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https://github.com/paboyle/Grid.git
synced 2024-11-10 07:55:35 +00:00
Merge with upstream; implemented conserved tadpole for Shamir action.
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commit
895244ecc3
@ -122,8 +122,8 @@ template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &r
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assert(shift<fd);
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int buffer_size = rhs.Grid()->_slice_nblock[dimension]*rhs.Grid()->_slice_block[dimension];
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cshiftVector<vobj> send_buf(buffer_size);
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cshiftVector<vobj> recv_buf(buffer_size);
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static cshiftVector<vobj> send_buf; send_buf.resize(buffer_size);
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static cshiftVector<vobj> recv_buf; recv_buf.resize(buffer_size);
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int cb= (cbmask==0x2)? Odd : Even;
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int sshift= rhs.Grid()->CheckerBoardShiftForCB(rhs.Checkerboard(),dimension,shift,cb);
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@ -198,8 +198,8 @@ template<class vobj> void Cshift_comms_simd(Lattice<vobj> &ret,const Lattice<vo
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int buffer_size = grid->_slice_nblock[dimension]*grid->_slice_block[dimension];
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// int words = sizeof(vobj)/sizeof(vector_type);
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std::vector<cshiftVector<scalar_object> > send_buf_extract(Nsimd);
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std::vector<cshiftVector<scalar_object> > recv_buf_extract(Nsimd);
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static std::vector<cshiftVector<scalar_object> > send_buf_extract; send_buf_extract.resize(Nsimd);
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static std::vector<cshiftVector<scalar_object> > recv_buf_extract; recv_buf_extract.resize(Nsimd);
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scalar_object * recv_buf_extract_mpi;
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scalar_object * send_buf_extract_mpi;
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@ -294,8 +294,8 @@ template<class vobj> void Cshift_comms(Lattice<vobj> &ret,const Lattice<vobj> &r
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assert(shift<fd);
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int buffer_size = rhs.Grid()->_slice_nblock[dimension]*rhs.Grid()->_slice_block[dimension];
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cshiftVector<vobj> send_buf_v(buffer_size);
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cshiftVector<vobj> recv_buf_v(buffer_size);
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static cshiftVector<vobj> send_buf_v; send_buf_v.resize(buffer_size);
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static cshiftVector<vobj> recv_buf_v; recv_buf_v.resize(buffer_size);
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vobj *send_buf;
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vobj *recv_buf;
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{
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@ -381,8 +381,8 @@ template<class vobj> void Cshift_comms_simd(Lattice<vobj> &ret,const Lattice<vo
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int buffer_size = grid->_slice_nblock[dimension]*grid->_slice_block[dimension];
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// int words = sizeof(vobj)/sizeof(vector_type);
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std::vector<cshiftVector<scalar_object> > send_buf_extract(Nsimd);
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std::vector<cshiftVector<scalar_object> > recv_buf_extract(Nsimd);
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static std::vector<cshiftVector<scalar_object> > send_buf_extract; send_buf_extract.resize(Nsimd);
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static std::vector<cshiftVector<scalar_object> > recv_buf_extract; recv_buf_extract.resize(Nsimd);
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scalar_object * recv_buf_extract_mpi;
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scalar_object * send_buf_extract_mpi;
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{
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@ -72,19 +72,23 @@ public:
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StaggeredImpl(const ImplParams &p = ImplParams()) : Params(p){};
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static accelerator_inline void multLink(SiteSpinor &phi,
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template<class _Spinor>
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static accelerator_inline void multLink(_Spinor &phi,
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const SiteDoubledGaugeField &U,
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const SiteSpinor &chi,
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const _Spinor &chi,
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int mu)
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{
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mult(&phi(), &U(mu), &chi());
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auto UU = coalescedRead(U(mu));
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mult(&phi(), &UU, &chi());
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}
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static accelerator_inline void multLinkAdd(SiteSpinor &phi,
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template<class _Spinor>
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static accelerator_inline void multLinkAdd(_Spinor &phi,
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const SiteDoubledGaugeField &U,
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const SiteSpinor &chi,
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const _Spinor &chi,
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int mu)
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{
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mac(&phi(), &U(mu), &chi());
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auto UU = coalescedRead(U(mu));
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mac(&phi(), &UU, &chi());
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}
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template <class ref>
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@ -184,18 +184,22 @@ public:
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mat = TraceIndex<SpinIndex>(P);
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}
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inline void extractLinkField(std::vector<GaugeLinkField> &mat, DoubledGaugeField &Uds){
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inline void extractLinkField(std::vector<GaugeLinkField> &mat, DoubledGaugeField &Uds)
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{
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for (int mu = 0; mu < Nd; mu++)
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mat[mu] = PeekIndex<LorentzIndex>(Uds, mu);
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}
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inline void InsertForce5D(GaugeField &mat, FermionField &Btilde, FermionField Ã,int mu){
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inline void InsertForce5D(GaugeField &mat, FermionField &Btilde, FermionField Ã,int mu)
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{
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#undef USE_OLD_INSERT_FORCE
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int Ls=Btilde.Grid()->_fdimensions[0];
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autoView( mat_v , mat, AcceleratorWrite);
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#ifdef USE_OLD_INSERT_FORCE
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GaugeLinkField tmp(mat.Grid());
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tmp = Zero();
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{
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const int Nsimd = SiteSpinor::Nsimd();
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autoView( tmp_v , tmp, AcceleratorWrite);
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autoView( Btilde_v , Btilde, AcceleratorRead);
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autoView( Atilde_v , Atilde, AcceleratorRead);
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@ -208,6 +212,29 @@ public:
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});
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}
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PokeIndex<LorentzIndex>(mat,tmp,mu);
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#else
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{
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const int Nsimd = SiteSpinor::Nsimd();
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autoView( Btilde_v , Btilde, AcceleratorRead);
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autoView( Atilde_v , Atilde, AcceleratorRead);
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accelerator_for(sss,mat.Grid()->oSites(),Nsimd,{
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int sU=sss;
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typedef decltype(coalescedRead(mat_v[sU](mu)() )) ColorMatrixType;
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ColorMatrixType sum;
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zeroit(sum);
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for(int s=0;s<Ls;s++){
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int sF = s+Ls*sU;
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for(int spn=0;spn<Ns;spn++){ //sum over spin
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auto bb = coalescedRead(Btilde_v[sF]()(spn) ); //color vector
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auto aa = coalescedRead(Atilde_v[sF]()(spn) );
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auto op = outerProduct(bb,aa);
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sum = sum + op;
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}
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}
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coalescedWrite(mat_v[sU](mu)(), sum);
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});
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}
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#endif
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}
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};
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@ -35,39 +35,32 @@ NAMESPACE_BEGIN(Grid);
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#define GENERIC_STENCIL_LEG(U,Dir,skew,multLink) \
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SE = st.GetEntry(ptype, Dir+skew, sF); \
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if (SE->_is_local ) { \
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if (SE->_permute) { \
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chi_p = χ \
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permute(chi, in[SE->_offset], ptype); \
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} else { \
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chi_p = &in[SE->_offset]; \
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} \
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int perm= SE->_permute; \
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chi = coalescedReadPermute(in[SE->_offset],ptype,perm,lane);\
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} else { \
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chi_p = &buf[SE->_offset]; \
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chi = coalescedRead(buf[SE->_offset],lane); \
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} \
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multLink(Uchi, U[sU], *chi_p, Dir);
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acceleratorSynchronise(); \
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multLink(Uchi, U[sU], chi, Dir);
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#define GENERIC_STENCIL_LEG_INT(U,Dir,skew,multLink) \
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SE = st.GetEntry(ptype, Dir+skew, sF); \
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if (SE->_is_local ) { \
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if (SE->_permute) { \
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chi_p = χ \
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permute(chi, in[SE->_offset], ptype); \
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} else { \
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chi_p = &in[SE->_offset]; \
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} \
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int perm= SE->_permute; \
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chi = coalescedReadPermute(in[SE->_offset],ptype,perm,lane);\
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} else if ( st.same_node[Dir] ) { \
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chi_p = &buf[SE->_offset]; \
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chi = coalescedRead(buf[SE->_offset],lane); \
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} \
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if (SE->_is_local || st.same_node[Dir] ) { \
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multLink(Uchi, U[sU], *chi_p, Dir); \
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multLink(Uchi, U[sU], chi, Dir); \
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}
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#define GENERIC_STENCIL_LEG_EXT(U,Dir,skew,multLink) \
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SE = st.GetEntry(ptype, Dir+skew, sF); \
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if ((!SE->_is_local) && (!st.same_node[Dir]) ) { \
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nmu++; \
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chi_p = &buf[SE->_offset]; \
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multLink(Uchi, U[sU], *chi_p, Dir); \
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chi = coalescedRead(buf[SE->_offset],lane); \
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multLink(Uchi, U[sU], chi, Dir); \
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}
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template <class Impl>
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@ -84,12 +77,14 @@ void StaggeredKernels<Impl>::DhopSiteGeneric(StencilView &st,
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SiteSpinor *buf, int sF, int sU,
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const FermionFieldView &in, FermionFieldView &out, int dag)
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{
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const SiteSpinor *chi_p;
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SiteSpinor chi;
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SiteSpinor Uchi;
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typedef decltype(coalescedRead(in[0])) calcSpinor;
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calcSpinor chi;
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calcSpinor Uchi;
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StencilEntry *SE;
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int ptype;
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int skew;
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const int Nsimd = SiteHalfSpinor::Nsimd();
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const int lane=acceleratorSIMTlane(Nsimd);
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// for(int s=0;s<LLs;s++){
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//
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@ -118,7 +113,7 @@ void StaggeredKernels<Impl>::DhopSiteGeneric(StencilView &st,
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if ( dag ) {
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Uchi = - Uchi;
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}
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vstream(out[sF], Uchi);
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coalescedWrite(out[sF], Uchi,lane);
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}
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};
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@ -130,13 +125,16 @@ template <int Naik> accelerator_inline
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void StaggeredKernels<Impl>::DhopSiteGenericInt(StencilView &st,
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DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,
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SiteSpinor *buf, int sF, int sU,
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const FermionFieldView &in, FermionFieldView &out,int dag) {
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const SiteSpinor *chi_p;
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SiteSpinor chi;
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SiteSpinor Uchi;
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const FermionFieldView &in, FermionFieldView &out,int dag)
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{
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typedef decltype(coalescedRead(in[0])) calcSpinor;
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calcSpinor chi;
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calcSpinor Uchi;
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StencilEntry *SE;
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int ptype;
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int skew ;
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const int Nsimd = SiteHalfSpinor::Nsimd();
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const int lane=acceleratorSIMTlane(Nsimd);
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// for(int s=0;s<LLs;s++){
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// int sF=LLs*sU+s;
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@ -165,7 +163,7 @@ void StaggeredKernels<Impl>::DhopSiteGenericInt(StencilView &st,
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if ( dag ) {
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Uchi = - Uchi;
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}
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vstream(out[sF], Uchi);
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coalescedWrite(out[sF], Uchi,lane);
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}
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};
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@ -178,14 +176,17 @@ template <int Naik> accelerator_inline
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void StaggeredKernels<Impl>::DhopSiteGenericExt(StencilView &st,
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DoubledGaugeFieldView &U, DoubledGaugeFieldView &UUU,
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SiteSpinor *buf, int sF, int sU,
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const FermionFieldView &in, FermionFieldView &out,int dag) {
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const SiteSpinor *chi_p;
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// SiteSpinor chi;
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SiteSpinor Uchi;
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const FermionFieldView &in, FermionFieldView &out,int dag)
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{
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typedef decltype(coalescedRead(in[0])) calcSpinor;
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calcSpinor chi;
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calcSpinor Uchi;
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StencilEntry *SE;
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int ptype;
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int nmu=0;
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int skew ;
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const int Nsimd = SiteHalfSpinor::Nsimd();
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const int lane=acceleratorSIMTlane(Nsimd);
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// for(int s=0;s<LLs;s++){
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// int sF=LLs*sU+s;
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@ -212,10 +213,11 @@ void StaggeredKernels<Impl>::DhopSiteGenericExt(StencilView &st,
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GENERIC_STENCIL_LEG_EXT(UUU,Tm,skew,Impl::multLinkAdd);
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}
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if ( nmu ) {
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auto _out = coalescedRead(out[sF],lane);
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if ( dag ) {
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out[sF] = out[sF] - Uchi;
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coalescedWrite(out[sF], _out-Uchi,lane);
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} else {
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out[sF] = out[sF] + Uchi;
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coalescedWrite(out[sF], _out+Uchi,lane);
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}
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}
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}
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@ -261,6 +263,8 @@ void StaggeredKernels<Impl>::DhopImproved(StencilImpl &st, LebesgueOrder &lo,
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GridBase *FGrid=in.Grid();
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GridBase *UGrid=U.Grid();
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typedef StaggeredKernels<Impl> ThisKernel;
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const int Nsimd = SiteHalfSpinor::Nsimd();
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const int lane=acceleratorSIMTlane(Nsimd);
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autoView( UUU_v , UUU, AcceleratorRead);
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autoView( U_v , U, AcceleratorRead);
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autoView( in_v , in, AcceleratorRead);
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@ -301,6 +305,8 @@ void StaggeredKernels<Impl>::DhopNaive(StencilImpl &st, LebesgueOrder &lo,
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GridBase *FGrid=in.Grid();
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GridBase *UGrid=U.Grid();
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typedef StaggeredKernels<Impl> ThisKernel;
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const int Nsimd = SiteHalfSpinor::Nsimd();
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const int lane=acceleratorSIMTlane(Nsimd);
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autoView( UUU_v , U, AcceleratorRead);
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autoView( U_v , U, AcceleratorRead);
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autoView( in_v , in, AcceleratorRead);
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@ -34,6 +34,16 @@ NAMESPACE_BEGIN(Grid);
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// outerProduct Scalar x Scalar -> Scalar
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// Vector x Vector -> Matrix
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///////////////////////////////////////////////////////////////////////////////////////
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template<class CC,IfComplex<CC> = 0>
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accelerator_inline CC outerProduct(const CC &l, const CC& r)
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{
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return l*conj(r);
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}
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template<class RR,IfReal<RR> = 0>
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accelerator_inline RR outerProduct(const RR &l, const RR& r)
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{
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return l*r;
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}
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template<class l,class r,int N> accelerator_inline
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auto outerProduct (const iVector<l,N>& lhs,const iVector<r,N>& rhs) -> iMatrix<decltype(outerProduct(lhs._internal[0],rhs._internal[0])),N>
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@ -57,17 +67,6 @@ auto outerProduct (const iScalar<l>& lhs,const iScalar<r>& rhs) -> iScalar<declt
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return ret;
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}
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template<class CC,IfComplex<CC> = 0>
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accelerator_inline CC outerProduct(const CC &l, const CC& r)
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{
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return l*conj(r);
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}
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template<class RR,IfReal<RR> = 0>
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accelerator_inline RR outerProduct(const RR &l, const RR& r)
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{
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return l*r;
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}
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NAMESPACE_END(Grid);
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#endif
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