26#ifndef ROOT_TMVA_NodekNN 
   27#define ROOT_TMVA_NodekNN 
   95            void Print(std::ostream& os, 
const std::string &
offset = 
"") 
const;
 
  183            return fEvent.GetWeight();
 
 
  217            else return Depth(node->GetNodeP()) + 1;
 
 
  230   fVarDis(event.GetVar(
mod)),
 
 
  240   if (fNodeL) 
delete fNodeL;
 
  241   if (fNodeR) 
delete fNodeR;
 
 
  253   assert(fMod == 
depth % event.GetNVar() && 
"Wrong recursive depth in Node<>::Add");
 
  257   fVarMin = std::min(fVarMin, 
value);
 
  258   fVarMax = std::max(fVarMax, 
value);
 
  261   if (
value < fVarDis) {
 
  264            return fNodeL->Add(event, 
depth + 1);
 
  267         fNodeL = 
new Node<T>(
this, event, (
depth + 1) % event.GetNVar());
 
  273         return fNodeR->Add(event, 
depth + 1);
 
  276         fNodeR = 
new Node<T>(
this, event, (
depth + 1) % event.GetNVar());
 
 
  295   os << 
offset << 
"-----------------------------------------------------------" << std::endl;
 
  296   os << 
offset << 
"Node: mod " << fMod
 
  298      << 
" with weight: " << GetWeight() << std::endl
 
  302      os << 
offset << 
"Has left node " << std::endl;
 
  305      os << 
offset << 
"Has right node" << std::endl;
 
  309      os << 
offset << 
"PrInt_t left node " << std::endl;
 
  310      fNodeL->Print(os, 
offset + 
" ");
 
  313      os << 
offset << 
"PrInt_t right node" << std::endl;
 
  314      fNodeR->Print(os, 
offset + 
" ");
 
  317   if (!fNodeL && !fNodeR) {
 
 
 
  336   if (!node || 
nfind < 1) {
 
  346      if (!
nlist.empty()) {
 
  377         std::cerr << 
"TMVA::kNN::Find() - logic error in recursive procedure" << std::endl;
 
  445   if (!node || !(
nfind < 0.0)) {
 
  455      if (!
nlist.empty()) {
 
  478      else if (!
nlist.empty()) {
 
  484         std::cerr << 
"TMVA::kNN::Find() - logic error in recursive procedure" << std::endl;
 
  502            ncurr += 
lit -> first -> GetWeight();
 
  508            ncurr += 
lit -> first -> GetWeight();
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h offset
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void value
void Print(GNN_Data &d, std::string txt="")
const_iterator begin() const
const_iterator end() const
This file contains binary tree and global function template that searches tree for k-nearest neigbors...
Float_t GetVarMin() const
void SetNodeL(Node *node)
void SetNodeR(Node *node)
Double_t GetWeight() const
Float_t GetVarDis() const
Float_t GetVarMax() const
void Print(std::ostream &os, const std::string &offset="") const
const Node * GetNodeL() const
Node(const Node *parent, const T &event, Int_t mod)
const Node * GetNodeP() const
const Node & operator=(const Node &)
const Node * GetNodeR() const
const Node * Add(const T &event, UInt_t depth)
This is Node member function that adds a new node to a binary tree.
const T & GetEvent() const
kNN::Event describes point in input variable vector-space, with additional functionality like distanc...
UInt_t Find(std::list< std::pair< const Node< T > *, Float_t > > &nlist, const Node< T > *node, const T &event, UInt_t nfind)
UInt_t Depth(const Node< T > *node)
create variable transformations