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58 Commits

Author SHA1 Message Date
dependabot[bot]
976eaed9ea Bump aiohttp from 3.10.5 to 3.10.11 in /app (#209)
* Bump aiohttp from 3.10.5 to 3.10.11 in /app

Bumps [aiohttp](https://github.com/aio-libs/aiohttp) from 3.10.5 to 3.10.11.
- [Release notes](https://github.com/aio-libs/aiohttp/releases)
- [Changelog](https://github.com/aio-libs/aiohttp/blob/master/CHANGES.rst)
- [Commits](https://github.com/aio-libs/aiohttp/compare/v3.10.5...v3.10.11)

---
updated-dependencies:
- dependency-name: aiohttp
  dependency-type: direct:production
...

Signed-off-by: dependabot[bot] <support@github.com>

* bump sonarcloud-github-action to v3.1.0

* prepare version 0.11.1

---------

Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
Co-authored-by: Stefan Allius
2024-11-20 21:08:47 +01:00
Stefan Allius
6da5d2cef6 define __slots__ for class ByteFifo (#202)
* define __slots__ for class ByteFifo

* disable set-timezone action

* set set-timezone to UTC

* try MathRobin/timezone-action@v1.1

* set TZ to "Europe/Berlin"

* define __slots__
2024-10-15 22:16:22 +02:00
Stefan Allius
6b9c13ddfe Merge branch 'dev-0.11' of https://github.com/s-allius/tsun-gen3-proxy into main 2024-10-15 20:30:04 +02:00
Stefan Allius
a6ffcc0949 update version 0.11 2024-10-13 18:24:00 +02:00
Stefan Allius
c956c13d13 Dev 0.11 (#200)
* Code Cleanup (#158)


* print coverage report

* create sonar-project property file

* install all py dependencies in one step

* code cleanup

* reduce cognitive complexity

* do not build on *.yml changes

* optimise versionstring handling (#159)

- Reading the version string from the image updates
  it even if the image is re-pulled without re-deployment

* fix linter warning

* exclude *.pyi filese

* ignore some rules for tests

* cleanup (#160)

* Sonar qube 3 (#163)

fix SonarQube warnings in modbus.py

* Sonar qube 3 (#164)


* fix SonarQube warnings

* Sonar qube 3 (#165)

* cleanup

* Add support for TSUN Titan inverter
Fixes #161


* fix SonarQube warnings

* fix error

* rename field "config"

* SonarQube reads flake8 output

* don't stop on flake8 errors

* flake8 scan only app/src for SonarQube

* update flake8 run

* ignore flake8 C901

* cleanup

* fix linter warnings

* ignore changed *.yml files

* read sensor list solarman data packets

* catch 'No route to' error and log only in debug mode

* fix unit tests

* add sensor_list configuration

* adapt unit tests

* fix SonarQube warnings

* Sonar qube 3 (#166)

* add unittests for mqtt.py

* add mock

* move test requirements into a file

* fix unit tests

* fix formating

* initial version

* fix SonarQube warning

* Sonar qube 4 (#169)

* add unit test for inverter.py

* fix SonarQube warning

* Sonar qube 5 (#170)

* fix SonarLints warnings

* use random IP adresses for unit tests

* Docker: The description ist missing (#171)

Fixes #167

* S allius/issue167 (#172)

* cleanup

* Sonar qube 6 (#174)

* test class ModbusConn

* Sonar qube 3 (#178)

* add more unit tests

* GEN3: don't crash on overwritten msg in the receive buffer

* improve test coverage und reduce test delays

* reduce cognitive complexity

* fix merge

* fix merge conflikt

* fix merge conflict

* S allius/issue182 (#183)

* GEN3: After inverter firmware update the 'Unknown Msg Type' increases continuously
Fixes #182

* add support for Controller serial no and MAC

* test hardening

* GEN3: add support for new messages of version 3 firmwares

* bump libraries to latest versions

- bump aiomqtt to version 2.3.0
- bump aiohttp to version 3.10.5

* improve test coverage

* reduce cognective complexity

* fix target preview

* remove dubbled fixtures

* increase test coverage

* Update README.md (#185)

update badges

* S allius/issue186 (#187)

* Parse more values in Server Mode
Fixes #186

* read OUTPUT_COEFFICIENT and MAC_ADDR in SrvMode

* fix unit test

* increase test coverage

* S allius/issue186 (#188)

* increase test coverage

* update changelog

* add dokumentation

* change default config

* Update README.md (#189)

Config file is now foldable

* GEN3: Invalid Contact Info Msg (#192)

Fixes #191

* Refactoring async stream (#194)

* GEN3: Invalid Contact Info Msg
Fixes #191

* introduce ifc with FIFOs

* add object factory

* use AsyncIfc class with FIFO

* declare more methods as classmethods

* - refactoring

- remove _forward_buffer
- make async_write private

* remove _forward_buffer

* refactoring

* avoid mqtt handling for invalid serial numbers

* add two more callbacks

* FIX update_header_cb handling

* split AsyncStream in two classes

* split ConnectionG3(P) in server and client class

* update class diagramm

* refactor server creation

* remove duplicated imports

* reduce code duplication

* move StremPtr instances into Inverter class

* resolution of connection classes

- remove ConnectionG3Client
- remove ConnectionG3Server
- remove ConnectionG3PClient
- remove ConnectionG3PServer

* fix server connections

* fix client loop closing

* don't overwrite self.remote in constructor

* update class diagramm

* fixes

- fixes null pointer accesses
- initalize AsyncStreamClient with proper
  StreamPtr instance

* add close callback

* refactor close handling

* remove connection classes

* move more code into InverterBase class

* remove test_inverter_base.py

* add abstract inverter interface class

* initial commit

* fix sonar qube warnings

* rename class Inverter into Proxy

* fix typo

* move class InverterIfc into a separate file

* add more testcases

* use ProtocolIfc class

* add unit tests for AsyncStream class

* icrease test coverage

* reduce cognitive complexity

* increase test coverage

* increase tes coverage

* simplify heartbeat handler

* remove obsolete tx_get method

* add more unittests

* update changelog

* remove __del__ method for proper gc runs

* check releasing of ModbusConn instances

* call garbage collector to release unreachable objs

* decrease ref counter after the with block

* S allius/issue196 (#198)

* fix healthcheck

- on infrastructure with IPv6 support localhost
  might be resolved to an IPv6 adress. Since the
  proxy only support IPv4 for now, we replace
  localhost by 127.0.0.1, to fix this

* merge from main
2024-10-13 18:12:10 +02:00
Stefan Allius
85fe7261d5 Merge branch 'main' into dev-0.11 2024-10-13 18:07:38 +02:00
Stefan Allius
d4b618742c merge from main 2024-10-13 17:31:55 +02:00
Stefan Allius
719c6f703a S allius/issue196 (#198)
* fix healthcheck

- on infrastructure with IPv6 support localhost
  might be resolved to an IPv6 adress. Since the
  proxy only support IPv4 for now, we replace
  localhost by 127.0.0.1, to fix this
2024-10-13 17:13:07 +02:00
Stefan Allius
62ea2a9e6f Refactoring async stream (#194)
* GEN3: Invalid Contact Info Msg
Fixes #191

* introduce ifc with FIFOs

* add object factory

* use AsyncIfc class with FIFO

* declare more methods as classmethods

* - refactoring

- remove _forward_buffer
- make async_write private

* remove _forward_buffer

* refactoring

* avoid mqtt handling for invalid serial numbers

* add two more callbacks

* FIX update_header_cb handling

* split AsyncStream in two classes

* split ConnectionG3(P) in server and client class

* update class diagramm

* refactor server creation

* remove duplicated imports

* reduce code duplication

* move StremPtr instances into Inverter class

* resolution of connection classes

- remove ConnectionG3Client
- remove ConnectionG3Server
- remove ConnectionG3PClient
- remove ConnectionG3PServer

* fix server connections

* fix client loop closing

* don't overwrite self.remote in constructor

* update class diagramm

* fixes

- fixes null pointer accesses
- initalize AsyncStreamClient with proper
  StreamPtr instance

* add close callback

* refactor close handling

* remove connection classes

* move more code into InverterBase class

* remove test_inverter_base.py

* add abstract inverter interface class

* initial commit

* fix sonar qube warnings

* rename class Inverter into Proxy

* fix typo

* move class InverterIfc into a separate file

* add more testcases

* use ProtocolIfc class

* add unit tests for AsyncStream class

* icrease test coverage

* reduce cognitive complexity

* increase test coverage

* increase tes coverage

* simplify heartbeat handler

* remove obsolete tx_get method

* add more unittests

* update changelog

* remove __del__ method for proper gc runs

* check releasing of ModbusConn instances

* call garbage collector to release unreachable objs

* decrease ref counter after the with block
2024-10-13 16:07:01 +02:00
Stefan Allius
166a856705 GEN3: Invalid Contact Info Msg (#192)
Fixes #191
2024-09-19 19:17:22 +02:00
Stefan Allius
bfea38d9da Dev 0.11 (#190)
* Code Cleanup (#158)


* print coverage report

* create sonar-project property file

* install all py dependencies in one step

* code cleanup

* reduce cognitive complexity

* do not build on *.yml changes

* optimise versionstring handling (#159)

- Reading the version string from the image updates
  it even if the image is re-pulled without re-deployment

* fix linter warning

* exclude *.pyi filese

* ignore some rules for tests

* cleanup (#160)

* Sonar qube 3 (#163)

fix SonarQube warnings in modbus.py

* Sonar qube 3 (#164)


* fix SonarQube warnings

* Sonar qube 3 (#165)

* cleanup

* Add support for TSUN Titan inverter
Fixes #161


* fix SonarQube warnings

* fix error

* rename field "config"

* SonarQube reads flake8 output

* don't stop on flake8 errors

* flake8 scan only app/src for SonarQube

* update flake8 run

* ignore flake8 C901

* cleanup

* fix linter warnings

* ignore changed *.yml files

* read sensor list solarman data packets

* catch 'No route to' error and log only in debug mode

* fix unit tests

* add sensor_list configuration

* adapt unit tests

* fix SonarQube warnings

* Sonar qube 3 (#166)

* add unittests for mqtt.py

* add mock

* move test requirements into a file

* fix unit tests

* fix formating

* initial version

* fix SonarQube warning

* Sonar qube 4 (#169)

* add unit test for inverter.py

* fix SonarQube warning

* Sonar qube 5 (#170)

* fix SonarLints warnings

* use random IP adresses for unit tests

* Docker: The description ist missing (#171)

Fixes #167

* S allius/issue167 (#172)

* cleanup

* Sonar qube 6 (#174)

* test class ModbusConn

* Sonar qube 3 (#178)

* add more unit tests

* GEN3: don't crash on overwritten msg in the receive buffer

* improve test coverage und reduce test delays

* reduce cognitive complexity

* fix merge

* fix merge conflikt

* fix merge conflict

* S allius/issue182 (#183)

* GEN3: After inverter firmware update the 'Unknown Msg Type' increases continuously
Fixes #182

* add support for Controller serial no and MAC

* test hardening

* GEN3: add support for new messages of version 3 firmwares

* bump libraries to latest versions

- bump aiomqtt to version 2.3.0
- bump aiohttp to version 3.10.5

* improve test coverage

* reduce cognective complexity

* fix target preview

* remove dubbled fixtures

* increase test coverage

* Update README.md (#185)

update badges

* S allius/issue186 (#187)

* Parse more values in Server Mode
Fixes #186

* read OUTPUT_COEFFICIENT and MAC_ADDR in SrvMode

* fix unit test

* increase test coverage

* S allius/issue186 (#188)

* increase test coverage

* update changelog

* add dokumentation

* change default config

* Update README.md (#189)

Config file is now foldable
2024-09-16 00:45:36 +02:00
Stefan Allius
d5ec47fd1e Merge branch 'main' of https://github.com/s-allius/tsun-gen3-proxy into dev-0.11 2024-09-16 00:37:39 +02:00
Stefan Allius
828f26cf24 Update README.md (#189)
Config file is now foldable
2024-09-16 00:17:43 +02:00
Stefan Allius
0b3d84ff36 change default config 2024-09-16 00:12:30 +02:00
Stefan Allius
5642c912a8 add dokumentation 2024-09-15 15:17:45 +02:00
Stefan Allius
614acbf32d update changelog 2024-09-15 01:18:36 +02:00
Stefan Allius
57525ca519 S allius/issue186 (#188)
* increase test coverage
2024-09-15 01:02:49 +02:00
Stefan Allius
5ef68280b1 S allius/issue186 (#187)
* Parse more values in Server Mode
Fixes #186

* read OUTPUT_COEFFICIENT and MAC_ADDR in SrvMode

* fix unit test

* increase test coverage
2024-09-14 19:49:29 +02:00
Stefan Allius
e12c78212f Update README.md (#185)
update badges
2024-09-14 08:40:53 +02:00
Stefan Allius
2ab35a8257 increase test coverage 2024-09-07 18:04:28 +02:00
Stefan Allius
865216b8d9 remove dubbled fixtures 2024-09-07 18:03:50 +02:00
Stefan Allius
5d5d7c218f fix target preview 2024-09-07 13:49:45 +02:00
Stefan Allius
be4c6ac77f S allius/issue182 (#183)
* GEN3: After inverter firmware update the 'Unknown Msg Type' increases continuously
Fixes #182

* add support for Controller serial no and MAC

* test hardening

* GEN3: add support for new messages of version 3 firmwares

* bump libraries to latest versions

- bump aiomqtt to version 2.3.0
- bump aiohttp to version 3.10.5

* improve test coverage

* reduce cognective complexity
2024-09-07 11:45:16 +02:00
Stefan Allius
a9dc7e6847 Dev 0.11 (#181)
* Sonar qube 6 (#174)

* test class ModbusConn

* Sonar qube 3 (#178)

* add more unit tests

* GEN3: don't crash on overwritten msg in the receive buffer

* improve test coverage und reduce test delays

* reduce cognitive complexity
2024-09-03 18:58:24 +02:00
Stefan Allius
270732f1d0 fix merge conflict 2024-09-03 18:54:49 +02:00
Stefan Allius
7b4fabdc25 fix merge conflikt 2024-09-03 18:48:21 +02:00
Stefan Allius
2351ec314a fix merge 2024-09-03 18:42:48 +02:00
Stefan Allius
604d30c711 Merge branch 'main' of https://github.com/s-allius/tsun-gen3-proxy into dev-0.11 2024-09-03 18:39:27 +02:00
Stefan Allius
ab5256659b reduce cognitive complexity 2024-09-03 18:32:44 +02:00
Stefan Allius
a76c0ac440 improve test coverage und reduce test delays 2024-09-03 17:23:09 +02:00
Stefan Allius
215dcd98e6 GEN3: don't crash on overwritten msg in the receive buffer 2024-09-03 17:22:34 +02:00
Stefan Allius
627ca97360 Test modbus_tcp (#179)
* add more unit tests
2024-08-30 20:40:53 +02:00
Stefan Allius
d2b88ab838 Sonar qube 3 (#178)
* add more unit tests
2024-08-29 23:47:30 +02:00
Stefan Allius
6d9addc7d5 Merge branch 'main' of https://github.com/s-allius/tsun-gen3-proxy into dev-0.11 2024-08-27 21:41:11 +02:00
Stefan Allius
1bb08fb211 Update README.md (#177) 2024-08-27 15:03:57 +02:00
Stefan Allius
193eea65af Update README.md (#176)
add SonarCloude shields
2024-08-27 00:24:11 +02:00
Stefan Allius
2b8dacb0de Dev 0.11 (#175)
* use random IP adresses for unit tests

* Docker: The description ist missing (#171)

Fixes #167

* S allius/issue167 (#172)

* cleanup

* Sonar qube 6 (#174)

* test class ModbusConn
2024-08-26 23:49:23 +02:00
Stefan Allius
cb0c69944f Merge branch 'main' of https://github.com/s-allius/tsun-gen3-proxy into dev-0.11 2024-08-26 23:45:48 +02:00
Stefan Allius
7f41365815 Sonar qube 6 (#174)
* test class ModbusConn
2024-08-26 23:37:24 +02:00
Stefan Allius
5db3fbf495 Update README.md (#173) 2024-08-26 21:28:44 +02:00
Stefan Allius
d44726c0f3 S allius/issue167 (#172)
* cleanup
2024-08-25 23:28:35 +02:00
Stefan Allius
1985557bce Docker: The description ist missing (#171)
Fixes #167
2024-08-25 23:05:25 +02:00
Stefan Allius
7dc2595d71 use random IP adresses for unit tests 2024-08-25 12:02:27 +02:00
Stefan Allius
6d9a446bfe Sonar qube 5 (#170)
* fix SonarLints warnings
2024-08-24 23:03:02 +02:00
Stefan Allius
f9c1b83ccd Sonar qube 4 (#169)
* add unit test for inverter.py

* fix SonarQube warning
2024-08-24 22:21:55 +02:00
Stefan Allius
58b42f7d7c SonarCloud setup (#168)
* Code Cleanup (#158)

* print coverage report

* create sonar-project property file

* install all py dependencies in one step

* code cleanup

* reduce cognitive complexity

* do not build on *.yml changes

* optimise versionstring handling (#159)

- Reading the version string from the image updates
  it even if the image is re-pulled without re-deployment

* fix linter warning

* exclude *.pyi filese

* ignore some rules for tests

* cleanup (#160)

* Sonar qube 3 (#163)

fix SonarQube warnings in modbus.py

* Sonar qube 3 (#164)


* fix SonarQube warnings

* Sonar qube 3 (#165)

* cleanup

* Add support for TSUN Titan inverter
Fixes #161


* fix SonarQube warnings

* fix error

* rename field "config"

* SonarQube reads flake8 output

* don't stop on flake8 errors

* flake8 scan only app/src for SonarQube

* update flake8 run

* ignore flake8 C901

* cleanup

* fix linter warnings

* ignore changed *.yml files

* read sensor list solarman data packets

* catch 'No route to' error and log only in debug mode

* fix unit tests

* add sensor_list configuration

* adapt unit tests

* fix SonarQube warnings

* Sonar qube 3 (#166)

* add unittests for mqtt.py

* add mock

* move test requirements into a file

* fix unit tests

* fix formating

* initial version

* fix SonarQube warning
2024-08-23 21:24:01 +02:00
Stefan Allius
27045cac6e Sonar qube 3 (#166)
* add unittests for mqtt.py

* add mock

* move test requirements into a file

* fix unit tests

* fix formating

* initial version

* fix SonarQube warning
2024-08-23 00:26:01 +02:00
Stefan Allius
54de2aecfe Sonar qube 3 (#165)
* cleanup

* Add support for TSUN Titan inverter
Fixes #161


* fix SonarQube warnings

* fix error

* rename field "config"

* SonarQube reads flake8 output

* don't stop on flake8 errors

* flake8 scan only app/src for SonarQube

* update flake8 run

* ignore flake8 C901

* cleanup

* fix linter warnings

* ignore changed *.yml files

* read sensor list solarman data packets

* catch 'No route to' error and log only in debug mode

* fix unit tests

* add sensor_list configuration

* adapt unit tests

* fix SonarQube warnings
2024-08-16 21:07:08 +02:00
Stefan Allius
5a39370cc3 Sonar qube 3 (#164)
* fix SonarQube warnings
2024-08-13 22:22:45 +02:00
Stefan Allius
7a9b23d068 Sonar qube 3 (#163)
fix SonarQube warnings in modbus.py
2024-08-13 21:11:56 +02:00
Stefan Allius
e34afcb523 cleanup (#160) 2024-08-11 23:22:07 +02:00
Stefan Allius
22df381da5 ignore some rules for tests 2024-08-11 00:48:19 +02:00
Stefan Allius
117e6a7570 exclude *.pyi filese 2024-08-10 23:55:19 +02:00
Stefan Allius
65de946992 fix linter warning 2024-08-10 23:53:35 +02:00
Stefan Allius
33d385db10 optimise versionstring handling (#159)
- Reading the version string from the image updates
  it even if the image is re-pulled without re-deployment
2024-08-10 22:53:25 +02:00
Stefan Allius
1e610af1df Code Cleanup (#158)
* print coverage report

* create sonar-project property file

* install all py dependencies in one step

* code cleanup

* reduce cognitive complexity

* do not build on *.yml changes
2024-08-10 20:41:31 +02:00
Stefan Allius
db1169f61f Update README.md (#156)
add modbus_polling to example config
2024-08-10 16:49:18 +02:00
Stefan Allius
383be10e87 Hotfix v0.10.1: fix displaying the version string at startup and in HA (#155)
* Version 0.10.0 no longer displays the version string (#154)

Fixes #153
2024-08-10 14:18:25 +02:00
59 changed files with 6343 additions and 2258 deletions

View File

@@ -24,21 +24,18 @@ permissions:
contents: read
pull-requests: read # allows SonarCloud to decorate PRs with analysis results
env:
TZ: "Europe/Berlin"
jobs:
build:
runs-on: ubuntu-latest
steps:
- name: Set timezone
uses: szenius/set-timezone@v2.0
with:
timezoneLinux: "Europe/Berlin"
timezoneMacos: "Europe/Berlin"
timezoneWindows: "Europe/Berlin"
- uses: actions/checkout@v4
with:
fetch-depth: 0 # Fetch all history for all tags and branches
fetch-depth: 0 # Shallow clones should be disabled for a better relevancy of analysis
- name: Set up Python 3.12
uses: actions/setup-python@v5
with:
@@ -46,29 +43,28 @@ jobs:
- name: Install dependencies
run: |
python -m pip install --upgrade pip
pip install flake8 pytest pytest-asyncio
if [ -f requirements-test.txt ]; then pip install -r requirements-test.txt; fi
if [ -f requirements.txt ]; then pip install -r requirements.txt; fi
- name: Lint with flake8
run: |
# stop the build if there are Python syntax errors or undefined names
flake8 . --count --select=E9,F63,F7,F82 --show-source --statistics
# exit-zero treats all errors as warnings. The GitHub editor is 127 chars wide
flake8 . --count --exit-zero --max-complexity=10 --max-line-length=127 --statistics
flake8 --exit-zero --ignore=C901,E121,E123,E126,E133,E226,E241,E242,E704,W503,W504,W505 --format=pylint --output-file=output_flake.txt --exclude=*.pyc app/src/
- name: Test with pytest
run: |
pip install pytest pytest-cov
#pytest app --doctest-modules --junitxml=junit/test-results.xml --cov=com --cov-report=xml --cov-report=html
python -m pytest app --cov=app/src --cov-report=xml
coverage report
- name: Analyze with SonarCloud
uses: SonarSource/sonarcloud-github-action@v2.2.0
uses: SonarSource/sonarcloud-github-action@v3.1.0
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
SONAR_TOKEN: ${{ secrets.SONAR_TOKEN }}
with:
projectBaseDir: .
args:
-Dsonar.projectKey=s-allius_tsun-gen3-proxy
-Dsonar.organization=s-allius
-Dsonar.python.version=3.12
-Dsonar.python.coverage.reportPaths=coverage.xml
-Dsonar.tests=system_tests,app/tests
-Dsonar.source=app/src
-Dsonar.python.flake8.reportPaths=output_flake.txt
# -Dsonar.docker.hadolint.reportPaths=

View File

@@ -15,5 +15,8 @@
"sonarlint.connectedMode.project": {
"connectionId": "s-allius",
"projectKey": "s-allius_tsun-gen3-proxy"
},
"files.exclude": {
"**/*.pyi": true
}
}

View File

@@ -7,6 +7,24 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
## [unreleased]
## [0.11.1] - 2024-11-20
- Bumps [aiohttp](https://github.com/aio-libs/aiohttp) from 3.10.5 to 3.10.11.
## [0.11.0] - 2024-10-13
- fix healthcheck on infrastructure with IPv6 support [#196](https://github.com/s-allius/tsun-gen3-proxy/issues/196)
- refactoring: cleaner architecture, increase test coverage
- Parse more values in Server Mode [#186](https://github.com/s-allius/tsun-gen3-proxy/issues/186)
- GEN3: add support for new messages of version 3 firmwares [#182](https://github.com/s-allius/tsun-gen3-proxy/issues/182)
- add support for controller MAC and serial number
- GEN3: don't crash on overwritten msg in the receive buffer
- Reading the version string from the image updates it even if the image is re-pulled without re-deployment
## [0.10.1] - 2024-08-10
- fix displaying the version string at startup and in HA [#153](https://github.com/s-allius/tsun-gen3-proxy/issues/153)
## [0.10.0] - 2024-08-09
- bump aiohttp to version 3.10.2

186
README.md
View File

@@ -7,9 +7,15 @@
<p align="center">
<a href="https://opensource.org/licenses/BSD-3-Clause"><img alt="License: BSD-3-Clause" src="https://img.shields.io/badge/License-BSD_3--Clause-green.svg"></a>
<a href="https://www.python.org/downloads/release/python-3120/"><img alt="Supported Python versions" src="https://img.shields.io/badge/python-3.12-blue.svg"></a>
<a href="https://sbtinstruments.github.io/aiomqtt/introduction.html"><img alt="Supported aiomqtt versions" src="https://img.shields.io/badge/aiomqtt-2.2.0-lightblue.svg"></a>
<a href="https://sbtinstruments.github.io/aiomqtt/introduction.html"><img alt="Supported aiomqtt versions" src="https://img.shields.io/badge/aiomqtt-2.3.0-lightblue.svg"></a>
<a href="https://libraries.io/pypi/aiocron"><img alt="Supported aiocron versions" src="https://img.shields.io/badge/aiocron-1.8-lightblue.svg"></a>
<a href="https://toml.io/en/v1.0.0"><img alt="Supported toml versions" src="https://img.shields.io/badge/toml-1.0.0-lightblue.svg"></a>
<a href="https://toml.io/en/v1.0.0"><img alt="Supported toml versions" src="https://img.shields.io/badge/toml-1.0.0-lightblue.svg"></a>
<br>
<a href="https://sonarcloud.io/component_measures?id=s-allius_tsun-gen3-proxy&metric=alert_status"><img src="https://sonarcloud.io/api/project_badges/measure?project=s-allius_tsun-gen3-proxy&metric=alert_status"></a>
<a href="https://sonarcloud.io/component_measures?id=s-allius_tsun-gen3-proxy&metric=bugs"><img src="https://sonarcloud.io/api/project_badges/measure?project=s-allius_tsun-gen3-proxy&metric=bugs"></a>
<a href="https://sonarcloud.io/component_measures?id=s-allius_tsun-gen3-proxy&metric=code_smells"><img src="https://sonarcloud.io/api/project_badges/measure?project=s-allius_tsun-gen3-proxy&metric=code_smells"></a>
<br>
<a href="https://sonarcloud.io/component_measures?id=s-allius_tsun-gen3-proxy&metric=coverage"><img src="https://sonarcloud.io/api/project_badges/measure?project=s-allius_tsun-gen3-proxy&metric=coverage"></a>
</p>
# Overview
@@ -115,26 +121,63 @@ The proxy can be configured via the file 'config.toml'. When the proxy is starte
The configration uses the TOML format, which aims to be easy to read due to obvious semantics.
You find more details here: <https://toml.io/en/v1.0.0>
<details>
<summary>Here is an example of a <b>config.toml</b> file</summary>
```toml
# configuration for tsun cloud for 'GEN3' inverters
tsun.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
tsun.host = 'logger.talent-monitoring.com'
tsun.port = 5005
# configuration for solarman cloud for 'GEN3 PLUS' inverters
solarman.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
solarman.host = 'iot.talent-monitoring.com'
solarman.port = 10000
##########################################################################################
###
### T S U N - G E N 3 - P R O X Y
###
### from Stefan Allius
###
##########################################################################################
###
### The readme will give you an overview of the project:
### https://s-allius.github.io/tsun-gen3-proxy/
###
### The proxy supports different operation modes. Select the proper mode
### which depends on your inverter type and you inverter firmware.
### Please read:
### https://github.com/s-allius/tsun-gen3-proxy/wiki/Operation-Modes-Overview
###
### Here you will find a description of all configuration options:
### https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details
###
### The configration uses the TOML format, which aims to be easy to read due to
### obvious semantics. You find more details here: https://toml.io/en/v1.0.0
###
##########################################################################################
# mqtt broker configuration
##########################################################################################
##
## MQTT broker configuration
##
## In this block, you must configure the connection to your MQTT broker and specify the
## required credentials. As the proxy does not currently support an encrypted connection
## to the MQTT broker, it is strongly recommended that you do not use a public broker.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#mqtt-broker-account
##
mqtt.host = 'mqtt' # URL or IP address of the mqtt broker
mqtt.port = 1883
mqtt.user = ''
mqtt.passwd = ''
# home-assistant
##########################################################################################
##
## HOME ASSISTANT
##
## The proxy supports the MQTT autoconfiguration of Home Assistant (HA). The default
## values match the HA default configuration. If you need to change these or want to use
## a different MQTT client, you can adjust the prefixes of the MQTT topics below.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#home-assistant
##
ha.auto_conf_prefix = 'homeassistant' # MQTT prefix for subscribing for homeassistant status updates
ha.discovery_prefix = 'homeassistant' # MQTT prefix for discovery topic
ha.entity_prefix = 'tsun' # MQTT topic prefix for publishing inverter values
@@ -142,37 +185,115 @@ ha.proxy_node_id = 'proxy' # MQTT node id, for the proxy_node_i
ha.proxy_unique_id = 'P170000000000001' # MQTT unique id, to identify a proxy instance
# microinverters
inverters.allow_all = false # True: allow inverters, even if we have no inverter mapping
##########################################################################################
##
## GEN3 Proxy Mode Configuration
##
## In this block, you can configure an optional connection to the TSUN cloud for GEN3
## inverters. This connection is only required if you want send data to the TSUN cloud
## to use the TSUN APPs or receive firmware updates.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#tsun-cloud-for-gen3-inverter-only
##
# inverter mapping, maps a `serial_no* to a `node_id` and defines an optional `suggested_area` for `home-assistant`
#
# for each inverter add a block starting with [inverters."<16-digit serial numbeer>"]
tsun.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
tsun.host = 'logger.talent-monitoring.com'
tsun.port = 5005
##########################################################################################
##
## GEN3PLUS Proxy Mode Configuration
##
## In this block, you can configure an optional connection to the TSUN cloud for GEN3PLUS
## inverters. This connection is only required if you want send data to the TSUN cloud
## to use the TSUN APPs or receive firmware updates.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#solarman-cloud-for-gen3plus-inverter-only
##
solarman.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
solarman.host = 'iot.talent-monitoring.com'
solarman.port = 10000
##########################################################################################
###
### Inverter Definitions
###
### The proxy supports the simultaneous operation of several inverters, even of different
### types. A configuration block must be defined for each inverter, in which all necessary
### parameters must be specified. These depend on the operation mode used and also differ
### slightly depending on the inverter type.
###
### In addition, the PV modules can be defined at the individual inputs for documentation
### purposes, whereby these are displayed in Home Assistant.
###
### The proxy only accepts connections from known inverters. This can be switched off for
### test purposes and unknown serial numbers are also accepted.
###
inverters.allow_all = false # only allow known inverters
##########################################################################################
##
## For each GEN3 inverter, the serial number of the inverter must be mapped to an MQTT
## definition. To do this, the corresponding configuration block is started with
## `[Inverter.“<16-digit serial number>”]` so that all subsequent parameters are assigned
## to this inverter. Further inverter-specific parameters (e.g. polling mode) can be set
## in the configuration block
##
## The serial numbers of all GEN3 inverters start with `R17`!
##
[inverters."R17xxxxxxxxxxxx1"]
node_id = 'inv1' # Optional, MQTT replacement for inverters serial number
suggested_area = 'roof' # Optional, suggested installation area for home-assistant
node_id = 'inv_1' # MQTT replacement for inverters serial number
suggested_area = 'roof' # suggested installation place for home-assistant
modbus_polling = false # Disable optional MODBUS polling for GEN3 inverter
pv1 = {type = 'RSM40-8-395M', manufacturer = 'Risen'} # Optional, PV module descr
pv2 = {type = 'RSM40-8-395M', manufacturer = 'Risen'} # Optional, PV module descr
[inverters."R17xxxxxxxxxxxx2"]
node_id = 'inv2' # Optional, MQTT replacement for inverters serial number
suggested_area = 'balcony' # Optional, suggested installation area for home-assistant
pv1 = {type = 'RSM40-8-405M', manufacturer = 'Risen'} # Optional, PV module descr
pv2 = {type = 'RSM40-8-405M', manufacturer = 'Risen'} # Optional, PV module descr
##########################################################################################
##
## For each GEN3PLUS inverter, the serial number of the inverter must be mapped to an MQTT
## definition. To do this, the corresponding configuration block is started with
## `[Inverter.“<16-digit serial number>”]` so that all subsequent parameters are assigned
## to this inverter. Further inverter-specific parameters (e.g. polling mode, client mode)
## can be set in the configuration block
##
## The serial numbers of all GEN3PLUS inverters start with `Y17` or Y47! Each GEN3PLUS
## inverter is supplied with a “Monitoring SN:”. This can be found on a sticker enclosed
## with the inverter.
##
[inverters."Y17xxxxxxxxxxxx1"] # This block is also for inverters with a Y47 serial no
monitor_sn = 2000000000 # The "Monitoring SN:" can be found on a sticker enclosed with the inverter
node_id = 'inv_3' # MQTT replacement for inverters serial number
suggested_area = 'garage' # suggested installation place for home-assistant
monitor_sn = 2000000000 # The GEN3PLUS "Monitoring SN:"
node_id = 'inv_2' # MQTT replacement for inverters serial number
suggested_area = 'garage' # suggested installation place for home-assistant
modbus_polling = true # Enable optional MODBUS polling
# if your inverter supports SSL connections you must use the client_mode. Pls, uncomment
# the next line and configure the fixed IP of your inverter
#client_mode = {host = '192.168.0.1', port = 8899}
pv1 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv2 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv3 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv4 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
##########################################################################################
###
### If the proxy mode is configured, commands from TSUN can be sent to the inverter via
### this connection or parameters (e.g. network credentials) can be queried. Filters can
### then be configured for the AT+ commands from the TSUN Cloud so that only certain
### accesses are permitted.
###
### An overview of all known AT+ commands can be found here:
### https://github.com/s-allius/tsun-gen3-proxy/wiki/AT--commands
###
[gen3plus.at_acl]
tsun.allow = ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'] # allow this for TSUN access
tsun.block = []
@@ -181,6 +302,8 @@ mqtt.block = []
```
</details>
## Inverter Configuration
GEN3PLUS inverters offer a web interface that can be used to configure the inverter. This is very practical for sending the data directly to the proxy. On the one hand, the inverter broadcasts its own SSID on 2.4GHz. This can be recognized because it is broadcast with `AP_<Montoring SN>`. You will find the `Monitor SN` and the password for the WLAN connection on a small sticker enclosed with the inverter.
@@ -191,7 +314,12 @@ The standard web interface of the inverter can be accessed at `http://<ip-adress
For our purpose, the hidden URL `http://<ip-adress>/config_hide.html` should be called. There you can see and modify the parameters for accessing the cloud. Here we enter the IP address of our proxy and the IP port `10000` for the `Server A Setting` and for `Optional Server Setting`. The second entry is used as a backup in the event of connection problems.
❗If the IP port is set to 10443 in the inverter configuration, you probably have a firmware with SSL support. In this case, you must use the client-mode configuration.
```txt
❗If the IP port is set to 10443 in the inverter configuration, you probably have a firmware with SSL support.
In this case, you MUST NOT change the port or the host address, as this may cause the inverter to hang and
require a complete reset. Use the configuration in client mode instead.
```
If access to the web interface does not work, it can also be redirected via DNS redirection, as is necessary for the GEN3 inverters.

View File

@@ -34,7 +34,6 @@ ARG GID
ARG LOG_LVL
ARG environment
ENV VERSION=$VERSION
ENV SERVICE_NAME=$SERVICE_NAME
ENV UID=$UID
ENV GID=$GID
@@ -63,17 +62,10 @@ RUN python -m pip install --no-cache --no-index /root/wheels/* && \
COPY --chmod=0700 entrypoint.sh /root/entrypoint.sh
COPY config .
COPY src .
RUN date > /build-date.txt
RUN echo ${VERSION} > /proxy-version.txt \
&& date > /build-date.txt
EXPOSE 5005 8127 10000
# command to run on container start
ENTRYPOINT ["/root/entrypoint.sh"]
CMD [ "python3", "./server.py" ]
LABEL org.opencontainers.image.title="TSUN Gen3 Proxy"
LABEL org.opencontainers.image.authors="Stefan Allius"
LABEL org.opencontainers.image.source=https://github.com/s-allius/tsun-gen3-proxy
LABEL org.opencontainers.image.description='This proxy enables a reliable connection between TSUN third generation inverters (eg. TSOL MS600, MS800, MS2000) and an MQTT broker to integrate the inverter into typical home automations.'
LABEL org.opencontainers.image.licenses="BSD-3-Clause"
LABEL org.opencontainers.image.vendor="Stefan Allius"

View File

@@ -17,6 +17,7 @@ VERSION="${VERSION:1}"
arr=(${VERSION//./ })
MAJOR=${arr[0]}
IMAGE=tsun-gen3-proxy
GREEN='\033[0;32m'
BLUE='\033[0;34m'
NC='\033[0m'
@@ -26,44 +27,22 @@ IMAGE=docker.io/sallius/${IMAGE}
VERSION=${VERSION}+$1
elif [[ $1 == rc ]] || [[ $1 == rel ]] || [[ $1 == preview ]] ;then
IMAGE=ghcr.io/s-allius/${IMAGE}
echo 'login to ghcr.io'
echo $GHCR_TOKEN | docker login ghcr.io -u s-allius --password-stdin
else
echo argument missing!
echo try: $0 '[debug|dev|preview|rc|rel]'
exit 1
fi
if [[ $1 == debug ]] ;then
BUILD_ENV="dev"
else
BUILD_ENV="production"
fi
BUILD_CMD="buildx build --push --build-arg \"VERSION=${VERSION}\" --build-arg \"environment=${BUILD_ENV}\" --attest type=provenance,mode=max --attest type=sbom,generator=docker/scout-sbom-indexer:latest"
ARCH="--platform linux/amd64,linux/arm64,linux/arm/v7"
LABELS="--label \"org.opencontainers.image.created=${BUILD_DATE}\" --label \"org.opencontainers.image.version=${VERSION}\" --label \"org.opencontainers.image.revision=${BRANCH}\""
export IMAGE
export VERSION
export BUILD_DATE
export BRANCH
export MAJOR
echo version: $VERSION build-date: $BUILD_DATE image: $IMAGE
if [[ $1 == debug ]];then
docker ${BUILD_CMD} ${ARCH} ${LABELS} --build-arg "LOG_LVL=DEBUG" -t ${IMAGE}:debug app
elif [[ $1 == dev ]];then
docker ${BUILD_CMD} ${ARCH} ${LABELS} -t ${IMAGE}:dev app
elif [[ $1 == preview ]];then
echo 'login to ghcr.io'
echo $GHCR_TOKEN | docker login ghcr.io -u s-allius --password-stdin
docker ${BUILD_CMD} ${ARCH} ${LABELS} -t ${IMAGE}:preview -t ${IMAGE}:${VERSION} app
elif [[ $1 == rc ]];then
echo 'login to ghcr.io'
echo $GHCR_TOKEN | docker login ghcr.io -u s-allius --password-stdin
docker ${BUILD_CMD} ${ARCH} ${LABELS} -t ${IMAGE}:rc -t ${IMAGE}:${VERSION} app
elif [[ $1 == rel ]];then
echo 'login to ghcr.io'
echo $GHCR_TOKEN | docker login ghcr.io -u s-allius --password-stdin
docker ${BUILD_CMD} ${ARCH} ${LABELS} --no-cache -t ${IMAGE}:latest -t ${IMAGE}:${MAJOR} -t ${IMAGE}:${VERSION} app
fi
docker buildx bake -f app/docker-bake.hcl $1
echo -e "${BLUE} => checking docker-compose.yaml file${NC}"
docker-compose config -q

View File

@@ -1,64 +1,177 @@
# configuration to reach tsun cloud
tsun.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
tsun.host = 'logger.talent-monitoring.com'
tsun.port = 5005
##########################################################################################
###
### T S U N - G E N 3 - P R O X Y
###
### from Stefan Allius
###
##########################################################################################
###
### The readme will give you an overview of the project:
### https://s-allius.github.io/tsun-gen3-proxy/
###
### The proxy supports different operation modes. Select the proper mode
### which depends on your inverter type and you inverter firmware.
### Please read:
### https://github.com/s-allius/tsun-gen3-proxy/wiki/Operation-Modes-Overview
###
### Here you will find a description of all configuration options:
### https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details
###
### The configration uses the TOML format, which aims to be easy to read due to
### obvious semantics. You find more details here: https://toml.io/en/v1.0.0
###
##########################################################################################
# configuration to reach the new tsun cloud for G3 Plus inverters
solarman.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
solarman.host = 'iot.talent-monitoring.com'
solarman.port = 10000
# mqtt broker configuration
##########################################################################################
##
## MQTT broker configuration
##
## In this block, you must configure the connection to your MQTT broker and specify the
## required credentials. As the proxy does not currently support an encrypted connection
## to the MQTT broker, it is strongly recommended that you do not use a public broker.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#mqtt-broker-account
##
mqtt.host = 'mqtt' # URL or IP address of the mqtt broker
mqtt.port = 1883
mqtt.user = ''
mqtt.passwd = ''
# home-assistant
##########################################################################################
##
## HOME ASSISTANT
##
## The proxy supports the MQTT autoconfiguration of Home Assistant (HA). The default
## values match the HA default configuration. If you need to change these or want to use
## a different MQTT client, you can adjust the prefixes of the MQTT topics below.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#home-assistant
##
ha.auto_conf_prefix = 'homeassistant' # MQTT prefix for subscribing for homeassistant status updates
ha.discovery_prefix = 'homeassistant' # MQTT prefix for discovery topic
ha.entity_prefix = 'tsun' # MQTT topic prefix for publishing inverter values
ha.proxy_node_id = 'proxy' # MQTT node id, for the proxy_node_id
ha.proxy_unique_id = 'P170000000000001' # MQTT unique id, to identify a proxy instance
# microinverters
inverters.allow_all = true # allow inverters, even if we have no inverter mapping
# inverter mapping, maps a `serial_no* to a `mqtt_id` and defines an optional `suggested_place` for `home-assistant`
#
# for each inverter add a block starting with [inverters."<16-digit serial numbeer>"]
##########################################################################################
##
## GEN3 Proxy Mode Configuration
##
## In this block, you can configure an optional connection to the TSUN cloud for GEN3
## inverters. This connection is only required if you want send data to the TSUN cloud
## to use the TSUN APPs or receive firmware updates.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#tsun-cloud-for-gen3-inverter-only
##
tsun.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
tsun.host = 'logger.talent-monitoring.com'
tsun.port = 5005
##########################################################################################
##
## GEN3PLUS Proxy Mode Configuration
##
## In this block, you can configure an optional connection to the TSUN cloud for GEN3PLUS
## inverters. This connection is only required if you want send data to the TSUN cloud
## to use the TSUN APPs or receive firmware updates.
##
## https://github.com/s-allius/tsun-gen3-proxy/wiki/Configuration-details#solarman-cloud-for-gen3plus-inverter-only
##
solarman.enabled = true # false: disables connecting to the tsun cloud, and avoids updates
solarman.host = 'iot.talent-monitoring.com'
solarman.port = 10000
##########################################################################################
###
### Inverter Definitions
###
### The proxy supports the simultaneous operation of several inverters, even of different
### types. A configuration block must be defined for each inverter, in which all necessary
### parameters must be specified. These depend on the operation mode used and also differ
### slightly depending on the inverter type.
###
### In addition, the PV modules can be defined at the individual inputs for documentation
### purposes, whereby these are displayed in Home Assistant.
###
### The proxy only accepts connections from known inverters. This can be switched off for
### test purposes and unknown serial numbers are also accepted.
###
inverters.allow_all = false # only allow known inverters
##########################################################################################
##
## For each GEN3 inverter, the serial number of the inverter must be mapped to an MQTT
## definition. To do this, the corresponding configuration block is started with
## `[Inverter.“<16-digit serial number>”]` so that all subsequent parameters are assigned
## to this inverter. Further inverter-specific parameters (e.g. polling mode) can be set
## in the configuration block
##
## The serial numbers of all GEN3 inverters start with `R17`!
##
[inverters."R170000000000001"]
#node_id = '' # Optional, MQTT replacement for inverters serial number
#suggested_area = '' # Optional, suggested installation area for home-assistant
modbus_polling = false # Disable optional MODBUS polling
#pv1 = {type = 'RSM40-8-395M', manufacturer = 'Risen'} # Optional, PV module descr
#pv2 = {type = 'RSM40-8-395M', manufacturer = 'Risen'} # Optional, PV module descr
node_id = '' # MQTT replacement for inverters serial number
suggested_area = '' # suggested installation area for home-assistant
modbus_polling = false # Disable optional MODBUS polling
pv1 = {type = 'RSM40-8-395M', manufacturer = 'Risen'} # Optional, PV module descr
pv2 = {type = 'RSM40-8-395M', manufacturer = 'Risen'} # Optional, PV module descr
#[inverters."R17xxxxxxxxxxxx2"]
#node_id = '' # Optional, MQTT replacement for inverters serial number
#suggested_area = '' # Optional, suggested installation area for home-assistant
#modbus_polling = false # Disable optional MODBUS polling
#pv1 = {type = 'RSM40-8-405M', manufacturer = 'Risen'} # Optional, PV module descr
#pv2 = {type = 'RSM40-8-405M', manufacturer = 'Risen'} # Optional, PV module descr
##########################################################################################
##
## For each GEN3PLUS inverter, the serial number of the inverter must be mapped to an MQTT
## definition. To do this, the corresponding configuration block is started with
## `[Inverter.“<16-digit serial number>”]` so that all subsequent parameters are assigned
## to this inverter. Further inverter-specific parameters (e.g. polling mode, client mode)
## can be set in the configuration block
##
## The serial numbers of all GEN3PLUS inverters start with `Y17` or Y47! Each GEN3PLUS
## inverter is supplied with a “Monitoring SN:”. This can be found on a sticker enclosed
## with the inverter.
##
[inverters."Y170000000000001"]
monitor_sn = 2000000000 # The "Monitoring SN:" can be found on a sticker enclosed with the inverter
#node_id = '' # Optional, MQTT replacement for inverters serial number
#suggested_area = '' # Optional, suggested installation place for home-assistant
modbus_polling = true # Enable optional MODBUS polling
monitor_sn = 2000000000 # The GEN3PLUS "Monitoring SN:"
node_id = '' # MQTT replacement for inverters serial number
suggested_area = '' # suggested installation place for home-assistant
modbus_polling = true # Enable optional MODBUS polling
# if your inverter supports SSL connections you must use the client_mode. Pls, uncomment
# the next line and configure the fixed IP of your inverter
#client_mode = {host = '192.168.0.1', port = 8899}
#pv1 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
#pv2 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
#pv3 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
#pv4 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv1 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv2 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv3 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
pv4 = {type = 'RSM40-8-410M', manufacturer = 'Risen'} # Optional, PV module descr
##########################################################################################
###
### If the proxy mode is configured, commands from TSUN can be sent to the inverter via
### this connection or parameters (e.g. network credentials) can be queried. Filters can
### then be configured for the AT+ commands from the TSUN Cloud so that only certain
### accesses are permitted.
###
### An overview of all known AT+ commands can be found here:
### https://github.com/s-allius/tsun-gen3-proxy/wiki/AT--commands
###
[gen3plus.at_acl]
# filter for received commands from the internet
tsun.allow = ['AT+Z', 'AT+UPURL', 'AT+SUPDATE']
tsun.block = []
# filter for received commands from the MQTT broker
mqtt.allow = ['AT+']
mqtt.block = []

93
app/docker-bake.hcl Normal file
View File

@@ -0,0 +1,93 @@
variable "IMAGE" {
default = "tsun-gen3-proxy"
}
variable "VERSION" {
default = "0.0.0"
}
variable "MAJOR" {
default = "0"
}
variable "BUILD_DATE" {
default = "dev"
}
variable "BRANCH" {
default = ""
}
variable "DESCRIPTION" {
default = "This proxy enables a reliable connection between TSUN third generation inverters (eg. TSOL MS600, MS800, MS2000) and an MQTT broker to integrate the inverter into typical home automations."
}
target "_common" {
context = "app"
dockerfile = "Dockerfile"
args = {
VERSION = "${VERSION}"
environment = "production"
}
attest = [
"type =provenance,mode=max",
"type =sbom,generator=docker/scout-sbom-indexer:latest"
]
annotations = [
"index:org.opencontainers.image.title=TSUN Gen3 Proxy",
"index:org.opencontainers.image.authors=Stefan Allius",
"index:org.opencontainers.image.created=${BUILD_DATE}",
"index:org.opencontainers.image.version=${VERSION}",
"index:org.opencontainers.image.revision=${BRANCH}",
"index:org.opencontainers.image.description=${DESCRIPTION}",
"index:org.opencontainers.image.licenses=BSD-3-Clause",
"index:org.opencontainers.image.source=https://github.com/s-allius/tsun-gen3-proxy"
]
labels = {
"org.opencontainers.image.title" = "TSUN Gen3 Proxy"
"org.opencontainers.image.authors" = "Stefan Allius"
"org.opencontainers.image.created" = "${BUILD_DATE}"
"org.opencontainers.image.version" = "${VERSION}"
"org.opencontainers.image.revision" = "${BRANCH}"
"org.opencontainers.image.description" = "${DESCRIPTION}"
"org.opencontainers.image.licenses" = "BSD-3-Clause"
"org.opencontainers.image.source" = "https://github.com/s-allius/tsun-gen3-proxy"
}
output = [
"type=image,push=true"
]
no-cache = false
platforms = ["linux/amd64", "linux/arm64", "linux/arm/v7"]
}
target "_debug" {
args = {
LOG_LVL = "DEBUG"
environment = "dev"
}
}
target "_prod" {
args = {
}
}
target "debug" {
inherits = ["_common", "_debug"]
tags = ["${IMAGE}:debug"]
}
target "dev" {
inherits = ["_common"]
tags = ["${IMAGE}:dev"]
}
target "preview" {
inherits = ["_common", "_prod"]
tags = ["${IMAGE}:preview", "${IMAGE}:${VERSION}"]
}
target "rc" {
inherits = ["_common", "_prod"]
tags = ["${IMAGE}:rc", "${IMAGE}:${VERSION}"]
}
target "rel" {
inherits = ["_common", "_prod"]
tags = ["${IMAGE}:latest", "${IMAGE}:${MAJOR}", "${IMAGE}:${VERSION}"]
no-cache = true
}

View File

@@ -2,6 +2,8 @@
set -e
user="$(id -u)"
export VERSION=$(cat /proxy-version.txt)
echo "######################################################"
echo "# prepare: '$SERVICE_NAME' Version:$VERSION"
echo "# for running with UserID:$UID, GroupID:$GID"

View File

@@ -4,408 +4,257 @@
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<title>A5&#45;&gt;A6</title>
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<title>A8</title>
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<title>A6&#45;&gt;A8</title>
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<title>A7&#45;&gt;A8</title>
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@@ -3,28 +3,34 @@
// {generate:true}
[note: You can stick notes on diagrams too!{bg:cornsilk}]
[Singleton]^[Mqtt|<static>ha_restarts;<static>__client;<static>__cb_MqttIsUp|<async>publish();<async>close()]
[Modbus|que;;snd_handler;rsp_handler;timeout;max_retires;last_xxx;err;retry_cnt;req_pend;tim|build_msg();recv_req();recv_resp();close()]
[IterRegistry||__iter__]^[Message|server_side:bool;header_valid:bool;header_len:unsigned;data_len:unsigned;unique_id;node_id;sug_area;_recv_buffer:bytearray;_send_buffer:bytearray;_forward_buffer:bytearray;db:Infos;new_data:list;state|_read():void<abstract>;close():void;inc_counter():void;dec_counter():void]
[Message]^[Talent|await_conn_resp_cnt;id_str;contact_name;contact_mail;db:InfosG3;mb:Modbus;switch|msg_contact_info();msg_ota_update();msg_get_time();msg_collector_data();msg_inverter_data();msg_unknown();;close()]
[Message]^[SolarmanV5|control;serial;snr;db:InfosG3P;mb:Modbus;switch|msg_unknown();;close()]
[Talent]^[ConnectionG3|remote_stream:ConnectionG3|healthy();close()]
[Talent]has-1>[Modbus]
[SolarmanV5]^[ConnectionG3P|remote_stream:ConnectionG3P|healthy();close()]
[SolarmanV5]has-1>[Modbus]
[AsyncStream|reader;writer;addr;r_addr;l_addr|<async>server_loop();<async>client_loop();<async>loop;disc();close();;__async_read();async_write();__async_forward()]^[ConnectionG3]
[AsyncStream]^[ConnectionG3P]
[Inverter|cls.db_stat;cls.entity_prfx;cls.discovery_prfx;cls.proxy_node_id;cls.proxy_unique_id;cls.mqtt:Mqtt|]^[InverterG3|__ha_restarts|async_create_remote();async_publ_mqtt();;close()]
[Inverter]^[InverterG3P|__ha_restarts|async_create_remote(;)async_publ_mqtt();close()]
[Mqtt]-[Inverter]
[ConnectionG3]^[InverterG3]
[ConnectionG3]has-0..1>[ConnectionG3]
[ConnectionG3P]^[InverterG3P]
[ConnectionG3P]has-0..1>[ConnectionG3P]
[<<AbstractIterMeta>>||__iter__()]
[Mqtt;<<Singleton>>|<static>ha_restarts;<static>__client;<static>__cb_MqttIsUp|<async>publish();<async>close()]
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[InverterG3P]-[note: Creates an GEN3PLUS inverter instance with prot_class:SolarmanV5{bg:cornsilk}]
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<title>A9</title>
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<text text-anchor="start" x="312.111" y="-1253" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">await_conn_resp_cnt</text>
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<text text-anchor="start" x="327.948" y="-1229" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">contact_name</text>
<text text-anchor="start" x="331.288" y="-1217" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">contact_mail</text>
<text text-anchor="start" x="334.8925" y="-1205" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">db:InfosG3</text>
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<text text-anchor="start" x="316.8405" y="-1149" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">msg_contact_info()</text>
<text text-anchor="start" x="318.7805" y="-1137" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">msg_ota_update()</text>
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<text text-anchor="start" x="312.6765" y="-1113" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">msg_collector_data()</text>
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<!-- A9&#45;&gt;A2 -->
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<title>A9&#45;&gt;A2</title>
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<title>A9&#45;&gt;A2</title>
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<title>A9&#45;&gt;A4</title>
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<!-- A12 -->
<g id="node13" class="node">
<title>A12</title>
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<text text-anchor="start" x="325.232" y="-805" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">ha_confs()</text>
<text text-anchor="start" x="333.016" y="-793" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">parse()</text>
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<!-- A9&#45;&gt;A12 -->
<g id="edge16" class="edge">
<title>A9&#45;&gt;A12</title>
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<!-- A10 -->
<g id="node11" class="node">
<title>A10</title>
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<text text-anchor="start" x="90.343" y="-1297" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">SolarmanV5</text>
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<text text-anchor="start" x="92.5665" y="-1265" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">ifc:AsyncIfc</text>
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<text text-anchor="start" x="105.9055" y="-1205" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">serial</text>
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<text text-anchor="start" x="82.2885" y="-1125" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">msg_unknown()</text>
<text text-anchor="start" x="98.402" y="-1101" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">healthy()</text>
<text text-anchor="start" x="102.8505" y="-1089" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">close()</text>
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<!-- A10&#45;&gt;A3 -->
<g id="edge9" class="edge">
<title>A10&#45;&gt;A3</title>
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<!-- A10&#45;&gt;A3 -->
<g id="edge11" class="edge">
<title>A10&#45;&gt;A3</title>
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<!-- A10&#45;&gt;A4 -->
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<title>A10&#45;&gt;A4</title>
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<!-- A13 -->
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<title>A13</title>
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<!-- A10&#45;&gt;A13 -->
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<title>A10&#45;&gt;A13</title>
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<!-- A11 -->
<g id="node12" class="node">
<title>A11</title>
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<!-- A11&#45;&gt;A12 -->
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<title>A11&#45;&gt;A12</title>
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<!-- A11&#45;&gt;A13 -->
<g id="edge14" class="edge">
<title>A11&#45;&gt;A13</title>
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<title>A15</title>
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<!-- A14&#45;&gt;A15 -->
<g id="edge20" class="edge">
<title>A14&#45;&gt;A15</title>
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<!-- A15&#45;&gt;A9 -->
<g id="edge21" class="edge">
<title>A15&#45;&gt;A9</title>
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<title>A15&#45;&gt;A10</title>
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<g id="node17" class="node">
<title>A16</title>
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After

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51
app/proxy_2.yuml Normal file
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@@ -0,0 +1,51 @@
// {type:class}
// {direction:topDown}
// {generate:true}
[note: You can stick notes on diagrams too!{bg:cornsilk}]
[<<AbstractIterMeta>>||__iter__()]
[InverterG3|addr;remote:StreamPtr;local:StreamPtr|create_remote();;close()]
[InverterG3P|addr;remote:StreamPtr;local:StreamPtr|create_remote();;close()]
[<<AsyncIfc>>||set_node_id();get_conn_no();;tx_add();tx_flush();tx_get();tx_peek();tx_log();tx_clear();tx_len();;fwd_add();fwd_log();rx_get();rx_peek();rx_log();rx_clear();rx_len();rx_set_cb();;prot_set_timeout_cb()]
[AsyncIfcImpl|fwd_fifo:ByteFifo;tx_fifo:ByteFifo;rx_fifo:ByteFifo;conn_no:Count;node_id;timeout_cb]
[AsyncStream|reader;writer;addr;r_addr;l_addr|;<async>loop;disc();close();healthy();;__async_read();__async_write();__async_forward()]
[AsyncStreamServer|create_remote|<async>server_loop();<async>_async_forward();<async>publish_outstanding_mqtt();close()]
[AsyncStreamClient||<async>client_loop();<async>_async_forward())]
[<<AsyncIfc>>]^-.-[AsyncIfcImpl]
[AsyncIfcImpl]^[AsyncStream]
[AsyncStream]^[AsyncStreamServer]
[AsyncStream]^[AsyncStreamClient]
[Talent|ifc:AsyncIfc;conn_no;addr;;await_conn_resp_cnt;id_str;contact_name;contact_mail;db:InfosG3;mb:Modbus;switch|msg_contact_info();msg_ota_update();msg_get_time();msg_collector_data();msg_inverter_data();msg_unknown();;healthy();close()]
[Talent]<remote-[InverterG3]
[InverterG3]-remote>[AsyncStreamClient]
[Talent]<-local++[InverterG3]
[InverterG3]++local->[AsyncStreamServer]
[SolarmanV5|ifc:AsyncIfc;conn_no;addr;;control;serial;snr;db:InfosG3P;mb:Modbus;switch|msg_unknown();;healthy();close()]
[SolarmanV5]<remote-[InverterG3P]
[InverterG3P]-remote>[AsyncStreamClient]
[SolarmanV5]<-local++[InverterG3P]
[InverterG3P]++local->[AsyncStreamServer]
[Infos|stat;new_stat_data;info_dev|static_init();dev_value();inc_counter();dec_counter();ha_proxy_conf;ha_conf;ha_remove;update_db;set_db_def_value;get_db_value;ignore_this_device]
[Infos]^[InfosG3||ha_confs();parse()]
[Infos]^[InfosG3P||ha_confs();parse()]
[Talent]use->[<<AsyncIfc>>]
[Talent]->[InfosG3]
[SolarmanV5]use->[<<AsyncIfc>>]
[SolarmanV5]->[InfosG3P]
[<<ProtocolIfc>>|_registry|close()]
[<<AbstractIterMeta>>]^-.-[<<ProtocolIfc>>]
[<<ProtocolIfc>>]^-.-[Message|node_id|inc_counter();dec_counter()]
[Message]^[Talent]
[Message]^[SolarmanV5]
[Modbus|que;;snd_handler;rsp_handler;timeout;max_retires;last_xxx;err;retry_cnt;req_pend;tim|build_msg();recv_req();recv_resp();close()]
[Modbus]<1-has[SolarmanV5]
[Modbus]<1-has[Talent]

View File

@@ -0,0 +1,6 @@
flake8
pytest
pytest-asyncio
pytest-cov
mock
coverage

View File

@@ -1,4 +1,4 @@
aiomqtt==2.2.0
aiomqtt==2.3.0
schema==0.7.7
aiocron==1.8
aiohttp==3.10.2
aiohttp==3.10.11

104
app/src/async_ifc.py Normal file
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@@ -0,0 +1,104 @@
from abc import ABC, abstractmethod
class AsyncIfc(ABC):
@abstractmethod
def get_conn_no(self):
pass # pragma: no cover
@abstractmethod
def set_node_id(self, value: str):
pass # pragma: no cover
#
# TX - QUEUE
#
@abstractmethod
def tx_add(self, data: bytearray):
''' add data to transmit queue'''
pass # pragma: no cover
@abstractmethod
def tx_flush(self):
''' send transmit queue and clears it'''
pass # pragma: no cover
@abstractmethod
def tx_peek(self, size: int = None) -> bytearray:
'''returns size numbers of byte without removing them'''
pass # pragma: no cover
@abstractmethod
def tx_log(self, level, info):
''' log the transmit queue'''
pass # pragma: no cover
@abstractmethod
def tx_clear(self):
''' clear transmit queue'''
pass # pragma: no cover
@abstractmethod
def tx_len(self):
''' get numner of bytes in the transmit queue'''
pass # pragma: no cover
#
# FORWARD - QUEUE
#
@abstractmethod
def fwd_add(self, data: bytearray):
''' add data to forward queue'''
pass # pragma: no cover
@abstractmethod
def fwd_log(self, level, info):
''' log the forward queue'''
pass # pragma: no cover
#
# RX - QUEUE
#
@abstractmethod
def rx_get(self, size: int = None) -> bytearray:
'''removes size numbers of bytes and return them'''
pass # pragma: no cover
@abstractmethod
def rx_peek(self, size: int = None) -> bytearray:
'''returns size numbers of byte without removing them'''
pass # pragma: no cover
@abstractmethod
def rx_log(self, level, info):
''' logs the receive queue'''
pass # pragma: no cover
@abstractmethod
def rx_clear(self):
''' clear receive queue'''
pass # pragma: no cover
@abstractmethod
def rx_len(self):
''' get numner of bytes in the receive queue'''
pass # pragma: no cover
@abstractmethod
def rx_set_cb(self, callback):
pass # pragma: no cover
#
# Protocol Callbacks
#
@abstractmethod
def prot_set_timeout_cb(self, callback):
pass # pragma: no cover
@abstractmethod
def prot_set_init_new_client_conn_cb(self, callback):
pass # pragma: no cover
@abstractmethod
def prot_set_update_header_cb(self, callback):
pass # pragma: no cover

View File

@@ -3,16 +3,140 @@ import logging
import traceback
import time
from asyncio import StreamReader, StreamWriter
from messages import hex_dump_memory, State
from typing import Self
from itertools import count
if __name__ == "app.src.async_stream":
from app.src.proxy import Proxy
from app.src.byte_fifo import ByteFifo
from app.src.async_ifc import AsyncIfc
from app.src.infos import Infos
else: # pragma: no cover
from proxy import Proxy
from byte_fifo import ByteFifo
from async_ifc import AsyncIfc
from infos import Infos
import gc
logger = logging.getLogger('conn')
class AsyncStream():
class AsyncIfcImpl(AsyncIfc):
_ids = count(0)
def __init__(self) -> None:
logger.debug('AsyncIfcImpl.__init__')
self.fwd_fifo = ByteFifo()
self.tx_fifo = ByteFifo()
self.rx_fifo = ByteFifo()
self.conn_no = next(self._ids)
self.node_id = ''
self.timeout_cb = None
self.init_new_client_conn_cb = None
self.update_header_cb = None
def close(self):
self.timeout_cb = None
self.fwd_fifo.reg_trigger(None)
self.tx_fifo.reg_trigger(None)
self.rx_fifo.reg_trigger(None)
def set_node_id(self, value: str):
self.node_id = value
def get_conn_no(self):
return self.conn_no
def tx_add(self, data: bytearray):
''' add data to transmit queue'''
self.tx_fifo += data
def tx_flush(self):
''' send transmit queue and clears it'''
self.tx_fifo()
def tx_peek(self, size: int = None) -> bytearray:
'''returns size numbers of byte without removing them'''
return self.tx_fifo.peek(size)
def tx_log(self, level, info):
''' log the transmit queue'''
self.tx_fifo.logging(level, info)
def tx_clear(self):
''' clear transmit queue'''
self.tx_fifo.clear()
def tx_len(self):
''' get numner of bytes in the transmit queue'''
return len(self.tx_fifo)
def fwd_add(self, data: bytearray):
''' add data to forward queue'''
self.fwd_fifo += data
def fwd_log(self, level, info):
''' log the forward queue'''
self.fwd_fifo.logging(level, info)
def rx_get(self, size: int = None) -> bytearray:
'''removes size numbers of bytes and return them'''
return self.rx_fifo.get(size)
def rx_peek(self, size: int = None) -> bytearray:
'''returns size numbers of byte without removing them'''
return self.rx_fifo.peek(size)
def rx_log(self, level, info):
''' logs the receive queue'''
self.rx_fifo.logging(level, info)
def rx_clear(self):
''' clear receive queue'''
self.rx_fifo.clear()
def rx_len(self):
''' get numner of bytes in the receive queue'''
return len(self.rx_fifo)
def rx_set_cb(self, callback):
self.rx_fifo.reg_trigger(callback)
def prot_set_timeout_cb(self, callback):
self.timeout_cb = callback
def prot_set_init_new_client_conn_cb(self, callback):
self.init_new_client_conn_cb = callback
def prot_set_update_header_cb(self, callback):
self.update_header_cb = callback
class StreamPtr():
'''Descr StreamPtr'''
def __init__(self, _stream, _ifc=None):
self.stream = _stream
self.ifc = _ifc
@property
def ifc(self):
return self._ifc
@ifc.setter
def ifc(self, value):
self._ifc = value
@property
def stream(self):
return self._stream
@stream.setter
def stream(self, value):
self._stream = value
class AsyncStream(AsyncIfcImpl):
MAX_PROC_TIME = 2
'''maximum processing time for a received msg in sec'''
MAX_START_TIME = 400
@@ -23,95 +147,42 @@ class AsyncStream():
'''maximum default time without a received msg in sec'''
def __init__(self, reader: StreamReader, writer: StreamWriter,
addr) -> None:
rstream: "StreamPtr") -> None:
AsyncIfcImpl.__init__(self)
logger.debug('AsyncStream.__init__')
self.reader = reader
self.writer = writer
self.addr = addr
self.r_addr = ''
self.l_addr = ''
self.conn_no = next(self._ids)
self.remote = rstream
self.tx_fifo.reg_trigger(self.__write_cb)
self._reader = reader
self._writer = writer
self.r_addr = writer.get_extra_info('peername')
self.l_addr = writer.get_extra_info('sockname')
self.proc_start = None # start processing start timestamp
self.proc_max = 0
self.async_publ_mqtt = None # will be set AsyncStreamServer only
def __write_cb(self):
self._writer.write(self.tx_fifo.get())
def __timeout(self) -> int:
if self.state == State.init or self.state == State.received:
to = self.MAX_START_TIME
elif self.state == State.up and \
self.server_side and self.modbus_polling:
to = self.MAX_INV_IDLE_TIME
else:
to = self.MAX_DEF_IDLE_TIME
return to
async def publish_outstanding_mqtt(self):
'''Publish all outstanding MQTT topics'''
try:
if self.unique_id:
await self.async_publ_mqtt()
await self._async_publ_mqtt_proxy_stat('proxy')
except Exception:
pass
async def server_loop(self, addr: str) -> None:
'''Loop for receiving messages from the inverter (server-side)'''
logger.info(f'[{self.node_id}:{self.conn_no}] '
f'Accept connection from {addr}')
self.inc_counter('Inverter_Cnt')
await self.publish_outstanding_mqtt()
await self.loop()
self.dec_counter('Inverter_Cnt')
await self.publish_outstanding_mqtt()
logger.info(f'[{self.node_id}:{self.conn_no}] Server loop stopped for'
f' r{self.r_addr}')
# if the server connection closes, we also have to disconnect
# the connection to te TSUN cloud
if self.remote_stream:
logger.info(f'[{self.node_id}:{self.conn_no}] disc client '
f'connection: [{self.remote_stream.node_id}:'
f'{self.remote_stream.conn_no}]')
await self.remote_stream.disc()
async def client_loop(self, _: str) -> None:
'''Loop for receiving messages from the TSUN cloud (client-side)'''
client_stream = await self.remote_stream.loop()
logger.info(f'[{client_stream.node_id}:{client_stream.conn_no}] '
'Client loop stopped for'
f' l{client_stream.l_addr}')
# if the client connection closes, we don't touch the server
# connection. Instead we erase the client connection stream,
# thus on the next received packet from the inverter, we can
# establish a new connection to the TSUN cloud
# erase backlink to inverter
client_stream.remote_stream = None
if self.remote_stream == client_stream:
# logging.debug(f'Client l{client_stream.l_addr} refs:'
# f' {gc.get_referrers(client_stream)}')
# than erase client connection
self.remote_stream = None
if self.timeout_cb:
return self.timeout_cb()
return 360
async def loop(self) -> Self:
"""Async loop handler for precessing all received messages"""
self.r_addr = self.writer.get_extra_info('peername')
self.l_addr = self.writer.get_extra_info('sockname')
self.proc_start = time.time()
while True:
try:
proc = time.time() - self.proc_start
if proc > self.proc_max:
self.proc_max = proc
self.proc_start = None
self.__calc_proc_time()
dead_conn_to = self.__timeout()
await asyncio.wait_for(self.__async_read(),
dead_conn_to)
if self.unique_id:
await self.async_write()
await self.__async_forward()
await self.__async_write()
await self.__async_forward()
if self.async_publ_mqtt:
await self.async_publ_mqtt()
except asyncio.TimeoutError:
@@ -119,7 +190,6 @@ class AsyncStream():
f'connection timeout ({dead_conn_to}s) '
f'for {self.l_addr}')
await self.disc()
self.close()
return self
except OSError as error:
@@ -127,55 +197,54 @@ class AsyncStream():
f'{error} for l{self.l_addr} | '
f'r{self.r_addr}')
await self.disc()
self.close()
return self
except RuntimeError as error:
logger.info(f'[{self.node_id}:{self.conn_no}] '
f'{error} for {self.l_addr}')
await self.disc()
self.close()
return self
except Exception:
self.inc_counter('SW_Exception')
Infos.inc_counter('SW_Exception')
logger.error(
f"Exception for {self.addr}:\n"
f"Exception for {self.r_addr}:\n"
f"{traceback.format_exc()}")
await asyncio.sleep(0) # be cooperative to other task
async def async_write(self, headline: str = 'Transmit to ') -> None:
"""Async write handler to transmit the send_buffer"""
if self._send_buffer:
hex_dump_memory(logging.INFO, f'{headline}{self.addr}:',
self._send_buffer, len(self._send_buffer))
self.writer.write(self._send_buffer)
await self.writer.drain()
self._send_buffer = bytearray(0) # self._send_buffer[sent:]
def __calc_proc_time(self):
if self.proc_start:
proc = time.time() - self.proc_start
if proc > self.proc_max:
self.proc_max = proc
self.proc_start = None
async def disc(self) -> None:
"""Async disc handler for graceful disconnect"""
if self.writer.is_closing():
self.remote = None
if self._writer.is_closing():
return
logger.debug(f'AsyncStream.disc() l{self.l_addr} | r{self.r_addr}')
self.writer.close()
await self.writer.wait_closed()
self._writer.close()
await self._writer.wait_closed()
def close(self) -> None:
logging.debug(f'AsyncStream.close() l{self.l_addr} | r{self.r_addr}')
"""close handler for a no waiting disconnect
hint: must be called before releasing the connection instance
"""
self.reader.feed_eof() # abort awaited read
if self.writer.is_closing():
super().close()
self._reader.feed_eof() # abort awaited read
if self._writer.is_closing():
return
logger.debug(f'AsyncStream.close() l{self.l_addr} | r{self.r_addr}')
self.writer.close()
self._writer.close()
def healthy(self) -> bool:
elapsed = 0
if self.proc_start is not None:
elapsed = time.time() - self.proc_start
if self.state == State.closed or elapsed > self.MAX_PROC_TIME:
if elapsed > self.MAX_PROC_TIME:
logging.debug(f'[{self.node_id}:{self.conn_no}:'
f'{type(self).__name__}]'
f' act:{round(1000*elapsed)}ms'
@@ -188,61 +257,139 @@ class AsyncStream():
'''
async def __async_read(self) -> None:
"""Async read handler to read received data from TCP stream"""
data = await self.reader.read(4096)
data = await self._reader.read(4096)
if data:
self.proc_start = time.time()
self._recv_buffer += data
wait = self.read() # call read in parent class
if wait > 0:
self.rx_fifo += data
wait = self.rx_fifo() # call read in parent class
if wait and wait > 0:
await asyncio.sleep(wait)
else:
raise RuntimeError("Peer closed.")
async def __async_write(self, headline: str = 'Transmit to ') -> None:
"""Async write handler to transmit the send_buffer"""
if len(self.tx_fifo) > 0:
self.tx_fifo.logging(logging.INFO, f'{headline}{self.r_addr}:')
self._writer.write(self.tx_fifo.get())
await self._writer.drain()
async def __async_forward(self) -> None:
"""forward handler transmits data over the remote connection"""
if not self._forward_buffer:
if len(self.fwd_fifo) == 0:
return
try:
if not self.remote_stream:
await self.async_create_remote()
if self.remote_stream:
if self.remote_stream._init_new_client_conn():
await self.remote_stream.async_write()
if self.remote_stream:
self.remote_stream._update_header(self._forward_buffer)
hex_dump_memory(logging.INFO,
f'Forward to {self.remote_stream.addr}:',
self._forward_buffer,
len(self._forward_buffer))
self.remote_stream.writer.write(self._forward_buffer)
await self.remote_stream.writer.drain()
self._forward_buffer = bytearray(0)
await self._async_forward()
except OSError as error:
if self.remote_stream:
rmt = self.remote_stream
self.remote_stream = None
logger.error(f'[{rmt.node_id}:{rmt.conn_no}] Fwd: {error} for '
f'l{rmt.l_addr} | r{rmt.r_addr}')
await rmt.disc()
rmt.close()
if self.remote.stream:
rmt = self.remote
logger.error(f'[{rmt.stream.node_id}:{rmt.stream.conn_no}] '
f'Fwd: {error} for '
f'l{rmt.ifc.l_addr} | r{rmt.ifc.r_addr}')
await rmt.ifc.disc()
if rmt.ifc.close_cb:
rmt.ifc.close_cb()
except RuntimeError as error:
if self.remote_stream:
rmt = self.remote_stream
self.remote_stream = None
logger.info(f'[{rmt.node_id}:{rmt.conn_no}] '
f'Fwd: {error} for {rmt.l_addr}')
await rmt.disc()
rmt.close()
if self.remote.stream:
rmt = self.remote
logger.info(f'[{rmt.stream.node_id}:{rmt.stream.conn_no}] '
f'Fwd: {error} for {rmt.ifc.l_addr}')
await rmt.ifc.disc()
if rmt.ifc.close_cb:
rmt.ifc.close_cb()
except Exception:
self.inc_counter('SW_Exception')
Infos.inc_counter('SW_Exception')
logger.error(
f"Fwd Exception for {self.addr}:\n"
f"Fwd Exception for {self.r_addr}:\n"
f"{traceback.format_exc()}")
def __del__(self):
logger.debug(
f"AsyncStream.__del__ l{self.l_addr} | r{self.r_addr}")
class AsyncStreamServer(AsyncStream):
def __init__(self, reader: StreamReader, writer: StreamWriter,
async_publ_mqtt, create_remote,
rstream: "StreamPtr") -> None:
AsyncStream.__init__(self, reader, writer, rstream)
self.create_remote = create_remote
self.async_publ_mqtt = async_publ_mqtt
def close(self) -> None:
logging.debug('AsyncStreamServer.close()')
self.create_remote = None
self.async_publ_mqtt = None
super().close()
async def server_loop(self) -> None:
'''Loop for receiving messages from the inverter (server-side)'''
logger.info(f'[{self.node_id}:{self.conn_no}] '
f'Accept connection from {self.r_addr}')
Infos.inc_counter('Inverter_Cnt')
await self.publish_outstanding_mqtt()
await self.loop()
Infos.dec_counter('Inverter_Cnt')
await self.publish_outstanding_mqtt()
logger.info(f'[{self.node_id}:{self.conn_no}] Server loop stopped for'
f' r{self.r_addr}')
# if the server connection closes, we also have to disconnect
# the connection to te TSUN cloud
if self.remote and self.remote.stream:
logger.info(f'[{self.node_id}:{self.conn_no}] disc client '
f'connection: [{self.remote.ifc.node_id}:'
f'{self.remote.ifc.conn_no}]')
await self.remote.ifc.disc()
async def _async_forward(self) -> None:
"""forward handler transmits data over the remote connection"""
if not self.remote.stream:
await self.create_remote()
if self.remote.stream and \
self.remote.ifc.init_new_client_conn_cb():
await self.remote.ifc._AsyncStream__async_write()
if self.remote.stream:
self.remote.ifc.update_header_cb(self.fwd_fifo.peek())
self.fwd_fifo.logging(logging.INFO, 'Forward to '
f'{self.remote.ifc.r_addr}:')
self.remote.ifc._writer.write(self.fwd_fifo.get())
await self.remote.ifc._writer.drain()
async def publish_outstanding_mqtt(self):
'''Publish all outstanding MQTT topics'''
try:
await self.async_publ_mqtt()
await Proxy._async_publ_mqtt_proxy_stat('proxy')
except Exception:
pass
class AsyncStreamClient(AsyncStream):
def __init__(self, reader: StreamReader, writer: StreamWriter,
rstream: "StreamPtr", close_cb) -> None:
AsyncStream.__init__(self, reader, writer, rstream)
self.close_cb = close_cb
def close(self) -> None:
logging.debug('AsyncStreamClient.close()')
self.close_cb = None
super().close()
async def client_loop(self, _: str) -> None:
'''Loop for receiving messages from the TSUN cloud (client-side)'''
await self.loop()
logger.info(f'[{self.node_id}:{self.conn_no}] '
'Client loop stopped for'
f' l{self.l_addr}')
if self.close_cb:
self.close_cb()
async def _async_forward(self) -> None:
"""forward handler transmits data over the remote connection"""
if self.remote.stream:
self.remote.ifc.update_header_cb(self.fwd_fifo.peek())
self.fwd_fifo.logging(logging.INFO, 'Forward to '
f'{self.remote.ifc.r_addr}:')
self.remote.ifc._writer.write(self.fwd_fifo.get())
await self.remote.ifc._writer.drain()

56
app/src/byte_fifo.py Normal file
View File

@@ -0,0 +1,56 @@
if __name__ == "app.src.byte_fifo":
from app.src.messages import hex_dump_str, hex_dump_memory
else: # pragma: no cover
from messages import hex_dump_str, hex_dump_memory
class ByteFifo:
""" a byte FIFO buffer with trigger callback """
__slots__ = ('__buf', '__trigger_cb')
def __init__(self):
self.__buf = bytearray()
self.__trigger_cb = None
def reg_trigger(self, cb) -> None:
self.__trigger_cb = cb
def __iadd__(self, data):
self.__buf.extend(data)
return self
def __call__(self):
'''triggers the observer'''
if callable(self.__trigger_cb):
return self.__trigger_cb()
return None
def get(self, size: int = None) -> bytearray:
'''removes size numbers of byte and return them'''
if not size:
data = self.__buf
self.clear()
else:
data = self.__buf[:size]
# The fast delete syntax
self.__buf[:size] = b''
return data
def peek(self, size: int = None) -> bytearray:
'''returns size numbers of byte without removing them'''
if not size:
return self.__buf
return self.__buf[:size]
def clear(self):
self.__buf = bytearray()
def __len__(self) -> int:
return len(self.__buf)
def __str__(self) -> str:
return hex_dump_str(self.__buf, self.__len__())
def logging(self, level, info):
hex_dump_memory(level, info, self.__buf, self.__len__())

View File

@@ -12,81 +12,84 @@ class Config():
Read config.toml file and sanitize it with read().
Get named parts of the config with get()'''
config = {}
act_config = {}
def_config = {}
conf_schema = Schema({
'tsun': {
'enabled': Use(bool),
'host': Use(str),
'port': And(Use(int), lambda n: 1024 <= n <= 65535)
},
'host': Use(str),
'port': And(Use(int), lambda n: 1024 <= n <= 65535)
},
'solarman': {
'enabled': Use(bool),
'host': Use(str),
'port': And(Use(int), lambda n: 1024 <= n <= 65535)
},
'host': Use(str),
'port': And(Use(int), lambda n: 1024 <= n <= 65535)
},
'mqtt': {
'host': Use(str),
'port': And(Use(int), lambda n: 1024 <= n <= 65535),
'user': And(Use(str), Use(lambda s: s if len(s) > 0 else None)),
'passwd': And(Use(str), Use(lambda s: s if len(s) > 0 else None))
},
'host': Use(str),
'port': And(Use(int), lambda n: 1024 <= n <= 65535),
'user': And(Use(str), Use(lambda s: s if len(s) > 0 else None)),
'passwd': And(Use(str), Use(lambda s: s if len(s) > 0 else None))
},
'ha': {
'auto_conf_prefix': Use(str),
'discovery_prefix': Use(str),
'entity_prefix': Use(str),
'proxy_node_id': Use(str),
'proxy_unique_id': Use(str)
},
'entity_prefix': Use(str),
'proxy_node_id': Use(str),
'proxy_unique_id': Use(str)
},
'gen3plus': {
'at_acl': {
Or('mqtt', 'tsun'): {
'allow': [str],
Optional('block', default=[]): [str]
}
}
},
}
},
'inverters': {
'allow_all': Use(bool), And(Use(str), lambda s: len(s) == 16): {
Optional('monitor_sn', default=0): Use(int),
Optional('node_id', default=""): And(Use(str),
Use(lambda s: s + '/'
if len(s) > 0 and
s[-1] != '/' else s)),
if len(s) > 0
and s[-1] != '/'
else s)),
Optional('client_mode'): {
'host': Use(str),
Optional('port', default=8899):
And(Use(int), lambda n: 1024 <= n <= 65535)
},
},
Optional('modbus_polling', default=True): Use(bool),
Optional('suggested_area', default=""): Use(str),
Optional('suggested_area', default=""): Use(str),
Optional('sensor_list', default=0x2b0): Use(int),
Optional('pv1'): {
Optional('type'): Use(str),
Optional('manufacturer'): Use(str),
},
},
Optional('pv2'): {
Optional('type'): Use(str),
Optional('manufacturer'): Use(str),
},
},
Optional('pv3'): {
Optional('type'): Use(str),
Optional('manufacturer'): Use(str),
},
},
Optional('pv4'): {
Optional('type'): Use(str),
Optional('manufacturer'): Use(str),
},
},
Optional('pv5'): {
Optional('type'): Use(str),
Optional('manufacturer'): Use(str),
},
},
Optional('pv6'): {
Optional('type'): Use(str),
Optional('manufacturer'): Use(str),
}
}}
}, ignore_extra_keys=True
)
}
}
}
}, ignore_extra_keys=True
)
@classmethod
def class_init(cls) -> None | str: # pragma: no cover
@@ -146,17 +149,17 @@ class Config():
config[key] |= usr_config[key]
try:
cls.config = cls.conf_schema.validate(config)
cls.act_config = cls.conf_schema.validate(config)
except Exception as error:
err = f'Config.read: {error}'
logging.error(err)
# logging.debug(f'Readed config: "{cls.config}" ')
# logging.debug(f'Readed config: "{cls.act_config}" ')
except Exception as error:
err = f'Config.read: {error}'
logger.error(err)
cls.config = {}
cls.act_config = {}
return err
@@ -166,12 +169,12 @@ class Config():
None it returns the complete config dict'''
if member:
return cls.config.get(member, {})
return cls.act_config.get(member, {})
else:
return cls.config
return cls.act_config
@classmethod
def is_default(cls, member: str) -> bool:
'''Check if the member is the default value'''
return cls.config.get(member) == cls.def_config.get(member)
return cls.act_config.get(member) == cls.def_config.get(member)

View File

@@ -1,41 +0,0 @@
import logging
from asyncio import StreamReader, StreamWriter
from async_stream import AsyncStream
from gen3.talent import Talent
logger = logging.getLogger('conn')
class ConnectionG3(AsyncStream, Talent):
def __init__(self, reader: StreamReader, writer: StreamWriter,
addr, remote_stream: 'ConnectionG3', server_side: bool,
id_str=b'') -> None:
AsyncStream.__init__(self, reader, writer, addr)
Talent.__init__(self, server_side, id_str)
self.remote_stream: 'ConnectionG3' = remote_stream
'''
Our puplic methods
'''
def close(self):
AsyncStream.close(self)
Talent.close(self)
# logger.info(f'AsyncStream refs: {gc.get_referrers(self)}')
async def async_create_remote(self) -> None:
pass # virtual interface
async def async_publ_mqtt(self) -> None:
pass # virtual interface
def healthy(self) -> bool:
logger.debug('ConnectionG3 healthy()')
return AsyncStream.healthy(self)
'''
Our private methods
'''
def __del__(self):
super().__del__()

View File

@@ -10,86 +10,90 @@ else: # pragma: no cover
class RegisterMap:
__slots__ = ()
map = {
0x00092ba8: Register.COLLECTOR_FW_VERSION,
0x000927c0: Register.CHIP_TYPE,
0x00092f90: Register.CHIP_MODEL,
0x00095a88: Register.TRACE_URL,
0x00095aec: Register.LOGGER_URL,
0x0000000a: Register.PRODUCT_NAME,
0x00000014: Register.MANUFACTURER,
0x0000001e: Register.VERSION,
0x00000028: Register.SERIAL_NUMBER,
0x00000032: Register.EQUIPMENT_MODEL,
0x00013880: Register.NO_INPUTS,
0xffffff00: Register.INVERTER_CNT,
0xffffff01: Register.UNKNOWN_SNR,
0xffffff02: Register.UNKNOWN_MSG,
0xffffff03: Register.INVALID_DATA_TYPE,
0xffffff04: Register.INTERNAL_ERROR,
0xffffff05: Register.UNKNOWN_CTRL,
0xffffff06: Register.OTA_START_MSG,
0xffffff07: Register.SW_EXCEPTION,
0xffffff08: Register.MAX_DESIGNED_POWER,
0xffffff09: Register.OUTPUT_COEFFICIENT,
0xffffff0a: Register.INVERTER_STATUS,
0xffffff0b: Register.POLLING_INTERVAL,
0xfffffffe: Register.TEST_REG1,
0xffffffff: Register.TEST_REG2,
0x00000640: Register.OUTPUT_POWER,
0x000005dc: Register.RATED_POWER,
0x00000514: Register.INVERTER_TEMP,
0x000006a4: Register.PV1_VOLTAGE,
0x00000708: Register.PV1_CURRENT,
0x0000076c: Register.PV1_POWER,
0x000007d0: Register.PV2_VOLTAGE,
0x00000834: Register.PV2_CURRENT,
0x00000898: Register.PV2_POWER,
0x000008fc: Register.PV3_VOLTAGE,
0x00000960: Register.PV3_CURRENT,
0x000009c4: Register.PV3_POWER,
0x00000a28: Register.PV4_VOLTAGE,
0x00000a8c: Register.PV4_CURRENT,
0x00000af0: Register.PV4_POWER,
0x00000c1c: Register.PV1_DAILY_GENERATION,
0x00000c80: Register.PV1_TOTAL_GENERATION,
0x00000ce4: Register.PV2_DAILY_GENERATION,
0x00000d48: Register.PV2_TOTAL_GENERATION,
0x00000dac: Register.PV3_DAILY_GENERATION,
0x00000e10: Register.PV3_TOTAL_GENERATION,
0x00000e74: Register.PV4_DAILY_GENERATION,
0x00000ed8: Register.PV4_TOTAL_GENERATION,
0x00000b54: Register.DAILY_GENERATION,
0x00000bb8: Register.TOTAL_GENERATION,
0x000003e8: Register.GRID_VOLTAGE,
0x0000044c: Register.GRID_CURRENT,
0x000004b0: Register.GRID_FREQUENCY,
0x000cfc38: Register.CONNECT_COUNT,
0x000c3500: Register.SIGNAL_STRENGTH,
0x000c96a8: Register.POWER_ON_TIME,
0x000d0020: Register.COLLECT_INTERVAL,
0x000cf850: Register.DATA_UP_INTERVAL,
0x000c7f38: Register.COMMUNICATION_TYPE,
0x00000191: Register.EVENT_401,
0x00000192: Register.EVENT_402,
0x00000193: Register.EVENT_403,
0x00000194: Register.EVENT_404,
0x00000195: Register.EVENT_405,
0x00000196: Register.EVENT_406,
0x00000197: Register.EVENT_407,
0x00000198: Register.EVENT_408,
0x00000199: Register.EVENT_409,
0x0000019a: Register.EVENT_410,
0x0000019b: Register.EVENT_411,
0x0000019c: Register.EVENT_412,
0x0000019d: Register.EVENT_413,
0x0000019e: Register.EVENT_414,
0x0000019f: Register.EVENT_415,
0x000001a0: Register.EVENT_416,
0x00092ba8: {'reg': Register.COLLECTOR_FW_VERSION},
0x000927c0: {'reg': Register.CHIP_TYPE},
0x00092f90: {'reg': Register.CHIP_MODEL},
0x00094ae8: {'reg': Register.MAC_ADDR},
0x00095a88: {'reg': Register.TRACE_URL},
0x00095aec: {'reg': Register.LOGGER_URL},
0x0000000a: {'reg': Register.PRODUCT_NAME},
0x00000014: {'reg': Register.MANUFACTURER},
0x0000001e: {'reg': Register.VERSION},
0x00000028: {'reg': Register.SERIAL_NUMBER},
0x00000032: {'reg': Register.EQUIPMENT_MODEL},
0x00013880: {'reg': Register.NO_INPUTS},
0xffffff00: {'reg': Register.INVERTER_CNT},
0xffffff01: {'reg': Register.UNKNOWN_SNR},
0xffffff02: {'reg': Register.UNKNOWN_MSG},
0xffffff03: {'reg': Register.INVALID_DATA_TYPE},
0xffffff04: {'reg': Register.INTERNAL_ERROR},
0xffffff05: {'reg': Register.UNKNOWN_CTRL},
0xffffff06: {'reg': Register.OTA_START_MSG},
0xffffff07: {'reg': Register.SW_EXCEPTION},
0xffffff08: {'reg': Register.POLLING_INTERVAL},
0xfffffffe: {'reg': Register.TEST_REG1},
0xffffffff: {'reg': Register.TEST_REG2},
0x00000640: {'reg': Register.OUTPUT_POWER},
0x000005dc: {'reg': Register.RATED_POWER},
0x00000514: {'reg': Register.INVERTER_TEMP},
0x000006a4: {'reg': Register.PV1_VOLTAGE},
0x00000708: {'reg': Register.PV1_CURRENT},
0x0000076c: {'reg': Register.PV1_POWER},
0x000007d0: {'reg': Register.PV2_VOLTAGE},
0x00000834: {'reg': Register.PV2_CURRENT},
0x00000898: {'reg': Register.PV2_POWER},
0x000008fc: {'reg': Register.PV3_VOLTAGE},
0x00000960: {'reg': Register.PV3_CURRENT},
0x000009c4: {'reg': Register.PV3_POWER},
0x00000a28: {'reg': Register.PV4_VOLTAGE},
0x00000a8c: {'reg': Register.PV4_CURRENT},
0x00000af0: {'reg': Register.PV4_POWER},
0x00000c1c: {'reg': Register.PV1_DAILY_GENERATION},
0x00000c80: {'reg': Register.PV1_TOTAL_GENERATION},
0x00000ce4: {'reg': Register.PV2_DAILY_GENERATION},
0x00000d48: {'reg': Register.PV2_TOTAL_GENERATION},
0x00000dac: {'reg': Register.PV3_DAILY_GENERATION},
0x00000e10: {'reg': Register.PV3_TOTAL_GENERATION},
0x00000e74: {'reg': Register.PV4_DAILY_GENERATION},
0x00000ed8: {'reg': Register.PV4_TOTAL_GENERATION},
0x00000b54: {'reg': Register.DAILY_GENERATION},
0x00000bb8: {'reg': Register.TOTAL_GENERATION},
0x000003e8: {'reg': Register.GRID_VOLTAGE},
0x0000044c: {'reg': Register.GRID_CURRENT},
0x000004b0: {'reg': Register.GRID_FREQUENCY},
0x000cfc38: {'reg': Register.CONNECT_COUNT},
0x000c3500: {'reg': Register.SIGNAL_STRENGTH},
0x000c96a8: {'reg': Register.POWER_ON_TIME},
0x000d0020: {'reg': Register.COLLECT_INTERVAL},
0x000cf850: {'reg': Register.DATA_UP_INTERVAL},
0x000c7f38: {'reg': Register.COMMUNICATION_TYPE},
0x00000191: {'reg': Register.EVENT_401},
0x00000192: {'reg': Register.EVENT_402},
0x00000193: {'reg': Register.EVENT_403},
0x00000194: {'reg': Register.EVENT_404},
0x00000195: {'reg': Register.EVENT_405},
0x00000196: {'reg': Register.EVENT_406},
0x00000197: {'reg': Register.EVENT_407},
0x00000198: {'reg': Register.EVENT_408},
0x00000199: {'reg': Register.EVENT_409},
0x0000019a: {'reg': Register.EVENT_410},
0x0000019b: {'reg': Register.EVENT_411},
0x0000019c: {'reg': Register.EVENT_412},
0x0000019d: {'reg': Register.EVENT_413},
0x0000019e: {'reg': Register.EVENT_414},
0x0000019f: {'reg': Register.EVENT_415},
0x000001a0: {'reg': Register.EVENT_416},
0x00000064: {'reg': Register.INVERTER_STATUS},
0x0000125c: {'reg': Register.MAX_DESIGNED_POWER},
0x00003200: {'reg': Register.OUTPUT_COEFFICIENT, 'ratio': 100/1024},
}
class InfosG3(Infos):
__slots__ = ()
def ha_confs(self, ha_prfx: str, node_id: str, snr: str,
sug_area: str = '') \
@@ -103,7 +107,8 @@ class InfosG3(Infos):
entity strings
sug_area:str ==> suggested area string from the config file'''
# iterate over RegisterMap.map and get the register values
for reg in RegisterMap.map.values():
for row in RegisterMap.map.values():
reg = row['reg']
res = self.ha_conf(reg, ha_prfx, node_id, snr, False, sug_area) # noqa: E501
if res:
yield res
@@ -122,9 +127,11 @@ class InfosG3(Infos):
result = struct.unpack_from('!lB', buf, ind)
addr = result[0]
if addr not in RegisterMap.map:
row = None
info_id = -1
else:
info_id = RegisterMap.map[addr]
row = RegisterMap.map[addr]
info_id = row['reg']
data_type = result[1]
ind += 5
@@ -139,7 +146,6 @@ class InfosG3(Infos):
i = elms # abort the loop
elif data_type == 0x41: # 'A' -> Nop ??
# result = struct.unpack_from('!l', buf, ind)[0]
ind += 0
i += 1
continue
@@ -171,17 +177,27 @@ class InfosG3(Infos):
" not supported")
return
keys, level, unit, must_incr = self._key_obj(info_id)
if keys:
name, update = self.update_db(keys, must_incr, result)
yield keys[0], update
else:
update = False
name = str(f'info-id.0x{addr:x}')
if update:
self.tracer.log(level, f'[{node_id}] GEN3: {name} :'
f' {result}{unit}')
result = self.__modify_val(row, result)
yield from self.__store_result(addr, result, info_id, node_id)
i += 1
def __modify_val(self, row, result):
if row:
if 'eval' in row:
result = eval(row['eval'])
if 'ratio' in row:
result = round(result * row['ratio'], 2)
return result
def __store_result(self, addr, result, info_id, node_id):
keys, level, unit, must_incr = self._key_obj(info_id)
if keys:
name, update = self.update_db(keys, must_incr, result)
yield keys[0], update
else:
update = False
name = str(f'info-id.0x{addr:x}')
if update:
self.tracer.log(level, f'[{node_id}] GEN3: {name} :'
f' {result}{unit}')

View File

@@ -1,130 +1,12 @@
import logging
import traceback
import json
import asyncio
from asyncio import StreamReader, StreamWriter
from config import Config
from inverter import Inverter
from gen3.connection_g3 import ConnectionG3
from aiomqtt import MqttCodeError
from infos import Infos
if __name__ == "app.src.gen3.inverter_g3":
from app.src.inverter_base import InverterBase
from app.src.gen3.talent import Talent
else: # pragma: no cover
from inverter_base import InverterBase
from gen3.talent import Talent
logger_mqtt = logging.getLogger('mqtt')
class InverterG3(Inverter, ConnectionG3):
'''class Inverter is a derivation of an Async_Stream
The class has some class method for managing common resources like a
connection to the MQTT broker or proxy error counter which are common
for all inverter connection
Instances of the class are connections to an inverter and can have an
optional link to an remote connection to the TSUN cloud. A remote
connection dies with the inverter connection.
class methods:
class_init(): initialize the common resources of the proxy (MQTT
broker, Proxy DB, etc). Must be called before the
first inverter instance can be created
class_close(): release the common resources of the proxy. Should not
be called before any instances of the class are
destroyed
methods:
server_loop(addr): Async loop method for receiving messages from the
inverter (server-side)
client_loop(addr): Async loop method for receiving messages from the
TSUN cloud (client-side)
async_create_remote(): Establish a client connection to the TSUN cloud
async_publ_mqtt(): Publish data to MQTT broker
close(): Release method which must be called before a instance can be
destroyed
'''
def __init__(self, reader: StreamReader, writer: StreamWriter, addr):
super().__init__(reader, writer, addr, None, True)
self.__ha_restarts = -1
async def async_create_remote(self) -> None:
'''Establish a client connection to the TSUN cloud'''
tsun = Config.get('tsun')
host = tsun['host']
port = tsun['port']
addr = (host, port)
try:
logging.info(f'[{self.node_id}] Connect to {addr}')
connect = asyncio.open_connection(host, port)
reader, writer = await connect
self.remote_stream = ConnectionG3(reader, writer, addr, self,
False, self.id_str)
logging.info(f'[{self.remote_stream.node_id}:'
f'{self.remote_stream.conn_no}] '
f'Connected to {addr}')
asyncio.create_task(self.client_loop(addr))
except (ConnectionRefusedError, TimeoutError) as error:
logging.info(f'{error}')
except Exception:
self.inc_counter('SW_Exception')
logging.error(
f"Inverter: Exception for {addr}:\n"
f"{traceback.format_exc()}")
async def async_publ_mqtt(self) -> None:
'''publish data to MQTT broker'''
# check if new inverter or collector infos are available or when the
# home assistant has changed the status back to online
try:
if (('inverter' in self.new_data and self.new_data['inverter'])
or ('collector' in self.new_data and
self.new_data['collector'])
or self.mqtt.ha_restarts != self.__ha_restarts):
await self._register_proxy_stat_home_assistant()
await self.__register_home_assistant()
self.__ha_restarts = self.mqtt.ha_restarts
for key in self.new_data:
await self.__async_publ_mqtt_packet(key)
for key in Infos.new_stat_data:
await self._async_publ_mqtt_proxy_stat(key)
except MqttCodeError as error:
logging.error(f'Mqtt except: {error}')
except Exception:
self.inc_counter('SW_Exception')
logging.error(
f"Inverter: Exception:\n"
f"{traceback.format_exc()}")
async def __async_publ_mqtt_packet(self, key):
db = self.db.db
if key in db and self.new_data[key]:
data_json = json.dumps(db[key])
node_id = self.node_id
logger_mqtt.debug(f'{key}: {data_json}')
await self.mqtt.publish(f'{self.entity_prfx}{node_id}{key}', data_json) # noqa: E501
self.new_data[key] = False
async def __register_home_assistant(self) -> None:
'''register all our topics at home assistant'''
for data_json, component, node_id, id in self.db.ha_confs(
self.entity_prfx, self.node_id, self.unique_id,
self.sug_area):
logger_mqtt.debug(f"MQTT Register: cmp:'{component}'"
f" node_id:'{node_id}' {data_json}")
await self.mqtt.publish(f"{self.discovery_prfx}{component}"
f"/{node_id}{id}/config", data_json)
self.db.reg_clr_at_midnight(f'{self.entity_prfx}{self.node_id}')
def close(self) -> None:
logging.debug(f'InverterG3.close() l{self.l_addr} | r{self.r_addr}')
super().close() # call close handler in the parent class
# logging.info(f'Inverter refs: {gc.get_referrers(self)}')
def __del__(self):
logging.debug("InverterG3.__del__")
super().__del__()
class InverterG3(InverterBase):
def __init__(self, reader: StreamReader, writer: StreamWriter):
super().__init__(reader, writer, 'tsun', Talent)

View File

@@ -1,18 +1,20 @@
import struct
import logging
import pytz
from zoneinfo import ZoneInfo
from datetime import datetime
from tzlocal import get_localzone
if __name__ == "app.src.gen3.talent":
from app.src.messages import hex_dump_memory, Message, State
from app.src.async_ifc import AsyncIfc
from app.src.messages import Message, State
from app.src.modbus import Modbus
from app.src.my_timer import Timer
from app.src.config import Config
from app.src.gen3.infos_g3 import InfosG3
from app.src.infos import Register
else: # pragma: no cover
from messages import hex_dump_memory, Message, State
from async_ifc import AsyncIfc
from messages import Message, State
from modbus import Modbus
from my_timer import Timer
from config import Config
@@ -42,9 +44,18 @@ class Control:
class Talent(Message):
MB_START_TIMEOUT = 40
MB_REGULAR_TIMEOUT = 60
TXT_UNKNOWN_CTRL = 'Unknown Ctrl'
def __init__(self, server_side: bool, id_str=b''):
def __init__(self, addr, ifc: "AsyncIfc", server_side: bool,
client_mode: bool = False, id_str=b''):
super().__init__(server_side, self.send_modbus_cb, mb_timeout=15)
ifc.rx_set_cb(self.read)
ifc.prot_set_timeout_cb(self._timeout)
ifc.prot_set_init_new_client_conn_cb(self._init_new_client_conn)
ifc.prot_set_update_header_cb(self._update_header)
self.addr = addr
self.ifc = ifc
self.conn_no = ifc.get_conn_no()
self.await_conn_resp_cnt = 0
self.id_str = id_str
self.contact_name = b''
@@ -55,27 +66,31 @@ class Talent(Message):
0x00: self.msg_contact_info,
0x13: self.msg_ota_update,
0x22: self.msg_get_time,
0x99: self.msg_heartbeat,
0x71: self.msg_collector_data,
# 0x76:
0x77: self.msg_modbus,
# 0x78:
0x87: self.msg_modbus2,
0x04: self.msg_inverter_data,
}
self.log_lvl = {
0x00: logging.INFO,
0x13: logging.INFO,
0x22: logging.INFO,
0x99: logging.INFO,
0x71: logging.INFO,
# 0x76:
0x77: self.get_modbus_log_lvl,
# 0x78:
0x87: self.get_modbus_log_lvl,
0x04: logging.INFO,
}
self.modbus_elms = 0 # for unit tests
self.node_id = 'G3' # will be overwritten in __set_serial_no
self.mb_timer = Timer(self.mb_timout_cb, self.node_id)
self.mb_timeout = self.MB_REGULAR_TIMEOUT
self.mb_start_timeout = self.MB_START_TIMEOUT
self.mb_first_timeout = self.MB_START_TIMEOUT
self.modbus_polling = False
'''
@@ -98,6 +113,11 @@ class Talent(Message):
self.log_lvl.clear()
self.state = State.closed
self.mb_timer.close()
self.ifc.rx_set_cb(None)
self.ifc.prot_set_timeout_cb(None)
self.ifc.prot_set_init_new_client_conn_cb(None)
self.ifc.prot_set_update_header_cb(None)
self.ifc = None
super().close()
def __set_serial_no(self, serial_no: str):
@@ -126,16 +146,17 @@ class Talent(Message):
logger.debug(f'SerialNo {serial_no} not known but accepted!')
self.unique_id = serial_no
self.db.set_db_def_value(Register.COLLECTOR_SNR, serial_no)
def read(self) -> float:
'''process all received messages in the _recv_buffer'''
self._read()
while True:
if not self.header_valid:
self.__parse_header(self._recv_buffer, len(self._recv_buffer))
self.__parse_header(self.ifc.rx_peek(), self.ifc.rx_len())
if self.header_valid and \
len(self._recv_buffer) >= (self.header_len + self.data_len):
self.ifc.rx_len() >= (self.header_len + self.data_len):
if self.state == State.init:
self.state = State.received # received 1st package
@@ -143,11 +164,10 @@ class Talent(Message):
if callable(log_lvl):
log_lvl = log_lvl()
hex_dump_memory(log_lvl, f'Received from {self.addr}:'
f' BufLen: {len(self._recv_buffer)}'
self.ifc.rx_log(log_lvl, f'Received from {self.addr}:'
f' BufLen: {self.ifc.rx_len()}'
f' HdrLen: {self.header_len}'
f' DtaLen: {self.data_len}',
self._recv_buffer, len(self._recv_buffer))
f' DtaLen: {self.data_len}')
self.__set_serial_no(self.id_str.decode("utf-8"))
self.__dispatch_msg()
@@ -159,11 +179,10 @@ class Talent(Message):
'''add the actual receive msg to the forwarding queue'''
tsun = Config.get('tsun')
if tsun['enabled']:
buffer = self._recv_buffer
buflen = self.header_len+self.data_len
self._forward_buffer += buffer[:buflen]
hex_dump_memory(logging.DEBUG, 'Store for forwarding:',
buffer, buflen)
buffer = self.ifc.rx_peek(buflen)
self.ifc.fwd_add(buffer)
self.ifc.fwd_log(logging.DEBUG, 'Store for forwarding:')
fnc = self.switch.get(self.msg_id, self.msg_unknown)
logger.info(self.__flow_str(self.server_side, 'forwrd') +
@@ -176,15 +195,13 @@ class Talent(Message):
return
self.__build_header(0x70, 0x77)
self._send_buffer += b'\x00\x01\xa3\x28' # fixme
self._send_buffer += struct.pack('!B', len(modbus_pdu))
self._send_buffer += modbus_pdu
self.ifc.tx_add(b'\x00\x01\xa3\x28') # magic ?
self.ifc.tx_add(struct.pack('!B', len(modbus_pdu)))
self.ifc.tx_add(modbus_pdu)
self.__finish_send_msg()
hex_dump_memory(log_lvl, f'Send Modbus {state}:{self.addr}:',
self._send_buffer, len(self._send_buffer))
self.writer.write(self._send_buffer)
self._send_buffer = bytearray(0) # self._send_buffer[sent:]
self.ifc.tx_log(log_lvl, f'Send Modbus {state}:{self.addr}:')
self.ifc.tx_flush()
def _send_modbus_cmd(self, func, addr, val, log_lvl) -> None:
if self.state != State.up:
@@ -212,9 +229,9 @@ class Talent(Message):
self.msg_id = 0
self.await_conn_resp_cnt += 1
self.__build_header(0x91)
self._send_buffer += struct.pack(f'!{len(contact_name)+1}p'
f'{len(contact_mail)+1}p',
contact_name, contact_mail)
self.ifc.tx_add(struct.pack(f'!{len(contact_name)+1}p'
f'{len(contact_mail)+1}p',
contact_name, contact_mail))
self.__finish_send_msg()
return True
@@ -246,7 +263,7 @@ class Talent(Message):
def _utcfromts(self, ts: float):
'''converts inverter timestamp into unix time (epoche)'''
dt = datetime.fromtimestamp(ts/1000, pytz.UTC). \
dt = datetime.fromtimestamp(ts/1000, tz=ZoneInfo("UTC")). \
replace(tzinfo=get_localzone())
return dt.timestamp()
@@ -293,6 +310,13 @@ class Talent(Message):
result = struct.unpack_from('!lB', buf, 0)
msg_len = result[0] # len of complete message
id_len = result[1] # len of variable id string
if id_len > 17:
logger.warning(f'len of ID string must == 16 but is {id_len}')
self.inc_counter('Invalid_Msg_Format')
# erase broken recv buffer
self.ifc.rx_clear()
return
hdr_len = 5+id_len+2
@@ -312,16 +336,17 @@ class Talent(Message):
def __build_header(self, ctrl, msg_id=None) -> None:
if not msg_id:
msg_id = self.msg_id
self.send_msg_ofs = len(self._send_buffer)
self._send_buffer += struct.pack(f'!l{len(self.id_str)+1}pBB',
0, self.id_str, ctrl, msg_id)
self.send_msg_ofs = self.ifc.tx_len()
self.ifc.tx_add(struct.pack(f'!l{len(self.id_str)+1}pBB',
0, self.id_str, ctrl, msg_id))
fnc = self.switch.get(msg_id, self.msg_unknown)
logger.info(self.__flow_str(self.server_side, 'tx') +
f' Ctl: {int(ctrl):#02x} Msg: {fnc.__name__!r}')
def __finish_send_msg(self) -> None:
_len = len(self._send_buffer) - self.send_msg_ofs
struct.pack_into('!l', self._send_buffer, self.send_msg_ofs, _len-4)
_len = self.ifc.tx_len() - self.send_msg_ofs
struct.pack_into('!l', self.ifc.tx_peek(), self.send_msg_ofs,
_len-4)
def __dispatch_msg(self) -> None:
fnc = self.switch.get(self.msg_id, self.msg_unknown)
@@ -335,7 +360,7 @@ class Talent(Message):
f' Ctl: {int(self.ctrl):#02x} Msg: {fnc.__name__!r}')
def __flush_recv_msg(self) -> None:
self._recv_buffer = self._recv_buffer[(self.header_len+self.data_len):]
self.ifc.rx_get(self.header_len+self.data_len)
self.header_valid = False
'''
@@ -345,7 +370,7 @@ class Talent(Message):
if self.ctrl.is_ind():
if self.server_side and self.__process_contact_info():
self.__build_header(0x91)
self._send_buffer += b'\x01'
self.ifc.tx_add(b'\x01')
self.__finish_send_msg()
# don't forward this contact info here, we will build one
# when the remote connection is established
@@ -354,24 +379,26 @@ class Talent(Message):
else:
self.forward()
else:
logger.warning('Unknown Ctrl')
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()
def __process_contact_info(self) -> bool:
result = struct.unpack_from('!B', self._recv_buffer, self.header_len)
buf = self.ifc.rx_peek()
result = struct.unpack_from('!B', buf, self.header_len)
name_len = result[0]
if self.data_len < name_len+2:
if self.data_len == 1: # this is a response withone status byte
return False
result = struct.unpack_from(f'!{name_len+1}pB', self._recv_buffer,
self.header_len)
self.contact_name = result[0]
mail_len = result[1]
logger.info(f'name: {self.contact_name}')
if self.data_len >= name_len+2:
result = struct.unpack_from(f'!{name_len+1}pB', buf,
self.header_len)
self.contact_name = result[0]
mail_len = result[1]
logger.info(f'name: {self.contact_name}')
result = struct.unpack_from(f'!{mail_len+1}p', self._recv_buffer,
self.header_len+name_len+1)
self.contact_mail = result[0]
result = struct.unpack_from(f'!{mail_len+1}p', buf,
self.header_len+name_len+1)
self.contact_mail = result[0]
logger.info(f'mail: {self.contact_mail}')
return True
@@ -384,26 +411,62 @@ class Talent(Message):
ts = self._timestamp()
logger.debug(f'time: {ts:08x}')
self.__build_header(0x91)
self._send_buffer += struct.pack('!q', ts)
self.ifc.tx_add(struct.pack('!q', ts))
self.__finish_send_msg()
elif self.data_len >= 8:
ts = self._timestamp()
result = struct.unpack_from('!q', self._recv_buffer,
result = struct.unpack_from('!q', self.ifc.rx_peek(),
self.header_len)
self.ts_offset = result[0]-ts
if self.ifc.remote.stream:
self.ifc.remote.stream.ts_offset = self.ts_offset
logger.debug(f'tsun-time: {int(result[0]):08x}'
f' proxy-time: {ts:08x}'
f' offset: {self.ts_offset}')
return # ignore received response
else:
logger.warning('Unknown Ctrl')
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()
def msg_heartbeat(self):
if self.ctrl.is_ind():
if self.data_len == 9:
self.state = State.up # allow MODBUS cmds
if (self.modbus_polling):
self.mb_timer.start(self.mb_first_timeout)
self.db.set_db_def_value(Register.POLLING_INTERVAL,
self.mb_timeout)
self.__build_header(0x99)
self.ifc.tx_add(b'\x02')
self.__finish_send_msg()
result = struct.unpack_from('!Bq', self.ifc.rx_peek(),
self.header_len)
resp_code = result[0]
ts = result[1]+self.ts_offset
logger.debug(f'inv-time: {int(result[1]):08x}'
f' tsun-time: {ts:08x}'
f' offset: {self.ts_offset}')
struct.pack_into('!Bq', self.ifc.rx_peek(),
self.header_len, resp_code, ts)
elif self.ctrl.is_resp():
result = struct.unpack_from('!B', self.ifc.rx_peek(),
self.header_len)
resp_code = result[0]
logging.debug(f'Heartbeat-RespCode: {resp_code}')
return
else:
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()
def parse_msg_header(self):
result = struct.unpack_from('!lB', self._recv_buffer, self.header_len)
result = struct.unpack_from('!lB', self.ifc.rx_peek(),
self.header_len)
data_id = result[0] # len of complete message
id_len = result[1] # len of variable id string
@@ -411,7 +474,7 @@ class Talent(Message):
msg_hdr_len = 5+id_len+9
result = struct.unpack_from(f'!{id_len+1}pBq', self._recv_buffer,
result = struct.unpack_from(f'!{id_len+1}pBq', self.ifc.rx_peek(),
self.header_len + 4)
timestamp = result[2]
@@ -424,14 +487,14 @@ class Talent(Message):
def msg_collector_data(self):
if self.ctrl.is_ind():
self.__build_header(0x99)
self._send_buffer += b'\x01'
self.ifc.tx_add(b'\x01')
self.__finish_send_msg()
self.__process_data()
elif self.ctrl.is_resp():
return # ignore received response
else:
logger.warning('Unknown Ctrl')
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()
@@ -439,19 +502,19 @@ class Talent(Message):
def msg_inverter_data(self):
if self.ctrl.is_ind():
self.__build_header(0x99)
self._send_buffer += b'\x01'
self.ifc.tx_add(b'\x01')
self.__finish_send_msg()
self.__process_data()
self.state = State.up # allow MODBUS cmds
if (self.modbus_polling):
self.mb_timer.start(self.mb_start_timeout)
self.mb_timer.start(self.mb_first_timeout)
self.db.set_db_def_value(Register.POLLING_INTERVAL,
self.mb_timeout)
elif self.ctrl.is_resp():
return # ignore received response
else:
logger.warning('Unknown Ctrl')
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()
@@ -459,7 +522,7 @@ class Talent(Message):
def __process_data(self):
msg_hdr_len, ts = self.parse_msg_header()
for key, update in self.db.parse(self._recv_buffer, self.header_len
for key, update in self.db.parse(self.ifc.rx_peek(), self.header_len
+ msg_hdr_len, self.node_id):
if update:
self._set_mqtt_timestamp(key, self._utcfromts(ts))
@@ -471,7 +534,7 @@ class Talent(Message):
elif self.ctrl.is_ind():
pass # Ok, nothing to do
else:
logger.warning('Unknown Ctrl')
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()
@@ -479,11 +542,20 @@ class Talent(Message):
msg_hdr_len = 5
result = struct.unpack_from('!lBB', self._recv_buffer,
result = struct.unpack_from('!lBB', self.ifc.rx_peek(),
self.header_len)
modbus_len = result[1]
return msg_hdr_len, modbus_len
def parse_modbus_header2(self):
msg_hdr_len = 6
result = struct.unpack_from('!lBBB', self.ifc.rx_peek(),
self.header_len)
modbus_len = result[2]
return msg_hdr_len, modbus_len
def get_modbus_log_lvl(self) -> int:
if self.ctrl.is_req():
return logging.INFO
@@ -493,13 +565,19 @@ class Talent(Message):
def msg_modbus(self):
hdr_len, _ = self.parse_modbus_header()
data = self._recv_buffer[self.header_len:
self.header_len+self.data_len]
self.__msg_modbus(hdr_len)
def msg_modbus2(self):
hdr_len, _ = self.parse_modbus_header2()
self.__msg_modbus(hdr_len)
def __msg_modbus(self, hdr_len):
data = self.ifc.rx_peek()[self.header_len:
self.header_len+self.data_len]
if self.ctrl.is_req():
if self.remote_stream.mb.recv_req(data[hdr_len:],
self.remote_stream.
msg_forward):
rstream = self.ifc.remote.stream
if rstream.mb.recv_req(data[hdr_len:], rstream.msg_forward):
self.inc_counter('Modbus_Command')
else:
self.inc_counter('Invalid_Msg_Format')
@@ -519,7 +597,7 @@ class Talent(Message):
self.new_data[key] = True
self.modbus_elms += 1 # count for unit tests
else:
logger.warning('Unknown Ctrl')
logger.warning(self.TXT_UNKNOWN_CTRL)
self.inc_counter('Unknown_Ctrl')
self.forward()

View File

@@ -1,42 +0,0 @@
import logging
from asyncio import StreamReader, StreamWriter
from async_stream import AsyncStream
from gen3plus.solarman_v5 import SolarmanV5
logger = logging.getLogger('conn')
class ConnectionG3P(AsyncStream, SolarmanV5):
def __init__(self, reader: StreamReader, writer: StreamWriter,
addr, remote_stream: 'ConnectionG3P',
server_side: bool,
client_mode: bool) -> None:
AsyncStream.__init__(self, reader, writer, addr)
SolarmanV5.__init__(self, server_side, client_mode)
self.remote_stream: 'ConnectionG3P' = remote_stream
'''
Our puplic methods
'''
def close(self):
AsyncStream.close(self)
SolarmanV5.close(self)
# logger.info(f'AsyncStream refs: {gc.get_referrers(self)}')
async def async_create_remote(self) -> None:
pass # virtual interface
async def async_publ_mqtt(self) -> None:
pass # virtual interface
def healthy(self) -> bool:
logger.debug('ConnectionG3P healthy()')
return AsyncStream.healthy(self)
'''
Our private methods
'''
def __del__(self):
super().__del__()

View File

@@ -10,8 +10,8 @@ else: # pragma: no cover
class RegisterMap:
# make the class read/only by using __slots__
__slots__ = ()
map = {
# 0x41020007: {'reg': Register.DEVICE_SNR, 'fmt': '<L'}, # noqa: E501
0x41020018: {'reg': Register.DATA_UP_INTERVAL, 'fmt': '<B', 'ratio': 60, 'dep': ProxyMode.SERVER}, # noqa: E501
@@ -19,10 +19,13 @@ class RegisterMap:
0x4102001a: {'reg': Register.HEARTBEAT_INTERVAL, 'fmt': '<B', 'ratio': 1}, # noqa: E501
0x4102001c: {'reg': Register.SIGNAL_STRENGTH, 'fmt': '<B', 'ratio': 1, 'dep': ProxyMode.SERVER}, # noqa: E501
0x4102001e: {'reg': Register.CHIP_MODEL, 'fmt': '!40s'}, # noqa: E501
0x41020046: {'reg': Register.MAC_ADDR, 'fmt': '!BBBBBB', 'eval': '"%02x:%02x:%02x:%02x:%02x:%02x" % res'}, # noqa: E501
0x4102004c: {'reg': Register.IP_ADDRESS, 'fmt': '!16s'}, # noqa: E501
0x4102005f: {'reg': Register.SENSOR_LIST, 'fmt': '<H', 'eval': "f'{result:04x}'"}, # noqa: E501
0x41020064: {'reg': Register.COLLECTOR_FW_VERSION, 'fmt': '!40s'}, # noqa: E501
0x4201001c: {'reg': Register.POWER_ON_TIME, 'fmt': '<H', 'ratio': 1, 'dep': ProxyMode.SERVER}, # noqa: E501
0x4201000c: {'reg': Register.SENSOR_LIST, 'fmt': '<H', 'eval': "f'{result:04x}'"}, # noqa: E501
0x4201001c: {'reg': Register.POWER_ON_TIME, 'fmt': '<H', 'ratio': 1, 'dep': ProxyMode.SERVER}, # noqa: E501, or packet number
0x42010020: {'reg': Register.SERIAL_NUMBER, 'fmt': '!16s'}, # noqa: E501
0x420100c0: {'reg': Register.INVERTER_STATUS, 'fmt': '!H'}, # noqa: E501
0x420100d0: {'reg': Register.VERSION, 'fmt': '!H', 'eval': "f'V{(result>>12)}.{(result>>8)&0xf}.{(result>>4)&0xf}{result&0xf}'"}, # noqa: E501
@@ -57,7 +60,7 @@ class RegisterMap:
0x42010112: {'reg': Register.PV4_TOTAL_GENERATION, 'fmt': '!L', 'ratio': 0.01}, # noqa: E501
0x42010126: {'reg': Register.MAX_DESIGNED_POWER, 'fmt': '!H', 'ratio': 1}, # noqa: E501
0xffffff01: {'reg': Register.OUTPUT_COEFFICIENT},
0x42010170: {'reg': Register.OUTPUT_COEFFICIENT, 'fmt': '!H', 'ratio': 100/1024}, # noqa: E501
0xffffff02: {'reg': Register.POLLING_INTERVAL},
# 0x4281001c: {'reg': Register.POWER_ON_TIME, 'fmt': '<H', 'ratio': 1}, # noqa: E501
@@ -65,6 +68,8 @@ class RegisterMap:
class InfosG3P(Infos):
__slots__ = ('client_mode', )
def __init__(self, client_mode: bool):
super().__init__()
self.client_mode = client_mode
@@ -118,15 +123,7 @@ class InfosG3P(Infos):
if not isinstance(row, dict):
continue
info_id = row['reg']
fmt = row['fmt']
res = struct.unpack_from(fmt, buf, addr)
result = res[0]
if isinstance(result, (bytearray, bytes)):
result = result.decode().split('\x00')[0]
if 'eval' in row:
result = eval(row['eval'])
if 'ratio' in row:
result = round(result * row['ratio'], 2)
result = self.__get_value(buf, addr, row)
keys, level, unit, must_incr = self._key_obj(info_id)
@@ -140,3 +137,16 @@ class InfosG3P(Infos):
if update:
self.tracer.log(level, f'[{node_id}] GEN3PLUS: {name}'
f' : {result}{unit}')
def __get_value(self, buf, idx, row):
'''Get a value from buf and interpret as in row'''
fmt = row['fmt']
res = struct.unpack_from(fmt, buf, idx)
result = res[0]
if isinstance(result, (bytearray, bytes)):
result = result.decode().split('\x00')[0]
if 'eval' in row:
result = eval(row['eval'])
if 'ratio' in row:
result = round(result * row['ratio'], 2)
return result

View File

@@ -1,133 +1,15 @@
import logging
import traceback
import json
import asyncio
from asyncio import StreamReader, StreamWriter
from config import Config
from inverter import Inverter
from gen3plus.connection_g3p import ConnectionG3P
from aiomqtt import MqttCodeError
from infos import Infos
if __name__ == "app.src.gen3plus.inverter_g3p":
from app.src.inverter_base import InverterBase
from app.src.gen3plus.solarman_v5 import SolarmanV5
else: # pragma: no cover
from inverter_base import InverterBase
from gen3plus.solarman_v5 import SolarmanV5
logger_mqtt = logging.getLogger('mqtt')
class InverterG3P(Inverter, ConnectionG3P):
'''class Inverter is a derivation of an Async_Stream
The class has some class method for managing common resources like a
connection to the MQTT broker or proxy error counter which are common
for all inverter connection
Instances of the class are connections to an inverter and can have an
optional link to an remote connection to the TSUN cloud. A remote
connection dies with the inverter connection.
class methods:
class_init(): initialize the common resources of the proxy (MQTT
broker, Proxy DB, etc). Must be called before the
first inverter instance can be created
class_close(): release the common resources of the proxy. Should not
be called before any instances of the class are
destroyed
methods:
server_loop(addr): Async loop method for receiving messages from the
inverter (server-side)
client_loop(addr): Async loop method for receiving messages from the
TSUN cloud (client-side)
async_create_remote(): Establish a client connection to the TSUN cloud
async_publ_mqtt(): Publish data to MQTT broker
close(): Release method which must be called before a instance can be
destroyed
'''
def __init__(self, reader: StreamReader, writer: StreamWriter, addr,
class InverterG3P(InverterBase):
def __init__(self, reader: StreamReader, writer: StreamWriter,
client_mode: bool = False):
super().__init__(reader, writer, addr, None,
server_side=True, client_mode=client_mode)
self.__ha_restarts = -1
async def async_create_remote(self) -> None:
'''Establish a client connection to the TSUN cloud'''
tsun = Config.get('solarman')
host = tsun['host']
port = tsun['port']
addr = (host, port)
try:
logging.info(f'[{self.node_id}] Connect to {addr}')
connect = asyncio.open_connection(host, port)
reader, writer = await connect
self.remote_stream = ConnectionG3P(reader, writer, addr, self,
server_side=False,
client_mode=False)
logging.info(f'[{self.remote_stream.node_id}:'
f'{self.remote_stream.conn_no}] '
f'Connected to {addr}')
asyncio.create_task(self.client_loop(addr))
except (ConnectionRefusedError, TimeoutError) as error:
logging.info(f'{error}')
except Exception:
self.inc_counter('SW_Exception')
logging.error(
f"Inverter: Exception for {addr}:\n"
f"{traceback.format_exc()}")
async def async_publ_mqtt(self) -> None:
'''publish data to MQTT broker'''
# check if new inverter or collector infos are available or when the
# home assistant has changed the status back to online
try:
if (('inverter' in self.new_data and self.new_data['inverter'])
or ('collector' in self.new_data and
self.new_data['collector'])
or self.mqtt.ha_restarts != self.__ha_restarts):
await self._register_proxy_stat_home_assistant()
await self.__register_home_assistant()
self.__ha_restarts = self.mqtt.ha_restarts
for key in self.new_data:
await self.__async_publ_mqtt_packet(key)
for key in Infos.new_stat_data:
await self._async_publ_mqtt_proxy_stat(key)
except MqttCodeError as error:
logging.error(f'Mqtt except: {error}')
except Exception:
self.inc_counter('SW_Exception')
logging.error(
f"Inverter: Exception:\n"
f"{traceback.format_exc()}")
async def __async_publ_mqtt_packet(self, key):
db = self.db.db
if key in db and self.new_data[key]:
data_json = json.dumps(db[key])
node_id = self.node_id
logger_mqtt.debug(f'{key}: {data_json}')
await self.mqtt.publish(f'{self.entity_prfx}{node_id}{key}', data_json) # noqa: E501
self.new_data[key] = False
async def __register_home_assistant(self) -> None:
'''register all our topics at home assistant'''
for data_json, component, node_id, id in self.db.ha_confs(
self.entity_prfx, self.node_id, self.unique_id,
self.sug_area):
logger_mqtt.debug(f"MQTT Register: cmp:'{component}'"
f" node_id:'{node_id}' {data_json}")
await self.mqtt.publish(f"{self.discovery_prfx}{component}"
f"/{node_id}{id}/config", data_json)
self.db.reg_clr_at_midnight(f'{self.entity_prfx}{self.node_id}')
def close(self) -> None:
logging.debug(f'InverterG3P.close() l{self.l_addr} | r{self.r_addr}')
super().close() # call close handler in the parent class
# logger.debug (f'Inverter refs: {gc.get_referrers(self)}')
def __del__(self):
logging.debug("InverterG3P.__del__")
super().__del__()
super().__init__(reader, writer, 'solarman',
SolarmanV5, client_mode)

View File

@@ -5,6 +5,7 @@ import asyncio
from datetime import datetime
if __name__ == "app.src.gen3plus.solarman_v5":
from app.src.async_ifc import AsyncIfc
from app.src.messages import hex_dump_memory, Message, State
from app.src.modbus import Modbus
from app.src.my_timer import Timer
@@ -12,6 +13,7 @@ if __name__ == "app.src.gen3plus.solarman_v5":
from app.src.gen3plus.infos_g3p import InfosG3P
from app.src.infos import Register
else: # pragma: no cover
from async_ifc import AsyncIfc
from messages import hex_dump_memory, Message, State
from config import Config
from modbus import Modbus
@@ -57,10 +59,20 @@ class SolarmanV5(Message):
'''regular Modbus polling time in server mode'''
MB_CLIENT_DATA_UP = 30
'''Data up time in client mode'''
HDR_FMT = '<BLLL'
'''format string for packing of the header'''
def __init__(self, server_side: bool, client_mode: bool):
super().__init__(server_side, self.send_modbus_cb, mb_timeout=5)
def __init__(self, addr, ifc: "AsyncIfc",
server_side: bool, client_mode: bool):
super().__init__(server_side, self.send_modbus_cb, mb_timeout=8)
ifc.rx_set_cb(self.read)
ifc.prot_set_timeout_cb(self._timeout)
ifc.prot_set_init_new_client_conn_cb(self._init_new_client_conn)
ifc.prot_set_update_header_cb(self._update_header)
self.addr = addr
self.ifc = ifc
self.conn_no = ifc.get_conn_no()
self.header_len = 11 # overwrite construcor in class Message
self.control = 0
self.seq = Sequence(server_side)
@@ -133,9 +145,10 @@ class SolarmanV5(Message):
self.node_id = 'G3P' # will be overwritten in __set_serial_no
self.mb_timer = Timer(self.mb_timout_cb, self.node_id)
self.mb_timeout = self.MB_REGULAR_TIMEOUT
self.mb_start_timeout = self.MB_START_TIMEOUT
self.mb_first_timeout = self.MB_START_TIMEOUT
'''timer value for next Modbus polling request'''
self.modbus_polling = False
self.sensor_list = 0x0000
'''
Our puplic methods
@@ -157,6 +170,11 @@ class SolarmanV5(Message):
self.log_lvl.clear()
self.state = State.closed
self.mb_timer.close()
self.ifc.rx_set_cb(None)
self.ifc.prot_set_timeout_cb(None)
self.ifc.prot_set_init_new_client_conn_cb(None)
self.ifc.prot_set_update_header_cb(None)
self.ifc = None
super().close()
async def send_start_cmd(self, snr: int, host: str,
@@ -169,7 +187,7 @@ class SolarmanV5(Message):
self.db.set_db_def_value(Register.POLLING_INTERVAL,
self.mb_timeout)
self.db.set_db_def_value(Register.HEARTBEAT_INTERVAL,
120) # fixme
120)
self.new_data['controller'] = True
self.state = State.up
@@ -180,31 +198,37 @@ class SolarmanV5(Message):
if self.state is not State.up:
self.state = State.up
if (self.modbus_polling):
self.mb_timer.start(self.mb_start_timeout)
self.mb_timer.start(self.mb_first_timeout)
self.db.set_db_def_value(Register.POLLING_INTERVAL,
self.mb_timeout)
def __set_config_parms(self, inv: dict):
'''init connection with params from the configuration'''
self.node_id = inv['node_id']
self.sug_area = inv['suggested_area']
self.modbus_polling = inv['modbus_polling']
self.sensor_list = inv['sensor_list']
def __set_serial_no(self, snr: int):
'''check the serial number and configure the inverter connection'''
serial_no = str(snr)
if self.unique_id == serial_no:
logger.debug(f'SerialNo: {serial_no}')
else:
found = False
inverters = Config.get('inverters')
# logger.debug(f'Inverters: {inverters}')
for inv in inverters.values():
for key, inv in inverters.items():
# logger.debug(f'key: {key} -> {inv}')
if (type(inv) is dict and 'monitor_sn' in inv
and inv['monitor_sn'] == snr):
found = True
self.node_id = inv['node_id']
self.sug_area = inv['suggested_area']
self.modbus_polling = inv['modbus_polling']
logger.debug(f'SerialNo {serial_no} allowed! area:{self.sug_area}') # noqa: E501
self.__set_config_parms(inv)
self.db.set_pv_module_details(inv)
logger.debug(f'SerialNo {serial_no} allowed! area:{self.sug_area}') # noqa: E501
if not found:
self.db.set_db_def_value(Register.COLLECTOR_SNR, key)
break
else:
self.node_id = ''
self.sug_area = ''
if 'allow_all' not in inverters or not inverters['allow_all']:
@@ -212,7 +236,7 @@ class SolarmanV5(Message):
self.unique_id = None
logger.warning(f'ignore message from unknow inverter! (SerialNo: {serial_no})') # noqa: E501
return
logger.debug(f'SerialNo {serial_no} not known but accepted!')
logger.warning(f'SerialNo {serial_no} not known but accepted!')
self.unique_id = serial_no
@@ -221,36 +245,38 @@ class SolarmanV5(Message):
self._read()
while True:
if not self.header_valid:
self.__parse_header(self._recv_buffer, len(self._recv_buffer))
self.__parse_header(self.ifc.rx_peek(),
self.ifc.rx_len())
if self.header_valid and len(self._recv_buffer) >= \
if self.header_valid and self.ifc.rx_len() >= \
(self.header_len + self.data_len+2):
log_lvl = self.log_lvl.get(self.control, logging.WARNING)
if callable(log_lvl):
log_lvl = log_lvl()
hex_dump_memory(log_lvl, f'Received from {self.addr}:',
self._recv_buffer, self.header_len +
self.data_len+2)
if self.__trailer_is_ok(self._recv_buffer, self.header_len
+ self.data_len + 2):
if self.state == State.init:
self.state = State.received
self.__set_serial_no(self.snr)
self.__dispatch_msg()
self.__process_complete_received_msg()
self.__flush_recv_msg()
else:
return 0 # wait 0s before sending a response
def __process_complete_received_msg(self):
log_lvl = self.log_lvl.get(self.control, logging.WARNING)
if callable(log_lvl):
log_lvl = log_lvl()
self.ifc.rx_log(log_lvl, f'Received from {self.addr}:')
# self._recv_buffer, self.header_len +
# self.data_len+2)
if self.__trailer_is_ok(self.ifc.rx_peek(), self.header_len
+ self.data_len + 2):
if self.state == State.init:
self.state = State.received
self.__set_serial_no(self.snr)
self.__dispatch_msg()
def forward(self, buffer, buflen) -> None:
'''add the actual receive msg to the forwarding queue'''
if self.no_forwarding:
return
tsun = Config.get('solarman')
if tsun['enabled']:
self._forward_buffer += buffer[:buflen]
hex_dump_memory(logging.DEBUG, 'Store for forwarding:',
buffer, buflen)
self.ifc.fwd_add(buffer[:buflen])
self.ifc.fwd_log(logging.DEBUG, 'Store for forwarding:')
fnc = self.switch.get(self.control, self.msg_unknown)
logger.info(self.__flow_str(self.server_side, 'forwrd') +
@@ -306,7 +332,7 @@ class SolarmanV5(Message):
self.inc_counter('Invalid_Msg_Format')
# erase broken recv buffer
self._recv_buffer = bytearray()
self.ifc.rx_clear()
return
self.header_valid = True
@@ -318,11 +344,11 @@ class SolarmanV5(Message):
'Drop packet w invalid stop byte from '
f'{self.addr}:', buf, buf_len)
self.inc_counter('Invalid_Msg_Format')
if len(self._recv_buffer) > (self.data_len+13):
if self.ifc.rx_len() > (self.data_len+13):
next_start = buf[self.data_len+13]
if next_start != 0xa5:
# erase broken recv buffer
self._recv_buffer = bytearray()
self.ifc.rx_clear()
return False
@@ -338,21 +364,22 @@ class SolarmanV5(Message):
def __build_header(self, ctrl) -> None:
'''build header for new transmit message'''
self.send_msg_ofs = len(self._send_buffer)
self.send_msg_ofs = self.ifc.tx_len()
self._send_buffer += struct.pack(
'<BHHHL', 0xA5, 0, ctrl, self.seq.get_send(), self.snr)
self.ifc.tx_add(struct.pack(
'<BHHHL', 0xA5, 0, ctrl, self.seq.get_send(), self.snr))
fnc = self.switch.get(ctrl, self.msg_unknown)
logger.info(self.__flow_str(self.server_side, 'tx') +
f' Ctl: {int(ctrl):#04x} Msg: {fnc.__name__!r}')
def __finish_send_msg(self) -> None:
'''finish the transmit message, set lenght and checksum'''
_len = len(self._send_buffer) - self.send_msg_ofs
struct.pack_into('<H', self._send_buffer, self.send_msg_ofs+1, _len-11)
check = sum(self._send_buffer[self.send_msg_ofs+1:self.send_msg_ofs +
_len]) & 0xff
self._send_buffer += struct.pack('<BB', check, 0x15) # crc & stop
_len = self.ifc.tx_len() - self.send_msg_ofs
struct.pack_into('<H', self.ifc.tx_peek(), self.send_msg_ofs+1,
_len-11)
check = sum(self.ifc.tx_peek()[
self.send_msg_ofs+1:self.send_msg_ofs + _len]) & 0xff
self.ifc.tx_add(struct.pack('<BB', check, 0x15)) # crc & stop
def _update_header(self, _forward_buffer):
'''update header for message before forwarding,
@@ -383,15 +410,14 @@ class SolarmanV5(Message):
f' Msg: {fnc.__name__!r}')
def __flush_recv_msg(self) -> None:
self._recv_buffer = self._recv_buffer[(self.header_len +
self.data_len+2):]
self.ifc.rx_get(self.header_len + self.data_len+2)
self.header_valid = False
def __send_ack_rsp(self, msgtype, ftype, ack=1):
self.__build_header(msgtype)
self._send_buffer += struct.pack('<BBLL', ftype, ack,
self._timestamp(),
self._heartbeat())
self.ifc.tx_add(struct.pack('<BBLL', ftype, ack,
self._timestamp(),
self._heartbeat()))
self.__finish_send_msg()
def send_modbus_cb(self, pdu: bytearray, log_lvl: int, state: str):
@@ -400,14 +426,12 @@ class SolarmanV5(Message):
' cause the state is not UP anymore')
return
self.__build_header(0x4510)
self._send_buffer += struct.pack('<BHLLL', self.MB_RTU_CMD,
0x2b0, 0, 0, 0)
self._send_buffer += pdu
self.ifc.tx_add(struct.pack('<BHLLL', self.MB_RTU_CMD,
self.sensor_list, 0, 0, 0))
self.ifc.tx_add(pdu)
self.__finish_send_msg()
hex_dump_memory(log_lvl, f'Send Modbus {state}:{self.addr}:',
self._send_buffer, len(self._send_buffer))
self.writer.write(self._send_buffer)
self._send_buffer = bytearray(0) # self._send_buffer[sent:]
self.ifc.tx_log(log_lvl, f'Send Modbus {state}:{self.addr}:')
self.ifc.tx_flush()
def _send_modbus_cmd(self, func, addr, val, log_lvl) -> None:
if self.state != State.up:
@@ -449,17 +473,18 @@ class SolarmanV5(Message):
self.forward_at_cmd_resp = False
self.__build_header(0x4510)
self._send_buffer += struct.pack(f'<BHLLL{len(at_cmd)}sc', self.AT_CMD,
2, 0, 0, 0, at_cmd.encode('utf-8'),
b'\r')
self.ifc.tx_add(struct.pack(f'<BHLLL{len(at_cmd)}sc', self.AT_CMD,
0x0002, 0, 0, 0,
at_cmd.encode('utf-8'), b'\r'))
self.__finish_send_msg()
self.ifc.tx_log(logging.INFO, 'Send AT Command:')
try:
await self.async_write('Send AT Command:')
self.ifc.tx_flush()
except Exception:
self._send_buffer = bytearray(0)
self.ifc.tx_clear()
def __forward_msg(self):
self.forward(self._recv_buffer, self.header_len+self.data_len+2)
self.forward(self.ifc.rx_peek(), self.header_len+self.data_len+2)
def __build_model_name(self):
db = self.db
@@ -480,7 +505,7 @@ class SolarmanV5(Message):
def __process_data(self, ftype, ts):
inv_update = False
msg_type = self.control >> 8
for key, update in self.db.parse(self._recv_buffer, msg_type, ftype,
for key, update in self.db.parse(self.ifc.rx_peek(), msg_type, ftype,
self.node_id):
if update:
if key == 'inverter':
@@ -499,8 +524,8 @@ class SolarmanV5(Message):
self.__forward_msg()
def msg_dev_ind(self):
data = self._recv_buffer[self.header_len:]
result = struct.unpack_from('<BLLL', data, 0)
data = self.ifc.rx_peek()[self.header_len:]
result = struct.unpack_from(self.HDR_FMT, data, 0)
ftype = result[0] # always 2
total = result[1]
tim = result[2]
@@ -514,19 +539,25 @@ class SolarmanV5(Message):
else:
ts = None
self.__process_data(ftype, ts)
self.sensor_list = int(self.db.get_db_value(Register.SENSOR_LIST, 0),
16)
self.__forward_msg()
self.__send_ack_rsp(0x1110, ftype)
def msg_data_ind(self):
data = self._recv_buffer
data = self.ifc.rx_peek()
result = struct.unpack_from('<BHLLLHL', data, self.header_len)
ftype = result[0] # 1 or 0x81
sensor = result[1]
total = result[2]
tim = result[3]
if 1 == ftype:
self.time_ofs = result[4]
unkn = result[5]
cnt = result[6]
if sensor != self.sensor_list:
logger.warning(f'Unexpected Sensor-List:{sensor:04x}'
f' (!={self.sensor_list:04x})')
logger.info(f'ftype:{ftype:02x} timer:{tim:08x}s'
f' ??: {unkn:04x} cnt:{cnt}')
if self.time_ofs:
@@ -542,8 +573,8 @@ class SolarmanV5(Message):
self.new_state_up()
def msg_sync_start(self):
data = self._recv_buffer[self.header_len:]
result = struct.unpack_from('<BLLL', data, 0)
data = self.ifc.rx_peek()[self.header_len:]
result = struct.unpack_from(self.HDR_FMT, data, 0)
ftype = result[0]
total = result[1]
self.time_ofs = result[3]
@@ -555,8 +586,8 @@ class SolarmanV5(Message):
self.__send_ack_rsp(0x1310, ftype)
def msg_command_req(self):
data = self._recv_buffer[self.header_len:
self.header_len+self.data_len]
data = self.ifc.rx_peek()[self.header_len:
self.header_len+self.data_len]
result = struct.unpack_from('<B', data, 0)
ftype = result[0]
if ftype == self.AT_CMD:
@@ -568,9 +599,9 @@ class SolarmanV5(Message):
self.forward_at_cmd_resp = True
elif ftype == self.MB_RTU_CMD:
if self.remote_stream.mb.recv_req(data[15:],
self.remote_stream.
__forward_msg):
rstream = self.ifc.remote.stream
if rstream.mb.recv_req(data[15:],
rstream.__forward_msg):
self.inc_counter('Modbus_Command')
else:
logger.error('Invalid Modbus Msg')
@@ -584,7 +615,7 @@ class SolarmanV5(Message):
self.mqtt.publish(key, data))
def get_cmd_rsp_log_lvl(self) -> int:
ftype = self._recv_buffer[self.header_len]
ftype = self.ifc.rx_peek()[self.header_len]
if ftype == self.AT_CMD:
if self.forward_at_cmd_resp:
return logging.INFO
@@ -596,8 +627,8 @@ class SolarmanV5(Message):
return logging.WARNING
def msg_command_rsp(self):
data = self._recv_buffer[self.header_len:
self.header_len+self.data_len]
data = self.ifc.rx_peek()[self.header_len:
self.header_len+self.data_len]
ftype = data[0]
if ftype == self.AT_CMD:
if not self.forward_at_cmd_resp:
@@ -608,30 +639,32 @@ class SolarmanV5(Message):
self.publish_mqtt(f'{self.entity_prfx}{node_id}{key}', data_json) # noqa: E501
return
elif ftype == self.MB_RTU_CMD:
valid = data[1]
modbus_msg_len = self.data_len - 14
# logger.debug(f'modbus_len:{modbus_msg_len} accepted:{valid}')
if valid == 1 and modbus_msg_len > 4:
# logger.info(f'first byte modbus:{data[14]}')
inv_update = False
self.modbus_elms = 0
for key, update, _ in self.mb.recv_resp(self.db, data[14:],
self.node_id):
self.modbus_elms += 1
if update:
if key == 'inverter':
inv_update = True
self._set_mqtt_timestamp(key, self._timestamp())
self.new_data[key] = True
if inv_update:
self.__build_model_name()
self.__modbus_command_rsp(data)
return
self.__forward_msg()
def __modbus_command_rsp(self, data):
'''precess MODBUS RTU response'''
valid = data[1]
modbus_msg_len = self.data_len - 14
# logger.debug(f'modbus_len:{modbus_msg_len} accepted:{valid}')
if valid == 1 and modbus_msg_len > 4:
# logger.info(f'first byte modbus:{data[14]}')
inv_update = False
self.modbus_elms = 0
for key, update, _ in self.mb.recv_resp(self.db, data[14:],
self.node_id):
self.modbus_elms += 1
if update:
if key == 'inverter':
inv_update = True
self._set_mqtt_timestamp(key, self._timestamp())
self.new_data[key] = True
if inv_update:
self.__build_model_name()
def msg_hbeat_ind(self):
data = self._recv_buffer[self.header_len:]
data = self.ifc.rx_peek()[self.header_len:]
result = struct.unpack_from('<B', data, 0)
ftype = result[0]
@@ -640,8 +673,8 @@ class SolarmanV5(Message):
self.new_state_up()
def msg_sync_end(self):
data = self._recv_buffer[self.header_len:]
result = struct.unpack_from('<BLLL', data, 0)
data = self.ifc.rx_peek()[self.header_len:]
result = struct.unpack_from(self.HDR_FMT, data, 0)
ftype = result[0]
total = result[1]
self.time_ofs = result[3]
@@ -653,7 +686,7 @@ class SolarmanV5(Message):
self.__send_ack_rsp(0x1810, ftype)
def msg_response(self):
data = self._recv_buffer[self.header_len:]
data = self.ifc.rx_peek()[self.header_len:]
result = struct.unpack_from('<BBLL', data, 0)
ftype = result[0] # always 2
valid = result[1] == 1 # status

View File

@@ -16,6 +16,8 @@ class Register(Enum):
CHIP_MODEL = 3
TRACE_URL = 4
LOGGER_URL = 5
MAC_ADDR = 6
COLLECTOR_SNR = 7
PRODUCT_NAME = 20
MANUFACTURER = 21
VERSION = 22
@@ -96,6 +98,7 @@ class Register(Enum):
HEARTBEAT_INTERVAL = 406
IP_ADDRESS = 407
POLLING_INTERVAL = 408
SENSOR_LIST = 409
EVENT_401 = 500
EVENT_402 = 501
EVENT_403 = 502
@@ -149,10 +152,23 @@ class ClrAtMidnight:
class Infos:
__slots__ = ('db', 'tracer', )
LIGHTNING = 'mdi:lightning-bolt'
COUNTER = 'mdi:counter'
GAUGE = 'mdi:gauge'
SOLAR_POWER_VAR = 'mdi:solar-power-variant'
SOLAR_POWER = 'mdi:solar-power'
WIFI = 'mdi:wifi'
UPDATE = 'mdi:update'
DAILY_GEN = 'Daily Generation'
TOTAL_GEN = 'Total Generation'
FMT_INT = '| int'
FMT_FLOAT = '| float'
FMT_STRING_SEC = '| string + " s"'
stat = {}
app_name = os.getenv('SERVICE_NAME', 'proxy')
version = os.getenv('VERSION', 'unknown')
new_stat_data = {}
@classmethod
@@ -176,8 +192,8 @@ class Infos:
__info_devs = {
'proxy': {'singleton': True, 'name': 'Proxy', 'mf': 'Stefan Allius'}, # noqa: E501
'controller': {'via': 'proxy', 'name': 'Controller', 'mdl': Register.CHIP_MODEL, 'mf': Register.CHIP_TYPE, 'sw': Register.COLLECTOR_FW_VERSION}, # noqa: E501
'inverter': {'via': 'controller', 'name': 'Micro Inverter', 'mdl': Register.EQUIPMENT_MODEL, 'mf': Register.MANUFACTURER, 'sw': Register.VERSION}, # noqa: E501
'controller': {'via': 'proxy', 'name': 'Controller', 'mdl': Register.CHIP_MODEL, 'mf': Register.CHIP_TYPE, 'sw': Register.COLLECTOR_FW_VERSION, 'mac': Register.MAC_ADDR, 'sn': Register.COLLECTOR_SNR}, # noqa: E501
'inverter': {'via': 'controller', 'name': 'Micro Inverter', 'mdl': Register.EQUIPMENT_MODEL, 'mf': Register.MANUFACTURER, 'sw': Register.VERSION, 'sn': Register.SERIAL_NUMBER}, # noqa: E501
'input_pv1': {'via': 'inverter', 'name': 'Module PV1', 'mdl': Register.PV1_MODEL, 'mf': Register.PV1_MANUFACTURER}, # noqa: E501
'input_pv2': {'via': 'inverter', 'name': 'Module PV2', 'mdl': Register.PV2_MODEL, 'mf': Register.PV2_MANUFACTURER, 'dep': {'reg': Register.NO_INPUTS, 'gte': 2}}, # noqa: E501
'input_pv3': {'via': 'inverter', 'name': 'Module PV3', 'mdl': Register.PV3_MODEL, 'mf': Register.PV3_MANUFACTURER, 'dep': {'reg': Register.NO_INPUTS, 'gte': 3}}, # noqa: E501
@@ -210,6 +226,9 @@ class Infos:
Register.CHIP_MODEL: {'name': ['collector', 'Chip_Model'], 'singleton': False, 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.TRACE_URL: {'name': ['collector', 'Trace_URL'], 'singleton': False, 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.LOGGER_URL: {'name': ['collector', 'Logger_URL'], 'singleton': False, 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.MAC_ADDR: {'name': ['collector', 'MAC-Addr'], 'singleton': False, 'level': logging.INFO, 'unit': ''}, # noqa: E501
Register.COLLECTOR_SNR: {'name': ['collector', 'Serial_Number'], 'singleton': False, 'level': logging.INFO, 'unit': ''}, # noqa: E501
# inverter values used for device registration:
Register.PRODUCT_NAME: {'name': ['inverter', 'Product_Name'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
@@ -218,9 +237,9 @@ class Infos:
Register.SERIAL_NUMBER: {'name': ['inverter', 'Serial_Number'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EQUIPMENT_MODEL: {'name': ['inverter', 'Equipment_Model'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.NO_INPUTS: {'name': ['inverter', 'No_Inputs'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.MAX_DESIGNED_POWER: {'name': ['inverter', 'Max_Designed_Power'], 'level': logging.INFO, 'unit': 'W', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'designed_power_', 'val_tpl': __designed_power_val_tpl, 'name': 'Max Designed Power', 'icon': 'mdi:lightning-bolt', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.RATED_POWER: {'name': ['inverter', 'Rated_Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'rated_power_', 'val_tpl': __rated_power_val_tpl, 'name': 'Rated Power', 'icon': 'mdi:lightning-bolt', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.OUTPUT_COEFFICIENT: {'name': ['inverter', 'Output_Coefficient'], 'level': logging.INFO, 'unit': '%', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'output_coef_', 'val_tpl': __output_coef_val_tpl, 'name': 'Output Coefficient', 'icon': 'mdi:lightning-bolt', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.MAX_DESIGNED_POWER: {'name': ['inverter', 'Max_Designed_Power'], 'level': logging.INFO, 'unit': 'W', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'designed_power_', 'val_tpl': __designed_power_val_tpl, 'name': 'Max Designed Power', 'icon': LIGHTNING, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.RATED_POWER: {'name': ['inverter', 'Rated_Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'rated_power_', 'val_tpl': __rated_power_val_tpl, 'name': 'Rated Power', 'icon': LIGHTNING, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.OUTPUT_COEFFICIENT: {'name': ['inverter', 'Output_Coefficient'], 'level': logging.INFO, 'unit': '%', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'output_coef_', 'val_tpl': __output_coef_val_tpl, 'name': 'Output Coefficient', 'icon': LIGHTNING, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV1_MANUFACTURER: {'name': ['inverter', 'PV1_Manufacturer'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.PV1_MODEL: {'name': ['inverter', 'PV1_Model'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.PV2_MANUFACTURER: {'name': ['inverter', 'PV2_Manufacturer'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
@@ -235,19 +254,19 @@ class Infos:
Register.PV6_MODEL: {'name': ['inverter', 'PV6_Model'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
# proxy:
Register.INVERTER_CNT: {'name': ['proxy', 'Inverter_Cnt'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_count_', 'fmt': '| int', 'name': 'Active Inverter Connections', 'icon': 'mdi:counter'}}, # noqa: E501
Register.UNKNOWN_SNR: {'name': ['proxy', 'Unknown_SNR'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'unknown_snr_', 'fmt': '| int', 'name': 'Unknown Serial No', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.UNKNOWN_MSG: {'name': ['proxy', 'Unknown_Msg'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'unknown_msg_', 'fmt': '| int', 'name': 'Unknown Msg Type', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INVALID_DATA_TYPE: {'name': ['proxy', 'Invalid_Data_Type'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_data_type_', 'fmt': '| int', 'name': 'Invalid Data Type', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INTERNAL_ERROR: {'name': ['proxy', 'Internal_Error'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'intern_err_', 'fmt': '| int', 'name': 'Internal Error', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic', 'en': False}}, # noqa: E501
Register.UNKNOWN_CTRL: {'name': ['proxy', 'Unknown_Ctrl'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'unknown_ctrl_', 'fmt': '| int', 'name': 'Unknown Control Type', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.OTA_START_MSG: {'name': ['proxy', 'OTA_Start_Msg'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'ota_start_cmd_', 'fmt': '| int', 'name': 'OTA Start Cmd', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.SW_EXCEPTION: {'name': ['proxy', 'SW_Exception'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'sw_exception_', 'fmt': '| int', 'name': 'Internal SW Exception', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INVALID_MSG_FMT: {'name': ['proxy', 'Invalid_Msg_Format'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_msg_fmt_', 'fmt': '| int', 'name': 'Invalid Message Format', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.AT_COMMAND: {'name': ['proxy', 'AT_Command'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'at_cmd_', 'fmt': '| int', 'name': 'AT Command', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.AT_COMMAND_BLOCKED: {'name': ['proxy', 'AT_Command_Blocked'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'at_cmd_blocked_', 'fmt': '| int', 'name': 'AT Command Blocked', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.MODBUS_COMMAND: {'name': ['proxy', 'Modbus_Command'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'modbus_cmd_', 'fmt': '| int', 'name': 'Modbus Command', 'icon': 'mdi:counter', 'ent_cat': 'diagnostic'}}, # noqa: E501
# 0xffffff03: {'name':['proxy', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha':{'dev':'proxy', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id':'proxy_volt_', 'fmt':'| float','name': 'Grid Voltage'}}, # noqa: E501
Register.INVERTER_CNT: {'name': ['proxy', 'Inverter_Cnt'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_count_', 'fmt': FMT_INT, 'name': 'Active Inverter Connections', 'icon': COUNTER}}, # noqa: E501
Register.UNKNOWN_SNR: {'name': ['proxy', 'Unknown_SNR'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'unknown_snr_', 'fmt': FMT_INT, 'name': 'Unknown Serial No', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.UNKNOWN_MSG: {'name': ['proxy', 'Unknown_Msg'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'unknown_msg_', 'fmt': FMT_INT, 'name': 'Unknown Msg Type', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INVALID_DATA_TYPE: {'name': ['proxy', 'Invalid_Data_Type'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_data_type_', 'fmt': FMT_INT, 'name': 'Invalid Data Type', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INTERNAL_ERROR: {'name': ['proxy', 'Internal_Error'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'intern_err_', 'fmt': FMT_INT, 'name': 'Internal Error', 'icon': COUNTER, 'ent_cat': 'diagnostic', 'en': False}}, # noqa: E501
Register.UNKNOWN_CTRL: {'name': ['proxy', 'Unknown_Ctrl'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'unknown_ctrl_', 'fmt': FMT_INT, 'name': 'Unknown Control Type', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.OTA_START_MSG: {'name': ['proxy', 'OTA_Start_Msg'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'ota_start_cmd_', 'fmt': FMT_INT, 'name': 'OTA Start Cmd', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.SW_EXCEPTION: {'name': ['proxy', 'SW_Exception'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'sw_exception_', 'fmt': FMT_INT, 'name': 'Internal SW Exception', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INVALID_MSG_FMT: {'name': ['proxy', 'Invalid_Msg_Format'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_msg_fmt_', 'fmt': FMT_INT, 'name': 'Invalid Message Format', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.AT_COMMAND: {'name': ['proxy', 'AT_Command'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'at_cmd_', 'fmt': FMT_INT, 'name': 'AT Command', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.AT_COMMAND_BLOCKED: {'name': ['proxy', 'AT_Command_Blocked'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'at_cmd_blocked_', 'fmt': FMT_INT, 'name': 'AT Command Blocked', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.MODBUS_COMMAND: {'name': ['proxy', 'Modbus_Command'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'modbus_cmd_', 'fmt': FMT_INT, 'name': 'Modbus Command', 'icon': COUNTER, 'ent_cat': 'diagnostic'}}, # noqa: E501
# 0xffffff03: {'name':['proxy', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha':{'dev':'proxy', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id':'proxy_volt_', 'fmt':FMT_FLOAT,'name': 'Grid Voltage'}}, # noqa: E501
# events
Register.EVENT_401: {'name': ['events', '401_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
@@ -269,60 +288,61 @@ class Infos:
# grid measures:
Register.TS_GRID: {'name': ['grid', 'Timestamp'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
Register.GRID_VOLTAGE: {'name': ['grid', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'inverter', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'out_volt_', 'fmt': '| float', 'name': 'Grid Voltage', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.GRID_CURRENT: {'name': ['grid', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'inverter', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'out_cur_', 'fmt': '| float', 'name': 'Grid Current', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.GRID_FREQUENCY: {'name': ['grid', 'Frequency'], 'level': logging.DEBUG, 'unit': 'Hz', 'ha': {'dev': 'inverter', 'dev_cla': 'frequency', 'stat_cla': 'measurement', 'id': 'out_freq_', 'fmt': '| float', 'name': 'Grid Frequency', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.OUTPUT_POWER: {'name': ['grid', 'Output_Power'], 'level': logging.INFO, 'unit': 'W', 'ha': {'dev': 'inverter', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'out_power_', 'fmt': '| float', 'name': 'Power'}}, # noqa: E501
Register.INVERTER_TEMP: {'name': ['env', 'Inverter_Temp'], 'level': logging.DEBUG, 'unit': '°C', 'ha': {'dev': 'inverter', 'dev_cla': 'temperature', 'stat_cla': 'measurement', 'id': 'temp_', 'fmt': '| int', 'name': 'Temperature'}}, # noqa: E501
Register.GRID_VOLTAGE: {'name': ['grid', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'inverter', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'out_volt_', 'fmt': FMT_FLOAT, 'name': 'Grid Voltage', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.GRID_CURRENT: {'name': ['grid', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'inverter', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'out_cur_', 'fmt': FMT_FLOAT, 'name': 'Grid Current', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.GRID_FREQUENCY: {'name': ['grid', 'Frequency'], 'level': logging.DEBUG, 'unit': 'Hz', 'ha': {'dev': 'inverter', 'dev_cla': 'frequency', 'stat_cla': 'measurement', 'id': 'out_freq_', 'fmt': FMT_FLOAT, 'name': 'Grid Frequency', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.OUTPUT_POWER: {'name': ['grid', 'Output_Power'], 'level': logging.INFO, 'unit': 'W', 'ha': {'dev': 'inverter', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'out_power_', 'fmt': FMT_FLOAT, 'name': 'Power'}}, # noqa: E501
Register.INVERTER_TEMP: {'name': ['env', 'Inverter_Temp'], 'level': logging.DEBUG, 'unit': '°C', 'ha': {'dev': 'inverter', 'dev_cla': 'temperature', 'stat_cla': 'measurement', 'id': 'temp_', 'fmt': FMT_INT, 'name': 'Temperature'}}, # noqa: E501
Register.INVERTER_STATUS: {'name': ['env', 'Inverter_Status'], 'level': logging.INFO, 'unit': '', 'ha': {'dev': 'inverter', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_status_', 'name': 'Inverter Status', 'val_tpl': __status_type_val_tpl, 'icon': 'mdi:power'}}, # noqa: E501
# input measures:
Register.TS_INPUT: {'name': ['input', 'Timestamp'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
Register.PV1_VOLTAGE: {'name': ['input', 'pv1', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv1', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv1_', 'val_tpl': "{{ (value_json['pv1']['Voltage'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV1_CURRENT: {'name': ['input', 'pv1', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv1', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv1_', 'val_tpl': "{{ (value_json['pv1']['Current'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV1_VOLTAGE: {'name': ['input', 'pv1', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv1', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv1_', 'val_tpl': "{{ (value_json['pv1']['Voltage'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV1_CURRENT: {'name': ['input', 'pv1', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv1', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv1_', 'val_tpl': "{{ (value_json['pv1']['Current'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV1_POWER: {'name': ['input', 'pv1', 'Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'input_pv1', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'power_pv1_', 'val_tpl': "{{ (value_json['pv1']['Power'] | float)}}"}}, # noqa: E501
Register.PV2_VOLTAGE: {'name': ['input', 'pv2', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv2', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv2_', 'val_tpl': "{{ (value_json['pv2']['Voltage'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV2_CURRENT: {'name': ['input', 'pv2', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv2', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv2_', 'val_tpl': "{{ (value_json['pv2']['Current'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV2_VOLTAGE: {'name': ['input', 'pv2', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv2', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv2_', 'val_tpl': "{{ (value_json['pv2']['Voltage'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV2_CURRENT: {'name': ['input', 'pv2', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv2', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv2_', 'val_tpl': "{{ (value_json['pv2']['Current'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV2_POWER: {'name': ['input', 'pv2', 'Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'input_pv2', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'power_pv2_', 'val_tpl': "{{ (value_json['pv2']['Power'] | float)}}"}}, # noqa: E501
Register.PV3_VOLTAGE: {'name': ['input', 'pv3', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv3', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv3_', 'val_tpl': "{{ (value_json['pv3']['Voltage'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV3_CURRENT: {'name': ['input', 'pv3', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv3', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv3_', 'val_tpl': "{{ (value_json['pv3']['Current'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV3_VOLTAGE: {'name': ['input', 'pv3', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv3', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv3_', 'val_tpl': "{{ (value_json['pv3']['Voltage'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV3_CURRENT: {'name': ['input', 'pv3', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv3', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv3_', 'val_tpl': "{{ (value_json['pv3']['Current'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV3_POWER: {'name': ['input', 'pv3', 'Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'input_pv3', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'power_pv3_', 'val_tpl': "{{ (value_json['pv3']['Power'] | float)}}"}}, # noqa: E501
Register.PV4_VOLTAGE: {'name': ['input', 'pv4', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv4', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv4_', 'val_tpl': "{{ (value_json['pv4']['Voltage'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV4_CURRENT: {'name': ['input', 'pv4', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv4', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv4_', 'val_tpl': "{{ (value_json['pv4']['Current'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV4_VOLTAGE: {'name': ['input', 'pv4', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv4', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv4_', 'val_tpl': "{{ (value_json['pv4']['Voltage'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV4_CURRENT: {'name': ['input', 'pv4', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv4', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv4_', 'val_tpl': "{{ (value_json['pv4']['Current'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV4_POWER: {'name': ['input', 'pv4', 'Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'input_pv4', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'power_pv4_', 'val_tpl': "{{ (value_json['pv4']['Power'] | float)}}"}}, # noqa: E501
Register.PV5_VOLTAGE: {'name': ['input', 'pv5', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv5', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv5_', 'val_tpl': "{{ (value_json['pv5']['Voltage'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV5_CURRENT: {'name': ['input', 'pv5', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv5', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv5_', 'val_tpl': "{{ (value_json['pv5']['Current'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV5_VOLTAGE: {'name': ['input', 'pv5', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv5', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv5_', 'val_tpl': "{{ (value_json['pv5']['Voltage'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV5_CURRENT: {'name': ['input', 'pv5', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv5', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv5_', 'val_tpl': "{{ (value_json['pv5']['Current'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV5_POWER: {'name': ['input', 'pv5', 'Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'input_pv5', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'power_pv5_', 'val_tpl': "{{ (value_json['pv5']['Power'] | float)}}"}}, # noqa: E501
Register.PV6_VOLTAGE: {'name': ['input', 'pv6', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv6', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv6_', 'val_tpl': "{{ (value_json['pv6']['Voltage'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV6_CURRENT: {'name': ['input', 'pv6', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv6', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv6_', 'val_tpl': "{{ (value_json['pv6']['Current'] | float)}}", 'icon': 'mdi:gauge', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV6_VOLTAGE: {'name': ['input', 'pv6', 'Voltage'], 'level': logging.DEBUG, 'unit': 'V', 'ha': {'dev': 'input_pv6', 'dev_cla': 'voltage', 'stat_cla': 'measurement', 'id': 'volt_pv6_', 'val_tpl': "{{ (value_json['pv6']['Voltage'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV6_CURRENT: {'name': ['input', 'pv6', 'Current'], 'level': logging.DEBUG, 'unit': 'A', 'ha': {'dev': 'input_pv6', 'dev_cla': 'current', 'stat_cla': 'measurement', 'id': 'cur_pv6_', 'val_tpl': "{{ (value_json['pv6']['Current'] | float)}}", 'icon': GAUGE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.PV6_POWER: {'name': ['input', 'pv6', 'Power'], 'level': logging.DEBUG, 'unit': 'W', 'ha': {'dev': 'input_pv6', 'dev_cla': 'power', 'stat_cla': 'measurement', 'id': 'power_pv6_', 'val_tpl': "{{ (value_json['pv6']['Power'] | float)}}"}}, # noqa: E501
Register.PV1_DAILY_GENERATION: {'name': ['input', 'pv1', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv1', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv1_', 'name': 'Daily Generation', 'val_tpl': "{{ (value_json['pv1']['Daily_Generation'] | float)}}", 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.PV1_TOTAL_GENERATION: {'name': ['input', 'pv1', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv1', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv1_', 'name': 'Total Generation', 'val_tpl': "{{ (value_json['pv1']['Total_Generation'] | float)}}", 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.PV2_DAILY_GENERATION: {'name': ['input', 'pv2', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv2', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv2_', 'name': 'Daily Generation', 'val_tpl': "{{ (value_json['pv2']['Daily_Generation'] | float)}}", 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.PV2_TOTAL_GENERATION: {'name': ['input', 'pv2', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv2', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv2_', 'name': 'Total Generation', 'val_tpl': "{{ (value_json['pv2']['Total_Generation'] | float)}}", 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.PV3_DAILY_GENERATION: {'name': ['input', 'pv3', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv3', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv3_', 'name': 'Daily Generation', 'val_tpl': "{{ (value_json['pv3']['Daily_Generation'] | float)}}", 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.PV3_TOTAL_GENERATION: {'name': ['input', 'pv3', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv3', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv3_', 'name': 'Total Generation', 'val_tpl': "{{ (value_json['pv3']['Total_Generation'] | float)}}", 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.PV4_DAILY_GENERATION: {'name': ['input', 'pv4', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv4', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv4_', 'name': 'Daily Generation', 'val_tpl': "{{ (value_json['pv4']['Daily_Generation'] | float)}}", 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.PV4_TOTAL_GENERATION: {'name': ['input', 'pv4', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv4', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv4_', 'name': 'Total Generation', 'val_tpl': "{{ (value_json['pv4']['Total_Generation'] | float)}}", 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.PV5_DAILY_GENERATION: {'name': ['input', 'pv5', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv5', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv5_', 'name': 'Daily Generation', 'val_tpl': "{{ (value_json['pv5']['Daily_Generation'] | float)}}", 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.PV5_TOTAL_GENERATION: {'name': ['input', 'pv5', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv5', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv5_', 'name': 'Total Generation', 'val_tpl': "{{ (value_json['pv5']['Total_Generation'] | float)}}", 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.PV6_DAILY_GENERATION: {'name': ['input', 'pv6', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv6', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv6_', 'name': 'Daily Generation', 'val_tpl': "{{ (value_json['pv6']['Daily_Generation'] | float)}}", 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.PV6_TOTAL_GENERATION: {'name': ['input', 'pv6', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv6', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv6_', 'name': 'Total Generation', 'val_tpl': "{{ (value_json['pv6']['Total_Generation'] | float)}}", 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.PV1_DAILY_GENERATION: {'name': ['input', 'pv1', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv1', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv1_', 'name': DAILY_GEN, 'val_tpl': "{{ (value_json['pv1']['Daily_Generation'] | float)}}", 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.PV1_TOTAL_GENERATION: {'name': ['input', 'pv1', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv1', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv1_', 'name': TOTAL_GEN, 'val_tpl': "{{ (value_json['pv1']['Total_Generation'] | float)}}", 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
Register.PV2_DAILY_GENERATION: {'name': ['input', 'pv2', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv2', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv2_', 'name': DAILY_GEN, 'val_tpl': "{{ (value_json['pv2']['Daily_Generation'] | float)}}", 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.PV2_TOTAL_GENERATION: {'name': ['input', 'pv2', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv2', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv2_', 'name': TOTAL_GEN, 'val_tpl': "{{ (value_json['pv2']['Total_Generation'] | float)}}", 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
Register.PV3_DAILY_GENERATION: {'name': ['input', 'pv3', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv3', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv3_', 'name': DAILY_GEN, 'val_tpl': "{{ (value_json['pv3']['Daily_Generation'] | float)}}", 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.PV3_TOTAL_GENERATION: {'name': ['input', 'pv3', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv3', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv3_', 'name': TOTAL_GEN, 'val_tpl': "{{ (value_json['pv3']['Total_Generation'] | float)}}", 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
Register.PV4_DAILY_GENERATION: {'name': ['input', 'pv4', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv4', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv4_', 'name': DAILY_GEN, 'val_tpl': "{{ (value_json['pv4']['Daily_Generation'] | float)}}", 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.PV4_TOTAL_GENERATION: {'name': ['input', 'pv4', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv4', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv4_', 'name': TOTAL_GEN, 'val_tpl': "{{ (value_json['pv4']['Total_Generation'] | float)}}", 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
Register.PV5_DAILY_GENERATION: {'name': ['input', 'pv5', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv5', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv5_', 'name': DAILY_GEN, 'val_tpl': "{{ (value_json['pv5']['Daily_Generation'] | float)}}", 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.PV5_TOTAL_GENERATION: {'name': ['input', 'pv5', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv5', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv5_', 'name': TOTAL_GEN, 'val_tpl': "{{ (value_json['pv5']['Total_Generation'] | float)}}", 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
Register.PV6_DAILY_GENERATION: {'name': ['input', 'pv6', 'Daily_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv6', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_pv6_', 'name': DAILY_GEN, 'val_tpl': "{{ (value_json['pv6']['Daily_Generation'] | float)}}", 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.PV6_TOTAL_GENERATION: {'name': ['input', 'pv6', 'Total_Generation'], 'level': logging.DEBUG, 'unit': 'kWh', 'ha': {'dev': 'input_pv6', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_pv6_', 'name': TOTAL_GEN, 'val_tpl': "{{ (value_json['pv6']['Total_Generation'] | float)}}", 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
# total:
Register.TS_TOTAL: {'name': ['total', 'Timestamp'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
Register.DAILY_GENERATION: {'name': ['total', 'Daily_Generation'], 'level': logging.INFO, 'unit': 'kWh', 'ha': {'dev': 'inverter', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_', 'fmt': '| float', 'name': 'Daily Generation', 'icon': 'mdi:solar-power-variant', 'must_incr': True}}, # noqa: E501
Register.TOTAL_GENERATION: {'name': ['total', 'Total_Generation'], 'level': logging.INFO, 'unit': 'kWh', 'ha': {'dev': 'inverter', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_', 'fmt': '| float', 'name': 'Total Generation', 'icon': 'mdi:solar-power', 'must_incr': True}}, # noqa: E501
Register.DAILY_GENERATION: {'name': ['total', 'Daily_Generation'], 'level': logging.INFO, 'unit': 'kWh', 'ha': {'dev': 'inverter', 'dev_cla': 'energy', 'stat_cla': 'total_increasing', 'id': 'daily_gen_', 'fmt': FMT_FLOAT, 'name': DAILY_GEN, 'icon': SOLAR_POWER_VAR, 'must_incr': True}}, # noqa: E501
Register.TOTAL_GENERATION: {'name': ['total', 'Total_Generation'], 'level': logging.INFO, 'unit': 'kWh', 'ha': {'dev': 'inverter', 'dev_cla': 'energy', 'stat_cla': 'total', 'id': 'total_gen_', 'fmt': FMT_FLOAT, 'name': TOTAL_GEN, 'icon': SOLAR_POWER, 'must_incr': True}}, # noqa: E501
# controller:
Register.SIGNAL_STRENGTH: {'name': ['controller', 'Signal_Strength'], 'level': logging.DEBUG, 'unit': '%', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': 'measurement', 'id': 'signal_', 'fmt': '| int', 'name': 'Signal Strength', 'icon': 'mdi:wifi'}}, # noqa: E501
Register.POWER_ON_TIME: {'name': ['controller', 'Power_On_Time'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': 'duration', 'stat_cla': 'measurement', 'id': 'power_on_time_', 'fmt': '| int', 'name': 'Power on Time', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.COLLECT_INTERVAL: {'name': ['controller', 'Collect_Interval'], 'level': logging.DEBUG, 'unit': 'min', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'data_collect_intval_', 'fmt': '| string + " min"', 'name': 'Data Collect Interval', 'icon': 'mdi:update', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.CONNECT_COUNT: {'name': ['controller', 'Connect_Count'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'connect_count_', 'fmt': '| int', 'name': 'Connect Count', 'icon': 'mdi:counter', 'comp': 'sensor', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.COMMUNICATION_TYPE: {'name': ['controller', 'Communication_Type'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'comm_type_', 'name': 'Communication Type', 'val_tpl': __comm_type_val_tpl, 'comp': 'sensor', 'icon': 'mdi:wifi'}}, # noqa: E501
Register.DATA_UP_INTERVAL: {'name': ['controller', 'Data_Up_Interval'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'data_up_intval_', 'fmt': '| string + " s"', 'name': 'Data Up Interval', 'icon': 'mdi:update', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.HEARTBEAT_INTERVAL: {'name': ['controller', 'Heartbeat_Interval'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'heartbeat_intval_', 'fmt': '| string + " s"', 'name': 'Heartbeat Interval', 'icon': 'mdi:update', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.IP_ADDRESS: {'name': ['controller', 'IP_Address'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'ip_address_', 'fmt': '| string', 'name': 'IP Address', 'icon': 'mdi:wifi', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.POLLING_INTERVAL: {'name': ['controller', 'Polling_Interval'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'polling_intval_', 'fmt': '| string + " s"', 'name': 'Polling Interval', 'icon': 'mdi:update', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.SIGNAL_STRENGTH: {'name': ['controller', 'Signal_Strength'], 'level': logging.DEBUG, 'unit': '%', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': 'measurement', 'id': 'signal_', 'fmt': FMT_INT, 'name': 'Signal Strength', 'icon': WIFI}}, # noqa: E501
Register.POWER_ON_TIME: {'name': ['controller', 'Power_On_Time'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': 'duration', 'stat_cla': 'measurement', 'id': 'power_on_time_', 'fmt': FMT_INT, 'name': 'Power on Time', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.COLLECT_INTERVAL: {'name': ['controller', 'Collect_Interval'], 'level': logging.DEBUG, 'unit': 'min', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'data_collect_intval_', 'fmt': '| string + " min"', 'name': 'Data Collect Interval', 'icon': UPDATE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.CONNECT_COUNT: {'name': ['controller', 'Connect_Count'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'connect_count_', 'fmt': FMT_INT, 'name': 'Connect Count', 'icon': COUNTER, 'comp': 'sensor', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.COMMUNICATION_TYPE: {'name': ['controller', 'Communication_Type'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'comm_type_', 'name': 'Communication Type', 'val_tpl': __comm_type_val_tpl, 'comp': 'sensor', 'icon': WIFI}}, # noqa: E501
Register.DATA_UP_INTERVAL: {'name': ['controller', 'Data_Up_Interval'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'data_up_intval_', 'fmt': FMT_STRING_SEC, 'name': 'Data Up Interval', 'icon': UPDATE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.HEARTBEAT_INTERVAL: {'name': ['controller', 'Heartbeat_Interval'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'heartbeat_intval_', 'fmt': FMT_STRING_SEC, 'name': 'Heartbeat Interval', 'icon': UPDATE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.IP_ADDRESS: {'name': ['controller', 'IP_Address'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'ip_address_', 'fmt': '| string', 'name': 'IP Address', 'icon': WIFI, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.POLLING_INTERVAL: {'name': ['controller', 'Polling_Interval'], 'level': logging.DEBUG, 'unit': 's', 'ha': {'dev': 'controller', 'dev_cla': None, 'stat_cla': None, 'id': 'polling_intval_', 'fmt': FMT_STRING_SEC, 'name': 'Polling Interval', 'icon': UPDATE, 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.SENSOR_LIST: {'name': ['controller', 'Sensor_List'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
}
@property
@@ -360,15 +380,19 @@ class Infos:
return None # unknwon idx, not in info_defs
def inc_counter(self, counter: str) -> None:
@classmethod
def inc_counter(cls, counter: str) -> None:
'''inc proxy statistic counter'''
db_dict = self.stat['proxy']
db_dict = cls.stat['proxy']
db_dict[counter] += 1
cls.new_stat_data['proxy'] = True
def dec_counter(self, counter: str) -> None:
@classmethod
def dec_counter(cls, counter: str) -> None:
'''dec proxy statistic counter'''
db_dict = self.stat['proxy']
db_dict = cls.stat['proxy']
db_dict[counter] -= 1
cls.new_stat_data['proxy'] = True
def ha_proxy_confs(self, ha_prfx: str, node_id: str, snr: str) \
-> Generator[tuple[str, str, str, str], None, None]:
@@ -414,100 +438,129 @@ class Infos:
return None
elif singleton:
return None
prfx = ha_prfx + node_id
# check if we have details for home assistant
if 'ha' in row:
ha = row['ha']
if 'comp' in ha:
component = ha['comp']
else:
component = 'sensor'
attr = {}
if 'name' in ha:
attr['name'] = ha['name']
else:
attr['name'] = row['name'][-1]
attr['stat_t'] = prfx + row['name'][0]
attr['dev_cla'] = ha['dev_cla']
attr['stat_cla'] = ha['stat_cla']
attr['uniq_id'] = ha['id']+snr
if 'val_tpl' in ha:
attr['val_tpl'] = ha['val_tpl']
elif 'fmt' in ha:
attr['val_tpl'] = '{{value_json' + f"['{row['name'][-1]}'] {ha['fmt']}" + '}}' # eg. 'val_tpl': "{{ value_json['Output_Power']|float }} # noqa: E501
else:
self.inc_counter('Internal_Error')
logging.error(f"Infos.info_defs: the row for {key} do"
" not have a 'val_tpl' nor a 'fmt' value")
# add unit_of_meas only, if status_class isn't none. If
# status_cla is None we want a number format and not line
# graph in home assistant. A unit will change the number
# format to a line graph
if 'unit' in row and attr['stat_cla'] is not None:
attr['unit_of_meas'] = row['unit'] # 'unit_of_meas'
if 'icon' in ha:
attr['ic'] = ha['icon'] # icon for the entity
if 'nat_prc' in ha: # pragma: no cover
attr['sug_dsp_prc'] = ha['nat_prc'] # precison of floats
if 'ent_cat' in ha:
attr['ent_cat'] = ha['ent_cat'] # diagnostic, config
# enabled_by_default is deactivated, since it avoid the via
# setup of the devices. It seems, that there is a bug in home
# assistant. tested with 'Home Assistant 2023.10.4'
# if 'en' in ha: # enabled_by_default
# attr['en'] = ha['en']
if 'dev' in ha:
device = self.info_devs[ha['dev']]
if 'dep' in device and self.ignore_this_device(device['dep']): # noqa: E501
return None
dev = {}
# the same name for 'name' and 'suggested area', so we get
# dedicated devices in home assistant with short value
# name and headline
if (sug_area == '' or
('singleton' in device and device['singleton'])):
dev['name'] = device['name']
dev['sa'] = device['name']
else:
dev['name'] = device['name']+' - '+sug_area
dev['sa'] = device['name']+' - '+sug_area
if 'via' in device: # add the link to the parent device
via = device['via']
if via in self.info_devs:
via_dev = self.info_devs[via]
if 'singleton' in via_dev and via_dev['singleton']:
dev['via_device'] = via
else:
dev['via_device'] = f"{via}_{snr}"
else:
self.inc_counter('Internal_Error')
logging.error(f"Infos.info_defs: the row for "
f"{key} has an invalid via value: "
f"{via}")
for key in ('mdl', 'mf', 'sw', 'hw'): # add optional
# values fpr 'modell', 'manufacturer', 'sw version' and
# 'hw version'
if key in device:
data = self.dev_value(device[key])
if data is not None:
dev[key] = data
if 'singleton' in device and device['singleton']:
dev['ids'] = [f"{ha['dev']}"]
else:
dev['ids'] = [f"{ha['dev']}_{snr}"]
attr['dev'] = dev
origin = {}
origin['name'] = self.app_name
origin['sw'] = self.version
attr['o'] = origin
else:
self.inc_counter('Internal_Error')
logging.error(f"Infos.info_defs: the row for {key} "
"missing 'dev' value for ha register")
return json.dumps(attr), component, node_id, attr['uniq_id']
return self.__ha_conf(row, key, ha_prfx, node_id, snr, sug_area)
return None
def __ha_conf(self, row, key, ha_prfx, node_id, snr,
sug_area: str) -> tuple[str, str, str, str] | None:
ha = row['ha']
if 'comp' in ha:
component = ha['comp']
else:
component = 'sensor'
attr = self.__build_attr(row, key, ha_prfx, node_id, snr)
if 'dev' in ha:
device = self.info_devs[ha['dev']]
if 'dep' in device and self.ignore_this_device(device['dep']): # noqa: E501
return None
attr['dev'] = self.__build_dev(device, key, ha, snr,
sug_area)
attr['o'] = self.__build_origin()
else:
self.inc_counter('Internal_Error')
logging.error(f"Infos.info_defs: the row for {key} "
"missing 'dev' value for ha register")
return json.dumps(attr), component, node_id, attr['uniq_id']
def __build_attr(self, row, key, ha_prfx, node_id, snr):
attr = {}
ha = row['ha']
if 'name' in ha:
attr['name'] = ha['name']
else:
attr['name'] = row['name'][-1]
prfx = ha_prfx + node_id
attr['stat_t'] = prfx + row['name'][0]
attr['dev_cla'] = ha['dev_cla']
attr['stat_cla'] = ha['stat_cla']
attr['uniq_id'] = ha['id']+snr
if 'val_tpl' in ha:
attr['val_tpl'] = ha['val_tpl']
elif 'fmt' in ha:
attr['val_tpl'] = '{{value_json' + f"['{row['name'][-1]}'] {ha['fmt']}" + '}}' # eg. 'val_tpl': "{{ value_json['Output_Power']|float }} # noqa: E501
else:
self.inc_counter('Internal_Error')
logging.error(f"Infos.info_defs: the row for {key} do"
" not have a 'val_tpl' nor a 'fmt' value")
# add unit_of_meas only, if status_class isn't none. If
# status_cla is None we want a number format and not line
# graph in home assistant. A unit will change the number
# format to a line graph
if 'unit' in row and attr['stat_cla'] is not None:
attr['unit_of_meas'] = row['unit'] # 'unit_of_meas'
if 'icon' in ha:
attr['ic'] = ha['icon'] # icon for the entity
if 'nat_prc' in ha: # pragma: no cover
attr['sug_dsp_prc'] = ha['nat_prc'] # precison of floats
if 'ent_cat' in ha:
attr['ent_cat'] = ha['ent_cat'] # diagnostic, config
# enabled_by_default is deactivated, since it avoid the via
# setup of the devices. It seems, that there is a bug in home
# assistant. tested with 'Home Assistant 2023.10.4'
# if 'en' in ha: # enabled_by_default
# attr['en'] = ha['en']
return attr
def __build_dev(self, device, key, ha, snr, sug_area):
dev = {}
singleton = 'singleton' in device and device['singleton']
# the same name for 'name' and 'suggested area', so we get
# dedicated devices in home assistant with short value
# name and headline
if (sug_area == '' or singleton):
dev['name'] = device['name']
dev['sa'] = device['name']
else:
dev['name'] = device['name']+' - '+sug_area
dev['sa'] = device['name']+' - '+sug_area
self.__add_via_dev(dev, device, key, snr)
for key in ('mdl', 'mf', 'sw', 'hw', 'sn'): # add optional
# values fpr 'modell', 'manufacturer', 'sw version' and
# 'hw version'
if key in device:
data = self.dev_value(device[key])
if data is not None:
dev[key] = data
if singleton:
dev['ids'] = [f"{ha['dev']}"]
else:
dev['ids'] = [f"{ha['dev']}_{snr}"]
self.__add_connection(dev, device)
return dev
def __add_connection(self, dev, device):
if 'mac' in device:
mac_str = self.dev_value(device['mac'])
if mac_str is not None:
if 12 == len(mac_str):
mac_str = ':'.join(mac_str[i:i+2] for i in range(0, 12, 2))
dev['cns'] = [["mac", f"{mac_str}"]]
def __add_via_dev(self, dev, device, key, snr):
if 'via' in device: # add the link to the parent device
via = device['via']
if via in self.info_devs:
via_dev = self.info_devs[via]
if 'singleton' in via_dev and via_dev['singleton']:
dev['via_device'] = via
else:
dev['via_device'] = f"{via}_{snr}"
else:
self.inc_counter('Internal_Error')
logging.error(f"Infos.info_defs: the row for "
f"{key} has an invalid via value: "
f"{via}")
def __build_origin(self):
origin = {}
origin['name'] = self.app_name
origin['sw'] = self.version
return origin
def ha_remove(self, key, node_id, snr) -> tuple[str, str, str, str] | None:
'''Method to build json unregister struct for home-assistant
to remove topics per auto configuration. Only for inverer topics.

183
app/src/inverter_base.py Normal file
View File

@@ -0,0 +1,183 @@
import weakref
import asyncio
import logging
import traceback
import json
import gc
from aiomqtt import MqttCodeError
from asyncio import StreamReader, StreamWriter
if __name__ == "app.src.inverter_base":
from app.src.inverter_ifc import InverterIfc
from app.src.proxy import Proxy
from app.src.async_stream import StreamPtr
from app.src.async_stream import AsyncStreamClient
from app.src.async_stream import AsyncStreamServer
from app.src.config import Config
from app.src.infos import Infos
else: # pragma: no cover
from inverter_ifc import InverterIfc
from proxy import Proxy
from async_stream import StreamPtr
from async_stream import AsyncStreamClient
from async_stream import AsyncStreamServer
from config import Config
from infos import Infos
logger_mqtt = logging.getLogger('mqtt')
class InverterBase(InverterIfc, Proxy):
def __init__(self, reader: StreamReader, writer: StreamWriter,
config_id: str, prot_class,
client_mode: bool = False):
Proxy.__init__(self)
self._registry.append(weakref.ref(self))
self.addr = writer.get_extra_info('peername')
self.config_id = config_id
self.prot_class = prot_class
self.__ha_restarts = -1
self.remote = StreamPtr(None)
ifc = AsyncStreamServer(reader, writer,
self.async_publ_mqtt,
self.create_remote,
self.remote)
self.local = StreamPtr(
self.prot_class(self.addr, ifc, True, client_mode), ifc
)
def __enter__(self):
return self
def __exit__(self, exc_type, exc, tb) -> None:
logging.debug(f'InverterBase.__exit__() {self.addr}')
self.__del_remote()
self.local.stream.close()
self.local.stream = None
self.local.ifc.close()
self.local.ifc = None
# now explicitly call garbage collector to release unreachable objects
unreachable_obj = gc.collect()
logging.debug(
f'InverterBase.__exit: freed unreachable obj: {unreachable_obj}')
def __del_remote(self):
if self.remote.stream:
self.remote.stream.close()
self.remote.stream = None
if self.remote.ifc:
self.remote.ifc.close()
self.remote.ifc = None
async def disc(self, shutdown_started=False) -> None:
if self.remote.stream:
self.remote.stream.shutdown_started = shutdown_started
if self.remote.ifc:
await self.remote.ifc.disc()
if self.local.stream:
self.local.stream.shutdown_started = shutdown_started
if self.local.ifc:
await self.local.ifc.disc()
def healthy(self) -> bool:
logging.debug('InverterBase healthy()')
if self.local.ifc and not self.local.ifc.healthy():
return False
if self.remote.ifc and not self.remote.ifc.healthy():
return False
return True
async def create_remote(self) -> None:
'''Establish a client connection to the TSUN cloud'''
tsun = Config.get(self.config_id)
host = tsun['host']
port = tsun['port']
addr = (host, port)
stream = self.local.stream
try:
logging.info(f'[{stream.node_id}] Connect to {addr}')
connect = asyncio.open_connection(host, port)
reader, writer = await connect
ifc = AsyncStreamClient(
reader, writer, self.local, self.__del_remote)
self.remote.ifc = ifc
if hasattr(stream, 'id_str'):
self.remote.stream = self.prot_class(
addr, ifc, server_side=False,
client_mode=False, id_str=stream.id_str)
else:
self.remote.stream = self.prot_class(
addr, ifc, server_side=False,
client_mode=False)
logging.info(f'[{self.remote.stream.node_id}:'
f'{self.remote.stream.conn_no}] '
f'Connected to {addr}')
asyncio.create_task(self.remote.ifc.client_loop(addr))
except (ConnectionRefusedError, TimeoutError) as error:
logging.info(f'{error}')
except Exception:
Infos.inc_counter('SW_Exception')
logging.error(
f"Inverter: Exception for {addr}:\n"
f"{traceback.format_exc()}")
async def async_publ_mqtt(self) -> None:
'''publish data to MQTT broker'''
stream = self.local.stream
if not stream or not stream.unique_id:
return
# check if new inverter or collector infos are available or when the
# home assistant has changed the status back to online
try:
if (('inverter' in stream.new_data and stream.new_data['inverter'])
or ('collector' in stream.new_data and
stream.new_data['collector'])
or self.mqtt.ha_restarts != self.__ha_restarts):
await self._register_proxy_stat_home_assistant()
await self.__register_home_assistant(stream)
self.__ha_restarts = self.mqtt.ha_restarts
for key in stream.new_data:
await self.__async_publ_mqtt_packet(stream, key)
for key in Infos.new_stat_data:
await Proxy._async_publ_mqtt_proxy_stat(key)
except MqttCodeError as error:
logging.error(f'Mqtt except: {error}')
except Exception:
Infos.inc_counter('SW_Exception')
logging.error(
f"Inverter: Exception:\n"
f"{traceback.format_exc()}")
async def __async_publ_mqtt_packet(self, stream, key):
db = stream.db.db
if key in db and stream.new_data[key]:
data_json = json.dumps(db[key])
node_id = stream.node_id
logger_mqtt.debug(f'{key}: {data_json}')
await self.mqtt.publish(f'{self.entity_prfx}{node_id}{key}', data_json) # noqa: E501
stream.new_data[key] = False
async def __register_home_assistant(self, stream) -> None:
'''register all our topics at home assistant'''
for data_json, component, node_id, id in stream.db.ha_confs(
self.entity_prfx, stream.node_id, stream.unique_id,
stream.sug_area):
logger_mqtt.debug(f"MQTT Register: cmp:'{component}'"
f" node_id:'{node_id}' {data_json}")
await self.mqtt.publish(f"{self.discovery_prfx}{component}"
f"/{node_id}{id}/config", data_json)
stream.db.reg_clr_at_midnight(f'{self.entity_prfx}{stream.node_id}')

40
app/src/inverter_ifc.py Normal file
View File

@@ -0,0 +1,40 @@
from abc import abstractmethod
import logging
from asyncio import StreamReader, StreamWriter
if __name__ == "app.src.inverter_ifc":
from app.src.iter_registry import AbstractIterMeta
else: # pragma: no cover
from iter_registry import AbstractIterMeta
logger_mqtt = logging.getLogger('mqtt')
class InverterIfc(metaclass=AbstractIterMeta):
_registry = []
@abstractmethod
def __init__(self, reader: StreamReader, writer: StreamWriter,
config_id: str, prot_class,
client_mode: bool):
pass # pragma: no cover
@abstractmethod
def __enter__(self):
pass # pragma: no cover
@abstractmethod
def __exit__(self, exc_type, exc, tb):
pass # pragma: no cover
@abstractmethod
def healthy(self) -> bool:
pass # pragma: no cover
@abstractmethod
async def disc(self, shutdown_started=False) -> None:
pass # pragma: no cover
@abstractmethod
async def create_remote(self) -> None:
pass # pragma: no cover

9
app/src/iter_registry.py Normal file
View File

@@ -0,0 +1,9 @@
from abc import ABCMeta
class AbstractIterMeta(ABCMeta):
def __iter__(cls):
for ref in cls._registry:
obj = ref()
if obj is not None:
yield obj

View File

@@ -1,58 +1,73 @@
import logging
import weakref
from typing import Callable, Generator
from typing import Callable
from enum import Enum
if __name__ == "app.src.messages":
from app.src.protocol_ifc import ProtocolIfc
from app.src.infos import Infos, Register
from app.src.modbus import Modbus
else: # pragma: no cover
from protocol_ifc import ProtocolIfc
from infos import Infos, Register
from modbus import Modbus
logger = logging.getLogger('msg')
def hex_dump_memory(level, info, data, data_len):
def __hex_val(n, data, data_len):
line = ''
for j in range(n-16, n):
if j >= data_len:
break
line += '%02x ' % abs(data[j])
return line
def __asc_val(n, data, data_len):
line = ''
for j in range(n-16, n):
if j >= data_len:
break
c = data[j] if not (data[j] < 0x20 or data[j] > 0x7e) else '.'
line += '%c' % c
return line
def hex_dump(data, data_len) -> list:
n = 0
lines = []
for i in range(0, data_len, 16):
line = ' '
line += '%04x | ' % (i)
n += 16
line += __hex_val(n, data, data_len)
line += ' ' * (3 * 16 + 9 - len(line)) + ' | '
line += __asc_val(n, data, data_len)
lines.append(line)
return lines
def hex_dump_str(data, data_len):
lines = hex_dump(data, data_len)
return '\n'.join(lines)
def hex_dump_memory(level, info, data, data_len):
lines = []
lines.append(info)
tracer = logging.getLogger('tracer')
if not tracer.isEnabledFor(level):
return
for i in range(0, data_len, 16):
line = ' '
line += '%04x | ' % (i)
n += 16
for j in range(n-16, n):
if j >= data_len:
break
line += '%02x ' % abs(data[j])
line += ' ' * (3 * 16 + 9 - len(line)) + ' | '
for j in range(n-16, n):
if j >= data_len:
break
c = data[j] if not (data[j] < 0x20 or data[j] > 0x7e) else '.'
line += '%c' % c
lines.append(line)
lines += hex_dump(data, data_len)
tracer.log(level, '\n'.join(lines))
class IterRegistry(type):
def __iter__(cls) -> Generator['Message', None, None]:
for ref in cls._registry:
obj = ref()
if obj is not None:
yield obj
class State(Enum):
'''state of the logical connection'''
init = 0
@@ -67,8 +82,13 @@ class State(Enum):
'''connection closed'''
class Message(metaclass=IterRegistry):
_registry = []
class Message(ProtocolIfc):
MAX_START_TIME = 400
'''maximum time without a received msg in sec'''
MAX_INV_IDLE_TIME = 120
'''maximum time without a received msg from the inverter in sec'''
MAX_DEF_IDLE_TIME = 360
'''maximum default time without a received msg in sec'''
def __init__(self, server_side: bool, send_modbus_cb:
Callable[[bytes, int, str], None], mb_timeout: int):
@@ -84,15 +104,21 @@ class Message(metaclass=IterRegistry):
self.header_len = 0
self.data_len = 0
self.unique_id = 0
self.node_id = '' # will be overwritten in the child class's __init__
self._node_id = ''
self.sug_area = ''
self._recv_buffer = bytearray(0)
self._send_buffer = bytearray(0)
self._forward_buffer = bytearray(0)
self.new_data = {}
self.state = State.init
self.shutdown_started = False
@property
def node_id(self):
return self._node_id
@node_id.setter
def node_id(self, value):
self._node_id = value
self.ifc.set_node_id(value)
'''
Empty methods, that have to be implemented in any child class which
don't use asyncio
@@ -101,10 +127,6 @@ class Message(metaclass=IterRegistry):
# to our _recv_buffer
return # pragma: no cover
def _update_header(self, _forward_buffer):
'''callback for updating the header of the forward buffer'''
pass # pragma: no cover
def _set_mqtt_timestamp(self, key, ts: float | None):
if key not in self.new_data or \
not self.new_data[key]:
@@ -120,6 +142,16 @@ class Message(metaclass=IterRegistry):
# logger.info(f'update: key: {key} ts:{tstr}'
self.db.set_db_def_value(info_id, round(ts))
def _timeout(self) -> int:
if self.state == State.init or self.state == State.received:
to = self.MAX_START_TIME
elif self.state == State.up and \
self.server_side and self.modbus_polling:
to = self.MAX_INV_IDLE_TIME
else:
to = self.MAX_DEF_IDLE_TIME
return to
'''
Our puplic methods
'''

View File

@@ -39,7 +39,7 @@ class Modbus():
'''Modbus function code: Write Single Register'''
__crc_tab = []
map = {
mb_reg_mapping = {
0x2007: {'reg': Register.MAX_DESIGNED_POWER, 'fmt': '!H', 'ratio': 1}, # noqa: E501
0x202c: {'reg': Register.OUTPUT_COEFFICIENT, 'fmt': '!H', 'ratio': 100/1024}, # noqa: E501
@@ -117,10 +117,6 @@ class Modbus():
while not self.que.empty():
self.que.get_nowait()
def __del__(self):
"""log statistics on the deleting of a MODBUS instance"""
logging.debug(f'Modbus __del__:\n {self.counter}')
def build_msg(self, addr: int, func: int, reg: int, val: int,
log_lvl=logging.DEBUG) -> None:
"""Build MODBUS RTU request frame and add it to the tx queue
@@ -139,7 +135,7 @@ class Modbus():
if self.que.qsize() == 1:
self.__send_next_from_que()
def recv_req(self, buf: bytearray,
def recv_req(self, buf: bytes,
rsp_handler: Callable[[None], None] = None) -> bool:
"""Add the received Modbus RTU request to the tx queue
@@ -164,7 +160,7 @@ class Modbus():
return True
def recv_resp(self, info_db, buf: bytearray, node_id: str) -> \
def recv_resp(self, info_db, buf: bytes, node_id: str) -> \
Generator[tuple[str, bool, int | float | str], None, None]:
"""Generator which check and parse a received MODBUS response.
@@ -183,58 +179,18 @@ class Modbus():
# logging.info(f'recv_resp: first byte modbus:{buf[0]} len:{len(buf)}')
self.node_id = node_id
if not self.req_pend:
self.err = 5
return
if not self.__check_crc(buf):
logger.error(f'[{node_id}] Modbus resp: CRC error')
self.err = 1
return
if buf[0] != self.last_addr:
logger.info(f'[{node_id}] Modbus resp: Wrong addr {buf[0]}')
self.err = 2
return
fcode = buf[1]
if fcode != self.last_fcode:
logger.info(f'[{node_id}] Modbus: Wrong fcode {fcode}'
f' != {self.last_fcode}')
self.err = 3
data_available = self.last_addr == self.INV_ADDR and \
(fcode == 3 or fcode == 4)
if self.__resp_error_check(buf, data_available):
return
if self.last_addr == self.INV_ADDR and \
(fcode == 3 or fcode == 4):
if data_available:
elmlen = buf[2] >> 1
if elmlen != self.last_len:
logger.info(f'[{node_id}] Modbus: len error {elmlen}'
f' != {self.last_len}')
self.err = 4
return
first_reg = self.last_reg # save last_reg before sending next pdu
self.__stop_timer() # stop timer and send next pdu
for i in range(0, elmlen):
addr = first_reg+i
if addr in self.map:
row = self.map[addr]
info_id = row['reg']
fmt = row['fmt']
val = struct.unpack_from(fmt, buf, 3+2*i)
result = val[0]
if 'eval' in row:
result = eval(row['eval'])
if 'ratio' in row:
result = round(result * row['ratio'], 2)
keys, level, unit, must_incr = info_db._key_obj(info_id)
if keys:
name, update = info_db.update_db(keys, must_incr,
result)
yield keys[0], update, result
if update:
info_db.tracer.log(level,
f'[{node_id}] MODBUS: {name}'
f' : {result}{unit}')
yield from self.__process_data(info_db, buf, first_reg, elmlen)
else:
self.__stop_timer()
@@ -243,6 +199,64 @@ class Modbus():
self.rsp_handler()
self.__send_next_from_que()
def __resp_error_check(self, buf: bytes, data_available: bool) -> bool:
'''Check the MODBUS response for errors, returns True if one accure'''
if not self.req_pend:
self.err = 5
return True
if not self.__check_crc(buf):
logger.error(f'[{self.node_id}] Modbus resp: CRC error')
self.err = 1
return True
if buf[0] != self.last_addr:
logger.info(f'[{self.node_id}] Modbus resp: Wrong addr {buf[0]}')
self.err = 2
return True
fcode = buf[1]
if fcode != self.last_fcode:
logger.info(f'[{self.node_id}] Modbus: Wrong fcode {fcode}'
f' != {self.last_fcode}')
self.err = 3
return True
if data_available:
elmlen = buf[2] >> 1
if elmlen != self.last_len:
logger.info(f'[{self.node_id}] Modbus: len error {elmlen}'
f' != {self.last_len}')
self.err = 4
return True
return False
def __get_value(self, buf: bytes, idx: int, row: dict):
'''get a value from the received buffer'''
val = struct.unpack_from(row['fmt'], buf, idx)
result = val[0]
if 'eval' in row:
result = eval(row['eval'])
if 'ratio' in row:
result = round(result * row['ratio'], 2)
return result
def __process_data(self, info_db, buf: bytes, first_reg, elmlen):
'''Generator over received registers, updates the db'''
for i in range(0, elmlen):
addr = first_reg+i
if addr in self.mb_reg_mapping:
row = self.mb_reg_mapping[addr]
info_id = row['reg']
keys, level, unit, must_incr = info_db._key_obj(info_id)
if keys:
result = self.__get_value(buf, 3+2*i, row)
name, update = info_db.update_db(keys, must_incr,
result)
yield keys[0], update, result
if update:
info_db.tracer.log(level,
f'[{self.node_id}] MODBUS: {name}'
f' : {result}{unit}')
'''
MODBUS response timer
'''
@@ -302,11 +316,11 @@ class Modbus():
'''
Helper function for CRC-16 handling
'''
def __check_crc(self, msg: bytearray) -> bool:
def __check_crc(self, msg: bytes) -> bool:
'''Check CRC-16 and returns True if valid'''
return 0 == self.__calc_crc(msg)
def __calc_crc(self, buffer: bytearray) -> int:
def __calc_crc(self, buffer: bytes) -> int:
'''Build CRC-16 for buffer and returns it'''
crc = CRC_INIT

View File

@@ -1,10 +1,15 @@
import logging
import traceback
import asyncio
from config import Config
# import gc
from gen3plus.inverter_g3p import InverterG3P
if __name__ == "app.src.modbus_tcp":
from app.src.config import Config
from app.src.gen3plus.inverter_g3p import InverterG3P
from app.src.infos import Infos
else: # pragma: no cover
from config import Config
from gen3plus.inverter_g3p import InverterG3P
from infos import Infos
logger = logging.getLogger('conn')
@@ -14,28 +19,33 @@ class ModbusConn():
self.host = host
self.port = port
self.addr = (host, port)
self.stream = None
self.inverter = None
async def __aenter__(self) -> 'InverterG3P':
'''Establish a client connection to the TSUN cloud'''
connection = asyncio.open_connection(self.host, self.port)
reader, writer = await connection
self.stream = InverterG3P(reader, writer, self.addr,
client_mode=True)
logging.info(f'[{self.stream.node_id}:{self.stream.conn_no}] '
self.inverter = InverterG3P(reader, writer,
client_mode=True)
self.inverter.__enter__()
stream = self.inverter.local.stream
logging.info(f'[{stream.node_id}:{stream.conn_no}] '
f'Connected to {self.addr}')
self.stream.inc_counter('Inverter_Cnt')
await self.stream.publish_outstanding_mqtt()
return self.stream
Infos.inc_counter('Inverter_Cnt')
await self.inverter.local.ifc.publish_outstanding_mqtt()
return self.inverter
async def __aexit__(self, exc_type, exc, tb):
self.stream.dec_counter('Inverter_Cnt')
await self.stream.publish_outstanding_mqtt()
Infos.dec_counter('Inverter_Cnt')
await self.inverter.local.ifc.publish_outstanding_mqtt()
self.inverter.__exit__(exc_type, exc, tb)
class ModbusTcp():
def __init__(self, loop) -> None:
def __init__(self, loop, tim_restart=10) -> None:
self.tim_restart = tim_restart
inverters = Config.get('inverters')
# logging.info(f'Inverters: {inverters}')
@@ -53,24 +63,29 @@ class ModbusTcp():
'''Loop for receiving messages from the TSUN cloud (client-side)'''
while True:
try:
async with ModbusConn(host, port) as stream:
async with ModbusConn(host, port) as inverter:
stream = inverter.local.stream
await stream.send_start_cmd(snr, host)
await stream.loop()
await stream.ifc.loop()
logger.info(f'[{stream.node_id}:{stream.conn_no}] '
f'Connection closed - Shutdown: '
f'{stream.shutdown_started}')
if stream.shutdown_started:
return
del inverter # decrease ref counter after the with block
except (ConnectionRefusedError, TimeoutError) as error:
logging.debug(f'Inv-conn:{error}')
except OSError as error:
logging.info(f'os-error: {error}')
if error.errno == 113: # pragma: no cover
logging.debug(f'os-error:{error}')
else:
logging.info(f'os-error: {error}')
except Exception:
logging.error(
f"ModbusTcpCreate: Exception for {(host,port)}:\n"
f"ModbusTcpCreate: Exception for {(host, port)}:\n"
f"{traceback.format_exc()}")
await asyncio.sleep(10)
await asyncio.sleep(self.tim_restart)

View File

@@ -2,26 +2,40 @@ import asyncio
import logging
import aiomqtt
import traceback
from modbus import Modbus
from messages import Message
from config import Config
from singleton import Singleton
if __name__ == "app.src.mqtt":
from app.src.modbus import Modbus
from app.src.messages import Message
from app.src.config import Config
from app.src.singleton import Singleton
else: # pragma: no cover
from modbus import Modbus
from messages import Message
from config import Config
from singleton import Singleton
logger_mqtt = logging.getLogger('mqtt')
class Mqtt(metaclass=Singleton):
__client = None
__cb_MqttIsUp = None
__cb_mqtt_is_up = None
def __init__(self, cb_MqttIsUp):
def __init__(self, cb_mqtt_is_up):
logger_mqtt.debug('MQTT: __init__')
if cb_MqttIsUp:
self.__cb_MqttIsUp = cb_MqttIsUp
if cb_mqtt_is_up:
self.__cb_mqtt_is_up = cb_mqtt_is_up
loop = asyncio.get_event_loop()
self.task = loop.create_task(self.__loop())
self.ha_restarts = 0
ha = Config.get('ha')
self.ha_status_topic = f"{ha['auto_conf_prefix']}/status"
self.mb_rated_topic = f"{ha['entity_prefix']}/+/rated_load"
self.mb_out_coeff_topic = f"{ha['entity_prefix']}/+/out_coeff"
self.mb_reads_topic = f"{ha['entity_prefix']}/+/modbus_read_regs"
self.mb_inputs_topic = f"{ha['entity_prefix']}/+/modbus_read_inputs"
self.mb_at_cmd_topic = f"{ha['entity_prefix']}/+/at_cmd"
@property
def ha_restarts(self):
return self._ha_restarts
@@ -30,9 +44,6 @@ class Mqtt(metaclass=Singleton):
def ha_restarts(self, value):
self._ha_restarts = value
def __del__(self):
logger_mqtt.debug('MQTT: __del__')
async def close(self) -> None:
logger_mqtt.debug('MQTT: close')
self.task.cancel()
@@ -49,7 +60,6 @@ class Mqtt(metaclass=Singleton):
async def __loop(self) -> None:
mqtt = Config.get('mqtt')
ha = Config.get('ha')
logger_mqtt.info(f'start MQTT: host:{mqtt["host"]} port:'
f'{mqtt["port"]} '
f'user:{mqtt["user"]}')
@@ -59,66 +69,24 @@ class Mqtt(metaclass=Singleton):
password=mqtt['passwd'])
interval = 5 # Seconds
ha_status_topic = f"{ha['auto_conf_prefix']}/status"
mb_rated_topic = "tsun/+/rated_load" # fixme
mb_out_coeff_topic = "tsun/+/out_coeff" # fixme
mb_reads_topic = "tsun/+/modbus_read_regs" # fixme
mb_inputs_topic = "tsun/+/modbus_read_inputs" # fixme
mb_at_cmd_topic = "tsun/+/at_cmd" # fixme
while True:
try:
async with self.__client:
logger_mqtt.info('MQTT broker connection established')
if self.__cb_MqttIsUp:
await self.__cb_MqttIsUp()
if self.__cb_mqtt_is_up:
await self.__cb_mqtt_is_up()
# async with self.__client.messages() as messages:
await self.__client.subscribe(ha_status_topic)
await self.__client.subscribe(mb_rated_topic)
await self.__client.subscribe(mb_out_coeff_topic)
await self.__client.subscribe(mb_reads_topic)
await self.__client.subscribe(mb_inputs_topic)
await self.__client.subscribe(mb_at_cmd_topic)
await self.__client.subscribe(self.ha_status_topic)
await self.__client.subscribe(self.mb_rated_topic)
await self.__client.subscribe(self.mb_out_coeff_topic)
await self.__client.subscribe(self.mb_reads_topic)
await self.__client.subscribe(self.mb_inputs_topic)
await self.__client.subscribe(self.mb_at_cmd_topic)
async for message in self.__client.messages:
if message.topic.matches(ha_status_topic):
status = message.payload.decode("UTF-8")
logger_mqtt.info('Home-Assistant Status:'
f' {status}')
if status == 'online':
self.ha_restarts += 1
await self.__cb_MqttIsUp()
if message.topic.matches(mb_rated_topic):
await self.modbus_cmd(message,
Modbus.WRITE_SINGLE_REG,
1, 0x2008)
if message.topic.matches(mb_out_coeff_topic):
payload = message.payload.decode("UTF-8")
val = round(float(payload) * 1024/100)
if val < 0 or val > 1024:
logger_mqtt.error('out_coeff: value must be in'
'the range 0..100,'
f' got: {payload}')
else:
await self.modbus_cmd(message,
Modbus.WRITE_SINGLE_REG,
0, 0x202c, val)
if message.topic.matches(mb_reads_topic):
await self.modbus_cmd(message,
Modbus.READ_REGS, 2)
if message.topic.matches(mb_inputs_topic):
await self.modbus_cmd(message,
Modbus.READ_INPUTS, 2)
if message.topic.matches(mb_at_cmd_topic):
await self.at_cmd(message)
await self.dispatch_msg(message)
except aiomqtt.MqttError:
if Config.is_default('mqtt'):
@@ -142,46 +110,76 @@ class Mqtt(metaclass=Singleton):
f"Exception:\n"
f"{traceback.format_exc()}")
async def dispatch_msg(self, message):
if message.topic.matches(self.ha_status_topic):
status = message.payload.decode("UTF-8")
logger_mqtt.info('Home-Assistant Status:'
f' {status}')
if status == 'online':
self.ha_restarts += 1
await self.__cb_mqtt_is_up()
if message.topic.matches(self.mb_rated_topic):
await self.modbus_cmd(message,
Modbus.WRITE_SINGLE_REG,
1, 0x2008)
if message.topic.matches(self.mb_out_coeff_topic):
payload = message.payload.decode("UTF-8")
try:
val = round(float(payload) * 1024/100)
if val < 0 or val > 1024:
logger_mqtt.error('out_coeff: value must be in'
'the range 0..100,'
f' got: {payload}')
else:
await self.modbus_cmd(message,
Modbus.WRITE_SINGLE_REG,
0, 0x202c, val)
except Exception:
pass
if message.topic.matches(self.mb_reads_topic):
await self.modbus_cmd(message,
Modbus.READ_REGS, 2)
if message.topic.matches(self.mb_inputs_topic):
await self.modbus_cmd(message,
Modbus.READ_INPUTS, 2)
if message.topic.matches(self.mb_at_cmd_topic):
await self.at_cmd(message)
def each_inverter(self, message, func_name: str):
topic = str(message.topic)
node_id = topic.split('/')[1] + '/'
found = False
for m in Message:
if m.server_side and (m.node_id == node_id):
found = True
logger_mqtt.debug(f'Found: {node_id}')
fnc = getattr(m, func_name, None)
if callable(fnc):
yield fnc
else:
logger_mqtt.warning(f'Cmd not supported by: {node_id}')
break
if not found:
else:
logger_mqtt.warning(f'Node_id: {node_id} not found')
async def modbus_cmd(self, message, func, params=0, addr=0, val=0):
topic = str(message.topic)
node_id = topic.split('/')[1] + '/'
# refactor into a loop over a table
payload = message.payload.decode("UTF-8")
logger_mqtt.info(f'MODBUS via MQTT: {topic} = {payload}')
for m in Message:
if m.server_side and (m.node_id == node_id):
logger_mqtt.debug(f'Found: {node_id}')
fnc = getattr(m, "send_modbus_cmd", None)
res = payload.split(',')
if params > 0 and params != len(res):
logger_mqtt.error(f'Parameter expected: {params}, '
f'got: {len(res)}')
return
if callable(fnc):
if params == 1:
val = int(payload)
elif params == 2:
addr = int(res[0], base=16)
val = int(res[1]) # lenght
await fnc(func, addr, val, logging.INFO)
for fnc in self.each_inverter(message, "send_modbus_cmd"):
res = payload.split(',')
if params > 0 and params != len(res):
logger_mqtt.error(f'Parameter expected: {params}, '
f'got: {len(res)}')
return
if params == 1:
val = int(payload)
elif params == 2:
addr = int(res[0], base=16)
val = int(res[1]) # lenght
await fnc(func, addr, val, logging.INFO)
async def at_cmd(self, message):
payload = message.payload.decode("UTF-8")

21
app/src/protocol_ifc.py Normal file
View File

@@ -0,0 +1,21 @@
from abc import abstractmethod
if __name__ == "app.src.protocol_ifc":
from app.src.iter_registry import AbstractIterMeta
from app.src.async_ifc import AsyncIfc
else: # pragma: no cover
from iter_registry import AbstractIterMeta
from async_ifc import AsyncIfc
class ProtocolIfc(metaclass=AbstractIterMeta):
_registry = []
@abstractmethod
def __init__(self, addr, ifc: "AsyncIfc", server_side: bool,
client_mode: bool = False, id_str=b''):
pass # pragma: no cover
@abstractmethod
def close(self):
pass # pragma: no cover

View File

@@ -1,18 +1,45 @@
import asyncio
import logging
import json
from config import Config
from mqtt import Mqtt
from infos import Infos
# logger = logging.getLogger('conn')
if __name__ == "app.src.proxy":
from app.src.config import Config
from app.src.mqtt import Mqtt
from app.src.infos import Infos
else: # pragma: no cover
from config import Config
from mqtt import Mqtt
from infos import Infos
logger_mqtt = logging.getLogger('mqtt')
class Inverter():
class Proxy():
'''class Proxy is a baseclass
The class has some class method for managing common resources like a
connection to the MQTT broker or proxy error counter which are common
for all inverter connection
Instances of the class are connections to an inverter and can have an
optional link to an remote connection to the TSUN cloud. A remote
connection dies with the inverter connection.
class methods:
class_init(): initialize the common resources of the proxy (MQTT
broker, Proxy DB, etc). Must be called before the
first inverter instance can be created
class_close(): release the common resources of the proxy. Should not
be called before any instances of the class are
destroyed
methods:
create_remote(): Establish a client connection to the TSUN cloud
async_publ_mqtt(): Publish data to MQTT broker
'''
@classmethod
def class_init(cls) -> None:
logging.debug('Inverter.class_init')
logging.debug('Proxy.class_init')
# initialize the proxy statistics
Infos.static_init()
cls.db_stat = Infos()
@@ -34,7 +61,7 @@ class Inverter():
# reset at midnight when you restart the proxy just before
# midnight!
inverters = Config.get('inverters')
# logger.debug(f'Inverters: {inverters}')
# logger.debug(f'Proxys: {inverters}')
for inv in inverters.values():
if (type(inv) is dict):
node_id = inv['node_id']
@@ -72,8 +99,8 @@ class Inverter():
Infos.new_stat_data[key] = False
@classmethod
def class_close(cls, loop) -> None:
logging.debug('Inverter.class_close')
def class_close(cls, loop) -> None: # pragma: no cover
logging.debug('Proxy.class_close')
logging.info('Close MQTT Task')
loop.run_until_complete(cls.mqtt.close())
cls.mqtt = None

View File

@@ -5,8 +5,8 @@ import os
from asyncio import StreamReader, StreamWriter
from aiohttp import web
from logging import config # noqa F401
from messages import Message
from inverter import Inverter
from proxy import Proxy
from inverter_ifc import InverterIfc
from gen3.inverter_g3 import InverterG3
from gen3plus.inverter_g3p import InverterG3P
from scheduler import Schedule
@@ -38,9 +38,9 @@ async def healthy(request):
if proxy_is_up:
# logging.info('web reqeust healthy()')
for stream in Message:
for inverter in InverterIfc:
try:
res = stream.healthy()
res = inverter.healthy()
if not res:
return web.Response(status=503, text="I have a problem")
except Exception as err:
@@ -70,18 +70,11 @@ async def webserver(addr, port):
logging.debug('HTTP cleanup done')
async def handle_client(reader: StreamReader, writer: StreamWriter):
async def handle_client(reader: StreamReader, writer: StreamWriter, inv_class):
'''Handles a new incoming connection and starts an async loop'''
addr = writer.get_extra_info('peername')
await InverterG3(reader, writer, addr).server_loop(addr)
async def handle_client_v2(reader: StreamReader, writer: StreamWriter):
'''Handles a new incoming connection and starts an async loop'''
addr = writer.get_extra_info('peername')
await InverterG3P(reader, writer, addr).server_loop(addr)
with inv_class(reader, writer) as inv:
await inv.local.ifc.server_loop()
async def handle_shutdown(web_task):
@@ -94,25 +87,13 @@ async def handle_shutdown(web_task):
#
# first, disc all open TCP connections gracefully
#
for stream in Message:
stream.shutdown_started = True
try:
await asyncio.wait_for(stream.disc(), 2)
except Exception:
pass
for inverter in InverterIfc:
await inverter.disc(True)
logging.info('Proxy disconnecting done')
#
# second, close all open TCP connections
#
for stream in Message:
stream.close()
await asyncio.sleep(0.1) # give time for closing
logging.info('Proxy closing done')
#
# third, cancel the web server
# second, cancel the web server
#
web_task.cancel()
await web_task
@@ -171,17 +152,19 @@ if __name__ == "__main__":
ConfigErr = Config.class_init()
if ConfigErr is not None:
logging.info(f'ConfigErr: {ConfigErr}')
Inverter.class_init()
Proxy.class_init()
Schedule.start()
mb_tcp = ModbusTcp(loop)
ModbusTcp(loop)
#
# Create tasks for our listening servers. These must be tasks! If we call
# start_server directly out of our main task, the eventloop will be blocked
# and we can't receive and handle the UNIX signals!
#
loop.create_task(asyncio.start_server(handle_client, '0.0.0.0', 5005))
loop.create_task(asyncio.start_server(handle_client_v2, '0.0.0.0', 10000))
for inv_class, port in [(InverterG3, 5005), (InverterG3P, 10000)]:
loop.create_task(asyncio.start_server(lambda r, w, i=inv_class:
handle_client(r, w, i),
'0.0.0.0', port))
web_task = loop.create_task(webserver('0.0.0.0', 8127))
#
@@ -202,7 +185,7 @@ if __name__ == "__main__":
pass
finally:
logging.info("Event loop is stopped")
Inverter.class_close(loop)
Proxy.class_close(loop)
logging.debug('Close event loop')
loop.close()
logging.info(f'Finally, exit Server "{serv_name}"')

View File

@@ -1,9 +1,14 @@
from weakref import WeakValueDictionary
class Singleton(type):
_instances = {}
_instances = WeakValueDictionary()
def __call__(cls, *args, **kwargs):
# logger_mqtt.debug('singleton: __call__')
if cls not in cls._instances:
cls._instances[cls] = super(Singleton,
cls).__call__(*args, **kwargs)
instance = super(Singleton,
cls).__call__(*args, **kwargs)
cls._instances[cls] = instance
return cls._instances[cls]

View File

@@ -0,0 +1,532 @@
# test_with_pytest.py
import pytest
import asyncio
import gc
import time
from app.src.infos import Infos
from app.src.inverter_base import InverterBase
from app.src.async_stream import AsyncStreamServer, AsyncStreamClient, StreamPtr
from app.src.messages import Message
from app.tests.test_modbus_tcp import FakeReader, FakeWriter
from app.tests.test_inverter_base import config_conn, patch_open_connection
pytest_plugins = ('pytest_asyncio',)
# initialize the proxy statistics
Infos.static_init()
class FakeProto(Message):
def __init__(self, server_side):
super().__init__(server_side, None, 10)
self.conn_no = 0
def fake_reader_fwd():
reader = FakeReader()
reader.test = FakeReader.RD_TEST_13_BYTES
reader.on_recv.set()
return reader
def test_timeout_cb():
reader = FakeReader()
writer = FakeWriter()
def timeout():
return 13
ifc = AsyncStreamClient(reader, writer, None, None)
assert 360 == ifc._AsyncStream__timeout()
ifc.prot_set_timeout_cb(timeout)
assert 13 == ifc._AsyncStream__timeout()
ifc.prot_set_timeout_cb(None)
assert 360 == ifc._AsyncStream__timeout()
# call healthy outside the contexter manager (__exit__() was called)
assert ifc.healthy()
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
def test_health():
reader = FakeReader()
writer = FakeWriter()
ifc = AsyncStreamClient(reader, writer, None, None)
ifc.proc_start = time.time()
assert ifc.healthy()
ifc.proc_start = time.time() -10
assert not ifc.healthy()
ifc.proc_start = None
assert ifc.healthy()
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_close_cb():
assert asyncio.get_running_loop()
reader = FakeReader()
writer = FakeWriter()
cnt = 0
def timeout():
return 0.1
def closed():
nonlocal cnt
nonlocal ifc
ifc.close() # clears the closed callback
cnt += 1
cnt = 0
ifc = AsyncStreamClient(reader, writer, None, closed)
ifc.prot_set_timeout_cb(timeout)
await ifc.client_loop('')
assert cnt == 1
ifc.prot_set_timeout_cb(timeout)
await ifc.client_loop('')
assert cnt == 1 # check that the closed method would not be called
del ifc
cnt = 0
ifc = AsyncStreamClient(reader, writer, None, None)
ifc.prot_set_timeout_cb(timeout)
await ifc.client_loop('')
assert cnt == 0
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_read():
global test
assert asyncio.get_running_loop()
reader = FakeReader()
reader.test = FakeReader.RD_TEST_13_BYTES
reader.on_recv.set()
writer = FakeWriter()
cnt = 0
def timeout():
return 1
def closed():
nonlocal cnt
nonlocal ifc
ifc.close() # clears the closed callback
cnt += 1
def app_read():
nonlocal ifc
ifc.proc_start -= 3
return 0.01 # async wait of 0.01
cnt = 0
ifc = AsyncStreamClient(reader, writer, None, closed)
ifc.proc_max = 0
ifc.prot_set_timeout_cb(timeout)
ifc.rx_set_cb(app_read)
await ifc.client_loop('')
print('End loop')
assert ifc.proc_max >= 3
assert 13 == ifc.rx_len()
assert cnt == 1
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_write():
global test
assert asyncio.get_running_loop()
reader = FakeReader()
reader.test = FakeReader.RD_TEST_13_BYTES
reader.on_recv.set()
writer = FakeWriter()
cnt = 0
def timeout():
return 1
def closed():
nonlocal cnt
nonlocal ifc
ifc.close() # clears the closed callback
cnt += 1
def app_read():
nonlocal ifc
ifc.proc_start -= 3
return 0.01 # async wait of 0.01
cnt = 0
ifc = AsyncStreamClient(reader, writer, None, closed)
ifc.proc_max = 10
ifc.prot_set_timeout_cb(timeout)
ifc.rx_set_cb(app_read)
ifc.tx_add(b'test-data-resp')
assert 14 == ifc.tx_len()
await ifc.client_loop('')
print('End loop')
assert ifc.proc_max >= 3
assert 13 == ifc.rx_len()
assert 0 == ifc.tx_len()
assert cnt == 1
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_publ_mqtt_cb():
assert asyncio.get_running_loop()
reader = FakeReader()
reader.test = FakeReader.RD_TEST_13_BYTES
reader.on_recv.set()
writer = FakeWriter()
cnt = 0
def timeout():
return 0.1
async def publ_mqtt():
nonlocal cnt
nonlocal ifc
cnt += 1
cnt = 0
ifc = AsyncStreamServer(reader, writer, publ_mqtt, None, None)
assert ifc.async_publ_mqtt
ifc.prot_set_timeout_cb(timeout)
await ifc.server_loop()
assert cnt == 3 # 2 calls in server_loop() and 1 in loop()
assert ifc.async_publ_mqtt
ifc.close() # clears the closed callback
assert not ifc.async_publ_mqtt
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_create_remote_cb():
assert asyncio.get_running_loop()
reader = FakeReader()
writer = FakeWriter()
cnt = 0
def timeout():
return 0.1
async def create_remote():
nonlocal cnt
nonlocal ifc
ifc.close() # clears the closed callback
cnt += 1
cnt = 0
ifc = AsyncStreamServer(reader, writer, None, create_remote, None)
assert ifc.create_remote
await ifc.create_remote()
assert cnt == 1
ifc.prot_set_timeout_cb(timeout)
await ifc.server_loop()
assert not ifc.create_remote
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_sw_exception():
global test
assert asyncio.get_running_loop()
reader = FakeReader()
reader.test = FakeReader.RD_TEST_SW_EXCEPT
reader.on_recv.set()
writer = FakeWriter()
cnt = 0
def timeout():
return 1
def closed():
nonlocal cnt
nonlocal ifc
ifc.close() # clears the closed callback
cnt += 1
cnt = 0
ifc = AsyncStreamClient(reader, writer, None, closed)
ifc.prot_set_timeout_cb(timeout)
await ifc.client_loop('')
print('End loop')
assert cnt == 1
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_os_error():
global test
assert asyncio.get_running_loop()
reader = FakeReader()
reader.test = FakeReader.RD_TEST_OS_ERROR
reader.on_recv.set()
writer = FakeWriter()
cnt = 0
def timeout():
return 1
def closed():
nonlocal cnt
nonlocal ifc
ifc.close() # clears the closed callback
cnt += 1
cnt = 0
ifc = AsyncStreamClient(reader, writer, None, closed)
ifc.prot_set_timeout_cb(timeout)
await ifc.client_loop('')
print('End loop')
assert cnt == 1
del ifc
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
class TestType():
FWD_NO_EXCPT = 1
FWD_SW_EXCPT = 2
FWD_TIMEOUT = 3
FWD_OS_ERROR = 4
FWD_OS_ERROR_NO_STREAM = 5
FWD_RUNTIME_ERROR = 6
FWD_RUNTIME_ERROR_NO_STREAM = 7
def create_remote(remote, test_type, with_close_hdr:bool = False):
def update_hdr(buf):
return
def callback():
if test_type == TestType.FWD_SW_EXCPT:
remote.unknown_var += 1
elif test_type == TestType.FWD_TIMEOUT:
raise TimeoutError
elif test_type == TestType.FWD_OS_ERROR:
raise ConnectionRefusedError
elif test_type == TestType.FWD_OS_ERROR_NO_STREAM:
remote.stream = None
raise ConnectionRefusedError
elif test_type == TestType.FWD_RUNTIME_ERROR:
raise RuntimeError("Peer closed")
elif test_type == TestType.FWD_RUNTIME_ERROR_NO_STREAM:
remote.stream = None
raise RuntimeError("Peer closed")
def close():
return
if with_close_hdr:
close_hndl = close
else:
close_hndl = None
remote.ifc = AsyncStreamClient(
FakeReader(), FakeWriter(), StreamPtr(None), close_hndl)
remote.ifc.prot_set_update_header_cb(update_hdr)
remote.ifc.prot_set_init_new_client_conn_cb(callback)
remote.stream = FakeProto(False)
@pytest.mark.asyncio
async def test_forward():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote, ifc
create_remote(remote, TestType.FWD_NO_EXCPT)
ifc.fwd_add(b'test-forward_msg2 ')
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_with_conn():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote, ifc
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
create_remote(remote, TestType.FWD_NO_EXCPT)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 0
del ifc
@pytest.mark.asyncio
async def test_forward_no_conn():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_sw_except():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_SW_EXCPT)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_os_error():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_OS_ERROR)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_os_error2():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_OS_ERROR, True)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_os_error3():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_OS_ERROR_NO_STREAM)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_runtime_error():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_RUNTIME_ERROR)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_runtime_error2():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_RUNTIME_ERROR, True)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_runtime_error3():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _create_remote():
nonlocal cnt, remote
create_remote(remote, TestType.FWD_RUNTIME_ERROR_NO_STREAM, True)
cnt += 1
cnt = 0
ifc = AsyncStreamServer(fake_reader_fwd(), FakeWriter(), None, _create_remote, remote)
ifc.fwd_add(b'test-forward_msg')
await ifc.server_loop()
assert cnt == 1
del ifc

View File

@@ -0,0 +1,43 @@
# test_with_pytest.py
from app.src.byte_fifo import ByteFifo
def test_fifo():
read = ByteFifo()
assert 0 == len(read)
read += b'12'
assert 2 == len(read)
read += bytearray("34", encoding='UTF8')
assert 4 == len(read)
assert b'12' == read.peek(2)
assert 4 == len(read)
assert b'1234' == read.peek()
assert 4 == len(read)
assert b'12' == read.get(2)
assert 2 == len(read)
assert b'34' == read.get()
assert 0 == len(read)
def test_fifo_fmt():
read = ByteFifo()
read += b'1234'
assert b'1234' == read.peek()
assert " 0000 | 31 32 33 34 | 1234" == f'{read}'
def test_fifo_observer():
read = ByteFifo()
def _read():
assert b'1234' == read.get(4)
read += b'12'
assert 2 == len(read)
read()
read.reg_trigger(_read)
read += b'34'
assert 4 == len(read)
read()
assert 0 == len(read)
assert b'' == read.peek(2)
assert b'' == read.get(2)
assert 0 == len(read)

View File

@@ -7,11 +7,11 @@ class TstConfig(Config):
@classmethod
def set(cls, cnf):
cls.config = cnf
cls.act_config = cnf
@classmethod
def _read_config_file(cls) -> dict:
return cls.config
return cls.act_config
def test_empty_config():
@@ -30,7 +30,33 @@ def test_default_config():
validated = Config.conf_schema.validate(cnf)
except Exception:
assert False
assert validated == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'node_id': '', 'modbus_polling': False, 'monitor_sn': 0, 'suggested_area': ''}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'node_id': '', 'suggested_area': ''}}}
assert validated == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'},
'inverters': {
'allow_all': False,
'R170000000000001': {
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'modbus_polling': False,
'monitor_sn': 0,
'suggested_area': '',
'sensor_list': 688},
'Y170000000000001': {
'modbus_polling': True,
'monitor_sn': 2000000000,
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv3': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv4': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'suggested_area': '',
'sensor_list': 688}}}
def test_full_config():
cnf = {'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005},
@@ -40,13 +66,13 @@ def test_full_config():
'mqtt': {'host': 'mqtt', 'port': 1883, 'user': '', 'passwd': ''},
'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'},
'inverters': {'allow_all': True,
'R170000000000001': {'modbus_polling': True, 'node_id': '', 'suggested_area': '', 'pv1': {'type': 'type1', 'manufacturer': 'man1'}, 'pv2': {'type': 'type2', 'manufacturer': 'man2'}, 'pv3': {'type': 'type3', 'manufacturer': 'man3'}},
'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'node_id': '', 'suggested_area': ''}}}
'R170000000000001': {'modbus_polling': True, 'node_id': '', 'sensor_list': 0, 'suggested_area': '', 'pv1': {'type': 'type1', 'manufacturer': 'man1'}, 'pv2': {'type': 'type2', 'manufacturer': 'man2'}, 'pv3': {'type': 'type3', 'manufacturer': 'man3'}},
'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'node_id': '', 'sensor_list': 0x1511, 'suggested_area': ''}}}
try:
validated = Config.conf_schema.validate(cnf)
except Exception:
assert False
assert validated == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'node_id': '', 'modbus_polling': True, 'monitor_sn': 0, 'pv1': {'manufacturer': 'man1','type': 'type1'},'pv2': {'manufacturer': 'man2','type': 'type2'},'pv3': {'manufacturer': 'man3','type': 'type3'}, 'suggested_area': ''}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'node_id': '', 'suggested_area': ''}}}
assert validated == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'node_id': '', 'modbus_polling': True, 'monitor_sn': 0, 'pv1': {'manufacturer': 'man1','type': 'type1'},'pv2': {'manufacturer': 'man2','type': 'type2'},'pv3': {'manufacturer': 'man3','type': 'type3'}, 'suggested_area': '', 'sensor_list': 0}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'node_id': '', 'suggested_area': '', 'sensor_list': 5393}}}
def test_mininum_config():
cnf = {'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005},
@@ -63,7 +89,7 @@ def test_mininum_config():
validated = Config.conf_schema.validate(cnf)
except Exception:
assert False
assert validated == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'node_id': '', 'modbus_polling': True, 'monitor_sn': 0, 'suggested_area': ''}}}
assert validated == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'node_id': '', 'modbus_polling': True, 'monitor_sn': 0, 'suggested_area': '', 'sensor_list': 688}}}
def test_read_empty():
cnf = {}
@@ -71,7 +97,37 @@ def test_read_empty():
err = TstConfig.read('app/config/')
assert err == None
cnf = TstConfig.get()
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'suggested_area': '', 'modbus_polling': False, 'monitor_sn': 0, 'node_id': ''}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'suggested_area': '', 'node_id': ''}}}
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'},
'inverters': {
'allow_all': False,
'R170000000000001': {
'suggested_area': '',
'modbus_polling': False,
'monitor_sn': 0,
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'sensor_list': 688
},
'Y170000000000001': {
'modbus_polling': True,
'monitor_sn': 2000000000,
'suggested_area': '',
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv3': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv4': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'sensor_list': 688
}
}
}
defcnf = TstConfig.def_config.get('solarman')
assert defcnf == {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}
@@ -93,7 +149,37 @@ def test_read_cnf1():
err = TstConfig.read('app/config/')
assert err == None
cnf = TstConfig.get()
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': False, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'suggested_area': '', 'modbus_polling': False, 'monitor_sn': 0, 'node_id': ''}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'suggested_area': '', 'node_id': ''}}}
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': False, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'},
'inverters': {
'allow_all': False,
'R170000000000001': {
'suggested_area': '',
'modbus_polling': False,
'monitor_sn': 0,
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'sensor_list': 688
},
'Y170000000000001': {
'modbus_polling': True,
'monitor_sn': 2000000000,
'suggested_area': '',
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv3': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv4': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'sensor_list': 688
}
}
}
cnf = TstConfig.get('solarman')
assert cnf == {'enabled': False, 'host': 'iot.talent-monitoring.com', 'port': 10000}
defcnf = TstConfig.def_config.get('solarman')
@@ -106,7 +192,37 @@ def test_read_cnf2():
err = TstConfig.read('app/config/')
assert err == None
cnf = TstConfig.get()
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'suggested_area': '', 'modbus_polling': False, 'monitor_sn': 0, 'node_id': ''}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'suggested_area': '', 'node_id': ''}}}
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 10000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'},
'inverters': {
'allow_all': False,
'R170000000000001': {
'suggested_area': '',
'modbus_polling': False,
'monitor_sn': 0,
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'sensor_list': 688
},
'Y170000000000001': {
'modbus_polling': True,
'monitor_sn': 2000000000,
'suggested_area': '',
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv3': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv4': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'sensor_list': 688
}
}
}
assert True == TstConfig.is_default('solarman')
def test_read_cnf3():
@@ -123,7 +239,37 @@ def test_read_cnf4():
err = TstConfig.read('app/config/')
assert err == None
cnf = TstConfig.get()
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 5000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'}, 'inverters': {'allow_all': True, 'R170000000000001': {'suggested_area': '', 'modbus_polling': False, 'monitor_sn': 0, 'node_id': ''}, 'Y170000000000001': {'modbus_polling': True, 'monitor_sn': 2000000000, 'suggested_area': '', 'node_id': ''}}}
assert cnf == {'gen3plus': {'at_acl': {'mqtt': {'allow': ['AT+'], 'block': []}, 'tsun': {'allow': ['AT+Z', 'AT+UPURL', 'AT+SUPDATE'], 'block': []}}}, 'tsun': {'enabled': True, 'host': 'logger.talent-monitoring.com', 'port': 5005}, 'solarman': {'enabled': True, 'host': 'iot.talent-monitoring.com', 'port': 5000}, 'mqtt': {'host': 'mqtt', 'port': 1883, 'user': None, 'passwd': None}, 'ha': {'auto_conf_prefix': 'homeassistant', 'discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun', 'proxy_node_id': 'proxy', 'proxy_unique_id': 'P170000000000001'},
'inverters': {
'allow_all': False,
'R170000000000001': {
'suggested_area': '',
'modbus_polling': False,
'monitor_sn': 0,
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-395M'},
'sensor_list': 688
},
'Y170000000000001': {
'modbus_polling': True,
'monitor_sn': 2000000000,
'suggested_area': '',
'node_id': '',
'pv1': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv2': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv3': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'pv4': {'manufacturer': 'Risen',
'type': 'RSM40-8-410M'},
'sensor_list': 688
}
}
}
assert False == TstConfig.is_default('solarman')
def test_read_cnf5():

View File

@@ -1,10 +1,10 @@
# test_with_pytest.py
import pytest, json
from app.src.infos import Register, ClrAtMidnight
from app.src.gen3.infos_g3 import InfosG3
import pytest, json, math
from app.src.infos import Register
from app.src.gen3.infos_g3 import InfosG3, RegisterMap
@pytest.fixture
def ContrDataSeq(): # Get Time Request message
def contr_data_seq(): # Get Time Request message
msg = b'\x00\x00\x00\x15\x00\x09\x2b\xa8\x54\x10\x52\x53\x57\x5f\x34\x30\x30\x5f\x56\x31\x2e\x30\x30\x2e\x30\x36\x00\x09\x27\xc0\x54\x06\x52\x61\x79\x6d\x6f'
msg += b'\x6e\x00\x09\x2f\x90\x54\x0b\x52\x53\x57\x2d\x31\x2d\x31\x30\x30\x30\x31\x00\x09\x5a\x88\x54\x0f\x74\x2e\x72\x61\x79\x6d\x6f\x6e\x69\x6f\x74\x2e\x63\x6f\x6d\x00\x09\x5a\xec\x54'
msg += b'\x1c\x6c\x6f\x67\x67\x65\x72\x2e\x74\x61\x6c\x65\x6e\x74\x2d\x6d\x6f\x6e\x69\x74\x6f\x72\x69\x6e\x67\x2e\x63\x6f\x6d\x00\x0d\x00\x20\x49\x00\x00\x00\x01\x00\x0c\x35\x00\x49\x00'
@@ -14,7 +14,7 @@ def ContrDataSeq(): # Get Time Request message
return msg
@pytest.fixture
def Contr2DataSeq(): # Get Time Request message
def contr2_data_seq(): # Get Time Request message
msg = b'\x00\x00\x00\x39\x00\x09\x2b\xa8\x54\x10\x52'
msg += b'\x53\x57\x5f\x34\x30\x30\x5f\x56\x31\x2e\x30\x30\x2e\x32\x30\x00'
msg += b'\x09\x27\xc0\x54\x06\x52\x61\x79\x6d\x6f\x6e\x00\x09\x2f\x90\x54'
@@ -94,19 +94,19 @@ def Contr2DataSeq(): # Get Time Request message
return msg
@pytest.fixture
def InvDataSeq(): # Data indication from the controller
def inv_data_seq(): # Data indication from the controller
msg = b'\x00\x00\x00\x06\x00\x00\x00\x0a\x54\x08\x4d\x69\x63\x72\x6f\x69\x6e\x76\x00\x00\x00\x14\x54\x04\x54\x53\x55\x4e\x00\x00\x00\x1E\x54\x07\x56\x35\x2e\x30\x2e\x31\x31\x00\x00\x00\x28'
msg += b'\x54\x10T170000000000001\x00\x00\x00\x32\x54\x0a\x54\x53\x4f\x4c\x2d\x4d\x53\x36\x30\x30\x00\x00\x00\x3c\x54\x05\x41\x2c\x42\x2c\x43'
return msg
@pytest.fixture
def InvalidDataSeq(): # Data indication from the controller
def invalid_data_seq(): # Data indication from the controller
msg = b'\x00\x00\x00\x06\x00\x00\x00\x0a\x54\x08\x4d\x69\x63\x72\x6f\x69\x6e\x76\x00\x00\x00\x14\x64\x04\x54\x53\x55\x4e\x00\x00\x00\x1E\x54\x07\x56\x35\x2e\x30\x2e\x31\x31\x00\x00\x00\x28'
msg += b'\x54\x10T170000000000001\x00\x00\x00\x32\x54\x0a\x54\x53\x4f\x4c\x2d\x4d\x53\x36\x30\x30\x00\x00\x00\x3c\x54\x05\x41\x2c\x42\x2c\x43'
return msg
@pytest.fixture
def InvDataSeq2(): # Data indication from the controller
def inv_data_seq2(): # Data indication from the controller
msg = b'\x00\x00\x00\xa3\x00\x00\x00\x64\x53\x00\x01\x00\x00\x00\xc8\x53\x00\x02\x00\x00\x01\x2c\x53\x00\x00\x00\x00\x01\x90\x49\x00\x00\x00\x00\x00\x00\x01\x91\x53\x00\x00'
msg += b'\x00\x00\x01\x92\x53\x00\x00\x00\x00\x01\x93\x53\x00\x00\x00\x00\x01\x94\x53\x00\x00\x00\x00\x01\x95\x53\x00\x00\x00\x00\x01\x96\x53\x00\x00\x00\x00\x01\x97\x53\x00'
msg += b'\x00\x00\x00\x01\x98\x53\x00\x00\x00\x00\x01\x99\x53\x00\x00\x00\x00\x01\x9a\x53\x00\x00\x00\x00\x01\x9b\x53\x00\x00\x00\x00\x01\x9c\x53\x00\x00\x00\x00\x01\x9d\x53'
@@ -141,7 +141,7 @@ def InvDataSeq2(): # Data indication from the controller
return msg
@pytest.fixture
def InvDataNew(): # Data indication from DSP V5.0.17
def inv_data_new(): # Data indication from DSP V5.0.17
msg = b'\x00\x00\x00\xa3\x00\x00\x00\x00\x53\x00\x00'
msg += b'\x00\x00\x00\x80\x53\x00\x00\x00\x00\x01\x04\x53\x00\x00\x00\x00'
msg += b'\x01\x90\x41\x00\x00\x01\x91\x53\x00\x00\x00\x00\x01\x90\x53\x00'
@@ -217,7 +217,7 @@ def InvDataNew(): # Data indication from DSP V5.0.17
return msg
@pytest.fixture
def InvDataSeq2_Zero(): # Data indication from the controller
def inv_data_seq2_zero(): # Data indication from the controller
msg = b'\x00\x00\x00\xa3\x00\x00\x00\x64\x53\x00\x01\x00\x00\x00\xc8\x53\x00\x02\x00\x00\x01\x2c\x53\x00\x00\x00\x00\x01\x90\x49\x00\x00\x00\x00\x00\x00\x01\x91\x53\x00\x00'
msg += b'\x00\x00\x01\x92\x53\x00\x00\x00\x00\x01\x93\x53\x00\x00\x00\x00\x01\x94\x53\x00\x00\x00\x00\x01\x95\x53\x00\x00\x00\x00\x01\x96\x53\x00\x00\x00\x00\x01\x97\x53\x00'
msg += b'\x00\x00\x00\x01\x98\x53\x00\x00\x00\x00\x01\x99\x53\x00\x00\x00\x00\x01\x9a\x53\x00\x00\x00\x00\x01\x9b\x53\x00\x00\x00\x00\x01\x9c\x53\x00\x00\x00\x00\x01\x9d\x53'
@@ -252,37 +252,37 @@ def InvDataSeq2_Zero(): # Data indication from the controller
return msg
def test_parse_control(ContrDataSeq):
def test_parse_control(contr_data_seq):
i = InfosG3()
for key, result in i.parse (ContrDataSeq):
pass
for key, result in i.parse (contr_data_seq):
pass # side effect in calling i.parse()
assert json.dumps(i.db) == json.dumps(
{"collector": {"Collector_Fw_Version": "RSW_400_V1.00.06", "Chip_Type": "Raymon", "Chip_Model": "RSW-1-10001", "Trace_URL": "t.raymoniot.com", "Logger_URL": "logger.talent-monitoring.com"}, "controller": {"Collect_Interval": 1, "Signal_Strength": 100, "Power_On_Time": 29, "Communication_Type": 1, "Connect_Count": 1, "Data_Up_Interval": 300}})
def test_parse_control2(Contr2DataSeq):
def test_parse_control2(contr2_data_seq):
i = InfosG3()
for key, result in i.parse (Contr2DataSeq):
pass
for key, result in i.parse (contr2_data_seq):
pass # side effect in calling i.parse()
assert json.dumps(i.db) == json.dumps(
{"collector": {"Collector_Fw_Version": "RSW_400_V1.00.20", "Chip_Type": "Raymon", "Chip_Model": "RSW-1-10001", "Trace_URL": "t.raymoniot.com", "Logger_URL": "logger.talent-monitoring.com"}, "controller": {"Collect_Interval": 1, "Signal_Strength": 16, "Power_On_Time": 334, "Communication_Type": 1, "Connect_Count": 1, "Data_Up_Interval": 300}})
def test_parse_inverter(InvDataSeq):
def test_parse_inverter(inv_data_seq):
i = InfosG3()
for key, result in i.parse (InvDataSeq):
pass
for key, result in i.parse (inv_data_seq):
pass # side effect in calling i.parse()
assert json.dumps(i.db) == json.dumps(
{"inverter": {"Product_Name": "Microinv", "Manufacturer": "TSUN", "Version": "V5.0.11", "Serial_Number": "T170000000000001", "Equipment_Model": "TSOL-MS600"}})
def test_parse_cont_and_invert(ContrDataSeq, InvDataSeq):
def test_parse_cont_and_invert(contr_data_seq, inv_data_seq):
i = InfosG3()
for key, result in i.parse (ContrDataSeq):
pass
for key, result in i.parse (contr_data_seq):
pass # side effect in calling i.parse()
for key, result in i.parse (InvDataSeq):
pass
for key, result in i.parse (inv_data_seq):
pass # side effect in calling i.parse()
assert json.dumps(i.db) == json.dumps(
{
@@ -290,7 +290,7 @@ def test_parse_cont_and_invert(ContrDataSeq, InvDataSeq):
"inverter": {"Product_Name": "Microinv", "Manufacturer": "TSUN", "Version": "V5.0.11", "Serial_Number": "T170000000000001", "Equipment_Model": "TSOL-MS600"}})
def test_build_ha_conf1(ContrDataSeq):
def test_build_ha_conf1(contr_data_seq):
i = InfosG3()
i.static_init() # initialize counter
@@ -325,7 +325,11 @@ def test_build_ha_conf1(ContrDataSeq):
assert tests==4
def test_build_ha_conf2(contr_data_seq):
i = InfosG3()
i.static_init() # initialize counter
tests = 0
for d_json, comp, node_id, id in i.ha_proxy_confs(ha_prfx="tsun/", node_id = 'proxy/', snr = '456'):
if id == 'out_power_123':
@@ -344,28 +348,28 @@ def test_build_ha_conf1(ContrDataSeq):
assert d_json == json.dumps({"name": "Active Inverter Connections", "stat_t": "tsun/proxy/proxy", "dev_cla": None, "stat_cla": None, "uniq_id": "inv_count_456", "val_tpl": "{{value_json['Inverter_Cnt'] | int}}", "ic": "mdi:counter", "dev": {"name": "Proxy", "sa": "Proxy", "mdl": "proxy", "mf": "Stefan Allius", "sw": "unknown", "ids": ["proxy"]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
assert tests==5
assert tests==1
def test_build_ha_conf2(ContrDataSeq, InvDataSeq, InvDataSeq2):
def test_build_ha_conf3(contr_data_seq, inv_data_seq, inv_data_seq2):
i = InfosG3()
for key, result in i.parse (ContrDataSeq):
pass
for key, result in i.parse (InvDataSeq):
pass
for key, result in i.parse (InvDataSeq2):
pass
for key, result in i.parse (contr_data_seq):
pass # side effect in calling i.parse()
for key, result in i.parse (inv_data_seq):
pass # side effect in calling i.parse()
for key, result in i.parse (inv_data_seq2):
pass # side effect in calling i.parse()
tests = 0
for d_json, comp, node_id, id in i.ha_confs(ha_prfx="tsun/", node_id="garagendach/", snr='123', sug_area = 'roof'):
if id == 'out_power_123':
assert comp == 'sensor'
assert d_json == json.dumps({"name": "Power", "stat_t": "tsun/garagendach/grid", "dev_cla": "power", "stat_cla": "measurement", "uniq_id": "out_power_123", "val_tpl": "{{value_json['Output_Power'] | float}}", "unit_of_meas": "W", "dev": {"name": "Micro Inverter - roof", "sa": "Micro Inverter - roof", "via_device": "controller_123", "mdl": "TSOL-MS600", "mf": "TSUN", "sw": "V5.0.11", "ids": ["inverter_123"]}, "o": {"name": "proxy", "sw": "unknown"}})
assert d_json == json.dumps({"name": "Power", "stat_t": "tsun/garagendach/grid", "dev_cla": "power", "stat_cla": "measurement", "uniq_id": "out_power_123", "val_tpl": "{{value_json['Output_Power'] | float}}", "unit_of_meas": "W", "dev": {"name": "Micro Inverter - roof", "sa": "Micro Inverter - roof", "via_device": "controller_123", "mdl": "TSOL-MS600", "mf": "TSUN", "sw": "V5.0.11", "sn": "T170000000000001", "ids": ["inverter_123"]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
if id == 'daily_gen_123':
assert comp == 'sensor'
assert d_json == json.dumps({"name": "Daily Generation", "stat_t": "tsun/garagendach/total", "dev_cla": "energy", "stat_cla": "total_increasing", "uniq_id": "daily_gen_123", "val_tpl": "{{value_json['Daily_Generation'] | float}}", "unit_of_meas": "kWh", "ic": "mdi:solar-power-variant", "dev": {"name": "Micro Inverter - roof", "sa": "Micro Inverter - roof", "via_device": "controller_123", "mdl": "TSOL-MS600", "mf": "TSUN", "sw": "V5.0.11", "ids": ["inverter_123"]}, "o": {"name": "proxy", "sw": "unknown"}})
assert d_json == json.dumps({"name": "Daily Generation", "stat_t": "tsun/garagendach/total", "dev_cla": "energy", "stat_cla": "total_increasing", "uniq_id": "daily_gen_123", "val_tpl": "{{value_json['Daily_Generation'] | float}}", "unit_of_meas": "kWh", "ic": "mdi:solar-power-variant", "dev": {"name": "Micro Inverter - roof", "sa": "Micro Inverter - roof", "via_device": "controller_123", "mdl": "TSOL-MS600", "mf": "TSUN", "sw": "V5.0.11", "sn": "T170000000000001", "ids": ["inverter_123"]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
elif id == 'power_pv1_123':
@@ -384,50 +388,72 @@ def test_build_ha_conf2(ContrDataSeq, InvDataSeq, InvDataSeq2):
tests +=1
assert tests==5
def test_must_incr_total(InvDataSeq2, InvDataSeq2_Zero):
def test_build_ha_conf4(contr_data_seq, inv_data_seq):
i = InfosG3()
for key, result in i.parse (contr_data_seq):
pass # side effect in calling i.parse()
for key, result in i.parse (inv_data_seq):
pass # side effect in calling i.parse()
i.set_db_def_value(Register.MAC_ADDR, "00a057123456")
tests = 0
for d_json, comp, node_id, id in i.ha_confs(ha_prfx="tsun/", node_id="garagendach/", snr='123', sug_area = 'roof'):
if id == 'signal_123':
assert comp == 'sensor'
assert d_json == json.dumps({"name": "Signal Strength", "stat_t": "tsun/garagendach/controller", "dev_cla": None, "stat_cla": "measurement", "uniq_id": "signal_123", "val_tpl": "{{value_json[\'Signal_Strength\'] | int}}", "unit_of_meas": "%", "ic": "mdi:wifi", "dev": {"name": "Controller - roof", "sa": "Controller - roof", "via_device": "proxy", "mdl": "RSW-1-10001", "mf": "Raymon", "sw": "RSW_400_V1.00.06", "ids": ["controller_123"], "cns": [["mac", "00:a0:57:12:34:56"]]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
assert tests==1
i.set_db_def_value(Register.MAC_ADDR, "00:a0:57:12:34:57")
tests = 0
for d_json, comp, node_id, id in i.ha_confs(ha_prfx="tsun/", node_id="garagendach/", snr='123', sug_area = 'roof'):
if id == 'signal_123':
assert comp == 'sensor'
assert d_json == json.dumps({"name": "Signal Strength", "stat_t": "tsun/garagendach/controller", "dev_cla": None, "stat_cla": "measurement", "uniq_id": "signal_123", "val_tpl": "{{value_json[\'Signal_Strength\'] | int}}", "unit_of_meas": "%", "ic": "mdi:wifi", "dev": {"name": "Controller - roof", "sa": "Controller - roof", "via_device": "proxy", "mdl": "RSW-1-10001", "mf": "Raymon", "sw": "RSW_400_V1.00.06", "ids": ["controller_123"], "cns": [["mac", "00:a0:57:12:34:57"]]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
assert tests==1
def test_must_incr_total(inv_data_seq2, inv_data_seq2_zero):
i = InfosG3()
tests = 0
for key, update in i.parse (InvDataSeq2):
for key, update in i.parse (inv_data_seq2):
if key == 'total' or key == 'inverter' or key == 'env':
assert update == True
tests +=1
assert tests==5
assert tests==8
assert json.dumps(i.db['total']) == json.dumps({'Daily_Generation': 1.7, 'Total_Generation': 17.36})
assert json.dumps(i.db['input']) == json.dumps({"pv1": {"Voltage": 33.6, "Current": 1.91, "Power": 64.5, "Daily_Generation": 1.08, "Total_Generation": 9.74}, "pv2": {"Voltage": 33.5, "Current": 1.36, "Power": 45.7, "Daily_Generation": 0.62, "Total_Generation": 7.62}, "pv3": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}, "pv4": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Temp": 23})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Status": 1, "Inverter_Temp": 23})
tests = 0
for key, update in i.parse (InvDataSeq2):
if key == 'total':
for key, update in i.parse (inv_data_seq2):
if key == 'total' or key == 'env':
assert update == False
tests +=1
elif key == 'env':
assert update == False
tests +=1
assert tests==3
assert tests==4
assert json.dumps(i.db['total']) == json.dumps({'Daily_Generation': 1.7, 'Total_Generation': 17.36})
assert json.dumps(i.db['input']) == json.dumps({"pv1": {"Voltage": 33.6, "Current": 1.91, "Power": 64.5, "Daily_Generation": 1.08, "Total_Generation": 9.74}, "pv2": {"Voltage": 33.5, "Current": 1.36, "Power": 45.7, "Daily_Generation": 0.62, "Total_Generation": 7.62}, "pv3": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}, "pv4": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Temp": 23})
assert json.dumps(i.db['inverter']) == json.dumps({"Rated_Power": 600, "No_Inputs": 2})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Status": 1, "Inverter_Temp": 23})
assert json.dumps(i.db['inverter']) == json.dumps({"Rated_Power": 600, "Max_Designed_Power": -1, "Output_Coefficient": 100.0, "No_Inputs": 2})
tests = 0
for key, update in i.parse (InvDataSeq2_Zero):
for key, update in i.parse (inv_data_seq2_zero):
if key == 'total':
assert update == False
tests +=1
elif key == 'env':
assert update == True
tests +=1
assert tests==3
assert tests==4
assert json.dumps(i.db['total']) == json.dumps({'Daily_Generation': 1.7, 'Total_Generation': 17.36})
assert json.dumps(i.db['input']) == json.dumps({"pv1": {"Voltage": 33.6, "Current": 1.91, "Power": 0.0, "Daily_Generation": 1.08, "Total_Generation": 9.74}, "pv2": {"Voltage": 33.5, "Current": 1.36, "Power": 0.0, "Daily_Generation": 0.62, "Total_Generation": 7.62}, "pv3": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}, "pv4": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Temp": 0})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Status": 1, "Inverter_Temp": 0})
def test_must_incr_total2(InvDataSeq2, InvDataSeq2_Zero):
def test_must_incr_total2(inv_data_seq2, inv_data_seq2_zero):
i = InfosG3()
tests = 0
for key, update in i.parse (InvDataSeq2_Zero):
for key, update in i.parse (inv_data_seq2_zero):
if key == 'total':
assert update == False
tests +=1
@@ -435,42 +461,35 @@ def test_must_incr_total2(InvDataSeq2, InvDataSeq2_Zero):
assert update == True
tests +=1
assert tests==3
assert tests==4
assert json.dumps(i.db['total']) == json.dumps({})
assert json.dumps(i.db['input']) == json.dumps({"pv1": {"Voltage": 33.6, "Current": 1.91, "Power": 0.0}, "pv2": {"Voltage": 33.5, "Current": 1.36, "Power": 0.0}, "pv3": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}, "pv4": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Temp": 0})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Status": 1, "Inverter_Temp": 0})
tests = 0
for key, update in i.parse (InvDataSeq2_Zero):
if key == 'total':
for key, update in i.parse (inv_data_seq2_zero):
if key == 'total' or key == 'env':
assert update == False
tests +=1
elif key == 'env':
assert update == False
tests +=1
assert tests==3
assert tests==4
assert json.dumps(i.db['total']) == json.dumps({})
assert json.dumps(i.db['input']) == json.dumps({"pv1": {"Voltage": 33.6, "Current": 1.91, "Power": 0.0}, "pv2": {"Voltage": 33.5, "Current": 1.36, "Power": 0.0}, "pv3": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}, "pv4": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Temp": 0})
assert json.dumps(i.db['env']) == json.dumps({"Inverter_Status": 1, "Inverter_Temp": 0})
tests = 0
for key, update in i.parse (InvDataSeq2):
if key == 'total':
assert update == True
for key, update in i.parse (inv_data_seq2):
if key == 'total' or key == 'env':
tests +=1
elif key == 'env':
assert update == True
tests +=1
assert tests==3
assert tests==4
assert json.dumps(i.db['total']) == json.dumps({'Daily_Generation': 1.7, 'Total_Generation': 17.36})
assert json.dumps(i.db['input']) == json.dumps({"pv1": {"Voltage": 33.6, "Current": 1.91, "Power": 64.5, "Daily_Generation": 1.08, "Total_Generation": 9.74}, "pv2": {"Voltage": 33.5, "Current": 1.36, "Power": 45.7, "Daily_Generation": 0.62, "Total_Generation": 7.62}, "pv3": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}, "pv4": {"Voltage": 0.0, "Current": 0.0, "Power": 0.0}})
def test_new_data_types(InvDataNew):
def test_new_data_types(inv_data_new):
i = InfosG3()
tests = 0
for key, update in i.parse (InvDataNew):
for key, update in i.parse (inv_data_new):
if key == 'events':
tests +=1
elif key == 'inverter':
@@ -487,7 +506,7 @@ def test_new_data_types(InvDataNew):
assert json.dumps(i.db['input']) == json.dumps({"pv1": {}})
assert json.dumps(i.db['events']) == json.dumps({"401_": 0, "404_": 0, "405_": 0, "408_": 0, "409_No_Utility": 0, "406_": 0, "416_": 0})
def test_invalid_data_type(InvalidDataSeq):
def test_invalid_data_type(invalid_data_seq):
i = InfosG3()
i.static_init() # initialize counter
@@ -495,9 +514,21 @@ def test_invalid_data_type(InvalidDataSeq):
assert val == 0
for key, result in i.parse (InvalidDataSeq):
pass
for key, result in i.parse (invalid_data_seq):
pass # side effect in calling i.parse()
assert json.dumps(i.db) == json.dumps({"inverter": {"Product_Name": "Microinv"}})
val = i.dev_value(Register.INVALID_DATA_TYPE) # check invalid data type counter
assert val == 1
def test_result_eval(inv_data_seq2: bytes):
# add eval to convert temperature from °F to °C
RegisterMap.map[0x00000514]['eval'] = '(result-32)/1.8'
i = InfosG3()
for _, _ in i.parse (inv_data_seq2):
pass # side effect is calling generator i.parse()
assert math.isclose(-5.0, round (i.get_db_value(Register.INVERTER_TEMP, 0),4), rel_tol=1e-09, abs_tol=1e-09)
del RegisterMap.map[0x00000514]['eval'] # remove eval

View File

@@ -1,18 +1,33 @@
# test_with_pytest.py
import pytest, json, math
import pytest, json, math, random
from app.src.infos import Register
from app.src.gen3plus.infos_g3p import InfosG3P
from app.src.gen3plus.infos_g3p import RegisterMap
@pytest.fixture(scope="session")
def str_test_ip():
ip = ".".join(str(random.randint(1, 254)) for _ in range(4))
print(f'random_ip: {ip}')
return ip
@pytest.fixture(scope="session")
def bytes_test_ip(str_test_ip):
ip = bytes(str.encode(str_test_ip))
l = len(ip)
if l < 16:
ip = ip + bytearray(16-l)
print(f'random_ip: {ip}')
return ip
@pytest.fixture
def device_data(): # 0x4110 ftype: 0x02
def device_data(bytes_test_ip): # 0x4110 ftype: 0x02
msg = b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x02\xba\xd2\x00\x00'
msg += b'\x19\x00\x00\x00\x00\x00\x00\x00\x05\x3c\x78\x01\x64\x01\x4c\x53'
msg += b'\x57\x35\x42\x4c\x45\x5f\x31\x37\x5f\x30\x32\x42\x30\x5f\x31\x2e'
msg += b'\x30\x35\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x40\x2a\x8f\x4f\x51\x54\x31\x39\x32\x2e'
msg += b'\x31\x36\x38\x2e\x38\x30\x2e\x34\x39\x00\x00\x00\x0f\x00\x01\xb0'
msg += b'\x00\x00\x00\x00\x00\x00\x40\x2a\x8f\x4f\x51\x54' + bytes_test_ip
msg += b'\x0f\x00\x01\xb0'
msg += b'\x02\x0f\x00\xff\x56\x31\x2e\x31\x2e\x30\x30\x2e\x30\x42\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\xfe\xfe\x00\x00'
@@ -63,15 +78,15 @@ def test_default_db():
"collector": {"Chip_Type": "IGEN TECH"},
})
def test_parse_4110(device_data: bytes):
def test_parse_4110(str_test_ip, device_data: bytes):
i = InfosG3P(client_mode=False)
i.db.clear()
for key, update in i.parse (device_data, 0x41, 2):
pass # side effect is calling generator i.parse()
assert json.dumps(i.db) == json.dumps({
'controller': {"Data_Up_Interval": 300, "Collect_Interval": 1, "Heartbeat_Interval": 120, "Signal_Strength": 100, "IP_Address": "192.168.80.49"},
'collector': {"Chip_Model": "LSW5BLE_17_02B0_1.05", "Collector_Fw_Version": "V1.1.00.0B"},
'controller': {"Data_Up_Interval": 300, "Collect_Interval": 1, "Heartbeat_Interval": 120, "Signal_Strength": 100, "IP_Address": str_test_ip, "Sensor_List": "02b0"},
'collector': {"Chip_Model": "LSW5BLE_17_02B0_1.05", "MAC-Addr": "40:2a:8f:4f:51:54", "Collector_Fw_Version": "V1.1.00.0B"},
})
def test_parse_4210(inverter_data: bytes):
@@ -82,8 +97,8 @@ def test_parse_4210(inverter_data: bytes):
pass # side effect is calling generator i.parse()
assert json.dumps(i.db) == json.dumps({
"controller": {"Power_On_Time": 2051},
"inverter": {"Serial_Number": "Y17E00000000000E", "Version": "V4.0.10", "Rated_Power": 600, "Max_Designed_Power": 2000},
"controller": {"Sensor_List": "02b0", "Power_On_Time": 2051},
"inverter": {"Serial_Number": "Y17E00000000000E", "Version": "V4.0.10", "Rated_Power": 600, "Max_Designed_Power": 2000, "Output_Coefficient": 100.0},
"env": {"Inverter_Status": 1, "Inverter_Temp": 14},
"grid": {"Voltage": 224.8, "Current": 0.73, "Frequency": 50.05, "Output_Power": 165.8},
"input": {"pv1": {"Voltage": 35.3, "Current": 1.68, "Power": 59.6, "Daily_Generation": 0.04, "Total_Generation": 30.76},
@@ -139,7 +154,11 @@ def test_build_ha_conf1():
assert tests==7
def test_build_ha_conf2():
i = InfosG3P(client_mode=False)
i.static_init() # initialize counter
tests = 0
for d_json, comp, node_id, id in i.ha_proxy_confs(ha_prfx="tsun/", node_id = 'proxy/', snr = '456'):
if id == 'out_power_123':
@@ -161,9 +180,9 @@ def test_build_ha_conf1():
assert d_json == json.dumps({"name": "Active Inverter Connections", "stat_t": "tsun/proxy/proxy", "dev_cla": None, "stat_cla": None, "uniq_id": "inv_count_456", "val_tpl": "{{value_json['Inverter_Cnt'] | int}}", "ic": "mdi:counter", "dev": {"name": "Proxy", "sa": "Proxy", "mdl": "proxy", "mf": "Stefan Allius", "sw": "unknown", "ids": ["proxy"]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
assert tests==8
assert tests==1
def test_build_ha_conf2():
def test_build_ha_conf3():
i = InfosG3P(client_mode=True)
i.static_init() # initialize counter
@@ -209,7 +228,11 @@ def test_build_ha_conf2():
assert tests==7
def test_build_ha_conf4():
i = InfosG3P(client_mode=True)
i.static_init() # initialize counter
tests = 0
for d_json, comp, node_id, id in i.ha_proxy_confs(ha_prfx="tsun/", node_id = 'proxy/', snr = '456'):
if id == 'out_power_123':
@@ -231,7 +254,7 @@ def test_build_ha_conf2():
assert d_json == json.dumps({"name": "Active Inverter Connections", "stat_t": "tsun/proxy/proxy", "dev_cla": None, "stat_cla": None, "uniq_id": "inv_count_456", "val_tpl": "{{value_json['Inverter_Cnt'] | int}}", "ic": "mdi:counter", "dev": {"name": "Proxy", "sa": "Proxy", "mdl": "proxy", "mf": "Stefan Allius", "sw": "unknown", "ids": ["proxy"]}, "o": {"name": "proxy", "sw": "unknown"}})
tests +=1
assert tests==8
assert tests==1
def test_exception_and_eval(inverter_data: bytes):

View File

@@ -0,0 +1,304 @@
# test_with_pytest.py
import pytest
import asyncio
import gc
from mock import patch
from enum import Enum
from app.src.infos import Infos
from app.src.config import Config
from app.src.gen3.talent import Talent
from app.src.inverter_base import InverterBase
from app.src.singleton import Singleton
from app.src.async_stream import AsyncStream, AsyncStreamClient
from app.tests.test_modbus_tcp import patch_mqtt_err, patch_mqtt_except, test_port, test_hostname
pytest_plugins = ('pytest_asyncio',)
# initialize the proxy statistics
Infos.static_init()
@pytest.fixture
def config_conn():
Config.act_config = {
'mqtt':{
'host': test_hostname,
'port': test_port,
'user': '',
'passwd': ''
},
'ha':{
'auto_conf_prefix': 'homeassistant',
'discovery_prefix': 'homeassistant',
'entity_prefix': 'tsun',
'proxy_node_id': 'test_1',
'proxy_unique_id': ''
},
'tsun':{'enabled': True, 'host': 'test_cloud.local', 'port': 1234}, 'inverters':{'allow_all':True}
}
@pytest.fixture(scope="module", autouse=True)
def module_init():
Singleton._instances.clear()
yield
class FakeReader():
def __init__(self):
self.on_recv = asyncio.Event()
async def read(self, max_len: int):
await self.on_recv.wait()
return b''
def feed_eof(self):
return
class FakeWriter():
def write(self, buf: bytes):
return
def get_extra_info(self, sel: str):
if sel == 'peername':
return 'remote.intern'
elif sel == 'sockname':
return 'sock:1234'
assert False
def is_closing(self):
return False
def close(self):
return
async def wait_closed(self):
return
class TestType(Enum):
RD_TEST_0_BYTES = 1
RD_TEST_TIMEOUT = 2
RD_TEST_EXCEPT = 3
test = TestType.RD_TEST_0_BYTES
@pytest.fixture
def patch_open_connection():
async def new_conn(conn):
await asyncio.sleep(0)
return FakeReader(), FakeWriter()
def new_open(host: str, port: int):
global test
if test == TestType.RD_TEST_TIMEOUT:
raise ConnectionRefusedError
elif test == TestType.RD_TEST_EXCEPT:
raise ValueError("Value cannot be negative") # Compliant
return new_conn(None)
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
@pytest.fixture
def patch_healthy():
with patch.object(AsyncStream, 'healthy') as conn:
yield conn
@pytest.fixture
def patch_unhealthy():
def new_healthy(self):
return False
with patch.object(AsyncStream, 'healthy', new_healthy) as conn:
yield conn
@pytest.fixture
def patch_unhealthy_remote():
def new_healthy(self):
return False
with patch.object(AsyncStreamClient, 'healthy', new_healthy) as conn:
yield conn
def test_inverter_iter():
InverterBase._registry.clear()
cnt = 0
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
for inv in InverterBase:
assert inv == inverter
cnt += 1
del inv
del inverter
assert cnt == 1
for inv in InverterBase:
assert False
def test_method_calls(patch_healthy):
spy = patch_healthy
InverterBase._registry.clear()
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
assert inverter.local.stream
assert inverter.local.ifc
# call healthy inside the contexter manager
for inv in InverterBase:
assert inv.healthy()
del inv
spy.assert_called_once()
# outside context manager the health function of AsyncStream is not reachable
cnt = 0
for inv in InverterBase:
assert inv.healthy()
cnt += 1
del inv
assert cnt == 1
spy.assert_called_once() # counter don't increase and keep one!
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
def test_unhealthy(patch_unhealthy):
_ = patch_unhealthy
InverterBase._registry.clear()
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
assert inverter.local.stream
assert inverter.local.ifc
# call healthy inside the contexter manager
assert not inverter.healthy()
# outside context manager the unhealth AsyncStream is released
cnt = 0
for inv in InverterBase:
assert inv.healthy() # inverter is healthy again (without the unhealty AsyncStream)
cnt += 1
del inv
assert cnt == 1
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
def test_unhealthy_remote(patch_unhealthy_remote):
_ = patch_unhealthy
InverterBase._registry.clear()
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
assert inverter.local.stream
assert inverter.local.ifc
# call healthy inside the contexter manager
assert not inverter.healthy()
# outside context manager the unhealth AsyncStream is released
cnt = 0
for inv in InverterBase:
assert inv.healthy() # inverter is healthy again (without the unhealty AsyncStream)
cnt += 1
del inv
assert cnt == 1
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_remote_conn(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream
assert inverter.remote.ifc
# call healthy inside the contexter manager
assert inverter.healthy()
# call healthy outside the contexter manager (__exit__() was called)
assert inverter.healthy()
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_unhealthy_remote(config_conn, patch_open_connection, patch_unhealthy_remote):
_ = config_conn
_ = patch_open_connection
_ = patch_unhealthy_remote
assert asyncio.get_running_loop()
InverterBase._registry.clear()
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
assert inverter.local.stream
assert inverter.local.ifc
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream
assert inverter.remote.ifc
assert inverter.local.ifc.healthy()
assert not inverter.remote.ifc.healthy()
# call healthy inside the contexter manager
assert not inverter.healthy()
# outside context manager the unhealth AsyncStream is released
cnt = 0
for inv in InverterBase:
assert inv.healthy() # inverter is healthy again (without the unhealty AsyncStream)
cnt += 1
del inv
assert cnt == 1
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_remote_disc(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
reader = FakeReader()
writer = FakeWriter()
with InverterBase(reader, writer, 'tsun', Talent) as inverter:
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream
# call disc inside the contexter manager
await inverter.disc()
# call disc outside the contexter manager (__exit__() was called)
await inverter.disc()
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0

View File

@@ -0,0 +1,226 @@
# test_with_pytest.py
import pytest
import asyncio
import sys,gc
from mock import patch
from enum import Enum
from app.src.infos import Infos
from app.src.config import Config
from app.src.proxy import Proxy
from app.src.inverter_base import InverterBase
from app.src.singleton import Singleton
from app.src.gen3.inverter_g3 import InverterG3
from app.src.async_stream import AsyncStream
from app.tests.test_modbus_tcp import patch_mqtt_err, patch_mqtt_except, test_port, test_hostname
pytest_plugins = ('pytest_asyncio',)
# initialize the proxy statistics
Infos.static_init()
@pytest.fixture
def config_conn():
Config.act_config = {
'mqtt':{
'host': test_hostname,
'port': test_port,
'user': '',
'passwd': ''
},
'ha':{
'auto_conf_prefix': 'homeassistant',
'discovery_prefix': 'homeassistant',
'entity_prefix': 'tsun',
'proxy_node_id': 'test_1',
'proxy_unique_id': ''
},
'tsun':{'enabled': True, 'host': 'test_cloud.local', 'port': 1234}, 'inverters':{'allow_all':True}
}
@pytest.fixture(scope="module", autouse=True)
def module_init():
Singleton._instances.clear()
yield
class FakeReader():
def __init__(self):
self.on_recv = asyncio.Event()
async def read(self, max_len: int):
await self.on_recv.wait()
return b''
def feed_eof(self):
return
class FakeWriter():
def write(self, buf: bytes):
return
def get_extra_info(self, sel: str):
if sel == 'peername':
return 'remote.intern'
elif sel == 'sockname':
return 'sock:1234'
assert False
def is_closing(self):
return False
def close(self):
return
async def wait_closed(self):
return
class TestType(Enum):
RD_TEST_0_BYTES = 1
RD_TEST_TIMEOUT = 2
RD_TEST_EXCEPT = 3
test = TestType.RD_TEST_0_BYTES
@pytest.fixture
def patch_open_connection():
async def new_conn(conn):
await asyncio.sleep(0)
return FakeReader(), FakeWriter()
def new_open(host: str, port: int):
global test
if test == TestType.RD_TEST_TIMEOUT:
raise ConnectionRefusedError
elif test == TestType.RD_TEST_EXCEPT:
raise ValueError("Value cannot be negative") # Compliant
return new_conn(None)
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
@pytest.fixture
def patch_healthy():
with patch.object(AsyncStream, 'healthy') as conn:
yield conn
def test_method_calls(patch_healthy):
spy = patch_healthy
reader = FakeReader()
writer = FakeWriter()
InverterBase._registry.clear()
with InverterG3(reader, writer) as inverter:
assert inverter.local.stream
assert inverter.local.ifc
for inv in InverterBase:
inv.healthy()
del inv
spy.assert_called_once()
del inverter
cnt = 0
for inv in InverterBase:
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_remote_conn(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
with InverterG3(FakeReader(), FakeWriter()) as inverter:
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_remote_except(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
global test
test = TestType.RD_TEST_TIMEOUT
with InverterG3(FakeReader(), FakeWriter()) as inverter:
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream==None
test = TestType.RD_TEST_EXCEPT
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream==None
del inverter
cnt = 0
for inv in InverterBase:
print(f'InverterBase refs:{gc.get_referrers(inv)}')
cnt += 1
assert cnt == 0
@pytest.mark.asyncio
async def test_mqtt_publish(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
Proxy.class_init()
with InverterG3(FakeReader(), FakeWriter()) as inverter:
stream = inverter.local.stream
await inverter.async_publ_mqtt() # check call with invalid unique_id
stream._Talent__set_serial_no(serial_no= "123344")
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['inverter'] == False
stream.new_data['env'] = True
stream.db.db['env'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['env'] == False
Infos.new_stat_data['proxy'] = True
await inverter.async_publ_mqtt()
assert Infos.new_stat_data['proxy'] == False
@pytest.mark.asyncio
async def test_mqtt_err(config_conn, patch_open_connection, patch_mqtt_err):
_ = config_conn
_ = patch_open_connection
_ = patch_mqtt_err
assert asyncio.get_running_loop()
Proxy.class_init()
with InverterG3(FakeReader(), FakeWriter()) as inverter:
stream = inverter.local.stream
stream._Talent__set_serial_no(serial_no= "123344")
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['inverter'] == True
@pytest.mark.asyncio
async def test_mqtt_except(config_conn, patch_open_connection, patch_mqtt_except):
_ = config_conn
_ = patch_open_connection
_ = patch_mqtt_except
assert asyncio.get_running_loop()
Proxy.class_init()
with InverterG3(FakeReader(), FakeWriter()) as inverter:
stream = inverter.local.stream
stream._Talent__set_serial_no(serial_no= "123344")
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['inverter'] == True

View File

@@ -0,0 +1,196 @@
# test_with_pytest.py
import pytest
import asyncio
from mock import patch
from enum import Enum
from app.src.infos import Infos
from app.src.config import Config
from app.src.proxy import Proxy
from app.src.inverter_base import InverterBase
from app.src.singleton import Singleton
from app.src.gen3plus.inverter_g3p import InverterG3P
from app.tests.test_modbus_tcp import patch_mqtt_err, patch_mqtt_except, test_port, test_hostname
pytest_plugins = ('pytest_asyncio',)
# initialize the proxy statistics
Infos.static_init()
@pytest.fixture
def config_conn():
Config.act_config = {
'mqtt':{
'host': test_hostname,
'port': test_port,
'user': '',
'passwd': ''
},
'ha':{
'auto_conf_prefix': 'homeassistant',
'discovery_prefix': 'homeassistant',
'entity_prefix': 'tsun',
'proxy_node_id': 'test_1',
'proxy_unique_id': ''
},
'solarman':{'enabled': True, 'host': 'test_cloud.local', 'port': 1234}, 'inverters':{'allow_all':True}
}
@pytest.fixture(scope="module", autouse=True)
def module_init():
Singleton._instances.clear()
yield
class FakeReader():
def __init__(self):
self.on_recv = asyncio.Event()
async def read(self, max_len: int):
await self.on_recv.wait()
return b''
def feed_eof(self):
return
class FakeWriter():
def write(self, buf: bytes):
return
def get_extra_info(self, sel: str):
if sel == 'peername':
return 'remote.intern'
elif sel == 'sockname':
return 'sock:1234'
assert False
def is_closing(self):
return False
def close(self):
return
async def wait_closed(self):
return
class TestType(Enum):
RD_TEST_0_BYTES = 1
RD_TEST_TIMEOUT = 2
RD_TEST_EXCEPT = 3
test = TestType.RD_TEST_0_BYTES
@pytest.fixture
def patch_open_connection():
async def new_conn(conn):
await asyncio.sleep(0)
return FakeReader(), FakeWriter()
def new_open(host: str, port: int):
global test
if test == TestType.RD_TEST_TIMEOUT:
raise ConnectionRefusedError
elif test == TestType.RD_TEST_EXCEPT:
raise ValueError("Value cannot be negative") # Compliant
return new_conn(None)
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
def test_method_calls():
reader = FakeReader()
writer = FakeWriter()
InverterBase._registry.clear()
with InverterG3P(reader, writer, client_mode=False) as inverter:
assert inverter.local.stream
assert inverter.local.ifc
@pytest.mark.asyncio
async def test_remote_conn(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream
@pytest.mark.asyncio
async def test_remote_except(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
global test
test = TestType.RD_TEST_TIMEOUT
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream==None
test = TestType.RD_TEST_EXCEPT
await inverter.create_remote()
await asyncio.sleep(0)
assert inverter.remote.stream==None
@pytest.mark.asyncio
async def test_mqtt_publish(config_conn, patch_open_connection):
_ = config_conn
_ = patch_open_connection
assert asyncio.get_running_loop()
Proxy.class_init()
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
stream = inverter.local.stream
await inverter.async_publ_mqtt() # check call with invalid unique_id
stream._SolarmanV5__set_serial_no(snr= 123344)
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['inverter'] == False
stream.new_data['env'] = True
stream.db.db['env'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['env'] == False
Infos.new_stat_data['proxy'] = True
await inverter.async_publ_mqtt()
assert Infos.new_stat_data['proxy'] == False
@pytest.mark.asyncio
async def test_mqtt_err(config_conn, patch_open_connection, patch_mqtt_err):
_ = config_conn
_ = patch_open_connection
_ = patch_mqtt_err
assert asyncio.get_running_loop()
Proxy.class_init()
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
stream = inverter.local.stream
stream._SolarmanV5__set_serial_no(snr= 123344)
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['inverter'] == True
@pytest.mark.asyncio
async def test_mqtt_except(config_conn, patch_open_connection, patch_mqtt_except):
_ = config_conn
_ = patch_open_connection
_ = patch_mqtt_except
assert asyncio.get_running_loop()
Proxy.class_init()
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
stream = inverter.local.stream
stream._SolarmanV5__set_serial_no(snr= 123344)
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
assert stream.new_data['inverter'] == True

View File

@@ -366,8 +366,8 @@ async def test_timeout():
def test_recv_unknown_data():
'''Receive a response with an unknwon register'''
mb = ModbusTestHelper()
assert 0x9000 not in mb.map
mb.map[0x9000] = {'reg': Register.TEST_REG1, 'fmt': '!H', 'ratio': 1}
assert 0x9000 not in mb.mb_reg_mapping
mb.mb_reg_mapping[0x9000] = {'reg': Register.TEST_REG1, 'fmt': '!H', 'ratio': 1}
mb.build_msg(1,3,0x9000,2)
@@ -379,7 +379,7 @@ def test_recv_unknown_data():
assert 0 == call
assert not mb.req_pend
del mb.map[0x9000]
del mb.mb_reg_mapping[0x9000]
def test_close():
'''Check queue handling for build_msg() calls'''

View File

@@ -0,0 +1,381 @@
# test_with_pytest.py
import pytest
import asyncio
from aiomqtt import MqttCodeError
from mock import patch
from enum import Enum
from app.src.singleton import Singleton
from app.src.config import Config
from app.src.infos import Infos
from app.src.mqtt import Mqtt
from app.src.inverter_base import InverterBase
from app.src.messages import Message, State
from app.src.proxy import Proxy
from app.src.modbus_tcp import ModbusConn, ModbusTcp
pytest_plugins = ('pytest_asyncio',)
# initialize the proxy statistics
Infos.static_init()
@pytest.fixture(scope="module", autouse=True)
def module_init():
Singleton._instances.clear()
yield
@pytest.fixture(scope="module")
def test_port():
return 1883
@pytest.fixture(scope="module")
def test_hostname():
# if getenv("GITHUB_ACTIONS") == "true":
# return 'mqtt'
# else:
return 'test.mosquitto.org'
@pytest.fixture
def config_conn(test_hostname, test_port):
Config.act_config = {
'mqtt':{
'host': test_hostname,
'port': test_port,
'user': '',
'passwd': ''
},
'ha':{
'auto_conf_prefix': 'homeassistant',
'discovery_prefix': 'homeassistant',
'entity_prefix': 'tsun',
'proxy_node_id': 'test_1',
'proxy_unique_id': ''
},
'inverters':{
'allow_all': True,
"R170000000000001":{
'node_id': 'inv_1'
},
"Y170000000000001":{
'node_id': 'inv_2',
'monitor_sn': 2000000000,
'modbus_polling': True,
'suggested_area': "",
'sensor_list': 0x2b0,
'client_mode':{
'host': '192.168.0.1',
'port': 8899
}
}
}
}
class FakeReader():
RD_TEST_0_BYTES = 1
RD_TEST_TIMEOUT = 2
RD_TEST_13_BYTES = 3
RD_TEST_SW_EXCEPT = 4
RD_TEST_OS_ERROR = 5
def __init__(self):
self.on_recv = asyncio.Event()
self.test = self.RD_TEST_0_BYTES
async def read(self, max_len: int):
print(f'fakeReader test: {self.test}')
await self.on_recv.wait()
if self.test == self.RD_TEST_0_BYTES:
return b''
elif self.test == self.RD_TEST_13_BYTES:
print('fakeReader return 13 bytes')
self.test = self.RD_TEST_0_BYTES
return b'test-data-req'
elif self.test == self.RD_TEST_TIMEOUT:
raise TimeoutError
elif self.test == self.RD_TEST_SW_EXCEPT:
self.test = self.RD_TEST_0_BYTES
self.unknown_var += 1
elif self.test == self.RD_TEST_OS_ERROR:
self.test = self.RD_TEST_0_BYTES
raise ConnectionRefusedError
def feed_eof(self):
return
class FakeWriter():
def __init__(self, conn='remote.intern'):
self.conn = conn
self.closing = False
def write(self, buf: bytes):
return
async def drain(self):
await asyncio.sleep(0)
def get_extra_info(self, sel: str):
if sel == 'peername':
return self.conn
elif sel == 'sockname':
return 'sock:1234'
assert False
def is_closing(self):
return self.closing
def close(self):
self.closing = True
async def wait_closed(self):
await asyncio.sleep(0)
@pytest.fixture
def patch_open():
async def new_conn(conn):
await asyncio.sleep(0)
return FakeReader(), FakeWriter(conn)
def new_open(host: str, port: int):
return new_conn(f'{host}:{port}')
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
@pytest.fixture
def patch_open_timeout():
def new_open(host: str, port: int):
raise TimeoutError
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
@pytest.fixture
def patch_open_value_error():
def new_open(host: str, port: int):
raise ValueError
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
@pytest.fixture
def patch_open_conn_abort():
def new_open(host: str, port: int):
raise ConnectionAbortedError
with patch.object(asyncio, 'open_connection', new_open) as conn:
yield conn
@pytest.fixture
def patch_no_mqtt():
with patch.object(Mqtt, 'publish') as conn:
yield conn
@pytest.fixture
def patch_mqtt_err():
def new_publish(self, key, data):
raise MqttCodeError(None)
with patch.object(Mqtt, 'publish', new_publish) as conn:
yield conn
@pytest.fixture
def patch_mqtt_except():
def new_publish(self, key, data):
raise ValueError("Test")
with patch.object(Mqtt, 'publish', new_publish) as conn:
yield conn
@pytest.mark.asyncio
async def test_modbus_conn(patch_open):
_ = patch_open
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
async with ModbusConn('test.local', 1234) as inverter:
stream = inverter.local.stream
assert stream.node_id == 'G3P'
assert stream.addr == ('test.local:1234')
assert type(stream.ifc._reader) is FakeReader
assert type(stream.ifc._writer) is FakeWriter
assert Infos.stat['proxy']['Inverter_Cnt'] == 1
del inverter
for _ in InverterBase:
assert False
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_modbus_no_cnf():
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
loop = asyncio.get_event_loop()
ModbusTcp(loop)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_modbus_timeout(config_conn, patch_open_timeout):
_ = config_conn
_ = patch_open_timeout
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
loop = asyncio.get_event_loop()
ModbusTcp(loop)
await asyncio.sleep(0.01)
for m in Message:
if (m.node_id == 'inv_2'):
assert False
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_modbus_value_err(config_conn, patch_open_value_error):
_ = config_conn
_ = patch_open_value_error
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
loop = asyncio.get_event_loop()
ModbusTcp(loop)
await asyncio.sleep(0.01)
for m in Message:
if (m.node_id == 'inv_2'):
assert False
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_modbus_conn_abort(config_conn, patch_open_conn_abort):
_ = config_conn
_ = patch_open_conn_abort
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
loop = asyncio.get_event_loop()
ModbusTcp(loop)
await asyncio.sleep(0.01)
for m in Message:
if (m.node_id == 'inv_2'):
assert False
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_modbus_cnf2(config_conn, patch_no_mqtt, patch_open):
_ = config_conn
_ = patch_open
_ = patch_no_mqtt
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
ModbusTcp(asyncio.get_event_loop())
await asyncio.sleep(0.01)
test = 0
for m in Message:
if (m.node_id == 'inv_2'):
test += 1
assert Infos.stat['proxy']['Inverter_Cnt'] == 1
m.shutdown_started = True
m.ifc._reader.on_recv.set()
del m
assert 1 == test
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_modbus_cnf3(config_conn, patch_no_mqtt, patch_open):
_ = config_conn
_ = patch_open
_ = patch_no_mqtt
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
ModbusTcp(asyncio.get_event_loop(), tim_restart= 0)
await asyncio.sleep(0.01)
test = 0
for m in Message:
if (m.node_id == 'inv_2'):
assert Infos.stat['proxy']['Inverter_Cnt'] == 1
test += 1
if test == 1:
m.shutdown_started = False
m.ifc._reader.on_recv.set()
await asyncio.sleep(0.1)
assert m.state == State.closed
await asyncio.sleep(0.1)
else:
m.shutdown_started = True
m.ifc._reader.on_recv.set()
del m
assert 2 == test
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_mqtt_err(config_conn, patch_mqtt_err, patch_open):
_ = config_conn
_ = patch_open
_ = patch_mqtt_err
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
ModbusTcp(asyncio.get_event_loop(), tim_restart= 0)
await asyncio.sleep(0.01)
test = 0
for m in Message:
if (m.node_id == 'inv_2'):
assert Infos.stat['proxy']['Inverter_Cnt'] == 1
test += 1
if test == 1:
m.shutdown_started = False
m.ifc._reader.on_recv.set()
await asyncio.sleep(0.1)
assert m.state == State.closed
await asyncio.sleep(0.1)
await asyncio.sleep(0.1)
else:
m.shutdown_started = True
m.ifc._reader.on_recv.set()
del m
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
@pytest.mark.asyncio
async def test_mqtt_except(config_conn, patch_mqtt_except, patch_open):
_ = config_conn
_ = patch_open
_ = patch_mqtt_except
assert asyncio.get_running_loop()
Proxy.class_init()
assert Infos.stat['proxy']['Inverter_Cnt'] == 0
ModbusTcp(asyncio.get_event_loop(), tim_restart= 0)
await asyncio.sleep(0.01)
test = 0
for m in Message:
if (m.node_id == 'inv_2'):
assert Infos.stat['proxy']['Inverter_Cnt'] == 1
test += 1
if test == 1:
m.shutdown_started = False
m.ifc._reader.on_recv.set()
await asyncio.sleep(0.1)
assert m.state == State.closed
await asyncio.sleep(0.1)
else:
m.shutdown_started = True
m.ifc._reader.on_recv.set()
del m
await asyncio.sleep(0.01)
assert Infos.stat['proxy']['Inverter_Cnt'] == 0

255
app/tests/test_mqtt.py Normal file
View File

@@ -0,0 +1,255 @@
# test_with_pytest.py
import pytest
import asyncio
import aiomqtt
import logging
from mock import patch, Mock
from app.src.async_stream import AsyncIfcImpl
from app.src.singleton import Singleton
from app.src.mqtt import Mqtt
from app.src.modbus import Modbus
from app.src.gen3plus.solarman_v5 import SolarmanV5
from app.src.config import Config
pytest_plugins = ('pytest_asyncio',)
@pytest.fixture(scope="module", autouse=True)
def module_init():
Singleton._instances.clear()
yield
@pytest.fixture(scope="module")
def test_port():
return 1883
@pytest.fixture(scope="module")
def test_hostname():
# if getenv("GITHUB_ACTIONS") == "true":
# return 'mqtt'
# else:
return 'test.mosquitto.org'
@pytest.fixture
def config_mqtt_conn(test_hostname, test_port):
Config.act_config = {'mqtt':{'host': test_hostname, 'port': test_port, 'user': '', 'passwd': ''},
'ha':{'auto_conf_prefix': 'homeassistant','discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun'}
}
@pytest.fixture
def config_no_conn(test_port):
Config.act_config = {'mqtt':{'host': "", 'port': test_port, 'user': '', 'passwd': ''},
'ha':{'auto_conf_prefix': 'homeassistant','discovery_prefix': 'homeassistant', 'entity_prefix': 'tsun'}
}
@pytest.fixture
def spy_at_cmd():
conn = SolarmanV5(('test.local', 1234), server_side=True, client_mode= False, ifc=AsyncIfcImpl())
conn.node_id = 'inv_2/'
with patch.object(conn, 'send_at_cmd', wraps=conn.send_at_cmd) as wrapped_conn:
yield wrapped_conn
conn.close()
@pytest.fixture
def spy_modbus_cmd():
conn = SolarmanV5(('test.local', 1234), server_side=True, client_mode= False, ifc=AsyncIfcImpl())
conn.node_id = 'inv_1/'
with patch.object(conn, 'send_modbus_cmd', wraps=conn.send_modbus_cmd) as wrapped_conn:
yield wrapped_conn
conn.close()
@pytest.fixture
def spy_modbus_cmd_client():
conn = SolarmanV5(('test.local', 1234), server_side=False, client_mode= False, ifc=AsyncIfcImpl())
conn.node_id = 'inv_1/'
with patch.object(conn, 'send_modbus_cmd', wraps=conn.send_modbus_cmd) as wrapped_conn:
yield wrapped_conn
conn.close()
def test_native_client(test_hostname, test_port):
"""Sanity check: Make sure the paho-mqtt client can connect to the test
MQTT server.
"""
import paho.mqtt.client as mqtt
import threading
c = mqtt.Client()
c.loop_start()
try:
# Just make sure the client connects successfully
on_connect = threading.Event()
c.on_connect = Mock(side_effect=lambda *_: on_connect.set())
c.connect_async(test_hostname, test_port)
assert on_connect.wait(5)
finally:
c.loop_stop()
@pytest.mark.asyncio
async def test_mqtt_no_config(config_no_conn):
_ = config_no_conn
assert asyncio.get_running_loop()
on_connect = asyncio.Event()
async def cb():
on_connect.set()
try:
m = Mqtt(cb)
assert m.task
await asyncio.sleep(0)
assert not on_connect.is_set()
try:
await m.publish('homeassistant/status', 'online')
assert False
except Exception:
pass
except TimeoutError:
assert False
finally:
await m.close()
@pytest.mark.asyncio
async def test_mqtt_connection(config_mqtt_conn):
_ = config_mqtt_conn
assert asyncio.get_running_loop()
on_connect = asyncio.Event()
async def cb():
on_connect.set()
try:
m = Mqtt(cb)
assert m.task
assert await asyncio.wait_for(on_connect.wait(), 5)
# await asyncio.sleep(1)
assert 0 == m.ha_restarts
await m.publish('homeassistant/status', 'online')
except TimeoutError:
assert False
finally:
await m.close()
await m.publish('homeassistant/status', 'online')
@pytest.mark.asyncio
async def test_msg_dispatch(config_mqtt_conn, spy_modbus_cmd):
_ = config_mqtt_conn
spy = spy_modbus_cmd
try:
m = Mqtt(None)
msg = aiomqtt.Message(topic= 'tsun/inv_1/rated_load', payload= b'2', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_awaited_once_with(Modbus.WRITE_SINGLE_REG, 0x2008, 2, logging.INFO)
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_1/out_coeff', payload= b'100', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_awaited_once_with(Modbus.WRITE_SINGLE_REG, 0x202c, 1024, logging.INFO)
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_1/out_coeff', payload= b'50', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_awaited_once_with(Modbus.WRITE_SINGLE_REG, 0x202c, 512, logging.INFO)
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_1/modbus_read_regs', payload= b'0x3000, 10', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_awaited_once_with(Modbus.READ_REGS, 0x3000, 10, logging.INFO)
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_1/modbus_read_inputs', payload= b'0x3000, 10', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_awaited_once_with(Modbus.READ_INPUTS, 0x3000, 10, logging.INFO)
finally:
await m.close()
@pytest.mark.asyncio
async def test_msg_dispatch_err(config_mqtt_conn, spy_modbus_cmd):
_ = config_mqtt_conn
spy = spy_modbus_cmd
try:
m = Mqtt(None)
# test out of range param
msg = aiomqtt.Message(topic= 'tsun/inv_1/out_coeff', payload= b'-1', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_not_called()
# test unknown node_id
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_2/out_coeff', payload= b'2', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_not_called()
# test invalid fload param
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_1/out_coeff', payload= b'2, 3', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_not_called()
spy.reset_mock()
msg = aiomqtt.Message(topic= 'tsun/inv_1/modbus_read_regs', payload= b'0x3000, 10, 7', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_not_called()
finally:
await m.close()
@pytest.mark.asyncio
async def test_msg_ignore_client_conn(config_mqtt_conn, spy_modbus_cmd_client):
'''don't call function if connnection is not in server mode'''
_ = config_mqtt_conn
spy = spy_modbus_cmd_client
try:
m = Mqtt(None)
msg = aiomqtt.Message(topic= 'tsun/inv_1/rated_load', payload= b'2', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_not_called()
finally:
await m.close()
@pytest.mark.asyncio
async def test_ha_reconnect(config_mqtt_conn):
_ = config_mqtt_conn
on_connect = asyncio.Event()
async def cb():
on_connect.set()
try:
m = Mqtt(cb)
msg = aiomqtt.Message(topic= 'homeassistant/status', payload= b'offline', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
assert not on_connect.is_set()
msg = aiomqtt.Message(topic= 'homeassistant/status', payload= b'online', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
assert on_connect.is_set()
finally:
await m.close()
@pytest.mark.asyncio
async def test_ignore_unknown_func(config_mqtt_conn):
'''don't dispatch for unknwon function names'''
_ = config_mqtt_conn
try:
m = Mqtt(None)
msg = aiomqtt.Message(topic= 'tsun/inv_1/rated_load', payload= b'2', qos= 0, retain = False, mid= 0, properties= None)
for _ in m.each_inverter(msg, 'unkown_fnc'):
assert False
finally:
await m.close()
@pytest.mark.asyncio
async def test_at_cmd_dispatch(config_mqtt_conn, spy_at_cmd):
_ = config_mqtt_conn
spy = spy_at_cmd
try:
m = Mqtt(None)
msg = aiomqtt.Message(topic= 'tsun/inv_2/at_cmd', payload= b'AT+', qos= 0, retain = False, mid= 0, properties= None)
await m.dispatch_msg(msg)
spy.assert_awaited_once_with('AT+')
finally:
await m.close()

91
app/tests/test_proxy.py Normal file
View File

@@ -0,0 +1,91 @@
# test_with_pytest.py
import pytest
import asyncio
import aiomqtt
import logging
from mock import patch, Mock
from app.src.singleton import Singleton
from app.src.proxy import Proxy
from app.src.mqtt import Mqtt
from app.src.gen3plus.solarman_v5 import SolarmanV5
from app.src.config import Config
pytest_plugins = ('pytest_asyncio',)
@pytest.fixture(scope="module", autouse=True)
def module_init():
def new_init(cls, cb_mqtt_is_up):
pass # empty test methos
Singleton._instances.clear()
with patch.object(Mqtt, '__init__', new_init):
yield
@pytest.fixture(scope="module")
def test_port():
return 1883
@pytest.fixture(scope="module")
def test_hostname():
# if getenv("GITHUB_ACTIONS") == "true":
# return 'mqtt'
# else:
return 'test.mosquitto.org'
@pytest.fixture
def config_conn(test_hostname, test_port):
Config.act_config = {
'mqtt':{
'host': test_hostname,
'port': test_port,
'user': '',
'passwd': ''
},
'ha':{
'auto_conf_prefix': 'homeassistant',
'discovery_prefix': 'homeassistant',
'entity_prefix': 'tsun',
'proxy_node_id': 'test_1',
'proxy_unique_id': ''
},
'inverters': {
'allow_all': True,
"R170000000000001":{
'node_id': 'inv_1'
}
}
}
@pytest.mark.asyncio
async def test_inverter_cb(config_conn):
_ = config_conn
with patch.object(Proxy, '_cb_mqtt_is_up', wraps=Proxy._cb_mqtt_is_up) as spy:
print('call Proxy.class_init')
Proxy.class_init()
assert 'homeassistant/' == Proxy.discovery_prfx
assert 'tsun/' == Proxy.entity_prfx
assert 'test_1/' == Proxy.proxy_node_id
await Proxy._cb_mqtt_is_up()
spy.assert_called_once()
@pytest.mark.asyncio
async def test_mqtt_is_up(config_conn):
_ = config_conn
with patch.object(Mqtt, 'publish') as spy:
Proxy.class_init()
await Proxy._cb_mqtt_is_up()
spy.assert_called()
@pytest.mark.asyncio
async def test_mqtt_proxy_statt_invalid(config_conn):
_ = config_conn
with patch.object(Mqtt, 'publish') as spy:
Proxy.class_init()
await Proxy._async_publ_mqtt_proxy_stat('InValId_kEy')
spy.assert_not_called()

View File

@@ -0,0 +1,19 @@
# test_with_pytest.py
import pytest
from app.src.singleton import Singleton
class Test(metaclass=Singleton):
def __init__(self):
pass # is a dummy test class
def test_singleton_metaclass():
Singleton._instances.clear()
a = Test()
assert 1 == len(Singleton._instances)
b = Test()
assert 1 == len(Singleton._instances)
assert a is b
del a
assert 1 == len(Singleton._instances)
del b
assert 0 == len(Singleton._instances)

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File diff suppressed because it is too large Load Diff

View File

@@ -83,7 +83,7 @@ services:
- ${PROJECT_DIR:-./}tsun-proxy/log:/home/tsun-proxy/log
- ${PROJECT_DIR:-./}tsun-proxy/config:/home/tsun-proxy/config
healthcheck:
test: wget --no-verbose --tries=1 --spider http://localhost:8127/-/healthy || exit 1
test: wget --no-verbose --tries=1 --spider http://127.0.0.1:8127/-/healthy || exit 1
interval: 10s
timeout: 3s
networks:

1
requirements-test.txt Normal file
View File

@@ -0,0 +1 @@
-r ./app/requirements-test.txt

26
sonar-project.properties Normal file
View File

@@ -0,0 +1,26 @@
sonar.projectKey=s-allius_tsun-gen3-proxy
sonar.organization=s-allius
# This is the name and version displayed in the SonarCloud UI.
sonar.projectName=tsun-gen3-proxy
#sonar.projectVersion=1.0
# Path is relative to the sonar-project.properties file. Replace "\" by "/" on Windows.
sonar.sources=app/src/
# Encoding of the source code. Default is default system encoding
#sonar.sourceEncoding=UTF-8
sonar.python.version=3.12
sonar.tests=system_tests/,app/tests/
sonar.exclusions=**/.vscode/**/*
# Name your criteria
sonar.issue.ignore.multicriteria=e1,e2
# python:S905 : Remove or refactor this statement; it has no side effects
sonar.issue.ignore.multicriteria.e1.ruleKey=python:S905
sonar.issue.ignore.multicriteria.e1.resourceKey=app/tests/*.py
sonar.issue.ignore.multicriteria.e2.ruleKey=python:S905
sonar.issue.ignore.multicriteria.e2.resourceKey=systems_tests/*.py

View File

@@ -13,31 +13,31 @@ def get_invalid_sn():
@pytest.fixture
def MsgContactInfo(): # Contact Info message
def msg_contact_info(): # Contact Info message
return b'\x00\x00\x00\x2c\x10'+get_sn()+b'\x91\x00\x08solarhub\x0fsolarhub\x40123456'
@pytest.fixture
def MsgContactResp(): # Contact Response message
def msg_contact_resp(): # Contact Response message
return b'\x00\x00\x00\x14\x10'+get_sn()+b'\x91\x00\x01'
@pytest.fixture
def MsgContactInfo2(): # Contact Info message
def msg_contact_info2(): # Contact Info message
return b'\x00\x00\x00\x2c\x10'+get_invalid_sn()+b'\x91\x00\x08solarhub\x0fsolarhub\x40123456'
@pytest.fixture
def MsgContactResp2(): # Contact Response message
def msg_contact_resp2(): # Contact Response message
return b'\x00\x00\x00\x14\x10'+get_invalid_sn()+b'\x91\x00\x01'
@pytest.fixture
def MsgTimeStampReq(): # Get Time Request message
def msg_timestamp_req(): # Get Time Request message
return b'\x00\x00\x00\x13\x10'+get_sn()+b'\x91\x22'
@pytest.fixture
def MsgTimeStampResp(): # Get Time Resonse message
def msg_timestamp_resp(): # Get Time Resonse message
return b'\x00\x00\x00\x1b\x10'+get_sn()+b'\x99\x22\x00\x00\x01\x89\xc6\x63\x4d\x80'
@pytest.fixture
def MsgContollerInd(): # Data indication from the controller
def msg_controller_ind(): # Data indication from the controller
msg = b'\x00\x00\x01\x2f\x10'+ get_sn() + b'\x91\x71\x0e\x10\x00\x00\x10'+get_sn()
msg += b'\x01\x00\x00\x01\x89\xc6\x63\x55\x50'
msg += b'\x00\x00\x00\x15\x00\x09\x2b\xa8\x54\x10\x52\x53\x57\x5f\x34\x30\x30\x5f\x56\x31\x2e\x30\x30\x2e\x30\x36\x00\x09\x27\xc0\x54\x06\x52\x61\x79\x6d\x6f'
@@ -49,7 +49,7 @@ def MsgContollerInd(): # Data indication from the controller
return msg
@pytest.fixture
def MsgInvData(): # Data indication from the controller
def msg_inv_data(): # Data indication from the controller
msg = b'\x00\x00\x00\x8b\x10'+ get_sn() + b'\x91\x04\x01\x90\x00\x01\x10'+get_inv_no()
msg += b'\x01\x00\x00\x01\x89\xc6\x63\x61\x08'
msg += b'\x00\x00\x00\x06\x00\x00\x00\x0a\x54\x08\x4d\x69\x63\x72\x6f\x69\x6e\x76\x00\x00\x00\x14\x54\x04\x54\x53\x55\x4e\x00\x00\x00\x1E\x54\x07\x56\x35\x2e\x30\x2e\x31\x31\x00\x00\x00\x28'
@@ -57,7 +57,7 @@ def MsgInvData(): # Data indication from the controller
return msg
@pytest.fixture
def MsgInverterInd(): # Data indication from the inverter
def msg_inverter_ind(): # Data indication from the inverter
msg = b'\x00\x00\x05\x02\x10'+ get_sn() + b'\x91\x04\x01\x90\x00\x01\x10'+get_inv_no()
msg += b'\x01\x00\x00\x01\x89\xc6\x63\x61\x08'
msg += b'\x00\x00\x00\xa3\x00\x00\x00\x64\x53\x00\x01\x00\x00\x00\xc8\x53\x00\x02\x00\x00\x01\x2c\x53\x00\x00\x00\x00\x01\x90\x49\x00\x00\x00\x00\x00\x00\x01\x91\x53\x00\x00'
@@ -94,7 +94,7 @@ def MsgInverterInd(): # Data indication from the inverter
return msg
@pytest.fixture
def MsgOtaUpdateReq(): # Over the air update request from talent cloud
def msg_ota_update_req(): # Over the air update request from talent cloud
msg = b'\x00\x00\x01\x16\x10'+ get_sn() + b'\x70\x13\x01\x02\x76\x35'
msg += b'\x70\x68\x74\x74\x70'
msg += b'\x3a\x2f\x2f\x77\x77\x77\x2e\x74\x61\x6c\x65\x6e\x74\x2d\x6d\x6f'
@@ -117,7 +117,7 @@ def MsgOtaUpdateReq(): # Over the air update request from talent cloud
@pytest.fixture(scope="session")
def ClientConnection():
def client_connection():
host = 'logger.talent-monitoring.com'
port = 5005
with socket.socket(socket.AF_INET, socket.SOCK_STREAM) as s:
@@ -127,7 +127,7 @@ def ClientConnection():
time.sleep(2.5)
s.close()
def tempClientConnection():
def tempclient_connection():
host = 'logger.talent-monitoring.com'
port = 5005
with socket.socket(socket.AF_INET, socket.SOCK_STREAM) as s:
@@ -138,25 +138,25 @@ def tempClientConnection():
def test_open_close():
try:
for s in tempClientConnection():
pass
except:
for _ in tempclient_connection():
pass # test side effect of generator
except Exception:
assert False
def test_send_contact_info1(ClientConnection, MsgContactInfo, MsgContactResp):
s = ClientConnection
def test_send_contact_info1(client_connection, msg_contact_info, msg_contact_resp):
s = client_connection
try:
s.sendall(MsgContactInfo)
s.sendall(msg_contact_info)
data = s.recv(1024)
except TimeoutError:
pass
assert data == MsgContactResp
assert data == msg_contact_resp
def test_send_contact_info2(ClientConnection, MsgContactInfo2, MsgContactInfo, MsgContactResp):
s = ClientConnection
def test_send_contact_info2(client_connection, msg_contact_info2, msg_contact_info, msg_contact_resp):
s = client_connection
try:
s.sendall(MsgContactInfo2)
s.sendall(msg_contact_info2)
data = s.recv(1024)
except TimeoutError:
pass
@@ -164,73 +164,73 @@ def test_send_contact_info2(ClientConnection, MsgContactInfo2, MsgContactInfo, M
assert False
try:
s.sendall(MsgContactInfo)
s.sendall(msg_contact_info)
data = s.recv(1024)
except TimeoutError:
pass
assert data == MsgContactResp
assert data == msg_contact_resp
def test_send_contact_info3(ClientConnection, MsgContactInfo, MsgContactResp, MsgTimeStampReq):
s = ClientConnection
def test_send_contact_info3(client_connection, msg_contact_info, msg_contact_resp, msg_timestamp_req):
s = client_connection
try:
s.sendall(MsgContactInfo)
s.sendall(msg_contact_info)
data = s.recv(1024)
except TimeoutError:
pass
assert data == MsgContactResp
assert data == msg_contact_resp
try:
s.sendall(MsgTimeStampReq)
s.sendall(msg_timestamp_req)
data = s.recv(1024)
except TimeoutError:
pass
def test_send_contact_resp(ClientConnection, MsgContactResp):
s = ClientConnection
def test_send_contact_resp(client_connection, msg_contact_resp):
s = client_connection
try:
s.sendall(MsgContactResp)
s.sendall(msg_contact_resp)
data = s.recv(1024)
except TimeoutError:
pass
else:
assert data == b''
def test_send_ctrl_data(ClientConnection, MsgTimeStampReq, MsgTimeStampResp, MsgContollerInd):
s = ClientConnection
def test_send_ctrl_data(client_connection, msg_timestamp_req, msg_timestamp_resp, msg_controller_ind):
s = client_connection
try:
s.sendall(MsgTimeStampReq)
data = s.recv(1024)
s.sendall(msg_timestamp_req)
_ = s.recv(1024)
except TimeoutError:
pass
# time.sleep(2.5)
# assert data == MsgTimeStampResp
# assert data == msg_timestamp_resp
try:
s.sendall(MsgContollerInd)
data = s.recv(1024)
s.sendall(msg_controller_ind)
_ = s.recv(1024)
except TimeoutError:
pass
def test_send_inv_data(ClientConnection, MsgTimeStampReq, MsgTimeStampResp, MsgInvData, MsgInverterInd):
s = ClientConnection
def test_send_inv_data(client_connection, msg_timestamp_req, msg_timestamp_resp, msg_inv_data, msg_inverter_ind):
s = client_connection
try:
s.sendall(MsgTimeStampReq)
data = s.recv(1024)
s.sendall(msg_timestamp_req)
_ = s.recv(1024)
except TimeoutError:
pass
# time.sleep(32.5)
# assert data == MsgTimeStampResp
# assert data == msg_timestamp_resp
try:
s.sendall(MsgInvData)
data = s.recv(1024)
s.sendall(MsgInverterInd)
data = s.recv(1024)
s.sendall(msg_inv_data)
_ = s.recv(1024)
s.sendall(msg_inverter_ind)
_ = s.recv(1024)
except TimeoutError:
pass
def test_ota_req(ClientConnection, MsgOtaUpdateReq):
s = ClientConnection
def test_ota_req(client_connection, msg_ota_update_req):
s = client_connection
try:
s.sendall(MsgOtaUpdateReq)
data = s.recv(1024)
s.sendall(msg_ota_update_req)
_ = s.recv(1024)
except TimeoutError:
pass

11
tsun.code-workspace Normal file
View File

@@ -0,0 +1,11 @@
{
"folders": [
{
"path": "."
},
{
"path": "../wiki"
}
],
"settings": {}
}