1 #include <petsc/private/snesimpl.h> /*I "petscsnes.h" I*/ 2 #include <petscdmshell.h> 3 #include <petscdraw.h> 4 #include <petscds.h> 5 #include <petscdmadaptor.h> 6 #include <petscconvest.h> 7 8 PetscBool SNESRegisterAllCalled = PETSC_FALSE; 9 PetscFunctionList SNESList = NULL; 10 11 /* Logging support */ 12 PetscClassId SNES_CLASSID, DMSNES_CLASSID; 13 PetscLogEvent SNES_Solve, SNES_FunctionEval, SNES_JacobianEval, SNES_NGSEval, SNES_NGSFuncEval, SNES_NPCSolve, SNES_ObjectiveEval; 14 15 /*@ 16 SNESSetErrorIfNotConverged - Causes SNESSolve() to generate an error if the solver has not converged. 17 18 Logically Collective on SNES 19 20 Input Parameters: 21 + snes - iterative context obtained from SNESCreate() 22 - flg - PETSC_TRUE indicates you want the error generated 23 24 Options database keys: 25 . -snes_error_if_not_converged : this takes an optional truth value (0/1/no/yes/true/false) 26 27 Level: intermediate 28 29 Notes: 30 Normally PETSc continues if a linear solver fails to converge, you can call SNESGetConvergedReason() after a SNESSolve() 31 to determine if it has converged. 32 33 .keywords: SNES, set, initial guess, nonzero 34 35 .seealso: SNESGetErrorIfNotConverged(), KSPGetErrorIfNotConverged(), KSPSetErrorIFNotConverged() 36 @*/ 37 PetscErrorCode SNESSetErrorIfNotConverged(SNES snes,PetscBool flg) 38 { 39 PetscFunctionBegin; 40 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 41 PetscValidLogicalCollectiveBool(snes,flg,2); 42 snes->errorifnotconverged = flg; 43 PetscFunctionReturn(0); 44 } 45 46 /*@ 47 SNESGetErrorIfNotConverged - Will SNESSolve() generate an error if the solver does not converge? 48 49 Not Collective 50 51 Input Parameter: 52 . snes - iterative context obtained from SNESCreate() 53 54 Output Parameter: 55 . flag - PETSC_TRUE if it will generate an error, else PETSC_FALSE 56 57 Level: intermediate 58 59 .keywords: SNES, set, initial guess, nonzero 60 61 .seealso: SNESSetErrorIfNotConverged(), KSPGetErrorIfNotConverged(), KSPSetErrorIFNotConverged() 62 @*/ 63 PetscErrorCode SNESGetErrorIfNotConverged(SNES snes,PetscBool *flag) 64 { 65 PetscFunctionBegin; 66 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 67 PetscValidPointer(flag,2); 68 *flag = snes->errorifnotconverged; 69 PetscFunctionReturn(0); 70 } 71 72 /*@ 73 SNESSetAlwaysComputesFinalResidual - does the SNES always compute the residual at the final solution? 74 75 Logically Collective on SNES 76 77 Input Parameters: 78 + snes - the shell SNES 79 - flg - is the residual computed? 80 81 Level: advanced 82 83 .seealso: SNESGetAlwaysComputesFinalResidual() 84 @*/ 85 PetscErrorCode SNESSetAlwaysComputesFinalResidual(SNES snes, PetscBool flg) 86 { 87 PetscFunctionBegin; 88 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 89 snes->alwayscomputesfinalresidual = flg; 90 PetscFunctionReturn(0); 91 } 92 93 /*@ 94 SNESGetAlwaysComputesFinalResidual - does the SNES always compute the residual at the final solution? 95 96 Logically Collective on SNES 97 98 Input Parameter: 99 . snes - the shell SNES 100 101 Output Parameter: 102 . flg - is the residual computed? 103 104 Level: advanced 105 106 .seealso: SNESSetAlwaysComputesFinalResidual() 107 @*/ 108 PetscErrorCode SNESGetAlwaysComputesFinalResidual(SNES snes, PetscBool *flg) 109 { 110 PetscFunctionBegin; 111 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 112 *flg = snes->alwayscomputesfinalresidual; 113 PetscFunctionReturn(0); 114 } 115 116 /*@ 117 SNESSetFunctionDomainError - tells SNES that the input vector to your SNESFunction is not 118 in the functions domain. For example, negative pressure. 119 120 Logically Collective on SNES 121 122 Input Parameters: 123 . snes - the SNES context 124 125 Level: advanced 126 127 .keywords: SNES, view 128 129 .seealso: SNESCreate(), SNESSetFunction(), SNESFunction 130 @*/ 131 PetscErrorCode SNESSetFunctionDomainError(SNES snes) 132 { 133 PetscFunctionBegin; 134 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 135 if (snes->errorifnotconverged) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"User code indicates input vector is not in the function domain"); 136 snes->domainerror = PETSC_TRUE; 137 PetscFunctionReturn(0); 138 } 139 140 /*@ 141 SNESGetFunctionDomainError - Gets the status of the domain error after a call to SNESComputeFunction; 142 143 Logically Collective on SNES 144 145 Input Parameters: 146 . snes - the SNES context 147 148 Output Parameters: 149 . domainerror - Set to PETSC_TRUE if there's a domain error; PETSC_FALSE otherwise. 150 151 Level: advanced 152 153 .keywords: SNES, view 154 155 .seealso: SNESSetFunctionDomainError(), SNESComputeFunction() 156 @*/ 157 PetscErrorCode SNESGetFunctionDomainError(SNES snes, PetscBool *domainerror) 158 { 159 PetscFunctionBegin; 160 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 161 PetscValidPointer(domainerror, 2); 162 *domainerror = snes->domainerror; 163 PetscFunctionReturn(0); 164 } 165 166 /*@C 167 SNESLoad - Loads a SNES that has been stored in binary with SNESView(). 168 169 Collective on PetscViewer 170 171 Input Parameters: 172 + newdm - the newly loaded SNES, this needs to have been created with SNESCreate() or 173 some related function before a call to SNESLoad(). 174 - viewer - binary file viewer, obtained from PetscViewerBinaryOpen() 175 176 Level: intermediate 177 178 Notes: 179 The type is determined by the data in the file, any type set into the SNES before this call is ignored. 180 181 Notes for advanced users: 182 Most users should not need to know the details of the binary storage 183 format, since SNESLoad() and TSView() completely hide these details. 184 But for anyone who's interested, the standard binary matrix storage 185 format is 186 .vb 187 has not yet been determined 188 .ve 189 190 .seealso: PetscViewerBinaryOpen(), SNESView(), MatLoad(), VecLoad() 191 @*/ 192 PetscErrorCode SNESLoad(SNES snes, PetscViewer viewer) 193 { 194 PetscErrorCode ierr; 195 PetscBool isbinary; 196 PetscInt classid; 197 char type[256]; 198 KSP ksp; 199 DM dm; 200 DMSNES dmsnes; 201 202 PetscFunctionBegin; 203 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 204 PetscValidHeaderSpecific(viewer,PETSC_VIEWER_CLASSID,2); 205 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERBINARY,&isbinary);CHKERRQ(ierr); 206 if (!isbinary) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONG,"Invalid viewer; open viewer with PetscViewerBinaryOpen()"); 207 208 ierr = PetscViewerBinaryRead(viewer,&classid,1,NULL,PETSC_INT);CHKERRQ(ierr); 209 if (classid != SNES_FILE_CLASSID) SETERRQ(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_WRONG,"Not SNES next in file"); 210 ierr = PetscViewerBinaryRead(viewer,type,256,NULL,PETSC_CHAR);CHKERRQ(ierr); 211 ierr = SNESSetType(snes, type);CHKERRQ(ierr); 212 if (snes->ops->load) { 213 ierr = (*snes->ops->load)(snes,viewer);CHKERRQ(ierr); 214 } 215 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 216 ierr = DMGetDMSNES(dm,&dmsnes);CHKERRQ(ierr); 217 ierr = DMSNESLoad(dmsnes,viewer);CHKERRQ(ierr); 218 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 219 ierr = KSPLoad(ksp,viewer);CHKERRQ(ierr); 220 PetscFunctionReturn(0); 221 } 222 223 #include <petscdraw.h> 224 #if defined(PETSC_HAVE_SAWS) 225 #include <petscviewersaws.h> 226 #endif 227 228 /*@C 229 SNESView - Prints the SNES data structure. 230 231 Collective on SNES 232 233 Input Parameters: 234 + SNES - the SNES context 235 - viewer - visualization context 236 237 Options Database Key: 238 . -snes_view - Calls SNESView() at end of SNESSolve() 239 240 Notes: 241 The available visualization contexts include 242 + PETSC_VIEWER_STDOUT_SELF - standard output (default) 243 - PETSC_VIEWER_STDOUT_WORLD - synchronized standard 244 output where only the first processor opens 245 the file. All other processors send their 246 data to the first processor to print. 247 248 The user can open an alternative visualization context with 249 PetscViewerASCIIOpen() - output to a specified file. 250 251 Level: beginner 252 253 .keywords: SNES, view 254 255 .seealso: PetscViewerASCIIOpen() 256 @*/ 257 PetscErrorCode SNESView(SNES snes,PetscViewer viewer) 258 { 259 SNESKSPEW *kctx; 260 PetscErrorCode ierr; 261 KSP ksp; 262 SNESLineSearch linesearch; 263 PetscBool iascii,isstring,isbinary,isdraw; 264 DMSNES dmsnes; 265 #if defined(PETSC_HAVE_SAWS) 266 PetscBool issaws; 267 #endif 268 269 PetscFunctionBegin; 270 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 271 if (!viewer) { 272 ierr = PetscViewerASCIIGetStdout(PetscObjectComm((PetscObject)snes),&viewer);CHKERRQ(ierr); 273 } 274 PetscValidHeaderSpecific(viewer,PETSC_VIEWER_CLASSID,2); 275 PetscCheckSameComm(snes,1,viewer,2); 276 277 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERASCII,&iascii);CHKERRQ(ierr); 278 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERSTRING,&isstring);CHKERRQ(ierr); 279 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERBINARY,&isbinary);CHKERRQ(ierr); 280 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERDRAW,&isdraw);CHKERRQ(ierr); 281 #if defined(PETSC_HAVE_SAWS) 282 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERSAWS,&issaws);CHKERRQ(ierr); 283 #endif 284 if (iascii) { 285 SNESNormSchedule normschedule; 286 DM dm; 287 PetscErrorCode (*cJ)(SNES,Vec,Mat,Mat,void*); 288 void *ctx; 289 290 ierr = PetscObjectPrintClassNamePrefixType((PetscObject)snes,viewer);CHKERRQ(ierr); 291 if (!snes->setupcalled) { 292 ierr = PetscViewerASCIIPrintf(viewer," SNES has not been set up so information may be incomplete\n");CHKERRQ(ierr); 293 } 294 if (snes->ops->view) { 295 ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 296 ierr = (*snes->ops->view)(snes,viewer);CHKERRQ(ierr); 297 ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 298 } 299 ierr = PetscViewerASCIIPrintf(viewer," maximum iterations=%D, maximum function evaluations=%D\n",snes->max_its,snes->max_funcs);CHKERRQ(ierr); 300 ierr = PetscViewerASCIIPrintf(viewer," tolerances: relative=%g, absolute=%g, solution=%g\n",(double)snes->rtol,(double)snes->abstol,(double)snes->stol);CHKERRQ(ierr); 301 if (snes->usesksp) { 302 ierr = PetscViewerASCIIPrintf(viewer," total number of linear solver iterations=%D\n",snes->linear_its);CHKERRQ(ierr); 303 } 304 ierr = PetscViewerASCIIPrintf(viewer," total number of function evaluations=%D\n",snes->nfuncs);CHKERRQ(ierr); 305 ierr = SNESGetNormSchedule(snes, &normschedule);CHKERRQ(ierr); 306 if (normschedule > 0) {ierr = PetscViewerASCIIPrintf(viewer," norm schedule %s\n",SNESNormSchedules[normschedule]);CHKERRQ(ierr);} 307 if (snes->gridsequence) { 308 ierr = PetscViewerASCIIPrintf(viewer," total number of grid sequence refinements=%D\n",snes->gridsequence);CHKERRQ(ierr); 309 } 310 if (snes->ksp_ewconv) { 311 kctx = (SNESKSPEW*)snes->kspconvctx; 312 if (kctx) { 313 ierr = PetscViewerASCIIPrintf(viewer," Eisenstat-Walker computation of KSP relative tolerance (version %D)\n",kctx->version);CHKERRQ(ierr); 314 ierr = PetscViewerASCIIPrintf(viewer," rtol_0=%g, rtol_max=%g, threshold=%g\n",(double)kctx->rtol_0,(double)kctx->rtol_max,(double)kctx->threshold);CHKERRQ(ierr); 315 ierr = PetscViewerASCIIPrintf(viewer," gamma=%g, alpha=%g, alpha2=%g\n",(double)kctx->gamma,(double)kctx->alpha,(double)kctx->alpha2);CHKERRQ(ierr); 316 } 317 } 318 if (snes->lagpreconditioner == -1) { 319 ierr = PetscViewerASCIIPrintf(viewer," Preconditioned is never rebuilt\n");CHKERRQ(ierr); 320 } else if (snes->lagpreconditioner > 1) { 321 ierr = PetscViewerASCIIPrintf(viewer," Preconditioned is rebuilt every %D new Jacobians\n",snes->lagpreconditioner);CHKERRQ(ierr); 322 } 323 if (snes->lagjacobian == -1) { 324 ierr = PetscViewerASCIIPrintf(viewer," Jacobian is never rebuilt\n");CHKERRQ(ierr); 325 } else if (snes->lagjacobian > 1) { 326 ierr = PetscViewerASCIIPrintf(viewer," Jacobian is rebuilt every %D SNES iterations\n",snes->lagjacobian);CHKERRQ(ierr); 327 } 328 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 329 ierr = DMSNESGetJacobian(dm,&cJ,&ctx);CHKERRQ(ierr); 330 if (cJ == SNESComputeJacobianDefault) { 331 ierr = PetscViewerASCIIPrintf(viewer," Jacobian is built using finite differences one column at a time\n");CHKERRQ(ierr); 332 } else if (cJ == SNESComputeJacobianDefaultColor) { 333 ierr = PetscViewerASCIIPrintf(viewer," Jacobian is built using finite differences with coloring\n");CHKERRQ(ierr); 334 } 335 } else if (isstring) { 336 const char *type; 337 ierr = SNESGetType(snes,&type);CHKERRQ(ierr); 338 ierr = PetscViewerStringSPrintf(viewer," %-3.3s",type);CHKERRQ(ierr); 339 } else if (isbinary) { 340 PetscInt classid = SNES_FILE_CLASSID; 341 MPI_Comm comm; 342 PetscMPIInt rank; 343 char type[256]; 344 345 ierr = PetscObjectGetComm((PetscObject)snes,&comm);CHKERRQ(ierr); 346 ierr = MPI_Comm_rank(comm,&rank);CHKERRQ(ierr); 347 if (!rank) { 348 ierr = PetscViewerBinaryWrite(viewer,&classid,1,PETSC_INT,PETSC_FALSE);CHKERRQ(ierr); 349 ierr = PetscStrncpy(type,((PetscObject)snes)->type_name,sizeof(type));CHKERRQ(ierr); 350 ierr = PetscViewerBinaryWrite(viewer,type,sizeof(type),PETSC_CHAR,PETSC_FALSE);CHKERRQ(ierr); 351 } 352 if (snes->ops->view) { 353 ierr = (*snes->ops->view)(snes,viewer);CHKERRQ(ierr); 354 } 355 } else if (isdraw) { 356 PetscDraw draw; 357 char str[36]; 358 PetscReal x,y,bottom,h; 359 360 ierr = PetscViewerDrawGetDraw(viewer,0,&draw);CHKERRQ(ierr); 361 ierr = PetscDrawGetCurrentPoint(draw,&x,&y);CHKERRQ(ierr); 362 ierr = PetscStrncpy(str,"SNES: ",sizeof(str));CHKERRQ(ierr); 363 ierr = PetscStrlcat(str,((PetscObject)snes)->type_name,sizeof(str));CHKERRQ(ierr); 364 ierr = PetscDrawStringBoxed(draw,x,y,PETSC_DRAW_BLUE,PETSC_DRAW_BLACK,str,NULL,&h);CHKERRQ(ierr); 365 bottom = y - h; 366 ierr = PetscDrawPushCurrentPoint(draw,x,bottom);CHKERRQ(ierr); 367 if (snes->ops->view) { 368 ierr = (*snes->ops->view)(snes,viewer);CHKERRQ(ierr); 369 } 370 #if defined(PETSC_HAVE_SAWS) 371 } else if (issaws) { 372 PetscMPIInt rank; 373 const char *name; 374 375 ierr = PetscObjectGetName((PetscObject)snes,&name);CHKERRQ(ierr); 376 ierr = MPI_Comm_rank(PETSC_COMM_WORLD,&rank);CHKERRQ(ierr); 377 if (!((PetscObject)snes)->amsmem && !rank) { 378 char dir[1024]; 379 380 ierr = PetscObjectViewSAWs((PetscObject)snes,viewer);CHKERRQ(ierr); 381 ierr = PetscSNPrintf(dir,1024,"/PETSc/Objects/%s/its",name);CHKERRQ(ierr); 382 PetscStackCallSAWs(SAWs_Register,(dir,&snes->iter,1,SAWs_READ,SAWs_INT)); 383 if (!snes->conv_hist) { 384 ierr = SNESSetConvergenceHistory(snes,NULL,NULL,PETSC_DECIDE,PETSC_TRUE);CHKERRQ(ierr); 385 } 386 ierr = PetscSNPrintf(dir,1024,"/PETSc/Objects/%s/conv_hist",name);CHKERRQ(ierr); 387 PetscStackCallSAWs(SAWs_Register,(dir,snes->conv_hist,10,SAWs_READ,SAWs_DOUBLE)); 388 } 389 #endif 390 } 391 if (snes->linesearch) { 392 ierr = SNESGetLineSearch(snes, &linesearch);CHKERRQ(ierr); 393 ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 394 ierr = SNESLineSearchView(linesearch, viewer);CHKERRQ(ierr); 395 ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 396 } 397 if (snes->npc && snes->usesnpc) { 398 ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 399 ierr = SNESView(snes->npc, viewer);CHKERRQ(ierr); 400 ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 401 } 402 ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 403 ierr = DMGetDMSNES(snes->dm,&dmsnes);CHKERRQ(ierr); 404 ierr = DMSNESView(dmsnes, viewer);CHKERRQ(ierr); 405 ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 406 if (snes->usesksp) { 407 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 408 ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr); 409 ierr = KSPView(ksp,viewer);CHKERRQ(ierr); 410 ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr); 411 } 412 if (isdraw) { 413 PetscDraw draw; 414 ierr = PetscViewerDrawGetDraw(viewer,0,&draw);CHKERRQ(ierr); 415 ierr = PetscDrawPopCurrentPoint(draw);CHKERRQ(ierr); 416 } 417 PetscFunctionReturn(0); 418 } 419 420 /* 421 We retain a list of functions that also take SNES command 422 line options. These are called at the end SNESSetFromOptions() 423 */ 424 #define MAXSETFROMOPTIONS 5 425 static PetscInt numberofsetfromoptions; 426 static PetscErrorCode (*othersetfromoptions[MAXSETFROMOPTIONS])(SNES); 427 428 /*@C 429 SNESAddOptionsChecker - Adds an additional function to check for SNES options. 430 431 Not Collective 432 433 Input Parameter: 434 . snescheck - function that checks for options 435 436 Level: developer 437 438 .seealso: SNESSetFromOptions() 439 @*/ 440 PetscErrorCode SNESAddOptionsChecker(PetscErrorCode (*snescheck)(SNES)) 441 { 442 PetscFunctionBegin; 443 if (numberofsetfromoptions >= MAXSETFROMOPTIONS) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE, "Too many options checkers, only %D allowed", MAXSETFROMOPTIONS); 444 othersetfromoptions[numberofsetfromoptions++] = snescheck; 445 PetscFunctionReturn(0); 446 } 447 448 PETSC_INTERN PetscErrorCode SNESDefaultMatrixFreeCreate2(SNES,Vec,Mat*); 449 450 static PetscErrorCode SNESSetUpMatrixFree_Private(SNES snes, PetscBool hasOperator, PetscInt version) 451 { 452 Mat J; 453 KSP ksp; 454 PC pc; 455 PetscBool match; 456 PetscErrorCode ierr; 457 MatNullSpace nullsp; 458 459 PetscFunctionBegin; 460 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 461 462 if (!snes->vec_func && (snes->jacobian || snes->jacobian_pre)) { 463 Mat A = snes->jacobian, B = snes->jacobian_pre; 464 ierr = MatCreateVecs(A ? A : B, NULL,&snes->vec_func);CHKERRQ(ierr); 465 } 466 467 if (version == 1) { 468 ierr = MatCreateSNESMF(snes,&J);CHKERRQ(ierr); 469 ierr = MatMFFDSetOptionsPrefix(J,((PetscObject)snes)->prefix);CHKERRQ(ierr); 470 ierr = MatSetFromOptions(J);CHKERRQ(ierr); 471 } else if (version == 2) { 472 if (!snes->vec_func) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE,"SNESSetFunction() must be called first"); 473 #if !defined(PETSC_USE_COMPLEX) && !defined(PETSC_USE_REAL_SINGLE) && !defined(PETSC_USE_REAL___FLOAT128) && !defined(PETSC_USE_REAL___FP16) 474 ierr = SNESDefaultMatrixFreeCreate2(snes,snes->vec_func,&J);CHKERRQ(ierr); 475 #else 476 SETERRQ(PETSC_COMM_SELF,PETSC_ERR_SUP, "matrix-free operator rutines (version 2)"); 477 #endif 478 } else SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE, "matrix-free operator rutines, only version 1 and 2"); 479 480 /* attach any user provided null space that was on Amat to the newly created matrix free matrix */ 481 if (snes->jacobian) { 482 ierr = MatGetNullSpace(snes->jacobian,&nullsp);CHKERRQ(ierr); 483 if (nullsp) { 484 ierr = MatSetNullSpace(J,nullsp);CHKERRQ(ierr); 485 } 486 } 487 488 ierr = PetscInfo1(snes,"Setting default matrix-free operator routines (version %D)\n", version);CHKERRQ(ierr); 489 if (hasOperator) { 490 491 /* This version replaces the user provided Jacobian matrix with a 492 matrix-free version but still employs the user-provided preconditioner matrix. */ 493 ierr = SNESSetJacobian(snes,J,0,0,0);CHKERRQ(ierr); 494 } else { 495 /* This version replaces both the user-provided Jacobian and the user- 496 provided preconditioner Jacobian with the default matrix free version. */ 497 if ((snes->npcside== PC_LEFT) && snes->npc) { 498 if (!snes->jacobian){ierr = SNESSetJacobian(snes,J,0,0,0);CHKERRQ(ierr);} 499 } else { 500 ierr = SNESSetJacobian(snes,J,J,MatMFFDComputeJacobian,0);CHKERRQ(ierr); 501 } 502 /* Force no preconditioner */ 503 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 504 ierr = KSPGetPC(ksp,&pc);CHKERRQ(ierr); 505 ierr = PetscObjectTypeCompare((PetscObject)pc,PCSHELL,&match);CHKERRQ(ierr); 506 if (!match) { 507 ierr = PetscInfo(snes,"Setting default matrix-free preconditioner routines\nThat is no preconditioner is being used\n");CHKERRQ(ierr); 508 ierr = PCSetType(pc,PCNONE);CHKERRQ(ierr); 509 } 510 } 511 ierr = MatDestroy(&J);CHKERRQ(ierr); 512 PetscFunctionReturn(0); 513 } 514 515 static PetscErrorCode DMRestrictHook_SNESVecSol(DM dmfine,Mat Restrict,Vec Rscale,Mat Inject,DM dmcoarse,void *ctx) 516 { 517 SNES snes = (SNES)ctx; 518 PetscErrorCode ierr; 519 Vec Xfine,Xfine_named = NULL,Xcoarse; 520 521 PetscFunctionBegin; 522 if (PetscLogPrintInfo) { 523 PetscInt finelevel,coarselevel,fineclevel,coarseclevel; 524 ierr = DMGetRefineLevel(dmfine,&finelevel);CHKERRQ(ierr); 525 ierr = DMGetCoarsenLevel(dmfine,&fineclevel);CHKERRQ(ierr); 526 ierr = DMGetRefineLevel(dmcoarse,&coarselevel);CHKERRQ(ierr); 527 ierr = DMGetCoarsenLevel(dmcoarse,&coarseclevel);CHKERRQ(ierr); 528 ierr = PetscInfo4(dmfine,"Restricting SNES solution vector from level %D-%D to level %D-%D\n",finelevel,fineclevel,coarselevel,coarseclevel);CHKERRQ(ierr); 529 } 530 if (dmfine == snes->dm) Xfine = snes->vec_sol; 531 else { 532 ierr = DMGetNamedGlobalVector(dmfine,"SNESVecSol",&Xfine_named);CHKERRQ(ierr); 533 Xfine = Xfine_named; 534 } 535 ierr = DMGetNamedGlobalVector(dmcoarse,"SNESVecSol",&Xcoarse);CHKERRQ(ierr); 536 if (Inject) { 537 ierr = MatRestrict(Inject,Xfine,Xcoarse);CHKERRQ(ierr); 538 } else { 539 ierr = MatRestrict(Restrict,Xfine,Xcoarse);CHKERRQ(ierr); 540 ierr = VecPointwiseMult(Xcoarse,Xcoarse,Rscale);CHKERRQ(ierr); 541 } 542 ierr = DMRestoreNamedGlobalVector(dmcoarse,"SNESVecSol",&Xcoarse);CHKERRQ(ierr); 543 if (Xfine_named) {ierr = DMRestoreNamedGlobalVector(dmfine,"SNESVecSol",&Xfine_named);CHKERRQ(ierr);} 544 PetscFunctionReturn(0); 545 } 546 547 static PetscErrorCode DMCoarsenHook_SNESVecSol(DM dm,DM dmc,void *ctx) 548 { 549 PetscErrorCode ierr; 550 551 PetscFunctionBegin; 552 ierr = DMCoarsenHookAdd(dmc,DMCoarsenHook_SNESVecSol,DMRestrictHook_SNESVecSol,ctx);CHKERRQ(ierr); 553 PetscFunctionReturn(0); 554 } 555 556 /* This may be called to rediscretize the operator on levels of linear multigrid. The DM shuffle is so the user can 557 * safely call SNESGetDM() in their residual evaluation routine. */ 558 static PetscErrorCode KSPComputeOperators_SNES(KSP ksp,Mat A,Mat B,void *ctx) 559 { 560 SNES snes = (SNES)ctx; 561 PetscErrorCode ierr; 562 Vec X,Xnamed = NULL; 563 DM dmsave; 564 void *ctxsave; 565 PetscErrorCode (*jac)(SNES,Vec,Mat,Mat,void*) = NULL; 566 567 PetscFunctionBegin; 568 dmsave = snes->dm; 569 ierr = KSPGetDM(ksp,&snes->dm);CHKERRQ(ierr); 570 if (dmsave == snes->dm) X = snes->vec_sol; /* We are on the finest level */ 571 else { /* We are on a coarser level, this vec was initialized using a DM restrict hook */ 572 ierr = DMGetNamedGlobalVector(snes->dm,"SNESVecSol",&Xnamed);CHKERRQ(ierr); 573 X = Xnamed; 574 ierr = SNESGetJacobian(snes,NULL,NULL,&jac,&ctxsave);CHKERRQ(ierr); 575 /* If the DM's don't match up, the MatFDColoring context needed for the jacobian won't match up either -- fixit. */ 576 if (jac == SNESComputeJacobianDefaultColor) { 577 ierr = SNESSetJacobian(snes,NULL,NULL,SNESComputeJacobianDefaultColor,0);CHKERRQ(ierr); 578 } 579 } 580 /* Make sure KSP DM has the Jacobian computation routine */ 581 { 582 DMSNES sdm; 583 584 ierr = DMGetDMSNES(snes->dm, &sdm);CHKERRQ(ierr); 585 if (!sdm->ops->computejacobian) { 586 ierr = DMCopyDMSNES(dmsave, snes->dm);CHKERRQ(ierr); 587 } 588 } 589 /* Compute the operators */ 590 ierr = SNESComputeJacobian(snes,X,A,B);CHKERRQ(ierr); 591 /* Put the previous context back */ 592 if (snes->dm != dmsave && jac == SNESComputeJacobianDefaultColor) { 593 ierr = SNESSetJacobian(snes,NULL,NULL,jac,ctxsave);CHKERRQ(ierr); 594 } 595 596 if (Xnamed) {ierr = DMRestoreNamedGlobalVector(snes->dm,"SNESVecSol",&Xnamed);CHKERRQ(ierr);} 597 snes->dm = dmsave; 598 PetscFunctionReturn(0); 599 } 600 601 /*@ 602 SNESSetUpMatrices - ensures that matrices are available for SNES, to be called by SNESSetUp_XXX() 603 604 Collective 605 606 Input Arguments: 607 . snes - snes to configure 608 609 Level: developer 610 611 .seealso: SNESSetUp() 612 @*/ 613 PetscErrorCode SNESSetUpMatrices(SNES snes) 614 { 615 PetscErrorCode ierr; 616 DM dm; 617 DMSNES sdm; 618 619 PetscFunctionBegin; 620 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 621 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 622 if (!sdm->ops->computejacobian) SETERRQ(PetscObjectComm((PetscObject)snes),PETSC_ERR_PLIB,"DMSNES not properly configured"); 623 else if (!snes->jacobian && snes->mf) { 624 Mat J; 625 void *functx; 626 ierr = MatCreateSNESMF(snes,&J);CHKERRQ(ierr); 627 ierr = MatMFFDSetOptionsPrefix(J,((PetscObject)snes)->prefix);CHKERRQ(ierr); 628 ierr = MatSetFromOptions(J);CHKERRQ(ierr); 629 ierr = SNESGetFunction(snes,NULL,NULL,&functx);CHKERRQ(ierr); 630 ierr = SNESSetJacobian(snes,J,J,0,0);CHKERRQ(ierr); 631 ierr = MatDestroy(&J);CHKERRQ(ierr); 632 } else if (snes->mf_operator && !snes->jacobian_pre && !snes->jacobian) { 633 Mat J,B; 634 ierr = MatCreateSNESMF(snes,&J);CHKERRQ(ierr); 635 ierr = MatMFFDSetOptionsPrefix(J,((PetscObject)snes)->prefix);CHKERRQ(ierr); 636 ierr = MatSetFromOptions(J);CHKERRQ(ierr); 637 ierr = DMCreateMatrix(snes->dm,&B);CHKERRQ(ierr); 638 /* sdm->computejacobian was already set to reach here */ 639 ierr = SNESSetJacobian(snes,J,B,NULL,NULL);CHKERRQ(ierr); 640 ierr = MatDestroy(&J);CHKERRQ(ierr); 641 ierr = MatDestroy(&B);CHKERRQ(ierr); 642 } else if (!snes->jacobian_pre) { 643 PetscErrorCode (*nspconstr)(DM, PetscInt, MatNullSpace *); 644 PetscDS prob; 645 Mat J, B; 646 MatNullSpace nullspace = NULL; 647 PetscBool hasPrec = PETSC_FALSE; 648 PetscInt Nf; 649 650 J = snes->jacobian; 651 ierr = DMGetDS(dm, &prob);CHKERRQ(ierr); 652 if (prob) {ierr = PetscDSHasJacobianPreconditioner(prob, &hasPrec);CHKERRQ(ierr);} 653 if (J) {ierr = PetscObjectReference((PetscObject) J);CHKERRQ(ierr);} 654 else if (hasPrec) {ierr = DMCreateMatrix(snes->dm, &J);CHKERRQ(ierr);} 655 ierr = DMCreateMatrix(snes->dm, &B);CHKERRQ(ierr); 656 ierr = PetscDSGetNumFields(prob, &Nf);CHKERRQ(ierr); 657 ierr = DMGetNullSpaceConstructor(snes->dm, Nf, &nspconstr);CHKERRQ(ierr); 658 if (nspconstr) (*nspconstr)(snes->dm, -1, &nullspace); 659 ierr = MatSetNullSpace(B, nullspace);CHKERRQ(ierr); 660 ierr = MatNullSpaceDestroy(&nullspace);CHKERRQ(ierr); 661 ierr = SNESSetJacobian(snes, J ? J : B, B, NULL, NULL);CHKERRQ(ierr); 662 ierr = MatDestroy(&J);CHKERRQ(ierr); 663 ierr = MatDestroy(&B);CHKERRQ(ierr); 664 } 665 { 666 KSP ksp; 667 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 668 ierr = KSPSetComputeOperators(ksp,KSPComputeOperators_SNES,snes);CHKERRQ(ierr); 669 ierr = DMCoarsenHookAdd(snes->dm,DMCoarsenHook_SNESVecSol,DMRestrictHook_SNESVecSol,snes);CHKERRQ(ierr); 670 } 671 PetscFunctionReturn(0); 672 } 673 674 /*@C 675 SNESMonitorSetFromOptions - Sets a monitor function and viewer appropriate for the type indicated by the user 676 677 Collective on SNES 678 679 Input Parameters: 680 + snes - SNES object you wish to monitor 681 . name - the monitor type one is seeking 682 . help - message indicating what monitoring is done 683 . manual - manual page for the monitor 684 . monitor - the monitor function 685 - monitorsetup - a function that is called once ONLY if the user selected this monitor that may set additional features of the SNES or PetscViewer objects 686 687 Level: developer 688 689 .seealso: PetscOptionsGetViewer(), PetscOptionsGetReal(), PetscOptionsHasName(), PetscOptionsGetString(), 690 PetscOptionsGetIntArray(), PetscOptionsGetRealArray(), PetscOptionsBool() 691 PetscOptionsInt(), PetscOptionsString(), PetscOptionsReal(), PetscOptionsBool(), 692 PetscOptionsName(), PetscOptionsBegin(), PetscOptionsEnd(), PetscOptionsHead(), 693 PetscOptionsStringArray(),PetscOptionsRealArray(), PetscOptionsScalar(), 694 PetscOptionsBoolGroupBegin(), PetscOptionsBoolGroup(), PetscOptionsBoolGroupEnd(), 695 PetscOptionsFList(), PetscOptionsEList() 696 @*/ 697 PetscErrorCode SNESMonitorSetFromOptions(SNES snes,const char name[],const char help[], const char manual[],PetscErrorCode (*monitor)(SNES,PetscInt,PetscReal,PetscViewerAndFormat*),PetscErrorCode (*monitorsetup)(SNES,PetscViewerAndFormat*)) 698 { 699 PetscErrorCode ierr; 700 PetscViewer viewer; 701 PetscViewerFormat format; 702 PetscBool flg; 703 704 PetscFunctionBegin; 705 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,name,&viewer,&format,&flg);CHKERRQ(ierr); 706 if (flg) { 707 PetscViewerAndFormat *vf; 708 ierr = PetscViewerAndFormatCreate(viewer,format,&vf);CHKERRQ(ierr); 709 ierr = PetscObjectDereference((PetscObject)viewer);CHKERRQ(ierr); 710 if (monitorsetup) { 711 ierr = (*monitorsetup)(snes,vf);CHKERRQ(ierr); 712 } 713 ierr = SNESMonitorSet(snes,(PetscErrorCode (*)(SNES,PetscInt,PetscReal,void*))monitor,vf,(PetscErrorCode (*)(void**))PetscViewerAndFormatDestroy);CHKERRQ(ierr); 714 } 715 PetscFunctionReturn(0); 716 } 717 718 /*@ 719 SNESSetFromOptions - Sets various SNES and KSP parameters from user options. 720 721 Collective on SNES 722 723 Input Parameter: 724 . snes - the SNES context 725 726 Options Database Keys: 727 + -snes_type <type> - newtonls, newtontr, ngmres, ncg, nrichardson, qn, vi, fas, SNESType for complete list 728 . -snes_stol - convergence tolerance in terms of the norm 729 of the change in the solution between steps 730 . -snes_atol <abstol> - absolute tolerance of residual norm 731 . -snes_rtol <rtol> - relative decrease in tolerance norm from initial 732 . -snes_divergence_tolerance <divtol> - if the residual goes above divtol*rnorm0, exit with divergence 733 . -snes_force_iteration <force> - force SNESSolve() to take at least one iteration 734 . -snes_max_it <max_it> - maximum number of iterations 735 . -snes_max_funcs <max_funcs> - maximum number of function evaluations 736 . -snes_max_fail <max_fail> - maximum number of line search failures allowed before stopping, default is none 737 . -snes_max_linear_solve_fail - number of linear solver failures before SNESSolve() stops 738 . -snes_lag_preconditioner <lag> - how often preconditioner is rebuilt (use -1 to never rebuild) 739 . -snes_lag_jacobian <lag> - how often Jacobian is rebuilt (use -1 to never rebuild) 740 . -snes_trtol <trtol> - trust region tolerance 741 . -snes_no_convergence_test - skip convergence test in nonlinear 742 solver; hence iterations will continue until max_it 743 or some other criterion is reached. Saves expense 744 of convergence test 745 . -snes_monitor [ascii][:filename][:viewer format] - prints residual norm at each iteration. if no filename given prints to stdout 746 . -snes_monitor_solution [ascii binary draw][:filename][:viewer format] - plots solution at each iteration 747 . -snes_monitor_residual [ascii binary draw][:filename][:viewer format] - plots residual (not its norm) at each iteration 748 . -snes_monitor_solution_update [ascii binary draw][:filename][:viewer format] - plots update to solution at each iteration 749 . -snes_monitor_lg_residualnorm - plots residual norm at each iteration 750 . -snes_monitor_lg_range - plots residual norm at each iteration 751 . -snes_fd - use finite differences to compute Jacobian; very slow, only for testing 752 . -snes_fd_color - use finite differences with coloring to compute Jacobian 753 . -snes_mf_ksp_monitor - if using matrix-free multiply then print h at each KSP iteration 754 - -snes_converged_reason - print the reason for convergence/divergence after each solve 755 756 Options Database for Eisenstat-Walker method: 757 + -snes_ksp_ew - use Eisenstat-Walker method for determining linear system convergence 758 . -snes_ksp_ew_version ver - version of Eisenstat-Walker method 759 . -snes_ksp_ew_rtol0 <rtol0> - Sets rtol0 760 . -snes_ksp_ew_rtolmax <rtolmax> - Sets rtolmax 761 . -snes_ksp_ew_gamma <gamma> - Sets gamma 762 . -snes_ksp_ew_alpha <alpha> - Sets alpha 763 . -snes_ksp_ew_alpha2 <alpha2> - Sets alpha2 764 - -snes_ksp_ew_threshold <threshold> - Sets threshold 765 766 Notes: 767 To see all options, run your program with the -help option or consult 768 Users-Manual: ch_snes 769 770 Level: beginner 771 772 .keywords: SNES, nonlinear, set, options, database 773 774 .seealso: SNESSetOptionsPrefix(), SNESResetFromOptions() 775 @*/ 776 PetscErrorCode SNESSetFromOptions(SNES snes) 777 { 778 PetscBool flg,pcset,persist,set; 779 PetscInt i,indx,lag,grids; 780 const char *deft = SNESNEWTONLS; 781 const char *convtests[] = {"default","skip"}; 782 SNESKSPEW *kctx = NULL; 783 char type[256], monfilename[PETSC_MAX_PATH_LEN]; 784 PetscErrorCode ierr; 785 PCSide pcside; 786 const char *optionsprefix; 787 788 PetscFunctionBegin; 789 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 790 ierr = SNESRegisterAll();CHKERRQ(ierr); 791 ierr = PetscObjectOptionsBegin((PetscObject)snes);CHKERRQ(ierr); 792 if (((PetscObject)snes)->type_name) deft = ((PetscObject)snes)->type_name; 793 ierr = PetscOptionsFList("-snes_type","Nonlinear solver method","SNESSetType",SNESList,deft,type,256,&flg);CHKERRQ(ierr); 794 if (flg) { 795 ierr = SNESSetType(snes,type);CHKERRQ(ierr); 796 } else if (!((PetscObject)snes)->type_name) { 797 ierr = SNESSetType(snes,deft);CHKERRQ(ierr); 798 } 799 ierr = PetscOptionsReal("-snes_stol","Stop if step length less than","SNESSetTolerances",snes->stol,&snes->stol,NULL);CHKERRQ(ierr); 800 ierr = PetscOptionsReal("-snes_atol","Stop if function norm less than","SNESSetTolerances",snes->abstol,&snes->abstol,NULL);CHKERRQ(ierr); 801 802 ierr = PetscOptionsReal("-snes_rtol","Stop if decrease in function norm less than","SNESSetTolerances",snes->rtol,&snes->rtol,NULL);CHKERRQ(ierr); 803 ierr = PetscOptionsReal("-snes_divergence_tolerance","Stop if residual norm increases by this factor","SNESSetDivergenceTolerance",snes->divtol,&snes->divtol,NULL);CHKERRQ(ierr); 804 ierr = PetscOptionsInt("-snes_max_it","Maximum iterations","SNESSetTolerances",snes->max_its,&snes->max_its,NULL);CHKERRQ(ierr); 805 ierr = PetscOptionsInt("-snes_max_funcs","Maximum function evaluations","SNESSetTolerances",snes->max_funcs,&snes->max_funcs,NULL);CHKERRQ(ierr); 806 ierr = PetscOptionsInt("-snes_max_fail","Maximum nonlinear step failures","SNESSetMaxNonlinearStepFailures",snes->maxFailures,&snes->maxFailures,NULL);CHKERRQ(ierr); 807 ierr = PetscOptionsInt("-snes_max_linear_solve_fail","Maximum failures in linear solves allowed","SNESSetMaxLinearSolveFailures",snes->maxLinearSolveFailures,&snes->maxLinearSolveFailures,NULL);CHKERRQ(ierr); 808 ierr = PetscOptionsBool("-snes_error_if_not_converged","Generate error if solver does not converge","SNESSetErrorIfNotConverged",snes->errorifnotconverged,&snes->errorifnotconverged,NULL);CHKERRQ(ierr); 809 ierr = PetscOptionsBool("-snes_force_iteration","Force SNESSolve() to take at least one iteration","SNESSetForceIteration",snes->forceiteration,&snes->forceiteration,NULL);CHKERRQ(ierr); 810 811 ierr = PetscOptionsInt("-snes_lag_preconditioner","How often to rebuild preconditioner","SNESSetLagPreconditioner",snes->lagpreconditioner,&lag,&flg);CHKERRQ(ierr); 812 if (flg) { 813 ierr = SNESSetLagPreconditioner(snes,lag);CHKERRQ(ierr); 814 } 815 ierr = PetscOptionsBool("-snes_lag_preconditioner_persists","Preconditioner lagging through multiple solves","SNESSetLagPreconditionerPersists",snes->lagjac_persist,&persist,&flg);CHKERRQ(ierr); 816 if (flg) { 817 ierr = SNESSetLagPreconditionerPersists(snes,persist);CHKERRQ(ierr); 818 } 819 ierr = PetscOptionsInt("-snes_lag_jacobian","How often to rebuild Jacobian","SNESSetLagJacobian",snes->lagjacobian,&lag,&flg);CHKERRQ(ierr); 820 if (flg) { 821 ierr = SNESSetLagJacobian(snes,lag);CHKERRQ(ierr); 822 } 823 ierr = PetscOptionsBool("-snes_lag_jacobian_persists","Jacobian lagging through multiple solves","SNESSetLagJacobianPersists",snes->lagjac_persist,&persist,&flg);CHKERRQ(ierr); 824 if (flg) { 825 ierr = SNESSetLagJacobianPersists(snes,persist);CHKERRQ(ierr); 826 } 827 828 ierr = PetscOptionsInt("-snes_grid_sequence","Use grid sequencing to generate initial guess","SNESSetGridSequence",snes->gridsequence,&grids,&flg);CHKERRQ(ierr); 829 if (flg) { 830 ierr = SNESSetGridSequence(snes,grids);CHKERRQ(ierr); 831 } 832 833 ierr = PetscOptionsEList("-snes_convergence_test","Convergence test","SNESSetConvergenceTest",convtests,2,"default",&indx,&flg);CHKERRQ(ierr); 834 if (flg) { 835 switch (indx) { 836 case 0: ierr = SNESSetConvergenceTest(snes,SNESConvergedDefault,NULL,NULL);CHKERRQ(ierr); break; 837 case 1: ierr = SNESSetConvergenceTest(snes,SNESConvergedSkip,NULL,NULL);CHKERRQ(ierr); break; 838 } 839 } 840 841 ierr = PetscOptionsEList("-snes_norm_schedule","SNES Norm schedule","SNESSetNormSchedule",SNESNormSchedules,5,"function",&indx,&flg);CHKERRQ(ierr); 842 if (flg) { ierr = SNESSetNormSchedule(snes,(SNESNormSchedule)indx);CHKERRQ(ierr); } 843 844 ierr = PetscOptionsEList("-snes_function_type","SNES Norm schedule","SNESSetFunctionType",SNESFunctionTypes,2,"unpreconditioned",&indx,&flg);CHKERRQ(ierr); 845 if (flg) { ierr = SNESSetFunctionType(snes,(SNESFunctionType)indx);CHKERRQ(ierr); } 846 847 kctx = (SNESKSPEW*)snes->kspconvctx; 848 849 ierr = PetscOptionsBool("-snes_ksp_ew","Use Eisentat-Walker linear system convergence test","SNESKSPSetUseEW",snes->ksp_ewconv,&snes->ksp_ewconv,NULL);CHKERRQ(ierr); 850 851 ierr = PetscOptionsInt("-snes_ksp_ew_version","Version 1, 2 or 3","SNESKSPSetParametersEW",kctx->version,&kctx->version,NULL);CHKERRQ(ierr); 852 ierr = PetscOptionsReal("-snes_ksp_ew_rtol0","0 <= rtol0 < 1","SNESKSPSetParametersEW",kctx->rtol_0,&kctx->rtol_0,NULL);CHKERRQ(ierr); 853 ierr = PetscOptionsReal("-snes_ksp_ew_rtolmax","0 <= rtolmax < 1","SNESKSPSetParametersEW",kctx->rtol_max,&kctx->rtol_max,NULL);CHKERRQ(ierr); 854 ierr = PetscOptionsReal("-snes_ksp_ew_gamma","0 <= gamma <= 1","SNESKSPSetParametersEW",kctx->gamma,&kctx->gamma,NULL);CHKERRQ(ierr); 855 ierr = PetscOptionsReal("-snes_ksp_ew_alpha","1 < alpha <= 2","SNESKSPSetParametersEW",kctx->alpha,&kctx->alpha,NULL);CHKERRQ(ierr); 856 ierr = PetscOptionsReal("-snes_ksp_ew_alpha2","alpha2","SNESKSPSetParametersEW",kctx->alpha2,&kctx->alpha2,NULL);CHKERRQ(ierr); 857 ierr = PetscOptionsReal("-snes_ksp_ew_threshold","0 < threshold < 1","SNESKSPSetParametersEW",kctx->threshold,&kctx->threshold,NULL);CHKERRQ(ierr); 858 859 flg = PETSC_FALSE; 860 ierr = PetscOptionsBool("-snes_monitor_cancel","Remove all monitors","SNESMonitorCancel",flg,&flg,&set);CHKERRQ(ierr); 861 if (set && flg) {ierr = SNESMonitorCancel(snes);CHKERRQ(ierr);} 862 863 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor","Monitor norm of function","SNESMonitorDefault",SNESMonitorDefault,NULL);CHKERRQ(ierr); 864 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_short","Monitor norm of function with fewer digits","SNESMonitorDefaultShort",SNESMonitorDefaultShort,NULL);CHKERRQ(ierr); 865 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_range","Monitor range of elements of function","SNESMonitorRange",SNESMonitorRange,NULL);CHKERRQ(ierr); 866 867 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_ratio","Monitor ratios of the norm of function for consecutive steps","SNESMonitorRatio",SNESMonitorRatio,SNESMonitorRatioSetUp);CHKERRQ(ierr); 868 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_field","Monitor norm of function (split into fields)","SNESMonitorDefaultField",SNESMonitorDefaultField,NULL);CHKERRQ(ierr); 869 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_solution","View solution at each iteration","SNESMonitorSolution",SNESMonitorSolution,NULL);CHKERRQ(ierr); 870 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_solution_update","View correction at each iteration","SNESMonitorSolutionUpdate",SNESMonitorSolutionUpdate,NULL);CHKERRQ(ierr); 871 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_residual","View residual at each iteration","SNESMonitorResidual",SNESMonitorResidual,NULL);CHKERRQ(ierr); 872 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_jacupdate_spectrum","Print the change in the spectrum of the Jacobian","SNESMonitorJacUpdateSpectrum",SNESMonitorJacUpdateSpectrum,NULL);CHKERRQ(ierr); 873 ierr = SNESMonitorSetFromOptions(snes,"-snes_monitor_fields","Monitor norm of function per field","SNESMonitorSet",SNESMonitorFields,NULL);CHKERRQ(ierr); 874 875 ierr = PetscOptionsString("-snes_monitor_python","Use Python function","SNESMonitorSet",0,monfilename,PETSC_MAX_PATH_LEN,&flg);CHKERRQ(ierr); 876 if (flg) {ierr = PetscPythonMonitorSet((PetscObject)snes,monfilename);CHKERRQ(ierr);} 877 878 879 flg = PETSC_FALSE; 880 ierr = PetscOptionsBool("-snes_monitor_lg_residualnorm","Plot function norm at each iteration","SNESMonitorLGResidualNorm",flg,&flg,NULL);CHKERRQ(ierr); 881 if (flg) { 882 PetscDrawLG ctx; 883 884 ierr = SNESMonitorLGCreate(PetscObjectComm((PetscObject)snes),NULL,NULL,PETSC_DECIDE,PETSC_DECIDE,400,300,&ctx);CHKERRQ(ierr); 885 ierr = SNESMonitorSet(snes,SNESMonitorLGResidualNorm,ctx,(PetscErrorCode (*)(void**))PetscDrawLGDestroy);CHKERRQ(ierr); 886 } 887 flg = PETSC_FALSE; 888 ierr = PetscOptionsBool("-snes_monitor_lg_range","Plot function range at each iteration","SNESMonitorLGRange",flg,&flg,NULL);CHKERRQ(ierr); 889 if (flg) { 890 PetscViewer ctx; 891 892 ierr = PetscViewerDrawOpen(PetscObjectComm((PetscObject)snes),NULL,NULL,PETSC_DECIDE,PETSC_DECIDE,400,300,&ctx);CHKERRQ(ierr); 893 ierr = SNESMonitorSet(snes,SNESMonitorLGRange,ctx,(PetscErrorCode (*)(void**))PetscViewerDestroy);CHKERRQ(ierr); 894 } 895 896 897 898 flg = PETSC_FALSE; 899 ierr = PetscOptionsBool("-snes_fd","Use finite differences (slow) to compute Jacobian","SNESComputeJacobianDefault",flg,&flg,NULL);CHKERRQ(ierr); 900 if (flg) { 901 void *functx; 902 DM dm; 903 DMSNES sdm; 904 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 905 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 906 sdm->jacobianctx = NULL; 907 ierr = SNESGetFunction(snes,NULL,NULL,&functx);CHKERRQ(ierr); 908 ierr = SNESSetJacobian(snes,snes->jacobian,snes->jacobian_pre,SNESComputeJacobianDefault,functx);CHKERRQ(ierr); 909 ierr = PetscInfo(snes,"Setting default finite difference Jacobian matrix\n");CHKERRQ(ierr); 910 } 911 912 flg = PETSC_FALSE; 913 ierr = PetscOptionsBool("-snes_fd_function","Use finite differences (slow) to compute function from user objective","SNESObjectiveComputeFunctionDefaultFD",flg,&flg,NULL);CHKERRQ(ierr); 914 if (flg) { 915 ierr = SNESSetFunction(snes,NULL,SNESObjectiveComputeFunctionDefaultFD,NULL);CHKERRQ(ierr); 916 } 917 918 flg = PETSC_FALSE; 919 ierr = PetscOptionsBool("-snes_fd_color","Use finite differences with coloring to compute Jacobian","SNESComputeJacobianDefaultColor",flg,&flg,NULL);CHKERRQ(ierr); 920 if (flg) { 921 DM dm; 922 DMSNES sdm; 923 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 924 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 925 sdm->jacobianctx = NULL; 926 ierr = SNESSetJacobian(snes,snes->jacobian,snes->jacobian_pre,SNESComputeJacobianDefaultColor,0);CHKERRQ(ierr); 927 ierr = PetscInfo(snes,"Setting default finite difference coloring Jacobian matrix\n");CHKERRQ(ierr); 928 } 929 930 flg = PETSC_FALSE; 931 ierr = PetscOptionsBool("-snes_mf_operator","Use a Matrix-Free Jacobian with user-provided preconditioner matrix","SNESSetUseMatrixFree",PETSC_FALSE,&snes->mf_operator,&flg);CHKERRQ(ierr); 932 if (flg && snes->mf_operator) { 933 snes->mf_operator = PETSC_TRUE; 934 snes->mf = PETSC_TRUE; 935 } 936 flg = PETSC_FALSE; 937 ierr = PetscOptionsBool("-snes_mf","Use a Matrix-Free Jacobian with no preconditioner matrix","SNESSetUseMatrixFree",PETSC_FALSE,&snes->mf,&flg);CHKERRQ(ierr); 938 if (!flg && snes->mf_operator) snes->mf = PETSC_TRUE; 939 ierr = PetscOptionsInt("-snes_mf_version","Matrix-Free routines version 1 or 2","None",snes->mf_version,&snes->mf_version,0);CHKERRQ(ierr); 940 941 flg = PETSC_FALSE; 942 ierr = SNESGetNPCSide(snes,&pcside);CHKERRQ(ierr); 943 ierr = PetscOptionsEnum("-snes_npc_side","SNES nonlinear preconditioner side","SNESSetNPCSide",PCSides,(PetscEnum)pcside,(PetscEnum*)&pcside,&flg);CHKERRQ(ierr); 944 if (flg) {ierr = SNESSetNPCSide(snes,pcside);CHKERRQ(ierr);} 945 946 #if defined(PETSC_HAVE_SAWS) 947 /* 948 Publish convergence information using SAWs 949 */ 950 flg = PETSC_FALSE; 951 ierr = PetscOptionsBool("-snes_monitor_saws","Publish SNES progress using SAWs","SNESMonitorSet",flg,&flg,NULL);CHKERRQ(ierr); 952 if (flg) { 953 void *ctx; 954 ierr = SNESMonitorSAWsCreate(snes,&ctx);CHKERRQ(ierr); 955 ierr = SNESMonitorSet(snes,SNESMonitorSAWs,ctx,SNESMonitorSAWsDestroy);CHKERRQ(ierr); 956 } 957 #endif 958 #if defined(PETSC_HAVE_SAWS) 959 { 960 PetscBool set; 961 flg = PETSC_FALSE; 962 ierr = PetscOptionsBool("-snes_saws_block","Block for SAWs at end of SNESSolve","PetscObjectSAWsBlock",((PetscObject)snes)->amspublishblock,&flg,&set);CHKERRQ(ierr); 963 if (set) { 964 ierr = PetscObjectSAWsSetBlock((PetscObject)snes,flg);CHKERRQ(ierr); 965 } 966 } 967 #endif 968 969 for (i = 0; i < numberofsetfromoptions; i++) { 970 ierr = (*othersetfromoptions[i])(snes);CHKERRQ(ierr); 971 } 972 973 if (snes->ops->setfromoptions) { 974 ierr = (*snes->ops->setfromoptions)(PetscOptionsObject,snes);CHKERRQ(ierr); 975 } 976 977 /* process any options handlers added with PetscObjectAddOptionsHandler() */ 978 ierr = PetscObjectProcessOptionsHandlers(PetscOptionsObject,(PetscObject)snes);CHKERRQ(ierr); 979 ierr = PetscOptionsEnd();CHKERRQ(ierr); 980 981 if (!snes->linesearch) { 982 ierr = SNESGetLineSearch(snes, &snes->linesearch);CHKERRQ(ierr); 983 } 984 ierr = SNESLineSearchSetFromOptions(snes->linesearch);CHKERRQ(ierr); 985 986 if (!snes->ksp) {ierr = SNESGetKSP(snes,&snes->ksp);CHKERRQ(ierr);} 987 ierr = KSPSetOperators(snes->ksp,snes->jacobian,snes->jacobian_pre);CHKERRQ(ierr); 988 ierr = KSPSetFromOptions(snes->ksp);CHKERRQ(ierr); 989 990 /* if someone has set the SNES NPC type, create it. */ 991 ierr = SNESGetOptionsPrefix(snes, &optionsprefix);CHKERRQ(ierr); 992 ierr = PetscOptionsHasName(((PetscObject)snes)->options,optionsprefix, "-npc_snes_type", &pcset);CHKERRQ(ierr); 993 if (pcset && (!snes->npc)) { 994 ierr = SNESGetNPC(snes, &snes->npc);CHKERRQ(ierr); 995 } 996 snes->setfromoptionscalled++; 997 PetscFunctionReturn(0); 998 } 999 1000 /*@ 1001 SNESResetFromOptions - Sets various SNES and KSP parameters from user options ONLY if the SNES was previously set from options 1002 1003 Collective on SNES 1004 1005 Input Parameter: 1006 . snes - the SNES context 1007 1008 Level: beginner 1009 1010 .keywords: SNES, nonlinear, set, options, database 1011 1012 .seealso: SNESSetFromOptions(), SNESSetOptionsPrefix() 1013 @*/ 1014 PetscErrorCode SNESResetFromOptions(SNES snes) 1015 { 1016 PetscErrorCode ierr; 1017 1018 PetscFunctionBegin; 1019 if (snes->setfromoptionscalled) {ierr = SNESSetFromOptions(snes);CHKERRQ(ierr);} 1020 PetscFunctionReturn(0); 1021 } 1022 1023 /*@C 1024 SNESSetComputeApplicationContext - Sets an optional function to compute a user-defined context for 1025 the nonlinear solvers. 1026 1027 Logically Collective on SNES 1028 1029 Input Parameters: 1030 + snes - the SNES context 1031 . compute - function to compute the context 1032 - destroy - function to destroy the context 1033 1034 Level: intermediate 1035 1036 Notes: 1037 This function is currently not available from Fortran. 1038 1039 .keywords: SNES, nonlinear, set, application, context 1040 1041 .seealso: SNESGetApplicationContext(), SNESSetComputeApplicationContext(), SNESGetApplicationContext() 1042 @*/ 1043 PetscErrorCode SNESSetComputeApplicationContext(SNES snes,PetscErrorCode (*compute)(SNES,void**),PetscErrorCode (*destroy)(void**)) 1044 { 1045 PetscFunctionBegin; 1046 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1047 snes->ops->usercompute = compute; 1048 snes->ops->userdestroy = destroy; 1049 PetscFunctionReturn(0); 1050 } 1051 1052 /*@ 1053 SNESSetApplicationContext - Sets the optional user-defined context for 1054 the nonlinear solvers. 1055 1056 Logically Collective on SNES 1057 1058 Input Parameters: 1059 + snes - the SNES context 1060 - usrP - optional user context 1061 1062 Level: intermediate 1063 1064 Fortran Notes: 1065 To use this from Fortran you must write a Fortran interface definition for this 1066 function that tells Fortran the Fortran derived data type that you are passing in as the ctx argument. 1067 1068 .keywords: SNES, nonlinear, set, application, context 1069 1070 .seealso: SNESGetApplicationContext() 1071 @*/ 1072 PetscErrorCode SNESSetApplicationContext(SNES snes,void *usrP) 1073 { 1074 PetscErrorCode ierr; 1075 KSP ksp; 1076 1077 PetscFunctionBegin; 1078 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1079 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 1080 ierr = KSPSetApplicationContext(ksp,usrP);CHKERRQ(ierr); 1081 snes->user = usrP; 1082 PetscFunctionReturn(0); 1083 } 1084 1085 /*@ 1086 SNESGetApplicationContext - Gets the user-defined context for the 1087 nonlinear solvers. 1088 1089 Not Collective 1090 1091 Input Parameter: 1092 . snes - SNES context 1093 1094 Output Parameter: 1095 . usrP - user context 1096 1097 Fortran Notes: 1098 To use this from Fortran you must write a Fortran interface definition for this 1099 function that tells Fortran the Fortran derived data type that you are passing in as the ctx argument. 1100 1101 Level: intermediate 1102 1103 .keywords: SNES, nonlinear, get, application, context 1104 1105 .seealso: SNESSetApplicationContext() 1106 @*/ 1107 PetscErrorCode SNESGetApplicationContext(SNES snes,void *usrP) 1108 { 1109 PetscFunctionBegin; 1110 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1111 *(void**)usrP = snes->user; 1112 PetscFunctionReturn(0); 1113 } 1114 1115 /*@ 1116 SNESSetUseMatrixFree - indicates that SNES should use matrix free finite difference matrix vector products internally to apply 1117 the Jacobian. 1118 1119 Collective on SNES 1120 1121 Input Parameters: 1122 + snes - SNES context 1123 . mf - use matrix-free for both the Amat and Pmat used by SNESSetJacobian(), both the Amat and Pmat set in SNESSetJacobian() will be ignored 1124 - mf_operator - use matrix-free only for the Amat used by SNESSetJacobian(), this means the user provided Pmat will continue to be used 1125 1126 Options Database: 1127 + -snes_mf - use matrix free for both the mat and pmat operator 1128 - -snes_mf_operator - use matrix free only for the mat operator 1129 1130 Level: intermediate 1131 1132 .keywords: SNES, nonlinear, get, iteration, number, 1133 1134 .seealso: SNESGetUseMatrixFree(), MatCreateSNESMF() 1135 @*/ 1136 PetscErrorCode SNESSetUseMatrixFree(SNES snes,PetscBool mf_operator,PetscBool mf) 1137 { 1138 PetscFunctionBegin; 1139 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1140 PetscValidLogicalCollectiveBool(snes,mf_operator,2); 1141 PetscValidLogicalCollectiveBool(snes,mf,3); 1142 if (mf && !mf_operator) SETERRQ(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_INCOMP,"If using mf must also use mf_operator"); 1143 snes->mf = mf; 1144 snes->mf_operator = mf_operator; 1145 PetscFunctionReturn(0); 1146 } 1147 1148 /*@ 1149 SNESGetUseMatrixFree - indicates if the SNES uses matrix free finite difference matrix vector products to apply 1150 the Jacobian. 1151 1152 Collective on SNES 1153 1154 Input Parameter: 1155 . snes - SNES context 1156 1157 Output Parameters: 1158 + mf - use matrix-free for both the Amat and Pmat used by SNESSetJacobian(), both the Amat and Pmat set in SNESSetJacobian() will be ignored 1159 - mf_operator - use matrix-free only for the Amat used by SNESSetJacobian(), this means the user provided Pmat will continue to be used 1160 1161 Options Database: 1162 + -snes_mf - use matrix free for both the mat and pmat operator 1163 - -snes_mf_operator - use matrix free only for the mat operator 1164 1165 Level: intermediate 1166 1167 .keywords: SNES, nonlinear, get, iteration, number, 1168 1169 .seealso: SNESSetUseMatrixFree(), MatCreateSNESMF() 1170 @*/ 1171 PetscErrorCode SNESGetUseMatrixFree(SNES snes,PetscBool *mf_operator,PetscBool *mf) 1172 { 1173 PetscFunctionBegin; 1174 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1175 if (mf) *mf = snes->mf; 1176 if (mf_operator) *mf_operator = snes->mf_operator; 1177 PetscFunctionReturn(0); 1178 } 1179 1180 /*@ 1181 SNESGetIterationNumber - Gets the number of nonlinear iterations completed 1182 at this time. 1183 1184 Not Collective 1185 1186 Input Parameter: 1187 . snes - SNES context 1188 1189 Output Parameter: 1190 . iter - iteration number 1191 1192 Notes: 1193 For example, during the computation of iteration 2 this would return 1. 1194 1195 This is useful for using lagged Jacobians (where one does not recompute the 1196 Jacobian at each SNES iteration). For example, the code 1197 .vb 1198 ierr = SNESGetIterationNumber(snes,&it); 1199 if (!(it % 2)) { 1200 [compute Jacobian here] 1201 } 1202 .ve 1203 can be used in your ComputeJacobian() function to cause the Jacobian to be 1204 recomputed every second SNES iteration. 1205 1206 After the SNES solve is complete this will return the number of nonlinear iterations used. 1207 1208 Level: intermediate 1209 1210 .keywords: SNES, nonlinear, get, iteration, number, 1211 1212 .seealso: SNESGetLinearSolveIterations() 1213 @*/ 1214 PetscErrorCode SNESGetIterationNumber(SNES snes,PetscInt *iter) 1215 { 1216 PetscFunctionBegin; 1217 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1218 PetscValidIntPointer(iter,2); 1219 *iter = snes->iter; 1220 PetscFunctionReturn(0); 1221 } 1222 1223 /*@ 1224 SNESSetIterationNumber - Sets the current iteration number. 1225 1226 Not Collective 1227 1228 Input Parameter: 1229 . snes - SNES context 1230 . iter - iteration number 1231 1232 Level: developer 1233 1234 .keywords: SNES, nonlinear, set, iteration, number, 1235 1236 .seealso: SNESGetLinearSolveIterations() 1237 @*/ 1238 PetscErrorCode SNESSetIterationNumber(SNES snes,PetscInt iter) 1239 { 1240 PetscErrorCode ierr; 1241 1242 PetscFunctionBegin; 1243 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1244 ierr = PetscObjectSAWsTakeAccess((PetscObject)snes);CHKERRQ(ierr); 1245 snes->iter = iter; 1246 ierr = PetscObjectSAWsGrantAccess((PetscObject)snes);CHKERRQ(ierr); 1247 PetscFunctionReturn(0); 1248 } 1249 1250 /*@ 1251 SNESGetNonlinearStepFailures - Gets the number of unsuccessful steps 1252 attempted by the nonlinear solver. 1253 1254 Not Collective 1255 1256 Input Parameter: 1257 . snes - SNES context 1258 1259 Output Parameter: 1260 . nfails - number of unsuccessful steps attempted 1261 1262 Notes: 1263 This counter is reset to zero for each successive call to SNESSolve(). 1264 1265 Level: intermediate 1266 1267 .keywords: SNES, nonlinear, get, number, unsuccessful, steps 1268 1269 .seealso: SNESGetMaxLinearSolveFailures(), SNESGetLinearSolveIterations(), SNESSetMaxLinearSolveFailures(), SNESGetLinearSolveFailures(), 1270 SNESSetMaxNonlinearStepFailures(), SNESGetMaxNonlinearStepFailures() 1271 @*/ 1272 PetscErrorCode SNESGetNonlinearStepFailures(SNES snes,PetscInt *nfails) 1273 { 1274 PetscFunctionBegin; 1275 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1276 PetscValidIntPointer(nfails,2); 1277 *nfails = snes->numFailures; 1278 PetscFunctionReturn(0); 1279 } 1280 1281 /*@ 1282 SNESSetMaxNonlinearStepFailures - Sets the maximum number of unsuccessful steps 1283 attempted by the nonlinear solver before it gives up. 1284 1285 Not Collective 1286 1287 Input Parameters: 1288 + snes - SNES context 1289 - maxFails - maximum of unsuccessful steps 1290 1291 Level: intermediate 1292 1293 .keywords: SNES, nonlinear, set, maximum, unsuccessful, steps 1294 1295 .seealso: SNESGetMaxLinearSolveFailures(), SNESGetLinearSolveIterations(), SNESSetMaxLinearSolveFailures(), SNESGetLinearSolveFailures(), 1296 SNESGetMaxNonlinearStepFailures(), SNESGetNonlinearStepFailures() 1297 @*/ 1298 PetscErrorCode SNESSetMaxNonlinearStepFailures(SNES snes, PetscInt maxFails) 1299 { 1300 PetscFunctionBegin; 1301 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1302 snes->maxFailures = maxFails; 1303 PetscFunctionReturn(0); 1304 } 1305 1306 /*@ 1307 SNESGetMaxNonlinearStepFailures - Gets the maximum number of unsuccessful steps 1308 attempted by the nonlinear solver before it gives up. 1309 1310 Not Collective 1311 1312 Input Parameter: 1313 . snes - SNES context 1314 1315 Output Parameter: 1316 . maxFails - maximum of unsuccessful steps 1317 1318 Level: intermediate 1319 1320 .keywords: SNES, nonlinear, get, maximum, unsuccessful, steps 1321 1322 .seealso: SNESGetMaxLinearSolveFailures(), SNESGetLinearSolveIterations(), SNESSetMaxLinearSolveFailures(), SNESGetLinearSolveFailures(), 1323 SNESSetMaxNonlinearStepFailures(), SNESGetNonlinearStepFailures() 1324 1325 @*/ 1326 PetscErrorCode SNESGetMaxNonlinearStepFailures(SNES snes, PetscInt *maxFails) 1327 { 1328 PetscFunctionBegin; 1329 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1330 PetscValidIntPointer(maxFails,2); 1331 *maxFails = snes->maxFailures; 1332 PetscFunctionReturn(0); 1333 } 1334 1335 /*@ 1336 SNESGetNumberFunctionEvals - Gets the number of user provided function evaluations 1337 done by SNES. 1338 1339 Not Collective 1340 1341 Input Parameter: 1342 . snes - SNES context 1343 1344 Output Parameter: 1345 . nfuncs - number of evaluations 1346 1347 Level: intermediate 1348 1349 Notes: 1350 Reset every time SNESSolve is called unless SNESSetCountersReset() is used. 1351 1352 .keywords: SNES, nonlinear, get, maximum, unsuccessful, steps 1353 1354 .seealso: SNESGetMaxLinearSolveFailures(), SNESGetLinearSolveIterations(), SNESSetMaxLinearSolveFailures(), SNESGetLinearSolveFailures(), SNESSetCountersReset() 1355 @*/ 1356 PetscErrorCode SNESGetNumberFunctionEvals(SNES snes, PetscInt *nfuncs) 1357 { 1358 PetscFunctionBegin; 1359 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1360 PetscValidIntPointer(nfuncs,2); 1361 *nfuncs = snes->nfuncs; 1362 PetscFunctionReturn(0); 1363 } 1364 1365 /*@ 1366 SNESGetLinearSolveFailures - Gets the number of failed (non-converged) 1367 linear solvers. 1368 1369 Not Collective 1370 1371 Input Parameter: 1372 . snes - SNES context 1373 1374 Output Parameter: 1375 . nfails - number of failed solves 1376 1377 Level: intermediate 1378 1379 Options Database Keys: 1380 . -snes_max_linear_solve_fail <num> - The number of failures before the solve is terminated 1381 1382 Notes: 1383 This counter is reset to zero for each successive call to SNESSolve(). 1384 1385 .keywords: SNES, nonlinear, get, number, unsuccessful, steps 1386 1387 .seealso: SNESGetMaxLinearSolveFailures(), SNESGetLinearSolveIterations(), SNESSetMaxLinearSolveFailures() 1388 @*/ 1389 PetscErrorCode SNESGetLinearSolveFailures(SNES snes,PetscInt *nfails) 1390 { 1391 PetscFunctionBegin; 1392 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1393 PetscValidIntPointer(nfails,2); 1394 *nfails = snes->numLinearSolveFailures; 1395 PetscFunctionReturn(0); 1396 } 1397 1398 /*@ 1399 SNESSetMaxLinearSolveFailures - the number of failed linear solve attempts 1400 allowed before SNES returns with a diverged reason of SNES_DIVERGED_LINEAR_SOLVE 1401 1402 Logically Collective on SNES 1403 1404 Input Parameters: 1405 + snes - SNES context 1406 - maxFails - maximum allowed linear solve failures 1407 1408 Level: intermediate 1409 1410 Options Database Keys: 1411 . -snes_max_linear_solve_fail <num> - The number of failures before the solve is terminated 1412 1413 Notes: 1414 By default this is 0; that is SNES returns on the first failed linear solve 1415 1416 .keywords: SNES, nonlinear, set, maximum, unsuccessful, steps 1417 1418 .seealso: SNESGetLinearSolveFailures(), SNESGetMaxLinearSolveFailures(), SNESGetLinearSolveIterations() 1419 @*/ 1420 PetscErrorCode SNESSetMaxLinearSolveFailures(SNES snes, PetscInt maxFails) 1421 { 1422 PetscFunctionBegin; 1423 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1424 PetscValidLogicalCollectiveInt(snes,maxFails,2); 1425 snes->maxLinearSolveFailures = maxFails; 1426 PetscFunctionReturn(0); 1427 } 1428 1429 /*@ 1430 SNESGetMaxLinearSolveFailures - gets the maximum number of linear solve failures that 1431 are allowed before SNES terminates 1432 1433 Not Collective 1434 1435 Input Parameter: 1436 . snes - SNES context 1437 1438 Output Parameter: 1439 . maxFails - maximum of unsuccessful solves allowed 1440 1441 Level: intermediate 1442 1443 Notes: 1444 By default this is 1; that is SNES returns on the first failed linear solve 1445 1446 .keywords: SNES, nonlinear, get, maximum, unsuccessful, steps 1447 1448 .seealso: SNESGetLinearSolveFailures(), SNESGetLinearSolveIterations(), SNESSetMaxLinearSolveFailures(), 1449 @*/ 1450 PetscErrorCode SNESGetMaxLinearSolveFailures(SNES snes, PetscInt *maxFails) 1451 { 1452 PetscFunctionBegin; 1453 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1454 PetscValidIntPointer(maxFails,2); 1455 *maxFails = snes->maxLinearSolveFailures; 1456 PetscFunctionReturn(0); 1457 } 1458 1459 /*@ 1460 SNESGetLinearSolveIterations - Gets the total number of linear iterations 1461 used by the nonlinear solver. 1462 1463 Not Collective 1464 1465 Input Parameter: 1466 . snes - SNES context 1467 1468 Output Parameter: 1469 . lits - number of linear iterations 1470 1471 Notes: 1472 This counter is reset to zero for each successive call to SNESSolve() unless SNESSetCountersReset() is used. 1473 1474 If the linear solver fails inside the SNESSolve() the iterations for that call to the linear solver are not included. If you wish to count them 1475 then call KSPGetIterationNumber() after the failed solve. 1476 1477 Level: intermediate 1478 1479 .keywords: SNES, nonlinear, get, number, linear, iterations 1480 1481 .seealso: SNESGetIterationNumber(), SNESGetLinearSolveFailures(), SNESGetMaxLinearSolveFailures(), SNESSetCountersReset() 1482 @*/ 1483 PetscErrorCode SNESGetLinearSolveIterations(SNES snes,PetscInt *lits) 1484 { 1485 PetscFunctionBegin; 1486 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1487 PetscValidIntPointer(lits,2); 1488 *lits = snes->linear_its; 1489 PetscFunctionReturn(0); 1490 } 1491 1492 /*@ 1493 SNESSetCountersReset - Sets whether or not the counters for linear iterations and function evaluations 1494 are reset every time SNESSolve() is called. 1495 1496 Logically Collective on SNES 1497 1498 Input Parameter: 1499 + snes - SNES context 1500 - reset - whether to reset the counters or not 1501 1502 Notes: 1503 This defaults to PETSC_TRUE 1504 1505 Level: developer 1506 1507 .keywords: SNES, nonlinear, set, reset, number, linear, iterations 1508 1509 .seealso: SNESGetNumberFunctionEvals(), SNESGetLinearSolveIterations(), SNESGetNPC() 1510 @*/ 1511 PetscErrorCode SNESSetCountersReset(SNES snes,PetscBool reset) 1512 { 1513 PetscFunctionBegin; 1514 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1515 PetscValidLogicalCollectiveBool(snes,reset,2); 1516 snes->counters_reset = reset; 1517 PetscFunctionReturn(0); 1518 } 1519 1520 1521 /*@ 1522 SNESSetKSP - Sets a KSP context for the SNES object to use 1523 1524 Not Collective, but the SNES and KSP objects must live on the same MPI_Comm 1525 1526 Input Parameters: 1527 + snes - the SNES context 1528 - ksp - the KSP context 1529 1530 Notes: 1531 The SNES object already has its KSP object, you can obtain with SNESGetKSP() 1532 so this routine is rarely needed. 1533 1534 The KSP object that is already in the SNES object has its reference count 1535 decreased by one. 1536 1537 Level: developer 1538 1539 .keywords: SNES, nonlinear, get, KSP, context 1540 1541 .seealso: KSPGetPC(), SNESCreate(), KSPCreate(), SNESSetKSP() 1542 @*/ 1543 PetscErrorCode SNESSetKSP(SNES snes,KSP ksp) 1544 { 1545 PetscErrorCode ierr; 1546 1547 PetscFunctionBegin; 1548 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1549 PetscValidHeaderSpecific(ksp,KSP_CLASSID,2); 1550 PetscCheckSameComm(snes,1,ksp,2); 1551 ierr = PetscObjectReference((PetscObject)ksp);CHKERRQ(ierr); 1552 if (snes->ksp) {ierr = PetscObjectDereference((PetscObject)snes->ksp);CHKERRQ(ierr);} 1553 snes->ksp = ksp; 1554 PetscFunctionReturn(0); 1555 } 1556 1557 /* -----------------------------------------------------------*/ 1558 /*@ 1559 SNESCreate - Creates a nonlinear solver context. 1560 1561 Collective on MPI_Comm 1562 1563 Input Parameters: 1564 . comm - MPI communicator 1565 1566 Output Parameter: 1567 . outsnes - the new SNES context 1568 1569 Options Database Keys: 1570 + -snes_mf - Activates default matrix-free Jacobian-vector products, 1571 and no preconditioning matrix 1572 . -snes_mf_operator - Activates default matrix-free Jacobian-vector 1573 products, and a user-provided preconditioning matrix 1574 as set by SNESSetJacobian() 1575 - -snes_fd - Uses (slow!) finite differences to compute Jacobian 1576 1577 Level: beginner 1578 1579 Developer Notes: 1580 SNES always creates a KSP object even though many SNES methods do not use it. This is 1581 unfortunate and should be fixed at some point. The flag snes->usesksp indicates if the 1582 particular method does use KSP and regulates if the information about the KSP is printed 1583 in SNESView(). TSSetFromOptions() does call SNESSetFromOptions() which can lead to users being confused 1584 by help messages about meaningless SNES options. 1585 1586 SNES always creates the snes->kspconvctx even though it is used by only one type. This should 1587 be fixed. 1588 1589 .keywords: SNES, nonlinear, create, context 1590 1591 .seealso: SNESSolve(), SNESDestroy(), SNES, SNESSetLagPreconditioner() 1592 1593 @*/ 1594 PetscErrorCode SNESCreate(MPI_Comm comm,SNES *outsnes) 1595 { 1596 PetscErrorCode ierr; 1597 SNES snes; 1598 SNESKSPEW *kctx; 1599 1600 PetscFunctionBegin; 1601 PetscValidPointer(outsnes,2); 1602 *outsnes = NULL; 1603 ierr = SNESInitializePackage();CHKERRQ(ierr); 1604 1605 ierr = PetscHeaderCreate(snes,SNES_CLASSID,"SNES","Nonlinear solver","SNES",comm,SNESDestroy,SNESView);CHKERRQ(ierr); 1606 1607 snes->ops->converged = SNESConvergedDefault; 1608 snes->usesksp = PETSC_TRUE; 1609 snes->tolerancesset = PETSC_FALSE; 1610 snes->max_its = 50; 1611 snes->max_funcs = 10000; 1612 snes->norm = 0.0; 1613 snes->normschedule = SNES_NORM_ALWAYS; 1614 snes->functype = SNES_FUNCTION_DEFAULT; 1615 #if defined(PETSC_USE_REAL_SINGLE) 1616 snes->rtol = 1.e-5; 1617 #else 1618 snes->rtol = 1.e-8; 1619 #endif 1620 snes->ttol = 0.0; 1621 #if defined(PETSC_USE_REAL_SINGLE) 1622 snes->abstol = 1.e-25; 1623 #else 1624 snes->abstol = 1.e-50; 1625 #endif 1626 #if defined(PETSC_USE_REAL_SINGLE) 1627 snes->stol = 1.e-5; 1628 #else 1629 snes->stol = 1.e-8; 1630 #endif 1631 #if defined(PETSC_USE_REAL_SINGLE) 1632 snes->deltatol = 1.e-6; 1633 #else 1634 snes->deltatol = 1.e-12; 1635 #endif 1636 snes->divtol = 1.e4; 1637 snes->rnorm0 = 0; 1638 snes->nfuncs = 0; 1639 snes->numFailures = 0; 1640 snes->maxFailures = 1; 1641 snes->linear_its = 0; 1642 snes->lagjacobian = 1; 1643 snes->jac_iter = 0; 1644 snes->lagjac_persist = PETSC_FALSE; 1645 snes->lagpreconditioner = 1; 1646 snes->pre_iter = 0; 1647 snes->lagpre_persist = PETSC_FALSE; 1648 snes->numbermonitors = 0; 1649 snes->data = 0; 1650 snes->setupcalled = PETSC_FALSE; 1651 snes->ksp_ewconv = PETSC_FALSE; 1652 snes->nwork = 0; 1653 snes->work = 0; 1654 snes->nvwork = 0; 1655 snes->vwork = 0; 1656 snes->conv_hist_len = 0; 1657 snes->conv_hist_max = 0; 1658 snes->conv_hist = NULL; 1659 snes->conv_hist_its = NULL; 1660 snes->conv_hist_reset = PETSC_TRUE; 1661 snes->counters_reset = PETSC_TRUE; 1662 snes->vec_func_init_set = PETSC_FALSE; 1663 snes->reason = SNES_CONVERGED_ITERATING; 1664 snes->npcside = PC_RIGHT; 1665 snes->setfromoptionscalled = 0; 1666 1667 snes->mf = PETSC_FALSE; 1668 snes->mf_operator = PETSC_FALSE; 1669 snes->mf_version = 1; 1670 1671 snes->numLinearSolveFailures = 0; 1672 snes->maxLinearSolveFailures = 1; 1673 1674 snes->vizerotolerance = 1.e-8; 1675 1676 /* Set this to true if the implementation of SNESSolve_XXX does compute the residual at the final solution. */ 1677 snes->alwayscomputesfinalresidual = PETSC_FALSE; 1678 1679 /* Create context to compute Eisenstat-Walker relative tolerance for KSP */ 1680 ierr = PetscNewLog(snes,&kctx);CHKERRQ(ierr); 1681 1682 snes->kspconvctx = (void*)kctx; 1683 kctx->version = 2; 1684 kctx->rtol_0 = .3; /* Eisenstat and Walker suggest rtol_0=.5, but 1685 this was too large for some test cases */ 1686 kctx->rtol_last = 0.0; 1687 kctx->rtol_max = .9; 1688 kctx->gamma = 1.0; 1689 kctx->alpha = .5*(1.0 + PetscSqrtReal(5.0)); 1690 kctx->alpha2 = kctx->alpha; 1691 kctx->threshold = .1; 1692 kctx->lresid_last = 0.0; 1693 kctx->norm_last = 0.0; 1694 1695 *outsnes = snes; 1696 PetscFunctionReturn(0); 1697 } 1698 1699 /*MC 1700 SNESFunction - Functional form used to convey the nonlinear function to be solved by SNES 1701 1702 Synopsis: 1703 #include "petscsnes.h" 1704 PetscErrorCode SNESFunction(SNES snes,Vec x,Vec f,void *ctx); 1705 1706 Input Parameters: 1707 + snes - the SNES context 1708 . x - state at which to evaluate residual 1709 - ctx - optional user-defined function context, passed in with SNESSetFunction() 1710 1711 Output Parameter: 1712 . f - vector to put residual (function value) 1713 1714 Level: intermediate 1715 1716 .seealso: SNESSetFunction(), SNESGetFunction() 1717 M*/ 1718 1719 /*@C 1720 SNESSetFunction - Sets the function evaluation routine and function 1721 vector for use by the SNES routines in solving systems of nonlinear 1722 equations. 1723 1724 Logically Collective on SNES 1725 1726 Input Parameters: 1727 + snes - the SNES context 1728 . r - vector to store function value 1729 . f - function evaluation routine; see SNESFunction for calling sequence details 1730 - ctx - [optional] user-defined context for private data for the 1731 function evaluation routine (may be NULL) 1732 1733 Notes: 1734 The Newton-like methods typically solve linear systems of the form 1735 $ f'(x) x = -f(x), 1736 where f'(x) denotes the Jacobian matrix and f(x) is the function. 1737 1738 Level: beginner 1739 1740 .keywords: SNES, nonlinear, set, function 1741 1742 .seealso: SNESGetFunction(), SNESComputeFunction(), SNESSetJacobian(), SNESSetPicard(), SNESFunction 1743 @*/ 1744 PetscErrorCode SNESSetFunction(SNES snes,Vec r,PetscErrorCode (*f)(SNES,Vec,Vec,void*),void *ctx) 1745 { 1746 PetscErrorCode ierr; 1747 DM dm; 1748 1749 PetscFunctionBegin; 1750 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1751 if (r) { 1752 PetscValidHeaderSpecific(r,VEC_CLASSID,2); 1753 PetscCheckSameComm(snes,1,r,2); 1754 ierr = PetscObjectReference((PetscObject)r);CHKERRQ(ierr); 1755 ierr = VecDestroy(&snes->vec_func);CHKERRQ(ierr); 1756 1757 snes->vec_func = r; 1758 } 1759 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 1760 ierr = DMSNESSetFunction(dm,f,ctx);CHKERRQ(ierr); 1761 PetscFunctionReturn(0); 1762 } 1763 1764 1765 /*@C 1766 SNESSetInitialFunction - Sets the function vector to be used as the 1767 function norm at the initialization of the method. In some 1768 instances, the user has precomputed the function before calling 1769 SNESSolve. This function allows one to avoid a redundant call 1770 to SNESComputeFunction in that case. 1771 1772 Logically Collective on SNES 1773 1774 Input Parameters: 1775 + snes - the SNES context 1776 - f - vector to store function value 1777 1778 Notes: 1779 This should not be modified during the solution procedure. 1780 1781 This is used extensively in the SNESFAS hierarchy and in nonlinear preconditioning. 1782 1783 Level: developer 1784 1785 .keywords: SNES, nonlinear, set, function 1786 1787 .seealso: SNESSetFunction(), SNESComputeFunction(), SNESSetInitialFunctionNorm() 1788 @*/ 1789 PetscErrorCode SNESSetInitialFunction(SNES snes, Vec f) 1790 { 1791 PetscErrorCode ierr; 1792 Vec vec_func; 1793 1794 PetscFunctionBegin; 1795 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1796 PetscValidHeaderSpecific(f,VEC_CLASSID,2); 1797 PetscCheckSameComm(snes,1,f,2); 1798 if (snes->npcside== PC_LEFT && snes->functype == SNES_FUNCTION_PRECONDITIONED) { 1799 snes->vec_func_init_set = PETSC_FALSE; 1800 PetscFunctionReturn(0); 1801 } 1802 ierr = SNESGetFunction(snes,&vec_func,NULL,NULL);CHKERRQ(ierr); 1803 ierr = VecCopy(f, vec_func);CHKERRQ(ierr); 1804 1805 snes->vec_func_init_set = PETSC_TRUE; 1806 PetscFunctionReturn(0); 1807 } 1808 1809 /*@ 1810 SNESSetNormSchedule - Sets the SNESNormSchedule used in covergence and monitoring 1811 of the SNES method. 1812 1813 Logically Collective on SNES 1814 1815 Input Parameters: 1816 + snes - the SNES context 1817 - normschedule - the frequency of norm computation 1818 1819 Options Database Key: 1820 . -snes_norm_schedule <none, always, initialonly, finalonly, initalfinalonly> 1821 1822 Notes: 1823 Only certain SNES methods support certain SNESNormSchedules. Most require evaluation 1824 of the nonlinear function and the taking of its norm at every iteration to 1825 even ensure convergence at all. However, methods such as custom Gauss-Seidel methods 1826 (SNESNGS) and the like do not require the norm of the function to be computed, and therfore 1827 may either be monitored for convergence or not. As these are often used as nonlinear 1828 preconditioners, monitoring the norm of their error is not a useful enterprise within 1829 their solution. 1830 1831 Level: developer 1832 1833 .keywords: SNES, nonlinear, set, function, norm, type 1834 1835 .seealso: SNESGetNormSchedule(), SNESComputeFunction(), VecNorm(), SNESSetFunction(), SNESSetInitialFunction(), SNESNormSchedule 1836 @*/ 1837 PetscErrorCode SNESSetNormSchedule(SNES snes, SNESNormSchedule normschedule) 1838 { 1839 PetscFunctionBegin; 1840 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1841 snes->normschedule = normschedule; 1842 PetscFunctionReturn(0); 1843 } 1844 1845 1846 /*@ 1847 SNESGetNormSchedule - Gets the SNESNormSchedule used in covergence and monitoring 1848 of the SNES method. 1849 1850 Logically Collective on SNES 1851 1852 Input Parameters: 1853 + snes - the SNES context 1854 - normschedule - the type of the norm used 1855 1856 Level: advanced 1857 1858 .keywords: SNES, nonlinear, set, function, norm, type 1859 1860 .seealso: SNESSetNormSchedule(), SNESComputeFunction(), VecNorm(), SNESSetFunction(), SNESSetInitialFunction(), SNESNormSchedule 1861 @*/ 1862 PetscErrorCode SNESGetNormSchedule(SNES snes, SNESNormSchedule *normschedule) 1863 { 1864 PetscFunctionBegin; 1865 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1866 *normschedule = snes->normschedule; 1867 PetscFunctionReturn(0); 1868 } 1869 1870 1871 /*@ 1872 SNESSetFunctionNorm - Sets the last computed residual norm. 1873 1874 Logically Collective on SNES 1875 1876 Input Parameters: 1877 + snes - the SNES context 1878 1879 - normschedule - the frequency of norm computation 1880 1881 Level: developer 1882 1883 .keywords: SNES, nonlinear, set, function, norm, type 1884 .seealso: SNESGetNormSchedule(), SNESComputeFunction(), VecNorm(), SNESSetFunction(), SNESSetInitialFunction(), SNESNormSchedule 1885 @*/ 1886 PetscErrorCode SNESSetFunctionNorm(SNES snes, PetscReal norm) 1887 { 1888 PetscFunctionBegin; 1889 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1890 snes->norm = norm; 1891 PetscFunctionReturn(0); 1892 } 1893 1894 /*@ 1895 SNESGetFunctionNorm - Gets the last computed norm of the residual 1896 1897 Not Collective 1898 1899 Input Parameter: 1900 . snes - the SNES context 1901 1902 Output Parameter: 1903 . norm - the last computed residual norm 1904 1905 Level: developer 1906 1907 .keywords: SNES, nonlinear, set, function, norm, type 1908 .seealso: SNESSetNormSchedule(), SNESComputeFunction(), VecNorm(), SNESSetFunction(), SNESSetInitialFunction(), SNESNormSchedule 1909 @*/ 1910 PetscErrorCode SNESGetFunctionNorm(SNES snes, PetscReal *norm) 1911 { 1912 PetscFunctionBegin; 1913 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1914 PetscValidPointer(norm, 2); 1915 *norm = snes->norm; 1916 PetscFunctionReturn(0); 1917 } 1918 1919 /*@C 1920 SNESSetFunctionType - Sets the SNESNormSchedule used in covergence and monitoring 1921 of the SNES method. 1922 1923 Logically Collective on SNES 1924 1925 Input Parameters: 1926 + snes - the SNES context 1927 - normschedule - the frequency of norm computation 1928 1929 Notes: 1930 Only certain SNES methods support certain SNESNormSchedules. Most require evaluation 1931 of the nonlinear function and the taking of its norm at every iteration to 1932 even ensure convergence at all. However, methods such as custom Gauss-Seidel methods 1933 (SNESNGS) and the like do not require the norm of the function to be computed, and therfore 1934 may either be monitored for convergence or not. As these are often used as nonlinear 1935 preconditioners, monitoring the norm of their error is not a useful enterprise within 1936 their solution. 1937 1938 Level: developer 1939 1940 .keywords: SNES, nonlinear, set, function, norm, type 1941 1942 .seealso: SNESGetNormSchedule(), SNESComputeFunction(), VecNorm(), SNESSetFunction(), SNESSetInitialFunction(), SNESNormSchedule 1943 @*/ 1944 PetscErrorCode SNESSetFunctionType(SNES snes, SNESFunctionType type) 1945 { 1946 PetscFunctionBegin; 1947 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1948 snes->functype = type; 1949 PetscFunctionReturn(0); 1950 } 1951 1952 1953 /*@C 1954 SNESGetFunctionType - Gets the SNESNormSchedule used in covergence and monitoring 1955 of the SNES method. 1956 1957 Logically Collective on SNES 1958 1959 Input Parameters: 1960 + snes - the SNES context 1961 - normschedule - the type of the norm used 1962 1963 Level: advanced 1964 1965 .keywords: SNES, nonlinear, set, function, norm, type 1966 1967 .seealso: SNESSetNormSchedule(), SNESComputeFunction(), VecNorm(), SNESSetFunction(), SNESSetInitialFunction(), SNESNormSchedule 1968 @*/ 1969 PetscErrorCode SNESGetFunctionType(SNES snes, SNESFunctionType *type) 1970 { 1971 PetscFunctionBegin; 1972 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 1973 *type = snes->functype; 1974 PetscFunctionReturn(0); 1975 } 1976 1977 /*MC 1978 SNESNGSFunction - function used to convey a Gauss-Seidel sweep on the nonlinear function 1979 1980 Synopsis: 1981 #include <petscsnes.h> 1982 $ SNESNGSFunction(SNES snes,Vec x,Vec b,void *ctx); 1983 1984 + X - solution vector 1985 . B - RHS vector 1986 - ctx - optional user-defined Gauss-Seidel context 1987 1988 Level: intermediate 1989 1990 .seealso: SNESSetNGS(), SNESGetNGS() 1991 M*/ 1992 1993 /*@C 1994 SNESSetNGS - Sets the user nonlinear Gauss-Seidel routine for 1995 use with composed nonlinear solvers. 1996 1997 Input Parameters: 1998 + snes - the SNES context 1999 . f - function evaluation routine to apply Gauss-Seidel see SNESNGSFunction 2000 - ctx - [optional] user-defined context for private data for the 2001 smoother evaluation routine (may be NULL) 2002 2003 Notes: 2004 The NGS routines are used by the composed nonlinear solver to generate 2005 a problem appropriate update to the solution, particularly FAS. 2006 2007 Level: intermediate 2008 2009 .keywords: SNES, nonlinear, set, Gauss-Seidel 2010 2011 .seealso: SNESGetFunction(), SNESComputeNGS() 2012 @*/ 2013 PetscErrorCode SNESSetNGS(SNES snes,PetscErrorCode (*f)(SNES,Vec,Vec,void*),void *ctx) 2014 { 2015 PetscErrorCode ierr; 2016 DM dm; 2017 2018 PetscFunctionBegin; 2019 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2020 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2021 ierr = DMSNESSetNGS(dm,f,ctx);CHKERRQ(ierr); 2022 PetscFunctionReturn(0); 2023 } 2024 2025 PetscErrorCode SNESPicardComputeFunction(SNES snes,Vec x,Vec f,void *ctx) 2026 { 2027 PetscErrorCode ierr; 2028 DM dm; 2029 DMSNES sdm; 2030 2031 PetscFunctionBegin; 2032 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2033 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 2034 if (!sdm->ops->computepfunction) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE, "Must call SNESSetPicard() to provide Picard function."); 2035 if (!sdm->ops->computepjacobian) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE, "Must call SNESSetPicard() to provide Picard Jacobian."); 2036 /* A(x)*x - b(x) */ 2037 PetscStackPush("SNES Picard user function"); 2038 ierr = (*sdm->ops->computepfunction)(snes,x,f,sdm->pctx);CHKERRQ(ierr); 2039 PetscStackPop; 2040 PetscStackPush("SNES Picard user Jacobian"); 2041 ierr = (*sdm->ops->computepjacobian)(snes,x,snes->jacobian,snes->jacobian_pre,sdm->pctx);CHKERRQ(ierr); 2042 PetscStackPop; 2043 ierr = VecScale(f,-1.0);CHKERRQ(ierr); 2044 ierr = MatMultAdd(snes->jacobian,x,f,f);CHKERRQ(ierr); 2045 PetscFunctionReturn(0); 2046 } 2047 2048 PetscErrorCode SNESPicardComputeJacobian(SNES snes,Vec x1,Mat J,Mat B,void *ctx) 2049 { 2050 PetscFunctionBegin; 2051 /* the jacobian matrix should be pre-filled in SNESPicardComputeFunction */ 2052 PetscFunctionReturn(0); 2053 } 2054 2055 /*@C 2056 SNESSetPicard - Use SNES to solve the semilinear-system A(x) x = b(x) via a Picard type iteration (Picard linearization) 2057 2058 Logically Collective on SNES 2059 2060 Input Parameters: 2061 + snes - the SNES context 2062 . r - vector to store function value 2063 . b - function evaluation routine 2064 . Amat - matrix with which A(x) x - b(x) is to be computed 2065 . Pmat - matrix from which preconditioner is computed (usually the same as Amat) 2066 . J - function to compute matrix value, see SNESJacobianFunction for details on its calling sequence 2067 - ctx - [optional] user-defined context for private data for the 2068 function evaluation routine (may be NULL) 2069 2070 Notes: 2071 We do not recomemend using this routine. It is far better to provide the nonlinear function F() and some approximation to the Jacobian and use 2072 an approximate Newton solver. This interface is provided to allow porting/testing a previous Picard based code in PETSc before converting it to approximate Newton. 2073 2074 One can call SNESSetPicard() or SNESSetFunction() (and possibly SNESSetJacobian()) but cannot call both 2075 2076 $ Solves the equation A(x) x = b(x) via the defect correction algorithm A(x^{n}) (x^{n+1} - x^{n}) = b(x^{n}) - A(x^{n})x^{n} 2077 $ Note that when an exact solver is used this corresponds to the "classic" Picard A(x^{n}) x^{n+1} = b(x^{n}) iteration. 2078 2079 Run with -snes_mf_operator to solve the system with Newton's method using A(x^{n}) to construct the preconditioner. 2080 2081 We implement the defect correction form of the Picard iteration because it converges much more generally when inexact linear solvers are used then 2082 the direct Picard iteration A(x^n) x^{n+1} = b(x^n) 2083 2084 There is some controversity over the definition of a Picard iteration for nonlinear systems but almost everyone agrees that it involves a linear solve and some 2085 believe it is the iteration A(x^{n}) x^{n+1} = b(x^{n}) hence we use the name Picard. If anyone has an authoritative reference that defines the Picard iteration 2086 different please contact us at petsc-dev@mcs.anl.gov and we'll have an entirely new argument :-). 2087 2088 Level: intermediate 2089 2090 .keywords: SNES, nonlinear, set, function 2091 2092 .seealso: SNESGetFunction(), SNESSetFunction(), SNESComputeFunction(), SNESSetJacobian(), SNESGetPicard(), SNESLineSearchPreCheckPicard(), SNESJacobianFunction 2093 @*/ 2094 PetscErrorCode SNESSetPicard(SNES snes,Vec r,PetscErrorCode (*b)(SNES,Vec,Vec,void*),Mat Amat, Mat Pmat, PetscErrorCode (*J)(SNES,Vec,Mat,Mat,void*),void *ctx) 2095 { 2096 PetscErrorCode ierr; 2097 DM dm; 2098 2099 PetscFunctionBegin; 2100 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2101 ierr = SNESGetDM(snes, &dm);CHKERRQ(ierr); 2102 ierr = DMSNESSetPicard(dm,b,J,ctx);CHKERRQ(ierr); 2103 ierr = SNESSetFunction(snes,r,SNESPicardComputeFunction,ctx);CHKERRQ(ierr); 2104 ierr = SNESSetJacobian(snes,Amat,Pmat,SNESPicardComputeJacobian,ctx);CHKERRQ(ierr); 2105 PetscFunctionReturn(0); 2106 } 2107 2108 /*@C 2109 SNESGetPicard - Returns the context for the Picard iteration 2110 2111 Not Collective, but Vec is parallel if SNES is parallel. Collective if Vec is requested, but has not been created yet. 2112 2113 Input Parameter: 2114 . snes - the SNES context 2115 2116 Output Parameter: 2117 + r - the function (or NULL) 2118 . f - the function (or NULL); see SNESFunction for calling sequence details 2119 . Amat - the matrix used to defined the operation A(x) x - b(x) (or NULL) 2120 . Pmat - the matrix from which the preconditioner will be constructed (or NULL) 2121 . J - the function for matrix evaluation (or NULL); see SNESJacobianFunction for calling sequence details 2122 - ctx - the function context (or NULL) 2123 2124 Level: advanced 2125 2126 .keywords: SNES, nonlinear, get, function 2127 2128 .seealso: SNESSetPicard(), SNESGetFunction(), SNESGetJacobian(), SNESGetDM(), SNESFunction, SNESJacobianFunction 2129 @*/ 2130 PetscErrorCode SNESGetPicard(SNES snes,Vec *r,PetscErrorCode (**f)(SNES,Vec,Vec,void*),Mat *Amat, Mat *Pmat, PetscErrorCode (**J)(SNES,Vec,Mat,Mat,void*),void **ctx) 2131 { 2132 PetscErrorCode ierr; 2133 DM dm; 2134 2135 PetscFunctionBegin; 2136 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2137 ierr = SNESGetFunction(snes,r,NULL,NULL);CHKERRQ(ierr); 2138 ierr = SNESGetJacobian(snes,Amat,Pmat,NULL,NULL);CHKERRQ(ierr); 2139 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2140 ierr = DMSNESGetPicard(dm,f,J,ctx);CHKERRQ(ierr); 2141 PetscFunctionReturn(0); 2142 } 2143 2144 /*@C 2145 SNESSetComputeInitialGuess - Sets a routine used to compute an initial guess for the problem 2146 2147 Logically Collective on SNES 2148 2149 Input Parameters: 2150 + snes - the SNES context 2151 . func - function evaluation routine 2152 - ctx - [optional] user-defined context for private data for the 2153 function evaluation routine (may be NULL) 2154 2155 Calling sequence of func: 2156 $ func (SNES snes,Vec x,void *ctx); 2157 2158 . f - function vector 2159 - ctx - optional user-defined function context 2160 2161 Level: intermediate 2162 2163 .keywords: SNES, nonlinear, set, function 2164 2165 .seealso: SNESGetFunction(), SNESComputeFunction(), SNESSetJacobian() 2166 @*/ 2167 PetscErrorCode SNESSetComputeInitialGuess(SNES snes,PetscErrorCode (*func)(SNES,Vec,void*),void *ctx) 2168 { 2169 PetscFunctionBegin; 2170 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2171 if (func) snes->ops->computeinitialguess = func; 2172 if (ctx) snes->initialguessP = ctx; 2173 PetscFunctionReturn(0); 2174 } 2175 2176 /* --------------------------------------------------------------- */ 2177 /*@C 2178 SNESGetRhs - Gets the vector for solving F(x) = rhs. If rhs is not set 2179 it assumes a zero right hand side. 2180 2181 Logically Collective on SNES 2182 2183 Input Parameter: 2184 . snes - the SNES context 2185 2186 Output Parameter: 2187 . rhs - the right hand side vector or NULL if the right hand side vector is null 2188 2189 Level: intermediate 2190 2191 .keywords: SNES, nonlinear, get, function, right hand side 2192 2193 .seealso: SNESGetSolution(), SNESGetFunction(), SNESComputeFunction(), SNESSetJacobian(), SNESSetFunction() 2194 @*/ 2195 PetscErrorCode SNESGetRhs(SNES snes,Vec *rhs) 2196 { 2197 PetscFunctionBegin; 2198 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2199 PetscValidPointer(rhs,2); 2200 *rhs = snes->vec_rhs; 2201 PetscFunctionReturn(0); 2202 } 2203 2204 /*@ 2205 SNESComputeFunction - Calls the function that has been set with SNESSetFunction(). 2206 2207 Collective on SNES 2208 2209 Input Parameters: 2210 + snes - the SNES context 2211 - x - input vector 2212 2213 Output Parameter: 2214 . y - function vector, as set by SNESSetFunction() 2215 2216 Notes: 2217 SNESComputeFunction() is typically used within nonlinear solvers 2218 implementations, so most users would not generally call this routine 2219 themselves. 2220 2221 Level: developer 2222 2223 .keywords: SNES, nonlinear, compute, function 2224 2225 .seealso: SNESSetFunction(), SNESGetFunction() 2226 @*/ 2227 PetscErrorCode SNESComputeFunction(SNES snes,Vec x,Vec y) 2228 { 2229 PetscErrorCode ierr; 2230 DM dm; 2231 DMSNES sdm; 2232 2233 PetscFunctionBegin; 2234 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2235 PetscValidHeaderSpecific(x,VEC_CLASSID,2); 2236 PetscValidHeaderSpecific(y,VEC_CLASSID,3); 2237 PetscCheckSameComm(snes,1,x,2); 2238 PetscCheckSameComm(snes,1,y,3); 2239 ierr = VecValidValues(x,2,PETSC_TRUE);CHKERRQ(ierr); 2240 2241 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2242 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 2243 if (sdm->ops->computefunction) { 2244 if (sdm->ops->computefunction != SNESObjectiveComputeFunctionDefaultFD) { 2245 ierr = PetscLogEventBegin(SNES_FunctionEval,snes,x,y,0);CHKERRQ(ierr); 2246 } 2247 ierr = VecLockPush(x);CHKERRQ(ierr); 2248 PetscStackPush("SNES user function"); 2249 ierr = (*sdm->ops->computefunction)(snes,x,y,sdm->functionctx);CHKERRQ(ierr); 2250 PetscStackPop; 2251 ierr = VecLockPop(x);CHKERRQ(ierr); 2252 if (sdm->ops->computefunction != SNESObjectiveComputeFunctionDefaultFD) { 2253 ierr = PetscLogEventEnd(SNES_FunctionEval,snes,x,y,0);CHKERRQ(ierr); 2254 } 2255 } else if (snes->vec_rhs) { 2256 ierr = MatMult(snes->jacobian, x, y);CHKERRQ(ierr); 2257 } else SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE, "Must call SNESSetFunction() or SNESSetDM() before SNESComputeFunction(), likely called from SNESSolve()."); 2258 if (snes->vec_rhs) { 2259 ierr = VecAXPY(y,-1.0,snes->vec_rhs);CHKERRQ(ierr); 2260 } 2261 snes->nfuncs++; 2262 /* 2263 domainerror might not be set on all processes; so we tag vector locally with Inf and the next inner product or norm will 2264 propagate the value to all processes 2265 */ 2266 if (snes->domainerror) { 2267 ierr = VecSetInf(y);CHKERRQ(ierr); 2268 } 2269 PetscFunctionReturn(0); 2270 } 2271 2272 /*@ 2273 SNESComputeNGS - Calls the Gauss-Seidel function that has been set with SNESSetNGS(). 2274 2275 Collective on SNES 2276 2277 Input Parameters: 2278 + snes - the SNES context 2279 . x - input vector 2280 - b - rhs vector 2281 2282 Output Parameter: 2283 . x - new solution vector 2284 2285 Notes: 2286 SNESComputeNGS() is typically used within composed nonlinear solver 2287 implementations, so most users would not generally call this routine 2288 themselves. 2289 2290 Level: developer 2291 2292 .keywords: SNES, nonlinear, compute, function 2293 2294 .seealso: SNESSetNGS(), SNESComputeFunction() 2295 @*/ 2296 PetscErrorCode SNESComputeNGS(SNES snes,Vec b,Vec x) 2297 { 2298 PetscErrorCode ierr; 2299 DM dm; 2300 DMSNES sdm; 2301 2302 PetscFunctionBegin; 2303 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2304 PetscValidHeaderSpecific(x,VEC_CLASSID,2); 2305 if (b) PetscValidHeaderSpecific(b,VEC_CLASSID,3); 2306 PetscCheckSameComm(snes,1,x,2); 2307 if (b) PetscCheckSameComm(snes,1,b,3); 2308 if (b) {ierr = VecValidValues(b,2,PETSC_TRUE);CHKERRQ(ierr);} 2309 ierr = PetscLogEventBegin(SNES_NGSEval,snes,x,b,0);CHKERRQ(ierr); 2310 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2311 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 2312 if (sdm->ops->computegs) { 2313 if (b) {ierr = VecLockPush(b);CHKERRQ(ierr);} 2314 PetscStackPush("SNES user NGS"); 2315 ierr = (*sdm->ops->computegs)(snes,x,b,sdm->gsctx);CHKERRQ(ierr); 2316 PetscStackPop; 2317 if (b) {ierr = VecLockPop(b);CHKERRQ(ierr);} 2318 } else SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE, "Must call SNESSetNGS() before SNESComputeNGS(), likely called from SNESSolve()."); 2319 ierr = PetscLogEventEnd(SNES_NGSEval,snes,x,b,0);CHKERRQ(ierr); 2320 PetscFunctionReturn(0); 2321 } 2322 2323 PetscErrorCode SNESTestJacobian(SNES snes) 2324 { 2325 Mat A,B,C,D,jacobian; 2326 Vec x = snes->vec_sol,f = snes->vec_func; 2327 PetscErrorCode ierr; 2328 PetscReal nrm,gnorm; 2329 PetscReal threshold = 1.e-5; 2330 PetscInt m,n,M,N; 2331 void *functx; 2332 PetscBool complete_print = PETSC_FALSE,threshold_print = PETSC_FALSE,test = PETSC_FALSE,flg; 2333 PetscViewer viewer,mviewer; 2334 MPI_Comm comm; 2335 PetscInt tabs; 2336 static PetscBool directionsprinted = PETSC_FALSE; 2337 PetscViewerFormat format; 2338 2339 PetscFunctionBegin; 2340 ierr = PetscObjectOptionsBegin((PetscObject)snes);CHKERRQ(ierr); 2341 ierr = PetscOptionsName("-snes_test_jacobian","Compare hand-coded and finite difference Jacobians","None",&test);CHKERRQ(ierr); 2342 ierr = PetscOptionsReal("-snes_test_jacobian", "Threshold for element difference between hand-coded and finite difference being meaningful", "None", threshold, &threshold,NULL);CHKERRQ(ierr); 2343 ierr = PetscOptionsViewer("-snes_test_jacobian_view","View difference between hand-coded and finite difference Jacobians element entries","None",&mviewer,&format,&complete_print);CHKERRQ(ierr); 2344 if (!complete_print) { 2345 ierr = PetscOptionsViewer("-snes_test_jacobian_display","Display difference between hand-coded and finite difference Jacobians","None",&mviewer,&format,&complete_print);CHKERRQ(ierr); 2346 } 2347 /* for compatibility with PETSc 3.9 and older. */ 2348 ierr = PetscOptionsReal("-snes_test_jacobian_display_threshold", "Display difference between hand-coded and finite difference Jacobians which exceed input threshold", "None", threshold, &threshold, &threshold_print);CHKERRQ(ierr); 2349 ierr = PetscOptionsEnd();CHKERRQ(ierr); 2350 if (!test) PetscFunctionReturn(0); 2351 2352 ierr = PetscObjectGetComm((PetscObject)snes,&comm);CHKERRQ(ierr); 2353 ierr = PetscViewerASCIIGetStdout(comm,&viewer);CHKERRQ(ierr); 2354 ierr = PetscViewerASCIIGetTab(viewer, &tabs);CHKERRQ(ierr); 2355 ierr = PetscViewerASCIISetTab(viewer, ((PetscObject)snes)->tablevel);CHKERRQ(ierr); 2356 ierr = PetscViewerASCIIPrintf(viewer," ---------- Testing Jacobian -------------\n");CHKERRQ(ierr); 2357 if (!complete_print && !directionsprinted) { 2358 ierr = PetscViewerASCIIPrintf(viewer," Run with -snes_test_jacobian_view and optionally -snes_test_jacobian <threshold> to show difference\n");CHKERRQ(ierr); 2359 ierr = PetscViewerASCIIPrintf(viewer," of hand-coded and finite difference Jacobian entries greater than <threshold>.\n");CHKERRQ(ierr); 2360 } 2361 if (!directionsprinted) { 2362 ierr = PetscViewerASCIIPrintf(viewer," Testing hand-coded Jacobian, if (for double precision runs) ||J - Jfd||_F/||J||_F is\n");CHKERRQ(ierr); 2363 ierr = PetscViewerASCIIPrintf(viewer," O(1.e-8), the hand-coded Jacobian is probably correct.\n");CHKERRQ(ierr); 2364 directionsprinted = PETSC_TRUE; 2365 } 2366 if (complete_print) { 2367 ierr = PetscViewerPushFormat(mviewer,format);CHKERRQ(ierr); 2368 } 2369 2370 /* evaluate the function at this point because SNESComputeJacobianDefault() assumes that the function has been evaluated and put into snes->vec_func */ 2371 ierr = SNESComputeFunction(snes,x,f);CHKERRQ(ierr); 2372 2373 ierr = PetscObjectTypeCompare((PetscObject)snes->jacobian,MATMFFD,&flg);CHKERRQ(ierr); 2374 if (!flg) jacobian = snes->jacobian; 2375 else jacobian = snes->jacobian_pre; 2376 2377 while (jacobian) { 2378 ierr = PetscObjectTypeCompareAny((PetscObject)jacobian,&flg,MATSEQAIJ,MATMPIAIJ,MATSEQDENSE,MATMPIDENSE,MATSEQBAIJ,MATMPIBAIJ,MATSEQSBAIJ,MATMPIBAIJ,"");CHKERRQ(ierr); 2379 if (flg) { 2380 A = jacobian; 2381 ierr = PetscObjectReference((PetscObject)A);CHKERRQ(ierr); 2382 } else { 2383 ierr = MatComputeExplicitOperator(jacobian,&A);CHKERRQ(ierr); 2384 } 2385 2386 ierr = MatCreate(PetscObjectComm((PetscObject)A),&B);CHKERRQ(ierr); 2387 ierr = MatGetSize(A,&M,&N);CHKERRQ(ierr); 2388 ierr = MatGetLocalSize(A,&m,&n);CHKERRQ(ierr); 2389 ierr = MatSetSizes(B,m,n,M,N);CHKERRQ(ierr); 2390 ierr = MatSetType(B,((PetscObject)A)->type_name);CHKERRQ(ierr); 2391 ierr = MatSetUp(B);CHKERRQ(ierr); 2392 ierr = MatSetOption(B,MAT_NEW_NONZERO_ALLOCATION_ERR,PETSC_FALSE);CHKERRQ(ierr); 2393 2394 ierr = SNESGetFunction(snes,NULL,NULL,&functx);CHKERRQ(ierr); 2395 ierr = SNESComputeJacobianDefault(snes,x,B,B,functx);CHKERRQ(ierr); 2396 2397 ierr = MatDuplicate(B,MAT_COPY_VALUES,&D);CHKERRQ(ierr); 2398 ierr = MatAYPX(D,-1.0,A,DIFFERENT_NONZERO_PATTERN);CHKERRQ(ierr); 2399 ierr = MatNorm(D,NORM_FROBENIUS,&nrm);CHKERRQ(ierr); 2400 ierr = MatNorm(A,NORM_FROBENIUS,&gnorm);CHKERRQ(ierr); 2401 ierr = MatDestroy(&D);CHKERRQ(ierr); 2402 if (!gnorm) gnorm = 1; /* just in case */ 2403 ierr = PetscViewerASCIIPrintf(viewer," ||J - Jfd||_F/||J||_F = %g, ||J - Jfd||_F = %g\n",(double)(nrm/gnorm),(double)nrm);CHKERRQ(ierr); 2404 2405 if (complete_print) { 2406 ierr = PetscViewerASCIIPrintf(viewer," Hand-coded Jacobian ----------\n");CHKERRQ(ierr); 2407 ierr = MatView(jacobian,mviewer);CHKERRQ(ierr); 2408 ierr = PetscViewerASCIIPrintf(viewer," Finite difference Jacobian ----------\n");CHKERRQ(ierr); 2409 ierr = MatView(B,mviewer);CHKERRQ(ierr); 2410 } 2411 2412 if (threshold_print) { 2413 PetscInt Istart, Iend, *ccols, bncols, cncols, j, row; 2414 PetscScalar *cvals; 2415 const PetscInt *bcols; 2416 const PetscScalar *bvals; 2417 2418 ierr = MatAYPX(B,-1.0,A,DIFFERENT_NONZERO_PATTERN);CHKERRQ(ierr); 2419 ierr = MatCreate(PetscObjectComm((PetscObject)A),&C);CHKERRQ(ierr); 2420 ierr = MatSetSizes(C,m,n,M,N);CHKERRQ(ierr); 2421 ierr = MatSetType(C,((PetscObject)A)->type_name);CHKERRQ(ierr); 2422 ierr = MatSetUp(C);CHKERRQ(ierr); 2423 ierr = MatSetOption(C,MAT_NEW_NONZERO_ALLOCATION_ERR,PETSC_FALSE);CHKERRQ(ierr); 2424 ierr = MatGetOwnershipRange(B,&Istart,&Iend);CHKERRQ(ierr); 2425 2426 for (row = Istart; row < Iend; row++) { 2427 ierr = MatGetRow(B,row,&bncols,&bcols,&bvals);CHKERRQ(ierr); 2428 ierr = PetscMalloc2(bncols,&ccols,bncols,&cvals);CHKERRQ(ierr); 2429 for (j = 0, cncols = 0; j < bncols; j++) { 2430 if (PetscAbsScalar(bvals[j]) > threshold) { 2431 ccols[cncols] = bcols[j]; 2432 cvals[cncols] = bvals[j]; 2433 cncols += 1; 2434 } 2435 } 2436 if (cncols) { 2437 ierr = MatSetValues(C,1,&row,cncols,ccols,cvals,INSERT_VALUES);CHKERRQ(ierr); 2438 } 2439 ierr = MatRestoreRow(B,row,&bncols,&bcols,&bvals);CHKERRQ(ierr); 2440 ierr = PetscFree2(ccols,cvals);CHKERRQ(ierr); 2441 } 2442 ierr = MatAssemblyBegin(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2443 ierr = MatAssemblyEnd(C,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2444 ierr = PetscViewerASCIIPrintf(viewer," Hand-coded minus finite-difference Jacobian with tolerance %g ----------\n",(double)threshold);CHKERRQ(ierr); 2445 ierr = MatView(C,complete_print ? mviewer : viewer);CHKERRQ(ierr); 2446 ierr = MatDestroy(&C);CHKERRQ(ierr); 2447 } 2448 ierr = MatDestroy(&A);CHKERRQ(ierr); 2449 ierr = MatDestroy(&B);CHKERRQ(ierr); 2450 2451 if (jacobian != snes->jacobian_pre) { 2452 jacobian = snes->jacobian_pre; 2453 ierr = PetscViewerASCIIPrintf(viewer," ---------- Testing Jacobian for preconditioner -------------\n");CHKERRQ(ierr); 2454 } 2455 else jacobian = NULL; 2456 } 2457 if (complete_print) { 2458 ierr = PetscViewerPopFormat(mviewer);CHKERRQ(ierr); 2459 } 2460 ierr = PetscViewerASCIISetTab(viewer,tabs);CHKERRQ(ierr); 2461 PetscFunctionReturn(0); 2462 } 2463 2464 /*@ 2465 SNESComputeJacobian - Computes the Jacobian matrix that has been set with SNESSetJacobian(). 2466 2467 Collective on SNES and Mat 2468 2469 Input Parameters: 2470 + snes - the SNES context 2471 - x - input vector 2472 2473 Output Parameters: 2474 + A - Jacobian matrix 2475 - B - optional preconditioning matrix 2476 2477 Options Database Keys: 2478 + -snes_lag_preconditioner <lag> 2479 . -snes_lag_jacobian <lag> 2480 . -snes_test_jacobian - compare the user provided Jacobian with one compute via finite differences to check for errors 2481 . -snes_test_jacobian_display - display the user provided Jacobian, the finite difference Jacobian and the difference between them to help users detect the location of errors in the user provided Jacobian 2482 . -snes_test_jacobian_display_threshold <numerical value> - display entries in the difference between the user provided Jacobian and finite difference Jacobian that are greater than a certain value to help users detect errors 2483 . -snes_compare_explicit - Compare the computed Jacobian to the finite difference Jacobian and output the differences 2484 . -snes_compare_explicit_draw - Compare the computed Jacobian to the finite difference Jacobian and draw the result 2485 . -snes_compare_explicit_contour - Compare the computed Jacobian to the finite difference Jacobian and draw a contour plot with the result 2486 . -snes_compare_operator - Make the comparison options above use the operator instead of the preconditioning matrix 2487 . -snes_compare_coloring - Compute the finite difference Jacobian using coloring and display norms of difference 2488 . -snes_compare_coloring_display - Compute the finite differece Jacobian using coloring and display verbose differences 2489 . -snes_compare_coloring_threshold - Display only those matrix entries that differ by more than a given threshold 2490 . -snes_compare_coloring_threshold_atol - Absolute tolerance for difference in matrix entries to be displayed by -snes_compare_coloring_threshold 2491 . -snes_compare_coloring_threshold_rtol - Relative tolerance for difference in matrix entries to be displayed by -snes_compare_coloring_threshold 2492 . -snes_compare_coloring_draw - Compute the finite differece Jacobian using coloring and draw differences 2493 - -snes_compare_coloring_draw_contour - Compute the finite differece Jacobian using coloring and show contours of matrices and differences 2494 2495 2496 Notes: 2497 Most users should not need to explicitly call this routine, as it 2498 is used internally within the nonlinear solvers. 2499 2500 Developer Notes: 2501 This has duplicative ways of checking the accuracy of the user provided Jacobian (see the options above). This is for historical reasons, the routine SNESTestJacobian() use to used 2502 for with the SNESType of test that has been removed. 2503 2504 Level: developer 2505 2506 .keywords: SNES, compute, Jacobian, matrix 2507 2508 .seealso: SNESSetJacobian(), KSPSetOperators(), MatStructure, SNESSetLagPreconditioner(), SNESSetLagJacobian() 2509 @*/ 2510 PetscErrorCode SNESComputeJacobian(SNES snes,Vec X,Mat A,Mat B) 2511 { 2512 PetscErrorCode ierr; 2513 PetscBool flag; 2514 DM dm; 2515 DMSNES sdm; 2516 KSP ksp; 2517 2518 PetscFunctionBegin; 2519 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2520 PetscValidHeaderSpecific(X,VEC_CLASSID,2); 2521 PetscCheckSameComm(snes,1,X,2); 2522 ierr = VecValidValues(X,2,PETSC_TRUE);CHKERRQ(ierr); 2523 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2524 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 2525 2526 if (!sdm->ops->computejacobian) SETERRQ(PetscObjectComm((PetscObject)snes),PETSC_ERR_USER,"Must call SNESSetJacobian(), DMSNESSetJacobian(), DMDASNESSetJacobianLocal(), etc"); 2527 2528 /* make sure that MatAssemblyBegin/End() is called on A matrix if it is matrix free */ 2529 2530 if (snes->lagjacobian == -2) { 2531 snes->lagjacobian = -1; 2532 2533 ierr = PetscInfo(snes,"Recomputing Jacobian/preconditioner because lag is -2 (means compute Jacobian, but then never again) \n");CHKERRQ(ierr); 2534 } else if (snes->lagjacobian == -1) { 2535 ierr = PetscInfo(snes,"Reusing Jacobian/preconditioner because lag is -1\n");CHKERRQ(ierr); 2536 ierr = PetscObjectTypeCompare((PetscObject)A,MATMFFD,&flag);CHKERRQ(ierr); 2537 if (flag) { 2538 ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2539 ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2540 } 2541 PetscFunctionReturn(0); 2542 } else if (snes->lagjacobian > 1 && (snes->iter + snes->jac_iter) % snes->lagjacobian) { 2543 ierr = PetscInfo2(snes,"Reusing Jacobian/preconditioner because lag is %D and SNES iteration is %D\n",snes->lagjacobian,snes->iter);CHKERRQ(ierr); 2544 ierr = PetscObjectTypeCompare((PetscObject)A,MATMFFD,&flag);CHKERRQ(ierr); 2545 if (flag) { 2546 ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2547 ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2548 } 2549 PetscFunctionReturn(0); 2550 } 2551 if (snes->npc && snes->npcside== PC_LEFT) { 2552 ierr = MatAssemblyBegin(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2553 ierr = MatAssemblyEnd(A,MAT_FINAL_ASSEMBLY);CHKERRQ(ierr); 2554 PetscFunctionReturn(0); 2555 } 2556 2557 ierr = PetscLogEventBegin(SNES_JacobianEval,snes,X,A,B);CHKERRQ(ierr); 2558 ierr = VecLockPush(X);CHKERRQ(ierr); 2559 PetscStackPush("SNES user Jacobian function"); 2560 ierr = (*sdm->ops->computejacobian)(snes,X,A,B,sdm->jacobianctx);CHKERRQ(ierr); 2561 PetscStackPop; 2562 ierr = VecLockPop(X);CHKERRQ(ierr); 2563 ierr = PetscLogEventEnd(SNES_JacobianEval,snes,X,A,B);CHKERRQ(ierr); 2564 2565 /* the next line ensures that snes->ksp exists */ 2566 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 2567 if (snes->lagpreconditioner == -2) { 2568 ierr = PetscInfo(snes,"Rebuilding preconditioner exactly once since lag is -2\n");CHKERRQ(ierr); 2569 ierr = KSPSetReusePreconditioner(snes->ksp,PETSC_FALSE);CHKERRQ(ierr); 2570 snes->lagpreconditioner = -1; 2571 } else if (snes->lagpreconditioner == -1) { 2572 ierr = PetscInfo(snes,"Reusing preconditioner because lag is -1\n");CHKERRQ(ierr); 2573 ierr = KSPSetReusePreconditioner(snes->ksp,PETSC_TRUE);CHKERRQ(ierr); 2574 } else if (snes->lagpreconditioner > 1 && (snes->iter + snes->pre_iter) % snes->lagpreconditioner) { 2575 ierr = PetscInfo2(snes,"Reusing preconditioner because lag is %D and SNES iteration is %D\n",snes->lagpreconditioner,snes->iter);CHKERRQ(ierr); 2576 ierr = KSPSetReusePreconditioner(snes->ksp,PETSC_TRUE);CHKERRQ(ierr); 2577 } else { 2578 ierr = PetscInfo(snes,"Rebuilding preconditioner\n");CHKERRQ(ierr); 2579 ierr = KSPSetReusePreconditioner(snes->ksp,PETSC_FALSE);CHKERRQ(ierr); 2580 } 2581 2582 ierr = SNESTestJacobian(snes);CHKERRQ(ierr); 2583 /* make sure user returned a correct Jacobian and preconditioner */ 2584 /* PetscValidHeaderSpecific(A,MAT_CLASSID,3); 2585 PetscValidHeaderSpecific(B,MAT_CLASSID,4); */ 2586 { 2587 PetscBool flag = PETSC_FALSE,flag_draw = PETSC_FALSE,flag_contour = PETSC_FALSE,flag_operator = PETSC_FALSE; 2588 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_explicit",NULL,NULL,&flag);CHKERRQ(ierr); 2589 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_explicit_draw",NULL,NULL,&flag_draw);CHKERRQ(ierr); 2590 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_explicit_draw_contour",NULL,NULL,&flag_contour);CHKERRQ(ierr); 2591 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_operator",NULL,NULL,&flag_operator);CHKERRQ(ierr); 2592 if (flag || flag_draw || flag_contour) { 2593 Mat Bexp_mine = NULL,Bexp,FDexp; 2594 PetscViewer vdraw,vstdout; 2595 PetscBool flg; 2596 if (flag_operator) { 2597 ierr = MatComputeExplicitOperator(A,&Bexp_mine);CHKERRQ(ierr); 2598 Bexp = Bexp_mine; 2599 } else { 2600 /* See if the preconditioning matrix can be viewed and added directly */ 2601 ierr = PetscObjectTypeCompareAny((PetscObject)B,&flg,MATSEQAIJ,MATMPIAIJ,MATSEQDENSE,MATMPIDENSE,MATSEQBAIJ,MATMPIBAIJ,MATSEQSBAIJ,MATMPIBAIJ,"");CHKERRQ(ierr); 2602 if (flg) Bexp = B; 2603 else { 2604 /* If the "preconditioning" matrix is itself MATSHELL or some other type without direct support */ 2605 ierr = MatComputeExplicitOperator(B,&Bexp_mine);CHKERRQ(ierr); 2606 Bexp = Bexp_mine; 2607 } 2608 } 2609 ierr = MatConvert(Bexp,MATSAME,MAT_INITIAL_MATRIX,&FDexp);CHKERRQ(ierr); 2610 ierr = SNESComputeJacobianDefault(snes,X,FDexp,FDexp,NULL);CHKERRQ(ierr); 2611 ierr = PetscViewerASCIIGetStdout(PetscObjectComm((PetscObject)snes),&vstdout);CHKERRQ(ierr); 2612 if (flag_draw || flag_contour) { 2613 ierr = PetscViewerDrawOpen(PetscObjectComm((PetscObject)snes),0,"Explicit Jacobians",PETSC_DECIDE,PETSC_DECIDE,300,300,&vdraw);CHKERRQ(ierr); 2614 if (flag_contour) {ierr = PetscViewerPushFormat(vdraw,PETSC_VIEWER_DRAW_CONTOUR);CHKERRQ(ierr);} 2615 } else vdraw = NULL; 2616 ierr = PetscViewerASCIIPrintf(vstdout,"Explicit %s\n",flag_operator ? "Jacobian" : "preconditioning Jacobian");CHKERRQ(ierr); 2617 if (flag) {ierr = MatView(Bexp,vstdout);CHKERRQ(ierr);} 2618 if (vdraw) {ierr = MatView(Bexp,vdraw);CHKERRQ(ierr);} 2619 ierr = PetscViewerASCIIPrintf(vstdout,"Finite difference Jacobian\n");CHKERRQ(ierr); 2620 if (flag) {ierr = MatView(FDexp,vstdout);CHKERRQ(ierr);} 2621 if (vdraw) {ierr = MatView(FDexp,vdraw);CHKERRQ(ierr);} 2622 ierr = MatAYPX(FDexp,-1.0,Bexp,SAME_NONZERO_PATTERN);CHKERRQ(ierr); 2623 ierr = PetscViewerASCIIPrintf(vstdout,"User-provided matrix minus finite difference Jacobian\n");CHKERRQ(ierr); 2624 if (flag) {ierr = MatView(FDexp,vstdout);CHKERRQ(ierr);} 2625 if (vdraw) { /* Always use contour for the difference */ 2626 ierr = PetscViewerPushFormat(vdraw,PETSC_VIEWER_DRAW_CONTOUR);CHKERRQ(ierr); 2627 ierr = MatView(FDexp,vdraw);CHKERRQ(ierr); 2628 ierr = PetscViewerPopFormat(vdraw);CHKERRQ(ierr); 2629 } 2630 if (flag_contour) {ierr = PetscViewerPopFormat(vdraw);CHKERRQ(ierr);} 2631 ierr = PetscViewerDestroy(&vdraw);CHKERRQ(ierr); 2632 ierr = MatDestroy(&Bexp_mine);CHKERRQ(ierr); 2633 ierr = MatDestroy(&FDexp);CHKERRQ(ierr); 2634 } 2635 } 2636 { 2637 PetscBool flag = PETSC_FALSE,flag_display = PETSC_FALSE,flag_draw = PETSC_FALSE,flag_contour = PETSC_FALSE,flag_threshold = PETSC_FALSE; 2638 PetscReal threshold_atol = PETSC_SQRT_MACHINE_EPSILON,threshold_rtol = 10*PETSC_SQRT_MACHINE_EPSILON; 2639 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_coloring",NULL,NULL,&flag);CHKERRQ(ierr); 2640 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_coloring_display",NULL,NULL,&flag_display);CHKERRQ(ierr); 2641 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_coloring_draw",NULL,NULL,&flag_draw);CHKERRQ(ierr); 2642 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_coloring_draw_contour",NULL,NULL,&flag_contour);CHKERRQ(ierr); 2643 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_compare_coloring_threshold",NULL,NULL,&flag_threshold);CHKERRQ(ierr); 2644 if (flag_threshold) { 2645 ierr = PetscOptionsGetReal(((PetscObject)snes)->options,((PetscObject)snes)->prefix,"-snes_compare_coloring_threshold_rtol",&threshold_rtol,NULL);CHKERRQ(ierr); 2646 ierr = PetscOptionsGetReal(((PetscObject)snes)->options,((PetscObject)snes)->prefix,"-snes_compare_coloring_threshold_atol",&threshold_atol,NULL);CHKERRQ(ierr); 2647 } 2648 if (flag || flag_display || flag_draw || flag_contour || flag_threshold) { 2649 Mat Bfd; 2650 PetscViewer vdraw,vstdout; 2651 MatColoring coloring; 2652 ISColoring iscoloring; 2653 MatFDColoring matfdcoloring; 2654 PetscErrorCode (*func)(SNES,Vec,Vec,void*); 2655 void *funcctx; 2656 PetscReal norm1,norm2,normmax; 2657 2658 ierr = MatDuplicate(B,MAT_DO_NOT_COPY_VALUES,&Bfd);CHKERRQ(ierr); 2659 ierr = MatColoringCreate(Bfd,&coloring);CHKERRQ(ierr); 2660 ierr = MatColoringSetType(coloring,MATCOLORINGSL);CHKERRQ(ierr); 2661 ierr = MatColoringSetFromOptions(coloring);CHKERRQ(ierr); 2662 ierr = MatColoringApply(coloring,&iscoloring);CHKERRQ(ierr); 2663 ierr = MatColoringDestroy(&coloring);CHKERRQ(ierr); 2664 ierr = MatFDColoringCreate(Bfd,iscoloring,&matfdcoloring);CHKERRQ(ierr); 2665 ierr = MatFDColoringSetFromOptions(matfdcoloring);CHKERRQ(ierr); 2666 ierr = MatFDColoringSetUp(Bfd,iscoloring,matfdcoloring);CHKERRQ(ierr); 2667 ierr = ISColoringDestroy(&iscoloring);CHKERRQ(ierr); 2668 2669 /* This method of getting the function is currently unreliable since it doesn't work for DM local functions. */ 2670 ierr = SNESGetFunction(snes,NULL,&func,&funcctx);CHKERRQ(ierr); 2671 ierr = MatFDColoringSetFunction(matfdcoloring,(PetscErrorCode (*)(void))func,funcctx);CHKERRQ(ierr); 2672 ierr = PetscObjectSetOptionsPrefix((PetscObject)matfdcoloring,((PetscObject)snes)->prefix);CHKERRQ(ierr); 2673 ierr = PetscObjectAppendOptionsPrefix((PetscObject)matfdcoloring,"coloring_");CHKERRQ(ierr); 2674 ierr = MatFDColoringSetFromOptions(matfdcoloring);CHKERRQ(ierr); 2675 ierr = MatFDColoringApply(Bfd,matfdcoloring,X,snes);CHKERRQ(ierr); 2676 ierr = MatFDColoringDestroy(&matfdcoloring);CHKERRQ(ierr); 2677 2678 ierr = PetscViewerASCIIGetStdout(PetscObjectComm((PetscObject)snes),&vstdout);CHKERRQ(ierr); 2679 if (flag_draw || flag_contour) { 2680 ierr = PetscViewerDrawOpen(PetscObjectComm((PetscObject)snes),0,"Colored Jacobians",PETSC_DECIDE,PETSC_DECIDE,300,300,&vdraw);CHKERRQ(ierr); 2681 if (flag_contour) {ierr = PetscViewerPushFormat(vdraw,PETSC_VIEWER_DRAW_CONTOUR);CHKERRQ(ierr);} 2682 } else vdraw = NULL; 2683 ierr = PetscViewerASCIIPrintf(vstdout,"Explicit preconditioning Jacobian\n");CHKERRQ(ierr); 2684 if (flag_display) {ierr = MatView(B,vstdout);CHKERRQ(ierr);} 2685 if (vdraw) {ierr = MatView(B,vdraw);CHKERRQ(ierr);} 2686 ierr = PetscViewerASCIIPrintf(vstdout,"Colored Finite difference Jacobian\n");CHKERRQ(ierr); 2687 if (flag_display) {ierr = MatView(Bfd,vstdout);CHKERRQ(ierr);} 2688 if (vdraw) {ierr = MatView(Bfd,vdraw);CHKERRQ(ierr);} 2689 ierr = MatAYPX(Bfd,-1.0,B,SAME_NONZERO_PATTERN);CHKERRQ(ierr); 2690 ierr = MatNorm(Bfd,NORM_1,&norm1);CHKERRQ(ierr); 2691 ierr = MatNorm(Bfd,NORM_FROBENIUS,&norm2);CHKERRQ(ierr); 2692 ierr = MatNorm(Bfd,NORM_MAX,&normmax);CHKERRQ(ierr); 2693 ierr = PetscViewerASCIIPrintf(vstdout,"User-provided matrix minus finite difference Jacobian, norm1=%g normFrob=%g normmax=%g\n",(double)norm1,(double)norm2,(double)normmax);CHKERRQ(ierr); 2694 if (flag_display) {ierr = MatView(Bfd,vstdout);CHKERRQ(ierr);} 2695 if (vdraw) { /* Always use contour for the difference */ 2696 ierr = PetscViewerPushFormat(vdraw,PETSC_VIEWER_DRAW_CONTOUR);CHKERRQ(ierr); 2697 ierr = MatView(Bfd,vdraw);CHKERRQ(ierr); 2698 ierr = PetscViewerPopFormat(vdraw);CHKERRQ(ierr); 2699 } 2700 if (flag_contour) {ierr = PetscViewerPopFormat(vdraw);CHKERRQ(ierr);} 2701 2702 if (flag_threshold) { 2703 PetscInt bs,rstart,rend,i; 2704 ierr = MatGetBlockSize(B,&bs);CHKERRQ(ierr); 2705 ierr = MatGetOwnershipRange(B,&rstart,&rend);CHKERRQ(ierr); 2706 for (i=rstart; i<rend; i++) { 2707 const PetscScalar *ba,*ca; 2708 const PetscInt *bj,*cj; 2709 PetscInt bn,cn,j,maxentrycol = -1,maxdiffcol = -1,maxrdiffcol = -1; 2710 PetscReal maxentry = 0,maxdiff = 0,maxrdiff = 0; 2711 ierr = MatGetRow(B,i,&bn,&bj,&ba);CHKERRQ(ierr); 2712 ierr = MatGetRow(Bfd,i,&cn,&cj,&ca);CHKERRQ(ierr); 2713 if (bn != cn) SETERRQ(((PetscObject)A)->comm,PETSC_ERR_PLIB,"Unexpected different nonzero pattern in -snes_compare_coloring_threshold"); 2714 for (j=0; j<bn; j++) { 2715 PetscReal rdiff = PetscAbsScalar(ca[j]) / (threshold_atol + threshold_rtol*PetscAbsScalar(ba[j])); 2716 if (PetscAbsScalar(ba[j]) > PetscAbs(maxentry)) { 2717 maxentrycol = bj[j]; 2718 maxentry = PetscRealPart(ba[j]); 2719 } 2720 if (PetscAbsScalar(ca[j]) > PetscAbs(maxdiff)) { 2721 maxdiffcol = bj[j]; 2722 maxdiff = PetscRealPart(ca[j]); 2723 } 2724 if (rdiff > maxrdiff) { 2725 maxrdiffcol = bj[j]; 2726 maxrdiff = rdiff; 2727 } 2728 } 2729 if (maxrdiff > 1) { 2730 ierr = PetscViewerASCIIPrintf(vstdout,"row %D (maxentry=%g at %D, maxdiff=%g at %D, maxrdiff=%g at %D):",i,(double)maxentry,maxentrycol,(double)maxdiff,maxdiffcol,(double)maxrdiff,maxrdiffcol);CHKERRQ(ierr); 2731 for (j=0; j<bn; j++) { 2732 PetscReal rdiff; 2733 rdiff = PetscAbsScalar(ca[j]) / (threshold_atol + threshold_rtol*PetscAbsScalar(ba[j])); 2734 if (rdiff > 1) { 2735 ierr = PetscViewerASCIIPrintf(vstdout," (%D,%g:%g)",bj[j],(double)PetscRealPart(ba[j]),(double)PetscRealPart(ca[j]));CHKERRQ(ierr); 2736 } 2737 } 2738 ierr = PetscViewerASCIIPrintf(vstdout,"\n",i,maxentry,maxdiff,maxrdiff);CHKERRQ(ierr); 2739 } 2740 ierr = MatRestoreRow(B,i,&bn,&bj,&ba);CHKERRQ(ierr); 2741 ierr = MatRestoreRow(Bfd,i,&cn,&cj,&ca);CHKERRQ(ierr); 2742 } 2743 } 2744 ierr = PetscViewerDestroy(&vdraw);CHKERRQ(ierr); 2745 ierr = MatDestroy(&Bfd);CHKERRQ(ierr); 2746 } 2747 } 2748 PetscFunctionReturn(0); 2749 } 2750 2751 /*MC 2752 SNESJacobianFunction - Function used to convey the nonlinear Jacobian of the function to be solved by SNES 2753 2754 Synopsis: 2755 #include "petscsnes.h" 2756 PetscErrorCode SNESJacobianFunction(SNES snes,Vec x,Mat Amat,Mat Pmat,void *ctx); 2757 2758 + x - input vector 2759 . Amat - the matrix that defines the (approximate) Jacobian 2760 . Pmat - the matrix to be used in constructing the preconditioner, usually the same as Amat. 2761 - ctx - [optional] user-defined Jacobian context 2762 2763 Level: intermediate 2764 2765 .seealso: SNESSetFunction(), SNESGetFunction(), SNESSetJacobian(), SNESGetJacobian() 2766 M*/ 2767 2768 /*@C 2769 SNESSetJacobian - Sets the function to compute Jacobian as well as the 2770 location to store the matrix. 2771 2772 Logically Collective on SNES and Mat 2773 2774 Input Parameters: 2775 + snes - the SNES context 2776 . Amat - the matrix that defines the (approximate) Jacobian 2777 . Pmat - the matrix to be used in constructing the preconditioner, usually the same as Amat. 2778 . J - Jacobian evaluation routine (if NULL then SNES retains any previously set value), see SNESJacobianFunction for details 2779 - ctx - [optional] user-defined context for private data for the 2780 Jacobian evaluation routine (may be NULL) (if NULL then SNES retains any previously set value) 2781 2782 Notes: 2783 If the Amat matrix and Pmat matrix are different you must call MatAssemblyBegin/End() on 2784 each matrix. 2785 2786 If you know the operator Amat has a null space you can use MatSetNullSpace() and MatSetTransposeNullSpace() to supply the null 2787 space to Amat and the KSP solvers will automatically use that null space as needed during the solution process. 2788 2789 If using SNESComputeJacobianDefaultColor() to assemble a Jacobian, the ctx argument 2790 must be a MatFDColoring. 2791 2792 Other defect-correction schemes can be used by computing a different matrix in place of the Jacobian. One common 2793 example is to use the "Picard linearization" which only differentiates through the highest order parts of each term. 2794 2795 Level: beginner 2796 2797 .keywords: SNES, nonlinear, set, Jacobian, matrix 2798 2799 .seealso: KSPSetOperators(), SNESSetFunction(), MatMFFDComputeJacobian(), SNESComputeJacobianDefaultColor(), MatStructure, J, 2800 SNESSetPicard(), SNESJacobianFunction 2801 @*/ 2802 PetscErrorCode SNESSetJacobian(SNES snes,Mat Amat,Mat Pmat,PetscErrorCode (*J)(SNES,Vec,Mat,Mat,void*),void *ctx) 2803 { 2804 PetscErrorCode ierr; 2805 DM dm; 2806 2807 PetscFunctionBegin; 2808 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2809 if (Amat) PetscValidHeaderSpecific(Amat,MAT_CLASSID,2); 2810 if (Pmat) PetscValidHeaderSpecific(Pmat,MAT_CLASSID,3); 2811 if (Amat) PetscCheckSameComm(snes,1,Amat,2); 2812 if (Pmat) PetscCheckSameComm(snes,1,Pmat,3); 2813 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2814 ierr = DMSNESSetJacobian(dm,J,ctx);CHKERRQ(ierr); 2815 if (Amat) { 2816 ierr = PetscObjectReference((PetscObject)Amat);CHKERRQ(ierr); 2817 ierr = MatDestroy(&snes->jacobian);CHKERRQ(ierr); 2818 2819 snes->jacobian = Amat; 2820 } 2821 if (Pmat) { 2822 ierr = PetscObjectReference((PetscObject)Pmat);CHKERRQ(ierr); 2823 ierr = MatDestroy(&snes->jacobian_pre);CHKERRQ(ierr); 2824 2825 snes->jacobian_pre = Pmat; 2826 } 2827 PetscFunctionReturn(0); 2828 } 2829 2830 /*@C 2831 SNESGetJacobian - Returns the Jacobian matrix and optionally the user 2832 provided context for evaluating the Jacobian. 2833 2834 Not Collective, but Mat object will be parallel if SNES object is 2835 2836 Input Parameter: 2837 . snes - the nonlinear solver context 2838 2839 Output Parameters: 2840 + Amat - location to stash (approximate) Jacobian matrix (or NULL) 2841 . Pmat - location to stash matrix used to compute the preconditioner (or NULL) 2842 . J - location to put Jacobian function (or NULL), see SNESJacobianFunction for details on its calling sequence 2843 - ctx - location to stash Jacobian ctx (or NULL) 2844 2845 Level: advanced 2846 2847 .seealso: SNESSetJacobian(), SNESComputeJacobian(), SNESJacobianFunction, SNESGetFunction() 2848 @*/ 2849 PetscErrorCode SNESGetJacobian(SNES snes,Mat *Amat,Mat *Pmat,PetscErrorCode (**J)(SNES,Vec,Mat,Mat,void*),void **ctx) 2850 { 2851 PetscErrorCode ierr; 2852 DM dm; 2853 DMSNES sdm; 2854 2855 PetscFunctionBegin; 2856 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2857 if (Amat) *Amat = snes->jacobian; 2858 if (Pmat) *Pmat = snes->jacobian_pre; 2859 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2860 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 2861 if (J) *J = sdm->ops->computejacobian; 2862 if (ctx) *ctx = sdm->jacobianctx; 2863 PetscFunctionReturn(0); 2864 } 2865 2866 /*@ 2867 SNESSetUp - Sets up the internal data structures for the later use 2868 of a nonlinear solver. 2869 2870 Collective on SNES 2871 2872 Input Parameters: 2873 . snes - the SNES context 2874 2875 Notes: 2876 For basic use of the SNES solvers the user need not explicitly call 2877 SNESSetUp(), since these actions will automatically occur during 2878 the call to SNESSolve(). However, if one wishes to control this 2879 phase separately, SNESSetUp() should be called after SNESCreate() 2880 and optional routines of the form SNESSetXXX(), but before SNESSolve(). 2881 2882 Level: advanced 2883 2884 .keywords: SNES, nonlinear, setup 2885 2886 .seealso: SNESCreate(), SNESSolve(), SNESDestroy() 2887 @*/ 2888 PetscErrorCode SNESSetUp(SNES snes) 2889 { 2890 PetscErrorCode ierr; 2891 DM dm; 2892 DMSNES sdm; 2893 SNESLineSearch linesearch, pclinesearch; 2894 void *lsprectx,*lspostctx; 2895 PetscErrorCode (*precheck)(SNESLineSearch,Vec,Vec,PetscBool*,void*); 2896 PetscErrorCode (*postcheck)(SNESLineSearch,Vec,Vec,Vec,PetscBool*,PetscBool*,void*); 2897 PetscErrorCode (*func)(SNES,Vec,Vec,void*); 2898 Vec f,fpc; 2899 void *funcctx; 2900 PetscErrorCode (*jac)(SNES,Vec,Mat,Mat,void*); 2901 void *jacctx,*appctx; 2902 Mat j,jpre; 2903 2904 PetscFunctionBegin; 2905 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 2906 if (snes->setupcalled) PetscFunctionReturn(0); 2907 2908 if (!((PetscObject)snes)->type_name) { 2909 ierr = SNESSetType(snes,SNESNEWTONLS);CHKERRQ(ierr); 2910 } 2911 2912 ierr = SNESGetFunction(snes,&snes->vec_func,NULL,NULL);CHKERRQ(ierr); 2913 2914 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2915 ierr = DMGetDMSNES(dm,&sdm);CHKERRQ(ierr); 2916 if (!sdm->ops->computefunction) SETERRQ(PetscObjectComm((PetscObject)dm),PETSC_ERR_ARG_WRONGSTATE,"Function never provided to SNES object"); 2917 if (!sdm->ops->computejacobian) { 2918 ierr = DMSNESSetJacobian(dm,SNESComputeJacobianDefaultColor,NULL);CHKERRQ(ierr); 2919 } 2920 if (!snes->vec_func) { 2921 ierr = DMCreateGlobalVector(dm,&snes->vec_func);CHKERRQ(ierr); 2922 } 2923 2924 if (!snes->ksp) { 2925 ierr = SNESGetKSP(snes, &snes->ksp);CHKERRQ(ierr); 2926 } 2927 2928 if (!snes->linesearch) { 2929 ierr = SNESGetLineSearch(snes, &snes->linesearch);CHKERRQ(ierr); 2930 } 2931 ierr = SNESLineSearchSetFunction(snes->linesearch,SNESComputeFunction);CHKERRQ(ierr); 2932 2933 if (snes->npc && (snes->npcside== PC_LEFT)) { 2934 snes->mf = PETSC_TRUE; 2935 snes->mf_operator = PETSC_FALSE; 2936 } 2937 2938 if (snes->npc) { 2939 /* copy the DM over */ 2940 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 2941 ierr = SNESSetDM(snes->npc,dm);CHKERRQ(ierr); 2942 2943 ierr = SNESGetFunction(snes,&f,&func,&funcctx);CHKERRQ(ierr); 2944 ierr = VecDuplicate(f,&fpc);CHKERRQ(ierr); 2945 ierr = SNESSetFunction(snes->npc,fpc,func,funcctx);CHKERRQ(ierr); 2946 ierr = SNESGetJacobian(snes,&j,&jpre,&jac,&jacctx);CHKERRQ(ierr); 2947 ierr = SNESSetJacobian(snes->npc,j,jpre,jac,jacctx);CHKERRQ(ierr); 2948 ierr = SNESGetApplicationContext(snes,&appctx);CHKERRQ(ierr); 2949 ierr = SNESSetApplicationContext(snes->npc,appctx);CHKERRQ(ierr); 2950 ierr = VecDestroy(&fpc);CHKERRQ(ierr); 2951 2952 /* copy the function pointers over */ 2953 ierr = PetscObjectCopyFortranFunctionPointers((PetscObject)snes,(PetscObject)snes->npc);CHKERRQ(ierr); 2954 2955 /* default to 1 iteration */ 2956 ierr = SNESSetTolerances(snes->npc,0.0,0.0,0.0,1,snes->npc->max_funcs);CHKERRQ(ierr); 2957 if (snes->npcside==PC_RIGHT) { 2958 ierr = SNESSetNormSchedule(snes->npc,SNES_NORM_FINAL_ONLY);CHKERRQ(ierr); 2959 } else { 2960 ierr = SNESSetNormSchedule(snes->npc,SNES_NORM_NONE);CHKERRQ(ierr); 2961 } 2962 ierr = SNESSetFromOptions(snes->npc);CHKERRQ(ierr); 2963 2964 /* copy the line search context over */ 2965 ierr = SNESGetLineSearch(snes,&linesearch);CHKERRQ(ierr); 2966 ierr = SNESGetLineSearch(snes->npc,&pclinesearch);CHKERRQ(ierr); 2967 ierr = SNESLineSearchGetPreCheck(linesearch,&precheck,&lsprectx);CHKERRQ(ierr); 2968 ierr = SNESLineSearchGetPostCheck(linesearch,&postcheck,&lspostctx);CHKERRQ(ierr); 2969 ierr = SNESLineSearchSetPreCheck(pclinesearch,precheck,lsprectx);CHKERRQ(ierr); 2970 ierr = SNESLineSearchSetPostCheck(pclinesearch,postcheck,lspostctx);CHKERRQ(ierr); 2971 ierr = PetscObjectCopyFortranFunctionPointers((PetscObject)linesearch, (PetscObject)pclinesearch);CHKERRQ(ierr); 2972 } 2973 if (snes->mf) { 2974 ierr = SNESSetUpMatrixFree_Private(snes, snes->mf_operator, snes->mf_version);CHKERRQ(ierr); 2975 } 2976 if (snes->ops->usercompute && !snes->user) { 2977 ierr = (*snes->ops->usercompute)(snes,(void**)&snes->user);CHKERRQ(ierr); 2978 } 2979 2980 snes->jac_iter = 0; 2981 snes->pre_iter = 0; 2982 2983 if (snes->ops->setup) { 2984 ierr = (*snes->ops->setup)(snes);CHKERRQ(ierr); 2985 } 2986 2987 if (snes->npc && (snes->npcside== PC_LEFT)) { 2988 if (snes->functype == SNES_FUNCTION_PRECONDITIONED) { 2989 ierr = SNESGetLineSearch(snes,&linesearch);CHKERRQ(ierr); 2990 ierr = SNESLineSearchSetFunction(linesearch,SNESComputeFunctionDefaultNPC);CHKERRQ(ierr); 2991 } 2992 } 2993 2994 snes->setupcalled = PETSC_TRUE; 2995 PetscFunctionReturn(0); 2996 } 2997 2998 /*@ 2999 SNESReset - Resets a SNES context to the snessetupcalled = 0 state and removes any allocated Vecs and Mats 3000 3001 Collective on SNES 3002 3003 Input Parameter: 3004 . snes - iterative context obtained from SNESCreate() 3005 3006 Level: intermediate 3007 3008 Notes: 3009 Also calls the application context destroy routine set with SNESSetComputeApplicationContext() 3010 3011 .keywords: SNES, destroy 3012 3013 .seealso: SNESCreate(), SNESSetUp(), SNESSolve() 3014 @*/ 3015 PetscErrorCode SNESReset(SNES snes) 3016 { 3017 PetscErrorCode ierr; 3018 3019 PetscFunctionBegin; 3020 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3021 if (snes->ops->userdestroy && snes->user) { 3022 ierr = (*snes->ops->userdestroy)((void**)&snes->user);CHKERRQ(ierr); 3023 snes->user = NULL; 3024 } 3025 if (snes->npc) { 3026 ierr = SNESReset(snes->npc);CHKERRQ(ierr); 3027 } 3028 3029 if (snes->ops->reset) { 3030 ierr = (*snes->ops->reset)(snes);CHKERRQ(ierr); 3031 } 3032 if (snes->ksp) { 3033 ierr = KSPReset(snes->ksp);CHKERRQ(ierr); 3034 } 3035 3036 if (snes->linesearch) { 3037 ierr = SNESLineSearchReset(snes->linesearch);CHKERRQ(ierr); 3038 } 3039 3040 ierr = VecDestroy(&snes->vec_rhs);CHKERRQ(ierr); 3041 ierr = VecDestroy(&snes->vec_sol);CHKERRQ(ierr); 3042 ierr = VecDestroy(&snes->vec_sol_update);CHKERRQ(ierr); 3043 ierr = VecDestroy(&snes->vec_func);CHKERRQ(ierr); 3044 ierr = MatDestroy(&snes->jacobian);CHKERRQ(ierr); 3045 ierr = MatDestroy(&snes->jacobian_pre);CHKERRQ(ierr); 3046 ierr = VecDestroyVecs(snes->nwork,&snes->work);CHKERRQ(ierr); 3047 ierr = VecDestroyVecs(snes->nvwork,&snes->vwork);CHKERRQ(ierr); 3048 3049 snes->alwayscomputesfinalresidual = PETSC_FALSE; 3050 3051 snes->nwork = snes->nvwork = 0; 3052 snes->setupcalled = PETSC_FALSE; 3053 PetscFunctionReturn(0); 3054 } 3055 3056 /*@ 3057 SNESDestroy - Destroys the nonlinear solver context that was created 3058 with SNESCreate(). 3059 3060 Collective on SNES 3061 3062 Input Parameter: 3063 . snes - the SNES context 3064 3065 Level: beginner 3066 3067 .keywords: SNES, nonlinear, destroy 3068 3069 .seealso: SNESCreate(), SNESSolve() 3070 @*/ 3071 PetscErrorCode SNESDestroy(SNES *snes) 3072 { 3073 PetscErrorCode ierr; 3074 3075 PetscFunctionBegin; 3076 if (!*snes) PetscFunctionReturn(0); 3077 PetscValidHeaderSpecific((*snes),SNES_CLASSID,1); 3078 if (--((PetscObject)(*snes))->refct > 0) {*snes = 0; PetscFunctionReturn(0);} 3079 3080 ierr = SNESReset((*snes));CHKERRQ(ierr); 3081 ierr = SNESDestroy(&(*snes)->npc);CHKERRQ(ierr); 3082 3083 /* if memory was published with SAWs then destroy it */ 3084 ierr = PetscObjectSAWsViewOff((PetscObject)*snes);CHKERRQ(ierr); 3085 if ((*snes)->ops->destroy) {ierr = (*((*snes))->ops->destroy)((*snes));CHKERRQ(ierr);} 3086 3087 if ((*snes)->dm) {ierr = DMCoarsenHookRemove((*snes)->dm,DMCoarsenHook_SNESVecSol,DMRestrictHook_SNESVecSol,*snes);CHKERRQ(ierr);} 3088 ierr = DMDestroy(&(*snes)->dm);CHKERRQ(ierr); 3089 ierr = KSPDestroy(&(*snes)->ksp);CHKERRQ(ierr); 3090 ierr = SNESLineSearchDestroy(&(*snes)->linesearch);CHKERRQ(ierr); 3091 3092 ierr = PetscFree((*snes)->kspconvctx);CHKERRQ(ierr); 3093 if ((*snes)->ops->convergeddestroy) { 3094 ierr = (*(*snes)->ops->convergeddestroy)((*snes)->cnvP);CHKERRQ(ierr); 3095 } 3096 if ((*snes)->conv_malloc) { 3097 ierr = PetscFree((*snes)->conv_hist);CHKERRQ(ierr); 3098 ierr = PetscFree((*snes)->conv_hist_its);CHKERRQ(ierr); 3099 } 3100 ierr = SNESMonitorCancel((*snes));CHKERRQ(ierr); 3101 ierr = PetscHeaderDestroy(snes);CHKERRQ(ierr); 3102 PetscFunctionReturn(0); 3103 } 3104 3105 /* ----------- Routines to set solver parameters ---------- */ 3106 3107 /*@ 3108 SNESSetLagPreconditioner - Determines when the preconditioner is rebuilt in the nonlinear solve. 3109 3110 Logically Collective on SNES 3111 3112 Input Parameters: 3113 + snes - the SNES context 3114 - lag - -1 indicates NEVER rebuild, 1 means rebuild every time the Jacobian is computed within a single nonlinear solve, 2 means every second time 3115 the Jacobian is built etc. -2 indicates rebuild preconditioner at next chance but then never rebuild after that 3116 3117 Options Database Keys: 3118 . -snes_lag_preconditioner <lag> 3119 3120 Notes: 3121 The default is 1 3122 The preconditioner is ALWAYS built in the first iteration of a nonlinear solve unless lag is -1 3123 If -1 is used before the very first nonlinear solve the preconditioner is still built because there is no previous preconditioner to use 3124 3125 Level: intermediate 3126 3127 .keywords: SNES, nonlinear, set, convergence, tolerances 3128 3129 .seealso: SNESSetTrustRegionTolerance(), SNESGetLagPreconditioner(), SNESSetLagJacobian(), SNESGetLagJacobian() 3130 3131 @*/ 3132 PetscErrorCode SNESSetLagPreconditioner(SNES snes,PetscInt lag) 3133 { 3134 PetscFunctionBegin; 3135 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3136 if (lag < -2) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Lag must be -2, -1, 1 or greater"); 3137 if (!lag) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Lag cannot be 0"); 3138 PetscValidLogicalCollectiveInt(snes,lag,2); 3139 snes->lagpreconditioner = lag; 3140 PetscFunctionReturn(0); 3141 } 3142 3143 /*@ 3144 SNESSetGridSequence - sets the number of steps of grid sequencing that SNES does 3145 3146 Logically Collective on SNES 3147 3148 Input Parameters: 3149 + snes - the SNES context 3150 - steps - the number of refinements to do, defaults to 0 3151 3152 Options Database Keys: 3153 . -snes_grid_sequence <steps> 3154 3155 Level: intermediate 3156 3157 Notes: 3158 Use SNESGetSolution() to extract the fine grid solution after grid sequencing. 3159 3160 .keywords: SNES, nonlinear, set, convergence, tolerances 3161 3162 .seealso: SNESSetTrustRegionTolerance(), SNESGetLagPreconditioner(), SNESSetLagJacobian(), SNESGetLagJacobian(), SNESGetGridSequence() 3163 3164 @*/ 3165 PetscErrorCode SNESSetGridSequence(SNES snes,PetscInt steps) 3166 { 3167 PetscFunctionBegin; 3168 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3169 PetscValidLogicalCollectiveInt(snes,steps,2); 3170 snes->gridsequence = steps; 3171 PetscFunctionReturn(0); 3172 } 3173 3174 /*@ 3175 SNESGetGridSequence - gets the number of steps of grid sequencing that SNES does 3176 3177 Logically Collective on SNES 3178 3179 Input Parameter: 3180 . snes - the SNES context 3181 3182 Output Parameter: 3183 . steps - the number of refinements to do, defaults to 0 3184 3185 Options Database Keys: 3186 . -snes_grid_sequence <steps> 3187 3188 Level: intermediate 3189 3190 Notes: 3191 Use SNESGetSolution() to extract the fine grid solution after grid sequencing. 3192 3193 .keywords: SNES, nonlinear, set, convergence, tolerances 3194 3195 .seealso: SNESSetTrustRegionTolerance(), SNESGetLagPreconditioner(), SNESSetLagJacobian(), SNESGetLagJacobian(), SNESSetGridSequence() 3196 3197 @*/ 3198 PetscErrorCode SNESGetGridSequence(SNES snes,PetscInt *steps) 3199 { 3200 PetscFunctionBegin; 3201 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3202 *steps = snes->gridsequence; 3203 PetscFunctionReturn(0); 3204 } 3205 3206 /*@ 3207 SNESGetLagPreconditioner - Indicates how often the preconditioner is rebuilt 3208 3209 Not Collective 3210 3211 Input Parameter: 3212 . snes - the SNES context 3213 3214 Output Parameter: 3215 . lag - -1 indicates NEVER rebuild, 1 means rebuild every time the Jacobian is computed within a single nonlinear solve, 2 means every second time 3216 the Jacobian is built etc. -2 indicates rebuild preconditioner at next chance but then never rebuild after that 3217 3218 Options Database Keys: 3219 . -snes_lag_preconditioner <lag> 3220 3221 Notes: 3222 The default is 1 3223 The preconditioner is ALWAYS built in the first iteration of a nonlinear solve unless lag is -1 3224 3225 Level: intermediate 3226 3227 .keywords: SNES, nonlinear, set, convergence, tolerances 3228 3229 .seealso: SNESSetTrustRegionTolerance(), SNESSetLagPreconditioner() 3230 3231 @*/ 3232 PetscErrorCode SNESGetLagPreconditioner(SNES snes,PetscInt *lag) 3233 { 3234 PetscFunctionBegin; 3235 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3236 *lag = snes->lagpreconditioner; 3237 PetscFunctionReturn(0); 3238 } 3239 3240 /*@ 3241 SNESSetLagJacobian - Determines when the Jacobian is rebuilt in the nonlinear solve. See SNESSetLagPreconditioner() for determining how 3242 often the preconditioner is rebuilt. 3243 3244 Logically Collective on SNES 3245 3246 Input Parameters: 3247 + snes - the SNES context 3248 - lag - -1 indicates NEVER rebuild, 1 means rebuild every time the Jacobian is computed within a single nonlinear solve, 2 means every second time 3249 the Jacobian is built etc. -2 means rebuild at next chance but then never again 3250 3251 Options Database Keys: 3252 . -snes_lag_jacobian <lag> 3253 3254 Notes: 3255 The default is 1 3256 The Jacobian is ALWAYS built in the first iteration of a nonlinear solve unless lag is -1 3257 If -1 is used before the very first nonlinear solve the CODE WILL FAIL! because no Jacobian is used, use -2 to indicate you want it recomputed 3258 at the next Newton step but never again (unless it is reset to another value) 3259 3260 Level: intermediate 3261 3262 .keywords: SNES, nonlinear, set, convergence, tolerances 3263 3264 .seealso: SNESSetTrustRegionTolerance(), SNESGetLagPreconditioner(), SNESSetLagPreconditioner(), SNESGetLagJacobian() 3265 3266 @*/ 3267 PetscErrorCode SNESSetLagJacobian(SNES snes,PetscInt lag) 3268 { 3269 PetscFunctionBegin; 3270 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3271 if (lag < -2) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Lag must be -2, -1, 1 or greater"); 3272 if (!lag) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Lag cannot be 0"); 3273 PetscValidLogicalCollectiveInt(snes,lag,2); 3274 snes->lagjacobian = lag; 3275 PetscFunctionReturn(0); 3276 } 3277 3278 /*@ 3279 SNESGetLagJacobian - Indicates how often the Jacobian is rebuilt. See SNESGetLagPreconditioner() to determine when the preconditioner is rebuilt 3280 3281 Not Collective 3282 3283 Input Parameter: 3284 . snes - the SNES context 3285 3286 Output Parameter: 3287 . lag - -1 indicates NEVER rebuild, 1 means rebuild every time the Jacobian is computed within a single nonlinear solve, 2 means every second time 3288 the Jacobian is built etc. 3289 3290 Options Database Keys: 3291 . -snes_lag_jacobian <lag> 3292 3293 Notes: 3294 The default is 1 3295 The jacobian is ALWAYS built in the first iteration of a nonlinear solve unless lag is -1 3296 3297 Level: intermediate 3298 3299 .keywords: SNES, nonlinear, set, convergence, tolerances 3300 3301 .seealso: SNESSetTrustRegionTolerance(), SNESSetLagJacobian(), SNESSetLagPreconditioner(), SNESGetLagPreconditioner() 3302 3303 @*/ 3304 PetscErrorCode SNESGetLagJacobian(SNES snes,PetscInt *lag) 3305 { 3306 PetscFunctionBegin; 3307 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3308 *lag = snes->lagjacobian; 3309 PetscFunctionReturn(0); 3310 } 3311 3312 /*@ 3313 SNESSetLagJacobianPersists - Set whether or not the Jacobian lagging persists through multiple solves 3314 3315 Logically collective on SNES 3316 3317 Input Parameter: 3318 + snes - the SNES context 3319 - flg - jacobian lagging persists if true 3320 3321 Options Database Keys: 3322 . -snes_lag_jacobian_persists <flg> 3323 3324 Notes: 3325 This is useful both for nonlinear preconditioning, where it's appropriate to have the Jacobian be stale by 3326 several solves, and for implicit time-stepping, where Jacobian lagging in the inner nonlinear solve over several 3327 timesteps may present huge efficiency gains. 3328 3329 Level: developer 3330 3331 .keywords: SNES, nonlinear, lag 3332 3333 .seealso: SNESSetLagPreconditionerPersists(), SNESSetLagJacobian(), SNESGetLagJacobian(), SNESGetNPC() 3334 3335 @*/ 3336 PetscErrorCode SNESSetLagJacobianPersists(SNES snes,PetscBool flg) 3337 { 3338 PetscFunctionBegin; 3339 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3340 PetscValidLogicalCollectiveBool(snes,flg,2); 3341 snes->lagjac_persist = flg; 3342 PetscFunctionReturn(0); 3343 } 3344 3345 /*@ 3346 SNESSetLagPreconditionerPersists - Set whether or not the preconditioner lagging persists through multiple solves 3347 3348 Logically Collective on SNES 3349 3350 Input Parameter: 3351 + snes - the SNES context 3352 - flg - preconditioner lagging persists if true 3353 3354 Options Database Keys: 3355 . -snes_lag_jacobian_persists <flg> 3356 3357 Notes: 3358 This is useful both for nonlinear preconditioning, where it's appropriate to have the preconditioner be stale 3359 by several solves, and for implicit time-stepping, where preconditioner lagging in the inner nonlinear solve over 3360 several timesteps may present huge efficiency gains. 3361 3362 Level: developer 3363 3364 .keywords: SNES, nonlinear, lag 3365 3366 .seealso: SNESSetLagJacobianPersists(), SNESSetLagJacobian(), SNESGetLagJacobian(), SNESGetNPC() 3367 3368 @*/ 3369 PetscErrorCode SNESSetLagPreconditionerPersists(SNES snes,PetscBool flg) 3370 { 3371 PetscFunctionBegin; 3372 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3373 PetscValidLogicalCollectiveBool(snes,flg,2); 3374 snes->lagpre_persist = flg; 3375 PetscFunctionReturn(0); 3376 } 3377 3378 /*@ 3379 SNESSetForceIteration - force SNESSolve() to take at least one iteration regardless of the initial residual norm 3380 3381 Logically Collective on SNES 3382 3383 Input Parameters: 3384 + snes - the SNES context 3385 - force - PETSC_TRUE require at least one iteration 3386 3387 Options Database Keys: 3388 . -snes_force_iteration <force> - Sets forcing an iteration 3389 3390 Notes: 3391 This is used sometimes with TS to prevent TS from detecting a false steady state solution 3392 3393 Level: intermediate 3394 3395 .keywords: SNES, nonlinear, set, convergence, tolerances 3396 3397 .seealso: SNESSetTrustRegionTolerance(), SNESSetDivergenceTolerance() 3398 @*/ 3399 PetscErrorCode SNESSetForceIteration(SNES snes,PetscBool force) 3400 { 3401 PetscFunctionBegin; 3402 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3403 snes->forceiteration = force; 3404 PetscFunctionReturn(0); 3405 } 3406 3407 /*@ 3408 SNESGetForceIteration - Whether or not to force SNESSolve() take at least one iteration regardless of the initial residual norm 3409 3410 Logically Collective on SNES 3411 3412 Input Parameters: 3413 . snes - the SNES context 3414 3415 Output Parameter: 3416 . force - PETSC_TRUE requires at least one iteration. 3417 3418 .keywords: SNES, nonlinear, set, convergence, tolerances 3419 3420 Level: intermediate 3421 3422 .seealso: SNESSetForceIteration(), SNESSetTrustRegionTolerance(), SNESSetDivergenceTolerance() 3423 @*/ 3424 PetscErrorCode SNESGetForceIteration(SNES snes,PetscBool *force) 3425 { 3426 PetscFunctionBegin; 3427 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3428 *force = snes->forceiteration; 3429 PetscFunctionReturn(0); 3430 } 3431 3432 /*@ 3433 SNESSetTolerances - Sets various parameters used in convergence tests. 3434 3435 Logically Collective on SNES 3436 3437 Input Parameters: 3438 + snes - the SNES context 3439 . abstol - absolute convergence tolerance 3440 . rtol - relative convergence tolerance 3441 . stol - convergence tolerance in terms of the norm of the change in the solution between steps, || delta x || < stol*|| x || 3442 . maxit - maximum number of iterations 3443 - maxf - maximum number of function evaluations (-1 indicates no limit) 3444 3445 Options Database Keys: 3446 + -snes_atol <abstol> - Sets abstol 3447 . -snes_rtol <rtol> - Sets rtol 3448 . -snes_stol <stol> - Sets stol 3449 . -snes_max_it <maxit> - Sets maxit 3450 - -snes_max_funcs <maxf> - Sets maxf 3451 3452 Notes: 3453 The default maximum number of iterations is 50. 3454 The default maximum number of function evaluations is 1000. 3455 3456 Level: intermediate 3457 3458 .keywords: SNES, nonlinear, set, convergence, tolerances 3459 3460 .seealso: SNESSetTrustRegionTolerance(), SNESSetDivergenceTolerance(), SNESSetForceIteration() 3461 @*/ 3462 PetscErrorCode SNESSetTolerances(SNES snes,PetscReal abstol,PetscReal rtol,PetscReal stol,PetscInt maxit,PetscInt maxf) 3463 { 3464 PetscFunctionBegin; 3465 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3466 PetscValidLogicalCollectiveReal(snes,abstol,2); 3467 PetscValidLogicalCollectiveReal(snes,rtol,3); 3468 PetscValidLogicalCollectiveReal(snes,stol,4); 3469 PetscValidLogicalCollectiveInt(snes,maxit,5); 3470 PetscValidLogicalCollectiveInt(snes,maxf,6); 3471 3472 if (abstol != PETSC_DEFAULT) { 3473 if (abstol < 0.0) SETERRQ1(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_OUTOFRANGE,"Absolute tolerance %g must be non-negative",(double)abstol); 3474 snes->abstol = abstol; 3475 } 3476 if (rtol != PETSC_DEFAULT) { 3477 if (rtol < 0.0 || 1.0 <= rtol) SETERRQ1(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_OUTOFRANGE,"Relative tolerance %g must be non-negative and less than 1.0",(double)rtol); 3478 snes->rtol = rtol; 3479 } 3480 if (stol != PETSC_DEFAULT) { 3481 if (stol < 0.0) SETERRQ1(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_OUTOFRANGE,"Step tolerance %g must be non-negative",(double)stol); 3482 snes->stol = stol; 3483 } 3484 if (maxit != PETSC_DEFAULT) { 3485 if (maxit < 0) SETERRQ1(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_OUTOFRANGE,"Maximum number of iterations %D must be non-negative",maxit); 3486 snes->max_its = maxit; 3487 } 3488 if (maxf != PETSC_DEFAULT) { 3489 if (maxf < -1) SETERRQ1(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_OUTOFRANGE,"Maximum number of function evaluations %D must be -1 or nonnegative",maxf); 3490 snes->max_funcs = maxf; 3491 } 3492 snes->tolerancesset = PETSC_TRUE; 3493 PetscFunctionReturn(0); 3494 } 3495 3496 /*@ 3497 SNESSetDivergenceTolerance - Sets the divergence tolerance used for the SNES divergence test. 3498 3499 Logically Collective on SNES 3500 3501 Input Parameters: 3502 + snes - the SNES context 3503 - divtol - the divergence tolerance. Use -1 to deactivate the test. 3504 3505 Options Database Keys: 3506 + -snes_divergence_tolerance <divtol> - Sets divtol 3507 3508 Notes: 3509 The default divergence tolerance is 1e4. 3510 3511 Level: intermediate 3512 3513 .keywords: SNES, nonlinear, set, divergence, tolerance 3514 3515 .seealso: SNESSetTolerances(), SNESGetDivergenceTolerance 3516 @*/ 3517 PetscErrorCode SNESSetDivergenceTolerance(SNES snes,PetscReal divtol) 3518 { 3519 PetscFunctionBegin; 3520 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3521 PetscValidLogicalCollectiveReal(snes,divtol,2); 3522 3523 if (divtol != PETSC_DEFAULT) { 3524 snes->divtol = divtol; 3525 } 3526 else { 3527 snes->divtol = 1.0e4; 3528 } 3529 PetscFunctionReturn(0); 3530 } 3531 3532 /*@ 3533 SNESGetTolerances - Gets various parameters used in convergence tests. 3534 3535 Not Collective 3536 3537 Input Parameters: 3538 + snes - the SNES context 3539 . atol - absolute convergence tolerance 3540 . rtol - relative convergence tolerance 3541 . stol - convergence tolerance in terms of the norm 3542 of the change in the solution between steps 3543 . maxit - maximum number of iterations 3544 - maxf - maximum number of function evaluations 3545 3546 Notes: 3547 The user can specify NULL for any parameter that is not needed. 3548 3549 Level: intermediate 3550 3551 .keywords: SNES, nonlinear, get, convergence, tolerances 3552 3553 .seealso: SNESSetTolerances() 3554 @*/ 3555 PetscErrorCode SNESGetTolerances(SNES snes,PetscReal *atol,PetscReal *rtol,PetscReal *stol,PetscInt *maxit,PetscInt *maxf) 3556 { 3557 PetscFunctionBegin; 3558 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3559 if (atol) *atol = snes->abstol; 3560 if (rtol) *rtol = snes->rtol; 3561 if (stol) *stol = snes->stol; 3562 if (maxit) *maxit = snes->max_its; 3563 if (maxf) *maxf = snes->max_funcs; 3564 PetscFunctionReturn(0); 3565 } 3566 3567 /*@ 3568 SNESGetDivergenceTolerance - Gets divergence tolerance used in divergence test. 3569 3570 Not Collective 3571 3572 Input Parameters: 3573 + snes - the SNES context 3574 - divtol - divergence tolerance 3575 3576 Level: intermediate 3577 3578 .keywords: SNES, nonlinear, get, divergence, tolerance 3579 3580 .seealso: SNESSetDivergenceTolerance() 3581 @*/ 3582 PetscErrorCode SNESGetDivergenceTolerance(SNES snes,PetscReal *divtol) 3583 { 3584 PetscFunctionBegin; 3585 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3586 if (divtol) *divtol = snes->divtol; 3587 PetscFunctionReturn(0); 3588 } 3589 3590 /*@ 3591 SNESSetTrustRegionTolerance - Sets the trust region parameter tolerance. 3592 3593 Logically Collective on SNES 3594 3595 Input Parameters: 3596 + snes - the SNES context 3597 - tol - tolerance 3598 3599 Options Database Key: 3600 . -snes_trtol <tol> - Sets tol 3601 3602 Level: intermediate 3603 3604 .keywords: SNES, nonlinear, set, trust region, tolerance 3605 3606 .seealso: SNESSetTolerances() 3607 @*/ 3608 PetscErrorCode SNESSetTrustRegionTolerance(SNES snes,PetscReal tol) 3609 { 3610 PetscFunctionBegin; 3611 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3612 PetscValidLogicalCollectiveReal(snes,tol,2); 3613 snes->deltatol = tol; 3614 PetscFunctionReturn(0); 3615 } 3616 3617 /* 3618 Duplicate the lg monitors for SNES from KSP; for some reason with 3619 dynamic libraries things don't work under Sun4 if we just use 3620 macros instead of functions 3621 */ 3622 PetscErrorCode SNESMonitorLGResidualNorm(SNES snes,PetscInt it,PetscReal norm,void *ctx) 3623 { 3624 PetscErrorCode ierr; 3625 3626 PetscFunctionBegin; 3627 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3628 ierr = KSPMonitorLGResidualNorm((KSP)snes,it,norm,ctx);CHKERRQ(ierr); 3629 PetscFunctionReturn(0); 3630 } 3631 3632 PetscErrorCode SNESMonitorLGCreate(MPI_Comm comm,const char host[],const char label[],int x,int y,int m,int n,PetscDrawLG *lgctx) 3633 { 3634 PetscErrorCode ierr; 3635 3636 PetscFunctionBegin; 3637 ierr = KSPMonitorLGResidualNormCreate(comm,host,label,x,y,m,n,lgctx);CHKERRQ(ierr); 3638 PetscFunctionReturn(0); 3639 } 3640 3641 PETSC_INTERN PetscErrorCode SNESMonitorRange_Private(SNES,PetscInt,PetscReal*); 3642 3643 PetscErrorCode SNESMonitorLGRange(SNES snes,PetscInt n,PetscReal rnorm,void *monctx) 3644 { 3645 PetscDrawLG lg; 3646 PetscErrorCode ierr; 3647 PetscReal x,y,per; 3648 PetscViewer v = (PetscViewer)monctx; 3649 static PetscReal prev; /* should be in the context */ 3650 PetscDraw draw; 3651 3652 PetscFunctionBegin; 3653 PetscValidHeaderSpecific(v,PETSC_VIEWER_CLASSID,4); 3654 ierr = PetscViewerDrawGetDrawLG(v,0,&lg);CHKERRQ(ierr); 3655 if (!n) {ierr = PetscDrawLGReset(lg);CHKERRQ(ierr);} 3656 ierr = PetscDrawLGGetDraw(lg,&draw);CHKERRQ(ierr); 3657 ierr = PetscDrawSetTitle(draw,"Residual norm");CHKERRQ(ierr); 3658 x = (PetscReal)n; 3659 if (rnorm > 0.0) y = PetscLog10Real(rnorm); 3660 else y = -15.0; 3661 ierr = PetscDrawLGAddPoint(lg,&x,&y);CHKERRQ(ierr); 3662 if (n < 20 || !(n % 5) || snes->reason) { 3663 ierr = PetscDrawLGDraw(lg);CHKERRQ(ierr); 3664 ierr = PetscDrawLGSave(lg);CHKERRQ(ierr); 3665 } 3666 3667 ierr = PetscViewerDrawGetDrawLG(v,1,&lg);CHKERRQ(ierr); 3668 if (!n) {ierr = PetscDrawLGReset(lg);CHKERRQ(ierr);} 3669 ierr = PetscDrawLGGetDraw(lg,&draw);CHKERRQ(ierr); 3670 ierr = PetscDrawSetTitle(draw,"% elemts > .2*max elemt");CHKERRQ(ierr); 3671 ierr = SNESMonitorRange_Private(snes,n,&per);CHKERRQ(ierr); 3672 x = (PetscReal)n; 3673 y = 100.0*per; 3674 ierr = PetscDrawLGAddPoint(lg,&x,&y);CHKERRQ(ierr); 3675 if (n < 20 || !(n % 5) || snes->reason) { 3676 ierr = PetscDrawLGDraw(lg);CHKERRQ(ierr); 3677 ierr = PetscDrawLGSave(lg);CHKERRQ(ierr); 3678 } 3679 3680 ierr = PetscViewerDrawGetDrawLG(v,2,&lg);CHKERRQ(ierr); 3681 if (!n) {prev = rnorm;ierr = PetscDrawLGReset(lg);CHKERRQ(ierr);} 3682 ierr = PetscDrawLGGetDraw(lg,&draw);CHKERRQ(ierr); 3683 ierr = PetscDrawSetTitle(draw,"(norm -oldnorm)/oldnorm");CHKERRQ(ierr); 3684 x = (PetscReal)n; 3685 y = (prev - rnorm)/prev; 3686 ierr = PetscDrawLGAddPoint(lg,&x,&y);CHKERRQ(ierr); 3687 if (n < 20 || !(n % 5) || snes->reason) { 3688 ierr = PetscDrawLGDraw(lg);CHKERRQ(ierr); 3689 ierr = PetscDrawLGSave(lg);CHKERRQ(ierr); 3690 } 3691 3692 ierr = PetscViewerDrawGetDrawLG(v,3,&lg);CHKERRQ(ierr); 3693 if (!n) {ierr = PetscDrawLGReset(lg);CHKERRQ(ierr);} 3694 ierr = PetscDrawLGGetDraw(lg,&draw);CHKERRQ(ierr); 3695 ierr = PetscDrawSetTitle(draw,"(norm -oldnorm)/oldnorm*(% > .2 max)");CHKERRQ(ierr); 3696 x = (PetscReal)n; 3697 y = (prev - rnorm)/(prev*per); 3698 if (n > 2) { /*skip initial crazy value */ 3699 ierr = PetscDrawLGAddPoint(lg,&x,&y);CHKERRQ(ierr); 3700 } 3701 if (n < 20 || !(n % 5) || snes->reason) { 3702 ierr = PetscDrawLGDraw(lg);CHKERRQ(ierr); 3703 ierr = PetscDrawLGSave(lg);CHKERRQ(ierr); 3704 } 3705 prev = rnorm; 3706 PetscFunctionReturn(0); 3707 } 3708 3709 /*@ 3710 SNESMonitor - runs the user provided monitor routines, if they exist 3711 3712 Collective on SNES 3713 3714 Input Parameters: 3715 + snes - nonlinear solver context obtained from SNESCreate() 3716 . iter - iteration number 3717 - rnorm - relative norm of the residual 3718 3719 Notes: 3720 This routine is called by the SNES implementations. 3721 It does not typically need to be called by the user. 3722 3723 Level: developer 3724 3725 .seealso: SNESMonitorSet() 3726 @*/ 3727 PetscErrorCode SNESMonitor(SNES snes,PetscInt iter,PetscReal rnorm) 3728 { 3729 PetscErrorCode ierr; 3730 PetscInt i,n = snes->numbermonitors; 3731 3732 PetscFunctionBegin; 3733 ierr = VecLockPush(snes->vec_sol);CHKERRQ(ierr); 3734 for (i=0; i<n; i++) { 3735 ierr = (*snes->monitor[i])(snes,iter,rnorm,snes->monitorcontext[i]);CHKERRQ(ierr); 3736 } 3737 ierr = VecLockPop(snes->vec_sol);CHKERRQ(ierr); 3738 PetscFunctionReturn(0); 3739 } 3740 3741 /* ------------ Routines to set performance monitoring options ----------- */ 3742 3743 /*MC 3744 SNESMonitorFunction - functional form passed to SNESMonitorSet() to monitor convergence of nonlinear solver 3745 3746 Synopsis: 3747 #include <petscsnes.h> 3748 $ PetscErrorCode SNESMonitorFunction(SNES snes,PetscInt its, PetscReal norm,void *mctx) 3749 3750 + snes - the SNES context 3751 . its - iteration number 3752 . norm - 2-norm function value (may be estimated) 3753 - mctx - [optional] monitoring context 3754 3755 Level: advanced 3756 3757 .seealso: SNESMonitorSet(), SNESMonitorGet() 3758 M*/ 3759 3760 /*@C 3761 SNESMonitorSet - Sets an ADDITIONAL function that is to be used at every 3762 iteration of the nonlinear solver to display the iteration's 3763 progress. 3764 3765 Logically Collective on SNES 3766 3767 Input Parameters: 3768 + snes - the SNES context 3769 . f - the monitor function, see SNESMonitorFunction for the calling sequence 3770 . mctx - [optional] user-defined context for private data for the 3771 monitor routine (use NULL if no context is desired) 3772 - monitordestroy - [optional] routine that frees monitor context 3773 (may be NULL) 3774 3775 Options Database Keys: 3776 + -snes_monitor - sets SNESMonitorDefault() 3777 . -snes_monitor_lg_residualnorm - sets line graph monitor, 3778 uses SNESMonitorLGCreate() 3779 - -snes_monitor_cancel - cancels all monitors that have 3780 been hardwired into a code by 3781 calls to SNESMonitorSet(), but 3782 does not cancel those set via 3783 the options database. 3784 3785 Notes: 3786 Several different monitoring routines may be set by calling 3787 SNESMonitorSet() multiple times; all will be called in the 3788 order in which they were set. 3789 3790 Fortran Notes: 3791 Only a single monitor function can be set for each SNES object 3792 3793 Level: intermediate 3794 3795 .keywords: SNES, nonlinear, set, monitor 3796 3797 .seealso: SNESMonitorDefault(), SNESMonitorCancel(), SNESMonitorFunction 3798 @*/ 3799 PetscErrorCode SNESMonitorSet(SNES snes,PetscErrorCode (*f)(SNES,PetscInt,PetscReal,void*),void *mctx,PetscErrorCode (*monitordestroy)(void**)) 3800 { 3801 PetscInt i; 3802 PetscErrorCode ierr; 3803 PetscBool identical; 3804 3805 PetscFunctionBegin; 3806 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3807 for (i=0; i<snes->numbermonitors;i++) { 3808 ierr = PetscMonitorCompare((PetscErrorCode (*)(void))f,mctx,monitordestroy,(PetscErrorCode (*)(void))snes->monitor[i],snes->monitorcontext[i],snes->monitordestroy[i],&identical);CHKERRQ(ierr); 3809 if (identical) PetscFunctionReturn(0); 3810 } 3811 if (snes->numbermonitors >= MAXSNESMONITORS) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Too many monitors set"); 3812 snes->monitor[snes->numbermonitors] = f; 3813 snes->monitordestroy[snes->numbermonitors] = monitordestroy; 3814 snes->monitorcontext[snes->numbermonitors++] = (void*)mctx; 3815 PetscFunctionReturn(0); 3816 } 3817 3818 /*@ 3819 SNESMonitorCancel - Clears all the monitor functions for a SNES object. 3820 3821 Logically Collective on SNES 3822 3823 Input Parameters: 3824 . snes - the SNES context 3825 3826 Options Database Key: 3827 . -snes_monitor_cancel - cancels all monitors that have been hardwired 3828 into a code by calls to SNESMonitorSet(), but does not cancel those 3829 set via the options database 3830 3831 Notes: 3832 There is no way to clear one specific monitor from a SNES object. 3833 3834 Level: intermediate 3835 3836 .keywords: SNES, nonlinear, set, monitor 3837 3838 .seealso: SNESMonitorDefault(), SNESMonitorSet() 3839 @*/ 3840 PetscErrorCode SNESMonitorCancel(SNES snes) 3841 { 3842 PetscErrorCode ierr; 3843 PetscInt i; 3844 3845 PetscFunctionBegin; 3846 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3847 for (i=0; i<snes->numbermonitors; i++) { 3848 if (snes->monitordestroy[i]) { 3849 ierr = (*snes->monitordestroy[i])(&snes->monitorcontext[i]);CHKERRQ(ierr); 3850 } 3851 } 3852 snes->numbermonitors = 0; 3853 PetscFunctionReturn(0); 3854 } 3855 3856 /*MC 3857 SNESConvergenceTestFunction - functional form used for testing of convergence of nonlinear solver 3858 3859 Synopsis: 3860 #include <petscsnes.h> 3861 $ PetscErrorCode SNESConvergenceTest(SNES snes,PetscInt it,PetscReal xnorm,PetscReal gnorm,PetscReal f,SNESConvergedReason *reason,void *cctx) 3862 3863 + snes - the SNES context 3864 . it - current iteration (0 is the first and is before any Newton step) 3865 . cctx - [optional] convergence context 3866 . reason - reason for convergence/divergence 3867 . xnorm - 2-norm of current iterate 3868 . gnorm - 2-norm of current step 3869 - f - 2-norm of function 3870 3871 Level: intermediate 3872 3873 .seealso: SNESSetConvergenceTest(), SNESGetConvergenceTest() 3874 M*/ 3875 3876 /*@C 3877 SNESSetConvergenceTest - Sets the function that is to be used 3878 to test for convergence of the nonlinear iterative solution. 3879 3880 Logically Collective on SNES 3881 3882 Input Parameters: 3883 + snes - the SNES context 3884 . SNESConvergenceTestFunction - routine to test for convergence 3885 . cctx - [optional] context for private data for the convergence routine (may be NULL) 3886 - destroy - [optional] destructor for the context (may be NULL; NULL_FUNCTION in Fortran) 3887 3888 Level: advanced 3889 3890 .keywords: SNES, nonlinear, set, convergence, test 3891 3892 .seealso: SNESConvergedDefault(), SNESConvergedSkip(), SNESConvergenceTestFunction 3893 @*/ 3894 PetscErrorCode SNESSetConvergenceTest(SNES snes,PetscErrorCode (*SNESConvergenceTestFunction)(SNES,PetscInt,PetscReal,PetscReal,PetscReal,SNESConvergedReason*,void*),void *cctx,PetscErrorCode (*destroy)(void*)) 3895 { 3896 PetscErrorCode ierr; 3897 3898 PetscFunctionBegin; 3899 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3900 if (!SNESConvergenceTestFunction) SNESConvergenceTestFunction = SNESConvergedSkip; 3901 if (snes->ops->convergeddestroy) { 3902 ierr = (*snes->ops->convergeddestroy)(snes->cnvP);CHKERRQ(ierr); 3903 } 3904 snes->ops->converged = SNESConvergenceTestFunction; 3905 snes->ops->convergeddestroy = destroy; 3906 snes->cnvP = cctx; 3907 PetscFunctionReturn(0); 3908 } 3909 3910 /*@ 3911 SNESGetConvergedReason - Gets the reason the SNES iteration was stopped. 3912 3913 Not Collective 3914 3915 Input Parameter: 3916 . snes - the SNES context 3917 3918 Output Parameter: 3919 . reason - negative value indicates diverged, positive value converged, see SNESConvergedReason or the 3920 manual pages for the individual convergence tests for complete lists 3921 3922 Options Database: 3923 . -snes_converged_reason - prints the reason to standard out 3924 3925 Level: intermediate 3926 3927 Notes: 3928 Should only be called after the call the SNESSolve() is complete, if it is called earlier it returns the value SNES__CONVERGED_ITERATING. 3929 3930 .keywords: SNES, nonlinear, set, convergence, test 3931 3932 .seealso: SNESSetConvergenceTest(), SNESSetConvergedReason(), SNESConvergedReason 3933 @*/ 3934 PetscErrorCode SNESGetConvergedReason(SNES snes,SNESConvergedReason *reason) 3935 { 3936 PetscFunctionBegin; 3937 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3938 PetscValidPointer(reason,2); 3939 *reason = snes->reason; 3940 PetscFunctionReturn(0); 3941 } 3942 3943 /*@ 3944 SNESSetConvergedReason - Sets the reason the SNES iteration was stopped. 3945 3946 Not Collective 3947 3948 Input Parameters: 3949 + snes - the SNES context 3950 - reason - negative value indicates diverged, positive value converged, see SNESConvergedReason or the 3951 manual pages for the individual convergence tests for complete lists 3952 3953 Level: intermediate 3954 3955 .keywords: SNES, nonlinear, set, convergence, test 3956 .seealso: SNESGetConvergedReason(), SNESSetConvergenceTest(), SNESConvergedReason 3957 @*/ 3958 PetscErrorCode SNESSetConvergedReason(SNES snes,SNESConvergedReason reason) 3959 { 3960 PetscFunctionBegin; 3961 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 3962 snes->reason = reason; 3963 PetscFunctionReturn(0); 3964 } 3965 3966 /*@ 3967 SNESSetConvergenceHistory - Sets the array used to hold the convergence history. 3968 3969 Logically Collective on SNES 3970 3971 Input Parameters: 3972 + snes - iterative context obtained from SNESCreate() 3973 . a - array to hold history, this array will contain the function norms computed at each step 3974 . its - integer array holds the number of linear iterations for each solve. 3975 . na - size of a and its 3976 - reset - PETSC_TRUE indicates each new nonlinear solve resets the history counter to zero, 3977 else it continues storing new values for new nonlinear solves after the old ones 3978 3979 Notes: 3980 If 'a' and 'its' are NULL then space is allocated for the history. If 'na' PETSC_DECIDE or PETSC_DEFAULT then a 3981 default array of length 10000 is allocated. 3982 3983 This routine is useful, e.g., when running a code for purposes 3984 of accurate performance monitoring, when no I/O should be done 3985 during the section of code that is being timed. 3986 3987 Level: intermediate 3988 3989 .keywords: SNES, set, convergence, history 3990 3991 .seealso: SNESGetConvergenceHistory() 3992 3993 @*/ 3994 PetscErrorCode SNESSetConvergenceHistory(SNES snes,PetscReal a[],PetscInt its[],PetscInt na,PetscBool reset) 3995 { 3996 PetscErrorCode ierr; 3997 3998 PetscFunctionBegin; 3999 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4000 if (a) PetscValidScalarPointer(a,2); 4001 if (its) PetscValidIntPointer(its,3); 4002 if (!a) { 4003 if (na == PETSC_DECIDE || na == PETSC_DEFAULT) na = 1000; 4004 ierr = PetscCalloc1(na,&a);CHKERRQ(ierr); 4005 ierr = PetscCalloc1(na,&its);CHKERRQ(ierr); 4006 4007 snes->conv_malloc = PETSC_TRUE; 4008 } 4009 snes->conv_hist = a; 4010 snes->conv_hist_its = its; 4011 snes->conv_hist_max = na; 4012 snes->conv_hist_len = 0; 4013 snes->conv_hist_reset = reset; 4014 PetscFunctionReturn(0); 4015 } 4016 4017 #if defined(PETSC_HAVE_MATLAB_ENGINE) 4018 #include <engine.h> /* MATLAB include file */ 4019 #include <mex.h> /* MATLAB include file */ 4020 4021 PETSC_EXTERN mxArray *SNESGetConvergenceHistoryMatlab(SNES snes) 4022 { 4023 mxArray *mat; 4024 PetscInt i; 4025 PetscReal *ar; 4026 4027 PetscFunctionBegin; 4028 mat = mxCreateDoubleMatrix(snes->conv_hist_len,1,mxREAL); 4029 ar = (PetscReal*) mxGetData(mat); 4030 for (i=0; i<snes->conv_hist_len; i++) ar[i] = snes->conv_hist[i]; 4031 PetscFunctionReturn(mat); 4032 } 4033 #endif 4034 4035 /*@C 4036 SNESGetConvergenceHistory - Gets the array used to hold the convergence history. 4037 4038 Not Collective 4039 4040 Input Parameter: 4041 . snes - iterative context obtained from SNESCreate() 4042 4043 Output Parameters: 4044 . a - array to hold history 4045 . its - integer array holds the number of linear iterations (or 4046 negative if not converged) for each solve. 4047 - na - size of a and its 4048 4049 Notes: 4050 The calling sequence for this routine in Fortran is 4051 $ call SNESGetConvergenceHistory(SNES snes, integer na, integer ierr) 4052 4053 This routine is useful, e.g., when running a code for purposes 4054 of accurate performance monitoring, when no I/O should be done 4055 during the section of code that is being timed. 4056 4057 Level: intermediate 4058 4059 .keywords: SNES, get, convergence, history 4060 4061 .seealso: SNESSetConvergencHistory() 4062 4063 @*/ 4064 PetscErrorCode SNESGetConvergenceHistory(SNES snes,PetscReal *a[],PetscInt *its[],PetscInt *na) 4065 { 4066 PetscFunctionBegin; 4067 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4068 if (a) *a = snes->conv_hist; 4069 if (its) *its = snes->conv_hist_its; 4070 if (na) *na = snes->conv_hist_len; 4071 PetscFunctionReturn(0); 4072 } 4073 4074 /*@C 4075 SNESSetUpdate - Sets the general-purpose update function called 4076 at the beginning of every iteration of the nonlinear solve. Specifically 4077 it is called just before the Jacobian is "evaluated". 4078 4079 Logically Collective on SNES 4080 4081 Input Parameters: 4082 . snes - The nonlinear solver context 4083 . func - The function 4084 4085 Calling sequence of func: 4086 . func (SNES snes, PetscInt step); 4087 4088 . step - The current step of the iteration 4089 4090 Level: advanced 4091 4092 Note: This is NOT what one uses to update the ghost points before a function evaluation, that should be done at the beginning of your FormFunction() 4093 This is not used by most users. 4094 4095 .keywords: SNES, update 4096 4097 .seealso SNESSetJacobian(), SNESSolve() 4098 @*/ 4099 PetscErrorCode SNESSetUpdate(SNES snes, PetscErrorCode (*func)(SNES, PetscInt)) 4100 { 4101 PetscFunctionBegin; 4102 PetscValidHeaderSpecific(snes, SNES_CLASSID,1); 4103 snes->ops->update = func; 4104 PetscFunctionReturn(0); 4105 } 4106 4107 /* 4108 SNESScaleStep_Private - Scales a step so that its length is less than the 4109 positive parameter delta. 4110 4111 Input Parameters: 4112 + snes - the SNES context 4113 . y - approximate solution of linear system 4114 . fnorm - 2-norm of current function 4115 - delta - trust region size 4116 4117 Output Parameters: 4118 + gpnorm - predicted function norm at the new point, assuming local 4119 linearization. The value is zero if the step lies within the trust 4120 region, and exceeds zero otherwise. 4121 - ynorm - 2-norm of the step 4122 4123 Note: 4124 For non-trust region methods such as SNESNEWTONLS, the parameter delta 4125 is set to be the maximum allowable step size. 4126 4127 .keywords: SNES, nonlinear, scale, step 4128 */ 4129 PetscErrorCode SNESScaleStep_Private(SNES snes,Vec y,PetscReal *fnorm,PetscReal *delta,PetscReal *gpnorm,PetscReal *ynorm) 4130 { 4131 PetscReal nrm; 4132 PetscScalar cnorm; 4133 PetscErrorCode ierr; 4134 4135 PetscFunctionBegin; 4136 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4137 PetscValidHeaderSpecific(y,VEC_CLASSID,2); 4138 PetscCheckSameComm(snes,1,y,2); 4139 4140 ierr = VecNorm(y,NORM_2,&nrm);CHKERRQ(ierr); 4141 if (nrm > *delta) { 4142 nrm = *delta/nrm; 4143 *gpnorm = (1.0 - nrm)*(*fnorm); 4144 cnorm = nrm; 4145 ierr = VecScale(y,cnorm);CHKERRQ(ierr); 4146 *ynorm = *delta; 4147 } else { 4148 *gpnorm = 0.0; 4149 *ynorm = nrm; 4150 } 4151 PetscFunctionReturn(0); 4152 } 4153 4154 /*@ 4155 SNESReasonView - Displays the reason a SNES solve converged or diverged to a viewer 4156 4157 Collective on SNES 4158 4159 Parameter: 4160 + snes - iterative context obtained from SNESCreate() 4161 - viewer - the viewer to display the reason 4162 4163 4164 Options Database Keys: 4165 . -snes_converged_reason - print reason for converged or diverged, also prints number of iterations 4166 4167 Level: beginner 4168 4169 .keywords: SNES, solve, linear system 4170 4171 .seealso: SNESCreate(), SNESSetUp(), SNESDestroy(), SNESSetTolerances(), SNESConvergedDefault() 4172 4173 @*/ 4174 PetscErrorCode SNESReasonView(SNES snes,PetscViewer viewer) 4175 { 4176 PetscViewerFormat format; 4177 PetscBool isAscii; 4178 PetscErrorCode ierr; 4179 4180 PetscFunctionBegin; 4181 ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERASCII,&isAscii);CHKERRQ(ierr); 4182 if (isAscii) { 4183 ierr = PetscViewerGetFormat(viewer, &format);CHKERRQ(ierr); 4184 ierr = PetscViewerASCIIAddTab(viewer,((PetscObject)snes)->tablevel);CHKERRQ(ierr); 4185 if (format == PETSC_VIEWER_ASCII_INFO_DETAIL) { 4186 DM dm; 4187 Vec u; 4188 PetscDS prob; 4189 PetscInt Nf, f; 4190 PetscErrorCode (**exactFuncs)(PetscInt, PetscReal, const PetscReal[], PetscInt, PetscScalar[], void *); 4191 PetscReal error; 4192 4193 ierr = SNESGetDM(snes, &dm);CHKERRQ(ierr); 4194 ierr = SNESGetSolution(snes, &u);CHKERRQ(ierr); 4195 ierr = DMGetDS(dm, &prob);CHKERRQ(ierr); 4196 ierr = PetscDSGetNumFields(prob, &Nf);CHKERRQ(ierr); 4197 ierr = PetscMalloc1(Nf, &exactFuncs);CHKERRQ(ierr); 4198 for (f = 0; f < Nf; ++f) {ierr = PetscDSGetExactSolution(prob, f, &exactFuncs[f]);CHKERRQ(ierr);} 4199 ierr = DMComputeL2Diff(dm, 0.0, exactFuncs, NULL, u, &error);CHKERRQ(ierr); 4200 ierr = PetscFree(exactFuncs);CHKERRQ(ierr); 4201 if (error < 1.0e-11) {ierr = PetscViewerASCIIPrintf(viewer, "L_2 Error: < 1.0e-11\n");CHKERRQ(ierr);} 4202 else {ierr = PetscViewerASCIIPrintf(viewer, "L_2 Error: %g\n", error);CHKERRQ(ierr);} 4203 } 4204 if (snes->reason > 0) { 4205 if (((PetscObject) snes)->prefix) { 4206 ierr = PetscViewerASCIIPrintf(viewer,"Nonlinear %s solve converged due to %s iterations %D\n",((PetscObject) snes)->prefix,SNESConvergedReasons[snes->reason],snes->iter);CHKERRQ(ierr); 4207 } else { 4208 ierr = PetscViewerASCIIPrintf(viewer,"Nonlinear solve converged due to %s iterations %D\n",SNESConvergedReasons[snes->reason],snes->iter);CHKERRQ(ierr); 4209 } 4210 } else { 4211 if (((PetscObject) snes)->prefix) { 4212 ierr = PetscViewerASCIIPrintf(viewer,"Nonlinear %s solve did not converge due to %s iterations %D\n",((PetscObject) snes)->prefix,SNESConvergedReasons[snes->reason],snes->iter);CHKERRQ(ierr); 4213 } else { 4214 ierr = PetscViewerASCIIPrintf(viewer,"Nonlinear solve did not converge due to %s iterations %D\n",SNESConvergedReasons[snes->reason],snes->iter);CHKERRQ(ierr); 4215 } 4216 } 4217 ierr = PetscViewerASCIISubtractTab(viewer,((PetscObject)snes)->tablevel);CHKERRQ(ierr); 4218 } 4219 PetscFunctionReturn(0); 4220 } 4221 4222 /*@C 4223 SNESReasonViewFromOptions - Processes command line options to determine if/how a SNESReason is to be viewed. 4224 4225 Collective on SNES 4226 4227 Input Parameters: 4228 . snes - the SNES object 4229 4230 Level: intermediate 4231 4232 @*/ 4233 PetscErrorCode SNESReasonViewFromOptions(SNES snes) 4234 { 4235 PetscErrorCode ierr; 4236 PetscViewer viewer; 4237 PetscBool flg; 4238 static PetscBool incall = PETSC_FALSE; 4239 PetscViewerFormat format; 4240 4241 PetscFunctionBegin; 4242 if (incall) PetscFunctionReturn(0); 4243 incall = PETSC_TRUE; 4244 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_converged_reason",&viewer,&format,&flg);CHKERRQ(ierr); 4245 if (flg) { 4246 ierr = PetscViewerPushFormat(viewer,format);CHKERRQ(ierr); 4247 ierr = SNESReasonView(snes,viewer);CHKERRQ(ierr); 4248 ierr = PetscViewerPopFormat(viewer);CHKERRQ(ierr); 4249 ierr = PetscViewerDestroy(&viewer);CHKERRQ(ierr); 4250 } 4251 incall = PETSC_FALSE; 4252 PetscFunctionReturn(0); 4253 } 4254 4255 /*@ 4256 SNESSolve - Solves a nonlinear system F(x) = b. 4257 Call SNESSolve() after calling SNESCreate() and optional routines of the form SNESSetXXX(). 4258 4259 Collective on SNES 4260 4261 Input Parameters: 4262 + snes - the SNES context 4263 . b - the constant part of the equation F(x) = b, or NULL to use zero. 4264 - x - the solution vector. 4265 4266 Notes: 4267 The user should initialize the vector,x, with the initial guess 4268 for the nonlinear solve prior to calling SNESSolve. In particular, 4269 to employ an initial guess of zero, the user should explicitly set 4270 this vector to zero by calling VecSet(). 4271 4272 Level: beginner 4273 4274 .keywords: SNES, nonlinear, solve 4275 4276 .seealso: SNESCreate(), SNESDestroy(), SNESSetFunction(), SNESSetJacobian(), SNESSetGridSequence(), SNESGetSolution() 4277 @*/ 4278 PetscErrorCode SNESSolve(SNES snes,Vec b,Vec x) 4279 { 4280 PetscErrorCode ierr; 4281 PetscBool flg; 4282 PetscInt grid; 4283 Vec xcreated = NULL; 4284 DM dm; 4285 4286 PetscFunctionBegin; 4287 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4288 if (x) PetscValidHeaderSpecific(x,VEC_CLASSID,3); 4289 if (x) PetscCheckSameComm(snes,1,x,3); 4290 if (b) PetscValidHeaderSpecific(b,VEC_CLASSID,2); 4291 if (b) PetscCheckSameComm(snes,1,b,2); 4292 4293 /* High level operations using the nonlinear solver */ 4294 { 4295 PetscViewer viewer; 4296 PetscViewerFormat format; 4297 PetscInt num; 4298 PetscBool flg; 4299 static PetscBool incall = PETSC_FALSE; 4300 4301 if (!incall) { 4302 /* Estimate the convergence rate of the discretization */ 4303 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject) snes), ((PetscObject) snes)->prefix, "-snes_convergence_estimate", &viewer, &format, &flg);CHKERRQ(ierr); 4304 if (flg) { 4305 PetscConvEst conv; 4306 DM dm; 4307 PetscReal *alpha; /* Convergence rate of the solution error for each field in the L_2 norm */ 4308 PetscInt Nf; 4309 4310 incall = PETSC_TRUE; 4311 ierr = SNESGetDM(snes, &dm);CHKERRQ(ierr); 4312 ierr = DMGetNumFields(dm, &Nf);CHKERRQ(ierr); 4313 ierr = PetscMalloc1(Nf, &alpha);CHKERRQ(ierr); 4314 ierr = PetscConvEstCreate(PetscObjectComm((PetscObject) snes), &conv);CHKERRQ(ierr); 4315 ierr = PetscConvEstSetSolver(conv, snes);CHKERRQ(ierr); 4316 ierr = PetscConvEstSetFromOptions(conv);CHKERRQ(ierr); 4317 ierr = PetscConvEstSetUp(conv);CHKERRQ(ierr); 4318 ierr = PetscConvEstGetConvRate(conv, alpha);CHKERRQ(ierr); 4319 ierr = PetscViewerPushFormat(viewer, format);CHKERRQ(ierr); 4320 ierr = PetscConvEstRateView(conv, alpha, viewer);CHKERRQ(ierr); 4321 ierr = PetscViewerPopFormat(viewer);CHKERRQ(ierr); 4322 ierr = PetscViewerDestroy(&viewer);CHKERRQ(ierr); 4323 ierr = PetscConvEstDestroy(&conv);CHKERRQ(ierr); 4324 ierr = PetscFree(alpha);CHKERRQ(ierr); 4325 incall = PETSC_FALSE; 4326 } 4327 /* Adaptively refine the initial grid */ 4328 num = 1; 4329 ierr = PetscOptionsGetInt(NULL, ((PetscObject) snes)->prefix, "-snes_adapt_initial", &num, &flg);CHKERRQ(ierr); 4330 if (flg) { 4331 DMAdaptor adaptor; 4332 4333 incall = PETSC_TRUE; 4334 ierr = DMAdaptorCreate(PETSC_COMM_WORLD, &adaptor);CHKERRQ(ierr); 4335 ierr = DMAdaptorSetSolver(adaptor, snes);CHKERRQ(ierr); 4336 ierr = DMAdaptorSetSequenceLength(adaptor, num);CHKERRQ(ierr); 4337 ierr = DMAdaptorSetFromOptions(adaptor);CHKERRQ(ierr); 4338 ierr = DMAdaptorSetUp(adaptor);CHKERRQ(ierr); 4339 ierr = DMAdaptorAdapt(adaptor, x, DM_ADAPTATION_INITIAL, &dm, &x);CHKERRQ(ierr); 4340 ierr = DMAdaptorDestroy(&adaptor);CHKERRQ(ierr); 4341 incall = PETSC_FALSE; 4342 } 4343 /* Use grid sequencing to adapt */ 4344 num = 0; 4345 ierr = PetscOptionsGetInt(NULL, ((PetscObject) snes)->prefix, "-snes_adapt_sequence", &num, NULL);CHKERRQ(ierr); 4346 if (num) { 4347 DMAdaptor adaptor; 4348 4349 incall = PETSC_TRUE; 4350 ierr = DMAdaptorCreate(PETSC_COMM_WORLD, &adaptor);CHKERRQ(ierr); 4351 ierr = DMAdaptorSetSolver(adaptor, snes);CHKERRQ(ierr); 4352 ierr = DMAdaptorSetSequenceLength(adaptor, num);CHKERRQ(ierr); 4353 ierr = DMAdaptorSetFromOptions(adaptor);CHKERRQ(ierr); 4354 ierr = DMAdaptorSetUp(adaptor);CHKERRQ(ierr); 4355 ierr = DMAdaptorAdapt(adaptor, x, DM_ADAPTATION_SEQUENTIAL, &dm, &x);CHKERRQ(ierr); 4356 ierr = DMAdaptorDestroy(&adaptor);CHKERRQ(ierr); 4357 incall = PETSC_FALSE; 4358 } 4359 } 4360 } 4361 if (!x) { 4362 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 4363 ierr = DMCreateGlobalVector(dm,&xcreated);CHKERRQ(ierr); 4364 x = xcreated; 4365 } 4366 ierr = SNESViewFromOptions(snes,NULL,"-snes_view_pre");CHKERRQ(ierr); 4367 4368 for (grid=0; grid<snes->gridsequence; grid++) {ierr = PetscViewerASCIIPushTab(PETSC_VIEWER_STDOUT_(PetscObjectComm((PetscObject)snes)));CHKERRQ(ierr);} 4369 for (grid=0; grid<snes->gridsequence+1; grid++) { 4370 4371 /* set solution vector */ 4372 if (!grid) {ierr = PetscObjectReference((PetscObject)x);CHKERRQ(ierr);} 4373 ierr = VecDestroy(&snes->vec_sol);CHKERRQ(ierr); 4374 snes->vec_sol = x; 4375 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 4376 4377 /* set affine vector if provided */ 4378 if (b) { ierr = PetscObjectReference((PetscObject)b);CHKERRQ(ierr); } 4379 ierr = VecDestroy(&snes->vec_rhs);CHKERRQ(ierr); 4380 snes->vec_rhs = b; 4381 4382 if (snes->vec_func == snes->vec_sol) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_IDN,"Solution vector cannot be function vector"); 4383 if (snes->vec_rhs == snes->vec_sol) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_IDN,"Solution vector cannot be right hand side vector"); 4384 if (!snes->vec_sol_update /* && snes->vec_sol */) { 4385 ierr = VecDuplicate(snes->vec_sol,&snes->vec_sol_update);CHKERRQ(ierr); 4386 ierr = PetscLogObjectParent((PetscObject)snes,(PetscObject)snes->vec_sol_update);CHKERRQ(ierr); 4387 } 4388 ierr = DMShellSetGlobalVector(dm,snes->vec_sol);CHKERRQ(ierr); 4389 ierr = SNESSetUp(snes);CHKERRQ(ierr); 4390 4391 if (!grid) { 4392 if (snes->ops->computeinitialguess) { 4393 ierr = (*snes->ops->computeinitialguess)(snes,snes->vec_sol,snes->initialguessP);CHKERRQ(ierr); 4394 } 4395 } 4396 4397 if (snes->conv_hist_reset) snes->conv_hist_len = 0; 4398 if (snes->counters_reset) {snes->nfuncs = 0; snes->linear_its = 0; snes->numFailures = 0;} 4399 4400 ierr = PetscLogEventBegin(SNES_Solve,snes,0,0,0);CHKERRQ(ierr); 4401 ierr = (*snes->ops->solve)(snes);CHKERRQ(ierr); 4402 ierr = PetscLogEventEnd(SNES_Solve,snes,0,0,0);CHKERRQ(ierr); 4403 if (!snes->reason) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_PLIB,"Internal error, solver returned without setting converged reason"); 4404 snes->domainerror = PETSC_FALSE; /* clear the flag if it has been set */ 4405 4406 if (snes->lagjac_persist) snes->jac_iter += snes->iter; 4407 if (snes->lagpre_persist) snes->pre_iter += snes->iter; 4408 4409 ierr = PetscOptionsGetViewer(PetscObjectComm((PetscObject)snes),((PetscObject)snes)->prefix,"-snes_test_local_min",NULL,NULL,&flg);CHKERRQ(ierr); 4410 if (flg && !PetscPreLoadingOn) { ierr = SNESTestLocalMin(snes);CHKERRQ(ierr); } 4411 ierr = SNESReasonViewFromOptions(snes);CHKERRQ(ierr); 4412 4413 if (snes->errorifnotconverged && snes->reason < 0) SETERRQ(PetscObjectComm((PetscObject)snes),PETSC_ERR_NOT_CONVERGED,"SNESSolve has not converged"); 4414 if (snes->reason < 0) break; 4415 if (grid < snes->gridsequence) { 4416 DM fine; 4417 Vec xnew; 4418 Mat interp; 4419 4420 ierr = DMRefine(snes->dm,PetscObjectComm((PetscObject)snes),&fine);CHKERRQ(ierr); 4421 if (!fine) SETERRQ(PetscObjectComm((PetscObject)snes),PETSC_ERR_ARG_INCOMP,"DMRefine() did not perform any refinement, cannot continue grid sequencing"); 4422 ierr = DMCreateInterpolation(snes->dm,fine,&interp,NULL);CHKERRQ(ierr); 4423 ierr = DMCreateGlobalVector(fine,&xnew);CHKERRQ(ierr); 4424 ierr = MatInterpolate(interp,x,xnew);CHKERRQ(ierr); 4425 ierr = DMInterpolate(snes->dm,interp,fine);CHKERRQ(ierr); 4426 ierr = MatDestroy(&interp);CHKERRQ(ierr); 4427 x = xnew; 4428 4429 ierr = SNESReset(snes);CHKERRQ(ierr); 4430 ierr = SNESSetDM(snes,fine);CHKERRQ(ierr); 4431 ierr = SNESResetFromOptions(snes);CHKERRQ(ierr); 4432 ierr = DMDestroy(&fine);CHKERRQ(ierr); 4433 ierr = PetscViewerASCIIPopTab(PETSC_VIEWER_STDOUT_(PetscObjectComm((PetscObject)snes)));CHKERRQ(ierr); 4434 } 4435 } 4436 ierr = SNESViewFromOptions(snes,NULL,"-snes_view");CHKERRQ(ierr); 4437 ierr = VecViewFromOptions(snes->vec_sol,(PetscObject)snes,"-snes_view_solution");CHKERRQ(ierr); 4438 4439 ierr = VecDestroy(&xcreated);CHKERRQ(ierr); 4440 ierr = PetscObjectSAWsBlock((PetscObject)snes);CHKERRQ(ierr); 4441 PetscFunctionReturn(0); 4442 } 4443 4444 /* --------- Internal routines for SNES Package --------- */ 4445 4446 /*@C 4447 SNESSetType - Sets the method for the nonlinear solver. 4448 4449 Collective on SNES 4450 4451 Input Parameters: 4452 + snes - the SNES context 4453 - type - a known method 4454 4455 Options Database Key: 4456 . -snes_type <type> - Sets the method; use -help for a list 4457 of available methods (for instance, newtonls or newtontr) 4458 4459 Notes: 4460 See "petsc/include/petscsnes.h" for available methods (for instance) 4461 + SNESNEWTONLS - Newton's method with line search 4462 (systems of nonlinear equations) 4463 . SNESNEWTONTR - Newton's method with trust region 4464 (systems of nonlinear equations) 4465 4466 Normally, it is best to use the SNESSetFromOptions() command and then 4467 set the SNES solver type from the options database rather than by using 4468 this routine. Using the options database provides the user with 4469 maximum flexibility in evaluating the many nonlinear solvers. 4470 The SNESSetType() routine is provided for those situations where it 4471 is necessary to set the nonlinear solver independently of the command 4472 line or options database. This might be the case, for example, when 4473 the choice of solver changes during the execution of the program, 4474 and the user's application is taking responsibility for choosing the 4475 appropriate method. 4476 4477 Developer Notes: 4478 SNESRegister() adds a constructor for a new SNESType to SNESList, SNESSetType() locates 4479 the constructor in that list and calls it to create the spexific object. 4480 4481 Level: intermediate 4482 4483 .keywords: SNES, set, type 4484 4485 .seealso: SNESType, SNESCreate(), SNESDestroy(), SNESGetType(), SNESSetFromOptions() 4486 4487 @*/ 4488 PetscErrorCode SNESSetType(SNES snes,SNESType type) 4489 { 4490 PetscErrorCode ierr,(*r)(SNES); 4491 PetscBool match; 4492 4493 PetscFunctionBegin; 4494 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4495 PetscValidCharPointer(type,2); 4496 4497 ierr = PetscObjectTypeCompare((PetscObject)snes,type,&match);CHKERRQ(ierr); 4498 if (match) PetscFunctionReturn(0); 4499 4500 ierr = PetscFunctionListFind(SNESList,type,&r);CHKERRQ(ierr); 4501 if (!r) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_UNKNOWN_TYPE,"Unable to find requested SNES type %s",type); 4502 /* Destroy the previous private SNES context */ 4503 if (snes->ops->destroy) { 4504 ierr = (*(snes)->ops->destroy)(snes);CHKERRQ(ierr); 4505 snes->ops->destroy = NULL; 4506 } 4507 /* Reinitialize function pointers in SNESOps structure */ 4508 snes->ops->setup = 0; 4509 snes->ops->solve = 0; 4510 snes->ops->view = 0; 4511 snes->ops->setfromoptions = 0; 4512 snes->ops->destroy = 0; 4513 /* Call the SNESCreate_XXX routine for this particular Nonlinear solver */ 4514 snes->setupcalled = PETSC_FALSE; 4515 4516 ierr = PetscObjectChangeTypeName((PetscObject)snes,type);CHKERRQ(ierr); 4517 ierr = (*r)(snes);CHKERRQ(ierr); 4518 PetscFunctionReturn(0); 4519 } 4520 4521 /*@C 4522 SNESGetType - Gets the SNES method type and name (as a string). 4523 4524 Not Collective 4525 4526 Input Parameter: 4527 . snes - nonlinear solver context 4528 4529 Output Parameter: 4530 . type - SNES method (a character string) 4531 4532 Level: intermediate 4533 4534 .keywords: SNES, nonlinear, get, type, name 4535 @*/ 4536 PetscErrorCode SNESGetType(SNES snes,SNESType *type) 4537 { 4538 PetscFunctionBegin; 4539 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4540 PetscValidPointer(type,2); 4541 *type = ((PetscObject)snes)->type_name; 4542 PetscFunctionReturn(0); 4543 } 4544 4545 /*@ 4546 SNESSetSolution - Sets the solution vector for use by the SNES routines. 4547 4548 Logically Collective on SNES and Vec 4549 4550 Input Parameters: 4551 + snes - the SNES context obtained from SNESCreate() 4552 - u - the solution vector 4553 4554 Level: beginner 4555 4556 .keywords: SNES, set, solution 4557 @*/ 4558 PetscErrorCode SNESSetSolution(SNES snes, Vec u) 4559 { 4560 DM dm; 4561 PetscErrorCode ierr; 4562 4563 PetscFunctionBegin; 4564 PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 4565 PetscValidHeaderSpecific(u, VEC_CLASSID, 2); 4566 ierr = PetscObjectReference((PetscObject) u);CHKERRQ(ierr); 4567 ierr = VecDestroy(&snes->vec_sol);CHKERRQ(ierr); 4568 4569 snes->vec_sol = u; 4570 4571 ierr = SNESGetDM(snes, &dm);CHKERRQ(ierr); 4572 ierr = DMShellSetGlobalVector(dm, u);CHKERRQ(ierr); 4573 PetscFunctionReturn(0); 4574 } 4575 4576 /*@ 4577 SNESGetSolution - Returns the vector where the approximate solution is 4578 stored. This is the fine grid solution when using SNESSetGridSequence(). 4579 4580 Not Collective, but Vec is parallel if SNES is parallel 4581 4582 Input Parameter: 4583 . snes - the SNES context 4584 4585 Output Parameter: 4586 . x - the solution 4587 4588 Level: intermediate 4589 4590 .keywords: SNES, nonlinear, get, solution 4591 4592 .seealso: SNESGetSolutionUpdate(), SNESGetFunction() 4593 @*/ 4594 PetscErrorCode SNESGetSolution(SNES snes,Vec *x) 4595 { 4596 PetscFunctionBegin; 4597 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4598 PetscValidPointer(x,2); 4599 *x = snes->vec_sol; 4600 PetscFunctionReturn(0); 4601 } 4602 4603 /*@ 4604 SNESGetSolutionUpdate - Returns the vector where the solution update is 4605 stored. 4606 4607 Not Collective, but Vec is parallel if SNES is parallel 4608 4609 Input Parameter: 4610 . snes - the SNES context 4611 4612 Output Parameter: 4613 . x - the solution update 4614 4615 Level: advanced 4616 4617 .keywords: SNES, nonlinear, get, solution, update 4618 4619 .seealso: SNESGetSolution(), SNESGetFunction() 4620 @*/ 4621 PetscErrorCode SNESGetSolutionUpdate(SNES snes,Vec *x) 4622 { 4623 PetscFunctionBegin; 4624 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4625 PetscValidPointer(x,2); 4626 *x = snes->vec_sol_update; 4627 PetscFunctionReturn(0); 4628 } 4629 4630 /*@C 4631 SNESGetFunction - Returns the vector where the function is stored. 4632 4633 Not Collective, but Vec is parallel if SNES is parallel. Collective if Vec is requested, but has not been created yet. 4634 4635 Input Parameter: 4636 . snes - the SNES context 4637 4638 Output Parameter: 4639 + r - the vector that is used to store residuals (or NULL if you don't want it) 4640 . f - the function (or NULL if you don't want it); see SNESFunction for calling sequence details 4641 - ctx - the function context (or NULL if you don't want it) 4642 4643 Level: advanced 4644 4645 Notes: The vector r DOES NOT, in general contain the current value of the SNES nonlinear function 4646 4647 .keywords: SNES, nonlinear, get, function 4648 4649 .seealso: SNESSetFunction(), SNESGetSolution(), SNESFunction 4650 @*/ 4651 PetscErrorCode SNESGetFunction(SNES snes,Vec *r,PetscErrorCode (**f)(SNES,Vec,Vec,void*),void **ctx) 4652 { 4653 PetscErrorCode ierr; 4654 DM dm; 4655 4656 PetscFunctionBegin; 4657 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4658 if (r) { 4659 if (!snes->vec_func) { 4660 if (snes->vec_rhs) { 4661 ierr = VecDuplicate(snes->vec_rhs,&snes->vec_func);CHKERRQ(ierr); 4662 } else if (snes->vec_sol) { 4663 ierr = VecDuplicate(snes->vec_sol,&snes->vec_func);CHKERRQ(ierr); 4664 } else if (snes->dm) { 4665 ierr = DMCreateGlobalVector(snes->dm,&snes->vec_func);CHKERRQ(ierr); 4666 } 4667 } 4668 *r = snes->vec_func; 4669 } 4670 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 4671 ierr = DMSNESGetFunction(dm,f,ctx);CHKERRQ(ierr); 4672 PetscFunctionReturn(0); 4673 } 4674 4675 /*@C 4676 SNESGetNGS - Returns the NGS function and context. 4677 4678 Input Parameter: 4679 . snes - the SNES context 4680 4681 Output Parameter: 4682 + f - the function (or NULL) see SNESNGSFunction for details 4683 - ctx - the function context (or NULL) 4684 4685 Level: advanced 4686 4687 .keywords: SNES, nonlinear, get, function 4688 4689 .seealso: SNESSetNGS(), SNESGetFunction() 4690 @*/ 4691 4692 PetscErrorCode SNESGetNGS (SNES snes, PetscErrorCode (**f)(SNES, Vec, Vec, void*), void ** ctx) 4693 { 4694 PetscErrorCode ierr; 4695 DM dm; 4696 4697 PetscFunctionBegin; 4698 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4699 ierr = SNESGetDM(snes,&dm);CHKERRQ(ierr); 4700 ierr = DMSNESGetNGS(dm,f,ctx);CHKERRQ(ierr); 4701 PetscFunctionReturn(0); 4702 } 4703 4704 /*@C 4705 SNESSetOptionsPrefix - Sets the prefix used for searching for all 4706 SNES options in the database. 4707 4708 Logically Collective on SNES 4709 4710 Input Parameter: 4711 + snes - the SNES context 4712 - prefix - the prefix to prepend to all option names 4713 4714 Notes: 4715 A hyphen (-) must NOT be given at the beginning of the prefix name. 4716 The first character of all runtime options is AUTOMATICALLY the hyphen. 4717 4718 Level: advanced 4719 4720 .keywords: SNES, set, options, prefix, database 4721 4722 .seealso: SNESSetFromOptions() 4723 @*/ 4724 PetscErrorCode SNESSetOptionsPrefix(SNES snes,const char prefix[]) 4725 { 4726 PetscErrorCode ierr; 4727 4728 PetscFunctionBegin; 4729 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4730 ierr = PetscObjectSetOptionsPrefix((PetscObject)snes,prefix);CHKERRQ(ierr); 4731 if (!snes->ksp) {ierr = SNESGetKSP(snes,&snes->ksp);CHKERRQ(ierr);} 4732 if (snes->linesearch) { 4733 ierr = SNESGetLineSearch(snes,&snes->linesearch);CHKERRQ(ierr); 4734 ierr = PetscObjectSetOptionsPrefix((PetscObject)snes->linesearch,prefix);CHKERRQ(ierr); 4735 } 4736 ierr = KSPSetOptionsPrefix(snes->ksp,prefix);CHKERRQ(ierr); 4737 PetscFunctionReturn(0); 4738 } 4739 4740 /*@C 4741 SNESAppendOptionsPrefix - Appends to the prefix used for searching for all 4742 SNES options in the database. 4743 4744 Logically Collective on SNES 4745 4746 Input Parameters: 4747 + snes - the SNES context 4748 - prefix - the prefix to prepend to all option names 4749 4750 Notes: 4751 A hyphen (-) must NOT be given at the beginning of the prefix name. 4752 The first character of all runtime options is AUTOMATICALLY the hyphen. 4753 4754 Level: advanced 4755 4756 .keywords: SNES, append, options, prefix, database 4757 4758 .seealso: SNESGetOptionsPrefix() 4759 @*/ 4760 PetscErrorCode SNESAppendOptionsPrefix(SNES snes,const char prefix[]) 4761 { 4762 PetscErrorCode ierr; 4763 4764 PetscFunctionBegin; 4765 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4766 ierr = PetscObjectAppendOptionsPrefix((PetscObject)snes,prefix);CHKERRQ(ierr); 4767 if (!snes->ksp) {ierr = SNESGetKSP(snes,&snes->ksp);CHKERRQ(ierr);} 4768 if (snes->linesearch) { 4769 ierr = SNESGetLineSearch(snes,&snes->linesearch);CHKERRQ(ierr); 4770 ierr = PetscObjectAppendOptionsPrefix((PetscObject)snes->linesearch,prefix);CHKERRQ(ierr); 4771 } 4772 ierr = KSPAppendOptionsPrefix(snes->ksp,prefix);CHKERRQ(ierr); 4773 PetscFunctionReturn(0); 4774 } 4775 4776 /*@C 4777 SNESGetOptionsPrefix - Sets the prefix used for searching for all 4778 SNES options in the database. 4779 4780 Not Collective 4781 4782 Input Parameter: 4783 . snes - the SNES context 4784 4785 Output Parameter: 4786 . prefix - pointer to the prefix string used 4787 4788 Notes: 4789 On the fortran side, the user should pass in a string 'prefix' of 4790 sufficient length to hold the prefix. 4791 4792 Level: advanced 4793 4794 .keywords: SNES, get, options, prefix, database 4795 4796 .seealso: SNESAppendOptionsPrefix() 4797 @*/ 4798 PetscErrorCode SNESGetOptionsPrefix(SNES snes,const char *prefix[]) 4799 { 4800 PetscErrorCode ierr; 4801 4802 PetscFunctionBegin; 4803 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4804 ierr = PetscObjectGetOptionsPrefix((PetscObject)snes,prefix);CHKERRQ(ierr); 4805 PetscFunctionReturn(0); 4806 } 4807 4808 4809 /*@C 4810 SNESRegister - Adds a method to the nonlinear solver package. 4811 4812 Not collective 4813 4814 Input Parameters: 4815 + name_solver - name of a new user-defined solver 4816 - routine_create - routine to create method context 4817 4818 Notes: 4819 SNESRegister() may be called multiple times to add several user-defined solvers. 4820 4821 Sample usage: 4822 .vb 4823 SNESRegister("my_solver",MySolverCreate); 4824 .ve 4825 4826 Then, your solver can be chosen with the procedural interface via 4827 $ SNESSetType(snes,"my_solver") 4828 or at runtime via the option 4829 $ -snes_type my_solver 4830 4831 Level: advanced 4832 4833 Note: If your function is not being put into a shared library then use SNESRegister() instead 4834 4835 .keywords: SNES, nonlinear, register 4836 4837 .seealso: SNESRegisterAll(), SNESRegisterDestroy() 4838 4839 Level: advanced 4840 @*/ 4841 PetscErrorCode SNESRegister(const char sname[],PetscErrorCode (*function)(SNES)) 4842 { 4843 PetscErrorCode ierr; 4844 4845 PetscFunctionBegin; 4846 ierr = SNESInitializePackage();CHKERRQ(ierr); 4847 ierr = PetscFunctionListAdd(&SNESList,sname,function);CHKERRQ(ierr); 4848 PetscFunctionReturn(0); 4849 } 4850 4851 PetscErrorCode SNESTestLocalMin(SNES snes) 4852 { 4853 PetscErrorCode ierr; 4854 PetscInt N,i,j; 4855 Vec u,uh,fh; 4856 PetscScalar value; 4857 PetscReal norm; 4858 4859 PetscFunctionBegin; 4860 ierr = SNESGetSolution(snes,&u);CHKERRQ(ierr); 4861 ierr = VecDuplicate(u,&uh);CHKERRQ(ierr); 4862 ierr = VecDuplicate(u,&fh);CHKERRQ(ierr); 4863 4864 /* currently only works for sequential */ 4865 ierr = PetscPrintf(PETSC_COMM_WORLD,"Testing FormFunction() for local min\n");CHKERRQ(ierr); 4866 ierr = VecGetSize(u,&N);CHKERRQ(ierr); 4867 for (i=0; i<N; i++) { 4868 ierr = VecCopy(u,uh);CHKERRQ(ierr); 4869 ierr = PetscPrintf(PETSC_COMM_WORLD,"i = %D\n",i);CHKERRQ(ierr); 4870 for (j=-10; j<11; j++) { 4871 value = PetscSign(j)*PetscExpReal(PetscAbs(j)-10.0); 4872 ierr = VecSetValue(uh,i,value,ADD_VALUES);CHKERRQ(ierr); 4873 ierr = SNESComputeFunction(snes,uh,fh);CHKERRQ(ierr); 4874 ierr = VecNorm(fh,NORM_2,&norm);CHKERRQ(ierr); 4875 ierr = PetscPrintf(PETSC_COMM_WORLD," j norm %D %18.16e\n",j,norm);CHKERRQ(ierr); 4876 value = -value; 4877 ierr = VecSetValue(uh,i,value,ADD_VALUES);CHKERRQ(ierr); 4878 } 4879 } 4880 ierr = VecDestroy(&uh);CHKERRQ(ierr); 4881 ierr = VecDestroy(&fh);CHKERRQ(ierr); 4882 PetscFunctionReturn(0); 4883 } 4884 4885 /*@ 4886 SNESKSPSetUseEW - Sets SNES use Eisenstat-Walker method for 4887 computing relative tolerance for linear solvers within an inexact 4888 Newton method. 4889 4890 Logically Collective on SNES 4891 4892 Input Parameters: 4893 + snes - SNES context 4894 - flag - PETSC_TRUE or PETSC_FALSE 4895 4896 Options Database: 4897 + -snes_ksp_ew - use Eisenstat-Walker method for determining linear system convergence 4898 . -snes_ksp_ew_version ver - version of Eisenstat-Walker method 4899 . -snes_ksp_ew_rtol0 <rtol0> - Sets rtol0 4900 . -snes_ksp_ew_rtolmax <rtolmax> - Sets rtolmax 4901 . -snes_ksp_ew_gamma <gamma> - Sets gamma 4902 . -snes_ksp_ew_alpha <alpha> - Sets alpha 4903 . -snes_ksp_ew_alpha2 <alpha2> - Sets alpha2 4904 - -snes_ksp_ew_threshold <threshold> - Sets threshold 4905 4906 Notes: 4907 Currently, the default is to use a constant relative tolerance for 4908 the inner linear solvers. Alternatively, one can use the 4909 Eisenstat-Walker method, where the relative convergence tolerance 4910 is reset at each Newton iteration according progress of the nonlinear 4911 solver. 4912 4913 Level: advanced 4914 4915 Reference: 4916 S. C. Eisenstat and H. F. Walker, "Choosing the forcing terms in an 4917 inexact Newton method", SISC 17 (1), pp.16-32, 1996. 4918 4919 .keywords: SNES, KSP, Eisenstat, Walker, convergence, test, inexact, Newton 4920 4921 .seealso: SNESKSPGetUseEW(), SNESKSPGetParametersEW(), SNESKSPSetParametersEW() 4922 @*/ 4923 PetscErrorCode SNESKSPSetUseEW(SNES snes,PetscBool flag) 4924 { 4925 PetscFunctionBegin; 4926 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4927 PetscValidLogicalCollectiveBool(snes,flag,2); 4928 snes->ksp_ewconv = flag; 4929 PetscFunctionReturn(0); 4930 } 4931 4932 /*@ 4933 SNESKSPGetUseEW - Gets if SNES is using Eisenstat-Walker method 4934 for computing relative tolerance for linear solvers within an 4935 inexact Newton method. 4936 4937 Not Collective 4938 4939 Input Parameter: 4940 . snes - SNES context 4941 4942 Output Parameter: 4943 . flag - PETSC_TRUE or PETSC_FALSE 4944 4945 Notes: 4946 Currently, the default is to use a constant relative tolerance for 4947 the inner linear solvers. Alternatively, one can use the 4948 Eisenstat-Walker method, where the relative convergence tolerance 4949 is reset at each Newton iteration according progress of the nonlinear 4950 solver. 4951 4952 Level: advanced 4953 4954 Reference: 4955 S. C. Eisenstat and H. F. Walker, "Choosing the forcing terms in an 4956 inexact Newton method", SISC 17 (1), pp.16-32, 1996. 4957 4958 .keywords: SNES, KSP, Eisenstat, Walker, convergence, test, inexact, Newton 4959 4960 .seealso: SNESKSPSetUseEW(), SNESKSPGetParametersEW(), SNESKSPSetParametersEW() 4961 @*/ 4962 PetscErrorCode SNESKSPGetUseEW(SNES snes, PetscBool *flag) 4963 { 4964 PetscFunctionBegin; 4965 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 4966 PetscValidPointer(flag,2); 4967 *flag = snes->ksp_ewconv; 4968 PetscFunctionReturn(0); 4969 } 4970 4971 /*@ 4972 SNESKSPSetParametersEW - Sets parameters for Eisenstat-Walker 4973 convergence criteria for the linear solvers within an inexact 4974 Newton method. 4975 4976 Logically Collective on SNES 4977 4978 Input Parameters: 4979 + snes - SNES context 4980 . version - version 1, 2 (default is 2) or 3 4981 . rtol_0 - initial relative tolerance (0 <= rtol_0 < 1) 4982 . rtol_max - maximum relative tolerance (0 <= rtol_max < 1) 4983 . gamma - multiplicative factor for version 2 rtol computation 4984 (0 <= gamma2 <= 1) 4985 . alpha - power for version 2 rtol computation (1 < alpha <= 2) 4986 . alpha2 - power for safeguard 4987 - threshold - threshold for imposing safeguard (0 < threshold < 1) 4988 4989 Note: 4990 Version 3 was contributed by Luis Chacon, June 2006. 4991 4992 Use PETSC_DEFAULT to retain the default for any of the parameters. 4993 4994 Level: advanced 4995 4996 Reference: 4997 S. C. Eisenstat and H. F. Walker, "Choosing the forcing terms in an 4998 inexact Newton method", Utah State University Math. Stat. Dept. Res. 4999 Report 6/94/75, June, 1994, to appear in SIAM J. Sci. Comput. 5000 5001 .keywords: SNES, KSP, Eisenstat, Walker, set, parameters 5002 5003 .seealso: SNESKSPSetUseEW(), SNESKSPGetUseEW(), SNESKSPGetParametersEW() 5004 @*/ 5005 PetscErrorCode SNESKSPSetParametersEW(SNES snes,PetscInt version,PetscReal rtol_0,PetscReal rtol_max,PetscReal gamma,PetscReal alpha,PetscReal alpha2,PetscReal threshold) 5006 { 5007 SNESKSPEW *kctx; 5008 5009 PetscFunctionBegin; 5010 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5011 kctx = (SNESKSPEW*)snes->kspconvctx; 5012 if (!kctx) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE,"No Eisenstat-Walker context existing"); 5013 PetscValidLogicalCollectiveInt(snes,version,2); 5014 PetscValidLogicalCollectiveReal(snes,rtol_0,3); 5015 PetscValidLogicalCollectiveReal(snes,rtol_max,4); 5016 PetscValidLogicalCollectiveReal(snes,gamma,5); 5017 PetscValidLogicalCollectiveReal(snes,alpha,6); 5018 PetscValidLogicalCollectiveReal(snes,alpha2,7); 5019 PetscValidLogicalCollectiveReal(snes,threshold,8); 5020 5021 if (version != PETSC_DEFAULT) kctx->version = version; 5022 if (rtol_0 != PETSC_DEFAULT) kctx->rtol_0 = rtol_0; 5023 if (rtol_max != PETSC_DEFAULT) kctx->rtol_max = rtol_max; 5024 if (gamma != PETSC_DEFAULT) kctx->gamma = gamma; 5025 if (alpha != PETSC_DEFAULT) kctx->alpha = alpha; 5026 if (alpha2 != PETSC_DEFAULT) kctx->alpha2 = alpha2; 5027 if (threshold != PETSC_DEFAULT) kctx->threshold = threshold; 5028 5029 if (kctx->version < 1 || kctx->version > 3) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Only versions 1, 2 and 3 are supported: %D",kctx->version); 5030 if (kctx->rtol_0 < 0.0 || kctx->rtol_0 >= 1.0) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"0.0 <= rtol_0 < 1.0: %g",(double)kctx->rtol_0); 5031 if (kctx->rtol_max < 0.0 || kctx->rtol_max >= 1.0) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"0.0 <= rtol_max (%g) < 1.0\n",(double)kctx->rtol_max); 5032 if (kctx->gamma < 0.0 || kctx->gamma > 1.0) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"0.0 <= gamma (%g) <= 1.0\n",(double)kctx->gamma); 5033 if (kctx->alpha <= 1.0 || kctx->alpha > 2.0) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"1.0 < alpha (%g) <= 2.0\n",(double)kctx->alpha); 5034 if (kctx->threshold <= 0.0 || kctx->threshold >= 1.0) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"0.0 < threshold (%g) < 1.0\n",(double)kctx->threshold); 5035 PetscFunctionReturn(0); 5036 } 5037 5038 /*@ 5039 SNESKSPGetParametersEW - Gets parameters for Eisenstat-Walker 5040 convergence criteria for the linear solvers within an inexact 5041 Newton method. 5042 5043 Not Collective 5044 5045 Input Parameters: 5046 snes - SNES context 5047 5048 Output Parameters: 5049 + version - version 1, 2 (default is 2) or 3 5050 . rtol_0 - initial relative tolerance (0 <= rtol_0 < 1) 5051 . rtol_max - maximum relative tolerance (0 <= rtol_max < 1) 5052 . gamma - multiplicative factor for version 2 rtol computation (0 <= gamma2 <= 1) 5053 . alpha - power for version 2 rtol computation (1 < alpha <= 2) 5054 . alpha2 - power for safeguard 5055 - threshold - threshold for imposing safeguard (0 < threshold < 1) 5056 5057 Level: advanced 5058 5059 .keywords: SNES, KSP, Eisenstat, Walker, get, parameters 5060 5061 .seealso: SNESKSPSetUseEW(), SNESKSPGetUseEW(), SNESKSPSetParametersEW() 5062 @*/ 5063 PetscErrorCode SNESKSPGetParametersEW(SNES snes,PetscInt *version,PetscReal *rtol_0,PetscReal *rtol_max,PetscReal *gamma,PetscReal *alpha,PetscReal *alpha2,PetscReal *threshold) 5064 { 5065 SNESKSPEW *kctx; 5066 5067 PetscFunctionBegin; 5068 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5069 kctx = (SNESKSPEW*)snes->kspconvctx; 5070 if (!kctx) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ARG_WRONGSTATE,"No Eisenstat-Walker context existing"); 5071 if (version) *version = kctx->version; 5072 if (rtol_0) *rtol_0 = kctx->rtol_0; 5073 if (rtol_max) *rtol_max = kctx->rtol_max; 5074 if (gamma) *gamma = kctx->gamma; 5075 if (alpha) *alpha = kctx->alpha; 5076 if (alpha2) *alpha2 = kctx->alpha2; 5077 if (threshold) *threshold = kctx->threshold; 5078 PetscFunctionReturn(0); 5079 } 5080 5081 PetscErrorCode KSPPreSolve_SNESEW(KSP ksp, Vec b, Vec x, SNES snes) 5082 { 5083 PetscErrorCode ierr; 5084 SNESKSPEW *kctx = (SNESKSPEW*)snes->kspconvctx; 5085 PetscReal rtol = PETSC_DEFAULT,stol; 5086 5087 PetscFunctionBegin; 5088 if (!snes->ksp_ewconv) PetscFunctionReturn(0); 5089 if (!snes->iter) { 5090 rtol = kctx->rtol_0; /* first time in, so use the original user rtol */ 5091 ierr = VecNorm(snes->vec_func,NORM_2,&kctx->norm_first);CHKERRQ(ierr); 5092 } 5093 else { 5094 if (kctx->version == 1) { 5095 rtol = (snes->norm - kctx->lresid_last)/kctx->norm_last; 5096 if (rtol < 0.0) rtol = -rtol; 5097 stol = PetscPowReal(kctx->rtol_last,kctx->alpha2); 5098 if (stol > kctx->threshold) rtol = PetscMax(rtol,stol); 5099 } else if (kctx->version == 2) { 5100 rtol = kctx->gamma * PetscPowReal(snes->norm/kctx->norm_last,kctx->alpha); 5101 stol = kctx->gamma * PetscPowReal(kctx->rtol_last,kctx->alpha); 5102 if (stol > kctx->threshold) rtol = PetscMax(rtol,stol); 5103 } else if (kctx->version == 3) { /* contributed by Luis Chacon, June 2006. */ 5104 rtol = kctx->gamma * PetscPowReal(snes->norm/kctx->norm_last,kctx->alpha); 5105 /* safeguard: avoid sharp decrease of rtol */ 5106 stol = kctx->gamma*PetscPowReal(kctx->rtol_last,kctx->alpha); 5107 stol = PetscMax(rtol,stol); 5108 rtol = PetscMin(kctx->rtol_0,stol); 5109 /* safeguard: avoid oversolving */ 5110 stol = kctx->gamma*(kctx->norm_first*snes->rtol)/snes->norm; 5111 stol = PetscMax(rtol,stol); 5112 rtol = PetscMin(kctx->rtol_0,stol); 5113 } else SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_OUTOFRANGE,"Only versions 1, 2 or 3 are supported: %D",kctx->version); 5114 } 5115 /* safeguard: avoid rtol greater than one */ 5116 rtol = PetscMin(rtol,kctx->rtol_max); 5117 ierr = KSPSetTolerances(ksp,rtol,PETSC_DEFAULT,PETSC_DEFAULT,PETSC_DEFAULT);CHKERRQ(ierr); 5118 ierr = PetscInfo3(snes,"iter %D, Eisenstat-Walker (version %D) KSP rtol=%g\n",snes->iter,kctx->version,(double)rtol);CHKERRQ(ierr); 5119 PetscFunctionReturn(0); 5120 } 5121 5122 PetscErrorCode KSPPostSolve_SNESEW(KSP ksp, Vec b, Vec x, SNES snes) 5123 { 5124 PetscErrorCode ierr; 5125 SNESKSPEW *kctx = (SNESKSPEW*)snes->kspconvctx; 5126 PCSide pcside; 5127 Vec lres; 5128 5129 PetscFunctionBegin; 5130 if (!snes->ksp_ewconv) PetscFunctionReturn(0); 5131 ierr = KSPGetTolerances(ksp,&kctx->rtol_last,0,0,0);CHKERRQ(ierr); 5132 kctx->norm_last = snes->norm; 5133 if (kctx->version == 1) { 5134 PC pc; 5135 PetscBool isNone; 5136 5137 ierr = KSPGetPC(ksp, &pc);CHKERRQ(ierr); 5138 ierr = PetscObjectTypeCompare((PetscObject) pc, PCNONE, &isNone);CHKERRQ(ierr); 5139 ierr = KSPGetPCSide(ksp,&pcside);CHKERRQ(ierr); 5140 if (pcside == PC_RIGHT || isNone) { /* XXX Should we also test KSP_UNPRECONDITIONED_NORM ? */ 5141 /* KSP residual is true linear residual */ 5142 ierr = KSPGetResidualNorm(ksp,&kctx->lresid_last);CHKERRQ(ierr); 5143 } else { 5144 /* KSP residual is preconditioned residual */ 5145 /* compute true linear residual norm */ 5146 ierr = VecDuplicate(b,&lres);CHKERRQ(ierr); 5147 ierr = MatMult(snes->jacobian,x,lres);CHKERRQ(ierr); 5148 ierr = VecAYPX(lres,-1.0,b);CHKERRQ(ierr); 5149 ierr = VecNorm(lres,NORM_2,&kctx->lresid_last);CHKERRQ(ierr); 5150 ierr = VecDestroy(&lres);CHKERRQ(ierr); 5151 } 5152 } 5153 PetscFunctionReturn(0); 5154 } 5155 5156 /*@ 5157 SNESGetKSP - Returns the KSP context for a SNES solver. 5158 5159 Not Collective, but if SNES object is parallel, then KSP object is parallel 5160 5161 Input Parameter: 5162 . snes - the SNES context 5163 5164 Output Parameter: 5165 . ksp - the KSP context 5166 5167 Notes: 5168 The user can then directly manipulate the KSP context to set various 5169 options, etc. Likewise, the user can then extract and manipulate the 5170 PC contexts as well. 5171 5172 Level: beginner 5173 5174 .keywords: SNES, nonlinear, get, KSP, context 5175 5176 .seealso: KSPGetPC(), SNESCreate(), KSPCreate(), SNESSetKSP() 5177 @*/ 5178 PetscErrorCode SNESGetKSP(SNES snes,KSP *ksp) 5179 { 5180 PetscErrorCode ierr; 5181 5182 PetscFunctionBegin; 5183 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5184 PetscValidPointer(ksp,2); 5185 5186 if (!snes->ksp) { 5187 PetscBool monitor = PETSC_FALSE; 5188 5189 ierr = KSPCreate(PetscObjectComm((PetscObject)snes),&snes->ksp);CHKERRQ(ierr); 5190 ierr = PetscObjectIncrementTabLevel((PetscObject)snes->ksp,(PetscObject)snes,1);CHKERRQ(ierr); 5191 ierr = PetscLogObjectParent((PetscObject)snes,(PetscObject)snes->ksp);CHKERRQ(ierr); 5192 5193 ierr = KSPSetPreSolve(snes->ksp,(PetscErrorCode (*)(KSP,Vec,Vec,void*))KSPPreSolve_SNESEW,snes);CHKERRQ(ierr); 5194 ierr = KSPSetPostSolve(snes->ksp,(PetscErrorCode (*)(KSP,Vec,Vec,void*))KSPPostSolve_SNESEW,snes);CHKERRQ(ierr); 5195 5196 ierr = PetscOptionsGetBool(((PetscObject)snes)->options,((PetscObject)snes)->prefix,"-ksp_monitor_snes",&monitor,NULL);CHKERRQ(ierr); 5197 if (monitor) { 5198 ierr = KSPMonitorSet(snes->ksp,KSPMonitorSNES,snes,NULL);CHKERRQ(ierr); 5199 } 5200 monitor = PETSC_FALSE; 5201 ierr = PetscOptionsGetBool(((PetscObject)snes)->options,((PetscObject)snes)->prefix,"-ksp_monitor_snes_lg",&monitor,NULL);CHKERRQ(ierr); 5202 if (monitor) { 5203 PetscObject *objs; 5204 ierr = KSPMonitorSNESLGResidualNormCreate(PetscObjectComm((PetscObject)snes),NULL,NULL,PETSC_DECIDE,PETSC_DECIDE,600,600,&objs);CHKERRQ(ierr); 5205 objs[0] = (PetscObject) snes; 5206 ierr = KSPMonitorSet(snes->ksp,(PetscErrorCode (*)(KSP,PetscInt,PetscReal,void*))KSPMonitorSNESLGResidualNorm,objs,(PetscErrorCode (*)(void**))KSPMonitorSNESLGResidualNormDestroy);CHKERRQ(ierr); 5207 } 5208 } 5209 *ksp = snes->ksp; 5210 PetscFunctionReturn(0); 5211 } 5212 5213 5214 #include <petsc/private/dmimpl.h> 5215 /*@ 5216 SNESSetDM - Sets the DM that may be used by some nonlinear solvers or their underlying preconditioners 5217 5218 Logically Collective on SNES 5219 5220 Input Parameters: 5221 + snes - the nonlinear solver context 5222 - dm - the dm, cannot be NULL 5223 5224 Notes: 5225 A DM can only be used for solving one problem at a time because information about the problem is stored on the DM, 5226 even when not using interfaces like DMSNESSetFunction(). Use DMClone() to get a distinct DM when solving different 5227 problems using the same function space. 5228 5229 Level: intermediate 5230 5231 .seealso: SNESGetDM(), KSPSetDM(), KSPGetDM() 5232 @*/ 5233 PetscErrorCode SNESSetDM(SNES snes,DM dm) 5234 { 5235 PetscErrorCode ierr; 5236 KSP ksp; 5237 DMSNES sdm; 5238 5239 PetscFunctionBegin; 5240 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5241 PetscValidHeaderSpecific(dm,DM_CLASSID,2); 5242 ierr = PetscObjectReference((PetscObject)dm);CHKERRQ(ierr); 5243 if (snes->dm) { /* Move the DMSNES context over to the new DM unless the new DM already has one */ 5244 if (snes->dm->dmsnes && !dm->dmsnes) { 5245 ierr = DMCopyDMSNES(snes->dm,dm);CHKERRQ(ierr); 5246 ierr = DMGetDMSNES(snes->dm,&sdm);CHKERRQ(ierr); 5247 if (sdm->originaldm == snes->dm) sdm->originaldm = dm; /* Grant write privileges to the replacement DM */ 5248 } 5249 ierr = DMCoarsenHookRemove(snes->dm,DMCoarsenHook_SNESVecSol,DMRestrictHook_SNESVecSol,snes);CHKERRQ(ierr); 5250 ierr = DMDestroy(&snes->dm);CHKERRQ(ierr); 5251 } 5252 snes->dm = dm; 5253 snes->dmAuto = PETSC_FALSE; 5254 5255 ierr = SNESGetKSP(snes,&ksp);CHKERRQ(ierr); 5256 ierr = KSPSetDM(ksp,dm);CHKERRQ(ierr); 5257 ierr = KSPSetDMActive(ksp,PETSC_FALSE);CHKERRQ(ierr); 5258 if (snes->npc) { 5259 ierr = SNESSetDM(snes->npc, snes->dm);CHKERRQ(ierr); 5260 ierr = SNESSetNPCSide(snes,snes->npcside);CHKERRQ(ierr); 5261 } 5262 PetscFunctionReturn(0); 5263 } 5264 5265 /*@ 5266 SNESGetDM - Gets the DM that may be used by some preconditioners 5267 5268 Not Collective but DM obtained is parallel on SNES 5269 5270 Input Parameter: 5271 . snes - the preconditioner context 5272 5273 Output Parameter: 5274 . dm - the dm 5275 5276 Level: intermediate 5277 5278 .seealso: SNESSetDM(), KSPSetDM(), KSPGetDM() 5279 @*/ 5280 PetscErrorCode SNESGetDM(SNES snes,DM *dm) 5281 { 5282 PetscErrorCode ierr; 5283 5284 PetscFunctionBegin; 5285 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5286 if (!snes->dm) { 5287 ierr = DMShellCreate(PetscObjectComm((PetscObject)snes),&snes->dm);CHKERRQ(ierr); 5288 snes->dmAuto = PETSC_TRUE; 5289 } 5290 *dm = snes->dm; 5291 PetscFunctionReturn(0); 5292 } 5293 5294 /*@ 5295 SNESSetNPC - Sets the nonlinear preconditioner to be used. 5296 5297 Collective on SNES 5298 5299 Input Parameters: 5300 + snes - iterative context obtained from SNESCreate() 5301 - pc - the preconditioner object 5302 5303 Notes: 5304 Use SNESGetNPC() to retrieve the preconditioner context (for example, 5305 to configure it using the API). 5306 5307 Level: developer 5308 5309 .keywords: SNES, set, precondition 5310 .seealso: SNESGetNPC(), SNESHasNPC() 5311 @*/ 5312 PetscErrorCode SNESSetNPC(SNES snes, SNES pc) 5313 { 5314 PetscErrorCode ierr; 5315 5316 PetscFunctionBegin; 5317 PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 5318 PetscValidHeaderSpecific(pc, SNES_CLASSID, 2); 5319 PetscCheckSameComm(snes, 1, pc, 2); 5320 ierr = PetscObjectReference((PetscObject) pc);CHKERRQ(ierr); 5321 ierr = SNESDestroy(&snes->npc);CHKERRQ(ierr); 5322 snes->npc = pc; 5323 ierr = PetscLogObjectParent((PetscObject)snes, (PetscObject)snes->npc);CHKERRQ(ierr); 5324 PetscFunctionReturn(0); 5325 } 5326 5327 /*@ 5328 SNESGetNPC - Creates a nonlinear preconditioning solver (SNES) to be used to precondition the nonlinear solver. 5329 5330 Not Collective 5331 5332 Input Parameter: 5333 . snes - iterative context obtained from SNESCreate() 5334 5335 Output Parameter: 5336 . pc - preconditioner context 5337 5338 Notes: 5339 If a SNES was previously set with SNESSetNPC() then that SNES is returned. 5340 5341 Level: developer 5342 5343 .keywords: SNES, get, preconditioner 5344 .seealso: SNESSetNPC(), SNESHasNPC() 5345 @*/ 5346 PetscErrorCode SNESGetNPC(SNES snes, SNES *pc) 5347 { 5348 PetscErrorCode ierr; 5349 const char *optionsprefix; 5350 5351 PetscFunctionBegin; 5352 PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 5353 PetscValidPointer(pc, 2); 5354 if (!snes->npc) { 5355 ierr = SNESCreate(PetscObjectComm((PetscObject)snes),&snes->npc);CHKERRQ(ierr); 5356 ierr = PetscObjectIncrementTabLevel((PetscObject)snes->npc,(PetscObject)snes,1);CHKERRQ(ierr); 5357 ierr = PetscLogObjectParent((PetscObject)snes,(PetscObject)snes->npc);CHKERRQ(ierr); 5358 ierr = SNESGetOptionsPrefix(snes,&optionsprefix);CHKERRQ(ierr); 5359 ierr = SNESSetOptionsPrefix(snes->npc,optionsprefix);CHKERRQ(ierr); 5360 ierr = SNESAppendOptionsPrefix(snes->npc,"npc_");CHKERRQ(ierr); 5361 ierr = SNESSetCountersReset(snes->npc,PETSC_FALSE);CHKERRQ(ierr); 5362 } 5363 *pc = snes->npc; 5364 PetscFunctionReturn(0); 5365 } 5366 5367 /*@ 5368 SNESHasNPC - Returns whether a nonlinear preconditioner exists 5369 5370 Not Collective 5371 5372 Input Parameter: 5373 . snes - iterative context obtained from SNESCreate() 5374 5375 Output Parameter: 5376 . has_npc - whether the SNES has an NPC or not 5377 5378 Level: developer 5379 5380 .keywords: SNES, has, preconditioner 5381 .seealso: SNESSetNPC(), SNESGetNPC() 5382 @*/ 5383 PetscErrorCode SNESHasNPC(SNES snes, PetscBool *has_npc) 5384 { 5385 PetscFunctionBegin; 5386 PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 5387 *has_npc = (PetscBool) (snes->npc ? PETSC_TRUE : PETSC_FALSE); 5388 PetscFunctionReturn(0); 5389 } 5390 5391 /*@ 5392 SNESSetNPCSide - Sets the preconditioning side. 5393 5394 Logically Collective on SNES 5395 5396 Input Parameter: 5397 . snes - iterative context obtained from SNESCreate() 5398 5399 Output Parameter: 5400 . side - the preconditioning side, where side is one of 5401 .vb 5402 PC_LEFT - left preconditioning 5403 PC_RIGHT - right preconditioning (default for most nonlinear solvers) 5404 .ve 5405 5406 Options Database Keys: 5407 . -snes_pc_side <right,left> 5408 5409 Notes: 5410 SNESNRICHARDSON and SNESNCG only support left preconditioning. 5411 5412 Level: intermediate 5413 5414 .keywords: SNES, set, right, left, side, preconditioner, flag 5415 5416 .seealso: SNESGetNPCSide(), KSPSetPCSide() 5417 @*/ 5418 PetscErrorCode SNESSetNPCSide(SNES snes,PCSide side) 5419 { 5420 PetscFunctionBegin; 5421 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5422 PetscValidLogicalCollectiveEnum(snes,side,2); 5423 snes->npcside= side; 5424 PetscFunctionReturn(0); 5425 } 5426 5427 /*@ 5428 SNESGetNPCSide - Gets the preconditioning side. 5429 5430 Not Collective 5431 5432 Input Parameter: 5433 . snes - iterative context obtained from SNESCreate() 5434 5435 Output Parameter: 5436 . side - the preconditioning side, where side is one of 5437 .vb 5438 PC_LEFT - left preconditioning 5439 PC_RIGHT - right preconditioning (default for most nonlinear solvers) 5440 .ve 5441 5442 Level: intermediate 5443 5444 .keywords: SNES, get, right, left, side, preconditioner, flag 5445 5446 .seealso: SNESSetNPCSide(), KSPGetPCSide() 5447 @*/ 5448 PetscErrorCode SNESGetNPCSide(SNES snes,PCSide *side) 5449 { 5450 PetscFunctionBegin; 5451 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5452 PetscValidPointer(side,2); 5453 *side = snes->npcside; 5454 PetscFunctionReturn(0); 5455 } 5456 5457 /*@ 5458 SNESSetLineSearch - Sets the linesearch on the SNES instance. 5459 5460 Collective on SNES 5461 5462 Input Parameters: 5463 + snes - iterative context obtained from SNESCreate() 5464 - linesearch - the linesearch object 5465 5466 Notes: 5467 Use SNESGetLineSearch() to retrieve the preconditioner context (for example, 5468 to configure it using the API). 5469 5470 Level: developer 5471 5472 .keywords: SNES, set, linesearch 5473 .seealso: SNESGetLineSearch() 5474 @*/ 5475 PetscErrorCode SNESSetLineSearch(SNES snes, SNESLineSearch linesearch) 5476 { 5477 PetscErrorCode ierr; 5478 5479 PetscFunctionBegin; 5480 PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 5481 PetscValidHeaderSpecific(linesearch, SNESLINESEARCH_CLASSID, 2); 5482 PetscCheckSameComm(snes, 1, linesearch, 2); 5483 ierr = PetscObjectReference((PetscObject) linesearch);CHKERRQ(ierr); 5484 ierr = SNESLineSearchDestroy(&snes->linesearch);CHKERRQ(ierr); 5485 5486 snes->linesearch = linesearch; 5487 5488 ierr = PetscLogObjectParent((PetscObject)snes, (PetscObject)snes->linesearch);CHKERRQ(ierr); 5489 PetscFunctionReturn(0); 5490 } 5491 5492 /*@ 5493 SNESGetLineSearch - Returns a pointer to the line search context set with SNESSetLineSearch() 5494 or creates a default line search instance associated with the SNES and returns it. 5495 5496 Not Collective 5497 5498 Input Parameter: 5499 . snes - iterative context obtained from SNESCreate() 5500 5501 Output Parameter: 5502 . linesearch - linesearch context 5503 5504 Level: beginner 5505 5506 .keywords: SNES, get, linesearch 5507 .seealso: SNESSetLineSearch(), SNESLineSearchCreate() 5508 @*/ 5509 PetscErrorCode SNESGetLineSearch(SNES snes, SNESLineSearch *linesearch) 5510 { 5511 PetscErrorCode ierr; 5512 const char *optionsprefix; 5513 5514 PetscFunctionBegin; 5515 PetscValidHeaderSpecific(snes, SNES_CLASSID, 1); 5516 PetscValidPointer(linesearch, 2); 5517 if (!snes->linesearch) { 5518 ierr = SNESGetOptionsPrefix(snes, &optionsprefix);CHKERRQ(ierr); 5519 ierr = SNESLineSearchCreate(PetscObjectComm((PetscObject)snes), &snes->linesearch);CHKERRQ(ierr); 5520 ierr = SNESLineSearchSetSNES(snes->linesearch, snes);CHKERRQ(ierr); 5521 ierr = SNESLineSearchAppendOptionsPrefix(snes->linesearch, optionsprefix);CHKERRQ(ierr); 5522 ierr = PetscObjectIncrementTabLevel((PetscObject) snes->linesearch, (PetscObject) snes, 1);CHKERRQ(ierr); 5523 ierr = PetscLogObjectParent((PetscObject)snes, (PetscObject)snes->linesearch);CHKERRQ(ierr); 5524 } 5525 *linesearch = snes->linesearch; 5526 PetscFunctionReturn(0); 5527 } 5528 5529 #if defined(PETSC_HAVE_MATLAB_ENGINE) 5530 #include <mex.h> 5531 5532 typedef struct {char *funcname; mxArray *ctx;} SNESMatlabContext; 5533 5534 /* 5535 SNESComputeFunction_Matlab - Calls the function that has been set with SNESSetFunctionMatlab(). 5536 5537 Collective on SNES 5538 5539 Input Parameters: 5540 + snes - the SNES context 5541 - x - input vector 5542 5543 Output Parameter: 5544 . y - function vector, as set by SNESSetFunction() 5545 5546 Notes: 5547 SNESComputeFunction() is typically used within nonlinear solvers 5548 implementations, so most users would not generally call this routine 5549 themselves. 5550 5551 Level: developer 5552 5553 .keywords: SNES, nonlinear, compute, function 5554 5555 .seealso: SNESSetFunction(), SNESGetFunction() 5556 */ 5557 PetscErrorCode SNESComputeFunction_Matlab(SNES snes,Vec x,Vec y, void *ctx) 5558 { 5559 PetscErrorCode ierr; 5560 SNESMatlabContext *sctx = (SNESMatlabContext*)ctx; 5561 int nlhs = 1,nrhs = 5; 5562 mxArray *plhs[1],*prhs[5]; 5563 long long int lx = 0,ly = 0,ls = 0; 5564 5565 PetscFunctionBegin; 5566 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5567 PetscValidHeaderSpecific(x,VEC_CLASSID,2); 5568 PetscValidHeaderSpecific(y,VEC_CLASSID,3); 5569 PetscCheckSameComm(snes,1,x,2); 5570 PetscCheckSameComm(snes,1,y,3); 5571 5572 /* call Matlab function in ctx with arguments x and y */ 5573 5574 ierr = PetscMemcpy(&ls,&snes,sizeof(snes));CHKERRQ(ierr); 5575 ierr = PetscMemcpy(&lx,&x,sizeof(x));CHKERRQ(ierr); 5576 ierr = PetscMemcpy(&ly,&y,sizeof(x));CHKERRQ(ierr); 5577 prhs[0] = mxCreateDoubleScalar((double)ls); 5578 prhs[1] = mxCreateDoubleScalar((double)lx); 5579 prhs[2] = mxCreateDoubleScalar((double)ly); 5580 prhs[3] = mxCreateString(sctx->funcname); 5581 prhs[4] = sctx->ctx; 5582 ierr = mexCallMATLAB(nlhs,plhs,nrhs,prhs,"PetscSNESComputeFunctionInternal");CHKERRQ(ierr); 5583 ierr = mxGetScalar(plhs[0]);CHKERRQ(ierr); 5584 mxDestroyArray(prhs[0]); 5585 mxDestroyArray(prhs[1]); 5586 mxDestroyArray(prhs[2]); 5587 mxDestroyArray(prhs[3]); 5588 mxDestroyArray(plhs[0]); 5589 PetscFunctionReturn(0); 5590 } 5591 5592 /* 5593 SNESSetFunctionMatlab - Sets the function evaluation routine and function 5594 vector for use by the SNES routines in solving systems of nonlinear 5595 equations from MATLAB. Here the function is a string containing the name of a MATLAB function 5596 5597 Logically Collective on SNES 5598 5599 Input Parameters: 5600 + snes - the SNES context 5601 . r - vector to store function value 5602 - f - function evaluation routine 5603 5604 Notes: 5605 The Newton-like methods typically solve linear systems of the form 5606 $ f'(x) x = -f(x), 5607 where f'(x) denotes the Jacobian matrix and f(x) is the function. 5608 5609 Level: beginner 5610 5611 Developer Note: This bleeds the allocated memory SNESMatlabContext *sctx; 5612 5613 .keywords: SNES, nonlinear, set, function 5614 5615 .seealso: SNESGetFunction(), SNESComputeFunction(), SNESSetJacobian(), SNESSetFunction() 5616 */ 5617 PetscErrorCode SNESSetFunctionMatlab(SNES snes,Vec r,const char *f,mxArray *ctx) 5618 { 5619 PetscErrorCode ierr; 5620 SNESMatlabContext *sctx; 5621 5622 PetscFunctionBegin; 5623 /* currently sctx is memory bleed */ 5624 ierr = PetscNew(&sctx);CHKERRQ(ierr); 5625 ierr = PetscStrallocpy(f,&sctx->funcname);CHKERRQ(ierr); 5626 /* 5627 This should work, but it doesn't 5628 sctx->ctx = ctx; 5629 mexMakeArrayPersistent(sctx->ctx); 5630 */ 5631 sctx->ctx = mxDuplicateArray(ctx); 5632 ierr = SNESSetFunction(snes,r,SNESComputeFunction_Matlab,sctx);CHKERRQ(ierr); 5633 PetscFunctionReturn(0); 5634 } 5635 5636 /* 5637 SNESComputeJacobian_Matlab - Calls the function that has been set with SNESSetJacobianMatlab(). 5638 5639 Collective on SNES 5640 5641 Input Parameters: 5642 + snes - the SNES context 5643 . x - input vector 5644 . A, B - the matrices 5645 - ctx - user context 5646 5647 Level: developer 5648 5649 .keywords: SNES, nonlinear, compute, function 5650 5651 .seealso: SNESSetFunction(), SNESGetFunction() 5652 @*/ 5653 PetscErrorCode SNESComputeJacobian_Matlab(SNES snes,Vec x,Mat A,Mat B,void *ctx) 5654 { 5655 PetscErrorCode ierr; 5656 SNESMatlabContext *sctx = (SNESMatlabContext*)ctx; 5657 int nlhs = 2,nrhs = 6; 5658 mxArray *plhs[2],*prhs[6]; 5659 long long int lx = 0,lA = 0,ls = 0, lB = 0; 5660 5661 PetscFunctionBegin; 5662 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5663 PetscValidHeaderSpecific(x,VEC_CLASSID,2); 5664 5665 /* call Matlab function in ctx with arguments x and y */ 5666 5667 ierr = PetscMemcpy(&ls,&snes,sizeof(snes));CHKERRQ(ierr); 5668 ierr = PetscMemcpy(&lx,&x,sizeof(x));CHKERRQ(ierr); 5669 ierr = PetscMemcpy(&lA,A,sizeof(x));CHKERRQ(ierr); 5670 ierr = PetscMemcpy(&lB,B,sizeof(x));CHKERRQ(ierr); 5671 prhs[0] = mxCreateDoubleScalar((double)ls); 5672 prhs[1] = mxCreateDoubleScalar((double)lx); 5673 prhs[2] = mxCreateDoubleScalar((double)lA); 5674 prhs[3] = mxCreateDoubleScalar((double)lB); 5675 prhs[4] = mxCreateString(sctx->funcname); 5676 prhs[5] = sctx->ctx; 5677 ierr = mexCallMATLAB(nlhs,plhs,nrhs,prhs,"PetscSNESComputeJacobianInternal");CHKERRQ(ierr); 5678 ierr = mxGetScalar(plhs[0]);CHKERRQ(ierr); 5679 mxDestroyArray(prhs[0]); 5680 mxDestroyArray(prhs[1]); 5681 mxDestroyArray(prhs[2]); 5682 mxDestroyArray(prhs[3]); 5683 mxDestroyArray(prhs[4]); 5684 mxDestroyArray(plhs[0]); 5685 mxDestroyArray(plhs[1]); 5686 PetscFunctionReturn(0); 5687 } 5688 5689 /* 5690 SNESSetJacobianMatlab - Sets the Jacobian function evaluation routine and two empty Jacobian matrices 5691 vector for use by the SNES routines in solving systems of nonlinear 5692 equations from MATLAB. Here the function is a string containing the name of a MATLAB function 5693 5694 Logically Collective on SNES 5695 5696 Input Parameters: 5697 + snes - the SNES context 5698 . A,B - Jacobian matrices 5699 . J - function evaluation routine 5700 - ctx - user context 5701 5702 Level: developer 5703 5704 Developer Note: This bleeds the allocated memory SNESMatlabContext *sctx; 5705 5706 .keywords: SNES, nonlinear, set, function 5707 5708 .seealso: SNESGetFunction(), SNESComputeFunction(), SNESSetJacobian(), SNESSetFunction(), J 5709 */ 5710 PetscErrorCode SNESSetJacobianMatlab(SNES snes,Mat A,Mat B,const char *J,mxArray *ctx) 5711 { 5712 PetscErrorCode ierr; 5713 SNESMatlabContext *sctx; 5714 5715 PetscFunctionBegin; 5716 /* currently sctx is memory bleed */ 5717 ierr = PetscNew(&sctx);CHKERRQ(ierr); 5718 ierr = PetscStrallocpy(J,&sctx->funcname);CHKERRQ(ierr); 5719 /* 5720 This should work, but it doesn't 5721 sctx->ctx = ctx; 5722 mexMakeArrayPersistent(sctx->ctx); 5723 */ 5724 sctx->ctx = mxDuplicateArray(ctx); 5725 ierr = SNESSetJacobian(snes,A,B,SNESComputeJacobian_Matlab,sctx);CHKERRQ(ierr); 5726 PetscFunctionReturn(0); 5727 } 5728 5729 /* 5730 SNESMonitor_Matlab - Calls the function that has been set with SNESMonitorSetMatlab(). 5731 5732 Collective on SNES 5733 5734 .seealso: SNESSetFunction(), SNESGetFunction() 5735 @*/ 5736 PetscErrorCode SNESMonitor_Matlab(SNES snes,PetscInt it, PetscReal fnorm, void *ctx) 5737 { 5738 PetscErrorCode ierr; 5739 SNESMatlabContext *sctx = (SNESMatlabContext*)ctx; 5740 int nlhs = 1,nrhs = 6; 5741 mxArray *plhs[1],*prhs[6]; 5742 long long int lx = 0,ls = 0; 5743 Vec x = snes->vec_sol; 5744 5745 PetscFunctionBegin; 5746 PetscValidHeaderSpecific(snes,SNES_CLASSID,1); 5747 5748 ierr = PetscMemcpy(&ls,&snes,sizeof(snes));CHKERRQ(ierr); 5749 ierr = PetscMemcpy(&lx,&x,sizeof(x));CHKERRQ(ierr); 5750 prhs[0] = mxCreateDoubleScalar((double)ls); 5751 prhs[1] = mxCreateDoubleScalar((double)it); 5752 prhs[2] = mxCreateDoubleScalar((double)fnorm); 5753 prhs[3] = mxCreateDoubleScalar((double)lx); 5754 prhs[4] = mxCreateString(sctx->funcname); 5755 prhs[5] = sctx->ctx; 5756 ierr = mexCallMATLAB(nlhs,plhs,nrhs,prhs,"PetscSNESMonitorInternal");CHKERRQ(ierr); 5757 ierr = mxGetScalar(plhs[0]);CHKERRQ(ierr); 5758 mxDestroyArray(prhs[0]); 5759 mxDestroyArray(prhs[1]); 5760 mxDestroyArray(prhs[2]); 5761 mxDestroyArray(prhs[3]); 5762 mxDestroyArray(prhs[4]); 5763 mxDestroyArray(plhs[0]); 5764 PetscFunctionReturn(0); 5765 } 5766 5767 /* 5768 SNESMonitorSetMatlab - Sets the monitor function from MATLAB 5769 5770 Level: developer 5771 5772 Developer Note: This bleeds the allocated memory SNESMatlabContext *sctx; 5773 5774 .keywords: SNES, nonlinear, set, function 5775 5776 .seealso: SNESGetFunction(), SNESComputeFunction(), SNESSetJacobian(), SNESSetFunction() 5777 */ 5778 PetscErrorCode SNESMonitorSetMatlab(SNES snes,const char *f,mxArray *ctx) 5779 { 5780 PetscErrorCode ierr; 5781 SNESMatlabContext *sctx; 5782 5783 PetscFunctionBegin; 5784 /* currently sctx is memory bleed */ 5785 ierr = PetscNew(&sctx);CHKERRQ(ierr); 5786 ierr = PetscStrallocpy(f,&sctx->funcname);CHKERRQ(ierr); 5787 /* 5788 This should work, but it doesn't 5789 sctx->ctx = ctx; 5790 mexMakeArrayPersistent(sctx->ctx); 5791 */ 5792 sctx->ctx = mxDuplicateArray(ctx); 5793 ierr = SNESMonitorSet(snes,SNESMonitor_Matlab,sctx,NULL);CHKERRQ(ierr); 5794 PetscFunctionReturn(0); 5795 } 5796 5797 #endif 5798