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Grid/lib/lattice/Lattice_peekpoke.h

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/*************************************************************************************
Grid physics library, www.github.com/paboyle/Grid
Source file: ./lib/lattice/Lattice_peekpoke.h
Copyright (C) 2015
Author: Azusa Yamaguchi <ayamaguc@staffmail.ed.ac.uk>
Author: Peter Boyle <paboyle@ph.ed.ac.uk>
Author: Peter Boyle <peterboyle@Peters-MacBook-Pro-2.local>
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
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*************************************************************************************/
/* END LEGAL */
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#ifndef GRID_LATTICE_PEEK_H
#define GRID_LATTICE_PEEK_H
///////////////////////////////////////////////
// Peeking and poking around
///////////////////////////////////////////////
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NAMESPACE_BEGIN(Grid);
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// FIXME accelerator_loop and accelerator_inline these
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////////////////////////////////////////////////////////////////////////////////////////////////////
// Peek internal indices of a Lattice object
////////////////////////////////////////////////////////////////////////////////////////////////////
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template<int Index,class vobj>
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auto PeekIndex(const Lattice<vobj> &lhs,int i) -> Lattice<decltype(peekIndex<Index>(lhs[0],i))>
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{
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Lattice<decltype(peekIndex<Index>(lhs[0],i))> ret(lhs._grid);
ret.Checkerboard()=lhs.Checkerboard();
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cpu_loop( ss, lhs, {
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ret[ss] = peekIndex<Index>(lhs[ss],i);
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});
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return ret;
};
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template<int Index,class vobj>
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auto PeekIndex(const Lattice<vobj> &lhs,int i,int j) -> Lattice<decltype(peekIndex<Index>(lhs[0],i,j))>
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{
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Lattice<decltype(peekIndex<Index>(lhs[0],i,j))> ret(lhs._grid);
ret.Checkerboard()=lhs.Checkerboard();
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cpu_loop( ss, lhs, {
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ret[ss] = peekIndex<Index>(lhs[ss],i,j);
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});
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return ret;
};
////////////////////////////////////////////////////////////////////////////////////////////////////
// Poke internal indices of a Lattice object
////////////////////////////////////////////////////////////////////////////////////////////////////
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template<int Index,class vobj>
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void PokeIndex(Lattice<vobj> &lhs,const Lattice<decltype(peekIndex<Index>(lhs[0],0))> & rhs,int i)
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{
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cpu_loop( ss, lhs, {
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pokeIndex<Index>(lhs[ss],rhs[ss],i);
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});
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}
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template<int Index,class vobj>
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void PokeIndex(Lattice<vobj> &lhs,const Lattice<decltype(peekIndex<Index>(lhs[0],0,0))> & rhs,int i,int j)
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{
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cpu_loop( ss, lhs, {
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pokeIndex<Index>(lhs[ss],rhs[ss],i,j);
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});
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}
//////////////////////////////////////////////////////
// Poke a scalar object into the SIMD array
//////////////////////////////////////////////////////
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template<class vobj,class sobj>
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void pokeSite(const sobj &s,Lattice<vobj> &l,const std::vector<int> &site){
GridBase *grid=l._grid;
typedef typename vobj::scalar_type scalar_type;
typedef typename vobj::vector_type vector_type;
int Nsimd = grid->Nsimd();
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assert( l.Checkerboard()== l._grid->CheckerBoard(site));
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assert( sizeof(sobj)*Nsimd == sizeof(vobj));
int rank,odx,idx;
// Optional to broadcast from node 0.
grid->GlobalCoorToRankIndex(rank,odx,idx,site);
grid->Broadcast(grid->BossRank(),s);
std::vector<sobj> buf(Nsimd);
// extract-modify-merge cycle is easiest way and this is not perf critical
if ( rank == grid->ThisRank() ) {
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extract(l[odx],buf);
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buf[idx] = s;
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merge(l[odx],buf);
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}
return;
};
//////////////////////////////////////////////////////////
// Peek a scalar object from the SIMD array
//////////////////////////////////////////////////////////
template<class vobj,class sobj>
void peekSite(sobj &s,const Lattice<vobj> &l,const std::vector<int> &site){
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GridBase *grid=l._grid;
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typedef typename vobj::scalar_type scalar_type;
typedef typename vobj::vector_type vector_type;
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int Nsimd = grid->Nsimd();
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assert( l.Checkerboard() == l._grid->CheckerBoard(site));
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int rank,odx,idx;
grid->GlobalCoorToRankIndex(rank,odx,idx,site);
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std::vector<sobj> buf(Nsimd);
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extract(l[odx],buf);
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s = buf[idx];
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grid->Broadcast(rank,s);
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return;
};
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//////////////////////////////////////////////////////////
// Peek a scalar object from the SIMD array
//////////////////////////////////////////////////////////
template<class vobj,class sobj>
void peekLocalSite(sobj &s,const Lattice<vobj> &l,std::vector<int> &site){
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GridBase *grid = l._grid;
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typedef typename vobj::scalar_type scalar_type;
typedef typename vobj::vector_type vector_type;
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int Nsimd = grid->Nsimd();
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assert( l.Checkerboard()== l._grid->CheckerBoard(site));
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assert( sizeof(sobj)*Nsimd == sizeof(vobj));
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static const int words=sizeof(vobj)/sizeof(vector_type);
int odx,idx;
idx= grid->iIndex(site);
odx= grid->oIndex(site);
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scalar_type * vp = (scalar_type *)&l[odx];
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scalar_type * pt = (scalar_type *)&s;
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for(int w=0;w<words;w++){
pt[w] = vp[idx+w*Nsimd];
}
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return;
};
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template<class vobj,class sobj>
void pokeLocalSite(const sobj &s,Lattice<vobj> &l,std::vector<int> &site){
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GridBase *grid=l._grid;
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typedef typename vobj::scalar_type scalar_type;
typedef typename vobj::vector_type vector_type;
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int Nsimd = grid->Nsimd();
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assert( l.Checkerboard()== l._grid->CheckerBoard(site));
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assert( sizeof(sobj)*Nsimd == sizeof(vobj));
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static const int words=sizeof(vobj)/sizeof(vector_type);
int odx,idx;
idx= grid->iIndex(site);
odx= grid->oIndex(site);
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scalar_type * vp = (scalar_type *)&l[odx];
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scalar_type * pt = (scalar_type *)&s;
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for(int w=0;w<words;w++){
vp[idx+w*Nsimd] = pt[w];
}
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return;
};
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NAMESPACE_END(Grid);
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#endif