1 | #warning I AM NOT YET TESTED ... DO NOT USE ME
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2 |
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3 | // example.C
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4 | // ROOT macro to show, how FACT raw data can be read into ROOT
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5 | // -> be DRS calibrated using a dedicated .drs.fits file
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6 | // -> also the famous DRS spikes will be removed.
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7 |
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8 | #include <TROOT.h> // everybody needs the ROOT of everything
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9 | #include <TStyle.h> // in order to set gStyle->SetPallette(1,0);
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10 | #include <TCanvas.h> // well ..we are going to show some plots, right?
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11 | #include <TTimer.h> // dunno
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12 | #include <Getline.h> // well ... for Getline()
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13 | #include <TFile.h> // for root file handling
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14 | #include <TH1F.h> // we will use these Histograms
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15 |
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16 | #define HAVE_ZLIB // -> Info for fits.h
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17 | #include "fits.h" // fits.h was written by Thomas Bretz
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18 |
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19 | // provides 2 functions to get easily the raw data
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20 | // out of our fits files... there is more data in the fits files,
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21 | // but it is not needed in this example.
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22 | // For further Info, .. ask an expert, or wait for the next Example :-)
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23 | #include "openFits.h" //
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24 | #include "openFits.c" //
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25 |
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26 | // DrsCalibration provides a function, which can be used to retrieve
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27 | // DRS-calibrated data of a certain pixel.
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28 | #include "DrsCalibration.h"
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29 | #include "DrsCalibration.C"
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30 | #include "SpikeRemoval.h"
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31 | #include "SpikeRemoval.C"
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32 |
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33 | // contains implementation of std FIR filters for vector<float> and
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34 | // a simple sldig average filter, which is not FIR.
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35 | #include "factfir.C"
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36 |
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37 | // These variables will be linked to the raw data file.
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38 | // So when ever the Memberfunction "GetRow(int i)" of a fits file is called
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39 | // These variables will contain the data of the i'th Event:
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40 | int NEvents; // total number of events in file
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41 | vector<int16_t> AllPixelDataVector; // All raw data of all pixel of the current Event
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42 | vector<int16_t> StartCellVector; // All StartCells of all pixel of the current Event
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43 | unsigned int CurrentEventID; // The id = upcounting number of the current Event
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44 | size_t PXLxROI; // the width of data read out of the DRS chips x the number of Pixels
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45 | // so this will be the length of AllPixelDataVector
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46 | UInt_t RegionOfInterest; // The region of Interest of all pixel in the current file
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47 | UInt_t NumberOfPixels; // the number of pixels in the current file
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48 | // please note:
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49 | // Most of this information is not actually needed to plot or work with
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50 | // the raw data. It is just needed to apply the DRS calibration.
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51 | // So in principle the user of this script should not even see, that these
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52 | // data exists somewhere, but I was not yet able to hide it...
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53 |
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54 |
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55 |
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56 | // these variables will contain the calibration constants read out of the
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57 | // dedicated DRS calibration files.
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58 | vector<float> Offset; // the offsets for all 1024 slices for all 1440 channels
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59 | vector<float> Gain; // the gains for all 1024 slices for all 1440 channels
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60 | vector<float> TriggerOffset; // a minor effect calibration constant. for details see DrsCalibration.h and .c
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61 | size_t TriggerOffsetROI; // the 'width' of the TriggerOffset per channel
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62 | size_t RC; // RC = return code of openCalibFits() -> should be number of rows = 1 !!!
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63 |
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64 | vector<float> Wavelet; // here we store the data of one single event of one single pixel
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65 | TH1F* hWavelet = NULL; // this we use for plotting the Wavelet
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66 | TCanvas *cExample = NULL;
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67 | TObjArray hList;
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68 | // The following two functions were introduced by Werner
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69 | // BookHistos() creates histograms and takes care of settings like
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70 | // Binning
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71 | // Naming
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72 | // Colors
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73 | // SaveHistos() takes care of Saving all Histos created in BookHistos to a root file
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74 | // this is a nice idea... makes 'sure' nothing is plotted, but forgotten to save...
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75 | void BookHistos();
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76 | void SaveHistograms(const char * );
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77 |
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78 | int example(
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79 | const char *datafilename = "path-to-data/20111016_013.fits.gz",
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80 | const char *drsfilename = "path-to-data/20111016_011.drs.fits.gz",
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81 | const char *OutRootFileName = "path-to-analysis/20111016_013_example.root",
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82 | int firstevent = 0,
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83 | int nevents = -1,
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84 | int firstpixel = 0,
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85 | int npixel = -1,
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86 | bool Debug = true,
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87 | int verbosityLevel = 1,
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88 | bool ProduceGraphic = true
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89 | )
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90 | {
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91 | bool breakout = false;
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92 |
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93 | cout << "I AM NOT YET TESTED ... DO NOT USE ME" << endl;
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94 |
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95 |
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96 | gStyle->SetPalette(1,0); // nice color scheme
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97 | gROOT->SetStyle("Plain"); // don't know
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98 |
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99 | if ( Debug ){
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100 | cExample = new TCanvas("cFiltered","filtered DRS Waveforms",410,410,400,400);
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101 | cExample->Divide(1, 4);
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102 | }
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103 |
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104 | fits * datafile;
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105 | // Opens the raw data file and 'binds' the variables given as
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106 | // Parameters to the data file. So they are filled with
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107 | // raw data as soon as datafile->GetRow(int) is called.
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108 | NEvents = openDataFits( datafilename, &datafile,
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109 | AllPixelDataVector, StartCellVector, CurrentEventID,
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110 | RegionOfInterest, NumberOfPixels, PXLxROI, verbosityLevel);
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111 | if (NEvents == 0){
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112 | cout << "return code of OpenDataFile:" << datafilename<< endl;
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113 | cout << "is zero -> aborting." << endl;
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114 | return 1;
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115 | }
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116 | if ( nevents == -1 || nevents > NEvents ) nevents = NEvents; // -1 means all!
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117 | if ( npixel == -1 || npixel > (int)NumberOfPixels ) npixel = (int)NumberOfPixels; // -1 means all!
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118 | if (verbosityLevel > 0) {
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119 | cout <<"number of events in file: "<< NEvents << "\t";
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120 | cout <<"of, which "<< nevents << "will be processed"<< endl;
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121 | cout <<"Total # of Pixel: "<< NumberOfPixels << "\t";
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122 | cout <<"of, which "<< npixel << "will be processed"<< endl;
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123 | }
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124 |
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125 | RC = openCalibFits( drsfilename, Offset, Gain, TriggerOffset, TriggerOffsetROI);
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126 | if (RC == 0){
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127 | cout << "return code of openCalibFits:" << drsfilename << endl;
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128 | cout << "is zero -> aborting." << endl;
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129 | return 1;
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130 | }
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131 |
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132 | BookHistos();
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133 |
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134 | //-----------------------------------------------------------------------------
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135 | // Loops over Every Event and Pixel
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136 | //-----------------------------------------------------------------------------
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137 | for ( int ev = firstevent; ev < firstevent + nevents; ev++) {
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138 | // Get an Event --> consists of 1440 Pixel ...erm....data
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139 | datafile->GetRow( ev );
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140 |
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141 | for ( int pix = firstpixel; pix < firstpixel+npixel; pix++ ){
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142 | if (verbosityLevel > 0){
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143 | if (pix == firstpixel){
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144 | cout << "Processing Event: " << CurrentEventID << "/" << nevents << endl;
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145 | }
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146 | }
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147 |
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148 | // this is the interesting point of this script...
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149 | // well actually it is not interesting, but beginning from this point on
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150 | // the user of this script has access to the pure data of:
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151 | // event number ev
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152 | // pixel number pix
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153 | // The vector Wavewlet contains now the data, while the first 12 slices
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154 | // and the last 12 slices were cut out of the raw data...
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155 | // this was decided once on a FACT meeting.
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156 | applyDrsCalibration( Wavelet, pix, 12, 12,
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157 | Offset, Gain, TriggerOffset,
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158 | RegionOfInterest, AllPixelDataVector, StartCellVector);
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159 |
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160 | // HERE we could plot the Wavelet, but lets first remove the spikes.
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161 |
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162 | // finds spikes in the raw data, and interpolates the value
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163 | // spikes are: 1 or 2 slice wide, positive non physical artifacts
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164 | // the data containing the spike is taken from 'Wavelet'
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165 | // and the cleaned result is stored back to 'Wavelet'
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166 | // synopsis: removeSpikes (input-vector, output-vector);
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167 | removeSpikes (Wavelet, Wavelet);
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168 |
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169 | // Apply a sliding average Filter to the raw data ... it looks nicer for plotting
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170 | // :-) This filter is defined in fir.h and .c, even though this particular Filter is not
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171 | // a FIR filter, since it filters using past and future of a certain sample.
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172 | // The filter width is 2*4+1=9 slices.
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173 | sliding_avg(Wavelet, Wavelet, 4);
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174 |
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175 |
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176 | if ( Debug ){
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177 | hWavelet->GetXaxis()->Set(Wavelet.size() , -0.5 , Wavelet.size()-0.5);
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178 |
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179 | for ( unsigned int sl = 0; sl < RegionOfInterest; sl++){
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180 | hWavelet->SetBinContent(sl, Wavelet[sl]);
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181 | }
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182 |
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183 | cExample->cd(1);
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184 | gPad->SetGrid();
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185 | hWavelet->Draw();
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186 | cExample->Update();
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187 |
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188 | //Process gui events asynchronously during input
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189 | TTimer timer("gSystem->ProcessEvents();", 50, kFALSE);
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190 | timer.TurnOn();
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191 | TString input = Getline("Type 'q' to exit, <return> to go on: ");
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192 | timer.TurnOff();
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193 | if (input=="q\n") {
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194 | breakout=true;
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195 | }
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196 | }// end of if(spikeDebug)
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197 |
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198 | if (breakout)
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199 | break;
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200 | } // end of loop over pixels
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201 |
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202 | if (breakout)
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203 | break;
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204 | } // end of loop over pixels
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205 |
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206 | if (ProduceGraphic){
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207 | cExample = new TCanvas("cExample ","An Example TCanvas",10,10,400,400);
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208 | hWavelet->Draw();
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209 | cExample->Modified();
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210 | cExample->Update();
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211 | }
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212 | SaveHistograms( OutRootFileName );
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213 | return( 0 );
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214 | }
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215 |
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216 | // booking and parameter settings for all histos
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217 | void BookHistos(){
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218 |
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219 | hWavelet = new TH1F("hWavelet", "to be changed", Wavelet.size(), -0.5, Wavelet.size()-0.5 );
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220 | hWavelet->GetXaxis()->SetTitle( "time in slices" );
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221 | hWavelet->GetYaxis()->SetTitle( "amplitude in mV" );
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222 | hList.Add(hWavelet);
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223 | }
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224 |
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225 | void SaveHistograms( const char * loc_fname){
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226 | // create the histogram file (replace if already existing)
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227 | TFile tf( loc_fname, "RECREATE");
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228 |
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229 | hList.Write(); // write the major histograms into the top level directory
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230 |
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231 | tf.Close(); // close the file
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232 | }
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