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0.1.3 ... main

Author SHA1 Message Date
61509c0000 queries
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2025-02-10 15:40:37 +01:00
3c09c04066 rename snmp handler to prepared handler, 4
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2025-02-10 14:07:25 +01:00
af739c7148 rename snmp handler to prepared handler, 3
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2025-02-10 14:03:22 +01:00
33ff176c79 rename snmp handler to prepared handler, 2
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2025-02-10 14:01:50 +01:00
134e3706cc rename snmp handler to prepared handler
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2025-02-10 13:58:01 +01:00
3a56309b9f tsm
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2025-02-10 13:11:31 +01:00
10 changed files with 43 additions and 211 deletions

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@ -6,13 +6,22 @@
"topicMappings": [
{
"topics": [ "snmp" ],
"handler": "SNMP",
"handler": "PREP",
"id": "SNMP",
"config": {
"attributes": {
}
}
},
{
"topics": [ "tsm" ],
"handler": "PREP",
"id": "TSM",
"config": {
"attributes": {
}
}
},
{
"topics": [ "dt1/ai/periodic/1" ],
"handler": "DT1T",

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@ -1 +0,0 @@
.venv

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@ -1,38 +0,0 @@
import psycopg2
from loguru import logger
try:
srcConn = psycopg2.connect(database="level_monitoring_berresheim")
srcConn.autocommit = False
destConn = psycopg2.connect(database="udi-berresheim")
destConn.autocommit = False
with srcConn.cursor() as srcCur, destConn.cursor() as destCur:
srcCur.execute("select time, application_name, raw_level, level, status, battery from measurement_t")
for srcObj in srcCur:
timestamp = srcObj[0]
deviceName = srcObj[1]
rawLevel = srcObj[2]
level = srcObj[3]
status = srcObj[4]
battery = srcObj[5]
logger.info(f"{timestamp=}, {deviceName=}, {rawLevel=}, {level=}, {status=}, {battery=}")
destTime = timestamp
destApplication = "de-hottis-level-monitoring"
destDevice = "eui-a84041a2c18341d6"
destAttributes = '{"ApplicationId":"de-hottis-level-monitoring", "DeviceType":"dragino-ldds75", "Status":"' + status + '","Hint": "Migrated"}'
destValues = '{"Battery":{"unit":"V","label":"Battery","value":' + str(battery) + ',"variable":"Voltage"}, "Distance":{"unit":"mm","label":"Distance","variable":"Level","value":' + str(rawLevel) + '}, "CorrectedDistance":{"unit":"mm", "label":"CorrectedDistance", "variable":"Level","value":' + str(level) + '}}'
logger.info(f"{destTime=}, {destApplication=}, {destDevice=}, {destAttributes=}, {destValues=}")
destCur.execute("insert into measurements (time, application, device, attributes, values) values(%s, %s, %s, %s, %s)",
(destTime, destApplication, destDevice, destAttributes, destValues))
destConn.commit()
finally:
if srcConn:
srcConn.close()
if destConn:
destConn.close()

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@ -1,79 +0,0 @@
import psycopg2
from loguru import logger
import os
srcPgHost = os.environ["SRC_PGHOST"]
srcPgUser = os.environ["SRC_PGUSER"]
srcPgPassword = os.environ["SRC_PGPASSWORD"]
srcPgDatabase = os.environ["SRC_PGDATABASE"]
destPgHost = os.environ["DEST_PGHOST"]
destPgUser = os.environ["DEST_PGUSER"]
destPgPassword = os.environ["DEST_PGPASSWORD"]
destPgDatabase = os.environ["DEST_PGDATABASE"]
try:
srcConn = psycopg2.connect(
host=srcPgHost,
dbname=srcPgDatabase,
user=srcPgUser,
password=srcPgPassword,
sslmode='require'
)
srcConn.autocommit = False
destConn = psycopg2.connect(
host=destPgHost,
dbname=destPgDatabase,
user=destPgUser,
password=destPgPassword,
sslmode='require'
)
destConn.autocommit = False
with srcConn.cursor() as srcCur, destConn.cursor() as destCur:
srcCur.execute("select time, deviceid, status, state, importenergyactive, importenergyreactive, exportenergyactive, exportenergyreactive, powerapparent, poweractive, powerreactive, powerdemandpositive, powerdemandreverse, factor, angle, voltage, current, powerdemand from pv_power_measurement_t order by time")
for srcObj in srcCur:
timestamp = srcObj[0]
deviceName = srcObj[1]
status = srcObj[2]
state = srcObj[3]
importenergyactive = srcObj[4]
importenergyreactive = srcObj[5]
exportenergyactive = srcObj[6]
exportenergyreactive = srcObj[7]
powerapparent = srcObj[8]
poweractive = srcObj[9]
powerreactive = srcObj[10]
powerdemandpositive = srcObj[11]
powerdemandreverse = srcObj[12]
factor = srcObj[13]
angle = srcObj[14]
voltage = srcObj[15]
current = srcObj[16]
powerdemand = srcObj[17]
logger.info(f"{timestamp=}, {deviceName=}")
destTime = timestamp
destApplication = "PV"
destDevice = "Powermeter"
destAttributes = f"{{\"ApplicationId\":\"PV\", \"Status\":\"{status}\",\"Hint\": \"Migrated\"}}"
destValues = f"{{\"Cnt\": {{\"unit\": \"\", \"label\": \"\", \"value\": \"-1\", \"variable\": \"Cnt\"}}, \"Angle\": {{\"unit\": \"degree\", \"label\": \"\", \"value\": \"{angle}\", \"variable\": \"Angle\"}}, \"State\": {{\"unit\": \"\", \"label\": \"\", \"value\": \"{state}\", \"variable\": \"State\"}}, \"Factor\": {{\"unit\": \"\", \"label\": \"\", \"value\": \"{factor}\", \"variable\": \"Factor\"}}, \"Current\": {{\"unit\": \"A\", \"label\": \"\", \"value\": \"{current}\", \"variable\": \"Current\"}}, \"Voltage\": {{\"unit\": \"V\", \"label\": \"\", \"value\": \"{voltage}\", \"variable\": \"Voltage\"}}, \"PowerActive\": {{\"unit\": \"W\", \"label\": \"\", \"value\": \"{poweractive}\", \"variable\": \"PowerActive\"}}, \"PowerApparent\": {{\"unit\": \"VA\", \"label\": \"\", \"value\": \"{powerapparent}\", \"variable\": \"PowerApparent\"}}, \"PowerReactive\": {{\"unit\": \"VA\", \"label\": \"\", \"value\": \"{powerreactive}\", \"variable\": \"PowerReactive\"}}, \"ExportEnergyActive\": {{\"unit\": \"Wh\", \"label\": \"\", \"value\": \"{exportenergyactive}\", \"variable\": \"ExportEnergyActive\"}}, \"ImportEnergyActive\": {{\"unit\": \"Wh\", \"label\": \"\", \"value\": \"{importenergyactive}\", \"variable\": \"ImportEnergyActive\"}}, \"PowerDemandReverse\": {{\"unit\": \"W\", \"label\": \"\", \"value\": \"{powerdemandreverse}\", \"variable\": \"PowerDemandReverse\"}}, \"PowerDemandPositive\": {{\"unit\": \"W\", \"label\": \"\", \"value\": \"{powerdemandpositive}\", \"variable\": \"PowerDemandPositive\"}}, \"ExportEnergyReactive\": {{\"unit\": \"VAh\", \"label\": \"\", \"value\": \"{exportenergyreactive}\", \"variable\": \"ExportEnergyReactive\"}}, \"ImportEnergyReactive\": {{\"unit\": \"VAh\", \"label\": \"\", \"value\": \"{importenergyreactive}\", \"variable\": \"ImportEnergyReactive\"}}}}"
logger.info(f"{destTime=}, {destApplication=}, {destDevice=}, {destAttributes=}, {destValues=}")
try:
destCur.execute("insert into measurements (time, application, device, attributes, values) values(%s, %s, %s, %s, %s)",
(destTime, destApplication, destDevice, destAttributes, destValues))
destConn.commit()
except Exception as e:
destConn.rollback()
logger.error(f"Error {e} when inserted time {destTime}")
finally:
if srcConn:
srcConn.close()
if destConn:
destConn.close()

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@ -1,78 +0,0 @@
import psycopg2
from loguru import logger
import os
srcPgHost = os.environ["SRC_PGHOST"]
srcPgUser = os.environ["SRC_PGUSER"]
srcPgPassword = os.environ["SRC_PGPASSWORD"]
srcPgDatabase = os.environ["SRC_PGDATABASE"]
destPgHost = os.environ["DEST_PGHOST"]
destPgUser = os.environ["DEST_PGUSER"]
destPgPassword = os.environ["DEST_PGPASSWORD"]
destPgDatabase = os.environ["DEST_PGDATABASE"]
try:
srcConn = psycopg2.connect(
host=srcPgHost,
dbname=srcPgDatabase,
user=srcPgUser,
password=srcPgPassword,
sslmode='require'
)
srcConn.autocommit = False
destConn = psycopg2.connect(
host=destPgHost,
dbname=destPgDatabase,
user=destPgUser,
password=destPgPassword,
sslmode='require'
)
destConn.autocommit = False
with srcConn.cursor() as srcCur, destConn.cursor() as destCur:
srcCur.execute("select time, location, status, temperature, category from room_climate_measurement_t where category = 'heating' and time > '2023-12-19 05:20:00' order by time")
for srcObj in srcCur:
timestamp = srcObj[0]
location = srcObj[1]
status = srcObj[2]
temperature = srcObj[3]
category = srcObj[4]
logger.info(f"{timestamp=}, {location=}, {status=}, {temperature=}, {category=}")
destTime = timestamp
match category:
case 'heating':
destApplication = 'Temperature Heating'
case 'Outdoor':
destApplication = 'Temperature Wago'
case 'Device':
destApplication = 'Temperature Wago'
case 'Indoor':
destApplication = 'Temperature Multisensor' if location != 'Anna-Koeln-2' else 'Temperature Shelly Plus HT'
case 'Special':
destApplication = 'Temperature Multisensor'
destDevice = location
destAttributes = '{"ApplicationId":"temperature-imported", "Status":"' + status + '","Location":"' + location + '","Category":"' + category + '","Hint": "Migrated"}'
destValues = '{"Value": {"unit": "°C", "label": "", "value": "' + str(temperature) + '", "variable": ""}}'
logger.info(f"{destTime=}, {destApplication=}, {destDevice=}, {destAttributes=}, {destValues=}")
try:
destCur.execute("insert into measurements (time, application, device, attributes, values) values(%s, %s, %s, %s, %s)",
(destTime, destApplication, destDevice, destAttributes, destValues))
destConn.commit()
except Exception as e:
destConn.rollback()
logger.error(f"Error {e} when inserted time {destTime}")
finally:
if srcConn:
srcConn.close()
if destConn:
destConn.close()

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@ -1,2 +0,0 @@
loguru==0.7.3
psycopg2==2.9.9

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@ -129,3 +129,20 @@ create or replace view lora_sht21_v as
where m.application = 'de-hottis-app01' and
m.attributes->>'DeviceType' = 'hottis-gy21' and
m.device = d.label;
create or replace view ntp_server_snmp_v as
select time,
device,
cast(values->'load1'->>'value' as float) as laLoad1,
cast(values->'lan-in'->>'value' as int) as lanInOctetsPerSeconds,
cast(values->'lan-out'->>'value' as int) as lanOutOctetsPerSeconds
from measurements
where application = 'SNMP' and device = '172.16.13.10';
create or replace view ntp_server_variables_v as
select time,
device,
cast(values->'rootdisp'->>'value' as float) as rootdisp
from measurements
where application = 'TSM' and device = '172.16.13.10';

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@ -9,6 +9,7 @@ type VariableType struct {
Variable string `json:"variable"`
Unit string `json:"unit"`
Value interface{} `json:"value,omitempty"`
Status string `json:"status,omitempty"`
}
type Measurement struct {

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@ -17,7 +17,7 @@ import "udi/handlers/sver"
import "udi/handlers/svej"
import "udi/handlers/dt1t"
import "udi/handlers/locative"
import "udi/handlers/snmp"
import "udi/handlers/prepared"
import "udi/handlers/z2m"
@ -49,8 +49,8 @@ func InitDispatcher() {
factory = dt1t.New
case "Locative":
factory = locative.New
case "SNMP":
factory = snmp.New
case "PREP":
factory = prepared.New
case "Z2M":
factory = z2m.New
default:

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@ -1,4 +1,4 @@
package snmp
package prepared
import (
"time"
@ -10,7 +10,7 @@ import (
)
type SnmpHandler struct {
type PreparedHandler struct {
handler.CommonHandler
dbh *database.DatabaseHandle
}
@ -19,6 +19,8 @@ type endpoint_t struct {
Label string `json:"label"`
Variable string `json:"variable"`
Value string `json:"value"`
Unit string `json:"unit"`
Status string `json:"status"`
}
type observation_t struct {
@ -29,16 +31,16 @@ type observation_t struct {
func New(id string, config config.HandlerConfigT) handler.Handler {
t := &SnmpHandler {
t := &PreparedHandler {
}
t.Id = id
t.dbh = database.NewDatabaseHandle()
log.Printf("Handler SNMP %d initialized", id)
log.Printf("Handler Prepared %d initialized", id)
return t
}
func (self *SnmpHandler) Handle(message handler.MessageT) {
// log.Printf("Handler SNMP %d processing %s -> %s", self.Id, message.Topic, message.Payload)
func (self *PreparedHandler) Handle(message handler.MessageT) {
log.Printf("Handler Prepared %d processing %s -> %s", self.Id, message.Topic, message.Payload)
var observation observation_t
err := json.Unmarshal([]byte(message.Payload), &observation)
@ -50,7 +52,7 @@ func (self *SnmpHandler) Handle(message handler.MessageT) {
var measurement database.Measurement
measurement.Time = time.Now()
measurement.Application = "SNMP"
measurement.Application = self.Id
measurement.Device = observation.Device
measurement.Attributes = map[string]interface{} {
@ -62,12 +64,13 @@ func (self *SnmpHandler) Handle(message handler.MessageT) {
measurement.Values[k] = database.VariableType {
Label: v.Label,
Variable: v.Variable,
Unit: "",
Unit: v.Unit,
Value: v.Value,
Status: v.Status,
}
}
// log.Printf("Prepared measurement item: %s", measurement)
log.Printf("Prepared measurement item: %s", measurement)
self.dbh.StoreMeasurement(&measurement)
self.S()