| [8f6e2a] | 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)  2012 University of Bonn. All rights reserved.
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| [94d5ac6] | 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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| [8f6e2a] | 21 |  */
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 | 22 | 
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 | 23 | /*
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 | 24 |  * Cluster.cpp
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 | 25 |  *
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 | 26 |  *  Created on: Jan 16, 2012
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 | 27 |  *      Author: heber
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 | 28 |  */
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 | 29 | 
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 | 30 | 
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 | 31 | // include config.h
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 | 32 | #ifdef HAVE_CONFIG_H
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 | 33 | #include <config.h>
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 | 34 | #endif
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 | 35 | 
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 | 36 | #include "CodePatterns/MemDebug.hpp"
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 | 37 | 
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 | 38 | #include <algorithm>
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 | 39 | #include <boost/bind.hpp>
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 | 40 | #include <boost/foreach.hpp>
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 | 41 | 
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 | 42 | #include "Cluster.hpp"
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 | 43 | 
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 | 44 | #include "CodePatterns/Assert.hpp"
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 | 45 | #include "CodePatterns/Log.hpp"
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 | 46 | 
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 | 47 | #include "Atom/atom.hpp"
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 | 48 | #include "Descriptors/AtomIdDescriptor.hpp"
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 | 49 | #include "LinearAlgebra/RealSpaceMatrix.hpp"
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 | 50 | #include "LinearAlgebra/Vector.hpp"
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 | 51 | #include "Shapes/ShapeOps.hpp"
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 | 52 | #include "World.hpp"
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 | 53 | 
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 | 54 | /** Constructor for class Cluster.
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 | 55 |  *
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 | 56 |  * @param _s Shape of this Cluster
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 | 57 |  */
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 | 58 | Cluster::Cluster(const Shape & _s) :
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 | 59 |     s(_s)
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 | 60 | {}
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 | 61 | 
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 | 62 | /** Copy Constructor for class Cluster.
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 | 63 |  *
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 | 64 |  * Here, we do not check whether we atomds reside in the Shape or not, as
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 | 65 |  * this should have been validated in the instance to copy \a _cluster.
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 | 66 |  *
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 | 67 |  * @param _cluster instance to copy
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 | 68 |  */
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 | 69 | Cluster::Cluster(const Cluster & _cluster) :
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 | 70 |     atoms(_cluster.atoms),
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 | 71 |     s(_cluster.s)
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 | 72 | {}
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 | 73 | 
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 | 74 | /** Constructor for class Cluster.
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 | 75 |  *
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 | 76 |  * @param _atoms list of atoms to place in this cluster
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 | 77 |  * @param _s Shape of this Cluster
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 | 78 |  */
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 | 79 | Cluster::Cluster(const atomIdSet & _atoms, const Shape & _s) :
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 | 80 |     s(_s)
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 | 81 | {
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 | 82 |   // make sure only those atoms are in Cluster that are also inside its Shape
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 | 83 |   std::vector<atomId_t> tempIds(_atoms.size(), (size_t)-1);
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 | 84 |   std::vector<atomId_t>::iterator iter =
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 | 85 |       std::remove_copy_if( _atoms.begin(), _atoms.end(), tempIds.begin(),
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 | 86 |           !boost::bind(&Cluster::IsInShape, this, _1) );
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 | 87 |   tempIds.erase( iter, tempIds.end() );
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 | 88 |   ASSERT( tempIds.size() == _atoms.size(),
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 | 89 |       "Cluster::Cluster() - at least one atom is not inside the Shape.");
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 | 90 |   atoms.insert( tempIds.begin(), tempIds.end() );
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 | 91 |   LOG(1, "INFO: New cluster has " << atoms.size() << " atoms.");
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 | 92 | }
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 | 93 | 
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 | 94 | 
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 | 95 | /** Destructor for class Cluster.
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 | 96 |  *
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 | 97 |  */
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 | 98 | Cluster::~Cluster()
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 | 99 | {}
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 | 100 | 
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 | 101 | /** Inserts an atomic by its \a id into the Cluster.
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 | 102 |  *
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 | 103 |  * We check whether the atom is inside the given Shape \a s.
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 | 104 |  *
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 | 105 |  * @param id id to insert
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 | 106 |  */
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 | 107 | void Cluster::insert(const atomId_t id)
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 | 108 | {
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 | 109 |   const bool status = IsInShape(id);
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 | 110 |   ASSERT(status,
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 | 111 |       "Cluster::insert() - atomic id "+toString(id)+" is not contained in Shape.");
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 | 112 |   if (status) {
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 | 113 |     std::pair<atomIdSet::iterator, bool> inserter = atoms.insert(id);
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 | 114 |     ASSERT(inserter.second,
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 | 115 |         "Cluster::insert() - atomic id "+toString(id)+" is already present.");
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 | 116 |   }
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 | 117 | }
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 | 118 | 
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 | 119 | /** Remove atom by its \a id from the cluster.
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 | 120 |  *
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 | 121 |  * @param id atom to remove
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 | 122 |  */
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 | 123 | void Cluster::erase(const atomId_t id)
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 | 124 | {
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 | 125 |   atomIdSet::iterator iter = atoms.find(id);
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 | 126 |   ASSERT(iter != atoms.end(),
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 | 127 |       "Cluster::erase() - atomic id "+toString(id)+" unknown in this Cluster.");
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 | 128 |   if (iter != atoms.end())
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 | 129 |     atoms.erase(iter);
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 | 130 | }
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 | 131 | 
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 | 132 | /** Checks whether a given atom is within the shape \a s.
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 | 133 |  *
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 | 134 |  * @param id atomic id to check
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 | 135 |  * @return true - is in Shape, false - is not contained (or does not exist)
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 | 136 |  */
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 | 137 | bool Cluster::IsInShape(const atomId_t id) const
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 | 138 | {
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 | 139 |   const atom * const _atom = getAtomById(id);
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 | 140 |   if (_atom != NULL)
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 | 141 |     return s.isInside(_atom->getPosition());
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 | 142 |   else
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 | 143 |     return false;
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 | 144 | }
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 | 145 | 
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 | 146 | /** Helper function for looking up atomic reference by its id.
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 | 147 |  *
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 | 148 |  * @param id id to look up
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 | 149 |  * @return reference to atom with this id
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 | 150 |  */
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 | 151 | atom * const Cluster::getAtomById(const atomId_t id) const
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 | 152 | {
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 | 153 |   atom * const _atom = World::getInstance().getAtom(AtomById(id));
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 | 154 |   ASSERT(_atom != NULL,
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 | 155 |       "Cluster::getAtomById() - id "+toString(id)+" is unknown to World.");
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 | 156 |   return _atom;
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 | 157 | }
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 | 158 | 
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 | 159 | bool isNullAtom(const atom* _atom) {
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 | 160 |   return _atom == NULL;
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 | 161 | }
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 | 162 | 
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 | 163 | /** Getter for the underlying true atoms refs.
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 | 164 |  *
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 | 165 |  * @return AtomVector filled with looked-up atom references
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 | 166 |  */
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 | 167 | Cluster::AtomVector Cluster::getAtomRefs() const
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 | 168 | {
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 | 169 |   AtomVector atomVector;
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 | 170 |   atomVector.reserve(atoms.size());
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 | 171 |   BOOST_FOREACH(atomId_t _id, atoms) {
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 | 172 |     atom * const _atom = World::getInstance().getAtom(AtomById(_id));
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 | 173 |     if (_atom != NULL)
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 | 174 |       atomVector.push_back( _atom );
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 | 175 |     else
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 | 176 |       ASSERT( false, "Cluster::getAtomRefs() - unknown id "+toString(_id)+".");
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 | 177 |   }
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 | 178 |   return atomVector;
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 | 179 | }
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 | 180 | 
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 | 181 | /** Clone function for this instance.
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 | 182 |  *
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 | 183 |  * @param copyMethod functor that knows how to copy atoms
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 | 184 |  * @param offset Vector to translate new cluster relative to old one
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 | 185 |  * @return another instance with newly allocated atoms
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 | 186 |  */
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 | 187 | ClusterInterface::Cluster_impl Cluster::clone(
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 | 188 |     CopyAtomsInterface& copyMethod,
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 | 189 |     const Vector &offset) const
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 | 190 | {
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 | 191 |   LOG(2, "INFO: Clone this cluster with " << atoms.size() << " atoms.");
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 | 192 |   /// get another cluster instance
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 | 193 |   Cluster * clonedInstance = new Cluster(::translate(getShape(), offset));
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 | 194 | 
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 | 195 |   /// copy and move atoms
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 | 196 |   copyMethod(getAtomRefs());
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 | 197 |   AtomVector CopiedAtoms = copyMethod.getCopiedAtoms();
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 | 198 |   BOOST_FOREACH( atom *_atom, CopiedAtoms) {
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 | 199 |     _atom->setPosition( _atom->getPosition() + offset );
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 | 200 |   }
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 | 201 | 
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 | 202 |   /// fill copied atoms into new instance
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 | 203 |   // dont use a set here, makes life hard with STL algos
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 | 204 |   std::vector<atomId_t> Copies(CopiedAtoms.size(), (size_t)-1);
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 | 205 |   std::transform(CopiedAtoms.begin(), CopiedAtoms.end(), Copies.begin(),
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 | 206 |       boost::bind(&atom::getId, _1) );
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 | 207 |   clonedInstance->atoms.insert(Copies.begin(), Copies.end());
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 | 208 | 
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 | 209 |   return ClusterInterface::Cluster_impl(clonedInstance);
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 | 210 | }
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 | 211 | 
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 | 212 | /** Translate atoms inside Cluster and Shape.
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 | 213 |  *
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 | 214 |  * @param offset offset to translate by
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 | 215 |  */
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 | 216 | void Cluster::translate(const Vector &offset)
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 | 217 | {
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 | 218 |   // move atoms
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 | 219 |   AtomVector atomVector = getAtomRefs();
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 | 220 |   BOOST_FOREACH(atom *_atom, atomVector) {
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 | 221 |     _atom->setPosition(_atom->getPosition()+offset);
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 | 222 |   }
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 | 223 |   // translate shape
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 | 224 |   s = ::translate(s, offset);
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 | 225 | }
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 | 226 | 
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 | 227 | /** Transform atoms inside Cluster and Shape.
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 | 228 |  *
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 | 229 |  * @param M transformation matrix
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 | 230 |  */
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 | 231 | void Cluster::transform(const RealSpaceMatrix &M)
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 | 232 | {
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 | 233 |   // transform atoms
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 | 234 |   AtomVector atomVector = getAtomRefs();
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 | 235 |   BOOST_FOREACH(atom *_atom, atomVector) {
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 | 236 |     _atom->setPosition( M * _atom->getPosition() );
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 | 237 |   }
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 | 238 |   // translate shape
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 | 239 |   s = ::transform(s, M);
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 | 240 | }
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