Compare commits

..
Author SHA1 Message Date
Nigel a98c9ae4b7 issue-51-telegram made Telegram str and json methods more generic 2023-02-19 12:21:20 +01:00
Nigel 14d9869fc3 issue-51-telegram feedback from lowdef 2023-02-18 19:55:27 +01:00
Nigel 36705f99ca issue-51-telegram refining 2023-02-18 15:04:31 +01:00
Nigel 0a6316e155 issue-51-telegram make Telegram completely backwards compatible for now 2023-02-18 10:16:31 +01:00
Nigel 64787130bc issue-51-telegram make Telegram completely backwards compatible for now 2023-02-18 10:13:43 +01:00
Nigel 929435c5fb issue-51-telegram convert all datetime objects to UTC 2023-02-15 15:43:26 +01:00
Nigel d930c1082a issue-51-telegram add test for Telegram.__str__ 2023-02-15 15:11:23 +01:00
Nigel b7f3af00b9 issue-51-telegram work in progress 2023-02-15 13:55:26 +01:00
Nigel ad25fd4182 issue-51-telegram work in progress 2023-02-15 11:55:28 +01:00
Nigel 516850481d issue-51-telegram removed Telegram.__getattr__ and refactored __iter__ as well 2023-02-13 21:47:59 +01:00
Nigel c7b9966083 issue-51-telegram code style 2023-02-12 20:22:24 +01:00
Nigel 8dee5edb0d issue-51-telegram code style 2023-02-12 18:40:52 +01:00
Nigel 7bda3de4d9 issue-51-telegram fix compatibility with changes from master 2023-02-12 18:34:26 +01:00
Nigel 976681b929 Merge branch 'master' into issue-51-telegram 2023-02-12 18:32:14 +01:00
Nigel 0593d4172d issue-51-telegram fix bug when no mbus devices are present 2023-02-12 18:06:01 +01:00
Nigel 47db8cad27 issue-51-telegram fix Telegram.get_mbus_device_by_channel 2023-02-12 11:28:02 +01:00
Nigel 32854897d8 issue-51-telegram updated code comment 2023-02-12 11:18:05 +01:00
Nigel b527e991ef issue-51-telegram updated documentation; refactored V5 unittest to use telegram attributes instead of keys; 2023-02-12 11:14:47 +01:00
Nigel 253d043b7b issue-51-telegram updated Telegram object docs and cleaned it up a bit 2023-02-11 17:38:25 +01:00
Nigel eab90e7049 issue-51-telegram work in progress 2023-02-11 09:44:54 +01:00
Nigel 3ae06f88b7 issue-51-telegram work in progress 2023-02-11 09:39:44 +01:00
Nigel f5d402ad1b issue-51-telegram work in progress 2023-02-08 19:43:35 +01:00
Nigel 3152304679 issue-51-telegram work in progress 2023-02-08 19:39:10 +01:00
Nigel 98df0922e9 Merge branch 'master' into issue-51-telegram 2023-02-08 12:07:29 +01:00
Nigel ee2db04ec0 issue-51-telegram work in progress 2023-02-08 11:53:08 +01:00
Nigel ef66c8422c issue-51-telegram work in progress 2023-02-07 19:48:56 +01:00
Nigel f92836da2f issue-51-telegram WIP 2023-01-15 14:01:48 +01:00
Nigel 2adcd2b207 issue-51-telegram WIP 2023-01-15 13:59:15 +01:00
Nigel 3e0332963c issue-51-telegram work in progress 2023-01-14 19:47:24 +01:00
Nigel 29872ae6bb issue-51-telegram remove unused imports 2023-01-14 13:42:42 +01:00
Nigel d146565717 issue-51-telegram refactored TelegramParser.parse to return Telegram object. Telegram object now does not do parsing anymore. 2023-01-14 13:39:44 +01:00
28 changed files with 829 additions and 2449 deletions
+4 -6
View File
@@ -12,25 +12,23 @@ jobs:
strategy: strategy:
matrix: matrix:
python-version: python-version:
- '3.6'
- '3.7' - '3.7'
- '3.8' - '3.8'
- '3.9' - '3.9'
- '3.10' - '3.10'
- '3.11' - '3.11'
- '3.12'
name: Python ${{ matrix.python-version }} name: Python ${{ matrix.python-version }}
steps: steps:
- uses: actions/checkout@v4 - uses: actions/checkout@v3
- name: Setup Python ${{ matrix.python-version }} - name: Setup Python ${{ matrix.python-version }}
uses: actions/setup-python@v5 uses: actions/setup-python@v2
with: with:
python-version: ${{ matrix.python-version }} python-version: ${{ matrix.python-version }}
- name: Cached PIP dependencies - name: Cached PIP dependencies
uses: actions/cache@v4 uses: actions/cache@v3
with: with:
path: | path: |
~/.cache/pip ~/.cache/pip
@@ -45,4 +43,4 @@ jobs:
run: tox run: tox
- name: Code coverage upload - name: Code coverage upload
uses: codecov/codecov-action@v4 uses: codecov/codecov-action@v3
-46
View File
@@ -1,55 +1,9 @@
Change Log Change Log
---------- ----------
**1.4.2** (2024-07-14)
- Bump Github Actions to latest versions in favor of Node deprecations (`PR #159 <https://github.com/ndokter/dsmr_parser/pull/159>`_ by `dennissiemensma <https://github.com/dennissiemensma>`_)
- Swap pyserial-asyncio for pyserial-asyncio-fast (`PR #158 <https://github.com/ndokter/dsmr_parser/pull/158>`_ by `bdraco <https://github.com/bdraco>`_)
**1.4.1** (2024-06-04)
- Avoid loading timezone at runtime (`PR #157 <https://github.com/ndokter/dsmr_parser/pull/157>`_ by `elupus <https://github.com/elupus>`_)
**1.4.0** (2024-03-12)
- Mbus alt (`PR #142 <https://github.com/ndokter/dsmr_parser/pull/142>`_ by `dupondje <https://github.com/dupondje>`_)
- Q3D add CURRENT_ELECTRICITY_DELIVERY (`PR #149 <https://github.com/ndokter/dsmr_parser/pull/149>`_ by `Aeroid <https://github.com/Aeroid>`_)
- Copy head_parsers list on construct. (`PR #150 <https://github.com/ndokter/dsmr_parser/pull/150>`_ by `dupondje <https://github.com/dupondje>`_)
**1.3.2** (2024-01-29)
- Fix unit test for pyton 3.12 (`PR #148 <https://github.com/ndokter/dsmr_parser/pull/148>`_ by `ndokter <https://github.com/ndokter>`_)
**1.3.1** (2023-11-06)
- Fix parsing peak usage with invalid timestamps (`PR #143 <https://github.com/ndokter/dsmr_parser/pull/143>`_ by `dupondje <https://github.com/dupondje>`_)
**1.3.0** (2023-08-01)
- added E.ON Hungary; refactored DSMR specifications to fix obis reference conflicts (`PR #137 <https://github.com/ndokter/dsmr_parser/pull/137>`_ by `balazs92117 <https://github.com/balazs92117>`_)
**1.2.4** (2023-07-11)
- EQUIPMENT IDENTIFIER is wrong for Fluvius meters when other mbus devices are present (`PR #133 <https://github.com/ndokter/dsmr_parser/pull/133>`_ by `ejpalacios <https://github.com/ejpalacios>`_)
**1.2.3** (2023-04-18)
- Fix parsing tests and line start matching (`PR #132 <https://github.com/ndokter/dsmr_parser/pull/132>`_ by `dupondje <https://github.com/dupondje>`_)
**1.2.2** (2023-04-12)
- Improve performance. Thanks to `ejpalacios <https://github.com/bdraco>`_ (`PR #130 <https://github.com/ndokter/dsmr_parser/pull/130>`_ by `ndokter <https://github.com/ndokter>`_)
**1.2.1** (2023-04-05)
- Bug/duplicate index BELGIUM_MAXIMUM_DEMAND_13_MONTHS (`PR #129 <https://github.com/ndokter/dsmr_parser/pull/129>`_ by `ejpalacios <https://github.com/ejpalacios>`_)
**1.2.0** (2023-02-18) **1.2.0** (2023-02-18)
- Improved gas meter (mbus devices) support and replaced Telegram dictionary with backwards compatible object (`PR #121 <https://github.com/ndokter/dsmr_parser/pull/121>`_ by `ndokter <https://github.com/ndokter>`_) - Improved gas meter (mbus devices) support and replaced Telegram dictionary with backwards compatible object (`PR #121 <https://github.com/ndokter/dsmr_parser/pull/121>`_ by `ndokter <https://github.com/ndokter>`_)
- Fix parsing with invalid timestamps (`PR #125 <https://github.com/ndokter/dsmr_parser/pull/125>`_ by `dupondje <https://github.com/dupondje>`_)
- Add Iskra IE.x meters specification (`PR #126 <https://github.com/ndokter/dsmr_parser/pull/126>`_ by `jchevalier7 <https://github.com/jchevalier7>`_)
**1.1.0** (2023-02-08) **1.1.0** (2023-02-08)
-30
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@@ -293,36 +293,6 @@ To install DSMR Parser:
$ pip install dsmr-parser $ pip install dsmr-parser
Development
-----------
Create a virtualenv and activate it followed by the installation of the dsmr-parser:
.. code-block:: bash
python3 -m venv venv
source venv/bin/activate
pip install -e .
Install tox and run it:
.. code-block:: bash
pip install tox
tox
You should see that the tests have succeeded:
.. code-block:: text
======================================================================================================== 59 passed in 0.91s ========================================================================================================
py: commands[1]> pylama dsmr_parser test
py: OK (11.55=setup[9.73]+cmd[1.29,0.53] seconds)
congratulations :) (11.69 seconds)
Now you can make changes by editing the code and rerunning tox to verify your changes.
Known issues Known issues
------------ ------------
+1 -1
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@@ -73,7 +73,7 @@ class FileReader(object):
try: try:
yield self.telegram_parser.parse(telegram) yield self.telegram_parser.parse(telegram)
except InvalidChecksumError as e: except InvalidChecksumError as e:
logger.info(str(e)) logger.warning(str(e))
except ParseError as e: except ParseError as e:
logger.error('Failed to parse telegram: %s', e) logger.error('Failed to parse telegram: %s', e)
+3 -8
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@@ -4,7 +4,7 @@ from functools import partial
import asyncio import asyncio
import logging import logging
from serial_asyncio_fast import create_serial_connection from serial_asyncio import create_serial_connection
from dsmr_parser import telegram_specifications from dsmr_parser import telegram_specifications
from dsmr_parser.clients.telegram_buffer import TelegramBuffer from dsmr_parser.clients.telegram_buffer import TelegramBuffer
@@ -21,9 +21,7 @@ def create_dsmr_protocol(dsmr_version, telegram_callback, loop=None, **kwargs):
return protocol return protocol
# pylama noqa - because of "complex" (too long) if-elif-else. def _create_dsmr_protocol(dsmr_version, telegram_callback, protocol, loop=None, **kwargs):
# Match - case might be a solution but it is not available in <3.10
def _create_dsmr_protocol(dsmr_version, telegram_callback, protocol, loop=None, **kwargs): #noqa
"""Creates a DSMR asyncio protocol.""" """Creates a DSMR asyncio protocol."""
if dsmr_version == '2.2': if dsmr_version == '2.2':
@@ -53,9 +51,6 @@ def _create_dsmr_protocol(dsmr_version, telegram_callback, protocol, loop=None,
elif dsmr_version == 'ISKRA_IE': elif dsmr_version == 'ISKRA_IE':
specification = telegram_specifications.ISKRA_IE specification = telegram_specifications.ISKRA_IE
serial_settings = SERIAL_SETTINGS_V5 serial_settings = SERIAL_SETTINGS_V5
elif dsmr_version == '5EONHU':
specification = telegram_specifications.EON_HUNGARY
serial_settings = SERIAL_SETTINGS_V5
else: else:
raise NotImplementedError("No telegram parser found for version: %s", raise NotImplementedError("No telegram parser found for version: %s",
dsmr_version) dsmr_version)
@@ -158,7 +153,7 @@ class DSMRProtocol(asyncio.Protocol):
try: try:
parsed_telegram = self.telegram_parser.parse(telegram) parsed_telegram = self.telegram_parser.parse(telegram)
except InvalidChecksumError as e: except InvalidChecksumError as e:
self.log.info(str(e)) self.log.warning(str(e))
except ParseError: except ParseError:
self.log.exception("failed to parse telegram") self.log.exception("failed to parse telegram")
else: else:
+1 -1
View File
@@ -2,7 +2,7 @@
import asyncio import asyncio
from serial_asyncio_fast import create_serial_connection from serial_asyncio import create_serial_connection
from .protocol import DSMRProtocol, _create_dsmr_protocol from .protocol import DSMRProtocol, _create_dsmr_protocol
+4 -4
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@@ -1,6 +1,6 @@
import logging import logging
import serial import serial
import serial_asyncio_fast import serial_asyncio
from dsmr_parser.clients.telegram_buffer import TelegramBuffer from dsmr_parser.clients.telegram_buffer import TelegramBuffer
from dsmr_parser.exceptions import ParseError, InvalidChecksumError from dsmr_parser.exceptions import ParseError, InvalidChecksumError
@@ -37,7 +37,7 @@ class SerialReader(object):
try: try:
yield self.telegram_parser.parse(telegram) yield self.telegram_parser.parse(telegram)
except InvalidChecksumError as e: except InvalidChecksumError as e:
logger.info(str(e)) logger.warning(str(e))
except ParseError as e: except ParseError as e:
logger.error('Failed to parse telegram: %s', e) logger.error('Failed to parse telegram: %s', e)
@@ -77,7 +77,7 @@ class AsyncSerialReader(SerialReader):
:rtype: None :rtype: None
""" """
# create Serial StreamReader # create Serial StreamReader
conn = serial_asyncio_fast.open_serial_connection(**self.serial_settings) conn = serial_asyncio.open_serial_connection(**self.serial_settings)
reader, _ = await conn reader, _ = await conn
while True: while True:
@@ -107,7 +107,7 @@ class AsyncSerialReader(SerialReader):
""" """
# create Serial StreamReader # create Serial StreamReader
conn = serial_asyncio_fast.open_serial_connection(**self.serial_settings) conn = serial_asyncio.open_serial_connection(**self.serial_settings)
reader, _ = await conn reader, _ = await conn
while True: while True:
+4 -13
View File
@@ -31,15 +31,11 @@ class SocketReader(object):
buffer = b"" buffer = b""
with socket.socket(socket.AF_INET, socket.SOCK_STREAM) as socket_handle: with socket.socket(socket.AF_INET, socket.SOCK_STREAM) as socket_handle:
socket_handle.settimeout(60)
socket_handle.connect((self.host, self.port)) socket_handle.connect((self.host, self.port))
while True: while True:
try: buffer += socket_handle.recv(self.BUFFER_SIZE)
buffer += socket_handle.recv(self.BUFFER_SIZE)
except socket.timeout:
logger.error("Socket timeout occurred, exiting")
break
lines = buffer.splitlines(keepends=True) lines = buffer.splitlines(keepends=True)
@@ -47,18 +43,13 @@ class SocketReader(object):
continue continue
for data in lines: for data in lines:
try: self.telegram_buffer.append(data.decode('ascii'))
self.telegram_buffer.append(data.decode('ascii'))
except UnicodeDecodeError:
# Some garbage came through the channel
# E.g.: Happens at EON_HUNGARY, but only once at the start of the socket.
logger.error('Failed to parse telegram due to unicode decode error')
for telegram in self.telegram_buffer.get_all(): for telegram in self.telegram_buffer.get_all():
try: try:
yield self.telegram_parser.parse(telegram) yield self.telegram_parser.parse(telegram)
except InvalidChecksumError as e: except InvalidChecksumError as e:
logger.info(str(e)) logger.warning(str(e))
except ParseError as e: except ParseError as e:
logger.error('Failed to parse telegram: %s', e) logger.error('Failed to parse telegram: %s', e)
+20 -10
View File
@@ -1,13 +1,5 @@
import re import re
# - Match all characters after start of telegram except for the start
# itself again '^\/]+', which eliminates incomplete preceding telegrams.
# - Do non greedy match using '?' so start is matched up to the first
# checksum that's found.
# - The checksum is optional '{0,4}' because not all telegram versions
# support it.
_FIND_TELEGRAMS_REGEX = re.compile(r"\/[^\/]+?\![A-F0-9]{0,4}\0?\r\n", re.DOTALL)
class TelegramBuffer(object): class TelegramBuffer(object):
""" """
@@ -16,14 +8,14 @@ class TelegramBuffer(object):
""" """
def __init__(self): def __init__(self):
self._buffer = "" self._buffer = ''
def get_all(self): def get_all(self):
""" """
Remove complete telegrams from buffer and yield them. Remove complete telegrams from buffer and yield them.
:rtype generator: :rtype generator:
""" """
for telegram in _FIND_TELEGRAMS_REGEX.findall(self._buffer): for telegram in self._find_telegrams():
self._remove(telegram) self._remove(telegram)
yield telegram yield telegram
@@ -45,3 +37,21 @@ class TelegramBuffer(object):
index = self._buffer.index(telegram) + len(telegram) index = self._buffer.index(telegram) + len(telegram)
self._buffer = self._buffer[index:] self._buffer = self._buffer[index:]
def _find_telegrams(self):
"""
Find complete telegrams in buffer from start ('/') till ending
checksum ('!AB12\r\n').
:rtype: list
"""
# - Match all characters after start of telegram except for the start
# itself again '^\/]+', which eliminates incomplete preceding telegrams.
# - Do non greedy match using '?' so start is matched up to the first
# checksum that's found.
# - The checksum is optional '{0,4}' because not all telegram versions
# support it.
return re.findall(
r'\/[^\/]+?\![A-F0-9]{0,4}\0?\r\n',
self._buffer,
re.DOTALL
)
+98
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@@ -0,0 +1,98 @@
from dsmr_parser import obis_references as obis
"""
dsmr_parser.obis_name_mapping
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
This module contains a mapping of obis references to names.
"""
EN = {
obis.P1_MESSAGE_HEADER: 'P1_MESSAGE_HEADER',
obis.P1_MESSAGE_TIMESTAMP: 'P1_MESSAGE_TIMESTAMP',
obis.ELECTRICITY_IMPORTED_TOTAL: 'ELECTRICITY_IMPORTED_TOTAL',
obis.ELECTRICITY_REACTIVE_IMPORTED_TOTAL: 'ELECTRICITY_REACTIVE_IMPORTED_TOTAL',
obis.ELECTRICITY_USED_TARIFF_1: 'ELECTRICITY_USED_TARIFF_1',
obis.ELECTRICITY_USED_TARIFF_2: 'ELECTRICITY_USED_TARIFF_2',
obis.ELECTRICITY_EXPORTED_TOTAL: 'ELECTRICITY_EXPORTED_TOTAL',
obis.ELECTRICITY_REACTIVE_EXPORTED_TOTAL: 'ELECTRICITY_REACTIVE_EXPORTED_TOTAL',
obis.ELECTRICITY_DELIVERED_TARIFF_1: 'ELECTRICITY_DELIVERED_TARIFF_1',
obis.ELECTRICITY_DELIVERED_TARIFF_2: 'ELECTRICITY_DELIVERED_TARIFF_2',
obis.ELECTRICITY_ACTIVE_TARIFF: 'ELECTRICITY_ACTIVE_TARIFF',
obis.CURRENT_REACTIVE_EXPORTED: 'CURRENT_REACTIVE_EXPORTED',
obis.ELECTRICITY_REACTIVE_IMPORTED_TARIFF_1: 'ELECTRICITY_REACTIVE_IMPORTED_TARIFF_1',
obis.ELECTRICITY_REACTIVE_IMPORTED_TARIFF_2: 'ELECTRICITY_REACTIVE_IMPORTED_TARIFF_2',
obis.ELECTRICITY_REACTIVE_EXPORTED_TARIFF_1: 'ELECTRICITY_REACTIVE_EXPORTED_TARIFF_1',
obis.ELECTRICITY_REACTIVE_EXPORTED_TARIFF_2: 'ELECTRICITY_REACTIVE_EXPORTED_TARIFF_2',
obis.CURRENT_REACTIVE_IMPORTED: 'CURRENT_REACTIVE_IMPORTED',
obis.EQUIPMENT_IDENTIFIER: 'EQUIPMENT_IDENTIFIER',
obis.CURRENT_ELECTRICITY_USAGE: 'CURRENT_ELECTRICITY_USAGE',
obis.CURRENT_ELECTRICITY_DELIVERY: 'CURRENT_ELECTRICITY_DELIVERY',
obis.LONG_POWER_FAILURE_COUNT: 'LONG_POWER_FAILURE_COUNT',
obis.SHORT_POWER_FAILURE_COUNT: 'SHORT_POWER_FAILURE_COUNT',
obis.POWER_EVENT_FAILURE_LOG: 'POWER_EVENT_FAILURE_LOG',
obis.VOLTAGE_SAG_L1_COUNT: 'VOLTAGE_SAG_L1_COUNT',
obis.VOLTAGE_SAG_L2_COUNT: 'VOLTAGE_SAG_L2_COUNT',
obis.VOLTAGE_SAG_L3_COUNT: 'VOLTAGE_SAG_L3_COUNT',
obis.VOLTAGE_SWELL_L1_COUNT: 'VOLTAGE_SWELL_L1_COUNT',
obis.VOLTAGE_SWELL_L2_COUNT: 'VOLTAGE_SWELL_L2_COUNT',
obis.VOLTAGE_SWELL_L3_COUNT: 'VOLTAGE_SWELL_L3_COUNT',
obis.INSTANTANEOUS_VOLTAGE_L1: 'INSTANTANEOUS_VOLTAGE_L1',
obis.INSTANTANEOUS_VOLTAGE_L2: 'INSTANTANEOUS_VOLTAGE_L2',
obis.INSTANTANEOUS_VOLTAGE_L3: 'INSTANTANEOUS_VOLTAGE_L3',
obis.INSTANTANEOUS_CURRENT_L1: 'INSTANTANEOUS_CURRENT_L1',
obis.INSTANTANEOUS_CURRENT_L2: 'INSTANTANEOUS_CURRENT_L2',
obis.INSTANTANEOUS_CURRENT_L3: 'INSTANTANEOUS_CURRENT_L3',
obis.TEXT_MESSAGE_CODE: 'TEXT_MESSAGE_CODE',
obis.TEXT_MESSAGE: 'TEXT_MESSAGE',
obis.DEVICE_TYPE: 'DEVICE_TYPE',
obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE: 'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE',
obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE: 'INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE',
obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE: 'INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE',
obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE: 'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE',
obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE: 'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE',
obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE: 'INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE',
obis.INSTANTANEOUS_REACTIVE_POWER_L1_POSITIVE: 'INSTANTANEOUS_REACTIVE_POWER_L1_POSITIVE',
obis.INSTANTANEOUS_REACTIVE_POWER_L1_NEGATIVE: 'INSTANTANEOUS_REACTIVE_POWER_L1_NEGATIVE',
obis.INSTANTANEOUS_REACTIVE_POWER_L2_POSITIVE: 'INSTANTANEOUS_REACTIVE_POWER_L2_POSITIVE',
obis.INSTANTANEOUS_REACTIVE_POWER_L2_NEGATIVE: 'INSTANTANEOUS_REACTIVE_POWER_L2_NEGATIVE',
obis.INSTANTANEOUS_REACTIVE_POWER_L3_POSITIVE: 'INSTANTANEOUS_REACTIVE_POWER_L3_POSITIVE',
obis.INSTANTANEOUS_REACTIVE_POWER_L3_NEGATIVE: 'INSTANTANEOUS_REACTIVE_POWER_L3_NEGATIVE',
obis.EQUIPMENT_IDENTIFIER_GAS: 'EQUIPMENT_IDENTIFIER_GAS',
obis.HOURLY_GAS_METER_READING: 'HOURLY_GAS_METER_READING',
obis.GAS_METER_READING: 'GAS_METER_READING',
obis.ACTUAL_TRESHOLD_ELECTRICITY: 'ACTUAL_TRESHOLD_ELECTRICITY',
obis.ACTUAL_SWITCH_POSITION: 'ACTUAL_SWITCH_POSITION',
obis.VALVE_POSITION_GAS: 'VALVE_POSITION_GAS',
obis.BELGIUM_VERSION_INFORMATION: 'BELGIUM_VERSION_INFORMATION',
obis.BELGIUM_EQUIPMENT_IDENTIFIER: 'BELGIUM_EQUIPMENT_IDENTIFIER',
obis.BELGIUM_CURRENT_AVERAGE_DEMAND: 'BELGIUM_CURRENT_AVERAGE_DEMAND',
obis.BELGIUM_MAXIMUM_DEMAND_MONTH: 'BELGIUM_MAXIMUM_DEMAND_MONTH',
obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS: 'BELGIUM_MAXIMUM_DEMAND_13_MONTHS',
obis.BELGIUM_MAX_POWER_PER_PHASE: 'BELGIUM_MAX_POWER_PER_PHASE',
obis.BELGIUM_MAX_CURRENT_PER_PHASE: 'BELGIUM_MAX_CURRENT_PER_PHASE',
obis.BELGIUM_MBUS1_DEVICE_TYPE: 'BELGIUM_MBUS1_DEVICE_TYPE',
obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER: 'BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER',
obis.BELGIUM_MBUS1_VALVE_POSITION: 'BELGIUM_MBUS1_VALVE_POSITION',
obis.BELGIUM_MBUS1_METER_READING1: 'BELGIUM_MBUS1_METER_READING1',
obis.BELGIUM_MBUS1_METER_READING2: 'BELGIUM_MBUS1_METER_READING2',
obis.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER: 'BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER',
obis.BELGIUM_MBUS2_VALVE_POSITION: 'BELGIUM_MBUS2_VALVE_POSITION',
obis.BELGIUM_MBUS2_METER_READING1: 'BELGIUM_MBUS2_METER_READING1',
obis.BELGIUM_MBUS2_METER_READING2: 'BELGIUM_MBUS2_METER_READING2',
obis.BELGIUM_MBUS3_EQUIPMENT_IDENTIFIER: 'BELGIUM_MBUS3_EQUIPMENT_IDENTIFIER',
obis.BELGIUM_MBUS3_VALVE_POSITION: 'BELGIUM_MBUS3_VALVE_POSITION',
obis.BELGIUM_MBUS3_METER_READING1: 'BELGIUM_MBUS3_METER_READING1',
obis.BELGIUM_MBUS3_METER_READING2: 'BELGIUM_MBUS3_METER_READING2',
obis.BELGIUM_MBUS4_EQUIPMENT_IDENTIFIER: 'BELGIUM_MBUS4_EQUIPMENT_IDENTIFIER',
obis.BELGIUM_MBUS4_VALVE_POSITION: 'BELGIUM_MBUS4_VALVE_POSITION',
obis.BELGIUM_MBUS4_METER_READING1: 'BELGIUM_MBUS4_METER_READING1',
obis.BELGIUM_MBUS4_METER_READING2: 'BELGIUM_MBUS4_METER_READING2',
obis.LUXEMBOURG_EQUIPMENT_IDENTIFIER: 'LUXEMBOURG_EQUIPMENT_IDENTIFIER',
obis.Q3D_EQUIPMENT_IDENTIFIER: 'Q3D_EQUIPMENT_IDENTIFIER',
obis.Q3D_EQUIPMENT_STATE: 'Q3D_EQUIPMENT_STATE',
obis.Q3D_EQUIPMENT_SERIALNUMBER: 'Q3D_EQUIPMENT_SERIALNUMBER',
obis.BELGIUM_MBUS2_DEVICE_TYPE: 'BELGIUM_MBUS2_DEVICE_TYPE'
}
REVERSE_EN = dict([(v, k) for k, v in EN.items()])
+97 -105
View File
@@ -6,88 +6,64 @@ refactored to full line signatures to maintain backwards compatibility.
Might be refactored in a backwards incompatible way as soon as proper telegram Might be refactored in a backwards incompatible way as soon as proper telegram
objects are introduced. objects are introduced.
""" """
P1_MESSAGE_HEADER = r'^\d-\d:0\.2\.8.+?\r\n' P1_MESSAGE_HEADER = r'\d-\d:0\.2\.8.+?\r\n'
P1_MESSAGE_TIMESTAMP = r'^\d-\d:1\.0\.0.+?\r\n' P1_MESSAGE_TIMESTAMP = r'\d-\d:1\.0\.0.+?\r\n'
ELECTRICITY_USED_TARIFF_1 = r'^\d-\d:1\.8\.1.+?\r\n' ELECTRICITY_USED_TARIFF_1 = r'\d-\d:1\.8\.1.+?\r\n'
ELECTRICITY_USED_TARIFF_2 = r'^\d-\d:1\.8\.2.+?\r\n' ELECTRICITY_USED_TARIFF_2 = r'\d-\d:1\.8\.2.+?\r\n'
ELECTRICITY_USED_TARIFF_3 = r'^\d-\d:1\.8\.3.+?\r\n' ELECTRICITY_DELIVERED_TARIFF_1 = r'\d-\d:2\.8\.1.+?\r\n'
ELECTRICITY_USED_TARIFF_4 = r'^\d-\d:1\.8\.4.+?\r\n' ELECTRICITY_DELIVERED_TARIFF_2 = r'\d-\d:2\.8\.2.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_1 = r'^\d-\d:2\.8\.1.+?\r\n' CURRENT_REACTIVE_IMPORTED = r'\d-\d:3\.7\.0.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_2 = r'^\d-\d:2\.8\.2.+?\r\n' ELECTRICITY_REACTIVE_IMPORTED_TOTAL = r'\d-\d:3\.8\.0.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_3 = r'^\d-\d:2\.8\.3.+?\r\n' ELECTRICITY_REACTIVE_IMPORTED_TARIFF_1 = r'\d-\d:3\.8\.1.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_4 = r'^\d-\d:2\.8\.4.+?\r\n' ELECTRICITY_REACTIVE_IMPORTED_TARIFF_2 = r'\d-\d:3\.8\.2.+?\r\n'
CURRENT_REACTIVE_IMPORTED = r'^\d-\d:3\.7\.0.+?\r\n' CURRENT_REACTIVE_EXPORTED = r'\d-\d:4\.7\.0.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TOTAL = r'^\d-\d:3\.8\.0.+?\r\n' ELECTRICITY_REACTIVE_EXPORTED_TOTAL = r'\d-\d:4\.8\.0.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TARIFF_1 = r'^\d-\d:3\.8\.1.+?\r\n' ELECTRICITY_REACTIVE_EXPORTED_TARIFF_1 = r'\d-\d:4\.8\.1.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TARIFF_2 = r'^\d-\d:3\.8\.2.+?\r\n' ELECTRICITY_REACTIVE_EXPORTED_TARIFF_2 = r'\d-\d:4\.8\.2.+?\r\n'
CURRENT_REACTIVE_EXPORTED = r'^\d-\d:4\.7\.0.+?\r\n' ELECTRICITY_ACTIVE_TARIFF = r'\d-\d:96\.14\.0.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TOTAL = r'^\d-\d:4\.8\.0.+?\r\n' EQUIPMENT_IDENTIFIER = r'\d-\d:96\.1\.1.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TARIFF_1 = r'^\d-\d:4\.8\.1.+?\r\n' CURRENT_ELECTRICITY_USAGE = r'\d-\d:1\.7\.0.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TARIFF_2 = r'^\d-\d:4\.8\.2.+?\r\n' CURRENT_ELECTRICITY_DELIVERY = r'\d-\d:2\.7\.0.+?\r\n'
ELECTRICITY_ACTIVE_TARIFF = r'^\d-\d:96\.14\.0.+?\r\n' LONG_POWER_FAILURE_COUNT = r'\d-\d:96\.7\.9.+?\r\n'
EQUIPMENT_IDENTIFIER = r'^\d-\d:96\.1\.1.+?\r\n' SHORT_POWER_FAILURE_COUNT = r'\d-\d:96\.7\.21.+?\r\n'
CURRENT_ELECTRICITY_USAGE = r'^\d-\d:1\.7\.0.+?\r\n' POWER_EVENT_FAILURE_LOG = r'\d-\d:99\.97\.0.+?\r\n'
CURRENT_ELECTRICITY_DELIVERY = r'^\d-\d:2\.7\.0.+?\r\n' VOLTAGE_SAG_L1_COUNT = r'\d-\d:32\.32\.0.+?\r\n'
LONG_POWER_FAILURE_COUNT = r'^\d-\d:96\.7\.9.+?\r\n' VOLTAGE_SAG_L2_COUNT = r'\d-\d:52\.32\.0.+?\r\n'
SHORT_POWER_FAILURE_COUNT = r'^\d-\d:96\.7\.21.+?\r\n' VOLTAGE_SAG_L3_COUNT = r'\d-\d:72\.32\.0.+?\r\n'
POWER_EVENT_FAILURE_LOG = r'^\d-\d:99\.97\.0.+?\r\n' VOLTAGE_SWELL_L1_COUNT = r'\d-\d:32\.36\.0.+?\r\n'
VOLTAGE_SAG_L1_COUNT = r'^\d-\d:32\.32\.0.+?\r\n' VOLTAGE_SWELL_L2_COUNT = r'\d-\d:52\.36\.0.+?\r\n'
VOLTAGE_SAG_L2_COUNT = r'^\d-\d:52\.32\.0.+?\r\n' VOLTAGE_SWELL_L3_COUNT = r'\d-\d:72\.36\.0.+?\r\n'
VOLTAGE_SAG_L3_COUNT = r'^\d-\d:72\.32\.0.+?\r\n' INSTANTANEOUS_VOLTAGE_L1 = r'\d-\d:32\.7\.0.+?\r\n'
VOLTAGE_SWELL_L1_COUNT = r'^\d-\d:32\.36\.0.+?\r\n' INSTANTANEOUS_VOLTAGE_L2 = r'\d-\d:52\.7\.0.+?\r\n'
VOLTAGE_SWELL_L2_COUNT = r'^\d-\d:52\.36\.0.+?\r\n' INSTANTANEOUS_VOLTAGE_L3 = r'\d-\d:72\.7\.0.+?\r\n'
VOLTAGE_SWELL_L3_COUNT = r'^\d-\d:72\.36\.0.+?\r\n' INSTANTANEOUS_CURRENT_L1 = r'\d-\d:31\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L1 = r'^\d-\d:32\.7\.0.+?\r\n' INSTANTANEOUS_CURRENT_L2 = r'\d-\d:51\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L2 = r'^\d-\d:52\.7\.0.+?\r\n' INSTANTANEOUS_CURRENT_L3 = r'\d-\d:71\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L3 = r'^\d-\d:72\.7\.0.+?\r\n' TEXT_MESSAGE_CODE = r'\d-\d:96\.13\.1.+?\r\n'
INSTANTANEOUS_CURRENT_L1 = r'^\d-\d:31\.7\.0.+?\r\n' TEXT_MESSAGE = r'\d-\d:96\.13\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L2 = r'^\d-\d:51\.7\.0.+?\r\n' DEVICE_TYPE = r'\d-\d:24\.1\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L3 = r'^\d-\d:71\.7\.0.+?\r\n' INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE = r'\d-\d:21\.7\.0.+?\r\n'
FUSE_THRESHOLD_L1 = r'^\d-\d:31\.4\.0.+?\r\n' # Applicable when current limitation is active INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE = r'\d-\d:41\.7\.0.+?\r\n'
FUSE_THRESHOLD_L2 = r'^\d-\d:51\.4\.0.+?\r\n' # Applicable when current limitation is active INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE = r'\d-\d:61\.7\.0.+?\r\n'
FUSE_THRESHOLD_L3 = r'^\d-\d:71\.4\.0.+?\r\n' # Applicable when current limitation is active INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE = r'\d-\d:22\.7\.0.+?\r\n'
TEXT_MESSAGE_CODE = r'^\d-\d:96\.13\.1.+?\r\n' INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE = r'\d-\d:42\.7\.0.+?\r\n'
TEXT_MESSAGE = r'^\d-\d:96\.13\.0.+?\r\n' INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE = r'\d-\d:62\.7\.0.+?\r\n'
DEVICE_TYPE = r'^\d-\d:24\.1\.0.+?\r\n' INSTANTANEOUS_REACTIVE_POWER_L1_POSITIVE = r'\d-\d:23\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE = r'^\d-\d:21\.7\.0.+?\r\n' INSTANTANEOUS_REACTIVE_POWER_L1_NEGATIVE = r'\d-\d:24\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE = r'^\d-\d:41\.7\.0.+?\r\n' INSTANTANEOUS_REACTIVE_POWER_L2_POSITIVE = r'\d-\d:43\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE = r'^\d-\d:61\.7\.0.+?\r\n' INSTANTANEOUS_REACTIVE_POWER_L2_NEGATIVE = r'\d-\d:44\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE = r'^\d-\d:22\.7\.0.+?\r\n' INSTANTANEOUS_REACTIVE_POWER_L3_POSITIVE = r'\d-\d:63\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE = r'^\d-\d:42\.7\.0.+?\r\n' INSTANTANEOUS_REACTIVE_POWER_L3_NEGATIVE = r'\d-\d:64\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE = r'^\d-\d:62\.7\.0.+?\r\n' EQUIPMENT_IDENTIFIER_GAS = r'\d-\d:96\.1\.0.+?\r\n'
INSTANTANEOUS_REACTIVE_POWER_L1_POSITIVE = r'^\d-\d:23\.7\.0.+?\r\n'
INSTANTANEOUS_REACTIVE_POWER_L1_NEGATIVE = r'^\d-\d:24\.7\.0.+?\r\n'
INSTANTANEOUS_REACTIVE_POWER_L2_POSITIVE = r'^\d-\d:43\.7\.0.+?\r\n'
INSTANTANEOUS_REACTIVE_POWER_L2_NEGATIVE = r'^\d-\d:44\.7\.0.+?\r\n'
INSTANTANEOUS_REACTIVE_POWER_L3_POSITIVE = r'^\d-\d:63\.7\.0.+?\r\n'
INSTANTANEOUS_REACTIVE_POWER_L3_NEGATIVE = r'^\d-\d:64\.7\.0.+?\r\n'
EQUIPMENT_IDENTIFIER_GAS = r'^\d-\d:96\.1\.0.+?\r\n'
# TODO differences between gas meter readings in v3 and lower and v4 and up # TODO differences between gas meter readings in v3 and lower and v4 and up
HOURLY_GAS_METER_READING = r'^\d-\d:24\.2\.1.+?\r\n' HOURLY_GAS_METER_READING = r'\d-\d:24\.2\.1.+?\r\n'
GAS_METER_READING = r'^\d-\d:24\.3\.0.+?\r\n.+?\r\n' GAS_METER_READING = r'\d-\d:24\.3\.0.+?\r\n.+?\r\n'
ACTUAL_TRESHOLD_ELECTRICITY = r'^\d-\d:17\.0\.0.+?\r\n' ACTUAL_TRESHOLD_ELECTRICITY = r'\d-\d:17\.0\.0.+?\r\n'
ACTUAL_SWITCH_POSITION = r'^\d-\d:96\.3\.10.+?\r\n' ACTUAL_SWITCH_POSITION = r'\d-\d:96\.3\.10.+?\r\n'
VALVE_POSITION_GAS = r'^\d-\d:24\.4\.0.+?\r\n' VALVE_POSITION_GAS = r'\d-\d:24\.4\.0.+?\r\n'
# Multiple 'slaves' can be linked to the main device.
# The type is reported on 24.1.0
# Specifications are in EN 13757-3
# For example: Water mater = 7, Gas meter = 3
# Identifier is on 96.1.0 (in NL for ex) or
# on 96.1.1 (in BE for ex)
# The values are reported on 24.2.1
# With an exception in Belgium for the GAS meter
# Be aware that for the gas volume, another OBIS-code is published
# than the one listed in section 7 of DSMR P1.
# This is due to the fact that in Belgium the not-temperature
# corrected gas volume is used while in the Netherlands,
# the temperature corrected gas volume is used.
MBUS_DEVICE_TYPE = r'^\d-[1-9]:24\.1\.0.+?\r\n'
MBUS_EQUIPMENT_IDENTIFIER = r'^\d-[1-9]:96\.1\.[01].+?\r\n'
MBUS_VALVE_POSITION = r'^\d-[1-9]:24\.4\.0.+?\r\n'
MBUS_METER_READING = r'^\d-[1-9]:24\.2\.[13].+?\r\n'
# TODO 17.0.0 # TODO 17.0.0
# TODO 96.3.10
ELECTRICITY_USED_TARIFF_ALL = ( ELECTRICITY_USED_TARIFF_ALL = (
ELECTRICITY_USED_TARIFF_1, ELECTRICITY_USED_TARIFF_1,
@@ -99,34 +75,50 @@ ELECTRICITY_DELIVERED_TARIFF_ALL = (
) )
# International generalized additions # International generalized additions
ELECTRICITY_IMPORTED_TOTAL = r'^\d-\d:1\.8\.0.+?\r\n' # Total imported energy register (P+) ELECTRICITY_IMPORTED_TOTAL = r'\d-\d:1\.8\.0.+?\r\n' # Total imported energy register (P+)
ELECTRICITY_EXPORTED_TOTAL = r'^\d-\d:2\.8\.0.+?\r\n' # Total exported energy register (P-) ELECTRICITY_EXPORTED_TOTAL = r'\d-\d:2\.8\.0.+?\r\n' # Total exported energy register (P-)
# International non generalized additions (country specific) / risk for necessary refactoring # International non generalized additions (country specific) / risk for necessary refactoring
BELGIUM_VERSION_INFORMATION = r'^\d-\d:96\.1\.4.+?\r\n' BELGIUM_VERSION_INFORMATION = r'\d-\d:96\.1\.4.+?\r\n'
BELGIUM_EQUIPMENT_IDENTIFIER = r'^\d-0:96\.1\.1.+?\r\n' BELGIUM_EQUIPMENT_IDENTIFIER = r'\d-0:96\.1\.1.+?\r\n'
BELGIUM_CURRENT_AVERAGE_DEMAND = r'^\d-\d:1\.4\.0.+?\r\n' BELGIUM_CURRENT_AVERAGE_DEMAND = r'\d-\d:1\.4\.0.+?\r\n'
BELGIUM_MAXIMUM_DEMAND_MONTH = r'^\d-\d:1\.6\.0.+?\r\n' BELGIUM_MAXIMUM_DEMAND_MONTH = r'\d-\d:1\.6\.0.+?\r\n'
BELGIUM_MAXIMUM_DEMAND_13_MONTHS = r'^\d-\d:98\.1\.0.+?\r\n' BELGIUM_MAXIMUM_DEMAND_13_MONTHS = r'\d-\d:98\.1\.0.+?\r\n'
BELGIUM_MAX_POWER_PER_PHASE = r'\d-\d:17\.0\.0.+?\r\n' # Applicable when power limitation is active
BELGIUM_MAX_CURRENT_PER_PHASE = r'\d-\d:31\.4\.0.+?\r\n' # Applicable when current limitation is active
LUXEMBOURG_EQUIPMENT_IDENTIFIER = r'^\d-\d:42\.0\.0.+?\r\n' # Logical device name # Multiple 'slaves' can be linked to the main device.
# Mostly MBUS1 = GAS METER with values on 24.2.3
# While WATER METER reports it's values on 24.2.1
# The GAS METER also reports its valve state on 24.4.0
# Dev type for gas = 7 and water = 8
BELGIUM_MBUS1_DEVICE_TYPE = r'\d-1:24\.1\.0.+?\r\n'
BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER = r'\d-1:96\.1\.1.+?\r\n'
BELGIUM_MBUS1_VALVE_POSITION = r'\d-1:24\.4\.0.+?\r\n'
BELGIUM_MBUS1_METER_READING1 = r'\d-1:24\.2\.1.+?\r\n'
BELGIUM_MBUS1_METER_READING2 = r'\d-1:24\.2\.3.+?\r\n'
Q3D_EQUIPMENT_IDENTIFIER = r'^\d-\d:0\.0\.0.+?\r\n' # Logical device name BELGIUM_MBUS2_DEVICE_TYPE = r'\d-2:24\.1\.0.+?\r\n'
Q3D_EQUIPMENT_STATE = r'^\d-\d:96\.5\.5.+?\r\n' # Device state (hexadecimal) BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER = r'\d-2:96\.1\.1.+?\r\n'
Q3D_EQUIPMENT_SERIALNUMBER = r'^\d-\d:96\.1\.255.+?\r\n' # Device Serialnumber BELGIUM_MBUS2_VALVE_POSITION = r'\d-2:24\.4\.0.+?\r\n'
BELGIUM_MBUS2_METER_READING1 = r'\d-2:24\.2\.1.+?\r\n'
BELGIUM_MBUS2_METER_READING2 = r'\d-2:24\.2\.3.+?\r\n'
# EON Hungary BELGIUM_MBUS3_DEVICE_TYPE = r'\d-3:24\.1\.0.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q1 = r'^\d-\d:5\.8\.0.+?\r\n' BELGIUM_MBUS3_EQUIPMENT_IDENTIFIER = r'\d-3:96\.1\.1.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q2 = r'^\d-\d:6\.8\.0.+?\r\n' BELGIUM_MBUS3_VALVE_POSITION = r'\d-3:24\.4\.0.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q3 = r'^\d-\d:7\.8\.0.+?\r\n' BELGIUM_MBUS3_METER_READING1 = r'\d-3:24\.2\.1.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q4 = r'^\d-\d:8\.8\.0.+?\r\n' BELGIUM_MBUS3_METER_READING2 = r'\d-3:24\.2\.3.+?\r\n'
EON_HU_ELECTRICITY_COMBINED = r'^\d-\d:15\.8\.0.+?\r\n'
EON_HU_INSTANTANEOUS_POWER_FACTOR_TOTAL = r'^\d-\d:13\.7\.0.+?\r\n' BELGIUM_MBUS4_DEVICE_TYPE = r'\d-4:24\.1\.0.+?\r\n'
EON_HU_INSTANTANEOUS_POWER_FACTOR_L1 = r'^\d-\d:33\.7\.0.+?\r\n' BELGIUM_MBUS4_EQUIPMENT_IDENTIFIER = r'\d-4:96\.1\.1.+?\r\n'
EON_HU_INSTANTANEOUS_POWER_FACTOR_L2 = r'^\d-\d:53\.7\.0.+?\r\n' BELGIUM_MBUS4_VALVE_POSITION = r'\d-4:24\.4\.0.+?\r\n'
EON_HU_INSTANTANEOUS_POWER_FACTOR_L3 = r'^\d-\d:73\.7\.0.+?\r\n' BELGIUM_MBUS4_METER_READING1 = r'\d-4:24\.2\.1.+?\r\n'
EON_HU_FREQUENCY = r'^\d-\d:14\.7\.0.+?\r\n' BELGIUM_MBUS4_METER_READING2 = r'\d-4:24\.2\.3.+?\r\n'
EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q1 = r'^\d-\d:5\.7\.0.+?\r\n'
EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q2 = r'^\d-\d:6\.7\.0.+?\r\n'
EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q3 = r'^\d-\d:7\.7\.0.+?\r\n' LUXEMBOURG_EQUIPMENT_IDENTIFIER = r'\d-\d:42\.0\.0.+?\r\n' # Logical device name
EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q4 = r'^\d-\d:8\.7\.0.+?\r\n'
Q3D_EQUIPMENT_IDENTIFIER = r'\d-\d:0\.0\.0.+?\r\n' # Logical device name
Q3D_EQUIPMENT_STATE = r'\d-\d:96\.5\.5.+?\r\n' # Device state (hexadecimal)
Q3D_EQUIPMENT_SERIALNUMBER = r'\d-\d:96\.1\.255.+?\r\n' # Device Serialnumber
+28 -37
View File
@@ -5,6 +5,8 @@ import json
import pytz import pytz
from dsmr_parser import obis_name_mapping
class Telegram(dict): class Telegram(dict):
""" """
@@ -25,21 +27,22 @@ class Telegram(dict):
self._mbus_devices = [] self._mbus_devices = []
super().__init__(*args, **kwargs) super().__init__(*args, **kwargs)
def add(self, obis_reference, dsmr_object, obis_name): def add(self, obis_reference, dsmr_object):
# Update name mapping used to get value by attribute. Example: telegram.P1_MESSAGE_HEADER # Update name mapping used to get value by attribute. Example: telegram.P1_MESSAGE_HEADER
obis_name = obis_name_mapping.EN[obis_reference]
setattr(self, obis_name, dsmr_object) setattr(self, obis_name, dsmr_object)
if obis_name not in self._item_names: # TODO repeating obis references
self._item_names.append(obis_name)
# TODO isinstance check: MaxDemandParser (BELGIUM_MAXIMUM_DEMAND_13_MONTHS) returns a list # TODO isinstance check: MaxDemandParser (BELGIUM_MAXIMUM_DEMAND_13_MONTHS) returns a list
if isinstance(dsmr_object, DSMRObject) and dsmr_object.is_mbus_reading: if isinstance(dsmr_object, DSMRObject) and dsmr_object.is_mbus_reading:
self._add_mbus(obis_reference, dsmr_object, obis_name) self._add_mbus(obis_reference, dsmr_object)
elif obis_name not in self._item_names: # TODO repeating obis references
self._item_names.append(obis_name)
# Fill dict which is only used for backwards compatibility # Fill dict which is only used for backwards compatibility
if obis_reference not in self: if obis_reference not in self:
self[obis_reference] = dsmr_object self[obis_reference] = dsmr_object
def _add_mbus(self, obis_reference, dsmr_object, obis_name): def _add_mbus(self, obis_reference, dsmr_object):
""" """
The given DsmrObject is assumed to be Mbus related and will be grouped into a MbusDevice. The given DsmrObject is assumed to be Mbus related and will be grouped into a MbusDevice.
Grouping is done by the DsmrObject channel ID. Grouping is done by the DsmrObject channel ID.
@@ -52,7 +55,7 @@ class Telegram(dict):
mbus_device = MbusDevice(channel_id=channel_id) mbus_device = MbusDevice(channel_id=channel_id)
self._mbus_devices.append(mbus_device) self._mbus_devices.append(mbus_device)
mbus_device.add(obis_reference, dsmr_object, obis_name) mbus_device.add(obis_reference, dsmr_object)
if not hasattr(self, 'MBUS_DEVICES'): if not hasattr(self, 'MBUS_DEVICES'):
setattr(self, 'MBUS_DEVICES', self._mbus_devices) setattr(self, 'MBUS_DEVICES', self._mbus_devices)
@@ -140,25 +143,22 @@ class MBusObject(DSMRObject):
return self.values[1]['unit'] return self.values[1]['unit']
def __str__(self): def __str__(self):
timestamp = self.datetime
if isinstance(timestamp, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat()
output = "{}\t[{}] at {}".format( output = "{}\t[{}] at {}".format(
str(self.value), str(self.value),
str(self.unit), str(self.unit),
str(timestamp) str(self.datetime.astimezone().astimezone(pytz.utc).isoformat())
) )
return output return output
def to_json(self): def to_json(self):
timestamp = self.datetime timestamp = self.datetime
if isinstance(timestamp, datetime.datetime): if isinstance(self.datetime, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat() timestamp = self.datetime.astimezone().astimezone(pytz.utc).isoformat()
value = self.value value = self.value
if isinstance(value, datetime.datetime): if isinstance(self.value, datetime.datetime):
value = value.astimezone().astimezone(pytz.utc).isoformat() value = self.value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(value, Decimal): if isinstance(self.value, Decimal):
value = float(value) value = float(self.value)
output = { output = {
'datetime': timestamp, 'datetime': timestamp,
'value': value, 'value': value,
@@ -186,33 +186,23 @@ class MBusObjectPeak(DSMRObject):
return self.values[2]['unit'] return self.values[2]['unit']
def __str__(self): def __str__(self):
timestamp = self.datetime
if isinstance(timestamp, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat()
timestamp_occurred = self.occurred
if isinstance(timestamp_occurred, datetime.datetime):
timestamp_occurred = timestamp_occurred.astimezone().astimezone(pytz.utc).isoformat()
value = self.value
if isinstance(value, datetime.datetime):
value = value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(value, Decimal):
value = float(value)
output = "{}\t[{}] at {} occurred {}"\ output = "{}\t[{}] at {} occurred {}"\
.format(str(value), str(self.unit), str(timestamp), str(timestamp_occurred)) .format(str(self.value), str(self.unit), str(self.datetime.astimezone().astimezone(pytz.utc).isoformat()),
str(self.occurred.astimezone().astimezone(pytz.utc).isoformat()))
return output return output
def to_json(self): def to_json(self):
timestamp = self.datetime timestamp = self.datetime
if isinstance(timestamp, datetime.datetime): if isinstance(self.datetime, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat() timestamp = self.datetime.astimezone().astimezone(pytz.utc).isoformat()
timestamp_occurred = self.occurred timestamp_occurred = self.occurred
if isinstance(timestamp_occurred, datetime.datetime): if isinstance(self.occurred, datetime.datetime):
timestamp_occurred = timestamp_occurred.astimezone().astimezone(pytz.utc).isoformat() timestamp_occurred = self.occurred.astimezone().astimezone(pytz.utc).isoformat()
value = self.value value = self.value
if isinstance(value, datetime.datetime): if isinstance(self.value, datetime.datetime):
value = value.astimezone().astimezone(pytz.utc).isoformat() value = self.value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(value, Decimal): if isinstance(self.value, Decimal):
value = float(value) value = float(self.value)
output = { output = {
'datetime': timestamp, 'datetime': timestamp,
'occurred': timestamp_occurred, 'occurred': timestamp_occurred,
@@ -341,9 +331,10 @@ class MbusDevice:
self.channel_id = channel_id self.channel_id = channel_id
self._item_names = [] self._item_names = []
def add(self, obis_reference, dsmr_object, obis_name): def add(self, obis_reference, dsmr_object):
# Update name mapping used to get value by attribute. Example: telegram.P1_MESSAGE_HEADER # Update name mapping used to get value by attribute. Example: telegram.P1_MESSAGE_HEADER
# Also keep track of the added names internally # Also keep track of the added names internally
obis_name = obis_name_mapping.EN[obis_reference]
setattr(self, obis_name, dsmr_object) setattr(self, obis_name, dsmr_object)
self._item_names.append(obis_name) self._item_names.append(obis_name)
+11 -27
View File
@@ -25,15 +25,10 @@ class TelegramParser(object):
telegram DSMR version (v4 and up). telegram DSMR version (v4 and up).
:type telegram_specification: dict :type telegram_specification: dict
""" """
self.apply_checksum_validation = apply_checksum_validation
self.telegram_specification = telegram_specification self.telegram_specification = telegram_specification
# Regexes are compiled once to improve performance self.apply_checksum_validation = apply_checksum_validation
self.telegram_specification_regexes = {
object["obis_reference"]: re.compile(object["obis_reference"], re.DOTALL | re.MULTILINE)
for object in self.telegram_specification['objects']
}
def parse(self, telegram_data, encryption_key="", authentication_key="", throw_ex=False): # noqa: C901 def parse(self, telegram_data, encryption_key="", authentication_key=""): # noqa: C901
""" """
Parse telegram from string to dict. Parse telegram from string to dict.
The telegram str type makes python 2.x integration easier. The telegram str type makes python 2.x integration easier.
@@ -84,31 +79,20 @@ class TelegramParser(object):
telegram = Telegram() telegram = Telegram()
for object in self.telegram_specification['objects']: for signature, parser in self.telegram_specification['objects'].items():
pattern = self.telegram_specification_regexes[object["obis_reference"]] pattern = re.compile(signature, re.DOTALL)
matches = pattern.findall(telegram_data) matches = pattern.findall(telegram_data)
# Some signatures are optional and may not be present, # Some signatures are optional and may not be present,
# so only parse lines that match # so only parse lines that match
for match in matches: for match in matches:
try: try:
dsmr_object = object["value_parser"].parse(match) dsmr_object = parser.parse(match)
except ParseError: except Exception:
logger.error( logger.error("ignore line with signature {}, because parsing failed.".format(signature),
"ignore line with signature {}, because parsing failed.".format(object["obis_reference"]), exc_info=True)
exc_info=True
)
if throw_ex:
raise
except Exception as err:
logger.error("Unexpected {}: {}".format(type(err), err))
raise
else: else:
telegram.add( telegram.add(obis_reference=signature, dsmr_object=dsmr_object)
obis_reference=object["obis_reference"],
dsmr_object=dsmr_object,
obis_name=object["value_name"]
)
return telegram return telegram
@@ -274,7 +258,7 @@ class MaxDemandParser(DSMRObjectParser):
count = int(values[0]) count = int(values[0])
for i in range(1, count + 1): for i in range(1, count + 1):
timestamp_month = ValueParser(timestamp).parse(values[i * 3 + 0]) timestamp_month = ValueParser(timestamp).parse(values[i * 3 + 1])
timestamp_occurred = ValueParser(timestamp).parse(values[i * 3 + 1]) timestamp_occurred = ValueParser(timestamp).parse(values[i * 3 + 1])
value = ValueParser(Decimal).parse(values[i * 3 + 2]) value = ValueParser(Decimal).parse(values[i * 3 + 2])
objects.append(MBusObjectPeak( objects.append(MBusObjectPeak(
@@ -335,7 +319,7 @@ class ProfileGenericParser(DSMRObjectParser):
""" """
def __init__(self, buffer_types, head_parsers, parsers_for_unidentified): def __init__(self, buffer_types, head_parsers, parsers_for_unidentified):
self.value_formats = head_parsers.copy() self.value_formats = head_parsers
self.buffer_types = buffer_types self.buffer_types = buffer_types
self.parsers_for_unidentified = parsers_for_unidentified self.parsers_for_unidentified = parsers_for_unidentified
File diff suppressed because it is too large Load Diff
+2 -4
View File
@@ -2,10 +2,6 @@ import datetime
import pytz import pytz
# TODO : Use system timezone
# Preload timezone to avoid loading in event loop later
local_tz = pytz.timezone('Europe/Amsterdam')
def timestamp(value): def timestamp(value):
try: try:
@@ -24,6 +20,8 @@ def timestamp(value):
else: else:
is_dst = False is_dst = False
# TODO : Use system timezone
local_tz = pytz.timezone('Europe/Amsterdam')
localized_datetime = local_tz.localize(naive_datetime, is_dst=is_dst) localized_datetime = local_tz.localize(naive_datetime, is_dst=is_dst)
return localized_datetime.astimezone(pytz.utc) return localized_datetime.astimezone(pytz.utc)
+2 -2
View File
@@ -7,11 +7,11 @@ setup(
author_email='mail@nldr.net', author_email='mail@nldr.net',
license='MIT', license='MIT',
url='https://github.com/ndokter/dsmr_parser', url='https://github.com/ndokter/dsmr_parser',
version='1.4.2', version='1.2.0',
packages=find_packages(exclude=('test', 'test.*')), packages=find_packages(exclude=('test', 'test.*')),
install_requires=[ install_requires=[
'pyserial>=3,<4', 'pyserial>=3,<4',
'pyserial-asyncio-fast>=0.11', 'pyserial-asyncio<1',
'pytz', 'pytz',
'Tailer==0.4.1', 'Tailer==0.4.1',
'dlms_cosem==21.3.2' 'dlms_cosem==21.3.2'
+2 -96
View File
@@ -175,7 +175,7 @@ TELEGRAM_V5_TWO_MBUS = (
) )
TELEGRAM_FLUVIUS_V171 = ( TELEGRAM_FLUVIUS_V171 = (
'/FLU5\\253769484_A\r\n' '/FLU5\253769484_A\r\n'
'\r\n' '\r\n'
'0-0:96.1.4(50217)\r\n' '0-0:96.1.4(50217)\r\n'
'0-0:96.1.1(3153414733313031303231363035)\r\n' '0-0:96.1.1(3153414733313031303231363035)\r\n'
@@ -213,49 +213,7 @@ TELEGRAM_FLUVIUS_V171 = (
'0-2:24.1.0(007)\r\n' '0-2:24.1.0(007)\r\n'
'0-2:96.1.1(3853414731323334353637383930)\r\n' '0-2:96.1.1(3853414731323334353637383930)\r\n'
'0-2:24.2.1(200512134558S)(00872.234*m3)\r\n' '0-2:24.2.1(200512134558S)(00872.234*m3)\r\n'
'!3AD7\r\n' '!911C\r\n'
)
TELEGRAM_FLUVIUS_V171_ALT = (
'/FLU5\\253769484_A\r\n'
'\r\n'
'0-0:96.1.4(50217)\r\n'
'0-0:96.1.1(3153414733313030373231333236)\r\n'
'0-0:1.0.0(231102121548W)\r\n'
'1-0:1.8.1(000301.548*kWh)\r\n'
'1-0:1.8.2(000270.014*kWh)\r\n'
'1-0:2.8.1(000000.005*kWh)\r\n'
'1-0:2.8.2(000000.000*kWh)\r\n'
'0-0:96.14.0(0001)\r\n'
'1-0:1.4.0(00.052*kW)\r\n'
'1-0:1.6.0(231102114500W)(03.064*kW)\r\n'
'0-0:98.1.0(4)(1-0:1.6.0)(1-0:1.6.0)(230801000000S)(632525252525W)(00.000*kW)(230901000000S)(230831181500S)(01.862*kW)(231001000000S)(230910183000S)(04.229*kW)(231101000000W)(231016130000S)(04.927*kW)\r\n'
'1-0:1.7.0(00.338*kW)\r\n'
'1-0:2.7.0(00.000*kW)\r\n'
'1-0:21.7.0(00.047*kW)\r\n'
'1-0:41.7.0(00.179*kW)\r\n'
'1-0:61.7.0(00.111*kW)\r\n'
'1-0:22.7.0(00.000*kW)\r\n'
'1-0:42.7.0(00.000*kW)\r\n'
'1-0:62.7.0(00.000*kW)\r\n'
'1-0:32.7.0(232.9*V)\r\n'
'1-0:52.7.0(228.1*V)\r\n'
'1-0:72.7.0(228.1*V)\r\n'
'1-0:31.7.0(000.27*A)\r\n'
'1-0:51.7.0(000.88*A)\r\n'
'1-0:71.7.0(000.52*A)\r\n'
'0-0:96.3.10(1)\r\n'
'0-0:17.0.0(999.9*kW)\r\n'
'1-0:31.4.0(999*A)\r\n'
'0-0:96.13.0()\r\n'
'0-1:24.1.0(003)\r\n'
'0-1:96.1.1(37464C4F32313233303838303237)\r\n'
'0-1:24.4.0(1)\r\n'
'0-1:24.2.3(231102121002W)(00092.287*m3)\r\n'
'0-2:24.1.0(007)\r\n'
'0-2:96.1.1(3853455430303030393631313733)\r\n'
'0-2:24.2.1(231102121532W)(00008.579*m3)\r\n'
'!C4B0\r\n'
) )
# EasyMeter via COM-1 Ethernet Gateway # EasyMeter via COM-1 Ethernet Gateway
@@ -353,55 +311,3 @@ TELEGRAM_ISKRA_IE = (
'0-1:96.1.1()\r\n' '0-1:96.1.1()\r\n'
'!AD3B\r\n' '!AD3B\r\n'
) )
# V5 telegram of EON in Hungary
TELEGRAM_V5_EON_HU = (
'/SAG5SAG-METER\r\n'
'\r\n'
'0-0:1.0.0(230724150730S)\r\n'
'0-0:42.0.0(53414733303832323030303032313630)\r\n'
'0-0:96.1.0(383930303832323030303032313630)\r\n'
'0-0:96.14.0(0001)\r\n'
'0-0:96.3.10(1)\r\n'
'0-0:17.0.0(90.000*kW)\r\n'
'1-0:1.8.0(000173.640*kWh)\r\n'
'1-0:1.8.1(000047.719*kWh)\r\n'
'1-0:1.8.2(000125.921*kWh)\r\n'
'1-0:1.8.3(000000.000*kWh)\r\n'
'1-0:1.8.4(000000.000*kWh)\r\n'
'1-0:2.8.0(000627.177*kWh)\r\n'
'1-0:2.8.1(000401.829*kWh)\r\n'
'1-0:2.8.2(000225.348*kWh)\r\n'
'1-0:2.8.3(000000.000*kWh)\r\n'
'1-0:2.8.4(000000.000*kWh)\r\n'
'1-0:3.8.0(000000.123*kvarh)\r\n'
'1-0:4.8.0(000303.131*kvarh)\r\n'
'1-0:5.8.0(000000.668*kvarh)\r\n'
'1-0:6.8.0(000000.071*kvarh)\r\n'
'1-0:7.8.0(000160.487*kvarh)\r\n'
'1-0:8.8.0(000143.346*kvarh)\r\n'
'1-0:15.8.0(000800.817*kWh)\r\n'
'1-0:32.7.0(240.4*V)\r\n'
'1-0:52.7.0(239.1*V)\r\n'
'1-0:72.7.0(241.2*V)\r\n'
'1-0:31.7.0(003*A)\r\n'
'1-0:51.7.0(004*A)\r\n'
'1-0:71.7.0(003*A)\r\n'
'1-0:13.7.0(4.556)\r\n'
'1-0:33.7.0(4.591)\r\n'
'1-0:53.7.0(4.542)\r\n'
'1-0:73.7.0(4.552)\r\n'
'1-0:14.7.0(50.00*Hz)\r\n'
'1-0:1.7.0(00.000*kW)\r\n'
'1-0:2.7.0(02.601*kW)\r\n'
'1-0:5.7.0(00.000*kvar)\r\n'
'1-0:6.7.0(00.000*kvar)\r\n'
'1-0:7.7.0(00.504*kvar)\r\n'
'1-0:8.7.0(00.000*kvar)\r\n'
'1-0:31.4.0(200.00*A)\r\n'
'1-0:51.4.0(200.00*A)\r\n'
'1-0:71.4.0(200.00*A)\r\n'
'0-0:98.1.0(230701000000S)(000040.777*kWh)(000008.950*kWh)(000031.827*kWh)(000142.250*kWh)(000111.164*kWh)(000031.086*kWh)(000000.030*kvarh)(000073.988*kvarh)(000000.205*kvarh)(000000.048*kvarh)(000039.199*kvarh)(000035.020*kvarh)(000183.027*kWh)(03.564*kW)(02.156*kW)(03.564*kW)(04.104*kW)(04.104*kW)(03.400*kW)\r\n'
'0-0:96.13.0()\r\n'
'!99DA\r\n'
)
+21 -33
View File
@@ -12,62 +12,50 @@ class MbusDeviceTest(unittest.TestCase):
def setUp(self): def setUp(self):
v5_objects = telegram_specifications.V5['objects'] v5_objects = telegram_specifications.V5['objects']
device_type_parser = [ device_type_parser = v5_objects[obis_references.DEVICE_TYPE]
object["value_parser"]
for object in v5_objects
if object["obis_reference"] == obis_references.MBUS_DEVICE_TYPE
][0]
device_type = device_type_parser.parse('0-2:24.1.0(003)\r\n') device_type = device_type_parser.parse('0-2:24.1.0(003)\r\n')
equipment_parser = [ equipment_parser = v5_objects[obis_references.EQUIPMENT_IDENTIFIER_GAS]
object["value_parser"]
for object in v5_objects
if object["obis_reference"] == obis_references.MBUS_EQUIPMENT_IDENTIFIER
][0]
equipment = equipment_parser.parse('0-2:96.1.0(4730303339303031393336393930363139)\r\n') equipment = equipment_parser.parse('0-2:96.1.0(4730303339303031393336393930363139)\r\n')
gas_reading_parser = [ gas_reading_parser = v5_objects[obis_references.HOURLY_GAS_METER_READING]
object["value_parser"]
for object in v5_objects
if object["obis_reference"] == obis_references.MBUS_METER_READING
][0]
gas_reading = gas_reading_parser.parse('0-2:24.2.1(200426223001S)(00246.138*m3)\r\n') gas_reading = gas_reading_parser.parse('0-2:24.2.1(200426223001S)(00246.138*m3)\r\n')
mbus_device = MbusDevice(channel_id=2) mbus_device = MbusDevice(channel_id=1)
mbus_device.add(obis_references.MBUS_DEVICE_TYPE, device_type, "MBUS_DEVICE_TYPE") mbus_device.add(obis_references.DEVICE_TYPE, device_type)
mbus_device.add(obis_references.MBUS_EQUIPMENT_IDENTIFIER, equipment, "MBUS_EQUIPMENT_IDENTIFIER") mbus_device.add(obis_references.EQUIPMENT_IDENTIFIER_GAS, equipment)
mbus_device.add(obis_references.MBUS_METER_READING, gas_reading, "MBUS_METER_READING") mbus_device.add(obis_references.HOURLY_GAS_METER_READING, gas_reading)
self.mbus_device = mbus_device self.mbus_device = mbus_device
def test_attributes(self): def test_attributes(self):
self.assertEqual(self.mbus_device.MBUS_DEVICE_TYPE.value, 3) self.assertEqual(self.mbus_device.DEVICE_TYPE.value, 3)
self.assertEqual(self.mbus_device.MBUS_DEVICE_TYPE.unit, None) self.assertEqual(self.mbus_device.DEVICE_TYPE.unit, None)
self.assertEqual(self.mbus_device.MBUS_EQUIPMENT_IDENTIFIER.value, self.assertEqual(self.mbus_device.EQUIPMENT_IDENTIFIER_GAS.value,
'4730303339303031393336393930363139') '4730303339303031393336393930363139')
self.assertEqual(self.mbus_device.MBUS_EQUIPMENT_IDENTIFIER.unit, None) self.assertEqual(self.mbus_device.EQUIPMENT_IDENTIFIER_GAS.unit, None)
self.assertEqual(self.mbus_device.MBUS_METER_READING.value, Decimal('246.138')) self.assertEqual(self.mbus_device.HOURLY_GAS_METER_READING.value, Decimal('246.138'))
self.assertEqual(self.mbus_device.MBUS_METER_READING.unit, 'm3') self.assertEqual(self.mbus_device.HOURLY_GAS_METER_READING.unit, 'm3')
def test_to_json(self): def test_to_json(self):
self.assertEqual( self.assertEqual(
json.loads(self.mbus_device.to_json()), json.loads(self.mbus_device.to_json()),
{ {
'CHANNEL_ID': 2, 'CHANNEL_ID': 1,
'MBUS_DEVICE_TYPE': {'value': 3, 'unit': None}, 'DEVICE_TYPE': {'value': 3, 'unit': None},
'MBUS_EQUIPMENT_IDENTIFIER': {'value': '4730303339303031393336393930363139', 'unit': None}, 'EQUIPMENT_IDENTIFIER_GAS': {'value': '4730303339303031393336393930363139', 'unit': None},
'MBUS_METER_READING': {'datetime': '2020-04-26T20:30:01+00:00', 'value': 246.138, 'unit': 'm3'}} 'HOURLY_GAS_METER_READING': {'datetime': '2020-04-26T20:30:01+00:00', 'value': 246.138, 'unit': 'm3'}}
) )
def test_str(self): def test_str(self):
self.assertEqual( self.assertEqual(
str(self.mbus_device), str(self.mbus_device),
( (
'MBUS DEVICE (channel 2)\n' 'MBUS DEVICE (channel 1)\n'
'\tMBUS_DEVICE_TYPE: 3 [None]\n' '\tDEVICE_TYPE: 3 [None]\n'
'\tMBUS_EQUIPMENT_IDENTIFIER: 4730303339303031393336393930363139 [None]\n' '\tEQUIPMENT_IDENTIFIER_GAS: 4730303339303031393336393930363139 [None]\n'
'\tMBUS_METER_READING: 246.138 [m3] at 2020-04-26T20:30:01+00:00\n' '\tHOURLY_GAS_METER_READING: 246.138 [m3] at 2020-04-26T20:30:01+00:00\n'
) )
) )
+48 -45
View File
@@ -4,7 +4,7 @@ import datetime
import pytz import pytz
from dsmr_parser import telegram_specifications, obis_references from dsmr_parser import telegram_specifications, obis_references
from dsmr_parser import obis_name_mapping
from dsmr_parser.objects import CosemObject from dsmr_parser.objects import CosemObject
from dsmr_parser.objects import MBusObject from dsmr_parser.objects import MBusObject
from dsmr_parser.objects import ProfileGenericObject from dsmr_parser.objects import ProfileGenericObject
@@ -216,6 +216,14 @@ class TelegramTest(unittest.TestCase):
value_type=Decimal, value_type=Decimal,
value_val=Decimal('2')) value_val=Decimal('2'))
# DEVICE_TYPE (0-x:24.1.0)
self.verify_telegram_item(telegram,
'DEVICE_TYPE',
object_type=CosemObject,
unit_val=None,
value_type=int,
value_val=3)
# INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0) # INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0)
self.verify_telegram_item(telegram, self.verify_telegram_item(telegram,
'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE', 'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE',
@@ -264,15 +272,7 @@ class TelegramTest(unittest.TestCase):
value_type=Decimal, value_type=Decimal,
value_val=Decimal('0')) value_val=Decimal('0'))
# DEVICE_TYPE (0-1:24.1.0) # EQUIPMENT_IDENTIFIER_GAS (0-x:96.1.0)
self.verify_telegram_item(telegram,
'DEVICE_TYPE',
object_type=CosemObject,
unit_val=None,
value_type=int,
value_val=3)
# EQUIPMENT_IDENTIFIER_GAS (0-1:96.1.0)
self.verify_telegram_item(telegram, self.verify_telegram_item(telegram,
'EQUIPMENT_IDENTIFIER_GAS', 'EQUIPMENT_IDENTIFIER_GAS',
object_type=CosemObject, object_type=CosemObject,
@@ -314,8 +314,8 @@ class TelegramTest(unittest.TestCase):
self.item_names_tested.append(testitem_name) self.item_names_tested.append(testitem_name)
# check if all items in telegram V4 specification are covered # check if all items in telegram V4 specification are covered
V4_name_list = [object["value_name"] for object in V4_name_list = [obis_name_mapping.EN[signature] for signature, parser in
telegram_specifications.V4['objects']] telegram_specifications.V4['objects'].items()]
V4_name_set = set(V4_name_list) V4_name_set = set(V4_name_list)
item_names_tested_set = set(self.item_names_tested) item_names_tested_set = set(self.item_names_tested)
@@ -329,7 +329,7 @@ class TelegramTest(unittest.TestCase):
break break
# Verify that the iterator works for at least one value # Verify that the iterator works for at least one value
self.assertEqual(obis_name, "P1_MESSAGE_HEADER") self.assertEqual(obis_name, obis_name_mapping.EN[obis_references.P1_MESSAGE_HEADER])
self.assertEqual(dsmr_object.value, '50') self.assertEqual(dsmr_object.value, '50')
def test_mbus_devices(self): def test_mbus_devices(self):
@@ -340,28 +340,28 @@ class TelegramTest(unittest.TestCase):
self.assertEqual(len(mbus_devices), 2) self.assertEqual(len(mbus_devices), 2)
mbus_device_1 = mbus_devices[0] mbus_device_1 = mbus_devices[0]
self.assertEqual(mbus_device_1.MBUS_DEVICE_TYPE.value, 3) self.assertEqual(mbus_device_1.DEVICE_TYPE.value, 3)
self.assertEqual(mbus_device_1.MBUS_EQUIPMENT_IDENTIFIER.value, None) self.assertEqual(mbus_device_1.EQUIPMENT_IDENTIFIER_GAS.value, None)
self.assertEqual(mbus_device_1.MBUS_METER_READING.value, Decimal('0')) self.assertEqual(mbus_device_1.HOURLY_GAS_METER_READING.value, Decimal('0'))
mbus_device_2 = mbus_devices[1] mbus_device_2 = mbus_devices[1]
self.assertEqual(mbus_device_2.MBUS_DEVICE_TYPE.value, 3) self.assertEqual(mbus_device_2.DEVICE_TYPE.value, 3)
self.assertEqual(mbus_device_2.MBUS_EQUIPMENT_IDENTIFIER.value, '4730303339303031393336393930363139') self.assertEqual(mbus_device_2.EQUIPMENT_IDENTIFIER_GAS.value, '4730303339303031393336393930363139')
self.assertEqual(mbus_device_2.MBUS_METER_READING.value, Decimal('246.138')) self.assertEqual(mbus_device_2.HOURLY_GAS_METER_READING.value, Decimal('246.138'))
def test_get_mbus_device_by_channel(self): def test_get_mbus_device_by_channel(self):
parser = TelegramParser(telegram_specifications.V5) parser = TelegramParser(telegram_specifications.V5)
telegram = parser.parse(TELEGRAM_V5_TWO_MBUS) telegram = parser.parse(TELEGRAM_V5_TWO_MBUS)
mbus_device_1 = telegram.get_mbus_device_by_channel(1) mbus_device_1 = telegram.get_mbus_device_by_channel(1)
self.assertEqual(mbus_device_1.MBUS_DEVICE_TYPE.value, 3) self.assertEqual(mbus_device_1.DEVICE_TYPE.value, 3)
self.assertEqual(mbus_device_1.MBUS_EQUIPMENT_IDENTIFIER.value, None) self.assertEqual(mbus_device_1.EQUIPMENT_IDENTIFIER_GAS.value, None)
self.assertEqual(mbus_device_1.MBUS_METER_READING.value, Decimal('0')) self.assertEqual(mbus_device_1.HOURLY_GAS_METER_READING.value, Decimal('0'))
mbus_device_2 = telegram.get_mbus_device_by_channel(2) mbus_device_2 = telegram.get_mbus_device_by_channel(2)
self.assertEqual(mbus_device_2.MBUS_DEVICE_TYPE.value, 3) self.assertEqual(mbus_device_2.DEVICE_TYPE.value, 3)
self.assertEqual(mbus_device_2.MBUS_EQUIPMENT_IDENTIFIER.value, '4730303339303031393336393930363139') self.assertEqual(mbus_device_2.EQUIPMENT_IDENTIFIER_GAS.value, '4730303339303031393336393930363139')
self.assertEqual(mbus_device_2.MBUS_METER_READING.value, Decimal('246.138')) self.assertEqual(mbus_device_2.HOURLY_GAS_METER_READING.value, Decimal('246.138'))
def test_without_mbus_devices(self): def test_without_mbus_devices(self):
parser = TelegramParser(telegram_specifications.V5, apply_checksum_validation=False) parser = TelegramParser(telegram_specifications.V5, apply_checksum_validation=False)
@@ -375,12 +375,11 @@ class TelegramTest(unittest.TestCase):
telegram = parser.parse(TELEGRAM_V5) telegram = parser.parse(TELEGRAM_V5)
json_data = json.loads(telegram.to_json()) json_data = json.loads(telegram.to_json())
self.maxDiff = None
self.assertEqual( self.assertEqual(
json_data, json_data,
{'CURRENT_ELECTRICITY_DELIVERY': {'unit': 'kW', 'value': 0.0}, {'CURRENT_ELECTRICITY_DELIVERY': {'unit': 'kW', 'value': 0.0},
'CURRENT_ELECTRICITY_USAGE': {'unit': 'kW', 'value': 0.244}, 'CURRENT_ELECTRICITY_USAGE': {'unit': 'kW', 'value': 0.244},
'DEVICE_TYPE': {'unit': None, 'value': 3},
'ELECTRICITY_ACTIVE_TARIFF': {'unit': None, 'value': '0002'}, 'ELECTRICITY_ACTIVE_TARIFF': {'unit': None, 'value': '0002'},
'ELECTRICITY_DELIVERED_TARIFF_1': {'unit': 'kWh', 'value': 2.444}, 'ELECTRICITY_DELIVERED_TARIFF_1': {'unit': 'kWh', 'value': 2.444},
'ELECTRICITY_DELIVERED_TARIFF_2': {'unit': 'kWh', 'value': 0.0}, 'ELECTRICITY_DELIVERED_TARIFF_2': {'unit': 'kWh', 'value': 0.0},
@@ -388,6 +387,10 @@ class TelegramTest(unittest.TestCase):
'ELECTRICITY_USED_TARIFF_2': {'unit': 'kWh', 'value': 2.399}, 'ELECTRICITY_USED_TARIFF_2': {'unit': 'kWh', 'value': 2.399},
'EQUIPMENT_IDENTIFIER': {'unit': None, 'EQUIPMENT_IDENTIFIER': {'unit': None,
'value': '4B384547303034303436333935353037'}, 'value': '4B384547303034303436333935353037'},
'EQUIPMENT_IDENTIFIER_GAS': {'unit': None, 'value': None},
'HOURLY_GAS_METER_READING': {'datetime': '2017-01-02T15:10:05+00:00',
'unit': 'm3',
'value': 0.107},
'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE': {'unit': 'kW', 'value': 0.0}, 'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE': {'unit': 'kW', 'value': 0.0},
'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE': {'unit': 'kW', 'value': 0.07}, 'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE': {'unit': 'kW', 'value': 0.07},
'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE': {'unit': 'kW', 'value': 0.0}, 'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE': {'unit': 'kW', 'value': 0.0},
@@ -402,16 +405,15 @@ class TelegramTest(unittest.TestCase):
'INSTANTANEOUS_VOLTAGE_L3': {'unit': 'V', 'value': 229.0}, 'INSTANTANEOUS_VOLTAGE_L3': {'unit': 'V', 'value': 229.0},
'LONG_POWER_FAILURE_COUNT': {'unit': None, 'value': 0}, 'LONG_POWER_FAILURE_COUNT': {'unit': None, 'value': 0},
'MBUS_DEVICES': [{'CHANNEL_ID': 1, 'MBUS_DEVICES': [{'CHANNEL_ID': 1,
'MBUS_DEVICE_TYPE': {'unit': None, 'value': 3}, 'DEVICE_TYPE': {'unit': None, 'value': 3},
'MBUS_EQUIPMENT_IDENTIFIER': {'unit': None, 'EQUIPMENT_IDENTIFIER_GAS': {'unit': None,
'value': '3232323241424344313233343536373839'}, 'value': '3232323241424344313233343536373839'},
'MBUS_METER_READING': {'datetime': '2017-01-02T15:10:05+00:00', 'HOURLY_GAS_METER_READING': {'datetime': '2017-01-02T15:10:05+00:00',
'unit': 'm3', 'unit': 'm3',
'value': 0.107}}, 'value': 0.107}},
{'CHANNEL_ID': 2, {'CHANNEL_ID': 2,
'MBUS_DEVICE_TYPE': {'unit': None, 'value': 3}, 'DEVICE_TYPE': {'unit': None, 'value': 3},
'MBUS_EQUIPMENT_IDENTIFIER': {'unit': None, 'EQUIPMENT_IDENTIFIER_GAS': {'unit': None, 'value': None}}],
'value': None}}],
'P1_MESSAGE_HEADER': {'unit': None, 'value': '50'}, 'P1_MESSAGE_HEADER': {'unit': None, 'value': '50'},
'P1_MESSAGE_TIMESTAMP': {'unit': None, 'value': '2017-01-02T18:20:02+00:00'}, 'P1_MESSAGE_TIMESTAMP': {'unit': None, 'value': '2017-01-02T18:20:02+00:00'},
'POWER_EVENT_FAILURE_LOG': {'buffer': [], 'POWER_EVENT_FAILURE_LOG': {'buffer': [],
@@ -431,8 +433,6 @@ class TelegramTest(unittest.TestCase):
parser = TelegramParser(telegram_specifications.V5) parser = TelegramParser(telegram_specifications.V5)
telegram = parser.parse(TELEGRAM_V5) telegram = parser.parse(TELEGRAM_V5)
self.maxDiff = None
self.assertEqual( self.assertEqual(
str(telegram), str(telegram),
( (
@@ -463,19 +463,22 @@ class TelegramTest(unittest.TestCase):
'INSTANTANEOUS_CURRENT_L2: 0.44 [A]\n' 'INSTANTANEOUS_CURRENT_L2: 0.44 [A]\n'
'INSTANTANEOUS_CURRENT_L3: 0.86 [A]\n' 'INSTANTANEOUS_CURRENT_L3: 0.86 [A]\n'
'TEXT_MESSAGE: None [None]\n' 'TEXT_MESSAGE: None [None]\n'
'DEVICE_TYPE: 3 [None]\n'
'MBUS DEVICE (channel 1)\n'
' DEVICE_TYPE: 3 [None]\n'
' EQUIPMENT_IDENTIFIER_GAS: 3232323241424344313233343536373839 [None]\n'
' HOURLY_GAS_METER_READING: 0.107 [m3] at 2017-01-02T15:10:05+00:00\n'
'MBUS DEVICE (channel 2)\n'
' DEVICE_TYPE: 3 [None]\n'
' EQUIPMENT_IDENTIFIER_GAS: None [None]\n'
'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE: 0.070 [kW]\n' 'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE: 0.070 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE: 0.032 [kW]\n' 'INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE: 0.032 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE: 0.142 [kW]\n' 'INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE: 0.142 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE: 0.000 [kW]\n' 'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE: 0.000 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE: 0.000 [kW]\n' 'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE: 0.000 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE: 0.000 [kW]\n' 'INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE: 0.000 [kW]\n'
'MBUS DEVICE (channel 1)\n' 'EQUIPMENT_IDENTIFIER_GAS: None [None]\n'
' MBUS_DEVICE_TYPE: 3 [None]\n' 'HOURLY_GAS_METER_READING: 0.107 [m3] at 2017-01-02T15:10:05+00:00\n'
' MBUS_EQUIPMENT_IDENTIFIER: 3232323241424344313233343536373839 [None]\n'
' MBUS_METER_READING: 0.107 [m3] at 2017-01-02T15:10:05+00:00\n'
'MBUS DEVICE (channel 2)\n'
' MBUS_DEVICE_TYPE: 3 [None]\n'
' MBUS_EQUIPMENT_IDENTIFIER: None [None]\n'
) )
) )
+165 -310
View File
@@ -1,16 +1,16 @@
from decimal import Decimal from decimal import Decimal
import datetime import datetime
import json
import unittest import unittest
import pytz import pytz
from dsmr_parser import obis_references as obis
from dsmr_parser import telegram_specifications from dsmr_parser import telegram_specifications
from dsmr_parser.exceptions import InvalidChecksumError, ParseError from dsmr_parser.exceptions import InvalidChecksumError, ParseError
from dsmr_parser.objects import CosemObject, MBusObject, MBusObjectPeak from dsmr_parser.objects import CosemObject, MBusObject, MBusObjectPeak
from dsmr_parser.parsers import TelegramParser from dsmr_parser.parsers import TelegramParser
from test.example_telegrams import TELEGRAM_FLUVIUS_V171, TELEGRAM_FLUVIUS_V171_ALT from test.example_telegrams import TELEGRAM_FLUVIUS_V171
class TelegramParserFluviusTest(unittest.TestCase): class TelegramParserFluviusTest(unittest.TestCase):
@@ -18,263 +18,233 @@ class TelegramParserFluviusTest(unittest.TestCase):
def test_parse(self): def test_parse(self):
parser = TelegramParser(telegram_specifications.BELGIUM_FLUVIUS) parser = TelegramParser(telegram_specifications.BELGIUM_FLUVIUS)
try: result = parser.parse(TELEGRAM_FLUVIUS_V171)
result = parser.parse(TELEGRAM_FLUVIUS_V171, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
# BELGIUM_VERSION_INFORMATION (0-0:96.1.4) # BELGIUM_VERSION_INFORMATION (0-0:96.1.4)
assert isinstance(result.BELGIUM_VERSION_INFORMATION, CosemObject) assert isinstance(result[obis.BELGIUM_VERSION_INFORMATION], CosemObject)
assert result.BELGIUM_VERSION_INFORMATION.unit is None assert result[obis.BELGIUM_VERSION_INFORMATION].unit is None
assert isinstance(result.BELGIUM_VERSION_INFORMATION.value, str) assert isinstance(result[obis.BELGIUM_VERSION_INFORMATION].value, str)
assert result.BELGIUM_VERSION_INFORMATION.value == '50217' assert result[obis.BELGIUM_VERSION_INFORMATION].value == '50217'
# EQUIPMENT_IDENTIFIER (0-0:96.1.1) # EQUIPMENT_IDENTIFIER (0-0:96.1.1)
assert isinstance(result.BELGIUM_EQUIPMENT_IDENTIFIER, CosemObject) assert isinstance(result[obis.EQUIPMENT_IDENTIFIER], CosemObject)
assert result.BELGIUM_EQUIPMENT_IDENTIFIER.unit is None assert result[obis.EQUIPMENT_IDENTIFIER].unit is None
assert isinstance(result.BELGIUM_EQUIPMENT_IDENTIFIER.value, str) assert isinstance(result[obis.EQUIPMENT_IDENTIFIER].value, str)
assert result.BELGIUM_EQUIPMENT_IDENTIFIER.value == '3153414733313031303231363035' assert result[obis.EQUIPMENT_IDENTIFIER].value == '3153414733313031303231363035'
# P1_MESSAGE_TIMESTAMP (0-0:1.0.0) # P1_MESSAGE_TIMESTAMP (0-0:1.0.0)
assert isinstance(result.P1_MESSAGE_TIMESTAMP, CosemObject) assert isinstance(result[obis.P1_MESSAGE_TIMESTAMP], CosemObject)
assert result.P1_MESSAGE_TIMESTAMP.unit is None assert result[obis.P1_MESSAGE_TIMESTAMP].unit is None
assert isinstance(result.P1_MESSAGE_TIMESTAMP.value, datetime.datetime) assert isinstance(result[obis.P1_MESSAGE_TIMESTAMP].value, datetime.datetime)
assert result.P1_MESSAGE_TIMESTAMP.value == \ assert result[obis.P1_MESSAGE_TIMESTAMP].value == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 5, 12, 13, 54, 9)) datetime.datetime(2020, 5, 12, 11, 54, 9, tzinfo=pytz.UTC)
# ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1) # ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1)
assert isinstance(result.ELECTRICITY_USED_TARIFF_1, CosemObject) assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject)
assert result.ELECTRICITY_USED_TARIFF_1.unit == 'kWh' assert result[obis.ELECTRICITY_USED_TARIFF_1].unit == 'kWh'
assert isinstance(result.ELECTRICITY_USED_TARIFF_1.value, Decimal) assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1].value, Decimal)
assert result.ELECTRICITY_USED_TARIFF_1.value == Decimal('0.034') assert result[obis.ELECTRICITY_USED_TARIFF_1].value == Decimal('0.034')
# ELECTRICITY_USED_TARIFF_2 (1-0:1.8.2) # ELECTRICITY_USED_TARIFF_2 (1-0:1.8.2)
assert isinstance(result.ELECTRICITY_USED_TARIFF_2, CosemObject) assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_2], CosemObject)
assert result.ELECTRICITY_USED_TARIFF_2.unit == 'kWh' assert result[obis.ELECTRICITY_USED_TARIFF_2].unit == 'kWh'
assert isinstance(result.ELECTRICITY_USED_TARIFF_2.value, Decimal) assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_2].value, Decimal)
assert result.ELECTRICITY_USED_TARIFF_2.value == Decimal('15.758') assert result[obis.ELECTRICITY_USED_TARIFF_2].value == Decimal('15.758')
# ELECTRICITY_DELIVERED_TARIFF_1 (1-0:2.8.1) # ELECTRICITY_DELIVERED_TARIFF_1 (1-0:2.8.1)
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_1, CosemObject) assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_1], CosemObject)
assert result.ELECTRICITY_DELIVERED_TARIFF_1.unit == 'kWh' assert result[obis.ELECTRICITY_DELIVERED_TARIFF_1].unit == 'kWh'
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_1.value, Decimal) assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_1].value, Decimal)
assert result.ELECTRICITY_DELIVERED_TARIFF_1.value == Decimal('0.000') assert result[obis.ELECTRICITY_DELIVERED_TARIFF_1].value == Decimal('0.000')
# ELECTRICITY_DELIVERED_TARIFF_2 (1-0:2.8.2) # ELECTRICITY_DELIVERED_TARIFF_2 (1-0:2.8.2)
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_2, CosemObject) assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_2], CosemObject)
assert result.ELECTRICITY_DELIVERED_TARIFF_2.unit == 'kWh' assert result[obis.ELECTRICITY_DELIVERED_TARIFF_2].unit == 'kWh'
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_2.value, Decimal) assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_2].value, Decimal)
assert result.ELECTRICITY_DELIVERED_TARIFF_2.value == Decimal('0.011') assert result[obis.ELECTRICITY_DELIVERED_TARIFF_2].value == Decimal('0.011')
# ELECTRICITY_ACTIVE_TARIFF (0-0:96.14.0) # ELECTRICITY_ACTIVE_TARIFF (0-0:96.14.0)
assert isinstance(result.ELECTRICITY_ACTIVE_TARIFF, CosemObject) assert isinstance(result[obis.ELECTRICITY_ACTIVE_TARIFF], CosemObject)
assert result.ELECTRICITY_ACTIVE_TARIFF.unit is None assert result[obis.ELECTRICITY_ACTIVE_TARIFF].unit is None
assert isinstance(result.ELECTRICITY_ACTIVE_TARIFF.value, str) assert isinstance(result[obis.ELECTRICITY_ACTIVE_TARIFF].value, str)
assert result.ELECTRICITY_ACTIVE_TARIFF.value == '0001' assert result[obis.ELECTRICITY_ACTIVE_TARIFF].value == '0001'
# BELGIUM_CURRENT_AVERAGE_DEMAND (1-0:1.4.0) # BELGIUM_CURRENT_AVERAGE_DEMAND (1-0:1.4.0)
assert isinstance(result.BELGIUM_CURRENT_AVERAGE_DEMAND, CosemObject) assert isinstance(result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND], CosemObject)
assert result.BELGIUM_CURRENT_AVERAGE_DEMAND.unit == 'kW' assert result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND].unit == 'kW'
assert isinstance(result.BELGIUM_CURRENT_AVERAGE_DEMAND.value, Decimal) assert isinstance(result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND].value, Decimal)
assert result.BELGIUM_CURRENT_AVERAGE_DEMAND.value == Decimal('2.351') assert result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND].value == Decimal('2.351')
# BELGIUM_MAXIMUM_DEMAND_MONTH (1-0:1.6.0) # BELGIUM_MAXIMUM_DEMAND_MONTH (1-0:1.6.0)
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_MONTH, MBusObject) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH], MBusObject)
assert result.BELGIUM_MAXIMUM_DEMAND_MONTH.unit == 'kW' assert result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_MONTH.value, Decimal) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].value, Decimal)
assert result.BELGIUM_MAXIMUM_DEMAND_MONTH.value == Decimal('2.589') assert result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].value == Decimal('2.589')
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_MONTH.datetime, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_MONTH.datetime == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 5, 9, 13, 45, 58))
# BELGIUM_MAXIMUM_DEMAND_13_MONTHS (0-0:98.1.0) Value 0 # BELGIUM_MAXIMUM_DEMAND_13_MONTHS (0-0:98.1.0) Value 0
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0], MBusObjectPeak) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0], MBusObjectPeak)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].unit == 'kW' assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].value, Decimal) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].value, Decimal)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].value == Decimal('3.695') assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].value == Decimal('3.695')
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].datetime, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].datetime == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 5, 1, 0, 0, 0))
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].occurred, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].occurred == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 4, 23, 19, 25, 38))
# BELGIUM_MAXIMUM_DEMAND_13_MONTHS (0-0:98.1.0) Value 1 # BELGIUM_MAXIMUM_DEMAND_13_MONTHS (0-0:98.1.0) Value 1
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1], MBusObjectPeak) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1], MBusObjectPeak)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].unit == 'kW' assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].value, Decimal) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].value, Decimal)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].value == Decimal('5.980') assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].value == Decimal('5.980')
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].datetime, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].datetime == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 4, 1, 0, 0, 0))
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].occurred, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].occurred == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 3, 5, 12, 21, 39))
# BELGIUM_MAXIMUM_DEMAND_13_MONTHS (0-0:98.1.0) Value 2 # BELGIUM_MAXIMUM_DEMAND_13_MONTHS (0-0:98.1.0) Value 2
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2], MBusObjectPeak) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2], MBusObjectPeak)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].unit == 'kW' assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].value, Decimal) assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].value, Decimal)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].value == Decimal('4.318') assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].value == Decimal('4.318')
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].datetime, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].datetime == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 3, 1, 0, 0, 0))
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].occurred, datetime.datetime)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].occurred == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 2, 10, 3, 54, 21))
# CURRENT_ELECTRICITY_USAGE (1-0:1.7.0) # CURRENT_ELECTRICITY_USAGE (1-0:1.7.0)
assert isinstance(result.CURRENT_ELECTRICITY_USAGE, CosemObject) assert isinstance(result[obis.CURRENT_ELECTRICITY_USAGE], CosemObject)
assert result.CURRENT_ELECTRICITY_USAGE.unit == 'kW' assert result[obis.CURRENT_ELECTRICITY_USAGE].unit == 'kW'
assert isinstance(result.CURRENT_ELECTRICITY_USAGE.value, Decimal) assert isinstance(result[obis.CURRENT_ELECTRICITY_USAGE].value, Decimal)
assert result.CURRENT_ELECTRICITY_USAGE.value == Decimal('0.000') assert result[obis.CURRENT_ELECTRICITY_USAGE].value == Decimal('0.000')
# CURRENT_ELECTRICITY_DELIVERY (1-0:2.7.0) # CURRENT_ELECTRICITY_DELIVERY (1-0:2.7.0)
assert isinstance(result.CURRENT_ELECTRICITY_DELIVERY, CosemObject) assert isinstance(result[obis.CURRENT_ELECTRICITY_DELIVERY], CosemObject)
assert result.CURRENT_ELECTRICITY_DELIVERY.unit == 'kW' assert result[obis.CURRENT_ELECTRICITY_DELIVERY].unit == 'kW'
assert isinstance(result.CURRENT_ELECTRICITY_DELIVERY.value, Decimal) assert isinstance(result[obis.CURRENT_ELECTRICITY_DELIVERY].value, Decimal)
assert result.CURRENT_ELECTRICITY_DELIVERY.value == Decimal('0.000') assert result[obis.CURRENT_ELECTRICITY_DELIVERY].value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0) # INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0)
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE], CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.unit == 'kW' assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE].unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE].value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE].value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE (1-0:41.7.0) # INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE (1-0:41.7.0)
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE], CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE.unit == 'kW' assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE].unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE].value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE].value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE (1-0:61.7.0) # INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE (1-0:61.7.0)
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE], CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE.unit == 'kW' assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE].unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE].value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE].value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE (1-0:22.7.0) # INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE (1-0:22.7.0)
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE], CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE.unit == 'kW' assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE].unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE].value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE].value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE (1-0:42.7.0) # INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE (1-0:42.7.0)
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE], CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE.unit == 'kW' assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE].unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE].value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE].value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE (1-0:62.7.0) # INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE (1-0:62.7.0)
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE], CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.unit == 'kW' assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE].unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE].value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE].value == Decimal('0.000')
# INSTANTANEOUS_VOLTAGE_L1 (1-0:32.7.0) # INSTANTANEOUS_VOLTAGE_L1 (1-0:32.7.0)
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L1, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L1], CosemObject)
assert result.INSTANTANEOUS_VOLTAGE_L1.unit == 'V' assert result[obis.INSTANTANEOUS_VOLTAGE_L1].unit == 'V'
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L1.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L1].value, Decimal)
assert result.INSTANTANEOUS_VOLTAGE_L1.value == Decimal('234.7') assert result[obis.INSTANTANEOUS_VOLTAGE_L1].value == Decimal('234.7')
# INSTANTANEOUS_VOLTAGE_L2 (1-0:52.7.0) # INSTANTANEOUS_VOLTAGE_L2 (1-0:52.7.0)
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L2, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L2], CosemObject)
assert result.INSTANTANEOUS_VOLTAGE_L2.unit == 'V' assert result[obis.INSTANTANEOUS_VOLTAGE_L2].unit == 'V'
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L2.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L2].value, Decimal)
assert result.INSTANTANEOUS_VOLTAGE_L2.value == Decimal('234.7') assert result[obis.INSTANTANEOUS_VOLTAGE_L2].value == Decimal('234.7')
# INSTANTANEOUS_VOLTAGE_L3 (1-0:72.7.0) # INSTANTANEOUS_VOLTAGE_L3 (1-0:72.7.0)
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L3, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L3], CosemObject)
assert result.INSTANTANEOUS_VOLTAGE_L3.unit == 'V' assert result[obis.INSTANTANEOUS_VOLTAGE_L3].unit == 'V'
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L3.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L3].value, Decimal)
assert result.INSTANTANEOUS_VOLTAGE_L3.value == Decimal('234.7') assert result[obis.INSTANTANEOUS_VOLTAGE_L3].value == Decimal('234.7')
# INSTANTANEOUS_CURRENT_L1 (1-0:31.7.0) # INSTANTANEOUS_CURRENT_L1 (1-0:31.7.0)
assert isinstance(result.INSTANTANEOUS_CURRENT_L1, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L1], CosemObject)
assert result.INSTANTANEOUS_CURRENT_L1.unit == 'A' assert result[obis.INSTANTANEOUS_CURRENT_L1].unit == 'A'
assert isinstance(result.INSTANTANEOUS_CURRENT_L1.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L1].value, Decimal)
assert result.INSTANTANEOUS_CURRENT_L1.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_CURRENT_L1].value == Decimal('0.000')
# INSTANTANEOUS_CURRENT_L2 (1-0:51.7.0) # INSTANTANEOUS_CURRENT_L2 (1-0:51.7.0)
assert isinstance(result.INSTANTANEOUS_CURRENT_L2, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L2], CosemObject)
assert result.INSTANTANEOUS_CURRENT_L2.unit == 'A' assert result[obis.INSTANTANEOUS_CURRENT_L2].unit == 'A'
assert isinstance(result.INSTANTANEOUS_CURRENT_L2.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L2].value, Decimal)
assert result.INSTANTANEOUS_CURRENT_L2.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_CURRENT_L2].value == Decimal('0.000')
# INSTANTANEOUS_CURRENT_L3 (1-0:71.7.0) # INSTANTANEOUS_CURRENT_L3 (1-0:71.7.0)
assert isinstance(result.INSTANTANEOUS_CURRENT_L3, CosemObject) assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L3], CosemObject)
assert result.INSTANTANEOUS_CURRENT_L3.unit == 'A' assert result[obis.INSTANTANEOUS_CURRENT_L3].unit == 'A'
assert isinstance(result.INSTANTANEOUS_CURRENT_L3.value, Decimal) assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L3].value, Decimal)
assert result.INSTANTANEOUS_CURRENT_L3.value == Decimal('0.000') assert result[obis.INSTANTANEOUS_CURRENT_L3].value == Decimal('0.000')
# ACTUAL_SWITCH_POSITION (0-0:96.3.10) # ACTUAL_SWITCH_POSITION (0-0:96.3.10)
assert isinstance(result.ACTUAL_SWITCH_POSITION, CosemObject) assert isinstance(result[obis.ACTUAL_SWITCH_POSITION], CosemObject)
assert result.ACTUAL_SWITCH_POSITION.unit is None assert result[obis.ACTUAL_SWITCH_POSITION].unit is None
assert isinstance(result.ACTUAL_SWITCH_POSITION.value, int) assert isinstance(result[obis.ACTUAL_SWITCH_POSITION].value, int)
assert result.ACTUAL_SWITCH_POSITION.value == 1 assert result[obis.ACTUAL_SWITCH_POSITION].value == 1
# ACTUAL_TRESHOLD_ELECTRICITY (0-0:17.0.0) # BELGIUM_MAX_POWER_PER_PHASE (0-0:17.0.0)
assert isinstance(result.ACTUAL_TRESHOLD_ELECTRICITY, CosemObject) assert isinstance(result[obis.BELGIUM_MAX_POWER_PER_PHASE], CosemObject)
assert result.ACTUAL_TRESHOLD_ELECTRICITY.unit == 'kW' assert result[obis.BELGIUM_MAX_POWER_PER_PHASE].unit == 'kW'
assert isinstance(result.ACTUAL_TRESHOLD_ELECTRICITY.value, Decimal) assert isinstance(result[obis.BELGIUM_MAX_POWER_PER_PHASE].value, Decimal)
assert result.ACTUAL_TRESHOLD_ELECTRICITY.value == Decimal('999.9') assert result[obis.BELGIUM_MAX_POWER_PER_PHASE].value == Decimal('999.9')
# FUSE_THRESHOLD_L1 (1-0:31.4.0) # BELGIUM_MAX_POWER_PER_PHASE (1-0:31.4.0)
assert isinstance(result.FUSE_THRESHOLD_L1, CosemObject) assert isinstance(result[obis.BELGIUM_MAX_CURRENT_PER_PHASE], CosemObject)
assert result.FUSE_THRESHOLD_L1.unit == 'A' assert result[obis.BELGIUM_MAX_CURRENT_PER_PHASE].unit == 'A'
assert isinstance(result.FUSE_THRESHOLD_L1.value, Decimal) assert isinstance(result[obis.BELGIUM_MAX_CURRENT_PER_PHASE].value, Decimal)
assert result.FUSE_THRESHOLD_L1.value == Decimal('999') assert result[obis.BELGIUM_MAX_CURRENT_PER_PHASE].value == Decimal('999')
# TEXT_MESSAGE (0-0:96.13.0) # TEXT_MESSAGE (0-0:96.13.0)
assert isinstance(result.TEXT_MESSAGE, CosemObject) assert isinstance(result[obis.TEXT_MESSAGE], CosemObject)
assert result.TEXT_MESSAGE.unit is None assert result[obis.TEXT_MESSAGE].unit is None
assert result.TEXT_MESSAGE.value is None assert result[obis.TEXT_MESSAGE].value is None
# MBUS DEVICE 1 # BELGIUM_MBUS1_DEVICE_TYPE (0-1:24.1.0)
mbus1 = result.get_mbus_device_by_channel(1) assert isinstance(result[obis.BELGIUM_MBUS1_DEVICE_TYPE], CosemObject)
assert result[obis.BELGIUM_MBUS1_DEVICE_TYPE].unit is None
assert isinstance(result[obis.BELGIUM_MBUS1_DEVICE_TYPE].value, int)
assert result[obis.BELGIUM_MBUS1_DEVICE_TYPE].value == 3
# MBUS_DEVICE_TYPE (0-1:24.1.0) # BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER (0-1:96.1.1)
assert isinstance(mbus1.MBUS_DEVICE_TYPE, CosemObject) assert isinstance(result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER], CosemObject)
assert mbus1.MBUS_DEVICE_TYPE.unit is None assert result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER].unit is None
assert isinstance(mbus1.MBUS_DEVICE_TYPE.value, int) assert isinstance(result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER].value, str)
assert mbus1.MBUS_DEVICE_TYPE.value == 3 assert result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER].value == '37464C4F32313139303333373333'
# MBUS_EQUIPMENT_IDENTIFIER (0-1:96.1.1) # BELGIUM_MBUS1_VALVE_POSITION (0-1:24.4.0)
assert isinstance(mbus1.MBUS_EQUIPMENT_IDENTIFIER, CosemObject) assert isinstance(result[obis.BELGIUM_MBUS1_VALVE_POSITION], CosemObject)
assert mbus1.MBUS_EQUIPMENT_IDENTIFIER.unit is None assert result[obis.BELGIUM_MBUS1_VALVE_POSITION].unit is None
assert isinstance(mbus1.MBUS_EQUIPMENT_IDENTIFIER.value, str) assert isinstance(result[obis.BELGIUM_MBUS1_VALVE_POSITION].value, int)
assert mbus1.MBUS_EQUIPMENT_IDENTIFIER.value == '37464C4F32313139303333373333' assert result[obis.BELGIUM_MBUS1_VALVE_POSITION].value == 1
# MBUS_VALVE_POSITION (0-1:24.4.0) # BELGIUM_MBUS1_METER_READING2 (0-1:24.2.3)
assert isinstance(result.MBUS_VALVE_POSITION, CosemObject) assert isinstance(result[obis.BELGIUM_MBUS1_METER_READING2], MBusObject)
assert result.MBUS_VALVE_POSITION.unit is None assert result[obis.BELGIUM_MBUS1_METER_READING2].unit == 'm3'
assert isinstance(result.MBUS_VALVE_POSITION.value, int) assert isinstance(result[obis.BELGIUM_MBUS1_METER_READING2].value, Decimal)
assert result.MBUS_VALVE_POSITION.value == 1 assert result[obis.BELGIUM_MBUS1_METER_READING2].value == Decimal('112.384')
# MBUS_METER_READING (0-1:24.2.3) # BELGIUM_MBUS2_DEVICE_TYPE (0-2:24.1.0)
assert isinstance(mbus1.MBUS_METER_READING, MBusObject) assert isinstance(result[obis.BELGIUM_MBUS2_DEVICE_TYPE], CosemObject)
assert mbus1.MBUS_METER_READING.unit == 'm3' assert result[obis.BELGIUM_MBUS2_DEVICE_TYPE].unit is None
assert isinstance(mbus1.MBUS_METER_READING.value, Decimal) assert isinstance(result[obis.BELGIUM_MBUS2_DEVICE_TYPE].value, int)
assert mbus1.MBUS_METER_READING.value == Decimal('112.384') assert result[obis.BELGIUM_MBUS2_DEVICE_TYPE].value == 7
# MBUS DEVICE 2 # BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER (0-2:96.1.1)
mbus2 = result.get_mbus_device_by_channel(2) assert isinstance(result[obis.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER], CosemObject)
assert result[obis.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER].unit is None
assert isinstance(result[obis.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER].value, str)
assert result[obis.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER].value == '3853414731323334353637383930'
# MBUS_DEVICE_TYPE (0-2:24.1.0) # BELGIUM_MBUS2_METER_READING1 (0-1:24.2.1)
assert isinstance(mbus2.MBUS_DEVICE_TYPE, CosemObject) assert isinstance(result[obis.BELGIUM_MBUS2_METER_READING1], MBusObject)
assert mbus2.MBUS_DEVICE_TYPE.unit is None assert result[obis.BELGIUM_MBUS2_METER_READING1].unit == 'm3'
assert isinstance(mbus2.MBUS_DEVICE_TYPE.value, int) assert isinstance(result[obis.BELGIUM_MBUS2_METER_READING1].value, Decimal)
assert mbus2.MBUS_DEVICE_TYPE.value == 7 assert result[obis.BELGIUM_MBUS2_METER_READING1].value == Decimal('872.234')
# MBUS_EQUIPMENT_IDENTIFIER (0-2:96.1.1)
assert isinstance(mbus2.MBUS_EQUIPMENT_IDENTIFIER, CosemObject)
assert mbus2.MBUS_EQUIPMENT_IDENTIFIER.unit is None
assert isinstance(mbus2.MBUS_EQUIPMENT_IDENTIFIER.value, str)
assert mbus2.MBUS_EQUIPMENT_IDENTIFIER.value == '3853414731323334353637383930'
# MBUS_METER_READING (0-1:24.2.1)
assert isinstance(mbus2.MBUS_METER_READING, MBusObject)
assert mbus2.MBUS_METER_READING.unit == 'm3'
assert isinstance(mbus2.MBUS_METER_READING.value, Decimal)
assert mbus2.MBUS_METER_READING.value == Decimal('872.234')
def test_checksum_valid(self): def test_checksum_valid(self):
# No exception is raised. # No exception is raised.
@@ -293,121 +263,6 @@ class TelegramParserFluviusTest(unittest.TestCase):
def test_checksum_missing(self): def test_checksum_missing(self):
# Remove the checksum value causing a ParseError. # Remove the checksum value causing a ParseError.
corrupted_telegram = TELEGRAM_FLUVIUS_V171.replace('!3AD7\r\n', '') corrupted_telegram = TELEGRAM_FLUVIUS_V171.replace('!911C\r\n', '')
with self.assertRaises(ParseError): with self.assertRaises(ParseError):
TelegramParser.validate_checksum(corrupted_telegram) TelegramParser.validate_checksum(corrupted_telegram)
def test_to_json(self):
parser = TelegramParser(telegram_specifications.BELGIUM_FLUVIUS)
telegram = parser.parse(TELEGRAM_FLUVIUS_V171_ALT)
json_data = json.loads(telegram.to_json())
self.maxDiff = None
self.assertEqual(
json_data,
{'BELGIUM_VERSION_INFORMATION': {'value': '50217', 'unit': None},
'BELGIUM_EQUIPMENT_IDENTIFIER': {'value': '3153414733313030373231333236', 'unit': None},
'P1_MESSAGE_TIMESTAMP': {'value': '2023-11-02T11:15:48+00:00', 'unit': None},
'ELECTRICITY_USED_TARIFF_1': {'value': 301.548, 'unit': 'kWh'},
'ELECTRICITY_USED_TARIFF_2': {'value': 270.014, 'unit': 'kWh'},
'ELECTRICITY_DELIVERED_TARIFF_1': {'value': 0.005, 'unit': 'kWh'},
'ELECTRICITY_DELIVERED_TARIFF_2': {'value': 0.0, 'unit': 'kWh'},
'ELECTRICITY_ACTIVE_TARIFF': {'value': '0001', 'unit': None},
'BELGIUM_CURRENT_AVERAGE_DEMAND': {'value': 0.052, 'unit': 'kW'},
'BELGIUM_MAXIMUM_DEMAND_MONTH': {'datetime': '2023-11-02T10:45:00+00:00',
'value': 3.064, 'unit': 'kW'},
'BELGIUM_MAXIMUM_DEMAND_13_MONTHS': [{'datetime': '2023-07-31T22:00:00+00:00',
'occurred': None, 'value': 0.0, 'unit': 'kW'},
{'datetime': '2023-08-31T22:00:00+00:00',
'occurred': '2023-08-31T16:15:00+00:00',
'value': 1.862, 'unit': 'kW'},
{'datetime': '2023-09-30T22:00:00+00:00',
'occurred': '2023-09-10T16:30:00+00:00',
'value': 4.229, 'unit': 'kW'},
{'datetime': '2023-10-31T23:00:00+00:00',
'occurred': '2023-10-16T11:00:00+00:00',
'value': 4.927, 'unit': 'kW'}],
'CURRENT_ELECTRICITY_USAGE': {'value': 0.338, 'unit': 'kW'},
'CURRENT_ELECTRICITY_DELIVERY': {'value': 0.0, 'unit': 'kW'},
'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE': {'value': 0.047, 'unit': 'kW'},
'INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE': {'value': 0.179, 'unit': 'kW'},
'INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE': {'value': 0.111, 'unit': 'kW'},
'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE': {'value': 0.0, 'unit': 'kW'},
'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE': {'value': 0.0, 'unit': 'kW'},
'INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE': {'value': 0.0, 'unit': 'kW'},
'INSTANTANEOUS_VOLTAGE_L1': {'value': 232.9, 'unit': 'V'},
'INSTANTANEOUS_VOLTAGE_L2': {'value': 228.1, 'unit': 'V'},
'INSTANTANEOUS_VOLTAGE_L3': {'value': 228.1, 'unit': 'V'},
'INSTANTANEOUS_CURRENT_L1': {'value': 0.27, 'unit': 'A'},
'INSTANTANEOUS_CURRENT_L2': {'value': 0.88, 'unit': 'A'},
'INSTANTANEOUS_CURRENT_L3': {'value': 0.52, 'unit': 'A'},
'ACTUAL_SWITCH_POSITION': {'value': 1, 'unit': None},
'ACTUAL_TRESHOLD_ELECTRICITY': {'value': 999.9, 'unit': 'kW'},
'FUSE_THRESHOLD_L1': {'value': 999.0, 'unit': 'A'},
'TEXT_MESSAGE': {'value': None, 'unit': None},
'MBUS_DEVICES': [{'MBUS_DEVICE_TYPE': {'value': 3, 'unit': None},
'MBUS_EQUIPMENT_IDENTIFIER': {'value': '37464C4F32313233303838303237',
'unit': None},
'MBUS_VALVE_POSITION': {'value': 1, 'unit': None},
'MBUS_METER_READING': {'datetime': '2023-11-02T11:10:02+00:00',
'value': 92.287, 'unit': 'm3'},
'CHANNEL_ID': 1},
{'MBUS_DEVICE_TYPE': {'value': 7, 'unit': None},
'MBUS_EQUIPMENT_IDENTIFIER': {'value': '3853455430303030393631313733',
'unit': None},
'MBUS_METER_READING': {'datetime': '2023-11-02T11:15:32+00:00',
'value': 8.579, 'unit': 'm3'},
'CHANNEL_ID': 2}]}
)
def test_to_str(self):
parser = TelegramParser(telegram_specifications.BELGIUM_FLUVIUS)
telegram = parser.parse(TELEGRAM_FLUVIUS_V171_ALT)
self.assertEqual(
str(telegram),
(
'BELGIUM_VERSION_INFORMATION: 50217 [None]\n'
'BELGIUM_EQUIPMENT_IDENTIFIER: 3153414733313030373231333236 [None]\n'
'P1_MESSAGE_TIMESTAMP: 2023-11-02T11:15:48+00:00 [None]\n'
'ELECTRICITY_USED_TARIFF_1: 301.548 [kWh]\n'
'ELECTRICITY_USED_TARIFF_2: 270.014 [kWh]\n'
'ELECTRICITY_DELIVERED_TARIFF_1: 0.005 [kWh]\n'
'ELECTRICITY_DELIVERED_TARIFF_2: 0.000 [kWh]\n'
'ELECTRICITY_ACTIVE_TARIFF: 0001 [None]\n'
'BELGIUM_CURRENT_AVERAGE_DEMAND: 0.052 [kW]\n'
'BELGIUM_MAXIMUM_DEMAND_MONTH: 3.064 [kW] at 2023-11-02T10:45:00+00:00\n'
'0.0 [kW] at 2023-07-31T22:00:00+00:00 occurred None'
'1.862 [kW] at 2023-08-31T22:00:00+00:00 occurred 2023-08-31T16:15:00+00:00'
'4.229 [kW] at 2023-09-30T22:00:00+00:00 occurred 2023-09-10T16:30:00+00:00'
'4.927 [kW] at 2023-10-31T23:00:00+00:00 occurred 2023-10-16T11:00:00+00:00'
'CURRENT_ELECTRICITY_USAGE: 0.338 [kW]\n'
'CURRENT_ELECTRICITY_DELIVERY: 0.000 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE: 0.047 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE: 0.179 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE: 0.111 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE: 0.000 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE: 0.000 [kW]\n'
'INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE: 0.000 [kW]\n'
'INSTANTANEOUS_VOLTAGE_L1: 232.9 [V]\n'
'INSTANTANEOUS_VOLTAGE_L2: 228.1 [V]\n'
'INSTANTANEOUS_VOLTAGE_L3: 228.1 [V]\n'
'INSTANTANEOUS_CURRENT_L1: 0.27 [A]\n'
'INSTANTANEOUS_CURRENT_L2: 0.88 [A]\n'
'INSTANTANEOUS_CURRENT_L3: 0.52 [A]\n'
'ACTUAL_SWITCH_POSITION: 1 [None]\n'
'ACTUAL_TRESHOLD_ELECTRICITY: 999.9 [kW]\n'
'FUSE_THRESHOLD_L1: 999 [A]\n'
'TEXT_MESSAGE: None [None]\n'
'MBUS DEVICE (channel 1)\n'
' MBUS_DEVICE_TYPE: 3 [None]\n'
' MBUS_EQUIPMENT_IDENTIFIER: 37464C4F32313233303838303237 [None]\n'
' MBUS_VALVE_POSITION: 1 [None]\n'
' MBUS_METER_READING: 92.287 [m3] at 2023-11-02T11:10:02+00:00\n'
'MBUS DEVICE (channel 2)\n'
' MBUS_DEVICE_TYPE: 7 [None]\n'
' MBUS_EQUIPMENT_IDENTIFIER: 3853455430303030393631313733 [None]\n'
' MBUS_METER_READING: 8.579 [m3] at 2023-11-02T11:15:32+00:00\n'
)
)
+1 -4
View File
@@ -15,10 +15,7 @@ class TelegramParserIskraIETest(unittest.TestCase):
def test_parse(self): def test_parse(self):
parser = TelegramParser(telegram_specifications.ISKRA_IE) parser = TelegramParser(telegram_specifications.ISKRA_IE)
try: result = parser.parse(TELEGRAM_ISKRA_IE)
result = parser.parse(TELEGRAM_ISKRA_IE, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
# EQUIPMENT_IDENTIFIER_GAS (0-0:96.1.0) # EQUIPMENT_IDENTIFIER_GAS (0-0:96.1.0)
assert isinstance(result[obis.EQUIPMENT_IDENTIFIER_GAS], CosemObject) assert isinstance(result[obis.EQUIPMENT_IDENTIFIER_GAS], CosemObject)
+1 -4
View File
@@ -14,10 +14,7 @@ class TelegramParserV2_2Test(unittest.TestCase):
def test_parse(self): def test_parse(self):
parser = TelegramParser(telegram_specifications.V2_2) parser = TelegramParser(telegram_specifications.V2_2)
try: result = parser.parse(TELEGRAM_V2_2)
result = parser.parse(TELEGRAM_V2_2, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
# ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1) # ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1)
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject) assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject)
+1 -4
View File
@@ -14,10 +14,7 @@ class TelegramParserV3Test(unittest.TestCase):
def test_parse(self): def test_parse(self):
parser = TelegramParser(telegram_specifications.V3) parser = TelegramParser(telegram_specifications.V3)
try: result = parser.parse(TELEGRAM_V3)
result = parser.parse(TELEGRAM_V3, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
# ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1) # ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1)
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject) assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject)
+1 -4
View File
@@ -17,10 +17,7 @@ class TelegramParserV4_2Test(unittest.TestCase):
def test_parse(self): def test_parse(self):
parser = TelegramParser(telegram_specifications.V4) parser = TelegramParser(telegram_specifications.V4)
try: result = parser.parse(TELEGRAM_V4_2)
result = parser.parse(TELEGRAM_V4_2, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
# P1_MESSAGE_HEADER (1-3:0.2.8) # P1_MESSAGE_HEADER (1-3:0.2.8)
assert isinstance(result[obis.P1_MESSAGE_HEADER], CosemObject) assert isinstance(result[obis.P1_MESSAGE_HEADER], CosemObject)
+29 -29
View File
@@ -17,11 +17,8 @@ class TelegramParserV5Test(unittest.TestCase):
def test_parse(self): def test_parse(self):
parser = TelegramParser(telegram_specifications.V5) parser = TelegramParser(telegram_specifications.V5)
try: telegram = parser.parse(TELEGRAM_V5)
telegram = parser.parse(TELEGRAM_V5, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
print('test: ', type(telegram.P1_MESSAGE_HEADER), telegram.P1_MESSAGE_HEADER.__dict__)
# P1_MESSAGE_HEADER (1-3:0.2.8) # P1_MESSAGE_HEADER (1-3:0.2.8)
assert isinstance(telegram.P1_MESSAGE_HEADER, CosemObject) assert isinstance(telegram.P1_MESSAGE_HEADER, CosemObject)
assert telegram.P1_MESSAGE_HEADER.unit is None assert telegram.P1_MESSAGE_HEADER.unit is None
@@ -172,6 +169,12 @@ class TelegramParserV5Test(unittest.TestCase):
assert telegram.TEXT_MESSAGE.unit is None assert telegram.TEXT_MESSAGE.unit is None
assert telegram.TEXT_MESSAGE.value is None assert telegram.TEXT_MESSAGE.value is None
# DEVICE_TYPE (0-x:24.1.0)
assert isinstance(telegram.DEVICE_TYPE, CosemObject)
assert telegram.DEVICE_TYPE.unit is None
assert isinstance(telegram.DEVICE_TYPE.value, int)
assert telegram.DEVICE_TYPE.value == 3
# INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0) # INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0)
assert isinstance(telegram.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE, CosemObject) assert isinstance(telegram.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE, CosemObject)
assert telegram.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.unit == 'kW' assert telegram.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.unit == 'kW'
@@ -209,27 +212,27 @@ class TelegramParserV5Test(unittest.TestCase):
assert telegram.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.value == Decimal('0') assert telegram.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.value == Decimal('0')
# There's only one Mbus device (gas meter) in this case. Alternatively # There's only one Mbus device (gas meter) in this case. Alternatively
# use get_mbus_device_by_channel # use get_mbget_mbus_device_by_channel
gas_meter_devices = telegram.MBUS_DEVICES gas_meter_devices = telegram.MBUS_DEVICES
gas_meter_device = gas_meter_devices[0] gas_meter_device = gas_meter_devices[0]
# MBUS_DEVICE_TYPE (0-1:96.1.0) # EQUIPMENT_IDENTIFIER_GAS (0-x:96.1.0)
assert isinstance(gas_meter_device.MBUS_DEVICE_TYPE, CosemObject) assert isinstance(gas_meter_device.DEVICE_TYPE, CosemObject)
assert gas_meter_device.MBUS_DEVICE_TYPE.unit is None assert gas_meter_device.DEVICE_TYPE.unit is None
assert isinstance(gas_meter_device.MBUS_DEVICE_TYPE.value, int) assert isinstance(gas_meter_device.DEVICE_TYPE.value, int)
assert gas_meter_device.MBUS_DEVICE_TYPE.value == 3 assert gas_meter_device.DEVICE_TYPE.value == 3
# MBUS_EQUIPMENT_IDENTIFIER (0-1:96.1.0) # EQUIPMENT_IDENTIFIER_GAS (0-x:96.1.0)
assert isinstance(gas_meter_device.MBUS_EQUIPMENT_IDENTIFIER, CosemObject) assert isinstance(gas_meter_device.EQUIPMENT_IDENTIFIER_GAS, CosemObject)
assert gas_meter_device.MBUS_EQUIPMENT_IDENTIFIER.unit is None assert gas_meter_device.EQUIPMENT_IDENTIFIER_GAS.unit is None
assert isinstance(gas_meter_device.MBUS_EQUIPMENT_IDENTIFIER.value, str) assert isinstance(gas_meter_device.EQUIPMENT_IDENTIFIER_GAS.value, str)
assert gas_meter_device.MBUS_EQUIPMENT_IDENTIFIER.value == '3232323241424344313233343536373839' assert gas_meter_device.EQUIPMENT_IDENTIFIER_GAS.value == '3232323241424344313233343536373839'
# MBUS_METER_READING (0-1:24.2.1) # HOURLY_GAS_METER_READING (0-1:24.2.1)
assert isinstance(gas_meter_device.MBUS_METER_READING, MBusObject) assert isinstance(gas_meter_device.HOURLY_GAS_METER_READING, MBusObject)
assert gas_meter_device.MBUS_METER_READING.unit == 'm3' assert gas_meter_device.HOURLY_GAS_METER_READING.unit == 'm3'
assert isinstance(telegram.MBUS_METER_READING.value, Decimal) assert isinstance(telegram.HOURLY_GAS_METER_READING.value, Decimal)
assert gas_meter_device.MBUS_METER_READING.value == Decimal('0.107') assert gas_meter_device.HOURLY_GAS_METER_READING.value == Decimal('0.107')
def test_checksum_valid(self): def test_checksum_valid(self):
# No exception is raised. # No exception is raised.
@@ -264,11 +267,8 @@ class TelegramParserV5Test(unittest.TestCase):
parser = TelegramParser(telegram_specifications.V5) parser = TelegramParser(telegram_specifications.V5)
telegram = parser.parse(invalid_date_telegram) telegram = parser.parse(invalid_date_telegram)
# MBUS DEVICE 1 # HOURLY_GAS_METER_READING (0-1:24.2.1)
mbus1 = telegram.get_mbus_device_by_channel(1) assert isinstance(telegram.HOURLY_GAS_METER_READING, MBusObject)
assert telegram.HOURLY_GAS_METER_READING.unit is None
# MBUS_METER_READING (0-1:24.2.1) assert isinstance(telegram.HOURLY_GAS_METER_READING.value, Decimal)
assert isinstance(mbus1.MBUS_METER_READING, MBusObject) assert telegram.HOURLY_GAS_METER_READING.value == Decimal('0.000')
assert mbus1.MBUS_METER_READING.unit is None
assert isinstance(mbus1.MBUS_METER_READING.value, Decimal)
assert mbus1.MBUS_METER_READING.value == Decimal('0.000')
-308
View File
@@ -1,308 +0,0 @@
from decimal import Decimal
import datetime
import unittest
import pytz
from dsmr_parser import telegram_specifications
from dsmr_parser.exceptions import InvalidChecksumError, ParseError
from dsmr_parser.objects import CosemObject
from dsmr_parser.parsers import TelegramParser
from test.example_telegrams import TELEGRAM_V5_EON_HU
class TelegramParserV5EONHUTest(unittest.TestCase):
""" Test parsing of a DSMR v5 EON Hungary telegram. """
def test_parse(self):
parser = TelegramParser(telegram_specifications.EON_HUNGARY)
try:
telegram = parser.parse(TELEGRAM_V5_EON_HU, throw_ex=True)
except Exception as ex:
assert False, f"parse trigged an exception {ex}"
# P1_MESSAGE_TIMESTAMP (0-0:1.0.0)
assert isinstance(telegram.P1_MESSAGE_TIMESTAMP, CosemObject)
assert telegram.P1_MESSAGE_TIMESTAMP.unit is None
assert isinstance(telegram.P1_MESSAGE_TIMESTAMP.value, datetime.datetime)
assert telegram.P1_MESSAGE_TIMESTAMP.value == \
pytz.timezone("Europe/Budapest").localize(datetime.datetime(2023, 7, 24, 15, 7, 30))
# EON_HU_COSEM_LOGICAL_DEVICE_NAME (0-0:42.0.0)
assert isinstance(telegram.COSEM_LOGICAL_DEVICE_NAME, CosemObject)
assert telegram.COSEM_LOGICAL_DEVICE_NAME.unit is None
assert isinstance(telegram.COSEM_LOGICAL_DEVICE_NAME.value, str)
assert telegram.COSEM_LOGICAL_DEVICE_NAME.value == '53414733303832323030303032313630'
# EON_HU_EQUIPMENT_SERIAL_NUMBER (0-0:96.1.0)
assert isinstance(telegram.EQUIPMENT_SERIAL_NUMBER, CosemObject)
assert telegram.EQUIPMENT_SERIAL_NUMBER.unit is None
assert isinstance(telegram.EQUIPMENT_SERIAL_NUMBER.value, str)
assert telegram.EQUIPMENT_SERIAL_NUMBER.value == '383930303832323030303032313630'
# ELECTRICITY_ACTIVE_TARIFF (0-0:96.14.0)
assert isinstance(telegram.ELECTRICITY_ACTIVE_TARIFF, CosemObject)
assert telegram.ELECTRICITY_ACTIVE_TARIFF.unit is None
assert isinstance(telegram.ELECTRICITY_ACTIVE_TARIFF.value, str)
assert telegram.ELECTRICITY_ACTIVE_TARIFF.value == '0001'
# ACTUAL_SWITCH_POSITION (0-0:96.3.10)
assert isinstance(telegram.ACTUAL_SWITCH_POSITION, CosemObject)
assert telegram.ACTUAL_SWITCH_POSITION.unit is None
assert isinstance(telegram.ACTUAL_SWITCH_POSITION.value, str)
assert telegram.ACTUAL_SWITCH_POSITION.value == '1'
# ACTUAL_TRESHOLD_ELECTRICITY (0-0:17.0.0)
assert isinstance(telegram.ACTUAL_TRESHOLD_ELECTRICITY, CosemObject)
assert telegram.ACTUAL_TRESHOLD_ELECTRICITY.unit == 'kW'
assert isinstance(telegram.ACTUAL_TRESHOLD_ELECTRICITY.value, Decimal)
assert telegram.ACTUAL_TRESHOLD_ELECTRICITY.value == Decimal('90.000')
# ELECTRICITY_IMPORTED_TOTAL (1-0:1.8.0)
assert isinstance(telegram.ELECTRICITY_IMPORTED_TOTAL, CosemObject)
assert telegram.ELECTRICITY_IMPORTED_TOTAL.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_IMPORTED_TOTAL.value, Decimal)
assert telegram.ELECTRICITY_IMPORTED_TOTAL.value == Decimal('000173.640')
# ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1)
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_1, CosemObject)
assert telegram.ELECTRICITY_USED_TARIFF_1.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_1.value, Decimal)
assert telegram.ELECTRICITY_USED_TARIFF_1.value == Decimal('000047.719')
# ELECTRICITY_USED_TARIFF_2 (1-0:1.8.2)
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_2, CosemObject)
assert telegram.ELECTRICITY_USED_TARIFF_2.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_2.value, Decimal)
assert telegram.ELECTRICITY_USED_TARIFF_2.value == Decimal('000125.921')
# EON_HU_ELECTRICITY_USED_TARIFF_3 (1-0:1.8.3)
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_3, CosemObject)
assert telegram.ELECTRICITY_USED_TARIFF_3.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_3.value, Decimal)
assert telegram.ELECTRICITY_USED_TARIFF_3.value == Decimal('000000.000')
# EON_HU_ELECTRICITY_USED_TARIFF_4 (1-0:1.8.4)
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_4, CosemObject)
assert telegram.ELECTRICITY_USED_TARIFF_4.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_USED_TARIFF_4.value, Decimal)
assert telegram.ELECTRICITY_USED_TARIFF_4.value == Decimal('000000.000')
# ELECTRICITY_EXPORTED_TOTAL (1-0:2.8.0)
assert isinstance(telegram.ELECTRICITY_EXPORTED_TOTAL, CosemObject)
assert telegram.ELECTRICITY_EXPORTED_TOTAL.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_EXPORTED_TOTAL.value, Decimal)
assert telegram.ELECTRICITY_EXPORTED_TOTAL.value == Decimal('000627.177')
# ELECTRICITY_DELIVERED_TARIFF_1 (1-0:2.8.1)
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_1, CosemObject)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_1.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_1.value, Decimal)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_1.value == Decimal('000401.829')
# ELECTRICITY_DELIVERED_TARIFF_2 (1-0:2.8.2)
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_2, CosemObject)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_2.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_2.value, Decimal)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_2.value == Decimal('000225.348')
# EON_HU_ELECTRICITY_DELIVERED_TARIFF_3 (1-0:2.8.3)
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_3, CosemObject)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_3.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_3.value, Decimal)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_3.value == Decimal('000000.000')
# EON_HU_ELECTRICITY_DELIVERED_TARIFF_4 (1-0:2.8.4)
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_4, CosemObject)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_4.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_DELIVERED_TARIFF_4.value, Decimal)
assert telegram.ELECTRICITY_DELIVERED_TARIFF_4.value == Decimal('000000.000')
# ELECTRICITY_REACTIVE_IMPORTED_TOTAL (1-0:3.8.0)
assert isinstance(telegram.ELECTRICITY_REACTIVE_IMPORTED_TOTAL, CosemObject)
assert telegram.ELECTRICITY_REACTIVE_IMPORTED_TOTAL.unit == 'kvarh'
assert isinstance(telegram.ELECTRICITY_REACTIVE_IMPORTED_TOTAL.value, Decimal)
assert telegram.ELECTRICITY_REACTIVE_IMPORTED_TOTAL.value == Decimal('000000.123')
# ELECTRICITY_REACTIVE_EXPORTED_TOTAL (1-0:4.8.0)
assert isinstance(telegram.ELECTRICITY_REACTIVE_EXPORTED_TOTAL, CosemObject)
assert telegram.ELECTRICITY_REACTIVE_EXPORTED_TOTAL.unit == 'kvarh'
assert isinstance(telegram.ELECTRICITY_REACTIVE_EXPORTED_TOTAL.value, Decimal)
assert telegram.ELECTRICITY_REACTIVE_EXPORTED_TOTAL.value == Decimal('000303.131')
# EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q1 (1-0:5.8.0)
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q1, CosemObject)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q1.unit == 'kvarh'
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q1.value, Decimal)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q1.value == Decimal('000000.668')
# EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q2 (1-0:6.8.0)
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q2, CosemObject)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q2.unit == 'kvarh'
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q2.value, Decimal)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q2.value == Decimal('000000.071')
# EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q3 (1-0:7.8.0)
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q3, CosemObject)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q3.unit == 'kvarh'
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q3.value, Decimal)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q3.value == Decimal('000160.487')
# EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q4 (1-0:8.8.0)
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q4, CosemObject)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q4.unit == 'kvarh'
assert isinstance(telegram.ELECTRICITY_REACTIVE_TOTAL_Q4.value, Decimal)
assert telegram.ELECTRICITY_REACTIVE_TOTAL_Q4.value == Decimal('000143.346')
# EON_HU_ELECTRICITY_COMBINED (1-0:15.8.0)
assert isinstance(telegram.ELECTRICITY_COMBINED, CosemObject)
assert telegram.ELECTRICITY_COMBINED.unit == 'kWh'
assert isinstance(telegram.ELECTRICITY_COMBINED.value, Decimal)
assert telegram.ELECTRICITY_COMBINED.value == Decimal('000800.817')
# INSTANTANEOUS_VOLTAGE_L2 (1-0:32.7.0)
assert isinstance(telegram.INSTANTANEOUS_VOLTAGE_L1, CosemObject)
assert telegram.INSTANTANEOUS_VOLTAGE_L1.unit == 'V'
assert isinstance(telegram.INSTANTANEOUS_VOLTAGE_L1.value, Decimal)
assert telegram.INSTANTANEOUS_VOLTAGE_L1.value == Decimal('240.4')
# INSTANTANEOUS_VOLTAGE_L2 (1-0:52.7.0)
assert isinstance(telegram.INSTANTANEOUS_VOLTAGE_L2, CosemObject)
assert telegram.INSTANTANEOUS_VOLTAGE_L2.unit == 'V'
assert isinstance(telegram.INSTANTANEOUS_VOLTAGE_L2.value, Decimal)
assert telegram.INSTANTANEOUS_VOLTAGE_L2.value == Decimal('239.1')
# INSTANTANEOUS_VOLTAGE_L3 (1-0:72.7.0)
assert isinstance(telegram.INSTANTANEOUS_VOLTAGE_L3, CosemObject)
assert telegram.INSTANTANEOUS_VOLTAGE_L3.unit == 'V'
assert isinstance(telegram.INSTANTANEOUS_VOLTAGE_L3.value, Decimal)
assert telegram.INSTANTANEOUS_VOLTAGE_L3.value == Decimal('241.2')
# INSTANTANEOUS_CURRENT_L1 (1-0:31.7.0)
assert isinstance(telegram.INSTANTANEOUS_CURRENT_L1, CosemObject)
assert telegram.INSTANTANEOUS_CURRENT_L1.unit == 'A'
assert isinstance(telegram.INSTANTANEOUS_CURRENT_L1.value, Decimal)
assert telegram.INSTANTANEOUS_CURRENT_L1.value == Decimal('003')
# INSTANTANEOUS_CURRENT_L2 (1-0:51.7.0)
assert isinstance(telegram.INSTANTANEOUS_CURRENT_L2, CosemObject)
assert telegram.INSTANTANEOUS_CURRENT_L2.unit == 'A'
assert isinstance(telegram.INSTANTANEOUS_CURRENT_L2.value, Decimal)
assert telegram.INSTANTANEOUS_CURRENT_L2.value == Decimal('004')
# INSTANTANEOUS_CURRENT_L3 (1-0:71.7.0)
assert isinstance(telegram.INSTANTANEOUS_CURRENT_L3, CosemObject)
assert telegram.INSTANTANEOUS_CURRENT_L3.unit == 'A'
assert isinstance(telegram.INSTANTANEOUS_CURRENT_L3.value, Decimal)
assert telegram.INSTANTANEOUS_CURRENT_L3.value == Decimal('003')
# EON_HU_INSTANTANEOUS_POWER_FACTOR_TOTAL (1-0:13.7.0)
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_TOTAL, CosemObject)
assert telegram.INSTANTANEOUS_POWER_FACTOR_TOTAL.unit is None
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_TOTAL.value, Decimal)
assert telegram.INSTANTANEOUS_POWER_FACTOR_TOTAL.value == Decimal('4.556')
# EON_HU_INSTANTANEOUS_POWER_FACTOR_L1 (1-0:33.7.0)
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_L1, CosemObject)
assert telegram.INSTANTANEOUS_POWER_FACTOR_L1.unit is None
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_L1.value, Decimal)
assert telegram.INSTANTANEOUS_POWER_FACTOR_L1.value == Decimal('4.591')
# EON_HU_INSTANTANEOUS_POWER_FACTOR_L2 (1-0:53.7.0)
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_L2, CosemObject)
assert telegram.INSTANTANEOUS_POWER_FACTOR_L2.unit is None
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_L2.value, Decimal)
assert telegram.INSTANTANEOUS_POWER_FACTOR_L2.value == Decimal('4.542')
# EON_HU_INSTANTANEOUS_POWER_FACTOR_L3 (1-0:73.7.0)
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_L3, CosemObject)
assert telegram.INSTANTANEOUS_POWER_FACTOR_L3.unit is None
assert isinstance(telegram.INSTANTANEOUS_POWER_FACTOR_L3.value, Decimal)
assert telegram.INSTANTANEOUS_POWER_FACTOR_L3.value == Decimal('4.552')
# EON_HU_FREQUENCY (1-0:14.7.0)
assert isinstance(telegram.FREQUENCY, CosemObject)
assert telegram.FREQUENCY.unit == "Hz"
assert isinstance(telegram.FREQUENCY.value, Decimal)
assert telegram.FREQUENCY.value == Decimal('50.00')
# CURRENT_ELECTRICITY_USAGE (1-0:1.7.0)
assert isinstance(telegram.CURRENT_ELECTRICITY_USAGE, CosemObject)
assert telegram.CURRENT_ELECTRICITY_USAGE.unit == 'kW'
assert isinstance(telegram.CURRENT_ELECTRICITY_USAGE.value, Decimal)
assert telegram.CURRENT_ELECTRICITY_USAGE.value == Decimal('00.000')
# CURRENT_ELECTRICITY_DELIVERY (1-0:2.7.0)
assert isinstance(telegram.CURRENT_ELECTRICITY_DELIVERY, CosemObject)
assert telegram.CURRENT_ELECTRICITY_DELIVERY.unit == 'kW'
assert isinstance(telegram.CURRENT_ELECTRICITY_DELIVERY.value, Decimal)
assert telegram.CURRENT_ELECTRICITY_DELIVERY.value == Decimal('02.601')
# EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q1 (1-0:5.7.0)
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q1, CosemObject)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q1.unit == 'kvar'
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q1.value, Decimal)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q1.value == Decimal('00.000')
# EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q2 (1-0:6.7.0)
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q2, CosemObject)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q2.unit == 'kvar'
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q2.value, Decimal)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q2.value == Decimal('00.000')
# EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q3 (1-0:7.7.0)
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q3, CosemObject)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q3.unit == 'kvar'
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q3.value, Decimal)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q3.value == Decimal('00.504')
# EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q4 (1-0:8.7.0)
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q4, CosemObject)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q4.unit == 'kvar'
assert isinstance(telegram.INSTANTANEOUS_REACTIVE_POWER_Q4.value, Decimal)
assert telegram.INSTANTANEOUS_REACTIVE_POWER_Q4.value == Decimal('00.000')
# FUSE_THRESHOLD_L1 (1-0:31.4.0)
assert isinstance(telegram.FUSE_THRESHOLD_L1, CosemObject)
assert telegram.FUSE_THRESHOLD_L1.unit == 'A'
assert isinstance(telegram.FUSE_THRESHOLD_L1.value, Decimal)
assert telegram.FUSE_THRESHOLD_L1.value == Decimal('200.00')
# FUSE_THRESHOLD_L2 (1-0:31.4.0)
assert isinstance(telegram.FUSE_THRESHOLD_L2, CosemObject)
assert telegram.FUSE_THRESHOLD_L2.unit == 'A'
assert isinstance(telegram.FUSE_THRESHOLD_L2.value, Decimal)
assert telegram.FUSE_THRESHOLD_L2.value == Decimal('200.00')
# FUSE_THRESHOLD_L3 (1-0:31.4.0)
assert isinstance(telegram.FUSE_THRESHOLD_L3, CosemObject)
assert telegram.FUSE_THRESHOLD_L3.unit == 'A'
assert isinstance(telegram.FUSE_THRESHOLD_L3.value, Decimal)
assert telegram.FUSE_THRESHOLD_L3.value == Decimal('200.00')
# TEXT_MESSAGE (0-0:96.13.0)
assert isinstance(telegram.TEXT_MESSAGE, CosemObject)
assert telegram.TEXT_MESSAGE.unit is None
assert telegram.TEXT_MESSAGE.value is None
def test_checksum_valid(self):
# No exception is raised.
TelegramParser.validate_checksum(TELEGRAM_V5_EON_HU)
def test_checksum_invalid(self):
# Remove the electricty used data value. This causes the checksum to
# not match anymore.
corrupted_telegram = TELEGRAM_V5_EON_HU.replace(
'1-0:1.8.1(000047.719*kWh)\r\n',
''
)
with self.assertRaises(InvalidChecksumError):
TelegramParser.validate_checksum(corrupted_telegram)
def test_checksum_missing(self):
# Remove the checksum value causing a ParseError.
corrupted_telegram = TELEGRAM_V5_EON_HU.replace('!99DA\r\n', '')
with self.assertRaises(ParseError):
TelegramParser.validate_checksum(corrupted_telegram)
+1 -1
View File
@@ -68,6 +68,6 @@ class ProtocolTest(unittest.TestCase):
# 2nd call of keep_alive should close the transport # 2nd call of keep_alive should close the transport
self.protocol.keep_alive() self.protocol.keep_alive()
mock_transport.close.assert_called_once() assert mock_transport.close.called_once()
self.protocol.connection_lost(None) self.protocol.connection_lost(None)
-4
View File
@@ -6,7 +6,6 @@ deps=
pytest-asyncio pytest-asyncio
pytest-mock pytest-mock
dlms_cosem dlms_cosem
setuptools
commands= commands=
py.test --cov=dsmr_parser test {posargs} py.test --cov=dsmr_parser test {posargs}
pylama dsmr_parser test pylama dsmr_parser test
@@ -14,9 +13,6 @@ commands=
[pylama:dsmr_parser/clients/__init__.py] [pylama:dsmr_parser/clients/__init__.py]
ignore = W0611 ignore = W0611
[pylama:dsmr_parser/clients/socket_.py]
ignore = C901
[pylama:dsmr_parser/parsers.py] [pylama:dsmr_parser/parsers.py]
ignore = W605 ignore = W605