish Balay     /* val is reused for SeqAIJ/SBAIJ - but malloced for MPIAIJ/SBAIJ */
165*8fa425b9SSatish Balay     if (!(isSeqAIJ || isSeqSBAIJ) && lu->val){ierr = PetscFree(lu->val);CHKERRQ(ierr);}
166397b6df1SKris Buschelman     lu->id.job=JOB_END;
167397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
168397b6df1SKris Buschelman     zmumps_c(&lu->id);
169397b6df1SKris Buschelman #else
170397b6df1SKris Buschelman     dmumps_c(&lu->id);
171397b6df1SKris Buschelman #endif
172c338a77dSKris Buschelman     ierr = PetscFree(lu->irn);CHKERRQ(ierr);
173c338a77dSKris Buschelman     ierr = PetscFree(lu->jcn);CHKERRQ(ierr);
174397b6df1SKris Buschelman     ierr = MPI_Comm_free(&(lu->comm_mumps));CHKERRQ(ierr);
175397b6df1SKris Buschelman   }
17697969023SHong Zhang   /* clear composed functions */
17797969023SHong Zhang   ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatFactorGetSolverPackage_C","",PETSC_NULL);CHKERRQ(ierr);
17897969023SHong Zhang   ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatMumpsSetIcntl_C","",PETSC_NULL);CHKERRQ(ierr);
17967334b25SHong Zhang   ierr = (lu->MatDestroy)(A);CHKERRQ(ierr);
180397b6df1SKris Buschelman   PetscFunctionReturn(0);
181397b6df1SKris Buschelman }
182397b6df1SKris Buschelman 
183397b6df1SKris Buschelman #undef __FUNCT__
184f6c57405SHong Zhang #define __FUNCT__ "MatSolve_MUMPS"
185b24902e0SBarry Smith PetscErrorCode MatSolve_MUMPS(Mat A,Vec b,Vec x)
186b24902e0SBarry Smith {
187f0c56d0fSKris Buschelman   Mat_MUMPS      *lu=(Mat_MUMPS*)A->spptr;
188d54de34fSKris Buschelman   PetscScalar    *array;
189397b6df1SKris Buschelman   Vec            x_seq;
190329ec9b3SHong Zhang   IS             is_iden,is_petsc;
191dfbe8321SBarry Smith   PetscErrorCode ierr;
192329ec9b3SHong Zhang   PetscInt       i;
193397b6df1SKris Buschelman 
194397b6df1SKris Buschelman   PetscFunctionBegin;
195329ec9b3SHong Zhang   lu->id.nrhs = 1;
196329ec9b3SHong Zhang   x_seq = lu->b_seq;
197397b6df1SKris Buschelman   if (lu->size > 1){
198329ec9b3SHong Zhang     /* MUMPS only supports centralized rhs. Scatter b into a seqential rhs vector */
199f6cfb2d1SLisandro Dalcin     ierr = VecScatterBegin(lu->scat_rhs,b,x_seq,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr);
200f6cfb2d1SLisandro Dalcin     ierr = VecScatterEnd(lu->scat_rhs,b,x_seq,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr);
201397b6df1SKris Buschelman     if (!lu->myid) {ierr = VecGetArray(x_seq,&array);CHKERRQ(ierr);}
202397b6df1SKris Buschelman   } else {  /* size == 1 */
203397b6df1SKris Buschelman     ierr = VecCopy(b,x);CHKERRQ(ierr);
204397b6df1SKris Buschelman     ierr = VecGetArray(x,&array);CHKERRQ(ierr);
205397b6df1SKris Buschelman   }
206397b6df1SKris Buschelman   if (!lu->myid) { /* define rhs on the host */
2078278f211SHong Zhang     lu->id.nrhs = 1;
208397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
209397b6df1SKris Buschelman     lu->id.rhs = (mumps_double_complex*)array;
210397b6df1SKris Buschelman #else
211397b6df1SKris Buschelman     lu->id.rhs = array;
212397b6df1SKris Buschelman #endif
213397b6df1SKris Buschelman   }
214329ec9b3SHong Zhang   if (lu->size == 1){
215329ec9b3SHong Zhang     ierr = VecRestoreArray(x,&array);CHKERRQ(ierr);
216329ec9b3SHong Zhang   } else if (!lu->myid){
217329ec9b3SHong Zhang     ierr = VecRestoreArray(x_seq,&array);CHKERRQ(ierr);
218329ec9b3SHong Zhang   }
219329ec9b3SHong Zhang 
220329ec9b3SHong Zhang   if (lu->size > 1){
221329ec9b3SHong Zhang     /* distributed solution */
222329ec9b3SHong Zhang     lu->id.ICNTL(21) = 1;
223329ec9b3SHong Zhang     if (!lu->nSolve){
224329ec9b3SHong Zhang       /* Create x_seq=sol_loc for repeated use */
225329ec9b3SHong Zhang       PetscInt    lsol_loc;
226329ec9b3SHong Zhang       PetscScalar *sol_loc;
227329ec9b3SHong Zhang       lsol_loc = lu->id.INFO(23); /* length of sol_loc */
2280e83c824SBarry Smith       ierr = PetscMalloc2(lsol_loc,PetscScalar,&sol_loc,lsol_loc,PetscInt,&lu->id.isol_loc);CHKERRQ(ierr);
229329ec9b3SHong Zhang       lu->id.lsol_loc = lsol_loc;
23044ea04b1SSatish Balay #if defined(PETSC_USE_COMPLEX)
23144ea04b1SSatish Balay       lu->id.sol_loc  = (mumps_double_complex*)sol_loc;
23244ea04b1SSatish Balay #else
23344ea04b1SSatish Balay       lu->id.sol_loc  = sol_loc;
23444ea04b1SSatish Balay #endif
235329ec9b3SHong Zhang       ierr = VecCreateSeqWithArray(PETSC_COMM_SELF,lsol_loc,sol_loc,&lu->x_seq);CHKERRQ(ierr);
236329ec9b3SHong Zhang     }
237329ec9b3SHong Zhang   }
238397b6df1SKris Buschelman 
239397b6df1SKris Buschelman   /* solve phase */
240329ec9b3SHong Zhang   /*-------------*/
241397b6df1SKris Buschelman   lu->id.job = 3;
242397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
243397b6df1SKris Buschelman   zmumps_c(&lu->id);
244397b6df1SKris Buschelman #else
245397b6df1SKris Buschelman   dmumps_c(&lu->id);
246397b6df1SKris Buschelman #endif
247397b6df1SKris Buschelman   if (lu->id.INFOG(1) < 0) {
24879a5c55eSBarry Smith     SETERRQ1(PETSC_ERR_LIB,"Error reported by MUMPS in solve phase: INFOG(1)=%d\n",lu->id.INFOG(1));
249397b6df1SKris Buschelman   }
250397b6df1SKris Buschelman 
251329ec9b3SHong Zhang   if (lu->size > 1) { /* convert mumps distributed solution to petsc mpi x */
252329ec9b3SHong Zhang     if (!lu->nSolve){ /* create scatter scat_sol */
253329ec9b3SHong Zhang       ierr = ISCreateStride(PETSC_COMM_SELF,lu->id.lsol_loc,0,1,&is_iden);CHKERRQ(ierr); /* from */
254329ec9b3SHong Zhang       for (i=0; i<lu->id.lsol_loc; i++){
255329ec9b3SHong Zhang         lu->id.isol_loc[i] -= 1; /* change Fortran style to C style */
256397b6df1SKris Buschelman       }
257329ec9b3SHong Zhang       ierr = ISCreateGeneral(PETSC_COMM_SELF,lu->id.lsol_loc,lu->id.isol_loc,&is_petsc);CHKERRQ(ierr);  /* to */
258329ec9b3SHong Zhang       ierr = VecScatterCreate(lu->x_seq,is_iden,x,is_petsc,&lu->scat_sol);CHKERRQ(ierr);
259329ec9b3SHong Zhang       ierr = ISDestroy(is_iden);CHKERRQ(ierr);
260329ec9b3SHong Zhang       ierr = ISDestroy(is_petsc);CHKERRQ(ierr);
261397b6df1SKris Buschelman     }
262ca9f406cSSatish Balay     ierr = VecScatterBegin(lu->scat_sol,lu->x_seq,x,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr);
263ca9f406cSSatish Balay     ierr = VecScatterEnd(lu->scat_sol,lu->x_seq,x,INSERT_VALUES,SCATTER_FORWARD);CHKERRQ(ierr);
264329ec9b3SHong Zhang   }
265329ec9b3SHong Zhang   lu->nSolve++;
266397b6df1SKris Buschelman   PetscFunctionReturn(0);
267397b6df1SKris Buschelman }
268397b6df1SKris Buschelman 
269ace3df97SHong Zhang #if !defined(PETSC_USE_COMPLEX)
270a58c3f20SHong Zhang /*
271a58c3f20SHong Zhang   input:
272a58c3f20SHong Zhang    F:        numeric factor
273a58c3f20SHong Zhang   output:
274a58c3f20SHong Zhang    nneg:     total number of negative pivots
275a58c3f20SHong Zhang    nzero:    0
276a58c3f20SHong Zhang    npos:     (global dimension of F) - nneg
277a58c3f20SHong Zhang */
278a58c3f20SHong Zhang 
279a58c3f20SHong Zhang #undef __FUNCT__
280a58c3f20SHong Zhang #define __FUNCT__ "MatGetInertia_SBAIJMUMPS"
281dfbe8321SBarry Smith PetscErrorCode MatGetInertia_SBAIJMUMPS(Mat F,int *nneg,int *nzero,int *npos)
282a58c3f20SHong Zhang {
283a58c3f20SHong Zhang   Mat_MUMPS      *lu =(Mat_MUMPS*)F->spptr;
284dfbe8321SBarry Smith   PetscErrorCode ierr;
285c1490034SHong Zhang   PetscMPIInt    size;
286a58c3f20SHong Zhang 
287a58c3f20SHong Zhang   PetscFunctionBegin;
2887adad957SLisandro Dalcin   ierr = MPI_Comm_size(((PetscObject)F)->comm,&size);CHKERRQ(ierr);
289bcb30aebSHong 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 */
290bcb30aebSHong Zhang   if (size > 1 && lu->id.ICNTL(13) != 1){
29179a5c55eSBarry 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));
292bcb30aebSHong Zhang   }
293a58c3f20SHong Zhang   if (nneg){
294a58c3f20SHong Zhang     if (!lu->myid){
295a58c3f20SHong Zhang       *nneg = lu->id.INFOG(12);
296a58c3f20SHong Zhang     }
297bcb30aebSHong Zhang     ierr = MPI_Bcast(nneg,1,MPI_INT,0,lu->comm_mumps);CHKERRQ(ierr);
298a58c3f20SHong Zhang   }
299a58c3f20SHong Zhang   if (nzero) *nzero = 0;
300d0f46423SBarry Smith   if (npos)  *npos  = F->rmap->N - (*nneg);
301a58c3f20SHong Zhang   PetscFunctionReturn(0);
302a58c3f20SHong Zhang }
303ace3df97SHong Zhang #endif /* !defined(PETSC_USE_COMPLEX) */
304a58c3f20SHong Zhang 
305397b6df1SKris Buschelman #undef __FUNCT__
306f6c57405SHong Zhang #define __FUNCT__ "MatFactorNumeric_MUMPS"
3070481f469SBarry Smith PetscErrorCode MatFactorNumeric_MUMPS(Mat F,Mat A,const MatFactorInfo *info)
308af281ebdSHong Zhang {
309719d5645SBarry Smith   Mat_MUMPS      *lu =(Mat_MUMPS*)(F)->spptr;
3106849ba73SBarry Smith   PetscErrorCode ierr;
311d0f46423SBarry Smith   PetscInt       rnz,nnz,nz=0,i,M=A->rmap->N,*ai,*aj,icntl;
312397b6df1SKris Buschelman   PetscTruth     valOnly,flg;
313e09efc27SHong Zhang   Mat            F_diag;
314c349612cSHong Zhang   IS             is_iden;
315c349612cSHong Zhang   Vec            b;
3165c9eb25fSBarry Smith   PetscTruth     isSeqAIJ,isSeqSBAIJ;
317397b6df1SKris Buschelman 
318397b6df1SKris Buschelman   PetscFunctionBegin;
3195c9eb25fSBarry Smith   ierr = PetscTypeCompare((PetscObject)A,MATSEQAIJ,&isSeqAIJ);CHKERRQ(ierr);
3205c9eb25fSBarry Smith   ierr = PetscTypeCompare((PetscObject)A,MATSEQSBAIJ,&isSeqSBAIJ);CHKERRQ(ierr);
321397b6df1SKris Buschelman   if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){
322719d5645SBarry Smith     (F)->ops->solve   = MatSolve_MUMPS;
323397b6df1SKris Buschelman 
324397b6df1SKris Buschelman     /* Initialize a MUMPS instance */
3257adad957SLisandro Dalcin     ierr = MPI_Comm_rank(((PetscObject)A)->comm, &lu->myid);
3267adad957SLisandro Dalcin     ierr = MPI_Comm_size(((PetscObject)A)->comm,&lu->size);CHKERRQ(ierr);
327397b6df1SKris Buschelman     lu->id.job = JOB_INIT;
3287adad957SLisandro Dalcin     ierr = MPI_Comm_dup(((PetscObject)A)->comm,&(lu->comm_mumps));CHKERRQ(ierr);
3296a1dac61SBarry Smith     lu->id.comm_fortran = MPI_Comm_c2f(lu->comm_mumps);
330397b6df1SKris Buschelman 
331397b6df1SKris Buschelman     /* Set mumps options */
3327adad957SLisandro Dalcin     ierr = PetscOptionsBegin(((PetscObject)A)->comm,((PetscObject)A)->prefix,"MUMPS Options","Mat");CHKERRQ(ierr);
333397b6df1SKris Buschelman     lu->id.par=1;  /* host participates factorizaton and solve */
334397b6df1SKris Buschelman     lu->id.sym=lu->sym;
335397b6df1SKris Buschelman     if (lu->sym == 2){
336397b6df1SKris Buschelman       ierr = PetscOptionsInt("-mat_mumps_sym","SYM: (1,2)","None",lu->id.sym,&icntl,&flg);CHKERRQ(ierr);
337397b6df1SKris Buschelman       if (flg && icntl == 1) lu->id.sym=icntl;  /* matrix is spd */
338397b6df1SKris Buschelman     }
339397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
340397b6df1SKris Buschelman     zmumps_c(&lu->id);
341397b6df1SKris Buschelman #else
342397b6df1SKris Buschelman     dmumps_c(&lu->id);
343397b6df1SKris Buschelman #endif
344397b6df1SKris Buschelman 
3455c9eb25fSBarry Smith     if (isSeqAIJ || isSeqSBAIJ){
346397b6df1SKris Buschelman       lu->id.ICNTL(18) = 0;   /* centralized assembled matrix input */
347397b6df1SKris Buschelman     } else {
348397b6df1SKris Buschelman       lu->id.ICNTL(18) = 3;   /* distributed assembled matrix input */
349397b6df1SKris Buschelman     }
350397b6df1SKris Buschelman 
351397b6df1SKris Buschelman     icntl=-1;
352c0165424SHong Zhang     lu->id.ICNTL(4) = 0;  /* level of printing; overwrite mumps default ICNTL(4)=2 */
353397b6df1SKris Buschelman     ierr = PetscOptionsInt("-mat_mumps_icntl_4","ICNTL(4): level of printing (0 to 4)","None",lu->id.ICNTL(4),&icntl,&flg);CHKERRQ(ierr);
35419facb7aSBarry Smith     if ((flg && icntl > 0) || PetscLogPrintInfo) {
355397b6df1SKris Buschelman       lu->id.ICNTL(4)=icntl; /* and use mumps default icntl(i), i=1,2,3 */
356397b6df1SKris Buschelman     } else { /* no output */
357397b6df1SKris Buschelman       lu->id.ICNTL(1) = 0;  /* error message, default= 6 */
3583823f358SHong Zhang       lu->id.ICNTL(2) = 0;  /* output stream for diagnostic printing, statistics, and warning. default=0 */
3593823f358SHong Zhang       lu->id.ICNTL(3) = 0; /* output stream for global information, default=6 */
360397b6df1SKris Buschelman     }
3613823f358SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_6","ICNTL(6): column permutation and/or scaling to get a zero-free diagonal (0 to 7)","None",lu->id.ICNTL(6),&lu->id.ICNTL(6),PETSC_NULL);CHKERRQ(ierr);
362397b6df1SKris Buschelman     icntl=-1;
363397b6df1SKris Buschelman     ierr = PetscOptionsInt("-mat_mumps_icntl_7","ICNTL(7): matrix ordering (0 to 7)","None",lu->id.ICNTL(7),&icntl,&flg);CHKERRQ(ierr);
364397b6df1SKris Buschelman     if (flg) {
365397b6df1SKris Buschelman       if (icntl== 1){
366397b6df1SKris Buschelman         SETERRQ(PETSC_ERR_SUP,"pivot order be set by the user in PERM_IN -- not supported by the PETSc/MUMPS interface\n");
367397b6df1SKris Buschelman       } else {
368397b6df1SKris Buschelman         lu->id.ICNTL(7) = icntl;
369397b6df1SKris Buschelman       }
370397b6df1SKris Buschelman     }
3713823f358SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_8","ICNTL(8): scaling strategy (-2 to 7 or 77)","None",lu->id.ICNTL(8),&lu->id.ICNTL(8),PETSC_NULL);CHKERRQ(ierr);
372397b6df1SKris 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);
373397b6df1SKris 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);
374c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_11","ICNTL(11): statistics related to the linear system solved (via -ksp_view)","None",lu->id.ICNTL(11),&lu->id.ICNTL(11),PETSC_NULL);CHKERRQ(ierr);
3753823f358SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_12","ICNTL(12): efficiency control: defines the ordering strategy with scaling constraints (0 to 3","None",lu->id.ICNTL(12),&lu->id.ICNTL(12),PETSC_NULL);CHKERRQ(ierr);
3763823f358SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_13","ICNTL(13): efficiency control: with or without ScaLAPACK","None",lu->id.ICNTL(13),&lu->id.ICNTL(13),PETSC_NULL);CHKERRQ(ierr);
377adc1d99fSHong 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);
3783823f358SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_19","ICNTL(19): Schur complement","None",lu->id.ICNTL(19),&lu->id.ICNTL(19),PETSC_NULL);CHKERRQ(ierr);
3793823f358SHong Zhang 
380c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_22","ICNTL(22): in-core/out-of-core facility (0 or 1)","None",lu->id.ICNTL(22),&lu->id.ICNTL(22),PETSC_NULL);CHKERRQ(ierr);
381c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_23","ICNTL(23): max size of the working memory (MB) that can allocate per processor","None",lu->id.ICNTL(23),&lu->id.ICNTL(23),PETSC_NULL);CHKERRQ(ierr);
382c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_24","ICNTL(24): detection of null pivot rows (0 or 1)","None",lu->id.ICNTL(24),&lu->id.ICNTL(24),PETSC_NULL);CHKERRQ(ierr);
383c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_25","ICNTL(25): computation of a null space basis","None",lu->id.ICNTL(25),&lu->id.ICNTL(25),PETSC_NULL);CHKERRQ(ierr);
384c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_26","ICNTL(26): Schur options for right-hand side or solution vector","None",lu->id.ICNTL(26),&lu->id.ICNTL(26),PETSC_NULL);CHKERRQ(ierr);
385c0165424SHong Zhang     ierr = PetscOptionsInt("-mat_mumps_icntl_27","ICNTL(27): experimental parameter","None",lu->id.ICNTL(27),&lu->id.ICNTL(27),PETSC_NULL);CHKERRQ(ierr);
386397b6df1SKris Buschelman 
387397b6df1SKris 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);
388397b6df1SKris 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);
389397b6df1SKris 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);
39025f9c88cSHong Zhang     ierr = PetscOptionsReal("-mat_mumps_cntl_4","CNTL(4): value for static pivoting","None",lu->id.CNTL(4),&lu->id.CNTL(4),PETSC_NULL);CHKERRQ(ierr);
391c0165424SHong Zhang     ierr = PetscOptionsReal("-mat_mumps_cntl_5","CNTL(5): fixation for null pivots","None",lu->id.CNTL(5),&lu->id.CNTL(5),PETSC_NULL);CHKERRQ(ierr);
392397b6df1SKris Buschelman     PetscOptionsEnd();
393397b6df1SKris Buschelman   }
394397b6df1SKris Buschelman 
395397b6df1SKris Buschelman   /* define matrix A */
396397b6df1SKris Buschelman   switch (lu->id.ICNTL(18)){
397397b6df1SKris Buschelman   case 0:  /* centralized assembled matrix input (size=1) */
398397b6df1SKris Buschelman     if (!lu->myid) {
3995c9eb25fSBarry Smith       if (isSeqAIJ){
400397b6df1SKris Buschelman         Mat_SeqAIJ   *aa = (Mat_SeqAIJ*)A->data;
401397b6df1SKris Buschelman         nz               = aa->nz;
402397b6df1SKris Buschelman         ai = aa->i; aj = aa->j; lu->val = aa->a;
4035c9eb25fSBarry Smith       } else if (isSeqSBAIJ) {
404397b6df1SKris Buschelman         Mat_SeqSBAIJ *aa = (Mat_SeqSBAIJ*)A->data;
4056c6c5352SBarry Smith         nz                  =  aa->nz;
406397b6df1SKris Buschelman         ai = aa->i; aj = aa->j; lu->val = aa->a;
4075c9eb25fSBarry Smith       } else {
4085c9eb25fSBarry Smith         SETERRQ(PETSC_ERR_SUP,"No mumps factorization for this matrix type");
409397b6df1SKris Buschelman       }
410397b6df1SKris Buschelman       if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){ /* first numeric factorization, get irn and jcn */
4117c307921SBarry Smith         ierr = PetscMalloc(nz*sizeof(PetscInt),&lu->irn);CHKERRQ(ierr);
4127c307921SBarry Smith         ierr = PetscMalloc(nz*sizeof(PetscInt),&lu->jcn);CHKERRQ(ierr);
413397b6df1SKris Buschelman         nz = 0;
414397b6df1SKris Buschelman         for (i=0; i<M; i++){
415397b6df1SKris Buschelman           rnz = ai[i+1] - ai[i];
416397b6df1SKris Buschelman           while (rnz--) {  /* Fortran row/col index! */
417397b6df1SKris Buschelman             lu->irn[nz] = i+1; lu->jcn[nz] = (*aj)+1; aj++; nz++;
418397b6df1SKris Buschelman           }
419397b6df1SKris Buschelman         }
420397b6df1SKris Buschelman       }
421397b6df1SKris Buschelman     }
422397b6df1SKris Buschelman     break;
423397b6df1SKris Buschelman   case 3:  /* distributed assembled matrix input (size>1) */
424397b6df1SKris Buschelman     if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){
425397b6df1SKris Buschelman       valOnly = PETSC_FALSE;
426397b6df1SKris Buschelman     } else {
427397b6df1SKris Buschelman       valOnly = PETSC_TRUE; /* only update mat values, not row and col index */
428397b6df1SKris Buschelman     }
429397b6df1SKris Buschelman     ierr = MatConvertToTriples(A,1,valOnly, &nnz, &lu->irn, &lu->jcn, &lu->val);CHKERRQ(ierr);
430397b6df1SKris Buschelman     break;
431397b6df1SKris Buschelman   default: SETERRQ(PETSC_ERR_SUP,"Matrix input format is not supported by MUMPS.");
432397b6df1SKris Buschelman   }
433397b6df1SKris Buschelman 
434397b6df1SKris Buschelman   /* analysis phase */
435329ec9b3SHong Zhang   /*----------------*/
436397b6df1SKris Buschelman   if (lu->matstruc == DIFFERENT_NONZERO_PATTERN){
437329ec9b3SHong Zhang     lu->id.job = 1;
438329ec9b3SHong Zhang 
439397b6df1SKris Buschelman     lu->id.n = M;
440397b6df1SKris Buschelman     switch (lu->id.ICNTL(18)){
441397b6df1SKris Buschelman     case 0:  /* centralized assembled matrix input */
442397b6df1SKris Buschelman       if (!lu->myid) {
443397b6df1SKris Buschelman         lu->id.nz =nz; lu->id.irn=lu->irn; lu->id.jcn=lu->jcn;
444397b6df1SKris Buschelman         if (lu->id.ICNTL(6)>1){
445397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
446397b6df1SKris Buschelman           lu->id.a = (mumps_double_complex*)lu->val;
447397b6df1SKris Buschelman #else
448397b6df1SKris Buschelman           lu->id.a = lu->val;
449397b6df1SKris Buschelman #endif
450397b6df1SKris Buschelman         }
451397b6df1SKris Buschelman       }
452397b6df1SKris Buschelman       break;
453397b6df1SKris Buschelman     case 3:  /* distributed assembled matrix input (size>1) */
454397b6df1SKris Buschelman       lu->id.nz_loc = nnz;
455397b6df1SKris Buschelman       lu->id.irn_loc=lu->irn; lu->id.jcn_loc=lu->jcn;
456397b6df1SKris Buschelman       if (lu->id.ICNTL(6)>1) {
457397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
458397b6df1SKris Buschelman         lu->id.a_loc = (mumps_double_complex*)lu->val;
459397b6df1SKris Buschelman #else
460397b6df1SKris Buschelman         lu->id.a_loc = lu->val;
461397b6df1SKris Buschelman #endif
462397b6df1SKris Buschelman       }
463329ec9b3SHong Zhang       /* MUMPS only supports centralized rhs. Create scatter scat_rhs for repeated use in MatSolve() */
464329ec9b3SHong Zhang       if (!lu->myid){
465d0f46423SBarry Smith         ierr = VecCreateSeq(PETSC_COMM_SELF,A->cmap->N,&lu->b_seq);CHKERRQ(ierr);
466d0f46423SBarry Smith         ierr = ISCreateStride(PETSC_COMM_SELF,A->cmap->N,0,1,&is_iden);CHKERRQ(ierr);
467329ec9b3SHong Zhang       } else {
468329ec9b3SHong Zhang         ierr = VecCreateSeq(PETSC_COMM_SELF,0,&lu->b_seq);CHKERRQ(ierr);
469329ec9b3SHong Zhang         ierr = ISCreateStride(PETSC_COMM_SELF,0,0,1,&is_iden);CHKERRQ(ierr);
470329ec9b3SHong Zhang       }
4717adad957SLisandro Dalcin       ierr = VecCreate(((PetscObject)A)->comm,&b);CHKERRQ(ierr);
472d0f46423SBarry Smith       ierr = VecSetSizes(b,A->rmap->n,PETSC_DECIDE);CHKERRQ(ierr);
473329ec9b3SHong Zhang       ierr = VecSetFromOptions(b);CHKERRQ(ierr);
474329ec9b3SHong Zhang 
475329ec9b3SHong Zhang       ierr = VecScatterCreate(b,is_iden,lu->b_seq,is_iden,&lu->scat_rhs);CHKERRQ(ierr);
476329ec9b3SHong Zhang       ierr = ISDestroy(is_iden);CHKERRQ(ierr);
477329ec9b3SHong Zhang       ierr = VecDestroy(b);CHKERRQ(ierr);
478397b6df1SKris Buschelman       break;
479397b6df1SKris Buschelman     }
480397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
481397b6df1SKris Buschelman     zmumps_c(&lu->id);
482397b6df1SKris Buschelman #else
483397b6df1SKris Buschelman     dmumps_c(&lu->id);
484397b6df1SKris Buschelman #endif
485397b6df1SKris Buschelman     if (lu->id.INFOG(1) < 0) {
48679a5c55eSBarry Smith       SETERRQ1(PETSC_ERR_LIB,"Error reported by MUMPS in analysis phase: INFOG(1)=%d\n",lu->id.INFOG(1));
487397b6df1SKris Buschelman     }
488397b6df1SKris Buschelman   }
489397b6df1SKris Buschelman 
490397b6df1SKris Buschelman   /* numerical factorization phase */
491329ec9b3SHong Zhang   /*-------------------------------*/
492329ec9b3SHong Zhang   lu->id.job = 2;
493958c9bccSBarry Smith   if(!lu->id.ICNTL(18)) {
494a7aca84bSHong Zhang     if (!lu->myid) {
495397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
496397b6df1SKris Buschelman       lu->id.a = (mumps_double_complex*)lu->val;
497397b6df1SKris Buschelman #else
498397b6df1SKris Buschelman       lu->id.a = lu->val;
499397b6df1SKris Buschelman #endif
500397b6df1SKris Buschelman     }
501397b6df1SKris Buschelman   } else {
502397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
503397b6df1SKris Buschelman     lu->id.a_loc = (mumps_double_complex*)lu->val;
504397b6df1SKris Buschelman #else
505397b6df1SKris Buschelman     lu->id.a_loc = lu->val;
506397b6df1SKris Buschelman #endif
507397b6df1SKris Buschelman   }
508397b6df1SKris Buschelman #if defined(PETSC_USE_COMPLEX)
509397b6df1SKris Buschelman   zmumps_c(&lu->id);
510397b6df1SKris Buschelman #else
511397b6df1SKris Buschelman   dmumps_c(&lu->id);
512397b6df1SKris Buschelman #endif
513397b6df1SKris Buschelman   if (lu->id.INFOG(1) < 0) {
51419facb7aSBarry Smith     if (lu->id.INFO(1) == -13) {
51519facb7aSBarry Smith       SETERRQ1(PETSC_ERR_LIB,"Error reported by MUMPS in numerical factorization phase: Cannot allocate required memory %d megabytes\n",lu->id.INFO(2));
51619facb7aSBarry Smith     } else {
51779a5c55eSBarry 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));
518397b6df1SKris Buschelman     }
51919facb7aSBarry Smith   }
520397b6df1SKris Buschelman 
52119facb7aSBarry Smith   if (!lu->myid && lu->id.ICNTL(16) > 0){
52279a5c55eSBarry Smith     SETERRQ1(PETSC_ERR_LIB,"  lu->id.ICNTL(16):=%d\n",lu->id.INFOG(16));
523397b6df1SKris Buschelman   }
524397b6df1SKris Buschelman 
5258ada1bb4SHong Zhang   if (lu->size > 1){
526719d5645SBarry Smith     if ((F)->factor == MAT_FACTOR_LU){
527719d5645SBarry Smith       F_diag = ((Mat_MPIAIJ *)(F)->data)->A;
528e09efc27SHong Zhang     } else {
529719d5645SBarry Smith       F_diag = ((Mat_MPISBAIJ *)(F)->data)->A;
530e09efc27SHong Zhang     }
531e09efc27SHong Zhang     F_diag->assembled = PETSC_TRUE;
532329ec9b3SHong Zhang     if (lu->nSolve){
533329ec9b3SHong Zhang       ierr = VecScatterDestroy(lu->scat_sol);CHKERRQ(ierr);
5340e83c824SBarry Smith       ierr = PetscFree2(lu->id.sol_loc,lu->id.isol_loc);CHKERRQ(ierr);
535329ec9b3SHong Zhang       ierr = VecDestroy(lu->x_seq);CHKERRQ(ierr);
536329ec9b3SHong Zhang     }
5378ada1bb4SHong Zhang   }
538719d5645SBarry Smith   (F)->assembled   = PETSC_TRUE;
539397b6df1SKris Buschelman   lu->matstruc      = SAME_NONZERO_PATTERN;
540ace87b0dSHong Zhang   lu->CleanUpMUMPS  = PETSC_TRUE;
541329ec9b3SHong Zhang   lu->nSolve        = 0;
542397b6df1SKris Buschelman   PetscFunctionReturn(0);
543397b6df1SKris Buschelman }
544397b6df1SKris Buschelman 
545397b6df1SKris Buschelman /* Note the Petsc r and c permutations are ignored */
546397b6df1SKris Buschelman #undef __FUNCT__
547f0c56d0fSKris Buschelman #define __FUNCT__ "MatLUFactorSymbolic_AIJMUMPS"
5480481f469SBarry Smith PetscErrorCode MatLUFactorSymbolic_AIJMUMPS(Mat F,Mat A,IS r,IS c,const MatFactorInfo *info)
549b24902e0SBarry Smith {
550719d5645SBarry Smith   Mat_MUMPS      *lu = (Mat_MUMPS*)F->spptr;
551397b6df1SKris Buschelman 
552397b6df1SKris Buschelman   PetscFunctionBegin;
553b24902e0SBarry Smith   lu->sym                  = 0;
554b24902e0SBarry Smith   lu->matstruc             = DIFFERENT_NONZERO_PATTERN;
555719d5645SBarry Smith   F->ops->lufactornumeric  = MatFactorNumeric_MUMPS;
556b24902e0SBarry Smith   PetscFunctionReturn(0);
557b24902e0SBarry Smith }
558b24902e0SBarry Smith 
559b24902e0SBarry Smith 
560397b6df1SKris Buschelman /* Note the Petsc r permutation is ignored */
561397b6df1SKris Buschelman #undef __FUNCT__
562f0c56d0fSKris Buschelman #define __FUNCT__ "MatCholeskyFactorSymbolic_SBAIJMUMPS"
5630481f469SBarry Smith PetscErrorCode MatCholeskyFactorSymbolic_SBAIJMUMPS(Mat F,Mat A,IS r,const MatFactorInfo *info)
564b24902e0SBarry Smith {
565719d5645SBarry Smith   Mat_MUMPS      *lu = (Mat_MUMPS*)(F)->spptr;
566397b6df1SKris Buschelman 
567397b6df1SKris Buschelman   PetscFunctionBegin;
568b24902e0SBarry Smith   lu->sym                          = 2;
569b24902e0SBarry Smith   lu->matstruc                     = DIFFERENT_NONZERO_PATTERN;
570719d5645SBarry Smith   (F)->ops->choleskyfactornumeric = MatFactorNumeric_MUMPS;
571db4efbfdSBarry Smith #if !defined(PETSC_USE_COMPLEX)
572719d5645SBarry Smith   (F)->ops->getinertia            = MatGetInertia_SBAIJMUMPS;
573db4efbfdSBarry Smith #endif
574b24902e0SBarry Smith   PetscFunctionReturn(0);
575b24902e0SBarry Smith }
576b24902e0SBarry Smith 
577397b6df1SKris Buschelman #undef __FUNCT__
578f6c57405SHong Zhang #define __FUNCT__ "MatFactorInfo_MUMPS"
57974ed9c26SBarry Smith PetscErrorCode MatFactorInfo_MUMPS(Mat A,PetscViewer viewer)
58074ed9c26SBarry Smith {
581f6c57405SHong Zhang   Mat_MUMPS      *lu=(Mat_MUMPS*)A->spptr;
582f6c57405SHong Zhang   PetscErrorCode ierr;
583f6c57405SHong Zhang 
584f6c57405SHong Zhang   PetscFunctionBegin;
585f6c57405SHong Zhang   /* check if matrix is mumps type */
586f6c57405SHong Zhang   if (A->ops->solve != MatSolve_MUMPS) PetscFunctionReturn(0);
587f6c57405SHong Zhang 
588f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"MUMPS run parameters:\n");CHKERRQ(ierr);
589f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  SYM (matrix type):                  %d \n",lu->id.sym);CHKERRQ(ierr);
590f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  PAR (host participation):           %d \n",lu->id.par);CHKERRQ(ierr);
591f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(1) (output for error):        %d \n",lu->id.ICNTL(1));CHKERRQ(ierr);
592f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(2) (output of diagnostic msg):%d \n",lu->id.ICNTL(2));CHKERRQ(ierr);
593f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(3) (output for global info):  %d \n",lu->id.ICNTL(3));CHKERRQ(ierr);
594f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(4) (level of printing):       %d \n",lu->id.ICNTL(4));CHKERRQ(ierr);
595f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(5) (input mat struct):        %d \n",lu->id.ICNTL(5));CHKERRQ(ierr);
596f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(6) (matrix prescaling):       %d \n",lu->id.ICNTL(6));CHKERRQ(ierr);
597f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(7) (matrix ordering):         %d \n",lu->id.ICNTL(7));CHKERRQ(ierr);
598f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(8) (scalling strategy):       %d \n",lu->id.ICNTL(8));CHKERRQ(ierr);
599f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(9) (A/A^T x=b is solved):     %d \n",lu->id.ICNTL(9));CHKERRQ(ierr);
600f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(10) (max num of refinements): %d \n",lu->id.ICNTL(10));CHKERRQ(ierr);
601f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(11) (error analysis):         %d \n",lu->id.ICNTL(11));CHKERRQ(ierr);
602f6c57405SHong Zhang   if (!lu->myid && lu->id.ICNTL(11)>0) {
603f6c57405SHong Zhang     ierr = PetscPrintf(PETSC_COMM_SELF,"        RINFOG(4) (inf norm of input mat):        %g\n",lu->id.RINFOG(4));CHKERRQ(ierr);
604f6c57405SHong Zhang     ierr = PetscPrintf(PETSC_COMM_SELF,"        RINFOG(5) (inf norm of solution):         %g\n",lu->id.RINFOG(5));CHKERRQ(ierr);
605f6c57405SHong Zhang     ierr = PetscPrintf(PETSC_COMM_SELF,"        RINFOG(6) (inf norm of residual):         %g\n",lu->id.RINFOG(6));CHKERRQ(ierr);
606f6c57405SHong Zhang     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);
607f6c57405SHong Zhang     ierr = PetscPrintf(PETSC_COMM_SELF,"        RINFOG(9) (error estimate):               %g \n",lu->id.RINFOG(9));CHKERRQ(ierr);
608f6c57405SHong Zhang     ierr = PetscPrintf(PETSC_COMM_SELF,"        RINFOG(10),RINFOG(11)(condition numbers): %g, %g\n",lu->id.RINFOG(10),lu->id.RINFOG(11));CHKERRQ(ierr);
609f6c57405SHong Zhang 
610f6c57405SHong Zhang   }
611f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(12) (efficiency control):                         %d \n",lu->id.ICNTL(12));CHKERRQ(ierr);
612f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(13) (efficiency control):                         %d \n",lu->id.ICNTL(13));CHKERRQ(ierr);
613f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(14) (percentage of estimated workspace increase): %d \n",lu->id.ICNTL(14));CHKERRQ(ierr);
614f6c57405SHong Zhang   /* ICNTL(15-17) not used */
615f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(18) (input mat struct):                           %d \n",lu->id.ICNTL(18));CHKERRQ(ierr);
616f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(19) (Shur complement info):                       %d \n",lu->id.ICNTL(19));CHKERRQ(ierr);
617f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(20) (rhs sparse pattern):                         %d \n",lu->id.ICNTL(20));CHKERRQ(ierr);
618f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(21) (solution struct):                            %d \n",lu->id.ICNTL(21));CHKERRQ(ierr);
619c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(22) (in-core/out-of-core facility):               %d \n",lu->id.ICNTL(22));CHKERRQ(ierr);
620c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(23) (max size of memory can be allocated locally):%d \n",lu->id.ICNTL(23));CHKERRQ(ierr);
621c0165424SHong Zhang 
622c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(24) (detection of null pivot rows):               %d \n",lu->id.ICNTL(24));CHKERRQ(ierr);
623c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(25) (computation of a null space basis):          %d \n",lu->id.ICNTL(25));CHKERRQ(ierr);
624c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(26) (Schur options for rhs or solution):          %d \n",lu->id.ICNTL(26));CHKERRQ(ierr);
625c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  ICNTL(27) (experimental parameter):                     %d \n",lu->id.ICNTL(27));CHKERRQ(ierr);
626f6c57405SHong Zhang 
627f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  CNTL(1) (relative pivoting threshold):      %g \n",lu->id.CNTL(1));CHKERRQ(ierr);
628f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  CNTL(2) (stopping criterion of refinement): %g \n",lu->id.CNTL(2));CHKERRQ(ierr);
629f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  CNTL(3) (absolute pivoting threshold):      %g \n",lu->id.CNTL(3));CHKERRQ(ierr);
630f6c57405SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  CNTL(4) (value of static pivoting):         %g \n",lu->id.CNTL(4));CHKERRQ(ierr);
631c0165424SHong Zhang   ierr = PetscViewerASCIIPrintf(viewer,"  CNTL(5) (fixation for null pivots):         %g \n",lu->id.CNTL(5));CHKERRQ(ierr);
632f6c57405SHong Zhang 
633f6c57405SHong Zhang   /* infomation local to each processor */
634f6c57405SHong Zhang   if (!lu->myid) {ierr = PetscPrintf(PETSC_COMM_SELF, "      RINFO(1) (local estimated flops for the elimination after analysis): \n");CHKERRQ(ierr);}
6357adad957SLisandro Dalcin   ierr = PetscSynchronizedPrintf(((PetscObject)A)->comm,"             [%d] %g \n",lu->myid,lu->id.RINFO(1));CHKERRQ(ierr);
6367adad957SLisandro Dalcin   ierr = PetscSynchronizedFlush(((PetscObject)A)->comm);
637f6c57405SHong Zhang   if (!lu->myid) {ierr = PetscPrintf(PETSC_COMM_SELF, "      RINFO(2) (local estimated flops for the assembly after factorization): \n");CHKERRQ(ierr);}
6387adad957SLisandro Dalcin   ierr = PetscSynchronizedPrintf(((PetscObject)A)->comm,"             [%d]  %g \n",lu->myid,lu->id.RINFO(2));CHKERRQ(ierr);
6397adad957SLisandro Dalcin   ierr = PetscSynchronizedFlush(((PetscObject)A)->comm);
640f6c57405SHong Zhang   if (!lu->myid) {ierr = PetscPrintf(PETSC_COMM_SELF, "      RINFO(3) (local estimated flops for the elimination after factorization): \n");CHKERRQ(ierr);}
6417adad957SLisandro Dalcin   ierr = PetscSynchronizedPrintf(((PetscObject)A)->comm,"             [%d]  %g \n",lu->myid,lu->id.RINFO(3));CHKERRQ(ierr);
6427adad957SLisandro Dalcin   ierr = PetscSynchronizedFlush(((PetscObject)A)->comm);
643f6c57405SHong Zhang 
644f6c57405SHong Zhang   if (!lu->myid) {ierr = PetscPrintf(PETSC_COMM_SELF, "      INFO(15) (estimated size of (in MB) MUMPS internal data for running numerical factorization): \n");CHKERRQ(ierr);}
6457adad957SLisandro Dalcin   ierr = PetscSynchronizedPrintf(((PetscObject)A)->comm,"             [%d] %d \n",lu->myid,lu->id.INFO(15));CHKERRQ(ierr);
6467adad957SLisandro Dalcin   ierr = PetscSynchronizedFlush(((PetscObject)A)->comm);
647f6c57405SHong Zhang 
648f6c57405SHong Zhang   if (!lu->myid) {ierr = PetscPrintf(PETSC_COMM_SELF, "      INFO(16) (size of (in MB) MUMPS internal data used during numerical factorization): \n");CHKERRQ(ierr);}
6497adad957SLisandro Dalcin   ierr = PetscSynchronizedPrintf(((PetscObject)A)->comm,"             [%d] %d \n",lu->myid,lu->id.INFO(16));CHKERRQ(ierr);
6507adad957SLisandro Dalcin   ierr = PetscSynchronizedFlush(((PetscObject)A)->comm);
651f6c57405SHong Zhang 
652f6c57405SHong Zhang   if (!lu->myid) {ierr = PetscPrintf(PETSC_COMM_SELF, "      INFO(23) (num of pivots eliminated on this processor after factorization): \n");CHKERRQ(ierr);}
6537adad957SLisandro Dalcin   ierr = PetscSynchronizedPrintf(((PetscObject)A)->comm,"             [%d] %d \n",lu->myid,lu->id.INFO(23));CHKERRQ(ierr);
6547adad957SLisandro Dalcin   ierr = PetscSynchronizedFlush(((PetscObject)A)->comm);
655f6c57405SHong Zhang 
656f6c57405SHong Zhang   if (!lu->myid){ /* information from the host */
657f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  RINFOG(1) (global estimated flops for the elimination after analysis): %g \n",lu->id.RINFOG(1));CHKERRQ(ierr);
658f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  RINFOG(2) (global estimated flops for the assembly after factorization): %g \n",lu->id.RINFOG(2));CHKERRQ(ierr);
659f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  RINFOG(3) (global estimated flops for the elimination after factorization): %g \n",lu->id.RINFOG(3));CHKERRQ(ierr);
660f6c57405SHong Zhang 
661f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(3) (estimated real workspace for factors on all processors after analysis): %d \n",lu->id.INFOG(3));CHKERRQ(ierr);
662f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(4) (estimated integer workspace for factors on all processors after analysis): %d \n",lu->id.INFOG(4));CHKERRQ(ierr);
663f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(5) (estimated maximum front size in the complete tree): %d \n",lu->id.INFOG(5));CHKERRQ(ierr);
664f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(6) (number of nodes in the complete tree): %d \n",lu->id.INFOG(6));CHKERRQ(ierr);
665f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(7) (ordering option effectively uese after analysis): %d \n",lu->id.INFOG(7));CHKERRQ(ierr);
666f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(8) (structural symmetry in percent of the permuted matrix after analysis): %d \n",lu->id.INFOG(8));CHKERRQ(ierr);
667f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(9) (total real/complex workspace to store the matrix factors after factorization): %d \n",lu->id.INFOG(9));CHKERRQ(ierr);
668f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(10) (total integer space store the matrix factors after factorization): %d \n",lu->id.INFOG(10));CHKERRQ(ierr);
669f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(11) (order of largest frontal matrix after factorization): %d \n",lu->id.INFOG(11));CHKERRQ(ierr);
670f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(12) (number of off-diagonal pivots): %d \n",lu->id.INFOG(12));CHKERRQ(ierr);
671f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(13) (number of delayed pivots after factorization): %d \n",lu->id.INFOG(13));CHKERRQ(ierr);
672f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(14) (number of memory compress after factorization): %d \n",lu->id.INFOG(14));CHKERRQ(ierr);
673f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(15) (number of steps of iterative refinement after solution): %d \n",lu->id.INFOG(15));CHKERRQ(ierr);
674f6c57405SHong Zhang     ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(16) (estimated size (in MB) of all MUMPS internal data for factorization after analysis: value on the most memory consuming processor): %d \n",lu->id.INFOG(16));CHKERRQ(ierr);
675f6c57405SHong 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);
676f6c57405SHong 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);
677f6c57405SHong 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);
678f6c57405SHong Zhang      ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(20) (estimated number of entries in the factors): %d \n",lu->id.INFOG(20));CHKERRQ(ierr);
679f6c57405SHong Zhang      ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(21) (size in MB of memory effectively used during factorization - value on the most memory consuming processor): %d \n",lu->id.INFOG(21));CHKERRQ(ierr);
680f6c57405SHong Zhang      ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(22) (size in MB of memory effectively used during factorization - sum over all processors): %d \n",lu->id.INFOG(22));CHKERRQ(ierr);
681f6c57405SHong Zhang      ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(23) (after analysis: value of ICNTL(6) effectively used): %d \n",lu->id.INFOG(23));CHKERRQ(ierr);
682f6c57405SHong Zhang      ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(24) (after analysis: value of ICNTL(12) effectively used): %d \n",lu->id.INFOG(24));CHKERRQ(ierr);
683f6c57405SHong Zhang      ierr = PetscViewerASCIIPrintf(viewer,"  INFOG(25) (after factorization: number of pivots modified by static pivoting): %d \n",lu->id.INFOG(25));CHKERRQ(ierr);
684f6c57405SHong Zhang   }
685f6c57405SHong Zhang   PetscFunctionReturn(0);
686f6c57405SHong Zhang }
687f6c57405SHong Zhang 
688f6c57405SHong Zhang #undef __FUNCT__
689f6c57405SHong Zhang #define __FUNCT__ "MatView_MUMPS"
690b24902e0SBarry Smith PetscErrorCode MatView_MUMPS(Mat A,PetscViewer viewer)
691b24902e0SBarry Smith {
692f6c57405SHong Zhang   PetscErrorCode    ierr;
693f6c57405SHong Zhang   PetscTruth        iascii;
694f6c57405SHong Zhang   PetscViewerFormat format;
695f6c57405SHong Zhang 
696f6c57405SHong Zhang   PetscFunctionBegin;
697f6c57405SHong Zhang     ierr = PetscTypeCompare((PetscObject)viewer,PETSC_VIEWER_ASCII,&iascii);CHKERRQ(ierr);
698f6c57405SHong Zhang   if (iascii) {
699f6c57405SHong Zhang     ierr = PetscViewerGetFormat(viewer,&format);CHKERRQ(ierr);
700f6c57405SHong Zhang     if (format == PETSC_VIEWER_ASCII_INFO){
701f6c57405SHong Zhang       ierr = MatFactorInfo_MUMPS(A,viewer);CHKERRQ(ierr);
702f6c57405SHong Zhang     }
703f6c57405SHong Zhang   }
704f6c57405SHong Zhang   PetscFunctionReturn(0);
705f6c57405SHong Zhang }
706f6c57405SHong Zhang 
70735bd34faSBarry Smith #undef __FUNCT__
70835bd34faSBarry Smith #define __FUNCT__ "MatGetInfo_MUMPS"
70935bd34faSBarry Smith PetscErrorCode MatGetInfo_MUMPS(Mat A,MatInfoType flag,MatInfo *info)
71035bd34faSBarry Smith {
71135bd34faSBarry Smith     Mat_MUMPS  *lu =(Mat_MUMPS*)A->spptr;
71235bd34faSBarry Smith 
71335bd34faSBarry Smith   PetscFunctionBegin;
71435bd34faSBarry Smith   info->block_size        = 1.0;
71535bd34faSBarry Smith   info->nz_allocated      = lu->id.INFOG(20);
71635bd34faSBarry Smith   info->nz_used           = lu->id.INFOG(20);
71735bd34faSBarry Smith   info->nz_unneeded       = 0.0;
71835bd34faSBarry Smith   info->assemblies        = 0.0;
71935bd34faSBarry Smith   info->mallocs           = 0.0;
72035bd34faSBarry Smith   info->memory            = 0.0;
72135bd34faSBarry Smith   info->fill_ratio_given  = 0;
72235bd34faSBarry Smith   info->fill_ratio_needed = 0;
72335bd34faSBarry Smith   info->factor_mallocs    = 0;
72435bd34faSBarry Smith   PetscFunctionReturn(0);
72535bd34faSBarry Smith }
72635bd34faSBarry Smith 
72724b6179bSKris Buschelman /*MC
72841c8de11SBarry Smith   MAT_SOLVER_MUMPS -  A matrix type providing direct solvers (LU and Cholesky) for
72924b6179bSKris Buschelman   distributed and sequential matrices via the external package MUMPS.
73024b6179bSKris Buschelman 
73141c8de11SBarry Smith   Works with MATAIJ and MATSBAIJ matrices
73224b6179bSKris Buschelman 
73324b6179bSKris Buschelman   Options Database Keys:
73441c8de11SBarry Smith + -mat_mumps_sym <0,1,2> - 0 the matrix is unsymmetric, 1 symmetric positive definite, 2 symmetric
73524b6179bSKris Buschelman . -mat_mumps_icntl_4 <0,...,4> - print level
73624b6179bSKris Buschelman . -mat_mumps_icntl_6 <0,...,7> - matrix prescaling options (see MUMPS User's Guide)
73724b6179bSKris Buschelman . -mat_mumps_icntl_7 <0,...,7> - matrix orderings (see MUMPS User's Guide)
73824b6179bSKris Buschelman . -mat_mumps_icntl_9 <1,2> - A or A^T x=b to be solved: 1 denotes A, 2 denotes A^T
73924b6179bSKris Buschelman . -mat_mumps_icntl_10 <n> - maximum number of iterative refinements
74094b7f48cSBarry Smith . -mat_mumps_icntl_11 <n> - error analysis, a positive value returns statistics during -ksp_view
74124b6179bSKris Buschelman . -mat_mumps_icntl_12 <n> - efficiency control (see MUMPS User's Guide)
74224b6179bSKris Buschelman . -mat_mumps_icntl_13 <n> - efficiency control (see MUMPS User's Guide)
74324b6179bSKris Buschelman . -mat_mumps_icntl_14 <n> - efficiency control (see MUMPS User's Guide)
74424b6179bSKris Buschelman . -mat_mumps_icntl_15 <n> - efficiency control (see MUMPS User's Guide)
74524b6179bSKris Buschelman . -mat_mumps_cntl_1 <delta> - relative pivoting threshold
74624b6179bSKris Buschelman . -mat_mumps_cntl_2 <tol> - stopping criterion for refinement
74724b6179bSKris Buschelman - -mat_mumps_cntl_3 <adelta> - absolute pivoting threshold
74824b6179bSKris Buschelman 
74924b6179bSKris Buschelman   Level: beginner
75024b6179bSKris Buschelman 
75141c8de11SBarry Smith .seealso: PCFactorSetMatSolverPackage(), MatSolverPackage
75241c8de11SBarry Smith 
75324b6179bSKris Buschelman M*/
75424b6179bSKris Buschelman 
7552877fffaSHong Zhang EXTERN_C_BEGIN
75635bd34faSBarry Smith #undef __FUNCT__
75735bd34faSBarry Smith #define __FUNCT__ "MatFactorGetSolverPackage_mumps"
75835bd34faSBarry Smith PetscErrorCode MatFactorGetSolverPackage_mumps(Mat A,const MatSolverPackage *type)
75935bd34faSBarry Smith {
76035bd34faSBarry Smith   PetscFunctionBegin;
76135bd34faSBarry Smith   *type = MAT_SOLVER_MUMPS;
76235bd34faSBarry Smith   PetscFunctionReturn(0);
76335bd34faSBarry Smith }
76435bd34faSBarry Smith EXTERN_C_END
76535bd34faSBarry Smith 
76635bd34faSBarry Smith EXTERN_C_BEGIN
7672877fffaSHong Zhang /*
7682877fffaSHong Zhang     The seq and mpi versions of this function are the same
7692877fffaSHong Zhang */
7702877fffaSHong Zhang #undef __FUNCT__
7712877fffaSHong Zhang #define __FUNCT__ "MatGetFactor_seqaij_mumps"
7722877fffaSHong Zhang PetscErrorCode MatGetFactor_seqaij_mumps(Mat A,MatFactorType ftype,Mat *F)
7732877fffaSHong Zhang {
7742877fffaSHong Zhang   Mat            B;
7752877fffaSHong Zhang   PetscErrorCode ierr;
7762877fffaSHong Zhang   Mat_MUMPS      *mumps;
7772877fffaSHong Zhang 
7782877fffaSHong Zhang   PetscFunctionBegin;
7792877fffaSHong Zhang   if (ftype != MAT_FACTOR_LU) {
7802877fffaSHong Zhang     SETERRQ(PETSC_ERR_SUP,"Cannot use PETSc AIJ matrices with MUMPS Cholesky, use SBAIJ matrix");
7812877fffaSHong Zhang   }
7822877fffaSHong Zhang   /* Create the factorization matrix */
7832877fffaSHong Zhang   ierr = MatCreate(((PetscObject)A)->comm,&B);CHKERRQ(ierr);
7842877fffaSHong Zhang   ierr = MatSetSizes(B,A->rmap->n,A->cmap->n,A->rmap->N,A->cmap->N);CHKERRQ(ierr);
7852877fffaSHong Zhang   ierr = MatSetType(B,((PetscObject)A)->type_name);CHKERRQ(ierr);
7862877fffaSHong Zhang   ierr = MatSeqAIJSetPreallocation(B,0,PETSC_NULL);CHKERRQ(ierr);
7872877fffaSHong Zhang 
7882877fffaSHong Zhang   B->ops->lufactorsymbolic = MatLUFactorSymbolic_AIJMUMPS;
7892877fffaSHong Zhang   B->ops->view             = MatView_MUMPS;
79035bd34faSBarry Smith   B->ops->getinfo          = MatGetInfo_MUMPS;
79135bd34faSBarry Smith   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatFactorGetSolverPackage_C","MatFactorGetSolverPackage_mumps",MatFactorGetSolverPackage_mumps);CHKERRQ(ierr);
79297969023SHong Zhang   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatMumpsSetIcntl_C","MatMumpsSetIcntl",MatMumpsSetIcntl);CHKERRQ(ierr);
7932877fffaSHong Zhang   B->factor                = MAT_FACTOR_LU;
7942877fffaSHong Zhang 
7952877fffaSHong Zhang   ierr = PetscNewLog(B,Mat_MUMPS,&mumps);CHKERRQ(ierr);
7962877fffaSHong Zhang   mumps->CleanUpMUMPS              = PETSC_FALSE;
7972877fffaSHong Zhang   mumps->isAIJ                     = PETSC_TRUE;
7982877fffaSHong Zhang   mumps->scat_rhs                  = PETSC_NULL;
7992877fffaSHong Zhang   mumps->scat_sol                  = PETSC_NULL;
8002877fffaSHong Zhang   mumps->nSolve                    = 0;
8012877fffaSHong Zhang   mumps->MatDestroy                = B->ops->destroy;
8022877fffaSHong Zhang   B->ops->destroy                  = MatDestroy_MUMPS;
8032877fffaSHong Zhang   B->spptr                         = (void*)mumps;
8042877fffaSHong Zhang 
8052877fffaSHong Zhang   *F = B;
8062877fffaSHong Zhang   PetscFunctionReturn(0);
8072877fffaSHong Zhang }
8082877fffaSHong Zhang EXTERN_C_END
8092877fffaSHong Zhang 
8102877fffaSHong Zhang EXTERN_C_BEGIN
8112877fffaSHong Zhang #undef __FUNCT__
8122877fffaSHong Zhang #define __FUNCT__ "MatGetFactor_mpiaij_mumps"
8132877fffaSHong Zhang PetscErrorCode MatGetFactor_mpiaij_mumps(Mat A,MatFactorType ftype,Mat *F)
8142877fffaSHong Zhang {
8152877fffaSHong Zhang   Mat            B;
8162877fffaSHong Zhang   PetscErrorCode ierr;
8172877fffaSHong Zhang   Mat_MUMPS      *mumps;
8182877fffaSHong Zhang 
8192877fffaSHong Zhang   PetscFunctionBegin;
8202877fffaSHong Zhang   if (ftype != MAT_FACTOR_LU) {
8212877fffaSHong Zhang     SETERRQ(PETSC_ERR_SUP,"Cannot use PETSc AIJ matrices with MUMPS Cholesky, use SBAIJ matrix");
8222877fffaSHong Zhang   }
8232877fffaSHong Zhang   /* Create the factorization matrix */
8242877fffaSHong Zhang   ierr = MatCreate(((PetscObject)A)->comm,&B);CHKERRQ(ierr);
8252877fffaSHong Zhang   ierr = MatSetSizes(B,A->rmap->n,A->cmap->n,A->rmap->N,A->cmap->N);CHKERRQ(ierr);
8262877fffaSHong Zhang   ierr = MatSetType(B,((PetscObject)A)->type_name);CHKERRQ(ierr);
8272877fffaSHong Zhang   ierr = MatSeqAIJSetPreallocation(B,0,PETSC_NULL);CHKERRQ(ierr);
8282877fffaSHong Zhang   ierr = MatMPIAIJSetPreallocation(B,0,PETSC_NULL,0,PETSC_NULL);CHKERRQ(ierr);
8292877fffaSHong Zhang 
8302877fffaSHong Zhang   B->ops->lufactorsymbolic = MatLUFactorSymbolic_AIJMUMPS;
8312877fffaSHong Zhang   B->ops->view             = MatView_MUMPS;
83235bd34faSBarry Smith   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatFactorGetSolverPackage_C","MatFactorGetSolverPackage_mumps",MatFactorGetSolverPackage_mumps);CHKERRQ(ierr);
83397969023SHong Zhang   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatMumpsSetIcntl_C","MatMumpsSetIcntl",MatMumpsSetIcntl);CHKERRQ(ierr);
8342877fffaSHong Zhang   B->factor                = MAT_FACTOR_LU;
8352877fffaSHong Zhang 
8362877fffaSHong Zhang   ierr = PetscNewLog(B,Mat_MUMPS,&mumps);CHKERRQ(ierr);
8372877fffaSHong Zhang   mumps->CleanUpMUMPS              = PETSC_FALSE;
8382877fffaSHong Zhang   mumps->isAIJ                     = PETSC_TRUE;
8392877fffaSHong Zhang   mumps->scat_rhs                  = PETSC_NULL;
8402877fffaSHong Zhang   mumps->scat_sol                  = PETSC_NULL;
8412877fffaSHong Zhang   mumps->nSolve                    = 0;
842f3c0ef26SHong Zhang   mumps->MatDestroy                = B->ops->destroy;
843f3c0ef26SHong Zhang   B->ops->destroy                  = MatDestroy_MUMPS;
8442877fffaSHong Zhang   B->spptr                         = (void*)mumps;
8452877fffaSHong Zhang 
8462877fffaSHong Zhang   *F = B;
8472877fffaSHong Zhang   PetscFunctionReturn(0);
8482877fffaSHong Zhang }
8492877fffaSHong Zhang EXTERN_C_END
8502877fffaSHong Zhang 
8512877fffaSHong Zhang EXTERN_C_BEGIN
8522877fffaSHong Zhang #undef __FUNCT__
8532877fffaSHong Zhang #define __FUNCT__ "MatGetFactor_seqsbaij_mumps"
8542877fffaSHong Zhang PetscErrorCode MatGetFactor_seqsbaij_mumps(Mat A,MatFactorType ftype,Mat *F)
8552877fffaSHong Zhang {
8562877fffaSHong Zhang   Mat            B;
8572877fffaSHong Zhang   PetscErrorCode ierr;
8582877fffaSHong Zhang   Mat_MUMPS      *mumps;
8592877fffaSHong Zhang 
8602877fffaSHong Zhang   PetscFunctionBegin;
8612877fffaSHong Zhang   if (ftype != MAT_FACTOR_CHOLESKY) {
8622877fffaSHong Zhang     SETERRQ(PETSC_ERR_SUP,"Cannot use PETSc SBAIJ matrices with MUMPS LU, use AIJ matrix");
8632877fffaSHong Zhang   }
8642877fffaSHong Zhang   /* Create the factorization matrix */
8652877fffaSHong Zhang   ierr = MatCreate(((PetscObject)A)->comm,&B);CHKERRQ(ierr);
8662877fffaSHong Zhang   ierr = MatSetSizes(B,A->rmap->n,A->cmap->n,A->rmap->N,A->cmap->N);CHKERRQ(ierr);
8672877fffaSHong Zhang   ierr = MatSetType(B,((PetscObject)A)->type_name);CHKERRQ(ierr);
8682877fffaSHong Zhang   ierr = MatSeqSBAIJSetPreallocation(B,1,0,PETSC_NULL);CHKERRQ(ierr);
8692877fffaSHong Zhang   ierr = MatMPISBAIJSetPreallocation(B,1,0,PETSC_NULL,0,PETSC_NULL);CHKERRQ(ierr);
8702877fffaSHong Zhang 
8712877fffaSHong Zhang   B->ops->choleskyfactorsymbolic = MatCholeskyFactorSymbolic_SBAIJMUMPS;
8722877fffaSHong Zhang   B->ops->view                   = MatView_MUMPS;
87335bd34faSBarry Smith   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatFactorGetSolverPackage_C","MatFactorGetSolverPackage_mumps",MatFactorGetSolverPackage_mumps);CHKERRQ(ierr);
87497969023SHong Zhang   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatMumpsSetIcntl_C","MatMumpsSetIcntl",MatMumpsSetIcntl);CHKERRQ(ierr);
8752877fffaSHong Zhang   B->factor                      = MAT_FACTOR_CHOLESKY;
8762877fffaSHong Zhang 
8772877fffaSHong Zhang   ierr = PetscNewLog(B,Mat_MUMPS,&mumps);CHKERRQ(ierr);
8782877fffaSHong Zhang   mumps->CleanUpMUMPS              = PETSC_FALSE;
8792877fffaSHong Zhang   mumps->isAIJ                     = PETSC_TRUE;
8802877fffaSHong Zhang   mumps->scat_rhs                  = PETSC_NULL;
8812877fffaSHong Zhang   mumps->scat_sol                  = PETSC_NULL;
8822877fffaSHong Zhang   mumps->nSolve                    = 0;
8832877fffaSHong Zhang   mumps->MatDestroy                = B->ops->destroy;
8842877fffaSHong Zhang   B->ops->destroy                  = MatDestroy_MUMPS;
8852877fffaSHong Zhang   B->spptr                         = (void*)mumps;
886f3c0ef26SHong Zhang 
8872877fffaSHong Zhang   *F = B;
8882877fffaSHong Zhang   PetscFunctionReturn(0);
8892877fffaSHong Zhang }
8902877fffaSHong Zhang EXTERN_C_END
8912877fffaSHong Zhang 
8922877fffaSHong Zhang EXTERN_C_BEGIN
8932877fffaSHong Zhang #undef __FUNCT__
8942877fffaSHong Zhang #define __FUNCT__ "MatGetFactor_mpisbaij_mumps"
8952877fffaSHong Zhang PetscErrorCode MatGetFactor_mpisbaij_mumps(Mat A,MatFactorType ftype,Mat *F)
8962877fffaSHong Zhang {
8972877fffaSHong Zhang   Mat            B;
8982877fffaSHong Zhang   PetscErrorCode ierr;
8992877fffaSHong Zhang   Mat_MUMPS      *mumps;
9002877fffaSHong Zhang 
9012877fffaSHong Zhang   PetscFunctionBegin;
9022877fffaSHong Zhang   if (ftype != MAT_FACTOR_CHOLESKY) {
9032877fffaSHong Zhang     SETERRQ(PETSC_ERR_SUP,"Cannot use PETSc SBAIJ matrices with MUMPS LU, use AIJ matrix");
9042877fffaSHong Zhang   }
9052877fffaSHong Zhang   /* Create the factorization matrix */
9062877fffaSHong Zhang   ierr = MatCreate(((PetscObject)A)->comm,&B);CHKERRQ(ierr);
9072877fffaSHong Zhang   ierr = MatSetSizes(B,A->rmap->n,A->cmap->n,A->rmap->N,A->cmap->N);CHKERRQ(ierr);
9082877fffaSHong Zhang   ierr = MatSetType(B,((PetscObject)A)->type_name);CHKERRQ(ierr);
9092877fffaSHong Zhang   ierr = MatSeqSBAIJSetPreallocation(B,1,0,PETSC_NULL);CHKERRQ(ierr);
9102877fffaSHong Zhang   ierr = MatMPISBAIJSetPreallocation(B,1,0,PETSC_NULL,0,PETSC_NULL);CHKERRQ(ierr);
9112877fffaSHong Zhang 
9122877fffaSHong Zhang   B->ops->choleskyfactorsymbolic = MatCholeskyFactorSymbolic_SBAIJMUMPS;
9132877fffaSHong Zhang   B->ops->view                   = MatView_MUMPS;
91435bd34faSBarry Smith   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatFactorGetSolverPackage_C","MatFactorGetSolverPackage_mumps",MatFactorGetSolverPackage_mumps);CHKERRQ(ierr);
91597969023SHong Zhang   ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatMumpsSetIcntl_C","MatMumpsSetIcntl",MatMumpsSetIcntl);CHKERRQ(ierr);
9162877fffaSHong Zhang   B->factor                      = MAT_FACTOR_CHOLESKY;
9172877fffaSHong Zhang 
9182877fffaSHong Zhang   ierr = PetscNewLog(B,Mat_MUMPS,&mumps);CHKERRQ(ierr);
9192877fffaSHong Zhang   mumps->CleanUpMUMPS              = PETSC_FALSE;
9202877fffaSHong Zhang   mumps->isAIJ                     = PETSC_TRUE;
9212877fffaSHong Zhang   mumps->scat_rhs                  = PETSC_NULL;
9222877fffaSHong Zhang   mumps->scat_sol                  = PETSC_NULL;
9232877fffaSHong Zhang   mumps->nSolve                    = 0;
924f3c0ef26SHong Zhang   mumps->MatDestroy                = B->ops->destroy;
925f3c0ef26SHong Zhang   B->ops->destroy                  = MatDestroy_MUMPS;
9262877fffaSHong Zhang   B->spptr                         = (void*)mumps;
927f3c0ef26SHong Zhang 
9282877fffaSHong Zhang   *F = B;
9292877fffaSHong Zhang   PetscFunctionReturn(0);
9302877fffaSHong Zhang }
9312877fffaSHong Zhang EXTERN_C_END
93297969023SHong Zhang 
93361288eaaSHong Zhang /* -------------------------------------------------------------------------------------------*/
93461288eaaSHong Zhang /*@
93561288eaaSHong Zhang   MatMumpsSetIcntl - Set MUMPS parameter ICNTL()
93661288eaaSHong Zhang 
93761288eaaSHong Zhang    Collective on Mat
93861288eaaSHong Zhang 
93961288eaaSHong Zhang    Input Parameters:
94061288eaaSHong Zhang +  F - the factored matrix obtained by calling MatGetFactor() from PETSc-MUMPS interface
94161288eaaSHong Zhang .  idx - index of MUMPS parameter array ICNTL()
94261288eaaSHong Zhang -  icntl - value of MUMPS ICNTL(imumps)
94361288eaaSHong Zhang 
94461288eaaSHong Zhang   Options Database:
94561288eaaSHong Zhang .   -mat_mumps_icntl_<idx> <icntl>
94661288eaaSHong Zhang 
94761288eaaSHong Zhang    Level: beginner
94861288eaaSHong Zhang 
94961288eaaSHong Zhang    References: MUMPS Users' Guide
95061288eaaSHong Zhang 
95161288eaaSHong Zhang .seealso: MatGetFactor()
95261288eaaSHong Zhang @*/
95397969023SHong Zhang #undef __FUNCT__
95497969023SHong Zhang #define __FUNCT__ "MatMumpsSetIcntl"
95586e5884dSMatthew Knepley PetscErrorCode MatMumpsSetIcntl(Mat F,PetscInt idx,PetscInt icntl)
95697969023SHong Zhang {
95797969023SHong Zhang   Mat_MUMPS      *lu =(Mat_MUMPS*)(F)->spptr;
95897969023SHong Zhang 
95997969023SHong Zhang   PetscFunctionBegin;
96061288eaaSHong Zhang   lu->id.ICNTL(idx) = icntl;
96197969023SHong Zhang   PetscFunctionReturn(0);
96297969023SHong Zhang }
96397969023SHong Zhang 
964