| 1 | /*
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| 2 |  * analysis.hpp
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| 3 |  *
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| 4 |  *  Created on: Oct 13, 2009
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| 5 |  *      Author: heber
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| 6 |  */
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| 7 | 
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| 8 | #ifndef ANALYSIS_HPP_
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| 9 | #define ANALYSIS_HPP_
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| 10 | 
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| 11 | using namespace std;
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| 12 | 
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| 13 | /*********************************************** includes ***********************************/
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| 14 | 
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| 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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| 20 | #include <cmath>
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| 21 | #include <iomanip>
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| 22 | #include <fstream>
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| 23 | 
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| 24 | // STL headers
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| 25 | #include <map>
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| 26 | #include <vector>
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| 27 | 
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| 28 | #include "Helpers/defs.hpp"
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| 29 | 
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| 30 | #include "Atom/atom.hpp"
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| 31 | #include "CodePatterns/Info.hpp"
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| 32 | #include "CodePatterns/Log.hpp"
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| 33 | #include "CodePatterns/Range.hpp"
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| 34 | #include "CodePatterns/Verbose.hpp"
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| 35 | #include "Helpers/helpers.hpp"
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| 36 | #include "World.hpp"
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| 37 | 
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| 38 | /****************************************** forward declarations *****************************/
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| 39 | 
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| 40 | class BoundaryTriangleSet;
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| 41 | class Formula;
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| 42 | class element;
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| 43 | class LinkedCell_deprecated;
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| 44 | class Tesselation;
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| 45 | class Vector;
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| 46 | 
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| 47 | /********************************************** definitions *********************************/
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| 48 | 
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| 49 | typedef multimap<double, pair<const TesselPoint *, const TesselPoint *> > PairCorrelationMap;
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| 50 | typedef multimap<double, const atom * > DipoleAngularCorrelationMap;
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| 51 | typedef multimap<double, pair<const molecule *, const molecule *> > DipoleCorrelationMap;
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| 52 | typedef multimap<double, pair<const atom *, const Vector *> > CorrelationToPointMap;
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| 53 | typedef multimap<double, pair<const atom *, BoundaryTriangleSet *> > CorrelationToSurfaceMap;
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| 54 | typedef map<double, int> BinPairMap;
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| 55 | 
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| 56 | enum ResetWorldTime {
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| 57 |   DontResetTime,
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| 58 |   DoResetTime
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| 59 | };
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| 60 | 
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| 61 | /********************************************** declarations *******************************/
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| 62 | 
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| 63 | range<size_t> getMaximumTrajectoryBounds(const std::vector<atom *> &atoms);
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| 64 | std::map<atomId_t, Vector> CalculateZeroAngularDipole(const std::vector<molecule *> &molecules);
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| 65 | 
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| 66 | DipoleAngularCorrelationMap *DipoleAngularCorrelation(const Formula &DipoleFormula, const size_t timestep, const std::map<atomId_t, Vector> &ZeroVector, const enum ResetWorldTime DoTimeReset = DontResetTime);
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| 67 | DipoleCorrelationMap *DipoleCorrelation(std::vector<molecule *> &molecules);
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| 68 | PairCorrelationMap *PairCorrelation(
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| 69 |     const World::AtomComposite &atoms_first,
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| 70 |     const World::AtomComposite &atoms_second,
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| 71 |     const double max_distance);
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| 72 | CorrelationToPointMap *CorrelationToPoint(std::vector<molecule *> &molecules, const std::vector<const element *> &elements, const Vector *point );
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| 73 | CorrelationToSurfaceMap *CorrelationToSurface(std::vector<molecule *> &molecules, const std::vector<const element *> &elements, const Tesselation * const Surface, const LinkedCell_deprecated *LC );
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| 74 | CorrelationToPointMap *PeriodicCorrelationToPoint(std::vector<molecule *> &molecules, const std::vector<const element *> &elements, const Vector *point, const int ranges[NDIM] );
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| 75 | CorrelationToSurfaceMap *PeriodicCorrelationToSurface(std::vector<molecule *> &molecules, const std::vector<const element *> &elements, const Tesselation * const Surface, const LinkedCell_deprecated *LC, const int ranges[NDIM] );
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| 76 | int GetBin ( const double value, const double BinWidth, const double BinStart );
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| 77 | void OutputCorrelation_Header( ofstream * const file );
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| 78 | void OutputCorrelation_Value( ofstream * const file, BinPairMap::const_iterator &runner );
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| 79 | void OutputDipoleAngularCorrelation_Header( ofstream * const file );
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| 80 | void OutputDipoleAngularCorrelation_Value( ofstream * const file, DipoleAngularCorrelationMap::const_iterator &runner );
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| 81 | void OutputDipoleCorrelation_Header( ofstream * const file );
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| 82 | void OutputDipoleCorrelation_Value( ofstream * const file, DipoleCorrelationMap::const_iterator &runner );
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| 83 | void OutputPairCorrelation_Header( ofstream * const file );
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| 84 | void OutputPairCorrelation_Value( ofstream * const file, PairCorrelationMap::const_iterator &runner );
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| 85 | void OutputCorrelationToPoint_Header( ofstream * const file );
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| 86 | void OutputCorrelationToPoint_Value( ofstream * const file, CorrelationToPointMap::const_iterator &runner );
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| 87 | void OutputCorrelationToSurface_Header( ofstream * const file );
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| 88 | void OutputCorrelationToSurface_Value( ofstream * const file, CorrelationToSurfaceMap::const_iterator &runner );
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| 89 | 
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| 90 | /** Searches for lowest and highest value in a given map of doubles.
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| 91 |  * \param *map map of doubles to scan
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| 92 |  * \param &min minimum on return
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| 93 |  * \param &max maximum on return
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| 94 |  */
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| 95 | template <typename T> void GetMinMax ( T *map, double &min, double &max)
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| 96 | {
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| 97 |   min = 0.;
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| 98 |   max = 0.;
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| 99 |   bool FirstMinFound = false;
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| 100 |   bool FirstMaxFound = false;
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| 101 | 
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| 102 |   if (map == NULL) {
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| 103 |     ELOG(0, "Nothing to min/max, map is NULL!");
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| 104 |     performCriticalExit();
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| 105 |     return;
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| 106 |   }
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| 107 | 
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| 108 |   for (typename T::iterator runner = map->begin(); runner != map->end(); ++runner) {
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| 109 |     if ((min > runner->first) || (!FirstMinFound)) {
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| 110 |       min = runner->first;
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| 111 |       FirstMinFound = true;
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| 112 |     }
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| 113 |     if ((max < runner->first) || (!FirstMaxFound)) {
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| 114 |       max = runner->first;
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| 115 |       FirstMaxFound = true;
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| 116 |     }
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| 117 |   }
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| 118 | };
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| 119 | 
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| 120 | /** Puts given correlation data into bins of given size (histogramming).
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| 121 |  * Note that BinStart and BinEnd are desired to fill the complete range, even where Bins are zero. If this is
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| 122 |  * not desired, give equal BinStart and BinEnd and the map will contain only Bins where the count is one or greater. If a
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| 123 |  * certain start value is desired, give BinStart and a BinEnd that is smaller than BinStart, then only BinEnd will be
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| 124 |  * calculated automatically, i.e. BinStart = 0. and BinEnd = -1. .
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| 125 |  * Also note that the range is given inclusive, i.e. [ BinStart, BinEnd ].
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| 126 |  * \param *map map of doubles to count
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| 127 |  * \param BinWidth desired width of the binds
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| 128 |  * \param BinStart first bin
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| 129 |  * \param BinEnd last bin
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| 130 |  * \return Map of doubles (the bins) with counts as values
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| 131 |  */
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| 132 | template <typename T> BinPairMap *BinData ( T *map, const double BinWidth, const double BinStart, const double BinEnd )
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| 133 | {
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| 134 |   BinPairMap *outmap = new BinPairMap;
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| 135 |   int bin = 0;
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| 136 |   double start = 0.;
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| 137 |   double end = 0.;
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| 138 |   pair <BinPairMap::iterator, bool > BinPairMapInserter;
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| 139 | 
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| 140 |   if (map == NULL) {
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| 141 |     ELOG(0, "Nothing to bin, is NULL!");
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| 142 |     performCriticalExit();
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| 143 |     return outmap;
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| 144 |   }
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| 145 | 
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| 146 |   if (BinStart == BinEnd) { // if same, find range ourselves
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| 147 |     GetMinMax( map, start, end);
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| 148 |   } else if (BinEnd < BinStart) { // if BinEnd smaller, just look for new max
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| 149 |     GetMinMax( map, start, end);
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| 150 |     start = BinStart;
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| 151 |   } else { // else take both values
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| 152 |     start = BinStart;
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| 153 |     end = BinEnd;
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| 154 |   }
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| 155 |   for (int runner = 0; runner <= ceil((end-start)/BinWidth); runner++)
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| 156 |     outmap->insert( pair<double, int> ((double)runner*BinWidth+start, 0) );
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| 157 | 
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| 158 |   for (typename T::iterator runner = map->begin(); runner != map->end(); ++runner) {
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| 159 |     bin = GetBin (runner->first, BinWidth, start);
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| 160 |     BinPairMapInserter = outmap->insert ( pair<double, int> ((double)bin*BinWidth+start, 1) );
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| 161 |     if (!BinPairMapInserter.second) {  // bin already present, increase
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| 162 |       BinPairMapInserter.first->second += 1;
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| 163 |     } else { // bin not present, then remove again
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| 164 |       outmap->erase(BinPairMapInserter.first);
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| 165 |     }
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| 166 |   }
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| 167 | 
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| 168 |   return outmap;
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| 169 | };
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| 170 | 
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| 171 | /** Prints correlation map of template type to file.
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| 172 |  * \param *file file to write to
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| 173 |  * \param *map map to write
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| 174 |  * \param (*header) pointer to function that adds specific part to header
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| 175 |  * \param (*value) pointer to function that prints value from given iterator
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| 176 |  */
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| 177 | template <typename T>
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| 178 | void OutputCorrelationMap(
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| 179 |     ofstream * const file,
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| 180 |     const T * const map,
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| 181 |     void (*header)( ofstream * const file),
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| 182 |     void (*value)( ofstream * const file, typename T::const_iterator &runner)
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| 183 |     )
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| 184 | {
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| 185 |   Info FunctionInfo(__func__);
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| 186 |   *file << "BinStart\tBinCenter\tBinEnd";
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| 187 |   header(file);
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| 188 |   *file << endl;
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| 189 |   typename T::const_iterator advancer = map->begin();
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| 190 |   typename T::const_iterator runner = map->begin();
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| 191 |   if (advancer != map->end())
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| 192 |     advancer++;
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| 193 |   for ( ;(advancer != map->end()) && (runner != map->end()); ++advancer, ++runner) {
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| 194 |     *file << setprecision(8)
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| 195 |         << runner->first << "\t"
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| 196 |         << (advancer->first + runner->first)/2. << "\t"
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| 197 |         << advancer->first << "\t";
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| 198 |     value(file, runner);
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| 199 |     *file << endl;
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| 200 |   }
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| 201 |   if(runner != map->end()) {
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| 202 |     *file << setprecision(8) << runner->first << "\t0\t0\t";
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| 203 |     value(file, runner);
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| 204 |     *file << endl;
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| 205 |   }
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| 206 | };
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| 207 | 
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| 208 | 
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| 209 | #endif /* ANALYSIS_HPP_ */
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