1 #include <petsc/private/dmpleximpl.h> /*I "petscdmplex.h" I*/ 2 3 #include <petsc/private/petscfeimpl.h> 4 5 /*@ 6 DMPlexGetActivePoint - Get the point on which projection is currently working 7 8 Not collective 9 10 Input Parameter: 11 . dm - the DM 12 13 Output Parameter: 14 . point - The mesh point involved in the current projection 15 16 Level: developer 17 18 .seealso: `DMPlexSetActivePoint()` 19 @*/ 20 PetscErrorCode DMPlexGetActivePoint(DM dm, PetscInt *point) 21 { 22 PetscFunctionBeginHot; 23 *point = ((DM_Plex *) dm->data)->activePoint; 24 PetscFunctionReturn(0); 25 } 26 27 /*@ 28 DMPlexSetActivePoint - Set the point on which projection is currently working 29 30 Not collective 31 32 Input Parameters: 33 + dm - the DM 34 - point - The mesh point involved in the current projection 35 36 Level: developer 37 38 .seealso: `DMPlexGetActivePoint()` 39 @*/ 40 PetscErrorCode DMPlexSetActivePoint(DM dm, PetscInt point) 41 { 42 PetscFunctionBeginHot; 43 ((DM_Plex *) dm->data)->activePoint = point; 44 PetscFunctionReturn(0); 45 } 46 47 /* 48 DMProjectPoint_Func_Private - Interpolate the given function in the output basis on the given point 49 50 Input Parameters: 51 + dm - The output DM 52 . ds - The output DS 53 . dmIn - The input DM 54 . dsIn - The input DS 55 . time - The time for this evaluation 56 . fegeom - The FE geometry for this point 57 . fvgeom - The FV geometry for this point 58 . isFE - Flag indicating whether each output field has an FE discretization 59 . sp - The output PetscDualSpace for each field 60 . funcs - The evaluation function for each field 61 - ctxs - The user context for each field 62 63 Output Parameter: 64 . values - The value for each dual basis vector in the output dual space 65 66 Level: developer 67 68 .seealso: `DMProjectPoint_Field_Private()` 69 */ 70 static PetscErrorCode DMProjectPoint_Func_Private(DM dm, PetscDS ds, DM dmIn, PetscDS dsIn, PetscReal time, PetscFEGeom *fegeom, PetscFVCellGeom *fvgeom, PetscBool isFE[], PetscDualSpace sp[], 71 PetscErrorCode (**funcs)(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar *, void *), void **ctxs, 72 PetscScalar values[]) 73 { 74 PetscInt coordDim, Nf, *Nc, f, spDim, d, v, tp; 75 PetscBool isAffine, isCohesive, transform; 76 77 PetscFunctionBeginHot; 78 PetscCall(DMGetCoordinateDim(dmIn, &coordDim)); 79 PetscCall(DMHasBasisTransform(dmIn, &transform)); 80 PetscCall(PetscDSGetNumFields(ds, &Nf)); 81 PetscCall(PetscDSGetComponents(ds, &Nc)); 82 PetscCall(PetscDSIsCohesive(ds, &isCohesive)); 83 /* Get values for closure */ 84 isAffine = fegeom->isAffine; 85 for (f = 0, v = 0, tp = 0; f < Nf; ++f) { 86 void * const ctx = ctxs ? ctxs[f] : NULL; 87 PetscBool cohesive; 88 89 if (!sp[f]) continue; 90 PetscCall(PetscDSGetCohesive(ds, f, &cohesive)); 91 PetscCall(PetscDualSpaceGetDimension(sp[f], &spDim)); 92 if (funcs[f]) { 93 if (isFE[f]) { 94 PetscQuadrature allPoints; 95 PetscInt q, dim, numPoints; 96 const PetscReal *points; 97 PetscScalar *pointEval; 98 PetscReal *x; 99 DM rdm; 100 101 PetscCall(PetscDualSpaceGetDM(sp[f],&rdm)); 102 PetscCall(PetscDualSpaceGetAllData(sp[f], &allPoints, NULL)); 103 PetscCall(PetscQuadratureGetData(allPoints,&dim,NULL,&numPoints,&points,NULL)); 104 PetscCall(DMGetWorkArray(rdm,numPoints*Nc[f],MPIU_SCALAR,&pointEval)); 105 PetscCall(DMGetWorkArray(rdm,coordDim,MPIU_REAL,&x)); 106 PetscCall(PetscArrayzero(pointEval, numPoints*Nc[f])); 107 for (q = 0; q < numPoints; q++, tp++) { 108 const PetscReal *v0; 109 110 if (isAffine) { 111 const PetscReal *refpoint = &points[q*dim]; 112 PetscReal injpoint[3] = {0., 0., 0.}; 113 114 if (dim != fegeom->dim) { 115 if (isCohesive) { 116 /* We just need to inject into the higher dimensional space assuming the last dimension is collapsed */ 117 for (d = 0; d < dim; ++d) injpoint[d] = refpoint[d]; 118 refpoint = injpoint; 119 } else SETERRQ(PETSC_COMM_SELF, PETSC_ERR_ARG_SIZ, "Reference spatial dimension %" PetscInt_FMT " != %" PetscInt_FMT " dual basis spatial dimension", fegeom->dim, dim); 120 } 121 CoordinatesRefToReal(coordDim, fegeom->dim, fegeom->xi, fegeom->v, fegeom->J, refpoint, x); 122 v0 = x; 123 } else { 124 v0 = &fegeom->v[tp*coordDim]; 125 } 126 if (transform) {PetscCall(DMPlexBasisTransformApplyReal_Internal(dmIn, v0, PETSC_TRUE, coordDim, v0, x, dm->transformCtx)); v0 = x;} 127 PetscCall((*funcs[f])(coordDim, time, v0, Nc[f], &pointEval[Nc[f]*q], ctx)); 128 } 129 /* Transform point evaluations pointEval[q,c] */ 130 PetscCall(PetscDualSpacePullback(sp[f], fegeom, numPoints, Nc[f], pointEval)); 131 PetscCall(PetscDualSpaceApplyAll(sp[f], pointEval, &values[v])); 132 PetscCall(DMRestoreWorkArray(rdm,coordDim,MPIU_REAL,&x)); 133 PetscCall(DMRestoreWorkArray(rdm,numPoints*Nc[f],MPIU_SCALAR,&pointEval)); 134 v += spDim; 135 if (isCohesive && !cohesive) { 136 for (d = 0; d < spDim; d++, v++) values[v] = values[v - spDim]; 137 } 138 } else { 139 for (d = 0; d < spDim; ++d, ++v) { 140 PetscCall(PetscDualSpaceApplyFVM(sp[f], d, time, fvgeom, Nc[f], funcs[f], ctx, &values[v])); 141 } 142 } 143 } else { 144 for (d = 0; d < spDim; d++, v++) values[v] = 0.; 145 if (isCohesive && !cohesive) { 146 for (d = 0; d < spDim; d++, v++) values[v] = 0.; 147 } 148 } 149 } 150 PetscFunctionReturn(0); 151 } 152 153 /* 154 DMProjectPoint_Field_Private - Interpolate a function of the given field, in the input basis, using the output basis on the given point 155 156 Input Parameters: 157 + dm - The output DM 158 . ds - The output DS 159 . dmIn - The input DM 160 . dsIn - The input DS 161 . dmAux - The auxiliary DM, which is always for the input space 162 . dsAux - The auxiliary DS, which is always for the input space 163 . time - The time for this evaluation 164 . localU - The local solution 165 . localA - The local auziliary fields 166 . cgeom - The FE geometry for this point 167 . sp - The output PetscDualSpace for each field 168 . p - The point in the output DM 169 . T - Input basis and derivatives for each field tabulated on the quadrature points 170 . TAux - Auxiliary basis and derivatives for each aux field tabulated on the quadrature points 171 . funcs - The evaluation function for each field 172 - ctxs - The user context for each field 173 174 Output Parameter: 175 . values - The value for each dual basis vector in the output dual space 176 177 Note: Not supported for FV 178 179 Level: developer 180 181 .seealso: `DMProjectPoint_Field_Private()` 182 */ 183 static PetscErrorCode DMProjectPoint_Field_Private(DM dm, PetscDS ds, DM dmIn, DMEnclosureType encIn, PetscDS dsIn, DM dmAux, DMEnclosureType encAux, PetscDS dsAux, PetscReal time, Vec localU, Vec localA, PetscFEGeom *cgeom, PetscDualSpace sp[], PetscInt p, 184 PetscTabulation *T, PetscTabulation *TAux, 185 void (**funcs)(PetscInt, PetscInt, PetscInt, 186 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 187 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 188 PetscReal, const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[]), void **ctxs, 189 PetscScalar values[]) 190 { 191 PetscSection section, sectionAux = NULL; 192 PetscScalar *u, *u_t = NULL, *u_x, *a = NULL, *a_t = NULL, *a_x = NULL, *bc; 193 PetscScalar *coefficients = NULL, *coefficientsAux = NULL; 194 PetscScalar *coefficients_t = NULL, *coefficientsAux_t = NULL; 195 const PetscScalar *constants; 196 PetscReal *x; 197 PetscInt *uOff, *uOff_x, *aOff = NULL, *aOff_x = NULL, *Nc; 198 PetscFEGeom fegeom; 199 const PetscInt dE = cgeom->dimEmbed; 200 PetscInt numConstants, Nf, NfIn, NfAux = 0, f, spDim, d, v, inp, tp = 0; 201 PetscBool isAffine, isCohesive, transform; 202 203 PetscFunctionBeginHot; 204 PetscCall(PetscDSGetNumFields(ds, &Nf)); 205 PetscCall(PetscDSGetComponents(ds, &Nc)); 206 PetscCall(PetscDSIsCohesive(ds, &isCohesive)); 207 PetscCall(PetscDSGetNumFields(dsIn, &NfIn)); 208 PetscCall(PetscDSGetComponentOffsets(dsIn, &uOff)); 209 PetscCall(PetscDSGetComponentDerivativeOffsets(dsIn, &uOff_x)); 210 PetscCall(PetscDSGetEvaluationArrays(dsIn, &u, &bc /*&u_t*/, &u_x)); 211 PetscCall(PetscDSGetWorkspace(dsIn, &x, NULL, NULL, NULL, NULL)); 212 PetscCall(PetscDSGetConstants(dsIn, &numConstants, &constants)); 213 PetscCall(DMHasBasisTransform(dmIn, &transform)); 214 PetscCall(DMGetLocalSection(dmIn, §ion)); 215 PetscCall(DMGetEnclosurePoint(dmIn, dm, encIn, p, &inp)); 216 PetscCall(DMPlexVecGetClosure(dmIn, section, localU, inp, NULL, &coefficients)); 217 if (dmAux) { 218 PetscInt subp; 219 220 PetscCall(DMGetEnclosurePoint(dmAux, dm, encAux, p, &subp)); 221 PetscCall(PetscDSGetNumFields(dsAux, &NfAux)); 222 PetscCall(DMGetLocalSection(dmAux, §ionAux)); 223 PetscCall(PetscDSGetComponentOffsets(dsAux, &aOff)); 224 PetscCall(PetscDSGetComponentDerivativeOffsets(dsAux, &aOff_x)); 225 PetscCall(PetscDSGetEvaluationArrays(dsAux, &a, NULL /*&a_t*/, &a_x)); 226 PetscCall(DMPlexVecGetClosure(dmAux, sectionAux, localA, subp, NULL, &coefficientsAux)); 227 } 228 /* Get values for closure */ 229 isAffine = cgeom->isAffine; 230 fegeom.dim = cgeom->dim; 231 fegeom.dimEmbed = cgeom->dimEmbed; 232 if (isAffine) { 233 fegeom.v = x; 234 fegeom.xi = cgeom->xi; 235 fegeom.J = cgeom->J; 236 fegeom.invJ = cgeom->invJ; 237 fegeom.detJ = cgeom->detJ; 238 } 239 for (f = 0, v = 0; f < Nf; ++f) { 240 PetscQuadrature allPoints; 241 PetscInt q, dim, numPoints; 242 const PetscReal *points; 243 PetscScalar *pointEval; 244 PetscBool cohesive; 245 DM dm; 246 247 if (!sp[f]) continue; 248 PetscCall(PetscDSGetCohesive(ds, f, &cohesive)); 249 PetscCall(PetscDualSpaceGetDimension(sp[f], &spDim)); 250 if (!funcs[f]) { 251 for (d = 0; d < spDim; d++, v++) values[v] = 0.; 252 if (isCohesive && !cohesive) { 253 for (d = 0; d < spDim; d++, v++) values[v] = 0.; 254 } 255 continue; 256 } 257 PetscCall(PetscDualSpaceGetDM(sp[f],&dm)); 258 PetscCall(PetscDualSpaceGetAllData(sp[f], &allPoints, NULL)); 259 PetscCall(PetscQuadratureGetData(allPoints,&dim,NULL,&numPoints,&points,NULL)); 260 PetscCall(DMGetWorkArray(dm,numPoints*Nc[f],MPIU_SCALAR,&pointEval)); 261 for (q = 0; q < numPoints; ++q, ++tp) { 262 if (isAffine) { 263 CoordinatesRefToReal(dE, cgeom->dim, fegeom.xi, cgeom->v, fegeom.J, &points[q*dim], x); 264 } else { 265 fegeom.v = &cgeom->v[tp*dE]; 266 fegeom.J = &cgeom->J[tp*dE*dE]; 267 fegeom.invJ = &cgeom->invJ[tp*dE*dE]; 268 fegeom.detJ = &cgeom->detJ[tp]; 269 } 270 PetscCall(PetscFEEvaluateFieldJets_Internal(dsIn, NfIn, 0, tp, T, &fegeom, coefficients, coefficients_t, u, u_x, u_t)); 271 if (dsAux) PetscCall(PetscFEEvaluateFieldJets_Internal(dsAux, NfAux, 0, tp, TAux, &fegeom, coefficientsAux, coefficientsAux_t, a, a_x, a_t)); 272 if (transform) PetscCall(DMPlexBasisTransformApplyReal_Internal(dmIn, fegeom.v, PETSC_TRUE, dE, fegeom.v, fegeom.v, dm->transformCtx)); 273 (*funcs[f])(dE, NfIn, NfAux, uOff, uOff_x, u, u_t, u_x, aOff, aOff_x, a, a_t, a_x, time, fegeom.v, numConstants, constants, &pointEval[Nc[f]*q]); 274 } 275 PetscCall(PetscDualSpaceApplyAll(sp[f], pointEval, &values[v])); 276 PetscCall(DMRestoreWorkArray(dm,numPoints*Nc[f],MPIU_SCALAR,&pointEval)); 277 v += spDim; 278 /* TODO: For now, set both sides equal, but this should use info from other support cell */ 279 if (isCohesive && !cohesive) { 280 for (d = 0; d < spDim; d++, v++) values[v] = values[v - spDim]; 281 } 282 } 283 PetscCall(DMPlexVecRestoreClosure(dmIn, section, localU, inp, NULL, &coefficients)); 284 if (dmAux) PetscCall(DMPlexVecRestoreClosure(dmAux, sectionAux, localA, p, NULL, &coefficientsAux)); 285 PetscFunctionReturn(0); 286 } 287 288 static PetscErrorCode DMProjectPoint_BdField_Private(DM dm, PetscDS ds, DM dmIn, PetscDS dsIn, DM dmAux, DMEnclosureType encAux, PetscDS dsAux, PetscReal time, Vec localU, Vec localA, PetscFEGeom *fgeom, PetscDualSpace sp[], PetscInt p, 289 PetscTabulation *T, PetscTabulation *TAux, 290 void (**funcs)(PetscInt, PetscInt, PetscInt, 291 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 292 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 293 PetscReal, const PetscReal[], const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[]), void **ctxs, 294 PetscScalar values[]) 295 { 296 PetscSection section, sectionAux = NULL; 297 PetscScalar *u, *u_t = NULL, *u_x, *a = NULL, *a_t = NULL, *a_x = NULL, *bc; 298 PetscScalar *coefficients = NULL, *coefficientsAux = NULL; 299 PetscScalar *coefficients_t = NULL, *coefficientsAux_t = NULL; 300 const PetscScalar *constants; 301 PetscReal *x; 302 PetscInt *uOff, *uOff_x, *aOff = NULL, *aOff_x = NULL, *Nc; 303 PetscFEGeom fegeom, cgeom; 304 const PetscInt dE = fgeom->dimEmbed; 305 PetscInt numConstants, Nf, NfAux = 0, f, spDim, d, v, tp = 0; 306 PetscBool isAffine; 307 308 PetscFunctionBeginHot; 309 PetscCheck(dm == dmIn,PetscObjectComm((PetscObject) dm), PETSC_ERR_SUP, "Not yet upgraded to use different input DM"); 310 PetscCall(PetscDSGetNumFields(ds, &Nf)); 311 PetscCall(PetscDSGetComponents(ds, &Nc)); 312 PetscCall(PetscDSGetComponentOffsets(ds, &uOff)); 313 PetscCall(PetscDSGetComponentDerivativeOffsets(ds, &uOff_x)); 314 PetscCall(PetscDSGetEvaluationArrays(ds, &u, &bc /*&u_t*/, &u_x)); 315 PetscCall(PetscDSGetWorkspace(ds, &x, NULL, NULL, NULL, NULL)); 316 PetscCall(PetscDSGetConstants(ds, &numConstants, &constants)); 317 PetscCall(DMGetLocalSection(dm, §ion)); 318 PetscCall(DMPlexVecGetClosure(dmIn, section, localU, p, NULL, &coefficients)); 319 if (dmAux) { 320 PetscInt subp; 321 322 PetscCall(DMGetEnclosurePoint(dmAux, dm, encAux, p, &subp)); 323 PetscCall(PetscDSGetNumFields(dsAux, &NfAux)); 324 PetscCall(DMGetLocalSection(dmAux, §ionAux)); 325 PetscCall(PetscDSGetComponentOffsets(dsAux, &aOff)); 326 PetscCall(PetscDSGetComponentDerivativeOffsets(dsAux, &aOff_x)); 327 PetscCall(PetscDSGetEvaluationArrays(dsAux, &a, NULL /*&a_t*/, &a_x)); 328 PetscCall(DMPlexVecGetClosure(dmAux, sectionAux, localA, subp, NULL, &coefficientsAux)); 329 } 330 /* Get values for closure */ 331 isAffine = fgeom->isAffine; 332 fegeom.n = NULL; 333 fegeom.J = NULL; 334 fegeom.v = NULL; 335 fegeom.xi = NULL; 336 cgeom.dim = fgeom->dim; 337 cgeom.dimEmbed = fgeom->dimEmbed; 338 if (isAffine) { 339 fegeom.v = x; 340 fegeom.xi = fgeom->xi; 341 fegeom.J = fgeom->J; 342 fegeom.invJ = fgeom->invJ; 343 fegeom.detJ = fgeom->detJ; 344 fegeom.n = fgeom->n; 345 346 cgeom.J = fgeom->suppJ[0]; 347 cgeom.invJ = fgeom->suppInvJ[0]; 348 cgeom.detJ = fgeom->suppDetJ[0]; 349 } 350 for (f = 0, v = 0; f < Nf; ++f) { 351 PetscQuadrature allPoints; 352 PetscInt q, dim, numPoints; 353 const PetscReal *points; 354 PetscScalar *pointEval; 355 DM dm; 356 357 if (!sp[f]) continue; 358 PetscCall(PetscDualSpaceGetDimension(sp[f], &spDim)); 359 if (!funcs[f]) { 360 for (d = 0; d < spDim; d++, v++) values[v] = 0.; 361 continue; 362 } 363 PetscCall(PetscDualSpaceGetDM(sp[f],&dm)); 364 PetscCall(PetscDualSpaceGetAllData(sp[f], &allPoints, NULL)); 365 PetscCall(PetscQuadratureGetData(allPoints,&dim,NULL,&numPoints,&points,NULL)); 366 PetscCall(DMGetWorkArray(dm,numPoints*Nc[f],MPIU_SCALAR,&pointEval)); 367 for (q = 0; q < numPoints; ++q, ++tp) { 368 if (isAffine) { 369 CoordinatesRefToReal(dE, fgeom->dim, fegeom.xi, fgeom->v, fegeom.J, &points[q*dim], x); 370 } else { 371 fegeom.v = &fgeom->v[tp*dE]; 372 fegeom.J = &fgeom->J[tp*dE*dE]; 373 fegeom.invJ = &fgeom->invJ[tp*dE*dE]; 374 fegeom.detJ = &fgeom->detJ[tp]; 375 fegeom.n = &fgeom->n[tp*dE]; 376 377 cgeom.J = &fgeom->suppJ[0][tp*dE*dE]; 378 cgeom.invJ = &fgeom->suppInvJ[0][tp*dE*dE]; 379 cgeom.detJ = &fgeom->suppDetJ[0][tp]; 380 } 381 /* TODO We should use cgeom here, instead of fegeom, however the geometry coming in through fgeom does not have the support cell geometry */ 382 PetscCall(PetscFEEvaluateFieldJets_Internal(ds, Nf, 0, tp, T, &cgeom, coefficients, coefficients_t, u, u_x, u_t)); 383 if (dsAux) PetscCall(PetscFEEvaluateFieldJets_Internal(dsAux, NfAux, 0, tp, TAux, &cgeom, coefficientsAux, coefficientsAux_t, a, a_x, a_t)); 384 (*funcs[f])(dE, Nf, NfAux, uOff, uOff_x, u, u_t, u_x, aOff, aOff_x, a, a_t, a_x, time, fegeom.v, fegeom.n, numConstants, constants, &pointEval[Nc[f]*q]); 385 } 386 PetscCall(PetscDualSpaceApplyAll(sp[f], pointEval, &values[v])); 387 PetscCall(DMRestoreWorkArray(dm,numPoints*Nc[f],MPIU_SCALAR,&pointEval)); 388 v += spDim; 389 } 390 PetscCall(DMPlexVecRestoreClosure(dmIn, section, localU, p, NULL, &coefficients)); 391 if (dmAux) PetscCall(DMPlexVecRestoreClosure(dmAux, sectionAux, localA, p, NULL, &coefficientsAux)); 392 PetscFunctionReturn(0); 393 } 394 395 static PetscErrorCode DMProjectPoint_Private(DM dm, PetscDS ds, DM dmIn, DMEnclosureType encIn, PetscDS dsIn, DM dmAux, DMEnclosureType encAux, PetscDS dsAux, PetscFEGeom *fegeom, PetscInt effectiveHeight, PetscReal time, Vec localU, Vec localA, PetscBool hasFE, PetscBool hasFV, PetscBool isFE[], 396 PetscDualSpace sp[], PetscInt p, PetscTabulation *T, PetscTabulation *TAux, 397 DMBoundaryConditionType type, void (**funcs)(void), void **ctxs, PetscBool fieldActive[], PetscScalar values[]) 398 { 399 PetscFVCellGeom fvgeom; 400 PetscInt dim, dimEmbed; 401 402 PetscFunctionBeginHot; 403 PetscCall(DMGetDimension(dm, &dim)); 404 PetscCall(DMGetCoordinateDim(dm, &dimEmbed)); 405 if (hasFV) PetscCall(DMPlexComputeCellGeometryFVM(dm, p, &fvgeom.volume, fvgeom.centroid, NULL)); 406 switch (type) { 407 case DM_BC_ESSENTIAL: 408 case DM_BC_NATURAL: 409 PetscCall(DMProjectPoint_Func_Private(dm, ds, dmIn, dsIn, time, fegeom, &fvgeom, isFE, sp, (PetscErrorCode (**)(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar *, void *)) funcs, ctxs, values));break; 410 case DM_BC_ESSENTIAL_FIELD: 411 case DM_BC_NATURAL_FIELD: 412 PetscCall(DMProjectPoint_Field_Private(dm, ds, dmIn, encIn, dsIn, dmAux, encAux, dsAux, time, localU, localA, fegeom, sp, p, T, TAux, 413 (void (**)(PetscInt, PetscInt, PetscInt, 414 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 415 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 416 PetscReal, const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[])) funcs, ctxs, values)); 417 break; 418 case DM_BC_ESSENTIAL_BD_FIELD: 419 PetscCall(DMProjectPoint_BdField_Private(dm, ds, dmIn, dsIn, dmAux, encAux, dsAux, time, localU, localA, fegeom, sp, p, T, TAux, 420 (void (**)(PetscInt, PetscInt, PetscInt, 421 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 422 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 423 PetscReal, const PetscReal[], const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[])) funcs, ctxs, values)); 424 break; 425 default: SETERRQ(PetscObjectComm((PetscObject) dm), PETSC_ERR_ARG_WRONG, "Unknown boundary condition type: %d", (int) type); 426 } 427 PetscFunctionReturn(0); 428 } 429 430 static PetscErrorCode PetscDualSpaceGetAllPointsUnion(PetscInt Nf, PetscDualSpace *sp, PetscInt dim, void (**funcs)(void), PetscQuadrature *allPoints) 431 { 432 PetscReal *points; 433 PetscInt f, numPoints; 434 435 PetscFunctionBegin; 436 if (!dim) { 437 PetscCall(PetscQuadratureCreate(PETSC_COMM_SELF, allPoints)); 438 PetscFunctionReturn(0); 439 } 440 numPoints = 0; 441 for (f = 0; f < Nf; ++f) { 442 if (funcs[f]) { 443 PetscQuadrature fAllPoints; 444 PetscInt fNumPoints; 445 446 PetscCall(PetscDualSpaceGetAllData(sp[f],&fAllPoints, NULL)); 447 PetscCall(PetscQuadratureGetData(fAllPoints, NULL, NULL, &fNumPoints, NULL, NULL)); 448 numPoints += fNumPoints; 449 } 450 } 451 PetscCall(PetscMalloc1(dim*numPoints,&points)); 452 numPoints = 0; 453 for (f = 0; f < Nf; ++f) { 454 if (funcs[f]) { 455 PetscQuadrature fAllPoints; 456 PetscInt qdim, fNumPoints, q; 457 const PetscReal *fPoints; 458 459 PetscCall(PetscDualSpaceGetAllData(sp[f],&fAllPoints, NULL)); 460 PetscCall(PetscQuadratureGetData(fAllPoints, &qdim, NULL, &fNumPoints, &fPoints, NULL)); 461 PetscCheck(qdim == dim,PETSC_COMM_SELF, PETSC_ERR_ARG_SIZ, "Spatial dimension %" PetscInt_FMT " for dual basis does not match input dimension %" PetscInt_FMT, qdim, dim); 462 for (q = 0; q < fNumPoints*dim; ++q) points[numPoints*dim+q] = fPoints[q]; 463 numPoints += fNumPoints; 464 } 465 } 466 PetscCall(PetscQuadratureCreate(PETSC_COMM_SELF,allPoints)); 467 PetscCall(PetscQuadratureSetData(*allPoints,dim,0,numPoints,points,NULL)); 468 PetscFunctionReturn(0); 469 } 470 471 /*@C 472 DMGetFirstLabeledPoint - Find first labeled point p_o in odm such that the corresponding point p in dm has the specified height. Return p and the corresponding ds. 473 474 Input Parameters: 475 dm - the DM 476 odm - the enclosing DM 477 label - label for DM domain, or NULL for whole domain 478 numIds - the number of ids 479 ids - An array of the label ids in sequence for the domain 480 height - Height of target cells in DMPlex topology 481 482 Output Parameters: 483 point - the first labeled point 484 ds - the ds corresponding to the first labeled point 485 486 Level: developer 487 @*/ 488 PetscErrorCode DMGetFirstLabeledPoint(DM dm, DM odm, DMLabel label, PetscInt numIds, const PetscInt ids[], PetscInt height, PetscInt *point, PetscDS *ds) 489 { 490 DM plex; 491 DMEnclosureType enc; 492 PetscInt ls = -1; 493 494 PetscFunctionBegin; 495 if (point) *point = -1; 496 if (!label) PetscFunctionReturn(0); 497 PetscCall(DMGetEnclosureRelation(dm, odm, &enc)); 498 PetscCall(DMConvert(dm, DMPLEX, &plex)); 499 for (PetscInt i = 0; i < numIds; ++i) { 500 IS labelIS; 501 PetscInt num_points, pStart, pEnd; 502 PetscCall(DMLabelGetStratumIS(label, ids[i], &labelIS)); 503 if (!labelIS) continue; /* No points with that id on this process */ 504 PetscCall(DMPlexGetHeightStratum(plex, height, &pStart, &pEnd)); 505 PetscCall(ISGetSize(labelIS, &num_points)); 506 if (num_points) { 507 const PetscInt *points; 508 PetscCall(ISGetIndices(labelIS, &points)); 509 for (PetscInt i=0; i<num_points; i++) { 510 PetscInt point; 511 PetscCall(DMGetEnclosurePoint(dm, odm, enc, points[i], &point)); 512 if (pStart <= point && point < pEnd) { 513 ls = point; 514 if (ds) PetscCall(DMGetCellDS(dm, ls, ds)); 515 } 516 } 517 PetscCall(ISRestoreIndices(labelIS, &points)); 518 } 519 PetscCall(ISDestroy(&labelIS)); 520 if (ls >= 0) break; 521 } 522 if (point) *point = ls; 523 PetscCall(DMDestroy(&plex)); 524 PetscFunctionReturn(0); 525 } 526 527 /* 528 This function iterates over a manifold, and interpolates the input function/field using the basis provided by the DS in our DM 529 530 There are several different scenarios: 531 532 1) Volumetric mesh with volumetric auxiliary data 533 534 Here minHeight=0 since we loop over cells. 535 536 2) Boundary mesh with boundary auxiliary data 537 538 Here minHeight=1 since we loop over faces. This normally happens since we hang cells off of our boundary meshes to facilitate computation. 539 540 3) Volumetric mesh with boundary auxiliary data 541 542 Here minHeight=1 and auxbd=PETSC_TRUE since we loop over faces and use data only supported on those faces. This is common when imposing Dirichlet boundary conditions. 543 544 4) Volumetric input mesh with boundary output mesh 545 546 Here we must get a subspace for the input DS 547 548 The maxHeight is used to support enforcement of constraints in DMForest. 549 550 If localU is given and not equal to localX, we call DMPlexInsertBoundaryValues() to complete it. 551 552 If we are using an input field (DM_BC_ESSENTIAL_FIELD or DM_BC_NATURAL_FIELD), we need to evaluate it at all the quadrature points of the dual basis functionals. 553 - We use effectiveHeight to mean the height above our incoming DS. For example, if the DS is for a submesh then the effective height is zero, whereas if the DS 554 is for the volumetric mesh, but we are iterating over a surface, then the effective height is nonzero. When the effective height is nonzero, we need to extract 555 dual spaces for the boundary from our input spaces. 556 - After extracting all quadrature points, we tabulate the input fields and auxiliary fields on them. 557 558 We check that the #dof(closure(p)) == #dual basis functionals(p) for a representative p in the iteration 559 560 If we have a label, we iterate over those points. This will probably break the maxHeight functionality since we do not check the height of those points. 561 */ 562 static PetscErrorCode DMProjectLocal_Generic_Plex(DM dm, PetscReal time, Vec localU, 563 PetscInt Ncc, const PetscInt comps[], DMLabel label, PetscInt numIds, const PetscInt ids[], 564 DMBoundaryConditionType type, void (**funcs)(void), void **ctxs, 565 InsertMode mode, Vec localX) 566 { 567 DM plex, dmIn, plexIn, dmAux = NULL, plexAux = NULL, tdm; 568 DMEnclosureType encIn, encAux; 569 PetscDS ds = NULL, dsIn = NULL, dsAux = NULL; 570 Vec localA = NULL, tv; 571 IS fieldIS; 572 PetscSection section; 573 PetscDualSpace *sp, *cellsp, *spIn, *cellspIn; 574 PetscTabulation *T = NULL, *TAux = NULL; 575 PetscInt *Nc; 576 PetscInt dim, dimEmbed, depth, htInc = 0, htIncIn = 0, htIncAux = 0, minHeight, maxHeight, h, regionNum, Nf, NfIn, NfAux = 0, NfTot, f; 577 PetscBool *isFE, hasFE = PETSC_FALSE, hasFV = PETSC_FALSE, isCohesive = PETSC_FALSE, transform; 578 DMField coordField; 579 DMLabel depthLabel; 580 PetscQuadrature allPoints = NULL; 581 582 PetscFunctionBegin; 583 if (localU) PetscCall(VecGetDM(localU, &dmIn)); 584 else {dmIn = dm;} 585 PetscCall(DMGetAuxiliaryVec(dm, label, numIds ? ids[0] : 0, 0, &localA)); 586 if (localA) PetscCall(VecGetDM(localA, &dmAux)); else {dmAux = NULL;} 587 PetscCall(DMConvert(dm, DMPLEX, &plex)); 588 PetscCall(DMConvert(dmIn, DMPLEX, &plexIn)); 589 PetscCall(DMGetEnclosureRelation(dmIn, dm, &encIn)); 590 PetscCall(DMGetEnclosureRelation(dmAux, dm, &encAux)); 591 PetscCall(DMGetDimension(dm, &dim)); 592 PetscCall(DMPlexGetVTKCellHeight(plex, &minHeight)); 593 PetscCall(DMGetBasisTransformDM_Internal(dm, &tdm)); 594 PetscCall(DMGetBasisTransformVec_Internal(dm, &tv)); 595 PetscCall(DMHasBasisTransform(dm, &transform)); 596 /* Auxiliary information can only be used with interpolation of field functions */ 597 if (dmAux) { 598 PetscCall(DMConvert(dmAux, DMPLEX, &plexAux)); 599 if (type == DM_BC_ESSENTIAL_FIELD || type == DM_BC_ESSENTIAL_BD_FIELD || type == DM_BC_NATURAL_FIELD) { 600 PetscCheck(localA,PETSC_COMM_SELF, PETSC_ERR_USER, "Missing localA vector"); 601 } 602 } 603 /* Determine height for iteration of all meshes */ 604 { 605 DMPolytopeType ct, ctIn, ctAux; 606 PetscInt minHeightIn, minHeightAux, lStart, pStart, pEnd, p, pStartIn, pStartAux, pEndAux; 607 PetscInt dim = -1, dimIn = -1, dimAux = -1; 608 609 PetscCall(DMPlexGetSimplexOrBoxCells(plex, minHeight, &pStart, &pEnd)); 610 if (pEnd > pStart) { 611 PetscCall(DMGetFirstLabeledPoint(dm, dm, label, numIds, ids, minHeight, &lStart, NULL)); 612 p = lStart < 0 ? pStart : lStart; 613 PetscCall(DMPlexGetCellType(plex, p, &ct)); 614 dim = DMPolytopeTypeGetDim(ct); 615 PetscCall(DMPlexGetVTKCellHeight(plexIn, &minHeightIn)); 616 PetscCall(DMPlexGetSimplexOrBoxCells(plexIn, minHeightIn, &pStartIn, NULL)); 617 PetscCall(DMPlexGetCellType(plexIn, pStartIn, &ctIn)); 618 dimIn = DMPolytopeTypeGetDim(ctIn); 619 if (dmAux) { 620 PetscCall(DMPlexGetVTKCellHeight(plexAux, &minHeightAux)); 621 PetscCall(DMPlexGetSimplexOrBoxCells(plexAux, minHeightAux, &pStartAux, &pEndAux)); 622 if (pStartAux < pEndAux) { 623 PetscCall(DMPlexGetCellType(plexAux, pStartAux, &ctAux)); 624 dimAux = DMPolytopeTypeGetDim(ctAux); 625 } 626 } else dimAux = dim; 627 } 628 if (dim < 0) { 629 DMLabel spmap = NULL, spmapIn = NULL, spmapAux = NULL; 630 631 /* Fall back to determination based on being a submesh */ 632 PetscCall(DMPlexGetSubpointMap(plex, &spmap)); 633 PetscCall(DMPlexGetSubpointMap(plexIn, &spmapIn)); 634 if (plexAux) PetscCall(DMPlexGetSubpointMap(plexAux, &spmapAux)); 635 dim = spmap ? 1 : 0; 636 dimIn = spmapIn ? 1 : 0; 637 dimAux = spmapAux ? 1 : 0; 638 } 639 { 640 PetscInt dimProj = PetscMin(PetscMin(dim, dimIn), (dimAux < 0 ? PETSC_MAX_INT : dimAux)); 641 PetscInt dimAuxEff = dimAux < 0 ? dimProj : dimAux; 642 643 PetscCheck(PetscAbsInt(dimProj - dim) <= 1 && PetscAbsInt(dimProj - dimIn) <= 1 && PetscAbsInt(dimProj - dimAuxEff) <= 1,PETSC_COMM_SELF, PETSC_ERR_SUP, "Do not currently support differences of more than 1 in dimension"); 644 if (dimProj < dim) minHeight = 1; 645 htInc = dim - dimProj; 646 htIncIn = dimIn - dimProj; 647 htIncAux = dimAuxEff - dimProj; 648 } 649 } 650 PetscCall(DMPlexGetDepth(plex, &depth)); 651 PetscCall(DMPlexGetDepthLabel(plex, &depthLabel)); 652 PetscCall(DMPlexGetMaxProjectionHeight(plex, &maxHeight)); 653 maxHeight = PetscMax(maxHeight, minHeight); 654 PetscCheck(maxHeight >= 0 && maxHeight <= dim,PETSC_COMM_SELF, PETSC_ERR_ARG_OUTOFRANGE, "Maximum projection height %" PetscInt_FMT " not in [0, %" PetscInt_FMT ")", maxHeight, dim); 655 PetscCall(DMGetFirstLabeledPoint(dm, dm, label, numIds, ids, 0, NULL, &ds)); 656 if (!ds) PetscCall(DMGetDS(dm, &ds)); 657 PetscCall(DMGetFirstLabeledPoint(dmIn, dm, label, numIds, ids, 0, NULL, &dsIn)); 658 if (!dsIn) PetscCall(DMGetDS(dmIn, &dsIn)); 659 PetscCall(PetscDSGetNumFields(ds, &Nf)); 660 PetscCall(PetscDSGetNumFields(dsIn, &NfIn)); 661 PetscCall(DMGetNumFields(dm, &NfTot)); 662 PetscCall(DMFindRegionNum(dm, ds, ®ionNum)); 663 PetscCall(DMGetRegionNumDS(dm, regionNum, NULL, &fieldIS, NULL)); 664 PetscCall(PetscDSIsCohesive(ds, &isCohesive)); 665 PetscCall(DMGetCoordinateDim(dm, &dimEmbed)); 666 PetscCall(DMGetLocalSection(dm, §ion)); 667 if (dmAux) { 668 PetscCall(DMGetDS(dmAux, &dsAux)); 669 PetscCall(PetscDSGetNumFields(dsAux, &NfAux)); 670 } 671 PetscCall(PetscDSGetComponents(ds, &Nc)); 672 PetscCall(PetscMalloc3(Nf, &isFE, Nf, &sp, NfIn, &spIn)); 673 if (maxHeight > 0) PetscCall(PetscMalloc2(Nf, &cellsp, NfIn, &cellspIn)); 674 else {cellsp = sp; cellspIn = spIn;} 675 if (localU && localU != localX) PetscCall(DMPlexInsertBoundaryValues(plex, PETSC_TRUE, localU, time, NULL, NULL, NULL)); 676 /* Get cell dual spaces */ 677 for (f = 0; f < Nf; ++f) { 678 PetscDiscType disctype; 679 680 PetscCall(PetscDSGetDiscType_Internal(ds, f, &disctype)); 681 if (disctype == PETSC_DISC_FE) { 682 PetscFE fe; 683 684 isFE[f] = PETSC_TRUE; 685 hasFE = PETSC_TRUE; 686 PetscCall(PetscDSGetDiscretization(ds, f, (PetscObject *) &fe)); 687 PetscCall(PetscFEGetDualSpace(fe, &cellsp[f])); 688 } else if (disctype == PETSC_DISC_FV) { 689 PetscFV fv; 690 691 isFE[f] = PETSC_FALSE; 692 hasFV = PETSC_TRUE; 693 PetscCall(PetscDSGetDiscretization(ds, f, (PetscObject *) &fv)); 694 PetscCall(PetscFVGetDualSpace(fv, &cellsp[f])); 695 } else { 696 isFE[f] = PETSC_FALSE; 697 cellsp[f] = NULL; 698 } 699 } 700 for (f = 0; f < NfIn; ++f) { 701 PetscDiscType disctype; 702 703 PetscCall(PetscDSGetDiscType_Internal(dsIn, f, &disctype)); 704 if (disctype == PETSC_DISC_FE) { 705 PetscFE fe; 706 707 PetscCall(PetscDSGetDiscretization(dsIn, f, (PetscObject *) &fe)); 708 PetscCall(PetscFEGetDualSpace(fe, &cellspIn[f])); 709 } else if (disctype == PETSC_DISC_FV) { 710 PetscFV fv; 711 712 PetscCall(PetscDSGetDiscretization(dsIn, f, (PetscObject *) &fv)); 713 PetscCall(PetscFVGetDualSpace(fv, &cellspIn[f])); 714 } else { 715 cellspIn[f] = NULL; 716 } 717 } 718 PetscCall(DMGetCoordinateField(dm,&coordField)); 719 for (f = 0; f < Nf; ++f) { 720 if (!htInc) {sp[f] = cellsp[f];} 721 else PetscCall(PetscDualSpaceGetHeightSubspace(cellsp[f], htInc, &sp[f])); 722 } 723 if (type == DM_BC_ESSENTIAL_FIELD || type == DM_BC_ESSENTIAL_BD_FIELD || type == DM_BC_NATURAL_FIELD) { 724 PetscFE fem, subfem; 725 PetscDiscType disctype; 726 const PetscReal *points; 727 PetscInt numPoints; 728 729 PetscCheck(maxHeight <= minHeight,PetscObjectComm((PetscObject) dm), PETSC_ERR_SUP, "Field projection not supported for face interpolation"); 730 PetscCall(PetscDualSpaceGetAllPointsUnion(Nf, sp, dim-htInc, funcs, &allPoints)); 731 PetscCall(PetscQuadratureGetData(allPoints, NULL, NULL, &numPoints, &points, NULL)); 732 PetscCall(PetscMalloc2(NfIn, &T, NfAux, &TAux)); 733 for (f = 0; f < NfIn; ++f) { 734 if (!htIncIn) {spIn[f] = cellspIn[f];} 735 else PetscCall(PetscDualSpaceGetHeightSubspace(cellspIn[f], htIncIn, &spIn[f])); 736 737 PetscCall(PetscDSGetDiscType_Internal(dsIn, f, &disctype)); 738 if (disctype != PETSC_DISC_FE) continue; 739 PetscCall(PetscDSGetDiscretization(dsIn, f, (PetscObject *) &fem)); 740 if (!htIncIn) {subfem = fem;} 741 else PetscCall(PetscFEGetHeightSubspace(fem, htIncIn, &subfem)); 742 PetscCall(PetscFECreateTabulation(subfem, 1, numPoints, points, 1, &T[f])); 743 } 744 for (f = 0; f < NfAux; ++f) { 745 PetscCall(PetscDSGetDiscType_Internal(dsAux, f, &disctype)); 746 if (disctype != PETSC_DISC_FE) continue; 747 PetscCall(PetscDSGetDiscretization(dsAux, f, (PetscObject *) &fem)); 748 if (!htIncAux) {subfem = fem;} 749 else PetscCall(PetscFEGetHeightSubspace(fem, htIncAux, &subfem)); 750 PetscCall(PetscFECreateTabulation(subfem, 1, numPoints, points, 1, &TAux[f])); 751 } 752 } 753 /* Note: We make no attempt to optimize for height. Higher height things just overwrite the lower height results. */ 754 for (h = minHeight; h <= maxHeight; h++) { 755 PetscInt hEff = h - minHeight + htInc; 756 PetscInt hEffIn = h - minHeight + htIncIn; 757 PetscInt hEffAux = h - minHeight + htIncAux; 758 PetscDS dsEff = ds; 759 PetscDS dsEffIn = dsIn; 760 PetscDS dsEffAux = dsAux; 761 PetscScalar *values; 762 PetscBool *fieldActive; 763 PetscInt maxDegree; 764 PetscInt pStart, pEnd, p, lStart, spDim, totDim, numValues; 765 IS heightIS; 766 767 if (h > minHeight) { 768 for (f = 0; f < Nf; ++f) PetscCall(PetscDualSpaceGetHeightSubspace(cellsp[f], hEff, &sp[f])); 769 } 770 PetscCall(DMPlexGetSimplexOrBoxCells(plex, h, &pStart, &pEnd)); 771 PetscCall(DMGetFirstLabeledPoint(dm, dm, label, numIds, ids, h, &lStart, NULL)); 772 PetscCall(DMLabelGetStratumIS(depthLabel, depth - h, &heightIS)); 773 if (pEnd <= pStart) { 774 PetscCall(ISDestroy(&heightIS)); 775 continue; 776 } 777 /* Compute totDim, the number of dofs in the closure of a point at this height */ 778 totDim = 0; 779 for (f = 0; f < Nf; ++f) { 780 PetscBool cohesive; 781 782 if (!sp[f]) continue; 783 PetscCall(PetscDSGetCohesive(ds, f, &cohesive)); 784 PetscCall(PetscDualSpaceGetDimension(sp[f], &spDim)); 785 totDim += spDim; 786 if (isCohesive && !cohesive) totDim += spDim; 787 } 788 p = lStart < 0 ? pStart : lStart; 789 PetscCall(DMPlexVecGetClosure(plex, section, localX, p, &numValues, NULL)); 790 PetscCheck(numValues == totDim,PETSC_COMM_SELF, PETSC_ERR_ARG_SIZ, "The output section point (%" PetscInt_FMT ") closure size %" PetscInt_FMT " != dual space dimension %" PetscInt_FMT " at height %" PetscInt_FMT " in [%" PetscInt_FMT ", %" PetscInt_FMT "]", p, numValues, totDim, h, minHeight, maxHeight); 791 if (!totDim) { 792 PetscCall(ISDestroy(&heightIS)); 793 continue; 794 } 795 if (htInc) PetscCall(PetscDSGetHeightSubspace(ds, hEff, &dsEff)); 796 /* Compute totDimIn, the number of dofs in the closure of a point at this height */ 797 if (localU) { 798 PetscInt totDimIn, pIn, numValuesIn; 799 800 totDimIn = 0; 801 for (f = 0; f < NfIn; ++f) { 802 PetscBool cohesive; 803 804 if (!spIn[f]) continue; 805 PetscCall(PetscDSGetCohesive(dsIn, f, &cohesive)); 806 PetscCall(PetscDualSpaceGetDimension(spIn[f], &spDim)); 807 totDimIn += spDim; 808 if (isCohesive && !cohesive) totDimIn += spDim; 809 } 810 PetscCall(DMGetEnclosurePoint(dmIn, dm, encIn, lStart < 0 ? pStart : lStart, &pIn)); 811 PetscCall(DMPlexVecGetClosure(plexIn, NULL, localU, pIn, &numValuesIn, NULL)); 812 PetscCheck(numValuesIn == totDimIn,PETSC_COMM_SELF, PETSC_ERR_ARG_SIZ, "The input section point (%" PetscInt_FMT ") closure size %" PetscInt_FMT " != dual space dimension %" PetscInt_FMT " at height %" PetscInt_FMT, pIn, numValuesIn, totDimIn, htIncIn); 813 if (htIncIn) PetscCall(PetscDSGetHeightSubspace(dsIn, hEffIn, &dsEffIn)); 814 } 815 if (htIncAux) PetscCall(PetscDSGetHeightSubspace(dsAux, hEffAux, &dsEffAux)); 816 /* Loop over points at this height */ 817 PetscCall(DMGetWorkArray(dm, numValues, MPIU_SCALAR, &values)); 818 PetscCall(DMGetWorkArray(dm, NfTot, MPI_INT, &fieldActive)); 819 { 820 const PetscInt *fields; 821 822 PetscCall(ISGetIndices(fieldIS, &fields)); 823 for (f = 0; f < NfTot; ++f) {fieldActive[f] = PETSC_FALSE;} 824 for (f = 0; f < Nf; ++f) {fieldActive[fields[f]] = (funcs[f] && sp[f]) ? PETSC_TRUE : PETSC_FALSE;} 825 PetscCall(ISRestoreIndices(fieldIS, &fields)); 826 } 827 if (label) { 828 PetscInt i; 829 830 for (i = 0; i < numIds; ++i) { 831 IS pointIS, isectIS; 832 const PetscInt *points; 833 PetscInt n; 834 PetscFEGeom *fegeom = NULL, *chunkgeom = NULL; 835 PetscQuadrature quad = NULL; 836 837 PetscCall(DMLabelGetStratumIS(label, ids[i], &pointIS)); 838 if (!pointIS) continue; /* No points with that id on this process */ 839 PetscCall(ISIntersect(pointIS,heightIS,&isectIS)); 840 PetscCall(ISDestroy(&pointIS)); 841 if (!isectIS) continue; 842 PetscCall(ISGetLocalSize(isectIS, &n)); 843 PetscCall(ISGetIndices(isectIS, &points)); 844 PetscCall(DMFieldGetDegree(coordField,isectIS,NULL,&maxDegree)); 845 if (maxDegree <= 1) { 846 PetscCall(DMFieldCreateDefaultQuadrature(coordField,isectIS,&quad)); 847 } 848 if (!quad) { 849 if (!h && allPoints) { 850 quad = allPoints; 851 allPoints = NULL; 852 } else { 853 PetscCall(PetscDualSpaceGetAllPointsUnion(Nf,sp,isCohesive ? dim-htInc-1 : dim-htInc,funcs,&quad)); 854 } 855 } 856 PetscCall(DMFieldCreateFEGeom(coordField, isectIS, quad, (htInc && h == minHeight) ? PETSC_TRUE : PETSC_FALSE, &fegeom)); 857 for (p = 0; p < n; ++p) { 858 const PetscInt point = points[p]; 859 860 PetscCall(PetscArrayzero(values, numValues)); 861 PetscCall(PetscFEGeomGetChunk(fegeom,p,p+1,&chunkgeom)); 862 PetscCall(DMPlexSetActivePoint(dm, point)); 863 PetscCall(DMProjectPoint_Private(dm, dsEff, plexIn, encIn, dsEffIn, plexAux, encAux, dsEffAux, chunkgeom, htInc, time, localU, localA, hasFE, hasFV, isFE, sp, point, T, TAux, type, funcs, ctxs, fieldActive, values)); 864 if (transform) PetscCall(DMPlexBasisTransformPoint_Internal(plex, tdm, tv, point, fieldActive, PETSC_FALSE, values)); 865 PetscCall(DMPlexVecSetFieldClosure_Internal(plex, section, localX, fieldActive, point, Ncc, comps, label, ids[i], values, mode)); 866 } 867 PetscCall(PetscFEGeomRestoreChunk(fegeom,p,p+1,&chunkgeom)); 868 PetscCall(PetscFEGeomDestroy(&fegeom)); 869 PetscCall(PetscQuadratureDestroy(&quad)); 870 PetscCall(ISRestoreIndices(isectIS, &points)); 871 PetscCall(ISDestroy(&isectIS)); 872 } 873 } else { 874 PetscFEGeom *fegeom = NULL, *chunkgeom = NULL; 875 PetscQuadrature quad = NULL; 876 IS pointIS; 877 878 PetscCall(ISCreateStride(PETSC_COMM_SELF,pEnd-pStart,pStart,1,&pointIS)); 879 PetscCall(DMFieldGetDegree(coordField,pointIS,NULL,&maxDegree)); 880 if (maxDegree <= 1) { 881 PetscCall(DMFieldCreateDefaultQuadrature(coordField,pointIS,&quad)); 882 } 883 if (!quad) { 884 if (!h && allPoints) { 885 quad = allPoints; 886 allPoints = NULL; 887 } else { 888 PetscCall(PetscDualSpaceGetAllPointsUnion(Nf, sp, dim-htInc, funcs, &quad)); 889 } 890 } 891 PetscCall(DMFieldCreateFEGeom(coordField, pointIS, quad, (htInc && h == minHeight) ? PETSC_TRUE : PETSC_FALSE, &fegeom)); 892 for (p = pStart; p < pEnd; ++p) { 893 PetscCall(PetscArrayzero(values, numValues)); 894 PetscCall(PetscFEGeomGetChunk(fegeom,p-pStart,p-pStart+1,&chunkgeom)); 895 PetscCall(DMPlexSetActivePoint(dm, p)); 896 PetscCall(DMProjectPoint_Private(dm, dsEff, plexIn, encIn, dsEffIn, plexAux, encAux, dsEffAux, chunkgeom, htInc, time, localU, localA, hasFE, hasFV, isFE, sp, p, T, TAux, type, funcs, ctxs, fieldActive, values)); 897 if (transform) PetscCall(DMPlexBasisTransformPoint_Internal(plex, tdm, tv, p, fieldActive, PETSC_FALSE, values)); 898 PetscCall(DMPlexVecSetFieldClosure_Internal(plex, section, localX, fieldActive, p, Ncc, comps, NULL, -1, values, mode)); 899 } 900 PetscCall(PetscFEGeomRestoreChunk(fegeom,p-pStart,pStart-p+1,&chunkgeom)); 901 PetscCall(PetscFEGeomDestroy(&fegeom)); 902 PetscCall(PetscQuadratureDestroy(&quad)); 903 PetscCall(ISDestroy(&pointIS)); 904 } 905 PetscCall(ISDestroy(&heightIS)); 906 PetscCall(DMRestoreWorkArray(dm, numValues, MPIU_SCALAR, &values)); 907 PetscCall(DMRestoreWorkArray(dm, Nf, MPI_INT, &fieldActive)); 908 } 909 /* Cleanup */ 910 if (type == DM_BC_ESSENTIAL_FIELD || type == DM_BC_ESSENTIAL_BD_FIELD || type == DM_BC_NATURAL_FIELD) { 911 for (f = 0; f < NfIn; ++f) PetscCall(PetscTabulationDestroy(&T[f])); 912 for (f = 0; f < NfAux; ++f) PetscCall(PetscTabulationDestroy(&TAux[f])); 913 PetscCall(PetscFree2(T, TAux)); 914 } 915 PetscCall(PetscQuadratureDestroy(&allPoints)); 916 PetscCall(PetscFree3(isFE, sp, spIn)); 917 if (maxHeight > 0) PetscCall(PetscFree2(cellsp, cellspIn)); 918 PetscCall(DMDestroy(&plex)); 919 PetscCall(DMDestroy(&plexIn)); 920 if (dmAux) PetscCall(DMDestroy(&plexAux)); 921 PetscFunctionReturn(0); 922 } 923 924 PetscErrorCode DMProjectFunctionLocal_Plex(DM dm, PetscReal time, PetscErrorCode (**funcs)(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar *, void *), void **ctxs, InsertMode mode, Vec localX) 925 { 926 PetscFunctionBegin; 927 PetscCall(DMProjectLocal_Generic_Plex(dm, time, NULL, 0, NULL, NULL, 0, NULL, DM_BC_ESSENTIAL, (void (**)(void)) funcs, ctxs, mode, localX)); 928 PetscFunctionReturn(0); 929 } 930 931 PetscErrorCode DMProjectFunctionLabelLocal_Plex(DM dm, PetscReal time, DMLabel label, PetscInt numIds, const PetscInt ids[], PetscInt Ncc, const PetscInt comps[], PetscErrorCode (**funcs)(PetscInt, PetscReal, const PetscReal [], PetscInt, PetscScalar *, void *), void **ctxs, InsertMode mode, Vec localX) 932 { 933 PetscFunctionBegin; 934 PetscCall(DMProjectLocal_Generic_Plex(dm, time, NULL, Ncc, comps, label, numIds, ids, DM_BC_ESSENTIAL, (void (**)(void)) funcs, ctxs, mode, localX)); 935 PetscFunctionReturn(0); 936 } 937 938 PetscErrorCode DMProjectFieldLocal_Plex(DM dm, PetscReal time, Vec localU, 939 void (**funcs)(PetscInt, PetscInt, PetscInt, 940 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 941 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 942 PetscReal, const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[]), 943 InsertMode mode, Vec localX) 944 { 945 PetscFunctionBegin; 946 PetscCall(DMProjectLocal_Generic_Plex(dm, time, localU, 0, NULL, NULL, 0, NULL, DM_BC_ESSENTIAL_FIELD, (void (**)(void)) funcs, NULL, mode, localX)); 947 PetscFunctionReturn(0); 948 } 949 950 PetscErrorCode DMProjectFieldLabelLocal_Plex(DM dm, PetscReal time, DMLabel label, PetscInt numIds, const PetscInt ids[], PetscInt Ncc, const PetscInt comps[], Vec localU, 951 void (**funcs)(PetscInt, PetscInt, PetscInt, 952 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 953 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 954 PetscReal, const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[]), 955 InsertMode mode, Vec localX) 956 { 957 PetscFunctionBegin; 958 PetscCall(DMProjectLocal_Generic_Plex(dm, time, localU, Ncc, comps, label, numIds, ids, DM_BC_ESSENTIAL_FIELD, (void (**)(void)) funcs, NULL, mode, localX)); 959 PetscFunctionReturn(0); 960 } 961 962 PetscErrorCode DMProjectBdFieldLabelLocal_Plex(DM dm, PetscReal time, DMLabel label, PetscInt numIds, const PetscInt ids[], PetscInt Ncc, const PetscInt comps[], Vec localU, 963 void (**funcs)(PetscInt, PetscInt, PetscInt, 964 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 965 const PetscInt[], const PetscInt[], const PetscScalar[], const PetscScalar[], const PetscScalar[], 966 PetscReal, const PetscReal[], const PetscReal[], PetscInt, const PetscScalar[], PetscScalar[]), 967 InsertMode mode, Vec localX) 968 { 969 PetscFunctionBegin; 970 PetscCall(DMProjectLocal_Generic_Plex(dm, time, localU, Ncc, comps, label, numIds, ids, DM_BC_ESSENTIAL_BD_FIELD, (void (**)(void)) funcs, NULL, mode, localX)); 971 PetscFunctionReturn(0); 972 } 973