/************************************************************************************* Grid physics library, www.github.com/paboyle/Grid Source file: ./lib/lattice/Lattice_reality.h Copyright (C) 2015 Author: Azusa Yamaguchi Author: Peter Boyle Author: neo This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either version 2 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. See the full license in the file "LICENSE" in the top level distribution directory *************************************************************************************/ /* END LEGAL */ #ifndef GRID_LATTICE_REALITY_H #define GRID_LATTICE_REALITY_H // FIXME .. this is the sector of the code // I am most worried about the directions // The choice of burying complex in the SIMD // is making the use of "real" and "imag" very cumbersome NAMESPACE_BEGIN(Grid); template inline Lattice adj(const Lattice &lhs){ Lattice ret(lhs.Grid()); autoView( lhs_v, lhs, AcceleratorRead); autoView( ret_v, ret, AcceleratorWrite); ret.Checkerboard()=lhs.Checkerboard(); accelerator_for( ss, lhs_v.size(), 1, { ret_v[ss] = adj(lhs_v[ss]); }); return ret; }; template inline Lattice conjugate(const Lattice &lhs){ Lattice ret(lhs.Grid()); autoView( lhs_v, lhs, AcceleratorRead); autoView( ret_v, ret, AcceleratorWrite); ret.Checkerboard() = lhs.Checkerboard(); accelerator_for( ss, lhs_v.size(), vobj::Nsimd(), { coalescedWrite( ret_v[ss] , conjugate(lhs_v(ss))); }); return ret; }; template inline Lattice toComplex(const Lattice &lhs){ Lattice ret(lhs.Grid()); autoView( lhs_v, lhs, AcceleratorRead); autoView( ret_v, ret, AcceleratorWrite); ret.Checkerboard() = lhs.Checkerboard(); accelerator_for( ss, lhs_v.size(), 1, { ret_v[ss] = toComplex(lhs_v[ss]); }); return ret; }; template inline Lattice toReal(const Lattice &lhs){ Lattice ret(lhs.Grid()); autoView( lhs_v, lhs, AcceleratorRead); autoView( ret_v, ret, AcceleratorWrite); ret.Checkerboard() = lhs.Checkerboard(); accelerator_for( ss, lhs_v.size(), 1, { ret_v[ss] = toReal(lhs_v[ss]); }); return ret; }; template::value,void>::type * = nullptr> auto toComplex(const Expression &expr) -> decltype(closure(expr)) { return toComplex(closure(expr)); } template::value,void>::type * = nullptr> auto toReal(const Expression &expr) -> decltype(closure(expr)) { return toReal(closure(expr)); } template::value,void>::type * = nullptr> auto adj(const Expression &expr) -> decltype(closure(expr)) { return adj(closure(expr)); } template::value,void>::type * = nullptr> auto conjugate(const Expression &expr) -> decltype(closure(expr)) { return conjugate(closure(expr)); } NAMESPACE_END(Grid); #endif