xref: /libCEED/rust/libceed-sys/c-src/interface/ceed-preconditioning.c (revision c30b7fbd8b2659efee5d57239ce7cc4a18e5e9c6)
1eaf62fffSJeremy L Thompson // Copyright (c) 2017, Lawrence Livermore National Security, LLC. Produced at
2eaf62fffSJeremy L Thompson // the Lawrence Livermore National Laboratory. LLNL-CODE-734707. All Rights
3eaf62fffSJeremy L Thompson // reserved. See files LICENSE and NOTICE for details.
4eaf62fffSJeremy L Thompson //
5eaf62fffSJeremy L Thompson // This file is part of CEED, a collection of benchmarks, miniapps, software
6eaf62fffSJeremy L Thompson // libraries and APIs for efficient high-order finite element and spectral
7eaf62fffSJeremy L Thompson // element discretizations for exascale applications. For more information and
8eaf62fffSJeremy L Thompson // source code availability see http://github.com/ceed.
9eaf62fffSJeremy L Thompson //
10eaf62fffSJeremy L Thompson // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC,
11eaf62fffSJeremy L Thompson // a collaborative effort of two U.S. Department of Energy organizations (Office
12eaf62fffSJeremy L Thompson // of Science and the National Nuclear Security Administration) responsible for
13eaf62fffSJeremy L Thompson // the planning and preparation of a capable exascale ecosystem, including
14eaf62fffSJeremy L Thompson // software, applications, hardware, advanced system engineering and early
15eaf62fffSJeremy L Thompson // testbed platforms, in support of the nation's exascale computing imperative.
16eaf62fffSJeremy L Thompson 
17eaf62fffSJeremy L Thompson #include <ceed/ceed.h>
18eaf62fffSJeremy L Thompson #include <ceed/backend.h>
19eaf62fffSJeremy L Thompson #include <ceed-impl.h>
20eaf62fffSJeremy L Thompson #include <math.h>
21eaf62fffSJeremy L Thompson #include <stdbool.h>
22eaf62fffSJeremy L Thompson #include <stdio.h>
23eaf62fffSJeremy L Thompson #include <string.h>
24eaf62fffSJeremy L Thompson 
25eaf62fffSJeremy L Thompson /// @file
26eaf62fffSJeremy L Thompson /// Implementation of CeedOperator preconditioning interfaces
27eaf62fffSJeremy L Thompson 
28eaf62fffSJeremy L Thompson /// ----------------------------------------------------------------------------
29eaf62fffSJeremy L Thompson /// CeedOperator Library Internal Preconditioning Functions
30eaf62fffSJeremy L Thompson /// ----------------------------------------------------------------------------
31eaf62fffSJeremy L Thompson /// @addtogroup CeedOperatorDeveloper
32eaf62fffSJeremy L Thompson /// @{
33eaf62fffSJeremy L Thompson 
34eaf62fffSJeremy L Thompson /**
35eaf62fffSJeremy L Thompson   @brief Duplicate a CeedOperator with a reference Ceed to fallback for advanced
36eaf62fffSJeremy L Thompson          CeedOperator functionality
37eaf62fffSJeremy L Thompson 
38eaf62fffSJeremy L Thompson   @param op  CeedOperator to create fallback for
39eaf62fffSJeremy L Thompson 
40eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
41eaf62fffSJeremy L Thompson 
42eaf62fffSJeremy L Thompson   @ref Developer
43eaf62fffSJeremy L Thompson **/
44eaf62fffSJeremy L Thompson int CeedOperatorCreateFallback(CeedOperator op) {
45eaf62fffSJeremy L Thompson   int ierr;
46eaf62fffSJeremy L Thompson 
47eaf62fffSJeremy L Thompson   // Fallback Ceed
48eaf62fffSJeremy L Thompson   const char *resource, *fallback_resource;
49eaf62fffSJeremy L Thompson   ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
50eaf62fffSJeremy L Thompson   ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
51eaf62fffSJeremy L Thompson   CeedChk(ierr);
52eaf62fffSJeremy L Thompson   if (!strcmp(resource, fallback_resource))
53eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
54eaf62fffSJeremy L Thompson     return CeedError(op->ceed, CEED_ERROR_UNSUPPORTED,
55eaf62fffSJeremy L Thompson                      "Backend %s cannot create an operator"
56eaf62fffSJeremy L Thompson                      "fallback to resource %s", resource, fallback_resource);
57eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
58eaf62fffSJeremy L Thompson 
59eaf62fffSJeremy L Thompson   // Fallback Ceed
60eaf62fffSJeremy L Thompson   Ceed ceed_ref;
61eaf62fffSJeremy L Thompson   if (!op->ceed->op_fallback_ceed) {
62eaf62fffSJeremy L Thompson     ierr = CeedInit(fallback_resource, &ceed_ref); CeedChk(ierr);
63eaf62fffSJeremy L Thompson     ceed_ref->op_fallback_parent = op->ceed;
64eaf62fffSJeremy L Thompson     ceed_ref->Error = op->ceed->Error;
65eaf62fffSJeremy L Thompson     op->ceed->op_fallback_ceed = ceed_ref;
66eaf62fffSJeremy L Thompson   }
67eaf62fffSJeremy L Thompson   ceed_ref = op->ceed->op_fallback_ceed;
68eaf62fffSJeremy L Thompson 
69eaf62fffSJeremy L Thompson   // Clone Op
70eaf62fffSJeremy L Thompson   CeedOperator op_ref;
71eaf62fffSJeremy L Thompson   ierr = CeedCalloc(1, &op_ref); CeedChk(ierr);
72eaf62fffSJeremy L Thompson   memcpy(op_ref, op, sizeof(*op_ref));
73eaf62fffSJeremy L Thompson   op_ref->data = NULL;
74f04ea552SJeremy L Thompson   op_ref->is_interface_setup = false;
75f04ea552SJeremy L Thompson   op_ref->is_backend_setup = false;
76eaf62fffSJeremy L Thompson   op_ref->ceed = ceed_ref;
77eaf62fffSJeremy L Thompson   ierr = ceed_ref->OperatorCreate(op_ref); CeedChk(ierr);
78eaf62fffSJeremy L Thompson   op->op_fallback = op_ref;
79eaf62fffSJeremy L Thompson 
80eaf62fffSJeremy L Thompson   // Clone QF
81eaf62fffSJeremy L Thompson   CeedQFunction qf_ref;
82eaf62fffSJeremy L Thompson   ierr = CeedCalloc(1, &qf_ref); CeedChk(ierr);
83eaf62fffSJeremy L Thompson   memcpy(qf_ref, (op->qf), sizeof(*qf_ref));
84eaf62fffSJeremy L Thompson   qf_ref->data = NULL;
85eaf62fffSJeremy L Thompson   qf_ref->ceed = ceed_ref;
86eaf62fffSJeremy L Thompson   ierr = ceed_ref->QFunctionCreate(qf_ref); CeedChk(ierr);
87eaf62fffSJeremy L Thompson   op_ref->qf = qf_ref;
88eaf62fffSJeremy L Thompson   op->qf_fallback = qf_ref;
89eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
90eaf62fffSJeremy L Thompson }
91eaf62fffSJeremy L Thompson 
92eaf62fffSJeremy L Thompson /**
93eaf62fffSJeremy L Thompson   @brief Select correct basis matrix pointer based on CeedEvalMode
94eaf62fffSJeremy L Thompson 
95eaf62fffSJeremy L Thompson   @param[in] eval_mode   Current basis evaluation mode
96eaf62fffSJeremy L Thompson   @param[in] identity    Pointer to identity matrix
97eaf62fffSJeremy L Thompson   @param[in] interp      Pointer to interpolation matrix
98eaf62fffSJeremy L Thompson   @param[in] grad        Pointer to gradient matrix
99eaf62fffSJeremy L Thompson   @param[out] basis_ptr  Basis pointer to set
100eaf62fffSJeremy L Thompson 
101eaf62fffSJeremy L Thompson   @ref Developer
102eaf62fffSJeremy L Thompson **/
103eaf62fffSJeremy L Thompson static inline void CeedOperatorGetBasisPointer(CeedEvalMode eval_mode,
104eaf62fffSJeremy L Thompson     const CeedScalar *identity, const CeedScalar *interp,
105eaf62fffSJeremy L Thompson     const CeedScalar *grad, const CeedScalar **basis_ptr) {
106eaf62fffSJeremy L Thompson   switch (eval_mode) {
107eaf62fffSJeremy L Thompson   case CEED_EVAL_NONE:
108eaf62fffSJeremy L Thompson     *basis_ptr = identity;
109eaf62fffSJeremy L Thompson     break;
110eaf62fffSJeremy L Thompson   case CEED_EVAL_INTERP:
111eaf62fffSJeremy L Thompson     *basis_ptr = interp;
112eaf62fffSJeremy L Thompson     break;
113eaf62fffSJeremy L Thompson   case CEED_EVAL_GRAD:
114eaf62fffSJeremy L Thompson     *basis_ptr = grad;
115eaf62fffSJeremy L Thompson     break;
116eaf62fffSJeremy L Thompson   case CEED_EVAL_WEIGHT:
117eaf62fffSJeremy L Thompson   case CEED_EVAL_DIV:
118eaf62fffSJeremy L Thompson   case CEED_EVAL_CURL:
119eaf62fffSJeremy L Thompson     break; // Caught by QF Assembly
120eaf62fffSJeremy L Thompson   }
121eaf62fffSJeremy L Thompson }
122eaf62fffSJeremy L Thompson 
123eaf62fffSJeremy L Thompson /**
124eaf62fffSJeremy L Thompson   @brief Create point block restriction for active operator field
125eaf62fffSJeremy L Thompson 
126eaf62fffSJeremy L Thompson   @param[in] rstr              Original CeedElemRestriction for active field
127eaf62fffSJeremy L Thompson   @param[out] pointblock_rstr  Address of the variable where the newly created
128eaf62fffSJeremy L Thompson                                  CeedElemRestriction will be stored
129eaf62fffSJeremy L Thompson 
130eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
131eaf62fffSJeremy L Thompson 
132eaf62fffSJeremy L Thompson   @ref Developer
133eaf62fffSJeremy L Thompson **/
134eaf62fffSJeremy L Thompson static int CeedOperatorCreateActivePointBlockRestriction(
135eaf62fffSJeremy L Thompson   CeedElemRestriction rstr,
136eaf62fffSJeremy L Thompson   CeedElemRestriction *pointblock_rstr) {
137eaf62fffSJeremy L Thompson   int ierr;
138eaf62fffSJeremy L Thompson   Ceed ceed;
139eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetCeed(rstr, &ceed); CeedChk(ierr);
140eaf62fffSJeremy L Thompson   const CeedInt *offsets;
141eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetOffsets(rstr, CEED_MEM_HOST, &offsets);
142eaf62fffSJeremy L Thompson   CeedChk(ierr);
143eaf62fffSJeremy L Thompson 
144eaf62fffSJeremy L Thompson   // Expand offsets
145eaf62fffSJeremy L Thompson   CeedInt num_elem, num_comp, elem_size, comp_stride, max = 1,
146eaf62fffSJeremy L Thompson                                                       *pointblock_offsets;
147eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr, &num_elem); CeedChk(ierr);
148eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumComponents(rstr, &num_comp); CeedChk(ierr);
149eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr, &elem_size); CeedChk(ierr);
150eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetCompStride(rstr, &comp_stride); CeedChk(ierr);
151eaf62fffSJeremy L Thompson   CeedInt shift = num_comp;
152eaf62fffSJeremy L Thompson   if (comp_stride != 1)
153eaf62fffSJeremy L Thompson     shift *= num_comp;
154eaf62fffSJeremy L Thompson   ierr = CeedCalloc(num_elem*elem_size, &pointblock_offsets);
155eaf62fffSJeremy L Thompson   CeedChk(ierr);
156eaf62fffSJeremy L Thompson   for (CeedInt i = 0; i < num_elem*elem_size; i++) {
157eaf62fffSJeremy L Thompson     pointblock_offsets[i] = offsets[i]*shift;
158eaf62fffSJeremy L Thompson     if (pointblock_offsets[i] > max)
159eaf62fffSJeremy L Thompson       max = pointblock_offsets[i];
160eaf62fffSJeremy L Thompson   }
161eaf62fffSJeremy L Thompson 
162eaf62fffSJeremy L Thompson   // Create new restriction
163eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionCreate(ceed, num_elem, elem_size, num_comp*num_comp,
164eaf62fffSJeremy L Thompson                                    1, max + num_comp*num_comp, CEED_MEM_HOST,
165eaf62fffSJeremy L Thompson                                    CEED_OWN_POINTER, pointblock_offsets, pointblock_rstr);
166eaf62fffSJeremy L Thompson   CeedChk(ierr);
167eaf62fffSJeremy L Thompson 
168eaf62fffSJeremy L Thompson   // Cleanup
169eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionRestoreOffsets(rstr, &offsets); CeedChk(ierr);
170eaf62fffSJeremy L Thompson 
171eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
172eaf62fffSJeremy L Thompson }
173eaf62fffSJeremy L Thompson 
174eaf62fffSJeremy L Thompson /**
175eaf62fffSJeremy L Thompson   @brief Core logic for assembling operator diagonal or point block diagonal
176eaf62fffSJeremy L Thompson 
177eaf62fffSJeremy L Thompson   @param[in] op             CeedOperator to assemble point block diagonal
178eaf62fffSJeremy L Thompson   @param[in] request        Address of CeedRequest for non-blocking completion, else
179eaf62fffSJeremy L Thompson                               CEED_REQUEST_IMMEDIATE
180eaf62fffSJeremy L Thompson   @param[in] is_pointblock  Boolean flag to assemble diagonal or point block diagonal
181eaf62fffSJeremy L Thompson   @param[out] assembled     CeedVector to store assembled diagonal
182eaf62fffSJeremy L Thompson 
183eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
184eaf62fffSJeremy L Thompson 
185eaf62fffSJeremy L Thompson   @ref Developer
186eaf62fffSJeremy L Thompson **/
187eaf62fffSJeremy L Thompson static inline int CeedSingleOperatorAssembleAddDiagonal(CeedOperator op,
188eaf62fffSJeremy L Thompson     CeedRequest *request, const bool is_pointblock, CeedVector assembled) {
189eaf62fffSJeremy L Thompson   int ierr;
190eaf62fffSJeremy L Thompson   Ceed ceed;
191eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChk(ierr);
192eaf62fffSJeremy L Thompson 
193eaf62fffSJeremy L Thompson   // Assemble QFunction
194eaf62fffSJeremy L Thompson   CeedQFunction qf;
195eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChk(ierr);
196eaf62fffSJeremy L Thompson   CeedInt num_input_fields, num_output_fields;
197eaf62fffSJeremy L Thompson   ierr= CeedQFunctionGetNumArgs(qf, &num_input_fields, &num_output_fields);
198eaf62fffSJeremy L Thompson   CeedChk(ierr);
199eaf62fffSJeremy L Thompson   CeedVector assembled_qf;
200eaf62fffSJeremy L Thompson   CeedElemRestriction rstr;
20170a7ffb3SJeremy L Thompson   ierr = CeedOperatorLinearAssembleQFunctionBuildOrUpdate(op,  &assembled_qf,
20270a7ffb3SJeremy L Thompson          &rstr, request); CeedChk(ierr);
203eaf62fffSJeremy L Thompson   CeedInt layout[3];
204eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetELayout(rstr, &layout); CeedChk(ierr);
205eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionDestroy(&rstr); CeedChk(ierr);
206eaf62fffSJeremy L Thompson   CeedScalar max_norm = 0;
207eaf62fffSJeremy L Thompson   ierr = CeedVectorNorm(assembled_qf, CEED_NORM_MAX, &max_norm); CeedChk(ierr);
208eaf62fffSJeremy L Thompson 
209eaf62fffSJeremy L Thompson   // Determine active input basis
210eaf62fffSJeremy L Thompson   CeedOperatorField *op_fields;
211eaf62fffSJeremy L Thompson   CeedQFunctionField *qf_fields;
2127e7773b5SJeremy L Thompson   ierr = CeedOperatorGetFields(op, NULL, &op_fields, NULL, NULL); CeedChk(ierr);
2137e7773b5SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qf_fields, NULL, NULL); CeedChk(ierr);
214eaf62fffSJeremy L Thompson   CeedInt num_eval_mode_in = 0, num_comp, dim = 1;
215eaf62fffSJeremy L Thompson   CeedEvalMode *eval_mode_in = NULL;
216eaf62fffSJeremy L Thompson   CeedBasis basis_in = NULL;
217eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_in = NULL;
218eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_input_fields; i++) {
219eaf62fffSJeremy L Thompson     CeedVector vec;
220eaf62fffSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(op_fields[i], &vec); CeedChk(ierr);
221eaf62fffSJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
222eaf62fffSJeremy L Thompson       CeedElemRestriction rstr;
223eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(op_fields[i], &basis_in); CeedChk(ierr);
224eaf62fffSJeremy L Thompson       ierr = CeedBasisGetNumComponents(basis_in, &num_comp); CeedChk(ierr);
225eaf62fffSJeremy L Thompson       ierr = CeedBasisGetDimension(basis_in, &dim); CeedChk(ierr);
226eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(op_fields[i], &rstr); CeedChk(ierr);
227eaf62fffSJeremy L Thompson       if (rstr_in && rstr_in != rstr)
228eaf62fffSJeremy L Thompson         // LCOV_EXCL_START
229eaf62fffSJeremy L Thompson         return CeedError(ceed, CEED_ERROR_BACKEND,
230eaf62fffSJeremy L Thompson                          "Multi-field non-composite operator diagonal assembly not supported");
231eaf62fffSJeremy L Thompson       // LCOV_EXCL_STOP
232eaf62fffSJeremy L Thompson       rstr_in = rstr;
233eaf62fffSJeremy L Thompson       CeedEvalMode eval_mode;
234eaf62fffSJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode); CeedChk(ierr);
235eaf62fffSJeremy L Thompson       switch (eval_mode) {
236eaf62fffSJeremy L Thompson       case CEED_EVAL_NONE:
237eaf62fffSJeremy L Thompson       case CEED_EVAL_INTERP:
238eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_in + 1, &eval_mode_in); CeedChk(ierr);
239eaf62fffSJeremy L Thompson         eval_mode_in[num_eval_mode_in] = eval_mode;
240eaf62fffSJeremy L Thompson         num_eval_mode_in += 1;
241eaf62fffSJeremy L Thompson         break;
242eaf62fffSJeremy L Thompson       case CEED_EVAL_GRAD:
243eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_in + dim, &eval_mode_in); CeedChk(ierr);
244eaf62fffSJeremy L Thompson         for (CeedInt d=0; d<dim; d++)
245eaf62fffSJeremy L Thompson           eval_mode_in[num_eval_mode_in+d] = eval_mode;
246eaf62fffSJeremy L Thompson         num_eval_mode_in += dim;
247eaf62fffSJeremy L Thompson         break;
248eaf62fffSJeremy L Thompson       case CEED_EVAL_WEIGHT:
249eaf62fffSJeremy L Thompson       case CEED_EVAL_DIV:
250eaf62fffSJeremy L Thompson       case CEED_EVAL_CURL:
251eaf62fffSJeremy L Thompson         break; // Caught by QF Assembly
252eaf62fffSJeremy L Thompson       }
253eaf62fffSJeremy L Thompson     }
254eaf62fffSJeremy L Thompson   }
255eaf62fffSJeremy L Thompson 
256eaf62fffSJeremy L Thompson   // Determine active output basis
2577e7773b5SJeremy L Thompson   ierr = CeedOperatorGetFields(op, NULL, NULL, NULL, &op_fields); CeedChk(ierr);
2587e7773b5SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, NULL, NULL, &qf_fields); CeedChk(ierr);
259eaf62fffSJeremy L Thompson   CeedInt num_eval_mode_out = 0;
260eaf62fffSJeremy L Thompson   CeedEvalMode *eval_mode_out = NULL;
261eaf62fffSJeremy L Thompson   CeedBasis basis_out = NULL;
262eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_out = NULL;
263eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_output_fields; i++) {
264eaf62fffSJeremy L Thompson     CeedVector vec;
265eaf62fffSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(op_fields[i], &vec); CeedChk(ierr);
266eaf62fffSJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
267eaf62fffSJeremy L Thompson       CeedElemRestriction rstr;
268eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(op_fields[i], &basis_out); CeedChk(ierr);
269eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(op_fields[i], &rstr); CeedChk(ierr);
270eaf62fffSJeremy L Thompson       if (rstr_out && rstr_out != rstr)
271eaf62fffSJeremy L Thompson         // LCOV_EXCL_START
272eaf62fffSJeremy L Thompson         return CeedError(ceed, CEED_ERROR_BACKEND,
273eaf62fffSJeremy L Thompson                          "Multi-field non-composite operator diagonal assembly not supported");
274eaf62fffSJeremy L Thompson       // LCOV_EXCL_STOP
275eaf62fffSJeremy L Thompson       rstr_out = rstr;
276eaf62fffSJeremy L Thompson       CeedEvalMode eval_mode;
277eaf62fffSJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode); CeedChk(ierr);
278eaf62fffSJeremy L Thompson       switch (eval_mode) {
279eaf62fffSJeremy L Thompson       case CEED_EVAL_NONE:
280eaf62fffSJeremy L Thompson       case CEED_EVAL_INTERP:
281eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_out + 1, &eval_mode_out); CeedChk(ierr);
282eaf62fffSJeremy L Thompson         eval_mode_out[num_eval_mode_out] = eval_mode;
283eaf62fffSJeremy L Thompson         num_eval_mode_out += 1;
284eaf62fffSJeremy L Thompson         break;
285eaf62fffSJeremy L Thompson       case CEED_EVAL_GRAD:
286eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_out + dim, &eval_mode_out); CeedChk(ierr);
287eaf62fffSJeremy L Thompson         for (CeedInt d=0; d<dim; d++)
288eaf62fffSJeremy L Thompson           eval_mode_out[num_eval_mode_out+d] = eval_mode;
289eaf62fffSJeremy L Thompson         num_eval_mode_out += dim;
290eaf62fffSJeremy L Thompson         break;
291eaf62fffSJeremy L Thompson       case CEED_EVAL_WEIGHT:
292eaf62fffSJeremy L Thompson       case CEED_EVAL_DIV:
293eaf62fffSJeremy L Thompson       case CEED_EVAL_CURL:
294eaf62fffSJeremy L Thompson         break; // Caught by QF Assembly
295eaf62fffSJeremy L Thompson       }
296eaf62fffSJeremy L Thompson     }
297eaf62fffSJeremy L Thompson   }
298eaf62fffSJeremy L Thompson 
299eaf62fffSJeremy L Thompson   // Assemble point block diagonal restriction, if needed
300eaf62fffSJeremy L Thompson   CeedElemRestriction diag_rstr = rstr_out;
301eaf62fffSJeremy L Thompson   if (is_pointblock) {
302eaf62fffSJeremy L Thompson     ierr = CeedOperatorCreateActivePointBlockRestriction(rstr_out, &diag_rstr);
303eaf62fffSJeremy L Thompson     CeedChk(ierr);
304eaf62fffSJeremy L Thompson   }
305eaf62fffSJeremy L Thompson 
306eaf62fffSJeremy L Thompson   // Create diagonal vector
307eaf62fffSJeremy L Thompson   CeedVector elem_diag;
308eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionCreateVector(diag_rstr, NULL, &elem_diag);
309eaf62fffSJeremy L Thompson   CeedChk(ierr);
310eaf62fffSJeremy L Thompson 
311eaf62fffSJeremy L Thompson   // Assemble element operator diagonals
3129c774eddSJeremy L Thompson   CeedScalar *elem_diag_array;
3139c774eddSJeremy L Thompson   const CeedScalar *assembled_qf_array;
314eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(elem_diag, 0.0); CeedChk(ierr);
315eaf62fffSJeremy L Thompson   ierr = CeedVectorGetArray(elem_diag, CEED_MEM_HOST, &elem_diag_array);
316eaf62fffSJeremy L Thompson   CeedChk(ierr);
3179c774eddSJeremy L Thompson   ierr = CeedVectorGetArrayRead(assembled_qf, CEED_MEM_HOST, &assembled_qf_array);
318eaf62fffSJeremy L Thompson   CeedChk(ierr);
319eaf62fffSJeremy L Thompson   CeedInt num_elem, num_nodes, num_qpts;
320eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(diag_rstr, &num_elem); CeedChk(ierr);
321eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumNodes(basis_in, &num_nodes); CeedChk(ierr);
322eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_in, &num_qpts); CeedChk(ierr);
323eaf62fffSJeremy L Thompson   // Basis matrices
324eaf62fffSJeremy L Thompson   const CeedScalar *interp_in, *interp_out, *grad_in, *grad_out;
325eaf62fffSJeremy L Thompson   CeedScalar *identity = NULL;
326eaf62fffSJeremy L Thompson   bool evalNone = false;
327eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_eval_mode_in; i++)
328eaf62fffSJeremy L Thompson     evalNone = evalNone || (eval_mode_in[i] == CEED_EVAL_NONE);
329eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_eval_mode_out; i++)
330eaf62fffSJeremy L Thompson     evalNone = evalNone || (eval_mode_out[i] == CEED_EVAL_NONE);
331eaf62fffSJeremy L Thompson   if (evalNone) {
332eaf62fffSJeremy L Thompson     ierr = CeedCalloc(num_qpts*num_nodes, &identity); CeedChk(ierr);
333eaf62fffSJeremy L Thompson     for (CeedInt i=0; i<(num_nodes<num_qpts?num_nodes:num_qpts); i++)
334eaf62fffSJeremy L Thompson       identity[i*num_nodes+i] = 1.0;
335eaf62fffSJeremy L Thompson   }
336eaf62fffSJeremy L Thompson   ierr = CeedBasisGetInterp(basis_in, &interp_in); CeedChk(ierr);
337eaf62fffSJeremy L Thompson   ierr = CeedBasisGetInterp(basis_out, &interp_out); CeedChk(ierr);
338eaf62fffSJeremy L Thompson   ierr = CeedBasisGetGrad(basis_in, &grad_in); CeedChk(ierr);
339eaf62fffSJeremy L Thompson   ierr = CeedBasisGetGrad(basis_out, &grad_out); CeedChk(ierr);
340eaf62fffSJeremy L Thompson   // Compute the diagonal of B^T D B
341eaf62fffSJeremy L Thompson   // Each element
342eaf62fffSJeremy L Thompson   const CeedScalar qf_value_bound = max_norm*100*CEED_EPSILON;
343eaf62fffSJeremy L Thompson   for (CeedInt e=0; e<num_elem; e++) {
344eaf62fffSJeremy L Thompson     CeedInt d_out = -1;
345eaf62fffSJeremy L Thompson     // Each basis eval mode pair
346eaf62fffSJeremy L Thompson     for (CeedInt e_out=0; e_out<num_eval_mode_out; e_out++) {
347eaf62fffSJeremy L Thompson       const CeedScalar *bt = NULL;
348eaf62fffSJeremy L Thompson       if (eval_mode_out[e_out] == CEED_EVAL_GRAD)
349eaf62fffSJeremy L Thompson         d_out += 1;
350eaf62fffSJeremy L Thompson       CeedOperatorGetBasisPointer(eval_mode_out[e_out], identity, interp_out,
351eaf62fffSJeremy L Thompson                                   &grad_out[d_out*num_qpts*num_nodes], &bt);
352eaf62fffSJeremy L Thompson       CeedInt d_in = -1;
353eaf62fffSJeremy L Thompson       for (CeedInt e_in=0; e_in<num_eval_mode_in; e_in++) {
354eaf62fffSJeremy L Thompson         const CeedScalar *b = NULL;
355eaf62fffSJeremy L Thompson         if (eval_mode_in[e_in] == CEED_EVAL_GRAD)
356eaf62fffSJeremy L Thompson           d_in += 1;
357eaf62fffSJeremy L Thompson         CeedOperatorGetBasisPointer(eval_mode_in[e_in], identity, interp_in,
358eaf62fffSJeremy L Thompson                                     &grad_in[d_in*num_qpts*num_nodes], &b);
359eaf62fffSJeremy L Thompson         // Each component
360eaf62fffSJeremy L Thompson         for (CeedInt c_out=0; c_out<num_comp; c_out++)
361eaf62fffSJeremy L Thompson           // Each qpoint/node pair
362eaf62fffSJeremy L Thompson           for (CeedInt q=0; q<num_qpts; q++)
363eaf62fffSJeremy L Thompson             if (is_pointblock) {
364eaf62fffSJeremy L Thompson               // Point Block Diagonal
365eaf62fffSJeremy L Thompson               for (CeedInt c_in=0; c_in<num_comp; c_in++) {
366eaf62fffSJeremy L Thompson                 const CeedScalar qf_value =
367eaf62fffSJeremy L Thompson                   assembled_qf_array[q*layout[0] + (((e_in*num_comp+c_in)*
368eaf62fffSJeremy L Thompson                                                      num_eval_mode_out+e_out)*num_comp+c_out)*layout[1] + e*layout[2]];
369eaf62fffSJeremy L Thompson                 if (fabs(qf_value) > qf_value_bound)
370eaf62fffSJeremy L Thompson                   for (CeedInt n=0; n<num_nodes; n++)
371eaf62fffSJeremy L Thompson                     elem_diag_array[((e*num_comp+c_out)*num_comp+c_in)*num_nodes+n] +=
372eaf62fffSJeremy L Thompson                       bt[q*num_nodes+n] * qf_value * b[q*num_nodes+n];
373eaf62fffSJeremy L Thompson               }
374eaf62fffSJeremy L Thompson             } else {
375eaf62fffSJeremy L Thompson               // Diagonal Only
376eaf62fffSJeremy L Thompson               const CeedScalar qf_value =
377eaf62fffSJeremy L Thompson                 assembled_qf_array[q*layout[0] + (((e_in*num_comp+c_out)*
378eaf62fffSJeremy L Thompson                                                    num_eval_mode_out+e_out)*num_comp+c_out)*layout[1] + e*layout[2]];
379eaf62fffSJeremy L Thompson               if (fabs(qf_value) > qf_value_bound)
380eaf62fffSJeremy L Thompson                 for (CeedInt n=0; n<num_nodes; n++)
381eaf62fffSJeremy L Thompson                   elem_diag_array[(e*num_comp+c_out)*num_nodes+n] +=
382eaf62fffSJeremy L Thompson                     bt[q*num_nodes+n] * qf_value * b[q*num_nodes+n];
383eaf62fffSJeremy L Thompson             }
384eaf62fffSJeremy L Thompson       }
385eaf62fffSJeremy L Thompson     }
386eaf62fffSJeremy L Thompson   }
387eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArray(elem_diag, &elem_diag_array); CeedChk(ierr);
3889c774eddSJeremy L Thompson   ierr = CeedVectorRestoreArrayRead(assembled_qf, &assembled_qf_array);
3899c774eddSJeremy L Thompson   CeedChk(ierr);
390eaf62fffSJeremy L Thompson 
391eaf62fffSJeremy L Thompson   // Assemble local operator diagonal
392eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionApply(diag_rstr, CEED_TRANSPOSE, elem_diag,
393eaf62fffSJeremy L Thompson                                   assembled, request); CeedChk(ierr);
394eaf62fffSJeremy L Thompson 
395eaf62fffSJeremy L Thompson   // Cleanup
396eaf62fffSJeremy L Thompson   if (is_pointblock) {
397eaf62fffSJeremy L Thompson     ierr = CeedElemRestrictionDestroy(&diag_rstr); CeedChk(ierr);
398eaf62fffSJeremy L Thompson   }
399eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&assembled_qf); CeedChk(ierr);
400eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&elem_diag); CeedChk(ierr);
401eaf62fffSJeremy L Thompson   ierr = CeedFree(&eval_mode_in); CeedChk(ierr);
402eaf62fffSJeremy L Thompson   ierr = CeedFree(&eval_mode_out); CeedChk(ierr);
403eaf62fffSJeremy L Thompson   ierr = CeedFree(&identity); CeedChk(ierr);
404eaf62fffSJeremy L Thompson 
405eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
406eaf62fffSJeremy L Thompson }
407eaf62fffSJeremy L Thompson 
408eaf62fffSJeremy L Thompson /**
409eaf62fffSJeremy L Thompson   @brief Core logic for assembling composite operator diagonal
410eaf62fffSJeremy L Thompson 
411eaf62fffSJeremy L Thompson   @param[in] op             CeedOperator to assemble point block diagonal
412eaf62fffSJeremy L Thompson   @param[in] request        Address of CeedRequest for non-blocking completion, else
413eaf62fffSJeremy L Thompson                             CEED_REQUEST_IMMEDIATE
414eaf62fffSJeremy L Thompson   @param[in] is_pointblock  Boolean flag to assemble diagonal or point block diagonal
415eaf62fffSJeremy L Thompson   @param[out] assembled     CeedVector to store assembled diagonal
416eaf62fffSJeremy L Thompson 
417eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
418eaf62fffSJeremy L Thompson 
419eaf62fffSJeremy L Thompson   @ref Developer
420eaf62fffSJeremy L Thompson **/
421eaf62fffSJeremy L Thompson static inline int CeedCompositeOperatorLinearAssembleAddDiagonal(
422eaf62fffSJeremy L Thompson   CeedOperator op, CeedRequest *request, const bool is_pointblock,
423eaf62fffSJeremy L Thompson   CeedVector assembled) {
424eaf62fffSJeremy L Thompson   int ierr;
425eaf62fffSJeremy L Thompson   CeedInt num_sub;
426eaf62fffSJeremy L Thompson   CeedOperator *suboperators;
427eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetNumSub(op, &num_sub); CeedChk(ierr);
428eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetSubList(op, &suboperators); CeedChk(ierr);
429eaf62fffSJeremy L Thompson   for (CeedInt i = 0; i < num_sub; i++) {
430eaf62fffSJeremy L Thompson     ierr = CeedSingleOperatorAssembleAddDiagonal(suboperators[i], request,
431eaf62fffSJeremy L Thompson            is_pointblock, assembled); CeedChk(ierr);
432eaf62fffSJeremy L Thompson   }
433eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
434eaf62fffSJeremy L Thompson }
435eaf62fffSJeremy L Thompson 
436eaf62fffSJeremy L Thompson /**
437eaf62fffSJeremy L Thompson   @brief Build nonzero pattern for non-composite operator
438eaf62fffSJeremy L Thompson 
439eaf62fffSJeremy L Thompson   Users should generally use CeedOperatorLinearAssembleSymbolic()
440eaf62fffSJeremy L Thompson 
441eaf62fffSJeremy L Thompson   @param[in] op      CeedOperator to assemble nonzero pattern
442eaf62fffSJeremy L Thompson   @param[in] offset  Offset for number of entries
443eaf62fffSJeremy L Thompson   @param[out] rows   Row number for each entry
444eaf62fffSJeremy L Thompson   @param[out] cols   Column number for each entry
445eaf62fffSJeremy L Thompson 
446eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
447eaf62fffSJeremy L Thompson 
448eaf62fffSJeremy L Thompson   @ref Developer
449eaf62fffSJeremy L Thompson **/
450eaf62fffSJeremy L Thompson static int CeedSingleOperatorAssembleSymbolic(CeedOperator op, CeedInt offset,
451eaf62fffSJeremy L Thompson     CeedInt *rows, CeedInt *cols) {
452eaf62fffSJeremy L Thompson   int ierr;
453eaf62fffSJeremy L Thompson   Ceed ceed = op->ceed;
454f04ea552SJeremy L Thompson   if (op->is_composite)
455eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
456eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
457eaf62fffSJeremy L Thompson                      "Composite operator not supported");
458eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
459eaf62fffSJeremy L Thompson 
460eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_in;
461eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetActiveElemRestriction(op, &rstr_in); CeedChk(ierr);
462eaf62fffSJeremy L Thompson   CeedInt num_elem, elem_size, num_nodes, num_comp;
463eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr_in, &num_elem); CeedChk(ierr);
464eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr_in, &elem_size); CeedChk(ierr);
465eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetLVectorSize(rstr_in, &num_nodes); CeedChk(ierr);
466eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumComponents(rstr_in, &num_comp); CeedChk(ierr);
467eaf62fffSJeremy L Thompson   CeedInt layout_er[3];
468eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetELayout(rstr_in, &layout_er); CeedChk(ierr);
469eaf62fffSJeremy L Thompson 
470eaf62fffSJeremy L Thompson   CeedInt local_num_entries = elem_size*num_comp * elem_size*num_comp * num_elem;
471eaf62fffSJeremy L Thompson 
472eaf62fffSJeremy L Thompson   // Determine elem_dof relation
473eaf62fffSJeremy L Thompson   CeedVector index_vec;
474eaf62fffSJeremy L Thompson   ierr = CeedVectorCreate(ceed, num_nodes, &index_vec); CeedChk(ierr);
475eaf62fffSJeremy L Thompson   CeedScalar *array;
4769c774eddSJeremy L Thompson   ierr = CeedVectorGetArrayWrite(index_vec, CEED_MEM_HOST, &array); CeedChk(ierr);
477eaf62fffSJeremy L Thompson   for (CeedInt i = 0; i < num_nodes; ++i) {
478eaf62fffSJeremy L Thompson     array[i] = i;
479eaf62fffSJeremy L Thompson   }
480eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArray(index_vec, &array); CeedChk(ierr);
481eaf62fffSJeremy L Thompson   CeedVector elem_dof;
482eaf62fffSJeremy L Thompson   ierr = CeedVectorCreate(ceed, num_elem * elem_size * num_comp, &elem_dof);
483eaf62fffSJeremy L Thompson   CeedChk(ierr);
484eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(elem_dof, 0.0); CeedChk(ierr);
485eaf62fffSJeremy L Thompson   CeedElemRestrictionApply(rstr_in, CEED_NOTRANSPOSE, index_vec,
486eaf62fffSJeremy L Thompson                            elem_dof, CEED_REQUEST_IMMEDIATE); CeedChk(ierr);
487eaf62fffSJeremy L Thompson   const CeedScalar *elem_dof_a;
488eaf62fffSJeremy L Thompson   ierr = CeedVectorGetArrayRead(elem_dof, CEED_MEM_HOST, &elem_dof_a);
489eaf62fffSJeremy L Thompson   CeedChk(ierr);
490eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&index_vec); CeedChk(ierr);
491eaf62fffSJeremy L Thompson 
492eaf62fffSJeremy L Thompson   // Determine i, j locations for element matrices
493eaf62fffSJeremy L Thompson   CeedInt count = 0;
494eaf62fffSJeremy L Thompson   for (int e = 0; e < num_elem; ++e) {
495eaf62fffSJeremy L Thompson     for (int comp_in = 0; comp_in < num_comp; ++comp_in) {
496eaf62fffSJeremy L Thompson       for (int comp_out = 0; comp_out < num_comp; ++comp_out) {
497eaf62fffSJeremy L Thompson         for (int i = 0; i < elem_size; ++i) {
498eaf62fffSJeremy L Thompson           for (int j = 0; j < elem_size; ++j) {
499eaf62fffSJeremy L Thompson             const CeedInt elem_dof_index_row = (i)*layout_er[0] +
500eaf62fffSJeremy L Thompson                                                (comp_out)*layout_er[1] + e*layout_er[2];
501eaf62fffSJeremy L Thompson             const CeedInt elem_dof_index_col = (j)*layout_er[0] +
502eaf62fffSJeremy L Thompson                                                (comp_in)*layout_er[1] + e*layout_er[2];
503eaf62fffSJeremy L Thompson 
504eaf62fffSJeremy L Thompson             const CeedInt row = elem_dof_a[elem_dof_index_row];
505eaf62fffSJeremy L Thompson             const CeedInt col = elem_dof_a[elem_dof_index_col];
506eaf62fffSJeremy L Thompson 
507eaf62fffSJeremy L Thompson             rows[offset + count] = row;
508eaf62fffSJeremy L Thompson             cols[offset + count] = col;
509eaf62fffSJeremy L Thompson             count++;
510eaf62fffSJeremy L Thompson           }
511eaf62fffSJeremy L Thompson         }
512eaf62fffSJeremy L Thompson       }
513eaf62fffSJeremy L Thompson     }
514eaf62fffSJeremy L Thompson   }
515eaf62fffSJeremy L Thompson   if (count != local_num_entries)
516eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
517eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_MAJOR, "Error computing assembled entries");
518eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
519eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArrayRead(elem_dof, &elem_dof_a); CeedChk(ierr);
520eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&elem_dof); CeedChk(ierr);
521eaf62fffSJeremy L Thompson 
522eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
523eaf62fffSJeremy L Thompson }
524eaf62fffSJeremy L Thompson 
525eaf62fffSJeremy L Thompson /**
526eaf62fffSJeremy L Thompson   @brief Assemble nonzero entries for non-composite operator
527eaf62fffSJeremy L Thompson 
528eaf62fffSJeremy L Thompson   Users should generally use CeedOperatorLinearAssemble()
529eaf62fffSJeremy L Thompson 
530eaf62fffSJeremy L Thompson   @param[in] op       CeedOperator to assemble
531eaf62fffSJeremy L Thompson   @param[out] offset  Offest for number of entries
532eaf62fffSJeremy L Thompson   @param[out] values  Values to assemble into matrix
533eaf62fffSJeremy L Thompson 
534eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
535eaf62fffSJeremy L Thompson 
536eaf62fffSJeremy L Thompson   @ref Developer
537eaf62fffSJeremy L Thompson **/
538eaf62fffSJeremy L Thompson static int CeedSingleOperatorAssemble(CeedOperator op, CeedInt offset,
539eaf62fffSJeremy L Thompson                                       CeedVector values) {
540eaf62fffSJeremy L Thompson   int ierr;
541eaf62fffSJeremy L Thompson   Ceed ceed = op->ceed;
542f04ea552SJeremy L Thompson   if (op->is_composite)
543eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
544eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
545eaf62fffSJeremy L Thompson                      "Composite operator not supported");
546eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
547eaf62fffSJeremy L Thompson 
548eaf62fffSJeremy L Thompson   // Assemble QFunction
549eaf62fffSJeremy L Thompson   CeedQFunction qf;
550eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChk(ierr);
551eaf62fffSJeremy L Thompson   CeedVector assembled_qf;
552eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_q;
55370a7ffb3SJeremy L Thompson   ierr = CeedOperatorLinearAssembleQFunctionBuildOrUpdate(
554eaf62fffSJeremy L Thompson            op, &assembled_qf, &rstr_q, CEED_REQUEST_IMMEDIATE); CeedChk(ierr);
555eaf62fffSJeremy L Thompson 
556eaf62fffSJeremy L Thompson   CeedInt qf_length;
557eaf62fffSJeremy L Thompson   ierr = CeedVectorGetLength(assembled_qf, &qf_length); CeedChk(ierr);
558eaf62fffSJeremy L Thompson 
5597e7773b5SJeremy L Thompson   CeedInt num_input_fields, num_output_fields;
560eaf62fffSJeremy L Thompson   CeedOperatorField *input_fields;
561eaf62fffSJeremy L Thompson   CeedOperatorField *output_fields;
5627e7773b5SJeremy L Thompson   ierr = CeedOperatorGetFields(op, &num_input_fields, &input_fields,
5637e7773b5SJeremy L Thompson                                &num_output_fields, &output_fields); CeedChk(ierr);
564eaf62fffSJeremy L Thompson 
565eaf62fffSJeremy L Thompson   // Determine active input basis
566eaf62fffSJeremy L Thompson   CeedQFunctionField *qf_fields;
5677e7773b5SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qf_fields, NULL, NULL); CeedChk(ierr);
568eaf62fffSJeremy L Thompson   CeedInt num_eval_mode_in = 0, dim = 1;
569eaf62fffSJeremy L Thompson   CeedEvalMode *eval_mode_in = NULL;
570eaf62fffSJeremy L Thompson   CeedBasis basis_in = NULL;
571eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_in = NULL;
572eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_input_fields; i++) {
573eaf62fffSJeremy L Thompson     CeedVector vec;
574eaf62fffSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(input_fields[i], &vec); CeedChk(ierr);
575eaf62fffSJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
576eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(input_fields[i], &basis_in);
577eaf62fffSJeremy L Thompson       CeedChk(ierr);
578eaf62fffSJeremy L Thompson       ierr = CeedBasisGetDimension(basis_in, &dim); CeedChk(ierr);
579eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(input_fields[i], &rstr_in);
580eaf62fffSJeremy L Thompson       CeedChk(ierr);
581eaf62fffSJeremy L Thompson       CeedEvalMode eval_mode;
582eaf62fffSJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode);
583eaf62fffSJeremy L Thompson       CeedChk(ierr);
584eaf62fffSJeremy L Thompson       switch (eval_mode) {
585eaf62fffSJeremy L Thompson       case CEED_EVAL_NONE:
586eaf62fffSJeremy L Thompson       case CEED_EVAL_INTERP:
587eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_in + 1, &eval_mode_in); CeedChk(ierr);
588eaf62fffSJeremy L Thompson         eval_mode_in[num_eval_mode_in] = eval_mode;
589eaf62fffSJeremy L Thompson         num_eval_mode_in += 1;
590eaf62fffSJeremy L Thompson         break;
591eaf62fffSJeremy L Thompson       case CEED_EVAL_GRAD:
592eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_in + dim, &eval_mode_in); CeedChk(ierr);
593eaf62fffSJeremy L Thompson         for (CeedInt d=0; d<dim; d++) {
594eaf62fffSJeremy L Thompson           eval_mode_in[num_eval_mode_in+d] = eval_mode;
595eaf62fffSJeremy L Thompson         }
596eaf62fffSJeremy L Thompson         num_eval_mode_in += dim;
597eaf62fffSJeremy L Thompson         break;
598eaf62fffSJeremy L Thompson       case CEED_EVAL_WEIGHT:
599eaf62fffSJeremy L Thompson       case CEED_EVAL_DIV:
600eaf62fffSJeremy L Thompson       case CEED_EVAL_CURL:
601eaf62fffSJeremy L Thompson         break; // Caught by QF Assembly
602eaf62fffSJeremy L Thompson       }
603eaf62fffSJeremy L Thompson     }
604eaf62fffSJeremy L Thompson   }
605eaf62fffSJeremy L Thompson 
606eaf62fffSJeremy L Thompson   // Determine active output basis
6077e7773b5SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, NULL, NULL, &qf_fields); CeedChk(ierr);
608eaf62fffSJeremy L Thompson   CeedInt num_eval_mode_out = 0;
609eaf62fffSJeremy L Thompson   CeedEvalMode *eval_mode_out = NULL;
610eaf62fffSJeremy L Thompson   CeedBasis basis_out = NULL;
611eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_out = NULL;
612eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_output_fields; i++) {
613eaf62fffSJeremy L Thompson     CeedVector vec;
614eaf62fffSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(output_fields[i], &vec); CeedChk(ierr);
615eaf62fffSJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
616eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(output_fields[i], &basis_out);
617eaf62fffSJeremy L Thompson       CeedChk(ierr);
618eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(output_fields[i], &rstr_out);
619eaf62fffSJeremy L Thompson       CeedChk(ierr);
620eaf62fffSJeremy L Thompson       CeedEvalMode eval_mode;
621eaf62fffSJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode);
622eaf62fffSJeremy L Thompson       CeedChk(ierr);
623eaf62fffSJeremy L Thompson       switch (eval_mode) {
624eaf62fffSJeremy L Thompson       case CEED_EVAL_NONE:
625eaf62fffSJeremy L Thompson       case CEED_EVAL_INTERP:
626eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_out + 1, &eval_mode_out); CeedChk(ierr);
627eaf62fffSJeremy L Thompson         eval_mode_out[num_eval_mode_out] = eval_mode;
628eaf62fffSJeremy L Thompson         num_eval_mode_out += 1;
629eaf62fffSJeremy L Thompson         break;
630eaf62fffSJeremy L Thompson       case CEED_EVAL_GRAD:
631eaf62fffSJeremy L Thompson         ierr = CeedRealloc(num_eval_mode_out + dim, &eval_mode_out); CeedChk(ierr);
632eaf62fffSJeremy L Thompson         for (CeedInt d=0; d<dim; d++) {
633eaf62fffSJeremy L Thompson           eval_mode_out[num_eval_mode_out+d] = eval_mode;
634eaf62fffSJeremy L Thompson         }
635eaf62fffSJeremy L Thompson         num_eval_mode_out += dim;
636eaf62fffSJeremy L Thompson         break;
637eaf62fffSJeremy L Thompson       case CEED_EVAL_WEIGHT:
638eaf62fffSJeremy L Thompson       case CEED_EVAL_DIV:
639eaf62fffSJeremy L Thompson       case CEED_EVAL_CURL:
640eaf62fffSJeremy L Thompson         break; // Caught by QF Assembly
641eaf62fffSJeremy L Thompson       }
642eaf62fffSJeremy L Thompson     }
643eaf62fffSJeremy L Thompson   }
644eaf62fffSJeremy L Thompson 
645eaf62fffSJeremy L Thompson   if (num_eval_mode_in == 0 || num_eval_mode_out == 0)
646eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
647eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
648eaf62fffSJeremy L Thompson                      "Cannot assemble operator with out inputs/outputs");
649eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
650eaf62fffSJeremy L Thompson 
651eaf62fffSJeremy L Thompson   CeedInt num_elem, elem_size, num_qpts, num_comp;
652eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr_in, &num_elem); CeedChk(ierr);
653eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr_in, &elem_size); CeedChk(ierr);
654eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumComponents(rstr_in, &num_comp); CeedChk(ierr);
655eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_in, &num_qpts); CeedChk(ierr);
656eaf62fffSJeremy L Thompson 
657eaf62fffSJeremy L Thompson   CeedInt local_num_entries = elem_size*num_comp * elem_size*num_comp * num_elem;
658eaf62fffSJeremy L Thompson 
659eaf62fffSJeremy L Thompson   // loop over elements and put in data structure
660eaf62fffSJeremy L Thompson   const CeedScalar *interp_in, *grad_in;
661eaf62fffSJeremy L Thompson   ierr = CeedBasisGetInterp(basis_in, &interp_in); CeedChk(ierr);
662eaf62fffSJeremy L Thompson   ierr = CeedBasisGetGrad(basis_in, &grad_in); CeedChk(ierr);
663eaf62fffSJeremy L Thompson 
664eaf62fffSJeremy L Thompson   const CeedScalar *assembled_qf_array;
665eaf62fffSJeremy L Thompson   ierr = CeedVectorGetArrayRead(assembled_qf, CEED_MEM_HOST, &assembled_qf_array);
666eaf62fffSJeremy L Thompson   CeedChk(ierr);
667eaf62fffSJeremy L Thompson 
668eaf62fffSJeremy L Thompson   CeedInt layout_qf[3];
669eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetELayout(rstr_q, &layout_qf); CeedChk(ierr);
670eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionDestroy(&rstr_q); CeedChk(ierr);
671eaf62fffSJeremy L Thompson 
672eaf62fffSJeremy L Thompson   // we store B_mat_in, B_mat_out, BTD, elem_mat in row-major order
673eaf62fffSJeremy L Thompson   CeedScalar B_mat_in[(num_qpts * num_eval_mode_in) * elem_size];
674eaf62fffSJeremy L Thompson   CeedScalar B_mat_out[(num_qpts * num_eval_mode_out) * elem_size];
675eaf62fffSJeremy L Thompson   CeedScalar D_mat[num_eval_mode_out * num_eval_mode_in *
676eaf62fffSJeremy L Thompson                                      num_qpts]; // logically 3-tensor
677eaf62fffSJeremy L Thompson   CeedScalar BTD[elem_size * num_qpts*num_eval_mode_in];
678eaf62fffSJeremy L Thompson   CeedScalar elem_mat[elem_size * elem_size];
679eaf62fffSJeremy L Thompson   int count = 0;
680eaf62fffSJeremy L Thompson   CeedScalar *vals;
6819c774eddSJeremy L Thompson   ierr = CeedVectorGetArrayWrite(values, CEED_MEM_HOST, &vals); CeedChk(ierr);
682eaf62fffSJeremy L Thompson   for (int e = 0; e < num_elem; ++e) {
683eaf62fffSJeremy L Thompson     for (int comp_in = 0; comp_in < num_comp; ++comp_in) {
684eaf62fffSJeremy L Thompson       for (int comp_out = 0; comp_out < num_comp; ++comp_out) {
685eaf62fffSJeremy L Thompson         for (int ell = 0; ell < (num_qpts * num_eval_mode_in) * elem_size; ++ell) {
686eaf62fffSJeremy L Thompson           B_mat_in[ell] = 0.0;
687eaf62fffSJeremy L Thompson         }
688eaf62fffSJeremy L Thompson         for (int ell = 0; ell < (num_qpts * num_eval_mode_out) * elem_size; ++ell) {
689eaf62fffSJeremy L Thompson           B_mat_out[ell] = 0.0;
690eaf62fffSJeremy L Thompson         }
691eaf62fffSJeremy L Thompson         // Store block-diagonal D matrix as collection of small dense blocks
692eaf62fffSJeremy L Thompson         for (int ell = 0; ell < num_eval_mode_in*num_eval_mode_out*num_qpts; ++ell) {
693eaf62fffSJeremy L Thompson           D_mat[ell] = 0.0;
694eaf62fffSJeremy L Thompson         }
695eaf62fffSJeremy L Thompson         // form element matrix itself (for each block component)
696eaf62fffSJeremy L Thompson         for (int ell = 0; ell < elem_size*elem_size; ++ell) {
697eaf62fffSJeremy L Thompson           elem_mat[ell] = 0.0;
698eaf62fffSJeremy L Thompson         }
699eaf62fffSJeremy L Thompson         for (int q = 0; q < num_qpts; ++q) {
700eaf62fffSJeremy L Thompson           for (int n = 0; n < elem_size; ++n) {
701eaf62fffSJeremy L Thompson             CeedInt d_in = -1;
702eaf62fffSJeremy L Thompson             for (int e_in = 0; e_in < num_eval_mode_in; ++e_in) {
703eaf62fffSJeremy L Thompson               const int qq = num_eval_mode_in*q;
704eaf62fffSJeremy L Thompson               if (eval_mode_in[e_in] == CEED_EVAL_INTERP) {
705eaf62fffSJeremy L Thompson                 B_mat_in[(qq+e_in)*elem_size + n] += interp_in[q * elem_size + n];
706eaf62fffSJeremy L Thompson               } else if (eval_mode_in[e_in] == CEED_EVAL_GRAD) {
707eaf62fffSJeremy L Thompson                 d_in += 1;
708eaf62fffSJeremy L Thompson                 B_mat_in[(qq+e_in)*elem_size + n] +=
709eaf62fffSJeremy L Thompson                   grad_in[(d_in*num_qpts+q) * elem_size + n];
710eaf62fffSJeremy L Thompson               } else {
711eaf62fffSJeremy L Thompson                 // LCOV_EXCL_START
712eaf62fffSJeremy L Thompson                 return CeedError(ceed, CEED_ERROR_UNSUPPORTED, "Not implemented!");
713eaf62fffSJeremy L Thompson                 // LCOV_EXCL_STOP
714eaf62fffSJeremy L Thompson               }
715eaf62fffSJeremy L Thompson             }
716eaf62fffSJeremy L Thompson             CeedInt d_out = -1;
717eaf62fffSJeremy L Thompson             for (int e_out = 0; e_out < num_eval_mode_out; ++e_out) {
718eaf62fffSJeremy L Thompson               const int qq = num_eval_mode_out*q;
719eaf62fffSJeremy L Thompson               if (eval_mode_out[e_out] == CEED_EVAL_INTERP) {
720eaf62fffSJeremy L Thompson                 B_mat_out[(qq+e_out)*elem_size + n] += interp_in[q * elem_size + n];
721eaf62fffSJeremy L Thompson               } else if (eval_mode_out[e_out] == CEED_EVAL_GRAD) {
722eaf62fffSJeremy L Thompson                 d_out += 1;
723eaf62fffSJeremy L Thompson                 B_mat_out[(qq+e_out)*elem_size + n] +=
724eaf62fffSJeremy L Thompson                   grad_in[(d_out*num_qpts+q) * elem_size + n];
725eaf62fffSJeremy L Thompson               } else {
726eaf62fffSJeremy L Thompson                 // LCOV_EXCL_START
727eaf62fffSJeremy L Thompson                 return CeedError(ceed, CEED_ERROR_UNSUPPORTED, "Not implemented!");
728eaf62fffSJeremy L Thompson                 // LCOV_EXCL_STOP
729eaf62fffSJeremy L Thompson               }
730eaf62fffSJeremy L Thompson             }
731eaf62fffSJeremy L Thompson           }
732eaf62fffSJeremy L Thompson           for (int ei = 0; ei < num_eval_mode_out; ++ei) {
733eaf62fffSJeremy L Thompson             for (int ej = 0; ej < num_eval_mode_in; ++ej) {
734eaf62fffSJeremy L Thompson               const int eval_mode_index = ((ei*num_comp+comp_in)*num_eval_mode_in+ej)*num_comp
735eaf62fffSJeremy L Thompson                                           +comp_out;
736eaf62fffSJeremy L Thompson               const int index = q*layout_qf[0] + eval_mode_index*layout_qf[1] +
737eaf62fffSJeremy L Thompson                                 e*layout_qf[2];
738eaf62fffSJeremy L Thompson               D_mat[(ei*num_eval_mode_in+ej)*num_qpts + q] += assembled_qf_array[index];
739eaf62fffSJeremy L Thompson             }
740eaf62fffSJeremy L Thompson           }
741eaf62fffSJeremy L Thompson         }
742eaf62fffSJeremy L Thompson         // Compute B^T*D
743eaf62fffSJeremy L Thompson         for (int ell = 0; ell < elem_size*num_qpts*num_eval_mode_in; ++ell) {
744eaf62fffSJeremy L Thompson           BTD[ell] = 0.0;
745eaf62fffSJeremy L Thompson         }
746eaf62fffSJeremy L Thompson         for (int j = 0; j<elem_size; ++j) {
747eaf62fffSJeremy L Thompson           for (int q = 0; q<num_qpts; ++q) {
748eaf62fffSJeremy L Thompson             int qq = num_eval_mode_out*q;
749eaf62fffSJeremy L Thompson             for (int ei = 0; ei < num_eval_mode_in; ++ei) {
750eaf62fffSJeremy L Thompson               for (int ej = 0; ej < num_eval_mode_out; ++ej) {
751eaf62fffSJeremy L Thompson                 BTD[j*(num_qpts*num_eval_mode_in) + (qq+ei)] +=
752eaf62fffSJeremy L Thompson                   B_mat_out[(qq+ej)*elem_size + j] * D_mat[(ei*num_eval_mode_in+ej)*num_qpts + q];
753eaf62fffSJeremy L Thompson               }
754eaf62fffSJeremy L Thompson             }
755eaf62fffSJeremy L Thompson           }
756eaf62fffSJeremy L Thompson         }
757eaf62fffSJeremy L Thompson 
758eaf62fffSJeremy L Thompson         ierr = CeedMatrixMultiply(ceed, BTD, B_mat_in, elem_mat, elem_size,
759eaf62fffSJeremy L Thompson                                   elem_size, num_qpts*num_eval_mode_in); CeedChk(ierr);
760eaf62fffSJeremy L Thompson 
761eaf62fffSJeremy L Thompson         // put element matrix in coordinate data structure
762eaf62fffSJeremy L Thompson         for (int i = 0; i < elem_size; ++i) {
763eaf62fffSJeremy L Thompson           for (int j = 0; j < elem_size; ++j) {
764eaf62fffSJeremy L Thompson             vals[offset + count] = elem_mat[i*elem_size + j];
765eaf62fffSJeremy L Thompson             count++;
766eaf62fffSJeremy L Thompson           }
767eaf62fffSJeremy L Thompson         }
768eaf62fffSJeremy L Thompson       }
769eaf62fffSJeremy L Thompson     }
770eaf62fffSJeremy L Thompson   }
771eaf62fffSJeremy L Thompson   if (count != local_num_entries)
772eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
773eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_MAJOR, "Error computing entries");
774eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
775eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArray(values, &vals); CeedChk(ierr);
776eaf62fffSJeremy L Thompson 
777eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArrayRead(assembled_qf, &assembled_qf_array);
778eaf62fffSJeremy L Thompson   CeedChk(ierr);
779eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&assembled_qf); CeedChk(ierr);
780eaf62fffSJeremy L Thompson   ierr = CeedFree(&eval_mode_in); CeedChk(ierr);
781eaf62fffSJeremy L Thompson   ierr = CeedFree(&eval_mode_out); CeedChk(ierr);
782eaf62fffSJeremy L Thompson 
783eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
784eaf62fffSJeremy L Thompson }
785eaf62fffSJeremy L Thompson 
786eaf62fffSJeremy L Thompson /**
787eaf62fffSJeremy L Thompson   @brief Count number of entries for assembled CeedOperator
788eaf62fffSJeremy L Thompson 
789eaf62fffSJeremy L Thompson   @param[in] op            CeedOperator to assemble
790eaf62fffSJeremy L Thompson   @param[out] num_entries  Number of entries in assembled representation
791eaf62fffSJeremy L Thompson 
792eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
793eaf62fffSJeremy L Thompson 
794eaf62fffSJeremy L Thompson   @ref Utility
795eaf62fffSJeremy L Thompson **/
796eaf62fffSJeremy L Thompson static int CeedSingleOperatorAssemblyCountEntries(CeedOperator op,
797eaf62fffSJeremy L Thompson     CeedInt *num_entries) {
798eaf62fffSJeremy L Thompson   int ierr;
799eaf62fffSJeremy L Thompson   CeedElemRestriction rstr;
800eaf62fffSJeremy L Thompson   CeedInt num_elem, elem_size, num_comp;
801eaf62fffSJeremy L Thompson 
802f04ea552SJeremy L Thompson   if (op->is_composite)
803eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
804eaf62fffSJeremy L Thompson     return CeedError(op->ceed, CEED_ERROR_UNSUPPORTED,
805eaf62fffSJeremy L Thompson                      "Composite operator not supported");
806eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
807eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetActiveElemRestriction(op, &rstr); CeedChk(ierr);
808eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr, &num_elem); CeedChk(ierr);
809eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr, &elem_size); CeedChk(ierr);
810eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumComponents(rstr, &num_comp); CeedChk(ierr);
811eaf62fffSJeremy L Thompson   *num_entries = elem_size*num_comp * elem_size*num_comp * num_elem;
812eaf62fffSJeremy L Thompson 
813eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
814eaf62fffSJeremy L Thompson }
815eaf62fffSJeremy L Thompson 
816eaf62fffSJeremy L Thompson /**
817eaf62fffSJeremy L Thompson   @brief Common code for creating a multigrid coarse operator and level
818eaf62fffSJeremy L Thompson            transfer operators for a CeedOperator
819eaf62fffSJeremy L Thompson 
820eaf62fffSJeremy L Thompson   @param[in] op_fine       Fine grid operator
821eaf62fffSJeremy L Thompson   @param[in] p_mult_fine   L-vector multiplicity in parallel gather/scatter
822eaf62fffSJeremy L Thompson   @param[in] rstr_coarse   Coarse grid restriction
823eaf62fffSJeremy L Thompson   @param[in] basis_coarse  Coarse grid active vector basis
824eaf62fffSJeremy L Thompson   @param[in] basis_c_to_f  Basis for coarse to fine interpolation
825eaf62fffSJeremy L Thompson   @param[out] op_coarse    Coarse grid operator
826eaf62fffSJeremy L Thompson   @param[out] op_prolong   Coarse to fine operator
827eaf62fffSJeremy L Thompson   @param[out] op_restrict  Fine to coarse operator
828eaf62fffSJeremy L Thompson 
829eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
830eaf62fffSJeremy L Thompson 
831eaf62fffSJeremy L Thompson   @ref Developer
832eaf62fffSJeremy L Thompson **/
833eaf62fffSJeremy L Thompson static int CeedSingleOperatorMultigridLevel(CeedOperator op_fine,
834eaf62fffSJeremy L Thompson     CeedVector p_mult_fine, CeedElemRestriction rstr_coarse, CeedBasis basis_coarse,
835eaf62fffSJeremy L Thompson     CeedBasis basis_c_to_f, CeedOperator *op_coarse, CeedOperator *op_prolong,
836eaf62fffSJeremy L Thompson     CeedOperator *op_restrict) {
837eaf62fffSJeremy L Thompson   int ierr;
838eaf62fffSJeremy L Thompson   Ceed ceed;
839eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetCeed(op_fine, &ceed); CeedChk(ierr);
840eaf62fffSJeremy L Thompson 
841eaf62fffSJeremy L Thompson   // Check for composite operator
842eaf62fffSJeremy L Thompson   bool is_composite;
843eaf62fffSJeremy L Thompson   ierr = CeedOperatorIsComposite(op_fine, &is_composite); CeedChk(ierr);
844eaf62fffSJeremy L Thompson   if (is_composite)
845eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
846eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
847eaf62fffSJeremy L Thompson                      "Automatic multigrid setup for composite operators not supported");
848eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
849eaf62fffSJeremy L Thompson 
850eaf62fffSJeremy L Thompson   // Coarse Grid
851eaf62fffSJeremy L Thompson   ierr = CeedOperatorCreate(ceed, op_fine->qf, op_fine->dqf, op_fine->dqfT,
852eaf62fffSJeremy L Thompson                             op_coarse); CeedChk(ierr);
853eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_fine = NULL;
854eaf62fffSJeremy L Thompson   // -- Clone input fields
855eaf62fffSJeremy L Thompson   for (int i = 0; i < op_fine->qf->num_input_fields; i++) {
856eaf62fffSJeremy L Thompson     if (op_fine->input_fields[i]->vec == CEED_VECTOR_ACTIVE) {
857eaf62fffSJeremy L Thompson       rstr_fine = op_fine->input_fields[i]->elem_restr;
858eaf62fffSJeremy L Thompson       ierr = CeedOperatorSetField(*op_coarse, op_fine->input_fields[i]->field_name,
859eaf62fffSJeremy L Thompson                                   rstr_coarse, basis_coarse, CEED_VECTOR_ACTIVE);
860eaf62fffSJeremy L Thompson       CeedChk(ierr);
861eaf62fffSJeremy L Thompson     } else {
862eaf62fffSJeremy L Thompson       ierr = CeedOperatorSetField(*op_coarse, op_fine->input_fields[i]->field_name,
863eaf62fffSJeremy L Thompson                                   op_fine->input_fields[i]->elem_restr,
864eaf62fffSJeremy L Thompson                                   op_fine->input_fields[i]->basis,
865eaf62fffSJeremy L Thompson                                   op_fine->input_fields[i]->vec); CeedChk(ierr);
866eaf62fffSJeremy L Thompson     }
867eaf62fffSJeremy L Thompson   }
868eaf62fffSJeremy L Thompson   // -- Clone output fields
869eaf62fffSJeremy L Thompson   for (int i = 0; i < op_fine->qf->num_output_fields; i++) {
870eaf62fffSJeremy L Thompson     if (op_fine->output_fields[i]->vec == CEED_VECTOR_ACTIVE) {
871eaf62fffSJeremy L Thompson       ierr = CeedOperatorSetField(*op_coarse, op_fine->output_fields[i]->field_name,
872eaf62fffSJeremy L Thompson                                   rstr_coarse, basis_coarse, CEED_VECTOR_ACTIVE);
873eaf62fffSJeremy L Thompson       CeedChk(ierr);
874eaf62fffSJeremy L Thompson     } else {
875eaf62fffSJeremy L Thompson       ierr = CeedOperatorSetField(*op_coarse, op_fine->output_fields[i]->field_name,
876eaf62fffSJeremy L Thompson                                   op_fine->output_fields[i]->elem_restr,
877eaf62fffSJeremy L Thompson                                   op_fine->output_fields[i]->basis,
878eaf62fffSJeremy L Thompson                                   op_fine->output_fields[i]->vec); CeedChk(ierr);
879eaf62fffSJeremy L Thompson     }
880eaf62fffSJeremy L Thompson   }
881eaf62fffSJeremy L Thompson 
882eaf62fffSJeremy L Thompson   // Multiplicity vector
883eaf62fffSJeremy L Thompson   CeedVector mult_vec, mult_e_vec;
884eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionCreateVector(rstr_fine, &mult_vec, &mult_e_vec);
885eaf62fffSJeremy L Thompson   CeedChk(ierr);
886eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(mult_e_vec, 0.0); CeedChk(ierr);
887eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionApply(rstr_fine, CEED_NOTRANSPOSE, p_mult_fine,
888eaf62fffSJeremy L Thompson                                   mult_e_vec, CEED_REQUEST_IMMEDIATE); CeedChk(ierr);
889eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(mult_vec, 0.0); CeedChk(ierr);
890eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionApply(rstr_fine, CEED_TRANSPOSE, mult_e_vec, mult_vec,
891eaf62fffSJeremy L Thompson                                   CEED_REQUEST_IMMEDIATE); CeedChk(ierr);
892eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&mult_e_vec); CeedChk(ierr);
893eaf62fffSJeremy L Thompson   ierr = CeedVectorReciprocal(mult_vec); CeedChk(ierr);
894eaf62fffSJeremy L Thompson 
895eaf62fffSJeremy L Thompson   // Restriction
896eaf62fffSJeremy L Thompson   CeedInt num_comp;
897eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumComponents(basis_coarse, &num_comp); CeedChk(ierr);
898eaf62fffSJeremy L Thompson   CeedQFunction qf_restrict;
899eaf62fffSJeremy L Thompson   ierr = CeedQFunctionCreateInteriorByName(ceed, "Scale", &qf_restrict);
900eaf62fffSJeremy L Thompson   CeedChk(ierr);
901eaf62fffSJeremy L Thompson   CeedInt *num_comp_r_data;
902eaf62fffSJeremy L Thompson   ierr = CeedCalloc(1, &num_comp_r_data); CeedChk(ierr);
903eaf62fffSJeremy L Thompson   num_comp_r_data[0] = num_comp;
904eaf62fffSJeremy L Thompson   CeedQFunctionContext ctx_r;
905eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextCreate(ceed, &ctx_r); CeedChk(ierr);
906eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextSetData(ctx_r, CEED_MEM_HOST, CEED_OWN_POINTER,
907eaf62fffSJeremy L Thompson                                      sizeof(*num_comp_r_data), num_comp_r_data);
908eaf62fffSJeremy L Thompson   CeedChk(ierr);
909eaf62fffSJeremy L Thompson   ierr = CeedQFunctionSetContext(qf_restrict, ctx_r); CeedChk(ierr);
910eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextDestroy(&ctx_r); CeedChk(ierr);
911eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddInput(qf_restrict, "input", num_comp, CEED_EVAL_NONE);
912eaf62fffSJeremy L Thompson   CeedChk(ierr);
913eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddInput(qf_restrict, "scale", num_comp, CEED_EVAL_NONE);
914eaf62fffSJeremy L Thompson   CeedChk(ierr);
915eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddOutput(qf_restrict, "output", num_comp,
916eaf62fffSJeremy L Thompson                                 CEED_EVAL_INTERP); CeedChk(ierr);
917eaf62fffSJeremy L Thompson 
918eaf62fffSJeremy L Thompson   ierr = CeedOperatorCreate(ceed, qf_restrict, CEED_QFUNCTION_NONE,
919eaf62fffSJeremy L Thompson                             CEED_QFUNCTION_NONE, op_restrict);
920eaf62fffSJeremy L Thompson   CeedChk(ierr);
921eaf62fffSJeremy L Thompson   ierr = CeedOperatorSetField(*op_restrict, "input", rstr_fine,
922eaf62fffSJeremy L Thompson                               CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE);
923eaf62fffSJeremy L Thompson   CeedChk(ierr);
924eaf62fffSJeremy L Thompson   ierr = CeedOperatorSetField(*op_restrict, "scale", rstr_fine,
925eaf62fffSJeremy L Thompson                               CEED_BASIS_COLLOCATED, mult_vec);
926eaf62fffSJeremy L Thompson   CeedChk(ierr);
927eaf62fffSJeremy L Thompson   ierr = CeedOperatorSetField(*op_restrict, "output", rstr_coarse, basis_c_to_f,
928eaf62fffSJeremy L Thompson                               CEED_VECTOR_ACTIVE); CeedChk(ierr);
929eaf62fffSJeremy L Thompson 
930eaf62fffSJeremy L Thompson   // Prolongation
931eaf62fffSJeremy L Thompson   CeedQFunction qf_prolong;
932eaf62fffSJeremy L Thompson   ierr = CeedQFunctionCreateInteriorByName(ceed, "Scale", &qf_prolong);
933eaf62fffSJeremy L Thompson   CeedChk(ierr);
934eaf62fffSJeremy L Thompson   CeedInt *num_comp_p_data;
935eaf62fffSJeremy L Thompson   ierr = CeedCalloc(1, &num_comp_p_data); CeedChk(ierr);
936eaf62fffSJeremy L Thompson   num_comp_p_data[0] = num_comp;
937eaf62fffSJeremy L Thompson   CeedQFunctionContext ctx_p;
938eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextCreate(ceed, &ctx_p); CeedChk(ierr);
939eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextSetData(ctx_p, CEED_MEM_HOST, CEED_OWN_POINTER,
940eaf62fffSJeremy L Thompson                                      sizeof(*num_comp_p_data), num_comp_p_data);
941eaf62fffSJeremy L Thompson   CeedChk(ierr);
942eaf62fffSJeremy L Thompson   ierr = CeedQFunctionSetContext(qf_prolong, ctx_p); CeedChk(ierr);
943eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextDestroy(&ctx_p); CeedChk(ierr);
944eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddInput(qf_prolong, "input", num_comp, CEED_EVAL_INTERP);
945eaf62fffSJeremy L Thompson   CeedChk(ierr);
946eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddInput(qf_prolong, "scale", num_comp, CEED_EVAL_NONE);
947eaf62fffSJeremy L Thompson   CeedChk(ierr);
948eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddOutput(qf_prolong, "output", num_comp, CEED_EVAL_NONE);
949eaf62fffSJeremy L Thompson   CeedChk(ierr);
950eaf62fffSJeremy L Thompson 
951eaf62fffSJeremy L Thompson   ierr = CeedOperatorCreate(ceed, qf_prolong, CEED_QFUNCTION_NONE,
952eaf62fffSJeremy L Thompson                             CEED_QFUNCTION_NONE, op_prolong);
953eaf62fffSJeremy L Thompson   CeedChk(ierr);
954eaf62fffSJeremy L Thompson   ierr = CeedOperatorSetField(*op_prolong, "input", rstr_coarse, basis_c_to_f,
955eaf62fffSJeremy L Thompson                               CEED_VECTOR_ACTIVE); CeedChk(ierr);
956eaf62fffSJeremy L Thompson   ierr = CeedOperatorSetField(*op_prolong, "scale", rstr_fine,
957eaf62fffSJeremy L Thompson                               CEED_BASIS_COLLOCATED, mult_vec);
958eaf62fffSJeremy L Thompson   CeedChk(ierr);
959eaf62fffSJeremy L Thompson   ierr = CeedOperatorSetField(*op_prolong, "output", rstr_fine,
960eaf62fffSJeremy L Thompson                               CEED_BASIS_COLLOCATED, CEED_VECTOR_ACTIVE);
961eaf62fffSJeremy L Thompson   CeedChk(ierr);
962eaf62fffSJeremy L Thompson 
963eaf62fffSJeremy L Thompson   // Cleanup
964eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&mult_vec); CeedChk(ierr);
965eaf62fffSJeremy L Thompson   ierr = CeedBasisDestroy(&basis_c_to_f); CeedChk(ierr);
966eaf62fffSJeremy L Thompson   ierr = CeedQFunctionDestroy(&qf_restrict); CeedChk(ierr);
967eaf62fffSJeremy L Thompson   ierr = CeedQFunctionDestroy(&qf_prolong); CeedChk(ierr);
968eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
969eaf62fffSJeremy L Thompson }
970eaf62fffSJeremy L Thompson 
971eaf62fffSJeremy L Thompson /**
972eaf62fffSJeremy L Thompson   @brief Build 1D mass matrix and Laplacian with perturbation
973eaf62fffSJeremy L Thompson 
974eaf62fffSJeremy L Thompson   @param[in] interp_1d    Interpolation matrix in one dimension
975eaf62fffSJeremy L Thompson   @param[in] grad_1d      Gradient matrix in one dimension
976eaf62fffSJeremy L Thompson   @param[in] q_weight_1d  Quadrature weights in one dimension
977eaf62fffSJeremy L Thompson   @param[in] P_1d         Number of basis nodes in one dimension
978eaf62fffSJeremy L Thompson   @param[in] Q_1d         Number of quadrature points in one dimension
979eaf62fffSJeremy L Thompson   @param[in] dim          Dimension of basis
980eaf62fffSJeremy L Thompson   @param[out] mass        Assembled mass matrix in one dimension
981eaf62fffSJeremy L Thompson   @param[out] laplace     Assembled perturbed Laplacian in one dimension
982eaf62fffSJeremy L Thompson 
983eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
984eaf62fffSJeremy L Thompson 
985eaf62fffSJeremy L Thompson   @ref Developer
986eaf62fffSJeremy L Thompson **/
987eaf62fffSJeremy L Thompson CeedPragmaOptimizeOff
988eaf62fffSJeremy L Thompson static int CeedBuildMassLaplace(const CeedScalar *interp_1d,
989eaf62fffSJeremy L Thompson                                 const CeedScalar *grad_1d,
990eaf62fffSJeremy L Thompson                                 const CeedScalar *q_weight_1d, CeedInt P_1d,
991eaf62fffSJeremy L Thompson                                 CeedInt Q_1d, CeedInt dim,
992eaf62fffSJeremy L Thompson                                 CeedScalar *mass, CeedScalar *laplace) {
993eaf62fffSJeremy L Thompson 
994eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<P_1d; i++)
995eaf62fffSJeremy L Thompson     for (CeedInt j=0; j<P_1d; j++) {
996eaf62fffSJeremy L Thompson       CeedScalar sum = 0.0;
997eaf62fffSJeremy L Thompson       for (CeedInt k=0; k<Q_1d; k++)
998eaf62fffSJeremy L Thompson         sum += interp_1d[k*P_1d+i]*q_weight_1d[k]*interp_1d[k*P_1d+j];
999eaf62fffSJeremy L Thompson       mass[i+j*P_1d] = sum;
1000eaf62fffSJeremy L Thompson     }
1001eaf62fffSJeremy L Thompson   // -- Laplacian
1002eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<P_1d; i++)
1003eaf62fffSJeremy L Thompson     for (CeedInt j=0; j<P_1d; j++) {
1004eaf62fffSJeremy L Thompson       CeedScalar sum = 0.0;
1005eaf62fffSJeremy L Thompson       for (CeedInt k=0; k<Q_1d; k++)
1006eaf62fffSJeremy L Thompson         sum += grad_1d[k*P_1d+i]*q_weight_1d[k]*grad_1d[k*P_1d+j];
1007eaf62fffSJeremy L Thompson       laplace[i+j*P_1d] = sum;
1008eaf62fffSJeremy L Thompson     }
1009eaf62fffSJeremy L Thompson   CeedScalar perturbation = dim>2 ? 1e-6 : 1e-4;
1010eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<P_1d; i++)
1011eaf62fffSJeremy L Thompson     laplace[i+P_1d*i] += perturbation;
1012eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1013eaf62fffSJeremy L Thompson }
1014eaf62fffSJeremy L Thompson CeedPragmaOptimizeOn
1015eaf62fffSJeremy L Thompson 
1016eaf62fffSJeremy L Thompson /// @}
1017eaf62fffSJeremy L Thompson 
1018eaf62fffSJeremy L Thompson /// ----------------------------------------------------------------------------
1019eaf62fffSJeremy L Thompson /// CeedOperator Public API
1020eaf62fffSJeremy L Thompson /// ----------------------------------------------------------------------------
1021eaf62fffSJeremy L Thompson /// @addtogroup CeedOperatorUser
1022eaf62fffSJeremy L Thompson /// @{
1023eaf62fffSJeremy L Thompson 
1024eaf62fffSJeremy L Thompson /**
1025eaf62fffSJeremy L Thompson   @brief Assemble a linear CeedQFunction associated with a CeedOperator
1026eaf62fffSJeremy L Thompson 
1027eaf62fffSJeremy L Thompson   This returns a CeedVector containing a matrix at each quadrature point
1028eaf62fffSJeremy L Thompson     providing the action of the CeedQFunction associated with the CeedOperator.
1029eaf62fffSJeremy L Thompson     The vector 'assembled' is of shape
1030eaf62fffSJeremy L Thompson       [num_elements, num_input_fields, num_output_fields, num_quad_points]
1031eaf62fffSJeremy L Thompson     and contains column-major matrices representing the action of the
1032eaf62fffSJeremy L Thompson     CeedQFunction for a corresponding quadrature point on an element. Inputs and
1033eaf62fffSJeremy L Thompson     outputs are in the order provided by the user when adding CeedOperator fields.
1034eaf62fffSJeremy L Thompson     For example, a CeedQFunction with inputs 'u' and 'gradu' and outputs 'gradv' and
1035eaf62fffSJeremy L Thompson     'v', provided in that order, would result in an assembled QFunction that
1036eaf62fffSJeremy L Thompson     consists of (1 + dim) x (dim + 1) matrices at each quadrature point acting
1037eaf62fffSJeremy L Thompson     on the input [u, du_0, du_1] and producing the output [dv_0, dv_1, v].
1038eaf62fffSJeremy L Thompson 
1039f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1040f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1041f04ea552SJeremy L Thompson 
1042eaf62fffSJeremy L Thompson   @param op              CeedOperator to assemble CeedQFunction
1043eaf62fffSJeremy L Thompson   @param[out] assembled  CeedVector to store assembled CeedQFunction at
1044eaf62fffSJeremy L Thompson                            quadrature points
1045eaf62fffSJeremy L Thompson   @param[out] rstr       CeedElemRestriction for CeedVector containing assembled
1046eaf62fffSJeremy L Thompson                            CeedQFunction
1047eaf62fffSJeremy L Thompson   @param request         Address of CeedRequest for non-blocking completion, else
1048eaf62fffSJeremy L Thompson                            @ref CEED_REQUEST_IMMEDIATE
1049eaf62fffSJeremy L Thompson 
1050eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1051eaf62fffSJeremy L Thompson 
1052eaf62fffSJeremy L Thompson   @ref User
1053eaf62fffSJeremy L Thompson **/
1054eaf62fffSJeremy L Thompson int CeedOperatorLinearAssembleQFunction(CeedOperator op, CeedVector *assembled,
1055eaf62fffSJeremy L Thompson                                         CeedElemRestriction *rstr,
1056eaf62fffSJeremy L Thompson                                         CeedRequest *request) {
1057eaf62fffSJeremy L Thompson   int ierr;
1058eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1059eaf62fffSJeremy L Thompson 
1060eaf62fffSJeremy L Thompson   // Backend version
1061eaf62fffSJeremy L Thompson   if (op->LinearAssembleQFunction) {
106270a7ffb3SJeremy L Thompson     ierr = op->LinearAssembleQFunction(op, assembled, rstr, request);
106370a7ffb3SJeremy L Thompson     CeedChk(ierr);
1064eaf62fffSJeremy L Thompson   } else {
1065eaf62fffSJeremy L Thompson     // Fallback to reference Ceed
1066eaf62fffSJeremy L Thompson     if (!op->op_fallback) {
1067eaf62fffSJeremy L Thompson       ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1068eaf62fffSJeremy L Thompson     }
1069eaf62fffSJeremy L Thompson     // Assemble
1070eaf62fffSJeremy L Thompson     ierr = CeedOperatorLinearAssembleQFunction(op->op_fallback, assembled,
1071eaf62fffSJeremy L Thompson            rstr, request); CeedChk(ierr);
107270a7ffb3SJeremy L Thompson   }
1073eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1074eaf62fffSJeremy L Thompson }
107570a7ffb3SJeremy L Thompson 
107670a7ffb3SJeremy L Thompson /**
107770a7ffb3SJeremy L Thompson   @brief Assemble CeedQFunction and store result internall. Return copied
107870a7ffb3SJeremy L Thompson            references of stored data to the caller. Caller is responsible for
107970a7ffb3SJeremy L Thompson            ownership and destruction of the copied references. See also
108070a7ffb3SJeremy L Thompson            @ref CeedOperatorLinearAssembleQFunction
108170a7ffb3SJeremy L Thompson 
108270a7ffb3SJeremy L Thompson   @param op              CeedOperator to assemble CeedQFunction
108370a7ffb3SJeremy L Thompson   @param assembled       CeedVector to store assembled CeedQFunction at
108470a7ffb3SJeremy L Thompson                            quadrature points
108570a7ffb3SJeremy L Thompson   @param rstr            CeedElemRestriction for CeedVector containing assembled
108670a7ffb3SJeremy L Thompson                            CeedQFunction
108770a7ffb3SJeremy L Thompson   @param request         Address of CeedRequest for non-blocking completion, else
108870a7ffb3SJeremy L Thompson                            @ref CEED_REQUEST_IMMEDIATE
108970a7ffb3SJeremy L Thompson 
109070a7ffb3SJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
109170a7ffb3SJeremy L Thompson 
109270a7ffb3SJeremy L Thompson   @ref User
109370a7ffb3SJeremy L Thompson **/
109470a7ffb3SJeremy L Thompson int CeedOperatorLinearAssembleQFunctionBuildOrUpdate(CeedOperator op,
109570a7ffb3SJeremy L Thompson     CeedVector *assembled, CeedElemRestriction *rstr, CeedRequest *request) {
109670a7ffb3SJeremy L Thompson   int ierr;
109770a7ffb3SJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
109870a7ffb3SJeremy L Thompson 
109970a7ffb3SJeremy L Thompson   // Backend version
110070a7ffb3SJeremy L Thompson   if (op->LinearAssembleQFunctionUpdate) {
110170a7ffb3SJeremy L Thompson     if (op->has_qf_assembled) {
110270a7ffb3SJeremy L Thompson       ierr = op->LinearAssembleQFunctionUpdate(op, op->qf_assembled,
110370a7ffb3SJeremy L Thompson              op->qf_assembled_rstr, request);
110470a7ffb3SJeremy L Thompson     } else {
110570a7ffb3SJeremy L Thompson       ierr = op->LinearAssembleQFunction(op, &op->qf_assembled,
110670a7ffb3SJeremy L Thompson                                          &op->qf_assembled_rstr, request);
110770a7ffb3SJeremy L Thompson     }
110870a7ffb3SJeremy L Thompson     CeedChk(ierr);
110970a7ffb3SJeremy L Thompson     op->has_qf_assembled = true;
111070a7ffb3SJeremy L Thompson     // Copy reference to internally held copy
111170a7ffb3SJeremy L Thompson     *assembled = NULL;
111270a7ffb3SJeremy L Thompson     *rstr = NULL;
111370a7ffb3SJeremy L Thompson     ierr = CeedVectorReferenceCopy(op->qf_assembled, assembled); CeedChk(ierr);
111470a7ffb3SJeremy L Thompson     ierr = CeedElemRestrictionReferenceCopy(op->qf_assembled_rstr, rstr);
111570a7ffb3SJeremy L Thompson   } else {
111670a7ffb3SJeremy L Thompson     // Fallback to reference Ceed
111770a7ffb3SJeremy L Thompson     if (!op->op_fallback) {
111870a7ffb3SJeremy L Thompson       ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
111970a7ffb3SJeremy L Thompson     }
112070a7ffb3SJeremy L Thompson     // Assemble
112170a7ffb3SJeremy L Thompson     ierr = CeedOperatorLinearAssembleQFunctionBuildOrUpdate(op->op_fallback,
112270a7ffb3SJeremy L Thompson            assembled, rstr, request); CeedChk(ierr);
112370a7ffb3SJeremy L Thompson   }
112470a7ffb3SJeremy L Thompson   CeedChk(ierr);
112570a7ffb3SJeremy L Thompson 
112670a7ffb3SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1127eaf62fffSJeremy L Thompson }
1128eaf62fffSJeremy L Thompson 
1129eaf62fffSJeremy L Thompson /**
1130eaf62fffSJeremy L Thompson   @brief Assemble the diagonal of a square linear CeedOperator
1131eaf62fffSJeremy L Thompson 
1132eaf62fffSJeremy L Thompson   This overwrites a CeedVector with the diagonal of a linear CeedOperator.
1133eaf62fffSJeremy L Thompson 
1134eaf62fffSJeremy L Thompson   Note: Currently only non-composite CeedOperators with a single field and
1135eaf62fffSJeremy L Thompson           composite CeedOperators with single field sub-operators are supported.
1136eaf62fffSJeremy L Thompson 
1137f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1138f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1139f04ea552SJeremy L Thompson 
1140eaf62fffSJeremy L Thompson   @param op              CeedOperator to assemble CeedQFunction
1141eaf62fffSJeremy L Thompson   @param[out] assembled  CeedVector to store assembled CeedOperator diagonal
1142eaf62fffSJeremy L Thompson   @param request         Address of CeedRequest for non-blocking completion, else
1143eaf62fffSJeremy L Thompson                            @ref CEED_REQUEST_IMMEDIATE
1144eaf62fffSJeremy L Thompson 
1145eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1146eaf62fffSJeremy L Thompson 
1147eaf62fffSJeremy L Thompson   @ref User
1148eaf62fffSJeremy L Thompson **/
1149eaf62fffSJeremy L Thompson int CeedOperatorLinearAssembleDiagonal(CeedOperator op, CeedVector assembled,
1150eaf62fffSJeremy L Thompson                                        CeedRequest *request) {
1151eaf62fffSJeremy L Thompson   int ierr;
1152eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1153eaf62fffSJeremy L Thompson 
1154eaf62fffSJeremy L Thompson   // Use backend version, if available
1155eaf62fffSJeremy L Thompson   if (op->LinearAssembleDiagonal) {
1156eaf62fffSJeremy L Thompson     ierr = op->LinearAssembleDiagonal(op, assembled, request); CeedChk(ierr);
1157eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1158eaf62fffSJeremy L Thompson   } else if (op->LinearAssembleAddDiagonal) {
1159eaf62fffSJeremy L Thompson     ierr = CeedVectorSetValue(assembled, 0.0); CeedChk(ierr);
1160eaf62fffSJeremy L Thompson     ierr = op->LinearAssembleAddDiagonal(op, assembled, request); CeedChk(ierr);
1161eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1162eaf62fffSJeremy L Thompson   } else {
1163eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1164eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1165eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1166eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1167eaf62fffSJeremy L Thompson     CeedChk(ierr);
1168eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1169eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1170eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1171eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1172eaf62fffSJeremy L Thompson       }
1173eaf62fffSJeremy L Thompson       // Assemble
1174eaf62fffSJeremy L Thompson       ierr = CeedOperatorLinearAssembleDiagonal(op->op_fallback, assembled, request);
1175eaf62fffSJeremy L Thompson       CeedChk(ierr);
1176eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1177eaf62fffSJeremy L Thompson     }
1178eaf62fffSJeremy L Thompson   }
1179eaf62fffSJeremy L Thompson 
1180eaf62fffSJeremy L Thompson   // Default interface implementation
1181eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(assembled, 0.0); CeedChk(ierr);
1182eaf62fffSJeremy L Thompson   ierr = CeedOperatorLinearAssembleAddDiagonal(op, assembled, request);
1183eaf62fffSJeremy L Thompson   CeedChk(ierr);
1184eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1185eaf62fffSJeremy L Thompson }
1186eaf62fffSJeremy L Thompson 
1187eaf62fffSJeremy L Thompson /**
1188eaf62fffSJeremy L Thompson   @brief Assemble the diagonal of a square linear CeedOperator
1189eaf62fffSJeremy L Thompson 
1190eaf62fffSJeremy L Thompson   This sums into a CeedVector the diagonal of a linear CeedOperator.
1191eaf62fffSJeremy L Thompson 
1192eaf62fffSJeremy L Thompson   Note: Currently only non-composite CeedOperators with a single field and
1193eaf62fffSJeremy L Thompson           composite CeedOperators with single field sub-operators are supported.
1194eaf62fffSJeremy L Thompson 
1195f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1196f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1197f04ea552SJeremy L Thompson 
1198eaf62fffSJeremy L Thompson   @param op              CeedOperator to assemble CeedQFunction
1199eaf62fffSJeremy L Thompson   @param[out] assembled  CeedVector to store assembled CeedOperator diagonal
1200eaf62fffSJeremy L Thompson   @param request         Address of CeedRequest for non-blocking completion, else
1201eaf62fffSJeremy L Thompson                            @ref CEED_REQUEST_IMMEDIATE
1202eaf62fffSJeremy L Thompson 
1203eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1204eaf62fffSJeremy L Thompson 
1205eaf62fffSJeremy L Thompson   @ref User
1206eaf62fffSJeremy L Thompson **/
1207eaf62fffSJeremy L Thompson int CeedOperatorLinearAssembleAddDiagonal(CeedOperator op, CeedVector assembled,
1208eaf62fffSJeremy L Thompson     CeedRequest *request) {
1209eaf62fffSJeremy L Thompson   int ierr;
1210eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1211eaf62fffSJeremy L Thompson 
1212eaf62fffSJeremy L Thompson   // Use backend version, if available
1213eaf62fffSJeremy L Thompson   if (op->LinearAssembleAddDiagonal) {
1214eaf62fffSJeremy L Thompson     ierr = op->LinearAssembleAddDiagonal(op, assembled, request); CeedChk(ierr);
1215eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1216eaf62fffSJeremy L Thompson   } else {
1217eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1218eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1219eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1220eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1221eaf62fffSJeremy L Thompson     CeedChk(ierr);
1222eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1223eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1224eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1225eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1226eaf62fffSJeremy L Thompson       }
1227eaf62fffSJeremy L Thompson       // Assemble
1228eaf62fffSJeremy L Thompson       ierr = CeedOperatorLinearAssembleAddDiagonal(op->op_fallback, assembled,
1229eaf62fffSJeremy L Thompson              request); CeedChk(ierr);
1230eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1231eaf62fffSJeremy L Thompson     }
1232eaf62fffSJeremy L Thompson   }
1233eaf62fffSJeremy L Thompson 
1234eaf62fffSJeremy L Thompson   // Default interface implementation
1235eaf62fffSJeremy L Thompson   bool is_composite;
1236eaf62fffSJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &is_composite); CeedChk(ierr);
1237eaf62fffSJeremy L Thompson   if (is_composite) {
1238eaf62fffSJeremy L Thompson     ierr = CeedCompositeOperatorLinearAssembleAddDiagonal(op, request,
1239eaf62fffSJeremy L Thompson            false, assembled); CeedChk(ierr);
1240eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1241eaf62fffSJeremy L Thompson   } else {
1242eaf62fffSJeremy L Thompson     ierr = CeedSingleOperatorAssembleAddDiagonal(op, request, false, assembled);
1243eaf62fffSJeremy L Thompson     CeedChk(ierr);
1244eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1245eaf62fffSJeremy L Thompson   }
1246eaf62fffSJeremy L Thompson }
1247eaf62fffSJeremy L Thompson 
1248eaf62fffSJeremy L Thompson /**
1249eaf62fffSJeremy L Thompson   @brief Assemble the point block diagonal of a square linear CeedOperator
1250eaf62fffSJeremy L Thompson 
1251eaf62fffSJeremy L Thompson   This overwrites a CeedVector with the point block diagonal of a linear
1252eaf62fffSJeremy L Thompson     CeedOperator.
1253eaf62fffSJeremy L Thompson 
1254eaf62fffSJeremy L Thompson   Note: Currently only non-composite CeedOperators with a single field and
1255eaf62fffSJeremy L Thompson           composite CeedOperators with single field sub-operators are supported.
1256eaf62fffSJeremy L Thompson 
1257f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1258f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1259f04ea552SJeremy L Thompson 
1260eaf62fffSJeremy L Thompson   @param op              CeedOperator to assemble CeedQFunction
1261eaf62fffSJeremy L Thompson   @param[out] assembled  CeedVector to store assembled CeedOperator point block
1262eaf62fffSJeremy L Thompson                            diagonal, provided in row-major form with an
1263eaf62fffSJeremy L Thompson                            @a num_comp * @a num_comp block at each node. The dimensions
1264eaf62fffSJeremy L Thompson                            of this vector are derived from the active vector
1265eaf62fffSJeremy L Thompson                            for the CeedOperator. The array has shape
1266eaf62fffSJeremy L Thompson                            [nodes, component out, component in].
1267eaf62fffSJeremy L Thompson   @param request         Address of CeedRequest for non-blocking completion, else
1268eaf62fffSJeremy L Thompson                            CEED_REQUEST_IMMEDIATE
1269eaf62fffSJeremy L Thompson 
1270eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1271eaf62fffSJeremy L Thompson 
1272eaf62fffSJeremy L Thompson   @ref User
1273eaf62fffSJeremy L Thompson **/
1274eaf62fffSJeremy L Thompson int CeedOperatorLinearAssemblePointBlockDiagonal(CeedOperator op,
1275eaf62fffSJeremy L Thompson     CeedVector assembled, CeedRequest *request) {
1276eaf62fffSJeremy L Thompson   int ierr;
1277eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1278eaf62fffSJeremy L Thompson 
1279eaf62fffSJeremy L Thompson   // Use backend version, if available
1280eaf62fffSJeremy L Thompson   if (op->LinearAssemblePointBlockDiagonal) {
1281eaf62fffSJeremy L Thompson     ierr = op->LinearAssemblePointBlockDiagonal(op, assembled, request);
1282eaf62fffSJeremy L Thompson     CeedChk(ierr);
1283eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1284eaf62fffSJeremy L Thompson   } else if (op->LinearAssembleAddPointBlockDiagonal) {
1285eaf62fffSJeremy L Thompson     ierr = CeedVectorSetValue(assembled, 0.0); CeedChk(ierr);
1286eaf62fffSJeremy L Thompson     ierr = CeedOperatorLinearAssembleAddPointBlockDiagonal(op, assembled,
1287eaf62fffSJeremy L Thompson            request); CeedChk(ierr);
1288eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1289eaf62fffSJeremy L Thompson   } else {
1290eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1291eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1292eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1293eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1294eaf62fffSJeremy L Thompson     CeedChk(ierr);
1295eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1296eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1297eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1298eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1299eaf62fffSJeremy L Thompson       }
1300eaf62fffSJeremy L Thompson       // Assemble
1301eaf62fffSJeremy L Thompson       ierr = CeedOperatorLinearAssemblePointBlockDiagonal(op->op_fallback,
1302eaf62fffSJeremy L Thompson              assembled, request); CeedChk(ierr);
1303eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1304eaf62fffSJeremy L Thompson     }
1305eaf62fffSJeremy L Thompson   }
1306eaf62fffSJeremy L Thompson 
1307eaf62fffSJeremy L Thompson   // Default interface implementation
1308eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(assembled, 0.0); CeedChk(ierr);
1309eaf62fffSJeremy L Thompson   ierr = CeedOperatorLinearAssembleAddPointBlockDiagonal(op, assembled, request);
1310eaf62fffSJeremy L Thompson   CeedChk(ierr);
1311eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1312eaf62fffSJeremy L Thompson }
1313eaf62fffSJeremy L Thompson 
1314eaf62fffSJeremy L Thompson /**
1315eaf62fffSJeremy L Thompson   @brief Assemble the point block diagonal of a square linear CeedOperator
1316eaf62fffSJeremy L Thompson 
1317eaf62fffSJeremy L Thompson   This sums into a CeedVector with the point block diagonal of a linear
1318eaf62fffSJeremy L Thompson     CeedOperator.
1319eaf62fffSJeremy L Thompson 
1320eaf62fffSJeremy L Thompson   Note: Currently only non-composite CeedOperators with a single field and
1321eaf62fffSJeremy L Thompson           composite CeedOperators with single field sub-operators are supported.
1322eaf62fffSJeremy L Thompson 
1323f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1324f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1325f04ea552SJeremy L Thompson 
1326eaf62fffSJeremy L Thompson   @param op              CeedOperator to assemble CeedQFunction
1327eaf62fffSJeremy L Thompson   @param[out] assembled  CeedVector to store assembled CeedOperator point block
1328eaf62fffSJeremy L Thompson                            diagonal, provided in row-major form with an
1329eaf62fffSJeremy L Thompson                            @a num_comp * @a num_comp block at each node. The dimensions
1330eaf62fffSJeremy L Thompson                            of this vector are derived from the active vector
1331eaf62fffSJeremy L Thompson                            for the CeedOperator. The array has shape
1332eaf62fffSJeremy L Thompson                            [nodes, component out, component in].
1333eaf62fffSJeremy L Thompson   @param request         Address of CeedRequest for non-blocking completion, else
1334eaf62fffSJeremy L Thompson                            CEED_REQUEST_IMMEDIATE
1335eaf62fffSJeremy L Thompson 
1336eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1337eaf62fffSJeremy L Thompson 
1338eaf62fffSJeremy L Thompson   @ref User
1339eaf62fffSJeremy L Thompson **/
1340eaf62fffSJeremy L Thompson int CeedOperatorLinearAssembleAddPointBlockDiagonal(CeedOperator op,
1341eaf62fffSJeremy L Thompson     CeedVector assembled, CeedRequest *request) {
1342eaf62fffSJeremy L Thompson   int ierr;
1343eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1344eaf62fffSJeremy L Thompson 
1345eaf62fffSJeremy L Thompson   // Use backend version, if available
1346eaf62fffSJeremy L Thompson   if (op->LinearAssembleAddPointBlockDiagonal) {
1347eaf62fffSJeremy L Thompson     ierr = op->LinearAssembleAddPointBlockDiagonal(op, assembled, request);
1348eaf62fffSJeremy L Thompson     CeedChk(ierr);
1349eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1350eaf62fffSJeremy L Thompson   } else {
1351eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1352eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1353eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1354eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1355eaf62fffSJeremy L Thompson     CeedChk(ierr);
1356eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1357eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1358eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1359eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1360eaf62fffSJeremy L Thompson       }
1361eaf62fffSJeremy L Thompson       // Assemble
1362eaf62fffSJeremy L Thompson       ierr = CeedOperatorLinearAssembleAddPointBlockDiagonal(op->op_fallback,
1363eaf62fffSJeremy L Thompson              assembled, request); CeedChk(ierr);
1364eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1365eaf62fffSJeremy L Thompson     }
1366eaf62fffSJeremy L Thompson   }
1367eaf62fffSJeremy L Thompson 
1368eaf62fffSJeremy L Thompson   // Default interface implemenation
1369eaf62fffSJeremy L Thompson   bool is_composite;
1370eaf62fffSJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &is_composite); CeedChk(ierr);
1371eaf62fffSJeremy L Thompson   if (is_composite) {
1372eaf62fffSJeremy L Thompson     ierr = CeedCompositeOperatorLinearAssembleAddDiagonal(op, request,
1373eaf62fffSJeremy L Thompson            true, assembled); CeedChk(ierr);
1374eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1375eaf62fffSJeremy L Thompson   } else {
1376eaf62fffSJeremy L Thompson     ierr = CeedSingleOperatorAssembleAddDiagonal(op, request, true, assembled);
1377eaf62fffSJeremy L Thompson     CeedChk(ierr);
1378eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1379eaf62fffSJeremy L Thompson   }
1380eaf62fffSJeremy L Thompson }
1381eaf62fffSJeremy L Thompson 
1382eaf62fffSJeremy L Thompson /**
1383eaf62fffSJeremy L Thompson    @brief Fully assemble the nonzero pattern of a linear operator.
1384eaf62fffSJeremy L Thompson 
1385eaf62fffSJeremy L Thompson    Expected to be used in conjunction with CeedOperatorLinearAssemble()
1386eaf62fffSJeremy L Thompson 
1387eaf62fffSJeremy L Thompson    The assembly routines use coordinate format, with num_entries tuples of the
1388eaf62fffSJeremy L Thompson    form (i, j, value) which indicate that value should be added to the matrix
1389eaf62fffSJeremy L Thompson    in entry (i, j). Note that the (i, j) pairs are not unique and may repeat.
1390eaf62fffSJeremy L Thompson    This function returns the number of entries and their (i, j) locations,
1391eaf62fffSJeremy L Thompson    while CeedOperatorLinearAssemble() provides the values in the same
1392eaf62fffSJeremy L Thompson    ordering.
1393eaf62fffSJeremy L Thompson 
1394eaf62fffSJeremy L Thompson    This will generally be slow unless your operator is low-order.
1395eaf62fffSJeremy L Thompson 
1396f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1397f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1398f04ea552SJeremy L Thompson 
1399eaf62fffSJeremy L Thompson    @param[in]  op           CeedOperator to assemble
1400eaf62fffSJeremy L Thompson    @param[out] num_entries  Number of entries in coordinate nonzero pattern
1401eaf62fffSJeremy L Thompson    @param[out] rows         Row number for each entry
1402eaf62fffSJeremy L Thompson    @param[out] cols         Column number for each entry
1403eaf62fffSJeremy L Thompson 
1404eaf62fffSJeremy L Thompson    @ref User
1405eaf62fffSJeremy L Thompson **/
1406*c30b7fbdSJeremy L Thompson int CeedOperatorLinearAssembleSymbolic(CeedOperator op, CeedSize *num_entries,
1407eaf62fffSJeremy L Thompson                                        CeedInt **rows, CeedInt **cols) {
1408eaf62fffSJeremy L Thompson   int ierr;
1409eaf62fffSJeremy L Thompson   CeedInt num_suboperators, single_entries;
1410eaf62fffSJeremy L Thompson   CeedOperator *sub_operators;
1411eaf62fffSJeremy L Thompson   bool is_composite;
1412eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1413eaf62fffSJeremy L Thompson 
1414eaf62fffSJeremy L Thompson   // Use backend version, if available
1415eaf62fffSJeremy L Thompson   if (op->LinearAssembleSymbolic) {
1416eaf62fffSJeremy L Thompson     ierr = op->LinearAssembleSymbolic(op, num_entries, rows, cols); CeedChk(ierr);
1417eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1418eaf62fffSJeremy L Thompson   } else {
1419eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1420eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1421eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1422eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1423eaf62fffSJeremy L Thompson     CeedChk(ierr);
1424eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1425eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1426eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1427eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1428eaf62fffSJeremy L Thompson       }
1429eaf62fffSJeremy L Thompson       // Assemble
1430eaf62fffSJeremy L Thompson       ierr = CeedOperatorLinearAssembleSymbolic(op->op_fallback, num_entries, rows,
1431eaf62fffSJeremy L Thompson              cols); CeedChk(ierr);
1432eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1433eaf62fffSJeremy L Thompson     }
1434eaf62fffSJeremy L Thompson   }
1435eaf62fffSJeremy L Thompson 
1436eaf62fffSJeremy L Thompson   // Default interface implementation
1437eaf62fffSJeremy L Thompson 
1438eaf62fffSJeremy L Thompson   // count entries and allocate rows, cols arrays
1439eaf62fffSJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &is_composite); CeedChk(ierr);
1440eaf62fffSJeremy L Thompson   *num_entries = 0;
1441eaf62fffSJeremy L Thompson   if (is_composite) {
1442eaf62fffSJeremy L Thompson     ierr = CeedOperatorGetNumSub(op, &num_suboperators); CeedChk(ierr);
1443eaf62fffSJeremy L Thompson     ierr = CeedOperatorGetSubList(op, &sub_operators); CeedChk(ierr);
1444eaf62fffSJeremy L Thompson     for (int k = 0; k < num_suboperators; ++k) {
1445eaf62fffSJeremy L Thompson       ierr = CeedSingleOperatorAssemblyCountEntries(sub_operators[k],
1446eaf62fffSJeremy L Thompson              &single_entries); CeedChk(ierr);
1447eaf62fffSJeremy L Thompson       *num_entries += single_entries;
1448eaf62fffSJeremy L Thompson     }
1449eaf62fffSJeremy L Thompson   } else {
1450eaf62fffSJeremy L Thompson     ierr = CeedSingleOperatorAssemblyCountEntries(op,
1451eaf62fffSJeremy L Thompson            &single_entries); CeedChk(ierr);
1452eaf62fffSJeremy L Thompson     *num_entries += single_entries;
1453eaf62fffSJeremy L Thompson   }
1454eaf62fffSJeremy L Thompson   ierr = CeedCalloc(*num_entries, rows); CeedChk(ierr);
1455eaf62fffSJeremy L Thompson   ierr = CeedCalloc(*num_entries, cols); CeedChk(ierr);
1456eaf62fffSJeremy L Thompson 
1457eaf62fffSJeremy L Thompson   // assemble nonzero locations
1458eaf62fffSJeremy L Thompson   CeedInt offset = 0;
1459eaf62fffSJeremy L Thompson   if (is_composite) {
1460eaf62fffSJeremy L Thompson     ierr = CeedOperatorGetNumSub(op, &num_suboperators); CeedChk(ierr);
1461eaf62fffSJeremy L Thompson     ierr = CeedOperatorGetSubList(op, &sub_operators); CeedChk(ierr);
1462eaf62fffSJeremy L Thompson     for (int k = 0; k < num_suboperators; ++k) {
1463eaf62fffSJeremy L Thompson       ierr = CeedSingleOperatorAssembleSymbolic(sub_operators[k], offset, *rows,
1464eaf62fffSJeremy L Thompson              *cols); CeedChk(ierr);
1465eaf62fffSJeremy L Thompson       ierr = CeedSingleOperatorAssemblyCountEntries(sub_operators[k],
1466eaf62fffSJeremy L Thompson              &single_entries);
1467eaf62fffSJeremy L Thompson       CeedChk(ierr);
1468eaf62fffSJeremy L Thompson       offset += single_entries;
1469eaf62fffSJeremy L Thompson     }
1470eaf62fffSJeremy L Thompson   } else {
1471eaf62fffSJeremy L Thompson     ierr = CeedSingleOperatorAssembleSymbolic(op, offset, *rows, *cols);
1472eaf62fffSJeremy L Thompson     CeedChk(ierr);
1473eaf62fffSJeremy L Thompson   }
1474eaf62fffSJeremy L Thompson 
1475eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1476eaf62fffSJeremy L Thompson }
1477eaf62fffSJeremy L Thompson 
1478eaf62fffSJeremy L Thompson /**
1479eaf62fffSJeremy L Thompson    @brief Fully assemble the nonzero entries of a linear operator.
1480eaf62fffSJeremy L Thompson 
1481eaf62fffSJeremy L Thompson    Expected to be used in conjunction with CeedOperatorLinearAssembleSymbolic()
1482eaf62fffSJeremy L Thompson 
1483eaf62fffSJeremy L Thompson    The assembly routines use coordinate format, with num_entries tuples of the
1484eaf62fffSJeremy L Thompson    form (i, j, value) which indicate that value should be added to the matrix
1485eaf62fffSJeremy L Thompson    in entry (i, j). Note that the (i, j) pairs are not unique and may repeat.
1486eaf62fffSJeremy L Thompson    This function returns the values of the nonzero entries to be added, their
1487eaf62fffSJeremy L Thompson    (i, j) locations are provided by CeedOperatorLinearAssembleSymbolic()
1488eaf62fffSJeremy L Thompson 
1489eaf62fffSJeremy L Thompson    This will generally be slow unless your operator is low-order.
1490eaf62fffSJeremy L Thompson 
1491f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1492f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1493f04ea552SJeremy L Thompson 
1494eaf62fffSJeremy L Thompson    @param[in]  op      CeedOperator to assemble
1495eaf62fffSJeremy L Thompson    @param[out] values  Values to assemble into matrix
1496eaf62fffSJeremy L Thompson 
1497eaf62fffSJeremy L Thompson    @ref User
1498eaf62fffSJeremy L Thompson **/
1499eaf62fffSJeremy L Thompson int CeedOperatorLinearAssemble(CeedOperator op, CeedVector values) {
1500eaf62fffSJeremy L Thompson   int ierr;
1501eaf62fffSJeremy L Thompson   CeedInt num_suboperators, single_entries = 0;
1502eaf62fffSJeremy L Thompson   CeedOperator *sub_operators;
1503eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1504eaf62fffSJeremy L Thompson 
1505eaf62fffSJeremy L Thompson   // Use backend version, if available
1506eaf62fffSJeremy L Thompson   if (op->LinearAssemble) {
1507eaf62fffSJeremy L Thompson     ierr = op->LinearAssemble(op, values); CeedChk(ierr);
1508eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1509eaf62fffSJeremy L Thompson   } else {
1510eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1511eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1512eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1513eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1514eaf62fffSJeremy L Thompson     CeedChk(ierr);
1515eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1516eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1517eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1518eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1519eaf62fffSJeremy L Thompson       }
1520eaf62fffSJeremy L Thompson       // Assemble
1521eaf62fffSJeremy L Thompson       ierr = CeedOperatorLinearAssemble(op->op_fallback, values); CeedChk(ierr);
1522eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1523eaf62fffSJeremy L Thompson     }
1524eaf62fffSJeremy L Thompson   }
1525eaf62fffSJeremy L Thompson 
1526eaf62fffSJeremy L Thompson   // Default interface implementation
1527eaf62fffSJeremy L Thompson   bool is_composite;
1528eaf62fffSJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &is_composite); CeedChk(ierr);
1529eaf62fffSJeremy L Thompson 
1530eaf62fffSJeremy L Thompson   CeedInt offset = 0;
1531eaf62fffSJeremy L Thompson   if (is_composite) {
1532eaf62fffSJeremy L Thompson     ierr = CeedOperatorGetNumSub(op, &num_suboperators); CeedChk(ierr);
1533eaf62fffSJeremy L Thompson     ierr = CeedOperatorGetSubList(op, &sub_operators); CeedChk(ierr);
1534eaf62fffSJeremy L Thompson     for (int k = 0; k < num_suboperators; ++k) {
1535eaf62fffSJeremy L Thompson       ierr = CeedSingleOperatorAssemble(sub_operators[k], offset, values);
1536eaf62fffSJeremy L Thompson       CeedChk(ierr);
1537eaf62fffSJeremy L Thompson       ierr = CeedSingleOperatorAssemblyCountEntries(sub_operators[k],
1538eaf62fffSJeremy L Thompson              &single_entries);
1539eaf62fffSJeremy L Thompson       CeedChk(ierr);
1540eaf62fffSJeremy L Thompson       offset += single_entries;
1541eaf62fffSJeremy L Thompson     }
1542eaf62fffSJeremy L Thompson   } else {
1543eaf62fffSJeremy L Thompson     ierr = CeedSingleOperatorAssemble(op, offset, values); CeedChk(ierr);
1544eaf62fffSJeremy L Thompson   }
1545eaf62fffSJeremy L Thompson 
1546eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1547eaf62fffSJeremy L Thompson }
1548eaf62fffSJeremy L Thompson 
1549eaf62fffSJeremy L Thompson /**
1550eaf62fffSJeremy L Thompson   @brief Create a multigrid coarse operator and level transfer operators
1551eaf62fffSJeremy L Thompson            for a CeedOperator, creating the prolongation basis from the
1552eaf62fffSJeremy L Thompson            fine and coarse grid interpolation
1553eaf62fffSJeremy L Thompson 
1554f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1555f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1556f04ea552SJeremy L Thompson 
1557eaf62fffSJeremy L Thompson   @param[in] op_fine       Fine grid operator
1558eaf62fffSJeremy L Thompson   @param[in] p_mult_fine   L-vector multiplicity in parallel gather/scatter
1559eaf62fffSJeremy L Thompson   @param[in] rstr_coarse   Coarse grid restriction
1560eaf62fffSJeremy L Thompson   @param[in] basis_coarse  Coarse grid active vector basis
1561eaf62fffSJeremy L Thompson   @param[out] op_coarse    Coarse grid operator
1562eaf62fffSJeremy L Thompson   @param[out] op_prolong   Coarse to fine operator
1563eaf62fffSJeremy L Thompson   @param[out] op_restrict  Fine to coarse operator
1564eaf62fffSJeremy L Thompson 
1565eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1566eaf62fffSJeremy L Thompson 
1567eaf62fffSJeremy L Thompson   @ref User
1568eaf62fffSJeremy L Thompson **/
1569eaf62fffSJeremy L Thompson int CeedOperatorMultigridLevelCreate(CeedOperator op_fine,
1570eaf62fffSJeremy L Thompson                                      CeedVector p_mult_fine,
1571eaf62fffSJeremy L Thompson                                      CeedElemRestriction rstr_coarse, CeedBasis basis_coarse,
1572eaf62fffSJeremy L Thompson                                      CeedOperator *op_coarse, CeedOperator *op_prolong,
1573eaf62fffSJeremy L Thompson                                      CeedOperator *op_restrict) {
1574eaf62fffSJeremy L Thompson   int ierr;
1575f04ea552SJeremy L Thompson   ierr = CeedOperatorCheckReady(op_fine); CeedChk(ierr);
1576eaf62fffSJeremy L Thompson   Ceed ceed;
1577eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetCeed(op_fine, &ceed); CeedChk(ierr);
1578eaf62fffSJeremy L Thompson 
1579eaf62fffSJeremy L Thompson   // Check for compatible quadrature spaces
1580eaf62fffSJeremy L Thompson   CeedBasis basis_fine;
1581eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetActiveBasis(op_fine, &basis_fine); CeedChk(ierr);
1582eaf62fffSJeremy L Thompson   CeedInt Q_f, Q_c;
1583eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_fine, &Q_f); CeedChk(ierr);
1584eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_coarse, &Q_c); CeedChk(ierr);
1585eaf62fffSJeremy L Thompson   if (Q_f != Q_c)
1586eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
1587eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_DIMENSION,
1588eaf62fffSJeremy L Thompson                      "Bases must have compatible quadrature spaces");
1589eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
1590eaf62fffSJeremy L Thompson 
1591eaf62fffSJeremy L Thompson   // Coarse to fine basis
1592eaf62fffSJeremy L Thompson   CeedInt P_f, P_c, Q = Q_f;
1593eaf62fffSJeremy L Thompson   bool is_tensor_f, is_tensor_c;
1594eaf62fffSJeremy L Thompson   ierr = CeedBasisIsTensor(basis_fine, &is_tensor_f); CeedChk(ierr);
1595eaf62fffSJeremy L Thompson   ierr = CeedBasisIsTensor(basis_coarse, &is_tensor_c); CeedChk(ierr);
1596eaf62fffSJeremy L Thompson   CeedScalar *interp_c, *interp_f, *interp_c_to_f, *tau;
1597eaf62fffSJeremy L Thompson   if (is_tensor_f && is_tensor_c) {
1598eaf62fffSJeremy L Thompson     ierr = CeedBasisGetNumNodes1D(basis_fine, &P_f); CeedChk(ierr);
1599eaf62fffSJeremy L Thompson     ierr = CeedBasisGetNumNodes1D(basis_coarse, &P_c); CeedChk(ierr);
1600eaf62fffSJeremy L Thompson     ierr = CeedBasisGetNumQuadraturePoints1D(basis_coarse, &Q); CeedChk(ierr);
1601eaf62fffSJeremy L Thompson   } else if (!is_tensor_f && !is_tensor_c) {
1602eaf62fffSJeremy L Thompson     ierr = CeedBasisGetNumNodes(basis_fine, &P_f); CeedChk(ierr);
1603eaf62fffSJeremy L Thompson     ierr = CeedBasisGetNumNodes(basis_coarse, &P_c); CeedChk(ierr);
1604eaf62fffSJeremy L Thompson   } else {
1605eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
1606eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_MINOR,
1607eaf62fffSJeremy L Thompson                      "Bases must both be tensor or non-tensor");
1608eaf62fffSJeremy L Thompson     // LCOV_EXCL_STOP
1609eaf62fffSJeremy L Thompson   }
1610eaf62fffSJeremy L Thompson 
1611eaf62fffSJeremy L Thompson   ierr = CeedMalloc(Q*P_f, &interp_f); CeedChk(ierr);
1612eaf62fffSJeremy L Thompson   ierr = CeedMalloc(Q*P_c, &interp_c); CeedChk(ierr);
1613eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_c*P_f, &interp_c_to_f); CeedChk(ierr);
1614eaf62fffSJeremy L Thompson   ierr = CeedMalloc(Q, &tau); CeedChk(ierr);
1615eaf62fffSJeremy L Thompson   if (is_tensor_f) {
1616eaf62fffSJeremy L Thompson     memcpy(interp_f, basis_fine->interp_1d, Q*P_f*sizeof basis_fine->interp_1d[0]);
1617eaf62fffSJeremy L Thompson     memcpy(interp_c, basis_coarse->interp_1d,
1618eaf62fffSJeremy L Thompson            Q*P_c*sizeof basis_coarse->interp_1d[0]);
1619eaf62fffSJeremy L Thompson   } else {
1620eaf62fffSJeremy L Thompson     memcpy(interp_f, basis_fine->interp, Q*P_f*sizeof basis_fine->interp[0]);
1621eaf62fffSJeremy L Thompson     memcpy(interp_c, basis_coarse->interp, Q*P_c*sizeof basis_coarse->interp[0]);
1622eaf62fffSJeremy L Thompson   }
1623eaf62fffSJeremy L Thompson 
1624eaf62fffSJeremy L Thompson   // -- QR Factorization, interp_f = Q R
1625eaf62fffSJeremy L Thompson   ierr = CeedQRFactorization(ceed, interp_f, tau, Q, P_f); CeedChk(ierr);
1626eaf62fffSJeremy L Thompson 
1627eaf62fffSJeremy L Thompson   // -- Apply Qtranspose, interp_c = Qtranspose interp_c
1628eaf62fffSJeremy L Thompson   ierr = CeedHouseholderApplyQ(interp_c, interp_f, tau, CEED_TRANSPOSE,
1629eaf62fffSJeremy L Thompson                                Q, P_c, P_f, P_c, 1); CeedChk(ierr);
1630eaf62fffSJeremy L Thompson 
1631eaf62fffSJeremy L Thompson   // -- Apply Rinv, interp_c_to_f = Rinv interp_c
1632eaf62fffSJeremy L Thompson   for (CeedInt j=0; j<P_c; j++) { // Column j
1633eaf62fffSJeremy L Thompson     interp_c_to_f[j+P_c*(P_f-1)] = interp_c[j+P_c*(P_f-1)]/interp_f[P_f*P_f-1];
1634eaf62fffSJeremy L Thompson     for (CeedInt i=P_f-2; i>=0; i--) { // Row i
1635eaf62fffSJeremy L Thompson       interp_c_to_f[j+P_c*i] = interp_c[j+P_c*i];
1636eaf62fffSJeremy L Thompson       for (CeedInt k=i+1; k<P_f; k++)
1637eaf62fffSJeremy L Thompson         interp_c_to_f[j+P_c*i] -= interp_f[k+P_f*i]*interp_c_to_f[j+P_c*k];
1638eaf62fffSJeremy L Thompson       interp_c_to_f[j+P_c*i] /= interp_f[i+P_f*i];
1639eaf62fffSJeremy L Thompson     }
1640eaf62fffSJeremy L Thompson   }
1641eaf62fffSJeremy L Thompson   ierr = CeedFree(&tau); CeedChk(ierr);
1642eaf62fffSJeremy L Thompson   ierr = CeedFree(&interp_c); CeedChk(ierr);
1643eaf62fffSJeremy L Thompson   ierr = CeedFree(&interp_f); CeedChk(ierr);
1644eaf62fffSJeremy L Thompson 
1645eaf62fffSJeremy L Thompson   // Complete with interp_c_to_f versions of code
1646eaf62fffSJeremy L Thompson   if (is_tensor_f) {
1647eaf62fffSJeremy L Thompson     ierr = CeedOperatorMultigridLevelCreateTensorH1(op_fine, p_mult_fine,
1648eaf62fffSJeremy L Thompson            rstr_coarse, basis_coarse, interp_c_to_f, op_coarse, op_prolong, op_restrict);
1649eaf62fffSJeremy L Thompson     CeedChk(ierr);
1650eaf62fffSJeremy L Thompson   } else {
1651eaf62fffSJeremy L Thompson     ierr = CeedOperatorMultigridLevelCreateH1(op_fine, p_mult_fine,
1652eaf62fffSJeremy L Thompson            rstr_coarse, basis_coarse, interp_c_to_f, op_coarse, op_prolong, op_restrict);
1653eaf62fffSJeremy L Thompson     CeedChk(ierr);
1654eaf62fffSJeremy L Thompson   }
1655eaf62fffSJeremy L Thompson 
1656eaf62fffSJeremy L Thompson   // Cleanup
1657eaf62fffSJeremy L Thompson   ierr = CeedFree(&interp_c_to_f); CeedChk(ierr);
1658eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1659eaf62fffSJeremy L Thompson }
1660eaf62fffSJeremy L Thompson 
1661eaf62fffSJeremy L Thompson /**
1662eaf62fffSJeremy L Thompson   @brief Create a multigrid coarse operator and level transfer operators
1663eaf62fffSJeremy L Thompson            for a CeedOperator with a tensor basis for the active basis
1664eaf62fffSJeremy L Thompson 
1665f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1666f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1667f04ea552SJeremy L Thompson 
1668eaf62fffSJeremy L Thompson   @param[in] op_fine        Fine grid operator
1669eaf62fffSJeremy L Thompson   @param[in] p_mult_fine    L-vector multiplicity in parallel gather/scatter
1670eaf62fffSJeremy L Thompson   @param[in] rstr_coarse    Coarse grid restriction
1671eaf62fffSJeremy L Thompson   @param[in] basis_coarse   Coarse grid active vector basis
1672eaf62fffSJeremy L Thompson   @param[in] interp_c_to_f  Matrix for coarse to fine interpolation
1673eaf62fffSJeremy L Thompson   @param[out] op_coarse     Coarse grid operator
1674eaf62fffSJeremy L Thompson   @param[out] op_prolong    Coarse to fine operator
1675eaf62fffSJeremy L Thompson   @param[out] op_restrict   Fine to coarse operator
1676eaf62fffSJeremy L Thompson 
1677eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1678eaf62fffSJeremy L Thompson 
1679eaf62fffSJeremy L Thompson   @ref User
1680eaf62fffSJeremy L Thompson **/
1681eaf62fffSJeremy L Thompson int CeedOperatorMultigridLevelCreateTensorH1(CeedOperator op_fine,
1682eaf62fffSJeremy L Thompson     CeedVector p_mult_fine, CeedElemRestriction rstr_coarse, CeedBasis basis_coarse,
1683eaf62fffSJeremy L Thompson     const CeedScalar *interp_c_to_f, CeedOperator *op_coarse,
1684eaf62fffSJeremy L Thompson     CeedOperator *op_prolong, CeedOperator *op_restrict) {
1685eaf62fffSJeremy L Thompson   int ierr;
1686f04ea552SJeremy L Thompson   ierr = CeedOperatorCheckReady(op_fine); CeedChk(ierr);
1687eaf62fffSJeremy L Thompson   Ceed ceed;
1688eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetCeed(op_fine, &ceed); CeedChk(ierr);
1689eaf62fffSJeremy L Thompson 
1690eaf62fffSJeremy L Thompson   // Check for compatible quadrature spaces
1691eaf62fffSJeremy L Thompson   CeedBasis basis_fine;
1692eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetActiveBasis(op_fine, &basis_fine); CeedChk(ierr);
1693eaf62fffSJeremy L Thompson   CeedInt Q_f, Q_c;
1694eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_fine, &Q_f); CeedChk(ierr);
1695eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_coarse, &Q_c); CeedChk(ierr);
1696eaf62fffSJeremy L Thompson   if (Q_f != Q_c)
1697eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
1698eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_DIMENSION,
1699eaf62fffSJeremy L Thompson                      "Bases must have compatible quadrature spaces");
1700eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
1701eaf62fffSJeremy L Thompson 
1702eaf62fffSJeremy L Thompson   // Coarse to fine basis
1703eaf62fffSJeremy L Thompson   CeedInt dim, num_comp, num_nodes_c, P_1d_f, P_1d_c;
1704eaf62fffSJeremy L Thompson   ierr = CeedBasisGetDimension(basis_fine, &dim); CeedChk(ierr);
1705eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumComponents(basis_fine, &num_comp); CeedChk(ierr);
1706eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumNodes1D(basis_fine, &P_1d_f); CeedChk(ierr);
1707eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr_coarse, &num_nodes_c);
1708eaf62fffSJeremy L Thompson   CeedChk(ierr);
1709eaf62fffSJeremy L Thompson   P_1d_c = dim == 1 ? num_nodes_c :
1710eaf62fffSJeremy L Thompson            dim == 2 ? sqrt(num_nodes_c) :
1711eaf62fffSJeremy L Thompson            cbrt(num_nodes_c);
1712eaf62fffSJeremy L Thompson   CeedScalar *q_ref, *q_weight, *grad;
1713eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d_f, &q_ref); CeedChk(ierr);
1714eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d_f, &q_weight); CeedChk(ierr);
1715eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d_f*P_1d_c*dim, &grad); CeedChk(ierr);
1716eaf62fffSJeremy L Thompson   CeedBasis basis_c_to_f;
1717eaf62fffSJeremy L Thompson   ierr = CeedBasisCreateTensorH1(ceed, dim, num_comp, P_1d_c, P_1d_f,
1718eaf62fffSJeremy L Thompson                                  interp_c_to_f, grad, q_ref, q_weight, &basis_c_to_f);
1719eaf62fffSJeremy L Thompson   CeedChk(ierr);
1720eaf62fffSJeremy L Thompson   ierr = CeedFree(&q_ref); CeedChk(ierr);
1721eaf62fffSJeremy L Thompson   ierr = CeedFree(&q_weight); CeedChk(ierr);
1722eaf62fffSJeremy L Thompson   ierr = CeedFree(&grad); CeedChk(ierr);
1723eaf62fffSJeremy L Thompson 
1724eaf62fffSJeremy L Thompson   // Core code
1725eaf62fffSJeremy L Thompson   ierr = CeedSingleOperatorMultigridLevel(op_fine, p_mult_fine, rstr_coarse,
1726eaf62fffSJeremy L Thompson                                           basis_coarse, basis_c_to_f, op_coarse,
1727eaf62fffSJeremy L Thompson                                           op_prolong, op_restrict);
1728eaf62fffSJeremy L Thompson   CeedChk(ierr);
1729eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1730eaf62fffSJeremy L Thompson }
1731eaf62fffSJeremy L Thompson 
1732eaf62fffSJeremy L Thompson /**
1733eaf62fffSJeremy L Thompson   @brief Create a multigrid coarse operator and level transfer operators
1734eaf62fffSJeremy L Thompson            for a CeedOperator with a non-tensor basis for the active vector
1735eaf62fffSJeremy L Thompson 
1736f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1737f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1738f04ea552SJeremy L Thompson 
1739eaf62fffSJeremy L Thompson   @param[in] op_fine        Fine grid operator
1740eaf62fffSJeremy L Thompson   @param[in] p_mult_fine    L-vector multiplicity in parallel gather/scatter
1741eaf62fffSJeremy L Thompson   @param[in] rstr_coarse    Coarse grid restriction
1742eaf62fffSJeremy L Thompson   @param[in] basis_coarse   Coarse grid active vector basis
1743eaf62fffSJeremy L Thompson   @param[in] interp_c_to_f  Matrix for coarse to fine interpolation
1744eaf62fffSJeremy L Thompson   @param[out] op_coarse     Coarse grid operator
1745eaf62fffSJeremy L Thompson   @param[out] op_prolong    Coarse to fine operator
1746eaf62fffSJeremy L Thompson   @param[out] op_restrict   Fine to coarse operator
1747eaf62fffSJeremy L Thompson 
1748eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1749eaf62fffSJeremy L Thompson 
1750eaf62fffSJeremy L Thompson   @ref User
1751eaf62fffSJeremy L Thompson **/
1752eaf62fffSJeremy L Thompson int CeedOperatorMultigridLevelCreateH1(CeedOperator op_fine,
1753eaf62fffSJeremy L Thompson                                        CeedVector p_mult_fine,
1754eaf62fffSJeremy L Thompson                                        CeedElemRestriction rstr_coarse,
1755eaf62fffSJeremy L Thompson                                        CeedBasis basis_coarse,
1756eaf62fffSJeremy L Thompson                                        const CeedScalar *interp_c_to_f,
1757eaf62fffSJeremy L Thompson                                        CeedOperator *op_coarse,
1758eaf62fffSJeremy L Thompson                                        CeedOperator *op_prolong,
1759eaf62fffSJeremy L Thompson                                        CeedOperator *op_restrict) {
1760eaf62fffSJeremy L Thompson   int ierr;
1761f04ea552SJeremy L Thompson   ierr = CeedOperatorCheckReady(op_fine); CeedChk(ierr);
1762eaf62fffSJeremy L Thompson   Ceed ceed;
1763eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetCeed(op_fine, &ceed); CeedChk(ierr);
1764eaf62fffSJeremy L Thompson 
1765eaf62fffSJeremy L Thompson   // Check for compatible quadrature spaces
1766eaf62fffSJeremy L Thompson   CeedBasis basis_fine;
1767eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetActiveBasis(op_fine, &basis_fine); CeedChk(ierr);
1768eaf62fffSJeremy L Thompson   CeedInt Q_f, Q_c;
1769eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_fine, &Q_f); CeedChk(ierr);
1770eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis_coarse, &Q_c); CeedChk(ierr);
1771eaf62fffSJeremy L Thompson   if (Q_f != Q_c)
1772eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
1773eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_DIMENSION,
1774eaf62fffSJeremy L Thompson                      "Bases must have compatible quadrature spaces");
1775eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
1776eaf62fffSJeremy L Thompson 
1777eaf62fffSJeremy L Thompson   // Coarse to fine basis
1778eaf62fffSJeremy L Thompson   CeedElemTopology topo;
1779eaf62fffSJeremy L Thompson   ierr = CeedBasisGetTopology(basis_fine, &topo); CeedChk(ierr);
1780eaf62fffSJeremy L Thompson   CeedInt dim, num_comp, num_nodes_c, num_nodes_f;
1781eaf62fffSJeremy L Thompson   ierr = CeedBasisGetDimension(basis_fine, &dim); CeedChk(ierr);
1782eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumComponents(basis_fine, &num_comp); CeedChk(ierr);
1783eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumNodes(basis_fine, &num_nodes_f); CeedChk(ierr);
1784eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr_coarse, &num_nodes_c);
1785eaf62fffSJeremy L Thompson   CeedChk(ierr);
1786eaf62fffSJeremy L Thompson   CeedScalar *q_ref, *q_weight, *grad;
1787f9e0419eSJeremy L Thompson   ierr = CeedCalloc(num_nodes_f*dim, &q_ref); CeedChk(ierr);
1788eaf62fffSJeremy L Thompson   ierr = CeedCalloc(num_nodes_f, &q_weight); CeedChk(ierr);
1789eaf62fffSJeremy L Thompson   ierr = CeedCalloc(num_nodes_f*num_nodes_c*dim, &grad); CeedChk(ierr);
1790eaf62fffSJeremy L Thompson   CeedBasis basis_c_to_f;
1791eaf62fffSJeremy L Thompson   ierr = CeedBasisCreateH1(ceed, topo, num_comp, num_nodes_c, num_nodes_f,
1792eaf62fffSJeremy L Thompson                            interp_c_to_f, grad, q_ref, q_weight, &basis_c_to_f);
1793eaf62fffSJeremy L Thompson   CeedChk(ierr);
1794eaf62fffSJeremy L Thompson   ierr = CeedFree(&q_ref); CeedChk(ierr);
1795eaf62fffSJeremy L Thompson   ierr = CeedFree(&q_weight); CeedChk(ierr);
1796eaf62fffSJeremy L Thompson   ierr = CeedFree(&grad); CeedChk(ierr);
1797eaf62fffSJeremy L Thompson 
1798eaf62fffSJeremy L Thompson   // Core code
1799eaf62fffSJeremy L Thompson   ierr = CeedSingleOperatorMultigridLevel(op_fine, p_mult_fine, rstr_coarse,
1800eaf62fffSJeremy L Thompson                                           basis_coarse, basis_c_to_f, op_coarse,
1801eaf62fffSJeremy L Thompson                                           op_prolong, op_restrict);
1802eaf62fffSJeremy L Thompson   CeedChk(ierr);
1803eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
1804eaf62fffSJeremy L Thompson }
1805eaf62fffSJeremy L Thompson 
1806eaf62fffSJeremy L Thompson /**
1807eaf62fffSJeremy L Thompson   @brief Build a FDM based approximate inverse for each element for a
1808eaf62fffSJeremy L Thompson            CeedOperator
1809eaf62fffSJeremy L Thompson 
1810eaf62fffSJeremy L Thompson   This returns a CeedOperator and CeedVector to apply a Fast Diagonalization
1811eaf62fffSJeremy L Thompson     Method based approximate inverse. This function obtains the simultaneous
1812eaf62fffSJeremy L Thompson     diagonalization for the 1D mass and Laplacian operators,
1813eaf62fffSJeremy L Thompson       M = V^T V, K = V^T S V.
1814eaf62fffSJeremy L Thompson     The assembled QFunction is used to modify the eigenvalues from simultaneous
1815eaf62fffSJeremy L Thompson     diagonalization and obtain an approximate inverse of the form
1816eaf62fffSJeremy L Thompson       V^T S^hat V. The CeedOperator must be linear and non-composite. The
1817eaf62fffSJeremy L Thompson     associated CeedQFunction must therefore also be linear.
1818eaf62fffSJeremy L Thompson 
1819f04ea552SJeremy L Thompson   Note: Calling this function asserts that setup is complete
1820f04ea552SJeremy L Thompson           and sets the CeedOperator as immutable.
1821f04ea552SJeremy L Thompson 
1822eaf62fffSJeremy L Thompson   @param op            CeedOperator to create element inverses
1823eaf62fffSJeremy L Thompson   @param[out] fdm_inv  CeedOperator to apply the action of a FDM based inverse
1824eaf62fffSJeremy L Thompson                          for each element
1825eaf62fffSJeremy L Thompson   @param request       Address of CeedRequest for non-blocking completion, else
1826eaf62fffSJeremy L Thompson                          @ref CEED_REQUEST_IMMEDIATE
1827eaf62fffSJeremy L Thompson 
1828eaf62fffSJeremy L Thompson   @return An error code: 0 - success, otherwise - failure
1829eaf62fffSJeremy L Thompson 
1830eaf62fffSJeremy L Thompson   @ref Backend
1831eaf62fffSJeremy L Thompson **/
1832eaf62fffSJeremy L Thompson int CeedOperatorCreateFDMElementInverse(CeedOperator op, CeedOperator *fdm_inv,
1833eaf62fffSJeremy L Thompson                                         CeedRequest *request) {
1834eaf62fffSJeremy L Thompson   int ierr;
1835eaf62fffSJeremy L Thompson   ierr = CeedOperatorCheckReady(op); CeedChk(ierr);
1836eaf62fffSJeremy L Thompson 
1837eaf62fffSJeremy L Thompson   // Use backend version, if available
1838eaf62fffSJeremy L Thompson   if (op->CreateFDMElementInverse) {
1839eaf62fffSJeremy L Thompson     ierr = op->CreateFDMElementInverse(op, fdm_inv, request); CeedChk(ierr);
1840eaf62fffSJeremy L Thompson     return CEED_ERROR_SUCCESS;
1841eaf62fffSJeremy L Thompson   } else {
1842eaf62fffSJeremy L Thompson     // Check for valid fallback resource
1843eaf62fffSJeremy L Thompson     const char *resource, *fallback_resource;
1844eaf62fffSJeremy L Thompson     ierr = CeedGetResource(op->ceed, &resource); CeedChk(ierr);
1845eaf62fffSJeremy L Thompson     ierr = CeedGetOperatorFallbackResource(op->ceed, &fallback_resource);
1846eaf62fffSJeremy L Thompson     CeedChk(ierr);
1847eaf62fffSJeremy L Thompson     if (strcmp(fallback_resource, "") && strcmp(resource, fallback_resource)) {
1848eaf62fffSJeremy L Thompson       // Fallback to reference Ceed
1849eaf62fffSJeremy L Thompson       if (!op->op_fallback) {
1850eaf62fffSJeremy L Thompson         ierr = CeedOperatorCreateFallback(op); CeedChk(ierr);
1851eaf62fffSJeremy L Thompson       }
1852eaf62fffSJeremy L Thompson       // Assemble
1853eaf62fffSJeremy L Thompson       ierr = CeedOperatorCreateFDMElementInverse(op->op_fallback, fdm_inv, request);
1854eaf62fffSJeremy L Thompson       CeedChk(ierr);
1855eaf62fffSJeremy L Thompson       return CEED_ERROR_SUCCESS;
1856eaf62fffSJeremy L Thompson     }
1857eaf62fffSJeremy L Thompson   }
1858eaf62fffSJeremy L Thompson 
1859eaf62fffSJeremy L Thompson   // Interface implementation
1860eaf62fffSJeremy L Thompson   Ceed ceed, ceed_parent;
1861eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChk(ierr);
1862eaf62fffSJeremy L Thompson   ierr = CeedGetOperatorFallbackParentCeed(ceed, &ceed_parent); CeedChk(ierr);
1863eaf62fffSJeremy L Thompson   ceed_parent = ceed_parent ? ceed_parent : ceed;
1864eaf62fffSJeremy L Thompson   CeedQFunction qf;
1865eaf62fffSJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChk(ierr);
1866eaf62fffSJeremy L Thompson 
1867eaf62fffSJeremy L Thompson   // Determine active input basis
1868eaf62fffSJeremy L Thompson   bool interp = false, grad = false;
1869eaf62fffSJeremy L Thompson   CeedBasis basis = NULL;
1870eaf62fffSJeremy L Thompson   CeedElemRestriction rstr = NULL;
1871eaf62fffSJeremy L Thompson   CeedOperatorField *op_fields;
1872eaf62fffSJeremy L Thompson   CeedQFunctionField *qf_fields;
1873eaf62fffSJeremy L Thompson   CeedInt num_input_fields;
18747e7773b5SJeremy L Thompson   ierr = CeedOperatorGetFields(op, &num_input_fields, &op_fields, NULL, NULL);
18757e7773b5SJeremy L Thompson   CeedChk(ierr);
18767e7773b5SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qf_fields, NULL, NULL); CeedChk(ierr);
1877eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<num_input_fields; i++) {
1878eaf62fffSJeremy L Thompson     CeedVector vec;
1879eaf62fffSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(op_fields[i], &vec); CeedChk(ierr);
1880eaf62fffSJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
1881eaf62fffSJeremy L Thompson       CeedEvalMode eval_mode;
1882eaf62fffSJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode); CeedChk(ierr);
1883eaf62fffSJeremy L Thompson       interp = interp || eval_mode == CEED_EVAL_INTERP;
1884eaf62fffSJeremy L Thompson       grad = grad || eval_mode == CEED_EVAL_GRAD;
1885eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(op_fields[i], &basis); CeedChk(ierr);
1886eaf62fffSJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(op_fields[i], &rstr); CeedChk(ierr);
1887eaf62fffSJeremy L Thompson     }
1888eaf62fffSJeremy L Thompson   }
1889eaf62fffSJeremy L Thompson   if (!basis)
1890eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
1891eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_BACKEND, "No active field set");
1892eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
1893eaf62fffSJeremy L Thompson   CeedInt P_1d, Q_1d, elem_size, num_qpts, dim, num_comp = 1, num_elem = 1,
1894eaf62fffSJeremy L Thompson                                                 l_size = 1;
1895eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumNodes1D(basis, &P_1d); CeedChk(ierr);
1896eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumNodes(basis, &elem_size); CeedChk(ierr);
1897eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints1D(basis, &Q_1d); CeedChk(ierr);
1898eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basis, &num_qpts); CeedChk(ierr);
1899eaf62fffSJeremy L Thompson   ierr = CeedBasisGetDimension(basis, &dim); CeedChk(ierr);
1900eaf62fffSJeremy L Thompson   ierr = CeedBasisGetNumComponents(basis, &num_comp); CeedChk(ierr);
1901eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr, &num_elem); CeedChk(ierr);
1902eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetLVectorSize(rstr, &l_size); CeedChk(ierr);
1903eaf62fffSJeremy L Thompson 
1904eaf62fffSJeremy L Thompson   // Build and diagonalize 1D Mass and Laplacian
1905eaf62fffSJeremy L Thompson   bool tensor_basis;
1906eaf62fffSJeremy L Thompson   ierr = CeedBasisIsTensor(basis, &tensor_basis); CeedChk(ierr);
1907eaf62fffSJeremy L Thompson   if (!tensor_basis)
1908eaf62fffSJeremy L Thompson     // LCOV_EXCL_START
1909eaf62fffSJeremy L Thompson     return CeedError(ceed, CEED_ERROR_BACKEND,
1910eaf62fffSJeremy L Thompson                      "FDMElementInverse only supported for tensor "
1911eaf62fffSJeremy L Thompson                      "bases");
1912eaf62fffSJeremy L Thompson   // LCOV_EXCL_STOP
1913eaf62fffSJeremy L Thompson   CeedScalar *mass, *laplace, *x, *fdm_interp, *lambda;
1914eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d*P_1d, &mass); CeedChk(ierr);
1915eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d*P_1d, &laplace); CeedChk(ierr);
1916eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d*P_1d, &x); CeedChk(ierr);
1917eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d*P_1d, &fdm_interp); CeedChk(ierr);
1918eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d, &lambda); CeedChk(ierr);
1919eaf62fffSJeremy L Thompson   // -- Build matrices
1920eaf62fffSJeremy L Thompson   const CeedScalar *interp_1d, *grad_1d, *q_weight_1d;
1921eaf62fffSJeremy L Thompson   ierr = CeedBasisGetInterp1D(basis, &interp_1d); CeedChk(ierr);
1922eaf62fffSJeremy L Thompson   ierr = CeedBasisGetGrad1D(basis, &grad_1d); CeedChk(ierr);
1923eaf62fffSJeremy L Thompson   ierr = CeedBasisGetQWeights(basis, &q_weight_1d); CeedChk(ierr);
1924eaf62fffSJeremy L Thompson   ierr = CeedBuildMassLaplace(interp_1d, grad_1d, q_weight_1d, P_1d, Q_1d, dim,
1925eaf62fffSJeremy L Thompson                               mass, laplace); CeedChk(ierr);
1926eaf62fffSJeremy L Thompson 
1927eaf62fffSJeremy L Thompson   // -- Diagonalize
1928eaf62fffSJeremy L Thompson   ierr = CeedSimultaneousDiagonalization(ceed, laplace, mass, x, lambda, P_1d);
1929eaf62fffSJeremy L Thompson   CeedChk(ierr);
1930eaf62fffSJeremy L Thompson   ierr = CeedFree(&mass); CeedChk(ierr);
1931eaf62fffSJeremy L Thompson   ierr = CeedFree(&laplace); CeedChk(ierr);
1932eaf62fffSJeremy L Thompson   for (CeedInt i=0; i<P_1d; i++)
1933eaf62fffSJeremy L Thompson     for (CeedInt j=0; j<P_1d; j++)
1934eaf62fffSJeremy L Thompson       fdm_interp[i+j*P_1d] = x[j+i*P_1d];
1935eaf62fffSJeremy L Thompson   ierr = CeedFree(&x); CeedChk(ierr);
1936eaf62fffSJeremy L Thompson 
1937eaf62fffSJeremy L Thompson   // Assemble QFunction
1938eaf62fffSJeremy L Thompson   CeedVector assembled;
1939eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_qf;
194070a7ffb3SJeremy L Thompson   ierr =  CeedOperatorLinearAssembleQFunctionBuildOrUpdate(op, &assembled,
194170a7ffb3SJeremy L Thompson           &rstr_qf, request); CeedChk(ierr);
1942eaf62fffSJeremy L Thompson   CeedInt layout[3];
1943eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionGetELayout(rstr_qf, &layout); CeedChk(ierr);
1944eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionDestroy(&rstr_qf); CeedChk(ierr);
1945eaf62fffSJeremy L Thompson   CeedScalar max_norm = 0;
1946eaf62fffSJeremy L Thompson   ierr = CeedVectorNorm(assembled, CEED_NORM_MAX, &max_norm); CeedChk(ierr);
1947eaf62fffSJeremy L Thompson 
1948eaf62fffSJeremy L Thompson   // Calculate element averages
1949eaf62fffSJeremy L Thompson   CeedInt num_modes = (interp?1:0) + (grad?dim:0);
1950eaf62fffSJeremy L Thompson   CeedScalar *elem_avg;
1951eaf62fffSJeremy L Thompson   const CeedScalar *assembled_array, *q_weight_array;
1952eaf62fffSJeremy L Thompson   CeedVector q_weight;
1953eaf62fffSJeremy L Thompson   ierr = CeedVectorCreate(ceed_parent, num_qpts, &q_weight); CeedChk(ierr);
1954eaf62fffSJeremy L Thompson   ierr = CeedBasisApply(basis, 1, CEED_NOTRANSPOSE, CEED_EVAL_WEIGHT,
1955eaf62fffSJeremy L Thompson                         CEED_VECTOR_NONE, q_weight); CeedChk(ierr);
1956eaf62fffSJeremy L Thompson   ierr = CeedVectorGetArrayRead(assembled, CEED_MEM_HOST, &assembled_array);
1957eaf62fffSJeremy L Thompson   CeedChk(ierr);
1958eaf62fffSJeremy L Thompson   ierr = CeedVectorGetArrayRead(q_weight, CEED_MEM_HOST, &q_weight_array);
1959eaf62fffSJeremy L Thompson   CeedChk(ierr);
1960eaf62fffSJeremy L Thompson   ierr = CeedCalloc(num_elem, &elem_avg); CeedChk(ierr);
1961eaf62fffSJeremy L Thompson   const CeedScalar qf_value_bound = max_norm*100*CEED_EPSILON;
1962eaf62fffSJeremy L Thompson   for (CeedInt e=0; e<num_elem; e++) {
1963eaf62fffSJeremy L Thompson     CeedInt count = 0;
1964eaf62fffSJeremy L Thompson     for (CeedInt q=0; q<num_qpts; q++)
1965eaf62fffSJeremy L Thompson       for (CeedInt i=0; i<num_comp*num_comp*num_modes*num_modes; i++)
1966eaf62fffSJeremy L Thompson         if (fabs(assembled_array[q*layout[0] + i*layout[1] + e*layout[2]]) >
1967eaf62fffSJeremy L Thompson             qf_value_bound) {
1968eaf62fffSJeremy L Thompson           elem_avg[e] += assembled_array[q*layout[0] + i*layout[1] + e*layout[2]] /
1969eaf62fffSJeremy L Thompson                          q_weight_array[q];
1970eaf62fffSJeremy L Thompson           count++;
1971eaf62fffSJeremy L Thompson         }
1972eaf62fffSJeremy L Thompson     if (count) {
1973eaf62fffSJeremy L Thompson       elem_avg[e] /= count;
1974eaf62fffSJeremy L Thompson     } else {
1975eaf62fffSJeremy L Thompson       elem_avg[e] = 1.0;
1976eaf62fffSJeremy L Thompson     }
1977eaf62fffSJeremy L Thompson   }
1978eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArrayRead(assembled, &assembled_array); CeedChk(ierr);
1979eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&assembled); CeedChk(ierr);
1980eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArrayRead(q_weight, &q_weight_array); CeedChk(ierr);
1981eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&q_weight); CeedChk(ierr);
1982eaf62fffSJeremy L Thompson 
1983eaf62fffSJeremy L Thompson   // Build FDM diagonal
1984eaf62fffSJeremy L Thompson   CeedVector q_data;
1985eaf62fffSJeremy L Thompson   CeedScalar *q_data_array, *fdm_diagonal;
1986eaf62fffSJeremy L Thompson   ierr = CeedCalloc(num_comp*elem_size, &fdm_diagonal); CeedChk(ierr);
1987eaf62fffSJeremy L Thompson   const CeedScalar fdm_diagonal_bound = elem_size*CEED_EPSILON;
1988eaf62fffSJeremy L Thompson   for (CeedInt c=0; c<num_comp; c++)
1989eaf62fffSJeremy L Thompson     for (CeedInt n=0; n<elem_size; n++) {
1990eaf62fffSJeremy L Thompson       if (interp)
1991eaf62fffSJeremy L Thompson         fdm_diagonal[c*elem_size + n] = 1.0;
1992eaf62fffSJeremy L Thompson       if (grad)
1993eaf62fffSJeremy L Thompson         for (CeedInt d=0; d<dim; d++) {
1994eaf62fffSJeremy L Thompson           CeedInt i = (n / CeedIntPow(P_1d, d)) % P_1d;
1995eaf62fffSJeremy L Thompson           fdm_diagonal[c*elem_size + n] += lambda[i];
1996eaf62fffSJeremy L Thompson         }
1997eaf62fffSJeremy L Thompson       if (fabs(fdm_diagonal[c*elem_size + n]) < fdm_diagonal_bound)
1998eaf62fffSJeremy L Thompson         fdm_diagonal[c*elem_size + n] = fdm_diagonal_bound;
1999eaf62fffSJeremy L Thompson     }
2000eaf62fffSJeremy L Thompson   ierr = CeedVectorCreate(ceed_parent, num_elem*num_comp*elem_size, &q_data);
2001eaf62fffSJeremy L Thompson   CeedChk(ierr);
2002eaf62fffSJeremy L Thompson   ierr = CeedVectorSetValue(q_data, 0.0); CeedChk(ierr);
20039c774eddSJeremy L Thompson   ierr = CeedVectorGetArrayWrite(q_data, CEED_MEM_HOST, &q_data_array);
20049c774eddSJeremy L Thompson   CeedChk(ierr);
2005eaf62fffSJeremy L Thompson   for (CeedInt e=0; e<num_elem; e++)
2006eaf62fffSJeremy L Thompson     for (CeedInt c=0; c<num_comp; c++)
2007eaf62fffSJeremy L Thompson       for (CeedInt n=0; n<elem_size; n++)
2008eaf62fffSJeremy L Thompson         q_data_array[(e*num_comp+c)*elem_size+n] = 1. / (elem_avg[e] *
2009eaf62fffSJeremy L Thompson             fdm_diagonal[c*elem_size + n]);
2010eaf62fffSJeremy L Thompson   ierr = CeedFree(&elem_avg); CeedChk(ierr);
2011eaf62fffSJeremy L Thompson   ierr = CeedFree(&fdm_diagonal); CeedChk(ierr);
2012eaf62fffSJeremy L Thompson   ierr = CeedVectorRestoreArray(q_data, &q_data_array); CeedChk(ierr);
2013eaf62fffSJeremy L Thompson 
2014eaf62fffSJeremy L Thompson   // Setup FDM operator
2015eaf62fffSJeremy L Thompson   // -- Basis
2016eaf62fffSJeremy L Thompson   CeedBasis fdm_basis;
2017eaf62fffSJeremy L Thompson   CeedScalar *grad_dummy, *q_ref_dummy, *q_weight_dummy;
2018eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d*P_1d, &grad_dummy); CeedChk(ierr);
2019eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d, &q_ref_dummy); CeedChk(ierr);
2020eaf62fffSJeremy L Thompson   ierr = CeedCalloc(P_1d, &q_weight_dummy); CeedChk(ierr);
2021eaf62fffSJeremy L Thompson   ierr = CeedBasisCreateTensorH1(ceed_parent, dim, num_comp, P_1d, P_1d,
2022eaf62fffSJeremy L Thompson                                  fdm_interp, grad_dummy, q_ref_dummy,
2023eaf62fffSJeremy L Thompson                                  q_weight_dummy, &fdm_basis); CeedChk(ierr);
2024eaf62fffSJeremy L Thompson   ierr = CeedFree(&fdm_interp); CeedChk(ierr);
2025eaf62fffSJeremy L Thompson   ierr = CeedFree(&grad_dummy); CeedChk(ierr);
2026eaf62fffSJeremy L Thompson   ierr = CeedFree(&q_ref_dummy); CeedChk(ierr);
2027eaf62fffSJeremy L Thompson   ierr = CeedFree(&q_weight_dummy); CeedChk(ierr);
2028eaf62fffSJeremy L Thompson   ierr = CeedFree(&lambda); CeedChk(ierr);
2029eaf62fffSJeremy L Thompson 
2030eaf62fffSJeremy L Thompson   // -- Restriction
2031eaf62fffSJeremy L Thompson   CeedElemRestriction rstr_qd_i;
2032eaf62fffSJeremy L Thompson   CeedInt strides[3] = {1, elem_size, elem_size*num_comp};
2033eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionCreateStrided(ceed_parent, num_elem, elem_size,
2034eaf62fffSJeremy L Thompson                                           num_comp, num_elem*num_comp*elem_size,
2035eaf62fffSJeremy L Thompson                                           strides, &rstr_qd_i); CeedChk(ierr);
2036eaf62fffSJeremy L Thompson   // -- QFunction
2037eaf62fffSJeremy L Thompson   CeedQFunction qf_fdm;
2038eaf62fffSJeremy L Thompson   ierr = CeedQFunctionCreateInteriorByName(ceed_parent, "Scale", &qf_fdm);
2039eaf62fffSJeremy L Thompson   CeedChk(ierr);
2040eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddInput(qf_fdm, "input", num_comp, CEED_EVAL_INTERP);
2041eaf62fffSJeremy L Thompson   CeedChk(ierr);
2042eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddInput(qf_fdm, "scale", num_comp, CEED_EVAL_NONE);
2043eaf62fffSJeremy L Thompson   CeedChk(ierr);
2044eaf62fffSJeremy L Thompson   ierr = CeedQFunctionAddOutput(qf_fdm, "output", num_comp, CEED_EVAL_INTERP);
2045eaf62fffSJeremy L Thompson   CeedChk(ierr);
2046eaf62fffSJeremy L Thompson   // -- QFunction context
2047eaf62fffSJeremy L Thompson   CeedInt *num_comp_data;
2048eaf62fffSJeremy L Thompson   ierr = CeedCalloc(1, &num_comp_data); CeedChk(ierr);
2049eaf62fffSJeremy L Thompson   num_comp_data[0] = num_comp;
2050eaf62fffSJeremy L Thompson   CeedQFunctionContext ctx_fdm;
2051eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextCreate(ceed, &ctx_fdm); CeedChk(ierr);
2052eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextSetData(ctx_fdm, CEED_MEM_HOST, CEED_OWN_POINTER,
2053eaf62fffSJeremy L Thompson                                      sizeof(*num_comp_data), num_comp_data);
2054eaf62fffSJeremy L Thompson   CeedChk(ierr);
2055eaf62fffSJeremy L Thompson   ierr = CeedQFunctionSetContext(qf_fdm, ctx_fdm); CeedChk(ierr);
2056eaf62fffSJeremy L Thompson   ierr = CeedQFunctionContextDestroy(&ctx_fdm); CeedChk(ierr);
2057eaf62fffSJeremy L Thompson   // -- Operator
2058eaf62fffSJeremy L Thompson   ierr = CeedOperatorCreate(ceed_parent, qf_fdm, NULL, NULL, fdm_inv);
2059eaf62fffSJeremy L Thompson   CeedChk(ierr);
2060eaf62fffSJeremy L Thompson   CeedOperatorSetField(*fdm_inv, "input", rstr, fdm_basis, CEED_VECTOR_ACTIVE);
2061eaf62fffSJeremy L Thompson   CeedChk(ierr);
2062eaf62fffSJeremy L Thompson   CeedOperatorSetField(*fdm_inv, "scale", rstr_qd_i, CEED_BASIS_COLLOCATED,
2063eaf62fffSJeremy L Thompson                        q_data); CeedChk(ierr);
2064eaf62fffSJeremy L Thompson   CeedOperatorSetField(*fdm_inv, "output", rstr, fdm_basis, CEED_VECTOR_ACTIVE);
2065eaf62fffSJeremy L Thompson   CeedChk(ierr);
2066eaf62fffSJeremy L Thompson 
2067eaf62fffSJeremy L Thompson   // Cleanup
2068eaf62fffSJeremy L Thompson   ierr = CeedVectorDestroy(&q_data); CeedChk(ierr);
2069eaf62fffSJeremy L Thompson   ierr = CeedBasisDestroy(&fdm_basis); CeedChk(ierr);
2070eaf62fffSJeremy L Thompson   ierr = CeedElemRestrictionDestroy(&rstr_qd_i); CeedChk(ierr);
2071eaf62fffSJeremy L Thompson   ierr = CeedQFunctionDestroy(&qf_fdm); CeedChk(ierr);
2072eaf62fffSJeremy L Thompson 
2073eaf62fffSJeremy L Thompson   return CEED_ERROR_SUCCESS;
2074eaf62fffSJeremy L Thompson }
2075eaf62fffSJeremy L Thompson 
2076eaf62fffSJeremy L Thompson /// @}
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