1 #include <../src/mat/impls/elemental/matelemimpl.h> /*I "petscmat.h" I*/ 2 3 /* 4 The variable Petsc_Elemental_keyval is used to indicate an MPI attribute that 5 is attached to a communicator, in this case the attribute is a Mat_Elemental_Grid 6 */ 7 static PetscMPIInt Petsc_Elemental_keyval = MPI_KEYVAL_INVALID; 8 9 #undef __FUNCT__ 10 #define __FUNCT__ "PetscElementalInitializePackage" 11 /*@C 12 PetscElementalInitializePackage - Initialize Elemental package 13 14 Logically Collective 15 16 Input Arguments: 17 . path - the dynamic library path or NULL 18 19 Level: developer 20 21 .seealso: MATELEMENTAL, PetscElementalFinalizePackage() 22 @*/ 23 PetscErrorCode PetscElementalInitializePackage(const char *path) 24 { 25 PetscErrorCode ierr; 26 27 PetscFunctionBegin; 28 if (elem::Initialized()) PetscFunctionReturn(0); 29 { /* We have already initialized MPI, so this song and dance is just to pass these variables (which won't be used by Elemental) through the interface that needs references */ 30 int zero = 0; 31 char **nothing = 0; 32 elem::Initialize(zero,nothing); 33 } 34 ierr = PetscRegisterFinalize(PetscElementalFinalizePackage);CHKERRQ(ierr); 35 PetscFunctionReturn(0); 36 } 37 38 #undef __FUNCT__ 39 #define __FUNCT__ "PetscElementalFinalizePackage" 40 /*@C 41 PetscElementalFinalizePackage - Finalize Elemental package 42 43 Logically Collective 44 45 Level: developer 46 47 .seealso: MATELEMENTAL, PetscElementalInitializePackage() 48 @*/ 49 PetscErrorCode PetscElementalFinalizePackage(void) 50 { 51 52 PetscFunctionBegin; 53 elem::Finalize(); 54 PetscFunctionReturn(0); 55 } 56 57 #undef __FUNCT__ 58 #define __FUNCT__ "MatView_Elemental" 59 static PetscErrorCode MatView_Elemental(Mat A,PetscViewer viewer) 60 { 61 PetscErrorCode ierr; 62 Mat_Elemental *a = (Mat_Elemental*)A->data; 63 PetscBool iascii; 64 65 PetscFunctionBegin; 66 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERASCII,&iascii);CHKERRQ(ierr); 67 if (iascii) { 68 PetscViewerFormat format; 69 ierr = PetscViewerGetFormat(viewer,&format);CHKERRQ(ierr); 70 if (format == PETSC_VIEWER_ASCII_INFO) { 71 /* call elemental viewing function */ 72 ierr = PetscViewerASCIIPrintf(viewer,"Elemental run parameters:\n");CHKERRQ(ierr); 73 ierr = PetscViewerASCIIPrintf(viewer," allocated entries=%d\n",(*a->emat).AllocatedMemory());CHKERRQ(ierr); 74 ierr = PetscViewerASCIIPrintf(viewer," grid height=%d, grid width=%d\n",(*a->emat).Grid().Height(),(*a->emat).Grid().Width());CHKERRQ(ierr); 75 if (format == PETSC_VIEWER_ASCII_FACTOR_INFO) { 76 /* call elemental viewing function */ 77 ierr = PetscPrintf(PetscObjectComm((PetscObject)viewer),"test matview_elemental 2\n");CHKERRQ(ierr); 78 } 79 80 } else if (format == PETSC_VIEWER_DEFAULT) { 81 ierr = PetscViewerASCIIUseTabs(viewer,PETSC_FALSE);CHKERRQ(ierr); 82 ierr = PetscObjectPrintClassNamePrefixType((PetscObject)A,viewer,"Matrix Object");CHKERRQ(ierr); 83 a->emat->Print("Elemental matrix (cyclic ordering)"); 84 ierr = PetscViewerASCIIUseTabs(viewer,PETSC_TRUE);CHKERRQ(ierr); 85 if (A->factortype == MAT_FACTOR_NONE){ 86 Mat Adense; 87 ierr = PetscPrintf(PetscObjectComm((PetscObject)viewer),"Elemental matrix (explicit ordering)\n");CHKERRQ(ierr); 88 ierr = MatConvert(A,MATDENSE,MAT_INITIAL_MATRIX,&Adense);CHKERRQ(ierr); 89 ierr = MatView(Adense,viewer);CHKERRQ(ierr); 90 ierr = MatDestroy(&Adense);CHKERRQ(ierr); 91 } 92 } else SETERRQ(PetscObjectComm((PetscObject)viewer),PETSC_ERR_SUP,"Format"); 93 } else { 94 /* convert to dense format and call MatView() */ 95 Mat Adense; 96 ierr = PetscPrintf(PetscObjectComm((PetscObject)viewer),"Elemental matrix (explicit ordering)\n");CHKERRQ(ierr); 97 ierr = MatConvert(A,MATDENSE,MAT_INITIAL_MATRIX,&Adense);CHKERRQ(ierr); 98 ierr = MatView(Adense,viewer);CHKERRQ(ierr); 99 ierr = MatDestroy(&Adense);CHKERRQ(ierr); 100 } 101 PetscFunctionReturn(0); 102 } 103 104 #undef __FUNCT__ 105 #define __FUNCT__ "MatGetInfo_Elemental" 106 static PetscErrorCode MatGetInfo_Elemental(Mat A,MatInfoType flag,MatInfo *info) 107 { 108 Mat_Elemental *a = (Mat_Elemental*)A->data; 109 PetscMPIInt rank; 110 111 PetscFunctionBegin; 112 MPI_Comm_rank(PetscObjectComm((PetscObject)A),&rank); 113 114 /* if (!rank) printf(" .........MatGetInfo_Elemental ...\n"); */ 115 info->block_size = 1.0; 116 117 if (flag == MAT_LOCAL) { 118 info->nz_allocated = (double)(*a->emat).AllocatedMemory(); /* locally allocated */ 119 info->nz_used = info->nz_allocated; 120 } else if (flag == MAT_GLOBAL_MAX) { 121 //ierr = MPI_Allreduce(isend,irecv,5,MPIU_REAL,MPIU_MAX,PetscObjectComm((PetscObject)matin));CHKERRQ(ierr); 122 /* see MatGetInfo_MPIAIJ() for getting global info->nz_allocated! */ 123 //SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP," MAT_GLOBAL_MAX not written yet"); 124 } else if (flag == MAT_GLOBAL_SUM) { 125 //SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP," MAT_GLOBAL_SUM not written yet"); 126 info->nz_allocated = (double)(*a->emat).AllocatedMemory(); /* locally allocated */ 127 info->nz_used = info->nz_allocated; /* assume Elemental does accurate allocation */ 128 //ierr = MPI_Allreduce(isend,irecv,1,MPIU_REAL,MPIU_SUM,PetscObjectComm((PetscObject)A));CHKERRQ(ierr); 129 //PetscPrintf(PETSC_COMM_SELF," ... [%d] locally allocated %g\n",rank,info->nz_allocated); 130 } 131 132 info->nz_unneeded = 0.0; 133 info->assemblies = (double)A->num_ass; 134 info->mallocs = 0; 135 info->memory = ((PetscObject)A)->mem; 136 info->fill_ratio_given = 0; /* determined by Elemental */ 137 info->fill_ratio_needed = 0; 138 info->factor_mallocs = 0; 139 PetscFunctionReturn(0); 140 } 141 142 #undef __FUNCT__ 143 #define __FUNCT__ "MatSetValues_Elemental" 144 static PetscErrorCode MatSetValues_Elemental(Mat A,PetscInt nr,const PetscInt *rows,PetscInt nc,const PetscInt *cols,const PetscScalar *vals,InsertMode imode) 145 { 146 PetscErrorCode ierr; 147 Mat_Elemental *a = (Mat_Elemental*)A->data; 148 PetscMPIInt rank; 149 PetscInt i,j,rrank,ridx,crank,cidx; 150 151 PetscFunctionBegin; 152 ierr = MPI_Comm_rank(PetscObjectComm((PetscObject)A),&rank);CHKERRQ(ierr); 153 154 const elem::Grid &grid = a->emat->Grid(); 155 for (i=0; i<nr; i++) { 156 PetscInt erow,ecol,elrow,elcol; 157 if (rows[i] < 0) continue; 158 P2RO(A,0,rows[i],&rrank,&ridx); 159 RO2E(A,0,rrank,ridx,&erow); 160 if (rrank < 0 || ridx < 0 || erow < 0) SETERRQ(PetscObjectComm((PetscObject)A),PETSC_ERR_PLIB,"Incorrect row translation"); 161 for (j=0; j<nc; j++) { 162 if (cols[j] < 0) continue; 163 P2RO(A,1,cols[j],&crank,&cidx); 164 RO2E(A,1,crank,cidx,&ecol); 165 if (crank < 0 || cidx < 0 || ecol < 0) SETERRQ(PetscObjectComm((PetscObject)A),PETSC_ERR_PLIB,"Incorrect col translation"); 166 if (erow % grid.MCSize() != grid.MCRank() || ecol % grid.MRSize() != grid.MRRank()){ /* off-proc entry */ 167 if (imode != ADD_VALUES) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP,"Only ADD_VALUES to off-processor entry is supported"); 168 /* PetscPrintf(PETSC_COMM_SELF,"[%D] add off-proc entry (%D,%D, %g) (%D %D)\n",rank,rows[i],cols[j],*(vals+i*nc),erow,ecol); */ 169 a->esubmat->Set(0,0, (PetscElemScalar)vals[i*nc+j]); 170 a->interface->Axpy(1.0,*(a->esubmat),erow,ecol); 171 continue; 172 } 173 elrow = erow / grid.MCSize(); 174 elcol = ecol / grid.MRSize(); 175 switch (imode) { 176 case INSERT_VALUES: a->emat->SetLocal(elrow,elcol,(PetscElemScalar)vals[i*nc+j]); break; 177 case ADD_VALUES: a->emat->UpdateLocal(elrow,elcol,(PetscElemScalar)vals[i*nc+j]); break; 178 default: SETERRQ1(PetscObjectComm((PetscObject)A),PETSC_ERR_SUP,"No support for InsertMode %d",(int)imode); 179 } 180 } 181 } 182 PetscFunctionReturn(0); 183 } 184 185 #undef __FUNCT__ 186 #define __FUNCT__ "MatMult_Elemental" 187 static PetscErrorCode MatMult_Elemental(Mat A,Vec X,Vec Y) 188 { 189 Mat_Elemental *a = (Mat_Elemental*)A->data; 190 PetscErrorCode ierr; 191 const PetscElemScalar *x; 192 PetscElemScalar *y; 193 PetscElemScalar one = 1,zero = 0; 194 195 PetscFunctionBegin; 196 ierr = VecGetArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 197 ierr = VecGetArray(Y,(PetscScalar **)&y);CHKERRQ(ierr); 198 { /* Scoping so that constructor is called before pointer is returned */ 199 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> xe(A->cmap->N,1,0,x,A->cmap->n,*a->grid); 200 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> ye(A->rmap->N,1,0,y,A->rmap->n,*a->grid); 201 elem::Gemv(elem::NORMAL,one,*a->emat,xe,zero,ye); 202 } 203 ierr = VecRestoreArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 204 ierr = VecRestoreArray(Y,(PetscScalar **)&y);CHKERRQ(ierr); 205 PetscFunctionReturn(0); 206 } 207 208 #undef __FUNCT__ 209 #define __FUNCT__ "MatMultTranspose_Elemental" 210 static PetscErrorCode MatMultTranspose_Elemental(Mat A,Vec X,Vec Y) 211 { 212 Mat_Elemental *a = (Mat_Elemental*)A->data; 213 PetscErrorCode ierr; 214 const PetscElemScalar *x; 215 PetscElemScalar *y; 216 PetscElemScalar one = 1,zero = 0; 217 218 PetscFunctionBegin; 219 ierr = VecGetArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 220 ierr = VecGetArray(Y,(PetscScalar **)&y);CHKERRQ(ierr); 221 { /* Scoping so that constructor is called before pointer is returned */ 222 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> xe(A->rmap->N,1,0,x,A->rmap->n,*a->grid); 223 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> ye(A->cmap->N,1,0,y,A->cmap->n,*a->grid); 224 elem::Gemv(elem::TRANSPOSE,one,*a->emat,xe,zero,ye); 225 } 226 ierr = VecRestoreArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 227 ierr = VecRestoreArray(Y,(PetscScalar **)&y);CHKERRQ(ierr); 228 PetscFunctionReturn(0); 229 } 230 231 #undef __FUNCT__ 232 #define __FUNCT__ "MatMultAdd_Elemental" 233 static PetscErrorCode MatMultAdd_Elemental(Mat A,Vec X,Vec Y,Vec Z) 234 { 235 Mat_Elemental *a = (Mat_Elemental*)A->data; 236 PetscErrorCode ierr; 237 const PetscElemScalar *x; 238 PetscElemScalar *z; 239 PetscElemScalar one = 1; 240 241 PetscFunctionBegin; 242 if (Y != Z) {ierr = VecCopy(Y,Z);CHKERRQ(ierr);} 243 ierr = VecGetArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 244 ierr = VecGetArray(Z,(PetscScalar **)&z);CHKERRQ(ierr); 245 { /* Scoping so that constructor is called before pointer is returned */ 246 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> xe(A->cmap->N,1,0,x,A->cmap->n,*a->grid); 247 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> ze(A->rmap->N,1,0,z,A->rmap->n,*a->grid); 248 elem::Gemv(elem::NORMAL,one,*a->emat,xe,one,ze); 249 } 250 ierr = VecRestoreArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 251 ierr = VecRestoreArray(Z,(PetscScalar **)&z);CHKERRQ(ierr); 252 PetscFunctionReturn(0); 253 } 254 255 #undef __FUNCT__ 256 #define __FUNCT__ "MatMultTransposeAdd_Elemental" 257 static PetscErrorCode MatMultTransposeAdd_Elemental(Mat A,Vec X,Vec Y,Vec Z) 258 { 259 Mat_Elemental *a = (Mat_Elemental*)A->data; 260 PetscErrorCode ierr; 261 const PetscElemScalar *x; 262 PetscElemScalar *z; 263 PetscElemScalar one = 1; 264 265 PetscFunctionBegin; 266 if (Y != Z) {ierr = VecCopy(Y,Z);CHKERRQ(ierr);} 267 ierr = VecGetArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 268 ierr = VecGetArray(Z,(PetscScalar **)&z);CHKERRQ(ierr); 269 { /* Scoping so that constructor is called before pointer is returned */ 270 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> xe(A->rmap->N,1,0,x,A->rmap->n,*a->grid); 271 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> ze(A->cmap->N,1,0,z,A->cmap->n,*a->grid); 272 elem::Gemv(elem::TRANSPOSE,one,*a->emat,xe,one,ze); 273 } 274 ierr = VecRestoreArrayRead(X,(const PetscScalar **)&x);CHKERRQ(ierr); 275 ierr = VecRestoreArray(Z,(PetscScalar **)&z);CHKERRQ(ierr); 276 PetscFunctionReturn(0); 277 } 278 279 #undef __FUNCT__ 280 #define __FUNCT__ "MatMatMultNumeric_Elemental" 281 static PetscErrorCode MatMatMultNumeric_Elemental(Mat A,Mat B,Mat C) 282 { 283 Mat_Elemental *a = (Mat_Elemental*)A->data; 284 Mat_Elemental *b = (Mat_Elemental*)B->data; 285 Mat_Elemental *c = (Mat_Elemental*)C->data; 286 PetscElemScalar one = 1,zero = 0; 287 288 PetscFunctionBegin; 289 { /* Scoping so that constructor is called before pointer is returned */ 290 elem::Gemm(elem::NORMAL,elem::NORMAL,one,*a->emat,*b->emat,zero,*c->emat); 291 } 292 C->assembled = PETSC_TRUE; 293 PetscFunctionReturn(0); 294 } 295 296 #undef __FUNCT__ 297 #define __FUNCT__ "MatMatMultSymbolic_Elemental" 298 static PetscErrorCode MatMatMultSymbolic_Elemental(Mat A,Mat B,PetscReal fill,Mat *C) 299 { 300 PetscErrorCode ierr; 301 Mat Ce; 302 MPI_Comm comm; 303 304 PetscFunctionBegin; 305 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 306 ierr = MatCreate(comm,&Ce);CHKERRQ(ierr); 307 ierr = MatSetSizes(Ce,A->rmap->n,B->cmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 308 ierr = MatSetType(Ce,MATELEMENTAL);CHKERRQ(ierr); 309 ierr = MatSetUp(Ce);CHKERRQ(ierr); 310 *C = Ce; 311 PetscFunctionReturn(0); 312 } 313 314 #undef __FUNCT__ 315 #define __FUNCT__ "MatMatMult_Elemental" 316 static PetscErrorCode MatMatMult_Elemental(Mat A,Mat B,MatReuse scall,PetscReal fill,Mat *C) 317 { 318 PetscErrorCode ierr; 319 320 PetscFunctionBegin; 321 if (scall == MAT_INITIAL_MATRIX){ 322 ierr = MatMatMultSymbolic_Elemental(A,B,1.0,C);CHKERRQ(ierr); 323 } 324 ierr = MatMatMultNumeric_Elemental(A,B,*C);CHKERRQ(ierr); 325 PetscFunctionReturn(0); 326 } 327 328 #undef __FUNCT__ 329 #define __FUNCT__ "MatMatTransposeMultNumeric_Elemental" 330 static PetscErrorCode MatMatTransposeMultNumeric_Elemental(Mat A,Mat B,Mat C) 331 { 332 Mat_Elemental *a = (Mat_Elemental*)A->data; 333 Mat_Elemental *b = (Mat_Elemental*)B->data; 334 Mat_Elemental *c = (Mat_Elemental*)C->data; 335 PetscElemScalar one = 1,zero = 0; 336 337 PetscFunctionBegin; 338 { /* Scoping so that constructor is called before pointer is returned */ 339 elem::Gemm(elem::NORMAL,elem::TRANSPOSE,one,*a->emat,*b->emat,zero,*c->emat); 340 } 341 C->assembled = PETSC_TRUE; 342 PetscFunctionReturn(0); 343 } 344 345 #undef __FUNCT__ 346 #define __FUNCT__ "MatMatTransposeMultSymbolic_Elemental" 347 static PetscErrorCode MatMatTransposeMultSymbolic_Elemental(Mat A,Mat B,PetscReal fill,Mat *C) 348 { 349 PetscErrorCode ierr; 350 Mat Ce; 351 MPI_Comm comm; 352 353 PetscFunctionBegin; 354 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 355 ierr = MatCreate(comm,&Ce);CHKERRQ(ierr); 356 ierr = MatSetSizes(Ce,A->rmap->n,B->rmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 357 ierr = MatSetType(Ce,MATELEMENTAL);CHKERRQ(ierr); 358 ierr = MatSetUp(Ce);CHKERRQ(ierr); 359 *C = Ce; 360 PetscFunctionReturn(0); 361 } 362 363 #undef __FUNCT__ 364 #define __FUNCT__ "MatMatTransposeMult_Elemental" 365 static PetscErrorCode MatMatTransposeMult_Elemental(Mat A,Mat B,MatReuse scall,PetscReal fill,Mat *C) 366 { 367 PetscErrorCode ierr; 368 369 PetscFunctionBegin; 370 if (scall == MAT_INITIAL_MATRIX){ 371 ierr = PetscLogEventBegin(MAT_MatTransposeMultSymbolic,A,B,0,0);CHKERRQ(ierr); 372 ierr = MatMatMultSymbolic_Elemental(A,B,1.0,C);CHKERRQ(ierr); 373 ierr = PetscLogEventEnd(MAT_MatTransposeMultSymbolic,A,B,0,0);CHKERRQ(ierr); 374 } 375 ierr = PetscLogEventBegin(MAT_MatTransposeMultNumeric,A,B,0,0);CHKERRQ(ierr); 376 ierr = MatMatTransposeMultNumeric_Elemental(A,B,*C);CHKERRQ(ierr); 377 ierr = PetscLogEventEnd(MAT_MatTransposeMultNumeric,A,B,0,0);CHKERRQ(ierr); 378 PetscFunctionReturn(0); 379 } 380 381 #undef __FUNCT__ 382 #define __FUNCT__ "MatGetDiagonal_Elemental" 383 static PetscErrorCode MatGetDiagonal_Elemental(Mat A,Vec D) 384 { 385 PetscInt i,nrows,ncols,nD,rrank,ridx,crank,cidx; 386 Mat_Elemental *a = (Mat_Elemental*)A->data; 387 PetscErrorCode ierr; 388 PetscElemScalar v; 389 MPI_Comm comm; 390 391 PetscFunctionBegin; 392 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 393 ierr = MatGetSize(A,&nrows,&ncols);CHKERRQ(ierr); 394 nD = nrows>ncols ? ncols : nrows; 395 for (i=0; i<nD; i++) { 396 PetscInt erow,ecol; 397 P2RO(A,0,i,&rrank,&ridx); 398 RO2E(A,0,rrank,ridx,&erow); 399 if (rrank < 0 || ridx < 0 || erow < 0) SETERRQ(comm,PETSC_ERR_PLIB,"Incorrect row translation"); 400 P2RO(A,1,i,&crank,&cidx); 401 RO2E(A,1,crank,cidx,&ecol); 402 if (crank < 0 || cidx < 0 || ecol < 0) SETERRQ(comm,PETSC_ERR_PLIB,"Incorrect col translation"); 403 v = a->emat->Get(erow,ecol); 404 ierr = VecSetValues(D,1,&i,(PetscScalar*)&v,INSERT_VALUES);CHKERRQ(ierr); 405 } 406 ierr = VecAssemblyBegin(D);CHKERRQ(ierr); 407 ierr = VecAssemblyEnd(D);CHKERRQ(ierr); 408 PetscFunctionReturn(0); 409 } 410 411 #undef __FUNCT__ 412 #define __FUNCT__ "MatDiagonalScale_Elemental" 413 static PetscErrorCode MatDiagonalScale_Elemental(Mat X,Vec L,Vec R) 414 { 415 Mat_Elemental *x = (Mat_Elemental*)X->data; 416 const PetscElemScalar *d; 417 PetscErrorCode ierr; 418 419 PetscFunctionBegin; 420 if (L == NULL) { 421 ierr = VecGetArrayRead(R,(const PetscScalar **)&d);CHKERRQ(ierr); 422 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> de(X->cmap->N,1,0,d,X->cmap->n,*x->grid); 423 elem::DiagonalScale(elem::RIGHT,elem::NORMAL,de,*x->emat); 424 ierr = VecRestoreArrayRead(R,(const PetscScalar **)&d);CHKERRQ(ierr); 425 } else { 426 ierr = VecGetArrayRead(L,(const PetscScalar **)&d);CHKERRQ(ierr); 427 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> de(X->rmap->N,1,0,d,X->rmap->n,*x->grid); 428 elem::DiagonalScale(elem::LEFT,elem::NORMAL,de,*x->emat); 429 ierr = VecRestoreArrayRead(L,(const PetscScalar **)&d);CHKERRQ(ierr); 430 } 431 PetscFunctionReturn(0); 432 } 433 434 #undef __FUNCT__ 435 #define __FUNCT__ "MatScale_Elemental" 436 static PetscErrorCode MatScale_Elemental(Mat X,PetscScalar a) 437 { 438 Mat_Elemental *x = (Mat_Elemental*)X->data; 439 440 PetscFunctionBegin; 441 elem::Scal((PetscElemScalar)a,*x->emat); 442 PetscFunctionReturn(0); 443 } 444 445 #undef __FUNCT__ 446 #define __FUNCT__ "MatAXPY_Elemental" 447 static PetscErrorCode MatAXPY_Elemental(Mat Y,PetscScalar a,Mat X,MatStructure str) 448 { 449 Mat_Elemental *x = (Mat_Elemental*)X->data; 450 Mat_Elemental *y = (Mat_Elemental*)Y->data; 451 452 PetscFunctionBegin; 453 elem::Axpy((PetscElemScalar)a,*x->emat,*y->emat); 454 PetscFunctionReturn(0); 455 } 456 457 #undef __FUNCT__ 458 #define __FUNCT__ "MatCopy_Elemental" 459 static PetscErrorCode MatCopy_Elemental(Mat A,Mat B,MatStructure str) 460 { 461 Mat_Elemental *a=(Mat_Elemental*)A->data; 462 Mat_Elemental *b=(Mat_Elemental*)B->data; 463 464 PetscFunctionBegin; 465 elem::Copy(*a->emat,*b->emat); 466 PetscFunctionReturn(0); 467 } 468 469 #undef __FUNCT__ 470 #define __FUNCT__ "MatDuplicate_Elemental" 471 static PetscErrorCode MatDuplicate_Elemental(Mat A,MatDuplicateOption op,Mat *B) 472 { 473 Mat Be; 474 MPI_Comm comm; 475 Mat_Elemental *a=(Mat_Elemental*)A->data; 476 PetscErrorCode ierr; 477 478 PetscFunctionBegin; 479 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 480 ierr = MatCreate(comm,&Be);CHKERRQ(ierr); 481 ierr = MatSetSizes(Be,A->rmap->n,A->cmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 482 ierr = MatSetType(Be,MATELEMENTAL);CHKERRQ(ierr); 483 ierr = MatSetUp(Be);CHKERRQ(ierr); 484 *B = Be; 485 if (op == MAT_COPY_VALUES) { 486 Mat_Elemental *b=(Mat_Elemental*)Be->data; 487 elem::Copy(*a->emat,*b->emat); 488 } 489 Be->assembled = PETSC_TRUE; 490 PetscFunctionReturn(0); 491 } 492 493 #undef __FUNCT__ 494 #define __FUNCT__ "MatTranspose_Elemental" 495 static PetscErrorCode MatTranspose_Elemental(Mat A,MatReuse reuse,Mat *B) 496 { 497 Mat Be; 498 PetscErrorCode ierr; 499 MPI_Comm comm; 500 Mat_Elemental *a = (Mat_Elemental*)A->data, *b; 501 502 PetscFunctionBegin; 503 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 504 /* Only out-of-place supported */ 505 if (reuse == MAT_INITIAL_MATRIX){ 506 ierr = MatCreate(comm,&Be);CHKERRQ(ierr); 507 ierr = MatSetSizes(Be,A->cmap->n,A->rmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 508 ierr = MatSetType(Be,MATELEMENTAL);CHKERRQ(ierr); 509 ierr = MatSetUp(Be);CHKERRQ(ierr); 510 *B = Be; 511 } 512 b = (Mat_Elemental*)Be->data; 513 elem::Transpose(*a->emat,*b->emat); 514 Be->assembled = PETSC_TRUE; 515 PetscFunctionReturn(0); 516 } 517 518 #undef __FUNCT__ 519 #define __FUNCT__ "MatConjugate_Elemental" 520 static PetscErrorCode MatConjugate_Elemental(Mat A) 521 { 522 Mat_Elemental *a = (Mat_Elemental*)A->data; 523 524 PetscFunctionBegin; 525 elem::Conjugate(*a->emat); 526 PetscFunctionReturn(0); 527 } 528 529 #undef __FUNCT__ 530 #define __FUNCT__ "MatHermitianTranspose_Elemental" 531 static PetscErrorCode MatHermitianTranspose_Elemental(Mat A,MatReuse reuse,Mat *B) 532 { 533 Mat Be; 534 PetscErrorCode ierr; 535 MPI_Comm comm; 536 Mat_Elemental *a = (Mat_Elemental*)A->data, *b; 537 538 PetscFunctionBegin; 539 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 540 /* Only out-of-place supported */ 541 if (reuse == MAT_INITIAL_MATRIX){ 542 ierr = MatCreate(comm,&Be);CHKERRQ(ierr); 543 ierr = MatSetSizes(Be,A->cmap->n,A->rmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 544 ierr = MatSetType(Be,MATELEMENTAL);CHKERRQ(ierr); 545 ierr = MatSetUp(Be);CHKERRQ(ierr); 546 *B = Be; 547 } 548 b = (Mat_Elemental*)Be->data; 549 elem::Adjoint(*a->emat,*b->emat); 550 Be->assembled = PETSC_TRUE; 551 PetscFunctionReturn(0); 552 } 553 554 #undef __FUNCT__ 555 #define __FUNCT__ "MatSolve_Elemental" 556 static PetscErrorCode MatSolve_Elemental(Mat A,Vec B,Vec X) 557 { 558 Mat_Elemental *a = (Mat_Elemental*)A->data; 559 PetscErrorCode ierr; 560 PetscElemScalar *x; 561 562 PetscFunctionBegin; 563 ierr = VecCopy(B,X);CHKERRQ(ierr); 564 ierr = VecGetArray(X,(PetscScalar **)&x);CHKERRQ(ierr); 565 elem::DistMatrix<PetscElemScalar,elem::VC,elem::STAR> xe(A->rmap->N,1,0,x,A->rmap->n,*a->grid); 566 elem::DistMatrix<PetscElemScalar,elem::MC,elem::MR> xer = xe; 567 switch (A->factortype) { 568 case MAT_FACTOR_LU: 569 if ((*a->pivot).AllocatedMemory()) { 570 elem::SolveAfterLU(elem::NORMAL,*a->emat,*a->pivot,xer); 571 elem::Copy(xer,xe); 572 } else { 573 elem::SolveAfterLU(elem::NORMAL,*a->emat,xer); 574 elem::Copy(xer,xe); 575 } 576 break; 577 case MAT_FACTOR_CHOLESKY: 578 elem::SolveAfterCholesky(elem::UPPER,elem::NORMAL,*a->emat,xer); 579 elem::Copy(xer,xe); 580 break; 581 default: 582 SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP,"Unfactored Matrix or Unsupported MatFactorType"); 583 break; 584 } 585 ierr = VecRestoreArray(X,(PetscScalar **)&x);CHKERRQ(ierr); 586 PetscFunctionReturn(0); 587 } 588 589 #undef __FUNCT__ 590 #define __FUNCT__ "MatSolveAdd_Elemental" 591 static PetscErrorCode MatSolveAdd_Elemental(Mat A,Vec B,Vec Y,Vec X) 592 { 593 PetscErrorCode ierr; 594 595 PetscFunctionBegin; 596 ierr = MatSolve_Elemental(A,B,X);CHKERRQ(ierr); 597 ierr = VecAXPY(X,1,Y);CHKERRQ(ierr); 598 PetscFunctionReturn(0); 599 } 600 601 #undef __FUNCT__ 602 #define __FUNCT__ "MatMatSolve_Elemental" 603 static PetscErrorCode MatMatSolve_Elemental(Mat A,Mat B,Mat X) 604 { 605 Mat_Elemental *a=(Mat_Elemental*)A->data; 606 Mat_Elemental *b=(Mat_Elemental*)B->data; 607 Mat_Elemental *x=(Mat_Elemental*)X->data; 608 609 PetscFunctionBegin; 610 elem::Copy(*b->emat,*x->emat); 611 switch (A->factortype) { 612 case MAT_FACTOR_LU: 613 if ((*a->pivot).AllocatedMemory()) { 614 elem::SolveAfterLU(elem::NORMAL,*a->emat,*a->pivot,*x->emat); 615 } else { 616 elem::SolveAfterLU(elem::NORMAL,*a->emat,*x->emat); 617 } 618 break; 619 case MAT_FACTOR_CHOLESKY: 620 elem::SolveAfterCholesky(elem::UPPER,elem::NORMAL,*a->emat,*x->emat); 621 break; 622 default: 623 SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP,"Unfactored Matrix or Unsupported MatFactorType"); 624 break; 625 } 626 PetscFunctionReturn(0); 627 } 628 629 #undef __FUNCT__ 630 #define __FUNCT__ "MatLUFactor_Elemental" 631 static PetscErrorCode MatLUFactor_Elemental(Mat A,IS row,IS col,const MatFactorInfo *info) 632 { 633 Mat_Elemental *a = (Mat_Elemental*)A->data; 634 635 PetscFunctionBegin; 636 if (info->dtcol){ 637 elem::LU(*a->emat,*a->pivot); 638 } else { 639 elem::LU(*a->emat); 640 } 641 A->factortype = MAT_FACTOR_LU; 642 A->assembled = PETSC_TRUE; 643 PetscFunctionReturn(0); 644 } 645 646 #undef __FUNCT__ 647 #define __FUNCT__ "MatLUFactorNumeric_Elemental" 648 static PetscErrorCode MatLUFactorNumeric_Elemental(Mat F,Mat A,const MatFactorInfo *info) 649 { 650 PetscErrorCode ierr; 651 652 PetscFunctionBegin; 653 ierr = MatCopy(A,F,SAME_NONZERO_PATTERN);CHKERRQ(ierr); 654 ierr = MatLUFactor_Elemental(F,0,0,info);CHKERRQ(ierr); 655 PetscFunctionReturn(0); 656 } 657 658 #undef __FUNCT__ 659 #define __FUNCT__ "MatLUFactorSymbolic_Elemental" 660 static PetscErrorCode MatLUFactorSymbolic_Elemental(Mat F,Mat A,IS r,IS c,const MatFactorInfo *info) 661 { 662 PetscFunctionBegin; 663 /* F is create and allocated by MatGetFactor_elemental_petsc(), skip this routine. */ 664 PetscFunctionReturn(0); 665 } 666 667 #undef __FUNCT__ 668 #define __FUNCT__ "MatCholeskyFactor_Elemental" 669 static PetscErrorCode MatCholeskyFactor_Elemental(Mat A,IS perm,const MatFactorInfo *info) 670 { 671 Mat_Elemental *a = (Mat_Elemental*)A->data; 672 elem::DistMatrix<PetscElemScalar,elem::MC,elem::STAR> d; 673 674 PetscFunctionBegin; 675 elem::Cholesky(elem::UPPER,*a->emat); 676 A->factortype = MAT_FACTOR_CHOLESKY; 677 A->assembled = PETSC_TRUE; 678 PetscFunctionReturn(0); 679 } 680 681 #undef __FUNCT__ 682 #define __FUNCT__ "MatCholeskyFactorNumeric_Elemental" 683 static PetscErrorCode MatCholeskyFactorNumeric_Elemental(Mat F,Mat A,const MatFactorInfo *info) 684 { 685 PetscErrorCode ierr; 686 687 PetscFunctionBegin; 688 ierr = MatCopy(A,F,SAME_NONZERO_PATTERN);CHKERRQ(ierr); 689 ierr = MatCholeskyFactor_Elemental(F,0,info);CHKERRQ(ierr); 690 PetscFunctionReturn(0); 691 } 692 693 #undef __FUNCT__ 694 #define __FUNCT__ "MatCholeskyFactorSymbolic_Elemental" 695 static PetscErrorCode MatCholeskyFactorSymbolic_Elemental(Mat F,Mat A,IS perm,const MatFactorInfo *info) 696 { 697 PetscFunctionBegin; 698 /* F is create and allocated by MatGetFactor_elemental_petsc(), skip this routine. */ 699 PetscFunctionReturn(0); 700 } 701 702 EXTERN_C_BEGIN 703 #undef __FUNCT__ 704 #define __FUNCT__ "MatFactorGetSolverPackage_elemental_elemental" 705 PetscErrorCode MatFactorGetSolverPackage_elemental_elemental(Mat A,const MatSolverPackage *type) 706 { 707 PetscFunctionBegin; 708 *type = MATSOLVERELEMENTAL; 709 PetscFunctionReturn(0); 710 } 711 EXTERN_C_END 712 713 EXTERN_C_BEGIN 714 #undef __FUNCT__ 715 #define __FUNCT__ "MatGetFactor_elemental_elemental" 716 static PetscErrorCode MatGetFactor_elemental_elemental(Mat A,MatFactorType ftype,Mat *F) 717 { 718 Mat B; 719 PetscErrorCode ierr; 720 721 PetscFunctionBegin; 722 /* Create the factorization matrix */ 723 ierr = MatCreate(PetscObjectComm((PetscObject)A),&B);CHKERRQ(ierr); 724 ierr = MatSetSizes(B,A->rmap->n,A->cmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 725 ierr = MatSetType(B,MATELEMENTAL);CHKERRQ(ierr); 726 ierr = MatSetUp(B);CHKERRQ(ierr); 727 B->factortype = ftype; 728 ierr = PetscObjectComposeFunctionDynamic((PetscObject)B,"MatFactorGetSolverPackage_C","MatFactorGetSolverPackage_elemental_elemental",MatFactorGetSolverPackage_elemental_elemental);CHKERRQ(ierr); 729 *F = B; 730 PetscFunctionReturn(0); 731 } 732 EXTERN_C_END 733 734 #undef __FUNCT__ 735 #define __FUNCT__ "MatNorm_Elemental" 736 static PetscErrorCode MatNorm_Elemental(Mat A,NormType type,PetscReal *nrm) 737 { 738 Mat_Elemental *a=(Mat_Elemental*)A->data; 739 740 PetscFunctionBegin; 741 switch (type){ 742 case NORM_1: 743 *nrm = elem::Norm(*a->emat,elem::ONE_NORM); 744 break; 745 case NORM_FROBENIUS: 746 *nrm = elem::Norm(*a->emat,elem::FROBENIUS_NORM); 747 break; 748 case NORM_INFINITY: 749 *nrm = elem::Norm(*a->emat,elem::INFINITY_NORM); 750 break; 751 default: 752 printf("Error: unsupported norm type!\n"); 753 } 754 PetscFunctionReturn(0); 755 } 756 757 #undef __FUNCT__ 758 #define __FUNCT__ "MatZeroEntries_Elemental" 759 static PetscErrorCode MatZeroEntries_Elemental(Mat A) 760 { 761 Mat_Elemental *a=(Mat_Elemental*)A->data; 762 763 PetscFunctionBegin; 764 elem::Zero(*a->emat); 765 PetscFunctionReturn(0); 766 } 767 768 EXTERN_C_BEGIN 769 #undef __FUNCT__ 770 #define __FUNCT__ "MatGetOwnershipIS_Elemental" 771 static PetscErrorCode MatGetOwnershipIS_Elemental(Mat A,IS *rows,IS *cols) 772 { 773 Mat_Elemental *a = (Mat_Elemental*)A->data; 774 PetscErrorCode ierr; 775 PetscInt i,m,shift,stride,*idx; 776 777 PetscFunctionBegin; 778 if (rows) { 779 m = a->emat->LocalHeight(); 780 shift = a->emat->ColShift(); 781 stride = a->emat->ColStride(); 782 ierr = PetscMalloc(m*sizeof(PetscInt),&idx);CHKERRQ(ierr); 783 for (i=0; i<m; i++) { 784 PetscInt rank,offset; 785 E2RO(A,0,shift+i*stride,&rank,&offset); 786 RO2P(A,0,rank,offset,&idx[i]); 787 } 788 ierr = ISCreateGeneral(PETSC_COMM_SELF,m,idx,PETSC_OWN_POINTER,rows);CHKERRQ(ierr); 789 } 790 if (cols) { 791 m = a->emat->LocalWidth(); 792 shift = a->emat->RowShift(); 793 stride = a->emat->RowStride(); 794 ierr = PetscMalloc(m*sizeof(PetscInt),&idx);CHKERRQ(ierr); 795 for (i=0; i<m; i++) { 796 PetscInt rank,offset; 797 E2RO(A,1,shift+i*stride,&rank,&offset); 798 RO2P(A,1,rank,offset,&idx[i]); 799 } 800 ierr = ISCreateGeneral(PETSC_COMM_SELF,m,idx,PETSC_OWN_POINTER,cols);CHKERRQ(ierr); 801 } 802 PetscFunctionReturn(0); 803 } 804 EXTERN_C_END 805 806 #undef __FUNCT__ 807 #define __FUNCT__ "MatConvert_Elemental_Dense" 808 static PetscErrorCode MatConvert_Elemental_Dense(Mat A,MatType newtype,MatReuse reuse,Mat *B) 809 { 810 Mat Bmpi; 811 Mat_Elemental *a = (Mat_Elemental*)A->data; 812 MPI_Comm comm; 813 PetscErrorCode ierr; 814 PetscInt rrank,ridx,crank,cidx,nrows,ncols,i,j; 815 PetscElemScalar v; 816 817 PetscFunctionBegin; 818 ierr = PetscObjectGetComm((PetscObject)A,&comm);CHKERRQ(ierr); 819 if (strcmp(newtype,MATDENSE) && strcmp(newtype,MATSEQDENSE) && strcmp(newtype,MATMPIDENSE)) { 820 SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP,"Unsupported New MatType: must be MATDENSE, MATSEQDENSE or MATMPIDENSE"); 821 } 822 ierr = MatCreate(comm,&Bmpi);CHKERRQ(ierr); 823 ierr = MatSetSizes(Bmpi,A->rmap->n,A->cmap->n,PETSC_DECIDE,PETSC_DECIDE);CHKERRQ(ierr); 824 ierr = MatSetType(Bmpi,MATDENSE);CHKERRQ(ierr); 825 ierr = MatSetUp(Bmpi);CHKERRQ(ierr); 826 ierr = MatGetSize(A,&nrows,&ncols);CHKERRQ(ierr); 827 for (i=0; i<nrows; i++) { 828 PetscInt erow,ecol; 829 P2RO(A,0,i,&rrank,&ridx); 830 RO2E(A,0,rrank,ridx,&erow); 831 if (rrank < 0 || ridx < 0 || erow < 0) SETERRQ(comm,PETSC_ERR_PLIB,"Incorrect row translation"); 832 for (j=0; j<ncols; j++) { 833 P2RO(A,1,j,&crank,&cidx); 834 RO2E(A,1,crank,cidx,&ecol); 835 if (crank < 0 || cidx < 0 || ecol < 0) SETERRQ(comm,PETSC_ERR_PLIB,"Incorrect col translation"); 836 v = a->emat->Get(erow,ecol); 837 ierr = MatSetValues(Bmpi,1,&i,1,&j,(PetscScalar *)&v,INSERT_VALUES);CHKERRQ(ierr); 838 } 839 } 840 ierr = MatAssemblyBegin(Bmpi,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 841 ierr = MatAssemblyEnd(Bmpi,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 842 if (reuse == MAT_REUSE_MATRIX) { 843 ierr = MatHeaderReplace(A,Bmpi);CHKERRQ(ierr); 844 } else { 845 *B = Bmpi; 846 } 847 PetscFunctionReturn(0); 848 } 849 850 #undef __FUNCT__ 851 #define __FUNCT__ "MatDestroy_Elemental" 852 static PetscErrorCode MatDestroy_Elemental(Mat A) 853 { 854 Mat_Elemental *a = (Mat_Elemental*)A->data; 855 PetscErrorCode ierr; 856 Mat_Elemental_Grid *commgrid; 857 PetscBool flg; 858 MPI_Comm icomm; 859 860 PetscFunctionBegin; 861 a->interface->Detach(); 862 delete a->interface; 863 delete a->esubmat; 864 delete a->emat; 865 866 elem::mpi::Comm cxxcomm(PetscObjectComm((PetscObject)A)); 867 ierr = PetscCommDuplicate(cxxcomm,&icomm,NULL);CHKERRQ(ierr); 868 ierr = MPI_Attr_get(icomm,Petsc_Elemental_keyval,(void**)&commgrid,(int*)&flg);CHKERRQ(ierr); 869 if (--commgrid->grid_refct == 0) { 870 delete commgrid->grid; 871 ierr = PetscFree(commgrid);CHKERRQ(ierr); 872 } 873 ierr = PetscCommDestroy(&icomm);CHKERRQ(ierr); 874 ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatGetOwnershipIS_C","",NULL);CHKERRQ(ierr); 875 ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatGetFactor_petsc_C","",NULL);CHKERRQ(ierr); 876 ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatFactorGetSolverPackage_C","",NULL);CHKERRQ(ierr); 877 ierr = PetscFree(A->data);CHKERRQ(ierr); 878 PetscFunctionReturn(0); 879 } 880 881 #undef __FUNCT__ 882 #define __FUNCT__ "MatSetUp_Elemental" 883 PetscErrorCode MatSetUp_Elemental(Mat A) 884 { 885 Mat_Elemental *a = (Mat_Elemental*)A->data; 886 PetscErrorCode ierr; 887 PetscMPIInt rsize,csize; 888 889 PetscFunctionBegin; 890 ierr = PetscLayoutSetUp(A->rmap);CHKERRQ(ierr); 891 ierr = PetscLayoutSetUp(A->cmap);CHKERRQ(ierr); 892 893 a->emat->ResizeTo(A->rmap->N,A->cmap->N);CHKERRQ(ierr); 894 elem::Zero(*a->emat); 895 896 ierr = MPI_Comm_size(A->rmap->comm,&rsize);CHKERRQ(ierr); 897 ierr = MPI_Comm_size(A->cmap->comm,&csize);CHKERRQ(ierr); 898 if (csize != rsize) SETERRQ(PetscObjectComm((PetscObject)A),PETSC_ERR_ARG_INCOMP,"Cannot use row and column communicators of different sizes"); 899 a->commsize = rsize; 900 a->mr[0] = A->rmap->N % rsize; if (!a->mr[0]) a->mr[0] = rsize; 901 a->mr[1] = A->cmap->N % csize; if (!a->mr[1]) a->mr[1] = csize; 902 a->m[0] = A->rmap->N / rsize + (a->mr[0] != rsize); 903 a->m[1] = A->cmap->N / csize + (a->mr[1] != csize); 904 PetscFunctionReturn(0); 905 } 906 907 #undef __FUNCT__ 908 #define __FUNCT__ "MatAssemblyBegin_Elemental" 909 PetscErrorCode MatAssemblyBegin_Elemental(Mat A, MatAssemblyType type) 910 { 911 Mat_Elemental *a = (Mat_Elemental*)A->data; 912 913 PetscFunctionBegin; 914 a->interface->Detach(); 915 a->interface->Attach(elem::LOCAL_TO_GLOBAL,*(a->emat)); 916 PetscFunctionReturn(0); 917 } 918 919 #undef __FUNCT__ 920 #define __FUNCT__ "MatAssemblyEnd_Elemental" 921 PetscErrorCode MatAssemblyEnd_Elemental(Mat A, MatAssemblyType type) 922 { 923 PetscFunctionBegin; 924 /* Currently does nothing */ 925 PetscFunctionReturn(0); 926 } 927 928 /* -------------------------------------------------------------------*/ 929 static struct _MatOps MatOps_Values = { 930 MatSetValues_Elemental, 931 0, 932 0, 933 MatMult_Elemental, 934 /* 4*/ MatMultAdd_Elemental, 935 MatMultTranspose_Elemental, 936 MatMultTransposeAdd_Elemental, 937 MatSolve_Elemental, 938 MatSolveAdd_Elemental, 939 0, //MatSolveTranspose_Elemental, 940 /*10*/ 0, //MatSolveTransposeAdd_Elemental, 941 MatLUFactor_Elemental, 942 MatCholeskyFactor_Elemental, 943 0, 944 MatTranspose_Elemental, 945 /*15*/ MatGetInfo_Elemental, 946 0, 947 MatGetDiagonal_Elemental, 948 MatDiagonalScale_Elemental, 949 MatNorm_Elemental, 950 /*20*/ MatAssemblyBegin_Elemental, 951 MatAssemblyEnd_Elemental, 952 0, //MatSetOption_Elemental, 953 MatZeroEntries_Elemental, 954 /*24*/ 0, 955 MatLUFactorSymbolic_Elemental, 956 MatLUFactorNumeric_Elemental, 957 MatCholeskyFactorSymbolic_Elemental, 958 MatCholeskyFactorNumeric_Elemental, 959 /*29*/ MatSetUp_Elemental, 960 0, 961 0, 962 0, 963 0, 964 /*34*/ MatDuplicate_Elemental, 965 0, 966 0, 967 0, 968 0, 969 /*39*/ MatAXPY_Elemental, 970 0, 971 0, 972 0, 973 MatCopy_Elemental, 974 /*44*/ 0, 975 MatScale_Elemental, 976 0, 977 0, 978 0, 979 /*49*/ 0, 980 0, 981 0, 982 0, 983 0, 984 /*54*/ 0, 985 0, 986 0, 987 0, 988 0, 989 /*59*/ 0, 990 MatDestroy_Elemental, 991 MatView_Elemental, 992 0, 993 0, 994 /*64*/ 0, 995 0, 996 0, 997 0, 998 0, 999 /*69*/ 0, 1000 0, 1001 MatConvert_Elemental_Dense, 1002 0, 1003 0, 1004 /*74*/ 0, 1005 0, 1006 0, 1007 0, 1008 0, 1009 /*79*/ 0, 1010 0, 1011 0, 1012 0, 1013 0, 1014 /*84*/ 0, 1015 0, 1016 0, 1017 0, 1018 0, 1019 /*89*/ MatMatMult_Elemental, 1020 MatMatMultSymbolic_Elemental, 1021 MatMatMultNumeric_Elemental, 1022 0, 1023 0, 1024 /*94*/ 0, 1025 MatMatTransposeMult_Elemental, 1026 MatMatTransposeMultSymbolic_Elemental, 1027 MatMatTransposeMultNumeric_Elemental, 1028 0, 1029 /*99*/ 0, 1030 0, 1031 0, 1032 MatConjugate_Elemental, 1033 0, 1034 /*104*/0, 1035 0, 1036 0, 1037 0, 1038 0, 1039 /*109*/MatMatSolve_Elemental, 1040 0, 1041 0, 1042 0, 1043 0, 1044 /*114*/0, 1045 0, 1046 0, 1047 0, 1048 0, 1049 /*119*/0, 1050 MatHermitianTranspose_Elemental, 1051 0, 1052 0, 1053 0, 1054 /*124*/0, 1055 0, 1056 0, 1057 0, 1058 0, 1059 /*129*/0, 1060 0, 1061 0, 1062 0, 1063 0, 1064 /*134*/0, 1065 0, 1066 0, 1067 0, 1068 0 1069 }; 1070 1071 /*MC 1072 MATELEMENTAL = "elemental" - A matrix type for dense matrices using the Elemental package 1073 1074 Options Database Keys: 1075 . -mat_type elemental - sets the matrix type to "elemental" during a call to MatSetFromOptions() 1076 . -mat_elemental_grid_height - sets Grid Height 1077 . -mat_elemental_grid_width - sets Grid Width 1078 1079 Level: beginner 1080 1081 .seealso: MATDENSE 1082 M*/ 1083 1084 #undef __FUNCT__ 1085 #define __FUNCT__ "MatCreate_Elemental" 1086 PETSC_EXTERN_C PetscErrorCode MatCreate_Elemental(Mat A) 1087 { 1088 Mat_Elemental *a; 1089 PetscErrorCode ierr; 1090 PetscBool flg,flg1,flg2; 1091 Mat_Elemental_Grid *commgrid; 1092 MPI_Comm icomm; 1093 PetscInt optv1,optv2; 1094 1095 PetscFunctionBegin; 1096 ierr = PetscElementalInitializePackage(NULL);CHKERRQ(ierr); 1097 ierr = PetscMemcpy(A->ops,&MatOps_Values,sizeof(struct _MatOps));CHKERRQ(ierr); 1098 A->insertmode = NOT_SET_VALUES; 1099 1100 ierr = PetscNewLog(A,Mat_Elemental,&a);CHKERRQ(ierr); 1101 A->data = (void*)a; 1102 1103 /* Set up the elemental matrix */ 1104 elem::mpi::Comm cxxcomm(PetscObjectComm((PetscObject)A)); 1105 1106 /* Grid needs to be shared between multiple Mats on the same communicator, implement by attribute caching on the MPI_Comm */ 1107 if (Petsc_Elemental_keyval == MPI_KEYVAL_INVALID) { 1108 ierr = MPI_Keyval_create(MPI_NULL_COPY_FN,MPI_NULL_DELETE_FN,&Petsc_Elemental_keyval,(void*)0); 1109 } 1110 ierr = PetscCommDuplicate(cxxcomm,&icomm,NULL);CHKERRQ(ierr); 1111 ierr = MPI_Attr_get(icomm,Petsc_Elemental_keyval,(void**)&commgrid,(int*)&flg);CHKERRQ(ierr); 1112 if (!flg) { 1113 ierr = PetscNewLog(A,Mat_Elemental_Grid,&commgrid);CHKERRQ(ierr); 1114 1115 ierr = PetscOptionsBegin(PetscObjectComm((PetscObject)A),((PetscObject)A)->prefix,"Elemental Options","Mat");CHKERRQ(ierr); 1116 /* displayed default grid sizes (CommSize,1) are set by us arbitrarily until elem::Grid() is called */ 1117 ierr = PetscOptionsInt("-mat_elemental_grid_height","Grid Height","None",elem::mpi::CommSize(cxxcomm),&optv1,&flg1);CHKERRQ(ierr); 1118 ierr = PetscOptionsInt("-mat_elemental_grid_width","Grid Width","None",1,&optv2,&flg2);CHKERRQ(ierr); 1119 if (flg1 || flg2) { 1120 if (optv1*optv2 != elem::mpi::CommSize(cxxcomm)) { 1121 SETERRQ(PetscObjectComm((PetscObject)A),PETSC_ERR_ARG_INCOMP,"Grid Height times Grid Width must equal CommSize"); 1122 } 1123 commgrid->grid = new elem::Grid(cxxcomm,optv1,optv2); /* use user-provided grid sizes */ 1124 } else { 1125 commgrid->grid = new elem::Grid(cxxcomm); /* use Elemental default grid sizes */ 1126 } 1127 commgrid->grid_refct = 1; 1128 ierr = MPI_Attr_put(icomm,Petsc_Elemental_keyval,(void*)commgrid);CHKERRQ(ierr); 1129 PetscOptionsEnd(); 1130 } else { 1131 commgrid->grid_refct++; 1132 } 1133 ierr = PetscCommDestroy(&icomm);CHKERRQ(ierr); 1134 a->grid = commgrid->grid; 1135 a->emat = new elem::DistMatrix<PetscElemScalar>(*a->grid); 1136 a->esubmat = new elem::Matrix<PetscElemScalar>(1,1); 1137 a->interface = new elem::AxpyInterface<PetscElemScalar>; 1138 a->pivot = new elem::DistMatrix<PetscInt,elem::VC,elem::STAR>; 1139 1140 /* build cache for off array entries formed */ 1141 a->interface->Attach(elem::LOCAL_TO_GLOBAL,*(a->emat)); 1142 1143 ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatGetOwnershipIS_C","MatGetOwnershipIS_Elemental",MatGetOwnershipIS_Elemental);CHKERRQ(ierr); 1144 ierr = PetscObjectComposeFunctionDynamic((PetscObject)A,"MatGetFactor_elemental_C","MatGetFactor_elemental_elemental",MatGetFactor_elemental_elemental);CHKERRQ(ierr); 1145 1146 ierr = PetscObjectChangeTypeName((PetscObject)A,MATELEMENTAL);CHKERRQ(ierr); 1147 PetscFunctionReturn(0); 1148 } 1149 1150