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Added a test for EODWF Scaled Shamir with general HMC
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tests: Test_hmc_EODWFRatio Test_hmc_EODWFRatio_Gparity Test_hmc_EOWilsonFermionGauge Test_hmc_EOWilsonRatio Test_hmc_GparityIwasakiGauge Test_hmc_GparityWilsonGauge Test_hmc_IwasakiGauge Test_hmc_RectGauge Test_hmc_ScalarAction Test_hmc_WilsonAdjointFermionGauge Test_hmc_WilsonFermionGauge_Binary Test_hmc_WilsonFermionGauge Test_hmc_WilsonGauge Test_hmc_WilsonMixedRepresentationsFermionGauge Test_hmc_WilsonRatio Test_hmc_WilsonTwoIndexSymmetricFermionGauge Test_multishift_sqrt Test_remez Test_rhmc_EOWilson1p1 Test_rhmc_EOWilsonRatio Test_rhmc_Wilson1p1 Test_rhmc_WilsonRatio
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EXTRA_PROGRAMS = Test_hmc_EODWFRatio Test_hmc_EODWFRatio_Gparity Test_hmc_EOWilsonFermionGauge Test_hmc_EOWilsonRatio Test_hmc_GparityIwasakiGauge Test_hmc_GparityWilsonGauge Test_hmc_IwasakiGauge Test_hmc_RectGauge Test_hmc_ScalarAction Test_hmc_WilsonAdjointFermionGauge Test_hmc_WilsonFermionGauge_Binary Test_hmc_WilsonFermionGauge Test_hmc_WilsonGauge Test_hmc_WilsonMixedRepresentationsFermionGauge Test_hmc_WilsonRatio Test_hmc_WilsonTwoIndexSymmetricFermionGauge Test_multishift_sqrt Test_remez Test_rhmc_EOWilson1p1 Test_rhmc_EOWilsonRatio Test_rhmc_Wilson1p1 Test_rhmc_WilsonRatio
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tests: Test_hmc_EODWFRatio_Binary Test_hmc_EODWFRatio Test_hmc_EODWFRatio_Gparity Test_hmc_EOWilsonFermionGauge Test_hmc_EOWilsonRatio Test_hmc_GparityIwasakiGauge Test_hmc_GparityWilsonGauge Test_hmc_IwasakiGauge Test_hmc_RectGauge Test_hmc_ScalarAction Test_hmc_WilsonAdjointFermionGauge Test_hmc_WilsonFermionGauge_Binary Test_hmc_WilsonFermionGauge Test_hmc_WilsonGauge Test_hmc_WilsonMixedRepresentationsFermionGauge Test_hmc_WilsonRatio Test_hmc_WilsonTwoIndexSymmetricFermionGauge Test_multishift_sqrt Test_remez Test_rhmc_EOWilson1p1 Test_rhmc_EOWilsonRatio Test_rhmc_Wilson1p1 Test_rhmc_WilsonRatio
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EXTRA_PROGRAMS = Test_hmc_EODWFRatio_Binary Test_hmc_EODWFRatio Test_hmc_EODWFRatio_Gparity Test_hmc_EOWilsonFermionGauge Test_hmc_EOWilsonRatio Test_hmc_GparityIwasakiGauge Test_hmc_GparityWilsonGauge Test_hmc_IwasakiGauge Test_hmc_RectGauge Test_hmc_ScalarAction Test_hmc_WilsonAdjointFermionGauge Test_hmc_WilsonFermionGauge_Binary Test_hmc_WilsonFermionGauge Test_hmc_WilsonGauge Test_hmc_WilsonMixedRepresentationsFermionGauge Test_hmc_WilsonRatio Test_hmc_WilsonTwoIndexSymmetricFermionGauge Test_multishift_sqrt Test_remez Test_rhmc_EOWilson1p1 Test_rhmc_EOWilsonRatio Test_rhmc_Wilson1p1 Test_rhmc_WilsonRatio
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Test_hmc_EODWFRatio_Binary_SOURCES=Test_hmc_EODWFRatio_Binary.cc
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Test_hmc_EODWFRatio_Binary_LDADD=-lGrid
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Test_hmc_EODWFRatio_SOURCES=Test_hmc_EODWFRatio.cc
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Test_hmc_EODWFRatio_LDADD=-lGrid
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tests/hmc/Test_hmc_EODWFRatio_Binary.cc
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tests/hmc/Test_hmc_EODWFRatio_Binary.cc
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/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: ./tests/Test_hmc_WilsonFermionGauge.cc
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Copyright (C) 2015
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Author: Peter Boyle <pabobyle@ph.ed.ac.uk>
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Author: neo <cossu@post.kek.jp>
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Author: Guido Cossu <guido.cossu@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
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directory
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*************************************************************************************/
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/* END LEGAL */
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#include <Grid/Grid.h>
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using namespace std;
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using namespace Grid;
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using namespace Grid::QCD;
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namespace Grid {
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namespace QCD {
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class HMCRunnerParameters : Serializable {
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public:
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GRID_SERIALIZABLE_CLASS_MEMBERS(HMCRunnerParameters,
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double, beta,
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double, mass,
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int, MaxCGIterations,
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double, StoppingCondition,
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bool, smearedAction,
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int, SaveInterval,
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std::string, format,
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std::string, conf_prefix,
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std::string, rng_prefix,
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double, rho,
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int, SmearingLevels,
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);
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HMCRunnerParameters() {}
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};
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// Derive from the BinaryHmcRunner (templated for gauge fields)
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class HmcRunner : public BinaryHmcRunner {
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public:
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void BuildTheAction(int argc, char **argv)
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{
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typedef WilsonImplR ImplPolicy;
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typedef ScaledShamirFermionR FermionAction;
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typedef typename FermionAction::FermionField FermionField;
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const int Ls = 12;
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UGrid = SpaceTimeGrid::makeFourDimGrid(GridDefaultLatt(), GridDefaultSimd(Nd,vComplex::Nsimd()),GridDefaultMpi());
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UrbGrid = SpaceTimeGrid::makeFourDimRedBlackGrid(UGrid);
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FGrid = SpaceTimeGrid::makeFiveDimGrid(Ls,UGrid);
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FrbGrid = SpaceTimeGrid::makeFiveDimRedBlackGrid(Ls,UGrid);
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// temporarily need a gauge field
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LatticeGaugeField U(UGrid);
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// Gauge action
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IwasakiGaugeActionR Iaction(4.0);
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Real mass = 0.04;
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Real pv = 1.0;
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RealD M5 = 1.5;
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RealD scale = 2.0;
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FermionAction DenOp(U,*FGrid,*FrbGrid,*UGrid,*UrbGrid,mass,M5,scale);
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FermionAction NumOp(U,*FGrid,*FrbGrid,*UGrid,*UrbGrid,pv,M5,scale);
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ConjugateGradient<FermionField> CG(1.0e-8,10000);
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TwoFlavourEvenOddRatioPseudoFermionAction<ImplPolicy> Nf2(NumOp, DenOp,CG,CG);
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// Set smearing (true/false), default: false
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Nf2.is_smeared = true;
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// Collect actions
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// here an example of 2 level integration
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ActionLevel<Field> Level1(1);
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Level1.push_back(&Nf2);
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ActionLevel<Field> Level2(4);
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Level2.push_back(&Iaction);
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TheAction.push_back(Level1);
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TheAction.push_back(Level2);
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// Add observables
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int SaveInterval = 1;
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std::string format = std::string("IEEE64BIG");
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std::string conf_prefix = std::string("DWF_ckpoint_lat");
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std::string rng_prefix = std::string("DWF_ckpoint_rng");
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BinaryHmcCheckpointer<BinaryHmcRunner::ImplPolicy> Checkpoint(
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conf_prefix, rng_prefix, SaveInterval, format);
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// Can implement also a specific function in the hmcrunner
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// AddCheckpoint (...) that takes the same parameters + a string/tag
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// defining the type of the checkpointer
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// with tags can be implemented by overloading and no ifs
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// Then force all checkpoint to have few common functions
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// return an object that is then passed to the Run function
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PlaquetteLogger<BinaryHmcRunner::ImplPolicy> PlaqLog(
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std::string("Plaquette"));
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ObservablesList.push_back(&PlaqLog);
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ObservablesList.push_back(&Checkpoint);
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// Smearing section, omit if not needed
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double rho = 0.1; // smearing parameter
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int Nsmear = 2; // number of smearing levels
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Smear_Stout<BinaryHmcRunner::ImplPolicy> Stout(rho);
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SmearedConfiguration<BinaryHmcRunner::ImplPolicy> SmearingPolicy(
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UGrid, Nsmear, Stout);
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///////////////////
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Run(argc, argv, Checkpoint, SmearingPolicy);
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//Run(argc, argv, Checkpoint); // no smearing
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};
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};
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}
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}
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int main(int argc, char **argv) {
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Grid_init(&argc, &argv);
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int threads = GridThread::GetThreads();
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std::cout << GridLogMessage << "Grid is setup to use " << threads
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<< " threads" << std::endl;
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HmcRunner TheHMC;
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// Seeds for the random number generators
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std::vector<int> SerSeed({1, 2, 3, 4, 5});
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std::vector<int> ParSeed({6, 7, 8, 9, 10});
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TheHMC.RNGSeeds(SerSeed, ParSeed);
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TheHMC.MDparameters.set(20, 1.0);// MDsteps, traj length
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TheHMC.BuildTheAction(argc, argv);
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}
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