source: src/Fragmentation/Exporters/SphericalPointDistribution.hpp@ 2199c2

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Last change on this file since 2199c2 was 2199c2, checked in by Frederik Heber <heber@…>, 9 years ago

Extended SphericalPointDistribution::Polygon_t to WeightedPolygon_t.

  • contains additionally the weights from the already present points.
  • in order to deal sensibly with present bonds of higher degree (>1) that shift neighboring occupied orbitals even further away, we additionally pass on the bond degree. This indicates how many points of the N points have to be accumulated for this on present bond.
  • TESTS: Regression test FragmentMolecule-cylces failing for the moment.
  • Property mode set to 100644
File size: 5.1 KB
Line 
1/*
2 * SphericalPointDistribution.hpp
3 *
4 * Created on: May 29, 2014
5 * Author: heber
6 */
7
8
9#ifndef SPHERICALPOINTDISTRIBUTION_HPP_
10#define SPHERICALPOINTDISTRIBUTION_HPP_
11
12// include config.h
13#ifdef HAVE_CONFIG_H
14#include <config.h>
15#endif
16
17#include "CodePatterns/Assert.hpp"
18
19#include <cmath>
20#include <list>
21
22#include "LinearAlgebra/Vector.hpp"
23
24/** contains getters for the VSEPR model for specific number of electrons.
25 *
26 * This struct contains specialized functions returning a list of Vectors
27 * (points in space) to match the VSEPR model for the given number of electrons.
28 *
29 * This is implemented via template specialization of the function get().
30 *
31 * These specializations are taken from the python script \b CreateVspeShapes.py
32 * by Christian Neuen, 07th May 2009.
33 */
34struct SphericalPointDistribution
35{
36 /** Cstor for SphericalPointDistribution, allows setting radius of sphere
37 *
38 * \param _BondLength desired radius of sphere
39 */
40 SphericalPointDistribution(const double _Bondlength = 1.) :
41 Bondlength(_Bondlength)
42 {}
43
44 //!> typedef for the list of points
45 typedef std::list<Vector> Polygon_t;
46 //!> typedef for the list of points with integral weights
47 typedef std::list<std::pair<Vector, int> > WeightedPolygon_t;
48
49 /** General getter function for the distribution of points on the surface.
50 *
51 * \warn this function needs to be specialized!
52 *
53 * \return Polygon_t with points on the surface centered at (0,0,0)
54 */
55 template <int N> Polygon_t get() const
56 {
57 ASSERT(0, "SphericalPointDistribution::get() - not specialized for "+toString(N)+".");
58 return Polygon_t();
59 }
60
61 /** Matches a given spherical distribution with another containing more
62 * points.
63 *
64 * This is a helper to determine points where to best insert saturation
65 * hydrogens.
66 *
67 * \param _polygon current occupied positions
68 * \param _newpolygon ideal distribution to match best with current occupied
69 * positions
70 * \return remaining vacant positions relative to \a _polygon
71 */
72 static Polygon_t matchSphericalPointDistributions(
73 const WeightedPolygon_t &_polygon,
74 const Polygon_t &_newpolygon
75 );
76
77 //!> default radius of the spherical distribution
78 const double Bondlength;
79 //!> precalculated value for root of 3
80 static const double SQRT_3;
81
82 typedef std::pair<Vector, double> Rotation_t;
83
84 typedef std::list<unsigned int> IndexList_t;
85 typedef std::vector<unsigned int> IndexArray_t;
86 typedef std::vector<Vector> VectorArray_t;
87
88 //!> amplitude up to which deviations in checks of rotations are tolerated
89 static const double warn_amplitude;
90
91private:
92 static std::pair<double, double> calculateErrorOfMatching(
93 const std::vector<Vector> &_old,
94 const std::vector<Vector> &_new,
95 const IndexList_t &_Matching);
96
97 static Polygon_t removeMatchingPoints(
98 const VectorArray_t &_points,
99 const IndexList_t &_matchingindices
100 );
101
102 struct MatchingControlStructure {
103 bool foundflag;
104 double bestL2;
105 IndexList_t bestmatching;
106 VectorArray_t oldpoints;
107 VectorArray_t newpoints;
108 };
109
110 static void recurseMatchings(
111 MatchingControlStructure &_MCS,
112 IndexList_t &_matching,
113 IndexList_t _indices,
114 unsigned int _matchingsize);
115
116 static IndexList_t findBestMatching(
117 const WeightedPolygon_t &_polygon,
118 const Polygon_t &_newpolygon
119 );
120
121 static Rotation_t findPlaneAligningRotation(
122 const VectorArray_t &_referencepositions,
123 const VectorArray_t &_currentpositions,
124 const IndexList_t &_bestmatching
125 );
126
127 static Rotation_t findPointAligningRotation(
128 const VectorArray_t &remainingold,
129 const VectorArray_t &remainingnew,
130 const IndexList_t &_bestmatching);
131
132};
133
134// declare specializations
135
136template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<0>() const;
137template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<1>() const;
138template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<2>() const;
139template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<3>() const;
140template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<4>() const;
141template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<5>() const;
142template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<6>() const;
143template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<7>() const;
144template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<8>() const;
145template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<9>() const;
146template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<10>() const;
147template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<11>() const;
148template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<12>() const;
149template <> SphericalPointDistribution::Polygon_t SphericalPointDistribution::get<14>() const;
150
151#endif /* SPHERICALPOINTDISTRIBUTION_HPP_ */
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