[14de469] | 1 | /** \file molecules.cpp
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[69eb71] | 2 | *
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[14de469] | 3 | * Functions for the class molecule.
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[69eb71] | 4 | *
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[14de469] | 5 | */
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| 6 |
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[aafd77] | 7 | #ifdef HAVE_CONFIG_H
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| 8 | #include <config.h>
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| 9 | #endif
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| 10 |
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[112b09] | 11 | #include "Helpers/MemDebug.hpp"
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| 12 |
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[49e1ae] | 13 | #include <cstring>
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[ac9b56] | 14 | #include <boost/bind.hpp>
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[9df5c6] | 15 | #include <boost/foreach.hpp>
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[49e1ae] | 16 |
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[aafd77] | 17 | #include <gsl/gsl_inline.h>
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| 18 | #include <gsl/gsl_heapsort.h>
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| 19 |
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[46d958] | 20 | #include "World.hpp"
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[f66195] | 21 | #include "atom.hpp"
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| 22 | #include "bond.hpp"
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[a80fbdf] | 23 | #include "config.hpp"
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[f66195] | 24 | #include "element.hpp"
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| 25 | #include "graph.hpp"
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[e9f8f9] | 26 | #include "helpers.hpp"
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[f66195] | 27 | #include "leastsquaremin.hpp"
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| 28 | #include "linkedcell.hpp"
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| 29 | #include "lists.hpp"
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[e138de] | 30 | #include "log.hpp"
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[cee0b57] | 31 | #include "molecule.hpp"
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[36166d] | 32 |
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[f66195] | 33 | #include "periodentafel.hpp"
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| 34 | #include "stackclass.hpp"
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| 35 | #include "tesselation.hpp"
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| 36 | #include "vector.hpp"
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[c94eeb] | 37 | #include "Matrix.hpp"
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[b34306] | 38 | #include "World.hpp"
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[84c494] | 39 | #include "Box.hpp"
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[0a4f7f] | 40 | #include "Plane.hpp"
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| 41 | #include "Exceptions/LinearDependenceException.hpp"
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[14de469] | 42 |
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| 43 |
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| 44 | /************************************* Functions for class molecule *********************************/
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| 45 |
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| 46 | /** Constructor of class molecule.
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| 47 | * Initialises molecule list with correctly referenced start and end, and sets molecule::last_atom to zero.
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| 48 | */
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[cd5047] | 49 | molecule::molecule(const periodentafel * const teil) :
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| 50 | Observable("molecule"),
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[389cc8] | 51 | elemente(teil), MDSteps(0), BondCount(0), NoNonHydrogen(0), NoNonBonds(0),
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[cd5047] | 52 | NoCyclicBonds(0), BondDistance(0.), ActiveFlag(false), IndexNr(-1),
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[274d45] | 53 | AtomCount(this,boost::bind(&molecule::doCountAtoms,this),"AtomCount"), last_atom(0), InternalPointer(atoms.begin())
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[69eb71] | 54 | {
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[fa649a] | 55 |
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[387b36] | 56 | strcpy(name,World::getInstance().getDefaultName().c_str());
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[14de469] | 57 | };
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| 58 |
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[cbc5fb] | 59 | molecule *NewMolecule(){
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[23b547] | 60 | return new molecule(World::getInstance().getPeriode());
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[cbc5fb] | 61 | }
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| 62 |
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[14de469] | 63 | /** Destructor of class molecule.
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| 64 | * Initialises molecule list with correctly referenced start and end, and sets molecule::last_atom to zero.
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| 65 | */
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[69eb71] | 66 | molecule::~molecule()
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[14de469] | 67 | {
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[042f82] | 68 | CleanupMolecule();
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[14de469] | 69 | };
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| 70 |
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[357fba] | 71 |
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[cbc5fb] | 72 | void DeleteMolecule(molecule *mol){
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| 73 | delete mol;
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| 74 | }
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| 75 |
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[520c8b] | 76 | // getter and setter
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| 77 | const std::string molecule::getName(){
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| 78 | return std::string(name);
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| 79 | }
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| 80 |
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[ea7176] | 81 | int molecule::getAtomCount() const{
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| 82 | return *AtomCount;
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| 83 | }
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| 84 |
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[520c8b] | 85 | void molecule::setName(const std::string _name){
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[2ba827] | 86 | OBSERVE;
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[35b698] | 87 | cout << "Set name of molecule " << getId() << " to " << _name << endl;
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[520c8b] | 88 | strncpy(name,_name.c_str(),MAXSTRINGSIZE);
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| 89 | }
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| 90 |
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[cbc5fb] | 91 | moleculeId_t molecule::getId(){
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| 92 | return id;
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| 93 | }
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| 94 |
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| 95 | void molecule::setId(moleculeId_t _id){
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| 96 | id =_id;
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| 97 | }
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| 98 |
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[f17e1c] | 99 | const Formula &molecule::getFormula(){
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| 100 | return formula;
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[ac9b56] | 101 | }
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| 102 |
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[389cc8] | 103 | unsigned int molecule::getElementCount(){
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| 104 | return formula.getElementCount();
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| 105 | }
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| 106 |
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| 107 | bool molecule::hasElement(const element *element) const{
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| 108 | return formula.hasElement(element);
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| 109 | }
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| 110 |
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| 111 | bool molecule::hasElement(atomicNumber_t Z) const{
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| 112 | return formula.hasElement(Z);
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| 113 | }
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| 114 |
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| 115 | bool molecule::hasElement(const string &shorthand) const{
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| 116 | return formula.hasElement(shorthand);
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| 117 | }
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| 118 |
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[bd58fb] | 119 | /************************** Access to the List of Atoms ****************/
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| 120 |
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| 121 |
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| 122 | molecule::iterator molecule::begin(){
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| 123 | return molecule::iterator(atoms.begin(),this);
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| 124 | }
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| 125 |
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| 126 | molecule::const_iterator molecule::begin() const{
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| 127 | return atoms.begin();
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| 128 | }
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| 129 |
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[9879f6] | 130 | molecule::iterator molecule::end(){
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[bd58fb] | 131 | return molecule::iterator(atoms.end(),this);
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| 132 | }
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| 133 |
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[9879f6] | 134 | molecule::const_iterator molecule::end() const{
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[bd58fb] | 135 | return atoms.end();
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| 136 | }
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[520c8b] | 137 |
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[9879f6] | 138 | bool molecule::empty() const
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| 139 | {
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| 140 | return (begin() == end());
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| 141 | }
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| 142 |
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| 143 | size_t molecule::size() const
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| 144 | {
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| 145 | size_t counter = 0;
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| 146 | for (molecule::const_iterator iter = begin(); iter != end (); ++iter)
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| 147 | counter++;
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| 148 | return counter;
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| 149 | }
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| 150 |
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| 151 | molecule::const_iterator molecule::erase( const_iterator loc )
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| 152 | {
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[bf8e20] | 153 | OBSERVE;
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[9879f6] | 154 | molecule::const_iterator iter = loc;
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| 155 | iter--;
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[6cfa36] | 156 | atom* atom = *loc;
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[274d45] | 157 | atomIds.erase( atom->getId() );
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| 158 | atoms.remove( atom );
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[bf8e20] | 159 | formula-=atom->type;
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[6cfa36] | 160 | atom->removeFromMolecule();
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[9879f6] | 161 | return iter;
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| 162 | }
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| 163 |
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[6cfa36] | 164 | molecule::const_iterator molecule::erase( atom * key )
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[9879f6] | 165 | {
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[bf8e20] | 166 | OBSERVE;
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[9879f6] | 167 | molecule::const_iterator iter = find(key);
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[a7b761b] | 168 | if (iter != end()){
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[274d45] | 169 | atomIds.erase( key->getId() );
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| 170 | atoms.remove( key );
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[bf8e20] | 171 | formula-=key->type;
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[6cfa36] | 172 | key->removeFromMolecule();
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[a7b761b] | 173 | }
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| 174 | return iter;
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[9879f6] | 175 | }
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| 176 |
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[6cfa36] | 177 | molecule::const_iterator molecule::find ( atom * key ) const
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[9879f6] | 178 | {
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[274d45] | 179 | molecule::const_iterator iter;
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| 180 | for (molecule::const_iterator Runner = begin(); Runner != end(); ++Runner) {
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| 181 | if (*Runner == key)
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| 182 | return molecule::const_iterator(Runner);
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| 183 | }
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| 184 | return molecule::const_iterator(atoms.end());
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[9879f6] | 185 | }
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| 186 |
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| 187 | pair<molecule::iterator,bool> molecule::insert ( atom * const key )
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| 188 | {
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[bf8e20] | 189 | OBSERVE;
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[274d45] | 190 | pair<atomIdSet::iterator,bool> res = atomIds.insert(key->getId());
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| 191 | if (res.second) { // push atom if went well
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| 192 | atoms.push_back(key);
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[bf8e20] | 193 | formula+=key->type;
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[274d45] | 194 | return pair<iterator,bool>(molecule::iterator(--end()),res.second);
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| 195 | } else {
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| 196 | return pair<iterator,bool>(molecule::iterator(end()),res.second);
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| 197 | }
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[9879f6] | 198 | }
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[520c8b] | 199 |
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[6cfa36] | 200 | bool molecule::containsAtom(atom* key){
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[274d45] | 201 | return (find(key) != end());
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[6cfa36] | 202 | }
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| 203 |
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[14de469] | 204 | /** Adds given atom \a *pointer from molecule list.
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[69eb71] | 205 | * Increases molecule::last_atom and gives last number to added atom and names it according to its element::abbrev and molecule::AtomCount
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[14de469] | 206 | * \param *pointer allocated and set atom
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| 207 | * \return true - succeeded, false - atom not found in list
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| 208 | */
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| 209 | bool molecule::AddAtom(atom *pointer)
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[69eb71] | 210 | {
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[2ba827] | 211 | OBSERVE;
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[042f82] | 212 | if (pointer != NULL) {
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| 213 | pointer->sort = &pointer->nr;
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| 214 | if (pointer->type != NULL) {
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[389cc8] | 215 | formula += pointer->type;
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[042f82] | 216 | if (pointer->type->Z != 1)
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| 217 | NoNonHydrogen++;
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[68f03d] | 218 | if(pointer->getName() == "Unknown"){
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| 219 | stringstream sstr;
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[2fe971] | 220 | sstr << pointer->type->getSymbol() << pointer->nr+1;
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[68f03d] | 221 | pointer->setName(sstr.str());
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[042f82] | 222 | }
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| 223 | }
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[9879f6] | 224 | insert(pointer);
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[6cfa36] | 225 | pointer->setMolecule(this);
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[f721c6] | 226 | }
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[9879f6] | 227 | return true;
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[14de469] | 228 | };
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| 229 |
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| 230 | /** Adds a copy of the given atom \a *pointer from molecule list.
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| 231 | * Increases molecule::last_atom and gives last number to added atom.
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| 232 | * \param *pointer allocated and set atom
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[89c8b2] | 233 | * \return pointer to the newly added atom
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[14de469] | 234 | */
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| 235 | atom * molecule::AddCopyAtom(atom *pointer)
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[69eb71] | 236 | {
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[f721c6] | 237 | atom *retval = NULL;
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[2ba827] | 238 | OBSERVE;
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[042f82] | 239 | if (pointer != NULL) {
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[46d958] | 240 | atom *walker = pointer->clone();
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[bf8e20] | 241 | formula += walker->type;
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[a7b761b] | 242 | walker->setName(pointer->getName());
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[2319ed] | 243 | walker->nr = last_atom++; // increase number within molecule
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[9879f6] | 244 | insert(walker);
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[042f82] | 245 | if ((pointer->type != NULL) && (pointer->type->Z != 1))
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| 246 | NoNonHydrogen++;
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[f721c6] | 247 | retval=walker;
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| 248 | }
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| 249 | return retval;
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[14de469] | 250 | };
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| 251 |
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| 252 | /** Adds a Hydrogen atom in replacement for the given atom \a *partner in bond with a *origin.
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| 253 | * Here, we have to distinguish between single, double or triple bonds as stated by \a BondDegree, that each demand
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| 254 | * a different scheme when adding \a *replacement atom for the given one.
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| 255 | * -# Single Bond: Simply add new atom with bond distance rescaled to typical hydrogen one
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| 256 | * -# Double Bond: Here, we need the **BondList of the \a *origin atom, by scanning for the other bonds instead of
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[042f82] | 257 | * *Bond, we use the through these connected atoms to determine the plane they lie in, vector::MakeNormalvector().
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| 258 | * The orthonormal vector to this plane along with the vector in *Bond direction determines the plane the two
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| 259 | * replacing hydrogens shall lie in. Now, all remains to do is take the usual hydrogen double bond angle for the
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| 260 | * element of *origin and form the sin/cos admixture of both plane vectors for the new coordinates of the two
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| 261 | * hydrogens forming this angle with *origin.
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[14de469] | 262 | * -# Triple Bond: The idea is to set up a tetraoid (C1-H1-H2-H3) (however the lengths \f$b\f$ of the sides of the base
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[042f82] | 263 | * triangle formed by the to be added hydrogens are not equal to the typical bond distance \f$l\f$ but have to be
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| 264 | * determined from the typical angle \f$\alpha\f$ for a hydrogen triple connected to the element of *origin):
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| 265 | * We have the height \f$d\f$ as the vector in *Bond direction (from triangle C1-H1-H2).
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| 266 | * \f[ h = l \cdot \cos{\left (\frac{\alpha}{2} \right )} \qquad b = 2l \cdot \sin{\left (\frac{\alpha}{2} \right)} \quad \rightarrow \quad d = l \cdot \sqrt{\cos^2{\left (\frac{\alpha}{2} \right)}-\frac{1}{3}\cdot\sin^2{\left (\frac{\alpha}{2}\right )}}
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| 267 | * \f]
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| 268 | * vector::GetNormalvector() creates one orthonormal vector from this *Bond vector and vector::MakeNormalvector creates
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| 269 | * the third one from the former two vectors. The latter ones form the plane of the base triangle mentioned above.
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| 270 | * The lengths for these are \f$f\f$ and \f$g\f$ (from triangle H1-H2-(center of H1-H2-H3)) with knowledge that
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| 271 | * the median lines in an isosceles triangle meet in the center point with a ratio 2:1.
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| 272 | * \f[ f = \frac{b}{\sqrt{3}} \qquad g = \frac{b}{2}
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| 273 | * \f]
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| 274 | * as the coordination of all three atoms in the coordinate system of these three vectors:
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| 275 | * \f$\pmatrix{d & f & 0}\f$, \f$\pmatrix{d & -0.5 \cdot f & g}\f$ and \f$\pmatrix{d & -0.5 \cdot f & -g}\f$.
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[69eb71] | 276 | *
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[14de469] | 277 | * \param *out output stream for debugging
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[69eb71] | 278 | * \param *Bond pointer to bond between \a *origin and \a *replacement
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| 279 | * \param *TopOrigin son of \a *origin of upper level molecule (the atom added to this molecule as a copy of \a *origin)
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[14de469] | 280 | * \param *origin pointer to atom which acts as the origin for scaling the added hydrogen to correct bond length
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| 281 | * \param *replacement pointer to the atom which shall be copied as a hydrogen atom in this molecule
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| 282 | * \param isAngstroem whether the coordination of the given atoms is in AtomicLength (false) or Angstrom(true)
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| 283 | * \return number of atoms added, if < bond::BondDegree then something went wrong
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| 284 | * \todo double and triple bonds splitting (always use the tetraeder angle!)
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| 285 | */
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[e138de] | 286 | bool molecule::AddHydrogenReplacementAtom(bond *TopBond, atom *BottomOrigin, atom *TopOrigin, atom *TopReplacement, bool IsAngstroem)
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[14de469] | 287 | {
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[f721c6] | 288 | bool AllWentWell = true; // flag gathering the boolean return value of molecule::AddAtom and other functions, as return value on exit
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[2ba827] | 289 | OBSERVE;
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[042f82] | 290 | double bondlength; // bond length of the bond to be replaced/cut
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| 291 | double bondangle; // bond angle of the bond to be replaced/cut
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| 292 | double BondRescale; // rescale value for the hydrogen bond length
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| 293 | bond *FirstBond = NULL, *SecondBond = NULL; // Other bonds in double bond case to determine "other" plane
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| 294 | atom *FirstOtherAtom = NULL, *SecondOtherAtom = NULL, *ThirdOtherAtom = NULL; // pointer to hydrogen atoms to be added
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| 295 | double b,l,d,f,g, alpha, factors[NDIM]; // hold temporary values in triple bond case for coordination determination
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| 296 | Vector Orthovector1, Orthovector2; // temporary vectors in coordination construction
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| 297 | Vector InBondvector; // vector in direction of *Bond
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[84c494] | 298 | const Matrix &matrix = World::getInstance().getDomain().getM();
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[266237] | 299 | bond *Binder = NULL;
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[042f82] | 300 |
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[e138de] | 301 | // Log() << Verbose(3) << "Begin of AddHydrogenReplacementAtom." << endl;
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[042f82] | 302 | // create vector in direction of bond
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[273382] | 303 | InBondvector = TopReplacement->x - TopOrigin->x;
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[042f82] | 304 | bondlength = InBondvector.Norm();
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| 305 |
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| 306 | // is greater than typical bond distance? Then we have to correct periodically
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| 307 | // the problem is not the H being out of the box, but InBondvector have the wrong direction
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| 308 | // due to TopReplacement or Origin being on the wrong side!
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| 309 | if (bondlength > BondDistance) {
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[e138de] | 310 | // Log() << Verbose(4) << "InBondvector is: ";
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[042f82] | 311 | // InBondvector.Output(out);
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[e138de] | 312 | // Log() << Verbose(0) << endl;
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[042f82] | 313 | Orthovector1.Zero();
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| 314 | for (int i=NDIM;i--;) {
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[0a4f7f] | 315 | l = TopReplacement->x[i] - TopOrigin->x[i];
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[042f82] | 316 | if (fabs(l) > BondDistance) { // is component greater than bond distance
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[0a4f7f] | 317 | Orthovector1[i] = (l < 0) ? -1. : +1.;
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[042f82] | 318 | } // (signs are correct, was tested!)
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| 319 | }
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[5108e1] | 320 | Orthovector1 *= matrix;
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[1bd79e] | 321 | InBondvector -= Orthovector1; // subtract just the additional translation
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[042f82] | 322 | bondlength = InBondvector.Norm();
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[e138de] | 323 | // Log() << Verbose(4) << "Corrected InBondvector is now: ";
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[042f82] | 324 | // InBondvector.Output(out);
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[e138de] | 325 | // Log() << Verbose(0) << endl;
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[042f82] | 326 | } // periodic correction finished
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| 327 |
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| 328 | InBondvector.Normalize();
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| 329 | // get typical bond length and store as scale factor for later
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[920c70] | 330 | ASSERT(TopOrigin->type != NULL, "AddHydrogenReplacementAtom: element of TopOrigin is not given.");
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[042f82] | 331 | BondRescale = TopOrigin->type->HBondDistance[TopBond->BondDegree-1];
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| 332 | if (BondRescale == -1) {
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[68f03d] | 333 | DoeLog(1) && (eLog()<< Verbose(1) << "There is no typical hydrogen bond distance in replacing bond (" << TopOrigin->getName() << "<->" << TopReplacement->getName() << ") of degree " << TopBond->BondDegree << "!" << endl);
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[2ba827] | 334 | return false;
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[042f82] | 335 | BondRescale = bondlength;
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| 336 | } else {
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| 337 | if (!IsAngstroem)
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| 338 | BondRescale /= (1.*AtomicLengthToAngstroem);
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| 339 | }
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| 340 |
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| 341 | // discern single, double and triple bonds
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| 342 | switch(TopBond->BondDegree) {
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| 343 | case 1:
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[23b547] | 344 | FirstOtherAtom = World::getInstance().createAtom(); // new atom
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[042f82] | 345 | FirstOtherAtom->type = elemente->FindElement(1); // element is Hydrogen
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[273382] | 346 | FirstOtherAtom->v = TopReplacement->v; // copy velocity
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[042f82] | 347 | FirstOtherAtom->FixedIon = TopReplacement->FixedIon;
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| 348 | if (TopReplacement->type->Z == 1) { // neither rescale nor replace if it's already hydrogen
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| 349 | FirstOtherAtom->father = TopReplacement;
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| 350 | BondRescale = bondlength;
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| 351 | } else {
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| 352 | FirstOtherAtom->father = NULL; // if we replace hydrogen, we mark it as our father, otherwise we are just an added hydrogen with no father
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| 353 | }
|
---|
[1bd79e] | 354 | InBondvector *= BondRescale; // rescale the distance vector to Hydrogen bond length
|
---|
[273382] | 355 | FirstOtherAtom->x = TopOrigin->x; // set coordination to origin ...
|
---|
[bab12a] | 356 | FirstOtherAtom->x += InBondvector; // ... and add distance vector to replacement atom
|
---|
[042f82] | 357 | AllWentWell = AllWentWell && AddAtom(FirstOtherAtom);
|
---|
[e138de] | 358 | // Log() << Verbose(4) << "Added " << *FirstOtherAtom << " at: ";
|
---|
[042f82] | 359 | // FirstOtherAtom->x.Output(out);
|
---|
[e138de] | 360 | // Log() << Verbose(0) << endl;
|
---|
[042f82] | 361 | Binder = AddBond(BottomOrigin, FirstOtherAtom, 1);
|
---|
| 362 | Binder->Cyclic = false;
|
---|
| 363 | Binder->Type = TreeEdge;
|
---|
| 364 | break;
|
---|
| 365 | case 2:
|
---|
| 366 | // determine two other bonds (warning if there are more than two other) plus valence sanity check
|
---|
[266237] | 367 | for (BondList::const_iterator Runner = TopOrigin->ListOfBonds.begin(); Runner != TopOrigin->ListOfBonds.end(); (++Runner)) {
|
---|
| 368 | if ((*Runner) != TopBond) {
|
---|
[042f82] | 369 | if (FirstBond == NULL) {
|
---|
[266237] | 370 | FirstBond = (*Runner);
|
---|
| 371 | FirstOtherAtom = (*Runner)->GetOtherAtom(TopOrigin);
|
---|
[042f82] | 372 | } else if (SecondBond == NULL) {
|
---|
[266237] | 373 | SecondBond = (*Runner);
|
---|
| 374 | SecondOtherAtom = (*Runner)->GetOtherAtom(TopOrigin);
|
---|
[042f82] | 375 | } else {
|
---|
[68f03d] | 376 | DoeLog(2) && (eLog()<< Verbose(2) << "Detected more than four bonds for atom " << TopOrigin->getName());
|
---|
[042f82] | 377 | }
|
---|
| 378 | }
|
---|
| 379 | }
|
---|
| 380 | if (SecondOtherAtom == NULL) { // then we have an atom with valence four, but only 3 bonds: one to replace and one which is TopBond (third is FirstBond)
|
---|
| 381 | SecondBond = TopBond;
|
---|
| 382 | SecondOtherAtom = TopReplacement;
|
---|
| 383 | }
|
---|
| 384 | if (FirstOtherAtom != NULL) { // then we just have this double bond and the plane does not matter at all
|
---|
[e138de] | 385 | // Log() << Verbose(3) << "Regarding the double bond (" << TopOrigin->Name << "<->" << TopReplacement->Name << ") to be constructed: Taking " << FirstOtherAtom->Name << " and " << SecondOtherAtom->Name << " along with " << TopOrigin->Name << " to determine orthogonal plane." << endl;
|
---|
[042f82] | 386 |
|
---|
| 387 | // determine the plane of these two with the *origin
|
---|
[0a4f7f] | 388 | try {
|
---|
| 389 | Orthovector1 =Plane(TopOrigin->x, FirstOtherAtom->x, SecondOtherAtom->x).getNormal();
|
---|
| 390 | }
|
---|
| 391 | catch(LinearDependenceException &excp){
|
---|
| 392 | Log() << Verbose(0) << excp;
|
---|
| 393 | // TODO: figure out what to do with the Orthovector in this case
|
---|
| 394 | AllWentWell = false;
|
---|
| 395 | }
|
---|
[042f82] | 396 | } else {
|
---|
[273382] | 397 | Orthovector1.GetOneNormalVector(InBondvector);
|
---|
[042f82] | 398 | }
|
---|
[e138de] | 399 | //Log() << Verbose(3)<< "Orthovector1: ";
|
---|
[042f82] | 400 | //Orthovector1.Output(out);
|
---|
[e138de] | 401 | //Log() << Verbose(0) << endl;
|
---|
[042f82] | 402 | // orthogonal vector and bond vector between origin and replacement form the new plane
|
---|
[0a4f7f] | 403 | Orthovector1.MakeNormalTo(InBondvector);
|
---|
[042f82] | 404 | Orthovector1.Normalize();
|
---|
[e138de] | 405 | //Log() << Verbose(3) << "ReScaleCheck: " << Orthovector1.Norm() << " and " << InBondvector.Norm() << "." << endl;
|
---|
[042f82] | 406 |
|
---|
| 407 | // create the two Hydrogens ...
|
---|
[23b547] | 408 | FirstOtherAtom = World::getInstance().createAtom();
|
---|
| 409 | SecondOtherAtom = World::getInstance().createAtom();
|
---|
[042f82] | 410 | FirstOtherAtom->type = elemente->FindElement(1);
|
---|
| 411 | SecondOtherAtom->type = elemente->FindElement(1);
|
---|
[273382] | 412 | FirstOtherAtom->v = TopReplacement->v; // copy velocity
|
---|
[042f82] | 413 | FirstOtherAtom->FixedIon = TopReplacement->FixedIon;
|
---|
[273382] | 414 | SecondOtherAtom->v = TopReplacement->v; // copy velocity
|
---|
[042f82] | 415 | SecondOtherAtom->FixedIon = TopReplacement->FixedIon;
|
---|
| 416 | FirstOtherAtom->father = NULL; // we are just an added hydrogen with no father
|
---|
| 417 | SecondOtherAtom->father = NULL; // we are just an added hydrogen with no father
|
---|
| 418 | bondangle = TopOrigin->type->HBondAngle[1];
|
---|
| 419 | if (bondangle == -1) {
|
---|
[68f03d] | 420 | DoeLog(1) && (eLog()<< Verbose(1) << "There is no typical hydrogen bond angle in replacing bond (" << TopOrigin->getName() << "<->" << TopReplacement->getName() << ") of degree " << TopBond->BondDegree << "!" << endl);
|
---|
[2ba827] | 421 | return false;
|
---|
[042f82] | 422 | bondangle = 0;
|
---|
| 423 | }
|
---|
| 424 | bondangle *= M_PI/180./2.;
|
---|
[e138de] | 425 | // Log() << Verbose(3) << "ReScaleCheck: InBondvector ";
|
---|
[042f82] | 426 | // InBondvector.Output(out);
|
---|
[e138de] | 427 | // Log() << Verbose(0) << endl;
|
---|
| 428 | // Log() << Verbose(3) << "ReScaleCheck: Orthovector ";
|
---|
[042f82] | 429 | // Orthovector1.Output(out);
|
---|
[e138de] | 430 | // Log() << Verbose(0) << endl;
|
---|
| 431 | // Log() << Verbose(3) << "Half the bond angle is " << bondangle << ", sin and cos of it: " << sin(bondangle) << ", " << cos(bondangle) << endl;
|
---|
[042f82] | 432 | FirstOtherAtom->x.Zero();
|
---|
| 433 | SecondOtherAtom->x.Zero();
|
---|
| 434 | for(int i=NDIM;i--;) { // rotate by half the bond angle in both directions (InBondvector is bondangle = 0 direction)
|
---|
[0a4f7f] | 435 | FirstOtherAtom->x[i] = InBondvector[i] * cos(bondangle) + Orthovector1[i] * (sin(bondangle));
|
---|
| 436 | SecondOtherAtom->x[i] = InBondvector[i] * cos(bondangle) + Orthovector1[i] * (-sin(bondangle));
|
---|
[042f82] | 437 | }
|
---|
[1bd79e] | 438 | FirstOtherAtom->x *= BondRescale; // rescale by correct BondDistance
|
---|
| 439 | SecondOtherAtom->x *= BondRescale;
|
---|
[e138de] | 440 | //Log() << Verbose(3) << "ReScaleCheck: " << FirstOtherAtom->x.Norm() << " and " << SecondOtherAtom->x.Norm() << "." << endl;
|
---|
[042f82] | 441 | for(int i=NDIM;i--;) { // and make relative to origin atom
|
---|
[0a4f7f] | 442 | FirstOtherAtom->x[i] += TopOrigin->x[i];
|
---|
| 443 | SecondOtherAtom->x[i] += TopOrigin->x[i];
|
---|
[042f82] | 444 | }
|
---|
| 445 | // ... and add to molecule
|
---|
| 446 | AllWentWell = AllWentWell && AddAtom(FirstOtherAtom);
|
---|
| 447 | AllWentWell = AllWentWell && AddAtom(SecondOtherAtom);
|
---|
[e138de] | 448 | // Log() << Verbose(4) << "Added " << *FirstOtherAtom << " at: ";
|
---|
[042f82] | 449 | // FirstOtherAtom->x.Output(out);
|
---|
[e138de] | 450 | // Log() << Verbose(0) << endl;
|
---|
| 451 | // Log() << Verbose(4) << "Added " << *SecondOtherAtom << " at: ";
|
---|
[042f82] | 452 | // SecondOtherAtom->x.Output(out);
|
---|
[e138de] | 453 | // Log() << Verbose(0) << endl;
|
---|
[042f82] | 454 | Binder = AddBond(BottomOrigin, FirstOtherAtom, 1);
|
---|
| 455 | Binder->Cyclic = false;
|
---|
| 456 | Binder->Type = TreeEdge;
|
---|
| 457 | Binder = AddBond(BottomOrigin, SecondOtherAtom, 1);
|
---|
| 458 | Binder->Cyclic = false;
|
---|
| 459 | Binder->Type = TreeEdge;
|
---|
| 460 | break;
|
---|
| 461 | case 3:
|
---|
| 462 | // take the "usual" tetraoidal angle and add the three Hydrogen in direction of the bond (height of the tetraoid)
|
---|
[23b547] | 463 | FirstOtherAtom = World::getInstance().createAtom();
|
---|
| 464 | SecondOtherAtom = World::getInstance().createAtom();
|
---|
| 465 | ThirdOtherAtom = World::getInstance().createAtom();
|
---|
[042f82] | 466 | FirstOtherAtom->type = elemente->FindElement(1);
|
---|
| 467 | SecondOtherAtom->type = elemente->FindElement(1);
|
---|
| 468 | ThirdOtherAtom->type = elemente->FindElement(1);
|
---|
[273382] | 469 | FirstOtherAtom->v = TopReplacement->v; // copy velocity
|
---|
[042f82] | 470 | FirstOtherAtom->FixedIon = TopReplacement->FixedIon;
|
---|
[273382] | 471 | SecondOtherAtom->v = TopReplacement->v; // copy velocity
|
---|
[042f82] | 472 | SecondOtherAtom->FixedIon = TopReplacement->FixedIon;
|
---|
[273382] | 473 | ThirdOtherAtom->v = TopReplacement->v; // copy velocity
|
---|
[042f82] | 474 | ThirdOtherAtom->FixedIon = TopReplacement->FixedIon;
|
---|
| 475 | FirstOtherAtom->father = NULL; // we are just an added hydrogen with no father
|
---|
| 476 | SecondOtherAtom->father = NULL; // we are just an added hydrogen with no father
|
---|
| 477 | ThirdOtherAtom->father = NULL; // we are just an added hydrogen with no father
|
---|
| 478 |
|
---|
| 479 | // we need to vectors orthonormal the InBondvector
|
---|
[273382] | 480 | AllWentWell = AllWentWell && Orthovector1.GetOneNormalVector(InBondvector);
|
---|
[e138de] | 481 | // Log() << Verbose(3) << "Orthovector1: ";
|
---|
[042f82] | 482 | // Orthovector1.Output(out);
|
---|
[e138de] | 483 | // Log() << Verbose(0) << endl;
|
---|
[0a4f7f] | 484 | try{
|
---|
| 485 | Orthovector2 = Plane(InBondvector, Orthovector1,0).getNormal();
|
---|
| 486 | }
|
---|
| 487 | catch(LinearDependenceException &excp) {
|
---|
| 488 | Log() << Verbose(0) << excp;
|
---|
| 489 | AllWentWell = false;
|
---|
| 490 | }
|
---|
[e138de] | 491 | // Log() << Verbose(3) << "Orthovector2: ";
|
---|
[042f82] | 492 | // Orthovector2.Output(out);
|
---|
[e138de] | 493 | // Log() << Verbose(0) << endl;
|
---|
[042f82] | 494 |
|
---|
| 495 | // create correct coordination for the three atoms
|
---|
| 496 | alpha = (TopOrigin->type->HBondAngle[2])/180.*M_PI/2.; // retrieve triple bond angle from database
|
---|
| 497 | l = BondRescale; // desired bond length
|
---|
| 498 | b = 2.*l*sin(alpha); // base length of isosceles triangle
|
---|
| 499 | d = l*sqrt(cos(alpha)*cos(alpha) - sin(alpha)*sin(alpha)/3.); // length for InBondvector
|
---|
| 500 | f = b/sqrt(3.); // length for Orthvector1
|
---|
| 501 | g = b/2.; // length for Orthvector2
|
---|
[e138de] | 502 | // Log() << Verbose(3) << "Bond length and half-angle: " << l << ", " << alpha << "\t (b,d,f,g) = " << b << ", " << d << ", " << f << ", " << g << ", " << endl;
|
---|
| 503 | // Log() << Verbose(3) << "The three Bond lengths: " << sqrt(d*d+f*f) << ", " << sqrt(d*d+(-0.5*f)*(-0.5*f)+g*g) << ", " << sqrt(d*d+(-0.5*f)*(-0.5*f)+g*g) << endl;
|
---|
[042f82] | 504 | factors[0] = d;
|
---|
| 505 | factors[1] = f;
|
---|
| 506 | factors[2] = 0.;
|
---|
[273382] | 507 | FirstOtherAtom->x.LinearCombinationOfVectors(InBondvector, Orthovector1, Orthovector2, factors);
|
---|
[042f82] | 508 | factors[1] = -0.5*f;
|
---|
| 509 | factors[2] = g;
|
---|
[273382] | 510 | SecondOtherAtom->x.LinearCombinationOfVectors(InBondvector, Orthovector1, Orthovector2, factors);
|
---|
[042f82] | 511 | factors[2] = -g;
|
---|
[273382] | 512 | ThirdOtherAtom->x.LinearCombinationOfVectors(InBondvector, Orthovector1, Orthovector2, factors);
|
---|
[042f82] | 513 |
|
---|
| 514 | // rescale each to correct BondDistance
|
---|
| 515 | // FirstOtherAtom->x.Scale(&BondRescale);
|
---|
| 516 | // SecondOtherAtom->x.Scale(&BondRescale);
|
---|
| 517 | // ThirdOtherAtom->x.Scale(&BondRescale);
|
---|
| 518 |
|
---|
| 519 | // and relative to *origin atom
|
---|
[273382] | 520 | FirstOtherAtom->x += TopOrigin->x;
|
---|
| 521 | SecondOtherAtom->x += TopOrigin->x;
|
---|
| 522 | ThirdOtherAtom->x += TopOrigin->x;
|
---|
[042f82] | 523 |
|
---|
| 524 | // ... and add to molecule
|
---|
| 525 | AllWentWell = AllWentWell && AddAtom(FirstOtherAtom);
|
---|
| 526 | AllWentWell = AllWentWell && AddAtom(SecondOtherAtom);
|
---|
| 527 | AllWentWell = AllWentWell && AddAtom(ThirdOtherAtom);
|
---|
[e138de] | 528 | // Log() << Verbose(4) << "Added " << *FirstOtherAtom << " at: ";
|
---|
[042f82] | 529 | // FirstOtherAtom->x.Output(out);
|
---|
[e138de] | 530 | // Log() << Verbose(0) << endl;
|
---|
| 531 | // Log() << Verbose(4) << "Added " << *SecondOtherAtom << " at: ";
|
---|
[042f82] | 532 | // SecondOtherAtom->x.Output(out);
|
---|
[e138de] | 533 | // Log() << Verbose(0) << endl;
|
---|
| 534 | // Log() << Verbose(4) << "Added " << *ThirdOtherAtom << " at: ";
|
---|
[042f82] | 535 | // ThirdOtherAtom->x.Output(out);
|
---|
[e138de] | 536 | // Log() << Verbose(0) << endl;
|
---|
[042f82] | 537 | Binder = AddBond(BottomOrigin, FirstOtherAtom, 1);
|
---|
| 538 | Binder->Cyclic = false;
|
---|
| 539 | Binder->Type = TreeEdge;
|
---|
| 540 | Binder = AddBond(BottomOrigin, SecondOtherAtom, 1);
|
---|
| 541 | Binder->Cyclic = false;
|
---|
| 542 | Binder->Type = TreeEdge;
|
---|
| 543 | Binder = AddBond(BottomOrigin, ThirdOtherAtom, 1);
|
---|
| 544 | Binder->Cyclic = false;
|
---|
| 545 | Binder->Type = TreeEdge;
|
---|
| 546 | break;
|
---|
| 547 | default:
|
---|
[58ed4a] | 548 | DoeLog(1) && (eLog()<< Verbose(1) << "BondDegree does not state single, double or triple bond!" << endl);
|
---|
[042f82] | 549 | AllWentWell = false;
|
---|
| 550 | break;
|
---|
| 551 | }
|
---|
| 552 |
|
---|
[e138de] | 553 | // Log() << Verbose(3) << "End of AddHydrogenReplacementAtom." << endl;
|
---|
[042f82] | 554 | return AllWentWell;
|
---|
[14de469] | 555 | };
|
---|
| 556 |
|
---|
| 557 | /** Adds given atom \a *pointer from molecule list.
|
---|
| 558 | * Increases molecule::last_atom and gives last number to added atom.
|
---|
| 559 | * \param filename name and path of xyz file
|
---|
| 560 | * \return true - succeeded, false - file not found
|
---|
| 561 | */
|
---|
| 562 | bool molecule::AddXYZFile(string filename)
|
---|
[69eb71] | 563 | {
|
---|
[f721c6] | 564 |
|
---|
[042f82] | 565 | istringstream *input = NULL;
|
---|
| 566 | int NumberOfAtoms = 0; // atom number in xyz read
|
---|
| 567 | int i, j; // loop variables
|
---|
| 568 | atom *Walker = NULL; // pointer to added atom
|
---|
| 569 | char shorthand[3]; // shorthand for atom name
|
---|
| 570 | ifstream xyzfile; // xyz file
|
---|
| 571 | string line; // currently parsed line
|
---|
| 572 | double x[3]; // atom coordinates
|
---|
| 573 |
|
---|
| 574 | xyzfile.open(filename.c_str());
|
---|
| 575 | if (!xyzfile)
|
---|
| 576 | return false;
|
---|
| 577 |
|
---|
[2ba827] | 578 | OBSERVE;
|
---|
[042f82] | 579 | getline(xyzfile,line,'\n'); // Read numer of atoms in file
|
---|
| 580 | input = new istringstream(line);
|
---|
| 581 | *input >> NumberOfAtoms;
|
---|
[a67d19] | 582 | DoLog(0) && (Log() << Verbose(0) << "Parsing " << NumberOfAtoms << " atoms in file." << endl);
|
---|
[042f82] | 583 | getline(xyzfile,line,'\n'); // Read comment
|
---|
[a67d19] | 584 | DoLog(1) && (Log() << Verbose(1) << "Comment: " << line << endl);
|
---|
[042f82] | 585 |
|
---|
| 586 | if (MDSteps == 0) // no atoms yet present
|
---|
| 587 | MDSteps++;
|
---|
| 588 | for(i=0;i<NumberOfAtoms;i++){
|
---|
[23b547] | 589 | Walker = World::getInstance().createAtom();
|
---|
[042f82] | 590 | getline(xyzfile,line,'\n');
|
---|
| 591 | istringstream *item = new istringstream(line);
|
---|
| 592 | //istringstream input(line);
|
---|
[e138de] | 593 | //Log() << Verbose(1) << "Reading: " << line << endl;
|
---|
[042f82] | 594 | *item >> shorthand;
|
---|
| 595 | *item >> x[0];
|
---|
| 596 | *item >> x[1];
|
---|
| 597 | *item >> x[2];
|
---|
| 598 | Walker->type = elemente->FindElement(shorthand);
|
---|
| 599 | if (Walker->type == NULL) {
|
---|
[58ed4a] | 600 | DoeLog(1) && (eLog()<< Verbose(1) << "Could not parse the element at line: '" << line << "', setting to H.");
|
---|
[042f82] | 601 | Walker->type = elemente->FindElement(1);
|
---|
| 602 | }
|
---|
[fcd7b6] | 603 | if (Walker->Trajectory.R.size() <= (unsigned int)MDSteps) {
|
---|
| 604 | Walker->Trajectory.R.resize(MDSteps+10);
|
---|
| 605 | Walker->Trajectory.U.resize(MDSteps+10);
|
---|
| 606 | Walker->Trajectory.F.resize(MDSteps+10);
|
---|
[042f82] | 607 | }
|
---|
| 608 | for(j=NDIM;j--;) {
|
---|
[0a4f7f] | 609 | Walker->x[j] = x[j];
|
---|
| 610 | Walker->Trajectory.R.at(MDSteps-1)[j] = x[j];
|
---|
| 611 | Walker->Trajectory.U.at(MDSteps-1)[j] = 0;
|
---|
| 612 | Walker->Trajectory.F.at(MDSteps-1)[j] = 0;
|
---|
[042f82] | 613 | }
|
---|
| 614 | AddAtom(Walker); // add to molecule
|
---|
| 615 | delete(item);
|
---|
| 616 | }
|
---|
| 617 | xyzfile.close();
|
---|
| 618 | delete(input);
|
---|
| 619 | return true;
|
---|
[14de469] | 620 | };
|
---|
| 621 |
|
---|
| 622 | /** Creates a copy of this molecule.
|
---|
| 623 | * \return copy of molecule
|
---|
| 624 | */
|
---|
| 625 | molecule *molecule::CopyMolecule()
|
---|
| 626 | {
|
---|
[5f612ee] | 627 | molecule *copy = World::getInstance().createMolecule();
|
---|
[042f82] | 628 |
|
---|
| 629 | // copy all atoms
|
---|
[0cc92b] | 630 | for_each(atoms.begin(),atoms.end(),bind1st(mem_fun(&molecule::AddCopyAtom),copy));
|
---|
[042f82] | 631 |
|
---|
| 632 | // copy all bonds
|
---|
[e08c46] | 633 | for(molecule::iterator AtomRunner = begin(); AtomRunner != end(); ++AtomRunner)
|
---|
| 634 | for(BondList::iterator BondRunner = (*AtomRunner)->ListOfBonds.begin(); !(*AtomRunner)->ListOfBonds.empty(); BondRunner = (*AtomRunner)->ListOfBonds.begin())
|
---|
| 635 | if ((*BondRunner)->leftatom == *AtomRunner) {
|
---|
[0cc92b] | 636 | bond *Binder = (*BondRunner);
|
---|
[e08c46] | 637 |
|
---|
| 638 | // get the pendant atoms of current bond in the copy molecule
|
---|
[0cc92b] | 639 | atomSet::iterator leftiter=find_if(atoms.begin(),atoms.end(),bind2nd(mem_fun(&atom::isFather),Binder->leftatom));
|
---|
| 640 | atomSet::iterator rightiter=find_if(atoms.begin(),atoms.end(),bind2nd(mem_fun(&atom::isFather),Binder->rightatom));
|
---|
| 641 | ASSERT(leftiter!=atoms.end(),"No original left atom for bondcopy found");
|
---|
| 642 | ASSERT(leftiter!=atoms.end(),"No original right atom for bondcopy found");
|
---|
| 643 | atom *LeftAtom = *leftiter;
|
---|
| 644 | atom *RightAtom = *rightiter;
|
---|
| 645 |
|
---|
| 646 | bond *NewBond = copy->AddBond(LeftAtom, RightAtom, Binder->BondDegree);
|
---|
[e08c46] | 647 | NewBond->Cyclic = Binder->Cyclic;
|
---|
| 648 | if (Binder->Cyclic)
|
---|
| 649 | copy->NoCyclicBonds++;
|
---|
| 650 | NewBond->Type = Binder->Type;
|
---|
| 651 | }
|
---|
[042f82] | 652 | // correct fathers
|
---|
[0cc92b] | 653 | for_each(atoms.begin(),atoms.end(),mem_fun(&atom::CorrectFather));
|
---|
[cee0b57] | 654 |
|
---|
[042f82] | 655 | // copy values
|
---|
[e08c46] | 656 | if (hasBondStructure()) { // if adjaceny list is present
|
---|
[042f82] | 657 | copy->BondDistance = BondDistance;
|
---|
| 658 | }
|
---|
| 659 |
|
---|
| 660 | return copy;
|
---|
[14de469] | 661 | };
|
---|
| 662 |
|
---|
[89c8b2] | 663 |
|
---|
| 664 | /**
|
---|
| 665 | * Copies all atoms of a molecule which are within the defined parallelepiped.
|
---|
| 666 | *
|
---|
| 667 | * @param offest for the origin of the parallelepiped
|
---|
| 668 | * @param three vectors forming the matrix that defines the shape of the parallelpiped
|
---|
| 669 | */
|
---|
[c550dd] | 670 | molecule* molecule::CopyMoleculeFromSubRegion(const Shape ®ion) const {
|
---|
[5f612ee] | 671 | molecule *copy = World::getInstance().createMolecule();
|
---|
[89c8b2] | 672 |
|
---|
[9df5c6] | 673 | BOOST_FOREACH(atom *iter,atoms){
|
---|
[c550dd] | 674 | if(iter->IsInShape(region)){
|
---|
[9df5c6] | 675 | copy->AddCopyAtom(iter);
|
---|
| 676 | }
|
---|
| 677 | }
|
---|
[89c8b2] | 678 |
|
---|
[e138de] | 679 | //TODO: copy->BuildInducedSubgraph(this);
|
---|
[89c8b2] | 680 |
|
---|
| 681 | return copy;
|
---|
| 682 | }
|
---|
| 683 |
|
---|
[14de469] | 684 | /** Adds a bond to a the molecule specified by two atoms, \a *first and \a *second.
|
---|
| 685 | * Also updates molecule::BondCount and molecule::NoNonBonds.
|
---|
| 686 | * \param *first first atom in bond
|
---|
| 687 | * \param *second atom in bond
|
---|
| 688 | * \return pointer to bond or NULL on failure
|
---|
| 689 | */
|
---|
[cee0b57] | 690 | bond * molecule::AddBond(atom *atom1, atom *atom2, int degree)
|
---|
[14de469] | 691 | {
|
---|
[f8e486] | 692 | OBSERVE;
|
---|
[042f82] | 693 | bond *Binder = NULL;
|
---|
[05a97c] | 694 |
|
---|
| 695 | // some checks to make sure we are able to create the bond
|
---|
| 696 | ASSERT(atom1, "First atom in bond-creation was an invalid pointer");
|
---|
| 697 | ASSERT(atom2, "Second atom in bond-creation was an invalid pointer");
|
---|
| 698 | ASSERT(FindAtom(atom1->nr),"First atom in bond-creation was not part of molecule");
|
---|
| 699 | ASSERT(FindAtom(atom2->nr),"Second atom in bond-creation was not parto of molecule");
|
---|
| 700 |
|
---|
| 701 | Binder = new bond(atom1, atom2, degree, BondCount++);
|
---|
| 702 | atom1->RegisterBond(Binder);
|
---|
| 703 | atom2->RegisterBond(Binder);
|
---|
| 704 | if ((atom1->type != NULL) && (atom1->type->Z != 1) && (atom2->type != NULL) && (atom2->type->Z != 1))
|
---|
| 705 | NoNonBonds++;
|
---|
| 706 |
|
---|
[042f82] | 707 | return Binder;
|
---|
[14de469] | 708 | };
|
---|
| 709 |
|
---|
[fa649a] | 710 | /** Remove bond from bond chain list and from the both atom::ListOfBonds.
|
---|
[69eb71] | 711 | * \todo Function not implemented yet
|
---|
[14de469] | 712 | * \param *pointer bond pointer
|
---|
| 713 | * \return true - bound found and removed, false - bond not found/removed
|
---|
| 714 | */
|
---|
| 715 | bool molecule::RemoveBond(bond *pointer)
|
---|
| 716 | {
|
---|
[58ed4a] | 717 | //DoeLog(1) && (eLog()<< Verbose(1) << "molecule::RemoveBond: Function not implemented yet." << endl);
|
---|
[e08c46] | 718 | delete(pointer);
|
---|
[042f82] | 719 | return true;
|
---|
[14de469] | 720 | };
|
---|
| 721 |
|
---|
| 722 | /** Remove every bond from bond chain list that atom \a *BondPartner is a constituent of.
|
---|
[69eb71] | 723 | * \todo Function not implemented yet
|
---|
[14de469] | 724 | * \param *BondPartner atom to be removed
|
---|
| 725 | * \return true - bounds found and removed, false - bonds not found/removed
|
---|
| 726 | */
|
---|
| 727 | bool molecule::RemoveBonds(atom *BondPartner)
|
---|
| 728 | {
|
---|
[58ed4a] | 729 | //DoeLog(1) && (eLog()<< Verbose(1) << "molecule::RemoveBond: Function not implemented yet." << endl);
|
---|
[266237] | 730 | BondList::const_iterator ForeRunner;
|
---|
| 731 | while (!BondPartner->ListOfBonds.empty()) {
|
---|
| 732 | ForeRunner = BondPartner->ListOfBonds.begin();
|
---|
| 733 | RemoveBond(*ForeRunner);
|
---|
| 734 | }
|
---|
[042f82] | 735 | return false;
|
---|
[14de469] | 736 | };
|
---|
| 737 |
|
---|
[1907a7] | 738 | /** Set molecule::name from the basename without suffix in the given \a *filename.
|
---|
| 739 | * \param *filename filename
|
---|
| 740 | */
|
---|
[d67150] | 741 | void molecule::SetNameFromFilename(const char *filename)
|
---|
[1907a7] | 742 | {
|
---|
| 743 | int length = 0;
|
---|
[f7f7a4] | 744 | const char *molname = strrchr(filename, '/');
|
---|
| 745 | if (molname != NULL)
|
---|
| 746 | molname += sizeof(char); // search for filename without dirs
|
---|
| 747 | else
|
---|
| 748 | molname = filename; // contains no slashes
|
---|
[49e1ae] | 749 | const char *endname = strchr(molname, '.');
|
---|
[1907a7] | 750 | if ((endname == NULL) || (endname < molname))
|
---|
| 751 | length = strlen(molname);
|
---|
| 752 | else
|
---|
| 753 | length = strlen(molname) - strlen(endname);
|
---|
[35b698] | 754 | cout << "Set name of molecule " << getId() << " to " << molname << endl;
|
---|
[1907a7] | 755 | strncpy(name, molname, length);
|
---|
[d67150] | 756 | name[length]='\0';
|
---|
[1907a7] | 757 | };
|
---|
| 758 |
|
---|
[14de469] | 759 | /** Sets the molecule::cell_size to the components of \a *dim (rectangular box)
|
---|
| 760 | * \param *dim vector class
|
---|
| 761 | */
|
---|
[e9b8bb] | 762 | void molecule::SetBoxDimension(Vector *dim)
|
---|
[14de469] | 763 | {
|
---|
[84c494] | 764 | Matrix domain;
|
---|
| 765 | for(int i =0; i<NDIM;++i)
|
---|
| 766 | domain.at(i,i) = dim->at(i);
|
---|
| 767 | World::getInstance().setDomain(domain);
|
---|
[14de469] | 768 | };
|
---|
| 769 |
|
---|
[cee0b57] | 770 | /** Removes atom from molecule list and deletes it.
|
---|
| 771 | * \param *pointer atom to be removed
|
---|
| 772 | * \return true - succeeded, false - atom not found in list
|
---|
[a9d254] | 773 | */
|
---|
[cee0b57] | 774 | bool molecule::RemoveAtom(atom *pointer)
|
---|
[a9d254] | 775 | {
|
---|
[a7b761b] | 776 | ASSERT(pointer, "Null pointer passed to molecule::RemoveAtom().");
|
---|
[ea7176] | 777 | OBSERVE;
|
---|
[389cc8] | 778 | formula-=pointer->type;
|
---|
[266237] | 779 | RemoveBonds(pointer);
|
---|
[9879f6] | 780 | erase(pointer);
|
---|
| 781 | return true;
|
---|
[a9d254] | 782 | };
|
---|
| 783 |
|
---|
[cee0b57] | 784 | /** Removes atom from molecule list, but does not delete it.
|
---|
| 785 | * \param *pointer atom to be removed
|
---|
| 786 | * \return true - succeeded, false - atom not found in list
|
---|
[f3278b] | 787 | */
|
---|
[cee0b57] | 788 | bool molecule::UnlinkAtom(atom *pointer)
|
---|
[f3278b] | 789 | {
|
---|
[cee0b57] | 790 | if (pointer == NULL)
|
---|
| 791 | return false;
|
---|
[389cc8] | 792 | formula-=pointer->type;
|
---|
[9879f6] | 793 | erase(pointer);
|
---|
[cee0b57] | 794 | return true;
|
---|
[f3278b] | 795 | };
|
---|
| 796 |
|
---|
[cee0b57] | 797 | /** Removes every atom from molecule list.
|
---|
| 798 | * \return true - succeeded, false - atom not found in list
|
---|
[14de469] | 799 | */
|
---|
[cee0b57] | 800 | bool molecule::CleanupMolecule()
|
---|
[14de469] | 801 | {
|
---|
[9879f6] | 802 | for (molecule::iterator iter = begin(); !empty(); iter = begin())
|
---|
| 803 | erase(iter);
|
---|
[274d45] | 804 | return empty();
|
---|
[69eb71] | 805 | };
|
---|
[14de469] | 806 |
|
---|
[cee0b57] | 807 | /** Finds an atom specified by its continuous number.
|
---|
| 808 | * \param Nr number of atom withim molecule
|
---|
| 809 | * \return pointer to atom or NULL
|
---|
[14de469] | 810 | */
|
---|
[9879f6] | 811 | atom * molecule::FindAtom(int Nr) const
|
---|
| 812 | {
|
---|
| 813 | molecule::const_iterator iter = begin();
|
---|
| 814 | for (; iter != end(); ++iter)
|
---|
| 815 | if ((*iter)->nr == Nr)
|
---|
| 816 | break;
|
---|
| 817 | if (iter != end()) {
|
---|
[e138de] | 818 | //Log() << Verbose(0) << "Found Atom Nr. " << walker->nr << endl;
|
---|
[9879f6] | 819 | return (*iter);
|
---|
[cee0b57] | 820 | } else {
|
---|
[a67d19] | 821 | DoLog(0) && (Log() << Verbose(0) << "Atom not found in list." << endl);
|
---|
[cee0b57] | 822 | return NULL;
|
---|
[042f82] | 823 | }
|
---|
[69eb71] | 824 | };
|
---|
[14de469] | 825 |
|
---|
[cee0b57] | 826 | /** Asks for atom number, and checks whether in list.
|
---|
| 827 | * \param *text question before entering
|
---|
[a6b7fb] | 828 | */
|
---|
[cee0b57] | 829 | atom * molecule::AskAtom(string text)
|
---|
[a6b7fb] | 830 | {
|
---|
[cee0b57] | 831 | int No;
|
---|
| 832 | atom *ion = NULL;
|
---|
| 833 | do {
|
---|
[e138de] | 834 | //Log() << Verbose(0) << "============Atom list==========================" << endl;
|
---|
[cee0b57] | 835 | //mol->Output((ofstream *)&cout);
|
---|
[e138de] | 836 | //Log() << Verbose(0) << "===============================================" << endl;
|
---|
[a67d19] | 837 | DoLog(0) && (Log() << Verbose(0) << text);
|
---|
[cee0b57] | 838 | cin >> No;
|
---|
| 839 | ion = this->FindAtom(No);
|
---|
| 840 | } while (ion == NULL);
|
---|
| 841 | return ion;
|
---|
[a6b7fb] | 842 | };
|
---|
| 843 |
|
---|
[cee0b57] | 844 | /** Checks if given coordinates are within cell volume.
|
---|
| 845 | * \param *x array of coordinates
|
---|
| 846 | * \return true - is within, false - out of cell
|
---|
[14de469] | 847 | */
|
---|
[cee0b57] | 848 | bool molecule::CheckBounds(const Vector *x) const
|
---|
[14de469] | 849 | {
|
---|
[84c494] | 850 | const Matrix &domain = World::getInstance().getDomain().getM();
|
---|
[cee0b57] | 851 | bool result = true;
|
---|
| 852 | for (int i=0;i<NDIM;i++) {
|
---|
[84c494] | 853 | result = result && ((x->at(i) >= 0) && (x->at(i) < domain.at(i,i)));
|
---|
[042f82] | 854 | }
|
---|
[cee0b57] | 855 | //return result;
|
---|
| 856 | return true; /// probably not gonna use the check no more
|
---|
[69eb71] | 857 | };
|
---|
[14de469] | 858 |
|
---|
[cee0b57] | 859 | /** Prints molecule to *out.
|
---|
| 860 | * \param *out output stream
|
---|
[14de469] | 861 | */
|
---|
[0ba410] | 862 | bool molecule::Output(ostream * const output)
|
---|
[14de469] | 863 | {
|
---|
[e138de] | 864 | if (output == NULL) {
|
---|
[cee0b57] | 865 | return false;
|
---|
| 866 | } else {
|
---|
[0ba410] | 867 | int AtomNo[MAX_ELEMENTS];
|
---|
| 868 | memset(AtomNo,0,(MAX_ELEMENTS-1)*sizeof(*AtomNo));
|
---|
| 869 | enumeration<const element*> elementLookup = formula.enumerateElements();
|
---|
| 870 | for(map<const element*,unsigned int>::iterator iter=elementLookup.there.begin();
|
---|
| 871 | iter!=elementLookup.there.end();++iter){
|
---|
| 872 | cout << "Enumerated element " << *iter->first << " with number " << iter->second << endl;
|
---|
[cee0b57] | 873 | }
|
---|
[0ba410] | 874 | *output << "#Ion_TypeNr._Nr.R[0] R[1] R[2] MoveType (0 MoveIon, 1 FixedIon)" << endl;
|
---|
| 875 | for_each(atoms.begin(),atoms.end(),boost::bind(&atom::OutputArrayIndexed,_1,output,elementLookup,AtomNo,(const char*)0));
|
---|
[cee0b57] | 876 | return true;
|
---|
[042f82] | 877 | }
|
---|
[14de469] | 878 | };
|
---|
| 879 |
|
---|
[cee0b57] | 880 | /** Prints molecule with all atomic trajectory positions to *out.
|
---|
| 881 | * \param *out output stream
|
---|
[21c017] | 882 | */
|
---|
[e138de] | 883 | bool molecule::OutputTrajectories(ofstream * const output)
|
---|
[21c017] | 884 | {
|
---|
[cee0b57] | 885 | int ElementNo[MAX_ELEMENTS], AtomNo[MAX_ELEMENTS];
|
---|
[21c017] | 886 |
|
---|
[e138de] | 887 | if (output == NULL) {
|
---|
[cee0b57] | 888 | return false;
|
---|
| 889 | } else {
|
---|
| 890 | for (int step = 0; step < MDSteps; step++) {
|
---|
| 891 | if (step == 0) {
|
---|
[e138de] | 892 | *output << "#Ion_TypeNr._Nr.R[0] R[1] R[2] MoveType (0 MoveIon, 1 FixedIon)" << endl;
|
---|
[205ccd] | 893 | } else {
|
---|
[e138de] | 894 | *output << "# ====== MD step " << step << " =========" << endl;
|
---|
[cee0b57] | 895 | }
|
---|
| 896 | for (int i=0;i<MAX_ELEMENTS;++i) {
|
---|
| 897 | AtomNo[i] = 0;
|
---|
| 898 | ElementNo[i] = 0;
|
---|
[205ccd] | 899 | }
|
---|
[e9f8f9] | 900 | SetIndexedArrayForEachAtomTo ( ElementNo, &element::Z, &AbsoluteValue, 1);
|
---|
| 901 | int current=1;
|
---|
| 902 | for (int i=0;i<MAX_ELEMENTS;++i) {
|
---|
| 903 | if (ElementNo[i] == 1)
|
---|
| 904 | ElementNo[i] = current++;
|
---|
| 905 | }
|
---|
[e138de] | 906 | ActOnAllAtoms( &atom::OutputTrajectory, output, (const int *)ElementNo, AtomNo, (const int)step );
|
---|
[21c017] | 907 | }
|
---|
[cee0b57] | 908 | return true;
|
---|
[21c017] | 909 | }
|
---|
| 910 | };
|
---|
| 911 |
|
---|
[266237] | 912 | /** Outputs contents of each atom::ListOfBonds.
|
---|
[cee0b57] | 913 | * \param *out output stream
|
---|
[14de469] | 914 | */
|
---|
[e138de] | 915 | void molecule::OutputListOfBonds() const
|
---|
[14de469] | 916 | {
|
---|
[a67d19] | 917 | DoLog(2) && (Log() << Verbose(2) << endl << "From Contents of ListOfBonds, all non-hydrogen atoms:" << endl);
|
---|
[0eea14] | 918 | for_each(atoms.begin(),atoms.end(),mem_fun(&atom::OutputBondOfAtom));
|
---|
[a67d19] | 919 | DoLog(0) && (Log() << Verbose(0) << endl);
|
---|
[14de469] | 920 | };
|
---|
| 921 |
|
---|
[cee0b57] | 922 | /** Output of element before the actual coordination list.
|
---|
| 923 | * \param *out stream pointer
|
---|
[14de469] | 924 | */
|
---|
[e138de] | 925 | bool molecule::Checkout(ofstream * const output) const
|
---|
[14de469] | 926 | {
|
---|
[389cc8] | 927 | return formula.checkOut(output);
|
---|
[6e9353] | 928 | };
|
---|
| 929 |
|
---|
[cee0b57] | 930 | /** Prints molecule with all its trajectories to *out as xyz file.
|
---|
| 931 | * \param *out output stream
|
---|
[d7e30c] | 932 | */
|
---|
[e138de] | 933 | bool molecule::OutputTrajectoriesXYZ(ofstream * const output)
|
---|
[d7e30c] | 934 | {
|
---|
[cee0b57] | 935 | time_t now;
|
---|
[042f82] | 936 |
|
---|
[e138de] | 937 | if (output != NULL) {
|
---|
[681a8a] | 938 | now = time((time_t *)NULL); // Get the system time and put it into 'now' as 'calender time'
|
---|
[cee0b57] | 939 | for (int step=0;step<MDSteps;step++) {
|
---|
[ea7176] | 940 | *output << getAtomCount() << "\n\tCreated by molecuilder, step " << step << ", on " << ctime(&now);
|
---|
[7baf4a] | 941 | for_each(atoms.begin(),atoms.end(),boost::bind(&atom::OutputTrajectoryXYZ,_1,output,step));
|
---|
[042f82] | 942 | }
|
---|
[cee0b57] | 943 | return true;
|
---|
| 944 | } else
|
---|
| 945 | return false;
|
---|
[14de469] | 946 | };
|
---|
| 947 |
|
---|
[cee0b57] | 948 | /** Prints molecule to *out as xyz file.
|
---|
| 949 | * \param *out output stream
|
---|
[69eb71] | 950 | */
|
---|
[e138de] | 951 | bool molecule::OutputXYZ(ofstream * const output) const
|
---|
[4aa03a] | 952 | {
|
---|
[cee0b57] | 953 | time_t now;
|
---|
[042f82] | 954 |
|
---|
[e138de] | 955 | if (output != NULL) {
|
---|
[23b830] | 956 | now = time((time_t *)NULL); // Get the system time and put it into 'now' as 'calender time'
|
---|
[ea7176] | 957 | *output << getAtomCount() << "\n\tCreated by molecuilder on " << ctime(&now);
|
---|
[7baf4a] | 958 | for_each(atoms.begin(),atoms.end(),bind2nd(mem_fun(&atom::OutputXYZLine),output));
|
---|
[042f82] | 959 | return true;
|
---|
[cee0b57] | 960 | } else
|
---|
| 961 | return false;
|
---|
| 962 | };
|
---|
[4aa03a] | 963 |
|
---|
[cee0b57] | 964 | /** Brings molecule::AtomCount and atom::*Name up-to-date.
|
---|
[14de469] | 965 | * \param *out output stream for debugging
|
---|
| 966 | */
|
---|
[ea7176] | 967 | int molecule::doCountAtoms()
|
---|
[14de469] | 968 | {
|
---|
[ea7176] | 969 | int res = size();
|
---|
[cee0b57] | 970 | int i = 0;
|
---|
[ea7176] | 971 | NoNonHydrogen = 0;
|
---|
[e0b6fd] | 972 | for (molecule::const_iterator iter = atoms.begin(); iter != atoms.end(); ++iter) {
|
---|
[ea7176] | 973 | (*iter)->nr = i; // update number in molecule (for easier referencing in FragmentMolecule lateron)
|
---|
| 974 | if ((*iter)->type->Z != 1) // count non-hydrogen atoms whilst at it
|
---|
| 975 | NoNonHydrogen++;
|
---|
[a7b761b] | 976 | stringstream sstr;
|
---|
[2fe971] | 977 | sstr << (*iter)->type->getSymbol() << (*iter)->nr+1;
|
---|
[a7b761b] | 978 | (*iter)->setName(sstr.str());
|
---|
[7fd416] | 979 | DoLog(3) && (Log() << Verbose(3) << "Naming atom nr. " << (*iter)->nr << " " << (*iter)->getName() << "." << endl);
|
---|
[cee0b57] | 980 | i++;
|
---|
| 981 | }
|
---|
[ea7176] | 982 | return res;
|
---|
[cee0b57] | 983 | };
|
---|
[042f82] | 984 |
|
---|
[14de469] | 985 | /** Determines whether two molecules actually contain the same atoms and coordination.
|
---|
| 986 | * \param *out output stream for debugging
|
---|
| 987 | * \param *OtherMolecule the molecule to compare this one to
|
---|
| 988 | * \param threshold upper limit of difference when comparing the coordination.
|
---|
| 989 | * \return NULL - not equal, otherwise an allocated (molecule::AtomCount) permutation map of the atom numbers (which corresponds to which)
|
---|
| 990 | */
|
---|
[e138de] | 991 | int * molecule::IsEqualToWithinThreshold(molecule *OtherMolecule, double threshold)
|
---|
[14de469] | 992 | {
|
---|
[042f82] | 993 | int flag;
|
---|
| 994 | double *Distances = NULL, *OtherDistances = NULL;
|
---|
| 995 | Vector CenterOfGravity, OtherCenterOfGravity;
|
---|
| 996 | size_t *PermMap = NULL, *OtherPermMap = NULL;
|
---|
| 997 | int *PermutationMap = NULL;
|
---|
| 998 | bool result = true; // status of comparison
|
---|
| 999 |
|
---|
[a67d19] | 1000 | DoLog(3) && (Log() << Verbose(3) << "Begin of IsEqualToWithinThreshold." << endl);
|
---|
[042f82] | 1001 | /// first count both their atoms and elements and update lists thereby ...
|
---|
[e138de] | 1002 | //Log() << Verbose(0) << "Counting atoms, updating list" << endl;
|
---|
[042f82] | 1003 |
|
---|
| 1004 | /// ... and compare:
|
---|
| 1005 | /// -# AtomCount
|
---|
| 1006 | if (result) {
|
---|
[ea7176] | 1007 | if (getAtomCount() != OtherMolecule->getAtomCount()) {
|
---|
[a7b761b] | 1008 | DoLog(4) && (Log() << Verbose(4) << "AtomCounts don't match: " << getAtomCount() << " == " << OtherMolecule->getAtomCount() << endl);
|
---|
[042f82] | 1009 | result = false;
|
---|
[ea7176] | 1010 | } else Log() << Verbose(4) << "AtomCounts match: " << getAtomCount() << " == " << OtherMolecule->getAtomCount() << endl;
|
---|
[042f82] | 1011 | }
|
---|
[389cc8] | 1012 | /// -# Formula
|
---|
[042f82] | 1013 | if (result) {
|
---|
[389cc8] | 1014 | if (formula != OtherMolecule->formula) {
|
---|
| 1015 | DoLog(4) && (Log() << Verbose(4) << "Formulas don't match: " << formula << " == " << OtherMolecule->formula << endl);
|
---|
[042f82] | 1016 | result = false;
|
---|
[389cc8] | 1017 | } else Log() << Verbose(4) << "Formulas match: " << formula << " == " << OtherMolecule->formula << endl;
|
---|
[042f82] | 1018 | }
|
---|
| 1019 | /// then determine and compare center of gravity for each molecule ...
|
---|
| 1020 | if (result) {
|
---|
[a67d19] | 1021 | DoLog(5) && (Log() << Verbose(5) << "Calculating Centers of Gravity" << endl);
|
---|
[437922] | 1022 | DeterminePeriodicCenter(CenterOfGravity);
|
---|
| 1023 | OtherMolecule->DeterminePeriodicCenter(OtherCenterOfGravity);
|
---|
[8cbb97] | 1024 | DoLog(5) && (Log() << Verbose(5) << "Center of Gravity: " << CenterOfGravity << endl);
|
---|
| 1025 | DoLog(5) && (Log() << Verbose(5) << "Other Center of Gravity: " << OtherCenterOfGravity << endl);
|
---|
[273382] | 1026 | if (CenterOfGravity.DistanceSquared(OtherCenterOfGravity) > threshold*threshold) {
|
---|
[a67d19] | 1027 | DoLog(4) && (Log() << Verbose(4) << "Centers of gravity don't match." << endl);
|
---|
[042f82] | 1028 | result = false;
|
---|
| 1029 | }
|
---|
| 1030 | }
|
---|
| 1031 |
|
---|
| 1032 | /// ... then make a list with the euclidian distance to this center for each atom of both molecules
|
---|
| 1033 | if (result) {
|
---|
[a67d19] | 1034 | DoLog(5) && (Log() << Verbose(5) << "Calculating distances" << endl);
|
---|
[1024cb] | 1035 | Distances = new double[getAtomCount()];
|
---|
| 1036 | OtherDistances = new double[getAtomCount()];
|
---|
[b453f9] | 1037 | SetIndexedArrayForEachAtomTo ( Distances, &atom::nr, &atom::DistanceSquaredToVector, (const Vector &)CenterOfGravity);
|
---|
| 1038 | SetIndexedArrayForEachAtomTo ( OtherDistances, &atom::nr, &atom::DistanceSquaredToVector, (const Vector &)CenterOfGravity);
|
---|
[1024cb] | 1039 | for(int i=0;i<getAtomCount();i++) {
|
---|
[920c70] | 1040 | Distances[i] = 0.;
|
---|
| 1041 | OtherDistances[i] = 0.;
|
---|
| 1042 | }
|
---|
[042f82] | 1043 |
|
---|
| 1044 | /// ... sort each list (using heapsort (o(N log N)) from GSL)
|
---|
[a67d19] | 1045 | DoLog(5) && (Log() << Verbose(5) << "Sorting distances" << endl);
|
---|
[1024cb] | 1046 | PermMap = new size_t[getAtomCount()];
|
---|
| 1047 | OtherPermMap = new size_t[getAtomCount()];
|
---|
| 1048 | for(int i=0;i<getAtomCount();i++) {
|
---|
[920c70] | 1049 | PermMap[i] = 0;
|
---|
| 1050 | OtherPermMap[i] = 0;
|
---|
| 1051 | }
|
---|
[ea7176] | 1052 | gsl_heapsort_index (PermMap, Distances, getAtomCount(), sizeof(double), CompareDoubles);
|
---|
| 1053 | gsl_heapsort_index (OtherPermMap, OtherDistances, getAtomCount(), sizeof(double), CompareDoubles);
|
---|
[1024cb] | 1054 | PermutationMap = new int[getAtomCount()];
|
---|
| 1055 | for(int i=0;i<getAtomCount();i++)
|
---|
[920c70] | 1056 | PermutationMap[i] = 0;
|
---|
[a67d19] | 1057 | DoLog(5) && (Log() << Verbose(5) << "Combining Permutation Maps" << endl);
|
---|
[ea7176] | 1058 | for(int i=getAtomCount();i--;)
|
---|
[042f82] | 1059 | PermutationMap[PermMap[i]] = (int) OtherPermMap[i];
|
---|
| 1060 |
|
---|
[29812d] | 1061 | /// ... and compare them step by step, whether the difference is individually(!) below \a threshold for all
|
---|
[a67d19] | 1062 | DoLog(4) && (Log() << Verbose(4) << "Comparing distances" << endl);
|
---|
[042f82] | 1063 | flag = 0;
|
---|
[ea7176] | 1064 | for (int i=0;i<getAtomCount();i++) {
|
---|
[a67d19] | 1065 | DoLog(5) && (Log() << Verbose(5) << "Distances squared: |" << Distances[PermMap[i]] << " - " << OtherDistances[OtherPermMap[i]] << "| = " << fabs(Distances[PermMap[i]] - OtherDistances[OtherPermMap[i]]) << " ?<? " << threshold << endl);
|
---|
[042f82] | 1066 | if (fabs(Distances[PermMap[i]] - OtherDistances[OtherPermMap[i]]) > threshold*threshold)
|
---|
| 1067 | flag = 1;
|
---|
| 1068 | }
|
---|
| 1069 |
|
---|
[29812d] | 1070 | // free memory
|
---|
[920c70] | 1071 | delete[](PermMap);
|
---|
| 1072 | delete[](OtherPermMap);
|
---|
| 1073 | delete[](Distances);
|
---|
| 1074 | delete[](OtherDistances);
|
---|
[042f82] | 1075 | if (flag) { // if not equal
|
---|
[920c70] | 1076 | delete[](PermutationMap);
|
---|
[042f82] | 1077 | result = false;
|
---|
| 1078 | }
|
---|
| 1079 | }
|
---|
| 1080 | /// return pointer to map if all distances were below \a threshold
|
---|
[a67d19] | 1081 | DoLog(3) && (Log() << Verbose(3) << "End of IsEqualToWithinThreshold." << endl);
|
---|
[042f82] | 1082 | if (result) {
|
---|
[a67d19] | 1083 | DoLog(3) && (Log() << Verbose(3) << "Result: Equal." << endl);
|
---|
[042f82] | 1084 | return PermutationMap;
|
---|
| 1085 | } else {
|
---|
[a67d19] | 1086 | DoLog(3) && (Log() << Verbose(3) << "Result: Not equal." << endl);
|
---|
[042f82] | 1087 | return NULL;
|
---|
| 1088 | }
|
---|
[14de469] | 1089 | };
|
---|
| 1090 |
|
---|
| 1091 | /** Returns an index map for two father-son-molecules.
|
---|
| 1092 | * The map tells which atom in this molecule corresponds to which one in the other molecul with their fathers.
|
---|
| 1093 | * \param *out output stream for debugging
|
---|
| 1094 | * \param *OtherMolecule corresponding molecule with fathers
|
---|
| 1095 | * \return allocated map of size molecule::AtomCount with map
|
---|
| 1096 | * \todo make this with a good sort O(n), not O(n^2)
|
---|
| 1097 | */
|
---|
[e138de] | 1098 | int * molecule::GetFatherSonAtomicMap(molecule *OtherMolecule)
|
---|
[14de469] | 1099 | {
|
---|
[a67d19] | 1100 | DoLog(3) && (Log() << Verbose(3) << "Begin of GetFatherAtomicMap." << endl);
|
---|
[1024cb] | 1101 | int *AtomicMap = new int[getAtomCount()];
|
---|
[ea7176] | 1102 | for (int i=getAtomCount();i--;)
|
---|
[042f82] | 1103 | AtomicMap[i] = -1;
|
---|
| 1104 | if (OtherMolecule == this) { // same molecule
|
---|
[ea7176] | 1105 | for (int i=getAtomCount();i--;) // no need as -1 means already that there is trivial correspondence
|
---|
[042f82] | 1106 | AtomicMap[i] = i;
|
---|
[a67d19] | 1107 | DoLog(4) && (Log() << Verbose(4) << "Map is trivial." << endl);
|
---|
[042f82] | 1108 | } else {
|
---|
[a67d19] | 1109 | DoLog(4) && (Log() << Verbose(4) << "Map is ");
|
---|
[9879f6] | 1110 | for (molecule::const_iterator iter = begin(); iter != end(); ++iter) {
|
---|
| 1111 | if ((*iter)->father == NULL) {
|
---|
| 1112 | AtomicMap[(*iter)->nr] = -2;
|
---|
[042f82] | 1113 | } else {
|
---|
[9879f6] | 1114 | for (molecule::const_iterator runner = OtherMolecule->begin(); runner != OtherMolecule->end(); ++runner) {
|
---|
[042f82] | 1115 | //for (int i=0;i<AtomCount;i++) { // search atom
|
---|
[1024cb] | 1116 | //for (int j=0;j<OtherMolecule->getAtomCount();j++) {
|
---|
[9879f6] | 1117 | //Log() << Verbose(4) << "Comparing father " << (*iter)->father << " with the other one " << (*runner)->father << "." << endl;
|
---|
| 1118 | if ((*iter)->father == (*runner))
|
---|
| 1119 | AtomicMap[(*iter)->nr] = (*runner)->nr;
|
---|
[042f82] | 1120 | }
|
---|
| 1121 | }
|
---|
[a7b761b] | 1122 | DoLog(0) && (Log() << Verbose(0) << AtomicMap[(*iter)->nr] << "\t");
|
---|
[042f82] | 1123 | }
|
---|
[a67d19] | 1124 | DoLog(0) && (Log() << Verbose(0) << endl);
|
---|
[042f82] | 1125 | }
|
---|
[a67d19] | 1126 | DoLog(3) && (Log() << Verbose(3) << "End of GetFatherAtomicMap." << endl);
|
---|
[042f82] | 1127 | return AtomicMap;
|
---|
[14de469] | 1128 | };
|
---|
| 1129 |
|
---|
[698b04] | 1130 | /** Stores the temperature evaluated from velocities in molecule::Trajectories.
|
---|
| 1131 | * We simply use the formula equivaleting temperature and kinetic energy:
|
---|
| 1132 | * \f$k_B T = \sum_i m_i v_i^2\f$
|
---|
[e138de] | 1133 | * \param *output output stream of temperature file
|
---|
[698b04] | 1134 | * \param startstep first MD step in molecule::Trajectories
|
---|
| 1135 | * \param endstep last plus one MD step in molecule::Trajectories
|
---|
| 1136 | * \return file written (true), failure on writing file (false)
|
---|
[69eb71] | 1137 | */
|
---|
[e138de] | 1138 | bool molecule::OutputTemperatureFromTrajectories(ofstream * const output, int startstep, int endstep)
|
---|
[698b04] | 1139 | {
|
---|
[042f82] | 1140 | double temperature;
|
---|
| 1141 | // test stream
|
---|
| 1142 | if (output == NULL)
|
---|
| 1143 | return false;
|
---|
| 1144 | else
|
---|
| 1145 | *output << "# Step Temperature [K] Temperature [a.u.]" << endl;
|
---|
| 1146 | for (int step=startstep;step < endstep; step++) { // loop over all time steps
|
---|
| 1147 | temperature = 0.;
|
---|
[4455f4] | 1148 | ActOnAllAtoms( &TrajectoryParticle::AddKineticToTemperature, &temperature, step);
|
---|
[042f82] | 1149 | *output << step << "\t" << temperature*AtomicEnergyToKelvin << "\t" << temperature << endl;
|
---|
| 1150 | }
|
---|
| 1151 | return true;
|
---|
[65de9b] | 1152 | };
|
---|
[4a7776a] | 1153 |
|
---|
[b453f9] | 1154 | void molecule::SetIndexedArrayForEachAtomTo ( atom **array, int ParticleInfo::*index) const
|
---|
[4a7776a] | 1155 | {
|
---|
[9879f6] | 1156 | for (molecule::const_iterator iter = begin(); iter != end(); ++iter) {
|
---|
| 1157 | array[((*iter)->*index)] = (*iter);
|
---|
[4a7776a] | 1158 | }
|
---|
| 1159 | };
|
---|
[c68025] | 1160 |
|
---|
| 1161 | void molecule::flipActiveFlag(){
|
---|
| 1162 | ActiveFlag = !ActiveFlag;
|
---|
| 1163 | }
|
---|