1 /* 2 This provides a few of the MPI-uni functions that cannot be implemented 3 with C macros 4 */ 5 #include <mpiuni/mpi.h> 6 #if !defined(__MPIUNI_H) 7 #error "Wrong mpi.h included! require mpi.h from MPIUNI" 8 #endif 9 #if !defined(PETSC_STDCALL) 10 #define PETSC_STDCALL 11 #endif 12 #include <stdio.h> 13 #if defined(PETSC_HAVE_STDLIB_H) 14 #include <stdlib.h> 15 #endif 16 17 #define MPI_SUCCESS 0 18 #define MPI_FAILURE 1 19 void *MPIUNI_TMP = 0; 20 int MPIUNI_DATASIZE[10] = {sizeof(int),sizeof(float),sizeof(double),2*sizeof(double),sizeof(char),2*sizeof(int),4*sizeof(double),4,8,2*sizeof(double)}; 21 /* 22 With MPI Uni there are exactly four distinct communicators: 23 MPI_COMM_SELF, MPI_COMM_WORLD, and a MPI_Comm_dup() of each of these (duplicates of duplicates return the same communictor) 24 25 MPI_COMM_SELF and MPI_COMM_WORLD are MPI_Comm_free() in MPI_Finalize() but in general with PETSc, 26 the other communicators are freed once the last PETSc object is freed (before MPI_Finalize()). 27 28 */ 29 #define MAX_ATTR 128 30 31 typedef struct { 32 void *attribute_val; 33 int active; 34 } MPI_Attr; 35 36 typedef struct { 37 void *extra_state; 38 MPI_Delete_function *del; 39 } MPI_Attr_keyval; 40 41 static MPI_Attr_keyval attr_keyval[MAX_ATTR]; 42 static MPI_Attr attr[4][MAX_ATTR]; 43 static int num_attr = 1,mpi_tag_ub = 100000000; 44 45 #if defined(__cplusplus) 46 extern "C" { 47 #endif 48 49 /* 50 To avoid problems with prototypes to the system memcpy() it is duplicated here 51 */ 52 int MPIUNI_Memcpy(void *a,const void* b,int n) { 53 int i; 54 char *aa= (char*)a; 55 char *bb= (char*)b; 56 57 if (b == MPI_IN_PLACE) return 0; 58 for (i=0; i<n; i++) aa[i] = bb[i]; 59 return 0; 60 } 61 62 /* 63 Used to set the built-in MPI_TAG_UB attribute 64 */ 65 static int Keyval_setup(void) 66 { 67 attr[MPI_COMM_WORLD-1][0].active = 1; 68 attr[MPI_COMM_WORLD-1][0].attribute_val = &mpi_tag_ub; 69 attr[MPI_COMM_SELF-1][0].active = 1; 70 attr[MPI_COMM_SELF-1][0].attribute_val = &mpi_tag_ub; 71 return 0; 72 } 73 74 int MPI_Keyval_create(MPI_Copy_function *copy_fn,MPI_Delete_function *delete_fn,int *keyval,void *extra_state) 75 { 76 if (num_attr >= MAX_ATTR) MPI_Abort(MPI_COMM_WORLD,1); 77 78 attr_keyval[num_attr].extra_state = extra_state; 79 attr_keyval[num_attr].del = delete_fn; 80 *keyval = num_attr++; 81 return 0; 82 } 83 84 int MPI_Keyval_free(int *keyval) 85 { 86 attr_keyval[*keyval].extra_state = 0; 87 attr_keyval[*keyval].del = 0; 88 *keyval = 0; 89 return MPI_SUCCESS; 90 } 91 92 int MPI_Attr_put(MPI_Comm comm,int keyval,void *attribute_val) 93 { 94 if (comm-1 < 0 || comm-1 > 3) return 1; 95 attr[comm-1][keyval].active = 1; 96 attr[comm-1][keyval].attribute_val = attribute_val; 97 return MPI_SUCCESS; 98 } 99 100 int MPI_Attr_delete(MPI_Comm comm,int keyval) 101 { 102 if (comm-1 < 0 || comm-1 > 3) return 1; 103 if (attr[comm-1][keyval].active && attr_keyval[keyval].del) { 104 void* save_attribute_val = attr[comm-1][keyval].attribute_val; 105 attr[comm-1][keyval].active = 0; 106 attr[comm-1][keyval].attribute_val = 0; 107 (*(attr_keyval[keyval].del))(comm,keyval,save_attribute_val,attr_keyval[keyval].extra_state); 108 } 109 return MPI_SUCCESS; 110 } 111 112 int MPI_Attr_get(MPI_Comm comm,int keyval,void *attribute_val,int *flag) 113 { 114 if (comm-1 < 0 || comm-1 > 3) return 1; 115 if (!keyval) Keyval_setup(); 116 *flag = attr[comm-1][keyval].active; 117 *(void **)attribute_val = attr[comm-1][keyval].attribute_val; 118 return MPI_SUCCESS; 119 } 120 121 static int dups[4] = {1,1,1,1}; 122 int MPI_Comm_create(MPI_Comm comm,MPI_Group group,MPI_Comm *newcomm) 123 { 124 if (comm-1 < 0 || comm-1 > 3) return 1; 125 dups[comm-1]++; 126 *newcomm = comm; 127 return MPI_SUCCESS; 128 } 129 130 int MPI_Comm_dup(MPI_Comm comm,MPI_Comm *out) 131 { 132 if (comm-1 < 0 || comm-1 > 3) return 1; 133 if (comm == MPI_COMM_WORLD || comm == MPI_COMM_SELF) { 134 *out = comm + 2; 135 } else { 136 *out = comm; 137 dups[comm-1]++; 138 } 139 return 0; 140 } 141 142 int MPI_Comm_free(MPI_Comm *comm) 143 { 144 int i; 145 146 if (*comm-1 < 0 || *comm-1 > 3) return 1; 147 if (--dups[*comm-1]) return MPI_SUCCESS; 148 for (i=0; i<num_attr; i++) { 149 if (attr[*comm-1][i].active && attr_keyval[i].del) { 150 (*attr_keyval[i].del)(*comm,i,attr[*comm-1][i].attribute_val,attr_keyval[i].extra_state); 151 } 152 attr[*comm-1][i].active = 0; 153 attr[*comm-1][i].attribute_val = 0; 154 } 155 *comm = 0; 156 return MPI_SUCCESS; 157 } 158 159 int MPI_Comm_size(MPI_Comm comm, int*size) 160 { 161 *size=1; 162 return MPI_SUCCESS; 163 } 164 165 int MPI_Comm_rank(MPI_Comm comm, int*rank) 166 { 167 *rank=0; 168 return MPI_SUCCESS; 169 } 170 171 int MPI_Abort(MPI_Comm comm,int errorcode) 172 { 173 abort(); 174 return MPI_SUCCESS; 175 } 176 177 /* --------------------------------------------------------------------------*/ 178 179 static int MPI_was_initialized = 0; 180 static int MPI_was_finalized = 0; 181 182 int MPI_Init(int *argc, char ***argv) 183 { 184 if (MPI_was_initialized) return 1; 185 if (MPI_was_finalized) return 1; 186 MPI_was_initialized = 1; 187 return 0; 188 } 189 190 int MPI_Finalize(void) 191 { 192 MPI_Comm comm; 193 if (MPI_was_finalized) return 1; 194 if (!MPI_was_initialized) return 1; 195 comm = MPI_COMM_WORLD; 196 MPI_Comm_free(&comm); 197 comm = MPI_COMM_SELF; 198 MPI_Comm_free(&comm); 199 MPI_was_finalized = 1; 200 return 0; 201 } 202 203 int MPI_Initialized(int *flag) 204 { 205 *flag = MPI_was_initialized; 206 return 0; 207 } 208 209 int MPI_Finalized(int *flag) 210 { 211 *flag = MPI_was_finalized; 212 return 0; 213 } 214 215 /* ------------------- Fortran versions of several routines ------------------ */ 216 217 #if defined(PETSC_HAVE_FORTRAN_CAPS) 218 #define mpi_init_ MPI_INIT 219 #define mpi_finalize_ MPI_FINALIZE 220 #define mpi_comm_size_ MPI_COMM_SIZE 221 #define mpi_comm_rank_ MPI_COMM_RANK 222 #define mpi_abort_ MPI_ABORT 223 #define mpi_reduce_ MPI_REDUCE 224 #define mpi_allreduce_ MPI_ALLREDUCE 225 #define mpi_barrier_ MPI_BARRIER 226 #define mpi_bcast_ MPI_BCAST 227 #define mpi_gather_ MPI_GATHER 228 #define mpi_allgather_ MPI_ALLGATHER 229 #define mpi_comm_split_ MPI_COMM_SPLIT 230 #define mpi_scan_ MPI_SCAN 231 #define mpi_send_ MPI_SEND 232 #define mpi_recv_ MPI_RECV 233 #define mpi_reduce_scatter_ MPI_REDUCE_SCATTER 234 #define mpi_irecv_ MPI_IRECV 235 #define mpi_isend_ MPI_ISEND 236 #define mpi_sendrecv_ MPI_SENDRECV 237 #define mpi_test_ MPI_TEST 238 #define mpi_waitall_ MPI_WAITALL 239 #define mpi_waitany_ MPI_WAITANY 240 #define mpi_allgatherv_ MPI_ALLGATHERV 241 #define mpi_alltoallv_ MPI_ALLTOALLV 242 #define mpi_comm_create_ MPI_COMM_CREATE 243 #define mpi_address_ MPI_ADDRESS 244 #define mpi_pack_ MPI_PACK 245 #define mpi_unpack_ MPI_UNPACK 246 #define mpi_pack_size_ MPI_PACK_SIZE 247 #define mpi_type_struct_ MPI_TYPE_STRUCT 248 #define mpi_type_commit_ MPI_TYPE_COMMIT 249 #define mpi_wtime_ MPI_WTIME 250 #define mpi_cancel_ MPI_CANCEL 251 #define mpi_comm_dup_ MPI_COMM_DUP 252 #define mpi_comm_free_ MPI_COMM_FREE 253 #define mpi_get_count_ MPI_GET_COUNT 254 #define mpi_get_processor_name_ MPI_GET_PROCESSOR_NAME 255 #define mpi_initialized_ MPI_INITIALIZED 256 #define mpi_iprobe_ MPI_IPROBE 257 #define mpi_probe_ MPI_PROBE 258 #define mpi_request_free_ MPI_REQUEST_FREE 259 #define mpi_ssend_ MPI_SSEND 260 #define mpi_wait_ MPI_WAIT 261 #define mpi_comm_group_ MPI_COMM_GROUP 262 #define mpi_exscan_ MPI_EXSCAN 263 #elif !defined(PETSC_HAVE_FORTRAN_UNDERSCORE) 264 #define mpi_init_ mpi_init 265 #define mpi_finalize_ mpi_finalize 266 #define mpi_comm_size_ mpi_comm_size 267 #define mpi_comm_rank_ mpi_comm_rank 268 #define mpi_abort_ mpi_abort 269 #define mpi_reduce_ mpi_reduce 270 #define mpi_allreduce_ mpi_allreduce 271 #define mpi_barrier_ mpi_barrier 272 #define mpi_bcast_ mpi_bcast 273 #define mpi_gather_ mpi_gather 274 #define mpi_allgather_ mpi_allgather 275 #define mpi_comm_split_ mpi_comm_split 276 #define mpi_scan_ mpi_scan 277 #define mpi_send_ mpi_send 278 #define mpi_recv_ mpi_recv 279 #define mpi_reduce_scatter_ mpi_reduce_scatter 280 #define mpi_irecv_ mpi_irecv 281 #define mpi_isend_ mpi_isend 282 #define mpi_sendrecv_ mpi_sendrecv 283 #define mpi_test_ mpi_test 284 #define mpi_waitall_ mpi_waitall 285 #define mpi_waitany_ mpi_waitany 286 #define mpi_allgatherv_ mpi_allgatherv 287 #define mpi_alltoallv_ mpi_alltoallv 288 #define mpi_comm_create_ mpi_comm_create 289 #define mpi_address_ mpi_address 290 #define mpi_pack_ mpi_pack 291 #define mpi_unpack_ mpi_unpack 292 #define mpi_pack_size_ mpi_pack_size 293 #define mpi_type_struct_ mpi_type_struct 294 #define mpi_type_commit_ mpi_type_commit 295 #define mpi_wtime_ mpi_wtime 296 #define mpi_cancel_ mpi_cancel 297 #define mpi_comm_dup_ mpi_comm_dup 298 #define mpi_comm_free_ mpi_comm_free 299 #define mpi_get_count_ mpi_get_count 300 #define mpi_get_processor_name_ mpi_get_processor_name 301 #define mpi_initialized_ mpi_initialized 302 #define mpi_iprobe_ mpi_iprobe 303 #define mpi_probe_ mpi_probe 304 #define mpi_request_free_ mpi_request_free 305 #define mpi_ssend_ mpi_ssend 306 #define mpi_wait_ mpi_wait 307 #define mpi_comm_group_ mpi_comm_group 308 #define mpi_exscan_ mpi_exscan 309 #endif 310 311 #if defined(PETSC_HAVE_FORTRAN_UNDERSCORE_UNDERSCORE) 312 #define mpi_init_ mpi_init__ 313 #define mpi_finalize_ mpi_finalize__ 314 #define mpi_comm_size_ mpi_comm_size__ 315 #define mpi_comm_rank_ mpi_comm_rank__ 316 #define mpi_abort_ mpi_abort__ 317 #define mpi_reduce_ mpi_reduce__ 318 #define mpi_allreduce_ mpi_allreduce__ 319 #define mpi_barrier_ mpi_barrier__ 320 #define mpi_bcast_ mpi_bcast__ 321 #define mpi_gather_ mpi_gather__ 322 #define mpi_allgather_ mpi_allgather__ 323 #define mpi_comm_split_ mpi_comm_split__ 324 #define mpi_scan_ mpi_scan__ 325 #define mpi_send_ mpi_send__ 326 #define mpi_recv_ mpi_recv__ 327 #define mpi_reduce_scatter_ mpi_reduce_scatter__ 328 #define mpi_irecv_ mpi_irecv__ 329 #define mpi_isend_ mpi_isend__ 330 #define mpi_sendrecv_ mpi_sendrecv__ 331 #define mpi_test_ mpi_test__ 332 #define mpi_waitall_ mpi_waitall__ 333 #define mpi_waitany_ mpi_waitany__ 334 #define mpi_allgatherv_ mpi_allgatherv__ 335 #define mpi_alltoallv_ mpi_alltoallv__ 336 #define mpi_comm_create_ mpi_comm_create__ 337 #define mpi_address_ mpi_address__ 338 #define mpi_pack_ mpi_pack__ 339 #define mpi_unpack_ mpi_unpack__ 340 #define mpi_pack_size_ mpi_pack_size__ 341 #define mpi_type_struct_ mpi_type_struct__ 342 #define mpi_type_commit_ mpi_type_commit__ 343 #define mpi_wtime_ mpi_wtime__ 344 #define mpi_cancel_ mpi_cancel__ 345 #define mpi_comm_dup_ mpi_comm_dup__ 346 #define mpi_comm_free_ mpi_comm_free__ 347 #define mpi_get_count_ mpi_get_count__ 348 #define mpi_get_processor_name_ mpi_get_processor_name__ 349 #define mpi_initialized_ mpi_initialized__ 350 #define mpi_iprobe_ mpi_iprobe__ 351 #define mpi_probe_ mpi_probe__ 352 #define mpi_request_free_ mpi_request_free__ 353 #define mpi_ssend_ mpi_ssend__ 354 #define mpi_wait_ mpi_wait__ 355 #define mpi_comm_group_ mpi_comm_group__ 356 #define mpi_exscan_ mpi_exscan__ 357 #endif 358 359 360 /* Do not build fortran interface if MPI namespace colision is to be avoided */ 361 #if !defined(MPIUNI_AVOID_MPI_NAMESPACE) 362 363 void PETSC_STDCALL mpi_init_(int *ierr) 364 { 365 *ierr = MPI_Init((int*)0, (char***)0); 366 } 367 368 void PETSC_STDCALL mpi_finalize_(int *ierr) 369 { 370 *ierr = MPI_Finalize(); 371 } 372 373 void PETSC_STDCALL mpi_comm_size_(MPI_Comm *comm,int *size,int *ierr) 374 { 375 *size = 1; 376 *ierr = 0; 377 } 378 379 void PETSC_STDCALL mpi_comm_rank_(MPI_Comm *comm,int *rank,int *ierr) 380 { 381 *rank=0; 382 *ierr=MPI_SUCCESS; 383 } 384 385 void PETSC_STDCALL mpi_comm_split_(MPI_Comm *comm,int *color,int *key, MPI_Comm *newcomm, int *ierr) 386 { 387 *newcomm = *comm; 388 *ierr=MPI_SUCCESS; 389 } 390 391 void PETSC_STDCALL mpi_abort_(MPI_Comm *comm,int *errorcode,int *ierr) 392 { 393 abort(); 394 *ierr = MPI_SUCCESS; 395 } 396 397 void PETSC_STDCALL mpi_reduce_(void *sendbuf,void *recvbuf,int *count,int *datatype,int *op,int *root,int *comm,int *ierr) 398 { 399 MPIUNI_Memcpy(recvbuf,sendbuf,(*count)*MPIUNI_DATASIZE[*datatype]); 400 *ierr = MPI_SUCCESS; 401 } 402 403 void PETSC_STDCALL mpi_allreduce_(void *sendbuf,void *recvbuf,int *count,int *datatype,int *op,int *comm,int *ierr) 404 { 405 MPIUNI_Memcpy(recvbuf,sendbuf,(*count)*MPIUNI_DATASIZE[*datatype]); 406 *ierr = MPI_SUCCESS; 407 } 408 409 void PETSC_STDCALL mpi_barrier_(MPI_Comm *comm,int *ierr) 410 { 411 *ierr = MPI_SUCCESS; 412 } 413 414 void PETSC_STDCALL mpi_bcast_(void *buf,int *count,int *datatype,int *root,int *comm,int *ierr) 415 { 416 *ierr = MPI_SUCCESS; 417 } 418 419 420 void PETSC_STDCALL mpi_gather_(void *sendbuf,int *scount,int *sdatatype, void* recvbuf, int* rcount, int* rdatatype, int *root,int *comm,int *ierr) 421 { 422 MPIUNI_Memcpy(recvbuf,sendbuf,(*scount)*MPIUNI_DATASIZE[*sdatatype]); 423 *ierr = MPI_SUCCESS; 424 } 425 426 void PETSC_STDCALL mpi_allgather_(void *sendbuf,int *scount,int *sdatatype, void* recvbuf, int* rcount, int* rdatatype,int *comm,int *ierr) 427 { 428 MPIUNI_Memcpy(recvbuf,sendbuf,(*scount)*MPIUNI_DATASIZE[*sdatatype]); 429 *ierr = MPI_SUCCESS; 430 } 431 432 void PETSC_STDCALL mpi_scan_(void *sendbuf,void *recvbuf,int *count,int *datatype,int *op,int *comm,int *ierr) 433 { 434 MPIUNI_Memcpy(recvbuf,sendbuf,(*count)*MPIUNI_DATASIZE[*datatype]); 435 *ierr = MPI_SUCCESS; 436 } 437 438 void PETSC_STDCALL mpi_send_(void*buf,int *count,int *datatype,int *dest,int *tag,int *comm,int *ierr ) 439 { 440 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 441 } 442 443 void PETSC_STDCALL mpi_recv_(void*buf,int *count,int *datatype,int *source,int *tag,int *comm,int status,int *ierr ) 444 { 445 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 446 } 447 448 void PETSC_STDCALL mpi_reduce_scatter_(void*sendbuf,void*recvbuf,int *recvcounts,int *datatype,int *op,int *comm,int *ierr) 449 { 450 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 451 } 452 453 void PETSC_STDCALL mpi_irecv_(void*buf,int *count, int *datatype, int *source, int *tag, int *comm, int *request, int *ierr) 454 { 455 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 456 } 457 458 void PETSC_STDCALL mpi_isend_(void*buf,int *count,int *datatype,int *dest,int *tag,int *comm,int *request, int *ierr) 459 { 460 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 461 } 462 463 void PETSC_STDCALL mpi_sendrecv_(void*sendbuf,int *sendcount,int *sendtype,int *dest,int *sendtag,void*recvbuf,int *recvcount,int *recvtype,int *source,int *recvtag,int *comm,int *status,int *ierr) 464 { 465 MPIUNI_Memcpy(recvbuf,sendbuf,(*sendcount)*MPIUNI_DATASIZE[*sendtype]); 466 *ierr = MPI_SUCCESS; 467 } 468 469 void PETSC_STDCALL mpi_test_(int *request,int *flag,int *status,int *ierr) 470 { 471 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 472 } 473 474 void PETSC_STDCALL mpi_waitall_(int *count,int *array_of_requests,int *array_of_statuses,int *ierr) 475 { 476 *ierr = MPI_SUCCESS; 477 } 478 479 void PETSC_STDCALL mpi_waitany_(int *count,int *array_of_requests,int * index, int *status,int *ierr) 480 { 481 *ierr = MPI_SUCCESS; 482 } 483 484 void PETSC_STDCALL mpi_allgatherv_(void*sendbuf,int *sendcount,int *sendtype,void*recvbuf,int *recvcounts,int *displs,int *recvtype,int *comm,int *ierr) 485 { 486 MPIUNI_Memcpy(recvbuf,sendbuf,(*sendcount)*MPIUNI_DATASIZE[*sendtype]); 487 *ierr = MPI_SUCCESS; 488 } 489 490 void PETSC_STDCALL mpi_alltoallv_(void*sendbuf,int *sendcounts,int *sdispls,int *sendtype,void*recvbuf,int *recvcounts,int *rdispls,int *recvtype,int *comm,int *ierr) 491 { 492 MPIUNI_Memcpy(recvbuf,sendbuf,(*sendcounts)*MPIUNI_DATASIZE[*sendtype]); 493 *ierr = MPI_SUCCESS; 494 } 495 496 void PETSC_STDCALL mpi_comm_create_(int *comm,int *group,int *newcomm,int *ierr) 497 { 498 *newcomm = *comm; 499 *ierr = MPI_SUCCESS; 500 } 501 502 void PETSC_STDCALL mpi_address_(void*location,MPIUNI_INTPTR *address,int *ierr) 503 { 504 *address = (MPIUNI_INTPTR) location; 505 *ierr = MPI_SUCCESS; 506 } 507 508 void PETSC_STDCALL mpi_pack_(void*inbuf,int *incount,int *datatype,void*outbuf,int *outsize,int *position,int *comm,int *ierr) 509 { 510 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 511 } 512 513 void PETSC_STDCALL mpi_unpack_(void*inbuf,int *insize,int *position,void*outbuf,int *outcount,int *datatype,int *comm,int *ierr) 514 { 515 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 516 } 517 518 void PETSC_STDCALL mpi_pack_size_(int *incount,int *datatype,int *comm,int *size,int *ierr) 519 { 520 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 521 } 522 523 void PETSC_STDCALL mpi_type_struct_(int *count,int *array_of_blocklengths,int * array_of_displaments,int *array_of_types,int *newtype,int *ierr) 524 { 525 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 526 } 527 528 void PETSC_STDCALL mpi_type_commit_(int *datatype,int *ierr) 529 { 530 *ierr = MPI_SUCCESS; 531 } 532 533 double PETSC_STDCALL mpi_wtime_(void) 534 { 535 return 0.0; 536 } 537 538 void PETSC_STDCALL mpi_cancel_(int *request,int *ierr) 539 { 540 *ierr = MPI_SUCCESS; 541 } 542 543 void PETSC_STDCALL mpi_comm_dup_(int *comm,int *out,int *ierr) 544 { 545 *out = *comm; 546 *ierr = MPI_SUCCESS; 547 } 548 549 void PETSC_STDCALL mpi_comm_free_(int *comm,int *ierr) 550 { 551 *ierr = MPI_SUCCESS; 552 } 553 554 void PETSC_STDCALL mpi_get_count_(int *status,int *datatype,int *count,int *ierr) 555 { 556 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 557 } 558 559 /* duplicate from fortranimpl.h */ 560 #if defined(PETSC_HAVE_FORTRAN_MIXED_STR_ARG) 561 #define PETSC_MIXED_LEN(len) ,int len 562 #define PETSC_END_LEN(len) 563 #else 564 #define PETSC_MIXED_LEN(len) 565 #define PETSC_END_LEN(len) ,int len 566 #endif 567 568 void PETSC_STDCALL mpi_get_processor_name_(char *name PETSC_MIXED_LEN(len),int *result_len,int *ierr PETSC_END_LEN(len)) 569 { 570 MPIUNI_Memcpy(name,"localhost",9*sizeof(char)); 571 *result_len = 9; 572 *ierr = MPI_SUCCESS; 573 } 574 575 void PETSC_STDCALL mpi_initialized_(int *flag,int *ierr) 576 { 577 *flag = MPI_was_initialized; 578 *ierr = MPI_SUCCESS; 579 } 580 581 void PETSC_STDCALL mpi_iprobe_(int *source,int *tag,int *comm,int *glag,int *status,int *ierr) 582 { 583 *ierr = MPI_SUCCESS; 584 } 585 586 void PETSC_STDCALL mpi_probe_(int *source,int *tag,int *comm,int *flag,int *status,int *ierr) 587 { 588 *ierr = MPI_SUCCESS; 589 } 590 591 void PETSC_STDCALL mpi_request_free_(int *request,int *ierr) 592 { 593 *ierr = MPI_SUCCESS; 594 } 595 596 void PETSC_STDCALL mpi_ssend_(void*buf,int *count,int *datatype,int *dest,int *tag,int *comm,int *ierr) 597 { 598 *ierr = MPI_Abort(MPI_COMM_WORLD,0); 599 } 600 601 void PETSC_STDCALL mpi_wait_(int *request,int *status,int *ierr) 602 { 603 *ierr = MPI_SUCCESS; 604 } 605 606 void PETSC_STDCALL mpi_comm_group_(int*comm,int*group,int *ierr) 607 { 608 *ierr = MPI_SUCCESS; 609 } 610 611 void PETSC_STDCALL mpi_exscan_(void*sendbuf,void*recvbuf,int*count,int*datatype,int*op,int*comm,int*ierr) 612 { 613 *ierr = MPI_SUCCESS; 614 } 615 616 #endif /* MPIUNI_AVOID_MPI_NAMESPACE */ 617 618 #if defined(__cplusplus) 619 } 620 #endif 621