source: src/atom.cpp@ d466f0

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Last change on this file since d466f0 was 215df0, checked in by Tillmann Crueger <crueger@…>, 15 years ago

Simplified some methods.

  • Property mode set to 100644
File size: 9.4 KB
Line 
1/** \file atom.cpp
2 *
3 * Function implementations for the class atom.
4 *
5 */
6
7#include "atom.hpp"
8#include "bond.hpp"
9#include "config.hpp"
10#include "element.hpp"
11#include "lists.hpp"
12#include "memoryallocator.hpp"
13#include "parser.hpp"
14#include "vector.hpp"
15#include "World.hpp"
16
17/************************************* Functions for class atom *************************************/
18
19
20/** Constructor of class atom.
21 */
22atom::atom() :
23 previous(NULL), next(NULL), father(this), sort(&nr)
24{
25 node = &x; // TesselPoint::x can only be referenced from here
26};
27
28/** Constructor of class atom.
29 */
30atom::atom(atom *pointer) :
31 ParticleInfo(pointer),
32 previous(NULL), next(NULL), father(pointer), sort(&nr)
33{
34 type = pointer->type; // copy element of atom
35 x = pointer->x; // copy coordination
36 v = pointer->v; // copy velocity
37 FixedIon = pointer->FixedIon;
38 node = &x;
39};
40
41atom *atom::clone(){
42 atom *res = new atom(this);
43 res->previous=0;
44 res->next=0;
45 res->father = this;
46 res->sort = &res->nr;
47 res->type = type;
48 res->x = this->x;
49 res->v = this->v;
50 res->FixedIon = FixedIon;
51 res->node = &x;
52 World::getInstance().registerAtom(res);
53 return res;
54}
55
56
57/** Destructor of class atom.
58 */
59atom::~atom()
60{
61 unlink(this);
62};
63
64
65/** Climbs up the father list until NULL, last is returned.
66 * \return true father, i.e. whose father points to itself, NULL if it could not be found or has none (added hydrogen)
67 */
68atom *atom::GetTrueFather()
69{
70 if(father == this){ // top most father is the one that points on itself
71 return this;
72 }
73 else if(!father) {
74 return 0;
75 }
76 else {
77 return father->GetTrueFather();
78 }
79};
80
81/** Sets father to itself or its father in case of copying a molecule.
82 */
83void atom::CorrectFather()
84{
85 if (father->father == father) // same atom in copy's father points to itself
86 father = this; // set father to itself (copy of a whole molecule)
87 else
88 father = father->father; // set father to original's father
89
90};
91
92/** Check whether father is equal to given atom.
93 * \param *ptr atom to compare father to
94 * \param **res return value (only set if atom::father is equal to \a *ptr)
95 */
96void atom::EqualsFather ( const atom *ptr, const atom **res ) const
97{
98 if ( ptr == father )
99 *res = this;
100};
101
102/** Checks whether atom is within the given box.
103 * \param offset offset to box origin
104 * \param *parallelepiped box matrix
105 * \return true - is inside, false - is not
106 */
107bool atom::IsInParallelepiped(const Vector offset, const double *parallelepiped) const
108{
109 return (node->IsInParallelepiped(offset, parallelepiped));
110};
111
112/** Counts the number of bonds weighted by bond::BondDegree.
113 * \param bonds times bond::BondDegree
114 */
115int BondedParticle::CountBonds() const
116{
117 int NoBonds = 0;
118 for (BondList::const_iterator Runner = ListOfBonds.begin(); Runner != ListOfBonds.end(); (++Runner))
119 NoBonds += (*Runner)->BondDegree;
120 return NoBonds;
121};
122
123/** Output of a single atom with given numbering.
124 * \param ElementNo cardinal number of the element
125 * \param AtomNo cardinal number among these atoms of the same element
126 * \param *out stream to output to
127 * \param *comment commentary after '#' sign
128 * \return true - \a *out present, false - \a *out is NULL
129 */
130bool atom::OutputIndexed(ofstream * const out, const int ElementNo, const int AtomNo, const char *comment) const
131{
132 if (out != NULL) {
133 *out << "Ion_Type" << ElementNo << "_" << AtomNo << "\t" << fixed << setprecision(9) << showpoint;
134 *out << x[0] << "\t" << x[1] << "\t" << x[2];
135 *out << "\t" << FixedIon;
136 if (v.Norm() > MYEPSILON)
137 *out << "\t" << scientific << setprecision(6) << v[0] << "\t" << v[1] << "\t" << v[2] << "\t";
138 if (comment != NULL)
139 *out << " # " << comment << endl;
140 else
141 *out << " # molecule nr " << nr << endl;
142 return true;
143 } else
144 return false;
145};
146
147/** Output of a single atom with numbering from array according to atom::type.
148 * \param *ElementNo cardinal number of the element
149 * \param *AtomNo cardinal number among these atoms of the same element
150 * \param *out stream to output to
151 * \param *comment commentary after '#' sign
152 * \return true - \a *out present, false - \a *out is NULL
153 */
154bool atom::OutputArrayIndexed(ofstream * const out, const int *ElementNo, int *AtomNo, const char *comment) const
155{
156 AtomNo[type->Z]++; // increment number
157 if (out != NULL) {
158 *out << "Ion_Type" << ElementNo[type->Z] << "_" << AtomNo[type->Z] << "\t" << fixed << setprecision(9) << showpoint;
159 *out << x[0] << "\t" << x[1] << "\t" << x[2];
160 *out << "\t" << FixedIon;
161 if (v.Norm() > MYEPSILON)
162 *out << "\t" << scientific << setprecision(6) << v[0] << "\t" << v[1] << "\t" << v[2] << "\t";
163 if (comment != NULL)
164 *out << " # " << comment << endl;
165 else
166 *out << " # molecule nr " << nr << endl;
167 return true;
168 } else
169 return false;
170};
171
172/** Output of a single atom as one lin in xyz file.
173 * \param *out stream to output to
174 * \return true - \a *out present, false - \a *out is NULL
175 */
176bool atom::OutputXYZLine(ofstream *out) const
177{
178 if (out != NULL) {
179 *out << type->symbol << "\t" << x[0] << "\t" << x[1] << "\t" << x[2] << "\t" << endl;
180 return true;
181 } else
182 return false;
183};
184
185/** Output of a single atom as one lin in xyz file.
186 * \param *out stream to output to
187 * \param *ElementNo array with ion type number in the config file this atom's element shall have
188 * \param *AtomNo array with atom number in the config file this atom shall have, is increase by one automatically
189 * \param step Trajectory time step to output
190 * \return true - \a *out present, false - \a *out is NULL
191 */
192bool atom::OutputTrajectory(ofstream * const out, const int *ElementNo, int *AtomNo, const int step) const
193{
194 AtomNo[type->Z]++;
195 if (out != NULL) {
196 *out << "Ion_Type" << ElementNo[type->Z] << "_" << AtomNo[type->Z] << "\t" << fixed << setprecision(9) << showpoint;
197 *out << Trajectory.R.at(step)[0] << "\t" << Trajectory.R.at(step)[1] << "\t" << Trajectory.R.at(step)[2];
198 *out << "\t" << FixedIon;
199 if (Trajectory.U.at(step).Norm() > MYEPSILON)
200 *out << "\t" << scientific << setprecision(6) << Trajectory.U.at(step)[0] << "\t" << Trajectory.U.at(step)[1] << "\t" << Trajectory.U.at(step)[2] << "\t";
201 if (Trajectory.F.at(step).Norm() > MYEPSILON)
202 *out << "\t" << scientific << setprecision(6) << Trajectory.F.at(step)[0] << "\t" << Trajectory.F.at(step)[1] << "\t" << Trajectory.F.at(step)[2] << "\t";
203 *out << "\t# Number in molecule " << nr << endl;
204 return true;
205 } else
206 return false;
207};
208
209/** Output of a single atom as one lin in xyz file.
210 * \param *out stream to output to
211 * \param step Trajectory time step to output
212 * \return true - \a *out present, false - \a *out is NULL
213 */
214bool atom::OutputTrajectoryXYZ(ofstream * const out, const int step) const
215{
216 if (out != NULL) {
217 *out << type->symbol << "\t";
218 *out << Trajectory.R.at(step)[0] << "\t";
219 *out << Trajectory.R.at(step)[1] << "\t";
220 *out << Trajectory.R.at(step)[2] << endl;
221 return true;
222 } else
223 return false;
224};
225
226/** Outputs the MPQC configuration line for this atom.
227 * \param *out output stream
228 * \param *center center of molecule subtracted from position
229 * \param *AtomNo pointer to atom counter that is increased by one
230 */
231void atom::OutputMPQCLine(ofstream * const out, const Vector *center, int *AtomNo = NULL) const
232{
233 *out << "\t\t" << type->symbol << " [ " << x[0]-center->at(0) << "\t" << x[1]-center->at(1) << "\t" << x[2]-center->at(2) << " ]" << endl;
234 if (AtomNo != NULL)
235 *AtomNo++;
236};
237
238/** Compares the indices of \a this atom with a given \a ptr.
239 * \param ptr atom to compare index against
240 * \return true - this one's is smaller, false - not
241 */
242bool atom::Compare(const atom &ptr) const
243{
244 if (nr < ptr.nr)
245 return true;
246 else
247 return false;
248};
249
250/** Returns squared distance to a given vector.
251 * \param origin vector to calculate distance to
252 * \return distance squared
253 */
254double atom::DistanceSquaredToVector(const Vector &origin) const
255{
256 return origin.DistanceSquared(x);
257};
258
259/** Returns distance to a given vector.
260 * \param origin vector to calculate distance to
261 * \return distance
262 */
263double atom::DistanceToVector(const Vector &origin) const
264{
265 return origin.distance(x);
266};
267
268/** Initialises the component number array.
269 * Size is set to atom::ListOfBonds.size()+1 (last is th encode end by -1)
270 */
271void atom::InitComponentNr()
272{
273 if (ComponentNr != NULL)
274 Free(&ComponentNr);
275 ComponentNr = Malloc<int>(ListOfBonds.size()+1, "atom::InitComponentNumbers: *ComponentNr");
276 for (int i=ListOfBonds.size()+1;i--;)
277 ComponentNr[i] = -1;
278};
279
280
281bool operator < (atom &a, atom &b)
282{
283 return a.Compare(b);
284};
285
286World *atom::getWorld(){
287 return world;
288}
289
290void atom::setWorld(World* _world){
291 world = _world;
292}
293
294bool atom::changeId(atomId_t newId){
295 // first we move ourselves in the world
296 // the world lets us know if that succeeded
297 if(world->changeAtomId(id,newId,this)){
298 id = newId;
299 return true;
300 }
301 else{
302 return false;
303 }
304}
305
306void atom::setId(atomId_t _id) {
307 id=_id;
308}
309
310atomId_t atom::getId() {
311 return id;
312}
313
314atom* NewAtom(atomId_t _id){
315 atom * res =new atom();
316 res->setId(_id);
317 return res;
318}
319
320void DeleteAtom(atom* atom){
321 delete atom;
322}
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