2016-01-02 14:51:32 +00:00
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/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: ./tests/Test_dwf_lanczos.cc
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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
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along
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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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2016-07-07 22:31:07 +01:00
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#include <Grid/Grid.h>
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2015-09-23 13:23:45 +01:00
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using namespace std;
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using namespace Grid;
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2018-01-15 09:37:58 +00:00
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;
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2015-09-23 13:23:45 +01:00
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2016-03-08 06:49:16 +00:00
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typedef typename GparityDomainWallFermionR::FermionField FermionField;
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2016-01-25 06:26:25 +00:00
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RealD AllZero(RealD x){ return 0.;}
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2015-09-23 13:23:45 +01:00
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int main (int argc, char ** argv)
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{
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Grid_init(&argc,&argv);
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const int Ls=8;
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GridCartesian * UGrid = SpaceTimeGrid::makeFourDimGrid(GridDefaultLatt(), GridDefaultSimd(Nd,vComplex::Nsimd()),GridDefaultMpi());
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GridRedBlackCartesian * UrbGrid = SpaceTimeGrid::makeFourDimRedBlackGrid(UGrid);
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GridCartesian * FGrid = SpaceTimeGrid::makeFiveDimGrid(Ls,UGrid);
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GridRedBlackCartesian * FrbGrid = SpaceTimeGrid::makeFiveDimRedBlackGrid(Ls,UGrid);
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2016-02-20 07:50:32 +00:00
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printf("UGrid=%p UrbGrid=%p FGrid=%p FrbGrid=%p\n",UGrid,UrbGrid,FGrid,FrbGrid);
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2015-09-23 13:23:45 +01:00
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std::vector<int> seeds4({1,2,3,4});
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std::vector<int> seeds5({5,6,7,8});
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GridParallelRNG RNG5(FGrid); RNG5.SeedFixedIntegers(seeds5);
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GridParallelRNG RNG4(UGrid); RNG4.SeedFixedIntegers(seeds4);
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2016-02-20 07:50:32 +00:00
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GridParallelRNG RNG5rb(FrbGrid); RNG5.SeedFixedIntegers(seeds5);
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2015-09-23 13:23:45 +01:00
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LatticeGaugeField Umu(UGrid);
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2020-10-07 18:07:00 +01:00
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SU<Nc>::HotConfiguration(RNG4, Umu);
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2015-09-23 13:23:45 +01:00
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std::vector<LatticeColourMatrix> U(4,UGrid);
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for(int mu=0;mu<Nd;mu++){
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U[mu] = PeekIndex<LorentzIndex>(Umu,mu);
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}
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2016-02-20 07:50:32 +00:00
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RealD mass=0.01;
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2015-09-23 13:23:45 +01:00
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RealD M5=1.8;
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2016-03-08 06:49:16 +00:00
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RealD mob_b=1.5;
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// DomainWallFermionR Ddwf(Umu,*FGrid,*FrbGrid,*UGrid,*UrbGrid,mass,M5);
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GparityMobiusFermionD ::ImplParams params;
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std::vector<int> twists({1,1,1,0});
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params.twists = twists;
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GparityMobiusFermionR Ddwf(Umu,*FGrid,*FrbGrid,*UGrid,*UrbGrid,mass,M5,mob_b,mob_b-1.,params);
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2015-09-23 13:23:45 +01:00
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2016-02-20 07:50:32 +00:00
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// MdagMLinearOperator<DomainWallFermionR,LatticeFermion> HermOp(Ddwf);
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// SchurDiagTwoOperator<DomainWallFermionR,LatticeFermion> HermOp(Ddwf);
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2016-03-08 06:49:16 +00:00
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SchurDiagTwoOperator<GparityMobiusFermionR,FermionField> HermOp(Ddwf);
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// SchurDiagMooeeOperator<DomainWallFermionR,LatticeFermion> HermOp(Ddwf);
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2015-09-23 13:23:45 +01:00
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2016-01-11 16:36:45 +00:00
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const int Nstop = 30;
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const int Nk = 40;
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2016-02-20 07:50:32 +00:00
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const int Np = 40;
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2015-10-08 23:39:21 +01:00
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const int Nm = Nk+Np;
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const int MaxIt= 10000;
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RealD resid = 1.0e-8;
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2015-09-23 13:23:45 +01:00
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2016-02-20 07:50:32 +00:00
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std::vector<double> Coeffs { 0.,-1.};
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2016-03-08 06:49:16 +00:00
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Polynomial<FermionField> PolyX(Coeffs);
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2017-10-13 14:02:43 +01:00
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Chebyshev<FermionField> Cheby(0.2,5.,11);
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FunctionHermOp<FermionField> OpCheby(Cheby,HermOp);
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PlainHermOp<FermionField> Op (HermOp);
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ImplicitlyRestartedLanczos<FermionField> IRL(OpCheby,Op,Nstop,Nk,Nm,resid,MaxIt);
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2015-09-23 13:23:45 +01:00
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2015-10-08 23:39:21 +01:00
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std::vector<RealD> eval(Nm);
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2017-06-21 02:26:03 +01:00
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FermionField src(FrbGrid);
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gaussian(RNG5rb,src);
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2016-03-08 06:49:16 +00:00
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std::vector<FermionField> evec(Nm,FrbGrid);
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2016-02-20 07:50:32 +00:00
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for(int i=0;i<1;i++){
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2018-01-27 00:04:12 +00:00
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std::cout << GridLogMessage <<i<<" / "<< Nm<< " grid pointer "<<evec[i].Grid()<<std::endl;
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2016-02-20 07:50:32 +00:00
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};
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2015-10-08 23:39:21 +01:00
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int Nconv;
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2017-06-21 02:26:03 +01:00
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IRL.calc(eval,evec,src,Nconv);
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2015-09-23 13:23:45 +01:00
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Grid_finalize();
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}
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