xref: /petsc/src/mat/impls/mffd/mffd.c (revision f37c82fbca2ef2d9869799d3305350a5f272bd86)
1 
2 #include <petsc-private/matimpl.h>
3 #include <../src/mat/impls/mffd/mffdimpl.h>   /*I  "petscmat.h"   I*/
4 
5 PetscFunctionList MatMFFDList              = 0;
6 PetscBool         MatMFFDRegisterAllCalled = PETSC_FALSE;
7 
8 PetscClassId  MATMFFD_CLASSID;
9 PetscLogEvent MATMFFD_Mult;
10 
11 static PetscBool MatMFFDPackageInitialized = PETSC_FALSE;
12 #undef __FUNCT__
13 #define __FUNCT__ "MatMFFDFinalizePackage"
14 /*@C
15   MatMFFDFinalizePackage - This function destroys everything in the MatMFFD package. It is
16   called from PetscFinalize().
17 
18   Level: developer
19 
20 .keywords: Petsc, destroy, package
21 .seealso: PetscFinalize()
22 @*/
23 PetscErrorCode  MatMFFDFinalizePackage(void)
24 {
25   PetscErrorCode ierr;
26 
27   PetscFunctionBegin;
28   ierr = PetscFunctionListDestroy(&MatMFFDList);CHKERRQ(ierr);
29   MatMFFDPackageInitialized = PETSC_FALSE;
30   MatMFFDRegisterAllCalled  = PETSC_FALSE;
31   PetscFunctionReturn(0);
32 }
33 
34 #undef __FUNCT__
35 #define __FUNCT__ "MatMFFDInitializePackage"
36 /*@C
37   MatMFFDInitializePackage - This function initializes everything in the MatMFFD package. It is called
38   from PetscDLLibraryRegister() when using dynamic libraries, and on the first call to MatCreate_MFFD()
39   when using static libraries.
40 
41   Level: developer
42 
43 .keywords: Vec, initialize, package
44 .seealso: PetscInitialize()
45 @*/
46 PetscErrorCode  MatMFFDInitializePackage(void)
47 {
48   char           logList[256];
49   char           *className;
50   PetscBool      opt;
51   PetscErrorCode ierr;
52 
53   PetscFunctionBegin;
54   if (MatMFFDPackageInitialized) PetscFunctionReturn(0);
55   MatMFFDPackageInitialized = PETSC_TRUE;
56   /* Register Classes */
57   ierr = PetscClassIdRegister("MatMFFD",&MATMFFD_CLASSID);CHKERRQ(ierr);
58   /* Register Constructors */
59   ierr = MatMFFDRegisterAll();CHKERRQ(ierr);
60   /* Register Events */
61   ierr = PetscLogEventRegister("MatMult MF",          MATMFFD_CLASSID,&MATMFFD_Mult);CHKERRQ(ierr);
62 
63   /* Process info exclusions */
64   ierr = PetscOptionsGetString(NULL, "-info_exclude", logList, 256, &opt);CHKERRQ(ierr);
65   if (opt) {
66     ierr = PetscStrstr(logList, "matmffd", &className);CHKERRQ(ierr);
67     if (className) {
68       ierr = PetscInfoDeactivateClass(MATMFFD_CLASSID);CHKERRQ(ierr);
69     }
70   }
71   /* Process summary exclusions */
72   ierr = PetscOptionsGetString(NULL, "-log_summary_exclude", logList, 256, &opt);CHKERRQ(ierr);
73   if (opt) {
74     ierr = PetscStrstr(logList, "matmffd", &className);CHKERRQ(ierr);
75     if (className) {
76       ierr = PetscLogEventDeactivateClass(MATMFFD_CLASSID);CHKERRQ(ierr);
77     }
78   }
79   ierr = PetscRegisterFinalize(MatMFFDFinalizePackage);CHKERRQ(ierr);
80   PetscFunctionReturn(0);
81 }
82 
83 #undef __FUNCT__
84 #define __FUNCT__ "MatMFFDSetType"
85 /*@C
86     MatMFFDSetType - Sets the method that is used to compute the
87     differencing parameter for finite differene matrix-free formulations.
88 
89     Input Parameters:
90 +   mat - the "matrix-free" matrix created via MatCreateSNESMF(), or MatCreateMFFD()
91           or MatSetType(mat,MATMFFD);
92 -   ftype - the type requested, either MATMFFD_WP or MATMFFD_DS
93 
94     Level: advanced
95 
96     Notes:
97     For example, such routines can compute h for use in
98     Jacobian-vector products of the form
99 
100                         F(x+ha) - F(x)
101           F'(u)a  ~=  ----------------
102                               h
103 
104 .seealso: MatCreateSNESMF(), MatMFFDRegister(), MatMFFDSetFunction()
105 @*/
106 PetscErrorCode  MatMFFDSetType(Mat mat,MatMFFDType ftype)
107 {
108   PetscErrorCode ierr,(*r)(MatMFFD);
109   MatMFFD        ctx = (MatMFFD)mat->data;
110   PetscBool      match;
111 
112   PetscFunctionBegin;
113   PetscValidHeaderSpecific(mat,MAT_CLASSID,1);
114   PetscValidCharPointer(ftype,2);
115 
116   ierr = PetscObjectTypeCompare((PetscObject)mat,MATMFFD,&match);CHKERRQ(ierr);
117   if (!match) PetscFunctionReturn(0);
118 
119   /* already set, so just return */
120   ierr = PetscObjectTypeCompare((PetscObject)ctx,ftype,&match);CHKERRQ(ierr);
121   if (match) PetscFunctionReturn(0);
122 
123   /* destroy the old one if it exists */
124   if (ctx->ops->destroy) {
125     ierr = (*ctx->ops->destroy)(ctx);CHKERRQ(ierr);
126   }
127 
128   ierr =  PetscFunctionListFind(MatMFFDList,ftype,&r);CHKERRQ(ierr);
129   if (!r) SETERRQ1(PETSC_COMM_SELF,PETSC_ERR_ARG_UNKNOWN_TYPE,"Unknown MatMFFD type %s given",ftype);
130   ierr = (*r)(ctx);CHKERRQ(ierr);
131   ierr = PetscObjectChangeTypeName((PetscObject)ctx,ftype);CHKERRQ(ierr);
132   PetscFunctionReturn(0);
133 }
134 
135 typedef PetscErrorCode (*FCN1)(void*,Vec); /* force argument to next function to not be extern C*/
136 #undef __FUNCT__
137 #define __FUNCT__ "MatMFFDSetFunctioniBase_MFFD"
138 PetscErrorCode  MatMFFDSetFunctioniBase_MFFD(Mat mat,FCN1 func)
139 {
140   MatMFFD ctx = (MatMFFD)mat->data;
141 
142   PetscFunctionBegin;
143   ctx->funcisetbase = func;
144   PetscFunctionReturn(0);
145 }
146 
147 typedef PetscErrorCode (*FCN2)(void*,PetscInt,Vec,PetscScalar*); /* force argument to next function to not be extern C*/
148 #undef __FUNCT__
149 #define __FUNCT__ "MatMFFDSetFunctioni_MFFD"
150 PetscErrorCode  MatMFFDSetFunctioni_MFFD(Mat mat,FCN2 funci)
151 {
152   MatMFFD ctx = (MatMFFD)mat->data;
153 
154   PetscFunctionBegin;
155   ctx->funci = funci;
156   PetscFunctionReturn(0);
157 }
158 
159 #undef __FUNCT__
160 #define __FUNCT__ "MatMFFDResetHHistory_MFFD"
161 PetscErrorCode  MatMFFDResetHHistory_MFFD(Mat J)
162 {
163   MatMFFD ctx = (MatMFFD)J->data;
164 
165   PetscFunctionBegin;
166   ctx->ncurrenth = 0;
167   PetscFunctionReturn(0);
168 }
169 
170 #undef __FUNCT__
171 #define __FUNCT__ "MatMFFDRegister"
172 /*@C
173    MatMFFDRegister - Adds a method to the MatMFFD registry.
174 
175    Not Collective
176 
177    Input Parameters:
178 +  name_solver - name of a new user-defined compute-h module
179 -  routine_create - routine to create method context
180 
181    Level: developer
182 
183    Notes:
184    MatMFFDRegister() may be called multiple times to add several user-defined solvers.
185 
186    Sample usage:
187 .vb
188    MatMFFDRegister("my_h",MyHCreate);
189 .ve
190 
191    Then, your solver can be chosen with the procedural interface via
192 $     MatMFFDSetType(mfctx,"my_h")
193    or at runtime via the option
194 $     -snes_mf_type my_h
195 
196 .keywords: MatMFFD, register
197 
198 .seealso: MatMFFDRegisterAll(), MatMFFDRegisterDestroy()
199  @*/
200 PetscErrorCode  MatMFFDRegister(const char sname[],PetscErrorCode (*function)(MatMFFD))
201 {
202   PetscErrorCode ierr;
203 
204   PetscFunctionBegin;
205   ierr = PetscFunctionListAdd(&MatMFFDList,sname,function);CHKERRQ(ierr);
206   PetscFunctionReturn(0);
207 }
208 
209 #undef __FUNCT__
210 #define __FUNCT__ "MatMFFDAddNullSpace_MFFD"
211 PetscErrorCode  MatMFFDAddNullSpace_MFFD(Mat J,MatNullSpace nullsp)
212 {
213   PetscErrorCode ierr;
214   MatMFFD        ctx = (MatMFFD)J->data;
215 
216   PetscFunctionBegin;
217   ierr = PetscObjectReference((PetscObject)nullsp);CHKERRQ(ierr);
218   if (ctx->sp) { ierr = MatNullSpaceDestroy(&ctx->sp);CHKERRQ(ierr); }
219   ctx->sp = nullsp;
220   PetscFunctionReturn(0);
221 }
222 
223 /* ----------------------------------------------------------------------------------------*/
224 #undef __FUNCT__
225 #define __FUNCT__ "MatDestroy_MFFD"
226 PetscErrorCode MatDestroy_MFFD(Mat mat)
227 {
228   PetscErrorCode ierr;
229   MatMFFD        ctx = (MatMFFD)mat->data;
230 
231   PetscFunctionBegin;
232   ierr = VecDestroy(&ctx->w);CHKERRQ(ierr);
233   ierr = VecDestroy(&ctx->drscale);CHKERRQ(ierr);
234   ierr = VecDestroy(&ctx->dlscale);CHKERRQ(ierr);
235   ierr = VecDestroy(&ctx->dshift);CHKERRQ(ierr);
236   if (ctx->current_f_allocated) {
237     ierr = VecDestroy(&ctx->current_f);CHKERRQ(ierr);
238   }
239   if (ctx->ops->destroy) {ierr = (*ctx->ops->destroy)(ctx);CHKERRQ(ierr);}
240   ierr      = MatNullSpaceDestroy(&ctx->sp);CHKERRQ(ierr);
241   ierr      = PetscHeaderDestroy(&ctx);CHKERRQ(ierr);
242   mat->data = 0;
243 
244   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetBase_C",NULL);CHKERRQ(ierr);
245   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetFunctioniBase_C",NULL);CHKERRQ(ierr);
246   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetFunctioni_C",NULL);CHKERRQ(ierr);
247   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetFunction_C",NULL);CHKERRQ(ierr);
248   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetFunctionError_C",NULL);CHKERRQ(ierr);
249   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetCheckh_C",NULL);CHKERRQ(ierr);
250   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDSetPeriod_C",NULL);CHKERRQ(ierr);
251   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDResetHHistory_C",NULL);CHKERRQ(ierr);
252   ierr = PetscObjectComposeFunction((PetscObject)mat,"MatMFFDAddNullSpace_C",NULL);CHKERRQ(ierr);
253   PetscFunctionReturn(0);
254 }
255 
256 #undef __FUNCT__
257 #define __FUNCT__ "MatView_MFFD"
258 /*
259    MatMFFDView_MFFD - Views matrix-free parameters.
260 
261 */
262 PetscErrorCode MatView_MFFD(Mat J,PetscViewer viewer)
263 {
264   PetscErrorCode ierr;
265   MatMFFD        ctx = (MatMFFD)J->data;
266   PetscBool      iascii, viewbase, viewfunction;
267   const char     *prefix;
268 
269   PetscFunctionBegin;
270   ierr = PetscObjectTypeCompare((PetscObject)viewer,PETSCVIEWERASCII,&iascii);CHKERRQ(ierr);
271   if (iascii) {
272     ierr = PetscViewerASCIIPrintf(viewer,"Matrix-free approximation:\n");CHKERRQ(ierr);
273     ierr = PetscViewerASCIIPushTab(viewer);CHKERRQ(ierr);
274     ierr = PetscViewerASCIIPrintf(viewer,"err=%G (relative error in function evaluation)\n",ctx->error_rel);CHKERRQ(ierr);
275     if (!((PetscObject)ctx)->type_name) {
276       ierr = PetscViewerASCIIPrintf(viewer,"The compute h routine has not yet been set\n");CHKERRQ(ierr);
277     } else {
278       ierr = PetscViewerASCIIPrintf(viewer,"Using %s compute h routine\n",((PetscObject)ctx)->type_name);CHKERRQ(ierr);
279     }
280     if (ctx->ops->view) {
281       ierr = (*ctx->ops->view)(ctx,viewer);CHKERRQ(ierr);
282     }
283     ierr = PetscObjectGetOptionsPrefix((PetscObject)J, &prefix);CHKERRQ(ierr);
284 
285     ierr = PetscOptionsHasName(prefix, "-mat_mffd_view_base", &viewbase);CHKERRQ(ierr);
286     if (viewbase) {
287       ierr = PetscViewerASCIIPrintf(viewer, "Base:\n");CHKERRQ(ierr);
288       ierr = VecView(ctx->current_u, viewer);CHKERRQ(ierr);
289     }
290     ierr = PetscOptionsHasName(prefix, "-mat_mffd_view_function", &viewfunction);CHKERRQ(ierr);
291     if (viewfunction) {
292       ierr = PetscViewerASCIIPrintf(viewer, "Function:\n");CHKERRQ(ierr);
293       ierr = VecView(ctx->current_f, viewer);CHKERRQ(ierr);
294     }
295     ierr = PetscViewerASCIIPopTab(viewer);CHKERRQ(ierr);
296   }
297   PetscFunctionReturn(0);
298 }
299 
300 #undef __FUNCT__
301 #define __FUNCT__ "MatAssemblyEnd_MFFD"
302 /*
303    MatAssemblyEnd_MFFD - Resets the ctx->ncurrenth to zero. This
304    allows the user to indicate the beginning of a new linear solve by calling
305    MatAssemblyXXX() on the matrix free matrix. This then allows the
306    MatCreateMFFD_WP() to properly compute ||U|| only the first time
307    in the linear solver rather than every time.
308 
309    This function is referenced directly from MatAssemblyEnd_SNESMF(), which may be in a different shared library.
310 */
311 PETSC_EXTERN PetscErrorCode MatAssemblyEnd_MFFD(Mat J,MatAssemblyType mt)
312 {
313   PetscErrorCode ierr;
314   MatMFFD        j = (MatMFFD)J->data;
315 
316   PetscFunctionBegin;
317   ierr      = MatMFFDResetHHistory(J);CHKERRQ(ierr);
318   j->vshift = 0.0;
319   j->vscale = 1.0;
320   PetscFunctionReturn(0);
321 }
322 
323 #undef __FUNCT__
324 #define __FUNCT__ "MatMult_MFFD"
325 /*
326   MatMult_MFFD - Default matrix-free form for Jacobian-vector product, y = F'(u)*a:
327 
328         y ~= (F(u + ha) - F(u))/h,
329   where F = nonlinear function, as set by SNESSetFunction()
330         u = current iterate
331         h = difference interval
332 */
333 PetscErrorCode MatMult_MFFD(Mat mat,Vec a,Vec y)
334 {
335   MatMFFD        ctx = (MatMFFD)mat->data;
336   PetscScalar    h;
337   Vec            w,U,F;
338   PetscErrorCode ierr;
339   PetscBool      zeroa;
340 
341   PetscFunctionBegin;
342   if (!ctx->current_u) SETERRQ(PetscObjectComm((PetscObject)mat),PETSC_ERR_ARG_WRONGSTATE,"MatMFFDSetBase() has not been called, this is often caused by forgetting to call \n\t\tMatAssemblyBegin/End on the first Mat in the SNES compute function");
343   /* We log matrix-free matrix-vector products separately, so that we can
344      separate the performance monitoring from the cases that use conventional
345      storage.  We may eventually modify event logging to associate events
346      with particular objects, hence alleviating the more general problem. */
347   ierr = PetscLogEventBegin(MATMFFD_Mult,a,y,0,0);CHKERRQ(ierr);
348 
349   w = ctx->w;
350   U = ctx->current_u;
351   F = ctx->current_f;
352   /*
353       Compute differencing parameter
354   */
355   if (!ctx->ops->compute) {
356     ierr = MatMFFDSetType(mat,MATMFFD_WP);CHKERRQ(ierr);
357     ierr = MatSetFromOptions(mat);CHKERRQ(ierr);
358   }
359   ierr = (*ctx->ops->compute)(ctx,U,a,&h,&zeroa);CHKERRQ(ierr);
360   if (zeroa) {
361     ierr = VecSet(y,0.0);CHKERRQ(ierr);
362     PetscFunctionReturn(0);
363   }
364 
365   if (PetscIsInfOrNanScalar(h)) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_PLIB,"Computed Nan differencing parameter h");
366   if (ctx->checkh) {
367     ierr = (*ctx->checkh)(ctx->checkhctx,U,a,&h);CHKERRQ(ierr);
368   }
369 
370   /* keep a record of the current differencing parameter h */
371   ctx->currenth = h;
372 #if defined(PETSC_USE_COMPLEX)
373   ierr = PetscInfo2(mat,"Current differencing parameter: %G + %G i\n",PetscRealPart(h),PetscImaginaryPart(h));CHKERRQ(ierr);
374 #else
375   ierr = PetscInfo1(mat,"Current differencing parameter: %15.12e\n",h);CHKERRQ(ierr);
376 #endif
377   if (ctx->historyh && ctx->ncurrenth < ctx->maxcurrenth) {
378     ctx->historyh[ctx->ncurrenth] = h;
379   }
380   ctx->ncurrenth++;
381 
382   /* w = u + ha */
383   if (ctx->drscale) {
384     ierr = VecPointwiseMult(ctx->drscale,a,U);CHKERRQ(ierr);
385     ierr = VecAYPX(U,h,w);CHKERRQ(ierr);
386   } else {
387     ierr = VecWAXPY(w,h,a,U);CHKERRQ(ierr);
388   }
389 
390   /* compute func(U) as base for differencing; only needed first time in and not when provided by user */
391   if (ctx->ncurrenth == 1 && ctx->current_f_allocated) {
392     ierr = (*ctx->func)(ctx->funcctx,U,F);CHKERRQ(ierr);
393   }
394   ierr = (*ctx->func)(ctx->funcctx,w,y);CHKERRQ(ierr);
395 
396   ierr = VecAXPY(y,-1.0,F);CHKERRQ(ierr);
397   ierr = VecScale(y,1.0/h);CHKERRQ(ierr);
398 
399   if ((ctx->vshift != 0.0) || (ctx->vscale != 1.0)) {
400     ierr = VecAXPBY(y,ctx->vshift,ctx->vscale,a);CHKERRQ(ierr);
401   }
402   if (ctx->dlscale) {
403     ierr = VecPointwiseMult(y,ctx->dlscale,y);CHKERRQ(ierr);
404   }
405   if (ctx->dshift) {
406     ierr = VecPointwiseMult(ctx->dshift,a,U);CHKERRQ(ierr);
407     ierr = VecAXPY(y,1.0,U);CHKERRQ(ierr);
408   }
409 
410   if (ctx->sp) {ierr = MatNullSpaceRemove(ctx->sp,y);CHKERRQ(ierr);}
411 
412   ierr = PetscLogEventEnd(MATMFFD_Mult,a,y,0,0);CHKERRQ(ierr);
413   PetscFunctionReturn(0);
414 }
415 
416 #undef __FUNCT__
417 #define __FUNCT__ "MatGetDiagonal_MFFD"
418 /*
419   MatGetDiagonal_MFFD - Gets the diagonal for a matrix free matrix
420 
421         y ~= (F(u + ha) - F(u))/h,
422   where F = nonlinear function, as set by SNESSetFunction()
423         u = current iterate
424         h = difference interval
425 */
426 PetscErrorCode MatGetDiagonal_MFFD(Mat mat,Vec a)
427 {
428   MatMFFD        ctx = (MatMFFD)mat->data;
429   PetscScalar    h,*aa,*ww,v;
430   PetscReal      epsilon = PETSC_SQRT_MACHINE_EPSILON,umin = 100.0*PETSC_SQRT_MACHINE_EPSILON;
431   Vec            w,U;
432   PetscErrorCode ierr;
433   PetscInt       i,rstart,rend;
434 
435   PetscFunctionBegin;
436   if (!ctx->funci) SETERRQ(PETSC_COMM_SELF,PETSC_ERR_ORDER,"Requires calling MatMFFDSetFunctioni() first");
437 
438   w    = ctx->w;
439   U    = ctx->current_u;
440   ierr = (*ctx->func)(ctx->funcctx,U,a);CHKERRQ(ierr);
441   ierr = (*ctx->funcisetbase)(ctx->funcctx,U);CHKERRQ(ierr);
442   ierr = VecCopy(U,w);CHKERRQ(ierr);
443 
444   ierr = VecGetOwnershipRange(a,&rstart,&rend);CHKERRQ(ierr);
445   ierr = VecGetArray(a,&aa);CHKERRQ(ierr);
446   for (i=rstart; i<rend; i++) {
447     ierr = VecGetArray(w,&ww);CHKERRQ(ierr);
448     h    = ww[i-rstart];
449     if (h == 0.0) h = 1.0;
450     if (PetscAbsScalar(h) < umin && PetscRealPart(h) >= 0.0)     h = umin;
451     else if (PetscRealPart(h) < 0.0 && PetscAbsScalar(h) < umin) h = -umin;
452     h *= epsilon;
453 
454     ww[i-rstart] += h;
455     ierr          = VecRestoreArray(w,&ww);CHKERRQ(ierr);
456     ierr          = (*ctx->funci)(ctx->funcctx,i,w,&v);CHKERRQ(ierr);
457     aa[i-rstart]  = (v - aa[i-rstart])/h;
458 
459     /* possibly shift and scale result */
460     if ((ctx->vshift != 0.0) || (ctx->vscale != 1.0)) {
461       aa[i - rstart] = ctx->vshift + ctx->vscale*aa[i-rstart];
462     }
463 
464     ierr          = VecGetArray(w,&ww);CHKERRQ(ierr);
465     ww[i-rstart] -= h;
466     ierr          = VecRestoreArray(w,&ww);CHKERRQ(ierr);
467   }
468   ierr = VecRestoreArray(a,&aa);CHKERRQ(ierr);
469   PetscFunctionReturn(0);
470 }
471 
472 #undef __FUNCT__
473 #define __FUNCT__ "MatDiagonalScale_MFFD"
474 PetscErrorCode MatDiagonalScale_MFFD(Mat mat,Vec ll,Vec rr)
475 {
476   MatMFFD        aij = (MatMFFD)mat->data;
477   PetscErrorCode ierr;
478 
479   PetscFunctionBegin;
480   if (ll && !aij->dlscale) {
481     ierr = VecDuplicate(ll,&aij->dlscale);CHKERRQ(ierr);
482   }
483   if (rr && !aij->drscale) {
484     ierr = VecDuplicate(rr,&aij->drscale);CHKERRQ(ierr);
485   }
486   if (ll) {
487     ierr = VecCopy(ll,aij->dlscale);CHKERRQ(ierr);
488   }
489   if (rr) {
490     ierr = VecCopy(rr,aij->drscale);CHKERRQ(ierr);
491   }
492   PetscFunctionReturn(0);
493 }
494 
495 #undef __FUNCT__
496 #define __FUNCT__ "MatDiagonalSet_MFFD"
497 PetscErrorCode MatDiagonalSet_MFFD(Mat mat,Vec ll,InsertMode mode)
498 {
499   MatMFFD        aij = (MatMFFD)mat->data;
500   PetscErrorCode ierr;
501 
502   PetscFunctionBegin;
503   if (mode == INSERT_VALUES) SETERRQ(PetscObjectComm((PetscObject)mat),PETSC_ERR_SUP,"No diagonal set with INSERT_VALUES");
504   if (!aij->dshift) {
505     ierr = VecDuplicate(ll,&aij->dshift);CHKERRQ(ierr);
506   }
507   ierr = VecAXPY(aij->dshift,1.0,ll);CHKERRQ(ierr);
508   PetscFunctionReturn(0);
509 }
510 
511 #undef __FUNCT__
512 #define __FUNCT__ "MatShift_MFFD"
513 PetscErrorCode MatShift_MFFD(Mat Y,PetscScalar a)
514 {
515   MatMFFD shell = (MatMFFD)Y->data;
516 
517   PetscFunctionBegin;
518   shell->vshift += a;
519   PetscFunctionReturn(0);
520 }
521 
522 #undef __FUNCT__
523 #define __FUNCT__ "MatScale_MFFD"
524 PetscErrorCode MatScale_MFFD(Mat Y,PetscScalar a)
525 {
526   MatMFFD shell = (MatMFFD)Y->data;
527 
528   PetscFunctionBegin;
529   shell->vscale *= a;
530   PetscFunctionReturn(0);
531 }
532 
533 #undef __FUNCT__
534 #define __FUNCT__ "MatMFFDSetBase_MFFD"
535 PETSC_EXTERN PetscErrorCode MatMFFDSetBase_MFFD(Mat J,Vec U,Vec F)
536 {
537   PetscErrorCode ierr;
538   MatMFFD        ctx = (MatMFFD)J->data;
539 
540   PetscFunctionBegin;
541   ierr = MatMFFDResetHHistory(J);CHKERRQ(ierr);
542 
543   ctx->current_u = U;
544   if (F) {
545     if (ctx->current_f_allocated) {ierr = VecDestroy(&ctx->current_f);CHKERRQ(ierr);}
546     ctx->current_f           = F;
547     ctx->current_f_allocated = PETSC_FALSE;
548   } else if (!ctx->current_f_allocated) {
549     ierr = VecDuplicate(ctx->current_u, &ctx->current_f);CHKERRQ(ierr);
550 
551     ctx->current_f_allocated = PETSC_TRUE;
552   }
553   if (!ctx->w) {
554     ierr = VecDuplicate(ctx->current_u, &ctx->w);CHKERRQ(ierr);
555   }
556   J->assembled = PETSC_TRUE;
557   PetscFunctionReturn(0);
558 }
559 
560 typedef PetscErrorCode (*FCN3)(void*,Vec,Vec,PetscScalar*); /* force argument to next function to not be extern C*/
561 
562 #undef __FUNCT__
563 #define __FUNCT__ "MatMFFDSetCheckh_MFFD"
564 PetscErrorCode  MatMFFDSetCheckh_MFFD(Mat J,FCN3 fun,void *ectx)
565 {
566   MatMFFD ctx = (MatMFFD)J->data;
567 
568   PetscFunctionBegin;
569   ctx->checkh    = fun;
570   ctx->checkhctx = ectx;
571   PetscFunctionReturn(0);
572 }
573 
574 #undef __FUNCT__
575 #define __FUNCT__ "MatMFFDSetOptionsPrefix"
576 /*@C
577    MatMFFDSetOptionsPrefix - Sets the prefix used for searching for all
578    MatMFFD options in the database.
579 
580    Collective on Mat
581 
582    Input Parameter:
583 +  A - the Mat context
584 -  prefix - the prefix to prepend to all option names
585 
586    Notes:
587    A hyphen (-) must NOT be given at the beginning of the prefix name.
588    The first character of all runtime options is AUTOMATICALLY the hyphen.
589 
590    Level: advanced
591 
592 .keywords: SNES, matrix-free, parameters
593 
594 .seealso: MatSetFromOptions(), MatCreateSNESMF()
595 @*/
596 PetscErrorCode  MatMFFDSetOptionsPrefix(Mat mat,const char prefix[])
597 
598 {
599   MatMFFD        mfctx = mat ? (MatMFFD)mat->data : (MatMFFD)NULL;
600   PetscErrorCode ierr;
601 
602   PetscFunctionBegin;
603   PetscValidHeaderSpecific(mat,MAT_CLASSID,1);
604   PetscValidHeaderSpecific(mfctx,MATMFFD_CLASSID,1);
605   ierr = PetscObjectSetOptionsPrefix((PetscObject)mfctx,prefix);CHKERRQ(ierr);
606   PetscFunctionReturn(0);
607 }
608 
609 #undef __FUNCT__
610 #define __FUNCT__ "MatSetFromOptions_MFFD"
611 PetscErrorCode  MatSetFromOptions_MFFD(Mat mat)
612 {
613   MatMFFD        mfctx = (MatMFFD)mat->data;
614   PetscErrorCode ierr;
615   PetscBool      flg;
616   char           ftype[256];
617 
618   PetscFunctionBegin;
619   PetscValidHeaderSpecific(mat,MAT_CLASSID,1);
620   PetscValidHeaderSpecific(mfctx,MATMFFD_CLASSID,1);
621   ierr = PetscObjectOptionsBegin((PetscObject)mfctx);CHKERRQ(ierr);
622   ierr = PetscOptionsList("-mat_mffd_type","Matrix free type","MatMFFDSetType",MatMFFDList,((PetscObject)mfctx)->type_name,ftype,256,&flg);CHKERRQ(ierr);
623   if (flg) {
624     ierr = MatMFFDSetType(mat,ftype);CHKERRQ(ierr);
625   }
626 
627   ierr = PetscOptionsReal("-mat_mffd_err","set sqrt relative error in function","MatMFFDSetFunctionError",mfctx->error_rel,&mfctx->error_rel,0);CHKERRQ(ierr);
628   ierr = PetscOptionsInt("-mat_mffd_period","how often h is recomputed","MatMFFDSetPeriod",mfctx->recomputeperiod,&mfctx->recomputeperiod,0);CHKERRQ(ierr);
629 
630   flg  = PETSC_FALSE;
631   ierr = PetscOptionsBool("-mat_mffd_check_positivity","Insure that U + h*a is nonnegative","MatMFFDSetCheckh",flg,&flg,NULL);CHKERRQ(ierr);
632   if (flg) {
633     ierr = MatMFFDSetCheckh(mat,MatMFFDCheckPositivity,0);CHKERRQ(ierr);
634   }
635   if (mfctx->ops->setfromoptions) {
636     ierr = (*mfctx->ops->setfromoptions)(mfctx);CHKERRQ(ierr);
637   }
638   ierr = PetscOptionsEnd();CHKERRQ(ierr);
639   PetscFunctionReturn(0);
640 }
641 
642 #undef __FUNCT__
643 #define __FUNCT__ "MatMFFDSetPeriod_MFFD"
644 PetscErrorCode  MatMFFDSetPeriod_MFFD(Mat mat,PetscInt period)
645 {
646   MatMFFD ctx = (MatMFFD)mat->data;
647 
648   PetscFunctionBegin;
649   PetscValidLogicalCollectiveInt(mat,period,2);
650   ctx->recomputeperiod = period;
651   PetscFunctionReturn(0);
652 }
653 
654 #undef __FUNCT__
655 #define __FUNCT__ "MatMFFDSetFunction_MFFD"
656 PetscErrorCode  MatMFFDSetFunction_MFFD(Mat mat,PetscErrorCode (*func)(void*,Vec,Vec),void *funcctx)
657 {
658   MatMFFD ctx = (MatMFFD)mat->data;
659 
660   PetscFunctionBegin;
661   ctx->func    = func;
662   ctx->funcctx = funcctx;
663   PetscFunctionReturn(0);
664 }
665 
666 #undef __FUNCT__
667 #define __FUNCT__ "MatMFFDSetFunctionError_MFFD"
668 PetscErrorCode  MatMFFDSetFunctionError_MFFD(Mat mat,PetscReal error)
669 {
670   MatMFFD ctx = (MatMFFD)mat->data;
671 
672   PetscFunctionBegin;
673   PetscValidLogicalCollectiveReal(mat,error,2);
674   if (error != PETSC_DEFAULT) ctx->error_rel = error;
675   PetscFunctionReturn(0);
676 }
677 
678 /*MC
679   MATMFFD - MATMFFD = "mffd" - A matrix free matrix type.
680 
681   Level: advanced
682 
683 .seealso: MatCreateMFFD(), MatCreateSNESMF(), MatMFFDSetFunction()
684 M*/
685 #undef __FUNCT__
686 #define __FUNCT__ "MatCreate_MFFD"
687 PETSC_EXTERN PetscErrorCode MatCreate_MFFD(Mat A)
688 {
689   MatMFFD        mfctx;
690   PetscErrorCode ierr;
691 
692   PetscFunctionBegin;
693 #if !defined(PETSC_USE_DYNAMIC_LIBRARIES)
694   ierr = MatMFFDInitializePackage();CHKERRQ(ierr);
695 #endif
696 
697   ierr = PetscHeaderCreate(mfctx,_p_MatMFFD,struct _MFOps,MATMFFD_CLASSID,"MatMFFD","Matrix-free Finite Differencing","Mat",PetscObjectComm((PetscObject)A),MatDestroy_MFFD,MatView_MFFD);CHKERRQ(ierr);
698 
699   mfctx->sp                       = 0;
700   mfctx->error_rel                = PETSC_SQRT_MACHINE_EPSILON;
701   mfctx->recomputeperiod          = 1;
702   mfctx->count                    = 0;
703   mfctx->currenth                 = 0.0;
704   mfctx->historyh                 = NULL;
705   mfctx->ncurrenth                = 0;
706   mfctx->maxcurrenth              = 0;
707   ((PetscObject)mfctx)->type_name = 0;
708 
709   mfctx->vshift = 0.0;
710   mfctx->vscale = 1.0;
711 
712   /*
713      Create the empty data structure to contain compute-h routines.
714      These will be filled in below from the command line options or
715      a later call with MatMFFDSetType() or if that is not called
716      then it will default in the first use of MatMult_MFFD()
717   */
718   mfctx->ops->compute        = 0;
719   mfctx->ops->destroy        = 0;
720   mfctx->ops->view           = 0;
721   mfctx->ops->setfromoptions = 0;
722   mfctx->hctx                = 0;
723 
724   mfctx->func    = 0;
725   mfctx->funcctx = 0;
726   mfctx->w       = NULL;
727 
728   A->data = mfctx;
729 
730   A->ops->mult           = MatMult_MFFD;
731   A->ops->destroy        = MatDestroy_MFFD;
732   A->ops->view           = MatView_MFFD;
733   A->ops->assemblyend    = MatAssemblyEnd_MFFD;
734   A->ops->getdiagonal    = MatGetDiagonal_MFFD;
735   A->ops->scale          = MatScale_MFFD;
736   A->ops->shift          = MatShift_MFFD;
737   A->ops->diagonalscale  = MatDiagonalScale_MFFD;
738   A->ops->diagonalset    = MatDiagonalSet_MFFD;
739   A->ops->setfromoptions = MatSetFromOptions_MFFD;
740   A->assembled           = PETSC_TRUE;
741 
742   ierr = PetscLayoutSetUp(A->rmap);CHKERRQ(ierr);
743   ierr = PetscLayoutSetUp(A->cmap);CHKERRQ(ierr);
744 
745   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetBase_C",MatMFFDSetBase_MFFD);CHKERRQ(ierr);
746   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetFunctioniBase_C",MatMFFDSetFunctioniBase_MFFD);CHKERRQ(ierr);
747   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetFunctioni_C",MatMFFDSetFunctioni_MFFD);CHKERRQ(ierr);
748   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetFunction_C",MatMFFDSetFunction_MFFD);CHKERRQ(ierr);
749   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetCheckh_C",MatMFFDSetCheckh_MFFD);CHKERRQ(ierr);
750   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetPeriod_C",MatMFFDSetPeriod_MFFD);CHKERRQ(ierr);
751   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDSetFunctionError_C",MatMFFDSetFunctionError_MFFD);CHKERRQ(ierr);
752   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDResetHHistory_C",MatMFFDResetHHistory_MFFD);CHKERRQ(ierr);
753   ierr = PetscObjectComposeFunction((PetscObject)A,"MatMFFDAddNullSpace_C",MatMFFDAddNullSpace_MFFD);CHKERRQ(ierr);
754 
755   mfctx->mat = A;
756 
757   ierr = PetscObjectChangeTypeName((PetscObject)A,MATMFFD);CHKERRQ(ierr);
758   PetscFunctionReturn(0);
759 }
760 
761 #undef __FUNCT__
762 #define __FUNCT__ "MatCreateMFFD"
763 /*@
764    MatCreateMFFD - Creates a matrix-free matrix. See also MatCreateSNESMF()
765 
766    Collective on Vec
767 
768    Input Parameters:
769 +  comm - MPI communicator
770 .  m - number of local rows (or PETSC_DECIDE to have calculated if M is given)
771            This value should be the same as the local size used in creating the
772            y vector for the matrix-vector product y = Ax.
773 .  n - This value should be the same as the local size used in creating the
774        x vector for the matrix-vector product y = Ax. (or PETSC_DECIDE to have
775        calculated if N is given) For square matrices n is almost always m.
776 .  M - number of global rows (or PETSC_DETERMINE to have calculated if m is given)
777 -  N - number of global columns (or PETSC_DETERMINE to have calculated if n is given)
778 
779 
780    Output Parameter:
781 .  J - the matrix-free matrix
782 
783    Options Database Keys: call MatSetFromOptions() to trigger these
784 +  -mat_mffd_type - wp or ds (see MATMFFD_WP or MATMFFD_DS)
785 -  -mat_mffd_err - square root of estimated relative error in function evaluation
786 -  -mat_mffd_period - how often h is recomputed, defaults to 1, everytime
787 
788 
789    Level: advanced
790 
791    Notes:
792    The matrix-free matrix context merely contains the function pointers
793    and work space for performing finite difference approximations of
794    Jacobian-vector products, F'(u)*a,
795 
796    The default code uses the following approach to compute h
797 
798 .vb
799      F'(u)*a = [F(u+h*a) - F(u)]/h where
800      h = error_rel*u'a/||a||^2                        if  |u'a| > umin*||a||_{1}
801        = error_rel*umin*sign(u'a)*||a||_{1}/||a||^2   otherwise
802  where
803      error_rel = square root of relative error in function evaluation
804      umin = minimum iterate parameter
805 .ve
806 
807    The user can set the error_rel via MatMFFDSetFunctionError() and
808    umin via MatMFFDDSSetUmin(); see the <A href="../../docs/manual.pdf#nameddest=ch_snes">SNES chapter of the users manual</A> for details.
809 
810    The user should call MatDestroy() when finished with the matrix-free
811    matrix context.
812 
813    Options Database Keys:
814 +  -mat_mffd_err <error_rel> - Sets error_rel
815 .  -mat_mffd_unim <umin> - Sets umin (for default PETSc routine that computes h only)
816 -  -mat_mffd_check_positivity
817 
818 .keywords: default, matrix-free, create, matrix
819 
820 .seealso: MatDestroy(), MatMFFDSetFunctionError(), MatMFFDDSSetUmin(), MatMFFDSetFunction()
821           MatMFFDSetHHistory(), MatMFFDResetHHistory(), MatCreateSNESMF(),
822           MatMFFDGetH(), MatMFFDRegister(), MatMFFDComputeJacobian()
823 
824 @*/
825 PetscErrorCode  MatCreateMFFD(MPI_Comm comm,PetscInt m,PetscInt n,PetscInt M,PetscInt N,Mat *J)
826 {
827   PetscErrorCode ierr;
828 
829   PetscFunctionBegin;
830   ierr = MatCreate(comm,J);CHKERRQ(ierr);
831   ierr = MatSetSizes(*J,m,n,M,N);CHKERRQ(ierr);
832   ierr = MatSetType(*J,MATMFFD);CHKERRQ(ierr);
833   ierr = MatSetUp(*J);CHKERRQ(ierr);
834   PetscFunctionReturn(0);
835 }
836 
837 
838 #undef __FUNCT__
839 #define __FUNCT__ "MatMFFDGetH"
840 /*@
841    MatMFFDGetH - Gets the last value that was used as the differencing
842    parameter.
843 
844    Not Collective
845 
846    Input Parameters:
847 .  mat - the matrix obtained with MatCreateSNESMF()
848 
849    Output Paramter:
850 .  h - the differencing step size
851 
852    Level: advanced
853 
854 .keywords: SNES, matrix-free, parameters
855 
856 .seealso: MatCreateSNESMF(),MatMFFDSetHHistory(), MatCreateMFFD(), MATMFFD, MatMFFDResetHHistory()
857 @*/
858 PetscErrorCode  MatMFFDGetH(Mat mat,PetscScalar *h)
859 {
860   MatMFFD        ctx = (MatMFFD)mat->data;
861   PetscErrorCode ierr;
862   PetscBool      match;
863 
864   PetscFunctionBegin;
865   ierr = PetscObjectTypeCompare((PetscObject)mat,MATMFFD,&match);CHKERRQ(ierr);
866   if (!match) SETERRQ(PetscObjectComm((PetscObject)mat),PETSC_ERR_ARG_WRONG,"Not a MFFD matrix");
867 
868   *h = ctx->currenth;
869   PetscFunctionReturn(0);
870 }
871 
872 #undef __FUNCT__
873 #define __FUNCT__ "MatMFFDSetFunction"
874 /*@C
875    MatMFFDSetFunction - Sets the function used in applying the matrix free.
876 
877    Logically Collective on Mat
878 
879    Input Parameters:
880 +  mat - the matrix free matrix created via MatCreateSNESMF()
881 .  func - the function to use
882 -  funcctx - optional function context passed to function
883 
884    Level: advanced
885 
886    Notes:
887     If you use this you MUST call MatAssemblyBegin()/MatAssemblyEnd() on the matrix free
888     matrix inside your compute Jacobian routine
889 
890     If this is not set then it will use the function set with SNESSetFunction() if MatCreateSNESMF() was used.
891 
892 .keywords: SNES, matrix-free, function
893 
894 .seealso: MatCreateSNESMF(),MatMFFDGetH(), MatCreateMFFD(), MATMFFD,
895           MatMFFDSetHHistory(), MatMFFDResetHHistory(), SNESetFunction()
896 @*/
897 PetscErrorCode  MatMFFDSetFunction(Mat mat,PetscErrorCode (*func)(void*,Vec,Vec),void *funcctx)
898 {
899   PetscErrorCode ierr;
900 
901   PetscFunctionBegin;
902   ierr = PetscTryMethod(mat,"MatMFFDSetFunction_C",(Mat,PetscErrorCode (*)(void*,Vec,Vec),void*),(mat,func,funcctx));CHKERRQ(ierr);
903   PetscFunctionReturn(0);
904 }
905 
906 #undef __FUNCT__
907 #define __FUNCT__ "MatMFFDSetFunctioni"
908 /*@C
909    MatMFFDSetFunctioni - Sets the function for a single component
910 
911    Logically Collective on Mat
912 
913    Input Parameters:
914 +  mat - the matrix free matrix created via MatCreateSNESMF()
915 -  funci - the function to use
916 
917    Level: advanced
918 
919    Notes:
920     If you use this you MUST call MatAssemblyBegin()/MatAssemblyEnd() on the matrix free
921     matrix inside your compute Jacobian routine
922 
923 
924 .keywords: SNES, matrix-free, function
925 
926 .seealso: MatCreateSNESMF(),MatMFFDGetH(), MatMFFDSetHHistory(), MatMFFDResetHHistory(), SNESetFunction()
927 
928 @*/
929 PetscErrorCode  MatMFFDSetFunctioni(Mat mat,PetscErrorCode (*funci)(void*,PetscInt,Vec,PetscScalar*))
930 {
931   PetscErrorCode ierr;
932 
933   PetscFunctionBegin;
934   PetscValidHeaderSpecific(mat,MAT_CLASSID,1);
935   ierr = PetscTryMethod(mat,"MatMFFDSetFunctioni_C",(Mat,PetscErrorCode (*)(void*,PetscInt,Vec,PetscScalar*)),(mat,funci));CHKERRQ(ierr);
936   PetscFunctionReturn(0);
937 }
938 
939 
940 #undef __FUNCT__
941 #define __FUNCT__ "MatMFFDSetFunctioniBase"
942 /*@C
943    MatMFFDSetFunctioniBase - Sets the base vector for a single component function evaluation
944 
945    Logically Collective on Mat
946 
947    Input Parameters:
948 +  mat - the matrix free matrix created via MatCreateSNESMF()
949 -  func - the function to use
950 
951    Level: advanced
952 
953    Notes:
954     If you use this you MUST call MatAssemblyBegin()/MatAssemblyEnd() on the matrix free
955     matrix inside your compute Jacobian routine
956 
957 
958 .keywords: SNES, matrix-free, function
959 
960 .seealso: MatCreateSNESMF(),MatMFFDGetH(), MatCreateMFFD(), MATMFFD
961           MatMFFDSetHHistory(), MatMFFDResetHHistory(), SNESetFunction()
962 @*/
963 PetscErrorCode  MatMFFDSetFunctioniBase(Mat mat,PetscErrorCode (*func)(void*,Vec))
964 {
965   PetscErrorCode ierr;
966 
967   PetscFunctionBegin;
968   PetscValidHeaderSpecific(mat,MAT_CLASSID,1);
969   ierr = PetscTryMethod(mat,"MatMFFDSetFunctioniBase_C",(Mat,PetscErrorCode (*)(void*,Vec)),(mat,func));CHKERRQ(ierr);
970   PetscFunctionReturn(0);
971 }
972 
973 #undef __FUNCT__
974 #define __FUNCT__ "MatMFFDSetPeriod"
975 /*@
976    MatMFFDSetPeriod - Sets how often h is recomputed, by default it is everytime
977 
978    Logically Collective on Mat
979 
980    Input Parameters:
981 +  mat - the matrix free matrix created via MatCreateSNESMF()
982 -  period - 1 for everytime, 2 for every second etc
983 
984    Options Database Keys:
985 +  -mat_mffd_period <period>
986 
987    Level: advanced
988 
989 
990 .keywords: SNES, matrix-free, parameters
991 
992 .seealso: MatCreateSNESMF(),MatMFFDGetH(),
993           MatMFFDSetHHistory(), MatMFFDResetHHistory()
994 @*/
995 PetscErrorCode  MatMFFDSetPeriod(Mat mat,PetscInt period)
996 {
997   PetscErrorCode ierr;
998 
999   PetscFunctionBegin;
1000   ierr = PetscTryMethod(mat,"MatMFFDSetPeriod_C",(Mat,PetscInt),(mat,period));CHKERRQ(ierr);
1001   PetscFunctionReturn(0);
1002 }
1003 
1004 #undef __FUNCT__
1005 #define __FUNCT__ "MatMFFDSetFunctionError"
1006 /*@
1007    MatMFFDSetFunctionError - Sets the error_rel for the approximation of
1008    matrix-vector products using finite differences.
1009 
1010    Logically Collective on Mat
1011 
1012    Input Parameters:
1013 +  mat - the matrix free matrix created via MatCreateMFFD() or MatCreateSNESMF()
1014 -  error_rel - relative error (should be set to the square root of
1015                the relative error in the function evaluations)
1016 
1017    Options Database Keys:
1018 +  -mat_mffd_err <error_rel> - Sets error_rel
1019 
1020    Level: advanced
1021 
1022    Notes:
1023    The default matrix-free matrix-vector product routine computes
1024 .vb
1025      F'(u)*a = [F(u+h*a) - F(u)]/h where
1026      h = error_rel*u'a/||a||^2                        if  |u'a| > umin*||a||_{1}
1027        = error_rel*umin*sign(u'a)*||a||_{1}/||a||^2   else
1028 .ve
1029 
1030 .keywords: SNES, matrix-free, parameters
1031 
1032 .seealso: MatCreateSNESMF(),MatMFFDGetH(), MatCreateMFFD(), MATMFFD
1033           MatMFFDSetHHistory(), MatMFFDResetHHistory()
1034 @*/
1035 PetscErrorCode  MatMFFDSetFunctionError(Mat mat,PetscReal error)
1036 {
1037   PetscErrorCode ierr;
1038 
1039   PetscFunctionBegin;
1040   ierr = PetscTryMethod(mat,"MatMFFDSetFunctionError_C",(Mat,PetscReal),(mat,error));CHKERRQ(ierr);
1041   PetscFunctionReturn(0);
1042 }
1043 
1044 #undef __FUNCT__
1045 #define __FUNCT__ "MatMFFDAddNullSpace"
1046 /*@
1047    MatMFFDAddNullSpace - Provides a null space that an operator is
1048    supposed to have.  Since roundoff will create a small component in
1049    the null space, if you know the null space you may have it
1050    automatically removed.
1051 
1052    Logically Collective on Mat
1053 
1054    Input Parameters:
1055 +  J - the matrix-free matrix context
1056 -  nullsp - object created with MatNullSpaceCreate()
1057 
1058    Level: advanced
1059 
1060 .keywords: SNES, matrix-free, null space
1061 
1062 .seealso: MatNullSpaceCreate(), MatMFFDGetH(), MatCreateSNESMF(), MatCreateMFFD(), MATMFFD
1063           MatMFFDSetHHistory(), MatMFFDResetHHistory()
1064 @*/
1065 PetscErrorCode  MatMFFDAddNullSpace(Mat J,MatNullSpace nullsp)
1066 {
1067   PetscErrorCode ierr;
1068 
1069   PetscFunctionBegin;
1070   ierr = PetscTryMethod(J,"MatMFFDAddNullSpace_C",(Mat,MatNullSpace),(J,nullsp));CHKERRQ(ierr);
1071   PetscFunctionReturn(0);
1072 }
1073 
1074 #undef __FUNCT__
1075 #define __FUNCT__ "MatMFFDSetHHistory"
1076 /*@
1077    MatMFFDSetHHistory - Sets an array to collect a history of the
1078    differencing values (h) computed for the matrix-free product.
1079 
1080    Logically Collective on Mat
1081 
1082    Input Parameters:
1083 +  J - the matrix-free matrix context
1084 .  histroy - space to hold the history
1085 -  nhistory - number of entries in history, if more entries are generated than
1086               nhistory, then the later ones are discarded
1087 
1088    Level: advanced
1089 
1090    Notes:
1091    Use MatMFFDResetHHistory() to reset the history counter and collect
1092    a new batch of differencing parameters, h.
1093 
1094 .keywords: SNES, matrix-free, h history, differencing history
1095 
1096 .seealso: MatMFFDGetH(), MatCreateSNESMF(),
1097           MatMFFDResetHHistory(), MatMFFDSetFunctionError()
1098 
1099 @*/
1100 PetscErrorCode  MatMFFDSetHHistory(Mat J,PetscScalar history[],PetscInt nhistory)
1101 {
1102   MatMFFD        ctx = (MatMFFD)J->data;
1103   PetscErrorCode ierr;
1104   PetscBool      match;
1105 
1106   PetscFunctionBegin;
1107   ierr = PetscObjectTypeCompare((PetscObject)J,MATMFFD,&match);CHKERRQ(ierr);
1108   if (!match) SETERRQ(PetscObjectComm((PetscObject)J),PETSC_ERR_ARG_WRONG,"Not a MFFD matrix");
1109   ctx->historyh    = history;
1110   ctx->maxcurrenth = nhistory;
1111   ctx->currenth    = 0.;
1112   PetscFunctionReturn(0);
1113 }
1114 
1115 
1116 #undef __FUNCT__
1117 #define __FUNCT__ "MatMFFDResetHHistory"
1118 /*@
1119    MatMFFDResetHHistory - Resets the counter to zero to begin
1120    collecting a new set of differencing histories.
1121 
1122    Logically Collective on Mat
1123 
1124    Input Parameters:
1125 .  J - the matrix-free matrix context
1126 
1127    Level: advanced
1128 
1129    Notes:
1130    Use MatMFFDSetHHistory() to create the original history counter.
1131 
1132 .keywords: SNES, matrix-free, h history, differencing history
1133 
1134 .seealso: MatMFFDGetH(), MatCreateSNESMF(),
1135           MatMFFDSetHHistory(), MatMFFDSetFunctionError()
1136 
1137 @*/
1138 PetscErrorCode  MatMFFDResetHHistory(Mat J)
1139 {
1140   PetscErrorCode ierr;
1141 
1142   PetscFunctionBegin;
1143   ierr = PetscTryMethod(J,"MatMFFDResetHHistory_C",(Mat),(J));CHKERRQ(ierr);
1144   PetscFunctionReturn(0);
1145 }
1146 
1147 
1148 #undef __FUNCT__
1149 #define __FUNCT__ "MatMFFDSetBase"
1150 /*@
1151     MatMFFDSetBase - Sets the vector U at which matrix vector products of the
1152         Jacobian are computed
1153 
1154     Logically Collective on Mat
1155 
1156     Input Parameters:
1157 +   J - the MatMFFD matrix
1158 .   U - the vector
1159 -   F - (optional) vector that contains F(u) if it has been already computed
1160 
1161     Notes: This is rarely used directly
1162 
1163     If F is provided then it is not recomputed. Otherwise the function is evaluated at the base
1164     point during the first MatMult() after each call to MatMFFDSetBase().
1165 
1166     Level: advanced
1167 
1168 @*/
1169 PetscErrorCode  MatMFFDSetBase(Mat J,Vec U,Vec F)
1170 {
1171   PetscErrorCode ierr;
1172 
1173   PetscFunctionBegin;
1174   PetscValidHeaderSpecific(J,MAT_CLASSID,1);
1175   PetscValidHeaderSpecific(U,VEC_CLASSID,2);
1176   if (F) PetscValidHeaderSpecific(F,VEC_CLASSID,3);
1177   ierr = PetscTryMethod(J,"MatMFFDSetBase_C",(Mat,Vec,Vec),(J,U,F));CHKERRQ(ierr);
1178   PetscFunctionReturn(0);
1179 }
1180 
1181 #undef __FUNCT__
1182 #define __FUNCT__ "MatMFFDSetCheckh"
1183 /*@C
1184     MatMFFDSetCheckh - Sets a function that checks the computed h and adjusts
1185         it to satisfy some criteria
1186 
1187     Logically Collective on Mat
1188 
1189     Input Parameters:
1190 +   J - the MatMFFD matrix
1191 .   fun - the function that checks h
1192 -   ctx - any context needed by the function
1193 
1194     Options Database Keys:
1195 .   -mat_mffd_check_positivity
1196 
1197     Level: advanced
1198 
1199     Notes: For example, MatMFFDSetCheckPositivity() insures that all entries
1200        of U + h*a are non-negative
1201 
1202 .seealso:  MatMFFDSetCheckPositivity()
1203 @*/
1204 PetscErrorCode  MatMFFDSetCheckh(Mat J,PetscErrorCode (*fun)(void*,Vec,Vec,PetscScalar*),void *ctx)
1205 {
1206   PetscErrorCode ierr;
1207 
1208   PetscFunctionBegin;
1209   PetscValidHeaderSpecific(J,MAT_CLASSID,1);
1210   ierr = PetscTryMethod(J,"MatMFFDSetCheckh_C",(Mat,PetscErrorCode (*)(void*,Vec,Vec,PetscScalar*),void*),(J,fun,ctx));CHKERRQ(ierr);
1211   PetscFunctionReturn(0);
1212 }
1213 
1214 #undef __FUNCT__
1215 #define __FUNCT__ "MatMFFDSetCheckPositivity"
1216 /*@
1217     MatMFFDCheckPositivity - Checks that all entries in U + h*a are positive or
1218         zero, decreases h until this is satisfied.
1219 
1220     Logically Collective on Vec
1221 
1222     Input Parameters:
1223 +   U - base vector that is added to
1224 .   a - vector that is added
1225 .   h - scaling factor on a
1226 -   dummy - context variable (unused)
1227 
1228     Options Database Keys:
1229 .   -mat_mffd_check_positivity
1230 
1231     Level: advanced
1232 
1233     Notes: This is rarely used directly, rather it is passed as an argument to
1234            MatMFFDSetCheckh()
1235 
1236 .seealso:  MatMFFDSetCheckh()
1237 @*/
1238 PetscErrorCode  MatMFFDCheckPositivity(void *dummy,Vec U,Vec a,PetscScalar *h)
1239 {
1240   PetscReal      val, minval;
1241   PetscScalar    *u_vec, *a_vec;
1242   PetscErrorCode ierr;
1243   PetscInt       i,n;
1244   MPI_Comm       comm;
1245 
1246   PetscFunctionBegin;
1247   ierr   = PetscObjectGetComm((PetscObject)U,&comm);CHKERRQ(ierr);
1248   ierr   = VecGetArray(U,&u_vec);CHKERRQ(ierr);
1249   ierr   = VecGetArray(a,&a_vec);CHKERRQ(ierr);
1250   ierr   = VecGetLocalSize(U,&n);CHKERRQ(ierr);
1251   minval = PetscAbsScalar(*h*1.01);
1252   for (i=0; i<n; i++) {
1253     if (PetscRealPart(u_vec[i] + *h*a_vec[i]) <= 0.0) {
1254       val = PetscAbsScalar(u_vec[i]/a_vec[i]);
1255       if (val < minval) minval = val;
1256     }
1257   }
1258   ierr = VecRestoreArray(U,&u_vec);CHKERRQ(ierr);
1259   ierr = VecRestoreArray(a,&a_vec);CHKERRQ(ierr);
1260   ierr = MPI_Allreduce(&minval,&val,1,MPIU_REAL,MPIU_MIN,comm);CHKERRQ(ierr);
1261   if (val <= PetscAbsScalar(*h)) {
1262     ierr = PetscInfo2(U,"Scaling back h from %G to %G\n",PetscRealPart(*h),.99*val);CHKERRQ(ierr);
1263     if (PetscRealPart(*h) > 0.0) *h =  0.99*val;
1264     else                         *h = -0.99*val;
1265   }
1266   PetscFunctionReturn(0);
1267 }
1268 
1269 
1270 
1271 
1272 
1273 
1274 
1275