| [55c494] | 1 | /*
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 | 2 |  * Project: MoleCuilder
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 | 3 |  * Description: creates and alters molecular systems
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 | 4 |  * Copyright (C)  2021 Frederik Heber. All rights reserved.
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 | 5 |  * 
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 | 6 |  *
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 | 7 |  *   This file is part of MoleCuilder.
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 | 8 |  *
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 | 9 |  *    MoleCuilder is free software: you can redistribute it and/or modify
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 | 10 |  *    it under the terms of the GNU General Public License as published by
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 | 11 |  *    the Free Software Foundation, either version 2 of the License, or
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 | 12 |  *    (at your option) any later version.
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 | 13 |  *
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 | 14 |  *    MoleCuilder is distributed in the hope that it will be useful,
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 | 15 |  *    but WITHOUT ANY WARRANTY; without even the implied warranty of
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 | 16 |  *    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 | 17 |  *    GNU General Public License for more details.
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 | 18 |  *
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 | 19 |  *    You should have received a copy of the GNU General Public License
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 | 20 |  *    along with MoleCuilder.  If not, see <http://www.gnu.org/licenses/>.
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 | 21 |  */
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 | 22 | 
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 | 23 | /*
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 | 24 |  * GeneratePotentialsAction.cpp
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 | 25 |  *
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 | 26 |  *  Created on: May 13, 2021
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 | 27 |  *      Author: heber
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 | 28 |  */
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 | 29 | 
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 | 30 | // include config.h
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 | 31 | #ifdef HAVE_CONFIG_H
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 | 32 | #include <config.h>
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 | 33 | #endif
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 | 34 | 
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 | 35 | // include headers that implement a archive in simple text format
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 | 36 | // and before MemDebug due to placement new
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 | 37 | #include <boost/archive/text_oarchive.hpp>
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 | 38 | #include <boost/archive/text_iarchive.hpp>
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 | 39 | 
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 | 40 | //#include "CodePatterns/MemDebug.hpp"
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 | 41 | 
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 | 42 | #include <set>
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 | 43 | #include <string>
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 | 44 | 
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| [9b0dcd] | 45 | #include <boost/foreach.hpp>
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| [80bf6e] | 46 | #include <boost/iterator/counting_iterator.hpp>
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| [9b0dcd] | 47 | 
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| [55c494] | 48 | #include "Actions/PotentialAction/GeneratePotentialsAction.hpp"
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 | 49 | 
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 | 50 | #include "CodePatterns/Log.hpp"
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 | 51 | 
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 | 52 | #include "Potentials/EmpiricalPotential.hpp"
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 | 53 | #include "Potentials/Exceptions.hpp"
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 | 54 | #include "Potentials/PotentialFactory.hpp"
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 | 55 | #include "Potentials/PotentialRegistry.hpp"
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 | 56 | #include "Potentials/PotentialTrainer.hpp"
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 | 57 | 
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 | 58 | using namespace MoleCuilder;
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 | 59 | 
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 | 60 | // and construct the stuff
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 | 61 | #include "GeneratePotentialsAction.def"
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 | 62 | #include "Action_impl_pre.hpp"
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 | 63 | /** =========== define the function ====================== */
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 | 64 | ActionState::ptr PotentialGeneratePotentialsAction::performCall()
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 | 65 | {
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 | 66 |   // fragment specifies the homology fragment to use
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 | 67 |   SerializablePotential::ParticleTypes_t fragmentnumbers =
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 | 68 |       PotentialTrainer::getNumbersFromElements(params.fragment.get());
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 | 69 | 
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 | 70 |   // parse homologies into container
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 | 71 |   const HomologyContainer &homologies = World::getInstance().getHomologies();
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 | 72 | 
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 | 73 |   // then we ought to pick the right HomologyGraph ...
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 | 74 |   const HomologyGraph graph =
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 | 75 |       PotentialTrainer::getFirstGraphwithSpecifiedElements(homologies,fragmentnumbers);
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 | 76 |   if (graph != HomologyGraph()) {
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 | 77 |     LOG(1, "First representative graph containing fragment "
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 | 78 |         << fragmentnumbers << " is " << graph << ".");
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 | 79 |   } else {
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 | 80 |     STATUS("Specific fragment "+toString(fragmentnumbers)+" not found in homologies!");
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 | 81 |     return Action::failure;
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 | 82 |   }
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 | 83 | 
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| [9b0dcd] | 84 |   // gather list of potential candidates
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 | 85 |   std::vector<std::string> potentials;
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 | 86 |   if (!params.potential_list.isSet()) {
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 | 87 |     for (unsigned int i=0; i<PotentialTypesMax; ++i)
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 | 88 |       potentials.push_back(PotentialFactory::getNameForType((enum PotentialTypes)i));
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 | 89 |   } else
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 | 90 |     potentials = params.potential_list.get();
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 | 91 | 
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| [55c494] | 92 |   // go through all potential potentials :)4
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 | 93 |   const PotentialFactory& factory = PotentialFactory::getConstInstance();
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 | 94 |   PotentialRegistry& registry = PotentialRegistry::getInstance();
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 | 95 |   SerializablePotential::ParticleTypes_t charges;
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 | 96 |   typedef std::set<BindingModel> unique_models_t;
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 | 97 |   unique_models_t unique_models;
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| [9b0dcd] | 98 |   BOOST_FOREACH(std::string &potential_name, potentials) {
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| [55c494] | 99 |     unique_models.clear();
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 | 100 | 
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 | 101 |     /**
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 | 102 |      * Approach:
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 | 103 |      * 1. get the number of particle types for the potential
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 | 104 |      * 2. create all combinations for the given elements and the number of particles
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 | 105 |      * 3. create the potential
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 | 106 |      * 4. gather all created potential's binding model in a set
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 | 107 |      * 5. if the binding model is already contained, discard the potential
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 | 108 |      * 6. if the binding model is not contained in the fragment's graph, discard it
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 | 109 |      * 7. if still valid, register potential
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 | 110 |      */
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 | 111 | 
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 | 112 |     // first need to construct potential, then may access it
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| [9b0dcd] | 113 |     const enum PotentialTypes potential_type = factory.getTypeForName(potential_name);
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 | 114 |     EmpiricalPotential const * const defaultPotential = factory.getDefaultPotential(potential_type);
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| [55c494] | 115 |     /// 1. get its number of particles
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 | 116 |     const unsigned int num_particles = defaultPotential->getParticleTypeNumber();
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 | 117 |     LOG(1, "INFO: Number of particles of " << potential_name << " is " << num_particles);
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 | 118 | 
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 | 119 |     if (num_particles > fragmentnumbers.size()) {
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 | 120 |       LOG(2, "DEBUG: Skipping potential " << potential_name << " as " << num_particles
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 | 121 |           << " required but fragment has only " << fragmentnumbers.size() << " particles.");
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 | 122 |       continue;
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 | 123 |     }
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 | 124 | 
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 | 125 |     /**
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| [80bf6e] | 126 |      * 2. create all unique combinations for the given elements and the number of particles
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 | 127 |      *
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 | 128 |      * Use the {1,...,fragmentnumbers.size()}, create every permutation and pick the first num_particle
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 | 129 |      * from the given charges. Finally, put all those into a set to retain only unique combinations.
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| [55c494] | 130 |      */
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| [80bf6e] | 131 |     std::set<SerializablePotential::ParticleTypes_t> charges_for_potentials;
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 | 132 |     std::vector<size_t> selection(boost::counting_iterator<int>(0), boost::counting_iterator<int>(fragmentnumbers.size()));
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| [55c494] | 133 |     do {
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 | 134 |       charges.clear();
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| [80bf6e] | 135 |       for (unsigned int i = 0; i < num_particles; ++i) {
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 | 136 |           charges.push_back(fragmentnumbers[selection[i]]);
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 | 137 |       }
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 | 138 |       // LOG(3, "DEBUG: Inserting charges " << charges);
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 | 139 |       charges_for_potentials.insert(charges);
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 | 140 |     } while (std::next_permutation(selection.begin(), selection.end()));
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 | 141 | 
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 | 142 | 
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 | 143 |     for (std::set<SerializablePotential::ParticleTypes_t>::const_iterator iter = charges_for_potentials.begin();
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 | 144 |         iter != charges_for_potentials.end(); ++iter) {
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| [55c494] | 145 |       /// 3. create the potential
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| [80bf6e] | 146 |       EmpiricalPotential* potential = factory.createInstance(potential_name, *iter);
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| [55c494] | 147 | 
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 | 148 |       /// 4. Gather all created potential's binding model in a set
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 | 149 |       std::pair<unique_models_t::iterator, bool> inserter = unique_models.insert(potential->getBindingModel());
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 | 150 | 
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 | 151 |       /// 5. if the binding model is already contained, discard the potential
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 | 152 |       if (inserter.second) {
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 | 153 |         /// 6. if the binding model is not contained in the fragment's graph, discard it
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 | 154 |         if (graph.contains(potential->getBindingModel().getGraph())) {
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 | 155 |           /// 7. If still valid, register potential
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 | 156 |           LOG(2, "DEBUG: Registering potential " << *potential);
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 | 157 |           registry.registerInstance(potential);
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 | 158 |           continue;
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 | 159 |         }
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 | 160 |       }
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 | 161 |       LOG(2, "DEBUG: Discarding potential " << *potential);
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 | 162 |       delete(potential);
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| [80bf6e] | 163 |     }
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| [55c494] | 164 |   }
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 | 165 | 
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 | 166 |   return Action::success;
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 | 167 | }
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 | 168 | 
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 | 169 | ActionState::ptr PotentialGeneratePotentialsAction::performUndo(ActionState::ptr _state) {
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 | 170 |   STATUS("Undo of PotentialGeneratePotentialsAction not implemented.");
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 | 171 |   return Action::failure;
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 | 172 | }
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 | 173 | 
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 | 174 | ActionState::ptr PotentialGeneratePotentialsAction::performRedo(ActionState::ptr _state){
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 | 175 |   STATUS("Redo of PotentialGeneratePotentialsAction not implemented.");
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 | 176 |   return Action::failure;
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 | 177 | }
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 | 178 | 
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 | 179 | bool PotentialGeneratePotentialsAction::canUndo() {
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 | 180 |   return false;
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 | 181 | }
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 | 182 | 
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 | 183 | bool PotentialGeneratePotentialsAction::shouldUndo() {
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 | 184 |   return false;
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 | 185 | }
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 | 186 | /** =========== end of function ====================== */
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