source: src/Box.cpp@ e58fad1

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Last change on this file since e58fad1 was 3bf9e2, checked in by Tillmann Crueger <crueger@…>, 14 years ago

Replaced check for Symmetric matrix in Box class with check for invertible matrix

  • Property mode set to 100644
File size: 3.1 KB
Line 
1/*
2 * Box.cpp
3 *
4 * Created on: Jun 30, 2010
5 * Author: crueger
6 */
7
8//#include "Helpers/MemDebug.hpp"
9
10#include "Box.hpp"
11
12#include <cmath>
13
14#include "Matrix.hpp"
15#include "vector.hpp"
16
17#include "Helpers/Assert.hpp"
18
19Box::Box()
20{
21 M= new Matrix();
22 M->one();
23 Minv = new Matrix();
24 Minv->one();
25}
26
27Box::Box(const Box& src){
28 M=new Matrix(*src.M);
29 Minv = new Matrix(*src.Minv);
30}
31
32Box::~Box()
33{
34 delete M;
35 delete Minv;
36}
37
38const Matrix &Box::getM() const{
39 return *M;
40}
41const Matrix &Box::getMinv() const{
42 return *Minv;
43}
44
45void Box::setM(Matrix _M){
46 ASSERT(_M.determinant()!=0,"Matrix in Box construction was not invertible");
47 *M =_M;
48 *Minv = M->invert();
49}
50
51Vector Box::translateIn(const Vector &point) const{
52 return (*M) * point;
53}
54
55Vector Box::translateOut(const Vector &point) const{
56 return (*Minv) * point;
57}
58
59Vector Box::WrapPeriodically(const Vector &point) const{
60 Vector helper = translateOut(point);
61 for(int i=NDIM;i--;){
62 double intpart,fracpart;
63 fracpart = modf(helper.at(i),&intpart);
64 if(fracpart<0.)
65 fracpart+=1.;
66 helper.at(i)=fracpart;
67 }
68 return translateIn(helper);
69}
70
71VECTORSET(std::list) Box::explode(const Vector &point,int n) const{
72 VECTORSET(std::list) res;
73
74 // translate the Vector into each of the 27 neighbourhoods
75
76 // first create all translation Vectors
77 // there are (n*2+1)^3 such vectors
78 int max_dim = (n*2+1);
79 int max_dim2 = max_dim*max_dim;
80 int max = max_dim2*max_dim;
81 // only one loop to avoid unneccessary jumps
82 for(int i = 0;i<max;++i){
83 // get all coordinates for this iteration
84 int n1 = (i%max_dim)-n;
85 int n2 = ((i/max_dim)%max_dim)-n;
86 int n3 = ((i/max_dim2))-n;
87 Vector translation = translateIn(Vector(n1,n2,n3));
88 res.push_back(translation);
89 }
90 // translate all the translation vector by the offset defined by point
91 res.translate(point);
92 return res;
93}
94
95VECTORSET(std::list) Box::explode(const Vector &point) const{
96 VECTORSET(std::list) res;
97
98 // translate the Vector into each of the 27 neighbourhoods
99
100 // first create all 27 translation Vectors
101 // these loops depend on fixed parameters and can easily be expanded
102 // by the compiler to allow code without jumps
103 for(int n1 = -1;n1<=1;++n1){
104 for(int n2 = -1;n2<=1;++n2){
105 for(int n3 = -1;n3<=1;++n3){
106 // get all coordinates for this iteration
107 Vector translation = translateIn(Vector(n1,n2,n3));
108 res.push_back(translation);
109 }
110 }
111 }
112 // translate all the translation vector by the offset defined by point
113 res.translate(point);
114 return res;
115}
116
117double Box::periodicDistanceSquared(const Vector &point1,const Vector &point2) const{
118 VECTORSET(std::list) expansion = explode(point1);
119 double res = expansion.minDistSquared(point2);
120 return res;
121}
122
123double Box::periodicDistance(const Vector &point1,const Vector &point2) const{
124 double res;
125 res = sqrt(periodicDistanceSquared(point1,point2));
126 return res;
127}
128
129Box &Box::operator=(const Box &src){
130 if(&src!=this){
131 delete M;
132 delete Minv;
133 M = new Matrix(*src.M);
134 Minv = new Matrix(*src.Minv);
135 }
136 return *this;
137}
138
139Box &Box::operator=(const Matrix &mat){
140 setM(mat);
141 return *this;
142}
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