1 /* 2 Include file for the matrix component of PETSc 3 */ 4 #ifndef __PETSCMAT_H 5 #define __PETSCMAT_H 6 #include "petscvec.h" 7 PETSC_EXTERN_CXX_BEGIN 8 9 /*S 10 Mat - Abstract PETSc matrix object 11 12 Level: beginner 13 14 Concepts: matrix; linear operator 15 16 .seealso: MatCreate(), MatType, MatSetType() 17 S*/ 18 typedef struct _p_Mat* Mat; 19 20 /*J 21 MatType - String with the name of a PETSc matrix or the creation function 22 with an optional dynamic library name, for example 23 http://www.mcs.anl.gov/petsc/lib.a:mymatcreate() 24 25 Level: beginner 26 27 .seealso: MatSetType(), Mat, MatSolverPackage 28 J*/ 29 #define MatType char* 30 #define MATSAME "same" 31 #define MATMAIJ "maij" 32 #define MATSEQMAIJ "seqmaij" 33 #define MATMPIMAIJ "mpimaij" 34 #define MATIS "is" 35 #define MATAIJ "aij" 36 #define MATSEQAIJ "seqaij" 37 #define MATSEQAIJPTHREAD "seqaijpthread" 38 #define MATAIJPTHREAD "aijpthread" 39 #define MATMPIAIJ "mpiaij" 40 #define MATAIJCRL "aijcrl" 41 #define MATSEQAIJCRL "seqaijcrl" 42 #define MATMPIAIJCRL "mpiaijcrl" 43 #define MATAIJCUSP "aijcusp" 44 #define MATSEQAIJCUSP "seqaijcusp" 45 #define MATMPIAIJCUSP "mpiaijcusp" 46 #define MATAIJPERM "aijperm" 47 #define MATSEQAIJPERM "seqaijperm" 48 #define MATMPIAIJPERM "mpiaijperm" 49 #define MATSHELL "shell" 50 #define MATDENSE "dense" 51 #define MATSEQDENSE "seqdense" 52 #define MATMPIDENSE "mpidense" 53 #define MATBAIJ "baij" 54 #define MATSEQBAIJ "seqbaij" 55 #define MATMPIBAIJ "mpibaij" 56 #define MATMPIADJ "mpiadj" 57 #define MATSBAIJ "sbaij" 58 #define MATSEQSBAIJ "seqsbaij" 59 #define MATMPISBAIJ "mpisbaij" 60 #define MATSEQBSTRM "seqbstrm" 61 #define MATMPIBSTRM "mpibstrm" 62 #define MATBSTRM "bstrm" 63 #define MATSEQSBSTRM "seqsbstrm" 64 #define MATMPISBSTRM "mpisbstrm" 65 #define MATSBSTRM "sbstrm" 66 #define MATDAAD "daad" 67 #define MATMFFD "mffd" 68 #define MATNORMAL "normal" 69 #define MATLRC "lrc" 70 #define MATSCATTER "scatter" 71 #define MATBLOCKMAT "blockmat" 72 #define MATCOMPOSITE "composite" 73 #define MATFFT "fft" 74 #define MATFFTW "fftw" 75 #define MATSEQCUFFT "seqcufft" 76 #define MATTRANSPOSEMAT "transpose" 77 #define MATSCHURCOMPLEMENT "schurcomplement" 78 #define MATPYTHON "python" 79 #define MATHYPRESTRUCT "hyprestruct" 80 #define MATHYPRESSTRUCT "hypresstruct" 81 #define MATSUBMATRIX "submatrix" 82 #define MATLOCALREF "localref" 83 #define MATNEST "nest" 84 #define MATIJ "ij" 85 86 /*J 87 MatSolverPackage - String with the name of a PETSc matrix solver type. 88 89 For example: "petsc" indicates what PETSc provides, "superlu" indicates either 90 SuperLU or SuperLU_Dist etc. 91 92 93 Level: beginner 94 95 .seealso: MatGetFactor(), Mat, MatSetType(), MatType 96 J*/ 97 #define MatSolverPackage char* 98 #define MATSOLVERSPOOLES "spooles" 99 #define MATSOLVERSUPERLU "superlu" 100 #define MATSOLVERSUPERLU_DIST "superlu_dist" 101 #define MATSOLVERUMFPACK "umfpack" 102 #define MATSOLVERCHOLMOD "cholmod" 103 #define MATSOLVERESSL "essl" 104 #define MATSOLVERLUSOL "lusol" 105 #define MATSOLVERMUMPS "mumps" 106 #define MATSOLVERPASTIX "pastix" 107 #define MATSOLVERMATLAB "matlab" 108 #define MATSOLVERPETSC "petsc" 109 #define MATSOLVERPLAPACK "plapack" 110 #define MATSOLVERBAS "bas" 111 112 #define MATSOLVERBSTRM "bstrm" 113 #define MATSOLVERSBSTRM "sbstrm" 114 115 /*E 116 MatFactorType - indicates what type of factorization is requested 117 118 Level: beginner 119 120 Any additions/changes here MUST also be made in include/finclude/petscmat.h 121 122 .seealso: MatSolverPackage, MatGetFactor() 123 E*/ 124 typedef enum {MAT_FACTOR_NONE, MAT_FACTOR_LU, MAT_FACTOR_CHOLESKY, MAT_FACTOR_ILU, MAT_FACTOR_ICC,MAT_FACTOR_ILUDT} MatFactorType; 125 extern const char *const MatFactorTypes[]; 126 127 extern PetscErrorCode MatGetFactor(Mat,const MatSolverPackage,MatFactorType,Mat*); 128 extern PetscErrorCode MatGetFactorAvailable(Mat,const MatSolverPackage,MatFactorType,PetscBool *); 129 extern PetscErrorCode MatFactorGetSolverPackage(Mat,const MatSolverPackage*); 130 extern PetscErrorCode MatGetFactorType(Mat,MatFactorType*); 131 132 /* Logging support */ 133 #define MAT_FILE_CLASSID 1211216 /* used to indicate matrices in binary files */ 134 extern PetscClassId MAT_CLASSID; 135 extern PetscClassId MAT_FDCOLORING_CLASSID; 136 extern PetscClassId MAT_TRANSPOSECOLORING_CLASSID; 137 extern PetscClassId MAT_PARTITIONING_CLASSID; 138 extern PetscClassId MAT_COARSEN_CLASSID; 139 extern PetscClassId MAT_NULLSPACE_CLASSID; 140 extern PetscClassId MATMFFD_CLASSID; 141 142 /*E 143 MatReuse - Indicates if matrices obtained from a previous call to MatGetSubMatrices() 144 or MatGetSubMatrix() are to be reused to store the new matrix values. For MatConvert() is used to indicate 145 that the input matrix is to be replaced with the converted matrix. 146 147 Level: beginner 148 149 Any additions/changes here MUST also be made in include/finclude/petscmat.h 150 151 .seealso: MatGetSubMatrices(), MatGetSubMatrix(), MatDestroyMatrices(), MatConvert() 152 E*/ 153 typedef enum {MAT_INITIAL_MATRIX,MAT_REUSE_MATRIX,MAT_IGNORE_MATRIX} MatReuse; 154 155 /*E 156 MatGetSubMatrixOption - Indicates if matrices obtained from a call to MatGetSubMatrices() 157 include the matrix values. Currently it is only used by MatGetSeqNonzerostructure(). 158 159 Level: beginner 160 161 .seealso: MatGetSeqNonzerostructure() 162 E*/ 163 typedef enum {MAT_DO_NOT_GET_VALUES,MAT_GET_VALUES} MatGetSubMatrixOption; 164 165 extern PetscErrorCode MatInitializePackage(const char[]); 166 167 extern PetscErrorCode MatCreate(MPI_Comm,Mat*); 168 PetscPolymorphicFunction(MatCreate,(MPI_Comm comm),(comm,&A),Mat,A) 169 PetscPolymorphicFunction(MatCreate,(),(PETSC_COMM_WORLD,&A),Mat,A) 170 extern PetscErrorCode MatSetSizes(Mat,PetscInt,PetscInt,PetscInt,PetscInt); 171 extern PetscErrorCode MatSetType(Mat,const MatType); 172 extern PetscErrorCode MatSetFromOptions(Mat); 173 extern PetscErrorCode MatRegisterAll(const char[]); 174 extern PetscErrorCode MatRegister(const char[],const char[],const char[],PetscErrorCode(*)(Mat)); 175 extern PetscErrorCode MatRegisterBaseName(const char[],const char[],const char[]); 176 extern PetscErrorCode MatSetOptionsPrefix(Mat,const char[]); 177 extern PetscErrorCode MatAppendOptionsPrefix(Mat,const char[]); 178 extern PetscErrorCode MatGetOptionsPrefix(Mat,const char*[]); 179 180 /*MC 181 MatRegisterDynamic - Adds a new matrix type 182 183 Synopsis: 184 PetscErrorCode MatRegisterDynamic(const char *name,const char *path,const char *name_create,PetscErrorCode (*routine_create)(Mat)) 185 186 Not Collective 187 188 Input Parameters: 189 + name - name of a new user-defined matrix type 190 . path - path (either absolute or relative) the library containing this solver 191 . name_create - name of routine to create method context 192 - routine_create - routine to create method context 193 194 Notes: 195 MatRegisterDynamic() may be called multiple times to add several user-defined solvers. 196 197 If dynamic libraries are used, then the fourth input argument (routine_create) 198 is ignored. 199 200 Sample usage: 201 .vb 202 MatRegisterDynamic("my_mat",/home/username/my_lib/lib/libO/solaris/mylib.a, 203 "MyMatCreate",MyMatCreate); 204 .ve 205 206 Then, your solver can be chosen with the procedural interface via 207 $ MatSetType(Mat,"my_mat") 208 or at runtime via the option 209 $ -mat_type my_mat 210 211 Level: advanced 212 213 Notes: ${PETSC_ARCH} occuring in pathname will be replaced with appropriate values. 214 If your function is not being put into a shared library then use VecRegister() instead 215 216 .keywords: Mat, register 217 218 .seealso: MatRegisterAll(), MatRegisterDestroy() 219 220 M*/ 221 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 222 #define MatRegisterDynamic(a,b,c,d) MatRegister(a,b,c,0) 223 #else 224 #define MatRegisterDynamic(a,b,c,d) MatRegister(a,b,c,d) 225 #endif 226 227 extern PetscBool MatRegisterAllCalled; 228 extern PetscFList MatList; 229 extern PetscFList MatColoringList; 230 extern PetscFList MatPartitioningList; 231 extern PetscFList MatCoarsenList; 232 233 /*E 234 MatStructure - Indicates if the matrix has the same nonzero structure 235 236 Level: beginner 237 238 Any additions/changes here MUST also be made in include/finclude/petscmat.h 239 240 .seealso: MatCopy(), KSPSetOperators(), PCSetOperators() 241 E*/ 242 typedef enum {DIFFERENT_NONZERO_PATTERN,SUBSET_NONZERO_PATTERN,SAME_NONZERO_PATTERN,SAME_PRECONDITIONER} MatStructure; 243 244 extern PetscErrorCode MatCreateSeqDense(MPI_Comm,PetscInt,PetscInt,PetscScalar[],Mat*); 245 extern PetscErrorCode MatCreateDense(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscScalar[],Mat*); 246 extern PetscErrorCode MatCreateSeqAIJ(MPI_Comm,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 247 PetscPolymorphicFunction(MatCreateSeqAIJ,(PetscInt m,PetscInt n,PetscInt nz,const PetscInt nnz[]),(PETSC_COMM_SELF,m,n,nz,nnz,&A),Mat,A) 248 PetscPolymorphicFunction(MatCreateSeqAIJ,(PetscInt m,PetscInt n,PetscInt nz),(PETSC_COMM_SELF,m,n,nz,PETSC_NULL,&A),Mat,A) 249 PetscPolymorphicFunction(MatCreateSeqAIJ,(PetscInt m,PetscInt n,const PetscInt nnz[]),(PETSC_COMM_SELF,m,n,0,nnz,&A),Mat,A) 250 PetscPolymorphicFunction(MatCreateSeqAIJ,(PetscInt m,PetscInt n),(PETSC_COMM_SELF,m,n,0,PETSC_NULL,&A),Mat,A) 251 PetscPolymorphicSubroutine(MatCreateSeqAIJ,(PetscInt m,PetscInt n,PetscInt nz,Mat *A),(PETSC_COMM_SELF,m,n,nz,PETSC_NULL,A)) 252 PetscPolymorphicSubroutine(MatCreateSeqAIJ,(PetscInt m,PetscInt n,const PetscInt nnz[],Mat *A),(PETSC_COMM_SELF,m,n,0,nnz,A)) 253 PetscPolymorphicSubroutine(MatCreateSeqAIJ,(PetscInt m,PetscInt n,Mat *A),(PETSC_COMM_SELF,m,n,0,PETSC_NULL,A)) 254 extern PetscErrorCode MatCreateAIJ(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 255 PetscPolymorphicFunction(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[]),(comm,m,n,M,N,nz,nnz,onz,onnz,&A),Mat,A) 256 PetscPolymorphicFunction(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz),(comm,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,&A),Mat,A) 257 PetscPolymorphicFunction(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[]),(comm,m,n,M,N,0,nnz,0,onz,&A),Mat,A) 258 PetscPolymorphicFunction(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N),(comm,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,&A),Mat,A) 259 PetscPolymorphicSubroutine(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz,Mat *A),(comm,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,A)) 260 PetscPolymorphicSubroutine(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[],Mat *A),(comm,m,n,M,N,0,nnz,0,onz,A)) 261 PetscPolymorphicSubroutine(MatCreateAIJ,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *A),(comm,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,A)) 262 PetscPolymorphicFunction(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[]),(PETSC_COMM_WORLD,m,n,M,N,nz,nnz,onz,onnz,&A),Mat,A) 263 PetscPolymorphicFunction(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz),(PETSC_COMM_WORLD,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,&A),Mat,A) 264 PetscPolymorphicFunction(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[]),(PETSC_COMM_WORLD,m,n,M,N,0,nnz,0,onz,&A),Mat,A) 265 PetscPolymorphicFunction(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N),(PETSC_COMM_WORLD,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,&A),Mat,A) 266 PetscPolymorphicSubroutine(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz,Mat *A),(PETSC_COMM_WORLD,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,A)) 267 PetscPolymorphicSubroutine(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[],Mat *A),(PETSC_COMM_WORLD,m,n,M,N,0,nnz,0,onz,A)) 268 PetscPolymorphicSubroutine(MatCreateAIJ,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *A),(PETSC_COMM_WORLD,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,A)) 269 extern PetscErrorCode MatCreateMPIAIJWithArrays(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],const PetscInt[],const PetscScalar[],Mat *); 270 extern PetscErrorCode MatCreateMPIAIJWithSplitArrays(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt[],PetscInt[],PetscScalar[],PetscInt[],PetscInt[],PetscScalar[],Mat*); 271 272 extern PetscErrorCode MatCreateSeqBAIJ(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 273 PetscPolymorphicFunction(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt nz,const PetscInt nnz[]),(PETSC_COMM_SELF,bs,m,n,nz,nnz,&A),Mat,A) 274 PetscPolymorphicFunction(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt nz),(PETSC_COMM_SELF,bs,m,n,nz,PETSC_NULL,&A),Mat,A) 275 PetscPolymorphicFunction(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n,const PetscInt nnz[]),(PETSC_COMM_SELF,bs,m,n,0,nnz,&A),Mat,A) 276 PetscPolymorphicFunction(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n),(PETSC_COMM_SELF,bs,m,n,0,PETSC_NULL,&A),Mat,A) 277 PetscPolymorphicSubroutine(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt nz,Mat *A),(PETSC_COMM_SELF,bs,m,n,nz,PETSC_NULL,A)) 278 PetscPolymorphicSubroutine(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n,const PetscInt nnz[],Mat *A),(PETSC_COMM_SELF,bs,m,n,0,nnz,A)) 279 PetscPolymorphicSubroutine(MatCreateSeqBAIJ,(PetscInt bs,PetscInt m,PetscInt n,Mat *A),(PETSC_COMM_SELF,bs,m,n,0,PETSC_NULL,A)) 280 extern PetscErrorCode MatCreateBAIJ(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 281 PetscPolymorphicFunction(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[]),(comm,bs,m,n,M,N,nz,nnz,onz,onnz,&A),Mat,A) 282 PetscPolymorphicFunction(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz),(comm,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,&A),Mat,A) 283 PetscPolymorphicFunction(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[]),(comm,bs,m,n,M,N,0,nnz,0,onz,&A),Mat,A) 284 PetscPolymorphicFunction(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N),(comm,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,&A),Mat,A) 285 PetscPolymorphicSubroutine(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz,Mat *A),(comm,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,A)) 286 PetscPolymorphicSubroutine(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[],Mat *A),(comm,bs,m,n,M,N,0,nnz,0,onz,A)) 287 PetscPolymorphicSubroutine(MatCreateBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *A),(comm,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,A)) 288 PetscPolymorphicFunction(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[]),(PETSC_COMM_WORLD,bs,m,n,M,N,nz,nnz,onz,onnz,&A),Mat,A) 289 PetscPolymorphicFunction(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz),(PETSC_COMM_WORLD,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,&A),Mat,A) 290 PetscPolymorphicFunction(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[]),(PETSC_COMM_WORLD,bs,m,n,M,N,0,nnz,0,onz,&A),Mat,A) 291 PetscPolymorphicFunction(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N),(PETSC_COMM_WORLD,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,&A),Mat,A) 292 PetscPolymorphicSubroutine(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz,Mat *A),(PETSC_COMM_WORLD,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,A)) 293 PetscPolymorphicSubroutine(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[],Mat *A),(PETSC_COMM_WORLD,bs,m,n,M,N,0,nnz,0,onz,A)) 294 PetscPolymorphicSubroutine(MatCreateBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *A),(PETSC_COMM_WORLD,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,A)) 295 extern PetscErrorCode MatCreateMPIBAIJWithArrays(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],const PetscInt[],const PetscScalar[],Mat*); 296 297 extern PetscErrorCode MatCreateMPIAdj(MPI_Comm,PetscInt,PetscInt,PetscInt[],PetscInt[],PetscInt[],Mat*); 298 extern PetscErrorCode MatCreateSeqSBAIJ(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 299 PetscPolymorphicFunction(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt nz,const PetscInt nnz[]),(PETSC_COMM_SELF,bs,m,n,nz,nnz,&A),Mat,A) 300 PetscPolymorphicFunction(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt nz),(PETSC_COMM_SELF,bs,m,n,nz,PETSC_NULL,&A),Mat,A) 301 PetscPolymorphicFunction(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,const PetscInt nnz[]),(PETSC_COMM_SELF,bs,m,n,0,nnz,&A),Mat,A) 302 PetscPolymorphicFunction(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n),(PETSC_COMM_SELF,bs,m,n,0,PETSC_NULL,&A),Mat,A) 303 PetscPolymorphicSubroutine(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt nz,Mat *A),(PETSC_COMM_SELF,bs,m,n,nz,PETSC_NULL,A)) 304 PetscPolymorphicSubroutine(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,const PetscInt nnz[],Mat *A),(PETSC_COMM_SELF,bs,m,n,0,nnz,A)) 305 PetscPolymorphicSubroutine(MatCreateSeqSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,Mat *A),(PETSC_COMM_SELF,bs,m,n,0,PETSC_NULL,A)) 306 307 extern PetscErrorCode MatCreateSBAIJ(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 308 PetscPolymorphicFunction(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[]),(comm,bs,m,n,M,N,nz,nnz,onz,onnz,&A),Mat,A) 309 PetscPolymorphicFunction(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz),(comm,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,&A),Mat,A) 310 PetscPolymorphicFunction(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[]),(comm,bs,m,n,M,N,0,nnz,0,onz,&A),Mat,A) 311 PetscPolymorphicFunction(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N),(comm,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,&A),Mat,A) 312 PetscPolymorphicSubroutine(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz,Mat *A),(comm,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,A)) 313 PetscPolymorphicSubroutine(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[],Mat *A),(comm,bs,m,n,M,N,0,nnz,0,onz,A)) 314 PetscPolymorphicSubroutine(MatCreateSBAIJ,(MPI_Comm comm,PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *A),(comm,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,A)) 315 PetscPolymorphicFunction(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,const PetscInt nnz[],PetscInt onz,const PetscInt onnz[]),(PETSC_COMM_WORLD,bs,m,n,M,N,nz,nnz,onz,onnz,&A),Mat,A) 316 PetscPolymorphicFunction(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz),(PETSC_COMM_WORLD,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,&A),Mat,A) 317 PetscPolymorphicFunction(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[]),(PETSC_COMM_WORLD,bs,m,n,M,N,0,nnz,0,onz,&A),Mat,A) 318 PetscPolymorphicFunction(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N),(PETSC_COMM_WORLD,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,&A),Mat,A) 319 PetscPolymorphicSubroutine(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,PetscInt nz,PetscInt nnz,Mat *A),(PETSC_COMM_WORLD,bs,m,n,M,N,nz,PETSC_NULL,nnz,PETSC_NULL,A)) 320 PetscPolymorphicSubroutine(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,const PetscInt nnz[],const PetscInt onz[],Mat *A),(PETSC_COMM_WORLD,bs,m,n,M,N,0,nnz,0,onz,A)) 321 PetscPolymorphicSubroutine(MatCreateSBAIJ,(PetscInt bs,PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *A),(PETSC_COMM_WORLD,bs,m,n,M,N,0,PETSC_NULL,0,PETSC_NULL,A)) 322 extern PetscErrorCode MatCreateMPISBAIJWithArrays(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],const PetscInt[],const PetscScalar[],Mat *); 323 extern PetscErrorCode MatMPISBAIJSetPreallocationCSR(Mat,PetscInt,const PetscInt[],const PetscInt[],const PetscScalar[]); 324 extern PetscErrorCode MatXAIJSetPreallocation(Mat,PetscInt,const PetscInt*,const PetscInt*,const PetscInt*,const PetscInt*); 325 326 extern PetscErrorCode MatCreateShell(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,void *,Mat*); 327 PetscPolymorphicFunction(MatCreateShell,(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,void *ctx),(comm,m,n,M,N,ctx,&A),Mat,A) 328 PetscPolymorphicFunction(MatCreateShell,(PetscInt m,PetscInt n,PetscInt M,PetscInt N,void *ctx),(PETSC_COMM_WORLD,m,n,M,N,ctx,&A),Mat,A) 329 extern PetscErrorCode MatCreateAdic(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,void (*)(void),Mat*); 330 extern PetscErrorCode MatCreateNormal(Mat,Mat*); 331 PetscPolymorphicFunction(MatCreateNormal,(Mat mat),(mat,&A),Mat,A) 332 extern PetscErrorCode MatCreateLRC(Mat,Mat,Mat,Mat*); 333 extern PetscErrorCode MatCreateIS(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,ISLocalToGlobalMapping,Mat*); 334 extern PetscErrorCode MatCreateSeqAIJCRL(MPI_Comm,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 335 extern PetscErrorCode MatCreateMPIAIJCRL(MPI_Comm,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 336 337 extern PetscErrorCode MatCreateSeqBSTRM(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 338 extern PetscErrorCode MatCreateMPIBSTRM(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 339 extern PetscErrorCode MatCreateSeqSBSTRM(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 340 extern PetscErrorCode MatCreateMPISBSTRM(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 341 342 extern PetscErrorCode MatCreateScatter(MPI_Comm,VecScatter,Mat*); 343 extern PetscErrorCode MatScatterSetVecScatter(Mat,VecScatter); 344 extern PetscErrorCode MatScatterGetVecScatter(Mat,VecScatter*); 345 extern PetscErrorCode MatCreateBlockMat(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt*,Mat*); 346 extern PetscErrorCode MatCompositeAddMat(Mat,Mat); 347 extern PetscErrorCode MatCompositeMerge(Mat); 348 extern PetscErrorCode MatCreateComposite(MPI_Comm,PetscInt,const Mat*,Mat*); 349 typedef enum {MAT_COMPOSITE_ADDITIVE,MAT_COMPOSITE_MULTIPLICATIVE} MatCompositeType; 350 extern PetscErrorCode MatCompositeSetType(Mat,MatCompositeType); 351 352 extern PetscErrorCode MatCreateFFT(MPI_Comm,PetscInt,const PetscInt[],const MatType,Mat*); 353 extern PetscErrorCode MatCreateSeqCUFFT(MPI_Comm,PetscInt,const PetscInt[],Mat*); 354 355 extern PetscErrorCode MatCreateTranspose(Mat,Mat*); 356 extern PetscErrorCode MatCreateSubMatrix(Mat,IS,IS,Mat*); 357 extern PetscErrorCode MatSubMatrixUpdate(Mat,Mat,IS,IS); 358 extern PetscErrorCode MatCreateLocalRef(Mat,IS,IS,Mat*); 359 360 extern PetscErrorCode MatPythonSetType(Mat,const char[]); 361 362 extern PetscErrorCode MatSetUp(Mat); 363 extern PetscErrorCode MatDestroy(Mat*); 364 365 extern PetscErrorCode MatConjugate(Mat); 366 extern PetscErrorCode MatRealPart(Mat); 367 extern PetscErrorCode MatImaginaryPart(Mat); 368 extern PetscErrorCode MatGetDiagonalBlock(Mat,Mat*); 369 extern PetscErrorCode MatGetTrace(Mat,PetscScalar*); 370 extern PetscErrorCode MatInvertBlockDiagonal(Mat,PetscScalar **); 371 372 /* ------------------------------------------------------------*/ 373 extern PetscErrorCode MatSetValues(Mat,PetscInt,const PetscInt[],PetscInt,const PetscInt[],const PetscScalar[],InsertMode); 374 extern PetscErrorCode MatSetValuesBlocked(Mat,PetscInt,const PetscInt[],PetscInt,const PetscInt[],const PetscScalar[],InsertMode); 375 extern PetscErrorCode MatSetValuesRow(Mat,PetscInt,const PetscScalar[]); 376 extern PetscErrorCode MatSetValuesRowLocal(Mat,PetscInt,const PetscScalar[]); 377 extern PetscErrorCode MatSetValuesBatch(Mat,PetscInt,PetscInt,PetscInt[],const PetscScalar[]); 378 379 /*S 380 MatStencil - Data structure (C struct) for storing information about a single row or 381 column of a matrix as indexed on an associated grid. 382 383 Fortran usage is different, see MatSetValuesStencil() for details. 384 385 Level: beginner 386 387 Concepts: matrix; linear operator 388 389 .seealso: MatSetValuesStencil(), MatSetStencil(), MatSetValuesBlockedStencil() 390 S*/ 391 typedef struct { 392 PetscInt k,j,i,c; 393 } MatStencil; 394 395 extern PetscErrorCode MatSetValuesStencil(Mat,PetscInt,const MatStencil[],PetscInt,const MatStencil[],const PetscScalar[],InsertMode); 396 extern PetscErrorCode MatSetValuesBlockedStencil(Mat,PetscInt,const MatStencil[],PetscInt,const MatStencil[],const PetscScalar[],InsertMode); 397 extern PetscErrorCode MatSetStencil(Mat,PetscInt,const PetscInt[],const PetscInt[],PetscInt); 398 399 extern PetscErrorCode MatSetColoring(Mat,ISColoring); 400 extern PetscErrorCode MatSetValuesAdic(Mat,void*); 401 extern PetscErrorCode MatSetValuesAdifor(Mat,PetscInt,void*); 402 403 /*E 404 MatAssemblyType - Indicates if the matrix is now to be used, or if you plan 405 to continue to add values to it 406 407 Level: beginner 408 409 .seealso: MatAssemblyBegin(), MatAssemblyEnd() 410 E*/ 411 typedef enum {MAT_FLUSH_ASSEMBLY=1,MAT_FINAL_ASSEMBLY=0} MatAssemblyType; 412 extern PetscErrorCode MatAssemblyBegin(Mat,MatAssemblyType); 413 extern PetscErrorCode MatAssemblyEnd(Mat,MatAssemblyType); 414 extern PetscErrorCode MatAssembled(Mat,PetscBool *); 415 416 417 418 /*E 419 MatOption - Options that may be set for a matrix and its behavior or storage 420 421 Level: beginner 422 423 Any additions/changes here MUST also be made in include/finclude/petscmat.h 424 425 .seealso: MatSetOption() 426 E*/ 427 typedef enum {MAT_ROW_ORIENTED,MAT_NEW_NONZERO_LOCATIONS, 428 MAT_SYMMETRIC, 429 MAT_STRUCTURALLY_SYMMETRIC, 430 MAT_NEW_DIAGONALS,MAT_IGNORE_OFF_PROC_ENTRIES, 431 MAT_NEW_NONZERO_LOCATION_ERR, 432 MAT_NEW_NONZERO_ALLOCATION_ERR,MAT_USE_HASH_TABLE, 433 MAT_KEEP_NONZERO_PATTERN,MAT_IGNORE_ZERO_ENTRIES, 434 MAT_USE_INODES, 435 MAT_HERMITIAN, 436 MAT_SYMMETRY_ETERNAL, 437 MAT_CHECK_COMPRESSED_ROW, 438 MAT_IGNORE_LOWER_TRIANGULAR,MAT_ERROR_LOWER_TRIANGULAR, 439 MAT_GETROW_UPPERTRIANGULAR,MAT_UNUSED_NONZERO_LOCATION_ERR, 440 MAT_SPD,MAT_NO_OFF_PROC_ENTRIES,MAT_NO_OFF_PROC_ZERO_ROWS, 441 NUM_MAT_OPTIONS} MatOption; 442 extern const char *MatOptions[]; 443 extern PetscErrorCode MatSetOption(Mat,MatOption,PetscBool ); 444 extern PetscErrorCode MatGetType(Mat,const MatType*); 445 PetscPolymorphicFunction(MatGetType,(Mat mat),(mat,&t),const MatType,t) 446 447 extern PetscErrorCode MatGetValues(Mat,PetscInt,const PetscInt[],PetscInt,const PetscInt[],PetscScalar[]); 448 extern PetscErrorCode MatGetRow(Mat,PetscInt,PetscInt *,const PetscInt *[],const PetscScalar*[]); 449 extern PetscErrorCode MatRestoreRow(Mat,PetscInt,PetscInt *,const PetscInt *[],const PetscScalar*[]); 450 extern PetscErrorCode MatGetRowUpperTriangular(Mat); 451 extern PetscErrorCode MatRestoreRowUpperTriangular(Mat); 452 extern PetscErrorCode MatGetColumn(Mat,PetscInt,PetscInt *,const PetscInt *[],const PetscScalar*[]); 453 extern PetscErrorCode MatRestoreColumn(Mat,PetscInt,PetscInt *,const PetscInt *[],const PetscScalar*[]); 454 extern PetscErrorCode MatGetColumnVector(Mat,Vec,PetscInt); 455 extern PetscErrorCode MatGetArray(Mat,PetscScalar *[]); 456 PetscPolymorphicFunction(MatGetArray,(Mat mat),(mat,&a),PetscScalar*,a) 457 extern PetscErrorCode MatRestoreArray(Mat,PetscScalar *[]); 458 extern PetscErrorCode MatGetBlockSize(Mat,PetscInt *); 459 PetscPolymorphicFunction(MatGetBlockSize,(Mat mat),(mat,&a),PetscInt,a) 460 extern PetscErrorCode MatSetBlockSize(Mat,PetscInt); 461 extern PetscErrorCode MatSetNThreads(Mat,PetscInt); 462 extern PetscErrorCode MatGetNThreads(Mat,PetscInt*); 463 464 extern PetscErrorCode MatMult(Mat,Vec,Vec); 465 extern PetscErrorCode MatMultDiagonalBlock(Mat,Vec,Vec); 466 extern PetscErrorCode MatMultAdd(Mat,Vec,Vec,Vec); 467 PetscPolymorphicSubroutine(MatMultAdd,(Mat A,Vec x,Vec y),(A,x,y,y)) 468 extern PetscErrorCode MatMultTranspose(Mat,Vec,Vec); 469 extern PetscErrorCode MatMultHermitianTranspose(Mat,Vec,Vec); 470 extern PetscErrorCode MatIsTranspose(Mat,Mat,PetscReal,PetscBool *); 471 PetscPolymorphicFunction(MatIsTranspose,(Mat A,Mat B,PetscReal tol),(A,B,tol,&t),PetscBool ,t) 472 PetscPolymorphicFunction(MatIsTranspose,(Mat A,Mat B),(A,B,0,&t),PetscBool ,t) 473 extern PetscErrorCode MatIsHermitianTranspose(Mat,Mat,PetscReal,PetscBool *); 474 extern PetscErrorCode MatMultTransposeAdd(Mat,Vec,Vec,Vec); 475 extern PetscErrorCode MatMultHermitianTransposeAdd(Mat,Vec,Vec,Vec); 476 PetscPolymorphicSubroutine(MatMultTransposeAdd,(Mat A,Vec x,Vec y),(A,x,y,y)) 477 extern PetscErrorCode MatMultConstrained(Mat,Vec,Vec); 478 extern PetscErrorCode MatMultTransposeConstrained(Mat,Vec,Vec); 479 extern PetscErrorCode MatMatSolve(Mat,Mat,Mat); 480 481 /*E 482 MatDuplicateOption - Indicates if a duplicated sparse matrix should have 483 its numerical values copied over or just its nonzero structure. 484 485 Level: beginner 486 487 Any additions/changes here MUST also be made in include/finclude/petscmat.h 488 489 $ MAT_SHARE_NONZERO_PATTERN - the i and j arrays in the new matrix will be shared with the original matrix 490 $ this also triggers the MAT_DO_NOT_COPY_VALUES option. This is used when you 491 $ have several matrices with the same nonzero pattern. 492 493 .seealso: MatDuplicate() 494 E*/ 495 typedef enum {MAT_DO_NOT_COPY_VALUES,MAT_COPY_VALUES,MAT_SHARE_NONZERO_PATTERN} MatDuplicateOption; 496 497 extern PetscErrorCode MatConvert(Mat,const MatType,MatReuse,Mat*); 498 PetscPolymorphicFunction(MatConvert,(Mat A,const MatType t),(A,t,MAT_INITIAL_MATRIX,&a),Mat,a) 499 extern PetscErrorCode MatDuplicate(Mat,MatDuplicateOption,Mat*); 500 PetscPolymorphicFunction(MatDuplicate,(Mat A,MatDuplicateOption o),(A,o,&a),Mat,a) 501 PetscPolymorphicFunction(MatDuplicate,(Mat A),(A,MAT_COPY_VALUES,&a),Mat,a) 502 503 504 extern PetscErrorCode MatCopy(Mat,Mat,MatStructure); 505 extern PetscErrorCode MatView(Mat,PetscViewer); 506 extern PetscErrorCode MatIsSymmetric(Mat,PetscReal,PetscBool *); 507 PetscPolymorphicFunction(MatIsSymmetric,(Mat A,PetscReal tol),(A,tol,&t),PetscBool ,t) 508 PetscPolymorphicFunction(MatIsSymmetric,(Mat A),(A,0,&t),PetscBool ,t) 509 extern PetscErrorCode MatIsStructurallySymmetric(Mat,PetscBool *); 510 PetscPolymorphicFunction(MatIsStructurallySymmetric,(Mat A),(A,&t),PetscBool ,t) 511 extern PetscErrorCode MatIsHermitian(Mat,PetscReal,PetscBool *); 512 PetscPolymorphicFunction(MatIsHermitian,(Mat A),(A,0,&t),PetscBool ,t) 513 extern PetscErrorCode MatIsSymmetricKnown(Mat,PetscBool *,PetscBool *); 514 extern PetscErrorCode MatIsHermitianKnown(Mat,PetscBool *,PetscBool *); 515 extern PetscErrorCode MatMissingDiagonal(Mat,PetscBool *,PetscInt *); 516 extern PetscErrorCode MatLoad(Mat, PetscViewer); 517 518 extern PetscErrorCode MatGetRowIJ(Mat,PetscInt,PetscBool ,PetscBool ,PetscInt*,PetscInt *[],PetscInt *[],PetscBool *); 519 extern PetscErrorCode MatRestoreRowIJ(Mat,PetscInt,PetscBool ,PetscBool ,PetscInt *,PetscInt *[],PetscInt *[],PetscBool *); 520 extern PetscErrorCode MatGetColumnIJ(Mat,PetscInt,PetscBool ,PetscBool ,PetscInt*,PetscInt *[],PetscInt *[],PetscBool *); 521 extern PetscErrorCode MatRestoreColumnIJ(Mat,PetscInt,PetscBool ,PetscBool ,PetscInt *,PetscInt *[],PetscInt *[],PetscBool *); 522 523 /*S 524 MatInfo - Context of matrix information, used with MatGetInfo() 525 526 In Fortran this is simply a double precision array of dimension MAT_INFO_SIZE 527 528 Level: intermediate 529 530 Concepts: matrix^nonzero information 531 532 .seealso: MatGetInfo(), MatInfoType 533 S*/ 534 typedef struct { 535 PetscLogDouble block_size; /* block size */ 536 PetscLogDouble nz_allocated,nz_used,nz_unneeded; /* number of nonzeros */ 537 PetscLogDouble memory; /* memory allocated */ 538 PetscLogDouble assemblies; /* number of matrix assemblies called */ 539 PetscLogDouble mallocs; /* number of mallocs during MatSetValues() */ 540 PetscLogDouble fill_ratio_given,fill_ratio_needed; /* fill ratio for LU/ILU */ 541 PetscLogDouble factor_mallocs; /* number of mallocs during factorization */ 542 } MatInfo; 543 544 /*E 545 MatInfoType - Indicates if you want information about the local part of the matrix, 546 the entire parallel matrix or the maximum over all the local parts. 547 548 Level: beginner 549 550 Any additions/changes here MUST also be made in include/finclude/petscmat.h 551 552 .seealso: MatGetInfo(), MatInfo 553 E*/ 554 typedef enum {MAT_LOCAL=1,MAT_GLOBAL_MAX=2,MAT_GLOBAL_SUM=3} MatInfoType; 555 extern PetscErrorCode MatGetInfo(Mat,MatInfoType,MatInfo*); 556 extern PetscErrorCode MatGetDiagonal(Mat,Vec); 557 extern PetscErrorCode MatGetRowMax(Mat,Vec,PetscInt[]); 558 extern PetscErrorCode MatGetRowMin(Mat,Vec,PetscInt[]); 559 extern PetscErrorCode MatGetRowMaxAbs(Mat,Vec,PetscInt[]); 560 extern PetscErrorCode MatGetRowMinAbs(Mat,Vec,PetscInt[]); 561 extern PetscErrorCode MatGetRowSum(Mat,Vec); 562 extern PetscErrorCode MatTranspose(Mat,MatReuse,Mat*); 563 PetscPolymorphicFunction(MatTranspose,(Mat A),(A,MAT_INITIAL_MATRIX,&t),Mat,t) 564 extern PetscErrorCode MatHermitianTranspose(Mat,MatReuse,Mat*); 565 extern PetscErrorCode MatPermute(Mat,IS,IS,Mat *); 566 PetscPolymorphicFunction(MatPermute,(Mat A,IS is1,IS is2),(A,is1,is2,&t),Mat,t) 567 extern PetscErrorCode MatDiagonalScale(Mat,Vec,Vec); 568 extern PetscErrorCode MatDiagonalSet(Mat,Vec,InsertMode); 569 extern PetscErrorCode MatEqual(Mat,Mat,PetscBool *); 570 PetscPolymorphicFunction(MatEqual,(Mat A,Mat B),(A,B,&t),PetscBool ,t) 571 extern PetscErrorCode MatMultEqual(Mat,Mat,PetscInt,PetscBool *); 572 extern PetscErrorCode MatMultAddEqual(Mat,Mat,PetscInt,PetscBool *); 573 extern PetscErrorCode MatMultTransposeEqual(Mat,Mat,PetscInt,PetscBool *); 574 extern PetscErrorCode MatMultTransposeAddEqual(Mat,Mat,PetscInt,PetscBool *); 575 576 extern PetscErrorCode MatNorm(Mat,NormType,PetscReal *); 577 PetscPolymorphicFunction(MatNorm,(Mat A,NormType t),(A,t,&n),PetscReal,n) 578 extern PetscErrorCode MatGetColumnNorms(Mat,NormType,PetscReal *); 579 extern PetscErrorCode MatZeroEntries(Mat); 580 extern PetscErrorCode MatZeroRows(Mat,PetscInt,const PetscInt [],PetscScalar,Vec,Vec); 581 extern PetscErrorCode MatZeroRowsIS(Mat,IS,PetscScalar,Vec,Vec); 582 extern PetscErrorCode MatZeroRowsStencil(Mat,PetscInt,const MatStencil [],PetscScalar,Vec,Vec); 583 extern PetscErrorCode MatZeroRowsColumnsStencil(Mat,PetscInt,const MatStencil[],PetscScalar,Vec,Vec); 584 extern PetscErrorCode MatZeroRowsColumns(Mat,PetscInt,const PetscInt [],PetscScalar,Vec,Vec); 585 extern PetscErrorCode MatZeroRowsColumnsIS(Mat,IS,PetscScalar,Vec,Vec); 586 587 extern PetscErrorCode MatUseScaledForm(Mat,PetscBool ); 588 extern PetscErrorCode MatScaleSystem(Mat,Vec,Vec); 589 extern PetscErrorCode MatUnScaleSystem(Mat,Vec,Vec); 590 591 extern PetscErrorCode MatGetSize(Mat,PetscInt*,PetscInt*); 592 extern PetscErrorCode MatGetLocalSize(Mat,PetscInt*,PetscInt*); 593 extern PetscErrorCode MatGetOwnershipRange(Mat,PetscInt*,PetscInt*); 594 extern PetscErrorCode MatGetOwnershipRanges(Mat,const PetscInt**); 595 extern PetscErrorCode MatGetOwnershipRangeColumn(Mat,PetscInt*,PetscInt*); 596 extern PetscErrorCode MatGetOwnershipRangesColumn(Mat,const PetscInt**); 597 598 extern PetscErrorCode MatGetSubMatrices(Mat,PetscInt,const IS[],const IS[],MatReuse,Mat *[]); 599 extern PetscErrorCode MatGetSubMatricesParallel(Mat,PetscInt,const IS[],const IS[],MatReuse,Mat *[]); 600 extern PetscErrorCode MatDestroyMatrices(PetscInt,Mat *[]); 601 extern PetscErrorCode MatGetSubMatrix(Mat,IS,IS,MatReuse,Mat *); 602 extern PetscErrorCode MatGetLocalSubMatrix(Mat,IS,IS,Mat*); 603 extern PetscErrorCode MatRestoreLocalSubMatrix(Mat,IS,IS,Mat*); 604 extern PetscErrorCode MatGetSeqNonzeroStructure(Mat,Mat*); 605 extern PetscErrorCode MatDestroySeqNonzeroStructure(Mat*); 606 607 extern PetscErrorCode MatMerge(MPI_Comm,Mat,PetscInt,MatReuse,Mat*); 608 extern PetscErrorCode MatMergeSymbolic(MPI_Comm,Mat,PetscInt,Mat*); 609 extern PetscErrorCode MatMergeNumeric(MPI_Comm,Mat,PetscInt,Mat); 610 extern PetscErrorCode MatMerge_SeqsToMPI(MPI_Comm,Mat,PetscInt,PetscInt,MatReuse,Mat*); 611 extern PetscErrorCode MatMerge_SeqsToMPISymbolic(MPI_Comm,Mat,PetscInt,PetscInt,Mat*); 612 extern PetscErrorCode MatMerge_SeqsToMPINumeric(Mat,Mat); 613 extern PetscErrorCode MatMPIAIJGetLocalMat(Mat,MatReuse,Mat*); 614 extern PetscErrorCode MatMPIAIJGetLocalMatCondensed(Mat,MatReuse,IS*,IS*,Mat*); 615 extern PetscErrorCode MatGetBrowsOfAcols(Mat,Mat,MatReuse,IS*,IS*,Mat*); 616 #if defined (PETSC_USE_CTABLE) 617 extern PetscErrorCode MatGetCommunicationStructs(Mat, Vec *, PetscTable *, VecScatter *); 618 #else 619 extern PetscErrorCode MatGetCommunicationStructs(Mat, Vec *, PetscInt *[], VecScatter *); 620 #endif 621 extern PetscErrorCode MatGetGhosts(Mat, PetscInt *,const PetscInt *[]); 622 623 extern PetscErrorCode MatIncreaseOverlap(Mat,PetscInt,IS[],PetscInt); 624 625 extern PetscErrorCode MatMatMult(Mat,Mat,MatReuse,PetscReal,Mat*); 626 extern PetscErrorCode MatMatMultSymbolic(Mat,Mat,PetscReal,Mat*); 627 extern PetscErrorCode MatMatMultNumeric(Mat,Mat,Mat); 628 629 extern PetscErrorCode MatPtAP(Mat,Mat,MatReuse,PetscReal,Mat*); 630 extern PetscErrorCode MatPtAPSymbolic(Mat,Mat,PetscReal,Mat*); 631 extern PetscErrorCode MatPtAPNumeric(Mat,Mat,Mat); 632 extern PetscErrorCode MatRARt(Mat,Mat,MatReuse,PetscReal,Mat*); 633 extern PetscErrorCode MatRARtSymbolic(Mat,Mat,PetscReal,Mat*); 634 extern PetscErrorCode MatRARtNumeric(Mat,Mat,Mat); 635 636 extern PetscErrorCode MatTransposeMatMult(Mat,Mat,MatReuse,PetscReal,Mat*); 637 extern PetscErrorCode MatTransposetMatMultSymbolic(Mat,Mat,PetscReal,Mat*); 638 extern PetscErrorCode MatTransposetMatMultNumeric(Mat,Mat,Mat); 639 extern PetscErrorCode MatMatTransposeMult(Mat,Mat,MatReuse,PetscReal,Mat*); 640 extern PetscErrorCode MatMatTransposeMultSymbolic(Mat,Mat,PetscReal,Mat*); 641 extern PetscErrorCode MatMatTransposeMultNumeric(Mat,Mat,Mat); 642 643 extern PetscErrorCode MatAXPY(Mat,PetscScalar,Mat,MatStructure); 644 extern PetscErrorCode MatAYPX(Mat,PetscScalar,Mat,MatStructure); 645 646 extern PetscErrorCode MatScale(Mat,PetscScalar); 647 extern PetscErrorCode MatShift(Mat,PetscScalar); 648 649 extern PetscErrorCode MatSetLocalToGlobalMapping(Mat,ISLocalToGlobalMapping,ISLocalToGlobalMapping); 650 extern PetscErrorCode MatSetLocalToGlobalMappingBlock(Mat,ISLocalToGlobalMapping,ISLocalToGlobalMapping); 651 extern PetscErrorCode MatGetLocalToGlobalMapping(Mat,ISLocalToGlobalMapping*,ISLocalToGlobalMapping*); 652 extern PetscErrorCode MatGetLocalToGlobalMappingBlock(Mat,ISLocalToGlobalMapping*,ISLocalToGlobalMapping*); 653 extern PetscErrorCode MatZeroRowsLocal(Mat,PetscInt,const PetscInt [],PetscScalar,Vec,Vec); 654 extern PetscErrorCode MatZeroRowsLocalIS(Mat,IS,PetscScalar,Vec,Vec); 655 extern PetscErrorCode MatZeroRowsColumnsLocal(Mat,PetscInt,const PetscInt [],PetscScalar,Vec,Vec); 656 extern PetscErrorCode MatZeroRowsColumnsLocalIS(Mat,IS,PetscScalar,Vec,Vec); 657 extern PetscErrorCode MatSetValuesLocal(Mat,PetscInt,const PetscInt[],PetscInt,const PetscInt[],const PetscScalar[],InsertMode); 658 extern PetscErrorCode MatSetValuesBlockedLocal(Mat,PetscInt,const PetscInt[],PetscInt,const PetscInt[],const PetscScalar[],InsertMode); 659 660 extern PetscErrorCode MatStashSetInitialSize(Mat,PetscInt,PetscInt); 661 extern PetscErrorCode MatStashGetInfo(Mat,PetscInt*,PetscInt*,PetscInt*,PetscInt*); 662 663 extern PetscErrorCode MatInterpolate(Mat,Vec,Vec); 664 extern PetscErrorCode MatInterpolateAdd(Mat,Vec,Vec,Vec); 665 PetscPolymorphicSubroutine(MatInterpolateAdd,(Mat A,Vec x,Vec y),(A,x,y,y)) 666 extern PetscErrorCode MatRestrict(Mat,Vec,Vec); 667 extern PetscErrorCode MatGetVecs(Mat,Vec*,Vec*); 668 extern PetscErrorCode MatGetRedundantMatrix(Mat,PetscInt,MPI_Comm,PetscInt,MatReuse,Mat*); 669 extern PetscErrorCode MatGetMultiProcBlock(Mat,MPI_Comm,MatReuse,Mat*); 670 extern PetscErrorCode MatFindZeroDiagonals(Mat,IS*); 671 672 /*MC 673 MatSetValue - Set a single entry into a matrix. 674 675 Not collective 676 677 Input Parameters: 678 + m - the matrix 679 . row - the row location of the entry 680 . col - the column location of the entry 681 . value - the value to insert 682 - mode - either INSERT_VALUES or ADD_VALUES 683 684 Notes: 685 For efficiency one should use MatSetValues() and set several or many 686 values simultaneously if possible. 687 688 Level: beginner 689 690 .seealso: MatSetValues(), MatSetValueLocal() 691 M*/ 692 PETSC_STATIC_INLINE PetscErrorCode MatSetValue(Mat v,PetscInt i,PetscInt j,PetscScalar va,InsertMode mode) {return MatSetValues(v,1,&i,1,&j,&va,mode);} 693 694 PETSC_STATIC_INLINE PetscErrorCode MatGetValue(Mat v,PetscInt i,PetscInt j,PetscScalar *va) {return MatGetValues(v,1,&i,1,&j,va);} 695 696 PETSC_STATIC_INLINE PetscErrorCode MatSetValueLocal(Mat v,PetscInt i,PetscInt j,PetscScalar va,InsertMode mode) {return MatSetValuesLocal(v,1,&i,1,&j,&va,mode);} 697 698 /*MC 699 MatPreallocateInitialize - Begins the block of code that will count the number of nonzeros per 700 row in a matrix providing the data that one can use to correctly preallocate the matrix. 701 702 Synopsis: 703 PetscErrorCode MatPreallocateInitialize(MPI_Comm comm, PetscInt nrows, PetscInt ncols, PetscInt *dnz, PetscInt *onz) 704 705 Collective on MPI_Comm 706 707 Input Parameters: 708 + comm - the communicator that will share the eventually allocated matrix 709 . nrows - the number of LOCAL rows in the matrix 710 - ncols - the number of LOCAL columns in the matrix 711 712 Output Parameters: 713 + dnz - the array that will be passed to the matrix preallocation routines 714 - ozn - the other array passed to the matrix preallocation routines 715 716 717 Level: intermediate 718 719 Notes: 720 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 721 722 Do not malloc or free dnz and onz, that is handled internally by these routines 723 724 Use MatPreallocateInitializeSymmetric() for symmetric matrices (MPISBAIJ matrices) 725 726 This is a MACRO not a function because it has a leading { that is closed by PetscPreallocateFinalize(). 727 728 Concepts: preallocation^Matrix 729 730 .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(), 731 MatPreallocateInitializeSymmetric(), MatPreallocateSymmetricSetLocal() 732 M*/ 733 #define MatPreallocateInitialize(comm,nrows,ncols,dnz,onz) 0; \ 734 { \ 735 PetscErrorCode _4_ierr; PetscInt __nrows = (nrows),__ctmp = (ncols),__rstart,__start,__end; \ 736 _4_ierr = PetscMalloc2(__nrows,PetscInt,&dnz,__nrows,PetscInt,&onz);CHKERRQ(_4_ierr); \ 737 _4_ierr = PetscMemzero(dnz,__nrows*sizeof(PetscInt));CHKERRQ(_4_ierr);\ 738 _4_ierr = PetscMemzero(onz,__nrows*sizeof(PetscInt));CHKERRQ(_4_ierr);\ 739 _4_ierr = MPI_Scan(&__ctmp,&__end,1,MPIU_INT,MPI_SUM,comm);CHKERRQ(_4_ierr); __start = __end - __ctmp;\ 740 _4_ierr = MPI_Scan(&__nrows,&__rstart,1,MPIU_INT,MPI_SUM,comm);CHKERRQ(_4_ierr); __rstart = __rstart - __nrows; 741 742 /*MC 743 MatPreallocateSymmetricInitialize - Begins the block of code that will count the number of nonzeros per 744 row in a matrix providing the data that one can use to correctly preallocate the matrix. 745 746 Synopsis: 747 PetscErrorCode MatPreallocateSymmetricInitialize(MPI_Comm comm, PetscInt nrows, PetscInt ncols, PetscInt *dnz, PetscInt *onz) 748 749 Collective on MPI_Comm 750 751 Input Parameters: 752 + comm - the communicator that will share the eventually allocated matrix 753 . nrows - the number of LOCAL rows in the matrix 754 - ncols - the number of LOCAL columns in the matrix 755 756 Output Parameters: 757 + dnz - the array that will be passed to the matrix preallocation routines 758 - ozn - the other array passed to the matrix preallocation routines 759 760 761 Level: intermediate 762 763 Notes: 764 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 765 766 Do not malloc or free dnz and onz, that is handled internally by these routines 767 768 This is a MACRO not a function because it has a leading { that is closed by PetscPreallocateFinalize(). 769 770 Concepts: preallocation^Matrix 771 772 .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(), 773 MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal() 774 M*/ 775 #define MatPreallocateSymmetricInitialize(comm,nrows,ncols,dnz,onz) 0; \ 776 { \ 777 PetscErrorCode _4_ierr; PetscInt __nrows = (nrows),__ctmp = (ncols),__rstart,__end; \ 778 _4_ierr = PetscMalloc2(__nrows,PetscInt,&dnz,__nrows,PetscInt,&onz);CHKERRQ(_4_ierr); \ 779 _4_ierr = PetscMemzero(dnz,__nrows*sizeof(PetscInt));CHKERRQ(_4_ierr);\ 780 _4_ierr = PetscMemzero(onz,__nrows*sizeof(PetscInt));CHKERRQ(_4_ierr);\ 781 _4_ierr = MPI_Scan(&__ctmp,&__end,1,MPIU_INT,MPI_SUM,comm);CHKERRQ(_4_ierr);\ 782 _4_ierr = MPI_Scan(&__nrows,&__rstart,1,MPIU_INT,MPI_SUM,comm);CHKERRQ(_4_ierr); __rstart = __rstart - __nrows; 783 784 /*MC 785 MatPreallocateSetLocal - Indicates the locations (rows and columns) in the matrix where nonzeros will be 786 inserted using a local number of the rows and columns 787 788 Synopsis: 789 PetscErrorCode MatPreallocateSetLocal(ISLocalToGlobalMappping map,PetscInt nrows, PetscInt *rows,PetscInt ncols, PetscInt *cols,PetscInt *dnz, PetscInt *onz) 790 791 Not Collective 792 793 Input Parameters: 794 + map - the row mapping from local numbering to global numbering 795 . nrows - the number of rows indicated 796 . rows - the indices of the rows 797 . cmap - the column mapping from local to global numbering 798 . ncols - the number of columns in the matrix 799 . cols - the columns indicated 800 . dnz - the array that will be passed to the matrix preallocation routines 801 - ozn - the other array passed to the matrix preallocation routines 802 803 804 Level: intermediate 805 806 Notes: 807 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 808 809 Do not malloc or free dnz and onz, that is handled internally by these routines 810 811 Concepts: preallocation^Matrix 812 813 .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(), 814 MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal() 815 M*/ 816 #define MatPreallocateSetLocal(rmap,nrows,rows,cmap,ncols,cols,dnz,onz) 0; \ 817 {\ 818 PetscInt __l;\ 819 _4_ierr = ISLocalToGlobalMappingApply(rmap,nrows,rows,rows);CHKERRQ(_4_ierr);\ 820 _4_ierr = ISLocalToGlobalMappingApply(cmap,ncols,cols,cols);CHKERRQ(_4_ierr);\ 821 for (__l=0;__l<nrows;__l++) {\ 822 _4_ierr = MatPreallocateSet((rows)[__l],ncols,cols,dnz,onz);CHKERRQ(_4_ierr);\ 823 }\ 824 } 825 826 /*MC 827 MatPreallocateSymmetricSetLocal - Indicates the locations (rows and columns) in the matrix where nonzeros will be 828 inserted using a local number of the rows and columns 829 830 Synopsis: 831 PetscErrorCode MatPreallocateSymmetricSetLocal(ISLocalToGlobalMappping map,PetscInt nrows, PetscInt *rows,PetscInt ncols, PetscInt *cols,PetscInt *dnz, PetscInt *onz) 832 833 Not Collective 834 835 Input Parameters: 836 + map - the mapping between local numbering and global numbering 837 . nrows - the number of rows indicated 838 . rows - the indices of the rows 839 . ncols - the number of columns in the matrix 840 . cols - the columns indicated 841 . dnz - the array that will be passed to the matrix preallocation routines 842 - ozn - the other array passed to the matrix preallocation routines 843 844 845 Level: intermediate 846 847 Notes: 848 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 849 850 Do not malloc or free dnz and onz that is handled internally by these routines 851 852 Concepts: preallocation^Matrix 853 854 .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(), 855 MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal(), MatPreallocateSetLocal() 856 M*/ 857 #define MatPreallocateSymmetricSetLocal(map,nrows,rows,ncols,cols,dnz,onz) 0;\ 858 {\ 859 PetscInt __l;\ 860 _4_ierr = ISLocalToGlobalMappingApply(map,nrows,rows,rows);CHKERRQ(_4_ierr);\ 861 _4_ierr = ISLocalToGlobalMappingApply(map,ncols,cols,cols);CHKERRQ(_4_ierr);\ 862 for (__l=0;__l<nrows;__l++) {\ 863 _4_ierr = MatPreallocateSymmetricSet((rows)[__l],ncols,cols,dnz,onz);CHKERRQ(_4_ierr);\ 864 }\ 865 } 866 867 /*MC 868 MatPreallocateSet - Indicates the locations (rows and columns) in the matrix where nonzeros will be 869 inserted using a local number of the rows and columns 870 871 Synopsis: 872 PetscErrorCode MatPreallocateSet(PetscInt nrows, PetscInt *rows,PetscInt ncols, PetscInt *cols,PetscInt *dnz, PetscInt *onz) 873 874 Not Collective 875 876 Input Parameters: 877 + row - the row 878 . ncols - the number of columns in the matrix 879 - cols - the columns indicated 880 881 Output Parameters: 882 + dnz - the array that will be passed to the matrix preallocation routines 883 - ozn - the other array passed to the matrix preallocation routines 884 885 886 Level: intermediate 887 888 Notes: 889 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 890 891 Do not malloc or free dnz and onz that is handled internally by these routines 892 893 This is a MACRO not a function because it uses variables declared in MatPreallocateInitialize(). 894 895 Concepts: preallocation^Matrix 896 897 .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(), 898 MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal(), MatPreallocateSetLocal() 899 M*/ 900 #define MatPreallocateSet(row,nc,cols,dnz,onz) 0;\ 901 { PetscInt __i; \ 902 if (row < __rstart) SETERRQ2(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Trying to set preallocation for row %D less than first local row %D",row,__rstart);\ 903 if (row >= __rstart+__nrows) SETERRQ2(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Trying to set preallocation for row %D greater than last local row %D",row,__rstart+__nrows-1);\ 904 for (__i=0; __i<nc; __i++) {\ 905 if ((cols)[__i] < __start || (cols)[__i] >= __end) onz[row - __rstart]++; \ 906 else dnz[row - __rstart]++;\ 907 }\ 908 } 909 910 /*MC 911 MatPreallocateSymmetricSet - Indicates the locations (rows and columns) in the matrix where nonzeros will be 912 inserted using a local number of the rows and columns 913 914 Synopsis: 915 PetscErrorCode MatPreallocateSymmetricSet(PetscInt nrows, PetscInt *rows,PetscInt ncols, PetscInt *cols,PetscInt *dnz, PetscInt *onz) 916 917 Not Collective 918 919 Input Parameters: 920 + nrows - the number of rows indicated 921 . rows - the indices of the rows 922 . ncols - the number of columns in the matrix 923 . cols - the columns indicated 924 . dnz - the array that will be passed to the matrix preallocation routines 925 - ozn - the other array passed to the matrix preallocation routines 926 927 928 Level: intermediate 929 930 Notes: 931 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 932 933 Do not malloc or free dnz and onz that is handled internally by these routines 934 935 This is a MACRO not a function because it uses variables declared in MatPreallocateInitialize(). 936 937 Concepts: preallocation^Matrix 938 939 .seealso: MatPreallocateFinalize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateInitialize(), 940 MatPreallocateInitialize(), MatPreallocateSymmetricSetLocal(), MatPreallocateSetLocal() 941 M*/ 942 #define MatPreallocateSymmetricSet(row,nc,cols,dnz,onz) 0;\ 943 { PetscInt __i; \ 944 for (__i=0; __i<nc; __i++) {\ 945 if (cols[__i] >= __end) onz[row - __rstart]++; \ 946 else if (cols[__i] >= row) dnz[row - __rstart]++;\ 947 }\ 948 } 949 950 /*MC 951 MatPreallocateLocation - An alternative to MatPreallocationSet() that puts the nonzero locations into the matrix if it exists 952 953 Synopsis: 954 PetscErrorCode MatPreallocateLocations(Mat A,PetscInt row,PetscInt ncols,PetscInt *cols,PetscInt *dnz,PetscInt *onz) 955 956 Not Collective 957 958 Input Parameters: 959 . A - matrix 960 . row - row where values exist (must be local to this process) 961 . ncols - number of columns 962 . cols - columns with nonzeros 963 . dnz - the array that will be passed to the matrix preallocation routines 964 - ozn - the other array passed to the matrix preallocation routines 965 966 967 Level: intermediate 968 969 Notes: 970 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 971 972 Do not malloc or free dnz and onz that is handled internally by these routines 973 974 This is a MACRO not a function because it uses a bunch of variables private to the MatPreallocation.... routines. 975 976 Concepts: preallocation^Matrix 977 978 .seealso: MatPreallocateInitialize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(), 979 MatPreallocateSymmetricInitialize(), MatPreallocateSymmetricSetLocal() 980 M*/ 981 #define MatPreallocateLocation(A,row,ncols,cols,dnz,onz) 0;if (A) {ierr = MatSetValues(A,1,&row,ncols,cols,PETSC_NULL,INSERT_VALUES);CHKERRQ(ierr);} else {ierr = MatPreallocateSet(row,ncols,cols,dnz,onz);CHKERRQ(ierr);} 982 983 984 /*MC 985 MatPreallocateFinalize - Ends the block of code that will count the number of nonzeros per 986 row in a matrix providing the data that one can use to correctly preallocate the matrix. 987 988 Synopsis: 989 PetscErrorCode MatPreallocateFinalize(PetscInt *dnz, PetscInt *onz) 990 991 Collective on MPI_Comm 992 993 Input Parameters: 994 + dnz - the array that was be passed to the matrix preallocation routines 995 - ozn - the other array passed to the matrix preallocation routines 996 997 998 Level: intermediate 999 1000 Notes: 1001 See the <A href="../../docs/manual.pdf#nameddest=ch_performance">Hints for Performance Improvment</A> chapter in the users manual for more details. 1002 1003 Do not malloc or free dnz and onz that is handled internally by these routines 1004 1005 This is a MACRO not a function because it closes the { started in MatPreallocateInitialize(). 1006 1007 Concepts: preallocation^Matrix 1008 1009 .seealso: MatPreallocateInitialize(), MatPreallocateSet(), MatPreallocateSymmetricSet(), MatPreallocateSetLocal(), 1010 MatPreallocateSymmetricInitialize(), MatPreallocateSymmetricSetLocal() 1011 M*/ 1012 #define MatPreallocateFinalize(dnz,onz) 0;_4_ierr = PetscFree2(dnz,onz);CHKERRQ(_4_ierr);} 1013 1014 1015 1016 /* Routines unique to particular data structures */ 1017 extern PetscErrorCode MatShellGetContext(Mat,void *); 1018 PetscPolymorphicFunction(MatShellGetContext,(Mat A),(A,&t),void*,t) 1019 1020 extern PetscErrorCode MatInodeAdjustForInodes(Mat,IS*,IS*); 1021 extern PetscErrorCode MatInodeGetInodeSizes(Mat,PetscInt *,PetscInt *[],PetscInt *); 1022 1023 extern PetscErrorCode MatSeqAIJSetColumnIndices(Mat,PetscInt[]); 1024 extern PetscErrorCode MatSeqBAIJSetColumnIndices(Mat,PetscInt[]); 1025 extern PetscErrorCode MatCreateSeqAIJWithArrays(MPI_Comm,PetscInt,PetscInt,PetscInt[],PetscInt[],PetscScalar[],Mat*); 1026 extern PetscErrorCode MatCreateSeqBAIJWithArrays(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt[],PetscInt[],PetscScalar[],Mat*); 1027 extern PetscErrorCode MatCreateSeqSBAIJWithArrays(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt[],PetscInt[],PetscScalar[],Mat*); 1028 extern PetscErrorCode MatCreateSeqAIJFromTriple(MPI_Comm,PetscInt,PetscInt,PetscInt[],PetscInt[],PetscScalar[],Mat*,PetscInt,PetscBool); 1029 1030 #define MAT_SKIP_ALLOCATION -4 1031 1032 extern PetscErrorCode MatSeqBAIJSetPreallocation(Mat,PetscInt,PetscInt,const PetscInt[]); 1033 PetscPolymorphicSubroutine(MatSeqBAIJSetPreallocation,(Mat A,PetscInt bs,const PetscInt nnz[]),(A,bs,0,nnz)) 1034 extern PetscErrorCode MatSeqSBAIJSetPreallocation(Mat,PetscInt,PetscInt,const PetscInt[]); 1035 PetscPolymorphicSubroutine(MatSeqSBAIJSetPreallocation,(Mat A,PetscInt bs,const PetscInt nnz[]),(A,bs,0,nnz)) 1036 extern PetscErrorCode MatSeqAIJSetPreallocation(Mat,PetscInt,const PetscInt[]); 1037 PetscPolymorphicSubroutine(MatSeqAIJSetPreallocation,(Mat A,const PetscInt nnz[]),(A,0,nnz)) 1038 1039 extern PetscErrorCode MatMPIBAIJSetPreallocation(Mat,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[]); 1040 PetscPolymorphicSubroutine(MatMPIBAIJSetPreallocation,(Mat A,PetscInt bs,const PetscInt nnz[],const PetscInt onz[]),(A,bs,0,nnz,0,onz)) 1041 extern PetscErrorCode MatMPISBAIJSetPreallocation(Mat,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[]); 1042 extern PetscErrorCode MatMPIAIJSetPreallocation(Mat,PetscInt,const PetscInt[],PetscInt,const PetscInt[]); 1043 extern PetscErrorCode MatSeqAIJSetPreallocationCSR(Mat,const PetscInt [],const PetscInt [],const PetscScalar []); 1044 extern PetscErrorCode MatSeqBAIJSetPreallocationCSR(Mat,PetscInt,const PetscInt[],const PetscInt[],const PetscScalar[]); 1045 extern PetscErrorCode MatMPIAIJSetPreallocationCSR(Mat,const PetscInt[],const PetscInt[],const PetscScalar[]); 1046 extern PetscErrorCode MatMPIBAIJSetPreallocationCSR(Mat,PetscInt,const PetscInt[],const PetscInt[],const PetscScalar[]); 1047 extern PetscErrorCode MatMPIAdjSetPreallocation(Mat,PetscInt[],PetscInt[],PetscInt[]); 1048 extern PetscErrorCode MatMPIDenseSetPreallocation(Mat,PetscScalar[]); 1049 extern PetscErrorCode MatSeqDenseSetPreallocation(Mat,PetscScalar[]); 1050 extern PetscErrorCode MatMPIAIJGetSeqAIJ(Mat,Mat*,Mat*,PetscInt*[]); 1051 extern PetscErrorCode MatMPIBAIJGetSeqBAIJ(Mat,Mat*,Mat*,PetscInt*[]); 1052 extern PetscErrorCode MatAdicSetLocalFunction(Mat,void (*)(void)); 1053 extern PetscErrorCode MatMPIAdjCreateNonemptySubcommMat(Mat,Mat*); 1054 1055 extern PetscErrorCode MatSeqDenseSetLDA(Mat,PetscInt); 1056 extern PetscErrorCode MatDenseGetLocalMatrix(Mat,Mat*); 1057 1058 extern PetscErrorCode MatStoreValues(Mat); 1059 extern PetscErrorCode MatRetrieveValues(Mat); 1060 1061 extern PetscErrorCode MatDAADSetCtx(Mat,void*); 1062 1063 extern PetscErrorCode MatFindNonzeroRows(Mat,IS*); 1064 /* 1065 These routines are not usually accessed directly, rather solving is 1066 done through the KSP and PC interfaces. 1067 */ 1068 1069 /*J 1070 MatOrderingType - String with the name of a PETSc matrix ordering or the creation function 1071 with an optional dynamic library name, for example 1072 http://www.mcs.anl.gov/petsc/lib.a:orderingcreate() 1073 1074 Level: beginner 1075 1076 Cannot use const because the PC objects manipulate the string 1077 1078 .seealso: MatGetOrdering() 1079 J*/ 1080 #define MatOrderingType char* 1081 #define MATORDERINGNATURAL "natural" 1082 #define MATORDERINGND "nd" 1083 #define MATORDERING1WD "1wd" 1084 #define MATORDERINGRCM "rcm" 1085 #define MATORDERINGQMD "qmd" 1086 #define MATORDERINGROWLENGTH "rowlength" 1087 #define MATORDERINGAMD "amd" /* only works if UMFPACK is installed with PETSc */ 1088 1089 extern PetscErrorCode MatGetOrdering(Mat,const MatOrderingType,IS*,IS*); 1090 extern PetscErrorCode MatGetOrderingList(PetscFList *list); 1091 extern PetscErrorCode MatOrderingRegister(const char[],const char[],const char[],PetscErrorCode(*)(Mat,const MatOrderingType,IS*,IS*)); 1092 1093 /*MC 1094 MatOrderingRegisterDynamic - Adds a new sparse matrix ordering to the matrix package. 1095 1096 Synopsis: 1097 PetscErrorCode MatOrderingRegisterDynamic(const char *name_ordering,const char *path,const char *name_create,PetscErrorCode (*routine_create)(MatOrdering)) 1098 1099 Not Collective 1100 1101 Input Parameters: 1102 + sname - name of ordering (for example MATORDERINGND) 1103 . path - location of library where creation routine is 1104 . name - name of function that creates the ordering type,a string 1105 - function - function pointer that creates the ordering 1106 1107 Level: developer 1108 1109 If dynamic libraries are used, then the fourth input argument (function) 1110 is ignored. 1111 1112 Sample usage: 1113 .vb 1114 MatOrderingRegisterDynamic("my_order",/home/username/my_lib/lib/libO/solaris/mylib.a, 1115 "MyOrder",MyOrder); 1116 .ve 1117 1118 Then, your partitioner can be chosen with the procedural interface via 1119 $ MatOrderingSetType(part,"my_order) 1120 or at runtime via the option 1121 $ -pc_factor_mat_ordering_type my_order 1122 1123 ${PETSC_ARCH} occuring in pathname will be replaced with appropriate values. 1124 1125 .keywords: matrix, ordering, register 1126 1127 .seealso: MatOrderingRegisterDestroy(), MatOrderingRegisterAll() 1128 M*/ 1129 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 1130 #define MatOrderingRegisterDynamic(a,b,c,d) MatOrderingRegister(a,b,c,0) 1131 #else 1132 #define MatOrderingRegisterDynamic(a,b,c,d) MatOrderingRegister(a,b,c,d) 1133 #endif 1134 1135 extern PetscErrorCode MatOrderingRegisterDestroy(void); 1136 extern PetscErrorCode MatOrderingRegisterAll(const char[]); 1137 extern PetscBool MatOrderingRegisterAllCalled; 1138 extern PetscFList MatOrderingList; 1139 1140 extern PetscErrorCode MatReorderForNonzeroDiagonal(Mat,PetscReal,IS,IS); 1141 1142 /*S 1143 MatFactorShiftType - Numeric Shift. 1144 1145 Level: beginner 1146 1147 S*/ 1148 typedef enum {MAT_SHIFT_NONE,MAT_SHIFT_NONZERO,MAT_SHIFT_POSITIVE_DEFINITE,MAT_SHIFT_INBLOCKS} MatFactorShiftType; 1149 extern const char *MatFactorShiftTypes[]; 1150 1151 /*S 1152 MatFactorInfo - Data passed into the matrix factorization routines 1153 1154 In Fortran these are simply double precision arrays of size MAT_FACTORINFO_SIZE, that is use 1155 $ MatFactorInfo info(MAT_FACTORINFO_SIZE) 1156 1157 Notes: These are not usually directly used by users, instead use PC type of LU, ILU, CHOLESKY or ICC. 1158 1159 You can use MatFactorInfoInitialize() to set default values. 1160 1161 Level: developer 1162 1163 .seealso: MatLUFactorSymbolic(), MatILUFactorSymbolic(), MatCholeskyFactorSymbolic(), MatICCFactorSymbolic(), MatICCFactor(), 1164 MatFactorInfoInitialize() 1165 1166 S*/ 1167 typedef struct { 1168 PetscReal diagonal_fill; /* force diagonal to fill in if initially not filled */ 1169 PetscReal usedt; 1170 PetscReal dt; /* drop tolerance */ 1171 PetscReal dtcol; /* tolerance for pivoting */ 1172 PetscReal dtcount; /* maximum nonzeros to be allowed per row */ 1173 PetscReal fill; /* expected fill, nonzeros in factored matrix/nonzeros in original matrix */ 1174 PetscReal levels; /* ICC/ILU(levels) */ 1175 PetscReal pivotinblocks; /* for BAIJ and SBAIJ matrices pivot in factorization on blocks, default 1.0 1176 factorization may be faster if do not pivot */ 1177 PetscReal zeropivot; /* pivot is called zero if less than this */ 1178 PetscReal shifttype; /* type of shift added to matrix factor to prevent zero pivots */ 1179 PetscReal shiftamount; /* how large the shift is */ 1180 } MatFactorInfo; 1181 1182 extern PetscErrorCode MatFactorInfoInitialize(MatFactorInfo*); 1183 extern PetscErrorCode MatCholeskyFactor(Mat,IS,const MatFactorInfo*); 1184 extern PetscErrorCode MatCholeskyFactorSymbolic(Mat,Mat,IS,const MatFactorInfo*); 1185 extern PetscErrorCode MatCholeskyFactorNumeric(Mat,Mat,const MatFactorInfo*); 1186 extern PetscErrorCode MatLUFactor(Mat,IS,IS,const MatFactorInfo*); 1187 extern PetscErrorCode MatILUFactor(Mat,IS,IS,const MatFactorInfo*); 1188 extern PetscErrorCode MatLUFactorSymbolic(Mat,Mat,IS,IS,const MatFactorInfo*); 1189 extern PetscErrorCode MatILUFactorSymbolic(Mat,Mat,IS,IS,const MatFactorInfo*); 1190 extern PetscErrorCode MatICCFactorSymbolic(Mat,Mat,IS,const MatFactorInfo*); 1191 extern PetscErrorCode MatICCFactor(Mat,IS,const MatFactorInfo*); 1192 extern PetscErrorCode MatLUFactorNumeric(Mat,Mat,const MatFactorInfo*); 1193 extern PetscErrorCode MatGetInertia(Mat,PetscInt*,PetscInt*,PetscInt*); 1194 extern PetscErrorCode MatSolve(Mat,Vec,Vec); 1195 extern PetscErrorCode MatForwardSolve(Mat,Vec,Vec); 1196 extern PetscErrorCode MatBackwardSolve(Mat,Vec,Vec); 1197 extern PetscErrorCode MatSolveAdd(Mat,Vec,Vec,Vec); 1198 extern PetscErrorCode MatSolveTranspose(Mat,Vec,Vec); 1199 extern PetscErrorCode MatSolveTransposeAdd(Mat,Vec,Vec,Vec); 1200 extern PetscErrorCode MatSolves(Mat,Vecs,Vecs); 1201 1202 extern PetscErrorCode MatSetUnfactored(Mat); 1203 1204 /*E 1205 MatSORType - What type of (S)SOR to perform 1206 1207 Level: beginner 1208 1209 May be bitwise ORd together 1210 1211 Any additions/changes here MUST also be made in include/finclude/petscmat.h 1212 1213 MatSORType may be bitwise ORd together, so do not change the numbers 1214 1215 .seealso: MatSOR() 1216 E*/ 1217 typedef enum {SOR_FORWARD_SWEEP=1,SOR_BACKWARD_SWEEP=2,SOR_SYMMETRIC_SWEEP=3, 1218 SOR_LOCAL_FORWARD_SWEEP=4,SOR_LOCAL_BACKWARD_SWEEP=8, 1219 SOR_LOCAL_SYMMETRIC_SWEEP=12,SOR_ZERO_INITIAL_GUESS=16, 1220 SOR_EISENSTAT=32,SOR_APPLY_UPPER=64,SOR_APPLY_LOWER=128} MatSORType; 1221 extern PetscErrorCode MatSOR(Mat,Vec,PetscReal,MatSORType,PetscReal,PetscInt,PetscInt,Vec); 1222 1223 /* 1224 These routines are for efficiently computing Jacobians via finite differences. 1225 */ 1226 1227 /*J 1228 MatColoringType - String with the name of a PETSc matrix coloring or the creation function 1229 with an optional dynamic library name, for example 1230 http://www.mcs.anl.gov/petsc/lib.a:coloringcreate() 1231 1232 Level: beginner 1233 1234 .seealso: MatGetColoring() 1235 J*/ 1236 #define MatColoringType char* 1237 #define MATCOLORINGNATURAL "natural" 1238 #define MATCOLORINGSL "sl" 1239 #define MATCOLORINGLF "lf" 1240 #define MATCOLORINGID "id" 1241 1242 extern PetscErrorCode MatGetColoring(Mat,const MatColoringType,ISColoring*); 1243 extern PetscErrorCode MatColoringRegister(const char[],const char[],const char[],PetscErrorCode(*)(Mat,MatColoringType,ISColoring *)); 1244 1245 /*MC 1246 MatColoringRegisterDynamic - Adds a new sparse matrix coloring to the 1247 matrix package. 1248 1249 Synopsis: 1250 PetscErrorCode MatColoringRegisterDynamic(const char *name_coloring,const char *path,const char *name_create,PetscErrorCode (*routine_create)(MatColoring)) 1251 1252 Not Collective 1253 1254 Input Parameters: 1255 + sname - name of Coloring (for example MATCOLORINGSL) 1256 . path - location of library where creation routine is 1257 . name - name of function that creates the Coloring type, a string 1258 - function - function pointer that creates the coloring 1259 1260 Level: developer 1261 1262 If dynamic libraries are used, then the fourth input argument (function) 1263 is ignored. 1264 1265 Sample usage: 1266 .vb 1267 MatColoringRegisterDynamic("my_color",/home/username/my_lib/lib/libO/solaris/mylib.a, 1268 "MyColor",MyColor); 1269 .ve 1270 1271 Then, your partitioner can be chosen with the procedural interface via 1272 $ MatColoringSetType(part,"my_color") 1273 or at runtime via the option 1274 $ -mat_coloring_type my_color 1275 1276 $PETSC_ARCH occuring in pathname will be replaced with appropriate values. 1277 1278 .keywords: matrix, Coloring, register 1279 1280 .seealso: MatColoringRegisterDestroy(), MatColoringRegisterAll() 1281 M*/ 1282 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 1283 #define MatColoringRegisterDynamic(a,b,c,d) MatColoringRegister(a,b,c,0) 1284 #else 1285 #define MatColoringRegisterDynamic(a,b,c,d) MatColoringRegister(a,b,c,d) 1286 #endif 1287 1288 extern PetscBool MatColoringRegisterAllCalled; 1289 1290 extern PetscErrorCode MatColoringRegisterAll(const char[]); 1291 extern PetscErrorCode MatColoringRegisterDestroy(void); 1292 extern PetscErrorCode MatColoringPatch(Mat,PetscInt,PetscInt,ISColoringValue[],ISColoring*); 1293 1294 /*S 1295 MatFDColoring - Object for computing a sparse Jacobian via finite differences 1296 and coloring 1297 1298 Level: beginner 1299 1300 Concepts: coloring, sparse Jacobian, finite differences 1301 1302 .seealso: MatFDColoringCreate() 1303 S*/ 1304 typedef struct _p_MatFDColoring* MatFDColoring; 1305 1306 extern PetscErrorCode MatFDColoringCreate(Mat,ISColoring,MatFDColoring *); 1307 extern PetscErrorCode MatFDColoringDestroy(MatFDColoring*); 1308 extern PetscErrorCode MatFDColoringView(MatFDColoring,PetscViewer); 1309 extern PetscErrorCode MatFDColoringSetFunction(MatFDColoring,PetscErrorCode (*)(void),void*); 1310 extern PetscErrorCode MatFDColoringGetFunction(MatFDColoring,PetscErrorCode (**)(void),void**); 1311 extern PetscErrorCode MatFDColoringSetParameters(MatFDColoring,PetscReal,PetscReal); 1312 extern PetscErrorCode MatFDColoringSetFromOptions(MatFDColoring); 1313 extern PetscErrorCode MatFDColoringApply(Mat,MatFDColoring,Vec,MatStructure*,void *); 1314 extern PetscErrorCode MatFDColoringSetF(MatFDColoring,Vec); 1315 extern PetscErrorCode MatFDColoringGetPerturbedColumns(MatFDColoring,PetscInt*,PetscInt*[]); 1316 1317 /*S 1318 MatTransposeColoring - Object for computing a sparse matrix product C=A*B^T via coloring 1319 1320 Level: beginner 1321 1322 Concepts: coloring, sparse matrix product 1323 1324 .seealso: MatTransposeColoringCreate() 1325 S*/ 1326 typedef struct _p_MatTransposeColoring* MatTransposeColoring; 1327 1328 extern PetscErrorCode MatTransposeColoringCreate(Mat,ISColoring,MatTransposeColoring *); 1329 extern PetscErrorCode MatTransColoringApplySpToDen(MatTransposeColoring,Mat,Mat); 1330 extern PetscErrorCode MatTransColoringApplyDenToSp(MatTransposeColoring,Mat,Mat); 1331 extern PetscErrorCode MatTransposeColoringDestroy(MatTransposeColoring*); 1332 1333 /* 1334 These routines are for partitioning matrices: currently used only 1335 for adjacency matrix, MatCreateMPIAdj(). 1336 */ 1337 1338 /*S 1339 MatPartitioning - Object for managing the partitioning of a matrix or graph 1340 1341 Level: beginner 1342 1343 Concepts: partitioning 1344 1345 .seealso: MatPartitioningCreate(), MatPartitioningType 1346 S*/ 1347 typedef struct _p_MatPartitioning* MatPartitioning; 1348 1349 /*J 1350 MatPartitioningType - String with the name of a PETSc matrix partitioning or the creation function 1351 with an optional dynamic library name, for example 1352 http://www.mcs.anl.gov/petsc/lib.a:partitioningcreate() 1353 1354 Level: beginner 1355 dm 1356 .seealso: MatPartitioningCreate(), MatPartitioning 1357 J*/ 1358 #define MatPartitioningType char* 1359 #define MATPARTITIONINGCURRENT "current" 1360 #define MATPARTITIONINGSQUARE "square" 1361 #define MATPARTITIONINGPARMETIS "parmetis" 1362 #define MATPARTITIONINGCHACO "chaco" 1363 #define MATPARTITIONINGPARTY "party" 1364 #define MATPARTITIONINGPTSCOTCH "ptscotch" 1365 1366 1367 extern PetscErrorCode MatPartitioningCreate(MPI_Comm,MatPartitioning*); 1368 extern PetscErrorCode MatPartitioningSetType(MatPartitioning,const MatPartitioningType); 1369 extern PetscErrorCode MatPartitioningSetNParts(MatPartitioning,PetscInt); 1370 extern PetscErrorCode MatPartitioningSetAdjacency(MatPartitioning,Mat); 1371 extern PetscErrorCode MatPartitioningSetVertexWeights(MatPartitioning,const PetscInt[]); 1372 extern PetscErrorCode MatPartitioningSetPartitionWeights(MatPartitioning,const PetscReal []); 1373 extern PetscErrorCode MatPartitioningApply(MatPartitioning,IS*); 1374 extern PetscErrorCode MatPartitioningDestroy(MatPartitioning*); 1375 1376 extern PetscErrorCode MatPartitioningRegister(const char[],const char[],const char[],PetscErrorCode (*)(MatPartitioning)); 1377 1378 /*MC 1379 MatPartitioningRegisterDynamic - Adds a new sparse matrix partitioning to the 1380 matrix package. 1381 1382 Synopsis: 1383 PetscErrorCode MatPartitioningRegisterDynamic(const char *name_partitioning,const char *path,const char *name_create,PetscErrorCode (*routine_create)(MatPartitioning)) 1384 1385 Not Collective 1386 1387 Input Parameters: 1388 + sname - name of partitioning (for example MATPARTITIONINGCURRENT) or parmetis 1389 . path - location of library where creation routine is 1390 . name - name of function that creates the partitioning type, a string 1391 - function - function pointer that creates the partitioning type 1392 1393 Level: developer 1394 1395 If dynamic libraries are used, then the fourth input argument (function) 1396 is ignored. 1397 1398 Sample usage: 1399 .vb 1400 MatPartitioningRegisterDynamic("my_part",/home/username/my_lib/lib/libO/solaris/mylib.a, 1401 "MyPartCreate",MyPartCreate); 1402 .ve 1403 1404 Then, your partitioner can be chosen with the procedural interface via 1405 $ MatPartitioningSetType(part,"my_part") 1406 or at runtime via the option 1407 $ -mat_partitioning_type my_part 1408 1409 $PETSC_ARCH occuring in pathname will be replaced with appropriate values. 1410 1411 .keywords: matrix, partitioning, register 1412 1413 .seealso: MatPartitioningRegisterDestroy(), MatPartitioningRegisterAll() 1414 M*/ 1415 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 1416 #define MatPartitioningRegisterDynamic(a,b,c,d) MatPartitioningRegister(a,b,c,0) 1417 #else 1418 #define MatPartitioningRegisterDynamic(a,b,c,d) MatPartitioningRegister(a,b,c,d) 1419 #endif 1420 1421 extern PetscBool MatPartitioningRegisterAllCalled; 1422 1423 extern PetscErrorCode MatPartitioningRegisterAll(const char[]); 1424 extern PetscErrorCode MatPartitioningRegisterDestroy(void); 1425 1426 extern PetscErrorCode MatPartitioningView(MatPartitioning,PetscViewer); 1427 extern PetscErrorCode MatPartitioningSetFromOptions(MatPartitioning); 1428 extern PetscErrorCode MatPartitioningGetType(MatPartitioning,const MatPartitioningType*); 1429 1430 extern PetscErrorCode MatPartitioningParmetisSetCoarseSequential(MatPartitioning); 1431 extern PetscErrorCode MatPartitioningParmetisGetEdgeCut(MatPartitioning, PetscInt *); 1432 1433 typedef enum { MP_CHACO_MULTILEVEL=1,MP_CHACO_SPECTRAL=2,MP_CHACO_LINEAR=4,MP_CHACO_RANDOM=5,MP_CHACO_SCATTERED=6 } MPChacoGlobalType; 1434 extern const char *MPChacoGlobalTypes[]; 1435 typedef enum { MP_CHACO_KERNIGHAN=1,MP_CHACO_NONE=2 } MPChacoLocalType; 1436 extern const char *MPChacoLocalTypes[]; 1437 typedef enum { MP_CHACO_LANCZOS=0,MP_CHACO_RQI=1 } MPChacoEigenType; 1438 extern const char *MPChacoEigenTypes[]; 1439 1440 extern PetscErrorCode MatPartitioningChacoSetGlobal(MatPartitioning,MPChacoGlobalType); 1441 extern PetscErrorCode MatPartitioningChacoGetGlobal(MatPartitioning,MPChacoGlobalType*); 1442 extern PetscErrorCode MatPartitioningChacoSetLocal(MatPartitioning,MPChacoLocalType); 1443 extern PetscErrorCode MatPartitioningChacoGetLocal(MatPartitioning,MPChacoLocalType*); 1444 extern PetscErrorCode MatPartitioningChacoSetCoarseLevel(MatPartitioning,PetscReal); 1445 extern PetscErrorCode MatPartitioningChacoSetEigenSolver(MatPartitioning,MPChacoEigenType); 1446 extern PetscErrorCode MatPartitioningChacoGetEigenSolver(MatPartitioning,MPChacoEigenType*); 1447 extern PetscErrorCode MatPartitioningChacoSetEigenTol(MatPartitioning,PetscReal); 1448 extern PetscErrorCode MatPartitioningChacoGetEigenTol(MatPartitioning,PetscReal*); 1449 extern PetscErrorCode MatPartitioningChacoSetEigenNumber(MatPartitioning,PetscInt); 1450 extern PetscErrorCode MatPartitioningChacoGetEigenNumber(MatPartitioning,PetscInt*); 1451 1452 #define MP_PARTY_OPT "opt" 1453 #define MP_PARTY_LIN "lin" 1454 #define MP_PARTY_SCA "sca" 1455 #define MP_PARTY_RAN "ran" 1456 #define MP_PARTY_GBF "gbf" 1457 #define MP_PARTY_GCF "gcf" 1458 #define MP_PARTY_BUB "bub" 1459 #define MP_PARTY_DEF "def" 1460 extern PetscErrorCode MatPartitioningPartySetGlobal(MatPartitioning,const char*); 1461 #define MP_PARTY_HELPFUL_SETS "hs" 1462 #define MP_PARTY_KERNIGHAN_LIN "kl" 1463 #define MP_PARTY_NONE "no" 1464 extern PetscErrorCode MatPartitioningPartySetLocal(MatPartitioning,const char*); 1465 extern PetscErrorCode MatPartitioningPartySetCoarseLevel(MatPartitioning,PetscReal); 1466 extern PetscErrorCode MatPartitioningPartySetBipart(MatPartitioning,PetscBool); 1467 extern PetscErrorCode MatPartitioningPartySetMatchOptimization(MatPartitioning,PetscBool); 1468 1469 typedef enum { MP_PTSCOTCH_QUALITY,MP_PTSCOTCH_SPEED,MP_PTSCOTCH_BALANCE,MP_PTSCOTCH_SAFETY,MP_PTSCOTCH_SCALABILITY } MPPTScotchStrategyType; 1470 extern const char *MPPTScotchStrategyTypes[]; 1471 1472 extern PetscErrorCode MatPartitioningPTScotchSetImbalance(MatPartitioning,PetscReal); 1473 extern PetscErrorCode MatPartitioningPTScotchGetImbalance(MatPartitioning,PetscReal*); 1474 extern PetscErrorCode MatPartitioningPTScotchSetStrategy(MatPartitioning,MPPTScotchStrategyType); 1475 extern PetscErrorCode MatPartitioningPTScotchGetStrategy(MatPartitioning,MPPTScotchStrategyType*); 1476 1477 /* 1478 These routines are for coarsening matrices: 1479 */ 1480 1481 /*S 1482 MatCoarsen - Object for managing the coarsening of a graph (symmetric matrix) 1483 1484 Level: beginner 1485 1486 Concepts: coarsen 1487 1488 .seealso: MatCoarsenCreate), MatCoarsenType 1489 S*/ 1490 typedef struct _p_MatCoarsen* MatCoarsen; 1491 1492 /*J 1493 MatCoarsenType - String with the name of a PETSc matrix coarsen or the creation function 1494 with an optional dynamic library name, for example 1495 http://www.mcs.anl.gov/petsc/lib.a:coarsencreate() 1496 1497 Level: beginner 1498 dm 1499 .seealso: MatCoarsenCreate(), MatCoarsen 1500 J*/ 1501 #define MatCoarsenType char* 1502 #define MATCOARSENMIS "mis" 1503 #define MATCOARSENHEM "hem" 1504 1505 extern PetscErrorCode MatCoarsenCreate(MPI_Comm,MatCoarsen*); 1506 extern PetscErrorCode MatCoarsenSetType(MatCoarsen,const MatCoarsenType); 1507 extern PetscErrorCode MatCoarsenSetAdjacency(MatCoarsen,Mat); 1508 extern PetscErrorCode MatCoarsenSetGreedyOrdering(MatCoarsen,const IS); 1509 extern PetscErrorCode MatCoarsenSetStrictAggs(MatCoarsen,PetscBool); 1510 extern PetscErrorCode MatCoarsenSetVerbose(MatCoarsen,PetscInt); 1511 extern PetscErrorCode MatCoarsenGetMISAggLists( MatCoarsen, IS*, IS* ); 1512 extern PetscErrorCode MatCoarsenApply(MatCoarsen); 1513 extern PetscErrorCode MatCoarsenDestroy(MatCoarsen*); 1514 1515 extern PetscErrorCode MatCoarsenRegister(const char[],const char[],const char[],PetscErrorCode (*)(MatCoarsen)); 1516 1517 /*MC 1518 MatCoarsenRegisterDynamic - Adds a new sparse matrix coarsen to the 1519 matrix package. 1520 1521 Synopsis: 1522 PetscErrorCode MatCoarsenRegisterDynamic(const char *name_coarsen,const char *path,const char *name_create,PetscErrorCode (*routine_create)(MatCoarsen)) 1523 1524 Not Collective 1525 1526 Input Parameters: 1527 + sname - name of coarsen (for example MATCOARSENMIS) 1528 . path - location of library where creation routine is 1529 . name - name of function that creates the coarsen type, a string 1530 - function - function pointer that creates the coarsen type 1531 1532 Level: developer 1533 1534 If dynamic libraries are used, then the fourth input argument (function) 1535 is ignored. 1536 1537 Sample usage: 1538 .vb 1539 MatCoarsenRegisterDynamic("my_agg",/home/username/my_lib/lib/libO/solaris/mylib.a, 1540 "MyAggCreate",MyAggCreate); 1541 .ve 1542 1543 Then, your aggregator can be chosen with the procedural interface via 1544 $ MatCoarsenSetType(agg,"my_agg") 1545 or at runtime via the option 1546 $ -mat_coarsen_type my_agg 1547 1548 $PETSC_ARCH occuring in pathname will be replaced with appropriate values. 1549 1550 .keywords: matrix, coarsen, register 1551 1552 .seealso: MatCoarsenRegisterDestroy(), MatCoarsenRegisterAll() 1553 M*/ 1554 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 1555 #define MatCoarsenRegisterDynamic(a,b,c,d) MatCoarsenRegister(a,b,c,0) 1556 #else 1557 #define MatCoarsenRegisterDynamic(a,b,c,d) MatCoarsenRegister(a,b,c,d) 1558 #endif 1559 1560 extern PetscBool MatCoarsenRegisterAllCalled; 1561 1562 extern PetscErrorCode MatCoarsenRegisterAll(const char[]); 1563 extern PetscErrorCode MatCoarsenRegisterDestroy(void); 1564 1565 extern PetscErrorCode MatCoarsenView(MatCoarsen,PetscViewer); 1566 extern PetscErrorCode MatCoarsenSetFromOptions(MatCoarsen); 1567 extern PetscErrorCode MatCoarsenGetType(MatCoarsen,const MatCoarsenType*); 1568 1569 1570 extern PetscErrorCode MatMeshToVertexGraph(Mat,PetscInt,Mat*); 1571 extern PetscErrorCode MatMeshToCellGraph(Mat,PetscInt,Mat*); 1572 1573 /* 1574 If you add entries here you must also add them to finclude/petscmat.h 1575 */ 1576 typedef enum { MATOP_SET_VALUES=0, 1577 MATOP_GET_ROW=1, 1578 MATOP_RESTORE_ROW=2, 1579 MATOP_MULT=3, 1580 MATOP_MULT_ADD=4, 1581 MATOP_MULT_TRANSPOSE=5, 1582 MATOP_MULT_TRANSPOSE_ADD=6, 1583 MATOP_SOLVE=7, 1584 MATOP_SOLVE_ADD=8, 1585 MATOP_SOLVE_TRANSPOSE=9, 1586 MATOP_SOLVE_TRANSPOSE_ADD=10, 1587 MATOP_LUFACTOR=11, 1588 MATOP_CHOLESKYFACTOR=12, 1589 MATOP_SOR=13, 1590 MATOP_TRANSPOSE=14, 1591 MATOP_GETINFO=15, 1592 MATOP_EQUAL=16, 1593 MATOP_GET_DIAGONAL=17, 1594 MATOP_DIAGONAL_SCALE=18, 1595 MATOP_NORM=19, 1596 MATOP_ASSEMBLY_BEGIN=20, 1597 MATOP_ASSEMBLY_END=21, 1598 MATOP_SET_OPTION=22, 1599 MATOP_ZERO_ENTRIES=23, 1600 MATOP_ZERO_ROWS=24, 1601 MATOP_LUFACTOR_SYMBOLIC=25, 1602 MATOP_LUFACTOR_NUMERIC=26, 1603 MATOP_CHOLESKY_FACTOR_SYMBOLIC=27, 1604 MATOP_CHOLESKY_FACTOR_NUMERIC=28, 1605 MATOP_SETUP_PREALLOCATION=29, 1606 MATOP_ILUFACTOR_SYMBOLIC=30, 1607 MATOP_ICCFACTOR_SYMBOLIC=31, 1608 MATOP_GET_ARRAY=32, 1609 MATOP_RESTORE_ARRAY=33, 1610 MATOP_DUPLICATE=34, 1611 MATOP_FORWARD_SOLVE=35, 1612 MATOP_BACKWARD_SOLVE=36, 1613 MATOP_ILUFACTOR=37, 1614 MATOP_ICCFACTOR=38, 1615 MATOP_AXPY=39, 1616 MATOP_GET_SUBMATRICES=40, 1617 MATOP_INCREASE_OVERLAP=41, 1618 MATOP_GET_VALUES=42, 1619 MATOP_COPY=43, 1620 MATOP_GET_ROW_MAX=44, 1621 MATOP_SCALE=45, 1622 MATOP_SHIFT=46, 1623 MATOP_DIAGONAL_SET=47, 1624 MATOP_ILUDT_FACTOR=48, 1625 MATOP_SET_BLOCK_SIZE=49, 1626 MATOP_GET_ROW_IJ=50, 1627 MATOP_RESTORE_ROW_IJ=51, 1628 MATOP_GET_COLUMN_IJ=52, 1629 MATOP_RESTORE_COLUMN_IJ=53, 1630 MATOP_FDCOLORING_CREATE=54, 1631 MATOP_COLORING_PATCH=55, 1632 MATOP_SET_UNFACTORED=56, 1633 MATOP_PERMUTE=57, 1634 MATOP_SET_VALUES_BLOCKED=58, 1635 MATOP_GET_SUBMATRIX=59, 1636 MATOP_DESTROY=60, 1637 MATOP_VIEW=61, 1638 MATOP_CONVERT_FROM=62, 1639 MATOP_USE_SCALED_FORM=63, 1640 MATOP_SCALE_SYSTEM=64, 1641 MATOP_UNSCALE_SYSTEM=65, 1642 MATOP_SET_LOCAL_TO_GLOBAL_MAP=66, 1643 MATOP_SET_VALUES_LOCAL=67, 1644 MATOP_ZERO_ROWS_LOCAL=68, 1645 MATOP_GET_ROW_MAX_ABS=69, 1646 MATOP_GET_ROW_MIN_ABS=70, 1647 MATOP_CONVERT=71, 1648 MATOP_SET_COLORING=72, 1649 MATOP_SET_VALUES_ADIC=73, 1650 MATOP_SET_VALUES_ADIFOR=74, 1651 MATOP_FD_COLORING_APPLY=75, 1652 MATOP_SET_FROM_OPTIONS=76, 1653 MATOP_MULT_CON=77, 1654 MATOP_MULT_TRANSPOSE_CON=78, 1655 MATOP_PERMUTE_SPARSIFY=79, 1656 MATOP_MULT_MULTIPLE=80, 1657 MATOP_SOLVE_MULTIPLE=81, 1658 MATOP_GET_INERTIA=82, 1659 MATOP_LOAD=83, 1660 MATOP_IS_SYMMETRIC=84, 1661 MATOP_IS_HERMITIAN=85, 1662 MATOP_IS_STRUCTURALLY_SYMMETRIC=86, 1663 MATOP_DUMMY=87, 1664 MATOP_GET_VECS=88, 1665 MATOP_MAT_MULT=89, 1666 MATOP_MAT_MULT_SYMBOLIC=90, 1667 MATOP_MAT_MULT_NUMERIC=91, 1668 MATOP_PTAP=92, 1669 MATOP_PTAP_SYMBOLIC=93, 1670 MATOP_PTAP_NUMERIC=94, 1671 MATOP_MAT_MULTTRANSPOSE=95, 1672 MATOP_MAT_MULTTRANSPOSE_SYM=96, 1673 MATOP_MAT_MULTTRANSPOSE_NUM=97, 1674 MATOP_PTAP_SYMBOLIC_SEQAIJ=98, 1675 MATOP_PTAP_NUMERIC_SEQAIJ=99, 1676 MATOP_PTAP_SYMBOLIC_MPIAIJ=100, 1677 MATOP_PTAP_NUMERIC_MPIAIJ=101, 1678 MATOP_CONJUGATE=102, 1679 MATOP_SET_SIZES=103, 1680 MATOP_SET_VALUES_ROW=104, 1681 MATOP_REAL_PART=105, 1682 MATOP_IMAG_PART=106, 1683 MATOP_GET_ROW_UTRIANGULAR=107, 1684 MATOP_RESTORE_ROW_UTRIANGULAR=108, 1685 MATOP_MATSOLVE=109, 1686 MATOP_GET_REDUNDANTMATRIX=110, 1687 MATOP_GET_ROW_MIN=111, 1688 MATOP_GET_COLUMN_VEC=112, 1689 MATOP_MISSING_DIAGONAL=113, 1690 MATOP_MATGETSEQNONZEROSTRUCTURE=114, 1691 MATOP_CREATE=115, 1692 MATOP_GET_GHOSTS=116, 1693 MATOP_GET_LOCALSUBMATRIX=117, 1694 MATOP_RESTORE_LOCALSUBMATRIX=118, 1695 MATOP_MULT_DIAGONAL_BLOCK=119, 1696 MATOP_HERMITIANTRANSPOSE=120, 1697 MATOP_MULTHERMITIANTRANSPOSE=121, 1698 MATOP_MULTHERMITIANTRANSPOSEADD=122, 1699 MATOP_GETMULTIPROCBLOCK=123, 1700 MATOP_GETCOLUMNNORMS=125, 1701 MATOP_GET_SUBMATRICES_PARALLEL=128, 1702 MATOP_SET_VALUES_BATCH=129, 1703 MATOP_TRANSPOSEMATMULT=130, 1704 MATOP_TRANSPOSEMATMULT_SYMBOLIC=131, 1705 MATOP_TRANSPOSEMATMULT_NUMERIC=132, 1706 MATOP_TRANSPOSECOLORING_CREATE=133, 1707 MATOP_TRANSCOLORING_APPLY_SPTODEN=134, 1708 MATOP_TRANSCOLORING_APPLY_DENTOSP=135, 1709 MATOP_RARt=136, 1710 MATOP_RARt_SYMBOLIC=137, 1711 MATOP_RARt_NUMERIC=138 1712 } MatOperation; 1713 extern PetscErrorCode MatHasOperation(Mat,MatOperation,PetscBool *); 1714 extern PetscErrorCode MatShellSetOperation(Mat,MatOperation,void(*)(void)); 1715 extern PetscErrorCode MatShellGetOperation(Mat,MatOperation,void(**)(void)); 1716 extern PetscErrorCode MatShellSetContext(Mat,void*); 1717 1718 /* 1719 Codes for matrices stored on disk. By default they are 1720 stored in a universal format. By changing the format with 1721 PetscViewerSetFormat(viewer,PETSC_VIEWER_NATIVE); the matrices will 1722 be stored in a way natural for the matrix, for example dense matrices 1723 would be stored as dense. Matrices stored this way may only be 1724 read into matrices of the same type. 1725 */ 1726 #define MATRIX_BINARY_FORMAT_DENSE -1 1727 1728 extern PetscErrorCode MatMPIBAIJSetHashTableFactor(Mat,PetscReal); 1729 extern PetscErrorCode MatISGetLocalMat(Mat,Mat*); 1730 extern PetscErrorCode MatISSetLocalMat(Mat,Mat); 1731 1732 /*S 1733 MatNullSpace - Object that removes a null space from a vector, i.e. 1734 orthogonalizes the vector to a subsapce 1735 1736 Level: advanced 1737 1738 Concepts: matrix; linear operator, null space 1739 1740 Users manual sections: 1741 . sec_singular 1742 1743 .seealso: MatNullSpaceCreate() 1744 S*/ 1745 typedef struct _p_MatNullSpace* MatNullSpace; 1746 1747 extern PetscErrorCode MatNullSpaceCreate(MPI_Comm,PetscBool ,PetscInt,const Vec[],MatNullSpace*); 1748 extern PetscErrorCode MatNullSpaceSetFunction(MatNullSpace,PetscErrorCode (*)(MatNullSpace,Vec,void*),void*); 1749 extern PetscErrorCode MatNullSpaceDestroy(MatNullSpace*); 1750 extern PetscErrorCode MatNullSpaceRemove(MatNullSpace,Vec,Vec*); 1751 extern PetscErrorCode MatGetNullSpace(Mat, MatNullSpace *); 1752 extern PetscErrorCode MatSetNullSpace(Mat,MatNullSpace); 1753 extern PetscErrorCode MatSetNearNullSpace(Mat,MatNullSpace); 1754 extern PetscErrorCode MatNullSpaceTest(MatNullSpace,Mat,PetscBool *); 1755 extern PetscErrorCode MatNullSpaceView(MatNullSpace,PetscViewer); 1756 1757 extern PetscErrorCode MatReorderingSeqSBAIJ(Mat,IS); 1758 extern PetscErrorCode MatMPISBAIJSetHashTableFactor(Mat,PetscReal); 1759 extern PetscErrorCode MatSeqSBAIJSetColumnIndices(Mat,PetscInt *); 1760 extern PetscErrorCode MatSeqBAIJInvertBlockDiagonal(Mat); 1761 1762 extern PetscErrorCode MatCreateMAIJ(Mat,PetscInt,Mat*); 1763 extern PetscErrorCode MatMAIJRedimension(Mat,PetscInt,Mat*); 1764 extern PetscErrorCode MatMAIJGetAIJ(Mat,Mat*); 1765 1766 extern PetscErrorCode MatComputeExplicitOperator(Mat,Mat*); 1767 1768 extern PetscErrorCode MatDiagonalScaleLocal(Mat,Vec); 1769 1770 extern PetscErrorCode MatCreateMFFD(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,Mat*); 1771 extern PetscErrorCode MatMFFDSetBase(Mat,Vec,Vec); 1772 extern PetscErrorCode MatMFFDSetFunction(Mat,PetscErrorCode(*)(void*,Vec,Vec),void*); 1773 extern PetscErrorCode MatMFFDSetFunctioni(Mat,PetscErrorCode (*)(void*,PetscInt,Vec,PetscScalar*)); 1774 extern PetscErrorCode MatMFFDSetFunctioniBase(Mat,PetscErrorCode (*)(void*,Vec)); 1775 extern PetscErrorCode MatMFFDAddNullSpace(Mat,MatNullSpace); 1776 extern PetscErrorCode MatMFFDSetHHistory(Mat,PetscScalar[],PetscInt); 1777 extern PetscErrorCode MatMFFDResetHHistory(Mat); 1778 extern PetscErrorCode MatMFFDSetFunctionError(Mat,PetscReal); 1779 extern PetscErrorCode MatMFFDSetPeriod(Mat,PetscInt); 1780 extern PetscErrorCode MatMFFDGetH(Mat,PetscScalar *); 1781 extern PetscErrorCode MatMFFDSetOptionsPrefix(Mat,const char[]); 1782 extern PetscErrorCode MatMFFDCheckPositivity(void*,Vec,Vec,PetscScalar*); 1783 extern PetscErrorCode MatMFFDSetCheckh(Mat,PetscErrorCode (*)(void*,Vec,Vec,PetscScalar*),void*); 1784 1785 /*S 1786 MatMFFD - A data structured used to manage the computation of the h differencing parameter for matrix-free 1787 Jacobian vector products 1788 1789 Notes: MATMFFD is a specific MatType which uses the MatMFFD data structure 1790 1791 MatMFFD*() methods actually take the Mat as their first argument. Not a MatMFFD data structure 1792 1793 Level: developer 1794 1795 .seealso: MATMFFD, MatCreateMFFD(), MatMFFDSetFuction(), MatMFFDSetType(), MatMFFDRegister() 1796 S*/ 1797 typedef struct _p_MatMFFD* MatMFFD; 1798 1799 /*J 1800 MatMFFDType - algorithm used to compute the h used in computing matrix-vector products via differencing of the function 1801 1802 Level: beginner 1803 1804 .seealso: MatMFFDSetType(), MatMFFDRegister() 1805 J*/ 1806 #define MatMFFDType char* 1807 #define MATMFFD_DS "ds" 1808 #define MATMFFD_WP "wp" 1809 1810 extern PetscErrorCode MatMFFDSetType(Mat,const MatMFFDType); 1811 extern PetscErrorCode MatMFFDRegister(const char[],const char[],const char[],PetscErrorCode (*)(MatMFFD)); 1812 1813 /*MC 1814 MatMFFDRegisterDynamic - Adds a method to the MatMFFD registry. 1815 1816 Synopsis: 1817 PetscErrorCode MatMFFDRegisterDynamic(const char *name_solver,const char *path,const char *name_create,PetscErrorCode (*routine_create)(MatMFFD)) 1818 1819 Not Collective 1820 1821 Input Parameters: 1822 + name_solver - name of a new user-defined compute-h module 1823 . path - path (either absolute or relative) the library containing this solver 1824 . name_create - name of routine to create method context 1825 - routine_create - routine to create method context 1826 1827 Level: developer 1828 1829 Notes: 1830 MatMFFDRegisterDynamic() may be called multiple times to add several user-defined solvers. 1831 1832 If dynamic libraries are used, then the fourth input argument (routine_create) 1833 is ignored. 1834 1835 Sample usage: 1836 .vb 1837 MatMFFDRegisterDynamic("my_h",/home/username/my_lib/lib/libO/solaris/mylib.a, 1838 "MyHCreate",MyHCreate); 1839 .ve 1840 1841 Then, your solver can be chosen with the procedural interface via 1842 $ MatMFFDSetType(mfctx,"my_h") 1843 or at runtime via the option 1844 $ -snes_mf_type my_h 1845 1846 .keywords: MatMFFD, register 1847 1848 .seealso: MatMFFDRegisterAll(), MatMFFDRegisterDestroy() 1849 M*/ 1850 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 1851 #define MatMFFDRegisterDynamic(a,b,c,d) MatMFFDRegister(a,b,c,0) 1852 #else 1853 #define MatMFFDRegisterDynamic(a,b,c,d) MatMFFDRegister(a,b,c,d) 1854 #endif 1855 1856 extern PetscErrorCode MatMFFDRegisterAll(const char[]); 1857 extern PetscErrorCode MatMFFDRegisterDestroy(void); 1858 extern PetscErrorCode MatMFFDDSSetUmin(Mat,PetscReal); 1859 extern PetscErrorCode MatMFFDWPSetComputeNormU(Mat,PetscBool ); 1860 1861 1862 extern PetscErrorCode PetscViewerMathematicaPutMatrix(PetscViewer, PetscInt, PetscInt, PetscReal *); 1863 extern PetscErrorCode PetscViewerMathematicaPutCSRMatrix(PetscViewer, PetscInt, PetscInt, PetscInt *, PetscInt *, PetscReal *); 1864 1865 /* 1866 PETSc interface to MUMPS 1867 */ 1868 #ifdef PETSC_HAVE_MUMPS 1869 extern PetscErrorCode MatMumpsSetIcntl(Mat,PetscInt,PetscInt); 1870 #endif 1871 1872 /* 1873 PETSc interface to SUPERLU 1874 */ 1875 #ifdef PETSC_HAVE_SUPERLU 1876 extern PetscErrorCode MatSuperluSetILUDropTol(Mat,PetscReal); 1877 #endif 1878 1879 #if defined(PETSC_HAVE_CUSP) 1880 extern PetscErrorCode MatCreateSeqAIJCUSP(MPI_Comm,PetscInt,PetscInt,PetscInt,const PetscInt[],Mat*); 1881 extern PetscErrorCode MatCreateAIJCUSP(MPI_Comm,PetscInt,PetscInt,PetscInt,PetscInt,PetscInt,const PetscInt[],PetscInt,const PetscInt[],Mat*); 1882 #endif 1883 1884 /* 1885 PETSc interface to FFTW 1886 */ 1887 #if defined(PETSC_HAVE_FFTW) 1888 extern PetscErrorCode VecScatterPetscToFFTW(Mat,Vec,Vec); 1889 extern PetscErrorCode VecScatterFFTWToPetsc(Mat,Vec,Vec); 1890 extern PetscErrorCode MatGetVecsFFTW(Mat,Vec*,Vec*,Vec*); 1891 #endif 1892 1893 extern PetscErrorCode MatCreateNest(MPI_Comm,PetscInt,const IS[],PetscInt,const IS[],const Mat[],Mat*); 1894 extern PetscErrorCode MatNestGetSize(Mat,PetscInt*,PetscInt*); 1895 extern PetscErrorCode MatNestGetISs(Mat,IS[],IS[]); 1896 extern PetscErrorCode MatNestGetLocalISs(Mat,IS[],IS[]); 1897 extern PetscErrorCode MatNestGetSubMats(Mat,PetscInt*,PetscInt*,Mat***); 1898 extern PetscErrorCode MatNestGetSubMat(Mat,PetscInt,PetscInt,Mat*); 1899 extern PetscErrorCode MatNestSetVecType(Mat,const VecType); 1900 extern PetscErrorCode MatNestSetSubMats(Mat,PetscInt,const IS[],PetscInt,const IS[],const Mat[]); 1901 extern PetscErrorCode MatNestSetSubMat(Mat,PetscInt,PetscInt,Mat); 1902 1903 /* 1904 MatIJ: 1905 An unweighted directed pseudograph 1906 An interpretation of this matrix as a (pseudo)graph allows us to define additional operations on it: 1907 A MatIJ can act on sparse arrays: arrays of indices, or index arrays of integers, scalars, or integer-scalar pairs 1908 by mapping the indices to the indices connected to them by the (pseudo)graph ed 1909 */ 1910 typedef enum {MATIJ_LOCAL, MATIJ_GLOBAL} MatIJIndexType; 1911 extern PetscErrorCode MatIJSetMultivalued(Mat, PetscBool); 1912 extern PetscErrorCode MatIJGetMultivalued(Mat, PetscBool*); 1913 extern PetscErrorCode MatIJSetEdges(Mat, PetscInt, const PetscInt*, const PetscInt*); 1914 extern PetscErrorCode MatIJGetEdges(Mat, PetscInt *, PetscInt **, PetscInt **); 1915 extern PetscErrorCode MatIJSetEdgesIS(Mat, IS, IS); 1916 extern PetscErrorCode MatIJGetEdgesIS(Mat, IS*, IS*); 1917 extern PetscErrorCode MatIJGetRowSizes(Mat, MatIJIndexType, PetscInt, const PetscInt *, PetscInt **); 1918 extern PetscErrorCode MatIJGetMinRowSize(Mat, PetscInt *); 1919 extern PetscErrorCode MatIJGetMaxRowSize(Mat, PetscInt *); 1920 extern PetscErrorCode MatIJGetSupport(Mat, PetscInt *, PetscInt **); 1921 extern PetscErrorCode MatIJGetSupportIS(Mat, IS *); 1922 extern PetscErrorCode MatIJGetImage(Mat, PetscInt*, PetscInt**); 1923 extern PetscErrorCode MatIJGetImageIS(Mat, IS *); 1924 extern PetscErrorCode MatIJGetSupportSize(Mat, PetscInt *); 1925 extern PetscErrorCode MatIJGetImageSize(Mat, PetscInt *); 1926 1927 extern PetscErrorCode MatIJBinRenumber(Mat, Mat*); 1928 1929 extern PetscErrorCode MatIJMap(Mat, MatIJIndexType, PetscInt,const PetscInt*,const PetscInt*,const PetscScalar*, MatIJIndexType,PetscInt*,PetscInt**,PetscInt**,PetscScalar**,PetscInt**); 1930 extern PetscErrorCode MatIJBin(Mat, MatIJIndexType, PetscInt,const PetscInt*,const PetscInt*,const PetscScalar*,PetscInt*,PetscInt**,PetscInt**,PetscScalar**,PetscInt**); 1931 extern PetscErrorCode MatIJBinMap(Mat,Mat, MatIJIndexType,PetscInt,const PetscInt*,const PetscInt*,const PetscScalar*,MatIJIndexType,PetscInt*,PetscInt**,PetscInt**,PetscScalar**,PetscInt**); 1932 1933 PETSC_EXTERN_CXX_END 1934 #endif 1935