1 /* 2 Defines the interface functions for the Krylov subspace accelerators. 3 */ 4 #ifndef __PETSCKSP_H 5 #define __PETSCKSP_H 6 #include "petscpc.h" 7 PETSC_EXTERN_CXX_BEGIN 8 9 extern PetscErrorCode KSPInitializePackage(const char[]); 10 11 /*S 12 KSP - Abstract PETSc object that manages all Krylov methods 13 14 Level: beginner 15 16 Concepts: Krylov methods 17 18 .seealso: KSPCreate(), KSPSetType(), KSPType, SNES, TS, PC, KSP 19 S*/ 20 typedef struct _p_KSP* KSP; 21 22 /*J 23 KSPType - String with the name of a PETSc Krylov method or the creation function 24 with an optional dynamic library name, for example 25 http://www.mcs.anl.gov/petsc/lib.a:mykspcreate() 26 27 Level: beginner 28 29 .seealso: KSPSetType(), KSP 30 J*/ 31 #define KSPType char* 32 #define KSPRICHARDSON "richardson" 33 #define KSPCHEBYCHEV "chebychev" 34 #define KSPCG "cg" 35 #define KSPCGNE "cgne" 36 #define KSPNASH "nash" 37 #define KSPSTCG "stcg" 38 #define KSPGLTR "gltr" 39 #define KSPGMRES "gmres" 40 #define KSPFGMRES "fgmres" 41 #define KSPLGMRES "lgmres" 42 #define KSPDGMRES "dgmres" 43 #define KSPTCQMR "tcqmr" 44 #define KSPBCGS "bcgs" 45 #define KSPIBCGS "ibcgs" 46 #define KSPBCGSL "bcgsl" 47 #define KSPCGS "cgs" 48 #define KSPTFQMR "tfqmr" 49 #define KSPCR "cr" 50 #define KSPLSQR "lsqr" 51 #define KSPPREONLY "preonly" 52 #define KSPQCG "qcg" 53 #define KSPBICG "bicg" 54 #define KSPMINRES "minres" 55 #define KSPSYMMLQ "symmlq" 56 #define KSPLCD "lcd" 57 #define KSPPYTHON "python" 58 #define KSPBROYDEN "broyden" 59 #define KSPGCR "gcr" 60 #define KSPNGMRES "ngmres" 61 #define KSPSPECEST "specest" 62 63 /* Logging support */ 64 extern PetscClassId KSP_CLASSID; 65 66 extern PetscErrorCode KSPCreate(MPI_Comm,KSP *); 67 extern PetscErrorCode KSPSetType(KSP,const KSPType); 68 extern PetscErrorCode KSPSetUp(KSP); 69 extern PetscErrorCode KSPSetUpOnBlocks(KSP); 70 extern PetscErrorCode KSPSolve(KSP,Vec,Vec); 71 extern PetscErrorCode KSPSolveTranspose(KSP,Vec,Vec); 72 extern PetscErrorCode KSPReset(KSP); 73 extern PetscErrorCode KSPDestroy(KSP*); 74 75 extern PetscFList KSPList; 76 extern PetscBool KSPRegisterAllCalled; 77 extern PetscErrorCode KSPRegisterAll(const char[]); 78 extern PetscErrorCode KSPRegisterDestroy(void); 79 extern PetscErrorCode KSPRegister(const char[],const char[],const char[],PetscErrorCode (*)(KSP)); 80 81 /*MC 82 KSPRegisterDynamic - Adds a method to the Krylov subspace solver package. 83 84 Synopsis: 85 PetscErrorCode KSPRegisterDynamic(const char *name_solver,const char *path,const char *name_create,PetscErrorCode (*routine_create)(KSP)) 86 87 Not Collective 88 89 Input Parameters: 90 + name_solver - name of a new user-defined solver 91 . path - path (either absolute or relative) the library containing this solver 92 . name_create - name of routine to create method context 93 - routine_create - routine to create method context 94 95 Notes: 96 KSPRegisterDynamic() may be called multiple times to add several user-defined solvers. 97 98 If dynamic libraries are used, then the fourth input argument (routine_create) 99 is ignored. 100 101 Sample usage: 102 .vb 103 KSPRegisterDynamic("my_solver",/home/username/my_lib/lib/libO/solaris/mylib.a, 104 "MySolverCreate",MySolverCreate); 105 .ve 106 107 Then, your solver can be chosen with the procedural interface via 108 $ KSPSetType(ksp,"my_solver") 109 or at runtime via the option 110 $ -ksp_type my_solver 111 112 Level: advanced 113 114 Notes: Environmental variables such as ${PETSC_ARCH}, ${PETSC_DIR}, ${PETSC_LIB_DIR}, 115 and others of the form ${any_environmental_variable} occuring in pathname will be 116 replaced with appropriate values. 117 If your function is not being put into a shared library then use KSPRegister() instead 118 119 .keywords: KSP, register 120 121 .seealso: KSPRegisterAll(), KSPRegisterDestroy() 122 123 M*/ 124 #if defined(PETSC_USE_DYNAMIC_LIBRARIES) 125 #define KSPRegisterDynamic(a,b,c,d) KSPRegister(a,b,c,0) 126 #else 127 #define KSPRegisterDynamic(a,b,c,d) KSPRegister(a,b,c,d) 128 #endif 129 130 extern PetscErrorCode KSPGetType(KSP,const KSPType *); 131 extern PetscErrorCode KSPSetPCSide(KSP,PCSide); 132 extern PetscErrorCode KSPGetPCSide(KSP,PCSide*); 133 extern PetscErrorCode KSPGetTolerances(KSP,PetscReal*,PetscReal*,PetscReal*,PetscInt*); 134 extern PetscErrorCode KSPSetTolerances(KSP,PetscReal,PetscReal,PetscReal,PetscInt); 135 extern PetscErrorCode KSPSetInitialGuessNonzero(KSP,PetscBool ); 136 extern PetscErrorCode KSPGetInitialGuessNonzero(KSP,PetscBool *); 137 extern PetscErrorCode KSPSetInitialGuessKnoll(KSP,PetscBool ); 138 extern PetscErrorCode KSPGetInitialGuessKnoll(KSP,PetscBool *); 139 extern PetscErrorCode KSPSetErrorIfNotConverged(KSP,PetscBool ); 140 extern PetscErrorCode KSPGetErrorIfNotConverged(KSP,PetscBool *); 141 extern PetscErrorCode KSPGetComputeEigenvalues(KSP,PetscBool *); 142 extern PetscErrorCode KSPSetComputeEigenvalues(KSP,PetscBool ); 143 extern PetscErrorCode KSPGetComputeSingularValues(KSP,PetscBool *); 144 extern PetscErrorCode KSPSetComputeSingularValues(KSP,PetscBool ); 145 extern PetscErrorCode KSPGetRhs(KSP,Vec *); 146 extern PetscErrorCode KSPGetSolution(KSP,Vec *); 147 extern PetscErrorCode KSPGetResidualNorm(KSP,PetscReal*); 148 extern PetscErrorCode KSPGetIterationNumber(KSP,PetscInt*); 149 extern PetscErrorCode KSPSetNullSpace(KSP,MatNullSpace); 150 extern PetscErrorCode KSPGetNullSpace(KSP,MatNullSpace*); 151 extern PetscErrorCode KSPGetVecs(KSP,PetscInt,Vec**,PetscInt,Vec**); 152 153 extern PetscErrorCode KSPSetPC(KSP,PC); 154 extern PetscErrorCode KSPGetPC(KSP,PC*); 155 156 extern PetscErrorCode KSPMonitor(KSP,PetscInt,PetscReal); 157 extern PetscErrorCode KSPMonitorSet(KSP,PetscErrorCode (*)(KSP,PetscInt,PetscReal,void*),void *,PetscErrorCode (*)(void**)); 158 extern PetscErrorCode KSPMonitorCancel(KSP); 159 extern PetscErrorCode KSPGetMonitorContext(KSP,void **); 160 extern PetscErrorCode KSPGetResidualHistory(KSP,PetscReal*[],PetscInt *); 161 extern PetscErrorCode KSPSetResidualHistory(KSP,PetscReal[],PetscInt,PetscBool ); 162 163 /* not sure where to put this */ 164 extern PetscErrorCode PCKSPGetKSP(PC,KSP*); 165 extern PetscErrorCode PCBJacobiGetSubKSP(PC,PetscInt*,PetscInt*,KSP*[]); 166 extern PetscErrorCode PCASMGetSubKSP(PC,PetscInt*,PetscInt*,KSP*[]); 167 extern PetscErrorCode PCGASMGetSubKSP(PC,PetscInt*,PetscInt*,KSP*[]); 168 extern PetscErrorCode PCFieldSplitGetSubKSP(PC,PetscInt*,KSP*[]); 169 170 extern PetscErrorCode PCGalerkinGetKSP(PC,KSP *); 171 172 extern PetscErrorCode KSPBuildSolution(KSP,Vec,Vec *); 173 extern PetscErrorCode KSPBuildResidual(KSP,Vec,Vec,Vec *); 174 175 extern PetscErrorCode KSPRichardsonSetScale(KSP,PetscReal); 176 extern PetscErrorCode KSPRichardsonSetSelfScale(KSP,PetscBool ); 177 extern PetscErrorCode KSPChebychevSetEigenvalues(KSP,PetscReal,PetscReal); 178 extern PetscErrorCode KSPChebychevSetEstimateEigenvalues(KSP,PetscReal,PetscReal,PetscReal,PetscReal); 179 extern PetscErrorCode KSPComputeExtremeSingularValues(KSP,PetscReal*,PetscReal*); 180 extern PetscErrorCode KSPComputeEigenvalues(KSP,PetscInt,PetscReal*,PetscReal*,PetscInt *); 181 extern PetscErrorCode KSPComputeEigenvaluesExplicitly(KSP,PetscInt,PetscReal*,PetscReal*); 182 183 extern PetscErrorCode KSPGMRESSetRestart(KSP, PetscInt); 184 extern PetscErrorCode KSPGMRESGetRestart(KSP, PetscInt*); 185 extern PetscErrorCode KSPGMRESSetHapTol(KSP,PetscReal); 186 187 extern PetscErrorCode KSPGMRESSetPreAllocateVectors(KSP); 188 extern PetscErrorCode KSPGMRESSetOrthogonalization(KSP,PetscErrorCode (*)(KSP,PetscInt)); 189 extern PetscErrorCode KSPGMRESGetOrthogonalization(KSP,PetscErrorCode (**)(KSP,PetscInt)); 190 extern PetscErrorCode KSPGMRESModifiedGramSchmidtOrthogonalization(KSP,PetscInt); 191 extern PetscErrorCode KSPGMRESClassicalGramSchmidtOrthogonalization(KSP,PetscInt); 192 193 extern PetscErrorCode KSPLGMRESSetAugDim(KSP,PetscInt); 194 extern PetscErrorCode KSPLGMRESSetConstant(KSP); 195 196 extern PetscErrorCode KSPGCRSetRestart(KSP,PetscInt); 197 extern PetscErrorCode KSPGCRGetRestart(KSP,PetscInt*); 198 extern PetscErrorCode KSPGCRSetModifyPC(KSP,PetscErrorCode (*)(KSP,PetscInt,PetscReal,void*),void*,PetscErrorCode(*)(void*)); 199 200 /*E 201 KSPGMRESCGSRefinementType - How the classical (unmodified) Gram-Schmidt is performed. 202 203 Level: advanced 204 205 .seealso: KSPGMRESClassicalGramSchmidtOrthogonalization(), KSPGMRESSetOrthogonalization(), KSPGMRESGetOrthogonalization(), 206 KSPGMRESSetCGSRefinementType(), KSPGMRESGetCGSRefinementType(), KSPGMRESModifiedGramSchmidtOrthogonalization() 207 208 E*/ 209 typedef enum {KSP_GMRES_CGS_REFINE_NEVER, KSP_GMRES_CGS_REFINE_IFNEEDED, KSP_GMRES_CGS_REFINE_ALWAYS} KSPGMRESCGSRefinementType; 210 extern const char *KSPGMRESCGSRefinementTypes[]; 211 /*MC 212 KSP_GMRES_CGS_REFINE_NEVER - Just do the classical (unmodified) Gram-Schmidt process 213 214 Level: advanced 215 216 Note: Possible unstable, but the fastest to compute 217 218 .seealso: KSPGMRESClassicalGramSchmidtOrthogonalization(), KSPGMRESSetOrthogonalization(), KSPGMRESGetOrthogonalization(), 219 KSPGMRESSetCGSRefinementType(), KSPGMRESGetCGSRefinementType(), KSP_GMRES_CGS_REFINE_IFNEEDED, KSP_GMRES_CGS_REFINE_ALWAYS, 220 KSPGMRESModifiedGramSchmidtOrthogonalization() 221 M*/ 222 223 /*MC 224 KSP_GMRES_CGS_REFINE_IFNEEDED - Do the classical (unmodified) Gram-Schmidt process and one step of 225 iterative refinement if an estimate of the orthogonality of the resulting vectors indicates 226 poor orthogonality. 227 228 Level: advanced 229 230 Note: This is slower than KSP_GMRES_CGS_REFINE_NEVER because it requires an extra norm computation to 231 estimate the orthogonality but is more stable. 232 233 .seealso: KSPGMRESClassicalGramSchmidtOrthogonalization(), KSPGMRESSetOrthogonalization(), KSPGMRESGetOrthogonalization(), 234 KSPGMRESSetCGSRefinementType(), KSPGMRESGetCGSRefinementType(), KSP_GMRES_CGS_REFINE_NEVER, KSP_GMRES_CGS_REFINE_ALWAYS, 235 KSPGMRESModifiedGramSchmidtOrthogonalization() 236 M*/ 237 238 /*MC 239 KSP_GMRES_CGS_REFINE_NEVER - Do two steps of the classical (unmodified) Gram-Schmidt process. 240 241 Level: advanced 242 243 Note: This is roughly twice the cost of KSP_GMRES_CGS_REFINE_NEVER because it performs the process twice 244 but it saves the extra norm calculation needed by KSP_GMRES_CGS_REFINE_IFNEEDED. 245 246 You should only use this if you absolutely know that the iterative refinement is needed. 247 248 .seealso: KSPGMRESClassicalGramSchmidtOrthogonalization(), KSPGMRESSetOrthogonalization(), KSPGMRESGetOrthogonalization(), 249 KSPGMRESSetCGSRefinementType(), KSPGMRESGetCGSRefinementType(), KSP_GMRES_CGS_REFINE_IFNEEDED, KSP_GMRES_CGS_REFINE_ALWAYS, 250 KSPGMRESModifiedGramSchmidtOrthogonalization() 251 M*/ 252 253 extern PetscErrorCode KSPGMRESSetCGSRefinementType(KSP,KSPGMRESCGSRefinementType); 254 extern PetscErrorCode KSPGMRESGetCGSRefinementType(KSP,KSPGMRESCGSRefinementType*); 255 256 extern PetscErrorCode KSPFGMRESModifyPCNoChange(KSP,PetscInt,PetscInt,PetscReal,void*); 257 extern PetscErrorCode KSPFGMRESModifyPCKSP(KSP,PetscInt,PetscInt,PetscReal,void*); 258 extern PetscErrorCode KSPFGMRESSetModifyPC(KSP,PetscErrorCode (*)(KSP,PetscInt,PetscInt,PetscReal,void*),void*,PetscErrorCode(*)(void*)); 259 260 extern PetscErrorCode KSPQCGSetTrustRegionRadius(KSP,PetscReal); 261 extern PetscErrorCode KSPQCGGetQuadratic(KSP,PetscReal*); 262 extern PetscErrorCode KSPQCGGetTrialStepNorm(KSP,PetscReal*); 263 264 extern PetscErrorCode KSPBCGSLSetXRes(KSP,PetscReal); 265 extern PetscErrorCode KSPBCGSLSetPol(KSP,PetscBool ); 266 extern PetscErrorCode KSPBCGSLSetEll(KSP,PetscInt); 267 268 extern PetscErrorCode KSPSetFromOptions(KSP); 269 extern PetscErrorCode KSPAddOptionsChecker(PetscErrorCode (*)(KSP)); 270 271 extern PetscErrorCode KSPMonitorSingularValue(KSP,PetscInt,PetscReal,void *); 272 extern PetscErrorCode KSPMonitorDefault(KSP,PetscInt,PetscReal,void *); 273 extern PetscErrorCode KSPMonitorDefaultLSQR(KSP,PetscInt,PetscReal,void *); 274 extern PetscErrorCode KSPMonitorRange(KSP,PetscInt,PetscReal,void *); 275 extern PetscErrorCode KSPMonitorTrueResidualNorm(KSP,PetscInt,PetscReal,void *); 276 extern PetscErrorCode KSPMonitorDefaultShort(KSP,PetscInt,PetscReal,void *); 277 extern PetscErrorCode KSPMonitorSolution(KSP,PetscInt,PetscReal,void *); 278 extern PetscErrorCode KSPGMRESMonitorKrylov(KSP,PetscInt,PetscReal,void *); 279 280 extern PetscErrorCode KSPUnwindPreconditioner(KSP,Vec,Vec); 281 extern PetscErrorCode KSPDefaultBuildSolution(KSP,Vec,Vec*); 282 extern PetscErrorCode KSPDefaultBuildResidual(KSP,Vec,Vec,Vec *); 283 extern PetscErrorCode KSPInitialResidual(KSP,Vec,Vec,Vec,Vec,Vec); 284 285 extern PetscErrorCode KSPSetOperators(KSP,Mat,Mat,MatStructure); 286 extern PetscErrorCode KSPGetOperators(KSP,Mat*,Mat*,MatStructure*); 287 extern PetscErrorCode KSPGetOperatorsSet(KSP,PetscBool *,PetscBool *); 288 extern PetscErrorCode KSPSetOptionsPrefix(KSP,const char[]); 289 extern PetscErrorCode KSPAppendOptionsPrefix(KSP,const char[]); 290 extern PetscErrorCode KSPGetOptionsPrefix(KSP,const char*[]); 291 292 extern PetscErrorCode KSPSetDiagonalScale(KSP,PetscBool ); 293 extern PetscErrorCode KSPGetDiagonalScale(KSP,PetscBool *); 294 extern PetscErrorCode KSPSetDiagonalScaleFix(KSP,PetscBool ); 295 extern PetscErrorCode KSPGetDiagonalScaleFix(KSP,PetscBool *); 296 297 extern PetscErrorCode KSPView(KSP,PetscViewer); 298 299 extern PetscErrorCode KSPLSQRSetStandardErrorVec(KSP,Vec); 300 extern PetscErrorCode KSPLSQRGetStandardErrorVec(KSP,Vec*); 301 302 extern PetscErrorCode PCRedundantGetKSP(PC,KSP*); 303 extern PetscErrorCode PCRedistributeGetKSP(PC,KSP*); 304 305 /*E 306 KSPNormType - Norm that is passed in the Krylov convergence 307 test routines. 308 309 Level: advanced 310 311 Each solver only supports a subset of these and some may support different ones 312 depending on left or right preconditioning, see KSPSetPCSide() 313 314 Notes: this must match finclude/petscksp.h 315 316 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPSetNormType(), 317 KSPSetConvergenceTest(), KSPSetPCSide() 318 E*/ 319 typedef enum {KSP_NORM_DEFAULT = -1,KSP_NORM_NONE = 0,KSP_NORM_PRECONDITIONED = 1,KSP_NORM_UNPRECONDITIONED = 2,KSP_NORM_NATURAL = 3} KSPNormType; 320 #define KSP_NORM_MAX (KSP_NORM_NATURAL + 1) 321 extern const char *const*const KSPNormTypes; 322 323 /*MC 324 KSP_NORM_NONE - Do not compute a norm during the Krylov process. This will 325 possibly save some computation but means the convergence test cannot 326 be based on a norm of a residual etc. 327 328 Level: advanced 329 330 Note: Some Krylov methods need to compute a residual norm and then this option is ignored 331 332 .seealso: KSPNormType, KSPSetNormType(), KSP_NORM_PRECONDITIONED, KSP_NORM_UNPRECONDITIONED, KSP_NORM_NATURAL 333 M*/ 334 335 /*MC 336 KSP_NORM_PRECONDITIONED - Compute the norm of the preconditioned residual and pass that to the 337 convergence test routine. 338 339 Level: advanced 340 341 .seealso: KSPNormType, KSPSetNormType(), KSP_NORM_NONE, KSP_NORM_UNPRECONDITIONED, KSP_NORM_NATURAL, KSPSetConvergenceTest() 342 M*/ 343 344 /*MC 345 KSP_NORM_UNPRECONDITIONED - Compute the norm of the true residual (b - A*x) and pass that to the 346 convergence test routine. 347 348 Level: advanced 349 350 .seealso: KSPNormType, KSPSetNormType(), KSP_NORM_NONE, KSP_NORM_PRECONDITIONED, KSP_NORM_NATURAL, KSPSetConvergenceTest() 351 M*/ 352 353 /*MC 354 KSP_NORM_NATURAL - Compute the 'natural norm' of residual sqrt((b - A*x)*B*(b - A*x)) and pass that to the 355 convergence test routine. This is only supported by KSPCG, KSPCR, KSPCGNE, KSPCGS 356 357 Level: advanced 358 359 .seealso: KSPNormType, KSPSetNormType(), KSP_NORM_NONE, KSP_NORM_PRECONDITIONED, KSP_NORM_UNPRECONDITIONED, KSPSetConvergenceTest() 360 M*/ 361 362 extern PetscErrorCode KSPSetNormType(KSP,KSPNormType); 363 extern PetscErrorCode KSPGetNormType(KSP,KSPNormType*); 364 extern PetscErrorCode KSPSetSupportedNorm(KSP ksp,KSPNormType,PCSide,PetscInt); 365 extern PetscErrorCode KSPSetCheckNormIteration(KSP,PetscInt); 366 extern PetscErrorCode KSPSetLagNorm(KSP,PetscBool ); 367 368 /*E 369 KSPConvergedReason - reason a Krylov method was said to 370 have converged or diverged 371 372 Level: beginner 373 374 Notes: See KSPGetConvergedReason() for explanation of each value 375 376 Developer notes: this must match finclude/petscksp.h 377 378 The string versions of these are KSPConvergedReasons; if you change 379 any of the values here also change them that array of names. 380 381 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPSetTolerances() 382 E*/ 383 typedef enum {/* converged */ 384 KSP_CONVERGED_RTOL_NORMAL = 1, 385 KSP_CONVERGED_ATOL_NORMAL = 9, 386 KSP_CONVERGED_RTOL = 2, 387 KSP_CONVERGED_ATOL = 3, 388 KSP_CONVERGED_ITS = 4, 389 KSP_CONVERGED_CG_NEG_CURVE = 5, 390 KSP_CONVERGED_CG_CONSTRAINED = 6, 391 KSP_CONVERGED_STEP_LENGTH = 7, 392 KSP_CONVERGED_HAPPY_BREAKDOWN = 8, 393 /* diverged */ 394 KSP_DIVERGED_NULL = -2, 395 KSP_DIVERGED_ITS = -3, 396 KSP_DIVERGED_DTOL = -4, 397 KSP_DIVERGED_BREAKDOWN = -5, 398 KSP_DIVERGED_BREAKDOWN_BICG = -6, 399 KSP_DIVERGED_NONSYMMETRIC = -7, 400 KSP_DIVERGED_INDEFINITE_PC = -8, 401 KSP_DIVERGED_NAN = -9, 402 KSP_DIVERGED_INDEFINITE_MAT = -10, 403 404 KSP_CONVERGED_ITERATING = 0} KSPConvergedReason; 405 extern const char *const*KSPConvergedReasons; 406 407 /*MC 408 KSP_CONVERGED_RTOL - norm(r) <= rtol*norm(b) 409 410 Level: beginner 411 412 See KSPNormType and KSPSetNormType() for possible norms that may be used. By default 413 for left preconditioning it is the 2-norm of the preconditioned residual, and the 414 2-norm of the residual for right preconditioning 415 416 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 417 418 M*/ 419 420 /*MC 421 KSP_CONVERGED_ATOL - norm(r) <= atol 422 423 Level: beginner 424 425 See KSPNormType and KSPSetNormType() for possible norms that may be used. By default 426 for left preconditioning it is the 2-norm of the preconditioned residual, and the 427 2-norm of the residual for right preconditioning 428 429 Level: beginner 430 431 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 432 433 M*/ 434 435 /*MC 436 KSP_DIVERGED_DTOL - norm(r) >= dtol*norm(b) 437 438 Level: beginner 439 440 See KSPNormType and KSPSetNormType() for possible norms that may be used. By default 441 for left preconditioning it is the 2-norm of the preconditioned residual, and the 442 2-norm of the residual for right preconditioning 443 444 Level: beginner 445 446 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 447 448 M*/ 449 450 /*MC 451 KSP_DIVERGED_ITS - Ran out of iterations before any convergence criteria was 452 reached 453 454 Level: beginner 455 456 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 457 458 M*/ 459 460 /*MC 461 KSP_CONVERGED_ITS - Used by the KSPPREONLY solver after the single iteration of 462 the preconditioner is applied. Also used when the KSPSkipConverged() convergence 463 test routine is set in KSP. 464 465 466 Level: beginner 467 468 469 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 470 471 M*/ 472 473 /*MC 474 KSP_DIVERGED_BREAKDOWN - A breakdown in the Krylov method was detected so the 475 method could not continue to enlarge the Krylov space. Could be due to a singlular matrix or 476 preconditioner. 477 478 Level: beginner 479 480 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 481 482 M*/ 483 484 /*MC 485 KSP_DIVERGED_BREAKDOWN_BICG - A breakdown in the KSPBICG method was detected so the 486 method could not continue to enlarge the Krylov space. 487 488 489 Level: beginner 490 491 492 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 493 494 M*/ 495 496 /*MC 497 KSP_DIVERGED_NONSYMMETRIC - It appears the operator or preconditioner is not 498 symmetric and this Krylov method (KSPCG, KSPMINRES, KSPCR) requires symmetry 499 500 Level: beginner 501 502 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 503 504 M*/ 505 506 /*MC 507 KSP_DIVERGED_INDEFINITE_PC - It appears the preconditioner is indefinite (has both 508 positive and negative eigenvalues) and this Krylov method (KSPCG) requires it to 509 be positive definite 510 511 Level: beginner 512 513 Notes: This can happen with the PCICC preconditioner, use -pc_factor_shift_positive_definite to force 514 the PCICC preconditioner to generate a positive definite preconditioner 515 516 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 517 518 M*/ 519 520 /*MC 521 KSP_CONVERGED_ITERATING - This flag is returned if you call KSPGetConvergedReason() 522 while the KSPSolve() is still running. 523 524 Level: beginner 525 526 .seealso: KSPSolve(), KSPGetConvergedReason(), KSPConvergedReason, KSPSetTolerances() 527 528 M*/ 529 530 extern PetscErrorCode KSPSetConvergenceTest(KSP,PetscErrorCode (*)(KSP,PetscInt,PetscReal,KSPConvergedReason*,void*),void *,PetscErrorCode (*)(void*)); 531 extern PetscErrorCode KSPGetConvergenceContext(KSP,void **); 532 extern PetscErrorCode KSPDefaultConverged(KSP,PetscInt,PetscReal,KSPConvergedReason*,void *); 533 extern PetscErrorCode KSPConvergedLSQR(KSP,PetscInt,PetscReal,KSPConvergedReason*,void *); 534 extern PetscErrorCode KSPDefaultConvergedDestroy(void *); 535 extern PetscErrorCode KSPDefaultConvergedCreate(void **); 536 extern PetscErrorCode KSPDefaultConvergedSetUIRNorm(KSP); 537 extern PetscErrorCode KSPDefaultConvergedSetUMIRNorm(KSP); 538 extern PetscErrorCode KSPSkipConverged(KSP,PetscInt,PetscReal,KSPConvergedReason*,void *); 539 extern PetscErrorCode KSPGetConvergedReason(KSP,KSPConvergedReason *); 540 541 extern PetscErrorCode KSPComputeExplicitOperator(KSP,Mat *); 542 543 /*E 544 KSPCGType - Determines what type of CG to use 545 546 Level: beginner 547 548 .seealso: KSPCGSetType() 549 E*/ 550 typedef enum {KSP_CG_SYMMETRIC=0,KSP_CG_HERMITIAN=1} KSPCGType; 551 extern const char *KSPCGTypes[]; 552 553 extern PetscErrorCode KSPCGSetType(KSP,KSPCGType); 554 extern PetscErrorCode KSPCGUseSingleReduction(KSP,PetscBool ); 555 556 extern PetscErrorCode KSPNASHSetRadius(KSP,PetscReal); 557 extern PetscErrorCode KSPNASHGetNormD(KSP,PetscReal *); 558 extern PetscErrorCode KSPNASHGetObjFcn(KSP,PetscReal *); 559 560 extern PetscErrorCode KSPSTCGSetRadius(KSP,PetscReal); 561 extern PetscErrorCode KSPSTCGGetNormD(KSP,PetscReal *); 562 extern PetscErrorCode KSPSTCGGetObjFcn(KSP,PetscReal *); 563 564 extern PetscErrorCode KSPGLTRSetRadius(KSP,PetscReal); 565 extern PetscErrorCode KSPGLTRGetNormD(KSP,PetscReal *); 566 extern PetscErrorCode KSPGLTRGetObjFcn(KSP,PetscReal *); 567 extern PetscErrorCode KSPGLTRGetMinEig(KSP,PetscReal *); 568 extern PetscErrorCode KSPGLTRGetLambda(KSP,PetscReal *); 569 570 extern PetscErrorCode KSPPythonSetType(KSP,const char[]); 571 572 extern PetscErrorCode PCPreSolve(PC,KSP); 573 extern PetscErrorCode PCPostSolve(PC,KSP); 574 575 extern PetscErrorCode KSPMonitorLGCreate(const char[],const char[],int,int,int,int,PetscDrawLG*); 576 extern PetscErrorCode KSPMonitorLG(KSP,PetscInt,PetscReal,void*); 577 extern PetscErrorCode KSPMonitorLGDestroy(PetscDrawLG*); 578 extern PetscErrorCode KSPMonitorLGTrueResidualNormCreate(MPI_Comm,const char[],const char[],int,int,int,int,PetscDrawLG*); 579 extern PetscErrorCode KSPMonitorLGTrueResidualNorm(KSP,PetscInt,PetscReal,void*); 580 extern PetscErrorCode KSPMonitorLGTrueResidualNormDestroy(PetscDrawLG*); 581 extern PetscErrorCode KSPMonitorLGRangeCreate(const char[],const char[],int,int,int,int,PetscDrawLG*); 582 extern PetscErrorCode KSPMonitorLGRange(KSP,PetscInt,PetscReal,void*); 583 extern PetscErrorCode KSPMonitorLGRangeDestroy(PetscDrawLG*); 584 585 extern PetscErrorCode PCShellSetPreSolve(PC,PetscErrorCode (*)(PC,KSP,Vec,Vec)); 586 extern PetscErrorCode PCShellSetPostSolve(PC,PetscErrorCode (*)(PC,KSP,Vec,Vec)); 587 588 /* see src/ksp/ksp/interface/iguess.c */ 589 typedef struct _p_KSPFischerGuess {PetscInt method,curl,maxl,refcnt;PetscBool monitor;Mat mat; KSP ksp;}* KSPFischerGuess; 590 591 extern PetscErrorCode KSPFischerGuessCreate(KSP,PetscInt,PetscInt,KSPFischerGuess*); 592 extern PetscErrorCode KSPFischerGuessDestroy(KSPFischerGuess*); 593 extern PetscErrorCode KSPFischerGuessReset(KSPFischerGuess); 594 extern PetscErrorCode KSPFischerGuessUpdate(KSPFischerGuess,Vec); 595 extern PetscErrorCode KSPFischerGuessFormGuess(KSPFischerGuess,Vec,Vec); 596 extern PetscErrorCode KSPFischerGuessSetFromOptions(KSPFischerGuess); 597 598 extern PetscErrorCode KSPSetUseFischerGuess(KSP,PetscInt,PetscInt); 599 extern PetscErrorCode KSPSetFischerGuess(KSP,KSPFischerGuess); 600 extern PetscErrorCode KSPGetFischerGuess(KSP,KSPFischerGuess*); 601 602 extern PetscErrorCode MatCreateSchurComplement(Mat,Mat,Mat,Mat,Mat,Mat*); 603 extern PetscErrorCode MatSchurComplementGetKSP(Mat,KSP*); 604 extern PetscErrorCode MatSchurComplementUpdate(Mat,Mat,Mat,Mat,Mat,Mat,MatStructure); 605 extern PetscErrorCode MatSchurComplementGetSubmatrices(Mat,Mat*,Mat*,Mat*,Mat*,Mat*); 606 extern PetscErrorCode MatGetSchurComplement(Mat,IS,IS,IS,IS,MatReuse,Mat *,MatReuse,Mat *); 607 608 extern PetscErrorCode MatGetSchurComplement_Basic(Mat mat,IS isrow0,IS iscol0,IS isrow1,IS iscol1,MatReuse mreuse,Mat *newmat,MatReuse preuse,Mat *newpmat); 609 610 extern PetscErrorCode KSPSetDM(KSP,DM); 611 extern PetscErrorCode KSPSetDMActive(KSP,PetscBool ); 612 extern PetscErrorCode KSPGetDM(KSP,DM*); 613 extern PetscErrorCode KSPSetApplicationContext(KSP,void*); 614 extern PetscErrorCode KSPGetApplicationContext(KSP,void*); 615 616 PETSC_EXTERN_CXX_END 617 #endif 618