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21de6f7da8
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feature/ft
Author | SHA1 | Date | |
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bffd30abec | |||
da919949f9 | |||
b12b4fdaff |
@ -91,6 +91,7 @@ public:
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////////////////////////////////////////////////////////////////
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virtual int CheckerBoarded(int dim)=0;
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virtual int CheckerBoard(const Coordinate &site)=0;
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virtual int CheckerDim(void){ return 0; };
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virtual int CheckerBoardDestination(int source_cb,int shift,int dim)=0;
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virtual int CheckerBoardShift(int source_cb,int dim,int shift,int osite)=0;
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virtual int CheckerBoardShiftForCB(int source_cb,int dim,int shift,int cb)=0;
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@ -60,6 +60,7 @@ public:
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int _checker_dim;
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std::vector<int> _checker_board;
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virtual int CheckerDim(void){ return _checker_dim; };
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virtual int CheckerBoarded(int dim){
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if( dim==_checker_dim) return 1;
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else return 0;
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@ -42,50 +42,21 @@ inline void subdivides(GridBase *coarse,GridBase *fine)
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assert((fine->_rdimensions[d] / coarse->_rdimensions[d])* coarse->_rdimensions[d]==fine->_rdimensions[d]);
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}
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}
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////////////////////////////////////////////////////////////////////////////////////////////
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// remove and insert a half checkerboard
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////////////////////////////////////////////////////////////////////////////////////////////
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template<class vobj> inline void pickCheckerboard(int cb,Lattice<vobj> &half,const Lattice<vobj> &full)
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{
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half.Checkerboard() = cb;
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autoView( half_v, half, CpuWrite);
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autoView( full_v, full, CpuRead);
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thread_for(ss, full.Grid()->oSites(),{
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int cbos;
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Coordinate coor;
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full.Grid()->oCoorFromOindex(coor,ss);
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cbos=half.Grid()->CheckerBoard(coor);
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if (cbos==cb) {
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int ssh=half.Grid()->oIndex(coor);
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half_v[ssh] = full_v[ss];
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}
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});
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acceleratorPickCheckerboard(cb,half,full);
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}
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template<class vobj> inline void setCheckerboard(Lattice<vobj> &full,const Lattice<vobj> &half)
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{
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int cb = half.Checkerboard();
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autoView( half_v , half, CpuRead);
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autoView( full_v , full, CpuWrite);
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thread_for(ss,full.Grid()->oSites(),{
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Coordinate coor;
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int cbos;
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full.Grid()->oCoorFromOindex(coor,ss);
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cbos=half.Grid()->CheckerBoard(coor);
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if (cbos==cb) {
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int ssh=half.Grid()->oIndex(coor);
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full_v[ss]=half_v[ssh];
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}
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});
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acceleratorSetCheckerboard(full,half);
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}
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template<class vobj> inline void acceleratorPickCheckerboard(int cb,Lattice<vobj> &half,const Lattice<vobj> &full, int checker_dim_half=0)
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template<class vobj> inline void acceleratorPickCheckerboard(int cb,Lattice<vobj> &half,const Lattice<vobj> &full, int dummy=0)
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{
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half.Checkerboard() = cb;
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autoView(half_v, half, AcceleratorWrite);
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@ -95,6 +66,7 @@ template<class vobj> inline void acceleratorPickCheckerboard(int cb,Lattice<vobj
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unsigned long ndim_half = half.Grid()->_ndimension;
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Coordinate checker_dim_mask_half = half.Grid()->_checker_dim_mask;
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Coordinate ostride_half = half.Grid()->_ostride;
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int checker_dim_half = half.Grid()->CheckerDim();
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accelerator_for(ss, full.Grid()->oSites(),full.Grid()->Nsimd(),{
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Coordinate coor;
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@ -119,7 +91,7 @@ template<class vobj> inline void acceleratorPickCheckerboard(int cb,Lattice<vobj
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}
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});
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}
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template<class vobj> inline void acceleratorSetCheckerboard(Lattice<vobj> &full,const Lattice<vobj> &half, int checker_dim_half=0)
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template<class vobj> inline void acceleratorSetCheckerboard(Lattice<vobj> &full,const Lattice<vobj> &half, int dummy=0)
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{
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int cb = half.Checkerboard();
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autoView(half_v , half, AcceleratorRead);
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@ -129,6 +101,7 @@ template<class vobj> inline void acceleratorSetCheckerboard(Lattice<vobj> &full,
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unsigned long ndim_half = half.Grid()->_ndimension;
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Coordinate checker_dim_mask_half = half.Grid()->_checker_dim_mask;
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Coordinate ostride_half = half.Grid()->_ostride;
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int checker_dim_half = half.Grid()->CheckerDim();
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accelerator_for(ss,full.Grid()->oSites(),full.Grid()->Nsimd(),{
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Coordinate coor;
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@ -32,7 +32,9 @@ private:
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// Smear_Stout<Gimpl> *StoutSmearing;
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// std::vector<GaugeField> SmearedSet;
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GridRedBlackCartesian * UrbGrid; // keep a copy of the redblack grid for life of object
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std::vector<LatticeLorentzComplex> masks;
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std::vector<int> cbs;
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typedef typename SU3Adjoint::AMatrix AdjMatrix;
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typedef typename SU3Adjoint::LatticeAdjMatrix AdjMatrixField;
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@ -147,6 +149,25 @@ private:
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}
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pokeLorentz(Fdet, Fdet_pol, nu);
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}
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void Compute_MpInvJx_dNxxdSy(int cb,
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const GaugeLinkField &PlaqL,
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const GaugeLinkField &PlaqR,
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AdjMatrixField MpInvJx,
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AdjVectorField &Fdet2 )
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{
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GaugeLinkField PlaqLeo(UrbGrid);
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GaugeLinkField PlaqReo(UrbGrid);
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AdjMatrixField MpInvJxeo(UrbGrid);
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AdjVectorField Fdet2eo(UrbGrid);
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pickCheckerboard(cb,PlaqLeo,PlaqL);
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pickCheckerboard(cb,PlaqReo,PlaqR);
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pickCheckerboard(cb,MpInvJxeo,MpInvJx);
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Fdet2eo.Checkerboard()=cb;
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Compute_MpInvJx_dNxxdSy(PlaqLeo,PlaqReo,MpInvJxeo,Fdet2eo);
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setCheckerboard(Fdet2,Fdet2eo);
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}
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void Compute_MpInvJx_dNxxdSy(const GaugeLinkField &PlaqL,const GaugeLinkField &PlaqR, AdjMatrixField MpInvJx,AdjVectorField &Fdet2 )
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{
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GaugeLinkField UtaU(PlaqL.Grid());
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@ -278,8 +299,9 @@ public:
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////////////////////////////////////////////////////////////////////////////////
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// Mask the gauge field
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////////////////////////////////////////////////////////////////////////////////
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int cb = cbs[smr];
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auto mask=PeekIndex<LorentzIndex>(masks[smr],mu); // the cb mask
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Umsk = U;
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ApplyMask(Umsk,smr);
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Utmp = peekLorentz(Umsk,mu);
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@ -442,7 +464,7 @@ public:
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AdjMatrixField MpInvJx_nu(grid);
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MpInvJx = (-1.0)*MpAdInv * JxAd;// rho is on the plaq factor
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx,FdetV);
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Fdet2_mu=FdetV;
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Fdet1_mu=Zero();
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@ -499,7 +521,7 @@ public:
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time=-usecond();
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PlaqR=(-1.0)*PlaqR;
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx,FdetV);
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Fdet2_nu = FdetV;
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time+=usecond();
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std::cout << GridLogMessage << "Compute_MpInvJx_dNxxSy (occurs 6x) took "<<time<< " us"<<std::endl;
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@ -520,7 +542,7 @@ public:
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MpInvJx_nu = Cshift(MpInvJx,mu,-1);
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Fdet2_nu = Fdet2_nu+FdetV;
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///////////////// -ve nu /////////////////
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@ -539,7 +561,7 @@ public:
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Fdet1_nu = Fdet1_nu + transpose(Nxy)*dJdXe_nMpInv_y;
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MpInvJx_nu = Cshift(MpInvJx,nu,1);
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Fdet2_nu = Fdet2_nu+FdetV;
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// x==
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@ -560,7 +582,7 @@ public:
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MpInvJx_nu = Cshift(MpInvJx,mu,-1);
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MpInvJx_nu = Cshift(MpInvJx_nu,nu,1);
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Fdet2_nu = Fdet2_nu+FdetV;
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/////////////////////////////////////////////////////////////////////
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@ -589,7 +611,7 @@ public:
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MpInvJx_nu = Cshift(MpInvJx,nu,-1);
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Fdet2_mu = Fdet2_mu+FdetV;
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// __
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@ -609,7 +631,7 @@ public:
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MpInvJx_nu = Cshift(MpInvJx,nu,1);
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Compute_MpInvJx_dNxxdSy(PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Compute_MpInvJx_dNxxdSy(cb,PlaqL,PlaqR,MpInvJx_nu,FdetV);
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Fdet2_mu = Fdet2_mu+FdetV;
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}
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@ -931,6 +953,10 @@ private:
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public:
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/* Standard constructor */
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virtual ~SmearedConfigurationMasked()
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{
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delete UrbGrid;
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}
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SmearedConfigurationMasked(GridCartesian* _UGrid, unsigned int Nsmear, Smear_Stout<Gimpl>& Stout)
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: SmearedConfiguration<Gimpl>(_UGrid, Nsmear,Stout)
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{
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@ -939,7 +965,6 @@ public:
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// was resized in base class
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assert(this->SmearedSet.size()==Nsmear);
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GridRedBlackCartesian * UrbGrid;
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UrbGrid = SpaceTimeGrid::makeFourDimRedBlackGrid(_UGrid);
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LatticeComplex one(_UGrid); one = ComplexD(1.0,0.0);
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LatticeComplex tmp(_UGrid);
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@ -947,10 +972,11 @@ public:
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for (unsigned int i = 0; i < this->smearingLevels; ++i) {
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masks.push_back(*(new LatticeLorentzComplex(_UGrid)));
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int mu= (i/2) %Nd;
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int cb= (i%2);
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LatticeComplex tmpcb(UrbGrid);
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cbs.push_back(cb);
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masks[i]=Zero();
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////////////////////
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@ -962,7 +988,6 @@ public:
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PokeIndex<LorentzIndex>(masks[i],tmp, mu);
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}
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delete UrbGrid;
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}
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virtual void smeared_force(GaugeField &SigmaTilde)
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@ -418,32 +418,32 @@ static void LieAlgebraProject(LatticeAlgebraMatrix &out,const LatticeMatrix &in,
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int hNNm1= NNm1/2;
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RealD sqrt_2 = sqrt(2.0);
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Complex ci(0.0,1.0);
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for(int su2Index=0;su2Index<hNNm1;su2Index++){
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int i1, i2;
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su2SubGroupIndex(i1, i2, su2Index);
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int ax = su2Index*2;
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int ay = su2Index*2+1;
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accelerator_for(ss,grid->oSites(),1,{
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const int nsimd= Matrix::Nsimd();
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accelerator_for(ss,grid->oSites(),nsimd,{
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for(int su2Index=0;su2Index<hNNm1;su2Index++){
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int i1, i2;
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su2SubGroupIndex(i1, i2, su2Index);
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int ax = su2Index*2;
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int ay = su2Index*2+1;
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// in is traceless ANTI-hermitian whereas Grid generators are Hermitian.
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// trace( Ta x Ci in)
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// Bet I need to move to real part with mult by -i
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out_v[ss]()()(ax,b) = 0.5*(real(in_v[ss]()()(i2,i1)) - real(in_v[ss]()()(i1,i2)));
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out_v[ss]()()(ay,b) = 0.5*(imag(in_v[ss]()()(i1,i2)) + imag(in_v[ss]()()(i2,i1)));
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});
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}
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for(int diagIndex=0;diagIndex<N-1;diagIndex++){
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int k = diagIndex + 1; // diagIndex starts from 0
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int a = NNm1+diagIndex;
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RealD scale = 1.0/sqrt(2.0*k*(k+1));
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accelerator_for(ss,grid->oSites(),vComplex::Nsimd(),{
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auto tmp = in_v[ss]()()(0,0);
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coalescedWrite(out_v[ss]()()(ax,b),0.5*(real(in_v(ss)()()(i2,i1)) - real(in_v(ss)()()(i1,i2))));
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coalescedWrite(out_v[ss]()()(ay,b),0.5*(imag(in_v(ss)()()(i1,i2)) + imag(in_v(ss)()()(i2,i1))));
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}
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for(int diagIndex=0;diagIndex<N-1;diagIndex++){
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int k = diagIndex + 1; // diagIndex starts from 0
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int a = NNm1+diagIndex;
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RealD scale = 1.0/sqrt(2.0*k*(k+1));
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auto tmp = in_v(ss)()()(0,0);
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for(int i=1;i<k;i++){
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tmp=tmp+in_v[ss]()()(i,i);
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tmp=tmp+in_v(ss)()()(i,i);
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}
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tmp = tmp - in_v[ss]()()(k,k)*k;
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out_v[ss]()()(a,b) =imag(tmp) * scale;
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});
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}
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tmp = tmp - in_v(ss)()()(k,k)*k;
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coalescedWrite(out_v[ss]()()(a,b),imag(tmp) * scale);
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}
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});
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}
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@ -118,7 +118,7 @@ static void generatorDiagonal(int diagIndex, iGroupMatrix<cplx> &ta) {
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////////////////////////////////////////////////////////////////////////
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// Map a su2 subgroup number to the pair of rows that are non zero
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////////////////////////////////////////////////////////////////////////
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static void su2SubGroupIndex(int &i1, int &i2, int su2_index, GroupName::SU) {
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static accelerator_inline void su2SubGroupIndex(int &i1, int &i2, int su2_index, GroupName::SU) {
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assert((su2_index >= 0) && (su2_index < (ncolour * (ncolour - 1)) / 2));
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int spare = su2_index;
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