xref: /petsc/src/dm/impls/plex/plex.c (revision 203d8000a098ebbf4c2af227db0fb4abf6106a92)
1 #include <petsc/private/dmpleximpl.h> /*I      "petscdmplex.h"   I*/
2 #include <petsc/private/dmlabelimpl.h>
3 #include <petsc/private/isimpl.h>
4 #include <petsc/private/vecimpl.h>
5 #include <petsc/private/glvisvecimpl.h>
6 #include <petscsf.h>
7 #include <petscds.h>
8 #include <petscdraw.h>
9 #include <petscdmfield.h>
10 #include <petscdmplextransform.h>
11 #include <petscblaslapack.h>
12 
13 /* Logging support */
14 PetscLogEvent DMPLEX_Interpolate, DMPLEX_Partition, DMPLEX_Distribute, DMPLEX_DistributeCones, DMPLEX_DistributeLabels, DMPLEX_DistributeSF, DMPLEX_DistributeOverlap, DMPLEX_DistributeField, DMPLEX_DistributeData, DMPLEX_Migrate, DMPLEX_InterpolateSF, DMPLEX_GlobalToNaturalBegin, DMPLEX_GlobalToNaturalEnd, DMPLEX_NaturalToGlobalBegin, DMPLEX_NaturalToGlobalEnd, DMPLEX_Stratify, DMPLEX_Symmetrize, DMPLEX_Preallocate, DMPLEX_ResidualFEM, DMPLEX_JacobianFEM, DMPLEX_InterpolatorFEM, DMPLEX_InjectorFEM, DMPLEX_IntegralFEM, DMPLEX_CreateGmsh, DMPLEX_RebalanceSharedPoints, DMPLEX_PartSelf, DMPLEX_PartLabelInvert, DMPLEX_PartLabelCreateSF, DMPLEX_PartStratSF, DMPLEX_CreatePointSF, DMPLEX_LocatePoints, DMPLEX_TopologyView, DMPLEX_LabelsView, DMPLEX_CoordinatesView, DMPLEX_SectionView, DMPLEX_GlobalVectorView, DMPLEX_LocalVectorView, DMPLEX_TopologyLoad, DMPLEX_LabelsLoad, DMPLEX_CoordinatesLoad, DMPLEX_SectionLoad, DMPLEX_GlobalVectorLoad, DMPLEX_LocalVectorLoad;
15 PetscLogEvent DMPLEX_RebalBuildGraph, DMPLEX_RebalRewriteSF, DMPLEX_RebalGatherGraph, DMPLEX_RebalPartition, DMPLEX_RebalScatterPart, DMPLEX_Generate, DMPLEX_Transform, DMPLEX_GetLocalOffsets, DMPLEX_Uninterpolate;
16 
17 PetscBool  Plexcite       = PETSC_FALSE;
18 const char PlexCitation[] = "@article{LangeMitchellKnepleyGorman2015,\n"
19                             "title     = {Efficient mesh management in {Firedrake} using {PETSc-DMPlex}},\n"
20                             "author    = {Michael Lange and Lawrence Mitchell and Matthew G. Knepley and Gerard J. Gorman},\n"
21                             "journal   = {SIAM Journal on Scientific Computing},\n"
22                             "volume    = {38},\n"
23                             "number    = {5},\n"
24                             "pages     = {S143--S155},\n"
25                             "eprint    = {http://arxiv.org/abs/1506.07749},\n"
26                             "doi       = {10.1137/15M1026092},\n"
27                             "year      = {2016},\n"
28                             "petsc_uses={DMPlex},\n}\n";
29 
30 PETSC_EXTERN PetscErrorCode VecView_MPI(Vec, PetscViewer);
31 
32 /*@
33   DMPlexIsSimplex - Is the first cell in this mesh a simplex?
34 
35   Input Parameter:
36 . dm - The `DMPLEX` object
37 
38   Output Parameter:
39 . simplex - Flag checking for a simplex
40 
41   Level: intermediate
42 
43   Note:
44   This just gives the first range of cells found. If the mesh has several cell types, it will only give the first.
45   If the mesh has no cells, this returns `PETSC_FALSE`.
46 
47 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetSimplexOrBoxCells()`, `DMPlexGetCellType()`, `DMPlexGetHeightStratum()`, `DMPolytopeTypeGetNumVertices()`
48 @*/
49 PetscErrorCode DMPlexIsSimplex(DM dm, PetscBool *simplex)
50 {
51   DMPolytopeType ct;
52   PetscInt       cStart, cEnd;
53 
54   PetscFunctionBegin;
55   PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
56   if (cEnd <= cStart) {
57     *simplex = PETSC_FALSE;
58     PetscFunctionReturn(PETSC_SUCCESS);
59   }
60   PetscCall(DMPlexGetCellType(dm, cStart, &ct));
61   *simplex = DMPolytopeTypeGetNumVertices(ct) == DMPolytopeTypeGetDim(ct) + 1 ? PETSC_TRUE : PETSC_FALSE;
62   PetscFunctionReturn(PETSC_SUCCESS);
63 }
64 
65 /*@
66   DMPlexGetSimplexOrBoxCells - Get the range of cells which are neither prisms nor ghost FV cells
67 
68   Input Parameters:
69 + dm     - The `DMPLEX` object
70 - height - The cell height in the Plex, 0 is the default
71 
72   Output Parameters:
73 + cStart - The first "normal" cell
74 - cEnd   - The upper bound on "normal" cells
75 
76   Level: developer
77 
78   Note:
79   This function requires that tensor cells are ordered last.
80 
81 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexConstructGhostCells()`, `DMPlexGetCellTypeStratum()`
82 @*/
83 PetscErrorCode DMPlexGetSimplexOrBoxCells(DM dm, PetscInt height, PetscInt *cStart, PetscInt *cEnd)
84 {
85   DMLabel         ctLabel;
86   IS              valueIS;
87   const PetscInt *ctypes;
88   PetscInt        Nct, cS = PETSC_MAX_INT, cE = 0;
89 
90   PetscFunctionBegin;
91   PetscCall(DMPlexGetCellTypeLabel(dm, &ctLabel));
92   PetscCall(DMLabelGetValueIS(ctLabel, &valueIS));
93   PetscCall(ISGetLocalSize(valueIS, &Nct));
94   PetscCall(ISGetIndices(valueIS, &ctypes));
95   if (!Nct) cS = cE = 0;
96   for (PetscInt t = 0; t < Nct; ++t) {
97     const DMPolytopeType ct = (DMPolytopeType)ctypes[t];
98     PetscInt             ctS, ctE, ht;
99 
100     if (ct == DM_POLYTOPE_UNKNOWN) {
101       // If any cells are not typed, just use all cells
102       PetscCall(DMPlexGetHeightStratum(dm, PetscMax(height, 0), cStart, cEnd));
103       break;
104     }
105     if (DMPolytopeTypeIsHybrid(ct) || ct == DM_POLYTOPE_FV_GHOST) continue;
106     PetscCall(DMLabelGetStratumBounds(ctLabel, ct, &ctS, &ctE));
107     if (ctS >= ctE) continue;
108     // Check that a point has the right height
109     PetscCall(DMPlexGetPointHeight(dm, ctS, &ht));
110     if (ht != height) continue;
111     cS = PetscMin(cS, ctS);
112     cE = PetscMax(cE, ctE);
113   }
114   PetscCall(ISDestroy(&valueIS));
115   // Reset label for fast lookup
116   PetscCall(DMLabelMakeAllInvalid_Internal(ctLabel));
117   if (cStart) *cStart = cS;
118   if (cEnd) *cEnd = cE;
119   PetscFunctionReturn(PETSC_SUCCESS);
120 }
121 
122 PetscErrorCode DMPlexGetFieldTypes_Internal(DM dm, PetscSection section, PetscInt field, PetscInt *types, PetscInt **ssStart, PetscInt **ssEnd, PetscViewerVTKFieldType **sft)
123 {
124   PetscInt                 cdim, pStart, pEnd, vStart, vEnd, cStart, cEnd, c, depth, cellHeight, t;
125   PetscInt                *sStart, *sEnd;
126   PetscViewerVTKFieldType *ft;
127   PetscInt                 vcdof[DM_NUM_POLYTOPES + 1], globalvcdof[DM_NUM_POLYTOPES + 1];
128   DMLabel                  depthLabel, ctLabel;
129 
130   PetscFunctionBegin;
131   /* the vcdof and globalvcdof are sized to allow every polytope type and simple vertex at DM_NUM_POLYTOPES */
132   PetscCall(PetscArrayzero(vcdof, DM_NUM_POLYTOPES + 1));
133   PetscCall(DMGetCoordinateDim(dm, &cdim));
134   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
135   PetscCall(PetscSectionGetChart(section, &pStart, &pEnd));
136   if (field >= 0) {
137     if ((vStart >= pStart) && (vStart < pEnd)) PetscCall(PetscSectionGetFieldDof(section, vStart, field, &vcdof[DM_NUM_POLYTOPES]));
138   } else {
139     if ((vStart >= pStart) && (vStart < pEnd)) PetscCall(PetscSectionGetDof(section, vStart, &vcdof[DM_NUM_POLYTOPES]));
140   }
141 
142   PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
143   PetscCall(DMPlexGetDepth(dm, &depth));
144   PetscCall(DMPlexGetDepthLabel(dm, &depthLabel));
145   PetscCall(DMPlexGetCellTypeLabel(dm, &ctLabel));
146   for (c = 0; c < DM_NUM_POLYTOPES; ++c) {
147     const DMPolytopeType ict = (DMPolytopeType)c;
148     PetscInt             dep;
149 
150     if (ict == DM_POLYTOPE_FV_GHOST) continue;
151     PetscCall(DMLabelGetStratumBounds(ctLabel, ict, &cStart, &cEnd));
152     if (pStart >= 0) {
153       PetscCall(DMLabelGetValue(depthLabel, cStart, &dep));
154       if (dep != depth - cellHeight) continue;
155     }
156     if (field >= 0) {
157       if ((cStart >= pStart) && (cStart < pEnd)) PetscCall(PetscSectionGetFieldDof(section, cStart, field, &vcdof[c]));
158     } else {
159       if ((cStart >= pStart) && (cStart < pEnd)) PetscCall(PetscSectionGetDof(section, cStart, &vcdof[c]));
160     }
161   }
162 
163   PetscCall(MPIU_Allreduce(vcdof, globalvcdof, DM_NUM_POLYTOPES + 1, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm)));
164   *types = 0;
165 
166   for (c = 0; c < DM_NUM_POLYTOPES + 1; ++c) {
167     if (globalvcdof[c]) ++(*types);
168   }
169 
170   PetscCall(PetscMalloc3(*types, &sStart, *types, &sEnd, *types, &ft));
171   t = 0;
172   if (globalvcdof[DM_NUM_POLYTOPES]) {
173     sStart[t] = vStart;
174     sEnd[t]   = vEnd;
175     ft[t]     = (globalvcdof[t] == cdim) ? PETSC_VTK_POINT_VECTOR_FIELD : PETSC_VTK_POINT_FIELD;
176     ++t;
177   }
178 
179   for (c = 0; c < DM_NUM_POLYTOPES; ++c) {
180     if (globalvcdof[c]) {
181       const DMPolytopeType ict = (DMPolytopeType)c;
182 
183       PetscCall(DMLabelGetStratumBounds(ctLabel, ict, &cStart, &cEnd));
184       sStart[t] = cStart;
185       sEnd[t]   = cEnd;
186       ft[t]     = (globalvcdof[c] == cdim) ? PETSC_VTK_CELL_VECTOR_FIELD : PETSC_VTK_CELL_FIELD;
187       ++t;
188     }
189   }
190 
191   if (!*types) {
192     if (field >= 0) {
193       const char *fieldname;
194 
195       PetscCall(PetscSectionGetFieldName(section, field, &fieldname));
196       PetscCall(PetscInfo((PetscObject)dm, "Could not classify VTK output type of section field %" PetscInt_FMT " \"%s\"\n", field, fieldname));
197     } else {
198       PetscCall(PetscInfo((PetscObject)dm, "Could not classify VTK output type of section\n"));
199     }
200   }
201 
202   *ssStart = sStart;
203   *ssEnd   = sEnd;
204   *sft     = ft;
205   PetscFunctionReturn(PETSC_SUCCESS);
206 }
207 
208 PetscErrorCode DMPlexRestoreFieldTypes_Internal(DM dm, PetscSection section, PetscInt field, PetscInt *types, PetscInt **sStart, PetscInt **sEnd, PetscViewerVTKFieldType **ft)
209 {
210   PetscFunctionBegin;
211   PetscCall(PetscFree3(*sStart, *sEnd, *ft));
212   PetscFunctionReturn(PETSC_SUCCESS);
213 }
214 
215 PetscErrorCode DMPlexGetFieldType_Internal(DM dm, PetscSection section, PetscInt field, PetscInt *sStart, PetscInt *sEnd, PetscViewerVTKFieldType *ft)
216 {
217   PetscInt cdim, pStart, pEnd, vStart, vEnd, cStart, cEnd;
218   PetscInt vcdof[2] = {0, 0}, globalvcdof[2];
219 
220   PetscFunctionBegin;
221   *ft = PETSC_VTK_INVALID;
222   PetscCall(DMGetCoordinateDim(dm, &cdim));
223   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
224   PetscCall(DMPlexGetSimplexOrBoxCells(dm, 0, &cStart, &cEnd));
225   PetscCall(PetscSectionGetChart(section, &pStart, &pEnd));
226   if (field >= 0) {
227     if ((vStart >= pStart) && (vStart < pEnd)) PetscCall(PetscSectionGetFieldDof(section, vStart, field, &vcdof[0]));
228     if ((cStart >= pStart) && (cStart < pEnd)) PetscCall(PetscSectionGetFieldDof(section, cStart, field, &vcdof[1]));
229   } else {
230     if ((vStart >= pStart) && (vStart < pEnd)) PetscCall(PetscSectionGetDof(section, vStart, &vcdof[0]));
231     if ((cStart >= pStart) && (cStart < pEnd)) PetscCall(PetscSectionGetDof(section, cStart, &vcdof[1]));
232   }
233   PetscCall(MPIU_Allreduce(vcdof, globalvcdof, 2, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm)));
234   if (globalvcdof[0]) {
235     *sStart = vStart;
236     *sEnd   = vEnd;
237     if (globalvcdof[0] == cdim) *ft = PETSC_VTK_POINT_VECTOR_FIELD;
238     else *ft = PETSC_VTK_POINT_FIELD;
239   } else if (globalvcdof[1]) {
240     *sStart = cStart;
241     *sEnd   = cEnd;
242     if (globalvcdof[1] == cdim) *ft = PETSC_VTK_CELL_VECTOR_FIELD;
243     else *ft = PETSC_VTK_CELL_FIELD;
244   } else {
245     if (field >= 0) {
246       const char *fieldname;
247 
248       PetscCall(PetscSectionGetFieldName(section, field, &fieldname));
249       PetscCall(PetscInfo((PetscObject)dm, "Could not classify VTK output type of section field %" PetscInt_FMT " \"%s\"\n", field, fieldname));
250     } else {
251       PetscCall(PetscInfo((PetscObject)dm, "Could not classify VTK output type of section\n"));
252     }
253   }
254   PetscFunctionReturn(PETSC_SUCCESS);
255 }
256 
257 /*@
258   DMPlexVecView1D - Plot many 1D solutions on the same line graph
259 
260   Collective
261 
262   Input Parameters:
263 + dm     - The `DMPLEX` object
264 . n      - The number of vectors
265 . u      - The array of local vectors
266 - viewer - The `PetscViewer`
267 
268   Level: advanced
269 
270 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `VecViewFromOptions()`, `VecView()`
271 @*/
272 PetscErrorCode DMPlexVecView1D(DM dm, PetscInt n, Vec u[], PetscViewer viewer)
273 {
274   PetscDS            ds;
275   PetscDraw          draw = NULL;
276   PetscDrawLG        lg;
277   Vec                coordinates;
278   const PetscScalar *coords, **sol;
279   PetscReal         *vals;
280   PetscInt          *Nc;
281   PetscInt           Nf, f, c, Nl, l, i, vStart, vEnd, v;
282   char             **names;
283 
284   PetscFunctionBegin;
285   PetscCall(DMGetDS(dm, &ds));
286   PetscCall(PetscDSGetNumFields(ds, &Nf));
287   PetscCall(PetscDSGetTotalComponents(ds, &Nl));
288   PetscCall(PetscDSGetComponents(ds, &Nc));
289 
290   PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw));
291   if (!draw) PetscFunctionReturn(PETSC_SUCCESS);
292   PetscCall(PetscDrawLGCreate(draw, n * Nl, &lg));
293 
294   PetscCall(PetscMalloc3(n, &sol, n * Nl, &names, n * Nl, &vals));
295   for (i = 0, l = 0; i < n; ++i) {
296     const char *vname;
297 
298     PetscCall(PetscObjectGetName((PetscObject)u[i], &vname));
299     for (f = 0; f < Nf; ++f) {
300       PetscObject disc;
301       const char *fname;
302       char        tmpname[PETSC_MAX_PATH_LEN];
303 
304       PetscCall(PetscDSGetDiscretization(ds, f, &disc));
305       /* TODO Create names for components */
306       for (c = 0; c < Nc[f]; ++c, ++l) {
307         PetscCall(PetscObjectGetName(disc, &fname));
308         PetscCall(PetscStrncpy(tmpname, vname, sizeof(tmpname)));
309         PetscCall(PetscStrlcat(tmpname, ":", sizeof(tmpname)));
310         PetscCall(PetscStrlcat(tmpname, fname, sizeof(tmpname)));
311         PetscCall(PetscStrallocpy(tmpname, &names[l]));
312       }
313     }
314   }
315   PetscCall(PetscDrawLGSetLegend(lg, (const char *const *)names));
316   /* Just add P_1 support for now */
317   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
318   PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
319   PetscCall(VecGetArrayRead(coordinates, &coords));
320   for (i = 0; i < n; ++i) PetscCall(VecGetArrayRead(u[i], &sol[i]));
321   for (v = vStart; v < vEnd; ++v) {
322     PetscScalar *x, *svals;
323 
324     PetscCall(DMPlexPointLocalRead(dm, v, coords, &x));
325     for (i = 0; i < n; ++i) {
326       PetscCall(DMPlexPointLocalRead(dm, v, sol[i], &svals));
327       for (l = 0; l < Nl; ++l) vals[i * Nl + l] = PetscRealPart(svals[l]);
328     }
329     PetscCall(PetscDrawLGAddCommonPoint(lg, PetscRealPart(x[0]), vals));
330   }
331   PetscCall(VecRestoreArrayRead(coordinates, &coords));
332   for (i = 0; i < n; ++i) PetscCall(VecRestoreArrayRead(u[i], &sol[i]));
333   for (l = 0; l < n * Nl; ++l) PetscCall(PetscFree(names[l]));
334   PetscCall(PetscFree3(sol, names, vals));
335 
336   PetscCall(PetscDrawLGDraw(lg));
337   PetscCall(PetscDrawLGDestroy(&lg));
338   PetscFunctionReturn(PETSC_SUCCESS);
339 }
340 
341 static PetscErrorCode VecView_Plex_Local_Draw_1D(Vec u, PetscViewer viewer)
342 {
343   DM dm;
344 
345   PetscFunctionBegin;
346   PetscCall(VecGetDM(u, &dm));
347   PetscCall(DMPlexVecView1D(dm, 1, &u, viewer));
348   PetscFunctionReturn(PETSC_SUCCESS);
349 }
350 
351 static PetscErrorCode VecView_Plex_Local_Draw_2D(Vec v, PetscViewer viewer)
352 {
353   DM                 dm;
354   PetscSection       s;
355   PetscDraw          draw, popup;
356   DM                 cdm;
357   PetscSection       coordSection;
358   Vec                coordinates;
359   const PetscScalar *array;
360   PetscReal          lbound[3], ubound[3];
361   PetscReal          vbound[2], time;
362   PetscBool          flg;
363   PetscInt           dim, Nf, f, Nc, comp, vStart, vEnd, cStart, cEnd, c, N, level, step, w = 0;
364   const char        *name;
365   char               title[PETSC_MAX_PATH_LEN];
366 
367   PetscFunctionBegin;
368   PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw));
369   PetscCall(VecGetDM(v, &dm));
370   PetscCall(DMGetCoordinateDim(dm, &dim));
371   PetscCall(DMGetLocalSection(dm, &s));
372   PetscCall(PetscSectionGetNumFields(s, &Nf));
373   PetscCall(DMGetCoarsenLevel(dm, &level));
374   PetscCall(DMGetCoordinateDM(dm, &cdm));
375   PetscCall(DMGetLocalSection(cdm, &coordSection));
376   PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
377   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
378   PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
379 
380   PetscCall(PetscObjectGetName((PetscObject)v, &name));
381   PetscCall(DMGetOutputSequenceNumber(dm, &step, &time));
382 
383   PetscCall(VecGetLocalSize(coordinates, &N));
384   PetscCall(DMGetBoundingBox(dm, lbound, ubound));
385   PetscCall(PetscDrawClear(draw));
386 
387   /* Could implement something like DMDASelectFields() */
388   for (f = 0; f < Nf; ++f) {
389     DM          fdm = dm;
390     Vec         fv  = v;
391     IS          fis;
392     char        prefix[PETSC_MAX_PATH_LEN];
393     const char *fname;
394 
395     PetscCall(PetscSectionGetFieldComponents(s, f, &Nc));
396     PetscCall(PetscSectionGetFieldName(s, f, &fname));
397 
398     if (v->hdr.prefix) PetscCall(PetscStrncpy(prefix, v->hdr.prefix, sizeof(prefix)));
399     else prefix[0] = '\0';
400     if (Nf > 1) {
401       PetscCall(DMCreateSubDM(dm, 1, &f, &fis, &fdm));
402       PetscCall(VecGetSubVector(v, fis, &fv));
403       PetscCall(PetscStrlcat(prefix, fname, sizeof(prefix)));
404       PetscCall(PetscStrlcat(prefix, "_", sizeof(prefix)));
405     }
406     for (comp = 0; comp < Nc; ++comp, ++w) {
407       PetscInt nmax = 2;
408 
409       PetscCall(PetscViewerDrawGetDraw(viewer, w, &draw));
410       if (Nc > 1) PetscCall(PetscSNPrintf(title, sizeof(title), "%s:%s_%" PetscInt_FMT " Step: %" PetscInt_FMT " Time: %.4g", name, fname, comp, step, (double)time));
411       else PetscCall(PetscSNPrintf(title, sizeof(title), "%s:%s Step: %" PetscInt_FMT " Time: %.4g", name, fname, step, (double)time));
412       PetscCall(PetscDrawSetTitle(draw, title));
413 
414       /* TODO Get max and min only for this component */
415       PetscCall(PetscOptionsGetRealArray(NULL, prefix, "-vec_view_bounds", vbound, &nmax, &flg));
416       if (!flg) {
417         PetscCall(VecMin(fv, NULL, &vbound[0]));
418         PetscCall(VecMax(fv, NULL, &vbound[1]));
419         if (vbound[1] <= vbound[0]) vbound[1] = vbound[0] + 1.0;
420       }
421 
422       PetscCall(PetscDrawGetPopup(draw, &popup));
423       PetscCall(PetscDrawScalePopup(popup, vbound[0], vbound[1]));
424       PetscCall(PetscDrawSetCoordinates(draw, lbound[0], lbound[1], ubound[0], ubound[1]));
425       PetscCall(VecGetArrayRead(fv, &array));
426       for (c = cStart; c < cEnd; ++c) {
427         PetscScalar       *coords = NULL, *a = NULL;
428         const PetscScalar *coords_arr;
429         PetscBool          isDG;
430         PetscInt           numCoords, color[4] = {-1, -1, -1, -1};
431 
432         PetscCall(DMPlexPointLocalRead(fdm, c, array, &a));
433         if (a) {
434           color[0] = PetscDrawRealToColor(PetscRealPart(a[comp]), vbound[0], vbound[1]);
435           color[1] = color[2] = color[3] = color[0];
436         } else {
437           PetscScalar *vals = NULL;
438           PetscInt     numVals, va;
439 
440           PetscCall(DMPlexVecGetClosure(fdm, NULL, fv, c, &numVals, &vals));
441           PetscCheck(numVals % Nc == 0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "The number of components %" PetscInt_FMT " does not divide the number of values in the closure %" PetscInt_FMT, Nc, numVals);
442           switch (numVals / Nc) {
443           case 3: /* P1 Triangle */
444           case 4: /* P1 Quadrangle */
445             for (va = 0; va < numVals / Nc; ++va) color[va] = PetscDrawRealToColor(PetscRealPart(vals[va * Nc + comp]), vbound[0], vbound[1]);
446             break;
447           case 6: /* P2 Triangle */
448           case 8: /* P2 Quadrangle */
449             for (va = 0; va < numVals / (Nc * 2); ++va) color[va] = PetscDrawRealToColor(PetscRealPart(vals[va * Nc + comp + numVals / (Nc * 2)]), vbound[0], vbound[1]);
450             break;
451           default:
452             SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Number of values for cell closure %" PetscInt_FMT " cannot be handled", numVals / Nc);
453           }
454           PetscCall(DMPlexVecRestoreClosure(fdm, NULL, fv, c, &numVals, &vals));
455         }
456         PetscCall(DMPlexGetCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords));
457         switch (numCoords) {
458         case 6:
459         case 12: /* Localized triangle */
460           PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), color[0], color[1], color[2]));
461           break;
462         case 8:
463         case 16: /* Localized quadrilateral */
464           PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), color[0], color[1], color[2]));
465           PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), color[2], color[3], color[0]));
466           break;
467         default:
468           SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells with %" PetscInt_FMT " coordinates", numCoords);
469         }
470         PetscCall(DMPlexRestoreCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords));
471       }
472       PetscCall(VecRestoreArrayRead(fv, &array));
473       PetscCall(PetscDrawFlush(draw));
474       PetscCall(PetscDrawPause(draw));
475       PetscCall(PetscDrawSave(draw));
476     }
477     if (Nf > 1) {
478       PetscCall(VecRestoreSubVector(v, fis, &fv));
479       PetscCall(ISDestroy(&fis));
480       PetscCall(DMDestroy(&fdm));
481     }
482   }
483   PetscFunctionReturn(PETSC_SUCCESS);
484 }
485 
486 static PetscErrorCode VecView_Plex_Local_Draw(Vec v, PetscViewer viewer)
487 {
488   DM        dm;
489   PetscDraw draw;
490   PetscInt  dim;
491   PetscBool isnull;
492 
493   PetscFunctionBegin;
494   PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw));
495   PetscCall(PetscDrawIsNull(draw, &isnull));
496   if (isnull) PetscFunctionReturn(PETSC_SUCCESS);
497 
498   PetscCall(VecGetDM(v, &dm));
499   PetscCall(DMGetCoordinateDim(dm, &dim));
500   switch (dim) {
501   case 1:
502     PetscCall(VecView_Plex_Local_Draw_1D(v, viewer));
503     break;
504   case 2:
505     PetscCall(VecView_Plex_Local_Draw_2D(v, viewer));
506     break;
507   default:
508     SETERRQ(PetscObjectComm((PetscObject)v), PETSC_ERR_SUP, "Cannot draw meshes of dimension %" PetscInt_FMT ". Try PETSCVIEWERGLVIS", dim);
509   }
510   PetscFunctionReturn(PETSC_SUCCESS);
511 }
512 
513 static PetscErrorCode VecView_Plex_Local_VTK(Vec v, PetscViewer viewer)
514 {
515   DM                      dm;
516   Vec                     locv;
517   const char             *name;
518   PetscSection            section;
519   PetscInt                pStart, pEnd;
520   PetscInt                numFields;
521   PetscViewerVTKFieldType ft;
522 
523   PetscFunctionBegin;
524   PetscCall(VecGetDM(v, &dm));
525   PetscCall(DMCreateLocalVector(dm, &locv)); /* VTK viewer requires exclusive ownership of the vector */
526   PetscCall(PetscObjectGetName((PetscObject)v, &name));
527   PetscCall(PetscObjectSetName((PetscObject)locv, name));
528   PetscCall(VecCopy(v, locv));
529   PetscCall(DMGetLocalSection(dm, &section));
530   PetscCall(PetscSectionGetNumFields(section, &numFields));
531   if (!numFields) {
532     PetscCall(DMPlexGetFieldType_Internal(dm, section, PETSC_DETERMINE, &pStart, &pEnd, &ft));
533     PetscCall(PetscViewerVTKAddField(viewer, (PetscObject)dm, DMPlexVTKWriteAll, PETSC_DEFAULT, ft, PETSC_TRUE, (PetscObject)locv));
534   } else {
535     PetscInt f;
536 
537     for (f = 0; f < numFields; f++) {
538       PetscCall(DMPlexGetFieldType_Internal(dm, section, f, &pStart, &pEnd, &ft));
539       if (ft == PETSC_VTK_INVALID) continue;
540       PetscCall(PetscObjectReference((PetscObject)locv));
541       PetscCall(PetscViewerVTKAddField(viewer, (PetscObject)dm, DMPlexVTKWriteAll, f, ft, PETSC_TRUE, (PetscObject)locv));
542     }
543     PetscCall(VecDestroy(&locv));
544   }
545   PetscFunctionReturn(PETSC_SUCCESS);
546 }
547 
548 PetscErrorCode VecView_Plex_Local(Vec v, PetscViewer viewer)
549 {
550   DM        dm;
551   PetscBool isvtk, ishdf5, isdraw, isglvis, iscgns;
552 
553   PetscFunctionBegin;
554   PetscCall(VecGetDM(v, &dm));
555   PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM");
556   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk));
557   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
558   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw));
559   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERGLVIS, &isglvis));
560   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERCGNS, &iscgns));
561   if (isvtk || ishdf5 || isdraw || isglvis || iscgns) {
562     PetscInt    i, numFields;
563     PetscObject fe;
564     PetscBool   fem  = PETSC_FALSE;
565     Vec         locv = v;
566     const char *name;
567     PetscInt    step;
568     PetscReal   time;
569 
570     PetscCall(DMGetNumFields(dm, &numFields));
571     for (i = 0; i < numFields; i++) {
572       PetscCall(DMGetField(dm, i, NULL, &fe));
573       if (fe->classid == PETSCFE_CLASSID) {
574         fem = PETSC_TRUE;
575         break;
576       }
577     }
578     if (fem) {
579       PetscObject isZero;
580 
581       PetscCall(DMGetLocalVector(dm, &locv));
582       PetscCall(PetscObjectGetName((PetscObject)v, &name));
583       PetscCall(PetscObjectSetName((PetscObject)locv, name));
584       PetscCall(PetscObjectQuery((PetscObject)v, "__Vec_bc_zero__", &isZero));
585       PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", isZero));
586       PetscCall(VecCopy(v, locv));
587       PetscCall(DMGetOutputSequenceNumber(dm, NULL, &time));
588       PetscCall(DMPlexInsertBoundaryValues(dm, PETSC_TRUE, locv, time, NULL, NULL, NULL));
589     }
590     if (isvtk) {
591       PetscCall(VecView_Plex_Local_VTK(locv, viewer));
592     } else if (ishdf5) {
593 #if defined(PETSC_HAVE_HDF5)
594       PetscCall(VecView_Plex_Local_HDF5_Internal(locv, viewer));
595 #else
596       SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
597 #endif
598     } else if (isdraw) {
599       PetscCall(VecView_Plex_Local_Draw(locv, viewer));
600     } else if (isglvis) {
601       PetscCall(DMGetOutputSequenceNumber(dm, &step, NULL));
602       PetscCall(PetscViewerGLVisSetSnapId(viewer, step));
603       PetscCall(VecView_GLVis(locv, viewer));
604     } else if (iscgns) {
605 #if defined(PETSC_HAVE_CGNS)
606       PetscCall(VecView_Plex_Local_CGNS(locv, viewer));
607 #else
608       SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "CGNS not supported in this build.\nPlease reconfigure using --download-cgns");
609 #endif
610     }
611     if (fem) {
612       PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", NULL));
613       PetscCall(DMRestoreLocalVector(dm, &locv));
614     }
615   } else {
616     PetscBool isseq;
617 
618     PetscCall(PetscObjectTypeCompare((PetscObject)v, VECSEQ, &isseq));
619     if (isseq) PetscCall(VecView_Seq(v, viewer));
620     else PetscCall(VecView_MPI(v, viewer));
621   }
622   PetscFunctionReturn(PETSC_SUCCESS);
623 }
624 
625 PetscErrorCode VecView_Plex(Vec v, PetscViewer viewer)
626 {
627   DM        dm;
628   PetscBool isvtk, ishdf5, isdraw, isglvis, isexodusii, iscgns;
629 
630   PetscFunctionBegin;
631   PetscCall(VecGetDM(v, &dm));
632   PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM");
633   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk));
634   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
635   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw));
636   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERGLVIS, &isglvis));
637   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERCGNS, &iscgns));
638   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWEREXODUSII, &isexodusii));
639   if (isvtk || isdraw || isglvis || iscgns) {
640     Vec         locv;
641     PetscObject isZero;
642     const char *name;
643 
644     PetscCall(DMGetLocalVector(dm, &locv));
645     PetscCall(PetscObjectGetName((PetscObject)v, &name));
646     PetscCall(PetscObjectSetName((PetscObject)locv, name));
647     PetscCall(DMGlobalToLocalBegin(dm, v, INSERT_VALUES, locv));
648     PetscCall(DMGlobalToLocalEnd(dm, v, INSERT_VALUES, locv));
649     PetscCall(PetscObjectQuery((PetscObject)v, "__Vec_bc_zero__", &isZero));
650     PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", isZero));
651     PetscCall(VecView_Plex_Local(locv, viewer));
652     PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", NULL));
653     PetscCall(DMRestoreLocalVector(dm, &locv));
654   } else if (ishdf5) {
655 #if defined(PETSC_HAVE_HDF5)
656     PetscCall(VecView_Plex_HDF5_Internal(v, viewer));
657 #else
658     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
659 #endif
660   } else if (isexodusii) {
661 #if defined(PETSC_HAVE_EXODUSII)
662     PetscCall(VecView_PlexExodusII_Internal(v, viewer));
663 #else
664     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "ExodusII not supported in this build.\nPlease reconfigure using --download-exodusii");
665 #endif
666   } else {
667     PetscBool isseq;
668 
669     PetscCall(PetscObjectTypeCompare((PetscObject)v, VECSEQ, &isseq));
670     if (isseq) PetscCall(VecView_Seq(v, viewer));
671     else PetscCall(VecView_MPI(v, viewer));
672   }
673   PetscFunctionReturn(PETSC_SUCCESS);
674 }
675 
676 PetscErrorCode VecView_Plex_Native(Vec originalv, PetscViewer viewer)
677 {
678   DM                dm;
679   MPI_Comm          comm;
680   PetscViewerFormat format;
681   Vec               v;
682   PetscBool         isvtk, ishdf5;
683 
684   PetscFunctionBegin;
685   PetscCall(VecGetDM(originalv, &dm));
686   PetscCall(PetscObjectGetComm((PetscObject)originalv, &comm));
687   PetscCheck(dm, comm, PETSC_ERR_ARG_WRONG, "Vector not generated from a DM");
688   PetscCall(PetscViewerGetFormat(viewer, &format));
689   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
690   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk));
691   if (format == PETSC_VIEWER_NATIVE) {
692     /* Natural ordering is the common case for DMDA, NATIVE means plain vector, for PLEX is the opposite */
693     /* this need a better fix */
694     if (dm->useNatural) {
695       if (dm->sfNatural) {
696         const char *vecname;
697         PetscInt    n, nroots;
698 
699         PetscCall(VecGetLocalSize(originalv, &n));
700         PetscCall(PetscSFGetGraph(dm->sfNatural, &nroots, NULL, NULL, NULL));
701         if (n == nroots) {
702           PetscCall(DMPlexCreateNaturalVector(dm, &v));
703           PetscCall(DMPlexGlobalToNaturalBegin(dm, originalv, v));
704           PetscCall(DMPlexGlobalToNaturalEnd(dm, originalv, v));
705           PetscCall(PetscObjectGetName((PetscObject)originalv, &vecname));
706           PetscCall(PetscObjectSetName((PetscObject)v, vecname));
707         } else SETERRQ(comm, PETSC_ERR_ARG_WRONG, "DM global to natural SF only handles global vectors");
708       } else SETERRQ(comm, PETSC_ERR_ARG_WRONGSTATE, "DM global to natural SF was not created");
709     } else v = originalv;
710   } else v = originalv;
711 
712   if (ishdf5) {
713 #if defined(PETSC_HAVE_HDF5)
714     PetscCall(VecView_Plex_HDF5_Native_Internal(v, viewer));
715 #else
716     SETERRQ(comm, PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
717 #endif
718   } else if (isvtk) {
719     SETERRQ(comm, PETSC_ERR_SUP, "VTK format does not support viewing in natural order. Please switch to HDF5.");
720   } else {
721     PetscBool isseq;
722 
723     PetscCall(PetscObjectTypeCompare((PetscObject)v, VECSEQ, &isseq));
724     if (isseq) PetscCall(VecView_Seq(v, viewer));
725     else PetscCall(VecView_MPI(v, viewer));
726   }
727   if (v != originalv) PetscCall(VecDestroy(&v));
728   PetscFunctionReturn(PETSC_SUCCESS);
729 }
730 
731 PetscErrorCode VecLoad_Plex_Local(Vec v, PetscViewer viewer)
732 {
733   DM        dm;
734   PetscBool ishdf5;
735 
736   PetscFunctionBegin;
737   PetscCall(VecGetDM(v, &dm));
738   PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM");
739   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
740   if (ishdf5) {
741     DM          dmBC;
742     Vec         gv;
743     const char *name;
744 
745     PetscCall(DMGetOutputDM(dm, &dmBC));
746     PetscCall(DMGetGlobalVector(dmBC, &gv));
747     PetscCall(PetscObjectGetName((PetscObject)v, &name));
748     PetscCall(PetscObjectSetName((PetscObject)gv, name));
749     PetscCall(VecLoad_Default(gv, viewer));
750     PetscCall(DMGlobalToLocalBegin(dmBC, gv, INSERT_VALUES, v));
751     PetscCall(DMGlobalToLocalEnd(dmBC, gv, INSERT_VALUES, v));
752     PetscCall(DMRestoreGlobalVector(dmBC, &gv));
753   } else PetscCall(VecLoad_Default(v, viewer));
754   PetscFunctionReturn(PETSC_SUCCESS);
755 }
756 
757 PetscErrorCode VecLoad_Plex(Vec v, PetscViewer viewer)
758 {
759   DM        dm;
760   PetscBool ishdf5, isexodusii;
761 
762   PetscFunctionBegin;
763   PetscCall(VecGetDM(v, &dm));
764   PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM");
765   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
766   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWEREXODUSII, &isexodusii));
767   if (ishdf5) {
768 #if defined(PETSC_HAVE_HDF5)
769     PetscCall(VecLoad_Plex_HDF5_Internal(v, viewer));
770 #else
771     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
772 #endif
773   } else if (isexodusii) {
774 #if defined(PETSC_HAVE_EXODUSII)
775     PetscCall(VecLoad_PlexExodusII_Internal(v, viewer));
776 #else
777     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "ExodusII not supported in this build.\nPlease reconfigure using --download-exodusii");
778 #endif
779   } else PetscCall(VecLoad_Default(v, viewer));
780   PetscFunctionReturn(PETSC_SUCCESS);
781 }
782 
783 PetscErrorCode VecLoad_Plex_Native(Vec originalv, PetscViewer viewer)
784 {
785   DM                dm;
786   PetscViewerFormat format;
787   PetscBool         ishdf5;
788 
789   PetscFunctionBegin;
790   PetscCall(VecGetDM(originalv, &dm));
791   PetscCheck(dm, PetscObjectComm((PetscObject)originalv), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM");
792   PetscCall(PetscViewerGetFormat(viewer, &format));
793   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
794   if (format == PETSC_VIEWER_NATIVE) {
795     if (dm->useNatural) {
796       if (dm->sfNatural) {
797         if (ishdf5) {
798 #if defined(PETSC_HAVE_HDF5)
799           Vec         v;
800           const char *vecname;
801 
802           PetscCall(DMPlexCreateNaturalVector(dm, &v));
803           PetscCall(PetscObjectGetName((PetscObject)originalv, &vecname));
804           PetscCall(PetscObjectSetName((PetscObject)v, vecname));
805           PetscCall(VecLoad_Plex_HDF5_Native_Internal(v, viewer));
806           PetscCall(DMPlexNaturalToGlobalBegin(dm, v, originalv));
807           PetscCall(DMPlexNaturalToGlobalEnd(dm, v, originalv));
808           PetscCall(VecDestroy(&v));
809 #else
810           SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
811 #endif
812         } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Reading in natural order is not supported for anything but HDF5.");
813       }
814     } else PetscCall(VecLoad_Default(originalv, viewer));
815   }
816   PetscFunctionReturn(PETSC_SUCCESS);
817 }
818 
819 PETSC_UNUSED static PetscErrorCode DMPlexView_Ascii_Geometry(DM dm, PetscViewer viewer)
820 {
821   PetscSection       coordSection;
822   Vec                coordinates;
823   DMLabel            depthLabel, celltypeLabel;
824   const char        *name[4];
825   const PetscScalar *a;
826   PetscInt           dim, pStart, pEnd, cStart, cEnd, c;
827 
828   PetscFunctionBegin;
829   PetscCall(DMGetDimension(dm, &dim));
830   PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
831   PetscCall(DMGetCoordinateSection(dm, &coordSection));
832   PetscCall(DMPlexGetDepthLabel(dm, &depthLabel));
833   PetscCall(DMPlexGetCellTypeLabel(dm, &celltypeLabel));
834   PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
835   PetscCall(PetscSectionGetChart(coordSection, &pStart, &pEnd));
836   PetscCall(VecGetArrayRead(coordinates, &a));
837   name[0]       = "vertex";
838   name[1]       = "edge";
839   name[dim - 1] = "face";
840   name[dim]     = "cell";
841   for (c = cStart; c < cEnd; ++c) {
842     PetscInt *closure = NULL;
843     PetscInt  closureSize, cl, ct;
844 
845     PetscCall(DMLabelGetValue(celltypeLabel, c, &ct));
846     PetscCall(PetscViewerASCIIPrintf(viewer, "Geometry for cell %" PetscInt_FMT " polytope type %s:\n", c, DMPolytopeTypes[ct]));
847     PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
848     PetscCall(PetscViewerASCIIPushTab(viewer));
849     for (cl = 0; cl < closureSize * 2; cl += 2) {
850       PetscInt point = closure[cl], depth, dof, off, d, p;
851 
852       if ((point < pStart) || (point >= pEnd)) continue;
853       PetscCall(PetscSectionGetDof(coordSection, point, &dof));
854       if (!dof) continue;
855       PetscCall(DMLabelGetValue(depthLabel, point, &depth));
856       PetscCall(PetscSectionGetOffset(coordSection, point, &off));
857       PetscCall(PetscViewerASCIIPrintf(viewer, "%s %" PetscInt_FMT " coords:", name[depth], point));
858       for (p = 0; p < dof / dim; ++p) {
859         PetscCall(PetscViewerASCIIPrintf(viewer, " ("));
860         for (d = 0; d < dim; ++d) {
861           if (d > 0) PetscCall(PetscViewerASCIIPrintf(viewer, ", "));
862           PetscCall(PetscViewerASCIIPrintf(viewer, "%g", (double)PetscRealPart(a[off + p * dim + d])));
863         }
864         PetscCall(PetscViewerASCIIPrintf(viewer, ")"));
865       }
866       PetscCall(PetscViewerASCIIPrintf(viewer, "\n"));
867     }
868     PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
869     PetscCall(PetscViewerASCIIPopTab(viewer));
870   }
871   PetscCall(VecRestoreArrayRead(coordinates, &a));
872   PetscFunctionReturn(PETSC_SUCCESS);
873 }
874 
875 typedef enum {
876   CS_CARTESIAN,
877   CS_POLAR,
878   CS_CYLINDRICAL,
879   CS_SPHERICAL
880 } CoordSystem;
881 const char *CoordSystems[] = {"cartesian", "polar", "cylindrical", "spherical", "CoordSystem", "CS_", NULL};
882 
883 static PetscErrorCode DMPlexView_Ascii_Coordinates(PetscViewer viewer, CoordSystem cs, PetscInt dim, const PetscScalar x[])
884 {
885   PetscInt i;
886 
887   PetscFunctionBegin;
888   if (dim > 3) {
889     for (i = 0; i < dim; ++i) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " %g", (double)PetscRealPart(x[i])));
890   } else {
891     PetscReal coords[3], trcoords[3] = {0., 0., 0.};
892 
893     for (i = 0; i < dim; ++i) coords[i] = PetscRealPart(x[i]);
894     switch (cs) {
895     case CS_CARTESIAN:
896       for (i = 0; i < dim; ++i) trcoords[i] = coords[i];
897       break;
898     case CS_POLAR:
899       PetscCheck(dim == 2, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Polar coordinates are for 2 dimension, not %" PetscInt_FMT, dim);
900       trcoords[0] = PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1]));
901       trcoords[1] = PetscAtan2Real(coords[1], coords[0]);
902       break;
903     case CS_CYLINDRICAL:
904       PetscCheck(dim == 3, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cylindrical coordinates are for 3 dimension, not %" PetscInt_FMT, dim);
905       trcoords[0] = PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1]));
906       trcoords[1] = PetscAtan2Real(coords[1], coords[0]);
907       trcoords[2] = coords[2];
908       break;
909     case CS_SPHERICAL:
910       PetscCheck(dim == 3, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Spherical coordinates are for 3 dimension, not %" PetscInt_FMT, dim);
911       trcoords[0] = PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1]) + PetscSqr(coords[2]));
912       trcoords[1] = PetscAtan2Real(PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1])), coords[2]);
913       trcoords[2] = PetscAtan2Real(coords[1], coords[0]);
914       break;
915     }
916     for (i = 0; i < dim; ++i) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " %g", (double)trcoords[i]));
917   }
918   PetscFunctionReturn(PETSC_SUCCESS);
919 }
920 
921 static PetscErrorCode DMPlexView_Ascii(DM dm, PetscViewer viewer)
922 {
923   DM_Plex          *mesh = (DM_Plex *)dm->data;
924   DM                cdm, cdmCell;
925   PetscSection      coordSection, coordSectionCell;
926   Vec               coordinates, coordinatesCell;
927   PetscViewerFormat format;
928 
929   PetscFunctionBegin;
930   PetscCall(PetscViewerGetFormat(viewer, &format));
931   if (format == PETSC_VIEWER_ASCII_INFO_DETAIL) {
932     const char *name;
933     PetscInt    dim, cellHeight, maxConeSize, maxSupportSize;
934     PetscInt    pStart, pEnd, p, numLabels, l;
935     PetscMPIInt rank, size;
936 
937     PetscCall(DMGetCoordinateDM(dm, &cdm));
938     PetscCall(DMGetCoordinateSection(dm, &coordSection));
939     PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
940     PetscCall(DMGetCellCoordinateDM(dm, &cdmCell));
941     PetscCall(DMGetCellCoordinateSection(dm, &coordSectionCell));
942     PetscCall(DMGetCellCoordinatesLocal(dm, &coordinatesCell));
943     PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
944     PetscCallMPI(MPI_Comm_size(PetscObjectComm((PetscObject)dm), &size));
945     PetscCall(PetscObjectGetName((PetscObject)dm, &name));
946     PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
947     PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize));
948     PetscCall(DMGetDimension(dm, &dim));
949     PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
950     if (name) PetscCall(PetscViewerASCIIPrintf(viewer, "%s in %" PetscInt_FMT " dimension%s:\n", name, dim, dim == 1 ? "" : "s"));
951     else PetscCall(PetscViewerASCIIPrintf(viewer, "Mesh in %" PetscInt_FMT " dimension%s:\n", dim, dim == 1 ? "" : "s"));
952     if (cellHeight) PetscCall(PetscViewerASCIIPrintf(viewer, "  Cells are at height %" PetscInt_FMT "\n", cellHeight));
953     PetscCall(PetscViewerASCIIPrintf(viewer, "Supports:\n"));
954     PetscCall(PetscViewerASCIIPushSynchronized(viewer));
955     PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d] Max support size: %" PetscInt_FMT "\n", rank, maxSupportSize));
956     for (p = pStart; p < pEnd; ++p) {
957       PetscInt dof, off, s;
958 
959       PetscCall(PetscSectionGetDof(mesh->supportSection, p, &dof));
960       PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off));
961       for (s = off; s < off + dof; ++s) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d]: %" PetscInt_FMT " ----> %" PetscInt_FMT "\n", rank, p, mesh->supports[s]));
962     }
963     PetscCall(PetscViewerFlush(viewer));
964     PetscCall(PetscViewerASCIIPrintf(viewer, "Cones:\n"));
965     PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d] Max cone size: %" PetscInt_FMT "\n", rank, maxConeSize));
966     for (p = pStart; p < pEnd; ++p) {
967       PetscInt dof, off, c;
968 
969       PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
970       PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
971       for (c = off; c < off + dof; ++c) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d]: %" PetscInt_FMT " <---- %" PetscInt_FMT " (%" PetscInt_FMT ")\n", rank, p, mesh->cones[c], mesh->coneOrientations[c]));
972     }
973     PetscCall(PetscViewerFlush(viewer));
974     PetscCall(PetscViewerASCIIPopSynchronized(viewer));
975     if (coordSection && coordinates) {
976       CoordSystem        cs = CS_CARTESIAN;
977       const PetscScalar *array, *arrayCell = NULL;
978       PetscInt           Nf, Nc, pvStart, pvEnd, pcStart = PETSC_MAX_INT, pcEnd = PETSC_MIN_INT, pStart, pEnd, p;
979       PetscMPIInt        rank;
980       const char        *name;
981 
982       PetscCall(PetscOptionsGetEnum(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_coord_system", CoordSystems, (PetscEnum *)&cs, NULL));
983       PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)viewer), &rank));
984       PetscCall(PetscSectionGetNumFields(coordSection, &Nf));
985       PetscCheck(Nf == 1, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Coordinate section should have 1 field, not %" PetscInt_FMT, Nf);
986       PetscCall(PetscSectionGetFieldComponents(coordSection, 0, &Nc));
987       PetscCall(PetscSectionGetChart(coordSection, &pvStart, &pvEnd));
988       if (coordSectionCell) PetscCall(PetscSectionGetChart(coordSectionCell, &pcStart, &pcEnd));
989       pStart = PetscMin(pvStart, pcStart);
990       pEnd   = PetscMax(pvEnd, pcEnd);
991       PetscCall(PetscObjectGetName((PetscObject)coordinates, &name));
992       PetscCall(PetscViewerASCIIPrintf(viewer, "%s with %" PetscInt_FMT " fields\n", name, Nf));
993       PetscCall(PetscViewerASCIIPrintf(viewer, "  field 0 with %" PetscInt_FMT " components\n", Nc));
994       if (cs != CS_CARTESIAN) PetscCall(PetscViewerASCIIPrintf(viewer, "  output coordinate system: %s\n", CoordSystems[cs]));
995 
996       PetscCall(VecGetArrayRead(coordinates, &array));
997       if (coordinatesCell) PetscCall(VecGetArrayRead(coordinatesCell, &arrayCell));
998       PetscCall(PetscViewerASCIIPushSynchronized(viewer));
999       PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "Process %d:\n", rank));
1000       for (p = pStart; p < pEnd; ++p) {
1001         PetscInt dof, off;
1002 
1003         if (p >= pvStart && p < pvEnd) {
1004           PetscCall(PetscSectionGetDof(coordSection, p, &dof));
1005           PetscCall(PetscSectionGetOffset(coordSection, p, &off));
1006           if (dof) {
1007             PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "  (%4" PetscInt_FMT ") dim %2" PetscInt_FMT " offset %3" PetscInt_FMT, p, dof, off));
1008             PetscCall(DMPlexView_Ascii_Coordinates(viewer, cs, dof, &array[off]));
1009             PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\n"));
1010           }
1011         }
1012         if (cdmCell && p >= pcStart && p < pcEnd) {
1013           PetscCall(PetscSectionGetDof(coordSectionCell, p, &dof));
1014           PetscCall(PetscSectionGetOffset(coordSectionCell, p, &off));
1015           if (dof) {
1016             PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "  (%4" PetscInt_FMT ") dim %2" PetscInt_FMT " offset %3" PetscInt_FMT, p, dof, off));
1017             PetscCall(DMPlexView_Ascii_Coordinates(viewer, cs, dof, &arrayCell[off]));
1018             PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\n"));
1019           }
1020         }
1021       }
1022       PetscCall(PetscViewerFlush(viewer));
1023       PetscCall(PetscViewerASCIIPopSynchronized(viewer));
1024       PetscCall(VecRestoreArrayRead(coordinates, &array));
1025       if (coordinatesCell) PetscCall(VecRestoreArrayRead(coordinatesCell, &arrayCell));
1026     }
1027     PetscCall(DMGetNumLabels(dm, &numLabels));
1028     if (numLabels) PetscCall(PetscViewerASCIIPrintf(viewer, "Labels:\n"));
1029     for (l = 0; l < numLabels; ++l) {
1030       DMLabel     label;
1031       PetscBool   isdepth;
1032       const char *name;
1033 
1034       PetscCall(DMGetLabelName(dm, l, &name));
1035       PetscCall(PetscStrcmp(name, "depth", &isdepth));
1036       if (isdepth) continue;
1037       PetscCall(DMGetLabel(dm, name, &label));
1038       PetscCall(DMLabelView(label, viewer));
1039     }
1040     if (size > 1) {
1041       PetscSF sf;
1042 
1043       PetscCall(DMGetPointSF(dm, &sf));
1044       PetscCall(PetscSFView(sf, viewer));
1045     }
1046     if (mesh->periodic.face_sfs)
1047       for (PetscInt i = 0; i < mesh->periodic.num_face_sfs; i++) PetscCall(PetscSFView(mesh->periodic.face_sfs[i], viewer));
1048     PetscCall(PetscViewerFlush(viewer));
1049   } else if (format == PETSC_VIEWER_ASCII_LATEX) {
1050     const char  *name, *color;
1051     const char  *defcolors[3]  = {"gray", "orange", "green"};
1052     const char  *deflcolors[4] = {"blue", "cyan", "red", "magenta"};
1053     char         lname[PETSC_MAX_PATH_LEN];
1054     PetscReal    scale      = 2.0;
1055     PetscReal    tikzscale  = 1.0;
1056     PetscBool    useNumbers = PETSC_TRUE, drawNumbers[4], drawColors[4], useLabels, useColors, plotEdges, drawHasse = PETSC_FALSE;
1057     double       tcoords[3];
1058     PetscScalar *coords;
1059     PetscInt     numLabels, l, numColors, numLColors, dim, d, depth, cStart, cEnd, c, vStart, vEnd, v, eStart = 0, eEnd = 0, e, p, n;
1060     PetscMPIInt  rank, size;
1061     char       **names, **colors, **lcolors;
1062     PetscBool    flg, lflg;
1063     PetscBT      wp = NULL;
1064     PetscInt     pEnd, pStart;
1065 
1066     PetscCall(DMGetCoordinateDM(dm, &cdm));
1067     PetscCall(DMGetCoordinateSection(dm, &coordSection));
1068     PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
1069     PetscCall(DMGetCellCoordinateDM(dm, &cdmCell));
1070     PetscCall(DMGetCellCoordinateSection(dm, &coordSectionCell));
1071     PetscCall(DMGetCellCoordinatesLocal(dm, &coordinatesCell));
1072     PetscCall(DMGetDimension(dm, &dim));
1073     PetscCall(DMPlexGetDepth(dm, &depth));
1074     PetscCall(DMGetNumLabels(dm, &numLabels));
1075     numLabels  = PetscMax(numLabels, 10);
1076     numColors  = 10;
1077     numLColors = 10;
1078     PetscCall(PetscCalloc3(numLabels, &names, numColors, &colors, numLColors, &lcolors));
1079     PetscCall(PetscOptionsGetReal(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_scale", &scale, NULL));
1080     PetscCall(PetscOptionsGetReal(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_tikzscale", &tikzscale, NULL));
1081     PetscCall(PetscOptionsGetBool(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_numbers", &useNumbers, NULL));
1082     for (d = 0; d < 4; ++d) drawNumbers[d] = useNumbers;
1083     for (d = 0; d < 4; ++d) drawColors[d] = PETSC_TRUE;
1084     n = 4;
1085     PetscCall(PetscOptionsGetBoolArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_numbers_depth", drawNumbers, &n, &flg));
1086     PetscCheck(!flg || n == dim + 1, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "Number of flags %" PetscInt_FMT " != %" PetscInt_FMT " dim+1", n, dim + 1);
1087     n = 4;
1088     PetscCall(PetscOptionsGetBoolArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_colors_depth", drawColors, &n, &flg));
1089     PetscCheck(!flg || n == dim + 1, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "Number of flags %" PetscInt_FMT " != %" PetscInt_FMT " dim+1", n, dim + 1);
1090     PetscCall(PetscOptionsGetStringArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_labels", names, &numLabels, &useLabels));
1091     if (!useLabels) numLabels = 0;
1092     PetscCall(PetscOptionsGetStringArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_colors", colors, &numColors, &useColors));
1093     if (!useColors) {
1094       numColors = 3;
1095       for (c = 0; c < numColors; ++c) PetscCall(PetscStrallocpy(defcolors[c], &colors[c]));
1096     }
1097     PetscCall(PetscOptionsGetStringArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_lcolors", lcolors, &numLColors, &useColors));
1098     if (!useColors) {
1099       numLColors = 4;
1100       for (c = 0; c < numLColors; ++c) PetscCall(PetscStrallocpy(deflcolors[c], &lcolors[c]));
1101     }
1102     PetscCall(PetscOptionsGetString(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_label_filter", lname, sizeof(lname), &lflg));
1103     plotEdges = (PetscBool)(depth > 1 && drawNumbers[1] && dim < 3);
1104     PetscCall(PetscOptionsGetBool(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_edges", &plotEdges, &flg));
1105     PetscCheck(!flg || !plotEdges || depth >= dim, PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Mesh must be interpolated");
1106     if (depth < dim) plotEdges = PETSC_FALSE;
1107     PetscCall(PetscOptionsGetBool(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_hasse", &drawHasse, NULL));
1108 
1109     /* filter points with labelvalue != labeldefaultvalue */
1110     PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
1111     PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
1112     PetscCall(DMPlexGetDepthStratum(dm, 1, &eStart, &eEnd));
1113     PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
1114     if (lflg) {
1115       DMLabel lbl;
1116 
1117       PetscCall(DMGetLabel(dm, lname, &lbl));
1118       if (lbl) {
1119         PetscInt val, defval;
1120 
1121         PetscCall(DMLabelGetDefaultValue(lbl, &defval));
1122         PetscCall(PetscBTCreate(pEnd - pStart, &wp));
1123         for (c = pStart; c < pEnd; c++) {
1124           PetscInt *closure = NULL;
1125           PetscInt  closureSize;
1126 
1127           PetscCall(DMLabelGetValue(lbl, c, &val));
1128           if (val == defval) continue;
1129 
1130           PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
1131           for (p = 0; p < closureSize * 2; p += 2) PetscCall(PetscBTSet(wp, closure[p] - pStart));
1132           PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
1133         }
1134       }
1135     }
1136 
1137     PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
1138     PetscCallMPI(MPI_Comm_size(PetscObjectComm((PetscObject)dm), &size));
1139     PetscCall(PetscObjectGetName((PetscObject)dm, &name));
1140     PetscCall(PetscViewerASCIIPrintf(viewer, "\
1141 \\documentclass[tikz]{standalone}\n\n\
1142 \\usepackage{pgflibraryshapes}\n\
1143 \\usetikzlibrary{backgrounds}\n\
1144 \\usetikzlibrary{arrows}\n\
1145 \\begin{document}\n"));
1146     if (size > 1) {
1147       PetscCall(PetscViewerASCIIPrintf(viewer, "%s for process ", name));
1148       for (p = 0; p < size; ++p) {
1149         if (p) PetscCall(PetscViewerASCIIPrintf(viewer, (p == size - 1) ? ", and " : ", "));
1150         PetscCall(PetscViewerASCIIPrintf(viewer, "{\\textcolor{%s}%" PetscInt_FMT "}", colors[p % numColors], p));
1151       }
1152       PetscCall(PetscViewerASCIIPrintf(viewer, ".\n\n\n"));
1153     }
1154     if (drawHasse) {
1155       PetscInt maxStratum = PetscMax(vEnd - vStart, PetscMax(eEnd - eStart, cEnd - cStart));
1156 
1157       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\vStart}{%" PetscInt_FMT "}\n", vStart));
1158       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\vEnd}{%" PetscInt_FMT "}\n", vEnd - 1));
1159       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\numVertices}{%" PetscInt_FMT "}\n", vEnd - vStart));
1160       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\vShift}{%.2f}\n", 3 + (maxStratum - (vEnd - vStart)) / 2.));
1161       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\eStart}{%" PetscInt_FMT "}\n", eStart));
1162       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\eEnd}{%" PetscInt_FMT "}\n", eEnd - 1));
1163       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\eShift}{%.2f}\n", 3 + (maxStratum - (eEnd - eStart)) / 2.));
1164       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\numEdges}{%" PetscInt_FMT "}\n", eEnd - eStart));
1165       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\cStart}{%" PetscInt_FMT "}\n", cStart));
1166       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\cEnd}{%" PetscInt_FMT "}\n", cEnd - 1));
1167       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\numCells}{%" PetscInt_FMT "}\n", cEnd - cStart));
1168       PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\cShift}{%.2f}\n", 3 + (maxStratum - (cEnd - cStart)) / 2.));
1169     }
1170     PetscCall(PetscViewerASCIIPrintf(viewer, "\\begin{tikzpicture}[scale = %g,font=\\fontsize{8}{8}\\selectfont]\n", (double)tikzscale));
1171 
1172     /* Plot vertices */
1173     PetscCall(VecGetArray(coordinates, &coords));
1174     PetscCall(PetscViewerASCIIPushSynchronized(viewer));
1175     for (v = vStart; v < vEnd; ++v) {
1176       PetscInt  off, dof, d;
1177       PetscBool isLabeled = PETSC_FALSE;
1178 
1179       if (wp && !PetscBTLookup(wp, v - pStart)) continue;
1180       PetscCall(PetscSectionGetDof(coordSection, v, &dof));
1181       PetscCall(PetscSectionGetOffset(coordSection, v, &off));
1182       PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\path ("));
1183       PetscCheck(dof <= 3, PETSC_COMM_SELF, PETSC_ERR_PLIB, "coordSection vertex %" PetscInt_FMT " has dof %" PetscInt_FMT " > 3", v, dof);
1184       for (d = 0; d < dof; ++d) {
1185         tcoords[d] = (double)(scale * PetscRealPart(coords[off + d]));
1186         tcoords[d] = PetscAbs(tcoords[d]) < 1e-10 ? 0.0 : tcoords[d];
1187       }
1188       /* Rotate coordinates since PGF makes z point out of the page instead of up */
1189       if (dim == 3) {
1190         PetscReal tmp = tcoords[1];
1191         tcoords[1]    = tcoords[2];
1192         tcoords[2]    = -tmp;
1193       }
1194       for (d = 0; d < dof; ++d) {
1195         if (d > 0) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ","));
1196         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "%g", (double)tcoords[d]));
1197       }
1198       if (drawHasse) color = colors[0 % numColors];
1199       else color = colors[rank % numColors];
1200       for (l = 0; l < numLabels; ++l) {
1201         PetscInt val;
1202         PetscCall(DMGetLabelValue(dm, names[l], v, &val));
1203         if (val >= 0) {
1204           color     = lcolors[l % numLColors];
1205           isLabeled = PETSC_TRUE;
1206           break;
1207         }
1208       }
1209       if (drawNumbers[0]) {
1210         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [draw,shape=circle,color=%s] {%" PetscInt_FMT "};\n", v, rank, color, v));
1211       } else if (drawColors[0]) {
1212         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [fill,inner sep=%dpt,shape=circle,color=%s] {};\n", v, rank, !isLabeled ? 1 : 2, color));
1213       } else PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [] {};\n", v, rank));
1214     }
1215     PetscCall(VecRestoreArray(coordinates, &coords));
1216     PetscCall(PetscViewerFlush(viewer));
1217     /* Plot edges */
1218     if (plotEdges) {
1219       PetscCall(VecGetArray(coordinates, &coords));
1220       PetscCall(PetscViewerASCIIPrintf(viewer, "\\path\n"));
1221       for (e = eStart; e < eEnd; ++e) {
1222         const PetscInt *cone;
1223         PetscInt        coneSize, offA, offB, dof, d;
1224 
1225         if (wp && !PetscBTLookup(wp, e - pStart)) continue;
1226         PetscCall(DMPlexGetConeSize(dm, e, &coneSize));
1227         PetscCheck(coneSize == 2, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Edge %" PetscInt_FMT " cone should have two vertices, not %" PetscInt_FMT, e, coneSize);
1228         PetscCall(DMPlexGetCone(dm, e, &cone));
1229         PetscCall(PetscSectionGetDof(coordSection, cone[0], &dof));
1230         PetscCall(PetscSectionGetOffset(coordSection, cone[0], &offA));
1231         PetscCall(PetscSectionGetOffset(coordSection, cone[1], &offB));
1232         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "("));
1233         for (d = 0; d < dof; ++d) {
1234           tcoords[d] = (double)(0.5 * scale * PetscRealPart(coords[offA + d] + coords[offB + d]));
1235           tcoords[d] = PetscAbs(tcoords[d]) < 1e-10 ? 0.0 : tcoords[d];
1236         }
1237         /* Rotate coordinates since PGF makes z point out of the page instead of up */
1238         if (dim == 3) {
1239           PetscReal tmp = tcoords[1];
1240           tcoords[1]    = tcoords[2];
1241           tcoords[2]    = -tmp;
1242         }
1243         for (d = 0; d < dof; ++d) {
1244           if (d > 0) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ","));
1245           PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "%g", (double)tcoords[d]));
1246         }
1247         if (drawHasse) color = colors[1 % numColors];
1248         else color = colors[rank % numColors];
1249         for (l = 0; l < numLabels; ++l) {
1250           PetscInt val;
1251           PetscCall(DMGetLabelValue(dm, names[l], e, &val));
1252           if (val >= 0) {
1253             color = lcolors[l % numLColors];
1254             break;
1255           }
1256         }
1257         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [draw,shape=circle,color=%s] {%" PetscInt_FMT "} --\n", e, rank, color, e));
1258       }
1259       PetscCall(VecRestoreArray(coordinates, &coords));
1260       PetscCall(PetscViewerFlush(viewer));
1261       PetscCall(PetscViewerASCIIPrintf(viewer, "(0,0);\n"));
1262     }
1263     /* Plot cells */
1264     if (dim == 3 || !drawNumbers[1]) {
1265       for (e = eStart; e < eEnd; ++e) {
1266         const PetscInt *cone;
1267 
1268         if (wp && !PetscBTLookup(wp, e - pStart)) continue;
1269         color = colors[rank % numColors];
1270         for (l = 0; l < numLabels; ++l) {
1271           PetscInt val;
1272           PetscCall(DMGetLabelValue(dm, names[l], e, &val));
1273           if (val >= 0) {
1274             color = lcolors[l % numLColors];
1275             break;
1276           }
1277         }
1278         PetscCall(DMPlexGetCone(dm, e, &cone));
1279         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\draw[color=%s] (%" PetscInt_FMT "_%d) -- (%" PetscInt_FMT "_%d);\n", color, cone[0], rank, cone[1], rank));
1280       }
1281     } else {
1282       DMPolytopeType ct;
1283 
1284       /* Drawing a 2D polygon */
1285       for (c = cStart; c < cEnd; ++c) {
1286         if (wp && !PetscBTLookup(wp, c - pStart)) continue;
1287         PetscCall(DMPlexGetCellType(dm, c, &ct));
1288         if (DMPolytopeTypeIsHybrid(ct)) {
1289           const PetscInt *cone;
1290           PetscInt        coneSize, e;
1291 
1292           PetscCall(DMPlexGetCone(dm, c, &cone));
1293           PetscCall(DMPlexGetConeSize(dm, c, &coneSize));
1294           for (e = 0; e < coneSize; ++e) {
1295             const PetscInt *econe;
1296 
1297             PetscCall(DMPlexGetCone(dm, cone[e], &econe));
1298             PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\draw[color=%s] (%" PetscInt_FMT "_%d) -- (%" PetscInt_FMT "_%d) -- (%" PetscInt_FMT "_%d);\n", colors[rank % numColors], econe[0], rank, cone[e], rank, econe[1], rank));
1299           }
1300         } else {
1301           PetscInt *closure = NULL;
1302           PetscInt  closureSize, Nv = 0, v;
1303 
1304           PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
1305           for (p = 0; p < closureSize * 2; p += 2) {
1306             const PetscInt point = closure[p];
1307 
1308             if ((point >= vStart) && (point < vEnd)) closure[Nv++] = point;
1309           }
1310           PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\draw[color=%s] ", colors[rank % numColors]));
1311           for (v = 0; v <= Nv; ++v) {
1312             const PetscInt vertex = closure[v % Nv];
1313 
1314             if (v > 0) {
1315               if (plotEdges) {
1316                 const PetscInt *edge;
1317                 PetscInt        endpoints[2], ne;
1318 
1319                 endpoints[0] = closure[v - 1];
1320                 endpoints[1] = vertex;
1321                 PetscCall(DMPlexGetJoin(dm, 2, endpoints, &ne, &edge));
1322                 PetscCheck(ne == 1, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Could not find edge for vertices %" PetscInt_FMT ", %" PetscInt_FMT, endpoints[0], endpoints[1]);
1323                 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " -- (%" PetscInt_FMT "_%d) -- ", edge[0], rank));
1324                 PetscCall(DMPlexRestoreJoin(dm, 2, endpoints, &ne, &edge));
1325               } else PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " -- "));
1326             }
1327             PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "(%" PetscInt_FMT "_%d)", vertex, rank));
1328           }
1329           PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ";\n"));
1330           PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
1331         }
1332       }
1333     }
1334     for (c = cStart; c < cEnd; ++c) {
1335       double             ccoords[3] = {0.0, 0.0, 0.0};
1336       PetscBool          isLabeled  = PETSC_FALSE;
1337       PetscScalar       *cellCoords = NULL;
1338       const PetscScalar *array;
1339       PetscInt           numCoords, cdim, d;
1340       PetscBool          isDG;
1341 
1342       if (wp && !PetscBTLookup(wp, c - pStart)) continue;
1343       PetscCall(DMGetCoordinateDim(dm, &cdim));
1344       PetscCall(DMPlexGetCellCoordinates(dm, c, &isDG, &numCoords, &array, &cellCoords));
1345       PetscCheck(!(numCoords % cdim), PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, "coordinate dim %" PetscInt_FMT " does not divide numCoords %" PetscInt_FMT, cdim, numCoords);
1346       PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\path ("));
1347       for (p = 0; p < numCoords / cdim; ++p) {
1348         for (d = 0; d < cdim; ++d) {
1349           tcoords[d] = (double)(scale * PetscRealPart(cellCoords[p * cdim + d]));
1350           tcoords[d] = PetscAbs(tcoords[d]) < 1e-10 ? 0.0 : tcoords[d];
1351         }
1352         /* Rotate coordinates since PGF makes z point out of the page instead of up */
1353         if (cdim == 3) {
1354           PetscReal tmp = tcoords[1];
1355           tcoords[1]    = tcoords[2];
1356           tcoords[2]    = -tmp;
1357         }
1358         for (d = 0; d < dim; ++d) ccoords[d] += tcoords[d];
1359       }
1360       for (d = 0; d < cdim; ++d) ccoords[d] /= (numCoords / cdim);
1361       PetscCall(DMPlexRestoreCellCoordinates(dm, c, &isDG, &numCoords, &array, &cellCoords));
1362       for (d = 0; d < cdim; ++d) {
1363         if (d > 0) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ","));
1364         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "%g", (double)ccoords[d]));
1365       }
1366       if (drawHasse) color = colors[depth % numColors];
1367       else color = colors[rank % numColors];
1368       for (l = 0; l < numLabels; ++l) {
1369         PetscInt val;
1370         PetscCall(DMGetLabelValue(dm, names[l], c, &val));
1371         if (val >= 0) {
1372           color     = lcolors[l % numLColors];
1373           isLabeled = PETSC_TRUE;
1374           break;
1375         }
1376       }
1377       if (drawNumbers[dim]) {
1378         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [draw,shape=circle,color=%s] {%" PetscInt_FMT "};\n", c, rank, color, c));
1379       } else if (drawColors[dim]) {
1380         PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [fill,inner sep=%dpt,shape=circle,color=%s] {};\n", c, rank, !isLabeled ? 1 : 2, color));
1381       } else PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [] {};\n", c, rank));
1382     }
1383     if (drawHasse) {
1384       color = colors[depth % numColors];
1385       PetscCall(PetscViewerASCIIPrintf(viewer, "%% Cells\n"));
1386       PetscCall(PetscViewerASCIIPrintf(viewer, "\\foreach \\c in {\\cStart,...,\\cEnd}\n"));
1387       PetscCall(PetscViewerASCIIPrintf(viewer, "{\n"));
1388       PetscCall(PetscViewerASCIIPrintf(viewer, "  \\node(\\c_%d) [draw,shape=circle,color=%s,minimum size = 6mm] at (\\cShift+\\c-\\cStart,0) {\\c};\n", rank, color));
1389       PetscCall(PetscViewerASCIIPrintf(viewer, "}\n"));
1390 
1391       color = colors[1 % numColors];
1392       PetscCall(PetscViewerASCIIPrintf(viewer, "%% Edges\n"));
1393       PetscCall(PetscViewerASCIIPrintf(viewer, "\\foreach \\e in {\\eStart,...,\\eEnd}\n"));
1394       PetscCall(PetscViewerASCIIPrintf(viewer, "{\n"));
1395       PetscCall(PetscViewerASCIIPrintf(viewer, "  \\node(\\e_%d) [draw,shape=circle,color=%s,minimum size = 6mm] at (\\eShift+\\e-\\eStart,1) {\\e};\n", rank, color));
1396       PetscCall(PetscViewerASCIIPrintf(viewer, "}\n"));
1397 
1398       color = colors[0 % numColors];
1399       PetscCall(PetscViewerASCIIPrintf(viewer, "%% Vertices\n"));
1400       PetscCall(PetscViewerASCIIPrintf(viewer, "\\foreach \\v in {\\vStart,...,\\vEnd}\n"));
1401       PetscCall(PetscViewerASCIIPrintf(viewer, "{\n"));
1402       PetscCall(PetscViewerASCIIPrintf(viewer, "  \\node(\\v_%d) [draw,shape=circle,color=%s,minimum size = 6mm] at (\\vShift+\\v-\\vStart,2) {\\v};\n", rank, color));
1403       PetscCall(PetscViewerASCIIPrintf(viewer, "}\n"));
1404 
1405       for (p = pStart; p < pEnd; ++p) {
1406         const PetscInt *cone;
1407         PetscInt        coneSize, cp;
1408 
1409         PetscCall(DMPlexGetCone(dm, p, &cone));
1410         PetscCall(DMPlexGetConeSize(dm, p, &coneSize));
1411         for (cp = 0; cp < coneSize; ++cp) PetscCall(PetscViewerASCIIPrintf(viewer, "\\draw[->, shorten >=1pt] (%" PetscInt_FMT "_%d) -- (%" PetscInt_FMT "_%d);\n", cone[cp], rank, p, rank));
1412       }
1413     }
1414     PetscCall(PetscViewerFlush(viewer));
1415     PetscCall(PetscViewerASCIIPopSynchronized(viewer));
1416     PetscCall(PetscViewerASCIIPrintf(viewer, "\\end{tikzpicture}\n"));
1417     PetscCall(PetscViewerASCIIPrintf(viewer, "\\end{document}\n"));
1418     for (l = 0; l < numLabels; ++l) PetscCall(PetscFree(names[l]));
1419     for (c = 0; c < numColors; ++c) PetscCall(PetscFree(colors[c]));
1420     for (c = 0; c < numLColors; ++c) PetscCall(PetscFree(lcolors[c]));
1421     PetscCall(PetscFree3(names, colors, lcolors));
1422     PetscCall(PetscBTDestroy(&wp));
1423   } else if (format == PETSC_VIEWER_LOAD_BALANCE) {
1424     Vec                    cown, acown;
1425     VecScatter             sct;
1426     ISLocalToGlobalMapping g2l;
1427     IS                     gid, acis;
1428     MPI_Comm               comm, ncomm = MPI_COMM_NULL;
1429     MPI_Group              ggroup, ngroup;
1430     PetscScalar           *array, nid;
1431     const PetscInt        *idxs;
1432     PetscInt              *idxs2, *start, *adjacency, *work;
1433     PetscInt64             lm[3], gm[3];
1434     PetscInt               i, c, cStart, cEnd, cum, numVertices, ect, ectn, cellHeight;
1435     PetscMPIInt            d1, d2, rank;
1436 
1437     PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
1438     PetscCallMPI(MPI_Comm_rank(comm, &rank));
1439 #if defined(PETSC_HAVE_MPI_PROCESS_SHARED_MEMORY)
1440     PetscCallMPI(MPI_Comm_split_type(comm, MPI_COMM_TYPE_SHARED, rank, MPI_INFO_NULL, &ncomm));
1441 #endif
1442     if (ncomm != MPI_COMM_NULL) {
1443       PetscCallMPI(MPI_Comm_group(comm, &ggroup));
1444       PetscCallMPI(MPI_Comm_group(ncomm, &ngroup));
1445       d1 = 0;
1446       PetscCallMPI(MPI_Group_translate_ranks(ngroup, 1, &d1, ggroup, &d2));
1447       nid = d2;
1448       PetscCallMPI(MPI_Group_free(&ggroup));
1449       PetscCallMPI(MPI_Group_free(&ngroup));
1450       PetscCallMPI(MPI_Comm_free(&ncomm));
1451     } else nid = 0.0;
1452 
1453     /* Get connectivity */
1454     PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
1455     PetscCall(DMPlexCreatePartitionerGraph(dm, cellHeight, &numVertices, &start, &adjacency, &gid));
1456 
1457     /* filter overlapped local cells */
1458     PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd));
1459     PetscCall(ISGetIndices(gid, &idxs));
1460     PetscCall(ISGetLocalSize(gid, &cum));
1461     PetscCall(PetscMalloc1(cum, &idxs2));
1462     for (c = cStart, cum = 0; c < cEnd; c++) {
1463       if (idxs[c - cStart] < 0) continue;
1464       idxs2[cum++] = idxs[c - cStart];
1465     }
1466     PetscCall(ISRestoreIndices(gid, &idxs));
1467     PetscCheck(numVertices == cum, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Unexpected %" PetscInt_FMT " != %" PetscInt_FMT, numVertices, cum);
1468     PetscCall(ISDestroy(&gid));
1469     PetscCall(ISCreateGeneral(comm, numVertices, idxs2, PETSC_OWN_POINTER, &gid));
1470 
1471     /* support for node-aware cell locality */
1472     PetscCall(ISCreateGeneral(comm, start[numVertices], adjacency, PETSC_USE_POINTER, &acis));
1473     PetscCall(VecCreateSeq(PETSC_COMM_SELF, start[numVertices], &acown));
1474     PetscCall(VecCreateMPI(comm, numVertices, PETSC_DECIDE, &cown));
1475     PetscCall(VecGetArray(cown, &array));
1476     for (c = 0; c < numVertices; c++) array[c] = nid;
1477     PetscCall(VecRestoreArray(cown, &array));
1478     PetscCall(VecScatterCreate(cown, acis, acown, NULL, &sct));
1479     PetscCall(VecScatterBegin(sct, cown, acown, INSERT_VALUES, SCATTER_FORWARD));
1480     PetscCall(VecScatterEnd(sct, cown, acown, INSERT_VALUES, SCATTER_FORWARD));
1481     PetscCall(ISDestroy(&acis));
1482     PetscCall(VecScatterDestroy(&sct));
1483     PetscCall(VecDestroy(&cown));
1484 
1485     /* compute edgeCut */
1486     for (c = 0, cum = 0; c < numVertices; c++) cum = PetscMax(cum, start[c + 1] - start[c]);
1487     PetscCall(PetscMalloc1(cum, &work));
1488     PetscCall(ISLocalToGlobalMappingCreateIS(gid, &g2l));
1489     PetscCall(ISLocalToGlobalMappingSetType(g2l, ISLOCALTOGLOBALMAPPINGHASH));
1490     PetscCall(ISDestroy(&gid));
1491     PetscCall(VecGetArray(acown, &array));
1492     for (c = 0, ect = 0, ectn = 0; c < numVertices; c++) {
1493       PetscInt totl;
1494 
1495       totl = start[c + 1] - start[c];
1496       PetscCall(ISGlobalToLocalMappingApply(g2l, IS_GTOLM_MASK, totl, adjacency + start[c], NULL, work));
1497       for (i = 0; i < totl; i++) {
1498         if (work[i] < 0) {
1499           ect += 1;
1500           ectn += (array[i + start[c]] != nid) ? 0 : 1;
1501         }
1502       }
1503     }
1504     PetscCall(PetscFree(work));
1505     PetscCall(VecRestoreArray(acown, &array));
1506     lm[0] = numVertices > 0 ? numVertices : PETSC_MAX_INT;
1507     lm[1] = -numVertices;
1508     PetscCall(MPIU_Allreduce(lm, gm, 2, MPIU_INT64, MPI_MIN, comm));
1509     PetscCall(PetscViewerASCIIPrintf(viewer, "  Cell balance: %.2f (max %" PetscInt_FMT ", min %" PetscInt_FMT, -((double)gm[1]) / ((double)gm[0]), -(PetscInt)gm[1], (PetscInt)gm[0]));
1510     lm[0] = ect;                     /* edgeCut */
1511     lm[1] = ectn;                    /* node-aware edgeCut */
1512     lm[2] = numVertices > 0 ? 0 : 1; /* empty processes */
1513     PetscCall(MPIU_Allreduce(lm, gm, 3, MPIU_INT64, MPI_SUM, comm));
1514     PetscCall(PetscViewerASCIIPrintf(viewer, ", empty %" PetscInt_FMT ")\n", (PetscInt)gm[2]));
1515 #if defined(PETSC_HAVE_MPI_PROCESS_SHARED_MEMORY)
1516     PetscCall(PetscViewerASCIIPrintf(viewer, "  Edge Cut: %" PetscInt_FMT " (on node %.3f)\n", (PetscInt)(gm[0] / 2), gm[0] ? ((double)gm[1]) / ((double)gm[0]) : 1.));
1517 #else
1518     PetscCall(PetscViewerASCIIPrintf(viewer, "  Edge Cut: %" PetscInt_FMT " (on node %.3f)\n", (PetscInt)(gm[0] / 2), 0.0));
1519 #endif
1520     PetscCall(ISLocalToGlobalMappingDestroy(&g2l));
1521     PetscCall(PetscFree(start));
1522     PetscCall(PetscFree(adjacency));
1523     PetscCall(VecDestroy(&acown));
1524   } else {
1525     const char    *name;
1526     PetscInt      *sizes, *hybsizes, *ghostsizes;
1527     PetscInt       locDepth, depth, cellHeight, dim, d;
1528     PetscInt       pStart, pEnd, p, gcStart, gcEnd, gcNum;
1529     PetscInt       numLabels, l, maxSize = 17;
1530     DMPolytopeType ct0 = DM_POLYTOPE_UNKNOWN;
1531     MPI_Comm       comm;
1532     PetscMPIInt    size, rank;
1533 
1534     PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
1535     PetscCallMPI(MPI_Comm_size(comm, &size));
1536     PetscCallMPI(MPI_Comm_rank(comm, &rank));
1537     PetscCall(DMGetDimension(dm, &dim));
1538     PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
1539     PetscCall(PetscObjectGetName((PetscObject)dm, &name));
1540     if (name) PetscCall(PetscViewerASCIIPrintf(viewer, "%s in %" PetscInt_FMT " dimension%s:\n", name, dim, dim == 1 ? "" : "s"));
1541     else PetscCall(PetscViewerASCIIPrintf(viewer, "Mesh in %" PetscInt_FMT " dimension%s:\n", dim, dim == 1 ? "" : "s"));
1542     if (cellHeight) PetscCall(PetscViewerASCIIPrintf(viewer, "  Cells are at height %" PetscInt_FMT "\n", cellHeight));
1543     PetscCall(DMPlexGetDepth(dm, &locDepth));
1544     PetscCall(MPIU_Allreduce(&locDepth, &depth, 1, MPIU_INT, MPI_MAX, comm));
1545     PetscCall(DMPlexGetCellTypeStratum(dm, DM_POLYTOPE_FV_GHOST, &gcStart, &gcEnd));
1546     gcNum = gcEnd - gcStart;
1547     if (size < maxSize) PetscCall(PetscCalloc3(size, &sizes, size, &hybsizes, size, &ghostsizes));
1548     else PetscCall(PetscCalloc3(3, &sizes, 3, &hybsizes, 3, &ghostsizes));
1549     for (d = 0; d <= depth; d++) {
1550       PetscInt Nc[2] = {0, 0}, ict;
1551 
1552       PetscCall(DMPlexGetDepthStratum(dm, d, &pStart, &pEnd));
1553       if (pStart < pEnd) PetscCall(DMPlexGetCellType(dm, pStart, &ct0));
1554       ict = ct0;
1555       PetscCallMPI(MPI_Bcast(&ict, 1, MPIU_INT, 0, comm));
1556       ct0 = (DMPolytopeType)ict;
1557       for (p = pStart; p < pEnd; ++p) {
1558         DMPolytopeType ct;
1559 
1560         PetscCall(DMPlexGetCellType(dm, p, &ct));
1561         if (ct == ct0) ++Nc[0];
1562         else ++Nc[1];
1563       }
1564       if (size < maxSize) {
1565         PetscCallMPI(MPI_Gather(&Nc[0], 1, MPIU_INT, sizes, 1, MPIU_INT, 0, comm));
1566         PetscCallMPI(MPI_Gather(&Nc[1], 1, MPIU_INT, hybsizes, 1, MPIU_INT, 0, comm));
1567         if (d == depth) PetscCallMPI(MPI_Gather(&gcNum, 1, MPIU_INT, ghostsizes, 1, MPIU_INT, 0, comm));
1568         PetscCall(PetscViewerASCIIPrintf(viewer, "  Number of %" PetscInt_FMT "-cells per rank:", (depth == 1) && d ? dim : d));
1569         for (p = 0; p < size; ++p) {
1570           if (rank == 0) {
1571             PetscCall(PetscViewerASCIIPrintf(viewer, " %" PetscInt_FMT, sizes[p] + hybsizes[p]));
1572             if (hybsizes[p] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " (%" PetscInt_FMT ")", hybsizes[p]));
1573             if (ghostsizes[p] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " [%" PetscInt_FMT "]", ghostsizes[p]));
1574           }
1575         }
1576       } else {
1577         PetscInt locMinMax[2];
1578 
1579         locMinMax[0] = Nc[0] + Nc[1];
1580         locMinMax[1] = Nc[0] + Nc[1];
1581         PetscCall(PetscGlobalMinMaxInt(comm, locMinMax, sizes));
1582         locMinMax[0] = Nc[1];
1583         locMinMax[1] = Nc[1];
1584         PetscCall(PetscGlobalMinMaxInt(comm, locMinMax, hybsizes));
1585         if (d == depth) {
1586           locMinMax[0] = gcNum;
1587           locMinMax[1] = gcNum;
1588           PetscCall(PetscGlobalMinMaxInt(comm, locMinMax, ghostsizes));
1589         }
1590         PetscCall(PetscViewerASCIIPrintf(viewer, "  Min/Max of %" PetscInt_FMT "-cells per rank:", (depth == 1) && d ? dim : d));
1591         PetscCall(PetscViewerASCIIPrintf(viewer, " %" PetscInt_FMT "/%" PetscInt_FMT, sizes[0], sizes[1]));
1592         if (hybsizes[0] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " (%" PetscInt_FMT "/%" PetscInt_FMT ")", hybsizes[0], hybsizes[1]));
1593         if (ghostsizes[0] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " [%" PetscInt_FMT "/%" PetscInt_FMT "]", ghostsizes[0], ghostsizes[1]));
1594       }
1595       PetscCall(PetscViewerASCIIPrintf(viewer, "\n"));
1596     }
1597     PetscCall(PetscFree3(sizes, hybsizes, ghostsizes));
1598     {
1599       const PetscReal *maxCell;
1600       const PetscReal *L;
1601       PetscBool        localized;
1602 
1603       PetscCall(DMGetPeriodicity(dm, &maxCell, NULL, &L));
1604       PetscCall(DMGetCoordinatesLocalized(dm, &localized));
1605       if (L || localized) {
1606         PetscCall(PetscViewerASCIIPrintf(viewer, "Periodic mesh"));
1607         PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_FALSE));
1608         if (L) {
1609           PetscCall(PetscViewerASCIIPrintf(viewer, " ("));
1610           for (d = 0; d < dim; ++d) {
1611             if (d > 0) PetscCall(PetscViewerASCIIPrintf(viewer, ", "));
1612             PetscCall(PetscViewerASCIIPrintf(viewer, "%s", L[d] > 0.0 ? "PERIODIC" : "NONE"));
1613           }
1614           PetscCall(PetscViewerASCIIPrintf(viewer, ")"));
1615         }
1616         PetscCall(PetscViewerASCIIPrintf(viewer, " coordinates %s\n", localized ? "localized" : "not localized"));
1617         PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_TRUE));
1618       }
1619     }
1620     PetscCall(DMGetNumLabels(dm, &numLabels));
1621     if (numLabels) PetscCall(PetscViewerASCIIPrintf(viewer, "Labels:\n"));
1622     for (l = 0; l < numLabels; ++l) {
1623       DMLabel         label;
1624       const char     *name;
1625       IS              valueIS;
1626       const PetscInt *values;
1627       PetscInt        numValues, v;
1628 
1629       PetscCall(DMGetLabelName(dm, l, &name));
1630       PetscCall(DMGetLabel(dm, name, &label));
1631       PetscCall(DMLabelGetNumValues(label, &numValues));
1632       PetscCall(PetscViewerASCIIPrintf(viewer, "  %s: %" PetscInt_FMT " strata with value/size (", name, numValues));
1633       PetscCall(DMLabelGetValueIS(label, &valueIS));
1634       PetscCall(ISGetIndices(valueIS, &values));
1635       PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_FALSE));
1636       for (v = 0; v < numValues; ++v) {
1637         PetscInt size;
1638 
1639         PetscCall(DMLabelGetStratumSize(label, values[v], &size));
1640         if (v > 0) PetscCall(PetscViewerASCIIPrintf(viewer, ", "));
1641         PetscCall(PetscViewerASCIIPrintf(viewer, "%" PetscInt_FMT " (%" PetscInt_FMT ")", values[v], size));
1642       }
1643       PetscCall(PetscViewerASCIIPrintf(viewer, ")\n"));
1644       PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_TRUE));
1645       PetscCall(ISRestoreIndices(valueIS, &values));
1646       PetscCall(ISDestroy(&valueIS));
1647     }
1648     {
1649       char    **labelNames;
1650       PetscInt  Nl = numLabels;
1651       PetscBool flg;
1652 
1653       PetscCall(PetscMalloc1(Nl, &labelNames));
1654       PetscCall(PetscOptionsGetStringArray(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_plex_view_labels", labelNames, &Nl, &flg));
1655       for (l = 0; l < Nl; ++l) {
1656         DMLabel label;
1657 
1658         PetscCall(DMHasLabel(dm, labelNames[l], &flg));
1659         if (flg) {
1660           PetscCall(DMGetLabel(dm, labelNames[l], &label));
1661           PetscCall(DMLabelView(label, viewer));
1662         }
1663         PetscCall(PetscFree(labelNames[l]));
1664       }
1665       PetscCall(PetscFree(labelNames));
1666     }
1667     /* If no fields are specified, people do not want to see adjacency */
1668     if (dm->Nf) {
1669       PetscInt f;
1670 
1671       for (f = 0; f < dm->Nf; ++f) {
1672         const char *name;
1673 
1674         PetscCall(PetscObjectGetName(dm->fields[f].disc, &name));
1675         if (numLabels) PetscCall(PetscViewerASCIIPrintf(viewer, "Field %s:\n", name));
1676         PetscCall(PetscViewerASCIIPushTab(viewer));
1677         if (dm->fields[f].label) PetscCall(DMLabelView(dm->fields[f].label, viewer));
1678         if (dm->fields[f].adjacency[0]) {
1679           if (dm->fields[f].adjacency[1]) PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FVM++\n"));
1680           else PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FVM\n"));
1681         } else {
1682           if (dm->fields[f].adjacency[1]) PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FEM\n"));
1683           else PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FUNKY\n"));
1684         }
1685         PetscCall(PetscViewerASCIIPopTab(viewer));
1686       }
1687     }
1688     PetscCall(DMGetCoarseDM(dm, &cdm));
1689     if (cdm) {
1690       PetscCall(PetscViewerASCIIPushTab(viewer));
1691       PetscCall(PetscViewerASCIIPrintf(viewer, "Defined by transform from:\n"));
1692       PetscCall(DMPlexView_Ascii(cdm, viewer));
1693       PetscCall(PetscViewerASCIIPopTab(viewer));
1694     }
1695   }
1696   PetscFunctionReturn(PETSC_SUCCESS);
1697 }
1698 
1699 static PetscErrorCode DMPlexDrawCell(DM dm, PetscDraw draw, PetscInt cell, const PetscScalar coords[])
1700 {
1701   DMPolytopeType ct;
1702   PetscMPIInt    rank;
1703   PetscInt       cdim;
1704 
1705   PetscFunctionBegin;
1706   PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
1707   PetscCall(DMPlexGetCellType(dm, cell, &ct));
1708   PetscCall(DMGetCoordinateDim(dm, &cdim));
1709   switch (ct) {
1710   case DM_POLYTOPE_SEGMENT:
1711   case DM_POLYTOPE_POINT_PRISM_TENSOR:
1712     switch (cdim) {
1713     case 1: {
1714       const PetscReal y  = 0.5;  /* TODO Put it in the middle of the viewport */
1715       const PetscReal dy = 0.05; /* TODO Make it a fraction of the total length */
1716 
1717       PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), y, PetscRealPart(coords[1]), y, PETSC_DRAW_BLACK));
1718       PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), y + dy, PetscRealPart(coords[0]), y - dy, PETSC_DRAW_BLACK));
1719       PetscCall(PetscDrawLine(draw, PetscRealPart(coords[1]), y + dy, PetscRealPart(coords[1]), y - dy, PETSC_DRAW_BLACK));
1720     } break;
1721     case 2: {
1722       const PetscReal dx = (PetscRealPart(coords[3]) - PetscRealPart(coords[1]));
1723       const PetscReal dy = (PetscRealPart(coords[2]) - PetscRealPart(coords[0]));
1724       const PetscReal l  = 0.1 / PetscSqrtReal(dx * dx + dy * dy);
1725 
1726       PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK));
1727       PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]) + l * dx, PetscRealPart(coords[1]) + l * dy, PetscRealPart(coords[0]) - l * dx, PetscRealPart(coords[1]) - l * dy, PETSC_DRAW_BLACK));
1728       PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]) + l * dx, PetscRealPart(coords[3]) + l * dy, PetscRealPart(coords[2]) - l * dx, PetscRealPart(coords[3]) - l * dy, PETSC_DRAW_BLACK));
1729     } break;
1730     default:
1731       SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells of dimension %" PetscInt_FMT, cdim);
1732     }
1733     break;
1734   case DM_POLYTOPE_TRIANGLE:
1735     PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2));
1736     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK));
1737     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_BLACK));
1738     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), PETSC_DRAW_BLACK));
1739     break;
1740   case DM_POLYTOPE_QUADRILATERAL:
1741     PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2));
1742     PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2));
1743     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK));
1744     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_BLACK));
1745     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PETSC_DRAW_BLACK));
1746     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[6]), PetscRealPart(coords[7]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), PETSC_DRAW_BLACK));
1747     break;
1748   case DM_POLYTOPE_SEG_PRISM_TENSOR:
1749     PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2));
1750     PetscCall(PetscDrawTriangle(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2, PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2));
1751     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK));
1752     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PETSC_DRAW_BLACK));
1753     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[6]), PetscRealPart(coords[7]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_BLACK));
1754     PetscCall(PetscDrawLine(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), PETSC_DRAW_BLACK));
1755     break;
1756   case DM_POLYTOPE_FV_GHOST:
1757     break;
1758   default:
1759     SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells of type %s", DMPolytopeTypes[ct]);
1760   }
1761   PetscFunctionReturn(PETSC_SUCCESS);
1762 }
1763 
1764 static PetscErrorCode DrawPolygon_Private(DM dm, PetscDraw draw, PetscInt cell, PetscInt Nv, const PetscReal refVertices[], const PetscScalar coords[], PetscInt edgeDiv, PetscReal refCoords[], PetscReal edgeCoords[])
1765 {
1766   PetscReal   centroid[2] = {0., 0.};
1767   PetscMPIInt rank;
1768   PetscInt    fillColor;
1769 
1770   PetscFunctionBegin;
1771   PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
1772   fillColor = PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2;
1773   for (PetscInt v = 0; v < Nv; ++v) {
1774     centroid[0] += PetscRealPart(coords[v * 2 + 0]) / Nv;
1775     centroid[1] += PetscRealPart(coords[v * 2 + 1]) / Nv;
1776   }
1777   for (PetscInt e = 0; e < Nv; ++e) {
1778     refCoords[0] = refVertices[e * 2 + 0];
1779     refCoords[1] = refVertices[e * 2 + 1];
1780     for (PetscInt d = 1; d <= edgeDiv; ++d) {
1781       refCoords[d * 2 + 0] = refCoords[0] + (refVertices[(e + 1) % Nv * 2 + 0] - refCoords[0]) * d / edgeDiv;
1782       refCoords[d * 2 + 1] = refCoords[1] + (refVertices[(e + 1) % Nv * 2 + 1] - refCoords[1]) * d / edgeDiv;
1783     }
1784     PetscCall(DMPlexReferenceToCoordinates(dm, cell, edgeDiv + 1, refCoords, edgeCoords));
1785     for (PetscInt d = 0; d < edgeDiv; ++d) {
1786       PetscCall(PetscDrawTriangle(draw, centroid[0], centroid[1], edgeCoords[d * 2 + 0], edgeCoords[d * 2 + 1], edgeCoords[(d + 1) * 2 + 0], edgeCoords[(d + 1) * 2 + 1], fillColor, fillColor, fillColor));
1787       PetscCall(PetscDrawLine(draw, edgeCoords[d * 2 + 0], edgeCoords[d * 2 + 1], edgeCoords[(d + 1) * 2 + 0], edgeCoords[(d + 1) * 2 + 1], PETSC_DRAW_BLACK));
1788     }
1789   }
1790   PetscFunctionReturn(PETSC_SUCCESS);
1791 }
1792 
1793 static PetscErrorCode DMPlexDrawCellHighOrder(DM dm, PetscDraw draw, PetscInt cell, const PetscScalar coords[], PetscInt edgeDiv, PetscReal refCoords[], PetscReal edgeCoords[])
1794 {
1795   DMPolytopeType ct;
1796 
1797   PetscFunctionBegin;
1798   PetscCall(DMPlexGetCellType(dm, cell, &ct));
1799   switch (ct) {
1800   case DM_POLYTOPE_TRIANGLE: {
1801     PetscReal refVertices[6] = {-1., -1., 1., -1., -1., 1.};
1802 
1803     PetscCall(DrawPolygon_Private(dm, draw, cell, 3, refVertices, coords, edgeDiv, refCoords, edgeCoords));
1804   } break;
1805   case DM_POLYTOPE_QUADRILATERAL: {
1806     PetscReal refVertices[8] = {-1., -1., 1., -1., 1., 1., -1., 1.};
1807 
1808     PetscCall(DrawPolygon_Private(dm, draw, cell, 4, refVertices, coords, edgeDiv, refCoords, edgeCoords));
1809   } break;
1810   default:
1811     SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells of type %s", DMPolytopeTypes[ct]);
1812   }
1813   PetscFunctionReturn(PETSC_SUCCESS);
1814 }
1815 
1816 static PetscErrorCode DMPlexView_Draw(DM dm, PetscViewer viewer)
1817 {
1818   PetscDraw    draw;
1819   DM           cdm;
1820   PetscSection coordSection;
1821   Vec          coordinates;
1822   PetscReal    xyl[3], xyr[3];
1823   PetscReal   *refCoords, *edgeCoords;
1824   PetscBool    isnull, drawAffine;
1825   PetscInt     dim, vStart, vEnd, cStart, cEnd, c, cDegree, edgeDiv;
1826 
1827   PetscFunctionBegin;
1828   PetscCall(DMGetCoordinateDim(dm, &dim));
1829   PetscCheck(dim <= 2, PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Cannot draw meshes of dimension %" PetscInt_FMT, dim);
1830   PetscCall(DMGetCoordinateDegree_Internal(dm, &cDegree));
1831   drawAffine = cDegree > 1 ? PETSC_FALSE : PETSC_TRUE;
1832   edgeDiv    = cDegree + 1;
1833   PetscCall(PetscOptionsGetBool(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_view_draw_affine", &drawAffine, NULL));
1834   if (!drawAffine) PetscCall(PetscMalloc2((edgeDiv + 1) * dim, &refCoords, (edgeDiv + 1) * dim, &edgeCoords));
1835   PetscCall(DMGetCoordinateDM(dm, &cdm));
1836   PetscCall(DMGetLocalSection(cdm, &coordSection));
1837   PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
1838   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
1839   PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
1840 
1841   PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw));
1842   PetscCall(PetscDrawIsNull(draw, &isnull));
1843   if (isnull) PetscFunctionReturn(PETSC_SUCCESS);
1844   PetscCall(PetscDrawSetTitle(draw, "Mesh"));
1845 
1846   PetscCall(DMGetBoundingBox(dm, xyl, xyr));
1847   PetscCall(PetscDrawSetCoordinates(draw, xyl[0], xyl[1], xyr[0], xyr[1]));
1848   PetscCall(PetscDrawClear(draw));
1849 
1850   for (c = cStart; c < cEnd; ++c) {
1851     PetscScalar       *coords = NULL;
1852     const PetscScalar *coords_arr;
1853     PetscInt           numCoords;
1854     PetscBool          isDG;
1855 
1856     PetscCall(DMPlexGetCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords));
1857     if (drawAffine) PetscCall(DMPlexDrawCell(dm, draw, c, coords));
1858     else PetscCall(DMPlexDrawCellHighOrder(dm, draw, c, coords, edgeDiv, refCoords, edgeCoords));
1859     PetscCall(DMPlexRestoreCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords));
1860   }
1861   if (!drawAffine) PetscCall(PetscFree2(refCoords, edgeCoords));
1862   PetscCall(PetscDrawFlush(draw));
1863   PetscCall(PetscDrawPause(draw));
1864   PetscCall(PetscDrawSave(draw));
1865   PetscFunctionReturn(PETSC_SUCCESS);
1866 }
1867 
1868 static PetscErrorCode DMPlexCreateHighOrderSurrogate_Internal(DM dm, DM *hdm)
1869 {
1870   DM           odm = dm, rdm = dm, cdm;
1871   PetscFE      fe;
1872   PetscSpace   sp;
1873   PetscClassId id;
1874   PetscInt     degree;
1875   PetscBool    hoView = PETSC_TRUE;
1876 
1877   PetscFunctionBegin;
1878   PetscObjectOptionsBegin((PetscObject)dm);
1879   PetscCall(PetscOptionsBool("-dm_plex_high_order_view", "Subsample to view meshes with high order coordinates", "DMPlexCreateHighOrderSurrogate_Internal", hoView, &hoView, NULL));
1880   PetscOptionsEnd();
1881   PetscCall(PetscObjectReference((PetscObject)dm));
1882   *hdm = dm;
1883   if (!hoView) PetscFunctionReturn(PETSC_SUCCESS);
1884   PetscCall(DMGetCoordinateDM(dm, &cdm));
1885   PetscCall(DMGetField(cdm, 0, NULL, (PetscObject *)&fe));
1886   PetscCall(PetscObjectGetClassId((PetscObject)fe, &id));
1887   if (id != PETSCFE_CLASSID) PetscFunctionReturn(PETSC_SUCCESS);
1888   PetscCall(PetscFEGetBasisSpace(fe, &sp));
1889   PetscCall(PetscSpaceGetDegree(sp, &degree, NULL));
1890   for (PetscInt r = 0, rd = PetscCeilReal(((PetscReal)degree) / 2.); r < (PetscInt)PetscCeilReal(PetscLog2Real(degree)); ++r, rd = PetscCeilReal(((PetscReal)rd) / 2.)) {
1891     DM  cdm, rcdm;
1892     Mat In;
1893     Vec cl, rcl;
1894 
1895     PetscCall(DMRefine(odm, PetscObjectComm((PetscObject)odm), &rdm));
1896     PetscCall(DMPlexCreateCoordinateSpace(rdm, rd, PETSC_FALSE, NULL));
1897     PetscCall(PetscObjectSetName((PetscObject)rdm, "Refined Mesh with Linear Coordinates"));
1898     PetscCall(DMGetCoordinateDM(odm, &cdm));
1899     PetscCall(DMGetCoordinateDM(rdm, &rcdm));
1900     PetscCall(DMGetCoordinatesLocal(odm, &cl));
1901     PetscCall(DMGetCoordinatesLocal(rdm, &rcl));
1902     PetscCall(DMSetCoarseDM(rcdm, cdm));
1903     PetscCall(DMCreateInterpolation(cdm, rcdm, &In, NULL));
1904     PetscCall(MatMult(In, cl, rcl));
1905     PetscCall(MatDestroy(&In));
1906     PetscCall(DMSetCoordinatesLocal(rdm, rcl));
1907     PetscCall(DMDestroy(&odm));
1908     odm = rdm;
1909   }
1910   *hdm = rdm;
1911   PetscFunctionReturn(PETSC_SUCCESS);
1912 }
1913 
1914 #if defined(PETSC_HAVE_EXODUSII)
1915   #include <exodusII.h>
1916   #include <petscviewerexodusii.h>
1917 #endif
1918 
1919 PetscErrorCode DMView_Plex(DM dm, PetscViewer viewer)
1920 {
1921   PetscBool iascii, ishdf5, isvtk, isdraw, flg, isglvis, isexodus, iscgns;
1922   char      name[PETSC_MAX_PATH_LEN];
1923 
1924   PetscFunctionBegin;
1925   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
1926   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
1927   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERASCII, &iascii));
1928   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk));
1929   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
1930   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw));
1931   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERGLVIS, &isglvis));
1932   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWEREXODUSII, &isexodus));
1933   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERCGNS, &iscgns));
1934   if (iascii) {
1935     PetscViewerFormat format;
1936     PetscCall(PetscViewerGetFormat(viewer, &format));
1937     if (format == PETSC_VIEWER_ASCII_GLVIS) PetscCall(DMPlexView_GLVis(dm, viewer));
1938     else PetscCall(DMPlexView_Ascii(dm, viewer));
1939   } else if (ishdf5) {
1940 #if defined(PETSC_HAVE_HDF5)
1941     PetscCall(DMPlexView_HDF5_Internal(dm, viewer));
1942 #else
1943     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
1944 #endif
1945   } else if (isvtk) {
1946     PetscCall(DMPlexVTKWriteAll((PetscObject)dm, viewer));
1947   } else if (isdraw) {
1948     DM hdm;
1949 
1950     PetscCall(DMPlexCreateHighOrderSurrogate_Internal(dm, &hdm));
1951     PetscCall(DMPlexView_Draw(hdm, viewer));
1952     PetscCall(DMDestroy(&hdm));
1953   } else if (isglvis) {
1954     PetscCall(DMPlexView_GLVis(dm, viewer));
1955 #if defined(PETSC_HAVE_EXODUSII)
1956   } else if (isexodus) {
1957     /*
1958       exodusII requires that all sets be part of exactly one cell set.
1959       If the dm does not have a "Cell Sets" label defined, we create one
1960       with ID 1, containing all cells.
1961       Note that if the Cell Sets label is defined but does not cover all cells,
1962       we may still have a problem. This should probably be checked here or in the viewer;
1963     */
1964     PetscInt numCS;
1965     PetscCall(DMGetLabelSize(dm, "Cell Sets", &numCS));
1966     if (!numCS) {
1967       PetscInt cStart, cEnd, c;
1968       PetscCall(DMCreateLabel(dm, "Cell Sets"));
1969       PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
1970       for (c = cStart; c < cEnd; ++c) PetscCall(DMSetLabelValue(dm, "Cell Sets", c, 1));
1971     }
1972     PetscCall(DMView_PlexExodusII(dm, viewer));
1973 #endif
1974 #if defined(PETSC_HAVE_CGNS)
1975   } else if (iscgns) {
1976     PetscCall(DMView_PlexCGNS(dm, viewer));
1977 #endif
1978   } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Viewer type %s not yet supported for DMPlex writing", ((PetscObject)viewer)->type_name);
1979   /* Optionally view the partition */
1980   PetscCall(PetscOptionsHasName(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_partition_view", &flg));
1981   if (flg) {
1982     Vec ranks;
1983     PetscCall(DMPlexCreateRankField(dm, &ranks));
1984     PetscCall(VecView(ranks, viewer));
1985     PetscCall(VecDestroy(&ranks));
1986   }
1987   /* Optionally view a label */
1988   PetscCall(PetscOptionsGetString(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_label_view", name, sizeof(name), &flg));
1989   if (flg) {
1990     DMLabel label;
1991     Vec     val;
1992 
1993     PetscCall(DMGetLabel(dm, name, &label));
1994     PetscCheck(label, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Label %s provided to -dm_label_view does not exist in this DM", name);
1995     PetscCall(DMPlexCreateLabelField(dm, label, &val));
1996     PetscCall(VecView(val, viewer));
1997     PetscCall(VecDestroy(&val));
1998   }
1999   PetscFunctionReturn(PETSC_SUCCESS);
2000 }
2001 
2002 /*@
2003   DMPlexTopologyView - Saves a `DMPLEX` topology into a file
2004 
2005   Collective
2006 
2007   Input Parameters:
2008 + dm     - The `DM` whose topology is to be saved
2009 - viewer - The `PetscViewer` to save it in
2010 
2011   Level: advanced
2012 
2013 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexCoordinatesView()`, `DMPlexLabelsView()`, `DMPlexTopologyLoad()`, `PetscViewer`
2014 @*/
2015 PetscErrorCode DMPlexTopologyView(DM dm, PetscViewer viewer)
2016 {
2017   PetscBool ishdf5;
2018 
2019   PetscFunctionBegin;
2020   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2021   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2022   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2023   PetscCall(PetscLogEventBegin(DMPLEX_TopologyView, viewer, 0, 0, 0));
2024   if (ishdf5) {
2025 #if defined(PETSC_HAVE_HDF5)
2026     PetscViewerFormat format;
2027     PetscCall(PetscViewerGetFormat(viewer, &format));
2028     if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2029       IS globalPointNumbering;
2030 
2031       PetscCall(DMPlexCreatePointNumbering(dm, &globalPointNumbering));
2032       PetscCall(DMPlexTopologyView_HDF5_Internal(dm, globalPointNumbering, viewer));
2033       PetscCall(ISDestroy(&globalPointNumbering));
2034     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 output.", PetscViewerFormats[format]);
2035 #else
2036     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2037 #endif
2038   }
2039   PetscCall(PetscLogEventEnd(DMPLEX_TopologyView, viewer, 0, 0, 0));
2040   PetscFunctionReturn(PETSC_SUCCESS);
2041 }
2042 
2043 /*@
2044   DMPlexCoordinatesView - Saves `DMPLEX` coordinates into a file
2045 
2046   Collective
2047 
2048   Input Parameters:
2049 + dm     - The `DM` whose coordinates are to be saved
2050 - viewer - The `PetscViewer` for saving
2051 
2052   Level: advanced
2053 
2054 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexTopologyView()`, `DMPlexLabelsView()`, `DMPlexCoordinatesLoad()`, `PetscViewer`
2055 @*/
2056 PetscErrorCode DMPlexCoordinatesView(DM dm, PetscViewer viewer)
2057 {
2058   PetscBool ishdf5;
2059 
2060   PetscFunctionBegin;
2061   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2062   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2063   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2064   PetscCall(PetscLogEventBegin(DMPLEX_CoordinatesView, viewer, 0, 0, 0));
2065   if (ishdf5) {
2066 #if defined(PETSC_HAVE_HDF5)
2067     PetscViewerFormat format;
2068     PetscCall(PetscViewerGetFormat(viewer, &format));
2069     if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2070       PetscCall(DMPlexCoordinatesView_HDF5_Internal(dm, viewer));
2071     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 output.", PetscViewerFormats[format]);
2072 #else
2073     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2074 #endif
2075   }
2076   PetscCall(PetscLogEventEnd(DMPLEX_CoordinatesView, viewer, 0, 0, 0));
2077   PetscFunctionReturn(PETSC_SUCCESS);
2078 }
2079 
2080 /*@
2081   DMPlexLabelsView - Saves `DMPLEX` labels into a file
2082 
2083   Collective
2084 
2085   Input Parameters:
2086 + dm     - The `DM` whose labels are to be saved
2087 - viewer - The `PetscViewer` for saving
2088 
2089   Level: advanced
2090 
2091 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexTopologyView()`, `DMPlexCoordinatesView()`, `DMPlexLabelsLoad()`, `PetscViewer`
2092 @*/
2093 PetscErrorCode DMPlexLabelsView(DM dm, PetscViewer viewer)
2094 {
2095   PetscBool ishdf5;
2096 
2097   PetscFunctionBegin;
2098   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2099   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2100   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2101   PetscCall(PetscLogEventBegin(DMPLEX_LabelsView, viewer, 0, 0, 0));
2102   if (ishdf5) {
2103 #if defined(PETSC_HAVE_HDF5)
2104     IS                globalPointNumbering;
2105     PetscViewerFormat format;
2106 
2107     PetscCall(PetscViewerGetFormat(viewer, &format));
2108     if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2109       PetscCall(DMPlexCreatePointNumbering(dm, &globalPointNumbering));
2110       PetscCall(DMPlexLabelsView_HDF5_Internal(dm, globalPointNumbering, viewer));
2111       PetscCall(ISDestroy(&globalPointNumbering));
2112     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]);
2113 #else
2114     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2115 #endif
2116   }
2117   PetscCall(PetscLogEventEnd(DMPLEX_LabelsView, viewer, 0, 0, 0));
2118   PetscFunctionReturn(PETSC_SUCCESS);
2119 }
2120 
2121 /*@
2122   DMPlexSectionView - Saves a section associated with a `DMPLEX`
2123 
2124   Collective
2125 
2126   Input Parameters:
2127 + dm        - The `DM` that contains the topology on which the section to be saved is defined
2128 . viewer    - The `PetscViewer` for saving
2129 - sectiondm - The `DM` that contains the section to be saved, can be `NULL`
2130 
2131   Level: advanced
2132 
2133   Notes:
2134   This function is a wrapper around `PetscSectionView()`; in addition to the raw section, it saves information that associates the section points to the topology (`dm`) points. When the topology (`dm`) and the section are later loaded with `DMPlexTopologyLoad()` and `DMPlexSectionLoad()`, respectively, this information is used to match section points with topology points.
2135 
2136   In general `dm` and `sectiondm` are two different objects, the former carrying the topology and the latter carrying the section, and have been given a topology name and a section name, respectively, with `PetscObjectSetName()`. In practice, however, they can be the same object (or in case `sectiondm` is `NULL`) if it carries both topology and section; in that case the name of the object is used as both the topology name and the section name.
2137 
2138 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexTopologyView()`, `DMPlexCoordinatesView()`, `DMPlexLabelsView()`, `DMPlexGlobalVectorView()`, `DMPlexLocalVectorView()`, `PetscSectionView()`, `DMPlexSectionLoad()`, `PetscViewer`
2139 @*/
2140 PetscErrorCode DMPlexSectionView(DM dm, PetscViewer viewer, DM sectiondm)
2141 {
2142   PetscBool ishdf5;
2143 
2144   PetscFunctionBegin;
2145   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2146   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2147   if (!sectiondm) sectiondm = dm;
2148   PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3);
2149   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2150   PetscCall(PetscLogEventBegin(DMPLEX_SectionView, viewer, 0, 0, 0));
2151   if (ishdf5) {
2152 #if defined(PETSC_HAVE_HDF5)
2153     PetscCall(DMPlexSectionView_HDF5_Internal(dm, viewer, sectiondm));
2154 #else
2155     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2156 #endif
2157   }
2158   PetscCall(PetscLogEventEnd(DMPLEX_SectionView, viewer, 0, 0, 0));
2159   PetscFunctionReturn(PETSC_SUCCESS);
2160 }
2161 
2162 /*@
2163   DMPlexGlobalVectorView - Saves a global vector
2164 
2165   Collective
2166 
2167   Input Parameters:
2168 + dm        - The `DM` that represents the topology
2169 . viewer    - The `PetscViewer` to save data with
2170 . sectiondm - The `DM` that contains the global section on which vec is defined, can be `NULL`
2171 - vec       - The global vector to be saved
2172 
2173   Level: advanced
2174 
2175   Notes:
2176   In general `dm` and `sectiondm` are two different objects, the former carrying the topology and the latter carrying the section, and have been given a topology name and a section name, respectively, with `PetscObjectSetName()`. In practice, however, they can be the same object (or in case `sectiondm` is `NULL`) if it carries both topology and section; in that case the name of the object is used as both the topology name and the section name.
2177 
2178   Calling sequence:
2179 .vb
2180        DMCreate(PETSC_COMM_WORLD, &dm);
2181        DMSetType(dm, DMPLEX);
2182        PetscObjectSetName((PetscObject)dm, "topologydm_name");
2183        DMClone(dm, &sectiondm);
2184        PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name");
2185        PetscSectionCreate(PETSC_COMM_WORLD, &section);
2186        DMPlexGetChart(sectiondm, &pStart, &pEnd);
2187        PetscSectionSetChart(section, pStart, pEnd);
2188        PetscSectionSetUp(section);
2189        DMSetLocalSection(sectiondm, section);
2190        PetscSectionDestroy(&section);
2191        DMGetGlobalVector(sectiondm, &vec);
2192        PetscObjectSetName((PetscObject)vec, "vec_name");
2193        DMPlexTopologyView(dm, viewer);
2194        DMPlexSectionView(dm, viewer, sectiondm);
2195        DMPlexGlobalVectorView(dm, viewer, sectiondm, vec);
2196        DMRestoreGlobalVector(sectiondm, &vec);
2197        DMDestroy(&sectiondm);
2198        DMDestroy(&dm);
2199 .ve
2200 
2201 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyView()`, `DMPlexSectionView()`, `DMPlexLocalVectorView()`, `DMPlexGlobalVectorLoad()`, `DMPlexLocalVectorLoad()`
2202 @*/
2203 PetscErrorCode DMPlexGlobalVectorView(DM dm, PetscViewer viewer, DM sectiondm, Vec vec)
2204 {
2205   PetscBool ishdf5;
2206 
2207   PetscFunctionBegin;
2208   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2209   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2210   if (!sectiondm) sectiondm = dm;
2211   PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3);
2212   PetscValidHeaderSpecific(vec, VEC_CLASSID, 4);
2213   /* Check consistency */
2214   {
2215     PetscSection section;
2216     PetscBool    includesConstraints;
2217     PetscInt     m, m1;
2218 
2219     PetscCall(VecGetLocalSize(vec, &m1));
2220     PetscCall(DMGetGlobalSection(sectiondm, &section));
2221     PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints));
2222     if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m));
2223     else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m));
2224     PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Global vector size (%" PetscInt_FMT ") != global section storage size (%" PetscInt_FMT ")", m1, m);
2225   }
2226   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2227   PetscCall(PetscLogEventBegin(DMPLEX_GlobalVectorView, viewer, 0, 0, 0));
2228   if (ishdf5) {
2229 #if defined(PETSC_HAVE_HDF5)
2230     PetscCall(DMPlexGlobalVectorView_HDF5_Internal(dm, viewer, sectiondm, vec));
2231 #else
2232     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2233 #endif
2234   }
2235   PetscCall(PetscLogEventEnd(DMPLEX_GlobalVectorView, viewer, 0, 0, 0));
2236   PetscFunctionReturn(PETSC_SUCCESS);
2237 }
2238 
2239 /*@
2240   DMPlexLocalVectorView - Saves a local vector
2241 
2242   Collective
2243 
2244   Input Parameters:
2245 + dm        - The `DM` that represents the topology
2246 . viewer    - The `PetscViewer` to save data with
2247 . sectiondm - The `DM` that contains the local section on which `vec` is defined, can be `NULL`
2248 - vec       - The local vector to be saved
2249 
2250   Level: advanced
2251 
2252   Note:
2253   In general `dm` and `sectiondm` are two different objects, the former carrying the topology and the latter carrying the section, and have been given a topology name and a section name, respectively, with `PetscObjectSetName()`. In practice, however, they can be the same object (or in case `sectiondm` is `NULL`) if it carries both topology and section; in that case the name of the object is used as both the topology name and the section name.
2254 
2255   Calling sequence:
2256 .vb
2257        DMCreate(PETSC_COMM_WORLD, &dm);
2258        DMSetType(dm, DMPLEX);
2259        PetscObjectSetName((PetscObject)dm, "topologydm_name");
2260        DMClone(dm, &sectiondm);
2261        PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name");
2262        PetscSectionCreate(PETSC_COMM_WORLD, &section);
2263        DMPlexGetChart(sectiondm, &pStart, &pEnd);
2264        PetscSectionSetChart(section, pStart, pEnd);
2265        PetscSectionSetUp(section);
2266        DMSetLocalSection(sectiondm, section);
2267        DMGetLocalVector(sectiondm, &vec);
2268        PetscObjectSetName((PetscObject)vec, "vec_name");
2269        DMPlexTopologyView(dm, viewer);
2270        DMPlexSectionView(dm, viewer, sectiondm);
2271        DMPlexLocalVectorView(dm, viewer, sectiondm, vec);
2272        DMRestoreLocalVector(sectiondm, &vec);
2273        DMDestroy(&sectiondm);
2274        DMDestroy(&dm);
2275 .ve
2276 
2277 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyView()`, `DMPlexSectionView()`, `DMPlexGlobalVectorView()`, `DMPlexGlobalVectorLoad()`, `DMPlexLocalVectorLoad()`
2278 @*/
2279 PetscErrorCode DMPlexLocalVectorView(DM dm, PetscViewer viewer, DM sectiondm, Vec vec)
2280 {
2281   PetscBool ishdf5;
2282 
2283   PetscFunctionBegin;
2284   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2285   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2286   if (!sectiondm) sectiondm = dm;
2287   PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3);
2288   PetscValidHeaderSpecific(vec, VEC_CLASSID, 4);
2289   /* Check consistency */
2290   {
2291     PetscSection section;
2292     PetscBool    includesConstraints;
2293     PetscInt     m, m1;
2294 
2295     PetscCall(VecGetLocalSize(vec, &m1));
2296     PetscCall(DMGetLocalSection(sectiondm, &section));
2297     PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints));
2298     if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m));
2299     else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m));
2300     PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Local vector size (%" PetscInt_FMT ") != local section storage size (%" PetscInt_FMT ")", m1, m);
2301   }
2302   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2303   PetscCall(PetscLogEventBegin(DMPLEX_LocalVectorView, viewer, 0, 0, 0));
2304   if (ishdf5) {
2305 #if defined(PETSC_HAVE_HDF5)
2306     PetscCall(DMPlexLocalVectorView_HDF5_Internal(dm, viewer, sectiondm, vec));
2307 #else
2308     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2309 #endif
2310   }
2311   PetscCall(PetscLogEventEnd(DMPLEX_LocalVectorView, viewer, 0, 0, 0));
2312   PetscFunctionReturn(PETSC_SUCCESS);
2313 }
2314 
2315 PetscErrorCode DMLoad_Plex(DM dm, PetscViewer viewer)
2316 {
2317   PetscBool ishdf5;
2318 
2319   PetscFunctionBegin;
2320   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2321   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2322   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2323   if (ishdf5) {
2324 #if defined(PETSC_HAVE_HDF5)
2325     PetscViewerFormat format;
2326     PetscCall(PetscViewerGetFormat(viewer, &format));
2327     if (format == PETSC_VIEWER_HDF5_XDMF || format == PETSC_VIEWER_HDF5_VIZ) {
2328       PetscCall(DMPlexLoad_HDF5_Xdmf_Internal(dm, viewer));
2329     } else if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2330       PetscCall(DMPlexLoad_HDF5_Internal(dm, viewer));
2331     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]);
2332     PetscFunctionReturn(PETSC_SUCCESS);
2333 #else
2334     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2335 #endif
2336   } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Viewer type %s not yet supported for DMPlex loading", ((PetscObject)viewer)->type_name);
2337 }
2338 
2339 /*@
2340   DMPlexTopologyLoad - Loads a topology into a `DMPLEX`
2341 
2342   Collective
2343 
2344   Input Parameters:
2345 + dm     - The `DM` into which the topology is loaded
2346 - viewer - The `PetscViewer` for the saved topology
2347 
2348   Output Parameter:
2349 . globalToLocalPointSF - The `PetscSF` that pushes points in [0, N) to the associated points in the loaded `DMPLEX`, where N is the global number of points; `NULL` if unneeded
2350 
2351   Level: advanced
2352 
2353 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexCoordinatesLoad()`, `DMPlexLabelsLoad()`, `DMView()`, `PetscViewerHDF5Open()`, `PetscViewerPushFormat()`,
2354           `PetscViewer`, `PetscSF`
2355 @*/
2356 PetscErrorCode DMPlexTopologyLoad(DM dm, PetscViewer viewer, PetscSF *globalToLocalPointSF)
2357 {
2358   PetscBool ishdf5;
2359 
2360   PetscFunctionBegin;
2361   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2362   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2363   if (globalToLocalPointSF) PetscAssertPointer(globalToLocalPointSF, 3);
2364   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2365   PetscCall(PetscLogEventBegin(DMPLEX_TopologyLoad, viewer, 0, 0, 0));
2366   if (ishdf5) {
2367 #if defined(PETSC_HAVE_HDF5)
2368     PetscViewerFormat format;
2369     PetscCall(PetscViewerGetFormat(viewer, &format));
2370     if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2371       PetscCall(DMPlexTopologyLoad_HDF5_Internal(dm, viewer, globalToLocalPointSF));
2372     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]);
2373 #else
2374     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2375 #endif
2376   }
2377   PetscCall(PetscLogEventEnd(DMPLEX_TopologyLoad, viewer, 0, 0, 0));
2378   PetscFunctionReturn(PETSC_SUCCESS);
2379 }
2380 
2381 /*@
2382   DMPlexCoordinatesLoad - Loads coordinates into a `DMPLEX`
2383 
2384   Collective
2385 
2386   Input Parameters:
2387 + dm                   - The `DM` into which the coordinates are loaded
2388 . viewer               - The `PetscViewer` for the saved coordinates
2389 - globalToLocalPointSF - The `PetscSF` returned by `DMPlexTopologyLoad()` when loading dm from viewer
2390 
2391   Level: advanced
2392 
2393 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexTopologyLoad()`, `DMPlexLabelsLoad()`, `DMView()`, `PetscViewerHDF5Open()`, `PetscViewerPushFormat()`,
2394           `PetscSF`, `PetscViewer`
2395 @*/
2396 PetscErrorCode DMPlexCoordinatesLoad(DM dm, PetscViewer viewer, PetscSF globalToLocalPointSF)
2397 {
2398   PetscBool ishdf5;
2399 
2400   PetscFunctionBegin;
2401   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2402   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2403   PetscValidHeaderSpecific(globalToLocalPointSF, PETSCSF_CLASSID, 3);
2404   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2405   PetscCall(PetscLogEventBegin(DMPLEX_CoordinatesLoad, viewer, 0, 0, 0));
2406   if (ishdf5) {
2407 #if defined(PETSC_HAVE_HDF5)
2408     PetscViewerFormat format;
2409     PetscCall(PetscViewerGetFormat(viewer, &format));
2410     if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2411       PetscCall(DMPlexCoordinatesLoad_HDF5_Internal(dm, viewer, globalToLocalPointSF));
2412     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]);
2413 #else
2414     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2415 #endif
2416   }
2417   PetscCall(PetscLogEventEnd(DMPLEX_CoordinatesLoad, viewer, 0, 0, 0));
2418   PetscFunctionReturn(PETSC_SUCCESS);
2419 }
2420 
2421 /*@
2422   DMPlexLabelsLoad - Loads labels into a `DMPLEX`
2423 
2424   Collective
2425 
2426   Input Parameters:
2427 + dm                   - The `DM` into which the labels are loaded
2428 . viewer               - The `PetscViewer` for the saved labels
2429 - globalToLocalPointSF - The `PetscSF` returned by `DMPlexTopologyLoad()` when loading `dm` from viewer
2430 
2431   Level: advanced
2432 
2433   Note:
2434   The `PetscSF` argument must not be `NULL` if the `DM` is distributed, otherwise an error occurs.
2435 
2436 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexTopologyLoad()`, `DMPlexCoordinatesLoad()`, `DMView()`, `PetscViewerHDF5Open()`, `PetscViewerPushFormat()`,
2437           `PetscSF`, `PetscViewer`
2438 @*/
2439 PetscErrorCode DMPlexLabelsLoad(DM dm, PetscViewer viewer, PetscSF globalToLocalPointSF)
2440 {
2441   PetscBool ishdf5;
2442 
2443   PetscFunctionBegin;
2444   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2445   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2446   if (globalToLocalPointSF) PetscValidHeaderSpecific(globalToLocalPointSF, PETSCSF_CLASSID, 3);
2447   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2448   PetscCall(PetscLogEventBegin(DMPLEX_LabelsLoad, viewer, 0, 0, 0));
2449   if (ishdf5) {
2450 #if defined(PETSC_HAVE_HDF5)
2451     PetscViewerFormat format;
2452 
2453     PetscCall(PetscViewerGetFormat(viewer, &format));
2454     if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) {
2455       PetscCall(DMPlexLabelsLoad_HDF5_Internal(dm, viewer, globalToLocalPointSF));
2456     } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]);
2457 #else
2458     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2459 #endif
2460   }
2461   PetscCall(PetscLogEventEnd(DMPLEX_LabelsLoad, viewer, 0, 0, 0));
2462   PetscFunctionReturn(PETSC_SUCCESS);
2463 }
2464 
2465 /*@
2466   DMPlexSectionLoad - Loads section into a `DMPLEX`
2467 
2468   Collective
2469 
2470   Input Parameters:
2471 + dm                   - The `DM` that represents the topology
2472 . viewer               - The `PetscViewer` that represents the on-disk section (sectionA)
2473 . sectiondm            - The `DM` into which the on-disk section (sectionA) is migrated, can be `NULL`
2474 - globalToLocalPointSF - The `PetscSF` returned by `DMPlexTopologyLoad(`) when loading dm from viewer
2475 
2476   Output Parameters:
2477 + globalDofSF - The `PetscSF` that migrates any on-disk `Vec` data associated with sectionA into a global `Vec` associated with the `sectiondm`'s global section (`NULL` if not needed)
2478 - localDofSF  - The `PetscSF` that migrates any on-disk `Vec` data associated with sectionA into a local `Vec` associated with the `sectiondm`'s local section (`NULL` if not needed)
2479 
2480   Level: advanced
2481 
2482   Notes:
2483   This function is a wrapper around `PetscSectionLoad()`; it loads, in addition to the raw section, a list of global point numbers that associates each on-disk section point with a global point number in [0, NX), where NX is the number of topology points in `dm`. Noting that globalToLocalPointSF associates each topology point in dm with a global number in [0, NX), one can readily establish an association of the on-disk section points with the topology points.
2484 
2485   In general `dm` and `sectiondm` are two different objects, the former carrying the topology and the latter carrying the section, and have been given a topology name and a section name, respectively, with `PetscObjectSetName()`. In practice, however, they can be the same object (or in case `sectiondm` is `NULL`) if it carries both topology and section; in that case the name of the object is used as both the topology name and the section name.
2486 
2487   The output parameter, `globalDofSF` (`localDofSF`), can later be used with `DMPlexGlobalVectorLoad()` (`DMPlexLocalVectorLoad()`) to load on-disk vectors into global (local) vectors associated with sectiondm's global (local) section.
2488 
2489   Example using 2 processes:
2490 .vb
2491   NX (number of points on dm): 4
2492   sectionA                   : the on-disk section
2493   vecA                       : a vector associated with sectionA
2494   sectionB                   : sectiondm's local section constructed in this function
2495   vecB (local)               : a vector associated with sectiondm's local section
2496   vecB (global)              : a vector associated with sectiondm's global section
2497 
2498                                      rank 0    rank 1
2499   vecA (global)                  : [.0 .4 .1 | .2 .3]        <- to be loaded in DMPlexGlobalVectorLoad() or DMPlexLocalVectorLoad()
2500   sectionA->atlasOff             :       0 2 | 1             <- loaded in PetscSectionLoad()
2501   sectionA->atlasDof             :       1 3 | 1             <- loaded in PetscSectionLoad()
2502   sectionA's global point numbers:       0 2 | 3             <- loaded in DMPlexSectionLoad()
2503   [0, NX)                        :       0 1 | 2 3           <- conceptual partition used in globalToLocalPointSF
2504   sectionB's global point numbers:     0 1 3 | 3 2           <- associated with [0, NX) by globalToLocalPointSF
2505   sectionB->atlasDof             :     1 0 1 | 1 3
2506   sectionB->atlasOff (no perm)   :     0 1 1 | 0 1
2507   vecB (local)                   :   [.0 .4] | [.4 .1 .2 .3] <- to be constructed by calling DMPlexLocalVectorLoad() with localDofSF
2508   vecB (global)                  :    [.0 .4 | .1 .2 .3]     <- to be constructed by calling DMPlexGlobalVectorLoad() with globalDofSF
2509 .ve
2510   where "|" represents a partition of loaded data, and global point 3 is assumed to be owned by rank 0.
2511 
2512 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexTopologyLoad()`, `DMPlexCoordinatesLoad()`, `DMPlexLabelsLoad()`, `DMPlexGlobalVectorLoad()`, `DMPlexLocalVectorLoad()`, `PetscSectionLoad()`, `DMPlexSectionView()`, `PetscSF`, `PetscViewer`
2513 @*/
2514 PetscErrorCode DMPlexSectionLoad(DM dm, PetscViewer viewer, DM sectiondm, PetscSF globalToLocalPointSF, PetscSF *globalDofSF, PetscSF *localDofSF)
2515 {
2516   PetscBool ishdf5;
2517 
2518   PetscFunctionBegin;
2519   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2520   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2521   if (!sectiondm) sectiondm = dm;
2522   PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3);
2523   PetscValidHeaderSpecific(globalToLocalPointSF, PETSCSF_CLASSID, 4);
2524   if (globalDofSF) PetscAssertPointer(globalDofSF, 5);
2525   if (localDofSF) PetscAssertPointer(localDofSF, 6);
2526   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2527   PetscCall(PetscLogEventBegin(DMPLEX_SectionLoad, viewer, 0, 0, 0));
2528   if (ishdf5) {
2529 #if defined(PETSC_HAVE_HDF5)
2530     PetscCall(DMPlexSectionLoad_HDF5_Internal(dm, viewer, sectiondm, globalToLocalPointSF, globalDofSF, localDofSF));
2531 #else
2532     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2533 #endif
2534   }
2535   PetscCall(PetscLogEventEnd(DMPLEX_SectionLoad, viewer, 0, 0, 0));
2536   PetscFunctionReturn(PETSC_SUCCESS);
2537 }
2538 
2539 /*@
2540   DMPlexGlobalVectorLoad - Loads on-disk vector data into a global vector
2541 
2542   Collective
2543 
2544   Input Parameters:
2545 + dm        - The `DM` that represents the topology
2546 . viewer    - The `PetscViewer` that represents the on-disk vector data
2547 . sectiondm - The `DM` that contains the global section on which vec is defined, can be `NULL`
2548 . sf        - The `PetscSF` that migrates the on-disk vector data into vec
2549 - vec       - The global vector to set values of
2550 
2551   Level: advanced
2552 
2553   Notes:
2554   In general dm and sectiondm are two different objects, the former carrying the topology and the latter carrying the section, and have been given a topology name and a section name, respectively, with `PetscObjectSetName()`. In practice, however, they can be the same object (or in case `sectiondm` is `NULL`) if it carries both topology and section; in that case the name of the object is used as both the topology name and the section name.
2555 
2556   Calling sequence:
2557 .vb
2558        DMCreate(PETSC_COMM_WORLD, &dm);
2559        DMSetType(dm, DMPLEX);
2560        PetscObjectSetName((PetscObject)dm, "topologydm_name");
2561        DMPlexTopologyLoad(dm, viewer, &sfX);
2562        DMClone(dm, &sectiondm);
2563        PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name");
2564        DMPlexSectionLoad(dm, viewer, sectiondm, sfX, &gsf, NULL);
2565        DMGetGlobalVector(sectiondm, &vec);
2566        PetscObjectSetName((PetscObject)vec, "vec_name");
2567        DMPlexGlobalVectorLoad(dm, viewer, sectiondm, gsf, vec);
2568        DMRestoreGlobalVector(sectiondm, &vec);
2569        PetscSFDestroy(&gsf);
2570        PetscSFDestroy(&sfX);
2571        DMDestroy(&sectiondm);
2572        DMDestroy(&dm);
2573 .ve
2574 
2575 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyLoad()`, `DMPlexSectionLoad()`, `DMPlexLocalVectorLoad()`, `DMPlexGlobalVectorView()`, `DMPlexLocalVectorView()`,
2576           `PetscSF`, `PetscViewer`
2577 @*/
2578 PetscErrorCode DMPlexGlobalVectorLoad(DM dm, PetscViewer viewer, DM sectiondm, PetscSF sf, Vec vec)
2579 {
2580   PetscBool ishdf5;
2581 
2582   PetscFunctionBegin;
2583   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2584   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2585   if (!sectiondm) sectiondm = dm;
2586   PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3);
2587   PetscValidHeaderSpecific(sf, PETSCSF_CLASSID, 4);
2588   PetscValidHeaderSpecific(vec, VEC_CLASSID, 5);
2589   /* Check consistency */
2590   {
2591     PetscSection section;
2592     PetscBool    includesConstraints;
2593     PetscInt     m, m1;
2594 
2595     PetscCall(VecGetLocalSize(vec, &m1));
2596     PetscCall(DMGetGlobalSection(sectiondm, &section));
2597     PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints));
2598     if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m));
2599     else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m));
2600     PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Global vector size (%" PetscInt_FMT ") != global section storage size (%" PetscInt_FMT ")", m1, m);
2601   }
2602   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2603   PetscCall(PetscLogEventBegin(DMPLEX_GlobalVectorLoad, viewer, 0, 0, 0));
2604   if (ishdf5) {
2605 #if defined(PETSC_HAVE_HDF5)
2606     PetscCall(DMPlexVecLoad_HDF5_Internal(dm, viewer, sectiondm, sf, vec));
2607 #else
2608     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2609 #endif
2610   }
2611   PetscCall(PetscLogEventEnd(DMPLEX_GlobalVectorLoad, viewer, 0, 0, 0));
2612   PetscFunctionReturn(PETSC_SUCCESS);
2613 }
2614 
2615 /*@
2616   DMPlexLocalVectorLoad - Loads on-disk vector data into a local vector
2617 
2618   Collective
2619 
2620   Input Parameters:
2621 + dm        - The `DM` that represents the topology
2622 . viewer    - The `PetscViewer` that represents the on-disk vector data
2623 . sectiondm - The `DM` that contains the local section on which vec is defined, can be `NULL`
2624 . sf        - The `PetscSF` that migrates the on-disk vector data into vec
2625 - vec       - The local vector to set values of
2626 
2627   Level: advanced
2628 
2629   Notes:
2630   In general `dm` and `sectiondm` are two different objects, the former carrying the topology and the latter carrying the section, and have been given a topology name and a section name, respectively, with `PetscObjectSetName()`. In practice, however, they can be the same object (or in case `sectiondm` is `NULL`) if it carries both topology and section; in that case the name of the object is used as both the topology name and the section name.
2631 
2632   Calling sequence:
2633 .vb
2634        DMCreate(PETSC_COMM_WORLD, &dm);
2635        DMSetType(dm, DMPLEX);
2636        PetscObjectSetName((PetscObject)dm, "topologydm_name");
2637        DMPlexTopologyLoad(dm, viewer, &sfX);
2638        DMClone(dm, &sectiondm);
2639        PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name");
2640        DMPlexSectionLoad(dm, viewer, sectiondm, sfX, NULL, &lsf);
2641        DMGetLocalVector(sectiondm, &vec);
2642        PetscObjectSetName((PetscObject)vec, "vec_name");
2643        DMPlexLocalVectorLoad(dm, viewer, sectiondm, lsf, vec);
2644        DMRestoreLocalVector(sectiondm, &vec);
2645        PetscSFDestroy(&lsf);
2646        PetscSFDestroy(&sfX);
2647        DMDestroy(&sectiondm);
2648        DMDestroy(&dm);
2649 .ve
2650 
2651 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyLoad()`, `DMPlexSectionLoad()`, `DMPlexGlobalVectorLoad()`, `DMPlexGlobalVectorView()`, `DMPlexLocalVectorView()`,
2652           `PetscSF`, `PetscViewer`
2653 @*/
2654 PetscErrorCode DMPlexLocalVectorLoad(DM dm, PetscViewer viewer, DM sectiondm, PetscSF sf, Vec vec)
2655 {
2656   PetscBool ishdf5;
2657 
2658   PetscFunctionBegin;
2659   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2660   PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2);
2661   if (!sectiondm) sectiondm = dm;
2662   PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3);
2663   PetscValidHeaderSpecific(sf, PETSCSF_CLASSID, 4);
2664   PetscValidHeaderSpecific(vec, VEC_CLASSID, 5);
2665   /* Check consistency */
2666   {
2667     PetscSection section;
2668     PetscBool    includesConstraints;
2669     PetscInt     m, m1;
2670 
2671     PetscCall(VecGetLocalSize(vec, &m1));
2672     PetscCall(DMGetLocalSection(sectiondm, &section));
2673     PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints));
2674     if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m));
2675     else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m));
2676     PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Local vector size (%" PetscInt_FMT ") != local section storage size (%" PetscInt_FMT ")", m1, m);
2677   }
2678   PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5));
2679   PetscCall(PetscLogEventBegin(DMPLEX_LocalVectorLoad, viewer, 0, 0, 0));
2680   if (ishdf5) {
2681 #if defined(PETSC_HAVE_HDF5)
2682     PetscCall(DMPlexVecLoad_HDF5_Internal(dm, viewer, sectiondm, sf, vec));
2683 #else
2684     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5");
2685 #endif
2686   }
2687   PetscCall(PetscLogEventEnd(DMPLEX_LocalVectorLoad, viewer, 0, 0, 0));
2688   PetscFunctionReturn(PETSC_SUCCESS);
2689 }
2690 
2691 PetscErrorCode DMDestroy_Plex(DM dm)
2692 {
2693   DM_Plex *mesh = (DM_Plex *)dm->data;
2694 
2695   PetscFunctionBegin;
2696   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMSetUpGLVisViewer_C", NULL));
2697   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexInsertBoundaryValues_C", NULL));
2698   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMCreateNeumannOverlap_C", NULL));
2699   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMInterpolateSolution_C", NULL));
2700   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexInsertTimeDerivativeBoundaryValues_C", NULL));
2701   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexGetOverlap_C", NULL));
2702   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexDistributeGetDefault_C", NULL));
2703   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexDistributeSetDefault_C", NULL));
2704   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "MatComputeNeumannOverlap_C", NULL));
2705   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexReorderGetDefault_C", NULL));
2706   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexReorderSetDefault_C", NULL));
2707   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMReorderSectionGetDefault_C", NULL));
2708   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMReorderSectionSetDefault_C", NULL));
2709   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMReorderSectionGetType_C", NULL));
2710   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMReorderSectionSetType_C", NULL));
2711   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexGetOverlap_C", NULL));
2712   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexSetOverlap_C", NULL));
2713   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexGetUseCeed_C", NULL));
2714   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexSetUseCeed_C", NULL));
2715   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMGetIsoperiodicPointSF_C", NULL));
2716   if (--mesh->refct > 0) PetscFunctionReturn(PETSC_SUCCESS);
2717   PetscCall(PetscSectionDestroy(&mesh->coneSection));
2718   PetscCall(PetscFree(mesh->cones));
2719   PetscCall(PetscFree(mesh->coneOrientations));
2720   PetscCall(PetscSectionDestroy(&mesh->supportSection));
2721   PetscCall(PetscSectionDestroy(&mesh->subdomainSection));
2722   PetscCall(PetscFree(mesh->supports));
2723   PetscCall(PetscFree(mesh->cellTypes));
2724   PetscCall(DMPlexTransformDestroy(&mesh->tr));
2725   PetscCall(PetscFree(mesh->tetgenOpts));
2726   PetscCall(PetscFree(mesh->triangleOpts));
2727   PetscCall(PetscFree(mesh->transformType));
2728   PetscCall(PetscFree(mesh->distributionName));
2729   PetscCall(PetscPartitionerDestroy(&mesh->partitioner));
2730   PetscCall(DMLabelDestroy(&mesh->subpointMap));
2731   PetscCall(ISDestroy(&mesh->subpointIS));
2732   PetscCall(ISDestroy(&mesh->globalVertexNumbers));
2733   PetscCall(ISDestroy(&mesh->globalCellNumbers));
2734   if (mesh->periodic.face_sfs) {
2735     for (PetscInt i = 0; i < mesh->periodic.num_face_sfs; i++) PetscCall(PetscSFDestroy(&mesh->periodic.face_sfs[i]));
2736     PetscCall(PetscFree(mesh->periodic.face_sfs));
2737   }
2738   PetscCall(PetscSFDestroy(&mesh->periodic.composed_sf));
2739   if (mesh->periodic.periodic_points) {
2740     for (PetscInt i = 0; i < mesh->periodic.num_face_sfs; i++) PetscCall(ISDestroy(&mesh->periodic.periodic_points[i]));
2741     PetscCall(PetscFree(mesh->periodic.periodic_points));
2742   }
2743   if (mesh->periodic.transform) PetscCall(PetscFree(mesh->periodic.transform));
2744   PetscCall(PetscSectionDestroy(&mesh->anchorSection));
2745   PetscCall(ISDestroy(&mesh->anchorIS));
2746   PetscCall(PetscSectionDestroy(&mesh->parentSection));
2747   PetscCall(PetscFree(mesh->parents));
2748   PetscCall(PetscFree(mesh->childIDs));
2749   PetscCall(PetscSectionDestroy(&mesh->childSection));
2750   PetscCall(PetscFree(mesh->children));
2751   PetscCall(DMDestroy(&mesh->referenceTree));
2752   PetscCall(PetscGridHashDestroy(&mesh->lbox));
2753   PetscCall(PetscFree(mesh->neighbors));
2754   if (mesh->metricCtx) PetscCall(PetscFree(mesh->metricCtx));
2755   /* This was originally freed in DMDestroy(), but that prevents reference counting of backend objects */
2756   PetscCall(PetscFree(mesh));
2757   PetscFunctionReturn(PETSC_SUCCESS);
2758 }
2759 
2760 PetscErrorCode DMCreateMatrix_Plex(DM dm, Mat *J)
2761 {
2762   PetscSection           sectionGlobal, sectionLocal;
2763   PetscInt               bs = -1, mbs;
2764   PetscInt               localSize, localStart = 0;
2765   PetscBool              isShell, isBlock, isSeqBlock, isMPIBlock, isSymBlock, isSymSeqBlock, isSymMPIBlock, isMatIS;
2766   MatType                mtype;
2767   ISLocalToGlobalMapping ltog;
2768 
2769   PetscFunctionBegin;
2770   PetscCall(MatInitializePackage());
2771   mtype = dm->mattype;
2772   PetscCall(DMGetLocalSection(dm, &sectionLocal));
2773   PetscCall(DMGetGlobalSection(dm, &sectionGlobal));
2774   /* PetscCall(PetscSectionGetStorageSize(sectionGlobal, &localSize)); */
2775   PetscCall(PetscSectionGetConstrainedStorageSize(sectionGlobal, &localSize));
2776   PetscCallMPI(MPI_Exscan(&localSize, &localStart, 1, MPIU_INT, MPI_SUM, PetscObjectComm((PetscObject)dm)));
2777   PetscCall(MatCreate(PetscObjectComm((PetscObject)dm), J));
2778   PetscCall(MatSetSizes(*J, localSize, localSize, PETSC_DETERMINE, PETSC_DETERMINE));
2779   PetscCall(MatSetType(*J, mtype));
2780   PetscCall(MatSetFromOptions(*J));
2781   PetscCall(MatGetBlockSize(*J, &mbs));
2782   if (mbs > 1) bs = mbs;
2783   PetscCall(PetscStrcmp(mtype, MATSHELL, &isShell));
2784   PetscCall(PetscStrcmp(mtype, MATBAIJ, &isBlock));
2785   PetscCall(PetscStrcmp(mtype, MATSEQBAIJ, &isSeqBlock));
2786   PetscCall(PetscStrcmp(mtype, MATMPIBAIJ, &isMPIBlock));
2787   PetscCall(PetscStrcmp(mtype, MATSBAIJ, &isSymBlock));
2788   PetscCall(PetscStrcmp(mtype, MATSEQSBAIJ, &isSymSeqBlock));
2789   PetscCall(PetscStrcmp(mtype, MATMPISBAIJ, &isSymMPIBlock));
2790   PetscCall(PetscStrcmp(mtype, MATIS, &isMatIS));
2791   if (!isShell) {
2792     PetscBool fillMatrix = (PetscBool)(!dm->prealloc_only && !isMatIS);
2793     PetscInt *dnz, *onz, *dnzu, *onzu, bsLocal[2], bsMinMax[2], *pblocks;
2794     PetscInt  pStart, pEnd, p, dof, cdof, num_fields;
2795 
2796     PetscCall(DMGetLocalToGlobalMapping(dm, &ltog));
2797 
2798     PetscCall(PetscCalloc1(localSize, &pblocks));
2799     PetscCall(PetscSectionGetChart(sectionGlobal, &pStart, &pEnd));
2800     PetscCall(PetscSectionGetNumFields(sectionGlobal, &num_fields));
2801     for (p = pStart; p < pEnd; ++p) {
2802       switch (dm->blocking_type) {
2803       case DM_BLOCKING_TOPOLOGICAL_POINT: { // One block per topological point
2804         PetscInt bdof, offset;
2805 
2806         PetscCall(PetscSectionGetDof(sectionGlobal, p, &dof));
2807         PetscCall(PetscSectionGetOffset(sectionGlobal, p, &offset));
2808         PetscCall(PetscSectionGetConstraintDof(sectionGlobal, p, &cdof));
2809         if (dof > 0) {
2810           for (PetscInt i = 0; i < dof - cdof; ++i) pblocks[offset - localStart + i] = dof - cdof;
2811           // Signal block concatenation
2812           if (dof - cdof && sectionLocal->blockStarts && !PetscBTLookup(sectionLocal->blockStarts, p)) pblocks[offset - localStart] = -(dof - cdof);
2813         }
2814         dof  = dof < 0 ? -(dof + 1) : dof;
2815         bdof = cdof && (dof - cdof) ? 1 : dof;
2816         if (dof) {
2817           if (bs < 0) {
2818             bs = bdof;
2819           } else if (bs != bdof) {
2820             bs = 1;
2821           }
2822         }
2823       } break;
2824       case DM_BLOCKING_FIELD_NODE: {
2825         for (PetscInt field = 0; field < num_fields; field++) {
2826           PetscInt num_comp, bdof, offset;
2827           PetscCall(PetscSectionGetFieldComponents(sectionGlobal, field, &num_comp));
2828           PetscCall(PetscSectionGetFieldDof(sectionGlobal, p, field, &dof));
2829           if (dof < 0) continue;
2830           PetscCall(PetscSectionGetFieldOffset(sectionGlobal, p, field, &offset));
2831           PetscCall(PetscSectionGetFieldConstraintDof(sectionGlobal, p, field, &cdof));
2832           PetscAssert(dof % num_comp == 0, PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, "Point %" PetscInt_FMT " field %" PetscInt_FMT " has %" PetscInt_FMT " dof, not divisible by %" PetscInt_FMT " component ", p, field, dof, num_comp);
2833           PetscInt num_nodes = dof / num_comp;
2834           for (PetscInt i = 0; i < dof - cdof; i++) pblocks[offset - localStart + i] = (dof - cdof) / num_nodes;
2835           // Handle possibly constant block size (unlikely)
2836           bdof = cdof && (dof - cdof) ? 1 : dof;
2837           if (dof) {
2838             if (bs < 0) {
2839               bs = bdof;
2840             } else if (bs != bdof) {
2841               bs = 1;
2842             }
2843           }
2844         }
2845       } break;
2846       }
2847     }
2848     /* Must have same blocksize on all procs (some might have no points) */
2849     bsLocal[0] = bs < 0 ? PETSC_MAX_INT : bs;
2850     bsLocal[1] = bs;
2851     PetscCall(PetscGlobalMinMaxInt(PetscObjectComm((PetscObject)dm), bsLocal, bsMinMax));
2852     if (bsMinMax[0] != bsMinMax[1]) bs = 1;
2853     else bs = bsMinMax[0];
2854     bs = PetscMax(1, bs);
2855     PetscCall(MatSetLocalToGlobalMapping(*J, ltog, ltog));
2856     if (dm->prealloc_skip) { // User will likely use MatSetPreallocationCOO(), but still set structural parameters
2857       PetscCall(MatSetBlockSize(*J, bs));
2858       PetscCall(MatSetUp(*J));
2859     } else {
2860       PetscCall(PetscCalloc4(localSize / bs, &dnz, localSize / bs, &onz, localSize / bs, &dnzu, localSize / bs, &onzu));
2861       PetscCall(DMPlexPreallocateOperator(dm, bs, dnz, onz, dnzu, onzu, *J, fillMatrix));
2862       PetscCall(PetscFree4(dnz, onz, dnzu, onzu));
2863     }
2864     if (pblocks) { // Consolidate blocks
2865       PetscInt nblocks = 0;
2866       pblocks[0]       = PetscAbs(pblocks[0]);
2867       for (PetscInt i = 0; i < localSize; i += PetscMax(1, pblocks[i])) {
2868         if (pblocks[i] == 0) continue;
2869         // Negative block size indicates the blocks should be concatenated
2870         if (pblocks[i] < 0) {
2871           pblocks[i] = -pblocks[i];
2872           pblocks[nblocks - 1] += pblocks[i];
2873         } else {
2874           pblocks[nblocks++] = pblocks[i]; // nblocks always <= i
2875         }
2876         for (PetscInt j = 1; j < pblocks[i]; j++) PetscCheck(pblocks[i + j] == pblocks[i], PETSC_COMM_SELF, PETSC_ERR_PLIB, "Block of size %" PetscInt_FMT " mismatches entry %" PetscInt_FMT, pblocks[i], pblocks[i + j]);
2877       }
2878       PetscCall(MatSetVariableBlockSizes(*J, nblocks, pblocks));
2879     }
2880     PetscCall(PetscFree(pblocks));
2881   }
2882   PetscCall(MatSetDM(*J, dm));
2883   PetscFunctionReturn(PETSC_SUCCESS);
2884 }
2885 
2886 /*@
2887   DMPlexGetSubdomainSection - Returns the section associated with the subdomain
2888 
2889   Not Collective
2890 
2891   Input Parameter:
2892 . dm - The `DMPLEX`
2893 
2894   Output Parameter:
2895 . subsection - The subdomain section
2896 
2897   Level: developer
2898 
2899 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `PetscSection`
2900 @*/
2901 PetscErrorCode DMPlexGetSubdomainSection(DM dm, PetscSection *subsection)
2902 {
2903   DM_Plex *mesh = (DM_Plex *)dm->data;
2904 
2905   PetscFunctionBegin;
2906   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2907   if (!mesh->subdomainSection) {
2908     PetscSection section;
2909     PetscSF      sf;
2910 
2911     PetscCall(PetscSFCreate(PETSC_COMM_SELF, &sf));
2912     PetscCall(DMGetLocalSection(dm, &section));
2913     PetscCall(PetscSectionCreateGlobalSection(section, sf, PETSC_TRUE, PETSC_FALSE, PETSC_TRUE, &mesh->subdomainSection));
2914     PetscCall(PetscSFDestroy(&sf));
2915   }
2916   *subsection = mesh->subdomainSection;
2917   PetscFunctionReturn(PETSC_SUCCESS);
2918 }
2919 
2920 /*@
2921   DMPlexGetChart - Return the interval for all mesh points [`pStart`, `pEnd`)
2922 
2923   Not Collective
2924 
2925   Input Parameter:
2926 . dm - The `DMPLEX`
2927 
2928   Output Parameters:
2929 + pStart - The first mesh point
2930 - pEnd   - The upper bound for mesh points
2931 
2932   Level: beginner
2933 
2934 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetChart()`
2935 @*/
2936 PetscErrorCode DMPlexGetChart(DM dm, PetscInt *pStart, PetscInt *pEnd)
2937 {
2938   DM_Plex *mesh = (DM_Plex *)dm->data;
2939 
2940   PetscFunctionBegin;
2941   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2942   if (mesh->tr) PetscCall(DMPlexTransformGetChart(mesh->tr, pStart, pEnd));
2943   else PetscCall(PetscSectionGetChart(mesh->coneSection, pStart, pEnd));
2944   PetscFunctionReturn(PETSC_SUCCESS);
2945 }
2946 
2947 /*@
2948   DMPlexSetChart - Set the interval for all mesh points [`pStart`, `pEnd`)
2949 
2950   Not Collective
2951 
2952   Input Parameters:
2953 + dm     - The `DMPLEX`
2954 . pStart - The first mesh point
2955 - pEnd   - The upper bound for mesh points
2956 
2957   Level: beginner
2958 
2959 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetChart()`
2960 @*/
2961 PetscErrorCode DMPlexSetChart(DM dm, PetscInt pStart, PetscInt pEnd)
2962 {
2963   DM_Plex *mesh = (DM_Plex *)dm->data;
2964 
2965   PetscFunctionBegin;
2966   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2967   PetscCall(PetscSectionSetChart(mesh->coneSection, pStart, pEnd));
2968   PetscCall(PetscSectionSetChart(mesh->supportSection, pStart, pEnd));
2969   PetscCall(PetscFree(mesh->cellTypes));
2970   PetscFunctionReturn(PETSC_SUCCESS);
2971 }
2972 
2973 /*@
2974   DMPlexGetConeSize - Return the number of in-edges for this point in the DAG
2975 
2976   Not Collective
2977 
2978   Input Parameters:
2979 + dm - The `DMPLEX`
2980 - p  - The point, which must lie in the chart set with `DMPlexSetChart()`
2981 
2982   Output Parameter:
2983 . size - The cone size for point `p`
2984 
2985   Level: beginner
2986 
2987 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetConeSize()`, `DMPlexSetChart()`
2988 @*/
2989 PetscErrorCode DMPlexGetConeSize(DM dm, PetscInt p, PetscInt *size)
2990 {
2991   DM_Plex *mesh = (DM_Plex *)dm->data;
2992 
2993   PetscFunctionBegin;
2994   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
2995   PetscAssertPointer(size, 3);
2996   if (mesh->tr) PetscCall(DMPlexTransformGetConeSize(mesh->tr, p, size));
2997   else PetscCall(PetscSectionGetDof(mesh->coneSection, p, size));
2998   PetscFunctionReturn(PETSC_SUCCESS);
2999 }
3000 
3001 /*@
3002   DMPlexSetConeSize - Set the number of in-edges for this point in the DAG
3003 
3004   Not Collective
3005 
3006   Input Parameters:
3007 + dm   - The `DMPLEX`
3008 . p    - The point, which must lie in the chart set with `DMPlexSetChart()`
3009 - size - The cone size for point `p`
3010 
3011   Level: beginner
3012 
3013   Note:
3014   This should be called after `DMPlexSetChart()`.
3015 
3016 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetConeSize()`, `DMPlexSetChart()`
3017 @*/
3018 PetscErrorCode DMPlexSetConeSize(DM dm, PetscInt p, PetscInt size)
3019 {
3020   DM_Plex *mesh = (DM_Plex *)dm->data;
3021 
3022   PetscFunctionBegin;
3023   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3024   PetscCheck(!mesh->tr, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Cannot call DMPlexSetConeSize() on a mesh with a transform defined.");
3025   PetscCall(PetscSectionSetDof(mesh->coneSection, p, size));
3026   PetscFunctionReturn(PETSC_SUCCESS);
3027 }
3028 
3029 /*@C
3030   DMPlexGetCone - Return the points on the in-edges for this point in the DAG
3031 
3032   Not Collective
3033 
3034   Input Parameters:
3035 + dm - The `DMPLEX`
3036 - p  - The point, which must lie in the chart set with `DMPlexSetChart()`
3037 
3038   Output Parameter:
3039 . cone - An array of points which are on the in-edges for point `p`
3040 
3041   Level: beginner
3042 
3043   Fortran Notes:
3044   You must also call `DMPlexRestoreCone()` after you finish using the returned array.
3045   `DMPlexRestoreCone()` is not needed/available in C.
3046 
3047 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSize()`, `DMPlexSetCone()`, `DMPlexGetConeTuple()`, `DMPlexSetChart()`, `DMPlexRestoreCone()`
3048 @*/
3049 PetscErrorCode DMPlexGetCone(DM dm, PetscInt p, const PetscInt *cone[])
3050 {
3051   DM_Plex *mesh = (DM_Plex *)dm->data;
3052   PetscInt off;
3053 
3054   PetscFunctionBegin;
3055   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3056   PetscAssertPointer(cone, 3);
3057   PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3058   *cone = PetscSafePointerPlusOffset(mesh->cones, off);
3059   PetscFunctionReturn(PETSC_SUCCESS);
3060 }
3061 
3062 /*@C
3063   DMPlexGetConeTuple - Return the points on the in-edges of several points in the DAG
3064 
3065   Not Collective
3066 
3067   Input Parameters:
3068 + dm - The `DMPLEX`
3069 - p  - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()`
3070 
3071   Output Parameters:
3072 + pConesSection - `PetscSection` describing the layout of `pCones`
3073 - pCones        - An array of points which are on the in-edges for the point set `p`
3074 
3075   Level: intermediate
3076 
3077 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeRecursive()`, `DMPlexSetChart()`, `PetscSection`, `IS`
3078 @*/
3079 PetscErrorCode DMPlexGetConeTuple(DM dm, IS p, PetscSection *pConesSection, IS *pCones)
3080 {
3081   PetscSection cs, newcs;
3082   PetscInt    *cones;
3083   PetscInt    *newarr = NULL;
3084   PetscInt     n;
3085 
3086   PetscFunctionBegin;
3087   PetscCall(DMPlexGetCones(dm, &cones));
3088   PetscCall(DMPlexGetConeSection(dm, &cs));
3089   PetscCall(PetscSectionExtractDofsFromArray(cs, MPIU_INT, cones, p, &newcs, pCones ? ((void **)&newarr) : NULL));
3090   if (pConesSection) *pConesSection = newcs;
3091   if (pCones) {
3092     PetscCall(PetscSectionGetStorageSize(newcs, &n));
3093     PetscCall(ISCreateGeneral(PetscObjectComm((PetscObject)p), n, newarr, PETSC_OWN_POINTER, pCones));
3094   }
3095   PetscFunctionReturn(PETSC_SUCCESS);
3096 }
3097 
3098 /*@
3099   DMPlexGetConeRecursiveVertices - Expand each given point into its cone points and do that recursively until we end up just with vertices.
3100 
3101   Not Collective
3102 
3103   Input Parameters:
3104 + dm     - The `DMPLEX`
3105 - points - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()`
3106 
3107   Output Parameter:
3108 . expandedPoints - An array of vertices recursively expanded from input points
3109 
3110   Level: advanced
3111 
3112   Notes:
3113   Like `DMPlexGetConeRecursive()` but returns only the 0-depth `IS` (i.e. vertices only) and no sections.
3114 
3115   There is no corresponding Restore function, just call `ISDestroy()` on the returned `IS` to deallocate.
3116 
3117 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeTuple()`, `DMPlexGetConeRecursive()`, `DMPlexRestoreConeRecursive()`,
3118           `DMPlexGetDepth()`, `IS`
3119 @*/
3120 PetscErrorCode DMPlexGetConeRecursiveVertices(DM dm, IS points, IS *expandedPoints)
3121 {
3122   IS      *expandedPointsAll;
3123   PetscInt depth;
3124 
3125   PetscFunctionBegin;
3126   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3127   PetscValidHeaderSpecific(points, IS_CLASSID, 2);
3128   PetscAssertPointer(expandedPoints, 3);
3129   PetscCall(DMPlexGetConeRecursive(dm, points, &depth, &expandedPointsAll, NULL));
3130   *expandedPoints = expandedPointsAll[0];
3131   PetscCall(PetscObjectReference((PetscObject)expandedPointsAll[0]));
3132   PetscCall(DMPlexRestoreConeRecursive(dm, points, &depth, &expandedPointsAll, NULL));
3133   PetscFunctionReturn(PETSC_SUCCESS);
3134 }
3135 
3136 /*@
3137   DMPlexGetConeRecursive - Expand each given point into its cone points and do that recursively until we end up just with vertices (DAG points of depth 0, i.e. without cones).
3138 
3139   Not Collective
3140 
3141   Input Parameters:
3142 + dm     - The `DMPLEX`
3143 - points - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()`
3144 
3145   Output Parameters:
3146 + depth          - (optional) Size of the output arrays, equal to `DMPLEX` depth, returned by `DMPlexGetDepth()`
3147 . expandedPoints - (optional) An array of index sets with recursively expanded cones
3148 - sections       - (optional) An array of sections which describe mappings from points to their cone points
3149 
3150   Level: advanced
3151 
3152   Notes:
3153   Like `DMPlexGetConeTuple()` but recursive.
3154 
3155   Array `expandedPoints` has size equal to `depth`. Each `expandedPoints`[d] contains DAG points with maximum depth d, recursively cone-wise expanded from the input points.
3156   For example, for d=0 it contains only vertices, for d=1 it can contain vertices and edges, etc.
3157 
3158   Array section has size equal to `depth`.  Each `PetscSection` `sections`[d] realizes mapping from `expandedPoints`[d+1] (section points) to `expandedPoints`[d] (section dofs) as follows\:
3159   (1) DAG points in `expandedPoints`[d+1] with `depth` d+1 to their cone points in `expandedPoints`[d];
3160   (2) DAG points in `expandedPoints`[d+1] with `depth` in [0,d] to the same points in `expandedPoints`[d].
3161 
3162 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeTuple()`, `DMPlexRestoreConeRecursive()`, `DMPlexGetConeRecursiveVertices()`,
3163           `DMPlexGetDepth()`, `PetscSection`, `IS`
3164 @*/
3165 PetscErrorCode DMPlexGetConeRecursive(DM dm, IS points, PetscInt *depth, IS *expandedPoints[], PetscSection *sections[])
3166 {
3167   const PetscInt *arr0 = NULL, *cone = NULL;
3168   PetscInt       *arr = NULL, *newarr = NULL;
3169   PetscInt        d, depth_, i, n, newn, cn, co, start, end;
3170   IS             *expandedPoints_;
3171   PetscSection   *sections_;
3172 
3173   PetscFunctionBegin;
3174   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3175   PetscValidHeaderSpecific(points, IS_CLASSID, 2);
3176   if (depth) PetscAssertPointer(depth, 3);
3177   if (expandedPoints) PetscAssertPointer(expandedPoints, 4);
3178   if (sections) PetscAssertPointer(sections, 5);
3179   PetscCall(ISGetLocalSize(points, &n));
3180   PetscCall(ISGetIndices(points, &arr0));
3181   PetscCall(DMPlexGetDepth(dm, &depth_));
3182   PetscCall(PetscCalloc1(depth_, &expandedPoints_));
3183   PetscCall(PetscCalloc1(depth_, &sections_));
3184   arr = (PetscInt *)arr0; /* this is ok because first generation of arr is not modified */
3185   for (d = depth_ - 1; d >= 0; d--) {
3186     PetscCall(PetscSectionCreate(PETSC_COMM_SELF, &sections_[d]));
3187     PetscCall(PetscSectionSetChart(sections_[d], 0, n));
3188     for (i = 0; i < n; i++) {
3189       PetscCall(DMPlexGetDepthStratum(dm, d + 1, &start, &end));
3190       if (arr[i] >= start && arr[i] < end) {
3191         PetscCall(DMPlexGetConeSize(dm, arr[i], &cn));
3192         PetscCall(PetscSectionSetDof(sections_[d], i, cn));
3193       } else {
3194         PetscCall(PetscSectionSetDof(sections_[d], i, 1));
3195       }
3196     }
3197     PetscCall(PetscSectionSetUp(sections_[d]));
3198     PetscCall(PetscSectionGetStorageSize(sections_[d], &newn));
3199     PetscCall(PetscMalloc1(newn, &newarr));
3200     for (i = 0; i < n; i++) {
3201       PetscCall(PetscSectionGetDof(sections_[d], i, &cn));
3202       PetscCall(PetscSectionGetOffset(sections_[d], i, &co));
3203       if (cn > 1) {
3204         PetscCall(DMPlexGetCone(dm, arr[i], &cone));
3205         PetscCall(PetscMemcpy(&newarr[co], cone, cn * sizeof(PetscInt)));
3206       } else {
3207         newarr[co] = arr[i];
3208       }
3209     }
3210     PetscCall(ISCreateGeneral(PETSC_COMM_SELF, newn, newarr, PETSC_OWN_POINTER, &expandedPoints_[d]));
3211     arr = newarr;
3212     n   = newn;
3213   }
3214   PetscCall(ISRestoreIndices(points, &arr0));
3215   *depth = depth_;
3216   if (expandedPoints) *expandedPoints = expandedPoints_;
3217   else {
3218     for (d = 0; d < depth_; d++) PetscCall(ISDestroy(&expandedPoints_[d]));
3219     PetscCall(PetscFree(expandedPoints_));
3220   }
3221   if (sections) *sections = sections_;
3222   else {
3223     for (d = 0; d < depth_; d++) PetscCall(PetscSectionDestroy(&sections_[d]));
3224     PetscCall(PetscFree(sections_));
3225   }
3226   PetscFunctionReturn(PETSC_SUCCESS);
3227 }
3228 
3229 /*@
3230   DMPlexRestoreConeRecursive - Deallocates arrays created by `DMPlexGetConeRecursive()`
3231 
3232   Not Collective
3233 
3234   Input Parameters:
3235 + dm     - The `DMPLEX`
3236 - points - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()`
3237 
3238   Output Parameters:
3239 + depth          - (optional) Size of the output arrays, equal to `DMPLEX` depth, returned by `DMPlexGetDepth()`
3240 . expandedPoints - (optional) An array of recursively expanded cones
3241 - sections       - (optional) An array of sections which describe mappings from points to their cone points
3242 
3243   Level: advanced
3244 
3245   Note:
3246   See `DMPlexGetConeRecursive()`
3247 
3248 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeTuple()`, `DMPlexGetConeRecursive()`, `DMPlexGetConeRecursiveVertices()`,
3249           `DMPlexGetDepth()`, `IS`, `PetscSection`
3250 @*/
3251 PetscErrorCode DMPlexRestoreConeRecursive(DM dm, IS points, PetscInt *depth, IS *expandedPoints[], PetscSection *sections[])
3252 {
3253   PetscInt d, depth_;
3254 
3255   PetscFunctionBegin;
3256   PetscCall(DMPlexGetDepth(dm, &depth_));
3257   PetscCheck(!depth || *depth == depth_, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "depth changed since last call to DMPlexGetConeRecursive");
3258   if (depth) *depth = 0;
3259   if (expandedPoints) {
3260     for (d = 0; d < depth_; d++) PetscCall(ISDestroy(&((*expandedPoints)[d])));
3261     PetscCall(PetscFree(*expandedPoints));
3262   }
3263   if (sections) {
3264     for (d = 0; d < depth_; d++) PetscCall(PetscSectionDestroy(&((*sections)[d])));
3265     PetscCall(PetscFree(*sections));
3266   }
3267   PetscFunctionReturn(PETSC_SUCCESS);
3268 }
3269 
3270 /*@
3271   DMPlexSetCone - Set the points on the in-edges for this point in the DAG; that is these are the points that cover the specific point
3272 
3273   Not Collective
3274 
3275   Input Parameters:
3276 + dm   - The `DMPLEX`
3277 . p    - The point, which must lie in the chart set with `DMPlexSetChart()`
3278 - cone - An array of points which are on the in-edges for point `p`
3279 
3280   Level: beginner
3281 
3282   Note:
3283   This should be called after all calls to `DMPlexSetConeSize()` and `DMSetUp()`.
3284 
3285 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()`, `DMPlexSetSupport()`, `DMPlexSetSupportSize()`
3286 @*/
3287 PetscErrorCode DMPlexSetCone(DM dm, PetscInt p, const PetscInt cone[])
3288 {
3289   DM_Plex *mesh = (DM_Plex *)dm->data;
3290   PetscInt dof, off, c;
3291 
3292   PetscFunctionBegin;
3293   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3294   PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
3295   if (dof) PetscAssertPointer(cone, 3);
3296   PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3297   if (PetscDefined(USE_DEBUG)) {
3298     PetscInt pStart, pEnd;
3299     PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd));
3300     PetscCheck(!(p < pStart) && !(p >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Mesh point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", p, pStart, pEnd);
3301     for (c = 0; c < dof; ++c) {
3302       PetscCheck(!(cone[c] < pStart) && !(cone[c] >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Cone point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", cone[c], pStart, pEnd);
3303       mesh->cones[off + c] = cone[c];
3304     }
3305   } else {
3306     for (c = 0; c < dof; ++c) mesh->cones[off + c] = cone[c];
3307   }
3308   PetscFunctionReturn(PETSC_SUCCESS);
3309 }
3310 
3311 /*@C
3312   DMPlexGetConeOrientation - Return the orientations on the in-edges for this point in the DAG
3313 
3314   Not Collective
3315 
3316   Input Parameters:
3317 + dm - The `DMPLEX`
3318 - p  - The point, which must lie in the chart set with `DMPlexSetChart()`
3319 
3320   Output Parameter:
3321 . coneOrientation - An array of orientations which are on the in-edges for point `p`. An orientation is an
3322                     integer giving the prescription for cone traversal.
3323 
3324   Level: beginner
3325 
3326   Note:
3327   The number indexes the symmetry transformations for the cell type (see manual). Orientation 0 is always
3328   the identity transformation. Negative orientation indicates reflection so that -(o+1) is the reflection
3329   of o, however it is not necessarily the inverse. To get the inverse, use `DMPolytopeTypeComposeOrientationInv()`
3330   with the identity.
3331 
3332   Fortran Notes:
3333   You must also call `DMPlexRestoreConeOrientation()` after you finish using the returned array.
3334   `DMPlexRestoreConeOrientation()` is not needed/available in C.
3335 
3336 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPolytopeTypeComposeOrientation()`, `DMPolytopeTypeComposeOrientationInv()`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetCone()`, `DMPlexSetChart()`
3337 @*/
3338 PetscErrorCode DMPlexGetConeOrientation(DM dm, PetscInt p, const PetscInt *coneOrientation[])
3339 {
3340   DM_Plex *mesh = (DM_Plex *)dm->data;
3341   PetscInt off;
3342 
3343   PetscFunctionBegin;
3344   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3345   if (PetscDefined(USE_DEBUG)) {
3346     PetscInt dof;
3347     PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
3348     if (dof) PetscAssertPointer(coneOrientation, 3);
3349   }
3350   PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3351 
3352   *coneOrientation = &mesh->coneOrientations[off];
3353   PetscFunctionReturn(PETSC_SUCCESS);
3354 }
3355 
3356 /*@
3357   DMPlexSetConeOrientation - Set the orientations on the in-edges for this point in the DAG
3358 
3359   Not Collective
3360 
3361   Input Parameters:
3362 + dm              - The `DMPLEX`
3363 . p               - The point, which must lie in the chart set with `DMPlexSetChart()`
3364 - coneOrientation - An array of orientations
3365 
3366   Level: beginner
3367 
3368   Notes:
3369   This should be called after all calls to `DMPlexSetConeSize()` and `DMSetUp()`.
3370 
3371   The meaning of coneOrientation is detailed in `DMPlexGetConeOrientation()`.
3372 
3373 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetConeOrientation()`, `DMPlexSetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()`
3374 @*/
3375 PetscErrorCode DMPlexSetConeOrientation(DM dm, PetscInt p, const PetscInt coneOrientation[])
3376 {
3377   DM_Plex *mesh = (DM_Plex *)dm->data;
3378   PetscInt pStart, pEnd;
3379   PetscInt dof, off, c;
3380 
3381   PetscFunctionBegin;
3382   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3383   PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
3384   if (dof) PetscAssertPointer(coneOrientation, 3);
3385   PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3386   if (PetscDefined(USE_DEBUG)) {
3387     PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd));
3388     PetscCheck(!(p < pStart) && !(p >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Mesh point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", p, pStart, pEnd);
3389     for (c = 0; c < dof; ++c) {
3390       PetscInt cdof, o = coneOrientation[c];
3391 
3392       PetscCall(PetscSectionGetDof(mesh->coneSection, mesh->cones[off + c], &cdof));
3393       PetscCheck(!o || (o >= -(cdof + 1) && o < cdof), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Cone orientation %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ". %" PetscInt_FMT ")", o, -(cdof + 1), cdof);
3394       mesh->coneOrientations[off + c] = o;
3395     }
3396   } else {
3397     for (c = 0; c < dof; ++c) mesh->coneOrientations[off + c] = coneOrientation[c];
3398   }
3399   PetscFunctionReturn(PETSC_SUCCESS);
3400 }
3401 
3402 /*@
3403   DMPlexInsertCone - Insert a point into the in-edges for the point p in the DAG
3404 
3405   Not Collective
3406 
3407   Input Parameters:
3408 + dm        - The `DMPLEX`
3409 . p         - The point, which must lie in the chart set with `DMPlexSetChart()`
3410 . conePos   - The local index in the cone where the point should be put
3411 - conePoint - The mesh point to insert
3412 
3413   Level: beginner
3414 
3415 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()`
3416 @*/
3417 PetscErrorCode DMPlexInsertCone(DM dm, PetscInt p, PetscInt conePos, PetscInt conePoint)
3418 {
3419   DM_Plex *mesh = (DM_Plex *)dm->data;
3420   PetscInt pStart, pEnd;
3421   PetscInt dof, off;
3422 
3423   PetscFunctionBegin;
3424   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3425   if (PetscDefined(USE_DEBUG)) {
3426     PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd));
3427     PetscCheck(!(p < pStart) && !(p >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Mesh point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", p, pStart, pEnd);
3428     PetscCheck(!(conePoint < pStart) && !(conePoint >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Cone point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", conePoint, pStart, pEnd);
3429     PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
3430     PetscCheck(!(conePos < 0) && !(conePos >= dof), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Cone position %" PetscInt_FMT " of point %" PetscInt_FMT " is not in the valid range [0, %" PetscInt_FMT ")", conePos, p, dof);
3431   }
3432   PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3433   mesh->cones[off + conePos] = conePoint;
3434   PetscFunctionReturn(PETSC_SUCCESS);
3435 }
3436 
3437 /*@
3438   DMPlexInsertConeOrientation - Insert a point orientation for the in-edge for the point p in the DAG
3439 
3440   Not Collective
3441 
3442   Input Parameters:
3443 + dm              - The `DMPLEX`
3444 . p               - The point, which must lie in the chart set with `DMPlexSetChart()`
3445 . conePos         - The local index in the cone where the point should be put
3446 - coneOrientation - The point orientation to insert
3447 
3448   Level: beginner
3449 
3450   Note:
3451   The meaning of coneOrientation values is detailed in `DMPlexGetConeOrientation()`.
3452 
3453 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()`
3454 @*/
3455 PetscErrorCode DMPlexInsertConeOrientation(DM dm, PetscInt p, PetscInt conePos, PetscInt coneOrientation)
3456 {
3457   DM_Plex *mesh = (DM_Plex *)dm->data;
3458   PetscInt pStart, pEnd;
3459   PetscInt dof, off;
3460 
3461   PetscFunctionBegin;
3462   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3463   if (PetscDefined(USE_DEBUG)) {
3464     PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd));
3465     PetscCheck(!(p < pStart) && !(p >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Mesh point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", p, pStart, pEnd);
3466     PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
3467     PetscCheck(!(conePos < 0) && !(conePos >= dof), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Cone position %" PetscInt_FMT " of point %" PetscInt_FMT " is not in the valid range [0, %" PetscInt_FMT ")", conePos, p, dof);
3468   }
3469   PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3470   mesh->coneOrientations[off + conePos] = coneOrientation;
3471   PetscFunctionReturn(PETSC_SUCCESS);
3472 }
3473 
3474 /*@C
3475   DMPlexGetOrientedCone - Return the points and orientations on the in-edges for this point in the DAG
3476 
3477   Not collective
3478 
3479   Input Parameters:
3480 + dm - The DMPlex
3481 - p  - The point, which must lie in the chart set with DMPlexSetChart()
3482 
3483   Output Parameters:
3484 + cone - An array of points which are on the in-edges for point `p`
3485 - ornt - An array of orientations which are on the in-edges for point `p`. An orientation is an
3486         integer giving the prescription for cone traversal.
3487 
3488   Level: beginner
3489 
3490   Notes:
3491   The number indexes the symmetry transformations for the cell type (see manual). Orientation 0 is always
3492   the identity transformation. Negative orientation indicates reflection so that -(o+1) is the reflection
3493   of o, however it is not necessarily the inverse. To get the inverse, use `DMPolytopeTypeComposeOrientationInv()`
3494   with the identity.
3495 
3496   Fortran Notes:
3497   You must also call `DMPlexRestoreCone()` after you finish using the returned array.
3498   `DMPlexRestoreCone()` is not needed/available in C.
3499 
3500 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreOrientedCone()`, `DMPlexGetConeSize()`, `DMPlexGetCone()`, `DMPlexGetChart()`
3501 @*/
3502 PetscErrorCode DMPlexGetOrientedCone(DM dm, PetscInt p, const PetscInt *cone[], const PetscInt *ornt[])
3503 {
3504   DM_Plex *mesh = (DM_Plex *)dm->data;
3505 
3506   PetscFunctionBegin;
3507   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3508   if (mesh->tr) {
3509     PetscCall(DMPlexTransformGetCone(mesh->tr, p, cone, ornt));
3510   } else {
3511     PetscInt off;
3512     if (PetscDefined(USE_DEBUG)) {
3513       PetscInt dof;
3514       PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
3515       if (dof) {
3516         if (cone) PetscAssertPointer(cone, 3);
3517         if (ornt) PetscAssertPointer(ornt, 4);
3518       }
3519     }
3520     PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
3521     if (cone) *cone = PetscSafePointerPlusOffset(mesh->cones, off);
3522     if (ornt) *ornt = PetscSafePointerPlusOffset(mesh->coneOrientations, off);
3523   }
3524   PetscFunctionReturn(PETSC_SUCCESS);
3525 }
3526 
3527 /*@C
3528   DMPlexRestoreOrientedCone - Restore the points and orientations on the in-edges for this point in the DAG
3529 
3530   Not Collective
3531 
3532   Input Parameters:
3533 + dm   - The DMPlex
3534 . p    - The point, which must lie in the chart set with `DMPlexSetChart()`
3535 . cone - An array of points which are on the in-edges for point p
3536 - ornt - An array of orientations which are on the in-edges for point `p`. An orientation is an
3537         integer giving the prescription for cone traversal.
3538 
3539   Level: beginner
3540 
3541   Notes:
3542   The number indexes the symmetry transformations for the cell type (see manual). Orientation 0 is always
3543   the identity transformation. Negative orientation indicates reflection so that -(o+1) is the reflection
3544   of o, however it is not necessarily the inverse. To get the inverse, use `DMPolytopeTypeComposeOrientationInv()`
3545   with the identity.
3546 
3547   Fortran Notes:
3548   You must also call `DMPlexRestoreCone()` after you finish using the returned array.
3549   `DMPlexRestoreCone()` is not needed/available in C.
3550 
3551 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetOrientedCone()`, `DMPlexGetConeSize()`, `DMPlexGetCone()`, `DMPlexGetChart()`
3552 @*/
3553 PetscErrorCode DMPlexRestoreOrientedCone(DM dm, PetscInt p, const PetscInt *cone[], const PetscInt *ornt[])
3554 {
3555   DM_Plex *mesh = (DM_Plex *)dm->data;
3556 
3557   PetscFunctionBegin;
3558   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3559   if (mesh->tr) PetscCall(DMPlexTransformRestoreCone(mesh->tr, p, cone, ornt));
3560   PetscFunctionReturn(PETSC_SUCCESS);
3561 }
3562 
3563 /*@
3564   DMPlexGetSupportSize - Return the number of out-edges for this point in the DAG
3565 
3566   Not Collective
3567 
3568   Input Parameters:
3569 + dm - The `DMPLEX`
3570 - p  - The point, which must lie in the chart set with `DMPlexSetChart()`
3571 
3572   Output Parameter:
3573 . size - The support size for point `p`
3574 
3575   Level: beginner
3576 
3577 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetConeSize()`, `DMPlexSetChart()`, `DMPlexGetConeSize()`
3578 @*/
3579 PetscErrorCode DMPlexGetSupportSize(DM dm, PetscInt p, PetscInt *size)
3580 {
3581   DM_Plex *mesh = (DM_Plex *)dm->data;
3582 
3583   PetscFunctionBegin;
3584   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3585   PetscAssertPointer(size, 3);
3586   PetscCall(PetscSectionGetDof(mesh->supportSection, p, size));
3587   PetscFunctionReturn(PETSC_SUCCESS);
3588 }
3589 
3590 /*@
3591   DMPlexSetSupportSize - Set the number of out-edges for this point in the DAG
3592 
3593   Not Collective
3594 
3595   Input Parameters:
3596 + dm   - The `DMPLEX`
3597 . p    - The point, which must lie in the chart set with `DMPlexSetChart()`
3598 - size - The support size for point `p`
3599 
3600   Level: beginner
3601 
3602   Note:
3603   This should be called after `DMPlexSetChart()`.
3604 
3605 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetSupportSize()`, `DMPlexSetChart()`
3606 @*/
3607 PetscErrorCode DMPlexSetSupportSize(DM dm, PetscInt p, PetscInt size)
3608 {
3609   DM_Plex *mesh = (DM_Plex *)dm->data;
3610 
3611   PetscFunctionBegin;
3612   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3613   PetscCall(PetscSectionSetDof(mesh->supportSection, p, size));
3614   PetscFunctionReturn(PETSC_SUCCESS);
3615 }
3616 
3617 /*@C
3618   DMPlexGetSupport - Return the points on the out-edges for this point in the DAG
3619 
3620   Not Collective
3621 
3622   Input Parameters:
3623 + dm - The `DMPLEX`
3624 - p  - The point, which must lie in the chart set with `DMPlexSetChart()`
3625 
3626   Output Parameter:
3627 . support - An array of points which are on the out-edges for point `p`
3628 
3629   Level: beginner
3630 
3631   Fortran Notes:
3632   You must also call `DMPlexRestoreSupport()` after you finish using the returned array.
3633   `DMPlexRestoreSupport()` is not needed/available in C.
3634 
3635 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetSupportSize()`, `DMPlexSetSupport()`, `DMPlexGetCone()`, `DMPlexSetChart()`
3636 @*/
3637 PetscErrorCode DMPlexGetSupport(DM dm, PetscInt p, const PetscInt *support[])
3638 {
3639   DM_Plex *mesh = (DM_Plex *)dm->data;
3640   PetscInt off;
3641 
3642   PetscFunctionBegin;
3643   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3644   PetscAssertPointer(support, 3);
3645   PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off));
3646   *support = PetscSafePointerPlusOffset(mesh->supports, off);
3647   PetscFunctionReturn(PETSC_SUCCESS);
3648 }
3649 
3650 /*@
3651   DMPlexSetSupport - Set the points on the out-edges for this point in the DAG, that is the list of points that this point covers
3652 
3653   Not Collective
3654 
3655   Input Parameters:
3656 + dm      - The `DMPLEX`
3657 . p       - The point, which must lie in the chart set with `DMPlexSetChart()`
3658 - support - An array of points which are on the out-edges for point `p`
3659 
3660   Level: beginner
3661 
3662   Note:
3663   This should be called after all calls to `DMPlexSetSupportSize()` and `DMSetUp()`.
3664 
3665 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetCone()`, `DMPlexSetConeSize()`, `DMPlexCreate()`, `DMPlexGetSupport()`, `DMPlexSetChart()`, `DMPlexSetSupportSize()`, `DMSetUp()`
3666 @*/
3667 PetscErrorCode DMPlexSetSupport(DM dm, PetscInt p, const PetscInt support[])
3668 {
3669   DM_Plex *mesh = (DM_Plex *)dm->data;
3670   PetscInt pStart, pEnd;
3671   PetscInt dof, off, c;
3672 
3673   PetscFunctionBegin;
3674   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3675   PetscCall(PetscSectionGetChart(mesh->supportSection, &pStart, &pEnd));
3676   PetscCall(PetscSectionGetDof(mesh->supportSection, p, &dof));
3677   if (dof) PetscAssertPointer(support, 3);
3678   PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off));
3679   PetscCheck(!(p < pStart) && !(p >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Mesh point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", p, pStart, pEnd);
3680   for (c = 0; c < dof; ++c) {
3681     PetscCheck(!(support[c] < pStart) && !(support[c] >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Support point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", support[c], pStart, pEnd);
3682     mesh->supports[off + c] = support[c];
3683   }
3684   PetscFunctionReturn(PETSC_SUCCESS);
3685 }
3686 
3687 /*@
3688   DMPlexInsertSupport - Insert a point into the out-edges for the point p in the DAG
3689 
3690   Not Collective
3691 
3692   Input Parameters:
3693 + dm           - The `DMPLEX`
3694 . p            - The point, which must lie in the chart set with `DMPlexSetChart()`
3695 . supportPos   - The local index in the cone where the point should be put
3696 - supportPoint - The mesh point to insert
3697 
3698   Level: beginner
3699 
3700 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()`
3701 @*/
3702 PetscErrorCode DMPlexInsertSupport(DM dm, PetscInt p, PetscInt supportPos, PetscInt supportPoint)
3703 {
3704   DM_Plex *mesh = (DM_Plex *)dm->data;
3705   PetscInt pStart, pEnd;
3706   PetscInt dof, off;
3707 
3708   PetscFunctionBegin;
3709   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
3710   PetscCall(PetscSectionGetChart(mesh->supportSection, &pStart, &pEnd));
3711   PetscCall(PetscSectionGetDof(mesh->supportSection, p, &dof));
3712   PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off));
3713   PetscCheck(!(p < pStart) && !(p >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Mesh point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", p, pStart, pEnd);
3714   PetscCheck(!(supportPoint < pStart) && !(supportPoint >= pEnd), PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Support point %" PetscInt_FMT " is not in the valid range [%" PetscInt_FMT ", %" PetscInt_FMT ")", supportPoint, pStart, pEnd);
3715   PetscCheck(supportPos < dof, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Support position %" PetscInt_FMT " of point %" PetscInt_FMT " is not in the valid range [0, %" PetscInt_FMT ")", supportPos, p, dof);
3716   mesh->supports[off + supportPos] = supportPoint;
3717   PetscFunctionReturn(PETSC_SUCCESS);
3718 }
3719 
3720 /* Converts an orientation o in the current numbering to the previous scheme used in Plex */
3721 PetscInt DMPolytopeConvertNewOrientation_Internal(DMPolytopeType ct, PetscInt o)
3722 {
3723   switch (ct) {
3724   case DM_POLYTOPE_SEGMENT:
3725     if (o == -1) return -2;
3726     break;
3727   case DM_POLYTOPE_TRIANGLE:
3728     if (o == -3) return -1;
3729     if (o == -2) return -3;
3730     if (o == -1) return -2;
3731     break;
3732   case DM_POLYTOPE_QUADRILATERAL:
3733     if (o == -4) return -2;
3734     if (o == -3) return -1;
3735     if (o == -2) return -4;
3736     if (o == -1) return -3;
3737     break;
3738   default:
3739     return o;
3740   }
3741   return o;
3742 }
3743 
3744 /* Converts an orientation o in the previous scheme used in Plex to the current numbering */
3745 PetscInt DMPolytopeConvertOldOrientation_Internal(DMPolytopeType ct, PetscInt o)
3746 {
3747   switch (ct) {
3748   case DM_POLYTOPE_SEGMENT:
3749     if ((o == -2) || (o == 1)) return -1;
3750     if (o == -1) return 0;
3751     break;
3752   case DM_POLYTOPE_TRIANGLE:
3753     if (o == -3) return -2;
3754     if (o == -2) return -1;
3755     if (o == -1) return -3;
3756     break;
3757   case DM_POLYTOPE_QUADRILATERAL:
3758     if (o == -4) return -2;
3759     if (o == -3) return -1;
3760     if (o == -2) return -4;
3761     if (o == -1) return -3;
3762     break;
3763   default:
3764     return o;
3765   }
3766   return o;
3767 }
3768 
3769 /* Takes in a mesh whose orientations are in the previous scheme and converts them all to the current numbering */
3770 PetscErrorCode DMPlexConvertOldOrientations_Internal(DM dm)
3771 {
3772   PetscInt pStart, pEnd, p;
3773 
3774   PetscFunctionBegin;
3775   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
3776   for (p = pStart; p < pEnd; ++p) {
3777     const PetscInt *cone, *ornt;
3778     PetscInt        coneSize, c;
3779 
3780     PetscCall(DMPlexGetConeSize(dm, p, &coneSize));
3781     PetscCall(DMPlexGetCone(dm, p, &cone));
3782     PetscCall(DMPlexGetConeOrientation(dm, p, &ornt));
3783     for (c = 0; c < coneSize; ++c) {
3784       DMPolytopeType ct;
3785       const PetscInt o = ornt[c];
3786 
3787       PetscCall(DMPlexGetCellType(dm, cone[c], &ct));
3788       switch (ct) {
3789       case DM_POLYTOPE_SEGMENT:
3790         if ((o == -2) || (o == 1)) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -1));
3791         if (o == -1) PetscCall(DMPlexInsertConeOrientation(dm, p, c, 0));
3792         break;
3793       case DM_POLYTOPE_TRIANGLE:
3794         if (o == -3) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -2));
3795         if (o == -2) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -1));
3796         if (o == -1) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -3));
3797         break;
3798       case DM_POLYTOPE_QUADRILATERAL:
3799         if (o == -4) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -2));
3800         if (o == -3) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -1));
3801         if (o == -2) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -4));
3802         if (o == -1) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -3));
3803         break;
3804       default:
3805         break;
3806       }
3807     }
3808   }
3809   PetscFunctionReturn(PETSC_SUCCESS);
3810 }
3811 
3812 static inline PetscErrorCode DMPlexGetTransitiveClosure_Hot_Private(DM dm, PetscInt p, PetscBool useCone, PetscInt *size, const PetscInt *arr[], const PetscInt *ornt[])
3813 {
3814   DM_Plex *mesh = (DM_Plex *)dm->data;
3815 
3816   PetscFunctionBeginHot;
3817   if (PetscDefined(USE_DEBUG) || mesh->tr) {
3818     if (useCone) {
3819       PetscCall(DMPlexGetConeSize(dm, p, size));
3820       PetscCall(DMPlexGetOrientedCone(dm, p, arr, ornt));
3821     } else {
3822       PetscCall(DMPlexGetSupportSize(dm, p, size));
3823       PetscCall(DMPlexGetSupport(dm, p, arr));
3824     }
3825   } else {
3826     if (useCone) {
3827       const PetscSection s   = mesh->coneSection;
3828       const PetscInt     ps  = p - s->pStart;
3829       const PetscInt     off = s->atlasOff[ps];
3830 
3831       *size = s->atlasDof[ps];
3832       *arr  = mesh->cones + off;
3833       *ornt = mesh->coneOrientations + off;
3834     } else {
3835       const PetscSection s   = mesh->supportSection;
3836       const PetscInt     ps  = p - s->pStart;
3837       const PetscInt     off = s->atlasOff[ps];
3838 
3839       *size = s->atlasDof[ps];
3840       *arr  = mesh->supports + off;
3841     }
3842   }
3843   PetscFunctionReturn(PETSC_SUCCESS);
3844 }
3845 
3846 static inline PetscErrorCode DMPlexRestoreTransitiveClosure_Hot_Private(DM dm, PetscInt p, PetscBool useCone, PetscInt *size, const PetscInt *arr[], const PetscInt *ornt[])
3847 {
3848   DM_Plex *mesh = (DM_Plex *)dm->data;
3849 
3850   PetscFunctionBeginHot;
3851   if (PetscDefined(USE_DEBUG) || mesh->tr) {
3852     if (useCone) PetscCall(DMPlexRestoreOrientedCone(dm, p, arr, ornt));
3853   }
3854   PetscFunctionReturn(PETSC_SUCCESS);
3855 }
3856 
3857 static PetscErrorCode DMPlexGetTransitiveClosure_Depth1_Private(DM dm, PetscInt p, PetscInt ornt, PetscBool useCone, PetscInt *numPoints, PetscInt *points[])
3858 {
3859   DMPolytopeType  ct = DM_POLYTOPE_UNKNOWN;
3860   PetscInt       *closure;
3861   const PetscInt *tmp = NULL, *tmpO = NULL;
3862   PetscInt        off = 0, tmpSize, t;
3863 
3864   PetscFunctionBeginHot;
3865   if (ornt) {
3866     PetscCall(DMPlexGetCellType(dm, p, &ct));
3867     if (ct == DM_POLYTOPE_FV_GHOST || ct == DM_POLYTOPE_INTERIOR_GHOST || ct == DM_POLYTOPE_UNKNOWN || ct == DM_POLYTOPE_UNKNOWN_CELL || ct == DM_POLYTOPE_UNKNOWN_FACE) ct = DM_POLYTOPE_UNKNOWN;
3868   }
3869   if (*points) {
3870     closure = *points;
3871   } else {
3872     PetscInt maxConeSize, maxSupportSize;
3873     PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize));
3874     PetscCall(DMGetWorkArray(dm, 2 * (PetscMax(maxConeSize, maxSupportSize) + 1), MPIU_INT, &closure));
3875   }
3876   PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, p, useCone, &tmpSize, &tmp, &tmpO));
3877   if (ct == DM_POLYTOPE_UNKNOWN) {
3878     closure[off++] = p;
3879     closure[off++] = 0;
3880     for (t = 0; t < tmpSize; ++t) {
3881       closure[off++] = tmp[t];
3882       closure[off++] = tmpO ? tmpO[t] : 0;
3883     }
3884   } else {
3885     const PetscInt *arr = DMPolytopeTypeGetArrangement(ct, ornt);
3886 
3887     /* We assume that cells with a valid type have faces with a valid type */
3888     closure[off++] = p;
3889     closure[off++] = ornt;
3890     for (t = 0; t < tmpSize; ++t) {
3891       DMPolytopeType ft;
3892 
3893       PetscCall(DMPlexGetCellType(dm, tmp[t], &ft));
3894       closure[off++] = tmp[arr[t]];
3895       closure[off++] = tmpO ? DMPolytopeTypeComposeOrientation(ft, ornt, tmpO[t]) : 0;
3896     }
3897   }
3898   PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, p, useCone, &tmpSize, &tmp, &tmpO));
3899   if (numPoints) *numPoints = tmpSize + 1;
3900   if (points) *points = closure;
3901   PetscFunctionReturn(PETSC_SUCCESS);
3902 }
3903 
3904 /* We need a special tensor version because we want to allow duplicate points in the endcaps for hybrid cells */
3905 static PetscErrorCode DMPlexTransitiveClosure_Tensor_Internal(DM dm, PetscInt point, DMPolytopeType ct, PetscInt o, PetscBool useCone, PetscInt *numPoints, PetscInt **points)
3906 {
3907   const PetscInt *arr = DMPolytopeTypeGetArrangement(ct, o);
3908   const PetscInt *cone, *ornt;
3909   PetscInt       *pts, *closure = NULL;
3910   DMPolytopeType  ft;
3911   PetscInt        maxConeSize, maxSupportSize, coneSeries, supportSeries, maxSize;
3912   PetscInt        dim, coneSize, c, d, clSize, cl;
3913 
3914   PetscFunctionBeginHot;
3915   PetscCall(DMGetDimension(dm, &dim));
3916   PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, point, PETSC_TRUE, &coneSize, &cone, &ornt));
3917   PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize));
3918   coneSeries    = (maxConeSize > 1) ? ((PetscPowInt(maxConeSize, dim + 1) - 1) / (maxConeSize - 1)) : dim + 1;
3919   supportSeries = (maxSupportSize > 1) ? ((PetscPowInt(maxSupportSize, dim + 1) - 1) / (maxSupportSize - 1)) : dim + 1;
3920   maxSize       = PetscMax(coneSeries, supportSeries);
3921   if (*points) {
3922     pts = *points;
3923   } else PetscCall(DMGetWorkArray(dm, 2 * maxSize, MPIU_INT, &pts));
3924   c        = 0;
3925   pts[c++] = point;
3926   pts[c++] = o;
3927   PetscCall(DMPlexGetCellType(dm, cone[arr[0 * 2 + 0]], &ft));
3928   PetscCall(DMPlexGetTransitiveClosure_Internal(dm, cone[arr[0 * 2 + 0]], DMPolytopeTypeComposeOrientation(ft, arr[0 * 2 + 1], ornt[0]), useCone, &clSize, &closure));
3929   for (cl = 0; cl < clSize * 2; cl += 2) {
3930     pts[c++] = closure[cl];
3931     pts[c++] = closure[cl + 1];
3932   }
3933   PetscCall(DMPlexGetTransitiveClosure_Internal(dm, cone[arr[1 * 2 + 0]], DMPolytopeTypeComposeOrientation(ft, arr[1 * 2 + 1], ornt[1]), useCone, &clSize, &closure));
3934   for (cl = 0; cl < clSize * 2; cl += 2) {
3935     pts[c++] = closure[cl];
3936     pts[c++] = closure[cl + 1];
3937   }
3938   PetscCall(DMPlexRestoreTransitiveClosure(dm, cone[0], useCone, &clSize, &closure));
3939   for (d = 2; d < coneSize; ++d) {
3940     PetscCall(DMPlexGetCellType(dm, cone[arr[d * 2 + 0]], &ft));
3941     pts[c++] = cone[arr[d * 2 + 0]];
3942     pts[c++] = DMPolytopeTypeComposeOrientation(ft, arr[d * 2 + 1], ornt[d]);
3943   }
3944   PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, point, PETSC_TRUE, &coneSize, &cone, &ornt));
3945   if (dim >= 3) {
3946     for (d = 2; d < coneSize; ++d) {
3947       const PetscInt  fpoint = cone[arr[d * 2 + 0]];
3948       const PetscInt *fcone, *fornt;
3949       PetscInt        fconeSize, fc, i;
3950 
3951       PetscCall(DMPlexGetCellType(dm, fpoint, &ft));
3952       const PetscInt *farr = DMPolytopeTypeGetArrangement(ft, DMPolytopeTypeComposeOrientation(ft, arr[d * 2 + 1], ornt[d]));
3953       PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, fpoint, PETSC_TRUE, &fconeSize, &fcone, &fornt));
3954       for (fc = 0; fc < fconeSize; ++fc) {
3955         const PetscInt cp = fcone[farr[fc * 2 + 0]];
3956         const PetscInt co = farr[fc * 2 + 1];
3957 
3958         for (i = 0; i < c; i += 2)
3959           if (pts[i] == cp) break;
3960         if (i == c) {
3961           PetscCall(DMPlexGetCellType(dm, cp, &ft));
3962           pts[c++] = cp;
3963           pts[c++] = DMPolytopeTypeComposeOrientation(ft, co, fornt[farr[fc * 2 + 0]]);
3964         }
3965       }
3966       PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, fpoint, PETSC_TRUE, &fconeSize, &fcone, &fornt));
3967     }
3968   }
3969   *numPoints = c / 2;
3970   *points    = pts;
3971   PetscFunctionReturn(PETSC_SUCCESS);
3972 }
3973 
3974 PetscErrorCode DMPlexGetTransitiveClosure_Internal(DM dm, PetscInt p, PetscInt ornt, PetscBool useCone, PetscInt *numPoints, PetscInt *points[])
3975 {
3976   DMPolytopeType ct;
3977   PetscInt      *closure, *fifo;
3978   PetscInt       closureSize = 0, fifoStart = 0, fifoSize = 0;
3979   PetscInt       maxConeSize, maxSupportSize, coneSeries, supportSeries;
3980   PetscInt       depth, maxSize;
3981 
3982   PetscFunctionBeginHot;
3983   PetscCall(DMPlexGetDepth(dm, &depth));
3984   if (depth == 1) {
3985     PetscCall(DMPlexGetTransitiveClosure_Depth1_Private(dm, p, ornt, useCone, numPoints, points));
3986     PetscFunctionReturn(PETSC_SUCCESS);
3987   }
3988   PetscCall(DMPlexGetCellType(dm, p, &ct));
3989   if (ct == DM_POLYTOPE_FV_GHOST || ct == DM_POLYTOPE_INTERIOR_GHOST || ct == DM_POLYTOPE_UNKNOWN || ct == DM_POLYTOPE_UNKNOWN_CELL || ct == DM_POLYTOPE_UNKNOWN_FACE) ct = DM_POLYTOPE_UNKNOWN;
3990   if (DMPolytopeTypeIsHybrid(ct) && ct != DM_POLYTOPE_POINT_PRISM_TENSOR) {
3991     PetscCall(DMPlexTransitiveClosure_Tensor_Internal(dm, p, ct, ornt, useCone, numPoints, points));
3992     PetscFunctionReturn(PETSC_SUCCESS);
3993   }
3994   PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize));
3995   coneSeries    = (maxConeSize > 1) ? ((PetscPowInt(maxConeSize, depth + 1) - 1) / (maxConeSize - 1)) : depth + 1;
3996   supportSeries = (maxSupportSize > 1) ? ((PetscPowInt(maxSupportSize, depth + 1) - 1) / (maxSupportSize - 1)) : depth + 1;
3997   maxSize       = PetscMax(coneSeries, supportSeries);
3998   PetscCall(DMGetWorkArray(dm, 3 * maxSize, MPIU_INT, &fifo));
3999   if (*points) {
4000     closure = *points;
4001   } else PetscCall(DMGetWorkArray(dm, 2 * maxSize, MPIU_INT, &closure));
4002   closure[closureSize++] = p;
4003   closure[closureSize++] = ornt;
4004   fifo[fifoSize++]       = p;
4005   fifo[fifoSize++]       = ornt;
4006   fifo[fifoSize++]       = ct;
4007   /* Should kick out early when depth is reached, rather than checking all vertices for empty cones */
4008   while (fifoSize - fifoStart) {
4009     const PetscInt       q    = fifo[fifoStart++];
4010     const PetscInt       o    = fifo[fifoStart++];
4011     const DMPolytopeType qt   = (DMPolytopeType)fifo[fifoStart++];
4012     const PetscInt      *qarr = DMPolytopeTypeGetArrangement(qt, o);
4013     const PetscInt      *tmp, *tmpO = NULL;
4014     PetscInt             tmpSize, t;
4015 
4016     if (PetscDefined(USE_DEBUG)) {
4017       PetscInt nO = DMPolytopeTypeGetNumArrangements(qt) / 2;
4018       PetscCheck(!o || !(o >= nO || o < -nO), PETSC_COMM_SELF, PETSC_ERR_PLIB, "Invalid orientation %" PetscInt_FMT " not in [%" PetscInt_FMT ",%" PetscInt_FMT ") for %s %" PetscInt_FMT, o, -nO, nO, DMPolytopeTypes[qt], q);
4019     }
4020     PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, q, useCone, &tmpSize, &tmp, &tmpO));
4021     for (t = 0; t < tmpSize; ++t) {
4022       const PetscInt ip = useCone && qarr ? qarr[t * 2] : t;
4023       const PetscInt io = useCone && qarr ? qarr[t * 2 + 1] : 0;
4024       const PetscInt cp = tmp[ip];
4025       PetscCall(DMPlexGetCellType(dm, cp, &ct));
4026       const PetscInt co = tmpO ? DMPolytopeTypeComposeOrientation(ct, io, tmpO[ip]) : 0;
4027       PetscInt       c;
4028 
4029       /* Check for duplicate */
4030       for (c = 0; c < closureSize; c += 2) {
4031         if (closure[c] == cp) break;
4032       }
4033       if (c == closureSize) {
4034         closure[closureSize++] = cp;
4035         closure[closureSize++] = co;
4036         fifo[fifoSize++]       = cp;
4037         fifo[fifoSize++]       = co;
4038         fifo[fifoSize++]       = ct;
4039       }
4040     }
4041     PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, q, useCone, &tmpSize, &tmp, &tmpO));
4042   }
4043   PetscCall(DMRestoreWorkArray(dm, 3 * maxSize, MPIU_INT, &fifo));
4044   if (numPoints) *numPoints = closureSize / 2;
4045   if (points) *points = closure;
4046   PetscFunctionReturn(PETSC_SUCCESS);
4047 }
4048 
4049 /*@C
4050   DMPlexGetTransitiveClosure - Return the points on the transitive closure of the in-edges or out-edges for this point in the DAG
4051 
4052   Not Collective
4053 
4054   Input Parameters:
4055 + dm      - The `DMPLEX`
4056 . p       - The mesh point
4057 - useCone - `PETSC_TRUE` for the closure, otherwise return the star
4058 
4059   Input/Output Parameter:
4060 . points - The points and point orientations, interleaved as pairs [p0, o0, p1, o1, ...];
4061            if `NULL` on input, internal storage will be returned, otherwise the provided array is used
4062 
4063   Output Parameter:
4064 . numPoints - The number of points in the closure, so points[] is of size 2*`numPoints`
4065 
4066   Level: beginner
4067 
4068   Note:
4069   If using internal storage (points is `NULL` on input), each call overwrites the last output.
4070 
4071   Fortran Notes:
4072   The `numPoints` argument is not present in the Fortran binding since it is internal to the array.
4073 
4074 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreTransitiveClosure()`, `DMPlexCreate()`, `DMPlexSetCone()`, `DMPlexSetChart()`, `DMPlexGetCone()`
4075 @*/
4076 PetscErrorCode DMPlexGetTransitiveClosure(DM dm, PetscInt p, PetscBool useCone, PetscInt *numPoints, PetscInt *points[])
4077 {
4078   PetscFunctionBeginHot;
4079   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4080   if (numPoints) PetscAssertPointer(numPoints, 4);
4081   if (points) PetscAssertPointer(points, 5);
4082   PetscCall(DMPlexGetTransitiveClosure_Internal(dm, p, 0, useCone, numPoints, points));
4083   PetscFunctionReturn(PETSC_SUCCESS);
4084 }
4085 
4086 /*@C
4087   DMPlexRestoreTransitiveClosure - Restore the array of points on the transitive closure of the in-edges or out-edges for this point in the DAG
4088 
4089   Not Collective
4090 
4091   Input Parameters:
4092 + dm        - The `DMPLEX`
4093 . p         - The mesh point
4094 . useCone   - `PETSC_TRUE` for the closure, otherwise return the star
4095 . numPoints - The number of points in the closure, so points[] is of size 2*`numPoints`
4096 - points    - The points and point orientations, interleaved as pairs [p0, o0, p1, o1, ...]
4097 
4098   Level: beginner
4099 
4100   Note:
4101   If not using internal storage (points is not `NULL` on input), this call is unnecessary
4102 
4103 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetTransitiveClosure()`, `DMPlexCreate()`, `DMPlexSetCone()`, `DMPlexSetChart()`, `DMPlexGetCone()`
4104 @*/
4105 PetscErrorCode DMPlexRestoreTransitiveClosure(DM dm, PetscInt p, PetscBool useCone, PetscInt *numPoints, PetscInt *points[])
4106 {
4107   PetscFunctionBeginHot;
4108   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4109   if (numPoints) *numPoints = 0;
4110   PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, points));
4111   PetscFunctionReturn(PETSC_SUCCESS);
4112 }
4113 
4114 /*@
4115   DMPlexGetMaxSizes - Return the maximum number of in-edges (cone) and out-edges (support) for any point in the DAG
4116 
4117   Not Collective
4118 
4119   Input Parameter:
4120 . dm - The `DMPLEX`
4121 
4122   Output Parameters:
4123 + maxConeSize    - The maximum number of in-edges
4124 - maxSupportSize - The maximum number of out-edges
4125 
4126   Level: beginner
4127 
4128 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetConeSize()`, `DMPlexSetChart()`
4129 @*/
4130 PetscErrorCode DMPlexGetMaxSizes(DM dm, PetscInt *maxConeSize, PetscInt *maxSupportSize)
4131 {
4132   DM_Plex *mesh = (DM_Plex *)dm->data;
4133 
4134   PetscFunctionBegin;
4135   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4136   if (maxConeSize) PetscCall(PetscSectionGetMaxDof(mesh->coneSection, maxConeSize));
4137   if (maxSupportSize) PetscCall(PetscSectionGetMaxDof(mesh->supportSection, maxSupportSize));
4138   PetscFunctionReturn(PETSC_SUCCESS);
4139 }
4140 
4141 PetscErrorCode DMSetUp_Plex(DM dm)
4142 {
4143   DM_Plex *mesh = (DM_Plex *)dm->data;
4144   PetscInt size, maxSupportSize;
4145 
4146   PetscFunctionBegin;
4147   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4148   PetscCall(PetscSectionSetUp(mesh->coneSection));
4149   PetscCall(PetscSectionGetStorageSize(mesh->coneSection, &size));
4150   PetscCall(PetscMalloc1(size, &mesh->cones));
4151   PetscCall(PetscCalloc1(size, &mesh->coneOrientations));
4152   PetscCall(PetscSectionGetMaxDof(mesh->supportSection, &maxSupportSize));
4153   if (maxSupportSize) {
4154     PetscCall(PetscSectionSetUp(mesh->supportSection));
4155     PetscCall(PetscSectionGetStorageSize(mesh->supportSection, &size));
4156     PetscCall(PetscMalloc1(size, &mesh->supports));
4157   }
4158   PetscFunctionReturn(PETSC_SUCCESS);
4159 }
4160 
4161 PetscErrorCode DMCreateSubDM_Plex(DM dm, PetscInt numFields, const PetscInt fields[], IS *is, DM *subdm)
4162 {
4163   PetscFunctionBegin;
4164   if (subdm) PetscCall(DMClone(dm, subdm));
4165   PetscCall(DMCreateSectionSubDM(dm, numFields, fields, NULL, NULL, is, subdm));
4166   if (subdm) (*subdm)->useNatural = dm->useNatural;
4167   if (dm->useNatural && dm->sfMigration) {
4168     PetscSF sfNatural;
4169 
4170     (*subdm)->sfMigration = dm->sfMigration;
4171     PetscCall(PetscObjectReference((PetscObject)dm->sfMigration));
4172     PetscCall(DMPlexCreateGlobalToNaturalSF(*subdm, NULL, (*subdm)->sfMigration, &sfNatural));
4173     (*subdm)->sfNatural = sfNatural;
4174   }
4175   PetscFunctionReturn(PETSC_SUCCESS);
4176 }
4177 
4178 PetscErrorCode DMCreateSuperDM_Plex(DM dms[], PetscInt len, IS **is, DM *superdm)
4179 {
4180   PetscInt i = 0;
4181 
4182   PetscFunctionBegin;
4183   PetscCall(DMClone(dms[0], superdm));
4184   PetscCall(DMCreateSectionSuperDM(dms, len, is, superdm));
4185   (*superdm)->useNatural = PETSC_FALSE;
4186   for (i = 0; i < len; i++) {
4187     if (dms[i]->useNatural && dms[i]->sfMigration) {
4188       PetscSF sfNatural;
4189 
4190       (*superdm)->sfMigration = dms[i]->sfMigration;
4191       PetscCall(PetscObjectReference((PetscObject)dms[i]->sfMigration));
4192       (*superdm)->useNatural = PETSC_TRUE;
4193       PetscCall(DMPlexCreateGlobalToNaturalSF(*superdm, NULL, (*superdm)->sfMigration, &sfNatural));
4194       (*superdm)->sfNatural = sfNatural;
4195       break;
4196     }
4197   }
4198   PetscFunctionReturn(PETSC_SUCCESS);
4199 }
4200 
4201 /*@
4202   DMPlexSymmetrize - Create support (out-edge) information from cone (in-edge) information
4203 
4204   Not Collective
4205 
4206   Input Parameter:
4207 . dm - The `DMPLEX`
4208 
4209   Level: beginner
4210 
4211   Note:
4212   This should be called after all calls to `DMPlexSetCone()`
4213 
4214 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMPlexSetCone()`
4215 @*/
4216 PetscErrorCode DMPlexSymmetrize(DM dm)
4217 {
4218   DM_Plex  *mesh = (DM_Plex *)dm->data;
4219   PetscInt *offsets;
4220   PetscInt  supportSize;
4221   PetscInt  pStart, pEnd, p;
4222 
4223   PetscFunctionBegin;
4224   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4225   PetscCheck(!mesh->supports, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONGSTATE, "Supports were already setup in this DMPlex");
4226   PetscCall(PetscLogEventBegin(DMPLEX_Symmetrize, dm, 0, 0, 0));
4227   /* Calculate support sizes */
4228   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
4229   for (p = pStart; p < pEnd; ++p) {
4230     PetscInt dof, off, c;
4231 
4232     PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
4233     PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
4234     for (c = off; c < off + dof; ++c) PetscCall(PetscSectionAddDof(mesh->supportSection, mesh->cones[c], 1));
4235   }
4236   PetscCall(PetscSectionSetUp(mesh->supportSection));
4237   /* Calculate supports */
4238   PetscCall(PetscSectionGetStorageSize(mesh->supportSection, &supportSize));
4239   PetscCall(PetscMalloc1(supportSize, &mesh->supports));
4240   PetscCall(PetscCalloc1(pEnd - pStart, &offsets));
4241   for (p = pStart; p < pEnd; ++p) {
4242     PetscInt dof, off, c;
4243 
4244     PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof));
4245     PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off));
4246     for (c = off; c < off + dof; ++c) {
4247       const PetscInt q = mesh->cones[c];
4248       PetscInt       offS;
4249 
4250       PetscCall(PetscSectionGetOffset(mesh->supportSection, q, &offS));
4251 
4252       mesh->supports[offS + offsets[q]] = p;
4253       ++offsets[q];
4254     }
4255   }
4256   PetscCall(PetscFree(offsets));
4257   PetscCall(PetscLogEventEnd(DMPLEX_Symmetrize, dm, 0, 0, 0));
4258   PetscFunctionReturn(PETSC_SUCCESS);
4259 }
4260 
4261 static PetscErrorCode DMPlexCreateDepthStratum(DM dm, DMLabel label, PetscInt depth, PetscInt pStart, PetscInt pEnd)
4262 {
4263   IS stratumIS;
4264 
4265   PetscFunctionBegin;
4266   if (pStart >= pEnd) PetscFunctionReturn(PETSC_SUCCESS);
4267   if (PetscDefined(USE_DEBUG)) {
4268     PetscInt  qStart, qEnd, numLevels, level;
4269     PetscBool overlap = PETSC_FALSE;
4270     PetscCall(DMLabelGetNumValues(label, &numLevels));
4271     for (level = 0; level < numLevels; level++) {
4272       PetscCall(DMLabelGetStratumBounds(label, level, &qStart, &qEnd));
4273       if ((pStart >= qStart && pStart < qEnd) || (pEnd > qStart && pEnd <= qEnd)) {
4274         overlap = PETSC_TRUE;
4275         break;
4276       }
4277     }
4278     PetscCheck(!overlap, PETSC_COMM_SELF, PETSC_ERR_PLIB, "New depth %" PetscInt_FMT " range [%" PetscInt_FMT ",%" PetscInt_FMT ") overlaps with depth %" PetscInt_FMT " range [%" PetscInt_FMT ",%" PetscInt_FMT ")", depth, pStart, pEnd, level, qStart, qEnd);
4279   }
4280   PetscCall(ISCreateStride(PETSC_COMM_SELF, pEnd - pStart, pStart, 1, &stratumIS));
4281   PetscCall(DMLabelSetStratumIS(label, depth, stratumIS));
4282   PetscCall(ISDestroy(&stratumIS));
4283   PetscFunctionReturn(PETSC_SUCCESS);
4284 }
4285 
4286 static PetscErrorCode DMPlexStratify_CellType_Private(DM dm, DMLabel label)
4287 {
4288   PetscInt *pMin, *pMax;
4289   PetscInt  pStart, pEnd;
4290   PetscInt  dmin = PETSC_MAX_INT, dmax = PETSC_MIN_INT;
4291 
4292   PetscFunctionBegin;
4293   {
4294     DMLabel label2;
4295 
4296     PetscCall(DMPlexGetCellTypeLabel(dm, &label2));
4297     PetscCall(PetscObjectViewFromOptions((PetscObject)label2, NULL, "-ct_view"));
4298   }
4299   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
4300   for (PetscInt p = pStart; p < pEnd; ++p) {
4301     DMPolytopeType ct;
4302 
4303     PetscCall(DMPlexGetCellType(dm, p, &ct));
4304     dmin = PetscMin(DMPolytopeTypeGetDim(ct), dmin);
4305     dmax = PetscMax(DMPolytopeTypeGetDim(ct), dmax);
4306   }
4307   PetscCall(PetscMalloc2(dmax + 1, &pMin, dmax + 1, &pMax));
4308   for (PetscInt d = dmin; d <= dmax; ++d) {
4309     pMin[d] = PETSC_MAX_INT;
4310     pMax[d] = PETSC_MIN_INT;
4311   }
4312   for (PetscInt p = pStart; p < pEnd; ++p) {
4313     DMPolytopeType ct;
4314     PetscInt       d;
4315 
4316     PetscCall(DMPlexGetCellType(dm, p, &ct));
4317     d       = DMPolytopeTypeGetDim(ct);
4318     pMin[d] = PetscMin(p, pMin[d]);
4319     pMax[d] = PetscMax(p, pMax[d]);
4320   }
4321   for (PetscInt d = dmin; d <= dmax; ++d) {
4322     if (pMin[d] > pMax[d]) continue;
4323     PetscCall(DMPlexCreateDepthStratum(dm, label, d, pMin[d], pMax[d] + 1));
4324   }
4325   PetscCall(PetscFree2(pMin, pMax));
4326   PetscFunctionReturn(PETSC_SUCCESS);
4327 }
4328 
4329 static PetscErrorCode DMPlexStratify_Topological_Private(DM dm, DMLabel label)
4330 {
4331   PetscInt pStart, pEnd;
4332   PetscInt numRoots = 0, numLeaves = 0;
4333 
4334   PetscFunctionBegin;
4335   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
4336   {
4337     /* Initialize roots and count leaves */
4338     PetscInt sMin = PETSC_MAX_INT;
4339     PetscInt sMax = PETSC_MIN_INT;
4340     PetscInt coneSize, supportSize;
4341 
4342     for (PetscInt p = pStart; p < pEnd; ++p) {
4343       PetscCall(DMPlexGetConeSize(dm, p, &coneSize));
4344       PetscCall(DMPlexGetSupportSize(dm, p, &supportSize));
4345       if (!coneSize && supportSize) {
4346         sMin = PetscMin(p, sMin);
4347         sMax = PetscMax(p, sMax);
4348         ++numRoots;
4349       } else if (!supportSize && coneSize) {
4350         ++numLeaves;
4351       } else if (!supportSize && !coneSize) {
4352         /* Isolated points */
4353         sMin = PetscMin(p, sMin);
4354         sMax = PetscMax(p, sMax);
4355       }
4356     }
4357     PetscCall(DMPlexCreateDepthStratum(dm, label, 0, sMin, sMax + 1));
4358   }
4359 
4360   if (numRoots + numLeaves == (pEnd - pStart)) {
4361     PetscInt sMin = PETSC_MAX_INT;
4362     PetscInt sMax = PETSC_MIN_INT;
4363     PetscInt coneSize, supportSize;
4364 
4365     for (PetscInt p = pStart; p < pEnd; ++p) {
4366       PetscCall(DMPlexGetConeSize(dm, p, &coneSize));
4367       PetscCall(DMPlexGetSupportSize(dm, p, &supportSize));
4368       if (!supportSize && coneSize) {
4369         sMin = PetscMin(p, sMin);
4370         sMax = PetscMax(p, sMax);
4371       }
4372     }
4373     PetscCall(DMPlexCreateDepthStratum(dm, label, 1, sMin, sMax + 1));
4374   } else {
4375     PetscInt level = 0;
4376     PetscInt qStart, qEnd;
4377 
4378     PetscCall(DMLabelGetStratumBounds(label, level, &qStart, &qEnd));
4379     while (qEnd > qStart) {
4380       PetscInt sMin = PETSC_MAX_INT;
4381       PetscInt sMax = PETSC_MIN_INT;
4382 
4383       for (PetscInt q = qStart; q < qEnd; ++q) {
4384         const PetscInt *support;
4385         PetscInt        supportSize;
4386 
4387         PetscCall(DMPlexGetSupportSize(dm, q, &supportSize));
4388         PetscCall(DMPlexGetSupport(dm, q, &support));
4389         for (PetscInt s = 0; s < supportSize; ++s) {
4390           sMin = PetscMin(support[s], sMin);
4391           sMax = PetscMax(support[s], sMax);
4392         }
4393       }
4394       PetscCall(DMLabelGetNumValues(label, &level));
4395       PetscCall(DMPlexCreateDepthStratum(dm, label, level, sMin, sMax + 1));
4396       PetscCall(DMLabelGetStratumBounds(label, level, &qStart, &qEnd));
4397     }
4398   }
4399   PetscFunctionReturn(PETSC_SUCCESS);
4400 }
4401 
4402 /*@
4403   DMPlexStratify - Computes the strata for all points in the `DMPLEX`
4404 
4405   Collective
4406 
4407   Input Parameter:
4408 . dm - The `DMPLEX`
4409 
4410   Level: beginner
4411 
4412   Notes:
4413   The strata group all points of the same grade, and this function calculates the strata. This
4414   grade can be seen as the height (or depth) of the point in the DAG.
4415 
4416   The DAG for most topologies is a graded poset (https://en.wikipedia.org/wiki/Graded_poset), and
4417   can be illustrated by a Hasse Diagram (https://en.wikipedia.org/wiki/Hasse_diagram).
4418   Concretely, `DMPlexStratify()` creates a new label named "depth" containing the depth in the DAG of each point. For cell-vertex
4419   meshes, vertices are depth 0 and cells are depth 1. For fully interpolated meshes, depth 0 for vertices, 1 for edges, and so on
4420   until cells have depth equal to the dimension of the mesh. The depth label can be accessed through `DMPlexGetDepthLabel()` or `DMPlexGetDepthStratum()`, or
4421   manually via `DMGetLabel()`.  The height is defined implicitly by height = maxDimension - depth, and can be accessed
4422   via `DMPlexGetHeightStratum()`.  For example, cells have height 0 and faces have height 1.
4423 
4424   The depth of a point is calculated by executing a breadth-first search (BFS) on the DAG. This could produce surprising results
4425   if run on a partially interpolated mesh, meaning one that had some edges and faces, but not others. For example, suppose that
4426   we had a mesh consisting of one triangle (c0) and three vertices (v0, v1, v2), and only one edge is on the boundary so we choose
4427   to interpolate only that one (e0), so that
4428 .vb
4429   cone(c0) = {e0, v2}
4430   cone(e0) = {v0, v1}
4431 .ve
4432   If `DMPlexStratify()` is run on this mesh, it will give depths
4433 .vb
4434    depth 0 = {v0, v1, v2}
4435    depth 1 = {e0, c0}
4436 .ve
4437   where the triangle has been given depth 1, instead of 2, because it is reachable from vertex v2.
4438 
4439   `DMPlexStratify()` should be called after all calls to `DMPlexSymmetrize()`
4440 
4441 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSymmetrize()`, `DMPlexComputeCellTypes()`
4442 @*/
4443 PetscErrorCode DMPlexStratify(DM dm)
4444 {
4445   DM_Plex  *mesh = (DM_Plex *)dm->data;
4446   DMLabel   label;
4447   PetscBool flg = PETSC_FALSE;
4448 
4449   PetscFunctionBegin;
4450   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4451   PetscCall(PetscLogEventBegin(DMPLEX_Stratify, dm, 0, 0, 0));
4452 
4453   // Create depth label
4454   PetscCall(DMRemoveLabel(dm, "depth", NULL));
4455   PetscCall(DMCreateLabel(dm, "depth"));
4456   PetscCall(DMPlexGetDepthLabel(dm, &label));
4457 
4458   PetscCall(PetscOptionsGetBool(NULL, dm->hdr.prefix, "-dm_plex_stratify_celltype", &flg, NULL));
4459   if (flg) PetscCall(DMPlexStratify_CellType_Private(dm, label));
4460   else PetscCall(DMPlexStratify_Topological_Private(dm, label));
4461 
4462   { /* just in case there is an empty process */
4463     PetscInt numValues, maxValues = 0, v;
4464 
4465     PetscCall(DMLabelGetNumValues(label, &numValues));
4466     PetscCall(MPIU_Allreduce(&numValues, &maxValues, 1, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm)));
4467     for (v = numValues; v < maxValues; v++) PetscCall(DMLabelAddStratum(label, v));
4468   }
4469   PetscCall(PetscObjectStateGet((PetscObject)label, &mesh->depthState));
4470   PetscCall(PetscLogEventEnd(DMPLEX_Stratify, dm, 0, 0, 0));
4471   PetscFunctionReturn(PETSC_SUCCESS);
4472 }
4473 
4474 PetscErrorCode DMPlexComputeCellType_Internal(DM dm, PetscInt p, PetscInt pdepth, DMPolytopeType *pt)
4475 {
4476   DMPolytopeType ct = DM_POLYTOPE_UNKNOWN;
4477   PetscInt       dim, depth, pheight, coneSize;
4478 
4479   PetscFunctionBeginHot;
4480   PetscCall(DMGetDimension(dm, &dim));
4481   PetscCall(DMPlexGetDepth(dm, &depth));
4482   PetscCall(DMPlexGetConeSize(dm, p, &coneSize));
4483   pheight = depth - pdepth;
4484   if (depth <= 1) {
4485     switch (pdepth) {
4486     case 0:
4487       ct = DM_POLYTOPE_POINT;
4488       break;
4489     case 1:
4490       switch (coneSize) {
4491       case 2:
4492         ct = DM_POLYTOPE_SEGMENT;
4493         break;
4494       case 3:
4495         ct = DM_POLYTOPE_TRIANGLE;
4496         break;
4497       case 4:
4498         switch (dim) {
4499         case 2:
4500           ct = DM_POLYTOPE_QUADRILATERAL;
4501           break;
4502         case 3:
4503           ct = DM_POLYTOPE_TETRAHEDRON;
4504           break;
4505         default:
4506           break;
4507         }
4508         break;
4509       case 5:
4510         ct = DM_POLYTOPE_PYRAMID;
4511         break;
4512       case 6:
4513         ct = DM_POLYTOPE_TRI_PRISM_TENSOR;
4514         break;
4515       case 8:
4516         ct = DM_POLYTOPE_HEXAHEDRON;
4517         break;
4518       default:
4519         break;
4520       }
4521     }
4522   } else {
4523     if (pdepth == 0) {
4524       ct = DM_POLYTOPE_POINT;
4525     } else if (pheight == 0) {
4526       switch (dim) {
4527       case 1:
4528         switch (coneSize) {
4529         case 2:
4530           ct = DM_POLYTOPE_SEGMENT;
4531           break;
4532         default:
4533           break;
4534         }
4535         break;
4536       case 2:
4537         switch (coneSize) {
4538         case 3:
4539           ct = DM_POLYTOPE_TRIANGLE;
4540           break;
4541         case 4:
4542           ct = DM_POLYTOPE_QUADRILATERAL;
4543           break;
4544         default:
4545           break;
4546         }
4547         break;
4548       case 3:
4549         switch (coneSize) {
4550         case 4:
4551           ct = DM_POLYTOPE_TETRAHEDRON;
4552           break;
4553         case 5: {
4554           const PetscInt *cone;
4555           PetscInt        faceConeSize;
4556 
4557           PetscCall(DMPlexGetCone(dm, p, &cone));
4558           PetscCall(DMPlexGetConeSize(dm, cone[0], &faceConeSize));
4559           switch (faceConeSize) {
4560           case 3:
4561             ct = DM_POLYTOPE_TRI_PRISM_TENSOR;
4562             break;
4563           case 4:
4564             ct = DM_POLYTOPE_PYRAMID;
4565             break;
4566           }
4567         } break;
4568         case 6:
4569           ct = DM_POLYTOPE_HEXAHEDRON;
4570           break;
4571         default:
4572           break;
4573         }
4574         break;
4575       default:
4576         break;
4577       }
4578     } else if (pheight > 0) {
4579       switch (coneSize) {
4580       case 2:
4581         ct = DM_POLYTOPE_SEGMENT;
4582         break;
4583       case 3:
4584         ct = DM_POLYTOPE_TRIANGLE;
4585         break;
4586       case 4:
4587         ct = DM_POLYTOPE_QUADRILATERAL;
4588         break;
4589       default:
4590         break;
4591       }
4592     }
4593   }
4594   *pt = ct;
4595   PetscFunctionReturn(PETSC_SUCCESS);
4596 }
4597 
4598 /*@
4599   DMPlexComputeCellTypes - Infer the polytope type of every cell using its dimension and cone size.
4600 
4601   Collective
4602 
4603   Input Parameter:
4604 . dm - The `DMPLEX`
4605 
4606   Level: developer
4607 
4608   Note:
4609   This function is normally called automatically when a cell type is requested. It creates an
4610   internal `DMLabel` named "celltype" which can be directly accessed using `DMGetLabel()`. A user may disable
4611   automatic creation by creating the label manually, using `DMCreateLabel`(dm, "celltype").
4612 
4613   `DMPlexComputeCellTypes()` should be called after all calls to `DMPlexSymmetrize()` and `DMPlexStratify()`
4614 
4615 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSymmetrize()`, `DMPlexStratify()`, `DMGetLabel()`, `DMCreateLabel()`
4616 @*/
4617 PetscErrorCode DMPlexComputeCellTypes(DM dm)
4618 {
4619   DM_Plex *mesh;
4620   DMLabel  ctLabel;
4621   PetscInt pStart, pEnd, p;
4622 
4623   PetscFunctionBegin;
4624   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4625   mesh = (DM_Plex *)dm->data;
4626   PetscCall(DMCreateLabel(dm, "celltype"));
4627   PetscCall(DMPlexGetCellTypeLabel(dm, &ctLabel));
4628   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
4629   PetscCall(PetscFree(mesh->cellTypes));
4630   PetscCall(PetscMalloc1(pEnd - pStart, &mesh->cellTypes));
4631   for (p = pStart; p < pEnd; ++p) {
4632     DMPolytopeType ct = DM_POLYTOPE_UNKNOWN;
4633     PetscInt       pdepth;
4634 
4635     PetscCall(DMPlexGetPointDepth(dm, p, &pdepth));
4636     PetscCall(DMPlexComputeCellType_Internal(dm, p, pdepth, &ct));
4637     PetscCheck(ct != DM_POLYTOPE_UNKNOWN && ct != DM_POLYTOPE_UNKNOWN_CELL && ct != DM_POLYTOPE_UNKNOWN_FACE, PETSC_COMM_SELF, PETSC_ERR_SUP, "Point %" PetscInt_FMT " has invalid celltype (%s)", p, DMPolytopeTypes[ct]);
4638     PetscCall(DMLabelSetValue(ctLabel, p, ct));
4639     mesh->cellTypes[p - pStart].value_as_uint8 = ct;
4640   }
4641   PetscCall(PetscObjectStateGet((PetscObject)ctLabel, &mesh->celltypeState));
4642   PetscCall(PetscObjectViewFromOptions((PetscObject)ctLabel, NULL, "-dm_plex_celltypes_view"));
4643   PetscFunctionReturn(PETSC_SUCCESS);
4644 }
4645 
4646 /*@C
4647   DMPlexGetJoin - Get an array for the join of the set of points
4648 
4649   Not Collective
4650 
4651   Input Parameters:
4652 + dm        - The `DMPLEX` object
4653 . numPoints - The number of input points for the join
4654 - points    - The input points
4655 
4656   Output Parameters:
4657 + numCoveredPoints - The number of points in the join
4658 - coveredPoints    - The points in the join
4659 
4660   Level: intermediate
4661 
4662   Note:
4663   Currently, this is restricted to a single level join
4664 
4665   Fortran Notes:
4666   The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array.
4667 
4668 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreJoin()`, `DMPlexGetMeet()`
4669 @*/
4670 PetscErrorCode DMPlexGetJoin(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints)
4671 {
4672   DM_Plex  *mesh = (DM_Plex *)dm->data;
4673   PetscInt *join[2];
4674   PetscInt  joinSize, i = 0;
4675   PetscInt  dof, off, p, c, m;
4676   PetscInt  maxSupportSize;
4677 
4678   PetscFunctionBegin;
4679   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4680   PetscAssertPointer(points, 3);
4681   PetscAssertPointer(numCoveredPoints, 4);
4682   PetscAssertPointer(coveredPoints, 5);
4683   PetscCall(PetscSectionGetMaxDof(mesh->supportSection, &maxSupportSize));
4684   PetscCall(DMGetWorkArray(dm, maxSupportSize, MPIU_INT, &join[0]));
4685   PetscCall(DMGetWorkArray(dm, maxSupportSize, MPIU_INT, &join[1]));
4686   /* Copy in support of first point */
4687   PetscCall(PetscSectionGetDof(mesh->supportSection, points[0], &dof));
4688   PetscCall(PetscSectionGetOffset(mesh->supportSection, points[0], &off));
4689   for (joinSize = 0; joinSize < dof; ++joinSize) join[i][joinSize] = mesh->supports[off + joinSize];
4690   /* Check each successive support */
4691   for (p = 1; p < numPoints; ++p) {
4692     PetscInt newJoinSize = 0;
4693 
4694     PetscCall(PetscSectionGetDof(mesh->supportSection, points[p], &dof));
4695     PetscCall(PetscSectionGetOffset(mesh->supportSection, points[p], &off));
4696     for (c = 0; c < dof; ++c) {
4697       const PetscInt point = mesh->supports[off + c];
4698 
4699       for (m = 0; m < joinSize; ++m) {
4700         if (point == join[i][m]) {
4701           join[1 - i][newJoinSize++] = point;
4702           break;
4703         }
4704       }
4705     }
4706     joinSize = newJoinSize;
4707     i        = 1 - i;
4708   }
4709   *numCoveredPoints = joinSize;
4710   *coveredPoints    = join[i];
4711   PetscCall(DMRestoreWorkArray(dm, maxSupportSize, MPIU_INT, &join[1 - i]));
4712   PetscFunctionReturn(PETSC_SUCCESS);
4713 }
4714 
4715 /*@C
4716   DMPlexRestoreJoin - Restore an array for the join of the set of points
4717 
4718   Not Collective
4719 
4720   Input Parameters:
4721 + dm        - The `DMPLEX` object
4722 . numPoints - The number of input points for the join
4723 - points    - The input points
4724 
4725   Output Parameters:
4726 + numCoveredPoints - The number of points in the join
4727 - coveredPoints    - The points in the join
4728 
4729   Level: intermediate
4730 
4731   Fortran Notes:
4732   The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array.
4733 
4734 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetJoin()`, `DMPlexGetFullJoin()`, `DMPlexGetMeet()`
4735 @*/
4736 PetscErrorCode DMPlexRestoreJoin(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints)
4737 {
4738   PetscFunctionBegin;
4739   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4740   if (points) PetscAssertPointer(points, 3);
4741   if (numCoveredPoints) PetscAssertPointer(numCoveredPoints, 4);
4742   PetscAssertPointer(coveredPoints, 5);
4743   PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, (void *)coveredPoints));
4744   if (numCoveredPoints) *numCoveredPoints = 0;
4745   PetscFunctionReturn(PETSC_SUCCESS);
4746 }
4747 
4748 /*@C
4749   DMPlexGetFullJoin - Get an array for the join of the set of points
4750 
4751   Not Collective
4752 
4753   Input Parameters:
4754 + dm        - The `DMPLEX` object
4755 . numPoints - The number of input points for the join
4756 - points    - The input points
4757 
4758   Output Parameters:
4759 + numCoveredPoints - The number of points in the join
4760 - coveredPoints    - The points in the join
4761 
4762   Level: intermediate
4763 
4764   Fortran Notes:
4765   The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array.
4766 
4767 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetJoin()`, `DMPlexRestoreJoin()`, `DMPlexGetMeet()`
4768 @*/
4769 PetscErrorCode DMPlexGetFullJoin(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints)
4770 {
4771   PetscInt *offsets, **closures;
4772   PetscInt *join[2];
4773   PetscInt  depth = 0, maxSize, joinSize = 0, i = 0;
4774   PetscInt  p, d, c, m, ms;
4775 
4776   PetscFunctionBegin;
4777   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4778   PetscAssertPointer(points, 3);
4779   PetscAssertPointer(numCoveredPoints, 4);
4780   PetscAssertPointer(coveredPoints, 5);
4781 
4782   PetscCall(DMPlexGetDepth(dm, &depth));
4783   PetscCall(PetscCalloc1(numPoints, &closures));
4784   PetscCall(DMGetWorkArray(dm, numPoints * (depth + 2), MPIU_INT, &offsets));
4785   PetscCall(DMPlexGetMaxSizes(dm, NULL, &ms));
4786   maxSize = (ms > 1) ? ((PetscPowInt(ms, depth + 1) - 1) / (ms - 1)) : depth + 1;
4787   PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &join[0]));
4788   PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &join[1]));
4789 
4790   for (p = 0; p < numPoints; ++p) {
4791     PetscInt closureSize;
4792 
4793     PetscCall(DMPlexGetTransitiveClosure(dm, points[p], PETSC_FALSE, &closureSize, &closures[p]));
4794 
4795     offsets[p * (depth + 2) + 0] = 0;
4796     for (d = 0; d < depth + 1; ++d) {
4797       PetscInt pStart, pEnd, i;
4798 
4799       PetscCall(DMPlexGetDepthStratum(dm, d, &pStart, &pEnd));
4800       for (i = offsets[p * (depth + 2) + d]; i < closureSize; ++i) {
4801         if ((pStart > closures[p][i * 2]) || (pEnd <= closures[p][i * 2])) {
4802           offsets[p * (depth + 2) + d + 1] = i;
4803           break;
4804         }
4805       }
4806       if (i == closureSize) offsets[p * (depth + 2) + d + 1] = i;
4807     }
4808     PetscCheck(offsets[p * (depth + 2) + depth + 1] == closureSize, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Total size of closure %" PetscInt_FMT " should be %" PetscInt_FMT, offsets[p * (depth + 2) + depth + 1], closureSize);
4809   }
4810   for (d = 0; d < depth + 1; ++d) {
4811     PetscInt dof;
4812 
4813     /* Copy in support of first point */
4814     dof = offsets[d + 1] - offsets[d];
4815     for (joinSize = 0; joinSize < dof; ++joinSize) join[i][joinSize] = closures[0][(offsets[d] + joinSize) * 2];
4816     /* Check each successive cone */
4817     for (p = 1; p < numPoints && joinSize; ++p) {
4818       PetscInt newJoinSize = 0;
4819 
4820       dof = offsets[p * (depth + 2) + d + 1] - offsets[p * (depth + 2) + d];
4821       for (c = 0; c < dof; ++c) {
4822         const PetscInt point = closures[p][(offsets[p * (depth + 2) + d] + c) * 2];
4823 
4824         for (m = 0; m < joinSize; ++m) {
4825           if (point == join[i][m]) {
4826             join[1 - i][newJoinSize++] = point;
4827             break;
4828           }
4829         }
4830       }
4831       joinSize = newJoinSize;
4832       i        = 1 - i;
4833     }
4834     if (joinSize) break;
4835   }
4836   *numCoveredPoints = joinSize;
4837   *coveredPoints    = join[i];
4838   for (p = 0; p < numPoints; ++p) PetscCall(DMPlexRestoreTransitiveClosure(dm, points[p], PETSC_FALSE, NULL, &closures[p]));
4839   PetscCall(PetscFree(closures));
4840   PetscCall(DMRestoreWorkArray(dm, numPoints * (depth + 2), MPIU_INT, &offsets));
4841   PetscCall(DMRestoreWorkArray(dm, ms, MPIU_INT, &join[1 - i]));
4842   PetscFunctionReturn(PETSC_SUCCESS);
4843 }
4844 
4845 /*@C
4846   DMPlexGetMeet - Get an array for the meet of the set of points
4847 
4848   Not Collective
4849 
4850   Input Parameters:
4851 + dm        - The `DMPLEX` object
4852 . numPoints - The number of input points for the meet
4853 - points    - The input points
4854 
4855   Output Parameters:
4856 + numCoveringPoints - The number of points in the meet
4857 - coveringPoints    - The points in the meet
4858 
4859   Level: intermediate
4860 
4861   Note:
4862   Currently, this is restricted to a single level meet
4863 
4864   Fortran Notes:
4865   The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array.
4866 
4867 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreMeet()`, `DMPlexGetJoin()`
4868 @*/
4869 PetscErrorCode DMPlexGetMeet(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveringPoints, const PetscInt **coveringPoints)
4870 {
4871   DM_Plex  *mesh = (DM_Plex *)dm->data;
4872   PetscInt *meet[2];
4873   PetscInt  meetSize, i = 0;
4874   PetscInt  dof, off, p, c, m;
4875   PetscInt  maxConeSize;
4876 
4877   PetscFunctionBegin;
4878   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4879   PetscAssertPointer(points, 3);
4880   PetscAssertPointer(numCoveringPoints, 4);
4881   PetscAssertPointer(coveringPoints, 5);
4882   PetscCall(PetscSectionGetMaxDof(mesh->coneSection, &maxConeSize));
4883   PetscCall(DMGetWorkArray(dm, maxConeSize, MPIU_INT, &meet[0]));
4884   PetscCall(DMGetWorkArray(dm, maxConeSize, MPIU_INT, &meet[1]));
4885   /* Copy in cone of first point */
4886   PetscCall(PetscSectionGetDof(mesh->coneSection, points[0], &dof));
4887   PetscCall(PetscSectionGetOffset(mesh->coneSection, points[0], &off));
4888   for (meetSize = 0; meetSize < dof; ++meetSize) meet[i][meetSize] = mesh->cones[off + meetSize];
4889   /* Check each successive cone */
4890   for (p = 1; p < numPoints; ++p) {
4891     PetscInt newMeetSize = 0;
4892 
4893     PetscCall(PetscSectionGetDof(mesh->coneSection, points[p], &dof));
4894     PetscCall(PetscSectionGetOffset(mesh->coneSection, points[p], &off));
4895     for (c = 0; c < dof; ++c) {
4896       const PetscInt point = mesh->cones[off + c];
4897 
4898       for (m = 0; m < meetSize; ++m) {
4899         if (point == meet[i][m]) {
4900           meet[1 - i][newMeetSize++] = point;
4901           break;
4902         }
4903       }
4904     }
4905     meetSize = newMeetSize;
4906     i        = 1 - i;
4907   }
4908   *numCoveringPoints = meetSize;
4909   *coveringPoints    = meet[i];
4910   PetscCall(DMRestoreWorkArray(dm, maxConeSize, MPIU_INT, &meet[1 - i]));
4911   PetscFunctionReturn(PETSC_SUCCESS);
4912 }
4913 
4914 /*@C
4915   DMPlexRestoreMeet - Restore an array for the meet of the set of points
4916 
4917   Not Collective
4918 
4919   Input Parameters:
4920 + dm        - The `DMPLEX` object
4921 . numPoints - The number of input points for the meet
4922 - points    - The input points
4923 
4924   Output Parameters:
4925 + numCoveredPoints - The number of points in the meet
4926 - coveredPoints    - The points in the meet
4927 
4928   Level: intermediate
4929 
4930   Fortran Notes:
4931   The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array.
4932 
4933 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetMeet()`, `DMPlexGetFullMeet()`, `DMPlexGetJoin()`
4934 @*/
4935 PetscErrorCode DMPlexRestoreMeet(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints)
4936 {
4937   PetscFunctionBegin;
4938   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4939   if (points) PetscAssertPointer(points, 3);
4940   if (numCoveredPoints) PetscAssertPointer(numCoveredPoints, 4);
4941   PetscAssertPointer(coveredPoints, 5);
4942   PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, (void *)coveredPoints));
4943   if (numCoveredPoints) *numCoveredPoints = 0;
4944   PetscFunctionReturn(PETSC_SUCCESS);
4945 }
4946 
4947 /*@C
4948   DMPlexGetFullMeet - Get an array for the meet of the set of points
4949 
4950   Not Collective
4951 
4952   Input Parameters:
4953 + dm        - The `DMPLEX` object
4954 . numPoints - The number of input points for the meet
4955 - points    - The input points
4956 
4957   Output Parameters:
4958 + numCoveredPoints - The number of points in the meet
4959 - coveredPoints    - The points in the meet
4960 
4961   Level: intermediate
4962 
4963   Fortran Notes:
4964   The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array.
4965 
4966 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetMeet()`, `DMPlexRestoreMeet()`, `DMPlexGetJoin()`
4967 @*/
4968 PetscErrorCode DMPlexGetFullMeet(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints)
4969 {
4970   PetscInt *offsets, **closures;
4971   PetscInt *meet[2];
4972   PetscInt  height = 0, maxSize, meetSize = 0, i = 0;
4973   PetscInt  p, h, c, m, mc;
4974 
4975   PetscFunctionBegin;
4976   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
4977   PetscAssertPointer(points, 3);
4978   PetscAssertPointer(numCoveredPoints, 4);
4979   PetscAssertPointer(coveredPoints, 5);
4980 
4981   PetscCall(DMPlexGetDepth(dm, &height));
4982   PetscCall(PetscMalloc1(numPoints, &closures));
4983   PetscCall(DMGetWorkArray(dm, numPoints * (height + 2), MPIU_INT, &offsets));
4984   PetscCall(DMPlexGetMaxSizes(dm, &mc, NULL));
4985   maxSize = (mc > 1) ? ((PetscPowInt(mc, height + 1) - 1) / (mc - 1)) : height + 1;
4986   PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &meet[0]));
4987   PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &meet[1]));
4988 
4989   for (p = 0; p < numPoints; ++p) {
4990     PetscInt closureSize;
4991 
4992     PetscCall(DMPlexGetTransitiveClosure(dm, points[p], PETSC_TRUE, &closureSize, &closures[p]));
4993 
4994     offsets[p * (height + 2) + 0] = 0;
4995     for (h = 0; h < height + 1; ++h) {
4996       PetscInt pStart, pEnd, i;
4997 
4998       PetscCall(DMPlexGetHeightStratum(dm, h, &pStart, &pEnd));
4999       for (i = offsets[p * (height + 2) + h]; i < closureSize; ++i) {
5000         if ((pStart > closures[p][i * 2]) || (pEnd <= closures[p][i * 2])) {
5001           offsets[p * (height + 2) + h + 1] = i;
5002           break;
5003         }
5004       }
5005       if (i == closureSize) offsets[p * (height + 2) + h + 1] = i;
5006     }
5007     PetscCheck(offsets[p * (height + 2) + height + 1] == closureSize, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Total size of closure %" PetscInt_FMT " should be %" PetscInt_FMT, offsets[p * (height + 2) + height + 1], closureSize);
5008   }
5009   for (h = 0; h < height + 1; ++h) {
5010     PetscInt dof;
5011 
5012     /* Copy in cone of first point */
5013     dof = offsets[h + 1] - offsets[h];
5014     for (meetSize = 0; meetSize < dof; ++meetSize) meet[i][meetSize] = closures[0][(offsets[h] + meetSize) * 2];
5015     /* Check each successive cone */
5016     for (p = 1; p < numPoints && meetSize; ++p) {
5017       PetscInt newMeetSize = 0;
5018 
5019       dof = offsets[p * (height + 2) + h + 1] - offsets[p * (height + 2) + h];
5020       for (c = 0; c < dof; ++c) {
5021         const PetscInt point = closures[p][(offsets[p * (height + 2) + h] + c) * 2];
5022 
5023         for (m = 0; m < meetSize; ++m) {
5024           if (point == meet[i][m]) {
5025             meet[1 - i][newMeetSize++] = point;
5026             break;
5027           }
5028         }
5029       }
5030       meetSize = newMeetSize;
5031       i        = 1 - i;
5032     }
5033     if (meetSize) break;
5034   }
5035   *numCoveredPoints = meetSize;
5036   *coveredPoints    = meet[i];
5037   for (p = 0; p < numPoints; ++p) PetscCall(DMPlexRestoreTransitiveClosure(dm, points[p], PETSC_TRUE, NULL, &closures[p]));
5038   PetscCall(PetscFree(closures));
5039   PetscCall(DMRestoreWorkArray(dm, numPoints * (height + 2), MPIU_INT, &offsets));
5040   PetscCall(DMRestoreWorkArray(dm, mc, MPIU_INT, &meet[1 - i]));
5041   PetscFunctionReturn(PETSC_SUCCESS);
5042 }
5043 
5044 /*@C
5045   DMPlexEqual - Determine if two `DM` have the same topology
5046 
5047   Not Collective
5048 
5049   Input Parameters:
5050 + dmA - A `DMPLEX` object
5051 - dmB - A `DMPLEX` object
5052 
5053   Output Parameter:
5054 . equal - `PETSC_TRUE` if the topologies are identical
5055 
5056   Level: intermediate
5057 
5058   Note:
5059   We are not solving graph isomorphism, so we do not permute.
5060 
5061 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCone()`
5062 @*/
5063 PetscErrorCode DMPlexEqual(DM dmA, DM dmB, PetscBool *equal)
5064 {
5065   PetscInt depth, depthB, pStart, pEnd, pStartB, pEndB, p;
5066 
5067   PetscFunctionBegin;
5068   PetscValidHeaderSpecific(dmA, DM_CLASSID, 1);
5069   PetscValidHeaderSpecific(dmB, DM_CLASSID, 2);
5070   PetscAssertPointer(equal, 3);
5071 
5072   *equal = PETSC_FALSE;
5073   PetscCall(DMPlexGetDepth(dmA, &depth));
5074   PetscCall(DMPlexGetDepth(dmB, &depthB));
5075   if (depth != depthB) PetscFunctionReturn(PETSC_SUCCESS);
5076   PetscCall(DMPlexGetChart(dmA, &pStart, &pEnd));
5077   PetscCall(DMPlexGetChart(dmB, &pStartB, &pEndB));
5078   if ((pStart != pStartB) || (pEnd != pEndB)) PetscFunctionReturn(PETSC_SUCCESS);
5079   for (p = pStart; p < pEnd; ++p) {
5080     const PetscInt *cone, *coneB, *ornt, *orntB, *support, *supportB;
5081     PetscInt        coneSize, coneSizeB, c, supportSize, supportSizeB, s;
5082 
5083     PetscCall(DMPlexGetConeSize(dmA, p, &coneSize));
5084     PetscCall(DMPlexGetCone(dmA, p, &cone));
5085     PetscCall(DMPlexGetConeOrientation(dmA, p, &ornt));
5086     PetscCall(DMPlexGetConeSize(dmB, p, &coneSizeB));
5087     PetscCall(DMPlexGetCone(dmB, p, &coneB));
5088     PetscCall(DMPlexGetConeOrientation(dmB, p, &orntB));
5089     if (coneSize != coneSizeB) PetscFunctionReturn(PETSC_SUCCESS);
5090     for (c = 0; c < coneSize; ++c) {
5091       if (cone[c] != coneB[c]) PetscFunctionReturn(PETSC_SUCCESS);
5092       if (ornt[c] != orntB[c]) PetscFunctionReturn(PETSC_SUCCESS);
5093     }
5094     PetscCall(DMPlexGetSupportSize(dmA, p, &supportSize));
5095     PetscCall(DMPlexGetSupport(dmA, p, &support));
5096     PetscCall(DMPlexGetSupportSize(dmB, p, &supportSizeB));
5097     PetscCall(DMPlexGetSupport(dmB, p, &supportB));
5098     if (supportSize != supportSizeB) PetscFunctionReturn(PETSC_SUCCESS);
5099     for (s = 0; s < supportSize; ++s) {
5100       if (support[s] != supportB[s]) PetscFunctionReturn(PETSC_SUCCESS);
5101     }
5102   }
5103   *equal = PETSC_TRUE;
5104   PetscFunctionReturn(PETSC_SUCCESS);
5105 }
5106 
5107 /*@C
5108   DMPlexGetNumFaceVertices - Returns the number of vertices on a face
5109 
5110   Not Collective
5111 
5112   Input Parameters:
5113 + dm         - The `DMPLEX`
5114 . cellDim    - The cell dimension
5115 - numCorners - The number of vertices on a cell
5116 
5117   Output Parameter:
5118 . numFaceVertices - The number of vertices on a face
5119 
5120   Level: developer
5121 
5122   Note:
5123   Of course this can only work for a restricted set of symmetric shapes
5124 
5125 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCone()`
5126 @*/
5127 PetscErrorCode DMPlexGetNumFaceVertices(DM dm, PetscInt cellDim, PetscInt numCorners, PetscInt *numFaceVertices)
5128 {
5129   MPI_Comm comm;
5130 
5131   PetscFunctionBegin;
5132   PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
5133   PetscAssertPointer(numFaceVertices, 4);
5134   switch (cellDim) {
5135   case 0:
5136     *numFaceVertices = 0;
5137     break;
5138   case 1:
5139     *numFaceVertices = 1;
5140     break;
5141   case 2:
5142     switch (numCorners) {
5143     case 3:                 /* triangle */
5144       *numFaceVertices = 2; /* Edge has 2 vertices */
5145       break;
5146     case 4:                 /* quadrilateral */
5147       *numFaceVertices = 2; /* Edge has 2 vertices */
5148       break;
5149     case 6:                 /* quadratic triangle, tri and quad cohesive Lagrange cells */
5150       *numFaceVertices = 3; /* Edge has 3 vertices */
5151       break;
5152     case 9:                 /* quadratic quadrilateral, quadratic quad cohesive Lagrange cells */
5153       *numFaceVertices = 3; /* Edge has 3 vertices */
5154       break;
5155     default:
5156       SETERRQ(comm, PETSC_ERR_ARG_OUTOFRANGE, "Invalid number of face corners %" PetscInt_FMT " for dimension %" PetscInt_FMT, numCorners, cellDim);
5157     }
5158     break;
5159   case 3:
5160     switch (numCorners) {
5161     case 4:                 /* tetradehdron */
5162       *numFaceVertices = 3; /* Face has 3 vertices */
5163       break;
5164     case 6:                 /* tet cohesive cells */
5165       *numFaceVertices = 4; /* Face has 4 vertices */
5166       break;
5167     case 8:                 /* hexahedron */
5168       *numFaceVertices = 4; /* Face has 4 vertices */
5169       break;
5170     case 9:                 /* tet cohesive Lagrange cells */
5171       *numFaceVertices = 6; /* Face has 6 vertices */
5172       break;
5173     case 10:                /* quadratic tetrahedron */
5174       *numFaceVertices = 6; /* Face has 6 vertices */
5175       break;
5176     case 12:                /* hex cohesive Lagrange cells */
5177       *numFaceVertices = 6; /* Face has 6 vertices */
5178       break;
5179     case 18:                /* quadratic tet cohesive Lagrange cells */
5180       *numFaceVertices = 6; /* Face has 6 vertices */
5181       break;
5182     case 27:                /* quadratic hexahedron, quadratic hex cohesive Lagrange cells */
5183       *numFaceVertices = 9; /* Face has 9 vertices */
5184       break;
5185     default:
5186       SETERRQ(comm, PETSC_ERR_ARG_OUTOFRANGE, "Invalid number of face corners %" PetscInt_FMT " for dimension %" PetscInt_FMT, numCorners, cellDim);
5187     }
5188     break;
5189   default:
5190     SETERRQ(comm, PETSC_ERR_ARG_OUTOFRANGE, "Invalid cell dimension %" PetscInt_FMT, cellDim);
5191   }
5192   PetscFunctionReturn(PETSC_SUCCESS);
5193 }
5194 
5195 /*@
5196   DMPlexGetDepthLabel - Get the `DMLabel` recording the depth of each point
5197 
5198   Not Collective
5199 
5200   Input Parameter:
5201 . dm - The `DMPLEX` object
5202 
5203   Output Parameter:
5204 . depthLabel - The `DMLabel` recording point depth
5205 
5206   Level: developer
5207 
5208 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetDepth()`, `DMPlexGetHeightStratum()`, `DMPlexGetDepthStratum()`, `DMPlexGetPointDepth()`,
5209 @*/
5210 PetscErrorCode DMPlexGetDepthLabel(DM dm, DMLabel *depthLabel)
5211 {
5212   PetscFunctionBegin;
5213   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5214   PetscAssertPointer(depthLabel, 2);
5215   *depthLabel = dm->depthLabel;
5216   PetscFunctionReturn(PETSC_SUCCESS);
5217 }
5218 
5219 /*@
5220   DMPlexGetDepth - Get the depth of the DAG representing this mesh
5221 
5222   Not Collective
5223 
5224   Input Parameter:
5225 . dm - The `DMPLEX` object
5226 
5227   Output Parameter:
5228 . depth - The number of strata (breadth first levels) in the DAG
5229 
5230   Level: developer
5231 
5232   Notes:
5233   This returns maximum of point depths over all points, i.e. maximum value of the label returned by `DMPlexGetDepthLabel()`.
5234 
5235   The point depth is described more in detail in `DMPlexGetDepthStratum()`.
5236 
5237   An empty mesh gives -1.
5238 
5239 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetDepthLabel()`, `DMPlexGetDepthStratum()`, `DMPlexGetPointDepth()`, `DMPlexSymmetrize()`
5240 @*/
5241 PetscErrorCode DMPlexGetDepth(DM dm, PetscInt *depth)
5242 {
5243   DM_Plex *mesh = (DM_Plex *)dm->data;
5244   DMLabel  label;
5245   PetscInt d = -1;
5246 
5247   PetscFunctionBegin;
5248   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5249   PetscAssertPointer(depth, 2);
5250   if (mesh->tr) {
5251     PetscCall(DMPlexTransformGetDepth(mesh->tr, depth));
5252   } else {
5253     PetscCall(DMPlexGetDepthLabel(dm, &label));
5254     // Allow missing depths
5255     if (label) PetscCall(DMLabelGetValueBounds(label, NULL, &d));
5256     *depth = d;
5257   }
5258   PetscFunctionReturn(PETSC_SUCCESS);
5259 }
5260 
5261 /*@
5262   DMPlexGetDepthStratum - Get the bounds [`start`, `end`) for all points at a certain depth.
5263 
5264   Not Collective
5265 
5266   Input Parameters:
5267 + dm    - The `DMPLEX` object
5268 - depth - The requested depth
5269 
5270   Output Parameters:
5271 + start - The first point at this `depth`
5272 - end   - One beyond the last point at this `depth`
5273 
5274   Level: developer
5275 
5276   Notes:
5277   Depth indexing is related to topological dimension.  Depth stratum 0 contains the lowest topological dimension points,
5278   often "vertices".  If the mesh is "interpolated" (see `DMPlexInterpolate()`), then depth stratum 1 contains the next
5279   higher dimension, e.g., "edges".
5280 
5281 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetHeightStratum()`, `DMPlexGetCellTypeStratum()`, `DMPlexGetDepth()`, `DMPlexGetDepthLabel()`, `DMPlexGetPointDepth()`, `DMPlexSymmetrize()`, `DMPlexInterpolate()`
5282 @*/
5283 PetscErrorCode DMPlexGetDepthStratum(DM dm, PetscInt depth, PetscInt *start, PetscInt *end)
5284 {
5285   DM_Plex *mesh = (DM_Plex *)dm->data;
5286   DMLabel  label;
5287   PetscInt pStart, pEnd;
5288 
5289   PetscFunctionBegin;
5290   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5291   if (start) {
5292     PetscAssertPointer(start, 3);
5293     *start = 0;
5294   }
5295   if (end) {
5296     PetscAssertPointer(end, 4);
5297     *end = 0;
5298   }
5299   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
5300   if (pStart == pEnd) PetscFunctionReturn(PETSC_SUCCESS);
5301   if (depth < 0) {
5302     if (start) *start = pStart;
5303     if (end) *end = pEnd;
5304     PetscFunctionReturn(PETSC_SUCCESS);
5305   }
5306   if (mesh->tr) {
5307     PetscCall(DMPlexTransformGetDepthStratum(mesh->tr, depth, start, end));
5308   } else {
5309     PetscCall(DMPlexGetDepthLabel(dm, &label));
5310     PetscCheck(label, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "No label named depth was found");
5311     PetscCall(DMLabelGetStratumBounds(label, depth, start, end));
5312   }
5313   PetscFunctionReturn(PETSC_SUCCESS);
5314 }
5315 
5316 /*@
5317   DMPlexGetHeightStratum - Get the bounds [`start`, `end`) for all points at a certain height.
5318 
5319   Not Collective
5320 
5321   Input Parameters:
5322 + dm     - The `DMPLEX` object
5323 - height - The requested height
5324 
5325   Output Parameters:
5326 + start - The first point at this `height`
5327 - end   - One beyond the last point at this `height`
5328 
5329   Level: developer
5330 
5331   Notes:
5332   Height indexing is related to topological codimension.  Height stratum 0 contains the highest topological dimension
5333   points, often called "cells" or "elements".  If the mesh is "interpolated" (see `DMPlexInterpolate()`), then height
5334   stratum 1 contains the boundary of these "cells", often called "faces" or "facets".
5335 
5336 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetDepthStratum()`, `DMPlexGetCellTypeStratum()`, `DMPlexGetDepth()`, `DMPlexGetPointHeight()`
5337 @*/
5338 PetscErrorCode DMPlexGetHeightStratum(DM dm, PetscInt height, PetscInt *start, PetscInt *end)
5339 {
5340   DMLabel  label;
5341   PetscInt depth, pStart, pEnd;
5342 
5343   PetscFunctionBegin;
5344   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5345   if (start) {
5346     PetscAssertPointer(start, 3);
5347     *start = 0;
5348   }
5349   if (end) {
5350     PetscAssertPointer(end, 4);
5351     *end = 0;
5352   }
5353   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
5354   if (pStart == pEnd) PetscFunctionReturn(PETSC_SUCCESS);
5355   if (height < 0) {
5356     if (start) *start = pStart;
5357     if (end) *end = pEnd;
5358     PetscFunctionReturn(PETSC_SUCCESS);
5359   }
5360   PetscCall(DMPlexGetDepthLabel(dm, &label));
5361   if (label) PetscCall(DMLabelGetNumValues(label, &depth));
5362   else PetscCall(DMGetDimension(dm, &depth));
5363   PetscCheck(depth >= 0, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Depth not yet computed");
5364   PetscCall(DMPlexGetDepthStratum(dm, depth - 1 - height, start, end));
5365   PetscFunctionReturn(PETSC_SUCCESS);
5366 }
5367 
5368 /*@
5369   DMPlexGetPointDepth - Get the `depth` of a given point
5370 
5371   Not Collective
5372 
5373   Input Parameters:
5374 + dm    - The `DMPLEX` object
5375 - point - The point
5376 
5377   Output Parameter:
5378 . depth - The depth of the `point`
5379 
5380   Level: intermediate
5381 
5382 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellType()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`, `DMPlexGetPointHeight()`
5383 @*/
5384 PetscErrorCode DMPlexGetPointDepth(DM dm, PetscInt point, PetscInt *depth)
5385 {
5386   PetscFunctionBegin;
5387   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5388   PetscAssertPointer(depth, 3);
5389   PetscCall(DMLabelGetValue(dm->depthLabel, point, depth));
5390   PetscFunctionReturn(PETSC_SUCCESS);
5391 }
5392 
5393 /*@
5394   DMPlexGetPointHeight - Get the `height` of a given point
5395 
5396   Not Collective
5397 
5398   Input Parameters:
5399 + dm    - The `DMPLEX` object
5400 - point - The point
5401 
5402   Output Parameter:
5403 . height - The height of the `point`
5404 
5405   Level: intermediate
5406 
5407 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellType()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`, `DMPlexGetPointDepth()`
5408 @*/
5409 PetscErrorCode DMPlexGetPointHeight(DM dm, PetscInt point, PetscInt *height)
5410 {
5411   PetscInt n, pDepth;
5412 
5413   PetscFunctionBegin;
5414   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5415   PetscAssertPointer(height, 3);
5416   PetscCall(DMLabelGetNumValues(dm->depthLabel, &n));
5417   PetscCall(DMLabelGetValue(dm->depthLabel, point, &pDepth));
5418   *height = n - 1 - pDepth; /* DAG depth is n-1 */
5419   PetscFunctionReturn(PETSC_SUCCESS);
5420 }
5421 
5422 /*@
5423   DMPlexGetCellTypeLabel - Get the `DMLabel` recording the polytope type of each cell
5424 
5425   Not Collective
5426 
5427   Input Parameter:
5428 . dm - The `DMPLEX` object
5429 
5430   Output Parameter:
5431 . celltypeLabel - The `DMLabel` recording cell polytope type
5432 
5433   Level: developer
5434 
5435   Note:
5436   This function will trigger automatica computation of cell types. This can be disabled by calling
5437   `DMCreateLabel`(dm, "celltype") beforehand.
5438 
5439 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellType()`, `DMPlexGetDepthLabel()`, `DMCreateLabel()`
5440 @*/
5441 PetscErrorCode DMPlexGetCellTypeLabel(DM dm, DMLabel *celltypeLabel)
5442 {
5443   PetscFunctionBegin;
5444   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5445   PetscAssertPointer(celltypeLabel, 2);
5446   if (!dm->celltypeLabel) PetscCall(DMPlexComputeCellTypes(dm));
5447   *celltypeLabel = dm->celltypeLabel;
5448   PetscFunctionReturn(PETSC_SUCCESS);
5449 }
5450 
5451 /*@
5452   DMPlexGetCellType - Get the polytope type of a given cell
5453 
5454   Not Collective
5455 
5456   Input Parameters:
5457 + dm   - The `DMPLEX` object
5458 - cell - The cell
5459 
5460   Output Parameter:
5461 . celltype - The polytope type of the cell
5462 
5463   Level: intermediate
5464 
5465 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPolytopeType`, `DMPlexGetCellTypeLabel()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`
5466 @*/
5467 PetscErrorCode DMPlexGetCellType(DM dm, PetscInt cell, DMPolytopeType *celltype)
5468 {
5469   DM_Plex *mesh = (DM_Plex *)dm->data;
5470   DMLabel  label;
5471   PetscInt ct;
5472 
5473   PetscFunctionBegin;
5474   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5475   PetscAssertPointer(celltype, 3);
5476   if (mesh->tr) {
5477     PetscCall(DMPlexTransformGetCellType(mesh->tr, cell, celltype));
5478   } else {
5479     PetscInt pStart, pEnd;
5480 
5481     PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, NULL));
5482     if (!mesh->cellTypes) { /* XXX remove? optimize? */
5483       PetscCall(PetscSectionGetChart(mesh->coneSection, NULL, &pEnd));
5484       PetscCall(PetscMalloc1(pEnd - pStart, &mesh->cellTypes));
5485       PetscCall(DMPlexGetCellTypeLabel(dm, &label));
5486       for (PetscInt p = pStart; p < pEnd; p++) {
5487         PetscCall(DMLabelGetValue(label, p, &ct));
5488         mesh->cellTypes[p - pStart].value_as_uint8 = (DMPolytopeType)ct;
5489       }
5490     }
5491     *celltype = (DMPolytopeType)mesh->cellTypes[cell - pStart].value_as_uint8;
5492     if (PetscDefined(USE_DEBUG)) {
5493       PetscCall(DMPlexGetCellTypeLabel(dm, &label));
5494       PetscCall(DMLabelGetValue(label, cell, &ct));
5495       PetscCheck(ct >= 0, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Cell %" PetscInt_FMT " has not been assigned a cell type", cell);
5496       PetscCheck(ct == (PetscInt)*celltype, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Invalid cellType for %" PetscInt_FMT ": %d != %" PetscInt_FMT, cell, (int)*celltype, ct);
5497     }
5498   }
5499   PetscFunctionReturn(PETSC_SUCCESS);
5500 }
5501 
5502 /*@
5503   DMPlexSetCellType - Set the polytope type of a given cell
5504 
5505   Not Collective
5506 
5507   Input Parameters:
5508 + dm       - The `DMPLEX` object
5509 . cell     - The cell
5510 - celltype - The polytope type of the cell
5511 
5512   Level: advanced
5513 
5514   Note:
5515   By default, cell types will be automatically computed using `DMPlexComputeCellTypes()` before this function
5516   is executed. This function will override the computed type. However, if automatic classification will not succeed
5517   and a user wants to manually specify all types, the classification must be disabled by calling
5518   DMCreateLabel(dm, "celltype") before getting or setting any cell types.
5519 
5520 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellTypeLabel()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`, `DMPlexComputeCellTypes()`, `DMCreateLabel()`
5521 @*/
5522 PetscErrorCode DMPlexSetCellType(DM dm, PetscInt cell, DMPolytopeType celltype)
5523 {
5524   DM_Plex *mesh = (DM_Plex *)dm->data;
5525   DMLabel  label;
5526   PetscInt pStart, pEnd;
5527 
5528   PetscFunctionBegin;
5529   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5530   PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd));
5531   PetscCall(DMPlexGetCellTypeLabel(dm, &label));
5532   PetscCall(DMLabelSetValue(label, cell, celltype));
5533   if (!mesh->cellTypes) PetscCall(PetscMalloc1(pEnd - pStart, &mesh->cellTypes));
5534   mesh->cellTypes[cell - pStart].value_as_uint8 = celltype;
5535   PetscFunctionReturn(PETSC_SUCCESS);
5536 }
5537 
5538 PetscErrorCode DMCreateCoordinateDM_Plex(DM dm, DM *cdm)
5539 {
5540   PetscSection section;
5541   PetscInt     maxHeight;
5542   const char  *prefix;
5543 
5544   PetscFunctionBegin;
5545   PetscCall(DMClone(dm, cdm));
5546   PetscCall(PetscObjectGetOptionsPrefix((PetscObject)dm, &prefix));
5547   PetscCall(PetscObjectSetOptionsPrefix((PetscObject)*cdm, prefix));
5548   PetscCall(PetscObjectAppendOptionsPrefix((PetscObject)*cdm, "cdm_"));
5549   PetscCall(DMPlexGetMaxProjectionHeight(dm, &maxHeight));
5550   PetscCall(DMPlexSetMaxProjectionHeight(*cdm, maxHeight));
5551   PetscCall(PetscSectionCreate(PetscObjectComm((PetscObject)dm), &section));
5552   PetscCall(DMSetLocalSection(*cdm, section));
5553   PetscCall(PetscSectionDestroy(&section));
5554 
5555   PetscCall(DMSetNumFields(*cdm, 1));
5556   PetscCall(DMCreateDS(*cdm));
5557   (*cdm)->cloneOpts = PETSC_TRUE;
5558   if (dm->setfromoptionscalled) PetscCall(DMSetFromOptions(*cdm));
5559   PetscFunctionReturn(PETSC_SUCCESS);
5560 }
5561 
5562 PetscErrorCode DMCreateCoordinateField_Plex(DM dm, DMField *field)
5563 {
5564   Vec coordsLocal, cellCoordsLocal;
5565   DM  coordsDM, cellCoordsDM;
5566 
5567   PetscFunctionBegin;
5568   *field = NULL;
5569   PetscCall(DMGetCoordinatesLocal(dm, &coordsLocal));
5570   PetscCall(DMGetCoordinateDM(dm, &coordsDM));
5571   PetscCall(DMGetCellCoordinatesLocal(dm, &cellCoordsLocal));
5572   PetscCall(DMGetCellCoordinateDM(dm, &cellCoordsDM));
5573   if (coordsLocal && coordsDM) {
5574     if (cellCoordsLocal && cellCoordsDM) PetscCall(DMFieldCreateDSWithDG(coordsDM, cellCoordsDM, 0, coordsLocal, cellCoordsLocal, field));
5575     else PetscCall(DMFieldCreateDS(coordsDM, 0, coordsLocal, field));
5576   }
5577   PetscFunctionReturn(PETSC_SUCCESS);
5578 }
5579 
5580 /*@C
5581   DMPlexGetConeSection - Return a section which describes the layout of cone data
5582 
5583   Not Collective
5584 
5585   Input Parameter:
5586 . dm - The `DMPLEX` object
5587 
5588   Output Parameter:
5589 . section - The `PetscSection` object
5590 
5591   Level: developer
5592 
5593 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetSupportSection()`, `DMPlexGetCones()`, `DMPlexGetConeOrientations()`, `PetscSection`
5594 @*/
5595 PetscErrorCode DMPlexGetConeSection(DM dm, PetscSection *section)
5596 {
5597   DM_Plex *mesh = (DM_Plex *)dm->data;
5598 
5599   PetscFunctionBegin;
5600   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5601   if (section) *section = mesh->coneSection;
5602   PetscFunctionReturn(PETSC_SUCCESS);
5603 }
5604 
5605 /*@C
5606   DMPlexGetSupportSection - Return a section which describes the layout of support data
5607 
5608   Not Collective
5609 
5610   Input Parameter:
5611 . dm - The `DMPLEX` object
5612 
5613   Output Parameter:
5614 . section - The `PetscSection` object
5615 
5616   Level: developer
5617 
5618 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSection()`, `PetscSection`
5619 @*/
5620 PetscErrorCode DMPlexGetSupportSection(DM dm, PetscSection *section)
5621 {
5622   DM_Plex *mesh = (DM_Plex *)dm->data;
5623 
5624   PetscFunctionBegin;
5625   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5626   if (section) *section = mesh->supportSection;
5627   PetscFunctionReturn(PETSC_SUCCESS);
5628 }
5629 
5630 /*@C
5631   DMPlexGetCones - Return cone data
5632 
5633   Not Collective
5634 
5635   Input Parameter:
5636 . dm - The `DMPLEX` object
5637 
5638   Output Parameter:
5639 . cones - The cone for each point
5640 
5641   Level: developer
5642 
5643 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSection()`
5644 @*/
5645 PetscErrorCode DMPlexGetCones(DM dm, PetscInt *cones[])
5646 {
5647   DM_Plex *mesh = (DM_Plex *)dm->data;
5648 
5649   PetscFunctionBegin;
5650   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5651   if (cones) *cones = mesh->cones;
5652   PetscFunctionReturn(PETSC_SUCCESS);
5653 }
5654 
5655 /*@C
5656   DMPlexGetConeOrientations - Return cone orientation data
5657 
5658   Not Collective
5659 
5660   Input Parameter:
5661 . dm - The `DMPLEX` object
5662 
5663   Output Parameter:
5664 . coneOrientations - The array of cone orientations for all points
5665 
5666   Level: developer
5667 
5668   Notes:
5669   The `PetscSection` returned by `DMPlexGetConeSection()` partitions coneOrientations into cone orientations of particular points as returned by `DMPlexGetConeOrientation()`.
5670 
5671   The meaning of coneOrientations values is detailed in `DMPlexGetConeOrientation()`.
5672 
5673 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSection()`, `DMPlexGetConeOrientation()`, `PetscSection`
5674 @*/
5675 PetscErrorCode DMPlexGetConeOrientations(DM dm, PetscInt *coneOrientations[])
5676 {
5677   DM_Plex *mesh = (DM_Plex *)dm->data;
5678 
5679   PetscFunctionBegin;
5680   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
5681   if (coneOrientations) *coneOrientations = mesh->coneOrientations;
5682   PetscFunctionReturn(PETSC_SUCCESS);
5683 }
5684 
5685 /******************************** FEM Support **********************************/
5686 
5687 PetscErrorCode DMPlexGetAllCells_Internal(DM plex, IS *cellIS)
5688 {
5689   PetscInt depth;
5690 
5691   PetscFunctionBegin;
5692   PetscCall(DMPlexGetDepth(plex, &depth));
5693   PetscCall(DMGetStratumIS(plex, "dim", depth, cellIS));
5694   if (!*cellIS) PetscCall(DMGetStratumIS(plex, "depth", depth, cellIS));
5695   PetscFunctionReturn(PETSC_SUCCESS);
5696 }
5697 
5698 PetscErrorCode DMPlexGetAllFaces_Internal(DM plex, IS *faceIS)
5699 {
5700   PetscInt depth;
5701 
5702   PetscFunctionBegin;
5703   PetscCall(DMPlexGetDepth(plex, &depth));
5704   PetscCall(DMGetStratumIS(plex, "dim", depth - 1, faceIS));
5705   if (!*faceIS) PetscCall(DMGetStratumIS(plex, "depth", depth - 1, faceIS));
5706   PetscFunctionReturn(PETSC_SUCCESS);
5707 }
5708 
5709 /*
5710  Returns number of components and tensor degree for the field.  For interpolated meshes, line should be a point
5711  representing a line in the section.
5712 */
5713 static PetscErrorCode PetscSectionFieldGetTensorDegree_Private(DM dm, PetscSection section, PetscInt field, PetscInt line, PetscInt *Nc, PetscInt *k, PetscBool *continuous, PetscBool *tensor)
5714 {
5715   PetscObject  obj;
5716   PetscClassId id;
5717   PetscFE      fe = NULL;
5718 
5719   PetscFunctionBeginHot;
5720   PetscCall(PetscSectionGetFieldComponents(section, field, Nc));
5721   PetscCall(DMGetField(dm, field, NULL, &obj));
5722   PetscCall(PetscObjectGetClassId(obj, &id));
5723   if (id == PETSCFE_CLASSID) fe = (PetscFE)obj;
5724 
5725   if (!fe) {
5726     /* Assume the full interpolated mesh is in the chart; lines in particular */
5727     /* An order k SEM disc has k-1 dofs on an edge */
5728     PetscCall(PetscSectionGetFieldDof(section, line, field, k));
5729     *k = *k / *Nc + 1;
5730   } else {
5731     PetscInt       dual_space_size, dim;
5732     PetscDualSpace dsp;
5733 
5734     PetscCall(DMGetDimension(dm, &dim));
5735     PetscCall(PetscFEGetDualSpace(fe, &dsp));
5736     PetscCall(PetscDualSpaceGetDimension(dsp, &dual_space_size));
5737     *k = (PetscInt)PetscCeilReal(PetscPowReal(dual_space_size / *Nc, 1.0 / dim)) - 1;
5738     PetscCall(PetscDualSpaceLagrangeGetContinuity(dsp, continuous));
5739     PetscCall(PetscDualSpaceLagrangeGetTensor(dsp, tensor));
5740   }
5741   PetscFunctionReturn(PETSC_SUCCESS);
5742 }
5743 
5744 static PetscErrorCode GetFieldSize_Private(PetscInt dim, PetscInt k, PetscBool tensor, PetscInt *dof)
5745 {
5746   PetscFunctionBeginHot;
5747   if (tensor) {
5748     *dof = PetscPowInt(k + 1, dim);
5749   } else {
5750     switch (dim) {
5751     case 1:
5752       *dof = k + 1;
5753       break;
5754     case 2:
5755       *dof = ((k + 1) * (k + 2)) / 2;
5756       break;
5757     case 3:
5758       *dof = ((k + 1) * (k + 2) * (k + 3)) / 6;
5759       break;
5760     default:
5761       *dof = 0;
5762     }
5763   }
5764   PetscFunctionReturn(PETSC_SUCCESS);
5765 }
5766 
5767 /*@
5768 
5769   DMPlexSetClosurePermutationTensor - Create a permutation from the default (BFS) point ordering in the closure, to a
5770   lexicographic ordering over the tensor product cell (i.e., line, quad, hex, etc.), and set this permutation in the
5771   section provided (or the section of the `DM`).
5772 
5773   Input Parameters:
5774 + dm      - The `DM`
5775 . point   - Either a cell (highest dim point) or an edge (dim 1 point), or `PETSC_DETERMINE`
5776 - section - The `PetscSection` to reorder, or `NULL` for the default section
5777 
5778   Example:
5779   A typical interpolated single-quad mesh might order points as
5780 .vb
5781   [c0, v1, v2, v3, v4, e5, e6, e7, e8]
5782 
5783   v4 -- e6 -- v3
5784   |           |
5785   e7    c0    e8
5786   |           |
5787   v1 -- e5 -- v2
5788 .ve
5789 
5790   (There is no significance to the ordering described here.)  The default section for a Q3 quad might typically assign
5791   dofs in the order of points, e.g.,
5792 .vb
5793     c0 -> [0,1,2,3]
5794     v1 -> [4]
5795     ...
5796     e5 -> [8, 9]
5797 .ve
5798 
5799   which corresponds to the dofs
5800 .vb
5801     6   10  11  7
5802     13  2   3   15
5803     12  0   1   14
5804     4   8   9   5
5805 .ve
5806 
5807   The closure in BFS ordering works through height strata (cells, edges, vertices) to produce the ordering
5808 .vb
5809   0 1 2 3 8 9 14 15 11 10 13 12 4 5 7 6
5810 .ve
5811 
5812   After calling DMPlexSetClosurePermutationTensor(), the closure will be ordered lexicographically,
5813 .vb
5814    4 8 9 5 12 0 1 14 13 2 3 15 6 10 11 7
5815 .ve
5816 
5817   Level: developer
5818 
5819   Notes:
5820   The point is used to determine the number of dofs/field on an edge. For SEM, this is related to the polynomial
5821   degree of the basis.
5822 
5823   This is required to run with libCEED.
5824 
5825 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMGetLocalSection()`, `PetscSectionSetClosurePermutation()`, `DMSetGlobalSection()`
5826 @*/
5827 PetscErrorCode DMPlexSetClosurePermutationTensor(DM dm, PetscInt point, PetscSection section)
5828 {
5829   DMLabel   label;
5830   PetscInt  dim, depth = -1, eStart = -1, Nf;
5831   PetscBool continuous = PETSC_TRUE, tensor = PETSC_TRUE;
5832 
5833   PetscFunctionBegin;
5834   PetscCall(DMGetDimension(dm, &dim));
5835   if (dim < 1) PetscFunctionReturn(PETSC_SUCCESS);
5836   if (point < 0) {
5837     PetscInt sStart, sEnd;
5838 
5839     PetscCall(DMPlexGetDepthStratum(dm, 1, &sStart, &sEnd));
5840     point = sEnd - sStart ? sStart : point;
5841   }
5842   PetscCall(DMPlexGetDepthLabel(dm, &label));
5843   if (point >= 0) PetscCall(DMLabelGetValue(label, point, &depth));
5844   if (!section) PetscCall(DMGetLocalSection(dm, &section));
5845   if (depth == 1) {
5846     eStart = point;
5847   } else if (depth == dim) {
5848     const PetscInt *cone;
5849 
5850     PetscCall(DMPlexGetCone(dm, point, &cone));
5851     if (dim == 2) eStart = cone[0];
5852     else if (dim == 3) {
5853       const PetscInt *cone2;
5854       PetscCall(DMPlexGetCone(dm, cone[0], &cone2));
5855       eStart = cone2[0];
5856     } else SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Point %" PetscInt_FMT " of depth %" PetscInt_FMT " cannot be used to bootstrap spectral ordering for dim %" PetscInt_FMT, point, depth, dim);
5857   } else PetscCheck(depth < 0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Point %" PetscInt_FMT " of depth %" PetscInt_FMT " cannot be used to bootstrap spectral ordering for dim %" PetscInt_FMT, point, depth, dim);
5858 
5859   PetscCall(PetscSectionGetNumFields(section, &Nf));
5860   for (PetscInt d = 1; d <= dim; d++) {
5861     PetscInt  k, f, Nc, c, i, j, size = 0, offset = 0, foffset = 0;
5862     PetscInt *perm;
5863 
5864     for (f = 0; f < Nf; ++f) {
5865       PetscInt dof;
5866 
5867       PetscCall(PetscSectionFieldGetTensorDegree_Private(dm, section, f, eStart, &Nc, &k, &continuous, &tensor));
5868       PetscCheck(dim == 1 || tensor || !continuous, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Continuous field %" PetscInt_FMT " must have a tensor product discretization", f);
5869       if (!continuous && d < dim) continue;
5870       PetscCall(GetFieldSize_Private(d, k, tensor, &dof));
5871       size += dof * Nc;
5872     }
5873     PetscCall(PetscMalloc1(size, &perm));
5874     for (f = 0; f < Nf; ++f) {
5875       switch (d) {
5876       case 1:
5877         PetscCall(PetscSectionFieldGetTensorDegree_Private(dm, section, f, eStart, &Nc, &k, &continuous, &tensor));
5878         if (!continuous && d < dim) continue;
5879         /*
5880          Original ordering is [ edge of length k-1; vtx0; vtx1 ]
5881          We want              [ vtx0; edge of length k-1; vtx1 ]
5882          */
5883         if (continuous) {
5884           for (c = 0; c < Nc; c++, offset++) perm[offset] = (k - 1) * Nc + c + foffset;
5885           for (i = 0; i < k - 1; i++)
5886             for (c = 0; c < Nc; c++, offset++) perm[offset] = i * Nc + c + foffset;
5887           for (c = 0; c < Nc; c++, offset++) perm[offset] = k * Nc + c + foffset;
5888           foffset = offset;
5889         } else {
5890           PetscInt dof;
5891 
5892           PetscCall(GetFieldSize_Private(d, k, tensor, &dof));
5893           for (i = 0; i < dof * Nc; ++i, ++offset) perm[offset] = i + foffset;
5894           foffset = offset;
5895         }
5896         break;
5897       case 2:
5898         /* The original quad closure is oriented clockwise, {f, e_b, e_r, e_t, e_l, v_lb, v_rb, v_tr, v_tl} */
5899         PetscCall(PetscSectionFieldGetTensorDegree_Private(dm, section, f, eStart, &Nc, &k, &continuous, &tensor));
5900         if (!continuous && d < dim) continue;
5901         /* The SEM order is
5902 
5903          v_lb, {e_b}, v_rb,
5904          e^{(k-1)-i}_l, {f^{i*(k-1)}}, e^i_r,
5905          v_lt, reverse {e_t}, v_rt
5906          */
5907         if (continuous) {
5908           const PetscInt of   = 0;
5909           const PetscInt oeb  = of + PetscSqr(k - 1);
5910           const PetscInt oer  = oeb + (k - 1);
5911           const PetscInt oet  = oer + (k - 1);
5912           const PetscInt oel  = oet + (k - 1);
5913           const PetscInt ovlb = oel + (k - 1);
5914           const PetscInt ovrb = ovlb + 1;
5915           const PetscInt ovrt = ovrb + 1;
5916           const PetscInt ovlt = ovrt + 1;
5917           PetscInt       o;
5918 
5919           /* bottom */
5920           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovlb * Nc + c + foffset;
5921           for (o = oeb; o < oer; ++o)
5922             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
5923           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovrb * Nc + c + foffset;
5924           /* middle */
5925           for (i = 0; i < k - 1; ++i) {
5926             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oel + (k - 2) - i) * Nc + c + foffset;
5927             for (o = of + (k - 1) * i; o < of + (k - 1) * (i + 1); ++o)
5928               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
5929             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oer + i) * Nc + c + foffset;
5930           }
5931           /* top */
5932           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovlt * Nc + c + foffset;
5933           for (o = oel - 1; o >= oet; --o)
5934             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
5935           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovrt * Nc + c + foffset;
5936           foffset = offset;
5937         } else {
5938           PetscInt dof;
5939 
5940           PetscCall(GetFieldSize_Private(d, k, tensor, &dof));
5941           for (i = 0; i < dof * Nc; ++i, ++offset) perm[offset] = i + foffset;
5942           foffset = offset;
5943         }
5944         break;
5945       case 3:
5946         /* The original hex closure is
5947 
5948          {c,
5949          f_b, f_t, f_f, f_b, f_r, f_l,
5950          e_bl, e_bb, e_br, e_bf,  e_tf, e_tr, e_tb, e_tl,  e_rf, e_lf, e_lb, e_rb,
5951          v_blf, v_blb, v_brb, v_brf, v_tlf, v_trf, v_trb, v_tlb}
5952          */
5953         PetscCall(PetscSectionFieldGetTensorDegree_Private(dm, section, f, eStart, &Nc, &k, &continuous, &tensor));
5954         if (!continuous && d < dim) continue;
5955         /* The SEM order is
5956          Bottom Slice
5957          v_blf, {e^{(k-1)-n}_bf}, v_brf,
5958          e^{i}_bl, f^{n*(k-1)+(k-1)-i}_b, e^{(k-1)-i}_br,
5959          v_blb, {e_bb}, v_brb,
5960 
5961          Middle Slice (j)
5962          {e^{(k-1)-j}_lf}, {f^{j*(k-1)+n}_f}, e^j_rf,
5963          f^{i*(k-1)+j}_l, {c^{(j*(k-1) + i)*(k-1)+n}_t}, f^{j*(k-1)+i}_r,
5964          e^j_lb, {f^{j*(k-1)+(k-1)-n}_b}, e^{(k-1)-j}_rb,
5965 
5966          Top Slice
5967          v_tlf, {e_tf}, v_trf,
5968          e^{(k-1)-i}_tl, {f^{i*(k-1)}_t}, e^{i}_tr,
5969          v_tlb, {e^{(k-1)-n}_tb}, v_trb,
5970          */
5971         if (continuous) {
5972           const PetscInt oc    = 0;
5973           const PetscInt ofb   = oc + PetscSqr(k - 1) * (k - 1);
5974           const PetscInt oft   = ofb + PetscSqr(k - 1);
5975           const PetscInt off   = oft + PetscSqr(k - 1);
5976           const PetscInt ofk   = off + PetscSqr(k - 1);
5977           const PetscInt ofr   = ofk + PetscSqr(k - 1);
5978           const PetscInt ofl   = ofr + PetscSqr(k - 1);
5979           const PetscInt oebl  = ofl + PetscSqr(k - 1);
5980           const PetscInt oebb  = oebl + (k - 1);
5981           const PetscInt oebr  = oebb + (k - 1);
5982           const PetscInt oebf  = oebr + (k - 1);
5983           const PetscInt oetf  = oebf + (k - 1);
5984           const PetscInt oetr  = oetf + (k - 1);
5985           const PetscInt oetb  = oetr + (k - 1);
5986           const PetscInt oetl  = oetb + (k - 1);
5987           const PetscInt oerf  = oetl + (k - 1);
5988           const PetscInt oelf  = oerf + (k - 1);
5989           const PetscInt oelb  = oelf + (k - 1);
5990           const PetscInt oerb  = oelb + (k - 1);
5991           const PetscInt ovblf = oerb + (k - 1);
5992           const PetscInt ovblb = ovblf + 1;
5993           const PetscInt ovbrb = ovblb + 1;
5994           const PetscInt ovbrf = ovbrb + 1;
5995           const PetscInt ovtlf = ovbrf + 1;
5996           const PetscInt ovtrf = ovtlf + 1;
5997           const PetscInt ovtrb = ovtrf + 1;
5998           const PetscInt ovtlb = ovtrb + 1;
5999           PetscInt       o, n;
6000 
6001           /* Bottom Slice */
6002           /*   bottom */
6003           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovblf * Nc + c + foffset;
6004           for (o = oetf - 1; o >= oebf; --o)
6005             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6006           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovbrf * Nc + c + foffset;
6007           /*   middle */
6008           for (i = 0; i < k - 1; ++i) {
6009             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oebl + i) * Nc + c + foffset;
6010             for (n = 0; n < k - 1; ++n) {
6011               o = ofb + n * (k - 1) + i;
6012               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6013             }
6014             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oebr + (k - 2) - i) * Nc + c + foffset;
6015           }
6016           /*   top */
6017           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovblb * Nc + c + foffset;
6018           for (o = oebb; o < oebr; ++o)
6019             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6020           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovbrb * Nc + c + foffset;
6021 
6022           /* Middle Slice */
6023           for (j = 0; j < k - 1; ++j) {
6024             /*   bottom */
6025             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oelf + (k - 2) - j) * Nc + c + foffset;
6026             for (o = off + j * (k - 1); o < off + (j + 1) * (k - 1); ++o)
6027               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6028             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oerf + j) * Nc + c + foffset;
6029             /*   middle */
6030             for (i = 0; i < k - 1; ++i) {
6031               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (ofl + i * (k - 1) + j) * Nc + c + foffset;
6032               for (n = 0; n < k - 1; ++n)
6033                 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oc + (j * (k - 1) + i) * (k - 1) + n) * Nc + c + foffset;
6034               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (ofr + j * (k - 1) + i) * Nc + c + foffset;
6035             }
6036             /*   top */
6037             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oelb + j) * Nc + c + foffset;
6038             for (o = ofk + j * (k - 1) + (k - 2); o >= ofk + j * (k - 1); --o)
6039               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6040             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oerb + (k - 2) - j) * Nc + c + foffset;
6041           }
6042 
6043           /* Top Slice */
6044           /*   bottom */
6045           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtlf * Nc + c + foffset;
6046           for (o = oetf; o < oetr; ++o)
6047             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6048           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtrf * Nc + c + foffset;
6049           /*   middle */
6050           for (i = 0; i < k - 1; ++i) {
6051             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oetl + (k - 2) - i) * Nc + c + foffset;
6052             for (n = 0; n < k - 1; ++n)
6053               for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oft + i * (k - 1) + n) * Nc + c + foffset;
6054             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oetr + i) * Nc + c + foffset;
6055           }
6056           /*   top */
6057           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtlb * Nc + c + foffset;
6058           for (o = oetl - 1; o >= oetb; --o)
6059             for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset;
6060           for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtrb * Nc + c + foffset;
6061 
6062           foffset = offset;
6063         } else {
6064           PetscInt dof;
6065 
6066           PetscCall(GetFieldSize_Private(d, k, tensor, &dof));
6067           for (i = 0; i < dof * Nc; ++i, ++offset) perm[offset] = i + foffset;
6068           foffset = offset;
6069         }
6070         break;
6071       default:
6072         SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "No spectral ordering for dimension %" PetscInt_FMT, d);
6073       }
6074     }
6075     PetscCheck(offset == size, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Number of permutation entries %" PetscInt_FMT " != %" PetscInt_FMT, offset, size);
6076     /* Check permutation */
6077     {
6078       PetscInt *check;
6079 
6080       PetscCall(PetscMalloc1(size, &check));
6081       for (i = 0; i < size; ++i) {
6082         check[i] = -1;
6083         PetscCheck(perm[i] >= 0 && perm[i] < size, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Invalid permutation index p[%" PetscInt_FMT "] = %" PetscInt_FMT, i, perm[i]);
6084       }
6085       for (i = 0; i < size; ++i) check[perm[i]] = i;
6086       for (i = 0; i < size; ++i) PetscCheck(check[i] >= 0, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Missing permutation index %" PetscInt_FMT, i);
6087       PetscCall(PetscFree(check));
6088     }
6089     PetscCall(PetscSectionSetClosurePermutation_Internal(section, (PetscObject)dm, d, size, PETSC_OWN_POINTER, perm));
6090     if (d == dim) { // Add permutation for localized (in case this is a coordinate DM)
6091       PetscInt *loc_perm;
6092       PetscCall(PetscMalloc1(size * 2, &loc_perm));
6093       for (PetscInt i = 0; i < size; i++) {
6094         loc_perm[i]        = perm[i];
6095         loc_perm[size + i] = size + perm[i];
6096       }
6097       PetscCall(PetscSectionSetClosurePermutation_Internal(section, (PetscObject)dm, d, size * 2, PETSC_OWN_POINTER, loc_perm));
6098     }
6099   }
6100   PetscFunctionReturn(PETSC_SUCCESS);
6101 }
6102 
6103 PetscErrorCode DMPlexGetPointDualSpaceFEM(DM dm, PetscInt point, PetscInt field, PetscDualSpace *dspace)
6104 {
6105   PetscDS  prob;
6106   PetscInt depth, Nf, h;
6107   DMLabel  label;
6108 
6109   PetscFunctionBeginHot;
6110   PetscCall(DMGetDS(dm, &prob));
6111   Nf      = prob->Nf;
6112   label   = dm->depthLabel;
6113   *dspace = NULL;
6114   if (field < Nf) {
6115     PetscObject disc = prob->disc[field];
6116 
6117     if (disc->classid == PETSCFE_CLASSID) {
6118       PetscDualSpace dsp;
6119 
6120       PetscCall(PetscFEGetDualSpace((PetscFE)disc, &dsp));
6121       PetscCall(DMLabelGetNumValues(label, &depth));
6122       PetscCall(DMLabelGetValue(label, point, &h));
6123       h = depth - 1 - h;
6124       if (h) {
6125         PetscCall(PetscDualSpaceGetHeightSubspace(dsp, h, dspace));
6126       } else {
6127         *dspace = dsp;
6128       }
6129     }
6130   }
6131   PetscFunctionReturn(PETSC_SUCCESS);
6132 }
6133 
6134 static inline PetscErrorCode DMPlexVecGetClosure_Depth1_Static(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt *csize, PetscScalar *values[])
6135 {
6136   PetscScalar       *array;
6137   const PetscScalar *vArray;
6138   const PetscInt    *cone, *coneO;
6139   PetscInt           pStart, pEnd, p, numPoints, size = 0, offset = 0;
6140 
6141   PetscFunctionBeginHot;
6142   PetscCall(PetscSectionGetChart(section, &pStart, &pEnd));
6143   PetscCall(DMPlexGetConeSize(dm, point, &numPoints));
6144   PetscCall(DMPlexGetCone(dm, point, &cone));
6145   PetscCall(DMPlexGetConeOrientation(dm, point, &coneO));
6146   if (!values || !*values) {
6147     if ((point >= pStart) && (point < pEnd)) {
6148       PetscInt dof;
6149 
6150       PetscCall(PetscSectionGetDof(section, point, &dof));
6151       size += dof;
6152     }
6153     for (p = 0; p < numPoints; ++p) {
6154       const PetscInt cp = cone[p];
6155       PetscInt       dof;
6156 
6157       if ((cp < pStart) || (cp >= pEnd)) continue;
6158       PetscCall(PetscSectionGetDof(section, cp, &dof));
6159       size += dof;
6160     }
6161     if (!values) {
6162       if (csize) *csize = size;
6163       PetscFunctionReturn(PETSC_SUCCESS);
6164     }
6165     PetscCall(DMGetWorkArray(dm, size, MPIU_SCALAR, &array));
6166   } else {
6167     array = *values;
6168   }
6169   size = 0;
6170   PetscCall(VecGetArrayRead(v, &vArray));
6171   if ((point >= pStart) && (point < pEnd)) {
6172     PetscInt           dof, off, d;
6173     const PetscScalar *varr;
6174 
6175     PetscCall(PetscSectionGetDof(section, point, &dof));
6176     PetscCall(PetscSectionGetOffset(section, point, &off));
6177     varr = PetscSafePointerPlusOffset(vArray, off);
6178     for (d = 0; d < dof; ++d, ++offset) array[offset] = varr[d];
6179     size += dof;
6180   }
6181   for (p = 0; p < numPoints; ++p) {
6182     const PetscInt     cp = cone[p];
6183     PetscInt           o  = coneO[p];
6184     PetscInt           dof, off, d;
6185     const PetscScalar *varr;
6186 
6187     if ((cp < pStart) || (cp >= pEnd)) continue;
6188     PetscCall(PetscSectionGetDof(section, cp, &dof));
6189     PetscCall(PetscSectionGetOffset(section, cp, &off));
6190     varr = PetscSafePointerPlusOffset(vArray, off);
6191     if (o >= 0) {
6192       for (d = 0; d < dof; ++d, ++offset) array[offset] = varr[d];
6193     } else {
6194       for (d = dof - 1; d >= 0; --d, ++offset) array[offset] = varr[d];
6195     }
6196     size += dof;
6197   }
6198   PetscCall(VecRestoreArrayRead(v, &vArray));
6199   if (!*values) {
6200     if (csize) *csize = size;
6201     *values = array;
6202   } else {
6203     PetscCheck(size <= *csize, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Size of input array %" PetscInt_FMT " < actual size %" PetscInt_FMT, *csize, size);
6204     *csize = size;
6205   }
6206   PetscFunctionReturn(PETSC_SUCCESS);
6207 }
6208 
6209 /* Compress out points not in the section */
6210 static inline PetscErrorCode CompressPoints_Private(PetscSection section, PetscInt *numPoints, PetscInt points[])
6211 {
6212   const PetscInt np = *numPoints;
6213   PetscInt       pStart, pEnd, p, q;
6214 
6215   PetscCall(PetscSectionGetChart(section, &pStart, &pEnd));
6216   for (p = 0, q = 0; p < np; ++p) {
6217     const PetscInt r = points[p * 2];
6218     if ((r >= pStart) && (r < pEnd)) {
6219       points[q * 2]     = r;
6220       points[q * 2 + 1] = points[p * 2 + 1];
6221       ++q;
6222     }
6223   }
6224   *numPoints = q;
6225   return PETSC_SUCCESS;
6226 }
6227 
6228 /* Compressed closure does not apply closure permutation */
6229 PetscErrorCode DMPlexGetCompressedClosure(DM dm, PetscSection section, PetscInt point, PetscInt ornt, PetscInt *numPoints, PetscInt **points, PetscSection *clSec, IS *clPoints, const PetscInt **clp)
6230 {
6231   const PetscInt *cla = NULL;
6232   PetscInt        np, *pts = NULL;
6233 
6234   PetscFunctionBeginHot;
6235   PetscCall(PetscSectionGetClosureIndex(section, (PetscObject)dm, clSec, clPoints));
6236   if (!ornt && *clPoints) {
6237     PetscInt dof, off;
6238 
6239     PetscCall(PetscSectionGetDof(*clSec, point, &dof));
6240     PetscCall(PetscSectionGetOffset(*clSec, point, &off));
6241     PetscCall(ISGetIndices(*clPoints, &cla));
6242     np  = dof / 2;
6243     pts = PetscSafePointerPlusOffset((PetscInt *)cla, off);
6244   } else {
6245     PetscCall(DMPlexGetTransitiveClosure_Internal(dm, point, ornt, PETSC_TRUE, &np, &pts));
6246     PetscCall(CompressPoints_Private(section, &np, pts));
6247   }
6248   *numPoints = np;
6249   *points    = pts;
6250   *clp       = cla;
6251   PetscFunctionReturn(PETSC_SUCCESS);
6252 }
6253 
6254 PetscErrorCode DMPlexRestoreCompressedClosure(DM dm, PetscSection section, PetscInt point, PetscInt *numPoints, PetscInt **points, PetscSection *clSec, IS *clPoints, const PetscInt **clp)
6255 {
6256   PetscFunctionBeginHot;
6257   if (!*clPoints) {
6258     PetscCall(DMPlexRestoreTransitiveClosure(dm, point, PETSC_TRUE, numPoints, points));
6259   } else {
6260     PetscCall(ISRestoreIndices(*clPoints, clp));
6261   }
6262   *numPoints = 0;
6263   *points    = NULL;
6264   *clSec     = NULL;
6265   *clPoints  = NULL;
6266   *clp       = NULL;
6267   PetscFunctionReturn(PETSC_SUCCESS);
6268 }
6269 
6270 static inline PetscErrorCode DMPlexVecGetClosure_Static(DM dm, PetscSection section, PetscInt numPoints, const PetscInt points[], const PetscInt clperm[], const PetscScalar vArray[], PetscInt *size, PetscScalar array[])
6271 {
6272   PetscInt            offset = 0, p;
6273   const PetscInt    **perms  = NULL;
6274   const PetscScalar **flips  = NULL;
6275 
6276   PetscFunctionBeginHot;
6277   *size = 0;
6278   PetscCall(PetscSectionGetPointSyms(section, numPoints, points, &perms, &flips));
6279   for (p = 0; p < numPoints; p++) {
6280     const PetscInt     point = points[2 * p];
6281     const PetscInt    *perm  = perms ? perms[p] : NULL;
6282     const PetscScalar *flip  = flips ? flips[p] : NULL;
6283     PetscInt           dof, off, d;
6284     const PetscScalar *varr;
6285 
6286     PetscCall(PetscSectionGetDof(section, point, &dof));
6287     PetscCall(PetscSectionGetOffset(section, point, &off));
6288     varr = PetscSafePointerPlusOffset(vArray, off);
6289     if (clperm) {
6290       if (perm) {
6291         for (d = 0; d < dof; d++) array[clperm[offset + perm[d]]] = varr[d];
6292       } else {
6293         for (d = 0; d < dof; d++) array[clperm[offset + d]] = varr[d];
6294       }
6295       if (flip) {
6296         for (d = 0; d < dof; d++) array[clperm[offset + d]] *= flip[d];
6297       }
6298     } else {
6299       if (perm) {
6300         for (d = 0; d < dof; d++) array[offset + perm[d]] = varr[d];
6301       } else {
6302         for (d = 0; d < dof; d++) array[offset + d] = varr[d];
6303       }
6304       if (flip) {
6305         for (d = 0; d < dof; d++) array[offset + d] *= flip[d];
6306       }
6307     }
6308     offset += dof;
6309   }
6310   PetscCall(PetscSectionRestorePointSyms(section, numPoints, points, &perms, &flips));
6311   *size = offset;
6312   PetscFunctionReturn(PETSC_SUCCESS);
6313 }
6314 
6315 static inline PetscErrorCode DMPlexVecGetClosure_Fields_Static(DM dm, PetscSection section, PetscInt numPoints, const PetscInt points[], PetscInt numFields, const PetscInt clperm[], const PetscScalar vArray[], PetscInt *size, PetscScalar array[])
6316 {
6317   PetscInt offset = 0, f;
6318 
6319   PetscFunctionBeginHot;
6320   *size = 0;
6321   for (f = 0; f < numFields; ++f) {
6322     PetscInt            p;
6323     const PetscInt    **perms = NULL;
6324     const PetscScalar **flips = NULL;
6325 
6326     PetscCall(PetscSectionGetFieldPointSyms(section, f, numPoints, points, &perms, &flips));
6327     for (p = 0; p < numPoints; p++) {
6328       const PetscInt     point = points[2 * p];
6329       PetscInt           fdof, foff, b;
6330       const PetscScalar *varr;
6331       const PetscInt    *perm = perms ? perms[p] : NULL;
6332       const PetscScalar *flip = flips ? flips[p] : NULL;
6333 
6334       PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof));
6335       PetscCall(PetscSectionGetFieldOffset(section, point, f, &foff));
6336       varr = &vArray[foff];
6337       if (clperm) {
6338         if (perm) {
6339           for (b = 0; b < fdof; b++) array[clperm[offset + perm[b]]] = varr[b];
6340         } else {
6341           for (b = 0; b < fdof; b++) array[clperm[offset + b]] = varr[b];
6342         }
6343         if (flip) {
6344           for (b = 0; b < fdof; b++) array[clperm[offset + b]] *= flip[b];
6345         }
6346       } else {
6347         if (perm) {
6348           for (b = 0; b < fdof; b++) array[offset + perm[b]] = varr[b];
6349         } else {
6350           for (b = 0; b < fdof; b++) array[offset + b] = varr[b];
6351         }
6352         if (flip) {
6353           for (b = 0; b < fdof; b++) array[offset + b] *= flip[b];
6354         }
6355       }
6356       offset += fdof;
6357     }
6358     PetscCall(PetscSectionRestoreFieldPointSyms(section, f, numPoints, points, &perms, &flips));
6359   }
6360   *size = offset;
6361   PetscFunctionReturn(PETSC_SUCCESS);
6362 }
6363 
6364 PetscErrorCode DMPlexVecGetOrientedClosure_Internal(DM dm, PetscSection section, PetscBool useClPerm, Vec v, PetscInt point, PetscInt ornt, PetscInt *csize, PetscScalar *values[])
6365 {
6366   PetscSection    clSection;
6367   IS              clPoints;
6368   PetscInt       *points = NULL;
6369   const PetscInt *clp, *perm = NULL;
6370   PetscInt        depth, numFields, numPoints, asize;
6371 
6372   PetscFunctionBeginHot;
6373   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
6374   if (!section) PetscCall(DMGetLocalSection(dm, &section));
6375   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
6376   PetscValidHeaderSpecific(v, VEC_CLASSID, 4);
6377   PetscCall(DMPlexGetDepth(dm, &depth));
6378   PetscCall(PetscSectionGetNumFields(section, &numFields));
6379   if (depth == 1 && numFields < 2) {
6380     PetscCall(DMPlexVecGetClosure_Depth1_Static(dm, section, v, point, csize, values));
6381     PetscFunctionReturn(PETSC_SUCCESS);
6382   }
6383   /* Get points */
6384   PetscCall(DMPlexGetCompressedClosure(dm, section, point, ornt, &numPoints, &points, &clSection, &clPoints, &clp));
6385   /* Get sizes */
6386   asize = 0;
6387   for (PetscInt p = 0; p < numPoints * 2; p += 2) {
6388     PetscInt dof;
6389     PetscCall(PetscSectionGetDof(section, points[p], &dof));
6390     asize += dof;
6391   }
6392   if (values) {
6393     const PetscScalar *vArray;
6394     PetscInt           size;
6395 
6396     if (*values) {
6397       PetscCheck(*csize >= asize, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Provided array size %" PetscInt_FMT " not sufficient to hold closure size %" PetscInt_FMT, *csize, asize);
6398     } else PetscCall(DMGetWorkArray(dm, asize, MPIU_SCALAR, values));
6399     if (useClPerm) PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, asize, &perm));
6400     PetscCall(VecGetArrayRead(v, &vArray));
6401     /* Get values */
6402     if (numFields > 0) PetscCall(DMPlexVecGetClosure_Fields_Static(dm, section, numPoints, points, numFields, perm, vArray, &size, *values));
6403     else PetscCall(DMPlexVecGetClosure_Static(dm, section, numPoints, points, perm, vArray, &size, *values));
6404     PetscCheck(asize == size, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Section size %" PetscInt_FMT " does not match Vec closure size %" PetscInt_FMT, asize, size);
6405     /* Cleanup array */
6406     PetscCall(VecRestoreArrayRead(v, &vArray));
6407   }
6408   if (csize) *csize = asize;
6409   /* Cleanup points */
6410   PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp));
6411   PetscFunctionReturn(PETSC_SUCCESS);
6412 }
6413 
6414 /*@C
6415   DMPlexVecGetClosure - Get an array of the values on the closure of 'point'
6416 
6417   Not collective
6418 
6419   Input Parameters:
6420 + dm      - The `DM`
6421 . section - The section describing the layout in `v`, or `NULL` to use the default section
6422 . v       - The local vector
6423 - point   - The point in the `DM`
6424 
6425   Input/Output Parameters:
6426 + csize  - The size of the input values array, or `NULL`; on output the number of values in the closure
6427 - values - An array to use for the values, or `NULL` to have it allocated automatically;
6428            if the user provided `NULL`, it is a borrowed array and should not be freed
6429 
6430   Level: intermediate
6431 
6432   Notes:
6433   `DMPlexVecGetClosure()`/`DMPlexVecRestoreClosure()` only allocates the values array if it set to `NULL` in the
6434   calling function. This is because `DMPlexVecGetClosure()` is typically called in the inner loop of a `Vec` or `Mat`
6435   assembly function, and a user may already have allocated storage for this operation.
6436 
6437   A typical use could be
6438 .vb
6439    values = NULL;
6440    PetscCall(DMPlexVecGetClosure(dm, NULL, v, p, &clSize, &values));
6441    for (cl = 0; cl < clSize; ++cl) {
6442      <Compute on closure>
6443    }
6444    PetscCall(DMPlexVecRestoreClosure(dm, NULL, v, p, &clSize, &values));
6445 .ve
6446   or
6447 .vb
6448    PetscMalloc1(clMaxSize, &values);
6449    for (p = pStart; p < pEnd; ++p) {
6450      clSize = clMaxSize;
6451      PetscCall(DMPlexVecGetClosure(dm, NULL, v, p, &clSize, &values));
6452      for (cl = 0; cl < clSize; ++cl) {
6453        <Compute on closure>
6454      }
6455    }
6456    PetscFree(values);
6457 .ve
6458 
6459   Fortran Notes:
6460   The `csize` argument is not present in the Fortran binding since it is internal to the array.
6461 
6462 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexVecRestoreClosure()`, `DMPlexVecSetClosure()`, `DMPlexMatSetClosure()`
6463 @*/
6464 PetscErrorCode DMPlexVecGetClosure(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt *csize, PetscScalar *values[])
6465 {
6466   PetscFunctionBeginHot;
6467   PetscCall(DMPlexVecGetOrientedClosure_Internal(dm, section, PETSC_TRUE, v, point, 0, csize, values));
6468   PetscFunctionReturn(PETSC_SUCCESS);
6469 }
6470 
6471 PetscErrorCode DMPlexVecGetClosureAtDepth_Internal(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt depth, PetscInt *csize, PetscScalar *values[])
6472 {
6473   DMLabel            depthLabel;
6474   PetscSection       clSection;
6475   IS                 clPoints;
6476   PetscScalar       *array;
6477   const PetscScalar *vArray;
6478   PetscInt          *points = NULL;
6479   const PetscInt    *clp, *perm = NULL;
6480   PetscInt           mdepth, numFields, numPoints, Np = 0, p, clsize, size;
6481 
6482   PetscFunctionBeginHot;
6483   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
6484   if (!section) PetscCall(DMGetLocalSection(dm, &section));
6485   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
6486   PetscValidHeaderSpecific(v, VEC_CLASSID, 3);
6487   PetscCall(DMPlexGetDepth(dm, &mdepth));
6488   PetscCall(DMPlexGetDepthLabel(dm, &depthLabel));
6489   PetscCall(PetscSectionGetNumFields(section, &numFields));
6490   if (mdepth == 1 && numFields < 2) {
6491     PetscCall(DMPlexVecGetClosure_Depth1_Static(dm, section, v, point, csize, values));
6492     PetscFunctionReturn(PETSC_SUCCESS);
6493   }
6494   /* Get points */
6495   PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &numPoints, &points, &clSection, &clPoints, &clp));
6496   for (clsize = 0, p = 0; p < Np; p++) {
6497     PetscInt dof;
6498     PetscCall(PetscSectionGetDof(section, points[2 * p], &dof));
6499     clsize += dof;
6500   }
6501   PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, clsize, &perm));
6502   /* Filter points */
6503   for (p = 0; p < numPoints * 2; p += 2) {
6504     PetscInt dep;
6505 
6506     PetscCall(DMLabelGetValue(depthLabel, points[p], &dep));
6507     if (dep != depth) continue;
6508     points[Np * 2 + 0] = points[p];
6509     points[Np * 2 + 1] = points[p + 1];
6510     ++Np;
6511   }
6512   /* Get array */
6513   if (!values || !*values) {
6514     PetscInt asize = 0, dof;
6515 
6516     for (p = 0; p < Np * 2; p += 2) {
6517       PetscCall(PetscSectionGetDof(section, points[p], &dof));
6518       asize += dof;
6519     }
6520     if (!values) {
6521       PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp));
6522       if (csize) *csize = asize;
6523       PetscFunctionReturn(PETSC_SUCCESS);
6524     }
6525     PetscCall(DMGetWorkArray(dm, asize, MPIU_SCALAR, &array));
6526   } else {
6527     array = *values;
6528   }
6529   PetscCall(VecGetArrayRead(v, &vArray));
6530   /* Get values */
6531   if (numFields > 0) PetscCall(DMPlexVecGetClosure_Fields_Static(dm, section, Np, points, numFields, perm, vArray, &size, array));
6532   else PetscCall(DMPlexVecGetClosure_Static(dm, section, Np, points, perm, vArray, &size, array));
6533   /* Cleanup points */
6534   PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp));
6535   /* Cleanup array */
6536   PetscCall(VecRestoreArrayRead(v, &vArray));
6537   if (!*values) {
6538     if (csize) *csize = size;
6539     *values = array;
6540   } else {
6541     PetscCheck(size <= *csize, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Size of input array %" PetscInt_FMT " < actual size %" PetscInt_FMT, *csize, size);
6542     *csize = size;
6543   }
6544   PetscFunctionReturn(PETSC_SUCCESS);
6545 }
6546 
6547 /*@C
6548   DMPlexVecRestoreClosure - Restore the array of the values on the closure of 'point'
6549 
6550   Not collective
6551 
6552   Input Parameters:
6553 + dm      - The `DM`
6554 . section - The section describing the layout in `v`, or `NULL` to use the default section
6555 . v       - The local vector
6556 . point   - The point in the `DM`
6557 . csize   - The number of values in the closure, or `NULL`
6558 - values  - The array of values, which is a borrowed array and should not be freed
6559 
6560   Level: intermediate
6561 
6562   Note:
6563   The array values are discarded and not copied back into `v`. In order to copy values back to `v`, use `DMPlexVecSetClosure()`
6564 
6565   Fortran Notes:
6566   The `csize` argument is not present in the Fortran binding since it is internal to the array.
6567 
6568 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexVecGetClosure()`, `DMPlexVecSetClosure()`, `DMPlexMatSetClosure()`
6569 @*/
6570 PetscErrorCode DMPlexVecRestoreClosure(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt *csize, PetscScalar *values[])
6571 {
6572   PetscInt size = 0;
6573 
6574   PetscFunctionBegin;
6575   /* Should work without recalculating size */
6576   PetscCall(DMRestoreWorkArray(dm, size, MPIU_SCALAR, (void *)values));
6577   *values = NULL;
6578   PetscFunctionReturn(PETSC_SUCCESS);
6579 }
6580 
6581 static inline void add(PetscScalar *x, PetscScalar y)
6582 {
6583   *x += y;
6584 }
6585 static inline void insert(PetscScalar *x, PetscScalar y)
6586 {
6587   *x = y;
6588 }
6589 
6590 static inline PetscErrorCode updatePoint_private(PetscSection section, PetscInt point, PetscInt dof, void (*fuse)(PetscScalar *, PetscScalar), PetscBool setBC, const PetscInt perm[], const PetscScalar flip[], const PetscInt clperm[], const PetscScalar values[], PetscInt offset, PetscScalar array[])
6591 {
6592   PetscInt        cdof;  /* The number of constraints on this point */
6593   const PetscInt *cdofs; /* The indices of the constrained dofs on this point */
6594   PetscScalar    *a;
6595   PetscInt        off, cind = 0, k;
6596 
6597   PetscFunctionBegin;
6598   PetscCall(PetscSectionGetConstraintDof(section, point, &cdof));
6599   PetscCall(PetscSectionGetOffset(section, point, &off));
6600   a = &array[off];
6601   if (!cdof || setBC) {
6602     if (clperm) {
6603       if (perm) {
6604         for (k = 0; k < dof; ++k) fuse(&a[k], values[clperm[offset + perm[k]]] * (flip ? flip[perm[k]] : 1.));
6605       } else {
6606         for (k = 0; k < dof; ++k) fuse(&a[k], values[clperm[offset + k]] * (flip ? flip[k] : 1.));
6607       }
6608     } else {
6609       if (perm) {
6610         for (k = 0; k < dof; ++k) fuse(&a[k], values[offset + perm[k]] * (flip ? flip[perm[k]] : 1.));
6611       } else {
6612         for (k = 0; k < dof; ++k) fuse(&a[k], values[offset + k] * (flip ? flip[k] : 1.));
6613       }
6614     }
6615   } else {
6616     PetscCall(PetscSectionGetConstraintIndices(section, point, &cdofs));
6617     if (clperm) {
6618       if (perm) {
6619         for (k = 0; k < dof; ++k) {
6620           if ((cind < cdof) && (k == cdofs[cind])) {
6621             ++cind;
6622             continue;
6623           }
6624           fuse(&a[k], values[clperm[offset + perm[k]]] * (flip ? flip[perm[k]] : 1.));
6625         }
6626       } else {
6627         for (k = 0; k < dof; ++k) {
6628           if ((cind < cdof) && (k == cdofs[cind])) {
6629             ++cind;
6630             continue;
6631           }
6632           fuse(&a[k], values[clperm[offset + k]] * (flip ? flip[k] : 1.));
6633         }
6634       }
6635     } else {
6636       if (perm) {
6637         for (k = 0; k < dof; ++k) {
6638           if ((cind < cdof) && (k == cdofs[cind])) {
6639             ++cind;
6640             continue;
6641           }
6642           fuse(&a[k], values[offset + perm[k]] * (flip ? flip[perm[k]] : 1.));
6643         }
6644       } else {
6645         for (k = 0; k < dof; ++k) {
6646           if ((cind < cdof) && (k == cdofs[cind])) {
6647             ++cind;
6648             continue;
6649           }
6650           fuse(&a[k], values[offset + k] * (flip ? flip[k] : 1.));
6651         }
6652       }
6653     }
6654   }
6655   PetscFunctionReturn(PETSC_SUCCESS);
6656 }
6657 
6658 static inline PetscErrorCode updatePointBC_private(PetscSection section, PetscInt point, PetscInt dof, void (*fuse)(PetscScalar *, PetscScalar), const PetscInt perm[], const PetscScalar flip[], const PetscInt clperm[], const PetscScalar values[], PetscInt offset, PetscScalar array[])
6659 {
6660   PetscInt        cdof;  /* The number of constraints on this point */
6661   const PetscInt *cdofs; /* The indices of the constrained dofs on this point */
6662   PetscScalar    *a;
6663   PetscInt        off, cind = 0, k;
6664 
6665   PetscFunctionBegin;
6666   PetscCall(PetscSectionGetConstraintDof(section, point, &cdof));
6667   PetscCall(PetscSectionGetOffset(section, point, &off));
6668   a = &array[off];
6669   if (cdof) {
6670     PetscCall(PetscSectionGetConstraintIndices(section, point, &cdofs));
6671     if (clperm) {
6672       if (perm) {
6673         for (k = 0; k < dof; ++k) {
6674           if ((cind < cdof) && (k == cdofs[cind])) {
6675             fuse(&a[k], values[clperm[offset + perm[k]]] * (flip ? flip[perm[k]] : 1.));
6676             cind++;
6677           }
6678         }
6679       } else {
6680         for (k = 0; k < dof; ++k) {
6681           if ((cind < cdof) && (k == cdofs[cind])) {
6682             fuse(&a[k], values[clperm[offset + k]] * (flip ? flip[k] : 1.));
6683             cind++;
6684           }
6685         }
6686       }
6687     } else {
6688       if (perm) {
6689         for (k = 0; k < dof; ++k) {
6690           if ((cind < cdof) && (k == cdofs[cind])) {
6691             fuse(&a[k], values[offset + perm[k]] * (flip ? flip[perm[k]] : 1.));
6692             cind++;
6693           }
6694         }
6695       } else {
6696         for (k = 0; k < dof; ++k) {
6697           if ((cind < cdof) && (k == cdofs[cind])) {
6698             fuse(&a[k], values[offset + k] * (flip ? flip[k] : 1.));
6699             cind++;
6700           }
6701         }
6702       }
6703     }
6704   }
6705   PetscFunctionReturn(PETSC_SUCCESS);
6706 }
6707 
6708 static inline PetscErrorCode updatePointFields_private(PetscSection section, PetscInt point, const PetscInt *perm, const PetscScalar *flip, PetscInt f, void (*fuse)(PetscScalar *, PetscScalar), PetscBool setBC, const PetscInt clperm[], const PetscScalar values[], PetscInt *offset, PetscScalar array[])
6709 {
6710   PetscScalar    *a;
6711   PetscInt        fdof, foff, fcdof, foffset = *offset;
6712   const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */
6713   PetscInt        cind = 0, b;
6714 
6715   PetscFunctionBegin;
6716   PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof));
6717   PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &fcdof));
6718   PetscCall(PetscSectionGetFieldOffset(section, point, f, &foff));
6719   a = &array[foff];
6720   if (!fcdof || setBC) {
6721     if (clperm) {
6722       if (perm) {
6723         for (b = 0; b < fdof; b++) fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.));
6724       } else {
6725         for (b = 0; b < fdof; b++) fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.));
6726       }
6727     } else {
6728       if (perm) {
6729         for (b = 0; b < fdof; b++) fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.));
6730       } else {
6731         for (b = 0; b < fdof; b++) fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.));
6732       }
6733     }
6734   } else {
6735     PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs));
6736     if (clperm) {
6737       if (perm) {
6738         for (b = 0; b < fdof; b++) {
6739           if ((cind < fcdof) && (b == fcdofs[cind])) {
6740             ++cind;
6741             continue;
6742           }
6743           fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.));
6744         }
6745       } else {
6746         for (b = 0; b < fdof; b++) {
6747           if ((cind < fcdof) && (b == fcdofs[cind])) {
6748             ++cind;
6749             continue;
6750           }
6751           fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.));
6752         }
6753       }
6754     } else {
6755       if (perm) {
6756         for (b = 0; b < fdof; b++) {
6757           if ((cind < fcdof) && (b == fcdofs[cind])) {
6758             ++cind;
6759             continue;
6760           }
6761           fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.));
6762         }
6763       } else {
6764         for (b = 0; b < fdof; b++) {
6765           if ((cind < fcdof) && (b == fcdofs[cind])) {
6766             ++cind;
6767             continue;
6768           }
6769           fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.));
6770         }
6771       }
6772     }
6773   }
6774   *offset += fdof;
6775   PetscFunctionReturn(PETSC_SUCCESS);
6776 }
6777 
6778 static inline PetscErrorCode updatePointFieldsBC_private(PetscSection section, PetscInt point, const PetscInt perm[], const PetscScalar flip[], PetscInt f, PetscInt Ncc, const PetscInt comps[], void (*fuse)(PetscScalar *, PetscScalar), const PetscInt clperm[], const PetscScalar values[], PetscInt *offset, PetscScalar array[])
6779 {
6780   PetscScalar    *a;
6781   PetscInt        fdof, foff, fcdof, foffset = *offset;
6782   const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */
6783   PetscInt        Nc, cind = 0, ncind = 0, b;
6784   PetscBool       ncSet, fcSet;
6785 
6786   PetscFunctionBegin;
6787   PetscCall(PetscSectionGetFieldComponents(section, f, &Nc));
6788   PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof));
6789   PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &fcdof));
6790   PetscCall(PetscSectionGetFieldOffset(section, point, f, &foff));
6791   a = &array[foff];
6792   if (fcdof) {
6793     /* We just override fcdof and fcdofs with Ncc and comps */
6794     PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs));
6795     if (clperm) {
6796       if (perm) {
6797         if (comps) {
6798           for (b = 0; b < fdof; b++) {
6799             ncSet = fcSet = PETSC_FALSE;
6800             if (b % Nc == comps[ncind]) {
6801               ncind = (ncind + 1) % Ncc;
6802               ncSet = PETSC_TRUE;
6803             }
6804             if ((cind < fcdof) && (b == fcdofs[cind])) {
6805               ++cind;
6806               fcSet = PETSC_TRUE;
6807             }
6808             if (ncSet && fcSet) fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.));
6809           }
6810         } else {
6811           for (b = 0; b < fdof; b++) {
6812             if ((cind < fcdof) && (b == fcdofs[cind])) {
6813               fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.));
6814               ++cind;
6815             }
6816           }
6817         }
6818       } else {
6819         if (comps) {
6820           for (b = 0; b < fdof; b++) {
6821             ncSet = fcSet = PETSC_FALSE;
6822             if (b % Nc == comps[ncind]) {
6823               ncind = (ncind + 1) % Ncc;
6824               ncSet = PETSC_TRUE;
6825             }
6826             if ((cind < fcdof) && (b == fcdofs[cind])) {
6827               ++cind;
6828               fcSet = PETSC_TRUE;
6829             }
6830             if (ncSet && fcSet) fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.));
6831           }
6832         } else {
6833           for (b = 0; b < fdof; b++) {
6834             if ((cind < fcdof) && (b == fcdofs[cind])) {
6835               fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.));
6836               ++cind;
6837             }
6838           }
6839         }
6840       }
6841     } else {
6842       if (perm) {
6843         if (comps) {
6844           for (b = 0; b < fdof; b++) {
6845             ncSet = fcSet = PETSC_FALSE;
6846             if (b % Nc == comps[ncind]) {
6847               ncind = (ncind + 1) % Ncc;
6848               ncSet = PETSC_TRUE;
6849             }
6850             if ((cind < fcdof) && (b == fcdofs[cind])) {
6851               ++cind;
6852               fcSet = PETSC_TRUE;
6853             }
6854             if (ncSet && fcSet) fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.));
6855           }
6856         } else {
6857           for (b = 0; b < fdof; b++) {
6858             if ((cind < fcdof) && (b == fcdofs[cind])) {
6859               fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.));
6860               ++cind;
6861             }
6862           }
6863         }
6864       } else {
6865         if (comps) {
6866           for (b = 0; b < fdof; b++) {
6867             ncSet = fcSet = PETSC_FALSE;
6868             if (b % Nc == comps[ncind]) {
6869               ncind = (ncind + 1) % Ncc;
6870               ncSet = PETSC_TRUE;
6871             }
6872             if ((cind < fcdof) && (b == fcdofs[cind])) {
6873               ++cind;
6874               fcSet = PETSC_TRUE;
6875             }
6876             if (ncSet && fcSet) fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.));
6877           }
6878         } else {
6879           for (b = 0; b < fdof; b++) {
6880             if ((cind < fcdof) && (b == fcdofs[cind])) {
6881               fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.));
6882               ++cind;
6883             }
6884           }
6885         }
6886       }
6887     }
6888   }
6889   *offset += fdof;
6890   PetscFunctionReturn(PETSC_SUCCESS);
6891 }
6892 
6893 static inline PetscErrorCode DMPlexVecSetClosure_Depth1_Static(DM dm, PetscSection section, Vec v, PetscInt point, const PetscScalar values[], InsertMode mode)
6894 {
6895   PetscScalar    *array;
6896   const PetscInt *cone, *coneO;
6897   PetscInt        pStart, pEnd, p, numPoints, off, dof;
6898 
6899   PetscFunctionBeginHot;
6900   PetscCall(PetscSectionGetChart(section, &pStart, &pEnd));
6901   PetscCall(DMPlexGetConeSize(dm, point, &numPoints));
6902   PetscCall(DMPlexGetCone(dm, point, &cone));
6903   PetscCall(DMPlexGetConeOrientation(dm, point, &coneO));
6904   PetscCall(VecGetArray(v, &array));
6905   for (p = 0, off = 0; p <= numPoints; ++p, off += dof) {
6906     const PetscInt cp = !p ? point : cone[p - 1];
6907     const PetscInt o  = !p ? 0 : coneO[p - 1];
6908 
6909     if ((cp < pStart) || (cp >= pEnd)) {
6910       dof = 0;
6911       continue;
6912     }
6913     PetscCall(PetscSectionGetDof(section, cp, &dof));
6914     /* ADD_VALUES */
6915     {
6916       const PetscInt *cdofs; /* The indices of the constrained dofs on this point */
6917       PetscScalar    *a;
6918       PetscInt        cdof, coff, cind = 0, k;
6919 
6920       PetscCall(PetscSectionGetConstraintDof(section, cp, &cdof));
6921       PetscCall(PetscSectionGetOffset(section, cp, &coff));
6922       a = &array[coff];
6923       if (!cdof) {
6924         if (o >= 0) {
6925           for (k = 0; k < dof; ++k) a[k] += values[off + k];
6926         } else {
6927           for (k = 0; k < dof; ++k) a[k] += values[off + dof - k - 1];
6928         }
6929       } else {
6930         PetscCall(PetscSectionGetConstraintIndices(section, cp, &cdofs));
6931         if (o >= 0) {
6932           for (k = 0; k < dof; ++k) {
6933             if ((cind < cdof) && (k == cdofs[cind])) {
6934               ++cind;
6935               continue;
6936             }
6937             a[k] += values[off + k];
6938           }
6939         } else {
6940           for (k = 0; k < dof; ++k) {
6941             if ((cind < cdof) && (k == cdofs[cind])) {
6942               ++cind;
6943               continue;
6944             }
6945             a[k] += values[off + dof - k - 1];
6946           }
6947         }
6948       }
6949     }
6950   }
6951   PetscCall(VecRestoreArray(v, &array));
6952   PetscFunctionReturn(PETSC_SUCCESS);
6953 }
6954 
6955 /*@C
6956   DMPlexVecSetClosure - Set an array of the values on the closure of `point`
6957 
6958   Not collective
6959 
6960   Input Parameters:
6961 + dm      - The `DM`
6962 . section - The section describing the layout in `v`, or `NULL` to use the default section
6963 . v       - The local vector
6964 . point   - The point in the `DM`
6965 . values  - The array of values
6966 - mode    - The insert mode. One of `INSERT_ALL_VALUES`, `ADD_ALL_VALUES`, `INSERT_VALUES`, `ADD_VALUES`, `INSERT_BC_VALUES`, and `ADD_BC_VALUES`,
6967          where `INSERT_ALL_VALUES` and `ADD_ALL_VALUES` also overwrite boundary conditions.
6968 
6969   Level: intermediate
6970 
6971 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexVecGetClosure()`, `DMPlexMatSetClosure()`
6972 @*/
6973 PetscErrorCode DMPlexVecSetClosure(DM dm, PetscSection section, Vec v, PetscInt point, const PetscScalar values[], InsertMode mode)
6974 {
6975   PetscSection    clSection;
6976   IS              clPoints;
6977   PetscScalar    *array;
6978   PetscInt       *points = NULL;
6979   const PetscInt *clp, *clperm = NULL;
6980   PetscInt        depth, numFields, numPoints, p, clsize;
6981 
6982   PetscFunctionBeginHot;
6983   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
6984   if (!section) PetscCall(DMGetLocalSection(dm, &section));
6985   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
6986   PetscValidHeaderSpecific(v, VEC_CLASSID, 3);
6987   PetscCall(DMPlexGetDepth(dm, &depth));
6988   PetscCall(PetscSectionGetNumFields(section, &numFields));
6989   if (depth == 1 && numFields < 2 && mode == ADD_VALUES) {
6990     PetscCall(DMPlexVecSetClosure_Depth1_Static(dm, section, v, point, values, mode));
6991     PetscFunctionReturn(PETSC_SUCCESS);
6992   }
6993   /* Get points */
6994   PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &numPoints, &points, &clSection, &clPoints, &clp));
6995   for (clsize = 0, p = 0; p < numPoints; p++) {
6996     PetscInt dof;
6997     PetscCall(PetscSectionGetDof(section, points[2 * p], &dof));
6998     clsize += dof;
6999   }
7000   PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, clsize, &clperm));
7001   /* Get array */
7002   PetscCall(VecGetArray(v, &array));
7003   /* Get values */
7004   if (numFields > 0) {
7005     PetscInt offset = 0, f;
7006     for (f = 0; f < numFields; ++f) {
7007       const PetscInt    **perms = NULL;
7008       const PetscScalar **flips = NULL;
7009 
7010       PetscCall(PetscSectionGetFieldPointSyms(section, f, numPoints, points, &perms, &flips));
7011       switch (mode) {
7012       case INSERT_VALUES:
7013         for (p = 0; p < numPoints; p++) {
7014           const PetscInt     point = points[2 * p];
7015           const PetscInt    *perm  = perms ? perms[p] : NULL;
7016           const PetscScalar *flip  = flips ? flips[p] : NULL;
7017           PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_FALSE, clperm, values, &offset, array));
7018         }
7019         break;
7020       case INSERT_ALL_VALUES:
7021         for (p = 0; p < numPoints; p++) {
7022           const PetscInt     point = points[2 * p];
7023           const PetscInt    *perm  = perms ? perms[p] : NULL;
7024           const PetscScalar *flip  = flips ? flips[p] : NULL;
7025           PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_TRUE, clperm, values, &offset, array));
7026         }
7027         break;
7028       case INSERT_BC_VALUES:
7029         for (p = 0; p < numPoints; p++) {
7030           const PetscInt     point = points[2 * p];
7031           const PetscInt    *perm  = perms ? perms[p] : NULL;
7032           const PetscScalar *flip  = flips ? flips[p] : NULL;
7033           PetscCall(updatePointFieldsBC_private(section, point, perm, flip, f, -1, NULL, insert, clperm, values, &offset, array));
7034         }
7035         break;
7036       case ADD_VALUES:
7037         for (p = 0; p < numPoints; p++) {
7038           const PetscInt     point = points[2 * p];
7039           const PetscInt    *perm  = perms ? perms[p] : NULL;
7040           const PetscScalar *flip  = flips ? flips[p] : NULL;
7041           PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_FALSE, clperm, values, &offset, array));
7042         }
7043         break;
7044       case ADD_ALL_VALUES:
7045         for (p = 0; p < numPoints; p++) {
7046           const PetscInt     point = points[2 * p];
7047           const PetscInt    *perm  = perms ? perms[p] : NULL;
7048           const PetscScalar *flip  = flips ? flips[p] : NULL;
7049           PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_TRUE, clperm, values, &offset, array));
7050         }
7051         break;
7052       case ADD_BC_VALUES:
7053         for (p = 0; p < numPoints; p++) {
7054           const PetscInt     point = points[2 * p];
7055           const PetscInt    *perm  = perms ? perms[p] : NULL;
7056           const PetscScalar *flip  = flips ? flips[p] : NULL;
7057           PetscCall(updatePointFieldsBC_private(section, point, perm, flip, f, -1, NULL, add, clperm, values, &offset, array));
7058         }
7059         break;
7060       default:
7061         SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Invalid insert mode %d", mode);
7062       }
7063       PetscCall(PetscSectionRestoreFieldPointSyms(section, f, numPoints, points, &perms, &flips));
7064     }
7065   } else {
7066     PetscInt            dof, off;
7067     const PetscInt    **perms = NULL;
7068     const PetscScalar **flips = NULL;
7069 
7070     PetscCall(PetscSectionGetPointSyms(section, numPoints, points, &perms, &flips));
7071     switch (mode) {
7072     case INSERT_VALUES:
7073       for (p = 0, off = 0; p < numPoints; p++, off += dof) {
7074         const PetscInt     point = points[2 * p];
7075         const PetscInt    *perm  = perms ? perms[p] : NULL;
7076         const PetscScalar *flip  = flips ? flips[p] : NULL;
7077         PetscCall(PetscSectionGetDof(section, point, &dof));
7078         PetscCall(updatePoint_private(section, point, dof, insert, PETSC_FALSE, perm, flip, clperm, values, off, array));
7079       }
7080       break;
7081     case INSERT_ALL_VALUES:
7082       for (p = 0, off = 0; p < numPoints; p++, off += dof) {
7083         const PetscInt     point = points[2 * p];
7084         const PetscInt    *perm  = perms ? perms[p] : NULL;
7085         const PetscScalar *flip  = flips ? flips[p] : NULL;
7086         PetscCall(PetscSectionGetDof(section, point, &dof));
7087         PetscCall(updatePoint_private(section, point, dof, insert, PETSC_TRUE, perm, flip, clperm, values, off, array));
7088       }
7089       break;
7090     case INSERT_BC_VALUES:
7091       for (p = 0, off = 0; p < numPoints; p++, off += dof) {
7092         const PetscInt     point = points[2 * p];
7093         const PetscInt    *perm  = perms ? perms[p] : NULL;
7094         const PetscScalar *flip  = flips ? flips[p] : NULL;
7095         PetscCall(PetscSectionGetDof(section, point, &dof));
7096         PetscCall(updatePointBC_private(section, point, dof, insert, perm, flip, clperm, values, off, array));
7097       }
7098       break;
7099     case ADD_VALUES:
7100       for (p = 0, off = 0; p < numPoints; p++, off += dof) {
7101         const PetscInt     point = points[2 * p];
7102         const PetscInt    *perm  = perms ? perms[p] : NULL;
7103         const PetscScalar *flip  = flips ? flips[p] : NULL;
7104         PetscCall(PetscSectionGetDof(section, point, &dof));
7105         PetscCall(updatePoint_private(section, point, dof, add, PETSC_FALSE, perm, flip, clperm, values, off, array));
7106       }
7107       break;
7108     case ADD_ALL_VALUES:
7109       for (p = 0, off = 0; p < numPoints; p++, off += dof) {
7110         const PetscInt     point = points[2 * p];
7111         const PetscInt    *perm  = perms ? perms[p] : NULL;
7112         const PetscScalar *flip  = flips ? flips[p] : NULL;
7113         PetscCall(PetscSectionGetDof(section, point, &dof));
7114         PetscCall(updatePoint_private(section, point, dof, add, PETSC_TRUE, perm, flip, clperm, values, off, array));
7115       }
7116       break;
7117     case ADD_BC_VALUES:
7118       for (p = 0, off = 0; p < numPoints; p++, off += dof) {
7119         const PetscInt     point = points[2 * p];
7120         const PetscInt    *perm  = perms ? perms[p] : NULL;
7121         const PetscScalar *flip  = flips ? flips[p] : NULL;
7122         PetscCall(PetscSectionGetDof(section, point, &dof));
7123         PetscCall(updatePointBC_private(section, point, dof, add, perm, flip, clperm, values, off, array));
7124       }
7125       break;
7126     default:
7127       SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Invalid insert mode %d", mode);
7128     }
7129     PetscCall(PetscSectionRestorePointSyms(section, numPoints, points, &perms, &flips));
7130   }
7131   /* Cleanup points */
7132   PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp));
7133   /* Cleanup array */
7134   PetscCall(VecRestoreArray(v, &array));
7135   PetscFunctionReturn(PETSC_SUCCESS);
7136 }
7137 
7138 /* Check whether the given point is in the label. If not, update the offset to skip this point */
7139 static inline PetscErrorCode CheckPoint_Private(DMLabel label, PetscInt labelId, PetscSection section, PetscInt point, PetscInt f, PetscInt *offset, PetscBool *contains)
7140 {
7141   PetscFunctionBegin;
7142   *contains = PETSC_TRUE;
7143   if (label) {
7144     PetscInt fdof;
7145 
7146     PetscCall(DMLabelStratumHasPoint(label, labelId, point, contains));
7147     if (!*contains) {
7148       PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof));
7149       *offset += fdof;
7150       PetscFunctionReturn(PETSC_SUCCESS);
7151     }
7152   }
7153   PetscFunctionReturn(PETSC_SUCCESS);
7154 }
7155 
7156 /* Unlike DMPlexVecSetClosure(), this uses plex-native closure permutation, not a user-specified permutation such as DMPlexSetClosurePermutationTensor(). */
7157 PetscErrorCode DMPlexVecSetFieldClosure_Internal(DM dm, PetscSection section, Vec v, PetscBool fieldActive[], PetscInt point, PetscInt Ncc, const PetscInt comps[], DMLabel label, PetscInt labelId, const PetscScalar values[], InsertMode mode)
7158 {
7159   PetscSection    clSection;
7160   IS              clPoints;
7161   PetscScalar    *array;
7162   PetscInt       *points = NULL;
7163   const PetscInt *clp;
7164   PetscInt        numFields, numPoints, p;
7165   PetscInt        offset = 0, f;
7166 
7167   PetscFunctionBeginHot;
7168   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
7169   if (!section) PetscCall(DMGetLocalSection(dm, &section));
7170   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
7171   PetscValidHeaderSpecific(v, VEC_CLASSID, 3);
7172   PetscCall(PetscSectionGetNumFields(section, &numFields));
7173   /* Get points */
7174   PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &numPoints, &points, &clSection, &clPoints, &clp));
7175   /* Get array */
7176   PetscCall(VecGetArray(v, &array));
7177   /* Get values */
7178   for (f = 0; f < numFields; ++f) {
7179     const PetscInt    **perms = NULL;
7180     const PetscScalar **flips = NULL;
7181     PetscBool           contains;
7182 
7183     if (!fieldActive[f]) {
7184       for (p = 0; p < numPoints * 2; p += 2) {
7185         PetscInt fdof;
7186         PetscCall(PetscSectionGetFieldDof(section, points[p], f, &fdof));
7187         offset += fdof;
7188       }
7189       continue;
7190     }
7191     PetscCall(PetscSectionGetFieldPointSyms(section, f, numPoints, points, &perms, &flips));
7192     switch (mode) {
7193     case INSERT_VALUES:
7194       for (p = 0; p < numPoints; p++) {
7195         const PetscInt     point = points[2 * p];
7196         const PetscInt    *perm  = perms ? perms[p] : NULL;
7197         const PetscScalar *flip  = flips ? flips[p] : NULL;
7198         PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains));
7199         if (!contains) continue;
7200         PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_FALSE, NULL, values, &offset, array));
7201       }
7202       break;
7203     case INSERT_ALL_VALUES:
7204       for (p = 0; p < numPoints; p++) {
7205         const PetscInt     point = points[2 * p];
7206         const PetscInt    *perm  = perms ? perms[p] : NULL;
7207         const PetscScalar *flip  = flips ? flips[p] : NULL;
7208         PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains));
7209         if (!contains) continue;
7210         PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_TRUE, NULL, values, &offset, array));
7211       }
7212       break;
7213     case INSERT_BC_VALUES:
7214       for (p = 0; p < numPoints; p++) {
7215         const PetscInt     point = points[2 * p];
7216         const PetscInt    *perm  = perms ? perms[p] : NULL;
7217         const PetscScalar *flip  = flips ? flips[p] : NULL;
7218         PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains));
7219         if (!contains) continue;
7220         PetscCall(updatePointFieldsBC_private(section, point, perm, flip, f, Ncc, comps, insert, NULL, values, &offset, array));
7221       }
7222       break;
7223     case ADD_VALUES:
7224       for (p = 0; p < numPoints; p++) {
7225         const PetscInt     point = points[2 * p];
7226         const PetscInt    *perm  = perms ? perms[p] : NULL;
7227         const PetscScalar *flip  = flips ? flips[p] : NULL;
7228         PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains));
7229         if (!contains) continue;
7230         PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_FALSE, NULL, values, &offset, array));
7231       }
7232       break;
7233     case ADD_ALL_VALUES:
7234       for (p = 0; p < numPoints; p++) {
7235         const PetscInt     point = points[2 * p];
7236         const PetscInt    *perm  = perms ? perms[p] : NULL;
7237         const PetscScalar *flip  = flips ? flips[p] : NULL;
7238         PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains));
7239         if (!contains) continue;
7240         PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_TRUE, NULL, values, &offset, array));
7241       }
7242       break;
7243     default:
7244       SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Invalid insert mode %d", mode);
7245     }
7246     PetscCall(PetscSectionRestoreFieldPointSyms(section, f, numPoints, points, &perms, &flips));
7247   }
7248   /* Cleanup points */
7249   PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp));
7250   /* Cleanup array */
7251   PetscCall(VecRestoreArray(v, &array));
7252   PetscFunctionReturn(PETSC_SUCCESS);
7253 }
7254 
7255 static PetscErrorCode DMPlexPrintMatSetValues(PetscViewer viewer, Mat A, PetscInt point, PetscInt numRIndices, const PetscInt rindices[], PetscInt numCIndices, const PetscInt cindices[], const PetscScalar values[])
7256 {
7257   PetscMPIInt rank;
7258   PetscInt    i, j;
7259 
7260   PetscFunctionBegin;
7261   PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank));
7262   PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]mat for point %" PetscInt_FMT "\n", rank, point));
7263   for (i = 0; i < numRIndices; i++) PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]mat row indices[%" PetscInt_FMT "] = %" PetscInt_FMT "\n", rank, i, rindices[i]));
7264   for (i = 0; i < numCIndices; i++) PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]mat col indices[%" PetscInt_FMT "] = %" PetscInt_FMT "\n", rank, i, cindices[i]));
7265   numCIndices = numCIndices ? numCIndices : numRIndices;
7266   if (!values) PetscFunctionReturn(PETSC_SUCCESS);
7267   for (i = 0; i < numRIndices; i++) {
7268     PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]", rank));
7269     for (j = 0; j < numCIndices; j++) {
7270 #if defined(PETSC_USE_COMPLEX)
7271       PetscCall(PetscViewerASCIIPrintf(viewer, " (%g,%g)", (double)PetscRealPart(values[i * numCIndices + j]), (double)PetscImaginaryPart(values[i * numCIndices + j])));
7272 #else
7273       PetscCall(PetscViewerASCIIPrintf(viewer, " %g", (double)values[i * numCIndices + j]));
7274 #endif
7275     }
7276     PetscCall(PetscViewerASCIIPrintf(viewer, "\n"));
7277   }
7278   PetscFunctionReturn(PETSC_SUCCESS);
7279 }
7280 
7281 /*
7282   DMPlexGetIndicesPoint_Internal - Add the indices for dofs on a point to an index array
7283 
7284   Input Parameters:
7285 + section - The section for this data layout
7286 . islocal - Is the section (and thus indices being requested) local or global?
7287 . point   - The point contributing dofs with these indices
7288 . off     - The global offset of this point
7289 . loff    - The local offset of each field
7290 . setBC   - The flag determining whether to include indices of boundary values
7291 . perm    - A permutation of the dofs on this point, or NULL
7292 - indperm - A permutation of the entire indices array, or NULL
7293 
7294   Output Parameter:
7295 . indices - Indices for dofs on this point
7296 
7297   Level: developer
7298 
7299   Note: The indices could be local or global, depending on the value of 'off'.
7300 */
7301 PetscErrorCode DMPlexGetIndicesPoint_Internal(PetscSection section, PetscBool islocal, PetscInt point, PetscInt off, PetscInt *loff, PetscBool setBC, const PetscInt perm[], const PetscInt indperm[], PetscInt indices[])
7302 {
7303   PetscInt        dof;   /* The number of unknowns on this point */
7304   PetscInt        cdof;  /* The number of constraints on this point */
7305   const PetscInt *cdofs; /* The indices of the constrained dofs on this point */
7306   PetscInt        cind = 0, k;
7307 
7308   PetscFunctionBegin;
7309   PetscCheck(islocal || !setBC, PetscObjectComm((PetscObject)section), PETSC_ERR_ARG_INCOMP, "setBC incompatible with global indices; use a local section or disable setBC");
7310   PetscCall(PetscSectionGetDof(section, point, &dof));
7311   PetscCall(PetscSectionGetConstraintDof(section, point, &cdof));
7312   if (!cdof || setBC) {
7313     for (k = 0; k < dof; ++k) {
7314       const PetscInt preind = perm ? *loff + perm[k] : *loff + k;
7315       const PetscInt ind    = indperm ? indperm[preind] : preind;
7316 
7317       indices[ind] = off + k;
7318     }
7319   } else {
7320     PetscCall(PetscSectionGetConstraintIndices(section, point, &cdofs));
7321     for (k = 0; k < dof; ++k) {
7322       const PetscInt preind = perm ? *loff + perm[k] : *loff + k;
7323       const PetscInt ind    = indperm ? indperm[preind] : preind;
7324 
7325       if ((cind < cdof) && (k == cdofs[cind])) {
7326         /* Insert check for returning constrained indices */
7327         indices[ind] = -(off + k + 1);
7328         ++cind;
7329       } else {
7330         indices[ind] = off + k - (islocal ? 0 : cind);
7331       }
7332     }
7333   }
7334   *loff += dof;
7335   PetscFunctionReturn(PETSC_SUCCESS);
7336 }
7337 
7338 /*
7339  DMPlexGetIndicesPointFields_Internal - gets section indices for a point in its canonical ordering.
7340 
7341  Input Parameters:
7342 + section - a section (global or local)
7343 - islocal - `PETSC_TRUE` if requesting local indices (i.e., section is local); `PETSC_FALSE` for global
7344 . point - point within section
7345 . off - The offset of this point in the (local or global) indexed space - should match islocal and (usually) the section
7346 . foffs - array of length numFields containing the offset in canonical point ordering (the location in indices) of each field
7347 . setBC - identify constrained (boundary condition) points via involution.
7348 . perms - perms[f][permsoff][:] is a permutation of dofs within each field
7349 . permsoff - offset
7350 - indperm - index permutation
7351 
7352  Output Parameter:
7353 . foffs - each entry is incremented by the number of (unconstrained if setBC=FALSE) dofs in that field
7354 . indices - array to hold indices (as defined by section) of each dof associated with point
7355 
7356  Notes:
7357  If section is local and setBC=true, there is no distinction between constrained and unconstrained dofs.
7358  If section is local and setBC=false, the indices for constrained points are the involution -(i+1) of their position
7359  in the local vector.
7360 
7361  If section is global and setBC=false, the indices for constrained points are negative (and their value is not
7362  significant).  It is invalid to call with a global section and setBC=true.
7363 
7364  Developer Note:
7365  The section is only used for field layout, so islocal is technically a statement about the offset (off).  At some point
7366  in the future, global sections may have fields set, in which case we could pass the global section and obtain the
7367  offset could be obtained from the section instead of passing it explicitly as we do now.
7368 
7369  Example:
7370  Suppose a point contains one field with three components, and for which the unconstrained indices are {10, 11, 12}.
7371  When the middle component is constrained, we get the array {10, -12, 12} for (islocal=TRUE, setBC=FALSE).
7372  Note that -12 is the involution of 11, so the user can involute negative indices to recover local indices.
7373  The global vector does not store constrained dofs, so when this function returns global indices, say {110, -112, 111}, the value of -112 is an arbitrary flag that should not be interpreted beyond its sign.
7374 
7375  Level: developer
7376 */
7377 PetscErrorCode DMPlexGetIndicesPointFields_Internal(PetscSection section, PetscBool islocal, PetscInt point, PetscInt off, PetscInt foffs[], PetscBool setBC, const PetscInt ***perms, PetscInt permsoff, const PetscInt indperm[], PetscInt indices[])
7378 {
7379   PetscInt numFields, foff, f;
7380 
7381   PetscFunctionBegin;
7382   PetscCheck(islocal || !setBC, PetscObjectComm((PetscObject)section), PETSC_ERR_ARG_INCOMP, "setBC incompatible with global indices; use a local section or disable setBC");
7383   PetscCall(PetscSectionGetNumFields(section, &numFields));
7384   for (f = 0, foff = 0; f < numFields; ++f) {
7385     PetscInt        fdof, cfdof;
7386     const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */
7387     PetscInt        cind = 0, b;
7388     const PetscInt *perm = (perms && perms[f]) ? perms[f][permsoff] : NULL;
7389 
7390     PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof));
7391     PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &cfdof));
7392     if (!cfdof || setBC) {
7393       for (b = 0; b < fdof; ++b) {
7394         const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b;
7395         const PetscInt ind    = indperm ? indperm[preind] : preind;
7396 
7397         indices[ind] = off + foff + b;
7398       }
7399     } else {
7400       PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs));
7401       for (b = 0; b < fdof; ++b) {
7402         const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b;
7403         const PetscInt ind    = indperm ? indperm[preind] : preind;
7404 
7405         if ((cind < cfdof) && (b == fcdofs[cind])) {
7406           indices[ind] = -(off + foff + b + 1);
7407           ++cind;
7408         } else {
7409           indices[ind] = off + foff + b - (islocal ? 0 : cind);
7410         }
7411       }
7412     }
7413     foff += (setBC || islocal ? fdof : (fdof - cfdof));
7414     foffs[f] += fdof;
7415   }
7416   PetscFunctionReturn(PETSC_SUCCESS);
7417 }
7418 
7419 /*
7420   This version believes the globalSection offsets for each field, rather than just the point offset
7421 
7422  . foffs - The offset into 'indices' for each field, since it is segregated by field
7423 
7424  Notes:
7425  The semantics of this function relate to that of setBC=FALSE in DMPlexGetIndicesPointFields_Internal.
7426  Since this function uses global indices, setBC=TRUE would be invalid, so no such argument exists.
7427 */
7428 static PetscErrorCode DMPlexGetIndicesPointFieldsSplit_Internal(PetscSection section, PetscSection globalSection, PetscInt point, PetscInt foffs[], const PetscInt ***perms, PetscInt permsoff, const PetscInt indperm[], PetscInt indices[])
7429 {
7430   PetscInt numFields, foff, f;
7431 
7432   PetscFunctionBegin;
7433   PetscCall(PetscSectionGetNumFields(section, &numFields));
7434   for (f = 0; f < numFields; ++f) {
7435     PetscInt        fdof, cfdof;
7436     const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */
7437     PetscInt        cind = 0, b;
7438     const PetscInt *perm = (perms && perms[f]) ? perms[f][permsoff] : NULL;
7439 
7440     PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof));
7441     PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &cfdof));
7442     PetscCall(PetscSectionGetFieldOffset(globalSection, point, f, &foff));
7443     if (!cfdof) {
7444       for (b = 0; b < fdof; ++b) {
7445         const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b;
7446         const PetscInt ind    = indperm ? indperm[preind] : preind;
7447 
7448         indices[ind] = foff + b;
7449       }
7450     } else {
7451       PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs));
7452       for (b = 0; b < fdof; ++b) {
7453         const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b;
7454         const PetscInt ind    = indperm ? indperm[preind] : preind;
7455 
7456         if ((cind < cfdof) && (b == fcdofs[cind])) {
7457           indices[ind] = -(foff + b + 1);
7458           ++cind;
7459         } else {
7460           indices[ind] = foff + b - cind;
7461         }
7462       }
7463     }
7464     foffs[f] += fdof;
7465   }
7466   PetscFunctionReturn(PETSC_SUCCESS);
7467 }
7468 
7469 static PetscErrorCode DMPlexAnchorsGetSubMatIndices(PetscInt nPoints, const PetscInt pnts[], PetscSection section, PetscSection cSec, PetscInt tmpIndices[], PetscInt fieldOffsets[], PetscInt indices[], const PetscInt ***perms)
7470 {
7471   PetscInt numFields, sStart, sEnd, cStart, cEnd;
7472 
7473   PetscFunctionBegin;
7474   PetscCall(PetscSectionGetNumFields(section, &numFields));
7475   PetscCall(PetscSectionGetChart(section, &sStart, &sEnd));
7476   PetscCall(PetscSectionGetChart(cSec, &cStart, &cEnd));
7477   for (PetscInt p = 0; p < nPoints; p++) {
7478     PetscInt     b       = pnts[2 * p];
7479     PetscInt     bSecDof = 0, bOff;
7480     PetscInt     cSecDof = 0;
7481     PetscSection indices_section;
7482 
7483     if (b >= sStart && b < sEnd) PetscCall(PetscSectionGetDof(section, b, &bSecDof));
7484     if (!bSecDof) continue;
7485     if (b >= cStart && b < cEnd) PetscCall(PetscSectionGetDof(cSec, b, &cSecDof));
7486     indices_section = cSecDof > 0 ? cSec : section;
7487     if (numFields) {
7488       PetscInt fStart[32], fEnd[32];
7489 
7490       fStart[0] = 0;
7491       fEnd[0]   = 0;
7492       for (PetscInt f = 0; f < numFields; f++) {
7493         PetscInt fDof = 0;
7494 
7495         PetscCall(PetscSectionGetFieldDof(indices_section, b, f, &fDof));
7496         fStart[f + 1] = fStart[f] + fDof;
7497         fEnd[f + 1]   = fStart[f + 1];
7498       }
7499       PetscCall(PetscSectionGetOffset(indices_section, b, &bOff));
7500       // only apply permutations on one side
7501       PetscCall(DMPlexGetIndicesPointFields_Internal(indices_section, PETSC_TRUE, b, bOff, fEnd, PETSC_TRUE, perms, perms ? p : -1, NULL, tmpIndices));
7502       for (PetscInt f = 0; f < numFields; f++) {
7503         for (PetscInt i = fStart[f]; i < fEnd[f]; i++) { indices[fieldOffsets[f]++] = (cSecDof > 0) ? tmpIndices[i] : -(tmpIndices[i] + 1); }
7504       }
7505     } else {
7506       PetscInt bEnd = 0;
7507 
7508       PetscCall(PetscSectionGetOffset(indices_section, b, &bOff));
7509       PetscCall(DMPlexGetIndicesPoint_Internal(indices_section, PETSC_TRUE, b, bOff, &bEnd, PETSC_TRUE, (perms && perms[0]) ? perms[0][p] : NULL, NULL, tmpIndices));
7510 
7511       for (PetscInt i = 0; i < bEnd; i++) indices[fieldOffsets[0]++] = (cSecDof > 0) ? tmpIndices[i] : -(tmpIndices[i] + 1);
7512     }
7513   }
7514   PetscFunctionReturn(PETSC_SUCCESS);
7515 }
7516 
7517 PETSC_INTERN PetscErrorCode DMPlexAnchorsGetSubMatModification(DM dm, PetscSection section, PetscInt numPoints, PetscInt numIndices, const PetscInt points[], const PetscInt ***perms, PetscInt *outNumPoints, PetscInt *outNumIndices, PetscInt *outPoints[], PetscInt offsets[], PetscScalar *outMat[])
7518 {
7519   Mat             cMat;
7520   PetscSection    aSec, cSec;
7521   IS              aIS;
7522   PetscInt        aStart = -1, aEnd = -1;
7523   PetscInt        sStart = -1, sEnd = -1;
7524   PetscInt        cStart = -1, cEnd = -1;
7525   const PetscInt *anchors;
7526   PetscInt        numFields, p;
7527   PetscInt        newNumPoints = 0, newNumIndices = 0;
7528   PetscInt       *newPoints, *indices, *newIndices, *tmpIndices, *tmpNewIndices;
7529   PetscInt        oldOffsets[32];
7530   PetscInt        newOffsets[32];
7531   PetscInt        oldOffsetsCopy[32];
7532   PetscInt        newOffsetsCopy[32];
7533   PetscScalar    *modMat         = NULL;
7534   PetscBool       anyConstrained = PETSC_FALSE;
7535 
7536   PetscFunctionBegin;
7537   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
7538   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
7539   PetscCall(PetscSectionGetNumFields(section, &numFields));
7540 
7541   PetscCall(DMPlexGetAnchors(dm, &aSec, &aIS));
7542   /* if there are point-to-point constraints */
7543   if (aSec) {
7544     PetscCall(PetscArrayzero(newOffsets, 32));
7545     PetscCall(PetscArrayzero(oldOffsets, 32));
7546     PetscCall(ISGetIndices(aIS, &anchors));
7547     PetscCall(PetscSectionGetChart(aSec, &aStart, &aEnd));
7548     PetscCall(PetscSectionGetChart(section, &sStart, &sEnd));
7549     /* figure out how many points are going to be in the new element matrix
7550      * (we allow double counting, because it's all just going to be summed
7551      * into the global matrix anyway) */
7552     for (p = 0; p < 2 * numPoints; p += 2) {
7553       PetscInt b    = points[p];
7554       PetscInt bDof = 0, bSecDof = 0;
7555 
7556       if (b >= sStart && b < sEnd) PetscCall(PetscSectionGetDof(section, b, &bSecDof));
7557       if (!bSecDof) continue;
7558 
7559       for (PetscInt f = 0; f < numFields; f++) {
7560         PetscInt fDof = 0;
7561 
7562         PetscCall(PetscSectionGetFieldDof(section, b, f, &fDof));
7563         oldOffsets[f + 1] += fDof;
7564       }
7565       if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof));
7566       if (bDof) {
7567         /* this point is constrained */
7568         /* it is going to be replaced by its anchors */
7569         PetscInt bOff, q;
7570 
7571         PetscCall(PetscSectionGetOffset(aSec, b, &bOff));
7572         for (q = 0; q < bDof; q++) {
7573           PetscInt a    = anchors[bOff + q];
7574           PetscInt aDof = 0;
7575 
7576           if (a >= sStart && a < sEnd) PetscCall(PetscSectionGetDof(section, a, &aDof));
7577           if (aDof) {
7578             anyConstrained = PETSC_TRUE;
7579             newNumPoints += 1;
7580           }
7581           newNumIndices += aDof;
7582           for (PetscInt f = 0; f < numFields; ++f) {
7583             PetscInt fDof = 0;
7584 
7585             if (a >= sStart && a < sEnd) PetscCall(PetscSectionGetFieldDof(section, a, f, &fDof));
7586             newOffsets[f + 1] += fDof;
7587           }
7588         }
7589       } else {
7590         /* this point is not constrained */
7591         newNumPoints++;
7592         newNumIndices += bSecDof;
7593         for (PetscInt f = 0; f < numFields; ++f) {
7594           PetscInt fDof;
7595 
7596           PetscCall(PetscSectionGetFieldDof(section, b, f, &fDof));
7597           newOffsets[f + 1] += fDof;
7598         }
7599       }
7600     }
7601   }
7602   if (!anyConstrained) {
7603     if (outNumPoints) *outNumPoints = 0;
7604     if (outNumIndices) *outNumIndices = 0;
7605     if (outPoints) *outPoints = NULL;
7606     if (outMat) *outMat = NULL;
7607     if (aSec) PetscCall(ISRestoreIndices(aIS, &anchors));
7608     PetscFunctionReturn(PETSC_SUCCESS);
7609   }
7610 
7611   if (outNumPoints) *outNumPoints = newNumPoints;
7612   if (outNumIndices) *outNumIndices = newNumIndices;
7613 
7614   for (PetscInt f = 0; f < numFields; ++f) newOffsets[f + 1] += newOffsets[f];
7615   for (PetscInt f = 0; f < numFields; ++f) oldOffsets[f + 1] += oldOffsets[f];
7616 
7617   if (!outPoints && !outMat) {
7618     if (offsets) {
7619       for (PetscInt f = 0; f <= numFields; f++) offsets[f] = newOffsets[f];
7620     }
7621     if (aSec) PetscCall(ISRestoreIndices(aIS, &anchors));
7622     PetscFunctionReturn(PETSC_SUCCESS);
7623   }
7624 
7625   PetscCheck(!numFields || newOffsets[numFields] == newNumIndices, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, newOffsets[numFields], newNumIndices);
7626   PetscCheck(!numFields || oldOffsets[numFields] == numIndices, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, oldOffsets[numFields], numIndices);
7627 
7628   PetscCall(DMGetDefaultConstraints(dm, &cSec, &cMat, NULL));
7629   PetscCall(PetscSectionGetChart(cSec, &cStart, &cEnd));
7630 
7631   /* output arrays */
7632   PetscCall(DMGetWorkArray(dm, 2 * newNumPoints, MPIU_INT, &newPoints));
7633   PetscCall(PetscArrayzero(newPoints, 2 * newNumPoints));
7634 
7635   // get the new Points
7636   for (PetscInt p = 0, newP = 0; p < numPoints; p++) {
7637     PetscInt b    = points[2 * p];
7638     PetscInt bDof = 0, bSecDof = 0, bOff;
7639 
7640     if (b >= sStart && b < sEnd) PetscCall(PetscSectionGetDof(section, b, &bSecDof));
7641     if (!bSecDof) continue;
7642     if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof));
7643     if (bDof) {
7644       PetscCall(PetscSectionGetOffset(aSec, b, &bOff));
7645       for (PetscInt q = 0; q < bDof; q++) {
7646         PetscInt a = anchors[bOff + q], aDof = 0;
7647 
7648         if (a >= sStart && a < sEnd) PetscCall(PetscSectionGetDof(section, a, &aDof));
7649         if (aDof) {
7650           newPoints[2 * newP]     = a;
7651           newPoints[2 * newP + 1] = 0; // orientations are accounted for in constructing the matrix, newly added points are in default orientation
7652           newP++;
7653         }
7654       }
7655     } else {
7656       newPoints[2 * newP]     = b;
7657       newPoints[2 * newP + 1] = points[2 * p + 1];
7658       newP++;
7659     }
7660   }
7661 
7662   if (outMat) {
7663     PetscScalar *tmpMat;
7664     PetscCall(PetscArraycpy(oldOffsetsCopy, oldOffsets, 32));
7665     PetscCall(PetscArraycpy(newOffsetsCopy, newOffsets, 32));
7666 
7667     PetscCall(DMGetWorkArray(dm, numIndices, MPIU_INT, &indices));
7668     PetscCall(DMGetWorkArray(dm, numIndices, MPIU_INT, &tmpIndices));
7669     PetscCall(DMGetWorkArray(dm, newNumIndices, MPIU_INT, &newIndices));
7670     PetscCall(DMGetWorkArray(dm, newNumIndices, MPIU_INT, &tmpNewIndices));
7671 
7672     for (PetscInt i = 0; i < numIndices; i++) indices[i] = -1;
7673     for (PetscInt i = 0; i < newNumIndices; i++) newIndices[i] = -1;
7674 
7675     PetscCall(DMPlexAnchorsGetSubMatIndices(numPoints, points, section, cSec, tmpIndices, oldOffsetsCopy, indices, perms));
7676     PetscCall(DMPlexAnchorsGetSubMatIndices(newNumPoints, newPoints, section, section, tmpNewIndices, newOffsetsCopy, newIndices, NULL));
7677 
7678     PetscCall(DMGetWorkArray(dm, numIndices * newNumIndices, MPIU_SCALAR, &modMat));
7679     PetscCall(DMGetWorkArray(dm, numIndices * newNumIndices, MPIU_SCALAR, &tmpMat));
7680     PetscCall(PetscArrayzero(modMat, newNumIndices * numIndices));
7681     // for each field, insert the anchor modification into modMat
7682     for (PetscInt f = 0; f < PetscMax(1, numFields); f++) {
7683       PetscInt fStart    = oldOffsets[f];
7684       PetscInt fNewStart = newOffsets[f];
7685       for (PetscInt p = 0, newP = 0, o = fStart, oNew = fNewStart; p < numPoints; p++) {
7686         PetscInt b    = points[2 * p];
7687         PetscInt bDof = 0, bSecDof = 0, bOff;
7688 
7689         if (b >= sStart && b < sEnd) {
7690           if (numFields) {
7691             PetscCall(PetscSectionGetFieldDof(section, b, f, &bSecDof));
7692           } else {
7693             PetscCall(PetscSectionGetDof(section, b, &bSecDof));
7694           }
7695         }
7696         if (!bSecDof) continue;
7697         if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof));
7698         if (bDof) {
7699           PetscCall(PetscSectionGetOffset(aSec, b, &bOff));
7700           for (PetscInt q = 0; q < bDof; q++, newP++) {
7701             PetscInt a = anchors[bOff + q], aDof = 0;
7702 
7703             if (a >= sStart && a < sEnd) {
7704               if (numFields) {
7705                 PetscCall(PetscSectionGetFieldDof(section, a, f, &aDof));
7706               } else {
7707                 PetscCall(PetscSectionGetDof(section, a, &aDof));
7708               }
7709             }
7710             if (aDof) {
7711               PetscCall(MatGetValues(cMat, bSecDof, &indices[o], aDof, &newIndices[oNew], tmpMat));
7712               for (PetscInt d = 0; d < bSecDof; d++) {
7713                 for (PetscInt e = 0; e < aDof; e++) modMat[(o + d) * newNumIndices + oNew + e] = tmpMat[d * aDof + e];
7714               }
7715             }
7716             oNew += aDof;
7717           }
7718         } else {
7719           // Insert the identity matrix in this block
7720           for (PetscInt d = 0; d < bSecDof; d++) modMat[(o + d) * newNumIndices + oNew + d] = 1;
7721           oNew += bSecDof;
7722           newP++;
7723         }
7724         o += bSecDof;
7725       }
7726     }
7727 
7728     *outMat = modMat;
7729 
7730     PetscCall(DMRestoreWorkArray(dm, numIndices * newNumIndices, MPIU_SCALAR, &tmpMat));
7731     PetscCall(DMRestoreWorkArray(dm, newNumIndices, MPIU_INT, &tmpNewIndices));
7732     PetscCall(DMRestoreWorkArray(dm, newNumIndices, MPIU_INT, &newIndices));
7733     PetscCall(DMRestoreWorkArray(dm, numIndices, MPIU_INT, &tmpIndices));
7734     PetscCall(DMRestoreWorkArray(dm, numIndices, MPIU_INT, &indices));
7735   }
7736   PetscCall(ISRestoreIndices(aIS, &anchors));
7737 
7738   /* output */
7739   if (outPoints) {
7740     *outPoints = newPoints;
7741   } else {
7742     PetscCall(DMRestoreWorkArray(dm, 2 * newNumPoints, MPIU_INT, &newPoints));
7743   }
7744   for (PetscInt f = 0; f <= numFields; f++) offsets[f] = newOffsets[f];
7745   PetscFunctionReturn(PETSC_SUCCESS);
7746 }
7747 
7748 PETSC_INTERN PetscErrorCode DMPlexAnchorsModifyMat_Internal(DM dm, PetscSection section, PetscInt numPoints, PetscInt numIndices, const PetscInt points[], const PetscInt ***perms, PetscInt numRows, PetscInt numCols, const PetscScalar values[], PetscInt *outNumPoints, PetscInt *outNumIndices, PetscInt *outPoints[], PetscScalar *outValues[], PetscInt offsets[], PetscBool multiplyRight, PetscBool multiplyLeft)
7749 {
7750   PetscScalar *modMat        = NULL;
7751   PetscInt     newNumIndices = -1;
7752 
7753   PetscFunctionBegin;
7754   /* If M is the matrix represented by values, get the matrix C such that we will add M * C (or, if multiplyLeft, C^T * M * C) into the global matrix.
7755      modMat is that matrix C */
7756   PetscCall(DMPlexAnchorsGetSubMatModification(dm, section, numPoints, numIndices, points, perms, outNumPoints, &newNumIndices, outPoints, offsets, outValues ? &modMat : NULL));
7757   if (outNumIndices) *outNumIndices = newNumIndices;
7758   if (modMat) {
7759     const PetscScalar *newValues = values;
7760 
7761     if (multiplyRight) {
7762       PetscScalar *newNewValues = NULL;
7763       PetscBLASInt M            = newNumIndices;
7764       PetscBLASInt N            = numRows;
7765       PetscBLASInt K            = numIndices;
7766       PetscScalar  a = 1.0, b = 0.0;
7767 
7768       PetscCheck(numCols == numIndices, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "values matrix has the wrong number of columns: %" PetscInt_FMT ", expected %" PetscInt_FMT, numCols, numIndices);
7769 
7770       PetscCall(DMGetWorkArray(dm, numRows * newNumIndices, MPIU_SCALAR, &newNewValues));
7771       // row-major to column-major conversion, right multiplication becomes left multiplication
7772       PetscCallBLAS("BLASgemm", BLASgemm_("N", "N", &M, &N, &K, &a, modMat, &M, newValues, &K, &b, newNewValues, &M));
7773 
7774       numCols   = newNumIndices;
7775       newValues = newNewValues;
7776     }
7777 
7778     if (multiplyLeft) {
7779       PetscScalar *newNewValues = NULL;
7780       PetscBLASInt M            = numCols;
7781       PetscBLASInt N            = newNumIndices;
7782       PetscBLASInt K            = numIndices;
7783       PetscScalar  a = 1.0, b = 0.0;
7784 
7785       PetscCheck(numRows == numIndices, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "values matrix has the wrong number of rows: %" PetscInt_FMT ", expected %" PetscInt_FMT, numRows, numIndices);
7786 
7787       PetscCall(DMGetWorkArray(dm, newNumIndices * numCols, MPIU_SCALAR, &newNewValues));
7788       // row-major to column-major conversion, left multiplication becomes right multiplication
7789       PetscCallBLAS("BLASgemm", BLASgemm_("N", "T", &M, &N, &K, &a, newValues, &M, modMat, &N, &b, newNewValues, &M));
7790       if (newValues != values) PetscCall(DMRestoreWorkArray(dm, numIndices * newNumIndices, MPIU_SCALAR, &newValues));
7791       newValues = newNewValues;
7792     }
7793     *outValues = (PetscScalar *)newValues;
7794     PetscCall(DMRestoreWorkArray(dm, numIndices * newNumIndices, MPIU_SCALAR, &modMat));
7795   }
7796   PetscFunctionReturn(PETSC_SUCCESS);
7797 }
7798 
7799 PETSC_INTERN PetscErrorCode DMPlexAnchorsModifyMat(DM dm, PetscSection section, PetscInt numPoints, PetscInt numIndices, const PetscInt points[], const PetscInt ***perms, const PetscScalar values[], PetscInt *outNumPoints, PetscInt *outNumIndices, PetscInt *outPoints[], PetscScalar *outValues[], PetscInt offsets[], PetscBool multiplyLeft)
7800 {
7801   PetscFunctionBegin;
7802   PetscCall(DMPlexAnchorsModifyMat_Internal(dm, section, numPoints, numIndices, points, perms, numIndices, numIndices, values, outNumPoints, outNumIndices, outPoints, outValues, offsets, PETSC_TRUE, multiplyLeft));
7803   PetscFunctionReturn(PETSC_SUCCESS);
7804 }
7805 
7806 static PetscErrorCode DMPlexGetClosureIndicesSize_Internal(DM dm, PetscSection section, PetscInt point, PetscInt *closureSize)
7807 {
7808   /* Closure ordering */
7809   PetscSection    clSection;
7810   IS              clPoints;
7811   const PetscInt *clp;
7812   PetscInt       *points;
7813   PetscInt        Ncl, Ni = 0;
7814 
7815   PetscFunctionBeginHot;
7816   PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &Ncl, &points, &clSection, &clPoints, &clp));
7817   for (PetscInt p = 0; p < Ncl * 2; p += 2) {
7818     PetscInt dof;
7819 
7820     PetscCall(PetscSectionGetDof(section, points[p], &dof));
7821     Ni += dof;
7822   }
7823   PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &Ncl, &points, &clSection, &clPoints, &clp));
7824   *closureSize = Ni;
7825   PetscFunctionReturn(PETSC_SUCCESS);
7826 }
7827 
7828 static PetscErrorCode DMPlexGetClosureIndices_Internal(DM dm, PetscSection section, PetscSection idxSection, PetscInt point, PetscBool useClPerm, PetscInt *numRows, PetscInt *numCols, PetscInt *indices[], PetscInt outOffsets[], PetscScalar *values[], PetscBool multiplyRight, PetscBool multiplyLeft)
7829 {
7830   /* Closure ordering */
7831   PetscSection    clSection;
7832   IS              clPoints;
7833   const PetscInt *clp;
7834   PetscInt       *points;
7835   const PetscInt *clperm = NULL;
7836   /* Dof permutation and sign flips */
7837   const PetscInt    **perms[32] = {NULL};
7838   const PetscScalar **flips[32] = {NULL};
7839   PetscScalar        *valCopy   = NULL;
7840   /* Hanging node constraints */
7841   PetscInt    *pointsC = NULL;
7842   PetscScalar *valuesC = NULL;
7843   PetscInt     NclC, NiC;
7844 
7845   PetscInt *idx;
7846   PetscInt  Nf, Ncl, Ni = 0, offsets[32], p, f;
7847   PetscBool isLocal = (section == idxSection) ? PETSC_TRUE : PETSC_FALSE;
7848   PetscInt  idxStart, idxEnd;
7849   PetscInt  nRows, nCols;
7850 
7851   PetscFunctionBeginHot;
7852   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
7853   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
7854   PetscValidHeaderSpecific(idxSection, PETSC_SECTION_CLASSID, 3);
7855   PetscAssertPointer(numRows, 6);
7856   PetscAssertPointer(numCols, 7);
7857   if (indices) PetscAssertPointer(indices, 8);
7858   if (outOffsets) PetscAssertPointer(outOffsets, 9);
7859   if (values) PetscAssertPointer(values, 10);
7860   PetscCall(PetscSectionGetNumFields(section, &Nf));
7861   PetscCheck(Nf <= 31, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Number of fields %" PetscInt_FMT " limited to 31", Nf);
7862   PetscCall(PetscArrayzero(offsets, 32));
7863   /* 1) Get points in closure */
7864   PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &Ncl, &points, &clSection, &clPoints, &clp));
7865   if (useClPerm) {
7866     PetscInt depth, clsize;
7867     PetscCall(DMPlexGetPointDepth(dm, point, &depth));
7868     for (clsize = 0, p = 0; p < Ncl; p++) {
7869       PetscInt dof;
7870       PetscCall(PetscSectionGetDof(section, points[2 * p], &dof));
7871       clsize += dof;
7872     }
7873     PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, clsize, &clperm));
7874   }
7875   /* 2) Get number of indices on these points and field offsets from section */
7876   for (p = 0; p < Ncl * 2; p += 2) {
7877     PetscInt dof, fdof;
7878 
7879     PetscCall(PetscSectionGetDof(section, points[p], &dof));
7880     for (f = 0; f < Nf; ++f) {
7881       PetscCall(PetscSectionGetFieldDof(section, points[p], f, &fdof));
7882       offsets[f + 1] += fdof;
7883     }
7884     Ni += dof;
7885   }
7886   if (*numRows == -1) *numRows = Ni;
7887   if (*numCols == -1) *numCols = Ni;
7888   nRows = *numRows;
7889   nCols = *numCols;
7890   for (f = 1; f < Nf; ++f) offsets[f + 1] += offsets[f];
7891   PetscCheck(!Nf || offsets[Nf] == Ni, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, offsets[Nf], Ni);
7892   /* 3) Get symmetries and sign flips. Apply sign flips to values if passed in (only works for square values matrix) */
7893   if (multiplyRight) PetscCheck(nCols == Ni, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "Expected %" PetscInt_FMT " columns, got %" PetscInt_FMT, Ni, nCols);
7894   if (multiplyLeft) PetscCheck(nRows == Ni, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "Expected %" PetscInt_FMT " rows, got %" PetscInt_FMT, Ni, nRows);
7895   for (f = 0; f < PetscMax(1, Nf); ++f) {
7896     if (Nf) PetscCall(PetscSectionGetFieldPointSyms(section, f, Ncl, points, &perms[f], &flips[f]));
7897     else PetscCall(PetscSectionGetPointSyms(section, Ncl, points, &perms[f], &flips[f]));
7898     /* may need to apply sign changes to the element matrix */
7899     if (values && flips[f]) {
7900       PetscInt foffset = offsets[f];
7901 
7902       for (p = 0; p < Ncl; ++p) {
7903         PetscInt           pnt  = points[2 * p], fdof;
7904         const PetscScalar *flip = flips[f] ? flips[f][p] : NULL;
7905 
7906         if (!Nf) PetscCall(PetscSectionGetDof(section, pnt, &fdof));
7907         else PetscCall(PetscSectionGetFieldDof(section, pnt, f, &fdof));
7908         if (flip) {
7909           PetscInt i, j, k;
7910 
7911           if (!valCopy) {
7912             PetscCall(DMGetWorkArray(dm, Ni * Ni, MPIU_SCALAR, &valCopy));
7913             for (j = 0; j < Ni * Ni; ++j) valCopy[j] = (*values)[j];
7914             *values = valCopy;
7915           }
7916           for (i = 0; i < fdof; ++i) {
7917             PetscScalar fval = flip[i];
7918 
7919             if (multiplyRight) {
7920               for (k = 0; k < nRows; ++k) { valCopy[Ni * k + (foffset + i)] *= fval; }
7921             }
7922             if (multiplyLeft) {
7923               for (k = 0; k < nCols; ++k) { valCopy[nCols * (foffset + i) + k] *= fval; }
7924             }
7925           }
7926         }
7927         foffset += fdof;
7928       }
7929     }
7930   }
7931   /* 4) Apply hanging node constraints. Get new symmetries and replace all storage with constrained storage */
7932   PetscCall(DMPlexAnchorsModifyMat_Internal(dm, section, Ncl, Ni, points, perms, nRows, nCols, values ? *values : NULL, &NclC, &NiC, &pointsC, values ? &valuesC : NULL, offsets, multiplyRight, multiplyLeft));
7933   if (NclC) {
7934     if (multiplyRight) { *numCols = nCols = NiC; }
7935     if (multiplyLeft) { *numRows = nRows = NiC; }
7936     if (valCopy) PetscCall(DMRestoreWorkArray(dm, Ni * Ni, MPIU_SCALAR, &valCopy));
7937     for (f = 0; f < PetscMax(1, Nf); ++f) {
7938       if (Nf) PetscCall(PetscSectionRestoreFieldPointSyms(section, f, Ncl, points, &perms[f], &flips[f]));
7939       else PetscCall(PetscSectionRestorePointSyms(section, Ncl, points, &perms[f], &flips[f]));
7940     }
7941     for (f = 0; f < PetscMax(1, Nf); ++f) {
7942       if (Nf) PetscCall(PetscSectionGetFieldPointSyms(section, f, NclC, pointsC, &perms[f], &flips[f]));
7943       else PetscCall(PetscSectionGetPointSyms(section, NclC, pointsC, &perms[f], &flips[f]));
7944     }
7945     PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &Ncl, &points, &clSection, &clPoints, &clp));
7946     Ncl    = NclC;
7947     Ni     = NiC;
7948     points = pointsC;
7949     if (values) *values = valuesC;
7950   }
7951   /* 5) Calculate indices */
7952   PetscCall(DMGetWorkArray(dm, Ni, MPIU_INT, &idx));
7953   PetscCall(PetscSectionGetChart(idxSection, &idxStart, &idxEnd));
7954   if (Nf) {
7955     PetscInt  idxOff;
7956     PetscBool useFieldOffsets;
7957 
7958     if (outOffsets) {
7959       for (f = 0; f <= Nf; f++) outOffsets[f] = offsets[f];
7960     }
7961     PetscCall(PetscSectionGetUseFieldOffsets(idxSection, &useFieldOffsets));
7962     if (useFieldOffsets) {
7963       for (p = 0; p < Ncl; ++p) {
7964         const PetscInt pnt = points[p * 2];
7965 
7966         PetscCall(DMPlexGetIndicesPointFieldsSplit_Internal(section, idxSection, pnt, offsets, perms, p, clperm, idx));
7967       }
7968     } else {
7969       for (p = 0; p < Ncl; ++p) {
7970         const PetscInt pnt = points[p * 2];
7971 
7972         if (pnt < idxStart || pnt >= idxEnd) continue;
7973         PetscCall(PetscSectionGetOffset(idxSection, pnt, &idxOff));
7974         /* Note that we pass a local section even though we're using global offsets.  This is because global sections do
7975          * not (at the time of this writing) have fields set. They probably should, in which case we would pass the
7976          * global section. */
7977         PetscCall(DMPlexGetIndicesPointFields_Internal(section, isLocal, pnt, idxOff < 0 ? -(idxOff + 1) : idxOff, offsets, PETSC_FALSE, perms, p, clperm, idx));
7978       }
7979     }
7980   } else {
7981     PetscInt off = 0, idxOff;
7982 
7983     for (p = 0; p < Ncl; ++p) {
7984       const PetscInt  pnt  = points[p * 2];
7985       const PetscInt *perm = perms[0] ? perms[0][p] : NULL;
7986 
7987       if (pnt < idxStart || pnt >= idxEnd) continue;
7988       PetscCall(PetscSectionGetOffset(idxSection, pnt, &idxOff));
7989       /* Note that we pass a local section even though we're using global offsets.  This is because global sections do
7990        * not (at the time of this writing) have fields set. They probably should, in which case we would pass the global section. */
7991       PetscCall(DMPlexGetIndicesPoint_Internal(section, isLocal, pnt, idxOff < 0 ? -(idxOff + 1) : idxOff, &off, PETSC_FALSE, perm, clperm, idx));
7992     }
7993   }
7994   /* 6) Cleanup */
7995   for (f = 0; f < PetscMax(1, Nf); ++f) {
7996     if (Nf) PetscCall(PetscSectionRestoreFieldPointSyms(section, f, Ncl, points, &perms[f], &flips[f]));
7997     else PetscCall(PetscSectionRestorePointSyms(section, Ncl, points, &perms[f], &flips[f]));
7998   }
7999   if (NclC) {
8000     PetscCall(DMRestoreWorkArray(dm, NclC * 2, MPIU_INT, &pointsC));
8001   } else {
8002     PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &Ncl, &points, &clSection, &clPoints, &clp));
8003   }
8004 
8005   if (indices) *indices = idx;
8006   PetscFunctionReturn(PETSC_SUCCESS);
8007 }
8008 
8009 /*@C
8010   DMPlexGetClosureIndices - Gets the global dof indices associated with the closure of the given point within the provided sections.
8011 
8012   Not collective
8013 
8014   Input Parameters:
8015 + dm         - The `DM`
8016 . section    - The `PetscSection` describing the points (a local section)
8017 . idxSection - The `PetscSection` from which to obtain indices (may be local or global)
8018 . point      - The point defining the closure
8019 - useClPerm  - Use the closure point permutation if available
8020 
8021   Output Parameters:
8022 + numIndices - The number of dof indices in the closure of point with the input sections
8023 . indices    - The dof indices
8024 . outOffsets - Array to write the field offsets into, or `NULL`
8025 - values     - The input values, which may be modified if sign flips are induced by the point symmetries, or `NULL`
8026 
8027   Level: advanced
8028 
8029   Notes:
8030   Must call `DMPlexRestoreClosureIndices()` to free allocated memory
8031 
8032   If `idxSection` is global, any constrained dofs (see `DMAddBoundary()`, for example) will get negative indices.  The value
8033   of those indices is not significant.  If `idxSection` is local, the constrained dofs will yield the involution -(idx+1)
8034   of their index in a local vector.  A caller who does not wish to distinguish those points may recover the nonnegative
8035   indices via involution, -(-(idx+1)+1)==idx.  Local indices are provided when `idxSection` == section, otherwise global
8036   indices (with the above semantics) are implied.
8037 
8038 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreClosureIndices()`, `DMPlexVecGetClosure()`, `DMPlexMatSetClosure()`, `DMGetLocalSection()`,
8039           `PetscSection`, `DMGetGlobalSection()`
8040 @*/
8041 PetscErrorCode DMPlexGetClosureIndices(DM dm, PetscSection section, PetscSection idxSection, PetscInt point, PetscBool useClPerm, PetscInt *numIndices, PetscInt *indices[], PetscInt outOffsets[], PetscScalar *values[])
8042 {
8043   PetscInt numRows = -1, numCols = -1;
8044 
8045   PetscFunctionBeginHot;
8046   PetscCall(DMPlexGetClosureIndices_Internal(dm, section, idxSection, point, useClPerm, &numRows, &numCols, indices, outOffsets, values, PETSC_TRUE, PETSC_TRUE));
8047   PetscCheck(numRows == numCols, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Symmetric matrix transformation produces rectangular dimensions (%" PetscInt_FMT ", %" PetscInt_FMT ")", numRows, numCols);
8048   *numIndices = numRows;
8049   PetscFunctionReturn(PETSC_SUCCESS);
8050 }
8051 
8052 /*@C
8053   DMPlexRestoreClosureIndices - Restores the global dof indices associated with the closure of the given point within the provided sections.
8054 
8055   Not collective
8056 
8057   Input Parameters:
8058 + dm         - The `DM`
8059 . section    - The `PetscSection` describing the points (a local section)
8060 . idxSection - The `PetscSection` from which to obtain indices (may be local or global)
8061 . point      - The point defining the closure
8062 - useClPerm  - Use the closure point permutation if available
8063 
8064   Output Parameters:
8065 + numIndices - The number of dof indices in the closure of point with the input sections
8066 . indices    - The dof indices
8067 . outOffsets - Array to write the field offsets into, or `NULL`
8068 - values     - The input values, which may be modified if sign flips are induced by the point symmetries, or `NULL`
8069 
8070   Level: advanced
8071 
8072   Notes:
8073   If values were modified, the user is responsible for calling `DMRestoreWorkArray`(dm, 0, `MPIU_SCALAR`, &values).
8074 
8075   If idxSection is global, any constrained dofs (see `DMAddBoundary()`, for example) will get negative indices.  The value
8076   of those indices is not significant.  If idxSection is local, the constrained dofs will yield the involution -(idx+1)
8077   of their index in a local vector.  A caller who does not wish to distinguish those points may recover the nonnegative
8078   indices via involution, -(-(idx+1)+1)==idx.  Local indices are provided when idxSection == section, otherwise global
8079   indices (with the above semantics) are implied.
8080 
8081 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetClosureIndices()`, `DMPlexVecGetClosure()`, `DMPlexMatSetClosure()`, `DMGetLocalSection()`, `DMGetGlobalSection()`
8082 @*/
8083 PetscErrorCode DMPlexRestoreClosureIndices(DM dm, PetscSection section, PetscSection idxSection, PetscInt point, PetscBool useClPerm, PetscInt *numIndices, PetscInt *indices[], PetscInt outOffsets[], PetscScalar *values[])
8084 {
8085   PetscFunctionBegin;
8086   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8087   PetscAssertPointer(indices, 7);
8088   PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, indices));
8089   PetscFunctionReturn(PETSC_SUCCESS);
8090 }
8091 
8092 PetscErrorCode DMPlexMatSetClosure_Internal(DM dm, PetscSection section, PetscSection globalSection, PetscBool useClPerm, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode)
8093 {
8094   DM_Plex           *mesh = (DM_Plex *)dm->data;
8095   PetscInt          *indices;
8096   PetscInt           numIndices;
8097   const PetscScalar *valuesOrig = values;
8098   PetscErrorCode     ierr;
8099 
8100   PetscFunctionBegin;
8101   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8102   if (!section) PetscCall(DMGetLocalSection(dm, &section));
8103   PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2);
8104   if (!globalSection) PetscCall(DMGetGlobalSection(dm, &globalSection));
8105   PetscValidHeaderSpecific(globalSection, PETSC_SECTION_CLASSID, 3);
8106   PetscValidHeaderSpecific(A, MAT_CLASSID, 5);
8107 
8108   PetscCall(DMPlexGetClosureIndices(dm, section, globalSection, point, useClPerm, &numIndices, &indices, NULL, (PetscScalar **)&values));
8109 
8110   if (mesh->printSetValues) PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDOUT_SELF, A, point, numIndices, indices, 0, NULL, values));
8111   /* TODO: fix this code to not use error codes as handle-able exceptions! */
8112   ierr = MatSetValues(A, numIndices, indices, numIndices, indices, values, mode);
8113   if (ierr) {
8114     PetscMPIInt rank;
8115 
8116     PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank));
8117     PetscCall((*PetscErrorPrintf)("[%d]ERROR in DMPlexMatSetClosure\n", rank));
8118     PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDERR_SELF, A, point, numIndices, indices, 0, NULL, values));
8119     PetscCall(DMPlexRestoreClosureIndices(dm, section, globalSection, point, PETSC_TRUE, &numIndices, &indices, NULL, (PetscScalar **)&values));
8120     if (values != valuesOrig) PetscCall(DMRestoreWorkArray(dm, 0, MPIU_SCALAR, &values));
8121     SETERRQ(PetscObjectComm((PetscObject)dm), ierr, "Not possible to set matrix values");
8122   }
8123   if (mesh->printFEM > 1) {
8124     PetscInt i;
8125     PetscCall(PetscPrintf(PETSC_COMM_SELF, "  Indices:"));
8126     for (i = 0; i < numIndices; ++i) PetscCall(PetscPrintf(PETSC_COMM_SELF, " %" PetscInt_FMT, indices[i]));
8127     PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n"));
8128   }
8129 
8130   PetscCall(DMPlexRestoreClosureIndices(dm, section, globalSection, point, PETSC_TRUE, &numIndices, &indices, NULL, (PetscScalar **)&values));
8131   if (values != valuesOrig) PetscCall(DMRestoreWorkArray(dm, 0, MPIU_SCALAR, &values));
8132   PetscFunctionReturn(PETSC_SUCCESS);
8133 }
8134 
8135 /*@C
8136   DMPlexMatSetClosure - Set an array of the values on the closure of 'point'
8137 
8138   Not collective
8139 
8140   Input Parameters:
8141 + dm            - The `DM`
8142 . section       - The section describing the layout in `v`, or `NULL` to use the default section
8143 . globalSection - The section describing the layout in `v`, or `NULL` to use the default global section
8144 . A             - The matrix
8145 . point         - The point in the `DM`
8146 . values        - The array of values
8147 - mode          - The insert mode, where `INSERT_ALL_VALUES` and `ADD_ALL_VALUES` also overwrite boundary conditions
8148 
8149   Level: intermediate
8150 
8151 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexMatSetClosureGeneral()`, `DMPlexVecGetClosure()`, `DMPlexVecSetClosure()`
8152 @*/
8153 PetscErrorCode DMPlexMatSetClosure(DM dm, PetscSection section, PetscSection globalSection, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode)
8154 {
8155   PetscFunctionBegin;
8156   PetscCall(DMPlexMatSetClosure_Internal(dm, section, globalSection, PETSC_TRUE, A, point, values, mode));
8157   PetscFunctionReturn(PETSC_SUCCESS);
8158 }
8159 
8160 /*@C
8161   DMPlexMatSetClosureGeneral - Set an array of the values on the closure of 'point' using a different row and column section
8162 
8163   Not collective
8164 
8165   Input Parameters:
8166 + dmRow            - The `DM` for the row fields
8167 . sectionRow       - The section describing the layout, or `NULL` to use the default section in `dmRow`
8168 . useRowPerm       - The flag to use the closure permutation of the `dmRow` if available
8169 . globalSectionRow - The section describing the layout, or `NULL` to use the default global section in `dmRow`
8170 . dmCol            - The `DM` for the column fields
8171 . sectionCol       - The section describing the layout, or `NULL` to use the default section in `dmCol`
8172 . useColPerm       - The flag to use the closure permutation of the `dmCol` if available
8173 . globalSectionCol - The section describing the layout, or `NULL` to use the default global section in `dmCol`
8174 . A                - The matrix
8175 . point            - The point in the `DM`
8176 . values           - The array of values
8177 - mode             - The insert mode, where `INSERT_ALL_VALUES` and `ADD_ALL_VALUES` also overwrite boundary conditions
8178 
8179   Level: intermediate
8180 
8181 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexMatSetClosure()`, `DMPlexVecGetClosure()`, `DMPlexVecSetClosure()`
8182 @*/
8183 PetscErrorCode DMPlexMatSetClosureGeneral(DM dmRow, PetscSection sectionRow, PetscSection globalSectionRow, PetscBool useRowPerm, DM dmCol, PetscSection sectionCol, PetscSection globalSectionCol, PetscBool useColPerm, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode)
8184 {
8185   DM_Plex           *mesh = (DM_Plex *)dmRow->data;
8186   PetscInt          *indicesRow, *indicesCol;
8187   PetscInt           numIndicesRow = -1, numIndicesCol = -1;
8188   const PetscScalar *valuesV0 = values, *valuesV1, *valuesV2;
8189 
8190   PetscErrorCode ierr;
8191 
8192   PetscFunctionBegin;
8193   PetscValidHeaderSpecific(dmRow, DM_CLASSID, 1);
8194   if (!sectionRow) PetscCall(DMGetLocalSection(dmRow, &sectionRow));
8195   PetscValidHeaderSpecific(sectionRow, PETSC_SECTION_CLASSID, 2);
8196   if (!globalSectionRow) PetscCall(DMGetGlobalSection(dmRow, &globalSectionRow));
8197   PetscValidHeaderSpecific(globalSectionRow, PETSC_SECTION_CLASSID, 3);
8198   PetscValidHeaderSpecific(dmCol, DM_CLASSID, 5);
8199   if (!sectionCol) PetscCall(DMGetLocalSection(dmCol, &sectionCol));
8200   PetscValidHeaderSpecific(sectionCol, PETSC_SECTION_CLASSID, 6);
8201   if (!globalSectionCol) PetscCall(DMGetGlobalSection(dmCol, &globalSectionCol));
8202   PetscValidHeaderSpecific(globalSectionCol, PETSC_SECTION_CLASSID, 7);
8203   PetscValidHeaderSpecific(A, MAT_CLASSID, 9);
8204 
8205   PetscCall(DMPlexGetClosureIndicesSize_Internal(dmRow, sectionRow, point, &numIndicesRow));
8206   PetscCall(DMPlexGetClosureIndicesSize_Internal(dmCol, sectionCol, point, &numIndicesCol));
8207   valuesV1 = valuesV0;
8208   PetscCall(DMPlexGetClosureIndices_Internal(dmRow, sectionRow, globalSectionRow, point, useRowPerm, &numIndicesRow, &numIndicesCol, &indicesRow, NULL, (PetscScalar **)&valuesV1, PETSC_FALSE, PETSC_TRUE));
8209   valuesV2 = valuesV1;
8210   PetscCall(DMPlexGetClosureIndices_Internal(dmCol, sectionCol, globalSectionCol, point, useColPerm, &numIndicesRow, &numIndicesCol, &indicesCol, NULL, (PetscScalar **)&valuesV2, PETSC_TRUE, PETSC_FALSE));
8211 
8212   if (mesh->printSetValues) PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDOUT_SELF, A, point, numIndicesRow, indicesRow, numIndicesCol, indicesCol, valuesV2));
8213   /* TODO: fix this code to not use error codes as handle-able exceptions! */
8214   ierr = MatSetValues(A, numIndicesRow, indicesRow, numIndicesCol, indicesCol, valuesV2, mode);
8215   if (ierr) {
8216     PetscMPIInt rank;
8217 
8218     PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank));
8219     PetscCall((*PetscErrorPrintf)("[%d]ERROR in DMPlexMatSetClosure\n", rank));
8220     PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDERR_SELF, A, point, numIndicesRow, indicesRow, numIndicesCol, indicesCol, values));
8221     PetscCall(DMPlexRestoreClosureIndices(dmCol, sectionCol, globalSectionCol, point, PETSC_TRUE, &numIndicesCol, &indicesRow, NULL, (PetscScalar **)&valuesV2));
8222     PetscCall(DMPlexRestoreClosureIndices(dmRow, sectionRow, globalSectionRow, point, PETSC_TRUE, &numIndicesRow, &indicesRow, NULL, (PetscScalar **)&valuesV1));
8223     if (valuesV2 != valuesV1) PetscCall(DMRestoreWorkArray(dmCol, 0, MPIU_SCALAR, &valuesV2));
8224     if (valuesV1 != valuesV0) PetscCall(DMRestoreWorkArray(dmRow, 0, MPIU_SCALAR, &valuesV1));
8225   }
8226 
8227   PetscCall(DMPlexRestoreClosureIndices(dmCol, sectionCol, globalSectionCol, point, useColPerm, &numIndicesCol, &indicesCol, NULL, (PetscScalar **)&valuesV2));
8228   PetscCall(DMPlexRestoreClosureIndices(dmRow, sectionRow, globalSectionRow, point, useRowPerm, &numIndicesRow, &indicesRow, NULL, (PetscScalar **)&valuesV1));
8229   if (valuesV2 != valuesV1) PetscCall(DMRestoreWorkArray(dmCol, 0, MPIU_SCALAR, &valuesV2));
8230   if (valuesV1 != valuesV0) PetscCall(DMRestoreWorkArray(dmRow, 0, MPIU_SCALAR, &valuesV1));
8231   PetscFunctionReturn(PETSC_SUCCESS);
8232 }
8233 
8234 PetscErrorCode DMPlexMatSetClosureRefined(DM dmf, PetscSection fsection, PetscSection globalFSection, DM dmc, PetscSection csection, PetscSection globalCSection, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode)
8235 {
8236   DM_Plex        *mesh    = (DM_Plex *)dmf->data;
8237   PetscInt       *fpoints = NULL, *ftotpoints = NULL;
8238   PetscInt       *cpoints = NULL;
8239   PetscInt       *findices, *cindices;
8240   const PetscInt *fclperm = NULL, *cclperm = NULL; /* Closure permutations cannot work here */
8241   PetscInt        foffsets[32], coffsets[32];
8242   DMPolytopeType  ct;
8243   PetscInt        numFields, numSubcells, maxFPoints, numFPoints, numCPoints, numFIndices, numCIndices, dof, off, globalOff, pStart, pEnd, p, q, r, s, f;
8244   PetscErrorCode  ierr;
8245 
8246   PetscFunctionBegin;
8247   PetscValidHeaderSpecific(dmf, DM_CLASSID, 1);
8248   PetscValidHeaderSpecific(dmc, DM_CLASSID, 4);
8249   if (!fsection) PetscCall(DMGetLocalSection(dmf, &fsection));
8250   PetscValidHeaderSpecific(fsection, PETSC_SECTION_CLASSID, 2);
8251   if (!csection) PetscCall(DMGetLocalSection(dmc, &csection));
8252   PetscValidHeaderSpecific(csection, PETSC_SECTION_CLASSID, 5);
8253   if (!globalFSection) PetscCall(DMGetGlobalSection(dmf, &globalFSection));
8254   PetscValidHeaderSpecific(globalFSection, PETSC_SECTION_CLASSID, 3);
8255   if (!globalCSection) PetscCall(DMGetGlobalSection(dmc, &globalCSection));
8256   PetscValidHeaderSpecific(globalCSection, PETSC_SECTION_CLASSID, 6);
8257   PetscValidHeaderSpecific(A, MAT_CLASSID, 7);
8258   PetscCall(PetscSectionGetNumFields(fsection, &numFields));
8259   PetscCheck(numFields <= 31, PetscObjectComm((PetscObject)dmf), PETSC_ERR_ARG_OUTOFRANGE, "Number of fields %" PetscInt_FMT " limited to 31", numFields);
8260   PetscCall(PetscArrayzero(foffsets, 32));
8261   PetscCall(PetscArrayzero(coffsets, 32));
8262   /* Column indices */
8263   PetscCall(DMPlexGetTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints));
8264   maxFPoints = numCPoints;
8265   /* Compress out points not in the section */
8266   /*   TODO: Squeeze out points with 0 dof as well */
8267   PetscCall(PetscSectionGetChart(csection, &pStart, &pEnd));
8268   for (p = 0, q = 0; p < numCPoints * 2; p += 2) {
8269     if ((cpoints[p] >= pStart) && (cpoints[p] < pEnd)) {
8270       cpoints[q * 2]     = cpoints[p];
8271       cpoints[q * 2 + 1] = cpoints[p + 1];
8272       ++q;
8273     }
8274   }
8275   numCPoints = q;
8276   for (p = 0, numCIndices = 0; p < numCPoints * 2; p += 2) {
8277     PetscInt fdof;
8278 
8279     PetscCall(PetscSectionGetDof(csection, cpoints[p], &dof));
8280     if (!dof) continue;
8281     for (f = 0; f < numFields; ++f) {
8282       PetscCall(PetscSectionGetFieldDof(csection, cpoints[p], f, &fdof));
8283       coffsets[f + 1] += fdof;
8284     }
8285     numCIndices += dof;
8286   }
8287   for (f = 1; f < numFields; ++f) coffsets[f + 1] += coffsets[f];
8288   /* Row indices */
8289   PetscCall(DMPlexGetCellType(dmc, point, &ct));
8290   {
8291     DMPlexTransform tr;
8292     DMPolytopeType *rct;
8293     PetscInt       *rsize, *rcone, *rornt, Nt;
8294 
8295     PetscCall(DMPlexTransformCreate(PETSC_COMM_SELF, &tr));
8296     PetscCall(DMPlexTransformSetType(tr, DMPLEXREFINEREGULAR));
8297     PetscCall(DMPlexTransformCellTransform(tr, ct, point, NULL, &Nt, &rct, &rsize, &rcone, &rornt));
8298     numSubcells = rsize[Nt - 1];
8299     PetscCall(DMPlexTransformDestroy(&tr));
8300   }
8301   PetscCall(DMGetWorkArray(dmf, maxFPoints * 2 * numSubcells, MPIU_INT, &ftotpoints));
8302   for (r = 0, q = 0; r < numSubcells; ++r) {
8303     /* TODO Map from coarse to fine cells */
8304     PetscCall(DMPlexGetTransitiveClosure(dmf, point * numSubcells + r, PETSC_TRUE, &numFPoints, &fpoints));
8305     /* Compress out points not in the section */
8306     PetscCall(PetscSectionGetChart(fsection, &pStart, &pEnd));
8307     for (p = 0; p < numFPoints * 2; p += 2) {
8308       if ((fpoints[p] >= pStart) && (fpoints[p] < pEnd)) {
8309         PetscCall(PetscSectionGetDof(fsection, fpoints[p], &dof));
8310         if (!dof) continue;
8311         for (s = 0; s < q; ++s)
8312           if (fpoints[p] == ftotpoints[s * 2]) break;
8313         if (s < q) continue;
8314         ftotpoints[q * 2]     = fpoints[p];
8315         ftotpoints[q * 2 + 1] = fpoints[p + 1];
8316         ++q;
8317       }
8318     }
8319     PetscCall(DMPlexRestoreTransitiveClosure(dmf, point, PETSC_TRUE, &numFPoints, &fpoints));
8320   }
8321   numFPoints = q;
8322   for (p = 0, numFIndices = 0; p < numFPoints * 2; p += 2) {
8323     PetscInt fdof;
8324 
8325     PetscCall(PetscSectionGetDof(fsection, ftotpoints[p], &dof));
8326     if (!dof) continue;
8327     for (f = 0; f < numFields; ++f) {
8328       PetscCall(PetscSectionGetFieldDof(fsection, ftotpoints[p], f, &fdof));
8329       foffsets[f + 1] += fdof;
8330     }
8331     numFIndices += dof;
8332   }
8333   for (f = 1; f < numFields; ++f) foffsets[f + 1] += foffsets[f];
8334 
8335   PetscCheck(!numFields || foffsets[numFields] == numFIndices, PetscObjectComm((PetscObject)dmf), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, foffsets[numFields], numFIndices);
8336   PetscCheck(!numFields || coffsets[numFields] == numCIndices, PetscObjectComm((PetscObject)dmc), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, coffsets[numFields], numCIndices);
8337   PetscCall(DMGetWorkArray(dmf, numFIndices, MPIU_INT, &findices));
8338   PetscCall(DMGetWorkArray(dmc, numCIndices, MPIU_INT, &cindices));
8339   if (numFields) {
8340     const PetscInt **permsF[32] = {NULL};
8341     const PetscInt **permsC[32] = {NULL};
8342 
8343     for (f = 0; f < numFields; f++) {
8344       PetscCall(PetscSectionGetFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL));
8345       PetscCall(PetscSectionGetFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL));
8346     }
8347     for (p = 0; p < numFPoints; p++) {
8348       PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff));
8349       PetscCall(DMPlexGetIndicesPointFields_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, foffsets, PETSC_FALSE, permsF, p, fclperm, findices));
8350     }
8351     for (p = 0; p < numCPoints; p++) {
8352       PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff));
8353       PetscCall(DMPlexGetIndicesPointFields_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, coffsets, PETSC_FALSE, permsC, p, cclperm, cindices));
8354     }
8355     for (f = 0; f < numFields; f++) {
8356       PetscCall(PetscSectionRestoreFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL));
8357       PetscCall(PetscSectionRestoreFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL));
8358     }
8359   } else {
8360     const PetscInt **permsF = NULL;
8361     const PetscInt **permsC = NULL;
8362 
8363     PetscCall(PetscSectionGetPointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL));
8364     PetscCall(PetscSectionGetPointSyms(csection, numCPoints, cpoints, &permsC, NULL));
8365     for (p = 0, off = 0; p < numFPoints; p++) {
8366       const PetscInt *perm = permsF ? permsF[p] : NULL;
8367 
8368       PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff));
8369       PetscCall(DMPlexGetIndicesPoint_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, fclperm, findices));
8370     }
8371     for (p = 0, off = 0; p < numCPoints; p++) {
8372       const PetscInt *perm = permsC ? permsC[p] : NULL;
8373 
8374       PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff));
8375       PetscCall(DMPlexGetIndicesPoint_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, cclperm, cindices));
8376     }
8377     PetscCall(PetscSectionRestorePointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL));
8378     PetscCall(PetscSectionRestorePointSyms(csection, numCPoints, cpoints, &permsC, NULL));
8379   }
8380   if (mesh->printSetValues) PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDOUT_SELF, A, point, numFIndices, findices, numCIndices, cindices, values));
8381   /* TODO: flips */
8382   /* TODO: fix this code to not use error codes as handle-able exceptions! */
8383   ierr = MatSetValues(A, numFIndices, findices, numCIndices, cindices, values, mode);
8384   if (ierr) {
8385     PetscMPIInt rank;
8386 
8387     PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank));
8388     PetscCall((*PetscErrorPrintf)("[%d]ERROR in DMPlexMatSetClosure\n", rank));
8389     PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDERR_SELF, A, point, numFIndices, findices, numCIndices, cindices, values));
8390     PetscCall(DMRestoreWorkArray(dmf, numFIndices, MPIU_INT, &findices));
8391     PetscCall(DMRestoreWorkArray(dmc, numCIndices, MPIU_INT, &cindices));
8392   }
8393   PetscCall(DMRestoreWorkArray(dmf, numCPoints * 2 * 4, MPIU_INT, &ftotpoints));
8394   PetscCall(DMPlexRestoreTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints));
8395   PetscCall(DMRestoreWorkArray(dmf, numFIndices, MPIU_INT, &findices));
8396   PetscCall(DMRestoreWorkArray(dmc, numCIndices, MPIU_INT, &cindices));
8397   PetscFunctionReturn(PETSC_SUCCESS);
8398 }
8399 
8400 PetscErrorCode DMPlexMatGetClosureIndicesRefined(DM dmf, PetscSection fsection, PetscSection globalFSection, DM dmc, PetscSection csection, PetscSection globalCSection, PetscInt point, PetscInt cindices[], PetscInt findices[])
8401 {
8402   PetscInt       *fpoints = NULL, *ftotpoints = NULL;
8403   PetscInt       *cpoints      = NULL;
8404   PetscInt        foffsets[32] = {0}, coffsets[32] = {0};
8405   const PetscInt *fclperm = NULL, *cclperm = NULL; /* Closure permutations cannot work here */
8406   DMPolytopeType  ct;
8407   PetscInt        numFields, numSubcells, maxFPoints, numFPoints, numCPoints, numFIndices, numCIndices, dof, off, globalOff, pStart, pEnd, p, q, r, s, f;
8408 
8409   PetscFunctionBegin;
8410   PetscValidHeaderSpecific(dmf, DM_CLASSID, 1);
8411   PetscValidHeaderSpecific(dmc, DM_CLASSID, 4);
8412   if (!fsection) PetscCall(DMGetLocalSection(dmf, &fsection));
8413   PetscValidHeaderSpecific(fsection, PETSC_SECTION_CLASSID, 2);
8414   if (!csection) PetscCall(DMGetLocalSection(dmc, &csection));
8415   PetscValidHeaderSpecific(csection, PETSC_SECTION_CLASSID, 5);
8416   if (!globalFSection) PetscCall(DMGetGlobalSection(dmf, &globalFSection));
8417   PetscValidHeaderSpecific(globalFSection, PETSC_SECTION_CLASSID, 3);
8418   if (!globalCSection) PetscCall(DMGetGlobalSection(dmc, &globalCSection));
8419   PetscValidHeaderSpecific(globalCSection, PETSC_SECTION_CLASSID, 6);
8420   PetscCall(PetscSectionGetNumFields(fsection, &numFields));
8421   PetscCheck(numFields <= 31, PetscObjectComm((PetscObject)dmf), PETSC_ERR_ARG_OUTOFRANGE, "Number of fields %" PetscInt_FMT " limited to 31", numFields);
8422   /* Column indices */
8423   PetscCall(DMPlexGetTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints));
8424   maxFPoints = numCPoints;
8425   /* Compress out points not in the section */
8426   /*   TODO: Squeeze out points with 0 dof as well */
8427   PetscCall(PetscSectionGetChart(csection, &pStart, &pEnd));
8428   for (p = 0, q = 0; p < numCPoints * 2; p += 2) {
8429     if ((cpoints[p] >= pStart) && (cpoints[p] < pEnd)) {
8430       cpoints[q * 2]     = cpoints[p];
8431       cpoints[q * 2 + 1] = cpoints[p + 1];
8432       ++q;
8433     }
8434   }
8435   numCPoints = q;
8436   for (p = 0, numCIndices = 0; p < numCPoints * 2; p += 2) {
8437     PetscInt fdof;
8438 
8439     PetscCall(PetscSectionGetDof(csection, cpoints[p], &dof));
8440     if (!dof) continue;
8441     for (f = 0; f < numFields; ++f) {
8442       PetscCall(PetscSectionGetFieldDof(csection, cpoints[p], f, &fdof));
8443       coffsets[f + 1] += fdof;
8444     }
8445     numCIndices += dof;
8446   }
8447   for (f = 1; f < numFields; ++f) coffsets[f + 1] += coffsets[f];
8448   /* Row indices */
8449   PetscCall(DMPlexGetCellType(dmc, point, &ct));
8450   {
8451     DMPlexTransform tr;
8452     DMPolytopeType *rct;
8453     PetscInt       *rsize, *rcone, *rornt, Nt;
8454 
8455     PetscCall(DMPlexTransformCreate(PETSC_COMM_SELF, &tr));
8456     PetscCall(DMPlexTransformSetType(tr, DMPLEXREFINEREGULAR));
8457     PetscCall(DMPlexTransformCellTransform(tr, ct, point, NULL, &Nt, &rct, &rsize, &rcone, &rornt));
8458     numSubcells = rsize[Nt - 1];
8459     PetscCall(DMPlexTransformDestroy(&tr));
8460   }
8461   PetscCall(DMGetWorkArray(dmf, maxFPoints * 2 * numSubcells, MPIU_INT, &ftotpoints));
8462   for (r = 0, q = 0; r < numSubcells; ++r) {
8463     /* TODO Map from coarse to fine cells */
8464     PetscCall(DMPlexGetTransitiveClosure(dmf, point * numSubcells + r, PETSC_TRUE, &numFPoints, &fpoints));
8465     /* Compress out points not in the section */
8466     PetscCall(PetscSectionGetChart(fsection, &pStart, &pEnd));
8467     for (p = 0; p < numFPoints * 2; p += 2) {
8468       if ((fpoints[p] >= pStart) && (fpoints[p] < pEnd)) {
8469         PetscCall(PetscSectionGetDof(fsection, fpoints[p], &dof));
8470         if (!dof) continue;
8471         for (s = 0; s < q; ++s)
8472           if (fpoints[p] == ftotpoints[s * 2]) break;
8473         if (s < q) continue;
8474         ftotpoints[q * 2]     = fpoints[p];
8475         ftotpoints[q * 2 + 1] = fpoints[p + 1];
8476         ++q;
8477       }
8478     }
8479     PetscCall(DMPlexRestoreTransitiveClosure(dmf, point, PETSC_TRUE, &numFPoints, &fpoints));
8480   }
8481   numFPoints = q;
8482   for (p = 0, numFIndices = 0; p < numFPoints * 2; p += 2) {
8483     PetscInt fdof;
8484 
8485     PetscCall(PetscSectionGetDof(fsection, ftotpoints[p], &dof));
8486     if (!dof) continue;
8487     for (f = 0; f < numFields; ++f) {
8488       PetscCall(PetscSectionGetFieldDof(fsection, ftotpoints[p], f, &fdof));
8489       foffsets[f + 1] += fdof;
8490     }
8491     numFIndices += dof;
8492   }
8493   for (f = 1; f < numFields; ++f) foffsets[f + 1] += foffsets[f];
8494 
8495   PetscCheck(!numFields || foffsets[numFields] == numFIndices, PetscObjectComm((PetscObject)dmf), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, foffsets[numFields], numFIndices);
8496   PetscCheck(!numFields || coffsets[numFields] == numCIndices, PetscObjectComm((PetscObject)dmc), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, coffsets[numFields], numCIndices);
8497   if (numFields) {
8498     const PetscInt **permsF[32] = {NULL};
8499     const PetscInt **permsC[32] = {NULL};
8500 
8501     for (f = 0; f < numFields; f++) {
8502       PetscCall(PetscSectionGetFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL));
8503       PetscCall(PetscSectionGetFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL));
8504     }
8505     for (p = 0; p < numFPoints; p++) {
8506       PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff));
8507       PetscCall(DMPlexGetIndicesPointFields_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, foffsets, PETSC_FALSE, permsF, p, fclperm, findices));
8508     }
8509     for (p = 0; p < numCPoints; p++) {
8510       PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff));
8511       PetscCall(DMPlexGetIndicesPointFields_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, coffsets, PETSC_FALSE, permsC, p, cclperm, cindices));
8512     }
8513     for (f = 0; f < numFields; f++) {
8514       PetscCall(PetscSectionRestoreFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL));
8515       PetscCall(PetscSectionRestoreFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL));
8516     }
8517   } else {
8518     const PetscInt **permsF = NULL;
8519     const PetscInt **permsC = NULL;
8520 
8521     PetscCall(PetscSectionGetPointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL));
8522     PetscCall(PetscSectionGetPointSyms(csection, numCPoints, cpoints, &permsC, NULL));
8523     for (p = 0, off = 0; p < numFPoints; p++) {
8524       const PetscInt *perm = permsF ? permsF[p] : NULL;
8525 
8526       PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff));
8527       PetscCall(DMPlexGetIndicesPoint_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, fclperm, findices));
8528     }
8529     for (p = 0, off = 0; p < numCPoints; p++) {
8530       const PetscInt *perm = permsC ? permsC[p] : NULL;
8531 
8532       PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff));
8533       PetscCall(DMPlexGetIndicesPoint_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, cclperm, cindices));
8534     }
8535     PetscCall(PetscSectionRestorePointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL));
8536     PetscCall(PetscSectionRestorePointSyms(csection, numCPoints, cpoints, &permsC, NULL));
8537   }
8538   PetscCall(DMRestoreWorkArray(dmf, numCPoints * 2 * 4, MPIU_INT, &ftotpoints));
8539   PetscCall(DMPlexRestoreTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints));
8540   PetscFunctionReturn(PETSC_SUCCESS);
8541 }
8542 
8543 /*@C
8544   DMPlexGetVTKCellHeight - Returns the height in the DAG used to determine which points are cells (normally 0)
8545 
8546   Input Parameter:
8547 . dm - The `DMPLEX` object
8548 
8549   Output Parameter:
8550 . cellHeight - The height of a cell
8551 
8552   Level: developer
8553 
8554 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetVTKCellHeight()`
8555 @*/
8556 PetscErrorCode DMPlexGetVTKCellHeight(DM dm, PetscInt *cellHeight)
8557 {
8558   DM_Plex *mesh = (DM_Plex *)dm->data;
8559 
8560   PetscFunctionBegin;
8561   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8562   PetscAssertPointer(cellHeight, 2);
8563   *cellHeight = mesh->vtkCellHeight;
8564   PetscFunctionReturn(PETSC_SUCCESS);
8565 }
8566 
8567 /*@C
8568   DMPlexSetVTKCellHeight - Sets the height in the DAG used to determine which points are cells (normally 0)
8569 
8570   Input Parameters:
8571 + dm         - The `DMPLEX` object
8572 - cellHeight - The height of a cell
8573 
8574   Level: developer
8575 
8576 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetVTKCellHeight()`
8577 @*/
8578 PetscErrorCode DMPlexSetVTKCellHeight(DM dm, PetscInt cellHeight)
8579 {
8580   DM_Plex *mesh = (DM_Plex *)dm->data;
8581 
8582   PetscFunctionBegin;
8583   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8584   mesh->vtkCellHeight = cellHeight;
8585   PetscFunctionReturn(PETSC_SUCCESS);
8586 }
8587 
8588 /*@
8589   DMPlexGetCellTypeStratum - Get the range of cells of a given celltype
8590 
8591   Input Parameters:
8592 + dm - The `DMPLEX` object
8593 - ct - The `DMPolytopeType` of the cell
8594 
8595   Output Parameters:
8596 + start - The first cell of this type, or `NULL`
8597 - end   - The upper bound on this celltype, or `NULL`
8598 
8599   Level: advanced
8600 
8601 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexConstructGhostCells()`, `DMPlexGetDepthStratum()`, `DMPlexGetHeightStratum()`
8602 @*/
8603 PetscErrorCode DMPlexGetCellTypeStratum(DM dm, DMPolytopeType ct, PetscInt *start, PetscInt *end)
8604 {
8605   DM_Plex *mesh = (DM_Plex *)dm->data;
8606   DMLabel  label;
8607   PetscInt pStart, pEnd;
8608 
8609   PetscFunctionBegin;
8610   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8611   if (start) {
8612     PetscAssertPointer(start, 3);
8613     *start = 0;
8614   }
8615   if (end) {
8616     PetscAssertPointer(end, 4);
8617     *end = 0;
8618   }
8619   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
8620   if (pStart == pEnd) PetscFunctionReturn(PETSC_SUCCESS);
8621   if (mesh->tr) {
8622     PetscCall(DMPlexTransformGetCellTypeStratum(mesh->tr, ct, start, end));
8623   } else {
8624     PetscCall(DMPlexGetCellTypeLabel(dm, &label));
8625     PetscCheck(label, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "No label named celltype was found");
8626     PetscCall(DMLabelGetStratumBounds(label, ct, start, end));
8627   }
8628   PetscFunctionReturn(PETSC_SUCCESS);
8629 }
8630 
8631 PetscErrorCode DMPlexCreateNumbering_Plex(DM dm, PetscInt pStart, PetscInt pEnd, PetscInt shift, PetscInt *globalSize, PetscSF sf, IS *numbering)
8632 {
8633   PetscSection section, globalSection;
8634   PetscInt    *numbers, p;
8635 
8636   PetscFunctionBegin;
8637   if (PetscDefined(USE_DEBUG)) PetscCall(DMPlexCheckPointSF(dm, sf, PETSC_TRUE));
8638   PetscCall(PetscSectionCreate(PetscObjectComm((PetscObject)dm), &section));
8639   PetscCall(PetscSectionSetChart(section, pStart, pEnd));
8640   for (p = pStart; p < pEnd; ++p) PetscCall(PetscSectionSetDof(section, p, 1));
8641   PetscCall(PetscSectionSetUp(section));
8642   PetscCall(PetscSectionCreateGlobalSection(section, sf, PETSC_TRUE, PETSC_FALSE, PETSC_FALSE, &globalSection));
8643   PetscCall(PetscMalloc1(pEnd - pStart, &numbers));
8644   for (p = pStart; p < pEnd; ++p) {
8645     PetscCall(PetscSectionGetOffset(globalSection, p, &numbers[p - pStart]));
8646     if (numbers[p - pStart] < 0) numbers[p - pStart] -= shift;
8647     else numbers[p - pStart] += shift;
8648   }
8649   PetscCall(ISCreateGeneral(PetscObjectComm((PetscObject)dm), pEnd - pStart, numbers, PETSC_OWN_POINTER, numbering));
8650   if (globalSize) {
8651     PetscLayout layout;
8652     PetscCall(PetscSectionGetPointLayout(PetscObjectComm((PetscObject)dm), globalSection, &layout));
8653     PetscCall(PetscLayoutGetSize(layout, globalSize));
8654     PetscCall(PetscLayoutDestroy(&layout));
8655   }
8656   PetscCall(PetscSectionDestroy(&section));
8657   PetscCall(PetscSectionDestroy(&globalSection));
8658   PetscFunctionReturn(PETSC_SUCCESS);
8659 }
8660 
8661 PetscErrorCode DMPlexCreateCellNumbering_Internal(DM dm, PetscBool includeHybrid, IS *globalCellNumbers)
8662 {
8663   PetscInt cellHeight, cStart, cEnd;
8664 
8665   PetscFunctionBegin;
8666   PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
8667   if (includeHybrid) PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd));
8668   else PetscCall(DMPlexGetSimplexOrBoxCells(dm, cellHeight, &cStart, &cEnd));
8669   PetscCall(DMPlexCreateNumbering_Plex(dm, cStart, cEnd, 0, NULL, dm->sf, globalCellNumbers));
8670   PetscFunctionReturn(PETSC_SUCCESS);
8671 }
8672 
8673 /*@
8674   DMPlexGetCellNumbering - Get a global cell numbering for all cells on this process
8675 
8676   Input Parameter:
8677 . dm - The `DMPLEX` object
8678 
8679   Output Parameter:
8680 . globalCellNumbers - Global cell numbers for all cells on this process
8681 
8682   Level: developer
8683 
8684 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetVertexNumbering()`
8685 @*/
8686 PetscErrorCode DMPlexGetCellNumbering(DM dm, IS *globalCellNumbers)
8687 {
8688   DM_Plex *mesh = (DM_Plex *)dm->data;
8689 
8690   PetscFunctionBegin;
8691   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8692   if (!mesh->globalCellNumbers) PetscCall(DMPlexCreateCellNumbering_Internal(dm, PETSC_FALSE, &mesh->globalCellNumbers));
8693   *globalCellNumbers = mesh->globalCellNumbers;
8694   PetscFunctionReturn(PETSC_SUCCESS);
8695 }
8696 
8697 PetscErrorCode DMPlexCreateVertexNumbering_Internal(DM dm, PetscBool includeHybrid, IS *globalVertexNumbers)
8698 {
8699   PetscInt vStart, vEnd;
8700 
8701   PetscFunctionBegin;
8702   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8703   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
8704   PetscCall(DMPlexCreateNumbering_Plex(dm, vStart, vEnd, 0, NULL, dm->sf, globalVertexNumbers));
8705   PetscFunctionReturn(PETSC_SUCCESS);
8706 }
8707 
8708 /*@
8709   DMPlexGetVertexNumbering - Get a global vertex numbering for all vertices on this process
8710 
8711   Input Parameter:
8712 . dm - The `DMPLEX` object
8713 
8714   Output Parameter:
8715 . globalVertexNumbers - Global vertex numbers for all vertices on this process
8716 
8717   Level: developer
8718 
8719 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellNumbering()`
8720 @*/
8721 PetscErrorCode DMPlexGetVertexNumbering(DM dm, IS *globalVertexNumbers)
8722 {
8723   DM_Plex *mesh = (DM_Plex *)dm->data;
8724 
8725   PetscFunctionBegin;
8726   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8727   if (!mesh->globalVertexNumbers) PetscCall(DMPlexCreateVertexNumbering_Internal(dm, PETSC_FALSE, &mesh->globalVertexNumbers));
8728   *globalVertexNumbers = mesh->globalVertexNumbers;
8729   PetscFunctionReturn(PETSC_SUCCESS);
8730 }
8731 
8732 /*@
8733   DMPlexCreatePointNumbering - Create a global numbering for all points.
8734 
8735   Collective
8736 
8737   Input Parameter:
8738 . dm - The `DMPLEX` object
8739 
8740   Output Parameter:
8741 . globalPointNumbers - Global numbers for all points on this process
8742 
8743   Level: developer
8744 
8745   Notes:
8746   The point numbering `IS` is parallel, with local portion indexed by local points (see `DMGetLocalSection()`). The global
8747   points are taken as stratified, with each MPI rank owning a contiguous subset of each stratum. In the IS, owned points
8748   will have their non-negative value while points owned by different ranks will be involuted -(idx+1). As an example,
8749   consider a parallel mesh in which the first two elements and first two vertices are owned by rank 0.
8750 
8751   The partitioned mesh is
8752   ```
8753   (2)--0--(3)--1--(4)    (1)--0--(2)
8754   ```
8755   and its global numbering is
8756   ```
8757   (3)--0--(4)--1--(5)--2--(6)
8758   ```
8759   Then the global numbering is provided as
8760   ```
8761   [0] Number of indices in set 5
8762   [0] 0 0
8763   [0] 1 1
8764   [0] 2 3
8765   [0] 3 4
8766   [0] 4 -6
8767   [1] Number of indices in set 3
8768   [1] 0 2
8769   [1] 1 5
8770   [1] 2 6
8771   ```
8772 
8773 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellNumbering()`
8774 @*/
8775 PetscErrorCode DMPlexCreatePointNumbering(DM dm, IS *globalPointNumbers)
8776 {
8777   IS        nums[4];
8778   PetscInt  depths[4], gdepths[4], starts[4];
8779   PetscInt  depth, d, shift = 0;
8780   PetscBool empty = PETSC_FALSE;
8781 
8782   PetscFunctionBegin;
8783   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8784   PetscCall(DMPlexGetDepth(dm, &depth));
8785   // For unstratified meshes use dim instead of depth
8786   if (depth < 0) PetscCall(DMGetDimension(dm, &depth));
8787   // If any stratum is empty, we must mark all empty
8788   for (d = 0; d <= depth; ++d) {
8789     PetscInt end;
8790 
8791     depths[d] = depth - d;
8792     PetscCall(DMPlexGetDepthStratum(dm, depths[d], &starts[d], &end));
8793     if (!(starts[d] - end)) empty = PETSC_TRUE;
8794   }
8795   if (empty)
8796     for (d = 0; d <= depth; ++d) {
8797       depths[d] = -1;
8798       starts[d] = -1;
8799     }
8800   else PetscCall(PetscSortIntWithArray(depth + 1, starts, depths));
8801   PetscCall(MPIU_Allreduce(depths, gdepths, depth + 1, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm)));
8802   for (d = 0; d <= depth; ++d) PetscCheck(starts[d] < 0 || depths[d] == gdepths[d], PETSC_COMM_SELF, PETSC_ERR_PLIB, "Expected depth %" PetscInt_FMT ", found %" PetscInt_FMT, depths[d], gdepths[d]);
8803   // Note here that 'shift' is collective, so that the numbering is stratified by depth
8804   for (d = 0; d <= depth; ++d) {
8805     PetscInt pStart, pEnd, gsize;
8806 
8807     PetscCall(DMPlexGetDepthStratum(dm, gdepths[d], &pStart, &pEnd));
8808     PetscCall(DMPlexCreateNumbering_Plex(dm, pStart, pEnd, shift, &gsize, dm->sf, &nums[d]));
8809     shift += gsize;
8810   }
8811   PetscCall(ISConcatenate(PETSC_COMM_SELF, depth + 1, nums, globalPointNumbers));
8812   for (d = 0; d <= depth; ++d) PetscCall(ISDestroy(&nums[d]));
8813   PetscFunctionReturn(PETSC_SUCCESS);
8814 }
8815 
8816 /*@
8817   DMPlexCreateRankField - Create a cell field whose value is the rank of the owner
8818 
8819   Input Parameter:
8820 . dm - The `DMPLEX` object
8821 
8822   Output Parameter:
8823 . ranks - The rank field
8824 
8825   Options Database Key:
8826 . -dm_partition_view - Adds the rank field into the `DM` output from `-dm_view` using the same viewer
8827 
8828   Level: intermediate
8829 
8830 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`
8831 @*/
8832 PetscErrorCode DMPlexCreateRankField(DM dm, Vec *ranks)
8833 {
8834   DM             rdm;
8835   PetscFE        fe;
8836   PetscScalar   *r;
8837   PetscMPIInt    rank;
8838   DMPolytopeType ct;
8839   PetscInt       dim, cStart, cEnd, c;
8840   PetscBool      simplex;
8841 
8842   PetscFunctionBeginUser;
8843   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8844   PetscAssertPointer(ranks, 2);
8845   PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
8846   PetscCall(DMClone(dm, &rdm));
8847   PetscCall(DMGetDimension(rdm, &dim));
8848   PetscCall(DMPlexGetHeightStratum(rdm, 0, &cStart, &cEnd));
8849   PetscCall(DMPlexGetCellType(dm, cStart, &ct));
8850   simplex = DMPolytopeTypeGetNumVertices(ct) == DMPolytopeTypeGetDim(ct) + 1 ? PETSC_TRUE : PETSC_FALSE;
8851   PetscCall(PetscFECreateDefault(PETSC_COMM_SELF, dim, 1, simplex, "PETSc___rank_", -1, &fe));
8852   PetscCall(PetscObjectSetName((PetscObject)fe, "rank"));
8853   PetscCall(DMSetField(rdm, 0, NULL, (PetscObject)fe));
8854   PetscCall(PetscFEDestroy(&fe));
8855   PetscCall(DMCreateDS(rdm));
8856   PetscCall(DMCreateGlobalVector(rdm, ranks));
8857   PetscCall(PetscObjectSetName((PetscObject)*ranks, "partition"));
8858   PetscCall(VecGetArray(*ranks, &r));
8859   for (c = cStart; c < cEnd; ++c) {
8860     PetscScalar *lr;
8861 
8862     PetscCall(DMPlexPointGlobalRef(rdm, c, r, &lr));
8863     if (lr) *lr = rank;
8864   }
8865   PetscCall(VecRestoreArray(*ranks, &r));
8866   PetscCall(DMDestroy(&rdm));
8867   PetscFunctionReturn(PETSC_SUCCESS);
8868 }
8869 
8870 /*@
8871   DMPlexCreateLabelField - Create a field whose value is the label value for that point
8872 
8873   Input Parameters:
8874 + dm    - The `DMPLEX`
8875 - label - The `DMLabel`
8876 
8877   Output Parameter:
8878 . val - The label value field
8879 
8880   Options Database Key:
8881 . -dm_label_view - Adds the label value field into the `DM` output from `-dm_view` using the same viewer
8882 
8883   Level: intermediate
8884 
8885 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`
8886 @*/
8887 PetscErrorCode DMPlexCreateLabelField(DM dm, DMLabel label, Vec *val)
8888 {
8889   DM             rdm, plex;
8890   Vec            lval;
8891   PetscSection   section;
8892   PetscFE        fe;
8893   PetscScalar   *v;
8894   PetscInt       dim, pStart, pEnd, p, cStart;
8895   DMPolytopeType ct;
8896   char           name[PETSC_MAX_PATH_LEN];
8897   const char    *lname, *prefix;
8898 
8899   PetscFunctionBeginUser;
8900   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8901   PetscAssertPointer(label, 2);
8902   PetscAssertPointer(val, 3);
8903   PetscCall(DMClone(dm, &rdm));
8904   PetscCall(DMConvert(rdm, DMPLEX, &plex));
8905   PetscCall(DMPlexGetHeightStratum(plex, 0, &cStart, NULL));
8906   PetscCall(DMPlexGetCellType(plex, cStart, &ct));
8907   PetscCall(DMDestroy(&plex));
8908   PetscCall(DMGetDimension(rdm, &dim));
8909   PetscCall(DMGetOptionsPrefix(dm, &prefix));
8910   PetscCall(PetscObjectGetName((PetscObject)label, &lname));
8911   PetscCall(PetscSNPrintf(name, sizeof(name), "%s%s_", prefix ? prefix : "", lname));
8912   PetscCall(PetscFECreateByCell(PETSC_COMM_SELF, dim, 1, ct, name, -1, &fe));
8913   PetscCall(PetscObjectSetName((PetscObject)fe, ""));
8914   PetscCall(DMSetField(rdm, 0, NULL, (PetscObject)fe));
8915   PetscCall(PetscFEDestroy(&fe));
8916   PetscCall(DMCreateDS(rdm));
8917   PetscCall(DMCreateGlobalVector(rdm, val));
8918   PetscCall(DMCreateLocalVector(rdm, &lval));
8919   PetscCall(PetscObjectSetName((PetscObject)*val, lname));
8920   PetscCall(DMGetLocalSection(rdm, &section));
8921   PetscCall(PetscSectionGetChart(section, &pStart, &pEnd));
8922   PetscCall(VecGetArray(lval, &v));
8923   for (p = pStart; p < pEnd; ++p) {
8924     PetscInt cval, dof, off;
8925 
8926     PetscCall(PetscSectionGetDof(section, p, &dof));
8927     if (!dof) continue;
8928     PetscCall(DMLabelGetValue(label, p, &cval));
8929     PetscCall(PetscSectionGetOffset(section, p, &off));
8930     for (PetscInt d = 0; d < dof; d++) v[off + d] = cval;
8931   }
8932   PetscCall(VecRestoreArray(lval, &v));
8933   PetscCall(DMLocalToGlobal(rdm, lval, INSERT_VALUES, *val));
8934   PetscCall(VecDestroy(&lval));
8935   PetscCall(DMDestroy(&rdm));
8936   PetscFunctionReturn(PETSC_SUCCESS);
8937 }
8938 
8939 /*@
8940   DMPlexCheckSymmetry - Check that the adjacency information in the mesh is symmetric.
8941 
8942   Input Parameter:
8943 . dm - The `DMPLEX` object
8944 
8945   Level: developer
8946 
8947   Notes:
8948   This is a useful diagnostic when creating meshes programmatically.
8949 
8950   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
8951 
8952 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()`
8953 @*/
8954 PetscErrorCode DMPlexCheckSymmetry(DM dm)
8955 {
8956   PetscSection    coneSection, supportSection;
8957   const PetscInt *cone, *support;
8958   PetscInt        coneSize, c, supportSize, s;
8959   PetscInt        pStart, pEnd, p, pp, csize, ssize;
8960   PetscBool       storagecheck = PETSC_TRUE;
8961 
8962   PetscFunctionBegin;
8963   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
8964   PetscCall(DMViewFromOptions(dm, NULL, "-sym_dm_view"));
8965   PetscCall(DMPlexGetConeSection(dm, &coneSection));
8966   PetscCall(DMPlexGetSupportSection(dm, &supportSection));
8967   /* Check that point p is found in the support of its cone points, and vice versa */
8968   PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
8969   for (p = pStart; p < pEnd; ++p) {
8970     PetscCall(DMPlexGetConeSize(dm, p, &coneSize));
8971     PetscCall(DMPlexGetCone(dm, p, &cone));
8972     for (c = 0; c < coneSize; ++c) {
8973       PetscBool dup = PETSC_FALSE;
8974       PetscInt  d;
8975       for (d = c - 1; d >= 0; --d) {
8976         if (cone[c] == cone[d]) {
8977           dup = PETSC_TRUE;
8978           break;
8979         }
8980       }
8981       PetscCall(DMPlexGetSupportSize(dm, cone[c], &supportSize));
8982       PetscCall(DMPlexGetSupport(dm, cone[c], &support));
8983       for (s = 0; s < supportSize; ++s) {
8984         if (support[s] == p) break;
8985       }
8986       if ((s >= supportSize) || (dup && (support[s + 1] != p))) {
8987         PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " cone: ", p));
8988         for (s = 0; s < coneSize; ++s) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", cone[s]));
8989         PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n"));
8990         PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " support: ", cone[c]));
8991         for (s = 0; s < supportSize; ++s) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", support[s]));
8992         PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n"));
8993         PetscCheck(!dup, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point %" PetscInt_FMT " not repeatedly found in support of repeated cone point %" PetscInt_FMT, p, cone[c]);
8994         SETERRQ(PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point %" PetscInt_FMT " not found in support of cone point %" PetscInt_FMT, p, cone[c]);
8995       }
8996     }
8997     PetscCall(DMPlexGetTreeParent(dm, p, &pp, NULL));
8998     if (p != pp) {
8999       storagecheck = PETSC_FALSE;
9000       continue;
9001     }
9002     PetscCall(DMPlexGetSupportSize(dm, p, &supportSize));
9003     PetscCall(DMPlexGetSupport(dm, p, &support));
9004     for (s = 0; s < supportSize; ++s) {
9005       PetscCall(DMPlexGetConeSize(dm, support[s], &coneSize));
9006       PetscCall(DMPlexGetCone(dm, support[s], &cone));
9007       for (c = 0; c < coneSize; ++c) {
9008         PetscCall(DMPlexGetTreeParent(dm, cone[c], &pp, NULL));
9009         if (cone[c] != pp) {
9010           c = 0;
9011           break;
9012         }
9013         if (cone[c] == p) break;
9014       }
9015       if (c >= coneSize) {
9016         PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " support: ", p));
9017         for (c = 0; c < supportSize; ++c) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", support[c]));
9018         PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n"));
9019         PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " cone: ", support[s]));
9020         for (c = 0; c < coneSize; ++c) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", cone[c]));
9021         PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n"));
9022         SETERRQ(PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point %" PetscInt_FMT " not found in cone of support point %" PetscInt_FMT, p, support[s]);
9023       }
9024     }
9025   }
9026   if (storagecheck) {
9027     PetscCall(PetscSectionGetStorageSize(coneSection, &csize));
9028     PetscCall(PetscSectionGetStorageSize(supportSection, &ssize));
9029     PetscCheck(csize == ssize, PETSC_COMM_SELF, PETSC_ERR_ARG_SIZ, "Total cone size %" PetscInt_FMT " != Total support size %" PetscInt_FMT, csize, ssize);
9030   }
9031   PetscFunctionReturn(PETSC_SUCCESS);
9032 }
9033 
9034 /*
9035   For submeshes with cohesive cells (see DMPlexConstructCohesiveCells()), we allow a special case where some of the boundary of a face (edges and vertices) are not duplicated. We call these special boundary points "unsplit", since the same edge or vertex appears in both copies of the face. These unsplit points throw off our counting, so we have to explicitly account for them here.
9036 */
9037 static PetscErrorCode DMPlexCellUnsplitVertices_Private(DM dm, PetscInt c, DMPolytopeType ct, PetscInt *unsplit)
9038 {
9039   DMPolytopeType  cct;
9040   PetscInt        ptpoints[4];
9041   const PetscInt *cone, *ccone, *ptcone;
9042   PetscInt        coneSize, cp, cconeSize, ccp, npt = 0, pt;
9043 
9044   PetscFunctionBegin;
9045   *unsplit = 0;
9046   switch (ct) {
9047   case DM_POLYTOPE_POINT_PRISM_TENSOR:
9048     ptpoints[npt++] = c;
9049     break;
9050   case DM_POLYTOPE_SEG_PRISM_TENSOR:
9051     PetscCall(DMPlexGetCone(dm, c, &cone));
9052     PetscCall(DMPlexGetConeSize(dm, c, &coneSize));
9053     for (cp = 0; cp < coneSize; ++cp) {
9054       PetscCall(DMPlexGetCellType(dm, cone[cp], &cct));
9055       if (cct == DM_POLYTOPE_POINT_PRISM_TENSOR) ptpoints[npt++] = cone[cp];
9056     }
9057     break;
9058   case DM_POLYTOPE_TRI_PRISM_TENSOR:
9059   case DM_POLYTOPE_QUAD_PRISM_TENSOR:
9060     PetscCall(DMPlexGetCone(dm, c, &cone));
9061     PetscCall(DMPlexGetConeSize(dm, c, &coneSize));
9062     for (cp = 0; cp < coneSize; ++cp) {
9063       PetscCall(DMPlexGetCone(dm, cone[cp], &ccone));
9064       PetscCall(DMPlexGetConeSize(dm, cone[cp], &cconeSize));
9065       for (ccp = 0; ccp < cconeSize; ++ccp) {
9066         PetscCall(DMPlexGetCellType(dm, ccone[ccp], &cct));
9067         if (cct == DM_POLYTOPE_POINT_PRISM_TENSOR) {
9068           PetscInt p;
9069           for (p = 0; p < npt; ++p)
9070             if (ptpoints[p] == ccone[ccp]) break;
9071           if (p == npt) ptpoints[npt++] = ccone[ccp];
9072         }
9073       }
9074     }
9075     break;
9076   default:
9077     break;
9078   }
9079   for (pt = 0; pt < npt; ++pt) {
9080     PetscCall(DMPlexGetCone(dm, ptpoints[pt], &ptcone));
9081     if (ptcone[0] == ptcone[1]) ++(*unsplit);
9082   }
9083   PetscFunctionReturn(PETSC_SUCCESS);
9084 }
9085 
9086 /*@
9087   DMPlexCheckSkeleton - Check that each cell has the correct number of vertices
9088 
9089   Input Parameters:
9090 + dm         - The `DMPLEX` object
9091 - cellHeight - Normally 0
9092 
9093   Level: developer
9094 
9095   Notes:
9096   This is a useful diagnostic when creating meshes programmatically.
9097   Currently applicable only to homogeneous simplex or tensor meshes.
9098 
9099   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
9100 
9101 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()`
9102 @*/
9103 PetscErrorCode DMPlexCheckSkeleton(DM dm, PetscInt cellHeight)
9104 {
9105   DMPlexInterpolatedFlag interp;
9106   DMPolytopeType         ct;
9107   PetscInt               vStart, vEnd, cStart, cEnd, c;
9108 
9109   PetscFunctionBegin;
9110   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9111   PetscCall(DMPlexIsInterpolated(dm, &interp));
9112   PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd));
9113   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
9114   for (c = cStart; c < cEnd; ++c) {
9115     PetscInt *closure = NULL;
9116     PetscInt  coneSize, closureSize, cl, Nv = 0;
9117 
9118     PetscCall(DMPlexGetCellType(dm, c, &ct));
9119     PetscCheck((PetscInt)ct >= 0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cell %" PetscInt_FMT " has no cell type", c);
9120     if (ct == DM_POLYTOPE_UNKNOWN) continue;
9121     if (interp == DMPLEX_INTERPOLATED_FULL) {
9122       PetscCall(DMPlexGetConeSize(dm, c, &coneSize));
9123       PetscCheck(coneSize == DMPolytopeTypeGetConeSize(ct), PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cell %" PetscInt_FMT " of type %s has cone size %" PetscInt_FMT " != %" PetscInt_FMT, c, DMPolytopeTypes[ct], coneSize, DMPolytopeTypeGetConeSize(ct));
9124     }
9125     PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
9126     for (cl = 0; cl < closureSize * 2; cl += 2) {
9127       const PetscInt p = closure[cl];
9128       if ((p >= vStart) && (p < vEnd)) ++Nv;
9129     }
9130     PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
9131     /* Special Case: Tensor faces with identified vertices */
9132     if (Nv < DMPolytopeTypeGetNumVertices(ct)) {
9133       PetscInt unsplit;
9134 
9135       PetscCall(DMPlexCellUnsplitVertices_Private(dm, c, ct, &unsplit));
9136       if (Nv + unsplit == DMPolytopeTypeGetNumVertices(ct)) continue;
9137     }
9138     PetscCheck(Nv == DMPolytopeTypeGetNumVertices(ct), PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cell %" PetscInt_FMT " of type %s has %" PetscInt_FMT " vertices != %" PetscInt_FMT, c, DMPolytopeTypes[ct], Nv, DMPolytopeTypeGetNumVertices(ct));
9139   }
9140   PetscFunctionReturn(PETSC_SUCCESS);
9141 }
9142 
9143 /*@
9144   DMPlexCheckFaces - Check that the faces of each cell give a vertex order this is consistent with what we expect from the cell type
9145 
9146   Collective
9147 
9148   Input Parameters:
9149 + dm         - The `DMPLEX` object
9150 - cellHeight - Normally 0
9151 
9152   Level: developer
9153 
9154   Notes:
9155   This is a useful diagnostic when creating meshes programmatically.
9156   This routine is only relevant for meshes that are fully interpolated across all ranks.
9157   It will error out if a partially interpolated mesh is given on some rank.
9158   It will do nothing for locally uninterpolated mesh (as there is nothing to check).
9159 
9160   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
9161 
9162 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMPlexGetVTKCellHeight()`, `DMSetFromOptions()`
9163 @*/
9164 PetscErrorCode DMPlexCheckFaces(DM dm, PetscInt cellHeight)
9165 {
9166   PetscInt               dim, depth, vStart, vEnd, cStart, cEnd, c, h;
9167   DMPlexInterpolatedFlag interpEnum;
9168 
9169   PetscFunctionBegin;
9170   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9171   PetscCall(DMPlexIsInterpolatedCollective(dm, &interpEnum));
9172   if (interpEnum == DMPLEX_INTERPOLATED_NONE) PetscFunctionReturn(PETSC_SUCCESS);
9173   if (interpEnum != DMPLEX_INTERPOLATED_FULL) {
9174     PetscCall(PetscPrintf(PetscObjectComm((PetscObject)dm), "DMPlexCheckFaces() warning: Mesh is only partially interpolated, this is currently not supported"));
9175     PetscFunctionReturn(PETSC_SUCCESS);
9176   }
9177 
9178   PetscCall(DMGetDimension(dm, &dim));
9179   PetscCall(DMPlexGetDepth(dm, &depth));
9180   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
9181   for (h = cellHeight; h < PetscMin(depth, dim); ++h) {
9182     PetscCall(DMPlexGetHeightStratum(dm, h, &cStart, &cEnd));
9183     for (c = cStart; c < cEnd; ++c) {
9184       const PetscInt       *cone, *ornt, *faceSizes, *faces;
9185       const DMPolytopeType *faceTypes;
9186       DMPolytopeType        ct;
9187       PetscInt              numFaces, coneSize, f;
9188       PetscInt             *closure = NULL, closureSize, cl, numCorners = 0, fOff = 0, unsplit;
9189 
9190       PetscCall(DMPlexGetCellType(dm, c, &ct));
9191       PetscCall(DMPlexCellUnsplitVertices_Private(dm, c, ct, &unsplit));
9192       if (unsplit) continue;
9193       PetscCall(DMPlexGetConeSize(dm, c, &coneSize));
9194       PetscCall(DMPlexGetCone(dm, c, &cone));
9195       PetscCall(DMPlexGetConeOrientation(dm, c, &ornt));
9196       PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
9197       for (cl = 0; cl < closureSize * 2; cl += 2) {
9198         const PetscInt p = closure[cl];
9199         if ((p >= vStart) && (p < vEnd)) closure[numCorners++] = p;
9200       }
9201       PetscCall(DMPlexGetRawFaces_Internal(dm, ct, closure, &numFaces, &faceTypes, &faceSizes, &faces));
9202       PetscCheck(coneSize == numFaces, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cell %" PetscInt_FMT " of type %s has %" PetscInt_FMT " faces but should have %" PetscInt_FMT, c, DMPolytopeTypes[ct], coneSize, numFaces);
9203       for (f = 0; f < numFaces; ++f) {
9204         DMPolytopeType fct;
9205         PetscInt      *fclosure = NULL, fclosureSize, cl, fnumCorners = 0, v;
9206 
9207         PetscCall(DMPlexGetCellType(dm, cone[f], &fct));
9208         PetscCall(DMPlexGetTransitiveClosure_Internal(dm, cone[f], ornt[f], PETSC_TRUE, &fclosureSize, &fclosure));
9209         for (cl = 0; cl < fclosureSize * 2; cl += 2) {
9210           const PetscInt p = fclosure[cl];
9211           if ((p >= vStart) && (p < vEnd)) fclosure[fnumCorners++] = p;
9212         }
9213         PetscCheck(fnumCorners == faceSizes[f], PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Face %" PetscInt_FMT " of type %s (cone idx %" PetscInt_FMT ") of cell %" PetscInt_FMT " of type %s has %" PetscInt_FMT " vertices but should have %" PetscInt_FMT, cone[f], DMPolytopeTypes[fct], f, c, DMPolytopeTypes[ct], fnumCorners, faceSizes[f]);
9214         for (v = 0; v < fnumCorners; ++v) {
9215           if (fclosure[v] != faces[fOff + v]) {
9216             PetscInt v1;
9217 
9218             PetscCall(PetscPrintf(PETSC_COMM_SELF, "face closure:"));
9219             for (v1 = 0; v1 < fnumCorners; ++v1) PetscCall(PetscPrintf(PETSC_COMM_SELF, " %" PetscInt_FMT, fclosure[v1]));
9220             PetscCall(PetscPrintf(PETSC_COMM_SELF, "\ncell face:"));
9221             for (v1 = 0; v1 < fnumCorners; ++v1) PetscCall(PetscPrintf(PETSC_COMM_SELF, " %" PetscInt_FMT, faces[fOff + v1]));
9222             PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n"));
9223             SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Face %" PetscInt_FMT " of type %s (cone idx %" PetscInt_FMT ", ornt %" PetscInt_FMT ") of cell %" PetscInt_FMT " of type %s vertex %" PetscInt_FMT ", %" PetscInt_FMT " != %" PetscInt_FMT, cone[f], DMPolytopeTypes[fct], f, ornt[f], c, DMPolytopeTypes[ct], v, fclosure[v], faces[fOff + v]);
9224           }
9225         }
9226         PetscCall(DMPlexRestoreTransitiveClosure(dm, cone[f], PETSC_TRUE, &fclosureSize, &fclosure));
9227         fOff += faceSizes[f];
9228       }
9229       PetscCall(DMPlexRestoreRawFaces_Internal(dm, ct, closure, &numFaces, &faceTypes, &faceSizes, &faces));
9230       PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure));
9231     }
9232   }
9233   PetscFunctionReturn(PETSC_SUCCESS);
9234 }
9235 
9236 /*@
9237   DMPlexCheckGeometry - Check the geometry of mesh cells
9238 
9239   Input Parameter:
9240 . dm - The `DMPLEX` object
9241 
9242   Level: developer
9243 
9244   Notes:
9245   This is a useful diagnostic when creating meshes programmatically.
9246 
9247   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
9248 
9249 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()`
9250 @*/
9251 PetscErrorCode DMPlexCheckGeometry(DM dm)
9252 {
9253   Vec       coordinates;
9254   PetscReal detJ, J[9], refVol = 1.0;
9255   PetscReal vol;
9256   PetscInt  dim, depth, dE, d, cStart, cEnd, c;
9257 
9258   PetscFunctionBegin;
9259   PetscCall(DMGetDimension(dm, &dim));
9260   PetscCall(DMGetCoordinateDim(dm, &dE));
9261   if (dim != dE) PetscFunctionReturn(PETSC_SUCCESS);
9262   PetscCall(DMPlexGetDepth(dm, &depth));
9263   for (d = 0; d < dim; ++d) refVol *= 2.0;
9264   PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
9265   /* Make sure local coordinates are created, because that step is collective */
9266   PetscCall(DMGetCoordinatesLocal(dm, &coordinates));
9267   if (!coordinates) PetscFunctionReturn(PETSC_SUCCESS);
9268   for (c = cStart; c < cEnd; ++c) {
9269     DMPolytopeType ct;
9270     PetscInt       unsplit;
9271     PetscBool      ignoreZeroVol = PETSC_FALSE;
9272 
9273     PetscCall(DMPlexGetCellType(dm, c, &ct));
9274     switch (ct) {
9275     case DM_POLYTOPE_SEG_PRISM_TENSOR:
9276     case DM_POLYTOPE_TRI_PRISM_TENSOR:
9277     case DM_POLYTOPE_QUAD_PRISM_TENSOR:
9278       ignoreZeroVol = PETSC_TRUE;
9279       break;
9280     default:
9281       break;
9282     }
9283     switch (ct) {
9284     case DM_POLYTOPE_TRI_PRISM:
9285     case DM_POLYTOPE_TRI_PRISM_TENSOR:
9286     case DM_POLYTOPE_QUAD_PRISM_TENSOR:
9287     case DM_POLYTOPE_PYRAMID:
9288       continue;
9289     default:
9290       break;
9291     }
9292     PetscCall(DMPlexCellUnsplitVertices_Private(dm, c, ct, &unsplit));
9293     if (unsplit) continue;
9294     PetscCall(DMPlexComputeCellGeometryFEM(dm, c, NULL, NULL, J, NULL, &detJ));
9295     PetscCheck(detJ >= -PETSC_SMALL && (detJ > 0.0 || ignoreZeroVol), PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Mesh cell %" PetscInt_FMT " of type %s is inverted, |J| = %g", c, DMPolytopeTypes[ct], (double)detJ);
9296     PetscCall(PetscInfo(dm, "Cell %" PetscInt_FMT " FEM Volume %g\n", c, (double)(detJ * refVol)));
9297     /* This should work with periodicity since DG coordinates should be used */
9298     if (depth > 1) {
9299       PetscCall(DMPlexComputeCellGeometryFVM(dm, c, &vol, NULL, NULL));
9300       PetscCheck(vol >= -PETSC_SMALL && (vol > 0.0 || ignoreZeroVol), PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Mesh cell %" PetscInt_FMT " of type %s is inverted, vol = %g", c, DMPolytopeTypes[ct], (double)vol);
9301       PetscCall(PetscInfo(dm, "Cell %" PetscInt_FMT " FVM Volume %g\n", c, (double)vol));
9302     }
9303   }
9304   PetscFunctionReturn(PETSC_SUCCESS);
9305 }
9306 
9307 /*@
9308   DMPlexCheckPointSF - Check that several necessary conditions are met for the point `PetscSF` of this plex.
9309 
9310   Collective
9311 
9312   Input Parameters:
9313 + dm              - The `DMPLEX` object
9314 . pointSF         - The `PetscSF`, or `NULL` for `PointSF` attached to `DM`
9315 - allowExtraRoots - Flag to allow extra points not present in the `DM`
9316 
9317   Level: developer
9318 
9319   Notes:
9320   This is mainly intended for debugging/testing purposes.
9321 
9322   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
9323 
9324   Extra roots can come from periodic cuts, where additional points appear on the boundary
9325 
9326 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMGetPointSF()`, `DMSetFromOptions()`
9327 @*/
9328 PetscErrorCode DMPlexCheckPointSF(DM dm, PetscSF pointSF, PetscBool allowExtraRoots)
9329 {
9330   PetscInt           l, nleaves, nroots, overlap;
9331   const PetscInt    *locals;
9332   const PetscSFNode *remotes;
9333   PetscBool          distributed;
9334   MPI_Comm           comm;
9335   PetscMPIInt        rank;
9336 
9337   PetscFunctionBegin;
9338   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9339   if (pointSF) PetscValidHeaderSpecific(pointSF, PETSCSF_CLASSID, 2);
9340   else pointSF = dm->sf;
9341   PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
9342   PetscCheck(pointSF, comm, PETSC_ERR_ARG_WRONGSTATE, "DMPlex must have Point SF attached");
9343   PetscCallMPI(MPI_Comm_rank(comm, &rank));
9344   {
9345     PetscMPIInt mpiFlag;
9346 
9347     PetscCallMPI(MPI_Comm_compare(comm, PetscObjectComm((PetscObject)pointSF), &mpiFlag));
9348     PetscCheck(mpiFlag == MPI_CONGRUENT || mpiFlag == MPI_IDENT, PETSC_COMM_SELF, PETSC_ERR_ARG_NOTSAMECOMM, "DM and Point SF have different communicators (flag %d)", mpiFlag);
9349   }
9350   PetscCall(PetscSFGetGraph(pointSF, &nroots, &nleaves, &locals, &remotes));
9351   PetscCall(DMPlexIsDistributed(dm, &distributed));
9352   if (!distributed) {
9353     PetscCheck(nroots < 0 || nleaves == 0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Undistributed DMPlex cannot have non-empty PointSF (has %" PetscInt_FMT " roots, %" PetscInt_FMT " leaves)", nroots, nleaves);
9354     PetscFunctionReturn(PETSC_SUCCESS);
9355   }
9356   PetscCheck(nroots >= 0, comm, PETSC_ERR_ARG_WRONGSTATE, "This DMPlex is distributed but its PointSF has no graph set (has %" PetscInt_FMT " roots, %" PetscInt_FMT " leaves)", nroots, nleaves);
9357   PetscCall(DMPlexGetOverlap(dm, &overlap));
9358 
9359   /* Check SF graph is compatible with DMPlex chart */
9360   {
9361     PetscInt pStart, pEnd, maxLeaf;
9362 
9363     PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
9364     PetscCall(PetscSFGetLeafRange(pointSF, NULL, &maxLeaf));
9365     PetscCheck(allowExtraRoots || pEnd - pStart == nroots, PETSC_COMM_SELF, PETSC_ERR_PLIB, "pEnd - pStart = %" PetscInt_FMT " != nroots = %" PetscInt_FMT, pEnd - pStart, nroots);
9366     PetscCheck(maxLeaf < pEnd, PETSC_COMM_SELF, PETSC_ERR_PLIB, "maxLeaf = %" PetscInt_FMT " >= pEnd = %" PetscInt_FMT, maxLeaf, pEnd);
9367   }
9368 
9369   /* Check Point SF has no local points referenced */
9370   for (l = 0; l < nleaves; l++) {
9371     PetscAssert(remotes[l].rank != (PetscInt)rank, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point SF contains local point %" PetscInt_FMT " <- (%" PetscInt_FMT ",%" PetscInt_FMT ")", locals ? locals[l] : l, remotes[l].rank, remotes[l].index);
9372   }
9373 
9374   /* Check there are no cells in interface */
9375   if (!overlap) {
9376     PetscInt cellHeight, cStart, cEnd;
9377 
9378     PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
9379     PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd));
9380     for (l = 0; l < nleaves; ++l) {
9381       const PetscInt point = locals ? locals[l] : l;
9382 
9383       PetscCheck(point < cStart || point >= cEnd, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point SF contains %" PetscInt_FMT " which is a cell", point);
9384     }
9385   }
9386 
9387   /* If some point is in interface, then all its cone points must be also in interface (either as leaves or roots) */
9388   {
9389     const PetscInt *rootdegree;
9390 
9391     PetscCall(PetscSFComputeDegreeBegin(pointSF, &rootdegree));
9392     PetscCall(PetscSFComputeDegreeEnd(pointSF, &rootdegree));
9393     for (l = 0; l < nleaves; ++l) {
9394       const PetscInt  point = locals ? locals[l] : l;
9395       const PetscInt *cone;
9396       PetscInt        coneSize, c, idx;
9397 
9398       PetscCall(DMPlexGetConeSize(dm, point, &coneSize));
9399       PetscCall(DMPlexGetCone(dm, point, &cone));
9400       for (c = 0; c < coneSize; ++c) {
9401         if (!rootdegree[cone[c]]) {
9402           if (locals) {
9403             PetscCall(PetscFindInt(cone[c], nleaves, locals, &idx));
9404           } else {
9405             idx = (cone[c] < nleaves) ? cone[c] : -1;
9406           }
9407           PetscCheck(idx >= 0, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point SF contains %" PetscInt_FMT " but not %" PetscInt_FMT " from its cone", point, cone[c]);
9408         }
9409       }
9410     }
9411   }
9412   PetscFunctionReturn(PETSC_SUCCESS);
9413 }
9414 
9415 /*@
9416   DMPlexCheck - Perform various checks of `DMPLEX` sanity
9417 
9418   Input Parameter:
9419 . dm - The `DMPLEX` object
9420 
9421   Level: developer
9422 
9423   Notes:
9424   This is a useful diagnostic when creating meshes programmatically.
9425 
9426   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
9427 
9428   Currently does not include `DMPlexCheckCellShape()`.
9429 
9430 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()`
9431 @*/
9432 PetscErrorCode DMPlexCheck(DM dm)
9433 {
9434   PetscInt cellHeight;
9435 
9436   PetscFunctionBegin;
9437   PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
9438   PetscCall(DMPlexCheckSymmetry(dm));
9439   PetscCall(DMPlexCheckSkeleton(dm, cellHeight));
9440   PetscCall(DMPlexCheckFaces(dm, cellHeight));
9441   PetscCall(DMPlexCheckGeometry(dm));
9442   PetscCall(DMPlexCheckPointSF(dm, NULL, PETSC_FALSE));
9443   PetscCall(DMPlexCheckInterfaceCones(dm));
9444   PetscFunctionReturn(PETSC_SUCCESS);
9445 }
9446 
9447 typedef struct cell_stats {
9448   PetscReal min, max, sum, squaresum;
9449   PetscInt  count;
9450 } cell_stats_t;
9451 
9452 static void MPIAPI cell_stats_reduce(void *a, void *b, int *len, MPI_Datatype *datatype)
9453 {
9454   PetscInt i, N = *len;
9455 
9456   for (i = 0; i < N; i++) {
9457     cell_stats_t *A = (cell_stats_t *)a;
9458     cell_stats_t *B = (cell_stats_t *)b;
9459 
9460     B->min = PetscMin(A->min, B->min);
9461     B->max = PetscMax(A->max, B->max);
9462     B->sum += A->sum;
9463     B->squaresum += A->squaresum;
9464     B->count += A->count;
9465   }
9466 }
9467 
9468 /*@
9469   DMPlexCheckCellShape - Checks the Jacobian of the mapping from reference to real cells and computes some minimal statistics.
9470 
9471   Collective
9472 
9473   Input Parameters:
9474 + dm        - The `DMPLEX` object
9475 . output    - If true, statistics will be displayed on `stdout`
9476 - condLimit - Display all cells above this condition number, or `PETSC_DETERMINE` for no cell output
9477 
9478   Level: developer
9479 
9480   Notes:
9481   This is mainly intended for debugging/testing purposes.
9482 
9483   For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`.
9484 
9485 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMSetFromOptions()`, `DMPlexComputeOrthogonalQuality()`
9486 @*/
9487 PetscErrorCode DMPlexCheckCellShape(DM dm, PetscBool output, PetscReal condLimit)
9488 {
9489   DM           dmCoarse;
9490   cell_stats_t stats, globalStats;
9491   MPI_Comm     comm = PetscObjectComm((PetscObject)dm);
9492   PetscReal   *J, *invJ, min = 0, max = 0, mean = 0, stdev = 0;
9493   PetscReal    limit = condLimit > 0 ? condLimit : PETSC_MAX_REAL;
9494   PetscInt     cdim, cStart, cEnd, c, eStart, eEnd, count = 0;
9495   PetscMPIInt  rank, size;
9496 
9497   PetscFunctionBegin;
9498   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9499   stats.min = PETSC_MAX_REAL;
9500   stats.max = PETSC_MIN_REAL;
9501   stats.sum = stats.squaresum = 0.;
9502   stats.count                 = 0;
9503 
9504   PetscCallMPI(MPI_Comm_size(comm, &size));
9505   PetscCallMPI(MPI_Comm_rank(comm, &rank));
9506   PetscCall(DMGetCoordinateDim(dm, &cdim));
9507   PetscCall(PetscMalloc2(PetscSqr(cdim), &J, PetscSqr(cdim), &invJ));
9508   PetscCall(DMPlexGetSimplexOrBoxCells(dm, 0, &cStart, &cEnd));
9509   PetscCall(DMPlexGetDepthStratum(dm, 1, &eStart, &eEnd));
9510   for (c = cStart; c < cEnd; c++) {
9511     PetscInt  i;
9512     PetscReal frobJ = 0., frobInvJ = 0., cond2, cond, detJ;
9513 
9514     PetscCall(DMPlexComputeCellGeometryAffineFEM(dm, c, NULL, J, invJ, &detJ));
9515     PetscCheck(detJ >= 0.0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Mesh cell %" PetscInt_FMT " is inverted", c);
9516     for (i = 0; i < PetscSqr(cdim); ++i) {
9517       frobJ += J[i] * J[i];
9518       frobInvJ += invJ[i] * invJ[i];
9519     }
9520     cond2 = frobJ * frobInvJ;
9521     cond  = PetscSqrtReal(cond2);
9522 
9523     stats.min = PetscMin(stats.min, cond);
9524     stats.max = PetscMax(stats.max, cond);
9525     stats.sum += cond;
9526     stats.squaresum += cond2;
9527     stats.count++;
9528     if (output && cond > limit) {
9529       PetscSection coordSection;
9530       Vec          coordsLocal;
9531       PetscScalar *coords = NULL;
9532       PetscInt     Nv, d, clSize, cl, *closure = NULL;
9533 
9534       PetscCall(DMGetCoordinatesLocal(dm, &coordsLocal));
9535       PetscCall(DMGetCoordinateSection(dm, &coordSection));
9536       PetscCall(DMPlexVecGetClosure(dm, coordSection, coordsLocal, c, &Nv, &coords));
9537       PetscCall(PetscSynchronizedPrintf(comm, "[%d] Cell %" PetscInt_FMT " cond %g\n", rank, c, (double)cond));
9538       for (i = 0; i < Nv / cdim; ++i) {
9539         PetscCall(PetscSynchronizedPrintf(comm, "  Vertex %" PetscInt_FMT ": (", i));
9540         for (d = 0; d < cdim; ++d) {
9541           if (d > 0) PetscCall(PetscSynchronizedPrintf(comm, ", "));
9542           PetscCall(PetscSynchronizedPrintf(comm, "%g", (double)PetscRealPart(coords[i * cdim + d])));
9543         }
9544         PetscCall(PetscSynchronizedPrintf(comm, ")\n"));
9545       }
9546       PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &clSize, &closure));
9547       for (cl = 0; cl < clSize * 2; cl += 2) {
9548         const PetscInt edge = closure[cl];
9549 
9550         if ((edge >= eStart) && (edge < eEnd)) {
9551           PetscReal len;
9552 
9553           PetscCall(DMPlexComputeCellGeometryFVM(dm, edge, &len, NULL, NULL));
9554           PetscCall(PetscSynchronizedPrintf(comm, "  Edge %" PetscInt_FMT ": length %g\n", edge, (double)len));
9555         }
9556       }
9557       PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &clSize, &closure));
9558       PetscCall(DMPlexVecRestoreClosure(dm, coordSection, coordsLocal, c, &Nv, &coords));
9559     }
9560   }
9561   if (output) PetscCall(PetscSynchronizedFlush(comm, NULL));
9562 
9563   if (size > 1) {
9564     PetscMPIInt  blockLengths[2] = {4, 1};
9565     MPI_Aint     blockOffsets[2] = {offsetof(cell_stats_t, min), offsetof(cell_stats_t, count)};
9566     MPI_Datatype blockTypes[2]   = {MPIU_REAL, MPIU_INT}, statType;
9567     MPI_Op       statReduce;
9568 
9569     PetscCallMPI(MPI_Type_create_struct(2, blockLengths, blockOffsets, blockTypes, &statType));
9570     PetscCallMPI(MPI_Type_commit(&statType));
9571     PetscCallMPI(MPI_Op_create(cell_stats_reduce, PETSC_TRUE, &statReduce));
9572     PetscCallMPI(MPI_Reduce(&stats, &globalStats, 1, statType, statReduce, 0, comm));
9573     PetscCallMPI(MPI_Op_free(&statReduce));
9574     PetscCallMPI(MPI_Type_free(&statType));
9575   } else {
9576     PetscCall(PetscArraycpy(&globalStats, &stats, 1));
9577   }
9578   if (rank == 0) {
9579     count = globalStats.count;
9580     min   = globalStats.min;
9581     max   = globalStats.max;
9582     mean  = globalStats.sum / globalStats.count;
9583     stdev = globalStats.count > 1 ? PetscSqrtReal(PetscMax((globalStats.squaresum - globalStats.count * mean * mean) / (globalStats.count - 1), 0)) : 0.0;
9584   }
9585 
9586   if (output) PetscCall(PetscPrintf(comm, "Mesh with %" PetscInt_FMT " cells, shape condition numbers: min = %g, max = %g, mean = %g, stddev = %g\n", count, (double)min, (double)max, (double)mean, (double)stdev));
9587   PetscCall(PetscFree2(J, invJ));
9588 
9589   PetscCall(DMGetCoarseDM(dm, &dmCoarse));
9590   if (dmCoarse) {
9591     PetscBool isplex;
9592 
9593     PetscCall(PetscObjectTypeCompare((PetscObject)dmCoarse, DMPLEX, &isplex));
9594     if (isplex) PetscCall(DMPlexCheckCellShape(dmCoarse, output, condLimit));
9595   }
9596   PetscFunctionReturn(PETSC_SUCCESS);
9597 }
9598 
9599 /*@
9600   DMPlexComputeOrthogonalQuality - Compute cell-wise orthogonal quality mesh statistic. Optionally tags all cells with
9601   orthogonal quality below given tolerance.
9602 
9603   Collective
9604 
9605   Input Parameters:
9606 + dm   - The `DMPLEX` object
9607 . fv   - Optional `PetscFV` object for pre-computed cell/face centroid information
9608 - atol - [0, 1] Absolute tolerance for tagging cells.
9609 
9610   Output Parameters:
9611 + OrthQual      - `Vec` containing orthogonal quality per cell
9612 - OrthQualLabel - `DMLabel` tagging cells below atol with `DM_ADAPT_REFINE`
9613 
9614   Options Database Keys:
9615 + -dm_plex_orthogonal_quality_label_view - view OrthQualLabel if label is requested. Currently only `PETSCVIEWERASCII` is supported.
9616 - -dm_plex_orthogonal_quality_vec_view   - view OrthQual vector.
9617 
9618   Level: intermediate
9619 
9620   Notes:
9621   Orthogonal quality is given by the following formula\:
9622 
9623   $ \min \left[ \frac{A_i \cdot f_i}{\|A_i\| \|f_i\|} , \frac{A_i \cdot c_i}{\|A_i\| \|c_i\|} \right]$
9624 
9625   Where A_i is the i'th face-normal vector, f_i is the vector from the cell centroid to the i'th face centroid, and c_i
9626   is the vector from the current cells centroid to the centroid of its i'th neighbor (which shares a face with the
9627   current cell). This computes the vector similarity between each cell face and its corresponding neighbor centroid by
9628   calculating the cosine of the angle between these vectors.
9629 
9630   Orthogonal quality ranges from 1 (best) to 0 (worst).
9631 
9632   This routine is mainly useful for FVM, however is not restricted to only FVM. The `PetscFV` object is optionally used to check for
9633   pre-computed FVM cell data, but if it is not passed in then this data will be computed.
9634 
9635   Cells are tagged if they have an orthogonal quality less than or equal to the absolute tolerance.
9636 
9637 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCheckCellShape()`, `DMCreateLabel()`, `PetscFV`, `DMLabel`, `Vec`
9638 @*/
9639 PetscErrorCode DMPlexComputeOrthogonalQuality(DM dm, PetscFV fv, PetscReal atol, Vec *OrthQual, DMLabel *OrthQualLabel)
9640 {
9641   PetscInt               nc, cellHeight, cStart, cEnd, cell, cellIter = 0;
9642   PetscInt              *idx;
9643   PetscScalar           *oqVals;
9644   const PetscScalar     *cellGeomArr, *faceGeomArr;
9645   PetscReal             *ci, *fi, *Ai;
9646   MPI_Comm               comm;
9647   Vec                    cellgeom, facegeom;
9648   DM                     dmFace, dmCell;
9649   IS                     glob;
9650   ISLocalToGlobalMapping ltog;
9651   PetscViewer            vwr;
9652 
9653   PetscFunctionBegin;
9654   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9655   if (fv) PetscValidHeaderSpecific(fv, PETSCFV_CLASSID, 2);
9656   PetscAssertPointer(OrthQual, 4);
9657   PetscCheck(atol >= 0.0 && atol <= 1.0, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Absolute tolerance %g not in [0,1]", (double)atol);
9658   PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
9659   PetscCall(DMGetDimension(dm, &nc));
9660   PetscCheck(nc >= 2, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "DM must have dimension >= 2 (current %" PetscInt_FMT ")", nc);
9661   {
9662     DMPlexInterpolatedFlag interpFlag;
9663 
9664     PetscCall(DMPlexIsInterpolated(dm, &interpFlag));
9665     if (interpFlag != DMPLEX_INTERPOLATED_FULL) {
9666       PetscMPIInt rank;
9667 
9668       PetscCallMPI(MPI_Comm_rank(comm, &rank));
9669       SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "DM must be fully interpolated, DM on rank %d is not fully interpolated", rank);
9670     }
9671   }
9672   if (OrthQualLabel) {
9673     PetscAssertPointer(OrthQualLabel, 5);
9674     PetscCall(DMCreateLabel(dm, "Orthogonal_Quality"));
9675     PetscCall(DMGetLabel(dm, "Orthogonal_Quality", OrthQualLabel));
9676   } else {
9677     *OrthQualLabel = NULL;
9678   }
9679   PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight));
9680   PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd));
9681   PetscCall(DMPlexCreateCellNumbering_Internal(dm, PETSC_TRUE, &glob));
9682   PetscCall(ISLocalToGlobalMappingCreateIS(glob, &ltog));
9683   PetscCall(ISLocalToGlobalMappingSetType(ltog, ISLOCALTOGLOBALMAPPINGHASH));
9684   PetscCall(VecCreate(comm, OrthQual));
9685   PetscCall(VecSetType(*OrthQual, VECSTANDARD));
9686   PetscCall(VecSetSizes(*OrthQual, cEnd - cStart, PETSC_DETERMINE));
9687   PetscCall(VecSetLocalToGlobalMapping(*OrthQual, ltog));
9688   PetscCall(VecSetUp(*OrthQual));
9689   PetscCall(ISDestroy(&glob));
9690   PetscCall(ISLocalToGlobalMappingDestroy(&ltog));
9691   PetscCall(DMPlexGetDataFVM(dm, fv, &cellgeom, &facegeom, NULL));
9692   PetscCall(VecGetArrayRead(cellgeom, &cellGeomArr));
9693   PetscCall(VecGetArrayRead(facegeom, &faceGeomArr));
9694   PetscCall(VecGetDM(cellgeom, &dmCell));
9695   PetscCall(VecGetDM(facegeom, &dmFace));
9696   PetscCall(PetscMalloc5(cEnd - cStart, &idx, cEnd - cStart, &oqVals, nc, &ci, nc, &fi, nc, &Ai));
9697   for (cell = cStart; cell < cEnd; cellIter++, cell++) {
9698     PetscInt         cellneigh, cellneighiter = 0, adjSize = PETSC_DETERMINE;
9699     PetscInt         cellarr[2], *adj = NULL;
9700     PetscScalar     *cArr, *fArr;
9701     PetscReal        minvalc = 1.0, minvalf = 1.0;
9702     PetscFVCellGeom *cg;
9703 
9704     idx[cellIter] = cell - cStart;
9705     cellarr[0]    = cell;
9706     /* Make indexing into cellGeom easier */
9707     PetscCall(DMPlexPointLocalRead(dmCell, cell, cellGeomArr, &cg));
9708     PetscCall(DMPlexGetAdjacency_Internal(dm, cell, PETSC_TRUE, PETSC_FALSE, PETSC_FALSE, &adjSize, &adj));
9709     /* Technically 1 too big, but easier than fiddling with empty adjacency array */
9710     PetscCall(PetscCalloc2(adjSize, &cArr, adjSize, &fArr));
9711     for (cellneigh = 0; cellneigh < adjSize; cellneighiter++, cellneigh++) {
9712       PetscInt         i;
9713       const PetscInt   neigh  = adj[cellneigh];
9714       PetscReal        normci = 0, normfi = 0, normai = 0;
9715       PetscFVCellGeom *cgneigh;
9716       PetscFVFaceGeom *fg;
9717 
9718       /* Don't count ourselves in the neighbor list */
9719       if (neigh == cell) continue;
9720       PetscCall(DMPlexPointLocalRead(dmCell, neigh, cellGeomArr, &cgneigh));
9721       cellarr[1] = neigh;
9722       {
9723         PetscInt        numcovpts;
9724         const PetscInt *covpts;
9725 
9726         PetscCall(DMPlexGetMeet(dm, 2, cellarr, &numcovpts, &covpts));
9727         PetscCall(DMPlexPointLocalRead(dmFace, covpts[0], faceGeomArr, &fg));
9728         PetscCall(DMPlexRestoreMeet(dm, 2, cellarr, &numcovpts, &covpts));
9729       }
9730 
9731       /* Compute c_i, f_i and their norms */
9732       for (i = 0; i < nc; i++) {
9733         ci[i] = cgneigh->centroid[i] - cg->centroid[i];
9734         fi[i] = fg->centroid[i] - cg->centroid[i];
9735         Ai[i] = fg->normal[i];
9736         normci += PetscPowReal(ci[i], 2);
9737         normfi += PetscPowReal(fi[i], 2);
9738         normai += PetscPowReal(Ai[i], 2);
9739       }
9740       normci = PetscSqrtReal(normci);
9741       normfi = PetscSqrtReal(normfi);
9742       normai = PetscSqrtReal(normai);
9743 
9744       /* Normalize and compute for each face-cell-normal pair */
9745       for (i = 0; i < nc; i++) {
9746         ci[i] = ci[i] / normci;
9747         fi[i] = fi[i] / normfi;
9748         Ai[i] = Ai[i] / normai;
9749         /* PetscAbs because I don't know if normals are guaranteed to point out */
9750         cArr[cellneighiter] += PetscAbs(Ai[i] * ci[i]);
9751         fArr[cellneighiter] += PetscAbs(Ai[i] * fi[i]);
9752       }
9753       if (PetscRealPart(cArr[cellneighiter]) < minvalc) minvalc = PetscRealPart(cArr[cellneighiter]);
9754       if (PetscRealPart(fArr[cellneighiter]) < minvalf) minvalf = PetscRealPart(fArr[cellneighiter]);
9755     }
9756     PetscCall(PetscFree(adj));
9757     PetscCall(PetscFree2(cArr, fArr));
9758     /* Defer to cell if they're equal */
9759     oqVals[cellIter] = PetscMin(minvalf, minvalc);
9760     if (OrthQualLabel) {
9761       if (PetscRealPart(oqVals[cellIter]) <= atol) PetscCall(DMLabelSetValue(*OrthQualLabel, cell, DM_ADAPT_REFINE));
9762     }
9763   }
9764   PetscCall(VecSetValuesLocal(*OrthQual, cEnd - cStart, idx, oqVals, INSERT_VALUES));
9765   PetscCall(VecAssemblyBegin(*OrthQual));
9766   PetscCall(VecAssemblyEnd(*OrthQual));
9767   PetscCall(VecRestoreArrayRead(cellgeom, &cellGeomArr));
9768   PetscCall(VecRestoreArrayRead(facegeom, &faceGeomArr));
9769   PetscCall(PetscOptionsGetViewer(comm, NULL, NULL, "-dm_plex_orthogonal_quality_label_view", &vwr, NULL, NULL));
9770   if (OrthQualLabel) {
9771     if (vwr) PetscCall(DMLabelView(*OrthQualLabel, vwr));
9772   }
9773   PetscCall(PetscFree5(idx, oqVals, ci, fi, Ai));
9774   PetscCall(PetscOptionsRestoreViewer(&vwr));
9775   PetscCall(VecViewFromOptions(*OrthQual, NULL, "-dm_plex_orthogonal_quality_vec_view"));
9776   PetscFunctionReturn(PETSC_SUCCESS);
9777 }
9778 
9779 /* this is here instead of DMGetOutputDM because output DM still has constraints in the local indices that affect
9780  * interpolator construction */
9781 static PetscErrorCode DMGetFullDM(DM dm, DM *odm)
9782 {
9783   PetscSection section, newSection, gsection;
9784   PetscSF      sf;
9785   PetscBool    hasConstraints, ghasConstraints;
9786 
9787   PetscFunctionBegin;
9788   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9789   PetscAssertPointer(odm, 2);
9790   PetscCall(DMGetLocalSection(dm, &section));
9791   PetscCall(PetscSectionHasConstraints(section, &hasConstraints));
9792   PetscCall(MPIU_Allreduce(&hasConstraints, &ghasConstraints, 1, MPIU_BOOL, MPI_LOR, PetscObjectComm((PetscObject)dm)));
9793   if (!ghasConstraints) {
9794     PetscCall(PetscObjectReference((PetscObject)dm));
9795     *odm = dm;
9796     PetscFunctionReturn(PETSC_SUCCESS);
9797   }
9798   PetscCall(DMClone(dm, odm));
9799   PetscCall(DMCopyFields(dm, *odm));
9800   PetscCall(DMGetLocalSection(*odm, &newSection));
9801   PetscCall(DMGetPointSF(*odm, &sf));
9802   PetscCall(PetscSectionCreateGlobalSection(newSection, sf, PETSC_TRUE, PETSC_TRUE, PETSC_FALSE, &gsection));
9803   PetscCall(DMSetGlobalSection(*odm, gsection));
9804   PetscCall(PetscSectionDestroy(&gsection));
9805   PetscFunctionReturn(PETSC_SUCCESS);
9806 }
9807 
9808 static PetscErrorCode DMCreateAffineInterpolationCorrection_Plex(DM dmc, DM dmf, Vec *shift)
9809 {
9810   DM        dmco, dmfo;
9811   Mat       interpo;
9812   Vec       rscale;
9813   Vec       cglobalo, clocal;
9814   Vec       fglobal, fglobalo, flocal;
9815   PetscBool regular;
9816 
9817   PetscFunctionBegin;
9818   PetscCall(DMGetFullDM(dmc, &dmco));
9819   PetscCall(DMGetFullDM(dmf, &dmfo));
9820   PetscCall(DMSetCoarseDM(dmfo, dmco));
9821   PetscCall(DMPlexGetRegularRefinement(dmf, &regular));
9822   PetscCall(DMPlexSetRegularRefinement(dmfo, regular));
9823   PetscCall(DMCreateInterpolation(dmco, dmfo, &interpo, &rscale));
9824   PetscCall(DMCreateGlobalVector(dmco, &cglobalo));
9825   PetscCall(DMCreateLocalVector(dmc, &clocal));
9826   PetscCall(VecSet(cglobalo, 0.));
9827   PetscCall(VecSet(clocal, 0.));
9828   PetscCall(DMCreateGlobalVector(dmf, &fglobal));
9829   PetscCall(DMCreateGlobalVector(dmfo, &fglobalo));
9830   PetscCall(DMCreateLocalVector(dmf, &flocal));
9831   PetscCall(VecSet(fglobal, 0.));
9832   PetscCall(VecSet(fglobalo, 0.));
9833   PetscCall(VecSet(flocal, 0.));
9834   PetscCall(DMPlexInsertBoundaryValues(dmc, PETSC_TRUE, clocal, 0., NULL, NULL, NULL));
9835   PetscCall(DMLocalToGlobalBegin(dmco, clocal, INSERT_VALUES, cglobalo));
9836   PetscCall(DMLocalToGlobalEnd(dmco, clocal, INSERT_VALUES, cglobalo));
9837   PetscCall(MatMult(interpo, cglobalo, fglobalo));
9838   PetscCall(DMGlobalToLocalBegin(dmfo, fglobalo, INSERT_VALUES, flocal));
9839   PetscCall(DMGlobalToLocalEnd(dmfo, fglobalo, INSERT_VALUES, flocal));
9840   PetscCall(DMLocalToGlobalBegin(dmf, flocal, INSERT_VALUES, fglobal));
9841   PetscCall(DMLocalToGlobalEnd(dmf, flocal, INSERT_VALUES, fglobal));
9842   *shift = fglobal;
9843   PetscCall(VecDestroy(&flocal));
9844   PetscCall(VecDestroy(&fglobalo));
9845   PetscCall(VecDestroy(&clocal));
9846   PetscCall(VecDestroy(&cglobalo));
9847   PetscCall(VecDestroy(&rscale));
9848   PetscCall(MatDestroy(&interpo));
9849   PetscCall(DMDestroy(&dmfo));
9850   PetscCall(DMDestroy(&dmco));
9851   PetscFunctionReturn(PETSC_SUCCESS);
9852 }
9853 
9854 PETSC_INTERN PetscErrorCode DMInterpolateSolution_Plex(DM coarse, DM fine, Mat interp, Vec coarseSol, Vec fineSol)
9855 {
9856   PetscObject shifto;
9857   Vec         shift;
9858 
9859   PetscFunctionBegin;
9860   if (!interp) {
9861     Vec rscale;
9862 
9863     PetscCall(DMCreateInterpolation(coarse, fine, &interp, &rscale));
9864     PetscCall(VecDestroy(&rscale));
9865   } else {
9866     PetscCall(PetscObjectReference((PetscObject)interp));
9867   }
9868   PetscCall(PetscObjectQuery((PetscObject)interp, "_DMInterpolateSolution_Plex_Vec", &shifto));
9869   if (!shifto) {
9870     PetscCall(DMCreateAffineInterpolationCorrection_Plex(coarse, fine, &shift));
9871     PetscCall(PetscObjectCompose((PetscObject)interp, "_DMInterpolateSolution_Plex_Vec", (PetscObject)shift));
9872     shifto = (PetscObject)shift;
9873     PetscCall(VecDestroy(&shift));
9874   }
9875   shift = (Vec)shifto;
9876   PetscCall(MatInterpolate(interp, coarseSol, fineSol));
9877   PetscCall(VecAXPY(fineSol, 1.0, shift));
9878   PetscCall(MatDestroy(&interp));
9879   PetscFunctionReturn(PETSC_SUCCESS);
9880 }
9881 
9882 /* Pointwise interpolation
9883      Just code FEM for now
9884      u^f = I u^c
9885      sum_k u^f_k phi^f_k = I sum_j u^c_j phi^c_j
9886      u^f_i = sum_j psi^f_i I phi^c_j u^c_j
9887      I_{ij} = psi^f_i phi^c_j
9888 */
9889 PetscErrorCode DMCreateInterpolation_Plex(DM dmCoarse, DM dmFine, Mat *interpolation, Vec *scaling)
9890 {
9891   PetscSection gsc, gsf;
9892   PetscInt     m, n;
9893   void        *ctx;
9894   DM           cdm;
9895   PetscBool    regular, ismatis, isRefined = dmCoarse->data == dmFine->data ? PETSC_FALSE : PETSC_TRUE;
9896 
9897   PetscFunctionBegin;
9898   PetscCall(DMGetGlobalSection(dmFine, &gsf));
9899   PetscCall(PetscSectionGetConstrainedStorageSize(gsf, &m));
9900   PetscCall(DMGetGlobalSection(dmCoarse, &gsc));
9901   PetscCall(PetscSectionGetConstrainedStorageSize(gsc, &n));
9902 
9903   PetscCall(PetscStrcmp(dmCoarse->mattype, MATIS, &ismatis));
9904   PetscCall(MatCreate(PetscObjectComm((PetscObject)dmCoarse), interpolation));
9905   PetscCall(MatSetSizes(*interpolation, m, n, PETSC_DETERMINE, PETSC_DETERMINE));
9906   PetscCall(MatSetType(*interpolation, ismatis ? MATAIJ : dmCoarse->mattype));
9907   PetscCall(DMGetApplicationContext(dmFine, &ctx));
9908 
9909   PetscCall(DMGetCoarseDM(dmFine, &cdm));
9910   PetscCall(DMPlexGetRegularRefinement(dmFine, &regular));
9911   if (!isRefined || (regular && cdm == dmCoarse)) PetscCall(DMPlexComputeInterpolatorNested(dmCoarse, dmFine, isRefined, *interpolation, ctx));
9912   else PetscCall(DMPlexComputeInterpolatorGeneral(dmCoarse, dmFine, *interpolation, ctx));
9913   PetscCall(MatViewFromOptions(*interpolation, NULL, "-interp_mat_view"));
9914   if (scaling) {
9915     /* Use naive scaling */
9916     PetscCall(DMCreateInterpolationScale(dmCoarse, dmFine, *interpolation, scaling));
9917   }
9918   PetscFunctionReturn(PETSC_SUCCESS);
9919 }
9920 
9921 PetscErrorCode DMCreateInjection_Plex(DM dmCoarse, DM dmFine, Mat *mat)
9922 {
9923   VecScatter ctx;
9924 
9925   PetscFunctionBegin;
9926   PetscCall(DMPlexComputeInjectorFEM(dmCoarse, dmFine, &ctx, NULL));
9927   PetscCall(MatCreateScatter(PetscObjectComm((PetscObject)ctx), ctx, mat));
9928   PetscCall(VecScatterDestroy(&ctx));
9929   PetscFunctionReturn(PETSC_SUCCESS);
9930 }
9931 
9932 static void g0_identity_private(PetscInt dim, PetscInt Nf, PetscInt NfAux, const PetscInt uOff[], const PetscInt uOff_x[], const PetscScalar u[], const PetscScalar u_t[], const PetscScalar u_x[], const PetscInt aOff[], const PetscInt aOff_x[], const PetscScalar a[], const PetscScalar a_t[], const PetscScalar a_x[], PetscReal t, PetscReal u_tShift, const PetscReal x[], PetscInt numConstants, const PetscScalar constants[], PetscScalar g0[])
9933 {
9934   const PetscInt Nc = uOff[1] - uOff[0];
9935   PetscInt       c;
9936   for (c = 0; c < Nc; ++c) g0[c * Nc + c] = 1.0;
9937 }
9938 
9939 PetscErrorCode DMCreateMassMatrixLumped_Plex(DM dm, Vec *mass)
9940 {
9941   DM           dmc;
9942   PetscDS      ds;
9943   Vec          ones, locmass;
9944   IS           cellIS;
9945   PetscFormKey key;
9946   PetscInt     depth;
9947 
9948   PetscFunctionBegin;
9949   PetscCall(DMClone(dm, &dmc));
9950   PetscCall(DMCopyDisc(dm, dmc));
9951   PetscCall(DMGetDS(dmc, &ds));
9952   PetscCall(PetscDSSetJacobian(ds, 0, 0, g0_identity_private, NULL, NULL, NULL));
9953   PetscCall(DMCreateGlobalVector(dmc, mass));
9954   PetscCall(DMGetLocalVector(dmc, &ones));
9955   PetscCall(DMGetLocalVector(dmc, &locmass));
9956   PetscCall(DMPlexGetDepth(dmc, &depth));
9957   PetscCall(DMGetStratumIS(dmc, "depth", depth, &cellIS));
9958   PetscCall(VecSet(locmass, 0.0));
9959   PetscCall(VecSet(ones, 1.0));
9960   key.label = NULL;
9961   key.value = 0;
9962   key.field = 0;
9963   key.part  = 0;
9964   PetscCall(DMPlexComputeJacobian_Action_Internal(dmc, key, cellIS, 0.0, 0.0, ones, NULL, ones, locmass, NULL));
9965   PetscCall(ISDestroy(&cellIS));
9966   PetscCall(VecSet(*mass, 0.0));
9967   PetscCall(DMLocalToGlobalBegin(dmc, locmass, ADD_VALUES, *mass));
9968   PetscCall(DMLocalToGlobalEnd(dmc, locmass, ADD_VALUES, *mass));
9969   PetscCall(DMRestoreLocalVector(dmc, &ones));
9970   PetscCall(DMRestoreLocalVector(dmc, &locmass));
9971   PetscCall(DMDestroy(&dmc));
9972   PetscFunctionReturn(PETSC_SUCCESS);
9973 }
9974 
9975 PetscErrorCode DMCreateMassMatrix_Plex(DM dmCoarse, DM dmFine, Mat *mass)
9976 {
9977   PetscSection gsc, gsf;
9978   PetscInt     m, n;
9979   void        *ctx;
9980   DM           cdm;
9981   PetscBool    regular;
9982 
9983   PetscFunctionBegin;
9984   if (dmFine == dmCoarse) {
9985     DM            dmc;
9986     PetscDS       ds;
9987     PetscWeakForm wf;
9988     Vec           u;
9989     IS            cellIS;
9990     PetscFormKey  key;
9991     PetscInt      depth;
9992 
9993     PetscCall(DMClone(dmFine, &dmc));
9994     PetscCall(DMCopyDisc(dmFine, dmc));
9995     PetscCall(DMGetDS(dmc, &ds));
9996     PetscCall(PetscDSGetWeakForm(ds, &wf));
9997     PetscCall(PetscWeakFormClear(wf));
9998     PetscCall(PetscDSSetJacobian(ds, 0, 0, g0_identity_private, NULL, NULL, NULL));
9999     PetscCall(DMCreateMatrix(dmc, mass));
10000     PetscCall(DMGetLocalVector(dmc, &u));
10001     PetscCall(DMPlexGetDepth(dmc, &depth));
10002     PetscCall(DMGetStratumIS(dmc, "depth", depth, &cellIS));
10003     PetscCall(MatZeroEntries(*mass));
10004     key.label = NULL;
10005     key.value = 0;
10006     key.field = 0;
10007     key.part  = 0;
10008     PetscCall(DMPlexComputeJacobian_Internal(dmc, key, cellIS, 0.0, 0.0, u, NULL, *mass, *mass, NULL));
10009     PetscCall(ISDestroy(&cellIS));
10010     PetscCall(DMRestoreLocalVector(dmc, &u));
10011     PetscCall(DMDestroy(&dmc));
10012   } else {
10013     PetscCall(DMGetGlobalSection(dmFine, &gsf));
10014     PetscCall(PetscSectionGetConstrainedStorageSize(gsf, &m));
10015     PetscCall(DMGetGlobalSection(dmCoarse, &gsc));
10016     PetscCall(PetscSectionGetConstrainedStorageSize(gsc, &n));
10017 
10018     PetscCall(MatCreate(PetscObjectComm((PetscObject)dmCoarse), mass));
10019     PetscCall(MatSetSizes(*mass, m, n, PETSC_DETERMINE, PETSC_DETERMINE));
10020     PetscCall(MatSetType(*mass, dmCoarse->mattype));
10021     PetscCall(DMGetApplicationContext(dmFine, &ctx));
10022 
10023     PetscCall(DMGetCoarseDM(dmFine, &cdm));
10024     PetscCall(DMPlexGetRegularRefinement(dmFine, &regular));
10025     if (regular && cdm == dmCoarse) PetscCall(DMPlexComputeMassMatrixNested(dmCoarse, dmFine, *mass, ctx));
10026     else PetscCall(DMPlexComputeMassMatrixGeneral(dmCoarse, dmFine, *mass, ctx));
10027   }
10028   PetscCall(MatViewFromOptions(*mass, NULL, "-mass_mat_view"));
10029   PetscFunctionReturn(PETSC_SUCCESS);
10030 }
10031 
10032 /*@
10033   DMPlexGetRegularRefinement - Get the flag indicating that this mesh was obtained by regular refinement from its coarse mesh
10034 
10035   Input Parameter:
10036 . dm - The `DMPLEX` object
10037 
10038   Output Parameter:
10039 . regular - The flag
10040 
10041   Level: intermediate
10042 
10043 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetRegularRefinement()`
10044 @*/
10045 PetscErrorCode DMPlexGetRegularRefinement(DM dm, PetscBool *regular)
10046 {
10047   PetscFunctionBegin;
10048   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10049   PetscAssertPointer(regular, 2);
10050   *regular = ((DM_Plex *)dm->data)->regularRefinement;
10051   PetscFunctionReturn(PETSC_SUCCESS);
10052 }
10053 
10054 /*@
10055   DMPlexSetRegularRefinement - Set the flag indicating that this mesh was obtained by regular refinement from its coarse mesh
10056 
10057   Input Parameters:
10058 + dm      - The `DMPLEX` object
10059 - regular - The flag
10060 
10061   Level: intermediate
10062 
10063 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetRegularRefinement()`
10064 @*/
10065 PetscErrorCode DMPlexSetRegularRefinement(DM dm, PetscBool regular)
10066 {
10067   PetscFunctionBegin;
10068   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10069   ((DM_Plex *)dm->data)->regularRefinement = regular;
10070   PetscFunctionReturn(PETSC_SUCCESS);
10071 }
10072 
10073 /*@
10074   DMPlexGetAnchors - Get the layout of the anchor (point-to-point) constraints.  Typically, the user will not have to
10075   call DMPlexGetAnchors() directly: if there are anchors, then `DMPlexGetAnchors()` is called during `DMGetDefaultConstraints()`.
10076 
10077   Not Collective
10078 
10079   Input Parameter:
10080 . dm - The `DMPLEX` object
10081 
10082   Output Parameters:
10083 + anchorSection - If not `NULL`, set to the section describing which points anchor the constrained points.
10084 - anchorIS      - If not `NULL`, set to the list of anchors indexed by `anchorSection`
10085 
10086   Level: intermediate
10087 
10088 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetAnchors()`, `DMGetDefaultConstraints()`, `DMSetDefaultConstraints()`, `IS`, `PetscSection`
10089 @*/
10090 PetscErrorCode DMPlexGetAnchors(DM dm, PetscSection *anchorSection, IS *anchorIS)
10091 {
10092   DM_Plex *plex = (DM_Plex *)dm->data;
10093 
10094   PetscFunctionBegin;
10095   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10096   if (!plex->anchorSection && !plex->anchorIS && plex->createanchors) PetscCall((*plex->createanchors)(dm));
10097   if (anchorSection) *anchorSection = plex->anchorSection;
10098   if (anchorIS) *anchorIS = plex->anchorIS;
10099   PetscFunctionReturn(PETSC_SUCCESS);
10100 }
10101 
10102 /*@
10103   DMPlexSetAnchors - Set the layout of the local anchor (point-to-point) constraints.
10104 
10105   Collective
10106 
10107   Input Parameters:
10108 + dm            - The `DMPLEX` object
10109 . anchorSection - The section that describes the mapping from constrained points to the anchor points listed in anchorIS.
10110                   Must have a local communicator (`PETSC_COMM_SELF` or derivative).
10111 - anchorIS      - The list of all anchor points.  Must have a local communicator (`PETSC_COMM_SELF` or derivative).
10112 
10113   Level: intermediate
10114 
10115   Notes:
10116   Unlike boundary conditions, when a point's degrees of freedom in a section are constrained to
10117   an outside value, the anchor constraints set a point's degrees of freedom to be a linear
10118   combination of other points' degrees of freedom.
10119 
10120   After specifying the layout of constraints with `DMPlexSetAnchors()`, one specifies the constraints by calling
10121   `DMGetDefaultConstraints()` and filling in the entries in the constraint matrix.
10122 
10123   The reference counts of `anchorSection` and `anchorIS` are incremented.
10124 
10125 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetAnchors()`, `DMGetDefaultConstraints()`, `DMSetDefaultConstraints()`
10126 @*/
10127 PetscErrorCode DMPlexSetAnchors(DM dm, PetscSection anchorSection, IS anchorIS)
10128 {
10129   DM_Plex    *plex = (DM_Plex *)dm->data;
10130   PetscMPIInt result;
10131 
10132   PetscFunctionBegin;
10133   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10134   if (anchorSection) {
10135     PetscValidHeaderSpecific(anchorSection, PETSC_SECTION_CLASSID, 2);
10136     PetscCallMPI(MPI_Comm_compare(PETSC_COMM_SELF, PetscObjectComm((PetscObject)anchorSection), &result));
10137     PetscCheck(result == MPI_CONGRUENT || result == MPI_IDENT, PETSC_COMM_SELF, PETSC_ERR_ARG_NOTSAMECOMM, "anchor section must have local communicator");
10138   }
10139   if (anchorIS) {
10140     PetscValidHeaderSpecific(anchorIS, IS_CLASSID, 3);
10141     PetscCallMPI(MPI_Comm_compare(PETSC_COMM_SELF, PetscObjectComm((PetscObject)anchorIS), &result));
10142     PetscCheck(result == MPI_CONGRUENT || result == MPI_IDENT, PETSC_COMM_SELF, PETSC_ERR_ARG_NOTSAMECOMM, "anchor IS must have local communicator");
10143   }
10144 
10145   PetscCall(PetscObjectReference((PetscObject)anchorSection));
10146   PetscCall(PetscSectionDestroy(&plex->anchorSection));
10147   plex->anchorSection = anchorSection;
10148 
10149   PetscCall(PetscObjectReference((PetscObject)anchorIS));
10150   PetscCall(ISDestroy(&plex->anchorIS));
10151   plex->anchorIS = anchorIS;
10152 
10153   if (PetscUnlikelyDebug(anchorIS && anchorSection)) {
10154     PetscInt        size, a, pStart, pEnd;
10155     const PetscInt *anchors;
10156 
10157     PetscCall(PetscSectionGetChart(anchorSection, &pStart, &pEnd));
10158     PetscCall(ISGetLocalSize(anchorIS, &size));
10159     PetscCall(ISGetIndices(anchorIS, &anchors));
10160     for (a = 0; a < size; a++) {
10161       PetscInt p;
10162 
10163       p = anchors[a];
10164       if (p >= pStart && p < pEnd) {
10165         PetscInt dof;
10166 
10167         PetscCall(PetscSectionGetDof(anchorSection, p, &dof));
10168         if (dof) {
10169           PetscCall(ISRestoreIndices(anchorIS, &anchors));
10170           SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, "Point %" PetscInt_FMT " cannot be constrained and an anchor", p);
10171         }
10172       }
10173     }
10174     PetscCall(ISRestoreIndices(anchorIS, &anchors));
10175   }
10176   /* reset the generic constraints */
10177   PetscCall(DMSetDefaultConstraints(dm, NULL, NULL, NULL));
10178   PetscFunctionReturn(PETSC_SUCCESS);
10179 }
10180 
10181 static PetscErrorCode DMPlexCreateConstraintSection_Anchors(DM dm, PetscSection section, PetscSection *cSec)
10182 {
10183   PetscSection anchorSection;
10184   PetscInt     pStart, pEnd, sStart, sEnd, p, dof, numFields, f;
10185 
10186   PetscFunctionBegin;
10187   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10188   PetscCall(DMPlexGetAnchors(dm, &anchorSection, NULL));
10189   PetscCall(PetscSectionCreate(PETSC_COMM_SELF, cSec));
10190   PetscCall(PetscSectionGetNumFields(section, &numFields));
10191   if (numFields) {
10192     PetscInt f;
10193     PetscCall(PetscSectionSetNumFields(*cSec, numFields));
10194 
10195     for (f = 0; f < numFields; f++) {
10196       PetscInt numComp;
10197 
10198       PetscCall(PetscSectionGetFieldComponents(section, f, &numComp));
10199       PetscCall(PetscSectionSetFieldComponents(*cSec, f, numComp));
10200     }
10201   }
10202   PetscCall(PetscSectionGetChart(anchorSection, &pStart, &pEnd));
10203   PetscCall(PetscSectionGetChart(section, &sStart, &sEnd));
10204   pStart = PetscMax(pStart, sStart);
10205   pEnd   = PetscMin(pEnd, sEnd);
10206   pEnd   = PetscMax(pStart, pEnd);
10207   PetscCall(PetscSectionSetChart(*cSec, pStart, pEnd));
10208   for (p = pStart; p < pEnd; p++) {
10209     PetscCall(PetscSectionGetDof(anchorSection, p, &dof));
10210     if (dof) {
10211       PetscCall(PetscSectionGetDof(section, p, &dof));
10212       PetscCall(PetscSectionSetDof(*cSec, p, dof));
10213       for (f = 0; f < numFields; f++) {
10214         PetscCall(PetscSectionGetFieldDof(section, p, f, &dof));
10215         PetscCall(PetscSectionSetFieldDof(*cSec, p, f, dof));
10216       }
10217     }
10218   }
10219   PetscCall(PetscSectionSetUp(*cSec));
10220   PetscCall(PetscObjectSetName((PetscObject)*cSec, "Constraint Section"));
10221   PetscFunctionReturn(PETSC_SUCCESS);
10222 }
10223 
10224 static PetscErrorCode DMPlexCreateConstraintMatrix_Anchors(DM dm, PetscSection section, PetscSection cSec, Mat *cMat)
10225 {
10226   PetscSection    aSec;
10227   PetscInt        pStart, pEnd, p, sStart, sEnd, dof, aDof, aOff, off, nnz, annz, m, n, q, a, offset, *i, *j;
10228   const PetscInt *anchors;
10229   PetscInt        numFields, f;
10230   IS              aIS;
10231   MatType         mtype;
10232   PetscBool       iscuda, iskokkos;
10233 
10234   PetscFunctionBegin;
10235   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10236   PetscCall(PetscSectionGetStorageSize(cSec, &m));
10237   PetscCall(PetscSectionGetStorageSize(section, &n));
10238   PetscCall(MatCreate(PETSC_COMM_SELF, cMat));
10239   PetscCall(MatSetSizes(*cMat, m, n, m, n));
10240   PetscCall(PetscStrcmp(dm->mattype, MATSEQAIJCUSPARSE, &iscuda));
10241   if (!iscuda) PetscCall(PetscStrcmp(dm->mattype, MATMPIAIJCUSPARSE, &iscuda));
10242   PetscCall(PetscStrcmp(dm->mattype, MATSEQAIJKOKKOS, &iskokkos));
10243   if (!iskokkos) PetscCall(PetscStrcmp(dm->mattype, MATMPIAIJKOKKOS, &iskokkos));
10244   if (iscuda) mtype = MATSEQAIJCUSPARSE;
10245   else if (iskokkos) mtype = MATSEQAIJKOKKOS;
10246   else mtype = MATSEQAIJ;
10247   PetscCall(MatSetType(*cMat, mtype));
10248   PetscCall(DMPlexGetAnchors(dm, &aSec, &aIS));
10249   PetscCall(ISGetIndices(aIS, &anchors));
10250   /* cSec will be a subset of aSec and section */
10251   PetscCall(PetscSectionGetChart(cSec, &pStart, &pEnd));
10252   PetscCall(PetscSectionGetChart(section, &sStart, &sEnd));
10253   PetscCall(PetscMalloc1(m + 1, &i));
10254   i[0] = 0;
10255   PetscCall(PetscSectionGetNumFields(section, &numFields));
10256   for (p = pStart; p < pEnd; p++) {
10257     PetscInt rDof, rOff, r;
10258 
10259     PetscCall(PetscSectionGetDof(aSec, p, &rDof));
10260     if (!rDof) continue;
10261     PetscCall(PetscSectionGetOffset(aSec, p, &rOff));
10262     if (numFields) {
10263       for (f = 0; f < numFields; f++) {
10264         annz = 0;
10265         for (r = 0; r < rDof; r++) {
10266           a = anchors[rOff + r];
10267           if (a < sStart || a >= sEnd) continue;
10268           PetscCall(PetscSectionGetFieldDof(section, a, f, &aDof));
10269           annz += aDof;
10270         }
10271         PetscCall(PetscSectionGetFieldDof(cSec, p, f, &dof));
10272         PetscCall(PetscSectionGetFieldOffset(cSec, p, f, &off));
10273         for (q = 0; q < dof; q++) i[off + q + 1] = i[off + q] + annz;
10274       }
10275     } else {
10276       annz = 0;
10277       PetscCall(PetscSectionGetDof(cSec, p, &dof));
10278       for (q = 0; q < dof; q++) {
10279         a = anchors[rOff + q];
10280         if (a < sStart || a >= sEnd) continue;
10281         PetscCall(PetscSectionGetDof(section, a, &aDof));
10282         annz += aDof;
10283       }
10284       PetscCall(PetscSectionGetDof(cSec, p, &dof));
10285       PetscCall(PetscSectionGetOffset(cSec, p, &off));
10286       for (q = 0; q < dof; q++) i[off + q + 1] = i[off + q] + annz;
10287     }
10288   }
10289   nnz = i[m];
10290   PetscCall(PetscMalloc1(nnz, &j));
10291   offset = 0;
10292   for (p = pStart; p < pEnd; p++) {
10293     if (numFields) {
10294       for (f = 0; f < numFields; f++) {
10295         PetscCall(PetscSectionGetFieldDof(cSec, p, f, &dof));
10296         for (q = 0; q < dof; q++) {
10297           PetscInt rDof, rOff, r;
10298           PetscCall(PetscSectionGetDof(aSec, p, &rDof));
10299           PetscCall(PetscSectionGetOffset(aSec, p, &rOff));
10300           for (r = 0; r < rDof; r++) {
10301             PetscInt s;
10302 
10303             a = anchors[rOff + r];
10304             if (a < sStart || a >= sEnd) continue;
10305             PetscCall(PetscSectionGetFieldDof(section, a, f, &aDof));
10306             PetscCall(PetscSectionGetFieldOffset(section, a, f, &aOff));
10307             for (s = 0; s < aDof; s++) j[offset++] = aOff + s;
10308           }
10309         }
10310       }
10311     } else {
10312       PetscCall(PetscSectionGetDof(cSec, p, &dof));
10313       for (q = 0; q < dof; q++) {
10314         PetscInt rDof, rOff, r;
10315         PetscCall(PetscSectionGetDof(aSec, p, &rDof));
10316         PetscCall(PetscSectionGetOffset(aSec, p, &rOff));
10317         for (r = 0; r < rDof; r++) {
10318           PetscInt s;
10319 
10320           a = anchors[rOff + r];
10321           if (a < sStart || a >= sEnd) continue;
10322           PetscCall(PetscSectionGetDof(section, a, &aDof));
10323           PetscCall(PetscSectionGetOffset(section, a, &aOff));
10324           for (s = 0; s < aDof; s++) j[offset++] = aOff + s;
10325         }
10326       }
10327     }
10328   }
10329   PetscCall(MatSeqAIJSetPreallocationCSR(*cMat, i, j, NULL));
10330   PetscCall(PetscFree(i));
10331   PetscCall(PetscFree(j));
10332   PetscCall(ISRestoreIndices(aIS, &anchors));
10333   PetscFunctionReturn(PETSC_SUCCESS);
10334 }
10335 
10336 PetscErrorCode DMCreateDefaultConstraints_Plex(DM dm)
10337 {
10338   DM_Plex     *plex = (DM_Plex *)dm->data;
10339   PetscSection anchorSection, section, cSec;
10340   Mat          cMat;
10341 
10342   PetscFunctionBegin;
10343   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10344   PetscCall(DMPlexGetAnchors(dm, &anchorSection, NULL));
10345   if (anchorSection) {
10346     PetscInt Nf;
10347 
10348     PetscCall(DMGetLocalSection(dm, &section));
10349     PetscCall(DMPlexCreateConstraintSection_Anchors(dm, section, &cSec));
10350     PetscCall(DMPlexCreateConstraintMatrix_Anchors(dm, section, cSec, &cMat));
10351     PetscCall(DMGetNumFields(dm, &Nf));
10352     if (Nf && plex->computeanchormatrix) PetscCall((*plex->computeanchormatrix)(dm, section, cSec, cMat));
10353     PetscCall(DMSetDefaultConstraints(dm, cSec, cMat, NULL));
10354     PetscCall(PetscSectionDestroy(&cSec));
10355     PetscCall(MatDestroy(&cMat));
10356   }
10357   PetscFunctionReturn(PETSC_SUCCESS);
10358 }
10359 
10360 PetscErrorCode DMCreateSubDomainDM_Plex(DM dm, DMLabel label, PetscInt value, IS *is, DM *subdm)
10361 {
10362   IS           subis;
10363   PetscSection section, subsection;
10364 
10365   PetscFunctionBegin;
10366   PetscCall(DMGetLocalSection(dm, &section));
10367   PetscCheck(section, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Must set default section for DM before splitting subdomain");
10368   PetscCheck(subdm, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Must set output subDM for splitting subdomain");
10369   /* Create subdomain */
10370   PetscCall(DMPlexFilter(dm, label, value, PETSC_FALSE, PETSC_FALSE, NULL, subdm));
10371   /* Create submodel */
10372   PetscCall(DMPlexGetSubpointIS(*subdm, &subis));
10373   PetscCall(PetscSectionCreateSubmeshSection(section, subis, &subsection));
10374   PetscCall(DMSetLocalSection(*subdm, subsection));
10375   PetscCall(PetscSectionDestroy(&subsection));
10376   PetscCall(DMCopyDisc(dm, *subdm));
10377   /* Create map from submodel to global model */
10378   if (is) {
10379     PetscSection    sectionGlobal, subsectionGlobal;
10380     IS              spIS;
10381     const PetscInt *spmap;
10382     PetscInt       *subIndices;
10383     PetscInt        subSize = 0, subOff = 0, pStart, pEnd, p;
10384     PetscInt        Nf, f, bs = -1, bsLocal[2], bsMinMax[2];
10385 
10386     PetscCall(DMPlexGetSubpointIS(*subdm, &spIS));
10387     PetscCall(ISGetIndices(spIS, &spmap));
10388     PetscCall(PetscSectionGetNumFields(section, &Nf));
10389     PetscCall(DMGetGlobalSection(dm, &sectionGlobal));
10390     PetscCall(DMGetGlobalSection(*subdm, &subsectionGlobal));
10391     PetscCall(PetscSectionGetChart(subsection, &pStart, &pEnd));
10392     for (p = pStart; p < pEnd; ++p) {
10393       PetscInt gdof, pSubSize = 0;
10394 
10395       PetscCall(PetscSectionGetDof(sectionGlobal, p, &gdof));
10396       if (gdof > 0) {
10397         for (f = 0; f < Nf; ++f) {
10398           PetscInt fdof, fcdof;
10399 
10400           PetscCall(PetscSectionGetFieldDof(subsection, p, f, &fdof));
10401           PetscCall(PetscSectionGetFieldConstraintDof(subsection, p, f, &fcdof));
10402           pSubSize += fdof - fcdof;
10403         }
10404         subSize += pSubSize;
10405         if (pSubSize) {
10406           if (bs < 0) {
10407             bs = pSubSize;
10408           } else if (bs != pSubSize) {
10409             /* Layout does not admit a pointwise block size */
10410             bs = 1;
10411           }
10412         }
10413       }
10414     }
10415     /* Must have same blocksize on all procs (some might have no points) */
10416     bsLocal[0] = bs < 0 ? PETSC_MAX_INT : bs;
10417     bsLocal[1] = bs;
10418     PetscCall(PetscGlobalMinMaxInt(PetscObjectComm((PetscObject)dm), bsLocal, bsMinMax));
10419     if (bsMinMax[0] != bsMinMax[1]) {
10420       bs = 1;
10421     } else {
10422       bs = bsMinMax[0];
10423     }
10424     PetscCall(PetscMalloc1(subSize, &subIndices));
10425     for (p = pStart; p < pEnd; ++p) {
10426       PetscInt gdof, goff;
10427 
10428       PetscCall(PetscSectionGetDof(subsectionGlobal, p, &gdof));
10429       if (gdof > 0) {
10430         const PetscInt point = spmap[p];
10431 
10432         PetscCall(PetscSectionGetOffset(sectionGlobal, point, &goff));
10433         for (f = 0; f < Nf; ++f) {
10434           PetscInt fdof, fcdof, fc, f2, poff = 0;
10435 
10436           /* Can get rid of this loop by storing field information in the global section */
10437           for (f2 = 0; f2 < f; ++f2) {
10438             PetscCall(PetscSectionGetFieldDof(section, p, f2, &fdof));
10439             PetscCall(PetscSectionGetFieldConstraintDof(section, p, f2, &fcdof));
10440             poff += fdof - fcdof;
10441           }
10442           PetscCall(PetscSectionGetFieldDof(section, p, f, &fdof));
10443           PetscCall(PetscSectionGetFieldConstraintDof(section, p, f, &fcdof));
10444           for (fc = 0; fc < fdof - fcdof; ++fc, ++subOff) subIndices[subOff] = goff + poff + fc;
10445         }
10446       }
10447     }
10448     PetscCall(ISRestoreIndices(spIS, &spmap));
10449     PetscCall(ISCreateGeneral(PetscObjectComm((PetscObject)dm), subSize, subIndices, PETSC_OWN_POINTER, is));
10450     if (bs > 1) {
10451       /* We need to check that the block size does not come from non-contiguous fields */
10452       PetscInt i, j, set = 1;
10453       for (i = 0; i < subSize; i += bs) {
10454         for (j = 0; j < bs; ++j) {
10455           if (subIndices[i + j] != subIndices[i] + j) {
10456             set = 0;
10457             break;
10458           }
10459         }
10460       }
10461       if (set) PetscCall(ISSetBlockSize(*is, bs));
10462     }
10463     /* Attach nullspace */
10464     for (f = 0; f < Nf; ++f) {
10465       (*subdm)->nullspaceConstructors[f] = dm->nullspaceConstructors[f];
10466       if ((*subdm)->nullspaceConstructors[f]) break;
10467     }
10468     if (f < Nf) {
10469       MatNullSpace nullSpace;
10470       PetscCall((*(*subdm)->nullspaceConstructors[f])(*subdm, f, f, &nullSpace));
10471 
10472       PetscCall(PetscObjectCompose((PetscObject)*is, "nullspace", (PetscObject)nullSpace));
10473       PetscCall(MatNullSpaceDestroy(&nullSpace));
10474     }
10475   }
10476   PetscFunctionReturn(PETSC_SUCCESS);
10477 }
10478 
10479 /*@
10480   DMPlexMonitorThroughput - Report the cell throughput of FE integration
10481 
10482   Input Parameters:
10483 + dm    - The `DM`
10484 - dummy - unused argument
10485 
10486   Options Database Key:
10487 . -dm_plex_monitor_throughput - Activate the monitor
10488 
10489   Level: developer
10490 
10491 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMSetFromOptions()`, `DMPlexCreate()`
10492 @*/
10493 PetscErrorCode DMPlexMonitorThroughput(DM dm, void *dummy)
10494 {
10495   PetscLogHandler default_handler;
10496 
10497   PetscFunctionBegin;
10498   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10499   PetscCall(PetscLogGetDefaultHandler(&default_handler));
10500   if (default_handler) {
10501     PetscLogEvent      event;
10502     PetscEventPerfInfo eventInfo;
10503     PetscReal          cellRate, flopRate;
10504     PetscInt           cStart, cEnd, Nf, N;
10505     const char        *name;
10506 
10507     PetscCall(PetscObjectGetName((PetscObject)dm, &name));
10508     PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd));
10509     PetscCall(DMGetNumFields(dm, &Nf));
10510     PetscCall(PetscLogEventGetId("DMPlexResidualFE", &event));
10511     PetscCall(PetscLogEventGetPerfInfo(PETSC_DEFAULT, event, &eventInfo));
10512     N        = (cEnd - cStart) * Nf * eventInfo.count;
10513     flopRate = eventInfo.flops / eventInfo.time;
10514     cellRate = N / eventInfo.time;
10515     PetscCall(PetscPrintf(PetscObjectComm((PetscObject)dm), "DM (%s) FE Residual Integration: %" PetscInt_FMT " integrals %d reps\n  Cell rate: %.2g/s flop rate: %.2g MF/s\n", name ? name : "unknown", N, eventInfo.count, (double)cellRate, (double)(flopRate / 1.e6)));
10516   } else {
10517     SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Plex Throughput Monitor is not supported if logging is turned off or the default log handler is not running. Reconfigure using --with-log and run with -log_view.");
10518   }
10519   PetscFunctionReturn(PETSC_SUCCESS);
10520 }
10521