xref: /petsc/include/petscsystypes.h (revision 3ba1676111f5c958fe6c2729b46ca4d523958bb3)
147d993e7Ssuyashtn /* Portions of this code are under:
247d993e7Ssuyashtn    Copyright (c) 2022 Advanced Micro Devices, Inc. All rights reserved.
347d993e7Ssuyashtn */
447d993e7Ssuyashtn 
56524c165SJacob Faibussowitsch #ifndef PETSCSYSTYPES_H
626bd1501SBarry Smith #define PETSCSYSTYPES_H
7df4397b0SStefano Zampini 
8df4397b0SStefano Zampini #include <petscconf.h>
9e1bf4ed2SJacob Faibussowitsch #include <petscconf_poison.h>
10df4397b0SStefano Zampini #include <petscfix.h>
11*3ba16761SJacob Faibussowitsch #include <petscmacros.h> // PETSC_NODISCARD, PETSC_CPP_VERSION
123edda6a2SJed Brown #include <stddef.h>
13df4397b0SStefano Zampini 
14ac09b921SBarry Smith /* SUBMANSEC = Sys */
15ac09b921SBarry Smith 
16*3ba16761SJacob Faibussowitsch #include <limits.h> // INT_MIN, INT_MAX
17*3ba16761SJacob Faibussowitsch 
18*3ba16761SJacob Faibussowitsch #if defined(__clang__) || (PETSC_CPP_VERSION >= 17)
19*3ba16761SJacob Faibussowitsch   // clang allows both [[nodiscard]] and __attribute__((warn_unused_result)) on type
20*3ba16761SJacob Faibussowitsch   // definitions. GCC, however, does not, so check that we are using C++17 [[nodiscard]]
21*3ba16761SJacob Faibussowitsch   // instead of __attribute__((warn_unused_result))
22*3ba16761SJacob Faibussowitsch   #define PETSC_ERROR_CODE_NODISCARD PETSC_NODISCARD
23*3ba16761SJacob Faibussowitsch #else
24*3ba16761SJacob Faibussowitsch   #define PETSC_ERROR_CODE_NODISCARD
25*3ba16761SJacob Faibussowitsch #endif
26*3ba16761SJacob Faibussowitsch 
27*3ba16761SJacob Faibussowitsch #ifdef PETSC_USE_STRICT_PETSCERRORCODE
28*3ba16761SJacob Faibussowitsch   #define PETSC_ERROR_CODE_TYPEDEF   typedef
29*3ba16761SJacob Faibussowitsch   #define PETSC_ERROR_CODE_ENUM_NAME PetscErrorCode
30*3ba16761SJacob Faibussowitsch #else
31*3ba16761SJacob Faibussowitsch   #define PETSC_ERROR_CODE_TYPEDEF
32*3ba16761SJacob Faibussowitsch   #define PETSC_ERROR_CODE_ENUM_NAME
33*3ba16761SJacob Faibussowitsch #endif
34*3ba16761SJacob Faibussowitsch 
35*3ba16761SJacob Faibussowitsch /*E
36*3ba16761SJacob Faibussowitsch   PetscErrorCode - Datatype used to return PETSc error codes.
37df4397b0SStefano Zampini 
38df4397b0SStefano Zampini   Level: beginner
39df4397b0SStefano Zampini 
40*3ba16761SJacob Faibussowitsch   Notes:
41*3ba16761SJacob Faibussowitsch   Virtually all PETSc functions return an error code. It is the callers responsibility to check
42*3ba16761SJacob Faibussowitsch   the value of the returned error code after each PETSc call to determine if any errors
43*3ba16761SJacob Faibussowitsch   occurred. A set of convenience macros (e.g. `PetscCall()`, `PetscCallVoid()`) are provided
44*3ba16761SJacob Faibussowitsch   for this purpose. Failing to properly check for errors is not supported, as errors may leave
45*3ba16761SJacob Faibussowitsch   PETSc in an undetermined state.
46*3ba16761SJacob Faibussowitsch 
47*3ba16761SJacob Faibussowitsch   One can retrieve the error string corresponding to a particular error code using
48*3ba16761SJacob Faibussowitsch   `PetscErrorMessage()`.
49*3ba16761SJacob Faibussowitsch 
50*3ba16761SJacob Faibussowitsch   The user can also configure PETSc with the `--with-strict-petscerrorcode` option to enable
51*3ba16761SJacob Faibussowitsch   compiler warnings when the returned error codes are not captured and checked. Users are
52*3ba16761SJacob Faibussowitsch   *heavily* encouraged to opt-in to this option, as it will become enabled by default in a
53*3ba16761SJacob Faibussowitsch   future release.
54*3ba16761SJacob Faibussowitsch 
55*3ba16761SJacob Faibussowitsch   Developer Notes:
56*3ba16761SJacob Faibussowitsch 
57*3ba16761SJacob Faibussowitsch   These are the generic error codes. These error codes are used in many different places in the
58*3ba16761SJacob Faibussowitsch   PETSc source code. The C-string versions are at defined in `PetscErrorStrings[]` in
59*3ba16761SJacob Faibussowitsch   `src/sys/error/err.c`, while the fortran versions are defined in
60*3ba16761SJacob Faibussowitsch   `src/sys/f90-mod/petscerror.h`. Any changes here must also be made in both locations.
61*3ba16761SJacob Faibussowitsch 
62*3ba16761SJacob Faibussowitsch .seealso: `PetscErrorMessage()`, `PetscCall()`, `SETERRQ()`
63*3ba16761SJacob Faibussowitsch E*/
64*3ba16761SJacob Faibussowitsch PETSC_ERROR_CODE_TYPEDEF enum PETSC_ERROR_CODE_NODISCARD {
65*3ba16761SJacob Faibussowitsch   PETSC_SUCCESS                   = 0,
66*3ba16761SJacob Faibussowitsch   PETSC_ERR_BOOLEAN_MACRO_FAILURE = 1, /* do not use */
67*3ba16761SJacob Faibussowitsch 
68*3ba16761SJacob Faibussowitsch   PETSC_ERR_MIN_VALUE = 54, /* should always be one less then the smallest value */
69*3ba16761SJacob Faibussowitsch 
70*3ba16761SJacob Faibussowitsch   PETSC_ERR_MEM            = 55, /* unable to allocate requested memory */
71*3ba16761SJacob Faibussowitsch   PETSC_ERR_SUP            = 56, /* no support for requested operation */
72*3ba16761SJacob Faibussowitsch   PETSC_ERR_SUP_SYS        = 57, /* no support for requested operation on this computer system */
73*3ba16761SJacob Faibussowitsch   PETSC_ERR_ORDER          = 58, /* operation done in wrong order */
74*3ba16761SJacob Faibussowitsch   PETSC_ERR_SIG            = 59, /* signal received */
75*3ba16761SJacob Faibussowitsch   PETSC_ERR_FP             = 72, /* floating point exception */
76*3ba16761SJacob Faibussowitsch   PETSC_ERR_COR            = 74, /* corrupted PETSc object */
77*3ba16761SJacob Faibussowitsch   PETSC_ERR_LIB            = 76, /* error in library called by PETSc */
78*3ba16761SJacob Faibussowitsch   PETSC_ERR_PLIB           = 77, /* PETSc library generated inconsistent data */
79*3ba16761SJacob Faibussowitsch   PETSC_ERR_MEMC           = 78, /* memory corruption */
80*3ba16761SJacob Faibussowitsch   PETSC_ERR_CONV_FAILED    = 82, /* iterative method (KSP or SNES) failed */
81*3ba16761SJacob Faibussowitsch   PETSC_ERR_USER           = 83, /* user has not provided needed function */
82*3ba16761SJacob Faibussowitsch   PETSC_ERR_SYS            = 88, /* error in system call */
83*3ba16761SJacob Faibussowitsch   PETSC_ERR_POINTER        = 70, /* pointer does not point to valid address */
84*3ba16761SJacob Faibussowitsch   PETSC_ERR_MPI_LIB_INCOMP = 87, /* MPI library at runtime is not compatible with MPI user compiled with */
85*3ba16761SJacob Faibussowitsch 
86*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_SIZ          = 60, /* nonconforming object sizes used in operation */
87*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_IDN          = 61, /* two arguments not allowed to be the same */
88*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_WRONG        = 62, /* wrong argument (but object probably ok) */
89*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_CORRUPT      = 64, /* null or corrupted PETSc object as argument */
90*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_OUTOFRANGE   = 63, /* input argument, out of range */
91*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_BADPTR       = 68, /* invalid pointer argument */
92*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_NOTSAMETYPE  = 69, /* two args must be same object type */
93*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_NOTSAMECOMM  = 80, /* two args must be same communicators */
94*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_WRONGSTATE   = 73, /* object in argument is in wrong state, e.g. unassembled mat */
95*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_TYPENOTSET   = 89, /* the type of the object has not yet been set */
96*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_INCOMP       = 75, /* two arguments are incompatible */
97*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_NULL         = 85, /* argument is null that should not be */
98*3ba16761SJacob Faibussowitsch   PETSC_ERR_ARG_UNKNOWN_TYPE = 86, /* type name doesn't match any registered type */
99*3ba16761SJacob Faibussowitsch 
100*3ba16761SJacob Faibussowitsch   PETSC_ERR_FILE_OPEN       = 65, /* unable to open file */
101*3ba16761SJacob Faibussowitsch   PETSC_ERR_FILE_READ       = 66, /* unable to read from file */
102*3ba16761SJacob Faibussowitsch   PETSC_ERR_FILE_WRITE      = 67, /* unable to write to file */
103*3ba16761SJacob Faibussowitsch   PETSC_ERR_FILE_UNEXPECTED = 79, /* unexpected data in file */
104*3ba16761SJacob Faibussowitsch 
105*3ba16761SJacob Faibussowitsch   PETSC_ERR_MAT_LU_ZRPVT = 71, /* detected a zero pivot during LU factorization */
106*3ba16761SJacob Faibussowitsch   PETSC_ERR_MAT_CH_ZRPVT = 81, /* detected a zero pivot during Cholesky factorization */
107*3ba16761SJacob Faibussowitsch 
108*3ba16761SJacob Faibussowitsch   PETSC_ERR_INT_OVERFLOW   = 84,
109*3ba16761SJacob Faibussowitsch   PETSC_ERR_FLOP_COUNT     = 90,
110*3ba16761SJacob Faibussowitsch   PETSC_ERR_NOT_CONVERGED  = 91,  /* solver did not converge */
111*3ba16761SJacob Faibussowitsch   PETSC_ERR_MISSING_FACTOR = 92,  /* MatGetFactor() failed */
112*3ba16761SJacob Faibussowitsch   PETSC_ERR_OPT_OVERWRITE  = 93,  /* attempted to over write options which should not be changed */
113*3ba16761SJacob Faibussowitsch   PETSC_ERR_WRONG_MPI_SIZE = 94,  /* example/application run with number of MPI ranks it does not support */
114*3ba16761SJacob Faibussowitsch   PETSC_ERR_USER_INPUT     = 95,  /* missing or incorrect user input */
115*3ba16761SJacob Faibussowitsch   PETSC_ERR_GPU_RESOURCE   = 96,  /* unable to load a GPU resource, for example cuBLAS */
116*3ba16761SJacob Faibussowitsch   PETSC_ERR_GPU            = 97,  /* An error from a GPU call, this may be due to lack of resources on the GPU or a true error in the call */
117*3ba16761SJacob Faibussowitsch   PETSC_ERR_MPI            = 98,  /* general MPI error */
118*3ba16761SJacob Faibussowitsch   PETSC_ERR_RETURN         = 99,  /* PetscError() incorrectly returned an error code of 0 */
119*3ba16761SJacob Faibussowitsch   PETSC_ERR_MAX_VALUE      = 100, /* this is always the one more than the largest error code */
120*3ba16761SJacob Faibussowitsch 
121*3ba16761SJacob Faibussowitsch   /*
122*3ba16761SJacob Faibussowitsch     do not use, exist purely to make the enum bounds equal that of a regular int (so conversion
123*3ba16761SJacob Faibussowitsch     to int in main() is not undefined behavior)
124*3ba16761SJacob Faibussowitsch   */
125*3ba16761SJacob Faibussowitsch   PETSC_ERR_MIN_SIGNED_BOUND_DO_NOT_USE = INT_MIN,
126*3ba16761SJacob Faibussowitsch   PETSC_ERR_MAX_SIGNED_BOUND_DO_NOT_USE = INT_MAX
127*3ba16761SJacob Faibussowitsch } PETSC_ERROR_CODE_ENUM_NAME;
128*3ba16761SJacob Faibussowitsch 
129*3ba16761SJacob Faibussowitsch #ifndef PETSC_USE_STRICT_PETSCERRORCODE
130df4397b0SStefano Zampini typedef int PetscErrorCode;
131df4397b0SStefano Zampini 
132*3ba16761SJacob Faibussowitsch   /*
133*3ba16761SJacob Faibussowitsch   Needed so that C++ lambdas can deduce the return type as PetscErrorCode from
134*3ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS). Otherwise we get
135*3ba16761SJacob Faibussowitsch 
136*3ba16761SJacob Faibussowitsch   error: return type '(unnamed enum at include/petscsystypes.h:50:1)' must match previous
137*3ba16761SJacob Faibussowitsch   return type 'int' when lambda expression has unspecified explicit return type
138*3ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
139*3ba16761SJacob Faibussowitsch   ^
140*3ba16761SJacob Faibussowitsch */
141*3ba16761SJacob Faibussowitsch   #define PETSC_SUCCESS ((PetscErrorCode)0)
142*3ba16761SJacob Faibussowitsch #endif
143*3ba16761SJacob Faibussowitsch 
144*3ba16761SJacob Faibussowitsch #undef PETSC_ERROR_CODE_NODISCARD
145*3ba16761SJacob Faibussowitsch #undef PETSC_ERROR_CODE_TYPEDEF
146*3ba16761SJacob Faibussowitsch #undef PETSC_ERROR_CODE_ENUM_NAME
147*3ba16761SJacob Faibussowitsch 
148df4397b0SStefano Zampini /*MC
149df4397b0SStefano Zampini 
150df4397b0SStefano Zampini     PetscClassId - A unique id used to identify each PETSc class.
151df4397b0SStefano Zampini 
152df4397b0SStefano Zampini     Notes:
15387497f52SBarry Smith     Use `PetscClassIdRegister()` to obtain a new value for a new class being created. Usually
154df4397b0SStefano Zampini          XXXInitializePackage() calls it for each class it defines.
155df4397b0SStefano Zampini 
156df4397b0SStefano Zampini     Developer Notes:
15787497f52SBarry Smith     Internal integer stored in the `_p_PetscObject` data structure.
15887497f52SBarry Smith          These are all computed by an offset from the lowest one, `PETSC_SMALLEST_CLASSID`.
159df4397b0SStefano Zampini 
160df4397b0SStefano Zampini     Level: developer
161df4397b0SStefano Zampini 
162db781477SPatrick Sanan .seealso: `PetscClassIdRegister()`, `PetscLogEventRegister()`, `PetscHeaderCreate()`
163df4397b0SStefano Zampini M*/
164df4397b0SStefano Zampini typedef int PetscClassId;
165df4397b0SStefano Zampini 
166df4397b0SStefano Zampini /*MC
167df4397b0SStefano Zampini     PetscMPIInt - datatype used to represent 'int' parameters to MPI functions.
168df4397b0SStefano Zampini 
169df4397b0SStefano Zampini     Level: intermediate
170df4397b0SStefano Zampini 
171df4397b0SStefano Zampini     Notes:
17287497f52SBarry Smith     This is always a 32 bit integer, sometimes it is the same as `PetscInt`, but if PETSc was built with --with-64-bit-indices but
17387497f52SBarry Smith            standard C/Fortran integers are 32 bit then this is NOT the same as `PetscInt`; it remains 32 bit.
174df4397b0SStefano Zampini 
17587497f52SBarry Smith     `PetscMPIIntCast`(a,&b) checks if the given `PetscInt` a will fit in a `PetscMPIInt`, if not it
17687497f52SBarry Smith       generates a `PETSC_ERR_ARG_OUTOFRANGE` error.
177df4397b0SStefano Zampini 
178db781477SPatrick Sanan .seealso: `PetscBLASInt`, `PetscInt`, `PetscMPIIntCast()`
179df4397b0SStefano Zampini 
180df4397b0SStefano Zampini M*/
181df4397b0SStefano Zampini typedef int PetscMPIInt;
182df4397b0SStefano Zampini 
183bf491261SJacob Faibussowitsch /* Limit MPI to 32-bits */
184bf491261SJacob Faibussowitsch enum {
185bf491261SJacob Faibussowitsch   PETSC_MPI_INT_MIN = INT_MIN,
186bf491261SJacob Faibussowitsch   PETSC_MPI_INT_MAX = INT_MAX
187bf491261SJacob Faibussowitsch };
188bf491261SJacob Faibussowitsch 
189df4397b0SStefano Zampini /*MC
1903edda6a2SJed Brown     PetscSizeT - datatype used to represent sizes in memory (like size_t)
1913edda6a2SJed Brown 
1923edda6a2SJed Brown     Level: intermediate
1933edda6a2SJed Brown 
1943edda6a2SJed Brown     Notes:
1953edda6a2SJed Brown     This is equivalent to size_t, but defined for consistency with Fortran, which lacks a native equivalent of size_t.
1963edda6a2SJed Brown 
197db781477SPatrick Sanan .seealso: `PetscInt`, `PetscInt64`, `PetscCount`
1983edda6a2SJed Brown 
1993edda6a2SJed Brown M*/
2003edda6a2SJed Brown typedef size_t PetscSizeT;
2013edda6a2SJed Brown 
2023edda6a2SJed Brown /*MC
20382a78a4eSJed Brown     PetscCount - signed datatype used to represent counts
20482a78a4eSJed Brown 
20582a78a4eSJed Brown     Level: intermediate
20682a78a4eSJed Brown 
20782a78a4eSJed Brown     Notes:
20882a78a4eSJed Brown     This is equivalent to ptrdiff_t, but defined for consistency with Fortran, which lacks a native equivalent of ptrdiff_t.
20982a78a4eSJed Brown 
21087497f52SBarry Smith     Use `PetscCount_FMT` to format with `PetscPrintf()`, `printf()`, and related functions.
21182a78a4eSJed Brown 
212db781477SPatrick Sanan .seealso: `PetscInt`, `PetscInt64`, `PetscSizeT`
21382a78a4eSJed Brown 
21482a78a4eSJed Brown M*/
21582a78a4eSJed Brown typedef ptrdiff_t PetscCount;
21663a3b9bcSJacob Faibussowitsch #define PetscCount_FMT "td"
21782a78a4eSJed Brown 
21882a78a4eSJed Brown /*MC
219df4397b0SStefano Zampini     PetscEnum - datatype used to pass enum types within PETSc functions.
220df4397b0SStefano Zampini 
221df4397b0SStefano Zampini     Level: intermediate
222df4397b0SStefano Zampini 
223db781477SPatrick Sanan .seealso: `PetscOptionsGetEnum()`, `PetscOptionsEnum()`, `PetscBagRegisterEnum()`
224df4397b0SStefano Zampini M*/
2259371c9d4SSatish Balay typedef enum {
2269371c9d4SSatish Balay   ENUM_DUMMY
2279371c9d4SSatish Balay } PetscEnum;
228df4397b0SStefano Zampini 
229df4397b0SStefano Zampini typedef short PetscShort;
230df4397b0SStefano Zampini typedef char  PetscChar;
231df4397b0SStefano Zampini typedef float PetscFloat;
232df4397b0SStefano Zampini 
233df4397b0SStefano Zampini /*MC
234df4397b0SStefano Zampini   PetscInt - PETSc type that represents an integer, used primarily to
235df4397b0SStefano 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.
236df4397b0SStefano Zampini 
237df4397b0SStefano Zampini   Notes:
23887497f52SBarry Smith   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.
239df4397b0SStefano Zampini 
240df4397b0SStefano Zampini   Level: beginner
241df4397b0SStefano Zampini 
242db781477SPatrick Sanan .seealso: `PetscBLASInt`, `PetscMPIInt`, `PetscReal`, `PetscScalar`, `PetscComplex`, `PetscInt`, `MPIU_REAL`, `MPIU_SCALAR`, `MPIU_COMPLEX`, `MPIU_INT`
243df4397b0SStefano Zampini M*/
244df4397b0SStefano Zampini 
245df4397b0SStefano Zampini #if defined(PETSC_HAVE_STDINT_H)
246df4397b0SStefano Zampini   #include <stdint.h>
247df4397b0SStefano Zampini #endif
248df4397b0SStefano Zampini #if defined(PETSC_HAVE_INTTYPES_H)
249df4397b0SStefano Zampini   #if !defined(__STDC_FORMAT_MACROS)
250df4397b0SStefano Zampini     #define __STDC_FORMAT_MACROS /* required for using PRId64 from c++ */
251df4397b0SStefano Zampini   #endif
252df4397b0SStefano Zampini   #include <inttypes.h>
253df4397b0SStefano Zampini   #if !defined(PRId64)
254df4397b0SStefano Zampini     #define PRId64 "ld"
255df4397b0SStefano Zampini   #endif
256df4397b0SStefano Zampini #endif
257df4397b0SStefano Zampini 
258df4397b0SStefano 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 */
259df4397b0SStefano Zampini typedef int64_t PetscInt64;
260bf491261SJacob Faibussowitsch 
261bf491261SJacob Faibussowitsch   #define PETSC_INT64_MIN INT64_MIN
262bf491261SJacob Faibussowitsch   #define PETSC_INT64_MAX INT64_MAX
263bf491261SJacob Faibussowitsch 
264df4397b0SStefano Zampini #elif (PETSC_SIZEOF_LONG_LONG == 8)
265df4397b0SStefano Zampini typedef long long PetscInt64;
266bf491261SJacob Faibussowitsch 
267bf491261SJacob Faibussowitsch   #define PETSC_INT64_MIN LLONG_MIN
268bf491261SJacob Faibussowitsch   #define PETSC_INT64_MAX LLONG_MAX
269bf491261SJacob Faibussowitsch 
270df4397b0SStefano Zampini #elif defined(PETSC_HAVE___INT64)
271df4397b0SStefano Zampini typedef __int64 PetscInt64;
272bf491261SJacob Faibussowitsch 
273bf491261SJacob Faibussowitsch   #define PETSC_INT64_MIN INT64_MIN
274bf491261SJacob Faibussowitsch   #define PETSC_INT64_MAX INT64_MAX
275bf491261SJacob Faibussowitsch 
276df4397b0SStefano Zampini #else
277df4397b0SStefano Zampini   #error "cannot determine PetscInt64 type"
278df4397b0SStefano Zampini #endif
279df4397b0SStefano Zampini 
280df4397b0SStefano Zampini #if defined(PETSC_USE_64BIT_INDICES)
281df4397b0SStefano Zampini typedef PetscInt64 PetscInt;
282bf491261SJacob Faibussowitsch 
283bf491261SJacob Faibussowitsch   #define PETSC_INT_MIN PETSC_INT64_MIN
284bf491261SJacob Faibussowitsch   #define PETSC_INT_MAX PETSC_INT64_MAX
285bf491261SJacob Faibussowitsch   #define PetscInt_FMT  PetscInt64_FMT
286df4397b0SStefano Zampini #else
287df4397b0SStefano Zampini typedef int       PetscInt;
288bf491261SJacob Faibussowitsch 
289bf491261SJacob Faibussowitsch enum {
290bf491261SJacob Faibussowitsch   PETSC_INT_MIN = INT_MIN,
291bf491261SJacob Faibussowitsch   PETSC_INT_MAX = INT_MAX
292bf491261SJacob Faibussowitsch };
293bf491261SJacob Faibussowitsch 
294bf491261SJacob Faibussowitsch   #define PetscInt_FMT "d"
295df4397b0SStefano Zampini #endif
296df4397b0SStefano Zampini 
297bf491261SJacob Faibussowitsch #define PETSC_MIN_INT    PETSC_INT_MIN
298bf491261SJacob Faibussowitsch #define PETSC_MAX_INT    PETSC_INT_MAX
299bf491261SJacob Faibussowitsch #define PETSC_MAX_UINT16 65535
300bf491261SJacob Faibussowitsch 
301c93fae50SJacob Faibussowitsch #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 */
302c93fae50SJacob Faibussowitsch   #define MPIU_INT64     MPI_INT64_T
303c93fae50SJacob Faibussowitsch   #define PetscInt64_FMT PRId64
304c93fae50SJacob Faibussowitsch #elif (PETSC_SIZEOF_LONG_LONG == 8)
305c93fae50SJacob Faibussowitsch   #define MPIU_INT64     MPI_LONG_LONG_INT
306c93fae50SJacob Faibussowitsch   #define PetscInt64_FMT "lld"
307c93fae50SJacob Faibussowitsch #elif defined(PETSC_HAVE___INT64)
308c93fae50SJacob Faibussowitsch   #define MPIU_INT64     MPI_INT64_T
309c93fae50SJacob Faibussowitsch   #define PetscInt64_FMT "ld"
310c93fae50SJacob Faibussowitsch #else
311c93fae50SJacob Faibussowitsch   #error "cannot determine PetscInt64 type"
312c93fae50SJacob Faibussowitsch #endif
313c93fae50SJacob Faibussowitsch 
314df4397b0SStefano Zampini /*MC
315df4397b0SStefano Zampini    PetscBLASInt - datatype used to represent 'int' parameters to BLAS/LAPACK functions.
316df4397b0SStefano Zampini 
317df4397b0SStefano Zampini    Notes:
31887497f52SBarry Smith     Usually this is the same as `PetscIn`t, but if PETSc was built with --with-64-bit-indices but
31987497f52SBarry Smith            standard C/Fortran integers are 32 bit then this may not be the same as `PetscInt`,
32087497f52SBarry Smith            except on some BLAS/LAPACK implementations that support 64 bit integers see the notes below.
321df4397b0SStefano Zampini 
32287497f52SBarry Smith     `PetscErrorCode` `PetscBLASIntCast`(a,&b) checks if the given `PetscInt` a will fit in a `PetscBLASInt`, if not it
32387497f52SBarry Smith       generates a `PETSC_ERR_ARG_OUTOFRANGE` error
324df4397b0SStefano Zampini 
325df4397b0SStefano Zampini    Installation Notes:
326cdc6ee08SBarry Smith     ./configure automatically determines the size of the integers used by BLAS/LAPACK except when --with-batch is used
327cdc6ee08SBarry 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
328cdc6ee08SBarry Smith 
329cdc6ee08SBarry Smith     MATLAB ships with BLAS and LAPACK that use 64 bit integers, for example if you run ./configure with, the option
330df4397b0SStefano Zampini      --with-blaslapack-lib=[/Applications/MATLAB_R2010b.app/bin/maci64/libmwblas.dylib,/Applications/MATLAB_R2010b.app/bin/maci64/libmwlapack.dylib]
331df4397b0SStefano Zampini 
332cdc6ee08SBarry 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
333cdc6ee08SBarry Smith     against the 64 bit version, otherwise it use the 32 bit version
334df4397b0SStefano Zampini 
335cdc6ee08SBarry 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
336df4397b0SStefano Zampini 
337df4397b0SStefano Zampini     External packages such as hypre, ML, SuperLU etc do not provide any support for passing 64 bit integers to BLAS/LAPACK so cannot
338cdc6ee08SBarry 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
339cdc6ee08SBarry Smith     these external libraries while using 64 bit integer BLAS/LAPACK.
340df4397b0SStefano Zampini 
341df4397b0SStefano Zampini    Level: intermediate
342df4397b0SStefano Zampini 
343db781477SPatrick Sanan .seealso: `PetscMPIInt`, `PetscInt`, `PetscBLASIntCast()`
344df4397b0SStefano Zampini 
345df4397b0SStefano Zampini M*/
346df4397b0SStefano Zampini #if defined(PETSC_HAVE_64BIT_BLAS_INDICES)
347df4397b0SStefano Zampini typedef PetscInt64 PetscBLASInt;
348bf491261SJacob Faibussowitsch 
349bf491261SJacob Faibussowitsch   #define PETSC_BLAS_INT_MIN PETSC_INT64_MIN
350bf491261SJacob Faibussowitsch   #define PETSC_BLAS_INT_MAX PETSC_INT64_MAX
351bf491261SJacob Faibussowitsch   #define PetscBLASInt_FMT   PetscInt64_FMT
352df4397b0SStefano Zampini #else
353df4397b0SStefano Zampini typedef int PetscBLASInt;
354bf491261SJacob Faibussowitsch 
355bf491261SJacob Faibussowitsch enum {
356bf491261SJacob Faibussowitsch   PETSC_BLAS_INT_MIN = INT_MIN,
357bf491261SJacob Faibussowitsch   PETSC_BLAS_INT_MAX = INT_MAX
358bf491261SJacob Faibussowitsch };
359bf491261SJacob Faibussowitsch 
360bf491261SJacob Faibussowitsch   #define PetscBLASInt_FMT "d"
361df4397b0SStefano Zampini #endif
362df4397b0SStefano Zampini 
363eee0c0a6SToby Isaac /*MC
364eee0c0a6SToby Isaac    PetscCuBLASInt - datatype used to represent 'int' parameters to cuBLAS/cuSOLVER functions.
365eee0c0a6SToby Isaac 
366eee0c0a6SToby Isaac    Notes:
367eee0c0a6SToby Isaac     As of this writing PetscCuBLASInt is always the system `int`.
368eee0c0a6SToby Isaac 
36987497f52SBarry Smith     `PetscErrorCode` `PetscCuBLASIntCast`(a,&b) checks if the given `PetscInt` a will fit in a `PetscCuBLASInt`, if not it
37087497f52SBarry Smith       generates a `PETSC_ERR_ARG_OUTOFRANGE` error
371eee0c0a6SToby Isaac 
372eee0c0a6SToby Isaac    Level: intermediate
373eee0c0a6SToby Isaac 
374db781477SPatrick Sanan .seealso: `PetscBLASInt`, `PetscMPIInt`, `PetscInt`, `PetscCuBLASIntCast()`
375eee0c0a6SToby Isaac 
376eee0c0a6SToby Isaac M*/
377eee0c0a6SToby Isaac typedef int PetscCuBLASInt;
378eee0c0a6SToby Isaac 
379bf491261SJacob Faibussowitsch enum {
380bf491261SJacob Faibussowitsch   PETSC_CUBLAS_INT_MIN = INT_MIN,
381bf491261SJacob Faibussowitsch   PETSC_CUBLAS_INT_MAX = INT_MAX
382bf491261SJacob Faibussowitsch };
383bf491261SJacob Faibussowitsch 
38447d993e7Ssuyashtn /*MC
38547d993e7Ssuyashtn    PetscHipBLASInt - datatype used to represent 'int' parameters to hipBLAS/hipSOLVER functions.
38647d993e7Ssuyashtn 
38747d993e7Ssuyashtn    Notes:
38847d993e7Ssuyashtn     As of this writing PetscHipBLASInt is always the system `int`.
38947d993e7Ssuyashtn 
39047d993e7Ssuyashtn     PetscErrorCode PetscHipBLASIntCast(a,&b) checks if the given PetscInt a will fit in a PetscHipBLASInt, if not it
39147d993e7Ssuyashtn       generates a PETSC_ERR_ARG_OUTOFRANGE error
39247d993e7Ssuyashtn 
39347d993e7Ssuyashtn    Level: intermediate
39447d993e7Ssuyashtn 
39547d993e7Ssuyashtn .seealso: PetscBLASInt, PetscMPIInt, PetscInt, PetscHipBLASIntCast()
39647d993e7Ssuyashtn 
39747d993e7Ssuyashtn M*/
39847d993e7Ssuyashtn typedef int PetscHipBLASInt;
39947d993e7Ssuyashtn 
400bf491261SJacob Faibussowitsch enum {
401bf491261SJacob Faibussowitsch   PETSC_HIPBLAS_INT_MIN = INT_MIN,
402bf491261SJacob Faibussowitsch   PETSC_HIPBLAS_INT_MAX = INT_MAX
403bf491261SJacob Faibussowitsch };
404bf491261SJacob Faibussowitsch 
405df4397b0SStefano Zampini /*E
406b94d7dedSBarry Smith     PetscBool  - Logical variable. Actually an enum in C and a logical in Fortran.
407df4397b0SStefano Zampini 
408df4397b0SStefano Zampini    Level: beginner
409df4397b0SStefano Zampini 
410df4397b0SStefano Zampini    Developer Note:
41187497f52SBarry Smith    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
412df4397b0SStefano Zampini       boolean values. It is not easy to have a simple macro that that will work properly in all circumstances with all three mechanisms.
413df4397b0SStefano Zampini 
414b94d7dedSBarry Smith .seealso: `PETSC_TRUE`, `PETSC_FALSE`, `PetscNot()`, `PetscBool3`
415df4397b0SStefano Zampini E*/
4169371c9d4SSatish Balay typedef enum {
4179371c9d4SSatish Balay   PETSC_FALSE,
4189371c9d4SSatish Balay   PETSC_TRUE
4199371c9d4SSatish Balay } PetscBool;
4203b590011SJacob Faibussowitsch PETSC_EXTERN const char *const PetscBools[];
421df4397b0SStefano Zampini 
422b94d7dedSBarry Smith /*E
423b94d7dedSBarry Smith     PetscBool3  - Ternary logical variable. Actually an enum in C and a 4 byte integer in Fortran.
424b94d7dedSBarry Smith 
425b94d7dedSBarry Smith    Level: beginner
426b94d7dedSBarry Smith 
42787497f52SBarry Smith    Note:
428b94d7dedSBarry Smith    Should not be used with the if (flg) or if (!flg) syntax.
429b94d7dedSBarry Smith 
43090dd7910SPierre Jolivet .seealso: `PETSC_TRUE`, `PETSC_FALSE`, `PetscNot()`, `PETSC_BOOL3_TRUE`, `PETSC_BOOL3_FALSE`, `PETSC_BOOL3_UNKNOWN`
431b94d7dedSBarry Smith E*/
4329371c9d4SSatish Balay typedef enum {
4339371c9d4SSatish Balay   PETSC_BOOL3_FALSE,
4349371c9d4SSatish Balay   PETSC_BOOL3_TRUE,
4359371c9d4SSatish Balay   PETSC_BOOL3_UNKNOWN = -1
4369371c9d4SSatish Balay } PetscBool3;
437b94d7dedSBarry Smith 
438b94d7dedSBarry Smith #define PetscBool3ToBool(a) ((a) == PETSC_BOOL3_TRUE ? PETSC_TRUE : PETSC_FALSE)
439b94d7dedSBarry Smith #define PetscBoolToBool3(a) ((a) == PETSC_TRUE ? PETSC_BOOL3_TRUE : PETSC_BOOL3_FALSE)
440b94d7dedSBarry Smith 
441df4397b0SStefano Zampini /*MC
44287497f52SBarry Smith    PetscReal - PETSc type that represents a real number version of `PetscScalar`
443df4397b0SStefano Zampini 
444df4397b0SStefano Zampini    Notes:
44587497f52SBarry Smith    For MPI calls that require datatypes, use `MPIU_REAL` as the datatype for `PetscReal` and `MPIU_SUM`, `MPIU_MAX`, etc. for operations.
44687497f52SBarry Smith           They will automatically work correctly regardless of the size of `PetscReal`.
447df4397b0SStefano Zampini 
44887497f52SBarry Smith           See `PetscScalar` for details on how to ./configure the size of `PetscReal`.
449df4397b0SStefano Zampini 
450df4397b0SStefano Zampini    Level: beginner
451df4397b0SStefano Zampini 
452db781477SPatrick Sanan .seealso: `PetscScalar`, `PetscComplex`, `PetscInt`, `MPIU_REAL`, `MPIU_SCALAR`, `MPIU_COMPLEX`, `MPIU_INT`
453df4397b0SStefano Zampini M*/
454df4397b0SStefano Zampini 
455df4397b0SStefano Zampini #if defined(PETSC_USE_REAL_SINGLE)
456df4397b0SStefano Zampini typedef float PetscReal;
457df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL_DOUBLE)
458df4397b0SStefano Zampini typedef double    PetscReal;
459df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FLOAT128)
460df4397b0SStefano Zampini   #if defined(__cplusplus)
461df4397b0SStefano Zampini extern "C" {
462df4397b0SStefano Zampini   #endif
463df4397b0SStefano Zampini   #include <quadmath.h>
464df4397b0SStefano Zampini   #if defined(__cplusplus)
465df4397b0SStefano Zampini }
466df4397b0SStefano Zampini   #endif
467df4397b0SStefano Zampini typedef __float128 PetscReal;
468df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FP16)
469df4397b0SStefano Zampini typedef __fp16 PetscReal;
470df4397b0SStefano Zampini #endif /* PETSC_USE_REAL_* */
471df4397b0SStefano Zampini 
472df4397b0SStefano Zampini /*MC
47387497f52SBarry Smith    PetscComplex - PETSc type that represents a complex number with precision matching that of `PetscReal`.
474df4397b0SStefano Zampini 
475df4397b0SStefano Zampini    Synopsis:
476df4397b0SStefano Zampini    #include <petscsys.h>
477df4397b0SStefano Zampini    PetscComplex number = 1. + 2.*PETSC_i;
478df4397b0SStefano Zampini 
479df4397b0SStefano Zampini    Notes:
48087497f52SBarry Smith    For MPI calls that require datatypes, use `MPIU_COMPLEX` as the datatype for `PetscComplex` and `MPIU_SUM` etc for operations.
48187497f52SBarry Smith           They will automatically work correctly regardless of the size of `PetscComplex`.
482df4397b0SStefano Zampini 
48387497f52SBarry Smith           See PetscScalar for details on how to ./configure the size of `PetscReal`
484df4397b0SStefano Zampini 
485df4397b0SStefano Zampini           Complex numbers are automatically available if PETSc was able to find a working complex implementation
486df4397b0SStefano Zampini 
48787497f52SBarry Smith     Petsc has a 'fix' for complex numbers to support expressions such as std::complex<PetscReal> + `PetscInt`, which are not supported by the standard
488a966371cSJunchao 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
489a966371cSJunchao Zhang     configure), we include petsccxxcomplexfix.h to provide this convenience.
490a966371cSJunchao Zhang 
49187497f52SBarry Smith     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`
492a966371cSJunchao Zhang     at the beginning of the C++ file to skip the fix.
493a966371cSJunchao Zhang 
494df4397b0SStefano Zampini    Level: beginner
495df4397b0SStefano Zampini 
496db781477SPatrick Sanan .seealso: `PetscReal`, `PetscScalar`, `PetscComplex`, `PetscInt`, `MPIU_REAL`, `MPIU_SCALAR`, `MPIU_COMPLEX`, `MPIU_INT`, `PETSC_i`
497df4397b0SStefano Zampini M*/
498df4397b0SStefano Zampini #if !defined(PETSC_SKIP_COMPLEX)
4997a19d461SSatish Balay   #if defined(PETSC_CLANGUAGE_CXX)
5007a19d461SSatish Balay     #if !defined(PETSC_USE_REAL___FP16) && !defined(PETSC_USE_REAL___FLOAT128)
5017a19d461SSatish Balay       #if defined(__cplusplus) && defined(PETSC_HAVE_CXX_COMPLEX) /* enable complex for library code */
502df4397b0SStefano Zampini         #define PETSC_HAVE_COMPLEX 1
503d5b43468SJose E. Roman       #elif !defined(__cplusplus) && defined(PETSC_HAVE_C99_COMPLEX) && defined(PETSC_HAVE_CXX_COMPLEX) /* User code only - conditional on library code complex support */
5047a19d461SSatish Balay         #define PETSC_HAVE_COMPLEX 1
5057a19d461SSatish Balay       #endif
506450fc7c9SSatish Balay     #elif defined(PETSC_USE_REAL___FLOAT128) && defined(PETSC_HAVE_C99_COMPLEX)
507450fc7c9SSatish Balay       #define PETSC_HAVE_COMPLEX 1
5087a19d461SSatish Balay     #endif
5097a19d461SSatish Balay   #else /* !PETSC_CLANGUAGE_CXX */
5107a19d461SSatish Balay     #if !defined(PETSC_USE_REAL___FP16)
5117a19d461SSatish Balay       #if !defined(__cplusplus) && defined(PETSC_HAVE_C99_COMPLEX) /* enable complex for library code */
5127a19d461SSatish Balay         #define PETSC_HAVE_COMPLEX 1
513d5b43468SJose E. Roman       #elif defined(__cplusplus) && defined(PETSC_HAVE_C99_COMPLEX) && defined(PETSC_HAVE_CXX_COMPLEX) /* User code only - conditional on library code complex support */
5147a19d461SSatish Balay         #define PETSC_HAVE_COMPLEX 1
5157a19d461SSatish Balay       #endif
5167a19d461SSatish Balay     #endif
5177a19d461SSatish Balay   #endif /* PETSC_CLANGUAGE_CXX */
5187a19d461SSatish Balay #endif   /* !PETSC_SKIP_COMPLEX */
5197a19d461SSatish Balay 
5207a19d461SSatish Balay #if defined(PETSC_HAVE_COMPLEX)
5217a19d461SSatish Balay   #if defined(__cplusplus) /* C++ complex support */
52211d22bbfSJunchao Zhang     /* Locate a C++ complex template library */
52311d22bbfSJunchao Zhang     #if defined(PETSC_DESIRE_KOKKOS_COMPLEX) /* Defined in petscvec_kokkos.hpp for *.kokkos.cxx files */
52411d22bbfSJunchao Zhang       #define petsccomplexlib Kokkos
52511d22bbfSJunchao Zhang       #include <Kokkos_Complex.hpp>
526022afdc5SJed Brown     #elif defined(__CUDACC__) || defined(__HIPCC__)
527df4397b0SStefano Zampini       #define petsccomplexlib thrust
528df4397b0SStefano Zampini       #include <thrust/complex.h>
529450fc7c9SSatish Balay     #elif defined(PETSC_USE_REAL___FLOAT128)
530450fc7c9SSatish Balay       #include <complex.h>
531df4397b0SStefano Zampini     #else
532df4397b0SStefano Zampini       #define petsccomplexlib std
533df4397b0SStefano Zampini       #include <complex>
534df4397b0SStefano Zampini     #endif
53511d22bbfSJunchao Zhang 
53611d22bbfSJunchao Zhang     /* Define PetscComplex based on the precision */
537df4397b0SStefano Zampini     #if defined(PETSC_USE_REAL_SINGLE)
538df4397b0SStefano Zampini typedef petsccomplexlib::complex<float> PetscComplex;
539df4397b0SStefano Zampini     #elif defined(PETSC_USE_REAL_DOUBLE)
540df4397b0SStefano Zampini typedef petsccomplexlib::complex<double> PetscComplex;
541df4397b0SStefano Zampini     #elif defined(PETSC_USE_REAL___FLOAT128)
542450fc7c9SSatish Balay typedef __complex128 PetscComplex;
54311d22bbfSJunchao Zhang     #endif
54411d22bbfSJunchao Zhang 
545a966371cSJunchao Zhang     /* Include a PETSc C++ complex 'fix'. Check PetscComplex manual page for details */
546a966371cSJunchao Zhang     #if defined(PETSC_HAVE_CXX_COMPLEX_FIX) && !defined(PETSC_SKIP_CXX_COMPLEX_FIX)
54739829747SLisandro Dalcin       #include <petsccxxcomplexfix.h>
54811d22bbfSJunchao Zhang     #endif
5497a19d461SSatish Balay   #else /* c99 complex support */
550df4397b0SStefano Zampini     #include <complex.h>
551df4397b0SStefano Zampini     #if defined(PETSC_USE_REAL_SINGLE) || defined(PETSC_USE_REAL___FP16)
552df4397b0SStefano Zampini typedef float _Complex PetscComplex;
553df4397b0SStefano Zampini     #elif defined(PETSC_USE_REAL_DOUBLE)
554df4397b0SStefano Zampini typedef double _Complex PetscComplex;
555df4397b0SStefano Zampini     #elif defined(PETSC_USE_REAL___FLOAT128)
556df4397b0SStefano Zampini typedef __complex128 PetscComplex;
557df4397b0SStefano Zampini     #endif /* PETSC_USE_REAL_* */
5587a19d461SSatish Balay   #endif   /* !__cplusplus */
5597a19d461SSatish Balay #endif     /* PETSC_HAVE_COMPLEX */
560df4397b0SStefano Zampini 
561df4397b0SStefano Zampini /*MC
562df4397b0SStefano Zampini    PetscScalar - PETSc type that represents either a double precision real number, a double precision
563df4397b0SStefano Zampini        complex number, a single precision real number, a __float128 real or complex or a __fp16 real - if the code is configured
564df4397b0SStefano Zampini        with --with-scalar-type=real,complex --with-precision=single,double,__float128,__fp16
565df4397b0SStefano Zampini 
566df4397b0SStefano Zampini    Notes:
56787497f52SBarry Smith    For MPI calls that require datatypes, use `MPIU_SCALAR` as the datatype for `PetscScalar` and `MPIU_SUM`, etc for operations. They will automatically work correctly regardless of the size of `PetscScalar`.
568df4397b0SStefano Zampini 
569df4397b0SStefano Zampini    Level: beginner
570df4397b0SStefano Zampini 
571db781477SPatrick Sanan .seealso: `PetscReal`, `PetscComplex`, `PetscInt`, `MPIU_REAL`, `MPIU_SCALAR`, `MPIU_COMPLEX`, `MPIU_INT`, `PetscRealPart()`, `PetscImaginaryPart()`
572df4397b0SStefano Zampini M*/
573df4397b0SStefano Zampini 
5747a19d461SSatish Balay #if defined(PETSC_USE_COMPLEX) && defined(PETSC_HAVE_COMPLEX)
575df4397b0SStefano Zampini typedef PetscComplex PetscScalar;
576df4397b0SStefano Zampini #else  /* PETSC_USE_COMPLEX */
577df4397b0SStefano Zampini typedef PetscReal PetscScalar;
578df4397b0SStefano Zampini #endif /* PETSC_USE_COMPLEX */
579df4397b0SStefano Zampini 
580df4397b0SStefano Zampini /*E
58187497f52SBarry Smith     PetscCopyMode  - Determines how an array or `PetscObject` passed to certain functions is copied or retained by the aggregate `PetscObject`
582df4397b0SStefano Zampini 
583df4397b0SStefano Zampini    Level: beginner
584df4397b0SStefano Zampini 
5855d80c0bfSVaclav Hapla    For the array input:
58687497f52SBarry Smith $   `PETSC_COPY_VALUES` - the array values are copied into new space, the user is free to reuse or delete the passed in array
58787497f52SBarry Smith $   `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
588df4397b0SStefano Zampini $                       delete the array. The array MUST have been obtained with PetscMalloc(). Hence this mode cannot be used in Fortran.
58987497f52SBarry Smith $   `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
5905d80c0bfSVaclav Hapla $                       the array but the user must delete the array after the object is destroyed.
5915d80c0bfSVaclav Hapla 
5925d80c0bfSVaclav Hapla    For the PetscObject input:
59387497f52SBarry Smith $   `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.
59487497f52SBarry Smith $   `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.)
59587497f52SBarry Smith    For either case above, the input `PetscObject` should be destroyed by the user when no longer needed (the aggregate object increases its reference count).
59687497f52SBarry Smith $   `PETSC_USE_POINTER` - invalid for `PetscObject` inputs.
597df4397b0SStefano Zampini 
598df4397b0SStefano Zampini E*/
5999371c9d4SSatish Balay typedef enum {
6009371c9d4SSatish Balay   PETSC_COPY_VALUES,
6019371c9d4SSatish Balay   PETSC_OWN_POINTER,
6029371c9d4SSatish Balay   PETSC_USE_POINTER
6039371c9d4SSatish Balay } PetscCopyMode;
6043b590011SJacob Faibussowitsch PETSC_EXTERN const char *const PetscCopyModes[];
605df4397b0SStefano Zampini 
606df4397b0SStefano Zampini /*MC
60787497f52SBarry Smith     PETSC_FALSE - False value of `PetscBool`
608df4397b0SStefano Zampini 
609df4397b0SStefano Zampini     Level: beginner
610df4397b0SStefano Zampini 
611df4397b0SStefano Zampini     Note:
612df4397b0SStefano Zampini     Zero integer
613df4397b0SStefano Zampini 
61487497f52SBarry Smith .seealso: `PetscBool`, `PetscBool3`, `PETSC_TRUE`
615df4397b0SStefano Zampini M*/
616df4397b0SStefano Zampini 
617df4397b0SStefano Zampini /*MC
61887497f52SBarry Smith     PETSC_TRUE - True value of `PetscBool`
619df4397b0SStefano Zampini 
620df4397b0SStefano Zampini     Level: beginner
621df4397b0SStefano Zampini 
622df4397b0SStefano Zampini     Note:
623df4397b0SStefano Zampini     Nonzero integer
624df4397b0SStefano Zampini 
62587497f52SBarry Smith .seealso: `PetscBool`, `PetscBool3`, `PETSC_FALSE`
626df4397b0SStefano Zampini M*/
627df4397b0SStefano Zampini 
628df4397b0SStefano Zampini /*MC
629df4397b0SStefano Zampini     PetscLogDouble - Used for logging times
630df4397b0SStefano Zampini 
631df4397b0SStefano Zampini   Notes:
632df4397b0SStefano Zampini   Contains double precision numbers that are not used in the numerical computations, but rather in logging, timing etc.
633df4397b0SStefano Zampini 
6346b3bf505SPatrick Sanan   Level: developer
6356b3bf505SPatrick Sanan 
636df4397b0SStefano Zampini M*/
637df4397b0SStefano Zampini typedef double PetscLogDouble;
638df4397b0SStefano Zampini 
639df4397b0SStefano Zampini /*E
640df4397b0SStefano Zampini     PetscDataType - Used for handling different basic data types.
641df4397b0SStefano Zampini 
642df4397b0SStefano Zampini    Level: beginner
643df4397b0SStefano Zampini 
644df4397b0SStefano Zampini    Notes:
64587497f52SBarry Smith    Use of this should be avoided if one can directly use `MPI_Datatype` instead.
646df4397b0SStefano Zampini 
64787497f52SBarry Smith    `PETSC_INT` is the datatype for a `PetscInt`, regardless of whether it is 4 or 8 bytes.
64887497f52SBarry Smith    `PETSC_REAL`, `PETSC_COMPLEX` and `PETSC_SCALAR` are the datatypes for `PetscReal`, `PetscComplex` and `PetscScalar`, regardless of their sizes.
649277f51e8SBarry Smith 
65087497f52SBarry Smith    Developer Notes:
651df4397b0SStefano Zampini    It would be nice if we could always just use MPI Datatypes, why can we not?
652df4397b0SStefano Zampini 
65387497f52SBarry Smith    If you change any values in `PetscDatatype` make sure you update their usage in
654fa131761SBarry Smith    share/petsc/matlab/PetscBagRead.m and share/petsc/matlab/@PetscOpenSocket/read/write.m
65591e29162SBarry Smith 
656277f51e8SBarry Smith    TODO: Add PETSC_INT32 and remove use of improper PETSC_ENUM
657277f51e8SBarry Smith 
658db781477SPatrick Sanan .seealso: `PetscBinaryRead()`, `PetscBinaryWrite()`, `PetscDataTypeToMPIDataType()`,
659db781477SPatrick Sanan           `PetscDataTypeGetSize()`
660df4397b0SStefano Zampini 
661df4397b0SStefano Zampini E*/
6629371c9d4SSatish Balay typedef enum {
6639371c9d4SSatish Balay   PETSC_DATATYPE_UNKNOWN = 0,
6649371c9d4SSatish Balay   PETSC_DOUBLE           = 1,
6659371c9d4SSatish Balay   PETSC_COMPLEX          = 2,
6669371c9d4SSatish Balay   PETSC_LONG             = 3,
6679371c9d4SSatish Balay   PETSC_SHORT            = 4,
6689371c9d4SSatish Balay   PETSC_FLOAT            = 5,
6699371c9d4SSatish Balay   PETSC_CHAR             = 6,
6709371c9d4SSatish Balay   PETSC_BIT_LOGICAL      = 7,
6719371c9d4SSatish Balay   PETSC_ENUM             = 8,
6729371c9d4SSatish Balay   PETSC_BOOL             = 9,
6739371c9d4SSatish Balay   PETSC___FLOAT128       = 10,
6749371c9d4SSatish Balay   PETSC_OBJECT           = 11,
6759371c9d4SSatish Balay   PETSC_FUNCTION         = 12,
6769371c9d4SSatish Balay   PETSC_STRING           = 13,
6779371c9d4SSatish Balay   PETSC___FP16           = 14,
6789371c9d4SSatish Balay   PETSC_STRUCT           = 15,
6799371c9d4SSatish Balay   PETSC_INT              = 16,
68062e5d2d2SJDBetteridge   PETSC_INT64            = 17,
68162e5d2d2SJDBetteridge   PETSC_COUNT            = 18
6829371c9d4SSatish Balay } PetscDataType;
6833b590011SJacob Faibussowitsch PETSC_EXTERN const char *const PetscDataTypes[];
684df4397b0SStefano Zampini 
685df4397b0SStefano Zampini #if defined(PETSC_USE_REAL_SINGLE)
686df4397b0SStefano Zampini   #define PETSC_REAL PETSC_FLOAT
6875117d392SLisandro Dalcin #elif defined(PETSC_USE_REAL_DOUBLE)
6885117d392SLisandro Dalcin   #define PETSC_REAL PETSC_DOUBLE
689df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FLOAT128)
690df4397b0SStefano Zampini   #define PETSC_REAL PETSC___FLOAT128
691df4397b0SStefano Zampini #elif defined(PETSC_USE_REAL___FP16)
692df4397b0SStefano Zampini   #define PETSC_REAL PETSC___FP16
693df4397b0SStefano Zampini #else
694df4397b0SStefano Zampini   #define PETSC_REAL PETSC_DOUBLE
695df4397b0SStefano Zampini #endif
6965117d392SLisandro Dalcin 
6975117d392SLisandro Dalcin #if defined(PETSC_USE_COMPLEX)
6985117d392SLisandro Dalcin   #define PETSC_SCALAR PETSC_COMPLEX
6995117d392SLisandro Dalcin #else
7005117d392SLisandro Dalcin   #define PETSC_SCALAR PETSC_REAL
7015117d392SLisandro Dalcin #endif
7025117d392SLisandro Dalcin 
703df4397b0SStefano Zampini #define PETSC_FORTRANADDR PETSC_LONG
704df4397b0SStefano Zampini 
705df4397b0SStefano Zampini /*S
706df4397b0SStefano Zampini     PetscToken - 'Token' used for managing tokenizing strings
707df4397b0SStefano Zampini 
708df4397b0SStefano Zampini   Level: intermediate
709df4397b0SStefano Zampini 
710db781477SPatrick Sanan .seealso: `PetscTokenCreate()`, `PetscTokenFind()`, `PetscTokenDestroy()`
711df4397b0SStefano Zampini S*/
712df4397b0SStefano Zampini typedef struct _p_PetscToken *PetscToken;
713df4397b0SStefano Zampini 
714df4397b0SStefano Zampini /*S
71587497f52SBarry Smith      PetscObject - any PETSc object, `PetscViewer`, `Mat`, `Vec`, `KSP` etc
716df4397b0SStefano Zampini 
717df4397b0SStefano Zampini    Level: beginner
718df4397b0SStefano Zampini 
71987497f52SBarry Smith    Notes:
720df4397b0SStefano Zampini    This is the base class from which all PETSc objects are derived from.
721df4397b0SStefano Zampini 
72287497f52SBarry Smith    In certain situations one can cast an object, for example a `Vec`, to a `PetscObject` with (`PetscObject`)vec
72387497f52SBarry Smith 
724db781477SPatrick Sanan .seealso: `PetscObjectDestroy()`, `PetscObjectView()`, `PetscObjectGetName()`, `PetscObjectSetName()`, `PetscObjectReference()`, `PetscObjectDereference()`
725df4397b0SStefano Zampini S*/
726df4397b0SStefano Zampini typedef struct _p_PetscObject *PetscObject;
727df4397b0SStefano Zampini 
728df4397b0SStefano Zampini /*MC
72987497f52SBarry Smith     PetscObjectId - unique integer Id for a `PetscObject`
730df4397b0SStefano Zampini 
731df4397b0SStefano Zampini     Level: developer
732df4397b0SStefano Zampini 
73387497f52SBarry Smith     Note:
73487497f52SBarry Smith     Unlike pointer values, object ids are never reused so one may save a `PetscObjectId` and compare it to one obtained later from a `PetscObject` to determine
73587497f52SBarry Smith     if the objects are the same. Never compare two object pointer values.
736df4397b0SStefano Zampini 
737db781477SPatrick Sanan .seealso: `PetscObjectState`, `PetscObjectGetId()`
738df4397b0SStefano Zampini M*/
739df4397b0SStefano Zampini typedef PetscInt64 PetscObjectId;
740df4397b0SStefano Zampini 
741df4397b0SStefano Zampini /*MC
74287497f52SBarry Smith     PetscObjectState - integer state for a `PetscObject`
743df4397b0SStefano Zampini 
744df4397b0SStefano Zampini     Level: developer
745df4397b0SStefano Zampini 
746df4397b0SStefano Zampini     Notes:
747df4397b0SStefano Zampini     Object state is always-increasing and (for objects that track state) can be used to determine if an object has
748df4397b0SStefano 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.
749df4397b0SStefano Zampini 
750db781477SPatrick Sanan .seealso: `PetscObjectId`, `PetscObjectStateGet()`, `PetscObjectStateIncrease()`, `PetscObjectStateSet()`
751df4397b0SStefano Zampini M*/
752df4397b0SStefano Zampini typedef PetscInt64 PetscObjectState;
753df4397b0SStefano Zampini 
754df4397b0SStefano Zampini /*S
755df4397b0SStefano Zampini      PetscFunctionList - Linked list of functions, possibly stored in dynamic libraries, accessed
756df4397b0SStefano Zampini       by string name
757df4397b0SStefano Zampini 
758df4397b0SStefano Zampini    Level: advanced
759df4397b0SStefano Zampini 
760db781477SPatrick Sanan .seealso: `PetscFunctionListAdd()`, `PetscFunctionListDestroy()`
761df4397b0SStefano Zampini S*/
762df4397b0SStefano Zampini typedef struct _n_PetscFunctionList *PetscFunctionList;
763df4397b0SStefano Zampini 
764df4397b0SStefano Zampini /*E
765df4397b0SStefano Zampini   PetscFileMode - Access mode for a file.
766df4397b0SStefano Zampini 
767df4397b0SStefano Zampini   Level: beginner
768df4397b0SStefano Zampini 
76987497f52SBarry Smith $  `FILE_MODE_UNDEFINED` - initial invalid value
77087497f52SBarry Smith $  `FILE_MODE_READ` - open a file at its beginning for reading
77187497f52SBarry Smith $  `FILE_MODE_WRITE` - open a file at its beginning for writing (will create if the file does not exist)
77287497f52SBarry Smith $  `FILE_MODE_APPEND` - open a file at end for writing
77387497f52SBarry Smith $  `FILE_MODE_UPDATE` - open a file for updating, meaning for reading and writing
77487497f52SBarry Smith $  `FILE_MODE_APPEND_UPDATE` - open a file for updating, meaning for reading and writing, at the end
775df4397b0SStefano Zampini 
776db781477SPatrick Sanan .seealso: `PetscViewerFileSetMode()`
777df4397b0SStefano Zampini E*/
7789371c9d4SSatish Balay typedef enum {
7799371c9d4SSatish Balay   FILE_MODE_UNDEFINED = -1,
7809371c9d4SSatish Balay   FILE_MODE_READ      = 0,
7819371c9d4SSatish Balay   FILE_MODE_WRITE,
7829371c9d4SSatish Balay   FILE_MODE_APPEND,
7839371c9d4SSatish Balay   FILE_MODE_UPDATE,
7849371c9d4SSatish Balay   FILE_MODE_APPEND_UPDATE
7859371c9d4SSatish Balay } PetscFileMode;
7863b590011SJacob Faibussowitsch PETSC_EXTERN const char *const PetscFileModes[];
787df4397b0SStefano Zampini 
788df4397b0SStefano Zampini typedef void *PetscDLHandle;
7899371c9d4SSatish Balay typedef enum {
7909371c9d4SSatish Balay   PETSC_DL_DECIDE = 0,
7919371c9d4SSatish Balay   PETSC_DL_NOW    = 1,
7929371c9d4SSatish Balay   PETSC_DL_LOCAL  = 2
7939371c9d4SSatish Balay } PetscDLMode;
794df4397b0SStefano Zampini 
795df4397b0SStefano Zampini /*S
7967243573dSPierre Jolivet      PetscObjectList - Linked list of PETSc objects, each accessible by string name
797df4397b0SStefano Zampini 
798df4397b0SStefano Zampini    Level: developer
799df4397b0SStefano Zampini 
80087497f52SBarry Smith    Note:
80187497f52SBarry Smith    Used by `PetscObjectCompose()` and `PetscObjectQuery()`
802df4397b0SStefano Zampini 
803db781477SPatrick Sanan .seealso: `PetscObjectListAdd()`, `PetscObjectListDestroy()`, `PetscObjectListFind()`, `PetscObjectCompose()`, `PetscObjectQuery()`, `PetscFunctionList`
804df4397b0SStefano Zampini S*/
805df4397b0SStefano Zampini typedef struct _n_PetscObjectList *PetscObjectList;
806df4397b0SStefano Zampini 
807df4397b0SStefano Zampini /*S
808df4397b0SStefano Zampini      PetscDLLibrary - Linked list of dynamics libraries to search for functions
809df4397b0SStefano Zampini 
810df4397b0SStefano Zampini    Level: advanced
811df4397b0SStefano Zampini 
812db781477SPatrick Sanan .seealso: `PetscDLLibraryOpen()`
813df4397b0SStefano Zampini S*/
814df4397b0SStefano Zampini typedef struct _n_PetscDLLibrary *PetscDLLibrary;
815df4397b0SStefano Zampini 
816df4397b0SStefano Zampini /*S
817df4397b0SStefano Zampini      PetscContainer - Simple PETSc object that contains a pointer to any required data
818df4397b0SStefano Zampini 
819df4397b0SStefano Zampini    Level: advanced
820df4397b0SStefano Zampini 
82187497f52SBarry Smith    Note:
82287497f52SBarry Smith    This is useful to attach arbitrary data to a `PetscObject` with `PetscObjectCompose()` and `PetscObjectQuery()`
82387497f52SBarry Smith 
82487497f52SBarry Smith .seealso: `PetscObject`, `PetscContainerCreate()`, `PetscObjectCompose()`, `PetscObjectQuery()`
825df4397b0SStefano Zampini S*/
826df4397b0SStefano Zampini typedef struct _p_PetscContainer *PetscContainer;
827df4397b0SStefano Zampini 
828df4397b0SStefano Zampini /*S
829df4397b0SStefano Zampini      PetscRandom - Abstract PETSc object that manages generating random numbers
830df4397b0SStefano Zampini 
831df4397b0SStefano Zampini    Level: intermediate
832df4397b0SStefano Zampini 
833db781477SPatrick Sanan .seealso: `PetscRandomCreate()`, `PetscRandomGetValue()`, `PetscRandomType`
834df4397b0SStefano Zampini S*/
835df4397b0SStefano Zampini typedef struct _p_PetscRandom *PetscRandom;
836df4397b0SStefano Zampini 
837df4397b0SStefano Zampini /*
838df4397b0SStefano Zampini    In binary files variables are stored using the following lengths,
839df4397b0SStefano Zampini   regardless of how they are stored in memory on any one particular
840df4397b0SStefano Zampini   machine. Use these rather then sizeof() in computing sizes for
841df4397b0SStefano Zampini   PetscBinarySeek().
842df4397b0SStefano Zampini */
843df4397b0SStefano Zampini #define PETSC_BINARY_INT_SIZE    (32 / 8)
844df4397b0SStefano Zampini #define PETSC_BINARY_FLOAT_SIZE  (32 / 8)
845df4397b0SStefano Zampini #define PETSC_BINARY_CHAR_SIZE   (8 / 8)
846df4397b0SStefano Zampini #define PETSC_BINARY_SHORT_SIZE  (16 / 8)
847df4397b0SStefano Zampini #define PETSC_BINARY_DOUBLE_SIZE (64 / 8)
848df4397b0SStefano Zampini #define PETSC_BINARY_SCALAR_SIZE sizeof(PetscScalar)
849df4397b0SStefano Zampini 
850df4397b0SStefano Zampini /*E
85187497f52SBarry Smith   PetscBinarySeekType - argument to `PetscBinarySeek()`
852df4397b0SStefano Zampini 
853df4397b0SStefano Zampini   Level: advanced
854df4397b0SStefano Zampini 
855db781477SPatrick Sanan .seealso: `PetscBinarySeek()`, `PetscBinarySynchronizedSeek()`
856df4397b0SStefano Zampini E*/
8579371c9d4SSatish Balay typedef enum {
8589371c9d4SSatish Balay   PETSC_BINARY_SEEK_SET = 0,
8599371c9d4SSatish Balay   PETSC_BINARY_SEEK_CUR = 1,
8609371c9d4SSatish Balay   PETSC_BINARY_SEEK_END = 2
8619371c9d4SSatish Balay } PetscBinarySeekType;
862df4397b0SStefano Zampini 
863df4397b0SStefano Zampini /*E
864df4397b0SStefano Zampini     PetscBuildTwoSidedType - algorithm for setting up two-sided communication
865df4397b0SStefano Zampini 
86687497f52SBarry Smith $  `PETSC_BUILDTWOSIDED_ALLREDUCE` - classical algorithm using an MPI_Allreduce with
867df4397b0SStefano Zampini $      a buffer of length equal to the communicator size. Not memory-scalable due to
868df4397b0SStefano Zampini $      the large reduction size. Requires only MPI-1.
86987497f52SBarry Smith $  `PETSC_BUILDTWOSIDED_IBARRIER` - nonblocking algorithm based on MPI_Issend and MPI_Ibarrier.
870df4397b0SStefano Zampini $      Proved communication-optimal in Hoefler, Siebert, and Lumsdaine (2010). Requires MPI-3.
87187497f52SBarry Smith $  `PETSC_BUILDTWOSIDED_REDSCATTER` - similar to above, but use more optimized function
872df4397b0SStefano Zampini $      that only communicates the part of the reduction that is necessary.  Requires MPI-2.
873df4397b0SStefano Zampini 
874df4397b0SStefano Zampini    Level: developer
875df4397b0SStefano Zampini 
876db781477SPatrick Sanan .seealso: `PetscCommBuildTwoSided()`, `PetscCommBuildTwoSidedSetType()`, `PetscCommBuildTwoSidedGetType()`
877df4397b0SStefano Zampini E*/
878df4397b0SStefano Zampini typedef enum {
879df4397b0SStefano Zampini   PETSC_BUILDTWOSIDED_NOTSET     = -1,
880df4397b0SStefano Zampini   PETSC_BUILDTWOSIDED_ALLREDUCE  = 0,
881df4397b0SStefano Zampini   PETSC_BUILDTWOSIDED_IBARRIER   = 1,
882df4397b0SStefano Zampini   PETSC_BUILDTWOSIDED_REDSCATTER = 2
883df4397b0SStefano Zampini   /* Updates here must be accompanied by updates in finclude/petscsys.h and the string array in mpits.c */
884df4397b0SStefano Zampini } PetscBuildTwoSidedType;
8853b590011SJacob Faibussowitsch PETSC_EXTERN const char *const PetscBuildTwoSidedTypes[];
886df4397b0SStefano Zampini 
887aa2d33c1SMatthew G. Knepley /* NOTE: If you change this, you must also change the values in src/vec/f90-mod/petscvec.h */
888df4397b0SStefano Zampini /*E
889df4397b0SStefano Zampini   InsertMode - Whether entries are inserted or added into vectors or matrices
890df4397b0SStefano Zampini 
891df4397b0SStefano Zampini   Level: beginner
892df4397b0SStefano Zampini 
893db781477SPatrick Sanan .seealso: `VecSetValues()`, `MatSetValues()`, `VecSetValue()`, `VecSetValuesBlocked()`,
894db781477SPatrick Sanan           `VecSetValuesLocal()`, `VecSetValuesBlockedLocal()`, `MatSetValuesBlocked()`,
895db781477SPatrick Sanan           `MatSetValuesBlockedLocal()`, `MatSetValuesLocal()`, `VecScatterBegin()`, `VecScatterEnd()`
896df4397b0SStefano Zampini E*/
8979371c9d4SSatish Balay typedef enum {
8989371c9d4SSatish Balay   NOT_SET_VALUES,
8999371c9d4SSatish Balay   INSERT_VALUES,
9009371c9d4SSatish Balay   ADD_VALUES,
9019371c9d4SSatish Balay   MAX_VALUES,
9029371c9d4SSatish Balay   MIN_VALUES,
9039371c9d4SSatish Balay   INSERT_ALL_VALUES,
9049371c9d4SSatish Balay   ADD_ALL_VALUES,
9059371c9d4SSatish Balay   INSERT_BC_VALUES,
9069371c9d4SSatish Balay   ADD_BC_VALUES
9079371c9d4SSatish Balay } InsertMode;
908df4397b0SStefano Zampini 
909df4397b0SStefano Zampini /*MC
910df4397b0SStefano Zampini     INSERT_VALUES - Put a value into a vector or matrix, overwrites any previous value
911df4397b0SStefano Zampini 
912df4397b0SStefano Zampini     Level: beginner
913df4397b0SStefano Zampini 
914db781477SPatrick Sanan .seealso: `InsertMode`, `VecSetValues()`, `MatSetValues()`, `VecSetValue()`, `VecSetValuesBlocked()`,
915db781477SPatrick Sanan           `VecSetValuesLocal()`, `VecSetValuesBlockedLocal()`, `MatSetValuesBlocked()`, `ADD_VALUES`,
916db781477SPatrick Sanan           `MatSetValuesBlockedLocal()`, `MatSetValuesLocal()`, `VecScatterBegin()`, `VecScatterEnd()`, `MAX_VALUES`
917df4397b0SStefano Zampini 
918df4397b0SStefano Zampini M*/
919df4397b0SStefano Zampini 
920df4397b0SStefano Zampini /*MC
921df4397b0SStefano Zampini     ADD_VALUES - Adds a value into a vector or matrix, if there previously was no value, just puts the
922df4397b0SStefano Zampini                 value into that location
923df4397b0SStefano Zampini 
924df4397b0SStefano Zampini     Level: beginner
925df4397b0SStefano Zampini 
926db781477SPatrick Sanan .seealso: `InsertMode`, `VecSetValues()`, `MatSetValues()`, `VecSetValue()`, `VecSetValuesBlocked()`,
927db781477SPatrick Sanan           `VecSetValuesLocal()`, `VecSetValuesBlockedLocal()`, `MatSetValuesBlocked()`, `INSERT_VALUES`,
928db781477SPatrick Sanan           `MatSetValuesBlockedLocal()`, `MatSetValuesLocal()`, `VecScatterBegin()`, `VecScatterEnd()`, `MAX_VALUES`
929df4397b0SStefano Zampini 
930df4397b0SStefano Zampini M*/
931df4397b0SStefano Zampini 
932df4397b0SStefano Zampini /*MC
933df4397b0SStefano Zampini     MAX_VALUES - Puts the maximum of the scattered/gathered value and the current value into each location
934df4397b0SStefano Zampini 
935df4397b0SStefano Zampini     Level: beginner
936df4397b0SStefano Zampini 
937db781477SPatrick Sanan .seealso: `InsertMode`, `VecScatterBegin()`, `VecScatterEnd()`, `ADD_VALUES`, `INSERT_VALUES`
938df4397b0SStefano Zampini 
939df4397b0SStefano Zampini M*/
940df4397b0SStefano Zampini 
941421aa1e7SJunchao Zhang /*MC
942421aa1e7SJunchao Zhang     MIN_VALUES - Puts the minimal of the scattered/gathered value and the current value into each location
943421aa1e7SJunchao Zhang 
944421aa1e7SJunchao Zhang     Level: beginner
945421aa1e7SJunchao Zhang 
946db781477SPatrick Sanan .seealso: `InsertMode`, `VecScatterBegin()`, `VecScatterEnd()`, `ADD_VALUES`, `INSERT_VALUES`
947421aa1e7SJunchao Zhang 
948421aa1e7SJunchao Zhang M*/
949421aa1e7SJunchao Zhang 
950df4397b0SStefano Zampini /*S
951df4397b0SStefano Zampini    PetscSubcomm - A decomposition of an MPI communicator into subcommunicators
952df4397b0SStefano Zampini 
953df4397b0SStefano Zampini    Notes:
95487497f52SBarry Smith    After a call to `PetscSubcommSetType()`, `PetscSubcommSetTypeGeneral()`, or `PetscSubcommSetFromOptions()` one may call
95587497f52SBarry Smith $     `PetscSubcommChild()` returns the associated subcommunicator on this process
95687497f52SBarry Smith $     `PetscSubcommContiguousParent()` returns a parent communitor but with all child of the same subcommunicator having contiguous rank
957df4397b0SStefano Zampini 
958df4397b0SStefano Zampini    Sample Usage:
95987497f52SBarry Smith .vb
96087497f52SBarry Smith        `PetscSubcommCreate()`
96187497f52SBarry Smith        `PetscSubcommSetNumber()`
96287497f52SBarry Smith        `PetscSubcommSetType`(`PETSC_SUBCOMM_INTERLACED`);
96387497f52SBarry Smith        ccomm = `PetscSubcommChild()`
96487497f52SBarry Smith        `PetscSubcommDestroy()`
96587497f52SBarry Smith .ve
966df4397b0SStefano Zampini 
967df4397b0SStefano Zampini    Level: advanced
968df4397b0SStefano Zampini 
969df4397b0SStefano Zampini    Notes:
97087497f52SBarry Smith $   `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
97187497f52SBarry Smith $   `PETSC_SUBCOMM_CONTIGUOUS` - each new communicator contains a set of process with contiguous ranks in the original MPI communicator
97287497f52SBarry Smith $   `PETSC_SUBCOMM_INTERLACED` - each new communictor contains a set of processes equally far apart in rank from the others in that new communicator
973df4397b0SStefano Zampini 
974df4397b0SStefano Zampini    Example: Consider a communicator with six processes split into 3 subcommunicators.
97587497f52SBarry Smith $     `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
97687497f52SBarry Smith $     `PETSC_SUBCOMM_INTERLACED` - the first communicator contains rank 0,3, the second 1,4 and the third 2,5
977df4397b0SStefano Zampini 
97887497f52SBarry Smith    Developer Note:
97987497f52SBarry Smith    This is used in objects such as `PCREDUNDANT` to manage the subcommunicators on which the redundant computations
980df4397b0SStefano Zampini    are performed.
981df4397b0SStefano Zampini 
982db781477SPatrick Sanan .seealso: `PetscSubcommCreate()`, `PetscSubcommSetNumber()`, `PetscSubcommSetType()`, `PetscSubcommView()`, `PetscSubcommSetFromOptions()`
983df4397b0SStefano Zampini 
984df4397b0SStefano Zampini S*/
985df4397b0SStefano Zampini typedef struct _n_PetscSubcomm *PetscSubcomm;
9869371c9d4SSatish Balay typedef enum {
9879371c9d4SSatish Balay   PETSC_SUBCOMM_GENERAL    = 0,
9889371c9d4SSatish Balay   PETSC_SUBCOMM_CONTIGUOUS = 1,
9899371c9d4SSatish Balay   PETSC_SUBCOMM_INTERLACED = 2
9909371c9d4SSatish Balay } PetscSubcommType;
9913b590011SJacob Faibussowitsch PETSC_EXTERN const char *const PetscSubcommTypes[];
992df4397b0SStefano Zampini 
993df4397b0SStefano Zampini /*S
994df4397b0SStefano Zampini      PetscHeap - A simple class for managing heaps
995df4397b0SStefano Zampini 
996df4397b0SStefano Zampini    Level: intermediate
997df4397b0SStefano Zampini 
998db781477SPatrick Sanan .seealso: `PetscHeapCreate()`, `PetscHeapAdd()`, `PetscHeapPop()`, `PetscHeapPeek()`, `PetscHeapStash()`, `PetscHeapUnstash()`, `PetscHeapView()`, `PetscHeapDestroy()`
999df4397b0SStefano Zampini S*/
1000df4397b0SStefano Zampini typedef struct _PetscHeap *PetscHeap;
1001df4397b0SStefano Zampini 
1002df4397b0SStefano Zampini typedef struct _n_PetscShmComm *PetscShmComm;
1003df4397b0SStefano Zampini typedef struct _n_PetscOmpCtrl *PetscOmpCtrl;
1004df4397b0SStefano Zampini 
1005df4397b0SStefano Zampini /*S
1006df4397b0SStefano Zampini    PetscSegBuffer - a segmented extendable buffer
1007df4397b0SStefano Zampini 
1008df4397b0SStefano Zampini    Level: developer
1009df4397b0SStefano Zampini 
1010db781477SPatrick Sanan .seealso: `PetscSegBufferCreate()`, `PetscSegBufferGet()`, `PetscSegBufferExtract()`, `PetscSegBufferDestroy()`
1011df4397b0SStefano Zampini S*/
1012df4397b0SStefano Zampini typedef struct _n_PetscSegBuffer *PetscSegBuffer;
1013df4397b0SStefano Zampini 
1014df4397b0SStefano Zampini typedef struct _n_PetscOptionsHelpPrinted *PetscOptionsHelpPrinted;
1015df4397b0SStefano Zampini #endif
1016