finalized tb gateway extension

This commit is contained in:
Nico Melone
2022-08-20 10:06:20 -05:00
parent c28194c00f
commit ec7fbae0cb
11 changed files with 529 additions and 76 deletions

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.DS_Store vendored

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{
"mqttDomain": "hp.henrypump.cloud",
"mqttUserName": "testtesttest",
"mqttPassword": "TESTTESTTEST",
"mqttClientId": "test-device",
"publishInterval": 60
}

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@@ -0,0 +1,50 @@
from pycomm3 import LogixDriver, CommError
import minimalmodbus as mbs
class EthernetIP:
def __init__(self, ip="192.168.1.12",type="Micro800" ):
self.driver = LogixDriver(ip)
def read_tag(self, tag):
try:
with self.driver:
resp = self.driver.read(tag)
return resp
except Exception as e:
print("Error in read_tag")
print(e)
def read_tags(self, tags):
try:
with self.driver:
resp = self.driver.read(*tags)
return resp
except CommError as ce:
print(ce)
except Exception as e:
print("Error in read_tags")
print(e)
def write_tag(self, tag, value):
try:
with self.driver:
resp = self.driver.write(tag, value)
return resp
except Exception as e:
print("Error in write_tag")
print(e)
def write_tags(self, tags, values):
try:
a = zip(tags, values)
with self.driver:
resp = self.driver.write(*a)
return resp
except Exception as e:
print("Error in write_tag")
print(e)
class Modbus:
def __init__(self, baud=19200, stopBits=1, station=247, device="tty/S0"):
self.driver = mbs.Instrument(device)

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@@ -0,0 +1,140 @@
from pycomm3 import LogixDriver, CommError
from datetime import datetime as dt
from time import sleep
from random import choice
from string import ascii_lowercase
from threading import Thread
from thingsboard_gateway.connectors.connector import Connector, log
from thingsboard_gateway.tb_utility.tb_utility import TBUtility
from thingsboard_gateway.tb_utility.tb_loader import TBModuleLoader
class EthernetIPConnector(Thread, Connector):
def __init__(self, gateway, config, connector_type):
super().__init__()
self.statistics = {'MessagesReceived': 0,
'MessagesSent': 0} # Dictionary, will save information about count received and sent messages.
self.__config = config # Save configuration from the configuration file.
self.__gateway = gateway # Save gateway object, we will use some gateway methods for adding devices and saving data from them.
self.setName(self.__config.get("name","%s connector " % self.get_name() + ''.join(choice(ascii_lowercase) for _ in range(5)))) # get from the configuration or create name for logs.
log.info("Starting Custom %s connector", self.get_name()) # Send message to logger
self.daemon = True # Set self thread as daemon
self.stopped = True # Service variable for check state
self.__connected = False # Service variable for check connection to device
self.__devices = {} # Dictionary with devices, will contain devices configurations, converters for devices and serial port objects
self.__load_converters(connector_type) # Call function to load converters and save it into devices dictionary
self.__connect_to_devices() # Call function for connect to devices
self._connector_type = connector_type
self.utilities = TBModuleLoader.import_module(self._connector_type, "Utilities")
log.info('Custom connector %s initialization success.', self.get_name()) # Message to logger
log.info("Devices in configuration file found: %s ", '\n'.join(device for device in self.__devices)) # Message to logger
def __connect_to_devices(self):
for device in self.__devices:
try:
log.debug(self.__devices[device]["device_config"]["ip"])
self.__devices[device]["logixdriver"] = LogixDriver(self.__devices[device]["device_config"]["ip"])
except Exception as e:
log.exception(e)
else:
self.__gateway.add_device(self.__devices[device]["device_config"]["name"], {"connector": self}, self.__devices[device]["device_config"]["type"])
self.__connected = True
def get_name(self):
return self.name #self.__config["name"]
def is_connected(self):
return self.__connected
def __load_converters(self, connector_type):
devices_config = self.__config.get('devices')
try:
if devices_config is not None:
for device_config in devices_config:
if device_config.get('converter') is not None:
log.debug(device_config)
converter = TBModuleLoader.import_module(connector_type, device_config['converter'])
self.__devices[device_config['name']] = {'converter': converter(device_config),
'device_config': device_config}
else:
log.error('Converter configuration for the custom connector %s -- not found, please check your configuration file.', self.get_name())
else:
log.error('Section "devices" in the configuration not found. A custom connector %s has being stopped.', self.get_name())
self.close()
except Exception as e:
log.exception(e)
def run(self):
try:
while True:
if int(dt.timestamp(dt.now())) % self.__config["publishInterval"] == 0:
log.debug("Publish Interval: %s" % dt.now())
for device in self.__devices:
try:
tags = list(self.__devices[device]["device_config"]["telemetry"].keys())
with self.__devices[device]["logixdriver"] as driver:
data_from_device = driver.read(*tags)
log.debug(data_from_device)
converted_data = self.__devices[device]['converter'].convert(self.__devices[device]['device_config'], data_from_device)
log.debug(converted_data)
self.__gateway.send_to_storage(self.get_name(), converted_data)
except CommError as ce:
log.error("Error connecting to PLC")
log.error(ce)
except Exception as e:
log.error("Error in for loop of run()")
log.error(e)
sleep(1)
except Exception as e:
log.exception(e)
def open(self):
log.info("Starting EthernetIP Connector")
self.stopped = False
self.start()
def close(self):
pass
def on_attributes_update(self, content):
log.info(content)
if self.__devices.get(content["device"]) is not None:
device_config = self.__devices[content["device"]].get("device_config")
if device_config is not None and device_config.get("attributeUpdates") is not None:
requests = device_config["attributeUpdates"]
for request in requests:
attribute = request.get("attributeOnThingsBoard")
log.debug(attribute)
if attribute is not None and attribute in content["data"]:
try:
value = content["data"][attribute]
str_to_send = str(request["stringToDevice"].replace("${" + attribute + "}", str(value))).encode("UTF-8")
self.__devices[content["device"]]["serial"].write(str_to_send)
log.debug("Attribute update request to device %s : %s", content["device"], str_to_send)
time.sleep(.01)
except Exception as e:
log.exception(e)
def server_side_rpc_handler(self, content):
log.debug(content)
method_split = content["method"].split('_')
method = None
if len(method_split) > 0:
method = "_".join(method_split[1:])
commands = {
"ping": self.utilities.ping,
"write_plc": self.utilities.write_plc
}
if method is not None:
#check utilities for function
log.debug(f"Looking for {method} in Utilities")
log.info(self.__devices)
if method in commands.keys():
if method == "write_plc":
log.info(commands[method](self.__devices["Big Test Boi"]["logixdriver"],content))
else:
log.info(commands[method](content))

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{
"cells": [
{
"cell_type": "code",
"execution_count": 1,
"metadata": {},
"outputs": [],
"source": [
"from tb_device_mqtt import TBDeviceMqttClient, TBPublishInfo\n",
"from datetime import datetime as dt\n",
"import utilities\n",
"from dataCollector import EthernetIP, Modbus"
]
},
{
"cell_type": "code",
"execution_count": 2,
"metadata": {},
"outputs": [],
"source": [
"def serverRPC(client, request_id, request_body):\n",
" print(client)\n",
" print(request_id)\n",
" print(request_body)\n",
" #use request_body to determine action\n",
" "
]
},
{
"cell_type": "code",
"execution_count": 3,
"metadata": {},
"outputs": [],
"source": [
"config = utilities.load_json_file(\"./config.json\")"
]
},
{
"cell_type": "code",
"execution_count": 184,
"metadata": {},
"outputs": [],
"source": [
"telemetry = {}\n",
"client = TBDeviceMqttClient(config[\"mqttDomain\"])\n",
"client._client.username_pw_set(config[\"mqttUserName\"],config[\"mqttPassword\"])\n",
"client._client._client_id = config[\"mqttClientId\"]\n",
"client.set_server_side_rpc_request_handler(serverRPC)"
]
},
{
"cell_type": "code",
"execution_count": 185,
"metadata": {},
"outputs": [
{
"name": "stdout",
"output_type": "stream",
"text": [
"{'vendor': 'Rockwell Automation/Allen-Bradley', 'product_type': 'Programmable Logic Controller', 'product_code': 180, 'revision': {'major': 12, 'minor': 11}, 'status': b'4\\x00', 'serial': '60ed86ac', 'product_name': '2080-LC20-20QWB', 'keyswitch': 'UNKNOWN'}\n"
]
},
{
"data": {
"text/plain": [
"{'pond1Height': -32.0,\n",
" 'pond2Height': -17.29999542236328,\n",
" 'pond3Height': 0.0,\n",
" 'pond4Height': 0.0,\n",
" 'pond1Volume': 0.0,\n",
" 'pond2Volume': 0.0,\n",
" 'pond3Volume': 0.0,\n",
" 'pond4Volume': 0.0,\n",
" 'cfgNumberOfPonds': 3}"
]
},
"execution_count": 185,
"metadata": {},
"output_type": "execute_result"
}
],
"source": [
"driver = EthernetIP(\"192.168.2.158\")\n",
"with driver.driver:\n",
" print(driver.driver.get_plc_info())\n",
"read = driver.read_tags(['pond1Height','pond2Height','pond3Height','pond4Height', 'pond1Volume','pond2Volume','pond3Volume','pond4Volume', \"cfgNumberOfPonds\"])\n",
"for ind, k in enumerate(['pond1Height','pond2Height','pond3Height','pond4Height', 'pond1Volume','pond2Volume','pond3Volume','pond4Volume', \"cfgNumberOfPonds\"]):\n",
" telemetry[k] = read[ind][1]\n",
"#driver.write_tags([\"cfgNumberOfPonds\",\"pond2Height\"], [3,2])\n",
"telemetry"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [],
"source": [
"client.connect()\n",
"while True:\n",
" if dt.timestamp(dt.now()) % config[\"publishInterval\"] == 0:\n",
" print(dt.now())\n",
" client.send_telemetry(telemetry)\n",
" "
]
},
{
"cell_type": "code",
"execution_count": 186,
"metadata": {},
"outputs": [
{
"name": "stdout",
"output_type": "stream",
"text": [
"1659040728.331675\n",
"1659040728\n",
"1659040728\n"
]
},
{
"ename": "NameError",
"evalue": "name 'truncate' is not defined",
"output_type": "error",
"traceback": [
"\u001b[0;31m---------------------------------------------------------------------------\u001b[0m",
"\u001b[0;31mNameError\u001b[0m Traceback (most recent call last)",
"\u001b[1;32m/Users/nico/Documents/GitHub/ThingsBoard/ThingsBoardClient/tbclient.ipynb Cell 7\u001b[0m in \u001b[0;36m<cell line: 1>\u001b[0;34m()\u001b[0m\n\u001b[1;32m <a href='vscode-notebook-cell:/Users/nico/Documents/GitHub/ThingsBoard/ThingsBoardClient/tbclient.ipynb#ch0000011?line=3'>4</a>\u001b[0m \u001b[39mprint\u001b[39m(\u001b[39mint\u001b[39m(now))\n\u001b[1;32m <a href='vscode-notebook-cell:/Users/nico/Documents/GitHub/ThingsBoard/ThingsBoardClient/tbclient.ipynb#ch0000011?line=4'>5</a>\u001b[0m \u001b[39mprint\u001b[39m(\u001b[39mround\u001b[39m(now))\n\u001b[0;32m----> <a href='vscode-notebook-cell:/Users/nico/Documents/GitHub/ThingsBoard/ThingsBoardClient/tbclient.ipynb#ch0000011?line=5'>6</a>\u001b[0m \u001b[39mprint\u001b[39m(truncate(now))\n",
"\u001b[0;31mNameError\u001b[0m: name 'truncate' is not defined"
]
}
],
"source": [
"\n",
"while True:\n",
" now = dt.timestamp(dt.now())\n",
" print(now)\n",
" print(int(now))\n",
" print(round(now))\n",
" #print(truncate(now))\n",
"\n",
"#% config[\"publishInterval\"]"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [],
"source": [
"client.send_telemetry(telemetry)"
]
},
{
"cell_type": "code",
"execution_count": null,
"metadata": {},
"outputs": [],
"source": [
"client.disconnect()"
]
}
],
"metadata": {
"interpreter": {
"hash": "32b1684233d9748bd1bb5a29a1b19459c9564d6488d1324e633b9c48826c5d03"
},
"kernelspec": {
"display_name": "Python 3.10.4 ('thingsboard')",
"language": "python",
"name": "python3"
},
"language_info": {
"codemirror_mode": {
"name": "ipython",
"version": 3
},
"file_extension": ".py",
"mimetype": "text/x-python",
"name": "python",
"nbconvert_exporter": "python",
"pygments_lexer": "ipython3",
"version": "3.10.5"
},
"orig_nbformat": 4
},
"nbformat": 4,
"nbformat_minor": 2
}

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@@ -0,0 +1,31 @@
import json
def load_json_file(path):
try:
with open(path, "r") as f:
j = json.load(f)
return j
except Exception as e:
print("Error while loading JSON")
print(e)
def save_json_file(path,payload):
try:
with open(path, "w") as f:
json.dump(payload,f)
except Exception as e:
print("Error while saving JSON")
print(e)
def gal_to_bbl(value):
return value / 42.0
def bbl_to_gal(value):
return value * 42.0
def gpm_to_bpd(value):
return value * ((60 * 24) / 42.0)
def bpd_to_gpm(value):
return value * (42.0 / (24 * 60))

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@@ -1,23 +1,21 @@
self.onInit = function () { self.onInit = function () {
volume = 0; volume = 0;
fluidLevel = 0; fluidLevel = 0;
self.ctx.$container.append( self.ctx.$container.append("<div><canvas id='vessel" + self.ctx.defaultSubscription.id + "'></canvas></div>");
"<div><canvas id='vessel" + self.ctx.defaultSubscription.id + "'></canvas></div>" };
); self.onResize = function () {
};
self.onResize = function () {
self.draw(); self.draw();
}; };
//function for scaling a canvas //function for scaling a canvas
function fitToContainer(canvas) { function fitToContainer(canvas) {
canvas.style.width = "100%"; canvas.style.width = "100%";
canvas.style.height = "100%"; canvas.style.height = "100%";
canvas.width = canvas.offsetWidth; canvas.width = canvas.offsetWidth;
canvas.height = canvas.offsetHeight; canvas.height = canvas.offsetHeight;
} }
self.onDataUpdated = function () { self.onDataUpdated = function () {
self.ctx.detectChanges(); self.ctx.detectChanges();
//setup variables //setup variables
self.volume = 0; self.volume = 0;
@@ -33,24 +31,24 @@ self.onInit = function () {
self.fluidLevelPercent = self.fluidLevel / self.maxHeight; self.fluidLevelPercent = self.fluidLevel / self.maxHeight;
//draw a new canvas //draw a new canvas
self.draw(); self.draw();
}; };
self.drawTank = function (ctx, compartmentWidth, compartmentHeight) { self.drawTank = function (ctx, compartmentWidth, compartmentHeight) {
ctx.moveTo(compartmentWidth * 0.05, compartmentHeight * 0.05); ctx.moveTo(compartmentWidth * 0.05, compartmentHeight * 0.05);
ctx.lineTo(compartmentWidth * 0.05, compartmentHeight * 0.95); ctx.lineTo(compartmentWidth * 0.05, compartmentHeight * 0.95);
ctx.ellipse(compartmentWidth / 2, compartmentHeight * 0.95, compartmentWidth / 2 - compartmentWidth * 0.05, compartmentHeight * 0.025, 0, Math.PI, 0, true); ctx.ellipse(compartmentWidth / 2, compartmentHeight * 0.95, compartmentWidth / 2 - compartmentWidth * 0.05, compartmentHeight * 0.025, 0, Math.PI, 0, true);
ctx.lineTo(compartmentWidth * 0.95, compartmentHeight * 0.05); ctx.lineTo(compartmentWidth * 0.95, compartmentHeight * 0.05);
ctx.ellipse(compartmentWidth / 2, compartmentHeight * 0.05, compartmentWidth / 2 - compartmentWidth * 0.05, compartmentHeight * 0.025, 0, 0, 2 * Math.PI); ctx.ellipse(compartmentWidth / 2, compartmentHeight * 0.05, compartmentWidth / 2 - compartmentWidth * 0.05, compartmentHeight * 0.025, 0, 0, 2 * Math.PI);
}; };
self.drawPond = function (ctx, compartmentWidth, compartmentHeight) { self.drawPond = function (ctx, compartmentWidth, compartmentHeight) {
ctx.moveTo(compartmentWidth * 0.05, compartmentHeight * 0.05); ctx.moveTo(compartmentWidth * 0.05, compartmentHeight * 0.1);
ctx.lineTo(compartmentWidth * 0.15, compartmentHeight * 0.95); ctx.lineTo(compartmentWidth * 0.15, compartmentHeight * 0.95);
ctx.lineTo(compartmentWidth * 0.85, compartmentHeight * 0.95); ctx.lineTo(compartmentWidth * 0.85, compartmentHeight * 0.95);
ctx.lineTo(compartmentWidth * 0.95, compartmentHeight * 0.05); ctx.lineTo(compartmentWidth * 0.95, compartmentHeight * 0.1);
}; };
self.drawVessels = function (ctx, canvas, numVessels, cols, rows) { self.drawVessels = function (ctx, canvas, numVessels, cols, rows) {
if (numVessels <= cols * rows) { if (numVessels <= cols * rows) {
//vessel //vessel
ctx.beginPath(); ctx.beginPath();
@@ -74,11 +72,22 @@ self.onInit = function () {
var compartmentHeight = canvas.height / rows; var compartmentHeight = canvas.height / rows;
//gradient used as water //gradient used as water
const grad = ctx.createLinearGradient(0, compartmentHeight * 0.05, 0, compartmentHeight * 0.95); const grad = ctx.createLinearGradient(0, compartmentHeight * 0.05, 0, compartmentHeight * 0.95);
switch(fluidColor){ switch (fluidColor) {
case "Water": grad.addColorStop(0, "rgba(70,220,210,0.75)");grad.addColorStop(0.4, "rgba(0,120,240,0.75)");break; case "Water":
case "Produced Water": grad.addColorStop(0, "rgba(170, 100, 30,1)");grad.addColorStop(0.4, "rgba(85, 50, 15,1");break; grad.addColorStop(0, "rgba(70,220,210,0.75)");
case "Oil": grad.addColorStop(0,"rgba(100,100,100,0.75)");grad.addColorStop(0.3, "rgba(25,25,25, 0.85");break; grad.addColorStop(0.4, "rgba(0,120,240,0.75)");
default: grad.addColorStop(0,fluidColor);break; break;
case "Produced Water":
grad.addColorStop(0, "rgba(170, 100, 30,1)");
grad.addColorStop(0.4, "rgba(85, 50, 15,1");
break;
case "Oil":
grad.addColorStop(0, "rgba(100,100,100,0.75)");
grad.addColorStop(0.3, "rgba(25,25,25, 0.85");
break;
default:
grad.addColorStop(0, fluidColor);
break;
} }
grad.addColorStop(1, "rgba(0,0,0, 0.8)"); grad.addColorStop(1, "rgba(0,0,0, 0.8)");
@@ -124,20 +133,20 @@ self.onInit = function () {
} else { } else {
console.error("Not enough space for Vessels"); console.error("Not enough space for Vessels");
} }
}; };
self.drawText = function (ctx, compartmentWidth, compartmentHeight) { self.drawText = function (ctx, compartmentWidth, compartmentHeight) {
fl = typeof self.fluidLevel === 'number' ? self.fluidLevel.toFixed(2) : "0.00"; fl = typeof self.fluidLevel === "number" ? self.fluidLevel.toFixed(2) : "0.00";
vl = typeof self.volume === 'number' ? self.volume.toFixed(2) : "0.00"; vl = typeof self.volume === "number" ? self.volume.toFixed(2) : "0.00";
ctx.textAlign = "left"; ctx.textAlign = "center";
ctx.fillStyle = "rgba(0,0,0,1)"; ctx.fillStyle = "rgba(0,0,0,1)";
var padding = Math.max(Math.sqrt(compartmentWidth), Math.sqrt(compartmentHeight)); var padding = Math.max(Math.sqrt(compartmentWidth), Math.sqrt(compartmentHeight));
ctx.fillText(`${(self.fluidLevelPercent * 100).toFixed(2)} %`, compartmentWidth / 4 - padding, compartmentHeight / 2); ctx.fillText(`${(self.fluidLevelPercent * 100).toFixed(2)} % ${fl} Ft ${vl} BBLs`, compartmentWidth / 2, compartmentHeight * 0.05);
ctx.fillText(`${fl} Ft`, compartmentWidth / 4 - padding, compartmentHeight / 2 + padding); //ctx.fillText(`${fl} Ft`, compartmentWidth / 4 - padding, compartmentHeight / 2 + padding);
ctx.fillText(`${vl} BBLs`, compartmentWidth / 4 - padding, compartmentHeight / 2 + 2 * padding); //ctx.fillText(`${vl} BBLs`, compartmentWidth / 4 - padding, compartmentHeight / 2 + 2 * padding);
}; };
self.drawTicks = function (ctx, compartmentWidth, compartmentHeight, guageAlignment) { self.drawTicks = function (ctx, compartmentWidth, compartmentHeight, guageAlignment) {
ctx.fillStyle = "rgba(0,0,0,1)"; ctx.fillStyle = "rgba(0,0,0,1)";
ctx.textBaseline = "middle"; ctx.textBaseline = "middle";
var widthOffset; var widthOffset;
@@ -154,10 +163,10 @@ self.onInit = function () {
default: default:
widthOffset = compartmentWidth * 0.5; widthOffset = compartmentWidth * 0.5;
} }
var heightOffset = compartmentHeight * 0.05; var heightOffset = compartmentHeight * 0.1;
var heightRange = compartmentHeight * 0.9; var heightRange = compartmentHeight * 0.85;
var numTicks = Math.min(Math.round(compartmentHeight / 40), 10); var numTicks = Math.min(Math.round(compartmentHeight / 40), 10);
ctx.moveTo(widthOffset, compartmentHeight - heightOffset); ctx.moveTo(widthOffset, compartmentHeight - compartmentHeight*0.05);
ctx.lineTo(widthOffset, heightOffset); ctx.lineTo(widthOffset, heightOffset);
for (let i = 0; i < numTicks; i++) { for (let i = 0; i < numTicks; i++) {
@@ -174,9 +183,9 @@ self.onInit = function () {
} }
} }
ctx.stroke(); ctx.stroke();
}; };
self.draw = function () { self.draw = function () {
//self.fluidLevel = typeof self.ctx.defaultSubscription.data[0].data[0] !== "undefined" ? self.ctx.defaultSubscription.data[0].data[0][1] : 0; //self.fluidLevel = typeof self.ctx.defaultSubscription.data[0].data[0] !== "undefined" ? self.ctx.defaultSubscription.data[0].data[0][1] : 0;
var numVessels = typeof self.ctx.settings.vessels !== "undefined" ? self.ctx.settings.vessels.length : 1; var numVessels = typeof self.ctx.settings.vessels !== "undefined" ? self.ctx.settings.vessels.length : 1;
var vesselType = typeof self.ctx.settings.vessels[0].vesselType !== "undefined" ? self.ctx.settings.vessels[0].vesselType : "Tank"; var vesselType = typeof self.ctx.settings.vessels[0].vesselType !== "undefined" ? self.ctx.settings.vessels[0].vesselType : "Tank";
@@ -199,7 +208,6 @@ self.onInit = function () {
ctx.font = `${Math.min(Math.sqrt(canvas.width / numCols), Math.sqrt(canvas.height / numRows))}px Times New Roman`; ctx.font = `${Math.min(Math.sqrt(canvas.width / numCols), Math.sqrt(canvas.height / numRows))}px Times New Roman`;
self.drawVessels(ctx, canvas, numVessels, numCols, numRows); self.drawVessels(ctx, canvas, numVessels, numCols, numRows);
} }
}; };
self.onDestroy = function () {};
self.onDestroy = function () {};

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@@ -25,7 +25,7 @@
}, },
{ {
"cell_type": "code", "cell_type": "code",
"execution_count": 8, "execution_count": 3,
"metadata": {}, "metadata": {},
"outputs": [], "outputs": [],
"source": [ "source": [
@@ -38,11 +38,11 @@
" customer = rest_client.get_customers(page_size=10,page=0,text_search=\"Amerus Safety Solutions\")\n", " customer = rest_client.get_customers(page_size=10,page=0,text_search=\"Amerus Safety Solutions\")\n",
" #print(customer)\n", " #print(customer)\n",
" cid = customer.data[0].id.id\n", " cid = customer.data[0].id.id\n",
" device = rest_client.get_customer_devices(customer_id=cid, page=0, page_size=10,text_search=\"Camera Trailer 104\")\n", " device = rest_client.get_customer_devices(customer_id=cid, page=0, page_size=10,text_search=\"Camera Trailer 107\")\n",
" #print(device)\n", " #print(device)\n",
" eType = device.data[0].id.entity_type\n", " eType = device.data[0].id.entity_type\n",
" eid = device.data[0].id.id\n", " eid = device.data[0].id.id\n",
" start = convertDateTimeToMS(\"28 Jun 2022, 00:00:00\")\n", " start = convertDateTimeToMS(\"28 Jul 2022, 00:00:00\")\n",
" end = int(dt.now().timestamp() * 1000)\n", " end = int(dt.now().timestamp() * 1000)\n",
" telemetry = rest_client.get_timeseries(entity_type=eType, entity_id=eid , keys=\"snapshot\", start_ts=start, end_ts=end, limit=1000)\n", " telemetry = rest_client.get_timeseries(entity_type=eType, entity_id=eid , keys=\"snapshot\", start_ts=start, end_ts=end, limit=1000)\n",
" #print(telemetry)\n", " #print(telemetry)\n",
@@ -52,7 +52,7 @@
}, },
{ {
"cell_type": "code", "cell_type": "code",
"execution_count": 9, "execution_count": 4,
"metadata": {}, "metadata": {},
"outputs": [], "outputs": [],
"source": [ "source": [
@@ -81,7 +81,7 @@
"name": "python", "name": "python",
"nbconvert_exporter": "python", "nbconvert_exporter": "python",
"pygments_lexer": "ipython3", "pygments_lexer": "ipython3",
"version": "3.10.4" "version": "3.10.5"
}, },
"orig_nbformat": 4 "orig_nbformat": 4
}, },