source: src/molecule.hpp@ 1b2d30

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Last change on this file since 1b2d30 was a3fded, checked in by Frederik Heber <heber@…>, 15 years ago

New class ThermoStatContainer containing all parameters and changes to ConfigFileBuffer.

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File size: 22.1 KB
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1/** \file molecule.hpp
2 *
3 * Class definitions of atom and molecule, element and periodentafel
4 */
5
6#ifndef MOLECULES_HPP_
7#define MOLECULES_HPP_
8
9using namespace std;
10
11/*********************************************** includes ***********************************/
12
13// GSL headers
14#include <gsl/gsl_eigen.h>
15#include <gsl/gsl_heapsort.h>
16#include <gsl/gsl_linalg.h>
17#include <gsl/gsl_matrix.h>
18#include <gsl/gsl_multimin.h>
19#include <gsl/gsl_vector.h>
20#include <gsl/gsl_randist.h>
21
22//// STL headers
23#include <map>
24#include <set>
25#include <deque>
26#include <list>
27#include <vector>
28
29#include <string>
30
31#include "defs.hpp"
32#include "graph.hpp"
33#include "stackclass.hpp"
34#include "tesselation.hpp"
35#include "Patterns/Observer.hpp"
36#include "Patterns/ObservedIterator.hpp"
37#include "Patterns/Cacheable.hpp"
38
39#include "Descriptors/MoleculeDescriptor_impl.hpp"
40
41/****************************************** forward declarations *****************************/
42
43class atom;
44class bond;
45class BondedParticle;
46class BondGraph;
47class element;
48class ForceMatrix;
49class LinkedCell;
50class molecule;
51class MoleculeLeafClass;
52class MoleculeListClass;
53class periodentafel;
54class Vector;
55
56/******************************** Some definitions for easier reading **********************************/
57
58#define MoleculeList list <molecule *>
59#define MoleculeListTest pair <MoleculeList::iterator, bool>
60
61#define DistancePair pair < double, atom* >
62#define DistanceMap multimap < double, atom* >
63#define DistanceTestPair pair < DistanceMap::iterator, bool>
64
65
66/************************************* Class definitions ****************************************/
67
68/** Structure to contain parameters needed for evaluation of constraint potential.
69 */
70struct EvaluatePotential
71{
72 int startstep; //!< start configuration (MDStep in atom::trajectory)
73 int endstep; //!< end configuration (MDStep in atom::trajectory)
74 atom **PermutationMap; //!< gives target ptr for each atom, array of size molecule::AtomCount (this is "x" in \f$ V^{con}(x) \f$ )
75 DistanceMap **DistanceList; //!< distance list of each atom to each atom
76 DistanceMap::iterator *StepList; //!< iterator to ascend through NearestNeighbours \a **DistanceList
77 int *DoubleList; //!< count of which sources want to move to this target, basically the injective measure (>1 -> not injective)
78 DistanceMap::iterator *DistanceIterators; //!< marks which was the last picked target as injective candidate with smallest distance
79 bool IsAngstroem; //!< whether coordinates are in angstroem (true) or bohrradius (false)
80 double *PenaltyConstants; //!< penalty constant in front of each term
81};
82
83/** The complete molecule.
84 * Class incorporates number of types
85 */
86class molecule : public PointCloud , public Observable {
87 friend molecule *NewMolecule();
88 friend void DeleteMolecule(molecule *);
89
90 public:
91 typedef std::set<atom*> atomSet;
92 typedef ObservedIterator<atomSet> iterator;
93 typedef atomSet::const_iterator const_iterator;
94
95 const periodentafel * const elemente; //!< periodic table with each element
96 // old deprecated atom handling
97 //atom *start; //!< start of atom list
98 //atom *end; //!< end of atom list
99 //bond *first; //!< start of bond list
100 //bond *last; //!< end of bond list
101 int MDSteps; //!< The number of MD steps in Trajectories
102 //int AtomCount; //!< number of atoms, brought up-to-date by CountAtoms()
103 int BondCount; //!< number of atoms, brought up-to-date by CountBonds()
104 int ElementCount; //!< how many unique elements are therein
105 int ElementsInMolecule[MAX_ELEMENTS]; //!< list whether element (sorted by atomic number) is alread present or not
106 mutable int NoNonHydrogen; //!< number of non-hydrogen atoms in molecule
107 mutable int NoNonBonds; //!< number of non-hydrogen bonds in molecule
108 mutable int NoCyclicBonds; //!< number of cyclic bonds in molecule, by DepthFirstSearchAnalysis()
109 double BondDistance; //!< typical bond distance used in CreateAdjacencyList() and furtheron
110 bool ActiveFlag; //!< in a MoleculeListClass used to discern active from inactive molecules
111 Vector Center; //!< Center of molecule in a global box
112 int IndexNr; //!< index of molecule in a MoleculeListClass
113 char name[MAXSTRINGSIZE]; //!< arbitrary name
114
115 private:
116 Cacheable<string> formula;
117 Cacheable<int> AtomCount;
118 moleculeId_t id;
119 atomSet atoms; //<!set of atoms
120 protected:
121 //void CountAtoms();
122 /**
123 * this iterator type should be used for internal variables, \
124 * since it will not lock
125 */
126 typedef atomSet::iterator internal_iterator;
127
128
129 molecule(const periodentafel * const teil);
130 virtual ~molecule();
131
132
133public:
134 //getter and setter
135 const std::string getName();
136 int getAtomCount() const;
137 int doCountAtoms();
138 moleculeId_t getId();
139 void setId(moleculeId_t);
140 void setName(const std::string);
141 const std::string getFormula();
142 std::string calcFormula();
143
144 iterator begin();
145 const_iterator begin() const;
146 iterator end();
147 const_iterator end() const;
148 bool empty() const;
149 size_t size() const;
150 const_iterator erase( const_iterator loc );
151 const_iterator erase( atom *& key );
152 const_iterator find ( atom *& key ) const;
153 pair<iterator,bool> insert ( atom * const key );
154
155
156 // re-definition of virtual functions from PointCloud
157 const char * const GetName() const;
158 Vector *GetCenter() const ;
159 TesselPoint *GetPoint() const ;
160 int GetMaxId() const;
161 void GoToNext() const ;
162 void GoToFirst() const ;
163 bool IsEmpty() const ;
164 bool IsEnd() const ;
165
166 // templates for allowing global manipulation of all vectors
167 template <typename res> void ActOnAllVectors( res (Vector::*f)() ) const;
168 template <typename res> void ActOnAllVectors( res (Vector::*f)() const) const;
169 template <typename res, typename T> void ActOnAllVectors( res (Vector::*f)(T), T t ) const;
170 template <typename res, typename T> void ActOnAllVectors( res (Vector::*f)(T) const, T t ) const;
171 template <typename res, typename T> void ActOnAllVectors( res (Vector::*f)(T&), T &t ) const;
172 template <typename res, typename T> void ActOnAllVectors( res (Vector::*f)(T&) const, T &t ) const;
173 template <typename res, typename T, typename U> void ActOnAllVectors( res (Vector::*f)(T, U), T t, U u ) const;
174 template <typename res, typename T, typename U> void ActOnAllVectors( res (Vector::*f)(T, U) const, T t, U u ) const;
175 template <typename res, typename T, typename U, typename V> void ActOnAllVectors( res (Vector::*f)(T, U, V), T t, U u, V v) const;
176 template <typename res, typename T, typename U, typename V> void ActOnAllVectors( res (Vector::*f)(T, U, V) const, T t, U u, V v) const;
177
178 // templates for allowing global manipulation of molecule with each atom as single argument
179 template <typename res> void ActWithEachAtom( res (molecule::*f)(atom *) ) const;
180 template <typename res> void ActWithEachAtom( res (molecule::*f)(atom *) const) const;
181
182 // templates for allowing global copying of molecule with each atom as single argument
183 template <typename res> void ActOnCopyWithEachAtom( res (molecule::*f)(atom *) , molecule *copy) const;
184 template <typename res> void ActOnCopyWithEachAtom( res (molecule::*f)(atom *) const, molecule *copy) const;
185
186 // templates for allowing global manipulation of all atoms
187 template <typename res, typename typ> void ActOnAllAtoms( res (typ::*f)() ) const;
188 template <typename res, typename typ> void ActOnAllAtoms( res (typ::*f)() const) const;
189 template <typename res, typename typ, typename T> void ActOnAllAtoms( res (typ::*f)(T), T t ) const;
190 template <typename res, typename typ, typename T> void ActOnAllAtoms( res (typ::*f)(T) const, T t ) const;
191 template <typename res, typename typ, typename T, typename U> void ActOnAllAtoms( res (typ::*f)(T, U), T t, U u ) const;
192 template <typename res, typename typ, typename T, typename U> void ActOnAllAtoms( res (typ::*f)(T, U) const, T t, U u ) const;
193 template <typename res, typename typ, typename T, typename U, typename V> void ActOnAllAtoms( res (typ::*f)(T, U, V), T t, U u, V v) const;
194 template <typename res, typename typ, typename T, typename U, typename V> void ActOnAllAtoms( res (typ::*f)(T, U, V) const, T t, U u, V v) const;
195 template <typename res, typename typ, typename T, typename U, typename V, typename W> void ActOnAllAtoms( res (typ::*f)(T, U, V, W), T t, U u, V v, W w) const;
196 template <typename res, typename typ, typename T, typename U, typename V, typename W> void ActOnAllAtoms( res (typ::*f)(T, U, V, W) const, T t, U u, V v, W w) const;
197
198 // templates for allowing conditional global copying of molecule with each atom as single argument
199 template <typename res> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) () ) const;
200 template <typename res> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) () const ) const;
201 template <typename res> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) () ) const;
202 template <typename res> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) () const ) const;
203 template <typename res, typename T> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) (T), T t ) const;
204 template <typename res, typename T> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) (T) const, T t ) const;
205 template <typename res, typename T> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) (T), T t ) const;
206 template <typename res, typename T> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) (T) const, T t ) const;
207 template <typename res, typename T, typename U> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) (T, U), T t, U u ) const;
208 template <typename res, typename T, typename U> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) (T, U) const, T t, U u ) const;
209 template <typename res, typename T, typename U> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) (T, U), T t, U u ) const;
210 template <typename res, typename T, typename U> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) (T, U) const, T t, U u ) const;
211 template <typename res, typename T, typename U, typename V> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) (T, U, V), T t, U u, V v ) const;
212 template <typename res, typename T, typename U, typename V> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) , molecule *copy, bool (atom::*condition) (T, U, V) const, T t, U u, V v ) const;
213 template <typename res, typename T, typename U, typename V> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) (T, U, V), T t, U u, V v ) const;
214 template <typename res, typename T, typename U, typename V> void ActOnCopyWithEachAtomIfTrue( res (molecule::*f)(atom *) const , molecule *copy, bool (atom::*condition) (T, U, V) const, T t, U u, V v ) const;
215
216 // templates for allowing global manipulation of an array with one entry per atom
217 void SetIndexedArrayForEachAtomTo ( atom **array, int ParticleInfo::* index) const;
218 template <typename T> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::* index, void (*Setor)(T *, T *)) const;
219 template <typename T> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::* index, void (*Setor)(T *, T *), T t) const;
220 template <typename T> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::* index, void (*Setor)(T *, T *), T *t) const;
221 template <typename T> void SetIndexedArrayForEachAtomTo ( T *array, int element::* index, void (*Setor)(T *, T *)) const;
222 template <typename T> void SetIndexedArrayForEachAtomTo ( T *array, int element::* index, void (*Setor)(T *, T *), T t) const;
223 template <typename T> void SetIndexedArrayForEachAtomTo ( T *array, int element::* index, void (*Setor)(T *, T *), T *t) const;
224 template <typename T, typename typ> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::*index, T (atom::*Setor)(typ &), typ atom::*value) const;
225 template <typename T, typename typ> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::*index, T (atom::*Setor)(typ &) const, typ atom::*value) const;
226 template <typename T, typename typ> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::*index, T (atom::*Setor)(typ &), typ &vect ) const;
227 template <typename T, typename typ> void SetIndexedArrayForEachAtomTo ( T *array, int ParticleInfo::*index, T (atom::*Setor)(typ &) const, typ &vect ) const;
228
229 // templates for allowing global manipulation of each atom by entries in an array
230 template <typename T, typename typ, typename typ2> void SetAtomValueToIndexedArray ( T *array, int typ::*index, T typ2::*value ) const;
231 template <typename T, typename typ> void SetAtomValueToValue ( T value, T typ::*ptr ) const;
232
233 template <typename res, typename typ> res SumPerAtom(res (typ::*f)() ) const;
234 template <typename res, typename typ> res SumPerAtom(res (typ::*f)() const ) const;
235 template <typename res, typename typ, typename T> res SumPerAtom(res (typ::*f)(T) , T t ) const;
236 template <typename res, typename typ, typename T> res SumPerAtom(res (typ::*f)(T) const, T t ) const;
237
238 /// remove atoms from molecule.
239 bool AddAtom(atom *pointer);
240 bool RemoveAtom(atom *pointer);
241 bool UnlinkAtom(atom *pointer);
242 bool CleanupMolecule();
243
244 /// Add/remove atoms to/from molecule.
245 atom * AddCopyAtom(atom *pointer);
246 bool AddXYZFile(string filename);
247 bool AddHydrogenReplacementAtom(bond *Bond, atom *BottomOrigin, atom *TopOrigin, atom *TopReplacement, bool IsAngstroem);
248 bond * AddBond(atom *first, atom *second, int degree = 1);
249 bool RemoveBond(bond *pointer);
250 bool RemoveBonds(atom *BondPartner);
251 bool hasBondStructure();
252 unsigned int CountBonds() const;
253
254 /// Find atoms.
255 atom * FindAtom(int Nr) const;
256 atom * AskAtom(string text);
257
258 /// Count and change present atoms' coordination.
259 void CountElements();
260 void CalculateOrbitals(class config &configuration);
261 bool CenterInBox();
262 bool BoundInBox();
263 void CenterEdge(Vector *max);
264 void CenterOrigin();
265 void CenterPeriodic();
266 void CenterAtVector(Vector *newcenter);
267 void Translate(const Vector *x);
268 void TranslatePeriodically(const Vector *trans);
269 void Mirror(const Vector *x);
270 void Align(Vector *n);
271 void Scale(const double ** const factor);
272 void DeterminePeriodicCenter(Vector &center);
273 Vector * DetermineCenterOfGravity();
274 Vector * DetermineCenterOfAll() const;
275 Vector * DetermineCenterOfBox() const;
276 void SetNameFromFilename(const char *filename);
277 void SetBoxDimension(Vector *dim);
278 void ScanForPeriodicCorrection();
279 bool VerletForceIntegration(char *file, config &configuration);
280 void Thermostats(config &configuration, double ActualTemp, int Thermostat);
281 void PrincipalAxisSystem(bool DoRotate);
282 double VolumeOfConvexEnvelope(bool IsAngstroem);
283
284 double ConstrainedPotential(struct EvaluatePotential &Params);
285 double MinimiseConstrainedPotential(atom **&permutation, int startstep, int endstep, bool IsAngstroem);
286 void EvaluateConstrainedForces(int startstep, int endstep, atom **PermutationMap, ForceMatrix *Force);
287 bool LinearInterpolationBetweenConfiguration(int startstep, int endstep, const char *prefix, config &configuration, bool MapByIdentity);
288
289 bool CheckBounds(const Vector *x) const;
290 void GetAlignvector(struct lsq_params * par) const;
291
292 /// Initialising routines in fragmentation
293 void CreateAdjacencyListFromDbondFile(ifstream *output);
294 void CreateAdjacencyList(double bonddistance, bool IsAngstroem, void (BondGraph::*f)(BondedParticle * const , BondedParticle * const , double &, double &, bool), BondGraph *BG = NULL);
295 int CorrectBondDegree() const;
296 void OutputBondsList() const;
297 void CyclicBondAnalysis() const;
298 void OutputGraphInfoPerAtom() const;
299 void OutputGraphInfoPerBond() const;
300
301
302 // Graph analysis
303 MoleculeLeafClass * DepthFirstSearchAnalysis(class StackClass<bond *> *&BackEdgeStack) const;
304 void CyclicStructureAnalysis(class StackClass<bond *> *BackEdgeStack, int *&MinimumRingSize) const;
305 bool PickLocalBackEdges(atom **ListOfLocalAtoms, class StackClass<bond *> *&ReferenceStack, class StackClass<bond *> *&LocalStack) const;
306 bond * FindNextUnused(atom *vertex) const;
307 void SetNextComponentNumber(atom *vertex, int nr) const;
308 void ResetAllBondsToUnused() const;
309 int CountCyclicBonds();
310 bool CheckForConnectedSubgraph(KeySet *Fragment);
311 string GetColor(enum Shading color) const;
312 bond * CopyBond(atom *left, atom *right, bond *CopyBond);
313
314
315 molecule *CopyMolecule();
316 molecule* CopyMoleculeFromSubRegion(const Vector offset, const double *parallelepiped) const;
317
318 /// Fragment molecule by two different approaches:
319 int FragmentMolecule(int Order, config *configuration);
320 bool CheckOrderAtSite(bool *AtomMask, Graph *GlobalKeySetList, int Order, int *MinimumRingSize, char *path = NULL);
321 bool StoreBondsToFile(char *path, char *filename);
322 bool StoreAdjacencyToFile(char *path, char *filename);
323 bool CheckAdjacencyFileAgainstMolecule(char *path, atom **ListOfAtoms);
324 bool ParseOrderAtSiteFromFile(char *path);
325 bool StoreOrderAtSiteFile(char *path);
326 bool StoreForcesFile(MoleculeListClass *BondFragments, char *path, int *SortIndex);
327 bool CreateMappingLabelsToConfigSequence(int *&SortIndex);
328 bool CreateFatherLookupTable(atom **&LookupTable, int count = 0);
329 void BreadthFirstSearchAdd(molecule *Mol, atom **&AddedAtomList, bond **&AddedBondList, atom *Root, bond *Bond, int BondOrder, bool IsAngstroem);
330 /// -# BOSSANOVA
331 void FragmentBOSSANOVA(Graph *&FragmentList, KeyStack &RootStack, int *MinimumRingSize);
332 int PowerSetGenerator(int Order, struct UniqueFragments &FragmentSearch, KeySet RestrictedKeySet);
333 bool BuildInducedSubgraph(const molecule *Father);
334 molecule * StoreFragmentFromKeySet(KeySet &Leaflet, bool IsAngstroem);
335 void SPFragmentGenerator(struct UniqueFragments *FragmentSearch, int RootDistance, bond **BondsSet, int SetDimension, int SubOrder);
336 int LookForRemovalCandidate(KeySet *&Leaf, int *&ShortestPathList);
337 int GuesstimateFragmentCount(int order);
338
339 // Recognize doubly appearing molecules in a list of them
340 int * IsEqualToWithinThreshold(molecule *OtherMolecule, double threshold);
341 int * GetFatherSonAtomicMap(molecule *OtherMolecule);
342
343 // Output routines.
344 bool Output(ofstream * const output);
345 bool OutputTrajectories(ofstream * const output);
346 void OutputListOfBonds() const;
347 bool OutputXYZ(ofstream * const output) const;
348 bool OutputTrajectoriesXYZ(ofstream * const output);
349 bool Checkout(ofstream * const output) const;
350 bool OutputTemperatureFromTrajectories(ofstream * const output, int startstep, int endstep);
351
352 // Manipulation routines
353 void flipActiveFlag();
354
355 private:
356 int last_atom; //!< number given to last atom
357 mutable internal_iterator InternalPointer; //!< internal pointer for PointCloud
358};
359
360molecule *NewMolecule();
361void DeleteMolecule(molecule* mol);
362
363#include "molecule_template.hpp"
364
365/** A list of \a molecule classes.
366 */
367class MoleculeListClass : public Observable {
368 public:
369 MoleculeList ListOfMolecules; //!< List of the contained molecules
370 int MaxIndex;
371
372 MoleculeListClass(World *world);
373 ~MoleculeListClass();
374
375 bool AddHydrogenCorrection(char *path);
376 bool StoreForcesFile(char *path, int *SortIndex);
377 void insert(molecule *mol);
378 void erase(molecule *mol);
379 molecule * ReturnIndex(int index);
380 bool OutputConfigForListOfFragments(config *configuration, int *SortIndex);
381 int NumberOfActiveMolecules();
382 void Enumerate(ostream *out);
383 void Output(ofstream *out);
384 void DissectMoleculeIntoConnectedSubgraphs(const periodentafel * const periode, config * const configuration);
385 int CountAllAtoms() const;
386
387 // Methods moved here from the menus
388 // TODO: more refactoring needed on these methods
389 void flipChosen();
390 void createNewMolecule(periodentafel *periode);
391 void loadFromXYZ(periodentafel *periode);
392 void setMoleculeFilename();
393 void parseXYZIntoMolecule();
394 void eraseMolecule();
395
396
397 // merging of molecules
398 bool SimpleMerge(molecule *mol, molecule *srcmol);
399 bool SimpleAdd(molecule *mol, molecule *srcmol);
400 bool SimpleMultiMerge(molecule *mol, int *src, int N);
401 bool SimpleMultiAdd(molecule *mol, int *src, int N);
402 bool ScatterMerge(molecule *mol, int *src, int N);
403 bool EmbedMerge(molecule *mol, molecule *srcmol);
404
405 private:
406 World *world; //!< The world this List belongs to. Needed to avoid deadlocks in the destructor
407};
408
409
410/** A leaf for a tree of \a molecule class
411 * Wraps molecules in a tree structure
412 */
413class MoleculeLeafClass {
414 public:
415 molecule *Leaf; //!< molecule of this leaf
416 //MoleculeLeafClass *UpLeaf; //!< Leaf one level up
417 //MoleculeLeafClass *DownLeaf; //!< First leaf one level down
418 MoleculeLeafClass *previous; //!< Previous leaf on this level
419 MoleculeLeafClass *next; //!< Next leaf on this level
420
421 //MoleculeLeafClass(MoleculeLeafClass *Up, MoleculeLeafClass *Previous);
422 MoleculeLeafClass(MoleculeLeafClass *PreviousLeaf);
423 ~MoleculeLeafClass();
424
425 bool AddLeaf(molecule *ptr, MoleculeLeafClass *Previous);
426 bool FillBondStructureFromReference(const molecule * const reference, int &FragmentCounter, atom ***&ListOfLocalAtoms, bool FreeList = false);
427 bool FillRootStackForSubgraphs(KeyStack *&RootStack, bool *AtomMask, int &FragmentCounter);
428 bool AssignKeySetsToFragment(molecule *reference, Graph *KeySetList, atom ***&ListOfLocalAtoms, Graph **&FragmentList, int &FragmentCounter, bool FreeList = false);
429 bool FillListOfLocalAtoms(atom ***&ListOfLocalAtoms, const int FragmentCounter, const int GlobalAtomCount, bool &FreeList);
430 void TranslateIndicesToGlobalIDs(Graph **FragmentList, int &FragmentCounter, int &TotalNumberOfKeySets, Graph &TotalGraph);
431 int Count() const;
432};
433
434
435#endif /*MOLECULES_HPP_*/
436
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