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Reference Guide
PDEFoamTargetDensity.cxx
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1 // @(#)root/tmva $Id$
2 // Author: Tancredi Carli, Dominik Dannheim, Alexander Voigt
3 
4 /**********************************************************************************
5  * Project: TMVA - a Root-integrated toolkit for multivariate data analysis *
6  * Package: TMVA *
7  * Classes: PDEFoamTargetDensity *
8  * Web : http://tmva.sourceforge.net *
9  * *
10  * Description: *
11  * The TFDSITR class provides an interface between the Binary search tree *
12  * and the PDEFoam object. In order to build-up the foam one needs to *
13  * calculate the density of events at a given point (sampling during *
14  * Foam build-up). The function PDEFoamTargetDensity::Density() does this job. It *
15  * uses a binary search tree, filled with training events, in order to *
16  * provide this density. *
17  * *
18  * Authors (alphabetical): *
19  * Tancredi Carli - CERN, Switzerland *
20  * Dominik Dannheim - CERN, Switzerland *
21  * S. Jadach - Institute of Nuclear Physics, Cracow, Poland *
22  * Alexander Voigt - TU Dresden, Germany *
23  * Peter Speckmayer - CERN, Switzerland *
24  * *
25  * Copyright (c) 2008, 2010: *
26  * CERN, Switzerland *
27  * MPI-K Heidelberg, Germany *
28  * *
29  * Redistribution and use in source and binary forms, with or without *
30  * modification, are permitted according to the terms listed in LICENSE *
31  * (http://tmva.sourceforge.net/LICENSE) *
32  **********************************************************************************/
33 
34 //_____________________________________________________________________
35 //
36 // PDEFoamTargetDensity
37 //
38 // This is a concrete implementation of PDEFoam. Density(...)
39 // estimates the target density (target number: fTarget) at a given
40 // phase-space point using range-searching.
41 // _____________________________________________________________________
42 
43 
45 
46 #include "TMVA/BinarySearchTree.h"
47 #include "TMVA/MsgLogger.h"
49 #include "TMVA/Types.h"
50 #include "TMVA/Volume.h"
51 
52 #include "Rtypes.h"
53 
54 #include <cmath>
55 #include <vector>
56 
58 
59 ////////////////////////////////////////////////////////////////////////////////
60 
63  , fTarget(0)
64 {}
65 
66 ////////////////////////////////////////////////////////////////////////////////
67 /// User construcor
68 ///
69 /// Parameters:
70 ///
71 /// - box - size of the range-searching box (n-dimensional
72 /// std::vector)
73 ///
74 /// - target - the target number to calculate the density for
75 
77  : PDEFoamDensityBase(box)
78  , fTarget(target)
79 {
80 }
81 
82 ////////////////////////////////////////////////////////////////////////////////
83 /// Copy constructor
84 
86  : PDEFoamDensityBase(distr)
87  , fTarget(distr.fTarget)
88 {
89 }
90 
91 ////////////////////////////////////////////////////////////////////////////////
92 /// This function is needed during the foam buildup. It returns the
93 /// average target value within the range-searching box at point
94 /// xev, divided by volume (specified by fBox).
95 ///
96 /// Parameters:
97 ///
98 /// - xev - event vector (in [fXmin,fXmax]) to place the box at
99 ///
100 /// - event_density - here the event density is stored
101 ///
102 /// Returns:
103 ///
104 /// Average target value in the range-searching volume at point
105 /// 'xev', divided by the box volume.
106 
107 Double_t TMVA::PDEFoamTargetDensity::Density(std::vector<Double_t> &xev, Double_t &event_density)
108 {
109  if (!fBst)
110  Log() << kFATAL << "<PDEFoamTargetDensity::Density()> Binary tree not found!" << Endl;
111 
112  //create volume around point to be found
113  std::vector<Double_t> lb(GetBox().size());
114  std::vector<Double_t> ub(GetBox().size());
115 
116  // probevolume relative to hypercube with edge length 1:
117  const Double_t probevolume_inv = 1.0 / GetBoxVolume();
118 
119  // set upper and lower bound for search volume
120  for (UInt_t idim = 0; idim < GetBox().size(); ++idim) {
121  lb[idim] = xev[idim] - GetBox().at(idim) / 2.0;
122  ub[idim] = xev[idim] + GetBox().at(idim) / 2.0;
123  }
124 
125  TMVA::Volume volume(&lb, &ub); // volume to search in
126  std::vector<const TMVA::BinarySearchTreeNode*> nodes; // BST nodes found
127 
128  // do range searching
129  const Double_t sumOfWeights = fBst->SearchVolume(&volume, &nodes);
130 
131  // store density based on total number of events
132  event_density = nodes.size() * probevolume_inv;
133 
134  Double_t n_tar = 0; // number of target events found
135  // now sum over all nodes->GetTarget(0);
136  for (std::vector<const TMVA::BinarySearchTreeNode*>::const_iterator it = nodes.begin();
137  it != nodes.end(); ++it) {
138  n_tar += ((*it)->GetTargets()).at(fTarget) * ((*it)->GetWeight());
139  }
140 
141  // return: (n_tar/n_total) / (cell_volume)
142  return (n_tar / (sumOfWeights + 0.1)) * probevolume_inv;
143 }
MsgLogger & Endl(MsgLogger &ml)
Definition: MsgLogger.h:162
const std::vector< Double_t > & GetBox() const
void box(Int_t pat, Double_t x1, Double_t y1, Double_t x2, Double_t y2)
Definition: fillpatterns.C:1
MsgLogger & Log() const
message logger
unsigned int UInt_t
Definition: RtypesCore.h:42
#define ClassImp(name)
Definition: Rtypes.h:279
double Double_t
Definition: RtypesCore.h:55
Double_t GetBoxVolume()
Returns the volume of range searching box fBox.
Abstract ClassifierFactory template that handles arbitrary types.
virtual Double_t Density(std::vector< Double_t > &Xarg, Double_t &event_density)
This function is needed during the foam buildup.
Double_t SearchVolume(Volume *, std::vector< const TMVA::BinarySearchTreeNode *> *events=0)
search the whole tree and add up all weigths of events that lie within the given voluem ...