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CompactWilsonClover5D
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Grid/qcd/action/fermion/CompactWilsonCloverFermion5D.h
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196
Grid/qcd/action/fermion/CompactWilsonCloverFermion5D.h
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@ -0,0 +1,196 @@
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/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: ./lib/qcd/action/fermion/CompactWilsonCloverFermion5D.h
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Copyright (C) 2020 - 2025
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Author: Daniel Richtmann <daniel.richtmann@gmail.com>
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Author: Nils Meyer <nils.meyer@ur.de>
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Author: Christoph Lehner <christoph@lhnr.de>
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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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#pragma once
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#include <Grid/qcd/action/fermion/WilsonFermion5D.h>
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#include <Grid/qcd/action/fermion/WilsonCloverTypes.h>
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#include <Grid/qcd/action/fermion/WilsonCloverHelpers.h>
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#include <Grid/qcd/action/fermion/CloverHelpers.h>
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NAMESPACE_BEGIN(Grid);
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// see Grid/qcd/action/fermion/CompactWilsonCloverFermion.h for description
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template<class Impl, class CloverHelpers>
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class CompactWilsonCloverFermion5D : public WilsonFermion5D<Impl>,
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public WilsonCloverHelpers<Impl>,
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public CompactWilsonCloverHelpers<Impl> {
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/////////////////////////////////////////////
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// Sizes
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/////////////////////////////////////////////
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public:
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INHERIT_COMPACT_CLOVER_SIZES(Impl);
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/////////////////////////////////////////////
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// Type definitions
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/////////////////////////////////////////////
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public:
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INHERIT_IMPL_TYPES(Impl);
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INHERIT_CLOVER_TYPES(Impl);
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INHERIT_COMPACT_CLOVER_TYPES(Impl);
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typedef WilsonFermion5D<Impl> WilsonBase;
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typedef WilsonCloverHelpers<Impl> Helpers;
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typedef CompactWilsonCloverHelpers<Impl> CompactHelpers;
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/////////////////////////////////////////////
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// Constructors
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/////////////////////////////////////////////
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public:
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CompactWilsonCloverFermion5D(GaugeField& _Umu,
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GridCartesian &FiveDimGrid,
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GridRedBlackCartesian &FiveDimRedBlackGrid,
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GridCartesian &FourDimGrid,
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GridRedBlackCartesian &FourDimRedBlackGrid,
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const RealD _mass,
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const RealD _csw_r = 0.0,
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const RealD _csw_t = 0.0,
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const RealD _cF = 1.0,
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const ImplParams& impl_p = ImplParams());
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/////////////////////////////////////////////
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// Member functions (implementing interface)
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/////////////////////////////////////////////
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public:
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virtual void Instantiatable() {};
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int ConstEE() override { return 0; };
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int isTrivialEE() override { return 0; };
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void Dhop(const FermionField& in, FermionField& out, int dag) override;
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void DhopOE(const FermionField& in, FermionField& out, int dag) override;
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void DhopEO(const FermionField& in, FermionField& out, int dag) override;
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void DhopDir(const FermionField& in, FermionField& out, int dir, int disp) override;
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void DhopDirAll(const FermionField& in, std::vector<FermionField>& out) /* override */;
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void M(const FermionField& in, FermionField& out) override;
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void Mdag(const FermionField& in, FermionField& out) override;
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void Meooe(const FermionField& in, FermionField& out) override;
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void MeooeDag(const FermionField& in, FermionField& out) override;
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void Mooee(const FermionField& in, FermionField& out) override;
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void MooeeDag(const FermionField& in, FermionField& out) override;
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void MooeeInv(const FermionField& in, FermionField& out) override;
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void MooeeInvDag(const FermionField& in, FermionField& out) override;
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void Mdir(const FermionField& in, FermionField& out, int dir, int disp) override;
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void MdirAll(const FermionField& in, std::vector<FermionField>& out) override;
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void MDeriv(GaugeField& force, const FermionField& X, const FermionField& Y, int dag) override;
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void MooDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) override;
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void MeeDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) override;
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/////////////////////////////////////////////
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// Member functions (internals)
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/////////////////////////////////////////////
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void MooeeInternal(const FermionField& in,
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FermionField& out,
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const CloverDiagonalField& diagonal,
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const CloverTriangleField& triangle);
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/////////////////////////////////////////////
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// Helpers
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/////////////////////////////////////////////
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void ImportGauge(const GaugeField& _Umu) override;
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/////////////////////////////////////////////
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// Helpers
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/////////////////////////////////////////////
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private:
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template<class Field>
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const MaskField* getCorrectMaskField(const Field &in) const {
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if(in.Grid()->_isCheckerBoarded) {
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if(in.Checkerboard() == Odd) {
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return &this->BoundaryMaskOdd;
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} else {
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return &this->BoundaryMaskEven;
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}
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} else {
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return &this->BoundaryMask;
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}
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}
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template<class Field>
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void ApplyBoundaryMask(Field& f) {
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const MaskField* m = getCorrectMaskField(f); assert(m != nullptr);
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assert(m != nullptr);
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CompactHelpers::ApplyBoundaryMask(f, *m);
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}
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/////////////////////////////////////////////
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// Member Data
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/////////////////////////////////////////////
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public:
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RealD csw_r;
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RealD csw_t;
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RealD cF;
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int n_rhs;
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bool fixedBoundaries;
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CloverDiagonalField Diagonal, DiagonalEven, DiagonalOdd;
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CloverDiagonalField DiagonalInv, DiagonalInvEven, DiagonalInvOdd;
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CloverTriangleField Triangle, TriangleEven, TriangleOdd;
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CloverTriangleField TriangleInv, TriangleInvEven, TriangleInvOdd;
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FermionField Tmp;
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MaskField BoundaryMask, BoundaryMaskEven, BoundaryMaskOdd;
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};
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NAMESPACE_END(Grid);
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@ -55,6 +55,7 @@ NAMESPACE_CHECK(Wilson);
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NAMESPACE_CHECK(WilsonTM);
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#include <Grid/qcd/action/fermion/WilsonCloverFermion.h> // 4d wilson clover fermions
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#include <Grid/qcd/action/fermion/CompactWilsonCloverFermion.h> // 4d compact wilson clover fermions
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#include <Grid/qcd/action/fermion/CompactWilsonCloverFermion5D.h> // 5d compact wilson clover fermions
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NAMESPACE_CHECK(WilsonClover);
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#include <Grid/qcd/action/fermion/WilsonFermion5D.h> // 5d base used by all 5d overlap types
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NAMESPACE_CHECK(Wilson5D);
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@ -164,12 +165,17 @@ typedef WilsonClover<WilsonTwoIndexAntiSymmetricImplD> WilsonCloverTwoIndexAntiS
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// Compact Clover fermions
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template <typename WImpl> using CompactWilsonClover = CompactWilsonCloverFermion<WImpl, CompactCloverHelpers<WImpl>>;
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template <typename WImpl> using CompactWilsonClover5D = CompactWilsonCloverFermion5D<WImpl, CompactCloverHelpers<WImpl>>;
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template <typename WImpl> using CompactWilsonExpClover = CompactWilsonCloverFermion<WImpl, CompactExpCloverHelpers<WImpl>>;
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typedef CompactWilsonClover<WilsonImplD2> CompactWilsonCloverFermionD2;
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typedef CompactWilsonClover<WilsonImplF> CompactWilsonCloverFermionF;
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typedef CompactWilsonClover<WilsonImplD> CompactWilsonCloverFermionD;
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typedef CompactWilsonClover5D<WilsonImplD2> CompactWilsonCloverFermion5DD2;
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typedef CompactWilsonClover5D<WilsonImplF> CompactWilsonCloverFermion5DF;
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typedef CompactWilsonClover5D<WilsonImplD> CompactWilsonCloverFermion5DD;
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typedef CompactWilsonExpClover<WilsonImplD2> CompactWilsonExpCloverFermionD2;
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typedef CompactWilsonExpClover<WilsonImplF> CompactWilsonExpCloverFermionF;
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typedef CompactWilsonExpClover<WilsonImplD> CompactWilsonExpCloverFermionD;
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@ -0,0 +1,376 @@
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/*************************************************************************************
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Grid physics library, www.github.com/paboyle/Grid
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Source file: ./lib/qcd/action/fermion/CompactWilsonCloverFermion5DImplementation.h
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Copyright (C) 2017 - 2025
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Author: paboyle <paboyle@ph.ed.ac.uk>
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Author: Guido Cossu <guido.cossu@ed.ac.uk>
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Author: Daniel Richtmann <daniel.richtmann@gmail.com>
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Author: Christoph Lehner <christoph@lhnr.de>
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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
|
||||
the Free Software Foundation; either version 2 of the License, or
|
||||
(at your option) any later version.
|
||||
|
||||
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
|
||||
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
GNU General Public License for more details.
|
||||
|
||||
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.,
|
||||
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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||||
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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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#include <Grid/Grid.h>
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#include <Grid/qcd/spin/Dirac.h>
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#include <Grid/qcd/action/fermion/CompactWilsonCloverFermion5D.h>
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NAMESPACE_BEGIN(Grid);
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template<class Impl, class CloverHelpers>
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CompactWilsonCloverFermion5D<Impl, CloverHelpers>::CompactWilsonCloverFermion5D(GaugeField& _Umu,
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GridCartesian &FiveDimGrid,
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GridRedBlackCartesian &FiveDimRedBlackGrid,
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GridCartesian &FourDimGrid,
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GridRedBlackCartesian &FourDimRedBlackGrid,
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const RealD _mass,
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const RealD _csw_r,
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const RealD _csw_t,
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const RealD _cF,
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const ImplParams& impl_p)
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: WilsonBase(_Umu, FiveDimGrid, FiveDimRedBlackGrid, FourDimGrid, FourDimRedBlackGrid, _mass, impl_p)
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, csw_r(_csw_r)
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, csw_t(_csw_t)
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, cF(_cF)
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, fixedBoundaries(impl_p.boundary_phases[Nd-1] == 0.0)
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, Diagonal(&FourDimGrid), Triangle(&FourDimGrid)
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, DiagonalEven(&FourDimRedBlackGrid), TriangleEven(&FourDimRedBlackGrid)
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, DiagonalOdd(&FourDimRedBlackGrid), TriangleOdd(&FourDimRedBlackGrid)
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, DiagonalInv(&FourDimGrid), TriangleInv(&FourDimGrid)
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, DiagonalInvEven(&FourDimRedBlackGrid), TriangleInvEven(&FourDimRedBlackGrid)
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, DiagonalInvOdd(&FourDimRedBlackGrid), TriangleInvOdd(&FourDimRedBlackGrid)
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, Tmp(&FiveDimGrid)
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, BoundaryMask(&FiveDimGrid)
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, BoundaryMaskEven(&FiveDimRedBlackGrid), BoundaryMaskOdd(&FiveDimRedBlackGrid)
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{
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assert(Nd == 4 && Nc == 3 && Ns == 4 && Impl::Dimension == 3);
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csw_r *= 0.5;
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csw_t *= 0.5;
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//if (clover_anisotropy.isAnisotropic)
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// csw_r /= clover_anisotropy.xi_0;
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ImportGauge(_Umu);
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if (fixedBoundaries) {
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this->BoundaryMaskEven.Checkerboard() = Even;
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this->BoundaryMaskOdd.Checkerboard() = Odd;
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CompactHelpers::SetupMasks(this->BoundaryMask, this->BoundaryMaskEven, this->BoundaryMaskOdd);
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}
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::Dhop(const FermionField& in, FermionField& out, int dag) {
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WilsonBase::Dhop(in, out, dag);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::DhopOE(const FermionField& in, FermionField& out, int dag) {
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WilsonBase::DhopOE(in, out, dag);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::DhopEO(const FermionField& in, FermionField& out, int dag) {
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WilsonBase::DhopEO(in, out, dag);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::DhopDir(const FermionField& in, FermionField& out, int dir, int disp) {
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WilsonBase::DhopDir(in, out, dir, disp);
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if(this->fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::DhopDirAll(const FermionField& in, std::vector<FermionField>& out) {
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WilsonBase::DhopDirAll(in, out);
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if(this->fixedBoundaries) {
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for(auto& o : out) ApplyBoundaryMask(o);
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}
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::M(const FermionField& in, FermionField& out) {
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out.Checkerboard() = in.Checkerboard();
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WilsonBase::Dhop(in, out, DaggerNo); // call base to save applying bc
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Mooee(in, Tmp);
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axpy(out, 1.0, out, Tmp);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::Mdag(const FermionField& in, FermionField& out) {
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out.Checkerboard() = in.Checkerboard();
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WilsonBase::Dhop(in, out, DaggerYes); // call base to save applying bc
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MooeeDag(in, Tmp);
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axpy(out, 1.0, out, Tmp);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::Meooe(const FermionField& in, FermionField& out) {
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WilsonBase::Meooe(in, out);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MeooeDag(const FermionField& in, FermionField& out) {
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WilsonBase::MeooeDag(in, out);
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::Mooee(const FermionField& in, FermionField& out) {
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if(in.Grid()->_isCheckerBoarded) {
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if(in.Checkerboard() == Odd) {
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MooeeInternal(in, out, DiagonalOdd, TriangleOdd);
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} else {
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MooeeInternal(in, out, DiagonalEven, TriangleEven);
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}
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} else {
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MooeeInternal(in, out, Diagonal, Triangle);
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}
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MooeeDag(const FermionField& in, FermionField& out) {
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Mooee(in, out); // blocks are hermitian
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MooeeInv(const FermionField& in, FermionField& out) {
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if(in.Grid()->_isCheckerBoarded) {
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if(in.Checkerboard() == Odd) {
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MooeeInternal(in, out, DiagonalInvOdd, TriangleInvOdd);
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} else {
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MooeeInternal(in, out, DiagonalInvEven, TriangleInvEven);
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}
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} else {
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MooeeInternal(in, out, DiagonalInv, TriangleInv);
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}
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if(fixedBoundaries) ApplyBoundaryMask(out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MooeeInvDag(const FermionField& in, FermionField& out) {
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MooeeInv(in, out); // blocks are hermitian
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::Mdir(const FermionField& in, FermionField& out, int dir, int disp) {
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DhopDir(in, out, dir, disp);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MdirAll(const FermionField& in, std::vector<FermionField>& out) {
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DhopDirAll(in, out);
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}
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template<class Impl, class CloverHelpers>
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void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MDeriv(GaugeField& force, const FermionField& X, const FermionField& Y, int dag) {
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assert(!fixedBoundaries); // TODO check for changes required for open bc
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// NOTE: code copied from original clover term
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conformable(X.Grid(), Y.Grid());
|
||||
conformable(X.Grid(), force.Grid());
|
||||
GaugeLinkField force_mu(force.Grid()), lambda(force.Grid());
|
||||
GaugeField clover_force(force.Grid());
|
||||
PropagatorField Lambda(force.Grid());
|
||||
|
||||
// Guido: Here we are hitting some performance issues:
|
||||
// need to extract the components of the DoubledGaugeField
|
||||
// for each call
|
||||
// Possible solution
|
||||
// Create a vector object to store them? (cons: wasting space)
|
||||
std::vector<GaugeLinkField> U(Nd, this->Umu.Grid());
|
||||
|
||||
Impl::extractLinkField(U, this->Umu);
|
||||
|
||||
force = Zero();
|
||||
// Derivative of the Wilson hopping term
|
||||
this->DhopDeriv(force, X, Y, dag);
|
||||
|
||||
///////////////////////////////////////////////////////////
|
||||
// Clover term derivative
|
||||
///////////////////////////////////////////////////////////
|
||||
Impl::outerProductImpl(Lambda, X, Y);
|
||||
//std::cout << "Lambda:" << Lambda << std::endl;
|
||||
|
||||
Gamma::Algebra sigma[] = {
|
||||
Gamma::Algebra::SigmaXY,
|
||||
Gamma::Algebra::SigmaXZ,
|
||||
Gamma::Algebra::SigmaXT,
|
||||
Gamma::Algebra::MinusSigmaXY,
|
||||
Gamma::Algebra::SigmaYZ,
|
||||
Gamma::Algebra::SigmaYT,
|
||||
Gamma::Algebra::MinusSigmaXZ,
|
||||
Gamma::Algebra::MinusSigmaYZ,
|
||||
Gamma::Algebra::SigmaZT,
|
||||
Gamma::Algebra::MinusSigmaXT,
|
||||
Gamma::Algebra::MinusSigmaYT,
|
||||
Gamma::Algebra::MinusSigmaZT};
|
||||
|
||||
/*
|
||||
sigma_{\mu \nu}=
|
||||
| 0 sigma[0] sigma[1] sigma[2] |
|
||||
| sigma[3] 0 sigma[4] sigma[5] |
|
||||
| sigma[6] sigma[7] 0 sigma[8] |
|
||||
| sigma[9] sigma[10] sigma[11] 0 |
|
||||
*/
|
||||
|
||||
int count = 0;
|
||||
clover_force = Zero();
|
||||
for (int mu = 0; mu < 4; mu++)
|
||||
{
|
||||
force_mu = Zero();
|
||||
for (int nu = 0; nu < 4; nu++)
|
||||
{
|
||||
if (mu == nu)
|
||||
continue;
|
||||
|
||||
RealD factor;
|
||||
if (nu == 4 || mu == 4)
|
||||
{
|
||||
factor = 2.0 * csw_t;
|
||||
}
|
||||
else
|
||||
{
|
||||
factor = 2.0 * csw_r;
|
||||
}
|
||||
PropagatorField Slambda = Gamma(sigma[count]) * Lambda; // sigma checked
|
||||
Impl::TraceSpinImpl(lambda, Slambda); // traceSpin ok
|
||||
force_mu -= factor*CloverHelpers::Cmunu(U, lambda, mu, nu); // checked
|
||||
count++;
|
||||
}
|
||||
|
||||
pokeLorentz(clover_force, U[mu] * force_mu, mu);
|
||||
}
|
||||
//clover_force *= csw;
|
||||
force += clover_force;
|
||||
}
|
||||
|
||||
template<class Impl, class CloverHelpers>
|
||||
void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MooDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) {
|
||||
assert(0);
|
||||
}
|
||||
|
||||
template<class Impl, class CloverHelpers>
|
||||
void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MeeDeriv(GaugeField& mat, const FermionField& U, const FermionField& V, int dag) {
|
||||
assert(0);
|
||||
}
|
||||
|
||||
template<class Impl, class CloverHelpers>
|
||||
void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::MooeeInternal(const FermionField& in,
|
||||
FermionField& out,
|
||||
const CloverDiagonalField& diagonal,
|
||||
const CloverTriangleField& triangle) {
|
||||
assert(in.Checkerboard() == Odd || in.Checkerboard() == Even);
|
||||
out.Checkerboard() = in.Checkerboard();
|
||||
conformable(in, out);
|
||||
CompactHelpers::MooeeKernel(diagonal.oSites(), this->Ls, in, out, diagonal, triangle);
|
||||
}
|
||||
|
||||
template<class Impl, class CloverHelpers>
|
||||
void CompactWilsonCloverFermion5D<Impl, CloverHelpers>::ImportGauge(const GaugeField& _Umu) {
|
||||
// NOTE: parts copied from original implementation
|
||||
|
||||
// Import gauge into base class
|
||||
double t0 = usecond();
|
||||
WilsonBase::ImportGauge(_Umu); // NOTE: called here and in wilson constructor -> performed twice, but can't avoid that
|
||||
|
||||
// Initialize temporary variables
|
||||
double t1 = usecond();
|
||||
conformable(_Umu.Grid(), this->GaugeGrid());
|
||||
GridBase* grid = _Umu.Grid();
|
||||
typename Impl::GaugeLinkField Bx(grid), By(grid), Bz(grid), Ex(grid), Ey(grid), Ez(grid);
|
||||
CloverField TmpOriginal(grid);
|
||||
CloverField TmpInverse(grid);
|
||||
|
||||
// Compute the field strength terms mu>nu
|
||||
double t2 = usecond();
|
||||
WilsonLoops<Impl>::FieldStrength(Bx, _Umu, Zdir, Ydir);
|
||||
WilsonLoops<Impl>::FieldStrength(By, _Umu, Zdir, Xdir);
|
||||
WilsonLoops<Impl>::FieldStrength(Bz, _Umu, Ydir, Xdir);
|
||||
WilsonLoops<Impl>::FieldStrength(Ex, _Umu, Tdir, Xdir);
|
||||
WilsonLoops<Impl>::FieldStrength(Ey, _Umu, Tdir, Ydir);
|
||||
WilsonLoops<Impl>::FieldStrength(Ez, _Umu, Tdir, Zdir);
|
||||
|
||||
// Compute the Clover Operator acting on Colour and Spin
|
||||
// multiply here by the clover coefficients for the anisotropy
|
||||
double t3 = usecond();
|
||||
TmpOriginal = Helpers::fillCloverYZ(Bx) * csw_r;
|
||||
TmpOriginal += Helpers::fillCloverXZ(By) * csw_r;
|
||||
TmpOriginal += Helpers::fillCloverXY(Bz) * csw_r;
|
||||
TmpOriginal += Helpers::fillCloverXT(Ex) * csw_t;
|
||||
TmpOriginal += Helpers::fillCloverYT(Ey) * csw_t;
|
||||
TmpOriginal += Helpers::fillCloverZT(Ez) * csw_t;
|
||||
|
||||
// Instantiate the clover term
|
||||
// - In case of the standard clover the mass term is added
|
||||
// - In case of the exponential clover the clover term is exponentiated
|
||||
double t4 = usecond();
|
||||
CloverHelpers::InstantiateClover(TmpOriginal, TmpInverse, csw_t, 4.0 + this->M5 /*this->diag_mass*/);
|
||||
|
||||
// Convert the data layout of the clover term
|
||||
double t5 = usecond();
|
||||
CompactHelpers::ConvertLayout(TmpOriginal, Diagonal, Triangle);
|
||||
|
||||
// Modify the clover term at the temporal boundaries in case of open boundary conditions
|
||||
double t6 = usecond();
|
||||
if(fixedBoundaries) CompactHelpers::ModifyBoundaries(Diagonal, Triangle, csw_t, cF, 4.0 + this->M5 /*this->diag_mass*/);
|
||||
|
||||
// Invert the Clover term
|
||||
// In case of the exponential clover with (anti-)periodic boundary conditions exp(-Clover) saved
|
||||
// in TmpInverse can be used. In all other cases the clover term has to be explictly inverted.
|
||||
// TODO: For now this inversion is explictly done on the CPU
|
||||
double t7 = usecond();
|
||||
CloverHelpers::InvertClover(TmpInverse, Diagonal, Triangle, DiagonalInv, TriangleInv, fixedBoundaries);
|
||||
|
||||
// Fill the remaining clover fields
|
||||
double t8 = usecond();
|
||||
pickCheckerboard(Even, DiagonalEven, Diagonal);
|
||||
pickCheckerboard(Even, TriangleEven, Triangle);
|
||||
pickCheckerboard(Odd, DiagonalOdd, Diagonal);
|
||||
pickCheckerboard(Odd, TriangleOdd, Triangle);
|
||||
pickCheckerboard(Even, DiagonalInvEven, DiagonalInv);
|
||||
pickCheckerboard(Even, TriangleInvEven, TriangleInv);
|
||||
pickCheckerboard(Odd, DiagonalInvOdd, DiagonalInv);
|
||||
pickCheckerboard(Odd, TriangleInvOdd, TriangleInv);
|
||||
|
||||
// Report timings
|
||||
double t9 = usecond();
|
||||
|
||||
std::cout << GridLogDebug << "CompactWilsonCloverFermion5D::ImportGauge timings:" << std::endl;
|
||||
std::cout << GridLogDebug << "WilsonFermion::Importgauge = " << (t1 - t0) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "allocations = " << (t2 - t1) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "field strength = " << (t3 - t2) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "fill clover = " << (t4 - t3) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "instantiate clover = " << (t5 - t4) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "convert layout = " << (t6 - t5) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "modify boundaries = " << (t7 - t6) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "invert clover = " << (t8 - t7) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "pick cbs = " << (t9 - t8) / 1e6 << std::endl;
|
||||
std::cout << GridLogDebug << "total = " << (t9 - t0) / 1e6 << std::endl;
|
||||
}
|
||||
|
||||
NAMESPACE_END(Grid);
|
@ -0,0 +1,45 @@
|
||||
/*************************************************************************************
|
||||
|
||||
Grid physics library, www.github.com/paboyle/Grid
|
||||
|
||||
Source file: ./lib/ qcd/action/fermion/instantiation/CompactWilsonCloverFermionInstantiation5D.cc.master
|
||||
|
||||
Copyright (C) 2017 - 2025
|
||||
|
||||
Author: paboyle <paboyle@ph.ed.ac.uk>
|
||||
Author: Guido Cossu <guido.cossu@ed.ac.uk>
|
||||
Author: Daniel Richtmann <daniel.richtmann@gmail.com>
|
||||
Author: Mattia Bruno <mattia.bruno@cern.ch>
|
||||
Author: Christoph Lehner <christoph@lhnr.de>
|
||||
|
||||
This program is free software; you can redistribute it and/or modify
|
||||
it under the terms of the GNU General Public License as published by
|
||||
the Free Software Foundation; either version 2 of the License, or
|
||||
(at your option) any later version.
|
||||
|
||||
This program is distributed in the hope that it will be useful,
|
||||
but WITHOUT ANY WARRANTY; without even the implied warranty of
|
||||
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
|
||||
GNU General Public License for more details.
|
||||
|
||||
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.,
|
||||
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
|
||||
|
||||
See the full license in the file "LICENSE" in the top level distribution directory
|
||||
*************************************************************************************/
|
||||
/* END LEGAL */
|
||||
|
||||
#include <Grid/Grid.h>
|
||||
#include <Grid/qcd/spin/Dirac.h>
|
||||
#include <Grid/qcd/action/fermion/CompactWilsonCloverFermion5D.h>
|
||||
#include <Grid/qcd/action/fermion/implementation/CompactWilsonCloverFermion5DImplementation.h>
|
||||
#include <Grid/qcd/action/fermion/CloverHelpers.h>
|
||||
|
||||
NAMESPACE_BEGIN(Grid);
|
||||
|
||||
#include "impl.h"
|
||||
template class CompactWilsonCloverFermion5D<IMPLEMENTATION, CompactCloverHelpers<IMPLEMENTATION>>;
|
||||
template class CompactWilsonCloverFermion5D<IMPLEMENTATION, CompactExpCloverHelpers<IMPLEMENTATION>>;
|
||||
|
||||
NAMESPACE_END(Grid);
|
@ -0,0 +1 @@
|
||||
../CompactWilsonCloverFermion5DInstantiation.cc.master
|
@ -0,0 +1 @@
|
||||
../CompactWilsonCloverFermion5DInstantiation.cc.master
|
@ -62,7 +62,7 @@ do
|
||||
done
|
||||
done
|
||||
|
||||
CC_LIST="CompactWilsonCloverFermionInstantiation"
|
||||
CC_LIST="CompactWilsonCloverFermionInstantiation CompactWilsonCloverFermion5DInstantiation"
|
||||
|
||||
for impl in $COMPACT_WILSON_IMPL_LIST
|
||||
do
|
||||
|
Loading…
x
Reference in New Issue
Block a user