source: src/Atom/atom.cpp@ 0cd8cf

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Last change on this file since 0cd8cf was 4e904b, checked in by Frederik Heber <heber@…>, 12 years ago

Removed atom::IsInShape().

  • this makes libMolecuilderAtom not depend on ..Shapes.
  • Property mode set to 100644
File size: 7.4 KB
RevLine 
[bcf653]1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
[0aa122]4 * Copyright (C) 2010-2012 University of Bonn. All rights reserved.
[94d5ac6]5 *
6 *
7 * This file is part of MoleCuilder.
8 *
9 * MoleCuilder is free software: you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation, either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * MoleCuilder is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with MoleCuilder. If not, see <http://www.gnu.org/licenses/>.
[bcf653]21 */
22
[14de469]23/** \file atom.cpp
[1907a7]24 *
[14de469]25 * Function implementations for the class atom.
[1907a7]26 *
[14de469]27 */
28
[bf3817]29// include config.h
30#ifdef HAVE_CONFIG_H
31#include <config.h>
32#endif
33
[ad011c]34#include "CodePatterns/MemDebug.hpp"
[112b09]35
[357fba]36#include "atom.hpp"
[129204]37#include "Bond/bond.hpp"
[e2373df]38#include "CodePatterns/Log.hpp"
[4a7776a]39#include "config.hpp"
[3bdb6d]40#include "Element/element.hpp"
[57f243]41#include "LinearAlgebra/Vector.hpp"
[d346b6]42#include "World.hpp"
[6cfa36]43#include "molecule.hpp"
[c550dd]44#include "Shapes/Shape.hpp"
[a0064e]45
[36166d]46#include <iomanip>
[0ba410]47#include <iostream>
[36166d]48
[14de469]49/************************************* Functions for class atom *************************************/
50
[70ff32]51
[46d958]52atom::atom() :
[97b825]53 father(this),
[5309ba]54 sort(&Nr),
[97b825]55 mol(0)
[d74077]56{};
[14de469]57
[ea0c8b]58atom::atom(atom *pointer) :
59 ParticleInfo(*pointer),
[c742fe]60 AtomInfo(*pointer),
[97b825]61 father(pointer),
[5309ba]62 sort(&Nr),
[9df680]63 mol(0)
[2319ed]64{
[443547]65 AtomicPosition = pointer->AtomicPosition; // copy trajectory of coordination
66 AtomicVelocity = pointer->AtomicVelocity; // copy trajectory of velocity
67 AtomicForce = pointer->AtomicForce;
[b453f9]68};
[2319ed]69
[46d958]70atom *atom::clone(){
[68f03d]71 atom *res = new atom(this);
[23b547]72 World::getInstance().registerAtom(res);
[46d958]73 return res;
74}
75
[2319ed]76
[14de469]77/** Destructor of class atom.
78 */
[1907a7]79atom::~atom()
[14de469]80{
[6cfa36]81 removeFromMolecule();
[14de469]82};
[e2373df]83
84
85void atom::UpdateSteps()
86{
87 LOG(4,"atom::UpdateSteps() called.");
88 // append to position, velocity and force vector
89 AtomInfo::AppendTrajectoryStep();
[1e6249]90 // append to ListOfBonds vector
91 BondedParticleInfo::AppendTrajectoryStep();
[e2373df]92}
93
[59fff1]94atom *atom::GetTrueFather()
95{
96 const atom *father = const_cast<const atom *>(this)->GetTrueFather();
97 return const_cast<atom *>(father);
98}
99
100const atom *atom::GetTrueFather() const
[14de469]101{
[215df0]102 if(father == this){ // top most father is the one that points on itself
103 return this;
104 }
105 else if(!father) {
106 return 0;
107 }
108 else {
109 return father->GetTrueFather();
110 }
[14de469]111};
112
[e65246]113/** Sets father to itself or its father in case of copying a molecule.
114 */
115void atom::CorrectFather()
116{
[2e352f]117 if (father->father != father) // same atom in copy's father points to itself
118// father = this; // set father to itself (copy of a whole molecule)
119// else
[e65246]120 father = father->father; // set father to original's father
121
122};
123
[b453f9]124void atom::EqualsFather ( const atom *ptr, const atom **res ) const
[e65246]125{
126 if ( ptr == father )
127 *res = this;
128};
129
[00abfc]130bool atom::isFather(const atom *ptr){
131 return ptr==father;
132}
133
[e138de]134bool atom::OutputIndexed(ofstream * const out, const int ElementNo, const int AtomNo, const char *comment) const
[14de469]135{
136 if (out != NULL) {
137 *out << "Ion_Type" << ElementNo << "_" << AtomNo << "\t" << fixed << setprecision(9) << showpoint;
[d74077]138 *out << at(0) << "\t" << at(1) << "\t" << at(2);
[6625c3]139 *out << "\t" << (int)(getFixedIon());
[bce72c]140 if (getAtomicVelocity().Norm() > MYEPSILON)
141 *out << "\t" << scientific << setprecision(6) << getAtomicVelocity()[0] << "\t" << getAtomicVelocity()[1] << "\t" << getAtomicVelocity()[2] << "\t";
[437922]142 if (comment != NULL)
143 *out << " # " << comment << endl;
[e9f8f9]144 else
[735b1c]145 *out << " # molecule nr " << getNr() << endl;
[e9f8f9]146 return true;
147 } else
148 return false;
149};
[b453f9]150
[0ba410]151bool atom::OutputArrayIndexed(ostream * const out,const enumeration<const element*> &elementLookup, int *AtomNo, const char *comment) const
[e9f8f9]152{
[83f176]153 AtomNo[getType()->getAtomicNumber()]++; // increment number
[e9f8f9]154 if (out != NULL) {
[8f4df1]155 const element *elemental = getType();
156 ASSERT(elementLookup.there.find(elemental)!=elementLookup.there.end(),"Type of this atom was not in the formula upon enumeration");
[83f176]157 *out << "Ion_Type" << elementLookup.there.find(elemental)->second << "_" << AtomNo[elemental->getAtomicNumber()] << "\t" << fixed << setprecision(9) << showpoint;
[d74077]158 *out << at(0) << "\t" << at(1) << "\t" << at(2);
[6625c3]159 *out << "\t" << getFixedIon();
[bce72c]160 if (getAtomicVelocity().Norm() > MYEPSILON)
161 *out << "\t" << scientific << setprecision(6) << getAtomicVelocity()[0] << "\t" << getAtomicVelocity()[1] << "\t" << getAtomicVelocity()[2] << "\t";
[e9f8f9]162 if (comment != NULL)
163 *out << " # " << comment << endl;
[437922]164 else
[735b1c]165 *out << " # molecule nr " << getNr() << endl;
[14de469]166 return true;
167 } else
168 return false;
169};
170
[b453f9]171bool atom::Compare(const atom &ptr) const
[4455f4]172{
[735b1c]173 if (getNr() < ptr.getNr())
[4455f4]174 return true;
175 else
176 return false;
177};
178
[b453f9]179double atom::DistanceSquaredToVector(const Vector &origin) const
[4455f4]180{
[d74077]181 return DistanceSquared(origin);
[4455f4]182};
183
[b453f9]184double atom::DistanceToVector(const Vector &origin) const
[4455f4]185{
[d74077]186 return distance(origin);
[4455f4]187};
188
189void atom::InitComponentNr()
190{
191 if (ComponentNr != NULL)
[920c70]192 delete[](ComponentNr);
[9d83b6]193 const BondList& ListOfBonds = getListOfBonds();
[920c70]194 ComponentNr = new int[ListOfBonds.size()+1];
[4455f4]195 for (int i=ListOfBonds.size()+1;i--;)
196 ComponentNr[i] = -1;
[14b65e]197};
198
199void atom::resetGraphNr(){
200 GraphNr=-1;
201}
[4455f4]202
[d74077]203std::ostream & atom::operator << (std::ostream &ost) const
204{
205 ParticleInfo::operator<<(ost);
206 ost << "," << getPosition();
207 return ost;
208}
209
210std::ostream & operator << (std::ostream &ost, const atom &a)
211{
212 a.ParticleInfo::operator<<(ost);
213 ost << "," << a.getPosition();
214 return ost;
215}
[4455f4]216
217bool operator < (atom &a, atom &b)
218{
219 return a.Compare(b);
220};
221
[46d958]222World *atom::getWorld(){
223 return world;
224}
225
226void atom::setWorld(World* _world){
227 world = _world;
228}
229
[88d586]230bool atom::changeId(atomId_t newId){
231 // first we move ourselves in the world
232 // the world lets us know if that succeeded
[4f7f0bf]233 if(world->changeAtomId(id,newId,this)){
234 OBSERVE;
235 id = newId;
236 NOTIFY(IndexChanged);
[88d586]237 return true;
238 }
239 else{
240 return false;
241 }
242}
243
244void atom::setId(atomId_t _id) {
[46d958]245 id=_id;
246}
247
[ad2b411]248atomId_t atom::getId() const {
[46d958]249 return id;
250}
251
[6cfa36]252void atom::setMolecule(molecule *_mol){
253 // take this atom from the old molecule
254 removeFromMolecule();
[3867a7]255 mol = _mol;
256 if ((mol) && (!mol->containsAtom(this)))
[dddbfe]257 mol->insert(this);
[6cfa36]258}
259
[0d9546]260void atom::unsetMolecule()
261{
262 // take this atom from the old molecule
263 ASSERT(!mol->containsAtom(this),
264 "atom::unsetMolecule() - old molecule "+toString(mol)+" still contains us!");
265 mol = NULL;
266}
267
[e41c48]268molecule* atom::getMolecule() const {
[c084cc]269 return mol;
270}
271
[6cfa36]272void atom::removeFromMolecule(){
273 if(mol){
274 if(mol->containsAtom(this)){
275 mol->erase(this);
276 }
277 mol=0;
278 }
[1f8337]279}
280
[560bbe]281bool atom::changeNr(const int newNr)
282{
283 if ((mol) && (mol->changeAtomNr(getNr(),newNr,this))) {
284 return true;
285 } else{
286 return false;
287 }
288}
289
[e8a21f]290int atom::getNr() const{
[735b1c]291 return ParticleInfo::getNr();
[e8a21f]292}
[6cfa36]293
[88d586]294atom* NewAtom(atomId_t _id){
295 atom * res =new atom();
296 res->setId(_id);
297 return res;
[46d958]298}
299
[88d586]300void DeleteAtom(atom* atom){
[46d958]301 delete atom;
[e5f64de]302}
303
304bool compareAtomElements(atom* atom1,atom* atom2){
[ed26ae]305 return atom1->getType()->getAtomicNumber() < atom2->getType()->getAtomicNumber();
[46d958]306}
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