xref: /libCEED/backends/hip-ref/ceed-hip-ref-operator.c (revision b216396c6ed5d64bcae95e98b720fbdd56ea5be1)
13d8e8822SJeremy L Thompson // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other CEED contributors.
23d8e8822SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
30d0321e0SJeremy L Thompson //
43d8e8822SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause
50d0321e0SJeremy L Thompson //
63d8e8822SJeremy L Thompson // This file is part of CEED:  http://github.com/ceed
70d0321e0SJeremy L Thompson 
80d0321e0SJeremy L Thompson #include <ceed/ceed.h>
90d0321e0SJeremy L Thompson #include <ceed/backend.h>
100d0321e0SJeremy L Thompson #include <hip/hip_runtime.h>
110d0321e0SJeremy L Thompson #include <assert.h>
120d0321e0SJeremy L Thompson #include <stdbool.h>
130d0321e0SJeremy L Thompson #include <string.h>
140d0321e0SJeremy L Thompson #include "ceed-hip-ref.h"
150d0321e0SJeremy L Thompson #include "../hip/ceed-hip-compile.h"
160d0321e0SJeremy L Thompson 
170d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
180d0321e0SJeremy L Thompson // Destroy operator
190d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
200d0321e0SJeremy L Thompson static int CeedOperatorDestroy_Hip(CeedOperator op) {
210d0321e0SJeremy L Thompson   int ierr;
220d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
230d0321e0SJeremy L Thompson   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
240d0321e0SJeremy L Thompson 
250d0321e0SJeremy L Thompson   // Apply data
260d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < impl->numein + impl->numeout; i++) {
270d0321e0SJeremy L Thompson     ierr = CeedVectorDestroy(&impl->evecs[i]); CeedChkBackend(ierr);
280d0321e0SJeremy L Thompson   }
290d0321e0SJeremy L Thompson   ierr = CeedFree(&impl->evecs); CeedChkBackend(ierr);
300d0321e0SJeremy L Thompson 
310d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < impl->numein; i++) {
320d0321e0SJeremy L Thompson     ierr = CeedVectorDestroy(&impl->qvecsin[i]); CeedChkBackend(ierr);
330d0321e0SJeremy L Thompson   }
340d0321e0SJeremy L Thompson   ierr = CeedFree(&impl->qvecsin); CeedChkBackend(ierr);
350d0321e0SJeremy L Thompson 
360d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < impl->numeout; i++) {
370d0321e0SJeremy L Thompson     ierr = CeedVectorDestroy(&impl->qvecsout[i]); CeedChkBackend(ierr);
380d0321e0SJeremy L Thompson   }
390d0321e0SJeremy L Thompson   ierr = CeedFree(&impl->qvecsout); CeedChkBackend(ierr);
400d0321e0SJeremy L Thompson 
410d0321e0SJeremy L Thompson   // QFunction diagonal assembly data
420d0321e0SJeremy L Thompson   for (CeedInt i=0; i<impl->qfnumactivein; i++) {
430d0321e0SJeremy L Thompson     ierr = CeedVectorDestroy(&impl->qfactivein[i]); CeedChkBackend(ierr);
440d0321e0SJeremy L Thompson   }
450d0321e0SJeremy L Thompson   ierr = CeedFree(&impl->qfactivein); CeedChkBackend(ierr);
460d0321e0SJeremy L Thompson 
470d0321e0SJeremy L Thompson   // Diag data
480d0321e0SJeremy L Thompson   if (impl->diag) {
490d0321e0SJeremy L Thompson     Ceed ceed;
500d0321e0SJeremy L Thompson     ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
510d0321e0SJeremy L Thompson     CeedChk_Hip(ceed, hipModuleUnload(impl->diag->module));
520d0321e0SJeremy L Thompson     ierr = CeedFree(&impl->diag->h_emodein); CeedChkBackend(ierr);
530d0321e0SJeremy L Thompson     ierr = CeedFree(&impl->diag->h_emodeout); CeedChkBackend(ierr);
540d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_emodein); CeedChk_Hip(ceed, ierr);
550d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_emodeout); CeedChk_Hip(ceed, ierr);
560d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_identity); CeedChk_Hip(ceed, ierr);
570d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_interpin); CeedChk_Hip(ceed, ierr);
580d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_interpout); CeedChk_Hip(ceed, ierr);
590d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_gradin); CeedChk_Hip(ceed, ierr);
600d0321e0SJeremy L Thompson     ierr = hipFree(impl->diag->d_gradout); CeedChk_Hip(ceed, ierr);
610d0321e0SJeremy L Thompson     ierr = CeedElemRestrictionDestroy(&impl->diag->pbdiagrstr);
620d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
630d0321e0SJeremy L Thompson     ierr = CeedVectorDestroy(&impl->diag->elemdiag); CeedChkBackend(ierr);
640d0321e0SJeremy L Thompson     ierr = CeedVectorDestroy(&impl->diag->pbelemdiag); CeedChkBackend(ierr);
650d0321e0SJeremy L Thompson   }
660d0321e0SJeremy L Thompson   ierr = CeedFree(&impl->diag); CeedChkBackend(ierr);
670d0321e0SJeremy L Thompson 
68a835093fSnbeams   if (impl->asmb) {
69a835093fSnbeams     Ceed ceed;
70a835093fSnbeams     ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
71a835093fSnbeams     CeedChk_Hip(ceed, hipModuleUnload(impl->asmb->module));
72a835093fSnbeams     ierr = hipFree(impl->asmb->d_B_in); CeedChk_Hip(ceed, ierr);
73a835093fSnbeams     ierr = hipFree(impl->asmb->d_B_out); CeedChk_Hip(ceed, ierr);
74a835093fSnbeams   }
75a835093fSnbeams   ierr = CeedFree(&impl->asmb); CeedChkBackend(ierr);
76a835093fSnbeams 
770d0321e0SJeremy L Thompson   ierr = CeedFree(&impl); CeedChkBackend(ierr);
780d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
790d0321e0SJeremy L Thompson }
800d0321e0SJeremy L Thompson 
810d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
820d0321e0SJeremy L Thompson // Setup infields or outfields
830d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
840d0321e0SJeremy L Thompson static int CeedOperatorSetupFields_Hip(CeedQFunction qf, CeedOperator op,
850d0321e0SJeremy L Thompson                                        bool isinput, CeedVector *evecs,
860d0321e0SJeremy L Thompson                                        CeedVector *qvecs, CeedInt starte,
870d0321e0SJeremy L Thompson                                        CeedInt numfields, CeedInt Q,
880d0321e0SJeremy L Thompson                                        CeedInt numelements) {
890d0321e0SJeremy L Thompson   CeedInt dim, ierr, size;
90d2643443SJeremy L Thompson   CeedSize q_size;
910d0321e0SJeremy L Thompson   Ceed ceed;
920d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
930d0321e0SJeremy L Thompson   CeedBasis basis;
940d0321e0SJeremy L Thompson   CeedElemRestriction Erestrict;
950d0321e0SJeremy L Thompson   CeedOperatorField *opfields;
960d0321e0SJeremy L Thompson   CeedQFunctionField *qffields;
970d0321e0SJeremy L Thompson   CeedVector fieldvec;
980d0321e0SJeremy L Thompson   bool strided;
990d0321e0SJeremy L Thompson   bool skiprestrict;
1000d0321e0SJeremy L Thompson 
1010d0321e0SJeremy L Thompson   if (isinput) {
1020d0321e0SJeremy L Thompson     ierr = CeedOperatorGetFields(op, NULL, &opfields, NULL, NULL);
1030d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
1040d0321e0SJeremy L Thompson     ierr = CeedQFunctionGetFields(qf, NULL, &qffields, NULL, NULL);
1050d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
1060d0321e0SJeremy L Thompson   } else {
1070d0321e0SJeremy L Thompson     ierr = CeedOperatorGetFields(op, NULL, NULL, NULL, &opfields);
1080d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
1090d0321e0SJeremy L Thompson     ierr = CeedQFunctionGetFields(qf, NULL, NULL, NULL, &qffields);
1100d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
1110d0321e0SJeremy L Thompson   }
1120d0321e0SJeremy L Thompson 
1130d0321e0SJeremy L Thompson   // Loop over fields
1140d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numfields; i++) {
1150d0321e0SJeremy L Thompson     CeedEvalMode emode;
1160d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qffields[i], &emode); CeedChkBackend(ierr);
1170d0321e0SJeremy L Thompson 
1180d0321e0SJeremy L Thompson     strided = false;
1190d0321e0SJeremy L Thompson     skiprestrict = false;
1200d0321e0SJeremy L Thompson     if (emode != CEED_EVAL_WEIGHT) {
1210d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(opfields[i], &Erestrict);
1220d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
1230d0321e0SJeremy L Thompson 
1240d0321e0SJeremy L Thompson       // Check whether this field can skip the element restriction:
1250d0321e0SJeremy L Thompson       // must be passive input, with emode NONE, and have a strided restriction with
1260d0321e0SJeremy L Thompson       // CEED_STRIDES_BACKEND.
1270d0321e0SJeremy L Thompson 
1280d0321e0SJeremy L Thompson       // First, check whether the field is input or output:
1290d0321e0SJeremy L Thompson       if (isinput) {
1300d0321e0SJeremy L Thompson         // Check for passive input:
1310d0321e0SJeremy L Thompson         ierr = CeedOperatorFieldGetVector(opfields[i], &fieldvec); CeedChkBackend(ierr);
1320d0321e0SJeremy L Thompson         if (fieldvec != CEED_VECTOR_ACTIVE) {
1330d0321e0SJeremy L Thompson           // Check emode
1340d0321e0SJeremy L Thompson           if (emode == CEED_EVAL_NONE) {
1350d0321e0SJeremy L Thompson             // Check for strided restriction
1360d0321e0SJeremy L Thompson             ierr = CeedElemRestrictionIsStrided(Erestrict, &strided);
1370d0321e0SJeremy L Thompson             CeedChkBackend(ierr);
1380d0321e0SJeremy L Thompson             if (strided) {
1390d0321e0SJeremy L Thompson               // Check if vector is already in preferred backend ordering
1400d0321e0SJeremy L Thompson               ierr = CeedElemRestrictionHasBackendStrides(Erestrict,
1410d0321e0SJeremy L Thompson                      &skiprestrict); CeedChkBackend(ierr);
1420d0321e0SJeremy L Thompson             }
1430d0321e0SJeremy L Thompson           }
1440d0321e0SJeremy L Thompson         }
1450d0321e0SJeremy L Thompson       }
1460d0321e0SJeremy L Thompson       if (skiprestrict) {
1470d0321e0SJeremy L Thompson         // We do not need an E-Vector, but will use the input field vector's data
1480d0321e0SJeremy L Thompson         // directly in the operator application.
1490d0321e0SJeremy L Thompson         evecs[i + starte] = NULL;
1500d0321e0SJeremy L Thompson       } else {
1510d0321e0SJeremy L Thompson         ierr = CeedElemRestrictionCreateVector(Erestrict, NULL,
1520d0321e0SJeremy L Thompson                                                &evecs[i + starte]);
1530d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
1540d0321e0SJeremy L Thompson       }
1550d0321e0SJeremy L Thompson     }
1560d0321e0SJeremy L Thompson 
1570d0321e0SJeremy L Thompson     switch (emode) {
1580d0321e0SJeremy L Thompson     case CEED_EVAL_NONE:
1590d0321e0SJeremy L Thompson       ierr = CeedQFunctionFieldGetSize(qffields[i], &size); CeedChkBackend(ierr);
160d2643443SJeremy L Thompson       q_size = (CeedSize)numelements * Q * size;
161d2643443SJeremy L Thompson       ierr = CeedVectorCreate(ceed, q_size, &qvecs[i]); CeedChkBackend(ierr);
1620d0321e0SJeremy L Thompson       break;
1630d0321e0SJeremy L Thompson     case CEED_EVAL_INTERP:
1640d0321e0SJeremy L Thompson       ierr = CeedQFunctionFieldGetSize(qffields[i], &size); CeedChkBackend(ierr);
165d2643443SJeremy L Thompson       q_size = (CeedSize)numelements * Q * size;
166d2643443SJeremy L Thompson       ierr = CeedVectorCreate(ceed, q_size, &qvecs[i]); CeedChkBackend(ierr);
1670d0321e0SJeremy L Thompson       break;
1680d0321e0SJeremy L Thompson     case CEED_EVAL_GRAD:
1690d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opfields[i], &basis); CeedChkBackend(ierr);
1700d0321e0SJeremy L Thompson       ierr = CeedQFunctionFieldGetSize(qffields[i], &size); CeedChkBackend(ierr);
1710d0321e0SJeremy L Thompson       ierr = CeedBasisGetDimension(basis, &dim); CeedChkBackend(ierr);
172d2643443SJeremy L Thompson       q_size = (CeedSize)numelements * Q * size;
173d2643443SJeremy L Thompson       ierr = CeedVectorCreate(ceed, q_size, &qvecs[i]); CeedChkBackend(ierr);
1740d0321e0SJeremy L Thompson       break;
1750d0321e0SJeremy L Thompson     case CEED_EVAL_WEIGHT: // Only on input fields
1760d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opfields[i], &basis); CeedChkBackend(ierr);
177d2643443SJeremy L Thompson       q_size = (CeedSize)numelements * Q;
178d2643443SJeremy L Thompson       ierr = CeedVectorCreate(ceed, q_size, &qvecs[i]); CeedChkBackend(ierr);
1790d0321e0SJeremy L Thompson       ierr = CeedBasisApply(basis, numelements, CEED_NOTRANSPOSE,
1800d0321e0SJeremy L Thompson                             CEED_EVAL_WEIGHT, NULL, qvecs[i]); CeedChkBackend(ierr);
1810d0321e0SJeremy L Thompson       break;
1820d0321e0SJeremy L Thompson     case CEED_EVAL_DIV:
1830d0321e0SJeremy L Thompson       break; // TODO: Not implemented
1840d0321e0SJeremy L Thompson     case CEED_EVAL_CURL:
1850d0321e0SJeremy L Thompson       break; // TODO: Not implemented
1860d0321e0SJeremy L Thompson     }
1870d0321e0SJeremy L Thompson   }
1880d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
1890d0321e0SJeremy L Thompson }
1900d0321e0SJeremy L Thompson 
1910d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1920d0321e0SJeremy L Thompson // CeedOperator needs to connect all the named fields (be they active or passive)
1930d0321e0SJeremy L Thompson //   to the named inputs and outputs of its CeedQFunction.
1940d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1950d0321e0SJeremy L Thompson static int CeedOperatorSetup_Hip(CeedOperator op) {
1960d0321e0SJeremy L Thompson   int ierr;
1970d0321e0SJeremy L Thompson   bool setupdone;
1980d0321e0SJeremy L Thompson   ierr = CeedOperatorIsSetupDone(op, &setupdone); CeedChkBackend(ierr);
1990d0321e0SJeremy L Thompson   if (setupdone)
2000d0321e0SJeremy L Thompson     return CEED_ERROR_SUCCESS;
2010d0321e0SJeremy L Thompson   Ceed ceed;
2020d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
2030d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
2040d0321e0SJeremy L Thompson   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
2050d0321e0SJeremy L Thompson   CeedQFunction qf;
2060d0321e0SJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChkBackend(ierr);
2070d0321e0SJeremy L Thompson   CeedInt Q, numelements, numinputfields, numoutputfields;
2080d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumQuadraturePoints(op, &Q); CeedChkBackend(ierr);
2090d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumElements(op, &numelements); CeedChkBackend(ierr);
2100d0321e0SJeremy L Thompson   CeedOperatorField *opinputfields, *opoutputfields;
2110d0321e0SJeremy L Thompson   ierr = CeedOperatorGetFields(op, &numinputfields, &opinputfields,
2120d0321e0SJeremy L Thompson                                &numoutputfields, &opoutputfields);
2130d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
2140d0321e0SJeremy L Thompson   CeedQFunctionField *qfinputfields, *qfoutputfields;
2150d0321e0SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qfinputfields, NULL, &qfoutputfields);
2160d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
2170d0321e0SJeremy L Thompson 
2180d0321e0SJeremy L Thompson   // Allocate
2190d0321e0SJeremy L Thompson   ierr = CeedCalloc(numinputfields + numoutputfields, &impl->evecs);
2200d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
2210d0321e0SJeremy L Thompson 
2220d0321e0SJeremy L Thompson   ierr = CeedCalloc(CEED_FIELD_MAX, &impl->qvecsin); CeedChkBackend(ierr);
2230d0321e0SJeremy L Thompson   ierr = CeedCalloc(CEED_FIELD_MAX, &impl->qvecsout); CeedChkBackend(ierr);
2240d0321e0SJeremy L Thompson 
2250d0321e0SJeremy L Thompson   impl->numein = numinputfields; impl->numeout = numoutputfields;
2260d0321e0SJeremy L Thompson 
2270d0321e0SJeremy L Thompson   // Set up infield and outfield evecs and qvecs
2280d0321e0SJeremy L Thompson   // Infields
2290d0321e0SJeremy L Thompson   ierr = CeedOperatorSetupFields_Hip(qf, op, true,
2300d0321e0SJeremy L Thompson                                      impl->evecs, impl->qvecsin, 0,
2310d0321e0SJeremy L Thompson                                      numinputfields, Q, numelements);
2320d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
2330d0321e0SJeremy L Thompson 
2340d0321e0SJeremy L Thompson   // Outfields
2350d0321e0SJeremy L Thompson   ierr = CeedOperatorSetupFields_Hip(qf, op, false,
2360d0321e0SJeremy L Thompson                                      impl->evecs, impl->qvecsout,
2370d0321e0SJeremy L Thompson                                      numinputfields, numoutputfields, Q,
2380d0321e0SJeremy L Thompson                                      numelements); CeedChkBackend(ierr);
2390d0321e0SJeremy L Thompson 
2400d0321e0SJeremy L Thompson   ierr = CeedOperatorSetSetupDone(op); CeedChkBackend(ierr);
2410d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2420d0321e0SJeremy L Thompson }
2430d0321e0SJeremy L Thompson 
2440d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
2450d0321e0SJeremy L Thompson // Setup Operator Inputs
2460d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
2470d0321e0SJeremy L Thompson static inline int CeedOperatorSetupInputs_Hip(CeedInt numinputfields,
2480d0321e0SJeremy L Thompson     CeedQFunctionField *qfinputfields, CeedOperatorField *opinputfields,
2490d0321e0SJeremy L Thompson     CeedVector invec, const bool skipactive, CeedScalar *edata[2*CEED_FIELD_MAX],
2500d0321e0SJeremy L Thompson     CeedOperator_Hip *impl, CeedRequest *request) {
2510d0321e0SJeremy L Thompson   CeedInt ierr;
2520d0321e0SJeremy L Thompson   CeedEvalMode emode;
2530d0321e0SJeremy L Thompson   CeedVector vec;
2540d0321e0SJeremy L Thompson   CeedElemRestriction Erestrict;
2550d0321e0SJeremy L Thompson 
2560d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numinputfields; i++) {
2570d0321e0SJeremy L Thompson     // Get input vector
2580d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetVector(opinputfields[i], &vec); CeedChkBackend(ierr);
2590d0321e0SJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
2600d0321e0SJeremy L Thompson       if (skipactive)
2610d0321e0SJeremy L Thompson         continue;
2620d0321e0SJeremy L Thompson       else
2630d0321e0SJeremy L Thompson         vec = invec;
2640d0321e0SJeremy L Thompson     }
2650d0321e0SJeremy L Thompson 
2660d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qfinputfields[i], &emode);
2670d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
2680d0321e0SJeremy L Thompson     if (emode == CEED_EVAL_WEIGHT) { // Skip
2690d0321e0SJeremy L Thompson     } else {
2700d0321e0SJeremy L Thompson       // Get input vector
2710d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetVector(opinputfields[i], &vec); CeedChkBackend(ierr);
2720d0321e0SJeremy L Thompson       // Get input element restriction
2730d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(opinputfields[i], &Erestrict);
2740d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
2750d0321e0SJeremy L Thompson       if (vec == CEED_VECTOR_ACTIVE)
2760d0321e0SJeremy L Thompson         vec = invec;
2770d0321e0SJeremy L Thompson       // Restrict, if necessary
2780d0321e0SJeremy L Thompson       if (!impl->evecs[i]) {
2790d0321e0SJeremy L Thompson         // No restriction for this field; read data directly from vec.
2800d0321e0SJeremy L Thompson         ierr = CeedVectorGetArrayRead(vec, CEED_MEM_DEVICE,
2810d0321e0SJeremy L Thompson                                       (const CeedScalar **) &edata[i]);
2820d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
2830d0321e0SJeremy L Thompson       } else {
2840d0321e0SJeremy L Thompson         ierr = CeedElemRestrictionApply(Erestrict, CEED_NOTRANSPOSE, vec,
2850d0321e0SJeremy L Thompson                                         impl->evecs[i], request); CeedChkBackend(ierr);
2860d0321e0SJeremy L Thompson         // Get evec
2870d0321e0SJeremy L Thompson         ierr = CeedVectorGetArrayRead(impl->evecs[i], CEED_MEM_DEVICE,
2880d0321e0SJeremy L Thompson                                       (const CeedScalar **) &edata[i]);
2890d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
2900d0321e0SJeremy L Thompson       }
2910d0321e0SJeremy L Thompson     }
2920d0321e0SJeremy L Thompson   }
2930d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
2940d0321e0SJeremy L Thompson }
2950d0321e0SJeremy L Thompson 
2960d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
2970d0321e0SJeremy L Thompson // Input Basis Action
2980d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
2990d0321e0SJeremy L Thompson static inline int CeedOperatorInputBasis_Hip(CeedInt numelements,
3000d0321e0SJeremy L Thompson     CeedQFunctionField *qfinputfields, CeedOperatorField *opinputfields,
3010d0321e0SJeremy L Thompson     CeedInt numinputfields, const bool skipactive,
3020d0321e0SJeremy L Thompson     CeedScalar *edata[2*CEED_FIELD_MAX], CeedOperator_Hip *impl) {
3030d0321e0SJeremy L Thompson   CeedInt ierr;
3040d0321e0SJeremy L Thompson   CeedInt elemsize, size;
3050d0321e0SJeremy L Thompson   CeedElemRestriction Erestrict;
3060d0321e0SJeremy L Thompson   CeedEvalMode emode;
3070d0321e0SJeremy L Thompson   CeedBasis basis;
3080d0321e0SJeremy L Thompson 
3090d0321e0SJeremy L Thompson   for (CeedInt i=0; i<numinputfields; i++) {
3100d0321e0SJeremy L Thompson     // Skip active input
3110d0321e0SJeremy L Thompson     if (skipactive) {
3120d0321e0SJeremy L Thompson       CeedVector vec;
3130d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetVector(opinputfields[i], &vec); CeedChkBackend(ierr);
3140d0321e0SJeremy L Thompson       if (vec == CEED_VECTOR_ACTIVE)
3150d0321e0SJeremy L Thompson         continue;
3160d0321e0SJeremy L Thompson     }
3170d0321e0SJeremy L Thompson     // Get elemsize, emode, size
3180d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetElemRestriction(opinputfields[i], &Erestrict);
3190d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
3200d0321e0SJeremy L Thompson     ierr = CeedElemRestrictionGetElementSize(Erestrict, &elemsize);
3210d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
3220d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qfinputfields[i], &emode);
3230d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
3240d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetSize(qfinputfields[i], &size); CeedChkBackend(ierr);
3250d0321e0SJeremy L Thompson     // Basis action
3260d0321e0SJeremy L Thompson     switch (emode) {
3270d0321e0SJeremy L Thompson     case CEED_EVAL_NONE:
3280d0321e0SJeremy L Thompson       ierr = CeedVectorSetArray(impl->qvecsin[i], CEED_MEM_DEVICE,
3290d0321e0SJeremy L Thompson                                 CEED_USE_POINTER, edata[i]); CeedChkBackend(ierr);
3300d0321e0SJeremy L Thompson       break;
3310d0321e0SJeremy L Thompson     case CEED_EVAL_INTERP:
3320d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opinputfields[i], &basis);
3330d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
3340d0321e0SJeremy L Thompson       ierr = CeedBasisApply(basis, numelements, CEED_NOTRANSPOSE,
3350d0321e0SJeremy L Thompson                             CEED_EVAL_INTERP, impl->evecs[i],
3360d0321e0SJeremy L Thompson                             impl->qvecsin[i]); CeedChkBackend(ierr);
3370d0321e0SJeremy L Thompson       break;
3380d0321e0SJeremy L Thompson     case CEED_EVAL_GRAD:
3390d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opinputfields[i], &basis);
3400d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
3410d0321e0SJeremy L Thompson       ierr = CeedBasisApply(basis, numelements, CEED_NOTRANSPOSE,
3420d0321e0SJeremy L Thompson                             CEED_EVAL_GRAD, impl->evecs[i],
3430d0321e0SJeremy L Thompson                             impl->qvecsin[i]); CeedChkBackend(ierr);
3440d0321e0SJeremy L Thompson       break;
3450d0321e0SJeremy L Thompson     case CEED_EVAL_WEIGHT:
3460d0321e0SJeremy L Thompson       break; // No action
3470d0321e0SJeremy L Thompson     case CEED_EVAL_DIV:
3480d0321e0SJeremy L Thompson       break; // TODO: Not implemented
3490d0321e0SJeremy L Thompson     case CEED_EVAL_CURL:
3500d0321e0SJeremy L Thompson       break; // TODO: Not implemented
3510d0321e0SJeremy L Thompson     }
3520d0321e0SJeremy L Thompson   }
3530d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
3540d0321e0SJeremy L Thompson }
3550d0321e0SJeremy L Thompson 
3560d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
3570d0321e0SJeremy L Thompson // Restore Input Vectors
3580d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
3590d0321e0SJeremy L Thompson static inline int CeedOperatorRestoreInputs_Hip(CeedInt numinputfields,
3600d0321e0SJeremy L Thompson     CeedQFunctionField *qfinputfields, CeedOperatorField *opinputfields,
3610d0321e0SJeremy L Thompson     const bool skipactive, CeedScalar *edata[2*CEED_FIELD_MAX],
3620d0321e0SJeremy L Thompson     CeedOperator_Hip *impl) {
3630d0321e0SJeremy L Thompson   CeedInt ierr;
3640d0321e0SJeremy L Thompson   CeedEvalMode emode;
3650d0321e0SJeremy L Thompson   CeedVector vec;
3660d0321e0SJeremy L Thompson 
3670d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numinputfields; i++) {
3680d0321e0SJeremy L Thompson     // Skip active input
3690d0321e0SJeremy L Thompson     if (skipactive) {
3700d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetVector(opinputfields[i], &vec); CeedChkBackend(ierr);
3710d0321e0SJeremy L Thompson       if (vec == CEED_VECTOR_ACTIVE)
3720d0321e0SJeremy L Thompson         continue;
3730d0321e0SJeremy L Thompson     }
3740d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qfinputfields[i], &emode);
3750d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
3760d0321e0SJeremy L Thompson     if (emode == CEED_EVAL_WEIGHT) { // Skip
3770d0321e0SJeremy L Thompson     } else {
3780d0321e0SJeremy L Thompson       if (!impl->evecs[i]) {  // This was a skiprestrict case
3790d0321e0SJeremy L Thompson         ierr = CeedOperatorFieldGetVector(opinputfields[i], &vec); CeedChkBackend(ierr);
3800d0321e0SJeremy L Thompson         ierr = CeedVectorRestoreArrayRead(vec,
3810d0321e0SJeremy L Thompson                                           (const CeedScalar **)&edata[i]);
3820d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
3830d0321e0SJeremy L Thompson       } else {
3840d0321e0SJeremy L Thompson         ierr = CeedVectorRestoreArrayRead(impl->evecs[i],
3850d0321e0SJeremy L Thompson                                           (const CeedScalar **) &edata[i]);
3860d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
3870d0321e0SJeremy L Thompson       }
3880d0321e0SJeremy L Thompson     }
3890d0321e0SJeremy L Thompson   }
3900d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
3910d0321e0SJeremy L Thompson }
3920d0321e0SJeremy L Thompson 
3930d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
3940d0321e0SJeremy L Thompson // Apply and add to output
3950d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
3960d0321e0SJeremy L Thompson static int CeedOperatorApplyAdd_Hip(CeedOperator op, CeedVector invec,
3970d0321e0SJeremy L Thompson                                     CeedVector outvec, CeedRequest *request) {
3980d0321e0SJeremy L Thompson   int ierr;
3990d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
4000d0321e0SJeremy L Thompson   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
4010d0321e0SJeremy L Thompson   CeedQFunction qf;
4020d0321e0SJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChkBackend(ierr);
4030d0321e0SJeremy L Thompson   CeedInt Q, numelements, elemsize, numinputfields, numoutputfields, size;
4040d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumQuadraturePoints(op, &Q); CeedChkBackend(ierr);
4050d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumElements(op, &numelements); CeedChkBackend(ierr);
4060d0321e0SJeremy L Thompson   CeedOperatorField *opinputfields, *opoutputfields;
4070d0321e0SJeremy L Thompson   ierr = CeedOperatorGetFields(op, &numinputfields, &opinputfields,
4080d0321e0SJeremy L Thompson                                &numoutputfields, &opoutputfields);
4090d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
4100d0321e0SJeremy L Thompson   CeedQFunctionField *qfinputfields, *qfoutputfields;
4110d0321e0SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qfinputfields, NULL, &qfoutputfields);
4120d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
4130d0321e0SJeremy L Thompson   CeedEvalMode emode;
4140d0321e0SJeremy L Thompson   CeedVector vec;
4150d0321e0SJeremy L Thompson   CeedBasis basis;
4160d0321e0SJeremy L Thompson   CeedElemRestriction Erestrict;
4170d0321e0SJeremy L Thompson   CeedScalar *edata[2*CEED_FIELD_MAX];
4180d0321e0SJeremy L Thompson 
4190d0321e0SJeremy L Thompson   // Setup
4200d0321e0SJeremy L Thompson   ierr = CeedOperatorSetup_Hip(op); CeedChkBackend(ierr);
4210d0321e0SJeremy L Thompson 
4220d0321e0SJeremy L Thompson   // Input Evecs and Restriction
4230d0321e0SJeremy L Thompson   ierr = CeedOperatorSetupInputs_Hip(numinputfields, qfinputfields,
4240d0321e0SJeremy L Thompson                                      opinputfields, invec, false, edata,
4250d0321e0SJeremy L Thompson                                      impl, request); CeedChkBackend(ierr);
4260d0321e0SJeremy L Thompson 
4270d0321e0SJeremy L Thompson   // Input basis apply if needed
4280d0321e0SJeremy L Thompson   ierr = CeedOperatorInputBasis_Hip(numelements, qfinputfields, opinputfields,
4290d0321e0SJeremy L Thompson                                     numinputfields, false, edata, impl);
4300d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
4310d0321e0SJeremy L Thompson 
4320d0321e0SJeremy L Thompson   // Output pointers, as necessary
4330d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numoutputfields; i++) {
4340d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qfoutputfields[i], &emode);
4350d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
4360d0321e0SJeremy L Thompson     if (emode == CEED_EVAL_NONE) {
4370d0321e0SJeremy L Thompson       // Set the output Q-Vector to use the E-Vector data directly.
4380d0321e0SJeremy L Thompson       ierr = CeedVectorGetArrayWrite(impl->evecs[i + impl->numein], CEED_MEM_DEVICE,
4390d0321e0SJeremy L Thompson                                      &edata[i + numinputfields]); CeedChkBackend(ierr);
4400d0321e0SJeremy L Thompson       ierr = CeedVectorSetArray(impl->qvecsout[i], CEED_MEM_DEVICE,
4410d0321e0SJeremy L Thompson                                 CEED_USE_POINTER, edata[i + numinputfields]);
4420d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
4430d0321e0SJeremy L Thompson     }
4440d0321e0SJeremy L Thompson   }
4450d0321e0SJeremy L Thompson 
4460d0321e0SJeremy L Thompson   // Q function
4470d0321e0SJeremy L Thompson   ierr = CeedQFunctionApply(qf, numelements * Q, impl->qvecsin, impl->qvecsout);
4480d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
4490d0321e0SJeremy L Thompson 
4500d0321e0SJeremy L Thompson   // Output basis apply if needed
4510d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numoutputfields; i++) {
4520d0321e0SJeremy L Thompson     // Get elemsize, emode, size
4530d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetElemRestriction(opoutputfields[i], &Erestrict);
4540d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
4550d0321e0SJeremy L Thompson     ierr = CeedElemRestrictionGetElementSize(Erestrict, &elemsize);
4560d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
4570d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qfoutputfields[i], &emode);
4580d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
4590d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetSize(qfoutputfields[i], &size);
4600d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
4610d0321e0SJeremy L Thompson     // Basis action
4620d0321e0SJeremy L Thompson     switch (emode) {
4630d0321e0SJeremy L Thompson     case CEED_EVAL_NONE:
4640d0321e0SJeremy L Thompson       break;
4650d0321e0SJeremy L Thompson     case CEED_EVAL_INTERP:
4660d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opoutputfields[i], &basis);
4670d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
4680d0321e0SJeremy L Thompson       ierr = CeedBasisApply(basis, numelements, CEED_TRANSPOSE,
4690d0321e0SJeremy L Thompson                             CEED_EVAL_INTERP, impl->qvecsout[i],
4700d0321e0SJeremy L Thompson                             impl->evecs[i + impl->numein]); CeedChkBackend(ierr);
4710d0321e0SJeremy L Thompson       break;
4720d0321e0SJeremy L Thompson     case CEED_EVAL_GRAD:
4730d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opoutputfields[i], &basis);
4740d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
4750d0321e0SJeremy L Thompson       ierr = CeedBasisApply(basis, numelements, CEED_TRANSPOSE,
4760d0321e0SJeremy L Thompson                             CEED_EVAL_GRAD, impl->qvecsout[i],
4770d0321e0SJeremy L Thompson                             impl->evecs[i + impl->numein]); CeedChkBackend(ierr);
4780d0321e0SJeremy L Thompson       break;
4790d0321e0SJeremy L Thompson     // LCOV_EXCL_START
4800d0321e0SJeremy L Thompson     case CEED_EVAL_WEIGHT: {
4810d0321e0SJeremy L Thompson       Ceed ceed;
4820d0321e0SJeremy L Thompson       ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
4830d0321e0SJeremy L Thompson       return CeedError(ceed, CEED_ERROR_BACKEND,
4840d0321e0SJeremy L Thompson                        "CEED_EVAL_WEIGHT cannot be an output evaluation mode");
4850d0321e0SJeremy L Thompson       break; // Should not occur
4860d0321e0SJeremy L Thompson     }
4870d0321e0SJeremy L Thompson     case CEED_EVAL_DIV:
4880d0321e0SJeremy L Thompson       break; // TODO: Not implemented
4890d0321e0SJeremy L Thompson     case CEED_EVAL_CURL:
4900d0321e0SJeremy L Thompson       break; // TODO: Not implemented
4910d0321e0SJeremy L Thompson       // LCOV_EXCL_STOP
4920d0321e0SJeremy L Thompson     }
4930d0321e0SJeremy L Thompson   }
4940d0321e0SJeremy L Thompson 
4950d0321e0SJeremy L Thompson   // Output restriction
4960d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numoutputfields; i++) {
4970d0321e0SJeremy L Thompson     // Restore evec
4980d0321e0SJeremy L Thompson     ierr = CeedQFunctionFieldGetEvalMode(qfoutputfields[i], &emode);
4990d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
5000d0321e0SJeremy L Thompson     if (emode == CEED_EVAL_NONE) {
5010d0321e0SJeremy L Thompson       ierr = CeedVectorRestoreArray(impl->evecs[i+impl->numein],
5020d0321e0SJeremy L Thompson                                     &edata[i + numinputfields]);
5030d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
5040d0321e0SJeremy L Thompson     }
5050d0321e0SJeremy L Thompson     // Get output vector
5060d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetVector(opoutputfields[i], &vec);
5070d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
5080d0321e0SJeremy L Thompson     // Restrict
5090d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetElemRestriction(opoutputfields[i], &Erestrict);
5100d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
5110d0321e0SJeremy L Thompson     // Active
5120d0321e0SJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE)
5130d0321e0SJeremy L Thompson       vec = outvec;
5140d0321e0SJeremy L Thompson 
5150d0321e0SJeremy L Thompson     ierr = CeedElemRestrictionApply(Erestrict, CEED_TRANSPOSE,
5160d0321e0SJeremy L Thompson                                     impl->evecs[i + impl->numein], vec,
5170d0321e0SJeremy L Thompson                                     request); CeedChkBackend(ierr);
5180d0321e0SJeremy L Thompson   }
5190d0321e0SJeremy L Thompson 
5200d0321e0SJeremy L Thompson   // Restore input arrays
5210d0321e0SJeremy L Thompson   ierr = CeedOperatorRestoreInputs_Hip(numinputfields, qfinputfields,
5220d0321e0SJeremy L Thompson                                        opinputfields, false, edata, impl);
5230d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
5240d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
5250d0321e0SJeremy L Thompson }
5260d0321e0SJeremy L Thompson 
5270d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
5280d0321e0SJeremy L Thompson // Core code for assembling linear QFunction
5290d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
5300d0321e0SJeremy L Thompson static inline int CeedOperatorLinearAssembleQFunctionCore_Hip(CeedOperator op,
5310d0321e0SJeremy L Thompson     bool build_objects, CeedVector *assembled, CeedElemRestriction *rstr,
5320d0321e0SJeremy L Thompson     CeedRequest *request) {
5330d0321e0SJeremy L Thompson   int ierr;
5340d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
5350d0321e0SJeremy L Thompson   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
5360d0321e0SJeremy L Thompson   CeedQFunction qf;
5370d0321e0SJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChkBackend(ierr);
5380d0321e0SJeremy L Thompson   CeedInt Q, numelements, numinputfields, numoutputfields, size;
539d2643443SJeremy L Thompson   CeedSize q_size;
5400d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumQuadraturePoints(op, &Q); CeedChkBackend(ierr);
5410d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumElements(op, &numelements); CeedChkBackend(ierr);
5420d0321e0SJeremy L Thompson   CeedOperatorField *opinputfields, *opoutputfields;
5430d0321e0SJeremy L Thompson   ierr = CeedOperatorGetFields(op, &numinputfields, &opinputfields,
5440d0321e0SJeremy L Thompson                                &numoutputfields, &opoutputfields);
5450d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
5460d0321e0SJeremy L Thompson   CeedQFunctionField *qfinputfields, *qfoutputfields;
5470d0321e0SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qfinputfields, NULL, &qfoutputfields);
5480d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
5490d0321e0SJeremy L Thompson   CeedVector vec;
5500d0321e0SJeremy L Thompson   CeedInt numactivein = impl->qfnumactivein, numactiveout = impl->qfnumactiveout;
5510d0321e0SJeremy L Thompson   CeedVector *activein = impl->qfactivein;
5520d0321e0SJeremy L Thompson   CeedScalar *a, *tmp;
5530d0321e0SJeremy L Thompson   Ceed ceed, ceedparent;
5540d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
5550d0321e0SJeremy L Thompson   ierr = CeedGetOperatorFallbackParentCeed(ceed, &ceedparent);
5560d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
5570d0321e0SJeremy L Thompson   ceedparent = ceedparent ? ceedparent : ceed;
5580d0321e0SJeremy L Thompson   CeedScalar *edata[2*CEED_FIELD_MAX];
5590d0321e0SJeremy L Thompson 
5600d0321e0SJeremy L Thompson   // Setup
5610d0321e0SJeremy L Thompson   ierr = CeedOperatorSetup_Hip(op); CeedChkBackend(ierr);
5620d0321e0SJeremy L Thompson 
5630d0321e0SJeremy L Thompson   // Check for identity
5640d0321e0SJeremy L Thompson   bool identityqf;
5650d0321e0SJeremy L Thompson   ierr = CeedQFunctionIsIdentity(qf, &identityqf); CeedChkBackend(ierr);
5660d0321e0SJeremy L Thompson   if (identityqf)
5670d0321e0SJeremy L Thompson     // LCOV_EXCL_START
5680d0321e0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_BACKEND,
5690d0321e0SJeremy L Thompson                      "Assembling identity QFunctions not supported");
5700d0321e0SJeremy L Thompson   // LCOV_EXCL_STOP
5710d0321e0SJeremy L Thompson 
5720d0321e0SJeremy L Thompson   // Input Evecs and Restriction
5730d0321e0SJeremy L Thompson   ierr = CeedOperatorSetupInputs_Hip(numinputfields, qfinputfields,
5740d0321e0SJeremy L Thompson                                      opinputfields, NULL, true, edata,
5750d0321e0SJeremy L Thompson                                      impl, request); CeedChkBackend(ierr);
5760d0321e0SJeremy L Thompson 
5770d0321e0SJeremy L Thompson   // Count number of active input fields
5780d0321e0SJeremy L Thompson   if (!numactivein) {
5790d0321e0SJeremy L Thompson     for (CeedInt i=0; i<numinputfields; i++) {
5800d0321e0SJeremy L Thompson       // Get input vector
5810d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetVector(opinputfields[i], &vec); CeedChkBackend(ierr);
5820d0321e0SJeremy L Thompson       // Check if active input
5830d0321e0SJeremy L Thompson       if (vec == CEED_VECTOR_ACTIVE) {
5840d0321e0SJeremy L Thompson         ierr = CeedQFunctionFieldGetSize(qfinputfields[i], &size); CeedChkBackend(ierr);
5850d0321e0SJeremy L Thompson         ierr = CeedVectorSetValue(impl->qvecsin[i], 0.0); CeedChkBackend(ierr);
5860d0321e0SJeremy L Thompson         ierr = CeedVectorGetArray(impl->qvecsin[i], CEED_MEM_DEVICE, &tmp);
5870d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
5880d0321e0SJeremy L Thompson         ierr = CeedRealloc(numactivein + size, &activein); CeedChkBackend(ierr);
5890d0321e0SJeremy L Thompson         for (CeedInt field = 0; field < size; field++) {
590d2643443SJeremy L Thompson           q_size = (CeedSize)Q*numelements;
591d2643443SJeremy L Thompson           ierr = CeedVectorCreate(ceed, q_size, &activein[numactivein+field]);
592d2643443SJeremy L Thompson           CeedChkBackend(ierr);
5930d0321e0SJeremy L Thompson           ierr = CeedVectorSetArray(activein[numactivein+field], CEED_MEM_DEVICE,
5940d0321e0SJeremy L Thompson                                     CEED_USE_POINTER, &tmp[field*Q*numelements]);
5950d0321e0SJeremy L Thompson           CeedChkBackend(ierr);
5960d0321e0SJeremy L Thompson         }
5970d0321e0SJeremy L Thompson         numactivein += size;
5980d0321e0SJeremy L Thompson         ierr = CeedVectorRestoreArray(impl->qvecsin[i], &tmp); CeedChkBackend(ierr);
5990d0321e0SJeremy L Thompson       }
6000d0321e0SJeremy L Thompson     }
6010d0321e0SJeremy L Thompson     impl->qfnumactivein = numactivein;
6020d0321e0SJeremy L Thompson     impl->qfactivein = activein;
6030d0321e0SJeremy L Thompson   }
6040d0321e0SJeremy L Thompson 
6050d0321e0SJeremy L Thompson   // Count number of active output fields
6060d0321e0SJeremy L Thompson   if (!numactiveout) {
6070d0321e0SJeremy L Thompson     for (CeedInt i=0; i<numoutputfields; i++) {
6080d0321e0SJeremy L Thompson       // Get output vector
6090d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetVector(opoutputfields[i], &vec);
6100d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
6110d0321e0SJeremy L Thompson       // Check if active output
6120d0321e0SJeremy L Thompson       if (vec == CEED_VECTOR_ACTIVE) {
6130d0321e0SJeremy L Thompson         ierr = CeedQFunctionFieldGetSize(qfoutputfields[i], &size);
6140d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
6150d0321e0SJeremy L Thompson         numactiveout += size;
6160d0321e0SJeremy L Thompson       }
6170d0321e0SJeremy L Thompson     }
6180d0321e0SJeremy L Thompson     impl->qfnumactiveout = numactiveout;
6190d0321e0SJeremy L Thompson   }
6200d0321e0SJeremy L Thompson 
6210d0321e0SJeremy L Thompson   // Check sizes
6220d0321e0SJeremy L Thompson   if (!numactivein || !numactiveout)
6230d0321e0SJeremy L Thompson     // LCOV_EXCL_START
6240d0321e0SJeremy L Thompson     return CeedError(ceed, CEED_ERROR_BACKEND,
6250d0321e0SJeremy L Thompson                      "Cannot assemble QFunction without active inputs "
6260d0321e0SJeremy L Thompson                      "and outputs");
6270d0321e0SJeremy L Thompson   // LCOV_EXCL_STOP
6280d0321e0SJeremy L Thompson 
6290d0321e0SJeremy L Thompson   // Build objects if needed
6300d0321e0SJeremy L Thompson   if (build_objects) {
6310d0321e0SJeremy L Thompson     // Create output restriction
6320d0321e0SJeremy L Thompson     CeedInt strides[3] = {1, numelements*Q, Q}; /* *NOPAD* */
6330d0321e0SJeremy L Thompson     ierr = CeedElemRestrictionCreateStrided(ceedparent, numelements, Q,
6340d0321e0SJeremy L Thompson                                             numactivein*numactiveout,
6350d0321e0SJeremy L Thompson                                             numactivein*numactiveout*numelements*Q,
6360d0321e0SJeremy L Thompson                                             strides, rstr); CeedChkBackend(ierr);
6370d0321e0SJeremy L Thompson     // Create assembled vector
638d2643443SJeremy L Thompson     CeedSize l_size = (CeedSize)numelements*Q*numactivein*numactiveout;
639d2643443SJeremy L Thompson     ierr = CeedVectorCreate(ceedparent, l_size, assembled); CeedChkBackend(ierr);
6400d0321e0SJeremy L Thompson   }
6410d0321e0SJeremy L Thompson   ierr = CeedVectorSetValue(*assembled, 0.0); CeedChkBackend(ierr);
6420d0321e0SJeremy L Thompson   ierr = CeedVectorGetArray(*assembled, CEED_MEM_DEVICE, &a);
6430d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
6440d0321e0SJeremy L Thompson 
6450d0321e0SJeremy L Thompson   // Input basis apply
6460d0321e0SJeremy L Thompson   ierr = CeedOperatorInputBasis_Hip(numelements, qfinputfields, opinputfields,
6470d0321e0SJeremy L Thompson                                     numinputfields, true, edata, impl);
6480d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
6490d0321e0SJeremy L Thompson 
6500d0321e0SJeremy L Thompson   // Assemble QFunction
6510d0321e0SJeremy L Thompson   for (CeedInt in=0; in<numactivein; in++) {
6520d0321e0SJeremy L Thompson     // Set Inputs
6530d0321e0SJeremy L Thompson     ierr = CeedVectorSetValue(activein[in], 1.0); CeedChkBackend(ierr);
6540d0321e0SJeremy L Thompson     if (numactivein > 1) {
6550d0321e0SJeremy L Thompson       ierr = CeedVectorSetValue(activein[(in+numactivein-1)%numactivein],
6560d0321e0SJeremy L Thompson                                 0.0); CeedChkBackend(ierr);
6570d0321e0SJeremy L Thompson     }
6580d0321e0SJeremy L Thompson     // Set Outputs
6590d0321e0SJeremy L Thompson     for (CeedInt out=0; out<numoutputfields; out++) {
6600d0321e0SJeremy L Thompson       // Get output vector
6610d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetVector(opoutputfields[out], &vec);
6620d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
6630d0321e0SJeremy L Thompson       // Check if active output
6640d0321e0SJeremy L Thompson       if (vec == CEED_VECTOR_ACTIVE) {
6650d0321e0SJeremy L Thompson         CeedVectorSetArray(impl->qvecsout[out], CEED_MEM_DEVICE,
6660d0321e0SJeremy L Thompson                            CEED_USE_POINTER, a); CeedChkBackend(ierr);
6670d0321e0SJeremy L Thompson         ierr = CeedQFunctionFieldGetSize(qfoutputfields[out], &size);
6680d0321e0SJeremy L Thompson         CeedChkBackend(ierr);
6690d0321e0SJeremy L Thompson         a += size*Q*numelements; // Advance the pointer by the size of the output
6700d0321e0SJeremy L Thompson       }
6710d0321e0SJeremy L Thompson     }
6720d0321e0SJeremy L Thompson     // Apply QFunction
6730d0321e0SJeremy L Thompson     ierr = CeedQFunctionApply(qf, Q*numelements, impl->qvecsin, impl->qvecsout);
6740d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
6750d0321e0SJeremy L Thompson   }
6760d0321e0SJeremy L Thompson 
6770d0321e0SJeremy L Thompson   // Un-set output Qvecs to prevent accidental overwrite of Assembled
6780d0321e0SJeremy L Thompson   for (CeedInt out=0; out<numoutputfields; out++) {
6790d0321e0SJeremy L Thompson     // Get output vector
6800d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetVector(opoutputfields[out], &vec);
6810d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
6820d0321e0SJeremy L Thompson     // Check if active output
6830d0321e0SJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
6840d0321e0SJeremy L Thompson       ierr = CeedVectorTakeArray(impl->qvecsout[out], CEED_MEM_DEVICE, NULL);
6850d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
6860d0321e0SJeremy L Thompson     }
6870d0321e0SJeremy L Thompson   }
6880d0321e0SJeremy L Thompson 
6890d0321e0SJeremy L Thompson   // Restore input arrays
6900d0321e0SJeremy L Thompson   ierr = CeedOperatorRestoreInputs_Hip(numinputfields, qfinputfields,
6910d0321e0SJeremy L Thompson                                        opinputfields, true, edata, impl);
6920d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
6930d0321e0SJeremy L Thompson 
6940d0321e0SJeremy L Thompson   // Restore output
6950d0321e0SJeremy L Thompson   ierr = CeedVectorRestoreArray(*assembled, &a); CeedChkBackend(ierr);
6960d0321e0SJeremy L Thompson 
6970d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
6980d0321e0SJeremy L Thompson }
6990d0321e0SJeremy L Thompson 
7000d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7010d0321e0SJeremy L Thompson // Assemble Linear QFunction
7020d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7030d0321e0SJeremy L Thompson static int CeedOperatorLinearAssembleQFunction_Hip(CeedOperator op,
7040d0321e0SJeremy L Thompson     CeedVector *assembled, CeedElemRestriction *rstr, CeedRequest *request) {
7050d0321e0SJeremy L Thompson   return CeedOperatorLinearAssembleQFunctionCore_Hip(op, true, assembled, rstr,
7060d0321e0SJeremy L Thompson          request);
7070d0321e0SJeremy L Thompson }
7080d0321e0SJeremy L Thompson 
7090d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7100d0321e0SJeremy L Thompson // Assemble Linear QFunction
7110d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7120d0321e0SJeremy L Thompson static int CeedOperatorLinearAssembleQFunctionUpdate_Hip(CeedOperator op,
7130d0321e0SJeremy L Thompson     CeedVector assembled, CeedElemRestriction rstr, CeedRequest *request) {
7140d0321e0SJeremy L Thompson   return CeedOperatorLinearAssembleQFunctionCore_Hip(op, false, &assembled, &rstr,
7150d0321e0SJeremy L Thompson          request);
7160d0321e0SJeremy L Thompson }
7170d0321e0SJeremy L Thompson 
7180d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7190d0321e0SJeremy L Thompson // Diagonal assembly kernels
7200d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7210d0321e0SJeremy L Thompson // *INDENT-OFF*
7220d0321e0SJeremy L Thompson static const char *diagonalkernels = QUOTE(
7230d0321e0SJeremy L Thompson 
7240d0321e0SJeremy L Thompson typedef enum {
7250d0321e0SJeremy L Thompson   /// Perform no evaluation (either because there is no data or it is already at
7260d0321e0SJeremy L Thompson   /// quadrature points)
7270d0321e0SJeremy L Thompson   CEED_EVAL_NONE   = 0,
7280d0321e0SJeremy L Thompson   /// Interpolate from nodes to quadrature points
7290d0321e0SJeremy L Thompson   CEED_EVAL_INTERP = 1,
7300d0321e0SJeremy L Thompson   /// Evaluate gradients at quadrature points from input in a nodal basis
7310d0321e0SJeremy L Thompson   CEED_EVAL_GRAD   = 2,
7320d0321e0SJeremy L Thompson   /// Evaluate divergence at quadrature points from input in a nodal basis
7330d0321e0SJeremy L Thompson   CEED_EVAL_DIV    = 4,
7340d0321e0SJeremy L Thompson   /// Evaluate curl at quadrature points from input in a nodal basis
7350d0321e0SJeremy L Thompson   CEED_EVAL_CURL   = 8,
7360d0321e0SJeremy L Thompson   /// Using no input, evaluate quadrature weights on the reference element
7370d0321e0SJeremy L Thompson   CEED_EVAL_WEIGHT = 16,
7380d0321e0SJeremy L Thompson } CeedEvalMode;
7390d0321e0SJeremy L Thompson 
7400d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7410d0321e0SJeremy L Thompson // Get Basis Emode Pointer
7420d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7430d0321e0SJeremy L Thompson extern "C" __device__ void CeedOperatorGetBasisPointer_Hip(const CeedScalar **basisptr,
7440d0321e0SJeremy L Thompson     CeedEvalMode emode, const CeedScalar *identity, const CeedScalar *interp,
7450d0321e0SJeremy L Thompson     const CeedScalar *grad) {
7460d0321e0SJeremy L Thompson   switch (emode) {
7470d0321e0SJeremy L Thompson   case CEED_EVAL_NONE:
7480d0321e0SJeremy L Thompson     *basisptr = identity;
7490d0321e0SJeremy L Thompson     break;
7500d0321e0SJeremy L Thompson   case CEED_EVAL_INTERP:
7510d0321e0SJeremy L Thompson     *basisptr = interp;
7520d0321e0SJeremy L Thompson     break;
7530d0321e0SJeremy L Thompson   case CEED_EVAL_GRAD:
7540d0321e0SJeremy L Thompson     *basisptr = grad;
7550d0321e0SJeremy L Thompson     break;
7560d0321e0SJeremy L Thompson   case CEED_EVAL_WEIGHT:
7570d0321e0SJeremy L Thompson   case CEED_EVAL_DIV:
7580d0321e0SJeremy L Thompson   case CEED_EVAL_CURL:
7590d0321e0SJeremy L Thompson     break; // Caught by QF Assembly
7600d0321e0SJeremy L Thompson   }
7610d0321e0SJeremy L Thompson }
7620d0321e0SJeremy L Thompson 
7630d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7640d0321e0SJeremy L Thompson // Core code for diagonal assembly
7650d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
7660d0321e0SJeremy L Thompson __device__ void diagonalCore(const CeedInt nelem,
7670d0321e0SJeremy L Thompson     const CeedScalar maxnorm, const bool pointBlock,
7680d0321e0SJeremy L Thompson     const CeedScalar *identity,
7690d0321e0SJeremy L Thompson     const CeedScalar *interpin, const CeedScalar *gradin,
7700d0321e0SJeremy L Thompson     const CeedScalar *interpout, const CeedScalar *gradout,
7710d0321e0SJeremy L Thompson     const CeedEvalMode *emodein, const CeedEvalMode *emodeout,
7720d0321e0SJeremy L Thompson     const CeedScalar *__restrict__ assembledqfarray,
7730d0321e0SJeremy L Thompson     CeedScalar *__restrict__ elemdiagarray) {
7740d0321e0SJeremy L Thompson   const int tid = threadIdx.x; // running with P threads, tid is evec node
7750d0321e0SJeremy L Thompson   const CeedScalar qfvaluebound = maxnorm*1e-12;
7760d0321e0SJeremy L Thompson 
7770d0321e0SJeremy L Thompson   // Compute the diagonal of B^T D B
7780d0321e0SJeremy L Thompson   // Each element
7790d0321e0SJeremy L Thompson   for (CeedInt e = blockIdx.x*blockDim.z + threadIdx.z; e < nelem;
7800d0321e0SJeremy L Thompson        e += gridDim.x*blockDim.z) {
7810d0321e0SJeremy L Thompson     CeedInt dout = -1;
7820d0321e0SJeremy L Thompson     // Each basis eval mode pair
7830d0321e0SJeremy L Thompson     for (CeedInt eout = 0; eout < NUMEMODEOUT; eout++) {
7840d0321e0SJeremy L Thompson       const CeedScalar *bt = NULL;
7850d0321e0SJeremy L Thompson       if (emodeout[eout] == CEED_EVAL_GRAD)
7860d0321e0SJeremy L Thompson         dout += 1;
7870d0321e0SJeremy L Thompson       CeedOperatorGetBasisPointer_Hip(&bt, emodeout[eout], identity, interpout,
7880d0321e0SJeremy L Thompson                                       &gradout[dout*NQPTS*NNODES]);
7890d0321e0SJeremy L Thompson       CeedInt din = -1;
7900d0321e0SJeremy L Thompson       for (CeedInt ein = 0; ein < NUMEMODEIN; ein++) {
7910d0321e0SJeremy L Thompson         const CeedScalar *b = NULL;
7920d0321e0SJeremy L Thompson         if (emodein[ein] == CEED_EVAL_GRAD)
7930d0321e0SJeremy L Thompson           din += 1;
7940d0321e0SJeremy L Thompson         CeedOperatorGetBasisPointer_Hip(&b, emodein[ein], identity, interpin,
7950d0321e0SJeremy L Thompson                                         &gradin[din*NQPTS*NNODES]);
7960d0321e0SJeremy L Thompson         // Each component
7970d0321e0SJeremy L Thompson         for (CeedInt compOut = 0; compOut < NCOMP; compOut++) {
7980d0321e0SJeremy L Thompson           // Each qpoint/node pair
7990d0321e0SJeremy L Thompson           if (pointBlock) {
8000d0321e0SJeremy L Thompson             // Point Block Diagonal
8010d0321e0SJeremy L Thompson             for (CeedInt compIn = 0; compIn < NCOMP; compIn++) {
8020d0321e0SJeremy L Thompson               CeedScalar evalue = 0.;
8030d0321e0SJeremy L Thompson               for (CeedInt q = 0; q < NQPTS; q++) {
8040d0321e0SJeremy L Thompson                 const CeedScalar qfvalue =
8050d0321e0SJeremy L Thompson                   assembledqfarray[((((ein*NCOMP+compIn)*NUMEMODEOUT+eout)*
8060d0321e0SJeremy L Thompson                                      NCOMP+compOut)*nelem+e)*NQPTS+q];
8070d0321e0SJeremy L Thompson                 if (abs(qfvalue) > qfvaluebound)
8080d0321e0SJeremy L Thompson                   evalue += bt[q*NNODES+tid] * qfvalue * b[q*NNODES+tid];
8090d0321e0SJeremy L Thompson               }
8100d0321e0SJeremy L Thompson               elemdiagarray[((compOut*NCOMP+compIn)*nelem+e)*NNODES+tid] += evalue;
8110d0321e0SJeremy L Thompson             }
8120d0321e0SJeremy L Thompson           } else {
8130d0321e0SJeremy L Thompson             // Diagonal Only
8140d0321e0SJeremy L Thompson             CeedScalar evalue = 0.;
8150d0321e0SJeremy L Thompson             for (CeedInt q = 0; q < NQPTS; q++) {
8160d0321e0SJeremy L Thompson               const CeedScalar qfvalue =
8170d0321e0SJeremy L Thompson                 assembledqfarray[((((ein*NCOMP+compOut)*NUMEMODEOUT+eout)*
8180d0321e0SJeremy L Thompson                                    NCOMP+compOut)*nelem+e)*NQPTS+q];
8190d0321e0SJeremy L Thompson               if (abs(qfvalue) > qfvaluebound)
8200d0321e0SJeremy L Thompson                 evalue += bt[q*NNODES+tid] * qfvalue * b[q*NNODES+tid];
8210d0321e0SJeremy L Thompson             }
8220d0321e0SJeremy L Thompson             elemdiagarray[(compOut*nelem+e)*NNODES+tid] += evalue;
8230d0321e0SJeremy L Thompson           }
8240d0321e0SJeremy L Thompson         }
8250d0321e0SJeremy L Thompson       }
8260d0321e0SJeremy L Thompson     }
8270d0321e0SJeremy L Thompson   }
8280d0321e0SJeremy L Thompson }
8290d0321e0SJeremy L Thompson 
8300d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
8310d0321e0SJeremy L Thompson // Linear diagonal
8320d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
8330d0321e0SJeremy L Thompson extern "C" __global__ void linearDiagonal(const CeedInt nelem,
8340d0321e0SJeremy L Thompson     const CeedScalar maxnorm, const CeedScalar *identity,
8350d0321e0SJeremy L Thompson     const CeedScalar *interpin, const CeedScalar *gradin,
8360d0321e0SJeremy L Thompson     const CeedScalar *interpout, const CeedScalar *gradout,
8370d0321e0SJeremy L Thompson     const CeedEvalMode *emodein, const CeedEvalMode *emodeout,
8380d0321e0SJeremy L Thompson     const CeedScalar *__restrict__ assembledqfarray,
8390d0321e0SJeremy L Thompson     CeedScalar *__restrict__ elemdiagarray) {
8400d0321e0SJeremy L Thompson   diagonalCore(nelem, maxnorm, false, identity, interpin, gradin, interpout,
8410d0321e0SJeremy L Thompson                gradout, emodein, emodeout, assembledqfarray, elemdiagarray);
8420d0321e0SJeremy L Thompson }
8430d0321e0SJeremy L Thompson 
8440d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
8450d0321e0SJeremy L Thompson // Linear point block diagonal
8460d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
8470d0321e0SJeremy L Thompson extern "C" __global__ void linearPointBlockDiagonal(const CeedInt nelem,
8480d0321e0SJeremy L Thompson     const CeedScalar maxnorm, const CeedScalar *identity,
8490d0321e0SJeremy L Thompson     const CeedScalar *interpin, const CeedScalar *gradin,
8500d0321e0SJeremy L Thompson     const CeedScalar *interpout, const CeedScalar *gradout,
8510d0321e0SJeremy L Thompson     const CeedEvalMode *emodein, const CeedEvalMode *emodeout,
8520d0321e0SJeremy L Thompson     const CeedScalar *__restrict__ assembledqfarray,
8530d0321e0SJeremy L Thompson     CeedScalar *__restrict__ elemdiagarray) {
8540d0321e0SJeremy L Thompson   diagonalCore(nelem, maxnorm, true, identity, interpin, gradin, interpout,
8550d0321e0SJeremy L Thompson                gradout, emodein, emodeout, assembledqfarray, elemdiagarray);
8560d0321e0SJeremy L Thompson }
8570d0321e0SJeremy L Thompson 
8580d0321e0SJeremy L Thompson );
8590d0321e0SJeremy L Thompson // *INDENT-ON*
8600d0321e0SJeremy L Thompson 
8610d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
8620d0321e0SJeremy L Thompson // Create point block restriction
8630d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
8640d0321e0SJeremy L Thompson static int CreatePBRestriction(CeedElemRestriction rstr,
8650d0321e0SJeremy L Thompson                                CeedElemRestriction *pbRstr) {
8660d0321e0SJeremy L Thompson   int ierr;
8670d0321e0SJeremy L Thompson   Ceed ceed;
8680d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetCeed(rstr, &ceed); CeedChkBackend(ierr);
8690d0321e0SJeremy L Thompson   const CeedInt *offsets;
8700d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetOffsets(rstr, CEED_MEM_HOST, &offsets);
8710d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
8720d0321e0SJeremy L Thompson 
8730d0321e0SJeremy L Thompson   // Expand offsets
8740d0321e0SJeremy L Thompson   CeedInt nelem, ncomp, elemsize, compstride, max = 1, *pbOffsets;
8750d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr, &nelem); CeedChkBackend(ierr);
8760d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetNumComponents(rstr, &ncomp); CeedChkBackend(ierr);
8770d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetElementSize(rstr, &elemsize); CeedChkBackend(ierr);
8780d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetCompStride(rstr, &compstride);
8790d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
8800d0321e0SJeremy L Thompson   CeedInt shift = ncomp;
8810d0321e0SJeremy L Thompson   if (compstride != 1)
8820d0321e0SJeremy L Thompson     shift *= ncomp;
8830d0321e0SJeremy L Thompson   ierr = CeedCalloc(nelem*elemsize, &pbOffsets); CeedChkBackend(ierr);
8840d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < nelem*elemsize; i++) {
8850d0321e0SJeremy L Thompson     pbOffsets[i] = offsets[i]*shift;
8860d0321e0SJeremy L Thompson     if (pbOffsets[i] > max)
8870d0321e0SJeremy L Thompson       max = pbOffsets[i];
8880d0321e0SJeremy L Thompson   }
8890d0321e0SJeremy L Thompson 
8900d0321e0SJeremy L Thompson   // Create new restriction
8910d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionCreate(ceed, nelem, elemsize, ncomp*ncomp, 1,
8920d0321e0SJeremy L Thompson                                    max + ncomp*ncomp, CEED_MEM_HOST,
8930d0321e0SJeremy L Thompson                                    CEED_OWN_POINTER, pbOffsets, pbRstr);
8940d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
8950d0321e0SJeremy L Thompson 
8960d0321e0SJeremy L Thompson   // Cleanup
8970d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionRestoreOffsets(rstr, &offsets); CeedChkBackend(ierr);
8980d0321e0SJeremy L Thompson 
8990d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
9000d0321e0SJeremy L Thompson }
9010d0321e0SJeremy L Thompson 
9020d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
9030d0321e0SJeremy L Thompson // Assemble diagonal setup
9040d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
9050d0321e0SJeremy L Thompson static inline int CeedOperatorAssembleDiagonalSetup_Hip(CeedOperator op,
9060d0321e0SJeremy L Thompson     const bool pointBlock) {
9070d0321e0SJeremy L Thompson   int ierr;
9080d0321e0SJeremy L Thompson   Ceed ceed;
9090d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
9100d0321e0SJeremy L Thompson   CeedQFunction qf;
9110d0321e0SJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChkBackend(ierr);
9120d0321e0SJeremy L Thompson   CeedInt numinputfields, numoutputfields;
9130d0321e0SJeremy L Thompson   ierr = CeedQFunctionGetNumArgs(qf, &numinputfields, &numoutputfields);
9140d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
9150d0321e0SJeremy L Thompson 
9160d0321e0SJeremy L Thompson   // Determine active input basis
9170d0321e0SJeremy L Thompson   CeedOperatorField *opfields;
9180d0321e0SJeremy L Thompson   CeedQFunctionField *qffields;
9190d0321e0SJeremy L Thompson   ierr = CeedOperatorGetFields(op, NULL, &opfields, NULL, NULL);
9200d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
9210d0321e0SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qffields, NULL, NULL);
9220d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
9230d0321e0SJeremy L Thompson   CeedInt numemodein = 0, ncomp = 0, dim = 1;
9240d0321e0SJeremy L Thompson   CeedEvalMode *emodein = NULL;
9250d0321e0SJeremy L Thompson   CeedBasis basisin = NULL;
9260d0321e0SJeremy L Thompson   CeedElemRestriction rstrin = NULL;
9270d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numinputfields; i++) {
9280d0321e0SJeremy L Thompson     CeedVector vec;
9290d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetVector(opfields[i], &vec); CeedChkBackend(ierr);
9300d0321e0SJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
9310d0321e0SJeremy L Thompson       CeedElemRestriction rstr;
9320d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opfields[i], &basisin); CeedChkBackend(ierr);
9330d0321e0SJeremy L Thompson       ierr = CeedBasisGetNumComponents(basisin, &ncomp); CeedChkBackend(ierr);
9340d0321e0SJeremy L Thompson       ierr = CeedBasisGetDimension(basisin, &dim); CeedChkBackend(ierr);
9350d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(opfields[i], &rstr);
9360d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
9370d0321e0SJeremy L Thompson       if (rstrin && rstrin != rstr)
9380d0321e0SJeremy L Thompson         // LCOV_EXCL_START
9390d0321e0SJeremy L Thompson         return CeedError(ceed, CEED_ERROR_BACKEND,
9400d0321e0SJeremy L Thompson                          "Multi-field non-composite operator diagonal assembly not supported");
9410d0321e0SJeremy L Thompson       // LCOV_EXCL_STOP
9420d0321e0SJeremy L Thompson       rstrin = rstr;
9430d0321e0SJeremy L Thompson       CeedEvalMode emode;
9440d0321e0SJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qffields[i], &emode);
9450d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
9460d0321e0SJeremy L Thompson       switch (emode) {
9470d0321e0SJeremy L Thompson       case CEED_EVAL_NONE:
9480d0321e0SJeremy L Thompson       case CEED_EVAL_INTERP:
9490d0321e0SJeremy L Thompson         ierr = CeedRealloc(numemodein + 1, &emodein); CeedChkBackend(ierr);
9500d0321e0SJeremy L Thompson         emodein[numemodein] = emode;
9510d0321e0SJeremy L Thompson         numemodein += 1;
9520d0321e0SJeremy L Thompson         break;
9530d0321e0SJeremy L Thompson       case CEED_EVAL_GRAD:
9540d0321e0SJeremy L Thompson         ierr = CeedRealloc(numemodein + dim, &emodein); CeedChkBackend(ierr);
9550d0321e0SJeremy L Thompson         for (CeedInt d = 0; d < dim; d++)
9560d0321e0SJeremy L Thompson           emodein[numemodein+d] = emode;
9570d0321e0SJeremy L Thompson         numemodein += dim;
9580d0321e0SJeremy L Thompson         break;
9590d0321e0SJeremy L Thompson       case CEED_EVAL_WEIGHT:
9600d0321e0SJeremy L Thompson       case CEED_EVAL_DIV:
9610d0321e0SJeremy L Thompson       case CEED_EVAL_CURL:
9620d0321e0SJeremy L Thompson         break; // Caught by QF Assembly
9630d0321e0SJeremy L Thompson       }
9640d0321e0SJeremy L Thompson     }
9650d0321e0SJeremy L Thompson   }
9660d0321e0SJeremy L Thompson 
9670d0321e0SJeremy L Thompson   // Determine active output basis
9680d0321e0SJeremy L Thompson   ierr = CeedOperatorGetFields(op, NULL, NULL, NULL, &opfields);
9690d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
9700d0321e0SJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, NULL, NULL, &qffields);
9710d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
9720d0321e0SJeremy L Thompson   CeedInt numemodeout = 0;
9730d0321e0SJeremy L Thompson   CeedEvalMode *emodeout = NULL;
9740d0321e0SJeremy L Thompson   CeedBasis basisout = NULL;
9750d0321e0SJeremy L Thompson   CeedElemRestriction rstrout = NULL;
9760d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numoutputfields; i++) {
9770d0321e0SJeremy L Thompson     CeedVector vec;
9780d0321e0SJeremy L Thompson     ierr = CeedOperatorFieldGetVector(opfields[i], &vec); CeedChkBackend(ierr);
9790d0321e0SJeremy L Thompson     if (vec == CEED_VECTOR_ACTIVE) {
9800d0321e0SJeremy L Thompson       CeedElemRestriction rstr;
9810d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetBasis(opfields[i], &basisout); CeedChkBackend(ierr);
9820d0321e0SJeremy L Thompson       ierr = CeedOperatorFieldGetElemRestriction(opfields[i], &rstr);
9830d0321e0SJeremy L Thompson       CeedChkBackend(ierr);
9840d0321e0SJeremy L Thompson       if (rstrout && rstrout != rstr)
9850d0321e0SJeremy L Thompson         // LCOV_EXCL_START
9860d0321e0SJeremy L Thompson         return CeedError(ceed, CEED_ERROR_BACKEND,
9870d0321e0SJeremy L Thompson                          "Multi-field non-composite operator diagonal assembly not supported");
9880d0321e0SJeremy L Thompson       // LCOV_EXCL_STOP
9890d0321e0SJeremy L Thompson       rstrout = rstr;
9900d0321e0SJeremy L Thompson       CeedEvalMode emode;
9910d0321e0SJeremy L Thompson       ierr = CeedQFunctionFieldGetEvalMode(qffields[i], &emode); CeedChkBackend(ierr);
9920d0321e0SJeremy L Thompson       switch (emode) {
9930d0321e0SJeremy L Thompson       case CEED_EVAL_NONE:
9940d0321e0SJeremy L Thompson       case CEED_EVAL_INTERP:
9950d0321e0SJeremy L Thompson         ierr = CeedRealloc(numemodeout + 1, &emodeout); CeedChkBackend(ierr);
9960d0321e0SJeremy L Thompson         emodeout[numemodeout] = emode;
9970d0321e0SJeremy L Thompson         numemodeout += 1;
9980d0321e0SJeremy L Thompson         break;
9990d0321e0SJeremy L Thompson       case CEED_EVAL_GRAD:
10000d0321e0SJeremy L Thompson         ierr = CeedRealloc(numemodeout + dim, &emodeout); CeedChkBackend(ierr);
10010d0321e0SJeremy L Thompson         for (CeedInt d = 0; d < dim; d++)
10020d0321e0SJeremy L Thompson           emodeout[numemodeout+d] = emode;
10030d0321e0SJeremy L Thompson         numemodeout += dim;
10040d0321e0SJeremy L Thompson         break;
10050d0321e0SJeremy L Thompson       case CEED_EVAL_WEIGHT:
10060d0321e0SJeremy L Thompson       case CEED_EVAL_DIV:
10070d0321e0SJeremy L Thompson       case CEED_EVAL_CURL:
10080d0321e0SJeremy L Thompson         break; // Caught by QF Assembly
10090d0321e0SJeremy L Thompson       }
10100d0321e0SJeremy L Thompson     }
10110d0321e0SJeremy L Thompson   }
10120d0321e0SJeremy L Thompson 
10130d0321e0SJeremy L Thompson   // Operator data struct
10140d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
10150d0321e0SJeremy L Thompson   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
10160d0321e0SJeremy L Thompson   ierr = CeedCalloc(1, &impl->diag); CeedChkBackend(ierr);
10170d0321e0SJeremy L Thompson   CeedOperatorDiag_Hip *diag = impl->diag;
10180d0321e0SJeremy L Thompson   diag->basisin = basisin;
10190d0321e0SJeremy L Thompson   diag->basisout = basisout;
10200d0321e0SJeremy L Thompson   diag->h_emodein = emodein;
10210d0321e0SJeremy L Thompson   diag->h_emodeout = emodeout;
10220d0321e0SJeremy L Thompson   diag->numemodein = numemodein;
10230d0321e0SJeremy L Thompson   diag->numemodeout = numemodeout;
10240d0321e0SJeremy L Thompson 
10250d0321e0SJeremy L Thompson   // Assemble kernel
10260d0321e0SJeremy L Thompson   CeedInt nnodes, nqpts;
10270d0321e0SJeremy L Thompson   ierr = CeedBasisGetNumNodes(basisin, &nnodes); CeedChkBackend(ierr);
10280d0321e0SJeremy L Thompson   ierr = CeedBasisGetNumQuadraturePoints(basisin, &nqpts); CeedChkBackend(ierr);
10290d0321e0SJeremy L Thompson   diag->nnodes = nnodes;
10300d0321e0SJeremy L Thompson   ierr = CeedCompileHip(ceed, diagonalkernels, &diag->module, 5,
10310d0321e0SJeremy L Thompson                         "NUMEMODEIN", numemodein,
10320d0321e0SJeremy L Thompson                         "NUMEMODEOUT", numemodeout,
10330d0321e0SJeremy L Thompson                         "NNODES", nnodes,
10340d0321e0SJeremy L Thompson                         "NQPTS", nqpts,
10350d0321e0SJeremy L Thompson                         "NCOMP", ncomp
10360d0321e0SJeremy L Thompson                        ); CeedChk_Hip(ceed, ierr);
10370d0321e0SJeremy L Thompson   ierr = CeedGetKernelHip(ceed, diag->module, "linearDiagonal",
10380d0321e0SJeremy L Thompson                           &diag->linearDiagonal); CeedChk_Hip(ceed, ierr);
10390d0321e0SJeremy L Thompson   ierr = CeedGetKernelHip(ceed, diag->module, "linearPointBlockDiagonal",
10400d0321e0SJeremy L Thompson                           &diag->linearPointBlock);
10410d0321e0SJeremy L Thompson   CeedChk_Hip(ceed, ierr);
10420d0321e0SJeremy L Thompson 
10430d0321e0SJeremy L Thompson   // Basis matrices
10440d0321e0SJeremy L Thompson   const CeedInt qBytes = nqpts * sizeof(CeedScalar);
10450d0321e0SJeremy L Thompson   const CeedInt iBytes = qBytes * nnodes;
10460d0321e0SJeremy L Thompson   const CeedInt gBytes = qBytes * nnodes * dim;
10470d0321e0SJeremy L Thompson   const CeedInt eBytes = sizeof(CeedEvalMode);
10480d0321e0SJeremy L Thompson   const CeedScalar *interpin, *interpout, *gradin, *gradout;
10490d0321e0SJeremy L Thompson 
10500d0321e0SJeremy L Thompson   // CEED_EVAL_NONE
10510d0321e0SJeremy L Thompson   CeedScalar *identity = NULL;
10520d0321e0SJeremy L Thompson   bool evalNone = false;
10530d0321e0SJeremy L Thompson   for (CeedInt i=0; i<numemodein; i++)
10540d0321e0SJeremy L Thompson     evalNone = evalNone || (emodein[i] == CEED_EVAL_NONE);
10550d0321e0SJeremy L Thompson   for (CeedInt i=0; i<numemodeout; i++)
10560d0321e0SJeremy L Thompson     evalNone = evalNone || (emodeout[i] == CEED_EVAL_NONE);
10570d0321e0SJeremy L Thompson   if (evalNone) {
10580d0321e0SJeremy L Thompson     ierr = CeedCalloc(nqpts*nnodes, &identity); CeedChkBackend(ierr);
10590d0321e0SJeremy L Thompson     for (CeedInt i=0; i<(nnodes<nqpts?nnodes:nqpts); i++)
10600d0321e0SJeremy L Thompson       identity[i*nnodes+i] = 1.0;
10610d0321e0SJeremy L Thompson     ierr = hipMalloc((void **)&diag->d_identity, iBytes); CeedChk_Hip(ceed, ierr);
10620d0321e0SJeremy L Thompson     ierr = hipMemcpy(diag->d_identity, identity, iBytes,
10630d0321e0SJeremy L Thompson                      hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10640d0321e0SJeremy L Thompson   }
10650d0321e0SJeremy L Thompson 
10660d0321e0SJeremy L Thompson   // CEED_EVAL_INTERP
10670d0321e0SJeremy L Thompson   ierr = CeedBasisGetInterp(basisin, &interpin); CeedChkBackend(ierr);
10680d0321e0SJeremy L Thompson   ierr = hipMalloc((void **)&diag->d_interpin, iBytes); CeedChk_Hip(ceed, ierr);
10690d0321e0SJeremy L Thompson   ierr = hipMemcpy(diag->d_interpin, interpin, iBytes,
10700d0321e0SJeremy L Thompson                    hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10710d0321e0SJeremy L Thompson   ierr = CeedBasisGetInterp(basisout, &interpout); CeedChkBackend(ierr);
10720d0321e0SJeremy L Thompson   ierr = hipMalloc((void **)&diag->d_interpout, iBytes); CeedChk_Hip(ceed, ierr);
10730d0321e0SJeremy L Thompson   ierr = hipMemcpy(diag->d_interpout, interpout, iBytes,
10740d0321e0SJeremy L Thompson                    hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10750d0321e0SJeremy L Thompson 
10760d0321e0SJeremy L Thompson   // CEED_EVAL_GRAD
10770d0321e0SJeremy L Thompson   ierr = CeedBasisGetGrad(basisin, &gradin); CeedChkBackend(ierr);
10780d0321e0SJeremy L Thompson   ierr = hipMalloc((void **)&diag->d_gradin, gBytes); CeedChk_Hip(ceed, ierr);
10790d0321e0SJeremy L Thompson   ierr = hipMemcpy(diag->d_gradin, gradin, gBytes,
10800d0321e0SJeremy L Thompson                    hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10810d0321e0SJeremy L Thompson   ierr = CeedBasisGetGrad(basisout, &gradout); CeedChkBackend(ierr);
10820d0321e0SJeremy L Thompson   ierr = hipMalloc((void **)&diag->d_gradout, gBytes); CeedChk_Hip(ceed, ierr);
10830d0321e0SJeremy L Thompson   ierr = hipMemcpy(diag->d_gradout, gradout, gBytes,
10840d0321e0SJeremy L Thompson                    hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10850d0321e0SJeremy L Thompson 
10860d0321e0SJeremy L Thompson   // Arrays of emodes
10870d0321e0SJeremy L Thompson   ierr = hipMalloc((void **)&diag->d_emodein, numemodein * eBytes);
10880d0321e0SJeremy L Thompson   CeedChk_Hip(ceed, ierr);
10890d0321e0SJeremy L Thompson   ierr = hipMemcpy(diag->d_emodein, emodein, numemodein * eBytes,
10900d0321e0SJeremy L Thompson                    hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10910d0321e0SJeremy L Thompson   ierr = hipMalloc((void **)&diag->d_emodeout, numemodeout * eBytes);
10920d0321e0SJeremy L Thompson   CeedChk_Hip(ceed, ierr);
10930d0321e0SJeremy L Thompson   ierr = hipMemcpy(diag->d_emodeout, emodeout, numemodeout * eBytes,
10940d0321e0SJeremy L Thompson                    hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
10950d0321e0SJeremy L Thompson 
10960d0321e0SJeremy L Thompson   // Restriction
10970d0321e0SJeremy L Thompson   diag->diagrstr = rstrout;
10980d0321e0SJeremy L Thompson 
10990d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
11000d0321e0SJeremy L Thompson }
11010d0321e0SJeremy L Thompson 
11020d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
11030d0321e0SJeremy L Thompson // Assemble diagonal common code
11040d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
11050d0321e0SJeremy L Thompson static inline int CeedOperatorAssembleDiagonalCore_Hip(CeedOperator op,
11060d0321e0SJeremy L Thompson     CeedVector assembled, CeedRequest *request, const bool pointBlock) {
11070d0321e0SJeremy L Thompson   int ierr;
11080d0321e0SJeremy L Thompson   Ceed ceed;
11090d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
11100d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
11110d0321e0SJeremy L Thompson   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
11120d0321e0SJeremy L Thompson 
11130d0321e0SJeremy L Thompson   // Assemble QFunction
11140d0321e0SJeremy L Thompson   CeedVector assembledqf;
11150d0321e0SJeremy L Thompson   CeedElemRestriction rstr;
11160d0321e0SJeremy L Thompson   ierr = CeedOperatorLinearAssembleQFunctionBuildOrUpdate(op, &assembledqf,
11170d0321e0SJeremy L Thompson          &rstr, request); CeedChkBackend(ierr);
11180d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionDestroy(&rstr); CeedChkBackend(ierr);
11190d0321e0SJeremy L Thompson   CeedScalar maxnorm = 0;
11200d0321e0SJeremy L Thompson   ierr = CeedVectorNorm(assembledqf, CEED_NORM_MAX, &maxnorm);
11210d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
11220d0321e0SJeremy L Thompson 
11230d0321e0SJeremy L Thompson   // Setup
11240d0321e0SJeremy L Thompson   if (!impl->diag) {
11250d0321e0SJeremy L Thompson     ierr = CeedOperatorAssembleDiagonalSetup_Hip(op, pointBlock);
11260d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
11270d0321e0SJeremy L Thompson   }
11280d0321e0SJeremy L Thompson   CeedOperatorDiag_Hip *diag = impl->diag;
11290d0321e0SJeremy L Thompson   assert(diag != NULL);
11300d0321e0SJeremy L Thompson 
11310d0321e0SJeremy L Thompson   // Restriction
11320d0321e0SJeremy L Thompson   if (pointBlock && !diag->pbdiagrstr) {
11330d0321e0SJeremy L Thompson     CeedElemRestriction pbdiagrstr;
11340d0321e0SJeremy L Thompson     ierr = CreatePBRestriction(diag->diagrstr, &pbdiagrstr); CeedChkBackend(ierr);
11350d0321e0SJeremy L Thompson     diag->pbdiagrstr = pbdiagrstr;
11360d0321e0SJeremy L Thompson   }
11370d0321e0SJeremy L Thompson   CeedElemRestriction diagrstr = pointBlock ? diag->pbdiagrstr : diag->diagrstr;
11380d0321e0SJeremy L Thompson 
11390d0321e0SJeremy L Thompson   // Create diagonal vector
11400d0321e0SJeremy L Thompson   CeedVector elemdiag = pointBlock ? diag->pbelemdiag : diag->elemdiag;
11410d0321e0SJeremy L Thompson   if (!elemdiag) {
11420d0321e0SJeremy L Thompson     // Element diagonal vector
11430d0321e0SJeremy L Thompson     ierr = CeedElemRestrictionCreateVector(diagrstr, NULL, &elemdiag);
11440d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
11450d0321e0SJeremy L Thompson     if (pointBlock)
11460d0321e0SJeremy L Thompson       diag->pbelemdiag = elemdiag;
11470d0321e0SJeremy L Thompson     else
11480d0321e0SJeremy L Thompson       diag->elemdiag = elemdiag;
11490d0321e0SJeremy L Thompson   }
11500d0321e0SJeremy L Thompson   ierr = CeedVectorSetValue(elemdiag, 0.0); CeedChkBackend(ierr);
11510d0321e0SJeremy L Thompson 
11520d0321e0SJeremy L Thompson   // Assemble element operator diagonals
11530d0321e0SJeremy L Thompson   CeedScalar *elemdiagarray;
11540d0321e0SJeremy L Thompson   const CeedScalar *assembledqfarray;
11550d0321e0SJeremy L Thompson   ierr = CeedVectorGetArray(elemdiag, CEED_MEM_DEVICE, &elemdiagarray);
11560d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
11570d0321e0SJeremy L Thompson   ierr = CeedVectorGetArrayRead(assembledqf, CEED_MEM_DEVICE, &assembledqfarray);
11580d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
11590d0321e0SJeremy L Thompson   CeedInt nelem;
11600d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(diagrstr, &nelem);
11610d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
11620d0321e0SJeremy L Thompson 
11630d0321e0SJeremy L Thompson   // Compute the diagonal of B^T D B
11640d0321e0SJeremy L Thompson   int elemsPerBlock = 1;
11650d0321e0SJeremy L Thompson   int grid = nelem/elemsPerBlock+((nelem/elemsPerBlock*elemsPerBlock<nelem)?1:0);
11660d0321e0SJeremy L Thompson   void *args[] = {(void *) &nelem, (void *) &maxnorm, &diag->d_identity,
11670d0321e0SJeremy L Thompson                   &diag->d_interpin, &diag->d_gradin, &diag->d_interpout,
11680d0321e0SJeremy L Thompson                   &diag->d_gradout, &diag->d_emodein, &diag->d_emodeout,
11690d0321e0SJeremy L Thompson                   &assembledqfarray, &elemdiagarray
11700d0321e0SJeremy L Thompson                  };
11710d0321e0SJeremy L Thompson   if (pointBlock) {
11720d0321e0SJeremy L Thompson     ierr = CeedRunKernelDimHip(ceed, diag->linearPointBlock, grid,
11730d0321e0SJeremy L Thompson                                diag->nnodes, 1, elemsPerBlock, args);
11740d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
11750d0321e0SJeremy L Thompson   } else {
11760d0321e0SJeremy L Thompson     ierr = CeedRunKernelDimHip(ceed, diag->linearDiagonal, grid,
11770d0321e0SJeremy L Thompson                                diag->nnodes, 1, elemsPerBlock, args);
11780d0321e0SJeremy L Thompson     CeedChkBackend(ierr);
11790d0321e0SJeremy L Thompson   }
11800d0321e0SJeremy L Thompson 
11810d0321e0SJeremy L Thompson   // Restore arrays
11820d0321e0SJeremy L Thompson   ierr = CeedVectorRestoreArray(elemdiag, &elemdiagarray); CeedChkBackend(ierr);
11830d0321e0SJeremy L Thompson   ierr = CeedVectorRestoreArrayRead(assembledqf, &assembledqfarray);
11840d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
11850d0321e0SJeremy L Thompson 
11860d0321e0SJeremy L Thompson   // Assemble local operator diagonal
11870d0321e0SJeremy L Thompson   ierr = CeedElemRestrictionApply(diagrstr, CEED_TRANSPOSE, elemdiag,
11880d0321e0SJeremy L Thompson                                   assembled, request); CeedChkBackend(ierr);
11890d0321e0SJeremy L Thompson 
11900d0321e0SJeremy L Thompson   // Cleanup
11910d0321e0SJeremy L Thompson   ierr = CeedVectorDestroy(&assembledqf); CeedChkBackend(ierr);
11920d0321e0SJeremy L Thompson 
11930d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
11940d0321e0SJeremy L Thompson }
11950d0321e0SJeremy L Thompson 
11960d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
11970d0321e0SJeremy L Thompson // Assemble composite diagonal common code
11980d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
11990d0321e0SJeremy L Thompson static inline int CeedOperatorLinearAssembleAddDiagonalCompositeCore_Hip(
12000d0321e0SJeremy L Thompson   CeedOperator op, CeedVector assembled, CeedRequest *request,
12010d0321e0SJeremy L Thompson   const bool pointBlock) {
12020d0321e0SJeremy L Thompson   int ierr;
12030d0321e0SJeremy L Thompson   CeedInt numSub;
12040d0321e0SJeremy L Thompson   CeedOperator *subOperators;
12050d0321e0SJeremy L Thompson   ierr = CeedOperatorGetNumSub(op, &numSub); CeedChkBackend(ierr);
12060d0321e0SJeremy L Thompson   ierr = CeedOperatorGetSubList(op, &subOperators); CeedChkBackend(ierr);
12070d0321e0SJeremy L Thompson   for (CeedInt i = 0; i < numSub; i++) {
12080d0321e0SJeremy L Thompson     ierr = CeedOperatorAssembleDiagonalCore_Hip(subOperators[i], assembled,
12090d0321e0SJeremy L Thompson            request, pointBlock); CeedChkBackend(ierr);
12100d0321e0SJeremy L Thompson   }
12110d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
12120d0321e0SJeremy L Thompson }
12130d0321e0SJeremy L Thompson 
12140d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
12150d0321e0SJeremy L Thompson // Assemble Linear Diagonal
12160d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
12170d0321e0SJeremy L Thompson static int CeedOperatorLinearAssembleAddDiagonal_Hip(CeedOperator op,
12180d0321e0SJeremy L Thompson     CeedVector assembled, CeedRequest *request) {
12190d0321e0SJeremy L Thompson   int ierr;
12200d0321e0SJeremy L Thompson   bool isComposite;
12210d0321e0SJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &isComposite); CeedChkBackend(ierr);
12220d0321e0SJeremy L Thompson   if (isComposite) {
12230d0321e0SJeremy L Thompson     return CeedOperatorLinearAssembleAddDiagonalCompositeCore_Hip(op, assembled,
12240d0321e0SJeremy L Thompson            request, false);
12250d0321e0SJeremy L Thompson   } else {
12260d0321e0SJeremy L Thompson     return CeedOperatorAssembleDiagonalCore_Hip(op, assembled, request, false);
12270d0321e0SJeremy L Thompson   }
12280d0321e0SJeremy L Thompson }
12290d0321e0SJeremy L Thompson 
12300d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
12310d0321e0SJeremy L Thompson // Assemble Linear Point Block Diagonal
12320d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
12330d0321e0SJeremy L Thompson static int CeedOperatorLinearAssembleAddPointBlockDiagonal_Hip(CeedOperator op,
12340d0321e0SJeremy L Thompson     CeedVector assembled, CeedRequest *request) {
12350d0321e0SJeremy L Thompson   int ierr;
12360d0321e0SJeremy L Thompson   bool isComposite;
12370d0321e0SJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &isComposite); CeedChkBackend(ierr);
12380d0321e0SJeremy L Thompson   if (isComposite) {
12390d0321e0SJeremy L Thompson     return CeedOperatorLinearAssembleAddDiagonalCompositeCore_Hip(op, assembled,
12400d0321e0SJeremy L Thompson            request, true);
12410d0321e0SJeremy L Thompson   } else {
12420d0321e0SJeremy L Thompson     return CeedOperatorAssembleDiagonalCore_Hip(op, assembled, request, true);
12430d0321e0SJeremy L Thompson   }
12440d0321e0SJeremy L Thompson }
12450d0321e0SJeremy L Thompson 
1246a835093fSnbeams //------------------------------------------------------------------------------
124759ad764aSnbeams // Matrix assembly kernel for low-order elements (2D thread block)
1248a835093fSnbeams //------------------------------------------------------------------------------
1249a835093fSnbeams // *INDENT-OFF*
125059ad764aSnbeams static const char *assemblykernel = QUOTE(
1251a835093fSnbeams extern "C" __launch_bounds__(BLOCK_SIZE)
1252a835093fSnbeams            __global__ void linearAssemble(const CeedScalar *B_in, const CeedScalar *B_out,
1253a835093fSnbeams                    const CeedScalar *__restrict__ qf_array,
1254a835093fSnbeams                    CeedScalar *__restrict__ values_array) {
1255a835093fSnbeams 
1256a835093fSnbeams   // This kernel assumes B_in and B_out have the same number of quadrature points and
1257a835093fSnbeams   // basis points.
1258a835093fSnbeams   // TODO: expand to more general cases
1259a835093fSnbeams   const int i = threadIdx.x; // The output row index of each B^TDB operation
1260a835093fSnbeams   const int l = threadIdx.y; // The output column index of each B^TDB operation
1261a835093fSnbeams 			     // such that we have (Bout^T)_ij D_jk Bin_kl = C_il
1262a835093fSnbeams 
1263a835093fSnbeams   // Strides for final output ordering, determined by the reference (interface) implementation of
1264a835093fSnbeams   // the symbolic assembly, slowest --> fastest: element, comp_in, comp_out, node_row, node_col
1265a835093fSnbeams   const CeedInt comp_out_stride = NNODES * NNODES;
1266a835093fSnbeams   const CeedInt comp_in_stride = comp_out_stride * NCOMP;
1267a835093fSnbeams   const CeedInt e_stride = comp_in_stride * NCOMP;
1268a835093fSnbeams   // Strides for QF array, slowest --> fastest:  emode_in, comp_in, emode_out, comp_out, elem, qpt
1269a835093fSnbeams   const CeedInt qe_stride = NQPTS;
1270a835093fSnbeams   const CeedInt qcomp_out_stride = NELEM * qe_stride;
1271a835093fSnbeams   const CeedInt qemode_out_stride = qcomp_out_stride * NCOMP;
1272a835093fSnbeams   const CeedInt qcomp_in_stride = qemode_out_stride * NUMEMODEOUT;
1273a835093fSnbeams   const CeedInt qemode_in_stride = qcomp_in_stride * NCOMP;
1274a835093fSnbeams 
1275a835093fSnbeams   // Loop over each element (if necessary)
1276a835093fSnbeams   for (CeedInt e = blockIdx.x*blockDim.z + threadIdx.z; e < NELEM;
1277a835093fSnbeams          e += gridDim.x*blockDim.z) {
1278a835093fSnbeams     for (CeedInt comp_in = 0; comp_in < NCOMP; comp_in++) {
1279a835093fSnbeams       for (CeedInt comp_out = 0; comp_out < NCOMP; comp_out++) {
1280a835093fSnbeams         CeedScalar result = 0.0;
1281a835093fSnbeams         CeedInt qf_index_comp = qcomp_in_stride * comp_in + qcomp_out_stride * comp_out + qe_stride * e;
1282a835093fSnbeams         for (CeedInt emode_in = 0; emode_in < NUMEMODEIN; emode_in++) {
1283a835093fSnbeams           CeedInt b_in_index = emode_in * NQPTS * NNODES;
1284a835093fSnbeams       	  for (CeedInt emode_out = 0; emode_out < NUMEMODEOUT; emode_out++) {
1285a835093fSnbeams              CeedInt b_out_index = emode_out * NQPTS * NNODES;
1286a835093fSnbeams              CeedInt qf_index = qf_index_comp + qemode_out_stride * emode_out + qemode_in_stride * emode_in;
1287a835093fSnbeams  	     // Perform the B^T D B operation for this 'chunk' of D (the qf_array)
1288a835093fSnbeams             for (CeedInt j = 0; j < NQPTS; j++) {
1289a835093fSnbeams      	      result += B_out[b_out_index + j * NNODES  + i] * qf_array[qf_index + j] * B_in[b_in_index + j * NNODES + l];
1290a835093fSnbeams 	    }
1291a835093fSnbeams 
1292a835093fSnbeams           }// end of emode_out
1293a835093fSnbeams         } // end of emode_in
1294a835093fSnbeams         CeedInt val_index = comp_in_stride * comp_in + comp_out_stride * comp_out + e_stride * e + NNODES * i + l;
1295a835093fSnbeams    	values_array[val_index] = result;
1296a835093fSnbeams       } // end of out component
1297a835093fSnbeams     } // end of in component
1298a835093fSnbeams   } // end of element loop
1299a835093fSnbeams }
1300a835093fSnbeams );
130159ad764aSnbeams 
130259ad764aSnbeams //------------------------------------------------------------------------------
130359ad764aSnbeams // Fallback kernel for larger orders (1D thread block)
130459ad764aSnbeams //------------------------------------------------------------------------------
130559ad764aSnbeams static const char *assemblykernelbigelem = QUOTE(
130659ad764aSnbeams extern "C" __launch_bounds__(BLOCK_SIZE)
130759ad764aSnbeams            __global__ void linearAssemble(const CeedScalar *B_in, const CeedScalar *B_out,
130859ad764aSnbeams                    const CeedScalar *__restrict__ qf_array,
130959ad764aSnbeams                    CeedScalar *__restrict__ values_array) {
131059ad764aSnbeams 
131159ad764aSnbeams   // This kernel assumes B_in and B_out have the same number of quadrature points and
131259ad764aSnbeams   // basis points.
131359ad764aSnbeams   // TODO: expand to more general cases
131459ad764aSnbeams   const int l = threadIdx.x; // The output column index of each B^TDB operation
131559ad764aSnbeams 			     // such that we have (Bout^T)_ij D_jk Bin_kl = C_il
131659ad764aSnbeams 
131759ad764aSnbeams   // Strides for final output ordering, determined by the reference (interface) implementation of
131859ad764aSnbeams   // the symbolic assembly, slowest --> fastest: element, comp_in, comp_out, node_row, node_col
131959ad764aSnbeams   const CeedInt comp_out_stride = NNODES * NNODES;
132059ad764aSnbeams   const CeedInt comp_in_stride = comp_out_stride * NCOMP;
132159ad764aSnbeams   const CeedInt e_stride = comp_in_stride * NCOMP;
132259ad764aSnbeams   // Strides for QF array, slowest --> fastest:  emode_in, comp_in, emode_out, comp_out, elem, qpt
132359ad764aSnbeams   const CeedInt qe_stride = NQPTS;
132459ad764aSnbeams   const CeedInt qcomp_out_stride = NELEM * qe_stride;
132559ad764aSnbeams   const CeedInt qemode_out_stride = qcomp_out_stride * NCOMP;
132659ad764aSnbeams   const CeedInt qcomp_in_stride = qemode_out_stride * NUMEMODEOUT;
132759ad764aSnbeams   const CeedInt qemode_in_stride = qcomp_in_stride * NCOMP;
132859ad764aSnbeams 
132959ad764aSnbeams     // Loop over each element (if necessary)
133059ad764aSnbeams   for (CeedInt e = blockIdx.x*blockDim.z + threadIdx.z; e < NELEM;
133159ad764aSnbeams          e += gridDim.x*blockDim.z) {
133259ad764aSnbeams     for (CeedInt comp_in = 0; comp_in < NCOMP; comp_in++) {
133359ad764aSnbeams       for (CeedInt comp_out = 0; comp_out < NCOMP; comp_out++) {
133459ad764aSnbeams         for (CeedInt i = 0; i < NNODES; i++) {
133559ad764aSnbeams           CeedScalar result = 0.0;
133659ad764aSnbeams           CeedInt qf_index_comp = qcomp_in_stride * comp_in + qcomp_out_stride * comp_out + qe_stride * e;
133759ad764aSnbeams           for (CeedInt emode_in = 0; emode_in < NUMEMODEIN; emode_in++) {
133859ad764aSnbeams             CeedInt b_in_index = emode_in * NQPTS * NNODES;
133959ad764aSnbeams         	  for (CeedInt emode_out = 0; emode_out < NUMEMODEOUT; emode_out++) {
134059ad764aSnbeams                CeedInt b_out_index = emode_out * NQPTS * NNODES;
134159ad764aSnbeams                CeedInt qf_index = qf_index_comp + qemode_out_stride * emode_out + qemode_in_stride * emode_in;
134259ad764aSnbeams    	     // Perform the B^T D B operation for this 'chunk' of D (the qf_array)
134359ad764aSnbeams               for (CeedInt j = 0; j < NQPTS; j++) {
134459ad764aSnbeams        	      result += B_out[b_out_index + j * NNODES  + i] * qf_array[qf_index + j] * B_in[b_in_index + j * NNODES + l];
134559ad764aSnbeams   	    }
134659ad764aSnbeams 
134759ad764aSnbeams             }// end of emode_out
134859ad764aSnbeams           } // end of emode_in
134959ad764aSnbeams           CeedInt val_index = comp_in_stride * comp_in + comp_out_stride * comp_out + e_stride * e + NNODES * i + l;
135059ad764aSnbeams      	  values_array[val_index] = result;
135159ad764aSnbeams         } // end of loop over element node index, i
135259ad764aSnbeams       } // end of out component
135359ad764aSnbeams     } // end of in component
135459ad764aSnbeams   } // end of element loop
135559ad764aSnbeams }
135659ad764aSnbeams );
1357a835093fSnbeams // *INDENT-ON*
1358a835093fSnbeams 
1359a835093fSnbeams //------------------------------------------------------------------------------
1360a835093fSnbeams // Single operator assembly setup
1361a835093fSnbeams //------------------------------------------------------------------------------
1362a835093fSnbeams static int CeedSingleOperatorAssembleSetup_Hip(CeedOperator op) {
1363a835093fSnbeams   int ierr;
1364a835093fSnbeams   Ceed ceed;
1365a835093fSnbeams   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
1366a835093fSnbeams   CeedOperator_Hip *impl;
1367a835093fSnbeams   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
1368a835093fSnbeams 
1369a835093fSnbeams   // Get intput and output fields
1370a835093fSnbeams   CeedInt num_input_fields, num_output_fields;
1371a835093fSnbeams   CeedOperatorField *input_fields;
1372a835093fSnbeams   CeedOperatorField *output_fields;
1373a835093fSnbeams   ierr = CeedOperatorGetFields(op, &num_input_fields, &input_fields,
1374*b216396cSJeremy L Thompson                                &num_output_fields, &output_fields); CeedChkBackend(ierr);
1375a835093fSnbeams 
1376a835093fSnbeams   // Determine active input basis eval mode
1377a835093fSnbeams   CeedQFunction qf;
1378*b216396cSJeremy L Thompson   ierr = CeedOperatorGetQFunction(op, &qf); CeedChkBackend(ierr);
1379a835093fSnbeams   CeedQFunctionField *qf_fields;
1380*b216396cSJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, &qf_fields, NULL, NULL);
1381*b216396cSJeremy L Thompson   CeedChkBackend(ierr);
1382a835093fSnbeams   // Note that the kernel will treat each dimension of a gradient action separately;
1383a835093fSnbeams   // i.e., when an active input has a CEED_EVAL_GRAD mode, num_emode_in will increment
1384a835093fSnbeams   // by dim.  However, for the purposes of loading the B matrices, it will be treated
1385a835093fSnbeams   // as one mode, and we will load/copy the entire gradient matrix at once, so
1386a835093fSnbeams   // num_B_in_mats_to_load will be incremented by 1.
1387a835093fSnbeams   CeedInt num_emode_in = 0, dim = 1, num_B_in_mats_to_load = 0, size_B_in = 0;
1388a835093fSnbeams   CeedEvalMode *eval_mode_in = NULL; //will be of size num_B_in_mats_load
1389a835093fSnbeams   CeedBasis basis_in = NULL;
1390*b216396cSJeremy L Thompson   CeedInt nqpts = 0, esize = 0;
1391a835093fSnbeams   CeedElemRestriction rstr_in = NULL;
1392a835093fSnbeams   for (CeedInt i=0; i<num_input_fields; i++) {
1393a835093fSnbeams     CeedVector vec;
1394*b216396cSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(input_fields[i], &vec); CeedChkBackend(ierr);
1395a835093fSnbeams     if (vec == CEED_VECTOR_ACTIVE) {
1396a835093fSnbeams       ierr = CeedOperatorFieldGetBasis(input_fields[i], &basis_in);
1397*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1398*b216396cSJeremy L Thompson       ierr = CeedBasisGetDimension(basis_in, &dim); CeedChkBackend(ierr);
1399*b216396cSJeremy L Thompson       ierr = CeedBasisGetNumQuadraturePoints(basis_in, &nqpts); CeedChkBackend(ierr);
1400a835093fSnbeams       ierr = CeedOperatorFieldGetElemRestriction(input_fields[i], &rstr_in);
1401*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1402*b216396cSJeremy L Thompson       ierr = CeedElemRestrictionGetElementSize(rstr_in, &esize); CeedChkBackend(ierr);
1403a835093fSnbeams       CeedEvalMode eval_mode;
1404a835093fSnbeams       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode);
1405*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1406a835093fSnbeams       if (eval_mode != CEED_EVAL_NONE) {
1407*b216396cSJeremy L Thompson         ierr = CeedRealloc(num_B_in_mats_to_load + 1, &eval_mode_in);
1408*b216396cSJeremy L Thompson         CeedChkBackend(ierr);
1409a835093fSnbeams         eval_mode_in[num_B_in_mats_to_load] = eval_mode;
1410a835093fSnbeams         num_B_in_mats_to_load += 1;
1411a835093fSnbeams         if (eval_mode == CEED_EVAL_GRAD) {
1412a835093fSnbeams           num_emode_in += dim;
1413a835093fSnbeams           size_B_in += dim * esize * nqpts;
1414a835093fSnbeams         } else {
1415a835093fSnbeams           num_emode_in +=1;
1416a835093fSnbeams           size_B_in += esize * nqpts;
1417a835093fSnbeams         }
1418a835093fSnbeams       }
1419a835093fSnbeams     }
1420a835093fSnbeams   }
1421a835093fSnbeams 
1422a835093fSnbeams   // Determine active output basis; basis_out and rstr_out only used if same as input, TODO
1423*b216396cSJeremy L Thompson   ierr = CeedQFunctionGetFields(qf, NULL, NULL, NULL, &qf_fields);
1424*b216396cSJeremy L Thompson   CeedChkBackend(ierr);
1425a835093fSnbeams   CeedInt num_emode_out = 0, num_B_out_mats_to_load = 0, size_B_out = 0;
1426a835093fSnbeams   CeedEvalMode *eval_mode_out = NULL;
1427a835093fSnbeams   CeedBasis basis_out = NULL;
1428a835093fSnbeams   CeedElemRestriction rstr_out = NULL;
1429a835093fSnbeams   for (CeedInt i=0; i<num_output_fields; i++) {
1430a835093fSnbeams     CeedVector vec;
1431*b216396cSJeremy L Thompson     ierr = CeedOperatorFieldGetVector(output_fields[i], &vec); CeedChkBackend(ierr);
1432a835093fSnbeams     if (vec == CEED_VECTOR_ACTIVE) {
1433a835093fSnbeams       ierr = CeedOperatorFieldGetBasis(output_fields[i], &basis_out);
1434*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1435a835093fSnbeams       ierr = CeedOperatorFieldGetElemRestriction(output_fields[i], &rstr_out);
1436*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1437a835093fSnbeams       if (rstr_out && rstr_out != rstr_in)
1438a835093fSnbeams         // LCOV_EXCL_START
1439a835093fSnbeams         return CeedError(ceed, CEED_ERROR_BACKEND,
1440a835093fSnbeams                          "Multi-field non-composite operator assembly not supported");
1441a835093fSnbeams       // LCOV_EXCL_STOP
1442a835093fSnbeams       CeedEvalMode eval_mode;
1443a835093fSnbeams       ierr = CeedQFunctionFieldGetEvalMode(qf_fields[i], &eval_mode);
1444*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1445a835093fSnbeams       if (eval_mode != CEED_EVAL_NONE) {
1446*b216396cSJeremy L Thompson         ierr = CeedRealloc(num_B_out_mats_to_load + 1, &eval_mode_out);
1447*b216396cSJeremy L Thompson         CeedChkBackend(ierr);
1448a835093fSnbeams         eval_mode_out[num_B_out_mats_to_load] = eval_mode;
1449a835093fSnbeams         num_B_out_mats_to_load += 1;
1450a835093fSnbeams         if (eval_mode == CEED_EVAL_GRAD) {
1451a835093fSnbeams           num_emode_out += dim;
1452a835093fSnbeams           size_B_out += dim * esize * nqpts;
1453a835093fSnbeams         } else {
1454a835093fSnbeams           num_emode_out +=1;
1455a835093fSnbeams           size_B_out += esize * nqpts;
1456a835093fSnbeams         }
1457a835093fSnbeams       }
1458a835093fSnbeams     }
1459a835093fSnbeams   }
1460a835093fSnbeams 
1461a835093fSnbeams   if (num_emode_in == 0 || num_emode_out == 0)
1462a835093fSnbeams     // LCOV_EXCL_START
1463a835093fSnbeams     return CeedError(ceed, CEED_ERROR_UNSUPPORTED,
1464a835093fSnbeams                      "Cannot assemble operator without inputs/outputs");
1465a835093fSnbeams   // LCOV_EXCL_STOP
1466a835093fSnbeams 
1467a835093fSnbeams   CeedInt nelem, ncomp;
1468*b216396cSJeremy L Thompson   ierr = CeedElemRestrictionGetNumElements(rstr_in, &nelem); CeedChkBackend(ierr);
1469*b216396cSJeremy L Thompson   ierr = CeedElemRestrictionGetNumComponents(rstr_in, &ncomp);
1470*b216396cSJeremy L Thompson   CeedChkBackend(ierr);
1471a835093fSnbeams 
1472a835093fSnbeams   ierr = CeedCalloc(1, &impl->asmb); CeedChkBackend(ierr);
1473a835093fSnbeams   CeedOperatorAssemble_Hip *asmb = impl->asmb;
1474a835093fSnbeams   asmb->nelem = nelem;
1475a835093fSnbeams 
1476a835093fSnbeams   // Compile kernels
1477a835093fSnbeams   int elemsPerBlock = 1;
1478a835093fSnbeams   asmb->elemsPerBlock = elemsPerBlock;
147959ad764aSnbeams   CeedInt block_size = esize * esize * elemsPerBlock;
148059ad764aSnbeams   if (block_size > 1024) { // Use fallback kernel with 1D threadblock
148159ad764aSnbeams     block_size = esize * elemsPerBlock;
148259ad764aSnbeams     asmb->block_size_x = esize;
148359ad764aSnbeams     asmb->block_size_y = 1;
148459ad764aSnbeams     ierr = CeedCompileHip(ceed, assemblykernelbigelem, &asmb->module, 7,
1485a835093fSnbeams                           "NELEM", nelem,
1486a835093fSnbeams                           "NUMEMODEIN", num_emode_in,
1487a835093fSnbeams                           "NUMEMODEOUT", num_emode_out,
1488a835093fSnbeams                           "NQPTS", nqpts,
1489a835093fSnbeams                           "NNODES", esize,
149059ad764aSnbeams                           "BLOCK_SIZE", block_size,
1491a835093fSnbeams                           "NCOMP", ncomp
1492a835093fSnbeams                          ); CeedChk_Hip(ceed, ierr);
149359ad764aSnbeams   } else {  // Use kernel with 2D threadblock
149459ad764aSnbeams     asmb->block_size_x = esize;
149559ad764aSnbeams     asmb->block_size_y = esize;
149659ad764aSnbeams     ierr = CeedCompileHip(ceed, assemblykernel, &asmb->module, 7,
149759ad764aSnbeams                           "NELEM", nelem,
149859ad764aSnbeams                           "NUMEMODEIN", num_emode_in,
149959ad764aSnbeams                           "NUMEMODEOUT", num_emode_out,
150059ad764aSnbeams                           "NQPTS", nqpts,
150159ad764aSnbeams                           "NNODES", esize,
150259ad764aSnbeams                           "BLOCK_SIZE", block_size,
150359ad764aSnbeams                           "NCOMP", ncomp
150459ad764aSnbeams                          ); CeedChk_Hip(ceed, ierr);
150559ad764aSnbeams   }
1506a835093fSnbeams   ierr = CeedGetKernelHip(ceed, asmb->module, "linearAssemble",
1507a835093fSnbeams                           &asmb->linearAssemble); CeedChk_Hip(ceed, ierr);
1508a835093fSnbeams 
1509a835093fSnbeams   // Build 'full' B matrices (not 1D arrays used for tensor-product matrices)
1510a835093fSnbeams   const CeedScalar *interp_in, *grad_in;
1511a835093fSnbeams   ierr = CeedBasisGetInterp(basis_in, &interp_in); CeedChkBackend(ierr);
1512a835093fSnbeams   ierr = CeedBasisGetGrad(basis_in, &grad_in); CeedChkBackend(ierr);
1513a835093fSnbeams 
1514a835093fSnbeams   // Load into B_in, in order that they will be used in eval_mode
1515a835093fSnbeams   const CeedInt inBytes = size_B_in * sizeof(CeedScalar);
1516a835093fSnbeams   CeedInt mat_start = 0;
1517a835093fSnbeams   ierr = hipMalloc((void **) &asmb->d_B_in, inBytes); CeedChk_Hip(ceed, ierr);
1518a835093fSnbeams   for (int i = 0; i < num_B_in_mats_to_load; i++) {
1519a835093fSnbeams     CeedEvalMode eval_mode = eval_mode_in[i];
1520a835093fSnbeams     if (eval_mode == CEED_EVAL_INTERP) {
1521a835093fSnbeams       ierr = hipMemcpy(&asmb->d_B_in[mat_start], interp_in,
1522a835093fSnbeams                        esize * nqpts * sizeof(CeedScalar),
1523a835093fSnbeams                        hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
1524a835093fSnbeams       mat_start += esize * nqpts;
1525a835093fSnbeams     } else if (eval_mode == CEED_EVAL_GRAD) {
1526a835093fSnbeams       ierr = hipMemcpy(asmb->d_B_in, grad_in,
1527a835093fSnbeams                        dim * esize * nqpts * sizeof(CeedScalar),
1528a835093fSnbeams                        hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
1529a835093fSnbeams       mat_start += dim * esize * nqpts;
1530a835093fSnbeams     }
1531a835093fSnbeams   }
1532a835093fSnbeams 
1533a835093fSnbeams   const CeedScalar *interp_out, *grad_out;
1534a835093fSnbeams   // Note that this function currently assumes 1 basis, so this should always be true
1535a835093fSnbeams   // for now
1536a835093fSnbeams   if (basis_out == basis_in) {
1537a835093fSnbeams     interp_out = interp_in;
1538a835093fSnbeams     grad_out = grad_in;
1539a835093fSnbeams   } else {
1540a835093fSnbeams     ierr = CeedBasisGetInterp(basis_out, &interp_out); CeedChkBackend(ierr);
1541a835093fSnbeams     ierr = CeedBasisGetGrad(basis_out, &grad_out); CeedChkBackend(ierr);
1542a835093fSnbeams   }
1543a835093fSnbeams 
1544a835093fSnbeams   // Load into B_out, in order that they will be used in eval_mode
1545a835093fSnbeams   const CeedInt outBytes = size_B_out * sizeof(CeedScalar);
1546a835093fSnbeams   mat_start = 0;
1547a835093fSnbeams   ierr = hipMalloc((void **) &asmb->d_B_out, outBytes); CeedChk_Hip(ceed, ierr);
1548a835093fSnbeams   for (int i = 0; i < num_B_out_mats_to_load; i++) {
1549a835093fSnbeams     CeedEvalMode eval_mode = eval_mode_out[i];
1550a835093fSnbeams     if (eval_mode == CEED_EVAL_INTERP) {
1551a835093fSnbeams       ierr = hipMemcpy(&asmb->d_B_out[mat_start], interp_out,
1552a835093fSnbeams                        esize * nqpts * sizeof(CeedScalar),
1553a835093fSnbeams                        hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
1554a835093fSnbeams       mat_start += esize * nqpts;
1555a835093fSnbeams     } else if (eval_mode == CEED_EVAL_GRAD) {
1556a835093fSnbeams       ierr = hipMemcpy(&asmb->d_B_out[mat_start], grad_out,
1557a835093fSnbeams                        dim * esize * nqpts * sizeof(CeedScalar),
1558a835093fSnbeams                        hipMemcpyHostToDevice); CeedChk_Hip(ceed, ierr);
1559a835093fSnbeams       mat_start += dim * esize * nqpts;
1560a835093fSnbeams     }
1561a835093fSnbeams   }
1562a835093fSnbeams   return CEED_ERROR_SUCCESS;
1563a835093fSnbeams }
1564a835093fSnbeams 
1565a835093fSnbeams //------------------------------------------------------------------------------
1566a835093fSnbeams // Single operator assembly
1567a835093fSnbeams //------------------------------------------------------------------------------
1568a835093fSnbeams static int CeedSingleOperatorAssemble_Hip(CeedOperator op, CeedInt offset,
1569a835093fSnbeams     CeedVector values) {
1570a835093fSnbeams 
1571a835093fSnbeams   int ierr;
1572a835093fSnbeams   Ceed ceed;
1573a835093fSnbeams   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
1574a835093fSnbeams   CeedOperator_Hip *impl;
1575a835093fSnbeams   ierr = CeedOperatorGetData(op, &impl); CeedChkBackend(ierr);
1576a835093fSnbeams 
1577a835093fSnbeams   // Setup
1578a835093fSnbeams   if (!impl->asmb) {
1579a835093fSnbeams     ierr = CeedSingleOperatorAssembleSetup_Hip(op);
1580a835093fSnbeams     CeedChkBackend(ierr);
1581*b216396cSJeremy L Thompson     assert(impl->asmb != NULL);
1582a835093fSnbeams   }
1583a835093fSnbeams 
1584a835093fSnbeams   // Assemble QFunction
1585a835093fSnbeams   CeedVector assembled_qf;
1586a835093fSnbeams   CeedElemRestriction rstr_q;
1587a835093fSnbeams   ierr = CeedOperatorLinearAssembleQFunctionBuildOrUpdate(
1588*b216396cSJeremy L Thompson            op, &assembled_qf, &rstr_q, CEED_REQUEST_IMMEDIATE); CeedChkBackend(ierr);
1589a835093fSnbeams   ierr = CeedElemRestrictionDestroy(&rstr_q); CeedChkBackend(ierr);
1590a835093fSnbeams   CeedScalar *values_array;
1591a835093fSnbeams   ierr = CeedVectorGetArrayWrite(values, CEED_MEM_DEVICE, &values_array);
1592a835093fSnbeams   CeedChkBackend(ierr);
1593a835093fSnbeams   values_array += offset;
1594a835093fSnbeams   const CeedScalar *qf_array;
1595a835093fSnbeams   ierr = CeedVectorGetArrayRead(assembled_qf, CEED_MEM_DEVICE, &qf_array);
1596a835093fSnbeams   CeedChkBackend(ierr);
1597a835093fSnbeams 
1598a835093fSnbeams   // Compute B^T D B
1599*b216396cSJeremy L Thompson   const CeedInt nelem = impl->asmb->nelem; // to satisfy clang-tidy
1600a835093fSnbeams   const CeedInt elemsPerBlock = impl->asmb->elemsPerBlock;
1601a835093fSnbeams   const CeedInt grid = nelem/elemsPerBlock+((
1602a835093fSnbeams                          nelem/elemsPerBlock*elemsPerBlock<nelem)?1:0);
1603a835093fSnbeams   void *args[] = {&impl->asmb->d_B_in, &impl->asmb->d_B_out,
1604a835093fSnbeams                   &qf_array, &values_array
1605a835093fSnbeams                  };
1606a835093fSnbeams   ierr = CeedRunKernelDimHip(ceed, impl->asmb->linearAssemble, grid,
160759ad764aSnbeams                              impl->asmb->block_size_x, impl->asmb->block_size_y,
160859ad764aSnbeams                              elemsPerBlock, args);
1609a835093fSnbeams   CeedChkBackend(ierr);
1610a835093fSnbeams 
1611a835093fSnbeams 
1612a835093fSnbeams   // Restore arrays
1613a835093fSnbeams   ierr = CeedVectorRestoreArray(values, &values_array); CeedChkBackend(ierr);
1614a835093fSnbeams   ierr = CeedVectorRestoreArrayRead(assembled_qf, &qf_array);
1615a835093fSnbeams   CeedChkBackend(ierr);
1616a835093fSnbeams 
1617a835093fSnbeams   // Cleanup
1618a835093fSnbeams   ierr = CeedVectorDestroy(&assembled_qf); CeedChkBackend(ierr);
1619a835093fSnbeams 
1620a835093fSnbeams   return CEED_ERROR_SUCCESS;
1621a835093fSnbeams }
1622a835093fSnbeams 
1623a835093fSnbeams //------------------------------------------------------------------------------
1624a835093fSnbeams // Assemble matrix data for COO matrix of assembled operator.
1625a835093fSnbeams // The sparsity pattern is set by CeedOperatorLinearAssembleSymbolic.
1626a835093fSnbeams //
1627a835093fSnbeams // Note that this (and other assembly routines) currently assume only one
1628a835093fSnbeams // active input restriction/basis per operator (could have multiple basis eval
1629a835093fSnbeams // modes).
1630a835093fSnbeams // TODO: allow multiple active input restrictions/basis objects
1631a835093fSnbeams //------------------------------------------------------------------------------
1632a835093fSnbeams int CeedOperatorLinearAssemble_Hip(CeedOperator op, CeedVector values) {
1633a835093fSnbeams 
1634a835093fSnbeams   // As done in the default implementation, loop through suboperators
1635a835093fSnbeams   // for composite operators, or call single operator assembly otherwise
1636a835093fSnbeams   bool is_composite;
1637a835093fSnbeams   CeedInt ierr;
1638*b216396cSJeremy L Thompson   ierr = CeedOperatorIsComposite(op, &is_composite); CeedChkBackend(ierr);
1639a835093fSnbeams 
1640a835093fSnbeams   CeedElemRestriction rstr;
1641a835093fSnbeams   CeedInt num_elem, elem_size, num_comp;
1642a835093fSnbeams 
1643a835093fSnbeams   CeedInt offset = 0;
1644a835093fSnbeams   if (is_composite) {
1645a835093fSnbeams     CeedInt num_suboperators;
1646*b216396cSJeremy L Thompson     ierr = CeedOperatorGetNumSub(op, &num_suboperators); CeedChkBackend(ierr);
1647a835093fSnbeams     CeedOperator *sub_operators;
1648*b216396cSJeremy L Thompson     ierr = CeedOperatorGetSubList(op, &sub_operators); CeedChkBackend(ierr);
1649a835093fSnbeams     for (int k = 0; k < num_suboperators; ++k) {
1650a835093fSnbeams       ierr = CeedSingleOperatorAssemble_Hip(sub_operators[k], offset, values);
1651*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1652a835093fSnbeams       ierr = CeedOperatorGetActiveElemRestriction(sub_operators[k], &rstr);
1653*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1654*b216396cSJeremy L Thompson       ierr = CeedElemRestrictionGetNumElements(rstr, &num_elem); CeedChkBackend(ierr);
1655*b216396cSJeremy L Thompson       ierr = CeedElemRestrictionGetElementSize(rstr, &elem_size);
1656*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1657*b216396cSJeremy L Thompson       ierr = CeedElemRestrictionGetNumComponents(rstr, &num_comp);
1658*b216396cSJeremy L Thompson       CeedChkBackend(ierr);
1659a835093fSnbeams       offset += elem_size*num_comp * elem_size*num_comp * num_elem;
1660a835093fSnbeams     }
1661a835093fSnbeams   } else {
1662*b216396cSJeremy L Thompson     ierr = CeedSingleOperatorAssemble_Hip(op, offset, values); CeedChkBackend(ierr);
1663a835093fSnbeams   }
1664a835093fSnbeams 
1665a835093fSnbeams   return CEED_ERROR_SUCCESS;
1666a835093fSnbeams }
16670d0321e0SJeremy L Thompson 
16680d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
16690d0321e0SJeremy L Thompson // Create operator
16700d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
16710d0321e0SJeremy L Thompson int CeedOperatorCreate_Hip(CeedOperator op) {
16720d0321e0SJeremy L Thompson   int ierr;
16730d0321e0SJeremy L Thompson   Ceed ceed;
16740d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
16750d0321e0SJeremy L Thompson   CeedOperator_Hip *impl;
16760d0321e0SJeremy L Thompson 
16770d0321e0SJeremy L Thompson   ierr = CeedCalloc(1, &impl); CeedChkBackend(ierr);
16780d0321e0SJeremy L Thompson   ierr = CeedOperatorSetData(op, impl); CeedChkBackend(ierr);
16790d0321e0SJeremy L Thompson 
16800d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op, "LinearAssembleQFunction",
16810d0321e0SJeremy L Thompson                                 CeedOperatorLinearAssembleQFunction_Hip);
16820d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
16830d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op,
16840d0321e0SJeremy L Thompson                                 "LinearAssembleQFunctionUpdate",
16850d0321e0SJeremy L Thompson                                 CeedOperatorLinearAssembleQFunctionUpdate_Hip);
16860d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
16870d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op, "LinearAssembleAddDiagonal",
16880d0321e0SJeremy L Thompson                                 CeedOperatorLinearAssembleAddDiagonal_Hip);
16890d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
16900d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op,
16910d0321e0SJeremy L Thompson                                 "LinearAssembleAddPointBlockDiagonal",
16920d0321e0SJeremy L Thompson                                 CeedOperatorLinearAssembleAddPointBlockDiagonal_Hip);
16930d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
1694a835093fSnbeams   ierr = CeedSetBackendFunction(ceed, "Operator", op,
1695a835093fSnbeams                                 "LinearAssemble", CeedOperatorLinearAssemble_Hip);
1696a835093fSnbeams   CeedChkBackend(ierr);
16970d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op, "ApplyAdd",
16980d0321e0SJeremy L Thompson                                 CeedOperatorApplyAdd_Hip); CeedChkBackend(ierr);
16990d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op, "Destroy",
17000d0321e0SJeremy L Thompson                                 CeedOperatorDestroy_Hip); CeedChkBackend(ierr);
17010d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
17020d0321e0SJeremy L Thompson }
17030d0321e0SJeremy L Thompson 
17040d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
17050d0321e0SJeremy L Thompson // Composite Operator Create
17060d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
17070d0321e0SJeremy L Thompson int CeedCompositeOperatorCreate_Hip(CeedOperator op) {
17080d0321e0SJeremy L Thompson   int ierr;
17090d0321e0SJeremy L Thompson   Ceed ceed;
17100d0321e0SJeremy L Thompson   ierr = CeedOperatorGetCeed(op, &ceed); CeedChkBackend(ierr);
17110d0321e0SJeremy L Thompson 
17120d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op, "LinearAssembleAddDiagonal",
17130d0321e0SJeremy L Thompson                                 CeedOperatorLinearAssembleAddDiagonal_Hip);
17140d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
17150d0321e0SJeremy L Thompson   ierr = CeedSetBackendFunction(ceed, "Operator", op,
17160d0321e0SJeremy L Thompson                                 "LinearAssembleAddPointBlockDiagonal",
17170d0321e0SJeremy L Thompson                                 CeedOperatorLinearAssembleAddPointBlockDiagonal_Hip);
17180d0321e0SJeremy L Thompson   CeedChkBackend(ierr);
1719a835093fSnbeams   ierr = CeedSetBackendFunction(ceed, "Operator", op,
1720a835093fSnbeams                                 "LinearAssemble", CeedOperatorLinearAssemble_Hip);
1721a835093fSnbeams   CeedChkBackend(ierr);
17220d0321e0SJeremy L Thompson   return CEED_ERROR_SUCCESS;
17230d0321e0SJeremy L Thompson }
17240d0321e0SJeremy L Thompson //------------------------------------------------------------------------------
1725