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Merge branch 'develop' of https://github.com/paboyle/Grid into develop
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f7a6b8e5ed
@ -60,7 +60,7 @@ void CayleyFermion5D<Impl>::M5D(const FermionField &psi,
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GridBase *grid=psi._grid;
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int Ls = this->Ls;
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int LLs = grid->_rdimensions[0];
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int nsimd= Simd::Nsimd();
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const int nsimd= Simd::Nsimd();
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Vector<iSinglet<Simd> > u(LLs);
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Vector<iSinglet<Simd> > l(LLs);
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@ -71,7 +71,6 @@ void CayleyFermion5D<Impl>::M5D(const FermionField &psi,
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chi.checkerboard=psi.checkerboard;
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// just directly address via type pun
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typedef typename Simd::scalar_type scalar_type;
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scalar_type * u_p = (scalar_type *)&u[0];
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@ -87,36 +86,133 @@ void CayleyFermion5D<Impl>::M5D(const FermionField &psi,
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d_p[ss] = diag[s];
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}}
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M5Dcalls++;
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M5Dtime-=usecond();
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assert(Nc==3);
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PARALLEL_FOR_LOOP
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for(int ss=0;ss<grid->oSites();ss+=LLs){ // adds LLs
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#if 0
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alignas(64) SiteHalfSpinor hp;
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alignas(64) SiteHalfSpinor hm;
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alignas(64) SiteSpinor fp;
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alignas(64) SiteSpinor fm;
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alignas(64) SiteHalfSpinor hp;
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alignas(64) SiteHalfSpinor hm;
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alignas(64) SiteSpinor fp;
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alignas(64) SiteSpinor fm;
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for(int v=0;v<LLs;v++){
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for(int v=0;v<LLs;v++){
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int vp=(v+1)%LLs;
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int vm=(v+LLs-1)%LLs;
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int vp=(v+1)%LLs;
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int vm=(v+LLs-1)%LLs;
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spProj5m(hp,psi[ss+vp]);
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spProj5p(hm,psi[ss+vm]);
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spProj5m(hp,psi[ss+vp]);
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spProj5p(hm,psi[ss+vm]);
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if ( vp<=v ) rotate(hp,hp,1);
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if ( vm>=v ) rotate(hm,hm,nsimd-1);
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hp=0.5*hp;
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hm=0.5*hm;
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spRecon5m(fp,hp);
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spRecon5p(fm,hm);
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chi[ss+v] = d[v]*phi[ss+v];
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chi[ss+v] = chi[ss+v] +u[v]*fp;
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chi[ss+v] = chi[ss+v] +l[v]*fm;
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}
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#else
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for(int v=0;v<LLs;v++){
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if ( vp<=v ) rotate(hp,hp,1);
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if ( vm>=v ) rotate(hm,hm,nsimd-1);
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int vp= (v==LLs-1) ? 0 : v+1;
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int vm= (v==0 ) ? LLs-1 : v-1;
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Simd hp_00 = psi[ss+vp]()(2)(0);
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Simd hp_01 = psi[ss+vp]()(2)(1);
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Simd hp_02 = psi[ss+vp]()(2)(2);
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Simd hp_10 = psi[ss+vp]()(3)(0);
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Simd hp_11 = psi[ss+vp]()(3)(1);
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Simd hp_12 = psi[ss+vp]()(3)(2);
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Simd hm_00 = psi[ss+vm]()(0)(0);
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Simd hm_01 = psi[ss+vm]()(0)(1);
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Simd hm_02 = psi[ss+vm]()(0)(2);
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Simd hm_10 = psi[ss+vm]()(1)(0);
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Simd hm_11 = psi[ss+vm]()(1)(1);
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Simd hm_12 = psi[ss+vm]()(1)(2);
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hp=hp*0.5;
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hm=hm*0.5;
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spRecon5m(fp,hp);
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spRecon5p(fm,hm);
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// if ( ss==0) std::cout << " hp_00 " <<hp_00<<std::endl;
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// if ( ss==0) std::cout << " hm_00 " <<hm_00<<std::endl;
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chi[ss+v] = d[v]*phi[ss+v]+u[v]*fp;
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chi[ss+v] = chi[ss+v] +l[v]*fm;
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if ( vp<=v ) {
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hp_00.v = Optimization::Rotate::tRotate<2>(hp_00.v);
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hp_01.v = Optimization::Rotate::tRotate<2>(hp_01.v);
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hp_02.v = Optimization::Rotate::tRotate<2>(hp_02.v);
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hp_10.v = Optimization::Rotate::tRotate<2>(hp_10.v);
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hp_11.v = Optimization::Rotate::tRotate<2>(hp_11.v);
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hp_12.v = Optimization::Rotate::tRotate<2>(hp_12.v);
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}
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if ( vm>=v ) {
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hm_00.v = Optimization::Rotate::tRotate<2*Simd::Nsimd()-2>(hm_00.v);
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hm_01.v = Optimization::Rotate::tRotate<2*Simd::Nsimd()-2>(hm_01.v);
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hm_02.v = Optimization::Rotate::tRotate<2*Simd::Nsimd()-2>(hm_02.v);
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hm_10.v = Optimization::Rotate::tRotate<2*Simd::Nsimd()-2>(hm_10.v);
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hm_11.v = Optimization::Rotate::tRotate<2*Simd::Nsimd()-2>(hm_11.v);
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hm_12.v = Optimization::Rotate::tRotate<2*Simd::Nsimd()-2>(hm_12.v);
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}
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}
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/*
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if ( ss==0) std::cout << " dphi_00 " <<d[v]()()() * phi[ss+v]()(0)(0) <<std::endl;
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if ( ss==0) std::cout << " dphi_10 " <<d[v]()()() * phi[ss+v]()(1)(0) <<std::endl;
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if ( ss==0) std::cout << " dphi_20 " <<d[v]()()() * phi[ss+v]()(2)(0) <<std::endl;
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if ( ss==0) std::cout << " dphi_30 " <<d[v]()()() * phi[ss+v]()(3)(0) <<std::endl;
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*/
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Simd p_00 = d[v]()()() * phi[ss+v]()(0)(0) + l[v]()()()*hm_00;
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Simd p_01 = d[v]()()() * phi[ss+v]()(0)(1) + l[v]()()()*hm_01;
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Simd p_02 = d[v]()()() * phi[ss+v]()(0)(2) + l[v]()()()*hm_02;
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Simd p_10 = d[v]()()() * phi[ss+v]()(1)(0) + l[v]()()()*hm_10;
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Simd p_11 = d[v]()()() * phi[ss+v]()(1)(1) + l[v]()()()*hm_11;
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Simd p_12 = d[v]()()() * phi[ss+v]()(1)(2) + l[v]()()()*hm_12;
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Simd p_20 = d[v]()()() * phi[ss+v]()(2)(0) + u[v]()()()*hp_00;
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Simd p_21 = d[v]()()() * phi[ss+v]()(2)(1) + u[v]()()()*hp_01;
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Simd p_22 = d[v]()()() * phi[ss+v]()(2)(2) + u[v]()()()*hp_02;
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Simd p_30 = d[v]()()() * phi[ss+v]()(3)(0) + u[v]()()()*hp_10;
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Simd p_31 = d[v]()()() * phi[ss+v]()(3)(1) + u[v]()()()*hp_11;
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Simd p_32 = d[v]()()() * phi[ss+v]()(3)(2) + u[v]()()()*hp_12;
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// if ( ss==0){
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/*
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(0)(0) << " bad "<<p_00<<" diff "<<chi[ss+v]()(0)(0)-p_00<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(0)(1) << " bad "<<p_01<<" diff "<<chi[ss+v]()(0)(1)-p_01<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(0)(2) << " bad "<<p_02<<" diff "<<chi[ss+v]()(0)(2)-p_02<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(1)(0) << " bad "<<p_10<<" diff "<<chi[ss+v]()(1)(0)-p_10<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(1)(1) << " bad "<<p_11<<" diff "<<chi[ss+v]()(1)(1)-p_11<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(1)(2) << " bad "<<p_12<<" diff "<<chi[ss+v]()(1)(2)-p_12<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(2)(0) << " bad "<<p_20<<" diff "<<chi[ss+v]()(2)(0)-p_20<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(2)(1) << " bad "<<p_21<<" diff "<<chi[ss+v]()(2)(1)-p_21<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(2)(2) << " bad "<<p_22<<" diff "<<chi[ss+v]()(2)(2)-p_22<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(3)(0) << " bad "<<p_30<<" diff "<<chi[ss+v]()(3)(0)-p_30<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(3)(1) << " bad "<<p_31<<" diff "<<chi[ss+v]()(3)(1)-p_31<<std::endl;
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std::cout << ss<<" "<< v<< " good "<< chi[ss+v]()(3)(2) << " bad "<<p_32<<" diff "<<chi[ss+v]()(3)(2)-p_32<<std::endl;
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}
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*/
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vstream(chi[ss+v]()(0)(0),p_00);
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vstream(chi[ss+v]()(0)(1),p_01);
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vstream(chi[ss+v]()(0)(2),p_02);
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vstream(chi[ss+v]()(1)(0),p_10);
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vstream(chi[ss+v]()(1)(1),p_11);
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vstream(chi[ss+v]()(1)(2),p_12);
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vstream(chi[ss+v]()(2)(0),p_20);
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vstream(chi[ss+v]()(2)(1),p_21);
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vstream(chi[ss+v]()(2)(2),p_22);
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vstream(chi[ss+v]()(3)(0),p_30);
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vstream(chi[ss+v]()(3)(1),p_31);
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vstream(chi[ss+v]()(3)(2),p_32);
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}
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#endif
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}
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M5Dtime+=usecond();
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}
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@ -191,7 +287,6 @@ PARALLEL_FOR_LOOP
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}
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M5Dtime+=usecond();
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}
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template<class Impl>
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void CayleyFermion5D<Impl>::MooeeInternal(const FermionField &psi, FermionField &chi,int dag, int inv)
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{
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@ -130,7 +130,7 @@ class Grid_simd {
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Vector_type v;
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static inline int Nsimd(void) {
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static inline constexpr int Nsimd(void) {
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return sizeof(Vector_type) / sizeof(Scalar_type);
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}
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