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