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93 Commits

Author SHA1 Message Date
Stefan Allius
1f4d3740d6 Merge branch 'dev-0.12' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-11-14 19:38:18 +01:00
Stefan Allius
5ced5ff06a S allius/issue205 (#207)
* Add SolarmanEmu class

* Forward a device ind to establish the EMU connection

* Move SolarmanEmu class into a dedicated file

* Add cloud connection counter

* Send inverter data in emulator mode

* Improve emulator mode

- parse more values from MQTT register
- differ between inverter and logger serial no

* Add some unit tests for SolarmanEmu class

* Send seconds since last sync in data packets

* Increase test coverage
2024-11-13 22:03:28 +01:00
Stefan Allius
abdc323dc6 Merge branch 'dev-0.12' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-11-02 15:40:32 +01:00
Stefan Allius
78a35b5513 report alarm and fault bitfield to ha (#204)
* report alarm and fault bitfield to home assistant

* initial verson of message builder for SolarmanV5

- for SolarmaV5 we build he param field for the
  device and inverter message from the internal
  database
- added param description to the info table
  for constant values, which are not parsed and
  stored in internal database

* define constants for often used format strings

* update changelog
2024-11-02 15:09:10 +01:00
Stefan Allius
9b22fe354c clear remote ptr on disc only for client ifcs 2024-10-26 17:30:00 +02:00
Stefan Allius
a6ad3d4f0d fix linter warnings 2024-10-25 23:49:35 +02:00
Stefan Allius
4993676614 remove all eval() calls 2024-10-25 23:41:25 +02:00
Stefan Allius
10a18237c7 replace some eval calls 2024-10-25 21:38:36 +02:00
Stefan Allius
8d67f1745d update SonarSource/sonarcloud-github-action 2024-10-25 20:36:53 +02:00
Stefan Allius
35efa65410 apdate start_reg 2024-10-23 19:10:28 +02:00
Stefan Allius
399d0b58ff fix testcase 2024-10-22 00:08:05 +02:00
Stefan Allius
2b4bd2922c don't scan sensor list type 0x02b0 2024-10-22 00:07:36 +02:00
Stefan Allius
3eba999a2b fix _send_modbus_cmd calls 2024-10-22 00:06:31 +02:00
Stefan Allius
ad8a902ac6 configure scan increment 2024-10-20 16:52:30 +02:00
Stefan Allius
9eb7c7fbe0 increase test coverage 2024-10-19 01:23:16 +02:00
Stefan Allius
6c6109d421 update class diagramms 2024-10-18 23:49:23 +02:00
Stefan Allius
fda4008036 update start reg 2024-10-18 23:47:44 +02:00
Stefan Allius
e7e693c0b6 Merge branch 'dev-0.12' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-10-17 23:33:05 +02:00
Stefan Allius
7d0ea41728 reduce code duplications 2024-10-17 23:20:13 +02:00
Stefan Allius
ce5bd6eb0a reduce code duplications 2024-10-17 21:51:26 +02:00
Stefan Allius
98665b3aac log valid modbus responses for all inverter 2024-10-16 23:48:54 +02:00
Stefan Allius
6b488e5269 Merge branch 'dev-0.12' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-10-16 23:33:06 +02:00
Stefan Allius
6122f40718 fix recv_resp method call 2024-10-16 23:25:18 +02:00
Stefan Allius
c5f184a730 improve setting the node_id in the modbus 2024-10-16 23:20:23 +02:00
Stefan Allius
010ae2b2c7 Merge branch 'dev-0.12' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-10-15 22:18:30 +02:00
Stefan Allius
db06d8c8e6 define __slots__ 2024-10-15 22:11:19 +02:00
Stefan Allius
3863454a84 set TZ to "Europe/Berlin" 2024-10-15 21:59:32 +02:00
Stefan Allius
5775cb1ce3 try MathRobin/timezone-action@v1.1 2024-10-15 21:53:11 +02:00
Stefan Allius
5d61a261b1 set set-timezone to UTC 2024-10-15 21:37:01 +02:00
Stefan Allius
bbda66e455 disable set-timezone action 2024-10-15 21:28:57 +02:00
Stefan Allius
0c7bf7956d define __slots__ for class ByteFifo 2024-10-15 21:25:09 +02:00
Stefan Allius
24840e67c0 adapt start_reg 2024-10-13 22:38:21 +02:00
Stefan Allius
2dd89d3174 git push 2024-10-13 19:45:11 +02:00
Stefan Allius
c84b610229 also scan GEN3(PLUS) inverters 2024-10-13 09:33:23 +02:00
Stefan Allius
5dc890dde0 Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-10-11 20:30:09 +02:00
Stefan Allius
0c10cc32dc update changelog 2024-10-11 20:29:20 +02:00
Stefan Allius
71f581eb0b add more unittests 2024-10-10 22:41:13 +02:00
Stefan Allius
a4acddd769 remove obsolete tx_get method 2024-10-10 00:30:10 +02:00
Stefan Allius
724f6f3b22 simplify heartbeat handler 2024-10-10 00:00:32 +02:00
Stefan Allius
18c3020282 increase tes coverage 2024-10-09 23:59:56 +02:00
Stefan Allius
e127716317 increase test coverage 2024-10-08 23:48:49 +02:00
Stefan Allius
5790b657d0 update start-REG 2024-10-07 23:20:21 +02:00
Stefan Allius
5d4ff9051d Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-10-06 21:28:12 +02:00
Stefan Allius
595b68ba03 reduce cognitive complexity 2024-10-06 21:20:53 +02:00
Stefan Allius
d7628689f0 icrease test coverage 2024-10-06 21:15:46 +02:00
Stefan Allius
e074a39f5a add unit tests for AsyncStream class 2024-10-06 17:43:40 +02:00
Stefan Allius
9852f44dfa use ProtocolIfc class 2024-10-05 21:11:42 +02:00
Stefan Allius
c7d0a91371 add more testcases 2024-10-05 01:35:04 +02:00
Stefan Allius
5b68610f78 move class InverterIfc into a separate file 2024-10-05 01:34:03 +02:00
Stefan Allius
0b79a37fe7 fix typo 2024-10-05 01:33:05 +02:00
Stefan Allius
00e9a4534d rename class Inverter into Proxy 2024-10-04 23:37:05 +02:00
Stefan Allius
3a94afb48d fix sonar qube warnings 2024-10-04 01:50:24 +02:00
Stefan Allius
949f3c9608 initial commit 2024-10-04 01:41:25 +02:00
Stefan Allius
cd2f41a713 add abstract inverter interface class 2024-10-04 01:35:44 +02:00
Stefan Allius
84034127e3 remove test_inverter_base.py 2024-10-03 15:11:22 +02:00
Stefan Allius
22d59ed659 move more code into InverterBase class 2024-10-03 15:08:07 +02:00
Stefan Allius
cfe2c9cb9d remove connection classes 2024-10-02 23:40:42 +02:00
Stefan Allius
39aba31bbd refactor close handling 2024-10-01 19:50:42 +02:00
Stefan Allius
a1441fb4fd add close callback 2024-09-30 19:17:06 +02:00
Stefan Allius
f2ade43410 fixes
- fixes null pointer accesses
- initalize AsyncStreamClient with proper
  StreamPtr instance
2024-09-30 19:14:50 +02:00
Stefan Allius
8f695518bd update class diagramm 2024-09-30 19:13:29 +02:00
Stefan Allius
b3068a256c don't overwrite self.remote in constructor 2024-09-30 19:12:49 +02:00
Stefan Allius
2336955bb8 fix client loop closing 2024-09-29 21:11:53 +02:00
Stefan Allius
8a745b2d10 Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-09-29 20:52:08 +02:00
Stefan Allius
518375e8a8 fix server connections 2024-09-29 20:49:08 +02:00
Stefan Allius
b57ded1a73 Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-09-29 20:27:28 +02:00
Stefan Allius
41aeac4168 resolution of connection classes
- remove ConnectionG3Client
- remove ConnectionG3Server
- remove ConnectionG3PClient
- remove ConnectionG3PServer
2024-09-29 20:08:04 +02:00
Stefan Allius
5a0ef30ceb move StremPtr instances into Inverter class 2024-09-29 15:31:14 +02:00
Stefan Allius
4c15495670 update start register 2024-09-29 14:30:33 +02:00
Stefan Allius
ca610b15ff Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-09-29 10:23:04 +02:00
Stefan Allius
0c824b4a2a reduce code duplication 2024-09-29 10:15:38 +02:00
Stefan Allius
95f817a92b Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-09-28 23:31:02 +02:00
Stefan Allius
2ef7a7e201 remove duplicated imports 2024-09-28 23:30:23 +02:00
Stefan Allius
2be0ef67af refactor server creation 2024-09-28 22:43:29 +02:00
Stefan Allius
43700b3da8 Merge branch 'refactoring-async-stream' of https://github.com/s-allius/tsun-gen3-proxy into titan-scan 2024-09-27 19:28:39 +02:00
Stefan Allius
7b6810cb46 update class diagramm 2024-09-27 19:25:40 +02:00
Stefan Allius
aa7c1832ef split ConnectionG3(P) in server and client class 2024-09-27 00:47:44 +02:00
Stefan Allius
73526b7dc6 split AsyncStream in two classes 2024-09-26 23:04:11 +02:00
Stefan Allius
b6761e7517 FIX update_header_cb handling 2024-09-26 00:14:51 +02:00
Stefan Allius
209956865b add two more callbacks 2024-09-26 00:11:11 +02:00
Stefan Allius
bc54944077 add two more callbacks 2024-09-25 22:41:01 +02:00
Stefan Allius
37c977c2fe avoid mqtt handling for invalid serial numbers 2024-09-25 00:11:39 +02:00
Stefan Allius
d5c369e5fe refactoring 2024-09-24 21:12:51 +02:00
Stefan Allius
89c2c11ed9 refactoring 2024-09-24 21:10:58 +02:00
Stefan Allius
eea725b8da remove _forward_buffer 2024-09-22 15:00:53 +02:00
Stefan Allius
0b437cf3bc - refactoring
- remove _forward_buffer
- make async_write private
2024-09-22 14:59:18 +02:00
Stefan Allius
ae4bcee41f experimental modbus scan 2024-09-22 10:56:48 +02:00
Stefan Allius
edc0f7a6af Merge branch 'dev-0.11' of https://github.com/s-allius/tsun-gen3-proxy into refactoring-async-stream 2024-09-22 10:51:41 +02:00
Stefan Allius
9ffcfbc9ce declare more methods as classmethods 2024-09-22 10:42:48 +02:00
Stefan Allius
b7c63b5cf8 use AsyncIfc class with FIFO 2024-09-22 10:40:30 +02:00
Stefan Allius
af81aef07c add object factory 2024-09-22 10:29:38 +02:00
Stefan Allius
f216c2434e introduce ifc with FIFOs 2024-09-22 10:28:36 +02:00
Stefan Allius
39540678fb GEN3: Invalid Contact Info Msg
Fixes #191
2024-09-18 22:07:26 +02:00
29 changed files with 2045 additions and 859 deletions

View File

@@ -24,27 +24,15 @@ 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"
# - name: Start Mosquitto
# uses: namoshek/mosquitto-github-action@v1
# with:
# version: '1.6'
# ports: '1883:1883 8883:8883'
# certificates: ${{ github.workspace }}/.ci/tls-certificates
# config: ${{ github.workspace }}/.ci/mosquitto.conf
# password-file: ${{ github.workspace}}/.ci/mosquitto.passwd
# container-name: 'mqtt'
- uses: actions/checkout@v4
with:
fetch-depth: 0 # Shallow clones should be disabled for a better relevancy of analysis
@@ -68,7 +56,7 @@ jobs:
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 }}

View File

@@ -7,6 +7,9 @@ and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0
## [unreleased]
- add SolarmanV5 messages builder
- report inverter alarms and faults per MQTT [#7](https://github.com/s-allius/tsun-gen3-proxy/issues/7)
## [0.11.0] - 2024-10-13
- fix healthcheck on infrastructure with IPv6 support [#196](https://github.com/s-allius/tsun-gen3-proxy/issues/196)

View File

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<title>A8</title>
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<!-- A4&#45;&gt;A5 -->
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<!-- A6&#45;&gt;A7 -->
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<text text-anchor="start" x="96.944" y="-43" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">&lt;async&gt;client_loop()</text>
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<!-- A9&#45;&gt;A2 -->
<!-- A4&#45;&gt;A9 -->
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<title>A4&#45;&gt;A9</title>
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<title>A5</title>
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<text text-anchor="start" x="157.002" y="-1075" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">set_node_id()</text>
<text text-anchor="start" x="155.332" y="-1063" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">get_conn_no()</text>
<text text-anchor="start" x="169.2295" y="-1039" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">tx_add()</text>
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<text text-anchor="start" x="170.8995" y="-967" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">tx_len()</text>
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<text text-anchor="start" x="167.0105" y="-931" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">fwd_log()</text>
<text text-anchor="start" x="170.3445" y="-919" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">rx_get()</text>
<text text-anchor="start" x="166.4545" y="-907" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">rx_peek()</text>
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<text text-anchor="start" x="170.6245" y="-871" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">rx_len()</text>
<text text-anchor="start" x="162.565" y="-859" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">rx_set_cb()</text>
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<title>A6</title>
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<text text-anchor="start" x="94.7795" y="-585" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">node_id</text>
<text text-anchor="start" x="88.1155" y="-573" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">timeout_cb</text>
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<!-- A5&#45;&gt;A6 -->
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<title>A5&#45;&gt;A6</title>
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<title>A7</title>
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<text text-anchor="start" x="100.063" y="-347" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">addr</text>
<text text-anchor="start" x="95.619" y="-335" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">r_addr</text>
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<text text-anchor="start" x="81.72" y="-279" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">&lt;async&gt;loop</text>
<text text-anchor="start" x="97.848" y="-267" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">disc()</text>
<text text-anchor="start" x="95.0685" y="-255" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">close()</text>
<text text-anchor="start" x="90.62" y="-243" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">healthy()</text>
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<!-- A6&#45;&gt;A7 -->
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<title>A6&#45;&gt;A7</title>
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<title>A9&#45;&gt;A2</title>
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<title>A7&#45;&gt;A8</title>
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<!-- A9&#45;&gt;A2 -->
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<title>A9&#45;&gt;A2</title>
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<!-- A9&#45;&gt;A4 -->
<g id="edge15" class="edge">
<title>A9&#45;&gt;A4</title>
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<!-- A12 -->
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<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>
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<!-- A9&#45;&gt;A12 -->
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<title>A9&#45;&gt;A12</title>
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<!-- A7&#45;&gt;A9 -->
<g id="edge6" class="edge">
<title>A7&#45;&gt;A9</title>
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<title>A10</title>
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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>
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<!-- A10&#45;&gt;A3 -->
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<title>A10&#45;&gt;A3</title>
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<!-- A10&#45;&gt;A3 -->
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<!-- A10&#45;&gt;A4 -->
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<title>A10&#45;&gt;A4</title>
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<title>A13</title>
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<title>A12</title>
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<!-- A10&#45;&gt;A13 -->
<g id="edge18" class="edge">
<title>A10&#45;&gt;A13</title>
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<!-- A10&#45;&gt;A12 -->
<g id="edge12" class="edge">
<title>A10&#45;&gt;A12</title>
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<!-- A11 -->
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<title>A11</title>
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<text text-anchor="start" x="208.6835" y="-1209" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">static_init()</text>
<text text-anchor="start" x="206.7325" y="-1197" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">dev_value()</text>
<text text-anchor="start" x="203.6785" y="-1185" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">inc_counter()</text>
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<text text-anchor="start" x="200.058" y="-1161" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">ha_proxy_conf</text>
<text text-anchor="start" x="215.061" y="-1149" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">ha_conf</text>
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<text text-anchor="start" x="209.2225" y="-1125" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">update_db</text>
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<text text-anchor="start" x="455.4015" y="-635" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">static_init()</text>
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<text text-anchor="start" x="450.3965" y="-611" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">inc_counter()</text>
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<text text-anchor="start" x="446.776" y="-587" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">ha_proxy_conf</text>
<text text-anchor="start" x="461.779" y="-575" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">ha_conf</text>
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<text text-anchor="start" x="449.5515" y="-527" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">get_db_value</text>
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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>A13</title>
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<text text-anchor="start" x="165.8255" y="-1245" font-family="Helvetica,sans-Serif" font-size="10.00" fill="#000000">&lt;async&gt; end_modbus_cmd()</text>
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<!-- A13&#45;&gt;A5 -->
<g id="edge13" class="edge">
<title>A13&#45;&gt;A5</title>
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<!-- A13&#45;&gt;A10 -->
<g id="edge16" class="edge">
<title>A13&#45;&gt;A10</title>
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<!-- A14&#45;&gt;A13 -->
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<title>A14&#45;&gt;A13</title>
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<title>A15</title>
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<!-- A14&#45;&gt;A15 -->
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<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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<!-- A15&#45;&gt;A10 -->
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<title>A15&#45;&gt;A10</title>
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<!-- A16 -->
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<title>A16</title>
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@@ -2,11 +2,12 @@
// {direction:topDown}
// {generate:true}
[note: You can stick notes on diagrams too!{bg:cornsilk}]
[note: Example of instantiation for a GEN3 inverter!{bg:cornsilk}]
[<<AbstractIterMeta>>||__iter__()]
[InverterG3|addr;remote:StreamPtr;local:StreamPtr|create_remote();;close()]
[InverterG3P|addr;remote:StreamPtr;local:StreamPtr|create_remote();;close()]
[InverterG3]++->[local:StreamPtr]
[InverterG3]++->[remote:StreamPtr]
[<<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]
@@ -19,33 +20,24 @@
[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]
[Talent|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]<-++[local:StreamPtr]
[local:StreamPtr]++->[AsyncStreamServer]
[Talent]<-0..1[remote:StreamPtr]
[remote:StreamPtr]0..1->[AsyncStreamClient]
[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]
[Message|server_side:bool;mb:Modbus;ifc:AsyncIfc;node_id;header_valid:bool;header_len;data_len;unique_id;sug_area:str;new_data:dict;state:State;shutdown_started:bool;modbus_elms;mb_timer:Timer;mb_timeout;mb_first_timeout;modbus_polling:bool|_set_mqtt_timestamp();_timeout();_send_modbus_cmd();<async> end_modbus_cmd();close();inc_counter();dec_counter()]
[Message]use->[<<AsyncIfc>>]
[<<ProtocolIfc>>|_registry|close()]
[<<AbstractIterMeta>>]^-.-[<<ProtocolIfc>>]
[<<ProtocolIfc>>]^-.-[Message|node_id|inc_counter();dec_counter()]
[<<ProtocolIfc>>]^-.-[Message]
[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]
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<!-- A5&#45;&gt;A6 -->
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<!-- A10&#45;&gt;A12 -->
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<!-- A11 -->
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After

Width:  |  Height:  |  Size: 32 KiB

42
app/proxy_3.yuml Normal file
View File

@@ -0,0 +1,42 @@
// {type:class}
// {direction:topDown}
// {generate:true}
[note: Example of instantiation for a GEN3PLUS inverter!{bg:cornsilk}]
[<<AbstractIterMeta>>||__iter__()]
[InverterG3P|addr;remote:StreamPtr;local:StreamPtr|create_remote();;close()]
[InverterG3P]++->[local:StreamPtr]
[InverterG3P]++->[remote:StreamPtr]
[<<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]
[SolarmanV5|conn_no;addr;;control;serial;snr;db:InfosG3P;switch|msg_unknown();;healthy();close()]
[SolarmanV5]<-++[local:StreamPtr]
[local:StreamPtr]++->[AsyncStreamServer]
[SolarmanV5]<-0..1[remote:StreamPtr]
[remote:StreamPtr]0..1->[AsyncStreamClient]
[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]^[InfosG3P||ha_confs();parse()]
[SolarmanV5]->[InfosG3P]
[Message|server_side:bool;mb:Modbus;ifc:AsyncIfc;node_id;header_valid:bool;header_len;data_len;unique_id;sug_area:str;new_data:dict;state:State;shutdown_started:bool;modbus_elms;mb_timer:Timer;mb_timeout;mb_first_timeout;modbus_polling:bool|_set_mqtt_timestamp();_timeout();_send_modbus_cmd();<async> end_modbus_cmd();close();inc_counter();dec_counter()]
[Message]use->[<<AsyncIfc>>]
[<<ProtocolIfc>>|_registry|close()]
[<<AbstractIterMeta>>]^-.-[<<ProtocolIfc>>]
[<<ProtocolIfc>>]^-.-[Message]
[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]<0..1-has[Message]

View File

@@ -221,7 +221,6 @@ class AsyncStream(AsyncIfcImpl):
async def disc(self) -> None:
"""Async disc handler for graceful disconnect"""
self.remote = None
if self._writer.is_closing():
return
logger.debug(f'AsyncStream.disc() l{self.l_addr} | r{self.r_addr}')
@@ -306,6 +305,14 @@ class AsyncStream(AsyncIfcImpl):
f"Fwd Exception for {self.r_addr}:\n"
f"{traceback.format_exc()}")
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 AsyncStreamServer(AsyncStream):
def __init__(self, reader: StreamReader, writer: StreamWriter,
@@ -355,14 +362,6 @@ class AsyncStreamServer(AsyncStream):
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,
@@ -370,6 +369,11 @@ class AsyncStreamClient(AsyncStream):
AsyncStream.__init__(self, reader, writer, rstream)
self.close_cb = close_cb
async def disc(self) -> None:
logging.debug('AsyncStreamClient.disc()')
self.remote = None
await super().disc()
def close(self) -> None:
logging.debug('AsyncStreamClient.close()')
self.close_cb = None
@@ -377,7 +381,11 @@ class AsyncStreamClient(AsyncStream):
async def client_loop(self, _: str) -> None:
'''Loop for receiving messages from the TSUN cloud (client-side)'''
Infos.inc_counter('Cloud_Conn_Cnt')
await self.publish_outstanding_mqtt()
await self.loop()
Infos.dec_counter('Cloud_Conn_Cnt')
await self.publish_outstanding_mqtt()
logger.info(f'[{self.node_id}:{self.conn_no}] '
'Client loop stopped for'
f' l{self.l_addr}')

View File

@@ -7,6 +7,8 @@ else: # pragma: no cover
class ByteFifo:
""" a byte FIFO buffer with trigger callback """
__slots__ = ('__buf', '__trigger_cb')
def __init__(self):
self.__buf = bytearray()
self.__trigger_cb = None

View File

@@ -57,7 +57,8 @@ class Config():
Optional('client_mode'): {
'host': Use(str),
Optional('port', default=8899):
And(Use(int), lambda n: 1024 <= n <= 65535)
And(Use(int), lambda n: 1024 <= n <= 65535),
Optional('forward', default=False): Use(bool),
},
Optional('modbus_polling', default=True): Use(bool),
Optional('suggested_area', default=""): Use(str),

View File

@@ -10,6 +10,8 @@ else: # pragma: no cover
class RegisterMap:
__slots__ = ()
map = {
0x00092ba8: {'reg': Register.COLLECTOR_FW_VERSION},
0x000927c0: {'reg': Register.CHIP_TYPE},
@@ -68,29 +70,26 @@ class RegisterMap:
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},
0x00000190: {'reg': Register.EVENT_ALARM},
0x000001f4: {'reg': Register.EVENT_FAULT},
0x00000258: {'reg': Register.EVENT_BF1},
0x000002bc: {'reg': Register.EVENT_BF2},
0x00000064: {'reg': Register.INVERTER_STATUS},
0x00000fa0: {'reg': Register.BOOT_STATUS},
0x00001004: {'reg': Register.DSP_STATUS},
0x000010cc: {'reg': Register.WORK_MODE},
0x000011f8: {'reg': Register.OUTPUT_SHUTDOWN},
0x0000125c: {'reg': Register.MAX_DESIGNED_POWER},
0x000012c0: {'reg': Register.RATED_LEVEL},
0x00001324: {'reg': Register.INPUT_COEFFICIENT, 'ratio': 100/1024},
0x00001388: {'reg': Register.GRID_VOLT_CAL_COEF},
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 = '') \
@@ -180,11 +179,8 @@ class InfosG3(Infos):
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)
if row and 'ratio' in row:
result = round(result * row['ratio'], 2)
return result
def __store_result(self, addr, result, info_id, node_id):

View File

@@ -8,7 +8,6 @@ if __name__ == "app.src.gen3.talent":
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
@@ -16,7 +15,6 @@ else: # pragma: no cover
from async_ifc import AsyncIfc
from messages import Message, State
from modbus import Modbus
from my_timer import Timer
from config import Config
from gen3.infos_g3 import InfosG3
from infos import Register
@@ -42,19 +40,18 @@ class Control:
class Talent(Message):
MB_START_TIMEOUT = 40
MB_REGULAR_TIMEOUT = 60
TXT_UNKNOWN_CTRL = 'Unknown Ctrl'
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)
super().__init__('G3', ifc, 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
@@ -86,38 +83,17 @@ class Talent(Message):
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_first_timeout = self.MB_START_TIMEOUT
self.modbus_polling = False
'''
Our puplic methods
'''
def close(self) -> None:
logging.debug('Talent.close()')
if self.server_side:
# set inverter state to offline, if output power is very low
logging.debug('close power: '
f'{self.db.get_db_value(Register.OUTPUT_POWER, -1)}')
if self.db.get_db_value(Register.OUTPUT_POWER, 999) < 2:
self.db.set_db_def_value(Register.INVERTER_STATUS, 0)
self.new_data['env'] = True
# we have references to methods of this class in self.switch
# so we have to erase self.switch, otherwise this instance can't be
# deallocated by the garbage collector ==> we get a memory leak
self.switch.clear()
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):
@@ -135,6 +111,8 @@ class Talent(Message):
self.modbus_polling = inv['modbus_polling']
logger.debug(f'SerialNo {serial_no} allowed! area:{self.sug_area}') # noqa: E501
self.db.set_pv_module_details(inv)
if self.mb:
self.mb.set_node_id(self.node_id)
else:
self.node_id = ''
self.sug_area = ''
@@ -203,24 +181,16 @@ class Talent(Message):
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:
logger.log(log_lvl, f'[{self.node_id}] ignore MODBUS cmd,'
' as the state is not UP')
return
self.mb.build_msg(Modbus.INV_ADDR, func, addr, val, log_lvl)
async def send_modbus_cmd(self, func, addr, val, log_lvl) -> None:
self._send_modbus_cmd(func, addr, val, log_lvl)
def mb_timout_cb(self, exp_cnt):
self.mb_timer.start(self.mb_timeout)
if 2 == (exp_cnt % 30):
# logging.info("Regular Modbus Status request")
self._send_modbus_cmd(Modbus.READ_REGS, 0x2000, 96, logging.DEBUG)
self._send_modbus_cmd(Modbus.INV_ADDR, Modbus.READ_REGS, 0x2000,
96, logging.DEBUG)
else:
self._send_modbus_cmd(Modbus.READ_REGS, 0x3000, 48, logging.DEBUG)
self._send_modbus_cmd(Modbus.INV_ADDR, Modbus.READ_REGS, 0x3000,
48, logging.DEBUG)
def _init_new_client_conn(self) -> bool:
contact_name = self.contact_name
@@ -590,8 +560,7 @@ class Talent(Message):
return
for key, update, _ in self.mb.recv_resp(self.db, data[
hdr_len:],
self.node_id):
hdr_len:]):
if update:
self._set_mqtt_timestamp(key, self._utc())
self.new_data[key] = True

View File

@@ -1,39 +1,58 @@
import struct
from typing import Generator
if __name__ == "app.src.gen3plus.infos_g3p":
from app.src.infos import Infos, Register, ProxyMode
from app.src.infos import Infos, Register, ProxyMode, Fmt
else: # pragma: no cover
from infos import Infos, Register, ProxyMode
from infos import Infos, Register, ProxyMode, Fmt
class RegisterMap:
# make the class read/only by using __slots__
__slots__ = ()
FMT_2_16BIT_VAL = '!HH'
FMT_3_16BIT_VAL = '!HHH'
FMT_4_16BIT_VAL = '!HHHH'
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
0x41020019: {'reg': Register.COLLECT_INTERVAL, 'fmt': '<B', 'eval': 'round(result/60)', 'dep': ProxyMode.SERVER}, # noqa: E501
0x41020018: {'reg': Register.DATA_UP_INTERVAL, 'fmt': '<B', 'ratio': 60, 'dep': ProxyMode.SERVER}, # noqa: E501
0x41020019: {'reg': Register.COLLECT_INTERVAL, 'fmt': '<B', 'quotient': 60, 'dep': ProxyMode.SERVER}, # noqa: E501
0x4102001a: {'reg': Register.HEARTBEAT_INTERVAL, 'fmt': '<B', 'ratio': 1}, # noqa: E501
0x4102001b: {'reg': None, 'fmt': '<B', 'const': 1}, # noqa: E501 Max No Of Connected Devices
0x4102001c: {'reg': Register.SIGNAL_STRENGTH, 'fmt': '<B', 'ratio': 1, 'dep': ProxyMode.SERVER}, # noqa: E501
0x4102001d: {'reg': None, 'fmt': '<B', 'const': 1}, # 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
0x41020046: {'reg': Register.MAC_ADDR, 'fmt': '!6B', 'func': Fmt.mac}, # noqa: E501
0x4102004c: {'reg': Register.IP_ADDRESS, 'fmt': '!16s'}, # noqa: E501
0x4102005f: {'reg': Register.SENSOR_LIST, 'fmt': '<H', 'eval': "f'{result:04x}'"}, # noqa: E501
0x4102005c: {'reg': None, 'fmt': '<B', 'const': 15}, # noqa: E501
0x4102005e: {'reg': None, 'fmt': '<B', 'const': 1}, # noqa: E501 No Of Sensors (ListLen)
0x4102005f: {'reg': Register.SENSOR_LIST, 'fmt': '<H', 'func': Fmt.hex4}, # noqa: E501
0x41020061: {'reg': None, 'fmt': '<BBB', 'const': (15, 0, 255)}, # noqa: E501
0x41020064: {'reg': Register.COLLECTOR_FW_VERSION, 'fmt': '!40s'}, # noqa: E501
0x4102008c: {'reg': None, 'fmt': '<BB', 'const': (254, 254)}, # noqa: E501
0x410200b7: {'reg': Register.SSID, 'fmt': '!40s'}, # noqa: E501
0x4201000c: {'reg': Register.SENSOR_LIST, 'fmt': '<H', 'eval': "f'{result:04x}'"}, # noqa: E501
0x4201000c: {'reg': Register.SENSOR_LIST, 'fmt': '<H', 'func': Fmt.hex4}, # 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
# Start MODBUS Block: 0x3000 (R/O Measurements)
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
0x420100c2: {'reg': Register.DETECT_STATUS_1, 'fmt': '!H'}, # noqa: E501
0x420100c4: {'reg': Register.DETECT_STATUS_2, 'fmt': '!H'}, # noqa: E501
0x420100c6: {'reg': Register.EVENT_ALARM, 'fmt': '!H'}, # noqa: E501
0x420100c8: {'reg': Register.EVENT_FAULT, 'fmt': '!H'}, # noqa: E501
0x420100ca: {'reg': Register.EVENT_BF1, 'fmt': '!H'}, # noqa: E501
0x420100cc: {'reg': Register.EVENT_BF2, 'fmt': '!H'}, # noqa: E501
# 0x420100ce
0x420100d0: {'reg': Register.VERSION, 'fmt': '!H', 'func': Fmt.version}, # noqa: E501
0x420100d2: {'reg': Register.GRID_VOLTAGE, 'fmt': '!H', 'ratio': 0.1}, # noqa: E501
0x420100d4: {'reg': Register.GRID_CURRENT, 'fmt': '!H', 'ratio': 0.01}, # noqa: E501
0x420100d6: {'reg': Register.GRID_FREQUENCY, 'fmt': '!H', 'ratio': 0.01}, # noqa: E501
0x420100d8: {'reg': Register.INVERTER_TEMP, 'fmt': '!H', 'eval': 'result-40'}, # noqa: E501
# 0x420100d8: {'reg': Register.INVERTER_TEMP, 'fmt': '!H'}, # noqa: E501
0x420100d8: {'reg': Register.INVERTER_TEMP, 'fmt': '!H', 'offset': -40}, # noqa: E501
# 0x420100da
0x420100dc: {'reg': Register.RATED_POWER, 'fmt': '!H', 'ratio': 1}, # noqa: E501
0x420100de: {'reg': Register.OUTPUT_POWER, 'fmt': '!H', 'ratio': 0.1}, # noqa: E501
0x420100e0: {'reg': Register.PV1_VOLTAGE, 'fmt': '!H', 'ratio': 0.1}, # noqa: E501
@@ -58,16 +77,44 @@ class RegisterMap:
0x4201010c: {'reg': Register.PV3_TOTAL_GENERATION, 'fmt': '!L', 'ratio': 0.01}, # noqa: E501
0x42010110: {'reg': Register.PV4_DAILY_GENERATION, 'fmt': '!H', 'ratio': 0.01}, # noqa: E501
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
0x42010116: {'reg': Register.INV_UNKNOWN_1, 'fmt': '!H'}, # noqa: E501
# Start MODBUS Block: 0x2000 (R/W Config Paramaneters)
0x42010118: {'reg': Register.BOOT_STATUS, 'fmt': '!H'},
0x4201011a: {'reg': Register.DSP_STATUS, 'fmt': '!H'},
0x4201011c: {'reg': None, 'fmt': '!H', 'const': 1}, # noqa: E501
0x4201011e: {'reg': Register.WORK_MODE, 'fmt': '!H'},
0x42010124: {'reg': Register.OUTPUT_SHUTDOWN, 'fmt': '!H'},
0x42010126: {'reg': Register.MAX_DESIGNED_POWER, 'fmt': '!H'},
0x42010128: {'reg': Register.RATED_LEVEL, 'fmt': '!H'},
0x4201012a: {'reg': Register.INPUT_COEFFICIENT, 'fmt': '!H', 'ratio': 100/1024}, # noqa: E501
0x4201012c: {'reg': Register.GRID_VOLT_CAL_COEF, 'fmt': '!H'},
0x4201012e: {'reg': None, 'fmt': '!H', 'const': 1024}, # noqa: E501
0x42010130: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (1024, 1, 0xffff, 1)}, # noqa: E501
0x42010138: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (6, 0x68, 0x68, 0x500)}, # noqa: E501
0x42010140: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x9cd, 0x7b6, 0x139c, 0x1324)}, # noqa: E501
0x42010148: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (1, 0x7ae, 0x40f, 0x41)}, # noqa: E501
0x42010150: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0xf, 0xa64, 0xa64, 0x6)}, # noqa: E501
0x42010158: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x6, 0x9f6, 0x128c, 0x128c)}, # noqa: E501
0x42010160: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x10, 0x10, 0x1452, 0x1452)}, # noqa: E501
0x42010168: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x10, 0x10, 0x151, 0x5)}, # noqa: E501
0x42010170: {'reg': Register.OUTPUT_COEFFICIENT, 'fmt': '!H', 'ratio': 100/1024}, # noqa: E501
0x42010172: {'reg': None, 'fmt': FMT_3_16BIT_VAL, 'const': (0x1, 0x139c, 0xfa0)}, # noqa: E501
0x42010178: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x4e, 0x66, 0x3e8, 0x400)}, # noqa: E501
0x42010180: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x9ce, 0x7a8, 0x139c, 0x1326)}, # noqa: E501
0x42010188: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x0, 0x0, 0x0, 0)}, # noqa: E501
0x42010190: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0x0, 0x0, 1024, 1024)}, # noqa: E501
0x42010198: {'reg': None, 'fmt': FMT_4_16BIT_VAL, 'const': (0, 0, 0xffff, 0)}, # noqa: E501
0x420101a0: {'reg': None, 'fmt': FMT_2_16BIT_VAL, 'const': (0x0, 0x0)}, # noqa: E501
0xffffff02: {'reg': Register.POLLING_INTERVAL},
# 0x4281001c: {'reg': Register.POWER_ON_TIME, 'fmt': '<H', 'ratio': 1}, # noqa: E501
}
class InfosG3P(Infos):
__slots__ = ('client_mode', )
def __init__(self, client_mode: bool):
super().__init__()
self.client_mode = client_mode
@@ -121,7 +168,7 @@ class InfosG3P(Infos):
if not isinstance(row, dict):
continue
info_id = row['reg']
result = self.__get_value(buf, addr, row)
result = Fmt.get_value(buf, addr, row)
keys, level, unit, must_incr = self._key_obj(info_id)
@@ -136,15 +183,22 @@ class InfosG3P(Infos):
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
def build(self, len, msg_type: int, rcv_ftype: int):
buf = bytearray(len)
for idx, row in RegisterMap.map.items():
addr = idx & 0xffff
ftype = (idx >> 16) & 0xff
mtype = (idx >> 24) & 0xff
if ftype != rcv_ftype or mtype != msg_type:
continue
if not isinstance(row, dict):
continue
if 'const' in row:
val = row['const']
else:
info_id = row['reg']
val = self.get_db_value(info_id)
if not val:
continue
Fmt.set_value(buf, addr, row, val)
return buf

View File

@@ -3,13 +3,18 @@ from asyncio import StreamReader, StreamWriter
if __name__ == "app.src.gen3plus.inverter_g3p":
from app.src.inverter_base import InverterBase
from app.src.gen3plus.solarman_v5 import SolarmanV5
from app.src.gen3plus.solarman_emu import SolarmanEmu
else: # pragma: no cover
from inverter_base import InverterBase
from gen3plus.solarman_v5 import SolarmanV5
from gen3plus.solarman_emu import SolarmanEmu
class InverterG3P(InverterBase):
def __init__(self, reader: StreamReader, writer: StreamWriter,
client_mode: bool = False):
remote_prot = None
if client_mode:
remote_prot = SolarmanEmu
super().__init__(reader, writer, 'solarman',
SolarmanV5, client_mode)
SolarmanV5, client_mode, remote_prot)

View File

@@ -0,0 +1,144 @@
import logging
import struct
if __name__ == "app.src.gen3plus.solarman_emu":
from app.src.async_ifc import AsyncIfc
from app.src.gen3plus.solarman_v5 import SolarmanBase
from app.src.my_timer import Timer
from app.src.infos import Register
else: # pragma: no cover
from async_ifc import AsyncIfc
from gen3plus.solarman_v5 import SolarmanBase
from my_timer import Timer
from infos import Register
logger = logging.getLogger('msg')
class SolarmanEmu(SolarmanBase):
def __init__(self, addr, ifc: "AsyncIfc",
server_side: bool, client_mode: bool):
super().__init__(addr, ifc, server_side=False,
_send_modbus_cb=None,
mb_timeout=8)
logging.debug('SolarmanEmu.init()')
self.db = ifc.remote.stream.db
self.snr = ifc.remote.stream.snr
self.hb_timeout = 60
'''actual heatbeat timeout from the last response message'''
self.data_up_inv = self.db.get_db_value(Register.DATA_UP_INTERVAL)
'''time interval for getting new MQTT data messages'''
self.hb_timer = Timer(self.send_heartbeat_cb, self.node_id)
self.data_timer = Timer(self.send_data_cb, self.node_id)
self.last_sync = self._emu_timestamp()
'''timestamp when we send the last sync message (4110)'''
self.pkt_cnt = 0
'''last sent packet number'''
self.switch = {
0x4210: 'msg_data_ind', # real time data
0x1210: self.msg_response, # at least every 5 minutes
0x4710: 'msg_hbeat_ind', # heatbeat
0x1710: self.msg_response, # every 2 minutes
0x4110: 'msg_dev_ind', # device data, sync start
0x1110: self.msg_response, # every 3 hours
}
self.log_lvl = {
0x4110: logging.INFO, # device data, sync start
0x1110: logging.INFO, # every 3 hours
0x4210: logging.INFO, # real time data
0x1210: logging.INFO, # at least every 5 minutes
0x4710: logging.DEBUG, # heatbeat
0x1710: logging.DEBUG, # every 2 minutes
}
'''
Our puplic methods
'''
def close(self) -> None:
logging.info('SolarmanEmu.close()')
# we have references to methods of this class in self.switch
# so we have to erase self.switch, otherwise this instance can't be
# deallocated by the garbage collector ==> we get a memory leak
self.switch.clear()
self.log_lvl.clear()
self.hb_timer.close()
self.data_timer.close()
self.db = None
super().close()
def _set_serial_no(self, snr: int):
logging.debug(f'SolarmanEmu._set_serial_no, snr: {snr}')
self.unique_id = str(snr)
def _init_new_client_conn(self) -> bool:
logging.debug('SolarmanEmu.init_new()')
self.data_timer.start(self.data_up_inv)
return False
def next_pkt_cnt(self):
'''get the next packet number'''
self.pkt_cnt = (self.pkt_cnt + 1) & 0xffffffff
return self.pkt_cnt
def seconds_since_last_sync(self):
'''get seconds since last 0x4110 message was sent'''
return self._emu_timestamp() - self.last_sync
def send_heartbeat_cb(self, exp_cnt):
'''send a heartbeat to the TSUN cloud'''
self._build_header(0x4710)
self.ifc.tx_add(struct.pack('<B', 0))
self._finish_send_msg()
log_lvl = self.log_lvl.get(0x4710, logging.WARNING)
self.ifc.tx_log(log_lvl, 'Send heartbeat:')
self.ifc.tx_flush()
def send_data_cb(self, exp_cnt):
'''send a inverter data message to the TSUN cloud'''
self.hb_timer.start(self.hb_timeout)
self.data_timer.start(self.data_up_inv)
_len = 420
ftype = 1
build_msg = self.db.build(_len, 0x42, ftype)
self._build_header(0x4210)
self.ifc.tx_add(
struct.pack(
'<BHLLLHL', ftype, 0x02b0,
self._emu_timestamp(),
self.seconds_since_last_sync(),
self.time_ofs,
1, # offset 0x1a
self.next_pkt_cnt()))
self.ifc.tx_add(build_msg[0x20:])
self._finish_send_msg()
log_lvl = self.log_lvl.get(0x4210, logging.WARNING)
self.ifc.tx_log(log_lvl, 'Send inv-data:')
self.ifc.tx_flush()
'''
Message handler methods
'''
def msg_response(self):
'''handle a received response from the TSUN cloud'''
logger.debug("EMU received rsp:")
_, _, ts, hb = super().msg_response()
logger.debug(f"EMU ts:{ts} hb:{hb}")
self.hb_timeout = hb
self.time_ofs = ts - self._emu_timestamp()
self.hb_timer.start(self.hb_timeout)
def msg_unknown(self):
'''counts a unknown or unexpected message from the TSUN cloud'''
logger.warning(f"EMU Unknow Msg: ID:{int(self.control):#04x}")
self.inc_counter('Unknown_Msg')

View File

@@ -8,18 +8,16 @@ 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
from app.src.config import Config
from app.src.gen3plus.infos_g3p import InfosG3P
from app.src.infos import Register
from app.src.infos import Register, Fmt
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
from my_timer import Timer
from gen3plus.infos_g3p import InfosG3P
from infos import Register
from infos import Register, Fmt
logger = logging.getLogger('msg')
@@ -50,38 +48,228 @@ class Sequence():
return f'{self.rcv_idx:02x}:{self.snd_idx:02x}'
class SolarmanV5(Message):
class SolarmanBase(Message):
def __init__(self, addr, ifc: "AsyncIfc", server_side: bool,
_send_modbus_cb, mb_timeout: int):
super().__init__('G3P', ifc, server_side, _send_modbus_cb,
mb_timeout)
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.conn_no = ifc.get_conn_no()
self.header_len = 11 # overwrite construcor in class Message
self.control = 0
self.seq = Sequence(server_side)
self.snr = 0
self.time_ofs = 0
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.ifc.rx_peek(),
self.ifc.rx_len())
if self.header_valid and self.ifc.rx_len() >= \
(self.header_len + self.data_len+2):
self.__process_complete_received_msg()
self.__flush_recv_msg()
else:
return 0 # wait 0s before sending a response
'''
Our public methods
'''
def _flow_str(self, server_side: bool, type: str): # noqa: F821
switch = {
'rx': ' <',
'tx': ' >',
'forwrd': '<< ',
'drop': ' xx',
'rxS': '> ',
'txS': '< ',
'forwrdS': ' >>',
'dropS': 'xx ',
}
if server_side:
type += 'S'
return switch.get(type, '???')
def get_fnc_handler(self, ctrl):
fnc = self.switch.get(ctrl, self.msg_unknown)
if callable(fnc):
return fnc, repr(fnc.__name__)
else:
return self.msg_unknown, repr(fnc)
def _build_header(self, ctrl) -> None:
'''build header for new transmit message'''
self.send_msg_ofs = self.ifc.tx_len()
self.ifc.tx_add(struct.pack(
'<BHHHL', 0xA5, 0, ctrl, self.seq.get_send(), self.snr))
_fnc, _str = self.get_fnc_handler(ctrl)
logger.info(self._flow_str(self.server_side, 'tx') +
f' Ctl: {int(ctrl):#04x} Msg: {_str}')
def _finish_send_msg(self) -> None:
'''finish the transmit message, set lenght and checksum'''
_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 _timestamp(self):
# utc as epoche
return int(time.time()) # pragma: no cover
def _emu_timestamp(self):
'''timestamp for an emulated inverter (realtime - 1 day)'''
one_day = 24*60*60
return self._timestamp()-one_day
'''
Our private methods
'''
def __update_header(self, _forward_buffer):
'''update header for message before forwarding,
set sequence and checksum'''
_len = len(_forward_buffer)
ofs = 0
while ofs < _len:
result = struct.unpack_from('<BH', _forward_buffer, ofs)
data_len = result[1] # len of variable id string
struct.pack_into('<H', _forward_buffer, ofs+5,
self.seq.get_send())
check = sum(_forward_buffer[ofs+1:ofs+data_len+11]) & 0xff
struct.pack_into('<B', _forward_buffer, ofs+data_len+11, check)
ofs += (13 + data_len)
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 __parse_header(self, buf: bytes, buf_len: int) -> None:
if (buf_len < self.header_len): # enough bytes for complete header?
return
result = struct.unpack_from('<BHHHL', buf, 0)
# store parsed header values in the class
start = result[0] # start byte
self.data_len = result[1] # len of variable id string
self.control = result[2]
self.seq.set_recv(result[3])
self.snr = result[4]
if start != 0xA5:
hex_dump_memory(logging.ERROR,
'Drop packet w invalid start byte from'
f' {self.addr}:', buf, buf_len)
self.inc_counter('Invalid_Msg_Format')
# erase broken recv buffer
self.ifc.rx_clear()
return
self.header_valid = True
def __trailer_is_ok(self, buf: bytes, buf_len: int) -> bool:
crc = buf[self.data_len+11]
stop = buf[self.data_len+12]
if stop != 0x15:
hex_dump_memory(logging.ERROR,
'Drop packet w invalid stop byte from '
f'{self.addr}:', buf, buf_len)
self.inc_counter('Invalid_Msg_Format')
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.ifc.rx_clear()
return False
check = sum(buf[1:buf_len-2]) & 0xff
if check != crc:
self.inc_counter('Invalid_Msg_Format')
logger.debug(f'CRC {int(crc):#02x} {int(check):#08x}'
f' Stop:{int(stop):#02x}')
# start & stop byte are valid, discard only this message
return False
return True
def __flush_recv_msg(self) -> None:
self.ifc.rx_get(self.header_len + self.data_len+2)
self.header_valid = False
def __dispatch_msg(self) -> None:
_fnc, _str = self.get_fnc_handler(self.control)
if self.unique_id:
logger.info(self._flow_str(self.server_side, 'rx') +
f' Ctl: {int(self.control):#04x}' +
f' Msg: {_str}')
_fnc()
else:
logger.info(self._flow_str(self.server_side, 'drop') +
f' Ctl: {int(self.control):#04x}' +
f' Msg: {_str}')
'''
Message handler methods
'''
def msg_response(self):
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
ts = result[2]
set_hb = result[3] # always 60 or 120
logger.debug(f'ftype:{ftype} accepted:{valid}'
f' ts:{ts:08x} nextHeartbeat: {set_hb}s')
dt = datetime.fromtimestamp(ts)
logger.debug(f'ts: {dt.strftime("%Y-%m-%d %H:%M:%S")}')
return ftype, valid, ts, set_hb
class SolarmanV5(SolarmanBase):
AT_CMD = 1
MB_RTU_CMD = 2
MB_START_TIMEOUT = 40
'''start delay for Modbus polling in server mode'''
MB_REGULAR_TIMEOUT = 60
'''regular Modbus polling time in server mode'''
MB_CLIENT_DATA_UP = 30
MB_CLIENT_DATA_UP = 10
'''Data up time in client mode'''
HDR_FMT = '<BLLL'
'''format string for packing of the header'''
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)
super().__init__(addr, ifc, server_side, self.send_modbus_cb,
mb_timeout=8)
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)
self.snr = 0
self.db = InfosG3P(client_mode)
self.time_ofs = 0
self.forward_at_cmd_resp = False
self.no_forwarding = False
'''not allowed to connect to TSUN cloud by connection type'''
self.establish_inv_emu = False
'''create an Solarman EMU instance to send data to the TSUN cloud'''
self.switch = {
0x4210: self.msg_data_ind, # real time data
@@ -136,62 +324,68 @@ class SolarmanV5(Message):
0x4510: logging.INFO, # from server
0x1510: self.get_cmd_rsp_log_lvl,
}
self.modbus_elms = 0 # for unit tests
g3p_cnf = Config.get('gen3plus')
if 'at_acl' in g3p_cnf: # pragma: no cover
self.at_acl = g3p_cnf['at_acl']
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_first_timeout = self.MB_START_TIMEOUT
'''timer value for next Modbus polling request'''
self.modbus_polling = False
self.sensor_list = 0x0000
self.mb_start_reg = 0x0001 # 0x7001
self.mb_incr_reg = 0x100 # 4
self.mb_inv_no = 144 # 3
self.mb_scan_len = 4
'''
Our puplic methods
'''
def close(self) -> None:
logging.debug('Solarman.close()')
if self.server_side:
# set inverter state to offline, if output power is very low
logging.debug('close power: '
f'{self.db.get_db_value(Register.OUTPUT_POWER, -1)}')
if self.db.get_db_value(Register.OUTPUT_POWER, 999) < 2:
self.db.set_db_def_value(Register.INVERTER_STATUS, 0)
self.new_data['env'] = True
# we have references to methods of this class in self.switch
# so we have to erase self.switch, otherwise this instance can't be
# deallocated by the garbage collector ==> we get a memory leak
self.switch.clear()
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,
forward: bool,
start_timeout=MB_CLIENT_DATA_UP):
self.no_forwarding = True
self.establish_inv_emu = forward
self.snr = snr
self.__set_serial_no(snr)
self._set_serial_no(snr)
self.mb_timeout = start_timeout
self.db.set_db_def_value(Register.IP_ADDRESS, host)
self.db.set_db_def_value(Register.POLLING_INTERVAL,
self.mb_timeout)
self.db.set_db_def_value(Register.DATA_UP_INTERVAL,
300)
self.db.set_db_def_value(Register.COLLECT_INTERVAL,
1)
self.db.set_db_def_value(Register.HEARTBEAT_INTERVAL,
120)
self.db.set_db_def_value(Register.SENSOR_LIST,
Fmt.hex4((self.sensor_list, )))
self.new_data['controller'] = True
self.state = State.up
self._send_modbus_cmd(Modbus.READ_REGS, 0x3000, 48, logging.DEBUG)
# self.__build_header(0x1710)
# self.ifc.write += struct.pack('<B', 0)
# self.__finish_send_msg()
# hex_dump_memory(logging.INFO, f'Send StartCmd:{self.addr}:',
# self.ifc.write, len(self.ifc.write))
# self.writer.write(self.ifc.write)
# self.ifc.write = bytearray(0) # self.ifc.write[sent:]
if self.sensor_list != 0x02b0:
self._send_modbus_cmd(self.mb_inv_no, Modbus.READ_REGS,
self.mb_start_reg, self.mb_scan_len,
logging.INFO)
else:
self.mb_inv_no = Modbus.INV_ADDR
self._send_modbus_cmd(self.mb_inv_no, Modbus.READ_REGS, 0x3000,
48, logging.DEBUG)
self.mb_timer.start(self.mb_timeout)
def new_state_up(self):
@@ -202,14 +396,25 @@ class SolarmanV5(Message):
self.db.set_db_def_value(Register.POLLING_INTERVAL,
self.mb_timeout)
def establish_emu(self):
_len = 223
build_msg = self.db.build(_len, 0x41, 2)
struct.pack_into(
'<BHHHLBL', build_msg, 0, 0xA5, _len-11, 0x4110,
0, self.snr, 2, self._emu_timestamp())
self.ifc.fwd_add(build_msg)
self.ifc.fwd_add(struct.pack('<BB', 0, 0x15)) # crc & stop
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']
if self.mb:
self.mb.set_node_id(self.node_id)
def __set_serial_no(self, snr: int):
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:
@@ -226,7 +431,8 @@ class SolarmanV5(Message):
self.db.set_pv_module_details(inv)
logger.debug(f'SerialNo {serial_no} allowed! area:{self.sug_area}') # noqa: E501
self.db.set_db_def_value(Register.COLLECTOR_SNR, key)
self.db.set_db_def_value(Register.COLLECTOR_SNR, snr)
self.db.set_db_def_value(Register.SERIAL_NUMBER, key)
break
else:
self.node_id = ''
@@ -240,35 +446,6 @@ class SolarmanV5(Message):
self.unique_id = 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.ifc.rx_peek(),
self.ifc.rx_len())
if self.header_valid and self.ifc.rx_len() >= \
(self.header_len + self.data_len+2):
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:
@@ -278,179 +455,62 @@ class SolarmanV5(Message):
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') +
_, _str = self.get_fnc_handler(self.control)
logger.info(self._flow_str(self.server_side, 'forwrd') +
f' Ctl: {int(self.control):#04x}'
f' Msg: {fnc.__name__!r}')
f' Msg: {_str}')
def _init_new_client_conn(self) -> bool:
return False
'''
Our private methods
'''
def __flow_str(self, server_side: bool, type: str): # noqa: F821
switch = {
'rx': ' <',
'tx': ' >',
'forwrd': '<< ',
'drop': ' xx',
'rxS': '> ',
'txS': '< ',
'forwrdS': ' >>',
'dropS': 'xx ',
}
if server_side:
type += 'S'
return switch.get(type, '???')
def _timestamp(self):
# utc as epoche
return int(time.time()) # pragma: no cover
def _heartbeat(self) -> int:
return 60 # pragma: no cover
def __parse_header(self, buf: bytes, buf_len: int) -> None:
if (buf_len < self.header_len): # enough bytes for complete header?
return
result = struct.unpack_from('<BHHHL', buf, 0)
# store parsed header values in the class
start = result[0] # start byte
self.data_len = result[1] # len of variable id string
self.control = result[2]
self.seq.set_recv(result[3])
self.snr = result[4]
if start != 0xA5:
hex_dump_memory(logging.ERROR,
'Drop packet w invalid start byte from'
f' {self.addr}:', buf, buf_len)
self.inc_counter('Invalid_Msg_Format')
# erase broken recv buffer
self.ifc.rx_clear()
return
self.header_valid = True
def __trailer_is_ok(self, buf: bytes, buf_len: int) -> bool:
crc = buf[self.data_len+11]
stop = buf[self.data_len+12]
if stop != 0x15:
hex_dump_memory(logging.ERROR,
'Drop packet w invalid stop byte from '
f'{self.addr}:', buf, buf_len)
self.inc_counter('Invalid_Msg_Format')
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.ifc.rx_clear()
return False
check = sum(buf[1:buf_len-2]) & 0xff
if check != crc:
self.inc_counter('Invalid_Msg_Format')
logger.debug(f'CRC {int(crc):#02x} {int(check):#08x}'
f' Stop:{int(stop):#02x}')
# start & stop byte are valid, discard only this message
return False
return True
def __build_header(self, ctrl) -> None:
'''build header for new transmit message'''
self.send_msg_ofs = self.ifc.tx_len()
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 = 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,
set sequence and checksum'''
_len = len(_forward_buffer)
ofs = 0
while ofs < _len:
result = struct.unpack_from('<BH', _forward_buffer, ofs)
data_len = result[1] # len of variable id string
struct.pack_into('<H', _forward_buffer, ofs+5,
self.seq.get_send())
check = sum(_forward_buffer[ofs+1:ofs+data_len+11]) & 0xff
struct.pack_into('<B', _forward_buffer, ofs+data_len+11, check)
ofs += (13 + data_len)
def __dispatch_msg(self) -> None:
fnc = self.switch.get(self.control, self.msg_unknown)
if self.unique_id:
logger.info(self.__flow_str(self.server_side, 'rx') +
f' Ctl: {int(self.control):#04x}' +
f' Msg: {fnc.__name__!r}')
fnc()
else:
logger.info(self.__flow_str(self.server_side, 'drop') +
f' Ctl: {int(self.control):#04x}' +
f' Msg: {fnc.__name__!r}')
def __flush_recv_msg(self) -> None:
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._build_header(msgtype)
self.ifc.tx_add(struct.pack('<BBLL', ftype, ack,
self._timestamp(),
self._heartbeat()))
self.__finish_send_msg()
self._finish_send_msg()
def send_modbus_cb(self, pdu: bytearray, log_lvl: int, state: str):
if self.state != State.up:
logger.warning(f'[{self.node_id}] ignore MODBUS cmd,'
' cause the state is not UP anymore')
return
self.__build_header(0x4510)
self._build_header(0x4510)
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()
self._finish_send_msg()
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:
logger.log(log_lvl, f'[{self.node_id}] ignore MODBUS cmd,'
' as the state is not UP')
return
self.mb.build_msg(Modbus.INV_ADDR, func, addr, val, log_lvl)
async def send_modbus_cmd(self, func, addr, val, log_lvl) -> None:
self._send_modbus_cmd(func, addr, val, log_lvl)
def mb_timout_cb(self, exp_cnt):
self.mb_timer.start(self.mb_timeout)
if self.sensor_list != 0x02b0:
self.mb_start_reg += self.mb_incr_reg
if self.mb_start_reg > 0xffff:
self.mb_start_reg = self.mb_start_reg & 0xffff
self.mb_inv_no += 1
logging.info(f"Next Round: inv:{self.mb_inv_no}"
f" reg:{self.mb_start_reg:04x}")
if (self.mb_start_reg & 0xfffc) % 0x80 == 0:
logging.info(f"Scan info: inv:{self.mb_inv_no}"
f" reg:{self.mb_start_reg:04x}")
self._send_modbus_cmd(self.mb_inv_no, Modbus.READ_REGS,
self.mb_start_reg, self.mb_scan_len,
logging.INFO)
else:
self._send_modbus_cmd(Modbus.INV_ADDR, Modbus.READ_REGS, 0x3000,
48, logging.DEBUG)
self._send_modbus_cmd(Modbus.READ_REGS, 0x3000, 48, logging.DEBUG)
if 1 == (exp_cnt % 30):
# logging.info("Regular Modbus Status request")
self._send_modbus_cmd(Modbus.READ_REGS, 0x2000, 96, logging.DEBUG)
if 1 == (exp_cnt % 30):
# logging.info("Regular Modbus Status request")
self._send_modbus_cmd(Modbus.INV_ADDR, Modbus.READ_REGS,
0x5000, 8, logging.DEBUG)
self._send_modbus_cmd(Modbus.INV_ADDR, Modbus.READ_REGS,
0x2000, 96, logging.DEBUG)
def at_cmd_forbidden(self, cmd: str, connection: str) -> bool:
return not cmd.startswith(tuple(self.at_acl[connection]['allow'])) or \
@@ -472,11 +532,11 @@ class SolarmanV5(Message):
return
self.forward_at_cmd_resp = False
self.__build_header(0x4510)
self._build_header(0x4510)
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._finish_send_msg()
self.ifc.tx_log(logging.INFO, 'Send AT Command:')
try:
self.ifc.tx_flush()
@@ -643,6 +703,18 @@ class SolarmanV5(Message):
return
self.__forward_msg()
def __parse_modbus_rsp(self, data):
inv_update = False
self.modbus_elms = 0
for key, update, _ in self.mb.recv_resp(self.db, data[14:]):
self.modbus_elms += 1
if update:
if key == 'inverter':
inv_update = True
self._set_mqtt_timestamp(key, self._timestamp())
self.new_data[key] = True
return inv_update
def __modbus_command_rsp(self, data):
'''precess MODBUS RTU response'''
valid = data[1]
@@ -650,10 +722,16 @@ class SolarmanV5(Message):
# 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
inv_update = self.__parse_modbus_rsp(data)
self.modbus_elms = 0
for key, update, _ in self.mb.recv_resp(self.db, data[14:],
self.node_id):
if (self.sensor_list != 0x02b0 and data[15] != 0):
logging.info('Valid MODBUS data '
f'(inv:{self.mb_inv_no} '
f'reg: 0x{self.mb.last_reg:04x}):')
hex_dump_memory(logging.INFO, 'Valid MODBUS data '
f'(reg: 0x{self.mb.last_reg:04x}):',
data[14:], modbus_msg_len)
for key, update, _ in self.mb.recv_resp(self.db, data[14:]):
self.modbus_elms += 1
if update:
if key == 'inverter':
@@ -663,6 +741,9 @@ class SolarmanV5(Message):
if inv_update:
self.__build_model_name()
if self.establish_inv_emu and not self.ifc.remote.stream:
self.establish_emu()
def msg_hbeat_ind(self):
data = self.ifc.rx_peek()[self.header_len:]
result = struct.unpack_from('<B', data, 0)
@@ -684,16 +765,3 @@ class SolarmanV5(Message):
self.__forward_msg()
self.__send_ack_rsp(0x1810, ftype)
def msg_response(self):
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
ts = result[2]
set_hb = result[3] # always 60 or 120
logger.debug(f'ftype:{ftype} accepted:{valid}'
f' ts:{ts:08x} nextHeartbeat: {set_hb}s')
dt = datetime.fromtimestamp(ts)
logger.debug(f'ts: {dt.strftime("%Y-%m-%d %H:%M:%S")}')

View File

@@ -1,5 +1,6 @@
import logging
import json
import struct
import os
from enum import Enum
from typing import Generator
@@ -25,7 +26,10 @@ class Register(Enum):
EQUIPMENT_MODEL = 24
NO_INPUTS = 25
MAX_DESIGNED_POWER = 26
OUTPUT_COEFFICIENT = 27
RATED_LEVEL = 27
INPUT_COEFFICIENT = 28
GRID_VOLT_CAL_COEF = 29
OUTPUT_COEFFICIENT = 30
INVERTER_CNT = 50
UNKNOWN_SNR = 51
UNKNOWN_MSG = 52
@@ -38,10 +42,13 @@ class Register(Enum):
AT_COMMAND = 59
MODBUS_COMMAND = 60
AT_COMMAND_BLOCKED = 61
CLOUD_CONN_CNT = 62
OUTPUT_POWER = 83
RATED_POWER = 84
INVERTER_TEMP = 85
INVERTER_STATUS = 86
DETECT_STATUS_1 = 87
DETECT_STATUS_2 = 88
PV1_VOLTAGE = 100
PV1_CURRENT = 101
PV1_POWER = 102
@@ -84,6 +91,12 @@ class Register(Enum):
PV5_TOTAL_GENERATION = 241
PV6_DAILY_GENERATION = 250
PV6_TOTAL_GENERATION = 251
INV_UNKNOWN_1 = 252
BOOT_STATUS = 253
DSP_STATUS = 254
WORK_MODE = 255
OUTPUT_SHUTDOWN = 256
GRID_VOLTAGE = 300
GRID_CURRENT = 301
GRID_FREQUENCY = 302
@@ -99,22 +112,11 @@ class Register(Enum):
IP_ADDRESS = 407
POLLING_INTERVAL = 408
SENSOR_LIST = 409
EVENT_401 = 500
EVENT_402 = 501
EVENT_403 = 502
EVENT_404 = 503
EVENT_405 = 504
EVENT_406 = 505
EVENT_407 = 506
EVENT_408 = 507
EVENT_409 = 508
EVENT_410 = 509
EVENT_411 = 510
EVENT_412 = 511
EVENT_413 = 512
EVENT_414 = 513
EVENT_415 = 514
EVENT_416 = 515
SSID = 410
EVENT_ALARM = 500
EVENT_FAULT = 501
EVENT_BF1 = 502
EVENT_BF2 = 503
TS_INPUT = 600
TS_GRID = 601
TS_TOTAL = 602
@@ -123,6 +125,76 @@ class Register(Enum):
TEST_REG2 = 10001
class Fmt:
@staticmethod
def get_value(buf: bytes, idx: int, row: dict):
'''Get a value from buf and interpret as in row defined'''
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 'func' in row:
result = row['func'](res)
if 'ratio' in row:
result = round(result * row['ratio'], 2)
if 'quotient' in row:
result = round(result/row['quotient'])
if 'offset' in row:
result = result + row['offset']
return result
@staticmethod
def hex4(val: tuple | str, reverse=False) -> str | int:
if not reverse:
return f'{val[0]:04x}'
else:
return int(val, 16)
@staticmethod
def mac(val: tuple | str, reverse=False) -> str | tuple:
if not reverse:
return "%02x:%02x:%02x:%02x:%02x:%02x" % val
else:
return (
int(val[0:2], 16), int(val[3:5], 16),
int(val[6:8], 16), int(val[9:11], 16),
int(val[12:14], 16), int(val[15:], 16))
@staticmethod
def version(val: tuple | str, reverse=False) -> str | int:
if not reverse:
x = val[0]
return f'V{(x >> 12)}.{(x >> 8) & 0xf}' \
f'.{(x >> 4) & 0xf}{x & 0xf:1X}'
else:
arr = val[1:].split('.')
return int(arr[0], 10) << 12 | \
int(arr[1], 10) << 8 | \
int(arr[2][:-1], 10) << 4 | \
int(arr[2][-1:], 16)
@staticmethod
def set_value(buf: bytearray, idx: int, row: dict, val):
'''Get a value from buf and interpret as in row defined'''
fmt = row['fmt']
if 'offset' in row:
val = val - row['offset']
if 'quotient' in row:
val = round(val * row['quotient'])
if 'ratio' in row:
val = round(val / row['ratio'])
if 'func' in row:
val = row['func'](val, reverse=True)
if isinstance(val, str):
val = bytes(val, 'UTF8')
if isinstance(val, tuple):
struct.pack_into(fmt, buf, idx, *val)
else:
struct.pack_into(fmt, buf, idx, val)
class ClrAtMidnight:
__clr_at_midnight = [Register.PV1_DAILY_GENERATION, Register.PV2_DAILY_GENERATION, Register.PV3_DAILY_GENERATION, Register.PV4_DAILY_GENERATION, Register.PV5_DAILY_GENERATION, Register.PV6_DAILY_GENERATION, Register.DAILY_GENERATION] # noqa: E501
db = {}
@@ -152,6 +224,8 @@ class ClrAtMidnight:
class Infos:
__slots__ = ('db', 'tracer', )
LIGHTNING = 'mdi:lightning-bolt'
COUNTER = 'mdi:counter'
GAUGE = 'mdi:gauge'
@@ -201,6 +275,7 @@ class Infos:
}
__comm_type_val_tpl = "{%set com_types = ['n/a','Wi-Fi', 'G4', 'G5', 'GPRS'] %}{{com_types[value_json['Communication_Type']|int(0)]|default(value_json['Communication_Type'])}}" # noqa: E501
__work_mode_val_tpl = "{%set mode = ['Normal-Mode', 'Aging-Mode', 'ATE-Mode', 'Shielding GFDI', 'DTU-Mode'] %}{{mode[value_json['Work_Mode']|int(0)]|default(value_json['Work_Mode'])}}" # noqa: E501
__status_type_val_tpl = "{%set inv_status = ['Off-line', 'On-grid', 'Off-grid'] %}{{inv_status[value_json['Inverter_Status']|int(0)]|default(value_json['Inverter_Status'])}}" # noqa: E501
__rated_power_val_tpl = "{% if 'Rated_Power' in value_json and value_json['Rated_Power'] != None %}{{value_json['Rated_Power']|string() +' W'}}{% else %}{{ this.state }}{% endif %}" # noqa: E501
__designed_power_val_tpl = '''
@@ -215,6 +290,100 @@ class Infos:
{{ this.state }}
{% endif %}
'''
__inv_alarm_val_tpl = '''
{% if 'Inverter_Alarm' in value_json and
value_json['Inverter_Alarm'] != None %}
{% set val_int = value_json['Inverter_Alarm'] | int %}
{% if val_int == 0 %}
{% set result = 'noAlarm'%}
{%else%}
{% set result = '' %}
{% if val_int | bitwise_and(1)%}{% set result = result + 'Bit1, '%}
{% endif %}
{% if val_int | bitwise_and(2)%}{% set result = result + 'Bit2, '%}
{% endif %}
{% if val_int | bitwise_and(3)%}{% set result = result + 'Bit3, '%}
{% endif %}
{% if val_int | bitwise_and(4)%}{% set result = result + 'Bit4, '%}
{% endif %}
{% if val_int | bitwise_and(5)%}{% set result = result + 'Bit5, '%}
{% endif %}
{% if val_int | bitwise_and(6)%}{% set result = result + 'Bit6, '%}
{% endif %}
{% if val_int | bitwise_and(7)%}{% set result = result + 'Bit7, '%}
{% endif %}
{% if val_int | bitwise_and(8)%}{% set result = result + 'Bit8, '%}
{% endif %}
{% if val_int | bitwise_and(9)%}{% set result = result + 'noUtility, '%}
{% endif %}
{% if val_int | bitwise_and(10)%}{% set result = result + 'Bit10, '%}
{% endif %}
{% if val_int | bitwise_and(11)%}{% set result = result + 'Bit11, '%}
{% endif %}
{% if val_int | bitwise_and(12)%}{% set result = result + 'Bit12, '%}
{% endif %}
{% if val_int | bitwise_and(13)%}{% set result = result + 'Bit13, '%}
{% endif %}
{% if val_int | bitwise_and(14)%}{% set result = result + 'Bit14, '%}
{% endif %}
{% if val_int | bitwise_and(15)%}{% set result = result + 'Bit15, '%}
{% endif %}
{% if val_int | bitwise_and(16)%}{% set result = result + 'Bit16, '%}
{% endif %}
{% endif %}
{{ result }}
{% else %}
{{ this.state }}
{% endif %}
'''
__inv_fault_val_tpl = '''
{% if 'Inverter_Fault' in value_json and
value_json['Inverter_Fault'] != None %}
{% set val_int = value_json['Inverter_Fault'] | int %}
{% if val_int == 0 %}
{% set result = 'noFault'%}
{%else%}
{% set result = '' %}
{% if val_int | bitwise_and(1)%}{% set result = result + 'Bit1, '%}
{% endif %}
{% if val_int | bitwise_and(2)%}{% set result = result + 'Bit2, '%}
{% endif %}
{% if val_int | bitwise_and(3)%}{% set result = result + 'Bit3, '%}
{% endif %}
{% if val_int | bitwise_and(4)%}{% set result = result + 'Bit4, '%}
{% endif %}
{% if val_int | bitwise_and(5)%}{% set result = result + 'Bit5, '%}
{% endif %}
{% if val_int | bitwise_and(6)%}{% set result = result + 'Bit6, '%}
{% endif %}
{% if val_int | bitwise_and(7)%}{% set result = result + 'Bit7, '%}
{% endif %}
{% if val_int | bitwise_and(8)%}{% set result = result + 'Bit8, '%}
{% endif %}
{% if val_int | bitwise_and(9)%}{% set result = result + 'Bit9, '%}
{% endif %}
{% if val_int | bitwise_and(10)%}{% set result = result + 'Bit10, '%}
{% endif %}
{% if val_int | bitwise_and(11)%}{% set result = result + 'Bit11, '%}
{% endif %}
{% if val_int | bitwise_and(12)%}{% set result = result + 'Bit12, '%}
{% endif %}
{% if val_int | bitwise_and(13)%}{% set result = result + 'Bit13, '%}
{% endif %}
{% if val_int | bitwise_and(14)%}{% set result = result + 'Bit14, '%}
{% endif %}
{% if val_int | bitwise_and(15)%}{% set result = result + 'Bit15, '%}
{% endif %}
{% if val_int | bitwise_and(16)%}{% set result = result + 'Bit16, '%}
{% endif %}
{% endif %}
{{ result }}
{% else %}
{{ this.state }}
{% endif %}
'''
__input_coef_val_tpl = "{% if 'Output_Coefficient' in value_json and value_json['Input_Coefficient'] != None %}{{value_json['Input_Coefficient']|string() +' %'}}{% else %}{{ this.state }}{% endif %}" # noqa: E501
__output_coef_val_tpl = "{% if 'Output_Coefficient' in value_json and value_json['Output_Coefficient'] != None %}{{value_json['Output_Coefficient']|string() +' %'}}{% else %}{{ this.state }}{% endif %}" # noqa: E501
__info_defs = {
@@ -237,6 +406,8 @@ class Infos:
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': 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.WORK_MODE: {'name': ['inverter', 'Work_Mode'], 'level': logging.DEBUG, 'unit': '', 'ha': {'dev': 'inverter', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'work_mode_', 'name': 'Work Mode', 'val_tpl': __work_mode_val_tpl, 'icon': 'mdi:power', 'ent_cat': 'diagnostic'}}, # noqa: E501
Register.INPUT_COEFFICIENT: {'name': ['inverter', 'Input_Coefficient'], 'level': logging.DEBUG, 'unit': '%', 'ha': {'dev': 'inverter', 'dev_cla': None, 'stat_cla': None, 'id': 'input_coef_', 'val_tpl': __input_coef_val_tpl, 'name': 'Input Coefficient', '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
@@ -250,9 +421,11 @@ class Infos:
Register.PV5_MODEL: {'name': ['inverter', 'PV5_Model'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.PV6_MANUFACTURER: {'name': ['inverter', 'PV6_Manufacturer'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.PV6_MODEL: {'name': ['inverter', 'PV6_Model'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.BOOT_STATUS: {'name': ['inverter', 'BOOT_STATUS'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.DSP_STATUS: {'name': ['inverter', 'DSP_STATUS'], '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': FMT_INT, 'name': 'Active Inverter Connections', 'icon': COUNTER}}, # noqa: E501
Register.CLOUD_CONN_CNT: {'name': ['proxy', 'Cloud_Conn_Cnt'], 'singleton': True, 'ha': {'dev': 'proxy', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'cloud_conn_count_', 'fmt': FMT_INT, 'name': 'Active Cloud 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
@@ -267,22 +440,12 @@ class Infos:
# 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
Register.EVENT_402: {'name': ['events', '402_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_403: {'name': ['events', '403_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_404: {'name': ['events', '404_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_405: {'name': ['events', '405_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_406: {'name': ['events', '406_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_407: {'name': ['events', '407_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_408: {'name': ['events', '408_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_409: {'name': ['events', '409_No_Utility'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_410: {'name': ['events', '410_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_411: {'name': ['events', '411_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_412: {'name': ['events', '412_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_413: {'name': ['events', '413_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_414: {'name': ['events', '414_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_415: {'name': ['events', '415_GridFreqOverRating'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_416: {'name': ['events', '416_'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.EVENT_ALARM: {'name': ['events', 'Inverter_Alarm'], 'level': logging.INFO, 'unit': '', 'ha': {'dev': 'inverter', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_alarm_', 'name': 'Inverter Alarm', 'val_tpl': __inv_alarm_val_tpl, 'icon': 'mdi:alarm-light'}}, # noqa: E501
Register.EVENT_FAULT: {'name': ['events', 'Inverter_Fault'], 'level': logging.INFO, 'unit': '', 'ha': {'dev': 'inverter', 'comp': 'sensor', 'dev_cla': None, 'stat_cla': None, 'id': 'inv_fault_', 'name': 'Inverter Fault', 'val_tpl': __inv_fault_val_tpl, 'icon': 'mdi:alarm-light'}}, # noqa: E501
Register.EVENT_BF1: {'name': ['events', 'Inverter_Bitfield_1'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
Register.EVENT_BF2: {'name': ['events', 'Inverter_bitfield_2'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
# Register.EVENT_409: {'name': ['events', '409_No_Utility'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
# Register.EVENT_415: {'name': ['events', '415_GridFreqOverRating'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
# grid measures:
Register.TS_GRID: {'name': ['grid', 'Timestamp'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
@@ -292,6 +455,8 @@ class Infos:
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
Register.DETECT_STATUS_1: {'name': ['env', 'Detect_Status_1'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.DETECT_STATUS_2: {'name': ['env', 'Detect_Status_2'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
# input measures:
Register.TS_INPUT: {'name': ['input', 'Timestamp'], 'level': logging.INFO, 'unit': ''}, # noqa: E501
@@ -341,6 +506,13 @@ class Infos:
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
Register.SSID: {'name': ['controller', 'WiFi_SSID'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.OUTPUT_SHUTDOWN: {'name': ['other', 'Output_Shutdown'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.RATED_LEVEL: {'name': ['other', 'Rated_Level'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.GRID_VOLT_CAL_COEF: {'name': ['other', 'Grid_Volt_Cal_Coef'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
Register.INV_UNKNOWN_1: {'name': ['inv_unknown', 'Unknown_1'], 'level': logging.DEBUG, 'unit': ''}, # noqa: E501
}
@property
@@ -650,6 +822,8 @@ class Infos:
def get_db_value(self, id: Register, not_found_result: any = None):
'''get database value'''
if id not in self.info_defs:
return not_found_result
row = self.info_defs[id]
if isinstance(row, dict):
keys = row['name']

View File

@@ -31,12 +31,16 @@ class InverterBase(InverterIfc, Proxy):
def __init__(self, reader: StreamReader, writer: StreamWriter,
config_id: str, prot_class,
client_mode: bool = False):
client_mode: bool = False,
remote_prot_class=None):
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
if remote_prot_class:
self.prot_class = remote_prot_class
else:
self.prot_class = prot_class
self.__ha_restarts = -1
self.remote = StreamPtr(None)
ifc = AsyncStreamServer(reader, writer,
@@ -45,7 +49,7 @@ class InverterBase(InverterIfc, Proxy):
self.remote)
self.local = StreamPtr(
self.prot_class(self.addr, ifc, True, client_mode), ifc
prot_class(self.addr, ifc, True, client_mode), ifc
)
def __enter__(self):

View File

@@ -5,13 +5,17 @@ from enum import Enum
if __name__ == "app.src.messages":
from app.src.async_ifc import AsyncIfc
from app.src.protocol_ifc import ProtocolIfc
from app.src.infos import Infos, Register
from app.src.modbus import Modbus
from app.src.my_timer import Timer
else: # pragma: no cover
from async_ifc import AsyncIfc
from protocol_ifc import ProtocolIfc
from infos import Infos, Register
from modbus import Modbus
from my_timer import Timer
logger = logging.getLogger('msg')
@@ -89,26 +93,38 @@ class Message(ProtocolIfc):
'''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'''
MB_START_TIMEOUT = 40
'''start delay for Modbus polling in server mode'''
MB_REGULAR_TIMEOUT = 20
'''regular Modbus polling time in server mode'''
def __init__(self, server_side: bool, send_modbus_cb:
Callable[[bytes, int, str], None], mb_timeout: int):
def __init__(self, node_id, ifc: "AsyncIfc", server_side: bool,
send_modbus_cb: Callable[[bytes, int, str], None],
mb_timeout: int):
self._registry.append(weakref.ref(self))
self.server_side = server_side
self.ifc = ifc
self.node_id = node_id
if server_side:
self.mb = Modbus(send_modbus_cb, mb_timeout)
self.mb_timer = Timer(self.mb_timout_cb, self.node_id)
else:
self.mb = None
self.mb_timer = None
self.header_valid = False
self.header_len = 0
self.data_len = 0
self.unique_id = 0
self._node_id = ''
self.sug_area = ''
self.new_data = {}
self.state = State.init
self.shutdown_started = False
self.modbus_elms = 0 # for unit tests
self.mb_timeout = self.MB_REGULAR_TIMEOUT
self.mb_first_timeout = self.MB_START_TIMEOUT
'''timer value for next Modbus polling request'''
self.modbus_polling = False
@property
def node_id(self):
@@ -152,10 +168,35 @@ class Message(ProtocolIfc):
to = self.MAX_DEF_IDLE_TIME
return to
def _send_modbus_cmd(self, mb_no, func, addr, val, log_lvl) -> None:
if self.state != State.up:
logger.log(log_lvl, f'[{self.node_id}] ignore MODBUS cmd,'
' as the state is not UP')
return
self.mb.build_msg(mb_no, func, addr, val, log_lvl)
async def send_modbus_cmd(self, func, addr, val, log_lvl) -> None:
self._send_modbus_cmd(Modbus.INV_ADDR, func, addr, val, log_lvl)
'''
Our puplic methods
'''
def close(self) -> None:
if self.server_side:
# set inverter state to offline, if output power is very low
logging.debug('close power: '
f'{self.db.get_db_value(Register.OUTPUT_POWER, -1)}')
if self.db.get_db_value(Register.OUTPUT_POWER, 999) < 2:
self.db.set_db_def_value(Register.INVERTER_STATUS, 0)
self.new_data['env'] = True
self.mb_timer.close()
self.state = State.closed
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
if self.mb:
self.mb.close()
self.mb = None

View File

@@ -17,9 +17,9 @@ import asyncio
from typing import Generator, Callable
if __name__ == "app.src.modbus":
from app.src.infos import Register
from app.src.infos import Register, Fmt
else: # pragma: no cover
from infos import Register
from infos import Register, Fmt
logger = logging.getLogger('data')
@@ -40,15 +40,30 @@ class Modbus():
__crc_tab = []
mb_reg_mapping = {
0x2000: {'reg': Register.BOOT_STATUS, 'fmt': '!H'}, # noqa: E501
0x2001: {'reg': Register.DSP_STATUS, 'fmt': '!H'}, # noqa: E501
0x2003: {'reg': Register.WORK_MODE, 'fmt': '!H'},
0x2006: {'reg': Register.OUTPUT_SHUTDOWN, 'fmt': '!H'},
0x2007: {'reg': Register.MAX_DESIGNED_POWER, 'fmt': '!H', 'ratio': 1}, # noqa: E501
0x2008: {'reg': Register.RATED_LEVEL, 'fmt': '!H'},
0x2009: {'reg': Register.INPUT_COEFFICIENT, 'fmt': '!H', 'ratio': 100/1024}, # noqa: E501
0x200a: {'reg': Register.GRID_VOLT_CAL_COEF, 'fmt': '!H'},
0x202c: {'reg': Register.OUTPUT_COEFFICIENT, 'fmt': '!H', 'ratio': 100/1024}, # noqa: E501
0x3000: {'reg': Register.INVERTER_STATUS, 'fmt': '!H'}, # noqa: E501
0x3008: {'reg': Register.VERSION, 'fmt': '!H', 'eval': "f'V{(result>>12)}.{(result>>8)&0xf}.{(result>>4)&0xf}{result&0xf:1X}'"}, # noqa: E501
0x3001: {'reg': Register.DETECT_STATUS_1, 'fmt': '!H'}, # noqa: E501
0x3002: {'reg': Register.DETECT_STATUS_2, 'fmt': '!H'}, # noqa: E501
0x3003: {'reg': Register.EVENT_ALARM, 'fmt': '!H'}, # noqa: E501
0x3004: {'reg': Register.EVENT_FAULT, 'fmt': '!H'}, # noqa: E501
0x3005: {'reg': Register.EVENT_BF1, 'fmt': '!H'}, # noqa: E501
0x3006: {'reg': Register.EVENT_BF2, 'fmt': '!H'}, # noqa: E501
0x3008: {'reg': Register.VERSION, 'fmt': '!H', 'func': Fmt.version}, # noqa: E501
0x3009: {'reg': Register.GRID_VOLTAGE, 'fmt': '!H', 'ratio': 0.1}, # noqa: E501
0x300a: {'reg': Register.GRID_CURRENT, 'fmt': '!H', 'ratio': 0.01}, # noqa: E501
0x300b: {'reg': Register.GRID_FREQUENCY, 'fmt': '!H', 'ratio': 0.01}, # noqa: E501
0x300c: {'reg': Register.INVERTER_TEMP, 'fmt': '!H', 'eval': 'result-40'}, # noqa: E501
0x300c: {'reg': Register.INVERTER_TEMP, 'fmt': '!H', 'offset': -40}, # noqa: E501
# 0x300d
0x300e: {'reg': Register.RATED_POWER, 'fmt': '!H', 'ratio': 1}, # noqa: E501
0x300f: {'reg': Register.OUTPUT_POWER, 'fmt': '!H', 'ratio': 0.1}, # noqa: E501
@@ -74,6 +89,7 @@ class Modbus():
0x3026: {'reg': Register.PV3_TOTAL_GENERATION, 'fmt': '!L', 'ratio': 0.01}, # noqa: E501
0x3028: {'reg': Register.PV4_DAILY_GENERATION, 'fmt': '!H', 'ratio': 0.01}, # noqa: E501
0x3029: {'reg': Register.PV4_TOTAL_GENERATION, 'fmt': '!L', 'ratio': 0.01}, # noqa: E501
# 0x302a
}
def __init__(self, snd_handler: Callable[[bytes, int, str], None],
@@ -87,8 +103,8 @@ class Modbus():
'''Response handler to forward the response'''
self.timeout = timeout
'''MODBUS response timeout in seconds'''
self.max_retries = 1
'''Max retransmit for MODBUS requests'''
self.max_retries = 0
'''Max retransmit for MODBU requests'''
self.retry_cnt = 0
self.last_req = b''
self.counter = {}
@@ -117,6 +133,9 @@ class Modbus():
while not self.que.empty():
self.que.get_nowait()
def set_node_id(self, node_id: str):
self.node_id = node_id
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
@@ -160,14 +179,13 @@ class Modbus():
return True
def recv_resp(self, info_db, buf: bytes, node_id: str) -> \
def recv_resp(self, info_db, buf: bytes) -> \
Generator[tuple[str, bool, int | float | str], None, None]:
"""Generator which check and parse a received MODBUS response.
Keyword arguments:
info_db: database for info lockups
buf: received Modbus RTU response frame
node_id: string for logging which identifies the slave
Returns on error and set Self.err to:
1: CRC error
@@ -177,7 +195,6 @@ class Modbus():
5: No MODBUS request pending
"""
# logging.info(f'recv_resp: first byte modbus:{buf[0]} len:{len(buf)}')
self.node_id = node_id
fcode = buf[1]
data_available = self.last_addr == self.INV_ADDR and \
@@ -228,17 +245,6 @@ class Modbus():
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):
@@ -248,7 +254,7 @@ class Modbus():
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)
result = Fmt.get_value(buf, 3+2*i, row)
name, update = info_db.update_db(keys, must_incr,
result)
yield keys[0], update, result

View File

@@ -57,15 +57,17 @@ class ModbusTcp():
# logging.info(f"SerialNo:{inv['monitor_sn']} host:{client['host']} port:{client['port']}") # noqa: E501
loop.create_task(self.modbus_loop(client['host'],
client['port'],
inv['monitor_sn']))
inv['monitor_sn'],
client['forward']))
async def modbus_loop(self, host, port, snr: int) -> None:
async def modbus_loop(self, host, port,
snr: int, forward: bool) -> None:
'''Loop for receiving messages from the TSUN cloud (client-side)'''
while True:
try:
async with ModbusConn(host, port) as inverter:
stream = inverter.local.stream
await stream.send_start_cmd(snr, host)
await stream.send_start_cmd(snr, host, forward)
await stream.ifc.loop()
logger.info(f'[{stream.node_id}:{stream.conn_no}] '
f'Connection closed - Shutdown: '

View File

@@ -17,10 +17,13 @@ pytest_plugins = ('pytest_asyncio',)
Infos.static_init()
class FakeProto(Message):
def __init__(self, server_side):
super().__init__(server_side, None, 10)
def __init__(self, ifc, server_side):
super().__init__('G3F', ifc, server_side, None, 10)
self.conn_no = 0
def mb_timout_cb(self, exp_cnt):
pass # empty callback
def fake_reader_fwd():
reader = FakeReader()
reader.test = FakeReader.RD_TEST_13_BYTES
@@ -337,6 +340,7 @@ def create_remote(remote, test_type, with_close_hdr:bool = False):
elif test_type == TestType.FWD_RUNTIME_ERROR_NO_STREAM:
remote.stream = None
raise RuntimeError("Peer closed")
return True
def close():
return
@@ -349,7 +353,7 @@ def create_remote(remote, test_type, with_close_hdr:bool = False):
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)
remote.stream = FakeProto(remote.ifc, False)
@pytest.mark.asyncio
async def test_forward():
@@ -530,3 +534,39 @@ async def test_forward_runtime_error3():
await ifc.server_loop()
assert cnt == 1
del ifc
@pytest.mark.asyncio
async def test_forward_resp():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _close_cb():
nonlocal cnt, remote, ifc
cnt += 1
cnt = 0
ifc = AsyncStreamClient(fake_reader_fwd(), FakeWriter(), remote, _close_cb)
create_remote(remote, TestType.FWD_NO_EXCPT)
ifc.fwd_add(b'test-forward_msg')
await ifc.client_loop('')
assert cnt == 0
del ifc
@pytest.mark.asyncio
async def test_forward_resp2():
assert asyncio.get_running_loop()
remote = StreamPtr(None)
cnt = 0
async def _close_cb():
nonlocal cnt, remote, ifc
cnt += 1
cnt = 0
ifc = AsyncStreamClient(fake_reader_fwd(), FakeWriter(), None, _close_cb)
create_remote(remote, TestType.FWD_NO_EXCPT)
ifc.fwd_add(b'test-forward_msg')
await ifc.client_loop('')
assert cnt == 0
del ifc

View File

@@ -3,7 +3,7 @@ import pytest
import json, math
import logging
from app.src.infos import Register, ClrAtMidnight
from app.src.infos import Infos
from app.src.infos import Infos, Fmt
def test_statistic_counter():
i = Infos()
@@ -17,13 +17,13 @@ def test_statistic_counter():
assert val == None or val == 0
i.static_init() # initialize counter
assert json.dumps(i.stat) == json.dumps({"proxy": {"Inverter_Cnt": 0, "Unknown_SNR": 0, "Unknown_Msg": 0, "Invalid_Data_Type": 0, "Internal_Error": 0,"Unknown_Ctrl": 0, "OTA_Start_Msg": 0, "SW_Exception": 0, "Invalid_Msg_Format": 0, "AT_Command": 0, "AT_Command_Blocked": 0, "Modbus_Command": 0}})
assert json.dumps(i.stat) == json.dumps({"proxy": {"Inverter_Cnt": 0, "Cloud_Conn_Cnt": 0, "Unknown_SNR": 0, "Unknown_Msg": 0, "Invalid_Data_Type": 0, "Internal_Error": 0,"Unknown_Ctrl": 0, "OTA_Start_Msg": 0, "SW_Exception": 0, "Invalid_Msg_Format": 0, "AT_Command": 0, "AT_Command_Blocked": 0, "Modbus_Command": 0}})
val = i.dev_value(Register.INVERTER_CNT) # valid and initiliazed addr
assert val == 0
i.inc_counter('Inverter_Cnt')
assert json.dumps(i.stat) == json.dumps({"proxy": {"Inverter_Cnt": 1, "Unknown_SNR": 0, "Unknown_Msg": 0, "Invalid_Data_Type": 0, "Internal_Error": 0,"Unknown_Ctrl": 0, "OTA_Start_Msg": 0, "SW_Exception": 0, "Invalid_Msg_Format": 0, "AT_Command": 0, "AT_Command_Blocked": 0, "Modbus_Command": 0}})
assert json.dumps(i.stat) == json.dumps({"proxy": {"Inverter_Cnt": 1, "Cloud_Conn_Cnt": 0, "Unknown_SNR": 0, "Unknown_Msg": 0, "Invalid_Data_Type": 0, "Internal_Error": 0,"Unknown_Ctrl": 0, "OTA_Start_Msg": 0, "SW_Exception": 0, "Invalid_Msg_Format": 0, "AT_Command": 0, "AT_Command_Blocked": 0, "Modbus_Command": 0}})
val = i.dev_value(Register.INVERTER_CNT)
assert val == 1
@@ -256,3 +256,24 @@ def test_key_obj():
assert level == logging.DEBUG
assert unit == 'kWh'
assert must_incr == True
def test_hex4_cnv():
tst_val = (0x12ef, )
string = Fmt.hex4(tst_val)
assert string == '12ef'
val = Fmt.hex4(string, reverse=True)
assert val == tst_val[0]
def test_mac_cnv():
tst_val = (0x12, 0x34, 0x67, 0x89, 0xcd, 0xef)
string = Fmt.mac(tst_val)
assert string == '12:34:67:89:cd:ef'
val = Fmt.mac(string, reverse=True)
assert val == tst_val
def test_version_cnv():
tst_val = (0x123f, )
string = Fmt.version(tst_val)
assert string == 'V1.2.3F'
val = Fmt.version(string, reverse=True)
assert val == tst_val[0]

View File

@@ -421,7 +421,7 @@ def test_must_incr_total(inv_data_seq2, inv_data_seq2_zero):
if key == 'total' or key == 'inverter' or key == 'env':
assert update == True
tests +=1
assert tests==8
assert tests==12
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_Status": 1, "Inverter_Temp": 23})
@@ -435,7 +435,7 @@ def test_must_incr_total(inv_data_seq2, inv_data_seq2_zero):
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_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})
assert json.dumps(i.db['inverter']) == json.dumps({"Rated_Power": 600, "BOOT_STATUS": 0, "DSP_STATUS": 21930, "Work_Mode": 0, "Max_Designed_Power": -1, "Input_Coefficient": -0.1, "Output_Coefficient": 100.0, "No_Inputs": 2})
tests = 0
for key, update in i.parse (inv_data_seq2_zero):
@@ -501,10 +501,10 @@ def test_new_data_types(inv_data_new):
else:
assert False
assert tests==15
assert json.dumps(i.db['inverter']) == json.dumps({"Manufacturer": 0})
assert tests==7
assert json.dumps(i.db['inverter']) == json.dumps({"Manufacturer": 0, "DSP_STATUS": 0})
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})
assert json.dumps(i.db['events']) == json.dumps({"Inverter_Alarm": 0, "Inverter_Fault": 0})
def test_invalid_data_type(invalid_data_seq):
i = InfosG3()
@@ -520,15 +520,3 @@ def test_invalid_data_type(invalid_data_seq):
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

@@ -57,6 +57,7 @@ def inverter_data(): # 0x4210 ftype: 0x01
msg += b'\x01\x61\x00\xa8\x02\x54\x01\x5a\x00\x8a\x01\xe4\x01\x5a\x00\xbd'
msg += b'\x02\x8f\x00\x11\x00\x01\x00\x00\x00\x0b\x00\x00\x27\x98\x00\x04'
msg += b'\x00\x00\x0c\x04\x00\x03\x00\x00\x0a\xe7\x00\x05\x00\x00\x0c\x75'
msg += b'\x00\x00\x00\x00\x06\x16\x02\x00\x00\x00\x55\xaa\x00\x01\x00\x00'
msg += b'\x00\x00\x00\x00\xff\xff\x07\xd0\x00\x03\x04\x00\x04\x00\x04\x00'
msg += b'\x04\x00\x00\x01\xff\xff\x00\x01\x00\x06\x00\x68\x00\x68\x05\x00'
@@ -85,10 +86,21 @@ def test_parse_4110(str_test_ip, device_data: bytes):
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": str_test_ip, "Sensor_List": "02b0"},
'controller': {"Data_Up_Interval": 300, "Collect_Interval": 1, "Heartbeat_Interval": 120, "Signal_Strength": 100, "IP_Address": str_test_ip, "Sensor_List": "02b0", "WiFi_SSID": "Allius-Home"},
'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_build_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()
build_msg = i.build(len(device_data), 0x41, 2)
for i in range(11, 20):
build_msg[i] = device_data[i]
assert device_data == build_msg
def test_parse_4210(inverter_data: bytes):
i = InfosG3P(client_mode=False)
i.db.clear()
@@ -98,16 +110,31 @@ def test_parse_4210(inverter_data: bytes):
assert json.dumps(i.db) == json.dumps({
"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},
"inverter": {"Serial_Number": "Y17E00000000000E", "Version": "V4.0.10", "Rated_Power": 600, "BOOT_STATUS": 0, "DSP_STATUS": 21930, "Work_Mode": 0, "Max_Designed_Power": 2000, "Input_Coefficient": 100.0, "Output_Coefficient": 100.0},
"env": {"Inverter_Status": 1, "Detect_Status_1": 2, "Detect_Status_2": 0, "Inverter_Temp": 14},
"events": {"Inverter_Alarm": 0, "Inverter_Fault": 0, "Inverter_Bitfield_1": 0, "Inverter_bitfield_2": 0},
"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},
"pv2": {"Voltage": 34.6, "Current": 1.38, "Power": 48.4, "Daily_Generation": 0.03, "Total_Generation": 27.91},
"pv3": {"Voltage": 34.6, "Current": 1.89, "Power": 65.5, "Daily_Generation": 0.05, "Total_Generation": 31.89},
"pv4": {"Voltage": 1.7, "Current": 0.01, "Power": 0.0, "Total_Generation": 15.58}},
"total": {"Daily_Generation": 0.11, "Total_Generation": 101.36}
"total": {"Daily_Generation": 0.11, "Total_Generation": 101.36},
"inv_unknown": {"Unknown_1": 512},
"other": {"Output_Shutdown": 65535, "Rated_Level": 3, "Grid_Volt_Cal_Coef": 1024}
})
def test_build_4210(inverter_data: bytes):
i = InfosG3P(client_mode=False)
i.db.clear()
for key, update in i.parse (inverter_data, 0x42, 1):
pass # side effect is calling generator i.parse()
build_msg = i.build(len(inverter_data), 0x42, 1)
for i in range(11, 31):
build_msg[i] = inverter_data[i]
assert inverter_data == build_msg
def test_build_ha_conf1():
i = InfosG3P(client_mode=False)
i.static_init() # initialize counter
@@ -256,10 +283,12 @@ def test_build_ha_conf4():
assert tests==1
def test_exception_and_eval(inverter_data: bytes):
def test_exception_and_calc(inverter_data: bytes):
# add eval to convert temperature from °F to °C
RegisterMap.map[0x420100d8]['eval'] = '(result-32)/1.8'
# patch table to convert temperature from °F to °C
ofs = RegisterMap.map[0x420100d8]['offset']
RegisterMap.map[0x420100d8]['quotient'] = 1.8
RegisterMap.map[0x420100d8]['offset'] = -32/1.8
# map PV1_VOLTAGE to invalid register
RegisterMap.map[0x420100e0]['reg'] = Register.TEST_REG2
# set invalid maping entry for OUTPUT_POWER (string instead of dict type)
@@ -267,16 +296,43 @@ def test_exception_and_eval(inverter_data: bytes):
RegisterMap.map[0x420100de] = 'invalid_entry'
i = InfosG3P(client_mode=False)
# i.db.clear()
i.db.clear()
for key, update in i.parse (inverter_data, 0x42, 1):
pass # side effect is calling generator i.parse()
assert math.isclose(12.2222, round (i.get_db_value(Register.INVERTER_TEMP, 0),4), rel_tol=1e-09, abs_tol=1e-09)
del RegisterMap.map[0x420100d8]['eval'] # remove eval
RegisterMap.map[0x420100e0]['reg'] = Register.PV1_VOLTAGE # reset mapping
RegisterMap.map[0x420100de] = backup # reset mapping
build_msg = i.build(len(inverter_data), 0x42, 1)
assert build_msg[32:0xde] == inverter_data[32:0xde]
assert build_msg[0xde:0xe2] == b'\x00\x00\x00\x00'
assert build_msg[0xe2:-1] == inverter_data[0xe2:-1]
# remove a table entry and test parsing and building
del RegisterMap.map[0x420100d8]['quotient']
del RegisterMap.map[0x420100d8]['offset']
i.db.clear()
for key, update in i.parse (inverter_data, 0x42, 1):
pass # side effect is calling generator i.parse()
assert 54 == i.get_db_value(Register.INVERTER_TEMP, 0)
build_msg = i.build(len(inverter_data), 0x42, 1)
assert build_msg[32:0xd8] == inverter_data[32:0xd8]
assert build_msg[0xd8:0xe2] == b'\x006\x00\x00\x02X\x00\x00\x00\x00'
assert build_msg[0xe2:-1] == inverter_data[0xe2:-1]
# test restore table
RegisterMap.map[0x420100d8]['offset'] = ofs
RegisterMap.map[0x420100e0]['reg'] = Register.PV1_VOLTAGE # reset mapping
RegisterMap.map[0x420100de] = backup # reset mapping
# test orginial table
i.db.clear()
for key, update in i.parse (inverter_data, 0x42, 1):
pass # side effect is calling generator i.parse()
assert 14 == i.get_db_value(Register.INVERTER_TEMP, 0)
build_msg = i.build(len(inverter_data), 0x42, 1)
assert build_msg[32:-1] == inverter_data[32:-1]

View File

@@ -144,7 +144,7 @@ async def test_mqtt_publish(config_conn, patch_open_connection):
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._set_serial_no(snr= 123344)
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
@@ -171,7 +171,7 @@ async def test_mqtt_err(config_conn, patch_open_connection, patch_mqtt_err):
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
stream = inverter.local.stream
stream._SolarmanV5__set_serial_no(snr= 123344)
stream._set_serial_no(snr= 123344)
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}
await inverter.async_publ_mqtt()
@@ -188,7 +188,7 @@ async def test_mqtt_except(config_conn, patch_open_connection, patch_mqtt_except
with InverterG3P(FakeReader(), FakeWriter(), client_mode=False) as inverter:
stream = inverter.local.stream
stream._SolarmanV5__set_serial_no(snr= 123344)
stream._set_serial_no(snr= 123344)
stream.new_data['inverter'] = True
stream.db.db['inverter'] = {}

View File

@@ -77,9 +77,10 @@ def test_recv_resp_crc_err():
mb.last_fcode = 3
mb.last_reg = 0x300e
mb.last_len = 2
mb.set_node_id('test')
# check matching response, but with CRC error
call = 0
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf3', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf3'):
call += 1
assert mb.err == 1
assert 0 == call
@@ -97,10 +98,11 @@ def test_recv_resp_invalid_addr():
mb.last_fcode = 3
mb.last_reg = 0x300e
mb.last_len = 2
mb.set_node_id('test')
# check not matching response, with wrong server addr
call = 0
for key, update in mb.recv_resp(mb.db, b'\x02\x03\x04\x01\x2c\x00\x46\x88\xf4', 'test'):
for key, update in mb.recv_resp(mb.db, b'\x02\x03\x04\x01\x2c\x00\x46\x88\xf4'):
call += 1
assert mb.err == 2
assert 0 == call
@@ -120,7 +122,8 @@ def test_recv_recv_fcode():
# check not matching response, with wrong function code
call = 0
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4', 'test'):
mb.set_node_id('test')
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4'):
call += 1
assert mb.err == 3
@@ -142,7 +145,8 @@ def test_recv_resp_len():
# check not matching response, with wrong data length
call = 0
for key, update, _ in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4', 'test'):
mb.set_node_id('test')
for key, update, _ in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4'):
call += 1
assert mb.err == 4
@@ -161,7 +165,8 @@ def test_recv_unexpect_resp():
# check unexpected response, which must be dropped
call = 0
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4', 'test'):
mb.set_node_id('test')
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4'):
call += 1
assert mb.err == 5
@@ -177,8 +182,9 @@ def test_parse_resp():
assert mb.req_pend
call = 0
mb.set_node_id('test')
exp_result = ['V0.0.2C', 4.4, 0.7, 0.7, 30]
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8'):
if key == 'grid':
assert update == True
elif key == 'inverter':
@@ -226,8 +232,9 @@ def test_queue2():
assert mb.send_calls == 1
assert mb.pdu == b'\x01\x030\x07\x00\x06{\t'
call = 0
mb.set_node_id('test')
exp_result = ['V0.0.2C', 4.4, 0.7, 0.7, 30]
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8'):
if key == 'grid':
assert update == True
elif key == 'inverter':
@@ -245,14 +252,14 @@ def test_queue2():
assert mb.send_calls == 2
assert mb.pdu == b'\x01\x06\x20\x08\x00\x04\x02\x0b'
for key, update, val in mb.recv_resp(mb.db, b'\x01\x06\x20\x08\x00\x04\x02\x0b', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x06\x20\x08\x00\x04\x02\x0b'):
pass # call generator mb.recv_resp()
assert mb.que.qsize() == 0
assert mb.send_calls == 3
assert mb.pdu == b'\x01\x030\x07\x00\x06{\t'
call = 0
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8'):
call += 1
assert 0 == mb.err
assert 5 == call
@@ -276,8 +283,9 @@ def test_queue3():
assert mb.recv_responses == 0
call = 0
mb.set_node_id('test')
exp_result = ['V0.0.2C', 4.4, 0.7, 0.7, 30]
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8'):
if key == 'grid':
assert update == True
elif key == 'inverter':
@@ -296,7 +304,7 @@ def test_queue3():
assert mb.send_calls == 2
assert mb.pdu == b'\x01\x06\x20\x08\x00\x04\x02\x0b'
for key, update, val in mb.recv_resp(mb.db, b'\x01\x06\x20\x08\x00\x04\x02\x0b', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x06\x20\x08\x00\x04\x02\x0b'):
pass # no code in loop is OK; calling the generator is the purpose
assert 0 == mb.err
assert mb.recv_responses == 2
@@ -305,7 +313,7 @@ def test_queue3():
assert mb.send_calls == 3
assert mb.pdu == b'\x01\x030\x07\x00\x06{\t'
call = 0
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8', 'test'):
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x0c\x01\x2c\x00\x2c\x00\x2c\x00\x46\x00\x46\x00\x46\x32\xc8'):
call += 1
assert 0 == mb.err
assert mb.recv_responses == 2
@@ -373,7 +381,8 @@ def test_recv_unknown_data():
# check matching response, but with CRC error
call = 0
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4', 'test'):
mb.set_node_id('test')
for key, update, val in mb.recv_resp(mb.db, b'\x01\x03\x04\x01\x2c\x00\x46\xbb\xf4'):
call += 1
assert mb.err == 0
assert 0 == call

View File

@@ -52,6 +52,10 @@ def config_conn(test_hostname, test_port):
'proxy_node_id': 'test_1',
'proxy_unique_id': ''
},
'solarman':{
'host': 'access1.solarmanpv.com',
'port': 10000
},
'inverters':{
'allow_all': True,
"R170000000000001":{
@@ -65,7 +69,8 @@ def config_conn(test_hostname, test_port):
'sensor_list': 0x2b0,
'client_mode':{
'host': '192.168.0.1',
'port': 8899
'port': 8899,
'forward': True
}
}
}

View File

@@ -6,7 +6,7 @@ import logging
import random
from math import isclose
from app.src.async_stream import AsyncIfcImpl, StreamPtr
from app.src.gen3plus.solarman_v5 import SolarmanV5
from app.src.gen3plus.solarman_v5 import SolarmanV5, SolarmanBase
from app.src.config import Config
from app.src.infos import Infos, Register
from app.src.modbus import Modbus
@@ -37,6 +37,9 @@ class FakeIfc(AsyncIfcImpl):
super().__init__()
self.remote = StreamPtr(None)
async def create_remote(self):
await asyncio.sleep(0)
class MemoryStream(SolarmanV5):
def __init__(self, msg, chunks = (0,), server_side: bool = True):
_ifc = FakeIfc()
@@ -109,7 +112,7 @@ class MemoryStream(SolarmanV5):
c.ifc.remote.stream = self
return c
def _SolarmanV5__flush_recv_msg(self) -> None:
def _SolarmanBase__flush_recv_msg(self) -> None:
self.msg_recvd.append(
{
'control': self.control,
@@ -117,7 +120,7 @@ class MemoryStream(SolarmanV5):
'data_len': self.data_len
}
)
super()._SolarmanV5__flush_recv_msg()
super()._SolarmanBase__flush_recv_msg()
self.msg_count += 1
@@ -1102,7 +1105,7 @@ def test_sync_start_ind(config_tsun_inv1, sync_start_ind_msg, sync_start_rsp_msg
assert m.db.stat['proxy']['Invalid_Msg_Format'] == 0
m.seq.server_side = False # simulate forawding to TSUN cloud
m._update_header(m.ifc.fwd_fifo.peek())
m._SolarmanBase__update_header(m.ifc.fwd_fifo.peek())
assert str(m.seq) == '0d:0e' # value after forwarding indication
assert m.ifc.fwd_fifo.get()==sync_start_fwd_msg
@@ -1727,6 +1730,7 @@ async def test_modbus_polling(config_tsun_inv1, heartbeat_ind_msg, heartbeat_rsp
assert asyncio.get_running_loop() == m.mb_timer.loop
m.db.stat['proxy']['Unknown_Ctrl'] = 0
assert m.mb_timer.tim == None
m.read() # read complete msg, and dispatch msg
assert not m.header_valid # must be invalid, since msg was handled and buffer flushed
assert m.msg_count == 1
@@ -1764,11 +1768,15 @@ async def test_start_client_mode(config_tsun_inv1, str_test_ip):
_ = config_tsun_inv1
assert asyncio.get_running_loop()
m = MemoryStream(b'')
m.mb_start_reg = 0x3000
m.mb_incr_reg = 0x00 # 4
m.mb_scan_len = 48
assert m.state == State.init
assert m.no_forwarding == False
assert m.mb_timer.tim == None
assert asyncio.get_running_loop() == m.mb_timer.loop
await m.send_start_cmd(get_sn_int(), str_test_ip, m.mb_first_timeout)
await m.send_start_cmd(get_sn_int(), str_test_ip, False, m.mb_first_timeout)
assert m.sent_pdu==bytearray(b'\xa5\x17\x00\x10E\x01\x00!Ce{\x02\xb0\x02\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x01\x030\x00\x000J\xde\xf1\x15')
assert m.db.get_db_value(Register.IP_ADDRESS) == str_test_ip
assert isclose(m.db.get_db_value(Register.POLLING_INTERVAL), 0.5)
@@ -1803,3 +1811,30 @@ def test_timeout(config_tsun_inv1):
assert SolarmanV5.MAX_DEF_IDLE_TIME == m._timeout()
m.state = State.closed
m.close()
def test_fnc_dispatch():
def msg():
return
_ = config_tsun_inv1
m = MemoryStream(b'')
m.switch[1] = msg
m.switch[2] = "msg"
_obj, _str = m.get_fnc_handler(1)
assert _obj == msg
assert _str == "'msg'"
_obj, _str = m.get_fnc_handler(2)
assert _obj == m.msg_unknown
assert _str == "'msg'"
_obj, _str = m.get_fnc_handler(3)
assert _obj == m.msg_unknown
assert _str == "'msg_unknown'"
def test_timestamp():
m = MemoryStream(b'')
ts = m._timestamp()
ts_emu = m._emu_timestamp()
assert ts == ts_emu + 24*60*60

View File

@@ -0,0 +1,230 @@
import pytest
import asyncio
from app.src.async_stream import AsyncIfcImpl, StreamPtr
from app.src.gen3plus.solarman_v5 import SolarmanV5, SolarmanBase
from app.src.gen3plus.solarman_emu import SolarmanEmu
from app.src.infos import Infos, Register
from app.tests.test_solarman import FakeIfc, MemoryStream, get_sn_int, get_sn, correct_checksum, config_tsun_inv1, msg_modbus_rsp
from app.tests.test_infos_g3p import str_test_ip, bytes_test_ip
timestamp = 0x3224c8bc
class InvStream(MemoryStream):
def __init__(self, msg=b''):
super().__init__(msg)
def _emu_timestamp(self):
return timestamp
class CldStream(SolarmanEmu):
def __init__(self, inv: InvStream):
_ifc = FakeIfc()
_ifc.remote.stream = inv
super().__init__(('test.local', 1234), _ifc, server_side=False, client_mode=False)
self.__msg = b''
self.__msg_len = 0
self.__offs = 0
self.msg_count = 0
self.msg_recvd = []
def _emu_timestamp(self):
return timestamp
def append_msg(self, msg):
self.__msg += msg
self.__msg_len += len(msg)
def _read(self) -> int:
copied_bytes = 0
try:
if (self.__offs < self.__msg_len):
self.ifc.rx_fifo += self.__msg[self.__offs:]
copied_bytes = self.__msg_len - self.__offs
self.__offs = self.__msg_len
except Exception:
pass # ignore exceptions here
return copied_bytes
def _SolarmanBase__flush_recv_msg(self) -> None:
self.msg_recvd.append(
{
'control': self.control,
'seq': str(self.seq),
'data_len': self.data_len
}
)
super()._SolarmanBase__flush_recv_msg()
self.msg_count += 1
@pytest.fixture
def device_ind_msg(bytes_test_ip): # 0x4110
msg = b'\xa5\xd4\x00\x10\x41\x00\x01' +get_sn() +b'\x02\xbc\xc8\x24\x32'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x05\x3c\x78\x01\x00\x01\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\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00' + bytes_test_ip
msg += b'\x0f\x00\x01\xb0'
msg += b'\x02\x0f\x00\xff\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\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\xfe\xfe\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\x00\x00\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\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00'
msg += correct_checksum(msg)
msg += b'\x15'
return msg
@pytest.fixture
def inverter_ind_msg(): # 0x4210
msg = b'\xa5\x99\x01\x10\x42\x00\x01' +get_sn() +b'\x01\xb0\x02\xbc\xc8'
msg += b'\x24\x32\x3c\x00\x00\x00\xa0\x47\xe4\x33\x01\x00\x03\x08\x00\x00'
msg += b'\x59\x31\x37\x30\x30\x30\x30\x30\x30\x30\x30\x30\x30\x30\x30\x31'
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\x00\x00\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\x00\x00\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\x00\x00\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\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00'
msg += b'\x00\x01\x00\x02\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00'
msg += b'\x40\x10\x08\xc8\x00\x49\x13\x8d\x00\x00\x00\x00\x00\x00\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\x00\x00\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\x00\x01\x00\x00'
msg += b'\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x00\x04\x00'
msg += b'\x04\x00\x00\x01\xff\xff\x00\x01\x00\x06\x00\x68\x00\x68\x05\x00'
msg += b'\x09\xcd\x07\xb6\x13\x9c\x13\x24\x00\x01\x07\xae\x04\x0f\x00\x41'
msg += b'\x00\x0f\x0a\x64\x0a\x64\x00\x06\x00\x06\x09\xf6\x12\x8c\x12\x8c'
msg += b'\x00\x10\x00\x10\x14\x52\x14\x52\x00\x10\x00\x10\x01\x51\x00\x05'
msg += b'\x00\x00\x00\x01\x13\x9c\x0f\xa0\x00\x4e\x00\x66\x03\xe8\x04\x00'
msg += b'\x09\xce\x07\xa8\x13\x9c\x13\x26\x00\x00\x00\x00\x00\x00\x00\x00'
msg += b'\x00\x00\x00\x00\x04\x00\x04\x00\x00\x00\x00\x00\xff\xff\x00\x00'
msg += b'\x00\x00\x00\x00'
msg += correct_checksum(msg)
msg += b'\x15'
return msg
@pytest.fixture
def inverter_rsp_msg(): # 0x1210
msg = b'\xa5\x0a\x00\x10\x12\x02\02' +get_sn() +b'\x01\x01'
msg += b'\x00\x00\x00\x00'
msg += b'\x3c\x00\x00\x00'
msg += correct_checksum(msg)
msg += b'\x15'
return msg
@pytest.fixture
def heartbeat_ind():
msg = b'\xa5\x01\x00\x10G\x00\x01\x00\x00\x00\x00\x00Y\x15'
return msg
def test_emu_init_close():
# received a message with wrong start byte plus an valid message
# the complete receive buffer must be cleared to
# find the next valid message
inv = InvStream()
cld = CldStream(inv)
cld.close()
@pytest.mark.asyncio
async def test_emu_start(config_tsun_inv1, msg_modbus_rsp, str_test_ip, device_ind_msg):
_ = config_tsun_inv1
assert asyncio.get_running_loop()
inv = InvStream(msg_modbus_rsp)
assert asyncio.get_running_loop() == inv.mb_timer.loop
await inv.send_start_cmd(get_sn_int(), str_test_ip, True, inv.mb_first_timeout)
inv.read() # read complete msg, and dispatch msg
assert not inv.header_valid # must be invalid, since msg was handled and buffer flushed
assert inv.msg_count == 1
assert inv.control == 0x1510
cld = CldStream(inv)
cld.ifc.update_header_cb(inv.ifc.fwd_fifo.peek())
assert inv.ifc.fwd_fifo.peek() == device_ind_msg
cld.close()
def test_snd_hb(config_tsun_inv1, heartbeat_ind):
_ = config_tsun_inv1
inv = InvStream()
cld = CldStream(inv)
# await inv.send_start_cmd(get_sn_int(), str_test_ip, False, inv.mb_first_timeout)
cld.send_heartbeat_cb(0)
assert cld.ifc.tx_fifo.peek() == heartbeat_ind
cld.close()
@pytest.mark.asyncio
async def test_snd_inv_data(config_tsun_inv1, inverter_ind_msg, inverter_rsp_msg):
_ = config_tsun_inv1
inv = InvStream()
inv.db.set_db_def_value(Register.INVERTER_STATUS, 1)
inv.db.set_db_def_value(Register.DETECT_STATUS_1, 2)
inv.db.set_db_def_value(Register.VERSION, 'V4.0.10')
inv.db.set_db_def_value(Register.GRID_VOLTAGE, 224.8)
inv.db.set_db_def_value(Register.GRID_CURRENT, 0.73)
inv.db.set_db_def_value(Register.GRID_FREQUENCY, 50.05)
assert asyncio.get_running_loop() == inv.mb_timer.loop
await inv.send_start_cmd(get_sn_int(), str_test_ip, False, inv.mb_first_timeout)
inv.db.set_db_def_value(Register.DATA_UP_INTERVAL, 17) # set test value
cld = CldStream(inv)
cld.time_ofs = 0x33e447a0
cld.last_sync = cld._emu_timestamp() - 60
cld.pkt_cnt = 0x802
assert cld.data_up_inv == 17 # check test value
cld.data_up_inv = 0.1 # speedup test first data msg
cld._init_new_client_conn()
cld.data_up_inv = 0.5 # timeout for second data msg
await asyncio.sleep(0.2)
assert cld.ifc.tx_fifo.get() == inverter_ind_msg
cld.append_msg(inverter_rsp_msg)
cld.read() # read complete msg, and dispatch msg
assert not cld.header_valid # must be invalid, since msg was handled and buffer flushed
assert cld.msg_count == 1
assert cld.header_len==11
assert cld.snr == 2070233889
assert cld.unique_id == '2070233889'
assert cld.msg_recvd[0]['control']==0x1210
assert cld.msg_recvd[0]['seq']=='02:02'
assert cld.msg_recvd[0]['data_len']==0x0a
assert '02b0' == cld.db.get_db_value(Register.SENSOR_LIST, None)
assert cld.db.stat['proxy']['Unknown_Msg'] == 0
cld.close()
@pytest.mark.asyncio
async def test_rcv_invalid(config_tsun_inv1, inverter_ind_msg, inverter_rsp_msg):
_ = config_tsun_inv1
inv = InvStream()
assert asyncio.get_running_loop() == inv.mb_timer.loop
await inv.send_start_cmd(get_sn_int(), str_test_ip, False, inv.mb_first_timeout)
inv.db.set_db_def_value(Register.DATA_UP_INTERVAL, 17) # set test value
cld = CldStream(inv)
cld._init_new_client_conn()
cld.append_msg(inverter_ind_msg)
cld.read() # read complete msg, and dispatch msg
assert not cld.header_valid # must be invalid, since msg was handled and buffer flushed
assert cld.msg_count == 1
assert cld.header_len==11
assert cld.snr == 2070233889
assert cld.unique_id == '2070233889'
assert cld.msg_recvd[0]['control']==0x4210
assert cld.msg_recvd[0]['seq']=='00:01'
assert cld.msg_recvd[0]['data_len']==0x199
assert '02b0' == cld.db.get_db_value(Register.SENSOR_LIST, None)
assert cld.db.stat['proxy']['Unknown_Msg'] == 1
cld.close()