xref: /petsc/src/dm/impls/plex/plexsfc.c (revision 9ae3492b1588f8aa23f0d27a51413f308172c30d)
13e72e933SJed Brown #include <petsc/private/dmpleximpl.h> /*I   "petscdmplex.h"   I*/
23e72e933SJed Brown #include <petscsf.h>
33e72e933SJed Brown #include <petsc/private/hashset.h>
43e72e933SJed Brown 
53e72e933SJed Brown typedef uint64_t ZCode;
63e72e933SJed Brown 
73e72e933SJed Brown PETSC_HASH_SET(ZSet, ZCode, PetscHash_UInt64, PetscHashEqual)
83e72e933SJed Brown 
93e72e933SJed Brown typedef struct {
103e72e933SJed Brown   PetscInt i, j, k;
113e72e933SJed Brown } Ijk;
123e72e933SJed Brown 
133e72e933SJed Brown typedef struct {
143e72e933SJed Brown   Ijk         eextent;
153e72e933SJed Brown   Ijk         vextent;
163e72e933SJed Brown   PetscMPIInt comm_size;
173e72e933SJed Brown   ZCode      *zstarts;
183e72e933SJed Brown } ZLayout;
193e72e933SJed Brown 
203e72e933SJed Brown static unsigned ZCodeSplit1(ZCode z)
213e72e933SJed Brown {
223e72e933SJed Brown   z = ((z & 01001001001001001) | ((z >> 2) & 02002002002002002) | ((z >> 4) & 04004004004004004));
233e72e933SJed Brown   z = (z | (z >> 6) | (z >> 12)) & 0000000777000000777;
243e72e933SJed Brown   z = (z | (z >> 18)) & 0777777;
253e72e933SJed Brown   return (unsigned)z;
263e72e933SJed Brown }
273e72e933SJed Brown 
283e72e933SJed Brown static ZCode ZEncode1(unsigned t)
293e72e933SJed Brown {
303e72e933SJed Brown   ZCode z = t;
313e72e933SJed Brown   z       = (z | (z << 18)) & 0777000000777;
323e72e933SJed Brown   z       = (z | (z << 6) | (z << 12)) & 07007007007007007;
333e72e933SJed Brown   z       = (z | (z << 2) | (z << 4)) & 0111111111111111111;
343e72e933SJed Brown   return z;
353e72e933SJed Brown }
363e72e933SJed Brown 
373e72e933SJed Brown static Ijk ZCodeSplit(ZCode z)
383e72e933SJed Brown {
393e72e933SJed Brown   Ijk c;
403e72e933SJed Brown   c.i = ZCodeSplit1(z >> 2);
413e72e933SJed Brown   c.j = ZCodeSplit1(z >> 1);
423e72e933SJed Brown   c.k = ZCodeSplit1(z >> 0);
433e72e933SJed Brown   return c;
443e72e933SJed Brown }
453e72e933SJed Brown 
463e72e933SJed Brown static ZCode ZEncode(Ijk c)
473e72e933SJed Brown {
483e72e933SJed Brown   ZCode z = (ZEncode1(c.i) << 2) | (ZEncode1(c.j) << 1) | ZEncode1(c.k);
493e72e933SJed Brown   return z;
503e72e933SJed Brown }
513e72e933SJed Brown 
523e72e933SJed Brown static PetscBool IjkActive(Ijk extent, Ijk l)
533e72e933SJed Brown {
543e72e933SJed Brown   if (l.i < extent.i && l.j < extent.j && l.k < extent.k) return PETSC_TRUE;
553e72e933SJed Brown   return PETSC_FALSE;
563e72e933SJed Brown }
573e72e933SJed Brown 
586547ddbdSJed Brown // If z is not the base of an octet (last 3 bits 0), return 0.
596547ddbdSJed Brown //
606547ddbdSJed Brown // If z is the base of an octet, we recursively grow to the biggest structured octet. This is typically useful when a z
616547ddbdSJed Brown // is outside the domain and we wish to skip a (possibly recursively large) octet to find our next interesting point.
626547ddbdSJed Brown static ZCode ZStepOct(ZCode z)
636547ddbdSJed Brown {
646547ddbdSJed Brown   if (PetscUnlikely(z == 0)) return 0; // Infinite loop below if z == 0
656547ddbdSJed Brown   ZCode step = 07;
666547ddbdSJed Brown   for (; (z & step) == 0; step = (step << 3) | 07) { }
676547ddbdSJed Brown   return step >> 3;
686547ddbdSJed Brown }
696547ddbdSJed Brown 
703e72e933SJed Brown // Since element/vertex box extents are typically not equal powers of 2, Z codes that lie within the domain are not contiguous.
715f06a3ddSJed Brown static PetscErrorCode ZLayoutCreate(PetscMPIInt size, const PetscInt eextent[3], const PetscInt vextent[3], ZLayout *layout)
723e72e933SJed Brown {
73c77877e3SJed Brown   PetscFunctionBegin;
745f06a3ddSJed Brown   layout->eextent.i = eextent[0];
755f06a3ddSJed Brown   layout->eextent.j = eextent[1];
765f06a3ddSJed Brown   layout->eextent.k = eextent[2];
775f06a3ddSJed Brown   layout->vextent.i = vextent[0];
785f06a3ddSJed Brown   layout->vextent.j = vextent[1];
795f06a3ddSJed Brown   layout->vextent.k = vextent[2];
805f06a3ddSJed Brown   layout->comm_size = size;
815f06a3ddSJed Brown   layout->zstarts   = NULL;
825f06a3ddSJed Brown   PetscCall(PetscMalloc1(size + 1, &layout->zstarts));
833e72e933SJed Brown 
843e72e933SJed Brown   PetscInt total_elems = eextent[0] * eextent[1] * eextent[2];
853e72e933SJed Brown   ZCode    z           = 0;
865f06a3ddSJed Brown   layout->zstarts[0]   = 0;
876547ddbdSJed Brown   // This loop traverses all vertices in the global domain, so is worth making fast. We use ZStepBound
883e72e933SJed Brown   for (PetscMPIInt r = 0; r < size; r++) {
893e72e933SJed Brown     PetscInt elems_needed = (total_elems / size) + (total_elems % size > r), count;
903e72e933SJed Brown     for (count = 0; count < elems_needed; z++) {
916547ddbdSJed Brown       ZCode skip = ZStepOct(z); // optimistically attempt a longer step
926547ddbdSJed Brown       for (ZCode s = skip;; s >>= 3) {
936547ddbdSJed Brown         Ijk trial = ZCodeSplit(z + s);
946547ddbdSJed Brown         if (IjkActive(layout->eextent, trial)) {
956547ddbdSJed Brown           while (count + s + 1 > (ZCode)elems_needed) s >>= 3; // Shrink the octet
966547ddbdSJed Brown           count += s + 1;
976547ddbdSJed Brown           z += s;
986547ddbdSJed Brown           break;
996547ddbdSJed Brown         }
1006547ddbdSJed Brown         if (s == 0) { // the whole skip octet is inactive
1016547ddbdSJed Brown           z += skip;
1026547ddbdSJed Brown           break;
1036547ddbdSJed Brown         }
1046547ddbdSJed Brown       }
1053e72e933SJed Brown     }
1063e72e933SJed Brown     // Pick up any extra vertices in the Z ordering before the next rank's first owned element.
107c77877e3SJed Brown     //
1085f06a3ddSJed Brown     // This leads to poorly balanced vertices when eextent is a power of 2, since all the fringe vertices end up
109c77877e3SJed Brown     // on the last rank. A possible solution is to balance the Z-order vertices independently from the cells, which will
110c77877e3SJed Brown     // result in a lot of element closures being remote. We could finish marking boundary conditions, then do a round of
111c77877e3SJed Brown     // vertex ownership smoothing (which would reorder and redistribute vertices without touching element distribution).
112c77877e3SJed Brown     // Another would be to have an analytic ownership criteria for vertices in the fringe veextent - eextent. This would
113c77877e3SJed Brown     // complicate the job of identifying an owner and its offset.
1145f06a3ddSJed Brown     //
1155f06a3ddSJed Brown     // The current recommended approach is to let `-dm_distribute 1` (default) resolve vertex ownership. This is
1165f06a3ddSJed Brown     // *mandatory* with isoperiodicity (except in special cases) to remove standed vertices from local spaces. Here's
1175f06a3ddSJed Brown     // the issue:
1185f06a3ddSJed Brown     //
1195f06a3ddSJed Brown     // Consider this partition on rank 0 (left) and rank 1.
1205f06a3ddSJed Brown     //
1215f06a3ddSJed Brown     //    4 --------  5 -- 14 --10 -- 21 --11
1225f06a3ddSJed Brown     //                |          |          |
1235f06a3ddSJed Brown     // 7 -- 16 --  8  |          |          |
1245f06a3ddSJed Brown     // |           |  3 -------  7 -------  9
1255f06a3ddSJed Brown     // |           |             |          |
1265f06a3ddSJed Brown     // 4 --------  6 ------ 10   |          |
1275f06a3ddSJed Brown     // |           |         |   6 -- 16 -- 8
1285f06a3ddSJed Brown     // |           |         |
1295f06a3ddSJed Brown     // 3 ---11---  5 --18--  9
1305f06a3ddSJed Brown     //
1315f06a3ddSJed Brown     // The periodic face SF looks like
1325f06a3ddSJed Brown     // [0] Number of roots=21, leaves=1, remote ranks=1
1335f06a3ddSJed Brown     // [0] 16 <- (0,11)
1345f06a3ddSJed Brown     // [1] Number of roots=22, leaves=2, remote ranks=2
1355f06a3ddSJed Brown     // [1] 14 <- (0,18)
1365f06a3ddSJed Brown     // [1] 21 <- (1,16)
1375f06a3ddSJed Brown     //
1385f06a3ddSJed Brown     // In handling face (0,16), rank 0 learns that (0,7) and (0,8) map to (0,3) and (0,5) respectively, thus we won't use
1395f06a3ddSJed Brown     // the point SF links to (1,4) and (1,5). Rank 1 learns about the periodic mapping of (1,5) while handling face
1405f06a3ddSJed Brown     // (1,14), but never learns that vertex (1,4) has been mapped to (0,3) by face (0,16).
1415f06a3ddSJed Brown     //
1425f06a3ddSJed Brown     // We can relatively easily inform vertex (1,4) of this mapping, but it stays in rank 1's local space despite not
1435f06a3ddSJed Brown     // being in the closure and thus not being contributed to. This would be mostly harmless except that some viewer
1445f06a3ddSJed Brown     // routines expect all local points to be somehow significant. It is not easy to analytically remove the (1,4)
1455f06a3ddSJed Brown     // vertex because the point SF and isoperiodic face SF would need to be updated to account for removal of the
1465f06a3ddSJed Brown     // stranded vertices.
1475f06a3ddSJed Brown     for (; z <= ZEncode(layout->vextent); z++) {
1483e72e933SJed Brown       Ijk loc = ZCodeSplit(z);
1495f06a3ddSJed Brown       if (IjkActive(layout->eextent, loc)) break;
1506547ddbdSJed Brown       z += ZStepOct(z);
1513e72e933SJed Brown     }
1525f06a3ddSJed Brown     layout->zstarts[r + 1] = z;
1533e72e933SJed Brown   }
1546547ddbdSJed Brown   layout->zstarts[size] = ZEncode(layout->vextent);
1553ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
1563e72e933SJed Brown }
1573e72e933SJed Brown 
1584e2e9504SJed Brown static PetscInt ZLayoutElementsOnRank(const ZLayout *layout, PetscMPIInt rank)
1594e2e9504SJed Brown {
1604e2e9504SJed Brown   PetscInt remote_elem = 0;
1614e2e9504SJed Brown   for (ZCode rz = layout->zstarts[rank]; rz < layout->zstarts[rank + 1]; rz++) {
1624e2e9504SJed Brown     Ijk loc = ZCodeSplit(rz);
1634e2e9504SJed Brown     if (IjkActive(layout->eextent, loc)) remote_elem++;
1646547ddbdSJed Brown     else rz += ZStepOct(rz);
1654e2e9504SJed Brown   }
1664e2e9504SJed Brown   return remote_elem;
1674e2e9504SJed Brown }
1684e2e9504SJed Brown 
16966976f2fSJacob Faibussowitsch static PetscInt ZCodeFind(ZCode key, PetscInt n, const ZCode X[])
1703e72e933SJed Brown {
1713e72e933SJed Brown   PetscInt lo = 0, hi = n;
1723e72e933SJed Brown 
1733e72e933SJed Brown   if (n == 0) return -1;
1743e72e933SJed Brown   while (hi - lo > 1) {
1753e72e933SJed Brown     PetscInt mid = lo + (hi - lo) / 2;
1763e72e933SJed Brown     if (key < X[mid]) hi = mid;
1773e72e933SJed Brown     else lo = mid;
1783e72e933SJed Brown   }
1793e72e933SJed Brown   return key == X[lo] ? lo : -(lo + (key > X[lo]) + 1);
1803e72e933SJed Brown }
1813e72e933SJed Brown 
182*9ae3492bSJames Wright static PetscErrorCode DMPlexCreateBoxMesh_Tensor_SFC_Periodicity_Private(DM dm, const ZLayout *layout, const ZCode *vert_z, PetscSegBuffer per_faces[3], const PetscReal *lower, const PetscReal *upper, const DMBoundaryType *periodicity, PetscSegBuffer donor_face_closure[3], PetscSegBuffer my_donor_faces[3])
1834e2e9504SJed Brown {
1844e2e9504SJed Brown   MPI_Comm    comm;
185*9ae3492bSJames Wright   PetscInt    dim, vStart, vEnd;
1864e2e9504SJed Brown   PetscMPIInt size;
187*9ae3492bSJames Wright   PetscSF     face_sfs[3];
188*9ae3492bSJames Wright   PetscScalar transforms[3][4][4] = {{{0}}};
1894e2e9504SJed Brown 
1904e2e9504SJed Brown   PetscFunctionBegin;
1914e2e9504SJed Brown   PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
1924e2e9504SJed Brown   PetscCallMPI(MPI_Comm_size(comm, &size));
1934e2e9504SJed Brown   PetscCall(DMGetDimension(dm, &dim));
1944e2e9504SJed Brown   const PetscInt csize = PetscPowInt(2, dim - 1);
1954e2e9504SJed Brown   PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
196*9ae3492bSJames Wright 
197*9ae3492bSJames Wright   PetscInt num_directions = 0;
198*9ae3492bSJames Wright   for (PetscInt direction = 0; direction < dim; direction++) {
199*9ae3492bSJames Wright     size_t       num_faces;
200*9ae3492bSJames Wright     PetscInt    *faces;
201*9ae3492bSJames Wright     ZCode       *donor_verts, *donor_minz;
202*9ae3492bSJames Wright     PetscSFNode *leaf;
203*9ae3492bSJames Wright 
204*9ae3492bSJames Wright     if (periodicity[direction] != DM_BOUNDARY_PERIODIC) continue;
205*9ae3492bSJames Wright     PetscCall(PetscSegBufferGetSize(per_faces[direction], &num_faces));
206*9ae3492bSJames Wright     PetscCall(PetscSegBufferExtractInPlace(per_faces[direction], &faces));
207*9ae3492bSJames Wright     PetscCall(PetscSegBufferExtractInPlace(donor_face_closure[direction], &donor_verts));
2084e2e9504SJed Brown     PetscCall(PetscMalloc1(num_faces, &donor_minz));
2094e2e9504SJed Brown     PetscCall(PetscMalloc1(num_faces, &leaf));
2104e2e9504SJed Brown     for (PetscInt i = 0; i < (PetscInt)num_faces; i++) {
2114e2e9504SJed Brown       ZCode minz = donor_verts[i * csize];
2124e2e9504SJed Brown       for (PetscInt j = 1; j < csize; j++) minz = PetscMin(minz, donor_verts[i * csize + j]);
2134e2e9504SJed Brown       donor_minz[i] = minz;
2144e2e9504SJed Brown     }
2154e2e9504SJed Brown     {
2164e2e9504SJed Brown       PetscBool sorted;
2174e2e9504SJed Brown       PetscCall(PetscSortedInt64(num_faces, (const PetscInt64 *)donor_minz, &sorted));
218*9ae3492bSJames Wright       // If a donor vertex were chosen to broker multiple faces, we would have a logic error.
219*9ae3492bSJames Wright       // Checking for sorting is a cheap check that there are no duplicates.
220*9ae3492bSJames Wright       PetscCheck(sorted, PETSC_COMM_SELF, PETSC_ERR_PLIB, "minz not sorted; possible duplicates not checked");
2214e2e9504SJed Brown     }
2224e2e9504SJed Brown     for (PetscInt i = 0; i < (PetscInt)num_faces;) {
2234e2e9504SJed Brown       ZCode    z           = donor_minz[i];
2244e2e9504SJed Brown       PetscInt remote_rank = ZCodeFind(z, size + 1, layout->zstarts), remote_count = 0;
2254e2e9504SJed Brown       if (remote_rank < 0) remote_rank = -(remote_rank + 1) - 1;
2264e2e9504SJed Brown       // Process all the vertices on this rank
2274e2e9504SJed Brown       for (ZCode rz = layout->zstarts[remote_rank]; rz < layout->zstarts[remote_rank + 1]; rz++) {
2284e2e9504SJed Brown         Ijk loc = ZCodeSplit(rz);
2294e2e9504SJed Brown         if (rz == z) {
2304e2e9504SJed Brown           leaf[i].rank  = remote_rank;
2314e2e9504SJed Brown           leaf[i].index = remote_count;
2324e2e9504SJed Brown           i++;
2334e2e9504SJed Brown           if (i == (PetscInt)num_faces) break;
2344e2e9504SJed Brown           z = donor_minz[i];
2354e2e9504SJed Brown         }
2364e2e9504SJed Brown         if (IjkActive(layout->vextent, loc)) remote_count++;
2374e2e9504SJed Brown       }
2384e2e9504SJed Brown     }
2394e2e9504SJed Brown     PetscCall(PetscFree(donor_minz));
240*9ae3492bSJames Wright     PetscCall(PetscSFCreate(PetscObjectComm((PetscObject)dm), &face_sfs[num_directions]));
241*9ae3492bSJames Wright     PetscCall(PetscSFSetGraph(face_sfs[num_directions], vEnd - vStart, num_faces, NULL, PETSC_USE_POINTER, leaf, PETSC_USE_POINTER));
2424e2e9504SJed Brown     const PetscInt *my_donor_degree;
243*9ae3492bSJames Wright     PetscCall(PetscSFComputeDegreeBegin(face_sfs[num_directions], &my_donor_degree));
244*9ae3492bSJames Wright     PetscCall(PetscSFComputeDegreeEnd(face_sfs[num_directions], &my_donor_degree));
2454e2e9504SJed Brown     PetscInt num_multiroots = 0;
2464e2e9504SJed Brown     for (PetscInt i = 0; i < vEnd - vStart; i++) {
2474e2e9504SJed Brown       num_multiroots += my_donor_degree[i];
2484e2e9504SJed Brown       if (my_donor_degree[i] == 0) continue;
2495f06a3ddSJed Brown       PetscAssert(my_donor_degree[i] == 1, PETSC_COMM_SELF, PETSC_ERR_SUP, "Local vertex has multiple faces");
2504e2e9504SJed Brown     }
2514e2e9504SJed Brown     PetscInt *my_donors, *donor_indices, *my_donor_indices;
2524e2e9504SJed Brown     size_t    num_my_donors;
253*9ae3492bSJames Wright     PetscCall(PetscSegBufferGetSize(my_donor_faces[direction], &num_my_donors));
2544e2e9504SJed Brown     PetscCheck((PetscInt)num_my_donors == num_multiroots, PETSC_COMM_SELF, PETSC_ERR_SUP, "Donor request does not match expected donors");
255*9ae3492bSJames Wright     PetscCall(PetscSegBufferExtractInPlace(my_donor_faces[direction], &my_donors));
2564e2e9504SJed Brown     PetscCall(PetscMalloc1(vEnd - vStart, &my_donor_indices));
2574e2e9504SJed Brown     for (PetscInt i = 0; i < (PetscInt)num_my_donors; i++) {
2584e2e9504SJed Brown       PetscInt f = my_donors[i];
2594e2e9504SJed Brown       PetscInt num_points, *points = NULL, minv = PETSC_MAX_INT;
2604e2e9504SJed Brown       PetscCall(DMPlexGetTransitiveClosure(dm, f, PETSC_TRUE, &num_points, &points));
2614e2e9504SJed Brown       for (PetscInt j = 0; j < num_points; j++) {
2624e2e9504SJed Brown         PetscInt p = points[2 * j];
2634e2e9504SJed Brown         if (p < vStart || vEnd <= p) continue;
2644e2e9504SJed Brown         minv = PetscMin(minv, p);
2654e2e9504SJed Brown       }
2664e2e9504SJed Brown       PetscCall(DMPlexRestoreTransitiveClosure(dm, f, PETSC_TRUE, &num_points, &points));
2675f06a3ddSJed Brown       PetscAssert(my_donor_degree[minv - vStart] == 1, PETSC_COMM_SELF, PETSC_ERR_SUP, "Local vertex not requested");
2684e2e9504SJed Brown       my_donor_indices[minv - vStart] = f;
2694e2e9504SJed Brown     }
2704e2e9504SJed Brown     PetscCall(PetscMalloc1(num_faces, &donor_indices));
271*9ae3492bSJames Wright     PetscCall(PetscSFBcastBegin(face_sfs[num_directions], MPIU_INT, my_donor_indices, donor_indices, MPI_REPLACE));
272*9ae3492bSJames Wright     PetscCall(PetscSFBcastEnd(face_sfs[num_directions], MPIU_INT, my_donor_indices, donor_indices, MPI_REPLACE));
2734e2e9504SJed Brown     PetscCall(PetscFree(my_donor_indices));
2744e2e9504SJed Brown     // Modify our leafs so they point to donor faces instead of donor minz. Additionally, give them indices as faces.
2754e2e9504SJed Brown     for (PetscInt i = 0; i < (PetscInt)num_faces; i++) leaf[i].index = donor_indices[i];
2764e2e9504SJed Brown     PetscCall(PetscFree(donor_indices));
2774e2e9504SJed Brown     PetscInt pStart, pEnd;
2784e2e9504SJed Brown     PetscCall(DMPlexGetChart(dm, &pStart, &pEnd));
279*9ae3492bSJames Wright     PetscCall(PetscSFSetGraph(face_sfs[num_directions], pEnd - pStart, num_faces, faces, PETSC_COPY_VALUES, leaf, PETSC_OWN_POINTER));
280*9ae3492bSJames Wright     {
281*9ae3492bSJames Wright       char face_sf_name[PETSC_MAX_PATH_LEN];
282*9ae3492bSJames Wright       PetscCall(PetscSNPrintf(face_sf_name, sizeof face_sf_name, "Z-order Isoperiodic Faces #%" PetscInt_FMT, num_directions));
283*9ae3492bSJames Wright       PetscCall(PetscObjectSetName((PetscObject)face_sfs[num_directions], face_sf_name));
284*9ae3492bSJames Wright     }
2854e2e9504SJed Brown 
286*9ae3492bSJames Wright     transforms[num_directions][0][0]         = 1;
287*9ae3492bSJames Wright     transforms[num_directions][1][1]         = 1;
288*9ae3492bSJames Wright     transforms[num_directions][2][2]         = 1;
289*9ae3492bSJames Wright     transforms[num_directions][3][3]         = 1;
290*9ae3492bSJames Wright     transforms[num_directions][direction][3] = upper[direction] - lower[direction];
291*9ae3492bSJames Wright     num_directions++;
292*9ae3492bSJames Wright   }
2936725e60dSJed Brown 
294*9ae3492bSJames Wright   PetscCall(DMPlexSetIsoperiodicFaceSF(dm, face_sfs[0]));
295*9ae3492bSJames Wright   PetscCall(DMPlexSetIsoperiodicFaceTransform(dm, (PetscScalar *)transforms));
296*9ae3492bSJames Wright 
297*9ae3492bSJames Wright   for (PetscInt i = 0; i < num_directions; i++) PetscCall(PetscSFDestroy(&face_sfs[i]));
2983ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
2994e2e9504SJed Brown }
3004e2e9504SJed Brown 
3015f06a3ddSJed Brown // This is a DMGlobalToLocalHook that applies the affine offsets. When extended for rotated periodicity, it'll need to
3025f06a3ddSJed Brown // apply a rotatonal transform and similar operations will be needed for fields (e.g., to rotate a velocity vector).
3035f06a3ddSJed Brown // We use this crude approach here so we don't have to write new GPU kernels yet.
3046725e60dSJed Brown static PetscErrorCode DMCoordAddPeriodicOffsets_Private(DM dm, Vec g, InsertMode mode, Vec l, void *ctx)
3056725e60dSJed Brown {
3066725e60dSJed Brown   PetscFunctionBegin;
3076725e60dSJed Brown   PetscCall(VecScatterBegin(dm->periodic.affine_to_local, dm->periodic.affine, l, ADD_VALUES, SCATTER_FORWARD));
3086725e60dSJed Brown   PetscCall(VecScatterEnd(dm->periodic.affine_to_local, dm->periodic.affine, l, ADD_VALUES, SCATTER_FORWARD));
3093ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
3106725e60dSJed Brown }
3116725e60dSJed Brown 
3125f06a3ddSJed Brown // Start with an SF for a positive depth (e.g., faces) and create a new SF for matched closure. The caller must ensure
3135f06a3ddSJed Brown // that both the donor (root) face and the periodic (leaf) face have consistent orientation, meaning that their closures
3145f06a3ddSJed Brown // are isomorphic. It may be useful/necessary for this restriction to be loosened.
3156725e60dSJed Brown //
3165f06a3ddSJed Brown // Output Arguments:
3175f06a3ddSJed Brown //
3185f06a3ddSJed Brown // + closure_sf - augmented point SF (see `DMGetPointSF()`) that includes the faces and all points in its closure. This
3195f06a3ddSJed Brown //   can be used to create a global section and section SF.
3205f06a3ddSJed Brown // - is_points - index set for just the points in the closure of `face_sf`. These may be used to apply an affine
3215f06a3ddSJed Brown //   transformation to periodic dofs; see DMPeriodicCoordinateSetUp_Internal().
3225f06a3ddSJed Brown //
3235f06a3ddSJed Brown static PetscErrorCode DMPlexCreateIsoperiodicPointSF_Private(DM dm, PetscSF face_sf, PetscSF *closure_sf, IS *is_points)
3246725e60dSJed Brown {
3256725e60dSJed Brown   MPI_Comm           comm;
3266725e60dSJed Brown   PetscInt           nroots, nleaves, npoints;
3276725e60dSJed Brown   const PetscInt    *filocal, *pilocal;
3286725e60dSJed Brown   const PetscSFNode *firemote, *piremote;
3296725e60dSJed Brown   PetscMPIInt        rank;
3306725e60dSJed Brown   PetscSF            point_sf;
3316725e60dSJed Brown 
3326725e60dSJed Brown   PetscFunctionBegin;
3336725e60dSJed Brown   PetscCall(PetscObjectGetComm((PetscObject)dm, &comm));
3346725e60dSJed Brown   PetscCallMPI(MPI_Comm_rank(comm, &rank));
3356725e60dSJed Brown   PetscCall(PetscSFGetGraph(face_sf, &nroots, &nleaves, &filocal, &firemote));
3366725e60dSJed Brown   PetscCall(DMGetPointSF(dm, &point_sf)); // Point SF has remote points
3376725e60dSJed Brown   PetscCall(PetscSFGetGraph(point_sf, NULL, &npoints, &pilocal, &piremote));
3386725e60dSJed Brown   PetscInt *rootdata, *leafdata;
3396725e60dSJed Brown   PetscCall(PetscCalloc2(2 * nroots, &rootdata, 2 * nroots, &leafdata));
3406725e60dSJed Brown   for (PetscInt i = 0; i < nleaves; i++) {
3416725e60dSJed Brown     PetscInt point = filocal[i], cl_size, *closure = NULL;
3426725e60dSJed Brown     PetscCall(DMPlexGetTransitiveClosure(dm, point, PETSC_TRUE, &cl_size, &closure));
3436725e60dSJed Brown     leafdata[point] = cl_size - 1;
3446725e60dSJed Brown     PetscCall(DMPlexRestoreTransitiveClosure(dm, point, PETSC_TRUE, &cl_size, &closure));
3456725e60dSJed Brown   }
3466725e60dSJed Brown   PetscCall(PetscSFReduceBegin(face_sf, MPIU_INT, leafdata, rootdata + nroots, MPIU_SUM));
3476725e60dSJed Brown   PetscCall(PetscSFReduceEnd(face_sf, MPIU_INT, leafdata, rootdata + nroots, MPIU_SUM));
3486725e60dSJed Brown 
3496725e60dSJed Brown   PetscInt root_offset = 0;
3506725e60dSJed Brown   for (PetscInt p = 0; p < nroots; p++) {
3516725e60dSJed Brown     const PetscInt *donor_dof = rootdata + nroots;
3526725e60dSJed Brown     if (donor_dof[p] == 0) {
3536725e60dSJed Brown       rootdata[2 * p]     = -1;
3546725e60dSJed Brown       rootdata[2 * p + 1] = -1;
3556725e60dSJed Brown       continue;
3566725e60dSJed Brown     }
3576725e60dSJed Brown     PetscInt  cl_size;
3586725e60dSJed Brown     PetscInt *closure = NULL;
3596725e60dSJed Brown     PetscCall(DMPlexGetTransitiveClosure(dm, p, PETSC_TRUE, &cl_size, &closure));
3606725e60dSJed Brown     // cl_size - 1 = points not including self
3615f06a3ddSJed Brown     PetscAssert(donor_dof[p] == cl_size - 1, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Reduced leaf cone sizes do not match root cone sizes");
3626725e60dSJed Brown     rootdata[2 * p]     = root_offset;
3636725e60dSJed Brown     rootdata[2 * p + 1] = cl_size - 1;
3646725e60dSJed Brown     root_offset += cl_size - 1;
3656725e60dSJed Brown     PetscCall(DMPlexRestoreTransitiveClosure(dm, p, PETSC_TRUE, &cl_size, &closure));
3666725e60dSJed Brown   }
3676725e60dSJed Brown   PetscCall(PetscSFBcastBegin(face_sf, MPIU_2INT, rootdata, leafdata, MPI_REPLACE));
3686725e60dSJed Brown   PetscCall(PetscSFBcastEnd(face_sf, MPIU_2INT, rootdata, leafdata, MPI_REPLACE));
3696725e60dSJed Brown   // Count how many leaves we need to communicate the closures
3706725e60dSJed Brown   PetscInt leaf_offset = 0;
3716725e60dSJed Brown   for (PetscInt i = 0; i < nleaves; i++) {
3726725e60dSJed Brown     PetscInt point = filocal[i];
3736725e60dSJed Brown     if (leafdata[2 * point + 1] < 0) continue;
3746725e60dSJed Brown     leaf_offset += leafdata[2 * point + 1];
3756725e60dSJed Brown   }
3766725e60dSJed Brown 
3776725e60dSJed Brown   PetscSFNode *closure_leaf;
3786725e60dSJed Brown   PetscCall(PetscMalloc1(leaf_offset, &closure_leaf));
3796725e60dSJed Brown   leaf_offset = 0;
3806725e60dSJed Brown   for (PetscInt i = 0; i < nleaves; i++) {
3816725e60dSJed Brown     PetscInt point   = filocal[i];
3826725e60dSJed Brown     PetscInt cl_size = leafdata[2 * point + 1];
3836725e60dSJed Brown     if (cl_size < 0) continue;
3846725e60dSJed Brown     for (PetscInt j = 0; j < cl_size; j++) {
3856725e60dSJed Brown       closure_leaf[leaf_offset].rank  = firemote[i].rank;
3866725e60dSJed Brown       closure_leaf[leaf_offset].index = leafdata[2 * point] + j;
3876725e60dSJed Brown       leaf_offset++;
3886725e60dSJed Brown     }
3896725e60dSJed Brown   }
3906725e60dSJed Brown 
3916725e60dSJed Brown   PetscSF sf_closure;
3926725e60dSJed Brown   PetscCall(PetscSFCreate(comm, &sf_closure));
3936725e60dSJed Brown   PetscCall(PetscSFSetGraph(sf_closure, root_offset, leaf_offset, NULL, PETSC_USE_POINTER, closure_leaf, PETSC_OWN_POINTER));
3946725e60dSJed Brown 
3956725e60dSJed Brown   // Pack root buffer with owner for every point in the root cones
3966725e60dSJed Brown   PetscSFNode *donor_closure;
3976725e60dSJed Brown   PetscCall(PetscCalloc1(root_offset, &donor_closure));
3986725e60dSJed Brown   root_offset = 0;
3996725e60dSJed Brown   for (PetscInt p = 0; p < nroots; p++) {
4006725e60dSJed Brown     if (rootdata[2 * p] < 0) continue;
4016725e60dSJed Brown     PetscInt  cl_size;
4026725e60dSJed Brown     PetscInt *closure = NULL;
4036725e60dSJed Brown     PetscCall(DMPlexGetTransitiveClosure(dm, p, PETSC_TRUE, &cl_size, &closure));
4046725e60dSJed Brown     for (PetscInt j = 1; j < cl_size; j++) {
4056725e60dSJed Brown       PetscInt c = closure[2 * j];
4066725e60dSJed Brown       if (pilocal) {
4076725e60dSJed Brown         PetscInt found = -1;
4086725e60dSJed Brown         if (npoints > 0) PetscCall(PetscFindInt(c, npoints, pilocal, &found));
4096725e60dSJed Brown         if (found >= 0) {
4106725e60dSJed Brown           donor_closure[root_offset++] = piremote[found];
4116725e60dSJed Brown           continue;
4126725e60dSJed Brown         }
4136725e60dSJed Brown       }
4146725e60dSJed Brown       // we own c
4156725e60dSJed Brown       donor_closure[root_offset].rank  = rank;
4166725e60dSJed Brown       donor_closure[root_offset].index = c;
4176725e60dSJed Brown       root_offset++;
4186725e60dSJed Brown     }
4196725e60dSJed Brown     PetscCall(DMPlexRestoreTransitiveClosure(dm, p, PETSC_TRUE, &cl_size, &closure));
4206725e60dSJed Brown   }
4216725e60dSJed Brown 
4226725e60dSJed Brown   PetscSFNode *leaf_donor_closure;
4236725e60dSJed Brown   PetscCall(PetscMalloc1(leaf_offset, &leaf_donor_closure));
4246725e60dSJed Brown   PetscCall(PetscSFBcastBegin(sf_closure, MPIU_2INT, donor_closure, leaf_donor_closure, MPI_REPLACE));
4256725e60dSJed Brown   PetscCall(PetscSFBcastEnd(sf_closure, MPIU_2INT, donor_closure, leaf_donor_closure, MPI_REPLACE));
4266725e60dSJed Brown   PetscCall(PetscSFDestroy(&sf_closure));
4276725e60dSJed Brown   PetscCall(PetscFree(donor_closure));
4286725e60dSJed Brown 
4296725e60dSJed Brown   PetscSFNode *new_iremote;
4306725e60dSJed Brown   PetscCall(PetscCalloc1(nroots, &new_iremote));
4316725e60dSJed Brown   for (PetscInt i = 0; i < nroots; i++) new_iremote[i].rank = -1;
4326725e60dSJed Brown   // Walk leaves and match vertices
4336725e60dSJed Brown   leaf_offset = 0;
4346725e60dSJed Brown   for (PetscInt i = 0; i < nleaves; i++) {
4356725e60dSJed Brown     PetscInt  point   = filocal[i], cl_size;
4366725e60dSJed Brown     PetscInt *closure = NULL;
4376725e60dSJed Brown     PetscCall(DMPlexGetTransitiveClosure(dm, point, PETSC_TRUE, &cl_size, &closure));
4386725e60dSJed Brown     for (PetscInt j = 1; j < cl_size; j++) { // TODO: should we send donor edge orientations so we can flip for consistency?
4396725e60dSJed Brown       PetscInt    c  = closure[2 * j];
4406725e60dSJed Brown       PetscSFNode lc = leaf_donor_closure[leaf_offset];
4416725e60dSJed Brown       // printf("[%d] face %d.%d: %d ?-- (%d,%d)\n", rank, point, j, c, lc.rank, lc.index);
4426725e60dSJed Brown       if (new_iremote[c].rank == -1) {
4436725e60dSJed Brown         new_iremote[c] = lc;
4445f06a3ddSJed Brown       } else PetscCheck(new_iremote[c].rank == lc.rank && new_iremote[c].index == lc.index, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Mismatched cone ordering between faces");
4456725e60dSJed Brown       leaf_offset++;
4466725e60dSJed Brown     }
4476725e60dSJed Brown     PetscCall(DMPlexRestoreTransitiveClosure(dm, point, PETSC_TRUE, &cl_size, &closure));
4486725e60dSJed Brown   }
4496725e60dSJed Brown   PetscCall(PetscFree(leaf_donor_closure));
4506725e60dSJed Brown 
4516725e60dSJed Brown   // Include face points in closure SF
4526725e60dSJed Brown   for (PetscInt i = 0; i < nleaves; i++) new_iremote[filocal[i]] = firemote[i];
4536725e60dSJed Brown   // consolidate leaves
4546725e60dSJed Brown   PetscInt num_new_leaves = 0;
4556725e60dSJed Brown   for (PetscInt i = 0; i < nroots; i++) {
4566725e60dSJed Brown     if (new_iremote[i].rank == -1) continue;
4576725e60dSJed Brown     new_iremote[num_new_leaves] = new_iremote[i];
4586725e60dSJed Brown     leafdata[num_new_leaves]    = i;
4596725e60dSJed Brown     num_new_leaves++;
4606725e60dSJed Brown   }
4615f06a3ddSJed Brown   PetscCall(ISCreateGeneral(PETSC_COMM_SELF, num_new_leaves, leafdata, PETSC_COPY_VALUES, is_points));
4626725e60dSJed Brown 
4636725e60dSJed Brown   PetscSF csf;
4646725e60dSJed Brown   PetscCall(PetscSFCreate(comm, &csf));
4656725e60dSJed Brown   PetscCall(PetscSFSetGraph(csf, nroots, num_new_leaves, leafdata, PETSC_COPY_VALUES, new_iremote, PETSC_COPY_VALUES));
4666725e60dSJed Brown   PetscCall(PetscFree(new_iremote)); // copy and delete because new_iremote is longer than it needs to be
4676725e60dSJed Brown   PetscCall(PetscFree2(rootdata, leafdata));
4686725e60dSJed Brown 
4695f06a3ddSJed Brown   if (npoints < 0) { // empty point_sf
4706725e60dSJed Brown     *closure_sf = csf;
4715f06a3ddSJed Brown   } else {
4725f06a3ddSJed Brown     PetscCall(PetscSFMerge(point_sf, csf, closure_sf));
4735f06a3ddSJed Brown     PetscCall(PetscSFDestroy(&csf));
4745f06a3ddSJed Brown   }
4755f06a3ddSJed Brown   PetscCall(PetscObjectSetName((PetscObject)*closure_sf, "Composed Periodic Points"));
4763ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
4776725e60dSJed Brown }
4786725e60dSJed Brown 
4795f06a3ddSJed Brown static PetscErrorCode DMGetIsoperiodicPointSF_Plex(DM dm, PetscSF *sf)
4806725e60dSJed Brown {
4816725e60dSJed Brown   DM_Plex *plex = (DM_Plex *)dm->data;
4826725e60dSJed Brown 
4836725e60dSJed Brown   PetscFunctionBegin;
4846725e60dSJed Brown   if (!plex->periodic.composed_sf) {
4856725e60dSJed Brown     PetscSF face_sf = plex->periodic.face_sf;
4866725e60dSJed Brown 
4875f06a3ddSJed Brown     PetscCall(DMPlexCreateIsoperiodicPointSF_Private(dm, face_sf, &plex->periodic.composed_sf, &plex->periodic.periodic_points));
4886725e60dSJed Brown   }
4896725e60dSJed Brown   if (sf) *sf = plex->periodic.composed_sf;
4903ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
4916725e60dSJed Brown }
4926725e60dSJed Brown 
4935f06a3ddSJed Brown PetscErrorCode DMPlexMigrateIsoperiodicFaceSF_Internal(DM old_dm, DM dm, PetscSF sf_migration)
4945f06a3ddSJed Brown {
4955f06a3ddSJed Brown   DM_Plex    *plex = (DM_Plex *)old_dm->data;
4965f06a3ddSJed Brown   PetscSF     sf_point;
4975f06a3ddSJed Brown   PetscMPIInt rank;
4985f06a3ddSJed Brown 
4995f06a3ddSJed Brown   PetscFunctionBegin;
5003ba16761SJacob Faibussowitsch   if (!plex->periodic.face_sf) PetscFunctionReturn(PETSC_SUCCESS);
5015f06a3ddSJed Brown   PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
5025f06a3ddSJed Brown   PetscCall(DMGetPointSF(dm, &sf_point));
5035f06a3ddSJed Brown   PetscInt           old_npoints, new_npoints, old_nleaf, new_nleaf, point_nleaf;
5045f06a3ddSJed Brown   PetscSFNode       *new_leafdata, *rootdata, *leafdata;
5055f06a3ddSJed Brown   const PetscInt    *old_local, *point_local;
5065f06a3ddSJed Brown   const PetscSFNode *old_remote, *point_remote;
5075f06a3ddSJed Brown   PetscCall(PetscSFGetGraph(plex->periodic.face_sf, &old_npoints, &old_nleaf, &old_local, &old_remote));
5085f06a3ddSJed Brown   PetscCall(PetscSFGetGraph(sf_migration, NULL, &new_nleaf, NULL, NULL));
5095f06a3ddSJed Brown   PetscCall(PetscSFGetGraph(sf_point, &new_npoints, &point_nleaf, &point_local, &point_remote));
5105f06a3ddSJed Brown   PetscAssert(new_nleaf == new_npoints, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Expected migration leaf space to match new point root space");
5115f06a3ddSJed Brown   PetscCall(PetscMalloc3(old_npoints, &rootdata, old_npoints, &leafdata, new_npoints, &new_leafdata));
5125f06a3ddSJed Brown 
5135f06a3ddSJed Brown   // Fill new_leafdata with new owners of all points
5145f06a3ddSJed Brown   for (PetscInt i = 0; i < new_npoints; i++) {
5155f06a3ddSJed Brown     new_leafdata[i].rank  = rank;
5165f06a3ddSJed Brown     new_leafdata[i].index = i;
5175f06a3ddSJed Brown   }
5185f06a3ddSJed Brown   for (PetscInt i = 0; i < point_nleaf; i++) {
5195f06a3ddSJed Brown     PetscInt j      = point_local[i];
5205f06a3ddSJed Brown     new_leafdata[j] = point_remote[i];
5215f06a3ddSJed Brown   }
5225f06a3ddSJed Brown   // REPLACE is okay because every leaf agrees about the new owners
5235f06a3ddSJed Brown   PetscCall(PetscSFReduceBegin(sf_migration, MPIU_2INT, new_leafdata, rootdata, MPI_REPLACE));
5245f06a3ddSJed Brown   PetscCall(PetscSFReduceEnd(sf_migration, MPIU_2INT, new_leafdata, rootdata, MPI_REPLACE));
5255f06a3ddSJed Brown   // rootdata now contains the new owners
5265f06a3ddSJed Brown 
5275f06a3ddSJed Brown   // Send to leaves of old space
5285f06a3ddSJed Brown   for (PetscInt i = 0; i < old_npoints; i++) {
5295f06a3ddSJed Brown     leafdata[i].rank  = -1;
5305f06a3ddSJed Brown     leafdata[i].index = -1;
5315f06a3ddSJed Brown   }
5325f06a3ddSJed Brown   PetscCall(PetscSFBcastBegin(plex->periodic.face_sf, MPIU_2INT, rootdata, leafdata, MPI_REPLACE));
5335f06a3ddSJed Brown   PetscCall(PetscSFBcastEnd(plex->periodic.face_sf, MPIU_2INT, rootdata, leafdata, MPI_REPLACE));
5345f06a3ddSJed Brown 
5355f06a3ddSJed Brown   // Send to new leaf space
5365f06a3ddSJed Brown   PetscCall(PetscSFBcastBegin(sf_migration, MPIU_2INT, leafdata, new_leafdata, MPI_REPLACE));
5375f06a3ddSJed Brown   PetscCall(PetscSFBcastEnd(sf_migration, MPIU_2INT, leafdata, new_leafdata, MPI_REPLACE));
5385f06a3ddSJed Brown 
5395f06a3ddSJed Brown   PetscInt     nface = 0, *new_local;
5405f06a3ddSJed Brown   PetscSFNode *new_remote;
5415f06a3ddSJed Brown   for (PetscInt i = 0; i < new_npoints; i++) nface += (new_leafdata[i].rank >= 0);
5425f06a3ddSJed Brown   PetscCall(PetscMalloc1(nface, &new_local));
5435f06a3ddSJed Brown   PetscCall(PetscMalloc1(nface, &new_remote));
5445f06a3ddSJed Brown   nface = 0;
5455f06a3ddSJed Brown   for (PetscInt i = 0; i < new_npoints; i++) {
5465f06a3ddSJed Brown     if (new_leafdata[i].rank == -1) continue;
5475f06a3ddSJed Brown     new_local[nface]  = i;
5485f06a3ddSJed Brown     new_remote[nface] = new_leafdata[i];
5495f06a3ddSJed Brown     nface++;
5505f06a3ddSJed Brown   }
5515f06a3ddSJed Brown   PetscCall(PetscFree3(rootdata, leafdata, new_leafdata));
5525f06a3ddSJed Brown   PetscSF sf_face;
5535f06a3ddSJed Brown   PetscCall(PetscSFCreate(PetscObjectComm((PetscObject)dm), &sf_face));
5545f06a3ddSJed Brown   PetscCall(PetscSFSetGraph(sf_face, new_npoints, nface, new_local, PETSC_OWN_POINTER, new_remote, PETSC_OWN_POINTER));
5555f06a3ddSJed Brown   PetscCall(PetscObjectSetName((PetscObject)sf_face, "Migrated Isoperiodic Faces"));
5565f06a3ddSJed Brown   PetscCall(DMPlexSetIsoperiodicFaceSF(dm, sf_face));
5575f06a3ddSJed Brown   PetscCall(DMPlexSetIsoperiodicFaceTransform(dm, &plex->periodic.transform[0][0]));
5585f06a3ddSJed Brown   PetscCall(PetscSFDestroy(&sf_face));
5593ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
5605f06a3ddSJed Brown }
5615f06a3ddSJed Brown 
5626725e60dSJed Brown PetscErrorCode DMPeriodicCoordinateSetUp_Internal(DM dm)
5636725e60dSJed Brown {
5646725e60dSJed Brown   DM_Plex *plex = (DM_Plex *)dm->data;
5654d86920dSPierre Jolivet 
5666725e60dSJed Brown   PetscFunctionBegin;
5673ba16761SJacob Faibussowitsch   if (!plex->periodic.face_sf) PetscFunctionReturn(PETSC_SUCCESS);
5685f06a3ddSJed Brown   PetscCall(DMGetIsoperiodicPointSF_Plex(dm, NULL));
5695f06a3ddSJed Brown   PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMGetIsoperiodicPointSF_C", DMGetIsoperiodicPointSF_Plex));
5706725e60dSJed Brown 
5716725e60dSJed Brown   PetscInt dim;
5726725e60dSJed Brown   PetscCall(DMGetDimension(dm, &dim));
5736725e60dSJed Brown   size_t count;
5746725e60dSJed Brown   IS     isdof;
5756725e60dSJed Brown   {
5766725e60dSJed Brown     PetscInt        npoints;
5776725e60dSJed Brown     const PetscInt *points;
5786725e60dSJed Brown     IS              is = plex->periodic.periodic_points;
5796725e60dSJed Brown     PetscSegBuffer  seg;
5806725e60dSJed Brown     PetscSection    section;
5816725e60dSJed Brown     PetscCall(DMGetLocalSection(dm, &section));
5826725e60dSJed Brown     PetscCall(PetscSegBufferCreate(sizeof(PetscInt), 32, &seg));
5836725e60dSJed Brown     PetscCall(ISGetSize(is, &npoints));
5846725e60dSJed Brown     PetscCall(ISGetIndices(is, &points));
5856725e60dSJed Brown     for (PetscInt i = 0; i < npoints; i++) {
5866725e60dSJed Brown       PetscInt point = points[i], off, dof;
5876725e60dSJed Brown       PetscCall(PetscSectionGetOffset(section, point, &off));
5886725e60dSJed Brown       PetscCall(PetscSectionGetDof(section, point, &dof));
5896725e60dSJed Brown       PetscAssert(dof % dim == 0, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Unexpected dof %" PetscInt_FMT " not divisible by dimension %" PetscInt_FMT, dof, dim);
5906725e60dSJed Brown       for (PetscInt j = 0; j < dof / dim; j++) {
5916725e60dSJed Brown         PetscInt *slot;
5926725e60dSJed Brown         PetscCall(PetscSegBufferGetInts(seg, 1, &slot));
593729bdd54SJed Brown         *slot = off / dim + j;
5946725e60dSJed Brown       }
5956725e60dSJed Brown     }
5966725e60dSJed Brown     PetscInt *ind;
5976725e60dSJed Brown     PetscCall(PetscSegBufferGetSize(seg, &count));
5986725e60dSJed Brown     PetscCall(PetscSegBufferExtractAlloc(seg, &ind));
5996725e60dSJed Brown     PetscCall(PetscSegBufferDestroy(&seg));
6006725e60dSJed Brown     PetscCall(ISCreateBlock(PETSC_COMM_SELF, dim, count, ind, PETSC_OWN_POINTER, &isdof));
6016725e60dSJed Brown   }
6026725e60dSJed Brown   Vec        L, P;
6036725e60dSJed Brown   VecType    vec_type;
6046725e60dSJed Brown   VecScatter scatter;
6056725e60dSJed Brown   PetscCall(DMGetLocalVector(dm, &L));
6066725e60dSJed Brown   PetscCall(VecCreate(PETSC_COMM_SELF, &P));
6076725e60dSJed Brown   PetscCall(VecSetSizes(P, count * dim, count * dim));
6086725e60dSJed Brown   PetscCall(VecGetType(L, &vec_type));
6096725e60dSJed Brown   PetscCall(VecSetType(P, vec_type));
6106725e60dSJed Brown   PetscCall(VecScatterCreate(P, NULL, L, isdof, &scatter));
6116725e60dSJed Brown   PetscCall(DMRestoreLocalVector(dm, &L));
6126725e60dSJed Brown   PetscCall(ISDestroy(&isdof));
6136725e60dSJed Brown 
6146725e60dSJed Brown   {
6156725e60dSJed Brown     PetscScalar *x;
6166725e60dSJed Brown     PetscCall(VecGetArrayWrite(P, &x));
6176725e60dSJed Brown     for (PetscInt i = 0; i < (PetscInt)count; i++) {
6186725e60dSJed Brown       for (PetscInt j = 0; j < dim; j++) x[i * dim + j] = plex->periodic.transform[j][3];
6196725e60dSJed Brown     }
6206725e60dSJed Brown     PetscCall(VecRestoreArrayWrite(P, &x));
6216725e60dSJed Brown   }
6226725e60dSJed Brown 
6236725e60dSJed Brown   dm->periodic.affine_to_local = scatter;
6246725e60dSJed Brown   dm->periodic.affine          = P;
6256725e60dSJed Brown   PetscCall(DMGlobalToLocalHookAdd(dm, NULL, DMCoordAddPeriodicOffsets_Private, NULL));
6263ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
6276725e60dSJed Brown }
6286725e60dSJed Brown 
6295f06a3ddSJed Brown // We'll just orient all the edges, though only periodic boundary edges need orientation
6305f06a3ddSJed Brown static PetscErrorCode DMPlexOrientPositiveEdges_Private(DM dm)
6315f06a3ddSJed Brown {
6325f06a3ddSJed Brown   PetscInt dim, eStart, eEnd;
6334d86920dSPierre Jolivet 
6345f06a3ddSJed Brown   PetscFunctionBegin;
6355f06a3ddSJed Brown   PetscCall(DMGetDimension(dm, &dim));
6363ba16761SJacob Faibussowitsch   if (dim < 3) PetscFunctionReturn(PETSC_SUCCESS); // not necessary
6375f06a3ddSJed Brown   PetscCall(DMPlexGetDepthStratum(dm, 1, &eStart, &eEnd));
6385f06a3ddSJed Brown   for (PetscInt e = eStart; e < eEnd; e++) {
6395f06a3ddSJed Brown     const PetscInt *cone;
6405f06a3ddSJed Brown     PetscCall(DMPlexGetCone(dm, e, &cone));
6415f06a3ddSJed Brown     if (cone[0] > cone[1]) PetscCall(DMPlexOrientPoint(dm, e, -1));
6425f06a3ddSJed Brown   }
6433ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
6445f06a3ddSJed Brown }
6455f06a3ddSJed Brown 
6463e72e933SJed Brown PetscErrorCode DMPlexCreateBoxMesh_Tensor_SFC_Internal(DM dm, PetscInt dim, const PetscInt faces[], const PetscReal lower[], const PetscReal upper[], const DMBoundaryType periodicity[], PetscBool interpolate)
6473e72e933SJed Brown {
6483e72e933SJed Brown   PetscInt  eextent[3] = {1, 1, 1}, vextent[3] = {1, 1, 1};
6493e72e933SJed Brown   const Ijk closure_1[] = {
6503e72e933SJed Brown     {0, 0, 0},
6513e72e933SJed Brown     {1, 0, 0},
6523e72e933SJed Brown   };
6533e72e933SJed Brown   const Ijk closure_2[] = {
6543e72e933SJed Brown     {0, 0, 0},
6553e72e933SJed Brown     {1, 0, 0},
6563e72e933SJed Brown     {1, 1, 0},
6573e72e933SJed Brown     {0, 1, 0},
6583e72e933SJed Brown   };
6593e72e933SJed Brown   const Ijk closure_3[] = {
6603e72e933SJed Brown     {0, 0, 0},
6613e72e933SJed Brown     {0, 1, 0},
6623e72e933SJed Brown     {1, 1, 0},
6633e72e933SJed Brown     {1, 0, 0},
6643e72e933SJed Brown     {0, 0, 1},
6653e72e933SJed Brown     {1, 0, 1},
6663e72e933SJed Brown     {1, 1, 1},
6673e72e933SJed Brown     {0, 1, 1},
6683e72e933SJed Brown   };
6693431e603SJed Brown   const Ijk *const closure_dim[] = {NULL, closure_1, closure_2, closure_3};
6703431e603SJed Brown   // This must be kept consistent with DMPlexCreateCubeMesh_Internal
6713431e603SJed Brown   const PetscInt        face_marker_1[]   = {1, 2};
6723431e603SJed Brown   const PetscInt        face_marker_2[]   = {4, 2, 1, 3};
6733431e603SJed Brown   const PetscInt        face_marker_3[]   = {6, 5, 3, 4, 1, 2};
6743431e603SJed Brown   const PetscInt *const face_marker_dim[] = {NULL, face_marker_1, face_marker_2, face_marker_3};
6756725e60dSJed Brown   // Orient faces so the normal is in the positive axis and the first vertex is the one closest to zero.
6766725e60dSJed Brown   // These orientations can be determined by examining cones of a reference quad and hex element.
6776725e60dSJed Brown   const PetscInt        face_orient_1[]   = {0, 0};
6786725e60dSJed Brown   const PetscInt        face_orient_2[]   = {-1, 0, 0, -1};
6796725e60dSJed Brown   const PetscInt        face_orient_3[]   = {-2, 0, -2, 1, -2, 0};
6806725e60dSJed Brown   const PetscInt *const face_orient_dim[] = {NULL, face_orient_1, face_orient_2, face_orient_3};
6813e72e933SJed Brown 
6823e72e933SJed Brown   PetscFunctionBegin;
6834f572ea9SToby Isaac   PetscAssertPointer(dm, 1);
6843e72e933SJed Brown   PetscValidLogicalCollectiveInt(dm, dim, 2);
6853e72e933SJed Brown   PetscCall(DMSetDimension(dm, dim));
6863e72e933SJed Brown   PetscMPIInt rank, size;
6873e72e933SJed Brown   PetscCallMPI(MPI_Comm_size(PetscObjectComm((PetscObject)dm), &size));
6883e72e933SJed Brown   PetscCallMPI(MPI_Comm_rank(PetscObjectComm((PetscObject)dm), &rank));
6893e72e933SJed Brown   for (PetscInt i = 0; i < dim; i++) {
6903e72e933SJed Brown     eextent[i] = faces[i];
6913e72e933SJed Brown     vextent[i] = faces[i] + 1;
6923e72e933SJed Brown   }
693c77877e3SJed Brown   ZLayout layout;
694c77877e3SJed Brown   PetscCall(ZLayoutCreate(size, eextent, vextent, &layout));
6953e72e933SJed Brown   PetscZSet vset; // set of all vertices in the closure of the owned elements
6963e72e933SJed Brown   PetscCall(PetscZSetCreate(&vset));
6973e72e933SJed Brown   PetscInt local_elems = 0;
6983e72e933SJed Brown   for (ZCode z = layout.zstarts[rank]; z < layout.zstarts[rank + 1]; z++) {
6993e72e933SJed Brown     Ijk loc = ZCodeSplit(z);
7003ba16761SJacob Faibussowitsch     if (IjkActive(layout.vextent, loc)) PetscCall(PetscZSetAdd(vset, z));
7016547ddbdSJed Brown     else {
7026547ddbdSJed Brown       z += ZStepOct(z);
7036547ddbdSJed Brown       continue;
7046547ddbdSJed Brown     }
7053e72e933SJed Brown     if (IjkActive(layout.eextent, loc)) {
7063e72e933SJed Brown       local_elems++;
7073e72e933SJed Brown       // Add all neighboring vertices to set
7083e72e933SJed Brown       for (PetscInt n = 0; n < PetscPowInt(2, dim); n++) {
7093e72e933SJed Brown         Ijk   inc  = closure_dim[dim][n];
7103e72e933SJed Brown         Ijk   nloc = {loc.i + inc.i, loc.j + inc.j, loc.k + inc.k};
7113e72e933SJed Brown         ZCode v    = ZEncode(nloc);
7123ba16761SJacob Faibussowitsch         PetscCall(PetscZSetAdd(vset, v));
7133e72e933SJed Brown       }
7143e72e933SJed Brown     }
7153e72e933SJed Brown   }
7163e72e933SJed Brown   PetscInt local_verts, off = 0;
7173e72e933SJed Brown   ZCode   *vert_z;
7183e72e933SJed Brown   PetscCall(PetscZSetGetSize(vset, &local_verts));
7193e72e933SJed Brown   PetscCall(PetscMalloc1(local_verts, &vert_z));
7203e72e933SJed Brown   PetscCall(PetscZSetGetElems(vset, &off, vert_z));
7213e72e933SJed Brown   PetscCall(PetscZSetDestroy(&vset));
7223e72e933SJed Brown   // ZCode is unsigned for bitwise convenience, but highest bit should never be set, so can interpret as signed
7233e72e933SJed Brown   PetscCall(PetscSortInt64(local_verts, (PetscInt64 *)vert_z));
7243e72e933SJed Brown 
7253e72e933SJed Brown   PetscCall(DMPlexSetChart(dm, 0, local_elems + local_verts));
7263e72e933SJed Brown   for (PetscInt e = 0; e < local_elems; e++) PetscCall(DMPlexSetConeSize(dm, e, PetscPowInt(2, dim)));
7273e72e933SJed Brown   PetscCall(DMSetUp(dm));
7283e72e933SJed Brown   {
7293e72e933SJed Brown     PetscInt e = 0;
7303e72e933SJed Brown     for (ZCode z = layout.zstarts[rank]; z < layout.zstarts[rank + 1]; z++) {
7313e72e933SJed Brown       Ijk loc = ZCodeSplit(z);
7326547ddbdSJed Brown       if (!IjkActive(layout.eextent, loc)) {
7336547ddbdSJed Brown         z += ZStepOct(z);
7346547ddbdSJed Brown         continue;
7356547ddbdSJed Brown       }
7363e72e933SJed Brown       PetscInt cone[8], orient[8] = {0};
7373e72e933SJed Brown       for (PetscInt n = 0; n < PetscPowInt(2, dim); n++) {
7383e72e933SJed Brown         Ijk      inc  = closure_dim[dim][n];
7393e72e933SJed Brown         Ijk      nloc = {loc.i + inc.i, loc.j + inc.j, loc.k + inc.k};
7403e72e933SJed Brown         ZCode    v    = ZEncode(nloc);
7413e72e933SJed Brown         PetscInt ci   = ZCodeFind(v, local_verts, vert_z);
7423e72e933SJed Brown         PetscAssert(ci >= 0, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Did not find neighbor vertex in set");
7433e72e933SJed Brown         cone[n] = local_elems + ci;
7443e72e933SJed Brown       }
7453e72e933SJed Brown       PetscCall(DMPlexSetCone(dm, e, cone));
7463e72e933SJed Brown       PetscCall(DMPlexSetConeOrientation(dm, e, orient));
7473e72e933SJed Brown       e++;
7483e72e933SJed Brown     }
7493e72e933SJed Brown   }
7503e72e933SJed Brown 
7513e72e933SJed Brown   PetscCall(DMPlexSymmetrize(dm));
7523e72e933SJed Brown   PetscCall(DMPlexStratify(dm));
7536725e60dSJed Brown 
7543e72e933SJed Brown   { // Create point SF
7553e72e933SJed Brown     PetscSF sf;
7563ba16761SJacob Faibussowitsch     PetscCall(PetscSFCreate(PetscObjectComm((PetscObject)dm), &sf));
7573e72e933SJed Brown     PetscInt owned_verts = ZCodeFind(layout.zstarts[rank + 1], local_verts, vert_z);
7583e72e933SJed Brown     if (owned_verts < 0) owned_verts = -(owned_verts + 1); // We don't care whether the key was found
7593e72e933SJed Brown     PetscInt     num_ghosts = local_verts - owned_verts;   // Due to sorting, owned vertices always come first
7603e72e933SJed Brown     PetscInt    *local_ghosts;
7613e72e933SJed Brown     PetscSFNode *ghosts;
7623e72e933SJed Brown     PetscCall(PetscMalloc1(num_ghosts, &local_ghosts));
7633e72e933SJed Brown     PetscCall(PetscMalloc1(num_ghosts, &ghosts));
7643e72e933SJed Brown     for (PetscInt i = 0; i < num_ghosts;) {
7653e72e933SJed Brown       ZCode    z           = vert_z[owned_verts + i];
7663e72e933SJed Brown       PetscInt remote_rank = ZCodeFind(z, size + 1, layout.zstarts), remote_count = 0;
7673e72e933SJed Brown       if (remote_rank < 0) remote_rank = -(remote_rank + 1) - 1;
7683e72e933SJed Brown       // We have a new remote rank; find all the ghost indices (which are contiguous in vert_z)
7693e72e933SJed Brown 
7703e72e933SJed Brown       // Count the elements on remote_rank
7714e2e9504SJed Brown       PetscInt remote_elem = ZLayoutElementsOnRank(&layout, remote_rank);
7723e72e933SJed Brown 
7733e72e933SJed Brown       // Traverse vertices and make ghost links
7743e72e933SJed Brown       for (ZCode rz = layout.zstarts[remote_rank]; rz < layout.zstarts[remote_rank + 1]; rz++) {
7753e72e933SJed Brown         Ijk loc = ZCodeSplit(rz);
7763e72e933SJed Brown         if (rz == z) {
7773e72e933SJed Brown           local_ghosts[i] = local_elems + owned_verts + i;
7783e72e933SJed Brown           ghosts[i].rank  = remote_rank;
7793e72e933SJed Brown           ghosts[i].index = remote_elem + remote_count;
7803e72e933SJed Brown           i++;
7813e72e933SJed Brown           if (i == num_ghosts) break;
7823e72e933SJed Brown           z = vert_z[owned_verts + i];
7833e72e933SJed Brown         }
7843e72e933SJed Brown         if (IjkActive(layout.vextent, loc)) remote_count++;
7856547ddbdSJed Brown         else rz += ZStepOct(rz);
7863e72e933SJed Brown       }
7873e72e933SJed Brown     }
7883e72e933SJed Brown     PetscCall(PetscSFSetGraph(sf, local_elems + local_verts, num_ghosts, local_ghosts, PETSC_OWN_POINTER, ghosts, PETSC_OWN_POINTER));
7893e72e933SJed Brown     PetscCall(PetscObjectSetName((PetscObject)sf, "SFC Point SF"));
7903e72e933SJed Brown     PetscCall(DMSetPointSF(dm, sf));
7913e72e933SJed Brown     PetscCall(PetscSFDestroy(&sf));
7923e72e933SJed Brown   }
7933e72e933SJed Brown   {
7943e72e933SJed Brown     Vec          coordinates;
7953e72e933SJed Brown     PetscScalar *coords;
7963e72e933SJed Brown     PetscSection coord_section;
7973e72e933SJed Brown     PetscInt     coord_size;
7983e72e933SJed Brown     PetscCall(DMGetCoordinateSection(dm, &coord_section));
7993e72e933SJed Brown     PetscCall(PetscSectionSetNumFields(coord_section, 1));
8003e72e933SJed Brown     PetscCall(PetscSectionSetFieldComponents(coord_section, 0, dim));
8013e72e933SJed Brown     PetscCall(PetscSectionSetChart(coord_section, local_elems, local_elems + local_verts));
8023e72e933SJed Brown     for (PetscInt v = 0; v < local_verts; v++) {
8033e72e933SJed Brown       PetscInt point = local_elems + v;
8043e72e933SJed Brown       PetscCall(PetscSectionSetDof(coord_section, point, dim));
8053e72e933SJed Brown       PetscCall(PetscSectionSetFieldDof(coord_section, point, 0, dim));
8063e72e933SJed Brown     }
8073e72e933SJed Brown     PetscCall(PetscSectionSetUp(coord_section));
8083e72e933SJed Brown     PetscCall(PetscSectionGetStorageSize(coord_section, &coord_size));
8093e72e933SJed Brown     PetscCall(VecCreate(PETSC_COMM_SELF, &coordinates));
8103e72e933SJed Brown     PetscCall(PetscObjectSetName((PetscObject)coordinates, "coordinates"));
8113e72e933SJed Brown     PetscCall(VecSetSizes(coordinates, coord_size, PETSC_DETERMINE));
8123e72e933SJed Brown     PetscCall(VecSetBlockSize(coordinates, dim));
8133e72e933SJed Brown     PetscCall(VecSetType(coordinates, VECSTANDARD));
8143e72e933SJed Brown     PetscCall(VecGetArray(coordinates, &coords));
8153e72e933SJed Brown     for (PetscInt v = 0; v < local_verts; v++) {
8163e72e933SJed Brown       Ijk loc             = ZCodeSplit(vert_z[v]);
8173e72e933SJed Brown       coords[v * dim + 0] = lower[0] + loc.i * (upper[0] - lower[0]) / layout.eextent.i;
8183e72e933SJed Brown       if (dim > 1) coords[v * dim + 1] = lower[1] + loc.j * (upper[1] - lower[1]) / layout.eextent.j;
8193e72e933SJed Brown       if (dim > 2) coords[v * dim + 2] = lower[2] + loc.k * (upper[2] - lower[2]) / layout.eextent.k;
8203e72e933SJed Brown     }
8213e72e933SJed Brown     PetscCall(VecRestoreArray(coordinates, &coords));
8223e72e933SJed Brown     PetscCall(DMSetCoordinatesLocal(dm, coordinates));
8233e72e933SJed Brown     PetscCall(VecDestroy(&coordinates));
8243e72e933SJed Brown   }
8253e72e933SJed Brown   if (interpolate) {
8263431e603SJed Brown     PetscCall(DMPlexInterpolateInPlace_Internal(dm));
8275f06a3ddSJed Brown     // It's currently necessary to orient the donor and periodic edges consistently. An easy way to ensure that is ot
8285f06a3ddSJed Brown     // give all edges positive orientation. Since vertices are created in Z-order, all ranks will agree about the
8295f06a3ddSJed Brown     // ordering cone[0] < cone[1]. This is overkill and it would be nice to remove this preparation and make
8305f06a3ddSJed Brown     // DMPlexCreateIsoperiodicClosureSF_Private() more resilient, so it fixes any inconsistent orientations. That might
8315f06a3ddSJed Brown     // be needed in a general CGNS reader, for example.
8325f06a3ddSJed Brown     PetscCall(DMPlexOrientPositiveEdges_Private(dm));
8333431e603SJed Brown 
8343431e603SJed Brown     DMLabel label;
8353431e603SJed Brown     PetscCall(DMCreateLabel(dm, "Face Sets"));
8363431e603SJed Brown     PetscCall(DMGetLabel(dm, "Face Sets", &label));
837*9ae3492bSJames Wright     PetscSegBuffer per_faces[3], donor_face_closure[3], my_donor_faces[3];
838*9ae3492bSJames Wright     for (PetscInt i = 0; i < 3; i++) {
839*9ae3492bSJames Wright       PetscCall(PetscSegBufferCreate(sizeof(PetscInt), 64, &per_faces[i]));
840*9ae3492bSJames Wright       PetscCall(PetscSegBufferCreate(sizeof(PetscInt), 64, &my_donor_faces[i]));
841*9ae3492bSJames Wright       PetscCall(PetscSegBufferCreate(sizeof(ZCode), 64 * PetscPowInt(2, dim), &donor_face_closure[i]));
842*9ae3492bSJames Wright     }
8433431e603SJed Brown     PetscInt fStart, fEnd, vStart, vEnd;
8443431e603SJed Brown     PetscCall(DMPlexGetHeightStratum(dm, 1, &fStart, &fEnd));
8453431e603SJed Brown     PetscCall(DMPlexGetDepthStratum(dm, 0, &vStart, &vEnd));
8463431e603SJed Brown     for (PetscInt f = fStart; f < fEnd; f++) {
8474e2e9504SJed Brown       PetscInt npoints, *points = NULL, num_fverts = 0, fverts[8];
8483431e603SJed Brown       PetscCall(DMPlexGetTransitiveClosure(dm, f, PETSC_TRUE, &npoints, &points));
8493431e603SJed Brown       PetscInt bc_count[6] = {0};
8503431e603SJed Brown       for (PetscInt i = 0; i < npoints; i++) {
8513431e603SJed Brown         PetscInt p = points[2 * i];
8523431e603SJed Brown         if (p < vStart || vEnd <= p) continue;
8534e2e9504SJed Brown         fverts[num_fverts++] = p;
8543431e603SJed Brown         Ijk loc              = ZCodeSplit(vert_z[p - vStart]);
8553431e603SJed Brown         // Convention here matches DMPlexCreateCubeMesh_Internal
8563431e603SJed Brown         bc_count[0] += loc.i == 0;
8573431e603SJed Brown         bc_count[1] += loc.i == layout.vextent.i - 1;
8583431e603SJed Brown         bc_count[2] += loc.j == 0;
8593431e603SJed Brown         bc_count[3] += loc.j == layout.vextent.j - 1;
8603431e603SJed Brown         bc_count[4] += loc.k == 0;
8613431e603SJed Brown         bc_count[5] += loc.k == layout.vextent.k - 1;
8623e72e933SJed Brown       }
8633431e603SJed Brown       PetscCall(DMPlexRestoreTransitiveClosure(dm, f, PETSC_TRUE, &npoints, &points));
8643431e603SJed Brown       for (PetscInt bc = 0, bc_match = 0; bc < 2 * dim; bc++) {
8653431e603SJed Brown         if (bc_count[bc] == PetscPowInt(2, dim - 1)) {
8666725e60dSJed Brown           PetscCall(DMPlexOrientPoint(dm, f, face_orient_dim[dim][bc]));
8674e2e9504SJed Brown           if (periodicity[bc / 2] == DM_BOUNDARY_PERIODIC) {
8684e2e9504SJed Brown             PetscInt *put;
8694e2e9504SJed Brown             if (bc % 2 == 0) { // donor face; no label
870*9ae3492bSJames Wright               PetscCall(PetscSegBufferGet(my_donor_faces[bc / 2], 1, &put));
8714e2e9504SJed Brown               *put = f;
8724e2e9504SJed Brown             } else { // periodic face
873*9ae3492bSJames Wright               PetscCall(PetscSegBufferGet(per_faces[bc / 2], 1, &put));
8744e2e9504SJed Brown               *put = f;
8754e2e9504SJed Brown               ZCode *zput;
876*9ae3492bSJames Wright               PetscCall(PetscSegBufferGet(donor_face_closure[bc / 2], num_fverts, &zput));
8774e2e9504SJed Brown               for (PetscInt i = 0; i < num_fverts; i++) {
8784e2e9504SJed Brown                 Ijk loc = ZCodeSplit(vert_z[fverts[i] - vStart]);
8794e2e9504SJed Brown                 switch (bc / 2) {
8804e2e9504SJed Brown                 case 0:
8814e2e9504SJed Brown                   loc.i = 0;
8824e2e9504SJed Brown                   break;
8834e2e9504SJed Brown                 case 1:
8844e2e9504SJed Brown                   loc.j = 0;
8854e2e9504SJed Brown                   break;
8864e2e9504SJed Brown                 case 2:
8874e2e9504SJed Brown                   loc.k = 0;
8884e2e9504SJed Brown                   break;
8894e2e9504SJed Brown                 }
8904e2e9504SJed Brown                 *zput++ = ZEncode(loc);
8914e2e9504SJed Brown               }
8924e2e9504SJed Brown             }
8934e2e9504SJed Brown             continue;
8944e2e9504SJed Brown           }
8953431e603SJed Brown           PetscAssert(bc_match == 0, PETSC_COMM_SELF, PETSC_ERR_PLIB, "Face matches multiple face sets");
8963431e603SJed Brown           PetscCall(DMLabelSetValue(label, f, face_marker_dim[dim][bc]));
8973431e603SJed Brown           bc_match++;
8983431e603SJed Brown         }
8993431e603SJed Brown       }
9003431e603SJed Brown     }
9013431e603SJed Brown     // Ensure that the Coordinate DM has our new boundary labels
9023431e603SJed Brown     DM cdm;
9033431e603SJed Brown     PetscCall(DMGetCoordinateDM(dm, &cdm));
9043431e603SJed Brown     PetscCall(DMCopyLabels(dm, cdm, PETSC_COPY_VALUES, PETSC_FALSE, DM_COPY_LABELS_FAIL));
9056725e60dSJed Brown     if (periodicity[0] == DM_BOUNDARY_PERIODIC || (dim > 1 && periodicity[1] == DM_BOUNDARY_PERIODIC) || (dim > 2 && periodicity[2] == DM_BOUNDARY_PERIODIC)) {
9065f06a3ddSJed Brown       PetscCall(DMPlexCreateBoxMesh_Tensor_SFC_Periodicity_Private(dm, &layout, vert_z, per_faces, lower, upper, periodicity, donor_face_closure, my_donor_faces));
9076725e60dSJed Brown     }
908*9ae3492bSJames Wright     for (PetscInt i = 0; i < 3; i++) {
909*9ae3492bSJames Wright       PetscCall(PetscSegBufferDestroy(&per_faces[i]));
910*9ae3492bSJames Wright       PetscCall(PetscSegBufferDestroy(&donor_face_closure[i]));
911*9ae3492bSJames Wright       PetscCall(PetscSegBufferDestroy(&my_donor_faces[i]));
912*9ae3492bSJames Wright     }
9133431e603SJed Brown   }
9144e2e9504SJed Brown   PetscCall(PetscFree(layout.zstarts));
9153431e603SJed Brown   PetscCall(PetscFree(vert_z));
9163ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
9173e72e933SJed Brown }
9184e2e9504SJed Brown 
9194e2e9504SJed Brown /*@
9205f06a3ddSJed Brown   DMPlexSetIsoperiodicFaceSF - Express periodicity from an existing mesh
9214e2e9504SJed Brown 
92220f4b53cSBarry Smith   Logically Collective
9234e2e9504SJed Brown 
9244e2e9504SJed Brown   Input Parameters:
9254e2e9504SJed Brown + dm      - The `DMPLEX` on which to set periodicity
92653c0d4aeSBarry Smith - face_sf - `PetscSF` in which roots are (owned) donor faces and leaves are faces that must be matched to a (possibly remote) donor face.
9274e2e9504SJed Brown 
9284e2e9504SJed Brown   Level: advanced
9294e2e9504SJed Brown 
93053c0d4aeSBarry Smith   Note:
9315dca41c3SJed Brown   One can use `-dm_plex_shape zbox` to use this mode of periodicity, wherein the periodic points are distinct both globally
9324e2e9504SJed Brown   and locally, but are paired when creating a global dof space.
9334e2e9504SJed Brown 
9341cc06b55SBarry Smith .seealso: [](ch_unstructured), `DMPLEX`, `DMGetGlobalSection()`, `DMPlexGetIsoperiodicFaceSF()`
9354e2e9504SJed Brown @*/
9365f06a3ddSJed Brown PetscErrorCode DMPlexSetIsoperiodicFaceSF(DM dm, PetscSF face_sf)
9374e2e9504SJed Brown {
9384e2e9504SJed Brown   DM_Plex *plex = (DM_Plex *)dm->data;
9394d86920dSPierre Jolivet 
9404e2e9504SJed Brown   PetscFunctionBegin;
9414e2e9504SJed Brown   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9424e2e9504SJed Brown   PetscCall(PetscObjectReference((PetscObject)face_sf));
9434e2e9504SJed Brown   PetscCall(PetscSFDestroy(&plex->periodic.face_sf));
9444e2e9504SJed Brown   plex->periodic.face_sf = face_sf;
9455f06a3ddSJed Brown   if (face_sf) PetscCall(PetscObjectComposeFunction((PetscObject)dm, "DMGetIsoperiodicPointSF_C", DMGetIsoperiodicPointSF_Plex));
9465f06a3ddSJed Brown 
9475f06a3ddSJed Brown   DM cdm = dm->coordinates[0].dm; // Can't DMGetCoordinateDM because it automatically creates one
9485f06a3ddSJed Brown   if (cdm) {
9495f06a3ddSJed Brown     PetscCall(DMPlexSetIsoperiodicFaceSF(cdm, face_sf));
9505f06a3ddSJed Brown     if (face_sf) cdm->periodic.setup = DMPeriodicCoordinateSetUp_Internal;
9515f06a3ddSJed Brown   }
9523ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
9534e2e9504SJed Brown }
9544e2e9504SJed Brown 
9554e2e9504SJed Brown /*@
9565f06a3ddSJed Brown   DMPlexGetIsoperiodicFaceSF - Obtain periodicity for a mesh
9574e2e9504SJed Brown 
95820f4b53cSBarry Smith   Logically Collective
9594e2e9504SJed Brown 
96020f4b53cSBarry Smith   Input Parameter:
9614e2e9504SJed Brown . dm - The `DMPLEX` for which to obtain periodic relation
9624e2e9504SJed Brown 
96320f4b53cSBarry Smith   Output Parameter:
96420f4b53cSBarry Smith . face_sf - `PetscSF` in which roots are (owned) donor faces and leaves are faces that must be matched to a (possibly remote) donor face.
9654e2e9504SJed Brown 
9664e2e9504SJed Brown   Level: advanced
9674e2e9504SJed Brown 
9681cc06b55SBarry Smith .seealso: [](ch_unstructured), `DMPLEX`, `DMGetGlobalSection()`, `DMPlexSetIsoperiodicFaceSF()`
9694e2e9504SJed Brown @*/
9705f06a3ddSJed Brown PetscErrorCode DMPlexGetIsoperiodicFaceSF(DM dm, PetscSF *face_sf)
9714e2e9504SJed Brown {
9724e2e9504SJed Brown   DM_Plex *plex = (DM_Plex *)dm->data;
9734d86920dSPierre Jolivet 
9744e2e9504SJed Brown   PetscFunctionBegin;
9754e2e9504SJed Brown   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
9764e2e9504SJed Brown   *face_sf = plex->periodic.face_sf;
9773ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
9784e2e9504SJed Brown }
9796725e60dSJed Brown 
9805f06a3ddSJed Brown /*@C
9815f06a3ddSJed Brown   DMPlexSetIsoperiodicFaceTransform - set geometric transform from donor to periodic points
9826725e60dSJed Brown 
9836725e60dSJed Brown   Logically Collective
9846725e60dSJed Brown 
98560225df5SJacob Faibussowitsch   Input Parameters:
98653c0d4aeSBarry Smith + dm - `DMPLEX` that has been configured with `DMPlexSetIsoperiodicFaceSF()`
9876725e60dSJed Brown - t  - 4x4 affine transformation basis.
9886725e60dSJed Brown 
98953c0d4aeSBarry Smith   Level: advanced
99053c0d4aeSBarry Smith 
9915f06a3ddSJed Brown   Notes:
9925f06a3ddSJed Brown   Affine transforms are 4x4 matrices in which the leading 3x3 block expresses a rotation (or identity for no rotation),
9935f06a3ddSJed Brown   the last column contains a translation vector, and the bottom row is all zero except the last entry, which must always
9945f06a3ddSJed Brown   be 1. This representation is common in geometric modeling and allows affine transformations to be composed using
995aaa8cc7dSPierre Jolivet   simple matrix multiplication.
9965f06a3ddSJed Brown 
9975f06a3ddSJed Brown   Although the interface accepts a general affine transform, only affine translation is supported at present.
9985f06a3ddSJed Brown 
99960225df5SJacob Faibussowitsch   Developer Notes:
10005f06a3ddSJed Brown   This interface should be replaced by making BasisTransform public, expanding it to support affine representations, and
10015f06a3ddSJed Brown   adding GPU implementations to apply the G2L/L2G transforms.
100253c0d4aeSBarry Smith 
10031cc06b55SBarry Smith .seealso: [](ch_unstructured), `DMPLEX`, `DMGetGlobalSection()`, `DMPlexSetIsoperiodicFaceSF()`
10046725e60dSJed Brown @*/
10055f06a3ddSJed Brown PetscErrorCode DMPlexSetIsoperiodicFaceTransform(DM dm, const PetscScalar t[])
10066725e60dSJed Brown {
10076725e60dSJed Brown   DM_Plex *plex = (DM_Plex *)dm->data;
10084d86920dSPierre Jolivet 
10096725e60dSJed Brown   PetscFunctionBegin;
10106725e60dSJed Brown   PetscValidHeaderSpecific(dm, DM_CLASSID, 1);
10116725e60dSJed Brown   for (PetscInt i = 0; i < 4; i++) {
10126725e60dSJed Brown     for (PetscInt j = 0; j < 4; j++) {
10135f06a3ddSJed Brown       PetscCheck(i != j || t[i * 4 + j] == 1., PetscObjectComm((PetscObject)dm), PETSC_ERR_SUP, "Rotated transforms not supported");
10145f06a3ddSJed Brown       plex->periodic.transform[i][j] = t[i * 4 + j];
10156725e60dSJed Brown     }
10166725e60dSJed Brown   }
10173ba16761SJacob Faibussowitsch   PetscFunctionReturn(PETSC_SUCCESS);
10186725e60dSJed Brown }
1019