| [bcf653] | 1 | /*
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 | 2 |  * Project: MoleCuilder
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 | 3 |  * Description: creates and alters molecular systems
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 | 4 |  * Copyright (C)  2010 University of Bonn. All rights reserved.
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 | 5 |  * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
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 | 6 |  */
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 | 7 | 
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| [83c09a] | 8 | /*
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 | 9 |  * Box.cpp
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 | 10 |  *
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 | 11 |  *  Created on: Jun 30, 2010
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 | 12 |  *      Author: crueger
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 | 13 |  */
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 | 14 | 
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| [bf3817] | 15 | // include config.h
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 | 16 | #ifdef HAVE_CONFIG_H
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 | 17 | #include <config.h>
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 | 18 | #endif
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 | 19 | 
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| [ad011c] | 20 | #include "CodePatterns/MemDebug.hpp"
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| [6e00dd] | 21 | 
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| [83c09a] | 22 | #include "Box.hpp"
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 | 23 | 
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| [f429d7] | 24 | #include <cmath>
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| [16648f] | 25 | #include <iostream>
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| [d2938f] | 26 | #include <cstdlib>
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| [f429d7] | 27 | 
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| [06aedc] | 28 | #include "CodePatterns/Assert.hpp"
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 | 29 | #include "CodePatterns/Log.hpp"
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 | 30 | #include "CodePatterns/Verbose.hpp"
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 | 31 | #include "Helpers/defs.hpp"
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| [cca9ef] | 32 | #include "LinearAlgebra/RealSpaceMatrix.hpp"
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| [57f243] | 33 | #include "LinearAlgebra/Vector.hpp"
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 | 34 | #include "LinearAlgebra/Plane.hpp"
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| [c538d1] | 35 | #include "Shapes/BaseShapes.hpp"
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 | 36 | #include "Shapes/ShapeOps.hpp"
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| [83c09a] | 37 | 
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| [6e00dd] | 38 | 
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| [16648f] | 39 | using namespace std;
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 | 40 | 
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| [025048] | 41 | VECTORSET(std::list) Box::internal_list;
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 | 42 | 
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| [528b3e] | 43 | Box::Box() :
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 | 44 |     M(new RealSpaceMatrix()),
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 | 45 |     Minv(new RealSpaceMatrix())
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| [83c09a] | 46 | {
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| [9eb7580] | 47 |   M->setIdentity();
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 | 48 |   Minv->setIdentity();
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| [77374e] | 49 |   conditions.resize(3);
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 | 50 |   conditions[0] = conditions[1] = conditions[2] = Wrap;
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| [83c09a] | 51 | }
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 | 52 | 
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| [528b3e] | 53 | Box::Box(const Box& src) :
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 | 54 |   conditions(src.conditions),
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 | 55 |   M(new RealSpaceMatrix(*src.M)),
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 | 56 |   Minv(new RealSpaceMatrix(*src.Minv))
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 | 57 | {}
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 | 58 | 
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 | 59 | Box::Box(RealSpaceMatrix _M) :
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 | 60 |     M(new RealSpaceMatrix(_M)),
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 | 61 |     Minv(new RealSpaceMatrix())
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 | 62 | {
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 | 63 |   ASSERT(M->determinant()!=0,"Matrix in Box construction was not invertible");
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 | 64 |   *Minv = M->invert();
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| [7579a4b] | 65 | }
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 | 66 | 
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| [83c09a] | 67 | Box::~Box()
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 | 68 | {
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 | 69 |   delete M;
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 | 70 |   delete Minv;
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 | 71 | }
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 | 72 | 
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| [cca9ef] | 73 | const RealSpaceMatrix &Box::getM() const{
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| [83c09a] | 74 |   return *M;
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 | 75 | }
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| [cca9ef] | 76 | const RealSpaceMatrix &Box::getMinv() const{
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| [83c09a] | 77 |   return *Minv;
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 | 78 | }
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 | 79 | 
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| [cca9ef] | 80 | void Box::setM(RealSpaceMatrix _M){
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| [3bf9e2] | 81 |   ASSERT(_M.determinant()!=0,"Matrix in Box construction was not invertible");
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| [83c09a] | 82 |   *M    =_M;
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 | 83 |   *Minv = M->invert();
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 | 84 | }
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| [7579a4b] | 85 | 
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| [014475] | 86 | Vector Box::translateIn(const Vector &point) const{
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| [3dcb1f] | 87 |   return (*M) * point;
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 | 88 | }
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 | 89 | 
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| [014475] | 90 | Vector Box::translateOut(const Vector &point) const{
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| [3dcb1f] | 91 |   return (*Minv) * point;
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 | 92 | }
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 | 93 | 
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| [014475] | 94 | Vector Box::WrapPeriodically(const Vector &point) const{
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| [f429d7] | 95 |   Vector helper = translateOut(point);
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 | 96 |   for(int i=NDIM;i--;){
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| [c72562] | 97 | 
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 | 98 |     switch(conditions[i]){
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 | 99 |     case Wrap:
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 | 100 |       helper.at(i)=fmod(helper.at(i),1);
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| [d2938f] | 101 |       helper.at(i)+=(helper.at(i)>=0)?0:1;
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| [c72562] | 102 |       break;
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 | 103 |     case Bounce:
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 | 104 |       {
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 | 105 |         // there probably is a better way to handle this...
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 | 106 |         // all the fabs and fmod modf probably makes it very slow
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 | 107 |         double intpart,fracpart;
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 | 108 |         fracpart = modf(fabs(helper.at(i)),&intpart);
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 | 109 |         helper.at(i) = fabs(fracpart-fmod(intpart,2));
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 | 110 |       }
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 | 111 |       break;
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 | 112 |     case Ignore:
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 | 113 |       break;
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 | 114 |     default:
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 | 115 |       ASSERT(0,"No default case for this");
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 | 116 |     }
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 | 117 | 
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| [f429d7] | 118 |   }
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 | 119 |   return translateIn(helper);
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 | 120 | }
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 | 121 | 
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| [0ff6b5] | 122 | bool Box::isInside(const Vector &point) const
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 | 123 | {
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 | 124 |   bool result = true;
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| [29ac78] | 125 |   Vector tester = translateOut(point);
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| [0ff6b5] | 126 | 
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 | 127 |   for(int i=0;i<NDIM;i++)
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| [f3be87] | 128 |     result = result &&
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 | 129 |               ((conditions[i] == Ignore) ||
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 | 130 |                ((tester[i] >= -MYEPSILON) &&
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 | 131 |                ((tester[i] - 1.) < MYEPSILON)));
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| [0ff6b5] | 132 | 
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 | 133 |   return result;
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 | 134 | }
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 | 135 | 
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 | 136 | 
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| [a630fd] | 137 | VECTORSET(std::list) Box::explode(const Vector &point,int n) const{
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| [16648f] | 138 |   ASSERT(isInside(point),"Exploded point not inside Box");
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| [025048] | 139 |   internal_explode(point, n);
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 | 140 |   VECTORSET(std::list) res(internal_list);
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 | 141 |   return res;
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 | 142 | }
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 | 143 | 
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 | 144 | void Box::internal_explode(const Vector &point,int n) const{
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 | 145 |   internal_list.clear();
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| [89e820] | 146 | 
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| [16648f] | 147 |   Vector translater = translateOut(point);
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 | 148 |   Vector mask; // contains the ignored coordinates
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 | 149 | 
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 | 150 |   // count the number of coordinates we need to do
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 | 151 |   int dims = 0; // number of dimensions that are not ignored
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 | 152 |   vector<int> coords;
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 | 153 |   vector<int> index;
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 | 154 |   for(int i=0;i<NDIM;++i){
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 | 155 |     if(conditions[i]==Ignore){
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 | 156 |       mask[i]=translater[i];
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 | 157 |       continue;
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 | 158 |     }
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 | 159 |     coords.push_back(i);
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 | 160 |     index.push_back(-n);
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 | 161 |     dims++;
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 | 162 |   } // there are max vectors in total we need to create
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 | 163 | 
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 | 164 |   if(!dims){
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 | 165 |     // all boundaries are ignored
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| [025048] | 166 |     internal_list.push_back(point);
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 | 167 |     return;
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| [89e820] | 168 |   }
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 | 169 | 
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| [d2938f] | 170 |   bool done = false;
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 | 171 |   while(!done){
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| [16648f] | 172 |     // create this vector
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 | 173 |     Vector helper;
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 | 174 |     for(int i=0;i<dims;++i){
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 | 175 |       switch(conditions[coords[i]]){
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 | 176 |         case Wrap:
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 | 177 |           helper[coords[i]] = index[i]+translater[coords[i]];
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 | 178 |           break;
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 | 179 |         case Bounce:
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 | 180 |           {
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 | 181 |             // Bouncing the coordinate x produces the series:
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 | 182 |             // 0 -> x
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 | 183 |             // 1 -> 2-x
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 | 184 |             // 2 -> 2+x
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 | 185 |             // 3 -> 4-x
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 | 186 |             // 4 -> 4+x
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 | 187 |             // the first number is the next bigger even number (n+n%2)
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 | 188 |             // the next number is the value with alternating sign (x-2*(n%2)*x)
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 | 189 |             // the negative numbers produce the same sequence reversed and shifted
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| [d2938f] | 190 |             int n = abs(index[i]) + ((index[i]<0)?-1:0);
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| [16648f] | 191 |             int sign = (index[i]<0)?-1:+1;
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 | 192 |             int even = n%2;
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 | 193 |             helper[coords[i]]=n+even+translater[coords[i]]-2*even*translater[coords[i]];
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 | 194 |             helper[coords[i]]*=sign;
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 | 195 |           }
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 | 196 |           break;
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 | 197 |         case Ignore:
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 | 198 |           ASSERT(0,"Ignored coordinate handled in generation loop");
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| [025048] | 199 |           break;
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| [16648f] | 200 |         default:
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 | 201 |           ASSERT(0,"No default case for this switch-case");
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| [025048] | 202 |           break;
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| [7ac4af] | 203 |       }
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 | 204 | 
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| [16648f] | 205 |     }
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 | 206 |     // add back all ignored coordinates (not handled in above loop)
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 | 207 |     helper+=mask;
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| [025048] | 208 |     internal_list.push_back(translateIn(helper));
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| [16648f] | 209 |     // set the new indexes
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| [d2938f] | 210 |     int pos=0;
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| [16648f] | 211 |     ++index[pos];
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| [d2938f] | 212 |     while(index[pos]>n){
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| [16648f] | 213 |       index[pos++]=-n;
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| [d2938f] | 214 |       if(pos>=dims) { // it's trying to increase one beyond array... all vectors generated
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 | 215 |         done = true;
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 | 216 |         break;
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| [7ac4af] | 217 |       }
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| [16648f] | 218 |       ++index[pos];
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| [7ac4af] | 219 |     }
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 | 220 |   }
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 | 221 | }
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 | 222 | 
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| [16648f] | 223 | VECTORSET(std::list) Box::explode(const Vector &point) const{
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 | 224 |   ASSERT(isInside(point),"Exploded point not inside Box");
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 | 225 |   return explode(point,1);
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 | 226 | }
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 | 227 | 
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| [014475] | 228 | double Box::periodicDistanceSquared(const Vector &point1,const Vector &point2) const{
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| [025048] | 229 |   Vector helper1(!isInside(point1) ? WrapPeriodically(point1) : point1);
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 | 230 |   Vector helper2(!isInside(point2) ? WrapPeriodically(point2) : point2);
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 | 231 |   internal_explode(helper1,1);
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 | 232 |   double res = internal_list.minDistSquared(helper2);
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| [014475] | 233 |   return res;
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 | 234 | }
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 | 235 | 
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 | 236 | double Box::periodicDistance(const Vector &point1,const Vector &point2) const{
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 | 237 |   double res;
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 | 238 |   res = sqrt(periodicDistanceSquared(point1,point2));
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 | 239 |   return res;
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| [527de2] | 240 | }
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 | 241 | 
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| [66fd49] | 242 | double Box::DistanceToBoundary(const Vector &point) const
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 | 243 | {
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 | 244 |   std::map<double, Plane> DistanceSet;
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 | 245 |   std::vector<std::pair<Plane,Plane> > Boundaries = getBoundingPlanes();
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 | 246 |   for (int i=0;i<NDIM;++i) {
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 | 247 |     const double tempres1 = Boundaries[i].first.distance(point);
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 | 248 |     const double tempres2 = Boundaries[i].second.distance(point);
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 | 249 |     DistanceSet.insert( make_pair(tempres1, Boundaries[i].first) );
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| [47d041] | 250 |     LOG(1, "Inserting distance " << tempres1 << " and " << tempres2 << ".");
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| [66fd49] | 251 |     DistanceSet.insert( make_pair(tempres2, Boundaries[i].second) );
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 | 252 |   }
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 | 253 |   ASSERT(!DistanceSet.empty(), "Box::DistanceToBoundary() - no distances in map!");
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 | 254 |   return (DistanceSet.begin())->first;
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 | 255 | }
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 | 256 | 
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| [c538d1] | 257 | Shape Box::getShape() const{
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 | 258 |   return transform(Cuboid(Vector(0,0,0),Vector(1,1,1)),(*M));
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| [6c438f] | 259 | }
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 | 260 | 
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| [66fd49] | 261 | const Box::Conditions_t Box::getConditions() const
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 | 262 | {
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| [77374e] | 263 |   return conditions;
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 | 264 | }
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| [c538d1] | 265 | 
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| [77374e] | 266 | void Box::setCondition(int i,Box::BoundaryCondition_t condition){
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 | 267 |   conditions[i]=condition;
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 | 268 | }
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 | 269 | 
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| [66fd49] | 270 | const vector<pair<Plane,Plane> >  Box::getBoundingPlanes() const
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 | 271 | {
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| [29ac78] | 272 |   vector<pair<Plane,Plane> > res;
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 | 273 |   for(int i=0;i<NDIM;++i){
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 | 274 |     Vector base1,base2,base3;
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 | 275 |     base2[(i+1)%NDIM] = 1.;
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 | 276 |     base3[(i+2)%NDIM] = 1.;
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 | 277 |     Plane p1(translateIn(base1),
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 | 278 |              translateIn(base2),
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 | 279 |              translateIn(base3));
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 | 280 |     Vector offset;
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 | 281 |     offset[i]=1;
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 | 282 |     Plane p2(translateIn(base1+offset),
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 | 283 |              translateIn(base2+offset),
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 | 284 |              translateIn(base3+offset));
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 | 285 |     res.push_back(make_pair(p1,p2));
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 | 286 |   }
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| [66fd49] | 287 |   ASSERT(res.size() == 3, "Box::getBoundingPlanes() - does not have three plane pairs!");
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| [29ac78] | 288 |   return res;
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 | 289 | }
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 | 290 | 
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| [e1ab97] | 291 | void Box::setCuboid(const Vector &endpoint){
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 | 292 |   ASSERT(endpoint[0]>0 && endpoint[1]>0 && endpoint[2]>0,"Vector does not define a full cuboid");
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| [9eb7580] | 293 |   M->setIdentity();
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| [e1ab97] | 294 |   M->diagonal()=endpoint;
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 | 295 |   Vector &dinv = Minv->diagonal();
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 | 296 |   for(int i=NDIM;i--;)
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 | 297 |     dinv[i]=1/endpoint[i];
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| [c538d1] | 298 | }
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 | 299 | 
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| [7579a4b] | 300 | Box &Box::operator=(const Box &src){
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 | 301 |   if(&src!=this){
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 | 302 |     delete M;
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 | 303 |     delete Minv;
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| [cca9ef] | 304 |     M    = new RealSpaceMatrix(*src.M);
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 | 305 |     Minv = new RealSpaceMatrix(*src.Minv);
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| [77374e] | 306 |     conditions = src.conditions;
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| [7579a4b] | 307 |   }
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 | 308 |   return *this;
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 | 309 | }
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 | 310 | 
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| [cca9ef] | 311 | Box &Box::operator=(const RealSpaceMatrix &mat){
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| [7579a4b] | 312 |   setM(mat);
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 | 313 |   return *this;
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 | 314 | }
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| [528b3e] | 315 | 
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 | 316 | ostream & operator << (ostream& ost, const Box &m)
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 | 317 | {
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 | 318 |   ost << m.getM();
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 | 319 |   return ost;
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 | 320 | }
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