xref: /petsc/include/petscmat.h (revision bb4d416667b8ae328469b5bb39ea7c60f219c39b)
12eac72dbSBarry Smith /*
22eac72dbSBarry Smith      Include file for the matrix component of PETSc
32eac72dbSBarry Smith */
40a835dfdSSatish Balay #ifndef __PETSCMAT_H
50a835dfdSSatish Balay #define __PETSCMAT_H
60a835dfdSSatish Balay #include "petscvec.h"
7e9fa29b7SSatish Balay PETSC_EXTERN_CXX_BEGIN
82eac72dbSBarry Smith 
9d9274352SBarry Smith /*S
10d9274352SBarry Smith      Mat - Abstract PETSc matrix object
112eac72dbSBarry Smith 
12d91e6319SBarry Smith    Level: beginner
13d91e6319SBarry Smith 
14d9274352SBarry Smith   Concepts: matrix; linear operator
15d9274352SBarry Smith 
16d9274352SBarry Smith .seealso:  MatCreate(), MatType, MatSetType()
17d9274352SBarry Smith S*/
18d9274352SBarry Smith typedef struct _p_Mat*           Mat;
19d9274352SBarry Smith 
20d9274352SBarry Smith /*E
21d9274352SBarry Smith     MatType - String with the name of a PETSc matrix or the creation function
22d9274352SBarry Smith        with an optional dynamic library name, for example
23d9274352SBarry Smith        http://www.mcs.anl.gov/petsc/lib.a:mymatcreate()
24d9274352SBarry Smith 
25d9274352SBarry Smith    Level: beginner
26d9274352SBarry Smith 
27d9274352SBarry Smith .seealso: MatSetType(), Mat
28d91e6319SBarry Smith E*/
29273d9f13SBarry Smith #define MATSAME            "same"
30273d9f13SBarry Smith #define MATSEQMAIJ         "seqmaij"
31273d9f13SBarry Smith #define MATMPIMAIJ         "mpimaij"
32209238afSKris Buschelman #define MATMAIJ            "maij"
33273d9f13SBarry Smith #define MATIS              "is"
34273d9f13SBarry Smith #define MATMPIROWBS        "mpirowbs"
35273d9f13SBarry Smith #define MATSEQAIJ          "seqaij"
36273d9f13SBarry Smith #define MATMPIAIJ          "mpiaij"
37209238afSKris Buschelman #define MATAIJ             "aij"
38273d9f13SBarry Smith #define MATSHELL           "shell"
39273d9f13SBarry Smith #define MATSEQBDIAG        "seqbdiag"
40273d9f13SBarry Smith #define MATMPIBDIAG        "mpibdiag"
41209238afSKris Buschelman #define MATBDIAG           "bdiag"
42209238afSKris Buschelman #define MATSEQDENSE        "seqdense"
43273d9f13SBarry Smith #define MATMPIDENSE        "mpidense"
44209238afSKris Buschelman #define MATDENSE           "dense"
45273d9f13SBarry Smith #define MATSEQBAIJ         "seqbaij"
46273d9f13SBarry Smith #define MATMPIBAIJ         "mpibaij"
47209238afSKris Buschelman #define MATBAIJ            "baij"
48273d9f13SBarry Smith #define MATMPIADJ          "mpiadj"
49273d9f13SBarry Smith #define MATSEQSBAIJ        "seqsbaij"
50273d9f13SBarry Smith #define MATMPISBAIJ        "mpisbaij"
51209238afSKris Buschelman #define MATSBAIJ           "sbaij"
52cebc7f6cSBarry Smith #define MATDAAD            "daad"
53cebc7f6cSBarry Smith #define MATMFFD            "mffd"
546d88219bSBarry Smith #define MATESI             "esi"
556d88219bSBarry Smith #define MATPETSCESI        "petscesi"
56c8a8475eSBarry Smith #define MATNORMAL          "normal"
57b3a1e11cSKris Buschelman #define MATSEQAIJSPOOLES   "seqaijspooles"
58d10c748bSKris Buschelman #define MATMPIAIJSPOOLES   "mpiaijspooles"
599abb65ffSKris Buschelman #define MATSEQSBAIJSPOOLES "seqsbaijspooles"
6022191285SKris Buschelman #define MATMPISBAIJSPOOLES "mpisbaijspooles"
61*bb4d4166SHong Zhang #define MATAIJSPOOLES      "aijspooles"
62*bb4d4166SHong Zhang #define MATSBAIJSPOOLES    "sbaijspooles"
6314b396bbSKris Buschelman #define MATSUPERLU         "superlu"
641d96aa28SKris Buschelman #define MATSUPERLU_DIST    "superlu_dist"
651677d0b8SKris Buschelman #define MATUMFPACK         "umfpack"
66e8aa55a4SKris Buschelman #define MATESSL            "essl"
674eb8e494SKris Buschelman #define MATLUSOL           "lusol"
68397b6df1SKris Buschelman #define MATAIJMUMPS        "aijmumps"
69397b6df1SKris Buschelman #define MATSBAIJMUMPS      "sbaijmumps"
708da957c5SKris Buschelman #define MATDSCPACK         "dscpack"
717065e2aaSKris Buschelman #define MATMATLAB          "matlab"
7249773a63SBarry Smith #define MatType char*
73d91e6319SBarry Smith 
74c06d978dSMatthew Knepley /* Logging support */
75552e946dSBarry Smith #define    MAT_FILE_COOKIE 1211216    /* used to indicate matrices in binary files */
76c06d978dSMatthew Knepley extern int MAT_COOKIE;
7771d41ebeSBarry Smith extern int MATSNESMFCTX_COOKIE;
78c06d978dSMatthew Knepley extern int MAT_FDCOLORING_COOKIE;
798ba1e511SMatthew Knepley extern int MAT_PARTITIONING_COOKIE;
808ba1e511SMatthew Knepley extern int MAT_NULLSPACE_COOKIE;
81d59c15a7SBarry Smith extern int MAT_Mult, MAT_MultMatrixFree, MAT_Mults, MAT_MultConstrained, MAT_MultAdd, MAT_MultTranspose;
82d59c15a7SBarry Smith extern int MAT_MultTransposeConstrained, MAT_MultTransposeAdd, MAT_Solve, MAT_Solves, MAT_SolveAdd, MAT_SolveTranspose;
83d5ba7fb7SMatthew Knepley extern int MAT_SolveTransposeAdd, MAT_Relax, MAT_ForwardSolve, MAT_BackwardSolve, MAT_LUFactor, MAT_LUFactorSymbolic;
84d5ba7fb7SMatthew Knepley extern int MAT_LUFactorNumeric, MAT_CholeskyFactor, MAT_CholeskyFactorSymbolic, MAT_CholeskyFactorNumeric, MAT_ILUFactor;
85d5ba7fb7SMatthew Knepley extern int MAT_ILUFactorSymbolic, MAT_ICCFactorSymbolic, MAT_Copy, MAT_Convert, MAT_Scale, MAT_AssemblyBegin;
86d5ba7fb7SMatthew Knepley extern int MAT_AssemblyEnd, MAT_SetValues, MAT_GetValues, MAT_GetRow, MAT_GetSubMatrices, MAT_GetColoring, MAT_GetOrdering;
87d5ba7fb7SMatthew Knepley extern int MAT_IncreaseOverlap, MAT_Partitioning, MAT_ZeroEntries, MAT_Load, MAT_View, MAT_AXPY, MAT_FDColoringCreate;
8866f9b7ceSBarry Smith extern int MAT_FDColoringApply, MAT_Transpose, MAT_FDColoringFunction;
89c06d978dSMatthew Knepley 
908ba1e511SMatthew Knepley EXTERN int MatInitializePackage(char *);
91c06d978dSMatthew Knepley 
92273d9f13SBarry Smith EXTERN int MatCreate(MPI_Comm,int,int,int,int,Mat*);
930e33f6ddSBarry Smith EXTERN int MatSetType(Mat,const MatType);
94273d9f13SBarry Smith EXTERN int MatSetFromOptions(Mat);
95273d9f13SBarry Smith EXTERN int MatSetUpPreallocation(Mat);
960e33f6ddSBarry Smith EXTERN int MatRegisterAll(const char[]);
970e33f6ddSBarry Smith EXTERN int MatRegister(const char[],const char[],const char[],int(*)(Mat));
9830de9b25SBarry Smith 
9930de9b25SBarry Smith /*MC
10030de9b25SBarry Smith    MatRegisterDynamic - Adds a new matrix type
10130de9b25SBarry Smith 
10230de9b25SBarry Smith    Synopsis:
10330de9b25SBarry Smith    int MatRegisterDynamic(char *name,char *path,char *name_create,int (*routine_create)(Mat))
10430de9b25SBarry Smith 
10530de9b25SBarry Smith    Not Collective
10630de9b25SBarry Smith 
10730de9b25SBarry Smith    Input Parameters:
10830de9b25SBarry Smith +  name - name of a new user-defined matrix type
10930de9b25SBarry Smith .  path - path (either absolute or relative) the library containing this solver
11030de9b25SBarry Smith .  name_create - name of routine to create method context
11130de9b25SBarry Smith -  routine_create - routine to create method context
11230de9b25SBarry Smith 
11330de9b25SBarry Smith    Notes:
11430de9b25SBarry Smith    MatRegisterDynamic() may be called multiple times to add several user-defined solvers.
11530de9b25SBarry Smith 
11630de9b25SBarry Smith    If dynamic libraries are used, then the fourth input argument (routine_create)
11730de9b25SBarry Smith    is ignored.
11830de9b25SBarry Smith 
11930de9b25SBarry Smith    Sample usage:
12030de9b25SBarry Smith .vb
12130de9b25SBarry Smith    MatRegisterDynamic("my_mat",/home/username/my_lib/lib/libO/solaris/mylib.a,
12230de9b25SBarry Smith                "MyMatCreate",MyMatCreate);
12330de9b25SBarry Smith .ve
12430de9b25SBarry Smith 
12530de9b25SBarry Smith    Then, your solver can be chosen with the procedural interface via
12630de9b25SBarry Smith $     MatSetType(Mat,"my_mat")
12730de9b25SBarry Smith    or at runtime via the option
12830de9b25SBarry Smith $     -mat_type my_mat
12930de9b25SBarry Smith 
13030de9b25SBarry Smith    Level: advanced
13130de9b25SBarry Smith 
13230de9b25SBarry Smith    Notes: ${PETSC_ARCH} and ${BOPT} occuring in pathname will be replaced with appropriate values.
13330de9b25SBarry Smith          If your function is not being put into a shared library then use VecRegister() instead
13430de9b25SBarry Smith 
13530de9b25SBarry Smith .keywords: Mat, register
13630de9b25SBarry Smith 
13730de9b25SBarry Smith .seealso: MatRegisterAll(), MatRegisterDestroy()
13830de9b25SBarry Smith 
13930de9b25SBarry Smith M*/
140273d9f13SBarry Smith #if defined(PETSC_USE_DYNAMIC_LIBRARIES)
141273d9f13SBarry Smith #define MatRegisterDynamic(a,b,c,d) MatRegister(a,b,c,0)
142273d9f13SBarry Smith #else
143273d9f13SBarry Smith #define MatRegisterDynamic(a,b,c,d) MatRegister(a,b,c,d)
14430de9b25SBarry Smith #endif
14530de9b25SBarry Smith 
146273d9f13SBarry Smith extern PetscTruth MatRegisterAllCalled;
147b0a32e0cSBarry Smith extern PetscFList MatList;
14828988994SBarry Smith 
149ca01db9bSBarry Smith EXTERN int MatCreateSeqDense(MPI_Comm,int,int,PetscScalar[],Mat*);
150ca01db9bSBarry Smith EXTERN int MatCreateMPIDense(MPI_Comm,int,int,int,int,PetscScalar[],Mat*);
151ca01db9bSBarry Smith EXTERN int MatCreateSeqAIJ(MPI_Comm,int,int,int,const int[],Mat*);
152ca01db9bSBarry Smith EXTERN int MatCreateMPIAIJ(MPI_Comm,int,int,int,int,int,const int[],int,const int[],Mat*);
153ca01db9bSBarry Smith EXTERN int MatCreateMPIRowbs(MPI_Comm,int,int,int,const int[],Mat*);
154ca01db9bSBarry Smith EXTERN int MatCreateSeqBDiag(MPI_Comm,int,int,int,int,const int[],PetscScalar*[],Mat*);
155ca01db9bSBarry Smith EXTERN int MatCreateMPIBDiag(MPI_Comm,int,int,int,int,int,const int[],PetscScalar*[],Mat*);
156ca01db9bSBarry Smith EXTERN int MatCreateSeqBAIJ(MPI_Comm,int,int,int,int,const int[],Mat*);
157ca01db9bSBarry Smith EXTERN int MatCreateMPIBAIJ(MPI_Comm,int,int,int,int,int,int,const int[],int,const int[],Mat*);
158ca01db9bSBarry Smith EXTERN int MatCreateMPIAdj(MPI_Comm,int,int,int[],int[],int[],Mat*);
159ca01db9bSBarry Smith EXTERN int MatCreateSeqSBAIJ(MPI_Comm,int,int,int,int,const int[],Mat*);
160ca01db9bSBarry Smith EXTERN int MatCreateMPISBAIJ(MPI_Comm,int,int,int,int,int,int,const int[],int,const int[],Mat*);
161ca44d042SBarry Smith EXTERN int MatCreateShell(MPI_Comm,int,int,int,int,void *,Mat*);
1623a7fca6bSBarry Smith EXTERN int MatCreateAdic(MPI_Comm,int,int,int,int,int,void (*)(void),Mat*);
163c8a8475eSBarry Smith EXTERN int MatCreateNormal(Mat,Mat*);
164435da068SBarry Smith EXTERN int MatDestroy(Mat);
16521c89e3eSBarry Smith 
166ca44d042SBarry Smith EXTERN int MatPrintHelp(Mat);
1678a124369SBarry Smith EXTERN int MatGetPetscMaps(Mat,PetscMap*,PetscMap*);
168ec0117caSBarry Smith 
1698ed539a5SBarry Smith /* ------------------------------------------------------------*/
170f15d580aSBarry Smith EXTERN int MatSetValues(Mat,int,const int[],int,const int[],const PetscScalar[],InsertMode);
171f15d580aSBarry Smith EXTERN int MatSetValuesBlocked(Mat,int,const int[],int,const int[],const PetscScalar[],InsertMode);
17284cb2905SBarry Smith 
1732ef4de8bSBarry Smith /*S
1742ef4de8bSBarry Smith      MatStencil - Data structure (C struct) for storing information about a single row or
1752ef4de8bSBarry Smith         column of a matrix as index on an associated grid.
1762ef4de8bSBarry Smith 
1772ef4de8bSBarry Smith    Level: beginner
1782ef4de8bSBarry Smith 
1792ef4de8bSBarry Smith   Concepts: matrix; linear operator
1802ef4de8bSBarry Smith 
181d7bd93baSBarry Smith .seealso:  MatSetValuesStencil(), MatSetStencil(), MatSetValuesBlockStencil()
1822ef4de8bSBarry Smith S*/
183435da068SBarry Smith typedef struct {
184435da068SBarry Smith   int k,j,i,c;
185435da068SBarry Smith } MatStencil;
1862ef4de8bSBarry Smith 
187f15d580aSBarry Smith EXTERN int MatSetValuesStencil(Mat,int,const MatStencil[],int,const MatStencil[],const PetscScalar[],InsertMode);
188f15d580aSBarry Smith EXTERN int MatSetValuesBlockedStencil(Mat,int,const MatStencil[],int,const MatStencil[],const PetscScalar[],InsertMode);
189f15d580aSBarry Smith EXTERN int MatSetStencil(Mat,int,const int[],const int[],int);
190435da068SBarry Smith 
1913a7fca6bSBarry Smith EXTERN int MatSetColoring(Mat,ISColoring);
1923a7fca6bSBarry Smith EXTERN int MatSetValuesAdic(Mat,void*);
1933a7fca6bSBarry Smith EXTERN int MatSetValuesAdifor(Mat,int,void*);
1943a7fca6bSBarry Smith 
195d91e6319SBarry Smith /*E
196d91e6319SBarry Smith     MatAssemblyType - Indicates if the matrix is now to be used, or if you plan
197d91e6319SBarry Smith      to continue to add values to it
198d91e6319SBarry Smith 
199d91e6319SBarry Smith     Level: beginner
200d91e6319SBarry Smith 
201d91e6319SBarry Smith .seealso: MatAssemblyBegin(), MatAssemblyEnd()
202d91e6319SBarry Smith E*/
2036d4a8577SBarry Smith typedef enum {MAT_FLUSH_ASSEMBLY=1,MAT_FINAL_ASSEMBLY=0} MatAssemblyType;
204ca44d042SBarry Smith EXTERN int MatAssemblyBegin(Mat,MatAssemblyType);
205ca44d042SBarry Smith EXTERN int MatAssemblyEnd(Mat,MatAssemblyType);
206ca44d042SBarry Smith EXTERN int MatAssembled(Mat,PetscTruth*);
2074f9c727eSBarry Smith 
2081d73ed98SBarry Smith extern int         MatSetValue_Row, MatSetValue_Column;
2091d73ed98SBarry Smith extern PetscScalar MatSetValue_Value;
2101d73ed98SBarry Smith 
21130de9b25SBarry Smith /*MC
21230de9b25SBarry Smith    MatSetValue - Set a single entry into a matrix.
21330de9b25SBarry Smith 
21430de9b25SBarry Smith    Synopsis:
21530de9b25SBarry Smith    int MatSetValue(Mat m,int row,int col,PetscScalar value,InsertMode mode);
21630de9b25SBarry Smith 
21730de9b25SBarry Smith    Not collective
21830de9b25SBarry Smith 
21930de9b25SBarry Smith    Input Parameters:
22030de9b25SBarry Smith +  m - the matrix
22130de9b25SBarry Smith .  row - the row location of the entry
22230de9b25SBarry Smith .  col - the column location of the entry
22330de9b25SBarry Smith .  value - the value to insert
22430de9b25SBarry Smith -  mode - either INSERT_VALUES or ADD_VALUES
22530de9b25SBarry Smith 
22630de9b25SBarry Smith    Notes:
22730de9b25SBarry Smith    For efficiency one should use MatSetValues() and set several or many
22830de9b25SBarry Smith    values simultaneously if possible.
22930de9b25SBarry Smith 
23030de9b25SBarry Smith    Level: beginner
23130de9b25SBarry Smith 
23230de9b25SBarry Smith .seealso: MatSetValues(), MatSetValueLocal()
23330de9b25SBarry Smith M*/
234b951964fSBarry Smith #define MatSetValue(v,i,j,va,mode) \
2351d73ed98SBarry Smith   (MatSetValue_Row = i,MatSetValue_Column = j,MatSetValue_Value = va, \
2361d73ed98SBarry Smith    MatSetValues(v,1,&MatSetValue_Row,1,&MatSetValue_Column,&MatSetValue_Value,mode))
23730de9b25SBarry Smith 
238ea06a074SBarry Smith #define MatGetValue(v,i,j,va) \
2391d73ed98SBarry Smith   (MatSetValue_Row = i,MatSetValue_Column = j,\
2401d73ed98SBarry Smith    MatGetValues(v,1,&MatSetValue_Row,1,&MatSetValue_Column,&va))
24130de9b25SBarry Smith 
242d91e6319SBarry Smith #define MatSetValueLocal(v,i,j,va,mode) \
2431d73ed98SBarry Smith   (MatSetValue_Row = i,MatSetValue_Column = j,MatSetValue_Value = va, \
2441d73ed98SBarry Smith    MatSetValuesLocal(v,1,&MatSetValue_Row,1,&MatSetValue_Column,&MatSetValue_Value,mode))
24530de9b25SBarry Smith 
246d91e6319SBarry Smith /*E
247d91e6319SBarry Smith     MatOption - Options that may be set for a matrix and its behavior or storage
248d91e6319SBarry Smith 
249d91e6319SBarry Smith     Level: beginner
250d91e6319SBarry Smith 
2510a835dfdSSatish Balay    Any additions/changes here MUST also be made in include/finclude/petscmat.h
252d91e6319SBarry Smith 
253d91e6319SBarry Smith .seealso: MatSetOption()
254d91e6319SBarry Smith E*/
2556d4a8577SBarry Smith typedef enum {MAT_ROW_ORIENTED=1,MAT_COLUMN_ORIENTED=2,MAT_ROWS_SORTED=4,
2566d4a8577SBarry Smith               MAT_COLUMNS_SORTED=8,MAT_NO_NEW_NONZERO_LOCATIONS=16,
2576d4a8577SBarry Smith               MAT_YES_NEW_NONZERO_LOCATIONS=32,MAT_SYMMETRIC=64,
2586ca9ecd3SBarry Smith               MAT_STRUCTURALLY_SYMMETRIC=65,MAT_NO_NEW_DIAGONALS=66,
2596ca9ecd3SBarry Smith               MAT_YES_NEW_DIAGONALS=67,MAT_INODE_LIMIT_1=68,MAT_INODE_LIMIT_2=69,
2606ca9ecd3SBarry Smith               MAT_INODE_LIMIT_3=70,MAT_INODE_LIMIT_4=71,MAT_INODE_LIMIT_5=72,
2616ca9ecd3SBarry Smith               MAT_IGNORE_OFF_PROC_ENTRIES=73,MAT_ROWS_UNSORTED=74,
2624787f768SSatish Balay               MAT_COLUMNS_UNSORTED=75,MAT_NEW_NONZERO_LOCATION_ERR=76,
2637c922b88SBarry Smith               MAT_NEW_NONZERO_ALLOCATION_ERR=77,MAT_USE_HASH_TABLE=78,
2642bad1931SBarry Smith               MAT_KEEP_ZEROED_ROWS=79,MAT_IGNORE_ZERO_ENTRIES=80,MAT_USE_INODES=81,
265efcf0fc3SBarry Smith               MAT_DO_NOT_USE_INODES=82,MAT_NOT_SYMMETRIC=83,MAT_HERMITIAN=84,
2669a4540c5SBarry Smith               MAT_NOT_STRUCTURALLY_SYMMETRIC=85,MAT_NOT_HERMITIAN=86,
2679a4540c5SBarry Smith               MAT_SYMMETRY_ETERNAL=87,MAT_NOT_SYMMETRY_ETERNAL=88} MatOption;
268ca44d042SBarry Smith EXTERN int MatSetOption(Mat,MatOption);
269273d9f13SBarry Smith EXTERN int MatGetType(Mat,MatType*);
27084cb2905SBarry Smith 
271f15d580aSBarry Smith EXTERN int MatGetValues(Mat,int,const int[],int,const int[],PetscScalar[]);
272f15d580aSBarry Smith EXTERN int MatGetRow(Mat,int,int *,int *[],PetscScalar*[]);
273f15d580aSBarry Smith EXTERN int MatRestoreRow(Mat,int,int *,int *[],PetscScalar*[]);
2744e7234bfSBarry Smith EXTERN int MatGetColumn(Mat,int,int *,int *[],PetscScalar*[]);
2754e7234bfSBarry Smith EXTERN int MatRestoreColumn(Mat,int,int *,int *[],PetscScalar*[]);
276ca44d042SBarry Smith EXTERN int MatGetColumnVector(Mat,Vec,int);
2774e7234bfSBarry Smith EXTERN int MatGetArray(Mat,PetscScalar *[]);
2784e7234bfSBarry Smith EXTERN int MatRestoreArray(Mat,PetscScalar *[]);
279ca44d042SBarry Smith EXTERN int MatGetBlockSize(Mat,int *);
2807b80b807SBarry Smith 
281ca44d042SBarry Smith EXTERN int MatMult(Mat,Vec,Vec);
282ca44d042SBarry Smith EXTERN int MatMultAdd(Mat,Vec,Vec,Vec);
283ca44d042SBarry Smith EXTERN int MatMultTranspose(Mat,Vec,Vec);
2845fbd3699SBarry Smith EXTERN int MatIsTranspose(Mat,Mat,PetscTruth*);
285ca44d042SBarry Smith EXTERN int MatMultTransposeAdd(Mat,Vec,Vec,Vec);
286c06d978dSMatthew Knepley EXTERN int MatMultConstrained(Mat,Vec,Vec);
2876d0dc95fSMatthew Knepley EXTERN int MatMultTransposeConstrained(Mat,Vec,Vec);
2882eac72dbSBarry Smith 
289d91e6319SBarry Smith /*E
290d91e6319SBarry Smith     MatDuplicateOption - Indicates if a duplicated sparse matrix should have
291d91e6319SBarry Smith   its numerical values copied over or just its nonzero structure.
292d91e6319SBarry Smith 
293d91e6319SBarry Smith     Level: beginner
294d91e6319SBarry Smith 
295d91e6319SBarry Smith    Any additions/changes here MUST also be made in include/finclude/petscmat.h
296d91e6319SBarry Smith 
297d91e6319SBarry Smith .seealso: MatDuplicate()
298d91e6319SBarry Smith E*/
2992e8a6d31SBarry Smith typedef enum {MAT_DO_NOT_COPY_VALUES,MAT_COPY_VALUES} MatDuplicateOption;
3002e8a6d31SBarry Smith 
3010e33f6ddSBarry Smith EXTERN int MatConvertRegister(const char[],const char[],const char[],int (*)(Mat,MatType,Mat*));
302273d9f13SBarry Smith #if defined(PETSC_USE_DYNAMIC_LIBRARIES)
303273d9f13SBarry Smith #define MatConvertRegisterDynamic(a,b,c,d) MatConvertRegister(a,b,c,0)
304273d9f13SBarry Smith #else
305273d9f13SBarry Smith #define MatConvertRegisterDynamic(a,b,c,d) MatConvertRegister(a,b,c,d)
306273d9f13SBarry Smith #endif
3070e33f6ddSBarry Smith EXTERN int        MatConvertRegisterAll(const char[]);
308273d9f13SBarry Smith EXTERN int        MatConvertRegisterDestroy(void);
309273d9f13SBarry Smith extern PetscTruth MatConvertRegisterAllCalled;
310b0a32e0cSBarry Smith extern PetscFList MatConvertList;
3118e9aea5cSBarry Smith EXTERN int        MatConvert(Mat,const MatType,Mat*);
312ca44d042SBarry Smith EXTERN int        MatDuplicate(Mat,MatDuplicateOption,Mat*);
31394a9d846SBarry Smith 
314d91e6319SBarry Smith /*E
315d91e6319SBarry Smith     MatStructure - Indicates if the matrix has the same nonzero structure
316d91e6319SBarry Smith 
317d91e6319SBarry Smith     Level: beginner
318d91e6319SBarry Smith 
319d91e6319SBarry Smith    Any additions/changes here MUST also be made in include/finclude/petscmat.h
320d91e6319SBarry Smith 
32194b7f48cSBarry Smith .seealso: MatCopy(), KSPSetOperators(), PCSetOperators()
322d91e6319SBarry Smith E*/
323c537a176SHong Zhang typedef enum {SAME_NONZERO_PATTERN,DIFFERENT_NONZERO_PATTERN,SAME_PRECONDITIONER,SUBSET_NONZERO_PATTERN} MatStructure;
324cb5b572fSBarry Smith 
325ca44d042SBarry Smith EXTERN int MatCopy(Mat,Mat,MatStructure);
326b0a32e0cSBarry Smith EXTERN int MatView(Mat,PetscViewer);
3271b8f9509SBarry Smith EXTERN int MatIsSymmetric(Mat,PetscTruth*);
328ba8a7149SBarry Smith EXTERN int MatIsSymmetricKnown(Mat,PetscTruth*,PetscTruth*);
3298e9aea5cSBarry Smith EXTERN int MatLoad(PetscViewer,const MatType,Mat*);
33051dd7536SBarry Smith EXTERN int MatMerge(MPI_Comm,Mat,Mat*);
3317b80b807SBarry Smith 
3324e7234bfSBarry Smith EXTERN int MatGetRowIJ(Mat,int,PetscTruth,int*,int *[],int *[],PetscTruth *);
3334e7234bfSBarry Smith EXTERN int MatRestoreRowIJ(Mat,int,PetscTruth,int *,int *[],int *[],PetscTruth *);
3344e7234bfSBarry Smith EXTERN int MatGetColumnIJ(Mat,int,PetscTruth,int*,int *[],int *[],PetscTruth *);
3354e7234bfSBarry Smith EXTERN int MatRestoreColumnIJ(Mat,int,PetscTruth,int *,int *[],int *[],PetscTruth *);
336d4fbbf0eSBarry Smith 
337d91e6319SBarry Smith /*S
338d91e6319SBarry Smith      MatInfo - Context of matrix information, used with MatGetInfo()
339d91e6319SBarry Smith 
340d91e6319SBarry Smith    In Fortran this is simply a double precision array of dimension MAT_INFO_SIZE
341d91e6319SBarry Smith 
342d91e6319SBarry Smith    Level: intermediate
343d91e6319SBarry Smith 
344d91e6319SBarry Smith   Concepts: matrix^nonzero information
345d91e6319SBarry Smith 
346d9274352SBarry Smith .seealso:  MatGetInfo(), MatInfoType
347d91e6319SBarry Smith S*/
3484e220ebcSLois Curfman McInnes typedef struct {
349b0a32e0cSBarry Smith   PetscLogDouble rows_global,columns_global;         /* number of global rows and columns */
350b0a32e0cSBarry Smith   PetscLogDouble rows_local,columns_local;           /* number of local rows and columns */
351b0a32e0cSBarry Smith   PetscLogDouble block_size;                         /* block size */
352b0a32e0cSBarry Smith   PetscLogDouble nz_allocated,nz_used,nz_unneeded;   /* number of nonzeros */
353b0a32e0cSBarry Smith   PetscLogDouble memory;                             /* memory allocated */
354b0a32e0cSBarry Smith   PetscLogDouble assemblies;                         /* number of matrix assemblies called */
355b0a32e0cSBarry Smith   PetscLogDouble mallocs;                            /* number of mallocs during MatSetValues() */
356b0a32e0cSBarry Smith   PetscLogDouble fill_ratio_given,fill_ratio_needed; /* fill ratio for LU/ILU */
357b0a32e0cSBarry Smith   PetscLogDouble factor_mallocs;                     /* number of mallocs during factorization */
3584e220ebcSLois Curfman McInnes } MatInfo;
3594e220ebcSLois Curfman McInnes 
360d9274352SBarry Smith /*E
361d9274352SBarry Smith     MatInfoType - Indicates if you want information about the local part of the matrix,
362d9274352SBarry Smith      the entire parallel matrix or the maximum over all the local parts.
363d9274352SBarry Smith 
364d9274352SBarry Smith     Level: beginner
365d9274352SBarry Smith 
366d9274352SBarry Smith    Any additions/changes here MUST also be made in include/finclude/petscmat.h
367d9274352SBarry Smith 
368d9274352SBarry Smith .seealso: MatGetInfo(), MatInfo
369d9274352SBarry Smith E*/
3707b80b807SBarry Smith typedef enum {MAT_LOCAL=1,MAT_GLOBAL_MAX=2,MAT_GLOBAL_SUM=3} MatInfoType;
371ca44d042SBarry Smith EXTERN int MatGetInfo(Mat,MatInfoType,MatInfo*);
372ca44d042SBarry Smith EXTERN int MatValid(Mat,PetscTruth*);
373ca44d042SBarry Smith EXTERN int MatGetDiagonal(Mat,Vec);
374273d9f13SBarry Smith EXTERN int MatGetRowMax(Mat,Vec);
375ca44d042SBarry Smith EXTERN int MatTranspose(Mat,Mat*);
376ca44d042SBarry Smith EXTERN int MatPermute(Mat,IS,IS,Mat *);
377bf1d55d4SSatish Balay EXTERN int MatPermuteSparsify(Mat,int,PetscReal,PetscReal,IS,IS,Mat *);
378ca44d042SBarry Smith EXTERN int MatDiagonalScale(Mat,Vec,Vec);
37906ef90c2SBarry Smith EXTERN int MatDiagonalSet(Mat,Vec,InsertMode);
380ca44d042SBarry Smith EXTERN int MatEqual(Mat,Mat,PetscTruth*);
3817b80b807SBarry Smith 
38287828ca2SBarry Smith EXTERN int MatNorm(Mat,NormType,PetscReal *);
383ca44d042SBarry Smith EXTERN int MatZeroEntries(Mat);
384268466fbSBarry Smith EXTERN int MatZeroRows(Mat,IS,const PetscScalar*);
385268466fbSBarry Smith EXTERN int MatZeroColumns(Mat,IS,const PetscScalar*);
3867b80b807SBarry Smith 
387ca44d042SBarry Smith EXTERN int MatUseScaledForm(Mat,PetscTruth);
388ca44d042SBarry Smith EXTERN int MatScaleSystem(Mat,Vec,Vec);
389ca44d042SBarry Smith EXTERN int MatUnScaleSystem(Mat,Vec,Vec);
3905ef9f2a5SBarry Smith 
391ca44d042SBarry Smith EXTERN int MatGetSize(Mat,int*,int*);
392ca44d042SBarry Smith EXTERN int MatGetLocalSize(Mat,int*,int*);
393ca44d042SBarry Smith EXTERN int MatGetOwnershipRange(Mat,int*,int*);
3947b80b807SBarry Smith 
395d91e6319SBarry Smith /*E
396d91e6319SBarry Smith     MatReuse - Indicates if matrices obtained from a previous call to MatGetSubMatrices()
397d91e6319SBarry Smith      or MatGetSubMatrix() are to be reused to store the new matrix values.
398d91e6319SBarry Smith 
399d91e6319SBarry Smith     Level: beginner
400d91e6319SBarry Smith 
401d91e6319SBarry Smith    Any additions/changes here MUST also be made in include/finclude/petscmat.h
402d91e6319SBarry Smith 
403d91e6319SBarry Smith .seealso: MatGetSubMatrices(), MatGetSubMatrix(), MatDestroyMatrices()
404d91e6319SBarry Smith E*/
4057b2a1423SBarry Smith typedef enum {MAT_INITIAL_MATRIX,MAT_REUSE_MATRIX} MatReuse;
406268466fbSBarry Smith EXTERN int MatGetSubMatrices(Mat,int,const IS[],const IS[],MatReuse,Mat *[]);
407268466fbSBarry Smith EXTERN int MatDestroyMatrices(int,Mat *[]);
408ca44d042SBarry Smith EXTERN int MatGetSubMatrix(Mat,IS,IS,int,MatReuse,Mat *);
4098efafbd8SBarry Smith 
410268466fbSBarry Smith EXTERN int MatIncreaseOverlap(Mat,int,IS[],int);
4117b80b807SBarry Smith 
412268466fbSBarry Smith EXTERN int MatAXPY(const PetscScalar *,Mat,Mat,MatStructure);
413268466fbSBarry Smith EXTERN int MatAYPX(const PetscScalar *,Mat,Mat);
414ca44d042SBarry Smith EXTERN int MatCompress(Mat);
4157b80b807SBarry Smith 
416268466fbSBarry Smith EXTERN int MatScale(const PetscScalar *,Mat);
417268466fbSBarry Smith EXTERN int MatShift(const PetscScalar *,Mat);
418052efed2SBarry Smith 
419ca44d042SBarry Smith EXTERN int MatSetLocalToGlobalMapping(Mat,ISLocalToGlobalMapping);
420ca44d042SBarry Smith EXTERN int MatSetLocalToGlobalMappingBlock(Mat,ISLocalToGlobalMapping);
421268466fbSBarry Smith EXTERN int MatZeroRowsLocal(Mat,IS,const PetscScalar*);
422f15d580aSBarry Smith EXTERN int MatSetValuesLocal(Mat,int,const int[],int,const int[],const PetscScalar[],InsertMode);
423f15d580aSBarry Smith EXTERN int MatSetValuesBlockedLocal(Mat,int,const int[],int,const int[],const PetscScalar[],InsertMode);
42490f02eecSBarry Smith 
4251ecfd215SBarry Smith EXTERN int MatStashSetInitialSize(Mat,int,int);
4261ecfd215SBarry Smith EXTERN int MatStashGetInfo(Mat,int*,int*,int*,int*);
427649db694SBarry Smith 
428ca44d042SBarry Smith EXTERN int MatInterpolateAdd(Mat,Vec,Vec,Vec);
429ca44d042SBarry Smith EXTERN int MatInterpolate(Mat,Vec,Vec);
430ca44d042SBarry Smith EXTERN int MatRestrict(Mat,Vec,Vec);
43123ce1328SBarry Smith EXTERN int MatGetVecs(Mat,Vec*,Vec*);
432bd481603SBarry Smith 
433bd481603SBarry Smith /*MC
434bd481603SBarry Smith    MatPreallocInitialize - Begins the block of code that will count the number of nonzeros per
435bd481603SBarry Smith        row in a matrix providing the data that one can use to correctly preallocate the matrix.
436bd481603SBarry Smith 
437bd481603SBarry Smith    Synopsis:
438bd481603SBarry Smith    int MatPreallocateInitialize(MPI_Comm comm, int nrows, int ncols, int *dnz, int *onz)
439bd481603SBarry Smith 
440bd481603SBarry Smith    Collective on MPI_Comm
441bd481603SBarry Smith 
442bd481603SBarry Smith    Input Parameters:
443bd481603SBarry Smith +  comm - the communicator that will share the eventually allocated matrix
444bd481603SBarry Smith .  nrows - the number of rows in the matrix
445bd481603SBarry Smith -  ncols - the number of columns in the matrix
446bd481603SBarry Smith 
447bd481603SBarry Smith    Output Parameters:
448bd481603SBarry Smith +  dnz - the array that will be passed to the matrix preallocation routines
449bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
450bd481603SBarry Smith 
451bd481603SBarry Smith 
452bd481603SBarry Smith    Level: intermediate
453bd481603SBarry Smith 
454bd481603SBarry Smith    Notes:
455bd481603SBarry Smith    See the chapter in the users manual on performance for more details
456bd481603SBarry Smith 
4571d73ed98SBarry Smith    Do not malloc or free dnz and onz, that is handled internally by these routines
458bd481603SBarry Smith 
459bd481603SBarry Smith    Use MatPreallocateInitializeSymmetric() for symmetric matrices (MPISBAIJ matrices)
460bd481603SBarry Smith 
461bd481603SBarry Smith   Concepts: preallocation^Matrix
462bd481603SBarry Smith 
463bd481603SBarry Smith .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(),
464bd481603SBarry Smith           MatPreallocateInitializeSymmetric(), MatPreallocateSymmetricSetLocal()
465bd481603SBarry Smith M*/
466c4f061fbSSatish Balay #define MatPreallocateInitialize(comm,nrows,ncols,dnz,onz) 0; \
4677c922b88SBarry Smith { \
468ef66eb69SBarry Smith   int _4_ierr,__tmp = (nrows),__ctmp = (ncols),__rstart,__start,__end; \
469ef66eb69SBarry Smith   _4_ierr = PetscMalloc(2*__tmp*sizeof(int),&dnz);CHKERRQ(_4_ierr);onz = dnz + __tmp;\
470ef66eb69SBarry Smith   _4_ierr = PetscMemzero(dnz,2*__tmp*sizeof(int));CHKERRQ(_4_ierr);\
471ef66eb69SBarry Smith   _4_ierr = MPI_Scan(&__ctmp,&__end,1,MPI_INT,MPI_SUM,comm);CHKERRQ(_4_ierr); __start = __end - __ctmp;\
472ef66eb69SBarry Smith   _4_ierr = MPI_Scan(&__tmp,&__rstart,1,MPI_INT,MPI_SUM,comm);CHKERRQ(_4_ierr); __rstart = __rstart - __tmp;
4737c922b88SBarry Smith 
474bd481603SBarry Smith /*MC
475bd481603SBarry Smith    MatPreallocSymmetricInitialize - Begins the block of code that will count the number of nonzeros per
476bd481603SBarry Smith        row in a matrix providing the data that one can use to correctly preallocate the matrix.
477bd481603SBarry Smith 
478bd481603SBarry Smith    Synopsis:
479bd481603SBarry Smith    int MatPreallocateSymmetricInitialize(MPI_Comm comm, int nrows, int ncols, int *dnz, int *onz)
480bd481603SBarry Smith 
481bd481603SBarry Smith    Collective on MPI_Comm
482bd481603SBarry Smith 
483bd481603SBarry Smith    Input Parameters:
484bd481603SBarry Smith +  comm - the communicator that will share the eventually allocated matrix
485bd481603SBarry Smith .  nrows - the number of rows in the matrix
486bd481603SBarry Smith -  ncols - the number of columns in the matrix
487bd481603SBarry Smith 
488bd481603SBarry Smith    Output Parameters:
489bd481603SBarry Smith +  dnz - the array that will be passed to the matrix preallocation routines
490bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
491bd481603SBarry Smith 
492bd481603SBarry Smith 
493bd481603SBarry Smith    Level: intermediate
494bd481603SBarry Smith 
495bd481603SBarry Smith    Notes:
496bd481603SBarry Smith    See the chapter in the users manual on performance for more details
497bd481603SBarry Smith 
4981d73ed98SBarry Smith    Do not malloc or free dnz and onz, that is handled internally by these routines
499bd481603SBarry Smith 
500bd481603SBarry Smith   Concepts: preallocation^Matrix
501bd481603SBarry Smith 
502bd481603SBarry Smith .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(),
503bd481603SBarry Smith           MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal()
504bd481603SBarry Smith M*/
505222b16d4SBarry Smith #define MatPreallocateSymmetricInitialize(comm,nrows,ncols,dnz,onz) 0; \
506222b16d4SBarry Smith { \
507222b16d4SBarry Smith   int _4_ierr,__tmp = (nrows),__ctmp = (ncols),__rstart,__end; \
508222b16d4SBarry Smith   _4_ierr = PetscMalloc(2*__tmp*sizeof(int),&dnz);CHKERRQ(_4_ierr);onz = dnz + __tmp;\
509222b16d4SBarry Smith   _4_ierr = PetscMemzero(dnz,2*__tmp*sizeof(int));CHKERRQ(_4_ierr);\
510222b16d4SBarry Smith   _4_ierr = MPI_Scan(&__ctmp,&__end,1,MPI_INT,MPI_SUM,comm);CHKERRQ(_4_ierr);\
511222b16d4SBarry Smith   _4_ierr = MPI_Scan(&__tmp,&__rstart,1,MPI_INT,MPI_SUM,comm);CHKERRQ(_4_ierr); __rstart = __rstart - __tmp;
512222b16d4SBarry Smith 
513bd481603SBarry Smith /*MC
514bd481603SBarry Smith    MatPreallocateSetLocal - Indicates the locations (rows and columns) in the matrix where nonzeros will be
515bd481603SBarry Smith        inserted using a local number of the rows and columns
516bd481603SBarry Smith 
517bd481603SBarry Smith    Synopsis:
518bd481603SBarry Smith    int MatPreallocateSetLocal(ISLocalToGlobalMappping map,int nrows, int *rows,int ncols, int *cols,int *dnz, int *onz)
519bd481603SBarry Smith 
520bd481603SBarry Smith    Not Collective
521bd481603SBarry Smith 
522bd481603SBarry Smith    Input Parameters:
523bd481603SBarry Smith +  map - the mapping between local numbering and global numbering
524bd481603SBarry Smith .  nrows - the number of rows indicated
5251d73ed98SBarry Smith .  rows - the indices of the rows
526bd481603SBarry Smith .  ncols - the number of columns in the matrix
527bd481603SBarry Smith .  cols - the columns indicated
528bd481603SBarry Smith .  dnz - the array that will be passed to the matrix preallocation routines
529bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
530bd481603SBarry Smith 
531bd481603SBarry Smith 
532bd481603SBarry Smith    Level: intermediate
533bd481603SBarry Smith 
534bd481603SBarry Smith    Notes:
535bd481603SBarry Smith    See the chapter in the users manual on performance for more details
536bd481603SBarry Smith 
5371d73ed98SBarry Smith    Do not malloc or free dnz and onz, that is handled internally by these routines
538bd481603SBarry Smith 
539bd481603SBarry Smith   Concepts: preallocation^Matrix
540bd481603SBarry Smith 
541bd481603SBarry Smith .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(),
542bd481603SBarry Smith           MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal()
543bd481603SBarry Smith M*/
544c4f061fbSSatish Balay #define MatPreallocateSetLocal(map,nrows,rows,ncols,cols,dnz,onz) 0;\
545c4f061fbSSatish Balay {\
546c4f061fbSSatish Balay   int __l;\
547ef66eb69SBarry Smith   _4_ierr = ISLocalToGlobalMappingApply(map,nrows,rows,rows);CHKERRQ(_4_ierr);\
548ef66eb69SBarry Smith   _4_ierr = ISLocalToGlobalMappingApply(map,ncols,cols,cols);CHKERRQ(_4_ierr);\
549c4f061fbSSatish Balay   for (__l=0;__l<nrows;__l++) {\
550ef66eb69SBarry Smith     _4_ierr = MatPreallocateSet((rows)[__l],ncols,cols,dnz,onz);CHKERRQ(_4_ierr);\
551c4f061fbSSatish Balay   }\
552c4f061fbSSatish Balay }
553c4f061fbSSatish Balay 
554bd481603SBarry Smith /*MC
555bd481603SBarry Smith    MatPreallocateSymmetricSetLocal - Indicates the locations (rows and columns) in the matrix where nonzeros will be
556bd481603SBarry Smith        inserted using a local number of the rows and columns
557bd481603SBarry Smith 
558bd481603SBarry Smith    Synopsis:
559bd481603SBarry Smith    int MatPreallocateSymmetricSetLocal(ISLocalToGlobalMappping map,int nrows, int *rows,int ncols, int *cols,int *dnz, int *onz)
560bd481603SBarry Smith 
561bd481603SBarry Smith    Not Collective
562bd481603SBarry Smith 
563bd481603SBarry Smith    Input Parameters:
564bd481603SBarry Smith +  map - the mapping between local numbering and global numbering
565bd481603SBarry Smith .  nrows - the number of rows indicated
5661d73ed98SBarry Smith .  rows - the indices of the rows
567bd481603SBarry Smith .  ncols - the number of columns in the matrix
568bd481603SBarry Smith .  cols - the columns indicated
569bd481603SBarry Smith .  dnz - the array that will be passed to the matrix preallocation routines
570bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
571bd481603SBarry Smith 
572bd481603SBarry Smith 
573bd481603SBarry Smith    Level: intermediate
574bd481603SBarry Smith 
575bd481603SBarry Smith    Notes:
576bd481603SBarry Smith    See the chapter in the users manual on performance for more details
577bd481603SBarry Smith 
578bd481603SBarry Smith    Do not malloc or free dnz and onz that is handled internally by these routines
579bd481603SBarry Smith 
580bd481603SBarry Smith   Concepts: preallocation^Matrix
581bd481603SBarry Smith 
582bd481603SBarry Smith .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(),
583bd481603SBarry Smith           MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal(), MatPreallocateSetLocal()
584bd481603SBarry Smith M*/
585d3d32019SBarry Smith #define MatPreallocateSymmetricSetLocal(map,nrows,rows,ncols,cols,dnz,onz) 0;\
586d3d32019SBarry Smith {\
587d3d32019SBarry Smith   int __l;\
588d3d32019SBarry Smith   _4_ierr = ISLocalToGlobalMappingApply(map,nrows,rows,rows);CHKERRQ(_4_ierr);\
589d3d32019SBarry Smith   _4_ierr = ISLocalToGlobalMappingApply(map,ncols,cols,cols);CHKERRQ(_4_ierr);\
590d3d32019SBarry Smith   for (__l=0;__l<nrows;__l++) {\
591d3d32019SBarry Smith     _4_ierr = MatPreallocateSymmetricSet((rows)[__l],ncols,cols,dnz,onz);CHKERRQ(_4_ierr);\
592d3d32019SBarry Smith   }\
593d3d32019SBarry Smith }
594d3d32019SBarry Smith 
595bd481603SBarry Smith /*MC
596bd481603SBarry Smith    MatPreallocateSet - Indicates the locations (rows and columns) in the matrix where nonzeros will be
597bd481603SBarry Smith        inserted using a local number of the rows and columns
598bd481603SBarry Smith 
599bd481603SBarry Smith    Synopsis:
600bd481603SBarry Smith    int MatPreallocateSet(int nrows, int *rows,int ncols, int *cols,int *dnz, int *onz)
601bd481603SBarry Smith 
602bd481603SBarry Smith    Not Collective
603bd481603SBarry Smith 
604bd481603SBarry Smith    Input Parameters:
605bd481603SBarry Smith +  nrows - the number of rows indicated
6061d73ed98SBarry Smith .  rows - the indices of the rows
607bd481603SBarry Smith .  ncols - the number of columns in the matrix
608bd481603SBarry Smith .  cols - the columns indicated
609bd481603SBarry Smith .  dnz - the array that will be passed to the matrix preallocation routines
610bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
611bd481603SBarry Smith 
612bd481603SBarry Smith 
613bd481603SBarry Smith    Level: intermediate
614bd481603SBarry Smith 
615bd481603SBarry Smith    Notes:
616bd481603SBarry Smith    See the chapter in the users manual on performance for more details
617bd481603SBarry Smith 
618bd481603SBarry Smith    Do not malloc or free dnz and onz that is handled internally by these routines
619bd481603SBarry Smith 
620bd481603SBarry Smith   Concepts: preallocation^Matrix
621bd481603SBarry Smith 
622bd481603SBarry Smith .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(),
623bd481603SBarry Smith           MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal(), MatPreallocateSetLocal()
624bd481603SBarry Smith M*/
625c4f061fbSSatish Balay #define MatPreallocateSet(row,nc,cols,dnz,onz) 0;\
6267c922b88SBarry Smith { int __i; \
6277c922b88SBarry Smith   for (__i=0; __i<nc; __i++) {\
6287c922b88SBarry Smith     if (cols[__i] < __start || cols[__i] >= __end) onz[row - __rstart]++; \
6297c922b88SBarry Smith   }\
6307c922b88SBarry Smith   dnz[row - __rstart] = nc - onz[row - __rstart];\
6317c922b88SBarry Smith }
6327c922b88SBarry Smith 
633bd481603SBarry Smith /*MC
634bd481603SBarry Smith    MatPreallocateSymmetricSet - Indicates the locations (rows and columns) in the matrix where nonzeros will be
635bd481603SBarry Smith        inserted using a local number of the rows and columns
636bd481603SBarry Smith 
637bd481603SBarry Smith    Synopsis:
638bd481603SBarry Smith    int MatPreallocateSymmetricSet(int nrows, int *rows,int ncols, int *cols,int *dnz, int *onz)
639bd481603SBarry Smith 
640bd481603SBarry Smith    Not Collective
641bd481603SBarry Smith 
642bd481603SBarry Smith    Input Parameters:
643bd481603SBarry Smith +  nrows - the number of rows indicated
6441d73ed98SBarry Smith .  rows - the indices of the rows
645bd481603SBarry Smith .  ncols - the number of columns in the matrix
646bd481603SBarry Smith .  cols - the columns indicated
647bd481603SBarry Smith .  dnz - the array that will be passed to the matrix preallocation routines
648bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
649bd481603SBarry Smith 
650bd481603SBarry Smith 
651bd481603SBarry Smith    Level: intermediate
652bd481603SBarry Smith 
653bd481603SBarry Smith    Notes:
654bd481603SBarry Smith    See the chapter in the users manual on performance for more details
655bd481603SBarry Smith 
656bd481603SBarry Smith    Do not malloc or free dnz and onz that is handled internally by these routines
657bd481603SBarry Smith 
658bd481603SBarry Smith   Concepts: preallocation^Matrix
659bd481603SBarry Smith 
660bd481603SBarry Smith .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(),
661bd481603SBarry Smith           MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal(), MatPreallocateSetLocal()
662bd481603SBarry Smith M*/
663d3d32019SBarry Smith #define MatPreallocateSymmetricSet(row,nc,cols,dnz,onz) 0;\
664d3d32019SBarry Smith { int __i; \
665d3d32019SBarry Smith   for (__i=0; __i<nc; __i++) {\
666d3d32019SBarry Smith     if (cols[__i] >= __end) onz[row - __rstart]++; \
667d3d32019SBarry Smith     else if (cols[__i] >= row) dnz[row - __rstart]++;\
668d3d32019SBarry Smith   }\
669d3d32019SBarry Smith }
670d3d32019SBarry Smith 
671bd481603SBarry Smith /*MC
672bd481603SBarry Smith    MatPreallocFinalize - Ends the block of code that will count the number of nonzeros per
673bd481603SBarry Smith        row in a matrix providing the data that one can use to correctly preallocate the matrix.
674bd481603SBarry Smith 
675bd481603SBarry Smith    Synopsis:
676bd481603SBarry Smith    int MatPreallocateFinalize(int *dnz, int *onz)
677bd481603SBarry Smith 
678bd481603SBarry Smith    Collective on MPI_Comm
679bd481603SBarry Smith 
680bd481603SBarry Smith    Input Parameters:
681bd481603SBarry Smith +  dnz - the array that will be passed to the matrix preallocation routines
682bd481603SBarry Smith -  ozn - the other array passed to the matrix preallocation routines
683bd481603SBarry Smith 
684bd481603SBarry Smith 
685bd481603SBarry Smith    Level: intermediate
686bd481603SBarry Smith 
687bd481603SBarry Smith    Notes:
688bd481603SBarry Smith    See the chapter in the users manual on performance for more details
689bd481603SBarry Smith 
690bd481603SBarry Smith    Do not malloc or free dnz and onz that is handled internally by these routines
691bd481603SBarry Smith 
692bd481603SBarry Smith   Concepts: preallocation^Matrix
693bd481603SBarry Smith 
694bd481603SBarry Smith .seealso: MatPreallocateInitialize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(),
695bd481603SBarry Smith           MatPreallocateSymmetricInitialize(), MatPreallocateSymmetricSetLocal()
696bd481603SBarry Smith M*/
697ef66eb69SBarry Smith #define MatPreallocateFinalize(dnz,onz) 0;_4_ierr = PetscFree(dnz);CHKERRQ(_4_ierr);}
6987c922b88SBarry Smith 
699bd481603SBarry Smith 
700bd481603SBarry Smith 
7017b80b807SBarry Smith /* Routines unique to particular data structures */
702435da068SBarry Smith EXTERN int MatShellGetContext(Mat,void **);
703435da068SBarry Smith 
704268466fbSBarry Smith EXTERN int MatBDiagGetData(Mat,int*,int*,int*[],int*[],PetscScalar***);
705ca01db9bSBarry Smith EXTERN int MatSeqAIJSetColumnIndices(Mat,int[]);
706ca01db9bSBarry Smith EXTERN int MatSeqBAIJSetColumnIndices(Mat,int[]);
707ca01db9bSBarry Smith EXTERN int MatCreateSeqAIJWithArrays(MPI_Comm,int,int,int[],int[],PetscScalar[],Mat*);
7087b80b807SBarry Smith 
709ca01db9bSBarry Smith EXTERN int MatSeqBAIJSetPreallocation(Mat,int,int,const int[]);
710ca01db9bSBarry Smith EXTERN int MatSeqSBAIJSetPreallocation(Mat,int,int,const int[]);
711ca01db9bSBarry Smith EXTERN int MatSeqAIJSetPreallocation(Mat,int,const int[]);
712ca01db9bSBarry Smith EXTERN int MatSeqDensePreallocation(Mat,PetscScalar[]);
713ca01db9bSBarry Smith EXTERN int MatSeqBDiagSetPreallocation(Mat,int,int,const int[],PetscScalar*[]);
714ca01db9bSBarry Smith EXTERN int MatSeqDenseSetPreallocation(Mat,PetscScalar[]);
715273d9f13SBarry Smith 
716ca01db9bSBarry Smith EXTERN int MatMPIBAIJSetPreallocation(Mat,int,int,const int[],int,const int[]);
717ca01db9bSBarry Smith EXTERN int MatMPISBAIJSetPreallocation(Mat,int,int,const int[],int,const int[]);
718ca01db9bSBarry Smith EXTERN int MatMPIAIJSetPreallocation(Mat,int,const int[],int,const int[]);
719ca01db9bSBarry Smith EXTERN int MatMPIDensePreallocation(Mat,PetscScalar[]);
720ca01db9bSBarry Smith EXTERN int MatMPIBDiagSetPreallocation(Mat,int,int,const int[],PetscScalar*[]);
721ca01db9bSBarry Smith EXTERN int MatMPIAdjSetPreallocation(Mat,int[],int[],int[]);
722ca01db9bSBarry Smith EXTERN int MatMPIDenseSetPreallocation(Mat,PetscScalar[]);
723ca01db9bSBarry Smith EXTERN int MatMPIRowbsSetPreallocation(Mat,int,const int[]);
724268466fbSBarry Smith EXTERN int MatMPIAIJGetSeqAIJ(Mat,Mat*,Mat*,int*[]);
725268466fbSBarry Smith EXTERN int MatMPIBAIJGetSeqBAIJ(Mat,Mat*,Mat*,int*[]);
7263a7fca6bSBarry Smith EXTERN int MatAdicSetLocalFunction(Mat,void (*)(void));
727273d9f13SBarry Smith 
7281b807ce4Svictorle EXTERN int MatSeqDenseSetLDA(Mat,int);
7291b807ce4Svictorle 
730ca44d042SBarry Smith EXTERN int MatStoreValues(Mat);
731ca44d042SBarry Smith EXTERN int MatRetrieveValues(Mat);
7322e8a6d31SBarry Smith 
7333a7fca6bSBarry Smith EXTERN int MatDAADSetCtx(Mat,void*);
7343a7fca6bSBarry Smith 
7357b80b807SBarry Smith /*
7367b80b807SBarry Smith   These routines are not usually accessed directly, rather solving is
73794b7f48cSBarry Smith   done through the KSP and PC interfaces.
7387b80b807SBarry Smith */
7397b80b807SBarry Smith 
740d9274352SBarry Smith /*E
741d9274352SBarry Smith     MatOrderingType - String with the name of a PETSc matrix ordering or the creation function
742d9274352SBarry Smith        with an optional dynamic library name, for example
743d9274352SBarry Smith        http://www.mcs.anl.gov/petsc/lib.a:orderingcreate()
744d9274352SBarry Smith 
745d9274352SBarry Smith    Level: beginner
746d9274352SBarry Smith 
747d9274352SBarry Smith .seealso: MatGetOrdering()
748d9274352SBarry Smith E*/
74949773a63SBarry Smith #define MatOrderingType char*
750b12f92e5SBarry Smith #define MATORDERING_NATURAL   "natural"
751b12f92e5SBarry Smith #define MATORDERING_ND        "nd"
752b12f92e5SBarry Smith #define MATORDERING_1WD       "1wd"
753b12f92e5SBarry Smith #define MATORDERING_RCM       "rcm"
754b12f92e5SBarry Smith #define MATORDERING_QMD       "qmd"
755b12f92e5SBarry Smith #define MATORDERING_ROWLENGTH "rowlength"
75662152c8bSBarry Smith #define MATORDERING_DSC_ND    "dsc_nd"
75762152c8bSBarry Smith #define MATORDERING_DSC_MMD   "dsc_mmd"
75862152c8bSBarry Smith #define MATORDERING_DSC_MDF   "dsc_mdf"
759c06d978dSMatthew Knepley #define MATORDERING_CONSTRAINED "constrained"
760c06d978dSMatthew Knepley #define MATORDERING_IDENTITY  "identity"
761c06d978dSMatthew Knepley #define MATORDERING_REVERSE   "reverse"
762b12f92e5SBarry Smith 
763beff0ce9SBarry Smith EXTERN int MatGetOrdering(Mat,const MatOrderingType,IS*,IS*);
764234db7c0SBarry Smith EXTERN int MatOrderingRegister(const char[],const char[],const char[],int(*)(Mat,const MatOrderingType,IS*,IS*));
76530de9b25SBarry Smith 
76630de9b25SBarry Smith /*MC
76730de9b25SBarry Smith    MatOrderingRegisterDynamic - Adds a new sparse matrix ordering to the
76830de9b25SBarry Smith                                matrix package.
76930de9b25SBarry Smith 
77030de9b25SBarry Smith    Synopsis:
77130de9b25SBarry Smith    int MatOrderingRegisterDynamic(char *name_ordering,char *path,char *name_create,int (*routine_create)(MatOrdering))
77230de9b25SBarry Smith 
77330de9b25SBarry Smith    Not Collective
77430de9b25SBarry Smith 
77530de9b25SBarry Smith    Input Parameters:
77630de9b25SBarry Smith +  sname - name of ordering (for example MATORDERING_ND)
77730de9b25SBarry Smith .  path - location of library where creation routine is
77830de9b25SBarry Smith .  name - name of function that creates the ordering type,a string
77930de9b25SBarry Smith -  function - function pointer that creates the ordering
78030de9b25SBarry Smith 
78130de9b25SBarry Smith    Level: developer
78230de9b25SBarry Smith 
78330de9b25SBarry Smith    If dynamic libraries are used, then the fourth input argument (function)
78430de9b25SBarry Smith    is ignored.
78530de9b25SBarry Smith 
78630de9b25SBarry Smith    Sample usage:
78730de9b25SBarry Smith .vb
78830de9b25SBarry Smith    MatOrderingRegisterDynamic("my_order",/home/username/my_lib/lib/libO/solaris/mylib.a,
78930de9b25SBarry Smith                "MyOrder",MyOrder);
79030de9b25SBarry Smith .ve
79130de9b25SBarry Smith 
79230de9b25SBarry Smith    Then, your partitioner can be chosen with the procedural interface via
79330de9b25SBarry Smith $     MatOrderingSetType(part,"my_order)
79430de9b25SBarry Smith    or at runtime via the option
79530de9b25SBarry Smith $     -pc_ilu_mat_ordering_type my_order
79630de9b25SBarry Smith $     -pc_lu_mat_ordering_type my_order
79730de9b25SBarry Smith 
79830de9b25SBarry Smith    ${PETSC_ARCH} and ${BOPT} occuring in pathname will be replaced with appropriate values.
79930de9b25SBarry Smith 
80030de9b25SBarry Smith .keywords: matrix, ordering, register
80130de9b25SBarry Smith 
80230de9b25SBarry Smith .seealso: MatOrderingRegisterDestroy(), MatOrderingRegisterAll()
80330de9b25SBarry Smith M*/
804aa482453SBarry Smith #if defined(PETSC_USE_DYNAMIC_LIBRARIES)
805f1af5d2fSBarry Smith #define MatOrderingRegisterDynamic(a,b,c,d) MatOrderingRegister(a,b,c,0)
806b12f92e5SBarry Smith #else
807f1af5d2fSBarry Smith #define MatOrderingRegisterDynamic(a,b,c,d) MatOrderingRegister(a,b,c,d)
808b12f92e5SBarry Smith #endif
80930de9b25SBarry Smith 
810ca44d042SBarry Smith EXTERN int        MatOrderingRegisterDestroy(void);
8110e33f6ddSBarry Smith EXTERN int        MatOrderingRegisterAll(const char[]);
8122bad1931SBarry Smith extern PetscTruth MatOrderingRegisterAllCalled;
813b0a32e0cSBarry Smith extern PetscFList MatOrderingList;
814d4fbbf0eSBarry Smith 
81587828ca2SBarry Smith EXTERN int MatReorderForNonzeroDiagonal(Mat,PetscReal,IS,IS);
816a2ce50c7SBarry Smith 
817d91e6319SBarry Smith /*S
81815e8a5b3SHong Zhang    MatFactorInfo - Data based into the matrix factorization routines
819b00f7748SHong Zhang 
82015e8a5b3SHong Zhang    In Fortran these are simply double precision arrays of size MAT_FACTORINFO_SIZE
821b00f7748SHong Zhang 
82215e8a5b3SHong Zhang    Notes: These are not usually directly used by users, instead use PC type of LU, ILU, CHOLESKY or ICC.
823b00f7748SHong Zhang 
824b00f7748SHong Zhang    Level: developer
825b00f7748SHong Zhang 
826b380c88cSHong Zhang .seealso: MatLUFactorSymbolic(), MatILUFactorSymbolic(), MatCholeskyFactorSymbolic(), MatICCFactorSymbolic(), MatICCFactor()
827b00f7748SHong Zhang 
828b00f7748SHong Zhang S*/
829b00f7748SHong Zhang typedef struct {
83015e8a5b3SHong Zhang   PetscReal     damping;        /* scaling of identity added to matrix to prevent zero pivots */
8312cea7109SBarry Smith   PetscReal     shift;          /* if true, shift until positive pivots */
8322cea7109SBarry Smith   PetscReal     shift_fraction; /* record shift fraction taken */
83315e8a5b3SHong Zhang   PetscReal     diagonal_fill;  /* force diagonal to fill in if initially not filled */
83415e8a5b3SHong Zhang   PetscReal     dt;             /* drop tolerance */
835b00f7748SHong Zhang   PetscReal     dtcol;          /* tolerance for pivoting */
83615e8a5b3SHong Zhang   PetscReal     dtcount;        /* maximum nonzeros to be allowed per row */
837f6275e2eSBarry Smith   PetscReal     fill;           /* expected fill; nonzeros in factored matrix/nonzeros in original matrix*/
838348344bbSBarry Smith   PetscReal     levels;         /* ICC/ILU(levels) */
839bcd9e38bSBarry Smith   PetscReal     pivotinblocks;  /* for BAIJ and SBAIJ matrices pivot in factorization on blocks, default 1.0
840bcd9e38bSBarry Smith                                    factorization may be faster if do not pivot */
84115e8a5b3SHong Zhang   PetscReal     zeropivot;      /* pivot is called zero if less than this */
84215e8a5b3SHong Zhang } MatFactorInfo;
843ffa6d0a5SLois Curfman McInnes 
84415e8a5b3SHong Zhang EXTERN int MatCholeskyFactor(Mat,IS,MatFactorInfo*);
84515e8a5b3SHong Zhang EXTERN int MatCholeskyFactorSymbolic(Mat,IS,MatFactorInfo*,Mat*);
84615e8a5b3SHong Zhang EXTERN int MatCholeskyFactorNumeric(Mat,Mat*);
847b380c88cSHong Zhang EXTERN int MatLUFactor(Mat,IS,IS,MatFactorInfo*);
848b380c88cSHong Zhang EXTERN int MatILUFactor(Mat,IS,IS,MatFactorInfo*);
849b380c88cSHong Zhang EXTERN int MatLUFactorSymbolic(Mat,IS,IS,MatFactorInfo*,Mat*);
850b380c88cSHong Zhang EXTERN int MatILUFactorSymbolic(Mat,IS,IS,MatFactorInfo*,Mat*);
85115e8a5b3SHong Zhang EXTERN int MatICCFactorSymbolic(Mat,IS,MatFactorInfo*,Mat*);
85215e8a5b3SHong Zhang EXTERN int MatICCFactor(Mat,IS,MatFactorInfo*);
853ca44d042SBarry Smith EXTERN int MatLUFactorNumeric(Mat,Mat*);
854b380c88cSHong Zhang EXTERN int MatILUDTFactor(Mat,MatFactorInfo*,IS,IS,Mat *);
8553e0d88b5SBarry Smith EXTERN int MatGetInertia(Mat,int*,int*,int*);
856ca44d042SBarry Smith EXTERN int MatSolve(Mat,Vec,Vec);
857ca44d042SBarry Smith EXTERN int MatForwardSolve(Mat,Vec,Vec);
858ca44d042SBarry Smith EXTERN int MatBackwardSolve(Mat,Vec,Vec);
859ca44d042SBarry Smith EXTERN int MatSolveAdd(Mat,Vec,Vec,Vec);
860ca44d042SBarry Smith EXTERN int MatSolveTranspose(Mat,Vec,Vec);
861ca44d042SBarry Smith EXTERN int MatSolveTransposeAdd(Mat,Vec,Vec,Vec);
862d59c15a7SBarry Smith EXTERN int MatSolves(Mat,Vecs,Vecs);
8638ed539a5SBarry Smith 
864ca44d042SBarry Smith EXTERN int MatSetUnfactored(Mat);
865bb5a7306SBarry Smith 
866d91e6319SBarry Smith /*E
867d91e6319SBarry Smith     MatSORType - What type of (S)SOR to perform
868bb1eb677SSatish Balay 
869d91e6319SBarry Smith     Level: beginner
870d91e6319SBarry Smith 
871d9274352SBarry Smith    May be bitwise ORd together
872d9274352SBarry Smith 
873d91e6319SBarry Smith    Any additions/changes here MUST also be made in include/finclude/petscmat.h
874d91e6319SBarry Smith 
8754e7234bfSBarry Smith    MatSORType may be bitwise ORd together, so do not change the numbers
8764e7234bfSBarry Smith 
877a1d92eedSBarry Smith .seealso: MatRelax(), MatPBRelax()
878d91e6319SBarry Smith E*/
879ee50ffe9SBarry Smith typedef enum {SOR_FORWARD_SWEEP=1,SOR_BACKWARD_SWEEP=2,SOR_SYMMETRIC_SWEEP=3,
880ee50ffe9SBarry Smith               SOR_LOCAL_FORWARD_SWEEP=4,SOR_LOCAL_BACKWARD_SWEEP=8,
881ee50ffe9SBarry Smith               SOR_LOCAL_SYMMETRIC_SWEEP=12,SOR_ZERO_INITIAL_GUESS=16,
88284cb2905SBarry Smith               SOR_EISENSTAT=32,SOR_APPLY_UPPER=64,SOR_APPLY_LOWER=128} MatSORType;
883c14dc6b6SHong Zhang EXTERN int MatRelax(Mat,Vec,PetscReal,MatSORType,PetscReal,int,int,Vec);
884a1d92eedSBarry Smith EXTERN int MatPBRelax(Mat,Vec,PetscReal,MatSORType,PetscReal,int,int,Vec);
8858ed539a5SBarry Smith 
886d4fbbf0eSBarry Smith /*
887639f9d9dSBarry Smith     These routines are for efficiently computing Jacobians via finite differences.
888639f9d9dSBarry Smith */
889b12f92e5SBarry Smith 
890d9274352SBarry Smith /*E
891d9274352SBarry Smith     MatColoringType - String with the name of a PETSc matrix coloring or the creation function
892d9274352SBarry Smith        with an optional dynamic library name, for example
893d9274352SBarry Smith        http://www.mcs.anl.gov/petsc/lib.a:coloringcreate()
894d9274352SBarry Smith 
895d9274352SBarry Smith    Level: beginner
896d9274352SBarry Smith 
897d9274352SBarry Smith .seealso: MatGetColoring()
898d9274352SBarry Smith E*/
89949773a63SBarry Smith #define MatColoringType char*
900b12f92e5SBarry Smith #define MATCOLORING_NATURAL "natural"
901b12f92e5SBarry Smith #define MATCOLORING_SL      "sl"
902b12f92e5SBarry Smith #define MATCOLORING_LF      "lf"
903b12f92e5SBarry Smith #define MATCOLORING_ID      "id"
904b12f92e5SBarry Smith 
905234db7c0SBarry Smith EXTERN int MatGetColoring(Mat,const MatColoringType,ISColoring*);
906234db7c0SBarry Smith EXTERN int MatColoringRegister(const char[],const char[],const char[],int(*)(Mat,const MatColoringType,ISColoring *));
90730de9b25SBarry Smith 
90830de9b25SBarry Smith /*MC
90930de9b25SBarry Smith    MatColoringRegisterDynamic - Adds a new sparse matrix coloring to the
91030de9b25SBarry Smith                                matrix package.
91130de9b25SBarry Smith 
91230de9b25SBarry Smith    Synopsis:
91330de9b25SBarry Smith    int MatColoringRegisterDynamic(char *name_coloring,char *path,char *name_create,int (*routine_create)(MatColoring))
91430de9b25SBarry Smith 
91530de9b25SBarry Smith    Not Collective
91630de9b25SBarry Smith 
91730de9b25SBarry Smith    Input Parameters:
91830de9b25SBarry Smith +  sname - name of Coloring (for example MATCOLORING_SL)
91930de9b25SBarry Smith .  path - location of library where creation routine is
92030de9b25SBarry Smith .  name - name of function that creates the Coloring type, a string
92130de9b25SBarry Smith -  function - function pointer that creates the coloring
92230de9b25SBarry Smith 
92330de9b25SBarry Smith    Level: developer
92430de9b25SBarry Smith 
92530de9b25SBarry Smith    If dynamic libraries are used, then the fourth input argument (function)
92630de9b25SBarry Smith    is ignored.
92730de9b25SBarry Smith 
92830de9b25SBarry Smith    Sample usage:
92930de9b25SBarry Smith .vb
93030de9b25SBarry Smith    MatColoringRegisterDynamic("my_color",/home/username/my_lib/lib/libO/solaris/mylib.a,
93130de9b25SBarry Smith                "MyColor",MyColor);
93230de9b25SBarry Smith .ve
93330de9b25SBarry Smith 
93430de9b25SBarry Smith    Then, your partitioner can be chosen with the procedural interface via
93530de9b25SBarry Smith $     MatColoringSetType(part,"my_color")
93630de9b25SBarry Smith    or at runtime via the option
93730de9b25SBarry Smith $     -mat_coloring_type my_color
93830de9b25SBarry Smith 
93930de9b25SBarry Smith    $PETSC_ARCH and $BOPT occuring in pathname will be replaced with appropriate values.
94030de9b25SBarry Smith 
94130de9b25SBarry Smith .keywords: matrix, Coloring, register
94230de9b25SBarry Smith 
94330de9b25SBarry Smith .seealso: MatColoringRegisterDestroy(), MatColoringRegisterAll()
94430de9b25SBarry Smith M*/
945aa482453SBarry Smith #if defined(PETSC_USE_DYNAMIC_LIBRARIES)
946f1af5d2fSBarry Smith #define MatColoringRegisterDynamic(a,b,c,d) MatColoringRegister(a,b,c,0)
947b12f92e5SBarry Smith #else
948f1af5d2fSBarry Smith #define MatColoringRegisterDynamic(a,b,c,d) MatColoringRegister(a,b,c,d)
949b12f92e5SBarry Smith #endif
95030de9b25SBarry Smith 
9510e33f6ddSBarry Smith EXTERN int        MatColoringRegisterAll(const char[]);
9522bad1931SBarry Smith extern PetscTruth MatColoringRegisterAllCalled;
953ca44d042SBarry Smith EXTERN int        MatColoringRegisterDestroy(void);
9544e7234bfSBarry Smith EXTERN int        MatColoringPatch(Mat,int,int,const ISColoringValue[],ISColoring*);
955639f9d9dSBarry Smith 
956d9274352SBarry Smith /*S
957d9274352SBarry Smith      MatFDColoring - Object for computing a sparse Jacobian via finite differences
958d9274352SBarry Smith         and coloring
959639f9d9dSBarry Smith 
960d9274352SBarry Smith    Level: beginner
961d9274352SBarry Smith 
962d9274352SBarry Smith   Concepts: coloring, sparse Jacobian, finite differences
963d9274352SBarry Smith 
964d9274352SBarry Smith .seealso:  MatFDColoringCreate()
965d9274352SBarry Smith S*/
966e2a1c21fSSatish Balay typedef struct _p_MatFDColoring *MatFDColoring;
967639f9d9dSBarry Smith 
968ca44d042SBarry Smith EXTERN int MatFDColoringCreate(Mat,ISColoring,MatFDColoring *);
969ca44d042SBarry Smith EXTERN int MatFDColoringDestroy(MatFDColoring);
970b0a32e0cSBarry Smith EXTERN int MatFDColoringView(MatFDColoring,PetscViewer);
971ca44d042SBarry Smith EXTERN int MatFDColoringSetFunction(MatFDColoring,int (*)(void),void*);
97287828ca2SBarry Smith EXTERN int MatFDColoringSetParameters(MatFDColoring,PetscReal,PetscReal);
973ca44d042SBarry Smith EXTERN int MatFDColoringSetFrequency(MatFDColoring,int);
974ca44d042SBarry Smith EXTERN int MatFDColoringGetFrequency(MatFDColoring,int*);
975ca44d042SBarry Smith EXTERN int MatFDColoringSetFromOptions(MatFDColoring);
976ca44d042SBarry Smith EXTERN int MatFDColoringApply(Mat,MatFDColoring,Vec,MatStructure*,void *);
97787828ca2SBarry Smith EXTERN int MatFDColoringApplyTS(Mat,MatFDColoring,PetscReal,Vec,MatStructure*,void *);
97862152c8bSBarry Smith EXTERN int MatFDColoringSetRecompute(MatFDColoring);
9793a7fca6bSBarry Smith EXTERN int MatFDColoringSetF(MatFDColoring,Vec);
9804e7234bfSBarry Smith EXTERN int MatFDColoringGetPerturbedColumns(MatFDColoring,int*,int*[]);
981639f9d9dSBarry Smith /*
9820752156aSBarry Smith     These routines are for partitioning matrices: currently used only
9833eda8832SBarry Smith   for adjacency matrix, MatCreateMPIAdj().
9840752156aSBarry Smith */
985ca161407SBarry Smith 
986d9274352SBarry Smith /*S
987d9274352SBarry Smith      MatPartitioning - Object for managing the partitioning of a matrix or graph
988d9274352SBarry Smith 
989d9274352SBarry Smith    Level: beginner
990d9274352SBarry Smith 
991d9274352SBarry Smith   Concepts: partitioning
992d9274352SBarry Smith 
993743a1026Svictorle .seealso:  MatPartitioningCreate(), MatPartitioningType
994d9274352SBarry Smith S*/
99591e9ee9fSBarry Smith typedef struct _p_MatPartitioning *MatPartitioning;
996d9274352SBarry Smith 
997d9274352SBarry Smith /*E
9985bc6e7ccSvictorle     MatPartitioningType - String with the name of a PETSc matrix partitioning or the creation function
999d9274352SBarry Smith        with an optional dynamic library name, for example
1000d9274352SBarry Smith        http://www.mcs.anl.gov/petsc/lib.a:partitioningcreate()
1001d9274352SBarry Smith 
1002d9274352SBarry Smith    Level: beginner
1003d9274352SBarry Smith 
1004b547a13bSvictorle .seealso: MatPartitioningCreate(), MatPartitioning
1005d9274352SBarry Smith E*/
100649773a63SBarry Smith #define MatPartitioningType char*
10078ba1e511SMatthew Knepley #define MAT_PARTITIONING_CURRENT  "current"
10088ba1e511SMatthew Knepley #define MAT_PARTITIONING_PARMETIS "parmetis"
100971306c60Sjroman #define MAT_PARTITIONING_CHACO    "chaco"
101071306c60Sjroman #define MAT_PARTITIONING_JOSTLE   "jostle"
101171306c60Sjroman #define MAT_PARTITIONING_PARTY    "party"
101271306c60Sjroman #define MAT_PARTITIONING_SCOTCH   "scotch"
101371306c60Sjroman 
1014ca161407SBarry Smith 
1015ca44d042SBarry Smith EXTERN int MatPartitioningCreate(MPI_Comm,MatPartitioning*);
10160e33f6ddSBarry Smith EXTERN int MatPartitioningSetType(MatPartitioning,const MatPartitioningType);
10175bc6e7ccSvictorle EXTERN int MatPartitioningSetNParts(MatPartitioning,int);
1018ca44d042SBarry Smith EXTERN int MatPartitioningSetAdjacency(MatPartitioning,Mat);
10194e7234bfSBarry Smith EXTERN int MatPartitioningSetVertexWeights(MatPartitioning,const int[]);
10204e7234bfSBarry Smith EXTERN int MatPartitioningSetPartitionWeights(MatPartitioning,const PetscReal []);
1021ca44d042SBarry Smith EXTERN int MatPartitioningApply(MatPartitioning,IS*);
1022ca44d042SBarry Smith EXTERN int MatPartitioningDestroy(MatPartitioning);
10232aabb6bbSBarry Smith 
10240e33f6ddSBarry Smith EXTERN int MatPartitioningRegister(const char[],const char[],const char[],int(*)(MatPartitioning));
102530de9b25SBarry Smith 
102630de9b25SBarry Smith /*MC
102730de9b25SBarry Smith    MatPartitioningRegisterDynamic - Adds a new sparse matrix partitioning to the
102830de9b25SBarry Smith    matrix package.
102930de9b25SBarry Smith 
103030de9b25SBarry Smith    Synopsis:
103130de9b25SBarry Smith    int MatPartitioningRegisterDynamic(char *name_partitioning,char *path,char *name_create,int (*routine_create)(MatPartitioning))
103230de9b25SBarry Smith 
103330de9b25SBarry Smith    Not Collective
103430de9b25SBarry Smith 
103530de9b25SBarry Smith    Input Parameters:
103630de9b25SBarry Smith +  sname - name of partitioning (for example MAT_PARTITIONING_CURRENT) or parmetis
103730de9b25SBarry Smith .  path - location of library where creation routine is
103830de9b25SBarry Smith .  name - name of function that creates the partitioning type, a string
103930de9b25SBarry Smith -  function - function pointer that creates the partitioning type
104030de9b25SBarry Smith 
104130de9b25SBarry Smith    Level: developer
104230de9b25SBarry Smith 
104330de9b25SBarry Smith    If dynamic libraries are used, then the fourth input argument (function)
104430de9b25SBarry Smith    is ignored.
104530de9b25SBarry Smith 
104630de9b25SBarry Smith    Sample usage:
104730de9b25SBarry Smith .vb
104830de9b25SBarry Smith    MatPartitioningRegisterDynamic("my_part",/home/username/my_lib/lib/libO/solaris/mylib.a,
104930de9b25SBarry Smith                "MyPartCreate",MyPartCreate);
105030de9b25SBarry Smith .ve
105130de9b25SBarry Smith 
105230de9b25SBarry Smith    Then, your partitioner can be chosen with the procedural interface via
105330de9b25SBarry Smith $     MatPartitioningSetType(part,"my_part")
105430de9b25SBarry Smith    or at runtime via the option
105530de9b25SBarry Smith $     -mat_partitioning_type my_part
105630de9b25SBarry Smith 
105730de9b25SBarry Smith    $PETSC_ARCH and $BOPT occuring in pathname will be replaced with appropriate values.
105830de9b25SBarry Smith 
105930de9b25SBarry Smith .keywords: matrix, partitioning, register
106030de9b25SBarry Smith 
106130de9b25SBarry Smith .seealso: MatPartitioningRegisterDestroy(), MatPartitioningRegisterAll()
106230de9b25SBarry Smith M*/
1063aa482453SBarry Smith #if defined(PETSC_USE_DYNAMIC_LIBRARIES)
1064f1af5d2fSBarry Smith #define MatPartitioningRegisterDynamic(a,b,c,d) MatPartitioningRegister(a,b,c,0)
10652aabb6bbSBarry Smith #else
1066f1af5d2fSBarry Smith #define MatPartitioningRegisterDynamic(a,b,c,d) MatPartitioningRegister(a,b,c,d)
10672aabb6bbSBarry Smith #endif
10682aabb6bbSBarry Smith 
10690e33f6ddSBarry Smith EXTERN int        MatPartitioningRegisterAll(const char[]);
10702bad1931SBarry Smith extern PetscTruth MatPartitioningRegisterAllCalled;
1071ca44d042SBarry Smith EXTERN int        MatPartitioningRegisterDestroy(void);
10722bad1931SBarry Smith 
1073b0a32e0cSBarry Smith EXTERN int MatPartitioningView(MatPartitioning,PetscViewer);
1074ca44d042SBarry Smith EXTERN int MatPartitioningSetFromOptions(MatPartitioning);
1075ca44d042SBarry Smith EXTERN int MatPartitioningGetType(MatPartitioning,MatPartitioningType*);
1076ca161407SBarry Smith 
1077ca44d042SBarry Smith EXTERN int MatPartitioningParmetisSetCoarseSequential(MatPartitioning);
10780752156aSBarry Smith 
107971306c60Sjroman EXTERN int MatPartitioningJostleSetCoarseLevel(MatPartitioning,PetscReal);
108071306c60Sjroman EXTERN int MatPartitioningJostleSetCoarseSequential(MatPartitioning);
108171306c60Sjroman 
108271306c60Sjroman typedef enum { MP_CHACO_MULTILEVEL_KL, MP_CHACO_SPECTRAL, MP_CHACO_LINEAR,
108371306c60Sjroman     MP_CHACO_RANDOM, MP_CHACO_SCATTERED } MPChacoGlobalType;
108471306c60Sjroman EXTERN int MatPartitioningChacoSetGlobal(MatPartitioning, MPChacoGlobalType);
108571306c60Sjroman typedef enum { MP_CHACO_KERNIGHAN_LIN, MP_CHACO_NONE } MPChacoLocalType;
108671306c60Sjroman EXTERN int MatPartitioningChacoSetLocal(MatPartitioning, MPChacoLocalType);
108771306c60Sjroman EXTERN int MatPartitioningChacoSetCoarseLevel(MatPartitioning,PetscReal);
108871306c60Sjroman typedef enum { MP_CHACO_LANCZOS, MP_CHACO_RQI_SYMMLQ } MPChacoEigenType;
108971306c60Sjroman EXTERN int MatPartitioningChacoSetEigenSolver(MatPartitioning,MPChacoEigenType);
109071306c60Sjroman EXTERN int MatPartitioningChacoSetEigenTol(MatPartitioning, PetscReal);
109171306c60Sjroman EXTERN int MatPartitioningChacoSetEigenNumber(MatPartitioning, int);
109271306c60Sjroman 
109371306c60Sjroman #define MP_PARTY_OPT "opt"
109471306c60Sjroman #define MP_PARTY_LIN "lin"
109571306c60Sjroman #define MP_PARTY_SCA "sca"
109671306c60Sjroman #define MP_PARTY_RAN "ran"
109771306c60Sjroman #define MP_PARTY_GBF "gbf"
109871306c60Sjroman #define MP_PARTY_GCF "gcf"
109971306c60Sjroman #define MP_PARTY_BUB "bub"
110071306c60Sjroman #define MP_PARTY_DEF "def"
110171306c60Sjroman EXTERN int MatPartitioningPartySetGlobal(MatPartitioning, const char*);
110271306c60Sjroman #define MP_PARTY_HELPFUL_SETS "hs"
110371306c60Sjroman #define MP_PARTY_KERNIGHAN_LIN "kl"
110471306c60Sjroman #define MP_PARTY_NONE "no"
110571306c60Sjroman EXTERN int MatPartitioningPartySetLocal(MatPartitioning, const char*);
110671306c60Sjroman EXTERN int MatPartitioningPartySetCoarseLevel(MatPartitioning,PetscReal);
110771306c60Sjroman EXTERN int MatPartitioningPartySetBipart(MatPartitioning,PetscTruth);
110871306c60Sjroman EXTERN int MatPartitioningPartySetMatchOptimization(MatPartitioning,PetscTruth);
110971306c60Sjroman 
111071306c60Sjroman typedef enum { MP_SCOTCH_GREEDY, MP_SCOTCH_GPS, MP_SCOTCH_GR_GPS } MPScotchGlobalType;
111171306c60Sjroman EXTERN int MatPartitioningScotchSetArch(MatPartitioning,const char*);
111271306c60Sjroman EXTERN int MatPartitioningScotchSetMultilevel(MatPartitioning);
111371306c60Sjroman EXTERN int MatPartitioningScotchSetGlobal(MatPartitioning,MPScotchGlobalType);
111471306c60Sjroman EXTERN int MatPartitioningScotchSetCoarseLevel(MatPartitioning,PetscReal);
111571306c60Sjroman EXTERN int MatPartitioningScotchSetHostList(MatPartitioning,const char*);
111671306c60Sjroman typedef enum { MP_SCOTCH_KERNIGHAN_LIN, MP_SCOTCH_NONE } MPScotchLocalType;
111771306c60Sjroman EXTERN int MatPartitioningScotchSetLocal(MatPartitioning,MPScotchLocalType);
111871306c60Sjroman EXTERN int MatPartitioningScotchSetMapping(MatPartitioning);
111971306c60Sjroman EXTERN int MatPartitioningScotchSetStrategy(MatPartitioning,char*);
112071306c60Sjroman 
11210752156aSBarry Smith /*
11220a835dfdSSatish Balay     If you add entries here you must also add them to finclude/petscmat.h
1123d4fbbf0eSBarry Smith */
11241c1c02c0SLois Curfman McInnes typedef enum { MATOP_SET_VALUES=0,
11251c1c02c0SLois Curfman McInnes                MATOP_GET_ROW=1,
11261c1c02c0SLois Curfman McInnes                MATOP_RESTORE_ROW=2,
11271c1c02c0SLois Curfman McInnes                MATOP_MULT=3,
11281c1c02c0SLois Curfman McInnes                MATOP_MULT_ADD=4,
11297c922b88SBarry Smith                MATOP_MULT_TRANSPOSE=5,
11307c922b88SBarry Smith                MATOP_MULT_TRANSPOSE_ADD=6,
11311c1c02c0SLois Curfman McInnes                MATOP_SOLVE=7,
11321c1c02c0SLois Curfman McInnes                MATOP_SOLVE_ADD=8,
11337c922b88SBarry Smith                MATOP_SOLVE_TRANSPOSE=9,
11347c922b88SBarry Smith                MATOP_SOLVE_TRANSPOSE_ADD=10,
11351c1c02c0SLois Curfman McInnes                MATOP_LUFACTOR=11,
11361c1c02c0SLois Curfman McInnes                MATOP_CHOLESKYFACTOR=12,
11371c1c02c0SLois Curfman McInnes                MATOP_RELAX=13,
11381c1c02c0SLois Curfman McInnes                MATOP_TRANSPOSE=14,
11391c1c02c0SLois Curfman McInnes                MATOP_GETINFO=15,
11401c1c02c0SLois Curfman McInnes                MATOP_EQUAL=16,
11411c1c02c0SLois Curfman McInnes                MATOP_GET_DIAGONAL=17,
11421c1c02c0SLois Curfman McInnes                MATOP_DIAGONAL_SCALE=18,
11431c1c02c0SLois Curfman McInnes                MATOP_NORM=19,
11441c1c02c0SLois Curfman McInnes                MATOP_ASSEMBLY_BEGIN=20,
11451c1c02c0SLois Curfman McInnes                MATOP_ASSEMBLY_END=21,
11461c1c02c0SLois Curfman McInnes                MATOP_COMPRESS=22,
11471c1c02c0SLois Curfman McInnes                MATOP_SET_OPTION=23,
11481c1c02c0SLois Curfman McInnes                MATOP_ZERO_ENTRIES=24,
11491c1c02c0SLois Curfman McInnes                MATOP_ZERO_ROWS=25,
11501c1c02c0SLois Curfman McInnes                MATOP_LUFACTOR_SYMBOLIC=26,
11511c1c02c0SLois Curfman McInnes                MATOP_LUFACTOR_NUMERIC=27,
11521c1c02c0SLois Curfman McInnes                MATOP_CHOLESKY_FACTOR_SYMBOLIC=28,
11531c1c02c0SLois Curfman McInnes                MATOP_CHOLESKY_FACTOR_NUMERIC=29,
1154d643ce63SMatthew Knepley                MATOP_SETUP_PREALLOCATION=30,
1155d643ce63SMatthew Knepley                MATOP_ILUFACTOR_SYMBOLIC=31,
1156d643ce63SMatthew Knepley                MATOP_ICCFACTOR_SYMBOLIC=32,
1157d643ce63SMatthew Knepley                MATOP_GET_ARRAY=33,
1158d643ce63SMatthew Knepley                MATOP_RESTORE_ARRAY=34,
1159d643ce63SMatthew Knepley                MATOP_DUPLCIATE=35,
1160d643ce63SMatthew Knepley                MATOP_FORWARD_SOLVE=36,
1161d643ce63SMatthew Knepley                MATOP_BACKWARD_SOLVE=37,
1162d643ce63SMatthew Knepley                MATOP_ILUFACTOR=38,
1163d643ce63SMatthew Knepley                MATOP_ICCFACTOR=39,
1164d643ce63SMatthew Knepley                MATOP_AXPY=40,
1165d643ce63SMatthew Knepley                MATOP_GET_SUBMATRICES=41,
1166d643ce63SMatthew Knepley                MATOP_INCREASE_OVERLAP=42,
1167d643ce63SMatthew Knepley                MATOP_GET_VALUES=43,
1168d643ce63SMatthew Knepley                MATOP_COPY=44,
1169d643ce63SMatthew Knepley                MATOP_PRINT_HELP=45,
1170d643ce63SMatthew Knepley                MATOP_SCALE=46,
1171d643ce63SMatthew Knepley                MATOP_SHIFT=47,
1172d643ce63SMatthew Knepley                MATOP_DIAGONAL_SHIFT=48,
1173d643ce63SMatthew Knepley                MATOP_ILUDT_FACTOR=49,
1174d643ce63SMatthew Knepley                MATOP_GET_BLOCK_SIZE=50,
1175d643ce63SMatthew Knepley                MATOP_GET_ROW_IJ=51,
1176d643ce63SMatthew Knepley                MATOP_RESTORE_ROW_IJ=52,
1177d643ce63SMatthew Knepley                MATOP_GET_COLUMN_IJ=53,
1178d643ce63SMatthew Knepley                MATOP_RESTORE_COLUMN_IJ=54,
1179d643ce63SMatthew Knepley                MATOP_FDCOLORING_CREATE=55,
1180d643ce63SMatthew Knepley                MATOP_COLORING_PATCH=56,
1181d643ce63SMatthew Knepley                MATOP_SET_UNFACTORED=57,
1182d643ce63SMatthew Knepley                MATOP_PERMUTE=58,
1183d643ce63SMatthew Knepley                MATOP_SET_VALUES_BLOCKED=59,
1184d643ce63SMatthew Knepley                MATOP_GET_SUBMATRIX=60,
1185d643ce63SMatthew Knepley                MATOP_DESTROY=61,
1186d643ce63SMatthew Knepley                MATOP_VIEW=62,
1187d643ce63SMatthew Knepley                MATOP_GET_MAPS=63,
1188d643ce63SMatthew Knepley                MATOP_USE_SCALED_FORM=64,
1189d643ce63SMatthew Knepley                MATOP_SCALE_SYSTEM=65,
1190d643ce63SMatthew Knepley                MATOP_UNSCALE_SYSTEM=66,
1191d643ce63SMatthew Knepley                MATOP_SET_LOCAL_TO_GLOBAL_MAPPING=67,
1192d643ce63SMatthew Knepley                MATOP_SET_VALUES_LOCAL=68,
1193d643ce63SMatthew Knepley                MATOP_ZERO_ROWS_LOCAL=69,
1194d643ce63SMatthew Knepley                MATOP_GET_ROW_MAX=70,
1195d643ce63SMatthew Knepley                MATOP_CONVERT=71,
1196d643ce63SMatthew Knepley                MATOP_SET_COLORING=72,
1197d643ce63SMatthew Knepley                MATOP_SET_VALUES_ADIC=73,
1198d643ce63SMatthew Knepley                MATOP_SET_VALUES_ADIFOR=74,
1199d643ce63SMatthew Knepley                MATOP_FD_COLORING_APPLY=75,
1200d643ce63SMatthew Knepley                MATOP_SET_FROM_OPTIONS=76,
1201d643ce63SMatthew Knepley                MATOP_MULT_CONSTRAINED=77,
1202d643ce63SMatthew Knepley                MATOP_MULT_TRANSPOSE_CONSTRAINED=78,
1203d643ce63SMatthew Knepley                MATOP_ILU_FACTOR_SYMBOLIC_CONSTRAINED=79,
1204d643ce63SMatthew Knepley                MATOP_PERMUTE_SPARSIFY=80,
1205d643ce63SMatthew Knepley                MATOP_MULT_MULTIPLE=81,
1206d643ce63SMatthew Knepley                MATOP_SOLVE_MULTIPLE=82
1207fae171e0SBarry Smith              } MatOperation;
1208ca44d042SBarry Smith EXTERN int MatHasOperation(Mat,MatOperation,PetscTruth*);
1209ff8b7a98SSatish Balay EXTERN int MatShellSetOperation(Mat,MatOperation,void(*)(void));
1210ff8b7a98SSatish Balay EXTERN int MatShellGetOperation(Mat,MatOperation,void(**)(void));
1211273d9f13SBarry Smith EXTERN int MatShellSetContext(Mat,void*);
1212112a2221SBarry Smith 
121390ace30eSBarry Smith /*
121490ace30eSBarry Smith    Codes for matrices stored on disk. By default they are
121590ace30eSBarry Smith  stored in a universal format. By changing the format with
1216fb9695e5SSatish Balay  PetscViewerSetFormat(viewer,PETSC_VIEWER_BINARY_NATIVE); the matrices will
121790ace30eSBarry Smith  be stored in a way natural for the matrix, for example dense matrices
121890ace30eSBarry Smith  would be stored as dense. Matrices stored this way may only be
121990ace30eSBarry Smith  read into matrices of the same time.
122090ace30eSBarry Smith */
122190ace30eSBarry Smith #define MATRIX_BINARY_FORMAT_DENSE -1
122290ace30eSBarry Smith 
12236d053be9SSatish Balay EXTERN int MatMPIBAIJSetHashTableFactor(Mat,PetscReal);
1224ca44d042SBarry Smith EXTERN int MatSeqAIJGetInodeSizes(Mat,int *,int *[],int *);
122508918a0eSSatish Balay EXTERN int MatMPIRowbsGetColor(Mat,ISColoring *);
1226860d1616SSatish Balay 
12271f4e1ec7SBarry Smith EXTERN int MatISGetLocalMat(Mat,Mat*);
12281f4e1ec7SBarry Smith 
1229d9274352SBarry Smith /*S
1230d9274352SBarry Smith      MatNullSpace - Object that removes a null space from a vector, i.e.
1231d9274352SBarry Smith          orthogonalizes the vector to a subsapce
1232d9274352SBarry Smith 
1233f7a9e4ceSBarry Smith    Level: advanced
1234d9274352SBarry Smith 
1235d9274352SBarry Smith   Concepts: matrix; linear operator, null space
1236d9274352SBarry Smith 
12376e1639daSBarry Smith   Users manual sections:
12386e1639daSBarry Smith .   sec_singular
12396e1639daSBarry Smith 
1240d9274352SBarry Smith .seealso:  MatNullSpaceCreate()
1241d9274352SBarry Smith S*/
124274637425SBarry Smith typedef struct _p_MatNullSpace* MatNullSpace;
1243d9274352SBarry Smith 
12444e7234bfSBarry Smith EXTERN int MatNullSpaceCreate(MPI_Comm,int,int,const Vec[],MatNullSpace*);
124574637425SBarry Smith EXTERN int MatNullSpaceDestroy(MatNullSpace);
124674637425SBarry Smith EXTERN int MatNullSpaceRemove(MatNullSpace,Vec,Vec*);
124774637425SBarry Smith EXTERN int MatNullSpaceAttach(Mat,MatNullSpace);
124874637425SBarry Smith EXTERN int MatNullSpaceTest(MatNullSpace,Mat);
124974637425SBarry Smith 
1250273d9f13SBarry Smith EXTERN int MatReorderingSeqSBAIJ(Mat A,IS isp);
1251273d9f13SBarry Smith EXTERN int MatMPISBAIJSetHashTableFactor(Mat,PetscReal);
1252273d9f13SBarry Smith EXTERN int MatSeqSBAIJSetColumnIndices(Mat,int *);
1253273d9f13SBarry Smith 
12545c66b693SKris Buschelman EXTERN int MatMatMult(Mat A,Mat B, Mat *C);
12555c66b693SKris Buschelman EXTERN int MatMatMultSymbolic(Mat A,Mat B,Mat *C);
12565c66b693SKris Buschelman EXTERN int MatMatMultNumeric(Mat A,Mat B,Mat C);
12573f1d51d7SBarry Smith 
1258f069c275SSatish Balay EXTERN int MatCreateMAIJ(Mat,int,Mat*);
1259c4f061fbSSatish Balay EXTERN int MatMAIJRedimension(Mat,int,Mat*);
1260c4f061fbSSatish Balay EXTERN int MatMAIJGetAIJ(Mat,Mat*);
1261c4f061fbSSatish Balay 
1262b0a32e0cSBarry Smith EXTERN int MatComputeExplicitOperator(Mat,Mat*);
1263b0a32e0cSBarry Smith 
12640e33f6ddSBarry Smith EXTERN int MatESISetType(Mat,const char*);
126524a595ddSBarry Smith EXTERN int MatESISetFromOptions(Mat);
126624a595ddSBarry Smith 
12672cd6534aSBarry Smith EXTERN int MatDiagonalScaleLocal(Mat,Vec);
126804f1ad80SBarry Smith 
12697dbadf16SMatthew Knepley EXTERN int PetscViewerMathematicaPutMatrix(PetscViewer, int, int, PetscReal *);
12707dbadf16SMatthew Knepley EXTERN int PetscViewerMathematicaPutCSRMatrix(PetscViewer, int, int, int *, int *, PetscReal *);
12717dbadf16SMatthew Knepley 
12721f4e1ec7SBarry Smith EXTERN int MatSeqAIJPtAP(Mat,Mat,Mat*);
1273e82a3eeeSBarry Smith 
1274e9fa29b7SSatish Balay PETSC_EXTERN_CXX_END
12752eac72dbSBarry Smith #endif
1276