272 lines
8.7 KiB
Python
Executable File
272 lines
8.7 KiB
Python
Executable File
#!/usr/bin/python3
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import os
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import subprocess
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import datetime
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import csv
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cmd0Str = "-v 2c -m +WIENER-CRATE-MIB -c guru 128.186.111.101 "
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def SendCmd(option,cmd):
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if option == 0 :
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cmdStr = "snmpget " + cmd0Str + cmd
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elif option == 1:
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cmdStr = "snmpset " + cmd0Str + cmd
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elif option == 2:
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cmdStr = "snmpwalk " + cmd0Str + cmd
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else :
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cmdStr = "echo option: 0 - get, 1 - set, 2 - walk"
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#print(cmdStr)
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result = str(subprocess.check_output(cmdStr, shell=True))
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return result.lstrip('b\'').rstrip('\'').rstrip('\n')
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#======== Get settings
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def GetHV(ch):
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haha = SendCmd(0, "outputVoltage.u" + str(ch))
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aa = haha.find('Float:')
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return float(haha[aa+6:-3].strip())
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def GetCurrent(ch):
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haha = SendCmd(0, "outputCurrent.u" + str(ch))
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aa = haha.find('Float:')
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return float(haha[aa+6:-3].strip())
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def GetOutputHV(ch):
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haha = SendCmd(0, "outputMeasurementSenseVoltage.u" + str(ch))
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aa = haha.find('Float:')
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return float(haha[aa+6:-3].strip())
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def GetLI(ch):
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haha = SendCmd(0, "outputMeasurementCurrent.u" + str(ch))
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aa = haha.find('Float:')
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return float(haha[aa+6:-3].strip())
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def IsHVOn(ch):
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return SendCmd(0, "outputSwitch.u"+str(ch))
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def GetHVRiseRate(ch):
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haha = SendCmd(0, "outputVoltageRiseRate.u" + str(ch))
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aa = haha.find('Float:')
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return float(haha[aa+6:-5].strip())
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def GetHVFallRate(ch):
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haha = SendCmd(0, "outputVoltageFallRate.u" + str(ch))
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aa = haha.find('Float:')
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return float(haha[aa+6:-5].strip())
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#======== Get All channel Setting using snmp walk
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def GetChList():
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haha = SendCmd(2, "outputName")
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kaka = []
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for k in haha.split('WIENER-CRATE-MIB::outputName.'):
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if len(k) > 0 :
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aa = k.find("=")
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k = k[0:aa].strip().lstrip('u')
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kaka.append(int(k))
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return kaka
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def GetAllHV():
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haha = SendCmd(2, "outputVoltage")
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kaka = []
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for k in haha.split('WIENER-CRATE-MIB::outputVoltage'):
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if len(k) > 0 :
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aa = k.find("Float:")
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k = k[aa+6: -3].strip()
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kaka.append(float(k))
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return kaka
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def GetAllCurrent():
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haha = SendCmd(2, "outputCurrent")
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kaka = []
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for k in haha.split('WIENER-CRATE-MIB::outputCurrent'):
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if len(k) > 0 :
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aa = k.find("Float:")
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k = k[aa+6: -3].strip()
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kaka.append(float(k))
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return kaka
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def GetAllOutputHV():
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haha = SendCmd(2, "outputMeasurementSenseVoltage")
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kaka = []
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for k in haha.split('WIENER-CRATE-MIB::outputMeasurementSenseVoltage'):
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if len(k) > 0 :
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aa = k.find("Float:")
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k = k[aa+6: -3].strip()
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kaka.append(float(k))
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return kaka
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def GetAllLC():
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haha = SendCmd(2, "outputMeasurementCurrent")
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kaka = []
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for k in haha.split('WIENER-CRATE-MIB::outputMeasurementCurrent'):
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if len(k) > 0 :
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aa = k.find("Float:")
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k = k[aa+6: -3].strip()
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kaka.append(float(k))
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return kaka
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#======== Set Settings
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def SetHV(ch, val):
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return SendCmd(1, "outputVoltage.u" + str(ch) + " F " + str(val))
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def SetCurrent(ch, val):
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return SendCmd(1, "outputCurrent.u" + str(ch) + " F " + str(val))
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def SwitchOnHV(ch, onOff):
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return SendCmd(1, "outputSwitch.u" + str(ch) + " i " + str(onOff))
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def SetHVRiseRate(ch, rate):
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return SendCmd(1, "outputVoltageRiseRate.u" + str(ch) + " F " + str(rate))
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def SetHVFallRate(ch, rate):
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return SendCmd(1, "outputVoltageFallRate.u" + str(ch) + " F " + str(rate))
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#===================== SandBox
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#print( GetOutputHV(0) )
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#print( GetLI(0) )
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#print( GetHVRiseRate(0) )
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#print( GetHVFallRate(0) )
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#
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#print( SendCmd(1, "outputCurrent.u1 F 0.0005"))
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#print( SendCmd(2, "outputCurrent"))
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#hvList = GetAllOutputHV()
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#print(hvList)
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#===================== GUI
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import PySimpleGUI as sg
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#gui.theme('DarkAmber')
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header = ["name", "HV [V]", "Current [mA]"]
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chList = GetChList()
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hvList = GetAllHV() # get all V
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iList = GetAllCurrent() # get all current
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outVList = GetAllOutputHV()
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outIList = GetAllLC()
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nChannel = len(chList)
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updateTime = 5000
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fileName = ''
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layout = [
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[
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sg.Text("refresh period [ms] :", size = 25, justification = "right"),
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sg.Input(updateTime, size = 8, justification = "right", enable_events=True, key=("-Refresh-"))
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],
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[
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sg.Text("Name", size = 8, justification = "center" ),
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sg.Text("CH", size = 4, justification = "center" ),
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sg.Text("On/Off", size = 6, justification = "center"),
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sg.Text("Set V [V]", size = 8, justification = "center" ),
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sg.Text("Set I [mA]", size = 9, justification = "center" ),
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sg.Text("Out V [V]", size = 8, justification = "center" ),
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sg.Text("Out I [uA]", size = 10, justification = "center" )
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]]
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for i in range(0, nChannel):
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layout.append([ sg.Input(default_text='', size = 8, justification = "left", key=("n%d" % chList[i])),
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sg.Text("u"+str(chList[i]), size = 4, justification = "center" ),
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sg.Checkbox('', size = 3, enable_events = True, key=("c%d" % chList[i])),
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sg.Input(default_text=("%.3f" % hvList[i]), size = 8, justification = "right", enable_events=True, key=("v%d" % chList[i]) ),
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sg.Input(default_text=("%.3f" % (iList[i]*1000)), size = 9, justification = "right", enable_events=True, key=("i%d" % chList[i]) ),
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sg.Input(default_text=("%.3f" % outVList[i]), size = 8, justification = "right", enable_events=True, key=("a%d" % chList[i]), readonly = True ),
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sg.Input(default_text=("%.3f" % (outIList[i]*1e6)), size = 10, justification = "right", enable_events=True, key=("b%d" % chList[i]), readonly = True ),
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])
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layout.append([sg.FileSaveAs('Save As', target = '-Save-', initial_folder='~', file_types = (('csv file','*.csv'),)),
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sg.FileBrowse('Load', target = '-Load-', initial_folder='~', file_types = (('csv file','*.csv'),)),
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sg.Input(default_text=fileName, expand_x = True, justification = "left", readonly = True, enable_events=True, key="-Save-" ),
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sg.Input('', visible = False, enable_events=True, key="-Load-" )
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])
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window = sg.Window('Iseg HV Control', layout, finalize = True, keep_on_top = True)
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for i in range(0, nChannel):
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window[("v%d" % chList[i])].bind("<Return>", "_Enter")
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window[("i%d" % chList[i])].bind("<Return>", "_Enter")
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window[("v%d" % chList[i])].bind("<KP_Enter>", "_Enter")
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window[("i%d" % chList[i])].bind("<KP_Enter>", "_Enter")
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# Event Loop to process "events" and get the "values" of the inputs
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while True:
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event, values = window.read(timeout = updateTime, timeout_key = "_TIMEOUT_") ## this pause for 20 sec and wait for event
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#print(event)
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#print(values)
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#print(datetime.datetime.now())
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if event == "-Refresh-" :
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updateTime = int(window[event].get());
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if event in (None, 'Exit'):
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break
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if event[0:1] == 'c' :
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ID = event[1:]
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SwitchOnHV(int(ID), int(window[event].get()))
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if event == '-Save-' :
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fileName = values["Save As"]
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outfile = open(fileName, "w")
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csv_writer = csv.writer(outfile)
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for i in range(0, nChannel):
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papap = [window[("n%d" % chList[i])].get(), "u"+str(chList[i]), window[("v%d" % chList[i])].get(), window[("i%d" % chList[i])].get()]
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csv_writer.writerow( papap )
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outfile.close();
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if event == "-Load-" :
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fileName = window["-Load-"].get()
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window['-Save-'].update(fileName)
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infile = open(fileName, "r")
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csv_reader = csv.reader(infile)
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i = 0
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for row in csv_reader:
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window[("n%d" % chList[i])].update(row[0])
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window[("v%d" % chList[i])].update(row[2])
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window[("i%d" % chList[i])].update(row[3])
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SetHV(chList[i], float(row[2]))
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SetCurrent(chList[i], float(row[3])/1000)
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i += 1
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haha = event.find('_Enter')
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if haha > 0 :
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ID = event[:haha]
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ch = int(ID[1:])
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if event[0:1] == 'v' :
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SetHV(ch, float(window[ID].get()))
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window[ID].update("%.3f" % GetHV(ch))
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if event[0:1] == 'i' :
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SetCurrent(ch, float(window[ID].get())/1000.)
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window[ID].update("%.3f" % (GetCurrent(ch)*1000))
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if event == "_TIMEOUT_" :
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#hvList = GetAllHV() # get all V
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#iList = GetAllCurrent() # get all current
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outVList = GetAllOutputHV()
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outIList = GetAllLC()
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tempFile = open("temp.dat", "w")
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for i in range(0, nChannel):
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#window[("v%d" % chList[i])].update("%.3f" % hvList[i])
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#window[("i%d" % chList[i])].update("%.3f" % (iList[i]*1000))
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window[("a%d" % chList[i])].update("%.3f" % outVList[i])
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window[("b%d" % chList[i])].update("%.3f" % (outIList[i]*1e6))
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#==== To DataBase
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tempFile.write("Voltage,Ch=%d value=%f\n" % (chList[i], outVList[i]))
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tempFile.write("LeakageCurrent,Ch=%d value=%f\n" % (chList[i], outIList[i]))
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tempFile.close()
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os.system("curl -XPOST http://128.186.111.107:8086/write?db=testing --data-binary @temp.dat")
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window.close()
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