// Copyright (c) 2010-2025, Lawrence Livermore National Security, LLC. Produced // at the Lawrence Livermore National Laboratory. All Rights reserved. See files // LICENSE and NOTICE for details. LLNL-CODE-806117. // // This file is part of the MFEM library. For more information and source code // availability visit https://mfem.org. // // MFEM is free software; you can redistribute it and/or modify it under the // terms of the BSD-3 license. We welcome feedback and contributions, see file // CONTRIBUTING.md for details. #include "../../general/forall.hpp" #include "../bilininteg.hpp" #include "../gridfunc.hpp" #include "bilininteg_mass_kernels.hpp" namespace mfem { void MassIntegrator::AssembleEA_(Vector &ea_data, const bool add) { using internal::EAMassAssemble1D; using internal::EAMassAssemble2D; using internal::EAMassAssemble3D; const Array &B = maps->B; if (dim == 1) { auto kernel = EAMassAssemble1D<0,0>; switch ((dofs1D << 4 ) | quad1D) { case 0x22: kernel = EAMassAssemble1D<2,2>; break; case 0x33: kernel = EAMassAssemble1D<3,3>; break; case 0x44: kernel = EAMassAssemble1D<4,4>; break; case 0x55: kernel = EAMassAssemble1D<5,5>; break; case 0x66: kernel = EAMassAssemble1D<6,6>; break; case 0x77: kernel = EAMassAssemble1D<7,7>; break; case 0x88: kernel = EAMassAssemble1D<8,8>; break; case 0x99: kernel = EAMassAssemble1D<9,9>; break; } return kernel(ne,B,pa_data,ea_data,add,dofs1D,quad1D); } else if (dim == 2) { auto kernel = EAMassAssemble2D<0,0>; switch ((dofs1D << 4 ) | quad1D) { case 0x22: kernel = EAMassAssemble2D<2,2>; break; case 0x33: kernel = EAMassAssemble2D<3,3>; break; case 0x44: kernel = EAMassAssemble2D<4,4>; break; case 0x55: kernel = EAMassAssemble2D<5,5>; break; case 0x66: kernel = EAMassAssemble2D<6,6>; break; case 0x77: kernel = EAMassAssemble2D<7,7>; break; case 0x88: kernel = EAMassAssemble2D<8,8>; break; case 0x99: kernel = EAMassAssemble2D<9,9>; break; } return kernel(ne,B,pa_data,ea_data,add,dofs1D,quad1D); } else if (dim == 3) { auto kernel = EAMassAssemble3D<0,0>; switch ((dofs1D << 4 ) | quad1D) { case 0x23: kernel = EAMassAssemble3D<2,3>; break; case 0x34: kernel = EAMassAssemble3D<3,4>; break; case 0x45: kernel = EAMassAssemble3D<4,5>; break; case 0x56: kernel = EAMassAssemble3D<5,6>; break; case 0x67: kernel = EAMassAssemble3D<6,7>; break; case 0x78: kernel = EAMassAssemble3D<7,8>; break; case 0x89: kernel = EAMassAssemble3D<8,9>; break; } return kernel(ne,B,pa_data,ea_data,add,dofs1D,quad1D); } MFEM_ABORT("Unknown kernel."); } void MassIntegrator::AssembleEA(const FiniteElementSpace &fes, Vector &ea_data, const bool add) { AssemblePA(fes); if (ne > 0) { AssembleEA_(ea_data, add); } } void MassIntegrator::AssembleEABoundary(const FiniteElementSpace &fes, Vector &ea_data, const bool add) { AssemblePABoundary(fes); if (ne > 0) { AssembleEA_(ea_data, add); } } }