Compare commits

...
17 Commits
Author SHA1 Message Date
Nigel 06d2ae246e add workflow test for python 3.12 2024-01-29 14:24:48 +01:00
Nigel 391c3f7824 fix protocol unit test for python3.12 2024-01-29 14:22:31 +01:00
dupondje 739419e3ee Remove BELGIUM_MAX_POWER_PER_PHASE (#144)
This commit removes BELGIUM_MAX_POWER_PER_PHASE and uses
ACTUAL_TRESHOLD_ELECTRICITY as this has same regex. So useless to keep
the BELIUM variant.
2023-11-07 12:10:42 +01:00
Jean-Louis Dupond d2ff6f4bb9 Fix tests after FUSE_TRESHOLD rename 2023-11-06 15:10:36 +01:00
Jean-Louis Dupond a316d93082 Adjust the naming of the MAX_POWER and MAX_CURRENT obis values 2023-11-06 15:10:36 +01:00
Jean-Louis Dupond 01d7622c40 Release 1.3.1 2023-11-06 15:09:47 +01:00
dupondje e8a86272ea Merge pull request #143 from dupondje/fix_invalid_occured
Fix parsing peak usage when value is not set
2023-11-06 14:30:20 +01:00
Jean-Louis Dupond 389bcefb50 Fix parsing peak usage when value is not set
Sometimes peak usage is not yet visible in the 13 months history code.
It gives a 0.0kW value with timestamp (632525252525W).

Also the peak usage value can be invalid, handle this case also.
2023-11-06 09:50:34 +01:00
Nigel 88923622a9 Release 1.3.0 2023-08-01 09:26:40 +02:00
balazs92117 2f1e080df3 Refactor of name mapping, added E.ON Hungary (#137)
* Added EON HUNGARY specification

* refactoring obis name mapping
2023-08-01 09:23:17 +02:00
Nigel af2e6558de Revert "Added E.ON HUNGARY specification (#134)" (#135)
This reverts commit 0752deb58a.
2023-07-26 15:03:29 +02:00
balazs92117 0752deb58a Added E.ON HUNGARY specification (#134)
* Added EON HUNGARY specification
2023-07-26 13:31:59 +02:00
Nigel 3fd032f18f Release 1.2.4 2023-07-11 22:01:00 +02:00
Emilio Jose Palacios-Garcia 4602e8c99f EQUIPMENT IDENTIFIER is wrong for Fluvius meters when other mbus devices are present (#133)
* change obis of fluvius meter ID to BELGIUM_EQUIPMENT_IDENTIFIER

* update test case to use direct access to attributes

* fix test case for pipeline
2023-07-11 21:43:41 +02:00
Emilio Jose Palacios-Garcia f3444a515d EQUIPMENT IDENTIFIER is wrong for Fluvius meters when other mbus devices are present (#133)
* change obis of fluvius meter ID to BELGIUM_EQUIPMENT_IDENTIFIER
2023-07-11 21:43:25 +02:00
Nigel 99c7b0d9f0 Prepare release 1.2.3 2023-04-18 20:48:30 +02:00
dupondje 84973872af Fix parsing tests and line start matching (#132)
* Raise parsing exception and check it in tests

* use multiline regex and match everything at the line start
2023-04-14 16:51:01 +02:00
22 changed files with 2355 additions and 697 deletions
+1
View File
@@ -17,6 +17,7 @@ jobs:
- '3.9'
- '3.10'
- '3.11'
- '3.12'
name: Python ${{ matrix.python-version }}
steps:
+19
View File
@@ -1,6 +1,25 @@
Change Log
----------
**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>`_)
+6 -1
View File
@@ -21,7 +21,9 @@ def create_dsmr_protocol(dsmr_version, telegram_callback, loop=None, **kwargs):
return protocol
def _create_dsmr_protocol(dsmr_version, telegram_callback, protocol, loop=None, **kwargs):
# pylama noqa - because of "complex" (too long) if-elif-else.
# 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."""
if dsmr_version == '2.2':
@@ -51,6 +53,9 @@ def _create_dsmr_protocol(dsmr_version, telegram_callback, protocol, loop=None,
elif dsmr_version == 'ISKRA_IE':
specification = telegram_specifications.ISKRA_IE
serial_settings = SERIAL_SETTINGS_V5
elif dsmr_version == '5EONHU':
specification = telegram_specifications.EON_HUNGARY
serial_settings = SERIAL_SETTINGS_V5
else:
raise NotImplementedError("No telegram parser found for version: %s",
dsmr_version)
+6 -1
View File
@@ -43,7 +43,12 @@ class SocketReader(object):
continue
for data in lines:
self.telegram_buffer.append(data.decode('ascii'))
try:
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():
try:
-98
View File
@@ -1,98 +0,0 @@
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()])
+108 -87
View File
@@ -6,61 +6,68 @@ refactored to full line signatures to maintain backwards compatibility.
Might be refactored in a backwards incompatible way as soon as proper telegram
objects are introduced.
"""
P1_MESSAGE_HEADER = r'\d-\d:0\.2\.8.+?\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_2 = r'\d-\d:1\.8\.2.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_1 = r'\d-\d:2\.8\.1.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_2 = r'\d-\d:2\.8\.2.+?\r\n'
CURRENT_REACTIVE_IMPORTED = r'\d-\d:3\.7\.0.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TOTAL = r'\d-\d:3\.8\.0.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TARIFF_1 = r'\d-\d:3\.8\.1.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TARIFF_2 = r'\d-\d:3\.8\.2.+?\r\n'
CURRENT_REACTIVE_EXPORTED = r'\d-\d:4\.7\.0.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TOTAL = r'\d-\d:4\.8\.0.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TARIFF_1 = r'\d-\d:4\.8\.1.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TARIFF_2 = r'\d-\d:4\.8\.2.+?\r\n'
ELECTRICITY_ACTIVE_TARIFF = r'\d-\d:96\.14\.0.+?\r\n'
EQUIPMENT_IDENTIFIER = r'\d-\d:96\.1\.1.+?\r\n'
CURRENT_ELECTRICITY_USAGE = r'\d-\d:1\.7\.0.+?\r\n'
CURRENT_ELECTRICITY_DELIVERY = r'\d-\d:2\.7\.0.+?\r\n'
LONG_POWER_FAILURE_COUNT = r'\d-\d:96\.7\.9.+?\r\n'
SHORT_POWER_FAILURE_COUNT = r'\d-\d:96\.7\.21.+?\r\n'
POWER_EVENT_FAILURE_LOG = r'\d-\d:99\.97\.0.+?\r\n'
VOLTAGE_SAG_L1_COUNT = r'\d-\d:32\.32\.0.+?\r\n'
VOLTAGE_SAG_L2_COUNT = r'\d-\d:52\.32\.0.+?\r\n'
VOLTAGE_SAG_L3_COUNT = r'\d-\d:72\.32\.0.+?\r\n'
VOLTAGE_SWELL_L1_COUNT = r'\d-\d:32\.36\.0.+?\r\n'
VOLTAGE_SWELL_L2_COUNT = r'\d-\d:52\.36\.0.+?\r\n'
VOLTAGE_SWELL_L3_COUNT = r'\d-\d:72\.36\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L1 = r'\d-\d:32\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L2 = r'\d-\d:52\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L3 = r'\d-\d:72\.7\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L1 = r'\d-\d:31\.7\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L2 = r'\d-\d:51\.7\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L3 = r'\d-\d:71\.7\.0.+?\r\n'
TEXT_MESSAGE_CODE = r'\d-\d:96\.13\.1.+?\r\n'
TEXT_MESSAGE = r'\d-\d:96\.13\.0.+?\r\n'
DEVICE_TYPE = r'\d-\d:24\.1\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE = r'\d-\d:21\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE = r'\d-\d:41\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE = r'\d-\d:61\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE = r'\d-\d:22\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE = r'\d-\d:42\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE = r'\d-\d:62\.7\.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'
P1_MESSAGE_HEADER = r'^\d-\d:0\.2\.8.+?\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_2 = r'^\d-\d:1\.8\.2.+?\r\n'
ELECTRICITY_USED_TARIFF_3 = r'^\d-\d:1\.8\.3.+?\r\n'
ELECTRICITY_USED_TARIFF_4 = r'^\d-\d:1\.8\.4.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_1 = r'^\d-\d:2\.8\.1.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_2 = r'^\d-\d:2\.8\.2.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_3 = r'^\d-\d:2\.8\.3.+?\r\n'
ELECTRICITY_DELIVERED_TARIFF_4 = r'^\d-\d:2\.8\.4.+?\r\n'
CURRENT_REACTIVE_IMPORTED = r'^\d-\d:3\.7\.0.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TOTAL = r'^\d-\d:3\.8\.0.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TARIFF_1 = r'^\d-\d:3\.8\.1.+?\r\n'
ELECTRICITY_REACTIVE_IMPORTED_TARIFF_2 = r'^\d-\d:3\.8\.2.+?\r\n'
CURRENT_REACTIVE_EXPORTED = r'^\d-\d:4\.7\.0.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TOTAL = r'^\d-\d:4\.8\.0.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TARIFF_1 = r'^\d-\d:4\.8\.1.+?\r\n'
ELECTRICITY_REACTIVE_EXPORTED_TARIFF_2 = r'^\d-\d:4\.8\.2.+?\r\n'
ELECTRICITY_ACTIVE_TARIFF = r'^\d-\d:96\.14\.0.+?\r\n'
EQUIPMENT_IDENTIFIER = r'^\d-\d:96\.1\.1.+?\r\n'
CURRENT_ELECTRICITY_USAGE = r'^\d-\d:1\.7\.0.+?\r\n'
CURRENT_ELECTRICITY_DELIVERY = r'^\d-\d:2\.7\.0.+?\r\n'
LONG_POWER_FAILURE_COUNT = r'^\d-\d:96\.7\.9.+?\r\n'
SHORT_POWER_FAILURE_COUNT = r'^\d-\d:96\.7\.21.+?\r\n'
POWER_EVENT_FAILURE_LOG = r'^\d-\d:99\.97\.0.+?\r\n'
VOLTAGE_SAG_L1_COUNT = r'^\d-\d:32\.32\.0.+?\r\n'
VOLTAGE_SAG_L2_COUNT = r'^\d-\d:52\.32\.0.+?\r\n'
VOLTAGE_SAG_L3_COUNT = r'^\d-\d:72\.32\.0.+?\r\n'
VOLTAGE_SWELL_L1_COUNT = r'^\d-\d:32\.36\.0.+?\r\n'
VOLTAGE_SWELL_L2_COUNT = r'^\d-\d:52\.36\.0.+?\r\n'
VOLTAGE_SWELL_L3_COUNT = r'^\d-\d:72\.36\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L1 = r'^\d-\d:32\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L2 = r'^\d-\d:52\.7\.0.+?\r\n'
INSTANTANEOUS_VOLTAGE_L3 = r'^\d-\d:72\.7\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L1 = r'^\d-\d:31\.7\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L2 = r'^\d-\d:51\.7\.0.+?\r\n'
INSTANTANEOUS_CURRENT_L3 = r'^\d-\d:71\.7\.0.+?\r\n'
FUSE_THRESHOLD_L1 = r'^\d-\d:31\.4\.0.+?\r\n' # Applicable when current limitation is active
FUSE_THRESHOLD_L2 = r'^\d-\d:51\.4\.0.+?\r\n' # Applicable when current limitation is active
FUSE_THRESHOLD_L3 = r'^\d-\d:71\.4\.0.+?\r\n' # Applicable when current limitation is active
TEXT_MESSAGE_CODE = r'^\d-\d:96\.13\.1.+?\r\n'
TEXT_MESSAGE = r'^\d-\d:96\.13\.0.+?\r\n'
DEVICE_TYPE = r'^\d-\d:24\.1\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE = r'^\d-\d:21\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE = r'^\d-\d:41\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE = r'^\d-\d:61\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE = r'^\d-\d:22\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE = r'^\d-\d:42\.7\.0.+?\r\n'
INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE = r'^\d-\d:62\.7\.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
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'
ACTUAL_TRESHOLD_ELECTRICITY = r'\d-\d:17\.0\.0.+?\r\n'
ACTUAL_SWITCH_POSITION = r'\d-\d:96\.3\.10.+?\r\n'
VALVE_POSITION_GAS = r'\d-\d:24\.4\.0.+?\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'
ACTUAL_TRESHOLD_ELECTRICITY = r'^\d-\d:17\.0\.0.+?\r\n'
ACTUAL_SWITCH_POSITION = r'^\d-\d:96\.3\.10.+?\r\n'
VALVE_POSITION_GAS = r'^\d-\d:24\.4\.0.+?\r\n'
# TODO 17.0.0
# TODO 96.3.10
@@ -75,50 +82,64 @@ ELECTRICITY_DELIVERED_TARIFF_ALL = (
)
# International generalized additions
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_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-)
# International non generalized additions (country specific) / risk for necessary refactoring
BELGIUM_VERSION_INFORMATION = r'\d-\d:96\.1\.4.+?\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_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_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
BELGIUM_VERSION_INFORMATION = r'^\d-\d:96\.1\.4.+?\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_MAXIMUM_DEMAND_MONTH = r'^\d-\d:1\.6\.0.+?\r\n'
BELGIUM_MAXIMUM_DEMAND_13_MONTHS = r'^\d-\d:98\.1\.0.+?\r\n'
# 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'
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'
BELGIUM_MBUS2_DEVICE_TYPE = r'\d-2:24\.1\.0.+?\r\n'
BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER = r'\d-2:96\.1\.1.+?\r\n'
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'
BELGIUM_MBUS2_DEVICE_TYPE = r'^\d-2:24\.1\.0.+?\r\n'
BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER = r'^\d-2:96\.1\.1.+?\r\n'
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'
BELGIUM_MBUS3_DEVICE_TYPE = r'\d-3:24\.1\.0.+?\r\n'
BELGIUM_MBUS3_EQUIPMENT_IDENTIFIER = r'\d-3:96\.1\.1.+?\r\n'
BELGIUM_MBUS3_VALVE_POSITION = r'\d-3:24\.4\.0.+?\r\n'
BELGIUM_MBUS3_METER_READING1 = r'\d-3:24\.2\.1.+?\r\n'
BELGIUM_MBUS3_METER_READING2 = r'\d-3:24\.2\.3.+?\r\n'
BELGIUM_MBUS3_DEVICE_TYPE = r'^\d-3:24\.1\.0.+?\r\n'
BELGIUM_MBUS3_EQUIPMENT_IDENTIFIER = r'^\d-3:96\.1\.1.+?\r\n'
BELGIUM_MBUS3_VALVE_POSITION = r'^\d-3:24\.4\.0.+?\r\n'
BELGIUM_MBUS3_METER_READING1 = r'^\d-3:24\.2\.1.+?\r\n'
BELGIUM_MBUS3_METER_READING2 = r'^\d-3:24\.2\.3.+?\r\n'
BELGIUM_MBUS4_DEVICE_TYPE = r'\d-4:24\.1\.0.+?\r\n'
BELGIUM_MBUS4_EQUIPMENT_IDENTIFIER = r'\d-4:96\.1\.1.+?\r\n'
BELGIUM_MBUS4_VALVE_POSITION = r'\d-4:24\.4\.0.+?\r\n'
BELGIUM_MBUS4_METER_READING1 = r'\d-4:24\.2\.1.+?\r\n'
BELGIUM_MBUS4_METER_READING2 = r'\d-4:24\.2\.3.+?\r\n'
BELGIUM_MBUS4_DEVICE_TYPE = r'^\d-4:24\.1\.0.+?\r\n'
BELGIUM_MBUS4_EQUIPMENT_IDENTIFIER = r'^\d-4:96\.1\.1.+?\r\n'
BELGIUM_MBUS4_VALVE_POSITION = r'^\d-4:24\.4\.0.+?\r\n'
BELGIUM_MBUS4_METER_READING1 = r'^\d-4:24\.2\.1.+?\r\n'
BELGIUM_MBUS4_METER_READING2 = r'^\d-4:24\.2\.3.+?\r\n'
LUXEMBOURG_EQUIPMENT_IDENTIFIER = r'\d-\d:42\.0\.0.+?\r\n' # Logical device name
LUXEMBOURG_EQUIPMENT_IDENTIFIER = r'^\d-\d:42\.0\.0.+?\r\n' # Logical device name
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
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
# EON Hungary
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q1 = r'^\d-\d:5\.8\.0.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q2 = r'^\d-\d:6\.8\.0.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q3 = r'^\d-\d:7\.8\.0.+?\r\n'
EON_HU_ELECTRICITY_REACTIVE_TOTAL_Q4 = r'^\d-\d:8\.8\.0.+?\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'
EON_HU_INSTANTANEOUS_POWER_FACTOR_L1 = r'^\d-\d:33\.7\.0.+?\r\n'
EON_HU_INSTANTANEOUS_POWER_FACTOR_L2 = r'^\d-\d:53\.7\.0.+?\r\n'
EON_HU_INSTANTANEOUS_POWER_FACTOR_L3 = r'^\d-\d:73\.7\.0.+?\r\n'
EON_HU_FREQUENCY = r'^\d-\d:14\.7\.0.+?\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'
EON_HU_INSTANTANEOUS_REACTIVE_POWER_Q4 = r'^\d-\d:8\.7\.0.+?\r\n'
+35 -26
View File
@@ -5,8 +5,6 @@ import json
import pytz
from dsmr_parser import obis_name_mapping
class Telegram(dict):
"""
@@ -27,22 +25,21 @@ class Telegram(dict):
self._mbus_devices = []
super().__init__(*args, **kwargs)
def add(self, obis_reference, dsmr_object):
def add(self, obis_reference, dsmr_object, obis_name):
# 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)
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
if isinstance(dsmr_object, DSMRObject) and dsmr_object.is_mbus_reading:
self._add_mbus(obis_reference, dsmr_object)
self._add_mbus(obis_reference, dsmr_object, obis_name)
# Fill dict which is only used for backwards compatibility
if obis_reference not in self:
self[obis_reference] = dsmr_object
def _add_mbus(self, obis_reference, dsmr_object):
def _add_mbus(self, obis_reference, dsmr_object, obis_name):
"""
The given DsmrObject is assumed to be Mbus related and will be grouped into a MbusDevice.
Grouping is done by the DsmrObject channel ID.
@@ -55,7 +52,7 @@ class Telegram(dict):
mbus_device = MbusDevice(channel_id=channel_id)
self._mbus_devices.append(mbus_device)
mbus_device.add(obis_reference, dsmr_object)
mbus_device.add(obis_reference, dsmr_object, obis_name)
if not hasattr(self, 'MBUS_DEVICES'):
setattr(self, 'MBUS_DEVICES', self._mbus_devices)
@@ -143,22 +140,25 @@ class MBusObject(DSMRObject):
return self.values[1]['unit']
def __str__(self):
timestamp = self.datetime
if isinstance(timestamp, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat()
output = "{}\t[{}] at {}".format(
str(self.value),
str(self.unit),
str(self.datetime.astimezone().astimezone(pytz.utc).isoformat())
str(timestamp)
)
return output
def to_json(self):
timestamp = self.datetime
if isinstance(self.datetime, datetime.datetime):
timestamp = self.datetime.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(timestamp, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat()
value = self.value
if isinstance(self.value, datetime.datetime):
value = self.value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(self.value, Decimal):
value = float(self.value)
if isinstance(value, datetime.datetime):
value = value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(value, Decimal):
value = float(value)
output = {
'datetime': timestamp,
'value': value,
@@ -186,23 +186,33 @@ class MBusObjectPeak(DSMRObject):
return self.values[2]['unit']
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 {}"\
.format(str(self.value), str(self.unit), str(self.datetime.astimezone().astimezone(pytz.utc).isoformat()),
str(self.occurred.astimezone().astimezone(pytz.utc).isoformat()))
.format(str(value), str(self.unit), str(timestamp), str(timestamp_occurred))
return output
def to_json(self):
timestamp = self.datetime
if isinstance(self.datetime, datetime.datetime):
timestamp = self.datetime.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(timestamp, datetime.datetime):
timestamp = timestamp.astimezone().astimezone(pytz.utc).isoformat()
timestamp_occurred = self.occurred
if isinstance(self.occurred, datetime.datetime):
timestamp_occurred = self.occurred.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(timestamp_occurred, datetime.datetime):
timestamp_occurred = timestamp_occurred.astimezone().astimezone(pytz.utc).isoformat()
value = self.value
if isinstance(self.value, datetime.datetime):
value = self.value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(self.value, Decimal):
value = float(self.value)
if isinstance(value, datetime.datetime):
value = value.astimezone().astimezone(pytz.utc).isoformat()
if isinstance(value, Decimal):
value = float(value)
output = {
'datetime': timestamp,
'occurred': timestamp_occurred,
@@ -331,10 +341,9 @@ class MbusDevice:
self.channel_id = channel_id
self._item_names = []
def add(self, obis_reference, dsmr_object):
def add(self, obis_reference, dsmr_object, obis_name):
# Update name mapping used to get value by attribute. Example: telegram.P1_MESSAGE_HEADER
# Also keep track of the added names internally
obis_name = obis_name_mapping.EN[obis_reference]
setattr(self, obis_name, dsmr_object)
self._item_names.append(obis_name)
+21 -10
View File
@@ -29,11 +29,11 @@ class TelegramParser(object):
self.telegram_specification = telegram_specification
# Regexes are compiled once to improve performance
self.telegram_specification_regexes = {
signature: re.compile(signature, re.DOTALL)
for signature in self.telegram_specification['objects'].keys()
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=""): # noqa: C901
def parse(self, telegram_data, encryption_key="", authentication_key="", throw_ex=False): # noqa: C901
"""
Parse telegram from string to dict.
The telegram str type makes python 2.x integration easier.
@@ -84,20 +84,31 @@ class TelegramParser(object):
telegram = Telegram()
for signature, parser in self.telegram_specification['objects'].items():
pattern = self.telegram_specification_regexes[signature]
for object in self.telegram_specification['objects']:
pattern = self.telegram_specification_regexes[object["obis_reference"]]
matches = pattern.findall(telegram_data)
# Some signatures are optional and may not be present,
# so only parse lines that match
for match in matches:
try:
dsmr_object = parser.parse(match)
except Exception:
logger.error("ignore line with signature {}, because parsing failed.".format(signature),
exc_info=True)
dsmr_object = object["value_parser"].parse(match)
except ParseError:
logger.error(
"ignore line with signature {}, because parsing failed.".format(object["obis_reference"]),
exc_info=True
)
if throw_ex:
raise
except Exception as err:
logger.error("Unexpected {}: {}".format(type(err), err))
raise
else:
telegram.add(obis_reference=signature, dsmr_object=dsmr_object)
telegram.add(
obis_reference=object["obis_reference"],
dsmr_object=dsmr_object,
obis_name=object["value_name"]
)
return telegram
File diff suppressed because it is too large Load Diff
+1 -1
View File
@@ -7,7 +7,7 @@ setup(
author_email='mail@nldr.net',
license='MIT',
url='https://github.com/ndokter/dsmr_parser',
version='1.2.2',
version='1.3.1',
packages=find_packages(exclude=('test', 'test.*')),
install_requires=[
'pyserial>=3,<4',
+96 -2
View File
@@ -175,7 +175,7 @@ TELEGRAM_V5_TWO_MBUS = (
)
TELEGRAM_FLUVIUS_V171 = (
'/FLU5\253769484_A\r\n'
'/FLU5\\253769484_A\r\n'
'\r\n'
'0-0:96.1.4(50217)\r\n'
'0-0:96.1.1(3153414733313031303231363035)\r\n'
@@ -213,7 +213,49 @@ TELEGRAM_FLUVIUS_V171 = (
'0-2:24.1.0(007)\r\n'
'0-2:96.1.1(3853414731323334353637383930)\r\n'
'0-2:24.2.1(200512134558S)(00872.234*m3)\r\n'
'!911C\r\n'
'!3AD7\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
@@ -311,3 +353,55 @@ TELEGRAM_ISKRA_IE = (
'0-1:96.1.1()\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'
)
+18 -6
View File
@@ -12,19 +12,31 @@ class MbusDeviceTest(unittest.TestCase):
def setUp(self):
v5_objects = telegram_specifications.V5['objects']
device_type_parser = v5_objects[obis_references.DEVICE_TYPE]
device_type_parser = [
object["value_parser"]
for object in v5_objects
if object["obis_reference"] == obis_references.DEVICE_TYPE
][0]
device_type = device_type_parser.parse('0-2:24.1.0(003)\r\n')
equipment_parser = v5_objects[obis_references.EQUIPMENT_IDENTIFIER_GAS]
equipment_parser = [
object["value_parser"]
for object in v5_objects
if object["obis_reference"] == obis_references.EQUIPMENT_IDENTIFIER_GAS
][0]
equipment = equipment_parser.parse('0-2:96.1.0(4730303339303031393336393930363139)\r\n')
gas_reading_parser = v5_objects[obis_references.HOURLY_GAS_METER_READING]
gas_reading_parser = [
object["value_parser"]
for object in v5_objects
if object["obis_reference"] == obis_references.HOURLY_GAS_METER_READING
][0]
gas_reading = gas_reading_parser.parse('0-2:24.2.1(200426223001S)(00246.138*m3)\r\n')
mbus_device = MbusDevice(channel_id=1)
mbus_device.add(obis_references.DEVICE_TYPE, device_type)
mbus_device.add(obis_references.EQUIPMENT_IDENTIFIER_GAS, equipment)
mbus_device.add(obis_references.HOURLY_GAS_METER_READING, gas_reading)
mbus_device.add(obis_references.DEVICE_TYPE, device_type, "DEVICE_TYPE")
mbus_device.add(obis_references.EQUIPMENT_IDENTIFIER_GAS, equipment, "EQUIPMENT_IDENTIFIER_GAS")
mbus_device.add(obis_references.HOURLY_GAS_METER_READING, gas_reading, "HOURLY_GAS_METER_READING")
self.mbus_device = mbus_device
+4 -4
View File
@@ -4,7 +4,7 @@ import datetime
import pytz
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 MBusObject
from dsmr_parser.objects import ProfileGenericObject
@@ -314,8 +314,8 @@ class TelegramTest(unittest.TestCase):
self.item_names_tested.append(testitem_name)
# check if all items in telegram V4 specification are covered
V4_name_list = [obis_name_mapping.EN[signature] for signature, parser in
telegram_specifications.V4['objects'].items()]
V4_name_list = [object["value_name"] for object in
telegram_specifications.V4['objects']]
V4_name_set = set(V4_name_list)
item_names_tested_set = set(self.item_names_tested)
@@ -329,7 +329,7 @@ class TelegramTest(unittest.TestCase):
break
# Verify that the iterator works for at least one value
self.assertEqual(obis_name, obis_name_mapping.EN[obis_references.P1_MESSAGE_HEADER])
self.assertEqual(obis_name, "P1_MESSAGE_HEADER")
self.assertEqual(dsmr_object.value, '50')
def test_mbus_devices(self):
+301 -171
View File
@@ -1,16 +1,16 @@
from decimal import Decimal
import datetime
import json
import unittest
import pytz
from dsmr_parser import obis_references as obis
from dsmr_parser import telegram_specifications
from dsmr_parser.exceptions import InvalidChecksumError, ParseError
from dsmr_parser.objects import CosemObject, MBusObject, MBusObjectPeak
from dsmr_parser.parsers import TelegramParser
from test.example_telegrams import TELEGRAM_FLUVIUS_V171
from test.example_telegrams import TELEGRAM_FLUVIUS_V171, TELEGRAM_FLUVIUS_V171_ALT
class TelegramParserFluviusTest(unittest.TestCase):
@@ -18,254 +18,257 @@ class TelegramParserFluviusTest(unittest.TestCase):
def test_parse(self):
parser = TelegramParser(telegram_specifications.BELGIUM_FLUVIUS)
result = parser.parse(TELEGRAM_FLUVIUS_V171)
try:
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)
assert isinstance(result[obis.BELGIUM_VERSION_INFORMATION], CosemObject)
assert result[obis.BELGIUM_VERSION_INFORMATION].unit is None
assert isinstance(result[obis.BELGIUM_VERSION_INFORMATION].value, str)
assert result[obis.BELGIUM_VERSION_INFORMATION].value == '50217'
assert isinstance(result.BELGIUM_VERSION_INFORMATION, CosemObject)
assert result.BELGIUM_VERSION_INFORMATION.unit is None
assert isinstance(result.BELGIUM_VERSION_INFORMATION.value, str)
assert result.BELGIUM_VERSION_INFORMATION.value == '50217'
# EQUIPMENT_IDENTIFIER (0-0:96.1.1)
assert isinstance(result[obis.EQUIPMENT_IDENTIFIER], CosemObject)
assert result[obis.EQUIPMENT_IDENTIFIER].unit is None
assert isinstance(result[obis.EQUIPMENT_IDENTIFIER].value, str)
assert result[obis.EQUIPMENT_IDENTIFIER].value == '3153414733313031303231363035'
assert isinstance(result.BELGIUM_EQUIPMENT_IDENTIFIER, CosemObject)
assert result.BELGIUM_EQUIPMENT_IDENTIFIER.unit is None
assert isinstance(result.BELGIUM_EQUIPMENT_IDENTIFIER.value, str)
assert result.BELGIUM_EQUIPMENT_IDENTIFIER.value == '3153414733313031303231363035'
# P1_MESSAGE_TIMESTAMP (0-0:1.0.0)
assert isinstance(result[obis.P1_MESSAGE_TIMESTAMP], CosemObject)
assert result[obis.P1_MESSAGE_TIMESTAMP].unit is None
assert isinstance(result[obis.P1_MESSAGE_TIMESTAMP].value, datetime.datetime)
assert result[obis.P1_MESSAGE_TIMESTAMP].value == \
assert isinstance(result.P1_MESSAGE_TIMESTAMP, CosemObject)
assert result.P1_MESSAGE_TIMESTAMP.unit is None
assert isinstance(result.P1_MESSAGE_TIMESTAMP.value, datetime.datetime)
assert result.P1_MESSAGE_TIMESTAMP.value == \
pytz.timezone("Europe/Brussels").localize(datetime.datetime(2020, 5, 12, 13, 54, 9))
# ELECTRICITY_USED_TARIFF_1 (1-0:1.8.1)
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject)
assert result[obis.ELECTRICITY_USED_TARIFF_1].unit == 'kWh'
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1].value, Decimal)
assert result[obis.ELECTRICITY_USED_TARIFF_1].value == Decimal('0.034')
assert isinstance(result.ELECTRICITY_USED_TARIFF_1, CosemObject)
assert result.ELECTRICITY_USED_TARIFF_1.unit == 'kWh'
assert isinstance(result.ELECTRICITY_USED_TARIFF_1.value, Decimal)
assert result.ELECTRICITY_USED_TARIFF_1.value == Decimal('0.034')
# ELECTRICITY_USED_TARIFF_2 (1-0:1.8.2)
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_2], CosemObject)
assert result[obis.ELECTRICITY_USED_TARIFF_2].unit == 'kWh'
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_2].value, Decimal)
assert result[obis.ELECTRICITY_USED_TARIFF_2].value == Decimal('15.758')
assert isinstance(result.ELECTRICITY_USED_TARIFF_2, CosemObject)
assert result.ELECTRICITY_USED_TARIFF_2.unit == 'kWh'
assert isinstance(result.ELECTRICITY_USED_TARIFF_2.value, Decimal)
assert result.ELECTRICITY_USED_TARIFF_2.value == Decimal('15.758')
# ELECTRICITY_DELIVERED_TARIFF_1 (1-0:2.8.1)
assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_1], CosemObject)
assert result[obis.ELECTRICITY_DELIVERED_TARIFF_1].unit == 'kWh'
assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_1].value, Decimal)
assert result[obis.ELECTRICITY_DELIVERED_TARIFF_1].value == Decimal('0.000')
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_1, CosemObject)
assert result.ELECTRICITY_DELIVERED_TARIFF_1.unit == 'kWh'
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_1.value, Decimal)
assert result.ELECTRICITY_DELIVERED_TARIFF_1.value == Decimal('0.000')
# ELECTRICITY_DELIVERED_TARIFF_2 (1-0:2.8.2)
assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_2], CosemObject)
assert result[obis.ELECTRICITY_DELIVERED_TARIFF_2].unit == 'kWh'
assert isinstance(result[obis.ELECTRICITY_DELIVERED_TARIFF_2].value, Decimal)
assert result[obis.ELECTRICITY_DELIVERED_TARIFF_2].value == Decimal('0.011')
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_2, CosemObject)
assert result.ELECTRICITY_DELIVERED_TARIFF_2.unit == 'kWh'
assert isinstance(result.ELECTRICITY_DELIVERED_TARIFF_2.value, Decimal)
assert result.ELECTRICITY_DELIVERED_TARIFF_2.value == Decimal('0.011')
# ELECTRICITY_ACTIVE_TARIFF (0-0:96.14.0)
assert isinstance(result[obis.ELECTRICITY_ACTIVE_TARIFF], CosemObject)
assert result[obis.ELECTRICITY_ACTIVE_TARIFF].unit is None
assert isinstance(result[obis.ELECTRICITY_ACTIVE_TARIFF].value, str)
assert result[obis.ELECTRICITY_ACTIVE_TARIFF].value == '0001'
assert isinstance(result.ELECTRICITY_ACTIVE_TARIFF, CosemObject)
assert result.ELECTRICITY_ACTIVE_TARIFF.unit is None
assert isinstance(result.ELECTRICITY_ACTIVE_TARIFF.value, str)
assert result.ELECTRICITY_ACTIVE_TARIFF.value == '0001'
# BELGIUM_CURRENT_AVERAGE_DEMAND (1-0:1.4.0)
assert isinstance(result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND], CosemObject)
assert result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND].unit == 'kW'
assert isinstance(result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND].value, Decimal)
assert result[obis.BELGIUM_CURRENT_AVERAGE_DEMAND].value == Decimal('2.351')
assert isinstance(result.BELGIUM_CURRENT_AVERAGE_DEMAND, CosemObject)
assert result.BELGIUM_CURRENT_AVERAGE_DEMAND.unit == 'kW'
assert isinstance(result.BELGIUM_CURRENT_AVERAGE_DEMAND.value, Decimal)
assert result.BELGIUM_CURRENT_AVERAGE_DEMAND.value == Decimal('2.351')
# BELGIUM_MAXIMUM_DEMAND_MONTH (1-0:1.6.0)
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH], MBusObject)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].unit == 'kW'
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].value, Decimal)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].value == Decimal('2.589')
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].datetime, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_MONTH].datetime == \
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_MONTH, MBusObject)
assert result.BELGIUM_MAXIMUM_DEMAND_MONTH.unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_MONTH.value, Decimal)
assert result.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
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0], MBusObjectPeak)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].unit == 'kW'
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].value, Decimal)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].value == Decimal('3.695')
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].datetime, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].datetime == \
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0], MBusObjectPeak)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[0].value, Decimal)
assert result.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[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].occurred, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][0].occurred == \
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
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1], MBusObjectPeak)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].unit == 'kW'
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].value, Decimal)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].value == Decimal('5.980')
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].datetime, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].datetime == \
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1], MBusObjectPeak)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[1].value, Decimal)
assert result.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[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].occurred, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][1].occurred == \
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
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2], MBusObjectPeak)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].unit == 'kW'
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].value, Decimal)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].value == Decimal('4.318')
assert isinstance(result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].datetime, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].datetime == \
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2], MBusObjectPeak)
assert result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].unit == 'kW'
assert isinstance(result.BELGIUM_MAXIMUM_DEMAND_13_MONTHS[2].value, Decimal)
assert result.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[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].occurred, datetime.datetime)
assert result[obis.BELGIUM_MAXIMUM_DEMAND_13_MONTHS][2].occurred == \
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)
assert isinstance(result[obis.CURRENT_ELECTRICITY_USAGE], CosemObject)
assert result[obis.CURRENT_ELECTRICITY_USAGE].unit == 'kW'
assert isinstance(result[obis.CURRENT_ELECTRICITY_USAGE].value, Decimal)
assert result[obis.CURRENT_ELECTRICITY_USAGE].value == Decimal('0.000')
assert isinstance(result.CURRENT_ELECTRICITY_USAGE, CosemObject)
assert result.CURRENT_ELECTRICITY_USAGE.unit == 'kW'
assert isinstance(result.CURRENT_ELECTRICITY_USAGE.value, Decimal)
assert result.CURRENT_ELECTRICITY_USAGE.value == Decimal('0.000')
# CURRENT_ELECTRICITY_DELIVERY (1-0:2.7.0)
assert isinstance(result[obis.CURRENT_ELECTRICITY_DELIVERY], CosemObject)
assert result[obis.CURRENT_ELECTRICITY_DELIVERY].unit == 'kW'
assert isinstance(result[obis.CURRENT_ELECTRICITY_DELIVERY].value, Decimal)
assert result[obis.CURRENT_ELECTRICITY_DELIVERY].value == Decimal('0.000')
assert isinstance(result.CURRENT_ELECTRICITY_DELIVERY, CosemObject)
assert result.CURRENT_ELECTRICITY_DELIVERY.unit == 'kW'
assert isinstance(result.CURRENT_ELECTRICITY_DELIVERY.value, Decimal)
assert result.CURRENT_ELECTRICITY_DELIVERY.value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE (1-0:21.7.0)
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE], CosemObject)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE].unit == 'kW'
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE].value, Decimal)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE, CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_POSITIVE.value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE (1-0:41.7.0)
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE], CosemObject)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE].unit == 'kW'
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE].value, Decimal)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE, CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE.unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE.value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_POSITIVE.value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE (1-0:61.7.0)
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE], CosemObject)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE].unit == 'kW'
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE].value, Decimal)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE, CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE.unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE.value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_POSITIVE.value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE (1-0:22.7.0)
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE], CosemObject)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE].unit == 'kW'
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE].value, Decimal)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE, CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE.unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE.value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L1_NEGATIVE.value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE (1-0:42.7.0)
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE], CosemObject)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE].unit == 'kW'
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE].value, Decimal)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE, CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE.unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE.value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L2_NEGATIVE.value == Decimal('0.000')
# INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE (1-0:62.7.0)
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE], CosemObject)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE].unit == 'kW'
assert isinstance(result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE].value, Decimal)
assert result[obis.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE, CosemObject)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.unit == 'kW'
assert isinstance(result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.value, Decimal)
assert result.INSTANTANEOUS_ACTIVE_POWER_L3_NEGATIVE.value == Decimal('0.000')
# INSTANTANEOUS_VOLTAGE_L1 (1-0:32.7.0)
assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L1], CosemObject)
assert result[obis.INSTANTANEOUS_VOLTAGE_L1].unit == 'V'
assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L1].value, Decimal)
assert result[obis.INSTANTANEOUS_VOLTAGE_L1].value == Decimal('234.7')
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L1, CosemObject)
assert result.INSTANTANEOUS_VOLTAGE_L1.unit == 'V'
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L1.value, Decimal)
assert result.INSTANTANEOUS_VOLTAGE_L1.value == Decimal('234.7')
# INSTANTANEOUS_VOLTAGE_L2 (1-0:52.7.0)
assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L2], CosemObject)
assert result[obis.INSTANTANEOUS_VOLTAGE_L2].unit == 'V'
assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L2].value, Decimal)
assert result[obis.INSTANTANEOUS_VOLTAGE_L2].value == Decimal('234.7')
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L2, CosemObject)
assert result.INSTANTANEOUS_VOLTAGE_L2.unit == 'V'
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L2.value, Decimal)
assert result.INSTANTANEOUS_VOLTAGE_L2.value == Decimal('234.7')
# INSTANTANEOUS_VOLTAGE_L3 (1-0:72.7.0)
assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L3], CosemObject)
assert result[obis.INSTANTANEOUS_VOLTAGE_L3].unit == 'V'
assert isinstance(result[obis.INSTANTANEOUS_VOLTAGE_L3].value, Decimal)
assert result[obis.INSTANTANEOUS_VOLTAGE_L3].value == Decimal('234.7')
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L3, CosemObject)
assert result.INSTANTANEOUS_VOLTAGE_L3.unit == 'V'
assert isinstance(result.INSTANTANEOUS_VOLTAGE_L3.value, Decimal)
assert result.INSTANTANEOUS_VOLTAGE_L3.value == Decimal('234.7')
# INSTANTANEOUS_CURRENT_L1 (1-0:31.7.0)
assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L1], CosemObject)
assert result[obis.INSTANTANEOUS_CURRENT_L1].unit == 'A'
assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L1].value, Decimal)
assert result[obis.INSTANTANEOUS_CURRENT_L1].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_CURRENT_L1, CosemObject)
assert result.INSTANTANEOUS_CURRENT_L1.unit == 'A'
assert isinstance(result.INSTANTANEOUS_CURRENT_L1.value, Decimal)
assert result.INSTANTANEOUS_CURRENT_L1.value == Decimal('0.000')
# INSTANTANEOUS_CURRENT_L2 (1-0:51.7.0)
assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L2], CosemObject)
assert result[obis.INSTANTANEOUS_CURRENT_L2].unit == 'A'
assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L2].value, Decimal)
assert result[obis.INSTANTANEOUS_CURRENT_L2].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_CURRENT_L2, CosemObject)
assert result.INSTANTANEOUS_CURRENT_L2.unit == 'A'
assert isinstance(result.INSTANTANEOUS_CURRENT_L2.value, Decimal)
assert result.INSTANTANEOUS_CURRENT_L2.value == Decimal('0.000')
# INSTANTANEOUS_CURRENT_L3 (1-0:71.7.0)
assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L3], CosemObject)
assert result[obis.INSTANTANEOUS_CURRENT_L3].unit == 'A'
assert isinstance(result[obis.INSTANTANEOUS_CURRENT_L3].value, Decimal)
assert result[obis.INSTANTANEOUS_CURRENT_L3].value == Decimal('0.000')
assert isinstance(result.INSTANTANEOUS_CURRENT_L3, CosemObject)
assert result.INSTANTANEOUS_CURRENT_L3.unit == 'A'
assert isinstance(result.INSTANTANEOUS_CURRENT_L3.value, Decimal)
assert result.INSTANTANEOUS_CURRENT_L3.value == Decimal('0.000')
# ACTUAL_SWITCH_POSITION (0-0:96.3.10)
assert isinstance(result[obis.ACTUAL_SWITCH_POSITION], CosemObject)
assert result[obis.ACTUAL_SWITCH_POSITION].unit is None
assert isinstance(result[obis.ACTUAL_SWITCH_POSITION].value, int)
assert result[obis.ACTUAL_SWITCH_POSITION].value == 1
assert isinstance(result.ACTUAL_SWITCH_POSITION, CosemObject)
assert result.ACTUAL_SWITCH_POSITION.unit is None
assert isinstance(result.ACTUAL_SWITCH_POSITION.value, int)
assert result.ACTUAL_SWITCH_POSITION.value == 1
# BELGIUM_MAX_POWER_PER_PHASE (0-0:17.0.0)
assert isinstance(result[obis.BELGIUM_MAX_POWER_PER_PHASE], CosemObject)
assert result[obis.BELGIUM_MAX_POWER_PER_PHASE].unit == 'kW'
assert isinstance(result[obis.BELGIUM_MAX_POWER_PER_PHASE].value, Decimal)
assert result[obis.BELGIUM_MAX_POWER_PER_PHASE].value == Decimal('999.9')
# ACTUAL_TRESHOLD_ELECTRICITY (0-0:17.0.0)
assert isinstance(result.ACTUAL_TRESHOLD_ELECTRICITY, CosemObject)
assert result.ACTUAL_TRESHOLD_ELECTRICITY.unit == 'kW'
assert isinstance(result.ACTUAL_TRESHOLD_ELECTRICITY.value, Decimal)
assert result.ACTUAL_TRESHOLD_ELECTRICITY.value == Decimal('999.9')
# BELGIUM_MAX_POWER_PER_PHASE (1-0:31.4.0)
assert isinstance(result[obis.BELGIUM_MAX_CURRENT_PER_PHASE], CosemObject)
assert result[obis.BELGIUM_MAX_CURRENT_PER_PHASE].unit == 'A'
assert isinstance(result[obis.BELGIUM_MAX_CURRENT_PER_PHASE].value, Decimal)
assert result[obis.BELGIUM_MAX_CURRENT_PER_PHASE].value == Decimal('999')
# FUSE_THRESHOLD_L1 (1-0:31.4.0)
assert isinstance(result.FUSE_THRESHOLD_L1, CosemObject)
assert result.FUSE_THRESHOLD_L1.unit == 'A'
assert isinstance(result.FUSE_THRESHOLD_L1.value, Decimal)
assert result.FUSE_THRESHOLD_L1.value == Decimal('999')
# TEXT_MESSAGE (0-0:96.13.0)
assert isinstance(result[obis.TEXT_MESSAGE], CosemObject)
assert result[obis.TEXT_MESSAGE].unit is None
assert result[obis.TEXT_MESSAGE].value is None
assert isinstance(result.TEXT_MESSAGE, CosemObject)
assert result.TEXT_MESSAGE.unit is None
assert result.TEXT_MESSAGE.value is None
# BELGIUM_MBUS1_DEVICE_TYPE (0-1:24.1.0)
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
assert isinstance(result.BELGIUM_MBUS1_DEVICE_TYPE, CosemObject)
assert result.BELGIUM_MBUS1_DEVICE_TYPE.unit is None
assert isinstance(result.BELGIUM_MBUS1_DEVICE_TYPE.value, int)
assert result.BELGIUM_MBUS1_DEVICE_TYPE.value == 3
# BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER (0-1:96.1.1)
assert isinstance(result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER], CosemObject)
assert result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER].unit is None
assert isinstance(result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER].value, str)
assert result[obis.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER].value == '37464C4F32313139303333373333'
assert isinstance(result.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER, CosemObject)
assert result.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER.unit is None
assert isinstance(result.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER.value, str)
assert result.BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER.value == '37464C4F32313139303333373333'
# BELGIUM_MBUS1_VALVE_POSITION (0-1:24.4.0)
assert isinstance(result[obis.BELGIUM_MBUS1_VALVE_POSITION], CosemObject)
assert result[obis.BELGIUM_MBUS1_VALVE_POSITION].unit is None
assert isinstance(result[obis.BELGIUM_MBUS1_VALVE_POSITION].value, int)
assert result[obis.BELGIUM_MBUS1_VALVE_POSITION].value == 1
assert isinstance(result.BELGIUM_MBUS1_VALVE_POSITION, CosemObject)
assert result.BELGIUM_MBUS1_VALVE_POSITION.unit is None
assert isinstance(result.BELGIUM_MBUS1_VALVE_POSITION.value, int)
assert result.BELGIUM_MBUS1_VALVE_POSITION.value == 1
# BELGIUM_MBUS1_METER_READING2 (0-1:24.2.3)
assert isinstance(result[obis.BELGIUM_MBUS1_METER_READING2], MBusObject)
assert result[obis.BELGIUM_MBUS1_METER_READING2].unit == 'm3'
assert isinstance(result[obis.BELGIUM_MBUS1_METER_READING2].value, Decimal)
assert result[obis.BELGIUM_MBUS1_METER_READING2].value == Decimal('112.384')
assert isinstance(result.BELGIUM_MBUS1_METER_READING2, MBusObject)
assert result.BELGIUM_MBUS1_METER_READING2.unit == 'm3'
assert isinstance(result.BELGIUM_MBUS1_METER_READING2.value, Decimal)
assert result.BELGIUM_MBUS1_METER_READING2.value == Decimal('112.384')
# BELGIUM_MBUS2_DEVICE_TYPE (0-2:24.1.0)
assert isinstance(result[obis.BELGIUM_MBUS2_DEVICE_TYPE], CosemObject)
assert result[obis.BELGIUM_MBUS2_DEVICE_TYPE].unit is None
assert isinstance(result[obis.BELGIUM_MBUS2_DEVICE_TYPE].value, int)
assert result[obis.BELGIUM_MBUS2_DEVICE_TYPE].value == 7
assert isinstance(result.BELGIUM_MBUS2_DEVICE_TYPE, CosemObject)
assert result.BELGIUM_MBUS2_DEVICE_TYPE.unit is None
assert isinstance(result.BELGIUM_MBUS2_DEVICE_TYPE.value, int)
assert result.BELGIUM_MBUS2_DEVICE_TYPE.value == 7
# BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER (0-2:96.1.1)
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'
assert isinstance(result.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER, CosemObject)
assert result.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER.unit is None
assert isinstance(result.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER.value, str)
assert result.BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER.value == '3853414731323334353637383930'
# BELGIUM_MBUS2_METER_READING1 (0-1:24.2.1)
assert isinstance(result[obis.BELGIUM_MBUS2_METER_READING1], MBusObject)
assert result[obis.BELGIUM_MBUS2_METER_READING1].unit == 'm3'
assert isinstance(result[obis.BELGIUM_MBUS2_METER_READING1].value, Decimal)
assert result[obis.BELGIUM_MBUS2_METER_READING1].value == Decimal('872.234')
assert isinstance(result.BELGIUM_MBUS2_METER_READING1, MBusObject)
assert result.BELGIUM_MBUS2_METER_READING1.unit == 'm3'
assert isinstance(result.BELGIUM_MBUS2_METER_READING1.value, Decimal)
assert result.BELGIUM_MBUS2_METER_READING1.value == Decimal('872.234')
def test_checksum_valid(self):
# No exception is raised.
@@ -284,6 +287,133 @@ class TelegramParserFluviusTest(unittest.TestCase):
def test_checksum_missing(self):
# Remove the checksum value causing a ParseError.
corrupted_telegram = TELEGRAM_FLUVIUS_V171.replace('!911C\r\n', '')
corrupted_telegram = TELEGRAM_FLUVIUS_V171.replace('!3AD7\r\n', '')
with self.assertRaises(ParseError):
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.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},
'BELGIUM_MBUS1_DEVICE_TYPE': {'value': 3, 'unit': None},
'MBUS_DEVICES': [{'BELGIUM_MBUS1_DEVICE_TYPE': {'value': 3, 'unit': None},
'BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER': {'value': '37464C4F32313233303838303237',
'unit': None},
'BELGIUM_MBUS1_VALVE_POSITION': {'value': 1, 'unit': None},
'BELGIUM_MBUS1_METER_READING2': {'datetime': '2023-11-02T11:10:02+00:00',
'value': 92.287, 'unit': 'm3'},
'CHANNEL_ID': 1},
{'BELGIUM_MBUS2_DEVICE_TYPE': {'value': 7, 'unit': None},
'BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER': {'value': '3853455430303030393631313733',
'unit': None},
'BELGIUM_MBUS2_METER_READING1': {'datetime': '2023-11-02T11:15:32+00:00',
'value': 8.579, 'unit': 'm3'},
'CHANNEL_ID': 2}],
'BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER': {'value': '37464C4F32313233303838303237', 'unit': None},
'BELGIUM_MBUS1_VALVE_POSITION': {'value': 1, 'unit': None},
'BELGIUM_MBUS1_METER_READING2': {'datetime': '2023-11-02T11:10:02+00:00', 'value': 92.287, 'unit': 'm3'},
'BELGIUM_MBUS2_DEVICE_TYPE': {'value': 7, 'unit': None},
'BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER': {'value': '3853455430303030393631313733', 'unit': None},
'BELGIUM_MBUS2_METER_READING1': {'datetime': '2023-11-02T11:15:32+00:00', 'value': 8.579, 'unit': 'm3'}}
)
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'
'BELGIUM_MBUS1_DEVICE_TYPE: 3 [None]\n'
'MBUS DEVICE (channel 1)\n'
' BELGIUM_MBUS1_DEVICE_TYPE: 3 [None]\n'
' BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER: 37464C4F32313233303838303237 [None]\n'
' BELGIUM_MBUS1_VALVE_POSITION: 1 [None]\n'
' BELGIUM_MBUS1_METER_READING2: 92.287 [m3] at 2023-11-02T11:10:02+00:00\n'
'MBUS DEVICE (channel 2)\n'
' BELGIUM_MBUS2_DEVICE_TYPE: 7 [None]\n'
' BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER: 3853455430303030393631313733 [None]\n'
' BELGIUM_MBUS2_METER_READING1: 8.579 [m3] at 2023-11-02T11:15:32+00:00\n'
'BELGIUM_MBUS1_EQUIPMENT_IDENTIFIER: 37464C4F32313233303838303237 [None]\n'
'BELGIUM_MBUS1_VALVE_POSITION: 1 [None]\n'
'BELGIUM_MBUS1_METER_READING2: 92.287 [m3] at 2023-11-02T11:10:02+00:00\n'
'BELGIUM_MBUS2_DEVICE_TYPE: 7 [None]\n'
'BELGIUM_MBUS2_EQUIPMENT_IDENTIFIER: 3853455430303030393631313733 [None]\n'
'BELGIUM_MBUS2_METER_READING1: 8.579 [m3] at 2023-11-02T11:15:32+00:00\n'
)
)
+4 -1
View File
@@ -15,7 +15,10 @@ class TelegramParserIskraIETest(unittest.TestCase):
def test_parse(self):
parser = TelegramParser(telegram_specifications.ISKRA_IE)
result = parser.parse(TELEGRAM_ISKRA_IE)
try:
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)
assert isinstance(result[obis.EQUIPMENT_IDENTIFIER_GAS], CosemObject)
+4 -1
View File
@@ -14,7 +14,10 @@ class TelegramParserV2_2Test(unittest.TestCase):
def test_parse(self):
parser = TelegramParser(telegram_specifications.V2_2)
result = parser.parse(TELEGRAM_V2_2)
try:
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)
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject)
+4 -1
View File
@@ -14,7 +14,10 @@ class TelegramParserV3Test(unittest.TestCase):
def test_parse(self):
parser = TelegramParser(telegram_specifications.V3)
result = parser.parse(TELEGRAM_V3)
try:
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)
assert isinstance(result[obis.ELECTRICITY_USED_TARIFF_1], CosemObject)
+4 -1
View File
@@ -17,7 +17,10 @@ class TelegramParserV4_2Test(unittest.TestCase):
def test_parse(self):
parser = TelegramParser(telegram_specifications.V4)
result = parser.parse(TELEGRAM_V4_2)
try:
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)
assert isinstance(result[obis.P1_MESSAGE_HEADER], CosemObject)
+5 -2
View File
@@ -17,8 +17,11 @@ class TelegramParserV5Test(unittest.TestCase):
def test_parse(self):
parser = TelegramParser(telegram_specifications.V5)
telegram = parser.parse(TELEGRAM_V5)
try:
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)
assert isinstance(telegram.P1_MESSAGE_HEADER, CosemObject)
assert telegram.P1_MESSAGE_HEADER.unit is None
+308
View File
@@ -0,0 +1,308 @@
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
self.protocol.keep_alive()
assert mock_transport.close.called_once()
mock_transport.close.assert_called_once()
self.protocol.connection_lost(None)
+1
View File
@@ -6,6 +6,7 @@ deps=
pytest-asyncio
pytest-mock
dlms_cosem
setuptools
commands=
py.test --cov=dsmr_parser test {posargs}
pylama dsmr_parser test