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187 lines
6.6 KiB
C++
187 lines
6.6 KiB
C++
/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: Hadrons/Archive/Modules/TestSeqConserved.hpp
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Copyright (C) 2015-2019
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Author: Antonin Portelli <antonin.portelli@me.com>
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Author: Lanny91 <andrew.lawson@gmail.com>
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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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#ifndef Hadrons_MUtilities_TestSeqConserved_hpp_
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#define Hadrons_MUtilities_TestSeqConserved_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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BEGIN_HADRONS_NAMESPACE
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/*
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Ward Identity contractions using sequential propagators.
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-----------------------------
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* options:
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- q: point source propagator, 5D if available (string)
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- qSeq: result of sequential insertion of conserved current using q (string)
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- action: action used for computation of q (string)
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- origin: string giving point source origin of q (string)
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- t_J: time at which sequential current is inserted (int)
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- mu: Lorentz index of current inserted (int)
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- curr: current type, e.g. vector/axial (Current)
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*/
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/******************************************************************************
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* TestSeqConserved *
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******************************************************************************/
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BEGIN_MODULE_NAMESPACE(MUtilities)
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class TestSeqConservedPar: Serializable
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{
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public:
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GRID_SERIALIZABLE_CLASS_MEMBERS(TestSeqConservedPar,
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std::string, q,
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std::string, qSeq,
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std::string, action,
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std::string, origin,
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unsigned int, t_J,
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unsigned int, mu,
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Current, curr);
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};
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template <typename FImpl>
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class TTestSeqConserved: public Module<TestSeqConservedPar>
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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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TTestSeqConserved(const std::string name);
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// destructor
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virtual ~TTestSeqConserved(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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protected:
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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(TestSeqConserved, TTestSeqConserved<FIMPL>, MUtilities);
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/******************************************************************************
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* TTestSeqConserved implementation *
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******************************************************************************/
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// constructor /////////////////////////////////////////////////////////////////
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template <typename FImpl>
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TTestSeqConserved<FImpl>::TTestSeqConserved(const std::string name)
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: Module<TestSeqConservedPar>(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> TTestSeqConserved<FImpl>::getInput(void)
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{
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std::vector<std::string> in = {par().q, par().qSeq, par().action};
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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> TTestSeqConserved<FImpl>::getOutput(void)
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{
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std::vector<std::string> out = {getName()};
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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 TTestSeqConserved<FImpl>::setup(void)
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{
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auto Ls = env().getObjectLs(par().q);
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if (Ls != env().getObjectLs(par().action))
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{
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HADRONS_ERROR(Size, "Ls mismatch between quark action and propagator");
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}
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envTmpLat(PropagatorField, "tmp");
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envTmpLat(LatticeComplex, "c");
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}
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// execution ///////////////////////////////////////////////////////////////////
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template <typename FImpl>
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void TTestSeqConserved<FImpl>::execute(void)
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{
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// Check sequential insertion of current gives same result as conserved
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// current sink upon contraction. Assume q uses a point source.
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auto &q = envGet(PropagatorField, par().q);
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auto &qSeq = envGet(PropagatorField, par().qSeq);
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auto &act = envGet(FMat, par().action);
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Gamma g5(Gamma::Algebra::Gamma5);
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Gamma::Algebra gA = (par().curr == Current::Axial) ?
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Gamma::Algebra::Gamma5 :
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Gamma::Algebra::Identity;
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Gamma g(gA);
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SitePropagator qSite;
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Complex test_S, test_V, check_S, check_V;
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std::vector<TComplex> check_buf;
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std::vector<int> siteCoord;
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envGetTmp(PropagatorField, tmp);
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envGetTmp(LatticeComplex, c);
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siteCoord = strToVec<int>(par().origin);
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peekSite(qSite, qSeq, siteCoord);
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test_S = trace(qSite*g);
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test_V = trace(qSite*g*Gamma::gmu[par().mu]);
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act.ContractConservedCurrent(q, q, tmp, par().curr, par().mu);
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c = trace(tmp*g);
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sliceSum(c, check_buf, Tp);
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check_S = TensorRemove(check_buf[par().t_J]);
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c = trace(tmp*g*Gamma::gmu[par().mu]);
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sliceSum(c, check_buf, Tp);
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check_V = TensorRemove(check_buf[par().t_J]);
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LOG(Message) << "Test S = " << abs(test_S) << std::endl;
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LOG(Message) << "Test V = " << abs(test_V) << std::endl;
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LOG(Message) << "Check S = " << abs(check_S) << std::endl;
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LOG(Message) << "Check V = " << abs(check_V) << std::endl;
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// Check difference = 0
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check_S -= test_S;
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check_V -= test_V;
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LOG(Message) << "Consistency check for sequential conserved "
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<< par().curr << " current insertion: " << std::endl;
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LOG(Message) << "Diff S = " << abs(check_S) << std::endl;
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LOG(Message) << "Diff V = " << abs(check_V) << 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_TestSeqConserved_hpp_
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