| [e73ad9a] | 1 | /*
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 | 2 |  * Project: MoleCuilder
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 | 3 |  * Description: creates and alters molecular systems
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| [0aa122] | 4 |  * Copyright (C)  2010-2012 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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| [e73ad9a] | 21 |  */
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 | 22 | 
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 | 23 | /*
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 | 24 |  * CyclicStructureAnalysis.cpp
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 | 25 |  *
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 | 26 |  *  Created on: Feb 16, 2011
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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 "CodePatterns/MemDebug.hpp"
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 | 36 | 
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 | 37 | #include "CyclicStructureAnalysis.hpp"
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 | 38 | 
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| [ec7511] | 39 | #include <algorithm>
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 | 40 | 
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| [6f0841] | 41 | #include "Atom/atom.hpp"
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| [e73ad9a] | 42 | #include "Bond/bond.hpp"
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 | 43 | #include "CodePatterns/Assert.hpp"
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 | 44 | #include "CodePatterns/Info.hpp"
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 | 45 | #include "CodePatterns/Log.hpp"
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 | 46 | #include "CodePatterns/Verbose.hpp"
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| [3bdb6d] | 47 | #include "Element/element.hpp"
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| [e73ad9a] | 48 | #include "molecule.hpp"
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 | 49 | 
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| [9291d04] | 50 | CyclicStructureAnalysis::CyclicStructureAnalysis(const enum HydrogenTreatment _treatment) :
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 | 51 |   treatment(_treatment)
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| [e73ad9a] | 52 | {}
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 | 53 | 
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 | 54 | CyclicStructureAnalysis::~CyclicStructureAnalysis()
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 | 55 | {}
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 | 56 | 
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 | 57 | /** Initialise vertex as white with no predecessor, no shortest path(-1), color white.
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 | 58 |  * \param atom_id id of atom whose node we address
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 | 59 |  */
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 | 60 | void CyclicStructureAnalysis::InitNode(atomId_t atom_id)
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 | 61 | {
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 | 62 |   ShortestPathList[atom_id] = -1;
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 | 63 |   PredecessorList[atom_id] = 0;
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 | 64 |   ColorList[atom_id] = GraphEdge::white;
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 | 65 | }
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 | 66 | 
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 | 67 | void CyclicStructureAnalysis::Reset()
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 | 68 | {
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 | 69 |   // clear what's present
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 | 70 |   ShortestPathList.clear();
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 | 71 |   PredecessorList.clear();
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 | 72 |   ColorList.clear();
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 | 73 |   BFSStack.clear();
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 | 74 |   TouchedStack.clear();
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 | 75 | }
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 | 76 | 
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 | 77 | /** Clean the accounting structure for all nodes touched so far.
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 | 78 |  */
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 | 79 | void CyclicStructureAnalysis::CleanAllTouched()
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 | 80 | {
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 | 81 |   atom *Walker = NULL;
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 | 82 |   while (!TouchedStack.empty()) {
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 | 83 |     Walker = TouchedStack.front();
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 | 84 |     TouchedStack.pop_front();
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 | 85 |     PredecessorList[Walker->getNr()] = NULL;
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 | 86 |     ShortestPathList[Walker->getNr()] = -1;
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 | 87 |     ColorList[Walker->getNr()] = GraphEdge::white;
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 | 88 |   }
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 | 89 | }
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 | 90 | 
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 | 91 | /** Resets shortest path list and BFSStack.
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 | 92 |  * \param *&Walker current node, pushed onto BFSStack and TouchedStack
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 | 93 |  */
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 | 94 | void CyclicStructureAnalysis::InitializeToRoot(atom *&Root)
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 | 95 | {
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| [958312] | 96 |   ColorList.clear();
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 | 97 |   ShortestPathList.clear();
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| [e73ad9a] | 98 |   ShortestPathList[Root->getNr()] = 0;
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| [958312] | 99 |   PredecessorList.clear();
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| [e73ad9a] | 100 |   BFSStack.clear(); // start with empty BFS stack
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 | 101 |   BFSStack.push_front(Root);
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 | 102 |   TouchedStack.push_front(Root);
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 | 103 | }
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 | 104 | 
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| [83cc3e] | 105 | /** Performs a BFS from \a *Root, trying to find the same node and hence all cycles.
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 | 106 |  *
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 | 107 |  * We exclude the back edge, hence the direct way is prohibited. But as it is a back edge,
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 | 108 |  * there must be at least one more way to \a *Root. This leads us to all cycles for this
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 | 109 |  * back edge.
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 | 110 |  *
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| [8dbcaf] | 111 |  * \param OtherAtom pointing to Root on return indicating found cycle
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| [e73ad9a] | 112 |  * \param *&BackEdge the edge from root that we don't want to move along
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| [83cc3e] | 113 |  * \param MinRingSize set to minimum over all cycles encountered
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| [e73ad9a] | 114 |  */
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| [83cc3e] | 115 | void CyclicStructureAnalysis::findAllCyclesforBackEdge(
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 | 116 |     atom *&OtherAtom,
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 | 117 |     bond::ptr &BackEdge,
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 | 118 |     int &MinRingSize)
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| [e73ad9a] | 119 | {
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| [83cc3e] | 120 |   size_t MaximumHorizon = (size_t)-1; // will overflow to largest number
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| [e73ad9a] | 121 |   atom *Walker = NULL;
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 | 122 |   do { // look for Root
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 | 123 |     ASSERT(!BFSStack.empty(), "CyclicStructureAnalysis_CyclicBFSFromRootToRoot() - BFSStack is empty!");
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| [ec7511] | 124 |     Walker = BFSStack.back();
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 | 125 |     BFSStack.pop_back();
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| [8dbcaf] | 126 |     LOG(2, "INFO: Current Walker is " << *Walker << ", we look for SP to Root " << *Root << ".");
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| [83cc3e] | 127 | 
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 | 128 |     // check all edges/bonds from current Walker
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 | 129 |     if (MaximumHorizon >=  (size_t)ShortestPathList[Walker->getNr()]) {
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 | 130 |       const BondList& ListOfBonds = Walker->getListOfBonds();
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 | 131 |       for (BondList::const_iterator Runner = ListOfBonds.begin();
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 | 132 |           Runner != ListOfBonds.end();
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 | 133 |           ++Runner) {
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 | 134 |         if ((*Runner) != BackEdge) { // only walk along DFS spanning tree (otherwise we always find SP of one being backedge Binder)
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 | 135 |           OtherAtom = (*Runner)->GetOtherAtom(Walker);
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 | 136 |           if ((treatment == IncludeHydrogen) || (OtherAtom->getType()->getAtomicNumber() != 1)) {
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 | 137 |             LOG(2, "INFO: Current OtherAtom is: " << OtherAtom->getName() << " for bond " << *(*Runner) << ".");
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 | 138 |             if (ColorList[OtherAtom->getNr()] == GraphEdge::white) {
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 | 139 |               // we discovered a new node/atom
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 | 140 |               TouchedStack.push_front(OtherAtom);
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 | 141 |               ColorList[OtherAtom->getNr()] = GraphEdge::lightgray;
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 | 142 |               PredecessorList[OtherAtom->getNr()] = Walker; // Walker is the predecessor
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 | 143 |               ShortestPathList[OtherAtom->getNr()] = ShortestPathList[Walker->getNr()] + 1;
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 | 144 |               LOG(2, "INFO: Coloring OtherAtom " << OtherAtom->getName() << " lightgray, its predecessor is " << Walker->getName() << " and its Shortest Path is " << ShortestPathList[OtherAtom->getNr()] << " egde(s) long.");
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 | 145 |               //if (ShortestPathList[OtherAtom->getNr()] < MinimumRingSize[Walker->GetTrueFather()->getNr()]) { // Check for maximum distance
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 | 146 |               LOG(3, "ACCEPT: Putting OtherAtom " << OtherAtom->getName() << " into queue.");
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 | 147 |               BFSStack.push_front(OtherAtom);
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 | 148 |               //}
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 | 149 |             } else {
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 | 150 |               LOG(3, "REJECT: Not Adding, has already been visited.");
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 | 151 |             }
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 | 152 |             if (OtherAtom == Root)
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 | 153 |               break;
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| [07a47e] | 154 |           } else {
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| [83cc3e] | 155 |             LOG(2, "INFO: Skipping hydrogen atom " << *OtherAtom << ".");
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 | 156 |             ColorList[OtherAtom->getNr()] = GraphEdge::black;
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| [07a47e] | 157 |           }
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| [e73ad9a] | 158 |         } else {
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| [83cc3e] | 159 |           LOG(2, "REJECT: Bond " << *(*Runner) << " not Visiting, is the back edge.");
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| [e73ad9a] | 160 |         }
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 | 161 |       }
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| [83cc3e] | 162 |       ColorList[Walker->getNr()] = GraphEdge::black;
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 | 163 |       LOG(1, "INFO: Coloring Walker " << Walker->getName() << " " << GraphEdge::getColorName(ColorList[Walker->getNr()]) << ".");
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 | 164 |     } else {
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 | 165 |       LOG(1, "INFO: Skipping bonds for " << Walker->getName() << " as it resides on the horizon.");
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| [e73ad9a] | 166 |     }
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| [83cc3e] | 167 | 
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 | 168 |     // have we closed the cycle, i.e. stumbled upon Root by another mean than
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 | 169 |     // the back edge?
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 | 170 |     if (OtherAtom == Root) {
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 | 171 |       // check whether this cycle wasn't already found beforehand by stepping
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 | 172 |       // through predecessor list
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 | 173 |       int RingSize = RetrieveCycleMembers(OtherAtom, BackEdge, MinRingSize);
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 | 174 |       MaximumHorizon = std::min( MaximumHorizon, (size_t)RingSize );
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 | 175 |       LOG(2, "INFO: Maximum horizon is set to " << MaximumHorizon);
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 | 176 | 
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 | 177 |       // remove last step and prepare for a possible yet another path to Root
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 | 178 |       do {
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 | 179 |         ASSERT(!TouchedStack.empty(), "CyclicStructureAnalysis_CyclicBFSFromRootToRoot() - TouchedStack is empty!");
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 | 180 |         OtherAtom = TouchedStack.front();
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 | 181 |         TouchedStack.pop_front();
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 | 182 |         if (PredecessorList[OtherAtom->getNr()] == Walker) {
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 | 183 |           LOG(4, "INFO: Removing " << *OtherAtom << " from lists and stacks.");
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 | 184 |           PredecessorList[OtherAtom->getNr()] = NULL;
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 | 185 |           ShortestPathList[OtherAtom->getNr()] = -1;
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 | 186 |           ColorList[OtherAtom->getNr()] = GraphEdge::white;
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 | 187 |           // rats ... deque has no find()
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 | 188 |           std::deque<atom *>::iterator iter = find(
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 | 189 |               BFSStack.begin(),
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 | 190 |               BFSStack.end(),
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 | 191 |               OtherAtom);
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 | 192 |           ASSERT(iter != BFSStack.end(),
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 | 193 |               "CyclicStructureAnalysis_CyclicBFSFromRootToRoot() - can't find "+toString(*OtherAtom)+" on stack!");
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 | 194 |           BFSStack.erase(iter);
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| [ec7511] | 195 |         }
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| [83cc3e] | 196 |       } while ((!TouchedStack.empty()) && (PredecessorList[OtherAtom->getNr()] == NULL));
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 | 197 |       TouchedStack.push_front(OtherAtom); // last was wrongly popped
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 | 198 |       OtherAtom = BackEdge->rightatom; // set to not Root
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| [e73ad9a] | 199 |     }
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 | 200 |   } while ((!BFSStack.empty()) && (OtherAtom != Root) && (OtherAtom != NULL)); // || (ShortestPathList[OtherAtom->getNr()] < MinimumRingSize[Walker->GetTrueFather()->getNr()])));
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 | 201 | }
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 | 202 | 
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| [ec7511] | 203 | /** Extracts cycle from BFSAccounting::PredecessorList with given \a BackEdge and current \a Root.
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 | 204 |  *
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 | 205 |  * \param BackEdge back edge of this cycle
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 | 206 |  */
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 | 207 | CyclicStructureAnalysis::cycle_t CyclicStructureAnalysis::extractCurrentCycle(
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 | 208 |     bond::ptr &BackEdge)
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 | 209 | {
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 | 210 |   CyclicStructureAnalysis::cycle_t currentcycle;
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 | 211 |   atom *Walker = Root;
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 | 212 |   currentcycle.insert(Walker->GetTrueFather()->getId());
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 | 213 |   std::stringstream output;
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 | 214 |   while (Walker != BackEdge->rightatom) { // leftatom is root
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 | 215 |     Walker = PredecessorList[Walker->getNr()];
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 | 216 |     Walker->GetTrueFather()->IsCyclic = true;
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 | 217 |     output << Walker->getName() << " <-> ";
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 | 218 | #ifndef NDEBUG
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 | 219 |     std::pair< cycle_t::iterator, bool > inserter =
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 | 220 | #endif
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 | 221 |         currentcycle.insert(Walker->GetTrueFather()->getId());
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 | 222 |     ASSERT( inserter.second,
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 | 223 |         "CyclicStructureAnalysis::RetrieveCycleMembers() - we already inserted "
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 | 224 |         +toString(Walker->GetTrueFather()->getId())+" into currentcycle.");
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 | 225 |   }
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 | 226 |   LOG(3, "INFO: " << output.str() << Root->getName());
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 | 227 |   return currentcycle;
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 | 228 | }
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 | 229 | 
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| [e73ad9a] | 230 | /** Climb back the BFSAccounting::PredecessorList and find cycle members.
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 | 231 |  * \param *&OtherAtom
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 | 232 |  * \param *&BackEdge denotes the edge we did not want to travel along when doing CyclicBFSFromRootToRoot()
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 | 233 |  * \param &BFS accounting structure
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 | 234 |  * \param &MinRingSize global minimum distance from one node without encountering oneself, set on return
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| [83cc3e] | 235 |  * \return size of found cycle, -1 - nothing found, something went wrong
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| [e73ad9a] | 236 |  */
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| [83cc3e] | 237 | int CyclicStructureAnalysis::RetrieveCycleMembers(
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| [8dbcaf] | 238 |     atom *&OtherAtom,
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 | 239 |     bond::ptr &BackEdge,
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| [83cc3e] | 240 |     int &MinRingSize)
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| [e73ad9a] | 241 | {
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 | 242 |   int RingSize = -1;
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| [83cc3e] | 243 |   bool newcycle = false;
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| [e73ad9a] | 244 | 
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 | 245 |   if (OtherAtom == Root) {
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 | 246 |     // now climb back the predecessor list and thus find the cycle members
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 | 247 |     Root->GetTrueFather()->IsCyclic = true;
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 | 248 | 
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| [fe0cb8] | 249 |     {
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| [83cc3e] | 250 |       // check whether cycle is present already
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 | 251 |       atom *Walker = Root;
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 | 252 |       LOG(4, "DEBUG: Checking whether all predecessors are already marked cyclic ...");
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 | 253 |       while (Walker != BackEdge->rightatom) {  // Note that leftatom is Root itself
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 | 254 |         if (!Walker->GetTrueFather()->IsCyclic) { // if one bond in the loop is not marked as cyclic, we haven't found this cycle yet
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 | 255 |           LOG(4, "\tDEBUG: Walker " << *Walker << " is not cyclic, breaking.");
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 | 256 |           break;
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 | 257 |         } else
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 | 258 |           Walker = PredecessorList[Walker->getNr()];
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 | 259 |       }
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 | 260 |       LOG(4, "DEBUG: Checking done.");
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| [e73ad9a] | 261 | 
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| [83cc3e] | 262 |       // if each atom in found cycle is cyclic, loop's been found before already
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 | 263 | 
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 | 264 |       // exctract cycle
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 | 265 |       {
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 | 266 |         const cycle_t currentcycle = extractCurrentCycle(BackEdge);
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 | 267 |         if (Walker != BackEdge->rightatom) { // loop got round completely
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 | 268 |           allcycles.push_back(currentcycle);
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 | 269 |           newcycle = true;
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 | 270 |         } else {
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 | 271 |           LOG(3, "INFO: All bonds are marked cyclic already, checking allcycles whether cycle is already present.");
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 | 272 |           const cycles_t::const_iterator iter =
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 | 273 |               std::find(allcycles.begin(), allcycles.end(), currentcycle);
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 | 274 |           if (iter == allcycles.end()) { // not found
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 | 275 |             allcycles.push_back(currentcycle);
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 | 276 |             newcycle = true;
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 | 277 |           }
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 | 278 |         }
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 | 279 |         RingSize = currentcycle.size();
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 | 280 |         if (newcycle) {
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 | 281 |           LOG(0, "INFO: " << "Found ring contains: " << currentcycle << "  with a length of " << RingSize);
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 | 282 |         } else {
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 | 283 |           LOG(1, "INFO: cycle " << currentcycle << " is already present.");
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 | 284 |         }
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 | 285 |       }
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| [8dbcaf] | 286 |     }
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| [83cc3e] | 287 | 
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 | 288 |     if (newcycle) {
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 | 289 |       // walk through all and set MinimumRingSize
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 | 290 |       atom *Walker = Root;
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| [8dbcaf] | 291 |       if ((MinimumRingSize.count(Walker->GetTrueFather()->getNr()) == 0)
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| [83cc3e] | 292 |           || (RingSize < MinimumRingSize[Walker->GetTrueFather()->getNr()])) {
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| [e73ad9a] | 293 |         MinimumRingSize[Walker->GetTrueFather()->getNr()] = RingSize;
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| [83cc3e] | 294 |       } else {
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 | 295 |         LOG(3, "INFO: Not setting MinimumRingSize of "<< *(Walker->GetTrueFather())
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 | 296 |             << " to " << RingSize << " which is already set to "
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 | 297 |             << MinimumRingSize[Walker->GetTrueFather()->getNr()] << ".");
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 | 298 |       }
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 | 299 |       while (Walker != BackEdge->rightatom) { // note that Root is leftatom
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 | 300 |         Walker = PredecessorList[Walker->getNr()];
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 | 301 |         if ((MinimumRingSize.count(Walker->GetTrueFather()->getNr()) == 0)
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 | 302 |             || (RingSize < MinimumRingSize[Walker->GetTrueFather()->getNr()]))
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 | 303 |           MinimumRingSize[Walker->GetTrueFather()->getNr()] = RingSize;
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 | 304 |       }
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 | 305 |       if ((RingSize < MinRingSize) || (MinRingSize == -1))
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 | 306 |         MinRingSize = RingSize;
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| [e73ad9a] | 307 |     }
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 | 308 |   } else {
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| [8dbcaf] | 309 |     LOG(1, "INFO: No ring containing " << *Root << " with length equal to or smaller than " << MinimumRingSize[Root->GetTrueFather()->getNr()] << " found.");
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| [e73ad9a] | 310 |   }
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| [83cc3e] | 311 |   return RingSize;
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| [e73ad9a] | 312 | }
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 | 313 | 
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 | 314 | /** From a given node performs a BFS to touch the next cycle, for whose nodes \a MinimumRingSize is set and set it accordingly.
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| [8dbcaf] | 315 |  * \param *&Walker node to look for closest cycle from, i.e. \a MinimumRingSize is set for this node
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| [e73ad9a] | 316 |  * \param AtomCount number of nodes in graph
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 | 317 |  */
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| [8dbcaf] | 318 | void CyclicStructureAnalysis::BFSToNextCycle(atom *Walker)
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| [e73ad9a] | 319 | {
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| [8dbcaf] | 320 |   atom *Root = Walker;
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| [e73ad9a] | 321 |   atom *OtherAtom = Walker;
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 | 322 | 
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 | 323 |   Reset();
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 | 324 | 
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 | 325 |   InitializeToRoot(Walker);
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 | 326 |   while (OtherAtom != NULL) { // look for Root
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 | 327 |     ASSERT(!BFSStack.empty(), "CyclicStructureAnalysis_BFSToNextCycle() - BFSStack is empty!");
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 | 328 |     Walker = BFSStack.front();
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 | 329 |     BFSStack.pop_front();
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| [8dbcaf] | 330 |     LOG(2, "INFO: Current Walker is " << *Walker << ", BFS-stepping away from Root " << *Root << ".");
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| [e73ad9a] | 331 |     const BondList& ListOfBonds = Walker->getListOfBonds();
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 | 332 |     for (BondList::const_iterator Runner = ListOfBonds.begin();
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 | 333 |         Runner != ListOfBonds.end();
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 | 334 |         ++Runner) {
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 | 335 |       // "removed (*Runner) != BackEdge) || " from next if, is u
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| [8dbcaf] | 336 | 
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 | 337 |       // only walk along DFS spanning tree (otherwise we always find SP of 1
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 | 338 |       // being backedge Binder), but terminal hydrogens may be connected via
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 | 339 |       // backedge, hence extra check
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 | 340 | //      if ((ListOfBonds.size() != 1)) {
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| [e73ad9a] | 341 |         OtherAtom = (*Runner)->GetOtherAtom(Walker);
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| [8dbcaf] | 342 |         if ((treatment == IncludeHydrogen) || (OtherAtom->getType()->getAtomicNumber() != 1)) {
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 | 343 |           LOG(2, "INFO: Current OtherAtom is: " << OtherAtom->getName() << " for bond " << *(*Runner) << ".");
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 | 344 |           if (ColorList[OtherAtom->getNr()] == GraphEdge::white) {
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 | 345 |             TouchedStack.push_front(OtherAtom);
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 | 346 |             ColorList[OtherAtom->getNr()] = GraphEdge::lightgray;
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 | 347 |             PredecessorList[OtherAtom->getNr()] = Walker; // Walker is the predecessor
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 | 348 |             ShortestPathList[OtherAtom->getNr()] = ShortestPathList[Walker->getNr()] + 1;
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 | 349 |             LOG(2, "ACCEPT: Coloring OtherAtom "
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 | 350 |                 << OtherAtom->getName() << " lightgray, its predecessor is "
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 | 351 |                 << Walker->getName() << " and its Shortest Path is "
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 | 352 |                 << ShortestPathList[OtherAtom->getNr()] << " egde(s) long.");
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 | 353 |             // distance is a locally optimal criterion (we have eliminated all
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 | 354 |             // cycles already). Hence, we may assume that all set MinimumRingSize
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 | 355 |             // correspond to shortest distances to cycles. I.e., as soon as we reach
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 | 356 |             // as set MinimumRingSize we may use it and the current shortest path
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 | 357 |             // distance to it
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 | 358 |             if (MinimumRingSize.count(OtherAtom->GetTrueFather()->getNr())) {
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 | 359 |               LOG(2, "SUCCESS: Found set MinimumRingSize at " << *OtherAtom
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 | 360 |                   << ", walking back to Root " << *Root << ".");
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 | 361 |               // set all predecessors
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 | 362 |               const unsigned int shorttestpath = ShortestPathList[OtherAtom->getNr()];
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 | 363 |               atom *Backwalker = OtherAtom;
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 | 364 |               while (Backwalker != Root) {
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 | 365 |                 Backwalker = PredecessorList[Backwalker->getNr()];
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 | 366 |                 MinimumRingSize[Backwalker->GetTrueFather()->getNr()] =
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 | 367 |                     (shorttestpath - ShortestPathList[Backwalker->getNr()])
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 | 368 |                     + MinimumRingSize[OtherAtom->GetTrueFather()->getNr()];
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 | 369 |                 LOG(2, "Setting MinimumRingSize of " << *Backwalker << " to "
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 | 370 |                     << MinimumRingSize[Backwalker->GetTrueFather()->getNr()] << ".");
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 | 371 |               }
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 | 372 |               OtherAtom = NULL; //break;
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 | 373 |               break;
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 | 374 |             } else
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 | 375 |               BFSStack.push_front(OtherAtom);
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 | 376 |           } else {
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 | 377 |             LOG(3, "REJECT: Not Adding, has already been visited.");
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 | 378 |           }
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| [e73ad9a] | 379 |         } else {
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| [8dbcaf] | 380 |           LOG(3, "REJECT: Not Visiting, is a back edge to hydrogen.");
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| [e73ad9a] | 381 |         }
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| [8dbcaf] | 382 | //      }
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| [e73ad9a] | 383 |     }
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 | 384 |     ColorList[Walker->getNr()] = GraphEdge::black;
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 | 385 |     LOG(1, "INFO: Coloring Walker " << Walker->getName() << " " << GraphEdge::getColorName(ColorList[Walker->getNr()]) << ".");
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 | 386 |   }
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 | 387 | }
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 | 388 | 
 | 
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| [8dbcaf] | 389 | /** All nodes that are not in cycles get assigned a \a *&MinimumRingSize by BFS to next cycle.
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 | 390 |  * \param *&MinimumRingSize array with minimum distance without encountering oneself for each atom
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 | 391 |  * \param MinRingSize global minium distance
 | 
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| [e73ad9a] | 392 |  */
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| [83cc3e] | 393 | void CyclicStructureAnalysis::AssignRingSizetoNonCycleMembers(const int MinRingSize)
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| [e73ad9a] | 394 | {
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 | 395 |   atom *Walker = NULL;
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 | 396 |   if (MinRingSize != -1) { // if rings are present
 | 
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 | 397 |     // go over all atoms
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 | 398 |     World::AtomComposite allatoms = World::getInstance().getAllAtoms();
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 | 399 |     for (World::AtomComposite::const_iterator iter = allatoms.begin();
 | 
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 | 400 |         iter != allatoms.end();
 | 
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 | 401 |         ++iter) {
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| [8dbcaf] | 402 |       Walker = *iter;
 | 
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| [e73ad9a] | 403 | 
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| [8dbcaf] | 404 |       if (MinimumRingSize.find(Walker->GetTrueFather()->getNr()) == MinimumRingSize.end()) { // check whether MinimumRingSize is set, if not BFS to next where it is
 | 
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| [e73ad9a] | 405 |         LOG(1, "---------------------------------------------------------------------------------------------------------");
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| [8dbcaf] | 406 |         BFSToNextCycle(Walker);
 | 
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| [e73ad9a] | 407 |       }
 | 
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| [8dbcaf] | 408 |       ASSERT(MinimumRingSize.find(Walker->GetTrueFather()->getNr()) != MinimumRingSize.end(),
 | 
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| [e73ad9a] | 409 |           "CyclicStructureAnalysis::AssignRingSizetoNonCycleMembers() - BFSToNextCycle did not set MinimumRingSize of "
 | 
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| [8dbcaf] | 410 |           +toString(*(Walker->GetTrueFather()))+".");
 | 
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 | 411 |       LOG(1, "INFO: Minimum ring size of " << *Walker << " is " << MinimumRingSize[Walker->GetTrueFather()->getNr()] << ".");
 | 
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| [e73ad9a] | 412 |     }
 | 
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| [83cc3e] | 413 |     LOG(1, "INFO: Minimum ring size is " << MinRingSize << ", over " << allcycles.size() << " cycle(s) total.");
 | 
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| [e73ad9a] | 414 |   } else
 | 
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| [8dbcaf] | 415 |     LOG(1, "INFO: No rings were detected in the molecular structure.");
 | 
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| [e73ad9a] | 416 | }
 | 
|---|
 | 417 | 
 | 
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 | 418 | /** Analyses the cycles found and returns minimum of all cycle lengths.
 | 
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 | 419 |  * We begin with a list of Back edges found during DepthFirstSearchAnalysis(). We go through this list - one end is the Root,
 | 
|---|
 | 420 |  * the other our initial Walker - and do a Breadth First Search for the Root. We mark down each Predecessor and as soon as
 | 
|---|
 | 421 |  * we have found the Root via BFS, we may climb back the closed cycle via the Predecessors. Thereby we mark atoms and bonds
 | 
|---|
 | 422 |  * as cyclic and print out the cycles.
 | 
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 | 423 |  * \param *BackEdgeStack stack with all back edges found during DFS scan. Beware: This stack contains the bonds from the total molecule, not from the subgraph!
 | 
|---|
 | 424 |  * \todo BFS from the not-same-LP to find back to starting point of tributary cycle over more than one bond
 | 
|---|
 | 425 |  */
 | 
|---|
| [88c8ec] | 426 | void CyclicStructureAnalysis::operator()(std::deque<bond::ptr > * BackEdgeStack)
 | 
|---|
| [e73ad9a] | 427 | {
 | 
|---|
 | 428 |   Info FunctionInfo("CyclicStructureAnalysis");
 | 
|---|
 | 429 |   atom *Walker = NULL;
 | 
|---|
 | 430 |   atom *OtherAtom = NULL;
 | 
|---|
| [7d82a5] | 431 |   bond::ptr BackEdge;
 | 
|---|
| [e73ad9a] | 432 |   int MinRingSize = -1;
 | 
|---|
 | 433 | 
 | 
|---|
| [fe0cb8] | 434 |   // clear cycle container
 | 
|---|
 | 435 |   allcycles.clear();
 | 
|---|
 | 436 | 
 | 
|---|
| [8dbcaf] | 437 |   {
 | 
|---|
 | 438 |     std::stringstream output;
 | 
|---|
 | 439 |     output << "Back edge list - ";
 | 
|---|
 | 440 |     for (std::deque<bond::ptr >::const_iterator iter = BackEdgeStack->begin();
 | 
|---|
 | 441 |         iter != BackEdgeStack->end(); ++iter)
 | 
|---|
 | 442 |       output << **iter << " ";
 | 
|---|
 | 443 |     LOG(0, output.str());
 | 
|---|
 | 444 |   }
 | 
|---|
| [e73ad9a] | 445 | 
 | 
|---|
| [8dbcaf] | 446 |   LOG(1, "STATUS: Analysing cycles ... ");
 | 
|---|
| [e73ad9a] | 447 |   while (!BackEdgeStack->empty()) {
 | 
|---|
 | 448 |     BackEdge = BackEdgeStack->front();
 | 
|---|
 | 449 |     BackEdgeStack->pop_front();
 | 
|---|
 | 450 |     // this is the target
 | 
|---|
 | 451 |     Root = BackEdge->leftatom;
 | 
|---|
 | 452 |     // this is the source point
 | 
|---|
 | 453 |     Walker = BackEdge->rightatom;
 | 
|---|
 | 454 | 
 | 
|---|
 | 455 |     InitializeToRoot(Walker);
 | 
|---|
 | 456 | 
 | 
|---|
| [8dbcaf] | 457 |     LOG(1, "---------------------------------------------------------------------------------------------------------");
 | 
|---|
| [e73ad9a] | 458 |     OtherAtom = NULL;
 | 
|---|
| [83cc3e] | 459 |     // find all cycles for current BackEdge
 | 
|---|
 | 460 |     findAllCyclesforBackEdge(OtherAtom, BackEdge, MinRingSize);
 | 
|---|
| [e73ad9a] | 461 | 
 | 
|---|
 | 462 |     CleanAllTouched();
 | 
|---|
 | 463 |   }
 | 
|---|
| [83cc3e] | 464 |   AssignRingSizetoNonCycleMembers(MinRingSize);
 | 
|---|
| [e73ad9a] | 465 | }
 | 
|---|
 | 466 | 
 | 
|---|
 | 467 | /** Output a list of flags, stating whether the bond was visited or not.
 | 
|---|
 | 468 |  * \param *list list to print
 | 
|---|
 | 469 |  */
 | 
|---|
 | 470 | void CyclicStructureAnalysis::OutputAlreadyVisited(int *list)
 | 
|---|
 | 471 | {
 | 
|---|
 | 472 |   std::stringstream output;
 | 
|---|
 | 473 |   output << "Already Visited Bonds:\t";
 | 
|---|
 | 474 |   for (int i = 1; i <= list[0]; i++)
 | 
|---|
 | 475 |     output << list[i] << "  ";
 | 
|---|
 | 476 |   LOG(0, output.str());
 | 
|---|
 | 477 | }
 | 
|---|
 | 478 | 
 | 
|---|
 | 479 | const std::map<atomId_t, int >& CyclicStructureAnalysis::getMinimumRingSize() const
 | 
|---|
 | 480 | {
 | 
|---|
 | 481 |   return MinimumRingSize;
 | 
|---|
 | 482 | }
 | 
|---|