| 1 | #!/usr/bin/python -tti
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| 2 |
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| 3 | from pylab import *
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| 4 | import numpy as np
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| 5 | from scipy import *
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| 6 | from matplotlib.patches import RegularPolygon
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| 7 | from factdimserver import *
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| 8 |
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| 9 |
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| 10 | class EventBrowser:
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| 11 |
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| 12 | def __init__(self, run, filename):
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| 13 |
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| 14 | self.LoadDetector("")
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| 15 | self.run = run
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| 16 | self.event = run.next()
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| 17 | self.nevents = run.nevents
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| 18 | self.fig = figure(figsize =(10, 8))
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| 19 | self.ax = self.fig.add_subplot(111)
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| 20 | self.ax.set_axis_off()
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| 21 | self.axz, kk = mpl.colorbar.make_axes(self.ax, orientation='vertical')
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| 22 | self.Plot()
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| 23 | # Create a new timer object. Set the interval 1000 milliseconds (1000 is default)
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| 24 | # and tell the timer what function should be called.
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| 25 | self.timer = fig.canvas.new_timer(interval=1000)
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| 26 | self.timer.add_callback(self.timer_callback)
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| 27 | self.timer.start()
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| 28 | self.fig.canvas.mpl_connect('pick_event', self.onpick)
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| 29 | self.fig.canvas.mpl_connect('key_press_event', self.onpress)
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| 30 |
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| 31 | def timer_callback(self):
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| 32 | self.adc_data = get_fad_adc()
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| 33 | self.cam_data = get_fad_cams()
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| 34 |
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| 35 | def LoadDetector(self,filename):
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| 36 | if filename == "":
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| 37 | filename = "FACTmap111030.txt"
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| 38 | file = open(filename)
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| 39 | xpixel = []
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| 40 | ypixel = []
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| 41 | idpixel = []
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| 42 |
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| 43 | for lines in file:
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| 44 | if lines[0] != '#':
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| 45 | softid = int(lines.split()[0])
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| 46 | idpixel.append(softid)
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| 47 | x = -1*float(lines.split()[9])
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| 48 | y = float(lines.split()[8])
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| 49 | if softid == 1438 or softid == 1439:
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| 50 | x = -1 * x
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| 51 | xpixel.append(x)
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| 52 | ypixel.append(y)
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| 53 |
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| 54 |
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| 55 | self.xpixel = xpixel
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| 56 | self.ypixel = ypixel
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| 57 | self.idpixel = idpixel
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| 58 |
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| 59 | def Plot(self):
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| 60 | ww, dummy = self.max_finder(self.despiker(self.event['data']))
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| 61 | print ww
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| 62 | self.ww = ww
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| 63 | wmax = ww.max()
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| 64 | cmap = plt.cm.spectral
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| 65 | for x, y, w in zip(self.xpixel, self.ypixel, ww):
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| 66 | self.ax.add_artist(RegularPolygon([x, y], 6, 0.6, 0, facecolor=cmap(w),edgecolor='black',linewidth=0.2))
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| 67 | self.ax.plot(self.xpixel, self.ypixel, 'h', color="white", ms=12, visible=False, picker=10)
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| 68 | self.ax.set_xlim(-21, 21)
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| 69 | self.ax.set_ylim(-21, 21)
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| 70 | self.axz.cla()
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| 71 |
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| 72 | #Create axes for the color bar
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| 73 | norm = mpl.colors.Normalize(vmin=0, vmax=wmax)
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| 74 | cb1 = mpl.colorbar.ColorbarBase(self.axz, cmap=cmap,
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| 75 | norm=norm,
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| 76 | orientation='vertical')
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| 77 | text = "Event Browser, press 'n' in this window to iterate over the events."
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| 78 | text = text + "\nEvent id: " + str(self.event["event_id"])
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| 79 | text = text + "\nTrigger type: " + str(self.event["trigger_type"])
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| 80 | self.ax.annotate(text, (0.05, 0.05),
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| 81 | xycoords="figure fraction", va="center", ha="left",
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| 82 | bbox=dict(boxstyle="round, pad=1", fc="w"))
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| 83 |
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| 84 | def onpress(self, event):
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| 85 | 'define some key press events'
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| 86 | if event.key in ('q','Q'): sys.exit()
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| 87 | if event.key not in ('n', 'p'): return
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| 88 | if event.key=='n':
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| 89 | self.event = self.run.next()
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| 90 | else:
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| 91 | print "Sorry I cannot go back!"
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| 92 | return
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| 93 | self.ax.cla()
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| 94 | self.ax.set_axis_off()
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| 95 | self.Plot()
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| 96 | self.update()
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| 97 |
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| 98 | def onpick(self, event):
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| 99 |
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| 100 | N = len(event.ind)
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| 101 | if not N: return True
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| 102 |
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| 103 | if N > 1:
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| 104 | print '%i points found!' % N
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| 105 | self.pixelID = event.ind[0]
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| 106 |
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| 107 | # the click locations
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| 108 | x = event.mouseevent.xdata
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| 109 | y = event.mouseevent.ydata
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| 110 | print x, y
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| 111 | self.update()
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| 112 |
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| 113 |
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| 114 | def update(self):
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| 115 |
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| 116 | dataind = self.pixelID
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| 117 |
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| 118 | # put a user function in here!
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| 119 | self.userfunc(dataind)
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| 120 |
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| 121 | self.fig.canvas.draw()
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| 122 | show()
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| 123 |
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| 124 | def userfunc(self,dataind):
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| 125 | print 'No userfunc defined'
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| 126 | pass
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| 127 |
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| 128 |
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| 129 | # *blocking* function to get the FAD ADC data in a nice format
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| 130 | def get_fad_adc():
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| 131 | # a large large tuple:
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| 132 | # 1650 elements carrying header information
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| 133 | offset = 1650
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| 134 | # (1440+160)*Roi floats of real ADC data (DRS calibrated,
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| 135 | # if fad_control has the constants)
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| 136 | raw_data = fad_control.raw_data()
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| 137 | if raw_data == None:
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| 138 | print "fad_control.raw_data() .. timed out"
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| 139 | return None
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| 140 | Roi = int(raw_data[0])
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| 141 | rd = np.array(raw_data[offset:offset+1440*Roi])
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| 142 | rd = raw_data.reshape(1440,Roi)
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| 143 | return rd
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| 144 |
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| 145 |
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| 146 | def get_fad_cams():
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| 147 |
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| 148 | cd = fad_control.event_data()
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| 149 | if cd == None:
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| 150 | print "fad_control.event_data() ... timed out"
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| 151 | return None
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| 152 | cd = np.array(cd)
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| 153 | cd = cd.reshape(1440,4)
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| 154 |
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| 155 | return cd
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| 156 |
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| 157 | if __name__ == '__main__':
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| 158 |
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| 159 |
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| 160 | eb = EventBrowser(run, "")
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| 161 |
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| 162 | def PlotFFT(pixelID):
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| 163 |
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| 164 | fig2 = figure(2, figsize=(10, 8))
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| 165 |
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| 166 | ax1= fig2.add_subplot(311)
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| 167 | ax2 = fig2.add_subplot(312)
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| 168 | ax3 = fig2.add_subplot(313, sharey=ax1, sharex=ax1)
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| 169 |
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| 170 | ax1.cla()
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| 171 | ax2.cla()
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| 172 | ax3.cla()
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| 173 |
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| 174 | ax1.set_title("PixelID "+str(pixelID))
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| 175 |
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| 176 | ax1.grid()
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| 177 | ax2.grid()
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| 178 | ax3.grid()
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| 179 |
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| 180 | x_drs = np.arange(0, 300, 1)
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| 181 |
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| 182 | truncated_x_drs = x_drs[20:-10]
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| 183 |
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| 184 | data = eb.event['data']
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| 185 |
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| 186 | drsdata = data[pixelID]
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| 187 | ax1.plot(x_drs, drsdata, '.:')
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| 188 |
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| 189 | step = zeros(300)
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| 190 | step[:100] = 1
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| 191 | ft = fft(drsdata)
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| 192 |
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| 193 | new_drs = np.arange(-150, 150, 1)
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| 194 |
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| 195 | ftdom = ft.copy()
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| 196 | for i in range(10,290):
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| 197 | ftdom[i]=0
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| 198 | ax2.plot(new_drs, abs(concatenate((ftdom[150:],ftdom[:150]))), marker='o')
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| 199 | invdata = ifft(ftdom)
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| 200 | ax3.plot(x_drs, invdata, '.:')
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| 201 | ax3.plot(x_drs, drsdata, '.:')
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| 202 | ax3.set_xlabel("DRS counts")
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| 203 | fig2.canvas.draw()
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| 204 |
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| 205 |
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| 206 | eb.userfunc = PlotFFT
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| 207 |
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| 208 | show()
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| 209 |
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| 210 |
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| 211 |
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| 212 |
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| 213 |
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| 214 |
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