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Adding ScalarField theory
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@ -47,6 +47,14 @@ namespace Grid {
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public:
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public:
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ScalarAction(RealD ms, RealD l) : mass_square(ms), lambda(l){};
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ScalarAction(RealD ms, RealD l) : mass_square(ms), lambda(l){};
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virtual std::string LogParameters(){
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std::stringstream sstream;
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sstream << GridLogMessage << "[ScalarAction] lambda : " << lambda << std::endl;
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sstream << GridLogMessage << "[ScalarAction] mass_square : " << mass_square << std::endl;
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return sstream.str();
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}
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virtual std::string action_name(){return "ScalarAction";}
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virtual std::string action_name(){return "ScalarAction";}
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@ -269,6 +269,9 @@ private:
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// here gauge
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// here gauge
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Read.push("Action");
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Read.push("Action");
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do{
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do{
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// I need to modify the Factory generator depending on the Implementation
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// Solution: pass the field as a template parameter
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//auto &ActionFactory = HMC_ScalarActionModuleFactory<gauge_string, ReaderClass>::getInstance();
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auto &ActionFactory = HMC_LGTActionModuleFactory<gauge_string, ReaderClass>::getInstance();
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auto &ActionFactory = HMC_LGTActionModuleFactory<gauge_string, ReaderClass>::getInstance();
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std::string action_type;
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std::string action_type;
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Read.readDefault("name", action_type);
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Read.readDefault("name", action_type);
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@ -85,6 +85,7 @@ class GridModule {
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};
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};
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// helpers
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// helpers
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// FIXME define a class accepting also real vtypes
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class GridFourDimModule : public GridModule {
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class GridFourDimModule : public GridModule {
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public:
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public:
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// add a function to create the module from a Reader
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// add a function to create the module from a Reader
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@ -487,6 +487,7 @@ class OneFlavourRatioEOFModule:
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// explicit ref to LatticeGaugeField must be changed or put in the factory
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// explicit ref to LatticeGaugeField must be changed or put in the factory
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typedef ActionModuleBase< QCD::Action< QCD::LatticeGaugeField >, QCD::GridModule > HMC_LGTActionModBase;
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typedef ActionModuleBase< QCD::Action< QCD::LatticeGaugeField >, QCD::GridModule > HMC_LGTActionModBase;
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typedef ActionModuleBase< QCD::Action< QCD::LatticeReal >, QCD::GridModule > HMC_ScalarActionModBase;
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template <char const *str, class ReaderClass >
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template <char const *str, class ReaderClass >
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class HMC_LGTActionModuleFactory
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class HMC_LGTActionModuleFactory
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@ -510,6 +511,28 @@ class HMC_LGTActionModuleFactory
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template <char const *str, class ReaderClass >
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class HMC_ScalarActionModuleFactory
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: public Factory < HMC_ScalarActionModBase , Reader<ReaderClass> > {
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public:
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typedef Reader<ReaderClass> TheReader;
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// use SINGLETON FUNCTOR MACRO HERE
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HMC_ScalarActionModuleFactory(const HMC_ScalarActionModuleFactory& e) = delete;
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void operator=(const HMC_ScalarActionModuleFactory& e) = delete;
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static HMC_ScalarActionModuleFactory& getInstance(void) {
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static HMC_ScalarActionModuleFactory e;
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return e;
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}
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private:
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HMC_ScalarActionModuleFactory(void) = default;
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std::string obj_type() const {
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return std::string(str);
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}
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};
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extern char gauge_string[];
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extern char gauge_string[];
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} // Grid
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} // Grid
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@ -4,12 +4,9 @@ Grid physics library, www.github.com/paboyle/Grid
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Source file: ./tests/Test_hmc_WilsonFermionGauge.cc
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Source file: ./tests/Test_hmc_WilsonFermionGauge.cc
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Copyright (C) 2015
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Copyright (C) 2016
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Author: Peter Boyle <pabobyle@ph.ed.ac.uk>
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Author: Guido Cossu <guido.cossu@ed.ac.uk>
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Author: Peter Boyle <paboyle@ph.ed.ac.uk>
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Author: neo <cossu@post.kek.jp>
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Author: paboyle <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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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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it under the terms of the GNU General Public License as published by
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@ -30,57 +27,73 @@ See the full license in the file "LICENSE" in the top level distribution directo
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/* END LEGAL */
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/* END LEGAL */
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#include <Grid/Grid.h>
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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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// Derive from the BinaryHmcRunner (templated for gauge fields)
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class HmcRunner : public ScalarBinaryHmcRunner {
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public:
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void BuildTheAction(int argc, char **argv)
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{
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// Notice that the Grid is for reals now
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UGrid = SpaceTimeGrid::makeFourDimGrid(
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GridDefaultLatt(), GridDefaultSimd(Nd, vReal::Nsimd()),
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GridDefaultMpi());
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UrbGrid = SpaceTimeGrid::makeFourDimRedBlackGrid(UGrid);
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// Real Scalar action
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ScalarActionR Saction(0.11,0.);
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// Collect actions
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ActionLevel<Field, ScalarFields> Level1(1);
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Level1.push_back(&Saction);
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TheAction.push_back(Level1);
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// Add observables and checkpointers
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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("ckpoint_scalar_lat");
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std::string rng_prefix = std::string("ckpoint_scalar_rng");
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BinaryHmcCheckpointer<ScalarBinaryHmcRunner::ImplPolicy> Checkpoint(conf_prefix, rng_prefix, SaveInterval, format);
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ObservablesList.push_back(&Checkpoint);
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Run(argc, argv, Checkpoint);
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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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int main(int argc, char **argv) {
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using namespace Grid;
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using namespace Grid::QCD;
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Grid_init(&argc, &argv);
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Grid_init(&argc, &argv);
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int threads = GridThread::GetThreads();
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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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// here make a routine to print all the relevant information on the run
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<< " threads" << std::endl;
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std::cout << GridLogMessage << "Grid is setup to use " << threads << " threads" << std::endl;
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// Typedefs to simplify notation
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typedef ScalarGenericHMCRunner HMCWrapper; // Uses the default minimum norm
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//::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::::
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HMCWrapper TheHMC;
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// Grid from the command line
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GridModule ScalarGrid;
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ScalarGrid.set_full( SpaceTimeGrid::makeFourDimGrid(
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GridDefaultLatt(), GridDefaultSimd(Nd, vReal::Nsimd()),
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GridDefaultMpi()));
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ScalarGrid.set_rb(SpaceTimeGrid::makeFourDimRedBlackGrid(ScalarGrid.get_full()));
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TheHMC.Resources.AddGrid("scalar", ScalarGrid);
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// Possibile to create the module by hand
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// hardcoding parameters or using a Reader
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// Checkpointer definition
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CheckpointerParameters CPparams;
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CPparams.config_prefix = "ckpoint_scalar_lat";
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CPparams.rng_prefix = "ckpoint_scalar_rng";
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CPparams.saveInterval = 5;
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CPparams.format = "IEEE64BIG";
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TheHMC.Resources.LoadBinaryCheckpointer(CPparams);
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RNGModuleParameters RNGpar;
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RNGpar.SerialSeed = {1,2,3,4,5};
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RNGpar.ParallelSeed = {6,7,8,9,10};
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TheHMC.Resources.SetRNGSeeds(RNGpar);
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//////////////////////////////////////////////
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/////////////////////////////////////////////////////////////
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// Collect actions, here use more encapsulation
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// need wrappers of the fermionic classes
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// that have a complex construction
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// standard
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// Real Scalar action
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ScalarActionR Saction(0.11,0.);
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// Collect actions
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ActionLevel<ScalarActionR::Field, ScalarFields> Level1(1);
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Level1.push_back(&Saction);
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TheHMC.TheAction.push_back(Level1);
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/////////////////////////////////////////////////////////////
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// HMC parameters are serialisable
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TheHMC.Parameters.MD.MDsteps = 20;
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TheHMC.Parameters.MD.trajL = 1.0;
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TheHMC.ReadCommandLine(argc, argv); // these can be parameters from file
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TheHMC.Run();
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Grid_finalize();
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} // main
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HmcRunner TheHMC;
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TheHMC.BuildTheAction(argc, argv);
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}
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