LCOV - code coverage report
Current view: top level - include/kokkos/bcs - KokkosCoupledVarNeumannBC.h (source / functions) Hit Total Coverage
Test: idaholab/moose framework: #31653 (1b668c) with base bb0a08 Lines: 5 6 83.3 %
Date: 2025-11-03 17:02:13 Functions: 2 2 100.0 %
Legend: Lines: hit not hit

          Line data    Source code
       1             : //* This file is part of the MOOSE framework
       2             : //* https://mooseframework.inl.gov
       3             : //*
       4             : //* All rights reserved, see COPYRIGHT for full restrictions
       5             : //* https://github.com/idaholab/moose/blob/master/COPYRIGHT
       6             : //*
       7             : //* Licensed under LGPL 2.1, please see LICENSE for details
       8             : //* https://www.gnu.org/licenses/lgpl-2.1.html
       9             : 
      10             : #pragma once
      11             : 
      12             : #include "KokkosIntegratedBC.h"
      13             : 
      14             : /**
      15             :  * Implements a Neumann BC where grad(u)=_coupled_var on the boundary.
      16             :  * Uses the term produced from integrating the diffusion operator by parts.
      17             :  */
      18             : class KokkosCoupledVarNeumannBC : public Moose::Kokkos::IntegratedBC
      19             : {
      20             : public:
      21             :   static InputParameters validParams();
      22             : 
      23             :   KokkosCoupledVarNeumannBC(const InputParameters & parameters);
      24             : 
      25             :   KOKKOS_FUNCTION Real computeQpResidual(const unsigned int i,
      26             :                                          const unsigned int qp,
      27             :                                          AssemblyDatum & datum) const;
      28             :   KOKKOS_FUNCTION Real computeQpOffDiagJacobian(const unsigned int i,
      29             :                                                 const unsigned int j,
      30             :                                                 const unsigned int jvar,
      31             :                                                 const unsigned int qp,
      32             :                                                 AssemblyDatum & datum) const;
      33             : 
      34             : protected:
      35             :   /// Variable providing the value of grad(u) on the boundary.
      36             :   const Moose::Kokkos::VariableValue _coupled_var;
      37             : 
      38             :   /// The identifying number of the coupled variable
      39             :   const unsigned int _coupled_num;
      40             : 
      41             :   /// A coefficient that is multiplied with the residual contribution
      42             :   const Real _coef;
      43             : 
      44             :   /// Scale factor
      45             :   const Moose::Kokkos::VariableValue _scale_factor;
      46             : };
      47             : 
      48             : KOKKOS_FUNCTION inline Real
      49       29396 : KokkosCoupledVarNeumannBC::computeQpResidual(const unsigned int i,
      50             :                                              const unsigned int qp,
      51             :                                              AssemblyDatum & datum) const
      52             : {
      53       29396 :   return -_scale_factor(datum, qp) * _coef * _test(datum, i, qp) * _coupled_var(datum, qp);
      54             : }
      55             : 
      56             : KOKKOS_FUNCTION inline Real
      57          80 : KokkosCoupledVarNeumannBC::computeQpOffDiagJacobian(const unsigned int i,
      58             :                                                     const unsigned int j,
      59             :                                                     const unsigned int jvar,
      60             :                                                     const unsigned int qp,
      61             :                                                     AssemblyDatum & datum) const
      62             : {
      63          80 :   if (jvar == _coupled_num)
      64          80 :     return -_scale_factor(datum, qp) * _coef * _test(datum, i, qp) * _phi(datum, j, qp);
      65             :   else
      66           0 :     return 0;
      67             : }

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