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 12 /* Logging support */ 13 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; 14 PetscLogEvent DMPLEX_RebalBuildGraph, DMPLEX_RebalRewriteSF, DMPLEX_RebalGatherGraph, DMPLEX_RebalPartition, DMPLEX_RebalScatterPart, DMPLEX_Generate, DMPLEX_Transform, DMPLEX_GetLocalOffsets, DMPLEX_Uninterpolate; 15 16 PETSC_EXTERN PetscErrorCode VecView_MPI(Vec, PetscViewer); 17 18 /*@ 19 DMPlexIsSimplex - Is the first cell in this mesh a simplex? 20 21 Input Parameter: 22 . dm - The `DMPLEX` object 23 24 Output Parameter: 25 . simplex - Flag checking for a simplex 26 27 Level: intermediate 28 29 Note: 30 This just gives the first range of cells found. If the mesh has several cell types, it will only give the first. 31 If the mesh has no cells, this returns `PETSC_FALSE`. 32 33 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetSimplexOrBoxCells()`, `DMPlexGetCellType()`, `DMPlexGetHeightStratum()`, `DMPolytopeTypeGetNumVertices()` 34 @*/ 35 PetscErrorCode DMPlexIsSimplex(DM dm, PetscBool *simplex) 36 { 37 DMPolytopeType ct; 38 PetscInt cStart, cEnd; 39 40 PetscFunctionBegin; 41 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 42 if (cEnd <= cStart) { 43 *simplex = PETSC_FALSE; 44 PetscFunctionReturn(PETSC_SUCCESS); 45 } 46 PetscCall(DMPlexGetCellType(dm, cStart, &ct)); 47 *simplex = DMPolytopeTypeGetNumVertices(ct) == DMPolytopeTypeGetDim(ct) + 1 ? PETSC_TRUE : PETSC_FALSE; 48 PetscFunctionReturn(PETSC_SUCCESS); 49 } 50 51 /*@ 52 DMPlexGetSimplexOrBoxCells - Get the range of cells which are neither prisms nor ghost FV cells 53 54 Input Parameters: 55 + dm - The `DMPLEX` object 56 - height - The cell height in the Plex, 0 is the default 57 58 Output Parameters: 59 + cStart - The first "normal" cell 60 - cEnd - The upper bound on "normal"" cells 61 62 Level: developer 63 64 Note: 65 This just gives the first range of cells found. If the mesh has several cell types, it will only give the first. 66 67 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexConstructGhostCells()`, `DMPlexGetCellTypeStratum()` 68 @*/ 69 PetscErrorCode DMPlexGetSimplexOrBoxCells(DM dm, PetscInt height, PetscInt *cStart, PetscInt *cEnd) 70 { 71 DMPolytopeType ct = DM_POLYTOPE_UNKNOWN; 72 PetscInt cS, cE, c; 73 74 PetscFunctionBegin; 75 PetscCall(DMPlexGetHeightStratum(dm, PetscMax(height, 0), &cS, &cE)); 76 for (c = cS; c < cE; ++c) { 77 DMPolytopeType cct; 78 79 PetscCall(DMPlexGetCellType(dm, c, &cct)); 80 if ((PetscInt)cct < 0) break; 81 switch (cct) { 82 case DM_POLYTOPE_POINT: 83 case DM_POLYTOPE_SEGMENT: 84 case DM_POLYTOPE_TRIANGLE: 85 case DM_POLYTOPE_QUADRILATERAL: 86 case DM_POLYTOPE_TETRAHEDRON: 87 case DM_POLYTOPE_HEXAHEDRON: 88 ct = cct; 89 break; 90 default: 91 break; 92 } 93 if (ct != DM_POLYTOPE_UNKNOWN) break; 94 } 95 if (ct != DM_POLYTOPE_UNKNOWN) { 96 DMLabel ctLabel; 97 98 PetscCall(DMPlexGetCellTypeLabel(dm, &ctLabel)); 99 PetscCall(DMLabelGetStratumBounds(ctLabel, ct, &cS, &cE)); 100 // Reset label for fast lookup 101 PetscCall(DMLabelMakeAllInvalid_Internal(ctLabel)); 102 } 103 if (cStart) *cStart = cS; 104 if (cEnd) *cEnd = cE; 105 PetscFunctionReturn(PETSC_SUCCESS); 106 } 107 108 PetscErrorCode DMPlexGetFieldType_Internal(DM dm, PetscSection section, PetscInt field, PetscInt *sStart, PetscInt *sEnd, PetscViewerVTKFieldType *ft) 109 { 110 PetscInt cdim, pStart, pEnd, vStart, vEnd, cStart, cEnd; 111 PetscInt vcdof[2] = {0, 0}, globalvcdof[2]; 112 113 PetscFunctionBegin; 114 *ft = PETSC_VTK_INVALID; 115 PetscCall(DMGetCoordinateDim(dm, &cdim)); 116 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 117 PetscCall(DMPlexGetSimplexOrBoxCells(dm, 0, &cStart, &cEnd)); 118 PetscCall(PetscSectionGetChart(section, &pStart, &pEnd)); 119 if (field >= 0) { 120 if ((vStart >= pStart) && (vStart < pEnd)) PetscCall(PetscSectionGetFieldDof(section, vStart, field, &vcdof[0])); 121 if ((cStart >= pStart) && (cStart < pEnd)) PetscCall(PetscSectionGetFieldDof(section, cStart, field, &vcdof[1])); 122 } else { 123 if ((vStart >= pStart) && (vStart < pEnd)) PetscCall(PetscSectionGetDof(section, vStart, &vcdof[0])); 124 if ((cStart >= pStart) && (cStart < pEnd)) PetscCall(PetscSectionGetDof(section, cStart, &vcdof[1])); 125 } 126 PetscCall(MPIU_Allreduce(vcdof, globalvcdof, 2, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm))); 127 if (globalvcdof[0]) { 128 *sStart = vStart; 129 *sEnd = vEnd; 130 if (globalvcdof[0] == cdim) *ft = PETSC_VTK_POINT_VECTOR_FIELD; 131 else *ft = PETSC_VTK_POINT_FIELD; 132 } else if (globalvcdof[1]) { 133 *sStart = cStart; 134 *sEnd = cEnd; 135 if (globalvcdof[1] == cdim) *ft = PETSC_VTK_CELL_VECTOR_FIELD; 136 else *ft = PETSC_VTK_CELL_FIELD; 137 } else { 138 if (field >= 0) { 139 const char *fieldname; 140 141 PetscCall(PetscSectionGetFieldName(section, field, &fieldname)); 142 PetscCall(PetscInfo((PetscObject)dm, "Could not classify VTK output type of section field %" PetscInt_FMT " \"%s\"\n", field, fieldname)); 143 } else { 144 PetscCall(PetscInfo((PetscObject)dm, "Could not classify VTK output type of section\n")); 145 } 146 } 147 PetscFunctionReturn(PETSC_SUCCESS); 148 } 149 150 /*@ 151 DMPlexVecView1D - Plot many 1D solutions on the same line graph 152 153 Collective 154 155 Input Parameters: 156 + dm - The `DMPLEX` object 157 . n - The number of vectors 158 . u - The array of local vectors 159 - viewer - The `PetscViewer` 160 161 Level: advanced 162 163 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `VecViewFromOptions()`, `VecView()` 164 @*/ 165 PetscErrorCode DMPlexVecView1D(DM dm, PetscInt n, Vec u[], PetscViewer viewer) 166 { 167 PetscDS ds; 168 PetscDraw draw = NULL; 169 PetscDrawLG lg; 170 Vec coordinates; 171 const PetscScalar *coords, **sol; 172 PetscReal *vals; 173 PetscInt *Nc; 174 PetscInt Nf, f, c, Nl, l, i, vStart, vEnd, v; 175 char **names; 176 177 PetscFunctionBegin; 178 PetscCall(DMGetDS(dm, &ds)); 179 PetscCall(PetscDSGetNumFields(ds, &Nf)); 180 PetscCall(PetscDSGetTotalComponents(ds, &Nl)); 181 PetscCall(PetscDSGetComponents(ds, &Nc)); 182 183 PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw)); 184 if (!draw) PetscFunctionReturn(PETSC_SUCCESS); 185 PetscCall(PetscDrawLGCreate(draw, n * Nl, &lg)); 186 187 PetscCall(PetscMalloc3(n, &sol, n * Nl, &names, n * Nl, &vals)); 188 for (i = 0, l = 0; i < n; ++i) { 189 const char *vname; 190 191 PetscCall(PetscObjectGetName((PetscObject)u[i], &vname)); 192 for (f = 0; f < Nf; ++f) { 193 PetscObject disc; 194 const char *fname; 195 char tmpname[PETSC_MAX_PATH_LEN]; 196 197 PetscCall(PetscDSGetDiscretization(ds, f, &disc)); 198 /* TODO Create names for components */ 199 for (c = 0; c < Nc[f]; ++c, ++l) { 200 PetscCall(PetscObjectGetName(disc, &fname)); 201 PetscCall(PetscStrncpy(tmpname, vname, sizeof(tmpname))); 202 PetscCall(PetscStrlcat(tmpname, ":", sizeof(tmpname))); 203 PetscCall(PetscStrlcat(tmpname, fname, sizeof(tmpname))); 204 PetscCall(PetscStrallocpy(tmpname, &names[l])); 205 } 206 } 207 } 208 PetscCall(PetscDrawLGSetLegend(lg, (const char *const *)names)); 209 /* Just add P_1 support for now */ 210 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 211 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 212 PetscCall(VecGetArrayRead(coordinates, &coords)); 213 for (i = 0; i < n; ++i) PetscCall(VecGetArrayRead(u[i], &sol[i])); 214 for (v = vStart; v < vEnd; ++v) { 215 PetscScalar *x, *svals; 216 217 PetscCall(DMPlexPointLocalRead(dm, v, coords, &x)); 218 for (i = 0; i < n; ++i) { 219 PetscCall(DMPlexPointLocalRead(dm, v, sol[i], &svals)); 220 for (l = 0; l < Nl; ++l) vals[i * Nl + l] = PetscRealPart(svals[l]); 221 } 222 PetscCall(PetscDrawLGAddCommonPoint(lg, PetscRealPart(x[0]), vals)); 223 } 224 PetscCall(VecRestoreArrayRead(coordinates, &coords)); 225 for (i = 0; i < n; ++i) PetscCall(VecRestoreArrayRead(u[i], &sol[i])); 226 for (l = 0; l < n * Nl; ++l) PetscCall(PetscFree(names[l])); 227 PetscCall(PetscFree3(sol, names, vals)); 228 229 PetscCall(PetscDrawLGDraw(lg)); 230 PetscCall(PetscDrawLGDestroy(&lg)); 231 PetscFunctionReturn(PETSC_SUCCESS); 232 } 233 234 static PetscErrorCode VecView_Plex_Local_Draw_1D(Vec u, PetscViewer viewer) 235 { 236 DM dm; 237 238 PetscFunctionBegin; 239 PetscCall(VecGetDM(u, &dm)); 240 PetscCall(DMPlexVecView1D(dm, 1, &u, viewer)); 241 PetscFunctionReturn(PETSC_SUCCESS); 242 } 243 244 static PetscErrorCode VecView_Plex_Local_Draw_2D(Vec v, PetscViewer viewer) 245 { 246 DM dm; 247 PetscSection s; 248 PetscDraw draw, popup; 249 DM cdm; 250 PetscSection coordSection; 251 Vec coordinates; 252 const PetscScalar *array; 253 PetscReal lbound[3], ubound[3]; 254 PetscReal vbound[2], time; 255 PetscBool flg; 256 PetscInt dim, Nf, f, Nc, comp, vStart, vEnd, cStart, cEnd, c, N, level, step, w = 0; 257 const char *name; 258 char title[PETSC_MAX_PATH_LEN]; 259 260 PetscFunctionBegin; 261 PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw)); 262 PetscCall(VecGetDM(v, &dm)); 263 PetscCall(DMGetCoordinateDim(dm, &dim)); 264 PetscCall(DMGetLocalSection(dm, &s)); 265 PetscCall(PetscSectionGetNumFields(s, &Nf)); 266 PetscCall(DMGetCoarsenLevel(dm, &level)); 267 PetscCall(DMGetCoordinateDM(dm, &cdm)); 268 PetscCall(DMGetLocalSection(cdm, &coordSection)); 269 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 270 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 271 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 272 273 PetscCall(PetscObjectGetName((PetscObject)v, &name)); 274 PetscCall(DMGetOutputSequenceNumber(dm, &step, &time)); 275 276 PetscCall(VecGetLocalSize(coordinates, &N)); 277 PetscCall(DMGetBoundingBox(dm, lbound, ubound)); 278 PetscCall(PetscDrawClear(draw)); 279 280 /* Could implement something like DMDASelectFields() */ 281 for (f = 0; f < Nf; ++f) { 282 DM fdm = dm; 283 Vec fv = v; 284 IS fis; 285 char prefix[PETSC_MAX_PATH_LEN]; 286 const char *fname; 287 288 PetscCall(PetscSectionGetFieldComponents(s, f, &Nc)); 289 PetscCall(PetscSectionGetFieldName(s, f, &fname)); 290 291 if (v->hdr.prefix) PetscCall(PetscStrncpy(prefix, v->hdr.prefix, sizeof(prefix))); 292 else prefix[0] = '\0'; 293 if (Nf > 1) { 294 PetscCall(DMCreateSubDM(dm, 1, &f, &fis, &fdm)); 295 PetscCall(VecGetSubVector(v, fis, &fv)); 296 PetscCall(PetscStrlcat(prefix, fname, sizeof(prefix))); 297 PetscCall(PetscStrlcat(prefix, "_", sizeof(prefix))); 298 } 299 for (comp = 0; comp < Nc; ++comp, ++w) { 300 PetscInt nmax = 2; 301 302 PetscCall(PetscViewerDrawGetDraw(viewer, w, &draw)); 303 if (Nc > 1) PetscCall(PetscSNPrintf(title, sizeof(title), "%s:%s_%" PetscInt_FMT " Step: %" PetscInt_FMT " Time: %.4g", name, fname, comp, step, (double)time)); 304 else PetscCall(PetscSNPrintf(title, sizeof(title), "%s:%s Step: %" PetscInt_FMT " Time: %.4g", name, fname, step, (double)time)); 305 PetscCall(PetscDrawSetTitle(draw, title)); 306 307 /* TODO Get max and min only for this component */ 308 PetscCall(PetscOptionsGetRealArray(NULL, prefix, "-vec_view_bounds", vbound, &nmax, &flg)); 309 if (!flg) { 310 PetscCall(VecMin(fv, NULL, &vbound[0])); 311 PetscCall(VecMax(fv, NULL, &vbound[1])); 312 if (vbound[1] <= vbound[0]) vbound[1] = vbound[0] + 1.0; 313 } 314 315 PetscCall(PetscDrawGetPopup(draw, &popup)); 316 PetscCall(PetscDrawScalePopup(popup, vbound[0], vbound[1])); 317 PetscCall(PetscDrawSetCoordinates(draw, lbound[0], lbound[1], ubound[0], ubound[1])); 318 PetscCall(VecGetArrayRead(fv, &array)); 319 for (c = cStart; c < cEnd; ++c) { 320 PetscScalar *coords = NULL, *a = NULL; 321 const PetscScalar *coords_arr; 322 PetscBool isDG; 323 PetscInt numCoords, color[4] = {-1, -1, -1, -1}; 324 325 PetscCall(DMPlexPointLocalRead(fdm, c, array, &a)); 326 if (a) { 327 color[0] = PetscDrawRealToColor(PetscRealPart(a[comp]), vbound[0], vbound[1]); 328 color[1] = color[2] = color[3] = color[0]; 329 } else { 330 PetscScalar *vals = NULL; 331 PetscInt numVals, va; 332 333 PetscCall(DMPlexVecGetClosure(fdm, NULL, fv, c, &numVals, &vals)); 334 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); 335 switch (numVals / Nc) { 336 case 3: /* P1 Triangle */ 337 case 4: /* P1 Quadrangle */ 338 for (va = 0; va < numVals / Nc; ++va) color[va] = PetscDrawRealToColor(PetscRealPart(vals[va * Nc + comp]), vbound[0], vbound[1]); 339 break; 340 case 6: /* P2 Triangle */ 341 case 8: /* P2 Quadrangle */ 342 for (va = 0; va < numVals / (Nc * 2); ++va) color[va] = PetscDrawRealToColor(PetscRealPart(vals[va * Nc + comp + numVals / (Nc * 2)]), vbound[0], vbound[1]); 343 break; 344 default: 345 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Number of values for cell closure %" PetscInt_FMT " cannot be handled", numVals / Nc); 346 } 347 PetscCall(DMPlexVecRestoreClosure(fdm, NULL, fv, c, &numVals, &vals)); 348 } 349 PetscCall(DMPlexGetCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords)); 350 switch (numCoords) { 351 case 6: 352 case 12: /* Localized triangle */ 353 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])); 354 break; 355 case 8: 356 case 16: /* Localized quadrilateral */ 357 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])); 358 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])); 359 break; 360 default: 361 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells with %" PetscInt_FMT " coordinates", numCoords); 362 } 363 PetscCall(DMPlexRestoreCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords)); 364 } 365 PetscCall(VecRestoreArrayRead(fv, &array)); 366 PetscCall(PetscDrawFlush(draw)); 367 PetscCall(PetscDrawPause(draw)); 368 PetscCall(PetscDrawSave(draw)); 369 } 370 if (Nf > 1) { 371 PetscCall(VecRestoreSubVector(v, fis, &fv)); 372 PetscCall(ISDestroy(&fis)); 373 PetscCall(DMDestroy(&fdm)); 374 } 375 } 376 PetscFunctionReturn(PETSC_SUCCESS); 377 } 378 379 static PetscErrorCode VecView_Plex_Local_Draw(Vec v, PetscViewer viewer) 380 { 381 DM dm; 382 PetscDraw draw; 383 PetscInt dim; 384 PetscBool isnull; 385 386 PetscFunctionBegin; 387 PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw)); 388 PetscCall(PetscDrawIsNull(draw, &isnull)); 389 if (isnull) PetscFunctionReturn(PETSC_SUCCESS); 390 391 PetscCall(VecGetDM(v, &dm)); 392 PetscCall(DMGetCoordinateDim(dm, &dim)); 393 switch (dim) { 394 case 1: 395 PetscCall(VecView_Plex_Local_Draw_1D(v, viewer)); 396 break; 397 case 2: 398 PetscCall(VecView_Plex_Local_Draw_2D(v, viewer)); 399 break; 400 default: 401 SETERRQ(PetscObjectComm((PetscObject)v), PETSC_ERR_SUP, "Cannot draw meshes of dimension %" PetscInt_FMT ". Try PETSCVIEWERGLVIS", dim); 402 } 403 PetscFunctionReturn(PETSC_SUCCESS); 404 } 405 406 static PetscErrorCode VecView_Plex_Local_VTK(Vec v, PetscViewer viewer) 407 { 408 DM dm; 409 Vec locv; 410 const char *name; 411 PetscSection section; 412 PetscInt pStart, pEnd; 413 PetscInt numFields; 414 PetscViewerVTKFieldType ft; 415 416 PetscFunctionBegin; 417 PetscCall(VecGetDM(v, &dm)); 418 PetscCall(DMCreateLocalVector(dm, &locv)); /* VTK viewer requires exclusive ownership of the vector */ 419 PetscCall(PetscObjectGetName((PetscObject)v, &name)); 420 PetscCall(PetscObjectSetName((PetscObject)locv, name)); 421 PetscCall(VecCopy(v, locv)); 422 PetscCall(DMGetLocalSection(dm, §ion)); 423 PetscCall(PetscSectionGetNumFields(section, &numFields)); 424 if (!numFields) { 425 PetscCall(DMPlexGetFieldType_Internal(dm, section, PETSC_DETERMINE, &pStart, &pEnd, &ft)); 426 PetscCall(PetscViewerVTKAddField(viewer, (PetscObject)dm, DMPlexVTKWriteAll, PETSC_DEFAULT, ft, PETSC_TRUE, (PetscObject)locv)); 427 } else { 428 PetscInt f; 429 430 for (f = 0; f < numFields; f++) { 431 PetscCall(DMPlexGetFieldType_Internal(dm, section, f, &pStart, &pEnd, &ft)); 432 if (ft == PETSC_VTK_INVALID) continue; 433 PetscCall(PetscObjectReference((PetscObject)locv)); 434 PetscCall(PetscViewerVTKAddField(viewer, (PetscObject)dm, DMPlexVTKWriteAll, f, ft, PETSC_TRUE, (PetscObject)locv)); 435 } 436 PetscCall(VecDestroy(&locv)); 437 } 438 PetscFunctionReturn(PETSC_SUCCESS); 439 } 440 441 PetscErrorCode VecView_Plex_Local(Vec v, PetscViewer viewer) 442 { 443 DM dm; 444 PetscBool isvtk, ishdf5, isdraw, isglvis, iscgns; 445 446 PetscFunctionBegin; 447 PetscCall(VecGetDM(v, &dm)); 448 PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM"); 449 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk)); 450 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 451 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw)); 452 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERGLVIS, &isglvis)); 453 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERCGNS, &iscgns)); 454 if (isvtk || ishdf5 || isdraw || isglvis || iscgns) { 455 PetscInt i, numFields; 456 PetscObject fe; 457 PetscBool fem = PETSC_FALSE; 458 Vec locv = v; 459 const char *name; 460 PetscInt step; 461 PetscReal time; 462 463 PetscCall(DMGetNumFields(dm, &numFields)); 464 for (i = 0; i < numFields; i++) { 465 PetscCall(DMGetField(dm, i, NULL, &fe)); 466 if (fe->classid == PETSCFE_CLASSID) { 467 fem = PETSC_TRUE; 468 break; 469 } 470 } 471 if (fem) { 472 PetscObject isZero; 473 474 PetscCall(DMGetLocalVector(dm, &locv)); 475 PetscCall(PetscObjectGetName((PetscObject)v, &name)); 476 PetscCall(PetscObjectSetName((PetscObject)locv, name)); 477 PetscCall(PetscObjectQuery((PetscObject)v, "__Vec_bc_zero__", &isZero)); 478 PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", isZero)); 479 PetscCall(VecCopy(v, locv)); 480 PetscCall(DMGetOutputSequenceNumber(dm, NULL, &time)); 481 PetscCall(DMPlexInsertBoundaryValues(dm, PETSC_TRUE, locv, time, NULL, NULL, NULL)); 482 } 483 if (isvtk) { 484 PetscCall(VecView_Plex_Local_VTK(locv, viewer)); 485 } else if (ishdf5) { 486 #if defined(PETSC_HAVE_HDF5) 487 PetscCall(VecView_Plex_Local_HDF5_Internal(locv, viewer)); 488 #else 489 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 490 #endif 491 } else if (isdraw) { 492 PetscCall(VecView_Plex_Local_Draw(locv, viewer)); 493 } else if (isglvis) { 494 PetscCall(DMGetOutputSequenceNumber(dm, &step, NULL)); 495 PetscCall(PetscViewerGLVisSetSnapId(viewer, step)); 496 PetscCall(VecView_GLVis(locv, viewer)); 497 } else if (iscgns) { 498 #if defined(PETSC_HAVE_CGNS) 499 PetscCall(VecView_Plex_Local_CGNS(locv, viewer)); 500 #else 501 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "CGNS not supported in this build.\nPlease reconfigure using --download-cgns"); 502 #endif 503 } 504 if (fem) { 505 PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", NULL)); 506 PetscCall(DMRestoreLocalVector(dm, &locv)); 507 } 508 } else { 509 PetscBool isseq; 510 511 PetscCall(PetscObjectTypeCompare((PetscObject)v, VECSEQ, &isseq)); 512 if (isseq) PetscCall(VecView_Seq(v, viewer)); 513 else PetscCall(VecView_MPI(v, viewer)); 514 } 515 PetscFunctionReturn(PETSC_SUCCESS); 516 } 517 518 PetscErrorCode VecView_Plex(Vec v, PetscViewer viewer) 519 { 520 DM dm; 521 PetscBool isvtk, ishdf5, isdraw, isglvis, isexodusii, iscgns; 522 523 PetscFunctionBegin; 524 PetscCall(VecGetDM(v, &dm)); 525 PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM"); 526 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk)); 527 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 528 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw)); 529 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERGLVIS, &isglvis)); 530 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERCGNS, &iscgns)); 531 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWEREXODUSII, &isexodusii)); 532 if (isvtk || isdraw || isglvis || iscgns) { 533 Vec locv; 534 PetscObject isZero; 535 const char *name; 536 537 PetscCall(DMGetLocalVector(dm, &locv)); 538 PetscCall(PetscObjectGetName((PetscObject)v, &name)); 539 PetscCall(PetscObjectSetName((PetscObject)locv, name)); 540 PetscCall(DMGlobalToLocalBegin(dm, v, INSERT_VALUES, locv)); 541 PetscCall(DMGlobalToLocalEnd(dm, v, INSERT_VALUES, locv)); 542 PetscCall(PetscObjectQuery((PetscObject)v, "__Vec_bc_zero__", &isZero)); 543 PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", isZero)); 544 PetscCall(VecView_Plex_Local(locv, viewer)); 545 PetscCall(PetscObjectCompose((PetscObject)locv, "__Vec_bc_zero__", NULL)); 546 PetscCall(DMRestoreLocalVector(dm, &locv)); 547 } else if (ishdf5) { 548 #if defined(PETSC_HAVE_HDF5) 549 PetscCall(VecView_Plex_HDF5_Internal(v, viewer)); 550 #else 551 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 552 #endif 553 } else if (isexodusii) { 554 #if defined(PETSC_HAVE_EXODUSII) 555 PetscCall(VecView_PlexExodusII_Internal(v, viewer)); 556 #else 557 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "ExodusII not supported in this build.\nPlease reconfigure using --download-exodusii"); 558 #endif 559 } else { 560 PetscBool isseq; 561 562 PetscCall(PetscObjectTypeCompare((PetscObject)v, VECSEQ, &isseq)); 563 if (isseq) PetscCall(VecView_Seq(v, viewer)); 564 else PetscCall(VecView_MPI(v, viewer)); 565 } 566 PetscFunctionReturn(PETSC_SUCCESS); 567 } 568 569 PetscErrorCode VecView_Plex_Native(Vec originalv, PetscViewer viewer) 570 { 571 DM dm; 572 MPI_Comm comm; 573 PetscViewerFormat format; 574 Vec v; 575 PetscBool isvtk, ishdf5; 576 577 PetscFunctionBegin; 578 PetscCall(VecGetDM(originalv, &dm)); 579 PetscCall(PetscObjectGetComm((PetscObject)originalv, &comm)); 580 PetscCheck(dm, comm, PETSC_ERR_ARG_WRONG, "Vector not generated from a DM"); 581 PetscCall(PetscViewerGetFormat(viewer, &format)); 582 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 583 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk)); 584 if (format == PETSC_VIEWER_NATIVE) { 585 /* Natural ordering is the common case for DMDA, NATIVE means plain vector, for PLEX is the opposite */ 586 /* this need a better fix */ 587 if (dm->useNatural) { 588 if (dm->sfNatural) { 589 const char *vecname; 590 PetscInt n, nroots; 591 592 PetscCall(VecGetLocalSize(originalv, &n)); 593 PetscCall(PetscSFGetGraph(dm->sfNatural, &nroots, NULL, NULL, NULL)); 594 if (n == nroots) { 595 PetscCall(DMPlexCreateNaturalVector(dm, &v)); 596 PetscCall(DMPlexGlobalToNaturalBegin(dm, originalv, v)); 597 PetscCall(DMPlexGlobalToNaturalEnd(dm, originalv, v)); 598 PetscCall(PetscObjectGetName((PetscObject)originalv, &vecname)); 599 PetscCall(PetscObjectSetName((PetscObject)v, vecname)); 600 } else SETERRQ(comm, PETSC_ERR_ARG_WRONG, "DM global to natural SF only handles global vectors"); 601 } else SETERRQ(comm, PETSC_ERR_ARG_WRONGSTATE, "DM global to natural SF was not created"); 602 } else v = originalv; 603 } else v = originalv; 604 605 if (ishdf5) { 606 #if defined(PETSC_HAVE_HDF5) 607 PetscCall(VecView_Plex_HDF5_Native_Internal(v, viewer)); 608 #else 609 SETERRQ(comm, PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 610 #endif 611 } else if (isvtk) { 612 SETERRQ(comm, PETSC_ERR_SUP, "VTK format does not support viewing in natural order. Please switch to HDF5."); 613 } else { 614 PetscBool isseq; 615 616 PetscCall(PetscObjectTypeCompare((PetscObject)v, VECSEQ, &isseq)); 617 if (isseq) PetscCall(VecView_Seq(v, viewer)); 618 else PetscCall(VecView_MPI(v, viewer)); 619 } 620 if (v != originalv) PetscCall(VecDestroy(&v)); 621 PetscFunctionReturn(PETSC_SUCCESS); 622 } 623 624 PetscErrorCode VecLoad_Plex_Local(Vec v, PetscViewer viewer) 625 { 626 DM dm; 627 PetscBool ishdf5; 628 629 PetscFunctionBegin; 630 PetscCall(VecGetDM(v, &dm)); 631 PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM"); 632 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 633 if (ishdf5) { 634 DM dmBC; 635 Vec gv; 636 const char *name; 637 638 PetscCall(DMGetOutputDM(dm, &dmBC)); 639 PetscCall(DMGetGlobalVector(dmBC, &gv)); 640 PetscCall(PetscObjectGetName((PetscObject)v, &name)); 641 PetscCall(PetscObjectSetName((PetscObject)gv, name)); 642 PetscCall(VecLoad_Default(gv, viewer)); 643 PetscCall(DMGlobalToLocalBegin(dmBC, gv, INSERT_VALUES, v)); 644 PetscCall(DMGlobalToLocalEnd(dmBC, gv, INSERT_VALUES, v)); 645 PetscCall(DMRestoreGlobalVector(dmBC, &gv)); 646 } else PetscCall(VecLoad_Default(v, viewer)); 647 PetscFunctionReturn(PETSC_SUCCESS); 648 } 649 650 PetscErrorCode VecLoad_Plex(Vec v, PetscViewer viewer) 651 { 652 DM dm; 653 PetscBool ishdf5, isexodusii; 654 655 PetscFunctionBegin; 656 PetscCall(VecGetDM(v, &dm)); 657 PetscCheck(dm, PetscObjectComm((PetscObject)v), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM"); 658 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 659 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWEREXODUSII, &isexodusii)); 660 if (ishdf5) { 661 #if defined(PETSC_HAVE_HDF5) 662 PetscCall(VecLoad_Plex_HDF5_Internal(v, viewer)); 663 #else 664 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 665 #endif 666 } else if (isexodusii) { 667 #if defined(PETSC_HAVE_EXODUSII) 668 PetscCall(VecLoad_PlexExodusII_Internal(v, viewer)); 669 #else 670 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "ExodusII not supported in this build.\nPlease reconfigure using --download-exodusii"); 671 #endif 672 } else PetscCall(VecLoad_Default(v, viewer)); 673 PetscFunctionReturn(PETSC_SUCCESS); 674 } 675 676 PetscErrorCode VecLoad_Plex_Native(Vec originalv, PetscViewer viewer) 677 { 678 DM dm; 679 PetscViewerFormat format; 680 PetscBool ishdf5; 681 682 PetscFunctionBegin; 683 PetscCall(VecGetDM(originalv, &dm)); 684 PetscCheck(dm, PetscObjectComm((PetscObject)originalv), PETSC_ERR_ARG_WRONG, "Vector not generated from a DM"); 685 PetscCall(PetscViewerGetFormat(viewer, &format)); 686 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 687 if (format == PETSC_VIEWER_NATIVE) { 688 if (dm->useNatural) { 689 if (dm->sfNatural) { 690 if (ishdf5) { 691 #if defined(PETSC_HAVE_HDF5) 692 Vec v; 693 const char *vecname; 694 695 PetscCall(DMPlexCreateNaturalVector(dm, &v)); 696 PetscCall(PetscObjectGetName((PetscObject)originalv, &vecname)); 697 PetscCall(PetscObjectSetName((PetscObject)v, vecname)); 698 PetscCall(VecLoad_Plex_HDF5_Native_Internal(v, viewer)); 699 PetscCall(DMPlexNaturalToGlobalBegin(dm, v, originalv)); 700 PetscCall(DMPlexNaturalToGlobalEnd(dm, v, originalv)); 701 PetscCall(VecDestroy(&v)); 702 #else 703 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 704 #endif 705 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Reading in natural order is not supported for anything but HDF5."); 706 } 707 } else PetscCall(VecLoad_Default(originalv, viewer)); 708 } 709 PetscFunctionReturn(PETSC_SUCCESS); 710 } 711 712 PETSC_UNUSED static PetscErrorCode DMPlexView_Ascii_Geometry(DM dm, PetscViewer viewer) 713 { 714 PetscSection coordSection; 715 Vec coordinates; 716 DMLabel depthLabel, celltypeLabel; 717 const char *name[4]; 718 const PetscScalar *a; 719 PetscInt dim, pStart, pEnd, cStart, cEnd, c; 720 721 PetscFunctionBegin; 722 PetscCall(DMGetDimension(dm, &dim)); 723 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 724 PetscCall(DMGetCoordinateSection(dm, &coordSection)); 725 PetscCall(DMPlexGetDepthLabel(dm, &depthLabel)); 726 PetscCall(DMPlexGetCellTypeLabel(dm, &celltypeLabel)); 727 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 728 PetscCall(PetscSectionGetChart(coordSection, &pStart, &pEnd)); 729 PetscCall(VecGetArrayRead(coordinates, &a)); 730 name[0] = "vertex"; 731 name[1] = "edge"; 732 name[dim - 1] = "face"; 733 name[dim] = "cell"; 734 for (c = cStart; c < cEnd; ++c) { 735 PetscInt *closure = NULL; 736 PetscInt closureSize, cl, ct; 737 738 PetscCall(DMLabelGetValue(celltypeLabel, c, &ct)); 739 PetscCall(PetscViewerASCIIPrintf(viewer, "Geometry for cell %" PetscInt_FMT " polytope type %s:\n", c, DMPolytopeTypes[ct])); 740 PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 741 PetscCall(PetscViewerASCIIPushTab(viewer)); 742 for (cl = 0; cl < closureSize * 2; cl += 2) { 743 PetscInt point = closure[cl], depth, dof, off, d, p; 744 745 if ((point < pStart) || (point >= pEnd)) continue; 746 PetscCall(PetscSectionGetDof(coordSection, point, &dof)); 747 if (!dof) continue; 748 PetscCall(DMLabelGetValue(depthLabel, point, &depth)); 749 PetscCall(PetscSectionGetOffset(coordSection, point, &off)); 750 PetscCall(PetscViewerASCIIPrintf(viewer, "%s %" PetscInt_FMT " coords:", name[depth], point)); 751 for (p = 0; p < dof / dim; ++p) { 752 PetscCall(PetscViewerASCIIPrintf(viewer, " (")); 753 for (d = 0; d < dim; ++d) { 754 if (d > 0) PetscCall(PetscViewerASCIIPrintf(viewer, ", ")); 755 PetscCall(PetscViewerASCIIPrintf(viewer, "%g", (double)PetscRealPart(a[off + p * dim + d]))); 756 } 757 PetscCall(PetscViewerASCIIPrintf(viewer, ")")); 758 } 759 PetscCall(PetscViewerASCIIPrintf(viewer, "\n")); 760 } 761 PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 762 PetscCall(PetscViewerASCIIPopTab(viewer)); 763 } 764 PetscCall(VecRestoreArrayRead(coordinates, &a)); 765 PetscFunctionReturn(PETSC_SUCCESS); 766 } 767 768 typedef enum { 769 CS_CARTESIAN, 770 CS_POLAR, 771 CS_CYLINDRICAL, 772 CS_SPHERICAL 773 } CoordSystem; 774 const char *CoordSystems[] = {"cartesian", "polar", "cylindrical", "spherical", "CoordSystem", "CS_", NULL}; 775 776 static PetscErrorCode DMPlexView_Ascii_Coordinates(PetscViewer viewer, CoordSystem cs, PetscInt dim, const PetscScalar x[]) 777 { 778 PetscInt i; 779 780 PetscFunctionBegin; 781 if (dim > 3) { 782 for (i = 0; i < dim; ++i) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " %g", (double)PetscRealPart(x[i]))); 783 } else { 784 PetscReal coords[3], trcoords[3] = {0., 0., 0.}; 785 786 for (i = 0; i < dim; ++i) coords[i] = PetscRealPart(x[i]); 787 switch (cs) { 788 case CS_CARTESIAN: 789 for (i = 0; i < dim; ++i) trcoords[i] = coords[i]; 790 break; 791 case CS_POLAR: 792 PetscCheck(dim == 2, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Polar coordinates are for 2 dimension, not %" PetscInt_FMT, dim); 793 trcoords[0] = PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1])); 794 trcoords[1] = PetscAtan2Real(coords[1], coords[0]); 795 break; 796 case CS_CYLINDRICAL: 797 PetscCheck(dim == 3, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cylindrical coordinates are for 3 dimension, not %" PetscInt_FMT, dim); 798 trcoords[0] = PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1])); 799 trcoords[1] = PetscAtan2Real(coords[1], coords[0]); 800 trcoords[2] = coords[2]; 801 break; 802 case CS_SPHERICAL: 803 PetscCheck(dim == 3, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Spherical coordinates are for 3 dimension, not %" PetscInt_FMT, dim); 804 trcoords[0] = PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1]) + PetscSqr(coords[2])); 805 trcoords[1] = PetscAtan2Real(PetscSqrtReal(PetscSqr(coords[0]) + PetscSqr(coords[1])), coords[2]); 806 trcoords[2] = PetscAtan2Real(coords[1], coords[0]); 807 break; 808 } 809 for (i = 0; i < dim; ++i) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " %g", (double)trcoords[i])); 810 } 811 PetscFunctionReturn(PETSC_SUCCESS); 812 } 813 814 static PetscErrorCode DMPlexView_Ascii(DM dm, PetscViewer viewer) 815 { 816 DM_Plex *mesh = (DM_Plex *)dm->data; 817 DM cdm, cdmCell; 818 PetscSection coordSection, coordSectionCell; 819 Vec coordinates, coordinatesCell; 820 PetscViewerFormat format; 821 822 PetscFunctionBegin; 823 PetscCall(PetscViewerGetFormat(viewer, &format)); 824 if (format == PETSC_VIEWER_ASCII_INFO_DETAIL) { 825 const char *name; 826 PetscInt dim, cellHeight, maxConeSize, maxSupportSize; 827 PetscInt pStart, pEnd, p, numLabels, l; 828 PetscMPIInt rank, size; 829 830 PetscCall(DMGetCoordinateDM(dm, &cdm)); 831 PetscCall(DMGetCoordinateSection(dm, &coordSection)); 832 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 833 PetscCall(DMGetCellCoordinateDM(dm, &cdmCell)); 834 PetscCall(DMGetCellCoordinateSection(dm, &coordSectionCell)); 835 PetscCall(DMGetCellCoordinatesLocal(dm, &coordinatesCell)); 836 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank)); 837 PetscCallMPI(MPI_Comm_size(PetscObjectComm((PetscObject)dm), &size)); 838 PetscCall(PetscObjectGetName((PetscObject)dm, &name)); 839 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 840 PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize)); 841 PetscCall(DMGetDimension(dm, &dim)); 842 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 843 if (name) PetscCall(PetscViewerASCIIPrintf(viewer, "%s in %" PetscInt_FMT " dimension%s:\n", name, dim, dim == 1 ? "" : "s")); 844 else PetscCall(PetscViewerASCIIPrintf(viewer, "Mesh in %" PetscInt_FMT " dimension%s:\n", dim, dim == 1 ? "" : "s")); 845 if (cellHeight) PetscCall(PetscViewerASCIIPrintf(viewer, " Cells are at height %" PetscInt_FMT "\n", cellHeight)); 846 PetscCall(PetscViewerASCIIPrintf(viewer, "Supports:\n")); 847 PetscCall(PetscViewerASCIIPushSynchronized(viewer)); 848 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d] Max support size: %" PetscInt_FMT "\n", rank, maxSupportSize)); 849 for (p = pStart; p < pEnd; ++p) { 850 PetscInt dof, off, s; 851 852 PetscCall(PetscSectionGetDof(mesh->supportSection, p, &dof)); 853 PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off)); 854 for (s = off; s < off + dof; ++s) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d]: %" PetscInt_FMT " ----> %" PetscInt_FMT "\n", rank, p, mesh->supports[s])); 855 } 856 PetscCall(PetscViewerFlush(viewer)); 857 PetscCall(PetscViewerASCIIPrintf(viewer, "Cones:\n")); 858 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "[%d] Max cone size: %" PetscInt_FMT "\n", rank, maxConeSize)); 859 for (p = pStart; p < pEnd; ++p) { 860 PetscInt dof, off, c; 861 862 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 863 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 864 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])); 865 } 866 PetscCall(PetscViewerFlush(viewer)); 867 PetscCall(PetscViewerASCIIPopSynchronized(viewer)); 868 if (coordSection && coordinates) { 869 CoordSystem cs = CS_CARTESIAN; 870 const PetscScalar *array, *arrayCell = NULL; 871 PetscInt Nf, Nc, pvStart, pvEnd, pcStart = PETSC_MAX_INT, pcEnd = PETSC_MIN_INT, pStart, pEnd, p; 872 PetscMPIInt rank; 873 const char *name; 874 875 PetscCall(PetscOptionsGetEnum(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_coord_system", CoordSystems, (PetscEnum *)&cs, NULL)); 876 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)viewer), &rank)); 877 PetscCall(PetscSectionGetNumFields(coordSection, &Nf)); 878 PetscCheck(Nf == 1, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Coordinate section should have 1 field, not %" PetscInt_FMT, Nf); 879 PetscCall(PetscSectionGetFieldComponents(coordSection, 0, &Nc)); 880 PetscCall(PetscSectionGetChart(coordSection, &pvStart, &pvEnd)); 881 if (coordSectionCell) PetscCall(PetscSectionGetChart(coordSectionCell, &pcStart, &pcEnd)); 882 pStart = PetscMin(pvStart, pcStart); 883 pEnd = PetscMax(pvEnd, pcEnd); 884 PetscCall(PetscObjectGetName((PetscObject)coordinates, &name)); 885 PetscCall(PetscViewerASCIIPrintf(viewer, "%s with %" PetscInt_FMT " fields\n", name, Nf)); 886 PetscCall(PetscViewerASCIIPrintf(viewer, " field 0 with %" PetscInt_FMT " components\n", Nc)); 887 if (cs != CS_CARTESIAN) PetscCall(PetscViewerASCIIPrintf(viewer, " output coordinate system: %s\n", CoordSystems[cs])); 888 889 PetscCall(VecGetArrayRead(coordinates, &array)); 890 if (coordinatesCell) PetscCall(VecGetArrayRead(coordinatesCell, &arrayCell)); 891 PetscCall(PetscViewerASCIIPushSynchronized(viewer)); 892 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "Process %d:\n", rank)); 893 for (p = pStart; p < pEnd; ++p) { 894 PetscInt dof, off; 895 896 if (p >= pvStart && p < pvEnd) { 897 PetscCall(PetscSectionGetDof(coordSection, p, &dof)); 898 PetscCall(PetscSectionGetOffset(coordSection, p, &off)); 899 if (dof) { 900 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " (%4" PetscInt_FMT ") dim %2" PetscInt_FMT " offset %3" PetscInt_FMT, p, dof, off)); 901 PetscCall(DMPlexView_Ascii_Coordinates(viewer, cs, dof, &array[off])); 902 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\n")); 903 } 904 } 905 if (cdmCell && p >= pcStart && p < pcEnd) { 906 PetscCall(PetscSectionGetDof(coordSectionCell, p, &dof)); 907 PetscCall(PetscSectionGetOffset(coordSectionCell, p, &off)); 908 if (dof) { 909 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " (%4" PetscInt_FMT ") dim %2" PetscInt_FMT " offset %3" PetscInt_FMT, p, dof, off)); 910 PetscCall(DMPlexView_Ascii_Coordinates(viewer, cs, dof, &arrayCell[off])); 911 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\n")); 912 } 913 } 914 } 915 PetscCall(PetscViewerFlush(viewer)); 916 PetscCall(PetscViewerASCIIPopSynchronized(viewer)); 917 PetscCall(VecRestoreArrayRead(coordinates, &array)); 918 if (coordinatesCell) PetscCall(VecRestoreArrayRead(coordinatesCell, &arrayCell)); 919 } 920 PetscCall(DMGetNumLabels(dm, &numLabels)); 921 if (numLabels) PetscCall(PetscViewerASCIIPrintf(viewer, "Labels:\n")); 922 for (l = 0; l < numLabels; ++l) { 923 DMLabel label; 924 PetscBool isdepth; 925 const char *name; 926 927 PetscCall(DMGetLabelName(dm, l, &name)); 928 PetscCall(PetscStrcmp(name, "depth", &isdepth)); 929 if (isdepth) continue; 930 PetscCall(DMGetLabel(dm, name, &label)); 931 PetscCall(DMLabelView(label, viewer)); 932 } 933 if (size > 1) { 934 PetscSF sf; 935 936 PetscCall(DMGetPointSF(dm, &sf)); 937 PetscCall(PetscSFView(sf, viewer)); 938 } 939 if (mesh->periodic.face_sf) PetscCall(PetscSFView(mesh->periodic.face_sf, viewer)); 940 PetscCall(PetscViewerFlush(viewer)); 941 } else if (format == PETSC_VIEWER_ASCII_LATEX) { 942 const char *name, *color; 943 const char *defcolors[3] = {"gray", "orange", "green"}; 944 const char *deflcolors[4] = {"blue", "cyan", "red", "magenta"}; 945 char lname[PETSC_MAX_PATH_LEN]; 946 PetscReal scale = 2.0; 947 PetscReal tikzscale = 1.0; 948 PetscBool useNumbers = PETSC_TRUE, drawNumbers[4], drawColors[4], useLabels, useColors, plotEdges, drawHasse = PETSC_FALSE; 949 double tcoords[3]; 950 PetscScalar *coords; 951 PetscInt numLabels, l, numColors, numLColors, dim, d, depth, cStart, cEnd, c, vStart, vEnd, v, eStart = 0, eEnd = 0, e, p, n; 952 PetscMPIInt rank, size; 953 char **names, **colors, **lcolors; 954 PetscBool flg, lflg; 955 PetscBT wp = NULL; 956 PetscInt pEnd, pStart; 957 958 PetscCall(DMGetCoordinateDM(dm, &cdm)); 959 PetscCall(DMGetCoordinateSection(dm, &coordSection)); 960 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 961 PetscCall(DMGetCellCoordinateDM(dm, &cdmCell)); 962 PetscCall(DMGetCellCoordinateSection(dm, &coordSectionCell)); 963 PetscCall(DMGetCellCoordinatesLocal(dm, &coordinatesCell)); 964 PetscCall(DMGetDimension(dm, &dim)); 965 PetscCall(DMPlexGetDepth(dm, &depth)); 966 PetscCall(DMGetNumLabels(dm, &numLabels)); 967 numLabels = PetscMax(numLabels, 10); 968 numColors = 10; 969 numLColors = 10; 970 PetscCall(PetscCalloc3(numLabels, &names, numColors, &colors, numLColors, &lcolors)); 971 PetscCall(PetscOptionsGetReal(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_scale", &scale, NULL)); 972 PetscCall(PetscOptionsGetReal(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_tikzscale", &tikzscale, NULL)); 973 PetscCall(PetscOptionsGetBool(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_numbers", &useNumbers, NULL)); 974 for (d = 0; d < 4; ++d) drawNumbers[d] = useNumbers; 975 for (d = 0; d < 4; ++d) drawColors[d] = PETSC_TRUE; 976 n = 4; 977 PetscCall(PetscOptionsGetBoolArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_numbers_depth", drawNumbers, &n, &flg)); 978 PetscCheck(!flg || n == dim + 1, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "Number of flags %" PetscInt_FMT " != %" PetscInt_FMT " dim+1", n, dim + 1); 979 PetscCall(PetscOptionsGetBoolArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_colors_depth", drawColors, &n, &flg)); 980 PetscCheck(!flg || n == dim + 1, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_SIZ, "Number of flags %" PetscInt_FMT " != %" PetscInt_FMT " dim+1", n, dim + 1); 981 PetscCall(PetscOptionsGetStringArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_labels", names, &numLabels, &useLabels)); 982 if (!useLabels) numLabels = 0; 983 PetscCall(PetscOptionsGetStringArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_colors", colors, &numColors, &useColors)); 984 if (!useColors) { 985 numColors = 3; 986 for (c = 0; c < numColors; ++c) PetscCall(PetscStrallocpy(defcolors[c], &colors[c])); 987 } 988 PetscCall(PetscOptionsGetStringArray(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_lcolors", lcolors, &numLColors, &useColors)); 989 if (!useColors) { 990 numLColors = 4; 991 for (c = 0; c < numLColors; ++c) PetscCall(PetscStrallocpy(deflcolors[c], &lcolors[c])); 992 } 993 PetscCall(PetscOptionsGetString(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_label_filter", lname, sizeof(lname), &lflg)); 994 plotEdges = (PetscBool)(depth > 1 && drawNumbers[1] && dim < 3); 995 PetscCall(PetscOptionsGetBool(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_edges", &plotEdges, &flg)); 996 PetscCheck(!flg || !plotEdges || depth >= dim, PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Mesh must be interpolated"); 997 if (depth < dim) plotEdges = PETSC_FALSE; 998 PetscCall(PetscOptionsGetBool(((PetscObject)viewer)->options, ((PetscObject)viewer)->prefix, "-dm_plex_view_hasse", &drawHasse, NULL)); 999 1000 /* filter points with labelvalue != labeldefaultvalue */ 1001 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 1002 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 1003 PetscCall(DMPlexGetDepthStratum(dm, 1, &eStart, &eEnd)); 1004 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 1005 if (lflg) { 1006 DMLabel lbl; 1007 1008 PetscCall(DMGetLabel(dm, lname, &lbl)); 1009 if (lbl) { 1010 PetscInt val, defval; 1011 1012 PetscCall(DMLabelGetDefaultValue(lbl, &defval)); 1013 PetscCall(PetscBTCreate(pEnd - pStart, &wp)); 1014 for (c = pStart; c < pEnd; c++) { 1015 PetscInt *closure = NULL; 1016 PetscInt closureSize; 1017 1018 PetscCall(DMLabelGetValue(lbl, c, &val)); 1019 if (val == defval) continue; 1020 1021 PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 1022 for (p = 0; p < closureSize * 2; p += 2) PetscCall(PetscBTSet(wp, closure[p] - pStart)); 1023 PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 1024 } 1025 } 1026 } 1027 1028 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank)); 1029 PetscCallMPI(MPI_Comm_size(PetscObjectComm((PetscObject)dm), &size)); 1030 PetscCall(PetscObjectGetName((PetscObject)dm, &name)); 1031 PetscCall(PetscViewerASCIIPrintf(viewer, "\ 1032 \\documentclass[tikz]{standalone}\n\n\ 1033 \\usepackage{pgflibraryshapes}\n\ 1034 \\usetikzlibrary{backgrounds}\n\ 1035 \\usetikzlibrary{arrows}\n\ 1036 \\begin{document}\n")); 1037 if (size > 1) { 1038 PetscCall(PetscViewerASCIIPrintf(viewer, "%s for process ", name)); 1039 for (p = 0; p < size; ++p) { 1040 if (p) PetscCall(PetscViewerASCIIPrintf(viewer, (p == size - 1) ? ", and " : ", ")); 1041 PetscCall(PetscViewerASCIIPrintf(viewer, "{\\textcolor{%s}%" PetscInt_FMT "}", colors[p % numColors], p)); 1042 } 1043 PetscCall(PetscViewerASCIIPrintf(viewer, ".\n\n\n")); 1044 } 1045 if (drawHasse) { 1046 PetscInt maxStratum = PetscMax(vEnd - vStart, PetscMax(eEnd - eStart, cEnd - cStart)); 1047 1048 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\vStart}{%" PetscInt_FMT "}\n", vStart)); 1049 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\vEnd}{%" PetscInt_FMT "}\n", vEnd - 1)); 1050 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\numVertices}{%" PetscInt_FMT "}\n", vEnd - vStart)); 1051 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\vShift}{%.2f}\n", 3 + (maxStratum - (vEnd - vStart)) / 2.)); 1052 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\eStart}{%" PetscInt_FMT "}\n", eStart)); 1053 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\eEnd}{%" PetscInt_FMT "}\n", eEnd - 1)); 1054 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\eShift}{%.2f}\n", 3 + (maxStratum - (eEnd - eStart)) / 2.)); 1055 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\numEdges}{%" PetscInt_FMT "}\n", eEnd - eStart)); 1056 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\cStart}{%" PetscInt_FMT "}\n", cStart)); 1057 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\cEnd}{%" PetscInt_FMT "}\n", cEnd - 1)); 1058 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\numCells}{%" PetscInt_FMT "}\n", cEnd - cStart)); 1059 PetscCall(PetscViewerASCIIPrintf(viewer, "\\newcommand{\\cShift}{%.2f}\n", 3 + (maxStratum - (cEnd - cStart)) / 2.)); 1060 } 1061 PetscCall(PetscViewerASCIIPrintf(viewer, "\\begin{tikzpicture}[scale = %g,font=\\fontsize{8}{8}\\selectfont]\n", (double)tikzscale)); 1062 1063 /* Plot vertices */ 1064 PetscCall(VecGetArray(coordinates, &coords)); 1065 PetscCall(PetscViewerASCIIPushSynchronized(viewer)); 1066 for (v = vStart; v < vEnd; ++v) { 1067 PetscInt off, dof, d; 1068 PetscBool isLabeled = PETSC_FALSE; 1069 1070 if (wp && !PetscBTLookup(wp, v - pStart)) continue; 1071 PetscCall(PetscSectionGetDof(coordSection, v, &dof)); 1072 PetscCall(PetscSectionGetOffset(coordSection, v, &off)); 1073 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\path (")); 1074 PetscCheck(dof <= 3, PETSC_COMM_SELF, PETSC_ERR_PLIB, "coordSection vertex %" PetscInt_FMT " has dof %" PetscInt_FMT " > 3", v, dof); 1075 for (d = 0; d < dof; ++d) { 1076 tcoords[d] = (double)(scale * PetscRealPart(coords[off + d])); 1077 tcoords[d] = PetscAbs(tcoords[d]) < 1e-10 ? 0.0 : tcoords[d]; 1078 } 1079 /* Rotate coordinates since PGF makes z point out of the page instead of up */ 1080 if (dim == 3) { 1081 PetscReal tmp = tcoords[1]; 1082 tcoords[1] = tcoords[2]; 1083 tcoords[2] = -tmp; 1084 } 1085 for (d = 0; d < dof; ++d) { 1086 if (d > 0) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ",")); 1087 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "%g", (double)tcoords[d])); 1088 } 1089 if (drawHasse) color = colors[0 % numColors]; 1090 else color = colors[rank % numColors]; 1091 for (l = 0; l < numLabels; ++l) { 1092 PetscInt val; 1093 PetscCall(DMGetLabelValue(dm, names[l], v, &val)); 1094 if (val >= 0) { 1095 color = lcolors[l % numLColors]; 1096 isLabeled = PETSC_TRUE; 1097 break; 1098 } 1099 } 1100 if (drawNumbers[0]) { 1101 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [draw,shape=circle,color=%s] {%" PetscInt_FMT "};\n", v, rank, color, v)); 1102 } else if (drawColors[0]) { 1103 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [fill,inner sep=%dpt,shape=circle,color=%s] {};\n", v, rank, !isLabeled ? 1 : 2, color)); 1104 } else PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [] {};\n", v, rank)); 1105 } 1106 PetscCall(VecRestoreArray(coordinates, &coords)); 1107 PetscCall(PetscViewerFlush(viewer)); 1108 /* Plot edges */ 1109 if (plotEdges) { 1110 PetscCall(VecGetArray(coordinates, &coords)); 1111 PetscCall(PetscViewerASCIIPrintf(viewer, "\\path\n")); 1112 for (e = eStart; e < eEnd; ++e) { 1113 const PetscInt *cone; 1114 PetscInt coneSize, offA, offB, dof, d; 1115 1116 if (wp && !PetscBTLookup(wp, e - pStart)) continue; 1117 PetscCall(DMPlexGetConeSize(dm, e, &coneSize)); 1118 PetscCheck(coneSize == 2, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Edge %" PetscInt_FMT " cone should have two vertices, not %" PetscInt_FMT, e, coneSize); 1119 PetscCall(DMPlexGetCone(dm, e, &cone)); 1120 PetscCall(PetscSectionGetDof(coordSection, cone[0], &dof)); 1121 PetscCall(PetscSectionGetOffset(coordSection, cone[0], &offA)); 1122 PetscCall(PetscSectionGetOffset(coordSection, cone[1], &offB)); 1123 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "(")); 1124 for (d = 0; d < dof; ++d) { 1125 tcoords[d] = (double)(0.5 * scale * PetscRealPart(coords[offA + d] + coords[offB + d])); 1126 tcoords[d] = PetscAbs(tcoords[d]) < 1e-10 ? 0.0 : tcoords[d]; 1127 } 1128 /* Rotate coordinates since PGF makes z point out of the page instead of up */ 1129 if (dim == 3) { 1130 PetscReal tmp = tcoords[1]; 1131 tcoords[1] = tcoords[2]; 1132 tcoords[2] = -tmp; 1133 } 1134 for (d = 0; d < dof; ++d) { 1135 if (d > 0) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ",")); 1136 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "%g", (double)tcoords[d])); 1137 } 1138 if (drawHasse) color = colors[1 % numColors]; 1139 else color = colors[rank % numColors]; 1140 for (l = 0; l < numLabels; ++l) { 1141 PetscInt val; 1142 PetscCall(DMGetLabelValue(dm, names[l], v, &val)); 1143 if (val >= 0) { 1144 color = lcolors[l % numLColors]; 1145 break; 1146 } 1147 } 1148 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [draw,shape=circle,color=%s] {%" PetscInt_FMT "} --\n", e, rank, color, e)); 1149 } 1150 PetscCall(VecRestoreArray(coordinates, &coords)); 1151 PetscCall(PetscViewerFlush(viewer)); 1152 PetscCall(PetscViewerASCIIPrintf(viewer, "(0,0);\n")); 1153 } 1154 /* Plot cells */ 1155 if (dim == 3 || !drawNumbers[1]) { 1156 for (e = eStart; e < eEnd; ++e) { 1157 const PetscInt *cone; 1158 1159 if (wp && !PetscBTLookup(wp, e - pStart)) continue; 1160 color = colors[rank % numColors]; 1161 for (l = 0; l < numLabels; ++l) { 1162 PetscInt val; 1163 PetscCall(DMGetLabelValue(dm, names[l], e, &val)); 1164 if (val >= 0) { 1165 color = lcolors[l % numLColors]; 1166 break; 1167 } 1168 } 1169 PetscCall(DMPlexGetCone(dm, e, &cone)); 1170 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\draw[color=%s] (%" PetscInt_FMT "_%d) -- (%" PetscInt_FMT "_%d);\n", color, cone[0], rank, cone[1], rank)); 1171 } 1172 } else { 1173 DMPolytopeType ct; 1174 1175 /* Drawing a 2D polygon */ 1176 for (c = cStart; c < cEnd; ++c) { 1177 if (wp && !PetscBTLookup(wp, c - pStart)) continue; 1178 PetscCall(DMPlexGetCellType(dm, c, &ct)); 1179 if (ct == DM_POLYTOPE_SEG_PRISM_TENSOR || ct == DM_POLYTOPE_TRI_PRISM_TENSOR || ct == DM_POLYTOPE_QUAD_PRISM_TENSOR) { 1180 const PetscInt *cone; 1181 PetscInt coneSize, e; 1182 1183 PetscCall(DMPlexGetCone(dm, c, &cone)); 1184 PetscCall(DMPlexGetConeSize(dm, c, &coneSize)); 1185 for (e = 0; e < coneSize; ++e) { 1186 const PetscInt *econe; 1187 1188 PetscCall(DMPlexGetCone(dm, cone[e], &econe)); 1189 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)); 1190 } 1191 } else { 1192 PetscInt *closure = NULL; 1193 PetscInt closureSize, Nv = 0, v; 1194 1195 PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 1196 for (p = 0; p < closureSize * 2; p += 2) { 1197 const PetscInt point = closure[p]; 1198 1199 if ((point >= vStart) && (point < vEnd)) closure[Nv++] = point; 1200 } 1201 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\draw[color=%s] ", colors[rank % numColors])); 1202 for (v = 0; v <= Nv; ++v) { 1203 const PetscInt vertex = closure[v % Nv]; 1204 1205 if (v > 0) { 1206 if (plotEdges) { 1207 const PetscInt *edge; 1208 PetscInt endpoints[2], ne; 1209 1210 endpoints[0] = closure[v - 1]; 1211 endpoints[1] = vertex; 1212 PetscCall(DMPlexGetJoin(dm, 2, endpoints, &ne, &edge)); 1213 PetscCheck(ne == 1, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Could not find edge for vertices %" PetscInt_FMT ", %" PetscInt_FMT, endpoints[0], endpoints[1]); 1214 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " -- (%" PetscInt_FMT "_%d) -- ", edge[0], rank)); 1215 PetscCall(DMPlexRestoreJoin(dm, 2, endpoints, &ne, &edge)); 1216 } else PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, " -- ")); 1217 } 1218 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "(%" PetscInt_FMT "_%d)", vertex, rank)); 1219 } 1220 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ";\n")); 1221 PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 1222 } 1223 } 1224 } 1225 for (c = cStart; c < cEnd; ++c) { 1226 double ccoords[3] = {0.0, 0.0, 0.0}; 1227 PetscBool isLabeled = PETSC_FALSE; 1228 PetscScalar *cellCoords = NULL; 1229 const PetscScalar *array; 1230 PetscInt numCoords, cdim, d; 1231 PetscBool isDG; 1232 1233 if (wp && !PetscBTLookup(wp, c - pStart)) continue; 1234 PetscCall(DMGetCoordinateDim(dm, &cdim)); 1235 PetscCall(DMPlexGetCellCoordinates(dm, c, &isDG, &numCoords, &array, &cellCoords)); 1236 PetscCheck(!(numCoords % cdim), PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, "coordinate dim %" PetscInt_FMT " does not divide numCoords %" PetscInt_FMT, cdim, numCoords); 1237 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "\\path (")); 1238 for (p = 0; p < numCoords / cdim; ++p) { 1239 for (d = 0; d < cdim; ++d) { 1240 tcoords[d] = (double)(scale * PetscRealPart(cellCoords[p * cdim + d])); 1241 tcoords[d] = PetscAbs(tcoords[d]) < 1e-10 ? 0.0 : tcoords[d]; 1242 } 1243 /* Rotate coordinates since PGF makes z point out of the page instead of up */ 1244 if (cdim == 3) { 1245 PetscReal tmp = tcoords[1]; 1246 tcoords[1] = tcoords[2]; 1247 tcoords[2] = -tmp; 1248 } 1249 for (d = 0; d < dim; ++d) ccoords[d] += tcoords[d]; 1250 } 1251 for (d = 0; d < cdim; ++d) ccoords[d] /= (numCoords / cdim); 1252 PetscCall(DMPlexRestoreCellCoordinates(dm, c, &isDG, &numCoords, &array, &cellCoords)); 1253 for (d = 0; d < cdim; ++d) { 1254 if (d > 0) PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ",")); 1255 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, "%g", (double)ccoords[d])); 1256 } 1257 if (drawHasse) color = colors[depth % numColors]; 1258 else color = colors[rank % numColors]; 1259 for (l = 0; l < numLabels; ++l) { 1260 PetscInt val; 1261 PetscCall(DMGetLabelValue(dm, names[l], c, &val)); 1262 if (val >= 0) { 1263 color = lcolors[l % numLColors]; 1264 isLabeled = PETSC_TRUE; 1265 break; 1266 } 1267 } 1268 if (drawNumbers[dim]) { 1269 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [draw,shape=circle,color=%s] {%" PetscInt_FMT "};\n", c, rank, color, c)); 1270 } else if (drawColors[dim]) { 1271 PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [fill,inner sep=%dpt,shape=circle,color=%s] {};\n", c, rank, !isLabeled ? 1 : 2, color)); 1272 } else PetscCall(PetscViewerASCIISynchronizedPrintf(viewer, ") node(%" PetscInt_FMT "_%d) [] {};\n", c, rank)); 1273 } 1274 if (drawHasse) { 1275 color = colors[depth % numColors]; 1276 PetscCall(PetscViewerASCIIPrintf(viewer, "%% Cells\n")); 1277 PetscCall(PetscViewerASCIIPrintf(viewer, "\\foreach \\c in {\\cStart,...,\\cEnd}\n")); 1278 PetscCall(PetscViewerASCIIPrintf(viewer, "{\n")); 1279 PetscCall(PetscViewerASCIIPrintf(viewer, " \\node(\\c_%d) [draw,shape=circle,color=%s,minimum size = 6mm] at (\\cShift+\\c-\\cStart,0) {\\c};\n", rank, color)); 1280 PetscCall(PetscViewerASCIIPrintf(viewer, "}\n")); 1281 1282 color = colors[1 % numColors]; 1283 PetscCall(PetscViewerASCIIPrintf(viewer, "%% Edges\n")); 1284 PetscCall(PetscViewerASCIIPrintf(viewer, "\\foreach \\e in {\\eStart,...,\\eEnd}\n")); 1285 PetscCall(PetscViewerASCIIPrintf(viewer, "{\n")); 1286 PetscCall(PetscViewerASCIIPrintf(viewer, " \\node(\\e_%d) [draw,shape=circle,color=%s,minimum size = 6mm] at (\\eShift+\\e-\\eStart,1) {\\e};\n", rank, color)); 1287 PetscCall(PetscViewerASCIIPrintf(viewer, "}\n")); 1288 1289 color = colors[0 % numColors]; 1290 PetscCall(PetscViewerASCIIPrintf(viewer, "%% Vertices\n")); 1291 PetscCall(PetscViewerASCIIPrintf(viewer, "\\foreach \\v in {\\vStart,...,\\vEnd}\n")); 1292 PetscCall(PetscViewerASCIIPrintf(viewer, "{\n")); 1293 PetscCall(PetscViewerASCIIPrintf(viewer, " \\node(\\v_%d) [draw,shape=circle,color=%s,minimum size = 6mm] at (\\vShift+\\v-\\vStart,2) {\\v};\n", rank, color)); 1294 PetscCall(PetscViewerASCIIPrintf(viewer, "}\n")); 1295 1296 for (p = pStart; p < pEnd; ++p) { 1297 const PetscInt *cone; 1298 PetscInt coneSize, cp; 1299 1300 PetscCall(DMPlexGetCone(dm, p, &cone)); 1301 PetscCall(DMPlexGetConeSize(dm, p, &coneSize)); 1302 for (cp = 0; cp < coneSize; ++cp) PetscCall(PetscViewerASCIIPrintf(viewer, "\\draw[->, shorten >=1pt] (%" PetscInt_FMT "_%d) -- (%" PetscInt_FMT "_%d);\n", cone[cp], rank, p, rank)); 1303 } 1304 } 1305 PetscCall(PetscViewerFlush(viewer)); 1306 PetscCall(PetscViewerASCIIPopSynchronized(viewer)); 1307 PetscCall(PetscViewerASCIIPrintf(viewer, "\\end{tikzpicture}\n")); 1308 PetscCall(PetscViewerASCIIPrintf(viewer, "\\end{document}\n")); 1309 for (l = 0; l < numLabels; ++l) PetscCall(PetscFree(names[l])); 1310 for (c = 0; c < numColors; ++c) PetscCall(PetscFree(colors[c])); 1311 for (c = 0; c < numLColors; ++c) PetscCall(PetscFree(lcolors[c])); 1312 PetscCall(PetscFree3(names, colors, lcolors)); 1313 PetscCall(PetscBTDestroy(&wp)); 1314 } else if (format == PETSC_VIEWER_LOAD_BALANCE) { 1315 Vec cown, acown; 1316 VecScatter sct; 1317 ISLocalToGlobalMapping g2l; 1318 IS gid, acis; 1319 MPI_Comm comm, ncomm = MPI_COMM_NULL; 1320 MPI_Group ggroup, ngroup; 1321 PetscScalar *array, nid; 1322 const PetscInt *idxs; 1323 PetscInt *idxs2, *start, *adjacency, *work; 1324 PetscInt64 lm[3], gm[3]; 1325 PetscInt i, c, cStart, cEnd, cum, numVertices, ect, ectn, cellHeight; 1326 PetscMPIInt d1, d2, rank; 1327 1328 PetscCall(PetscObjectGetComm((PetscObject)dm, &comm)); 1329 PetscCallMPI(MPI_Comm_rank(comm, &rank)); 1330 #if defined(PETSC_HAVE_MPI_PROCESS_SHARED_MEMORY) 1331 PetscCallMPI(MPI_Comm_split_type(comm, MPI_COMM_TYPE_SHARED, rank, MPI_INFO_NULL, &ncomm)); 1332 #endif 1333 if (ncomm != MPI_COMM_NULL) { 1334 PetscCallMPI(MPI_Comm_group(comm, &ggroup)); 1335 PetscCallMPI(MPI_Comm_group(ncomm, &ngroup)); 1336 d1 = 0; 1337 PetscCallMPI(MPI_Group_translate_ranks(ngroup, 1, &d1, ggroup, &d2)); 1338 nid = d2; 1339 PetscCallMPI(MPI_Group_free(&ggroup)); 1340 PetscCallMPI(MPI_Group_free(&ngroup)); 1341 PetscCallMPI(MPI_Comm_free(&ncomm)); 1342 } else nid = 0.0; 1343 1344 /* Get connectivity */ 1345 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 1346 PetscCall(DMPlexCreatePartitionerGraph(dm, cellHeight, &numVertices, &start, &adjacency, &gid)); 1347 1348 /* filter overlapped local cells */ 1349 PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd)); 1350 PetscCall(ISGetIndices(gid, &idxs)); 1351 PetscCall(ISGetLocalSize(gid, &cum)); 1352 PetscCall(PetscMalloc1(cum, &idxs2)); 1353 for (c = cStart, cum = 0; c < cEnd; c++) { 1354 if (idxs[c - cStart] < 0) continue; 1355 idxs2[cum++] = idxs[c - cStart]; 1356 } 1357 PetscCall(ISRestoreIndices(gid, &idxs)); 1358 PetscCheck(numVertices == cum, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Unexpected %" PetscInt_FMT " != %" PetscInt_FMT, numVertices, cum); 1359 PetscCall(ISDestroy(&gid)); 1360 PetscCall(ISCreateGeneral(comm, numVertices, idxs2, PETSC_OWN_POINTER, &gid)); 1361 1362 /* support for node-aware cell locality */ 1363 PetscCall(ISCreateGeneral(comm, start[numVertices], adjacency, PETSC_USE_POINTER, &acis)); 1364 PetscCall(VecCreateSeq(PETSC_COMM_SELF, start[numVertices], &acown)); 1365 PetscCall(VecCreateMPI(comm, numVertices, PETSC_DECIDE, &cown)); 1366 PetscCall(VecGetArray(cown, &array)); 1367 for (c = 0; c < numVertices; c++) array[c] = nid; 1368 PetscCall(VecRestoreArray(cown, &array)); 1369 PetscCall(VecScatterCreate(cown, acis, acown, NULL, &sct)); 1370 PetscCall(VecScatterBegin(sct, cown, acown, INSERT_VALUES, SCATTER_FORWARD)); 1371 PetscCall(VecScatterEnd(sct, cown, acown, INSERT_VALUES, SCATTER_FORWARD)); 1372 PetscCall(ISDestroy(&acis)); 1373 PetscCall(VecScatterDestroy(&sct)); 1374 PetscCall(VecDestroy(&cown)); 1375 1376 /* compute edgeCut */ 1377 for (c = 0, cum = 0; c < numVertices; c++) cum = PetscMax(cum, start[c + 1] - start[c]); 1378 PetscCall(PetscMalloc1(cum, &work)); 1379 PetscCall(ISLocalToGlobalMappingCreateIS(gid, &g2l)); 1380 PetscCall(ISLocalToGlobalMappingSetType(g2l, ISLOCALTOGLOBALMAPPINGHASH)); 1381 PetscCall(ISDestroy(&gid)); 1382 PetscCall(VecGetArray(acown, &array)); 1383 for (c = 0, ect = 0, ectn = 0; c < numVertices; c++) { 1384 PetscInt totl; 1385 1386 totl = start[c + 1] - start[c]; 1387 PetscCall(ISGlobalToLocalMappingApply(g2l, IS_GTOLM_MASK, totl, adjacency + start[c], NULL, work)); 1388 for (i = 0; i < totl; i++) { 1389 if (work[i] < 0) { 1390 ect += 1; 1391 ectn += (array[i + start[c]] != nid) ? 0 : 1; 1392 } 1393 } 1394 } 1395 PetscCall(PetscFree(work)); 1396 PetscCall(VecRestoreArray(acown, &array)); 1397 lm[0] = numVertices > 0 ? numVertices : PETSC_MAX_INT; 1398 lm[1] = -numVertices; 1399 PetscCall(MPIU_Allreduce(lm, gm, 2, MPIU_INT64, MPI_MIN, comm)); 1400 PetscCall(PetscViewerASCIIPrintf(viewer, " Cell balance: %.2f (max %" PetscInt_FMT ", min %" PetscInt_FMT, -((double)gm[1]) / ((double)gm[0]), -(PetscInt)gm[1], (PetscInt)gm[0])); 1401 lm[0] = ect; /* edgeCut */ 1402 lm[1] = ectn; /* node-aware edgeCut */ 1403 lm[2] = numVertices > 0 ? 0 : 1; /* empty processes */ 1404 PetscCall(MPIU_Allreduce(lm, gm, 3, MPIU_INT64, MPI_SUM, comm)); 1405 PetscCall(PetscViewerASCIIPrintf(viewer, ", empty %" PetscInt_FMT ")\n", (PetscInt)gm[2])); 1406 #if defined(PETSC_HAVE_MPI_PROCESS_SHARED_MEMORY) 1407 PetscCall(PetscViewerASCIIPrintf(viewer, " Edge Cut: %" PetscInt_FMT " (on node %.3f)\n", (PetscInt)(gm[0] / 2), gm[0] ? ((double)(gm[1])) / ((double)gm[0]) : 1.)); 1408 #else 1409 PetscCall(PetscViewerASCIIPrintf(viewer, " Edge Cut: %" PetscInt_FMT " (on node %.3f)\n", (PetscInt)(gm[0] / 2), 0.0)); 1410 #endif 1411 PetscCall(ISLocalToGlobalMappingDestroy(&g2l)); 1412 PetscCall(PetscFree(start)); 1413 PetscCall(PetscFree(adjacency)); 1414 PetscCall(VecDestroy(&acown)); 1415 } else { 1416 const char *name; 1417 PetscInt *sizes, *hybsizes, *ghostsizes; 1418 PetscInt locDepth, depth, cellHeight, dim, d; 1419 PetscInt pStart, pEnd, p, gcStart, gcEnd, gcNum; 1420 PetscInt numLabels, l, maxSize = 17; 1421 DMPolytopeType ct0 = DM_POLYTOPE_UNKNOWN; 1422 MPI_Comm comm; 1423 PetscMPIInt size, rank; 1424 1425 PetscCall(PetscObjectGetComm((PetscObject)dm, &comm)); 1426 PetscCallMPI(MPI_Comm_size(comm, &size)); 1427 PetscCallMPI(MPI_Comm_rank(comm, &rank)); 1428 PetscCall(DMGetDimension(dm, &dim)); 1429 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 1430 PetscCall(PetscObjectGetName((PetscObject)dm, &name)); 1431 if (name) PetscCall(PetscViewerASCIIPrintf(viewer, "%s in %" PetscInt_FMT " dimension%s:\n", name, dim, dim == 1 ? "" : "s")); 1432 else PetscCall(PetscViewerASCIIPrintf(viewer, "Mesh in %" PetscInt_FMT " dimension%s:\n", dim, dim == 1 ? "" : "s")); 1433 if (cellHeight) PetscCall(PetscViewerASCIIPrintf(viewer, " Cells are at height %" PetscInt_FMT "\n", cellHeight)); 1434 PetscCall(DMPlexGetDepth(dm, &locDepth)); 1435 PetscCall(MPIU_Allreduce(&locDepth, &depth, 1, MPIU_INT, MPI_MAX, comm)); 1436 PetscCall(DMPlexGetCellTypeStratum(dm, DM_POLYTOPE_FV_GHOST, &gcStart, &gcEnd)); 1437 gcNum = gcEnd - gcStart; 1438 if (size < maxSize) PetscCall(PetscCalloc3(size, &sizes, size, &hybsizes, size, &ghostsizes)); 1439 else PetscCall(PetscCalloc3(3, &sizes, 3, &hybsizes, 3, &ghostsizes)); 1440 for (d = 0; d <= depth; d++) { 1441 PetscInt Nc[2] = {0, 0}, ict; 1442 1443 PetscCall(DMPlexGetDepthStratum(dm, d, &pStart, &pEnd)); 1444 if (pStart < pEnd) PetscCall(DMPlexGetCellType(dm, pStart, &ct0)); 1445 ict = ct0; 1446 PetscCallMPI(MPI_Bcast(&ict, 1, MPIU_INT, 0, comm)); 1447 ct0 = (DMPolytopeType)ict; 1448 for (p = pStart; p < pEnd; ++p) { 1449 DMPolytopeType ct; 1450 1451 PetscCall(DMPlexGetCellType(dm, p, &ct)); 1452 if (ct == ct0) ++Nc[0]; 1453 else ++Nc[1]; 1454 } 1455 if (size < maxSize) { 1456 PetscCallMPI(MPI_Gather(&Nc[0], 1, MPIU_INT, sizes, 1, MPIU_INT, 0, comm)); 1457 PetscCallMPI(MPI_Gather(&Nc[1], 1, MPIU_INT, hybsizes, 1, MPIU_INT, 0, comm)); 1458 if (d == depth) PetscCallMPI(MPI_Gather(&gcNum, 1, MPIU_INT, ghostsizes, 1, MPIU_INT, 0, comm)); 1459 PetscCall(PetscViewerASCIIPrintf(viewer, " Number of %" PetscInt_FMT "-cells per rank:", (depth == 1) && d ? dim : d)); 1460 for (p = 0; p < size; ++p) { 1461 if (rank == 0) { 1462 PetscCall(PetscViewerASCIIPrintf(viewer, " %" PetscInt_FMT, sizes[p] + hybsizes[p])); 1463 if (hybsizes[p] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " (%" PetscInt_FMT ")", hybsizes[p])); 1464 if (ghostsizes[p] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " [%" PetscInt_FMT "]", ghostsizes[p])); 1465 } 1466 } 1467 } else { 1468 PetscInt locMinMax[2]; 1469 1470 locMinMax[0] = Nc[0] + Nc[1]; 1471 locMinMax[1] = Nc[0] + Nc[1]; 1472 PetscCall(PetscGlobalMinMaxInt(comm, locMinMax, sizes)); 1473 locMinMax[0] = Nc[1]; 1474 locMinMax[1] = Nc[1]; 1475 PetscCall(PetscGlobalMinMaxInt(comm, locMinMax, hybsizes)); 1476 if (d == depth) { 1477 locMinMax[0] = gcNum; 1478 locMinMax[1] = gcNum; 1479 PetscCall(PetscGlobalMinMaxInt(comm, locMinMax, ghostsizes)); 1480 } 1481 PetscCall(PetscViewerASCIIPrintf(viewer, " Min/Max of %" PetscInt_FMT "-cells per rank:", (depth == 1) && d ? dim : d)); 1482 PetscCall(PetscViewerASCIIPrintf(viewer, " %" PetscInt_FMT "/%" PetscInt_FMT, sizes[0], sizes[1])); 1483 if (hybsizes[0] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " (%" PetscInt_FMT "/%" PetscInt_FMT ")", hybsizes[0], hybsizes[1])); 1484 if (ghostsizes[0] > 0) PetscCall(PetscViewerASCIIPrintf(viewer, " [%" PetscInt_FMT "/%" PetscInt_FMT "]", ghostsizes[0], ghostsizes[1])); 1485 } 1486 PetscCall(PetscViewerASCIIPrintf(viewer, "\n")); 1487 } 1488 PetscCall(PetscFree3(sizes, hybsizes, ghostsizes)); 1489 { 1490 const PetscReal *maxCell; 1491 const PetscReal *L; 1492 PetscBool localized; 1493 1494 PetscCall(DMGetPeriodicity(dm, &maxCell, NULL, &L)); 1495 PetscCall(DMGetCoordinatesLocalized(dm, &localized)); 1496 if (L || localized) { 1497 PetscCall(PetscViewerASCIIPrintf(viewer, "Periodic mesh")); 1498 PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_FALSE)); 1499 if (L) { 1500 PetscCall(PetscViewerASCIIPrintf(viewer, " (")); 1501 for (d = 0; d < dim; ++d) { 1502 if (d > 0) PetscCall(PetscViewerASCIIPrintf(viewer, ", ")); 1503 PetscCall(PetscViewerASCIIPrintf(viewer, "%s", L[d] > 0.0 ? "PERIODIC" : "NONE")); 1504 } 1505 PetscCall(PetscViewerASCIIPrintf(viewer, ")")); 1506 } 1507 PetscCall(PetscViewerASCIIPrintf(viewer, " coordinates %s\n", localized ? "localized" : "not localized")); 1508 PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_TRUE)); 1509 } 1510 } 1511 PetscCall(DMGetNumLabels(dm, &numLabels)); 1512 if (numLabels) PetscCall(PetscViewerASCIIPrintf(viewer, "Labels:\n")); 1513 for (l = 0; l < numLabels; ++l) { 1514 DMLabel label; 1515 const char *name; 1516 IS valueIS; 1517 const PetscInt *values; 1518 PetscInt numValues, v; 1519 1520 PetscCall(DMGetLabelName(dm, l, &name)); 1521 PetscCall(DMGetLabel(dm, name, &label)); 1522 PetscCall(DMLabelGetNumValues(label, &numValues)); 1523 PetscCall(PetscViewerASCIIPrintf(viewer, " %s: %" PetscInt_FMT " strata with value/size (", name, numValues)); 1524 PetscCall(DMLabelGetValueIS(label, &valueIS)); 1525 PetscCall(ISGetIndices(valueIS, &values)); 1526 PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_FALSE)); 1527 for (v = 0; v < numValues; ++v) { 1528 PetscInt size; 1529 1530 PetscCall(DMLabelGetStratumSize(label, values[v], &size)); 1531 if (v > 0) PetscCall(PetscViewerASCIIPrintf(viewer, ", ")); 1532 PetscCall(PetscViewerASCIIPrintf(viewer, "%" PetscInt_FMT " (%" PetscInt_FMT ")", values[v], size)); 1533 } 1534 PetscCall(PetscViewerASCIIPrintf(viewer, ")\n")); 1535 PetscCall(PetscViewerASCIIUseTabs(viewer, PETSC_TRUE)); 1536 PetscCall(ISRestoreIndices(valueIS, &values)); 1537 PetscCall(ISDestroy(&valueIS)); 1538 } 1539 { 1540 char **labelNames; 1541 PetscInt Nl = numLabels; 1542 PetscBool flg; 1543 1544 PetscCall(PetscMalloc1(Nl, &labelNames)); 1545 PetscCall(PetscOptionsGetStringArray(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_plex_view_labels", labelNames, &Nl, &flg)); 1546 for (l = 0; l < Nl; ++l) { 1547 DMLabel label; 1548 1549 PetscCall(DMHasLabel(dm, labelNames[l], &flg)); 1550 if (flg) { 1551 PetscCall(DMGetLabel(dm, labelNames[l], &label)); 1552 PetscCall(DMLabelView(label, viewer)); 1553 } 1554 PetscCall(PetscFree(labelNames[l])); 1555 } 1556 PetscCall(PetscFree(labelNames)); 1557 } 1558 /* If no fields are specified, people do not want to see adjacency */ 1559 if (dm->Nf) { 1560 PetscInt f; 1561 1562 for (f = 0; f < dm->Nf; ++f) { 1563 const char *name; 1564 1565 PetscCall(PetscObjectGetName(dm->fields[f].disc, &name)); 1566 if (numLabels) PetscCall(PetscViewerASCIIPrintf(viewer, "Field %s:\n", name)); 1567 PetscCall(PetscViewerASCIIPushTab(viewer)); 1568 if (dm->fields[f].label) PetscCall(DMLabelView(dm->fields[f].label, viewer)); 1569 if (dm->fields[f].adjacency[0]) { 1570 if (dm->fields[f].adjacency[1]) PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FVM++\n")); 1571 else PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FVM\n")); 1572 } else { 1573 if (dm->fields[f].adjacency[1]) PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FEM\n")); 1574 else PetscCall(PetscViewerASCIIPrintf(viewer, "adjacency FUNKY\n")); 1575 } 1576 PetscCall(PetscViewerASCIIPopTab(viewer)); 1577 } 1578 } 1579 PetscCall(DMGetCoarseDM(dm, &cdm)); 1580 if (cdm) { 1581 PetscCall(PetscViewerASCIIPushTab(viewer)); 1582 PetscCall(PetscViewerASCIIPrintf(viewer, "Defined by transform from:\n")); 1583 PetscCall(DMPlexView_Ascii(cdm, viewer)); 1584 PetscCall(PetscViewerASCIIPopTab(viewer)); 1585 } 1586 } 1587 PetscFunctionReturn(PETSC_SUCCESS); 1588 } 1589 1590 static PetscErrorCode DMPlexDrawCell(DM dm, PetscDraw draw, PetscInt cell, const PetscScalar coords[]) 1591 { 1592 DMPolytopeType ct; 1593 PetscMPIInt rank; 1594 PetscInt cdim; 1595 1596 PetscFunctionBegin; 1597 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank)); 1598 PetscCall(DMPlexGetCellType(dm, cell, &ct)); 1599 PetscCall(DMGetCoordinateDim(dm, &cdim)); 1600 switch (ct) { 1601 case DM_POLYTOPE_SEGMENT: 1602 case DM_POLYTOPE_POINT_PRISM_TENSOR: 1603 switch (cdim) { 1604 case 1: { 1605 const PetscReal y = 0.5; /* TODO Put it in the middle of the viewport */ 1606 const PetscReal dy = 0.05; /* TODO Make it a fraction of the total length */ 1607 1608 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), y, PetscRealPart(coords[1]), y, PETSC_DRAW_BLACK)); 1609 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), y + dy, PetscRealPart(coords[0]), y - dy, PETSC_DRAW_BLACK)); 1610 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[1]), y + dy, PetscRealPart(coords[1]), y - dy, PETSC_DRAW_BLACK)); 1611 } break; 1612 case 2: { 1613 const PetscReal dx = (PetscRealPart(coords[3]) - PetscRealPart(coords[1])); 1614 const PetscReal dy = (PetscRealPart(coords[2]) - PetscRealPart(coords[0])); 1615 const PetscReal l = 0.1 / PetscSqrtReal(dx * dx + dy * dy); 1616 1617 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK)); 1618 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)); 1619 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)); 1620 } break; 1621 default: 1622 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells of dimension %" PetscInt_FMT, cdim); 1623 } 1624 break; 1625 case DM_POLYTOPE_TRIANGLE: 1626 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)); 1627 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK)); 1628 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_BLACK)); 1629 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), PETSC_DRAW_BLACK)); 1630 break; 1631 case DM_POLYTOPE_QUADRILATERAL: 1632 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)); 1633 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)); 1634 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK)); 1635 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_BLACK)); 1636 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PETSC_DRAW_BLACK)); 1637 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[6]), PetscRealPart(coords[7]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), PETSC_DRAW_BLACK)); 1638 break; 1639 case DM_POLYTOPE_SEG_PRISM_TENSOR: 1640 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)); 1641 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)); 1642 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[0]), PetscRealPart(coords[1]), PetscRealPart(coords[2]), PetscRealPart(coords[3]), PETSC_DRAW_BLACK)); 1643 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[2]), PetscRealPart(coords[3]), PetscRealPart(coords[6]), PetscRealPart(coords[7]), PETSC_DRAW_BLACK)); 1644 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[6]), PetscRealPart(coords[7]), PetscRealPart(coords[4]), PetscRealPart(coords[5]), PETSC_DRAW_BLACK)); 1645 PetscCall(PetscDrawLine(draw, PetscRealPart(coords[4]), PetscRealPart(coords[5]), PetscRealPart(coords[0]), PetscRealPart(coords[1]), PETSC_DRAW_BLACK)); 1646 break; 1647 case DM_POLYTOPE_FV_GHOST: 1648 break; 1649 default: 1650 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells of type %s", DMPolytopeTypes[ct]); 1651 } 1652 PetscFunctionReturn(PETSC_SUCCESS); 1653 } 1654 1655 static PetscErrorCode DMPlexDrawCellHighOrder(DM dm, PetscDraw draw, PetscInt cell, const PetscScalar coords[], PetscInt edgeDiv, PetscReal refCoords[], PetscReal edgeCoords[]) 1656 { 1657 DMPolytopeType ct; 1658 PetscReal centroid[2] = {0., 0.}; 1659 PetscMPIInt rank; 1660 PetscInt fillColor, v, e, d; 1661 1662 PetscFunctionBegin; 1663 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank)); 1664 PetscCall(DMPlexGetCellType(dm, cell, &ct)); 1665 fillColor = PETSC_DRAW_WHITE + rank % (PETSC_DRAW_BASIC_COLORS - 2) + 2; 1666 switch (ct) { 1667 case DM_POLYTOPE_TRIANGLE: { 1668 PetscReal refVertices[6] = {-1., -1., 1., -1., -1., 1.}; 1669 1670 for (v = 0; v < 3; ++v) { 1671 centroid[0] += PetscRealPart(coords[v * 2 + 0]) / 3.; 1672 centroid[1] += PetscRealPart(coords[v * 2 + 1]) / 3.; 1673 } 1674 for (e = 0; e < 3; ++e) { 1675 refCoords[0] = refVertices[e * 2 + 0]; 1676 refCoords[1] = refVertices[e * 2 + 1]; 1677 for (d = 1; d <= edgeDiv; ++d) { 1678 refCoords[d * 2 + 0] = refCoords[0] + (refVertices[(e + 1) % 3 * 2 + 0] - refCoords[0]) * d / edgeDiv; 1679 refCoords[d * 2 + 1] = refCoords[1] + (refVertices[(e + 1) % 3 * 2 + 1] - refCoords[1]) * d / edgeDiv; 1680 } 1681 PetscCall(DMPlexReferenceToCoordinates(dm, cell, edgeDiv + 1, refCoords, edgeCoords)); 1682 for (d = 0; d < edgeDiv; ++d) { 1683 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)); 1684 PetscCall(PetscDrawLine(draw, edgeCoords[d * 2 + 0], edgeCoords[d * 2 + 1], edgeCoords[(d + 1) * 2 + 0], edgeCoords[(d + 1) * 2 + 1], PETSC_DRAW_BLACK)); 1685 } 1686 } 1687 } break; 1688 default: 1689 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_SUP, "Cannot draw cells of type %s", DMPolytopeTypes[ct]); 1690 } 1691 PetscFunctionReturn(PETSC_SUCCESS); 1692 } 1693 1694 static PetscErrorCode DMPlexView_Draw(DM dm, PetscViewer viewer) 1695 { 1696 PetscDraw draw; 1697 DM cdm; 1698 PetscSection coordSection; 1699 Vec coordinates; 1700 PetscReal xyl[3], xyr[3]; 1701 PetscReal *refCoords, *edgeCoords; 1702 PetscBool isnull, drawAffine = PETSC_TRUE; 1703 PetscInt dim, vStart, vEnd, cStart, cEnd, c, edgeDiv = 4; 1704 1705 PetscFunctionBegin; 1706 PetscCall(DMGetCoordinateDim(dm, &dim)); 1707 PetscCheck(dim <= 2, PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Cannot draw meshes of dimension %" PetscInt_FMT, dim); 1708 PetscCall(PetscOptionsGetBool(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_view_draw_affine", &drawAffine, NULL)); 1709 if (!drawAffine) PetscCall(PetscMalloc2((edgeDiv + 1) * dim, &refCoords, (edgeDiv + 1) * dim, &edgeCoords)); 1710 PetscCall(DMGetCoordinateDM(dm, &cdm)); 1711 PetscCall(DMGetLocalSection(cdm, &coordSection)); 1712 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 1713 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 1714 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 1715 1716 PetscCall(PetscViewerDrawGetDraw(viewer, 0, &draw)); 1717 PetscCall(PetscDrawIsNull(draw, &isnull)); 1718 if (isnull) PetscFunctionReturn(PETSC_SUCCESS); 1719 PetscCall(PetscDrawSetTitle(draw, "Mesh")); 1720 1721 PetscCall(DMGetBoundingBox(dm, xyl, xyr)); 1722 PetscCall(PetscDrawSetCoordinates(draw, xyl[0], xyl[1], xyr[0], xyr[1])); 1723 PetscCall(PetscDrawClear(draw)); 1724 1725 for (c = cStart; c < cEnd; ++c) { 1726 PetscScalar *coords = NULL; 1727 const PetscScalar *coords_arr; 1728 PetscInt numCoords; 1729 PetscBool isDG; 1730 1731 PetscCall(DMPlexGetCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords)); 1732 if (drawAffine) PetscCall(DMPlexDrawCell(dm, draw, c, coords)); 1733 else PetscCall(DMPlexDrawCellHighOrder(dm, draw, c, coords, edgeDiv, refCoords, edgeCoords)); 1734 PetscCall(DMPlexRestoreCellCoordinates(dm, c, &isDG, &numCoords, &coords_arr, &coords)); 1735 } 1736 if (!drawAffine) PetscCall(PetscFree2(refCoords, edgeCoords)); 1737 PetscCall(PetscDrawFlush(draw)); 1738 PetscCall(PetscDrawPause(draw)); 1739 PetscCall(PetscDrawSave(draw)); 1740 PetscFunctionReturn(PETSC_SUCCESS); 1741 } 1742 1743 #if defined(PETSC_HAVE_EXODUSII) 1744 #include <exodusII.h> 1745 #include <petscviewerexodusii.h> 1746 #endif 1747 1748 PetscErrorCode DMView_Plex(DM dm, PetscViewer viewer) 1749 { 1750 PetscBool iascii, ishdf5, isvtk, isdraw, flg, isglvis, isexodus, iscgns; 1751 char name[PETSC_MAX_PATH_LEN]; 1752 1753 PetscFunctionBegin; 1754 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 1755 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1756 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERASCII, &iascii)); 1757 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERVTK, &isvtk)); 1758 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 1759 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERDRAW, &isdraw)); 1760 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERGLVIS, &isglvis)); 1761 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWEREXODUSII, &isexodus)); 1762 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERCGNS, &iscgns)); 1763 if (iascii) { 1764 PetscViewerFormat format; 1765 PetscCall(PetscViewerGetFormat(viewer, &format)); 1766 if (format == PETSC_VIEWER_ASCII_GLVIS) PetscCall(DMPlexView_GLVis(dm, viewer)); 1767 else PetscCall(DMPlexView_Ascii(dm, viewer)); 1768 } else if (ishdf5) { 1769 #if defined(PETSC_HAVE_HDF5) 1770 PetscCall(DMPlexView_HDF5_Internal(dm, viewer)); 1771 #else 1772 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 1773 #endif 1774 } else if (isvtk) { 1775 PetscCall(DMPlexVTKWriteAll((PetscObject)dm, viewer)); 1776 } else if (isdraw) { 1777 PetscCall(DMPlexView_Draw(dm, viewer)); 1778 } else if (isglvis) { 1779 PetscCall(DMPlexView_GLVis(dm, viewer)); 1780 #if defined(PETSC_HAVE_EXODUSII) 1781 } else if (isexodus) { 1782 /* 1783 exodusII requires that all sets be part of exactly one cell set. 1784 If the dm does not have a "Cell Sets" label defined, we create one 1785 with ID 1, containing all cells. 1786 Note that if the Cell Sets label is defined but does not cover all cells, 1787 we may still have a problem. This should probably be checked here or in the viewer; 1788 */ 1789 PetscInt numCS; 1790 PetscCall(DMGetLabelSize(dm, "Cell Sets", &numCS)); 1791 if (!numCS) { 1792 PetscInt cStart, cEnd, c; 1793 PetscCall(DMCreateLabel(dm, "Cell Sets")); 1794 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 1795 for (c = cStart; c < cEnd; ++c) PetscCall(DMSetLabelValue(dm, "Cell Sets", c, 1)); 1796 } 1797 PetscCall(DMView_PlexExodusII(dm, viewer)); 1798 #endif 1799 #if defined(PETSC_HAVE_CGNS) 1800 } else if (iscgns) { 1801 PetscCall(DMView_PlexCGNS(dm, viewer)); 1802 #endif 1803 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Viewer type %s not yet supported for DMPlex writing", ((PetscObject)viewer)->type_name); 1804 /* Optionally view the partition */ 1805 PetscCall(PetscOptionsHasName(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_partition_view", &flg)); 1806 if (flg) { 1807 Vec ranks; 1808 PetscCall(DMPlexCreateRankField(dm, &ranks)); 1809 PetscCall(VecView(ranks, viewer)); 1810 PetscCall(VecDestroy(&ranks)); 1811 } 1812 /* Optionally view a label */ 1813 PetscCall(PetscOptionsGetString(((PetscObject)dm)->options, ((PetscObject)dm)->prefix, "-dm_label_view", name, sizeof(name), &flg)); 1814 if (flg) { 1815 DMLabel label; 1816 Vec val; 1817 1818 PetscCall(DMGetLabel(dm, name, &label)); 1819 PetscCheck(label, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Label %s provided to -dm_label_view does not exist in this DM", name); 1820 PetscCall(DMPlexCreateLabelField(dm, label, &val)); 1821 PetscCall(VecView(val, viewer)); 1822 PetscCall(VecDestroy(&val)); 1823 } 1824 PetscFunctionReturn(PETSC_SUCCESS); 1825 } 1826 1827 /*@ 1828 DMPlexTopologyView - Saves a `DMPLEX` topology into a file 1829 1830 Collective 1831 1832 Input Parameters: 1833 + dm - The `DM` whose topology is to be saved 1834 - viewer - The `PetscViewer` to save it in 1835 1836 Level: advanced 1837 1838 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexCoordinatesView()`, `DMPlexLabelsView()`, `DMPlexTopologyLoad()`, `PetscViewer` 1839 @*/ 1840 PetscErrorCode DMPlexTopologyView(DM dm, PetscViewer viewer) 1841 { 1842 PetscBool ishdf5; 1843 1844 PetscFunctionBegin; 1845 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 1846 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1847 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 1848 PetscCall(PetscLogEventBegin(DMPLEX_TopologyView, viewer, 0, 0, 0)); 1849 if (ishdf5) { 1850 #if defined(PETSC_HAVE_HDF5) 1851 PetscViewerFormat format; 1852 PetscCall(PetscViewerGetFormat(viewer, &format)); 1853 if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 1854 IS globalPointNumbering; 1855 1856 PetscCall(DMPlexCreatePointNumbering(dm, &globalPointNumbering)); 1857 PetscCall(DMPlexTopologyView_HDF5_Internal(dm, globalPointNumbering, viewer)); 1858 PetscCall(ISDestroy(&globalPointNumbering)); 1859 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 output.", PetscViewerFormats[format]); 1860 #else 1861 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 1862 #endif 1863 } 1864 PetscCall(PetscLogEventEnd(DMPLEX_TopologyView, viewer, 0, 0, 0)); 1865 PetscFunctionReturn(PETSC_SUCCESS); 1866 } 1867 1868 /*@ 1869 DMPlexCoordinatesView - Saves `DMPLEX` coordinates into a file 1870 1871 Collective 1872 1873 Input Parameters: 1874 + dm - The `DM` whose coordinates are to be saved 1875 - viewer - The `PetscViewer` for saving 1876 1877 Level: advanced 1878 1879 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexTopologyView()`, `DMPlexLabelsView()`, `DMPlexCoordinatesLoad()`, `PetscViewer` 1880 @*/ 1881 PetscErrorCode DMPlexCoordinatesView(DM dm, PetscViewer viewer) 1882 { 1883 PetscBool ishdf5; 1884 1885 PetscFunctionBegin; 1886 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 1887 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1888 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 1889 PetscCall(PetscLogEventBegin(DMPLEX_CoordinatesView, viewer, 0, 0, 0)); 1890 if (ishdf5) { 1891 #if defined(PETSC_HAVE_HDF5) 1892 PetscViewerFormat format; 1893 PetscCall(PetscViewerGetFormat(viewer, &format)); 1894 if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 1895 PetscCall(DMPlexCoordinatesView_HDF5_Internal(dm, viewer)); 1896 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 output.", PetscViewerFormats[format]); 1897 #else 1898 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 1899 #endif 1900 } 1901 PetscCall(PetscLogEventEnd(DMPLEX_CoordinatesView, viewer, 0, 0, 0)); 1902 PetscFunctionReturn(PETSC_SUCCESS); 1903 } 1904 1905 /*@ 1906 DMPlexLabelsView - Saves `DMPLEX` labels into a file 1907 1908 Collective 1909 1910 Input Parameters: 1911 + dm - The `DM` whose labels are to be saved 1912 - viewer - The `PetscViewer` for saving 1913 1914 Level: advanced 1915 1916 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexTopologyView()`, `DMPlexCoordinatesView()`, `DMPlexLabelsLoad()`, `PetscViewer` 1917 @*/ 1918 PetscErrorCode DMPlexLabelsView(DM dm, PetscViewer viewer) 1919 { 1920 PetscBool ishdf5; 1921 1922 PetscFunctionBegin; 1923 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 1924 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1925 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 1926 PetscCall(PetscLogEventBegin(DMPLEX_LabelsView, viewer, 0, 0, 0)); 1927 if (ishdf5) { 1928 #if defined(PETSC_HAVE_HDF5) 1929 IS globalPointNumbering; 1930 PetscViewerFormat format; 1931 1932 PetscCall(PetscViewerGetFormat(viewer, &format)); 1933 if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 1934 PetscCall(DMPlexCreatePointNumbering(dm, &globalPointNumbering)); 1935 PetscCall(DMPlexLabelsView_HDF5_Internal(dm, globalPointNumbering, viewer)); 1936 PetscCall(ISDestroy(&globalPointNumbering)); 1937 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]); 1938 #else 1939 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 1940 #endif 1941 } 1942 PetscCall(PetscLogEventEnd(DMPLEX_LabelsView, viewer, 0, 0, 0)); 1943 PetscFunctionReturn(PETSC_SUCCESS); 1944 } 1945 1946 /*@ 1947 DMPlexSectionView - Saves a section associated with a `DMPLEX` 1948 1949 Collective 1950 1951 Input Parameters: 1952 + dm - The `DM` that contains the topology on which the section to be saved is defined 1953 . viewer - The `PetscViewer` for saving 1954 - sectiondm - The `DM` that contains the section to be saved 1955 1956 Level: advanced 1957 1958 Notes: 1959 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. 1960 1961 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 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. 1962 1963 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()`, `DMPlexTopologyView()`, `DMPlexCoordinatesView()`, `DMPlexLabelsView()`, `DMPlexGlobalVectorView()`, `DMPlexLocalVectorView()`, `PetscSectionView()`, `DMPlexSectionLoad()`, `PetscViewer` 1964 @*/ 1965 PetscErrorCode DMPlexSectionView(DM dm, PetscViewer viewer, DM sectiondm) 1966 { 1967 PetscBool ishdf5; 1968 1969 PetscFunctionBegin; 1970 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 1971 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 1972 PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3); 1973 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 1974 PetscCall(PetscLogEventBegin(DMPLEX_SectionView, viewer, 0, 0, 0)); 1975 if (ishdf5) { 1976 #if defined(PETSC_HAVE_HDF5) 1977 PetscCall(DMPlexSectionView_HDF5_Internal(dm, viewer, sectiondm)); 1978 #else 1979 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 1980 #endif 1981 } 1982 PetscCall(PetscLogEventEnd(DMPLEX_SectionView, viewer, 0, 0, 0)); 1983 PetscFunctionReturn(PETSC_SUCCESS); 1984 } 1985 1986 /*@ 1987 DMPlexGlobalVectorView - Saves a global vector 1988 1989 Collective 1990 1991 Input Parameters: 1992 + dm - The `DM` that represents the topology 1993 . viewer - The `PetscViewer` to save data with 1994 . sectiondm - The `DM` that contains the global section on which vec is defined 1995 - vec - The global vector to be saved 1996 1997 Level: advanced 1998 1999 Notes: 2000 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 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. 2001 2002 Calling sequence: 2003 .vb 2004 DMCreate(PETSC_COMM_WORLD, &dm); 2005 DMSetType(dm, DMPLEX); 2006 PetscObjectSetName((PetscObject)dm, "topologydm_name"); 2007 DMClone(dm, §iondm); 2008 PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name"); 2009 PetscSectionCreate(PETSC_COMM_WORLD, §ion); 2010 DMPlexGetChart(sectiondm, &pStart, &pEnd); 2011 PetscSectionSetChart(section, pStart, pEnd); 2012 PetscSectionSetUp(section); 2013 DMSetLocalSection(sectiondm, section); 2014 PetscSectionDestroy(§ion); 2015 DMGetGlobalVector(sectiondm, &vec); 2016 PetscObjectSetName((PetscObject)vec, "vec_name"); 2017 DMPlexTopologyView(dm, viewer); 2018 DMPlexSectionView(dm, viewer, sectiondm); 2019 DMPlexGlobalVectorView(dm, viewer, sectiondm, vec); 2020 DMRestoreGlobalVector(sectiondm, &vec); 2021 DMDestroy(§iondm); 2022 DMDestroy(&dm); 2023 .ve 2024 2025 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyView()`, `DMPlexSectionView()`, `DMPlexLocalVectorView()`, `DMPlexGlobalVectorLoad()`, `DMPlexLocalVectorLoad()` 2026 @*/ 2027 PetscErrorCode DMPlexGlobalVectorView(DM dm, PetscViewer viewer, DM sectiondm, Vec vec) 2028 { 2029 PetscBool ishdf5; 2030 2031 PetscFunctionBegin; 2032 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2033 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2034 PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3); 2035 PetscValidHeaderSpecific(vec, VEC_CLASSID, 4); 2036 /* Check consistency */ 2037 { 2038 PetscSection section; 2039 PetscBool includesConstraints; 2040 PetscInt m, m1; 2041 2042 PetscCall(VecGetLocalSize(vec, &m1)); 2043 PetscCall(DMGetGlobalSection(sectiondm, §ion)); 2044 PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints)); 2045 if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m)); 2046 else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m)); 2047 PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Global vector size (%" PetscInt_FMT ") != global section storage size (%" PetscInt_FMT ")", m1, m); 2048 } 2049 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2050 PetscCall(PetscLogEventBegin(DMPLEX_GlobalVectorView, viewer, 0, 0, 0)); 2051 if (ishdf5) { 2052 #if defined(PETSC_HAVE_HDF5) 2053 PetscCall(DMPlexGlobalVectorView_HDF5_Internal(dm, viewer, sectiondm, vec)); 2054 #else 2055 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2056 #endif 2057 } 2058 PetscCall(PetscLogEventEnd(DMPLEX_GlobalVectorView, viewer, 0, 0, 0)); 2059 PetscFunctionReturn(PETSC_SUCCESS); 2060 } 2061 2062 /*@ 2063 DMPlexLocalVectorView - Saves a local vector 2064 2065 Collective 2066 2067 Input Parameters: 2068 + dm - The `DM` that represents the topology 2069 . viewer - The `PetscViewer` to save data with 2070 . sectiondm - The `DM` that contains the local section on which `vec` is defined; may be the same as `dm` 2071 - vec - The local vector to be saved 2072 2073 Level: advanced 2074 2075 Note: 2076 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 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. 2077 2078 Calling sequence: 2079 .vb 2080 DMCreate(PETSC_COMM_WORLD, &dm); 2081 DMSetType(dm, DMPLEX); 2082 PetscObjectSetName((PetscObject)dm, "topologydm_name"); 2083 DMClone(dm, §iondm); 2084 PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name"); 2085 PetscSectionCreate(PETSC_COMM_WORLD, §ion); 2086 DMPlexGetChart(sectiondm, &pStart, &pEnd); 2087 PetscSectionSetChart(section, pStart, pEnd); 2088 PetscSectionSetUp(section); 2089 DMSetLocalSection(sectiondm, section); 2090 DMGetLocalVector(sectiondm, &vec); 2091 PetscObjectSetName((PetscObject)vec, "vec_name"); 2092 DMPlexTopologyView(dm, viewer); 2093 DMPlexSectionView(dm, viewer, sectiondm); 2094 DMPlexLocalVectorView(dm, viewer, sectiondm, vec); 2095 DMRestoreLocalVector(sectiondm, &vec); 2096 DMDestroy(§iondm); 2097 DMDestroy(&dm); 2098 .ve 2099 2100 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyView()`, `DMPlexSectionView()`, `DMPlexGlobalVectorView()`, `DMPlexGlobalVectorLoad()`, `DMPlexLocalVectorLoad()` 2101 @*/ 2102 PetscErrorCode DMPlexLocalVectorView(DM dm, PetscViewer viewer, DM sectiondm, Vec vec) 2103 { 2104 PetscBool ishdf5; 2105 2106 PetscFunctionBegin; 2107 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2108 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2109 PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3); 2110 PetscValidHeaderSpecific(vec, VEC_CLASSID, 4); 2111 /* Check consistency */ 2112 { 2113 PetscSection section; 2114 PetscBool includesConstraints; 2115 PetscInt m, m1; 2116 2117 PetscCall(VecGetLocalSize(vec, &m1)); 2118 PetscCall(DMGetLocalSection(sectiondm, §ion)); 2119 PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints)); 2120 if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m)); 2121 else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m)); 2122 PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Local vector size (%" PetscInt_FMT ") != local section storage size (%" PetscInt_FMT ")", m1, m); 2123 } 2124 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2125 PetscCall(PetscLogEventBegin(DMPLEX_LocalVectorView, viewer, 0, 0, 0)); 2126 if (ishdf5) { 2127 #if defined(PETSC_HAVE_HDF5) 2128 PetscCall(DMPlexLocalVectorView_HDF5_Internal(dm, viewer, sectiondm, vec)); 2129 #else 2130 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2131 #endif 2132 } 2133 PetscCall(PetscLogEventEnd(DMPLEX_LocalVectorView, viewer, 0, 0, 0)); 2134 PetscFunctionReturn(PETSC_SUCCESS); 2135 } 2136 2137 PetscErrorCode DMLoad_Plex(DM dm, PetscViewer viewer) 2138 { 2139 PetscBool ishdf5; 2140 2141 PetscFunctionBegin; 2142 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2143 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2144 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2145 if (ishdf5) { 2146 #if defined(PETSC_HAVE_HDF5) 2147 PetscViewerFormat format; 2148 PetscCall(PetscViewerGetFormat(viewer, &format)); 2149 if (format == PETSC_VIEWER_HDF5_XDMF || format == PETSC_VIEWER_HDF5_VIZ) { 2150 PetscCall(DMPlexLoad_HDF5_Xdmf_Internal(dm, viewer)); 2151 } else if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 2152 PetscCall(DMPlexLoad_HDF5_Internal(dm, viewer)); 2153 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]); 2154 PetscFunctionReturn(PETSC_SUCCESS); 2155 #else 2156 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2157 #endif 2158 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Viewer type %s not yet supported for DMPlex loading", ((PetscObject)viewer)->type_name); 2159 } 2160 2161 /*@ 2162 DMPlexTopologyLoad - Loads a topology into a `DMPLEX` 2163 2164 Collective 2165 2166 Input Parameters: 2167 + dm - The `DM` into which the topology is loaded 2168 - viewer - The `PetscViewer` for the saved topology 2169 2170 Output Parameter: 2171 . 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 2172 2173 Level: advanced 2174 2175 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexCoordinatesLoad()`, `DMPlexLabelsLoad()`, `DMView()`, `PetscViewerHDF5Open()`, `PetscViewerPushFormat()`, 2176 `PetscViewer`, `PetscSF` 2177 @*/ 2178 PetscErrorCode DMPlexTopologyLoad(DM dm, PetscViewer viewer, PetscSF *globalToLocalPointSF) 2179 { 2180 PetscBool ishdf5; 2181 2182 PetscFunctionBegin; 2183 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2184 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2185 if (globalToLocalPointSF) PetscAssertPointer(globalToLocalPointSF, 3); 2186 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2187 PetscCall(PetscLogEventBegin(DMPLEX_TopologyLoad, viewer, 0, 0, 0)); 2188 if (ishdf5) { 2189 #if defined(PETSC_HAVE_HDF5) 2190 PetscViewerFormat format; 2191 PetscCall(PetscViewerGetFormat(viewer, &format)); 2192 if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 2193 PetscCall(DMPlexTopologyLoad_HDF5_Internal(dm, viewer, globalToLocalPointSF)); 2194 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]); 2195 #else 2196 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2197 #endif 2198 } 2199 PetscCall(PetscLogEventEnd(DMPLEX_TopologyLoad, viewer, 0, 0, 0)); 2200 PetscFunctionReturn(PETSC_SUCCESS); 2201 } 2202 2203 /*@ 2204 DMPlexCoordinatesLoad - Loads coordinates into a `DMPLEX` 2205 2206 Collective 2207 2208 Input Parameters: 2209 + dm - The `DM` into which the coordinates are loaded 2210 . viewer - The `PetscViewer` for the saved coordinates 2211 - globalToLocalPointSF - The `PetscSF` returned by `DMPlexTopologyLoad()` when loading dm from viewer 2212 2213 Level: advanced 2214 2215 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexTopologyLoad()`, `DMPlexLabelsLoad()`, `DMView()`, `PetscViewerHDF5Open()`, `PetscViewerPushFormat()`, 2216 `PetscSF`, `PetscViewer` 2217 @*/ 2218 PetscErrorCode DMPlexCoordinatesLoad(DM dm, PetscViewer viewer, PetscSF globalToLocalPointSF) 2219 { 2220 PetscBool ishdf5; 2221 2222 PetscFunctionBegin; 2223 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2224 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2225 PetscValidHeaderSpecific(globalToLocalPointSF, PETSCSF_CLASSID, 3); 2226 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2227 PetscCall(PetscLogEventBegin(DMPLEX_CoordinatesLoad, viewer, 0, 0, 0)); 2228 if (ishdf5) { 2229 #if defined(PETSC_HAVE_HDF5) 2230 PetscViewerFormat format; 2231 PetscCall(PetscViewerGetFormat(viewer, &format)); 2232 if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 2233 PetscCall(DMPlexCoordinatesLoad_HDF5_Internal(dm, viewer, globalToLocalPointSF)); 2234 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]); 2235 #else 2236 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2237 #endif 2238 } 2239 PetscCall(PetscLogEventEnd(DMPLEX_CoordinatesLoad, viewer, 0, 0, 0)); 2240 PetscFunctionReturn(PETSC_SUCCESS); 2241 } 2242 2243 /*@ 2244 DMPlexLabelsLoad - Loads labels into a `DMPLEX` 2245 2246 Collective 2247 2248 Input Parameters: 2249 + dm - The `DM` into which the labels are loaded 2250 . viewer - The `PetscViewer` for the saved labels 2251 - globalToLocalPointSF - The `PetscSF` returned by `DMPlexTopologyLoad()` when loading `dm` from viewer 2252 2253 Level: advanced 2254 2255 Note: 2256 The `PetscSF` argument must not be NULL if the `DM` is distributed, otherwise an error occurs. 2257 2258 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexTopologyLoad()`, `DMPlexCoordinatesLoad()`, `DMView()`, `PetscViewerHDF5Open()`, `PetscViewerPushFormat()`, 2259 `PetscSF`, `PetscViewer` 2260 @*/ 2261 PetscErrorCode DMPlexLabelsLoad(DM dm, PetscViewer viewer, PetscSF globalToLocalPointSF) 2262 { 2263 PetscBool ishdf5; 2264 2265 PetscFunctionBegin; 2266 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2267 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2268 if (globalToLocalPointSF) PetscValidHeaderSpecific(globalToLocalPointSF, PETSCSF_CLASSID, 3); 2269 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2270 PetscCall(PetscLogEventBegin(DMPLEX_LabelsLoad, viewer, 0, 0, 0)); 2271 if (ishdf5) { 2272 #if defined(PETSC_HAVE_HDF5) 2273 PetscViewerFormat format; 2274 2275 PetscCall(PetscViewerGetFormat(viewer, &format)); 2276 if (format == PETSC_VIEWER_HDF5_PETSC || format == PETSC_VIEWER_DEFAULT || format == PETSC_VIEWER_NATIVE) { 2277 PetscCall(DMPlexLabelsLoad_HDF5_Internal(dm, viewer, globalToLocalPointSF)); 2278 } else SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "PetscViewerFormat %s not supported for HDF5 input.", PetscViewerFormats[format]); 2279 #else 2280 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2281 #endif 2282 } 2283 PetscCall(PetscLogEventEnd(DMPLEX_LabelsLoad, viewer, 0, 0, 0)); 2284 PetscFunctionReturn(PETSC_SUCCESS); 2285 } 2286 2287 /*@ 2288 DMPlexSectionLoad - Loads section into a `DMPLEX` 2289 2290 Collective 2291 2292 Input Parameters: 2293 + dm - The `DM` that represents the topology 2294 . viewer - The `PetscViewer` that represents the on-disk section (sectionA) 2295 . sectiondm - The `DM` into which the on-disk section (sectionA) is migrated 2296 - globalToLocalPointSF - The `PetscSF` returned by `DMPlexTopologyLoad(`) when loading dm from viewer 2297 2298 Output Parameters 2299 + 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) 2300 - 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) 2301 2302 Level: advanced 2303 2304 Notes: 2305 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. 2306 2307 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 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. 2308 2309 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. 2310 2311 Example using 2 processes: 2312 .vb 2313 NX (number of points on dm): 4 2314 sectionA : the on-disk section 2315 vecA : a vector associated with sectionA 2316 sectionB : sectiondm's local section constructed in this function 2317 vecB (local) : a vector associated with sectiondm's local section 2318 vecB (global) : a vector associated with sectiondm's global section 2319 2320 rank 0 rank 1 2321 vecA (global) : [.0 .4 .1 | .2 .3] <- to be loaded in DMPlexGlobalVectorLoad() or DMPlexLocalVectorLoad() 2322 sectionA->atlasOff : 0 2 | 1 <- loaded in PetscSectionLoad() 2323 sectionA->atlasDof : 1 3 | 1 <- loaded in PetscSectionLoad() 2324 sectionA's global point numbers: 0 2 | 3 <- loaded in DMPlexSectionLoad() 2325 [0, NX) : 0 1 | 2 3 <- conceptual partition used in globalToLocalPointSF 2326 sectionB's global point numbers: 0 1 3 | 3 2 <- associated with [0, NX) by globalToLocalPointSF 2327 sectionB->atlasDof : 1 0 1 | 1 3 2328 sectionB->atlasOff (no perm) : 0 1 1 | 0 1 2329 vecB (local) : [.0 .4] | [.4 .1 .2 .3] <- to be constructed by calling DMPlexLocalVectorLoad() with localDofSF 2330 vecB (global) : [.0 .4 | .1 .2 .3] <- to be constructed by calling DMPlexGlobalVectorLoad() with globalDofSF 2331 .ve 2332 where "|" represents a partition of loaded data, and global point 3 is assumed to be owned by rank 0. 2333 2334 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMLoad()`, `DMPlexTopologyLoad()`, `DMPlexCoordinatesLoad()`, `DMPlexLabelsLoad()`, `DMPlexGlobalVectorLoad()`, `DMPlexLocalVectorLoad()`, `PetscSectionLoad()`, `DMPlexSectionView()`, `PetscSF`, `PetscViewer` 2335 @*/ 2336 PetscErrorCode DMPlexSectionLoad(DM dm, PetscViewer viewer, DM sectiondm, PetscSF globalToLocalPointSF, PetscSF *globalDofSF, PetscSF *localDofSF) 2337 { 2338 PetscBool ishdf5; 2339 2340 PetscFunctionBegin; 2341 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2342 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2343 PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3); 2344 PetscValidHeaderSpecific(globalToLocalPointSF, PETSCSF_CLASSID, 4); 2345 if (globalDofSF) PetscAssertPointer(globalDofSF, 5); 2346 if (localDofSF) PetscAssertPointer(localDofSF, 6); 2347 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2348 PetscCall(PetscLogEventBegin(DMPLEX_SectionLoad, viewer, 0, 0, 0)); 2349 if (ishdf5) { 2350 #if defined(PETSC_HAVE_HDF5) 2351 PetscCall(DMPlexSectionLoad_HDF5_Internal(dm, viewer, sectiondm, globalToLocalPointSF, globalDofSF, localDofSF)); 2352 #else 2353 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2354 #endif 2355 } 2356 PetscCall(PetscLogEventEnd(DMPLEX_SectionLoad, viewer, 0, 0, 0)); 2357 PetscFunctionReturn(PETSC_SUCCESS); 2358 } 2359 2360 /*@ 2361 DMPlexGlobalVectorLoad - Loads on-disk vector data into a global vector 2362 2363 Collective 2364 2365 Input Parameters: 2366 + dm - The `DM` that represents the topology 2367 . viewer - The `PetscViewer` that represents the on-disk vector data 2368 . sectiondm - The `DM` that contains the global section on which vec is defined 2369 . sf - The `PetscSF` that migrates the on-disk vector data into vec 2370 - vec - The global vector to set values of 2371 2372 Level: advanced 2373 2374 Notes: 2375 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 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. 2376 2377 Calling sequence: 2378 .vb 2379 DMCreate(PETSC_COMM_WORLD, &dm); 2380 DMSetType(dm, DMPLEX); 2381 PetscObjectSetName((PetscObject)dm, "topologydm_name"); 2382 DMPlexTopologyLoad(dm, viewer, &sfX); 2383 DMClone(dm, §iondm); 2384 PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name"); 2385 DMPlexSectionLoad(dm, viewer, sectiondm, sfX, &gsf, NULL); 2386 DMGetGlobalVector(sectiondm, &vec); 2387 PetscObjectSetName((PetscObject)vec, "vec_name"); 2388 DMPlexGlobalVectorLoad(dm, viewer, sectiondm, gsf, vec); 2389 DMRestoreGlobalVector(sectiondm, &vec); 2390 PetscSFDestroy(&gsf); 2391 PetscSFDestroy(&sfX); 2392 DMDestroy(§iondm); 2393 DMDestroy(&dm); 2394 .ve 2395 2396 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyLoad()`, `DMPlexSectionLoad()`, `DMPlexLocalVectorLoad()`, `DMPlexGlobalVectorView()`, `DMPlexLocalVectorView()`, 2397 `PetscSF`, `PetscViewer` 2398 @*/ 2399 PetscErrorCode DMPlexGlobalVectorLoad(DM dm, PetscViewer viewer, DM sectiondm, PetscSF sf, Vec vec) 2400 { 2401 PetscBool ishdf5; 2402 2403 PetscFunctionBegin; 2404 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2405 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2406 PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3); 2407 PetscValidHeaderSpecific(sf, PETSCSF_CLASSID, 4); 2408 PetscValidHeaderSpecific(vec, VEC_CLASSID, 5); 2409 /* Check consistency */ 2410 { 2411 PetscSection section; 2412 PetscBool includesConstraints; 2413 PetscInt m, m1; 2414 2415 PetscCall(VecGetLocalSize(vec, &m1)); 2416 PetscCall(DMGetGlobalSection(sectiondm, §ion)); 2417 PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints)); 2418 if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m)); 2419 else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m)); 2420 PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Global vector size (%" PetscInt_FMT ") != global section storage size (%" PetscInt_FMT ")", m1, m); 2421 } 2422 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2423 PetscCall(PetscLogEventBegin(DMPLEX_GlobalVectorLoad, viewer, 0, 0, 0)); 2424 if (ishdf5) { 2425 #if defined(PETSC_HAVE_HDF5) 2426 PetscCall(DMPlexVecLoad_HDF5_Internal(dm, viewer, sectiondm, sf, vec)); 2427 #else 2428 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2429 #endif 2430 } 2431 PetscCall(PetscLogEventEnd(DMPLEX_GlobalVectorLoad, viewer, 0, 0, 0)); 2432 PetscFunctionReturn(PETSC_SUCCESS); 2433 } 2434 2435 /*@ 2436 DMPlexLocalVectorLoad - Loads on-disk vector data into a local vector 2437 2438 Collective 2439 2440 Input Parameters: 2441 + dm - The `DM` that represents the topology 2442 . viewer - The `PetscViewer` that represents the on-disk vector data 2443 . sectiondm - The `DM` that contains the local section on which vec is defined 2444 . sf - The `PetscSF` that migrates the on-disk vector data into vec 2445 - vec - The local vector to set values of 2446 2447 Level: advanced 2448 2449 Notes: 2450 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 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. 2451 2452 Calling sequence: 2453 .vb 2454 DMCreate(PETSC_COMM_WORLD, &dm); 2455 DMSetType(dm, DMPLEX); 2456 PetscObjectSetName((PetscObject)dm, "topologydm_name"); 2457 DMPlexTopologyLoad(dm, viewer, &sfX); 2458 DMClone(dm, §iondm); 2459 PetscObjectSetName((PetscObject)sectiondm, "sectiondm_name"); 2460 DMPlexSectionLoad(dm, viewer, sectiondm, sfX, NULL, &lsf); 2461 DMGetLocalVector(sectiondm, &vec); 2462 PetscObjectSetName((PetscObject)vec, "vec_name"); 2463 DMPlexLocalVectorLoad(dm, viewer, sectiondm, lsf, vec); 2464 DMRestoreLocalVector(sectiondm, &vec); 2465 PetscSFDestroy(&lsf); 2466 PetscSFDestroy(&sfX); 2467 DMDestroy(§iondm); 2468 DMDestroy(&dm); 2469 .ve 2470 2471 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexTopologyLoad()`, `DMPlexSectionLoad()`, `DMPlexGlobalVectorLoad()`, `DMPlexGlobalVectorView()`, `DMPlexLocalVectorView()`, 2472 `PetscSF`, `PetscViewer` 2473 @*/ 2474 PetscErrorCode DMPlexLocalVectorLoad(DM dm, PetscViewer viewer, DM sectiondm, PetscSF sf, Vec vec) 2475 { 2476 PetscBool ishdf5; 2477 2478 PetscFunctionBegin; 2479 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2480 PetscValidHeaderSpecific(viewer, PETSC_VIEWER_CLASSID, 2); 2481 PetscValidHeaderSpecific(sectiondm, DM_CLASSID, 3); 2482 PetscValidHeaderSpecific(sf, PETSCSF_CLASSID, 4); 2483 PetscValidHeaderSpecific(vec, VEC_CLASSID, 5); 2484 /* Check consistency */ 2485 { 2486 PetscSection section; 2487 PetscBool includesConstraints; 2488 PetscInt m, m1; 2489 2490 PetscCall(VecGetLocalSize(vec, &m1)); 2491 PetscCall(DMGetLocalSection(sectiondm, §ion)); 2492 PetscCall(PetscSectionGetIncludesConstraints(section, &includesConstraints)); 2493 if (includesConstraints) PetscCall(PetscSectionGetStorageSize(section, &m)); 2494 else PetscCall(PetscSectionGetConstrainedStorageSize(section, &m)); 2495 PetscCheck(m1 == m, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Local vector size (%" PetscInt_FMT ") != local section storage size (%" PetscInt_FMT ")", m1, m); 2496 } 2497 PetscCall(PetscObjectTypeCompare((PetscObject)viewer, PETSCVIEWERHDF5, &ishdf5)); 2498 PetscCall(PetscLogEventBegin(DMPLEX_LocalVectorLoad, viewer, 0, 0, 0)); 2499 if (ishdf5) { 2500 #if defined(PETSC_HAVE_HDF5) 2501 PetscCall(DMPlexVecLoad_HDF5_Internal(dm, viewer, sectiondm, sf, vec)); 2502 #else 2503 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "HDF5 not supported in this build.\nPlease reconfigure using --download-hdf5"); 2504 #endif 2505 } 2506 PetscCall(PetscLogEventEnd(DMPLEX_LocalVectorLoad, viewer, 0, 0, 0)); 2507 PetscFunctionReturn(PETSC_SUCCESS); 2508 } 2509 2510 PetscErrorCode DMDestroy_Plex(DM dm) 2511 { 2512 DM_Plex *mesh = (DM_Plex *)dm->data; 2513 2514 PetscFunctionBegin; 2515 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMSetUpGLVisViewer_C", NULL)); 2516 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexInsertBoundaryValues_C", NULL)); 2517 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMCreateNeumannOverlap_C", NULL)); 2518 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMInterpolateSolution_C", NULL)); 2519 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexInsertTimeDerviativeBoundaryValues_C", NULL)); 2520 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexGetOverlap_C", NULL)); 2521 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexDistributeGetDefault_C", NULL)); 2522 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexDistributeSetDefault_C", NULL)); 2523 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "MatComputeNeumannOverlap_C", NULL)); 2524 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexReorderGetDefault_C", NULL)); 2525 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexReorderSetDefault_C", NULL)); 2526 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexGetOverlap_C", NULL)); 2527 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMPlexSetOverlap_C", NULL)); 2528 PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMGetIsoperiodicPointSF_C", NULL)); 2529 if (--mesh->refct > 0) PetscFunctionReturn(PETSC_SUCCESS); 2530 PetscCall(PetscSectionDestroy(&mesh->coneSection)); 2531 PetscCall(PetscFree(mesh->cones)); 2532 PetscCall(PetscFree(mesh->coneOrientations)); 2533 PetscCall(PetscSectionDestroy(&mesh->supportSection)); 2534 PetscCall(PetscSectionDestroy(&mesh->subdomainSection)); 2535 PetscCall(PetscFree(mesh->supports)); 2536 PetscCall(PetscFree(mesh->cellTypes)); 2537 PetscCall(DMPlexTransformDestroy(&mesh->tr)); 2538 PetscCall(PetscFree(mesh->tetgenOpts)); 2539 PetscCall(PetscFree(mesh->triangleOpts)); 2540 PetscCall(PetscFree(mesh->transformType)); 2541 PetscCall(PetscFree(mesh->distributionName)); 2542 PetscCall(PetscPartitionerDestroy(&mesh->partitioner)); 2543 PetscCall(DMLabelDestroy(&mesh->subpointMap)); 2544 PetscCall(ISDestroy(&mesh->subpointIS)); 2545 PetscCall(ISDestroy(&mesh->globalVertexNumbers)); 2546 PetscCall(ISDestroy(&mesh->globalCellNumbers)); 2547 PetscCall(PetscSFDestroy(&mesh->periodic.face_sf)); 2548 PetscCall(PetscSFDestroy(&mesh->periodic.composed_sf)); 2549 PetscCall(ISDestroy(&mesh->periodic.periodic_points)); 2550 PetscCall(PetscSectionDestroy(&mesh->anchorSection)); 2551 PetscCall(ISDestroy(&mesh->anchorIS)); 2552 PetscCall(PetscSectionDestroy(&mesh->parentSection)); 2553 PetscCall(PetscFree(mesh->parents)); 2554 PetscCall(PetscFree(mesh->childIDs)); 2555 PetscCall(PetscSectionDestroy(&mesh->childSection)); 2556 PetscCall(PetscFree(mesh->children)); 2557 PetscCall(DMDestroy(&mesh->referenceTree)); 2558 PetscCall(PetscGridHashDestroy(&mesh->lbox)); 2559 PetscCall(PetscFree(mesh->neighbors)); 2560 if (mesh->metricCtx) PetscCall(PetscFree(mesh->metricCtx)); 2561 /* This was originally freed in DMDestroy(), but that prevents reference counting of backend objects */ 2562 PetscCall(PetscFree(mesh)); 2563 PetscFunctionReturn(PETSC_SUCCESS); 2564 } 2565 2566 PetscErrorCode DMCreateMatrix_Plex(DM dm, Mat *J) 2567 { 2568 PetscSection sectionGlobal; 2569 PetscInt bs = -1, mbs; 2570 PetscInt localSize, localStart = 0; 2571 PetscBool isShell, isBlock, isSeqBlock, isMPIBlock, isSymBlock, isSymSeqBlock, isSymMPIBlock, isMatIS; 2572 MatType mtype; 2573 ISLocalToGlobalMapping ltog; 2574 2575 PetscFunctionBegin; 2576 PetscCall(MatInitializePackage()); 2577 mtype = dm->mattype; 2578 PetscCall(DMGetGlobalSection(dm, §ionGlobal)); 2579 /* PetscCall(PetscSectionGetStorageSize(sectionGlobal, &localSize)); */ 2580 PetscCall(PetscSectionGetConstrainedStorageSize(sectionGlobal, &localSize)); 2581 PetscCallMPI(MPI_Exscan(&localSize, &localStart, 1, MPIU_INT, MPI_SUM, PetscObjectComm((PetscObject)dm))); 2582 PetscCall(MatCreate(PetscObjectComm((PetscObject)dm), J)); 2583 PetscCall(MatSetSizes(*J, localSize, localSize, PETSC_DETERMINE, PETSC_DETERMINE)); 2584 PetscCall(MatSetType(*J, mtype)); 2585 PetscCall(MatSetFromOptions(*J)); 2586 PetscCall(MatGetBlockSize(*J, &mbs)); 2587 if (mbs > 1) bs = mbs; 2588 PetscCall(PetscStrcmp(mtype, MATSHELL, &isShell)); 2589 PetscCall(PetscStrcmp(mtype, MATBAIJ, &isBlock)); 2590 PetscCall(PetscStrcmp(mtype, MATSEQBAIJ, &isSeqBlock)); 2591 PetscCall(PetscStrcmp(mtype, MATMPIBAIJ, &isMPIBlock)); 2592 PetscCall(PetscStrcmp(mtype, MATSBAIJ, &isSymBlock)); 2593 PetscCall(PetscStrcmp(mtype, MATSEQSBAIJ, &isSymSeqBlock)); 2594 PetscCall(PetscStrcmp(mtype, MATMPISBAIJ, &isSymMPIBlock)); 2595 PetscCall(PetscStrcmp(mtype, MATIS, &isMatIS)); 2596 if (!isShell) { 2597 PetscBool fillMatrix = (PetscBool)(!dm->prealloc_only && !isMatIS); 2598 PetscInt *dnz, *onz, *dnzu, *onzu, bsLocal[2], bsMinMax[2], *pblocks; 2599 PetscInt pStart, pEnd, p, dof, cdof, num_fields; 2600 2601 PetscCall(DMGetLocalToGlobalMapping(dm, <og)); 2602 2603 PetscCall(PetscCalloc1(localSize, &pblocks)); 2604 PetscCall(PetscSectionGetChart(sectionGlobal, &pStart, &pEnd)); 2605 PetscCall(PetscSectionGetNumFields(sectionGlobal, &num_fields)); 2606 for (p = pStart; p < pEnd; ++p) { 2607 switch (dm->blocking_type) { 2608 case DM_BLOCKING_TOPOLOGICAL_POINT: { // One block per topological point 2609 PetscInt bdof, offset; 2610 2611 PetscCall(PetscSectionGetDof(sectionGlobal, p, &dof)); 2612 PetscCall(PetscSectionGetOffset(sectionGlobal, p, &offset)); 2613 PetscCall(PetscSectionGetConstraintDof(sectionGlobal, p, &cdof)); 2614 for (PetscInt i = 0; i < dof - cdof; i++) pblocks[offset - localStart + i] = dof - cdof; 2615 dof = dof < 0 ? -(dof + 1) : dof; 2616 bdof = cdof && (dof - cdof) ? 1 : dof; 2617 if (dof) { 2618 if (bs < 0) { 2619 bs = bdof; 2620 } else if (bs != bdof) { 2621 bs = 1; 2622 } 2623 } 2624 } break; 2625 case DM_BLOCKING_FIELD_NODE: { 2626 for (PetscInt field = 0; field < num_fields; field++) { 2627 PetscInt num_comp, bdof, offset; 2628 PetscCall(PetscSectionGetFieldComponents(sectionGlobal, field, &num_comp)); 2629 PetscCall(PetscSectionGetFieldDof(sectionGlobal, p, field, &dof)); 2630 if (dof < 0) continue; 2631 PetscCall(PetscSectionGetFieldOffset(sectionGlobal, p, field, &offset)); 2632 PetscCall(PetscSectionGetFieldConstraintDof(sectionGlobal, p, field, &cdof)); 2633 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); 2634 PetscInt num_nodes = dof / num_comp; 2635 for (PetscInt i = 0; i < dof - cdof; i++) pblocks[offset - localStart + i] = (dof - cdof) / num_nodes; 2636 // Handle possibly constant block size (unlikely) 2637 bdof = cdof && (dof - cdof) ? 1 : dof; 2638 if (dof) { 2639 if (bs < 0) { 2640 bs = bdof; 2641 } else if (bs != bdof) { 2642 bs = 1; 2643 } 2644 } 2645 } 2646 } break; 2647 } 2648 } 2649 /* Must have same blocksize on all procs (some might have no points) */ 2650 bsLocal[0] = bs < 0 ? PETSC_MAX_INT : bs; 2651 bsLocal[1] = bs; 2652 PetscCall(PetscGlobalMinMaxInt(PetscObjectComm((PetscObject)dm), bsLocal, bsMinMax)); 2653 if (bsMinMax[0] != bsMinMax[1]) bs = 1; 2654 else bs = bsMinMax[0]; 2655 bs = PetscMax(1, bs); 2656 PetscCall(MatSetLocalToGlobalMapping(*J, ltog, ltog)); 2657 if (dm->prealloc_skip) { // User will likely use MatSetPreallocationCOO(), but still set structural parameters 2658 PetscCall(MatSetBlockSize(*J, bs)); 2659 PetscCall(MatSetUp(*J)); 2660 } else { 2661 PetscCall(PetscCalloc4(localSize / bs, &dnz, localSize / bs, &onz, localSize / bs, &dnzu, localSize / bs, &onzu)); 2662 PetscCall(DMPlexPreallocateOperator(dm, bs, dnz, onz, dnzu, onzu, *J, fillMatrix)); 2663 PetscCall(PetscFree4(dnz, onz, dnzu, onzu)); 2664 } 2665 { // Consolidate blocks 2666 PetscInt nblocks = 0; 2667 for (PetscInt i = 0; i < localSize; i += PetscMax(1, pblocks[i])) { 2668 if (pblocks[i] == 0) continue; 2669 pblocks[nblocks++] = pblocks[i]; // nblocks always <= i 2670 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]); 2671 } 2672 PetscCall(MatSetVariableBlockSizes(*J, nblocks, pblocks)); 2673 } 2674 PetscCall(PetscFree(pblocks)); 2675 } 2676 PetscCall(MatSetDM(*J, dm)); 2677 PetscFunctionReturn(PETSC_SUCCESS); 2678 } 2679 2680 /*@ 2681 DMPlexGetSubdomainSection - Returns the section associated with the subdomain 2682 2683 Not Collective 2684 2685 Input Parameter: 2686 . dm - The `DMPLEX` 2687 2688 Output Parameter: 2689 . subsection - The subdomain section 2690 2691 Level: developer 2692 2693 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `PetscSection` 2694 @*/ 2695 PetscErrorCode DMPlexGetSubdomainSection(DM dm, PetscSection *subsection) 2696 { 2697 DM_Plex *mesh = (DM_Plex *)dm->data; 2698 2699 PetscFunctionBegin; 2700 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2701 if (!mesh->subdomainSection) { 2702 PetscSection section; 2703 PetscSF sf; 2704 2705 PetscCall(PetscSFCreate(PETSC_COMM_SELF, &sf)); 2706 PetscCall(DMGetLocalSection(dm, §ion)); 2707 PetscCall(PetscSectionCreateGlobalSection(section, sf, PETSC_FALSE, PETSC_TRUE, &mesh->subdomainSection)); 2708 PetscCall(PetscSFDestroy(&sf)); 2709 } 2710 *subsection = mesh->subdomainSection; 2711 PetscFunctionReturn(PETSC_SUCCESS); 2712 } 2713 2714 /*@ 2715 DMPlexGetChart - Return the interval for all mesh points [`pStart`, `pEnd`) 2716 2717 Not Collective 2718 2719 Input Parameter: 2720 . dm - The `DMPLEX` 2721 2722 Output Parameters: 2723 + pStart - The first mesh point 2724 - pEnd - The upper bound for mesh points 2725 2726 Level: beginner 2727 2728 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetChart()` 2729 @*/ 2730 PetscErrorCode DMPlexGetChart(DM dm, PetscInt *pStart, PetscInt *pEnd) 2731 { 2732 DM_Plex *mesh = (DM_Plex *)dm->data; 2733 2734 PetscFunctionBegin; 2735 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2736 if (mesh->tr) PetscCall(DMPlexTransformGetChart(mesh->tr, pStart, pEnd)); 2737 else PetscCall(PetscSectionGetChart(mesh->coneSection, pStart, pEnd)); 2738 PetscFunctionReturn(PETSC_SUCCESS); 2739 } 2740 2741 /*@ 2742 DMPlexSetChart - Set the interval for all mesh points [`pStart`, `pEnd`) 2743 2744 Not Collective 2745 2746 Input Parameters: 2747 + dm - The `DMPLEX` 2748 . pStart - The first mesh point 2749 - pEnd - The upper bound for mesh points 2750 2751 Level: beginner 2752 2753 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetChart()` 2754 @*/ 2755 PetscErrorCode DMPlexSetChart(DM dm, PetscInt pStart, PetscInt pEnd) 2756 { 2757 DM_Plex *mesh = (DM_Plex *)dm->data; 2758 2759 PetscFunctionBegin; 2760 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2761 PetscCall(PetscSectionSetChart(mesh->coneSection, pStart, pEnd)); 2762 PetscCall(PetscSectionSetChart(mesh->supportSection, pStart, pEnd)); 2763 PetscCall(PetscFree(mesh->cellTypes)); 2764 PetscFunctionReturn(PETSC_SUCCESS); 2765 } 2766 2767 /*@ 2768 DMPlexGetConeSize - Return the number of in-edges for this point in the DAG 2769 2770 Not Collective 2771 2772 Input Parameters: 2773 + dm - The `DMPLEX` 2774 - p - The point, which must lie in the chart set with `DMPlexSetChart()` 2775 2776 Output Parameter: 2777 . size - The cone size for point `p` 2778 2779 Level: beginner 2780 2781 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetConeSize()`, `DMPlexSetChart()` 2782 @*/ 2783 PetscErrorCode DMPlexGetConeSize(DM dm, PetscInt p, PetscInt *size) 2784 { 2785 DM_Plex *mesh = (DM_Plex *)dm->data; 2786 2787 PetscFunctionBegin; 2788 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2789 PetscAssertPointer(size, 3); 2790 if (mesh->tr) PetscCall(DMPlexTransformGetConeSize(mesh->tr, p, size)); 2791 else PetscCall(PetscSectionGetDof(mesh->coneSection, p, size)); 2792 PetscFunctionReturn(PETSC_SUCCESS); 2793 } 2794 2795 /*@ 2796 DMPlexSetConeSize - Set the number of in-edges for this point in the DAG 2797 2798 Not Collective 2799 2800 Input Parameters: 2801 + dm - The `DMPLEX` 2802 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 2803 - size - The cone size for point `p` 2804 2805 Level: beginner 2806 2807 Note: 2808 This should be called after `DMPlexSetChart()`. 2809 2810 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetConeSize()`, `DMPlexSetChart()` 2811 @*/ 2812 PetscErrorCode DMPlexSetConeSize(DM dm, PetscInt p, PetscInt size) 2813 { 2814 DM_Plex *mesh = (DM_Plex *)dm->data; 2815 2816 PetscFunctionBegin; 2817 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2818 PetscCheck(!mesh->tr, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Cannot call DMPlexSetConeSize() on a mesh with a transform defined."); 2819 PetscCall(PetscSectionSetDof(mesh->coneSection, p, size)); 2820 PetscFunctionReturn(PETSC_SUCCESS); 2821 } 2822 2823 /*@C 2824 DMPlexGetCone - Return the points on the in-edges for this point in the DAG 2825 2826 Not Collective 2827 2828 Input Parameters: 2829 + dm - The `DMPLEX` 2830 - p - The point, which must lie in the chart set with `DMPlexSetChart()` 2831 2832 Output Parameter: 2833 . cone - An array of points which are on the in-edges for point `p` 2834 2835 Level: beginner 2836 2837 Fortran Notes: 2838 You must also call `DMPlexRestoreCone()` after you finish using the returned array. 2839 `DMPlexRestoreCone()` is not needed/available in C. 2840 2841 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSize()`, `DMPlexSetCone()`, `DMPlexGetConeTuple()`, `DMPlexSetChart()`, `DMPlexRestoreCone()` 2842 @*/ 2843 PetscErrorCode DMPlexGetCone(DM dm, PetscInt p, const PetscInt *cone[]) 2844 { 2845 DM_Plex *mesh = (DM_Plex *)dm->data; 2846 PetscInt off; 2847 2848 PetscFunctionBegin; 2849 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2850 PetscAssertPointer(cone, 3); 2851 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 2852 *cone = &mesh->cones[off]; 2853 PetscFunctionReturn(PETSC_SUCCESS); 2854 } 2855 2856 /*@C 2857 DMPlexGetConeTuple - Return the points on the in-edges of several points in the DAG 2858 2859 Not Collective 2860 2861 Input Parameters: 2862 + dm - The `DMPLEX` 2863 - p - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()` 2864 2865 Output Parameters: 2866 + pConesSection - `PetscSection` describing the layout of `pCones` 2867 - pCones - An array of points which are on the in-edges for the point set `p` 2868 2869 Level: intermediate 2870 2871 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeRecursive()`, `DMPlexSetChart()`, `PetscSection`, `IS` 2872 @*/ 2873 PetscErrorCode DMPlexGetConeTuple(DM dm, IS p, PetscSection *pConesSection, IS *pCones) 2874 { 2875 PetscSection cs, newcs; 2876 PetscInt *cones; 2877 PetscInt *newarr = NULL; 2878 PetscInt n; 2879 2880 PetscFunctionBegin; 2881 PetscCall(DMPlexGetCones(dm, &cones)); 2882 PetscCall(DMPlexGetConeSection(dm, &cs)); 2883 PetscCall(PetscSectionExtractDofsFromArray(cs, MPIU_INT, cones, p, &newcs, pCones ? ((void **)&newarr) : NULL)); 2884 if (pConesSection) *pConesSection = newcs; 2885 if (pCones) { 2886 PetscCall(PetscSectionGetStorageSize(newcs, &n)); 2887 PetscCall(ISCreateGeneral(PetscObjectComm((PetscObject)p), n, newarr, PETSC_OWN_POINTER, pCones)); 2888 } 2889 PetscFunctionReturn(PETSC_SUCCESS); 2890 } 2891 2892 /*@ 2893 DMPlexGetConeRecursiveVertices - Expand each given point into its cone points and do that recursively until we end up just with vertices. 2894 2895 Not Collective 2896 2897 Input Parameters: 2898 + dm - The `DMPLEX` 2899 - points - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()` 2900 2901 Output Parameter: 2902 . expandedPoints - An array of vertices recursively expanded from input points 2903 2904 Level: advanced 2905 2906 Notes: 2907 Like `DMPlexGetConeRecursive()` but returns only the 0-depth `IS` (i.e. vertices only) and no sections. 2908 2909 There is no corresponding Restore function, just call `ISDestroy()` on the returned `IS` to deallocate. 2910 2911 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeTuple()`, `DMPlexGetConeRecursive()`, `DMPlexRestoreConeRecursive()`, 2912 `DMPlexGetDepth()`, `IS` 2913 @*/ 2914 PetscErrorCode DMPlexGetConeRecursiveVertices(DM dm, IS points, IS *expandedPoints) 2915 { 2916 IS *expandedPointsAll; 2917 PetscInt depth; 2918 2919 PetscFunctionBegin; 2920 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2921 PetscValidHeaderSpecific(points, IS_CLASSID, 2); 2922 PetscAssertPointer(expandedPoints, 3); 2923 PetscCall(DMPlexGetConeRecursive(dm, points, &depth, &expandedPointsAll, NULL)); 2924 *expandedPoints = expandedPointsAll[0]; 2925 PetscCall(PetscObjectReference((PetscObject)expandedPointsAll[0])); 2926 PetscCall(DMPlexRestoreConeRecursive(dm, points, &depth, &expandedPointsAll, NULL)); 2927 PetscFunctionReturn(PETSC_SUCCESS); 2928 } 2929 2930 /*@ 2931 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). 2932 2933 Not Collective 2934 2935 Input Parameters: 2936 + dm - The `DMPLEX` 2937 - points - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()` 2938 2939 Output Parameters: 2940 + depth - (optional) Size of the output arrays, equal to `DMPLEX` depth, returned by `DMPlexGetDepth()` 2941 . expandedPoints - (optional) An array of index sets with recursively expanded cones 2942 - sections - (optional) An array of sections which describe mappings from points to their cone points 2943 2944 Level: advanced 2945 2946 Notes: 2947 Like `DMPlexGetConeTuple()` but recursive. 2948 2949 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. 2950 For example, for d=0 it contains only vertices, for d=1 it can contain vertices and edges, etc. 2951 2952 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: 2953 (1) DAG points in expandedPoints[d+1] with `depth` d+1 to their cone points in `expandedPoints`[d]; 2954 (2) DAG points in expandedPoints[d+1] with `depth` in [0,d] to the same points in `expandedPoints`[d]. 2955 2956 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeTuple()`, `DMPlexRestoreConeRecursive()`, `DMPlexGetConeRecursiveVertices()`, 2957 `DMPlexGetDepth()`, `PetscSection`, `IS` 2958 @*/ 2959 PetscErrorCode DMPlexGetConeRecursive(DM dm, IS points, PetscInt *depth, IS *expandedPoints[], PetscSection *sections[]) 2960 { 2961 const PetscInt *arr0 = NULL, *cone = NULL; 2962 PetscInt *arr = NULL, *newarr = NULL; 2963 PetscInt d, depth_, i, n, newn, cn, co, start, end; 2964 IS *expandedPoints_; 2965 PetscSection *sections_; 2966 2967 PetscFunctionBegin; 2968 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 2969 PetscValidHeaderSpecific(points, IS_CLASSID, 2); 2970 if (depth) PetscAssertPointer(depth, 3); 2971 if (expandedPoints) PetscAssertPointer(expandedPoints, 4); 2972 if (sections) PetscAssertPointer(sections, 5); 2973 PetscCall(ISGetLocalSize(points, &n)); 2974 PetscCall(ISGetIndices(points, &arr0)); 2975 PetscCall(DMPlexGetDepth(dm, &depth_)); 2976 PetscCall(PetscCalloc1(depth_, &expandedPoints_)); 2977 PetscCall(PetscCalloc1(depth_, §ions_)); 2978 arr = (PetscInt *)arr0; /* this is ok because first generation of arr is not modified */ 2979 for (d = depth_ - 1; d >= 0; d--) { 2980 PetscCall(PetscSectionCreate(PETSC_COMM_SELF, §ions_[d])); 2981 PetscCall(PetscSectionSetChart(sections_[d], 0, n)); 2982 for (i = 0; i < n; i++) { 2983 PetscCall(DMPlexGetDepthStratum(dm, d + 1, &start, &end)); 2984 if (arr[i] >= start && arr[i] < end) { 2985 PetscCall(DMPlexGetConeSize(dm, arr[i], &cn)); 2986 PetscCall(PetscSectionSetDof(sections_[d], i, cn)); 2987 } else { 2988 PetscCall(PetscSectionSetDof(sections_[d], i, 1)); 2989 } 2990 } 2991 PetscCall(PetscSectionSetUp(sections_[d])); 2992 PetscCall(PetscSectionGetStorageSize(sections_[d], &newn)); 2993 PetscCall(PetscMalloc1(newn, &newarr)); 2994 for (i = 0; i < n; i++) { 2995 PetscCall(PetscSectionGetDof(sections_[d], i, &cn)); 2996 PetscCall(PetscSectionGetOffset(sections_[d], i, &co)); 2997 if (cn > 1) { 2998 PetscCall(DMPlexGetCone(dm, arr[i], &cone)); 2999 PetscCall(PetscMemcpy(&newarr[co], cone, cn * sizeof(PetscInt))); 3000 } else { 3001 newarr[co] = arr[i]; 3002 } 3003 } 3004 PetscCall(ISCreateGeneral(PETSC_COMM_SELF, newn, newarr, PETSC_OWN_POINTER, &expandedPoints_[d])); 3005 arr = newarr; 3006 n = newn; 3007 } 3008 PetscCall(ISRestoreIndices(points, &arr0)); 3009 *depth = depth_; 3010 if (expandedPoints) *expandedPoints = expandedPoints_; 3011 else { 3012 for (d = 0; d < depth_; d++) PetscCall(ISDestroy(&expandedPoints_[d])); 3013 PetscCall(PetscFree(expandedPoints_)); 3014 } 3015 if (sections) *sections = sections_; 3016 else { 3017 for (d = 0; d < depth_; d++) PetscCall(PetscSectionDestroy(§ions_[d])); 3018 PetscCall(PetscFree(sections_)); 3019 } 3020 PetscFunctionReturn(PETSC_SUCCESS); 3021 } 3022 3023 /*@ 3024 DMPlexRestoreConeRecursive - Deallocates arrays created by `DMPlexGetConeRecursive()` 3025 3026 Not Collective 3027 3028 Input Parameters: 3029 + dm - The `DMPLEX` 3030 - points - The `IS` of points, which must lie in the chart set with `DMPlexSetChart()` 3031 3032 Output Parameters: 3033 + depth - (optional) Size of the output arrays, equal to `DMPLEX` depth, returned by `DMPlexGetDepth()` 3034 . expandedPoints - (optional) An array of recursively expanded cones 3035 - sections - (optional) An array of sections which describe mappings from points to their cone points 3036 3037 Level: advanced 3038 3039 Note: 3040 See `DMPlexGetConeRecursive()` 3041 3042 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexGetConeTuple()`, `DMPlexGetConeRecursive()`, `DMPlexGetConeRecursiveVertices()`, 3043 `DMPlexGetDepth()`, `IS`, `PetscSection` 3044 @*/ 3045 PetscErrorCode DMPlexRestoreConeRecursive(DM dm, IS points, PetscInt *depth, IS *expandedPoints[], PetscSection *sections[]) 3046 { 3047 PetscInt d, depth_; 3048 3049 PetscFunctionBegin; 3050 PetscCall(DMPlexGetDepth(dm, &depth_)); 3051 PetscCheck(!depth || *depth == depth_, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "depth changed since last call to DMPlexGetConeRecursive"); 3052 if (depth) *depth = 0; 3053 if (expandedPoints) { 3054 for (d = 0; d < depth_; d++) PetscCall(ISDestroy(&((*expandedPoints)[d]))); 3055 PetscCall(PetscFree(*expandedPoints)); 3056 } 3057 if (sections) { 3058 for (d = 0; d < depth_; d++) PetscCall(PetscSectionDestroy(&((*sections)[d]))); 3059 PetscCall(PetscFree(*sections)); 3060 } 3061 PetscFunctionReturn(PETSC_SUCCESS); 3062 } 3063 3064 /*@ 3065 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 3066 3067 Not Collective 3068 3069 Input Parameters: 3070 + dm - The `DMPLEX` 3071 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3072 - cone - An array of points which are on the in-edges for point `p` 3073 3074 Level: beginner 3075 3076 Note: 3077 This should be called after all calls to `DMPlexSetConeSize()` and `DMSetUp()`. 3078 3079 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()`, `DMPlexSetSupport()`, `DMPlexSetSupportSize()` 3080 @*/ 3081 PetscErrorCode DMPlexSetCone(DM dm, PetscInt p, const PetscInt cone[]) 3082 { 3083 DM_Plex *mesh = (DM_Plex *)dm->data; 3084 PetscInt dof, off, c; 3085 3086 PetscFunctionBegin; 3087 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3088 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 3089 if (dof) PetscAssertPointer(cone, 3); 3090 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 3091 if (PetscDefined(USE_DEBUG)) { 3092 PetscInt pStart, pEnd; 3093 PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd)); 3094 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); 3095 for (c = 0; c < dof; ++c) { 3096 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); 3097 mesh->cones[off + c] = cone[c]; 3098 } 3099 } else { 3100 for (c = 0; c < dof; ++c) mesh->cones[off + c] = cone[c]; 3101 } 3102 PetscFunctionReturn(PETSC_SUCCESS); 3103 } 3104 3105 /*@C 3106 DMPlexGetConeOrientation - Return the orientations on the in-edges for this point in the DAG 3107 3108 Not Collective 3109 3110 Input Parameters: 3111 + dm - The `DMPLEX` 3112 - p - The point, which must lie in the chart set with `DMPlexSetChart()` 3113 3114 Output Parameter: 3115 . coneOrientation - An array of orientations which are on the in-edges for point `p`. An orientation is an 3116 integer giving the prescription for cone traversal. 3117 3118 Level: beginner 3119 3120 Note: 3121 The number indexes the symmetry transformations for the cell type (see manual). Orientation 0 is always 3122 the identity transformation. Negative orientation indicates reflection so that -(o+1) is the reflection 3123 of o, however it is not necessarily the inverse. To get the inverse, use `DMPolytopeTypeComposeOrientationInv()` 3124 with the identity. 3125 3126 Fortran Notes: 3127 You must also call `DMPlexRestoreConeOrientation()` after you finish using the returned array. 3128 `DMPlexRestoreConeOrientation()` is not needed/available in C. 3129 3130 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPolytopeTypeComposeOrientation()`, `DMPolytopeTypeComposeOrientationInv()`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetCone()`, `DMPlexSetChart()` 3131 @*/ 3132 PetscErrorCode DMPlexGetConeOrientation(DM dm, PetscInt p, const PetscInt *coneOrientation[]) 3133 { 3134 DM_Plex *mesh = (DM_Plex *)dm->data; 3135 PetscInt off; 3136 3137 PetscFunctionBegin; 3138 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3139 if (PetscDefined(USE_DEBUG)) { 3140 PetscInt dof; 3141 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 3142 if (dof) PetscAssertPointer(coneOrientation, 3); 3143 } 3144 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 3145 3146 *coneOrientation = &mesh->coneOrientations[off]; 3147 PetscFunctionReturn(PETSC_SUCCESS); 3148 } 3149 3150 /*@ 3151 DMPlexSetConeOrientation - Set the orientations on the in-edges for this point in the DAG 3152 3153 Not Collective 3154 3155 Input Parameters: 3156 + dm - The `DMPLEX` 3157 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3158 - coneOrientation - An array of orientations 3159 3160 Level: beginner 3161 3162 Notes: 3163 This should be called after all calls to `DMPlexSetConeSize()` and `DMSetUp()`. 3164 3165 The meaning of coneOrientation is detailed in `DMPlexGetConeOrientation()`. 3166 3167 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetConeOrientation()`, `DMPlexSetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()` 3168 @*/ 3169 PetscErrorCode DMPlexSetConeOrientation(DM dm, PetscInt p, const PetscInt coneOrientation[]) 3170 { 3171 DM_Plex *mesh = (DM_Plex *)dm->data; 3172 PetscInt pStart, pEnd; 3173 PetscInt dof, off, c; 3174 3175 PetscFunctionBegin; 3176 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3177 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 3178 if (dof) PetscAssertPointer(coneOrientation, 3); 3179 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 3180 if (PetscDefined(USE_DEBUG)) { 3181 PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd)); 3182 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); 3183 for (c = 0; c < dof; ++c) { 3184 PetscInt cdof, o = coneOrientation[c]; 3185 3186 PetscCall(PetscSectionGetDof(mesh->coneSection, mesh->cones[off + c], &cdof)); 3187 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); 3188 mesh->coneOrientations[off + c] = o; 3189 } 3190 } else { 3191 for (c = 0; c < dof; ++c) mesh->coneOrientations[off + c] = coneOrientation[c]; 3192 } 3193 PetscFunctionReturn(PETSC_SUCCESS); 3194 } 3195 3196 /*@ 3197 DMPlexInsertCone - Insert a point into the in-edges for the point p in the DAG 3198 3199 Not Collective 3200 3201 Input Parameters: 3202 + dm - The `DMPLEX` 3203 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3204 . conePos - The local index in the cone where the point should be put 3205 - conePoint - The mesh point to insert 3206 3207 Level: beginner 3208 3209 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()` 3210 @*/ 3211 PetscErrorCode DMPlexInsertCone(DM dm, PetscInt p, PetscInt conePos, PetscInt conePoint) 3212 { 3213 DM_Plex *mesh = (DM_Plex *)dm->data; 3214 PetscInt pStart, pEnd; 3215 PetscInt dof, off; 3216 3217 PetscFunctionBegin; 3218 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3219 if (PetscDefined(USE_DEBUG)) { 3220 PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd)); 3221 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); 3222 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); 3223 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 3224 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); 3225 } 3226 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 3227 mesh->cones[off + conePos] = conePoint; 3228 PetscFunctionReturn(PETSC_SUCCESS); 3229 } 3230 3231 /*@ 3232 DMPlexInsertConeOrientation - Insert a point orientation for the in-edge for the point p in the DAG 3233 3234 Not Collective 3235 3236 Input Parameters: 3237 + dm - The `DMPLEX` 3238 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3239 . conePos - The local index in the cone where the point should be put 3240 - coneOrientation - The point orientation to insert 3241 3242 Level: beginner 3243 3244 Note: 3245 The meaning of coneOrientation values is detailed in `DMPlexGetConeOrientation()`. 3246 3247 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()` 3248 @*/ 3249 PetscErrorCode DMPlexInsertConeOrientation(DM dm, PetscInt p, PetscInt conePos, PetscInt coneOrientation) 3250 { 3251 DM_Plex *mesh = (DM_Plex *)dm->data; 3252 PetscInt pStart, pEnd; 3253 PetscInt dof, off; 3254 3255 PetscFunctionBegin; 3256 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3257 if (PetscDefined(USE_DEBUG)) { 3258 PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd)); 3259 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); 3260 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 3261 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); 3262 } 3263 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 3264 mesh->coneOrientations[off + conePos] = coneOrientation; 3265 PetscFunctionReturn(PETSC_SUCCESS); 3266 } 3267 3268 /*@C 3269 DMPlexGetOrientedCone - Return the points and orientations on the in-edges for this point in the DAG 3270 3271 Not collective 3272 3273 Input Parameters: 3274 + dm - The DMPlex 3275 - p - The point, which must lie in the chart set with DMPlexSetChart() 3276 3277 Output Parameters: 3278 + cone - An array of points which are on the in-edges for point `p` 3279 - ornt - An array of orientations which are on the in-edges for point `p`. An orientation is an 3280 integer giving the prescription for cone traversal. 3281 3282 Level: beginner 3283 3284 Notes: 3285 The number indexes the symmetry transformations for the cell type (see manual). Orientation 0 is always 3286 the identity transformation. Negative orientation indicates reflection so that -(o+1) is the reflection 3287 of o, however it is not necessarily the inverse. To get the inverse, use `DMPolytopeTypeComposeOrientationInv()` 3288 with the identity. 3289 3290 Fortran Notes: 3291 You must also call `DMPlexRestoreCone()` after you finish using the returned array. 3292 `DMPlexRestoreCone()` is not needed/available in C. 3293 3294 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreOrientedCone()`, `DMPlexGetConeSize()`, `DMPlexGetCone()`, `DMPlexGetChart()` 3295 @*/ 3296 PetscErrorCode DMPlexGetOrientedCone(DM dm, PetscInt p, const PetscInt *cone[], const PetscInt *ornt[]) 3297 { 3298 DM_Plex *mesh = (DM_Plex *)dm->data; 3299 3300 PetscFunctionBegin; 3301 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3302 if (mesh->tr) { 3303 PetscCall(DMPlexTransformGetCone(mesh->tr, p, cone, ornt)); 3304 } else { 3305 PetscInt off; 3306 if (PetscDefined(USE_DEBUG)) { 3307 PetscInt dof; 3308 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 3309 if (dof) { 3310 if (cone) PetscAssertPointer(cone, 3); 3311 if (ornt) PetscAssertPointer(ornt, 4); 3312 } 3313 } 3314 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 3315 if (cone) *cone = mesh->cones ? mesh->cones + off : NULL; // NULL + 0 is UB 3316 if (ornt) *ornt = mesh->coneOrientations ? mesh->coneOrientations + off : NULL; 3317 } 3318 PetscFunctionReturn(PETSC_SUCCESS); 3319 } 3320 3321 /*@C 3322 DMPlexRestoreOrientedCone - Restore the points and orientations on the in-edges for this point in the DAG 3323 3324 Not Collective 3325 3326 Input Parameters: 3327 + dm - The DMPlex 3328 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3329 . cone - An array of points which are on the in-edges for point p 3330 - ornt - An array of orientations which are on the in-edges for point `p`. An orientation is an 3331 integer giving the prescription for cone traversal. 3332 3333 Level: beginner 3334 3335 Notes: 3336 The number indexes the symmetry transformations for the cell type (see manual). Orientation 0 is always 3337 the identity transformation. Negative orientation indicates reflection so that -(o+1) is the reflection 3338 of o, however it is not necessarily the inverse. To get the inverse, use `DMPolytopeTypeComposeOrientationInv()` 3339 with the identity. 3340 3341 Fortran Notes: 3342 You must also call `DMPlexRestoreCone()` after you finish using the returned array. 3343 `DMPlexRestoreCone()` is not needed/available in C. 3344 3345 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetOrientedCone()`, `DMPlexGetConeSize()`, `DMPlexGetCone()`, `DMPlexGetChart()` 3346 @*/ 3347 PetscErrorCode DMPlexRestoreOrientedCone(DM dm, PetscInt p, const PetscInt *cone[], const PetscInt *ornt[]) 3348 { 3349 DM_Plex *mesh = (DM_Plex *)dm->data; 3350 3351 PetscFunctionBegin; 3352 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3353 if (mesh->tr) PetscCall(DMPlexTransformRestoreCone(mesh->tr, p, cone, ornt)); 3354 PetscFunctionReturn(PETSC_SUCCESS); 3355 } 3356 3357 /*@ 3358 DMPlexGetSupportSize - Return the number of out-edges for this point in the DAG 3359 3360 Not Collective 3361 3362 Input Parameters: 3363 + dm - The `DMPLEX` 3364 - p - The point, which must lie in the chart set with `DMPlexSetChart()` 3365 3366 Output Parameter: 3367 . size - The support size for point `p` 3368 3369 Level: beginner 3370 3371 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetConeSize()`, `DMPlexSetChart()`, `DMPlexGetConeSize()` 3372 @*/ 3373 PetscErrorCode DMPlexGetSupportSize(DM dm, PetscInt p, PetscInt *size) 3374 { 3375 DM_Plex *mesh = (DM_Plex *)dm->data; 3376 3377 PetscFunctionBegin; 3378 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3379 PetscAssertPointer(size, 3); 3380 PetscCall(PetscSectionGetDof(mesh->supportSection, p, size)); 3381 PetscFunctionReturn(PETSC_SUCCESS); 3382 } 3383 3384 /*@ 3385 DMPlexSetSupportSize - Set the number of out-edges for this point in the DAG 3386 3387 Not Collective 3388 3389 Input Parameters: 3390 + dm - The `DMPLEX` 3391 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3392 - size - The support size for point `p` 3393 3394 Level: beginner 3395 3396 Note: 3397 This should be called after `DMPlexSetChart()`. 3398 3399 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetSupportSize()`, `DMPlexSetChart()` 3400 @*/ 3401 PetscErrorCode DMPlexSetSupportSize(DM dm, PetscInt p, PetscInt size) 3402 { 3403 DM_Plex *mesh = (DM_Plex *)dm->data; 3404 3405 PetscFunctionBegin; 3406 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3407 PetscCall(PetscSectionSetDof(mesh->supportSection, p, size)); 3408 PetscFunctionReturn(PETSC_SUCCESS); 3409 } 3410 3411 /*@C 3412 DMPlexGetSupport - Return the points on the out-edges for this point in the DAG 3413 3414 Not Collective 3415 3416 Input Parameters: 3417 + dm - The `DMPLEX` 3418 - p - The point, which must lie in the chart set with `DMPlexSetChart()` 3419 3420 Output Parameter: 3421 . support - An array of points which are on the out-edges for point `p` 3422 3423 Level: beginner 3424 3425 Fortran Notes: 3426 You must also call `DMPlexRestoreSupport()` after you finish using the returned array. 3427 `DMPlexRestoreSupport()` is not needed/available in C. 3428 3429 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetSupportSize()`, `DMPlexSetSupport()`, `DMPlexGetCone()`, `DMPlexSetChart()` 3430 @*/ 3431 PetscErrorCode DMPlexGetSupport(DM dm, PetscInt p, const PetscInt *support[]) 3432 { 3433 DM_Plex *mesh = (DM_Plex *)dm->data; 3434 PetscInt off; 3435 3436 PetscFunctionBegin; 3437 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3438 PetscAssertPointer(support, 3); 3439 PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off)); 3440 *support = mesh->supports ? mesh->supports + off : NULL; //NULL + 0 is UB 3441 PetscFunctionReturn(PETSC_SUCCESS); 3442 } 3443 3444 /*@ 3445 DMPlexSetSupport - Set the points on the out-edges for this point in the DAG, that is the list of points that this point covers 3446 3447 Not Collective 3448 3449 Input Parameters: 3450 + dm - The `DMPLEX` 3451 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3452 - support - An array of points which are on the out-edges for point `p` 3453 3454 Level: beginner 3455 3456 Note: 3457 This should be called after all calls to `DMPlexSetSupportSize()` and `DMSetUp()`. 3458 3459 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetCone()`, `DMPlexSetConeSize()`, `DMPlexCreate()`, `DMPlexGetSupport()`, `DMPlexSetChart()`, `DMPlexSetSupportSize()`, `DMSetUp()` 3460 @*/ 3461 PetscErrorCode DMPlexSetSupport(DM dm, PetscInt p, const PetscInt support[]) 3462 { 3463 DM_Plex *mesh = (DM_Plex *)dm->data; 3464 PetscInt pStart, pEnd; 3465 PetscInt dof, off, c; 3466 3467 PetscFunctionBegin; 3468 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3469 PetscCall(PetscSectionGetChart(mesh->supportSection, &pStart, &pEnd)); 3470 PetscCall(PetscSectionGetDof(mesh->supportSection, p, &dof)); 3471 if (dof) PetscAssertPointer(support, 3); 3472 PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off)); 3473 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); 3474 for (c = 0; c < dof; ++c) { 3475 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); 3476 mesh->supports[off + c] = support[c]; 3477 } 3478 PetscFunctionReturn(PETSC_SUCCESS); 3479 } 3480 3481 /*@ 3482 DMPlexInsertSupport - Insert a point into the out-edges for the point p in the DAG 3483 3484 Not Collective 3485 3486 Input Parameters: 3487 + dm - The `DMPLEX` 3488 . p - The point, which must lie in the chart set with `DMPlexSetChart()` 3489 . supportPos - The local index in the cone where the point should be put 3490 - supportPoint - The mesh point to insert 3491 3492 Level: beginner 3493 3494 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexGetCone()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMSetUp()` 3495 @*/ 3496 PetscErrorCode DMPlexInsertSupport(DM dm, PetscInt p, PetscInt supportPos, PetscInt supportPoint) 3497 { 3498 DM_Plex *mesh = (DM_Plex *)dm->data; 3499 PetscInt pStart, pEnd; 3500 PetscInt dof, off; 3501 3502 PetscFunctionBegin; 3503 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3504 PetscCall(PetscSectionGetChart(mesh->supportSection, &pStart, &pEnd)); 3505 PetscCall(PetscSectionGetDof(mesh->supportSection, p, &dof)); 3506 PetscCall(PetscSectionGetOffset(mesh->supportSection, p, &off)); 3507 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); 3508 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); 3509 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); 3510 mesh->supports[off + supportPos] = supportPoint; 3511 PetscFunctionReturn(PETSC_SUCCESS); 3512 } 3513 3514 /* Converts an orientation o in the current numbering to the previous scheme used in Plex */ 3515 PetscInt DMPolytopeConvertNewOrientation_Internal(DMPolytopeType ct, PetscInt o) 3516 { 3517 switch (ct) { 3518 case DM_POLYTOPE_SEGMENT: 3519 if (o == -1) return -2; 3520 break; 3521 case DM_POLYTOPE_TRIANGLE: 3522 if (o == -3) return -1; 3523 if (o == -2) return -3; 3524 if (o == -1) return -2; 3525 break; 3526 case DM_POLYTOPE_QUADRILATERAL: 3527 if (o == -4) return -2; 3528 if (o == -3) return -1; 3529 if (o == -2) return -4; 3530 if (o == -1) return -3; 3531 break; 3532 default: 3533 return o; 3534 } 3535 return o; 3536 } 3537 3538 /* Converts an orientation o in the previous scheme used in Plex to the current numbering */ 3539 PetscInt DMPolytopeConvertOldOrientation_Internal(DMPolytopeType ct, PetscInt o) 3540 { 3541 switch (ct) { 3542 case DM_POLYTOPE_SEGMENT: 3543 if ((o == -2) || (o == 1)) return -1; 3544 if (o == -1) return 0; 3545 break; 3546 case DM_POLYTOPE_TRIANGLE: 3547 if (o == -3) return -2; 3548 if (o == -2) return -1; 3549 if (o == -1) return -3; 3550 break; 3551 case DM_POLYTOPE_QUADRILATERAL: 3552 if (o == -4) return -2; 3553 if (o == -3) return -1; 3554 if (o == -2) return -4; 3555 if (o == -1) return -3; 3556 break; 3557 default: 3558 return o; 3559 } 3560 return o; 3561 } 3562 3563 /* Takes in a mesh whose orientations are in the previous scheme and converts them all to the current numbering */ 3564 PetscErrorCode DMPlexConvertOldOrientations_Internal(DM dm) 3565 { 3566 PetscInt pStart, pEnd, p; 3567 3568 PetscFunctionBegin; 3569 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 3570 for (p = pStart; p < pEnd; ++p) { 3571 const PetscInt *cone, *ornt; 3572 PetscInt coneSize, c; 3573 3574 PetscCall(DMPlexGetConeSize(dm, p, &coneSize)); 3575 PetscCall(DMPlexGetCone(dm, p, &cone)); 3576 PetscCall(DMPlexGetConeOrientation(dm, p, &ornt)); 3577 for (c = 0; c < coneSize; ++c) { 3578 DMPolytopeType ct; 3579 const PetscInt o = ornt[c]; 3580 3581 PetscCall(DMPlexGetCellType(dm, cone[c], &ct)); 3582 switch (ct) { 3583 case DM_POLYTOPE_SEGMENT: 3584 if ((o == -2) || (o == 1)) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -1)); 3585 if (o == -1) PetscCall(DMPlexInsertConeOrientation(dm, p, c, 0)); 3586 break; 3587 case DM_POLYTOPE_TRIANGLE: 3588 if (o == -3) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -2)); 3589 if (o == -2) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -1)); 3590 if (o == -1) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -3)); 3591 break; 3592 case DM_POLYTOPE_QUADRILATERAL: 3593 if (o == -4) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -2)); 3594 if (o == -3) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -1)); 3595 if (o == -2) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -4)); 3596 if (o == -1) PetscCall(DMPlexInsertConeOrientation(dm, p, c, -3)); 3597 break; 3598 default: 3599 break; 3600 } 3601 } 3602 } 3603 PetscFunctionReturn(PETSC_SUCCESS); 3604 } 3605 3606 static inline PetscErrorCode DMPlexGetTransitiveClosure_Hot_Private(DM dm, PetscInt p, PetscBool useCone, PetscInt *size, const PetscInt *arr[], const PetscInt *ornt[]) 3607 { 3608 DM_Plex *mesh = (DM_Plex *)dm->data; 3609 3610 PetscFunctionBeginHot; 3611 if (PetscDefined(USE_DEBUG) || mesh->tr) { 3612 if (useCone) { 3613 PetscCall(DMPlexGetConeSize(dm, p, size)); 3614 PetscCall(DMPlexGetOrientedCone(dm, p, arr, ornt)); 3615 } else { 3616 PetscCall(DMPlexGetSupportSize(dm, p, size)); 3617 PetscCall(DMPlexGetSupport(dm, p, arr)); 3618 } 3619 } else { 3620 if (useCone) { 3621 const PetscSection s = mesh->coneSection; 3622 const PetscInt ps = p - s->pStart; 3623 const PetscInt off = s->atlasOff[ps]; 3624 3625 *size = s->atlasDof[ps]; 3626 *arr = mesh->cones + off; 3627 *ornt = mesh->coneOrientations + off; 3628 } else { 3629 const PetscSection s = mesh->supportSection; 3630 const PetscInt ps = p - s->pStart; 3631 const PetscInt off = s->atlasOff[ps]; 3632 3633 *size = s->atlasDof[ps]; 3634 *arr = mesh->supports + off; 3635 } 3636 } 3637 PetscFunctionReturn(PETSC_SUCCESS); 3638 } 3639 3640 static inline PetscErrorCode DMPlexRestoreTransitiveClosure_Hot_Private(DM dm, PetscInt p, PetscBool useCone, PetscInt *size, const PetscInt *arr[], const PetscInt *ornt[]) 3641 { 3642 DM_Plex *mesh = (DM_Plex *)dm->data; 3643 3644 PetscFunctionBeginHot; 3645 if (PetscDefined(USE_DEBUG) || mesh->tr) { 3646 if (useCone) PetscCall(DMPlexRestoreOrientedCone(dm, p, arr, ornt)); 3647 } 3648 PetscFunctionReturn(PETSC_SUCCESS); 3649 } 3650 3651 static PetscErrorCode DMPlexGetTransitiveClosure_Depth1_Private(DM dm, PetscInt p, PetscInt ornt, PetscBool useCone, PetscInt *numPoints, PetscInt *points[]) 3652 { 3653 DMPolytopeType ct = DM_POLYTOPE_UNKNOWN; 3654 PetscInt *closure; 3655 const PetscInt *tmp = NULL, *tmpO = NULL; 3656 PetscInt off = 0, tmpSize, t; 3657 3658 PetscFunctionBeginHot; 3659 if (ornt) { 3660 PetscCall(DMPlexGetCellType(dm, p, &ct)); 3661 if (ct == DM_POLYTOPE_FV_GHOST || ct == DM_POLYTOPE_INTERIOR_GHOST || ct == DM_POLYTOPE_UNKNOWN) ct = DM_POLYTOPE_UNKNOWN; 3662 } 3663 if (*points) { 3664 closure = *points; 3665 } else { 3666 PetscInt maxConeSize, maxSupportSize; 3667 PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize)); 3668 PetscCall(DMGetWorkArray(dm, 2 * (PetscMax(maxConeSize, maxSupportSize) + 1), MPIU_INT, &closure)); 3669 } 3670 PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, p, useCone, &tmpSize, &tmp, &tmpO)); 3671 if (ct == DM_POLYTOPE_UNKNOWN) { 3672 closure[off++] = p; 3673 closure[off++] = 0; 3674 for (t = 0; t < tmpSize; ++t) { 3675 closure[off++] = tmp[t]; 3676 closure[off++] = tmpO ? tmpO[t] : 0; 3677 } 3678 } else { 3679 const PetscInt *arr = DMPolytopeTypeGetArrangment(ct, ornt); 3680 3681 /* We assume that cells with a valid type have faces with a valid type */ 3682 closure[off++] = p; 3683 closure[off++] = ornt; 3684 for (t = 0; t < tmpSize; ++t) { 3685 DMPolytopeType ft; 3686 3687 PetscCall(DMPlexGetCellType(dm, tmp[t], &ft)); 3688 closure[off++] = tmp[arr[t]]; 3689 closure[off++] = tmpO ? DMPolytopeTypeComposeOrientation(ft, ornt, tmpO[t]) : 0; 3690 } 3691 } 3692 PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, p, useCone, &tmpSize, &tmp, &tmpO)); 3693 if (numPoints) *numPoints = tmpSize + 1; 3694 if (points) *points = closure; 3695 PetscFunctionReturn(PETSC_SUCCESS); 3696 } 3697 3698 /* We need a special tensor version because we want to allow duplicate points in the endcaps for hybrid cells */ 3699 static PetscErrorCode DMPlexTransitiveClosure_Tensor_Internal(DM dm, PetscInt point, DMPolytopeType ct, PetscInt o, PetscBool useCone, PetscInt *numPoints, PetscInt **points) 3700 { 3701 const PetscInt *arr = DMPolytopeTypeGetArrangment(ct, o); 3702 const PetscInt *cone, *ornt; 3703 PetscInt *pts, *closure = NULL; 3704 DMPolytopeType ft; 3705 PetscInt maxConeSize, maxSupportSize, coneSeries, supportSeries, maxSize; 3706 PetscInt dim, coneSize, c, d, clSize, cl; 3707 3708 PetscFunctionBeginHot; 3709 PetscCall(DMGetDimension(dm, &dim)); 3710 PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, point, PETSC_TRUE, &coneSize, &cone, &ornt)); 3711 PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize)); 3712 coneSeries = (maxConeSize > 1) ? ((PetscPowInt(maxConeSize, dim + 1) - 1) / (maxConeSize - 1)) : dim + 1; 3713 supportSeries = (maxSupportSize > 1) ? ((PetscPowInt(maxSupportSize, dim + 1) - 1) / (maxSupportSize - 1)) : dim + 1; 3714 maxSize = PetscMax(coneSeries, supportSeries); 3715 if (*points) { 3716 pts = *points; 3717 } else PetscCall(DMGetWorkArray(dm, 2 * maxSize, MPIU_INT, &pts)); 3718 c = 0; 3719 pts[c++] = point; 3720 pts[c++] = o; 3721 PetscCall(DMPlexGetCellType(dm, cone[arr[0 * 2 + 0]], &ft)); 3722 PetscCall(DMPlexGetTransitiveClosure_Internal(dm, cone[arr[0 * 2 + 0]], DMPolytopeTypeComposeOrientation(ft, arr[0 * 2 + 1], ornt[0]), useCone, &clSize, &closure)); 3723 for (cl = 0; cl < clSize * 2; cl += 2) { 3724 pts[c++] = closure[cl]; 3725 pts[c++] = closure[cl + 1]; 3726 } 3727 PetscCall(DMPlexGetTransitiveClosure_Internal(dm, cone[arr[1 * 2 + 0]], DMPolytopeTypeComposeOrientation(ft, arr[1 * 2 + 1], ornt[1]), useCone, &clSize, &closure)); 3728 for (cl = 0; cl < clSize * 2; cl += 2) { 3729 pts[c++] = closure[cl]; 3730 pts[c++] = closure[cl + 1]; 3731 } 3732 PetscCall(DMPlexRestoreTransitiveClosure(dm, cone[0], useCone, &clSize, &closure)); 3733 for (d = 2; d < coneSize; ++d) { 3734 PetscCall(DMPlexGetCellType(dm, cone[arr[d * 2 + 0]], &ft)); 3735 pts[c++] = cone[arr[d * 2 + 0]]; 3736 pts[c++] = DMPolytopeTypeComposeOrientation(ft, arr[d * 2 + 1], ornt[d]); 3737 } 3738 PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, point, PETSC_TRUE, &coneSize, &cone, &ornt)); 3739 if (dim >= 3) { 3740 for (d = 2; d < coneSize; ++d) { 3741 const PetscInt fpoint = cone[arr[d * 2 + 0]]; 3742 const PetscInt *fcone, *fornt; 3743 PetscInt fconeSize, fc, i; 3744 3745 PetscCall(DMPlexGetCellType(dm, fpoint, &ft)); 3746 const PetscInt *farr = DMPolytopeTypeGetArrangment(ft, DMPolytopeTypeComposeOrientation(ft, arr[d * 2 + 1], ornt[d])); 3747 PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, fpoint, PETSC_TRUE, &fconeSize, &fcone, &fornt)); 3748 for (fc = 0; fc < fconeSize; ++fc) { 3749 const PetscInt cp = fcone[farr[fc * 2 + 0]]; 3750 const PetscInt co = farr[fc * 2 + 1]; 3751 3752 for (i = 0; i < c; i += 2) 3753 if (pts[i] == cp) break; 3754 if (i == c) { 3755 PetscCall(DMPlexGetCellType(dm, cp, &ft)); 3756 pts[c++] = cp; 3757 pts[c++] = DMPolytopeTypeComposeOrientation(ft, co, fornt[farr[fc * 2 + 0]]); 3758 } 3759 } 3760 PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, fpoint, PETSC_TRUE, &fconeSize, &fcone, &fornt)); 3761 } 3762 } 3763 *numPoints = c / 2; 3764 *points = pts; 3765 PetscFunctionReturn(PETSC_SUCCESS); 3766 } 3767 3768 PetscErrorCode DMPlexGetTransitiveClosure_Internal(DM dm, PetscInt p, PetscInt ornt, PetscBool useCone, PetscInt *numPoints, PetscInt *points[]) 3769 { 3770 DMPolytopeType ct; 3771 PetscInt *closure, *fifo; 3772 PetscInt closureSize = 0, fifoStart = 0, fifoSize = 0; 3773 PetscInt maxConeSize, maxSupportSize, coneSeries, supportSeries; 3774 PetscInt depth, maxSize; 3775 3776 PetscFunctionBeginHot; 3777 PetscCall(DMPlexGetDepth(dm, &depth)); 3778 if (depth == 1) { 3779 PetscCall(DMPlexGetTransitiveClosure_Depth1_Private(dm, p, ornt, useCone, numPoints, points)); 3780 PetscFunctionReturn(PETSC_SUCCESS); 3781 } 3782 PetscCall(DMPlexGetCellType(dm, p, &ct)); 3783 if (ct == DM_POLYTOPE_FV_GHOST || ct == DM_POLYTOPE_INTERIOR_GHOST || ct == DM_POLYTOPE_UNKNOWN) ct = DM_POLYTOPE_UNKNOWN; 3784 if (ct == DM_POLYTOPE_SEG_PRISM_TENSOR || ct == DM_POLYTOPE_TRI_PRISM_TENSOR || ct == DM_POLYTOPE_QUAD_PRISM_TENSOR) { 3785 PetscCall(DMPlexTransitiveClosure_Tensor_Internal(dm, p, ct, ornt, useCone, numPoints, points)); 3786 PetscFunctionReturn(PETSC_SUCCESS); 3787 } 3788 PetscCall(DMPlexGetMaxSizes(dm, &maxConeSize, &maxSupportSize)); 3789 coneSeries = (maxConeSize > 1) ? ((PetscPowInt(maxConeSize, depth + 1) - 1) / (maxConeSize - 1)) : depth + 1; 3790 supportSeries = (maxSupportSize > 1) ? ((PetscPowInt(maxSupportSize, depth + 1) - 1) / (maxSupportSize - 1)) : depth + 1; 3791 maxSize = PetscMax(coneSeries, supportSeries); 3792 PetscCall(DMGetWorkArray(dm, 3 * maxSize, MPIU_INT, &fifo)); 3793 if (*points) { 3794 closure = *points; 3795 } else PetscCall(DMGetWorkArray(dm, 2 * maxSize, MPIU_INT, &closure)); 3796 closure[closureSize++] = p; 3797 closure[closureSize++] = ornt; 3798 fifo[fifoSize++] = p; 3799 fifo[fifoSize++] = ornt; 3800 fifo[fifoSize++] = ct; 3801 /* Should kick out early when depth is reached, rather than checking all vertices for empty cones */ 3802 while (fifoSize - fifoStart) { 3803 const PetscInt q = fifo[fifoStart++]; 3804 const PetscInt o = fifo[fifoStart++]; 3805 const DMPolytopeType qt = (DMPolytopeType)fifo[fifoStart++]; 3806 const PetscInt *qarr = DMPolytopeTypeGetArrangment(qt, o); 3807 const PetscInt *tmp, *tmpO = NULL; 3808 PetscInt tmpSize, t; 3809 3810 if (PetscDefined(USE_DEBUG)) { 3811 PetscInt nO = DMPolytopeTypeGetNumArrangments(qt) / 2; 3812 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); 3813 } 3814 PetscCall(DMPlexGetTransitiveClosure_Hot_Private(dm, q, useCone, &tmpSize, &tmp, &tmpO)); 3815 for (t = 0; t < tmpSize; ++t) { 3816 const PetscInt ip = useCone && qarr ? qarr[t * 2] : t; 3817 const PetscInt io = useCone && qarr ? qarr[t * 2 + 1] : 0; 3818 const PetscInt cp = tmp[ip]; 3819 PetscCall(DMPlexGetCellType(dm, cp, &ct)); 3820 const PetscInt co = tmpO ? DMPolytopeTypeComposeOrientation(ct, io, tmpO[ip]) : 0; 3821 PetscInt c; 3822 3823 /* Check for duplicate */ 3824 for (c = 0; c < closureSize; c += 2) { 3825 if (closure[c] == cp) break; 3826 } 3827 if (c == closureSize) { 3828 closure[closureSize++] = cp; 3829 closure[closureSize++] = co; 3830 fifo[fifoSize++] = cp; 3831 fifo[fifoSize++] = co; 3832 fifo[fifoSize++] = ct; 3833 } 3834 } 3835 PetscCall(DMPlexRestoreTransitiveClosure_Hot_Private(dm, q, useCone, &tmpSize, &tmp, &tmpO)); 3836 } 3837 PetscCall(DMRestoreWorkArray(dm, 3 * maxSize, MPIU_INT, &fifo)); 3838 if (numPoints) *numPoints = closureSize / 2; 3839 if (points) *points = closure; 3840 PetscFunctionReturn(PETSC_SUCCESS); 3841 } 3842 3843 /*@C 3844 DMPlexGetTransitiveClosure - Return the points on the transitive closure of the in-edges or out-edges for this point in the DAG 3845 3846 Not Collective 3847 3848 Input Parameters: 3849 + dm - The `DMPLEX` 3850 . p - The mesh point 3851 - useCone - `PETSC_TRUE` for the closure, otherwise return the star 3852 3853 Input/Output Parameter: 3854 . points - The points and point orientations, interleaved as pairs [p0, o0, p1, o1, ...]; 3855 if `NULL` on input, internal storage will be returned, otherwise the provided array is used 3856 3857 Output Parameter: 3858 . numPoints - The number of points in the closure, so points[] is of size 2*`numPoints` 3859 3860 Level: beginner 3861 3862 Note: 3863 If using internal storage (points is `NULL` on input), each call overwrites the last output. 3864 3865 Fortran Notes: 3866 The `numPoints` argument is not present in the Fortran binding since it is internal to the array. 3867 3868 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreTransitiveClosure()`, `DMPlexCreate()`, `DMPlexSetCone()`, `DMPlexSetChart()`, `DMPlexGetCone()` 3869 @*/ 3870 PetscErrorCode DMPlexGetTransitiveClosure(DM dm, PetscInt p, PetscBool useCone, PetscInt *numPoints, PetscInt *points[]) 3871 { 3872 PetscFunctionBeginHot; 3873 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3874 if (numPoints) PetscAssertPointer(numPoints, 4); 3875 if (points) PetscAssertPointer(points, 5); 3876 PetscCall(DMPlexGetTransitiveClosure_Internal(dm, p, 0, useCone, numPoints, points)); 3877 PetscFunctionReturn(PETSC_SUCCESS); 3878 } 3879 3880 /*@C 3881 DMPlexRestoreTransitiveClosure - Restore the array of points on the transitive closure of the in-edges or out-edges for this point in the DAG 3882 3883 Not Collective 3884 3885 Input Parameters: 3886 + dm - The `DMPLEX` 3887 . p - The mesh point 3888 . useCone - `PETSC_TRUE` for the closure, otherwise return the star 3889 . numPoints - The number of points in the closure, so points[] is of size 2*`numPoints` 3890 - points - The points and point orientations, interleaved as pairs [p0, o0, p1, o1, ...] 3891 3892 Level: beginner 3893 3894 Note: 3895 If not using internal storage (points is not `NULL` on input), this call is unnecessary 3896 3897 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetTransitiveClosure()`, `DMPlexCreate()`, `DMPlexSetCone()`, `DMPlexSetChart()`, `DMPlexGetCone()` 3898 @*/ 3899 PetscErrorCode DMPlexRestoreTransitiveClosure(DM dm, PetscInt p, PetscBool useCone, PetscInt *numPoints, PetscInt *points[]) 3900 { 3901 PetscFunctionBeginHot; 3902 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3903 if (numPoints) *numPoints = 0; 3904 PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, points)); 3905 PetscFunctionReturn(PETSC_SUCCESS); 3906 } 3907 3908 /*@ 3909 DMPlexGetMaxSizes - Return the maximum number of in-edges (cone) and out-edges (support) for any point in the DAG 3910 3911 Not Collective 3912 3913 Input Parameter: 3914 . dm - The `DMPLEX` 3915 3916 Output Parameters: 3917 + maxConeSize - The maximum number of in-edges 3918 - maxSupportSize - The maximum number of out-edges 3919 3920 Level: beginner 3921 3922 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetConeSize()`, `DMPlexSetChart()` 3923 @*/ 3924 PetscErrorCode DMPlexGetMaxSizes(DM dm, PetscInt *maxConeSize, PetscInt *maxSupportSize) 3925 { 3926 DM_Plex *mesh = (DM_Plex *)dm->data; 3927 3928 PetscFunctionBegin; 3929 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3930 if (maxConeSize) PetscCall(PetscSectionGetMaxDof(mesh->coneSection, maxConeSize)); 3931 if (maxSupportSize) PetscCall(PetscSectionGetMaxDof(mesh->supportSection, maxSupportSize)); 3932 PetscFunctionReturn(PETSC_SUCCESS); 3933 } 3934 3935 PetscErrorCode DMSetUp_Plex(DM dm) 3936 { 3937 DM_Plex *mesh = (DM_Plex *)dm->data; 3938 PetscInt size, maxSupportSize; 3939 3940 PetscFunctionBegin; 3941 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 3942 PetscCall(PetscSectionSetUp(mesh->coneSection)); 3943 PetscCall(PetscSectionGetStorageSize(mesh->coneSection, &size)); 3944 PetscCall(PetscMalloc1(size, &mesh->cones)); 3945 PetscCall(PetscCalloc1(size, &mesh->coneOrientations)); 3946 PetscCall(PetscSectionGetMaxDof(mesh->supportSection, &maxSupportSize)); 3947 if (maxSupportSize) { 3948 PetscCall(PetscSectionSetUp(mesh->supportSection)); 3949 PetscCall(PetscSectionGetStorageSize(mesh->supportSection, &size)); 3950 PetscCall(PetscMalloc1(size, &mesh->supports)); 3951 } 3952 PetscFunctionReturn(PETSC_SUCCESS); 3953 } 3954 3955 PetscErrorCode DMCreateSubDM_Plex(DM dm, PetscInt numFields, const PetscInt fields[], IS *is, DM *subdm) 3956 { 3957 PetscFunctionBegin; 3958 if (subdm) PetscCall(DMClone(dm, subdm)); 3959 PetscCall(DMCreateSectionSubDM(dm, numFields, fields, is, subdm)); 3960 if (subdm) (*subdm)->useNatural = dm->useNatural; 3961 if (dm->useNatural && dm->sfMigration) { 3962 PetscSF sfNatural; 3963 3964 (*subdm)->sfMigration = dm->sfMigration; 3965 PetscCall(PetscObjectReference((PetscObject)dm->sfMigration)); 3966 PetscCall(DMPlexCreateGlobalToNaturalSF(*subdm, NULL, (*subdm)->sfMigration, &sfNatural)); 3967 (*subdm)->sfNatural = sfNatural; 3968 } 3969 PetscFunctionReturn(PETSC_SUCCESS); 3970 } 3971 3972 PetscErrorCode DMCreateSuperDM_Plex(DM dms[], PetscInt len, IS **is, DM *superdm) 3973 { 3974 PetscInt i = 0; 3975 3976 PetscFunctionBegin; 3977 PetscCall(DMClone(dms[0], superdm)); 3978 PetscCall(DMCreateSectionSuperDM(dms, len, is, superdm)); 3979 (*superdm)->useNatural = PETSC_FALSE; 3980 for (i = 0; i < len; i++) { 3981 if (dms[i]->useNatural && dms[i]->sfMigration) { 3982 PetscSF sfNatural; 3983 3984 (*superdm)->sfMigration = dms[i]->sfMigration; 3985 PetscCall(PetscObjectReference((PetscObject)dms[i]->sfMigration)); 3986 (*superdm)->useNatural = PETSC_TRUE; 3987 PetscCall(DMPlexCreateGlobalToNaturalSF(*superdm, NULL, (*superdm)->sfMigration, &sfNatural)); 3988 (*superdm)->sfNatural = sfNatural; 3989 break; 3990 } 3991 } 3992 PetscFunctionReturn(PETSC_SUCCESS); 3993 } 3994 3995 /*@ 3996 DMPlexSymmetrize - Create support (out-edge) information from cone (in-edge) information 3997 3998 Not Collective 3999 4000 Input Parameter: 4001 . dm - The `DMPLEX` 4002 4003 Level: beginner 4004 4005 Note: 4006 This should be called after all calls to `DMPlexSetCone()` 4007 4008 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSetChart()`, `DMPlexSetConeSize()`, `DMPlexSetCone()` 4009 @*/ 4010 PetscErrorCode DMPlexSymmetrize(DM dm) 4011 { 4012 DM_Plex *mesh = (DM_Plex *)dm->data; 4013 PetscInt *offsets; 4014 PetscInt supportSize; 4015 PetscInt pStart, pEnd, p; 4016 4017 PetscFunctionBegin; 4018 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4019 PetscCheck(!mesh->supports, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONGSTATE, "Supports were already setup in this DMPlex"); 4020 PetscCall(PetscLogEventBegin(DMPLEX_Symmetrize, dm, 0, 0, 0)); 4021 /* Calculate support sizes */ 4022 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 4023 for (p = pStart; p < pEnd; ++p) { 4024 PetscInt dof, off, c; 4025 4026 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 4027 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 4028 for (c = off; c < off + dof; ++c) PetscCall(PetscSectionAddDof(mesh->supportSection, mesh->cones[c], 1)); 4029 } 4030 PetscCall(PetscSectionSetUp(mesh->supportSection)); 4031 /* Calculate supports */ 4032 PetscCall(PetscSectionGetStorageSize(mesh->supportSection, &supportSize)); 4033 PetscCall(PetscMalloc1(supportSize, &mesh->supports)); 4034 PetscCall(PetscCalloc1(pEnd - pStart, &offsets)); 4035 for (p = pStart; p < pEnd; ++p) { 4036 PetscInt dof, off, c; 4037 4038 PetscCall(PetscSectionGetDof(mesh->coneSection, p, &dof)); 4039 PetscCall(PetscSectionGetOffset(mesh->coneSection, p, &off)); 4040 for (c = off; c < off + dof; ++c) { 4041 const PetscInt q = mesh->cones[c]; 4042 PetscInt offS; 4043 4044 PetscCall(PetscSectionGetOffset(mesh->supportSection, q, &offS)); 4045 4046 mesh->supports[offS + offsets[q]] = p; 4047 ++offsets[q]; 4048 } 4049 } 4050 PetscCall(PetscFree(offsets)); 4051 PetscCall(PetscLogEventEnd(DMPLEX_Symmetrize, dm, 0, 0, 0)); 4052 PetscFunctionReturn(PETSC_SUCCESS); 4053 } 4054 4055 static PetscErrorCode DMPlexCreateDepthStratum(DM dm, DMLabel label, PetscInt depth, PetscInt pStart, PetscInt pEnd) 4056 { 4057 IS stratumIS; 4058 4059 PetscFunctionBegin; 4060 if (pStart >= pEnd) PetscFunctionReturn(PETSC_SUCCESS); 4061 if (PetscDefined(USE_DEBUG)) { 4062 PetscInt qStart, qEnd, numLevels, level; 4063 PetscBool overlap = PETSC_FALSE; 4064 PetscCall(DMLabelGetNumValues(label, &numLevels)); 4065 for (level = 0; level < numLevels; level++) { 4066 PetscCall(DMLabelGetStratumBounds(label, level, &qStart, &qEnd)); 4067 if ((pStart >= qStart && pStart < qEnd) || (pEnd > qStart && pEnd <= qEnd)) { 4068 overlap = PETSC_TRUE; 4069 break; 4070 } 4071 } 4072 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); 4073 } 4074 PetscCall(ISCreateStride(PETSC_COMM_SELF, pEnd - pStart, pStart, 1, &stratumIS)); 4075 PetscCall(DMLabelSetStratumIS(label, depth, stratumIS)); 4076 PetscCall(ISDestroy(&stratumIS)); 4077 PetscFunctionReturn(PETSC_SUCCESS); 4078 } 4079 4080 /*@ 4081 DMPlexStratify - The DAG for most topologies is a graded poset (https://en.wikipedia.org/wiki/Graded_poset), and 4082 can be illustrated by a Hasse Diagram (https://en.wikipedia.org/wiki/Hasse_diagram). The strata group all points of the 4083 same grade, and this function calculates the strata. This grade can be seen as the height (or depth) of the point in 4084 the DAG. 4085 4086 Collective 4087 4088 Input Parameter: 4089 . dm - The `DMPLEX` 4090 4091 Level: beginner 4092 4093 Notes: 4094 Concretely, `DMPlexStratify()` creates a new label named "depth" containing the depth in the DAG of each point. For cell-vertex 4095 meshes, vertices are depth 0 and cells are depth 1. For fully interpolated meshes, depth 0 for vertices, 1 for edges, and so on 4096 until cells have depth equal to the dimension of the mesh. The depth label can be accessed through `DMPlexGetDepthLabel()` or `DMPlexGetDepthStratum()`, or 4097 manually via `DMGetLabel()`. The height is defined implicitly by height = maxDimension - depth, and can be accessed 4098 via `DMPlexGetHeightStratum()`. For example, cells have height 0 and faces have height 1. 4099 4100 The depth of a point is calculated by executing a breadth-first search (BFS) on the DAG. This could produce surprising results 4101 if run on a partially interpolated mesh, meaning one that had some edges and faces, but not others. For example, suppose that 4102 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 4103 to interpolate only that one (e0), so that 4104 .vb 4105 cone(c0) = {e0, v2} 4106 cone(e0) = {v0, v1} 4107 .ve 4108 If `DMPlexStratify()` is run on this mesh, it will give depths 4109 .vb 4110 depth 0 = {v0, v1, v2} 4111 depth 1 = {e0, c0} 4112 .ve 4113 where the triangle has been given depth 1, instead of 2, because it is reachable from vertex v2. 4114 4115 `DMPlexStratify()` should be called after all calls to `DMPlexSymmetrize()` 4116 4117 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSymmetrize()`, `DMPlexComputeCellTypes()` 4118 @*/ 4119 PetscErrorCode DMPlexStratify(DM dm) 4120 { 4121 DM_Plex *mesh = (DM_Plex *)dm->data; 4122 DMLabel label; 4123 PetscInt pStart, pEnd, p; 4124 PetscInt numRoots = 0, numLeaves = 0; 4125 4126 PetscFunctionBegin; 4127 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4128 PetscCall(PetscLogEventBegin(DMPLEX_Stratify, dm, 0, 0, 0)); 4129 4130 /* Create depth label */ 4131 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 4132 PetscCall(DMCreateLabel(dm, "depth")); 4133 PetscCall(DMPlexGetDepthLabel(dm, &label)); 4134 4135 { 4136 /* Initialize roots and count leaves */ 4137 PetscInt sMin = PETSC_MAX_INT; 4138 PetscInt sMax = PETSC_MIN_INT; 4139 PetscInt coneSize, supportSize; 4140 4141 for (p = pStart; p < pEnd; ++p) { 4142 PetscCall(DMPlexGetConeSize(dm, p, &coneSize)); 4143 PetscCall(DMPlexGetSupportSize(dm, p, &supportSize)); 4144 if (!coneSize && supportSize) { 4145 sMin = PetscMin(p, sMin); 4146 sMax = PetscMax(p, sMax); 4147 ++numRoots; 4148 } else if (!supportSize && coneSize) { 4149 ++numLeaves; 4150 } else if (!supportSize && !coneSize) { 4151 /* Isolated points */ 4152 sMin = PetscMin(p, sMin); 4153 sMax = PetscMax(p, sMax); 4154 } 4155 } 4156 PetscCall(DMPlexCreateDepthStratum(dm, label, 0, sMin, sMax + 1)); 4157 } 4158 4159 if (numRoots + numLeaves == (pEnd - pStart)) { 4160 PetscInt sMin = PETSC_MAX_INT; 4161 PetscInt sMax = PETSC_MIN_INT; 4162 PetscInt coneSize, supportSize; 4163 4164 for (p = pStart; p < pEnd; ++p) { 4165 PetscCall(DMPlexGetConeSize(dm, p, &coneSize)); 4166 PetscCall(DMPlexGetSupportSize(dm, p, &supportSize)); 4167 if (!supportSize && coneSize) { 4168 sMin = PetscMin(p, sMin); 4169 sMax = PetscMax(p, sMax); 4170 } 4171 } 4172 PetscCall(DMPlexCreateDepthStratum(dm, label, 1, sMin, sMax + 1)); 4173 } else { 4174 PetscInt level = 0; 4175 PetscInt qStart, qEnd, q; 4176 4177 PetscCall(DMLabelGetStratumBounds(label, level, &qStart, &qEnd)); 4178 while (qEnd > qStart) { 4179 PetscInt sMin = PETSC_MAX_INT; 4180 PetscInt sMax = PETSC_MIN_INT; 4181 4182 for (q = qStart; q < qEnd; ++q) { 4183 const PetscInt *support; 4184 PetscInt supportSize, s; 4185 4186 PetscCall(DMPlexGetSupportSize(dm, q, &supportSize)); 4187 PetscCall(DMPlexGetSupport(dm, q, &support)); 4188 for (s = 0; s < supportSize; ++s) { 4189 sMin = PetscMin(support[s], sMin); 4190 sMax = PetscMax(support[s], sMax); 4191 } 4192 } 4193 PetscCall(DMLabelGetNumValues(label, &level)); 4194 PetscCall(DMPlexCreateDepthStratum(dm, label, level, sMin, sMax + 1)); 4195 PetscCall(DMLabelGetStratumBounds(label, level, &qStart, &qEnd)); 4196 } 4197 } 4198 { /* just in case there is an empty process */ 4199 PetscInt numValues, maxValues = 0, v; 4200 4201 PetscCall(DMLabelGetNumValues(label, &numValues)); 4202 PetscCall(MPIU_Allreduce(&numValues, &maxValues, 1, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm))); 4203 for (v = numValues; v < maxValues; v++) PetscCall(DMLabelAddStratum(label, v)); 4204 } 4205 PetscCall(PetscObjectStateGet((PetscObject)label, &mesh->depthState)); 4206 PetscCall(PetscLogEventEnd(DMPLEX_Stratify, dm, 0, 0, 0)); 4207 PetscFunctionReturn(PETSC_SUCCESS); 4208 } 4209 4210 PetscErrorCode DMPlexComputeCellType_Internal(DM dm, PetscInt p, PetscInt pdepth, DMPolytopeType *pt) 4211 { 4212 DMPolytopeType ct = DM_POLYTOPE_UNKNOWN; 4213 PetscInt dim, depth, pheight, coneSize; 4214 4215 PetscFunctionBeginHot; 4216 PetscCall(DMGetDimension(dm, &dim)); 4217 PetscCall(DMPlexGetDepth(dm, &depth)); 4218 PetscCall(DMPlexGetConeSize(dm, p, &coneSize)); 4219 pheight = depth - pdepth; 4220 if (depth <= 1) { 4221 switch (pdepth) { 4222 case 0: 4223 ct = DM_POLYTOPE_POINT; 4224 break; 4225 case 1: 4226 switch (coneSize) { 4227 case 2: 4228 ct = DM_POLYTOPE_SEGMENT; 4229 break; 4230 case 3: 4231 ct = DM_POLYTOPE_TRIANGLE; 4232 break; 4233 case 4: 4234 switch (dim) { 4235 case 2: 4236 ct = DM_POLYTOPE_QUADRILATERAL; 4237 break; 4238 case 3: 4239 ct = DM_POLYTOPE_TETRAHEDRON; 4240 break; 4241 default: 4242 break; 4243 } 4244 break; 4245 case 5: 4246 ct = DM_POLYTOPE_PYRAMID; 4247 break; 4248 case 6: 4249 ct = DM_POLYTOPE_TRI_PRISM_TENSOR; 4250 break; 4251 case 8: 4252 ct = DM_POLYTOPE_HEXAHEDRON; 4253 break; 4254 default: 4255 break; 4256 } 4257 } 4258 } else { 4259 if (pdepth == 0) { 4260 ct = DM_POLYTOPE_POINT; 4261 } else if (pheight == 0) { 4262 switch (dim) { 4263 case 1: 4264 switch (coneSize) { 4265 case 2: 4266 ct = DM_POLYTOPE_SEGMENT; 4267 break; 4268 default: 4269 break; 4270 } 4271 break; 4272 case 2: 4273 switch (coneSize) { 4274 case 3: 4275 ct = DM_POLYTOPE_TRIANGLE; 4276 break; 4277 case 4: 4278 ct = DM_POLYTOPE_QUADRILATERAL; 4279 break; 4280 default: 4281 break; 4282 } 4283 break; 4284 case 3: 4285 switch (coneSize) { 4286 case 4: 4287 ct = DM_POLYTOPE_TETRAHEDRON; 4288 break; 4289 case 5: { 4290 const PetscInt *cone; 4291 PetscInt faceConeSize; 4292 4293 PetscCall(DMPlexGetCone(dm, p, &cone)); 4294 PetscCall(DMPlexGetConeSize(dm, cone[0], &faceConeSize)); 4295 switch (faceConeSize) { 4296 case 3: 4297 ct = DM_POLYTOPE_TRI_PRISM_TENSOR; 4298 break; 4299 case 4: 4300 ct = DM_POLYTOPE_PYRAMID; 4301 break; 4302 } 4303 } break; 4304 case 6: 4305 ct = DM_POLYTOPE_HEXAHEDRON; 4306 break; 4307 default: 4308 break; 4309 } 4310 break; 4311 default: 4312 break; 4313 } 4314 } else if (pheight > 0) { 4315 switch (coneSize) { 4316 case 2: 4317 ct = DM_POLYTOPE_SEGMENT; 4318 break; 4319 case 3: 4320 ct = DM_POLYTOPE_TRIANGLE; 4321 break; 4322 case 4: 4323 ct = DM_POLYTOPE_QUADRILATERAL; 4324 break; 4325 default: 4326 break; 4327 } 4328 } 4329 } 4330 *pt = ct; 4331 PetscFunctionReturn(PETSC_SUCCESS); 4332 } 4333 4334 /*@ 4335 DMPlexComputeCellTypes - Infer the polytope type of every cell using its dimension and cone size. 4336 4337 Collective 4338 4339 Input Parameter: 4340 . dm - The `DMPLEX` 4341 4342 Level: developer 4343 4344 Note: 4345 This function is normally called automatically when a cell type is requested. It creates an 4346 internal `DMLabel` named "celltype" which can be directly accessed using `DMGetLabel()`. A user may disable 4347 automatic creation by creating the label manually, using `DMCreateLabel`(dm, "celltype"). 4348 4349 `DMPlexComputeCellTypes()` should be called after all calls to `DMPlexSymmetrize()` and `DMPlexStratify()` 4350 4351 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCreate()`, `DMPlexSymmetrize()`, `DMPlexStratify()`, `DMGetLabel()`, `DMCreateLabel()` 4352 @*/ 4353 PetscErrorCode DMPlexComputeCellTypes(DM dm) 4354 { 4355 DM_Plex *mesh; 4356 DMLabel ctLabel; 4357 PetscInt pStart, pEnd, p; 4358 4359 PetscFunctionBegin; 4360 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4361 mesh = (DM_Plex *)dm->data; 4362 PetscCall(DMCreateLabel(dm, "celltype")); 4363 PetscCall(DMPlexGetCellTypeLabel(dm, &ctLabel)); 4364 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 4365 PetscCall(PetscFree(mesh->cellTypes)); 4366 PetscCall(PetscMalloc1(pEnd - pStart, &mesh->cellTypes)); 4367 for (p = pStart; p < pEnd; ++p) { 4368 DMPolytopeType ct = DM_POLYTOPE_UNKNOWN; 4369 PetscInt pdepth; 4370 4371 PetscCall(DMPlexGetPointDepth(dm, p, &pdepth)); 4372 PetscCall(DMPlexComputeCellType_Internal(dm, p, pdepth, &ct)); 4373 PetscCheck(ct != DM_POLYTOPE_UNKNOWN, PETSC_COMM_SELF, PETSC_ERR_SUP, "Point %" PetscInt_FMT " is screwed up", p); 4374 PetscCall(DMLabelSetValue(ctLabel, p, ct)); 4375 mesh->cellTypes[p - pStart].value_as_uint8 = ct; 4376 } 4377 PetscCall(PetscObjectStateGet((PetscObject)ctLabel, &mesh->celltypeState)); 4378 PetscCall(PetscObjectViewFromOptions((PetscObject)ctLabel, NULL, "-dm_plex_celltypes_view")); 4379 PetscFunctionReturn(PETSC_SUCCESS); 4380 } 4381 4382 /*@C 4383 DMPlexGetJoin - Get an array for the join of the set of points 4384 4385 Not Collective 4386 4387 Input Parameters: 4388 + dm - The `DMPLEX` object 4389 . numPoints - The number of input points for the join 4390 - points - The input points 4391 4392 Output Parameters: 4393 + numCoveredPoints - The number of points in the join 4394 - coveredPoints - The points in the join 4395 4396 Level: intermediate 4397 4398 Note: 4399 Currently, this is restricted to a single level join 4400 4401 Fortran Notes: 4402 The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array. 4403 4404 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreJoin()`, `DMPlexGetMeet()` 4405 @*/ 4406 PetscErrorCode DMPlexGetJoin(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints) 4407 { 4408 DM_Plex *mesh = (DM_Plex *)dm->data; 4409 PetscInt *join[2]; 4410 PetscInt joinSize, i = 0; 4411 PetscInt dof, off, p, c, m; 4412 PetscInt maxSupportSize; 4413 4414 PetscFunctionBegin; 4415 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4416 PetscAssertPointer(points, 3); 4417 PetscAssertPointer(numCoveredPoints, 4); 4418 PetscAssertPointer(coveredPoints, 5); 4419 PetscCall(PetscSectionGetMaxDof(mesh->supportSection, &maxSupportSize)); 4420 PetscCall(DMGetWorkArray(dm, maxSupportSize, MPIU_INT, &join[0])); 4421 PetscCall(DMGetWorkArray(dm, maxSupportSize, MPIU_INT, &join[1])); 4422 /* Copy in support of first point */ 4423 PetscCall(PetscSectionGetDof(mesh->supportSection, points[0], &dof)); 4424 PetscCall(PetscSectionGetOffset(mesh->supportSection, points[0], &off)); 4425 for (joinSize = 0; joinSize < dof; ++joinSize) join[i][joinSize] = mesh->supports[off + joinSize]; 4426 /* Check each successive support */ 4427 for (p = 1; p < numPoints; ++p) { 4428 PetscInt newJoinSize = 0; 4429 4430 PetscCall(PetscSectionGetDof(mesh->supportSection, points[p], &dof)); 4431 PetscCall(PetscSectionGetOffset(mesh->supportSection, points[p], &off)); 4432 for (c = 0; c < dof; ++c) { 4433 const PetscInt point = mesh->supports[off + c]; 4434 4435 for (m = 0; m < joinSize; ++m) { 4436 if (point == join[i][m]) { 4437 join[1 - i][newJoinSize++] = point; 4438 break; 4439 } 4440 } 4441 } 4442 joinSize = newJoinSize; 4443 i = 1 - i; 4444 } 4445 *numCoveredPoints = joinSize; 4446 *coveredPoints = join[i]; 4447 PetscCall(DMRestoreWorkArray(dm, maxSupportSize, MPIU_INT, &join[1 - i])); 4448 PetscFunctionReturn(PETSC_SUCCESS); 4449 } 4450 4451 /*@C 4452 DMPlexRestoreJoin - Restore an array for the join of the set of points 4453 4454 Not Collective 4455 4456 Input Parameters: 4457 + dm - The `DMPLEX` object 4458 . numPoints - The number of input points for the join 4459 - points - The input points 4460 4461 Output Parameters: 4462 + numCoveredPoints - The number of points in the join 4463 - coveredPoints - The points in the join 4464 4465 Level: intermediate 4466 4467 Fortran Notes: 4468 The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array. 4469 4470 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetJoin()`, `DMPlexGetFullJoin()`, `DMPlexGetMeet()` 4471 @*/ 4472 PetscErrorCode DMPlexRestoreJoin(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints) 4473 { 4474 PetscFunctionBegin; 4475 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4476 if (points) PetscAssertPointer(points, 3); 4477 if (numCoveredPoints) PetscAssertPointer(numCoveredPoints, 4); 4478 PetscAssertPointer(coveredPoints, 5); 4479 PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, (void *)coveredPoints)); 4480 if (numCoveredPoints) *numCoveredPoints = 0; 4481 PetscFunctionReturn(PETSC_SUCCESS); 4482 } 4483 4484 /*@C 4485 DMPlexGetFullJoin - Get an array for the join of the set of points 4486 4487 Not Collective 4488 4489 Input Parameters: 4490 + dm - The `DMPLEX` object 4491 . numPoints - The number of input points for the join 4492 - points - The input points 4493 4494 Output Parameters: 4495 + numCoveredPoints - The number of points in the join 4496 - coveredPoints - The points in the join 4497 4498 Level: intermediate 4499 4500 Fortran Notes: 4501 The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array. 4502 4503 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetJoin()`, `DMPlexRestoreJoin()`, `DMPlexGetMeet()` 4504 @*/ 4505 PetscErrorCode DMPlexGetFullJoin(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints) 4506 { 4507 PetscInt *offsets, **closures; 4508 PetscInt *join[2]; 4509 PetscInt depth = 0, maxSize, joinSize = 0, i = 0; 4510 PetscInt p, d, c, m, ms; 4511 4512 PetscFunctionBegin; 4513 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4514 PetscAssertPointer(points, 3); 4515 PetscAssertPointer(numCoveredPoints, 4); 4516 PetscAssertPointer(coveredPoints, 5); 4517 4518 PetscCall(DMPlexGetDepth(dm, &depth)); 4519 PetscCall(PetscCalloc1(numPoints, &closures)); 4520 PetscCall(DMGetWorkArray(dm, numPoints * (depth + 2), MPIU_INT, &offsets)); 4521 PetscCall(DMPlexGetMaxSizes(dm, NULL, &ms)); 4522 maxSize = (ms > 1) ? ((PetscPowInt(ms, depth + 1) - 1) / (ms - 1)) : depth + 1; 4523 PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &join[0])); 4524 PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &join[1])); 4525 4526 for (p = 0; p < numPoints; ++p) { 4527 PetscInt closureSize; 4528 4529 PetscCall(DMPlexGetTransitiveClosure(dm, points[p], PETSC_FALSE, &closureSize, &closures[p])); 4530 4531 offsets[p * (depth + 2) + 0] = 0; 4532 for (d = 0; d < depth + 1; ++d) { 4533 PetscInt pStart, pEnd, i; 4534 4535 PetscCall(DMPlexGetDepthStratum(dm, d, &pStart, &pEnd)); 4536 for (i = offsets[p * (depth + 2) + d]; i < closureSize; ++i) { 4537 if ((pStart > closures[p][i * 2]) || (pEnd <= closures[p][i * 2])) { 4538 offsets[p * (depth + 2) + d + 1] = i; 4539 break; 4540 } 4541 } 4542 if (i == closureSize) offsets[p * (depth + 2) + d + 1] = i; 4543 } 4544 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); 4545 } 4546 for (d = 0; d < depth + 1; ++d) { 4547 PetscInt dof; 4548 4549 /* Copy in support of first point */ 4550 dof = offsets[d + 1] - offsets[d]; 4551 for (joinSize = 0; joinSize < dof; ++joinSize) join[i][joinSize] = closures[0][(offsets[d] + joinSize) * 2]; 4552 /* Check each successive cone */ 4553 for (p = 1; p < numPoints && joinSize; ++p) { 4554 PetscInt newJoinSize = 0; 4555 4556 dof = offsets[p * (depth + 2) + d + 1] - offsets[p * (depth + 2) + d]; 4557 for (c = 0; c < dof; ++c) { 4558 const PetscInt point = closures[p][(offsets[p * (depth + 2) + d] + c) * 2]; 4559 4560 for (m = 0; m < joinSize; ++m) { 4561 if (point == join[i][m]) { 4562 join[1 - i][newJoinSize++] = point; 4563 break; 4564 } 4565 } 4566 } 4567 joinSize = newJoinSize; 4568 i = 1 - i; 4569 } 4570 if (joinSize) break; 4571 } 4572 *numCoveredPoints = joinSize; 4573 *coveredPoints = join[i]; 4574 for (p = 0; p < numPoints; ++p) PetscCall(DMPlexRestoreTransitiveClosure(dm, points[p], PETSC_FALSE, NULL, &closures[p])); 4575 PetscCall(PetscFree(closures)); 4576 PetscCall(DMRestoreWorkArray(dm, numPoints * (depth + 2), MPIU_INT, &offsets)); 4577 PetscCall(DMRestoreWorkArray(dm, ms, MPIU_INT, &join[1 - i])); 4578 PetscFunctionReturn(PETSC_SUCCESS); 4579 } 4580 4581 /*@C 4582 DMPlexGetMeet - Get an array for the meet of the set of points 4583 4584 Not Collective 4585 4586 Input Parameters: 4587 + dm - The `DMPLEX` object 4588 . numPoints - The number of input points for the meet 4589 - points - The input points 4590 4591 Output Parameters: 4592 + numCoveringPoints - The number of points in the meet 4593 - coveringPoints - The points in the meet 4594 4595 Level: intermediate 4596 4597 Note: 4598 Currently, this is restricted to a single level meet 4599 4600 Fortran Notes: 4601 The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array. 4602 4603 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreMeet()`, `DMPlexGetJoin()` 4604 @*/ 4605 PetscErrorCode DMPlexGetMeet(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveringPoints, const PetscInt **coveringPoints) 4606 { 4607 DM_Plex *mesh = (DM_Plex *)dm->data; 4608 PetscInt *meet[2]; 4609 PetscInt meetSize, i = 0; 4610 PetscInt dof, off, p, c, m; 4611 PetscInt maxConeSize; 4612 4613 PetscFunctionBegin; 4614 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4615 PetscAssertPointer(points, 3); 4616 PetscAssertPointer(numCoveringPoints, 4); 4617 PetscAssertPointer(coveringPoints, 5); 4618 PetscCall(PetscSectionGetMaxDof(mesh->coneSection, &maxConeSize)); 4619 PetscCall(DMGetWorkArray(dm, maxConeSize, MPIU_INT, &meet[0])); 4620 PetscCall(DMGetWorkArray(dm, maxConeSize, MPIU_INT, &meet[1])); 4621 /* Copy in cone of first point */ 4622 PetscCall(PetscSectionGetDof(mesh->coneSection, points[0], &dof)); 4623 PetscCall(PetscSectionGetOffset(mesh->coneSection, points[0], &off)); 4624 for (meetSize = 0; meetSize < dof; ++meetSize) meet[i][meetSize] = mesh->cones[off + meetSize]; 4625 /* Check each successive cone */ 4626 for (p = 1; p < numPoints; ++p) { 4627 PetscInt newMeetSize = 0; 4628 4629 PetscCall(PetscSectionGetDof(mesh->coneSection, points[p], &dof)); 4630 PetscCall(PetscSectionGetOffset(mesh->coneSection, points[p], &off)); 4631 for (c = 0; c < dof; ++c) { 4632 const PetscInt point = mesh->cones[off + c]; 4633 4634 for (m = 0; m < meetSize; ++m) { 4635 if (point == meet[i][m]) { 4636 meet[1 - i][newMeetSize++] = point; 4637 break; 4638 } 4639 } 4640 } 4641 meetSize = newMeetSize; 4642 i = 1 - i; 4643 } 4644 *numCoveringPoints = meetSize; 4645 *coveringPoints = meet[i]; 4646 PetscCall(DMRestoreWorkArray(dm, maxConeSize, MPIU_INT, &meet[1 - i])); 4647 PetscFunctionReturn(PETSC_SUCCESS); 4648 } 4649 4650 /*@C 4651 DMPlexRestoreMeet - Restore an array for the meet of the set of points 4652 4653 Not Collective 4654 4655 Input Parameters: 4656 + dm - The `DMPLEX` object 4657 . numPoints - The number of input points for the meet 4658 - points - The input points 4659 4660 Output Parameters: 4661 + numCoveredPoints - The number of points in the meet 4662 - coveredPoints - The points in the meet 4663 4664 Level: intermediate 4665 4666 Fortran Notes: 4667 The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array. 4668 4669 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetMeet()`, `DMPlexGetFullMeet()`, `DMPlexGetJoin()` 4670 @*/ 4671 PetscErrorCode DMPlexRestoreMeet(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints) 4672 { 4673 PetscFunctionBegin; 4674 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4675 if (points) PetscAssertPointer(points, 3); 4676 if (numCoveredPoints) PetscAssertPointer(numCoveredPoints, 4); 4677 PetscAssertPointer(coveredPoints, 5); 4678 PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, (void *)coveredPoints)); 4679 if (numCoveredPoints) *numCoveredPoints = 0; 4680 PetscFunctionReturn(PETSC_SUCCESS); 4681 } 4682 4683 /*@C 4684 DMPlexGetFullMeet - Get an array for the meet of the set of points 4685 4686 Not Collective 4687 4688 Input Parameters: 4689 + dm - The `DMPLEX` object 4690 . numPoints - The number of input points for the meet 4691 - points - The input points 4692 4693 Output Parameters: 4694 + numCoveredPoints - The number of points in the meet 4695 - coveredPoints - The points in the meet 4696 4697 Level: intermediate 4698 4699 Fortran Notes: 4700 The `numCoveredPoints` argument is not present in the Fortran binding since it is internal to the array. 4701 4702 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetMeet()`, `DMPlexRestoreMeet()`, `DMPlexGetJoin()` 4703 @*/ 4704 PetscErrorCode DMPlexGetFullMeet(DM dm, PetscInt numPoints, const PetscInt points[], PetscInt *numCoveredPoints, const PetscInt **coveredPoints) 4705 { 4706 PetscInt *offsets, **closures; 4707 PetscInt *meet[2]; 4708 PetscInt height = 0, maxSize, meetSize = 0, i = 0; 4709 PetscInt p, h, c, m, mc; 4710 4711 PetscFunctionBegin; 4712 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4713 PetscAssertPointer(points, 3); 4714 PetscAssertPointer(numCoveredPoints, 4); 4715 PetscAssertPointer(coveredPoints, 5); 4716 4717 PetscCall(DMPlexGetDepth(dm, &height)); 4718 PetscCall(PetscMalloc1(numPoints, &closures)); 4719 PetscCall(DMGetWorkArray(dm, numPoints * (height + 2), MPIU_INT, &offsets)); 4720 PetscCall(DMPlexGetMaxSizes(dm, &mc, NULL)); 4721 maxSize = (mc > 1) ? ((PetscPowInt(mc, height + 1) - 1) / (mc - 1)) : height + 1; 4722 PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &meet[0])); 4723 PetscCall(DMGetWorkArray(dm, maxSize, MPIU_INT, &meet[1])); 4724 4725 for (p = 0; p < numPoints; ++p) { 4726 PetscInt closureSize; 4727 4728 PetscCall(DMPlexGetTransitiveClosure(dm, points[p], PETSC_TRUE, &closureSize, &closures[p])); 4729 4730 offsets[p * (height + 2) + 0] = 0; 4731 for (h = 0; h < height + 1; ++h) { 4732 PetscInt pStart, pEnd, i; 4733 4734 PetscCall(DMPlexGetHeightStratum(dm, h, &pStart, &pEnd)); 4735 for (i = offsets[p * (height + 2) + h]; i < closureSize; ++i) { 4736 if ((pStart > closures[p][i * 2]) || (pEnd <= closures[p][i * 2])) { 4737 offsets[p * (height + 2) + h + 1] = i; 4738 break; 4739 } 4740 } 4741 if (i == closureSize) offsets[p * (height + 2) + h + 1] = i; 4742 } 4743 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); 4744 } 4745 for (h = 0; h < height + 1; ++h) { 4746 PetscInt dof; 4747 4748 /* Copy in cone of first point */ 4749 dof = offsets[h + 1] - offsets[h]; 4750 for (meetSize = 0; meetSize < dof; ++meetSize) meet[i][meetSize] = closures[0][(offsets[h] + meetSize) * 2]; 4751 /* Check each successive cone */ 4752 for (p = 1; p < numPoints && meetSize; ++p) { 4753 PetscInt newMeetSize = 0; 4754 4755 dof = offsets[p * (height + 2) + h + 1] - offsets[p * (height + 2) + h]; 4756 for (c = 0; c < dof; ++c) { 4757 const PetscInt point = closures[p][(offsets[p * (height + 2) + h] + c) * 2]; 4758 4759 for (m = 0; m < meetSize; ++m) { 4760 if (point == meet[i][m]) { 4761 meet[1 - i][newMeetSize++] = point; 4762 break; 4763 } 4764 } 4765 } 4766 meetSize = newMeetSize; 4767 i = 1 - i; 4768 } 4769 if (meetSize) break; 4770 } 4771 *numCoveredPoints = meetSize; 4772 *coveredPoints = meet[i]; 4773 for (p = 0; p < numPoints; ++p) PetscCall(DMPlexRestoreTransitiveClosure(dm, points[p], PETSC_TRUE, NULL, &closures[p])); 4774 PetscCall(PetscFree(closures)); 4775 PetscCall(DMRestoreWorkArray(dm, numPoints * (height + 2), MPIU_INT, &offsets)); 4776 PetscCall(DMRestoreWorkArray(dm, mc, MPIU_INT, &meet[1 - i])); 4777 PetscFunctionReturn(PETSC_SUCCESS); 4778 } 4779 4780 /*@C 4781 DMPlexEqual - Determine if two `DM` have the same topology 4782 4783 Not Collective 4784 4785 Input Parameters: 4786 + dmA - A `DMPLEX` object 4787 - dmB - A `DMPLEX` object 4788 4789 Output Parameter: 4790 . equal - `PETSC_TRUE` if the topologies are identical 4791 4792 Level: intermediate 4793 4794 Note: 4795 We are not solving graph isomorphism, so we do not permute. 4796 4797 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCone()` 4798 @*/ 4799 PetscErrorCode DMPlexEqual(DM dmA, DM dmB, PetscBool *equal) 4800 { 4801 PetscInt depth, depthB, pStart, pEnd, pStartB, pEndB, p; 4802 4803 PetscFunctionBegin; 4804 PetscValidHeaderSpecific(dmA, DM_CLASSID, 1); 4805 PetscValidHeaderSpecific(dmB, DM_CLASSID, 2); 4806 PetscAssertPointer(equal, 3); 4807 4808 *equal = PETSC_FALSE; 4809 PetscCall(DMPlexGetDepth(dmA, &depth)); 4810 PetscCall(DMPlexGetDepth(dmB, &depthB)); 4811 if (depth != depthB) PetscFunctionReturn(PETSC_SUCCESS); 4812 PetscCall(DMPlexGetChart(dmA, &pStart, &pEnd)); 4813 PetscCall(DMPlexGetChart(dmB, &pStartB, &pEndB)); 4814 if ((pStart != pStartB) || (pEnd != pEndB)) PetscFunctionReturn(PETSC_SUCCESS); 4815 for (p = pStart; p < pEnd; ++p) { 4816 const PetscInt *cone, *coneB, *ornt, *orntB, *support, *supportB; 4817 PetscInt coneSize, coneSizeB, c, supportSize, supportSizeB, s; 4818 4819 PetscCall(DMPlexGetConeSize(dmA, p, &coneSize)); 4820 PetscCall(DMPlexGetCone(dmA, p, &cone)); 4821 PetscCall(DMPlexGetConeOrientation(dmA, p, &ornt)); 4822 PetscCall(DMPlexGetConeSize(dmB, p, &coneSizeB)); 4823 PetscCall(DMPlexGetCone(dmB, p, &coneB)); 4824 PetscCall(DMPlexGetConeOrientation(dmB, p, &orntB)); 4825 if (coneSize != coneSizeB) PetscFunctionReturn(PETSC_SUCCESS); 4826 for (c = 0; c < coneSize; ++c) { 4827 if (cone[c] != coneB[c]) PetscFunctionReturn(PETSC_SUCCESS); 4828 if (ornt[c] != orntB[c]) PetscFunctionReturn(PETSC_SUCCESS); 4829 } 4830 PetscCall(DMPlexGetSupportSize(dmA, p, &supportSize)); 4831 PetscCall(DMPlexGetSupport(dmA, p, &support)); 4832 PetscCall(DMPlexGetSupportSize(dmB, p, &supportSizeB)); 4833 PetscCall(DMPlexGetSupport(dmB, p, &supportB)); 4834 if (supportSize != supportSizeB) PetscFunctionReturn(PETSC_SUCCESS); 4835 for (s = 0; s < supportSize; ++s) { 4836 if (support[s] != supportB[s]) PetscFunctionReturn(PETSC_SUCCESS); 4837 } 4838 } 4839 *equal = PETSC_TRUE; 4840 PetscFunctionReturn(PETSC_SUCCESS); 4841 } 4842 4843 /*@C 4844 DMPlexGetNumFaceVertices - Returns the number of vertices on a face 4845 4846 Not Collective 4847 4848 Input Parameters: 4849 + dm - The `DMPLEX` 4850 . cellDim - The cell dimension 4851 - numCorners - The number of vertices on a cell 4852 4853 Output Parameter: 4854 . numFaceVertices - The number of vertices on a face 4855 4856 Level: developer 4857 4858 Note: 4859 Of course this can only work for a restricted set of symmetric shapes 4860 4861 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCone()` 4862 @*/ 4863 PetscErrorCode DMPlexGetNumFaceVertices(DM dm, PetscInt cellDim, PetscInt numCorners, PetscInt *numFaceVertices) 4864 { 4865 MPI_Comm comm; 4866 4867 PetscFunctionBegin; 4868 PetscCall(PetscObjectGetComm((PetscObject)dm, &comm)); 4869 PetscAssertPointer(numFaceVertices, 4); 4870 switch (cellDim) { 4871 case 0: 4872 *numFaceVertices = 0; 4873 break; 4874 case 1: 4875 *numFaceVertices = 1; 4876 break; 4877 case 2: 4878 switch (numCorners) { 4879 case 3: /* triangle */ 4880 *numFaceVertices = 2; /* Edge has 2 vertices */ 4881 break; 4882 case 4: /* quadrilateral */ 4883 *numFaceVertices = 2; /* Edge has 2 vertices */ 4884 break; 4885 case 6: /* quadratic triangle, tri and quad cohesive Lagrange cells */ 4886 *numFaceVertices = 3; /* Edge has 3 vertices */ 4887 break; 4888 case 9: /* quadratic quadrilateral, quadratic quad cohesive Lagrange cells */ 4889 *numFaceVertices = 3; /* Edge has 3 vertices */ 4890 break; 4891 default: 4892 SETERRQ(comm, PETSC_ERR_ARG_OUTOFRANGE, "Invalid number of face corners %" PetscInt_FMT " for dimension %" PetscInt_FMT, numCorners, cellDim); 4893 } 4894 break; 4895 case 3: 4896 switch (numCorners) { 4897 case 4: /* tetradehdron */ 4898 *numFaceVertices = 3; /* Face has 3 vertices */ 4899 break; 4900 case 6: /* tet cohesive cells */ 4901 *numFaceVertices = 4; /* Face has 4 vertices */ 4902 break; 4903 case 8: /* hexahedron */ 4904 *numFaceVertices = 4; /* Face has 4 vertices */ 4905 break; 4906 case 9: /* tet cohesive Lagrange cells */ 4907 *numFaceVertices = 6; /* Face has 6 vertices */ 4908 break; 4909 case 10: /* quadratic tetrahedron */ 4910 *numFaceVertices = 6; /* Face has 6 vertices */ 4911 break; 4912 case 12: /* hex cohesive Lagrange cells */ 4913 *numFaceVertices = 6; /* Face has 6 vertices */ 4914 break; 4915 case 18: /* quadratic tet cohesive Lagrange cells */ 4916 *numFaceVertices = 6; /* Face has 6 vertices */ 4917 break; 4918 case 27: /* quadratic hexahedron, quadratic hex cohesive Lagrange cells */ 4919 *numFaceVertices = 9; /* Face has 9 vertices */ 4920 break; 4921 default: 4922 SETERRQ(comm, PETSC_ERR_ARG_OUTOFRANGE, "Invalid number of face corners %" PetscInt_FMT " for dimension %" PetscInt_FMT, numCorners, cellDim); 4923 } 4924 break; 4925 default: 4926 SETERRQ(comm, PETSC_ERR_ARG_OUTOFRANGE, "Invalid cell dimension %" PetscInt_FMT, cellDim); 4927 } 4928 PetscFunctionReturn(PETSC_SUCCESS); 4929 } 4930 4931 /*@ 4932 DMPlexGetDepthLabel - Get the `DMLabel` recording the depth of each point 4933 4934 Not Collective 4935 4936 Input Parameter: 4937 . dm - The `DMPLEX` object 4938 4939 Output Parameter: 4940 . depthLabel - The `DMLabel` recording point depth 4941 4942 Level: developer 4943 4944 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetDepth()`, `DMPlexGetHeightStratum()`, `DMPlexGetDepthStratum()`, `DMPlexGetPointDepth()`, 4945 @*/ 4946 PetscErrorCode DMPlexGetDepthLabel(DM dm, DMLabel *depthLabel) 4947 { 4948 PetscFunctionBegin; 4949 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4950 PetscAssertPointer(depthLabel, 2); 4951 *depthLabel = dm->depthLabel; 4952 PetscFunctionReturn(PETSC_SUCCESS); 4953 } 4954 4955 /*@ 4956 DMPlexGetDepth - Get the depth of the DAG representing this mesh 4957 4958 Not Collective 4959 4960 Input Parameter: 4961 . dm - The `DMPLEX` object 4962 4963 Output Parameter: 4964 . depth - The number of strata (breadth first levels) in the DAG 4965 4966 Level: developer 4967 4968 Notes: 4969 This returns maximum of point depths over all points, i.e. maximum value of the label returned by `DMPlexGetDepthLabel()`. 4970 4971 The point depth is described more in detail in `DMPlexGetDepthStratum()`. 4972 4973 An empty mesh gives -1. 4974 4975 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetDepthLabel()`, `DMPlexGetDepthStratum()`, `DMPlexGetPointDepth()`, `DMPlexSymmetrize()` 4976 @*/ 4977 PetscErrorCode DMPlexGetDepth(DM dm, PetscInt *depth) 4978 { 4979 DM_Plex *mesh = (DM_Plex *)dm->data; 4980 DMLabel label; 4981 PetscInt d = 0; 4982 4983 PetscFunctionBegin; 4984 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 4985 PetscAssertPointer(depth, 2); 4986 if (mesh->tr) { 4987 PetscCall(DMPlexTransformGetDepth(mesh->tr, depth)); 4988 } else { 4989 PetscCall(DMPlexGetDepthLabel(dm, &label)); 4990 if (label) PetscCall(DMLabelGetNumValues(label, &d)); 4991 *depth = d - 1; 4992 } 4993 PetscFunctionReturn(PETSC_SUCCESS); 4994 } 4995 4996 /*@ 4997 DMPlexGetDepthStratum - Get the bounds [`start`, `end`) for all points at a certain depth. 4998 4999 Not Collective 5000 5001 Input Parameters: 5002 + dm - The `DMPLEX` object 5003 - depth - The requested depth 5004 5005 Output Parameters: 5006 + start - The first point at this `depth` 5007 - end - One beyond the last point at this `depth` 5008 5009 Level: developer 5010 5011 Notes: 5012 Depth indexing is related to topological dimension. Depth stratum 0 contains the lowest topological dimension points, 5013 often "vertices". If the mesh is "interpolated" (see `DMPlexInterpolate()`), then depth stratum 1 contains the next 5014 higher dimension, e.g., "edges". 5015 5016 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetHeightStratum()`, `DMPlexGetCellTypeStratum()`, `DMPlexGetDepth()`, `DMPlexGetDepthLabel()`, `DMPlexGetPointDepth()`, `DMPlexSymmetrize()`, `DMPlexInterpolate()` 5017 @*/ 5018 PetscErrorCode DMPlexGetDepthStratum(DM dm, PetscInt depth, PetscInt *start, PetscInt *end) 5019 { 5020 DM_Plex *mesh = (DM_Plex *)dm->data; 5021 DMLabel label; 5022 PetscInt pStart, pEnd; 5023 5024 PetscFunctionBegin; 5025 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5026 if (start) { 5027 PetscAssertPointer(start, 3); 5028 *start = 0; 5029 } 5030 if (end) { 5031 PetscAssertPointer(end, 4); 5032 *end = 0; 5033 } 5034 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 5035 if (pStart == pEnd) PetscFunctionReturn(PETSC_SUCCESS); 5036 if (depth < 0) { 5037 if (start) *start = pStart; 5038 if (end) *end = pEnd; 5039 PetscFunctionReturn(PETSC_SUCCESS); 5040 } 5041 if (mesh->tr) { 5042 PetscCall(DMPlexTransformGetDepthStratum(mesh->tr, depth, start, end)); 5043 } else { 5044 PetscCall(DMPlexGetDepthLabel(dm, &label)); 5045 PetscCheck(label, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "No label named depth was found"); 5046 PetscCall(DMLabelGetStratumBounds(label, depth, start, end)); 5047 } 5048 PetscFunctionReturn(PETSC_SUCCESS); 5049 } 5050 5051 /*@ 5052 DMPlexGetHeightStratum - Get the bounds [`start`, `end`) for all points at a certain height. 5053 5054 Not Collective 5055 5056 Input Parameters: 5057 + dm - The `DMPLEX` object 5058 - height - The requested height 5059 5060 Output Parameters: 5061 + start - The first point at this `height` 5062 - end - One beyond the last point at this `height` 5063 5064 Level: developer 5065 5066 Notes: 5067 Height indexing is related to topological codimension. Height stratum 0 contains the highest topological dimension 5068 points, often called "cells" or "elements". If the mesh is "interpolated" (see `DMPlexInterpolate()`), then height 5069 stratum 1 contains the boundary of these "cells", often called "faces" or "facets". 5070 5071 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetDepthStratum()`, `DMPlexGetCellTypeStratum()`, `DMPlexGetDepth()`, `DMPlexGetPointHeight()` 5072 @*/ 5073 PetscErrorCode DMPlexGetHeightStratum(DM dm, PetscInt height, PetscInt *start, PetscInt *end) 5074 { 5075 DMLabel label; 5076 PetscInt depth, pStart, pEnd; 5077 5078 PetscFunctionBegin; 5079 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5080 if (start) { 5081 PetscAssertPointer(start, 3); 5082 *start = 0; 5083 } 5084 if (end) { 5085 PetscAssertPointer(end, 4); 5086 *end = 0; 5087 } 5088 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 5089 if (pStart == pEnd) PetscFunctionReturn(PETSC_SUCCESS); 5090 if (height < 0) { 5091 if (start) *start = pStart; 5092 if (end) *end = pEnd; 5093 PetscFunctionReturn(PETSC_SUCCESS); 5094 } 5095 PetscCall(DMPlexGetDepthLabel(dm, &label)); 5096 if (label) PetscCall(DMLabelGetNumValues(label, &depth)); 5097 else PetscCall(DMGetDimension(dm, &depth)); 5098 PetscCheck(depth >= 0, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Depth not yet computed"); 5099 PetscCall(DMPlexGetDepthStratum(dm, depth - 1 - height, start, end)); 5100 PetscFunctionReturn(PETSC_SUCCESS); 5101 } 5102 5103 /*@ 5104 DMPlexGetPointDepth - Get the `depth` of a given point 5105 5106 Not Collective 5107 5108 Input Parameters: 5109 + dm - The `DMPLEX` object 5110 - point - The point 5111 5112 Output Parameter: 5113 . depth - The depth of the `point` 5114 5115 Level: intermediate 5116 5117 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellType()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`, `DMPlexGetPointHeight()` 5118 @*/ 5119 PetscErrorCode DMPlexGetPointDepth(DM dm, PetscInt point, PetscInt *depth) 5120 { 5121 PetscFunctionBegin; 5122 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5123 PetscAssertPointer(depth, 3); 5124 PetscCall(DMLabelGetValue(dm->depthLabel, point, depth)); 5125 PetscFunctionReturn(PETSC_SUCCESS); 5126 } 5127 5128 /*@ 5129 DMPlexGetPointHeight - Get the `height` of a given point 5130 5131 Not Collective 5132 5133 Input Parameters: 5134 + dm - The `DMPLEX` object 5135 - point - The point 5136 5137 Output Parameter: 5138 . height - The height of the `point` 5139 5140 Level: intermediate 5141 5142 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellType()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`, `DMPlexGetPointDepth()` 5143 @*/ 5144 PetscErrorCode DMPlexGetPointHeight(DM dm, PetscInt point, PetscInt *height) 5145 { 5146 PetscInt n, pDepth; 5147 5148 PetscFunctionBegin; 5149 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5150 PetscAssertPointer(height, 3); 5151 PetscCall(DMLabelGetNumValues(dm->depthLabel, &n)); 5152 PetscCall(DMLabelGetValue(dm->depthLabel, point, &pDepth)); 5153 *height = n - 1 - pDepth; /* DAG depth is n-1 */ 5154 PetscFunctionReturn(PETSC_SUCCESS); 5155 } 5156 5157 /*@ 5158 DMPlexGetCellTypeLabel - Get the `DMLabel` recording the polytope type of each cell 5159 5160 Not Collective 5161 5162 Input Parameter: 5163 . dm - The `DMPLEX` object 5164 5165 Output Parameter: 5166 . celltypeLabel - The `DMLabel` recording cell polytope type 5167 5168 Level: developer 5169 5170 Note: 5171 This function will trigger automatica computation of cell types. This can be disabled by calling 5172 `DMCreateLabel`(dm, "celltype") beforehand. 5173 5174 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellType()`, `DMPlexGetDepthLabel()`, `DMCreateLabel()` 5175 @*/ 5176 PetscErrorCode DMPlexGetCellTypeLabel(DM dm, DMLabel *celltypeLabel) 5177 { 5178 PetscFunctionBegin; 5179 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5180 PetscAssertPointer(celltypeLabel, 2); 5181 if (!dm->celltypeLabel) PetscCall(DMPlexComputeCellTypes(dm)); 5182 *celltypeLabel = dm->celltypeLabel; 5183 PetscFunctionReturn(PETSC_SUCCESS); 5184 } 5185 5186 /*@ 5187 DMPlexGetCellType - Get the polytope type of a given cell 5188 5189 Not Collective 5190 5191 Input Parameters: 5192 + dm - The `DMPLEX` object 5193 - cell - The cell 5194 5195 Output Parameter: 5196 . celltype - The polytope type of the cell 5197 5198 Level: intermediate 5199 5200 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPolytopeType`, `DMPlexGetCellTypeLabel()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()` 5201 @*/ 5202 PetscErrorCode DMPlexGetCellType(DM dm, PetscInt cell, DMPolytopeType *celltype) 5203 { 5204 DM_Plex *mesh = (DM_Plex *)dm->data; 5205 DMLabel label; 5206 PetscInt ct; 5207 5208 PetscFunctionBegin; 5209 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5210 PetscAssertPointer(celltype, 3); 5211 if (mesh->tr) { 5212 PetscCall(DMPlexTransformGetCellType(mesh->tr, cell, celltype)); 5213 } else { 5214 PetscInt pStart, pEnd; 5215 5216 PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, NULL)); 5217 if (!mesh->cellTypes) { /* XXX remove? optimize? */ 5218 PetscCall(PetscSectionGetChart(mesh->coneSection, NULL, &pEnd)); 5219 PetscCall(PetscMalloc1(pEnd - pStart, &mesh->cellTypes)); 5220 PetscCall(DMPlexGetCellTypeLabel(dm, &label)); 5221 for (PetscInt p = pStart; p < pEnd; p++) { 5222 PetscCall(DMLabelGetValue(label, p, &ct)); 5223 mesh->cellTypes[p - pStart].value_as_uint8 = (DMPolytopeType)ct; 5224 } 5225 } 5226 *celltype = (DMPolytopeType)mesh->cellTypes[cell - pStart].value_as_uint8; 5227 if (PetscDefined(USE_DEBUG)) { 5228 PetscCall(DMPlexGetCellTypeLabel(dm, &label)); 5229 PetscCall(DMLabelGetValue(label, cell, &ct)); 5230 PetscCheck(ct >= 0, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Cell %" PetscInt_FMT " has not been assigned a cell type", cell); 5231 PetscCheck(ct == (PetscInt)*celltype, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Invalid cellType for %" PetscInt_FMT ": %d != %" PetscInt_FMT, cell, (int)*celltype, ct); 5232 } 5233 } 5234 PetscFunctionReturn(PETSC_SUCCESS); 5235 } 5236 5237 /*@ 5238 DMPlexSetCellType - Set the polytope type of a given cell 5239 5240 Not Collective 5241 5242 Input Parameters: 5243 + dm - The `DMPLEX` object 5244 . cell - The cell 5245 - celltype - The polytope type of the cell 5246 5247 Level: advanced 5248 5249 Note: 5250 By default, cell types will be automatically computed using `DMPlexComputeCellTypes()` before this function 5251 is executed. This function will override the computed type. However, if automatic classification will not succeed 5252 and a user wants to manually specify all types, the classification must be disabled by calling 5253 DMCreateLabel(dm, "celltype") before getting or setting any cell types. 5254 5255 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellTypeLabel()`, `DMPlexGetDepthLabel()`, `DMPlexGetDepth()`, `DMPlexComputeCellTypes()`, `DMCreateLabel()` 5256 @*/ 5257 PetscErrorCode DMPlexSetCellType(DM dm, PetscInt cell, DMPolytopeType celltype) 5258 { 5259 DM_Plex *mesh = (DM_Plex *)dm->data; 5260 DMLabel label; 5261 PetscInt pStart, pEnd; 5262 5263 PetscFunctionBegin; 5264 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5265 PetscCall(PetscSectionGetChart(mesh->coneSection, &pStart, &pEnd)); 5266 PetscCall(DMPlexGetCellTypeLabel(dm, &label)); 5267 PetscCall(DMLabelSetValue(label, cell, celltype)); 5268 if (!mesh->cellTypes) PetscCall(PetscMalloc1(pEnd - pStart, &mesh->cellTypes)); 5269 mesh->cellTypes[cell - pStart].value_as_uint8 = celltype; 5270 PetscFunctionReturn(PETSC_SUCCESS); 5271 } 5272 5273 PetscErrorCode DMCreateCoordinateDM_Plex(DM dm, DM *cdm) 5274 { 5275 PetscSection section, s; 5276 Mat m; 5277 PetscInt maxHeight; 5278 const char *prefix; 5279 5280 PetscFunctionBegin; 5281 PetscCall(DMClone(dm, cdm)); 5282 PetscCall(PetscObjectGetOptionsPrefix((PetscObject)dm, &prefix)); 5283 PetscCall(PetscObjectSetOptionsPrefix((PetscObject)*cdm, prefix)); 5284 PetscCall(PetscObjectAppendOptionsPrefix((PetscObject)*cdm, "cdm_")); 5285 PetscCall(DMPlexGetMaxProjectionHeight(dm, &maxHeight)); 5286 PetscCall(DMPlexSetMaxProjectionHeight(*cdm, maxHeight)); 5287 PetscCall(PetscSectionCreate(PetscObjectComm((PetscObject)dm), §ion)); 5288 PetscCall(DMSetLocalSection(*cdm, section)); 5289 PetscCall(PetscSectionDestroy(§ion)); 5290 PetscCall(PetscSectionCreate(PETSC_COMM_SELF, &s)); 5291 PetscCall(MatCreate(PETSC_COMM_SELF, &m)); 5292 PetscCall(DMSetDefaultConstraints(*cdm, s, m, NULL)); 5293 PetscCall(PetscSectionDestroy(&s)); 5294 PetscCall(MatDestroy(&m)); 5295 5296 PetscCall(DMSetNumFields(*cdm, 1)); 5297 PetscCall(DMCreateDS(*cdm)); 5298 (*cdm)->cloneOpts = PETSC_TRUE; 5299 if (dm->setfromoptionscalled) PetscCall(DMSetFromOptions(*cdm)); 5300 PetscFunctionReturn(PETSC_SUCCESS); 5301 } 5302 5303 PetscErrorCode DMCreateCoordinateField_Plex(DM dm, DMField *field) 5304 { 5305 Vec coordsLocal, cellCoordsLocal; 5306 DM coordsDM, cellCoordsDM; 5307 5308 PetscFunctionBegin; 5309 *field = NULL; 5310 PetscCall(DMGetCoordinatesLocal(dm, &coordsLocal)); 5311 PetscCall(DMGetCoordinateDM(dm, &coordsDM)); 5312 PetscCall(DMGetCellCoordinatesLocal(dm, &cellCoordsLocal)); 5313 PetscCall(DMGetCellCoordinateDM(dm, &cellCoordsDM)); 5314 if (coordsLocal && coordsDM) { 5315 if (cellCoordsLocal && cellCoordsDM) PetscCall(DMFieldCreateDSWithDG(coordsDM, cellCoordsDM, 0, coordsLocal, cellCoordsLocal, field)); 5316 else PetscCall(DMFieldCreateDS(coordsDM, 0, coordsLocal, field)); 5317 } 5318 PetscFunctionReturn(PETSC_SUCCESS); 5319 } 5320 5321 /*@C 5322 DMPlexGetConeSection - Return a section which describes the layout of cone data 5323 5324 Not Collective 5325 5326 Input Parameter: 5327 . dm - The `DMPLEX` object 5328 5329 Output Parameter: 5330 . section - The `PetscSection` object 5331 5332 Level: developer 5333 5334 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetSupportSection()`, `DMPlexGetCones()`, `DMPlexGetConeOrientations()`, `PetscSection` 5335 @*/ 5336 PetscErrorCode DMPlexGetConeSection(DM dm, PetscSection *section) 5337 { 5338 DM_Plex *mesh = (DM_Plex *)dm->data; 5339 5340 PetscFunctionBegin; 5341 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5342 if (section) *section = mesh->coneSection; 5343 PetscFunctionReturn(PETSC_SUCCESS); 5344 } 5345 5346 /*@C 5347 DMPlexGetSupportSection - Return a section which describes the layout of support data 5348 5349 Not Collective 5350 5351 Input Parameter: 5352 . dm - The `DMPLEX` object 5353 5354 Output Parameter: 5355 . section - The `PetscSection` object 5356 5357 Level: developer 5358 5359 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSection()`, `PetscSection` 5360 @*/ 5361 PetscErrorCode DMPlexGetSupportSection(DM dm, PetscSection *section) 5362 { 5363 DM_Plex *mesh = (DM_Plex *)dm->data; 5364 5365 PetscFunctionBegin; 5366 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5367 if (section) *section = mesh->supportSection; 5368 PetscFunctionReturn(PETSC_SUCCESS); 5369 } 5370 5371 /*@C 5372 DMPlexGetCones - Return cone data 5373 5374 Not Collective 5375 5376 Input Parameter: 5377 . dm - The `DMPLEX` object 5378 5379 Output Parameter: 5380 . cones - The cone for each point 5381 5382 Level: developer 5383 5384 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSection()` 5385 @*/ 5386 PetscErrorCode DMPlexGetCones(DM dm, PetscInt *cones[]) 5387 { 5388 DM_Plex *mesh = (DM_Plex *)dm->data; 5389 5390 PetscFunctionBegin; 5391 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5392 if (cones) *cones = mesh->cones; 5393 PetscFunctionReturn(PETSC_SUCCESS); 5394 } 5395 5396 /*@C 5397 DMPlexGetConeOrientations - Return cone orientation data 5398 5399 Not Collective 5400 5401 Input Parameter: 5402 . dm - The `DMPLEX` object 5403 5404 Output Parameter: 5405 . coneOrientations - The array of cone orientations for all points 5406 5407 Level: developer 5408 5409 Notes: 5410 The `PetscSection` returned by `DMPlexGetConeSection()` partitions coneOrientations into cone orientations of particular points as returned by `DMPlexGetConeOrientation()`. 5411 5412 The meaning of coneOrientations values is detailed in `DMPlexGetConeOrientation()`. 5413 5414 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetConeSection()`, `DMPlexGetConeOrientation()`, `PetscSection` 5415 @*/ 5416 PetscErrorCode DMPlexGetConeOrientations(DM dm, PetscInt *coneOrientations[]) 5417 { 5418 DM_Plex *mesh = (DM_Plex *)dm->data; 5419 5420 PetscFunctionBegin; 5421 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 5422 if (coneOrientations) *coneOrientations = mesh->coneOrientations; 5423 PetscFunctionReturn(PETSC_SUCCESS); 5424 } 5425 5426 /******************************** FEM Support **********************************/ 5427 5428 /* 5429 Returns number of components and tensor degree for the field. For interpolated meshes, line should be a point 5430 representing a line in the section. 5431 */ 5432 static PetscErrorCode PetscSectionFieldGetTensorDegree_Private(PetscSection section, PetscInt field, PetscInt line, PetscBool vertexchart, PetscInt *Nc, PetscInt *k) 5433 { 5434 PetscFunctionBeginHot; 5435 PetscCall(PetscSectionGetFieldComponents(section, field, Nc)); 5436 if (line < 0) { 5437 *k = 0; 5438 *Nc = 0; 5439 } else if (vertexchart) { /* If we only have a vertex chart, we must have degree k=1 */ 5440 *k = 1; 5441 } else { /* Assume the full interpolated mesh is in the chart; lines in particular */ 5442 /* An order k SEM disc has k-1 dofs on an edge */ 5443 PetscCall(PetscSectionGetFieldDof(section, line, field, k)); 5444 *k = *k / *Nc + 1; 5445 } 5446 PetscFunctionReturn(PETSC_SUCCESS); 5447 } 5448 5449 /*@ 5450 5451 DMPlexSetClosurePermutationTensor - Create a permutation from the default (BFS) point ordering in the closure, to a 5452 lexicographic ordering over the tensor product cell (i.e., line, quad, hex, etc.), and set this permutation in the 5453 section provided (or the section of the `DM`). 5454 5455 Input Parameters: 5456 + dm - The `DM` 5457 . point - Either a cell (highest dim point) or an edge (dim 1 point), or `PETSC_DETERMINE` 5458 - section - The `PetscSection` to reorder, or `NULL` for the default section 5459 5460 Example: 5461 A typical interpolated single-quad mesh might order points as 5462 .vb 5463 [c0, v1, v2, v3, v4, e5, e6, e7, e8] 5464 5465 v4 -- e6 -- v3 5466 | | 5467 e7 c0 e8 5468 | | 5469 v1 -- e5 -- v2 5470 .ve 5471 5472 (There is no significance to the ordering described here.) The default section for a Q3 quad might typically assign 5473 dofs in the order of points, e.g., 5474 .vb 5475 c0 -> [0,1,2,3] 5476 v1 -> [4] 5477 ... 5478 e5 -> [8, 9] 5479 .ve 5480 5481 which corresponds to the dofs 5482 .vb 5483 6 10 11 7 5484 13 2 3 15 5485 12 0 1 14 5486 4 8 9 5 5487 .ve 5488 5489 The closure in BFS ordering works through height strata (cells, edges, vertices) to produce the ordering 5490 .vb 5491 0 1 2 3 8 9 14 15 11 10 13 12 4 5 7 6 5492 .ve 5493 5494 After calling DMPlexSetClosurePermutationTensor(), the closure will be ordered lexicographically, 5495 .vb 5496 4 8 9 5 12 0 1 14 13 2 3 15 6 10 11 7 5497 .ve 5498 5499 Level: developer 5500 5501 Note: 5502 The point is used to determine the number of dofs/field on an edge. For SEM, this is related to the polynomial 5503 degree of the basis. 5504 5505 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMGetLocalSection()`, `PetscSectionSetClosurePermutation()`, `DMSetGlobalSection()` 5506 @*/ 5507 PetscErrorCode DMPlexSetClosurePermutationTensor(DM dm, PetscInt point, PetscSection section) 5508 { 5509 DMLabel label; 5510 PetscInt dim, depth = -1, eStart = -1, Nf; 5511 PetscBool vertexchart; 5512 5513 PetscFunctionBegin; 5514 PetscCall(DMGetDimension(dm, &dim)); 5515 if (dim < 1) PetscFunctionReturn(PETSC_SUCCESS); 5516 if (point < 0) { 5517 PetscInt sStart, sEnd; 5518 5519 PetscCall(DMPlexGetDepthStratum(dm, 1, &sStart, &sEnd)); 5520 point = sEnd - sStart ? sStart : point; 5521 } 5522 PetscCall(DMPlexGetDepthLabel(dm, &label)); 5523 if (point >= 0) PetscCall(DMLabelGetValue(label, point, &depth)); 5524 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 5525 if (depth == 1) { 5526 eStart = point; 5527 } else if (depth == dim) { 5528 const PetscInt *cone; 5529 5530 PetscCall(DMPlexGetCone(dm, point, &cone)); 5531 if (dim == 2) eStart = cone[0]; 5532 else if (dim == 3) { 5533 const PetscInt *cone2; 5534 PetscCall(DMPlexGetCone(dm, cone[0], &cone2)); 5535 eStart = cone2[0]; 5536 } 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); 5537 } 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); 5538 { /* Determine whether the chart covers all points or just vertices. */ 5539 PetscInt pStart, pEnd, cStart, cEnd; 5540 PetscCall(DMPlexGetDepthStratum(dm, 0, &pStart, &pEnd)); 5541 PetscCall(PetscSectionGetChart(section, &cStart, &cEnd)); 5542 if (pStart == cStart && pEnd == cEnd) vertexchart = PETSC_TRUE; /* Only vertices are in the chart */ 5543 else if (cStart <= point && point < cEnd) vertexchart = PETSC_FALSE; /* Some interpolated points exist in the chart */ 5544 else vertexchart = PETSC_TRUE; /* Some interpolated points are not in chart; assume dofs only at cells and vertices */ 5545 } 5546 PetscCall(PetscSectionGetNumFields(section, &Nf)); 5547 for (PetscInt d = 1; d <= dim; d++) { 5548 PetscInt k, f, Nc, c, i, j, size = 0, offset = 0, foffset = 0; 5549 PetscInt *perm; 5550 5551 for (f = 0; f < Nf; ++f) { 5552 PetscCall(PetscSectionFieldGetTensorDegree_Private(section, f, eStart, vertexchart, &Nc, &k)); 5553 size += PetscPowInt(k + 1, d) * Nc; 5554 } 5555 PetscCall(PetscMalloc1(size, &perm)); 5556 for (f = 0; f < Nf; ++f) { 5557 switch (d) { 5558 case 1: 5559 PetscCall(PetscSectionFieldGetTensorDegree_Private(section, f, eStart, vertexchart, &Nc, &k)); 5560 /* 5561 Original ordering is [ edge of length k-1; vtx0; vtx1 ] 5562 We want [ vtx0; edge of length k-1; vtx1 ] 5563 */ 5564 for (c = 0; c < Nc; c++, offset++) perm[offset] = (k - 1) * Nc + c + foffset; 5565 for (i = 0; i < k - 1; i++) 5566 for (c = 0; c < Nc; c++, offset++) perm[offset] = i * Nc + c + foffset; 5567 for (c = 0; c < Nc; c++, offset++) perm[offset] = k * Nc + c + foffset; 5568 foffset = offset; 5569 break; 5570 case 2: 5571 /* The original quad closure is oriented clockwise, {f, e_b, e_r, e_t, e_l, v_lb, v_rb, v_tr, v_tl} */ 5572 PetscCall(PetscSectionFieldGetTensorDegree_Private(section, f, eStart, vertexchart, &Nc, &k)); 5573 /* The SEM order is 5574 5575 v_lb, {e_b}, v_rb, 5576 e^{(k-1)-i}_l, {f^{i*(k-1)}}, e^i_r, 5577 v_lt, reverse {e_t}, v_rt 5578 */ 5579 { 5580 const PetscInt of = 0; 5581 const PetscInt oeb = of + PetscSqr(k - 1); 5582 const PetscInt oer = oeb + (k - 1); 5583 const PetscInt oet = oer + (k - 1); 5584 const PetscInt oel = oet + (k - 1); 5585 const PetscInt ovlb = oel + (k - 1); 5586 const PetscInt ovrb = ovlb + 1; 5587 const PetscInt ovrt = ovrb + 1; 5588 const PetscInt ovlt = ovrt + 1; 5589 PetscInt o; 5590 5591 /* bottom */ 5592 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovlb * Nc + c + foffset; 5593 for (o = oeb; o < oer; ++o) 5594 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5595 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovrb * Nc + c + foffset; 5596 /* middle */ 5597 for (i = 0; i < k - 1; ++i) { 5598 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oel + (k - 2) - i) * Nc + c + foffset; 5599 for (o = of + (k - 1) * i; o < of + (k - 1) * (i + 1); ++o) 5600 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5601 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oer + i) * Nc + c + foffset; 5602 } 5603 /* top */ 5604 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovlt * Nc + c + foffset; 5605 for (o = oel - 1; o >= oet; --o) 5606 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5607 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovrt * Nc + c + foffset; 5608 foffset = offset; 5609 } 5610 break; 5611 case 3: 5612 /* The original hex closure is 5613 5614 {c, 5615 f_b, f_t, f_f, f_b, f_r, f_l, 5616 e_bl, e_bb, e_br, e_bf, e_tf, e_tr, e_tb, e_tl, e_rf, e_lf, e_lb, e_rb, 5617 v_blf, v_blb, v_brb, v_brf, v_tlf, v_trf, v_trb, v_tlb} 5618 */ 5619 PetscCall(PetscSectionFieldGetTensorDegree_Private(section, f, eStart, vertexchart, &Nc, &k)); 5620 /* The SEM order is 5621 Bottom Slice 5622 v_blf, {e^{(k-1)-n}_bf}, v_brf, 5623 e^{i}_bl, f^{n*(k-1)+(k-1)-i}_b, e^{(k-1)-i}_br, 5624 v_blb, {e_bb}, v_brb, 5625 5626 Middle Slice (j) 5627 {e^{(k-1)-j}_lf}, {f^{j*(k-1)+n}_f}, e^j_rf, 5628 f^{i*(k-1)+j}_l, {c^{(j*(k-1) + i)*(k-1)+n}_t}, f^{j*(k-1)+i}_r, 5629 e^j_lb, {f^{j*(k-1)+(k-1)-n}_b}, e^{(k-1)-j}_rb, 5630 5631 Top Slice 5632 v_tlf, {e_tf}, v_trf, 5633 e^{(k-1)-i}_tl, {f^{i*(k-1)}_t}, e^{i}_tr, 5634 v_tlb, {e^{(k-1)-n}_tb}, v_trb, 5635 */ 5636 { 5637 const PetscInt oc = 0; 5638 const PetscInt ofb = oc + PetscSqr(k - 1) * (k - 1); 5639 const PetscInt oft = ofb + PetscSqr(k - 1); 5640 const PetscInt off = oft + PetscSqr(k - 1); 5641 const PetscInt ofk = off + PetscSqr(k - 1); 5642 const PetscInt ofr = ofk + PetscSqr(k - 1); 5643 const PetscInt ofl = ofr + PetscSqr(k - 1); 5644 const PetscInt oebl = ofl + PetscSqr(k - 1); 5645 const PetscInt oebb = oebl + (k - 1); 5646 const PetscInt oebr = oebb + (k - 1); 5647 const PetscInt oebf = oebr + (k - 1); 5648 const PetscInt oetf = oebf + (k - 1); 5649 const PetscInt oetr = oetf + (k - 1); 5650 const PetscInt oetb = oetr + (k - 1); 5651 const PetscInt oetl = oetb + (k - 1); 5652 const PetscInt oerf = oetl + (k - 1); 5653 const PetscInt oelf = oerf + (k - 1); 5654 const PetscInt oelb = oelf + (k - 1); 5655 const PetscInt oerb = oelb + (k - 1); 5656 const PetscInt ovblf = oerb + (k - 1); 5657 const PetscInt ovblb = ovblf + 1; 5658 const PetscInt ovbrb = ovblb + 1; 5659 const PetscInt ovbrf = ovbrb + 1; 5660 const PetscInt ovtlf = ovbrf + 1; 5661 const PetscInt ovtrf = ovtlf + 1; 5662 const PetscInt ovtrb = ovtrf + 1; 5663 const PetscInt ovtlb = ovtrb + 1; 5664 PetscInt o, n; 5665 5666 /* Bottom Slice */ 5667 /* bottom */ 5668 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovblf * Nc + c + foffset; 5669 for (o = oetf - 1; o >= oebf; --o) 5670 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5671 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovbrf * Nc + c + foffset; 5672 /* middle */ 5673 for (i = 0; i < k - 1; ++i) { 5674 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oebl + i) * Nc + c + foffset; 5675 for (n = 0; n < k - 1; ++n) { 5676 o = ofb + n * (k - 1) + i; 5677 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5678 } 5679 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oebr + (k - 2) - i) * Nc + c + foffset; 5680 } 5681 /* top */ 5682 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovblb * Nc + c + foffset; 5683 for (o = oebb; o < oebr; ++o) 5684 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5685 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovbrb * Nc + c + foffset; 5686 5687 /* Middle Slice */ 5688 for (j = 0; j < k - 1; ++j) { 5689 /* bottom */ 5690 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oelf + (k - 2) - j) * Nc + c + foffset; 5691 for (o = off + j * (k - 1); o < off + (j + 1) * (k - 1); ++o) 5692 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5693 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oerf + j) * Nc + c + foffset; 5694 /* middle */ 5695 for (i = 0; i < k - 1; ++i) { 5696 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (ofl + i * (k - 1) + j) * Nc + c + foffset; 5697 for (n = 0; n < k - 1; ++n) 5698 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oc + (j * (k - 1) + i) * (k - 1) + n) * Nc + c + foffset; 5699 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (ofr + j * (k - 1) + i) * Nc + c + foffset; 5700 } 5701 /* top */ 5702 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oelb + j) * Nc + c + foffset; 5703 for (o = ofk + j * (k - 1) + (k - 2); o >= ofk + j * (k - 1); --o) 5704 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5705 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oerb + (k - 2) - j) * Nc + c + foffset; 5706 } 5707 5708 /* Top Slice */ 5709 /* bottom */ 5710 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtlf * Nc + c + foffset; 5711 for (o = oetf; o < oetr; ++o) 5712 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5713 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtrf * Nc + c + foffset; 5714 /* middle */ 5715 for (i = 0; i < k - 1; ++i) { 5716 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oetl + (k - 2) - i) * Nc + c + foffset; 5717 for (n = 0; n < k - 1; ++n) 5718 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oft + i * (k - 1) + n) * Nc + c + foffset; 5719 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = (oetr + i) * Nc + c + foffset; 5720 } 5721 /* top */ 5722 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtlb * Nc + c + foffset; 5723 for (o = oetl - 1; o >= oetb; --o) 5724 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = o * Nc + c + foffset; 5725 for (c = 0; c < Nc; ++c, ++offset) perm[offset] = ovtrb * Nc + c + foffset; 5726 5727 foffset = offset; 5728 } 5729 break; 5730 default: 5731 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "No spectral ordering for dimension %" PetscInt_FMT, d); 5732 } 5733 } 5734 PetscCheck(offset == size, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Number of permutation entries %" PetscInt_FMT " != %" PetscInt_FMT, offset, size); 5735 /* Check permutation */ 5736 { 5737 PetscInt *check; 5738 5739 PetscCall(PetscMalloc1(size, &check)); 5740 for (i = 0; i < size; ++i) { 5741 check[i] = -1; 5742 PetscCheck(perm[i] >= 0 && perm[i] < size, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Invalid permutation index p[%" PetscInt_FMT "] = %" PetscInt_FMT, i, perm[i]); 5743 } 5744 for (i = 0; i < size; ++i) check[perm[i]] = i; 5745 for (i = 0; i < size; ++i) PetscCheck(check[i] >= 0, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Missing permutation index %" PetscInt_FMT, i); 5746 PetscCall(PetscFree(check)); 5747 } 5748 PetscCall(PetscSectionSetClosurePermutation_Internal(section, (PetscObject)dm, d, size, PETSC_OWN_POINTER, perm)); 5749 if (d == dim) { // Add permutation for localized (in case this is a coordinate DM) 5750 PetscInt *loc_perm; 5751 PetscCall(PetscMalloc1(size * 2, &loc_perm)); 5752 for (PetscInt i = 0; i < size; i++) { 5753 loc_perm[i] = perm[i]; 5754 loc_perm[size + i] = size + perm[i]; 5755 } 5756 PetscCall(PetscSectionSetClosurePermutation_Internal(section, (PetscObject)dm, d, size * 2, PETSC_OWN_POINTER, loc_perm)); 5757 } 5758 } 5759 PetscFunctionReturn(PETSC_SUCCESS); 5760 } 5761 5762 PetscErrorCode DMPlexGetPointDualSpaceFEM(DM dm, PetscInt point, PetscInt field, PetscDualSpace *dspace) 5763 { 5764 PetscDS prob; 5765 PetscInt depth, Nf, h; 5766 DMLabel label; 5767 5768 PetscFunctionBeginHot; 5769 PetscCall(DMGetDS(dm, &prob)); 5770 Nf = prob->Nf; 5771 label = dm->depthLabel; 5772 *dspace = NULL; 5773 if (field < Nf) { 5774 PetscObject disc = prob->disc[field]; 5775 5776 if (disc->classid == PETSCFE_CLASSID) { 5777 PetscDualSpace dsp; 5778 5779 PetscCall(PetscFEGetDualSpace((PetscFE)disc, &dsp)); 5780 PetscCall(DMLabelGetNumValues(label, &depth)); 5781 PetscCall(DMLabelGetValue(label, point, &h)); 5782 h = depth - 1 - h; 5783 if (h) { 5784 PetscCall(PetscDualSpaceGetHeightSubspace(dsp, h, dspace)); 5785 } else { 5786 *dspace = dsp; 5787 } 5788 } 5789 } 5790 PetscFunctionReturn(PETSC_SUCCESS); 5791 } 5792 5793 static inline PetscErrorCode DMPlexVecGetClosure_Depth1_Static(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt *csize, PetscScalar *values[]) 5794 { 5795 PetscScalar *array; 5796 const PetscScalar *vArray; 5797 const PetscInt *cone, *coneO; 5798 PetscInt pStart, pEnd, p, numPoints, size = 0, offset = 0; 5799 5800 PetscFunctionBeginHot; 5801 PetscCall(PetscSectionGetChart(section, &pStart, &pEnd)); 5802 PetscCall(DMPlexGetConeSize(dm, point, &numPoints)); 5803 PetscCall(DMPlexGetCone(dm, point, &cone)); 5804 PetscCall(DMPlexGetConeOrientation(dm, point, &coneO)); 5805 if (!values || !*values) { 5806 if ((point >= pStart) && (point < pEnd)) { 5807 PetscInt dof; 5808 5809 PetscCall(PetscSectionGetDof(section, point, &dof)); 5810 size += dof; 5811 } 5812 for (p = 0; p < numPoints; ++p) { 5813 const PetscInt cp = cone[p]; 5814 PetscInt dof; 5815 5816 if ((cp < pStart) || (cp >= pEnd)) continue; 5817 PetscCall(PetscSectionGetDof(section, cp, &dof)); 5818 size += dof; 5819 } 5820 if (!values) { 5821 if (csize) *csize = size; 5822 PetscFunctionReturn(PETSC_SUCCESS); 5823 } 5824 PetscCall(DMGetWorkArray(dm, size, MPIU_SCALAR, &array)); 5825 } else { 5826 array = *values; 5827 } 5828 size = 0; 5829 PetscCall(VecGetArrayRead(v, &vArray)); 5830 if ((point >= pStart) && (point < pEnd)) { 5831 PetscInt dof, off, d; 5832 const PetscScalar *varr; 5833 5834 PetscCall(PetscSectionGetDof(section, point, &dof)); 5835 PetscCall(PetscSectionGetOffset(section, point, &off)); 5836 varr = &vArray[off]; 5837 for (d = 0; d < dof; ++d, ++offset) array[offset] = varr[d]; 5838 size += dof; 5839 } 5840 for (p = 0; p < numPoints; ++p) { 5841 const PetscInt cp = cone[p]; 5842 PetscInt o = coneO[p]; 5843 PetscInt dof, off, d; 5844 const PetscScalar *varr; 5845 5846 if ((cp < pStart) || (cp >= pEnd)) continue; 5847 PetscCall(PetscSectionGetDof(section, cp, &dof)); 5848 PetscCall(PetscSectionGetOffset(section, cp, &off)); 5849 varr = &vArray[off]; 5850 if (o >= 0) { 5851 for (d = 0; d < dof; ++d, ++offset) array[offset] = varr[d]; 5852 } else { 5853 for (d = dof - 1; d >= 0; --d, ++offset) array[offset] = varr[d]; 5854 } 5855 size += dof; 5856 } 5857 PetscCall(VecRestoreArrayRead(v, &vArray)); 5858 if (!*values) { 5859 if (csize) *csize = size; 5860 *values = array; 5861 } else { 5862 PetscCheck(size <= *csize, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Size of input array %" PetscInt_FMT " < actual size %" PetscInt_FMT, *csize, size); 5863 *csize = size; 5864 } 5865 PetscFunctionReturn(PETSC_SUCCESS); 5866 } 5867 5868 /* Compress out points not in the section */ 5869 static inline PetscErrorCode CompressPoints_Private(PetscSection section, PetscInt *numPoints, PetscInt points[]) 5870 { 5871 const PetscInt np = *numPoints; 5872 PetscInt pStart, pEnd, p, q; 5873 5874 PetscCall(PetscSectionGetChart(section, &pStart, &pEnd)); 5875 for (p = 0, q = 0; p < np; ++p) { 5876 const PetscInt r = points[p * 2]; 5877 if ((r >= pStart) && (r < pEnd)) { 5878 points[q * 2] = r; 5879 points[q * 2 + 1] = points[p * 2 + 1]; 5880 ++q; 5881 } 5882 } 5883 *numPoints = q; 5884 return PETSC_SUCCESS; 5885 } 5886 5887 /* Compressed closure does not apply closure permutation */ 5888 PetscErrorCode DMPlexGetCompressedClosure(DM dm, PetscSection section, PetscInt point, PetscInt ornt, PetscInt *numPoints, PetscInt **points, PetscSection *clSec, IS *clPoints, const PetscInt **clp) 5889 { 5890 const PetscInt *cla = NULL; 5891 PetscInt np, *pts = NULL; 5892 5893 PetscFunctionBeginHot; 5894 PetscCall(PetscSectionGetClosureIndex(section, (PetscObject)dm, clSec, clPoints)); 5895 if (!ornt && *clPoints) { 5896 PetscInt dof, off; 5897 5898 PetscCall(PetscSectionGetDof(*clSec, point, &dof)); 5899 PetscCall(PetscSectionGetOffset(*clSec, point, &off)); 5900 PetscCall(ISGetIndices(*clPoints, &cla)); 5901 np = dof / 2; 5902 pts = (PetscInt *)&cla[off]; 5903 } else { 5904 PetscCall(DMPlexGetTransitiveClosure_Internal(dm, point, ornt, PETSC_TRUE, &np, &pts)); 5905 PetscCall(CompressPoints_Private(section, &np, pts)); 5906 } 5907 *numPoints = np; 5908 *points = pts; 5909 *clp = cla; 5910 PetscFunctionReturn(PETSC_SUCCESS); 5911 } 5912 5913 PetscErrorCode DMPlexRestoreCompressedClosure(DM dm, PetscSection section, PetscInt point, PetscInt *numPoints, PetscInt **points, PetscSection *clSec, IS *clPoints, const PetscInt **clp) 5914 { 5915 PetscFunctionBeginHot; 5916 if (!*clPoints) { 5917 PetscCall(DMPlexRestoreTransitiveClosure(dm, point, PETSC_TRUE, numPoints, points)); 5918 } else { 5919 PetscCall(ISRestoreIndices(*clPoints, clp)); 5920 } 5921 *numPoints = 0; 5922 *points = NULL; 5923 *clSec = NULL; 5924 *clPoints = NULL; 5925 *clp = NULL; 5926 PetscFunctionReturn(PETSC_SUCCESS); 5927 } 5928 5929 static inline PetscErrorCode DMPlexVecGetClosure_Static(DM dm, PetscSection section, PetscInt numPoints, const PetscInt points[], const PetscInt clperm[], const PetscScalar vArray[], PetscInt *size, PetscScalar array[]) 5930 { 5931 PetscInt offset = 0, p; 5932 const PetscInt **perms = NULL; 5933 const PetscScalar **flips = NULL; 5934 5935 PetscFunctionBeginHot; 5936 *size = 0; 5937 PetscCall(PetscSectionGetPointSyms(section, numPoints, points, &perms, &flips)); 5938 for (p = 0; p < numPoints; p++) { 5939 const PetscInt point = points[2 * p]; 5940 const PetscInt *perm = perms ? perms[p] : NULL; 5941 const PetscScalar *flip = flips ? flips[p] : NULL; 5942 PetscInt dof, off, d; 5943 const PetscScalar *varr; 5944 5945 PetscCall(PetscSectionGetDof(section, point, &dof)); 5946 PetscCall(PetscSectionGetOffset(section, point, &off)); 5947 varr = &vArray[off]; 5948 if (clperm) { 5949 if (perm) { 5950 for (d = 0; d < dof; d++) array[clperm[offset + perm[d]]] = varr[d]; 5951 } else { 5952 for (d = 0; d < dof; d++) array[clperm[offset + d]] = varr[d]; 5953 } 5954 if (flip) { 5955 for (d = 0; d < dof; d++) array[clperm[offset + d]] *= flip[d]; 5956 } 5957 } else { 5958 if (perm) { 5959 for (d = 0; d < dof; d++) array[offset + perm[d]] = varr[d]; 5960 } else { 5961 for (d = 0; d < dof; d++) array[offset + d] = varr[d]; 5962 } 5963 if (flip) { 5964 for (d = 0; d < dof; d++) array[offset + d] *= flip[d]; 5965 } 5966 } 5967 offset += dof; 5968 } 5969 PetscCall(PetscSectionRestorePointSyms(section, numPoints, points, &perms, &flips)); 5970 *size = offset; 5971 PetscFunctionReturn(PETSC_SUCCESS); 5972 } 5973 5974 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[]) 5975 { 5976 PetscInt offset = 0, f; 5977 5978 PetscFunctionBeginHot; 5979 *size = 0; 5980 for (f = 0; f < numFields; ++f) { 5981 PetscInt p; 5982 const PetscInt **perms = NULL; 5983 const PetscScalar **flips = NULL; 5984 5985 PetscCall(PetscSectionGetFieldPointSyms(section, f, numPoints, points, &perms, &flips)); 5986 for (p = 0; p < numPoints; p++) { 5987 const PetscInt point = points[2 * p]; 5988 PetscInt fdof, foff, b; 5989 const PetscScalar *varr; 5990 const PetscInt *perm = perms ? perms[p] : NULL; 5991 const PetscScalar *flip = flips ? flips[p] : NULL; 5992 5993 PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof)); 5994 PetscCall(PetscSectionGetFieldOffset(section, point, f, &foff)); 5995 varr = &vArray[foff]; 5996 if (clperm) { 5997 if (perm) { 5998 for (b = 0; b < fdof; b++) array[clperm[offset + perm[b]]] = varr[b]; 5999 } else { 6000 for (b = 0; b < fdof; b++) array[clperm[offset + b]] = varr[b]; 6001 } 6002 if (flip) { 6003 for (b = 0; b < fdof; b++) array[clperm[offset + b]] *= flip[b]; 6004 } 6005 } else { 6006 if (perm) { 6007 for (b = 0; b < fdof; b++) array[offset + perm[b]] = varr[b]; 6008 } else { 6009 for (b = 0; b < fdof; b++) array[offset + b] = varr[b]; 6010 } 6011 if (flip) { 6012 for (b = 0; b < fdof; b++) array[offset + b] *= flip[b]; 6013 } 6014 } 6015 offset += fdof; 6016 } 6017 PetscCall(PetscSectionRestoreFieldPointSyms(section, f, numPoints, points, &perms, &flips)); 6018 } 6019 *size = offset; 6020 PetscFunctionReturn(PETSC_SUCCESS); 6021 } 6022 6023 PetscErrorCode DMPlexVecGetOrientedClosure_Internal(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt ornt, PetscInt *csize, PetscScalar *values[]) 6024 { 6025 PetscSection clSection; 6026 IS clPoints; 6027 PetscInt *points = NULL; 6028 const PetscInt *clp, *perm; 6029 PetscInt depth, numFields, numPoints, asize; 6030 6031 PetscFunctionBeginHot; 6032 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 6033 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 6034 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 6035 PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 6036 PetscCall(DMPlexGetDepth(dm, &depth)); 6037 PetscCall(PetscSectionGetNumFields(section, &numFields)); 6038 if (depth == 1 && numFields < 2) { 6039 PetscCall(DMPlexVecGetClosure_Depth1_Static(dm, section, v, point, csize, values)); 6040 PetscFunctionReturn(PETSC_SUCCESS); 6041 } 6042 /* Get points */ 6043 PetscCall(DMPlexGetCompressedClosure(dm, section, point, ornt, &numPoints, &points, &clSection, &clPoints, &clp)); 6044 /* Get sizes */ 6045 asize = 0; 6046 for (PetscInt p = 0; p < numPoints * 2; p += 2) { 6047 PetscInt dof; 6048 PetscCall(PetscSectionGetDof(section, points[p], &dof)); 6049 asize += dof; 6050 } 6051 if (values) { 6052 const PetscScalar *vArray; 6053 PetscInt size; 6054 6055 if (*values) { 6056 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); 6057 } else PetscCall(DMGetWorkArray(dm, asize, MPIU_SCALAR, values)); 6058 PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, asize, &perm)); 6059 PetscCall(VecGetArrayRead(v, &vArray)); 6060 /* Get values */ 6061 if (numFields > 0) PetscCall(DMPlexVecGetClosure_Fields_Static(dm, section, numPoints, points, numFields, perm, vArray, &size, *values)); 6062 else PetscCall(DMPlexVecGetClosure_Static(dm, section, numPoints, points, perm, vArray, &size, *values)); 6063 PetscCheck(asize == size, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Section size %" PetscInt_FMT " does not match Vec closure size %" PetscInt_FMT, asize, size); 6064 /* Cleanup array */ 6065 PetscCall(VecRestoreArrayRead(v, &vArray)); 6066 } 6067 if (csize) *csize = asize; 6068 /* Cleanup points */ 6069 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp)); 6070 PetscFunctionReturn(PETSC_SUCCESS); 6071 } 6072 6073 /*@C 6074 DMPlexVecGetClosure - Get an array of the values on the closure of 'point' 6075 6076 Not collective 6077 6078 Input Parameters: 6079 + dm - The `DM` 6080 . section - The section describing the layout in `v`, or `NULL` to use the default section 6081 . v - The local vector 6082 - point - The point in the `DM` 6083 6084 Input/Output Parameters: 6085 + csize - The size of the input values array, or `NULL`; on output the number of values in the closure 6086 - values - An array to use for the values, or `NULL` to have it allocated automatically; 6087 if the user provided `NULL`, it is a borrowed array and should not be freed 6088 6089 Level: intermediate 6090 6091 Notes: 6092 `DMPlexVecGetClosure()`/`DMPlexVecRestoreClosure()` only allocates the values array if it set to `NULL` in the 6093 calling function. This is because `DMPlexVecGetClosure()` is typically called in the inner loop of a `Vec` or `Mat` 6094 assembly function, and a user may already have allocated storage for this operation. 6095 6096 A typical use could be 6097 .vb 6098 values = NULL; 6099 PetscCall(DMPlexVecGetClosure(dm, NULL, v, p, &clSize, &values)); 6100 for (cl = 0; cl < clSize; ++cl) { 6101 <Compute on closure> 6102 } 6103 PetscCall(DMPlexVecRestoreClosure(dm, NULL, v, p, &clSize, &values)); 6104 .ve 6105 or 6106 .vb 6107 PetscMalloc1(clMaxSize, &values); 6108 for (p = pStart; p < pEnd; ++p) { 6109 clSize = clMaxSize; 6110 PetscCall(DMPlexVecGetClosure(dm, NULL, v, p, &clSize, &values)); 6111 for (cl = 0; cl < clSize; ++cl) { 6112 <Compute on closure> 6113 } 6114 } 6115 PetscFree(values); 6116 .ve 6117 6118 Fortran Notes: 6119 The `csize` argument is not present in the Fortran binding since it is internal to the array. 6120 6121 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexVecRestoreClosure()`, `DMPlexVecSetClosure()`, `DMPlexMatSetClosure()` 6122 @*/ 6123 PetscErrorCode DMPlexVecGetClosure(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt *csize, PetscScalar *values[]) 6124 { 6125 PetscFunctionBeginHot; 6126 PetscCall(DMPlexVecGetOrientedClosure_Internal(dm, section, v, point, 0, csize, values)); 6127 PetscFunctionReturn(PETSC_SUCCESS); 6128 } 6129 6130 PetscErrorCode DMPlexVecGetClosureAtDepth_Internal(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt depth, PetscInt *csize, PetscScalar *values[]) 6131 { 6132 DMLabel depthLabel; 6133 PetscSection clSection; 6134 IS clPoints; 6135 PetscScalar *array; 6136 const PetscScalar *vArray; 6137 PetscInt *points = NULL; 6138 const PetscInt *clp, *perm = NULL; 6139 PetscInt mdepth, numFields, numPoints, Np = 0, p, clsize, size; 6140 6141 PetscFunctionBeginHot; 6142 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 6143 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 6144 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 6145 PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 6146 PetscCall(DMPlexGetDepth(dm, &mdepth)); 6147 PetscCall(DMPlexGetDepthLabel(dm, &depthLabel)); 6148 PetscCall(PetscSectionGetNumFields(section, &numFields)); 6149 if (mdepth == 1 && numFields < 2) { 6150 PetscCall(DMPlexVecGetClosure_Depth1_Static(dm, section, v, point, csize, values)); 6151 PetscFunctionReturn(PETSC_SUCCESS); 6152 } 6153 /* Get points */ 6154 PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &numPoints, &points, &clSection, &clPoints, &clp)); 6155 for (clsize = 0, p = 0; p < Np; p++) { 6156 PetscInt dof; 6157 PetscCall(PetscSectionGetDof(section, points[2 * p], &dof)); 6158 clsize += dof; 6159 } 6160 PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, clsize, &perm)); 6161 /* Filter points */ 6162 for (p = 0; p < numPoints * 2; p += 2) { 6163 PetscInt dep; 6164 6165 PetscCall(DMLabelGetValue(depthLabel, points[p], &dep)); 6166 if (dep != depth) continue; 6167 points[Np * 2 + 0] = points[p]; 6168 points[Np * 2 + 1] = points[p + 1]; 6169 ++Np; 6170 } 6171 /* Get array */ 6172 if (!values || !*values) { 6173 PetscInt asize = 0, dof; 6174 6175 for (p = 0; p < Np * 2; p += 2) { 6176 PetscCall(PetscSectionGetDof(section, points[p], &dof)); 6177 asize += dof; 6178 } 6179 if (!values) { 6180 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp)); 6181 if (csize) *csize = asize; 6182 PetscFunctionReturn(PETSC_SUCCESS); 6183 } 6184 PetscCall(DMGetWorkArray(dm, asize, MPIU_SCALAR, &array)); 6185 } else { 6186 array = *values; 6187 } 6188 PetscCall(VecGetArrayRead(v, &vArray)); 6189 /* Get values */ 6190 if (numFields > 0) PetscCall(DMPlexVecGetClosure_Fields_Static(dm, section, Np, points, numFields, perm, vArray, &size, array)); 6191 else PetscCall(DMPlexVecGetClosure_Static(dm, section, Np, points, perm, vArray, &size, array)); 6192 /* Cleanup points */ 6193 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp)); 6194 /* Cleanup array */ 6195 PetscCall(VecRestoreArrayRead(v, &vArray)); 6196 if (!*values) { 6197 if (csize) *csize = size; 6198 *values = array; 6199 } else { 6200 PetscCheck(size <= *csize, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Size of input array %" PetscInt_FMT " < actual size %" PetscInt_FMT, *csize, size); 6201 *csize = size; 6202 } 6203 PetscFunctionReturn(PETSC_SUCCESS); 6204 } 6205 6206 /*@C 6207 DMPlexVecRestoreClosure - Restore the array of the values on the closure of 'point' 6208 6209 Not collective 6210 6211 Input Parameters: 6212 + dm - The `DM` 6213 . section - The section describing the layout in `v`, or `NULL` to use the default section 6214 . v - The local vector 6215 . point - The point in the `DM` 6216 . csize - The number of values in the closure, or `NULL` 6217 - values - The array of values, which is a borrowed array and should not be freed 6218 6219 Level: intermediate 6220 6221 Note: 6222 The array values are discarded and not copied back into `v`. In order to copy values back to `v`, use `DMPlexVecSetClosure()` 6223 6224 Fortran Notes: 6225 The `csize` argument is not present in the Fortran binding since it is internal to the array. 6226 6227 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexVecGetClosure()`, `DMPlexVecSetClosure()`, `DMPlexMatSetClosure()` 6228 @*/ 6229 PetscErrorCode DMPlexVecRestoreClosure(DM dm, PetscSection section, Vec v, PetscInt point, PetscInt *csize, PetscScalar *values[]) 6230 { 6231 PetscInt size = 0; 6232 6233 PetscFunctionBegin; 6234 /* Should work without recalculating size */ 6235 PetscCall(DMRestoreWorkArray(dm, size, MPIU_SCALAR, (void *)values)); 6236 *values = NULL; 6237 PetscFunctionReturn(PETSC_SUCCESS); 6238 } 6239 6240 static inline void add(PetscScalar *x, PetscScalar y) 6241 { 6242 *x += y; 6243 } 6244 static inline void insert(PetscScalar *x, PetscScalar y) 6245 { 6246 *x = y; 6247 } 6248 6249 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[]) 6250 { 6251 PetscInt cdof; /* The number of constraints on this point */ 6252 const PetscInt *cdofs; /* The indices of the constrained dofs on this point */ 6253 PetscScalar *a; 6254 PetscInt off, cind = 0, k; 6255 6256 PetscFunctionBegin; 6257 PetscCall(PetscSectionGetConstraintDof(section, point, &cdof)); 6258 PetscCall(PetscSectionGetOffset(section, point, &off)); 6259 a = &array[off]; 6260 if (!cdof || setBC) { 6261 if (clperm) { 6262 if (perm) { 6263 for (k = 0; k < dof; ++k) fuse(&a[k], values[clperm[offset + perm[k]]] * (flip ? flip[perm[k]] : 1.)); 6264 } else { 6265 for (k = 0; k < dof; ++k) fuse(&a[k], values[clperm[offset + k]] * (flip ? flip[k] : 1.)); 6266 } 6267 } else { 6268 if (perm) { 6269 for (k = 0; k < dof; ++k) fuse(&a[k], values[offset + perm[k]] * (flip ? flip[perm[k]] : 1.)); 6270 } else { 6271 for (k = 0; k < dof; ++k) fuse(&a[k], values[offset + k] * (flip ? flip[k] : 1.)); 6272 } 6273 } 6274 } else { 6275 PetscCall(PetscSectionGetConstraintIndices(section, point, &cdofs)); 6276 if (clperm) { 6277 if (perm) { 6278 for (k = 0; k < dof; ++k) { 6279 if ((cind < cdof) && (k == cdofs[cind])) { 6280 ++cind; 6281 continue; 6282 } 6283 fuse(&a[k], values[clperm[offset + perm[k]]] * (flip ? flip[perm[k]] : 1.)); 6284 } 6285 } else { 6286 for (k = 0; k < dof; ++k) { 6287 if ((cind < cdof) && (k == cdofs[cind])) { 6288 ++cind; 6289 continue; 6290 } 6291 fuse(&a[k], values[clperm[offset + k]] * (flip ? flip[k] : 1.)); 6292 } 6293 } 6294 } else { 6295 if (perm) { 6296 for (k = 0; k < dof; ++k) { 6297 if ((cind < cdof) && (k == cdofs[cind])) { 6298 ++cind; 6299 continue; 6300 } 6301 fuse(&a[k], values[offset + perm[k]] * (flip ? flip[perm[k]] : 1.)); 6302 } 6303 } else { 6304 for (k = 0; k < dof; ++k) { 6305 if ((cind < cdof) && (k == cdofs[cind])) { 6306 ++cind; 6307 continue; 6308 } 6309 fuse(&a[k], values[offset + k] * (flip ? flip[k] : 1.)); 6310 } 6311 } 6312 } 6313 } 6314 PetscFunctionReturn(PETSC_SUCCESS); 6315 } 6316 6317 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[]) 6318 { 6319 PetscInt cdof; /* The number of constraints on this point */ 6320 const PetscInt *cdofs; /* The indices of the constrained dofs on this point */ 6321 PetscScalar *a; 6322 PetscInt off, cind = 0, k; 6323 6324 PetscFunctionBegin; 6325 PetscCall(PetscSectionGetConstraintDof(section, point, &cdof)); 6326 PetscCall(PetscSectionGetOffset(section, point, &off)); 6327 a = &array[off]; 6328 if (cdof) { 6329 PetscCall(PetscSectionGetConstraintIndices(section, point, &cdofs)); 6330 if (clperm) { 6331 if (perm) { 6332 for (k = 0; k < dof; ++k) { 6333 if ((cind < cdof) && (k == cdofs[cind])) { 6334 fuse(&a[k], values[clperm[offset + perm[k]]] * (flip ? flip[perm[k]] : 1.)); 6335 cind++; 6336 } 6337 } 6338 } else { 6339 for (k = 0; k < dof; ++k) { 6340 if ((cind < cdof) && (k == cdofs[cind])) { 6341 fuse(&a[k], values[clperm[offset + k]] * (flip ? flip[k] : 1.)); 6342 cind++; 6343 } 6344 } 6345 } 6346 } else { 6347 if (perm) { 6348 for (k = 0; k < dof; ++k) { 6349 if ((cind < cdof) && (k == cdofs[cind])) { 6350 fuse(&a[k], values[offset + perm[k]] * (flip ? flip[perm[k]] : 1.)); 6351 cind++; 6352 } 6353 } 6354 } else { 6355 for (k = 0; k < dof; ++k) { 6356 if ((cind < cdof) && (k == cdofs[cind])) { 6357 fuse(&a[k], values[offset + k] * (flip ? flip[k] : 1.)); 6358 cind++; 6359 } 6360 } 6361 } 6362 } 6363 } 6364 PetscFunctionReturn(PETSC_SUCCESS); 6365 } 6366 6367 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[]) 6368 { 6369 PetscScalar *a; 6370 PetscInt fdof, foff, fcdof, foffset = *offset; 6371 const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */ 6372 PetscInt cind = 0, b; 6373 6374 PetscFunctionBegin; 6375 PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof)); 6376 PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &fcdof)); 6377 PetscCall(PetscSectionGetFieldOffset(section, point, f, &foff)); 6378 a = &array[foff]; 6379 if (!fcdof || setBC) { 6380 if (clperm) { 6381 if (perm) { 6382 for (b = 0; b < fdof; b++) fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.)); 6383 } else { 6384 for (b = 0; b < fdof; b++) fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.)); 6385 } 6386 } else { 6387 if (perm) { 6388 for (b = 0; b < fdof; b++) fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.)); 6389 } else { 6390 for (b = 0; b < fdof; b++) fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.)); 6391 } 6392 } 6393 } else { 6394 PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs)); 6395 if (clperm) { 6396 if (perm) { 6397 for (b = 0; b < fdof; b++) { 6398 if ((cind < fcdof) && (b == fcdofs[cind])) { 6399 ++cind; 6400 continue; 6401 } 6402 fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.)); 6403 } 6404 } else { 6405 for (b = 0; b < fdof; b++) { 6406 if ((cind < fcdof) && (b == fcdofs[cind])) { 6407 ++cind; 6408 continue; 6409 } 6410 fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.)); 6411 } 6412 } 6413 } else { 6414 if (perm) { 6415 for (b = 0; b < fdof; b++) { 6416 if ((cind < fcdof) && (b == fcdofs[cind])) { 6417 ++cind; 6418 continue; 6419 } 6420 fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.)); 6421 } 6422 } else { 6423 for (b = 0; b < fdof; b++) { 6424 if ((cind < fcdof) && (b == fcdofs[cind])) { 6425 ++cind; 6426 continue; 6427 } 6428 fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.)); 6429 } 6430 } 6431 } 6432 } 6433 *offset += fdof; 6434 PetscFunctionReturn(PETSC_SUCCESS); 6435 } 6436 6437 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[]) 6438 { 6439 PetscScalar *a; 6440 PetscInt fdof, foff, fcdof, foffset = *offset; 6441 const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */ 6442 PetscInt Nc, cind = 0, ncind = 0, b; 6443 PetscBool ncSet, fcSet; 6444 6445 PetscFunctionBegin; 6446 PetscCall(PetscSectionGetFieldComponents(section, f, &Nc)); 6447 PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof)); 6448 PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &fcdof)); 6449 PetscCall(PetscSectionGetFieldOffset(section, point, f, &foff)); 6450 a = &array[foff]; 6451 if (fcdof) { 6452 /* We just override fcdof and fcdofs with Ncc and comps */ 6453 PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs)); 6454 if (clperm) { 6455 if (perm) { 6456 if (comps) { 6457 for (b = 0; b < fdof; b++) { 6458 ncSet = fcSet = PETSC_FALSE; 6459 if (b % Nc == comps[ncind]) { 6460 ncind = (ncind + 1) % Ncc; 6461 ncSet = PETSC_TRUE; 6462 } 6463 if ((cind < fcdof) && (b == fcdofs[cind])) { 6464 ++cind; 6465 fcSet = PETSC_TRUE; 6466 } 6467 if (ncSet && fcSet) fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.)); 6468 } 6469 } else { 6470 for (b = 0; b < fdof; b++) { 6471 if ((cind < fcdof) && (b == fcdofs[cind])) { 6472 fuse(&a[b], values[clperm[foffset + perm[b]]] * (flip ? flip[perm[b]] : 1.)); 6473 ++cind; 6474 } 6475 } 6476 } 6477 } else { 6478 if (comps) { 6479 for (b = 0; b < fdof; b++) { 6480 ncSet = fcSet = PETSC_FALSE; 6481 if (b % Nc == comps[ncind]) { 6482 ncind = (ncind + 1) % Ncc; 6483 ncSet = PETSC_TRUE; 6484 } 6485 if ((cind < fcdof) && (b == fcdofs[cind])) { 6486 ++cind; 6487 fcSet = PETSC_TRUE; 6488 } 6489 if (ncSet && fcSet) fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.)); 6490 } 6491 } else { 6492 for (b = 0; b < fdof; b++) { 6493 if ((cind < fcdof) && (b == fcdofs[cind])) { 6494 fuse(&a[b], values[clperm[foffset + b]] * (flip ? flip[b] : 1.)); 6495 ++cind; 6496 } 6497 } 6498 } 6499 } 6500 } else { 6501 if (perm) { 6502 if (comps) { 6503 for (b = 0; b < fdof; b++) { 6504 ncSet = fcSet = PETSC_FALSE; 6505 if (b % Nc == comps[ncind]) { 6506 ncind = (ncind + 1) % Ncc; 6507 ncSet = PETSC_TRUE; 6508 } 6509 if ((cind < fcdof) && (b == fcdofs[cind])) { 6510 ++cind; 6511 fcSet = PETSC_TRUE; 6512 } 6513 if (ncSet && fcSet) fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.)); 6514 } 6515 } else { 6516 for (b = 0; b < fdof; b++) { 6517 if ((cind < fcdof) && (b == fcdofs[cind])) { 6518 fuse(&a[b], values[foffset + perm[b]] * (flip ? flip[perm[b]] : 1.)); 6519 ++cind; 6520 } 6521 } 6522 } 6523 } else { 6524 if (comps) { 6525 for (b = 0; b < fdof; b++) { 6526 ncSet = fcSet = PETSC_FALSE; 6527 if (b % Nc == comps[ncind]) { 6528 ncind = (ncind + 1) % Ncc; 6529 ncSet = PETSC_TRUE; 6530 } 6531 if ((cind < fcdof) && (b == fcdofs[cind])) { 6532 ++cind; 6533 fcSet = PETSC_TRUE; 6534 } 6535 if (ncSet && fcSet) fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.)); 6536 } 6537 } else { 6538 for (b = 0; b < fdof; b++) { 6539 if ((cind < fcdof) && (b == fcdofs[cind])) { 6540 fuse(&a[b], values[foffset + b] * (flip ? flip[b] : 1.)); 6541 ++cind; 6542 } 6543 } 6544 } 6545 } 6546 } 6547 } 6548 *offset += fdof; 6549 PetscFunctionReturn(PETSC_SUCCESS); 6550 } 6551 6552 static inline PetscErrorCode DMPlexVecSetClosure_Depth1_Static(DM dm, PetscSection section, Vec v, PetscInt point, const PetscScalar values[], InsertMode mode) 6553 { 6554 PetscScalar *array; 6555 const PetscInt *cone, *coneO; 6556 PetscInt pStart, pEnd, p, numPoints, off, dof; 6557 6558 PetscFunctionBeginHot; 6559 PetscCall(PetscSectionGetChart(section, &pStart, &pEnd)); 6560 PetscCall(DMPlexGetConeSize(dm, point, &numPoints)); 6561 PetscCall(DMPlexGetCone(dm, point, &cone)); 6562 PetscCall(DMPlexGetConeOrientation(dm, point, &coneO)); 6563 PetscCall(VecGetArray(v, &array)); 6564 for (p = 0, off = 0; p <= numPoints; ++p, off += dof) { 6565 const PetscInt cp = !p ? point : cone[p - 1]; 6566 const PetscInt o = !p ? 0 : coneO[p - 1]; 6567 6568 if ((cp < pStart) || (cp >= pEnd)) { 6569 dof = 0; 6570 continue; 6571 } 6572 PetscCall(PetscSectionGetDof(section, cp, &dof)); 6573 /* ADD_VALUES */ 6574 { 6575 const PetscInt *cdofs; /* The indices of the constrained dofs on this point */ 6576 PetscScalar *a; 6577 PetscInt cdof, coff, cind = 0, k; 6578 6579 PetscCall(PetscSectionGetConstraintDof(section, cp, &cdof)); 6580 PetscCall(PetscSectionGetOffset(section, cp, &coff)); 6581 a = &array[coff]; 6582 if (!cdof) { 6583 if (o >= 0) { 6584 for (k = 0; k < dof; ++k) a[k] += values[off + k]; 6585 } else { 6586 for (k = 0; k < dof; ++k) a[k] += values[off + dof - k - 1]; 6587 } 6588 } else { 6589 PetscCall(PetscSectionGetConstraintIndices(section, cp, &cdofs)); 6590 if (o >= 0) { 6591 for (k = 0; k < dof; ++k) { 6592 if ((cind < cdof) && (k == cdofs[cind])) { 6593 ++cind; 6594 continue; 6595 } 6596 a[k] += values[off + k]; 6597 } 6598 } else { 6599 for (k = 0; k < dof; ++k) { 6600 if ((cind < cdof) && (k == cdofs[cind])) { 6601 ++cind; 6602 continue; 6603 } 6604 a[k] += values[off + dof - k - 1]; 6605 } 6606 } 6607 } 6608 } 6609 } 6610 PetscCall(VecRestoreArray(v, &array)); 6611 PetscFunctionReturn(PETSC_SUCCESS); 6612 } 6613 6614 /*@C 6615 DMPlexVecSetClosure - Set an array of the values on the closure of `point` 6616 6617 Not collective 6618 6619 Input Parameters: 6620 + dm - The `DM` 6621 . section - The section describing the layout in `v`, or `NULL` to use the default section 6622 . v - The local vector 6623 . point - The point in the `DM` 6624 . values - The array of values 6625 - mode - The insert mode. One of `INSERT_ALL_VALUES`, `ADD_ALL_VALUES`, `INSERT_VALUES`, `ADD_VALUES`, `INSERT_BC_VALUES`, and `ADD_BC_VALUES`, 6626 where `INSERT_ALL_VALUES` and `ADD_ALL_VALUES` also overwrite boundary conditions. 6627 6628 Level: intermediate 6629 6630 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexVecGetClosure()`, `DMPlexMatSetClosure()` 6631 @*/ 6632 PetscErrorCode DMPlexVecSetClosure(DM dm, PetscSection section, Vec v, PetscInt point, const PetscScalar values[], InsertMode mode) 6633 { 6634 PetscSection clSection; 6635 IS clPoints; 6636 PetscScalar *array; 6637 PetscInt *points = NULL; 6638 const PetscInt *clp, *clperm = NULL; 6639 PetscInt depth, numFields, numPoints, p, clsize; 6640 6641 PetscFunctionBeginHot; 6642 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 6643 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 6644 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 6645 PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 6646 PetscCall(DMPlexGetDepth(dm, &depth)); 6647 PetscCall(PetscSectionGetNumFields(section, &numFields)); 6648 if (depth == 1 && numFields < 2 && mode == ADD_VALUES) { 6649 PetscCall(DMPlexVecSetClosure_Depth1_Static(dm, section, v, point, values, mode)); 6650 PetscFunctionReturn(PETSC_SUCCESS); 6651 } 6652 /* Get points */ 6653 PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &numPoints, &points, &clSection, &clPoints, &clp)); 6654 for (clsize = 0, p = 0; p < numPoints; p++) { 6655 PetscInt dof; 6656 PetscCall(PetscSectionGetDof(section, points[2 * p], &dof)); 6657 clsize += dof; 6658 } 6659 PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, clsize, &clperm)); 6660 /* Get array */ 6661 PetscCall(VecGetArray(v, &array)); 6662 /* Get values */ 6663 if (numFields > 0) { 6664 PetscInt offset = 0, f; 6665 for (f = 0; f < numFields; ++f) { 6666 const PetscInt **perms = NULL; 6667 const PetscScalar **flips = NULL; 6668 6669 PetscCall(PetscSectionGetFieldPointSyms(section, f, numPoints, points, &perms, &flips)); 6670 switch (mode) { 6671 case INSERT_VALUES: 6672 for (p = 0; p < numPoints; p++) { 6673 const PetscInt point = points[2 * p]; 6674 const PetscInt *perm = perms ? perms[p] : NULL; 6675 const PetscScalar *flip = flips ? flips[p] : NULL; 6676 PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_FALSE, clperm, values, &offset, array)); 6677 } 6678 break; 6679 case INSERT_ALL_VALUES: 6680 for (p = 0; p < numPoints; p++) { 6681 const PetscInt point = points[2 * p]; 6682 const PetscInt *perm = perms ? perms[p] : NULL; 6683 const PetscScalar *flip = flips ? flips[p] : NULL; 6684 PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_TRUE, clperm, values, &offset, array)); 6685 } 6686 break; 6687 case INSERT_BC_VALUES: 6688 for (p = 0; p < numPoints; p++) { 6689 const PetscInt point = points[2 * p]; 6690 const PetscInt *perm = perms ? perms[p] : NULL; 6691 const PetscScalar *flip = flips ? flips[p] : NULL; 6692 PetscCall(updatePointFieldsBC_private(section, point, perm, flip, f, -1, NULL, insert, clperm, values, &offset, array)); 6693 } 6694 break; 6695 case ADD_VALUES: 6696 for (p = 0; p < numPoints; p++) { 6697 const PetscInt point = points[2 * p]; 6698 const PetscInt *perm = perms ? perms[p] : NULL; 6699 const PetscScalar *flip = flips ? flips[p] : NULL; 6700 PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_FALSE, clperm, values, &offset, array)); 6701 } 6702 break; 6703 case ADD_ALL_VALUES: 6704 for (p = 0; p < numPoints; p++) { 6705 const PetscInt point = points[2 * p]; 6706 const PetscInt *perm = perms ? perms[p] : NULL; 6707 const PetscScalar *flip = flips ? flips[p] : NULL; 6708 PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_TRUE, clperm, values, &offset, array)); 6709 } 6710 break; 6711 case ADD_BC_VALUES: 6712 for (p = 0; p < numPoints; p++) { 6713 const PetscInt point = points[2 * p]; 6714 const PetscInt *perm = perms ? perms[p] : NULL; 6715 const PetscScalar *flip = flips ? flips[p] : NULL; 6716 PetscCall(updatePointFieldsBC_private(section, point, perm, flip, f, -1, NULL, add, clperm, values, &offset, array)); 6717 } 6718 break; 6719 default: 6720 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Invalid insert mode %d", mode); 6721 } 6722 PetscCall(PetscSectionRestoreFieldPointSyms(section, f, numPoints, points, &perms, &flips)); 6723 } 6724 } else { 6725 PetscInt dof, off; 6726 const PetscInt **perms = NULL; 6727 const PetscScalar **flips = NULL; 6728 6729 PetscCall(PetscSectionGetPointSyms(section, numPoints, points, &perms, &flips)); 6730 switch (mode) { 6731 case INSERT_VALUES: 6732 for (p = 0, off = 0; p < numPoints; p++, off += dof) { 6733 const PetscInt point = points[2 * p]; 6734 const PetscInt *perm = perms ? perms[p] : NULL; 6735 const PetscScalar *flip = flips ? flips[p] : NULL; 6736 PetscCall(PetscSectionGetDof(section, point, &dof)); 6737 PetscCall(updatePoint_private(section, point, dof, insert, PETSC_FALSE, perm, flip, clperm, values, off, array)); 6738 } 6739 break; 6740 case INSERT_ALL_VALUES: 6741 for (p = 0, off = 0; p < numPoints; p++, off += dof) { 6742 const PetscInt point = points[2 * p]; 6743 const PetscInt *perm = perms ? perms[p] : NULL; 6744 const PetscScalar *flip = flips ? flips[p] : NULL; 6745 PetscCall(PetscSectionGetDof(section, point, &dof)); 6746 PetscCall(updatePoint_private(section, point, dof, insert, PETSC_TRUE, perm, flip, clperm, values, off, array)); 6747 } 6748 break; 6749 case INSERT_BC_VALUES: 6750 for (p = 0, off = 0; p < numPoints; p++, off += dof) { 6751 const PetscInt point = points[2 * p]; 6752 const PetscInt *perm = perms ? perms[p] : NULL; 6753 const PetscScalar *flip = flips ? flips[p] : NULL; 6754 PetscCall(PetscSectionGetDof(section, point, &dof)); 6755 PetscCall(updatePointBC_private(section, point, dof, insert, perm, flip, clperm, values, off, array)); 6756 } 6757 break; 6758 case ADD_VALUES: 6759 for (p = 0, off = 0; p < numPoints; p++, off += dof) { 6760 const PetscInt point = points[2 * p]; 6761 const PetscInt *perm = perms ? perms[p] : NULL; 6762 const PetscScalar *flip = flips ? flips[p] : NULL; 6763 PetscCall(PetscSectionGetDof(section, point, &dof)); 6764 PetscCall(updatePoint_private(section, point, dof, add, PETSC_FALSE, perm, flip, clperm, values, off, array)); 6765 } 6766 break; 6767 case ADD_ALL_VALUES: 6768 for (p = 0, off = 0; p < numPoints; p++, off += dof) { 6769 const PetscInt point = points[2 * p]; 6770 const PetscInt *perm = perms ? perms[p] : NULL; 6771 const PetscScalar *flip = flips ? flips[p] : NULL; 6772 PetscCall(PetscSectionGetDof(section, point, &dof)); 6773 PetscCall(updatePoint_private(section, point, dof, add, PETSC_TRUE, perm, flip, clperm, values, off, array)); 6774 } 6775 break; 6776 case ADD_BC_VALUES: 6777 for (p = 0, off = 0; p < numPoints; p++, off += dof) { 6778 const PetscInt point = points[2 * p]; 6779 const PetscInt *perm = perms ? perms[p] : NULL; 6780 const PetscScalar *flip = flips ? flips[p] : NULL; 6781 PetscCall(PetscSectionGetDof(section, point, &dof)); 6782 PetscCall(updatePointBC_private(section, point, dof, add, perm, flip, clperm, values, off, array)); 6783 } 6784 break; 6785 default: 6786 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Invalid insert mode %d", mode); 6787 } 6788 PetscCall(PetscSectionRestorePointSyms(section, numPoints, points, &perms, &flips)); 6789 } 6790 /* Cleanup points */ 6791 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp)); 6792 /* Cleanup array */ 6793 PetscCall(VecRestoreArray(v, &array)); 6794 PetscFunctionReturn(PETSC_SUCCESS); 6795 } 6796 6797 PetscErrorCode DMPlexVecSetStar(DM dm, PetscSection section, Vec v, PetscInt point, const PetscScalar values[], InsertMode mode) 6798 { 6799 const PetscInt *supp, *cone; 6800 PetscScalar *a; 6801 PetscInt dim, Ns, dof, off, n = 0; 6802 6803 PetscFunctionBegin; 6804 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 6805 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 6806 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 6807 PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 6808 if (PetscDefined(USE_DEBUG)) { 6809 PetscInt vStart, vEnd; 6810 6811 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 6812 PetscCheck(point >= vStart && point < vEnd, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Point %" PetscInt_FMT " must be a vertex in [%" PetscInt_FMT ", %" PetscInt_FMT "]", point, vStart, vEnd); 6813 } 6814 PetscAssertPointer(values, 5); 6815 6816 PetscCall(DMGetDimension(dm, &dim)); 6817 PetscCall(DMPlexGetSupportSize(dm, point, &Ns)); 6818 PetscCall(DMPlexGetSupport(dm, point, &supp)); 6819 PetscCheck(Ns == 2 * dim, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Point %" PetscInt_FMT " has support size %" PetscInt_FMT " != %" PetscInt_FMT, point, Ns, 2 * dim); 6820 PetscCall(VecGetArray(v, &a)); 6821 PetscCall(PetscSectionGetDof(section, point, &dof)); 6822 PetscCall(PetscSectionGetOffset(section, point, &off)); 6823 for (PetscInt i = 0; i < dof; ++i) a[off + i] = values[n++]; 6824 for (PetscInt d = 0; d < dim; ++d) { 6825 // Left edge 6826 PetscCall(DMPlexGetCone(dm, supp[2 * d + 0], &cone)); 6827 PetscCall(PetscSectionGetDof(section, cone[0], &dof)); 6828 PetscCall(PetscSectionGetOffset(section, cone[0], &off)); 6829 for (PetscInt i = 0; i < dof; ++i) a[off + i] = values[n++]; 6830 // Right edge 6831 PetscCall(DMPlexGetCone(dm, supp[2 * d + 1], &cone)); 6832 PetscCall(PetscSectionGetDof(section, cone[1], &dof)); 6833 PetscCall(PetscSectionGetOffset(section, cone[1], &off)); 6834 for (PetscInt i = 0; i < dof; ++i) a[off + i] = values[n++]; 6835 } 6836 PetscCall(VecRestoreArray(v, &a)); 6837 PetscFunctionReturn(PETSC_SUCCESS); 6838 } 6839 6840 /* Check whether the given point is in the label. If not, update the offset to skip this point */ 6841 static inline PetscErrorCode CheckPoint_Private(DMLabel label, PetscInt labelId, PetscSection section, PetscInt point, PetscInt f, PetscInt *offset, PetscBool *contains) 6842 { 6843 PetscFunctionBegin; 6844 *contains = PETSC_TRUE; 6845 if (label) { 6846 PetscInt fdof; 6847 6848 PetscCall(DMLabelStratumHasPoint(label, labelId, point, contains)); 6849 if (!*contains) { 6850 PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof)); 6851 *offset += fdof; 6852 PetscFunctionReturn(PETSC_SUCCESS); 6853 } 6854 } 6855 PetscFunctionReturn(PETSC_SUCCESS); 6856 } 6857 6858 /* Unlike DMPlexVecSetClosure(), this uses plex-native closure permutation, not a user-specified permutation such as DMPlexSetClosurePermutationTensor(). */ 6859 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) 6860 { 6861 PetscSection clSection; 6862 IS clPoints; 6863 PetscScalar *array; 6864 PetscInt *points = NULL; 6865 const PetscInt *clp; 6866 PetscInt numFields, numPoints, p; 6867 PetscInt offset = 0, f; 6868 6869 PetscFunctionBeginHot; 6870 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 6871 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 6872 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 6873 PetscValidHeaderSpecific(v, VEC_CLASSID, 3); 6874 PetscCall(PetscSectionGetNumFields(section, &numFields)); 6875 /* Get points */ 6876 PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &numPoints, &points, &clSection, &clPoints, &clp)); 6877 /* Get array */ 6878 PetscCall(VecGetArray(v, &array)); 6879 /* Get values */ 6880 for (f = 0; f < numFields; ++f) { 6881 const PetscInt **perms = NULL; 6882 const PetscScalar **flips = NULL; 6883 PetscBool contains; 6884 6885 if (!fieldActive[f]) { 6886 for (p = 0; p < numPoints * 2; p += 2) { 6887 PetscInt fdof; 6888 PetscCall(PetscSectionGetFieldDof(section, points[p], f, &fdof)); 6889 offset += fdof; 6890 } 6891 continue; 6892 } 6893 PetscCall(PetscSectionGetFieldPointSyms(section, f, numPoints, points, &perms, &flips)); 6894 switch (mode) { 6895 case INSERT_VALUES: 6896 for (p = 0; p < numPoints; p++) { 6897 const PetscInt point = points[2 * p]; 6898 const PetscInt *perm = perms ? perms[p] : NULL; 6899 const PetscScalar *flip = flips ? flips[p] : NULL; 6900 PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains)); 6901 if (!contains) continue; 6902 PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_FALSE, NULL, values, &offset, array)); 6903 } 6904 break; 6905 case INSERT_ALL_VALUES: 6906 for (p = 0; p < numPoints; p++) { 6907 const PetscInt point = points[2 * p]; 6908 const PetscInt *perm = perms ? perms[p] : NULL; 6909 const PetscScalar *flip = flips ? flips[p] : NULL; 6910 PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains)); 6911 if (!contains) continue; 6912 PetscCall(updatePointFields_private(section, point, perm, flip, f, insert, PETSC_TRUE, NULL, values, &offset, array)); 6913 } 6914 break; 6915 case INSERT_BC_VALUES: 6916 for (p = 0; p < numPoints; p++) { 6917 const PetscInt point = points[2 * p]; 6918 const PetscInt *perm = perms ? perms[p] : NULL; 6919 const PetscScalar *flip = flips ? flips[p] : NULL; 6920 PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains)); 6921 if (!contains) continue; 6922 PetscCall(updatePointFieldsBC_private(section, point, perm, flip, f, Ncc, comps, insert, NULL, values, &offset, array)); 6923 } 6924 break; 6925 case ADD_VALUES: 6926 for (p = 0; p < numPoints; p++) { 6927 const PetscInt point = points[2 * p]; 6928 const PetscInt *perm = perms ? perms[p] : NULL; 6929 const PetscScalar *flip = flips ? flips[p] : NULL; 6930 PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains)); 6931 if (!contains) continue; 6932 PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_FALSE, NULL, values, &offset, array)); 6933 } 6934 break; 6935 case ADD_ALL_VALUES: 6936 for (p = 0; p < numPoints; p++) { 6937 const PetscInt point = points[2 * p]; 6938 const PetscInt *perm = perms ? perms[p] : NULL; 6939 const PetscScalar *flip = flips ? flips[p] : NULL; 6940 PetscCall(CheckPoint_Private(label, labelId, section, point, f, &offset, &contains)); 6941 if (!contains) continue; 6942 PetscCall(updatePointFields_private(section, point, perm, flip, f, add, PETSC_TRUE, NULL, values, &offset, array)); 6943 } 6944 break; 6945 default: 6946 SETERRQ(PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Invalid insert mode %d", mode); 6947 } 6948 PetscCall(PetscSectionRestoreFieldPointSyms(section, f, numPoints, points, &perms, &flips)); 6949 } 6950 /* Cleanup points */ 6951 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &numPoints, &points, &clSection, &clPoints, &clp)); 6952 /* Cleanup array */ 6953 PetscCall(VecRestoreArray(v, &array)); 6954 PetscFunctionReturn(PETSC_SUCCESS); 6955 } 6956 6957 static PetscErrorCode DMPlexPrintMatSetValues(PetscViewer viewer, Mat A, PetscInt point, PetscInt numRIndices, const PetscInt rindices[], PetscInt numCIndices, const PetscInt cindices[], const PetscScalar values[]) 6958 { 6959 PetscMPIInt rank; 6960 PetscInt i, j; 6961 6962 PetscFunctionBegin; 6963 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank)); 6964 PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]mat for point %" PetscInt_FMT "\n", rank, point)); 6965 for (i = 0; i < numRIndices; i++) PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]mat row indices[%" PetscInt_FMT "] = %" PetscInt_FMT "\n", rank, i, rindices[i])); 6966 for (i = 0; i < numCIndices; i++) PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]mat col indices[%" PetscInt_FMT "] = %" PetscInt_FMT "\n", rank, i, cindices[i])); 6967 numCIndices = numCIndices ? numCIndices : numRIndices; 6968 if (!values) PetscFunctionReturn(PETSC_SUCCESS); 6969 for (i = 0; i < numRIndices; i++) { 6970 PetscCall(PetscViewerASCIIPrintf(viewer, "[%d]", rank)); 6971 for (j = 0; j < numCIndices; j++) { 6972 #if defined(PETSC_USE_COMPLEX) 6973 PetscCall(PetscViewerASCIIPrintf(viewer, " (%g,%g)", (double)PetscRealPart(values[i * numCIndices + j]), (double)PetscImaginaryPart(values[i * numCIndices + j]))); 6974 #else 6975 PetscCall(PetscViewerASCIIPrintf(viewer, " %g", (double)values[i * numCIndices + j])); 6976 #endif 6977 } 6978 PetscCall(PetscViewerASCIIPrintf(viewer, "\n")); 6979 } 6980 PetscFunctionReturn(PETSC_SUCCESS); 6981 } 6982 6983 /* 6984 DMPlexGetIndicesPoint_Internal - Add the indices for dofs on a point to an index array 6985 6986 Input Parameters: 6987 + section - The section for this data layout 6988 . islocal - Is the section (and thus indices being requested) local or global? 6989 . point - The point contributing dofs with these indices 6990 . off - The global offset of this point 6991 . loff - The local offset of each field 6992 . setBC - The flag determining whether to include indices of boundary values 6993 . perm - A permutation of the dofs on this point, or NULL 6994 - indperm - A permutation of the entire indices array, or NULL 6995 6996 Output Parameter: 6997 . indices - Indices for dofs on this point 6998 6999 Level: developer 7000 7001 Note: The indices could be local or global, depending on the value of 'off'. 7002 */ 7003 PetscErrorCode DMPlexGetIndicesPoint_Internal(PetscSection section, PetscBool islocal, PetscInt point, PetscInt off, PetscInt *loff, PetscBool setBC, const PetscInt perm[], const PetscInt indperm[], PetscInt indices[]) 7004 { 7005 PetscInt dof; /* The number of unknowns on this point */ 7006 PetscInt cdof; /* The number of constraints on this point */ 7007 const PetscInt *cdofs; /* The indices of the constrained dofs on this point */ 7008 PetscInt cind = 0, k; 7009 7010 PetscFunctionBegin; 7011 PetscCheck(islocal || !setBC, PetscObjectComm((PetscObject)section), PETSC_ERR_ARG_INCOMP, "setBC incompatible with global indices; use a local section or disable setBC"); 7012 PetscCall(PetscSectionGetDof(section, point, &dof)); 7013 PetscCall(PetscSectionGetConstraintDof(section, point, &cdof)); 7014 if (!cdof || setBC) { 7015 for (k = 0; k < dof; ++k) { 7016 const PetscInt preind = perm ? *loff + perm[k] : *loff + k; 7017 const PetscInt ind = indperm ? indperm[preind] : preind; 7018 7019 indices[ind] = off + k; 7020 } 7021 } else { 7022 PetscCall(PetscSectionGetConstraintIndices(section, point, &cdofs)); 7023 for (k = 0; k < dof; ++k) { 7024 const PetscInt preind = perm ? *loff + perm[k] : *loff + k; 7025 const PetscInt ind = indperm ? indperm[preind] : preind; 7026 7027 if ((cind < cdof) && (k == cdofs[cind])) { 7028 /* Insert check for returning constrained indices */ 7029 indices[ind] = -(off + k + 1); 7030 ++cind; 7031 } else { 7032 indices[ind] = off + k - (islocal ? 0 : cind); 7033 } 7034 } 7035 } 7036 *loff += dof; 7037 PetscFunctionReturn(PETSC_SUCCESS); 7038 } 7039 7040 /* 7041 DMPlexGetIndicesPointFields_Internal - gets section indices for a point in its canonical ordering. 7042 7043 Input Parameters: 7044 + section - a section (global or local) 7045 - islocal - `PETSC_TRUE` if requesting local indices (i.e., section is local); `PETSC_FALSE` for global 7046 . point - point within section 7047 . off - The offset of this point in the (local or global) indexed space - should match islocal and (usually) the section 7048 . foffs - array of length numFields containing the offset in canonical point ordering (the location in indices) of each field 7049 . setBC - identify constrained (boundary condition) points via involution. 7050 . perms - perms[f][permsoff][:] is a permutation of dofs within each field 7051 . permsoff - offset 7052 - indperm - index permutation 7053 7054 Output Parameter: 7055 . foffs - each entry is incremented by the number of (unconstrained if setBC=FALSE) dofs in that field 7056 . indices - array to hold indices (as defined by section) of each dof associated with point 7057 7058 Notes: 7059 If section is local and setBC=true, there is no distinction between constrained and unconstrained dofs. 7060 If section is local and setBC=false, the indices for constrained points are the involution -(i+1) of their position 7061 in the local vector. 7062 7063 If section is global and setBC=false, the indices for constrained points are negative (and their value is not 7064 significant). It is invalid to call with a global section and setBC=true. 7065 7066 Developer Note: 7067 The section is only used for field layout, so islocal is technically a statement about the offset (off). At some point 7068 in the future, global sections may have fields set, in which case we could pass the global section and obtain the 7069 offset could be obtained from the section instead of passing it explicitly as we do now. 7070 7071 Example: 7072 Suppose a point contains one field with three components, and for which the unconstrained indices are {10, 11, 12}. 7073 When the middle component is constrained, we get the array {10, -12, 12} for (islocal=TRUE, setBC=FALSE). 7074 Note that -12 is the involution of 11, so the user can involute negative indices to recover local indices. 7075 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. 7076 7077 Level: developer 7078 */ 7079 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[]) 7080 { 7081 PetscInt numFields, foff, f; 7082 7083 PetscFunctionBegin; 7084 PetscCheck(islocal || !setBC, PetscObjectComm((PetscObject)section), PETSC_ERR_ARG_INCOMP, "setBC incompatible with global indices; use a local section or disable setBC"); 7085 PetscCall(PetscSectionGetNumFields(section, &numFields)); 7086 for (f = 0, foff = 0; f < numFields; ++f) { 7087 PetscInt fdof, cfdof; 7088 const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */ 7089 PetscInt cind = 0, b; 7090 const PetscInt *perm = (perms && perms[f]) ? perms[f][permsoff] : NULL; 7091 7092 PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof)); 7093 PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &cfdof)); 7094 if (!cfdof || setBC) { 7095 for (b = 0; b < fdof; ++b) { 7096 const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b; 7097 const PetscInt ind = indperm ? indperm[preind] : preind; 7098 7099 indices[ind] = off + foff + b; 7100 } 7101 } else { 7102 PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs)); 7103 for (b = 0; b < fdof; ++b) { 7104 const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b; 7105 const PetscInt ind = indperm ? indperm[preind] : preind; 7106 7107 if ((cind < cfdof) && (b == fcdofs[cind])) { 7108 indices[ind] = -(off + foff + b + 1); 7109 ++cind; 7110 } else { 7111 indices[ind] = off + foff + b - (islocal ? 0 : cind); 7112 } 7113 } 7114 } 7115 foff += (setBC || islocal ? fdof : (fdof - cfdof)); 7116 foffs[f] += fdof; 7117 } 7118 PetscFunctionReturn(PETSC_SUCCESS); 7119 } 7120 7121 /* 7122 This version believes the globalSection offsets for each field, rather than just the point offset 7123 7124 . foffs - The offset into 'indices' for each field, since it is segregated by field 7125 7126 Notes: 7127 The semantics of this function relate to that of setBC=FALSE in DMPlexGetIndicesPointFields_Internal. 7128 Since this function uses global indices, setBC=TRUE would be invalid, so no such argument exists. 7129 */ 7130 static PetscErrorCode DMPlexGetIndicesPointFieldsSplit_Internal(PetscSection section, PetscSection globalSection, PetscInt point, PetscInt foffs[], const PetscInt ***perms, PetscInt permsoff, const PetscInt indperm[], PetscInt indices[]) 7131 { 7132 PetscInt numFields, foff, f; 7133 7134 PetscFunctionBegin; 7135 PetscCall(PetscSectionGetNumFields(section, &numFields)); 7136 for (f = 0; f < numFields; ++f) { 7137 PetscInt fdof, cfdof; 7138 const PetscInt *fcdofs; /* The indices of the constrained dofs for field f on this point */ 7139 PetscInt cind = 0, b; 7140 const PetscInt *perm = (perms && perms[f]) ? perms[f][permsoff] : NULL; 7141 7142 PetscCall(PetscSectionGetFieldDof(section, point, f, &fdof)); 7143 PetscCall(PetscSectionGetFieldConstraintDof(section, point, f, &cfdof)); 7144 PetscCall(PetscSectionGetFieldOffset(globalSection, point, f, &foff)); 7145 if (!cfdof) { 7146 for (b = 0; b < fdof; ++b) { 7147 const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b; 7148 const PetscInt ind = indperm ? indperm[preind] : preind; 7149 7150 indices[ind] = foff + b; 7151 } 7152 } else { 7153 PetscCall(PetscSectionGetFieldConstraintIndices(section, point, f, &fcdofs)); 7154 for (b = 0; b < fdof; ++b) { 7155 const PetscInt preind = perm ? foffs[f] + perm[b] : foffs[f] + b; 7156 const PetscInt ind = indperm ? indperm[preind] : preind; 7157 7158 if ((cind < cfdof) && (b == fcdofs[cind])) { 7159 indices[ind] = -(foff + b + 1); 7160 ++cind; 7161 } else { 7162 indices[ind] = foff + b - cind; 7163 } 7164 } 7165 } 7166 foffs[f] += fdof; 7167 } 7168 PetscFunctionReturn(PETSC_SUCCESS); 7169 } 7170 7171 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) 7172 { 7173 Mat cMat; 7174 PetscSection aSec, cSec; 7175 IS aIS; 7176 PetscInt aStart = -1, aEnd = -1; 7177 const PetscInt *anchors; 7178 PetscInt numFields, f, p, q, newP = 0; 7179 PetscInt newNumPoints = 0, newNumIndices = 0; 7180 PetscInt *newPoints, *indices, *newIndices; 7181 PetscInt maxAnchor, maxDof; 7182 PetscInt newOffsets[32]; 7183 PetscInt *pointMatOffsets[32]; 7184 PetscInt *newPointOffsets[32]; 7185 PetscScalar *pointMat[32]; 7186 PetscScalar *newValues = NULL, *tmpValues; 7187 PetscBool anyConstrained = PETSC_FALSE; 7188 7189 PetscFunctionBegin; 7190 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 7191 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 7192 PetscCall(PetscSectionGetNumFields(section, &numFields)); 7193 7194 PetscCall(DMPlexGetAnchors(dm, &aSec, &aIS)); 7195 /* if there are point-to-point constraints */ 7196 if (aSec) { 7197 PetscCall(PetscArrayzero(newOffsets, 32)); 7198 PetscCall(ISGetIndices(aIS, &anchors)); 7199 PetscCall(PetscSectionGetChart(aSec, &aStart, &aEnd)); 7200 /* figure out how many points are going to be in the new element matrix 7201 * (we allow double counting, because it's all just going to be summed 7202 * into the global matrix anyway) */ 7203 for (p = 0; p < 2 * numPoints; p += 2) { 7204 PetscInt b = points[p]; 7205 PetscInt bDof = 0, bSecDof; 7206 7207 PetscCall(PetscSectionGetDof(section, b, &bSecDof)); 7208 if (!bSecDof) continue; 7209 if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof)); 7210 if (bDof) { 7211 /* this point is constrained */ 7212 /* it is going to be replaced by its anchors */ 7213 PetscInt bOff, q; 7214 7215 anyConstrained = PETSC_TRUE; 7216 newNumPoints += bDof; 7217 PetscCall(PetscSectionGetOffset(aSec, b, &bOff)); 7218 for (q = 0; q < bDof; q++) { 7219 PetscInt a = anchors[bOff + q]; 7220 PetscInt aDof; 7221 7222 PetscCall(PetscSectionGetDof(section, a, &aDof)); 7223 newNumIndices += aDof; 7224 for (f = 0; f < numFields; ++f) { 7225 PetscInt fDof; 7226 7227 PetscCall(PetscSectionGetFieldDof(section, a, f, &fDof)); 7228 newOffsets[f + 1] += fDof; 7229 } 7230 } 7231 } else { 7232 /* this point is not constrained */ 7233 newNumPoints++; 7234 newNumIndices += bSecDof; 7235 for (f = 0; f < numFields; ++f) { 7236 PetscInt fDof; 7237 7238 PetscCall(PetscSectionGetFieldDof(section, b, f, &fDof)); 7239 newOffsets[f + 1] += fDof; 7240 } 7241 } 7242 } 7243 } 7244 if (!anyConstrained) { 7245 if (outNumPoints) *outNumPoints = 0; 7246 if (outNumIndices) *outNumIndices = 0; 7247 if (outPoints) *outPoints = NULL; 7248 if (outValues) *outValues = NULL; 7249 if (aSec) PetscCall(ISRestoreIndices(aIS, &anchors)); 7250 PetscFunctionReturn(PETSC_SUCCESS); 7251 } 7252 7253 if (outNumPoints) *outNumPoints = newNumPoints; 7254 if (outNumIndices) *outNumIndices = newNumIndices; 7255 7256 for (f = 0; f < numFields; ++f) newOffsets[f + 1] += newOffsets[f]; 7257 7258 if (!outPoints && !outValues) { 7259 if (offsets) { 7260 for (f = 0; f <= numFields; f++) offsets[f] = newOffsets[f]; 7261 } 7262 if (aSec) PetscCall(ISRestoreIndices(aIS, &anchors)); 7263 PetscFunctionReturn(PETSC_SUCCESS); 7264 } 7265 7266 PetscCheck(!numFields || newOffsets[numFields] == newNumIndices, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, newOffsets[numFields], newNumIndices); 7267 7268 PetscCall(DMGetDefaultConstraints(dm, &cSec, &cMat, NULL)); 7269 7270 /* workspaces */ 7271 if (numFields) { 7272 for (f = 0; f < numFields; f++) { 7273 PetscCall(DMGetWorkArray(dm, numPoints + 1, MPIU_INT, &pointMatOffsets[f])); 7274 PetscCall(DMGetWorkArray(dm, numPoints + 1, MPIU_INT, &newPointOffsets[f])); 7275 } 7276 } else { 7277 PetscCall(DMGetWorkArray(dm, numPoints + 1, MPIU_INT, &pointMatOffsets[0])); 7278 PetscCall(DMGetWorkArray(dm, numPoints, MPIU_INT, &newPointOffsets[0])); 7279 } 7280 7281 /* get workspaces for the point-to-point matrices */ 7282 if (numFields) { 7283 PetscInt totalOffset, totalMatOffset; 7284 7285 for (p = 0; p < numPoints; p++) { 7286 PetscInt b = points[2 * p]; 7287 PetscInt bDof = 0, bSecDof; 7288 7289 PetscCall(PetscSectionGetDof(section, b, &bSecDof)); 7290 if (!bSecDof) { 7291 for (f = 0; f < numFields; f++) { 7292 newPointOffsets[f][p + 1] = 0; 7293 pointMatOffsets[f][p + 1] = 0; 7294 } 7295 continue; 7296 } 7297 if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof)); 7298 if (bDof) { 7299 for (f = 0; f < numFields; f++) { 7300 PetscInt fDof, q, bOff, allFDof = 0; 7301 7302 PetscCall(PetscSectionGetFieldDof(section, b, f, &fDof)); 7303 PetscCall(PetscSectionGetOffset(aSec, b, &bOff)); 7304 for (q = 0; q < bDof; q++) { 7305 PetscInt a = anchors[bOff + q]; 7306 PetscInt aFDof; 7307 7308 PetscCall(PetscSectionGetFieldDof(section, a, f, &aFDof)); 7309 allFDof += aFDof; 7310 } 7311 newPointOffsets[f][p + 1] = allFDof; 7312 pointMatOffsets[f][p + 1] = fDof * allFDof; 7313 } 7314 } else { 7315 for (f = 0; f < numFields; f++) { 7316 PetscInt fDof; 7317 7318 PetscCall(PetscSectionGetFieldDof(section, b, f, &fDof)); 7319 newPointOffsets[f][p + 1] = fDof; 7320 pointMatOffsets[f][p + 1] = 0; 7321 } 7322 } 7323 } 7324 for (f = 0, totalOffset = 0, totalMatOffset = 0; f < numFields; f++) { 7325 newPointOffsets[f][0] = totalOffset; 7326 pointMatOffsets[f][0] = totalMatOffset; 7327 for (p = 0; p < numPoints; p++) { 7328 newPointOffsets[f][p + 1] += newPointOffsets[f][p]; 7329 pointMatOffsets[f][p + 1] += pointMatOffsets[f][p]; 7330 } 7331 totalOffset = newPointOffsets[f][numPoints]; 7332 totalMatOffset = pointMatOffsets[f][numPoints]; 7333 PetscCall(DMGetWorkArray(dm, pointMatOffsets[f][numPoints], MPIU_SCALAR, &pointMat[f])); 7334 } 7335 } else { 7336 for (p = 0; p < numPoints; p++) { 7337 PetscInt b = points[2 * p]; 7338 PetscInt bDof = 0, bSecDof; 7339 7340 PetscCall(PetscSectionGetDof(section, b, &bSecDof)); 7341 if (!bSecDof) { 7342 newPointOffsets[0][p + 1] = 0; 7343 pointMatOffsets[0][p + 1] = 0; 7344 continue; 7345 } 7346 if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof)); 7347 if (bDof) { 7348 PetscInt bOff, q, allDof = 0; 7349 7350 PetscCall(PetscSectionGetOffset(aSec, b, &bOff)); 7351 for (q = 0; q < bDof; q++) { 7352 PetscInt a = anchors[bOff + q], aDof; 7353 7354 PetscCall(PetscSectionGetDof(section, a, &aDof)); 7355 allDof += aDof; 7356 } 7357 newPointOffsets[0][p + 1] = allDof; 7358 pointMatOffsets[0][p + 1] = bSecDof * allDof; 7359 } else { 7360 newPointOffsets[0][p + 1] = bSecDof; 7361 pointMatOffsets[0][p + 1] = 0; 7362 } 7363 } 7364 newPointOffsets[0][0] = 0; 7365 pointMatOffsets[0][0] = 0; 7366 for (p = 0; p < numPoints; p++) { 7367 newPointOffsets[0][p + 1] += newPointOffsets[0][p]; 7368 pointMatOffsets[0][p + 1] += pointMatOffsets[0][p]; 7369 } 7370 PetscCall(DMGetWorkArray(dm, pointMatOffsets[0][numPoints], MPIU_SCALAR, &pointMat[0])); 7371 } 7372 7373 /* output arrays */ 7374 PetscCall(DMGetWorkArray(dm, 2 * newNumPoints, MPIU_INT, &newPoints)); 7375 7376 /* get the point-to-point matrices; construct newPoints */ 7377 PetscCall(PetscSectionGetMaxDof(aSec, &maxAnchor)); 7378 PetscCall(PetscSectionGetMaxDof(section, &maxDof)); 7379 PetscCall(DMGetWorkArray(dm, maxDof, MPIU_INT, &indices)); 7380 PetscCall(DMGetWorkArray(dm, maxAnchor * maxDof, MPIU_INT, &newIndices)); 7381 if (numFields) { 7382 for (p = 0, newP = 0; p < numPoints; p++) { 7383 PetscInt b = points[2 * p]; 7384 PetscInt o = points[2 * p + 1]; 7385 PetscInt bDof = 0, bSecDof; 7386 7387 PetscCall(PetscSectionGetDof(section, b, &bSecDof)); 7388 if (!bSecDof) continue; 7389 if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof)); 7390 if (bDof) { 7391 PetscInt fStart[32], fEnd[32], fAnchorStart[32], fAnchorEnd[32], bOff, q; 7392 7393 fStart[0] = 0; 7394 fEnd[0] = 0; 7395 for (f = 0; f < numFields; f++) { 7396 PetscInt fDof; 7397 7398 PetscCall(PetscSectionGetFieldDof(cSec, b, f, &fDof)); 7399 fStart[f + 1] = fStart[f] + fDof; 7400 fEnd[f + 1] = fStart[f + 1]; 7401 } 7402 PetscCall(PetscSectionGetOffset(cSec, b, &bOff)); 7403 PetscCall(DMPlexGetIndicesPointFields_Internal(cSec, PETSC_TRUE, b, bOff, fEnd, PETSC_TRUE, perms, p, NULL, indices)); 7404 7405 fAnchorStart[0] = 0; 7406 fAnchorEnd[0] = 0; 7407 for (f = 0; f < numFields; f++) { 7408 PetscInt fDof = newPointOffsets[f][p + 1] - newPointOffsets[f][p]; 7409 7410 fAnchorStart[f + 1] = fAnchorStart[f] + fDof; 7411 fAnchorEnd[f + 1] = fAnchorStart[f + 1]; 7412 } 7413 PetscCall(PetscSectionGetOffset(aSec, b, &bOff)); 7414 for (q = 0; q < bDof; q++) { 7415 PetscInt a = anchors[bOff + q], aOff; 7416 7417 /* we take the orientation of ap into account in the order that we constructed the indices above: the newly added points have no orientation */ 7418 newPoints[2 * (newP + q)] = a; 7419 newPoints[2 * (newP + q) + 1] = 0; 7420 PetscCall(PetscSectionGetOffset(section, a, &aOff)); 7421 PetscCall(DMPlexGetIndicesPointFields_Internal(section, PETSC_TRUE, a, aOff, fAnchorEnd, PETSC_TRUE, NULL, -1, NULL, newIndices)); 7422 } 7423 newP += bDof; 7424 7425 if (outValues) { 7426 /* get the point-to-point submatrix */ 7427 for (f = 0; f < numFields; f++) PetscCall(MatGetValues(cMat, fEnd[f] - fStart[f], indices + fStart[f], fAnchorEnd[f] - fAnchorStart[f], newIndices + fAnchorStart[f], pointMat[f] + pointMatOffsets[f][p])); 7428 } 7429 } else { 7430 newPoints[2 * newP] = b; 7431 newPoints[2 * newP + 1] = o; 7432 newP++; 7433 } 7434 } 7435 } else { 7436 for (p = 0; p < numPoints; p++) { 7437 PetscInt b = points[2 * p]; 7438 PetscInt o = points[2 * p + 1]; 7439 PetscInt bDof = 0, bSecDof; 7440 7441 PetscCall(PetscSectionGetDof(section, b, &bSecDof)); 7442 if (!bSecDof) continue; 7443 if (b >= aStart && b < aEnd) PetscCall(PetscSectionGetDof(aSec, b, &bDof)); 7444 if (bDof) { 7445 PetscInt bEnd = 0, bAnchorEnd = 0, bOff; 7446 7447 PetscCall(PetscSectionGetOffset(cSec, b, &bOff)); 7448 PetscCall(DMPlexGetIndicesPoint_Internal(cSec, PETSC_TRUE, b, bOff, &bEnd, PETSC_TRUE, (perms && perms[0]) ? perms[0][p] : NULL, NULL, indices)); 7449 7450 PetscCall(PetscSectionGetOffset(aSec, b, &bOff)); 7451 for (q = 0; q < bDof; q++) { 7452 PetscInt a = anchors[bOff + q], aOff; 7453 7454 /* we take the orientation of ap into account in the order that we constructed the indices above: the newly added points have no orientation */ 7455 7456 newPoints[2 * (newP + q)] = a; 7457 newPoints[2 * (newP + q) + 1] = 0; 7458 PetscCall(PetscSectionGetOffset(section, a, &aOff)); 7459 PetscCall(DMPlexGetIndicesPoint_Internal(section, PETSC_TRUE, a, aOff, &bAnchorEnd, PETSC_TRUE, NULL, NULL, newIndices)); 7460 } 7461 newP += bDof; 7462 7463 /* get the point-to-point submatrix */ 7464 if (outValues) PetscCall(MatGetValues(cMat, bEnd, indices, bAnchorEnd, newIndices, pointMat[0] + pointMatOffsets[0][p])); 7465 } else { 7466 newPoints[2 * newP] = b; 7467 newPoints[2 * newP + 1] = o; 7468 newP++; 7469 } 7470 } 7471 } 7472 7473 if (outValues) { 7474 PetscCall(DMGetWorkArray(dm, newNumIndices * numIndices, MPIU_SCALAR, &tmpValues)); 7475 PetscCall(PetscArrayzero(tmpValues, newNumIndices * numIndices)); 7476 /* multiply constraints on the right */ 7477 if (numFields) { 7478 for (f = 0; f < numFields; f++) { 7479 PetscInt oldOff = offsets[f]; 7480 7481 for (p = 0; p < numPoints; p++) { 7482 PetscInt cStart = newPointOffsets[f][p]; 7483 PetscInt b = points[2 * p]; 7484 PetscInt c, r, k; 7485 PetscInt dof; 7486 7487 PetscCall(PetscSectionGetFieldDof(section, b, f, &dof)); 7488 if (!dof) continue; 7489 if (pointMatOffsets[f][p] < pointMatOffsets[f][p + 1]) { 7490 PetscInt nCols = newPointOffsets[f][p + 1] - cStart; 7491 const PetscScalar *mat = pointMat[f] + pointMatOffsets[f][p]; 7492 7493 for (r = 0; r < numIndices; r++) { 7494 for (c = 0; c < nCols; c++) { 7495 for (k = 0; k < dof; k++) tmpValues[r * newNumIndices + cStart + c] += values[r * numIndices + oldOff + k] * mat[k * nCols + c]; 7496 } 7497 } 7498 } else { 7499 /* copy this column as is */ 7500 for (r = 0; r < numIndices; r++) { 7501 for (c = 0; c < dof; c++) tmpValues[r * newNumIndices + cStart + c] = values[r * numIndices + oldOff + c]; 7502 } 7503 } 7504 oldOff += dof; 7505 } 7506 } 7507 } else { 7508 PetscInt oldOff = 0; 7509 for (p = 0; p < numPoints; p++) { 7510 PetscInt cStart = newPointOffsets[0][p]; 7511 PetscInt b = points[2 * p]; 7512 PetscInt c, r, k; 7513 PetscInt dof; 7514 7515 PetscCall(PetscSectionGetDof(section, b, &dof)); 7516 if (!dof) continue; 7517 if (pointMatOffsets[0][p] < pointMatOffsets[0][p + 1]) { 7518 PetscInt nCols = newPointOffsets[0][p + 1] - cStart; 7519 const PetscScalar *mat = pointMat[0] + pointMatOffsets[0][p]; 7520 7521 for (r = 0; r < numIndices; r++) { 7522 for (c = 0; c < nCols; c++) { 7523 for (k = 0; k < dof; k++) tmpValues[r * newNumIndices + cStart + c] += mat[k * nCols + c] * values[r * numIndices + oldOff + k]; 7524 } 7525 } 7526 } else { 7527 /* copy this column as is */ 7528 for (r = 0; r < numIndices; r++) { 7529 for (c = 0; c < dof; c++) tmpValues[r * newNumIndices + cStart + c] = values[r * numIndices + oldOff + c]; 7530 } 7531 } 7532 oldOff += dof; 7533 } 7534 } 7535 7536 if (multiplyLeft) { 7537 PetscCall(DMGetWorkArray(dm, newNumIndices * newNumIndices, MPIU_SCALAR, &newValues)); 7538 PetscCall(PetscArrayzero(newValues, newNumIndices * newNumIndices)); 7539 /* multiply constraints transpose on the left */ 7540 if (numFields) { 7541 for (f = 0; f < numFields; f++) { 7542 PetscInt oldOff = offsets[f]; 7543 7544 for (p = 0; p < numPoints; p++) { 7545 PetscInt rStart = newPointOffsets[f][p]; 7546 PetscInt b = points[2 * p]; 7547 PetscInt c, r, k; 7548 PetscInt dof; 7549 7550 PetscCall(PetscSectionGetFieldDof(section, b, f, &dof)); 7551 if (pointMatOffsets[f][p] < pointMatOffsets[f][p + 1]) { 7552 PetscInt nRows = newPointOffsets[f][p + 1] - rStart; 7553 const PetscScalar *PETSC_RESTRICT mat = pointMat[f] + pointMatOffsets[f][p]; 7554 7555 for (r = 0; r < nRows; r++) { 7556 for (c = 0; c < newNumIndices; c++) { 7557 for (k = 0; k < dof; k++) newValues[(rStart + r) * newNumIndices + c] += mat[k * nRows + r] * tmpValues[(oldOff + k) * newNumIndices + c]; 7558 } 7559 } 7560 } else { 7561 /* copy this row as is */ 7562 for (r = 0; r < dof; r++) { 7563 for (c = 0; c < newNumIndices; c++) newValues[(rStart + r) * newNumIndices + c] = tmpValues[(oldOff + r) * newNumIndices + c]; 7564 } 7565 } 7566 oldOff += dof; 7567 } 7568 } 7569 } else { 7570 PetscInt oldOff = 0; 7571 7572 for (p = 0; p < numPoints; p++) { 7573 PetscInt rStart = newPointOffsets[0][p]; 7574 PetscInt b = points[2 * p]; 7575 PetscInt c, r, k; 7576 PetscInt dof; 7577 7578 PetscCall(PetscSectionGetDof(section, b, &dof)); 7579 if (pointMatOffsets[0][p] < pointMatOffsets[0][p + 1]) { 7580 PetscInt nRows = newPointOffsets[0][p + 1] - rStart; 7581 const PetscScalar *PETSC_RESTRICT mat = pointMat[0] + pointMatOffsets[0][p]; 7582 7583 for (r = 0; r < nRows; r++) { 7584 for (c = 0; c < newNumIndices; c++) { 7585 for (k = 0; k < dof; k++) newValues[(rStart + r) * newNumIndices + c] += mat[k * nRows + r] * tmpValues[(oldOff + k) * newNumIndices + c]; 7586 } 7587 } 7588 } else { 7589 /* copy this row as is */ 7590 for (r = 0; r < dof; r++) { 7591 for (c = 0; c < newNumIndices; c++) newValues[(rStart + r) * newNumIndices + c] = tmpValues[(oldOff + r) * newNumIndices + c]; 7592 } 7593 } 7594 oldOff += dof; 7595 } 7596 } 7597 7598 PetscCall(DMRestoreWorkArray(dm, newNumIndices * numIndices, MPIU_SCALAR, &tmpValues)); 7599 } else { 7600 newValues = tmpValues; 7601 } 7602 } 7603 7604 /* clean up */ 7605 PetscCall(DMRestoreWorkArray(dm, maxDof, MPIU_INT, &indices)); 7606 PetscCall(DMRestoreWorkArray(dm, maxAnchor * maxDof, MPIU_INT, &newIndices)); 7607 7608 if (numFields) { 7609 for (f = 0; f < numFields; f++) { 7610 PetscCall(DMRestoreWorkArray(dm, pointMatOffsets[f][numPoints], MPIU_SCALAR, &pointMat[f])); 7611 PetscCall(DMRestoreWorkArray(dm, numPoints + 1, MPIU_INT, &pointMatOffsets[f])); 7612 PetscCall(DMRestoreWorkArray(dm, numPoints + 1, MPIU_INT, &newPointOffsets[f])); 7613 } 7614 } else { 7615 PetscCall(DMRestoreWorkArray(dm, pointMatOffsets[0][numPoints], MPIU_SCALAR, &pointMat[0])); 7616 PetscCall(DMRestoreWorkArray(dm, numPoints + 1, MPIU_INT, &pointMatOffsets[0])); 7617 PetscCall(DMRestoreWorkArray(dm, numPoints + 1, MPIU_INT, &newPointOffsets[0])); 7618 } 7619 PetscCall(ISRestoreIndices(aIS, &anchors)); 7620 7621 /* output */ 7622 if (outPoints) { 7623 *outPoints = newPoints; 7624 } else { 7625 PetscCall(DMRestoreWorkArray(dm, 2 * newNumPoints, MPIU_INT, &newPoints)); 7626 } 7627 if (outValues) *outValues = newValues; 7628 for (f = 0; f <= numFields; f++) offsets[f] = newOffsets[f]; 7629 PetscFunctionReturn(PETSC_SUCCESS); 7630 } 7631 7632 /*@C 7633 DMPlexGetClosureIndices - Gets the global dof indices associated with the closure of the given point within the provided sections. 7634 7635 Not collective 7636 7637 Input Parameters: 7638 + dm - The `DM` 7639 . section - The `PetscSection` describing the points (a local section) 7640 . idxSection - The `PetscSection` from which to obtain indices (may be local or global) 7641 . point - The point defining the closure 7642 - useClPerm - Use the closure point permutation if available 7643 7644 Output Parameters: 7645 + numIndices - The number of dof indices in the closure of point with the input sections 7646 . indices - The dof indices 7647 . outOffsets - Array to write the field offsets into, or `NULL` 7648 - values - The input values, which may be modified if sign flips are induced by the point symmetries, or `NULL` 7649 7650 Level: advanced 7651 7652 Notes: 7653 Must call `DMPlexRestoreClosureIndices()` to free allocated memory 7654 7655 If `idxSection` is global, any constrained dofs (see `DMAddBoundary()`, for example) will get negative indices. The value 7656 of those indices is not significant. If `idxSection` is local, the constrained dofs will yield the involution -(idx+1) 7657 of their index in a local vector. A caller who does not wish to distinguish those points may recover the nonnegative 7658 indices via involution, -(-(idx+1)+1)==idx. Local indices are provided when `idxSection` == section, otherwise global 7659 indices (with the above semantics) are implied. 7660 7661 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexRestoreClosureIndices()`, `DMPlexVecGetClosure()`, `DMPlexMatSetClosure()`, `DMGetLocalSection()`, 7662 `PetscSection`, `DMGetGlobalSection()` 7663 @*/ 7664 PetscErrorCode DMPlexGetClosureIndices(DM dm, PetscSection section, PetscSection idxSection, PetscInt point, PetscBool useClPerm, PetscInt *numIndices, PetscInt *indices[], PetscInt outOffsets[], PetscScalar *values[]) 7665 { 7666 /* Closure ordering */ 7667 PetscSection clSection; 7668 IS clPoints; 7669 const PetscInt *clp; 7670 PetscInt *points; 7671 const PetscInt *clperm = NULL; 7672 /* Dof permutation and sign flips */ 7673 const PetscInt **perms[32] = {NULL}; 7674 const PetscScalar **flips[32] = {NULL}; 7675 PetscScalar *valCopy = NULL; 7676 /* Hanging node constraints */ 7677 PetscInt *pointsC = NULL; 7678 PetscScalar *valuesC = NULL; 7679 PetscInt NclC, NiC; 7680 7681 PetscInt *idx; 7682 PetscInt Nf, Ncl, Ni = 0, offsets[32], p, f; 7683 PetscBool isLocal = (section == idxSection) ? PETSC_TRUE : PETSC_FALSE; 7684 7685 PetscFunctionBeginHot; 7686 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 7687 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 7688 PetscValidHeaderSpecific(idxSection, PETSC_SECTION_CLASSID, 3); 7689 if (numIndices) PetscAssertPointer(numIndices, 6); 7690 if (indices) PetscAssertPointer(indices, 7); 7691 if (outOffsets) PetscAssertPointer(outOffsets, 8); 7692 if (values) PetscAssertPointer(values, 9); 7693 PetscCall(PetscSectionGetNumFields(section, &Nf)); 7694 PetscCheck(Nf <= 31, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_OUTOFRANGE, "Number of fields %" PetscInt_FMT " limited to 31", Nf); 7695 PetscCall(PetscArrayzero(offsets, 32)); 7696 /* 1) Get points in closure */ 7697 PetscCall(DMPlexGetCompressedClosure(dm, section, point, 0, &Ncl, &points, &clSection, &clPoints, &clp)); 7698 if (useClPerm) { 7699 PetscInt depth, clsize; 7700 PetscCall(DMPlexGetPointDepth(dm, point, &depth)); 7701 for (clsize = 0, p = 0; p < Ncl; p++) { 7702 PetscInt dof; 7703 PetscCall(PetscSectionGetDof(section, points[2 * p], &dof)); 7704 clsize += dof; 7705 } 7706 PetscCall(PetscSectionGetClosureInversePermutation_Internal(section, (PetscObject)dm, depth, clsize, &clperm)); 7707 } 7708 /* 2) Get number of indices on these points and field offsets from section */ 7709 for (p = 0; p < Ncl * 2; p += 2) { 7710 PetscInt dof, fdof; 7711 7712 PetscCall(PetscSectionGetDof(section, points[p], &dof)); 7713 for (f = 0; f < Nf; ++f) { 7714 PetscCall(PetscSectionGetFieldDof(section, points[p], f, &fdof)); 7715 offsets[f + 1] += fdof; 7716 } 7717 Ni += dof; 7718 } 7719 for (f = 1; f < Nf; ++f) offsets[f + 1] += offsets[f]; 7720 PetscCheck(!Nf || offsets[Nf] == Ni, PetscObjectComm((PetscObject)dm), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, offsets[Nf], Ni); 7721 /* 3) Get symmetries and sign flips. Apply sign flips to values if passed in (only works for square values matrix) */ 7722 for (f = 0; f < PetscMax(1, Nf); ++f) { 7723 if (Nf) PetscCall(PetscSectionGetFieldPointSyms(section, f, Ncl, points, &perms[f], &flips[f])); 7724 else PetscCall(PetscSectionGetPointSyms(section, Ncl, points, &perms[f], &flips[f])); 7725 /* may need to apply sign changes to the element matrix */ 7726 if (values && flips[f]) { 7727 PetscInt foffset = offsets[f]; 7728 7729 for (p = 0; p < Ncl; ++p) { 7730 PetscInt pnt = points[2 * p], fdof; 7731 const PetscScalar *flip = flips[f] ? flips[f][p] : NULL; 7732 7733 if (!Nf) PetscCall(PetscSectionGetDof(section, pnt, &fdof)); 7734 else PetscCall(PetscSectionGetFieldDof(section, pnt, f, &fdof)); 7735 if (flip) { 7736 PetscInt i, j, k; 7737 7738 if (!valCopy) { 7739 PetscCall(DMGetWorkArray(dm, Ni * Ni, MPIU_SCALAR, &valCopy)); 7740 for (j = 0; j < Ni * Ni; ++j) valCopy[j] = (*values)[j]; 7741 *values = valCopy; 7742 } 7743 for (i = 0; i < fdof; ++i) { 7744 PetscScalar fval = flip[i]; 7745 7746 for (k = 0; k < Ni; ++k) { 7747 valCopy[Ni * (foffset + i) + k] *= fval; 7748 valCopy[Ni * k + (foffset + i)] *= fval; 7749 } 7750 } 7751 } 7752 foffset += fdof; 7753 } 7754 } 7755 } 7756 /* 4) Apply hanging node constraints. Get new symmetries and replace all storage with constrained storage */ 7757 PetscCall(DMPlexAnchorsModifyMat(dm, section, Ncl, Ni, points, perms, values ? *values : NULL, &NclC, &NiC, &pointsC, values ? &valuesC : NULL, offsets, PETSC_TRUE)); 7758 if (NclC) { 7759 if (valCopy) PetscCall(DMRestoreWorkArray(dm, Ni * Ni, MPIU_SCALAR, &valCopy)); 7760 for (f = 0; f < PetscMax(1, Nf); ++f) { 7761 if (Nf) PetscCall(PetscSectionRestoreFieldPointSyms(section, f, Ncl, points, &perms[f], &flips[f])); 7762 else PetscCall(PetscSectionRestorePointSyms(section, Ncl, points, &perms[f], &flips[f])); 7763 } 7764 for (f = 0; f < PetscMax(1, Nf); ++f) { 7765 if (Nf) PetscCall(PetscSectionGetFieldPointSyms(section, f, NclC, pointsC, &perms[f], &flips[f])); 7766 else PetscCall(PetscSectionGetPointSyms(section, NclC, pointsC, &perms[f], &flips[f])); 7767 } 7768 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &Ncl, &points, &clSection, &clPoints, &clp)); 7769 Ncl = NclC; 7770 Ni = NiC; 7771 points = pointsC; 7772 if (values) *values = valuesC; 7773 } 7774 /* 5) Calculate indices */ 7775 PetscCall(DMGetWorkArray(dm, Ni, MPIU_INT, &idx)); 7776 if (Nf) { 7777 PetscInt idxOff; 7778 PetscBool useFieldOffsets; 7779 7780 if (outOffsets) { 7781 for (f = 0; f <= Nf; f++) outOffsets[f] = offsets[f]; 7782 } 7783 PetscCall(PetscSectionGetUseFieldOffsets(idxSection, &useFieldOffsets)); 7784 if (useFieldOffsets) { 7785 for (p = 0; p < Ncl; ++p) { 7786 const PetscInt pnt = points[p * 2]; 7787 7788 PetscCall(DMPlexGetIndicesPointFieldsSplit_Internal(section, idxSection, pnt, offsets, perms, p, clperm, idx)); 7789 } 7790 } else { 7791 for (p = 0; p < Ncl; ++p) { 7792 const PetscInt pnt = points[p * 2]; 7793 7794 PetscCall(PetscSectionGetOffset(idxSection, pnt, &idxOff)); 7795 /* Note that we pass a local section even though we're using global offsets. This is because global sections do 7796 * not (at the time of this writing) have fields set. They probably should, in which case we would pass the 7797 * global section. */ 7798 PetscCall(DMPlexGetIndicesPointFields_Internal(section, isLocal, pnt, idxOff < 0 ? -(idxOff + 1) : idxOff, offsets, PETSC_FALSE, perms, p, clperm, idx)); 7799 } 7800 } 7801 } else { 7802 PetscInt off = 0, idxOff; 7803 7804 for (p = 0; p < Ncl; ++p) { 7805 const PetscInt pnt = points[p * 2]; 7806 const PetscInt *perm = perms[0] ? perms[0][p] : NULL; 7807 7808 PetscCall(PetscSectionGetOffset(idxSection, pnt, &idxOff)); 7809 /* Note that we pass a local section even though we're using global offsets. This is because global sections do 7810 * not (at the time of this writing) have fields set. They probably should, in which case we would pass the global section. */ 7811 PetscCall(DMPlexGetIndicesPoint_Internal(section, isLocal, pnt, idxOff < 0 ? -(idxOff + 1) : idxOff, &off, PETSC_FALSE, perm, clperm, idx)); 7812 } 7813 } 7814 /* 6) Cleanup */ 7815 for (f = 0; f < PetscMax(1, Nf); ++f) { 7816 if (Nf) PetscCall(PetscSectionRestoreFieldPointSyms(section, f, Ncl, points, &perms[f], &flips[f])); 7817 else PetscCall(PetscSectionRestorePointSyms(section, Ncl, points, &perms[f], &flips[f])); 7818 } 7819 if (NclC) { 7820 PetscCall(DMRestoreWorkArray(dm, NclC * 2, MPIU_INT, &pointsC)); 7821 } else { 7822 PetscCall(DMPlexRestoreCompressedClosure(dm, section, point, &Ncl, &points, &clSection, &clPoints, &clp)); 7823 } 7824 7825 if (numIndices) *numIndices = Ni; 7826 if (indices) *indices = idx; 7827 PetscFunctionReturn(PETSC_SUCCESS); 7828 } 7829 7830 /*@C 7831 DMPlexRestoreClosureIndices - Restores the global dof indices associated with the closure of the given point within the provided sections. 7832 7833 Not collective 7834 7835 Input Parameters: 7836 + dm - The `DM` 7837 . section - The `PetscSection` describing the points (a local section) 7838 . idxSection - The `PetscSection` from which to obtain indices (may be local or global) 7839 . point - The point defining the closure 7840 - useClPerm - Use the closure point permutation if available 7841 7842 Output Parameters: 7843 + numIndices - The number of dof indices in the closure of point with the input sections 7844 . indices - The dof indices 7845 . outOffsets - Array to write the field offsets into, or `NULL` 7846 - values - The input values, which may be modified if sign flips are induced by the point symmetries, or `NULL` 7847 7848 Level: advanced 7849 7850 Notes: 7851 If values were modified, the user is responsible for calling `DMRestoreWorkArray`(dm, 0, `MPIU_SCALAR`, &values). 7852 7853 If idxSection is global, any constrained dofs (see `DMAddBoundary()`, for example) will get negative indices. The value 7854 of those indices is not significant. If idxSection is local, the constrained dofs will yield the involution -(idx+1) 7855 of their index in a local vector. A caller who does not wish to distinguish those points may recover the nonnegative 7856 indices via involution, -(-(idx+1)+1)==idx. Local indices are provided when idxSection == section, otherwise global 7857 indices (with the above semantics) are implied. 7858 7859 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetClosureIndices()`, `DMPlexVecGetClosure()`, `DMPlexMatSetClosure()`, `DMGetLocalSection()`, `DMGetGlobalSection()` 7860 @*/ 7861 PetscErrorCode DMPlexRestoreClosureIndices(DM dm, PetscSection section, PetscSection idxSection, PetscInt point, PetscBool useClPerm, PetscInt *numIndices, PetscInt *indices[], PetscInt outOffsets[], PetscScalar *values[]) 7862 { 7863 PetscFunctionBegin; 7864 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 7865 PetscAssertPointer(indices, 7); 7866 PetscCall(DMRestoreWorkArray(dm, 0, MPIU_INT, indices)); 7867 PetscFunctionReturn(PETSC_SUCCESS); 7868 } 7869 7870 /*@C 7871 DMPlexMatSetClosure - Set an array of the values on the closure of 'point' 7872 7873 Not collective 7874 7875 Input Parameters: 7876 + dm - The `DM` 7877 . section - The section describing the layout in `v`, or `NULL` to use the default section 7878 . globalSection - The section describing the layout in `v`, or `NULL` to use the default global section 7879 . A - The matrix 7880 . point - The point in the `DM` 7881 . values - The array of values 7882 - mode - The insert mode, where `INSERT_ALL_VALUES` and `ADD_ALL_VALUES` also overwrite boundary conditions 7883 7884 Level: intermediate 7885 7886 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexMatSetClosureGeneral()`, `DMPlexVecGetClosure()`, `DMPlexVecSetClosure()` 7887 @*/ 7888 PetscErrorCode DMPlexMatSetClosure(DM dm, PetscSection section, PetscSection globalSection, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode) 7889 { 7890 DM_Plex *mesh = (DM_Plex *)dm->data; 7891 PetscInt *indices; 7892 PetscInt numIndices; 7893 const PetscScalar *valuesOrig = values; 7894 PetscErrorCode ierr; 7895 7896 PetscFunctionBegin; 7897 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 7898 if (!section) PetscCall(DMGetLocalSection(dm, §ion)); 7899 PetscValidHeaderSpecific(section, PETSC_SECTION_CLASSID, 2); 7900 if (!globalSection) PetscCall(DMGetGlobalSection(dm, &globalSection)); 7901 PetscValidHeaderSpecific(globalSection, PETSC_SECTION_CLASSID, 3); 7902 PetscValidHeaderSpecific(A, MAT_CLASSID, 4); 7903 7904 PetscCall(DMPlexGetClosureIndices(dm, section, globalSection, point, PETSC_TRUE, &numIndices, &indices, NULL, (PetscScalar **)&values)); 7905 7906 if (mesh->printSetValues) PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDOUT_SELF, A, point, numIndices, indices, 0, NULL, values)); 7907 /* TODO: fix this code to not use error codes as handle-able exceptions! */ 7908 ierr = MatSetValues(A, numIndices, indices, numIndices, indices, values, mode); 7909 if (ierr) { 7910 PetscMPIInt rank; 7911 7912 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank)); 7913 PetscCall((*PetscErrorPrintf)("[%d]ERROR in DMPlexMatSetClosure\n", rank)); 7914 PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDERR_SELF, A, point, numIndices, indices, 0, NULL, values)); 7915 PetscCall(DMPlexRestoreClosureIndices(dm, section, globalSection, point, PETSC_TRUE, &numIndices, &indices, NULL, (PetscScalar **)&values)); 7916 if (values != valuesOrig) PetscCall(DMRestoreWorkArray(dm, 0, MPIU_SCALAR, &values)); 7917 SETERRQ(PetscObjectComm((PetscObject)dm), ierr, "Not possible to set matrix values"); 7918 } 7919 if (mesh->printFEM > 1) { 7920 PetscInt i; 7921 PetscCall(PetscPrintf(PETSC_COMM_SELF, " Indices:")); 7922 for (i = 0; i < numIndices; ++i) PetscCall(PetscPrintf(PETSC_COMM_SELF, " %" PetscInt_FMT, indices[i])); 7923 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n")); 7924 } 7925 7926 PetscCall(DMPlexRestoreClosureIndices(dm, section, globalSection, point, PETSC_TRUE, &numIndices, &indices, NULL, (PetscScalar **)&values)); 7927 if (values != valuesOrig) PetscCall(DMRestoreWorkArray(dm, 0, MPIU_SCALAR, &values)); 7928 PetscFunctionReturn(PETSC_SUCCESS); 7929 } 7930 7931 /*@C 7932 DMPlexMatSetClosureGeneral - Set an array of the values on the closure of 'point' using a different row and column section 7933 7934 Not collective 7935 7936 Input Parameters: 7937 + dmRow - The `DM` for the row fields 7938 . sectionRow - The section describing the layout, or `NULL` to use the default section in `dmRow` 7939 . globalSectionRow - The section describing the layout, or `NULL` to use the default global section in `dmRow` 7940 . dmCol - The `DM` for the column fields 7941 . sectionCol - The section describing the layout, or `NULL` to use the default section in `dmCol` 7942 . globalSectionCol - The section describing the layout, or `NULL` to use the default global section in `dmCol` 7943 . A - The matrix 7944 . point - The point in the `DM` 7945 . values - The array of values 7946 - mode - The insert mode, where `INSERT_ALL_VALUES` and `ADD_ALL_VALUES` also overwrite boundary conditions 7947 7948 Level: intermediate 7949 7950 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexMatSetClosure()`, `DMPlexVecGetClosure()`, `DMPlexVecSetClosure()` 7951 @*/ 7952 PetscErrorCode DMPlexMatSetClosureGeneral(DM dmRow, PetscSection sectionRow, PetscSection globalSectionRow, DM dmCol, PetscSection sectionCol, PetscSection globalSectionCol, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode) 7953 { 7954 DM_Plex *mesh = (DM_Plex *)dmRow->data; 7955 PetscInt *indicesRow, *indicesCol; 7956 PetscInt numIndicesRow, numIndicesCol; 7957 const PetscScalar *valuesOrig = values; 7958 PetscErrorCode ierr; 7959 7960 PetscFunctionBegin; 7961 PetscValidHeaderSpecific(dmRow, DM_CLASSID, 1); 7962 if (!sectionRow) PetscCall(DMGetLocalSection(dmRow, §ionRow)); 7963 PetscValidHeaderSpecific(sectionRow, PETSC_SECTION_CLASSID, 2); 7964 if (!globalSectionRow) PetscCall(DMGetGlobalSection(dmRow, &globalSectionRow)); 7965 PetscValidHeaderSpecific(globalSectionRow, PETSC_SECTION_CLASSID, 3); 7966 PetscValidHeaderSpecific(dmCol, DM_CLASSID, 4); 7967 if (!sectionCol) PetscCall(DMGetLocalSection(dmCol, §ionCol)); 7968 PetscValidHeaderSpecific(sectionCol, PETSC_SECTION_CLASSID, 5); 7969 if (!globalSectionCol) PetscCall(DMGetGlobalSection(dmCol, &globalSectionCol)); 7970 PetscValidHeaderSpecific(globalSectionCol, PETSC_SECTION_CLASSID, 6); 7971 PetscValidHeaderSpecific(A, MAT_CLASSID, 7); 7972 7973 PetscCall(DMPlexGetClosureIndices(dmRow, sectionRow, globalSectionRow, point, PETSC_TRUE, &numIndicesRow, &indicesRow, NULL, (PetscScalar **)&values)); 7974 PetscCall(DMPlexGetClosureIndices(dmCol, sectionCol, globalSectionCol, point, PETSC_TRUE, &numIndicesCol, &indicesCol, NULL, (PetscScalar **)&values)); 7975 7976 if (mesh->printSetValues) PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDOUT_SELF, A, point, numIndicesRow, indicesRow, numIndicesCol, indicesCol, values)); 7977 /* TODO: fix this code to not use error codes as handle-able exceptions! */ 7978 ierr = MatSetValues(A, numIndicesRow, indicesRow, numIndicesCol, indicesCol, values, mode); 7979 if (ierr) { 7980 PetscMPIInt rank; 7981 7982 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank)); 7983 PetscCall((*PetscErrorPrintf)("[%d]ERROR in DMPlexMatSetClosure\n", rank)); 7984 PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDERR_SELF, A, point, numIndicesRow, indicesRow, numIndicesCol, indicesCol, values)); 7985 PetscCall(DMPlexRestoreClosureIndices(dmRow, sectionRow, globalSectionRow, point, PETSC_TRUE, &numIndicesRow, &indicesRow, NULL, (PetscScalar **)&values)); 7986 PetscCall(DMPlexRestoreClosureIndices(dmCol, sectionCol, globalSectionCol, point, PETSC_TRUE, &numIndicesCol, &indicesRow, NULL, (PetscScalar **)&values)); 7987 if (values != valuesOrig) PetscCall(DMRestoreWorkArray(dmRow, 0, MPIU_SCALAR, &values)); 7988 } 7989 7990 PetscCall(DMPlexRestoreClosureIndices(dmRow, sectionRow, globalSectionRow, point, PETSC_TRUE, &numIndicesRow, &indicesRow, NULL, (PetscScalar **)&values)); 7991 PetscCall(DMPlexRestoreClosureIndices(dmCol, sectionCol, globalSectionCol, point, PETSC_TRUE, &numIndicesCol, &indicesCol, NULL, (PetscScalar **)&values)); 7992 if (values != valuesOrig) PetscCall(DMRestoreWorkArray(dmRow, 0, MPIU_SCALAR, &values)); 7993 PetscFunctionReturn(PETSC_SUCCESS); 7994 } 7995 7996 PetscErrorCode DMPlexMatSetClosureRefined(DM dmf, PetscSection fsection, PetscSection globalFSection, DM dmc, PetscSection csection, PetscSection globalCSection, Mat A, PetscInt point, const PetscScalar values[], InsertMode mode) 7997 { 7998 DM_Plex *mesh = (DM_Plex *)dmf->data; 7999 PetscInt *fpoints = NULL, *ftotpoints = NULL; 8000 PetscInt *cpoints = NULL; 8001 PetscInt *findices, *cindices; 8002 const PetscInt *fclperm = NULL, *cclperm = NULL; /* Closure permutations cannot work here */ 8003 PetscInt foffsets[32], coffsets[32]; 8004 DMPolytopeType ct; 8005 PetscInt numFields, numSubcells, maxFPoints, numFPoints, numCPoints, numFIndices, numCIndices, dof, off, globalOff, pStart, pEnd, p, q, r, s, f; 8006 PetscErrorCode ierr; 8007 8008 PetscFunctionBegin; 8009 PetscValidHeaderSpecific(dmf, DM_CLASSID, 1); 8010 PetscValidHeaderSpecific(dmc, DM_CLASSID, 4); 8011 if (!fsection) PetscCall(DMGetLocalSection(dmf, &fsection)); 8012 PetscValidHeaderSpecific(fsection, PETSC_SECTION_CLASSID, 2); 8013 if (!csection) PetscCall(DMGetLocalSection(dmc, &csection)); 8014 PetscValidHeaderSpecific(csection, PETSC_SECTION_CLASSID, 5); 8015 if (!globalFSection) PetscCall(DMGetGlobalSection(dmf, &globalFSection)); 8016 PetscValidHeaderSpecific(globalFSection, PETSC_SECTION_CLASSID, 3); 8017 if (!globalCSection) PetscCall(DMGetGlobalSection(dmc, &globalCSection)); 8018 PetscValidHeaderSpecific(globalCSection, PETSC_SECTION_CLASSID, 6); 8019 PetscValidHeaderSpecific(A, MAT_CLASSID, 7); 8020 PetscCall(PetscSectionGetNumFields(fsection, &numFields)); 8021 PetscCheck(numFields <= 31, PetscObjectComm((PetscObject)dmf), PETSC_ERR_ARG_OUTOFRANGE, "Number of fields %" PetscInt_FMT " limited to 31", numFields); 8022 PetscCall(PetscArrayzero(foffsets, 32)); 8023 PetscCall(PetscArrayzero(coffsets, 32)); 8024 /* Column indices */ 8025 PetscCall(DMPlexGetTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints)); 8026 maxFPoints = numCPoints; 8027 /* Compress out points not in the section */ 8028 /* TODO: Squeeze out points with 0 dof as well */ 8029 PetscCall(PetscSectionGetChart(csection, &pStart, &pEnd)); 8030 for (p = 0, q = 0; p < numCPoints * 2; p += 2) { 8031 if ((cpoints[p] >= pStart) && (cpoints[p] < pEnd)) { 8032 cpoints[q * 2] = cpoints[p]; 8033 cpoints[q * 2 + 1] = cpoints[p + 1]; 8034 ++q; 8035 } 8036 } 8037 numCPoints = q; 8038 for (p = 0, numCIndices = 0; p < numCPoints * 2; p += 2) { 8039 PetscInt fdof; 8040 8041 PetscCall(PetscSectionGetDof(csection, cpoints[p], &dof)); 8042 if (!dof) continue; 8043 for (f = 0; f < numFields; ++f) { 8044 PetscCall(PetscSectionGetFieldDof(csection, cpoints[p], f, &fdof)); 8045 coffsets[f + 1] += fdof; 8046 } 8047 numCIndices += dof; 8048 } 8049 for (f = 1; f < numFields; ++f) coffsets[f + 1] += coffsets[f]; 8050 /* Row indices */ 8051 PetscCall(DMPlexGetCellType(dmc, point, &ct)); 8052 { 8053 DMPlexTransform tr; 8054 DMPolytopeType *rct; 8055 PetscInt *rsize, *rcone, *rornt, Nt; 8056 8057 PetscCall(DMPlexTransformCreate(PETSC_COMM_SELF, &tr)); 8058 PetscCall(DMPlexTransformSetType(tr, DMPLEXREFINEREGULAR)); 8059 PetscCall(DMPlexTransformCellTransform(tr, ct, point, NULL, &Nt, &rct, &rsize, &rcone, &rornt)); 8060 numSubcells = rsize[Nt - 1]; 8061 PetscCall(DMPlexTransformDestroy(&tr)); 8062 } 8063 PetscCall(DMGetWorkArray(dmf, maxFPoints * 2 * numSubcells, MPIU_INT, &ftotpoints)); 8064 for (r = 0, q = 0; r < numSubcells; ++r) { 8065 /* TODO Map from coarse to fine cells */ 8066 PetscCall(DMPlexGetTransitiveClosure(dmf, point * numSubcells + r, PETSC_TRUE, &numFPoints, &fpoints)); 8067 /* Compress out points not in the section */ 8068 PetscCall(PetscSectionGetChart(fsection, &pStart, &pEnd)); 8069 for (p = 0; p < numFPoints * 2; p += 2) { 8070 if ((fpoints[p] >= pStart) && (fpoints[p] < pEnd)) { 8071 PetscCall(PetscSectionGetDof(fsection, fpoints[p], &dof)); 8072 if (!dof) continue; 8073 for (s = 0; s < q; ++s) 8074 if (fpoints[p] == ftotpoints[s * 2]) break; 8075 if (s < q) continue; 8076 ftotpoints[q * 2] = fpoints[p]; 8077 ftotpoints[q * 2 + 1] = fpoints[p + 1]; 8078 ++q; 8079 } 8080 } 8081 PetscCall(DMPlexRestoreTransitiveClosure(dmf, point, PETSC_TRUE, &numFPoints, &fpoints)); 8082 } 8083 numFPoints = q; 8084 for (p = 0, numFIndices = 0; p < numFPoints * 2; p += 2) { 8085 PetscInt fdof; 8086 8087 PetscCall(PetscSectionGetDof(fsection, ftotpoints[p], &dof)); 8088 if (!dof) continue; 8089 for (f = 0; f < numFields; ++f) { 8090 PetscCall(PetscSectionGetFieldDof(fsection, ftotpoints[p], f, &fdof)); 8091 foffsets[f + 1] += fdof; 8092 } 8093 numFIndices += dof; 8094 } 8095 for (f = 1; f < numFields; ++f) foffsets[f + 1] += foffsets[f]; 8096 8097 PetscCheck(!numFields || foffsets[numFields] == numFIndices, PetscObjectComm((PetscObject)dmf), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, foffsets[numFields], numFIndices); 8098 PetscCheck(!numFields || coffsets[numFields] == numCIndices, PetscObjectComm((PetscObject)dmc), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, coffsets[numFields], numCIndices); 8099 PetscCall(DMGetWorkArray(dmf, numFIndices, MPIU_INT, &findices)); 8100 PetscCall(DMGetWorkArray(dmc, numCIndices, MPIU_INT, &cindices)); 8101 if (numFields) { 8102 const PetscInt **permsF[32] = {NULL}; 8103 const PetscInt **permsC[32] = {NULL}; 8104 8105 for (f = 0; f < numFields; f++) { 8106 PetscCall(PetscSectionGetFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL)); 8107 PetscCall(PetscSectionGetFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL)); 8108 } 8109 for (p = 0; p < numFPoints; p++) { 8110 PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff)); 8111 PetscCall(DMPlexGetIndicesPointFields_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, foffsets, PETSC_FALSE, permsF, p, fclperm, findices)); 8112 } 8113 for (p = 0; p < numCPoints; p++) { 8114 PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff)); 8115 PetscCall(DMPlexGetIndicesPointFields_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, coffsets, PETSC_FALSE, permsC, p, cclperm, cindices)); 8116 } 8117 for (f = 0; f < numFields; f++) { 8118 PetscCall(PetscSectionRestoreFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL)); 8119 PetscCall(PetscSectionRestoreFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL)); 8120 } 8121 } else { 8122 const PetscInt **permsF = NULL; 8123 const PetscInt **permsC = NULL; 8124 8125 PetscCall(PetscSectionGetPointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL)); 8126 PetscCall(PetscSectionGetPointSyms(csection, numCPoints, cpoints, &permsC, NULL)); 8127 for (p = 0, off = 0; p < numFPoints; p++) { 8128 const PetscInt *perm = permsF ? permsF[p] : NULL; 8129 8130 PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff)); 8131 PetscCall(DMPlexGetIndicesPoint_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, fclperm, findices)); 8132 } 8133 for (p = 0, off = 0; p < numCPoints; p++) { 8134 const PetscInt *perm = permsC ? permsC[p] : NULL; 8135 8136 PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff)); 8137 PetscCall(DMPlexGetIndicesPoint_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, cclperm, cindices)); 8138 } 8139 PetscCall(PetscSectionRestorePointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL)); 8140 PetscCall(PetscSectionRestorePointSyms(csection, numCPoints, cpoints, &permsC, NULL)); 8141 } 8142 if (mesh->printSetValues) PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDOUT_SELF, A, point, numFIndices, findices, numCIndices, cindices, values)); 8143 /* TODO: flips */ 8144 /* TODO: fix this code to not use error codes as handle-able exceptions! */ 8145 ierr = MatSetValues(A, numFIndices, findices, numCIndices, cindices, values, mode); 8146 if (ierr) { 8147 PetscMPIInt rank; 8148 8149 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)A), &rank)); 8150 PetscCall((*PetscErrorPrintf)("[%d]ERROR in DMPlexMatSetClosure\n", rank)); 8151 PetscCall(DMPlexPrintMatSetValues(PETSC_VIEWER_STDERR_SELF, A, point, numFIndices, findices, numCIndices, cindices, values)); 8152 PetscCall(DMRestoreWorkArray(dmf, numFIndices, MPIU_INT, &findices)); 8153 PetscCall(DMRestoreWorkArray(dmc, numCIndices, MPIU_INT, &cindices)); 8154 } 8155 PetscCall(DMRestoreWorkArray(dmf, numCPoints * 2 * 4, MPIU_INT, &ftotpoints)); 8156 PetscCall(DMPlexRestoreTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints)); 8157 PetscCall(DMRestoreWorkArray(dmf, numFIndices, MPIU_INT, &findices)); 8158 PetscCall(DMRestoreWorkArray(dmc, numCIndices, MPIU_INT, &cindices)); 8159 PetscFunctionReturn(PETSC_SUCCESS); 8160 } 8161 8162 PetscErrorCode DMPlexMatGetClosureIndicesRefined(DM dmf, PetscSection fsection, PetscSection globalFSection, DM dmc, PetscSection csection, PetscSection globalCSection, PetscInt point, PetscInt cindices[], PetscInt findices[]) 8163 { 8164 PetscInt *fpoints = NULL, *ftotpoints = NULL; 8165 PetscInt *cpoints = NULL; 8166 PetscInt foffsets[32], coffsets[32]; 8167 const PetscInt *fclperm = NULL, *cclperm = NULL; /* Closure permutations cannot work here */ 8168 DMPolytopeType ct; 8169 PetscInt numFields, numSubcells, maxFPoints, numFPoints, numCPoints, numFIndices, numCIndices, dof, off, globalOff, pStart, pEnd, p, q, r, s, f; 8170 8171 PetscFunctionBegin; 8172 PetscValidHeaderSpecific(dmf, DM_CLASSID, 1); 8173 PetscValidHeaderSpecific(dmc, DM_CLASSID, 4); 8174 if (!fsection) PetscCall(DMGetLocalSection(dmf, &fsection)); 8175 PetscValidHeaderSpecific(fsection, PETSC_SECTION_CLASSID, 2); 8176 if (!csection) PetscCall(DMGetLocalSection(dmc, &csection)); 8177 PetscValidHeaderSpecific(csection, PETSC_SECTION_CLASSID, 5); 8178 if (!globalFSection) PetscCall(DMGetGlobalSection(dmf, &globalFSection)); 8179 PetscValidHeaderSpecific(globalFSection, PETSC_SECTION_CLASSID, 3); 8180 if (!globalCSection) PetscCall(DMGetGlobalSection(dmc, &globalCSection)); 8181 PetscValidHeaderSpecific(globalCSection, PETSC_SECTION_CLASSID, 6); 8182 PetscCall(PetscSectionGetNumFields(fsection, &numFields)); 8183 PetscCheck(numFields <= 31, PetscObjectComm((PetscObject)dmf), PETSC_ERR_ARG_OUTOFRANGE, "Number of fields %" PetscInt_FMT " limited to 31", numFields); 8184 PetscCall(PetscArrayzero(foffsets, 32)); 8185 PetscCall(PetscArrayzero(coffsets, 32)); 8186 /* Column indices */ 8187 PetscCall(DMPlexGetTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints)); 8188 maxFPoints = numCPoints; 8189 /* Compress out points not in the section */ 8190 /* TODO: Squeeze out points with 0 dof as well */ 8191 PetscCall(PetscSectionGetChart(csection, &pStart, &pEnd)); 8192 for (p = 0, q = 0; p < numCPoints * 2; p += 2) { 8193 if ((cpoints[p] >= pStart) && (cpoints[p] < pEnd)) { 8194 cpoints[q * 2] = cpoints[p]; 8195 cpoints[q * 2 + 1] = cpoints[p + 1]; 8196 ++q; 8197 } 8198 } 8199 numCPoints = q; 8200 for (p = 0, numCIndices = 0; p < numCPoints * 2; p += 2) { 8201 PetscInt fdof; 8202 8203 PetscCall(PetscSectionGetDof(csection, cpoints[p], &dof)); 8204 if (!dof) continue; 8205 for (f = 0; f < numFields; ++f) { 8206 PetscCall(PetscSectionGetFieldDof(csection, cpoints[p], f, &fdof)); 8207 coffsets[f + 1] += fdof; 8208 } 8209 numCIndices += dof; 8210 } 8211 for (f = 1; f < numFields; ++f) coffsets[f + 1] += coffsets[f]; 8212 /* Row indices */ 8213 PetscCall(DMPlexGetCellType(dmc, point, &ct)); 8214 { 8215 DMPlexTransform tr; 8216 DMPolytopeType *rct; 8217 PetscInt *rsize, *rcone, *rornt, Nt; 8218 8219 PetscCall(DMPlexTransformCreate(PETSC_COMM_SELF, &tr)); 8220 PetscCall(DMPlexTransformSetType(tr, DMPLEXREFINEREGULAR)); 8221 PetscCall(DMPlexTransformCellTransform(tr, ct, point, NULL, &Nt, &rct, &rsize, &rcone, &rornt)); 8222 numSubcells = rsize[Nt - 1]; 8223 PetscCall(DMPlexTransformDestroy(&tr)); 8224 } 8225 PetscCall(DMGetWorkArray(dmf, maxFPoints * 2 * numSubcells, MPIU_INT, &ftotpoints)); 8226 for (r = 0, q = 0; r < numSubcells; ++r) { 8227 /* TODO Map from coarse to fine cells */ 8228 PetscCall(DMPlexGetTransitiveClosure(dmf, point * numSubcells + r, PETSC_TRUE, &numFPoints, &fpoints)); 8229 /* Compress out points not in the section */ 8230 PetscCall(PetscSectionGetChart(fsection, &pStart, &pEnd)); 8231 for (p = 0; p < numFPoints * 2; p += 2) { 8232 if ((fpoints[p] >= pStart) && (fpoints[p] < pEnd)) { 8233 PetscCall(PetscSectionGetDof(fsection, fpoints[p], &dof)); 8234 if (!dof) continue; 8235 for (s = 0; s < q; ++s) 8236 if (fpoints[p] == ftotpoints[s * 2]) break; 8237 if (s < q) continue; 8238 ftotpoints[q * 2] = fpoints[p]; 8239 ftotpoints[q * 2 + 1] = fpoints[p + 1]; 8240 ++q; 8241 } 8242 } 8243 PetscCall(DMPlexRestoreTransitiveClosure(dmf, point, PETSC_TRUE, &numFPoints, &fpoints)); 8244 } 8245 numFPoints = q; 8246 for (p = 0, numFIndices = 0; p < numFPoints * 2; p += 2) { 8247 PetscInt fdof; 8248 8249 PetscCall(PetscSectionGetDof(fsection, ftotpoints[p], &dof)); 8250 if (!dof) continue; 8251 for (f = 0; f < numFields; ++f) { 8252 PetscCall(PetscSectionGetFieldDof(fsection, ftotpoints[p], f, &fdof)); 8253 foffsets[f + 1] += fdof; 8254 } 8255 numFIndices += dof; 8256 } 8257 for (f = 1; f < numFields; ++f) foffsets[f + 1] += foffsets[f]; 8258 8259 PetscCheck(!numFields || foffsets[numFields] == numFIndices, PetscObjectComm((PetscObject)dmf), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, foffsets[numFields], numFIndices); 8260 PetscCheck(!numFields || coffsets[numFields] == numCIndices, PetscObjectComm((PetscObject)dmc), PETSC_ERR_PLIB, "Invalid size for closure %" PetscInt_FMT " should be %" PetscInt_FMT, coffsets[numFields], numCIndices); 8261 if (numFields) { 8262 const PetscInt **permsF[32] = {NULL}; 8263 const PetscInt **permsC[32] = {NULL}; 8264 8265 for (f = 0; f < numFields; f++) { 8266 PetscCall(PetscSectionGetFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL)); 8267 PetscCall(PetscSectionGetFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL)); 8268 } 8269 for (p = 0; p < numFPoints; p++) { 8270 PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff)); 8271 PetscCall(DMPlexGetIndicesPointFields_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, foffsets, PETSC_FALSE, permsF, p, fclperm, findices)); 8272 } 8273 for (p = 0; p < numCPoints; p++) { 8274 PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff)); 8275 PetscCall(DMPlexGetIndicesPointFields_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, coffsets, PETSC_FALSE, permsC, p, cclperm, cindices)); 8276 } 8277 for (f = 0; f < numFields; f++) { 8278 PetscCall(PetscSectionRestoreFieldPointSyms(fsection, f, numFPoints, ftotpoints, &permsF[f], NULL)); 8279 PetscCall(PetscSectionRestoreFieldPointSyms(csection, f, numCPoints, cpoints, &permsC[f], NULL)); 8280 } 8281 } else { 8282 const PetscInt **permsF = NULL; 8283 const PetscInt **permsC = NULL; 8284 8285 PetscCall(PetscSectionGetPointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL)); 8286 PetscCall(PetscSectionGetPointSyms(csection, numCPoints, cpoints, &permsC, NULL)); 8287 for (p = 0, off = 0; p < numFPoints; p++) { 8288 const PetscInt *perm = permsF ? permsF[p] : NULL; 8289 8290 PetscCall(PetscSectionGetOffset(globalFSection, ftotpoints[2 * p], &globalOff)); 8291 PetscCall(DMPlexGetIndicesPoint_Internal(fsection, PETSC_FALSE, ftotpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, fclperm, findices)); 8292 } 8293 for (p = 0, off = 0; p < numCPoints; p++) { 8294 const PetscInt *perm = permsC ? permsC[p] : NULL; 8295 8296 PetscCall(PetscSectionGetOffset(globalCSection, cpoints[2 * p], &globalOff)); 8297 PetscCall(DMPlexGetIndicesPoint_Internal(csection, PETSC_FALSE, cpoints[2 * p], globalOff < 0 ? -(globalOff + 1) : globalOff, &off, PETSC_FALSE, perm, cclperm, cindices)); 8298 } 8299 PetscCall(PetscSectionRestorePointSyms(fsection, numFPoints, ftotpoints, &permsF, NULL)); 8300 PetscCall(PetscSectionRestorePointSyms(csection, numCPoints, cpoints, &permsC, NULL)); 8301 } 8302 PetscCall(DMRestoreWorkArray(dmf, numCPoints * 2 * 4, MPIU_INT, &ftotpoints)); 8303 PetscCall(DMPlexRestoreTransitiveClosure(dmc, point, PETSC_TRUE, &numCPoints, &cpoints)); 8304 PetscFunctionReturn(PETSC_SUCCESS); 8305 } 8306 8307 /*@C 8308 DMPlexGetVTKCellHeight - Returns the height in the DAG used to determine which points are cells (normally 0) 8309 8310 Input Parameter: 8311 . dm - The `DMPLEX` object 8312 8313 Output Parameter: 8314 . cellHeight - The height of a cell 8315 8316 Level: developer 8317 8318 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetVTKCellHeight()` 8319 @*/ 8320 PetscErrorCode DMPlexGetVTKCellHeight(DM dm, PetscInt *cellHeight) 8321 { 8322 DM_Plex *mesh = (DM_Plex *)dm->data; 8323 8324 PetscFunctionBegin; 8325 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8326 PetscAssertPointer(cellHeight, 2); 8327 *cellHeight = mesh->vtkCellHeight; 8328 PetscFunctionReturn(PETSC_SUCCESS); 8329 } 8330 8331 /*@C 8332 DMPlexSetVTKCellHeight - Sets the height in the DAG used to determine which points are cells (normally 0) 8333 8334 Input Parameters: 8335 + dm - The `DMPLEX` object 8336 - cellHeight - The height of a cell 8337 8338 Level: developer 8339 8340 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetVTKCellHeight()` 8341 @*/ 8342 PetscErrorCode DMPlexSetVTKCellHeight(DM dm, PetscInt cellHeight) 8343 { 8344 DM_Plex *mesh = (DM_Plex *)dm->data; 8345 8346 PetscFunctionBegin; 8347 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8348 mesh->vtkCellHeight = cellHeight; 8349 PetscFunctionReturn(PETSC_SUCCESS); 8350 } 8351 8352 /*@ 8353 DMPlexGetCellTypeStratum - Get the range of cells of a given celltype 8354 8355 Input Parameters: 8356 + dm - The `DMPLEX` object 8357 - ct - The `DMPolytopeType` of the cell 8358 8359 Output Parameters: 8360 + start - The first cell of this type, or `NULL` 8361 - end - The upper bound on this celltype, or `NULL` 8362 8363 Level: advanced 8364 8365 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexConstructGhostCells()`, `DMPlexGetDepthStratum()`, `DMPlexGetHeightStratum()` 8366 @*/ 8367 PetscErrorCode DMPlexGetCellTypeStratum(DM dm, DMPolytopeType ct, PetscInt *start, PetscInt *end) 8368 { 8369 DM_Plex *mesh = (DM_Plex *)dm->data; 8370 DMLabel label; 8371 PetscInt pStart, pEnd; 8372 8373 PetscFunctionBegin; 8374 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8375 if (start) { 8376 PetscAssertPointer(start, 3); 8377 *start = 0; 8378 } 8379 if (end) { 8380 PetscAssertPointer(end, 4); 8381 *end = 0; 8382 } 8383 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 8384 if (pStart == pEnd) PetscFunctionReturn(PETSC_SUCCESS); 8385 if (mesh->tr) { 8386 PetscCall(DMPlexTransformGetCellTypeStratum(mesh->tr, ct, start, end)); 8387 } else { 8388 PetscCall(DMPlexGetCellTypeLabel(dm, &label)); 8389 PetscCheck(label, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "No label named celltype was found"); 8390 PetscCall(DMLabelGetStratumBounds(label, ct, start, end)); 8391 } 8392 PetscFunctionReturn(PETSC_SUCCESS); 8393 } 8394 8395 PetscErrorCode DMPlexCreateNumbering_Plex(DM dm, PetscInt pStart, PetscInt pEnd, PetscInt shift, PetscInt *globalSize, PetscSF sf, IS *numbering) 8396 { 8397 PetscSection section, globalSection; 8398 PetscInt *numbers, p; 8399 8400 PetscFunctionBegin; 8401 if (PetscDefined(USE_DEBUG)) PetscCall(DMPlexCheckPointSF(dm, sf, PETSC_TRUE)); 8402 PetscCall(PetscSectionCreate(PetscObjectComm((PetscObject)dm), §ion)); 8403 PetscCall(PetscSectionSetChart(section, pStart, pEnd)); 8404 for (p = pStart; p < pEnd; ++p) PetscCall(PetscSectionSetDof(section, p, 1)); 8405 PetscCall(PetscSectionSetUp(section)); 8406 PetscCall(PetscSectionCreateGlobalSection(section, sf, PETSC_FALSE, PETSC_FALSE, &globalSection)); 8407 PetscCall(PetscMalloc1(pEnd - pStart, &numbers)); 8408 for (p = pStart; p < pEnd; ++p) { 8409 PetscCall(PetscSectionGetOffset(globalSection, p, &numbers[p - pStart])); 8410 if (numbers[p - pStart] < 0) numbers[p - pStart] -= shift; 8411 else numbers[p - pStart] += shift; 8412 } 8413 PetscCall(ISCreateGeneral(PetscObjectComm((PetscObject)dm), pEnd - pStart, numbers, PETSC_OWN_POINTER, numbering)); 8414 if (globalSize) { 8415 PetscLayout layout; 8416 PetscCall(PetscSectionGetPointLayout(PetscObjectComm((PetscObject)dm), globalSection, &layout)); 8417 PetscCall(PetscLayoutGetSize(layout, globalSize)); 8418 PetscCall(PetscLayoutDestroy(&layout)); 8419 } 8420 PetscCall(PetscSectionDestroy(§ion)); 8421 PetscCall(PetscSectionDestroy(&globalSection)); 8422 PetscFunctionReturn(PETSC_SUCCESS); 8423 } 8424 8425 PetscErrorCode DMPlexCreateCellNumbering_Internal(DM dm, PetscBool includeHybrid, IS *globalCellNumbers) 8426 { 8427 PetscInt cellHeight, cStart, cEnd; 8428 8429 PetscFunctionBegin; 8430 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 8431 if (includeHybrid) PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd)); 8432 else PetscCall(DMPlexGetSimplexOrBoxCells(dm, cellHeight, &cStart, &cEnd)); 8433 PetscCall(DMPlexCreateNumbering_Plex(dm, cStart, cEnd, 0, NULL, dm->sf, globalCellNumbers)); 8434 PetscFunctionReturn(PETSC_SUCCESS); 8435 } 8436 8437 /*@ 8438 DMPlexGetCellNumbering - Get a global cell numbering for all cells on this process 8439 8440 Input Parameter: 8441 . dm - The `DMPLEX` object 8442 8443 Output Parameter: 8444 . globalCellNumbers - Global cell numbers for all cells on this process 8445 8446 Level: developer 8447 8448 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetVertexNumbering()` 8449 @*/ 8450 PetscErrorCode DMPlexGetCellNumbering(DM dm, IS *globalCellNumbers) 8451 { 8452 DM_Plex *mesh = (DM_Plex *)dm->data; 8453 8454 PetscFunctionBegin; 8455 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8456 if (!mesh->globalCellNumbers) PetscCall(DMPlexCreateCellNumbering_Internal(dm, PETSC_FALSE, &mesh->globalCellNumbers)); 8457 *globalCellNumbers = mesh->globalCellNumbers; 8458 PetscFunctionReturn(PETSC_SUCCESS); 8459 } 8460 8461 PetscErrorCode DMPlexCreateVertexNumbering_Internal(DM dm, PetscBool includeHybrid, IS *globalVertexNumbers) 8462 { 8463 PetscInt vStart, vEnd; 8464 8465 PetscFunctionBegin; 8466 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8467 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 8468 PetscCall(DMPlexCreateNumbering_Plex(dm, vStart, vEnd, 0, NULL, dm->sf, globalVertexNumbers)); 8469 PetscFunctionReturn(PETSC_SUCCESS); 8470 } 8471 8472 /*@ 8473 DMPlexGetVertexNumbering - Get a global vertex numbering for all vertices on this process 8474 8475 Input Parameter: 8476 . dm - The `DMPLEX` object 8477 8478 Output Parameter: 8479 . globalVertexNumbers - Global vertex numbers for all vertices on this process 8480 8481 Level: developer 8482 8483 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellNumbering()` 8484 @*/ 8485 PetscErrorCode DMPlexGetVertexNumbering(DM dm, IS *globalVertexNumbers) 8486 { 8487 DM_Plex *mesh = (DM_Plex *)dm->data; 8488 8489 PetscFunctionBegin; 8490 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8491 if (!mesh->globalVertexNumbers) PetscCall(DMPlexCreateVertexNumbering_Internal(dm, PETSC_FALSE, &mesh->globalVertexNumbers)); 8492 *globalVertexNumbers = mesh->globalVertexNumbers; 8493 PetscFunctionReturn(PETSC_SUCCESS); 8494 } 8495 8496 /*@ 8497 DMPlexCreatePointNumbering - Create a global numbering for all points. 8498 8499 Collective 8500 8501 Input Parameter: 8502 . dm - The `DMPLEX` object 8503 8504 Output Parameter: 8505 . globalPointNumbers - Global numbers for all points on this process 8506 8507 Level: developer 8508 8509 Notes: 8510 The point numbering `IS` is parallel, with local portion indexed by local points (see `DMGetLocalSection()`). The global 8511 points are taken as stratified, with each MPI rank owning a contiguous subset of each stratum. In the IS, owned points 8512 will have their non-negative value while points owned by different ranks will be involuted -(idx+1). As an example, 8513 consider a parallel mesh in which the first two elements and first two vertices are owned by rank 0. 8514 8515 The partitioned mesh is 8516 ``` 8517 (2)--0--(3)--1--(4) (1)--0--(2) 8518 ``` 8519 and its global numbering is 8520 ``` 8521 (3)--0--(4)--1--(5)--2--(6) 8522 ``` 8523 Then the global numbering is provided as 8524 ``` 8525 [0] Number of indices in set 5 8526 [0] 0 0 8527 [0] 1 1 8528 [0] 2 3 8529 [0] 3 4 8530 [0] 4 -6 8531 [1] Number of indices in set 3 8532 [1] 0 2 8533 [1] 1 5 8534 [1] 2 6 8535 ``` 8536 8537 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetCellNumbering()` 8538 @*/ 8539 PetscErrorCode DMPlexCreatePointNumbering(DM dm, IS *globalPointNumbers) 8540 { 8541 IS nums[4]; 8542 PetscInt depths[4], gdepths[4], starts[4]; 8543 PetscInt depth, d, shift = 0; 8544 PetscBool empty = PETSC_FALSE; 8545 8546 PetscFunctionBegin; 8547 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8548 PetscCall(DMPlexGetDepth(dm, &depth)); 8549 // For unstratified meshes use dim instead of depth 8550 if (depth < 0) PetscCall(DMGetDimension(dm, &depth)); 8551 // If any stratum is empty, we must mark all empty 8552 for (d = 0; d <= depth; ++d) { 8553 PetscInt end; 8554 8555 depths[d] = depth - d; 8556 PetscCall(DMPlexGetDepthStratum(dm, depths[d], &starts[d], &end)); 8557 if (!(starts[d] - end)) empty = PETSC_TRUE; 8558 } 8559 if (empty) 8560 for (d = 0; d <= depth; ++d) { 8561 depths[d] = -1; 8562 starts[d] = -1; 8563 } 8564 else PetscCall(PetscSortIntWithArray(depth + 1, starts, depths)); 8565 PetscCall(MPIU_Allreduce(depths, gdepths, depth + 1, MPIU_INT, MPI_MAX, PetscObjectComm((PetscObject)dm))); 8566 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]); 8567 // Note here that 'shift' is collective, so that the numbering is stratified by depth 8568 for (d = 0; d <= depth; ++d) { 8569 PetscInt pStart, pEnd, gsize; 8570 8571 PetscCall(DMPlexGetDepthStratum(dm, gdepths[d], &pStart, &pEnd)); 8572 PetscCall(DMPlexCreateNumbering_Plex(dm, pStart, pEnd, shift, &gsize, dm->sf, &nums[d])); 8573 shift += gsize; 8574 } 8575 PetscCall(ISConcatenate(PETSC_COMM_SELF, depth + 1, nums, globalPointNumbers)); 8576 for (d = 0; d <= depth; ++d) PetscCall(ISDestroy(&nums[d])); 8577 PetscFunctionReturn(PETSC_SUCCESS); 8578 } 8579 8580 /*@ 8581 DMPlexCreateRankField - Create a cell field whose value is the rank of the owner 8582 8583 Input Parameter: 8584 . dm - The `DMPLEX` object 8585 8586 Output Parameter: 8587 . ranks - The rank field 8588 8589 Options Database Key: 8590 . -dm_partition_view - Adds the rank field into the `DM` output from `-dm_view` using the same viewer 8591 8592 Level: intermediate 8593 8594 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()` 8595 @*/ 8596 PetscErrorCode DMPlexCreateRankField(DM dm, Vec *ranks) 8597 { 8598 DM rdm; 8599 PetscFE fe; 8600 PetscScalar *r; 8601 PetscMPIInt rank; 8602 DMPolytopeType ct; 8603 PetscInt dim, cStart, cEnd, c; 8604 PetscBool simplex; 8605 8606 PetscFunctionBeginUser; 8607 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8608 PetscAssertPointer(ranks, 2); 8609 PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank)); 8610 PetscCall(DMClone(dm, &rdm)); 8611 PetscCall(DMGetDimension(rdm, &dim)); 8612 PetscCall(DMPlexGetHeightStratum(rdm, 0, &cStart, &cEnd)); 8613 PetscCall(DMPlexGetCellType(dm, cStart, &ct)); 8614 simplex = DMPolytopeTypeGetNumVertices(ct) == DMPolytopeTypeGetDim(ct) + 1 ? PETSC_TRUE : PETSC_FALSE; 8615 PetscCall(PetscFECreateDefault(PETSC_COMM_SELF, dim, 1, simplex, "PETSc___rank_", -1, &fe)); 8616 PetscCall(PetscObjectSetName((PetscObject)fe, "rank")); 8617 PetscCall(DMSetField(rdm, 0, NULL, (PetscObject)fe)); 8618 PetscCall(PetscFEDestroy(&fe)); 8619 PetscCall(DMCreateDS(rdm)); 8620 PetscCall(DMCreateGlobalVector(rdm, ranks)); 8621 PetscCall(PetscObjectSetName((PetscObject)*ranks, "partition")); 8622 PetscCall(VecGetArray(*ranks, &r)); 8623 for (c = cStart; c < cEnd; ++c) { 8624 PetscScalar *lr; 8625 8626 PetscCall(DMPlexPointGlobalRef(rdm, c, r, &lr)); 8627 if (lr) *lr = rank; 8628 } 8629 PetscCall(VecRestoreArray(*ranks, &r)); 8630 PetscCall(DMDestroy(&rdm)); 8631 PetscFunctionReturn(PETSC_SUCCESS); 8632 } 8633 8634 /*@ 8635 DMPlexCreateLabelField - Create a cell field whose value is the label value for that cell 8636 8637 Input Parameters: 8638 + dm - The `DMPLEX` 8639 - label - The `DMLabel` 8640 8641 Output Parameter: 8642 . val - The label value field 8643 8644 Options Database Key: 8645 . -dm_label_view - Adds the label value field into the `DM` output from `-dm_view` using the same viewer 8646 8647 Level: intermediate 8648 8649 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMView()` 8650 @*/ 8651 PetscErrorCode DMPlexCreateLabelField(DM dm, DMLabel label, Vec *val) 8652 { 8653 DM rdm; 8654 PetscFE fe; 8655 PetscScalar *v; 8656 PetscInt dim, cStart, cEnd, c; 8657 8658 PetscFunctionBeginUser; 8659 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8660 PetscAssertPointer(label, 2); 8661 PetscAssertPointer(val, 3); 8662 PetscCall(DMClone(dm, &rdm)); 8663 PetscCall(DMGetDimension(rdm, &dim)); 8664 PetscCall(PetscFECreateDefault(PetscObjectComm((PetscObject)rdm), dim, 1, PETSC_TRUE, "PETSc___label_value_", -1, &fe)); 8665 PetscCall(PetscObjectSetName((PetscObject)fe, "label_value")); 8666 PetscCall(DMSetField(rdm, 0, NULL, (PetscObject)fe)); 8667 PetscCall(PetscFEDestroy(&fe)); 8668 PetscCall(DMCreateDS(rdm)); 8669 PetscCall(DMPlexGetHeightStratum(rdm, 0, &cStart, &cEnd)); 8670 PetscCall(DMCreateGlobalVector(rdm, val)); 8671 PetscCall(PetscObjectSetName((PetscObject)*val, "label_value")); 8672 PetscCall(VecGetArray(*val, &v)); 8673 for (c = cStart; c < cEnd; ++c) { 8674 PetscScalar *lv; 8675 PetscInt cval; 8676 8677 PetscCall(DMPlexPointGlobalRef(rdm, c, v, &lv)); 8678 PetscCall(DMLabelGetValue(label, c, &cval)); 8679 *lv = cval; 8680 } 8681 PetscCall(VecRestoreArray(*val, &v)); 8682 PetscCall(DMDestroy(&rdm)); 8683 PetscFunctionReturn(PETSC_SUCCESS); 8684 } 8685 8686 /*@ 8687 DMPlexCheckSymmetry - Check that the adjacency information in the mesh is symmetric. 8688 8689 Input Parameter: 8690 . dm - The `DMPLEX` object 8691 8692 Level: developer 8693 8694 Notes: 8695 This is a useful diagnostic when creating meshes programmatically. 8696 8697 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 8698 8699 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()` 8700 @*/ 8701 PetscErrorCode DMPlexCheckSymmetry(DM dm) 8702 { 8703 PetscSection coneSection, supportSection; 8704 const PetscInt *cone, *support; 8705 PetscInt coneSize, c, supportSize, s; 8706 PetscInt pStart, pEnd, p, pp, csize, ssize; 8707 PetscBool storagecheck = PETSC_TRUE; 8708 8709 PetscFunctionBegin; 8710 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8711 PetscCall(DMViewFromOptions(dm, NULL, "-sym_dm_view")); 8712 PetscCall(DMPlexGetConeSection(dm, &coneSection)); 8713 PetscCall(DMPlexGetSupportSection(dm, &supportSection)); 8714 /* Check that point p is found in the support of its cone points, and vice versa */ 8715 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 8716 for (p = pStart; p < pEnd; ++p) { 8717 PetscCall(DMPlexGetConeSize(dm, p, &coneSize)); 8718 PetscCall(DMPlexGetCone(dm, p, &cone)); 8719 for (c = 0; c < coneSize; ++c) { 8720 PetscBool dup = PETSC_FALSE; 8721 PetscInt d; 8722 for (d = c - 1; d >= 0; --d) { 8723 if (cone[c] == cone[d]) { 8724 dup = PETSC_TRUE; 8725 break; 8726 } 8727 } 8728 PetscCall(DMPlexGetSupportSize(dm, cone[c], &supportSize)); 8729 PetscCall(DMPlexGetSupport(dm, cone[c], &support)); 8730 for (s = 0; s < supportSize; ++s) { 8731 if (support[s] == p) break; 8732 } 8733 if ((s >= supportSize) || (dup && (support[s + 1] != p))) { 8734 PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " cone: ", p)); 8735 for (s = 0; s < coneSize; ++s) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", cone[s])); 8736 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n")); 8737 PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " support: ", cone[c])); 8738 for (s = 0; s < supportSize; ++s) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", support[s])); 8739 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n")); 8740 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]); 8741 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point %" PetscInt_FMT " not found in support of cone point %" PetscInt_FMT, p, cone[c]); 8742 } 8743 } 8744 PetscCall(DMPlexGetTreeParent(dm, p, &pp, NULL)); 8745 if (p != pp) { 8746 storagecheck = PETSC_FALSE; 8747 continue; 8748 } 8749 PetscCall(DMPlexGetSupportSize(dm, p, &supportSize)); 8750 PetscCall(DMPlexGetSupport(dm, p, &support)); 8751 for (s = 0; s < supportSize; ++s) { 8752 PetscCall(DMPlexGetConeSize(dm, support[s], &coneSize)); 8753 PetscCall(DMPlexGetCone(dm, support[s], &cone)); 8754 for (c = 0; c < coneSize; ++c) { 8755 PetscCall(DMPlexGetTreeParent(dm, cone[c], &pp, NULL)); 8756 if (cone[c] != pp) { 8757 c = 0; 8758 break; 8759 } 8760 if (cone[c] == p) break; 8761 } 8762 if (c >= coneSize) { 8763 PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " support: ", p)); 8764 for (c = 0; c < supportSize; ++c) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", support[c])); 8765 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n")); 8766 PetscCall(PetscPrintf(PETSC_COMM_SELF, "p: %" PetscInt_FMT " cone: ", support[s])); 8767 for (c = 0; c < coneSize; ++c) PetscCall(PetscPrintf(PETSC_COMM_SELF, "%" PetscInt_FMT ", ", cone[c])); 8768 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n")); 8769 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point %" PetscInt_FMT " not found in cone of support point %" PetscInt_FMT, p, support[s]); 8770 } 8771 } 8772 } 8773 if (storagecheck) { 8774 PetscCall(PetscSectionGetStorageSize(coneSection, &csize)); 8775 PetscCall(PetscSectionGetStorageSize(supportSection, &ssize)); 8776 PetscCheck(csize == ssize, PETSC_COMM_SELF, PETSC_ERR_ARG_SIZ, "Total cone size %" PetscInt_FMT " != Total support size %" PetscInt_FMT, csize, ssize); 8777 } 8778 PetscFunctionReturn(PETSC_SUCCESS); 8779 } 8780 8781 /* 8782 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. 8783 */ 8784 static PetscErrorCode DMPlexCellUnsplitVertices_Private(DM dm, PetscInt c, DMPolytopeType ct, PetscInt *unsplit) 8785 { 8786 DMPolytopeType cct; 8787 PetscInt ptpoints[4]; 8788 const PetscInt *cone, *ccone, *ptcone; 8789 PetscInt coneSize, cp, cconeSize, ccp, npt = 0, pt; 8790 8791 PetscFunctionBegin; 8792 *unsplit = 0; 8793 switch (ct) { 8794 case DM_POLYTOPE_POINT_PRISM_TENSOR: 8795 ptpoints[npt++] = c; 8796 break; 8797 case DM_POLYTOPE_SEG_PRISM_TENSOR: 8798 PetscCall(DMPlexGetCone(dm, c, &cone)); 8799 PetscCall(DMPlexGetConeSize(dm, c, &coneSize)); 8800 for (cp = 0; cp < coneSize; ++cp) { 8801 PetscCall(DMPlexGetCellType(dm, cone[cp], &cct)); 8802 if (cct == DM_POLYTOPE_POINT_PRISM_TENSOR) ptpoints[npt++] = cone[cp]; 8803 } 8804 break; 8805 case DM_POLYTOPE_TRI_PRISM_TENSOR: 8806 case DM_POLYTOPE_QUAD_PRISM_TENSOR: 8807 PetscCall(DMPlexGetCone(dm, c, &cone)); 8808 PetscCall(DMPlexGetConeSize(dm, c, &coneSize)); 8809 for (cp = 0; cp < coneSize; ++cp) { 8810 PetscCall(DMPlexGetCone(dm, cone[cp], &ccone)); 8811 PetscCall(DMPlexGetConeSize(dm, cone[cp], &cconeSize)); 8812 for (ccp = 0; ccp < cconeSize; ++ccp) { 8813 PetscCall(DMPlexGetCellType(dm, ccone[ccp], &cct)); 8814 if (cct == DM_POLYTOPE_POINT_PRISM_TENSOR) { 8815 PetscInt p; 8816 for (p = 0; p < npt; ++p) 8817 if (ptpoints[p] == ccone[ccp]) break; 8818 if (p == npt) ptpoints[npt++] = ccone[ccp]; 8819 } 8820 } 8821 } 8822 break; 8823 default: 8824 break; 8825 } 8826 for (pt = 0; pt < npt; ++pt) { 8827 PetscCall(DMPlexGetCone(dm, ptpoints[pt], &ptcone)); 8828 if (ptcone[0] == ptcone[1]) ++(*unsplit); 8829 } 8830 PetscFunctionReturn(PETSC_SUCCESS); 8831 } 8832 8833 /*@ 8834 DMPlexCheckSkeleton - Check that each cell has the correct number of vertices 8835 8836 Input Parameters: 8837 + dm - The `DMPLEX` object 8838 - cellHeight - Normally 0 8839 8840 Level: developer 8841 8842 Notes: 8843 This is a useful diagnostic when creating meshes programmatically. 8844 Currently applicable only to homogeneous simplex or tensor meshes. 8845 8846 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 8847 8848 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()` 8849 @*/ 8850 PetscErrorCode DMPlexCheckSkeleton(DM dm, PetscInt cellHeight) 8851 { 8852 DMPlexInterpolatedFlag interp; 8853 DMPolytopeType ct; 8854 PetscInt vStart, vEnd, cStart, cEnd, c; 8855 8856 PetscFunctionBegin; 8857 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8858 PetscCall(DMPlexIsInterpolated(dm, &interp)); 8859 PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd)); 8860 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 8861 for (c = cStart; c < cEnd; ++c) { 8862 PetscInt *closure = NULL; 8863 PetscInt coneSize, closureSize, cl, Nv = 0; 8864 8865 PetscCall(DMPlexGetCellType(dm, c, &ct)); 8866 PetscCheck((PetscInt)ct >= 0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Cell %" PetscInt_FMT " has no cell type", c); 8867 if (ct == DM_POLYTOPE_UNKNOWN) continue; 8868 if (interp == DMPLEX_INTERPOLATED_FULL) { 8869 PetscCall(DMPlexGetConeSize(dm, c, &coneSize)); 8870 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)); 8871 } 8872 PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 8873 for (cl = 0; cl < closureSize * 2; cl += 2) { 8874 const PetscInt p = closure[cl]; 8875 if ((p >= vStart) && (p < vEnd)) ++Nv; 8876 } 8877 PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 8878 /* Special Case: Tensor faces with identified vertices */ 8879 if (Nv < DMPolytopeTypeGetNumVertices(ct)) { 8880 PetscInt unsplit; 8881 8882 PetscCall(DMPlexCellUnsplitVertices_Private(dm, c, ct, &unsplit)); 8883 if (Nv + unsplit == DMPolytopeTypeGetNumVertices(ct)) continue; 8884 } 8885 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)); 8886 } 8887 PetscFunctionReturn(PETSC_SUCCESS); 8888 } 8889 8890 /*@ 8891 DMPlexCheckFaces - Check that the faces of each cell give a vertex order this is consistent with what we expect from the cell type 8892 8893 Collective 8894 8895 Input Parameters: 8896 + dm - The `DMPLEX` object 8897 - cellHeight - Normally 0 8898 8899 Level: developer 8900 8901 Notes: 8902 This is a useful diagnostic when creating meshes programmatically. 8903 This routine is only relevant for meshes that are fully interpolated across all ranks. 8904 It will error out if a partially interpolated mesh is given on some rank. 8905 It will do nothing for locally uninterpolated mesh (as there is nothing to check). 8906 8907 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 8908 8909 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMPlexGetVTKCellHeight()`, `DMSetFromOptions()` 8910 @*/ 8911 PetscErrorCode DMPlexCheckFaces(DM dm, PetscInt cellHeight) 8912 { 8913 PetscInt dim, depth, vStart, vEnd, cStart, cEnd, c, h; 8914 DMPlexInterpolatedFlag interpEnum; 8915 8916 PetscFunctionBegin; 8917 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 8918 PetscCall(DMPlexIsInterpolatedCollective(dm, &interpEnum)); 8919 if (interpEnum == DMPLEX_INTERPOLATED_NONE) PetscFunctionReturn(PETSC_SUCCESS); 8920 if (interpEnum != DMPLEX_INTERPOLATED_FULL) { 8921 PetscCall(PetscPrintf(PetscObjectComm((PetscObject)dm), "DMPlexCheckFaces() warning: Mesh is only partially interpolated, this is currently not supported")); 8922 PetscFunctionReturn(PETSC_SUCCESS); 8923 } 8924 8925 PetscCall(DMGetDimension(dm, &dim)); 8926 PetscCall(DMPlexGetDepth(dm, &depth)); 8927 PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd)); 8928 for (h = cellHeight; h < PetscMin(depth, dim); ++h) { 8929 PetscCall(DMPlexGetHeightStratum(dm, h, &cStart, &cEnd)); 8930 for (c = cStart; c < cEnd; ++c) { 8931 const PetscInt *cone, *ornt, *faceSizes, *faces; 8932 const DMPolytopeType *faceTypes; 8933 DMPolytopeType ct; 8934 PetscInt numFaces, coneSize, f; 8935 PetscInt *closure = NULL, closureSize, cl, numCorners = 0, fOff = 0, unsplit; 8936 8937 PetscCall(DMPlexGetCellType(dm, c, &ct)); 8938 PetscCall(DMPlexCellUnsplitVertices_Private(dm, c, ct, &unsplit)); 8939 if (unsplit) continue; 8940 PetscCall(DMPlexGetConeSize(dm, c, &coneSize)); 8941 PetscCall(DMPlexGetCone(dm, c, &cone)); 8942 PetscCall(DMPlexGetConeOrientation(dm, c, &ornt)); 8943 PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 8944 for (cl = 0; cl < closureSize * 2; cl += 2) { 8945 const PetscInt p = closure[cl]; 8946 if ((p >= vStart) && (p < vEnd)) closure[numCorners++] = p; 8947 } 8948 PetscCall(DMPlexGetRawFaces_Internal(dm, ct, closure, &numFaces, &faceTypes, &faceSizes, &faces)); 8949 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); 8950 for (f = 0; f < numFaces; ++f) { 8951 DMPolytopeType fct; 8952 PetscInt *fclosure = NULL, fclosureSize, cl, fnumCorners = 0, v; 8953 8954 PetscCall(DMPlexGetCellType(dm, cone[f], &fct)); 8955 PetscCall(DMPlexGetTransitiveClosure_Internal(dm, cone[f], ornt[f], PETSC_TRUE, &fclosureSize, &fclosure)); 8956 for (cl = 0; cl < fclosureSize * 2; cl += 2) { 8957 const PetscInt p = fclosure[cl]; 8958 if ((p >= vStart) && (p < vEnd)) fclosure[fnumCorners++] = p; 8959 } 8960 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]); 8961 for (v = 0; v < fnumCorners; ++v) { 8962 if (fclosure[v] != faces[fOff + v]) { 8963 PetscInt v1; 8964 8965 PetscCall(PetscPrintf(PETSC_COMM_SELF, "face closure:")); 8966 for (v1 = 0; v1 < fnumCorners; ++v1) PetscCall(PetscPrintf(PETSC_COMM_SELF, " %" PetscInt_FMT, fclosure[v1])); 8967 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\ncell face:")); 8968 for (v1 = 0; v1 < fnumCorners; ++v1) PetscCall(PetscPrintf(PETSC_COMM_SELF, " %" PetscInt_FMT, faces[fOff + v1])); 8969 PetscCall(PetscPrintf(PETSC_COMM_SELF, "\n")); 8970 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]); 8971 } 8972 } 8973 PetscCall(DMPlexRestoreTransitiveClosure(dm, cone[f], PETSC_TRUE, &fclosureSize, &fclosure)); 8974 fOff += faceSizes[f]; 8975 } 8976 PetscCall(DMPlexRestoreRawFaces_Internal(dm, ct, closure, &numFaces, &faceTypes, &faceSizes, &faces)); 8977 PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &closureSize, &closure)); 8978 } 8979 } 8980 PetscFunctionReturn(PETSC_SUCCESS); 8981 } 8982 8983 /*@ 8984 DMPlexCheckGeometry - Check the geometry of mesh cells 8985 8986 Input Parameter: 8987 . dm - The `DMPLEX` object 8988 8989 Level: developer 8990 8991 Notes: 8992 This is a useful diagnostic when creating meshes programmatically. 8993 8994 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 8995 8996 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()` 8997 @*/ 8998 PetscErrorCode DMPlexCheckGeometry(DM dm) 8999 { 9000 Vec coordinates; 9001 PetscReal detJ, J[9], refVol = 1.0; 9002 PetscReal vol; 9003 PetscInt dim, depth, dE, d, cStart, cEnd, c; 9004 9005 PetscFunctionBegin; 9006 PetscCall(DMGetDimension(dm, &dim)); 9007 PetscCall(DMGetCoordinateDim(dm, &dE)); 9008 if (dim != dE) PetscFunctionReturn(PETSC_SUCCESS); 9009 PetscCall(DMPlexGetDepth(dm, &depth)); 9010 for (d = 0; d < dim; ++d) refVol *= 2.0; 9011 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 9012 /* Make sure local coordinates are created, because that step is collective */ 9013 PetscCall(DMGetCoordinatesLocal(dm, &coordinates)); 9014 if (!coordinates) PetscFunctionReturn(PETSC_SUCCESS); 9015 for (c = cStart; c < cEnd; ++c) { 9016 DMPolytopeType ct; 9017 PetscInt unsplit; 9018 PetscBool ignoreZeroVol = PETSC_FALSE; 9019 9020 PetscCall(DMPlexGetCellType(dm, c, &ct)); 9021 switch (ct) { 9022 case DM_POLYTOPE_SEG_PRISM_TENSOR: 9023 case DM_POLYTOPE_TRI_PRISM_TENSOR: 9024 case DM_POLYTOPE_QUAD_PRISM_TENSOR: 9025 ignoreZeroVol = PETSC_TRUE; 9026 break; 9027 default: 9028 break; 9029 } 9030 switch (ct) { 9031 case DM_POLYTOPE_TRI_PRISM: 9032 case DM_POLYTOPE_TRI_PRISM_TENSOR: 9033 case DM_POLYTOPE_QUAD_PRISM_TENSOR: 9034 case DM_POLYTOPE_PYRAMID: 9035 continue; 9036 default: 9037 break; 9038 } 9039 PetscCall(DMPlexCellUnsplitVertices_Private(dm, c, ct, &unsplit)); 9040 if (unsplit) continue; 9041 PetscCall(DMPlexComputeCellGeometryFEM(dm, c, NULL, NULL, J, NULL, &detJ)); 9042 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); 9043 PetscCall(PetscInfo(dm, "Cell %" PetscInt_FMT " FEM Volume %g\n", c, (double)(detJ * refVol))); 9044 /* This should work with periodicity since DG coordinates should be used */ 9045 if (depth > 1) { 9046 PetscCall(DMPlexComputeCellGeometryFVM(dm, c, &vol, NULL, NULL)); 9047 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); 9048 PetscCall(PetscInfo(dm, "Cell %" PetscInt_FMT " FVM Volume %g\n", c, (double)vol)); 9049 } 9050 } 9051 PetscFunctionReturn(PETSC_SUCCESS); 9052 } 9053 9054 /*@ 9055 DMPlexCheckPointSF - Check that several necessary conditions are met for the point `PetscSF` of this plex. 9056 9057 Collective 9058 9059 Input Parameters: 9060 + dm - The `DMPLEX` object 9061 . pointSF - The `PetscSF`, or `NULL` for `PointSF` attached to `DM` 9062 - allowExtraRoots - Flag to allow extra points not present in the `DM` 9063 9064 Level: developer 9065 9066 Notes: 9067 This is mainly intended for debugging/testing purposes. 9068 9069 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 9070 9071 Extra roots can come from priodic cuts, where additional points appear on the boundary 9072 9073 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMGetPointSF()`, `DMSetFromOptions()` 9074 @*/ 9075 PetscErrorCode DMPlexCheckPointSF(DM dm, PetscSF pointSF, PetscBool allowExtraRoots) 9076 { 9077 PetscInt l, nleaves, nroots, overlap; 9078 const PetscInt *locals; 9079 const PetscSFNode *remotes; 9080 PetscBool distributed; 9081 MPI_Comm comm; 9082 PetscMPIInt rank; 9083 9084 PetscFunctionBegin; 9085 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9086 if (pointSF) PetscValidHeaderSpecific(pointSF, PETSCSF_CLASSID, 2); 9087 else pointSF = dm->sf; 9088 PetscCall(PetscObjectGetComm((PetscObject)dm, &comm)); 9089 PetscCheck(pointSF, comm, PETSC_ERR_ARG_WRONGSTATE, "DMPlex must have Point SF attached"); 9090 PetscCallMPI(MPI_Comm_rank(comm, &rank)); 9091 { 9092 PetscMPIInt mpiFlag; 9093 9094 PetscCallMPI(MPI_Comm_compare(comm, PetscObjectComm((PetscObject)pointSF), &mpiFlag)); 9095 PetscCheck(mpiFlag == MPI_CONGRUENT || mpiFlag == MPI_IDENT, PETSC_COMM_SELF, PETSC_ERR_ARG_NOTSAMECOMM, "DM and Point SF have different communicators (flag %d)", mpiFlag); 9096 } 9097 PetscCall(PetscSFGetGraph(pointSF, &nroots, &nleaves, &locals, &remotes)); 9098 PetscCall(DMPlexIsDistributed(dm, &distributed)); 9099 if (!distributed) { 9100 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); 9101 PetscFunctionReturn(PETSC_SUCCESS); 9102 } 9103 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); 9104 PetscCall(DMPlexGetOverlap(dm, &overlap)); 9105 9106 /* Check SF graph is compatible with DMPlex chart */ 9107 { 9108 PetscInt pStart, pEnd, maxLeaf; 9109 9110 PetscCall(DMPlexGetChart(dm, &pStart, &pEnd)); 9111 PetscCall(PetscSFGetLeafRange(pointSF, NULL, &maxLeaf)); 9112 PetscCheck(allowExtraRoots || pEnd - pStart == nroots, PETSC_COMM_SELF, PETSC_ERR_PLIB, "pEnd - pStart = %" PetscInt_FMT " != nroots = %" PetscInt_FMT, pEnd - pStart, nroots); 9113 PetscCheck(maxLeaf < pEnd, PETSC_COMM_SELF, PETSC_ERR_PLIB, "maxLeaf = %" PetscInt_FMT " >= pEnd = %" PetscInt_FMT, maxLeaf, pEnd); 9114 } 9115 9116 /* Check Point SF has no local points referenced */ 9117 for (l = 0; l < nleaves; l++) { 9118 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); 9119 } 9120 9121 /* Check there are no cells in interface */ 9122 if (!overlap) { 9123 PetscInt cellHeight, cStart, cEnd; 9124 9125 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 9126 PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd)); 9127 for (l = 0; l < nleaves; ++l) { 9128 const PetscInt point = locals ? locals[l] : l; 9129 9130 PetscCheck(point < cStart || point >= cEnd, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point SF contains %" PetscInt_FMT " which is a cell", point); 9131 } 9132 } 9133 9134 /* If some point is in interface, then all its cone points must be also in interface (either as leaves or roots) */ 9135 { 9136 const PetscInt *rootdegree; 9137 9138 PetscCall(PetscSFComputeDegreeBegin(pointSF, &rootdegree)); 9139 PetscCall(PetscSFComputeDegreeEnd(pointSF, &rootdegree)); 9140 for (l = 0; l < nleaves; ++l) { 9141 const PetscInt point = locals ? locals[l] : l; 9142 const PetscInt *cone; 9143 PetscInt coneSize, c, idx; 9144 9145 PetscCall(DMPlexGetConeSize(dm, point, &coneSize)); 9146 PetscCall(DMPlexGetCone(dm, point, &cone)); 9147 for (c = 0; c < coneSize; ++c) { 9148 if (!rootdegree[cone[c]]) { 9149 if (locals) { 9150 PetscCall(PetscFindInt(cone[c], nleaves, locals, &idx)); 9151 } else { 9152 idx = (cone[c] < nleaves) ? cone[c] : -1; 9153 } 9154 PetscCheck(idx >= 0, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Point SF contains %" PetscInt_FMT " but not %" PetscInt_FMT " from its cone", point, cone[c]); 9155 } 9156 } 9157 } 9158 } 9159 PetscFunctionReturn(PETSC_SUCCESS); 9160 } 9161 9162 /*@ 9163 DMPlexCheck - Perform various checks of `DMPLEX` sanity 9164 9165 Input Parameter: 9166 . dm - The `DMPLEX` object 9167 9168 Level: developer 9169 9170 Notes: 9171 This is a useful diagnostic when creating meshes programmatically. 9172 9173 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 9174 9175 Currently does not include `DMPlexCheckCellShape()`. 9176 9177 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMCreate()`, `DMSetFromOptions()` 9178 @*/ 9179 PetscErrorCode DMPlexCheck(DM dm) 9180 { 9181 PetscInt cellHeight; 9182 9183 PetscFunctionBegin; 9184 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 9185 PetscCall(DMPlexCheckSymmetry(dm)); 9186 PetscCall(DMPlexCheckSkeleton(dm, cellHeight)); 9187 PetscCall(DMPlexCheckFaces(dm, cellHeight)); 9188 PetscCall(DMPlexCheckGeometry(dm)); 9189 PetscCall(DMPlexCheckPointSF(dm, NULL, PETSC_FALSE)); 9190 PetscCall(DMPlexCheckInterfaceCones(dm)); 9191 PetscFunctionReturn(PETSC_SUCCESS); 9192 } 9193 9194 typedef struct cell_stats { 9195 PetscReal min, max, sum, squaresum; 9196 PetscInt count; 9197 } cell_stats_t; 9198 9199 static void MPIAPI cell_stats_reduce(void *a, void *b, int *len, MPI_Datatype *datatype) 9200 { 9201 PetscInt i, N = *len; 9202 9203 for (i = 0; i < N; i++) { 9204 cell_stats_t *A = (cell_stats_t *)a; 9205 cell_stats_t *B = (cell_stats_t *)b; 9206 9207 B->min = PetscMin(A->min, B->min); 9208 B->max = PetscMax(A->max, B->max); 9209 B->sum += A->sum; 9210 B->squaresum += A->squaresum; 9211 B->count += A->count; 9212 } 9213 } 9214 9215 /*@ 9216 DMPlexCheckCellShape - Checks the Jacobian of the mapping from reference to real cells and computes some minimal statistics. 9217 9218 Collective 9219 9220 Input Parameters: 9221 + dm - The `DMPLEX` object 9222 . output - If true, statistics will be displayed on `stdout` 9223 - condLimit - Display all cells above this condition number, or `PETSC_DETERMINE` for no cell output 9224 9225 Level: developer 9226 9227 Notes: 9228 This is mainly intended for debugging/testing purposes. 9229 9230 For the complete list of DMPlexCheck* functions, see `DMSetFromOptions()`. 9231 9232 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMSetFromOptions()`, `DMPlexComputeOrthogonalQuality()` 9233 @*/ 9234 PetscErrorCode DMPlexCheckCellShape(DM dm, PetscBool output, PetscReal condLimit) 9235 { 9236 DM dmCoarse; 9237 cell_stats_t stats, globalStats; 9238 MPI_Comm comm = PetscObjectComm((PetscObject)dm); 9239 PetscReal *J, *invJ, min = 0, max = 0, mean = 0, stdev = 0; 9240 PetscReal limit = condLimit > 0 ? condLimit : PETSC_MAX_REAL; 9241 PetscInt cdim, cStart, cEnd, c, eStart, eEnd, count = 0; 9242 PetscMPIInt rank, size; 9243 9244 PetscFunctionBegin; 9245 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9246 stats.min = PETSC_MAX_REAL; 9247 stats.max = PETSC_MIN_REAL; 9248 stats.sum = stats.squaresum = 0.; 9249 stats.count = 0; 9250 9251 PetscCallMPI(MPI_Comm_size(comm, &size)); 9252 PetscCallMPI(MPI_Comm_rank(comm, &rank)); 9253 PetscCall(DMGetCoordinateDim(dm, &cdim)); 9254 PetscCall(PetscMalloc2(PetscSqr(cdim), &J, PetscSqr(cdim), &invJ)); 9255 PetscCall(DMPlexGetSimplexOrBoxCells(dm, 0, &cStart, &cEnd)); 9256 PetscCall(DMPlexGetDepthStratum(dm, 1, &eStart, &eEnd)); 9257 for (c = cStart; c < cEnd; c++) { 9258 PetscInt i; 9259 PetscReal frobJ = 0., frobInvJ = 0., cond2, cond, detJ; 9260 9261 PetscCall(DMPlexComputeCellGeometryAffineFEM(dm, c, NULL, J, invJ, &detJ)); 9262 PetscCheck(detJ >= 0.0, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONG, "Mesh cell %" PetscInt_FMT " is inverted", c); 9263 for (i = 0; i < PetscSqr(cdim); ++i) { 9264 frobJ += J[i] * J[i]; 9265 frobInvJ += invJ[i] * invJ[i]; 9266 } 9267 cond2 = frobJ * frobInvJ; 9268 cond = PetscSqrtReal(cond2); 9269 9270 stats.min = PetscMin(stats.min, cond); 9271 stats.max = PetscMax(stats.max, cond); 9272 stats.sum += cond; 9273 stats.squaresum += cond2; 9274 stats.count++; 9275 if (output && cond > limit) { 9276 PetscSection coordSection; 9277 Vec coordsLocal; 9278 PetscScalar *coords = NULL; 9279 PetscInt Nv, d, clSize, cl, *closure = NULL; 9280 9281 PetscCall(DMGetCoordinatesLocal(dm, &coordsLocal)); 9282 PetscCall(DMGetCoordinateSection(dm, &coordSection)); 9283 PetscCall(DMPlexVecGetClosure(dm, coordSection, coordsLocal, c, &Nv, &coords)); 9284 PetscCall(PetscSynchronizedPrintf(comm, "[%d] Cell %" PetscInt_FMT " cond %g\n", rank, c, (double)cond)); 9285 for (i = 0; i < Nv / cdim; ++i) { 9286 PetscCall(PetscSynchronizedPrintf(comm, " Vertex %" PetscInt_FMT ": (", i)); 9287 for (d = 0; d < cdim; ++d) { 9288 if (d > 0) PetscCall(PetscSynchronizedPrintf(comm, ", ")); 9289 PetscCall(PetscSynchronizedPrintf(comm, "%g", (double)PetscRealPart(coords[i * cdim + d]))); 9290 } 9291 PetscCall(PetscSynchronizedPrintf(comm, ")\n")); 9292 } 9293 PetscCall(DMPlexGetTransitiveClosure(dm, c, PETSC_TRUE, &clSize, &closure)); 9294 for (cl = 0; cl < clSize * 2; cl += 2) { 9295 const PetscInt edge = closure[cl]; 9296 9297 if ((edge >= eStart) && (edge < eEnd)) { 9298 PetscReal len; 9299 9300 PetscCall(DMPlexComputeCellGeometryFVM(dm, edge, &len, NULL, NULL)); 9301 PetscCall(PetscSynchronizedPrintf(comm, " Edge %" PetscInt_FMT ": length %g\n", edge, (double)len)); 9302 } 9303 } 9304 PetscCall(DMPlexRestoreTransitiveClosure(dm, c, PETSC_TRUE, &clSize, &closure)); 9305 PetscCall(DMPlexVecRestoreClosure(dm, coordSection, coordsLocal, c, &Nv, &coords)); 9306 } 9307 } 9308 if (output) PetscCall(PetscSynchronizedFlush(comm, NULL)); 9309 9310 if (size > 1) { 9311 PetscMPIInt blockLengths[2] = {4, 1}; 9312 MPI_Aint blockOffsets[2] = {offsetof(cell_stats_t, min), offsetof(cell_stats_t, count)}; 9313 MPI_Datatype blockTypes[2] = {MPIU_REAL, MPIU_INT}, statType; 9314 MPI_Op statReduce; 9315 9316 PetscCallMPI(MPI_Type_create_struct(2, blockLengths, blockOffsets, blockTypes, &statType)); 9317 PetscCallMPI(MPI_Type_commit(&statType)); 9318 PetscCallMPI(MPI_Op_create(cell_stats_reduce, PETSC_TRUE, &statReduce)); 9319 PetscCallMPI(MPI_Reduce(&stats, &globalStats, 1, statType, statReduce, 0, comm)); 9320 PetscCallMPI(MPI_Op_free(&statReduce)); 9321 PetscCallMPI(MPI_Type_free(&statType)); 9322 } else { 9323 PetscCall(PetscArraycpy(&globalStats, &stats, 1)); 9324 } 9325 if (rank == 0) { 9326 count = globalStats.count; 9327 min = globalStats.min; 9328 max = globalStats.max; 9329 mean = globalStats.sum / globalStats.count; 9330 stdev = globalStats.count > 1 ? PetscSqrtReal(PetscMax((globalStats.squaresum - globalStats.count * mean * mean) / (globalStats.count - 1), 0)) : 0.0; 9331 } 9332 9333 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)); 9334 PetscCall(PetscFree2(J, invJ)); 9335 9336 PetscCall(DMGetCoarseDM(dm, &dmCoarse)); 9337 if (dmCoarse) { 9338 PetscBool isplex; 9339 9340 PetscCall(PetscObjectTypeCompare((PetscObject)dmCoarse, DMPLEX, &isplex)); 9341 if (isplex) PetscCall(DMPlexCheckCellShape(dmCoarse, output, condLimit)); 9342 } 9343 PetscFunctionReturn(PETSC_SUCCESS); 9344 } 9345 9346 /*@ 9347 DMPlexComputeOrthogonalQuality - Compute cell-wise orthogonal quality mesh statistic. Optionally tags all cells with 9348 orthogonal quality below given tolerance. 9349 9350 Collective 9351 9352 Input Parameters: 9353 + dm - The `DMPLEX` object 9354 . fv - Optional `PetscFV` object for pre-computed cell/face centroid information 9355 - atol - [0, 1] Absolute tolerance for tagging cells. 9356 9357 Output Parameters: 9358 + OrthQual - `Vec` containing orthogonal quality per cell 9359 - OrthQualLabel - `DMLabel` tagging cells below atol with `DM_ADAPT_REFINE` 9360 9361 Options Database Keys: 9362 + -dm_plex_orthogonal_quality_label_view - view OrthQualLabel if label is requested. Currently only `PETSCVIEWERASCII` is supported. 9363 - -dm_plex_orthogonal_quality_vec_view - view OrthQual vector. 9364 9365 Level: intermediate 9366 9367 Notes: 9368 Orthogonal quality is given by the following formula: 9369 9370 $ \min \left[ \frac{A_i \cdot f_i}{\|A_i\| \|f_i\|} , \frac{A_i \cdot c_i}{\|A_i\| \|c_i\|} \right]$ 9371 9372 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 9373 is the vector from the current cells centroid to the centroid of its i'th neighbor (which shares a face with the 9374 current cell). This computes the vector similarity between each cell face and its corresponding neighbor centroid by 9375 calculating the cosine of the angle between these vectors. 9376 9377 Orthogonal quality ranges from 1 (best) to 0 (worst). 9378 9379 This routine is mainly useful for FVM, however is not restricted to only FVM. The `PetscFV` object is optionally used to check for 9380 pre-computed FVM cell data, but if it is not passed in then this data will be computed. 9381 9382 Cells are tagged if they have an orthogonal quality less than or equal to the absolute tolerance. 9383 9384 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexCheckCellShape()`, `DMCreateLabel()`, `PetscFV`, `DMLabel`, `Vec` 9385 @*/ 9386 PetscErrorCode DMPlexComputeOrthogonalQuality(DM dm, PetscFV fv, PetscReal atol, Vec *OrthQual, DMLabel *OrthQualLabel) 9387 { 9388 PetscInt nc, cellHeight, cStart, cEnd, cell, cellIter = 0; 9389 PetscInt *idx; 9390 PetscScalar *oqVals; 9391 const PetscScalar *cellGeomArr, *faceGeomArr; 9392 PetscReal *ci, *fi, *Ai; 9393 MPI_Comm comm; 9394 Vec cellgeom, facegeom; 9395 DM dmFace, dmCell; 9396 IS glob; 9397 ISLocalToGlobalMapping ltog; 9398 PetscViewer vwr; 9399 9400 PetscFunctionBegin; 9401 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9402 if (fv) PetscValidHeaderSpecific(fv, PETSCFV_CLASSID, 2); 9403 PetscAssertPointer(OrthQual, 4); 9404 PetscCheck(atol >= 0.0 && atol <= 1.0, PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Absolute tolerance %g not in [0,1]", (double)atol); 9405 PetscCall(PetscObjectGetComm((PetscObject)dm, &comm)); 9406 PetscCall(DMGetDimension(dm, &nc)); 9407 PetscCheck(nc >= 2, PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "DM must have dimension >= 2 (current %" PetscInt_FMT ")", nc); 9408 { 9409 DMPlexInterpolatedFlag interpFlag; 9410 9411 PetscCall(DMPlexIsInterpolated(dm, &interpFlag)); 9412 if (interpFlag != DMPLEX_INTERPOLATED_FULL) { 9413 PetscMPIInt rank; 9414 9415 PetscCallMPI(MPI_Comm_rank(comm, &rank)); 9416 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_WRONGSTATE, "DM must be fully interpolated, DM on rank %d is not fully interpolated", rank); 9417 } 9418 } 9419 if (OrthQualLabel) { 9420 PetscAssertPointer(OrthQualLabel, 5); 9421 PetscCall(DMCreateLabel(dm, "Orthogonal_Quality")); 9422 PetscCall(DMGetLabel(dm, "Orthogonal_Quality", OrthQualLabel)); 9423 } else { 9424 *OrthQualLabel = NULL; 9425 } 9426 PetscCall(DMPlexGetVTKCellHeight(dm, &cellHeight)); 9427 PetscCall(DMPlexGetHeightStratum(dm, cellHeight, &cStart, &cEnd)); 9428 PetscCall(DMPlexCreateCellNumbering_Internal(dm, PETSC_TRUE, &glob)); 9429 PetscCall(ISLocalToGlobalMappingCreateIS(glob, <og)); 9430 PetscCall(ISLocalToGlobalMappingSetType(ltog, ISLOCALTOGLOBALMAPPINGHASH)); 9431 PetscCall(VecCreate(comm, OrthQual)); 9432 PetscCall(VecSetType(*OrthQual, VECSTANDARD)); 9433 PetscCall(VecSetSizes(*OrthQual, cEnd - cStart, PETSC_DETERMINE)); 9434 PetscCall(VecSetLocalToGlobalMapping(*OrthQual, ltog)); 9435 PetscCall(VecSetUp(*OrthQual)); 9436 PetscCall(ISDestroy(&glob)); 9437 PetscCall(ISLocalToGlobalMappingDestroy(<og)); 9438 PetscCall(DMPlexGetDataFVM(dm, fv, &cellgeom, &facegeom, NULL)); 9439 PetscCall(VecGetArrayRead(cellgeom, &cellGeomArr)); 9440 PetscCall(VecGetArrayRead(facegeom, &faceGeomArr)); 9441 PetscCall(VecGetDM(cellgeom, &dmCell)); 9442 PetscCall(VecGetDM(facegeom, &dmFace)); 9443 PetscCall(PetscMalloc5(cEnd - cStart, &idx, cEnd - cStart, &oqVals, nc, &ci, nc, &fi, nc, &Ai)); 9444 for (cell = cStart; cell < cEnd; cellIter++, cell++) { 9445 PetscInt cellneigh, cellneighiter = 0, adjSize = PETSC_DETERMINE; 9446 PetscInt cellarr[2], *adj = NULL; 9447 PetscScalar *cArr, *fArr; 9448 PetscReal minvalc = 1.0, minvalf = 1.0; 9449 PetscFVCellGeom *cg; 9450 9451 idx[cellIter] = cell - cStart; 9452 cellarr[0] = cell; 9453 /* Make indexing into cellGeom easier */ 9454 PetscCall(DMPlexPointLocalRead(dmCell, cell, cellGeomArr, &cg)); 9455 PetscCall(DMPlexGetAdjacency_Internal(dm, cell, PETSC_TRUE, PETSC_FALSE, PETSC_FALSE, &adjSize, &adj)); 9456 /* Technically 1 too big, but easier than fiddling with empty adjacency array */ 9457 PetscCall(PetscCalloc2(adjSize, &cArr, adjSize, &fArr)); 9458 for (cellneigh = 0; cellneigh < adjSize; cellneighiter++, cellneigh++) { 9459 PetscInt i; 9460 const PetscInt neigh = adj[cellneigh]; 9461 PetscReal normci = 0, normfi = 0, normai = 0; 9462 PetscFVCellGeom *cgneigh; 9463 PetscFVFaceGeom *fg; 9464 9465 /* Don't count ourselves in the neighbor list */ 9466 if (neigh == cell) continue; 9467 PetscCall(DMPlexPointLocalRead(dmCell, neigh, cellGeomArr, &cgneigh)); 9468 cellarr[1] = neigh; 9469 { 9470 PetscInt numcovpts; 9471 const PetscInt *covpts; 9472 9473 PetscCall(DMPlexGetMeet(dm, 2, cellarr, &numcovpts, &covpts)); 9474 PetscCall(DMPlexPointLocalRead(dmFace, covpts[0], faceGeomArr, &fg)); 9475 PetscCall(DMPlexRestoreMeet(dm, 2, cellarr, &numcovpts, &covpts)); 9476 } 9477 9478 /* Compute c_i, f_i and their norms */ 9479 for (i = 0; i < nc; i++) { 9480 ci[i] = cgneigh->centroid[i] - cg->centroid[i]; 9481 fi[i] = fg->centroid[i] - cg->centroid[i]; 9482 Ai[i] = fg->normal[i]; 9483 normci += PetscPowReal(ci[i], 2); 9484 normfi += PetscPowReal(fi[i], 2); 9485 normai += PetscPowReal(Ai[i], 2); 9486 } 9487 normci = PetscSqrtReal(normci); 9488 normfi = PetscSqrtReal(normfi); 9489 normai = PetscSqrtReal(normai); 9490 9491 /* Normalize and compute for each face-cell-normal pair */ 9492 for (i = 0; i < nc; i++) { 9493 ci[i] = ci[i] / normci; 9494 fi[i] = fi[i] / normfi; 9495 Ai[i] = Ai[i] / normai; 9496 /* PetscAbs because I don't know if normals are guaranteed to point out */ 9497 cArr[cellneighiter] += PetscAbs(Ai[i] * ci[i]); 9498 fArr[cellneighiter] += PetscAbs(Ai[i] * fi[i]); 9499 } 9500 if (PetscRealPart(cArr[cellneighiter]) < minvalc) minvalc = PetscRealPart(cArr[cellneighiter]); 9501 if (PetscRealPart(fArr[cellneighiter]) < minvalf) minvalf = PetscRealPart(fArr[cellneighiter]); 9502 } 9503 PetscCall(PetscFree(adj)); 9504 PetscCall(PetscFree2(cArr, fArr)); 9505 /* Defer to cell if they're equal */ 9506 oqVals[cellIter] = PetscMin(minvalf, minvalc); 9507 if (OrthQualLabel) { 9508 if (PetscRealPart(oqVals[cellIter]) <= atol) PetscCall(DMLabelSetValue(*OrthQualLabel, cell, DM_ADAPT_REFINE)); 9509 } 9510 } 9511 PetscCall(VecSetValuesLocal(*OrthQual, cEnd - cStart, idx, oqVals, INSERT_VALUES)); 9512 PetscCall(VecAssemblyBegin(*OrthQual)); 9513 PetscCall(VecAssemblyEnd(*OrthQual)); 9514 PetscCall(VecRestoreArrayRead(cellgeom, &cellGeomArr)); 9515 PetscCall(VecRestoreArrayRead(facegeom, &faceGeomArr)); 9516 PetscCall(PetscOptionsGetViewer(comm, NULL, NULL, "-dm_plex_orthogonal_quality_label_view", &vwr, NULL, NULL)); 9517 if (OrthQualLabel) { 9518 if (vwr) PetscCall(DMLabelView(*OrthQualLabel, vwr)); 9519 } 9520 PetscCall(PetscFree5(idx, oqVals, ci, fi, Ai)); 9521 PetscCall(PetscViewerDestroy(&vwr)); 9522 PetscCall(VecViewFromOptions(*OrthQual, NULL, "-dm_plex_orthogonal_quality_vec_view")); 9523 PetscFunctionReturn(PETSC_SUCCESS); 9524 } 9525 9526 /* this is here instead of DMGetOutputDM because output DM still has constraints in the local indices that affect 9527 * interpolator construction */ 9528 static PetscErrorCode DMGetFullDM(DM dm, DM *odm) 9529 { 9530 PetscSection section, newSection, gsection; 9531 PetscSF sf; 9532 PetscBool hasConstraints, ghasConstraints; 9533 9534 PetscFunctionBegin; 9535 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9536 PetscAssertPointer(odm, 2); 9537 PetscCall(DMGetLocalSection(dm, §ion)); 9538 PetscCall(PetscSectionHasConstraints(section, &hasConstraints)); 9539 PetscCall(MPIU_Allreduce(&hasConstraints, &ghasConstraints, 1, MPIU_BOOL, MPI_LOR, PetscObjectComm((PetscObject)dm))); 9540 if (!ghasConstraints) { 9541 PetscCall(PetscObjectReference((PetscObject)dm)); 9542 *odm = dm; 9543 PetscFunctionReturn(PETSC_SUCCESS); 9544 } 9545 PetscCall(DMClone(dm, odm)); 9546 PetscCall(DMCopyFields(dm, *odm)); 9547 PetscCall(DMGetLocalSection(*odm, &newSection)); 9548 PetscCall(DMGetPointSF(*odm, &sf)); 9549 PetscCall(PetscSectionCreateGlobalSection(newSection, sf, PETSC_TRUE, PETSC_FALSE, &gsection)); 9550 PetscCall(DMSetGlobalSection(*odm, gsection)); 9551 PetscCall(PetscSectionDestroy(&gsection)); 9552 PetscFunctionReturn(PETSC_SUCCESS); 9553 } 9554 9555 static PetscErrorCode DMCreateAffineInterpolationCorrection_Plex(DM dmc, DM dmf, Vec *shift) 9556 { 9557 DM dmco, dmfo; 9558 Mat interpo; 9559 Vec rscale; 9560 Vec cglobalo, clocal; 9561 Vec fglobal, fglobalo, flocal; 9562 PetscBool regular; 9563 9564 PetscFunctionBegin; 9565 PetscCall(DMGetFullDM(dmc, &dmco)); 9566 PetscCall(DMGetFullDM(dmf, &dmfo)); 9567 PetscCall(DMSetCoarseDM(dmfo, dmco)); 9568 PetscCall(DMPlexGetRegularRefinement(dmf, ®ular)); 9569 PetscCall(DMPlexSetRegularRefinement(dmfo, regular)); 9570 PetscCall(DMCreateInterpolation(dmco, dmfo, &interpo, &rscale)); 9571 PetscCall(DMCreateGlobalVector(dmco, &cglobalo)); 9572 PetscCall(DMCreateLocalVector(dmc, &clocal)); 9573 PetscCall(VecSet(cglobalo, 0.)); 9574 PetscCall(VecSet(clocal, 0.)); 9575 PetscCall(DMCreateGlobalVector(dmf, &fglobal)); 9576 PetscCall(DMCreateGlobalVector(dmfo, &fglobalo)); 9577 PetscCall(DMCreateLocalVector(dmf, &flocal)); 9578 PetscCall(VecSet(fglobal, 0.)); 9579 PetscCall(VecSet(fglobalo, 0.)); 9580 PetscCall(VecSet(flocal, 0.)); 9581 PetscCall(DMPlexInsertBoundaryValues(dmc, PETSC_TRUE, clocal, 0., NULL, NULL, NULL)); 9582 PetscCall(DMLocalToGlobalBegin(dmco, clocal, INSERT_VALUES, cglobalo)); 9583 PetscCall(DMLocalToGlobalEnd(dmco, clocal, INSERT_VALUES, cglobalo)); 9584 PetscCall(MatMult(interpo, cglobalo, fglobalo)); 9585 PetscCall(DMGlobalToLocalBegin(dmfo, fglobalo, INSERT_VALUES, flocal)); 9586 PetscCall(DMGlobalToLocalEnd(dmfo, fglobalo, INSERT_VALUES, flocal)); 9587 PetscCall(DMLocalToGlobalBegin(dmf, flocal, INSERT_VALUES, fglobal)); 9588 PetscCall(DMLocalToGlobalEnd(dmf, flocal, INSERT_VALUES, fglobal)); 9589 *shift = fglobal; 9590 PetscCall(VecDestroy(&flocal)); 9591 PetscCall(VecDestroy(&fglobalo)); 9592 PetscCall(VecDestroy(&clocal)); 9593 PetscCall(VecDestroy(&cglobalo)); 9594 PetscCall(VecDestroy(&rscale)); 9595 PetscCall(MatDestroy(&interpo)); 9596 PetscCall(DMDestroy(&dmfo)); 9597 PetscCall(DMDestroy(&dmco)); 9598 PetscFunctionReturn(PETSC_SUCCESS); 9599 } 9600 9601 PETSC_INTERN PetscErrorCode DMInterpolateSolution_Plex(DM coarse, DM fine, Mat interp, Vec coarseSol, Vec fineSol) 9602 { 9603 PetscObject shifto; 9604 Vec shift; 9605 9606 PetscFunctionBegin; 9607 if (!interp) { 9608 Vec rscale; 9609 9610 PetscCall(DMCreateInterpolation(coarse, fine, &interp, &rscale)); 9611 PetscCall(VecDestroy(&rscale)); 9612 } else { 9613 PetscCall(PetscObjectReference((PetscObject)interp)); 9614 } 9615 PetscCall(PetscObjectQuery((PetscObject)interp, "_DMInterpolateSolution_Plex_Vec", &shifto)); 9616 if (!shifto) { 9617 PetscCall(DMCreateAffineInterpolationCorrection_Plex(coarse, fine, &shift)); 9618 PetscCall(PetscObjectCompose((PetscObject)interp, "_DMInterpolateSolution_Plex_Vec", (PetscObject)shift)); 9619 shifto = (PetscObject)shift; 9620 PetscCall(VecDestroy(&shift)); 9621 } 9622 shift = (Vec)shifto; 9623 PetscCall(MatInterpolate(interp, coarseSol, fineSol)); 9624 PetscCall(VecAXPY(fineSol, 1.0, shift)); 9625 PetscCall(MatDestroy(&interp)); 9626 PetscFunctionReturn(PETSC_SUCCESS); 9627 } 9628 9629 /* Pointwise interpolation 9630 Just code FEM for now 9631 u^f = I u^c 9632 sum_k u^f_k phi^f_k = I sum_j u^c_j phi^c_j 9633 u^f_i = sum_j psi^f_i I phi^c_j u^c_j 9634 I_{ij} = psi^f_i phi^c_j 9635 */ 9636 PetscErrorCode DMCreateInterpolation_Plex(DM dmCoarse, DM dmFine, Mat *interpolation, Vec *scaling) 9637 { 9638 PetscSection gsc, gsf; 9639 PetscInt m, n; 9640 void *ctx; 9641 DM cdm; 9642 PetscBool regular, ismatis, isRefined = dmCoarse->data == dmFine->data ? PETSC_FALSE : PETSC_TRUE; 9643 9644 PetscFunctionBegin; 9645 PetscCall(DMGetGlobalSection(dmFine, &gsf)); 9646 PetscCall(PetscSectionGetConstrainedStorageSize(gsf, &m)); 9647 PetscCall(DMGetGlobalSection(dmCoarse, &gsc)); 9648 PetscCall(PetscSectionGetConstrainedStorageSize(gsc, &n)); 9649 9650 PetscCall(PetscStrcmp(dmCoarse->mattype, MATIS, &ismatis)); 9651 PetscCall(MatCreate(PetscObjectComm((PetscObject)dmCoarse), interpolation)); 9652 PetscCall(MatSetSizes(*interpolation, m, n, PETSC_DETERMINE, PETSC_DETERMINE)); 9653 PetscCall(MatSetType(*interpolation, ismatis ? MATAIJ : dmCoarse->mattype)); 9654 PetscCall(DMGetApplicationContext(dmFine, &ctx)); 9655 9656 PetscCall(DMGetCoarseDM(dmFine, &cdm)); 9657 PetscCall(DMPlexGetRegularRefinement(dmFine, ®ular)); 9658 if (!isRefined || (regular && cdm == dmCoarse)) PetscCall(DMPlexComputeInterpolatorNested(dmCoarse, dmFine, isRefined, *interpolation, ctx)); 9659 else PetscCall(DMPlexComputeInterpolatorGeneral(dmCoarse, dmFine, *interpolation, ctx)); 9660 PetscCall(MatViewFromOptions(*interpolation, NULL, "-interp_mat_view")); 9661 if (scaling) { 9662 /* Use naive scaling */ 9663 PetscCall(DMCreateInterpolationScale(dmCoarse, dmFine, *interpolation, scaling)); 9664 } 9665 PetscFunctionReturn(PETSC_SUCCESS); 9666 } 9667 9668 PetscErrorCode DMCreateInjection_Plex(DM dmCoarse, DM dmFine, Mat *mat) 9669 { 9670 VecScatter ctx; 9671 9672 PetscFunctionBegin; 9673 PetscCall(DMPlexComputeInjectorFEM(dmCoarse, dmFine, &ctx, NULL)); 9674 PetscCall(MatCreateScatter(PetscObjectComm((PetscObject)ctx), ctx, mat)); 9675 PetscCall(VecScatterDestroy(&ctx)); 9676 PetscFunctionReturn(PETSC_SUCCESS); 9677 } 9678 9679 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[]) 9680 { 9681 const PetscInt Nc = uOff[1] - uOff[0]; 9682 PetscInt c; 9683 for (c = 0; c < Nc; ++c) g0[c * Nc + c] = 1.0; 9684 } 9685 9686 PetscErrorCode DMCreateMassMatrixLumped_Plex(DM dm, Vec *mass) 9687 { 9688 DM dmc; 9689 PetscDS ds; 9690 Vec ones, locmass; 9691 IS cellIS; 9692 PetscFormKey key; 9693 PetscInt depth; 9694 9695 PetscFunctionBegin; 9696 PetscCall(DMClone(dm, &dmc)); 9697 PetscCall(DMCopyDisc(dm, dmc)); 9698 PetscCall(DMGetDS(dmc, &ds)); 9699 PetscCall(PetscDSSetJacobian(ds, 0, 0, g0_identity_private, NULL, NULL, NULL)); 9700 PetscCall(DMCreateGlobalVector(dmc, mass)); 9701 PetscCall(DMGetLocalVector(dmc, &ones)); 9702 PetscCall(DMGetLocalVector(dmc, &locmass)); 9703 PetscCall(DMPlexGetDepth(dmc, &depth)); 9704 PetscCall(DMGetStratumIS(dmc, "depth", depth, &cellIS)); 9705 PetscCall(VecSet(locmass, 0.0)); 9706 PetscCall(VecSet(ones, 1.0)); 9707 key.label = NULL; 9708 key.value = 0; 9709 key.field = 0; 9710 key.part = 0; 9711 PetscCall(DMPlexComputeJacobian_Action_Internal(dmc, key, cellIS, 0.0, 0.0, ones, NULL, ones, locmass, NULL)); 9712 PetscCall(ISDestroy(&cellIS)); 9713 PetscCall(VecSet(*mass, 0.0)); 9714 PetscCall(DMLocalToGlobalBegin(dmc, locmass, ADD_VALUES, *mass)); 9715 PetscCall(DMLocalToGlobalEnd(dmc, locmass, ADD_VALUES, *mass)); 9716 PetscCall(DMRestoreLocalVector(dmc, &ones)); 9717 PetscCall(DMRestoreLocalVector(dmc, &locmass)); 9718 PetscCall(DMDestroy(&dmc)); 9719 PetscFunctionReturn(PETSC_SUCCESS); 9720 } 9721 9722 PetscErrorCode DMCreateMassMatrix_Plex(DM dmCoarse, DM dmFine, Mat *mass) 9723 { 9724 PetscSection gsc, gsf; 9725 PetscInt m, n; 9726 void *ctx; 9727 DM cdm; 9728 PetscBool regular; 9729 9730 PetscFunctionBegin; 9731 if (dmFine == dmCoarse) { 9732 DM dmc; 9733 PetscDS ds; 9734 PetscWeakForm wf; 9735 Vec u; 9736 IS cellIS; 9737 PetscFormKey key; 9738 PetscInt depth; 9739 9740 PetscCall(DMClone(dmFine, &dmc)); 9741 PetscCall(DMCopyDisc(dmFine, dmc)); 9742 PetscCall(DMGetDS(dmc, &ds)); 9743 PetscCall(PetscDSGetWeakForm(ds, &wf)); 9744 PetscCall(PetscWeakFormClear(wf)); 9745 PetscCall(PetscDSSetJacobian(ds, 0, 0, g0_identity_private, NULL, NULL, NULL)); 9746 PetscCall(DMCreateMatrix(dmc, mass)); 9747 PetscCall(DMGetLocalVector(dmc, &u)); 9748 PetscCall(DMPlexGetDepth(dmc, &depth)); 9749 PetscCall(DMGetStratumIS(dmc, "depth", depth, &cellIS)); 9750 PetscCall(MatZeroEntries(*mass)); 9751 key.label = NULL; 9752 key.value = 0; 9753 key.field = 0; 9754 key.part = 0; 9755 PetscCall(DMPlexComputeJacobian_Internal(dmc, key, cellIS, 0.0, 0.0, u, NULL, *mass, *mass, NULL)); 9756 PetscCall(ISDestroy(&cellIS)); 9757 PetscCall(DMRestoreLocalVector(dmc, &u)); 9758 PetscCall(DMDestroy(&dmc)); 9759 } else { 9760 PetscCall(DMGetGlobalSection(dmFine, &gsf)); 9761 PetscCall(PetscSectionGetConstrainedStorageSize(gsf, &m)); 9762 PetscCall(DMGetGlobalSection(dmCoarse, &gsc)); 9763 PetscCall(PetscSectionGetConstrainedStorageSize(gsc, &n)); 9764 9765 PetscCall(MatCreate(PetscObjectComm((PetscObject)dmCoarse), mass)); 9766 PetscCall(MatSetSizes(*mass, m, n, PETSC_DETERMINE, PETSC_DETERMINE)); 9767 PetscCall(MatSetType(*mass, dmCoarse->mattype)); 9768 PetscCall(DMGetApplicationContext(dmFine, &ctx)); 9769 9770 PetscCall(DMGetCoarseDM(dmFine, &cdm)); 9771 PetscCall(DMPlexGetRegularRefinement(dmFine, ®ular)); 9772 if (regular && cdm == dmCoarse) PetscCall(DMPlexComputeMassMatrixNested(dmCoarse, dmFine, *mass, ctx)); 9773 else PetscCall(DMPlexComputeMassMatrixGeneral(dmCoarse, dmFine, *mass, ctx)); 9774 } 9775 PetscCall(MatViewFromOptions(*mass, NULL, "-mass_mat_view")); 9776 PetscFunctionReturn(PETSC_SUCCESS); 9777 } 9778 9779 /*@ 9780 DMPlexGetRegularRefinement - Get the flag indicating that this mesh was obtained by regular refinement from its coarse mesh 9781 9782 Input Parameter: 9783 . dm - The `DMPLEX` object 9784 9785 Output Parameter: 9786 . regular - The flag 9787 9788 Level: intermediate 9789 9790 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetRegularRefinement()` 9791 @*/ 9792 PetscErrorCode DMPlexGetRegularRefinement(DM dm, PetscBool *regular) 9793 { 9794 PetscFunctionBegin; 9795 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9796 PetscAssertPointer(regular, 2); 9797 *regular = ((DM_Plex *)dm->data)->regularRefinement; 9798 PetscFunctionReturn(PETSC_SUCCESS); 9799 } 9800 9801 /*@ 9802 DMPlexSetRegularRefinement - Set the flag indicating that this mesh was obtained by regular refinement from its coarse mesh 9803 9804 Input Parameters: 9805 + dm - The `DMPLEX` object 9806 - regular - The flag 9807 9808 Level: intermediate 9809 9810 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetRegularRefinement()` 9811 @*/ 9812 PetscErrorCode DMPlexSetRegularRefinement(DM dm, PetscBool regular) 9813 { 9814 PetscFunctionBegin; 9815 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9816 ((DM_Plex *)dm->data)->regularRefinement = regular; 9817 PetscFunctionReturn(PETSC_SUCCESS); 9818 } 9819 9820 /*@ 9821 DMPlexGetAnchors - Get the layout of the anchor (point-to-point) constraints. Typically, the user will not have to 9822 call DMPlexGetAnchors() directly: if there are anchors, then `DMPlexGetAnchors()` is called during `DMGetDefaultConstraints()`. 9823 9824 Not Collective 9825 9826 Input Parameter: 9827 . dm - The `DMPLEX` object 9828 9829 Output Parameters: 9830 + anchorSection - If not `NULL`, set to the section describing which points anchor the constrained points. 9831 - anchorIS - If not `NULL`, set to the list of anchors indexed by `anchorSection` 9832 9833 Level: intermediate 9834 9835 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexSetAnchors()`, `DMGetDefaultConstraints()`, `DMSetDefaultConstraints()`, `IS`, `PetscSection` 9836 @*/ 9837 PetscErrorCode DMPlexGetAnchors(DM dm, PetscSection *anchorSection, IS *anchorIS) 9838 { 9839 DM_Plex *plex = (DM_Plex *)dm->data; 9840 9841 PetscFunctionBegin; 9842 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9843 if (!plex->anchorSection && !plex->anchorIS && plex->createanchors) PetscCall((*plex->createanchors)(dm)); 9844 if (anchorSection) *anchorSection = plex->anchorSection; 9845 if (anchorIS) *anchorIS = plex->anchorIS; 9846 PetscFunctionReturn(PETSC_SUCCESS); 9847 } 9848 9849 /*@ 9850 DMPlexSetAnchors - Set the layout of the local anchor (point-to-point) constraints. Unlike boundary conditions, 9851 when a point's degrees of freedom in a section are constrained to an outside value, the anchor constraints set a 9852 point's degrees of freedom to be a linear combination of other points' degrees of freedom. 9853 9854 Collective 9855 9856 Input Parameters: 9857 + dm - The `DMPLEX` object 9858 . anchorSection - The section that describes the mapping from constrained points to the anchor points listed in anchorIS. 9859 Must have a local communicator (`PETSC_COMM_SELF` or derivative). 9860 - anchorIS - The list of all anchor points. Must have a local communicator (`PETSC_COMM_SELF` or derivative). 9861 9862 Level: intermediate 9863 9864 Notes: 9865 After specifying the layout of constraints with `DMPlexSetAnchors()`, one specifies the constraints by calling 9866 `DMGetDefaultConstraints()` and filling in the entries in the constraint matrix. 9867 9868 The reference counts of `anchorSection` and `anchorIS` are incremented. 9869 9870 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMPlexGetAnchors()`, `DMGetDefaultConstraints()`, `DMSetDefaultConstraints()` 9871 @*/ 9872 PetscErrorCode DMPlexSetAnchors(DM dm, PetscSection anchorSection, IS anchorIS) 9873 { 9874 DM_Plex *plex = (DM_Plex *)dm->data; 9875 PetscMPIInt result; 9876 9877 PetscFunctionBegin; 9878 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9879 if (anchorSection) { 9880 PetscValidHeaderSpecific(anchorSection, PETSC_SECTION_CLASSID, 2); 9881 PetscCallMPI(MPI_Comm_compare(PETSC_COMM_SELF, PetscObjectComm((PetscObject)anchorSection), &result)); 9882 PetscCheck(result == MPI_CONGRUENT || result == MPI_IDENT, PETSC_COMM_SELF, PETSC_ERR_ARG_NOTSAMECOMM, "anchor section must have local communicator"); 9883 } 9884 if (anchorIS) { 9885 PetscValidHeaderSpecific(anchorIS, IS_CLASSID, 3); 9886 PetscCallMPI(MPI_Comm_compare(PETSC_COMM_SELF, PetscObjectComm((PetscObject)anchorIS), &result)); 9887 PetscCheck(result == MPI_CONGRUENT || result == MPI_IDENT, PETSC_COMM_SELF, PETSC_ERR_ARG_NOTSAMECOMM, "anchor IS must have local communicator"); 9888 } 9889 9890 PetscCall(PetscObjectReference((PetscObject)anchorSection)); 9891 PetscCall(PetscSectionDestroy(&plex->anchorSection)); 9892 plex->anchorSection = anchorSection; 9893 9894 PetscCall(PetscObjectReference((PetscObject)anchorIS)); 9895 PetscCall(ISDestroy(&plex->anchorIS)); 9896 plex->anchorIS = anchorIS; 9897 9898 if (PetscUnlikelyDebug(anchorIS && anchorSection)) { 9899 PetscInt size, a, pStart, pEnd; 9900 const PetscInt *anchors; 9901 9902 PetscCall(PetscSectionGetChart(anchorSection, &pStart, &pEnd)); 9903 PetscCall(ISGetLocalSize(anchorIS, &size)); 9904 PetscCall(ISGetIndices(anchorIS, &anchors)); 9905 for (a = 0; a < size; a++) { 9906 PetscInt p; 9907 9908 p = anchors[a]; 9909 if (p >= pStart && p < pEnd) { 9910 PetscInt dof; 9911 9912 PetscCall(PetscSectionGetDof(anchorSection, p, &dof)); 9913 if (dof) { 9914 PetscCall(ISRestoreIndices(anchorIS, &anchors)); 9915 SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_INCOMP, "Point %" PetscInt_FMT " cannot be constrained and an anchor", p); 9916 } 9917 } 9918 } 9919 PetscCall(ISRestoreIndices(anchorIS, &anchors)); 9920 } 9921 /* reset the generic constraints */ 9922 PetscCall(DMSetDefaultConstraints(dm, NULL, NULL, NULL)); 9923 PetscFunctionReturn(PETSC_SUCCESS); 9924 } 9925 9926 static PetscErrorCode DMPlexCreateConstraintSection_Anchors(DM dm, PetscSection section, PetscSection *cSec) 9927 { 9928 PetscSection anchorSection; 9929 PetscInt pStart, pEnd, sStart, sEnd, p, dof, numFields, f; 9930 9931 PetscFunctionBegin; 9932 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9933 PetscCall(DMPlexGetAnchors(dm, &anchorSection, NULL)); 9934 PetscCall(PetscSectionCreate(PETSC_COMM_SELF, cSec)); 9935 PetscCall(PetscSectionGetNumFields(section, &numFields)); 9936 if (numFields) { 9937 PetscInt f; 9938 PetscCall(PetscSectionSetNumFields(*cSec, numFields)); 9939 9940 for (f = 0; f < numFields; f++) { 9941 PetscInt numComp; 9942 9943 PetscCall(PetscSectionGetFieldComponents(section, f, &numComp)); 9944 PetscCall(PetscSectionSetFieldComponents(*cSec, f, numComp)); 9945 } 9946 } 9947 PetscCall(PetscSectionGetChart(anchorSection, &pStart, &pEnd)); 9948 PetscCall(PetscSectionGetChart(section, &sStart, &sEnd)); 9949 pStart = PetscMax(pStart, sStart); 9950 pEnd = PetscMin(pEnd, sEnd); 9951 pEnd = PetscMax(pStart, pEnd); 9952 PetscCall(PetscSectionSetChart(*cSec, pStart, pEnd)); 9953 for (p = pStart; p < pEnd; p++) { 9954 PetscCall(PetscSectionGetDof(anchorSection, p, &dof)); 9955 if (dof) { 9956 PetscCall(PetscSectionGetDof(section, p, &dof)); 9957 PetscCall(PetscSectionSetDof(*cSec, p, dof)); 9958 for (f = 0; f < numFields; f++) { 9959 PetscCall(PetscSectionGetFieldDof(section, p, f, &dof)); 9960 PetscCall(PetscSectionSetFieldDof(*cSec, p, f, dof)); 9961 } 9962 } 9963 } 9964 PetscCall(PetscSectionSetUp(*cSec)); 9965 PetscCall(PetscObjectSetName((PetscObject)*cSec, "Constraint Section")); 9966 PetscFunctionReturn(PETSC_SUCCESS); 9967 } 9968 9969 static PetscErrorCode DMPlexCreateConstraintMatrix_Anchors(DM dm, PetscSection section, PetscSection cSec, Mat *cMat) 9970 { 9971 PetscSection aSec; 9972 PetscInt pStart, pEnd, p, sStart, sEnd, dof, aDof, aOff, off, nnz, annz, m, n, q, a, offset, *i, *j; 9973 const PetscInt *anchors; 9974 PetscInt numFields, f; 9975 IS aIS; 9976 MatType mtype; 9977 PetscBool iscuda, iskokkos; 9978 9979 PetscFunctionBegin; 9980 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 9981 PetscCall(PetscSectionGetStorageSize(cSec, &m)); 9982 PetscCall(PetscSectionGetStorageSize(section, &n)); 9983 PetscCall(MatCreate(PETSC_COMM_SELF, cMat)); 9984 PetscCall(MatSetSizes(*cMat, m, n, m, n)); 9985 PetscCall(PetscStrcmp(dm->mattype, MATSEQAIJCUSPARSE, &iscuda)); 9986 if (!iscuda) PetscCall(PetscStrcmp(dm->mattype, MATMPIAIJCUSPARSE, &iscuda)); 9987 PetscCall(PetscStrcmp(dm->mattype, MATSEQAIJKOKKOS, &iskokkos)); 9988 if (!iskokkos) PetscCall(PetscStrcmp(dm->mattype, MATMPIAIJKOKKOS, &iskokkos)); 9989 if (iscuda) mtype = MATSEQAIJCUSPARSE; 9990 else if (iskokkos) mtype = MATSEQAIJKOKKOS; 9991 else mtype = MATSEQAIJ; 9992 PetscCall(MatSetType(*cMat, mtype)); 9993 PetscCall(DMPlexGetAnchors(dm, &aSec, &aIS)); 9994 PetscCall(ISGetIndices(aIS, &anchors)); 9995 /* cSec will be a subset of aSec and section */ 9996 PetscCall(PetscSectionGetChart(cSec, &pStart, &pEnd)); 9997 PetscCall(PetscSectionGetChart(section, &sStart, &sEnd)); 9998 PetscCall(PetscMalloc1(m + 1, &i)); 9999 i[0] = 0; 10000 PetscCall(PetscSectionGetNumFields(section, &numFields)); 10001 for (p = pStart; p < pEnd; p++) { 10002 PetscInt rDof, rOff, r; 10003 10004 PetscCall(PetscSectionGetDof(aSec, p, &rDof)); 10005 if (!rDof) continue; 10006 PetscCall(PetscSectionGetOffset(aSec, p, &rOff)); 10007 if (numFields) { 10008 for (f = 0; f < numFields; f++) { 10009 annz = 0; 10010 for (r = 0; r < rDof; r++) { 10011 a = anchors[rOff + r]; 10012 if (a < sStart || a >= sEnd) continue; 10013 PetscCall(PetscSectionGetFieldDof(section, a, f, &aDof)); 10014 annz += aDof; 10015 } 10016 PetscCall(PetscSectionGetFieldDof(cSec, p, f, &dof)); 10017 PetscCall(PetscSectionGetFieldOffset(cSec, p, f, &off)); 10018 for (q = 0; q < dof; q++) i[off + q + 1] = i[off + q] + annz; 10019 } 10020 } else { 10021 annz = 0; 10022 PetscCall(PetscSectionGetDof(cSec, p, &dof)); 10023 for (q = 0; q < dof; q++) { 10024 a = anchors[rOff + q]; 10025 if (a < sStart || a >= sEnd) continue; 10026 PetscCall(PetscSectionGetDof(section, a, &aDof)); 10027 annz += aDof; 10028 } 10029 PetscCall(PetscSectionGetDof(cSec, p, &dof)); 10030 PetscCall(PetscSectionGetOffset(cSec, p, &off)); 10031 for (q = 0; q < dof; q++) i[off + q + 1] = i[off + q] + annz; 10032 } 10033 } 10034 nnz = i[m]; 10035 PetscCall(PetscMalloc1(nnz, &j)); 10036 offset = 0; 10037 for (p = pStart; p < pEnd; p++) { 10038 if (numFields) { 10039 for (f = 0; f < numFields; f++) { 10040 PetscCall(PetscSectionGetFieldDof(cSec, p, f, &dof)); 10041 for (q = 0; q < dof; q++) { 10042 PetscInt rDof, rOff, r; 10043 PetscCall(PetscSectionGetDof(aSec, p, &rDof)); 10044 PetscCall(PetscSectionGetOffset(aSec, p, &rOff)); 10045 for (r = 0; r < rDof; r++) { 10046 PetscInt s; 10047 10048 a = anchors[rOff + r]; 10049 if (a < sStart || a >= sEnd) continue; 10050 PetscCall(PetscSectionGetFieldDof(section, a, f, &aDof)); 10051 PetscCall(PetscSectionGetFieldOffset(section, a, f, &aOff)); 10052 for (s = 0; s < aDof; s++) j[offset++] = aOff + s; 10053 } 10054 } 10055 } 10056 } else { 10057 PetscCall(PetscSectionGetDof(cSec, p, &dof)); 10058 for (q = 0; q < dof; q++) { 10059 PetscInt rDof, rOff, r; 10060 PetscCall(PetscSectionGetDof(aSec, p, &rDof)); 10061 PetscCall(PetscSectionGetOffset(aSec, p, &rOff)); 10062 for (r = 0; r < rDof; r++) { 10063 PetscInt s; 10064 10065 a = anchors[rOff + r]; 10066 if (a < sStart || a >= sEnd) continue; 10067 PetscCall(PetscSectionGetDof(section, a, &aDof)); 10068 PetscCall(PetscSectionGetOffset(section, a, &aOff)); 10069 for (s = 0; s < aDof; s++) j[offset++] = aOff + s; 10070 } 10071 } 10072 } 10073 } 10074 PetscCall(MatSeqAIJSetPreallocationCSR(*cMat, i, j, NULL)); 10075 PetscCall(PetscFree(i)); 10076 PetscCall(PetscFree(j)); 10077 PetscCall(ISRestoreIndices(aIS, &anchors)); 10078 PetscFunctionReturn(PETSC_SUCCESS); 10079 } 10080 10081 PetscErrorCode DMCreateDefaultConstraints_Plex(DM dm) 10082 { 10083 DM_Plex *plex = (DM_Plex *)dm->data; 10084 PetscSection anchorSection, section, cSec; 10085 Mat cMat; 10086 10087 PetscFunctionBegin; 10088 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 10089 PetscCall(DMPlexGetAnchors(dm, &anchorSection, NULL)); 10090 if (anchorSection) { 10091 PetscInt Nf; 10092 10093 PetscCall(DMGetLocalSection(dm, §ion)); 10094 PetscCall(DMPlexCreateConstraintSection_Anchors(dm, section, &cSec)); 10095 PetscCall(DMPlexCreateConstraintMatrix_Anchors(dm, section, cSec, &cMat)); 10096 PetscCall(DMGetNumFields(dm, &Nf)); 10097 if (Nf && plex->computeanchormatrix) PetscCall((*plex->computeanchormatrix)(dm, section, cSec, cMat)); 10098 PetscCall(DMSetDefaultConstraints(dm, cSec, cMat, NULL)); 10099 PetscCall(PetscSectionDestroy(&cSec)); 10100 PetscCall(MatDestroy(&cMat)); 10101 } 10102 PetscFunctionReturn(PETSC_SUCCESS); 10103 } 10104 10105 PetscErrorCode DMCreateSubDomainDM_Plex(DM dm, DMLabel label, PetscInt value, IS *is, DM *subdm) 10106 { 10107 IS subis; 10108 PetscSection section, subsection; 10109 10110 PetscFunctionBegin; 10111 PetscCall(DMGetLocalSection(dm, §ion)); 10112 PetscCheck(section, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Must set default section for DM before splitting subdomain"); 10113 PetscCheck(subdm, PetscObjectComm((PetscObject)dm), PETSC_ERR_ARG_WRONG, "Must set output subDM for splitting subdomain"); 10114 /* Create subdomain */ 10115 PetscCall(DMPlexFilter(dm, label, value, subdm)); 10116 /* Create submodel */ 10117 PetscCall(DMPlexGetSubpointIS(*subdm, &subis)); 10118 PetscCall(PetscSectionCreateSubmeshSection(section, subis, &subsection)); 10119 PetscCall(DMSetLocalSection(*subdm, subsection)); 10120 PetscCall(PetscSectionDestroy(&subsection)); 10121 PetscCall(DMCopyDisc(dm, *subdm)); 10122 /* Create map from submodel to global model */ 10123 if (is) { 10124 PetscSection sectionGlobal, subsectionGlobal; 10125 IS spIS; 10126 const PetscInt *spmap; 10127 PetscInt *subIndices; 10128 PetscInt subSize = 0, subOff = 0, pStart, pEnd, p; 10129 PetscInt Nf, f, bs = -1, bsLocal[2], bsMinMax[2]; 10130 10131 PetscCall(DMPlexGetSubpointIS(*subdm, &spIS)); 10132 PetscCall(ISGetIndices(spIS, &spmap)); 10133 PetscCall(PetscSectionGetNumFields(section, &Nf)); 10134 PetscCall(DMGetGlobalSection(dm, §ionGlobal)); 10135 PetscCall(DMGetGlobalSection(*subdm, &subsectionGlobal)); 10136 PetscCall(PetscSectionGetChart(subsection, &pStart, &pEnd)); 10137 for (p = pStart; p < pEnd; ++p) { 10138 PetscInt gdof, pSubSize = 0; 10139 10140 PetscCall(PetscSectionGetDof(sectionGlobal, p, &gdof)); 10141 if (gdof > 0) { 10142 for (f = 0; f < Nf; ++f) { 10143 PetscInt fdof, fcdof; 10144 10145 PetscCall(PetscSectionGetFieldDof(subsection, p, f, &fdof)); 10146 PetscCall(PetscSectionGetFieldConstraintDof(subsection, p, f, &fcdof)); 10147 pSubSize += fdof - fcdof; 10148 } 10149 subSize += pSubSize; 10150 if (pSubSize) { 10151 if (bs < 0) { 10152 bs = pSubSize; 10153 } else if (bs != pSubSize) { 10154 /* Layout does not admit a pointwise block size */ 10155 bs = 1; 10156 } 10157 } 10158 } 10159 } 10160 /* Must have same blocksize on all procs (some might have no points) */ 10161 bsLocal[0] = bs < 0 ? PETSC_MAX_INT : bs; 10162 bsLocal[1] = bs; 10163 PetscCall(PetscGlobalMinMaxInt(PetscObjectComm((PetscObject)dm), bsLocal, bsMinMax)); 10164 if (bsMinMax[0] != bsMinMax[1]) { 10165 bs = 1; 10166 } else { 10167 bs = bsMinMax[0]; 10168 } 10169 PetscCall(PetscMalloc1(subSize, &subIndices)); 10170 for (p = pStart; p < pEnd; ++p) { 10171 PetscInt gdof, goff; 10172 10173 PetscCall(PetscSectionGetDof(subsectionGlobal, p, &gdof)); 10174 if (gdof > 0) { 10175 const PetscInt point = spmap[p]; 10176 10177 PetscCall(PetscSectionGetOffset(sectionGlobal, point, &goff)); 10178 for (f = 0; f < Nf; ++f) { 10179 PetscInt fdof, fcdof, fc, f2, poff = 0; 10180 10181 /* Can get rid of this loop by storing field information in the global section */ 10182 for (f2 = 0; f2 < f; ++f2) { 10183 PetscCall(PetscSectionGetFieldDof(section, p, f2, &fdof)); 10184 PetscCall(PetscSectionGetFieldConstraintDof(section, p, f2, &fcdof)); 10185 poff += fdof - fcdof; 10186 } 10187 PetscCall(PetscSectionGetFieldDof(section, p, f, &fdof)); 10188 PetscCall(PetscSectionGetFieldConstraintDof(section, p, f, &fcdof)); 10189 for (fc = 0; fc < fdof - fcdof; ++fc, ++subOff) subIndices[subOff] = goff + poff + fc; 10190 } 10191 } 10192 } 10193 PetscCall(ISRestoreIndices(spIS, &spmap)); 10194 PetscCall(ISCreateGeneral(PetscObjectComm((PetscObject)dm), subSize, subIndices, PETSC_OWN_POINTER, is)); 10195 if (bs > 1) { 10196 /* We need to check that the block size does not come from non-contiguous fields */ 10197 PetscInt i, j, set = 1; 10198 for (i = 0; i < subSize; i += bs) { 10199 for (j = 0; j < bs; ++j) { 10200 if (subIndices[i + j] != subIndices[i] + j) { 10201 set = 0; 10202 break; 10203 } 10204 } 10205 } 10206 if (set) PetscCall(ISSetBlockSize(*is, bs)); 10207 } 10208 /* Attach nullspace */ 10209 for (f = 0; f < Nf; ++f) { 10210 (*subdm)->nullspaceConstructors[f] = dm->nullspaceConstructors[f]; 10211 if ((*subdm)->nullspaceConstructors[f]) break; 10212 } 10213 if (f < Nf) { 10214 MatNullSpace nullSpace; 10215 PetscCall((*(*subdm)->nullspaceConstructors[f])(*subdm, f, f, &nullSpace)); 10216 10217 PetscCall(PetscObjectCompose((PetscObject)*is, "nullspace", (PetscObject)nullSpace)); 10218 PetscCall(MatNullSpaceDestroy(&nullSpace)); 10219 } 10220 } 10221 PetscFunctionReturn(PETSC_SUCCESS); 10222 } 10223 10224 /*@ 10225 DMPlexMonitorThroughput - Report the cell throughput of FE integration 10226 10227 Input Parameters: 10228 + dm - The `DM` 10229 - dummy - unused argument 10230 10231 Options Database Key: 10232 . -dm_plex_monitor_throughput - Activate the monitor 10233 10234 Level: developer 10235 10236 .seealso: [](ch_unstructured), `DM`, `DMPLEX`, `DMSetFromOptions()`, `DMPlexCreate()` 10237 @*/ 10238 PetscErrorCode DMPlexMonitorThroughput(DM dm, void *dummy) 10239 { 10240 PetscLogHandler default_handler; 10241 10242 PetscFunctionBegin; 10243 PetscValidHeaderSpecific(dm, DM_CLASSID, 1); 10244 PetscCall(PetscLogGetDefaultHandler(&default_handler)); 10245 if (default_handler) { 10246 PetscLogEvent event; 10247 PetscEventPerfInfo eventInfo; 10248 PetscReal cellRate, flopRate; 10249 PetscInt cStart, cEnd, Nf, N; 10250 const char *name; 10251 10252 PetscCall(PetscObjectGetName((PetscObject)dm, &name)); 10253 PetscCall(DMPlexGetHeightStratum(dm, 0, &cStart, &cEnd)); 10254 PetscCall(DMGetNumFields(dm, &Nf)); 10255 PetscCall(PetscLogEventGetId("DMPlexResidualFE", &event)); 10256 PetscCall(PetscLogEventGetPerfInfo(PETSC_DEFAULT, event, &eventInfo)); 10257 N = (cEnd - cStart) * Nf * eventInfo.count; 10258 flopRate = eventInfo.flops / eventInfo.time; 10259 cellRate = N / eventInfo.time; 10260 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))); 10261 } else { 10262 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."); 10263 } 10264 PetscFunctionReturn(PETSC_SUCCESS); 10265 } 10266