17 Commits

13 changed files with 449 additions and 109 deletions

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@ -39,13 +39,15 @@ release:
only:
refs:
- tags
variables:
RELEASE_FILE: opcua2mqtt-bridge-${CI_COMMIT_TAG}.tar.gz
script:
- pushd src
- tar -czvf ../opcua2mqtt-bridge-${CI_COMMIT_TAG}.tar.gz --exclude=__pycache__ *
- tar -czvf ../$RELEASE_FILE --exclude=__pycache__ *.py *.json opcua2mqtt-bridge.service
- popd
- gitlabreleaseuploader.py -p "$PRIVATE_TOKEN" -i $CI_PROJECT_ID -u $CI_PROJECT_URL
-I https://devservice.krohne.com/git/
-C
-f opcua2mqtt-bridge-${CI_COMMIT_TAG}.tar-gz
-f $RELEASE_FILE
-T $CI_COMMIT_REF_NAME -t "$CI_COMMIT_TAG"
-n "$VERSION" -d "Tarball of $CI_PROJECT_NAME, version $VERSION"
-n "${CI_COMMIT_TAG} release" -d "Tarball of $CI_PROJECT_NAME, version $CI_COMMIT_TAG"

141
readme.md Normal file
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@ -0,0 +1,141 @@
# OPC-UA to MQTT Bridge
## Installation
* Take the tarball from the Release area and unpack it in the desired location on the edge device
* The systemctl service script assumes to find the application at `/home/alarm/KROHNE/opcua2mqtt-bridge`, so it is a good idea to put it there
* Create a configuration directory `/etc/opcua2mqtt-bridge` and place the adjusted `config.json` into it
* Enable the service using `sudo systemctl enable /home/alarm/KROHNE/opcua2mqtt-bridge/opcua2mqtt-bridge.service`
* Start the service using `sudo systemctl start opcua2mqtt-bridge`
* Check the log messages using `journalctl -f`
## Configuration
{
"mqtt": {
"broker": "172.16.2.16",
"port": 1883,
"publishTopicPrefix": "opcua"
},
"stats": {
"topic": "statistics",
"period": 60
},
"opcua": [
{
"enabled": "true",
"type": "flat",
"url": "opc.tcp://172.16.3.60:4840",
"name": "apl",
"period": 1.0,
"timeout": 1.0,
"nodes": [
{ "ns": 0, "n": "i=345", "d": "pv" },
{ "ns": 0, "n": "i=348", "d": "sv" },
{ "ns": 0, "n": "i=351", "d": "tv" },
{ "ns": 0, "n": "i=354", "d": "qv" }
]
}
]
}
The configuration object consists of three parts: `mqtt`, `stats` and `opcua`.
In `mqtt` the access to the broker is configuration and the prefix for the topics used by the statistics module and the actual bridge are defined.
Besides the above shown attributes the `login` and `password` for authentication at the broker and `ca`, `cert` and `key` for TLS connections to the broker are available. `ca`, `cert` and `key` contain the filenames including complete path of the particular files.
In `stats` the topic suffix and the period of statistics messages are defined. The complete suffix will be `${mqtt.publicTopicPrefix}/${stats.topic}`.
The section `opcua` contains a list of OPC-UA servers to be queried. Each entry can be enabled/disabled using the attribute `enabled`. The attribute `url` obviously has the URL to connect the server, `period` is the period to repeat queries and `timeout` is the timeout when talking to a server.
`name` identifies the particular server, it becomes part of the topic of the published MQTT messages. The attribute `type` defines whether the individual variables of an OPC-UA server shall be communicated in individual MQTT messages (`flat`) or all variables of a server in a single message (`structured`).
The attribute `nodes` finally contains the list of variables to be queried. It contains the namespace index (`ns`), the node-id (`n`) and an optional descriptive name (`d`). Namespace index and node-id can be determined using for instance UAExpert when browsing the server and navigating to the relevant variables. The descriptive name - if given, otherwise the display name of the variable is used - becomes in `flat` mode part of the topic, in `structured` mode it becomes an attribute name within the message.
## Example Output
Besides the value itself the output contains the status of the value and a couple of timestamps (from device `t1`, server `t2` and bridge `t3`).
In `flat` mode the final topic will be `${mqtt.publicTopicPrefix}/${opcua.name}/${opcua.node.ns}/${opcua.node.d}`
An example for the MQTT messages according to the above configuration in `flat` mode is:
opcua/apl/0/pv {
"server": "apl",
"ns": 0,
"d": "pv",
"value": 19.833280563354492,
"status": "Good",
"t1": "2022-02-22 17:03:41.189000",
"t2": "2022-02-22 17:03:41.189000",
"t3": "2022-02-22 17:03:41.575504"
}
opcua/apl/0/sv {
"server": "apl",
"ns": 0,
"d": "sv",
"value": 1706.15771484375,
"status": "Good",
"t1": "2022-02-22 17:03:41.189000",
"t2": "2022-02-22 17:03:41.189000",
"t3": "2022-02-22 17:03:41.625721"
}
opcua/apl/0/tv {
"server": "apl",
"ns": 0,
"d": "tv",
"value": 23.29559326171875,
"status": "Good",
"t1": "2022-02-22 17:03:41.189000",
"t2": "2022-02-22 17:03:41.189000",
"t3": "2022-02-22 17:03:41.675352"
}
opcua/apl/0/qv {
"server": "apl",
"ns": 0,
"d": "qv",
"value": NaN,
"status": "Good",
"t1": "2022-02-22 17:03:41.189000",
"t2": "2022-02-22 17:03:41.189000",
"t3": "2022-02-22 17:03:41.725487"
}
In `structured` mode the final topic will be `${mqtt.publicTopicPrefix}/${opcua.name}`
An example for the MQTT messages according to the above configuration in `flat` mode is:
opcua/apl {
"pv": {
"value": 19.835201263427734,
"status": "Good",
"t1": "2022-02-22 16:58:21.188000",
"t2": "2022-02-22 16:58:21.188000",
"t3": "2022-02-22 16:58:22.071619"
},
"sv": {
"value": 1704.4019775390625,
"status": "Good",
"t1": "2022-02-22 16:58:21.188000",
"t2": "2022-02-22 16:58:21.188000",
"t3": "2022-02-22 16:58:22.121559"
},
"tv": {
"value": 23.08197021484375,
"status": "Good",
"t1": "2022-02-22 16:58:21.188000",
"t2": "2022-02-22 16:58:21.188000",
"t3": "2022-02-22 16:58:22.171498"
},
"qv": {
"value": NaN,
"status": "Good",
"t1": "2022-02-22 16:58:21.188000",
"t2": "2022-02-22 16:58:21.188000",
"t3": "2022-02-22 16:58:22.221639"
}
}

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@ -4,13 +4,20 @@ from asyncua import Client
async def test():
client = Client(url='opc.tcp://192.168.254.5:4863', timeout=10.0)
client = Client(url='opc.tcp://172.16.3.60:4840', timeout=10.0)
# await client.set_security_string('')
async with client:
node = client.get_node('ns=1;s=t|SERVER::A201CD124/MOT_01.AV_Out#Value')
node = client.get_node('ns=0;i=345')
value = await node.read_value()
displayName = (await node.read_display_name()).Text
print(dir(node))
print(f"{displayName=} = {value=}")
print(f"X1: {await node.read_data_value()}")
print(f"X2: {(await node.read_data_value()).Value.Value}")
print(f"X3: {dir((await node.read_data_value()).StatusCode)}")
print(f"X3: {(await node.read_data_value()).StatusCode.name}")
print(f"X4: {(await node.read_data_value()).SourceTimestamp}")
print(f"X4: {(await node.read_data_value()).ServerTimestamp}")
asyncio.run(test())

32
snippets/test4.py Normal file
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@ -0,0 +1,32 @@
import asyncio
from asyncua import Client
NODE_IDS = [
'ns=0;i=345',
'ns=0;i=348',
'ns=0;i=351',
'ns=0;i=354'
]
URL = 'opc.tcp://172.16.3.60:4840'
class SubscriptionHandler:
def datachange_notification(self, node, val, data):
print(f"received: {node=}, {val=}, {data=}")
async def test():
client = Client(url=URL, timeout=10.0)
# await client.set_security_string('')
async with client:
subscription = await client.create_subscription(500, SubscriptionHandler())
nodes = [ client.get_node(n) for n in NODE_IDS ]
await subscription.subscribe_data_change(nodes)
await asyncio.sleep(300)
await subscription.delete()
asyncio.run(test())

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@ -1,21 +1,26 @@
import re
import json
from AbstractDataObject import AbstractDataObject
from datetime import datetime
class FlatDataObject(AbstractDataObject):
def __init__(self, serverName, nameSpaceIndex, variableName, value):
def __init__(self, serverName, nameSpaceIndex, variableName, dataValue):
super().__init__(serverName + '/' + str(nameSpaceIndex) + '/' + variableName)
self.serverName = serverName
self.nameSpaceIndex = nameSpaceIndex
self.variableName = variableName
self.value = value
self.dataValue = dataValue
def getPayload(self):
payload = {
"serverName": self.serverName,
"nameSpaceIndex": self.nameSpaceIndex,
"variableName": self.variableName,
"value": self.value
"server": self.serverName,
"ns": self.nameSpaceIndex,
"d": self.variableName,
"value": self.dataValue.Value.Value,
"status": self.dataValue.StatusCode.name,
"t1": str(self.dataValue.SourceTimestamp),
"t2": str(self.dataValue.ServerTimestamp),
"t3": str(datetime.utcnow())
}
return json.dumps(payload)

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@ -11,6 +11,7 @@ LOOP_SLICE = 0.1 # seconds
class MqttPublish(AbstractMqttPublisher):
def __init__(self, config, stats, queue):
super().__init__(config)
self.name = 'mqtt'
self.queue = queue
self.stats = stats
self.topicPre = self.config["publishTopicPrefix"]

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@ -17,7 +17,7 @@ class OpcUaRequester(threading.Thread):
self.name = self.config['name']
self.url = self.config['url']
self.nodes = self.config['nodes']
self.delay = self.config['delay']
self.period = self.config['period']
self.timeout = self.config['timeout']
self.dataObjectType = self.config['type']
self.flat = self.dataObjectType == 'flat'
@ -36,20 +36,21 @@ class OpcUaRequester(threading.Thread):
try:
logger.debug(f"Trying {self.name} {self.url} ns={nodeSpec['ns']};{nodeSpec['n']}")
node = client.get_node(f"ns={nodeSpec['ns']};{nodeSpec['n']}")
value = await node.read_value()
dataValue = await node.read_data_value()
displayName = nodeSpec['d'] if ('d' in nodeSpec) else (await node.read_display_name()).Text
logger.debug(f"Got: {displayName=} = {value=}")
logger.debug(f"Got: {displayName=} = {dataValue.Value.Value=}")
if self.flat:
self.queue.put(FlatDataObject(self.name, nodeSpec['ns'], displayName, value))
self.queue.put(FlatDataObject(self.name, nodeSpec['ns'], displayName, dataValue))
else:
dataObject.add(displayName, value)
dataObject.add(displayName, dataValue)
self.stats.incOpcUaRequests()
except ua.UaError as e:
self.stats.incOpcUaErrors()
logger.error(f"UaError in inner OPC-UA loop: {type(e)} {e}")
if not self.flat:
self.queue.put(dataObject)
await asyncio.sleep(self.delay)
await asyncio.sleep(self.period)
except asyncio.exceptions.TimeoutError as e:
self.stats.incOpcUaTimeouts()
logger.error(f"Timeout in inner OPC-UA loop")

114
src/OpcUaSubscriber.py Normal file
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@ -0,0 +1,114 @@
import asyncio
from sqlite3 import NotSupportedError
from asyncua import Client, ua
import threading
from loguru import logger
from FlatDataObject import FlatDataObject
from StructuredDataObject import StructuredDataObject
class FlatSubscriptionHandler:
def __init__(self, serverName, nodes, queue):
self.serverName = serverName
self.nodes = nodes
self.queue = queue
self.count = 0
def getAndResetCount(self):
tmp = self.count
self.count = 0
return tmp
def datachange_notification(self, node, val, data):
logger.info(f"received: {node=}, {val=}, {data=}")
self.count += 1
match node.nodeid.NodeIdType:
case ua.NodeIdType.Numeric:
prefix = 'i'
case ua.NodeIdType.String:
prefix = 's'
case _:
prefix = 'x'
nodeName = f"{prefix}={node.nodeid.Identifier}"
namespaceIndex = node.nodeid.NamespaceIndex
displayNames = [ x['d'] for x in self.nodes if x['ns'] == namespaceIndex and x['n'] == nodeName ]
name = displayNames[0] if displayNames else nodeName
self.queue.put(FlatDataObject(self.serverName, str(namespaceIndex), name, data.monitored_item.Value))
class _RenewTriggerException(Exception): pass
class OpcUaSubscriber(threading.Thread):
def __init__(self, config, stats, queue):
super().__init__()
self.config = config
self.queue = queue
self.stats = stats
self.name = self.config['name']
self.url = self.config['url']
self.nodes = self.config['nodes']
self.period = self.config['period']
self.timeout = self.config['timeout']
self.dataObjectType = self.config['type']
self.flat = self.dataObjectType == 'flat'
if not self.flat:
raise NotImplementedError("Only flat approach supported in OpcUaSubscriber")
# consider this flag in the localLoop
self.killBill = False
self.killEvent = asyncio.Event()
async def opcUaSubscriberInnerLoop(self):
while not self.killBill:
try:
async with Client(url=self.url, timeout=self.timeout) as client:
subscriptionHandler = FlatSubscriptionHandler(self.name, self.nodes, self.queue)
subscription = await client.create_subscription(self.period * 1000, subscriptionHandler)
nodes = [ client.get_node(f"ns={n['ns']};{n['n']}") for n in self.nodes ]
await subscription.subscribe_data_change(nodes)
logger.info("Subscriptions created, nodes subscribed")
while True:
try:
await asyncio.wait_for(self.killEvent.wait(), self.period * 10)
logger.info("About to terminate opcUaSubscriber")
break
except asyncio.TimeoutError:
cnt = subscriptionHandler.getAndResetCount()
logger.info(f"receive count: {cnt}")
if cnt == 0:
raise _RenewTriggerException()
await subscription.delete()
logger.info("Subscriptions deleted, wait a moment")
await asyncio.sleep(1)
logger.info("opcUaSubscriber terminated")
except _RenewTriggerException:
logger.error(f"too few data received, renew connection")
# continues in the loop
except asyncio.exceptions.TimeoutError as e:
self.stats.incOpcUaTimeouts()
logger.error(f"Timeout in inner OPC-UA loop")
except asyncio.exceptions.CancelledError as e:
self.stats.incOpcUaErrors()
logger.error(f"Cancelled in inner OPC-UA loop")
except Exception as e:
self.stats.incOpcUaErrors()
logger.error(f"Exception in inner OPC-UA loop: {type(e)} {e}")
def run(self):
loop = asyncio.new_event_loop()
asyncio.set_event_loop(loop)
loop.run_until_complete(self.opcUaSubscriberInnerLoop())
loop.close()
def stop(self):
self.killBill = True
logger.info("kill flag set")
self.killEvent.set()
logger.info("kill events triggered")

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@ -18,6 +18,7 @@ class StatisticsCollector(threading.Thread):
def __init__(self, config, queue):
super().__init__()
self.name = 'stats'
self.config = config['stats']
self.period = self.config['period']
self.topic = self.config['topic']

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@ -1,15 +1,22 @@
import re
import json
from AbstractDataObject import AbstractDataObject
from datetime import datetime
class StructuredDataObject(AbstractDataObject):
def __init__(self, topicPart):
super().__init__(topicPart)
self.keyValuePairs = []
self.keyValuePairs = {}
def add(self, key, value):
self.keyValuePairs.append({key: value})
def add(self, key, dataValue):
self.keyValuePairs[key] = {
"value": dataValue.Value.Value,
"status": dataValue.StatusCode.name,
"t1": str(dataValue.SourceTimestamp),
"t2": str(dataValue.ServerTimestamp),
"t3": str(datetime.utcnow())
}
def getPayload(self):
return json.dumps(self.keyValuePairs)

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@ -1,5 +1,4 @@
from MqttPublish import MqttPublish
from OpcUaRequester import OpcUaRequester
from Statistics import StatisticsCollector
from loguru import logger
@ -40,24 +39,43 @@ with open(args.config) as f:
config = json.load(f)
match config['opcua']['type']:
case 'requester':
logger.info("Loading OpcUaRequester")
from OpcUaRequester import OpcUaRequester as OpcUa
case 'subscriber':
logger.info("Loading OpcUaSubscriber")
from OpcUaSubscriber import OpcUaSubscriber as OpcUa
case _:
raise Exception("unknown OpcUa type")
queue = queue.Queue()
statsThread = StatisticsCollector(config, queue)
statsThread.start()
logger.info("StatisticsCollector started")
threads = []
try:
statsThread = StatisticsCollector(config, queue)
statsThread.start()
threads.append(statsThread)
logger.info("StatisticsCollector started")
publishThread = MqttPublish(config, statsThread, queue)
publishThread.start()
logger.info("MqttPublish started")
publishThread = MqttPublish(config, statsThread, queue)
publishThread.start()
threads.append(publishThread)
logger.info("MqttPublish started")
opcuaThreads = []
for o in config['opcua']:
if o['enabled'] != 'true':
continue
ot = OpcUaRequester(o, statsThread, queue)
ot.start()
logger.info(f"OpcUaRequester thread for {o['name']} started")
opcuaThreads.append(ot)
opcuaThreads = []
for o in config['opcua']["servers"]:
if o['enabled'] != 'true':
continue
ot = OpcUa(o, statsThread, queue)
ot.start()
logger.info(f"OpcUaRequester thread for {o['name']} started")
threads.append(ot)
except Exception as e:
logger.error(f"caught exception {type(e)}, {e} during start-up phase")
deathBell.set()
threading.excepthook = exceptHook
logger.info("Threading excepthook set")
@ -71,24 +89,12 @@ logger.info("opcua2mqtt bridge is running")
deathBell.wait()
logger.error("opcua2mqtt bridge is dying")
publishThread.stop()
logger.error("publishThread stopped")
for t in threads:
t.stop()
logger.error(f"thread {t.name} stopped")
statsThread.stop()
logger.error("statsThread stopped")
for ot in opcuaThreads:
ot.stop()
logger.error(f"opcua thread {ot.name} stopped")
publishThread.join()
logger.error("publishThread joined")
statsThread.join()
logger.error("statsThread joined")
for ot in opcuaThreads:
ot.join()
logger.error(f"opcua thread {ot.name} joined")
for t in threads:
t.join()
logger.error(f"thread {t.name} joined")
logger.error("opcua2mqtt bridge is terminated")

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@ -8,62 +8,65 @@
"topic": "statistics",
"period": 60
},
"opcua": [
{
"enabled": "true",
"type": "flat",
"url": "opc.tcp://172.16.3.60:4840",
"name": "apl",
"delay": 1.0,
"timeout": 1.0,
"nodes": [
{ "ns": 0, "n": "i=345", "d": "pv" },
{ "ns": 0, "n": "i=348", "d": "sv" },
{ "ns": 0, "n": "i=351", "d": "tv" },
{ "ns": 0, "n": "i=354", "d": "qv" }
]
},
{
"enabled": "false",
"type": "flat",
"url": "opc.tcp://192.168.254.5:4863",
"name": "sh",
"delay": 1.0,
"timeout": 10.0,
"nodes": [
{ "ns": 1, "n": "s=t|SERVER::A201CD124/MOT_01.AV_Out#Value", "d": "A201CD124" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ003/PID_01.PV_Out#Value", "d": "A201CJ003" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ004/PID_01.PV_Out#Value", "d": "A201CJ004" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ011/PID_01.PV_Out#Value", "d": "A201CJ011" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ014/PID_01.PV_Out#Value", "d": "A201CJ014" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ021/MMON_01.PV_Out#Value", "d": "A201CJ021" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ022/MMON_01.PV_Out#Value", "d": "A201CJ022" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ023/MMON_01.PV_Out#Value", "d": "A201CJ023" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ024/PID_01.PV_Out#Value", "d": "A201CJ024" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ025/PID_01.PV_Out#Value", "d": "A201CJ025" },
{ "ns": 1, "n": "s=t|SERVER::A201CD123/MOT_01.AV_Out#Value", "d": "A201CD123" },
{ "ns": 1, "n": "s=t|SERVER::A201CD121/MOT_01.AV_Out#Value", "d": "A201CD121" },
{ "ns": 1, "n": "s=t|SERVER::A212DD110/MOT_01.AV_Out#Value", "d": "A212DD110" },
{ "ns": 1, "n": "s=t|SERVER::A212DD130/MOT_01.AV_Out#Value", "d": "A212DD130" },
{ "ns": 1, "n": "s=t|SERVER::A212DD131/MOT_01.AV_Out#Value", "d": "A212DD131" },
{ "ns": 1, "n": "s=t|SERVER::A212DD111/MOT_01.AV_Out#Value", "d": "A212DD111" },
{ "ns": 1, "n": "s=t|SERVER::A212DD113/MOT_01.AV_Out#Value", "d": "A212DD113" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ004/PID_01.PV_Out#Value", "d": "A212DJ004" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ021/PID_01.PV_Out#Value", "d": "A212DJ021" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ001/PID_01.PV_Out#Value", "d": "A212DJ001" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ011/PID_01.PV_Out#Value", "d": "A212DJ011" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ032/MMON_01.PV_Out#Value", "d": "A212DJ032" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ031/MMON_01.PV_Out#Value", "d": "A212DJ031" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ033/MMON_01.PV_Out#Value", "d": "A212DJ033" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ010/MMON_01.PV_Out#Value", "d": "A212DJ010" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ042/MMON_01.PV_Out#Value", "d": "A212DJ042" },
{ "ns": 1, "n": "s=t|SERVER::A214BJ055/PID_01.PV_Out#Value", "d": "A214BJ055" },
{ "ns": 1, "n": "s=t|SERVER::A214BJ065/PID_01.PV_Out#Value", "d": "A214BJ065" },
{ "ns": 1, "n": "s=t|SERVER::A212BJ010/MMON_01.PV_Out#Value", "d": "A212BJ010" },
{ "ns": 1, "n": "s=t|SERVER::A212BJ010/MMON_02.PV_Out#Value", "d": "A212BJ010" }
]
}
]
"opcua": {
"type": "subscriber",
"servers": [
{
"enabled": "true",
"type": "flat",
"url": "opc.tcp://172.16.3.60:4840",
"name": "apl",
"period": 1.0,
"timeout": 1.0,
"nodes": [
{ "ns": 0, "n": "i=345", "d": "pv" },
{ "ns": 0, "n": "i=348", "d": "sv" },
{ "ns": 0, "n": "i=351", "d": "tv" },
{ "ns": 0, "n": "i=354", "d": "qv" }
]
},
{
"enabled": "false",
"type": "flat",
"url": "opc.tcp://192.168.254.5:4863",
"name": "sh",
"period": 1.0,
"timeout": 10.0,
"nodes": [
{ "ns": 1, "n": "s=t|SERVER::A201CD124/MOT_01.AV_Out#Value", "d": "A201CD124" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ003/PID_01.PV_Out#Value", "d": "A201CJ003" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ004/PID_01.PV_Out#Value", "d": "A201CJ004" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ011/PID_01.PV_Out#Value", "d": "A201CJ011" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ014/PID_01.PV_Out#Value", "d": "A201CJ014" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ021/MMON_01.PV_Out#Value", "d": "A201CJ021" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ022/MMON_01.PV_Out#Value", "d": "A201CJ022" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ023/MMON_01.PV_Out#Value", "d": "A201CJ023" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ024/PID_01.PV_Out#Value", "d": "A201CJ024" },
{ "ns": 1, "n": "s=t|SERVER::A201CJ025/PID_01.PV_Out#Value", "d": "A201CJ025" },
{ "ns": 1, "n": "s=t|SERVER::A201CD123/MOT_01.AV_Out#Value", "d": "A201CD123" },
{ "ns": 1, "n": "s=t|SERVER::A201CD121/MOT_01.AV_Out#Value", "d": "A201CD121" },
{ "ns": 1, "n": "s=t|SERVER::A212DD110/MOT_01.AV_Out#Value", "d": "A212DD110" },
{ "ns": 1, "n": "s=t|SERVER::A212DD130/MOT_01.AV_Out#Value", "d": "A212DD130" },
{ "ns": 1, "n": "s=t|SERVER::A212DD131/MOT_01.AV_Out#Value", "d": "A212DD131" },
{ "ns": 1, "n": "s=t|SERVER::A212DD111/MOT_01.AV_Out#Value", "d": "A212DD111" },
{ "ns": 1, "n": "s=t|SERVER::A212DD113/MOT_01.AV_Out#Value", "d": "A212DD113" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ004/PID_01.PV_Out#Value", "d": "A212DJ004" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ021/PID_01.PV_Out#Value", "d": "A212DJ021" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ001/PID_01.PV_Out#Value", "d": "A212DJ001" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ011/PID_01.PV_Out#Value", "d": "A212DJ011" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ032/MMON_01.PV_Out#Value", "d": "A212DJ032" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ031/MMON_01.PV_Out#Value", "d": "A212DJ031" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ033/MMON_01.PV_Out#Value", "d": "A212DJ033" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ010/MMON_01.PV_Out#Value", "d": "A212DJ010" },
{ "ns": 1, "n": "s=t|SERVER::A212DJ042/MMON_01.PV_Out#Value", "d": "A212DJ042" },
{ "ns": 1, "n": "s=t|SERVER::A214BJ055/PID_01.PV_Out#Value", "d": "A214BJ055" },
{ "ns": 1, "n": "s=t|SERVER::A214BJ065/PID_01.PV_Out#Value", "d": "A214BJ065" },
{ "ns": 1, "n": "s=t|SERVER::A212BJ010/MMON_01.PV_Out#Value", "d": "A212BJ010" },
{ "ns": 1, "n": "s=t|SERVER::A212BJ010/MMON_02.PV_Out#Value", "d": "A212BJ010" }
]
}
]
}
}

View File

@ -0,0 +1,20 @@
[Unit]
Description=OPCUA2MQTT-Bridge
Wants=network-online.target
After=network-online.target
[Service]
Type=simple
GuessMainPID=yes
ExecStart=/usr/bin/python bridge.py -f /etc/opcua2mqtt-bridge/config.json
ExecStop=kill -SIGINT $mainpid
Restart=on-failure
User=alarm
WorkingDirectory=/home/alarm/KROHNE/opcua2mqtt-bridge
[Install]
Alias=OPCUA2MQTT-Bridge
WantedBy=multi-user.target