source: molecuilder/src/atom.cpp@ 8ffe32

Last change on this file since 8ffe32 was 8ffe32, checked in by Frederik Heber <heber@…>, 16 years ago

More functions of molecule now use templated iterators.

  • Property mode set to 100755
File size: 5.1 KB
Line 
1/** \file atom.cpp
2 *
3 * Function implementations for the class atom.
4 *
5 */
6
7#include "atom.hpp"
8#include "memoryallocator.hpp"
9
10/************************************* Functions for class atom *************************************/
11
12/** Constructor of class atom.
13 */
14atom::atom()
15{
16 father = this; // generally, father is itself
17 previous = NULL;
18 next = NULL;
19 Ancestor = NULL;
20 type = NULL;
21 sort = NULL;
22 FixedIon = 0;
23 GraphNr = -1;
24 ComponentNr = NULL;
25 IsCyclic = false;
26 SeparationVertex = false;
27 LowpointNr = -1;
28 AdaptiveOrder = 0;
29 MaxOrder = false;
30 // set LCNode::Vector to our Vector
31 node = &x;
32};
33
34/** Constructor of class atom.
35 */
36atom::atom(atom *pointer)
37{
38 Name = NULL;
39 previous = NULL;
40 next = NULL;
41 father = pointer; // generally, father is itself
42 Ancestor = NULL;
43 GraphNr = -1;
44 ComponentNr = NULL;
45 IsCyclic = false;
46 SeparationVertex = false;
47 LowpointNr = -1;
48 AdaptiveOrder = 0;
49 MaxOrder = false;
50 type = pointer->type; // copy element of atom
51 x.CopyVector(&pointer->x); // copy coordination
52 v.CopyVector(&pointer->v); // copy velocity
53 FixedIon = pointer->FixedIon;
54 nr = -1;
55 sort = &nr;
56 node = &x;
57}
58
59
60/** Destructor of class atom.
61 */
62atom::~atom()
63{
64 Free<int>(&ComponentNr, "atom::~atom: *ComponentNr");
65 Free<char>(&Name, "atom::~atom: *Name");
66};
67
68
69/** Climbs up the father list until NULL, last is returned.
70 * \return true father, i.e. whose father points to itself, NULL if it could not be found or has none (added hydrogen)
71 */
72atom *atom::GetTrueFather()
73{
74 atom *walker = this;
75 do {
76 if (walker == walker->father) // top most father is the one that points on itself
77 break;
78 walker = walker->father;
79 } while (walker != NULL);
80 return walker;
81};
82
83/** Sets father to itself or its father in case of copying a molecule.
84 */
85void atom::CorrectFather()
86{
87 if (father->father == father) // same atom in copy's father points to itself
88 father = this; // set father to itself (copy of a whole molecule)
89 else
90 father = father->father; // set father to original's father
91
92};
93
94/** Check whether father is equal to given atom.
95 * \param *ptr atom to compare father to
96 * \param **res return value (only set if atom::father is equal to \a *ptr)
97 */
98void atom::EqualsFather ( atom *ptr, atom **res )
99{
100 if ( ptr == father )
101 *res = this;
102};
103
104/** Checks whether atom is within the given box.
105 * \param offset offset to box origin
106 * \param *parallelepiped box matrix
107 * \return true - is inside, false - is not
108 */
109bool atom::IsInParallelepiped(Vector offset, double *parallelepiped)
110{
111 return (node->IsInParallelepiped(offset, parallelepiped));
112};
113
114/** Output of a single atom.
115 * \param ElementNo cardinal number of the element
116 * \param AtomNo cardinal number among these atoms of the same element
117 * \param *out stream to output to
118 * \param *comment commentary after '#' sign
119 */
120bool atom::Output(int ElementNo, int AtomNo, ofstream *out, const char *comment) const
121{
122 if (out != NULL) {
123 *out << "Ion_Type" << ElementNo << "_" << AtomNo << "\t" << fixed << setprecision(9) << showpoint;
124 *out << x.x[0] << "\t" << x.x[1] << "\t" << x.x[2];
125 *out << "\t" << FixedIon;
126 if (v.Norm() > MYEPSILON)
127 *out << "\t" << scientific << setprecision(6) << v.x[0] << "\t" << v.x[1] << "\t" << v.x[2] << "\t";
128 if (comment != NULL)
129 *out << " # " << comment << endl;
130 else
131 *out << " # molecule nr " << nr << endl;
132 return true;
133 } else
134 return false;
135};
136bool atom::Output(int *ElementNo, int *AtomNo, ofstream *out, const char *comment)
137{
138 AtomNo[type->Z]++; // increment number
139 if (out != NULL) {
140 *out << "Ion_Type" << ElementNo[type->Z] << "_" << AtomNo[type->Z] << "\t" << fixed << setprecision(9) << showpoint;
141 *out << x.x[0] << "\t" << x.x[1] << "\t" << x.x[2];
142 *out << "\t" << FixedIon;
143 if (v.Norm() > MYEPSILON)
144 *out << "\t" << scientific << setprecision(6) << v.x[0] << "\t" << v.x[1] << "\t" << v.x[2] << "\t";
145 if (comment != NULL)
146 *out << " # " << comment << endl;
147 else
148 *out << " # molecule nr " << nr << endl;
149 return true;
150 } else
151 return false;
152};
153
154/** Output of a single atom as one lin in xyz file.
155 * \param *out stream to output to
156 */
157bool atom::OutputXYZLine(ofstream *out) const
158{
159 if (out != NULL) {
160 *out << type->symbol << "\t" << x.x[0] << "\t" << x.x[1] << "\t" << x.x[2] << "\t" << endl;
161 return true;
162 } else
163 return false;
164};
165
166ostream & operator << (ostream &ost, const atom &a)
167{
168 ost << "[" << a.Name << "|" << &a << "]";
169 return ost;
170};
171
172ostream & atom::operator << (ostream &ost)
173{
174 ost << "[" << Name << "|" << this << "]";
175 return ost;
176};
177
178/** Compares the indices of \a this atom with a given \a ptr.
179 * \param ptr atom to compare index against
180 * \return true - this one's is smaller, false - not
181 */
182bool atom::Compare(const atom &ptr)
183{
184 if (nr < ptr.nr)
185 return true;
186 else
187 return false;
188};
189
190bool operator < (atom &a, atom &b)
191{
192 return a.Compare(b);
193};
194
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