2019-01-18 13:14:28 +00:00
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#ifndef Hadrons_MDistil_DistilVectors_hpp_
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#define Hadrons_MDistil_DistilVectors_hpp_
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#include <Hadrons/Global.hpp>
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#include <Hadrons/Module.hpp>
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#include <Hadrons/ModuleFactory.hpp>
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2019-01-21 16:04:18 +00:00
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#include <Hadrons/Solver.hpp>
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#include <Hadrons/EigenPack.hpp>
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#include <Hadrons/A2AVectors.hpp>
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#include <Hadrons/DilutedNoise.hpp>
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2019-01-22 17:59:55 +00:00
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// These are members of Distillation
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#include <Hadrons/Modules/MDistil/Distil.hpp>
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BEGIN_HADRONS_NAMESPACE
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2019-01-18 13:14:28 +00:00
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/******************************************************************************
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* DistilVectors *
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******************************************************************************/
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BEGIN_MODULE_NAMESPACE(MDistil)
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class DistilVectorsPar: Serializable
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{
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public:
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GRID_SERIALIZABLE_CLASS_MEMBERS(DistilVectorsPar,
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std::string, noise,
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std::string, perambulator,
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std::string, eigenPack,
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bool, multiFile,
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int, tsrc,
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int, nnoise,
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int, LI,
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int, SI,
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int, TI,
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int, nvec,
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int, Ns,
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int, Nt,
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int, Nt_inv);
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};
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template <typename FImpl>
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class TDistilVectors: public Module<DistilVectorsPar>
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{
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public:
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FERM_TYPE_ALIASES(FImpl,);
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public:
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// constructor
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TDistilVectors(const std::string name);
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// destructor
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virtual ~TDistilVectors(void) {};
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// dependency relation
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virtual std::vector<std::string> getInput(void);
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virtual std::vector<std::string> getOutput(void);
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// setup
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virtual void setup(void);
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// execution
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virtual void execute(void);
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};
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MODULE_REGISTER_TMP(DistilVectors, TDistilVectors<FIMPL>, MDistil);
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/******************************************************************************
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* TDistilVectors implementation *
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******************************************************************************/
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// constructor /////////////////////////////////////////////////////////////////
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template <typename FImpl>
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TDistilVectors<FImpl>::TDistilVectors(const std::string name)
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: Module<DistilVectorsPar>(name)
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{}
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// dependencies/products ///////////////////////////////////////////////////////
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template <typename FImpl>
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std::vector<std::string> TDistilVectors<FImpl>::getInput(void)
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{
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std::vector<std::string> in;
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in.push_back(par().noise);
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in.push_back(par().perambulator);
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in.push_back(par().eigenPack);
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return in;
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}
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template <typename FImpl>
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std::vector<std::string> TDistilVectors<FImpl>::getOutput(void)
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{
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std::vector<std::string> out = {getName() + "_rho", getName() + "_phi"};
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return out;
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}
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// setup ///////////////////////////////////////////////////////////////////////
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template <typename FImpl>
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void TDistilVectors<FImpl>::setup(void)
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{
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2019-01-28 12:24:47 +00:00
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//auto &noise = envGet(std::vector<std::vector<std::vector<SpinVector>>>, par().noise);
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auto &noise = envGet(std::vector<Complex>, par().noise);
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int nnoise=par().nnoise;
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int LI=par().LI;
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int Ns=par().Ns;
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int Nt_inv=par().Nt_inv;
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envCreate(std::vector<FermionField>, getName() + "_rho", 1,
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nnoise*LI*Ns*Nt_inv, envGetGrid(FermionField));
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envCreate(std::vector<FermionField>, getName() + "_phi", 1,
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nnoise*LI*Ns*Nt_inv, envGetGrid(FermionField));
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GridCartesian * grid4d = env().getGrid();
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std::vector<int> latt_size = GridDefaultLatt();
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std::vector<int> simd_layout = GridDefaultSimd(Nd, vComplex::Nsimd());
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std::vector<int> mpi_layout = GridDefaultMpi();
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std::vector<int> simd_layout_3 = GridDefaultSimd(Nd-1, vComplex::Nsimd());
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latt_size[Nd-1] = 1;
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simd_layout_3.push_back( 1 );
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mpi_layout[Nd-1] = 1;
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GridCartesian * grid3d = new GridCartesian(latt_size,simd_layout_3,mpi_layout,*grid4d);
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envTmp(LatticeSpinColourVector, "tmp2",1,LatticeSpinColourVector(grid4d));
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envTmp(LatticeColourVector, "tmp_nospin",1,LatticeColourVector(grid4d));
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envTmp(LatticeSpinColourVector, "tmp3d",1,LatticeSpinColourVector(grid3d));
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envTmp(LatticeColourVector, "tmp3d_nospin",1,LatticeColourVector(grid3d));
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envTmp(LatticeSpinColourVector, "sink_tslice",1,LatticeSpinColourVector(grid3d));
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envTmp(LatticeColourVector, "evec3d",1,LatticeColourVector(grid3d));
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}
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// execution ///////////////////////////////////////////////////////////////////
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template <typename FImpl>
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void TDistilVectors<FImpl>::execute(void)
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{
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2019-01-21 16:04:18 +00:00
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2019-01-23 13:58:20 +00:00
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//auto &noise = envGet(std::vector<std::vector<std::vector<SpinVector>>>, par().noise);
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auto &noise = envGet(std::vector<Complex>, par().noise);
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auto &perambulator = envGet(Perambulator<SpinVector COMMA 6>, par().perambulator);
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auto &epack = envGet(Grid::Hadrons::EigenPack<LatticeColourVector>, par().eigenPack);
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auto &rho = envGet(std::vector<FermionField>, getName() + "_rho");
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auto &phi = envGet(std::vector<FermionField>, getName() + "_phi");
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envGetTmp(LatticeSpinColourVector, tmp2);
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envGetTmp(LatticeColourVector, tmp_nospin);
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envGetTmp(LatticeSpinColourVector, tmp3d);
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envGetTmp(LatticeColourVector, tmp3d_nospin);
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envGetTmp(LatticeSpinColourVector, sink_tslice);
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envGetTmp(LatticeColourVector, evec3d);
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GridCartesian * grid4d = env().getGrid();
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int Ntlocal = grid4d->LocalDimensions()[3];
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int Ntfirst = grid4d->LocalStarts()[3];
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int tsrc=par().tsrc;
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int nnoise=par().nnoise;
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int LI=par().LI;
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int Ns=par().Ns;
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2019-01-31 16:54:11 +00:00
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int Nt_inv=par().Nt_inv; // TODO: No input, but define through Nt, TI
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int Nt=par().Nt;
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int TI=par().TI;
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int nvec=par().nvec;
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bool full_tdil=(TI==Nt);
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int vecindex;
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int t_inv;
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for (int inoise = 0; inoise < nnoise; inoise++) {
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for (int dk = 0; dk < LI; dk++) {
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for (int dt = 0; dt < Nt_inv; dt++) {
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for (int ds = 0; ds < Ns; ds++) {
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vecindex = inoise + nnoise * dk + nnoise * LI * ds + nnoise *LI * Ns*dt;
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rho[vecindex] = zero;
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tmp3d_nospin = zero;
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for (int it = dt; it < Nt; it += TI){
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if (full_tdil) t_inv = tsrc; else t_inv = it;
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if( t_inv >= Ntfirst && t_inv < Ntfirst + Ntlocal ) {
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for (int ik = dk; ik < nvec; ik += LI){
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for (int is = ds; is < Ns; is += Ns){ //at the moment, full spin dilution is enforced
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ExtractSliceLocal(evec3d,epack.evec[ik],0,t_inv,3);
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tmp3d_nospin = evec3d * noise[inoise + nnoise*(t_inv + Nt*(ik+nvec*is))];
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2019-01-23 13:58:20 +00:00
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//tmp3d_nospin = evec3d * noise[inoise][it][ik]()(is)(); //noises do not have to be a spin vector
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tmp3d=zero;
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pokeSpin(tmp3d,tmp3d_nospin,is);
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tmp2=zero;
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InsertSliceLocal(tmp3d,tmp2,0,t_inv-Ntfirst,Grid::QCD::Tdir);
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rho[vecindex] += tmp2;
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}
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}
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}
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}
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2019-01-30 11:20:22 +00:00
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SpinColourVector scv0;
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std::vector<int> siteFirst(grid4d->Nd(),0);
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peekSite(scv0, rho[vecindex], siteFirst);
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auto & cplx0 = scv0()(0)(0);
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std::cout << "site0[rho(vecindex = " << vecindex << ")] = " << cplx0 << std::endl;
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}
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}
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}
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}
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2019-01-22 13:27:51 +00:00
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for (int inoise = 0; inoise < nnoise; inoise++) {
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for (int dk = 0; dk < LI; dk++) {
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for (int dt = 0; dt < Nt_inv; dt++) {
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for (int ds = 0; ds < Ns; ds++) {
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vecindex = inoise + nnoise * dk + nnoise * LI * ds + nnoise *LI * Ns*dt;
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phi[vecindex] = zero;
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for (int t = Ntfirst; t < Ntfirst + Ntlocal; t++) {
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sink_tslice=zero;
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for (int ivec = 0; ivec < nvec; ivec++) {
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ExtractSliceLocal(evec3d,epack.evec[ivec],0,t,3);
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sink_tslice += evec3d * perambulator(t, ivec, dk, inoise,dt,ds);
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}
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InsertSliceLocal(sink_tslice,phi[vecindex],0,t-Ntfirst,Grid::QCD::Tdir);
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}
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2019-01-30 11:20:22 +00:00
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SpinColourVector scv0;
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std::vector<int> siteFirst(grid4d->Nd(),0);
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peekSite(scv0, phi[vecindex], siteFirst);
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auto & cplx0 = scv0()(0)(0);
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std::cout << "site0[phi(vecindex = " << vecindex << ")] = " << cplx0 << std::endl;
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}
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}
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}
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}
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2019-01-30 18:03:34 +00:00
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std::cout << "size rho" << rho.size() << std::endl;
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std::cout << "size phi" << phi.size() << std::endl;
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}
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END_MODULE_NAMESPACE
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END_HADRONS_NAMESPACE
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#endif // Hadrons_MDistil_DistilVectors_hpp_
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