xref: /honee/problems/newtonian.c (revision ea615d4cc464aa6ad650c06fae6d120cc2465bc4)
1ae2b091fSJames Wright // SPDX-FileCopyrightText: Copyright (c) 2017-2024, HONEE contributors.
2ae2b091fSJames Wright // SPDX-License-Identifier: Apache-2.0 OR BSD-2-Clause
33a8779fbSJames Wright 
43a8779fbSJames Wright /// @file
53a8779fbSJames Wright /// Utility functions for setting up problems using the Newtonian Qfunction
63a8779fbSJames Wright 
73a8779fbSJames Wright #include "../qfunctions/newtonian.h"
83a8779fbSJames Wright 
9e419654dSJeremy L Thompson #include <ceed.h>
10e419654dSJeremy L Thompson #include <petscdm.h>
11e419654dSJeremy L Thompson 
12149fb536SJames Wright #include <navierstokes.h>
136dd99bedSLeila Ghaffari 
1448417fb7SJames Wright static PetscErrorCode UnitTests_Newtonian(Honee honee, NewtonianIdealGasContext gas);
15f0b65372SJed Brown 
1665dee3d2SJames Wright // @brief Create CeedOperator for stabilized mass KSP for explicit timestepping
1765dee3d2SJames Wright //
1865dee3d2SJames Wright // Only used for SUPG stabilization
190c373b74SJames Wright PetscErrorCode CreateKSPMassOperator_NewtonianStabilized(Honee honee, CeedOperator *op_mass) {
200c373b74SJames Wright   Ceed                 ceed = honee->ceed;
2165dee3d2SJames Wright   CeedInt              num_comp_q, q_data_size;
2265dee3d2SJames Wright   CeedQFunction        qf_mass;
2301e19bfaSJames Wright   CeedElemRestriction  elem_restr_q, elem_restr_qd;
2465dee3d2SJames Wright   CeedBasis            basis_q;
2565dee3d2SJames Wright   CeedVector           q_data;
26236a8ba6SJames Wright   CeedQFunctionContext qfctx = NULL;
2765dee3d2SJames Wright   PetscInt             dim   = 3;
2865dee3d2SJames Wright 
2965dee3d2SJames Wright   PetscFunctionBeginUser;
3065dee3d2SJames Wright   {  // Get restriction and basis from the RHS function
3165dee3d2SJames Wright     CeedOperator     *sub_ops;
3201e19bfaSJames Wright     CeedOperatorField op_field;
3365dee3d2SJames Wright     PetscInt          sub_op_index = 0;  // will be 0 for the volume op
3465dee3d2SJames Wright 
350c373b74SJames Wright     PetscCallCeed(ceed, CeedCompositeOperatorGetSubList(honee->op_rhs_ctx->op, &sub_ops));
3601e19bfaSJames Wright     PetscCallCeed(ceed, CeedOperatorGetFieldByName(sub_ops[sub_op_index], "q", &op_field));
3701e19bfaSJames Wright     PetscCallCeed(ceed, CeedOperatorFieldGetData(op_field, NULL, &elem_restr_q, &basis_q, NULL));
3801e19bfaSJames Wright     PetscCallCeed(ceed, CeedOperatorGetFieldByName(sub_ops[sub_op_index], "qdata", &op_field));
3901e19bfaSJames Wright     PetscCallCeed(ceed, CeedOperatorFieldGetData(op_field, NULL, &elem_restr_qd, NULL, &q_data));
4065dee3d2SJames Wright 
41236a8ba6SJames Wright     PetscCallCeed(ceed, CeedOperatorGetContext(sub_ops[sub_op_index], &qfctx));
4265dee3d2SJames Wright   }
4365dee3d2SJames Wright 
4465dee3d2SJames Wright   PetscCallCeed(ceed, CeedElemRestrictionGetNumComponents(elem_restr_q, &num_comp_q));
4501e19bfaSJames Wright   PetscCallCeed(ceed, CeedElemRestrictionGetNumComponents(elem_restr_qd, &q_data_size));
4665dee3d2SJames Wright 
4765dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, MassFunction_Newtonian_Conserv, MassFunction_Newtonian_Conserv_loc, &qf_mass));
4865dee3d2SJames Wright 
49236a8ba6SJames Wright   PetscCallCeed(ceed, CeedQFunctionSetContext(qf_mass, qfctx));
5065dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionSetUserFlopsEstimate(qf_mass, 0));
5165dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionAddInput(qf_mass, "q_dot", 5, CEED_EVAL_INTERP));
5265dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionAddInput(qf_mass, "q", 5, CEED_EVAL_INTERP));
5365dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionAddInput(qf_mass, "qdata", q_data_size, CEED_EVAL_NONE));
5465dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionAddOutput(qf_mass, "v", 5, CEED_EVAL_INTERP));
5565dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionAddOutput(qf_mass, "Grad_v", 5 * dim, CEED_EVAL_GRAD));
5665dee3d2SJames Wright 
5765dee3d2SJames Wright   PetscCallCeed(ceed, CeedOperatorCreate(ceed, qf_mass, NULL, NULL, op_mass));
5865dee3d2SJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_mass, "q_dot", elem_restr_q, basis_q, CEED_VECTOR_ACTIVE));
590c373b74SJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_mass, "q", elem_restr_q, basis_q, honee->q_ceed));
6001e19bfaSJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_mass, "qdata", elem_restr_qd, CEED_BASIS_NONE, q_data));
6165dee3d2SJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_mass, "v", elem_restr_q, basis_q, CEED_VECTOR_ACTIVE));
6265dee3d2SJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_mass, "Grad_v", elem_restr_q, basis_q, CEED_VECTOR_ACTIVE));
6365dee3d2SJames Wright 
64fff85bd3SJames Wright   PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_q));
6501e19bfaSJames Wright   PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_qd));
66fff85bd3SJames Wright   PetscCallCeed(ceed, CeedVectorDestroy(&q_data));
67fff85bd3SJames Wright   PetscCallCeed(ceed, CeedBasisDestroy(&basis_q));
68236a8ba6SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextDestroy(&qfctx));
6965dee3d2SJames Wright   PetscCallCeed(ceed, CeedQFunctionDestroy(&qf_mass));
7065dee3d2SJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
7165dee3d2SJames Wright }
724c07ec22SJames Wright 
7336038bbcSJames Wright /**
7436038bbcSJames Wright   @brief Create RHS CeedOperator for direct projection of divergence of diffusive flux
7536038bbcSJames Wright 
760c373b74SJames Wright   @param[in]  honee          `Honee` context
7736038bbcSJames Wright   @param[in]  diff_flux_proj `DivDiffFluxProjectionData` object
7836038bbcSJames Wright   @param[out] op_rhs         Operator to calculate the RHS of the L^2 projection
7936038bbcSJames Wright **/
80e3663b90SJames Wright static PetscErrorCode DivDiffFluxProjectionCreateRHS_Direct_NS(Honee honee, DivDiffFluxProjectionData diff_flux_proj, CeedOperator *op_rhs) {
810c373b74SJames Wright   Ceed                 ceed       = honee->ceed;
8236038bbcSJames Wright   NodalProjectionData  projection = diff_flux_proj->projection;
8336038bbcSJames Wright   CeedInt              num_comp_q;
8436038bbcSJames Wright   PetscInt             dim, label_value = 0;
8536038bbcSJames Wright   DMLabel              domain_label    = NULL;
86236a8ba6SJames Wright   CeedQFunctionContext newtonian_qfctx = NULL;
8736038bbcSJames Wright 
8836038bbcSJames Wright   PetscFunctionBeginUser;
8936038bbcSJames Wright   // -- Get Pre-requisite things
9036038bbcSJames Wright   PetscCall(DMGetDimension(projection->dm, &dim));
91e3663b90SJames Wright   PetscCallCeed(ceed, CeedBasisGetNumComponents(honee->basis_q, &num_comp_q));
9236038bbcSJames Wright 
930880fbb6SJames Wright   {  // Get newtonian QF context
9436038bbcSJames Wright     CeedOperator *sub_ops;
9536038bbcSJames Wright     PetscInt      sub_op_index = 0;  // will be 0 for the volume op
9636038bbcSJames Wright 
970c373b74SJames Wright     PetscCallCeed(ceed, CeedCompositeOperatorGetSubList(honee->op_ifunction, &sub_ops));
98236a8ba6SJames Wright     PetscCallCeed(ceed, CeedOperatorGetContext(sub_ops[sub_op_index], &newtonian_qfctx));
9936038bbcSJames Wright   }
10036038bbcSJames Wright   PetscCallCeed(ceed, CeedCompositeOperatorCreate(ceed, op_rhs));
10136038bbcSJames Wright   {  // Add the volume integral CeedOperator
10236038bbcSJames Wright     CeedQFunction       qf_rhs_volume;
10336038bbcSJames Wright     CeedOperator        op_rhs_volume;
10436038bbcSJames Wright     CeedVector          q_data;
1050880fbb6SJames Wright     CeedElemRestriction elem_restr_qd, elem_restr_diff_flux_volume = NULL;
1060880fbb6SJames Wright     CeedBasis           basis_diff_flux = NULL;
10736038bbcSJames Wright     CeedInt             q_data_size;
10836038bbcSJames Wright 
1090880fbb6SJames Wright     PetscCall(DivDiffFluxProjectionGetOperatorFieldData(diff_flux_proj, &elem_restr_diff_flux_volume, &basis_diff_flux, NULL, NULL));
110e3663b90SJames Wright     PetscCall(QDataGet(ceed, projection->dm, domain_label, label_value, honee->elem_restr_x, honee->basis_x, honee->x_coord, &elem_restr_qd, &q_data,
111e3663b90SJames Wright                        &q_data_size));
1120c373b74SJames Wright     switch (honee->phys->state_var) {
11336038bbcSJames Wright       case STATEVAR_PRIMITIVE:
11436038bbcSJames Wright         PetscCallCeed(ceed,
11536038bbcSJames Wright                       CeedQFunctionCreateInterior(ceed, 1, DivDiffusiveFluxVolumeRHS_NS_Prim, DivDiffusiveFluxVolumeRHS_NS_Prim_loc, &qf_rhs_volume));
11636038bbcSJames Wright         break;
11736038bbcSJames Wright       case STATEVAR_CONSERVATIVE:
11836038bbcSJames Wright         PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DivDiffusiveFluxVolumeRHS_NS_Conserv, DivDiffusiveFluxVolumeRHS_NS_Conserv_loc,
11936038bbcSJames Wright                                                         &qf_rhs_volume));
12036038bbcSJames Wright         break;
12136038bbcSJames Wright       case STATEVAR_ENTROPY:
12236038bbcSJames Wright         PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DivDiffusiveFluxVolumeRHS_NS_Entropy, DivDiffusiveFluxVolumeRHS_NS_Entropy_loc,
12336038bbcSJames Wright                                                         &qf_rhs_volume));
12436038bbcSJames Wright         break;
12536038bbcSJames Wright     }
12636038bbcSJames Wright 
127236a8ba6SJames Wright     PetscCallCeed(ceed, CeedQFunctionSetContext(qf_rhs_volume, newtonian_qfctx));
12836038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs_volume, "q", num_comp_q, CEED_EVAL_INTERP));
12936038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs_volume, "Grad_q", num_comp_q * dim, CEED_EVAL_GRAD));
13036038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs_volume, "qdata", q_data_size, CEED_EVAL_NONE));
13136038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddOutput(qf_rhs_volume, "diffusive flux RHS", projection->num_comp * dim, CEED_EVAL_GRAD));
13236038bbcSJames Wright 
13336038bbcSJames Wright     PetscCallCeed(ceed, CeedOperatorCreate(ceed, qf_rhs_volume, NULL, NULL, &op_rhs_volume));
134e3663b90SJames Wright     PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_volume, "q", honee->elem_restr_q, honee->basis_q, CEED_VECTOR_ACTIVE));
135e3663b90SJames Wright     PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_volume, "Grad_q", honee->elem_restr_q, honee->basis_q, CEED_VECTOR_ACTIVE));
13636038bbcSJames Wright     PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_volume, "qdata", elem_restr_qd, CEED_BASIS_NONE, q_data));
13736038bbcSJames Wright     PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_volume, "diffusive flux RHS", elem_restr_diff_flux_volume, basis_diff_flux, CEED_VECTOR_ACTIVE));
13836038bbcSJames Wright 
13936038bbcSJames Wright     PetscCallCeed(ceed, CeedCompositeOperatorAddSub(*op_rhs, op_rhs_volume));
14036038bbcSJames Wright 
14136038bbcSJames Wright     PetscCallCeed(ceed, CeedVectorDestroy(&q_data));
14236038bbcSJames Wright     PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_qd));
1430880fbb6SJames Wright     PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_diff_flux_volume));
1440880fbb6SJames Wright     PetscCallCeed(ceed, CeedBasisDestroy(&basis_diff_flux));
14536038bbcSJames Wright     PetscCallCeed(ceed, CeedOperatorDestroy(&op_rhs_volume));
14636038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionDestroy(&qf_rhs_volume));
14736038bbcSJames Wright   }
14836038bbcSJames Wright 
14936038bbcSJames Wright   {  // Add the boundary integral CeedOperator
15036038bbcSJames Wright     CeedQFunction qf_rhs_boundary;
15136038bbcSJames Wright     DMLabel       face_sets_label;
15236038bbcSJames Wright     PetscInt      num_face_set_values, *face_set_values;
15336038bbcSJames Wright     CeedInt       q_data_size;
15436038bbcSJames Wright 
15536038bbcSJames Wright     // -- Build RHS operator
1560c373b74SJames Wright     switch (honee->phys->state_var) {
15736038bbcSJames Wright       case STATEVAR_PRIMITIVE:
15836038bbcSJames Wright         PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DivDiffusiveFluxBoundaryRHS_NS_Prim, DivDiffusiveFluxBoundaryRHS_NS_Prim_loc,
15936038bbcSJames Wright                                                         &qf_rhs_boundary));
16036038bbcSJames Wright         break;
16136038bbcSJames Wright       case STATEVAR_CONSERVATIVE:
16236038bbcSJames Wright         PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DivDiffusiveFluxBoundaryRHS_NS_Conserv, DivDiffusiveFluxBoundaryRHS_NS_Conserv_loc,
16336038bbcSJames Wright                                                         &qf_rhs_boundary));
16436038bbcSJames Wright         break;
16536038bbcSJames Wright       case STATEVAR_ENTROPY:
16636038bbcSJames Wright         PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DivDiffusiveFluxBoundaryRHS_NS_Entropy, DivDiffusiveFluxBoundaryRHS_NS_Entropy_loc,
16736038bbcSJames Wright                                                         &qf_rhs_boundary));
16836038bbcSJames Wright         break;
16936038bbcSJames Wright     }
17036038bbcSJames Wright 
1710c373b74SJames Wright     PetscCall(QDataBoundaryGradientGetNumComponents(honee->dm, &q_data_size));
172236a8ba6SJames Wright     PetscCallCeed(ceed, CeedQFunctionSetContext(qf_rhs_boundary, newtonian_qfctx));
17336038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs_boundary, "q", num_comp_q, CEED_EVAL_INTERP));
17436038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs_boundary, "Grad_q", num_comp_q * dim, CEED_EVAL_GRAD));
17536038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs_boundary, "qdata", q_data_size, CEED_EVAL_NONE));
17636038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionAddOutput(qf_rhs_boundary, "diffusive flux RHS", projection->num_comp, CEED_EVAL_INTERP));
17736038bbcSJames Wright 
17836038bbcSJames Wright     PetscCall(DMGetLabel(projection->dm, "Face Sets", &face_sets_label));
17936038bbcSJames Wright     PetscCall(DMLabelCreateGlobalValueArray(projection->dm, face_sets_label, &num_face_set_values, &face_set_values));
18036038bbcSJames Wright     for (PetscInt f = 0; f < num_face_set_values; f++) {
18136038bbcSJames Wright       DMLabel  face_orientation_label;
18236038bbcSJames Wright       PetscInt num_orientations_values, *orientation_values;
18336038bbcSJames Wright 
18436038bbcSJames Wright       {
18536038bbcSJames Wright         char *face_orientation_label_name;
18636038bbcSJames Wright 
18736038bbcSJames Wright         PetscCall(DMPlexCreateFaceLabel(projection->dm, face_set_values[f], &face_orientation_label_name));
18836038bbcSJames Wright         PetscCall(DMGetLabel(projection->dm, face_orientation_label_name, &face_orientation_label));
18936038bbcSJames Wright         PetscCall(PetscFree(face_orientation_label_name));
19036038bbcSJames Wright       }
19136038bbcSJames Wright       PetscCall(DMLabelCreateGlobalValueArray(projection->dm, face_orientation_label, &num_orientations_values, &orientation_values));
19236038bbcSJames Wright       for (PetscInt o = 0; o < num_orientations_values; o++) {
19336038bbcSJames Wright         CeedOperator        op_rhs_boundary;
19436038bbcSJames Wright         CeedBasis           basis_q, basis_diff_flux_boundary;
19536038bbcSJames Wright         CeedElemRestriction elem_restr_qdata, elem_restr_q, elem_restr_diff_flux_boundary;
19636038bbcSJames Wright         CeedVector          q_data;
19736038bbcSJames Wright         CeedInt             q_data_size;
19836038bbcSJames Wright         PetscInt            orientation = orientation_values[o], dm_field_q = 0, height_cell = 0, height_face = 1;
19936038bbcSJames Wright 
2000c373b74SJames Wright         PetscCall(DMPlexCeedElemRestrictionCreate(ceed, honee->dm, face_orientation_label, orientation, height_cell, dm_field_q, &elem_restr_q));
2010c373b74SJames Wright         PetscCall(DMPlexCeedBasisCellToFaceCreate(ceed, honee->dm, face_orientation_label, orientation, orientation, dm_field_q, &basis_q));
20236038bbcSJames Wright         PetscCall(DMPlexCeedElemRestrictionCreate(ceed, projection->dm, face_orientation_label, orientation, height_face, 0,
20336038bbcSJames Wright                                                   &elem_restr_diff_flux_boundary));
2040880fbb6SJames Wright         PetscCall(CreateBasisFromPlex(ceed, projection->dm, face_orientation_label, orientation, height_face, 0, &basis_diff_flux_boundary));
205e3663b90SJames Wright         PetscCall(
206e3663b90SJames Wright             QDataBoundaryGradientGet(ceed, honee->dm, face_orientation_label, orientation, honee->x_coord, &elem_restr_qdata, &q_data, &q_data_size));
20736038bbcSJames Wright 
20836038bbcSJames Wright         PetscCallCeed(ceed, CeedOperatorCreate(ceed, qf_rhs_boundary, NULL, NULL, &op_rhs_boundary));
20936038bbcSJames Wright         PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_boundary, "q", elem_restr_q, basis_q, CEED_VECTOR_ACTIVE));
21036038bbcSJames Wright         PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_boundary, "Grad_q", elem_restr_q, basis_q, CEED_VECTOR_ACTIVE));
21136038bbcSJames Wright         PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_boundary, "qdata", elem_restr_qdata, CEED_BASIS_NONE, q_data));
21236038bbcSJames Wright         PetscCallCeed(ceed, CeedOperatorSetField(op_rhs_boundary, "diffusive flux RHS", elem_restr_diff_flux_boundary, basis_diff_flux_boundary,
21336038bbcSJames Wright                                                  CEED_VECTOR_ACTIVE));
21436038bbcSJames Wright 
21536038bbcSJames Wright         PetscCallCeed(ceed, CeedCompositeOperatorAddSub(*op_rhs, op_rhs_boundary));
21636038bbcSJames Wright 
21736038bbcSJames Wright         PetscCallCeed(ceed, CeedOperatorDestroy(&op_rhs_boundary));
21836038bbcSJames Wright         PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_qdata));
21936038bbcSJames Wright         PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_q));
22036038bbcSJames Wright         PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_diff_flux_boundary));
22136038bbcSJames Wright         PetscCallCeed(ceed, CeedBasisDestroy(&basis_q));
22236038bbcSJames Wright         PetscCallCeed(ceed, CeedBasisDestroy(&basis_diff_flux_boundary));
22336038bbcSJames Wright         PetscCallCeed(ceed, CeedVectorDestroy(&q_data));
22436038bbcSJames Wright       }
22536038bbcSJames Wright       PetscCall(PetscFree(orientation_values));
22636038bbcSJames Wright     }
22736038bbcSJames Wright     PetscCall(PetscFree(face_set_values));
22836038bbcSJames Wright     PetscCallCeed(ceed, CeedQFunctionDestroy(&qf_rhs_boundary));
22936038bbcSJames Wright   }
23036038bbcSJames Wright 
231236a8ba6SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextDestroy(&newtonian_qfctx));
23236038bbcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
23336038bbcSJames Wright }
23436038bbcSJames Wright 
23536038bbcSJames Wright /**
23636038bbcSJames Wright   @brief Create RHS CeedOperator for indirect projection of divergence of diffusive flux
23736038bbcSJames Wright 
2380c373b74SJames Wright   @param[in]  honee          `Honee` context
23936038bbcSJames Wright   @param[in]  diff_flux_proj `DivDiffFluxProjectionData` object
24036038bbcSJames Wright   @param[out] op_rhs         Operator to calculate the RHS of the L^2 projection
24136038bbcSJames Wright **/
242e3663b90SJames Wright static PetscErrorCode DivDiffFluxProjectionCreateRHS_Indirect_NS(Honee honee, DivDiffFluxProjectionData diff_flux_proj, CeedOperator *op_rhs) {
2430c373b74SJames Wright   Ceed                 ceed       = honee->ceed;
24436038bbcSJames Wright   NodalProjectionData  projection = diff_flux_proj->projection;
24536038bbcSJames Wright   CeedBasis            basis_diff_flux;
24636038bbcSJames Wright   CeedElemRestriction  elem_restr_diff_flux, elem_restr_qd;
24736038bbcSJames Wright   CeedVector           q_data;
24836038bbcSJames Wright   CeedInt              num_comp_q, q_data_size;
24936038bbcSJames Wright   PetscInt             dim;
25036038bbcSJames Wright   PetscInt             label_value = 0, height = 0, dm_field = 0;
25136038bbcSJames Wright   DMLabel              domain_label = NULL;
25236038bbcSJames Wright   CeedQFunction        qf_rhs;
253236a8ba6SJames Wright   CeedQFunctionContext newtonian_qfctx = NULL;
25436038bbcSJames Wright 
25536038bbcSJames Wright   PetscFunctionBeginUser;
25636038bbcSJames Wright   PetscCall(DMGetDimension(projection->dm, &dim));
257e3663b90SJames Wright   PetscCallCeed(ceed, CeedBasisGetNumComponents(honee->basis_q, &num_comp_q));
25836038bbcSJames Wright 
25940b78511SJames Wright   {  // Get newtonian QF context
26036038bbcSJames Wright     CeedOperator *sub_ops;
26136038bbcSJames Wright     PetscInt      sub_op_index = 0;  // will be 0 for the volume op
26236038bbcSJames Wright 
2630c373b74SJames Wright     PetscCallCeed(ceed, CeedCompositeOperatorGetSubList(honee->op_ifunction, &sub_ops));
264236a8ba6SJames Wright     PetscCallCeed(ceed, CeedOperatorGetContext(sub_ops[sub_op_index], &newtonian_qfctx));
26536038bbcSJames Wright   }
26636038bbcSJames Wright   PetscCall(DMPlexCeedElemRestrictionCreate(ceed, projection->dm, domain_label, label_value, height, dm_field, &elem_restr_diff_flux));
26736038bbcSJames Wright   PetscCall(CreateBasisFromPlex(ceed, projection->dm, domain_label, label_value, height, dm_field, &basis_diff_flux));
268e3663b90SJames Wright   PetscCall(QDataGet(ceed, projection->dm, domain_label, label_value, honee->elem_restr_x, honee->basis_x, honee->x_coord, &elem_restr_qd, &q_data,
269e3663b90SJames Wright                      &q_data_size));
27036038bbcSJames Wright 
2710c373b74SJames Wright   switch (honee->phys->state_var) {
27236038bbcSJames Wright     case STATEVAR_PRIMITIVE:
27336038bbcSJames Wright       PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DiffusiveFluxRHS_NS_Prim, DiffusiveFluxRHS_NS_Prim_loc, &qf_rhs));
27436038bbcSJames Wright       break;
27536038bbcSJames Wright     case STATEVAR_CONSERVATIVE:
27636038bbcSJames Wright       PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DiffusiveFluxRHS_NS_Conserv, DiffusiveFluxRHS_NS_Conserv_loc, &qf_rhs));
27736038bbcSJames Wright       break;
27836038bbcSJames Wright     case STATEVAR_ENTROPY:
27936038bbcSJames Wright       PetscCallCeed(ceed, CeedQFunctionCreateInterior(ceed, 1, DiffusiveFluxRHS_NS_Entropy, DiffusiveFluxRHS_NS_Entropy_loc, &qf_rhs));
28036038bbcSJames Wright       break;
28136038bbcSJames Wright   }
28236038bbcSJames Wright 
283236a8ba6SJames Wright   PetscCallCeed(ceed, CeedQFunctionSetContext(qf_rhs, newtonian_qfctx));
28436038bbcSJames Wright   PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs, "q", num_comp_q, CEED_EVAL_INTERP));
28536038bbcSJames Wright   PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs, "Grad_q", num_comp_q * dim, CEED_EVAL_GRAD));
28636038bbcSJames Wright   PetscCallCeed(ceed, CeedQFunctionAddInput(qf_rhs, "qdata", q_data_size, CEED_EVAL_NONE));
28736038bbcSJames Wright   PetscCallCeed(ceed, CeedQFunctionAddOutput(qf_rhs, "F_diff RHS", projection->num_comp, CEED_EVAL_INTERP));
28836038bbcSJames Wright 
28936038bbcSJames Wright   PetscCallCeed(ceed, CeedOperatorCreate(ceed, qf_rhs, NULL, NULL, op_rhs));
290e3663b90SJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_rhs, "q", honee->elem_restr_q, honee->basis_q, CEED_VECTOR_ACTIVE));
291e3663b90SJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_rhs, "Grad_q", honee->elem_restr_q, honee->basis_q, CEED_VECTOR_ACTIVE));
29236038bbcSJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_rhs, "qdata", elem_restr_qd, CEED_BASIS_NONE, q_data));
29336038bbcSJames Wright   PetscCallCeed(ceed, CeedOperatorSetField(*op_rhs, "F_diff RHS", elem_restr_diff_flux, basis_diff_flux, CEED_VECTOR_ACTIVE));
29436038bbcSJames Wright 
29536038bbcSJames Wright   PetscCallCeed(ceed, CeedQFunctionDestroy(&qf_rhs));
296236a8ba6SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextDestroy(&newtonian_qfctx));
29736038bbcSJames Wright   PetscCallCeed(ceed, CeedBasisDestroy(&basis_diff_flux));
29836038bbcSJames Wright   PetscCallCeed(ceed, CeedVectorDestroy(&q_data));
29936038bbcSJames Wright   PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_qd));
30036038bbcSJames Wright   PetscCallCeed(ceed, CeedElemRestrictionDestroy(&elem_restr_diff_flux));
30136038bbcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
30236038bbcSJames Wright }
30336038bbcSJames Wright 
304991aef52SJames Wright PetscErrorCode NS_NEWTONIAN_IG(ProblemData problem, DM dm, void *ctx, SimpleBC bc) {
305b7f03f12SJed Brown   SetupContext             setup_context;
3060c373b74SJames Wright   Honee                    honee  = *(Honee *)ctx;
3070c373b74SJames Wright   CeedInt                  degree = honee->app_ctx->degree;
3083a8779fbSJames Wright   StabilizationType        stab;
3093636f6a4SJames Wright   StateVariable            state_var;
3100c373b74SJames Wright   MPI_Comm                 comm = honee->comm;
3110c373b74SJames Wright   Ceed                     ceed = honee->ceed;
3123a8779fbSJames Wright   PetscBool                implicit;
3130d8cd818SJames Wright   PetscBool                unit_tests;
31415a3537eSJed Brown   NewtonianIdealGasContext newtonian_ig_ctx;
315e07531f7SJames Wright   CeedQFunctionContext     newtonian_ig_qfctx;
3163a8779fbSJames Wright 
31715a3537eSJed Brown   PetscFunctionBeginUser;
3182b916ea7SJeremy L Thompson   PetscCall(PetscCalloc1(1, &setup_context));
3192b916ea7SJeremy L Thompson   PetscCall(PetscCalloc1(1, &newtonian_ig_ctx));
3203a8779fbSJames Wright 
3213a8779fbSJames Wright   // ------------------------------------------------------
3223a8779fbSJames Wright   //           Setup Generic Newtonian IG Problem
3233a8779fbSJames Wright   // ------------------------------------------------------
32428160fc2SJames Wright   problem->jac_data_size_vol            = 14;
325b01ba163SJames Wright   problem->jac_data_size_sur            = 11;
32658ce1233SJames Wright   problem->compute_exact_solution_error = PETSC_FALSE;
327cbe60e31SLeila Ghaffari   problem->print_info                   = PRINT_NEWTONIAN;
3283a8779fbSJames Wright 
3290c373b74SJames Wright   PetscCall(DivDiffFluxProjectionCreate(honee, 4, &honee->diff_flux_proj));
3300c373b74SJames Wright   if (honee->diff_flux_proj) {
3310c373b74SJames Wright     DivDiffFluxProjectionData diff_flux_proj = honee->diff_flux_proj;
33236038bbcSJames Wright     NodalProjectionData       projection     = diff_flux_proj->projection;
33336038bbcSJames Wright 
33436038bbcSJames Wright     diff_flux_proj->CreateRHSOperator_Direct   = DivDiffFluxProjectionCreateRHS_Direct_NS;
33536038bbcSJames Wright     diff_flux_proj->CreateRHSOperator_Indirect = DivDiffFluxProjectionCreateRHS_Indirect_NS;
33636038bbcSJames Wright 
3370c373b74SJames Wright     switch (honee->diff_flux_proj->method) {
33836038bbcSJames Wright       case DIV_DIFF_FLUX_PROJ_DIRECT: {
33936038bbcSJames Wright         PetscSection section;
34036038bbcSJames Wright 
34136038bbcSJames Wright         PetscCall(DMGetLocalSection(projection->dm, &section));
34236038bbcSJames Wright         PetscCall(PetscSectionSetFieldName(section, 0, ""));
34336038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 0, "DivDiffusiveFlux_MomentumX"));
34436038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 1, "DivDiffusiveFlux_MomentumY"));
34536038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 2, "DivDiffusiveFlux_MomentumZ"));
34636038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 3, "DivDiffusiveFlux_Energy"));
34736038bbcSJames Wright       } break;
34836038bbcSJames Wright       case DIV_DIFF_FLUX_PROJ_INDIRECT: {
34936038bbcSJames Wright         PetscSection section;
35036038bbcSJames Wright 
35136038bbcSJames Wright         PetscCall(DMGetLocalSection(projection->dm, &section));
35236038bbcSJames Wright         PetscCall(PetscSectionSetFieldName(section, 0, ""));
35336038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 0, "DiffusiveFlux_MomentumXX"));
35436038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 1, "DiffusiveFlux_MomentumXY"));
35536038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 2, "DiffusiveFlux_MomentumXZ"));
35636038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 3, "DiffusiveFlux_MomentumYX"));
35736038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 4, "DiffusiveFlux_MomentumYY"));
35836038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 5, "DiffusiveFlux_MomentumYZ"));
35936038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 6, "DiffusiveFlux_MomentumZX"));
36036038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 7, "DiffusiveFlux_MomentumZY"));
36136038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 8, "DiffusiveFlux_MomentumZZ"));
36236038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 9, "DiffusiveFlux_EnergyX"));
36336038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 10, "DiffusiveFlux_EnergyY"));
36436038bbcSJames Wright         PetscCall(PetscSectionSetComponentName(section, 0, 11, "DiffusiveFlux_EnergyZ"));
36536038bbcSJames Wright       } break;
36636038bbcSJames Wright       case DIV_DIFF_FLUX_PROJ_NONE:
3670c373b74SJames Wright         SETERRQ(PetscObjectComm((PetscObject)honee->dm), PETSC_ERR_ARG_WRONG, "Should not reach here with div_diff_flux_projection_method %s",
3680c373b74SJames Wright                 DivDiffFluxProjectionMethods[honee->app_ctx->divFdiffproj_method]);
36936038bbcSJames Wright         break;
37036038bbcSJames Wright     }
37136038bbcSJames Wright   }
37236038bbcSJames Wright 
3733a8779fbSJames Wright   // ------------------------------------------------------
374*ea615d4cSJames Wright   //             Create the QFunction context
3753a8779fbSJames Wright   // ------------------------------------------------------
3763a8779fbSJames Wright   CeedScalar cv         = 717.;          // J/(kg K)
3773a8779fbSJames Wright   CeedScalar cp         = 1004.;         // J/(kg K)
378d9bb1cdbSJames Wright   CeedScalar g[3]       = {0, 0, 0};     // m/s^2
3793a8779fbSJames Wright   CeedScalar lambda     = -2. / 3.;      // -
380bb8a0c61SJames Wright   CeedScalar mu         = 1.8e-5;        // Pa s, dynamic viscosity
3813a8779fbSJames Wright   CeedScalar k          = 0.02638;       // W/(m K)
3824351d27fSLeila Ghaffari   CeedScalar c_tau      = 0.5 / degree;  // -
383bb8a0c61SJames Wright   CeedScalar Ctau_t     = 1.0;           // -
384b5786772SLeila Ghaffari   CeedScalar Cv_func[3] = {36, 60, 128};
385c176988bSLeila Ghaffari   CeedScalar Ctau_v     = Cv_func[(CeedInt)Min(3, degree) - 1];
3862a0eee6eSLeila Ghaffari   CeedScalar Ctau_C     = 0.25 / degree;
3872a0eee6eSLeila Ghaffari   CeedScalar Ctau_M     = 0.25 / degree;
3882a0eee6eSLeila Ghaffari   CeedScalar Ctau_E     = 0.125;
3893a8779fbSJames Wright   PetscReal  domain_min[3], domain_max[3], domain_size[3];
3902b916ea7SJeremy L Thompson   PetscCall(DMGetBoundingBox(dm, domain_min, domain_max));
391493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) domain_size[i] = domain_max[i] - domain_min[i];
3923a8779fbSJames Wright 
393b8fb7609SAdeleke O. Bankole   StatePrimitive reference      = {.pressure = 1.01e5, .velocity = {0}, .temperature = 288.15};
394a213b8aaSJames Wright   CeedScalar     idl_decay_time = -1, idl_start = 0, idl_length = 0, idl_pressure = reference.pressure;
395e7754af5SKenneth E. Jansen   PetscBool      idl_enable = PETSC_FALSE;
396b8fb7609SAdeleke O. Bankole 
3973a8779fbSJames Wright   // ------------------------------------------------------
3983a8779fbSJames Wright   //             Create the PETSc context
3993a8779fbSJames Wright   // ------------------------------------------------------
400bb8a0c61SJames Wright   PetscScalar meter    = 1;  // 1 meter in scaled length units
401bb8a0c61SJames Wright   PetscScalar kilogram = 1;  // 1 kilogram in scaled mass units
402bb8a0c61SJames Wright   PetscScalar second   = 1;  // 1 second in scaled time units
4033a8779fbSJames Wright   PetscScalar Kelvin   = 1;  // 1 Kelvin in scaled temperature units
4043a8779fbSJames Wright   PetscScalar W_per_m_K, Pascal, J_per_kg_K, m_per_squared_s;
4053a8779fbSJames Wright 
4063a8779fbSJames Wright   // ------------------------------------------------------
4073a8779fbSJames Wright   //              Command line Options
4083a8779fbSJames Wright   // ------------------------------------------------------
409d9bb1cdbSJames Wright   PetscBool given_option = PETSC_FALSE;
4102b916ea7SJeremy L Thompson   PetscOptionsBegin(comm, NULL, "Options for Newtonian Ideal Gas based problem", NULL);
411cbe60e31SLeila Ghaffari   // -- Conservative vs Primitive variables
4122b916ea7SJeremy L Thompson   PetscCall(PetscOptionsEnum("-state_var", "State variables used", NULL, StateVariables, (PetscEnum)(state_var = STATEVAR_CONSERVATIVE),
4132b916ea7SJeremy L Thompson                              (PetscEnum *)&state_var, NULL));
4143636f6a4SJames Wright 
4153636f6a4SJames Wright   switch (state_var) {
4163636f6a4SJames Wright     case STATEVAR_CONSERVATIVE:
417e07531f7SJames Wright       problem->ics.qf_func_ptr                   = ICsNewtonianIG_Conserv;
418e07531f7SJames Wright       problem->ics.qf_loc                        = ICsNewtonianIG_Conserv_loc;
419e07531f7SJames Wright       problem->apply_vol_rhs.qf_func_ptr         = RHSFunction_Newtonian;
420e07531f7SJames Wright       problem->apply_vol_rhs.qf_loc              = RHSFunction_Newtonian_loc;
421e07531f7SJames Wright       problem->apply_vol_ifunction.qf_func_ptr   = IFunction_Newtonian_Conserv;
422e07531f7SJames Wright       problem->apply_vol_ifunction.qf_loc        = IFunction_Newtonian_Conserv_loc;
423e07531f7SJames Wright       problem->apply_vol_ijacobian.qf_func_ptr   = IJacobian_Newtonian_Conserv;
424e07531f7SJames Wright       problem->apply_vol_ijacobian.qf_loc        = IJacobian_Newtonian_Conserv_loc;
425e07531f7SJames Wright       problem->apply_inflow.qf_func_ptr          = BoundaryIntegral_Conserv;
426e07531f7SJames Wright       problem->apply_inflow.qf_loc               = BoundaryIntegral_Conserv_loc;
427e07531f7SJames Wright       problem->apply_inflow_jacobian.qf_func_ptr = BoundaryIntegral_Jacobian_Conserv;
428e07531f7SJames Wright       problem->apply_inflow_jacobian.qf_loc      = BoundaryIntegral_Jacobian_Conserv_loc;
4293636f6a4SJames Wright       break;
4303636f6a4SJames Wright     case STATEVAR_PRIMITIVE:
431e07531f7SJames Wright       problem->ics.qf_func_ptr                   = ICsNewtonianIG_Prim;
432e07531f7SJames Wright       problem->ics.qf_loc                        = ICsNewtonianIG_Prim_loc;
433e07531f7SJames Wright       problem->apply_vol_ifunction.qf_func_ptr   = IFunction_Newtonian_Prim;
434e07531f7SJames Wright       problem->apply_vol_ifunction.qf_loc        = IFunction_Newtonian_Prim_loc;
435e07531f7SJames Wright       problem->apply_vol_ijacobian.qf_func_ptr   = IJacobian_Newtonian_Prim;
436e07531f7SJames Wright       problem->apply_vol_ijacobian.qf_loc        = IJacobian_Newtonian_Prim_loc;
437e07531f7SJames Wright       problem->apply_inflow.qf_func_ptr          = BoundaryIntegral_Prim;
438e07531f7SJames Wright       problem->apply_inflow.qf_loc               = BoundaryIntegral_Prim_loc;
439e07531f7SJames Wright       problem->apply_inflow_jacobian.qf_func_ptr = BoundaryIntegral_Jacobian_Prim;
440e07531f7SJames Wright       problem->apply_inflow_jacobian.qf_loc      = BoundaryIntegral_Jacobian_Prim_loc;
4413636f6a4SJames Wright       break;
442c62f7daeSJames Wright     case STATEVAR_ENTROPY:
443e07531f7SJames Wright       problem->ics.qf_func_ptr                   = ICsNewtonianIG_Entropy;
444e07531f7SJames Wright       problem->ics.qf_loc                        = ICsNewtonianIG_Entropy_loc;
445e07531f7SJames Wright       problem->apply_vol_ifunction.qf_func_ptr   = IFunction_Newtonian_Entropy;
446e07531f7SJames Wright       problem->apply_vol_ifunction.qf_loc        = IFunction_Newtonian_Entropy_loc;
447e07531f7SJames Wright       problem->apply_vol_ijacobian.qf_func_ptr   = IJacobian_Newtonian_Entropy;
448e07531f7SJames Wright       problem->apply_vol_ijacobian.qf_loc        = IJacobian_Newtonian_Entropy_loc;
449e07531f7SJames Wright       problem->apply_inflow.qf_func_ptr          = BoundaryIntegral_Entropy;
450e07531f7SJames Wright       problem->apply_inflow.qf_loc               = BoundaryIntegral_Entropy_loc;
451e07531f7SJames Wright       problem->apply_inflow_jacobian.qf_func_ptr = BoundaryIntegral_Jacobian_Entropy;
452e07531f7SJames Wright       problem->apply_inflow_jacobian.qf_loc      = BoundaryIntegral_Jacobian_Entropy_loc;
453c62f7daeSJames Wright       break;
454cbe60e31SLeila Ghaffari   }
4551485969bSJeremy L Thompson 
4563a8779fbSJames Wright   // -- Physics
4572b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-cv", "Heat capacity at constant volume", NULL, cv, &cv, NULL));
4582b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-cp", "Heat capacity at constant pressure", NULL, cp, &cp, NULL));
4592b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-lambda", "Stokes hypothesis second viscosity coefficient", NULL, lambda, &lambda, NULL));
4602b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-mu", "Shear dynamic viscosity coefficient", NULL, mu, &mu, NULL));
4612b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-k", "Thermal conductivity", NULL, k, &k, NULL));
4623a8779fbSJames Wright 
46366d54740SJames Wright   PetscInt dim = 3;
464d9bb1cdbSJames Wright   PetscCall(PetscOptionsDeprecated("-g", "-gravity", "libCEED 0.11.1", NULL));
465d9bb1cdbSJames Wright   PetscCall(PetscOptionsRealArray("-gravity", "Gravitational acceleration vector", NULL, g, &dim, &given_option));
466d9bb1cdbSJames Wright   if (given_option) PetscCheck(dim == 3, comm, PETSC_ERR_ARG_SIZ, "Gravity vector must be size 3, %" PetscInt_FMT " values given", dim);
467d9bb1cdbSJames Wright 
4682b916ea7SJeremy L Thompson   PetscCall(PetscOptionsEnum("-stab", "Stabilization method", NULL, StabilizationTypes, (PetscEnum)(stab = STAB_NONE), (PetscEnum *)&stab, NULL));
4692b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-c_tau", "Stabilization constant", NULL, c_tau, &c_tau, NULL));
4702b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_t", "Stabilization time constant", NULL, Ctau_t, &Ctau_t, NULL));
4712b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_v", "Stabilization viscous constant", NULL, Ctau_v, &Ctau_v, NULL));
4722b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_C", "Stabilization continuity constant", NULL, Ctau_C, &Ctau_C, NULL));
4732b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_M", "Stabilization momentum constant", NULL, Ctau_M, &Ctau_M, NULL));
4742b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_E", "Stabilization energy constant", NULL, Ctau_E, &Ctau_E, NULL));
4752b916ea7SJeremy L Thompson   PetscCall(PetscOptionsBool("-implicit", "Use implicit (IFunction) formulation", NULL, implicit = PETSC_FALSE, &implicit, NULL));
4762b916ea7SJeremy L Thompson   PetscCall(PetscOptionsBool("-newtonian_unit_tests", "Run Newtonian unit tests", NULL, unit_tests = PETSC_FALSE, &unit_tests, NULL));
4773a8779fbSJames Wright 
478db95602eSJames Wright   dim = 3;
479b8fb7609SAdeleke O. Bankole   PetscCall(PetscOptionsScalar("-reference_pressure", "Reference/initial pressure", NULL, reference.pressure, &reference.pressure, NULL));
480b8fb7609SAdeleke O. Bankole   PetscCall(PetscOptionsScalarArray("-reference_velocity", "Reference/initial velocity", NULL, reference.velocity, &dim, NULL));
481b8fb7609SAdeleke O. Bankole   PetscCall(PetscOptionsScalar("-reference_temperature", "Reference/initial temperature", NULL, reference.temperature, &reference.temperature, NULL));
482b8fb7609SAdeleke O. Bankole 
4833a8779fbSJames Wright   // -- Units
4842b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_meter", "1 meter in scaled length units", NULL, meter, &meter, NULL));
4853a8779fbSJames Wright   meter = fabs(meter);
4862b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_kilogram", "1 kilogram in scaled mass units", NULL, kilogram, &kilogram, NULL));
4873a8779fbSJames Wright   kilogram = fabs(kilogram);
4882b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_second", "1 second in scaled time units", NULL, second, &second, NULL));
4893a8779fbSJames Wright   second = fabs(second);
4902b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_Kelvin", "1 Kelvin in scaled temperature units", NULL, Kelvin, &Kelvin, NULL));
4913a8779fbSJames Wright   Kelvin = fabs(Kelvin);
4923a8779fbSJames Wright 
4933a8779fbSJames Wright   // -- Warnings
4945d28dccaSJames Wright   PetscCheck(!(state_var == STATEVAR_PRIMITIVE && !implicit), comm, PETSC_ERR_SUP,
4955d28dccaSJames Wright              "RHSFunction is not provided for primitive variables (use -state_var primitive only with -implicit)\n");
4960c373b74SJames Wright   PetscCheck(!(honee->app_ctx->divFdiffproj_method != DIV_DIFF_FLUX_PROJ_NONE && !implicit), comm, PETSC_ERR_SUP,
4975f952e8dSJames Wright              "Projection of divergence of diffusive flux is not implemented for Navier-Stokes with explicit timestepping");
498e7754af5SKenneth E. Jansen 
499e7754af5SKenneth E. Jansen   PetscCall(PetscOptionsScalar("-idl_decay_time", "Characteristic timescale of the pressure deviance decay. The timestep is good starting point",
500e7754af5SKenneth E. Jansen                                NULL, idl_decay_time, &idl_decay_time, &idl_enable));
5019cbdf780SJames Wright   PetscCheck(!(idl_enable && idl_decay_time == 0), comm, PETSC_ERR_SUP, "idl_decay_time may not be equal to zero.");
5029cbdf780SJames Wright   if (idl_decay_time < 0) idl_enable = PETSC_FALSE;
50328160fc2SJames Wright   if (idl_enable) problem->jac_data_size_vol++;
504e7754af5SKenneth E. Jansen   PetscCall(PetscOptionsScalar("-idl_start", "Start of IDL in the x direction", NULL, idl_start, &idl_start, NULL));
505e7754af5SKenneth E. Jansen   PetscCall(PetscOptionsScalar("-idl_length", "Length of IDL in the positive x direction", NULL, idl_length, &idl_length, NULL));
506a213b8aaSJames Wright   idl_pressure = reference.pressure;
507a213b8aaSJames Wright   PetscCall(PetscOptionsScalar("-idl_pressure", "Pressure IDL uses as reference (default is `-reference_pressure`)", NULL, idl_pressure,
508a213b8aaSJames Wright                                &idl_pressure, NULL));
5091485969bSJeremy L Thompson   PetscOptionsEnd();
5103a8779fbSJames Wright 
51165dee3d2SJames Wright   if (stab == STAB_SUPG && !implicit) problem->create_mass_operator = CreateKSPMassOperator_NewtonianStabilized;
51265dee3d2SJames Wright 
5133a8779fbSJames Wright   // ------------------------------------------------------
5143a8779fbSJames Wright   //           Set up the PETSc context
5153a8779fbSJames Wright   // ------------------------------------------------------
5163a8779fbSJames Wright   // -- Define derived units
5173a8779fbSJames Wright   Pascal          = kilogram / (meter * PetscSqr(second));
5183a8779fbSJames Wright   J_per_kg_K      = PetscSqr(meter) / (PetscSqr(second) * Kelvin);
5193a8779fbSJames Wright   m_per_squared_s = meter / PetscSqr(second);
5203a8779fbSJames Wright   W_per_m_K       = kilogram * meter / (pow(second, 3) * Kelvin);
5213a8779fbSJames Wright 
5220c373b74SJames Wright   honee->units->meter           = meter;
5230c373b74SJames Wright   honee->units->kilogram        = kilogram;
5240c373b74SJames Wright   honee->units->second          = second;
5250c373b74SJames Wright   honee->units->Kelvin          = Kelvin;
5260c373b74SJames Wright   honee->units->Pascal          = Pascal;
5270c373b74SJames Wright   honee->units->J_per_kg_K      = J_per_kg_K;
5280c373b74SJames Wright   honee->units->m_per_squared_s = m_per_squared_s;
5290c373b74SJames Wright   honee->units->W_per_m_K       = W_per_m_K;
5303a8779fbSJames Wright 
5313a8779fbSJames Wright   // ------------------------------------------------------
532*ea615d4cSJames Wright   //           Set up the QFunction context
5333a8779fbSJames Wright   // ------------------------------------------------------
5343a8779fbSJames Wright   // -- Scale variables to desired units
5353a8779fbSJames Wright   cv *= J_per_kg_K;
5363a8779fbSJames Wright   cp *= J_per_kg_K;
5373a8779fbSJames Wright   mu *= Pascal * second;
5383a8779fbSJames Wright   k *= W_per_m_K;
539493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) domain_size[i] *= meter;
540493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) g[i] *= m_per_squared_s;
541b8fb7609SAdeleke O. Bankole   reference.pressure *= Pascal;
542b8fb7609SAdeleke O. Bankole   for (PetscInt i = 0; i < 3; i++) reference.velocity[i] *= meter / second;
543b8fb7609SAdeleke O. Bankole   reference.temperature *= Kelvin;
5443a8779fbSJames Wright 
5453a8779fbSJames Wright   // -- Solver Settings
5460c373b74SJames Wright   honee->phys->implicit  = implicit;
5470c373b74SJames Wright   honee->phys->state_var = state_var;
5483a8779fbSJames Wright 
5493a8779fbSJames Wright   // -- QFunction Context
55015a3537eSJed Brown   newtonian_ig_ctx->lambda          = lambda;
55115a3537eSJed Brown   newtonian_ig_ctx->mu              = mu;
55215a3537eSJed Brown   newtonian_ig_ctx->k               = k;
55315a3537eSJed Brown   newtonian_ig_ctx->cv              = cv;
55415a3537eSJed Brown   newtonian_ig_ctx->cp              = cp;
55515a3537eSJed Brown   newtonian_ig_ctx->c_tau           = c_tau;
55615a3537eSJed Brown   newtonian_ig_ctx->Ctau_t          = Ctau_t;
55715a3537eSJed Brown   newtonian_ig_ctx->Ctau_v          = Ctau_v;
55815a3537eSJed Brown   newtonian_ig_ctx->Ctau_C          = Ctau_C;
55915a3537eSJed Brown   newtonian_ig_ctx->Ctau_M          = Ctau_M;
56015a3537eSJed Brown   newtonian_ig_ctx->Ctau_E          = Ctau_E;
56115a3537eSJed Brown   newtonian_ig_ctx->stabilization   = stab;
5628085925cSJames Wright   newtonian_ig_ctx->is_implicit     = implicit;
5633636f6a4SJames Wright   newtonian_ig_ctx->state_var       = state_var;
564e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_enable      = idl_enable;
565e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_amplitude   = 1 / (idl_decay_time * second);
566e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_start       = idl_start * meter;
567e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_length      = idl_length * meter;
568a213b8aaSJames Wright   newtonian_ig_ctx->idl_pressure    = idl_pressure;
5690c373b74SJames Wright   newtonian_ig_ctx->divFdiff_method = honee->app_ctx->divFdiffproj_method;
5702b916ea7SJeremy L Thompson   PetscCall(PetscArraycpy(newtonian_ig_ctx->g, g, 3));
5713a8779fbSJames Wright 
572b8fb7609SAdeleke O. Bankole   // -- Setup Context
573b8fb7609SAdeleke O. Bankole   setup_context->reference = reference;
574b8fb7609SAdeleke O. Bankole   setup_context->gas       = *newtonian_ig_ctx;
575b8fb7609SAdeleke O. Bankole   setup_context->lx        = domain_size[0];
576b8fb7609SAdeleke O. Bankole   setup_context->ly        = domain_size[1];
577b8fb7609SAdeleke O. Bankole   setup_context->lz        = domain_size[2];
578b8fb7609SAdeleke O. Bankole   setup_context->time      = 0;
579b8fb7609SAdeleke O. Bankole 
5800c373b74SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextCreate(honee->ceed, &problem->ics.qfctx));
581e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetData(problem->ics.qfctx, CEED_MEM_HOST, CEED_USE_POINTER, sizeof(*setup_context), setup_context));
582e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetDataDestroy(problem->ics.qfctx, CEED_MEM_HOST, FreeContextPetsc));
583e07531f7SJames Wright   PetscCallCeed(
584e07531f7SJames Wright       ceed, CeedQFunctionContextRegisterDouble(problem->ics.qfctx, "evaluation time", offsetof(struct SetupContext_, time), 1, "Time of evaluation"));
58515a3537eSJed Brown 
5860c373b74SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextCreate(honee->ceed, &newtonian_ig_qfctx));
587e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetData(newtonian_ig_qfctx, CEED_MEM_HOST, CEED_USE_POINTER, sizeof(*newtonian_ig_ctx), newtonian_ig_ctx));
588e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetDataDestroy(newtonian_ig_qfctx, CEED_MEM_HOST, FreeContextPetsc));
589e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(newtonian_ig_qfctx, "timestep size", offsetof(struct NewtonianIdealGasContext_, dt), 1,
590b4c37c5cSJames Wright                                                          "Size of timestep, delta t"));
591e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(newtonian_ig_qfctx, "ijacobian time shift",
592b4c37c5cSJames Wright                                                          offsetof(struct NewtonianIdealGasContext_, ijacobian_time_shift), 1,
593b4c37c5cSJames Wright                                                          "Shift for mass matrix in IJacobian"));
594e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(newtonian_ig_qfctx, "solution time", offsetof(struct NewtonianIdealGasContext_, time), 1,
595b4c37c5cSJames Wright                                                          "Current solution time"));
596a8bca8acSJames Wright 
597e07531f7SJames Wright   problem->apply_vol_rhs.qfctx = newtonian_ig_qfctx;
598e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_qfctx, &problem->apply_vol_ifunction.qfctx));
599e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_qfctx, &problem->apply_vol_ijacobian.qfctx));
600e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_qfctx, &problem->apply_inflow.qfctx));
601e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_qfctx, &problem->apply_inflow_jacobian.qfctx));
602f0b65372SJed Brown 
6039ed3d70dSJames Wright   if (bc->num_freestream > 0) PetscCall(FreestreamBCSetup(problem, dm, ctx, newtonian_ig_ctx, &reference));
6049ed3d70dSJames Wright   if (bc->num_outflow > 0) PetscCall(OutflowBCSetup(problem, dm, ctx, newtonian_ig_ctx, &reference));
605e07531f7SJames Wright   if (bc->num_slip > 0) PetscCall(SlipBCSetup(problem, dm, ctx, newtonian_ig_qfctx));
6069ed3d70dSJames Wright 
607f0b65372SJed Brown   if (unit_tests) {
6080c373b74SJames Wright     PetscCall(UnitTests_Newtonian(honee, newtonian_ig_ctx));
609f0b65372SJed Brown   }
610d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
6113a8779fbSJames Wright }
6123a8779fbSJames Wright 
6130c373b74SJames Wright PetscErrorCode PRINT_NEWTONIAN(Honee honee, ProblemData problem, AppCtx app_ctx) {
6140c373b74SJames Wright   MPI_Comm                 comm = honee->comm;
6150c373b74SJames Wright   Ceed                     ceed = honee->ceed;
61615a3537eSJed Brown   NewtonianIdealGasContext newtonian_ctx;
61715a3537eSJed Brown 
6183a8779fbSJames Wright   PetscFunctionBeginUser;
619e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextGetData(problem->apply_vol_rhs.qfctx, CEED_MEM_HOST, &newtonian_ctx));
6202b916ea7SJeremy L Thompson   PetscCall(PetscPrintf(comm,
62115a3537eSJed Brown                         "  Problem:\n"
62215a3537eSJed Brown                         "    Problem Name                       : %s\n"
62315a3537eSJed Brown                         "    Stabilization                      : %s\n",
6242b916ea7SJeremy L Thompson                         app_ctx->problem_name, StabilizationTypes[newtonian_ctx->stabilization]));
625e07531f7SJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRestoreData(problem->apply_vol_rhs.qfctx, &newtonian_ctx));
626d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
6273a8779fbSJames Wright }
62848417fb7SJames Wright 
62948417fb7SJames Wright static PetscErrorCode CheckQWithTolerance(const CeedScalar Q_s[5], const CeedScalar Q_a[5], const CeedScalar Q_b[5], const char *name,
63048417fb7SJames Wright                                           PetscReal rtol_0, PetscReal rtol_u, PetscReal rtol_4) {
63148417fb7SJames Wright   CeedScalar relative_error[5];  // relative error
63248417fb7SJames Wright   CeedScalar divisor_threshold = 10 * CEED_EPSILON;
63348417fb7SJames Wright 
63448417fb7SJames Wright   PetscFunctionBeginUser;
63548417fb7SJames Wright   relative_error[0] = (Q_a[0] - Q_b[0]) / (fabs(Q_s[0]) > divisor_threshold ? Q_s[0] : 1);
63648417fb7SJames Wright   relative_error[4] = (Q_a[4] - Q_b[4]) / (fabs(Q_s[4]) > divisor_threshold ? Q_s[4] : 1);
63748417fb7SJames Wright 
63848417fb7SJames Wright   CeedScalar u_magnitude = sqrt(Square(Q_s[1]) + Square(Q_s[2]) + Square(Q_s[3]));
63948417fb7SJames Wright   CeedScalar u_divisor   = u_magnitude > divisor_threshold ? u_magnitude : 1;
64048417fb7SJames Wright   for (int i = 1; i < 4; i++) {
64148417fb7SJames Wright     relative_error[i] = (Q_a[i] - Q_b[i]) / u_divisor;
64248417fb7SJames Wright   }
64348417fb7SJames Wright 
64448417fb7SJames Wright   if (fabs(relative_error[0]) >= rtol_0) {
64548417fb7SJames Wright     printf("%s[0] error %g (expected %.10e, got %.10e)\n", name, relative_error[0], Q_s[0], Q_a[0]);
64648417fb7SJames Wright   }
64748417fb7SJames Wright   for (int i = 1; i < 4; i++) {
64848417fb7SJames Wright     if (fabs(relative_error[i]) >= rtol_u) {
64948417fb7SJames Wright       printf("%s[%d] error %g (expected %.10e, got %.10e)\n", name, i, relative_error[i], Q_s[i], Q_a[i]);
65048417fb7SJames Wright     }
65148417fb7SJames Wright   }
65248417fb7SJames Wright   if (fabs(relative_error[4]) >= rtol_4) {
65348417fb7SJames Wright     printf("%s[4] error %g (expected %.10e, got %.10e)\n", name, relative_error[4], Q_s[4], Q_a[4]);
65448417fb7SJames Wright   }
65548417fb7SJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
65648417fb7SJames Wright }
65748417fb7SJames Wright 
65848417fb7SJames Wright // @brief Verify `StateFromQ` by converting A0 -> B0 -> A0_test, where A0 should equal A0_test
65948417fb7SJames Wright static PetscErrorCode TestState(StateVariable state_var_A, StateVariable state_var_B, NewtonianIdealGasContext gas, const CeedScalar A0[5],
66048417fb7SJames Wright                                 CeedScalar rtol_0, CeedScalar rtol_u, CeedScalar rtol_4) {
66148417fb7SJames Wright   CeedScalar        B0[5], A0_test[5];
66248417fb7SJames Wright   char              buf[128];
66348417fb7SJames Wright   const char *const StateVariables_Initial[] = {"U", "Y", "V"};
66448417fb7SJames Wright 
66548417fb7SJames Wright   PetscFunctionBeginUser;
66648417fb7SJames Wright   const char *A_initial = StateVariables_Initial[state_var_A];
66748417fb7SJames Wright   const char *B_initial = StateVariables_Initial[state_var_B];
66848417fb7SJames Wright 
66948417fb7SJames Wright   State state_A0 = StateFromQ(gas, A0, state_var_A);
67048417fb7SJames Wright   StateToQ(gas, state_A0, B0, state_var_B);
67148417fb7SJames Wright   State state_B0 = StateFromQ(gas, B0, state_var_B);
67248417fb7SJames Wright   StateToQ(gas, state_B0, A0_test, state_var_A);
67348417fb7SJames Wright 
67448417fb7SJames Wright   snprintf(buf, sizeof buf, "%s->%s->%s: %s", A_initial, B_initial, A_initial, A_initial);
67548417fb7SJames Wright   PetscCall(CheckQWithTolerance(A0, A0_test, A0, buf, rtol_0, rtol_u, rtol_4));
67648417fb7SJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
67748417fb7SJames Wright }
67848417fb7SJames Wright 
67948417fb7SJames Wright // @brief Verify `StateFromQ_fwd` via a finite difference approximation
68048417fb7SJames Wright static PetscErrorCode TestState_fwd(StateVariable state_var_A, StateVariable state_var_B, NewtonianIdealGasContext gas, const CeedScalar A0[5],
68148417fb7SJames Wright                                     CeedScalar rtol_0, CeedScalar rtol_u, CeedScalar rtol_4) {
68248417fb7SJames Wright   CeedScalar        eps = 4e-7;  // Finite difference step
68348417fb7SJames Wright   char              buf[128];
68448417fb7SJames Wright   const char *const StateVariables_Initial[] = {"U", "Y", "V"};
68548417fb7SJames Wright 
68648417fb7SJames Wright   PetscFunctionBeginUser;
68748417fb7SJames Wright   const char *A_initial = StateVariables_Initial[state_var_A];
68848417fb7SJames Wright   const char *B_initial = StateVariables_Initial[state_var_B];
68948417fb7SJames Wright   State       state_0   = StateFromQ(gas, A0, state_var_A);
69048417fb7SJames Wright 
69148417fb7SJames Wright   for (int i = 0; i < 5; i++) {
69248417fb7SJames Wright     CeedScalar dB[5] = {0.}, dB_fd[5] = {0.};
69348417fb7SJames Wright     {  // Calculate dB using State functions
69448417fb7SJames Wright       CeedScalar dA[5] = {0};
69548417fb7SJames Wright 
69648417fb7SJames Wright       dA[i]          = A0[i];
69748417fb7SJames Wright       State dstate_0 = StateFromQ_fwd(gas, state_0, dA, state_var_A);
69848417fb7SJames Wright       StateToQ_fwd(gas, state_0, dstate_0, dB, state_var_B);
69948417fb7SJames Wright     }
70048417fb7SJames Wright 
70148417fb7SJames Wright     {  // Calculate dB_fd via finite difference approximation
70248417fb7SJames Wright       CeedScalar A1[5], B0[5], B1[5];
70348417fb7SJames Wright 
70448417fb7SJames Wright       for (int j = 0; j < 5; j++) A1[j] = (1 + eps * (i == j)) * A0[j];
70548417fb7SJames Wright       State state_1 = StateFromQ(gas, A1, state_var_A);
70648417fb7SJames Wright       StateToQ(gas, state_0, B0, state_var_B);
70748417fb7SJames Wright       StateToQ(gas, state_1, B1, state_var_B);
70848417fb7SJames Wright       for (int j = 0; j < 5; j++) dB_fd[j] = (B1[j] - B0[j]) / eps;
70948417fb7SJames Wright     }
71048417fb7SJames Wright 
71148417fb7SJames Wright     snprintf(buf, sizeof buf, "d%s->d%s: StateFrom%s_fwd i=%d: d%s", A_initial, B_initial, A_initial, i, B_initial);
71248417fb7SJames Wright     PetscCall(CheckQWithTolerance(dB_fd, dB, dB_fd, buf, rtol_0, rtol_u, rtol_4));
71348417fb7SJames Wright   }
71448417fb7SJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
71548417fb7SJames Wright }
71648417fb7SJames Wright 
71748417fb7SJames Wright // @brief Test the Newtonian State transformation functions, `StateFrom*`
71848417fb7SJames Wright static PetscErrorCode UnitTests_Newtonian(Honee honee, NewtonianIdealGasContext gas) {
71948417fb7SJames Wright   Units            units = honee->units;
72048417fb7SJames Wright   const CeedScalar kg = units->kilogram, m = units->meter, sec = units->second, K = units->Kelvin;
72148417fb7SJames Wright   CeedScalar       rtol;
72248417fb7SJames Wright 
72348417fb7SJames Wright   PetscFunctionBeginUser;
72448417fb7SJames Wright   const CeedScalar T          = 200 * K;
72548417fb7SJames Wright   const CeedScalar rho        = 1.2 * kg / Cube(m);
72648417fb7SJames Wright   const CeedScalar P          = (HeatCapacityRatio(gas) - 1) * rho * gas->cv * T;
72748417fb7SJames Wright   const CeedScalar u_base     = 40 * m / sec;
72848417fb7SJames Wright   const CeedScalar u[3]       = {u_base, u_base * 1.1, u_base * 1.2};
72948417fb7SJames Wright   const CeedScalar e_kinetic  = 0.5 * Dot3(u, u);
73048417fb7SJames Wright   const CeedScalar e_internal = gas->cv * T;
73148417fb7SJames Wright   const CeedScalar e_total    = e_kinetic + e_internal;
73248417fb7SJames Wright   const CeedScalar gamma      = HeatCapacityRatio(gas);
73348417fb7SJames Wright   const CeedScalar entropy    = log(P) - gamma * log(rho);
73448417fb7SJames Wright   const CeedScalar rho_div_p  = rho / P;
73548417fb7SJames Wright   const CeedScalar Y0[5]      = {P, u[0], u[1], u[2], T};
73648417fb7SJames Wright   const CeedScalar U0[5]      = {rho, rho * u[0], rho * u[1], rho * u[2], rho * e_total};
73748417fb7SJames Wright   const CeedScalar V0[5]      = {(gamma - entropy) / (gamma - 1) - rho_div_p * (e_kinetic), rho_div_p * u[0], rho_div_p * u[1], rho_div_p * u[2],
73848417fb7SJames Wright                                  -rho_div_p};
73948417fb7SJames Wright 
74048417fb7SJames Wright   rtol = 20 * CEED_EPSILON;
74148417fb7SJames Wright   PetscCall(TestState(STATEVAR_PRIMITIVE, STATEVAR_CONSERVATIVE, gas, Y0, rtol, rtol, rtol));
74248417fb7SJames Wright   PetscCall(TestState(STATEVAR_PRIMITIVE, STATEVAR_ENTROPY, gas, Y0, rtol, rtol, rtol));
74348417fb7SJames Wright   PetscCall(TestState(STATEVAR_CONSERVATIVE, STATEVAR_PRIMITIVE, gas, U0, rtol, rtol, rtol));
74448417fb7SJames Wright   PetscCall(TestState(STATEVAR_CONSERVATIVE, STATEVAR_ENTROPY, gas, U0, rtol, rtol, rtol));
74548417fb7SJames Wright   PetscCall(TestState(STATEVAR_ENTROPY, STATEVAR_CONSERVATIVE, gas, V0, rtol, rtol, rtol));
74648417fb7SJames Wright   PetscCall(TestState(STATEVAR_ENTROPY, STATEVAR_PRIMITIVE, gas, V0, rtol, rtol, rtol));
74748417fb7SJames Wright 
74848417fb7SJames Wright   rtol = 5e-6;
74948417fb7SJames Wright   PetscCall(TestState_fwd(STATEVAR_PRIMITIVE, STATEVAR_CONSERVATIVE, gas, Y0, rtol, rtol, rtol));
75048417fb7SJames Wright   PetscCall(TestState_fwd(STATEVAR_PRIMITIVE, STATEVAR_ENTROPY, gas, Y0, rtol, rtol, rtol));
75148417fb7SJames Wright   PetscCall(TestState_fwd(STATEVAR_CONSERVATIVE, STATEVAR_PRIMITIVE, gas, U0, rtol, rtol, rtol));
75248417fb7SJames Wright   PetscCall(TestState_fwd(STATEVAR_CONSERVATIVE, STATEVAR_ENTROPY, gas, U0, 10 * rtol, rtol, rtol));
75348417fb7SJames Wright   PetscCall(TestState_fwd(STATEVAR_ENTROPY, STATEVAR_CONSERVATIVE, gas, V0, 5 * rtol, rtol, rtol));
75448417fb7SJames Wright   PetscCall(TestState_fwd(STATEVAR_ENTROPY, STATEVAR_PRIMITIVE, gas, V0, 5 * rtol, 5 * rtol, 5 * rtol));
75548417fb7SJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
75648417fb7SJames Wright }
757