126bd1501SBarry Smith #if !defined(PETSCSYSTYPES_H) 226bd1501SBarry Smith #define PETSCSYSTYPES_H 3df4397b0SStefano Zampini 4df4397b0SStefano Zampini #include <petscconf.h> 5df4397b0SStefano Zampini #include <petscfix.h> 6df4397b0SStefano Zampini 7df4397b0SStefano Zampini /*MC 8df4397b0SStefano Zampini PetscErrorCode - datatype used for return error code from almost all PETSc functions 9df4397b0SStefano Zampini 10df4397b0SStefano Zampini Level: beginner 11df4397b0SStefano Zampini 12df4397b0SStefano Zampini .seealso: CHKERRQ, SETERRQ 13df4397b0SStefano Zampini M*/ 14df4397b0SStefano Zampini typedef int PetscErrorCode; 15df4397b0SStefano Zampini 16df4397b0SStefano Zampini /*MC 17df4397b0SStefano Zampini 18df4397b0SStefano Zampini PetscClassId - A unique id used to identify each PETSc class. 19df4397b0SStefano Zampini 20df4397b0SStefano Zampini Notes: 21df4397b0SStefano Zampini Use PetscClassIdRegister() to obtain a new value for a new class being created. Usually 22df4397b0SStefano Zampini XXXInitializePackage() calls it for each class it defines. 23df4397b0SStefano Zampini 24df4397b0SStefano Zampini Developer Notes: 25df4397b0SStefano Zampini Internal integer stored in the _p_PetscObject data structure. 26df4397b0SStefano Zampini These are all computed by an offset from the lowest one, PETSC_SMALLEST_CLASSID. 27df4397b0SStefano Zampini 28df4397b0SStefano Zampini Level: developer 29df4397b0SStefano Zampini 30df4397b0SStefano Zampini .seealso: PetscClassIdRegister(), PetscLogEventRegister(), PetscHeaderCreate() 31df4397b0SStefano Zampini M*/ 32df4397b0SStefano Zampini typedef int PetscClassId; 33df4397b0SStefano Zampini 34df4397b0SStefano Zampini /*MC 35df4397b0SStefano Zampini PetscMPIInt - datatype used to represent 'int' parameters to MPI functions. 36df4397b0SStefano Zampini 37df4397b0SStefano Zampini Level: intermediate 38df4397b0SStefano Zampini 39df4397b0SStefano Zampini Notes: 40df4397b0SStefano Zampini usually this is the same as PetscInt, but if PETSc was built with --with-64-bit-indices but 41df4397b0SStefano Zampini standard C/Fortran integers are 32 bit then this is NOT the same as PetscInt; it remains 32 bit. 42df4397b0SStefano Zampini 43df4397b0SStefano Zampini PetscMPIIntCast(a,&b) checks if the given PetscInt a will fit in a PetscMPIInt, if not it 44df4397b0SStefano Zampini generates a PETSC_ERR_ARG_OUTOFRANGE error. 45df4397b0SStefano Zampini 46df4397b0SStefano Zampini .seealso: PetscBLASInt, PetscInt, PetscMPIIntCast() 47df4397b0SStefano Zampini 48df4397b0SStefano Zampini M*/ 49df4397b0SStefano Zampini typedef int PetscMPIInt; 50df4397b0SStefano Zampini 51df4397b0SStefano Zampini /*MC 52df4397b0SStefano Zampini PetscEnum - datatype used to pass enum types within PETSc functions. 53df4397b0SStefano Zampini 54df4397b0SStefano Zampini Level: intermediate 55df4397b0SStefano Zampini 56df4397b0SStefano Zampini .seealso: PetscOptionsGetEnum(), PetscOptionsEnum(), PetscBagRegisterEnum() 57df4397b0SStefano Zampini M*/ 58df4397b0SStefano Zampini typedef enum { ENUM_DUMMY } PetscEnum; 59df4397b0SStefano Zampini 60df4397b0SStefano Zampini typedef short PetscShort; 61df4397b0SStefano Zampini typedef char PetscChar; 62df4397b0SStefano Zampini typedef float PetscFloat; 63df4397b0SStefano Zampini 64df4397b0SStefano Zampini /*MC 65df4397b0SStefano Zampini PetscInt - PETSc type that represents an integer, used primarily to 66df4397b0SStefano Zampini represent size of arrays and indexing into arrays. Its size can be configured with the option --with-64-bit-indices to be either 32-bit (default) or 64-bit. 67df4397b0SStefano Zampini 68df4397b0SStefano Zampini Notes: 69df4397b0SStefano Zampini For MPI calls that require datatypes, use MPIU_INT as the datatype for PetscInt. It will automatically work correctly regardless of the size of PetscInt. 70df4397b0SStefano Zampini 71df4397b0SStefano Zampini Level: beginner 72df4397b0SStefano Zampini 73df4397b0SStefano Zampini .seealso: PetscBLASInt, PetscMPIInt, PetscReal, PetscScalar, PetscComplex, PetscInt, MPIU_REAL, MPIU_SCALAR, MPIU_COMPLEX, MPIU_INT 74df4397b0SStefano Zampini M*/ 75df4397b0SStefano Zampini 76df4397b0SStefano Zampini #if defined(PETSC_HAVE_STDINT_H) 77df4397b0SStefano Zampini # include <stdint.h> 78df4397b0SStefano Zampini #endif 79df4397b0SStefano Zampini #if defined (PETSC_HAVE_INTTYPES_H) 80df4397b0SStefano Zampini # if !defined(__STDC_FORMAT_MACROS) 81df4397b0SStefano Zampini # define __STDC_FORMAT_MACROS /* required for using PRId64 from c++ */ 82df4397b0SStefano Zampini # endif 83df4397b0SStefano Zampini # include <inttypes.h> 84df4397b0SStefano Zampini # if !defined(PRId64) 85df4397b0SStefano Zampini # define PRId64 "ld" 86df4397b0SStefano Zampini # endif 87df4397b0SStefano Zampini #endif 88df4397b0SStefano Zampini 89df4397b0SStefano Zampini #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 */ 90df4397b0SStefano Zampini typedef int64_t PetscInt64; 91df4397b0SStefano Zampini #elif (PETSC_SIZEOF_LONG_LONG == 8) 92df4397b0SStefano Zampini typedef long long PetscInt64; 93df4397b0SStefano Zampini #elif defined(PETSC_HAVE___INT64) 94df4397b0SStefano Zampini typedef __int64 PetscInt64; 95df4397b0SStefano Zampini #else 96df4397b0SStefano Zampini # error "cannot determine PetscInt64 type" 97df4397b0SStefano Zampini #endif 98df4397b0SStefano Zampini 99df4397b0SStefano Zampini #if defined(PETSC_USE_64BIT_INDICES) 100df4397b0SStefano Zampini typedef PetscInt64 PetscInt; 101df4397b0SStefano Zampini #else 102df4397b0SStefano Zampini typedef int PetscInt; 103df4397b0SStefano Zampini #endif 104df4397b0SStefano Zampini 105df4397b0SStefano Zampini /*MC 106df4397b0SStefano Zampini PetscBLASInt - datatype used to represent 'int' parameters to BLAS/LAPACK functions. 107df4397b0SStefano Zampini 108df4397b0SStefano Zampini Notes: 109df4397b0SStefano Zampini Usually this is the same as PetscInt, but if PETSc was built with --with-64-bit-indices but 110df4397b0SStefano Zampini standard C/Fortran integers are 32 bit then this is NOT the same as PetscInt it remains 32 bit 111cdc6ee08SBarry Smith (except on very rare BLAS/LAPACK implementations that support 64 bit integers see the notes below). 112df4397b0SStefano Zampini 113df4397b0SStefano Zampini PetscErrorCode PetscBLASIntCast(a,&b) checks if the given PetscInt a will fit in a PetscBLASInt, if not it 114df4397b0SStefano Zampini generates a PETSC_ERR_ARG_OUTOFRANGE error 115df4397b0SStefano Zampini 116df4397b0SStefano Zampini Installation Notes: 117cdc6ee08SBarry Smith ./configure automatically determines the size of the integers used by BLAS/LAPACK except when --with-batch is used 118cdc6ee08SBarry Smith in that situation one must know (by some other means) if the integers used by BLAS/LAPACK are 64 bit and if so pass the flag --known-64-bit-blas-indice 119cdc6ee08SBarry Smith 120cdc6ee08SBarry Smith MATLAB ships with BLAS and LAPACK that use 64 bit integers, for example if you run ./configure with, the option 121df4397b0SStefano Zampini --with-blaslapack-lib=[/Applications/MATLAB_R2010b.app/bin/maci64/libmwblas.dylib,/Applications/MATLAB_R2010b.app/bin/maci64/libmwlapack.dylib] 122df4397b0SStefano Zampini 123cdc6ee08SBarry Smith MKL ships with both 32 and 64 bit integer versions of the BLAS and LAPACK. If you pass the flag -with-64-bit-blas-indices PETSc will link 124cdc6ee08SBarry Smith against the 64 bit version, otherwise it use the 32 bit version 125df4397b0SStefano Zampini 126cdc6ee08SBarry Smith OpenBLAS can be built to use 64 bit integers. The ./configure options --download-openblas -with-64-bit-blas-indices will build a 64 bit integer version 127df4397b0SStefano Zampini 128df4397b0SStefano Zampini External packages such as hypre, ML, SuperLU etc do not provide any support for passing 64 bit integers to BLAS/LAPACK so cannot 129cdc6ee08SBarry Smith be used with PETSc when PETSc links against 64 bit integer BLAS/LAPACK. ./configure will generate an error if you attempt to link PETSc against any of 130cdc6ee08SBarry Smith these external libraries while using 64 bit integer BLAS/LAPACK. 131df4397b0SStefano Zampini 132df4397b0SStefano Zampini Level: intermediate 133df4397b0SStefano Zampini 134df4397b0SStefano Zampini .seealso: PetscMPIInt, PetscInt, PetscBLASIntCast() 135df4397b0SStefano Zampini 136df4397b0SStefano Zampini M*/ 137df4397b0SStefano Zampini #if defined(PETSC_HAVE_64BIT_BLAS_INDICES) 138df4397b0SStefano Zampini typedef PetscInt64 PetscBLASInt; 139df4397b0SStefano Zampini #else 140df4397b0SStefano Zampini typedef int PetscBLASInt; 141df4397b0SStefano Zampini #endif 142df4397b0SStefano Zampini 143eee0c0a6SToby Isaac /*MC 144eee0c0a6SToby Isaac PetscCuBLASInt - datatype used to represent 'int' parameters to cuBLAS/cuSOLVER functions. 145eee0c0a6SToby Isaac 146eee0c0a6SToby Isaac Notes: 147eee0c0a6SToby Isaac As of this writing PetscCuBLASInt is always the system `int`. 148eee0c0a6SToby Isaac 149eee0c0a6SToby Isaac PetscErrorCode PetscCuBLASIntCast(a,&b) checks if the given PetscInt a will fit in a PetscCuBLASInt, if not it 150eee0c0a6SToby Isaac generates a PETSC_ERR_ARG_OUTOFRANGE error 151eee0c0a6SToby Isaac 152eee0c0a6SToby Isaac Level: intermediate 153eee0c0a6SToby Isaac 154eee0c0a6SToby Isaac .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscCuBLASIntCast() 155eee0c0a6SToby Isaac 156eee0c0a6SToby Isaac M*/ 157eee0c0a6SToby Isaac typedef int PetscCuBLASInt; 158eee0c0a6SToby Isaac 159df4397b0SStefano Zampini /*E 160df4397b0SStefano Zampini PetscBool - Logical variable. Actually an int in C and a logical in Fortran. 161df4397b0SStefano Zampini 162df4397b0SStefano Zampini Level: beginner 163df4397b0SStefano Zampini 164df4397b0SStefano Zampini Developer Note: 165df4397b0SStefano Zampini Why have PetscBool , why not use bool in C? The problem is that K and R C, C99 and C++ all have different mechanisms for 166df4397b0SStefano Zampini boolean values. It is not easy to have a simple macro that that will work properly in all circumstances with all three mechanisms. 167df4397b0SStefano Zampini 168df4397b0SStefano Zampini .seealso: PETSC_TRUE, PETSC_FALSE, PetscNot() 169df4397b0SStefano Zampini E*/ 170df4397b0SStefano Zampini typedef enum { PETSC_FALSE,PETSC_TRUE } PetscBool; 171df4397b0SStefano Zampini 172df4397b0SStefano Zampini /*MC 173df4397b0SStefano Zampini PetscReal - PETSc type that represents a real number version of PetscScalar 174df4397b0SStefano Zampini 175df4397b0SStefano Zampini 176df4397b0SStefano Zampini Notes: 177df4397b0SStefano Zampini For MPI calls that require datatypes, use MPIU_REAL as the datatype for PetscScalar and MPIU_SUM, MPIU_MAX, etc. for operations. 178df4397b0SStefano Zampini They will automatically work correctly regardless of the size of PetscReal. 179df4397b0SStefano Zampini 180df4397b0SStefano Zampini See PetscScalar for details on how to ./configure the size of PetscReal. 181df4397b0SStefano Zampini 182df4397b0SStefano Zampini Level: beginner 183df4397b0SStefano Zampini 184df4397b0SStefano Zampini .seealso: PetscScalar, PetscComplex, PetscInt, MPIU_REAL, MPIU_SCALAR, MPIU_COMPLEX, MPIU_INT 185df4397b0SStefano Zampini M*/ 186df4397b0SStefano Zampini 187df4397b0SStefano Zampini #if defined(PETSC_USE_REAL_SINGLE) 188df4397b0SStefano Zampini typedef float PetscReal; 189df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL_DOUBLE) 190df4397b0SStefano Zampini typedef double PetscReal; 191df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FLOAT128) 192df4397b0SStefano Zampini # if defined(__cplusplus) 193df4397b0SStefano Zampini extern "C" { 194df4397b0SStefano Zampini # endif 195df4397b0SStefano Zampini # include <quadmath.h> 196df4397b0SStefano Zampini # if defined(__cplusplus) 197df4397b0SStefano Zampini } 198df4397b0SStefano Zampini # endif 199df4397b0SStefano Zampini typedef __float128 PetscReal; 200df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FP16) 201df4397b0SStefano Zampini typedef __fp16 PetscReal; 202df4397b0SStefano Zampini #endif /* PETSC_USE_REAL_* */ 203df4397b0SStefano Zampini 204df4397b0SStefano Zampini /*MC 205df4397b0SStefano Zampini PetscComplex - PETSc type that represents a complex number with precision matching that of PetscReal. 206df4397b0SStefano Zampini 207df4397b0SStefano Zampini Synopsis: 208df4397b0SStefano Zampini #include <petscsys.h> 209df4397b0SStefano Zampini PetscComplex number = 1. + 2.*PETSC_i; 210df4397b0SStefano Zampini 211df4397b0SStefano Zampini Notes: 212df4397b0SStefano Zampini For MPI calls that require datatypes, use MPIU_COMPLEX as the datatype for PetscComplex and MPIU_SUM etc for operations. 213df4397b0SStefano Zampini They will automatically work correctly regardless of the size of PetscComplex. 214df4397b0SStefano Zampini 215df4397b0SStefano Zampini See PetscScalar for details on how to ./configure the size of PetscReal 216df4397b0SStefano Zampini 217df4397b0SStefano Zampini Complex numbers are automatically available if PETSc was able to find a working complex implementation 218df4397b0SStefano Zampini 219*a966371cSJunchao Zhang 220*a966371cSJunchao Zhang Petsc has a 'fix' for complex numbers to support expressions such as std::complex<PetscReal> + PetscInt, which are not supported by the standard 221*a966371cSJunchao Zhang C++ library, but are convenient for petsc users. If the C++ compiler is able to compile code in petsccxxcomplexfix.h (This is checked by 222*a966371cSJunchao Zhang configure), we include petsccxxcomplexfix.h to provide this convenience. 223*a966371cSJunchao Zhang 224*a966371cSJunchao Zhang If the fix causes conflicts, or one really does not want this fix for a particular C++ file, one can define PETSC_SKIP_CXX_COMPLEX_FIX 225*a966371cSJunchao Zhang at the beginning of the C++ file to skip the fix. 226*a966371cSJunchao Zhang 227df4397b0SStefano Zampini Level: beginner 228df4397b0SStefano Zampini 229df4397b0SStefano Zampini .seealso: PetscReal, PetscScalar, PetscComplex, PetscInt, MPIU_REAL, MPIU_SCALAR, MPIU_COMPLEX, MPIU_INT, PETSC_i 230df4397b0SStefano Zampini M*/ 231df4397b0SStefano Zampini #if !defined(PETSC_SKIP_COMPLEX) 2327a19d461SSatish Balay # if defined(PETSC_CLANGUAGE_CXX) 2337a19d461SSatish Balay # if !defined(PETSC_USE_REAL___FP16) && !defined(PETSC_USE_REAL___FLOAT128) 2347a19d461SSatish Balay # if defined(__cplusplus) && defined(PETSC_HAVE_CXX_COMPLEX) /* enable complex for library code */ 235df4397b0SStefano Zampini # define PETSC_HAVE_COMPLEX 1 2367a19d461SSatish Balay # elif !defined(__cplusplus) && defined(PETSC_HAVE_C99_COMPLEX) && defined(PETSC_HAVE_CXX_COMPLEX) /* User code only - conditional on libary code complex support */ 2377a19d461SSatish Balay # define PETSC_HAVE_COMPLEX 1 2387a19d461SSatish Balay # endif 2397a19d461SSatish Balay # endif 2407a19d461SSatish Balay # else /* !PETSC_CLANGUAGE_CXX */ 2417a19d461SSatish Balay # if !defined(PETSC_USE_REAL___FP16) 2427a19d461SSatish Balay # if !defined(__cplusplus) && defined(PETSC_HAVE_C99_COMPLEX) /* enable complex for library code */ 2437a19d461SSatish Balay # define PETSC_HAVE_COMPLEX 1 2447a19d461SSatish Balay # elif defined(__cplusplus) && defined(PETSC_HAVE_C99_COMPLEX) && defined(PETSC_HAVE_CXX_COMPLEX) /* User code only - conditional on libary code complex support */ 2457a19d461SSatish Balay # define PETSC_HAVE_COMPLEX 1 2467a19d461SSatish Balay # endif 2477a19d461SSatish Balay # endif 2487a19d461SSatish Balay # endif /* PETSC_CLANGUAGE_CXX */ 2497a19d461SSatish Balay #endif /* !PETSC_SKIP_COMPLEX */ 2507a19d461SSatish Balay 2517a19d461SSatish Balay #if defined(PETSC_HAVE_COMPLEX) 2527a19d461SSatish Balay #if defined(__cplusplus) /* C++ complex support */ 25311d22bbfSJunchao Zhang /* Locate a C++ complex template library */ 25411d22bbfSJunchao Zhang #if defined(PETSC_DESIRE_KOKKOS_COMPLEX) /* Defined in petscvec_kokkos.hpp for *.kokkos.cxx files */ 25511d22bbfSJunchao Zhang #define petsccomplexlib Kokkos 25611d22bbfSJunchao Zhang #include <Kokkos_Complex.hpp> 25711d22bbfSJunchao Zhang #elif defined(PETSC_HAVE_CUDA) 258df4397b0SStefano Zampini #define petsccomplexlib thrust 259df4397b0SStefano Zampini #include <thrust/complex.h> 260df4397b0SStefano Zampini #else 261df4397b0SStefano Zampini #define petsccomplexlib std 262df4397b0SStefano Zampini #include <complex> 263df4397b0SStefano Zampini #endif 26411d22bbfSJunchao Zhang 26511d22bbfSJunchao Zhang /* Define PetscComplex based on the precision */ 266df4397b0SStefano Zampini #if defined(PETSC_USE_REAL_SINGLE) 267df4397b0SStefano Zampini typedef petsccomplexlib::complex<float> PetscComplex; 268df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL_DOUBLE) 269df4397b0SStefano Zampini typedef petsccomplexlib::complex<double> PetscComplex; 270df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FLOAT128) 271df4397b0SStefano Zampini typedef petsccomplexlib::complex<__float128> PetscComplex; /* Notstandard and not expected to work, use __complex128 */ 27211d22bbfSJunchao Zhang #endif 27311d22bbfSJunchao Zhang 274*a966371cSJunchao Zhang /* Include a PETSc C++ complex 'fix'. Check PetscComplex manual page for details */ 275*a966371cSJunchao Zhang #if defined(PETSC_HAVE_CXX_COMPLEX_FIX) && !defined(PETSC_SKIP_CXX_COMPLEX_FIX) 27639829747SLisandro Dalcin #include <petsccxxcomplexfix.h> 27711d22bbfSJunchao Zhang #endif 2787a19d461SSatish Balay #else /* c99 complex support */ 279df4397b0SStefano Zampini #include <complex.h> 280df4397b0SStefano Zampini #if defined(PETSC_USE_REAL_SINGLE) || defined(PETSC_USE_REAL___FP16) 281df4397b0SStefano Zampini typedef float _Complex PetscComplex; 282df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL_DOUBLE) 283df4397b0SStefano Zampini typedef double _Complex PetscComplex; 284df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FLOAT128) 285df4397b0SStefano Zampini typedef __complex128 PetscComplex; 286df4397b0SStefano Zampini #endif /* PETSC_USE_REAL_* */ 2877a19d461SSatish Balay #endif /* !__cplusplus */ 2887a19d461SSatish Balay #endif /* PETSC_HAVE_COMPLEX */ 289df4397b0SStefano Zampini 290df4397b0SStefano Zampini /*MC 291df4397b0SStefano Zampini PetscScalar - PETSc type that represents either a double precision real number, a double precision 292df4397b0SStefano Zampini complex number, a single precision real number, a __float128 real or complex or a __fp16 real - if the code is configured 293df4397b0SStefano Zampini with --with-scalar-type=real,complex --with-precision=single,double,__float128,__fp16 294df4397b0SStefano Zampini 295df4397b0SStefano Zampini Notes: 296df4397b0SStefano Zampini For MPI calls that require datatypes, use MPIU_SCALAR as the datatype for PetscScalar and MPIU_SUM, MPIU_MAX etc for operations. They will automatically work correctly regardless of the size of PetscScalar. 297df4397b0SStefano Zampini 298df4397b0SStefano Zampini Level: beginner 299df4397b0SStefano Zampini 300df4397b0SStefano Zampini .seealso: PetscReal, PetscComplex, PetscInt, MPIU_REAL, MPIU_SCALAR, MPIU_COMPLEX, MPIU_INT, PetscRealPart(), PetscImaginaryPart() 301df4397b0SStefano Zampini M*/ 302df4397b0SStefano Zampini 3037a19d461SSatish Balay #if defined(PETSC_USE_COMPLEX) && defined(PETSC_HAVE_COMPLEX) 304df4397b0SStefano Zampini typedef PetscComplex PetscScalar; 305df4397b0SStefano Zampini #else /* PETSC_USE_COMPLEX */ 306df4397b0SStefano Zampini typedef PetscReal PetscScalar; 307df4397b0SStefano Zampini #endif /* PETSC_USE_COMPLEX */ 308df4397b0SStefano Zampini 309df4397b0SStefano Zampini /*E 3105d80c0bfSVaclav Hapla PetscCopyMode - Determines how an array or PetscObject passed to certain functions is copied or retained by the aggregate PetscObject 311df4397b0SStefano Zampini 312df4397b0SStefano Zampini Level: beginner 313df4397b0SStefano Zampini 3145d80c0bfSVaclav Hapla For the array input: 315df4397b0SStefano Zampini $ PETSC_COPY_VALUES - the array values are copied into new space, the user is free to reuse or delete the passed in array 316df4397b0SStefano Zampini $ PETSC_OWN_POINTER - the array values are NOT copied, the object takes ownership of the array and will free it later, the user cannot change or 317df4397b0SStefano Zampini $ delete the array. The array MUST have been obtained with PetscMalloc(). Hence this mode cannot be used in Fortran. 318df4397b0SStefano Zampini $ PETSC_USE_POINTER - the array values are NOT copied, the object uses the array but does NOT take ownership of the array. The user cannot use 3195d80c0bfSVaclav Hapla $ the array but the user must delete the array after the object is destroyed. 3205d80c0bfSVaclav Hapla 3215d80c0bfSVaclav Hapla For the PetscObject input: 3225d80c0bfSVaclav Hapla $ PETSC_COPY_VALUES - the input PetscObject is cloned into the aggregate PetscObject; the user is free to reuse/modify the input PetscObject without side effects. 3235d80c0bfSVaclav Hapla $ PETSC_OWN_POINTER - the input PetscObject is referenced by pointer (with reference count), thus should not be modified by the user. (Modification may cause errors or unintended side-effects in this or a future version of PETSc.) 3245d80c0bfSVaclav Hapla For either case above, the input PetscObject should be destroyed by the user when no longer needed (the aggregate object increases its reference count). 3255d80c0bfSVaclav Hapla $ PETSC_USE_POINTER - invalid for PetscObject inputs. 326df4397b0SStefano Zampini 327df4397b0SStefano Zampini E*/ 328df4397b0SStefano Zampini typedef enum {PETSC_COPY_VALUES, PETSC_OWN_POINTER, PETSC_USE_POINTER} PetscCopyMode; 329df4397b0SStefano Zampini 330df4397b0SStefano Zampini /*MC 331df4397b0SStefano Zampini PETSC_FALSE - False value of PetscBool 332df4397b0SStefano Zampini 333df4397b0SStefano Zampini Level: beginner 334df4397b0SStefano Zampini 335df4397b0SStefano Zampini Note: 336df4397b0SStefano Zampini Zero integer 337df4397b0SStefano Zampini 338df4397b0SStefano Zampini .seealso: PetscBool, PETSC_TRUE 339df4397b0SStefano Zampini M*/ 340df4397b0SStefano Zampini 341df4397b0SStefano Zampini /*MC 342df4397b0SStefano Zampini PETSC_TRUE - True value of PetscBool 343df4397b0SStefano Zampini 344df4397b0SStefano Zampini Level: beginner 345df4397b0SStefano Zampini 346df4397b0SStefano Zampini Note: 347df4397b0SStefano Zampini Nonzero integer 348df4397b0SStefano Zampini 349df4397b0SStefano Zampini .seealso: PetscBool, PETSC_FALSE 350df4397b0SStefano Zampini M*/ 351df4397b0SStefano Zampini 352df4397b0SStefano Zampini /*MC 353df4397b0SStefano Zampini PetscLogDouble - Used for logging times 354df4397b0SStefano Zampini 355df4397b0SStefano Zampini Notes: 356df4397b0SStefano Zampini Contains double precision numbers that are not used in the numerical computations, but rather in logging, timing etc. 357df4397b0SStefano Zampini 3586b3bf505SPatrick Sanan Level: developer 3596b3bf505SPatrick Sanan 360df4397b0SStefano Zampini M*/ 361df4397b0SStefano Zampini typedef double PetscLogDouble; 362df4397b0SStefano Zampini 363df4397b0SStefano Zampini /*E 364df4397b0SStefano Zampini PetscDataType - Used for handling different basic data types. 365df4397b0SStefano Zampini 366df4397b0SStefano Zampini Level: beginner 367df4397b0SStefano Zampini 368df4397b0SStefano Zampini Notes: 369df4397b0SStefano Zampini Use of this should be avoided if one can directly use MPI_Datatype instead. 370df4397b0SStefano Zampini 371277f51e8SBarry Smith PETSC_INT is the datatype for a PetscInt, regardless of whether it is 4 or 8 bytes. 372277f51e8SBarry Smith PETSC_REAL, PETSC_COMPLEX and PETSC_SCALAR are the datatypes for PetscReal, PetscComplex and PetscScalar, regardless of their sizes. 373277f51e8SBarry Smith 374df4397b0SStefano Zampini Developer comment: 375df4397b0SStefano Zampini It would be nice if we could always just use MPI Datatypes, why can we not? 376df4397b0SStefano Zampini 37791e29162SBarry Smith If you change any values in PetscDatatype make sure you update their usage in 378fa131761SBarry Smith share/petsc/matlab/PetscBagRead.m and share/petsc/matlab/@PetscOpenSocket/read/write.m 37991e29162SBarry Smith 380277f51e8SBarry Smith TODO: Add PETSC_INT32 and remove use of improper PETSC_ENUM 381277f51e8SBarry Smith 382df4397b0SStefano Zampini .seealso: PetscBinaryRead(), PetscBinaryWrite(), PetscDataTypeToMPIDataType(), 383df4397b0SStefano Zampini PetscDataTypeGetSize() 384df4397b0SStefano Zampini 385df4397b0SStefano Zampini E*/ 3862ebc710fSVaclav Hapla typedef enum {PETSC_DATATYPE_UNKNOWN = 0, 3872ebc710fSVaclav Hapla PETSC_DOUBLE = 1, PETSC_COMPLEX = 2, PETSC_LONG = 3, PETSC_SHORT = 4, PETSC_FLOAT = 5, 38849de050aSVaclav Hapla PETSC_CHAR = 6, PETSC_BIT_LOGICAL = 7, PETSC_ENUM = 8, PETSC_BOOL = 9, PETSC___FLOAT128 = 10, 389ea127267SVaclav Hapla PETSC_OBJECT = 11, PETSC_FUNCTION = 12, PETSC_STRING = 13, PETSC___FP16 = 14, PETSC_STRUCT = 15, 3909e3e4c22SLisandro Dalcin PETSC_INT = 16, PETSC_INT64 = 17} PetscDataType; 391df4397b0SStefano Zampini 392df4397b0SStefano Zampini #if defined(PETSC_USE_REAL_SINGLE) 393df4397b0SStefano Zampini # define PETSC_REAL PETSC_FLOAT 3945117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL_DOUBLE) 3955117d392SLisandro Dalcin # define PETSC_REAL PETSC_DOUBLE 396df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FLOAT128) 397df4397b0SStefano Zampini # define PETSC_REAL PETSC___FLOAT128 398df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FP16) 399df4397b0SStefano Zampini # define PETSC_REAL PETSC___FP16 400df4397b0SStefano Zampini #else 401df4397b0SStefano Zampini # define PETSC_REAL PETSC_DOUBLE 402df4397b0SStefano Zampini #endif 4035117d392SLisandro Dalcin 4045117d392SLisandro Dalcin #if defined(PETSC_USE_COMPLEX) 4055117d392SLisandro Dalcin # define PETSC_SCALAR PETSC_COMPLEX 4065117d392SLisandro Dalcin #else 4075117d392SLisandro Dalcin # define PETSC_SCALAR PETSC_REAL 4085117d392SLisandro Dalcin #endif 4095117d392SLisandro Dalcin 410df4397b0SStefano Zampini #define PETSC_FORTRANADDR PETSC_LONG 411df4397b0SStefano Zampini 412df4397b0SStefano Zampini /*S 413df4397b0SStefano Zampini PetscToken - 'Token' used for managing tokenizing strings 414df4397b0SStefano Zampini 415df4397b0SStefano Zampini Level: intermediate 416df4397b0SStefano Zampini 417df4397b0SStefano Zampini .seealso: PetscTokenCreate(), PetscTokenFind(), PetscTokenDestroy() 418df4397b0SStefano Zampini S*/ 419df4397b0SStefano Zampini typedef struct _p_PetscToken* PetscToken; 420df4397b0SStefano Zampini 421df4397b0SStefano Zampini /*S 422df4397b0SStefano Zampini PetscObject - any PETSc object, PetscViewer, Mat, Vec, KSP etc 423df4397b0SStefano Zampini 424df4397b0SStefano Zampini Level: beginner 425df4397b0SStefano Zampini 426df4397b0SStefano Zampini Note: 427df4397b0SStefano Zampini This is the base class from which all PETSc objects are derived from. 428df4397b0SStefano Zampini 429df4397b0SStefano Zampini .seealso: PetscObjectDestroy(), PetscObjectView(), PetscObjectGetName(), PetscObjectSetName(), PetscObjectReference(), PetscObjectDereference() 430df4397b0SStefano Zampini S*/ 431df4397b0SStefano Zampini typedef struct _p_PetscObject* PetscObject; 432df4397b0SStefano Zampini 433df4397b0SStefano Zampini /*MC 434df4397b0SStefano Zampini PetscObjectId - unique integer Id for a PetscObject 435df4397b0SStefano Zampini 436df4397b0SStefano Zampini Level: developer 437df4397b0SStefano Zampini 438df4397b0SStefano Zampini Notes: 439df4397b0SStefano Zampini Unlike pointer values, object ids are never reused. 440df4397b0SStefano Zampini 441df4397b0SStefano Zampini .seealso: PetscObjectState, PetscObjectGetId() 442df4397b0SStefano Zampini M*/ 443df4397b0SStefano Zampini typedef PetscInt64 PetscObjectId; 444df4397b0SStefano Zampini 445df4397b0SStefano Zampini /*MC 446df4397b0SStefano Zampini PetscObjectState - integer state for a PetscObject 447df4397b0SStefano Zampini 448df4397b0SStefano Zampini Level: developer 449df4397b0SStefano Zampini 450df4397b0SStefano Zampini Notes: 451df4397b0SStefano Zampini Object state is always-increasing and (for objects that track state) can be used to determine if an object has 452df4397b0SStefano Zampini changed since the last time you interacted with it. It is 64-bit so that it will not overflow for a very long time. 453df4397b0SStefano Zampini 454df4397b0SStefano Zampini .seealso: PetscObjectId, PetscObjectStateGet(), PetscObjectStateIncrease(), PetscObjectStateSet() 455df4397b0SStefano Zampini M*/ 456df4397b0SStefano Zampini typedef PetscInt64 PetscObjectState; 457df4397b0SStefano Zampini 458df4397b0SStefano Zampini /*S 459df4397b0SStefano Zampini PetscFunctionList - Linked list of functions, possibly stored in dynamic libraries, accessed 460df4397b0SStefano Zampini by string name 461df4397b0SStefano Zampini 462df4397b0SStefano Zampini Level: advanced 463df4397b0SStefano Zampini 4647243573dSPierre Jolivet .seealso: PetscFunctionListAdd(), PetscFunctionListDestroy() 465df4397b0SStefano Zampini S*/ 466df4397b0SStefano Zampini typedef struct _n_PetscFunctionList *PetscFunctionList; 467df4397b0SStefano Zampini 468df4397b0SStefano Zampini /*E 469df4397b0SStefano Zampini PetscFileMode - Access mode for a file. 470df4397b0SStefano Zampini 471df4397b0SStefano Zampini Level: beginner 472df4397b0SStefano Zampini 4737e4fd573SVaclav Hapla $ FILE_MODE_UNDEFINED - initial invalid value 474df4397b0SStefano Zampini $ FILE_MODE_READ - open a file at its beginning for reading 475df4397b0SStefano Zampini $ FILE_MODE_WRITE - open a file at its beginning for writing (will create if the file does not exist) 476df4397b0SStefano Zampini $ FILE_MODE_APPEND - open a file at end for writing 477df4397b0SStefano Zampini $ FILE_MODE_UPDATE - open a file for updating, meaning for reading and writing 478df4397b0SStefano Zampini $ FILE_MODE_APPEND_UPDATE - open a file for updating, meaning for reading and writing, at the end 479df4397b0SStefano Zampini 480df4397b0SStefano Zampini .seealso: PetscViewerFileSetMode() 481df4397b0SStefano Zampini E*/ 4827e4fd573SVaclav Hapla typedef enum {FILE_MODE_UNDEFINED=-1, FILE_MODE_READ=0, FILE_MODE_WRITE, FILE_MODE_APPEND, FILE_MODE_UPDATE, FILE_MODE_APPEND_UPDATE} PetscFileMode; 483df4397b0SStefano Zampini 484df4397b0SStefano Zampini typedef void* PetscDLHandle; 485df4397b0SStefano Zampini typedef enum {PETSC_DL_DECIDE=0,PETSC_DL_NOW=1,PETSC_DL_LOCAL=2} PetscDLMode; 486df4397b0SStefano Zampini 487df4397b0SStefano Zampini /*S 4887243573dSPierre Jolivet PetscObjectList - Linked list of PETSc objects, each accessible by string name 489df4397b0SStefano Zampini 490df4397b0SStefano Zampini Level: developer 491df4397b0SStefano Zampini 492df4397b0SStefano Zampini Notes: 493df4397b0SStefano Zampini Used by PetscObjectCompose() and PetscObjectQuery() 494df4397b0SStefano Zampini 495df4397b0SStefano Zampini .seealso: PetscObjectListAdd(), PetscObjectListDestroy(), PetscObjectListFind(), PetscObjectCompose(), PetscObjectQuery(), PetscFunctionList 496df4397b0SStefano Zampini S*/ 497df4397b0SStefano Zampini typedef struct _n_PetscObjectList *PetscObjectList; 498df4397b0SStefano Zampini 499df4397b0SStefano Zampini /*S 500df4397b0SStefano Zampini PetscDLLibrary - Linked list of dynamics libraries to search for functions 501df4397b0SStefano Zampini 502df4397b0SStefano Zampini Level: advanced 503df4397b0SStefano Zampini 504df4397b0SStefano Zampini .seealso: PetscDLLibraryOpen() 505df4397b0SStefano Zampini S*/ 506df4397b0SStefano Zampini typedef struct _n_PetscDLLibrary *PetscDLLibrary; 507df4397b0SStefano Zampini 508df4397b0SStefano Zampini /*S 509df4397b0SStefano Zampini PetscContainer - Simple PETSc object that contains a pointer to any required data 510df4397b0SStefano Zampini 511df4397b0SStefano Zampini Level: advanced 512df4397b0SStefano Zampini 513df4397b0SStefano Zampini .seealso: PetscObject, PetscContainerCreate() 514df4397b0SStefano Zampini S*/ 515df4397b0SStefano Zampini typedef struct _p_PetscContainer* PetscContainer; 516df4397b0SStefano Zampini 517df4397b0SStefano Zampini /*S 518df4397b0SStefano Zampini PetscRandom - Abstract PETSc object that manages generating random numbers 519df4397b0SStefano Zampini 520df4397b0SStefano Zampini Level: intermediate 521df4397b0SStefano Zampini 522df4397b0SStefano Zampini .seealso: PetscRandomCreate(), PetscRandomGetValue(), PetscRandomType 523df4397b0SStefano Zampini S*/ 524df4397b0SStefano Zampini typedef struct _p_PetscRandom* PetscRandom; 525df4397b0SStefano Zampini 526df4397b0SStefano Zampini /* 527df4397b0SStefano Zampini In binary files variables are stored using the following lengths, 528df4397b0SStefano Zampini regardless of how they are stored in memory on any one particular 529df4397b0SStefano Zampini machine. Use these rather then sizeof() in computing sizes for 530df4397b0SStefano Zampini PetscBinarySeek(). 531df4397b0SStefano Zampini */ 532df4397b0SStefano Zampini #define PETSC_BINARY_INT_SIZE (32/8) 533df4397b0SStefano Zampini #define PETSC_BINARY_FLOAT_SIZE (32/8) 534df4397b0SStefano Zampini #define PETSC_BINARY_CHAR_SIZE (8/8) 535df4397b0SStefano Zampini #define PETSC_BINARY_SHORT_SIZE (16/8) 536df4397b0SStefano Zampini #define PETSC_BINARY_DOUBLE_SIZE (64/8) 537df4397b0SStefano Zampini #define PETSC_BINARY_SCALAR_SIZE sizeof(PetscScalar) 538df4397b0SStefano Zampini 539df4397b0SStefano Zampini /*E 540df4397b0SStefano Zampini PetscBinarySeekType - argument to PetscBinarySeek() 541df4397b0SStefano Zampini 542df4397b0SStefano Zampini Level: advanced 543df4397b0SStefano Zampini 544df4397b0SStefano Zampini .seealso: PetscBinarySeek(), PetscBinarySynchronizedSeek() 545df4397b0SStefano Zampini E*/ 546df4397b0SStefano Zampini typedef enum {PETSC_BINARY_SEEK_SET = 0,PETSC_BINARY_SEEK_CUR = 1,PETSC_BINARY_SEEK_END = 2} PetscBinarySeekType; 547df4397b0SStefano Zampini 548df4397b0SStefano Zampini /*E 549df4397b0SStefano Zampini PetscBuildTwoSidedType - algorithm for setting up two-sided communication 550df4397b0SStefano Zampini 551df4397b0SStefano Zampini $ PETSC_BUILDTWOSIDED_ALLREDUCE - classical algorithm using an MPI_Allreduce with 552df4397b0SStefano Zampini $ a buffer of length equal to the communicator size. Not memory-scalable due to 553df4397b0SStefano Zampini $ the large reduction size. Requires only MPI-1. 554df4397b0SStefano Zampini $ PETSC_BUILDTWOSIDED_IBARRIER - nonblocking algorithm based on MPI_Issend and MPI_Ibarrier. 555df4397b0SStefano Zampini $ Proved communication-optimal in Hoefler, Siebert, and Lumsdaine (2010). Requires MPI-3. 556df4397b0SStefano Zampini $ PETSC_BUILDTWOSIDED_REDSCATTER - similar to above, but use more optimized function 557df4397b0SStefano Zampini $ that only communicates the part of the reduction that is necessary. Requires MPI-2. 558df4397b0SStefano Zampini 559df4397b0SStefano Zampini Level: developer 560df4397b0SStefano Zampini 561df4397b0SStefano Zampini .seealso: PetscCommBuildTwoSided(), PetscCommBuildTwoSidedSetType(), PetscCommBuildTwoSidedGetType() 562df4397b0SStefano Zampini E*/ 563df4397b0SStefano Zampini typedef enum { 564df4397b0SStefano Zampini PETSC_BUILDTWOSIDED_NOTSET = -1, 565df4397b0SStefano Zampini PETSC_BUILDTWOSIDED_ALLREDUCE = 0, 566df4397b0SStefano Zampini PETSC_BUILDTWOSIDED_IBARRIER = 1, 567df4397b0SStefano Zampini PETSC_BUILDTWOSIDED_REDSCATTER = 2 568df4397b0SStefano Zampini /* Updates here must be accompanied by updates in finclude/petscsys.h and the string array in mpits.c */ 569df4397b0SStefano Zampini } PetscBuildTwoSidedType; 570df4397b0SStefano Zampini 571aa2d33c1SMatthew G. Knepley /* NOTE: If you change this, you must also change the values in src/vec/f90-mod/petscvec.h */ 572df4397b0SStefano Zampini /*E 573df4397b0SStefano Zampini InsertMode - Whether entries are inserted or added into vectors or matrices 574df4397b0SStefano Zampini 575df4397b0SStefano Zampini Level: beginner 576df4397b0SStefano Zampini 577df4397b0SStefano Zampini .seealso: VecSetValues(), MatSetValues(), VecSetValue(), VecSetValuesBlocked(), 578df4397b0SStefano Zampini VecSetValuesLocal(), VecSetValuesBlockedLocal(), MatSetValuesBlocked(), 579df4397b0SStefano Zampini MatSetValuesBlockedLocal(), MatSetValuesLocal(), VecScatterBegin(), VecScatterEnd() 580df4397b0SStefano Zampini E*/ 5810c91829fSJunchao Zhang typedef enum {NOT_SET_VALUES, INSERT_VALUES, ADD_VALUES, MAX_VALUES, MIN_VALUES, INSERT_ALL_VALUES, ADD_ALL_VALUES, INSERT_BC_VALUES, ADD_BC_VALUES} InsertMode; 582df4397b0SStefano Zampini 583df4397b0SStefano Zampini /*MC 584df4397b0SStefano Zampini INSERT_VALUES - Put a value into a vector or matrix, overwrites any previous value 585df4397b0SStefano Zampini 586df4397b0SStefano Zampini Level: beginner 587df4397b0SStefano Zampini 588df4397b0SStefano Zampini .seealso: InsertMode, VecSetValues(), MatSetValues(), VecSetValue(), VecSetValuesBlocked(), 589df4397b0SStefano Zampini VecSetValuesLocal(), VecSetValuesBlockedLocal(), MatSetValuesBlocked(), ADD_VALUES, 590df4397b0SStefano Zampini MatSetValuesBlockedLocal(), MatSetValuesLocal(), VecScatterBegin(), VecScatterEnd(), MAX_VALUES 591df4397b0SStefano Zampini 592df4397b0SStefano Zampini M*/ 593df4397b0SStefano Zampini 594df4397b0SStefano Zampini /*MC 595df4397b0SStefano Zampini ADD_VALUES - Adds a value into a vector or matrix, if there previously was no value, just puts the 596df4397b0SStefano Zampini value into that location 597df4397b0SStefano Zampini 598df4397b0SStefano Zampini Level: beginner 599df4397b0SStefano Zampini 600df4397b0SStefano Zampini .seealso: InsertMode, VecSetValues(), MatSetValues(), VecSetValue(), VecSetValuesBlocked(), 601df4397b0SStefano Zampini VecSetValuesLocal(), VecSetValuesBlockedLocal(), MatSetValuesBlocked(), INSERT_VALUES, 602df4397b0SStefano Zampini MatSetValuesBlockedLocal(), MatSetValuesLocal(), VecScatterBegin(), VecScatterEnd(), MAX_VALUES 603df4397b0SStefano Zampini 604df4397b0SStefano Zampini M*/ 605df4397b0SStefano Zampini 606df4397b0SStefano Zampini /*MC 607df4397b0SStefano Zampini MAX_VALUES - Puts the maximum of the scattered/gathered value and the current value into each location 608df4397b0SStefano Zampini 609df4397b0SStefano Zampini Level: beginner 610df4397b0SStefano Zampini 611df4397b0SStefano Zampini .seealso: InsertMode, VecScatterBegin(), VecScatterEnd(), ADD_VALUES, INSERT_VALUES 612df4397b0SStefano Zampini 613df4397b0SStefano Zampini M*/ 614df4397b0SStefano Zampini 615421aa1e7SJunchao Zhang /*MC 616421aa1e7SJunchao Zhang MIN_VALUES - Puts the minimal of the scattered/gathered value and the current value into each location 617421aa1e7SJunchao Zhang 618421aa1e7SJunchao Zhang Level: beginner 619421aa1e7SJunchao Zhang 620421aa1e7SJunchao Zhang .seealso: InsertMode, VecScatterBegin(), VecScatterEnd(), ADD_VALUES, INSERT_VALUES 621421aa1e7SJunchao Zhang 622421aa1e7SJunchao Zhang M*/ 623421aa1e7SJunchao Zhang 624421aa1e7SJunchao Zhang 625df4397b0SStefano Zampini /*S 626df4397b0SStefano Zampini PetscSubcomm - A decomposition of an MPI communicator into subcommunicators 627df4397b0SStefano Zampini 628df4397b0SStefano Zampini Notes: 629df4397b0SStefano Zampini After a call to PetscSubcommSetType(), PetscSubcommSetTypeGeneral(), or PetscSubcommSetFromOptions() one may call 630df4397b0SStefano Zampini $ PetscSubcommChild() returns the associated subcommunicator on this process 631df4397b0SStefano Zampini $ PetscSubcommContiguousParent() returns a parent communitor but with all child of the same subcommunicator having contiguous rank 632df4397b0SStefano Zampini 633df4397b0SStefano Zampini Sample Usage: 634df4397b0SStefano Zampini PetscSubcommCreate() 635df4397b0SStefano Zampini PetscSubcommSetNumber() 636df4397b0SStefano Zampini PetscSubcommSetType(PETSC_SUBCOMM_INTERLACED); 637df4397b0SStefano Zampini ccomm = PetscSubcommChild() 638df4397b0SStefano Zampini PetscSubcommDestroy() 639df4397b0SStefano Zampini 640df4397b0SStefano Zampini Level: advanced 641df4397b0SStefano Zampini 642df4397b0SStefano Zampini Notes: 643df4397b0SStefano Zampini $ PETSC_SUBCOMM_GENERAL - similar to MPI_Comm_split() each process sets the new communicator (color) they will belong to and the order within that communicator 644df4397b0SStefano Zampini $ PETSC_SUBCOMM_CONTIGUOUS - each new communicator contains a set of process with contiguous ranks in the original MPI communicator 645df4397b0SStefano Zampini $ PETSC_SUBCOMM_INTERLACED - each new communictor contains a set of processes equally far apart in rank from the others in that new communicator 646df4397b0SStefano Zampini 647df4397b0SStefano Zampini Example: Consider a communicator with six processes split into 3 subcommunicators. 648df4397b0SStefano Zampini $ PETSC_SUBCOMM_CONTIGUOUS - the first communicator contains rank 0,1 the second rank 2,3 and the third rank 4,5 in the original ordering of the original communicator 649df4397b0SStefano Zampini $ PETSC_SUBCOMM_INTERLACED - the first communicator contains rank 0,3, the second 1,4 and the third 2,5 650df4397b0SStefano Zampini 651df4397b0SStefano Zampini Developer Notes: 652df4397b0SStefano Zampini This is used in objects such as PCREDUNDANT to manage the subcommunicators on which the redundant computations 653df4397b0SStefano Zampini are performed. 654df4397b0SStefano Zampini 655df4397b0SStefano Zampini 656df4397b0SStefano Zampini .seealso: PetscSubcommCreate(), PetscSubcommSetNumber(), PetscSubcommSetType(), PetscSubcommView(), PetscSubcommSetFromOptions() 657df4397b0SStefano Zampini 658df4397b0SStefano Zampini S*/ 659df4397b0SStefano Zampini typedef struct _n_PetscSubcomm* PetscSubcomm; 660df4397b0SStefano Zampini typedef enum {PETSC_SUBCOMM_GENERAL=0,PETSC_SUBCOMM_CONTIGUOUS=1,PETSC_SUBCOMM_INTERLACED=2} PetscSubcommType; 661df4397b0SStefano Zampini 662df4397b0SStefano Zampini /*S 663df4397b0SStefano Zampini PetscHeap - A simple class for managing heaps 664df4397b0SStefano Zampini 665df4397b0SStefano Zampini Level: intermediate 666df4397b0SStefano Zampini 667df4397b0SStefano Zampini .seealso: PetscHeapCreate(), PetscHeapAdd(), PetscHeapPop(), PetscHeapPeek(), PetscHeapStash(), PetscHeapUnstash(), PetscHeapView(), PetscHeapDestroy() 668df4397b0SStefano Zampini S*/ 669df4397b0SStefano Zampini typedef struct _PetscHeap *PetscHeap; 670df4397b0SStefano Zampini 671df4397b0SStefano Zampini typedef struct _n_PetscShmComm* PetscShmComm; 672df4397b0SStefano Zampini typedef struct _n_PetscOmpCtrl* PetscOmpCtrl; 673df4397b0SStefano Zampini 674df4397b0SStefano Zampini /*S 675df4397b0SStefano Zampini PetscSegBuffer - a segmented extendable buffer 676df4397b0SStefano Zampini 677df4397b0SStefano Zampini Level: developer 678df4397b0SStefano Zampini 679df4397b0SStefano Zampini .seealso: PetscSegBufferCreate(), PetscSegBufferGet(), PetscSegBufferExtract(), PetscSegBufferDestroy() 680df4397b0SStefano Zampini S*/ 681df4397b0SStefano Zampini typedef struct _n_PetscSegBuffer *PetscSegBuffer; 682df4397b0SStefano Zampini 683df4397b0SStefano Zampini typedef struct _n_PetscOptionsHelpPrinted *PetscOptionsHelpPrinted; 684df4397b0SStefano Zampini 685d0295fc0SJunchao Zhang /*E 686d0295fc0SJunchao Zhang PetscMemType - Memory type of a pointer 687d0295fc0SJunchao Zhang 688d0295fc0SJunchao Zhang Level: beginner 689d0295fc0SJunchao Zhang 690a247e58cSJunchao Zhang Developer Note: 69171438e86SJunchao Zhang Encoding of the bitmask in binary: xxxxyyyz 69271438e86SJunchao Zhang z = 0: Host memory 69371438e86SJunchao Zhang z = 1: Device memory 69471438e86SJunchao Zhang yyy = 000: CUDA-related memory 69571438e86SJunchao Zhang yyy = 001: HIP-related memory 69671438e86SJunchao Zhang xxxxyyy1 = 0000,0001: CUDA memory 69771438e86SJunchao Zhang xxxxyyy1 = 0001,0001: CUDA NVSHMEM memory 69871438e86SJunchao Zhang xxxxyyy1 = 0000,0011: HIP memory 69971438e86SJunchao Zhang 70071438e86SJunchao Zhang Other types of memory, e.g., CUDA managed memory, can be added when needed. 701a247e58cSJunchao Zhang 702ad227feaSJunchao Zhang .seealso: VecGetArrayAndMemType(), PetscSFBcastWithMemTypeBegin(), PetscSFReduceWithMemTypeBegin() 703d0295fc0SJunchao Zhang E*/ 70471438e86SJunchao Zhang typedef enum {PETSC_MEMTYPE_HOST=0, PETSC_MEMTYPE_DEVICE=0x01, PETSC_MEMTYPE_CUDA=0x01, PETSC_MEMTYPE_NVSHMEM=0x11,PETSC_MEMTYPE_HIP=0x03} PetscMemType; 705a247e58cSJunchao Zhang 706a247e58cSJunchao Zhang #define PetscMemTypeHost(m) (((m) & 0x1) == PETSC_MEMTYPE_HOST) 707a247e58cSJunchao Zhang #define PetscMemTypeDevice(m) (((m) & 0x1) == PETSC_MEMTYPE_DEVICE) 70871438e86SJunchao Zhang #define PetscMemTypeCUDA(m) (((m) & 0xF) == PETSC_MEMTYPE_CUDA) 70971438e86SJunchao Zhang #define PetscMemTypeHIP(m) (((m) & 0xF) == PETSC_MEMTYPE_HIP) 71071438e86SJunchao Zhang #define PetscMemTypeNVSHMEM(m) ((m) == PETSC_MEMTYPE_NVSHMEM) 711a247e58cSJunchao Zhang 712df4397b0SStefano Zampini #endif 713