xref: /petsc/src/mat/impls/aij/mpi/mpiptap.c (revision efd4aadf157bf1ba2d80c2be092fcf4247860003)
1 
2 /*
3   Defines projective product routines where A is a MPIAIJ matrix
4           C = P^T * A * P
5 */
6 
7 #include <../src/mat/impls/aij/seq/aij.h>   /*I "petscmat.h" I*/
8 #include <../src/mat/utils/freespace.h>
9 #include <../src/mat/impls/aij/mpi/mpiaij.h>
10 #include <petscbt.h>
11 #include <petsctime.h>
12 
13 /* #define PTAP_PROFILE */
14 
15 PetscErrorCode MatDestroy_MPIAIJ_PtAP(Mat A)
16 {
17   PetscErrorCode ierr;
18   Mat_MPIAIJ     *a=(Mat_MPIAIJ*)A->data;
19   Mat_PtAPMPI    *ptap=a->ptap;
20 
21   PetscFunctionBegin;
22   if (ptap) {
23     Mat_Merge_SeqsToMPI *merge=ptap->merge;
24     ierr = PetscFree2(ptap->startsj_s,ptap->startsj_r);CHKERRQ(ierr);
25     ierr = PetscFree(ptap->bufa);CHKERRQ(ierr);
26     ierr = MatDestroy(&ptap->P_loc);CHKERRQ(ierr);
27     ierr = MatDestroy(&ptap->P_oth);CHKERRQ(ierr);
28     ierr = MatDestroy(&ptap->A_loc);CHKERRQ(ierr); /* used by MatTransposeMatMult() */
29     ierr = MatDestroy(&ptap->Rd);CHKERRQ(ierr);
30     ierr = MatDestroy(&ptap->Ro);CHKERRQ(ierr);
31     if (ptap->AP_loc) { /* used by alg_rap */
32       Mat_SeqAIJ *ap = (Mat_SeqAIJ*)(ptap->AP_loc)->data;
33       ierr = PetscFree(ap->i);CHKERRQ(ierr);
34       ierr = PetscFree2(ap->j,ap->a);CHKERRQ(ierr);
35       ierr = MatDestroy(&ptap->AP_loc);CHKERRQ(ierr);
36     } else { /* used by alg_ptap */
37       ierr = PetscFree(ptap->api);CHKERRQ(ierr);
38       ierr = PetscFree(ptap->apj);CHKERRQ(ierr);
39     }
40     ierr = MatDestroy(&ptap->C_loc);CHKERRQ(ierr);
41     ierr = MatDestroy(&ptap->C_oth);CHKERRQ(ierr);
42     if (ptap->apa) {ierr = PetscFree(ptap->apa);CHKERRQ(ierr);}
43 
44     if (merge) { /* used by alg_ptap */
45       ierr = PetscFree(merge->id_r);CHKERRQ(ierr);
46       ierr = PetscFree(merge->len_s);CHKERRQ(ierr);
47       ierr = PetscFree(merge->len_r);CHKERRQ(ierr);
48       ierr = PetscFree(merge->bi);CHKERRQ(ierr);
49       ierr = PetscFree(merge->bj);CHKERRQ(ierr);
50       ierr = PetscFree(merge->buf_ri[0]);CHKERRQ(ierr);
51       ierr = PetscFree(merge->buf_ri);CHKERRQ(ierr);
52       ierr = PetscFree(merge->buf_rj[0]);CHKERRQ(ierr);
53       ierr = PetscFree(merge->buf_rj);CHKERRQ(ierr);
54       ierr = PetscFree(merge->coi);CHKERRQ(ierr);
55       ierr = PetscFree(merge->coj);CHKERRQ(ierr);
56       ierr = PetscFree(merge->owners_co);CHKERRQ(ierr);
57       ierr = PetscLayoutDestroy(&merge->rowmap);CHKERRQ(ierr);
58       ierr = PetscFree(ptap->merge);CHKERRQ(ierr);
59     }
60 
61     ierr = ptap->destroy(A);CHKERRQ(ierr);
62     ierr = PetscFree(ptap);CHKERRQ(ierr);
63   }
64   PetscFunctionReturn(0);
65 }
66 
67 PetscErrorCode MatDuplicate_MPIAIJ_MatPtAP(Mat A, MatDuplicateOption op, Mat *M)
68 {
69   PetscErrorCode ierr;
70   Mat_MPIAIJ     *a     = (Mat_MPIAIJ*)A->data;
71   Mat_PtAPMPI    *ptap  = a->ptap;
72 
73   PetscFunctionBegin;
74   ierr = (*ptap->duplicate)(A,op,M);CHKERRQ(ierr);
75   (*M)->ops->destroy   = ptap->destroy;
76   (*M)->ops->duplicate = ptap->duplicate;
77   PetscFunctionReturn(0);
78 }
79 
80 PETSC_INTERN PetscErrorCode MatPtAP_MPIAIJ_MPIAIJ(Mat A,Mat P,MatReuse scall,PetscReal fill,Mat *C)
81 {
82   PetscErrorCode ierr;
83   PetscBool      rap=PETSC_TRUE; /* do R=P^T locally, then C=R*A*P */
84   MPI_Comm       comm;
85 
86   PetscFunctionBegin;
87   /* check if matrix local sizes are compatible */
88   ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr);
89   if (A->rmap->rstart != P->rmap->rstart || A->rmap->rend != P->rmap->rend) SETERRQ4(comm,PETSC_ERR_ARG_SIZ,"Matrix local dimensions are incompatible, Arow (%D, %D) != Prow (%D,%D)",A->rmap->rstart,A->rmap->rend,P->rmap->rstart,P->rmap->rend);
90   if (A->cmap->rstart != P->rmap->rstart || A->cmap->rend != P->rmap->rend) SETERRQ4(comm,PETSC_ERR_ARG_SIZ,"Matrix local dimensions are incompatible, Acol (%D, %D) != Prow (%D,%D)",A->cmap->rstart,A->cmap->rend,P->rmap->rstart,P->rmap->rend);
91 
92   ierr = PetscOptionsGetBool(NULL,NULL,"-matrap",&rap,NULL);CHKERRQ(ierr);
93   if (scall == MAT_INITIAL_MATRIX) {
94     ierr = PetscLogEventBegin(MAT_PtAPSymbolic,A,P,0,0);CHKERRQ(ierr);
95     if (rap) { /* do R=P^T locally, then C=R*A*P */
96       ierr = MatPtAPSymbolic_MPIAIJ_MPIAIJ(A,P,fill,C);CHKERRQ(ierr);
97     } else {       /* do P^T*A*P */
98       ierr = MatPtAPSymbolic_MPIAIJ_MPIAIJ_ptap(A,P,fill,C);CHKERRQ(ierr);
99     }
100     ierr = PetscLogEventEnd(MAT_PtAPSymbolic,A,P,0,0);CHKERRQ(ierr);
101   }
102   ierr = PetscLogEventBegin(MAT_PtAPNumeric,A,P,0,0);CHKERRQ(ierr);
103   ierr = (*(*C)->ops->ptapnumeric)(A,P,*C);CHKERRQ(ierr);
104   ierr = PetscLogEventEnd(MAT_PtAPNumeric,A,P,0,0);CHKERRQ(ierr);
105   PetscFunctionReturn(0);
106 }
107 
108 #if defined(PETSC_HAVE_HYPRE)
109 PETSC_INTERN PetscErrorCode MatPtAPSymbolic_AIJ_AIJ_wHYPRE(Mat,Mat,PetscReal,Mat*);
110 #endif
111 
112 PetscErrorCode MatPtAPNumeric_MPIAIJ_MPIAIJ_scalable(Mat A,Mat P,Mat C)
113 {
114   PetscErrorCode    ierr;
115   Mat_MPIAIJ        *a=(Mat_MPIAIJ*)A->data,*p=(Mat_MPIAIJ*)P->data,*c=(Mat_MPIAIJ*)C->data;
116   Mat_SeqAIJ        *ad=(Mat_SeqAIJ*)(a->A)->data,*ao=(Mat_SeqAIJ*)(a->B)->data;
117   Mat_SeqAIJ        *ap,*p_loc,*p_oth,*c_seq;
118   Mat_PtAPMPI       *ptap = c->ptap;
119   Mat               AP_loc,C_loc,C_oth;
120   PetscInt          i,rstart,rend,cm,ncols,row,*api,*apj,am = A->rmap->n,apnz;
121   PetscScalar       *apa;
122   const PetscInt    *cols;
123   const PetscScalar *vals;
124 
125   PetscFunctionBegin;
126   ierr = MatZeroEntries(C);CHKERRQ(ierr);
127 
128   /* 1) get R = Pd^T,Ro = Po^T */
129   if (ptap->reuse == MAT_REUSE_MATRIX) {
130     ierr = MatTranspose_SeqAIJ(p->A,MAT_REUSE_MATRIX,&ptap->Rd);CHKERRQ(ierr);
131     ierr = MatTranspose_SeqAIJ(p->B,MAT_REUSE_MATRIX,&ptap->Ro);CHKERRQ(ierr);
132   }
133 
134   /* 2) get AP_loc */
135   AP_loc = ptap->AP_loc;
136   ap = (Mat_SeqAIJ*)AP_loc->data;
137 
138   /* 2-1) get P_oth = ptap->P_oth  and P_loc = ptap->P_loc */
139   /*-----------------------------------------------------*/
140   if (ptap->reuse == MAT_REUSE_MATRIX) {
141     /* P_oth and P_loc are obtained in MatPtASymbolic() when reuse == MAT_INITIAL_MATRIX */
142     ierr = MatGetBrowsOfAoCols_MPIAIJ(A,P,MAT_REUSE_MATRIX,&ptap->startsj_s,&ptap->startsj_r,&ptap->bufa,&ptap->P_oth);CHKERRQ(ierr);
143     ierr = MatMPIAIJGetLocalMat(P,MAT_REUSE_MATRIX,&ptap->P_loc);CHKERRQ(ierr);
144   }
145 
146   /* 2-2) compute numeric A_loc*P - dominating part */
147   /* ---------------------------------------------- */
148   /* get data from symbolic products */
149   p_loc = (Mat_SeqAIJ*)(ptap->P_loc)->data;
150   if (ptap->P_oth) p_oth = (Mat_SeqAIJ*)(ptap->P_oth)->data;
151   else SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE,"ptap->P_oth is NULL. Cannot proceed!");
152 
153   api   = ap->i;
154   apj   = ap->j;
155   for (i=0; i<am; i++) {
156     /* AP[i,:] = A[i,:]*P = Ad*P_loc Ao*P_oth */
157     apnz = api[i+1] - api[i];
158     apa = ap->a + api[i];
159     ierr = PetscMemzero(apa,sizeof(PetscScalar)*apnz);CHKERRQ(ierr);
160     AProw_scalable(i,ad,ao,p_loc,p_oth,api,apj,apa);
161     ierr = PetscLogFlops(2.0*apnz);CHKERRQ(ierr);
162   }
163 
164   /* 3) C_loc = Rd*AP_loc, C_oth = Ro*AP_loc */
165   ierr = MatMatMultNumeric_SeqAIJ_SeqAIJ_Scalable(ptap->Rd,AP_loc,ptap->C_loc);CHKERRQ(ierr);
166   ierr = MatMatMultNumeric_SeqAIJ_SeqAIJ_Scalable(ptap->Ro,AP_loc,ptap->C_oth);CHKERRQ(ierr);
167 
168   C_loc = ptap->C_loc;
169   C_oth = ptap->C_oth;
170 
171   /* add C_loc and Co to to C */
172   ierr = MatGetOwnershipRange(C,&rstart,&rend);CHKERRQ(ierr);
173 
174   /* C_loc -> C */
175   cm    = C_loc->rmap->N;
176   c_seq = (Mat_SeqAIJ*)C_loc->data;
177   cols = c_seq->j;
178   vals = c_seq->a;
179   for (i=0; i<cm; i++) {
180     ncols = c_seq->i[i+1] - c_seq->i[i];
181     row = rstart + i;
182     ierr = MatSetValues(C,1,&row,ncols,cols,vals,ADD_VALUES);CHKERRQ(ierr);
183     cols += ncols; vals += ncols;
184   }
185 
186   /* Co -> C, off-processor part */
187   cm = C_oth->rmap->N;
188   c_seq = (Mat_SeqAIJ*)C_oth->data;
189   cols = c_seq->j;
190   vals = c_seq->a;
191   for (i=0; i<cm; i++) {
192     ncols = c_seq->i[i+1] - c_seq->i[i];
193     row = p->garray[i];
194     ierr = MatSetValues(C,1,&row,ncols,cols,vals,ADD_VALUES);CHKERRQ(ierr);
195     cols += ncols; vals += ncols;
196   }
197   ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr);
198   ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr);
199 
200   ptap->reuse = MAT_REUSE_MATRIX;
201   PetscFunctionReturn(0);
202 }
203 
204 PetscErrorCode MatPtAPSymbolic_MPIAIJ_MPIAIJ_scalable(Mat A,Mat P,PetscReal fill,Mat *C)
205 {
206   PetscErrorCode      ierr;
207   Mat_PtAPMPI         *ptap;
208   Mat_MPIAIJ          *a=(Mat_MPIAIJ*)A->data,*p=(Mat_MPIAIJ*)P->data,*c;
209   MPI_Comm            comm;
210   PetscMPIInt         size,rank;
211   Mat                 Cmpi,P_loc,P_oth;
212   PetscFreeSpaceList  free_space=NULL,current_space=NULL;
213   PetscInt            am=A->rmap->n,pm=P->rmap->n,pN=P->cmap->N,pn=P->cmap->n;
214   PetscInt            *lnk,i,k,pnz,row,nsend;
215   PetscMPIInt         tagi,tagj,*len_si,*len_s,*len_ri,icompleted=0,nrecv;
216   PetscInt            **buf_rj,**buf_ri,**buf_ri_k;
217   PetscInt            len,proc,*dnz,*onz,*owners,nzi,nspacedouble;
218   PetscInt            nrows,*buf_s,*buf_si,*buf_si_i,**nextrow,**nextci;
219   MPI_Request         *swaits,*rwaits;
220   MPI_Status          *sstatus,rstatus;
221   PetscLayout         rowmap;
222   PetscInt            *owners_co,*coi,*coj;    /* i and j array of (p->B)^T*A*P - used in the communication */
223   PetscMPIInt         *len_r,*id_r;    /* array of length of comm->size, store send/recv matrix values */
224   PetscInt            *api,*apj,*Jptr,apnz,*prmap=p->garray,con,j,Crmax,*aj,*ai,*pi;
225   Mat_SeqAIJ          *p_loc,*p_oth=NULL,*ad=(Mat_SeqAIJ*)(a->A)->data,*ao=NULL,*c_loc,*c_oth;
226   PetscScalar         *apv;
227   PetscTable          ta;
228 #if defined(PETSC_USE_INFO)
229   PetscReal           apfill;
230 #endif
231 
232   PetscFunctionBegin;
233   ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr);
234   ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);
235   ierr = MPI_Comm_rank(comm,&rank);CHKERRQ(ierr);
236 
237   if (size > 1) ao = (Mat_SeqAIJ*)(a->B)->data;
238 
239   /* create symbolic parallel matrix Cmpi */
240   ierr = MatCreate(comm,&Cmpi);CHKERRQ(ierr);
241   ierr = MatSetType(Cmpi,MATMPIAIJ);CHKERRQ(ierr);
242 
243   /* create struct Mat_PtAPMPI and attached it to C later */
244   ierr        = PetscNew(&ptap);CHKERRQ(ierr);
245   ptap->reuse = MAT_INITIAL_MATRIX;
246 
247   /* get P_oth by taking rows of P (= non-zero cols of local A) from other processors */
248   ierr = MatGetBrowsOfAoCols_MPIAIJ(A,P,MAT_INITIAL_MATRIX,&ptap->startsj_s,&ptap->startsj_r,&ptap->bufa,&P_oth);CHKERRQ(ierr);
249   /* get P_loc by taking all local rows of P */
250   ierr = MatMPIAIJGetLocalMat(P,MAT_INITIAL_MATRIX,&P_loc);CHKERRQ(ierr);
251 
252   ptap->P_loc = P_loc;
253   ptap->P_oth = P_oth;
254 
255   /* (0) compute Rd = Pd^T, Ro = Po^T  */
256   /* --------------------------------- */
257   ierr = MatTranspose_SeqAIJ(p->A,MAT_INITIAL_MATRIX,&ptap->Rd);CHKERRQ(ierr);
258   ierr = MatTranspose_SeqAIJ(p->B,MAT_INITIAL_MATRIX,&ptap->Ro);CHKERRQ(ierr);
259 
260   /* (1) compute symbolic AP = A_loc*P = Ad*P_loc + Ao*P_oth (api,apj) */
261   /* ----------------------------------------------------------------- */
262   p_loc  = (Mat_SeqAIJ*)P_loc->data;
263   if (P_oth) p_oth = (Mat_SeqAIJ*)P_oth->data;
264 
265   /* create and initialize a linked list */
266   ierr = PetscTableCreate(pn,pN,&ta);CHKERRQ(ierr); /* for compute AP_loc and Cmpi */
267   MatRowMergeMax_SeqAIJ(p_loc,P_loc->rmap->N,ta);
268   MatRowMergeMax_SeqAIJ(p_oth,P_oth->rmap->N,ta);
269   ierr = PetscTableGetCount(ta,&Crmax);CHKERRQ(ierr); /* Crmax = nnz(sum of Prows) */
270 
271   ierr = PetscLLCondensedCreate_Scalable(Crmax,&lnk);CHKERRQ(ierr);
272 
273   /* Initial FreeSpace size is fill*(nnz(A) + nnz(P)) */
274   if (ao) {
275     ierr = PetscFreeSpaceGet(PetscRealIntMultTruncate(fill,PetscIntSumTruncate(ad->i[am],PetscIntSumTruncate(ao->i[am],p_loc->i[pm]))),&free_space);CHKERRQ(ierr);
276   } else {
277     ierr = PetscFreeSpaceGet(PetscRealIntMultTruncate(fill,PetscIntSumTruncate(ad->i[am],p_loc->i[pm])),&free_space);CHKERRQ(ierr);
278   }
279   current_space = free_space;
280   nspacedouble  = 0;
281 
282   ierr   = PetscMalloc1(am+1,&api);CHKERRQ(ierr);
283   api[0] = 0;
284   for (i=0; i<am; i++) {
285     /* diagonal portion: Ad[i,:]*P */
286     ai = ad->i; pi = p_loc->i;
287     nzi = ai[i+1] - ai[i];
288     aj  = ad->j + ai[i];
289     for (j=0; j<nzi; j++) {
290       row  = aj[j];
291       pnz  = pi[row+1] - pi[row];
292       Jptr = p_loc->j + pi[row];
293       /* add non-zero cols of P into the sorted linked list lnk */
294       ierr = PetscLLCondensedAddSorted_Scalable(pnz,Jptr,lnk);CHKERRQ(ierr);
295     }
296     /* off-diagonal portion: Ao[i,:]*P */
297     if (ao) {
298       ai = ao->i; pi = p_oth->i;
299       nzi = ai[i+1] - ai[i];
300       aj  = ao->j + ai[i];
301       for (j=0; j<nzi; j++) {
302         row  = aj[j];
303         pnz  = pi[row+1] - pi[row];
304         Jptr = p_oth->j + pi[row];
305         ierr = PetscLLCondensedAddSorted_Scalable(pnz,Jptr,lnk);CHKERRQ(ierr);
306       }
307     }
308     apnz     = lnk[0];
309     api[i+1] = api[i] + apnz;
310 
311     /* if free space is not available, double the total space in the list */
312     if (current_space->local_remaining<apnz) {
313       ierr = PetscFreeSpaceGet(PetscIntSumTruncate(apnz,current_space->total_array_size),&current_space);CHKERRQ(ierr);
314       nspacedouble++;
315     }
316 
317     /* Copy data into free space, then initialize lnk */
318     ierr = PetscLLCondensedClean_Scalable(apnz,current_space->array,lnk);CHKERRQ(ierr);
319 
320     current_space->array           += apnz;
321     current_space->local_used      += apnz;
322     current_space->local_remaining -= apnz;
323   }
324   /* Allocate space for apj and apv, initialize apj, and */
325   /* destroy list of free space and other temporary array(s) */
326   ierr = PetscMalloc2(api[am],&apj,api[am],&apv);CHKERRQ(ierr);
327   ierr = PetscFreeSpaceContiguous(&free_space,apj);CHKERRQ(ierr);
328   ierr = PetscLLCondensedDestroy_Scalable(lnk);CHKERRQ(ierr);
329 
330   /* Create AP_loc for reuse */
331   ierr = MatCreateSeqAIJWithArrays(PETSC_COMM_SELF,am,pN,api,apj,apv,&ptap->AP_loc);CHKERRQ(ierr);
332 
333 #if defined(PETSC_USE_INFO)
334   if (ao) {
335     apfill = (PetscReal)api[am]/(ad->i[am]+ao->i[am]+p_loc->i[pm]+1);
336   } else {
337     apfill = (PetscReal)api[am]/(ad->i[am]+p_loc->i[pm]+1);
338   }
339   ptap->AP_loc->info.mallocs           = nspacedouble;
340   ptap->AP_loc->info.fill_ratio_given  = fill;
341   ptap->AP_loc->info.fill_ratio_needed = apfill;
342 
343   if (api[am]) {
344     ierr = PetscInfo3(ptap->AP_loc,"AP_loc reallocs %D; Fill ratio: given %g needed %g.\n",nspacedouble,(double)fill,(double)apfill);CHKERRQ(ierr);
345     ierr = PetscInfo1(ptap->AP_loc,"Use MatPtAP(A,B,MatReuse,%g,&C) for best AP_loc performance.;\n",(double)apfill);CHKERRQ(ierr);
346   } else {
347     ierr = PetscInfo(ptap->AP_loc,"AP_loc is empty \n");CHKERRQ(ierr);
348   }
349 #endif
350 
351   /* (2-1) compute symbolic Co = Ro*AP_loc  */
352   /* ------------------------------------ */
353   ierr = MatMatMultSymbolic_SeqAIJ_SeqAIJ(ptap->Ro,ptap->AP_loc,fill,&ptap->C_oth);CHKERRQ(ierr);
354 
355   /* (3) send coj of C_oth to other processors  */
356   /* ------------------------------------------ */
357   /* determine row ownership */
358   ierr = PetscLayoutCreate(comm,&rowmap);CHKERRQ(ierr);
359   rowmap->n  = pn;
360   rowmap->bs = 1;
361   ierr   = PetscLayoutSetUp(rowmap);CHKERRQ(ierr);
362   owners = rowmap->range;
363 
364   /* determine the number of messages to send, their lengths */
365   ierr = PetscMalloc4(size,&len_s,size,&len_si,size,&sstatus,size+2,&owners_co);CHKERRQ(ierr);
366   ierr = PetscMemzero(len_s,size*sizeof(PetscMPIInt));CHKERRQ(ierr);
367   ierr = PetscMemzero(len_si,size*sizeof(PetscMPIInt));CHKERRQ(ierr);
368 
369   c_oth = (Mat_SeqAIJ*)ptap->C_oth->data;
370   coi   = c_oth->i; coj = c_oth->j;
371   con   = ptap->C_oth->rmap->n;
372   proc  = 0;
373   for (i=0; i<con; i++) {
374     while (prmap[i] >= owners[proc+1]) proc++;
375     len_si[proc]++;               /* num of rows in Co(=Pt*AP) to be sent to [proc] */
376     len_s[proc] += coi[i+1] - coi[i]; /* num of nonzeros in Co to be sent to [proc] */
377   }
378 
379   len          = 0; /* max length of buf_si[], see (4) */
380   owners_co[0] = 0;
381   nsend        = 0;
382   for (proc=0; proc<size; proc++) {
383     owners_co[proc+1] = owners_co[proc] + len_si[proc];
384     if (len_s[proc]) {
385       nsend++;
386       len_si[proc] = 2*(len_si[proc] + 1); /* length of buf_si to be sent to [proc] */
387       len         += len_si[proc];
388     }
389   }
390 
391   /* determine the number and length of messages to receive for coi and coj  */
392   ierr = PetscGatherNumberOfMessages(comm,NULL,len_s,&nrecv);CHKERRQ(ierr);
393   ierr = PetscGatherMessageLengths2(comm,nsend,nrecv,len_s,len_si,&id_r,&len_r,&len_ri);CHKERRQ(ierr);
394 
395   /* post the Irecv and Isend of coj */
396   ierr = PetscCommGetNewTag(comm,&tagj);CHKERRQ(ierr);
397   ierr = PetscPostIrecvInt(comm,tagj,nrecv,id_r,len_r,&buf_rj,&rwaits);CHKERRQ(ierr);
398   ierr = PetscMalloc1(nsend+1,&swaits);CHKERRQ(ierr);
399   for (proc=0, k=0; proc<size; proc++) {
400     if (!len_s[proc]) continue;
401     i    = owners_co[proc];
402     ierr = MPI_Isend(coj+coi[i],len_s[proc],MPIU_INT,proc,tagj,comm,swaits+k);CHKERRQ(ierr);
403     k++;
404   }
405 
406   /* (2-2) compute symbolic C_loc = Rd*AP_loc */
407   /* ---------------------------------------- */
408   ierr = MatMatMultSymbolic_SeqAIJ_SeqAIJ(ptap->Rd,ptap->AP_loc,fill,&ptap->C_loc);CHKERRQ(ierr);
409   c_loc = (Mat_SeqAIJ*)ptap->C_loc->data;
410 
411   /* receives coj are complete */
412   for (i=0; i<nrecv; i++) {
413     ierr = MPI_Waitany(nrecv,rwaits,&icompleted,&rstatus);CHKERRQ(ierr);
414   }
415   ierr = PetscFree(rwaits);CHKERRQ(ierr);
416   if (nsend) {ierr = MPI_Waitall(nsend,swaits,sstatus);CHKERRQ(ierr);}
417 
418   /* add received column indices into ta to update Crmax */
419   for (k=0; k<nrecv; k++) {/* k-th received message */
420     Jptr = buf_rj[k];
421     for (j=0; j<len_r[k]; j++) {
422       ierr = PetscTableAdd(ta,*(Jptr+j)+1,1,INSERT_VALUES);CHKERRQ(ierr);
423     }
424   }
425   ierr = PetscTableGetCount(ta,&Crmax);CHKERRQ(ierr);
426   ierr = PetscTableDestroy(&ta);CHKERRQ(ierr);
427 
428   /* (4) send and recv coi */
429   /*-----------------------*/
430   ierr   = PetscCommGetNewTag(comm,&tagi);CHKERRQ(ierr);
431   ierr   = PetscPostIrecvInt(comm,tagi,nrecv,id_r,len_ri,&buf_ri,&rwaits);CHKERRQ(ierr);
432   ierr   = PetscMalloc1(len+1,&buf_s);CHKERRQ(ierr);
433   buf_si = buf_s;  /* points to the beginning of k-th msg to be sent */
434   for (proc=0,k=0; proc<size; proc++) {
435     if (!len_s[proc]) continue;
436     /* form outgoing message for i-structure:
437          buf_si[0]:                 nrows to be sent
438                [1:nrows]:           row index (global)
439                [nrows+1:2*nrows+1]: i-structure index
440     */
441     /*-------------------------------------------*/
442     nrows       = len_si[proc]/2 - 1; /* num of rows in Co to be sent to [proc] */
443     buf_si_i    = buf_si + nrows+1;
444     buf_si[0]   = nrows;
445     buf_si_i[0] = 0;
446     nrows       = 0;
447     for (i=owners_co[proc]; i<owners_co[proc+1]; i++) {
448       nzi = coi[i+1] - coi[i];
449       buf_si_i[nrows+1] = buf_si_i[nrows] + nzi;  /* i-structure */
450       buf_si[nrows+1]   = prmap[i] -owners[proc]; /* local row index */
451       nrows++;
452     }
453     ierr = MPI_Isend(buf_si,len_si[proc],MPIU_INT,proc,tagi,comm,swaits+k);CHKERRQ(ierr);
454     k++;
455     buf_si += len_si[proc];
456   }
457   for (i=0; i<nrecv; i++) {
458     ierr = MPI_Waitany(nrecv,rwaits,&icompleted,&rstatus);CHKERRQ(ierr);
459   }
460   ierr = PetscFree(rwaits);CHKERRQ(ierr);
461   if (nsend) {ierr = MPI_Waitall(nsend,swaits,sstatus);CHKERRQ(ierr);}
462 
463   ierr = PetscFree4(len_s,len_si,sstatus,owners_co);CHKERRQ(ierr);
464   ierr = PetscFree(len_ri);CHKERRQ(ierr);
465   ierr = PetscFree(swaits);CHKERRQ(ierr);
466   ierr = PetscFree(buf_s);CHKERRQ(ierr);
467 
468   /* (5) compute the local portion of Cmpi      */
469   /* ------------------------------------------ */
470   /* set initial free space to be Crmax, sufficient for holding nozeros in each row of Cmpi */
471   ierr          = PetscFreeSpaceGet(Crmax,&free_space);CHKERRQ(ierr);
472   current_space = free_space;
473 
474   ierr = PetscMalloc3(nrecv,&buf_ri_k,nrecv,&nextrow,nrecv,&nextci);CHKERRQ(ierr);
475   for (k=0; k<nrecv; k++) {
476     buf_ri_k[k] = buf_ri[k]; /* beginning of k-th recved i-structure */
477     nrows       = *buf_ri_k[k];
478     nextrow[k]  = buf_ri_k[k] + 1;  /* next row number of k-th recved i-structure */
479     nextci[k]   = buf_ri_k[k] + (nrows + 1); /* poins to the next i-structure of k-th recved i-structure  */
480   }
481 
482   ierr = MatPreallocateInitialize(comm,pn,pn,dnz,onz);CHKERRQ(ierr);
483   ierr = PetscLLCondensedCreate_Scalable(Crmax,&lnk);CHKERRQ(ierr);
484   for (i=0; i<pn; i++) {
485     /* add C_loc into Cmpi */
486     nzi  = c_loc->i[i+1] - c_loc->i[i];
487     Jptr = c_loc->j + c_loc->i[i];
488     ierr = PetscLLCondensedAddSorted_Scalable(nzi,Jptr,lnk);CHKERRQ(ierr);
489 
490     /* add received col data into lnk */
491     for (k=0; k<nrecv; k++) { /* k-th received message */
492       if (i == *nextrow[k]) { /* i-th row */
493         nzi  = *(nextci[k]+1) - *nextci[k];
494         Jptr = buf_rj[k] + *nextci[k];
495         ierr = PetscLLCondensedAddSorted_Scalable(nzi,Jptr,lnk);CHKERRQ(ierr);
496         nextrow[k]++; nextci[k]++;
497       }
498     }
499     nzi = lnk[0];
500 
501     /* copy data into free space, then initialize lnk */
502     ierr = PetscLLCondensedClean_Scalable(nzi,current_space->array,lnk);CHKERRQ(ierr);
503     ierr = MatPreallocateSet(i+owners[rank],nzi,current_space->array,dnz,onz);CHKERRQ(ierr);
504   }
505   ierr = PetscFree3(buf_ri_k,nextrow,nextci);CHKERRQ(ierr);
506   ierr = PetscLLCondensedDestroy_Scalable(lnk);CHKERRQ(ierr);
507   ierr = PetscFreeSpaceDestroy(free_space);CHKERRQ(ierr);
508 
509   /* local sizes and preallocation */
510   ierr = MatSetSizes(Cmpi,pn,pn,PETSC_DETERMINE,PETSC_DETERMINE);CHKERRQ(ierr);
511   ierr = MatSetBlockSizes(Cmpi,PetscAbs(P->cmap->bs),PetscAbs(P->cmap->bs));CHKERRQ(ierr);
512   ierr = MatMPIAIJSetPreallocation(Cmpi,0,dnz,0,onz);CHKERRQ(ierr);
513   ierr = MatPreallocateFinalize(dnz,onz);CHKERRQ(ierr);
514 
515   /* members in merge */
516   ierr = PetscFree(id_r);CHKERRQ(ierr);
517   ierr = PetscFree(len_r);CHKERRQ(ierr);
518   ierr = PetscFree(buf_ri[0]);CHKERRQ(ierr);
519   ierr = PetscFree(buf_ri);CHKERRQ(ierr);
520   ierr = PetscFree(buf_rj[0]);CHKERRQ(ierr);
521   ierr = PetscFree(buf_rj);CHKERRQ(ierr);
522   ierr = PetscLayoutDestroy(&rowmap);CHKERRQ(ierr);
523 
524   /* attach the supporting struct to Cmpi for reuse */
525   c = (Mat_MPIAIJ*)Cmpi->data;
526   c->ptap         = ptap;
527   ptap->duplicate = Cmpi->ops->duplicate;
528   ptap->destroy   = Cmpi->ops->destroy;
529 
530   /* Cmpi is not ready for use - assembly will be done by MatPtAPNumeric() */
531   Cmpi->assembled        = PETSC_FALSE;
532   Cmpi->ops->destroy     = MatDestroy_MPIAIJ_PtAP;
533   Cmpi->ops->duplicate   = MatDuplicate_MPIAIJ_MatPtAP;
534   *C                     = Cmpi;
535   PetscFunctionReturn(0);
536 }
537 
538 PetscErrorCode MatPtAPSymbolic_MPIAIJ_MPIAIJ(Mat A,Mat P,PetscReal fill,Mat *C)
539 {
540   PetscErrorCode      ierr;
541   Mat_PtAPMPI         *ptap;
542   Mat_MPIAIJ          *a=(Mat_MPIAIJ*)A->data,*p=(Mat_MPIAIJ*)P->data,*c;
543   MPI_Comm            comm;
544   PetscMPIInt         size,rank;
545   Mat                 Cmpi;
546   PetscFreeSpaceList  free_space=NULL,current_space=NULL;
547   PetscInt            am=A->rmap->n,pm=P->rmap->n,pN=P->cmap->N,pn=P->cmap->n;
548   PetscInt            *lnk,i,k,pnz,row,nsend;
549   PetscBT             lnkbt;
550   PetscMPIInt         tagi,tagj,*len_si,*len_s,*len_ri,icompleted=0,nrecv;
551   PetscInt            **buf_rj,**buf_ri,**buf_ri_k;
552   PetscInt            len,proc,*dnz,*onz,*owners,nzi,nspacedouble;
553   PetscInt            nrows,*buf_s,*buf_si,*buf_si_i,**nextrow,**nextci;
554   MPI_Request         *swaits,*rwaits;
555   MPI_Status          *sstatus,rstatus;
556   PetscLayout         rowmap;
557   PetscInt            *owners_co,*coi,*coj;    /* i and j array of (p->B)^T*A*P - used in the communication */
558   PetscMPIInt         *len_r,*id_r;    /* array of length of comm->size, store send/recv matrix values */
559   PetscInt            *api,*apj,*Jptr,apnz,*prmap=p->garray,con,j,ap_rmax=0,Crmax,*aj,*ai,*pi;
560   Mat_SeqAIJ          *p_loc,*p_oth=NULL,*ad=(Mat_SeqAIJ*)(a->A)->data,*ao=NULL,*c_loc,*c_oth;
561   PetscScalar         *apv;
562   PetscTable          ta;
563 #if defined(PETSC_HAVE_HYPRE)
564   const char          *algTypes[3] = {"scalable","nonscalable","hypre"};
565   PetscInt            nalg = 3;
566 #else
567   const char          *algTypes[2] = {"scalable","nonscalable"};
568   PetscInt            nalg = 2;
569 #endif
570   PetscInt            alg = 1; /* set default algorithm */
571 #if defined(PETSC_USE_INFO)
572   PetscReal           apfill;
573 #endif
574 #if defined(PTAP_PROFILE)
575   PetscLogDouble      t0,t1,t11,t12,t2,t3,t4;
576 #endif
577   PetscBool           flg;
578 
579   PetscFunctionBegin;
580   ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr);
581 
582   /* pick an algorithm */
583   ierr = PetscObjectOptionsBegin((PetscObject)A);CHKERRQ(ierr);
584   PetscOptionsObject->alreadyprinted = PETSC_FALSE; /* a hack to ensure the option shows in '-help' */
585   ierr = PetscOptionsEList("-matptap_via","Algorithmic approach","MatPtAP",algTypes,nalg,algTypes[1],&alg,&flg);CHKERRQ(ierr);
586   ierr = PetscOptionsEnd();CHKERRQ(ierr);
587 
588   if (!flg && pN > 100000) { /* may switch to scalable algorithm as default */
589     MatInfo     Ainfo,Pinfo;
590     PetscInt    nz_local;
591     PetscBool   alg_scalable_loc=PETSC_FALSE,alg_scalable;
592 
593     ierr = MatGetInfo(A,MAT_LOCAL,&Ainfo);CHKERRQ(ierr);
594     ierr = MatGetInfo(P,MAT_LOCAL,&Pinfo);CHKERRQ(ierr);
595     nz_local = (PetscInt)(Ainfo.nz_allocated + Pinfo.nz_allocated);
596 
597     if (pN > fill*nz_local) alg_scalable_loc = PETSC_TRUE;
598     ierr = MPIU_Allreduce(&alg_scalable_loc,&alg_scalable,1,MPIU_BOOL,MPI_LOR,comm);CHKERRQ(ierr);
599 
600     if (alg_scalable) {
601       alg  = 0; /* scalable algorithm would 50% slower than nonscalable algorithm */
602       ierr = PetscInfo2(P,"Use scalable algorithm, pN %D, fill*nz_allocated %g\n",pN,fill*nz_local);CHKERRQ(ierr);
603     }
604   }
605   /* ierr = PetscInfo2(P,"Use algorithm %D, pN %D\n",alg,pN);CHKERRQ(ierr); */
606 
607   if (alg == 0) {
608     ierr = MatPtAPSymbolic_MPIAIJ_MPIAIJ_scalable(A,P,fill,C);CHKERRQ(ierr);
609     (*C)->ops->ptapnumeric = MatPtAPNumeric_MPIAIJ_MPIAIJ_scalable;
610     PetscFunctionReturn(0);
611 
612 #if defined(PETSC_HAVE_HYPRE)
613   } else if (alg == 2) {
614     /* Use boomerAMGBuildCoarseOperator */
615     ierr = MatPtAPSymbolic_AIJ_AIJ_wHYPRE(A,P,fill,C);CHKERRQ(ierr);
616     PetscFunctionReturn(0);
617 #endif
618   }
619 
620 #if defined(PTAP_PROFILE)
621   ierr = PetscTime(&t0);CHKERRQ(ierr);
622 #endif
623 
624   ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);
625   ierr = MPI_Comm_rank(comm,&rank);CHKERRQ(ierr);
626 
627   if (size > 1) ao = (Mat_SeqAIJ*)(a->B)->data;
628 
629   /* create symbolic parallel matrix Cmpi */
630   ierr = MatCreate(comm,&Cmpi);CHKERRQ(ierr);
631   ierr = MatSetType(Cmpi,MATMPIAIJ);CHKERRQ(ierr);
632 
633   /* Do dense axpy in MatPtAPNumeric_MPIAIJ_MPIAIJ() */
634   Cmpi->ops->ptapnumeric = MatPtAPNumeric_MPIAIJ_MPIAIJ;
635 
636   /* create struct Mat_PtAPMPI and attached it to C later */
637   ierr        = PetscNew(&ptap);CHKERRQ(ierr);
638   ptap->reuse = MAT_INITIAL_MATRIX;
639 
640   /* get P_oth by taking rows of P (= non-zero cols of local A) from other processors */
641   ierr = MatGetBrowsOfAoCols_MPIAIJ(A,P,MAT_INITIAL_MATRIX,&ptap->startsj_s,&ptap->startsj_r,&ptap->bufa,&ptap->P_oth);CHKERRQ(ierr);
642   /* get P_loc by taking all local rows of P */
643   ierr = MatMPIAIJGetLocalMat(P,MAT_INITIAL_MATRIX,&ptap->P_loc);CHKERRQ(ierr);
644 
645   /* (0) compute Rd = Pd^T, Ro = Po^T  */
646   /* --------------------------------- */
647   ierr = MatTranspose_SeqAIJ(p->A,MAT_INITIAL_MATRIX,&ptap->Rd);CHKERRQ(ierr);
648   ierr = MatTranspose_SeqAIJ(p->B,MAT_INITIAL_MATRIX,&ptap->Ro);CHKERRQ(ierr);
649 #if defined(PTAP_PROFILE)
650   ierr = PetscTime(&t11);CHKERRQ(ierr);
651 #endif
652 
653   /* (1) compute symbolic AP = A_loc*P = Ad*P_loc + Ao*P_oth (api,apj) */
654   /* ----------------------------------------------------------------- */
655   p_loc  = (Mat_SeqAIJ*)(ptap->P_loc)->data;
656   if (ptap->P_oth) p_oth  = (Mat_SeqAIJ*)(ptap->P_oth)->data;
657 
658   /* create and initialize a linked list */
659   ierr = PetscTableCreate(pn,pN,&ta);CHKERRQ(ierr); /* for compute AP_loc and Cmpi */
660   MatRowMergeMax_SeqAIJ(p_loc,ptap->P_loc->rmap->N,ta);
661   MatRowMergeMax_SeqAIJ(p_oth,ptap->P_oth->rmap->N,ta);
662   ierr = PetscTableGetCount(ta,&Crmax);CHKERRQ(ierr); /* Crmax = nnz(sum of Prows) */
663   /* printf("[%d] est %d, Crmax %d; pN %d\n",rank,5*(p_loc->rmax+p_oth->rmax + (PetscInt)(1.e-2*pN)),Crmax,pN); */
664 
665   ierr = PetscLLCondensedCreate(Crmax,pN,&lnk,&lnkbt);CHKERRQ(ierr);
666 
667   /* Initial FreeSpace size is fill*(nnz(A) + nnz(P)) */
668   if (ao) {
669     ierr = PetscFreeSpaceGet(PetscRealIntMultTruncate(fill,PetscIntSumTruncate(ad->i[am],PetscIntSumTruncate(ao->i[am],p_loc->i[pm]))),&free_space);CHKERRQ(ierr);
670   } else {
671     ierr = PetscFreeSpaceGet(PetscRealIntMultTruncate(fill,PetscIntSumTruncate(ad->i[am],p_loc->i[pm])),&free_space);CHKERRQ(ierr);
672   }
673   current_space = free_space;
674   nspacedouble  = 0;
675 
676   ierr   = PetscMalloc1(am+1,&api);CHKERRQ(ierr);
677   api[0] = 0;
678   for (i=0; i<am; i++) {
679     /* diagonal portion: Ad[i,:]*P */
680     ai = ad->i; pi = p_loc->i;
681     nzi = ai[i+1] - ai[i];
682     aj  = ad->j + ai[i];
683     for (j=0; j<nzi; j++) {
684       row  = aj[j];
685       pnz  = pi[row+1] - pi[row];
686       Jptr = p_loc->j + pi[row];
687       /* add non-zero cols of P into the sorted linked list lnk */
688       ierr = PetscLLCondensedAddSorted(pnz,Jptr,lnk,lnkbt);CHKERRQ(ierr);
689     }
690     /* off-diagonal portion: Ao[i,:]*P */
691     if (ao) {
692       ai = ao->i; pi = p_oth->i;
693       nzi = ai[i+1] - ai[i];
694       aj  = ao->j + ai[i];
695       for (j=0; j<nzi; j++) {
696         row  = aj[j];
697         pnz  = pi[row+1] - pi[row];
698         Jptr = p_oth->j + pi[row];
699         ierr = PetscLLCondensedAddSorted(pnz,Jptr,lnk,lnkbt);CHKERRQ(ierr);
700       }
701     }
702     apnz     = lnk[0];
703     api[i+1] = api[i] + apnz;
704     if (ap_rmax < apnz) ap_rmax = apnz;
705 
706     /* if free space is not available, double the total space in the list */
707     if (current_space->local_remaining<apnz) {
708       ierr = PetscFreeSpaceGet(PetscIntSumTruncate(apnz,current_space->total_array_size),&current_space);CHKERRQ(ierr);
709       nspacedouble++;
710     }
711 
712     /* Copy data into free space, then initialize lnk */
713     ierr = PetscLLCondensedClean(pN,apnz,current_space->array,lnk,lnkbt);CHKERRQ(ierr);
714 
715     current_space->array           += apnz;
716     current_space->local_used      += apnz;
717     current_space->local_remaining -= apnz;
718   }
719   /* Allocate space for apj and apv, initialize apj, and */
720   /* destroy list of free space and other temporary array(s) */
721   ierr   = PetscMalloc2(api[am],&apj,api[am],&apv);CHKERRQ(ierr);
722   ierr   = PetscFreeSpaceContiguous(&free_space,apj);CHKERRQ(ierr);
723   ierr = PetscLLDestroy(lnk,lnkbt);CHKERRQ(ierr);
724 
725   /* Create AP_loc for reuse */
726   ierr = MatCreateSeqAIJWithArrays(PETSC_COMM_SELF,am,pN,api,apj,apv,&ptap->AP_loc);CHKERRQ(ierr);
727 
728 #if defined(PETSC_USE_INFO)
729   if (ao) {
730     apfill = (PetscReal)api[am]/(ad->i[am]+ao->i[am]+p_loc->i[pm]+1);
731   } else {
732     apfill = (PetscReal)api[am]/(ad->i[am]+p_loc->i[pm]+1);
733   }
734   ptap->AP_loc->info.mallocs           = nspacedouble;
735   ptap->AP_loc->info.fill_ratio_given  = fill;
736   ptap->AP_loc->info.fill_ratio_needed = apfill;
737 
738   if (api[am]) {
739     ierr = PetscInfo3(ptap->AP_loc,"AP_loc reallocs %D; Fill ratio: given %g needed %g.\n",nspacedouble,(double)fill,(double)apfill);CHKERRQ(ierr);
740     ierr = PetscInfo1(ptap->AP_loc,"Use MatPtAP(A,B,MatReuse,%g,&C) for best AP_loc performance.;\n",(double)apfill);CHKERRQ(ierr);
741   } else {
742     ierr = PetscInfo(ptap->AP_loc,"AP_loc is empty \n");CHKERRQ(ierr);
743   }
744 #endif
745 
746 #if defined(PTAP_PROFILE)
747   ierr = PetscTime(&t12);CHKERRQ(ierr);
748 #endif
749 
750   /* (2-1) compute symbolic Co = Ro*AP_loc  */
751   /* ------------------------------------ */
752   ierr = MatMatMultSymbolic_SeqAIJ_SeqAIJ(ptap->Ro,ptap->AP_loc,fill,&ptap->C_oth);CHKERRQ(ierr);
753 #if defined(PTAP_PROFILE)
754   ierr = PetscTime(&t1);CHKERRQ(ierr);
755 #endif
756 
757   /* (3) send coj of C_oth to other processors  */
758   /* ------------------------------------------ */
759   /* determine row ownership */
760   ierr = PetscLayoutCreate(comm,&rowmap);CHKERRQ(ierr);
761   rowmap->n  = pn;
762   rowmap->bs = 1;
763   ierr   = PetscLayoutSetUp(rowmap);CHKERRQ(ierr);
764   owners = rowmap->range;
765 
766   /* determine the number of messages to send, their lengths */
767   ierr = PetscMalloc4(size,&len_s,size,&len_si,size,&sstatus,size+2,&owners_co);CHKERRQ(ierr);
768   ierr = PetscMemzero(len_s,size*sizeof(PetscMPIInt));CHKERRQ(ierr);
769   ierr = PetscMemzero(len_si,size*sizeof(PetscMPIInt));CHKERRQ(ierr);
770 
771   c_oth = (Mat_SeqAIJ*)ptap->C_oth->data;
772   coi   = c_oth->i; coj = c_oth->j;
773   con   = ptap->C_oth->rmap->n;
774   proc  = 0;
775   for (i=0; i<con; i++) {
776     while (prmap[i] >= owners[proc+1]) proc++;
777     len_si[proc]++;               /* num of rows in Co(=Pt*AP) to be sent to [proc] */
778     len_s[proc] += coi[i+1] - coi[i]; /* num of nonzeros in Co to be sent to [proc] */
779   }
780 
781   len          = 0; /* max length of buf_si[], see (4) */
782   owners_co[0] = 0;
783   nsend        = 0;
784   for (proc=0; proc<size; proc++) {
785     owners_co[proc+1] = owners_co[proc] + len_si[proc];
786     if (len_s[proc]) {
787       nsend++;
788       len_si[proc] = 2*(len_si[proc] + 1); /* length of buf_si to be sent to [proc] */
789       len         += len_si[proc];
790     }
791   }
792 
793   /* determine the number and length of messages to receive for coi and coj  */
794   ierr = PetscGatherNumberOfMessages(comm,NULL,len_s,&nrecv);CHKERRQ(ierr);
795   ierr = PetscGatherMessageLengths2(comm,nsend,nrecv,len_s,len_si,&id_r,&len_r,&len_ri);CHKERRQ(ierr);
796 
797   /* post the Irecv and Isend of coj */
798   ierr = PetscCommGetNewTag(comm,&tagj);CHKERRQ(ierr);
799   ierr = PetscPostIrecvInt(comm,tagj,nrecv,id_r,len_r,&buf_rj,&rwaits);CHKERRQ(ierr);
800   ierr = PetscMalloc1(nsend+1,&swaits);CHKERRQ(ierr);
801   for (proc=0, k=0; proc<size; proc++) {
802     if (!len_s[proc]) continue;
803     i    = owners_co[proc];
804     ierr = MPI_Isend(coj+coi[i],len_s[proc],MPIU_INT,proc,tagj,comm,swaits+k);CHKERRQ(ierr);
805     k++;
806   }
807 
808   /* (2-2) compute symbolic C_loc = Rd*AP_loc */
809   /* ---------------------------------------- */
810   ierr = MatMatMultSymbolic_SeqAIJ_SeqAIJ(ptap->Rd,ptap->AP_loc,fill,&ptap->C_loc);CHKERRQ(ierr);
811   c_loc = (Mat_SeqAIJ*)ptap->C_loc->data;
812 
813   /* receives coj are complete */
814   for (i=0; i<nrecv; i++) {
815     ierr = MPI_Waitany(nrecv,rwaits,&icompleted,&rstatus);CHKERRQ(ierr);
816   }
817   ierr = PetscFree(rwaits);CHKERRQ(ierr);
818   if (nsend) {ierr = MPI_Waitall(nsend,swaits,sstatus);CHKERRQ(ierr);}
819 
820   /* add received column indices into ta to update Crmax */
821   for (k=0; k<nrecv; k++) {/* k-th received message */
822     Jptr = buf_rj[k];
823     for (j=0; j<len_r[k]; j++) {
824       ierr = PetscTableAdd(ta,*(Jptr+j)+1,1,INSERT_VALUES);CHKERRQ(ierr);
825     }
826   }
827   ierr = PetscTableGetCount(ta,&Crmax);CHKERRQ(ierr);
828   ierr = PetscTableDestroy(&ta);CHKERRQ(ierr);
829 
830   /* (4) send and recv coi */
831   /*-----------------------*/
832   ierr   = PetscCommGetNewTag(comm,&tagi);CHKERRQ(ierr);
833   ierr   = PetscPostIrecvInt(comm,tagi,nrecv,id_r,len_ri,&buf_ri,&rwaits);CHKERRQ(ierr);
834   ierr   = PetscMalloc1(len+1,&buf_s);CHKERRQ(ierr);
835   buf_si = buf_s;  /* points to the beginning of k-th msg to be sent */
836   for (proc=0,k=0; proc<size; proc++) {
837     if (!len_s[proc]) continue;
838     /* form outgoing message for i-structure:
839          buf_si[0]:                 nrows to be sent
840                [1:nrows]:           row index (global)
841                [nrows+1:2*nrows+1]: i-structure index
842     */
843     /*-------------------------------------------*/
844     nrows       = len_si[proc]/2 - 1; /* num of rows in Co to be sent to [proc] */
845     buf_si_i    = buf_si + nrows+1;
846     buf_si[0]   = nrows;
847     buf_si_i[0] = 0;
848     nrows       = 0;
849     for (i=owners_co[proc]; i<owners_co[proc+1]; i++) {
850       nzi = coi[i+1] - coi[i];
851       buf_si_i[nrows+1] = buf_si_i[nrows] + nzi;  /* i-structure */
852       buf_si[nrows+1]   = prmap[i] -owners[proc]; /* local row index */
853       nrows++;
854     }
855     ierr = MPI_Isend(buf_si,len_si[proc],MPIU_INT,proc,tagi,comm,swaits+k);CHKERRQ(ierr);
856     k++;
857     buf_si += len_si[proc];
858   }
859   for (i=0; i<nrecv; i++) {
860     ierr = MPI_Waitany(nrecv,rwaits,&icompleted,&rstatus);CHKERRQ(ierr);
861   }
862   ierr = PetscFree(rwaits);CHKERRQ(ierr);
863   if (nsend) {ierr = MPI_Waitall(nsend,swaits,sstatus);CHKERRQ(ierr);}
864 
865   ierr = PetscFree4(len_s,len_si,sstatus,owners_co);CHKERRQ(ierr);
866   ierr = PetscFree(len_ri);CHKERRQ(ierr);
867   ierr = PetscFree(swaits);CHKERRQ(ierr);
868   ierr = PetscFree(buf_s);CHKERRQ(ierr);
869 #if defined(PTAP_PROFILE)
870   ierr = PetscTime(&t2);CHKERRQ(ierr);
871 #endif
872   /* (5) compute the local portion of Cmpi      */
873   /* ------------------------------------------ */
874   /* set initial free space to be Crmax, sufficient for holding nozeros in each row of Cmpi */
875   ierr          = PetscFreeSpaceGet(Crmax,&free_space);CHKERRQ(ierr);
876   current_space = free_space;
877 
878   ierr = PetscMalloc3(nrecv,&buf_ri_k,nrecv,&nextrow,nrecv,&nextci);CHKERRQ(ierr);
879   for (k=0; k<nrecv; k++) {
880     buf_ri_k[k] = buf_ri[k]; /* beginning of k-th recved i-structure */
881     nrows       = *buf_ri_k[k];
882     nextrow[k]  = buf_ri_k[k] + 1;  /* next row number of k-th recved i-structure */
883     nextci[k]   = buf_ri_k[k] + (nrows + 1); /* poins to the next i-structure of k-th recved i-structure  */
884   }
885 
886   ierr = MatPreallocateInitialize(comm,pn,pn,dnz,onz);CHKERRQ(ierr);
887   ierr = PetscLLCondensedCreate(Crmax,pN,&lnk,&lnkbt);CHKERRQ(ierr);
888   for (i=0; i<pn; i++) {
889     /* add C_loc into Cmpi */
890     nzi  = c_loc->i[i+1] - c_loc->i[i];
891     Jptr = c_loc->j + c_loc->i[i];
892     ierr = PetscLLCondensedAddSorted(nzi,Jptr,lnk,lnkbt);CHKERRQ(ierr);
893 
894     /* add received col data into lnk */
895     for (k=0; k<nrecv; k++) { /* k-th received message */
896       if (i == *nextrow[k]) { /* i-th row */
897         nzi  = *(nextci[k]+1) - *nextci[k];
898         Jptr = buf_rj[k] + *nextci[k];
899         ierr = PetscLLCondensedAddSorted(nzi,Jptr,lnk,lnkbt);CHKERRQ(ierr);
900         nextrow[k]++; nextci[k]++;
901       }
902     }
903     nzi = lnk[0];
904 
905     /* copy data into free space, then initialize lnk */
906     ierr = PetscLLCondensedClean(pN,nzi,current_space->array,lnk,lnkbt);CHKERRQ(ierr);
907     ierr = MatPreallocateSet(i+owners[rank],nzi,current_space->array,dnz,onz);CHKERRQ(ierr);
908   }
909   ierr = PetscFree3(buf_ri_k,nextrow,nextci);CHKERRQ(ierr);
910   ierr = PetscLLDestroy(lnk,lnkbt);CHKERRQ(ierr);
911   ierr = PetscFreeSpaceDestroy(free_space);CHKERRQ(ierr);
912 #if defined(PTAP_PROFILE)
913   ierr = PetscTime(&t3);CHKERRQ(ierr);
914 #endif
915 
916   /* local sizes and preallocation */
917   ierr = MatSetSizes(Cmpi,pn,pn,PETSC_DETERMINE,PETSC_DETERMINE);CHKERRQ(ierr);
918   ierr = MatSetBlockSizes(Cmpi,PetscAbs(P->cmap->bs),PetscAbs(P->cmap->bs));CHKERRQ(ierr);
919   ierr = MatMPIAIJSetPreallocation(Cmpi,0,dnz,0,onz);CHKERRQ(ierr);
920   ierr = MatPreallocateFinalize(dnz,onz);CHKERRQ(ierr);
921 
922   /* members in merge */
923   ierr = PetscFree(id_r);CHKERRQ(ierr);
924   ierr = PetscFree(len_r);CHKERRQ(ierr);
925   ierr = PetscFree(buf_ri[0]);CHKERRQ(ierr);
926   ierr = PetscFree(buf_ri);CHKERRQ(ierr);
927   ierr = PetscFree(buf_rj[0]);CHKERRQ(ierr);
928   ierr = PetscFree(buf_rj);CHKERRQ(ierr);
929   ierr = PetscLayoutDestroy(&rowmap);CHKERRQ(ierr);
930 
931   /* attach the supporting struct to Cmpi for reuse */
932   c = (Mat_MPIAIJ*)Cmpi->data;
933   c->ptap         = ptap;
934   ptap->duplicate = Cmpi->ops->duplicate;
935   ptap->destroy   = Cmpi->ops->destroy;
936 
937   if (alg == 1) {
938     ierr = PetscCalloc1(pN,&ptap->apa);CHKERRQ(ierr);
939   }
940 
941   /* Cmpi is not ready for use - assembly will be done by MatPtAPNumeric() */
942   Cmpi->assembled        = PETSC_FALSE;
943   Cmpi->ops->destroy     = MatDestroy_MPIAIJ_PtAP;
944   Cmpi->ops->duplicate   = MatDuplicate_MPIAIJ_MatPtAP;
945   *C                     = Cmpi;
946 
947 #if defined(PTAP_PROFILE)
948   ierr = PetscTime(&t4);CHKERRQ(ierr);
949   if (rank == 1) {
950     printf("PtAPSym: %g + %g + %g + %g + %g + %g = %g\n",t11-t0,t1-t11,t12-t11,t2-t2,t3-t2,t4-t3,t4-t0);
951   }
952 #endif
953   PetscFunctionReturn(0);
954 }
955 
956 PetscErrorCode MatPtAPNumeric_MPIAIJ_MPIAIJ(Mat A,Mat P,Mat C)
957 {
958   PetscErrorCode    ierr;
959   Mat_MPIAIJ        *a=(Mat_MPIAIJ*)A->data,*p=(Mat_MPIAIJ*)P->data,*c=(Mat_MPIAIJ*)C->data;
960   Mat_SeqAIJ        *ad=(Mat_SeqAIJ*)(a->A)->data,*ao=(Mat_SeqAIJ*)(a->B)->data;
961   Mat_SeqAIJ        *ap,*p_loc,*p_oth=NULL,*c_seq;
962   Mat_PtAPMPI       *ptap = c->ptap;
963   Mat               AP_loc,C_loc,C_oth;
964   PetscInt          i,rstart,rend,cm,ncols,row;
965   PetscInt          *api,*apj,am = A->rmap->n,j,col,apnz;
966   PetscScalar       *apa;
967   const PetscInt    *cols;
968   const PetscScalar *vals;
969 #if defined(PTAP_PROFILE)
970   PetscMPIInt       rank;
971   MPI_Comm          comm;
972   PetscLogDouble    t0,t1,t2,t3,t4,eR,eAP,eCseq,eCmpi;
973 #endif
974 
975   PetscFunctionBegin;
976   ierr = MatZeroEntries(C);CHKERRQ(ierr);
977 
978   /* 1) get R = Pd^T,Ro = Po^T */
979 #if defined(PTAP_PROFILE)
980   ierr = PetscTime(&t0);CHKERRQ(ierr);
981 #endif
982   if (ptap->reuse == MAT_REUSE_MATRIX) {
983     ierr = MatTranspose_SeqAIJ(p->A,MAT_REUSE_MATRIX,&ptap->Rd);CHKERRQ(ierr);
984     ierr = MatTranspose_SeqAIJ(p->B,MAT_REUSE_MATRIX,&ptap->Ro);CHKERRQ(ierr);
985   }
986 #if defined(PTAP_PROFILE)
987   ierr = PetscTime(&t1);CHKERRQ(ierr);
988   eR = t1 - t0;
989 #endif
990 
991   /* 2) get AP_loc */
992   AP_loc = ptap->AP_loc;
993   ap = (Mat_SeqAIJ*)AP_loc->data;
994 
995   /* 2-1) get P_oth = ptap->P_oth  and P_loc = ptap->P_loc */
996   /*-----------------------------------------------------*/
997   if (ptap->reuse == MAT_REUSE_MATRIX) {
998     /* P_oth and P_loc are obtained in MatPtASymbolic() when reuse == MAT_INITIAL_MATRIX */
999     ierr = MatGetBrowsOfAoCols_MPIAIJ(A,P,MAT_REUSE_MATRIX,&ptap->startsj_s,&ptap->startsj_r,&ptap->bufa,&ptap->P_oth);CHKERRQ(ierr);
1000     ierr = MatMPIAIJGetLocalMat(P,MAT_REUSE_MATRIX,&ptap->P_loc);CHKERRQ(ierr);
1001   }
1002 
1003   /* 2-2) compute numeric A_loc*P - dominating part */
1004   /* ---------------------------------------------- */
1005   /* get data from symbolic products */
1006   p_loc = (Mat_SeqAIJ*)(ptap->P_loc)->data;
1007   if (ptap->P_oth) {
1008     p_oth = (Mat_SeqAIJ*)(ptap->P_oth)->data;
1009   }
1010   apa   = ptap->apa;
1011   api   = ap->i;
1012   apj   = ap->j;
1013   for (i=0; i<am; i++) {
1014     /* AP[i,:] = A[i,:]*P = Ad*P_loc Ao*P_oth */
1015     AProw_nonscalable(i,ad,ao,p_loc,p_oth,apa);
1016     apnz = api[i+1] - api[i];
1017     for (j=0; j<apnz; j++) {
1018       col = apj[j+api[i]];
1019       ap->a[j+ap->i[i]] = apa[col];
1020       apa[col] = 0.0;
1021     }
1022     ierr = PetscLogFlops(2.0*apnz);CHKERRQ(ierr);
1023   }
1024 #if defined(PTAP_PROFILE)
1025   ierr = PetscTime(&t2);CHKERRQ(ierr);
1026   eAP = t2 - t1;
1027 #endif
1028 
1029   /* 3) C_loc = Rd*AP_loc, C_oth = Ro*AP_loc */
1030   ierr = ((ptap->C_loc)->ops->matmultnumeric)(ptap->Rd,AP_loc,ptap->C_loc);CHKERRQ(ierr);
1031   ierr = ((ptap->C_oth)->ops->matmultnumeric)(ptap->Ro,AP_loc,ptap->C_oth);CHKERRQ(ierr);
1032   C_loc = ptap->C_loc;
1033   C_oth = ptap->C_oth;
1034 #if defined(PTAP_PROFILE)
1035   ierr = PetscTime(&t3);CHKERRQ(ierr);
1036   eCseq = t3 - t2;
1037 #endif
1038 
1039   /* add C_loc and Co to to C */
1040   ierr = MatGetOwnershipRange(C,&rstart,&rend);CHKERRQ(ierr);
1041 
1042   /* C_loc -> C */
1043   cm    = C_loc->rmap->N;
1044   c_seq = (Mat_SeqAIJ*)C_loc->data;
1045   cols = c_seq->j;
1046   vals = c_seq->a;
1047   for (i=0; i<cm; i++) {
1048     ncols = c_seq->i[i+1] - c_seq->i[i];
1049     row = rstart + i;
1050     ierr = MatSetValues(C,1,&row,ncols,cols,vals,ADD_VALUES);CHKERRQ(ierr);
1051     cols += ncols; vals += ncols;
1052   }
1053 
1054   /* Co -> C, off-processor part */
1055   cm = C_oth->rmap->N;
1056   c_seq = (Mat_SeqAIJ*)C_oth->data;
1057   cols = c_seq->j;
1058   vals = c_seq->a;
1059   for (i=0; i<cm; i++) {
1060     ncols = c_seq->i[i+1] - c_seq->i[i];
1061     row = p->garray[i];
1062     ierr = MatSetValues(C,1,&row,ncols,cols,vals,ADD_VALUES);CHKERRQ(ierr);
1063     cols += ncols; vals += ncols;
1064   }
1065   ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr);
1066   ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr);
1067 #if defined(PTAP_PROFILE)
1068   ierr = PetscTime(&t4);CHKERRQ(ierr);
1069   eCmpi = t4 - t3;
1070 
1071   ierr = PetscObjectGetComm((PetscObject)C,&comm);CHKERRQ(ierr);
1072   ierr = MPI_Comm_rank(comm,&rank);CHKERRQ(ierr);
1073   if (rank==1) {
1074     ierr = PetscPrintf(MPI_COMM_SELF," R %g, AP %g, Cseq %g, Cmpi %g = %g\n", eR,eAP,eCseq,eCmpi,eR+eAP+eCseq+eCmpi);CHKERRQ(ierr);
1075   }
1076 #endif
1077   ptap->reuse = MAT_REUSE_MATRIX;
1078   PetscFunctionReturn(0);
1079 }
1080 
1081 PetscErrorCode MatPtAPSymbolic_MPIAIJ_MPIAIJ_ptap(Mat A,Mat P,PetscReal fill,Mat *C)
1082 {
1083   PetscErrorCode      ierr;
1084   Mat                 Cmpi;
1085   Mat_PtAPMPI         *ptap;
1086   PetscFreeSpaceList  free_space=NULL,current_space=NULL;
1087   Mat_MPIAIJ          *a        =(Mat_MPIAIJ*)A->data,*p=(Mat_MPIAIJ*)P->data,*c;
1088   Mat_SeqAIJ          *ad       =(Mat_SeqAIJ*)(a->A)->data,*ao=(Mat_SeqAIJ*)(a->B)->data;
1089   Mat_SeqAIJ          *p_loc,*p_oth;
1090   PetscInt            *pi_loc,*pj_loc,*pi_oth,*pj_oth,*pdti,*pdtj,*poti,*potj,*ptJ;
1091   PetscInt            *adi=ad->i,*aj,*aoi=ao->i,nnz;
1092   PetscInt            *lnk,*owners_co,*coi,*coj,i,k,pnz,row;
1093   PetscInt            am=A->rmap->n,pN=P->cmap->N,pm=P->rmap->n,pn=P->cmap->n;
1094   PetscBT             lnkbt;
1095   MPI_Comm            comm;
1096   PetscMPIInt         size,rank,tagi,tagj,*len_si,*len_s,*len_ri,icompleted=0;
1097   PetscInt            **buf_rj,**buf_ri,**buf_ri_k;
1098   PetscInt            len,proc,*dnz,*onz,*owners;
1099   PetscInt            nzi,*pti,*ptj;
1100   PetscInt            nrows,*buf_s,*buf_si,*buf_si_i,**nextrow,**nextci;
1101   MPI_Request         *swaits,*rwaits;
1102   MPI_Status          *sstatus,rstatus;
1103   Mat_Merge_SeqsToMPI *merge;
1104   PetscInt            *api,*apj,*Jptr,apnz,*prmap=p->garray,pon,nspacedouble=0,j,ap_rmax=0;
1105   PetscReal           afill=1.0,afill_tmp;
1106 
1107   PetscFunctionBegin;
1108   ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr);
1109   ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);
1110   ierr = MPI_Comm_rank(comm,&rank);CHKERRQ(ierr);
1111 
1112   /* create struct Mat_PtAPMPI and attached it to C later */
1113   ierr        = PetscNew(&ptap);CHKERRQ(ierr);
1114   ierr        = PetscNew(&merge);CHKERRQ(ierr);
1115   ptap->merge = merge;
1116   ptap->reuse = MAT_INITIAL_MATRIX;
1117 
1118   /* get P_oth by taking rows of P (= non-zero cols of local A) from other processors */
1119   ierr = MatGetBrowsOfAoCols_MPIAIJ(A,P,MAT_INITIAL_MATRIX,&ptap->startsj_s,&ptap->startsj_r,&ptap->bufa,&ptap->P_oth);CHKERRQ(ierr);
1120 
1121   /* get P_loc by taking all local rows of P */
1122   ierr = MatMPIAIJGetLocalMat(P,MAT_INITIAL_MATRIX,&ptap->P_loc);CHKERRQ(ierr);
1123 
1124   p_loc  = (Mat_SeqAIJ*)(ptap->P_loc)->data;
1125   p_oth  = (Mat_SeqAIJ*)(ptap->P_oth)->data;
1126   pi_loc = p_loc->i; pj_loc = p_loc->j;
1127   pi_oth = p_oth->i; pj_oth = p_oth->j;
1128 
1129   /* (1) compute symbolic AP = A_loc*P = A_diag*P_loc + A_off*P_oth (api,apj) */
1130   /*--------------------------------------------------------------------------*/
1131   ierr   = PetscMalloc1(am+1,&api);CHKERRQ(ierr);
1132   api[0] = 0;
1133 
1134   /* create and initialize a linked list */
1135   ierr = PetscLLCondensedCreate(pN,pN,&lnk,&lnkbt);CHKERRQ(ierr);
1136 
1137   /* Initial FreeSpace size is fill*(nnz(A) + nnz(P)) -OOM for ex56, np=8k on Intrepid! */
1138   ierr = PetscFreeSpaceGet(PetscRealIntMultTruncate(fill,PetscIntSumTruncate(adi[am],PetscIntSumTruncate(aoi[am],pi_loc[pm]))),&free_space);CHKERRQ(ierr);
1139   current_space = free_space;
1140 
1141   for (i=0; i<am; i++) {
1142     /* diagonal portion of A */
1143     nzi = adi[i+1] - adi[i];
1144     aj  = ad->j + adi[i];
1145     for (j=0; j<nzi; j++) {
1146       row  = aj[j];
1147       pnz  = pi_loc[row+1] - pi_loc[row];
1148       Jptr = pj_loc + pi_loc[row];
1149       /* add non-zero cols of P into the sorted linked list lnk */
1150       ierr = PetscLLCondensedAddSorted(pnz,Jptr,lnk,lnkbt);CHKERRQ(ierr);
1151     }
1152     /* off-diagonal portion of A */
1153     nzi = aoi[i+1] - aoi[i];
1154     aj  = ao->j + aoi[i];
1155     for (j=0; j<nzi; j++) {
1156       row  = aj[j];
1157       pnz  = pi_oth[row+1] - pi_oth[row];
1158       Jptr = pj_oth + pi_oth[row];
1159       ierr = PetscLLCondensedAddSorted(pnz,Jptr,lnk,lnkbt);CHKERRQ(ierr);
1160     }
1161     apnz     = lnk[0];
1162     api[i+1] = api[i] + apnz;
1163     if (ap_rmax < apnz) ap_rmax = apnz;
1164 
1165     /* if free space is not available, double the total space in the list */
1166     if (current_space->local_remaining<apnz) {
1167       ierr = PetscFreeSpaceGet(PetscIntSumTruncate(apnz,current_space->total_array_size),&current_space);CHKERRQ(ierr);
1168       nspacedouble++;
1169     }
1170 
1171     /* Copy data into free space, then initialize lnk */
1172     ierr = PetscLLCondensedClean(pN,apnz,current_space->array,lnk,lnkbt);CHKERRQ(ierr);
1173 
1174     current_space->array           += apnz;
1175     current_space->local_used      += apnz;
1176     current_space->local_remaining -= apnz;
1177   }
1178 
1179   /* Allocate space for apj, initialize apj, and */
1180   /* destroy list of free space and other temporary array(s) */
1181   ierr      = PetscMalloc1(api[am]+1,&apj);CHKERRQ(ierr);
1182   ierr      = PetscFreeSpaceContiguous(&free_space,apj);CHKERRQ(ierr);
1183   afill_tmp = (PetscReal)api[am]/(adi[am]+aoi[am]+pi_loc[pm]+1);
1184   if (afill_tmp > afill) afill = afill_tmp;
1185 
1186   /* (2) determine symbolic Co=(p->B)^T*AP - send to others (coi,coj)*/
1187   /*-----------------------------------------------------------------*/
1188   ierr = MatGetSymbolicTranspose_SeqAIJ(p->B,&poti,&potj);CHKERRQ(ierr);
1189 
1190   /* then, compute symbolic Co = (p->B)^T*AP */
1191   pon    = (p->B)->cmap->n; /* total num of rows to be sent to other processors
1192                          >= (num of nonzero rows of C_seq) - pn */
1193   ierr   = PetscMalloc1(pon+1,&coi);CHKERRQ(ierr);
1194   coi[0] = 0;
1195 
1196   /* set initial free space to be fill*(nnz(p->B) + nnz(AP)) */
1197   nnz           = PetscRealIntMultTruncate(fill,PetscIntSumTruncate(poti[pon],api[am]));
1198   ierr          = PetscFreeSpaceGet(nnz,&free_space);CHKERRQ(ierr);
1199   current_space = free_space;
1200 
1201   for (i=0; i<pon; i++) {
1202     pnz = poti[i+1] - poti[i];
1203     ptJ = potj + poti[i];
1204     for (j=0; j<pnz; j++) {
1205       row  = ptJ[j]; /* row of AP == col of Pot */
1206       apnz = api[row+1] - api[row];
1207       Jptr = apj + api[row];
1208       /* add non-zero cols of AP into the sorted linked list lnk */
1209       ierr = PetscLLCondensedAddSorted(apnz,Jptr,lnk,lnkbt);CHKERRQ(ierr);
1210     }
1211     nnz = lnk[0];
1212 
1213     /* If free space is not available, double the total space in the list */
1214     if (current_space->local_remaining<nnz) {
1215       ierr = PetscFreeSpaceGet(PetscIntSumTruncate(nnz,current_space->total_array_size),&current_space);CHKERRQ(ierr);
1216       nspacedouble++;
1217     }
1218 
1219     /* Copy data into free space, and zero out denserows */
1220     ierr = PetscLLCondensedClean(pN,nnz,current_space->array,lnk,lnkbt);CHKERRQ(ierr);
1221 
1222     current_space->array           += nnz;
1223     current_space->local_used      += nnz;
1224     current_space->local_remaining -= nnz;
1225 
1226     coi[i+1] = coi[i] + nnz;
1227   }
1228 
1229   ierr      = PetscMalloc1(coi[pon],&coj);CHKERRQ(ierr);
1230   ierr      = PetscFreeSpaceContiguous(&free_space,coj);CHKERRQ(ierr);
1231   afill_tmp = (PetscReal)coi[pon]/(poti[pon] + api[am]+1);
1232   if (afill_tmp > afill) afill = afill_tmp;
1233   ierr = MatRestoreSymbolicTranspose_SeqAIJ(p->B,&poti,&potj);CHKERRQ(ierr);
1234 
1235   /* (3) send j-array (coj) of Co to other processors */
1236   /*--------------------------------------------------*/
1237   ierr = PetscCalloc1(size,&merge->len_s);CHKERRQ(ierr);
1238   len_s        = merge->len_s;
1239   merge->nsend = 0;
1240 
1241 
1242   /* determine row ownership */
1243   ierr = PetscLayoutCreate(comm,&merge->rowmap);CHKERRQ(ierr);
1244   merge->rowmap->n  = pn;
1245   merge->rowmap->bs = 1;
1246 
1247   ierr   = PetscLayoutSetUp(merge->rowmap);CHKERRQ(ierr);
1248   owners = merge->rowmap->range;
1249 
1250   /* determine the number of messages to send, their lengths */
1251   ierr = PetscMalloc2(size,&len_si,size,&sstatus);CHKERRQ(ierr);
1252   ierr = PetscMemzero(len_si,size*sizeof(PetscMPIInt));CHKERRQ(ierr);
1253   ierr = PetscMalloc1(size+2,&owners_co);CHKERRQ(ierr);
1254 
1255   proc = 0;
1256   for (i=0; i<pon; i++) {
1257     while (prmap[i] >= owners[proc+1]) proc++;
1258     len_si[proc]++;               /* num of rows in Co(=Pt*AP) to be sent to [proc] */
1259     len_s[proc] += coi[i+1] - coi[i]; /* num of nonzeros in Co to be sent to [proc] */
1260   }
1261 
1262   len          = 0; /* max length of buf_si[], see (4) */
1263   owners_co[0] = 0;
1264   for (proc=0; proc<size; proc++) {
1265     owners_co[proc+1] = owners_co[proc] + len_si[proc];
1266     if (len_s[proc]) {
1267       merge->nsend++;
1268       len_si[proc] = 2*(len_si[proc] + 1); /* length of buf_si to be sent to [proc] */
1269       len         += len_si[proc];
1270     }
1271   }
1272 
1273   /* determine the number and length of messages to receive for coi and coj  */
1274   ierr = PetscGatherNumberOfMessages(comm,NULL,len_s,&merge->nrecv);CHKERRQ(ierr);
1275   ierr = PetscGatherMessageLengths2(comm,merge->nsend,merge->nrecv,len_s,len_si,&merge->id_r,&merge->len_r,&len_ri);CHKERRQ(ierr);
1276 
1277   /* post the Irecv and Isend of coj */
1278   ierr = PetscCommGetNewTag(comm,&tagj);CHKERRQ(ierr);
1279   ierr = PetscPostIrecvInt(comm,tagj,merge->nrecv,merge->id_r,merge->len_r,&buf_rj,&rwaits);CHKERRQ(ierr);
1280   ierr = PetscMalloc1(merge->nsend+1,&swaits);CHKERRQ(ierr);
1281   for (proc=0, k=0; proc<size; proc++) {
1282     if (!len_s[proc]) continue;
1283     i    = owners_co[proc];
1284     ierr = MPI_Isend(coj+coi[i],len_s[proc],MPIU_INT,proc,tagj,comm,swaits+k);CHKERRQ(ierr);
1285     k++;
1286   }
1287 
1288   /* receives and sends of coj are complete */
1289   for (i=0; i<merge->nrecv; i++) {
1290     ierr = MPI_Waitany(merge->nrecv,rwaits,&icompleted,&rstatus);CHKERRQ(ierr);
1291   }
1292   ierr = PetscFree(rwaits);CHKERRQ(ierr);
1293   if (merge->nsend) {ierr = MPI_Waitall(merge->nsend,swaits,sstatus);CHKERRQ(ierr);}
1294 
1295   /* (4) send and recv coi */
1296   /*-----------------------*/
1297   ierr   = PetscCommGetNewTag(comm,&tagi);CHKERRQ(ierr);
1298   ierr   = PetscPostIrecvInt(comm,tagi,merge->nrecv,merge->id_r,len_ri,&buf_ri,&rwaits);CHKERRQ(ierr);
1299   ierr   = PetscMalloc1(len+1,&buf_s);CHKERRQ(ierr);
1300   buf_si = buf_s;  /* points to the beginning of k-th msg to be sent */
1301   for (proc=0,k=0; proc<size; proc++) {
1302     if (!len_s[proc]) continue;
1303     /* form outgoing message for i-structure:
1304          buf_si[0]:                 nrows to be sent
1305                [1:nrows]:           row index (global)
1306                [nrows+1:2*nrows+1]: i-structure index
1307     */
1308     /*-------------------------------------------*/
1309     nrows       = len_si[proc]/2 - 1; /* num of rows in Co to be sent to [proc] */
1310     buf_si_i    = buf_si + nrows+1;
1311     buf_si[0]   = nrows;
1312     buf_si_i[0] = 0;
1313     nrows       = 0;
1314     for (i=owners_co[proc]; i<owners_co[proc+1]; i++) {
1315       nzi = coi[i+1] - coi[i];
1316       buf_si_i[nrows+1] = buf_si_i[nrows] + nzi;  /* i-structure */
1317       buf_si[nrows+1]   = prmap[i] -owners[proc]; /* local row index */
1318       nrows++;
1319     }
1320     ierr = MPI_Isend(buf_si,len_si[proc],MPIU_INT,proc,tagi,comm,swaits+k);CHKERRQ(ierr);
1321     k++;
1322     buf_si += len_si[proc];
1323   }
1324   i = merge->nrecv;
1325   while (i--) {
1326     ierr = MPI_Waitany(merge->nrecv,rwaits,&icompleted,&rstatus);CHKERRQ(ierr);
1327   }
1328   ierr = PetscFree(rwaits);CHKERRQ(ierr);
1329   if (merge->nsend) {ierr = MPI_Waitall(merge->nsend,swaits,sstatus);CHKERRQ(ierr);}
1330 
1331   ierr = PetscFree2(len_si,sstatus);CHKERRQ(ierr);
1332   ierr = PetscFree(len_ri);CHKERRQ(ierr);
1333   ierr = PetscFree(swaits);CHKERRQ(ierr);
1334   ierr = PetscFree(buf_s);CHKERRQ(ierr);
1335 
1336   /* (5) compute the local portion of C (mpi mat) */
1337   /*----------------------------------------------*/
1338   ierr = MatGetSymbolicTranspose_SeqAIJ(p->A,&pdti,&pdtj);CHKERRQ(ierr);
1339 
1340   /* allocate pti array and free space for accumulating nonzero column info */
1341   ierr   = PetscMalloc1(pn+1,&pti);CHKERRQ(ierr);
1342   pti[0] = 0;
1343 
1344   /* set initial free space to be fill*(nnz(P) + nnz(AP)) */
1345   nnz           = PetscRealIntMultTruncate(fill,PetscIntSumTruncate(pi_loc[pm],api[am]));
1346   ierr          = PetscFreeSpaceGet(nnz,&free_space);CHKERRQ(ierr);
1347   current_space = free_space;
1348 
1349   ierr = PetscMalloc3(merge->nrecv,&buf_ri_k,merge->nrecv,&nextrow,merge->nrecv,&nextci);CHKERRQ(ierr);
1350   for (k=0; k<merge->nrecv; k++) {
1351     buf_ri_k[k] = buf_ri[k]; /* beginning of k-th recved i-structure */
1352     nrows       = *buf_ri_k[k];
1353     nextrow[k]  = buf_ri_k[k] + 1;  /* next row number of k-th recved i-structure */
1354     nextci[k]   = buf_ri_k[k] + (nrows + 1); /* poins to the next i-structure of k-th recved i-structure  */
1355   }
1356   ierr = MatPreallocateInitialize(comm,pn,pn,dnz,onz);CHKERRQ(ierr);
1357 
1358   for (i=0; i<pn; i++) {
1359     /* add pdt[i,:]*AP into lnk */
1360     pnz = pdti[i+1] - pdti[i];
1361     ptJ = pdtj + pdti[i];
1362     for (j=0; j<pnz; j++) {
1363       row  = ptJ[j];  /* row of AP == col of Pt */
1364       apnz = api[row+1] - api[row];
1365       Jptr = apj + api[row];
1366       /* add non-zero cols of AP into the sorted linked list lnk */
1367       ierr = PetscLLCondensedAddSorted(apnz,Jptr,lnk,lnkbt);CHKERRQ(ierr);
1368     }
1369 
1370     /* add received col data into lnk */
1371     for (k=0; k<merge->nrecv; k++) { /* k-th received message */
1372       if (i == *nextrow[k]) { /* i-th row */
1373         nzi  = *(nextci[k]+1) - *nextci[k];
1374         Jptr = buf_rj[k] + *nextci[k];
1375         ierr = PetscLLCondensedAddSorted(nzi,Jptr,lnk,lnkbt);CHKERRQ(ierr);
1376         nextrow[k]++; nextci[k]++;
1377       }
1378     }
1379     nnz = lnk[0];
1380 
1381     /* if free space is not available, make more free space */
1382     if (current_space->local_remaining<nnz) {
1383       ierr = PetscFreeSpaceGet(PetscIntSumTruncate(nnz,current_space->total_array_size),&current_space);CHKERRQ(ierr);
1384       nspacedouble++;
1385     }
1386     /* copy data into free space, then initialize lnk */
1387     ierr = PetscLLCondensedClean(pN,nnz,current_space->array,lnk,lnkbt);CHKERRQ(ierr);
1388     ierr = MatPreallocateSet(i+owners[rank],nnz,current_space->array,dnz,onz);CHKERRQ(ierr);
1389 
1390     current_space->array           += nnz;
1391     current_space->local_used      += nnz;
1392     current_space->local_remaining -= nnz;
1393 
1394     pti[i+1] = pti[i] + nnz;
1395   }
1396   ierr = MatRestoreSymbolicTranspose_SeqAIJ(p->A,&pdti,&pdtj);CHKERRQ(ierr);
1397   ierr = PetscFree3(buf_ri_k,nextrow,nextci);CHKERRQ(ierr);
1398 
1399   ierr      = PetscMalloc1(pti[pn]+1,&ptj);CHKERRQ(ierr);
1400   ierr      = PetscFreeSpaceContiguous(&free_space,ptj);CHKERRQ(ierr);
1401   afill_tmp = (PetscReal)pti[pn]/(pi_loc[pm] + api[am]+1);
1402   if (afill_tmp > afill) afill = afill_tmp;
1403   ierr = PetscLLDestroy(lnk,lnkbt);CHKERRQ(ierr);
1404 
1405   /* (6) create symbolic parallel matrix Cmpi */
1406   /*------------------------------------------*/
1407   ierr = MatCreate(comm,&Cmpi);CHKERRQ(ierr);
1408   ierr = MatSetSizes(Cmpi,pn,pn,PETSC_DETERMINE,PETSC_DETERMINE);CHKERRQ(ierr);
1409   ierr = MatSetBlockSizes(Cmpi,PetscAbs(P->cmap->bs),PetscAbs(P->cmap->bs));CHKERRQ(ierr);
1410   ierr = MatSetType(Cmpi,MATMPIAIJ);CHKERRQ(ierr);
1411   ierr = MatMPIAIJSetPreallocation(Cmpi,0,dnz,0,onz);CHKERRQ(ierr);
1412   ierr = MatPreallocateFinalize(dnz,onz);CHKERRQ(ierr);
1413 
1414   merge->bi        = pti;      /* Cseq->i */
1415   merge->bj        = ptj;      /* Cseq->j */
1416   merge->coi       = coi;      /* Co->i   */
1417   merge->coj       = coj;      /* Co->j   */
1418   merge->buf_ri    = buf_ri;
1419   merge->buf_rj    = buf_rj;
1420   merge->owners_co = owners_co;
1421   merge->destroy   = Cmpi->ops->destroy;
1422 
1423   /* attach the supporting struct to Cmpi for reuse */
1424   c           = (Mat_MPIAIJ*)Cmpi->data;
1425   c->ptap     = ptap;
1426   ptap->api   = api;
1427   ptap->apj   = apj;
1428   ptap->duplicate = Cmpi->ops->duplicate;
1429   ptap->destroy   = Cmpi->ops->destroy;
1430 
1431   /* Cmpi is not ready for use - assembly will be done by MatPtAPNumeric() */
1432   Cmpi->assembled        = PETSC_FALSE;
1433   Cmpi->ops->destroy     = MatDestroy_MPIAIJ_PtAP;
1434   Cmpi->ops->duplicate   = MatDuplicate_MPIAIJ_MatPtAP;
1435   Cmpi->ops->ptapnumeric = MatPtAPNumeric_MPIAIJ_MPIAIJ_ptap;
1436   *C                     = Cmpi;
1437 
1438   /* flag 'scalable' determines which implementations to be used:
1439        0: do dense axpy in MatPtAPNumeric() - fast, but requires storage of a nonscalable dense array apa;
1440        1: do sparse axpy in MatPtAPNumeric() - might slow, uses a sparse array apa */
1441   /* set default scalable */
1442   ptap->scalable = PETSC_FALSE; /* PETSC_TRUE; */
1443 
1444   ierr = PetscOptionsGetBool(((PetscObject)Cmpi)->options,((PetscObject)Cmpi)->prefix,"-matptap_scalable",&ptap->scalable,NULL);CHKERRQ(ierr);
1445   if (!ptap->scalable) {  /* Do dense axpy */
1446     ierr = PetscCalloc1(pN,&ptap->apa);CHKERRQ(ierr);
1447   } else {
1448     ierr = PetscCalloc1(ap_rmax+1,&ptap->apa);CHKERRQ(ierr);
1449   }
1450 
1451 #if defined(PETSC_USE_INFO)
1452   if (pti[pn] != 0) {
1453     ierr = PetscInfo3(Cmpi,"Reallocs %D; Fill ratio: given %g needed %g.\n",nspacedouble,(double)fill,(double)afill);CHKERRQ(ierr);
1454     ierr = PetscInfo1(Cmpi,"Use MatPtAP(A,P,MatReuse,%g,&C) for best performance.\n",(double)afill);CHKERRQ(ierr);
1455   } else {
1456     ierr = PetscInfo(Cmpi,"Empty matrix product\n");CHKERRQ(ierr);
1457   }
1458 #endif
1459   PetscFunctionReturn(0);
1460 }
1461 
1462 PetscErrorCode MatPtAPNumeric_MPIAIJ_MPIAIJ_ptap(Mat A,Mat P,Mat C)
1463 {
1464   PetscErrorCode      ierr;
1465   Mat_MPIAIJ          *a =(Mat_MPIAIJ*)A->data,*p=(Mat_MPIAIJ*)P->data,*c=(Mat_MPIAIJ*)C->data;
1466   Mat_SeqAIJ          *ad=(Mat_SeqAIJ*)(a->A)->data,*ao=(Mat_SeqAIJ*)(a->B)->data;
1467   Mat_SeqAIJ          *pd=(Mat_SeqAIJ*)(p->A)->data,*po=(Mat_SeqAIJ*)(p->B)->data;
1468   Mat_SeqAIJ          *p_loc,*p_oth;
1469   Mat_PtAPMPI         *ptap;
1470   Mat_Merge_SeqsToMPI *merge;
1471   PetscInt            *adi=ad->i,*aoi=ao->i,*adj,*aoj,*apJ,nextp;
1472   PetscInt            *pi_loc,*pj_loc,*pi_oth,*pj_oth,*pJ,*pj;
1473   PetscInt            i,j,k,anz,pnz,apnz,nextap,row,*cj;
1474   MatScalar           *ada,*aoa,*apa,*pa,*ca,*pa_loc,*pa_oth,valtmp;
1475   PetscInt            am  =A->rmap->n,cm=C->rmap->n,pon=(p->B)->cmap->n;
1476   MPI_Comm            comm;
1477   PetscMPIInt         size,rank,taga,*len_s;
1478   PetscInt            *owners,proc,nrows,**buf_ri_k,**nextrow,**nextci;
1479   PetscInt            **buf_ri,**buf_rj;
1480   PetscInt            cnz=0,*bj_i,*bi,*bj,bnz,nextcj;  /* bi,bj,ba: local array of C(mpi mat) */
1481   MPI_Request         *s_waits,*r_waits;
1482   MPI_Status          *status;
1483   MatScalar           **abuf_r,*ba_i,*pA,*coa,*ba;
1484   PetscInt            *api,*apj,*coi,*coj;
1485   PetscInt            *poJ=po->j,*pdJ=pd->j,pcstart=P->cmap->rstart,pcend=P->cmap->rend;
1486   PetscBool           scalable;
1487 #if defined(PTAP_PROFILE)
1488   PetscLogDouble t0,t1,t2,eP,t3,t4,et2_AP=0.0,ePtAP=0.0,t2_0,t2_1,t2_2;
1489 #endif
1490 
1491   PetscFunctionBegin;
1492   ierr = PetscObjectGetComm((PetscObject)C,&comm);CHKERRQ(ierr);
1493 #if defined(PTAP_PROFILE)
1494   ierr = PetscTime(&t0);CHKERRQ(ierr);
1495 #endif
1496   ierr = MPI_Comm_size(comm,&size);CHKERRQ(ierr);
1497   ierr = MPI_Comm_rank(comm,&rank);CHKERRQ(ierr);
1498 
1499   ptap = c->ptap;
1500   if (!ptap) SETERRQ(PetscObjectComm((PetscObject)C),PETSC_ERR_ARG_INCOMP,"MatPtAP() has not been called to create matrix C yet, cannot use MAT_REUSE_MATRIX");
1501   merge    = ptap->merge;
1502   apa      = ptap->apa;
1503   scalable = ptap->scalable;
1504 
1505   /* 1) get P_oth = ptap->P_oth  and P_loc = ptap->P_loc */
1506   /*-----------------------------------------------------*/
1507   if (ptap->reuse == MAT_INITIAL_MATRIX) {
1508     /* P_oth and P_loc are obtained in MatPtASymbolic(), skip calling MatGetBrowsOfAoCols() and MatMPIAIJGetLocalMat() */
1509     ptap->reuse = MAT_REUSE_MATRIX;
1510   } else { /* update numerical values of P_oth and P_loc */
1511     ierr = MatGetBrowsOfAoCols_MPIAIJ(A,P,MAT_REUSE_MATRIX,&ptap->startsj_s,&ptap->startsj_r,&ptap->bufa,&ptap->P_oth);CHKERRQ(ierr);
1512     ierr = MatMPIAIJGetLocalMat(P,MAT_REUSE_MATRIX,&ptap->P_loc);CHKERRQ(ierr);
1513   }
1514 #if defined(PTAP_PROFILE)
1515   ierr = PetscTime(&t1);CHKERRQ(ierr);
1516   eP = t1-t0;
1517 #endif
1518   /*
1519   printf("[%d] Ad: %d, %d; Ao: %d, %d; P_loc: %d, %d; P_oth %d, %d;\n",rank,
1520          a->A->rmap->N,a->A->cmap->N,a->B->rmap->N,a->B->cmap->N,
1521          ptap->P_loc->rmap->N,ptap->P_loc->cmap->N,
1522          ptap->P_oth->rmap->N,ptap->P_oth->cmap->N);
1523    */
1524 
1525   /* 2) compute numeric C_seq = P_loc^T*A_loc*P - dominating part */
1526   /*--------------------------------------------------------------*/
1527   /* get data from symbolic products */
1528   p_loc = (Mat_SeqAIJ*)(ptap->P_loc)->data;
1529   p_oth = (Mat_SeqAIJ*)(ptap->P_oth)->data;
1530   pi_loc=p_loc->i; pj_loc=p_loc->j; pa_loc=p_loc->a;
1531   pi_oth=p_oth->i; pj_oth=p_oth->j; pa_oth=p_oth->a;
1532 
1533   coi  = merge->coi; coj = merge->coj;
1534   ierr = PetscCalloc1(coi[pon]+1,&coa);CHKERRQ(ierr);
1535 
1536   bi     = merge->bi; bj = merge->bj;
1537   owners = merge->rowmap->range;
1538   ierr   = PetscCalloc1(bi[cm]+1,&ba);CHKERRQ(ierr);  /* ba: Cseq->a */
1539 
1540   api = ptap->api; apj = ptap->apj;
1541 
1542   if (!scalable) { /* Do dense axpy on apa (length of pN, stores A[i,:]*P) - nonscalable, but faster (could take 1/3 scalable time) */
1543     ierr = PetscInfo(C,"Using non-scalable dense axpy\n");CHKERRQ(ierr);
1544 #if defined(PTAP_PROFILE)
1545     ierr = PetscTime(&t1);CHKERRQ(ierr);
1546 #endif
1547     for (i=0; i<am; i++) {
1548 #if defined(PTAP_PROFILE)
1549       ierr = PetscTime(&t2_0);CHKERRQ(ierr);
1550 #endif
1551       /* 2-a) form i-th sparse row of A_loc*P = Ad*P_loc + Ao*P_oth */
1552       /*------------------------------------------------------------*/
1553       apJ = apj + api[i];
1554 
1555       /* diagonal portion of A */
1556       anz = adi[i+1] - adi[i];
1557       adj = ad->j + adi[i];
1558       ada = ad->a + adi[i];
1559       for (j=0; j<anz; j++) {
1560         row = adj[j];
1561         pnz = pi_loc[row+1] - pi_loc[row];
1562         pj  = pj_loc + pi_loc[row];
1563         pa  = pa_loc + pi_loc[row];
1564 
1565         /* perform dense axpy */
1566         valtmp = ada[j];
1567         for (k=0; k<pnz; k++) {
1568           apa[pj[k]] += valtmp*pa[k];
1569         }
1570         ierr = PetscLogFlops(2.0*pnz);CHKERRQ(ierr);
1571       }
1572 
1573       /* off-diagonal portion of A */
1574       anz = aoi[i+1] - aoi[i];
1575       aoj = ao->j + aoi[i];
1576       aoa = ao->a + aoi[i];
1577       for (j=0; j<anz; j++) {
1578         row = aoj[j];
1579         pnz = pi_oth[row+1] - pi_oth[row];
1580         pj  = pj_oth + pi_oth[row];
1581         pa  = pa_oth + pi_oth[row];
1582 
1583         /* perform dense axpy */
1584         valtmp = aoa[j];
1585         for (k=0; k<pnz; k++) {
1586           apa[pj[k]] += valtmp*pa[k];
1587         }
1588         ierr = PetscLogFlops(2.0*pnz);CHKERRQ(ierr);
1589       }
1590 #if defined(PTAP_PROFILE)
1591       ierr    = PetscTime(&t2_1);CHKERRQ(ierr);
1592       et2_AP += t2_1 - t2_0;
1593 #endif
1594 
1595       /* 2-b) Compute Cseq = P_loc[i,:]^T*AP[i,:] using outer product */
1596       /*--------------------------------------------------------------*/
1597       apnz = api[i+1] - api[i];
1598       /* put the value into Co=(p->B)^T*AP (off-diagonal part, send to others) */
1599       pnz = po->i[i+1] - po->i[i];
1600       poJ = po->j + po->i[i];
1601       pA  = po->a + po->i[i];
1602       for (j=0; j<pnz; j++) {
1603         row = poJ[j];
1604         cnz = coi[row+1] - coi[row];
1605         cj  = coj + coi[row];
1606         ca  = coa + coi[row];
1607         /* perform dense axpy */
1608         valtmp = pA[j];
1609         for (k=0; k<cnz; k++) {
1610           ca[k] += valtmp*apa[cj[k]];
1611         }
1612         ierr = PetscLogFlops(2.0*cnz);CHKERRQ(ierr);
1613       }
1614       /* put the value into Cd (diagonal part) */
1615       pnz = pd->i[i+1] - pd->i[i];
1616       pdJ = pd->j + pd->i[i];
1617       pA  = pd->a + pd->i[i];
1618       for (j=0; j<pnz; j++) {
1619         row = pdJ[j];
1620         cnz = bi[row+1] - bi[row];
1621         cj  = bj + bi[row];
1622         ca  = ba + bi[row];
1623         /* perform dense axpy */
1624         valtmp = pA[j];
1625         for (k=0; k<cnz; k++) {
1626           ca[k] += valtmp*apa[cj[k]];
1627         }
1628         ierr = PetscLogFlops(2.0*cnz);CHKERRQ(ierr);
1629       }
1630 
1631       /* zero the current row of A*P */
1632       for (k=0; k<apnz; k++) apa[apJ[k]] = 0.0;
1633 #if defined(PTAP_PROFILE)
1634       ierr      = PetscTime(&t2_2);CHKERRQ(ierr);
1635       ePtAP += t2_2 - t2_1;
1636 #endif
1637     }
1638   } else { /* Do sparse axpy on apa (length of ap_rmax, stores A[i,:]*P) - scalable, but slower */
1639     ierr = PetscInfo(C,"Using scalable sparse axpy\n");CHKERRQ(ierr);
1640     /*-----------------------------------------------------------------------------------------*/
1641     pA=pa_loc;
1642     for (i=0; i<am; i++) {
1643 #if defined(PTAP_PROFILE)
1644       ierr = PetscTime(&t2_0);CHKERRQ(ierr);
1645 #endif
1646       /* form i-th sparse row of A*P */
1647       apnz = api[i+1] - api[i];
1648       apJ  = apj + api[i];
1649       /* diagonal portion of A */
1650       anz = adi[i+1] - adi[i];
1651       adj = ad->j + adi[i];
1652       ada = ad->a + adi[i];
1653       for (j=0; j<anz; j++) {
1654         row    = adj[j];
1655         pnz    = pi_loc[row+1] - pi_loc[row];
1656         pj     = pj_loc + pi_loc[row];
1657         pa     = pa_loc + pi_loc[row];
1658         valtmp = ada[j];
1659         nextp  = 0;
1660         for (k=0; nextp<pnz; k++) {
1661           if (apJ[k] == pj[nextp]) { /* col of AP == col of P */
1662             apa[k] += valtmp*pa[nextp++];
1663           }
1664         }
1665         ierr = PetscLogFlops(2.0*pnz);CHKERRQ(ierr);
1666       }
1667       /* off-diagonal portion of A */
1668       anz = aoi[i+1] - aoi[i];
1669       aoj = ao->j + aoi[i];
1670       aoa = ao->a + aoi[i];
1671       for (j=0; j<anz; j++) {
1672         row    = aoj[j];
1673         pnz    = pi_oth[row+1] - pi_oth[row];
1674         pj     = pj_oth + pi_oth[row];
1675         pa     = pa_oth + pi_oth[row];
1676         valtmp = aoa[j];
1677         nextp  = 0;
1678         for (k=0; nextp<pnz; k++) {
1679           if (apJ[k] == pj[nextp]) { /* col of AP == col of P */
1680             apa[k] += valtmp*pa[nextp++];
1681           }
1682         }
1683         ierr = PetscLogFlops(2.0*pnz);CHKERRQ(ierr);
1684       }
1685 #if defined(PTAP_PROFILE)
1686       ierr    = PetscTime(&t2_1);CHKERRQ(ierr);
1687       et2_AP += t2_1 - t2_0;
1688 #endif
1689 
1690       /* 2-b) Compute Cseq = P_loc[i,:]^T*AP[i,:] using outer product */
1691       /*--------------------------------------------------------------*/
1692       pnz = pi_loc[i+1] - pi_loc[i];
1693       pJ  = pj_loc + pi_loc[i];
1694       for (j=0; j<pnz; j++) {
1695         nextap = 0;
1696         row    = pJ[j]; /* global index */
1697         if (row < pcstart || row >=pcend) { /* put the value into Co */
1698           row = *poJ;
1699           cj  = coj + coi[row];
1700           ca  = coa + coi[row]; poJ++;
1701         } else {                            /* put the value into Cd */
1702           row = *pdJ;
1703           cj  = bj + bi[row];
1704           ca  = ba + bi[row]; pdJ++;
1705         }
1706         valtmp = pA[j];
1707         for (k=0; nextap<apnz; k++) {
1708           if (cj[k]==apJ[nextap]) ca[k] += valtmp*apa[nextap++];
1709         }
1710         ierr = PetscLogFlops(2.0*apnz);CHKERRQ(ierr);
1711       }
1712       pA += pnz;
1713       /* zero the current row info for A*P */
1714       ierr = PetscMemzero(apa,apnz*sizeof(MatScalar));CHKERRQ(ierr);
1715 #if defined(PTAP_PROFILE)
1716       ierr      = PetscTime(&t2_2);CHKERRQ(ierr);
1717       ePtAP += t2_2 - t2_1;
1718 #endif
1719     }
1720   }
1721 #if defined(PTAP_PROFILE)
1722   ierr = PetscTime(&t2);CHKERRQ(ierr);
1723 #endif
1724 
1725   /* 3) send and recv matrix values coa */
1726   /*------------------------------------*/
1727   buf_ri = merge->buf_ri;
1728   buf_rj = merge->buf_rj;
1729   len_s  = merge->len_s;
1730   ierr   = PetscCommGetNewTag(comm,&taga);CHKERRQ(ierr);
1731   ierr   = PetscPostIrecvScalar(comm,taga,merge->nrecv,merge->id_r,merge->len_r,&abuf_r,&r_waits);CHKERRQ(ierr);
1732 
1733   ierr = PetscMalloc2(merge->nsend+1,&s_waits,size,&status);CHKERRQ(ierr);
1734   for (proc=0,k=0; proc<size; proc++) {
1735     if (!len_s[proc]) continue;
1736     i    = merge->owners_co[proc];
1737     ierr = MPI_Isend(coa+coi[i],len_s[proc],MPIU_MATSCALAR,proc,taga,comm,s_waits+k);CHKERRQ(ierr);
1738     k++;
1739   }
1740   if (merge->nrecv) {ierr = MPI_Waitall(merge->nrecv,r_waits,status);CHKERRQ(ierr);}
1741   if (merge->nsend) {ierr = MPI_Waitall(merge->nsend,s_waits,status);CHKERRQ(ierr);}
1742 
1743   ierr = PetscFree2(s_waits,status);CHKERRQ(ierr);
1744   ierr = PetscFree(r_waits);CHKERRQ(ierr);
1745   ierr = PetscFree(coa);CHKERRQ(ierr);
1746 #if defined(PTAP_PROFILE)
1747   ierr = PetscTime(&t3);CHKERRQ(ierr);
1748 #endif
1749 
1750   /* 4) insert local Cseq and received values into Cmpi */
1751   /*------------------------------------------------------*/
1752   ierr = PetscMalloc3(merge->nrecv,&buf_ri_k,merge->nrecv,&nextrow,merge->nrecv,&nextci);CHKERRQ(ierr);
1753   for (k=0; k<merge->nrecv; k++) {
1754     buf_ri_k[k] = buf_ri[k]; /* beginning of k-th recved i-structure */
1755     nrows       = *(buf_ri_k[k]);
1756     nextrow[k]  = buf_ri_k[k]+1;  /* next row number of k-th recved i-structure */
1757     nextci[k]   = buf_ri_k[k] + (nrows + 1); /* poins to the next i-structure of k-th recved i-structure  */
1758   }
1759 
1760   for (i=0; i<cm; i++) {
1761     row  = owners[rank] + i; /* global row index of C_seq */
1762     bj_i = bj + bi[i];  /* col indices of the i-th row of C */
1763     ba_i = ba + bi[i];
1764     bnz  = bi[i+1] - bi[i];
1765     /* add received vals into ba */
1766     for (k=0; k<merge->nrecv; k++) { /* k-th received message */
1767       /* i-th row */
1768       if (i == *nextrow[k]) {
1769         cnz    = *(nextci[k]+1) - *nextci[k];
1770         cj     = buf_rj[k] + *(nextci[k]);
1771         ca     = abuf_r[k] + *(nextci[k]);
1772         nextcj = 0;
1773         for (j=0; nextcj<cnz; j++) {
1774           if (bj_i[j] == cj[nextcj]) { /* bcol == ccol */
1775             ba_i[j] += ca[nextcj++];
1776           }
1777         }
1778         nextrow[k]++; nextci[k]++;
1779         ierr = PetscLogFlops(2.0*cnz);CHKERRQ(ierr);
1780       }
1781     }
1782     ierr = MatSetValues(C,1,&row,bnz,bj_i,ba_i,INSERT_VALUES);CHKERRQ(ierr);
1783   }
1784   ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr);
1785   ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr);
1786 
1787   ierr = PetscFree(ba);CHKERRQ(ierr);
1788   ierr = PetscFree(abuf_r[0]);CHKERRQ(ierr);
1789   ierr = PetscFree(abuf_r);CHKERRQ(ierr);
1790   ierr = PetscFree3(buf_ri_k,nextrow,nextci);CHKERRQ(ierr);
1791 #if defined(PTAP_PROFILE)
1792   ierr = PetscTime(&t4);CHKERRQ(ierr);
1793   if (rank==1) {
1794     ierr = PetscPrintf(MPI_COMM_SELF,"  [%d] PtAPNum %g/P + %g/PtAP( %g/A*P + %g/Pt*AP ) + %g/comm + %g/Cloc = %g\n\n",rank,eP,t2-t1,et2_AP,ePtAP,t3-t2,t4-t3,t4-t0);CHKERRQ(ierr);
1795   }
1796 #endif
1797   PetscFunctionReturn(0);
1798 }
1799