| 1 | /*
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| 2 |  * Box.hpp
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| 3 |  *
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| 4 |  *  Created on: Jun 30, 2010
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| 5 |  *      Author: crueger
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| 6 |  */
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| 7 | 
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| 8 | #ifndef BOX_HPP_
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| 9 | #define BOX_HPP_
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| 10 | 
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| 11 | // include config.h
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| 12 | #ifdef HAVE_CONFIG_H
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| 13 | #include <config.h>
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| 14 | #endif
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| 15 | 
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| 16 | 
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| 17 | class RealSpaceMatrix;
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| 18 | class Vector;
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| 19 | class Shape;
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| 20 | class Plane;
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| 21 | 
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| 22 | #include <list>
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| 23 | #include <vector>
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| 24 | #include "CodePatterns/Observer/Observable.hpp"
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| 25 | #include "LinearAlgebra/VectorSet.hpp"
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| 26 | 
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| 27 | #include "Box_BoundaryConditions.hpp"
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| 28 | 
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| 29 | /**
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| 30 |  * A simple class that can be used to store periodic Boxes
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| 31 |  * in the form of a parallelepiped.
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| 32 |  *
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| 33 |  * Stores a matrix that can be used to translate from periodic
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| 34 |  * [0,1) space as well as the inverse that is needed to
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| 35 |  * translate back to that space.
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| 36 |  */
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| 37 | class Box : public Observable
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| 38 | {
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| 39 | public:
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| 40 |   enum NotificationType {
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| 41 |     BoundaryConditionsChanged,
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| 42 |     MatrixChanged,
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| 43 |     NotificationType_MAX  // denotes the maximum of available notification types
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| 44 |   };
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| 45 | 
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| 46 |   Box();
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| 47 |   Box(const Box&);
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| 48 |   Box(RealSpaceMatrix _M);
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| 49 |   virtual ~Box();
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| 50 | 
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| 51 |   /**
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| 52 |    * Get the matrix describing the form of the parallelepiped
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| 53 |    */
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| 54 |   const RealSpaceMatrix &getM() const;
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| 55 | 
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| 56 |   /**
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| 57 |    * Get the inverse of the matrix M (see above).
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| 58 |    */
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| 59 |   const RealSpaceMatrix &getMinv() const;
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| 60 | 
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| 61 |   /**
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| 62 |    * Set the form of the parallelepiped.
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| 63 |    */
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| 64 |   void setM(RealSpaceMatrix);
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| 65 | 
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| 66 |   Box &operator=(const Box&);
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| 67 |   Box &operator=(const RealSpaceMatrix&);
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| 68 | 
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| 69 |   /**
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| 70 |    * Translate a point from [0,1) to the boxed space.
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| 71 |    */
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| 72 |   Vector translateIn(const Vector &point) const;
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| 73 | 
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| 74 |   /**
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| 75 |    * Translate a point from the boxed space to the [0,1) space.
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| 76 |    */
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| 77 |   Vector translateOut(const Vector &point) const;
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| 78 | 
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| 79 |   /**
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| 80 |    * Wrap a point so that it will lie within the space defined by the box.
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| 81 |    */
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| 82 |   Vector enforceBoundaryConditions(const Vector &point) const;
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| 83 | 
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| 84 |   /**
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| 85 |    * Checks whether a given vector is inside the box not accounting for boundary conditions.
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| 86 |    */
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| 87 |   bool isInside(const Vector &point) const;
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| 88 | 
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| 89 |   /**
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| 90 |    * Checks whether a given vector is inside the box under the given boundary conditions.
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| 91 |    */
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| 92 |   bool isValid(const Vector &point) const;
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| 93 | 
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| 94 | 
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| 95 |   /**
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| 96 |    * Produce corresponding points in several adjacent boxes.
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| 97 |    *
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| 98 |    * n specifies the number of times the point is expanded.
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| 99 |    * Carefull, needs O(n^3) time and produces as many vectors.
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| 100 |    */
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| 101 |   VECTORSET(std::vector) explode(const Vector &point,int n) const;
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| 102 |   VECTORSET(std::vector) explode(const Vector &point) const;
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| 103 | 
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| 104 |   /**
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| 105 |    * Calculate the distance vector of two points in the periodic space
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| 106 |    * defined by this box
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| 107 |    */
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| 108 |   const Vector periodicDistanceVector(const Vector &point1,const Vector &point2) const;
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| 109 | 
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| 110 |   /**
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| 111 |    * Calculate the distance of two points in the periodic space
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| 112 |    * defined by this box
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| 113 |    */
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| 114 |   double periodicDistanceSquared(const Vector &point1,const Vector &point2) const;
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| 115 | 
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| 116 |   /**
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| 117 |    * Calculate the distance of two points in the periodic space
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| 118 |    * defined by this box
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| 119 |    */
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| 120 |   double periodicDistance(const Vector &point1,const Vector &point2) const;
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| 121 | 
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| 122 |   /**
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| 123 |    * Calculates the minimum distance to the boundary of the periodic
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| 124 |    * space defined by this box.
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| 125 |    */
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| 126 |   double DistanceToBoundary(const Vector &point) const;
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| 127 | 
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| 128 |   Shape getShape() const;
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| 129 | 
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| 130 |   const std::string getConditionNames() const;
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| 131 |   const BoundaryConditions::Conditions_t & getConditions() const;
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| 132 |   const BoundaryConditions::BoundaryCondition_t getCondition(size_t i) const;
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| 133 |   void setCondition(size_t i,const BoundaryConditions::BoundaryCondition_t _condition);
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| 134 |   void setConditions(const BoundaryConditions::Conditions_t & _conditions);
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| 135 |   void setConditions(const std::string & _conditions);
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| 136 |   void setConditions(const std::vector< std::string >& _conditions);
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| 137 | 
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| 138 |   const std::vector<std::pair<Plane,Plane> > getBoundingPlanes() const;
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| 139 | 
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| 140 |   void setCuboid(const Vector&);
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| 141 | 
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| 142 | private:
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| 143 |   /** Internal explode function that works on the staticly present internal_list
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| 144 |    *
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| 145 |    * \todo Note that is not thread-safe!
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| 146 |    *
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| 147 |    * Most of the time of explode is consumed by memory allocation if it is called
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| 148 |    * repeatedly.
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| 149 |    *
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| 150 |    * @param point point to explode
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| 151 |    * @param n neighbour shells to explode
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| 152 |    */
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| 153 |   void internal_explode(const Vector &point,int n) const;
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| 154 | 
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| 155 | 
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| 156 |   //!> Internal vector list for exploding vectors used in Box::internal_explode().
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| 157 |   mutable VECTORSET(std::vector) internal_list;
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| 158 | 
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| 159 |   //!> Internal vector for coordinates used in Box::internal_explode()
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| 160 |   mutable std::vector<int> coords;
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| 161 |   //!> Internal vector for indices used in Box::internal_explode()
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| 162 |   mutable std::vector<int> index;
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| 163 | 
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| 164 |   BoundaryConditions::BCContainer conditions;
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| 165 |   RealSpaceMatrix *M;    //!< Defines the layout of the box
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| 166 |   RealSpaceMatrix *Minv; //!< Inverse of M to avoid recomputation
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| 167 | };
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| 168 | 
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| 169 | std::ostream & operator << (std::ostream& ost, const Box &m);
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| 170 | 
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| 171 | #endif /* BOX_HPP_ */
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