400 lines
14 KiB
Python
400 lines
14 KiB
Python
#!/usr/bin/env python
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import time
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from pycomm.ab_comm.clx import Driver as ClxDriver
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from pycomm_helper.tag import Tag
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from pycomm_helper.alarm import AnalogAlarm, bitAlarm
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import traceback
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import json
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import requests
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# DEFAULTS
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API_METHOD = "https"
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API_ADDRESS = "localhost"
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API_PORT = 5000
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API_BASE_URL = "{}://{}:{}/api".format(API_METHOD, API_ADDRESS, API_PORT)
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scan_rate = 30 # seconds
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save_all = "test" # use True, False, or any string
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plc_handshake_tags = {}
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last_handshake_time = 0
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# GLOBAL VARIABLES
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device_types = {}
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devices = []
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main_plc = {}
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# ---------- MAP FUNCTIONS ---------- #
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maps = {
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'modeMap': {
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0: "Error",
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1: "Auto",
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2: "POC",
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3: "Timer",
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4: "Manual",
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5: "DH PID"
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},
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'card_type_map': {
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0: "Normal",
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1: "Shutdown",
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2: "Alarm",
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3: "Startup",
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4: "Low Fillage"
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},
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'statusMap': {
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0: 'Stopped',
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1: 'Running',
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2: 'Pumped Off',
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3: 'Faulted',
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4: 'Starting',
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5: 'Recovering',
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100: 'Read Error',
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1000: 'PLC Error',
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9999: 'No Response'
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},
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'conditionMap': {
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20: "Low",
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21: "High",
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24: "LoLo",
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25: "HiHi",
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32: "Input Failure",
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34: "Configuration Error",
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16: "Failure to Stop",
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17: "Failure to Start",
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18: "Drive Fault"
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},
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None: None,
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'null': None
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}
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# ---------- TAGS ---------- #
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tag_list = {}
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bit_tags = {}
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safety_tags = {}
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custom_tags = {}
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class Status(Tag):
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def sendToDB(self):
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global API_BASE_URL
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post_data = {'run_status': self.value}
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r = requests.post('{}/run_status_log'.format(API_BASE_URL), data=json.dumps(post_data), headers={'Content-Type': 'application/json'}, verify=False)
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resp = json.loads(r.text)
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print("Stored {} for Run Status at {}".format(resp['run_status'], self.name, resp['created_on']))
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self.last_send_time = time.time()
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def readConfig():
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global API_BASE_URL, scan_rate, save_all
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req = requests.get('{}/configs'.format(API_BASE_URL), verify=False)
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res = json.loads(req.text)['objects']
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if len(res) > 0:
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for x in res:
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if x['parameter'] == "scan_rate":
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try:
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scan_rate = int(x['val'])
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except Exception as e:
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print("Error setting scan_rate to {}".format(x['val']))
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elif x['parameter'] == "save_all":
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try:
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if x['val'].lower() == 'true':
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save_all = True
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elif x['val'].lower() == 'true':
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save_all = False
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else:
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print("Invalid save_all parameter: {}".format(x['val']))
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except Exception as e:
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print("Error setting save_all to {}".format(x['val']))
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else:
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print("No configuration data found.")
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return True
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def getDeviceTypes():
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global API_BASE_URL
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req = requests.get('{}/device_types'.format(API_BASE_URL), verify=False)
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res = json.loads(req.text)['objects']
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device_types = {}
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if len(res) > 0:
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for x in res:
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device_types[x['_id']] = x['device_type']
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return device_types
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else:
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print("No device type data found.")
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return False
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def readTag(addr, tag):
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c = ClxDriver()
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if c.open(addr):
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try:
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v = c.read_tag(tag)
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return v
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except Exception:
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print("ERROR RETRIEVING TAG: {}".format(tag))
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c.close()
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traceback.print_exc()
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c.close()
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def readArray(addr, arr, length):
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c = ClxDriver()
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if c.open(addr):
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try:
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v = c.read_array(arr, length)
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return map(lambda x: x[1], v)
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except Exception:
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print("ERROR RETRIEVING ARRAY: {}".format(arr))
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err = c.get_status()
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c.close()
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print(err)
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traceback.print_exc()
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c.close()
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def setupTags():
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global device_types, API_BASE_URL, tag_list, safety_tags, bit_tags
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# try:
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# Get tags stored in database
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get_tag_request = requests.get('{}/tags'.format(API_BASE_URL), verify=False)
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tags = json.loads(get_tag_request.text)['objects']
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for t in tags:
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tag_list[t['name']] = Tag(t['name'], t['tag'], t['_id'], t['data_type'], t['change_threshold'], t['guarantee_sec'], mapFn=maps[t['map_function']], ip_address=t['device']['address'], device_type=device_types[t['device']['device_type_id']])
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get_event_request = requests.get('{}/event_configs'.format(API_BASE_URL), verify=False)
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events = json.loads(get_event_request.text)['objects']
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for e in events:
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if e['event_type'] == 'analog':
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safety_tags[e['name']] = AnalogAlarm(e['name'], e['tag'], e['_id'], ip_address=e['device']['address'], device_type=device_types[e['device']['device_type_id']])
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elif e['event_type'] == 'bit':
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bit_tags[e['name']] = bitAlarm(e['name'], e['tag'], e['condition'], e['_id'], ip_address=e['device']['address'], device_type=device_types[e['device']['device_type_id']])
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return True
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# except Exception as e:
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# print("Error getting tags: {}".format(e))
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# return False
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def getMainPLC():
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global API_BASE_URL
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get_plc_request = requests.get('{}/devices'.format(API_BASE_URL), verify=False)
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return json.loads(get_plc_request.text)['objects'][0]
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def readGaugeOffData():
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global main_plc
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try:
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gaugeOffData = {
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'spm_average': readTag(main_plc['address'], 'GAUGEOFF_Average_SPM')[0],
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'downhole_gross_stroke_average': readTag(main_plc['address'], 'GAUGEOFF_Downhole_GrossStroke')[0],
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'downhole_net_stroke_average': readTag(main_plc['address'], 'GAUGEOFF_Downhole_NetStroke')[0],
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'electricity_cost_total': readTag(main_plc['address'], 'GAUGEOFF_Electricity_Cost')[0],
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'fluid_level_average': readTag(main_plc['address'], 'GAUGEOFF_Fluid_Above_Pump')[0],
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'full_card_production_total': readTag(main_plc['address'], 'GAUGEOFF_Full_Card_Production')[0],
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'inflow_rate_average': readTag(main_plc['address'], 'GAUGEOFF_Inflow_Rate')[0],
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'kWh_used_total': readTag(main_plc['address'], 'GAUGEOFF_kWh')[0],
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'kWh_regen_total': readTag(main_plc['address'], 'GAUGEOFF_kWh_Regen')[0],
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'lifting_cost_average': readTag(main_plc['address'], 'GAUGEOFF_Lifting_Cost')[0],
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'peak_pr_load': readTag(main_plc['address'], 'GAUGEOFF_Max_Load')[0],
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'min_pr_load': readTag(main_plc['address'], 'GAUGEOFF_Min_Load')[0],
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'percent_run': readTag(main_plc['address'], 'GAUGEOFF_Percent_Run')[0],
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'polished_rod_hp_average': readTag(main_plc['address'], 'GAUGEOFF_Polished_Rod_HP')[0],
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'pump_hp_average': readTag(main_plc['address'], 'GAUGEOFF_Production_Calculated')[0],
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'production_total': readTag(main_plc['address'], 'GAUGEOFF_Pump_HP')[0],
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'pump_intake_pressure_average': readTag(main_plc['address'], 'GAUGEOFF_Pump_Intake_Pressure')[0],
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'surface_stroke_length_average': readTag(main_plc['address'], 'GAUGEOFF_Surface_StrokeLength')[0],
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'tubing_movement_average': readTag(main_plc['address'], 'GAUGEOFF_Tubing_Movement')[0]
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}
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except Exception as e:
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print("Could not get all gauge off tags: {}".format(e))
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return False
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post_req = requests.post(API_BASE_URL + "/gauge_off", data=json.dumps(gaugeOffData), headers={'Content-Type': 'application/json'}, verify=False)
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try:
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post_res_id = json.loads(post_req.text)['_id']
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return True
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except Exception as e:
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print("Did not get a valid JSON object back, got: {}".format(post_req.text))
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return False
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def evalTapers():
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return True
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# TODO: Read taper data
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# global main_plc
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# ts = time.time()
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# numTapers = int(readTag(main_plc['address'], 'Card_Current.Params.Num_Tapers')[0])
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# for t in range(1, numTapers + 1):
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# taper_length = readTag(main_plc['address'], 'Taper.Taper[{}].Setup.Length'.format(t))[0]
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# taper_diameter = readTag(main_plc['address'], 'Taper.Taper[{}].Setup.Diameter'.format(t))[0]
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# taper_material = readTag(main_plc['address'], 'Taper.Taper[{}].Setup.Material'.format(t))[0]
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# if (taper_material == 1):
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# taper_material = "Steel"
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# elif (taper_material == 2):
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# taper_material = "Fiberglass"
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#
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# tStr = "{{'taper':{}, 'length': {}, 'diameter': {}, 'material':'{}'}}".format(t, taper_length, taper_diameter, taper_material)
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# tQuery = 'INSERT INTO well_config (tstamp, type, val) VALUES ({}, "taper", "{}")'.format(ts, tStr)
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# print(tQuery)
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# con.connect()
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# cur = con.cursor()
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# cur.execute(tQuery)
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# con.commit()
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#
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# pump_diameter = readTag(main_plc['address'], 'UnitConfig.Pump_Diameter')[0]
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# cfgQuery = "INSERT INTO well_config (tstamp, type, val) VALUES ({}, 'pump_diameter', '{}')".format(ts, pump_diameter)
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# con.connect()
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# cur = con.cursor()
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# cur.execute(cfgQuery)
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# con.commit()
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# print("TAPER DATA READ!")
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# return True
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def readPoints():
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global main_plc
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num_points = readTag(main_plc['address'], "Card_Past[1].Num_Points")[0]
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surf_pos = readArray(main_plc['address'], "Card_Past[1].Surface_Position", num_points + 1)[1:]
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surf_pos.append(surf_pos[0])
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surf_lod = readArray(main_plc['address'], "Card_Past[1].Surface_Load", num_points + 1)[1:]
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surf_lod.append(surf_lod[0])
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down_pos = readArray(main_plc['address'], "Card_Past[1].Downhole_Position", num_points + 1)[1:]
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down_pos.append(down_pos[0])
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down_lod = readArray(main_plc['address'], "Card_Past[1].Downhole_Load", num_points + 1)[1:]
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down_lod.append(down_lod[0])
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return([surf_pos, surf_lod, down_pos, down_lod])
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def checkCardDataAndStore(last_card_id):
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'''
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Check to see if a new stroke has been made and stores the stroke in the database.
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Returns the current ID of the card
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'''
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global maps, main_plc, API_BASE_URL
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try:
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current_card_id = readTag(main_plc['address'], 'Card_Past[1].ID')[0]
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if not (last_card_id == current_card_id):
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[surface_position, surface_load, downhole_position, downhole_load] = readPoints()
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card_type = maps['card_type_map'][readTag(main_plc['address'], 'Card_Past[1].Card_Type')[0]]
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card_data = {
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'stroke_number': current_card_id,
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'stroke_type': card_type,
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'surf_pos': str(surface_position),
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'surf_lod': str(surface_load),
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'down_pos': str(downhole_position),
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'down_lod': str(downhole_load)
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}
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r = requests.post('{}/cards'.format(API_BASE_URL), data=json.dumps(card_data), headers={'Content-Type': 'application/json'}, verify=False)
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resp = json.loads(r.text)
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print("CARD NUMBER {} READ AT {}!".format(resp["stroke_number"], resp['created_on']))
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last_card_id = current_card_id
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return current_card_id
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else:
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return last_card_id
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except Exception as e:
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print("Exception during checkCardDataAndStore: {}".format(e))
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return last_card_id
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def main():
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global main_plc, device_types
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main_plc = getMainPLC()
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rc_attempts = 0
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rc = readConfig()
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while not rc and rc_attempts < 10:
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rc = readConfig()
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device_type_attempts = 0
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device_types = getDeviceTypes()
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while not device_types and attempts < 10:
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device_types = getDeviceTypes()
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if setupTags():
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pass
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else:
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print("Unable to read tags... Restarting.")
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main()
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status = Status('run_status', 'Pump.Run_Status', 0, 'STRING', 0, 3600, mapFn=maps['statusMap'], ip_address=main_plc['address'], device_type=device_types[main_plc['device_type']['_id']])
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read_tapers = False
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already_gauged_off = False
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already_entered_well_test = False
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last_card_id = 0
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last_status = ""
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statusChanged = False
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while True:
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try:
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current_status = status.read("test")
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statusChanged = not (current_status == last_status)
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if statusChanged:
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last_status = current_status
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last_card_id = checkCardDataAndStore(last_card_id)
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# read tags in tag_list and store if values require saving
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for t in tag_list:
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tag = tag_list[t]
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tag.read(save_all)
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# check if taper data has changed and store taper parameters if it has
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update_taper = readTag(main_plc['address'], "Write_Tapers")[0] > 0
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if (update_taper == 0):
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if read_tapers:
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read_tapers = False
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print("Update Tapers = False")
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if (update_taper and (not read_tapers)):
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print("reading taper file")
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read_tapers = evalTapers()
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# store gauge-off data once it is set
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gauge_off = readTag(main_plc['address'], "Gauge_Off_Command")[0]
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if (gauge_off == 0):
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if already_gauged_off:
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already_gauged_off = False
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print("Already gauged off... Setting gauge_off to False")
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if (gauge_off and (not already_gauged_off)):
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print("Gauging off...")
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already_gauged_off = readGaugeOffData()
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print("Gauged off!")
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#
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well_test_entered = readTag(main_plc['address'], "Well_Test.Test_Submit")[0] > 0
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if well_test_entered:
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if already_entered_well_test:
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already_entered_well_test = False
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print("Already entered well Test... Setting well_test_entered to False")
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if (well_test_entered and (not already_entered_well_test)):
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for wtest in welltest_tags:
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w = welltest_tags[wtest]
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w.read(True)
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already_entered_well_test = True
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print("Well Test Stored!")
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###################
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# ALARMS & EVENTS #
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###################
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for t in safety_tags:
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safety_tags[t].checkStatus(last_card_id)
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for b in bit_tags:
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bit_tags[b].checkStatus(last_card_id)
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time.sleep(.20)
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except Exception as e:
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print("Error during loop: {}".format(e))
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traceback.print_exc()
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if __name__ == '__main__':
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main()
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