1 | #!/usr/bin/python -tt
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2 | # ********************************
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3 | # Test script for the CalFits class
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4 | #
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5 | # written by Thomas Kraehenbuehl, ETH Zurich
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6 | # tpk@phys.ethz.ch, +41 44 633 3973
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7 | # April 2012
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8 | # ********************************
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9 | #
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10 | # modified and adapted py Patrick Vogler
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11 | #
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12 | # ################################
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13 | from ROOT import gSystem
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14 | gSystem.Load("calfactfits_h.so") # according to new naming scheme
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15 | from ROOT import *
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16 |
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17 | import time
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18 |
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19 | # c1 = TCanvas( 'c1', 'Example', 200, 10, 700, 500 )
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20 | # hpx = TH1F( 'hpx', 'px', 500,-50, 450 )
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21 |
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22 |
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23 |
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24 | outfile = open(r'LP_template.txt','w')
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25 |
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26 |
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27 |
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28 | #############
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29 | #
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30 | # write to the file
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31 | # outfile.write('The first number is: ' + str(num0) + '\n')
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32 | # outfile.write('The second number is: ' + str(num1) + '\n')
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33 | # outfile.write('The third number is: ' + str(num2) + '\n')
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34 | # outfile.write('The last number is: ' + str(num3) + '\n')
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35 | #
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36 | # outfile.write('The sum is: ' + str(num0 + num1 + num2 + num3) + '\n')
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37 | # outfile.write('The product is: ' + str(num0 * num1 * num2 * num3) + '\n')
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38 |
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39 | # close the file
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40 |
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41 | ################
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42 |
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43 |
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44 |
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45 |
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46 |
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47 |
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48 |
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49 | #define filenames
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50 |
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51 | # 2012 04 17
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52 | #calibfilename = '/fact/raw/2012/04/17/20120417_003.drs.fits.gz' # NROI 300, pedestal
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53 | #calibfilename = '/fact/raw/2012/04/17/20120417_033.drs.fits.gz' # NROI 300, pedestal
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54 | calibfilename = '/fact/raw/2012/06/01/20120601_013.drs.fits.gz' # NROI 300, pedestal
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55 |
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56 | #datafilename = '/fact/raw/2012/04/17/20120417_015.fits.gz' # NROI 300, LP_ext
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57 | #datafilename = '/fact/raw/2012/04/17/20120417_021.fits.gz' # NROI 300, LP_ext
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58 | #datafilename = '/fact/raw/2012/04/17/20120417_036.fits.gz' # NROI 300, LP_ext
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59 | #datafilename = '/fact/raw/2012/04/17/20120417_042.fits.gz' # NROI 300, LP_ext
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60 |
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61 | datafilename = '/fact/raw/2012/06/01/20120601_017.fits.gz' # NROI 300, 5 minutes physics data with
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62 | # interleaved LP_ext
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63 |
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64 | import numpy as np
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65 | from scipy import weave
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66 | from scipy.weave import converters
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67 |
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68 | from plotters import Plotter # ADC display
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69 | #from plotters import CamPlotter # event display
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70 | #from drs_spikes import DRSSpikes
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71 |
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72 |
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73 | print "Testing object creation: "
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74 | caltest = CalFactFits(datafilename, calibfilename)
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75 | npcalevent = np.empty( caltest.npix * caltest.nroi, np.float64) #.reshape(caltest.npix ,caltest.nroi)
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76 | caltest.SetNpcaldataPtr(npcalevent)
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77 |
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78 |
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79 | numroi = np.int64(caltest.nroi)
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80 | numpix = np.int64(caltest.npix)
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81 | numevents = np.int64(caltest.nevents)
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82 |
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83 | num_LP_ev = 0 # number of ext Lightpulser events
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84 | num_ped = 0 # number of pedestal events
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85 |
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86 |
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87 | print "Common variables run information: "
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88 | print "ROI: ", numroi
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89 | print "#Pix: ", numpix
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90 | print "Number of events: ", numevents
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91 | print
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92 |
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93 |
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94 | event = np.zeros((numpix, numroi)) # create an array to store an event in the format numpix * numroi (2-dim array)
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95 |
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96 | run_average = np.zeros((numpix, numroi)) # create an array to store the "average event" of a run
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97 |
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98 | data_average_run = np.zeros(numroi)
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99 |
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100 |
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101 |
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102 | time_start = time.clock()
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103 | print "start loop", time_start
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104 |
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105 |
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106 | while caltest.GetCalEvent(): # Loop ueber alle events
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107 | # print npcalevent ## Daten, Array 1 dim Laenge caltest.npix * caltest.nroi 1 Event
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108 |
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109 |
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110 | if ((caltest.event_triggertype > 256) and (caltest.event_triggertype < 512)): #ext LP event
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111 | print 'event id:', caltest.event_id, ' Trigger Type:', caltest.event_triggertype
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112 | num_LP_ev = num_LP_ev + 1
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113 | event = np.reshape(npcalevent, (numpix, -1)) # bring the event the shape numpix * numroi (2-dim array)
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114 | run_average += event
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115 |
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116 | # if(num_LP_ev==50): # just for testing, not to read the whole file
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117 | # break
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118 |
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119 | time_stop = time.clock()
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120 | print "loop finished", time_stop
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121 |
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122 | print "Looped ... "
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123 |
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124 | for i in range (0, (numpix - 1) ):
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125 |
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126 | # if (()and()and()and()and()and())
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127 |
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128 | data_average_run += run_average[i]
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129 |
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130 |
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131 | print "Looped second loop "
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132 |
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133 |
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134 | del caltest
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135 | print "caltest deleted "
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136 |
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137 |
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138 |
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139 | print "Common variables run information: "
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140 | print "ROI: ", numroi
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141 | print "#Pix: ", numpix
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142 | print "Number of events: ", numevents
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143 | print "Number of external Lightpulser events: ", num_LP_ev
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144 | print
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145 |
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146 |
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147 | #####################################################################################################################
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148 | #make a Plotter class ... this is an easy way for plotting ... but there are
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149 | # many was to plot data ... without this class ... it was written for convenience, but there is no strong reason to use it...
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150 | #myplotter = Plotter('titel of the plot', xlabel='time in slices', ylabel='amplitude calibrated data ... in mV')
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151 |
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152 | myplotter2 = Plotter('titel of the plot', xlabel='time in slices', ylabel='amplitude calibrated data ... in mV')
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153 |
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154 | ###################################################################################################################
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155 |
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156 | myplotter2( data_average_run / (numpix * num_LP_ev) , 'average signal (all pixel) over the whole run' )
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157 |
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158 |
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159 |
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160 | outfile.write('This file contains a template of the Lightpulser pulse, i.e. an average of one file. \n')
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161 | outfile.write('data file: ' + str(datafilename) + '\n')
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162 | outfile.write('DRS calib file: ' + str(calibfilename) + '\n')
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163 | outfile.write('Number of Lightpulser events in this run: ' + str(num_LP_ev) + '\n')
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164 | outfile.write('ROI: ' + str(numroi) + '\n')
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165 | outfile.write('\n')
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166 | outfile.write('slice signal [mV] \n')
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167 | outfile.write('\n')
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168 |
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169 |
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170 | for k in range(0,(numroi)):
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171 | outfile.write( str(k) + ' ' + str((data_average_run[k])/(10 * num_LP_ev)) + '\n')
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172 |
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173 | outfile.close
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174 |
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175 | print
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176 | print "The loop over the whole file took",(time_stop-time_start),"seconds to complete."
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177 | print "processing rate: ",(numevents/(time_stop-time_start)),"events per second"
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178 |
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179 |
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180 | answer = raw_input('type "quit" to quit ')
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181 | while not 'quit' in answer:
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182 | answer = raw_input('type "quit" to quit ')
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