1 /* 2 This is the main PETSc include file (for C and C++). It is included by all 3 other PETSc include files, so it almost never has to be specifically included. 4 */ 5 #if !defined(PETSCSYS_H) 6 #define PETSCSYS_H 7 /* ========================================================================== */ 8 /* 9 petscconf.h is contained in ${PETSC_ARCH}/include/petscconf.h it is 10 found automatically by the compiler due to the -I${PETSC_DIR}/${PETSC_ARCH}/include. 11 For --prefix installs the ${PETSC_ARCH}/ does not exist and petscconf.h is in the same 12 directory as the other PETSc include files. 13 */ 14 #include <petscconf.h> 15 #include <petscfix.h> 16 17 #if defined(PETSC_DESIRE_FEATURE_TEST_MACROS) 18 /* 19 Feature test macros must be included before headers defined by IEEE Std 1003.1-2001 20 We only turn these in PETSc source files that require them by setting PETSC_DESIRE_FEATURE_TEST_MACROS 21 */ 22 # if defined(PETSC__POSIX_C_SOURCE_200112L) && !defined(_POSIX_C_SOURCE) 23 # define _POSIX_C_SOURCE 200112L 24 # endif 25 # if defined(PETSC__BSD_SOURCE) && !defined(_BSD_SOURCE) 26 # define _BSD_SOURCE 27 # endif 28 # if defined(PETSC__DEFAULT_SOURCE) && !defined(_DEFAULT_SOURCE) 29 # define _DEFAULT_SOURCE 30 # endif 31 # if defined(PETSC__GNU_SOURCE) && !defined(_GNU_SOURCE) 32 # define _GNU_SOURCE 33 # endif 34 #endif 35 36 #include <petscsystypes.h> 37 38 /* ========================================================================== */ 39 /* 40 This facilitates using the C version of PETSc from C++ and the C++ version from C. 41 */ 42 #if defined(__cplusplus) 43 # define PETSC_FUNCTION_NAME PETSC_FUNCTION_NAME_CXX 44 #else 45 # define PETSC_FUNCTION_NAME PETSC_FUNCTION_NAME_C 46 #endif 47 48 /* ========================================================================== */ 49 /* 50 Since PETSc manages its own extern "C" handling users should never include PETSc include 51 files within extern "C". This will generate a compiler error if a user does put the include 52 file within an extern "C". 53 */ 54 #if defined(__cplusplus) 55 void assert_never_put_petsc_headers_inside_an_extern_c(int); void assert_never_put_petsc_headers_inside_an_extern_c(double); 56 #endif 57 58 #if defined(__cplusplus) 59 # define PETSC_RESTRICT PETSC_CXX_RESTRICT 60 #else 61 # define PETSC_RESTRICT PETSC_C_RESTRICT 62 #endif 63 64 #if defined(__cplusplus) 65 # define PETSC_INLINE PETSC_CXX_INLINE 66 #else 67 # define PETSC_INLINE PETSC_C_INLINE 68 #endif 69 70 #define PETSC_STATIC_INLINE static PETSC_INLINE 71 72 #if defined(_WIN32) && defined(PETSC_USE_SHARED_LIBRARIES) /* For Win32 shared libraries */ 73 # define PETSC_DLLEXPORT __declspec(dllexport) 74 # define PETSC_DLLIMPORT __declspec(dllimport) 75 # define PETSC_VISIBILITY_INTERNAL 76 #elif defined(PETSC_USE_VISIBILITY_CXX) && defined(__cplusplus) 77 # define PETSC_DLLEXPORT __attribute__((visibility ("default"))) 78 # define PETSC_DLLIMPORT __attribute__((visibility ("default"))) 79 # define PETSC_VISIBILITY_INTERNAL __attribute__((visibility ("hidden"))) 80 #elif defined(PETSC_USE_VISIBILITY_C) && !defined(__cplusplus) 81 # define PETSC_DLLEXPORT __attribute__((visibility ("default"))) 82 # define PETSC_DLLIMPORT __attribute__((visibility ("default"))) 83 # define PETSC_VISIBILITY_INTERNAL __attribute__((visibility ("hidden"))) 84 #else 85 # define PETSC_DLLEXPORT 86 # define PETSC_DLLIMPORT 87 # define PETSC_VISIBILITY_INTERNAL 88 #endif 89 90 #if defined(petsc_EXPORTS) /* CMake defines this when building the shared library */ 91 # define PETSC_VISIBILITY_PUBLIC PETSC_DLLEXPORT 92 #else /* Win32 users need this to import symbols from petsc.dll */ 93 # define PETSC_VISIBILITY_PUBLIC PETSC_DLLIMPORT 94 #endif 95 96 /* 97 Functions tagged with PETSC_EXTERN in the header files are 98 always defined as extern "C" when compiled with C++ so they may be 99 used from C and are always visible in the shared libraries 100 */ 101 #if defined(__cplusplus) 102 # define PETSC_EXTERN extern "C" PETSC_VISIBILITY_PUBLIC 103 # define PETSC_EXTERN_TYPEDEF extern "C" 104 # define PETSC_INTERN extern "C" PETSC_VISIBILITY_INTERNAL 105 #else 106 # define PETSC_EXTERN extern PETSC_VISIBILITY_PUBLIC 107 # define PETSC_EXTERN_TYPEDEF 108 # define PETSC_INTERN extern PETSC_VISIBILITY_INTERNAL 109 #endif 110 111 #include <petscversion.h> 112 #define PETSC_AUTHOR_INFO " The PETSc Team\n petsc-maint@mcs.anl.gov\n https://www.mcs.anl.gov/petsc/\n" 113 114 /* ========================================================================== */ 115 116 /* 117 Defines the interface to MPI allowing the use of all MPI functions. 118 119 PETSc does not use the C++ binding of MPI at ALL. The following flag 120 makes sure the C++ bindings are not included. The C++ bindings REQUIRE 121 putting mpi.h before ANY C++ include files, we cannot control this 122 with all PETSc users. Users who want to use the MPI C++ bindings can include 123 mpicxx.h directly in their code 124 */ 125 #if !defined(MPICH_SKIP_MPICXX) 126 # define MPICH_SKIP_MPICXX 1 127 #endif 128 #if !defined(OMPI_SKIP_MPICXX) 129 # define OMPI_SKIP_MPICXX 1 130 #endif 131 #if defined(PETSC_HAVE_MPIUNI) 132 # include <petsc/mpiuni/mpi.h> 133 #else 134 # include <mpi.h> 135 #endif 136 137 /*MC 138 PetscDefined - determine whether a boolean macro is defined 139 140 Notes: 141 Typical usage is within normal code, 142 143 $ if (PetscDefined(USE_DEBUG)) { ... } 144 145 but can also be used in the preprocessor, 146 147 $ #if PetscDefined(USE_DEBUG) 148 $ ... 149 $ #else 150 151 Either way evaluates true if PETSC_USE_DEBUG is defined (merely defined or defined to 1) or undefined. This macro 152 should not be used if its argument may be defined to a non-empty value other than 1. 153 154 Developer Notes: 155 Getting something that works in C and CPP for an arg that may or may not be defined is tricky. Here, if we have 156 "#define PETSC_HAVE_BOOGER 1" we match on the placeholder define, insert the "0," for arg1 and generate the triplet 157 (0, 1, 0). Then the last step cherry picks the 2nd arg (a one). When PETSC_HAVE_BOOGER is not defined, we generate 158 a (... 1, 0) pair, and when the last step cherry picks the 2nd arg, we get a zero. 159 160 Our extra expansion via PetscDefined__take_second_expand() is needed with MSVC, which has a nonconforming 161 implementation of variadic macros. 162 163 Level: developer 164 M*/ 165 #if !defined(PETSC_SKIP_VARIADIC_MACROS) 166 # define PetscDefined_arg_1 shift, 167 # define PetscDefined_arg_ shift, 168 # define PetscDefined__take_second_expanded(ignored, val, ...) val 169 # define PetscDefined__take_second_expand(args) PetscDefined__take_second_expanded args 170 # define PetscDefined__take_second(...) PetscDefined__take_second_expand((__VA_ARGS__)) 171 # define PetscDefined___(arg1_or_junk) PetscDefined__take_second(arg1_or_junk 1, 0, at_) 172 # define PetscDefined__(value) PetscDefined___(PetscDefined_arg_ ## value) 173 # define PetscDefined_(d) PetscDefined__(d) 174 # define PetscDefined(d) PetscDefined_(PETSC_ ## d) 175 #endif 176 177 /* 178 Perform various sanity checks that the correct mpi.h is being included at compile time. 179 This usually happens because 180 * either an unexpected mpi.h is in the default compiler path (i.e. in /usr/include) or 181 * an extra include path -I/something (which contains the unexpected mpi.h) is being passed to the compiler 182 */ 183 #if defined(PETSC_HAVE_MPIUNI) 184 # if !defined(MPIUNI_H) 185 # error "PETSc was configured with --with-mpi=0 but now appears to be compiling using a different mpi.h" 186 # endif 187 #elif defined(PETSC_HAVE_I_MPI_NUMVERSION) 188 # if !defined(I_MPI_NUMVERSION) 189 # error "PETSc was configured with I_MPI but now appears to be compiling using a non-I_MPI mpi.h" 190 # elif I_MPI_NUMVERSION != PETSC_HAVE_I_MPI_NUMVERSION 191 # error "PETSc was configured with one I_MPI mpi.h version but now appears to be compiling using a different I_MPI mpi.h version" 192 # endif 193 #elif defined(PETSC_HAVE_MVAPICH2_NUMVERSION) 194 # if !defined(MVAPICH2_NUMVERSION) 195 # error "PETSc was configured with MVAPICH2 but now appears to be compiling using a non-MVAPICH2 mpi.h" 196 # elif MVAPICH2_NUMVERSION != PETSC_HAVE_MVAPICH2_NUMVERSION 197 # error "PETSc was configured with one MVAPICH2 mpi.h version but now appears to be compiling using a different MVAPICH2 mpi.h version" 198 # endif 199 #elif defined(PETSC_HAVE_MPICH_NUMVERSION) 200 # if !defined(MPICH_NUMVERSION) || defined(MVAPICH2_NUMVERSION) || defined(I_MPI_NUMVERSION) 201 # error "PETSc was configured with MPICH but now appears to be compiling using a non-MPICH mpi.h" 202 # elif (MPICH_NUMVERSION/100000 != PETSC_HAVE_MPICH_NUMVERSION/100000) || (MPICH_NUMVERSION%100000/1000 < PETSC_HAVE_MPICH_NUMVERSION%100000/1000) 203 # error "PETSc was configured with one MPICH mpi.h version but now appears to be compiling using a different MPICH mpi.h version" 204 # endif 205 #elif defined(PETSC_HAVE_OMPI_MAJOR_VERSION) 206 # if !defined(OMPI_MAJOR_VERSION) 207 # error "PETSc was configured with OpenMPI but now appears to be compiling using a non-OpenMPI mpi.h" 208 # elif (OMPI_MAJOR_VERSION != PETSC_HAVE_OMPI_MAJOR_VERSION) || (OMPI_MINOR_VERSION != PETSC_HAVE_OMPI_MINOR_VERSION) || (OMPI_RELEASE_VERSION < PETSC_HAVE_OMPI_RELEASE_VERSION) 209 # error "PETSc was configured with one OpenMPI mpi.h version but now appears to be compiling using a different OpenMPI mpi.h version" 210 # endif 211 #elif defined(PETSC_HAVE_MSMPI_VERSION) 212 # if !defined(MSMPI_VER) 213 # error "PETSc was configured with MSMPI but now appears to be compiling using a non-MSMPI mpi.h" 214 # elif (MSMPI_VER != PETSC_HAVE_MSMPI_VERSION) 215 # error "PETSc was configured with one MSMPI mpi.h version but now appears to be compiling using a different MSMPI mpi.h version" 216 # endif 217 #elif defined(OMPI_MAJOR_VERSION) || defined(MPICH_NUMVERSION) || defined(MSMPI_VER) 218 # error "PETSc was configured with undetermined MPI - but now appears to be compiling using any of OpenMPI, MS-MPI or a MPICH variant" 219 #endif 220 221 /* 222 Need to put stdio.h AFTER mpi.h for MPICH2 with C++ compiler 223 see the top of mpicxx.h in the MPICH2 distribution. 224 */ 225 #include <stdio.h> 226 227 /* MSMPI on 32bit windows requires this yukky hack - that breaks MPI standard compliance */ 228 #if !defined(MPIAPI) 229 #define MPIAPI 230 #endif 231 232 /* 233 Support for Clang (>=3.2) matching type tag arguments with void* buffer types. 234 This allows the compiler to detect cases where the MPI datatype argument passed to a MPI routine 235 does not match the actual type of the argument being passed in 236 */ 237 #if defined(__has_attribute) && defined(works_with_const_which_is_not_true) 238 # if __has_attribute(argument_with_type_tag) && __has_attribute(pointer_with_type_tag) && __has_attribute(type_tag_for_datatype) 239 # define PetscAttrMPIPointerWithType(bufno,typeno) __attribute__((pointer_with_type_tag(MPI,bufno,typeno))) 240 # define PetscAttrMPITypeTag(type) __attribute__((type_tag_for_datatype(MPI,type))) 241 # define PetscAttrMPITypeTagLayoutCompatible(type) __attribute__((type_tag_for_datatype(MPI,type,layout_compatible))) 242 # endif 243 #endif 244 #if !defined(PetscAttrMPIPointerWithType) 245 # define PetscAttrMPIPointerWithType(bufno,typeno) 246 # define PetscAttrMPITypeTag(type) 247 # define PetscAttrMPITypeTagLayoutCompatible(type) 248 #endif 249 250 PETSC_EXTERN MPI_Datatype MPIU_ENUM PetscAttrMPITypeTag(PetscEnum); 251 PETSC_EXTERN MPI_Datatype MPIU_BOOL PetscAttrMPITypeTag(PetscBool); 252 253 /*MC 254 MPIU_INT - MPI datatype corresponding to PetscInt 255 256 Notes: 257 In MPI calls that require an MPI datatype that matches a PetscInt or array of PetscInt values, pass this value. 258 259 Level: beginner 260 261 .seealso: PetscReal, PetscScalar, PetscComplex, PetscInt, MPIU_REAL, MPIU_SCALAR, MPIU_COMPLEX 262 M*/ 263 264 #if defined(PETSC_HAVE_STDINT_H) && defined(PETSC_HAVE_INTTYPES_H) && defined(PETSC_HAVE_MPI_INT64_T) /* MPI_INT64_T is not guaranteed to be a macro */ 265 # define MPIU_INT64 MPI_INT64_T 266 # define PetscInt64_FMT PRId64 267 #elif (PETSC_SIZEOF_LONG_LONG == 8) 268 # define MPIU_INT64 MPI_LONG_LONG_INT 269 # define PetscInt64_FMT "lld" 270 #elif defined(PETSC_HAVE___INT64) 271 # define MPIU_INT64 MPI_INT64_T 272 # define PetscInt64_FMT "ld" 273 #else 274 # error "cannot determine PetscInt64 type" 275 #endif 276 277 PETSC_EXTERN MPI_Datatype MPIU_FORTRANADDR; 278 279 #if defined(PETSC_USE_64BIT_INDICES) 280 # define MPIU_INT MPIU_INT64 281 # define PetscInt_FMT PetscInt64_FMT 282 #else 283 # define MPIU_INT MPI_INT 284 # define PetscInt_FMT "d" 285 #endif 286 287 /* 288 For the rare cases when one needs to send a size_t object with MPI 289 */ 290 PETSC_EXTERN MPI_Datatype MPIU_SIZE_T; 291 292 /* 293 You can use PETSC_STDOUT as a replacement of stdout. You can also change 294 the value of PETSC_STDOUT to redirect all standard output elsewhere 295 */ 296 PETSC_EXTERN FILE* PETSC_STDOUT; 297 298 /* 299 You can use PETSC_STDERR as a replacement of stderr. You can also change 300 the value of PETSC_STDERR to redirect all standard error elsewhere 301 */ 302 PETSC_EXTERN FILE* PETSC_STDERR; 303 304 /*MC 305 PetscUnlikely - hints the compiler that the given condition is usually FALSE 306 307 Synopsis: 308 #include <petscsys.h> 309 PetscBool PetscUnlikely(PetscBool cond) 310 311 Not Collective 312 313 Input Parameters: 314 . cond - condition or expression 315 316 Notes: 317 This returns the same truth value, it is only a hint to compilers that the resulting 318 branch is unlikely. 319 320 Level: advanced 321 322 .seealso: PetscUnlikelyDebug(), PetscLikely(), CHKERRQ 323 M*/ 324 325 /*MC 326 PetscLikely - hints the compiler that the given condition is usually TRUE 327 328 Synopsis: 329 #include <petscsys.h> 330 PetscBool PetscLikely(PetscBool cond) 331 332 Not Collective 333 334 Input Parameters: 335 . cond - condition or expression 336 337 Notes: 338 This returns the same truth value, it is only a hint to compilers that the resulting 339 branch is likely. 340 341 Level: advanced 342 343 .seealso: PetscUnlikely() 344 M*/ 345 #if defined(PETSC_HAVE_BUILTIN_EXPECT) 346 # define PetscUnlikely(cond) __builtin_expect(!!(cond),0) 347 # define PetscLikely(cond) __builtin_expect(!!(cond),1) 348 #else 349 # define PetscUnlikely(cond) (cond) 350 # define PetscLikely(cond) (cond) 351 #endif 352 353 /*MC 354 PetscUnlikelyDebug - hints the compiler that the given condition is usually FALSE, eliding the check in optimized mode 355 356 Synopsis: 357 #include <petscsys.h> 358 PetscBool PetscUnlikelyDebug(PetscBool cond) 359 360 Not Collective 361 362 Input Parameters: 363 . cond - condition or expression 364 365 Notes: 366 This returns the same truth value, it is only a hint to compilers that the resulting 367 branch is unlikely. When compiled in optimized mode, it always returns false. 368 369 Level: advanced 370 371 .seealso: PetscUnlikely(), CHKERRQ, SETERRQ 372 M*/ 373 #define PetscUnlikelyDebug(cond) (PetscDefined(USE_DEBUG) && PetscUnlikely(cond)) 374 375 /* 376 Declare extern C stuff after including external header files 377 */ 378 379 PETSC_EXTERN const char *const PetscBools[]; 380 381 /* 382 Defines elementary mathematics functions and constants. 383 */ 384 #include <petscmath.h> 385 386 PETSC_EXTERN const char *const PetscCopyModes[]; 387 388 /*MC 389 PETSC_IGNORE - same as NULL, means PETSc will ignore this argument 390 391 Level: beginner 392 393 Note: 394 Accepted by many PETSc functions to not set a parameter and instead use 395 some default 396 397 Fortran Notes: 398 This macro does not exist in Fortran; you must use PETSC_NULL_INTEGER, 399 PETSC_NULL_DOUBLE_PRECISION etc 400 401 .seealso: PETSC_DECIDE, PETSC_DEFAULT, PETSC_DETERMINE 402 403 M*/ 404 #define PETSC_IGNORE NULL 405 406 /* This is deprecated */ 407 #define PETSC_NULL NULL 408 409 /*MC 410 PETSC_DECIDE - standard way of passing in integer or floating point parameter 411 where you wish PETSc to use the default. 412 413 Level: beginner 414 415 .seealso: PETSC_DEFAULT, PETSC_IGNORE, PETSC_DETERMINE 416 417 M*/ 418 #define PETSC_DECIDE -1 419 420 /*MC 421 PETSC_DETERMINE - standard way of passing in integer or floating point parameter 422 where you wish PETSc to compute the required value. 423 424 Level: beginner 425 426 Developer Note: 427 I would like to use const PetscInt PETSC_DETERMINE = PETSC_DECIDE; but for 428 some reason this is not allowed by the standard even though PETSC_DECIDE is a constant value. 429 430 .seealso: PETSC_DECIDE, PETSC_DEFAULT, PETSC_IGNORE, VecSetSizes() 431 432 M*/ 433 #define PETSC_DETERMINE PETSC_DECIDE 434 435 /*MC 436 PETSC_DEFAULT - standard way of passing in integer or floating point parameter 437 where you wish PETSc to use the default. 438 439 Level: beginner 440 441 Fortran Notes: 442 You need to use PETSC_DEFAULT_INTEGER or PETSC_DEFAULT_REAL. 443 444 .seealso: PETSC_DECIDE, PETSC_IGNORE, PETSC_DETERMINE 445 446 M*/ 447 #define PETSC_DEFAULT -2 448 449 /*MC 450 PETSC_COMM_WORLD - the equivalent of the MPI_COMM_WORLD communicator which represents 451 all the processes that PETSc knows about. 452 453 Level: beginner 454 455 Notes: 456 By default PETSC_COMM_WORLD and MPI_COMM_WORLD are identical unless you wish to 457 run PETSc on ONLY a subset of MPI_COMM_WORLD. In that case create your new (smaller) 458 communicator, call it, say comm, and set PETSC_COMM_WORLD = comm BEFORE calling 459 PetscInitialize(), but after MPI_Init() has been called. 460 461 The value of PETSC_COMM_WORLD should never be USED/accessed before PetscInitialize() 462 is called because it may not have a valid value yet. 463 464 .seealso: PETSC_COMM_SELF 465 466 M*/ 467 PETSC_EXTERN MPI_Comm PETSC_COMM_WORLD; 468 469 /*MC 470 PETSC_COMM_SELF - This is always MPI_COMM_SELF 471 472 Level: beginner 473 474 Notes: 475 Do not USE/access or set this variable before PetscInitialize() has been called. 476 477 .seealso: PETSC_COMM_WORLD 478 479 M*/ 480 #define PETSC_COMM_SELF MPI_COMM_SELF 481 482 PETSC_EXTERN PetscBool PetscBeganMPI; 483 PETSC_EXTERN PetscBool PetscInitializeCalled; 484 PETSC_EXTERN PetscBool PetscFinalizeCalled; 485 PETSC_EXTERN PetscBool PetscViennaCLSynchronize; 486 PETSC_EXTERN PetscBool PetscCUDASynchronize; 487 488 PETSC_EXTERN PetscErrorCode PetscSetHelpVersionFunctions(PetscErrorCode (*)(MPI_Comm),PetscErrorCode (*)(MPI_Comm)); 489 PETSC_EXTERN PetscErrorCode PetscCommDuplicate(MPI_Comm,MPI_Comm*,int*); 490 PETSC_EXTERN PetscErrorCode PetscCommDestroy(MPI_Comm*); 491 492 #if defined(PETSC_HAVE_CUDA) 493 PETSC_EXTERN PetscErrorCode PetscCUDAInitialize(MPI_Comm); 494 #endif 495 496 /*MC 497 PetscMalloc - Allocates memory, One should use PetscNew(), PetscMalloc1() or PetscCalloc1() usually instead of this 498 499 Synopsis: 500 #include <petscsys.h> 501 PetscErrorCode PetscMalloc(size_t m,void **result) 502 503 Not Collective 504 505 Input Parameter: 506 . m - number of bytes to allocate 507 508 Output Parameter: 509 . result - memory allocated 510 511 Level: beginner 512 513 Notes: 514 Memory is always allocated at least double aligned 515 516 It is safe to allocate size 0 and pass the resulting pointer (which may or may not be NULL) to PetscFree(). 517 518 .seealso: PetscFree(), PetscNew() 519 520 M*/ 521 #define PetscMalloc(a,b) ((*PetscTrMalloc)((a),PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(void**)(b))) 522 523 /*MC 524 PetscRealloc - Rellocates memory 525 526 Synopsis: 527 #include <petscsys.h> 528 PetscErrorCode PetscRealloc(size_t m,void **result) 529 530 Not Collective 531 532 Input Parameters: 533 + m - number of bytes to allocate 534 - result - previous memory 535 536 Output Parameter: 537 . result - new memory allocated 538 539 Level: developer 540 541 Notes: 542 Memory is always allocated at least double aligned 543 544 .seealso: PetscMalloc(), PetscFree(), PetscNew() 545 546 M*/ 547 #define PetscRealloc(a,b) ((*PetscTrRealloc)((a),__LINE__,PETSC_FUNCTION_NAME,__FILE__,(void**)(b))) 548 549 /*MC 550 PetscAddrAlign - Rounds up an address to PETSC_MEMALIGN alignment 551 552 Synopsis: 553 #include <petscsys.h> 554 void *PetscAddrAlign(void *addr) 555 556 Not Collective 557 558 Input Parameters: 559 . addr - address to align (any pointer type) 560 561 Level: developer 562 563 .seealso: PetscMallocAlign() 564 565 M*/ 566 #define PetscAddrAlign(a) (void*)((((PETSC_UINTPTR_T)(a))+(PETSC_MEMALIGN-1)) & ~(PETSC_MEMALIGN-1)) 567 568 /*MC 569 PetscMalloc1 - Allocates an array of memory aligned to PETSC_MEMALIGN 570 571 Synopsis: 572 #include <petscsys.h> 573 PetscErrorCode PetscMalloc1(size_t m1,type **r1) 574 575 Not Collective 576 577 Input Parameter: 578 . m1 - number of elements to allocate (may be zero) 579 580 Output Parameter: 581 . r1 - memory allocated 582 583 Note: 584 This uses the sizeof() of the memory type requested to determine the total memory to be allocated, therefore you should not 585 multiply the number of elements requested by the sizeof() the type. For example use 586 $ PetscInt *id; 587 $ PetscMalloc1(10,&id); 588 not 589 $ PetscInt *id; 590 $ PetscMalloc1(10*sizeof(PetscInt),&id); 591 592 Does not zero the memory allocated, use PetscCalloc1() to obtain memory that has been zeroed. 593 594 Level: beginner 595 596 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscCalloc1(), PetscMalloc2() 597 598 M*/ 599 #define PetscMalloc1(m1,r1) PetscMallocA(1,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1)) 600 601 /*MC 602 PetscCalloc1 - Allocates a cleared (zeroed) array of memory aligned to PETSC_MEMALIGN 603 604 Synopsis: 605 #include <petscsys.h> 606 PetscErrorCode PetscCalloc1(size_t m1,type **r1) 607 608 Not Collective 609 610 Input Parameter: 611 . m1 - number of elements to allocate in 1st chunk (may be zero) 612 613 Output Parameter: 614 . r1 - memory allocated 615 616 Notes: 617 See PetsMalloc1() for more details on usage. 618 619 Level: beginner 620 621 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc1(), PetscCalloc2() 622 623 M*/ 624 #define PetscCalloc1(m1,r1) PetscMallocA(1,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1)) 625 626 /*MC 627 PetscMalloc2 - Allocates 2 arrays of memory both aligned to PETSC_MEMALIGN 628 629 Synopsis: 630 #include <petscsys.h> 631 PetscErrorCode PetscMalloc2(size_t m1,type **r1,size_t m2,type **r2) 632 633 Not Collective 634 635 Input Parameter: 636 + m1 - number of elements to allocate in 1st chunk (may be zero) 637 - m2 - number of elements to allocate in 2nd chunk (may be zero) 638 639 Output Parameter: 640 + r1 - memory allocated in first chunk 641 - r2 - memory allocated in second chunk 642 643 Level: developer 644 645 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc1(), PetscCalloc2() 646 647 M*/ 648 #define PetscMalloc2(m1,r1,m2,r2) PetscMallocA(2,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2)) 649 650 /*MC 651 PetscCalloc2 - Allocates 2 cleared (zeroed) arrays of memory both aligned to PETSC_MEMALIGN 652 653 Synopsis: 654 #include <petscsys.h> 655 PetscErrorCode PetscCalloc2(size_t m1,type **r1,size_t m2,type **r2) 656 657 Not Collective 658 659 Input Parameter: 660 + m1 - number of elements to allocate in 1st chunk (may be zero) 661 - m2 - number of elements to allocate in 2nd chunk (may be zero) 662 663 Output Parameter: 664 + r1 - memory allocated in first chunk 665 - r2 - memory allocated in second chunk 666 667 Level: developer 668 669 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscCalloc1(), PetscMalloc2() 670 671 M*/ 672 #define PetscCalloc2(m1,r1,m2,r2) PetscMallocA(2,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2)) 673 674 /*MC 675 PetscMalloc3 - Allocates 3 arrays of memory, all aligned to PETSC_MEMALIGN 676 677 Synopsis: 678 #include <petscsys.h> 679 PetscErrorCode PetscMalloc3(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3) 680 681 Not Collective 682 683 Input Parameter: 684 + m1 - number of elements to allocate in 1st chunk (may be zero) 685 . m2 - number of elements to allocate in 2nd chunk (may be zero) 686 - m3 - number of elements to allocate in 3rd chunk (may be zero) 687 688 Output Parameter: 689 + r1 - memory allocated in first chunk 690 . r2 - memory allocated in second chunk 691 - r3 - memory allocated in third chunk 692 693 Level: developer 694 695 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscCalloc3(), PetscFree3() 696 697 M*/ 698 #define PetscMalloc3(m1,r1,m2,r2,m3,r3) PetscMallocA(3,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3)) 699 700 /*MC 701 PetscCalloc3 - Allocates 3 cleared (zeroed) arrays of memory, all aligned to PETSC_MEMALIGN 702 703 Synopsis: 704 #include <petscsys.h> 705 PetscErrorCode PetscCalloc3(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3) 706 707 Not Collective 708 709 Input Parameter: 710 + m1 - number of elements to allocate in 1st chunk (may be zero) 711 . m2 - number of elements to allocate in 2nd chunk (may be zero) 712 - m3 - number of elements to allocate in 3rd chunk (may be zero) 713 714 Output Parameter: 715 + r1 - memory allocated in first chunk 716 . r2 - memory allocated in second chunk 717 - r3 - memory allocated in third chunk 718 719 Level: developer 720 721 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscCalloc2(), PetscMalloc3(), PetscFree3() 722 723 M*/ 724 #define PetscCalloc3(m1,r1,m2,r2,m3,r3) PetscMallocA(3,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3)) 725 726 /*MC 727 PetscMalloc4 - Allocates 4 arrays of memory, all aligned to PETSC_MEMALIGN 728 729 Synopsis: 730 #include <petscsys.h> 731 PetscErrorCode PetscMalloc4(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4) 732 733 Not Collective 734 735 Input Parameter: 736 + m1 - number of elements to allocate in 1st chunk (may be zero) 737 . m2 - number of elements to allocate in 2nd chunk (may be zero) 738 . m3 - number of elements to allocate in 3rd chunk (may be zero) 739 - m4 - number of elements to allocate in 4th chunk (may be zero) 740 741 Output Parameter: 742 + r1 - memory allocated in first chunk 743 . r2 - memory allocated in second chunk 744 . r3 - memory allocated in third chunk 745 - r4 - memory allocated in fourth chunk 746 747 Level: developer 748 749 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscCalloc4(), PetscFree4() 750 751 M*/ 752 #define PetscMalloc4(m1,r1,m2,r2,m3,r3,m4,r4) PetscMallocA(4,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4)) 753 754 /*MC 755 PetscCalloc4 - Allocates 4 cleared (zeroed) arrays of memory, all aligned to PETSC_MEMALIGN 756 757 Synopsis: 758 #include <petscsys.h> 759 PetscErrorCode PetscCalloc4(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4) 760 761 Not Collective 762 763 Input Parameters: 764 + m1 - number of elements to allocate in 1st chunk (may be zero) 765 . m2 - number of elements to allocate in 2nd chunk (may be zero) 766 . m3 - number of elements to allocate in 3rd chunk (may be zero) 767 - m4 - number of elements to allocate in 4th chunk (may be zero) 768 769 Output Parameters: 770 + r1 - memory allocated in first chunk 771 . r2 - memory allocated in second chunk 772 . r3 - memory allocated in third chunk 773 - r4 - memory allocated in fourth chunk 774 775 Level: developer 776 777 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscCalloc4(), PetscFree4() 778 779 M*/ 780 #define PetscCalloc4(m1,r1,m2,r2,m3,r3,m4,r4) PetscMallocA(4,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4)) 781 782 /*MC 783 PetscMalloc5 - Allocates 5 arrays of memory, all aligned to PETSC_MEMALIGN 784 785 Synopsis: 786 #include <petscsys.h> 787 PetscErrorCode PetscMalloc5(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4,size_t m5,type **r5) 788 789 Not Collective 790 791 Input Parameters: 792 + m1 - number of elements to allocate in 1st chunk (may be zero) 793 . m2 - number of elements to allocate in 2nd chunk (may be zero) 794 . m3 - number of elements to allocate in 3rd chunk (may be zero) 795 . m4 - number of elements to allocate in 4th chunk (may be zero) 796 - m5 - number of elements to allocate in 5th chunk (may be zero) 797 798 Output Parameters: 799 + r1 - memory allocated in first chunk 800 . r2 - memory allocated in second chunk 801 . r3 - memory allocated in third chunk 802 . r4 - memory allocated in fourth chunk 803 - r5 - memory allocated in fifth chunk 804 805 Level: developer 806 807 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscCalloc5(), PetscFree5() 808 809 M*/ 810 #define PetscMalloc5(m1,r1,m2,r2,m3,r3,m4,r4,m5,r5) PetscMallocA(5,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4),(size_t)(m5)*sizeof(**(r5)),(r5)) 811 812 /*MC 813 PetscCalloc5 - Allocates 5 cleared (zeroed) arrays of memory, all aligned to PETSC_MEMALIGN 814 815 Synopsis: 816 #include <petscsys.h> 817 PetscErrorCode PetscCalloc5(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4,size_t m5,type **r5) 818 819 Not Collective 820 821 Input Parameters: 822 + m1 - number of elements to allocate in 1st chunk (may be zero) 823 . m2 - number of elements to allocate in 2nd chunk (may be zero) 824 . m3 - number of elements to allocate in 3rd chunk (may be zero) 825 . m4 - number of elements to allocate in 4th chunk (may be zero) 826 - m5 - number of elements to allocate in 5th chunk (may be zero) 827 828 Output Parameters: 829 + r1 - memory allocated in first chunk 830 . r2 - memory allocated in second chunk 831 . r3 - memory allocated in third chunk 832 . r4 - memory allocated in fourth chunk 833 - r5 - memory allocated in fifth chunk 834 835 Level: developer 836 837 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc5(), PetscFree5() 838 839 M*/ 840 #define PetscCalloc5(m1,r1,m2,r2,m3,r3,m4,r4,m5,r5) PetscMallocA(5,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4),(size_t)(m5)*sizeof(**(r5)),(r5)) 841 842 /*MC 843 PetscMalloc6 - Allocates 6 arrays of memory, all aligned to PETSC_MEMALIGN 844 845 Synopsis: 846 #include <petscsys.h> 847 PetscErrorCode PetscMalloc6(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4,size_t m5,type **r5,size_t m6,type **r6) 848 849 Not Collective 850 851 Input Parameters: 852 + m1 - number of elements to allocate in 1st chunk (may be zero) 853 . m2 - number of elements to allocate in 2nd chunk (may be zero) 854 . m3 - number of elements to allocate in 3rd chunk (may be zero) 855 . m4 - number of elements to allocate in 4th chunk (may be zero) 856 . m5 - number of elements to allocate in 5th chunk (may be zero) 857 - m6 - number of elements to allocate in 6th chunk (may be zero) 858 859 Output Parameteasr: 860 + r1 - memory allocated in first chunk 861 . r2 - memory allocated in second chunk 862 . r3 - memory allocated in third chunk 863 . r4 - memory allocated in fourth chunk 864 . r5 - memory allocated in fifth chunk 865 - r6 - memory allocated in sixth chunk 866 867 Level: developer 868 869 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscCalloc6(), PetscFree3(), PetscFree4(), PetscFree5(), PetscFree6() 870 871 M*/ 872 #define PetscMalloc6(m1,r1,m2,r2,m3,r3,m4,r4,m5,r5,m6,r6) PetscMallocA(6,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4),(size_t)(m5)*sizeof(**(r5)),(r5),(size_t)(m6)*sizeof(**(r6)),(r6)) 873 874 /*MC 875 PetscCalloc6 - Allocates 6 cleared (zeroed) arrays of memory, all aligned to PETSC_MEMALIGN 876 877 Synopsis: 878 #include <petscsys.h> 879 PetscErrorCode PetscCalloc6(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4,size_t m5,type **r5,size_t m6,type **r6) 880 881 Not Collective 882 883 Input Parameters: 884 + m1 - number of elements to allocate in 1st chunk (may be zero) 885 . m2 - number of elements to allocate in 2nd chunk (may be zero) 886 . m3 - number of elements to allocate in 3rd chunk (may be zero) 887 . m4 - number of elements to allocate in 4th chunk (may be zero) 888 . m5 - number of elements to allocate in 5th chunk (may be zero) 889 - m6 - number of elements to allocate in 6th chunk (may be zero) 890 891 Output Parameters: 892 + r1 - memory allocated in first chunk 893 . r2 - memory allocated in second chunk 894 . r3 - memory allocated in third chunk 895 . r4 - memory allocated in fourth chunk 896 . r5 - memory allocated in fifth chunk 897 - r6 - memory allocated in sixth chunk 898 899 Level: developer 900 901 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscMalloc6(), PetscFree6() 902 903 M*/ 904 #define PetscCalloc6(m1,r1,m2,r2,m3,r3,m4,r4,m5,r5,m6,r6) PetscMallocA(6,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4),(size_t)(m5)*sizeof(**(r5)),(r5),(size_t)(m6)*sizeof(**(r6)),(r6)) 905 906 /*MC 907 PetscMalloc7 - Allocates 7 arrays of memory, all aligned to PETSC_MEMALIGN 908 909 Synopsis: 910 #include <petscsys.h> 911 PetscErrorCode PetscMalloc7(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4,size_t m5,type **r5,size_t m6,type **r6,size_t m7,type **r7) 912 913 Not Collective 914 915 Input Parameters: 916 + m1 - number of elements to allocate in 1st chunk (may be zero) 917 . m2 - number of elements to allocate in 2nd chunk (may be zero) 918 . m3 - number of elements to allocate in 3rd chunk (may be zero) 919 . m4 - number of elements to allocate in 4th chunk (may be zero) 920 . m5 - number of elements to allocate in 5th chunk (may be zero) 921 . m6 - number of elements to allocate in 6th chunk (may be zero) 922 - m7 - number of elements to allocate in 7th chunk (may be zero) 923 924 Output Parameters: 925 + r1 - memory allocated in first chunk 926 . r2 - memory allocated in second chunk 927 . r3 - memory allocated in third chunk 928 . r4 - memory allocated in fourth chunk 929 . r5 - memory allocated in fifth chunk 930 . r6 - memory allocated in sixth chunk 931 - r7 - memory allocated in seventh chunk 932 933 Level: developer 934 935 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscCalloc7(), PetscFree7() 936 937 M*/ 938 #define PetscMalloc7(m1,r1,m2,r2,m3,r3,m4,r4,m5,r5,m6,r6,m7,r7) PetscMallocA(7,PETSC_FALSE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4),(size_t)(m5)*sizeof(**(r5)),(r5),(size_t)(m6)*sizeof(**(r6)),(r6),(size_t)(m7)*sizeof(**(r7)),(r7)) 939 940 /*MC 941 PetscCalloc7 - Allocates 7 cleared (zeroed) arrays of memory, all aligned to PETSC_MEMALIGN 942 943 Synopsis: 944 #include <petscsys.h> 945 PetscErrorCode PetscCalloc7(size_t m1,type **r1,size_t m2,type **r2,size_t m3,type **r3,size_t m4,type **r4,size_t m5,type **r5,size_t m6,type **r6,size_t m7,type **r7) 946 947 Not Collective 948 949 Input Parameters: 950 + m1 - number of elements to allocate in 1st chunk (may be zero) 951 . m2 - number of elements to allocate in 2nd chunk (may be zero) 952 . m3 - number of elements to allocate in 3rd chunk (may be zero) 953 . m4 - number of elements to allocate in 4th chunk (may be zero) 954 . m5 - number of elements to allocate in 5th chunk (may be zero) 955 . m6 - number of elements to allocate in 6th chunk (may be zero) 956 - m7 - number of elements to allocate in 7th chunk (may be zero) 957 958 Output Parameters: 959 + r1 - memory allocated in first chunk 960 . r2 - memory allocated in second chunk 961 . r3 - memory allocated in third chunk 962 . r4 - memory allocated in fourth chunk 963 . r5 - memory allocated in fifth chunk 964 . r6 - memory allocated in sixth chunk 965 - r7 - memory allocated in seventh chunk 966 967 Level: developer 968 969 .seealso: PetscFree(), PetscNew(), PetscMalloc(), PetscMalloc2(), PetscMalloc7(), PetscFree7() 970 971 M*/ 972 #define PetscCalloc7(m1,r1,m2,r2,m3,r3,m4,r4,m5,r5,m6,r6,m7,r7) PetscMallocA(7,PETSC_TRUE,__LINE__,PETSC_FUNCTION_NAME,__FILE__,(size_t)(m1)*sizeof(**(r1)),(r1),(size_t)(m2)*sizeof(**(r2)),(r2),(size_t)(m3)*sizeof(**(r3)),(r3),(size_t)(m4)*sizeof(**(r4)),(r4),(size_t)(m5)*sizeof(**(r5)),(r5),(size_t)(m6)*sizeof(**(r6)),(r6),(size_t)(m7)*sizeof(**(r7)),(r7)) 973 974 /*MC 975 PetscNew - Allocates memory of a particular type, zeros the memory! Aligned to PETSC_MEMALIGN 976 977 Synopsis: 978 #include <petscsys.h> 979 PetscErrorCode PetscNew(type **result) 980 981 Not Collective 982 983 Output Parameter: 984 . result - memory allocated, sized to match pointer type 985 986 Level: beginner 987 988 .seealso: PetscFree(), PetscMalloc(), PetscNewLog(), PetscCalloc1(), PetscMalloc1() 989 990 M*/ 991 #define PetscNew(b) PetscCalloc1(1,(b)) 992 993 /*MC 994 PetscNewLog - Allocates memory of a type matching pointer, zeros the memory! Aligned to PETSC_MEMALIGN. Associates the memory allocated 995 with the given object using PetscLogObjectMemory(). 996 997 Synopsis: 998 #include <petscsys.h> 999 PetscErrorCode PetscNewLog(PetscObject obj,type **result) 1000 1001 Not Collective 1002 1003 Input Parameter: 1004 . obj - object memory is logged to 1005 1006 Output Parameter: 1007 . result - memory allocated, sized to match pointer type 1008 1009 Level: developer 1010 1011 .seealso: PetscFree(), PetscMalloc(), PetscNew(), PetscLogObjectMemory(), PetscCalloc1(), PetscMalloc1() 1012 1013 M*/ 1014 #define PetscNewLog(o,b) (PetscNew((b)) || PetscLogObjectMemory((PetscObject)o,sizeof(**(b)))) 1015 1016 /*MC 1017 PetscFree - Frees memory 1018 1019 Synopsis: 1020 #include <petscsys.h> 1021 PetscErrorCode PetscFree(void *memory) 1022 1023 Not Collective 1024 1025 Input Parameter: 1026 . memory - memory to free (the pointer is ALWAYS set to NULL upon success) 1027 1028 Level: beginner 1029 1030 Notes: 1031 Do not free memory obtained with PetscMalloc2(), PetscCalloc2() etc, they must be freed with PetscFree2() etc. 1032 1033 It is safe to call PetscFree() on a NULL pointer. 1034 1035 .seealso: PetscNew(), PetscMalloc(), PetscNewLog(), PetscMalloc1(), PetscCalloc1() 1036 1037 M*/ 1038 #define PetscFree(a) ((*PetscTrFree)((void*)(a),__LINE__,PETSC_FUNCTION_NAME,__FILE__) || ((a) = NULL,0)) 1039 1040 /*MC 1041 PetscFree2 - Frees 2 chunks of memory obtained with PetscMalloc2() 1042 1043 Synopsis: 1044 #include <petscsys.h> 1045 PetscErrorCode PetscFree2(void *memory1,void *memory2) 1046 1047 Not Collective 1048 1049 Input Parameters: 1050 + memory1 - memory to free 1051 - memory2 - 2nd memory to free 1052 1053 Level: developer 1054 1055 Notes: 1056 Memory must have been obtained with PetscMalloc2() 1057 1058 .seealso: PetscNew(), PetscMalloc(), PetscMalloc2(), PetscFree() 1059 1060 M*/ 1061 #define PetscFree2(m1,m2) PetscFreeA(2,__LINE__,PETSC_FUNCTION_NAME,__FILE__,&(m1),&(m2)) 1062 1063 /*MC 1064 PetscFree3 - Frees 3 chunks of memory obtained with PetscMalloc3() 1065 1066 Synopsis: 1067 #include <petscsys.h> 1068 PetscErrorCode PetscFree3(void *memory1,void *memory2,void *memory3) 1069 1070 Not Collective 1071 1072 Input Parameters: 1073 + memory1 - memory to free 1074 . memory2 - 2nd memory to free 1075 - memory3 - 3rd memory to free 1076 1077 Level: developer 1078 1079 Notes: 1080 Memory must have been obtained with PetscMalloc3() 1081 1082 .seealso: PetscNew(), PetscMalloc(), PetscMalloc2(), PetscFree(), PetscMalloc3() 1083 1084 M*/ 1085 #define PetscFree3(m1,m2,m3) PetscFreeA(3,__LINE__,PETSC_FUNCTION_NAME,__FILE__,&(m1),&(m2),&(m3)) 1086 1087 /*MC 1088 PetscFree4 - Frees 4 chunks of memory obtained with PetscMalloc4() 1089 1090 Synopsis: 1091 #include <petscsys.h> 1092 PetscErrorCode PetscFree4(void *m1,void *m2,void *m3,void *m4) 1093 1094 Not Collective 1095 1096 Input Parameters: 1097 + m1 - memory to free 1098 . m2 - 2nd memory to free 1099 . m3 - 3rd memory to free 1100 - m4 - 4th memory to free 1101 1102 Level: developer 1103 1104 Notes: 1105 Memory must have been obtained with PetscMalloc4() 1106 1107 .seealso: PetscNew(), PetscMalloc(), PetscMalloc2(), PetscFree(), PetscMalloc3(), PetscMalloc4() 1108 1109 M*/ 1110 #define PetscFree4(m1,m2,m3,m4) PetscFreeA(4,__LINE__,PETSC_FUNCTION_NAME,__FILE__,&(m1),&(m2),&(m3),&(m4)) 1111 1112 /*MC 1113 PetscFree5 - Frees 5 chunks of memory obtained with PetscMalloc5() 1114 1115 Synopsis: 1116 #include <petscsys.h> 1117 PetscErrorCode PetscFree5(void *m1,void *m2,void *m3,void *m4,void *m5) 1118 1119 Not Collective 1120 1121 Input Parameters: 1122 + m1 - memory to free 1123 . m2 - 2nd memory to free 1124 . m3 - 3rd memory to free 1125 . m4 - 4th memory to free 1126 - m5 - 5th memory to free 1127 1128 Level: developer 1129 1130 Notes: 1131 Memory must have been obtained with PetscMalloc5() 1132 1133 .seealso: PetscNew(), PetscMalloc(), PetscMalloc2(), PetscFree(), PetscMalloc3(), PetscMalloc4(), PetscMalloc5() 1134 1135 M*/ 1136 #define PetscFree5(m1,m2,m3,m4,m5) PetscFreeA(5,__LINE__,PETSC_FUNCTION_NAME,__FILE__,&(m1),&(m2),&(m3),&(m4),&(m5)) 1137 1138 /*MC 1139 PetscFree6 - Frees 6 chunks of memory obtained with PetscMalloc6() 1140 1141 Synopsis: 1142 #include <petscsys.h> 1143 PetscErrorCode PetscFree6(void *m1,void *m2,void *m3,void *m4,void *m5,void *m6) 1144 1145 Not Collective 1146 1147 Input Parameters: 1148 + m1 - memory to free 1149 . m2 - 2nd memory to free 1150 . m3 - 3rd memory to free 1151 . m4 - 4th memory to free 1152 . m5 - 5th memory to free 1153 - m6 - 6th memory to free 1154 1155 1156 Level: developer 1157 1158 Notes: 1159 Memory must have been obtained with PetscMalloc6() 1160 1161 .seealso: PetscNew(), PetscMalloc(), PetscMalloc2(), PetscFree(), PetscMalloc3(), PetscMalloc4(), PetscMalloc5(), PetscMalloc6() 1162 1163 M*/ 1164 #define PetscFree6(m1,m2,m3,m4,m5,m6) PetscFreeA(6,__LINE__,PETSC_FUNCTION_NAME,__FILE__,&(m1),&(m2),&(m3),&(m4),&(m5),&(m6)) 1165 1166 /*MC 1167 PetscFree7 - Frees 7 chunks of memory obtained with PetscMalloc7() 1168 1169 Synopsis: 1170 #include <petscsys.h> 1171 PetscErrorCode PetscFree7(void *m1,void *m2,void *m3,void *m4,void *m5,void *m6,void *m7) 1172 1173 Not Collective 1174 1175 Input Parameters: 1176 + m1 - memory to free 1177 . m2 - 2nd memory to free 1178 . m3 - 3rd memory to free 1179 . m4 - 4th memory to free 1180 . m5 - 5th memory to free 1181 . m6 - 6th memory to free 1182 - m7 - 7th memory to free 1183 1184 1185 Level: developer 1186 1187 Notes: 1188 Memory must have been obtained with PetscMalloc7() 1189 1190 .seealso: PetscNew(), PetscMalloc(), PetscMalloc2(), PetscFree(), PetscMalloc3(), PetscMalloc4(), PetscMalloc5(), PetscMalloc6(), 1191 PetscMalloc7() 1192 1193 M*/ 1194 #define PetscFree7(m1,m2,m3,m4,m5,m6,m7) PetscFreeA(7,__LINE__,PETSC_FUNCTION_NAME,__FILE__,&(m1),&(m2),&(m3),&(m4),&(m5),&(m6),&(m7)) 1195 1196 PETSC_EXTERN PetscErrorCode PetscMallocA(int,PetscBool,int,const char *,const char *,size_t,void *,...); 1197 PETSC_EXTERN PetscErrorCode PetscFreeA(int,int,const char *,const char *,void *,...); 1198 PETSC_EXTERN PetscErrorCode (*PetscTrMalloc)(size_t,PetscBool,int,const char[],const char[],void**); 1199 PETSC_EXTERN PetscErrorCode (*PetscTrFree)(void*,int,const char[],const char[]); 1200 PETSC_EXTERN PetscErrorCode (*PetscTrRealloc)(size_t,int,const char[],const char[],void**); 1201 PETSC_EXTERN PetscErrorCode PetscMallocSetCoalesce(PetscBool); 1202 PETSC_EXTERN PetscErrorCode PetscMallocSet(PetscErrorCode (*)(size_t,PetscBool,int,const char[],const char[],void**),PetscErrorCode (*)(void*,int,const char[],const char[]),PetscErrorCode (*)(size_t,int,const char[],const char[], void **)); 1203 PETSC_EXTERN PetscErrorCode PetscMallocClear(void); 1204 1205 /* 1206 Unlike PetscMallocSet and PetscMallocClear which overwrite the existing settings, these two functions save the previous choice of allocator, and should be used in pair. 1207 */ 1208 PETSC_EXTERN PetscErrorCode PetscMallocSetDRAM(void); 1209 PETSC_EXTERN PetscErrorCode PetscMallocResetDRAM(void); 1210 #if defined(PETSC_HAVE_CUDA) 1211 PETSC_EXTERN PetscErrorCode PetscMallocSetCUDAHost(void); 1212 PETSC_EXTERN PetscErrorCode PetscMallocResetCUDAHost(void); 1213 #endif 1214 1215 #define MPIU_PETSCLOGDOUBLE MPI_DOUBLE 1216 #define MPIU_2PETSCLOGDOUBLE MPI_2DOUBLE_PRECISION 1217 1218 /* 1219 Routines for tracing memory corruption/bleeding with default PETSc memory allocation 1220 */ 1221 PETSC_EXTERN PetscErrorCode PetscMallocDump(FILE *); 1222 PETSC_EXTERN PetscErrorCode PetscMallocView(FILE *); 1223 PETSC_EXTERN PetscErrorCode PetscMallocGetCurrentUsage(PetscLogDouble *); 1224 PETSC_EXTERN PetscErrorCode PetscMallocGetMaximumUsage(PetscLogDouble *); 1225 PETSC_EXTERN PetscErrorCode PetscMallocPushMaximumUsage(int); 1226 PETSC_EXTERN PetscErrorCode PetscMallocPopMaximumUsage(int,PetscLogDouble*); 1227 PETSC_EXTERN PetscErrorCode PetscMallocSetDebug(PetscBool,PetscBool); 1228 PETSC_EXTERN PetscErrorCode PetscMallocGetDebug(PetscBool*,PetscBool*,PetscBool*); 1229 PETSC_EXTERN PetscErrorCode PetscMallocValidate(int,const char[],const char[]); 1230 PETSC_EXTERN PetscErrorCode PetscMallocViewSet(PetscLogDouble); 1231 PETSC_EXTERN PetscErrorCode PetscMallocViewGet(PetscBool*); 1232 1233 PETSC_EXTERN const char *const PetscDataTypes[]; 1234 PETSC_EXTERN PetscErrorCode PetscDataTypeToMPIDataType(PetscDataType,MPI_Datatype*); 1235 PETSC_EXTERN PetscErrorCode PetscMPIDataTypeToPetscDataType(MPI_Datatype,PetscDataType*); 1236 PETSC_EXTERN PetscErrorCode PetscDataTypeGetSize(PetscDataType,size_t*); 1237 PETSC_EXTERN PetscErrorCode PetscDataTypeFromString(const char*,PetscDataType*,PetscBool*); 1238 1239 /* 1240 Basic memory and string operations. These are usually simple wrappers 1241 around the basic Unix system calls, but a few of them have additional 1242 functionality and/or error checking. 1243 */ 1244 PETSC_EXTERN PetscErrorCode PetscBitMemcpy(void*,PetscInt,const void*,PetscInt,PetscInt,PetscDataType); 1245 PETSC_EXTERN PetscErrorCode PetscMemcmp(const void*,const void*,size_t,PetscBool *); 1246 PETSC_EXTERN PetscErrorCode PetscStrlen(const char[],size_t*); 1247 PETSC_EXTERN PetscErrorCode PetscStrToArray(const char[],char,int*,char ***); 1248 PETSC_EXTERN PetscErrorCode PetscStrToArrayDestroy(int,char **); 1249 PETSC_EXTERN PetscErrorCode PetscStrcmp(const char[],const char[],PetscBool *); 1250 PETSC_EXTERN PetscErrorCode PetscStrgrt(const char[],const char[],PetscBool *); 1251 PETSC_EXTERN PetscErrorCode PetscStrcasecmp(const char[],const char[],PetscBool *); 1252 PETSC_EXTERN PetscErrorCode PetscStrncmp(const char[],const char[],size_t,PetscBool *); 1253 PETSC_EXTERN PetscErrorCode PetscStrcpy(char[],const char[]); 1254 PETSC_EXTERN PetscErrorCode PetscStrcat(char[],const char[]); 1255 PETSC_EXTERN PetscErrorCode PetscStrlcat(char[],const char[],size_t); 1256 PETSC_EXTERN PetscErrorCode PetscStrncpy(char[],const char[],size_t); 1257 PETSC_EXTERN PetscErrorCode PetscStrchr(const char[],char,char *[]); 1258 PETSC_EXTERN PetscErrorCode PetscStrtolower(char[]); 1259 PETSC_EXTERN PetscErrorCode PetscStrtoupper(char[]); 1260 PETSC_EXTERN PetscErrorCode PetscStrrchr(const char[],char,char *[]); 1261 PETSC_EXTERN PetscErrorCode PetscStrstr(const char[],const char[],char *[]); 1262 PETSC_EXTERN PetscErrorCode PetscStrrstr(const char[],const char[],char *[]); 1263 PETSC_EXTERN PetscErrorCode PetscStrendswith(const char[],const char[],PetscBool*); 1264 PETSC_EXTERN PetscErrorCode PetscStrbeginswith(const char[],const char[],PetscBool*); 1265 PETSC_EXTERN PetscErrorCode PetscStrendswithwhich(const char[],const char *const*,PetscInt*); 1266 PETSC_EXTERN PetscErrorCode PetscStrallocpy(const char[],char *[]); 1267 PETSC_EXTERN PetscErrorCode PetscStrArrayallocpy(const char *const*,char***); 1268 PETSC_EXTERN PetscErrorCode PetscStrArrayDestroy(char***); 1269 PETSC_EXTERN PetscErrorCode PetscStrNArrayallocpy(PetscInt,const char *const*,char***); 1270 PETSC_EXTERN PetscErrorCode PetscStrNArrayDestroy(PetscInt,char***); 1271 PETSC_EXTERN PetscErrorCode PetscStrreplace(MPI_Comm,const char[],char[],size_t); 1272 1273 PETSC_EXTERN void PetscStrcmpNoError(const char[],const char[],PetscBool *); 1274 1275 PETSC_EXTERN PetscErrorCode PetscTokenCreate(const char[],const char,PetscToken*); 1276 PETSC_EXTERN PetscErrorCode PetscTokenFind(PetscToken,char *[]); 1277 PETSC_EXTERN PetscErrorCode PetscTokenDestroy(PetscToken*); 1278 1279 PETSC_EXTERN PetscErrorCode PetscStrInList(const char[],const char[],char,PetscBool*); 1280 PETSC_EXTERN PetscErrorCode PetscEListFind(PetscInt,const char *const*,const char*,PetscInt*,PetscBool*); 1281 PETSC_EXTERN PetscErrorCode PetscEnumFind(const char *const*,const char*,PetscEnum*,PetscBool*); 1282 1283 /* 1284 These are MPI operations for MPI_Allreduce() etc 1285 */ 1286 PETSC_EXTERN MPI_Op MPIU_MAXSUM_OP; 1287 #if (defined(PETSC_HAVE_COMPLEX) && !defined(PETSC_HAVE_MPI_C_DOUBLE_COMPLEX)) || defined(PETSC_USE_REAL___FLOAT128) || defined(PETSC_USE_REAL___FP16) 1288 PETSC_EXTERN MPI_Op MPIU_SUM; 1289 #else 1290 #define MPIU_SUM MPI_SUM 1291 #endif 1292 #if defined(PETSC_USE_REAL___FLOAT128) || defined(PETSC_USE_REAL___FP16) 1293 PETSC_EXTERN MPI_Op MPIU_MAX; 1294 PETSC_EXTERN MPI_Op MPIU_MIN; 1295 #else 1296 #define MPIU_MAX MPI_MAX 1297 #define MPIU_MIN MPI_MIN 1298 #endif 1299 PETSC_EXTERN PetscErrorCode PetscMaxSum(MPI_Comm,const PetscInt[],PetscInt*,PetscInt*); 1300 1301 PETSC_EXTERN PetscErrorCode MPIULong_Send(void*,PetscInt,MPI_Datatype,PetscMPIInt,PetscMPIInt,MPI_Comm); 1302 PETSC_EXTERN PetscErrorCode MPIULong_Recv(void*,PetscInt,MPI_Datatype,PetscMPIInt,PetscMPIInt,MPI_Comm); 1303 1304 PETSC_EXTERN const char *const PetscFileModes[]; 1305 1306 /* 1307 Defines PETSc error handling. 1308 */ 1309 #include <petscerror.h> 1310 1311 #define PETSC_SMALLEST_CLASSID 1211211 1312 PETSC_EXTERN PetscClassId PETSC_LARGEST_CLASSID; 1313 PETSC_EXTERN PetscClassId PETSC_OBJECT_CLASSID; 1314 PETSC_EXTERN PetscErrorCode PetscClassIdRegister(const char[],PetscClassId *); 1315 PETSC_EXTERN PetscErrorCode PetscObjectGetId(PetscObject,PetscObjectId*); 1316 PETSC_EXTERN PetscErrorCode PetscObjectCompareId(PetscObject,PetscObjectId,PetscBool*); 1317 1318 1319 /* 1320 Routines that get memory usage information from the OS 1321 */ 1322 PETSC_EXTERN PetscErrorCode PetscMemoryGetCurrentUsage(PetscLogDouble *); 1323 PETSC_EXTERN PetscErrorCode PetscMemoryGetMaximumUsage(PetscLogDouble *); 1324 PETSC_EXTERN PetscErrorCode PetscMemorySetGetMaximumUsage(void); 1325 PETSC_EXTERN PetscErrorCode PetscMemoryTrace(const char[]); 1326 1327 PETSC_EXTERN PetscErrorCode PetscSleep(PetscReal); 1328 1329 /* 1330 Initialization of PETSc 1331 */ 1332 PETSC_EXTERN PetscErrorCode PetscInitialize(int*,char***,const char[],const char[]); 1333 PETSC_EXTERN PetscErrorCode PetscInitializeNoPointers(int,char**,const char[],const char[]); 1334 PETSC_EXTERN PetscErrorCode PetscInitializeNoArguments(void); 1335 PETSC_EXTERN PetscErrorCode PetscInitialized(PetscBool *); 1336 PETSC_EXTERN PetscErrorCode PetscFinalized(PetscBool *); 1337 PETSC_EXTERN PetscErrorCode PetscFinalize(void); 1338 PETSC_EXTERN PetscErrorCode PetscInitializeFortran(void); 1339 PETSC_EXTERN PetscErrorCode PetscGetArgs(int*,char ***); 1340 PETSC_EXTERN PetscErrorCode PetscGetArguments(char ***); 1341 PETSC_EXTERN PetscErrorCode PetscFreeArguments(char **); 1342 1343 PETSC_EXTERN PetscErrorCode PetscEnd(void); 1344 PETSC_EXTERN PetscErrorCode PetscSysInitializePackage(void); 1345 1346 PETSC_EXTERN PetscErrorCode PetscPythonInitialize(const char[],const char[]); 1347 PETSC_EXTERN PetscErrorCode PetscPythonFinalize(void); 1348 PETSC_EXTERN PetscErrorCode PetscPythonPrintError(void); 1349 PETSC_EXTERN PetscErrorCode PetscPythonMonitorSet(PetscObject,const char[]); 1350 1351 PETSC_EXTERN PetscErrorCode PetscMonitorCompare(PetscErrorCode (*)(void),void *,PetscErrorCode (*)(void**),PetscErrorCode (*)(void),void *,PetscErrorCode (*)(void**),PetscBool *); 1352 1353 1354 /* 1355 These are so that in extern C code we can caste function pointers to non-extern C 1356 function pointers. Since the regular C++ code expects its function pointers to be C++ 1357 */ 1358 PETSC_EXTERN_TYPEDEF typedef void (**PetscVoidStarFunction)(void); 1359 PETSC_EXTERN_TYPEDEF typedef void (*PetscVoidFunction)(void); 1360 PETSC_EXTERN_TYPEDEF typedef PetscErrorCode (*PetscErrorCodeFunction)(void); 1361 1362 /* 1363 Functions that can act on any PETSc object. 1364 */ 1365 PETSC_EXTERN PetscErrorCode PetscObjectDestroy(PetscObject*); 1366 PETSC_EXTERN PetscErrorCode PetscObjectGetComm(PetscObject,MPI_Comm *); 1367 PETSC_EXTERN PetscErrorCode PetscObjectGetClassId(PetscObject,PetscClassId *); 1368 PETSC_EXTERN PetscErrorCode PetscObjectGetClassName(PetscObject,const char *[]); 1369 PETSC_EXTERN PetscErrorCode PetscObjectSetType(PetscObject,const char []); 1370 PETSC_EXTERN PetscErrorCode PetscObjectGetType(PetscObject,const char *[]); 1371 PETSC_EXTERN PetscErrorCode PetscObjectSetName(PetscObject,const char[]); 1372 PETSC_EXTERN PetscErrorCode PetscObjectGetName(PetscObject,const char*[]); 1373 PETSC_EXTERN PetscErrorCode PetscObjectSetTabLevel(PetscObject,PetscInt); 1374 PETSC_EXTERN PetscErrorCode PetscObjectGetTabLevel(PetscObject,PetscInt*); 1375 PETSC_EXTERN PetscErrorCode PetscObjectIncrementTabLevel(PetscObject,PetscObject,PetscInt); 1376 PETSC_EXTERN PetscErrorCode PetscObjectReference(PetscObject); 1377 PETSC_EXTERN PetscErrorCode PetscObjectGetReference(PetscObject,PetscInt*); 1378 PETSC_EXTERN PetscErrorCode PetscObjectDereference(PetscObject); 1379 PETSC_EXTERN PetscErrorCode PetscObjectGetNewTag(PetscObject,PetscMPIInt*); 1380 PETSC_EXTERN PetscErrorCode PetscObjectCompose(PetscObject,const char[],PetscObject); 1381 PETSC_EXTERN PetscErrorCode PetscObjectRemoveReference(PetscObject,const char[]); 1382 PETSC_EXTERN PetscErrorCode PetscObjectQuery(PetscObject,const char[],PetscObject*); 1383 PETSC_EXTERN PetscErrorCode PetscObjectComposeFunction_Private(PetscObject,const char[],void (*)(void)); 1384 #define PetscObjectComposeFunction(a,b,d) PetscObjectComposeFunction_Private(a,b,(PetscVoidFunction)(d)) 1385 PETSC_EXTERN PetscErrorCode PetscObjectSetFromOptions(PetscObject); 1386 PETSC_EXTERN PetscErrorCode PetscObjectSetUp(PetscObject); 1387 PETSC_EXTERN PetscErrorCode PetscObjectSetPrintedOptions(PetscObject); 1388 PETSC_EXTERN PetscErrorCode PetscObjectInheritPrintedOptions(PetscObject,PetscObject); 1389 PETSC_EXTERN PetscErrorCode PetscCommGetNewTag(MPI_Comm,PetscMPIInt*); 1390 1391 #include <petscviewertypes.h> 1392 #include <petscoptions.h> 1393 1394 PETSC_EXTERN PetscErrorCode PetscObjectsListGetGlobalNumbering(MPI_Comm,PetscInt,PetscObject*,PetscInt*,PetscInt*); 1395 1396 PETSC_EXTERN PetscErrorCode PetscMemoryShowUsage(PetscViewer,const char[]); 1397 PETSC_EXTERN PetscErrorCode PetscMemoryView(PetscViewer,const char[]); 1398 PETSC_EXTERN PetscErrorCode PetscObjectPrintClassNamePrefixType(PetscObject,PetscViewer); 1399 PETSC_EXTERN PetscErrorCode PetscObjectView(PetscObject,PetscViewer); 1400 #define PetscObjectQueryFunction(obj,name,fptr) PetscObjectQueryFunction_Private((obj),(name),(PetscVoidFunction*)(fptr)) 1401 PETSC_EXTERN PetscErrorCode PetscObjectQueryFunction_Private(PetscObject,const char[],void (**)(void)); 1402 PETSC_EXTERN PetscErrorCode PetscObjectSetOptionsPrefix(PetscObject,const char[]); 1403 PETSC_EXTERN PetscErrorCode PetscObjectAppendOptionsPrefix(PetscObject,const char[]); 1404 PETSC_EXTERN PetscErrorCode PetscObjectPrependOptionsPrefix(PetscObject,const char[]); 1405 PETSC_EXTERN PetscErrorCode PetscObjectGetOptionsPrefix(PetscObject,const char*[]); 1406 PETSC_EXTERN PetscErrorCode PetscObjectChangeTypeName(PetscObject,const char[]); 1407 PETSC_EXTERN PetscErrorCode PetscObjectRegisterDestroy(PetscObject); 1408 PETSC_EXTERN PetscErrorCode PetscObjectRegisterDestroyAll(void); 1409 PETSC_EXTERN PetscErrorCode PetscObjectViewFromOptions(PetscObject,PetscObject,const char[]); 1410 PETSC_EXTERN PetscErrorCode PetscObjectName(PetscObject); 1411 PETSC_EXTERN PetscErrorCode PetscObjectTypeCompare(PetscObject,const char[],PetscBool *); 1412 PETSC_EXTERN PetscErrorCode PetscObjectBaseTypeCompare(PetscObject,const char[],PetscBool *); 1413 PETSC_EXTERN PetscErrorCode PetscObjectTypeCompareAny(PetscObject,PetscBool*,const char[],...); 1414 PETSC_EXTERN PetscErrorCode PetscObjectBaseTypeCompareAny(PetscObject,PetscBool*,const char[],...); 1415 PETSC_EXTERN PetscErrorCode PetscRegisterFinalize(PetscErrorCode (*)(void)); 1416 PETSC_EXTERN PetscErrorCode PetscRegisterFinalizeAll(void); 1417 1418 #if defined(PETSC_HAVE_SAWS) 1419 PETSC_EXTERN PetscErrorCode PetscSAWsBlock(void); 1420 PETSC_EXTERN PetscErrorCode PetscObjectSAWsViewOff(PetscObject); 1421 PETSC_EXTERN PetscErrorCode PetscObjectSAWsSetBlock(PetscObject,PetscBool); 1422 PETSC_EXTERN PetscErrorCode PetscObjectSAWsBlock(PetscObject); 1423 PETSC_EXTERN PetscErrorCode PetscObjectSAWsGrantAccess(PetscObject); 1424 PETSC_EXTERN PetscErrorCode PetscObjectSAWsTakeAccess(PetscObject); 1425 PETSC_EXTERN void PetscStackSAWsGrantAccess(void); 1426 PETSC_EXTERN void PetscStackSAWsTakeAccess(void); 1427 PETSC_EXTERN PetscErrorCode PetscStackViewSAWs(void); 1428 PETSC_EXTERN PetscErrorCode PetscStackSAWsViewOff(void); 1429 1430 #else 1431 #define PetscSAWsBlock() 0 1432 #define PetscObjectSAWsViewOff(obj) 0 1433 #define PetscObjectSAWsSetBlock(obj,flg) 0 1434 #define PetscObjectSAWsBlock(obj) 0 1435 #define PetscObjectSAWsGrantAccess(obj) 0 1436 #define PetscObjectSAWsTakeAccess(obj) 0 1437 #define PetscStackViewSAWs() 0 1438 #define PetscStackSAWsViewOff() 0 1439 #define PetscStackSAWsTakeAccess() 1440 #define PetscStackSAWsGrantAccess() 1441 1442 #endif 1443 1444 PETSC_EXTERN PetscErrorCode PetscDLOpen(const char[],PetscDLMode,PetscDLHandle *); 1445 PETSC_EXTERN PetscErrorCode PetscDLClose(PetscDLHandle *); 1446 PETSC_EXTERN PetscErrorCode PetscDLSym(PetscDLHandle,const char[],void **); 1447 1448 #if defined(PETSC_USE_DEBUG) 1449 PETSC_EXTERN PetscErrorCode PetscMallocGetStack(void*,PetscStack**); 1450 #endif 1451 PETSC_EXTERN PetscErrorCode PetscObjectsDump(FILE*,PetscBool); 1452 1453 PETSC_EXTERN PetscErrorCode PetscObjectListDestroy(PetscObjectList*); 1454 PETSC_EXTERN PetscErrorCode PetscObjectListFind(PetscObjectList,const char[],PetscObject*); 1455 PETSC_EXTERN PetscErrorCode PetscObjectListReverseFind(PetscObjectList,PetscObject,char**,PetscBool*); 1456 PETSC_EXTERN PetscErrorCode PetscObjectListAdd(PetscObjectList *,const char[],PetscObject); 1457 PETSC_EXTERN PetscErrorCode PetscObjectListRemoveReference(PetscObjectList *,const char[]); 1458 PETSC_EXTERN PetscErrorCode PetscObjectListDuplicate(PetscObjectList,PetscObjectList *); 1459 1460 /* 1461 Dynamic library lists. Lists of names of routines in objects or in dynamic 1462 link libraries that will be loaded as needed. 1463 */ 1464 1465 #define PetscFunctionListAdd(list,name,fptr) PetscFunctionListAdd_Private((list),(name),(PetscVoidFunction)(fptr)) 1466 PETSC_EXTERN PetscErrorCode PetscFunctionListAdd_Private(PetscFunctionList*,const char[],void (*)(void)); 1467 PETSC_EXTERN PetscErrorCode PetscFunctionListDestroy(PetscFunctionList*); 1468 #define PetscFunctionListFind(list,name,fptr) PetscFunctionListFind_Private((list),(name),(PetscVoidFunction*)(fptr)) 1469 PETSC_EXTERN PetscErrorCode PetscFunctionListFind_Private(PetscFunctionList,const char[],void (**)(void)); 1470 PETSC_EXTERN PetscErrorCode PetscFunctionListPrintTypes(MPI_Comm,FILE*,const char[],const char[],const char[],const char[],PetscFunctionList,const char[],const char[]); 1471 PETSC_EXTERN PetscErrorCode PetscFunctionListDuplicate(PetscFunctionList,PetscFunctionList *); 1472 PETSC_EXTERN PetscErrorCode PetscFunctionListView(PetscFunctionList,PetscViewer); 1473 PETSC_EXTERN PetscErrorCode PetscFunctionListGet(PetscFunctionList,const char ***,int*); 1474 1475 PETSC_EXTERN PetscDLLibrary PetscDLLibrariesLoaded; 1476 PETSC_EXTERN PetscErrorCode PetscDLLibraryAppend(MPI_Comm,PetscDLLibrary *,const char[]); 1477 PETSC_EXTERN PetscErrorCode PetscDLLibraryPrepend(MPI_Comm,PetscDLLibrary *,const char[]); 1478 PETSC_EXTERN PetscErrorCode PetscDLLibrarySym(MPI_Comm,PetscDLLibrary *,const char[],const char[],void **); 1479 PETSC_EXTERN PetscErrorCode PetscDLLibraryPrintPath(PetscDLLibrary); 1480 PETSC_EXTERN PetscErrorCode PetscDLLibraryRetrieve(MPI_Comm,const char[],char *,size_t,PetscBool *); 1481 PETSC_EXTERN PetscErrorCode PetscDLLibraryOpen(MPI_Comm,const char[],PetscDLLibrary *); 1482 PETSC_EXTERN PetscErrorCode PetscDLLibraryClose(PetscDLLibrary); 1483 1484 /* 1485 Useful utility routines 1486 */ 1487 PETSC_EXTERN PetscErrorCode PetscSplitOwnership(MPI_Comm,PetscInt*,PetscInt*); 1488 PETSC_EXTERN PetscErrorCode PetscSplitOwnershipBlock(MPI_Comm,PetscInt,PetscInt*,PetscInt*); 1489 PETSC_EXTERN PetscErrorCode PetscSequentialPhaseBegin(MPI_Comm,PetscMPIInt); 1490 PETSC_EXTERN PetscErrorCode PetscSequentialPhaseEnd(MPI_Comm,PetscMPIInt); 1491 PETSC_EXTERN PetscErrorCode PetscBarrier(PetscObject); 1492 PETSC_EXTERN PetscErrorCode PetscMPIDump(FILE*); 1493 PETSC_EXTERN PetscErrorCode PetscGlobalMinMaxInt(MPI_Comm,PetscInt[],PetscInt[]); 1494 PETSC_EXTERN PetscErrorCode PetscGlobalMinMaxReal(MPI_Comm,PetscReal[],PetscReal[]); 1495 1496 /*MC 1497 PetscNot - negates a logical type value and returns result as a PetscBool 1498 1499 Notes: 1500 This is useful in cases like 1501 $ int *a; 1502 $ PetscBool flag = PetscNot(a) 1503 where !a would not return a PetscBool because we cannot provide a cast from int to PetscBool in C. 1504 1505 Level: beginner 1506 1507 .seealso : PetscBool, PETSC_TRUE, PETSC_FALSE 1508 M*/ 1509 #define PetscNot(a) ((a) ? PETSC_FALSE : PETSC_TRUE) 1510 1511 /*MC 1512 PetscHelpPrintf - Prints help messages. 1513 1514 Synopsis: 1515 #include <petscsys.h> 1516 PetscErrorCode (*PetscHelpPrintf)(const char format[],...); 1517 1518 Not Collective 1519 1520 Input Parameters: 1521 . format - the usual printf() format string 1522 1523 Level: developer 1524 1525 Fortran Note: 1526 This routine is not supported in Fortran. 1527 1528 1529 .seealso: PetscFPrintf(), PetscSynchronizedPrintf(), PetscErrorPrintf() 1530 M*/ 1531 PETSC_EXTERN PetscErrorCode (*PetscHelpPrintf)(MPI_Comm,const char[],...); 1532 1533 /* 1534 Defines PETSc profiling. 1535 */ 1536 #include <petsclog.h> 1537 1538 /* 1539 Simple PETSc parallel IO for ASCII printing 1540 */ 1541 PETSC_EXTERN PetscErrorCode PetscFixFilename(const char[],char[]); 1542 PETSC_EXTERN PetscErrorCode PetscFOpen(MPI_Comm,const char[],const char[],FILE**); 1543 PETSC_EXTERN PetscErrorCode PetscFClose(MPI_Comm,FILE*); 1544 PETSC_EXTERN PetscErrorCode PetscFPrintf(MPI_Comm,FILE*,const char[],...); 1545 PETSC_EXTERN PetscErrorCode PetscPrintf(MPI_Comm,const char[],...); 1546 PETSC_EXTERN PetscErrorCode PetscSNPrintf(char*,size_t,const char [],...); 1547 PETSC_EXTERN PetscErrorCode PetscSNPrintfCount(char*,size_t,const char [],size_t*,...); 1548 PETSC_EXTERN PetscErrorCode PetscFormatRealArray(char[],size_t,const char*,PetscInt,const PetscReal[]); 1549 1550 PETSC_EXTERN PetscErrorCode PetscErrorPrintfDefault(const char [],...); 1551 PETSC_EXTERN PetscErrorCode PetscErrorPrintfNone(const char [],...); 1552 PETSC_EXTERN PetscErrorCode PetscHelpPrintfDefault(MPI_Comm,const char [],...); 1553 1554 PETSC_EXTERN PetscErrorCode PetscFormatConvertGetSize(const char*,size_t*); 1555 PETSC_EXTERN PetscErrorCode PetscFormatConvert(const char*,char *); 1556 1557 #if defined(PETSC_HAVE_POPEN) 1558 PETSC_EXTERN PetscErrorCode PetscPOpen(MPI_Comm,const char[],const char[],const char[],FILE **); 1559 PETSC_EXTERN PetscErrorCode PetscPClose(MPI_Comm,FILE*); 1560 PETSC_EXTERN PetscErrorCode PetscPOpenSetMachine(const char[]); 1561 #endif 1562 1563 PETSC_EXTERN PetscErrorCode PetscSynchronizedPrintf(MPI_Comm,const char[],...); 1564 PETSC_EXTERN PetscErrorCode PetscSynchronizedFPrintf(MPI_Comm,FILE*,const char[],...); 1565 PETSC_EXTERN PetscErrorCode PetscSynchronizedFlush(MPI_Comm,FILE*); 1566 PETSC_EXTERN PetscErrorCode PetscSynchronizedFGets(MPI_Comm,FILE*,size_t,char[]); 1567 PETSC_EXTERN PetscErrorCode PetscStartMatlab(MPI_Comm,const char[],const char[],FILE**); 1568 PETSC_EXTERN PetscErrorCode PetscStartJava(MPI_Comm,const char[],const char[],FILE**); 1569 PETSC_EXTERN PetscErrorCode PetscGetPetscDir(const char*[]); 1570 1571 PETSC_EXTERN PetscClassId PETSC_CONTAINER_CLASSID; 1572 PETSC_EXTERN PetscErrorCode PetscContainerGetPointer(PetscContainer,void**); 1573 PETSC_EXTERN PetscErrorCode PetscContainerSetPointer(PetscContainer,void*); 1574 PETSC_EXTERN PetscErrorCode PetscContainerDestroy(PetscContainer*); 1575 PETSC_EXTERN PetscErrorCode PetscContainerCreate(MPI_Comm,PetscContainer*); 1576 PETSC_EXTERN PetscErrorCode PetscContainerSetUserDestroy(PetscContainer,PetscErrorCode (*)(void*)); 1577 PETSC_EXTERN PetscErrorCode PetscContainerUserDestroyDefault(void*); 1578 1579 /* 1580 For use in debuggers 1581 */ 1582 PETSC_EXTERN PetscMPIInt PetscGlobalRank; 1583 PETSC_EXTERN PetscMPIInt PetscGlobalSize; 1584 PETSC_EXTERN PetscErrorCode PetscIntView(PetscInt,const PetscInt[],PetscViewer); 1585 PETSC_EXTERN PetscErrorCode PetscRealView(PetscInt,const PetscReal[],PetscViewer); 1586 PETSC_EXTERN PetscErrorCode PetscScalarView(PetscInt,const PetscScalar[],PetscViewer); 1587 1588 #include <stddef.h> 1589 #include <string.h> /* for memcpy, memset */ 1590 #include <stdlib.h> 1591 1592 #if defined(PETSC_HAVE_XMMINTRIN_H) && !defined(__CUDACC__) 1593 #include <xmmintrin.h> 1594 #endif 1595 1596 /*@C 1597 PetscMemmove - Copies n bytes, beginning at location b, to the space 1598 beginning at location a. Copying between regions that overlap will 1599 take place correctly. Use PetscMemcpy() if the locations do not overlap 1600 1601 Not Collective 1602 1603 Input Parameters: 1604 + b - pointer to initial memory space 1605 . a - pointer to copy space 1606 - n - length (in bytes) of space to copy 1607 1608 Level: intermediate 1609 1610 Note: 1611 PetscArraymove() is preferred 1612 This routine is analogous to memmove(). 1613 1614 Developers Note: This is inlined for performance 1615 1616 .seealso: PetscMemcpy(), PetscMemcmp(), PetscArrayzero(), PetscMemzero(), PetscArraycmp(), PetscArraycpy(), PetscStrallocpy(), 1617 PetscArraymove() 1618 @*/ 1619 PETSC_STATIC_INLINE PetscErrorCode PetscMemmove(void *a,const void *b,size_t n) 1620 { 1621 PetscFunctionBegin; 1622 if (n > 0 && !a) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_NULL,"Trying to copy to null pointer"); 1623 if (n > 0 && !b) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_NULL,"Trying to copy from a null pointer"); 1624 #if !defined(PETSC_HAVE_MEMMOVE) 1625 if (a < b) { 1626 if (a <= b - n) memcpy(a,b,n); 1627 else { 1628 memcpy(a,b,(int)(b - a)); 1629 PetscMemmove(b,b + (int)(b - a),n - (int)(b - a)); 1630 } 1631 } else { 1632 if (b <= a - n) memcpy(a,b,n); 1633 else { 1634 memcpy(b + n,b + (n - (int)(a - b)),(int)(a - b)); 1635 PetscMemmove(a,b,n - (int)(a - b)); 1636 } 1637 } 1638 #else 1639 memmove((char*)(a),(char*)(b),n); 1640 #endif 1641 PetscFunctionReturn(0); 1642 } 1643 1644 /*@C 1645 PetscMemcpy - Copies n bytes, beginning at location b, to the space 1646 beginning at location a. The two memory regions CANNOT overlap, use 1647 PetscMemmove() in that case. 1648 1649 Not Collective 1650 1651 Input Parameters: 1652 + b - pointer to initial memory space 1653 - n - length (in bytes) of space to copy 1654 1655 Output Parameter: 1656 . a - pointer to copy space 1657 1658 Level: intermediate 1659 1660 Compile Option: 1661 PETSC_PREFER_DCOPY_FOR_MEMCPY will cause the BLAS dcopy() routine to be used 1662 for memory copies on double precision values. 1663 PETSC_PREFER_COPY_FOR_MEMCPY will cause C code to be used 1664 for memory copies on double precision values. 1665 PETSC_PREFER_FORTRAN_FORMEMCPY will cause Fortran code to be used 1666 for memory copies on double precision values. 1667 1668 Note: 1669 Prefer PetscArraycpy() 1670 This routine is analogous to memcpy(). 1671 Not available from Fortran 1672 1673 Developer Note: this is inlined for fastest performance 1674 1675 .seealso: PetscMemzero(), PetscMemcmp(), PetscArrayzero(), PetscArraycmp(), PetscArraycpy(), PetscMemmove(), PetscStrallocpy() 1676 1677 @*/ 1678 PETSC_STATIC_INLINE PetscErrorCode PetscMemcpy(void *a,const void *b,size_t n) 1679 { 1680 #if defined(PETSC_USE_DEBUG) 1681 size_t al = (size_t) a,bl = (size_t) b; 1682 size_t nl = (size_t) n; 1683 PetscFunctionBegin; 1684 if (n > 0 && !b) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_NULL,"Trying to copy from a null pointer"); 1685 if (n > 0 && !a) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_NULL,"Trying to copy to a null pointer"); 1686 #else 1687 PetscFunctionBegin; 1688 #endif 1689 if (a != b && n > 0) { 1690 #if defined(PETSC_USE_DEBUG) 1691 if ((al > bl && (al - bl) < nl) || (bl - al) < nl) SETERRQ3(PETSC_COMM_SELF,PETSC_ERR_ARG_INCOMP,"Memory regions overlap: either use PetscMemmov()\n\ 1692 or make sure your copy regions and lengths are correct. \n\ 1693 Length (bytes) %ld first address %ld second address %ld",nl,al,bl); 1694 #endif 1695 #if (defined(PETSC_PREFER_DCOPY_FOR_MEMCPY) || defined(PETSC_PREFER_COPY_FOR_MEMCPY) || defined(PETSC_PREFER_FORTRAN_FORMEMCPY)) 1696 if (!(a % sizeof(PetscScalar)) && !(n % sizeof(PetscScalar))) { 1697 size_t len = n/sizeof(PetscScalar); 1698 #if defined(PETSC_PREFER_DCOPY_FOR_MEMCPY) 1699 PetscBLASInt one = 1,blen; 1700 PetscErrorCode ierr; 1701 ierr = PetscBLASIntCast(len,&blen);CHKERRQ(ierr); 1702 PetscStackCallBLAS("BLAScopy",BLAScopy_(&blen,(PetscScalar *)b,&one,(PetscScalar *)a,&one)); 1703 #elif defined(PETSC_PREFER_FORTRAN_FORMEMCPY) 1704 fortrancopy_(&len,(PetscScalar*)b,(PetscScalar*)a); 1705 #else 1706 size_t i; 1707 PetscScalar *x = (PetscScalar*)b, *y = (PetscScalar*)a; 1708 for (i=0; i<len; i++) y[i] = x[i]; 1709 #endif 1710 } else { 1711 memcpy((char*)(a),(char*)(b),n); 1712 } 1713 #else 1714 memcpy((char*)(a),(char*)(b),n); 1715 #endif 1716 } 1717 PetscFunctionReturn(0); 1718 } 1719 1720 /*@C 1721 PetscMemzero - Zeros the specified memory. 1722 1723 Not Collective 1724 1725 Input Parameters: 1726 + a - pointer to beginning memory location 1727 - n - length (in bytes) of memory to initialize 1728 1729 Level: intermediate 1730 1731 Compile Option: 1732 PETSC_PREFER_BZERO - on certain machines (the IBM RS6000) the bzero() routine happens 1733 to be faster than the memset() routine. This flag causes the bzero() routine to be used. 1734 1735 Not available from Fortran 1736 Prefer PetscArrayzero() 1737 1738 Developer Note: this is inlined for fastest performance 1739 1740 .seealso: PetscMemcpy(), PetscMemcmp(), PetscArrayzero(), PetscArraycmp(), PetscArraycpy(), PetscMemmove(), PetscStrallocpy() 1741 @*/ 1742 PETSC_STATIC_INLINE PetscErrorCode PetscMemzero(void *a,size_t n) 1743 { 1744 if (n > 0) { 1745 #if defined(PETSC_USE_DEBUG) 1746 if (!a) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_NULL,"Trying to zero at a null pointer"); 1747 #endif 1748 #if defined(PETSC_PREFER_ZERO_FOR_MEMZERO) 1749 if (!(((long) a) % sizeof(PetscScalar)) && !(n % sizeof(PetscScalar))) { 1750 size_t i,len = n/sizeof(PetscScalar); 1751 PetscScalar *x = (PetscScalar*)a; 1752 for (i=0; i<len; i++) x[i] = 0.0; 1753 } else { 1754 #elif defined(PETSC_PREFER_FORTRAN_FOR_MEMZERO) 1755 if (!(((long) a) % sizeof(PetscScalar)) && !(n % sizeof(PetscScalar))) { 1756 PetscInt len = n/sizeof(PetscScalar); 1757 fortranzero_(&len,(PetscScalar*)a); 1758 } else { 1759 #endif 1760 #if defined(PETSC_PREFER_BZERO) 1761 bzero((char *)a,n); 1762 #else 1763 memset((char*)a,0,n); 1764 #endif 1765 #if defined(PETSC_PREFER_ZERO_FOR_MEMZERO) || defined(PETSC_PREFER_FORTRAN_FOR_MEMZERO) 1766 } 1767 #endif 1768 } 1769 return 0; 1770 } 1771 1772 /*MC 1773 PetscArraycmp - Compares two arrays in memory. 1774 1775 Synopsis: 1776 #include <petscsys.h> 1777 PetscErrorCode PetscArraycmp(const anytype *str1,const anytype *str2,size_t cnt,PetscBool *e) 1778 1779 Not Collective 1780 1781 Input Parameters: 1782 + str1 - First array 1783 . str2 - Second array 1784 - cnt - Count of the array, not in bytes, but number of entries in the arrays 1785 1786 Output Parameters: 1787 . e - PETSC_TRUE if equal else PETSC_FALSE. 1788 1789 Level: intermediate 1790 1791 Note: 1792 This routine is a preferred replacement to PetscMemcmp() 1793 The arrays must be of the same type 1794 1795 .seealso: PetscMemcpy(), PetscMemcmp(), PetscArrayzero(), PetscMemzero(), PetscArraycpy(), PetscMemmove(), PetscStrallocpy(), 1796 PetscArraymove() 1797 M*/ 1798 #define PetscArraycmp(str1,str2,cnt,e) ((sizeof(*(str1)) != sizeof(*(str2))) || PetscMemcmp(str1,str2,(size_t)(cnt)*sizeof(*(str1)),e)) 1799 1800 /*MC 1801 PetscArraymove - Copies from one array in memory to another, the arrays may overlap. Use PetscArraycpy() when the arrays 1802 do not overlap 1803 1804 Synopsis: 1805 #include <petscsys.h> 1806 PetscErrorCode PetscArraymove(anytype *str1,const anytype *str2,size_t cnt) 1807 1808 Not Collective 1809 1810 Input Parameters: 1811 + str1 - First array 1812 . str2 - Second array 1813 - cnt - Count of the array, not in bytes, but number of entries in the arrays 1814 1815 Level: intermediate 1816 1817 Note: 1818 This routine is a preferred replacement to PetscMemmove() 1819 The arrays must be of the same type 1820 1821 .seealso: PetscMemcpy(), PetscMemcmp(), PetscArrayzero(), PetscMemzero(), PetscArraycpy(), PetscMemmove(), PetscArraycmp(), PetscStrallocpy() 1822 M*/ 1823 #define PetscArraymove(str1,str2,cnt) ((sizeof(*(str1)) != sizeof(*(str2))) || PetscMemmove(str1,str2,(size_t)(cnt)*sizeof(*(str1)))) 1824 1825 /*MC 1826 PetscArraycpy - Copies from one array in memory to another 1827 1828 Synopsis: 1829 #include <petscsys.h> 1830 PetscErrorCode PetscArraycpy(anytype *str1,const anytype *str2,size_t cnt) 1831 1832 Not Collective 1833 1834 Input Parameters: 1835 + str1 - First array (destination) 1836 . str2 - Second array (source) 1837 - cnt - Count of the array, not in bytes, but number of entries in the arrays 1838 1839 Level: intermediate 1840 1841 Note: 1842 This routine is a preferred replacement to PetscMemcpy() 1843 The arrays must be of the same type 1844 1845 .seealso: PetscMemcpy(), PetscMemcmp(), PetscArrayzero(), PetscMemzero(), PetscArraymove(), PetscMemmove(), PetscArraycmp(), PetscStrallocpy() 1846 M*/ 1847 #define PetscArraycpy(str1,str2,cnt) ((sizeof(*(str1)) != sizeof(*(str2))) || PetscMemcpy(str1,str2,(size_t)(cnt)*sizeof(*(str1)))) 1848 1849 /*MC 1850 PetscArrayzero - Zeros an array in memory. 1851 1852 Synopsis: 1853 #include <petscsys.h> 1854 PetscErrorCode PetscArrayzero(anytype *str1,size_t cnt) 1855 1856 Not Collective 1857 1858 Input Parameters: 1859 + str1 - array 1860 - cnt - Count of the array, not in bytes, but number of entries in the array 1861 1862 Level: intermediate 1863 1864 Note: 1865 This routine is a preferred replacement to PetscMemzero() 1866 1867 .seealso: PetscMemcpy(), PetscMemcmp(), PetscMemzero(), PetscArraycmp(), PetscArraycpy(), PetscMemmove(), PetscStrallocpy(), PetscArraymove() 1868 M*/ 1869 #define PetscArrayzero(str1,cnt) PetscMemzero(str1,(size_t)(cnt)*sizeof(*(str1))) 1870 1871 /*MC 1872 PetscPrefetchBlock - Prefetches a block of memory 1873 1874 Synopsis: 1875 #include <petscsys.h> 1876 void PetscPrefetchBlock(const anytype *a,size_t n,int rw,int t) 1877 1878 Not Collective 1879 1880 Input Parameters: 1881 + a - pointer to first element to fetch (any type but usually PetscInt or PetscScalar) 1882 . n - number of elements to fetch 1883 . rw - 1 if the memory will be written to, otherwise 0 (ignored by many processors) 1884 - t - temporal locality (PETSC_PREFETCH_HINT_{NTA,T0,T1,T2}), see note 1885 1886 Level: developer 1887 1888 Notes: 1889 The last two arguments (rw and t) must be compile-time constants. 1890 1891 Adopting Intel's x86/x86-64 conventions, there are four levels of temporal locality. Not all architectures offer 1892 equivalent locality hints, but the following macros are always defined to their closest analogue. 1893 + PETSC_PREFETCH_HINT_NTA - Non-temporal. Prefetches directly to L1, evicts to memory (skips higher level cache unless it was already there when prefetched). 1894 . PETSC_PREFETCH_HINT_T0 - Fetch to all levels of cache and evict to the closest level. Use this when the memory will be reused regularly despite necessary eviction from L1. 1895 . PETSC_PREFETCH_HINT_T1 - Fetch to level 2 and higher (not L1). 1896 - PETSC_PREFETCH_HINT_T2 - Fetch to high-level cache only. (On many systems, T0 and T1 are equivalent.) 1897 1898 This function does nothing on architectures that do not support prefetch and never errors (even if passed an invalid 1899 address). 1900 1901 M*/ 1902 #define PetscPrefetchBlock(a,n,rw,t) do { \ 1903 const char *_p = (const char*)(a),*_end = (const char*)((a)+(n)); \ 1904 for ( ; _p < _end; _p += PETSC_LEVEL1_DCACHE_LINESIZE) PETSC_Prefetch(_p,(rw),(t)); \ 1905 } while (0) 1906 1907 /* 1908 Determine if some of the kernel computation routines use 1909 Fortran (rather than C) for the numerical calculations. On some machines 1910 and compilers (like complex numbers) the Fortran version of the routines 1911 is faster than the C/C++ versions. The flag --with-fortran-kernels 1912 should be used with ./configure to turn these on. 1913 */ 1914 #if defined(PETSC_USE_FORTRAN_KERNELS) 1915 1916 #if !defined(PETSC_USE_FORTRAN_KERNEL_MULTCRL) 1917 #define PETSC_USE_FORTRAN_KERNEL_MULTCRL 1918 #endif 1919 1920 #if !defined(PETSC_USE_FORTRAN_KERNEL_MULTAIJPERM) 1921 #define PETSC_USE_FORTRAN_KERNEL_MULTAIJPERM 1922 #endif 1923 1924 #if !defined(PETSC_USE_FORTRAN_KERNEL_MULTAIJ) 1925 #define PETSC_USE_FORTRAN_KERNEL_MULTAIJ 1926 #endif 1927 1928 #if !defined(PETSC_USE_FORTRAN_KERNEL_MULTTRANSPOSEAIJ) 1929 #define PETSC_USE_FORTRAN_KERNEL_MULTTRANSPOSEAIJ 1930 #endif 1931 1932 #if !defined(PETSC_USE_FORTRAN_KERNEL_NORM) 1933 #define PETSC_USE_FORTRAN_KERNEL_NORM 1934 #endif 1935 1936 #if !defined(PETSC_USE_FORTRAN_KERNEL_MAXPY) 1937 #define PETSC_USE_FORTRAN_KERNEL_MAXPY 1938 #endif 1939 1940 #if !defined(PETSC_USE_FORTRAN_KERNEL_SOLVEAIJ) 1941 #define PETSC_USE_FORTRAN_KERNEL_SOLVEAIJ 1942 #endif 1943 1944 #if !defined(PETSC_USE_FORTRAN_KERNEL_RELAXAIJ) 1945 #define PETSC_USE_FORTRAN_KERNEL_RELAXAIJ 1946 #endif 1947 1948 #if !defined(PETSC_USE_FORTRAN_KERNEL_SOLVEBAIJ) 1949 #define PETSC_USE_FORTRAN_KERNEL_SOLVEBAIJ 1950 #endif 1951 1952 #if !defined(PETSC_USE_FORTRAN_KERNEL_MULTADDAIJ) 1953 #define PETSC_USE_FORTRAN_KERNEL_MULTADDAIJ 1954 #endif 1955 1956 #if !defined(PETSC_USE_FORTRAN_KERNEL_MDOT) 1957 #define PETSC_USE_FORTRAN_KERNEL_MDOT 1958 #endif 1959 1960 #if !defined(PETSC_USE_FORTRAN_KERNEL_XTIMESY) 1961 #define PETSC_USE_FORTRAN_KERNEL_XTIMESY 1962 #endif 1963 1964 #if !defined(PETSC_USE_FORTRAN_KERNEL_AYPX) 1965 #define PETSC_USE_FORTRAN_KERNEL_AYPX 1966 #endif 1967 1968 #if !defined(PETSC_USE_FORTRAN_KERNEL_WAXPY) 1969 #define PETSC_USE_FORTRAN_KERNEL_WAXPY 1970 #endif 1971 1972 #endif 1973 1974 /* 1975 Macros for indicating code that should be compiled with a C interface, 1976 rather than a C++ interface. Any routines that are dynamically loaded 1977 (such as the PCCreate_XXX() routines) must be wrapped so that the name 1978 mangler does not change the functions symbol name. This just hides the 1979 ugly extern "C" {} wrappers. 1980 */ 1981 #if defined(__cplusplus) 1982 # define EXTERN_C_BEGIN extern "C" { 1983 # define EXTERN_C_END } 1984 #else 1985 # define EXTERN_C_BEGIN 1986 # define EXTERN_C_END 1987 #endif 1988 1989 /* --------------------------------------------------------------------*/ 1990 1991 /*MC 1992 MPI_Comm - the basic object used by MPI to determine which processes are involved in a 1993 communication 1994 1995 Level: beginner 1996 1997 Note: This manual page is a place-holder because MPICH does not have a manual page for MPI_Comm 1998 1999 .seealso: PETSC_COMM_WORLD, PETSC_COMM_SELF 2000 M*/ 2001 2002 #if defined(PETSC_HAVE_MPIIO) 2003 PETSC_EXTERN PetscErrorCode MPIU_File_write_all(MPI_File,void*,PetscMPIInt,MPI_Datatype,MPI_Status*); 2004 PETSC_EXTERN PetscErrorCode MPIU_File_read_all(MPI_File,void*,PetscMPIInt,MPI_Datatype,MPI_Status*); 2005 PETSC_EXTERN PetscErrorCode MPIU_File_write_at(MPI_File,MPI_Offset,void*,PetscMPIInt,MPI_Datatype,MPI_Status*); 2006 PETSC_EXTERN PetscErrorCode MPIU_File_read_at(MPI_File,MPI_Offset,void*,PetscMPIInt,MPI_Datatype,MPI_Status*); 2007 PETSC_EXTERN PetscErrorCode MPIU_File_write_at_all(MPI_File,MPI_Offset,void*,PetscMPIInt,MPI_Datatype,MPI_Status*); 2008 PETSC_EXTERN PetscErrorCode MPIU_File_read_at_all(MPI_File,MPI_Offset,void*,PetscMPIInt,MPI_Datatype,MPI_Status*); 2009 #endif 2010 2011 /* the following petsc_static_inline require petscerror.h */ 2012 2013 /* Limit MPI to 32-bits */ 2014 #define PETSC_MPI_INT_MAX 2147483647 2015 #define PETSC_MPI_INT_MIN -2147483647 2016 /* Limit BLAS to 32-bits */ 2017 #define PETSC_BLAS_INT_MAX 2147483647 2018 #define PETSC_BLAS_INT_MIN -2147483647 2019 2020 /*@C 2021 PetscIntCast - casts a PetscInt64 (which is 64 bits in size) to a PetscInt (which may be 32 bits in size), generates an 2022 error if the PetscInt is not large enough to hold the number. 2023 2024 Not Collective 2025 2026 Input Parameter: 2027 . a - the PetscInt64 value 2028 2029 Output Parameter: 2030 . b - the resulting PetscInt value 2031 2032 Level: advanced 2033 2034 Notes: If integers needed for the applications are too large to fit in 32 bit ints you can ./configure using --with-64-bit-indices to make PetscInt use 64 bit ints 2035 2036 Not available from Fortran 2037 2038 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscMPIIntCast(), PetscBLASIntCast() 2039 @*/ 2040 PETSC_STATIC_INLINE PetscErrorCode PetscIntCast(PetscInt64 a,PetscInt *b) 2041 { 2042 PetscFunctionBegin; 2043 #if !defined(PETSC_USE_64BIT_INDICES) 2044 if ((a) > PETSC_MAX_INT) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Integer too long for PetscInt, you may need to ./configure using --with-64-bit-indices"); 2045 #endif 2046 *b = (PetscInt)(a); 2047 PetscFunctionReturn(0); 2048 } 2049 2050 /*@C 2051 PetscBLASIntCast - casts a PetscInt (which may be 64 bits in size) to a PetscBLASInt (which may be 32 bits in size), generates an 2052 error if the PetscBLASInt is not large enough to hold the number. 2053 2054 Not Collective 2055 2056 Input Parameter: 2057 . a - the PetscInt value 2058 2059 Output Parameter: 2060 . b - the resulting PetscBLASInt value 2061 2062 Level: advanced 2063 2064 Not available from Fortran 2065 2066 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscMPIIntCast(), PetscIntCast() 2067 @*/ 2068 PETSC_STATIC_INLINE PetscErrorCode PetscBLASIntCast(PetscInt a,PetscBLASInt *b) 2069 { 2070 PetscFunctionBegin; 2071 #if defined(PETSC_USE_64BIT_INDICES) && !defined(PETSC_HAVE_64BIT_BLAS_INDICES) 2072 *b = 0; 2073 if ((a) > PETSC_BLAS_INT_MAX) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Array too long for BLAS/LAPACK"); 2074 #endif 2075 *b = (PetscBLASInt)(a); 2076 PetscFunctionReturn(0); 2077 } 2078 2079 /*@C 2080 PetscMPIIntCast - casts a PetscInt (which may be 64 bits in size) to a PetscMPIInt (which may be 32 bits in size), generates an 2081 error if the PetscMPIInt is not large enough to hold the number. 2082 2083 Not Collective 2084 2085 Input Parameter: 2086 . a - the PetscInt value 2087 2088 Output Parameter: 2089 . b - the resulting PetscMPIInt value 2090 2091 Level: advanced 2092 2093 Not available from Fortran 2094 2095 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscBLASIntCast(), PetscIntCast() 2096 @*/ 2097 PETSC_STATIC_INLINE PetscErrorCode PetscMPIIntCast(PetscInt a,PetscMPIInt *b) 2098 { 2099 PetscFunctionBegin; 2100 #if defined(PETSC_USE_64BIT_INDICES) 2101 *b = 0; 2102 if ((a) > PETSC_MPI_INT_MAX) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Array too long for MPI"); 2103 #endif 2104 *b = (PetscMPIInt)(a); 2105 PetscFunctionReturn(0); 2106 } 2107 2108 #define PetscInt64Mult(a,b) ((PetscInt64)(a))*((PetscInt64)(b)) 2109 2110 /*@C 2111 2112 PetscRealIntMultTruncate - Computes the product of a positive PetscReal and a positive PetscInt and truncates the value to slightly less than the maximal possible value 2113 2114 Not Collective 2115 2116 Input Parameter: 2117 + a - the PetscReal value 2118 - b - the second value 2119 2120 Returns: 2121 the result as a PetscInt value 2122 2123 Use PetscInt64Mult() to compute the product of two PetscInt as a PetscInt64 2124 Use PetscIntMultTruncate() to compute the product of two positive PetscInt and truncate to fit a PetscInt 2125 Use PetscIntMultError() to compute the product of two PetscInt if you wish to generate an error if the result will not fit in a PetscInt 2126 2127 Developers Note: 2128 We currently assume that PetscInt addition can never overflow, this is obviously wrong but requires many more checks. 2129 2130 This is used where we compute approximate sizes for workspace and need to insure the workspace is index-able. 2131 2132 Not available from Fortran 2133 2134 Level: advanced 2135 2136 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscBLASIntCast(), PetscInt64Mult() 2137 @*/ 2138 PETSC_STATIC_INLINE PetscInt PetscRealIntMultTruncate(PetscReal a,PetscInt b) 2139 { 2140 PetscInt64 r; 2141 2142 r = (PetscInt64) (a*(PetscReal)b); 2143 if (r > PETSC_MAX_INT - 100) r = PETSC_MAX_INT - 100; 2144 return (PetscInt) r; 2145 } 2146 2147 /*@C 2148 2149 PetscIntMultTruncate - Computes the product of two positive PetscInt and truncates the value to slightly less than the maximal possible value 2150 2151 Not Collective 2152 2153 Input Parameter: 2154 + a - the PetscInt value 2155 - b - the second value 2156 2157 Returns: 2158 the result as a PetscInt value 2159 2160 Use PetscInt64Mult() to compute the product of two PetscInt as a PetscInt64 2161 Use PetscRealIntMultTruncate() to compute the product of a PetscReal and a PetscInt and truncate to fit a PetscInt 2162 Use PetscIntMultError() to compute the product of two PetscInt if you wish to generate an error if the result will not fit in a PetscInt 2163 2164 Not available from Fortran 2165 2166 Developers Note: We currently assume that PetscInt addition can never overflow, this is obviously wrong but requires many more checks. 2167 2168 This is used where we compute approximate sizes for workspace and need to insure the workspace is index-able. 2169 2170 Level: advanced 2171 2172 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscBLASIntCast(), PetscInt64Mult() 2173 @*/ 2174 PETSC_STATIC_INLINE PetscInt PetscIntMultTruncate(PetscInt a,PetscInt b) 2175 { 2176 PetscInt64 r; 2177 2178 r = PetscInt64Mult(a,b); 2179 if (r > PETSC_MAX_INT - 100) r = PETSC_MAX_INT - 100; 2180 return (PetscInt) r; 2181 } 2182 2183 /*@C 2184 2185 PetscIntSumTruncate - Computes the sum of two positive PetscInt and truncates the value to slightly less than the maximal possible value 2186 2187 Not Collective 2188 2189 Input Parameter: 2190 + a - the PetscInt value 2191 - b - the second value 2192 2193 Returns: 2194 the result as a PetscInt value 2195 2196 Use PetscInt64Mult() to compute the product of two PetscInt as a PetscInt64 2197 Use PetscRealIntMultTruncate() to compute the product of a PetscReal and a PetscInt and truncate to fit a PetscInt 2198 Use PetscIntMultError() to compute the product of two PetscInt if you wish to generate an error if the result will not fit in a PetscInt 2199 2200 This is used where we compute approximate sizes for workspace and need to insure the workspace is index-able. 2201 2202 Not available from Fortran 2203 2204 Level: advanced 2205 2206 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscBLASIntCast(), PetscInt64Mult() 2207 @*/ 2208 PETSC_STATIC_INLINE PetscInt PetscIntSumTruncate(PetscInt a,PetscInt b) 2209 { 2210 PetscInt64 r; 2211 2212 r = ((PetscInt64)a) + ((PetscInt64)b); 2213 if (r > PETSC_MAX_INT - 100) r = PETSC_MAX_INT - 100; 2214 return (PetscInt) r; 2215 } 2216 2217 /*@C 2218 2219 PetscIntMultError - Computes the product of two positive PetscInt and generates an error with overflow. 2220 2221 Not Collective 2222 2223 Input Parameter: 2224 + a - the PetscInt value 2225 - b - the second value 2226 2227 Output Parameter:ma 2228 . result - the result as a PetscInt value, or NULL if you do not want the result, you just want to check if it overflows 2229 2230 Use PetscInt64Mult() to compute the product of two 32 bit PetscInt and store in a PetscInt64 2231 Use PetscIntMultTruncate() to compute the product of two PetscInt and truncate it to fit in a PetscInt 2232 2233 Not available from Fortran 2234 2235 Developers Note: We currently assume that PetscInt addition does not overflow, this is obviously wrong but requires many more checks. 2236 2237 Level: advanced 2238 2239 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscBLASIntCast(), PetscIntMult64(), PetscIntSumError() 2240 @*/ 2241 PETSC_STATIC_INLINE PetscErrorCode PetscIntMultError(PetscInt a,PetscInt b,PetscInt *result) 2242 { 2243 PetscInt64 r; 2244 2245 PetscFunctionBegin; 2246 r = PetscInt64Mult(a,b); 2247 #if !defined(PETSC_USE_64BIT_INDICES) 2248 if (r > PETSC_MAX_INT) SETERRQ2(PETSC_COMM_SELF,PETSC_ERR_SUP,"Product of two integer %d %d overflow, you must ./configure PETSc with --with-64-bit-indices for the case you are running",a,b); 2249 #endif 2250 if (result) *result = (PetscInt) r; 2251 PetscFunctionReturn(0); 2252 } 2253 2254 /*@C 2255 2256 PetscIntSumError - Computes the sum of two positive PetscInt and generates an error with overflow. 2257 2258 Not Collective 2259 2260 Input Parameter: 2261 + a - the PetscInt value 2262 - b - the second value 2263 2264 Output Parameter:ma 2265 . c - the result as a PetscInt value, or NULL if you do not want the result, you just want to check if it overflows 2266 2267 Use PetscInt64Mult() to compute the product of two 32 bit PetscInt and store in a PetscInt64 2268 Use PetscIntMultTruncate() to compute the product of two PetscInt and truncate it to fit in a PetscInt 2269 2270 Not available from Fortran 2271 2272 Level: advanced 2273 2274 .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscBLASIntCast(), PetscInt64Mult() 2275 @*/ 2276 PETSC_STATIC_INLINE PetscErrorCode PetscIntSumError(PetscInt a,PetscInt b,PetscInt *result) 2277 { 2278 PetscInt64 r; 2279 2280 PetscFunctionBegin; 2281 r = ((PetscInt64)a) + ((PetscInt64)b); 2282 #if !defined(PETSC_USE_64BIT_INDICES) 2283 if (r > PETSC_MAX_INT) SETERRQ2(PETSC_COMM_SELF,PETSC_ERR_SUP,"Sum of two integer %d %d overflow, you must ./configure PETSc with --with-64-bit-indices for the case you are running",a,b); 2284 #endif 2285 if (result) *result = (PetscInt) r; 2286 PetscFunctionReturn(0); 2287 } 2288 2289 /* 2290 The IBM include files define hz, here we hide it so that it may be used as a regular user variable. 2291 */ 2292 #if defined(hz) 2293 # undef hz 2294 #endif 2295 2296 #include <limits.h> 2297 2298 /* The number of bits in a byte */ 2299 2300 #define PETSC_BITS_PER_BYTE CHAR_BIT 2301 2302 /* For arrays that contain filenames or paths */ 2303 2304 #if defined(PETSC_HAVE_SYS_PARAM_H) 2305 # include <sys/param.h> 2306 #endif 2307 #if defined(PETSC_HAVE_SYS_TYPES_H) 2308 # include <sys/types.h> 2309 #endif 2310 #if defined(MAXPATHLEN) 2311 # define PETSC_MAX_PATH_LEN MAXPATHLEN 2312 #elif defined(MAX_PATH) 2313 # define PETSC_MAX_PATH_LEN MAX_PATH 2314 #elif defined(_MAX_PATH) 2315 # define PETSC_MAX_PATH_LEN _MAX_PATH 2316 #else 2317 # define PETSC_MAX_PATH_LEN 4096 2318 #endif 2319 2320 /*MC 2321 2322 PETSC_VERSION - This manual page provides information about how PETSc documents and uses its version information. This information is available to both C/C++ 2323 and Fortran compilers when petscsys.h is included. 2324 2325 2326 The current PETSc version and the API for accessing it are defined in petscversion.h 2327 2328 The complete version number is given as the triple PETSC_VERSION_MAJOR.PETSC_VERSION_MINOR.PETSC_VERSION_SUBMINOR (in short hand x.y.z) 2329 2330 A change in the minor version number (y) indicates possible/likely changes in the PETSc API. Note this is different than with the semantic versioning convention 2331 where only a change in the major version number (x) indicates a change in the API. 2332 2333 A subminor greater than zero indicates a patch release. Version x.y.z maintains source and binary compatibility with version x.y.w for all z and w 2334 2335 Use the macros PETSC_VERSION_EQ(x,y,z), PETSC_VERSION_LT(x,y,z), PETSC_VERSION_LE(x,y,z), PETSC_VERSION_GT(x,y,z), 2336 PETSC_VERSION_GE(x,y,z) to determine if the current version is equal to, less than, less than or equal to, greater than or greater than or equal to a given 2337 version number (x.y.z). 2338 2339 PETSC_RELEASE_DATE is the date the x.y version was released (i.e. the version before any patch releases) 2340 2341 PETSC_VERSION_DATE is the date the x.y.z version was released 2342 2343 PETSC_VERSION_GIT is the last git commit to the repository given in the form vx.y.z-wwwww 2344 2345 PETSC_VERSION_DATE_GIT is the date of the last git commit to the repository 2346 2347 Level: intermediate 2348 2349 PETSC_VERSION_() and PETSC_VERSION_PATCH are deprecated and will eventually be removed. For several releases PETSC_VERSION_PATCH is always 0 2350 2351 M*/ 2352 2353 /*MC 2354 2355 UsingFortran - To use PETSc with Fortran you must use both PETSc include files and modules. At the beginning 2356 of every function and module definition you need something like 2357 2358 $ 2359 $#include "petsc/finclude/petscXXX.h" 2360 $ use petscXXX 2361 2362 You can declare PETSc variables using either of the following. 2363 2364 $ XXX variablename 2365 $ type(tXXX) variablename 2366 2367 For example, 2368 2369 $#include "petsc/finclude/petscvec.h" 2370 $ use petscvec 2371 $ 2372 $ Vec b 2373 $ type(tVec) x 2374 2375 Level: beginner 2376 2377 M*/ 2378 2379 PETSC_EXTERN PetscErrorCode PetscGetArchType(char[],size_t); 2380 PETSC_EXTERN PetscErrorCode PetscGetHostName(char[],size_t); 2381 PETSC_EXTERN PetscErrorCode PetscGetUserName(char[],size_t); 2382 PETSC_EXTERN PetscErrorCode PetscGetProgramName(char[],size_t); 2383 PETSC_EXTERN PetscErrorCode PetscSetProgramName(const char[]); 2384 PETSC_EXTERN PetscErrorCode PetscGetDate(char[],size_t); 2385 PETSC_EXTERN PetscErrorCode PetscGetVersion(char[], size_t); 2386 PETSC_EXTERN PetscErrorCode PetscGetVersionNumber(PetscInt*,PetscInt*,PetscInt*,PetscInt*); 2387 2388 PETSC_EXTERN PetscErrorCode PetscSortedInt(PetscInt,const PetscInt[],PetscBool*); 2389 PETSC_EXTERN PetscErrorCode PetscSortedMPIInt(PetscInt,const PetscMPIInt[],PetscBool*); 2390 PETSC_EXTERN PetscErrorCode PetscSortedReal(PetscInt,const PetscReal[],PetscBool*); 2391 PETSC_EXTERN PetscErrorCode PetscSortInt(PetscInt,PetscInt[]); 2392 PETSC_EXTERN PetscErrorCode PetscSortReverseInt(PetscInt,PetscInt[]); 2393 PETSC_EXTERN PetscErrorCode PetscSortedRemoveDupsInt(PetscInt*,PetscInt[]); 2394 PETSC_EXTERN PetscErrorCode PetscSortRemoveDupsInt(PetscInt*,PetscInt[]); 2395 PETSC_EXTERN PetscErrorCode PetscCheckDupsInt(PetscInt,const PetscInt[],PetscBool*); 2396 PETSC_EXTERN PetscErrorCode PetscFindInt(PetscInt, PetscInt, const PetscInt[], PetscInt*); 2397 PETSC_EXTERN PetscErrorCode PetscFindMPIInt(PetscMPIInt, PetscInt, const PetscMPIInt[], PetscInt*); 2398 PETSC_EXTERN PetscErrorCode PetscSortIntWithPermutation(PetscInt,const PetscInt[],PetscInt[]); 2399 PETSC_EXTERN PetscErrorCode PetscSortStrWithPermutation(PetscInt,const char*[],PetscInt[]); 2400 PETSC_EXTERN PetscErrorCode PetscSortIntWithArray(PetscInt,PetscInt[],PetscInt[]); 2401 PETSC_EXTERN PetscErrorCode PetscSortIntWithArrayPair(PetscInt,PetscInt[],PetscInt[],PetscInt[]); 2402 PETSC_EXTERN PetscErrorCode PetscSortMPIInt(PetscInt,PetscMPIInt[]); 2403 PETSC_EXTERN PetscErrorCode PetscSortRemoveDupsMPIInt(PetscInt*,PetscMPIInt[]); 2404 PETSC_EXTERN PetscErrorCode PetscSortMPIIntWithArray(PetscMPIInt,PetscMPIInt[],PetscMPIInt[]); 2405 PETSC_EXTERN PetscErrorCode PetscSortMPIIntWithIntArray(PetscMPIInt,PetscMPIInt[],PetscInt[]); 2406 PETSC_EXTERN PetscErrorCode PetscSortIntWithScalarArray(PetscInt,PetscInt[],PetscScalar[]); 2407 PETSC_EXTERN PetscErrorCode PetscSortIntWithDataArray(PetscInt,PetscInt[],void*,size_t,void*); 2408 PETSC_EXTERN PetscErrorCode PetscSortReal(PetscInt,PetscReal[]); 2409 PETSC_EXTERN PetscErrorCode PetscSortRealWithArrayInt(PetscInt,PetscReal[],PetscInt[]); 2410 PETSC_EXTERN PetscErrorCode PetscSortRealWithPermutation(PetscInt,const PetscReal[],PetscInt[]); 2411 PETSC_EXTERN PetscErrorCode PetscSortRemoveDupsReal(PetscInt*,PetscReal[]); 2412 PETSC_EXTERN PetscErrorCode PetscFindReal(PetscReal,PetscInt,const PetscReal[],PetscReal,PetscInt*); 2413 PETSC_EXTERN PetscErrorCode PetscSortSplit(PetscInt,PetscInt,PetscScalar[],PetscInt[]); 2414 PETSC_EXTERN PetscErrorCode PetscSortSplitReal(PetscInt,PetscInt,PetscReal[],PetscInt[]); 2415 PETSC_EXTERN PetscErrorCode PetscProcessTree(PetscInt,const PetscBool [],const PetscInt[],PetscInt*,PetscInt**,PetscInt**,PetscInt**,PetscInt**); 2416 PETSC_EXTERN PetscErrorCode PetscMergeIntArrayPair(PetscInt,const PetscInt[],const PetscInt[],PetscInt,const PetscInt[],const PetscInt[],PetscInt*,PetscInt**,PetscInt**); 2417 PETSC_EXTERN PetscErrorCode PetscMergeIntArray(PetscInt,const PetscInt[],PetscInt,const PetscInt[],PetscInt*,PetscInt**); 2418 PETSC_EXTERN PetscErrorCode PetscMergeMPIIntArray(PetscInt,const PetscMPIInt[],PetscInt,const PetscMPIInt[],PetscInt*,PetscMPIInt**); 2419 2420 PETSC_EXTERN PetscErrorCode PetscParallelSortedInt(MPI_Comm, PetscInt, const PetscInt[], PetscBool *); 2421 2422 PETSC_EXTERN PetscErrorCode PetscSetDisplay(void); 2423 PETSC_EXTERN PetscErrorCode PetscGetDisplay(char[],size_t); 2424 2425 /*J 2426 PetscRandomType - String with the name of a PETSc randomizer 2427 2428 Level: beginner 2429 2430 Notes: 2431 To use SPRNG or RANDOM123 you must have ./configure PETSc 2432 with the option --download-sprng or --download-random123 2433 2434 .seealso: PetscRandomSetType(), PetscRandom, PetscRandomCreate() 2435 J*/ 2436 typedef const char* PetscRandomType; 2437 #define PETSCRAND "rand" 2438 #define PETSCRAND48 "rand48" 2439 #define PETSCSPRNG "sprng" 2440 #define PETSCRANDER48 "rander48" 2441 #define PETSCRANDOM123 "random123" 2442 2443 /* Logging support */ 2444 PETSC_EXTERN PetscClassId PETSC_RANDOM_CLASSID; 2445 2446 PETSC_EXTERN PetscErrorCode PetscRandomInitializePackage(void); 2447 2448 /* Dynamic creation and loading functions */ 2449 PETSC_EXTERN PetscFunctionList PetscRandomList; 2450 2451 PETSC_EXTERN PetscErrorCode PetscRandomRegister(const char[],PetscErrorCode (*)(PetscRandom)); 2452 PETSC_EXTERN PetscErrorCode PetscRandomSetType(PetscRandom, PetscRandomType); 2453 PETSC_EXTERN PetscErrorCode PetscRandomSetFromOptions(PetscRandom); 2454 PETSC_EXTERN PetscErrorCode PetscRandomGetType(PetscRandom, PetscRandomType*); 2455 PETSC_EXTERN PetscErrorCode PetscRandomViewFromOptions(PetscRandom,PetscObject,const char[]); 2456 PETSC_EXTERN PetscErrorCode PetscRandomView(PetscRandom,PetscViewer); 2457 2458 PETSC_EXTERN PetscErrorCode PetscRandomCreate(MPI_Comm,PetscRandom*); 2459 PETSC_EXTERN PetscErrorCode PetscRandomGetValue(PetscRandom,PetscScalar*); 2460 PETSC_EXTERN PetscErrorCode PetscRandomGetValueReal(PetscRandom,PetscReal*); 2461 PETSC_EXTERN PetscErrorCode PetscRandomGetInterval(PetscRandom,PetscScalar*,PetscScalar*); 2462 PETSC_EXTERN PetscErrorCode PetscRandomSetInterval(PetscRandom,PetscScalar,PetscScalar); 2463 PETSC_EXTERN PetscErrorCode PetscRandomSetSeed(PetscRandom,unsigned long); 2464 PETSC_EXTERN PetscErrorCode PetscRandomGetSeed(PetscRandom,unsigned long *); 2465 PETSC_EXTERN PetscErrorCode PetscRandomSeed(PetscRandom); 2466 PETSC_EXTERN PetscErrorCode PetscRandomDestroy(PetscRandom*); 2467 2468 PETSC_EXTERN PetscErrorCode PetscGetFullPath(const char[],char[],size_t); 2469 PETSC_EXTERN PetscErrorCode PetscGetRelativePath(const char[],char[],size_t); 2470 PETSC_EXTERN PetscErrorCode PetscGetWorkingDirectory(char[],size_t); 2471 PETSC_EXTERN PetscErrorCode PetscGetRealPath(const char[],char[]); 2472 PETSC_EXTERN PetscErrorCode PetscGetHomeDirectory(char[],size_t); 2473 PETSC_EXTERN PetscErrorCode PetscTestFile(const char[],char,PetscBool *); 2474 PETSC_EXTERN PetscErrorCode PetscTestDirectory(const char[],char,PetscBool *); 2475 PETSC_EXTERN PetscErrorCode PetscMkdir(const char[]); 2476 PETSC_EXTERN PetscErrorCode PetscMkdtemp(char[]); 2477 PETSC_EXTERN PetscErrorCode PetscRMTree(const char[]); 2478 2479 PETSC_STATIC_INLINE PetscBool PetscBinaryBigEndian(void) {long _petsc_v = 1; return ((char*)&_petsc_v)[0] ? PETSC_FALSE : PETSC_TRUE;} 2480 2481 PETSC_EXTERN PetscErrorCode PetscBinaryRead(int,void*,PetscInt,PetscInt*,PetscDataType); 2482 PETSC_EXTERN PetscErrorCode PetscBinarySynchronizedRead(MPI_Comm,int,void*,PetscInt,PetscInt*,PetscDataType); 2483 PETSC_EXTERN PetscErrorCode PetscBinaryWrite(int,const void*,PetscInt,PetscDataType); 2484 PETSC_EXTERN PetscErrorCode PetscBinarySynchronizedWrite(MPI_Comm,int,const void*,PetscInt,PetscDataType); 2485 PETSC_EXTERN PetscErrorCode PetscBinaryOpen(const char[],PetscFileMode,int *); 2486 PETSC_EXTERN PetscErrorCode PetscBinaryClose(int); 2487 PETSC_EXTERN PetscErrorCode PetscSharedTmp(MPI_Comm,PetscBool *); 2488 PETSC_EXTERN PetscErrorCode PetscSharedWorkingDirectory(MPI_Comm,PetscBool *); 2489 PETSC_EXTERN PetscErrorCode PetscGetTmp(MPI_Comm,char[],size_t); 2490 PETSC_EXTERN PetscErrorCode PetscFileRetrieve(MPI_Comm,const char[],char[],size_t,PetscBool *); 2491 PETSC_EXTERN PetscErrorCode PetscLs(MPI_Comm,const char[],char[],size_t,PetscBool *); 2492 #if defined(PETSC_USE_SOCKET_VIEWER) 2493 PETSC_EXTERN PetscErrorCode PetscOpenSocket(const char[],int,int*); 2494 #endif 2495 2496 PETSC_EXTERN PetscErrorCode PetscBinarySeek(int,off_t,PetscBinarySeekType,off_t*); 2497 PETSC_EXTERN PetscErrorCode PetscBinarySynchronizedSeek(MPI_Comm,int,off_t,PetscBinarySeekType,off_t*); 2498 PETSC_EXTERN PetscErrorCode PetscByteSwap(void *,PetscDataType,PetscInt); 2499 2500 PETSC_EXTERN PetscErrorCode PetscSetDebugTerminal(const char[]); 2501 PETSC_EXTERN PetscErrorCode PetscSetDebugger(const char[],PetscBool ); 2502 PETSC_EXTERN PetscErrorCode PetscSetDefaultDebugger(void); 2503 PETSC_EXTERN PetscErrorCode PetscSetDebuggerFromString(const char*); 2504 PETSC_EXTERN PetscErrorCode PetscAttachDebugger(void); 2505 PETSC_EXTERN PetscErrorCode PetscStopForDebugger(void); 2506 2507 PETSC_EXTERN PetscErrorCode PetscGatherNumberOfMessages(MPI_Comm,const PetscMPIInt[],const PetscMPIInt[],PetscMPIInt*); 2508 PETSC_EXTERN PetscErrorCode PetscGatherMessageLengths(MPI_Comm,PetscMPIInt,PetscMPIInt,const PetscMPIInt[],PetscMPIInt**,PetscMPIInt**); 2509 PETSC_EXTERN PetscErrorCode PetscGatherMessageLengths2(MPI_Comm,PetscMPIInt,PetscMPIInt,const PetscMPIInt[],const PetscMPIInt[],PetscMPIInt**,PetscMPIInt**,PetscMPIInt**); 2510 PETSC_EXTERN PetscErrorCode PetscPostIrecvInt(MPI_Comm,PetscMPIInt,PetscMPIInt,const PetscMPIInt[],const PetscMPIInt[],PetscInt***,MPI_Request**); 2511 PETSC_EXTERN PetscErrorCode PetscPostIrecvScalar(MPI_Comm,PetscMPIInt,PetscMPIInt,const PetscMPIInt[],const PetscMPIInt[],PetscScalar***,MPI_Request**); 2512 PETSC_EXTERN PetscErrorCode PetscCommBuildTwoSided(MPI_Comm,PetscMPIInt,MPI_Datatype,PetscMPIInt,const PetscMPIInt*,const void*,PetscMPIInt*,PetscMPIInt**,void*) 2513 PetscAttrMPIPointerWithType(6,3); 2514 PETSC_EXTERN PetscErrorCode PetscCommBuildTwoSidedF(MPI_Comm,PetscMPIInt,MPI_Datatype,PetscMPIInt,const PetscMPIInt[],const void*,PetscMPIInt*,PetscMPIInt**,void*,PetscMPIInt, 2515 PetscErrorCode (*send)(MPI_Comm,const PetscMPIInt[],PetscMPIInt,PetscMPIInt,void*,MPI_Request[],void*), 2516 PetscErrorCode (*recv)(MPI_Comm,const PetscMPIInt[],PetscMPIInt,void*,MPI_Request[],void*),void *ctx) 2517 PetscAttrMPIPointerWithType(6,3); 2518 PETSC_EXTERN PetscErrorCode PetscCommBuildTwoSidedFReq(MPI_Comm,PetscMPIInt,MPI_Datatype,PetscMPIInt,const PetscMPIInt[],const void*,PetscMPIInt*,PetscMPIInt**,void*,PetscMPIInt, 2519 MPI_Request**,MPI_Request**, 2520 PetscErrorCode (*send)(MPI_Comm,const PetscMPIInt[],PetscMPIInt,PetscMPIInt,void*,MPI_Request[],void*), 2521 PetscErrorCode (*recv)(MPI_Comm,const PetscMPIInt[],PetscMPIInt,void*,MPI_Request[],void*),void *ctx) 2522 PetscAttrMPIPointerWithType(6,3); 2523 2524 PETSC_EXTERN const char *const PetscBuildTwoSidedTypes[]; 2525 PETSC_EXTERN PetscErrorCode PetscCommBuildTwoSidedSetType(MPI_Comm,PetscBuildTwoSidedType); 2526 PETSC_EXTERN PetscErrorCode PetscCommBuildTwoSidedGetType(MPI_Comm,PetscBuildTwoSidedType*); 2527 2528 PETSC_EXTERN PetscErrorCode PetscSSEIsEnabled(MPI_Comm,PetscBool*,PetscBool*); 2529 2530 PETSC_EXTERN MPI_Comm PetscObjectComm(PetscObject); 2531 2532 PETSC_EXTERN const char *const PetscSubcommTypes[]; 2533 2534 struct _n_PetscSubcomm { 2535 MPI_Comm parent; /* parent communicator */ 2536 MPI_Comm dupparent; /* duplicate parent communicator, under which the processors of this subcomm have contiguous rank */ 2537 MPI_Comm child; /* the sub-communicator */ 2538 PetscMPIInt n; /* num of subcommunicators under the parent communicator */ 2539 PetscMPIInt color; /* color of processors belong to this communicator */ 2540 PetscMPIInt *subsize; /* size of subcommunicator[color] */ 2541 PetscSubcommType type; 2542 char *subcommprefix; 2543 }; 2544 2545 PETSC_STATIC_INLINE MPI_Comm PetscSubcommParent(PetscSubcomm scomm) {return scomm->parent;} 2546 PETSC_STATIC_INLINE MPI_Comm PetscSubcommChild(PetscSubcomm scomm) {return scomm->child;} 2547 PETSC_STATIC_INLINE MPI_Comm PetscSubcommContiguousParent(PetscSubcomm scomm) {return scomm->dupparent;} 2548 PETSC_EXTERN PetscErrorCode PetscSubcommCreate(MPI_Comm,PetscSubcomm*); 2549 PETSC_EXTERN PetscErrorCode PetscSubcommDestroy(PetscSubcomm*); 2550 PETSC_EXTERN PetscErrorCode PetscSubcommSetNumber(PetscSubcomm,PetscInt); 2551 PETSC_EXTERN PetscErrorCode PetscSubcommSetType(PetscSubcomm,PetscSubcommType); 2552 PETSC_EXTERN PetscErrorCode PetscSubcommSetTypeGeneral(PetscSubcomm,PetscMPIInt,PetscMPIInt); 2553 PETSC_EXTERN PetscErrorCode PetscSubcommView(PetscSubcomm,PetscViewer); 2554 PETSC_EXTERN PetscErrorCode PetscSubcommSetFromOptions(PetscSubcomm); 2555 PETSC_EXTERN PetscErrorCode PetscSubcommSetOptionsPrefix(PetscSubcomm,const char[]); 2556 PETSC_EXTERN PetscErrorCode PetscSubcommGetParent(PetscSubcomm,MPI_Comm*); 2557 PETSC_EXTERN PetscErrorCode PetscSubcommGetContiguousParent(PetscSubcomm,MPI_Comm*); 2558 PETSC_EXTERN PetscErrorCode PetscSubcommGetChild(PetscSubcomm,MPI_Comm*); 2559 2560 PETSC_EXTERN PetscErrorCode PetscHeapCreate(PetscInt,PetscHeap*); 2561 PETSC_EXTERN PetscErrorCode PetscHeapAdd(PetscHeap,PetscInt,PetscInt); 2562 PETSC_EXTERN PetscErrorCode PetscHeapPop(PetscHeap,PetscInt*,PetscInt*); 2563 PETSC_EXTERN PetscErrorCode PetscHeapPeek(PetscHeap,PetscInt*,PetscInt*); 2564 PETSC_EXTERN PetscErrorCode PetscHeapStash(PetscHeap,PetscInt,PetscInt); 2565 PETSC_EXTERN PetscErrorCode PetscHeapUnstash(PetscHeap); 2566 PETSC_EXTERN PetscErrorCode PetscHeapDestroy(PetscHeap*); 2567 PETSC_EXTERN PetscErrorCode PetscHeapView(PetscHeap,PetscViewer); 2568 2569 PETSC_EXTERN PetscErrorCode PetscProcessPlacementView(PetscViewer); 2570 PETSC_EXTERN PetscErrorCode PetscShmCommGet(MPI_Comm,PetscShmComm*); 2571 PETSC_EXTERN PetscErrorCode PetscShmCommGlobalToLocal(PetscShmComm,PetscMPIInt,PetscMPIInt*); 2572 PETSC_EXTERN PetscErrorCode PetscShmCommLocalToGlobal(PetscShmComm,PetscMPIInt,PetscMPIInt*); 2573 PETSC_EXTERN PetscErrorCode PetscShmCommGetMpiShmComm(PetscShmComm,MPI_Comm*); 2574 2575 /* routines to better support OpenMP multithreading needs of some PETSc third party libraries */ 2576 PETSC_EXTERN PetscErrorCode PetscOmpCtrlCreate(MPI_Comm,PetscInt,PetscOmpCtrl*); 2577 PETSC_EXTERN PetscErrorCode PetscOmpCtrlGetOmpComms(PetscOmpCtrl,MPI_Comm*,MPI_Comm*,PetscBool*); 2578 PETSC_EXTERN PetscErrorCode PetscOmpCtrlDestroy(PetscOmpCtrl*); 2579 PETSC_EXTERN PetscErrorCode PetscOmpCtrlBarrier(PetscOmpCtrl); 2580 PETSC_EXTERN PetscErrorCode PetscOmpCtrlOmpRegionOnMasterBegin(PetscOmpCtrl); 2581 PETSC_EXTERN PetscErrorCode PetscOmpCtrlOmpRegionOnMasterEnd(PetscOmpCtrl); 2582 2583 PETSC_EXTERN PetscErrorCode PetscSegBufferCreate(size_t,size_t,PetscSegBuffer*); 2584 PETSC_EXTERN PetscErrorCode PetscSegBufferDestroy(PetscSegBuffer*); 2585 PETSC_EXTERN PetscErrorCode PetscSegBufferGet(PetscSegBuffer,size_t,void*); 2586 PETSC_EXTERN PetscErrorCode PetscSegBufferExtractAlloc(PetscSegBuffer,void*); 2587 PETSC_EXTERN PetscErrorCode PetscSegBufferExtractTo(PetscSegBuffer,void*); 2588 PETSC_EXTERN PetscErrorCode PetscSegBufferExtractInPlace(PetscSegBuffer,void*); 2589 PETSC_EXTERN PetscErrorCode PetscSegBufferGetSize(PetscSegBuffer,size_t*); 2590 PETSC_EXTERN PetscErrorCode PetscSegBufferUnuse(PetscSegBuffer,size_t); 2591 2592 2593 /* Type-safe wrapper to encourage use of PETSC_RESTRICT. Does not use PetscFunctionBegin because the error handling 2594 * prevents the compiler from completely erasing the stub. This is called in inner loops so it has to be as fast as 2595 * possible. */ 2596 PETSC_STATIC_INLINE PetscErrorCode PetscSegBufferGetInts(PetscSegBuffer seg,size_t count,PetscInt *PETSC_RESTRICT *slot) {return PetscSegBufferGet(seg,count,(void**)slot);} 2597 2598 extern PetscOptionsHelpPrinted PetscOptionsHelpPrintedSingleton; 2599 PETSC_EXTERN PetscErrorCode PetscOptionsHelpPrintedDestroy(PetscOptionsHelpPrinted*); 2600 PETSC_EXTERN PetscErrorCode PetscOptionsHelpPrintedCreate(PetscOptionsHelpPrinted*); 2601 PETSC_EXTERN PetscErrorCode PetscOptionsHelpPrintedCheck(PetscOptionsHelpPrinted,const char*,const char*,PetscBool*); 2602 2603 #include <stdarg.h> 2604 PETSC_EXTERN PetscErrorCode PetscVSNPrintf(char*,size_t,const char[],size_t*,va_list); 2605 PETSC_EXTERN PetscErrorCode (*PetscVFPrintf)(FILE*,const char[],va_list); 2606 2607 PETSC_EXTERN PetscSegBuffer PetscCitationsList; 2608 2609 /*@C 2610 PetscCitationsRegister - Register a bibtex item to obtain credit for an implemented algorithm used in the code. 2611 2612 Not Collective - only what is registered on rank 0 of PETSC_COMM_WORLD will be printed 2613 2614 Input Parameters: 2615 + cite - the bibtex item, formated to displayed on multiple lines nicely 2616 - set - a boolean variable initially set to PETSC_FALSE; this is used to insure only a single registration of the citation 2617 2618 Level: intermediate 2619 2620 Not available from Fortran 2621 2622 Options Database: 2623 . -citations [filename] - print out the bibtex entries for the given computation 2624 @*/ 2625 PETSC_STATIC_INLINE PetscErrorCode PetscCitationsRegister(const char cit[],PetscBool *set) 2626 { 2627 size_t len; 2628 char *vstring; 2629 PetscErrorCode ierr; 2630 2631 PetscFunctionBegin; 2632 if (set && *set) PetscFunctionReturn(0); 2633 ierr = PetscStrlen(cit,&len);CHKERRQ(ierr); 2634 ierr = PetscSegBufferGet(PetscCitationsList,len,&vstring);CHKERRQ(ierr); 2635 ierr = PetscArraycpy(vstring,cit,len);CHKERRQ(ierr); 2636 if (set) *set = PETSC_TRUE; 2637 PetscFunctionReturn(0); 2638 } 2639 2640 PETSC_EXTERN PetscErrorCode PetscURLShorten(const char[],char[],size_t); 2641 PETSC_EXTERN PetscErrorCode PetscGoogleDriveAuthorize(MPI_Comm,char[],char[],size_t); 2642 PETSC_EXTERN PetscErrorCode PetscGoogleDriveRefresh(MPI_Comm,const char[],char[],size_t); 2643 PETSC_EXTERN PetscErrorCode PetscGoogleDriveUpload(MPI_Comm,const char[],const char []); 2644 2645 PETSC_EXTERN PetscErrorCode PetscBoxAuthorize(MPI_Comm,char[],char[],size_t); 2646 PETSC_EXTERN PetscErrorCode PetscBoxRefresh(MPI_Comm,const char[],char[],char[],size_t); 2647 2648 PETSC_EXTERN PetscErrorCode PetscGlobusGetTransfers(MPI_Comm,const char[],char[],size_t); 2649 2650 PETSC_EXTERN PetscErrorCode PetscTextBelt(MPI_Comm,const char[],const char[],PetscBool*); 2651 PETSC_EXTERN PetscErrorCode PetscTellMyCell(MPI_Comm,const char[],const char[],PetscBool*); 2652 2653 PETSC_EXTERN PetscErrorCode PetscPullJSONValue(const char[],const char[],char[],size_t,PetscBool*); 2654 PETSC_EXTERN PetscErrorCode PetscPushJSONValue(char[],const char[],const char[],size_t); 2655 2656 2657 #if defined(PETSC_USE_DEBUG) 2658 /* 2659 Verify that all processes in the communicator have called this from the same line of code 2660 */ 2661 PETSC_EXTERN PetscErrorCode PetscAllreduceBarrierCheck(MPI_Comm,PetscMPIInt,int,const char*,const char *); 2662 2663 /*MC 2664 MPIU_Allreduce - a PETSc replacement for MPI_Allreduce() that tries to determine if the call from all the MPI processes occur from the 2665 same place in the PETSc code. This helps to detect bugs where different MPI processes follow different code paths 2666 resulting in inconsistent and incorrect calls to MPI_Allreduce(). 2667 2668 Collective 2669 2670 Synopsis: 2671 #include <petscsys.h> 2672 PetscErrorCode MPIU_Allreduce(void *indata,void *outdata,PetscMPIInt count,MPI_Datatype datatype, MPI_Op op, MPI_Comm comm); 2673 2674 Input Parameters: 2675 + indata - pointer to the input data to be reduced 2676 . count - the number of MPI data items in indata and outdata 2677 . datatype - the MPI datatype, for example MPI_INT 2678 . op - the MPI operation, for example MPI_SUM 2679 - comm - the MPI communicator on which the operation occurs 2680 2681 Output Parameter: 2682 . outdata - the reduced values 2683 2684 Notes: 2685 In optimized mode this directly calls MPI_Allreduce() 2686 2687 Level: developer 2688 2689 .seealso: MPI_Allreduce() 2690 M*/ 2691 #define MPIU_Allreduce(a,b,c,d,e,fcomm) (PetscAllreduceBarrierCheck(fcomm,c,__LINE__,PETSC_FUNCTION_NAME,__FILE__) || MPI_Allreduce(a,b,c,d,e,fcomm)) 2692 #else 2693 #define MPIU_Allreduce(a,b,c,d,e,fcomm) MPI_Allreduce(a,b,c,d,e,fcomm) 2694 #endif 2695 2696 #if defined(PETSC_HAVE_MPI_PROCESS_SHARED_MEMORY) 2697 PETSC_EXTERN PetscErrorCode MPIU_Win_allocate_shared(MPI_Aint,PetscMPIInt,MPI_Info,MPI_Comm,void*,MPI_Win*); 2698 PETSC_EXTERN PetscErrorCode MPIU_Win_shared_query(MPI_Win,PetscMPIInt,MPI_Aint*,PetscMPIInt*,void*); 2699 #endif 2700 2701 /* 2702 Returned from PETSc functions that are called from MPI, such as related to attributes 2703 */ 2704 PETSC_EXTERN PetscMPIInt PETSC_MPI_ERROR_CLASS; 2705 PETSC_EXTERN PetscMPIInt PETSC_MPI_ERROR_CODE; 2706 2707 #endif 2708