| [0331ee] | 1 | /*
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 | 2 |  * Interfragmenter.hpp
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 | 3 |  *
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 | 4 |  *  Created on: Jul 5, 2013
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 | 5 |  *      Author: heber
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 | 6 |  */
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 | 7 | 
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 | 8 | #ifndef INTERFRAGMENTER_HPP_
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 | 9 | #define INTERFRAGMENTER_HPP_
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 | 10 | 
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 | 11 | // include config.h
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 | 12 | #ifdef HAVE_CONFIG_H
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 | 13 | #include <config.h>
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 | 14 | #endif
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 | 15 | 
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| [0d9053] | 16 | #include <list>
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 | 17 | #include <map>
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| [0331ee] | 18 | #include <vector>
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 | 19 | 
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| [0d9053] | 20 | #include "AtomIdSet.hpp"
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| [0331ee] | 21 | #include "Fragmentation/HydrogenSaturation_enum.hpp"
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 | 22 | 
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 | 23 | class atom;
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 | 24 | class KeySet;
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 | 25 | class Graph;
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 | 26 | 
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 | 27 | /** This functor adds the union of certain fragments to a given set of fragments
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 | 28 |  * (a Graph) by combining them depending on whether they are (not) bonded and
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 | 29 |  * how far their centers are apart and which bond order they have.
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 | 30 |  *
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 | 31 |  * This is to allow calculation of interfragment energies. As fragments are
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 | 32 |  * always of the same molecule, energies in between molecules so far are only
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 | 33 |  * attained electrostratically, whereas dynamic correlation is totally missed.
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 | 34 |  * Interfragments that are calculate with e.g. a sensible Post-HF method contain
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 | 35 |  * dynamic correlation which can then be used for later potential fitting.
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 | 36 |  */
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 | 37 | class Interfragmenter
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 | 38 | {
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 | 39 | public:
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 | 40 |   /** Constructor for class Interfragmenter.
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 | 41 |    *
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 | 42 |    * \param _TotalGraph Graph with all fragments to interrelate
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 | 43 |    */
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 | 44 |   Interfragmenter(Graph &_TotalGraph) :
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 | 45 |     TotalGraph(_TotalGraph)
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 | 46 |   {}
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 | 47 | 
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 | 48 |   /** Adds interrelated fragments to TotalGraph up to \a MaxOrder and \a Rcut.
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 | 49 |    *
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 | 50 |    * \param MaxOrder maximum order for fragments to interrelate
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 | 51 |    * \param Rcut maximum distance to check for interrelatable fragments
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 | 52 |    * \param treatment whether hydrogens are treated specially or not
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 | 53 |    */
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 | 54 |   void operator()(
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| [0d9053] | 55 |       const size_t MaxOrder,
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 | 56 |       const double Rcut,
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| [0331ee] | 57 |       const enum HydrogenTreatment treatment);
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 | 58 | 
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| [cee9e8] | 59 |   /** This finds the largest cut off distance (\a Rcut) such that when running
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 | 60 |    * operator() no additional inter-fragments would be produced.
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 | 61 |    *
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 | 62 |    * \param MaxOrder maximum order for fragments to interrelate
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 | 63 |    * \param _upperbound upper bound on \a Rcut above which we do not look
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 | 64 |    * \param treatment whether hydrogens are treated specially or not
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 | 65 |    * \return largest cutoff distance to cause no additional inter-fragments
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 | 66 |    */
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 | 67 |   double findLargestCutoff(
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 | 68 |       const size_t _MaxOrder,
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 | 69 |       const double _upperbound,
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 | 70 |       const enum HydrogenTreatment _treatment) const;
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 | 71 | 
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| [0331ee] | 72 | private:
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 | 73 |   /** Helper to translate a keyset into a set of atoms.
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 | 74 |    *
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 | 75 |    * \param keyset
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 | 76 |    * \return vector of atom refs
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 | 77 |    */
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 | 78 |   std::vector<atom *> getAtomsFromKeySet(const KeySet &keyset) const;
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 | 79 | 
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| [0d9053] | 80 |   typedef std::list<const KeySet *> keysets_t;
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 | 81 |   typedef std::map<const atom *, keysets_t > atomkeyset_t;
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 | 82 | 
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 | 83 |   /** Helper function to create a map of atoms and their fragments/keysets.
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 | 84 |    *
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 | 85 |    * \param _MaxOrder maximum order
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 | 86 |    * \return map with atoms as a keys and fragments as values
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 | 87 |    */
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 | 88 |   atomkeyset_t getAtomKeySetMap(size_t _MaxOrder) const;
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 | 89 | 
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 | 90 |   typedef std::vector<const atom *> candidates_t;
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 | 91 | 
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 | 92 |   /** Helper function to get all atoms around a specific keyset not contained in
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 | 93 |    * the same molecule.
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 | 94 |    *
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 | 95 |    * \param _atoms all atoms of a fragment
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 | 96 |    * \param _Rcut desired distance cutoff
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 | 97 |    * \param _treatment whether hydrogens are treated special or not
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 | 98 |    */
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 | 99 |   candidates_t getNeighborsOutsideMolecule(
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 | 100 |       const AtomIdSet &_atoms,
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 | 101 |       const double _Rcut,
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 | 102 |       const enum HydrogenTreatment _treatment) const;
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 | 103 | 
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 | 104 |   /** Helper function to return a fragment/KeySet map specific to all candidates.
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 | 105 |    *
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 | 106 |    * \param _candidates all neighboring atoms around keyset
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 | 107 |    * \param _atomkeyset map with all atoms and the KeySets they are contained in
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 | 108 |    * \return specific fragment map
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 | 109 |    */
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 | 110 |   atomkeyset_t getCandidatesSpecificKeySetMap(
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 | 111 |       const candidates_t &_candidates,
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 | 112 |       const atomkeyset_t &_atomkeyset) const;
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 | 113 | 
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 | 114 |   /** For a given set of candidates atoms in \a _candidates and a \a _keyset
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 | 115 |    * we combine each fragment from either atom and place it into internal
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 | 116 |    * Graph.
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 | 117 |    *
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 | 118 |    * \param _MaxOrder maximum order
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 | 119 |    * \param _candidates all atoms neighboring the current out outside of its molecule
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 | 120 |    * \param _fragmentmap all keysets related to this atom
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 | 121 |    * \param _keyset current keyset (used as base for creating inter-fragments)
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 | 122 |    * \param _InterFragments container for all created inter-fragments
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 | 123 |    * \param _counter counts added fragments
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 | 124 |    */
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 | 125 |   void combineFragments(
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| [b1c5f46] | 126 |       const size_t _MaxOrder,
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| [0d9053] | 127 |       const candidates_t &_candidates,
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 | 128 |       atomkeyset_t &_fragmentmap,
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 | 129 |       const KeySet &_keyset,
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 | 130 |       Graph &_InterFragments,
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 | 131 |       int &_counter);
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| [0331ee] | 132 | 
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 | 133 | private:
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 | 134 |   Graph &TotalGraph;
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 | 135 | };
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 | 136 | 
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 | 137 | #endif /* INTERFRAGMENTER_HPP_ */
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