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	Moving overly-specialised code out of Grid
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		@@ -1,321 +0,0 @@
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/*******************************************************************************
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 Grid physics library, www.github.com/paboyle/Grid
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 Source file: tests/hadrons/Test_hadrons_rarekaon.cc
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 Copyright (C) 2017
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 Author: Andrew Lawson <andrew.lawson1991@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
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 directory.
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 *******************************************************************************/
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#include "Test_hadrons.hpp"
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using namespace Grid;
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using namespace Hadrons;
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enum quarks
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{
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   light   = 0,
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   strange = 1,
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   charm   = 2  
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};
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int main(int argc, char *argv[])
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{
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    // parse command line //////////////////////////////////////////////////////
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    std::string configStem;
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    if (argc < 2)
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    {
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        std::cerr << "usage: " << argv[0] << " <configuration filestem> [Grid options]";
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        std::cerr << std::endl;
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        std::exit(EXIT_FAILURE);
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    }
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    configStem = argv[1];
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    // initialization //////////////////////////////////////////////////////////
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    HADRONS_DEFAULT_INIT;
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    // run setup ///////////////////////////////////////////////////////////////
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    Application              application;
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    std::vector<double>       mass    = {.01, .04, .2};
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    std::vector<std::string>  flavour = {"l", "s", "c"};
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    std::vector<std::string>  solvers = {"CG_l", "CG_s", "CG_c"};
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    std::string               kmom    = "0. 0. 0. 0.";
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    std::string               pmom    = "1. 0. 0. 0.";
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    std::string               qmom    = "-1. 0. 0. 0.";
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    std::string               mqmom   = "1. 0. 0. 0.";
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    std::vector<unsigned int> tKs     = {0};
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    unsigned int              dt_pi   = 16;
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    std::vector<unsigned int> tJs     = {8};
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    unsigned int              n_noise = 1;
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    unsigned int              nt      = 32;
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    bool                      do_disconnected(false);
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    Gamma::Algebra            gT = Gamma::Algebra::GammaT;
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    unsigned int              Ls = 16;
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    double                    M5 = 1.8;
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    // Global parameters.
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    HADRONS_DEFAULT_GLOBALS(application);
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    // gauge field
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    std::string gaugeField = "gauge";
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    if (configStem == "None")
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    {
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        application.createModule<MGauge::Unit>(gaugeField);
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    }
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    else
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    {
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        MGauge::Load::Par gaugePar;
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        gaugePar.file = configStem;
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        application.createModule<MGauge::Load>(gaugeField, gaugePar);
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    }
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    // set fermion boundary conditions to be periodic space, antiperiodic time.
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    std::string boundary = "1 1 1 -1";
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    for (unsigned int i = 0; i < flavour.size(); ++i)
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    {
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        // actions
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        std::string actionName = "DWF_" + flavour[i];
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        makeDWFAction(application, actionName, gaugeField, mass[i], M5, Ls);
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        // solvers
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        makeRBPrecCGSolver(application, solvers[i], actionName);
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    }
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    // Create noise propagators for loops.
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    std::vector<std::string> noiseSrcs;
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    std::vector<std::vector<std::string>> noiseRes;
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    std::vector<std::vector<std::string>> noiseProps;
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    if (n_noise > 0)
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    {
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        MSource::Z2::Par noisePar;
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        noisePar.tA = 0;
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        noisePar.tB = nt - 1;
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        std::string loop_stem = "loop_";
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        noiseRes.resize(flavour.size());
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        noiseProps.resize(flavour.size());
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        for (unsigned int nn = 0; nn < n_noise; ++nn)
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        {
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            std::string eta = INIT_INDEX("noise", nn);
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            application.createModule<MSource::Z2>(eta, noisePar);
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            noiseSrcs.push_back(eta);
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            for (unsigned int f = 0; f < flavour.size(); ++f)
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            {
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                std::string loop_prop = INIT_INDEX(loop_stem + flavour[f], nn);
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                std::string loop_res  = loop_prop + "_res";
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                makePropagator(application, loop_res, eta, solvers[f]);
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                makeLoop(application, loop_prop, eta, loop_res);
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                noiseRes[f].push_back(loop_res);
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                noiseProps[f].push_back(loop_prop);
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            }
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        }
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    }
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    // Translate rare kaon decay across specified timeslices.
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    for (unsigned int i = 0; i < tKs.size(); ++i)
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    {
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        // Zero-momentum wall source propagators for kaon and pion.
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        unsigned int tK     = tKs[i];
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        unsigned int tpi    = (tK + dt_pi) % nt;
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        std::string q_Kl_0  = INIT_INDEX("Q_l_0", tK);
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        std::string q_pil_0 = INIT_INDEX("Q_l_0", tpi);
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        MAKE_WALL_PROP(tK, q_Kl_0, solvers[light]);
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        MAKE_WALL_PROP(tpi, q_pil_0, solvers[light]);
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        // Wall sources for kaon and pion with momentum insertion. If either
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        // p or k are zero, or p = k, re-use the existing name to avoid 
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        // duplicating a propagator.
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        std::string q_Ks_k  = INIT_INDEX("Q_Ks_k", tK);
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        std::string q_Ks_p  = INIT_INDEX((kmom == pmom) ? "Q_Ks_k" : "Q_Ks_p", tK);
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        std::string q_pil_k = INIT_INDEX((kmom == ZERO_MOM) ? "Q_l_0" : "Q_l_k", tpi);
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        std::string q_pil_p = INIT_INDEX((pmom == kmom) ? q_pil_k : ((pmom == ZERO_MOM) ? "Q_l_0" : "Q_l_p"), tpi);
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        MAKE_3MOM_WALL_PROP(tK, kmom, q_Ks_k, solvers[strange]);
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        MAKE_3MOM_WALL_PROP(tK, pmom, q_Ks_p, solvers[strange]);
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        MAKE_3MOM_WALL_PROP(tpi, kmom, q_pil_k, solvers[light]);
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        MAKE_3MOM_WALL_PROP(tpi, pmom, q_pil_p, solvers[light]);
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        /***********************************************************************
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         * CONTRACTIONS: pi and K 2pt contractions with mom = p, k.
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         **********************************************************************/
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        // Wall-Point
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        std::string PW_K_k = INIT_INDEX("PW_K_k", tK);
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        std::string PW_K_p = INIT_INDEX("PW_K_p", tK);
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        std::string PW_pi_k = INIT_INDEX("PW_pi_k", tpi);
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        std::string PW_pi_p = INIT_INDEX("PW_pi_p", tpi);
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        mesonContraction(application, 2, q_Kl_0, q_Ks_k, PW_K_k, kmom);
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        mesonContraction(application, 2, q_Kl_0, q_Ks_p, PW_K_p, pmom);
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        mesonContraction(application, 2, q_pil_k, q_pil_0, PW_pi_k, kmom);
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        mesonContraction(application, 2, q_pil_p, q_pil_0, PW_pi_p, pmom);
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        // Wall-Wall, to be done - requires modification of meson module.
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        /***********************************************************************
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         * CONTRACTIONS: 3pt Weak Hamiltonian, C & W (non-Eye type) classes.
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         **********************************************************************/
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        std::string HW_CW_k = LABEL_3PT("HW_CW_k", tK, tpi);
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        std::string HW_CW_p = LABEL_3PT("HW_CW_p", tK, tpi);
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        weakContractionNonEye(application, 3, q_Kl_0, q_Ks_k, q_pil_k, q_pil_0, HW_CW_k);
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        weakContractionNonEye(application, 3, q_Kl_0, q_Ks_p, q_pil_p, q_pil_0, HW_CW_p);
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        /***********************************************************************
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         * CONTRACTIONS: 3pt sd insertion.
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         **********************************************************************/
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        // Note: eventually will use wall sink smeared q_Kl_0 instead.
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        std::string sd_k = LABEL_3PT("sd_k", tK, tpi);
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        std::string sd_p = LABEL_3PT("sd_p", tK, tpi);
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        gamma3ptContraction(application, 3, q_Kl_0, q_Ks_k, q_pil_k, sd_k);
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        gamma3ptContraction(application, 3, q_Kl_0, q_Ks_p, q_pil_p, sd_p);
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        for (unsigned int nn = 0; nn < n_noise; ++nn)
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        {
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            /*******************************************************************
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             * CONTRACTIONS: 3pt Weak Hamiltonian, S and E (Eye type) classes.
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             ******************************************************************/
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            // Note: eventually will use wall sink smeared q_Kl_0 instead.
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            for (unsigned int f = 0; f < flavour.size(); ++f)
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            {
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                if ((f != strange) || do_disconnected)
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                {
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                    std::string HW_SE_k = LABEL_3PT("HW_SE_k_" + flavour[f], tK, tpi);
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                    std::string HW_SE_p = LABEL_3PT("HW_SE_p_" + flavour[f], tK, tpi);
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                    std::string loop_q  = noiseProps[f][nn];
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                    weakContractionEye(application, 3, q_Kl_0, q_Ks_k, q_pil_k, loop_q, HW_CW_k);
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                    weakContractionEye(application, 3, q_Kl_0, q_Ks_p, q_pil_p, loop_q, HW_CW_p);
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                }
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            }
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        }
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        // Perform separate contractions for each t_J position.
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        for (unsigned int j = 0; j < tJs.size(); ++j)
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        {
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            // Sequential sources for current insertions. Local for now,
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            // gamma_0 only.
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            unsigned int tJ = (tJs[j] + tK) % nt;
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            MSource::SeqGamma::Par seqPar;
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            std::string q_KlCl_q   = LABEL_3PT("Q_KlCl_q", tK, tJ);
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            std::string q_KsCs_mq  = LABEL_3PT("Q_KsCs_mq", tK, tJ);
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            std::string q_pilCl_q  = LABEL_3PT("Q_pilCl_q", tpi, tJ);
 | 
			
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            std::string q_pilCl_mq = LABEL_3PT("Q_pilCl_mq", tpi, tJ);
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            MAKE_SEQUENTIAL_PROP(tJ, q_Kl_0, qmom, q_KlCl_q, solvers[light], gT);
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            MAKE_SEQUENTIAL_PROP(tJ, q_Ks_k, mqmom, q_KsCs_mq, solvers[strange], gT);
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            MAKE_SEQUENTIAL_PROP(tJ, q_pil_p, qmom, q_pilCl_q, solvers[light], gT);
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            MAKE_SEQUENTIAL_PROP(tJ, q_pil_0, mqmom, q_pilCl_mq, solvers[light], gT);
 | 
			
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            /*******************************************************************
 | 
			
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             * CONTRACTIONS: pi and K 3pt contractions with current insertion.
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             ******************************************************************/
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            // Wall-Point
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            std::string C_PW_Kl   = LABEL_3PT("C_PW_Kl", tK, tJ);
 | 
			
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            std::string C_PW_Ksb  = LABEL_3PT("C_PW_Ksb", tK, tJ);
 | 
			
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            std::string C_PW_pilb = LABEL_3PT("C_PW_pilb", tK, tJ);
 | 
			
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            std::string C_PW_pil  = LABEL_3PT("C_PW_pil", tK, tJ);
 | 
			
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            mesonContraction(application, 3, q_KlCl_q, q_Ks_k, C_PW_Kl, pmom);
 | 
			
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            mesonContraction(application, 3, q_Kl_0, q_KsCs_mq, C_PW_Ksb, pmom);
 | 
			
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            mesonContraction(application, 3, q_pil_0, q_pilCl_q, C_PW_pilb, kmom);
 | 
			
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            mesonContraction(application, 3, q_pilCl_mq, q_pil_p, C_PW_pil, kmom);
 | 
			
		||||
            // Wall-Wall, to be done.
 | 
			
		||||
 | 
			
		||||
            /*******************************************************************
 | 
			
		||||
             * CONTRACTIONS: 4pt contractions, C & W classes.
 | 
			
		||||
             ******************************************************************/
 | 
			
		||||
            std::string CW_Kl   = LABEL_4PT("CW_Kl", tK, tJ, tpi);
 | 
			
		||||
            std::string CW_Ksb  = LABEL_4PT("CW_Ksb", tK, tJ, tpi);
 | 
			
		||||
            std::string CW_pilb = LABEL_4PT("CW_pilb", tK, tJ, tpi);
 | 
			
		||||
            std::string CW_pil  = LABEL_4PT("CW_pil", tK, tJ, tpi);
 | 
			
		||||
            weakContractionNonEye(application, 4, q_KlCl_q, q_Ks_k, q_pil_p, q_pil_0, CW_Kl);
 | 
			
		||||
            weakContractionNonEye(application, 4, q_Kl_0, q_KsCs_mq, q_pil_p, q_pil_0, CW_Ksb);
 | 
			
		||||
            weakContractionNonEye(application, 4, q_Kl_0, q_Ks_k, q_pilCl_q, q_pil_0, CW_pilb);
 | 
			
		||||
            weakContractionNonEye(application, 4, q_Kl_0, q_Ks_k, q_pil_p, q_pilCl_mq, CW_pil);
 | 
			
		||||
 | 
			
		||||
            /*******************************************************************
 | 
			
		||||
             * CONTRACTIONS: 4pt contractions, sd insertions.
 | 
			
		||||
             ******************************************************************/
 | 
			
		||||
            // Note: eventually will use wall sink smeared q_Kl_0/q_KlCl_q instead.
 | 
			
		||||
            std::string sd_Kl   = LABEL_4PT("sd_Kl", tK, tJ, tpi);
 | 
			
		||||
            std::string sd_Ksb  = LABEL_4PT("sd_Ksb", tK, tJ, tpi);
 | 
			
		||||
            std::string sd_pilb = LABEL_4PT("sd_pilb", tK, tJ, tpi);
 | 
			
		||||
            gamma3ptContraction(application, 4, q_KlCl_q, q_Ks_k, q_pil_p, sd_Kl);
 | 
			
		||||
            gamma3ptContraction(application, 4, q_Kl_0, q_KsCs_mq, q_pil_p, sd_Ksb);
 | 
			
		||||
            gamma3ptContraction(application, 4, q_Kl_0, q_Ks_k, q_pilCl_q, sd_pilb);
 | 
			
		||||
 | 
			
		||||
            // Sequential sources for each noise propagator.
 | 
			
		||||
            for (unsigned int nn = 0; nn < n_noise; ++nn)
 | 
			
		||||
            {
 | 
			
		||||
                std::string loop_stem = "loop_";
 | 
			
		||||
 | 
			
		||||
                // Contraction required for each quark flavour - alternatively
 | 
			
		||||
                // drop the strange loop if not performing disconnected
 | 
			
		||||
                // contractions or neglecting H_W operators Q_3 -> Q_10.
 | 
			
		||||
                for (unsigned int f = 0; f < flavour.size(); ++f)
 | 
			
		||||
                {
 | 
			
		||||
                    if ((f != strange) || do_disconnected)
 | 
			
		||||
                    {
 | 
			
		||||
                        std::string eta      = noiseSrcs[nn];
 | 
			
		||||
                        std::string loop_q   = noiseProps[f][nn];
 | 
			
		||||
                        std::string loop_qCq = LABEL_3PT(loop_stem + flavour[f], tJ, nn);
 | 
			
		||||
                        std::string loop_qCq_res = loop_qCq + "_res";
 | 
			
		||||
                        MAKE_SEQUENTIAL_PROP(tJ, noiseRes[f][nn], qmom, 
 | 
			
		||||
                                             loop_qCq_res, solvers[f], gT);
 | 
			
		||||
                        makeLoop(application, loop_qCq, eta, loop_qCq_res);
 | 
			
		||||
 | 
			
		||||
                        /*******************************************************
 | 
			
		||||
                         * CONTRACTIONS: 4pt contractions, S & E classes.
 | 
			
		||||
                         ******************************************************/
 | 
			
		||||
                        // Note: eventually will use wall sink smeared q_Kl_0/q_KlCl_q instead.
 | 
			
		||||
                        std::string SE_Kl   = LABEL_4PT_NOISE("SE_Kl", tK, tJ, tpi, nn);
 | 
			
		||||
                        std::string SE_Ksb  = LABEL_4PT_NOISE("SE_Ksb", tK, tJ, tpi, nn);
 | 
			
		||||
                        std::string SE_pilb = LABEL_4PT_NOISE("SE_pilb", tK, tJ, tpi, nn);
 | 
			
		||||
                        std::string SE_loop = LABEL_4PT_NOISE("SE_loop", tK, tJ, tpi, nn);
 | 
			
		||||
                        weakContractionEye(application, 4, q_KlCl_q, q_Ks_k, q_pil_p, loop_q, SE_Kl);
 | 
			
		||||
                        weakContractionEye(application, 4, q_Kl_0, q_KsCs_mq, q_pil_p, loop_q, SE_Ksb);
 | 
			
		||||
                        weakContractionEye(application, 4, q_Kl_0, q_Ks_k, q_pilCl_q, loop_q, SE_pilb);
 | 
			
		||||
                        weakContractionEye(application, 4, q_Kl_0, q_Ks_k, q_pil_p, loop_qCq, SE_loop);
 | 
			
		||||
 | 
			
		||||
                        /*******************************************************
 | 
			
		||||
                         * CONTRACTIONS: 4pt contractions, pi0 disconnected 
 | 
			
		||||
                         * loop.
 | 
			
		||||
                         ******************************************************/
 | 
			
		||||
                        std::string disc0 = LABEL_4PT_NOISE("disc0", tK, tJ, tpi, nn);
 | 
			
		||||
                        disc0Contraction(application, q_Kl_0, q_Ks_k, q_pilCl_q, loop_q, disc0);
 | 
			
		||||
 | 
			
		||||
                        /*******************************************************
 | 
			
		||||
                         * CONTRACTIONS: Disconnected loop.
 | 
			
		||||
                         ******************************************************/
 | 
			
		||||
                        std::string discLoop = "disc_" + loop_qCq;
 | 
			
		||||
                        discLoopContraction(application, loop_qCq, discLoop);
 | 
			
		||||
                    }
 | 
			
		||||
                }
 | 
			
		||||
            }
 | 
			
		||||
        }
 | 
			
		||||
    }
 | 
			
		||||
    // execution
 | 
			
		||||
    std::string par_file_name = "rarekaon_000_100_tK0_tpi16_tJ8_noloop_mc0.2.xml";
 | 
			
		||||
    application.saveParameterFile(par_file_name);
 | 
			
		||||
    application.run();
 | 
			
		||||
 | 
			
		||||
    // epilogue
 | 
			
		||||
    LOG(Message) << "Grid is finalizing now" << std::endl;
 | 
			
		||||
    Grid_finalize();
 | 
			
		||||
 | 
			
		||||
    return EXIT_SUCCESS;
 | 
			
		||||
}
 | 
			
		||||
		Reference in New Issue
	
	Block a user