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	| Author | SHA1 | Date | |
|---|---|---|---|
| 
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					9bfd641b22 | ||
| 
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					be40aaf751 | ||
| 
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					e069fd5ed8 | 
@@ -52,6 +52,7 @@ Author: Peter Boyle <paboyle@ph.ed.ac.uk>
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#include <Grid/algorithms/CoarsenedMatrix.h>
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#include <Grid/algorithms/FFT.h>
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// EigCg
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// Pcg
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// Hdcg
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										186
									
								
								Grid/algorithms/iterative/Reconstruct5Dprop.h
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										186
									
								
								Grid/algorithms/iterative/Reconstruct5Dprop.h
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,186 @@
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    /*************************************************************************************
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    Grid physics library, www.github.com/paboyle/Grid 
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    Source file: ./lib/algorithms/iterative/SchurRedBlack.h
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    Copyright (C) 2015
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Author: Peter Boyle <paboyle@ph.ed.ac.uk>
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    This program is free software; you can redistribute it and/or modify
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    it under the terms of the GNU General Public License as published by
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    the Free Software Foundation; either version 2 of the License, or
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		||||
    (at your option) any later version.
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    This program is distributed in the hope that it will be useful,
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    but WITHOUT ANY WARRANTY; without even the implied warranty of
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		||||
    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 | 
			
		||||
    GNU General Public License for more details.
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    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.,
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		||||
    51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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    See the full license in the file "LICENSE" in the top level distribution directory
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    *************************************************************************************/
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    /*  END LEGAL */
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#pragma once
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namespace Grid {
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namespace QCD {
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template<class Field>
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class PauliVillarsSolverUnprec
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{
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 public:
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  ConjugateGradient<Field> & CG;
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  PauliVillarsSolverUnprec(  ConjugateGradient<Field> &_CG) : CG(_CG){};
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  template<class Matrix>
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  void operator() (Matrix &_Matrix,const Field &src,Field &sol)
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  {
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    RealD m = _Matrix.Mass();
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    Field A  (_Matrix.FermionGrid());
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    MdagMLinearOperator<Matrix,Field> HermOp(_Matrix);
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    _Matrix.SetMass(1.0);
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    _Matrix.Mdag(src,A);
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    CG(HermOp,A,sol);
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    _Matrix.SetMass(m);
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  };
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};
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template<class Field>
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class PauliVillarsSolverRBprec
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{
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 public:
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  ConjugateGradient<Field> & CG;
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  PauliVillarsSolverRBprec(  ConjugateGradient<Field> &_CG) : CG(_CG){};
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  template<class Matrix>
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  void operator() (Matrix &_Matrix,const Field &src,Field &sol)
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  {
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    RealD m = _Matrix.Mass();
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    Field A  (_Matrix.FermionGrid());
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    _Matrix.SetMass(1.0);
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    SchurRedBlackDiagMooeeSolve<Field> SchurSolver(CG);
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    SchurSolver(_Matrix,src,sol);
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    _Matrix.SetMass(m);
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  };
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};
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template<class Field,class PVinverter> class Reconstruct5DfromPhysical {
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 private:
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  PVinverter & PauliVillarsSolver;
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 public:
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 /////////////////////////////////////////////////////
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 // First cut works, 10 Oct 2018.
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 //
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 // Must form a plan to get this into production for Zmobius acceleration
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 // of the Mobius exact AMA corrections.
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 //
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 // TODO : understand absence of contact term in eqns in Hantao's thesis
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 //        sol4 is contact term subtracted.
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 //
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 // Options
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 // a) Defect correction approach:
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 //    1) Compute defect from current soln (initially guess).
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 //       This is ...... outerToInner check !!!!
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 //    2) Deflated Zmobius solve to get 4d soln
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 //       Ensure deflation is working
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 //    3) Refine 5d Outer using the inner 4d delta soln
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 // 
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 // Step 1: localise PV inverse in a routine. [DONE]
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 // Step 2: Schur based PV inverse            [DONE]
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 // Step 3: Fourier accelerated PV inverse
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 // Step 4: 
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 /////////////////////////////////////////////////////
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  Reconstruct5DfromPhysical(PVinverter &_PauliVillarsSolver) 
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    : PauliVillarsSolver(_PauliVillarsSolver) 
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  { 
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  };
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   template<class Matrix>
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   void PV(Matrix &_Matrix,const Field &src,Field &sol)
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   {
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     RealD m = _Matrix.Mass();
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     _Matrix.SetMass(1.0);
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     _Matrix.M(src,sol);
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     _Matrix.SetMass(m);
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   }
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   template<class Matrix>
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   void PVdag(Matrix &_Matrix,const Field &src,Field &sol)
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   {
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     RealD m = _Matrix.Mass();
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     _Matrix.SetMass(1.0);
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     _Matrix.Mdag(src,sol);
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     _Matrix.SetMass(m);
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   }
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  template<class Matrix>
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  void operator() (Matrix & _Matrix,const Field &sol4,const Field &src4, Field &sol5){
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    int Ls =  _Matrix.Ls;
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    Field psi4(_Matrix.GaugeGrid());
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    Field psi(_Matrix.FermionGrid());
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    Field A  (_Matrix.FermionGrid());
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    Field B  (_Matrix.FermionGrid());
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    Field c  (_Matrix.FermionGrid());
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    typedef typename Matrix::Coeff_t Coeff_t;
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    std::cout << GridLogMessage<< " ************************************************" << std::endl;
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    std::cout << GridLogMessage<< " Reconstruct5Dprop: c.f. MADWF algorithm         " << std::endl;
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    std::cout << GridLogMessage<< " ************************************************" << std::endl;
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    ///////////////////////////////////////
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    //Import source, include Dminus factors
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    ///////////////////////////////////////
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    _Matrix.ImportPhysicalFermionSource(src4,B); 
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    ///////////////////////////////////////
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    // Set up c from src4
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    ///////////////////////////////////////
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    PauliVillarsSolver(_Matrix,B,A);
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    _Matrix.Pdag(A,c);
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    //////////////////////////////////////
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    // Build Pdag PV^-1 Dm P [-sol4,c2,c3... cL]
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    //////////////////////////////////////
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    psi4 = - sol4;
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    InsertSlice(psi4, psi, 0   , 0);
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    for (int s=1;s<Ls;s++) {
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      ExtractSlice(psi4,c,s,0);
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       InsertSlice(psi4,psi,s,0);
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    }
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    /////////////////////////////
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    // Pdag PV^-1 Dm P 
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    /////////////////////////////
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    _Matrix.P(psi,B);
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    _Matrix.M(B,A);
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    PauliVillarsSolver(_Matrix,A,B);
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    _Matrix.Pdag(B,A);
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    //////////////////////////////
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    // Reinsert surface prop
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    //////////////////////////////
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    InsertSlice(sol4,A,0,0);
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    //////////////////////////////
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    // Convert from y back to x 
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    //////////////////////////////
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    _Matrix.P(A,sol5);
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  }
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};
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}
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}
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@@ -68,6 +68,26 @@ void CayleyFermion5D<Impl>::ExportPhysicalFermionSolution(const FermionField &so
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  ExtractSlice(exported4d, tmp, 0, 0);
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}
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template<class Impl>  
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void CayleyFermion5D<Impl>::P(const FermionField &psi, FermionField &chi)
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{
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  int Ls= this->Ls;
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  chi=zero;
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  for(int s=0;s<Ls;s++){
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    axpby_ssp_pminus(chi,1.0,chi,1.0,psi,s,s);
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    axpby_ssp_pplus (chi,1.0,chi,1.0,psi,s,(s+1)%Ls);
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  }
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}
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template<class Impl>  
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void CayleyFermion5D<Impl>::Pdag(const FermionField &psi, FermionField &chi)
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{
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  int Ls= this->Ls;
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  chi=zero;
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  for(int s=0;s<Ls;s++){
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    axpby_ssp_pminus(chi,1.0,chi,1.0,psi,s,s);
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    axpby_ssp_pplus (chi,1.0,chi,1.0,psi,s,(s-1+Ls)%Ls);
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  }
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}
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template<class Impl>  
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void CayleyFermion5D<Impl>::ExportPhysicalFermionSource(const FermionField &solution5d,FermionField &exported4d)
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{
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  int Ls = this->Ls;
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@@ -93,6 +93,14 @@ namespace Grid {
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      virtual void ImportPhysicalFermionSource(const FermionField &input4d,FermionField &imported5d);
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      virtual void ImportUnphysicalFermion(const FermionField &solution5d, FermionField &exported4d);
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      ///////////////////////////////////////////////////////////////
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      // Support for MADWF tricks
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      ///////////////////////////////////////////////////////////////
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      RealD Mass(void) { return mass; };
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      void  SetMass(RealD _mass) { mass=_mass; } ;
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      void  P(const FermionField &psi, FermionField &chi);
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      void  Pdag(const FermionField &psi, FermionField &chi);
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      /////////////////////////////////////////////////////
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      // Instantiate different versions depending on Impl
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      /////////////////////////////////////////////////////
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@@ -68,6 +68,7 @@ namespace Grid {
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      virtual int    ConstEE(void) { return 1; }; // clover returns zero as EE depends on gauge field
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      virtual int    isTrivialEE(void) { return 0; };
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      virtual RealD  Mass(void) {return 0.0;};
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      virtual void SetMass(RealD _mass) { return; };
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      // half checkerboard operaions
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      virtual void   Meooe       (const FermionField &in, FermionField &out)=0;
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@@ -27,6 +27,7 @@ Author: paboyle <paboyle@ph.ed.ac.uk>
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    *************************************************************************************/
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    /*  END LEGAL */
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#include <Grid/Grid.h>
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#include <Grid/algorithms/iterative/Reconstruct5Dprop.h>
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using namespace std;
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using namespace Grid;
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@@ -75,6 +76,14 @@ void  TestCGprec(What & Ddwf,
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		 GridParallelRNG *RNG4,
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		 GridParallelRNG *RNG5);
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template<class What> 
 | 
			
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void  TestReconstruct5D(What & Ddwf, 
 | 
			
		||||
			GridCartesian         * FGrid,	       GridRedBlackCartesian * FrbGrid,
 | 
			
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			GridCartesian         * UGrid,	       GridRedBlackCartesian * UrbGrid,
 | 
			
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			RealD mass, RealD M5,
 | 
			
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			GridParallelRNG *RNG4,
 | 
			
		||||
			GridParallelRNG *RNG5);
 | 
			
		||||
 | 
			
		||||
int main (int argc, char ** argv)
 | 
			
		||||
{
 | 
			
		||||
  Grid_init(&argc,&argv);
 | 
			
		||||
@@ -152,6 +161,9 @@ void  TestCGinversions(What & Ddwf,
 | 
			
		||||
  TestCGprec<What>(Ddwf,FGrid,FrbGrid,UGrid,UrbGrid,mass,M5,RNG4,RNG5);
 | 
			
		||||
  std::cout<<GridLogMessage << "Testing red black Schur inverter"<<std::endl;
 | 
			
		||||
  TestCGschur<What>(Ddwf,FGrid,FrbGrid,UGrid,UrbGrid,mass,M5,RNG4,RNG5);
 | 
			
		||||
 | 
			
		||||
  std::cout<<GridLogMessage << "Testing 5D PV reconstruction"<<std::endl;
 | 
			
		||||
  TestReconstruct5D<What>(Ddwf,FGrid,FrbGrid,UGrid,UrbGrid,mass,M5,RNG4,RNG5);
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
template<class What> 
 | 
			
		||||
@@ -189,6 +201,53 @@ void  TestCGprec(What & Ddwf,
 | 
			
		||||
  CG(HermOpEO,src_o,result_o);
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
template<class What> 
 | 
			
		||||
void  TestReconstruct5D(What & Ddwf, 
 | 
			
		||||
			GridCartesian         * FGrid,	       GridRedBlackCartesian * FrbGrid,
 | 
			
		||||
			GridCartesian         * UGrid,	       GridRedBlackCartesian * UrbGrid,
 | 
			
		||||
			RealD mass, RealD M5,
 | 
			
		||||
			GridParallelRNG *RNG4,
 | 
			
		||||
			GridParallelRNG *RNG5)
 | 
			
		||||
{
 | 
			
		||||
  LatticeFermion src4   (UGrid); random(*RNG4,src4);
 | 
			
		||||
  LatticeFermion res4   (UGrid); res4 = zero;
 | 
			
		||||
 | 
			
		||||
  LatticeFermion src   (FGrid);
 | 
			
		||||
  LatticeFermion src_NE(FGrid);
 | 
			
		||||
  LatticeFermion result(FGrid);
 | 
			
		||||
  LatticeFermion result_rec(FGrid);
 | 
			
		||||
 | 
			
		||||
  MdagMLinearOperator<What,LatticeFermion> HermOp(Ddwf);
 | 
			
		||||
  ConjugateGradient<LatticeFermion> CG(1.0e-12,10000);
 | 
			
		||||
 | 
			
		||||
  Ddwf.ImportPhysicalFermionSource(src4,src);
 | 
			
		||||
  Ddwf.Mdag(src,src_NE);
 | 
			
		||||
  CG(HermOp,src_NE,result);
 | 
			
		||||
 | 
			
		||||
  Ddwf.ExportPhysicalFermionSolution(result, res4);
 | 
			
		||||
 | 
			
		||||
  Ddwf.M(result,src_NE);
 | 
			
		||||
  src_NE = src_NE - src;
 | 
			
		||||
  std::cout <<GridLogMessage<< " True residual is " << norm2(src_NE)<<std::endl;
 | 
			
		||||
 | 
			
		||||
  std::cout <<GridLogMessage<< " Reconstructing " <<std::endl;
 | 
			
		||||
 | 
			
		||||
  //  typedef PauliVillarsSolverUnprec<LatticeFermion> PVinverter;
 | 
			
		||||
  typedef PauliVillarsSolverRBprec<LatticeFermion> PVinverter;
 | 
			
		||||
  PVinverter PVinverse(CG);
 | 
			
		||||
  Reconstruct5DfromPhysical<LatticeFermion,PVinverter> reconstructor(PVinverse);
 | 
			
		||||
 | 
			
		||||
  reconstructor(Ddwf,res4,src4,result_rec);
 | 
			
		||||
 | 
			
		||||
  std::cout <<GridLogMessage << "Result     "<<norm2(result)<<std::endl;
 | 
			
		||||
  std::cout <<GridLogMessage << "Result_rec "<<norm2(result_rec)<<std::endl;
 | 
			
		||||
 | 
			
		||||
  result_rec = result_rec - result;
 | 
			
		||||
  std::cout <<GridLogMessage << "Difference "<<norm2(result_rec)<<std::endl;
 | 
			
		||||
 | 
			
		||||
}
 | 
			
		||||
 | 
			
		||||
 | 
			
		||||
 | 
			
		||||
template<class What> 
 | 
			
		||||
void  TestCGschur(What & Ddwf, 
 | 
			
		||||
 
 | 
			
		||||
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