source: src/atom.cpp@ c0d9eb

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Last change on this file since c0d9eb was c0d9eb, checked in by Frederik Heber <heber@…>, 15 years ago

FIX: Moved BondedParticle::CountBonds() from atom.cpp to atom_bondedparticle.cpp.

  • Property mode set to 100644
File size: 11.7 KB
RevLine 
[bcf653]1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2010 University of Bonn. All rights reserved.
5 * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
6 */
7
[14de469]8/** \file atom.cpp
[1907a7]9 *
[14de469]10 * Function implementations for the class atom.
[1907a7]11 *
[14de469]12 */
13
[bf3817]14// include config.h
15#ifdef HAVE_CONFIG_H
16#include <config.h>
17#endif
18
[ad011c]19#include "CodePatterns/MemDebug.hpp"
[112b09]20
[357fba]21#include "atom.hpp"
[e41951]22#include "bond.hpp"
[e2373df]23#include "CodePatterns/Log.hpp"
[4a7776a]24#include "config.hpp"
[f66195]25#include "element.hpp"
[266237]26#include "lists.hpp"
[ccd9f5]27#include "parser.hpp"
[57f243]28#include "LinearAlgebra/Vector.hpp"
[d346b6]29#include "World.hpp"
[6cfa36]30#include "molecule.hpp"
[c550dd]31#include "Shapes/Shape.hpp"
[a0064e]32
[36166d]33#include <iomanip>
[0ba410]34#include <iostream>
[36166d]35
[14de469]36/************************************* Functions for class atom *************************************/
37
[70ff32]38
[14de469]39/** Constructor of class atom.
40 */
[46d958]41atom::atom() :
[97b825]42 father(this),
43 sort(&nr),
44 mol(0)
[d74077]45{};
[14de469]46
[2319ed]47/** Constructor of class atom.
48 */
[46d958]49atom::atom(atom *pointer) :
[97b825]50 ParticleInfo(pointer),
51 father(pointer),
[9df680]52 sort(&nr),
53 mol(0)
[2319ed]54{
[443547]55 setType(pointer->getType()); // copy element of atom
56 AtomicPosition = pointer->AtomicPosition; // copy trajectory of coordination
57 AtomicVelocity = pointer->AtomicVelocity; // copy trajectory of velocity
58 AtomicForce = pointer->AtomicForce;
[6625c3]59 setFixedIon(pointer->getFixedIon());
[b453f9]60};
[2319ed]61
[46d958]62atom *atom::clone(){
[68f03d]63 atom *res = new atom(this);
[23b547]64 World::getInstance().registerAtom(res);
[46d958]65 return res;
66}
67
[2319ed]68
[14de469]69/** Destructor of class atom.
70 */
[1907a7]71atom::~atom()
[14de469]72{
[6cfa36]73 removeFromMolecule();
[a80241]74 for(BondList::iterator iter=ListOfBonds.begin(); iter!=ListOfBonds.end();){
75 // deleting the bond will invalidate the iterator !!!
76 bond *bond =*(iter++);
77 delete(bond);
78 }
[14de469]79};
[e2373df]80
81
82void atom::UpdateSteps()
83{
84 LOG(4,"atom::UpdateSteps() called.");
85 // append to position, velocity and force vector
86 AtomInfo::AppendTrajectoryStep();
87}
88
[14de469]89/** Climbs up the father list until NULL, last is returned.
90 * \return true father, i.e. whose father points to itself, NULL if it could not be found or has none (added hydrogen)
91 */
92atom *atom::GetTrueFather()
93{
[215df0]94 if(father == this){ // top most father is the one that points on itself
95 return this;
96 }
97 else if(!father) {
98 return 0;
99 }
100 else {
101 return father->GetTrueFather();
102 }
[14de469]103};
104
[e65246]105/** Sets father to itself or its father in case of copying a molecule.
106 */
107void atom::CorrectFather()
108{
109 if (father->father == father) // same atom in copy's father points to itself
110 father = this; // set father to itself (copy of a whole molecule)
111 else
112 father = father->father; // set father to original's father
113
114};
115
116/** Check whether father is equal to given atom.
117 * \param *ptr atom to compare father to
118 * \param **res return value (only set if atom::father is equal to \a *ptr)
119 */
[b453f9]120void atom::EqualsFather ( const atom *ptr, const atom **res ) const
[e65246]121{
122 if ( ptr == father )
123 *res = this;
124};
125
[00abfc]126bool atom::isFather(const atom *ptr){
127 return ptr==father;
128}
129
[e9f8f9]130/** Checks whether atom is within the given box.
131 * \param offset offset to box origin
132 * \param *parallelepiped box matrix
133 * \return true - is inside, false - is not
134 */
[c550dd]135bool atom::IsInShape(const Shape& shape) const
[e9f8f9]136{
[d74077]137 return shape.isInside(getPosition());
[e9f8f9]138};
139
[b453f9]140/** Output of a single atom with given numbering.
[14de469]141 * \param ElementNo cardinal number of the element
142 * \param AtomNo cardinal number among these atoms of the same element
143 * \param *out stream to output to
[1907a7]144 * \param *comment commentary after '#' sign
[e41951]145 * \return true - \a *out present, false - \a *out is NULL
[14de469]146 */
[e138de]147bool atom::OutputIndexed(ofstream * const out, const int ElementNo, const int AtomNo, const char *comment) const
[14de469]148{
149 if (out != NULL) {
150 *out << "Ion_Type" << ElementNo << "_" << AtomNo << "\t" << fixed << setprecision(9) << showpoint;
[d74077]151 *out << at(0) << "\t" << at(1) << "\t" << at(2);
[6625c3]152 *out << "\t" << (int)(getFixedIon());
[bce72c]153 if (getAtomicVelocity().Norm() > MYEPSILON)
154 *out << "\t" << scientific << setprecision(6) << getAtomicVelocity()[0] << "\t" << getAtomicVelocity()[1] << "\t" << getAtomicVelocity()[2] << "\t";
[437922]155 if (comment != NULL)
156 *out << " # " << comment << endl;
[e9f8f9]157 else
158 *out << " # molecule nr " << nr << endl;
159 return true;
160 } else
161 return false;
162};
[b453f9]163
164/** Output of a single atom with numbering from array according to atom::type.
165 * \param *ElementNo cardinal number of the element
166 * \param *AtomNo cardinal number among these atoms of the same element
167 * \param *out stream to output to
168 * \param *comment commentary after '#' sign
169 * \return true - \a *out present, false - \a *out is NULL
170 */
[0ba410]171bool atom::OutputArrayIndexed(ostream * const out,const enumeration<const element*> &elementLookup, int *AtomNo, const char *comment) const
[e9f8f9]172{
[83f176]173 AtomNo[getType()->getAtomicNumber()]++; // increment number
[e9f8f9]174 if (out != NULL) {
[8f4df1]175 const element *elemental = getType();
176 ASSERT(elementLookup.there.find(elemental)!=elementLookup.there.end(),"Type of this atom was not in the formula upon enumeration");
[83f176]177 *out << "Ion_Type" << elementLookup.there.find(elemental)->second << "_" << AtomNo[elemental->getAtomicNumber()] << "\t" << fixed << setprecision(9) << showpoint;
[d74077]178 *out << at(0) << "\t" << at(1) << "\t" << at(2);
[6625c3]179 *out << "\t" << getFixedIon();
[bce72c]180 if (getAtomicVelocity().Norm() > MYEPSILON)
181 *out << "\t" << scientific << setprecision(6) << getAtomicVelocity()[0] << "\t" << getAtomicVelocity()[1] << "\t" << getAtomicVelocity()[2] << "\t";
[e9f8f9]182 if (comment != NULL)
183 *out << " # " << comment << endl;
[437922]184 else
185 *out << " # molecule nr " << nr << endl;
[14de469]186 return true;
187 } else
188 return false;
189};
190
[6625c3]191/** Output of a single atom as one line in xyz file.
[14de469]192 * \param *out stream to output to
[e41951]193 * \return true - \a *out present, false - \a *out is NULL
[14de469]194 */
195bool atom::OutputXYZLine(ofstream *out) const
196{
197 if (out != NULL) {
[b5c53d]198 *out << getType()->getSymbol() << "\t" << at(0) << "\t" << at(1) << "\t" << at(2) << "\t" << endl;
[14de469]199 return true;
200 } else
201 return false;
202};
203
[6625c3]204/** Output of a single atom as one line in xyz file.
[fcd7b6]205 * \param *out stream to output to
[e41951]206 * \param *ElementNo array with ion type number in the config file this atom's element shall have
207 * \param *AtomNo array with atom number in the config file this atom shall have, is increase by one automatically
208 * \param step Trajectory time step to output
209 * \return true - \a *out present, false - \a *out is NULL
[fcd7b6]210 */
[882a8a]211bool atom::OutputTrajectory(ofstream * const out, const enumeration<const element*> &elementLookup, int *AtomNo, const int step) const
[fcd7b6]212{
[83f176]213 AtomNo[getType()->getAtomicNumber()]++;
[882a8a]214 if (out != NULL) {
215 const element *elemental = getType();
216 ASSERT(elementLookup.there.find(elemental)!=elementLookup.there.end(),"Type of this atom was not in the formula upon enumeration");
217 *out << "Ion_Type" << elementLookup.there.find(elemental)->second << "_" << AtomNo[getType()->getAtomicNumber()] << "\t" << fixed << setprecision(9) << showpoint;
[056e70]218 *out << getPositionAtStep(step)[0] << "\t" << getPositionAtStep(step)[1] << "\t" << getPositionAtStep(step)[2];
[6625c3]219 *out << "\t" << (int)(getFixedIon());
[056e70]220 if (getAtomicVelocityAtStep(step).Norm() > MYEPSILON)
221 *out << "\t" << scientific << setprecision(6) << getAtomicVelocityAtStep(step)[0] << "\t" << getAtomicVelocityAtStep(step)[1] << "\t" << getAtomicVelocityAtStep(step)[2] << "\t";
222 if (getAtomicForceAtStep(step).Norm() > MYEPSILON)
223 *out << "\t" << scientific << setprecision(6) << getAtomicForceAtStep(step)[0] << "\t" << getAtomicForceAtStep(step)[1] << "\t" << getAtomicForceAtStep(step)[2] << "\t";
[fcd7b6]224 *out << "\t# Number in molecule " << nr << endl;
225 return true;
226 } else
227 return false;
228};
229
[681a8a]230/** Output of a single atom as one lin in xyz file.
231 * \param *out stream to output to
[e41951]232 * \param step Trajectory time step to output
233 * \return true - \a *out present, false - \a *out is NULL
[681a8a]234 */
[e138de]235bool atom::OutputTrajectoryXYZ(ofstream * const out, const int step) const
[681a8a]236{
237 if (out != NULL) {
[b5c53d]238 *out << getType()->getSymbol() << "\t";
[056e70]239 *out << getPositionAtStep(step)[0] << "\t";
240 *out << getPositionAtStep(step)[1] << "\t";
241 *out << getPositionAtStep(step)[2] << endl;
[681a8a]242 return true;
243 } else
244 return false;
245};
246
[4455f4]247/** Outputs the MPQC configuration line for this atom.
248 * \param *out output stream
249 * \param *center center of molecule subtracted from position
250 * \param *AtomNo pointer to atom counter that is increased by one
251 */
[0dc86e2]252void atom::OutputMPQCLine(ostream * const out, const Vector *center) const
[4455f4]253{
[d74077]254 Vector recentered(getPosition());
255 recentered -= *center;
[b5c53d]256 *out << "\t\t" << getType()->getSymbol() << " [ " << recentered[0] << "\t" << recentered[1] << "\t" << recentered[2] << " ]" << endl;
[4455f4]257};
258
259/** Compares the indices of \a this atom with a given \a ptr.
260 * \param ptr atom to compare index against
261 * \return true - this one's is smaller, false - not
262 */
[b453f9]263bool atom::Compare(const atom &ptr) const
[4455f4]264{
265 if (nr < ptr.nr)
266 return true;
267 else
268 return false;
269};
270
271/** Returns squared distance to a given vector.
272 * \param origin vector to calculate distance to
273 * \return distance squared
274 */
[b453f9]275double atom::DistanceSquaredToVector(const Vector &origin) const
[4455f4]276{
[d74077]277 return DistanceSquared(origin);
[4455f4]278};
279
280/** Returns distance to a given vector.
281 * \param origin vector to calculate distance to
282 * \return distance
283 */
[b453f9]284double atom::DistanceToVector(const Vector &origin) const
[4455f4]285{
[d74077]286 return distance(origin);
[4455f4]287};
288
289/** Initialises the component number array.
290 * Size is set to atom::ListOfBonds.size()+1 (last is th encode end by -1)
291 */
292void atom::InitComponentNr()
293{
294 if (ComponentNr != NULL)
[920c70]295 delete[](ComponentNr);
296 ComponentNr = new int[ListOfBonds.size()+1];
[4455f4]297 for (int i=ListOfBonds.size()+1;i--;)
298 ComponentNr[i] = -1;
[14b65e]299};
300
301void atom::resetGraphNr(){
302 GraphNr=-1;
303}
[4455f4]304
[d74077]305std::ostream & atom::operator << (std::ostream &ost) const
306{
307 ParticleInfo::operator<<(ost);
308 ost << "," << getPosition();
309 return ost;
310}
311
312std::ostream & operator << (std::ostream &ost, const atom &a)
313{
314 a.ParticleInfo::operator<<(ost);
315 ost << "," << a.getPosition();
316 return ost;
317}
[4455f4]318
319bool operator < (atom &a, atom &b)
320{
321 return a.Compare(b);
322};
323
[46d958]324World *atom::getWorld(){
325 return world;
326}
327
328void atom::setWorld(World* _world){
329 world = _world;
330}
331
[88d586]332bool atom::changeId(atomId_t newId){
333 // first we move ourselves in the world
334 // the world lets us know if that succeeded
335 if(world->changeAtomId(id,newId,this)){
336 id = newId;
337 return true;
338 }
339 else{
340 return false;
341 }
342}
343
344void atom::setId(atomId_t _id) {
[46d958]345 id=_id;
346}
347
[ad2b411]348atomId_t atom::getId() const {
[46d958]349 return id;
350}
351
[fa7989]352/** Makes the atom be contained in the new molecule \a *_mol.
353 * Uses atom::removeFromMolecule() to delist from old molecule.
354 * \param *_mol pointer to new molecule
355 */
[6cfa36]356void atom::setMolecule(molecule *_mol){
357 // take this atom from the old molecule
358 removeFromMolecule();
359 mol = _mol;
360 if(!mol->containsAtom(this)){
[dddbfe]361 mol->insert(this);
[6cfa36]362 }
363}
364
[fa7989]365/** Returns pointer to the molecule which atom belongs to.
366 * \return containing molecule
367 */
[e41c48]368molecule* atom::getMolecule() const {
[c084cc]369 return mol;
370}
371
[fa7989]372/** Erases the atom in atom::mol's list of atoms and sets it to zero.
373 */
[6cfa36]374void atom::removeFromMolecule(){
375 if(mol){
376 if(mol->containsAtom(this)){
377 mol->erase(this);
378 }
379 mol=0;
380 }
[1f8337]381}
382
[e8a21f]383int atom::getNr() const{
384 return nr;
385}
[6cfa36]386
[88d586]387atom* NewAtom(atomId_t _id){
388 atom * res =new atom();
389 res->setId(_id);
390 return res;
[46d958]391}
392
[88d586]393void DeleteAtom(atom* atom){
[46d958]394 delete atom;
[e5f64de]395}
396
397bool compareAtomElements(atom* atom1,atom* atom2){
398 return atom1->getType()->getNumber() < atom2->getType()->getNumber();
[46d958]399}
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