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00020 #ifndef CalibTracker_SiStripQuality_SiStripBadAPVAlgorithmFromClusterOccupancy_H
00021 #define CalibTracker_SiStripQuality_SiStripBadAPVAlgorithmFromClusterOccupancy_H
00022
00023
00024 #include <memory>
00025 #include <vector>
00026 #include <map>
00027 #include <sstream>
00028 #include <iostream>
00029
00030 #include "TMath.h"
00031 #include "TTree.h"
00032 #include "TFile.h"
00033
00034 #include "FWCore/ParameterSet/interface/ParameterSet.h"
00035 #include "FWCore/Framework/interface/ESHandle.h"
00036 #include "Geometry/TrackerGeometryBuilder/interface/TrackerGeometry.h"
00037 #include "CalibTracker/SiStripQuality/interface/SiStripQualityHistos.h"
00038
00039 class SiStripQuality;
00040 class TrackerTopology;
00041
00042 class SiStripBadAPVAlgorithmFromClusterOccupancy{
00043
00044 public:
00045 typedef SiStrip::QualityHistosMap HistoMap;
00046
00047 SiStripBadAPVAlgorithmFromClusterOccupancy(const edm::ParameterSet&, const TrackerTopology*);
00048
00049 virtual ~SiStripBadAPVAlgorithmFromClusterOccupancy();
00050
00051 void setLowOccupancyThreshold(long double low_occupancy){lowoccupancy_=low_occupancy;}
00052 void setHighOccupancyThreshold(long double high_occupancy){highoccupancy_=high_occupancy;}
00053 void setAbsoluteLowThreshold(long double absolute_low){absolutelow_=absolute_low;}
00054 void setNumberIterations(int number_iterations){numberiterations_=number_iterations;}
00055 void setAbsoluteOccupancyThreshold(long double occupancy){occupancy_=occupancy;}
00056 void setNumberOfEvents(double Nevents){Nevents_=Nevents;}
00057 void setMinNumOfEvents();
00058 void setOutputFileName(std::string OutputFileName, bool WriteOutputFile){OutFileName_=OutputFileName; WriteOutputFile_=WriteOutputFile;}
00059 void setTrackerGeometry(const TrackerGeometry* tkgeom){TkGeom = tkgeom;}
00060 void extractBadAPVs(SiStripQuality*,HistoMap&,edm::ESHandle<SiStripQuality>&);
00061
00062 private:
00063
00064 struct Apv{
00065
00066 uint32_t detrawId;
00067 int modulePosition;
00068 int numberApvs;
00069 double apvMedian[6];
00070 double apvabsoluteOccupancy[6];
00071 };
00072
00073 void CalculateMeanAndRMS(std::vector<Apv>, std::pair<double,double>*, int);
00074
00075 void AnalyzeOccupancy(SiStripQuality*, std::vector<Apv>&, std::pair<double,double>*, std::vector<unsigned int>&, edm::ESHandle<SiStripQuality>&);
00076
00077 struct pHisto{
00078
00079 pHisto():_NEntries(0),_NBins(0){};
00080 TH1F* _th1f;
00081 int _NEntries;
00082 int _NBins;
00083 };
00084
00085 long double lowoccupancy_;
00086 long double highoccupancy_;
00087 long double absolutelow_;
00088 int numberiterations_;
00089 double Nevents_;
00090 long double occupancy_;
00091 double minNevents_;
00092 std::string OutFileName_;
00093 bool WriteOutputFile_;
00094 bool UseInputDB_;
00095 const TrackerGeometry* TkGeom;
00096 const TrackerTopology* tTopo;
00097
00098 SiStripQuality *pQuality;
00099
00100 double stripOccupancy[6][128];
00101 double stripWeight[6][128];
00102
00103 std::vector<Apv> medianValues_TIB_Layer1; std::pair<double,double> MeanAndRms_TIB_Layer1[7];
00104 std::vector<Apv> medianValues_TIB_Layer2; std::pair<double,double> MeanAndRms_TIB_Layer2[7];
00105 std::vector<Apv> medianValues_TIB_Layer3; std::pair<double,double> MeanAndRms_TIB_Layer3[7];
00106 std::vector<Apv> medianValues_TIB_Layer4; std::pair<double,double> MeanAndRms_TIB_Layer4[7];
00107
00108 std::vector<Apv> medianValues_TOB_Layer1; std::pair<double,double> MeanAndRms_TOB_Layer1[7];
00109 std::vector<Apv> medianValues_TOB_Layer2; std::pair<double,double> MeanAndRms_TOB_Layer2[7];
00110 std::vector<Apv> medianValues_TOB_Layer3; std::pair<double,double> MeanAndRms_TOB_Layer3[7];
00111 std::vector<Apv> medianValues_TOB_Layer4; std::pair<double,double> MeanAndRms_TOB_Layer4[7];
00112 std::vector<Apv> medianValues_TOB_Layer5; std::pair<double,double> MeanAndRms_TOB_Layer5[7];
00113 std::vector<Apv> medianValues_TOB_Layer6; std::pair<double,double> MeanAndRms_TOB_Layer6[7];
00114
00115 std::vector<Apv> medianValues_TIDPlus_Disc1; std::pair<double,double> MeanAndRms_TIDPlus_Disc1[7];
00116 std::vector<Apv> medianValues_TIDPlus_Disc2; std::pair<double,double> MeanAndRms_TIDPlus_Disc2[7];
00117 std::vector<Apv> medianValues_TIDPlus_Disc3; std::pair<double,double> MeanAndRms_TIDPlus_Disc3[7];
00118
00119 std::vector<Apv> medianValues_TIDMinus_Disc1; std::pair<double,double> MeanAndRms_TIDMinus_Disc1[7];
00120 std::vector<Apv> medianValues_TIDMinus_Disc2; std::pair<double,double> MeanAndRms_TIDMinus_Disc2[7];
00121 std::vector<Apv> medianValues_TIDMinus_Disc3; std::pair<double,double> MeanAndRms_TIDMinus_Disc3[7];
00122
00123 std::vector<Apv> medianValues_TECPlus_Disc1; std::pair<double,double> MeanAndRms_TECPlus_Disc1[7];
00124 std::vector<Apv> medianValues_TECPlus_Disc2; std::pair<double,double> MeanAndRms_TECPlus_Disc2[7];
00125 std::vector<Apv> medianValues_TECPlus_Disc3; std::pair<double,double> MeanAndRms_TECPlus_Disc3[7];
00126 std::vector<Apv> medianValues_TECPlus_Disc4; std::pair<double,double> MeanAndRms_TECPlus_Disc4[7];
00127 std::vector<Apv> medianValues_TECPlus_Disc5; std::pair<double,double> MeanAndRms_TECPlus_Disc5[7];
00128 std::vector<Apv> medianValues_TECPlus_Disc6; std::pair<double,double> MeanAndRms_TECPlus_Disc6[7];
00129 std::vector<Apv> medianValues_TECPlus_Disc7; std::pair<double,double> MeanAndRms_TECPlus_Disc7[7];
00130 std::vector<Apv> medianValues_TECPlus_Disc8; std::pair<double,double> MeanAndRms_TECPlus_Disc8[7];
00131 std::vector<Apv> medianValues_TECPlus_Disc9; std::pair<double,double> MeanAndRms_TECPlus_Disc9[7];
00132
00133 std::vector<Apv> medianValues_TECMinus_Disc1; std::pair<double,double> MeanAndRms_TECMinus_Disc1[7];
00134 std::vector<Apv> medianValues_TECMinus_Disc2; std::pair<double,double> MeanAndRms_TECMinus_Disc2[7];
00135 std::vector<Apv> medianValues_TECMinus_Disc3; std::pair<double,double> MeanAndRms_TECMinus_Disc3[7];
00136 std::vector<Apv> medianValues_TECMinus_Disc4; std::pair<double,double> MeanAndRms_TECMinus_Disc4[7];
00137 std::vector<Apv> medianValues_TECMinus_Disc5; std::pair<double,double> MeanAndRms_TECMinus_Disc5[7];
00138 std::vector<Apv> medianValues_TECMinus_Disc6; std::pair<double,double> MeanAndRms_TECMinus_Disc6[7];
00139 std::vector<Apv> medianValues_TECMinus_Disc7; std::pair<double,double> MeanAndRms_TECMinus_Disc7[7];
00140 std::vector<Apv> medianValues_TECMinus_Disc8; std::pair<double,double> MeanAndRms_TECMinus_Disc8[7];
00141 std::vector<Apv> medianValues_TECMinus_Disc9; std::pair<double,double> MeanAndRms_TECMinus_Disc9[7];
00142
00143
00144 TFile* f;
00145 TTree* apvtree;
00146
00147 uint32_t detrawid;
00148 int subdetid;
00149 int layer_ring;
00150 int disc;
00151 int isback;
00152 int isexternalstring;
00153 int iszminusside;
00154 int rodstringpetal;
00155 int isstereo;
00156 int module_number;
00157 int number_strips;
00158 int number_apvs;
00159 int apv_number;
00160
00161 float global_position_x;
00162 float global_position_y;
00163 float global_position_z;
00164
00165 double apvAbsoluteOccupancy;
00166 double apvMedianOccupancy;
00167
00168 std::stringstream ss;
00169 };
00170 #endif
00171