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1
.github/FUNDING.yml
vendored
Normal file
@@ -0,0 +1 @@
|
||||
custom: ["https://paypal.me/gskjold"]
|
||||
39
.github/ISSUE_TEMPLATE/bug_report.md
vendored
Normal file
@@ -0,0 +1,39 @@
|
||||
---
|
||||
name: Bug report
|
||||
about: Report a bug
|
||||
title: ''
|
||||
labels: ''
|
||||
assignees: ''
|
||||
|
||||
---
|
||||
|
||||
**Describe the bug**
|
||||
A clear description of what the bug is.
|
||||
|
||||
**To Reproduce**
|
||||
Steps to reproduce the behavior:
|
||||
1. Go to '...'
|
||||
2. Click on '....'
|
||||
3. Scroll down to '....'
|
||||
4. See error
|
||||
|
||||
**Expected behavior**
|
||||
A clear description of what you expected to happen.
|
||||
|
||||
**Screenshots**
|
||||
If applicable, add screenshots to help explain your problem.
|
||||
|
||||
**Hardware information:**
|
||||
- Meter: [e.g. Aidon]
|
||||
- AMS reader: [e.g. Pow-U, ESP32 etc]
|
||||
- M-bus adapter (if applicable):
|
||||
|
||||
**Relevant firmware information:**
|
||||
- Version: [e.g. 1.5.0]
|
||||
- MQTT: [yes/no]
|
||||
- HAN GPIO: [e.g. GPIO5]
|
||||
- HAN baud and parity: [e.g. 2400 8E1]
|
||||
- Temperature sensors [e.g. 3xDS18B20]
|
||||
|
||||
**Additional context**
|
||||
Add any other context about the problem here.
|
||||
8
.github/ISSUE_TEMPLATE/config.yml
vendored
Normal file
@@ -0,0 +1,8 @@
|
||||
blank_issues_enabled: false
|
||||
contact_links:
|
||||
- name: Meter configuration
|
||||
url: https://github.com/gskjold/AmsToMqttBridge/wiki/Known-hardware-configurations
|
||||
about: Please check your meter configuration here first.
|
||||
- name: Frequently asked questions
|
||||
url: https://github.com/gskjold/AmsToMqttBridge/wiki/FAQ
|
||||
about: Please check frequently asked questions first.
|
||||
20
.github/ISSUE_TEMPLATE/feature_request.md
vendored
Normal file
@@ -0,0 +1,20 @@
|
||||
---
|
||||
name: Feature request
|
||||
about: Suggest an idea for this project
|
||||
title: ''
|
||||
labels: ''
|
||||
assignees: ''
|
||||
|
||||
---
|
||||
|
||||
**Is your feature request related to a problem? Please describe.**
|
||||
A clear and concise description of what the problem is. Ex. I'm always frustrated when [...]
|
||||
|
||||
**Describe the solution you'd like**
|
||||
A clear and concise description of what you want to happen.
|
||||
|
||||
**Describe alternatives you've considered**
|
||||
A clear and concise description of any alternative solutions or features you've considered.
|
||||
|
||||
**Additional context**
|
||||
Add any other context or screenshots about the feature request here.
|
||||
22
.github/ISSUE_TEMPLATE/support.md
vendored
Normal file
@@ -0,0 +1,22 @@
|
||||
---
|
||||
name: Support
|
||||
about: Request support
|
||||
title: ''
|
||||
labels: ''
|
||||
assignees: ''
|
||||
|
||||
---
|
||||
|
||||
**Describe your problem**
|
||||
A clear and concise description of what the problem is.
|
||||
|
||||
**Hardware information:**
|
||||
- Meter: [e.g. Aidon]
|
||||
- AMS reader: [e.g. Pow-U, ESP32 etc]
|
||||
- M-bus adapter (if applicable):
|
||||
|
||||
**Relevant firmware information:**
|
||||
- Version: [e.g. 1.5.0]
|
||||
- MQTT: [yes/no]
|
||||
- HAN GPIO: [e.g. GPIO5]
|
||||
- Temperature sensors [e.g. 3xDS18B20]
|
||||
10
.github/workflows/build.yml
vendored
@@ -9,7 +9,7 @@ on:
|
||||
- web/**
|
||||
- platformio.ini
|
||||
branches:
|
||||
- master
|
||||
- '*'
|
||||
tags:
|
||||
- '*'
|
||||
- '!v*.*.*'
|
||||
@@ -32,16 +32,14 @@ jobs:
|
||||
with:
|
||||
path: ~/.pio/libdeps
|
||||
key: ${{ runner.os }}-pio-${{ hashFiles('platformio.ini') }}
|
||||
- name: Set up Python 3.7
|
||||
- name: Set up Python 3.9
|
||||
uses: actions/setup-python@v1
|
||||
with:
|
||||
python-version: 3.7
|
||||
python-version: 3.9
|
||||
- name: Install dependencies
|
||||
run: |
|
||||
python -m pip install --upgrade pip
|
||||
pip install -U platformio
|
||||
- name: Configure build targets
|
||||
run: echo "[platformio]\ndefault_envs = hw1esp12e, esp12e, esp32" > platformio-user.ini
|
||||
pip install -U platformio css_html_js_minify
|
||||
- name: PlatformIO lib install
|
||||
run: pio lib install
|
||||
- name: PlatformIO run
|
||||
|
||||
72
.github/workflows/release.yml
vendored
@@ -14,11 +14,15 @@ jobs:
|
||||
steps:
|
||||
- name: Check out code from repo
|
||||
uses: actions/checkout@v1
|
||||
- name: Get release version from tag
|
||||
- name: Get release version for filenames
|
||||
id: release_tag
|
||||
env:
|
||||
GITHUB_REF: ${{ github.ref }}
|
||||
run: echo ::set-output name=tag::$(echo ${GITHUB_REF:11})
|
||||
- name: Get release version for code
|
||||
env:
|
||||
GITHUB_REF: ${{ github.ref }}
|
||||
run: echo "GITHUB_TAG=$(echo ${GITHUB_REF##*/})" >> $GITHUB_ENV
|
||||
- name: Cache Python dependencies
|
||||
uses: actions/cache@v1
|
||||
with:
|
||||
@@ -29,18 +33,20 @@ jobs:
|
||||
with:
|
||||
path: ~/.pio/libdeps
|
||||
key: ${{ runner.os }}-pio-${{ hashFiles('platformio.ini') }}
|
||||
- name: Set up Python 3.7
|
||||
- name: Set up Python 3.9
|
||||
uses: actions/setup-python@v1
|
||||
with:
|
||||
python-version: 3.7
|
||||
python-version: 3.9
|
||||
- name: Install dependencies
|
||||
run: |
|
||||
python -m pip install --upgrade pip
|
||||
pip install -U platformio
|
||||
pip install -U platformio css_html_js_minify
|
||||
- name: PlatformIO lib install
|
||||
run: pio lib install
|
||||
- name: PlatformIO run
|
||||
run: pio run
|
||||
- name: Create zip files
|
||||
run: /bin/sh scripts/mkzip.sh
|
||||
- name: Create Release
|
||||
id: create_release
|
||||
uses: actions/create-release@v1.0.0
|
||||
@@ -51,35 +57,46 @@ jobs:
|
||||
release_name: Release ${{ github.ref }}
|
||||
draft: false
|
||||
prerelease: false
|
||||
- name: Upload hw1esp12e binary to release
|
||||
uses: actions/upload-release-asset@v1.0.1
|
||||
|
||||
- name: Upload esp8266 zip to release
|
||||
uses: actions/upload-release-asset@v1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
upload_url: ${{ steps.create_release.outputs.upload_url }}
|
||||
asset_path: .pio/build/hw1esp12e/firmware.bin
|
||||
asset_name: ams2mqtt-hw1esp12e-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_content_type: application/octet-stream
|
||||
- name: Upload esp12e binary to release
|
||||
uses: actions/upload-release-asset@v1.0.1
|
||||
asset_path: esp8266.zip
|
||||
asset_name: ams2mqtt-esp8266-${{ steps.release_tag.outputs.tag }}.zip
|
||||
asset_content_type: application/zip
|
||||
- name: Upload esp32 zip to release
|
||||
uses: actions/upload-release-asset@v1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
upload_url: ${{ steps.create_release.outputs.upload_url }}
|
||||
asset_path: .pio/build/esp12e/firmware.bin
|
||||
asset_name: ams2mqtt-esp12e-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_content_type: application/octet-stream
|
||||
- name: Upload d1mini binary to release
|
||||
uses: actions/upload-release-asset@v1.0.1
|
||||
asset_path: esp32.zip
|
||||
asset_name: ams2mqtt-esp32-${{ steps.release_tag.outputs.tag }}.zip
|
||||
asset_content_type: application/zip
|
||||
- name: Upload esp32s2 zip to release
|
||||
uses: actions/upload-release-asset@v1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
upload_url: ${{ steps.create_release.outputs.upload_url }}
|
||||
asset_path: .pio/build/d1mini/firmware.bin
|
||||
asset_name: ams2mqtt-d1mini-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_path: esp32s2.zip
|
||||
asset_name: ams2mqtt-esp32s2-${{ steps.release_tag.outputs.tag }}.zip
|
||||
asset_content_type: application/zip
|
||||
|
||||
- name: Upload esp8266 binary to release
|
||||
uses: actions/upload-release-asset@v1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
upload_url: ${{ steps.create_release.outputs.upload_url }}
|
||||
asset_path: .pio/build/esp8266/firmware.bin
|
||||
asset_name: ams2mqtt-esp8266-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_content_type: application/octet-stream
|
||||
- name: Upload esp32 binary to release
|
||||
uses: actions/upload-release-asset@v1.0.1
|
||||
uses: actions/upload-release-asset@v1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
@@ -87,21 +104,12 @@ jobs:
|
||||
asset_path: .pio/build/esp32/firmware.bin
|
||||
asset_name: ams2mqtt-esp32-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_content_type: application/octet-stream
|
||||
- name: Upload lolind32 binary to release
|
||||
uses: actions/upload-release-asset@v1.0.1
|
||||
- name: Upload esp32s2 binary to release
|
||||
uses: actions/upload-release-asset@v1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
upload_url: ${{ steps.create_release.outputs.upload_url }}
|
||||
asset_path: .pio/build/lolind32/firmware.bin
|
||||
asset_name: ams2mqtt-lolind32-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_content_type: application/octet-stream
|
||||
- name: Upload featheresp32 binary to release
|
||||
uses: actions/upload-release-asset@v1.0.1
|
||||
env:
|
||||
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
|
||||
with:
|
||||
upload_url: ${{ steps.create_release.outputs.upload_url }}
|
||||
asset_path: .pio/build/featheresp32/firmware.bin
|
||||
asset_name: ams2mqtt-featheresp32-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_path: .pio/build/esp32s2/firmware.bin
|
||||
asset_name: ams2mqtt-esp32s2-${{ steps.release_tag.outputs.tag }}.bin
|
||||
asset_content_type: application/octet-stream
|
||||
|
||||
5
.gitignore
vendored
@@ -10,3 +10,8 @@ platformio-user.ini
|
||||
/src/version.h
|
||||
/src/web/root
|
||||
/src/AmsToMqttBridge.ino.cpp
|
||||
/test
|
||||
/web/test.html
|
||||
/sdkconfig
|
||||
/.tmp
|
||||
/*.zip
|
||||
|
||||
617
LICENSE
Normal file
@@ -0,0 +1,617 @@
|
||||
GNU AFFERO GENERAL PUBLIC LICENSE
|
||||
Version 3, 19 November 2007
|
||||
|
||||
Copyright (C) 2007 Free Software Foundation, Inc. <https://fsf.org/>
|
||||
Everyone is permitted to copy and distribute verbatim copies
|
||||
of this license document, but changing it is not allowed.
|
||||
|
||||
Preamble
|
||||
|
||||
The GNU Affero General Public License is a free, copyleft license for
|
||||
software and other kinds of works, specifically designed to ensure
|
||||
cooperation with the community in the case of network server software.
|
||||
|
||||
The licenses for most software and other practical works are designed
|
||||
to take away your freedom to share and change the works. By contrast,
|
||||
our General Public Licenses are intended to guarantee your freedom to
|
||||
share and change all versions of a program--to make sure it remains free
|
||||
software for all its users.
|
||||
|
||||
When we speak of free software, we are referring to freedom, not
|
||||
price. Our General Public Licenses are designed to make sure that you
|
||||
have the freedom to distribute copies of free software (and charge for
|
||||
them if you wish), that you receive source code or can get it if you
|
||||
want it, that you can change the software or use pieces of it in new
|
||||
free programs, and that you know you can do these things.
|
||||
|
||||
Developers that use our General Public Licenses protect your rights
|
||||
with two steps: (1) assert copyright on the software, and (2) offer
|
||||
you this License which gives you legal permission to copy, distribute
|
||||
and/or modify the software.
|
||||
|
||||
A secondary benefit of defending all users' freedom is that
|
||||
improvements made in alternate versions of the program, if they
|
||||
receive widespread use, become available for other developers to
|
||||
incorporate. Many developers of free software are heartened and
|
||||
encouraged by the resulting cooperation. However, in the case of
|
||||
software used on network servers, this result may fail to come about.
|
||||
The GNU General Public License permits making a modified version and
|
||||
letting the public access it on a server without ever releasing its
|
||||
source code to the public.
|
||||
|
||||
The GNU Affero General Public License is designed specifically to
|
||||
ensure that, in such cases, the modified source code becomes available
|
||||
to the community. It requires the operator of a network server to
|
||||
provide the source code of the modified version running there to the
|
||||
users of that server. Therefore, public use of a modified version, on
|
||||
a publicly accessible server, gives the public access to the source
|
||||
code of the modified version.
|
||||
|
||||
An older license, called the Affero General Public License and
|
||||
published by Affero, was designed to accomplish similar goals. This is
|
||||
a different license, not a version of the Affero GPL, but Affero has
|
||||
released a new version of the Affero GPL which permits relicensing under
|
||||
this license.
|
||||
|
||||
The precise terms and conditions for copying, distribution and
|
||||
modification follow.
|
||||
|
||||
TERMS AND CONDITIONS
|
||||
|
||||
0. Definitions.
|
||||
|
||||
"This License" refers to version 3 of the GNU Affero General Public License.
|
||||
|
||||
"Copyright" also means copyright-like laws that apply to other kinds of
|
||||
works, such as semiconductor masks.
|
||||
|
||||
"The Program" refers to any copyrightable work licensed under this
|
||||
License. Each licensee is addressed as "you". "Licensees" and
|
||||
"recipients" may be individuals or organizations.
|
||||
|
||||
To "modify" a work means to copy from or adapt all or part of the work
|
||||
in a fashion requiring copyright permission, other than the making of an
|
||||
exact copy. The resulting work is called a "modified version" of the
|
||||
earlier work or a work "based on" the earlier work.
|
||||
|
||||
A "covered work" means either the unmodified Program or a work based
|
||||
on the Program.
|
||||
|
||||
To "propagate" a work means to do anything with it that, without
|
||||
permission, would make you directly or secondarily liable for
|
||||
infringement under applicable copyright law, except executing it on a
|
||||
computer or modifying a private copy. Propagation includes copying,
|
||||
distribution (with or without modification), making available to the
|
||||
public, and in some countries other activities as well.
|
||||
|
||||
To "convey" a work means any kind of propagation that enables other
|
||||
parties to make or receive copies. Mere interaction with a user through
|
||||
a computer network, with no transfer of a copy, is not conveying.
|
||||
|
||||
An interactive user interface displays "Appropriate Legal Notices"
|
||||
to the extent that it includes a convenient and prominently visible
|
||||
feature that (1) displays an appropriate copyright notice, and (2)
|
||||
tells the user that there is no warranty for the work (except to the
|
||||
extent that warranties are provided), that licensees may convey the
|
||||
work under this License, and how to view a copy of this License. If
|
||||
the interface presents a list of user commands or options, such as a
|
||||
menu, a prominent item in the list meets this criterion.
|
||||
|
||||
1. Source Code.
|
||||
|
||||
The "source code" for a work means the preferred form of the work
|
||||
for making modifications to it. "Object code" means any non-source
|
||||
form of a work.
|
||||
|
||||
A "Standard Interface" means an interface that either is an official
|
||||
standard defined by a recognized standards body, or, in the case of
|
||||
interfaces specified for a particular programming language, one that
|
||||
is widely used among developers working in that language.
|
||||
|
||||
The "System Libraries" of an executable work include anything, other
|
||||
than the work as a whole, that (a) is included in the normal form of
|
||||
packaging a Major Component, but which is not part of that Major
|
||||
Component, and (b) serves only to enable use of the work with that
|
||||
Major Component, or to implement a Standard Interface for which an
|
||||
implementation is available to the public in source code form. A
|
||||
"Major Component", in this context, means a major essential component
|
||||
(kernel, window system, and so on) of the specific operating system
|
||||
(if any) on which the executable work runs, or a compiler used to
|
||||
produce the work, or an object code interpreter used to run it.
|
||||
|
||||
The "Corresponding Source" for a work in object code form means all
|
||||
the source code needed to generate, install, and (for an executable
|
||||
work) run the object code and to modify the work, including scripts to
|
||||
control those activities. However, it does not include the work's
|
||||
System Libraries, or general-purpose tools or generally available free
|
||||
programs which are used unmodified in performing those activities but
|
||||
which are not part of the work. For example, Corresponding Source
|
||||
includes interface definition files associated with source files for
|
||||
the work, and the source code for shared libraries and dynamically
|
||||
linked subprograms that the work is specifically designed to require,
|
||||
such as by intimate data communication or control flow between those
|
||||
subprograms and other parts of the work.
|
||||
|
||||
The Corresponding Source need not include anything that users
|
||||
can regenerate automatically from other parts of the Corresponding
|
||||
Source.
|
||||
|
||||
The Corresponding Source for a work in source code form is that
|
||||
same work.
|
||||
|
||||
2. Basic Permissions.
|
||||
|
||||
All rights granted under this License are granted for the term of
|
||||
copyright on the Program, and are irrevocable provided the stated
|
||||
conditions are met. This License explicitly affirms your unlimited
|
||||
permission to run the unmodified Program. The output from running a
|
||||
covered work is covered by this License only if the output, given its
|
||||
content, constitutes a covered work. This License acknowledges your
|
||||
rights of fair use or other equivalent, as provided by copyright law.
|
||||
|
||||
You may make, run and propagate covered works that you do not
|
||||
convey, without conditions so long as your license otherwise remains
|
||||
in force. You may convey covered works to others for the sole purpose
|
||||
of having them make modifications exclusively for you, or provide you
|
||||
with facilities for running those works, provided that you comply with
|
||||
the terms of this License in conveying all material for which you do
|
||||
not control copyright. Those thus making or running the covered works
|
||||
for you must do so exclusively on your behalf, under your direction
|
||||
and control, on terms that prohibit them from making any copies of
|
||||
your copyrighted material outside their relationship with you.
|
||||
|
||||
Conveying under any other circumstances is permitted solely under
|
||||
the conditions stated below. Sublicensing is not allowed; section 10
|
||||
makes it unnecessary.
|
||||
|
||||
3. Protecting Users' Legal Rights From Anti-Circumvention Law.
|
||||
|
||||
No covered work shall be deemed part of an effective technological
|
||||
measure under any applicable law fulfilling obligations under article
|
||||
11 of the WIPO copyright treaty adopted on 20 December 1996, or
|
||||
similar laws prohibiting or restricting circumvention of such
|
||||
measures.
|
||||
|
||||
When you convey a covered work, you waive any legal power to forbid
|
||||
circumvention of technological measures to the extent such circumvention
|
||||
is effected by exercising rights under this License with respect to
|
||||
the covered work, and you disclaim any intention to limit operation or
|
||||
modification of the work as a means of enforcing, against the work's
|
||||
users, your or third parties' legal rights to forbid circumvention of
|
||||
technological measures.
|
||||
|
||||
4. Conveying Verbatim Copies.
|
||||
|
||||
You may convey verbatim copies of the Program's source code as you
|
||||
receive it, in any medium, provided that you conspicuously and
|
||||
appropriately publish on each copy an appropriate copyright notice;
|
||||
keep intact all notices stating that this License and any
|
||||
non-permissive terms added in accord with section 7 apply to the code;
|
||||
keep intact all notices of the absence of any warranty; and give all
|
||||
recipients a copy of this License along with the Program.
|
||||
|
||||
You may charge any price or no price for each copy that you convey,
|
||||
and you may offer support or warranty protection for a fee.
|
||||
|
||||
5. Conveying Modified Source Versions.
|
||||
|
||||
You may convey a work based on the Program, or the modifications to
|
||||
produce it from the Program, in the form of source code under the
|
||||
terms of section 4, provided that you also meet all of these conditions:
|
||||
|
||||
a) The work must carry prominent notices stating that you modified
|
||||
it, and giving a relevant date.
|
||||
|
||||
b) The work must carry prominent notices stating that it is
|
||||
released under this License and any conditions added under section
|
||||
7. This requirement modifies the requirement in section 4 to
|
||||
"keep intact all notices".
|
||||
|
||||
c) You must license the entire work, as a whole, under this
|
||||
License to anyone who comes into possession of a copy. This
|
||||
License will therefore apply, along with any applicable section 7
|
||||
additional terms, to the whole of the work, and all its parts,
|
||||
regardless of how they are packaged. This License gives no
|
||||
permission to license the work in any other way, but it does not
|
||||
invalidate such permission if you have separately received it.
|
||||
|
||||
d) If the work has interactive user interfaces, each must display
|
||||
Appropriate Legal Notices; however, if the Program has interactive
|
||||
interfaces that do not display Appropriate Legal Notices, your
|
||||
work need not make them do so.
|
||||
|
||||
A compilation of a covered work with other separate and independent
|
||||
works, which are not by their nature extensions of the covered work,
|
||||
and which are not combined with it such as to form a larger program,
|
||||
in or on a volume of a storage or distribution medium, is called an
|
||||
"aggregate" if the compilation and its resulting copyright are not
|
||||
used to limit the access or legal rights of the compilation's users
|
||||
beyond what the individual works permit. Inclusion of a covered work
|
||||
in an aggregate does not cause this License to apply to the other
|
||||
parts of the aggregate.
|
||||
|
||||
6. Conveying Non-Source Forms.
|
||||
|
||||
You may convey a covered work in object code form under the terms
|
||||
of sections 4 and 5, provided that you also convey the
|
||||
machine-readable Corresponding Source under the terms of this License,
|
||||
in one of these ways:
|
||||
|
||||
a) Convey the object code in, or embodied in, a physical product
|
||||
(including a physical distribution medium), accompanied by the
|
||||
Corresponding Source fixed on a durable physical medium
|
||||
customarily used for software interchange.
|
||||
|
||||
b) Convey the object code in, or embodied in, a physical product
|
||||
(including a physical distribution medium), accompanied by a
|
||||
written offer, valid for at least three years and valid for as
|
||||
long as you offer spare parts or customer support for that product
|
||||
model, to give anyone who possesses the object code either (1) a
|
||||
copy of the Corresponding Source for all the software in the
|
||||
product that is covered by this License, on a durable physical
|
||||
medium customarily used for software interchange, for a price no
|
||||
more than your reasonable cost of physically performing this
|
||||
conveying of source, or (2) access to copy the
|
||||
Corresponding Source from a network server at no charge.
|
||||
|
||||
c) Convey individual copies of the object code with a copy of the
|
||||
written offer to provide the Corresponding Source. This
|
||||
alternative is allowed only occasionally and noncommercially, and
|
||||
only if you received the object code with such an offer, in accord
|
||||
with subsection 6b.
|
||||
|
||||
d) Convey the object code by offering access from a designated
|
||||
place (gratis or for a charge), and offer equivalent access to the
|
||||
Corresponding Source in the same way through the same place at no
|
||||
further charge. You need not require recipients to copy the
|
||||
Corresponding Source along with the object code. If the place to
|
||||
copy the object code is a network server, the Corresponding Source
|
||||
may be on a different server (operated by you or a third party)
|
||||
that supports equivalent copying facilities, provided you maintain
|
||||
clear directions next to the object code saying where to find the
|
||||
Corresponding Source. Regardless of what server hosts the
|
||||
Corresponding Source, you remain obligated to ensure that it is
|
||||
available for as long as needed to satisfy these requirements.
|
||||
|
||||
e) Convey the object code using peer-to-peer transmission, provided
|
||||
you inform other peers where the object code and Corresponding
|
||||
Source of the work are being offered to the general public at no
|
||||
charge under subsection 6d.
|
||||
|
||||
A separable portion of the object code, whose source code is excluded
|
||||
from the Corresponding Source as a System Library, need not be
|
||||
included in conveying the object code work.
|
||||
|
||||
A "User Product" is either (1) a "consumer product", which means any
|
||||
tangible personal property which is normally used for personal, family,
|
||||
or household purposes, or (2) anything designed or sold for incorporation
|
||||
into a dwelling. In determining whether a product is a consumer product,
|
||||
doubtful cases shall be resolved in favor of coverage. For a particular
|
||||
product received by a particular user, "normally used" refers to a
|
||||
typical or common use of that class of product, regardless of the status
|
||||
of the particular user or of the way in which the particular user
|
||||
actually uses, or expects or is expected to use, the product. A product
|
||||
is a consumer product regardless of whether the product has substantial
|
||||
commercial, industrial or non-consumer uses, unless such uses represent
|
||||
the only significant mode of use of the product.
|
||||
|
||||
"Installation Information" for a User Product means any methods,
|
||||
procedures, authorization keys, or other information required to install
|
||||
and execute modified versions of a covered work in that User Product from
|
||||
a modified version of its Corresponding Source. The information must
|
||||
suffice to ensure that the continued functioning of the modified object
|
||||
code is in no case prevented or interfered with solely because
|
||||
modification has been made.
|
||||
|
||||
If you convey an object code work under this section in, or with, or
|
||||
specifically for use in, a User Product, and the conveying occurs as
|
||||
part of a transaction in which the right of possession and use of the
|
||||
User Product is transferred to the recipient in perpetuity or for a
|
||||
fixed term (regardless of how the transaction is characterized), the
|
||||
Corresponding Source conveyed under this section must be accompanied
|
||||
by the Installation Information. But this requirement does not apply
|
||||
if neither you nor any third party retains the ability to install
|
||||
modified object code on the User Product (for example, the work has
|
||||
been installed in ROM).
|
||||
|
||||
The requirement to provide Installation Information does not include a
|
||||
requirement to continue to provide support service, warranty, or updates
|
||||
for a work that has been modified or installed by the recipient, or for
|
||||
the User Product in which it has been modified or installed. Access to a
|
||||
network may be denied when the modification itself materially and
|
||||
adversely affects the operation of the network or violates the rules and
|
||||
protocols for communication across the network.
|
||||
|
||||
Corresponding Source conveyed, and Installation Information provided,
|
||||
in accord with this section must be in a format that is publicly
|
||||
documented (and with an implementation available to the public in
|
||||
source code form), and must require no special password or key for
|
||||
unpacking, reading or copying.
|
||||
|
||||
7. Additional Terms.
|
||||
|
||||
"Additional permissions" are terms that supplement the terms of this
|
||||
License by making exceptions from one or more of its conditions.
|
||||
Additional permissions that are applicable to the entire Program shall
|
||||
be treated as though they were included in this License, to the extent
|
||||
that they are valid under applicable law. If additional permissions
|
||||
apply only to part of the Program, that part may be used separately
|
||||
under those permissions, but the entire Program remains governed by
|
||||
this License without regard to the additional permissions.
|
||||
|
||||
When you convey a copy of a covered work, you may at your option
|
||||
remove any additional permissions from that copy, or from any part of
|
||||
it. (Additional permissions may be written to require their own
|
||||
removal in certain cases when you modify the work.) You may place
|
||||
additional permissions on material, added by you to a covered work,
|
||||
for which you have or can give appropriate copyright permission.
|
||||
|
||||
Notwithstanding any other provision of this License, for material you
|
||||
add to a covered work, you may (if authorized by the copyright holders of
|
||||
that material) supplement the terms of this License with terms:
|
||||
|
||||
a) Disclaiming warranty or limiting liability differently from the
|
||||
terms of sections 15 and 16 of this License; or
|
||||
|
||||
b) Requiring preservation of specified reasonable legal notices or
|
||||
author attributions in that material or in the Appropriate Legal
|
||||
Notices displayed by works containing it; or
|
||||
|
||||
c) Prohibiting misrepresentation of the origin of that material, or
|
||||
requiring that modified versions of such material be marked in
|
||||
reasonable ways as different from the original version; or
|
||||
|
||||
d) Limiting the use for publicity purposes of names of licensors or
|
||||
authors of the material; or
|
||||
|
||||
e) Declining to grant rights under trademark law for use of some
|
||||
trade names, trademarks, or service marks; or
|
||||
|
||||
f) Requiring indemnification of licensors and authors of that
|
||||
material by anyone who conveys the material (or modified versions of
|
||||
it) with contractual assumptions of liability to the recipient, for
|
||||
any liability that these contractual assumptions directly impose on
|
||||
those licensors and authors.
|
||||
|
||||
All other non-permissive additional terms are considered "further
|
||||
restrictions" within the meaning of section 10. If the Program as you
|
||||
received it, or any part of it, contains a notice stating that it is
|
||||
governed by this License along with a term that is a further
|
||||
restriction, you may remove that term. If a license document contains
|
||||
a further restriction but permits relicensing or conveying under this
|
||||
License, you may add to a covered work material governed by the terms
|
||||
of that license document, provided that the further restriction does
|
||||
not survive such relicensing or conveying.
|
||||
|
||||
If you add terms to a covered work in accord with this section, you
|
||||
must place, in the relevant source files, a statement of the
|
||||
additional terms that apply to those files, or a notice indicating
|
||||
where to find the applicable terms.
|
||||
|
||||
Additional terms, permissive or non-permissive, may be stated in the
|
||||
form of a separately written license, or stated as exceptions;
|
||||
the above requirements apply either way.
|
||||
|
||||
8. Termination.
|
||||
|
||||
You may not propagate or modify a covered work except as expressly
|
||||
provided under this License. Any attempt otherwise to propagate or
|
||||
modify it is void, and will automatically terminate your rights under
|
||||
this License (including any patent licenses granted under the third
|
||||
paragraph of section 11).
|
||||
|
||||
However, if you cease all violation of this License, then your
|
||||
license from a particular copyright holder is reinstated (a)
|
||||
provisionally, unless and until the copyright holder explicitly and
|
||||
finally terminates your license, and (b) permanently, if the copyright
|
||||
holder fails to notify you of the violation by some reasonable means
|
||||
prior to 60 days after the cessation.
|
||||
|
||||
Moreover, your license from a particular copyright holder is
|
||||
reinstated permanently if the copyright holder notifies you of the
|
||||
violation by some reasonable means, this is the first time you have
|
||||
received notice of violation of this License (for any work) from that
|
||||
copyright holder, and you cure the violation prior to 30 days after
|
||||
your receipt of the notice.
|
||||
|
||||
Termination of your rights under this section does not terminate the
|
||||
licenses of parties who have received copies or rights from you under
|
||||
this License. If your rights have been terminated and not permanently
|
||||
reinstated, you do not qualify to receive new licenses for the same
|
||||
material under section 10.
|
||||
|
||||
9. Acceptance Not Required for Having Copies.
|
||||
|
||||
You are not required to accept this License in order to receive or
|
||||
run a copy of the Program. Ancillary propagation of a covered work
|
||||
occurring solely as a consequence of using peer-to-peer transmission
|
||||
to receive a copy likewise does not require acceptance. However,
|
||||
nothing other than this License grants you permission to propagate or
|
||||
modify any covered work. These actions infringe copyright if you do
|
||||
not accept this License. Therefore, by modifying or propagating a
|
||||
covered work, you indicate your acceptance of this License to do so.
|
||||
|
||||
10. Automatic Licensing of Downstream Recipients.
|
||||
|
||||
Each time you convey a covered work, the recipient automatically
|
||||
receives a license from the original licensors, to run, modify and
|
||||
propagate that work, subject to this License. You are not responsible
|
||||
for enforcing compliance by third parties with this License.
|
||||
|
||||
An "entity transaction" is a transaction transferring control of an
|
||||
organization, or substantially all assets of one, or subdividing an
|
||||
organization, or merging organizations. If propagation of a covered
|
||||
work results from an entity transaction, each party to that
|
||||
transaction who receives a copy of the work also receives whatever
|
||||
licenses to the work the party's predecessor in interest had or could
|
||||
give under the previous paragraph, plus a right to possession of the
|
||||
Corresponding Source of the work from the predecessor in interest, if
|
||||
the predecessor has it or can get it with reasonable efforts.
|
||||
|
||||
You may not impose any further restrictions on the exercise of the
|
||||
rights granted or affirmed under this License. For example, you may
|
||||
not impose a license fee, royalty, or other charge for exercise of
|
||||
rights granted under this License, and you may not initiate litigation
|
||||
(including a cross-claim or counterclaim in a lawsuit) alleging that
|
||||
any patent claim is infringed by making, using, selling, offering for
|
||||
sale, or importing the Program or any portion of it.
|
||||
|
||||
11. Patents.
|
||||
|
||||
A "contributor" is a copyright holder who authorizes use under this
|
||||
License of the Program or a work on which the Program is based. The
|
||||
work thus licensed is called the contributor's "contributor version".
|
||||
|
||||
A contributor's "essential patent claims" are all patent claims
|
||||
owned or controlled by the contributor, whether already acquired or
|
||||
hereafter acquired, that would be infringed by some manner, permitted
|
||||
by this License, of making, using, or selling its contributor version,
|
||||
but do not include claims that would be infringed only as a
|
||||
consequence of further modification of the contributor version. For
|
||||
purposes of this definition, "control" includes the right to grant
|
||||
patent sublicenses in a manner consistent with the requirements of
|
||||
this License.
|
||||
|
||||
Each contributor grants you a non-exclusive, worldwide, royalty-free
|
||||
patent license under the contributor's essential patent claims, to
|
||||
make, use, sell, offer for sale, import and otherwise run, modify and
|
||||
propagate the contents of its contributor version.
|
||||
|
||||
In the following three paragraphs, a "patent license" is any express
|
||||
agreement or commitment, however denominated, not to enforce a patent
|
||||
(such as an express permission to practice a patent or covenant not to
|
||||
sue for patent infringement). To "grant" such a patent license to a
|
||||
party means to make such an agreement or commitment not to enforce a
|
||||
patent against the party.
|
||||
|
||||
If you convey a covered work, knowingly relying on a patent license,
|
||||
and the Corresponding Source of the work is not available for anyone
|
||||
to copy, free of charge and under the terms of this License, through a
|
||||
publicly available network server or other readily accessible means,
|
||||
then you must either (1) cause the Corresponding Source to be so
|
||||
available, or (2) arrange to deprive yourself of the benefit of the
|
||||
patent license for this particular work, or (3) arrange, in a manner
|
||||
consistent with the requirements of this License, to extend the patent
|
||||
license to downstream recipients. "Knowingly relying" means you have
|
||||
actual knowledge that, but for the patent license, your conveying the
|
||||
covered work in a country, or your recipient's use of the covered work
|
||||
in a country, would infringe one or more identifiable patents in that
|
||||
country that you have reason to believe are valid.
|
||||
|
||||
If, pursuant to or in connection with a single transaction or
|
||||
arrangement, you convey, or propagate by procuring conveyance of, a
|
||||
covered work, and grant a patent license to some of the parties
|
||||
receiving the covered work authorizing them to use, propagate, modify
|
||||
or convey a specific copy of the covered work, then the patent license
|
||||
you grant is automatically extended to all recipients of the covered
|
||||
work and works based on it.
|
||||
|
||||
A patent license is "discriminatory" if it does not include within
|
||||
the scope of its coverage, prohibits the exercise of, or is
|
||||
conditioned on the non-exercise of one or more of the rights that are
|
||||
specifically granted under this License. You may not convey a covered
|
||||
work if you are a party to an arrangement with a third party that is
|
||||
in the business of distributing software, under which you make payment
|
||||
to the third party based on the extent of your activity of conveying
|
||||
the work, and under which the third party grants, to any of the
|
||||
parties who would receive the covered work from you, a discriminatory
|
||||
patent license (a) in connection with copies of the covered work
|
||||
conveyed by you (or copies made from those copies), or (b) primarily
|
||||
for and in connection with specific products or compilations that
|
||||
contain the covered work, unless you entered into that arrangement,
|
||||
or that patent license was granted, prior to 28 March 2007.
|
||||
|
||||
Nothing in this License shall be construed as excluding or limiting
|
||||
any implied license or other defenses to infringement that may
|
||||
otherwise be available to you under applicable patent law.
|
||||
|
||||
12. No Surrender of Others' Freedom.
|
||||
|
||||
If conditions are imposed on you (whether by court order, agreement or
|
||||
otherwise) that contradict the conditions of this License, they do not
|
||||
excuse you from the conditions of this License. If you cannot convey a
|
||||
covered work so as to satisfy simultaneously your obligations under this
|
||||
License and any other pertinent obligations, then as a consequence you may
|
||||
not convey it at all. For example, if you agree to terms that obligate you
|
||||
to collect a royalty for further conveying from those to whom you convey
|
||||
the Program, the only way you could satisfy both those terms and this
|
||||
License would be to refrain entirely from conveying the Program.
|
||||
|
||||
13. Remote Network Interaction; Use with the GNU General Public License.
|
||||
|
||||
Notwithstanding any other provision of this License, if you modify the
|
||||
Program, your modified version must prominently offer all users
|
||||
interacting with it remotely through a computer network (if your version
|
||||
supports such interaction) an opportunity to receive the Corresponding
|
||||
Source of your version by providing access to the Corresponding Source
|
||||
from a network server at no charge, through some standard or customary
|
||||
means of facilitating copying of software. This Corresponding Source
|
||||
shall include the Corresponding Source for any work covered by version 3
|
||||
of the GNU General Public License that is incorporated pursuant to the
|
||||
following paragraph.
|
||||
|
||||
Notwithstanding any other provision of this License, you have
|
||||
permission to link or combine any covered work with a work licensed
|
||||
under version 3 of the GNU General Public License into a single
|
||||
combined work, and to convey the resulting work. The terms of this
|
||||
License will continue to apply to the part which is the covered work,
|
||||
but the work with which it is combined will remain governed by version
|
||||
3 of the GNU General Public License.
|
||||
|
||||
14. Revised Versions of this License.
|
||||
|
||||
The Free Software Foundation may publish revised and/or new versions of
|
||||
the GNU Affero General Public License from time to time. Such new versions
|
||||
will be similar in spirit to the present version, but may differ in detail to
|
||||
address new problems or concerns.
|
||||
|
||||
Each version is given a distinguishing version number. If the
|
||||
Program specifies that a certain numbered version of the GNU Affero General
|
||||
Public License "or any later version" applies to it, you have the
|
||||
option of following the terms and conditions either of that numbered
|
||||
version or of any later version published by the Free Software
|
||||
Foundation. If the Program does not specify a version number of the
|
||||
GNU Affero General Public License, you may choose any version ever published
|
||||
by the Free Software Foundation.
|
||||
|
||||
If the Program specifies that a proxy can decide which future
|
||||
versions of the GNU Affero General Public License can be used, that proxy's
|
||||
public statement of acceptance of a version permanently authorizes you
|
||||
to choose that version for the Program.
|
||||
|
||||
Later license versions may give you additional or different
|
||||
permissions. However, no additional obligations are imposed on any
|
||||
author or copyright holder as a result of your choosing to follow a
|
||||
later version.
|
||||
|
||||
15. Disclaimer of Warranty.
|
||||
|
||||
THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
|
||||
APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
|
||||
HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
|
||||
OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
|
||||
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
|
||||
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
|
||||
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
|
||||
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
|
||||
|
||||
16. Limitation of Liability.
|
||||
|
||||
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
|
||||
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
|
||||
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
|
||||
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
|
||||
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
|
||||
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
|
||||
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
|
||||
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
|
||||
SUCH DAMAGES.
|
||||
|
||||
17. Interpretation of Sections 15 and 16.
|
||||
|
||||
If the disclaimer of warranty and limitation of liability provided
|
||||
above cannot be given local legal effect according to their terms,
|
||||
reviewing courts shall apply local law that most closely approximates
|
||||
an absolute waiver of all civil liability in connection with the
|
||||
Program, unless a warranty or assumption of liability accompanies a
|
||||
copy of the Program in return for a fee.
|
||||
31
README.md
@@ -1,31 +1,12 @@
|
||||
# AMS <-> MQTT Bridge
|
||||
Orignally designed and coded by [@roarfred](https://github.com/roarfred), see the original repo at [roarfred/AmsToMqttBridge](https://github.com/roarfred/AmsToMqttBridge)
|
||||
# AMS MQTT Bridge
|
||||
This code is designed to decode data from electric smart meters installed in many countries in Europe these days. The data is presented in a graphical web interface and can also send the data to a MQTT broker which makes it suitable for home automation project. Originally it was only designed to work with Norwegian meters, but has since been adapter to read any IEC-62056-7-5 or IEC-62056-21 compliant meters.
|
||||
|
||||
This repository contains the code and schematics necessary to build a device to receive and convert data from AMS electrical meters installed in Norway. The code can be used on both ESP8266 and ESP32, both as custom build devices or built from readily available development modules. It reads data from the HAN port of the meter and sends this to a configured MQTT bus.
|
||||
Later development have added Energy usage graph for both day and month, as well as future energy price (Prices only available for ESP32). The code can run on any ESP8266 or ESP32 hardware which you can read more about in the [WiKi](https://github.com/gskjold/AmsToMqttBridge/wiki). If you don't have the knowledge to set up a ESP device yourself, have a look at the shop at [amsleser.no](https://amsleser.no/).
|
||||
|
||||
There is also a web interface available on runtime, showing meter data in real time.
|
||||
|
||||
<img src="webui.jpg" width="480">
|
||||
|
||||
## Release binaries
|
||||
|
||||
In the [Release section](https://github.com/gskjold/AmsToMqttBridge/releases) of this repository, you will find precompiled binaries for some common boards.
|
||||
|
||||
- _hw1esp12e_ :: First version custom hardware with ESP 12E of 12F chip
|
||||
- _esp12e_ :: General ESP8266 board with 12E or 12F chip
|
||||
- _d1mini_ :: Wemos D1 mini
|
||||
- _esp32_ :: General ESP32 board
|
||||
- _lolind32_ :: Wemos D32
|
||||
- _featheresp32_ :: Adafruit ESP32 feather
|
||||
|
||||
### Flashing binaries with [esptool.py](https://github.com/espressif/esptool)
|
||||
|
||||
Linux:
|
||||
```esptool.py --port /dev/ttyUSB0 write_flash 0x0 binary-file.bin```
|
||||
|
||||
Windows:
|
||||
```esptool.py --port COM1 write_flash 0x0 binary-file.bin```
|
||||
<img src="webui.png">
|
||||
|
||||
Go to the [WiKi](https://github.com/gskjold/AmsToMqttBridge/wiki) for information on how to get your own device! And find the latest prebuilt firmware file at the [release section](https://github.com/gskjold/AmsToMqttBridge/releases).
|
||||
|
||||
## Building this project with PlatformIO
|
||||
To build this project, you need [PlatformIO](https://platformio.org/) installed.
|
||||
@@ -36,4 +17,4 @@ It is recommended to use Visual Studio Code with the PlatformIO plugin for devel
|
||||
|
||||
[PlatformIO vscode plugin](https://platformio.org/install/ide?install=vscode)
|
||||
|
||||
Copy the ```platformio-user.ini-example``` to ```platformio-user.ini``` and customize to your preference. The code will adapt to the platform and board set in your profile. If you are using the original board design by [@roarfred](https://github.com/roarfred) use build flag -D HW_ROARFRED=1
|
||||
For development purposes, copy the ```platformio-user.ini-example``` to ```platformio-user.ini``` and customize to your preference. The code will adapt to the platform and board set in your profile.
|
||||
|
||||
BIN
doc/Blue_Book_Edition_13-Excerpt.pdf
Normal file
32
doc/Denmark/Kamstrup_encrypted_OBIS.txt
Normal file
@@ -0,0 +1,32 @@
|
||||
1.1.1.8.0.255 - Active+ Energy
|
||||
1.1.2.8.0.255 - Active- Energy
|
||||
1.1.3.8.0.255 - Reactive+ Energy
|
||||
1.1.4.8.0.255 - Reactive- Energy
|
||||
1.1.0.0.1.255 - Meter number 1
|
||||
1.1.1.7.0.255 - Active+ Instantaneous value
|
||||
1.1.2.7.0.255 - Active- Instantaneous value
|
||||
1.1.3.7.0.255 - Reactive+ Instantaneous value
|
||||
1.1.4.7.0.255 - Reactive- Instantaneous value
|
||||
0.1.1.0.0.255 - Current date/time
|
||||
1.1.32.7.0.255 - L1 Voltage Instantaneous value
|
||||
1.1.52.7.0.255 - L2 Voltage Instantaneous value
|
||||
1.1.72.7.0.255 - L3 Voltage Instantaneous value
|
||||
1.1.31.7.0.255 - L1 Current Instantaneous value
|
||||
1.1.51.7.0.255 - L2 Current Instantaneous value
|
||||
1.1.71.7.0.255 - L3 Current Instantaneous value
|
||||
1.1.21.7.0.255 - L1 Active+ Instantaneous value
|
||||
1.1.41.7.0.255 - L2 Active+ Instantaneous value
|
||||
1.1.61.7.0.255 - L3 Active+ Instantaneous value
|
||||
1.1.33.7.0.255 - L1 (cos.phi) (PF) Instantaneous value
|
||||
1.1.53.7.0.255 - L2 (cos.phi) (PF) Instantaneous value
|
||||
1.1.73.7.0.255 - L3 (cos.phi) (PF) Instantaneous value
|
||||
1.1.13.7.0.255 - Avegage (cos.phi) (PF) Inst. value
|
||||
1.1.22.7.0.255 - L1 Active- Instantaneous value
|
||||
1.1.42.7.0.255 - L2 Active- Instantaneous value
|
||||
1.1.62.7.0.255 - L3 Active- Instantaneous value
|
||||
1.1.22.8.0.255 - L1 Active- Energy
|
||||
1.1.42.8.0.255 - L2 Active- Energy
|
||||
1.1.62.8.0.255 - L3 Active- Energy
|
||||
1.1.21.8.0.255 - L1 Active+ Energy
|
||||
1.1.41.8.0.255 - L2 Active+ Energy
|
||||
1.1.61.8.0.255 - L3 Active+ Energy
|
||||
112
doc/Denmark/Kamstrup_encrypted_data.xml
Normal file
@@ -0,0 +1,112 @@
|
||||
<GatewayRequest>
|
||||
<NetworkId Value="231" />
|
||||
<PhysicalDeviceAddress Value="" />
|
||||
<DataNotification>
|
||||
<LongInvokeIdAndPriority Value="40000000" />
|
||||
<DateTime Value="" />
|
||||
<NotificationBody>
|
||||
<DataValue>
|
||||
<Structure Qty="41" >
|
||||
<String Value="Kamstrup_V0001" />
|
||||
<!--1.1.1.8.0.255-->
|
||||
<OctetString Value="0101010800FF" />
|
||||
<UInt32 Value="001194CA" />
|
||||
<!--1.1.2.8.0.255-->
|
||||
<OctetString Value="0101020800FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.3.8.0.255-->
|
||||
<OctetString Value="0101030800FF" />
|
||||
<UInt32 Value="0000127E" />
|
||||
<!--1.1.4.8.0.255-->
|
||||
<OctetString Value="0101040800FF" />
|
||||
<UInt32 Value="0009550E" />
|
||||
<!--1.1.0.0.1.255-->
|
||||
<OctetString Value="0101000001FF" />
|
||||
<UInt32 Value="0144ADE1" />
|
||||
<!--1.1.1.7.0.255-->
|
||||
<OctetString Value="0101010700FF" />
|
||||
<UInt32 Value="00000531" />
|
||||
<!--1.1.2.7.0.255-->
|
||||
<OctetString Value="0101020700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.3.7.0.255-->
|
||||
<OctetString Value="0101030700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.4.7.0.255-->
|
||||
<OctetString Value="0101040700FF" />
|
||||
<UInt32 Value="00000054" />
|
||||
<!--0.1.1.0.0.255-->
|
||||
<OctetString Value="0001010000FF" />
|
||||
<!--2020-05-12 10:24:50-->
|
||||
<OctetString Value="07E4050C020A1832FF800080" />
|
||||
<!--1.1.32.7.0.255-->
|
||||
<OctetString Value="0101200700FF" />
|
||||
<UInt16 Value="00E4" />
|
||||
<!--1.1.52.7.0.255-->
|
||||
<OctetString Value="0101340700FF" />
|
||||
<UInt16 Value="00E5" />
|
||||
<!--1.1.72.7.0.255-->
|
||||
<OctetString Value="0101480700FF" />
|
||||
<UInt16 Value="00E3" />
|
||||
<!--1.1.31.7.0.255-->
|
||||
<OctetString Value="01011F0700FF" />
|
||||
<UInt32 Value="0000004B" />
|
||||
<!--1.1.51.7.0.255-->
|
||||
<OctetString Value="0101330700FF" />
|
||||
<UInt32 Value="00000070" />
|
||||
<!--1.1.71.7.0.255-->
|
||||
<OctetString Value="0101470700FF" />
|
||||
<UInt32 Value="000001E4" />
|
||||
<!--1.1.21.7.0.255-->
|
||||
<OctetString Value="0101150700FF" />
|
||||
<UInt32 Value="00000070" />
|
||||
<!--1.1.41.7.0.255-->
|
||||
<OctetString Value="0101290700FF" />
|
||||
<UInt32 Value="000000B5" />
|
||||
<!--1.1.61.7.0.255-->
|
||||
<OctetString Value="01013D0700FF" />
|
||||
<UInt32 Value="0000040C" />
|
||||
<!--1.1.33.7.0.255-->
|
||||
<OctetString Value="0101210700FF" />
|
||||
<UInt16 Value="004D" />
|
||||
<!--1.1.53.7.0.255-->
|
||||
<OctetString Value="0101350700FF" />
|
||||
<UInt16 Value="004E" />
|
||||
<!--1.1.73.7.0.255-->
|
||||
<OctetString Value="0101490700FF" />
|
||||
<UInt16 Value="0062" />
|
||||
<!--1.1.13.7.0.255-->
|
||||
<OctetString Value="01010D0700FF" />
|
||||
<UInt16 Value="0063" />
|
||||
<!--1.1.22.7.0.255-->
|
||||
<OctetString Value="0101160700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.42.7.0.255-->
|
||||
<OctetString Value="01012A0700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.62.7.0.255-->
|
||||
<OctetString Value="01013E0700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.22.8.0.255-->
|
||||
<OctetString Value="0101160800FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.42.8.0.255-->
|
||||
<OctetString Value="01012A0800FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.62.8.0.255-->
|
||||
<OctetString Value="01013E0800FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<!--1.1.21.8.0.255-->
|
||||
<OctetString Value="0101150800FF" />
|
||||
<UInt32 Value="000A8F97" />
|
||||
<!--1.1.41.8.0.255-->
|
||||
<OctetString Value="0101290800FF" />
|
||||
<UInt32 Value="0004C152" />
|
||||
<!--1.1.61.8.0.255-->
|
||||
<OctetString Value="01013D0800FF" />
|
||||
<UInt32 Value="000243DF" />
|
||||
</Structure>
|
||||
</DataValue>
|
||||
</NotificationBody>
|
||||
</DataNotification>
|
||||
</GatewayRequest>
|
||||
BIN
doc/Encrypted payload.png
Normal file
|
After Width: | Height: | Size: 1.9 MiB |
BIN
doc/Germany/Anleitung_M-Bus_Protokoll_V1.0.pdf
Normal file
BIN
doc/Green_Book_Edition_9-Excerpt.pdf
Normal file
BIN
doc/M-Bus_DOC48.PDF
Normal file
BIN
doc/Netherlands/Slimme_meter_15_a727fce1f1.pdf
Normal file
BIN
doc/Norway/Aidon-HAN-Interface-Description-v11A-ID-34331.pdf
Normal file
18
doc/Norway/Aidon_OBIS.txt
Normal file
@@ -0,0 +1,18 @@
|
||||
1.1.0.2.129.255 - List version identifier
|
||||
0.0.96.1.0.255 - Meter ID
|
||||
0.0.96.1.7.255 - Meter Model
|
||||
1.0.1.7.0.255 - Active+ Instantaneous value
|
||||
1.0.2.7.0.255 - Active- Instantaneous value
|
||||
1.0.3.7.0.255 - Reactive+ Instantaneous value
|
||||
1.0.4.7.0.255 - Reactive- Instantaneous value
|
||||
1.0.31.7.0.255 - L1 Current Instantaneous value
|
||||
1.0.51.7.0.255 - L2 Current Instantaneous value
|
||||
1.0.71.7.0.255 - L3 Current Instantaneous value
|
||||
1.0.32.7.0.255 - L1 Voltage Instantaneous value
|
||||
1.0.52.7.0.255 - L2 Voltage Instantaneous value
|
||||
1.0.72.7.0.255 - L3 Voltage Instantaneous value
|
||||
0.0.1.0.0.255 - Current date/time
|
||||
1.0.1.8.0.255 - Active+ Energy
|
||||
1.0.2.8.0.255 - Active- Energy
|
||||
1.0.3.8.0.255 - Reactive+ Energy
|
||||
1.0.4.8.0.255 - Reactive- Energy
|
||||
119
doc/Norway/Aidon_data.xml
Normal file
@@ -0,0 +1,119 @@
|
||||
<GatewayRequest>
|
||||
<NetworkId Value="231" />
|
||||
<PhysicalDeviceAddress Value="" />
|
||||
<DataNotification>
|
||||
<LongInvokeIdAndPriority Value="40000000" />
|
||||
<DateTime Value="" />
|
||||
<NotificationBody>
|
||||
<DataValue>
|
||||
<Array Qty="0D" >
|
||||
<Structure Qty="02" >
|
||||
<!--1.1.0.2.129.255-->
|
||||
<OctetString Value="0101000281FF" />
|
||||
<String Value="AIDON_V0001" />
|
||||
</Structure>
|
||||
<Structure Qty="02" >
|
||||
<!--0.0.96.1.0.255-->
|
||||
<OctetString Value="0000600100FF" />
|
||||
<String Value="0000000000000000" />
|
||||
</Structure>
|
||||
<Structure Qty="02" >
|
||||
<!--0.0.96.1.7.255-->
|
||||
<OctetString Value="0000600107FF" />
|
||||
<String Value="6534" />
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.1.7.0.255-->
|
||||
<OctetString Value="0100010700FF" />
|
||||
<UInt32 Value="00000339" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="00" />
|
||||
<Enum Value="1B" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.2.7.0.255-->
|
||||
<OctetString Value="0100020700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="00" />
|
||||
<Enum Value="1B" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.3.7.0.255-->
|
||||
<OctetString Value="0100030700FF" />
|
||||
<UInt32 Value="00000000" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="00" />
|
||||
<Enum Value="1D" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.4.7.0.255-->
|
||||
<OctetString Value="0100040700FF" />
|
||||
<UInt32 Value="00000251" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="00" />
|
||||
<Enum Value="1D" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.31.7.0.255-->
|
||||
<OctetString Value="01001F0700FF" />
|
||||
<Int16 Value="0012" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="FF" />
|
||||
<Enum Value="21" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.51.7.0.255-->
|
||||
<OctetString Value="0100330700FF" />
|
||||
<Int16 Value="0003" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="FF" />
|
||||
<Enum Value="21" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.71.7.0.255-->
|
||||
<OctetString Value="0100470700FF" />
|
||||
<Int16 Value="0016" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="FF" />
|
||||
<Enum Value="21" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.32.7.0.255-->
|
||||
<OctetString Value="0100200700FF" />
|
||||
<UInt16 Value="08FE" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="FF" />
|
||||
<Enum Value="23" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.52.7.0.255-->
|
||||
<OctetString Value="0100340700FF" />
|
||||
<UInt16 Value="08F8" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="FF" />
|
||||
<Enum Value="23" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
<Structure Qty="03" >
|
||||
<!--1.0.72.7.0.255-->
|
||||
<OctetString Value="0100480700FF" />
|
||||
<UInt16 Value="08F7" />
|
||||
<Structure Qty="02" >
|
||||
<Int8 Value="FF" />
|
||||
<Enum Value="23" />
|
||||
</Structure>
|
||||
</Structure>
|
||||
</Array>
|
||||
</DataValue>
|
||||
</NotificationBody>
|
||||
</DataNotification>
|
||||
</GatewayRequest>
|
||||
BIN
doc/Norway/Kaifa.png
Normal file
|
After Width: | Height: | Size: 442 KiB |
BIN
doc/Sweden/Aidon-RJ12.pdf
Normal file
BIN
doc/omnipower.technical.description.pdf
Normal file
30
frames/Aidon-Sweden.raw
Normal file
@@ -0,0 +1,30 @@
|
||||
7E A2 43 41 08 83 13 85 EB E6 E7 00 0F 40 00 00 00 00
|
||||
01 1B
|
||||
02 02 09 06 00 00 01 00 00 FF 09 0C 07 E5 0C 0A 05 10 39 00 FF 80 00 FF
|
||||
02 03 09 06 01 00 01 07 00 FF 06 00 00 07 E5 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 02 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 03 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 04 07 00 FF 06 00 00 02 48 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 1F 07 00 FF 10 00 09 02 02 0F FF 16 21
|
||||
02 03 09 06 01 00 33 07 00 FF 10 00 25 02 02 0F FF 16 21
|
||||
02 03 09 06 01 00 47 07 00 FF 10 00 2E 02 02 0F FF 16 21
|
||||
02 03 09 06 01 00 20 07 00 FF 12 08 E3 02 02 0F FF 16 23
|
||||
02 03 09 06 01 00 34 07 00 FF 12 08 D8 02 02 0F FF 16 23
|
||||
02 03 09 06 01 00 48 07 00 FF 12 08 DF 02 02 0F FF 16 23
|
||||
02 03 09 06 01 00 15 07 00 FF 06 00 00 00 D5 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 16 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 17 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 18 07 00 FF 06 00 00 00 36 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 29 07 00 FF 06 00 00 03 0C 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 2A 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 2B 07 00 FF 06 00 00 01 21 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 2C 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 3D 07 00 FF 06 00 00 03 F9 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 3E 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 3F 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 40 07 00 FF 06 00 00 00 E9 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 01 08 00 FF 06 03 C2 5A 64 02 02 0F 00 16 1E
|
||||
02 03 09 06 01 00 02 08 00 FF 06 00 00 00 00 02 02 0F 00 16 1E
|
||||
02 03 09 06 01 00 03 08 00 FF 06 00 04 5D 06 02 02 0F 00 16 20
|
||||
02 03 09 06 01 00 04 08 00 FF 06 00 B4 9D 89 02 02 0F 00 16 20
|
||||
1C 90 7E
|
||||
33
frames/Aidon-TN-3p.raw
Normal file
@@ -0,0 +1,33 @@
|
||||
T FF FF DA SA SA C HC HC LD LS LQ AT AI AI AI AI AD
|
||||
7E A0 2A 41 08 83 13 04 13 E6 E7 00 0F 40 00 00 00 00 01 01 02 03 09 06 01 00 01 07 00 FF 06 00 00 08 64 02 02 0F 00 16 1B E1
|
||||
7E A1 1E 41 08 83 13 EE EE E6 E7 00 0F 40 00 00 00 00 01 0D 02 02 09 06 01 01 00 02 81 FF 0A 0B 41 49 44 4F 4E 5F 56 30 30 30 31 02 02 09 06 00 00 60 01 00 FF 0A 10 37 33 35 39 39 39 32 38 39 30 34 39 37 39 39 37 02 02 09 06 00 00 60 01 07 FF 0A 04 36 35 33 34 02 03 09 06 01 00 01 07 00 FF 06 00 00 08 6C 02 02 0F 00 16 1B 02 03 09 06 01 00 02 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B 02 03 09 06 01 00 03 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D 02 03 09 06 01 00 04 07 00 FF 06 00 00 02 09 02 02 0F 00 16 1D 02 03 09 06 01 00 1F 07 00 FF 10 00 41 02 02 0F FF 16 21 02 03 09 06 01 00 33 07 00 FF 10 00 13 02 02 0F FF 16 21 02 03 09 06 01 00 47 07 00 FF 10 00 0E 02 02 0F FF 16 21 02 03 09 06 01 00 20 07 00 FF 12 08 F2 02 02 0F FF 16 23 02 03 09 06 01 00 34 07 00 FF 12 08 D1 02 02 0F FF 16 23 02 03 09 06 01 00 48 07 00 FF 12 08 E8 02 02 0F FF 16 23 8B
|
||||
7E A1 8A 41 08 83 13 EB FD E6 E7 00 0F 40 00 00 00 00 01 12 02 02 09 06 01 01 00 02 81 FF 0A 0B 41 49 44 4F 4E 5F 56 30 30 30 31 02 02 09 06 00 00 60 01 00 FF 0A 10 37 33 35 39 39 39 32 38 39 30 34 39 37 39 39 37 02 02 09 06 00 00 60 01 07 FF 0A 04 36 35 33 34 02 03 09 06 01 00 01 07 00 FF 06 00 00 03 9A 02 02 0F 00 16 1B 02 03 09 06 01 00 02 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B 02 03 09 06 01 00 03 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D 02 03 09 06 01 00 04 07 00 FF 06 00 00 02 0E 02 02 0F 00 16 1D 02 03 09 06 01 00 1F 07 00 FF 10 00 11 02 02 0F FF 16 21 02 03 09 06 01 00 33 07 00 FF 10 00 10 02 02 0F FF 16 21 02 03 09 06 01 00 47 07 00 FF 10 00 0E 02 02 0F FF 16 21 02 03 09 06 01 00 20 07 00 FF 12 08 F4 02 02 0F FF 16 23 02 03 09 06 01 00 34 07 00 FF 12 08 CD 02 02 0F FF 16 23 02 03 09 06 01 00 48 07 00 FF 12 08 DC 02 02 0F FF 16 23 02 02 09 06 00 00 01 00 00 FF 09 0C 07 E5 03 18 03 08 00 00 FF 00 00 00 02 03 09 06 01 00 01 08 00 FF 06 00 47 F0 34 02 02 0F 01 16 1E 02 03 09 06 01 00 02 08 00 FF 06 00 00 00 00 02 02 0F 01 16 1E 02 03 09 06 01 00 03 08 00 FF 06 00 00 21 9E 02 02 0F 01 16 20 02 03 09 06 01 00 04 08 00 FF 06 00 08 E0 21 02 02 0F 01 16 20 57
|
||||
|
||||
7E A1 8A 41 08 83 13 EB FD E6 E7 00
|
||||
0F
|
||||
40 00 00 00 00
|
||||
01 12
|
||||
02 02 09 06 01 01 00 02 81 FF 0A 0B 41 49 44 4F 4E 5F 56 30 30 30 31
|
||||
02 02 09 06 00 00 60 01 00 FF 0A 10 37 33 35 39 39 39 32 38 39 30 34 39 37 39 39 37
|
||||
02 02 09 06 00 00 60 01 07 FF 0A 04 36 35 33 34
|
||||
02 03 09 06 01 00 01 07 00 FF 06 00 00 09 6D 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 02 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B
|
||||
02 03 09 06 01 00 03 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1D
|
||||
02 03 09 06 01 00 04 07 00 FF 06 00 00 02 5B 02 02 0F 00 16 1D
|
||||
|
||||
Object with three values Value Object with two values
|
||||
| Obis code | | Scaling
|
||||
| | | | | Unit
|
||||
02 03 09 06 01 00 1F 07 00 FF 10 00 11 02 02 0F FF 16 21
|
||||
02 03 09 06 01 00 33 07 00 FF 10 00 03 02 02 0F FF 16 21
|
||||
02 03 09 06 01 00 47 07 00 FF 10 00 5A 02 02 0F FF 16 21
|
||||
02 03 09 06 01 00 20 07 00 FF 12 09 04 02 02 0F FF 16 23
|
||||
02 03 09 06 01 00 34 07 00 FF 12 09 02 02 02 0F FF 16 23
|
||||
02 03 09 06 01 00 48 07 00 FF 12 08 EC 02 02 0F FF 16 23
|
||||
02 02 09 06 00 00 01 00 00 FF 09 0C 07 E5 0A 1F 00 14 00 00 FF 00 00 00
|
||||
02 03 09 06 01 00 01 08 00 FF 06 00 56 9F 52 02 02 0F 01 16 1E
|
||||
02 03 09 06 01 00 02 08 00 FF 06 00 00 00 00 02 02 0F 01 16 1E
|
||||
02 03 09 06 01 00 03 08 00 FF 06 00 00 22 D0 02 02 0F 01 16 20
|
||||
02 03 09 06 01 00 04 08 00 FF 06 00 0A F5 EC 02 02 0F 01 16 20
|
||||
51 D7
|
||||
7E
|
||||
34
frames/Kaifa-TN-3p.raw
Normal file
@@ -0,0 +1,34 @@
|
||||
T FF FF DA SA SA C HC HC LD LS LQ AT AI AI AI AI AD
|
||||
7E A0 27 01 02 01 10 5A 87 E6 E7 00 0F 40 00 00 00 09 0C 07 E5 03 17 02 13 1A 3A FF 80 00 00
|
||||
02 01 // Frame type and size
|
||||
06 00 00 0B F3 // Active power
|
||||
5B 05 7E // CRC and end tag
|
||||
|
||||
T FF FF DA SA SA C HC HC LD LS LQ AT AI AI AI AI AD
|
||||
7E A0 78 01 02 01 10 C4 98 E6 E7 00 0F 40 00 00 00 09 0C 07 E5 03 17 02 13 1B 00 FF 80 00 00
|
||||
02 0D // Frame type and size
|
||||
09 07 4B 46 4D 5F 30 30 31 // List version
|
||||
09 10 XX XX XX XX XX XX XX XX XX XX 35 33 34 34 39 33 // Meter ID
|
||||
09 07 4D 41 33 30 34 48 34 // Meter type
|
||||
06 00 00 0C 21 // Active import
|
||||
06 00 00 00 00 // Active export
|
||||
06 00 00 00 00 // Reactive import
|
||||
06 00 00 01 9F // Reactive export
|
||||
06 00 00 0B F3 // I1
|
||||
06 00 00 05 0B // I2
|
||||
06 00 00 25 11 // I3
|
||||
06 00 00 09 44 // U1
|
||||
06 00 00 09 49 // U2
|
||||
06 00 00 09 39 // U3
|
||||
C9 95 7E // CRC and end tag
|
||||
|
||||
|
||||
7E A0 9A 01 02 01 10 AA A5 E6 E7 00 0F 40 00 00 00 09 0C 07 E5 03 17 02 13 00 0A FF 80 00 00
|
||||
02 12 09 07 4B 46 4D 5F 30 30 31
|
||||
09 10 XX XX XX XX XX XX XX XX XX XX 35 33 34 34 39 33
|
||||
09 07 4D 41 33 30 34 48 34
|
||||
06 00 00 09 99
|
||||
06 00 00 00 00 06 00 00 00 00 06 00 00 01 67 06 00 00 03 BF 06 00 00 05 05
|
||||
06 00 00 24 34 06 00 00 09 45 06 00 00 09 4F 06 00 00 09 3B
|
||||
09 0C 07 E5 03 17 02 13 00 0A FF 80 00 00 06 01 34 3B 5D 06 00 00 00 00 06 00 00 09 36 06 00 3C 7A 98 DA 15 7E
|
||||
7E A0 79 01 02 01 10 80 93 E6 E7 00 0F 40 00 00 00 09 0C 07 E1 09 0E 04 15 1F 14 FF 80 00 00 02 0D 09 07 4B 46 4D 5F 30 30 31 09 10 36 39 37 30 36 33 31 34 30 31 37 35 33 39 38 35 09 08 4D 41 33 30 34 48 33 45 06 00 00 04 0C 06 00 00 00 00 06 00 00 00 00 06 00 00 00 4E 06 00 00 07 C1 06 00 00 0C 9E 06 00 00 0D 7E 06 00 00 09 5F 06 00 00 00 00 06 00 00 09 66 87 96 7E
|
||||
51
frames/Kamstrup-1p.raw
Normal file
@@ -0,0 +1,51 @@
|
||||
7E A0 BA 2B 21 13 ED AA E6 E7 00 0F 00 00 00 00
|
||||
0C 07 E6 02 05 06 0D 00 0A FF 80 00 00
|
||||
02 19
|
||||
0A 0E 4B 61 6D 73 74 72 75 70 5F 56 30 30 30 31
|
||||
09 06 01 01 00 00 05 FF 0A 10 35 37 30 36 35 36 37 32 37 31 35 33 33 32 30 37
|
||||
09 06 01 01 60 01 01 FF 0A 12 36 38 36 31 31 31 31 42 4E 32 34 32 31 30 31 30 34 30
|
||||
09 06 01 01 01 07 00 FF 06 00 00 02 68
|
||||
09 06 01 01 02 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 03 07 00 FF 06 00 00 00 53
|
||||
09 06 01 01 04 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 1F 07 00 FF 06 00 00 01 22
|
||||
00 00 00 00
|
||||
09 06 01 01 20 07 00 FF 12 00 E2
|
||||
00 00 00 00
|
||||
05 D8 7E
|
||||
|
||||
7E A0 BA 2B 21 13 ED AA E6 E7 00 0F 00 00 00 00
|
||||
0C 07 E6 02 05 06 0D 00 14 FF 80 00 00
|
||||
02 19
|
||||
0A 0E 4B 61 6D 73 74 72 75 70 5F 56 30 30 30 31
|
||||
09 06 01 01 00 00 05 FF 0A 10 35 37 30 36 35 36 37 32 37 31 35 33 33 32 30 37
|
||||
09 06 01 01 60 01 01 FF 0A 12 36 38 36 31 31 31 31 42 4E 32 34 32 31 30 31 30 34 30
|
||||
09 06 01 01 01 07 00 FF 06 00 00 02 68
|
||||
09 06 01 01 02 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 03 07 00 FF 06 00 00 00 53
|
||||
09 06 01 01 04 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 1F 07 00 FF 06 00 00 01 23
|
||||
00 00 00 00
|
||||
09 06 01 01 20 07 00 FF 12 00 E1
|
||||
00 00 00 00
|
||||
8E 5E 7E
|
||||
|
||||
7E A1 04 2B 21 13 77 6E E6 E7 00 0F 00 00 00 00
|
||||
0C 07 E6 02 05 06 0D 00 19 FF 80 00 00
|
||||
02 23 0A 0E 4B 61 6D 73 74 72 75 70 5F 56 30 30 30 31
|
||||
09 06 01 01 00 00 05 FF 0A 10 35 37 30 36 35 36 37 32 37 31 35 33 33 32 30 37
|
||||
09 06 01 01 60 01 01 FF 0A 12 36 38 36 31 31 31 31 42 4E 32 34 32 31 30 31 30 34 30
|
||||
09 06 01 01 01 07 00 FF 06 00 00 02 6B
|
||||
09 06 01 01 02 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 03 07 00 FF 06 00 00 00 54
|
||||
09 06 01 01 04 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 1F 07 00 FF 06 00 00 01 25
|
||||
00 00 00 00
|
||||
09 06 01 01 20 07 00 FF 12 00 E1
|
||||
00 00 00 00
|
||||
09 06 00 01 01 00 00 FF 09 0C 07 E6 02 05 06 0D 00 19 FF 80 00 00
|
||||
09 06 01 01 01 08 00 FF 06 00 12 CF 93
|
||||
09 06 01 01 02 08 00 FF 06 00 00 00 00
|
||||
09 06 01 01 03 08 00 FF 06 00 00 8C CE
|
||||
09 06 01 01 04 08 00 FF 06 00 05 E5 04
|
||||
7F E9 7E
|
||||
23
frames/Kamstrup-Sweden.raw
Normal file
@@ -0,0 +1,23 @@
|
||||
7E A1 2C 2B 21 13 FC 04 E6 E7 00 0F 00 00 00 00
|
||||
0C 07 E6 02 12 05 16 00 23 FF 80 00 00
|
||||
02 23
|
||||
0A 0E 4B 61 6D 73 74 72 75 70 5F 56 30 30 30 31
|
||||
09 06 01 01 00 00 05 FF 0A 10 35 37 30 36 35 36 37 33 33 31 33 32 33 35 32 36
|
||||
09 06 01 01 60 01 01 FF 0A 12 36 38 34 31 31 33 31 42 4E 32 34 35 31 30 31 30 39 32
|
||||
09 06 01 01 01 07 00 FF 06 00 00 08 DD
|
||||
09 06 01 01 02 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 03 07 00 FF 06 00 00 00 00
|
||||
09 06 01 01 04 07 00 FF 06 00 00 01 90
|
||||
09 06 01 01 1F 07 00 FF 06 00 00 01 1F
|
||||
09 06 01 01 33 07 00 FF 06 00 00 02 57
|
||||
09 06 01 01 47 07 00 FF 06 00 00 00 6A
|
||||
09 06 01 01 20 07 00 FF 12 00 F1
|
||||
09 06 01 01 34 07 00 FF 12 00 F0
|
||||
09 06 01 01 48 07 00 FF 12 00 F3
|
||||
09 06 00 01 01 00 00 FF 09 0C 07 E6 02 12 05 16 00 23 FF 80 00 00
|
||||
09 06 01 01 01 08 00 FF 06 01 E8 7F 4E
|
||||
09 06 01 01 02 08 00 FF 06 00 00 00 00
|
||||
09 06 01 01 03 08 00 FF 06 00 58 71 8B
|
||||
09 06 01 01 04 08 00 FF 06 00 10 60 23
|
||||
B8 1C
|
||||
7E
|
||||
51
frames/Kamstup-Encrypted.raw
Normal file
@@ -0,0 +1,51 @@
|
||||
# After decode:
|
||||
7E
|
||||
A1 E9 // Frame type and size
|
||||
41 03 13 C6 37 E6 E7 00
|
||||
DB // Encrypted
|
||||
08 4B 41 4D 45 01 AC 4D 6E // System title
|
||||
82 // Prefix for 2-byte length
|
||||
01 D0 // Length 464
|
||||
30 // Security tag 0011 0000, 0=Compression off, 0=Unicast, 1=Encryption, 0=Authentication, 0000= Security Suite ID
|
||||
00 00 A3 2F // Frame counter
|
||||
|
||||
// Decrypted frame below
|
||||
0F 00 00 00 00
|
||||
0C 07 E4 05 0C 02 0A 19 00 FF 80 00 80 // Package timestamp
|
||||
|
||||
02 41
|
||||
0A 0E 4B 61 6D 73 74 72 75 70 5F 56 30 30 30 31 - List ID
|
||||
09 06 01 01 01 08 00 FF 06 00 11 94 CA - Active+ Energy
|
||||
09 06 01 01 02 08 00 FF 06 00 00 00 00 - Active- Energy
|
||||
09 06 01 01 03 08 00 FF 06 00 00 12 7E - Reactive+ Energy
|
||||
09 06 01 01 04 08 00 FF 06 00 09 55 0E - Reactive- Energy
|
||||
09 06 01 01 00 00 01 FF 06 01 44 AD E1 - Electricity ID?
|
||||
09 06 01 01 01 07 00 FF 06 00 00 05 CC - Active+ Instantaneous value
|
||||
09 06 01 01 02 07 00 FF 06 00 00 00 00 - Active- Instantaneous value
|
||||
09 06 01 01 03 07 00 FF 06 00 00 00 00 - Reactive+ Instantaneous value
|
||||
09 06 01 01 04 07 00 FF 06 00 00 00 17 - Reactive- Instantaneous value
|
||||
09 06 00 01 01 00 00 FF 09 0C 07 E4 05 0C 02 0A 19 00 FF 80 00 80 - Current date/time
|
||||
09 06 01 01 20 07 00 FF 12 00 E5 - L1 Voltage Instantaneous value
|
||||
09 06 01 01 34 07 00 FF 12 00 E5 - L2 Voltage Instantaneous value
|
||||
09 06 01 01 48 07 00 FF 12 00 E3 - L3 Voltage Instantaneous value
|
||||
09 06 01 01 1F 07 00 FF 06 00 00 00 4B - L1 Current Instantaneous value
|
||||
09 06 01 01 33 07 00 FF 06 00 00 00 AA - L2 Current Instantaneous value
|
||||
09 06 01 01 47 07 00 FF 06 00 00 01 E4 - L3 Current Instantaneous value
|
||||
09 06 01 01 15 07 00 FF 06 00 00 00 71 - L1 Active+ Instantaneous value
|
||||
09 06 01 01 29 07 00 FF 06 00 00 01 54 - L2 Active+ Instantaneous value
|
||||
09 06 01 01 3D 07 00 FF 06 00 00 04 07 - L3 Active+ Instantaneous value
|
||||
09 06 01 01 21 07 00 FF 12 00 4D - L1 (cos.phi) (PF) Instantaneous value
|
||||
09 06 01 01 35 07 00 FF 12 00 5F - L2 (cos.phi) (PF) Instantaneous value
|
||||
09 06 01 01 49 07 00 FF 12 00 62 - L3 (cos.phi) (PF) Instantaneous value
|
||||
09 06 01 01 0D 07 00 FF 12 00 63 - Avegage (cos.phi) (PF) Inst. value
|
||||
09 06 01 01 16 07 00 FF 06 00 00 00 00 - L1 Active- Instantaneous value
|
||||
09 06 01 01 2A 07 00 FF 06 00 00 00 00 - L2 Active- Instantaneous value
|
||||
09 06 01 01 3E 07 00 FF 06 00 00 00 00 - L3 Active- Instantaneous value
|
||||
09 06 01 01 16 08 00 FF 06 00 00 00 00 - L1 Active- Energy
|
||||
09 06 01 01 2A 08 00 FF 06 00 00 00 00 - L2 Active- Energy
|
||||
09 06 01 01 3E 08 00 FF 06 00 00 00 00 - L3 Active- Energy
|
||||
09 06 01 01 15 08 00 FF 06 00 0A 8F 97 - L1 Active+ Energy
|
||||
09 06 01 01 29 08 00 FF 06 00 04 C1 53 - L2 Active+ Energy
|
||||
09 06 01 01 3D 08 00 FF 06 00 02 43 E0 - L3 Active+ Energy
|
||||
|
||||
5B C3 CD 5E 79 18 18 DA 9F 97 85 FF 5A 84 7E
|
||||
18
frames/Kamstup-TN-3p.raw
Normal file
@@ -0,0 +1,18 @@
|
||||
7E A0 E2 2B 21 13 23 9A E6 E7 00 0F 00 00 00 00
|
||||
0C 07 E5 0B 11 03 0B 32 00 FF 80 00 00
|
||||
|
||||
02 19
|
||||
0A 0E 4B 61 6D 73 74 72 75 70 5F 56 30 30 30 31 - List ID
|
||||
09 06 01 01 00 00 05 FF 0A 10 XX XX XX XX XX XX XX XX XX XX XX XX XX XX XX XX - Meter ID
|
||||
09 06 01 01 60 01 01 FF 0A 12 36 38 34 31 31 33 31 42 4E 32 34 33 31 30 31 30 34 30 - Meter model
|
||||
09 06 01 01 01 07 00 FF 06 00 00 05 E6 - Active+
|
||||
09 06 01 01 02 07 00 FF 06 00 00 00 00 - Active-
|
||||
09 06 01 01 03 07 00 FF 06 00 00 00 00 - Reactive+
|
||||
09 06 01 01 04 07 00 FF 06 00 00 01 92 - Reactive-
|
||||
09 06 01 01 1F 07 00 FF 06 00 00 00 A1 - L1 current
|
||||
09 06 01 01 33 07 00 FF 06 00 00 00 C1 - L2 current
|
||||
09 06 01 01 47 07 00 FF 06 00 00 01 8E - L3 current
|
||||
09 06 01 01 20 07 00 FF 12 00 EB - L1 voltage
|
||||
09 06 01 01 34 07 00 FF 12 00 EC - L2 voltage
|
||||
09 06 01 01 48 07 00 FF 12 00 EC - L3 voltage
|
||||
EF 5F 7E
|
||||
45
frames/austria.raw
Normal file
@@ -0,0 +1,45 @@
|
||||
// HDLC header
|
||||
68
|
||||
01 01 // Format (0x00) and total length (257)
|
||||
|
||||
68 // Start
|
||||
53 // Control field
|
||||
FF // Address (Broadcast address)
|
||||
|
||||
// LLC
|
||||
00 // Control information field
|
||||
01 // Source SAP
|
||||
67 // Destination SAP
|
||||
|
||||
DB // Encrypted
|
||||
08 53 41 47 59 05 E6 D9 FD // System title
|
||||
81 // Prefix for 1-byte length
|
||||
F8 // Length (248), starting from 0xDB and including end byte
|
||||
20 // Security tag 0010 0000, 0=Compression off, 0=Unicast, 1=Encryption, 0=No auth, 0000= Security Suite ID
|
||||
00 72 00 76 // Frame counter
|
||||
|
||||
|
||||
68 01 01 68
|
||||
53 FF 10 01 67
|
||||
DB
|
||||
08 53 41 47 59 05 E6 D9 FD
|
||||
81 F8
|
||||
20
|
||||
00 01 A0 E0
|
||||
0F 80 3E 37 71
|
||||
0C 07 E5 0C 1B 01 0E 00 2D 00 FF C4 02 // Frame timestamp
|
||||
02 23 // 35 items
|
||||
09 0C 07 E5 0C 1B 01 0E 00 2D 00 FF C4 02 // Meter timestamp
|
||||
09 06 01 00 01 08 00 FF 06 00 43 3D 0A 02 02 0F 00 16 1E
|
||||
09 06 01 00 02 08 00 FF 06 00 00 01 03 02 02 0F 00 16 1E
|
||||
09 06 01 00 01 07 00 FF 06 00 00 01 FE 02 02 0F 00 16 1B
|
||||
09 06 01 00 02 07 00 FF 06 00 00 00 00 02 02 0F 00 16 1B
|
||||
09 06 01 00 20 07 00 FF 12 09 34 02 02 0F FF 16 23
|
||||
09 06 01 00 34 07 00 FF 12 09 34 02 02 0F FF 16 23
|
||||
09 06 01 00 48 07 00 FF 12 09 2D 02 02 0F FF 16 23
|
||||
09 06 01 00 1F 07 00 FF 12 00 63 02 02 0F FE 16 21
|
||||
09 06 01 00 33 07 00 FF 12 00 3F 02 02 0F FE 16 21
|
||||
09 06 01 00 47 07 00 FF 12 00 54 02 02 0F FE 16 21
|
||||
09 06 01 00 0D 07 00 FF 10 03 CF 02 02 0F FD 16 FF // Power factor
|
||||
09 0C 31 37 38 32 31 30 30 31 35 31 36 35 // Meter ID
|
||||
01 67
|
||||
32
frames/decoding.txt
Normal file
@@ -0,0 +1,32 @@
|
||||
T = Tag
|
||||
FF = Frame format (4 bit type, 1 bit segmentation, 11 bit frame length)
|
||||
DA = Destination Address (1-4 bytes, LSB=1 terminates)
|
||||
SA = Source address (1-4 bytes, LSB=1 terminates)
|
||||
C = Control (1 byte)
|
||||
HC = HCS (2 bytes)
|
||||
|
||||
LD = LLC Destination
|
||||
LS = LLC Remote
|
||||
LQ = LLC Quality
|
||||
|
||||
AT = Tag (0x0F = unencrypted, 0xDB = encrypted) Not really documented that well...
|
||||
AI = Invoke ID and priority (4 bytes)
|
||||
AD = Date and time
|
||||
AS = System title
|
||||
CT = Cipher frame tag ? Undocumented
|
||||
CL = Lenght of Cipher frame. Length of payload will be this number - 5 (control and counter in start) - 12 (GCM tag appended after payload)
|
||||
CC = Security control
|
||||
CO = Invocation counter
|
||||
|
||||
Security control bits
|
||||
01234567
|
||||
00110000 (0x30)
|
||||
0 = read acces
|
||||
1 = write access
|
||||
2 = Authenticated req
|
||||
3 = Encrypted req
|
||||
4 = Digitally signed req
|
||||
5 = Authenticated res
|
||||
6 = Encrypted res
|
||||
7 = Digitally signed res
|
||||
|
||||
@@ -1,37 +1 @@
|
||||
# Hardware options
|
||||
|
||||
There are currently two possible hardware options for this project, both in need of external power supply. A self powered board is under development by a member of the community and is currently being tested.
|
||||
|
||||
## Hardware v1 by [@roarfred](https://github.com/roarfred)
|
||||
Composed from a ESP12E (or F) chip, this ESP8266 based board is designed specifically for this project with an on board M-bus chip.
|
||||
|
||||
Building this project will require some skills in ordering and assembling electronic circuits as well as programming. No detailed instructions are available.
|
||||
|
||||

|
||||
|
||||
*The completed board mounted in a [3D printed enclosure](/Enclosure)*
|
||||
|
||||
## Assembly of readily available modules
|
||||
You can also use a ESP based development board and combine this with a M-Bus module. Here are a few boards that have been tested, each one has a dedicated firmware file in the releases section.
|
||||
|
||||
### ESP8266 based boards
|
||||
|
||||
[Wemos D1 mini](https://docs.wemos.cc/en/latest/d1/d1_mini.html)
|
||||
- M-Bus connected to GPIO5 (D1)
|
||||
- Jump GPIO4 (D2) to GND to force AP mode during boot
|
||||
|
||||
### ESP32 based boards
|
||||
|
||||
[Wemos D32](https://docs.wemos.cc/en/latest/d32/d32.html)
|
||||
- M-Bus connected to GPIO21
|
||||
- Jump GPIO4 to GND to force AP mode during boot
|
||||
|
||||
[Adafruit HUZZAH32](https://www.adafruit.com/product/3405)
|
||||
- M-Bus connected to GPIO16
|
||||
|
||||
|
||||
Combine one of above board with an M-Bus module. Connect 3.3v and GND together between the boards and connect the TX pin from the M-Bus board to the dedicated M-Bus pin on the ESP board.
|
||||
|
||||
[TSS721 M-BUS module board](https://www.aliexpress.com/item/TSS721/32751482255.html)
|
||||
|
||||

|
||||
[See Hardware page in Wiki](https://github.com/gskjold/AmsToMqttBridge/wiki)
|
||||
|
||||
BIN
hardware/img/pow-k-kamstrup.jpg
Normal file
|
After Width: | Height: | Size: 1.1 MiB |
BIN
hardware/img/pow-u-universal.jpg
Normal file
|
After Width: | Height: | Size: 91 KiB |
3
hardware/v1/kicad/HAN_ESP_TSS721-rescue.dcm
Normal file
@@ -0,0 +1,3 @@
|
||||
EESchema-DOCLIB Version 2.0
|
||||
#
|
||||
#End Doc Library
|
||||
356
hardware/v1/kicad/HAN_ESP_TSS721-rescue.lib
Normal file
@@ -0,0 +1,356 @@
|
||||
EESchema-LIBRARY Version 2.4
|
||||
#encoding utf-8
|
||||
#
|
||||
# BSS84-transistors
|
||||
#
|
||||
DEF BSS84-transistors Q 0 0 Y N 1 F N
|
||||
F0 "Q" 200 75 50 H V L CNN
|
||||
F1 "BSS84-transistors" 200 0 50 H V L CNN
|
||||
F2 "TO_SOT_Packages_SMD:SOT-23" 200 -75 50 H I L CIN
|
||||
F3 "" 0 0 50 H I L CNN
|
||||
$FPLIST
|
||||
SOT?23*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
C 65 0 111 0 1 10 N
|
||||
C 100 -70 11 0 1 0 F
|
||||
C 100 70 11 0 1 0 F
|
||||
P 2 0 1 0 0 0 10 0 N
|
||||
P 2 0 1 0 30 -70 100 -70 N
|
||||
P 2 0 1 10 30 -50 30 -90 N
|
||||
P 2 0 1 0 30 0 100 0 N
|
||||
P 2 0 1 10 30 20 30 -20 N
|
||||
P 2 0 1 0 30 70 100 70 N
|
||||
P 2 0 1 10 30 90 30 50 N
|
||||
P 2 0 1 0 100 -70 100 -100 N
|
||||
P 2 0 1 0 100 -70 100 0 N
|
||||
P 2 0 1 0 100 100 100 70 N
|
||||
P 3 0 1 10 10 75 10 -75 10 -75 N
|
||||
P 4 0 1 0 90 0 50 -15 50 15 90 0 F
|
||||
P 4 0 1 0 100 -70 130 -70 130 70 100 70 N
|
||||
P 4 0 1 0 110 -20 115 -15 145 -15 150 -10 N
|
||||
P 4 0 1 0 130 -15 115 10 145 10 130 -15 N
|
||||
X G 1 -200 0 200 R 50 50 1 1 I
|
||||
X S 2 100 -200 100 U 50 50 1 1 P
|
||||
X D 3 100 200 100 D 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# CP-device
|
||||
#
|
||||
DEF CP-device C 0 10 N Y 1 F N
|
||||
F0 "C" 25 100 50 H V L CNN
|
||||
F1 "CP-device" 25 -100 50 H V L CNN
|
||||
F2 "" 38 -150 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
CP_*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -90 20 -90 40 0 1 0 N
|
||||
S -90 20 90 20 0 1 0 N
|
||||
S 90 -20 -90 -40 0 1 0 F
|
||||
S 90 40 -90 40 0 1 0 N
|
||||
S 90 40 90 20 0 1 0 N
|
||||
P 2 0 1 0 -70 90 -30 90 N
|
||||
P 2 0 1 0 -50 110 -50 70 N
|
||||
X ~ 1 0 150 110 D 50 50 1 1 P
|
||||
X ~ 2 0 -150 110 U 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# CP_Small-device
|
||||
#
|
||||
DEF CP_Small-device C 0 10 N N 1 F N
|
||||
F0 "C" 10 70 50 H V L CNN
|
||||
F1 "CP_Small-device" 10 -80 50 H V L CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
CP_*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -60 -12 60 -27 0 1 0 F
|
||||
S -60 27 60 12 0 1 0 N
|
||||
P 2 0 1 0 -50 60 -30 60 N
|
||||
P 2 0 1 0 -40 50 -40 70 N
|
||||
X ~ 1 0 100 73 D 50 50 1 1 P
|
||||
X ~ 2 0 -100 73 U 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# C_Small-device
|
||||
#
|
||||
DEF C_Small-device C 0 10 N N 1 F N
|
||||
F0 "C" 10 70 50 H V L CNN
|
||||
F1 "C_Small-device" 10 -80 50 H V L CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
C_*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
P 2 0 1 13 -60 -20 60 -20 N
|
||||
P 2 0 1 12 -60 20 60 20 N
|
||||
X ~ 1 0 100 80 D 50 50 1 1 P
|
||||
X ~ 2 0 -100 80 U 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# DS18B20-maxim
|
||||
#
|
||||
DEF DS18B20-maxim U 0 40 Y Y 1 F N
|
||||
F0 "U" -150 250 50 H V C CNN
|
||||
F1 "DS18B20-maxim" 0 -250 50 H V C CNN
|
||||
F2 "" -150 250 50 H I C CNN
|
||||
F3 "" -150 250 50 H I C CNN
|
||||
$FPLIST
|
||||
TO-92_*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -200 200 200 -200 0 1 0 N
|
||||
X GND 1 -300 -100 100 R 50 50 1 1 W
|
||||
X DQ 2 -300 0 100 R 50 50 1 1 B
|
||||
X VDD 3 -300 100 100 R 50 50 1 1 W
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# ESP-12E-ESP8266
|
||||
#
|
||||
DEF ESP-12E-ESP8266 U 0 40 Y Y 1 F N
|
||||
F0 "U" 0 -100 50 H V C CNN
|
||||
F1 "ESP-12E-ESP8266" 0 100 50 H V C CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
ESP-12E
|
||||
ESP-12E_SMD
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -600 -600 600 600 1 0 0 N
|
||||
X REST 1 -900 300 300 R 50 50 1 1 I
|
||||
X GPIO15 10 900 -300 300 L 50 50 1 1 B
|
||||
X GPIO2 11 900 -200 300 L 50 50 1 1 B
|
||||
X GPIO0 12 900 -100 300 L 50 50 1 1 B
|
||||
X GPIO4 13 900 0 300 L 50 50 1 1 B
|
||||
X GPIO5 14 900 100 300 L 50 50 1 1 B
|
||||
X RXD 15 900 200 300 L 50 50 1 1 I
|
||||
X TXD 16 900 300 300 L 50 50 1 1 O
|
||||
X CS0 17 -250 -900 300 U 50 50 1 1 B
|
||||
X MISO 18 -150 -900 300 U 50 50 1 1 B
|
||||
X GPIO9 19 -50 -900 300 U 50 50 1 1 B
|
||||
X ADC 2 -900 200 300 R 50 50 1 1 P
|
||||
X GPIO10 20 50 -900 300 U 50 50 1 1 B
|
||||
X MOSI 21 150 -900 300 U 50 50 1 1 B
|
||||
X SCLK 22 250 -900 300 U 50 50 1 1 B
|
||||
X CH_PD 3 -900 100 300 R 50 50 1 1 I
|
||||
X GPIO16 4 -900 0 300 R 50 50 1 1 B
|
||||
X GPIO14 5 -900 -100 300 R 50 50 1 1 B
|
||||
X GPIO12 6 -900 -200 300 R 50 50 1 1 B
|
||||
X GPIO13 7 -900 -300 300 R 50 50 1 1 B
|
||||
X VCC 8 -900 -400 300 R 50 50 1 1 W
|
||||
X GND 9 900 -400 300 L 50 50 1 1 W
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# FTDI_PROG_HDR-ESPProgHeader
|
||||
#
|
||||
DEF FTDI_PROG_HDR-ESPProgHeader J 0 40 Y N 1 F N
|
||||
F0 "J" 0 300 50 H V C CNN
|
||||
F1 "FTDI_PROG_HDR-ESPProgHeader" 0 -400 50 H V C CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
Connector*:*_??x*mm*
|
||||
Connector*:*1x??x*mm*
|
||||
Pin?Header?Straight?1X*
|
||||
Pin?Header?Angled?1X*
|
||||
Socket?Strip?Straight?1X*
|
||||
Socket?Strip?Angled?1X*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -50 -295 0 -305 1 1 6 N
|
||||
S -50 -195 0 -205 1 1 6 N
|
||||
S -50 -95 0 -105 1 1 6 N
|
||||
S -50 5 0 -5 1 1 6 N
|
||||
S -50 105 0 95 1 1 6 N
|
||||
S -50 205 0 195 1 1 6 N
|
||||
S -50 250 50 -350 1 1 10 f
|
||||
X Pin_1 1 -200 200 150 R 50 50 1 1 N
|
||||
X Pin_2 2 -200 100 150 R 50 50 1 1 P
|
||||
X Pin_3 3 -200 0 150 R 50 50 1 1 P
|
||||
X Pin_4 4 -200 -100 150 R 50 50 1 1 N
|
||||
X Pin_5 5 -200 -200 150 R 50 50 1 1 N
|
||||
X Pin_6 6 -200 -300 150 R 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# Jumper-device
|
||||
#
|
||||
DEF Jumper-device JP 0 30 Y N 1 F N
|
||||
F0 "JP" 0 150 50 H V C CNN
|
||||
F1 "Jumper-device" 0 -80 50 H V C CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
DRAW
|
||||
A 0 -26 125 1426 373 0 1 0 N -98 50 99 50
|
||||
C -100 0 35 0 1 0 N
|
||||
C 100 0 35 0 1 0 N
|
||||
X 1 1 -300 0 165 R 50 50 0 1 P
|
||||
X 2 2 300 0 165 L 50 50 0 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# LM1117-3.3-regul
|
||||
#
|
||||
DEF LM1117-3.3-regul U 0 10 Y Y 1 F N
|
||||
F0 "U" -150 125 50 H V C CNN
|
||||
F1 "LM1117-3.3-regul" 0 125 50 H V L CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
SOT?223*
|
||||
TO?263*
|
||||
TO?252*
|
||||
TO?220*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -200 -200 200 75 0 1 10 f
|
||||
X GND 1 0 -300 100 U 50 50 1 1 W
|
||||
X VO 2 300 0 100 L 50 50 1 1 w
|
||||
X VI 3 -300 0 100 R 50 50 1 1 W
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# RJ45-conn
|
||||
#
|
||||
DEF RJ45-conn J 0 40 Y Y 1 F N
|
||||
F0 "J" 200 500 50 H V C CNN
|
||||
F1 "RJ45-conn" -150 500 50 H V C CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
DRAW
|
||||
S -400 -300 400 450 0 1 10 f
|
||||
P 3 0 1 0 -175 200 -175 250 -175 250 N
|
||||
P 3 0 1 0 -125 250 -125 200 -125 200 N
|
||||
P 3 0 1 0 -75 250 -75 200 -75 200 N
|
||||
P 3 0 1 0 -25 250 -25 200 -25 200 N
|
||||
P 3 0 1 0 25 250 25 200 25 200 N
|
||||
P 3 0 1 0 75 250 75 200 75 200 N
|
||||
P 3 0 1 0 125 200 125 250 125 250 N
|
||||
P 3 0 1 0 175 200 175 250 175 250 N
|
||||
P 14 0 1 0 -225 250 225 250 225 -150 125 -150 125 -200 75 -200 75 -250 -75 -250 -75 -200 -125 -200 -125 -150 -225 -150 -225 250 -225 250 N
|
||||
X ~ 1 -350 -450 150 U 50 50 1 1 P
|
||||
X ~ 2 -250 -450 150 U 50 50 1 1 P
|
||||
X ~ 3 -150 -450 150 U 50 50 1 1 P
|
||||
X ~ 4 -50 -450 150 U 50 50 1 1 P
|
||||
X ~ 5 50 -450 150 U 50 50 1 1 P
|
||||
X ~ 6 150 -450 150 U 50 50 1 1 P
|
||||
X ~ 7 250 -450 150 U 50 50 1 1 P
|
||||
X ~ 8 350 -450 150 U 50 50 1 1 P
|
||||
X SHIELD 9 550 350 150 L 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# R_Small-device
|
||||
#
|
||||
DEF R_Small-device R 0 10 N N 1 F N
|
||||
F0 "R" 30 20 50 H V L CNN
|
||||
F1 "R_Small-device" 30 -40 50 H V L CNN
|
||||
F2 "" 0 0 50 H I C CNN
|
||||
F3 "" 0 0 50 H I C CNN
|
||||
$FPLIST
|
||||
R_*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -30 70 30 -70 0 1 8 N
|
||||
X ~ 1 0 100 30 D 50 50 1 1 P
|
||||
X ~ 2 0 -100 30 U 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# SW_Push-switches
|
||||
#
|
||||
DEF SW_Push-switches SW 0 40 N N 1 F N
|
||||
F0 "SW" 50 100 50 H V L CNN
|
||||
F1 "SW_Push-switches" 0 -60 50 H V C CNN
|
||||
F2 "" 0 200 50 H I C CNN
|
||||
F3 "" 0 200 50 H I C CNN
|
||||
DRAW
|
||||
C -80 0 20 0 1 0 N
|
||||
C 80 0 20 0 1 0 N
|
||||
P 2 0 1 0 0 50 0 120 N
|
||||
P 2 0 1 0 100 50 -100 50 N
|
||||
X 1 1 -200 0 100 R 50 50 0 1 P
|
||||
X 2 2 200 0 100 L 50 50 0 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# TSS721-tss721
|
||||
#
|
||||
DEF TSS721-tss721 U 0 40 Y Y 1 F N
|
||||
F0 "U" 200 850 50 H V L CNN
|
||||
F1 "TSS721-tss721" 200 750 50 H V L CNN
|
||||
F2 "" 0 -850 50 H V C CIN
|
||||
F3 "" -200 -800 50 H V C CNN
|
||||
$FPLIST
|
||||
SOIC*3.9x9.9mm*Pitch1.27mm*
|
||||
TSSOP*4.4x5mm*Pitch0.65mm*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
S -500 -700 500 700 0 1 10 f
|
||||
X BUSL2 1 -600 400 100 R 50 50 1 1 I
|
||||
X VS 10 -600 0 100 R 50 50 1 1 P
|
||||
X VDD 11 0 800 100 D 50 50 1 1 W
|
||||
X RX 12 600 500 100 L 50 50 1 1 I
|
||||
X RXI 13 600 400 100 L 50 50 1 1 I I
|
||||
X RIS 14 300 -800 100 U 50 50 1 1 I
|
||||
X GND 15 0 -800 100 U 50 50 1 1 W
|
||||
X BUSL1 16 -600 500 100 R 50 50 1 1 I
|
||||
X VB 2 -600 -150 100 R 50 50 1 1 P
|
||||
X STC 3 -600 -500 100 R 50 50 1 1 P
|
||||
X RIDD 4 200 -800 100 U 50 50 1 1 O
|
||||
X PF 5 -600 100 100 R 50 50 1 1 I
|
||||
X SC 6 400 -800 100 U 50 50 1 1 P
|
||||
X TXI 7 600 100 100 L 50 50 1 1 O I
|
||||
X TX 8 600 200 100 L 50 50 1 1 O
|
||||
X BAT 9 -100 800 100 D 50 50 1 1 I
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
# USB_OTG-conn
|
||||
#
|
||||
DEF USB_OTG-conn J 0 40 Y Y 1 F N
|
||||
F0 "J" -200 450 50 H V L CNN
|
||||
F1 "USB_OTG-conn" -200 350 50 H V L CNN
|
||||
F2 "" 150 -50 50 H I C CNN
|
||||
F3 "" 150 -50 50 H I C CNN
|
||||
$FPLIST
|
||||
USB*
|
||||
$ENDFPLIST
|
||||
DRAW
|
||||
C -150 85 25 0 1 10 F
|
||||
C -25 135 15 0 1 10 F
|
||||
S -200 -300 200 300 0 1 10 f
|
||||
S -5 -300 5 -270 0 1 0 N
|
||||
S 10 50 -20 20 0 1 10 F
|
||||
S 200 -205 170 -195 0 1 0 N
|
||||
S 200 -105 170 -95 0 1 0 N
|
||||
S 200 -5 170 5 0 1 0 N
|
||||
S 200 195 170 205 0 1 0 N
|
||||
P 2 0 1 10 -75 85 25 85 N
|
||||
P 4 0 1 10 -125 85 -100 85 -50 135 -25 135 N
|
||||
P 4 0 1 10 -100 85 -75 85 -50 35 0 35 N
|
||||
P 4 0 1 10 25 110 25 60 75 85 25 110 F
|
||||
P 5 0 1 0 -170 220 -70 220 -80 190 -160 190 -170 220 F
|
||||
P 9 0 1 0 -185 230 -185 220 -175 190 -175 180 -65 180 -65 190 -55 220 -55 230 -185 230 N
|
||||
X VBUS 1 300 200 100 L 50 50 1 1 W
|
||||
X D- 2 300 -100 100 L 50 50 1 1 P
|
||||
X D+ 3 300 0 100 L 50 50 1 1 P
|
||||
X ID 4 300 -200 100 L 50 50 1 1 P
|
||||
X GND 5 0 -400 100 U 50 50 1 1 W
|
||||
X Shield 6 -100 -400 100 U 50 50 1 1 P
|
||||
ENDDRAW
|
||||
ENDDEF
|
||||
#
|
||||
#End Library
|
||||
@@ -1,2 +1,3 @@
|
||||
(sym_lib_table
|
||||
(lib (name HAN_ESP_TSS721-rescue)(type Legacy)(uri ${KIPRJMOD}/HAN_ESP_TSS721-rescue.lib)(options "")(descr ""))
|
||||
)
|
||||
|
||||
BIN
images/dashboard.png
Normal file
|
After Width: | Height: | Size: 136 KiB |
BIN
images/dayplot.png
Normal file
|
After Width: | Height: | Size: 18 KiB |
BIN
images/future-energy-price.png
Normal file
|
After Width: | Height: | Size: 14 KiB |
BIN
images/main-header.png
Normal file
|
After Width: | Height: | Size: 10 KiB |
BIN
images/monthplot.png
Normal file
|
After Width: | Height: | Size: 22 KiB |
BIN
images/real-time-calculation.png
Normal file
|
After Width: | Height: | Size: 11 KiB |
BIN
images/sensor-displays.png
Normal file
|
After Width: | Height: | Size: 35 KiB |
BIN
images/status-bar.png
Normal file
|
After Width: | Height: | Size: 12 KiB |
BIN
images/tempsensors.png
Normal file
|
After Width: | Height: | Size: 18 KiB |
@@ -1,9 +0,0 @@
|
||||
name=HanConfigAp
|
||||
version=1.0.0
|
||||
author=roarfred
|
||||
maintainer=roarfred <not@important.com>
|
||||
sentence=HAN Configuraiton accesspoint
|
||||
paragraph=HAN Configuraiton accesspoint
|
||||
category=Sensors
|
||||
url=https://github.com/roarfred/AmsToMqttBridge
|
||||
architectures=*
|
||||
@@ -1,142 +0,0 @@
|
||||
/*
|
||||
Copyright (C) 2016 Arturo Guadalupi. All right reserved.
|
||||
|
||||
This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version.
|
||||
|
||||
This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details.
|
||||
*/
|
||||
|
||||
#include "Base64.h"
|
||||
#include <Arduino.h>
|
||||
#if (defined(__AVR__))
|
||||
#include <avr\pgmspace.h>
|
||||
#else
|
||||
#include <pgmspace.h>
|
||||
#endif
|
||||
const char PROGMEM _Base64AlphabetTable[] = "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
|
||||
"abcdefghijklmnopqrstuvwxyz"
|
||||
"0123456789+/";
|
||||
|
||||
int Base64Class::encode(char *output, char *input, int inputLength) {
|
||||
int i = 0, j = 0;
|
||||
int encodedLength = 0;
|
||||
unsigned char A3[3];
|
||||
unsigned char A4[4];
|
||||
|
||||
while(inputLength--) {
|
||||
A3[i++] = *(input++);
|
||||
if(i == 3) {
|
||||
fromA3ToA4(A4, A3);
|
||||
|
||||
for(i = 0; i < 4; i++) {
|
||||
output[encodedLength++] = pgm_read_byte(&_Base64AlphabetTable[A4[i]]);
|
||||
}
|
||||
|
||||
i = 0;
|
||||
}
|
||||
}
|
||||
|
||||
if(i) {
|
||||
for(j = i; j < 3; j++) {
|
||||
A3[j] = '\0';
|
||||
}
|
||||
|
||||
fromA3ToA4(A4, A3);
|
||||
|
||||
for(j = 0; j < i + 1; j++) {
|
||||
output[encodedLength++] = pgm_read_byte(&_Base64AlphabetTable[A4[j]]);
|
||||
}
|
||||
|
||||
while((i++ < 3)) {
|
||||
output[encodedLength++] = '=';
|
||||
}
|
||||
}
|
||||
output[encodedLength] = '\0';
|
||||
return encodedLength;
|
||||
}
|
||||
|
||||
int Base64Class::decode(char * output, char * input, int inputLength) {
|
||||
int i = 0, j = 0;
|
||||
int decodedLength = 0;
|
||||
unsigned char A3[3];
|
||||
unsigned char A4[4];
|
||||
|
||||
|
||||
while (inputLength--) {
|
||||
if(*input == '=') {
|
||||
break;
|
||||
}
|
||||
|
||||
A4[i++] = *(input++);
|
||||
if (i == 4) {
|
||||
for (i = 0; i <4; i++) {
|
||||
A4[i] = lookupTable(A4[i]);
|
||||
}
|
||||
|
||||
fromA4ToA3(A3,A4);
|
||||
|
||||
for (i = 0; i < 3; i++) {
|
||||
output[decodedLength++] = A3[i];
|
||||
}
|
||||
i = 0;
|
||||
}
|
||||
}
|
||||
|
||||
if (i) {
|
||||
for (j = i; j < 4; j++) {
|
||||
A4[j] = '\0';
|
||||
}
|
||||
|
||||
for (j = 0; j <4; j++) {
|
||||
A4[j] = lookupTable(A4[j]);
|
||||
}
|
||||
|
||||
fromA4ToA3(A3,A4);
|
||||
|
||||
for (j = 0; j < i - 1; j++) {
|
||||
output[decodedLength++] = A3[j];
|
||||
}
|
||||
}
|
||||
output[decodedLength] = '\0';
|
||||
return decodedLength;
|
||||
}
|
||||
|
||||
int Base64Class::encodedLength(int plainLength) {
|
||||
int n = plainLength;
|
||||
return (n + 2 - ((n + 2) % 3)) / 3 * 4;
|
||||
}
|
||||
|
||||
int Base64Class::decodedLength(char * input, int inputLength) {
|
||||
int i = 0;
|
||||
int numEq = 0;
|
||||
for(i = inputLength - 1; input[i] == '='; i--) {
|
||||
numEq++;
|
||||
}
|
||||
|
||||
return ((6 * inputLength) / 8) - numEq;
|
||||
}
|
||||
|
||||
//Private utility functions
|
||||
inline void Base64Class::fromA3ToA4(unsigned char * A4, unsigned char * A3) {
|
||||
A4[0] = (A3[0] & 0xfc) >> 2;
|
||||
A4[1] = ((A3[0] & 0x03) << 4) + ((A3[1] & 0xf0) >> 4);
|
||||
A4[2] = ((A3[1] & 0x0f) << 2) + ((A3[2] & 0xc0) >> 6);
|
||||
A4[3] = (A3[2] & 0x3f);
|
||||
}
|
||||
|
||||
inline void Base64Class::fromA4ToA3(unsigned char * A3, unsigned char * A4) {
|
||||
A3[0] = (A4[0] << 2) + ((A4[1] & 0x30) >> 4);
|
||||
A3[1] = ((A4[1] & 0xf) << 4) + ((A4[2] & 0x3c) >> 2);
|
||||
A3[2] = ((A4[2] & 0x3) << 6) + A4[3];
|
||||
}
|
||||
|
||||
inline unsigned char Base64Class::lookupTable(char c) {
|
||||
if(c >='A' && c <='Z') return c - 'A';
|
||||
if(c >='a' && c <='z') return c - 71;
|
||||
if(c >='0' && c <='9') return c + 4;
|
||||
if(c == '+') return 62;
|
||||
if(c == '/') return 63;
|
||||
return -1;
|
||||
}
|
||||
|
||||
Base64Class Base64;
|
||||
@@ -1,26 +0,0 @@
|
||||
/*
|
||||
Copyright (C) 2016 Arturo Guadalupi. All right reserved.
|
||||
|
||||
This library is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version.
|
||||
|
||||
This library is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more details.
|
||||
*/
|
||||
|
||||
#ifndef _BASE64_H
|
||||
#define _BASE64_H
|
||||
|
||||
class Base64Class{
|
||||
public:
|
||||
int encode(char *output, char *input, int inputLength);
|
||||
int decode(char * output, char * input, int inputLength);
|
||||
int encodedLength(int plainLength);
|
||||
int decodedLength(char * input, int inputLength);
|
||||
|
||||
private:
|
||||
inline void fromA3ToA4(unsigned char * A4, unsigned char * A3);
|
||||
inline void fromA4ToA3(unsigned char * A3, unsigned char * A4);
|
||||
inline unsigned char lookupTable(char c);
|
||||
};
|
||||
extern Base64Class Base64;
|
||||
|
||||
#endif // _BASE64_H
|
||||
@@ -1,91 +0,0 @@
|
||||
#include "HanConfigAp.h"
|
||||
|
||||
Stream* HanConfigAp::debugger;
|
||||
|
||||
bool HanConfigAp::hasConfig() {
|
||||
return config->hasConfig();
|
||||
}
|
||||
|
||||
void HanConfigAp::setup(int accessPointButtonPin, configuration* config, Stream* debugger)
|
||||
{
|
||||
this->debugger = debugger;
|
||||
this->config = config;
|
||||
|
||||
// Test if we're missing configuration
|
||||
if (!config->hasConfig())
|
||||
{
|
||||
print("No config. We're booting as AP. Look for SSID ");
|
||||
println(this->AP_SSID);
|
||||
isActivated = true;
|
||||
}
|
||||
else
|
||||
{
|
||||
// Load the configuration
|
||||
if (this->debugger) config->print(this->debugger);
|
||||
|
||||
if (accessPointButtonPin != INVALID_BUTTON_PIN)
|
||||
{
|
||||
// Assign pin for boot as AP
|
||||
pinMode(accessPointButtonPin, INPUT_PULLUP);
|
||||
|
||||
// Test if we're holding down the AP pin, over 5 seconds
|
||||
int time = millis() + 5000;
|
||||
print("Press the AP button now to boot as access point");
|
||||
while (millis() < time)
|
||||
{
|
||||
print(".");
|
||||
if (digitalRead(accessPointButtonPin) == LOW)
|
||||
{
|
||||
print("AP button was pressed. Booting as access point now. Look for SSID ");
|
||||
println(this->AP_SSID);
|
||||
isActivated = true;
|
||||
break;
|
||||
}
|
||||
delay(100);
|
||||
}
|
||||
println("");
|
||||
}
|
||||
}
|
||||
|
||||
if (isActivated)
|
||||
{
|
||||
// Setup AP
|
||||
WiFi.disconnect(true);
|
||||
WiFi.softAPdisconnect(true);
|
||||
WiFi.mode(WIFI_OFF);
|
||||
delay(2000);
|
||||
|
||||
WiFi.softAP(AP_SSID);
|
||||
WiFi.mode(WIFI_AP);
|
||||
|
||||
/* Setup the DNS server redirecting all the domains to this IP */
|
||||
dnsServer.setErrorReplyCode(DNSReplyCode::NoError);
|
||||
dnsServer.start(DNS_PORT, "*", WiFi.softAPIP());
|
||||
}
|
||||
}
|
||||
|
||||
bool HanConfigAp::loop() {
|
||||
if(isActivated) {
|
||||
//DNS
|
||||
dnsServer.processNextRequest();
|
||||
}
|
||||
|
||||
return isActivated;
|
||||
}
|
||||
|
||||
size_t HanConfigAp::print(const char* text)
|
||||
{
|
||||
if (debugger) debugger->print(text);
|
||||
}
|
||||
size_t HanConfigAp::println(const char* text)
|
||||
{
|
||||
if (debugger) debugger->println(text);
|
||||
}
|
||||
size_t HanConfigAp::print(const Printable& data)
|
||||
{
|
||||
if (debugger) debugger->print(data);
|
||||
}
|
||||
size_t HanConfigAp::println(const Printable& data)
|
||||
{
|
||||
if (debugger) debugger->println(data);
|
||||
}
|
||||
@@ -1,50 +0,0 @@
|
||||
// ap.h
|
||||
|
||||
#ifndef _ACCESSPOINT_h
|
||||
#define _ACCESSPOINT_h
|
||||
|
||||
#if defined(ARDUINO) && ARDUINO >= 100
|
||||
#include "Arduino.h"
|
||||
#else
|
||||
#include "WProgram.h"
|
||||
#endif
|
||||
|
||||
#if defined(ESP8266)
|
||||
#include <ESP8266WiFi.h>
|
||||
#elif defined(ESP32) // ARDUINO_ARCH_ESP32
|
||||
#include <WiFi.h>
|
||||
#else
|
||||
#warning "Unsupported board type"
|
||||
#endif
|
||||
|
||||
#include <DNSServer.h>
|
||||
#include "configuration.h"
|
||||
|
||||
#define INVALID_BUTTON_PIN 0xFFFFFFFF
|
||||
|
||||
class HanConfigAp {
|
||||
public:
|
||||
void setup(int accessPointButtonPin, configuration* config, Stream* debugger);
|
||||
bool loop();
|
||||
bool hasConfig();
|
||||
bool isActivated = false;
|
||||
|
||||
private:
|
||||
const char* AP_SSID = "AMS2MQTT";
|
||||
|
||||
configuration* config;
|
||||
|
||||
// DNS server
|
||||
const byte DNS_PORT = 53;
|
||||
DNSServer dnsServer;
|
||||
|
||||
static size_t print(const char* text);
|
||||
static size_t println(const char* text);
|
||||
static size_t print(const Printable& data);
|
||||
static size_t println(const Printable& data);
|
||||
|
||||
static Stream* debugger;
|
||||
};
|
||||
|
||||
#endif
|
||||
|
||||
@@ -1,265 +0,0 @@
|
||||
//
|
||||
//
|
||||
//
|
||||
|
||||
#include "configuration.h"
|
||||
|
||||
bool configuration::hasConfig()
|
||||
{
|
||||
bool hasConfig = false;
|
||||
EEPROM.begin(EEPROM_SIZE);
|
||||
hasConfig = EEPROM.read(EEPROM_CONFIG_ADDRESS) == EEPROM_CHECK_SUM;
|
||||
EEPROM.end();
|
||||
return hasConfig;
|
||||
}
|
||||
|
||||
bool configuration::save()
|
||||
{
|
||||
int address = EEPROM_CONFIG_ADDRESS;
|
||||
|
||||
EEPROM.begin(EEPROM_SIZE);
|
||||
EEPROM.put(address, EEPROM_CHECK_SUM);
|
||||
address++;
|
||||
|
||||
address += saveString(address, ssid);
|
||||
address += saveString(address, ssidPassword);
|
||||
address += saveByte(address, meterType);
|
||||
|
||||
|
||||
if(mqttHost) {
|
||||
address += saveBool(address, true);
|
||||
address += saveString(address, mqttHost);
|
||||
address += saveInt(address, mqttPort);
|
||||
address += saveString(address, mqttClientID);
|
||||
address += saveString(address, mqttPublishTopic);
|
||||
address += saveString(address, mqttSubscribeTopic);
|
||||
} else {
|
||||
address += saveBool(address, false);
|
||||
}
|
||||
|
||||
if (isSecure()) {
|
||||
address += saveBool(address, true);
|
||||
address += saveString(address, mqttUser);
|
||||
address += saveString(address, mqttPass);
|
||||
}
|
||||
else
|
||||
address += saveBool(address, false);
|
||||
|
||||
|
||||
address += saveByte(address, authSecurity);
|
||||
if (authSecurity > 0) {
|
||||
address += saveString(address, authUser);
|
||||
address += saveString(address, authPass);
|
||||
}
|
||||
|
||||
address += saveInt(address, fuseSize);
|
||||
address += saveInt(address, distSys);
|
||||
|
||||
bool success = EEPROM.commit();
|
||||
EEPROM.end();
|
||||
|
||||
return success;
|
||||
}
|
||||
|
||||
|
||||
bool configuration::load()
|
||||
{
|
||||
int address = EEPROM_CONFIG_ADDRESS;
|
||||
bool success = false;
|
||||
|
||||
ssid = 0;
|
||||
ssidPassword = 0;
|
||||
meterType = (byte)0;
|
||||
mqttHost = 0;
|
||||
mqttClientID = 0;
|
||||
mqttPublishTopic = 0;
|
||||
mqttSubscribeTopic = 0;
|
||||
mqttUser = 0;
|
||||
mqttPass = 0;
|
||||
mqttPort = 1883;
|
||||
authSecurity = 0;
|
||||
authUser = 0;
|
||||
authPass = 0;
|
||||
fuseSize = 0;
|
||||
distSys = 0;
|
||||
|
||||
EEPROM.begin(EEPROM_SIZE);
|
||||
int cs = EEPROM.read(address);
|
||||
if (cs == EEPROM_CHECK_SUM)
|
||||
{
|
||||
address++;
|
||||
|
||||
address += readString(address, &ssid);
|
||||
address += readString(address, &ssidPassword);
|
||||
address += readByte(address, &meterType);
|
||||
|
||||
bool mqtt = false;
|
||||
address += readBool(address, &mqtt);
|
||||
if(mqtt) {
|
||||
address += readString(address, &mqttHost);
|
||||
address += readInt(address, &mqttPort);
|
||||
address += readString(address, &mqttClientID);
|
||||
address += readString(address, &mqttPublishTopic);
|
||||
address += readString(address, &mqttSubscribeTopic);
|
||||
}
|
||||
|
||||
bool secure = false;
|
||||
address += readBool(address, &secure);
|
||||
if (secure)
|
||||
{
|
||||
address += readString(address, &mqttUser);
|
||||
address += readString(address, &mqttPass);
|
||||
}
|
||||
else
|
||||
{
|
||||
mqttUser = 0;
|
||||
mqttPass = 0;
|
||||
}
|
||||
|
||||
address += readByte(address, &authSecurity);
|
||||
if (authSecurity > 0) {
|
||||
address += readString(address, &authUser);
|
||||
address += readString(address, &authPass);
|
||||
} else {
|
||||
authUser = 0;
|
||||
authPass = 0;
|
||||
}
|
||||
|
||||
address += readInt(address, &fuseSize);
|
||||
address += readByte(address, &distSys);
|
||||
|
||||
success = true;
|
||||
}
|
||||
EEPROM.end();
|
||||
return success;
|
||||
}
|
||||
|
||||
bool configuration::isSecure()
|
||||
{
|
||||
return (mqttUser != 0) && (String(mqttUser).length() > 0);
|
||||
}
|
||||
|
||||
int configuration::readInt(int address, int *value)
|
||||
{
|
||||
int lower = EEPROM.read(address);
|
||||
int higher = EEPROM.read(address + 1);
|
||||
*value = lower + (higher << 8);
|
||||
return 2;
|
||||
}
|
||||
int configuration::saveInt(int address, int value)
|
||||
{
|
||||
byte lowByte = value & 0xFF;
|
||||
byte highByte = ((value >> 8) & 0xFF);
|
||||
|
||||
EEPROM.write(address, lowByte);
|
||||
EEPROM.write(address + 1, highByte);
|
||||
|
||||
return 2;
|
||||
}
|
||||
|
||||
int configuration::readBool(int address, bool *value)
|
||||
{
|
||||
byte y = EEPROM.read(address);
|
||||
*value = (bool)y;
|
||||
return 1;
|
||||
}
|
||||
|
||||
int configuration::saveBool(int address, bool value)
|
||||
{
|
||||
byte y = (byte)value;
|
||||
EEPROM.write(address, y);
|
||||
return 1;
|
||||
}
|
||||
|
||||
int configuration::readByte(int address, byte *value)
|
||||
{
|
||||
*value = EEPROM.read(address);
|
||||
return 1;
|
||||
}
|
||||
|
||||
int configuration::saveByte(int address, byte value)
|
||||
{
|
||||
EEPROM.write(address, value);
|
||||
return 1;
|
||||
}
|
||||
void configuration::print(Stream* debugger)
|
||||
{
|
||||
debugger->println("Configuration:");
|
||||
debugger->println("-----------------------------------------------");
|
||||
debugger->printf("ssid: %s\r\n", this->ssid);
|
||||
debugger->printf("ssidPassword: %s\r\n", this->ssidPassword);
|
||||
debugger->printf("meterType: %i\r\n", this->meterType);
|
||||
if(this->mqttHost) {
|
||||
debugger->printf("mqttHost: %s\r\n", this->mqttHost);
|
||||
debugger->printf("mqttPort: %i\r\n", this->mqttPort);
|
||||
debugger->printf("mqttClientID: %s\r\n", this->mqttClientID);
|
||||
debugger->printf("mqttPublishTopic: %s\r\n", this->mqttPublishTopic);
|
||||
debugger->printf("mqttSubscribeTopic: %s\r\n", this->mqttSubscribeTopic);
|
||||
}
|
||||
|
||||
if (this->isSecure())
|
||||
{
|
||||
debugger->printf("SECURE MQTT CONNECTION:\r\n");
|
||||
debugger->printf("mqttUser: %s\r\n", this->mqttUser);
|
||||
debugger->printf("mqttPass: %s\r\n", this->mqttPass);
|
||||
}
|
||||
|
||||
if (this->authSecurity > 0) {
|
||||
debugger->printf("WEB AUTH:\r\n");
|
||||
debugger->printf("authSecurity: %i\r\n", this->authSecurity);
|
||||
debugger->printf("authUser: %s\r\n", this->authUser);
|
||||
debugger->printf("authPass: %s\r\n", this->authPass);
|
||||
}
|
||||
debugger->printf("fuseSize: %i\r\n", this->fuseSize);
|
||||
debugger->printf("distSys: %i\r\n", this->distSys);
|
||||
|
||||
debugger->println("-----------------------------------------------");
|
||||
}
|
||||
|
||||
template <class T> int configuration::writeAnything(int ee, const T& value)
|
||||
{
|
||||
const byte* p = (const byte*)(const void*)&value;
|
||||
unsigned int i;
|
||||
for (i = 0; i < sizeof(value); i++)
|
||||
EEPROM.write(ee++, *p++);
|
||||
return i;
|
||||
}
|
||||
|
||||
template <class T> int configuration::readAnything(int ee, T& value)
|
||||
{
|
||||
byte* p = (byte*)(void*)&value;
|
||||
unsigned int i;
|
||||
for (i = 0; i < sizeof(value); i++)
|
||||
*p++ = EEPROM.read(ee++);
|
||||
return i;
|
||||
}
|
||||
|
||||
int configuration::readString(int pAddress, char* pString[])
|
||||
{
|
||||
int address = 0;
|
||||
byte length = EEPROM.read(pAddress + address);
|
||||
address++;
|
||||
|
||||
char* buffer = new char[length];
|
||||
for (int i = 0; i<length; i++)
|
||||
{
|
||||
buffer[i] = EEPROM.read(pAddress + address++);
|
||||
}
|
||||
*pString = buffer;
|
||||
return address;
|
||||
}
|
||||
int configuration::saveString(int pAddress, char* pString)
|
||||
{
|
||||
int address = 0;
|
||||
int length = pString ? strlen(pString) + 1 : 0;
|
||||
EEPROM.put(pAddress + address, length);
|
||||
address++;
|
||||
|
||||
for (int i = 0; i < length; i++)
|
||||
{
|
||||
EEPROM.put(pAddress + address, pString[i]);
|
||||
address++;
|
||||
}
|
||||
|
||||
return address;
|
||||
}
|
||||
@@ -1,63 +0,0 @@
|
||||
// config.h
|
||||
|
||||
#ifndef _CONFIGURATION_h
|
||||
#define _CONFIGURATION_h
|
||||
|
||||
#include <EEPROM.h>
|
||||
|
||||
|
||||
#if defined(ARDUINO) && ARDUINO >= 100
|
||||
#include "Arduino.h"
|
||||
#else
|
||||
#include "WProgram.h"
|
||||
#endif
|
||||
|
||||
class configuration {
|
||||
public:
|
||||
char* ssid;
|
||||
char* ssidPassword;
|
||||
char* mqttHost;
|
||||
int mqttPort;
|
||||
char* mqttClientID;
|
||||
char* mqttPublishTopic;
|
||||
char* mqttSubscribeTopic;
|
||||
char* mqttUser;
|
||||
char* mqttPass;
|
||||
byte meterType;
|
||||
|
||||
byte authSecurity;
|
||||
char* authUser;
|
||||
char* authPass;
|
||||
|
||||
int fuseSize;
|
||||
byte distSys;
|
||||
|
||||
bool hasConfig();
|
||||
bool isSecure();
|
||||
bool save();
|
||||
bool load();
|
||||
|
||||
void print(Stream* debugger);
|
||||
protected:
|
||||
|
||||
private:
|
||||
const int EEPROM_SIZE = 512;
|
||||
const byte EEPROM_CHECK_SUM = 75; // Used to check if config is stored. Change if structure changes
|
||||
const int EEPROM_CONFIG_ADDRESS = 0;
|
||||
|
||||
int saveString(int pAddress, char* pString);
|
||||
int readString(int pAddress, char* pString[]);
|
||||
int saveInt(int pAddress, int pValue);
|
||||
int readInt(int pAddress, int *pValue);
|
||||
int saveBool(int pAddress, bool pValue);
|
||||
int readBool(int pAddress, bool *pValue);
|
||||
int saveByte(int pAddress, byte pValue);
|
||||
int readByte(int pAddress, byte *pValue);
|
||||
|
||||
|
||||
template <class T> int writeAnything(int ee, const T& value);
|
||||
template <class T> int readAnything(int ee, T& value);
|
||||
};
|
||||
|
||||
#endif
|
||||
|
||||
@@ -1,197 +0,0 @@
|
||||
/*
|
||||
* Simple sketch to simulate reading data from a Kamstrup
|
||||
* AMS Meter.
|
||||
*
|
||||
* Created 24. October 2017 by Roar Fredriksen
|
||||
* Modified 06. November 2017 by Ruben Andreassen
|
||||
*/
|
||||
|
||||
#include <ESP8266WiFi.h>
|
||||
#include <PubSubClient.h>
|
||||
#include <ArduinoJson.h>
|
||||
|
||||
#include <HanReader.h>
|
||||
#include <Kamstrup.h>
|
||||
|
||||
// The HAN Port reader
|
||||
HanReader hanReader;
|
||||
|
||||
// WiFi and MQTT endpoints
|
||||
const char* ssid = "ssid";
|
||||
const char* password = "password";
|
||||
const char* mqtt_server = "ip or dns";
|
||||
const char* mqtt_topic = "sensors/out/espams";
|
||||
const char* device_name = "espams";
|
||||
|
||||
bool enableDebug = false;
|
||||
|
||||
WiFiClient espClient;
|
||||
PubSubClient client(espClient);
|
||||
|
||||
void setup() {
|
||||
//setupDebugPort(); //Comment out this line if you dont need debugging on Serial1
|
||||
setupWiFi();
|
||||
setupMqtt();
|
||||
|
||||
// initialize the HanReader
|
||||
// (passing no han port, as we are feeding data manually, but provide Serial for debugging)
|
||||
if (enableDebug) {
|
||||
hanReader.setup(&Serial, 2400, SERIAL_8N1, &Serial1);
|
||||
} else {
|
||||
hanReader.setup(&Serial, 2400, SERIAL_8N1, NULL);
|
||||
}
|
||||
}
|
||||
|
||||
void setupMqtt()
|
||||
{
|
||||
client.setServer(mqtt_server, 1883);
|
||||
}
|
||||
|
||||
void setupDebugPort()
|
||||
{
|
||||
enableDebug = true;
|
||||
// Initialize the Serial port for debugging
|
||||
Serial1.begin(115200);
|
||||
while (!Serial1) {}
|
||||
Serial1.setDebugOutput(true);
|
||||
Serial1.println("Serial1");
|
||||
Serial1.println("Serial debugging port initialized");
|
||||
}
|
||||
|
||||
|
||||
void setupWiFi()
|
||||
{
|
||||
// Initialize wifi
|
||||
if (enableDebug) {
|
||||
Serial1.print("Connecting to ");
|
||||
Serial1.println(ssid);
|
||||
}
|
||||
WiFi.mode(WIFI_STA);
|
||||
WiFi.begin(ssid, password);
|
||||
|
||||
while (WiFi.status() != WL_CONNECTED) {
|
||||
delay(500);
|
||||
if (enableDebug) Serial1.print(".");
|
||||
}
|
||||
|
||||
if (enableDebug) {
|
||||
Serial1.println("");
|
||||
Serial1.println("WiFi connected");
|
||||
Serial1.println("IP address: ");
|
||||
Serial1.println(WiFi.localIP());
|
||||
}
|
||||
}
|
||||
|
||||
void loop() {
|
||||
loopMqtt();
|
||||
|
||||
// Read one byte from the port, and see if we got a full package
|
||||
if (hanReader.read())
|
||||
{
|
||||
// Get the list identifier
|
||||
int listSize = hanReader.getListSize();
|
||||
|
||||
if (enableDebug) {
|
||||
Serial1.println("");
|
||||
Serial1.print("List size: ");
|
||||
Serial1.print(listSize);
|
||||
Serial1.print(": ");
|
||||
}
|
||||
|
||||
// Only care for the ACtive Power Imported, which is found in the first list
|
||||
if (listSize == (int)Kamstrup::List1 || listSize == (int)Kamstrup::List2)
|
||||
{
|
||||
// Define a json object to keep the data
|
||||
StaticJsonBuffer<MQTT_MAX_PACKET_SIZE> jsonBuffer;
|
||||
JsonObject& root = jsonBuffer.createObject();
|
||||
|
||||
// Any generic useful info here
|
||||
root["dn"] = device_name;
|
||||
root["up"] = millis();
|
||||
|
||||
// Add a sub-structure to the json object,
|
||||
// to keep the data from the meter itself
|
||||
JsonObject& data = root.createNestedObject("data");
|
||||
|
||||
data["ls"] = listSize;
|
||||
|
||||
data["lvi"] = hanReader.getString((int)Kamstrup_List1::ListVersionIdentifier);
|
||||
data["mid"] = hanReader.getString((int)Kamstrup_List1::MeterID);
|
||||
data["mt"] = hanReader.getString((int)Kamstrup_List1::MeterType);
|
||||
data["t"] = hanReader.getPackageTime();
|
||||
|
||||
data["aip"] = hanReader.getInt((int)Kamstrup_List1::ActiveImportPower); //power
|
||||
data["aep"] = hanReader.getInt((int)Kamstrup_List1::ActiveExportPower);
|
||||
data["rip"] = hanReader.getInt((int)Kamstrup_List1::ReactiveImportPower);
|
||||
data["rep"] = hanReader.getInt((int)Kamstrup_List1::ReactiveExportPower);
|
||||
|
||||
data["al1"] = (float)hanReader.getInt((int)Kamstrup_List1::CurrentL1) / 100.0;
|
||||
data["al2"] = (float)hanReader.getInt((int)Kamstrup_List1::CurrentL2) / 100.0;
|
||||
data["al3"] = (float)hanReader.getInt((int)Kamstrup_List1::CurrentL3) / 100.0;
|
||||
|
||||
data["vl1"] = hanReader.getInt((int)Kamstrup_List1::VoltageL1);
|
||||
data["vl2"] = hanReader.getInt((int)Kamstrup_List1::VoltageL2);
|
||||
data["vl3"] = hanReader.getInt((int)Kamstrup_List1::VoltageL3);
|
||||
|
||||
if (listSize == (int)Kamstrup::List2)
|
||||
{
|
||||
data["cl"] = hanReader.getTime((int)Kamstrup_List2::MeterClock);
|
||||
data["caie"] = hanReader.getInt((int)Kamstrup_List2::CumulativeActiveImportEnergy);
|
||||
data["caee"] = hanReader.getInt((int)Kamstrup_List2::CumulativeActiveExportEnergy);
|
||||
data["crie"] = hanReader.getInt((int)Kamstrup_List2::CumulativeReactiveImportEnergy);
|
||||
data["cree"] = hanReader.getInt((int)Kamstrup_List2::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
|
||||
if (enableDebug) {
|
||||
root.printTo(Serial1);
|
||||
Serial1.println("JSON length");
|
||||
Serial1.println(root.measureLength());
|
||||
Serial1.println("");
|
||||
}
|
||||
|
||||
// Publish the json to the MQTT server
|
||||
char msg[MQTT_MAX_PACKET_SIZE];
|
||||
root.printTo(msg, MQTT_MAX_PACKET_SIZE);
|
||||
bool result = client.publish(mqtt_topic, msg);
|
||||
|
||||
if (enableDebug) {
|
||||
Serial1.println("MQTT publish result:");
|
||||
Serial1.println(result);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
// Ensure the MQTT lirary gets some attention too
|
||||
void loopMqtt()
|
||||
{
|
||||
if (!client.connected()) {
|
||||
reconnectMqtt();
|
||||
}
|
||||
client.loop();
|
||||
}
|
||||
|
||||
void reconnectMqtt() {
|
||||
// Loop until we're reconnected
|
||||
while (!client.connected()) {
|
||||
if (enableDebug) Serial1.print("Attempting MQTT connection...");
|
||||
// Attempt to connect
|
||||
if (client.connect("ESP8266Client")) {
|
||||
if (enableDebug) Serial1.println("connected");
|
||||
// Once connected, publish an announcement...
|
||||
// client.publish("sensors", "hello world");
|
||||
// ... and resubscribe
|
||||
// client.subscribe("inTopic");
|
||||
}
|
||||
else {
|
||||
if (enableDebug) {
|
||||
Serial1.print("failed, rc=");
|
||||
Serial1.print(client.state());
|
||||
Serial1.println(" try again in 5 seconds");
|
||||
}
|
||||
// Wait 5 seconds before retrying
|
||||
delay(5000);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1,95 +0,0 @@
|
||||
# Setup
|
||||
|
||||
1. Copy AmsToMqttBridge\Code\Arduino\HanReader\src to Arduino\libraries
|
||||
2. Download the following libraries and put them in Arduino\libraries
|
||||
- ESP8266WiFi
|
||||
- PubSubClient
|
||||
- ArduinoJson
|
||||
3. **Set MQTT_MAX_PACKET_SIZE in PubSubClient.h to at least 512 (i used 1024)**
|
||||
4. Edit the following variables in the project:
|
||||
- ssid
|
||||
- password
|
||||
- mqtt_server
|
||||
- mqtt_topic
|
||||
- device_name
|
||||
|
||||
## Output example:
|
||||
### List 1
|
||||
```
|
||||
{
|
||||
"dn": "espams",
|
||||
"up": 1475902,
|
||||
"data": {
|
||||
"ls": 25,
|
||||
"lvi": "Kamstrup_V0001",
|
||||
"mid": "5706567274389702",
|
||||
"mt": "6841121BN243101040",
|
||||
"t": 1510088840,
|
||||
"aip": 3499,
|
||||
"aep": 0,
|
||||
"rip": 0,
|
||||
"rep": 424,
|
||||
"al1": 10.27,
|
||||
"al2": 6.37,
|
||||
"al3": 11.79,
|
||||
"vl1": 231,
|
||||
"vl2": 226,
|
||||
"vl3": 231
|
||||
}
|
||||
}
|
||||
```
|
||||
### List 2
|
||||
```
|
||||
{
|
||||
"dn": "espams",
|
||||
"up": 1041212,
|
||||
"data": {
|
||||
"ls": 35,
|
||||
"lvi": "Kamstrup_V0001",
|
||||
"mid": "5706567274389702",
|
||||
"mt": "6841121BN243101040",
|
||||
"t": 1510088405,
|
||||
"aip": 4459,
|
||||
"aep": 0,
|
||||
"rip": 0,
|
||||
"rep": 207,
|
||||
"al1": 14.72,
|
||||
"al2": 6.39,
|
||||
"al3": 15.02,
|
||||
"vl1": 231,
|
||||
"vl2": 227,
|
||||
"vl3": 231,
|
||||
"cl": 1510088405,
|
||||
"caie": 588500,
|
||||
"caee": 0,
|
||||
"crie": 93,
|
||||
"cree": 80831
|
||||
}
|
||||
}
|
||||
```
|
||||
|
||||
### List 1 and 2 fields
|
||||
- dn = Device Name
|
||||
- up = MS since last reboot
|
||||
- ls = List Size
|
||||
- lvi = List Version Identifier
|
||||
- mid = Meter ID
|
||||
- mt = Meter Type
|
||||
- t = Time
|
||||
- aie = Active Import Power
|
||||
- aep = Active Export Power
|
||||
- rip = Reactive Import Power
|
||||
- rep = Reactive Export Power
|
||||
- al1 = Current L1
|
||||
- al2 = Current L2
|
||||
- al3 = Current L3
|
||||
- cl1 = Voltage L1
|
||||
- cl2 = Voltage L2
|
||||
- cl3 = Voltage L3
|
||||
|
||||
### List 2 additional fields
|
||||
- cl = Meter Clock
|
||||
- caie = Cumulative Active Import Energy
|
||||
- caee = Cumulative Active Export Energy
|
||||
- crie = Cumulative Reactive Import Energy
|
||||
- cree = Cumulative Reactive Export Energy
|
||||
@@ -1,61 +0,0 @@
|
||||
/*
|
||||
* Simple sketch to read MBus data from electrical meter
|
||||
* As the protocol requires "Even" parity, and this is
|
||||
* only supported on the hardware port of the ESP8266,
|
||||
* we'll have to use Serial1 for debugging.
|
||||
*
|
||||
* This means you'll have to program the ESP using the
|
||||
* regular RX/TX port, and then you must remove the FTDI
|
||||
* and connect the MBus signal from the meter to the
|
||||
* RS pin. The FTDI/RX can be moved to Pin2 for debugging
|
||||
*
|
||||
* Created 14. september 2017 by Roar Fredriksen
|
||||
*/
|
||||
|
||||
#include "HanReader.h"
|
||||
#include "Kaifa.h"
|
||||
|
||||
// The HAN Port reader
|
||||
HanReader hanReader;
|
||||
|
||||
void setup() {
|
||||
setupDebugPort();
|
||||
|
||||
// initialize the HanReader
|
||||
// (passing Serial as the HAN port and Serial1 for debugging)
|
||||
hanReader.setup(&Serial, &Serial1);
|
||||
}
|
||||
|
||||
void setupDebugPort()
|
||||
{
|
||||
// Initialize the Serial1 port for debugging
|
||||
// (This port is fixed to Pin2 of the ESP8266)
|
||||
Serial1.begin(115200);
|
||||
while (!Serial1) {}
|
||||
Serial1.setDebugOutput(true);
|
||||
Serial1.println("Serial1");
|
||||
Serial1.println("Serial debugging port initialized");
|
||||
}
|
||||
|
||||
void loop() {
|
||||
// Read one byte from the port, and see if we got a full package
|
||||
if (hanReader.read())
|
||||
{
|
||||
// Get the list identifier
|
||||
int listSize = hanReader.getListSize();
|
||||
|
||||
Serial1.println("");
|
||||
Serial1.print("List size: ");
|
||||
Serial1.print(listSize);
|
||||
Serial1.print(": ");
|
||||
|
||||
// Only care for the ACtive Power Imported, which is found in the first list
|
||||
if (listSize == (int)Kaifa::List1)
|
||||
{
|
||||
int power = hanReader.getInt((int)Kaifa_List1::ActivePowerImported);
|
||||
Serial1.print("Power consumtion is right now: ");
|
||||
Serial1.print(power);
|
||||
Serial1.println(" W");
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1,202 +0,0 @@
|
||||
/*
|
||||
* Simple sketch to read MBus data from electrical meter
|
||||
* As the protocol requires "Even" parity, and this is
|
||||
* only supported on the hardware port of the ESP8266,
|
||||
* we'll have to use Serial1 for debugging.
|
||||
*
|
||||
* This means you'll have to program the ESP using the
|
||||
* regular RX/TX port, and then you must remove the FTDI
|
||||
* and connect the MBus signal from the meter to the
|
||||
* RS pin. The FTDI/RX can be moved to Pin2 for debugging
|
||||
*
|
||||
* Created 14. september 2017 by Roar Fredriksen
|
||||
*/
|
||||
|
||||
#include <ESP8266WiFi.h>
|
||||
#include <PubSubClient.h>
|
||||
#include <ArduinoJson.h>
|
||||
#include "HanReader.h"
|
||||
#include "Kaifa.h"
|
||||
|
||||
// The HAN Port reader
|
||||
HanReader hanReader;
|
||||
|
||||
// WiFi and MQTT endpoints
|
||||
const char* ssid = "Roar_Etne";
|
||||
const char* password = "**********";
|
||||
const char* mqtt_server = "192.168.10.203";
|
||||
|
||||
WiFiClient espClient;
|
||||
PubSubClient client(espClient);
|
||||
|
||||
void setup() {
|
||||
setupDebugPort();
|
||||
setupWiFi();
|
||||
setupMqtt();
|
||||
|
||||
// initialize the HanReader
|
||||
// (passing Serial as the HAN port and Serial1 for debugging)
|
||||
hanReader.setup(&Serial, &Serial1);
|
||||
}
|
||||
|
||||
void setupMqtt()
|
||||
{
|
||||
client.setServer(mqtt_server, 1883);
|
||||
}
|
||||
|
||||
void setupDebugPort()
|
||||
{
|
||||
// Initialize the Serial1 port for debugging
|
||||
// (This port is fixed to Pin2 of the ESP8266)
|
||||
Serial1.begin(115200);
|
||||
while (!Serial1) {}
|
||||
Serial1.setDebugOutput(true);
|
||||
Serial1.println("Serial1");
|
||||
Serial1.println("Serial debugging port initialized");
|
||||
}
|
||||
|
||||
void setupWiFi()
|
||||
{
|
||||
// Initialize wifi
|
||||
Serial1.print("Connecting to ");
|
||||
Serial1.println(ssid);
|
||||
WiFi.mode(WIFI_STA);
|
||||
WiFi.begin(ssid, password);
|
||||
|
||||
while (WiFi.status() != WL_CONNECTED) {
|
||||
delay(500);
|
||||
Serial1.print(".");
|
||||
}
|
||||
|
||||
Serial1.println("");
|
||||
Serial1.println("WiFi connected");
|
||||
Serial1.println("IP address: ");
|
||||
Serial1.println(WiFi.localIP());
|
||||
}
|
||||
|
||||
void loop() {
|
||||
loopMqtt();
|
||||
|
||||
// Read one byt from the port, and see if we got a full package
|
||||
if (hanReader.read())
|
||||
{
|
||||
// Get the list identifier
|
||||
int listSize = hanReader.getListSize();
|
||||
|
||||
Serial1.println("");
|
||||
Serial1.print("List size: ");
|
||||
Serial1.print(listSize);
|
||||
Serial1.print(": ");
|
||||
|
||||
// Only care for the ACtive Power Imported, which is found in the first list
|
||||
if (listSize == (int)Kaifa::List1 || listSize == (int)Kaifa::List2 || listSize == (int)Kaifa::List3)
|
||||
{
|
||||
if (listSize == (int)Kaifa::List1)
|
||||
{
|
||||
Serial1.println(" (list #1 has no ID)");
|
||||
}
|
||||
else
|
||||
{
|
||||
String id = hanReader.getString((int)Kaifa_List2::ListVersionIdentifier);
|
||||
Serial1.println(id);
|
||||
}
|
||||
|
||||
// Get the timestamp (as unix time) from the package
|
||||
time_t time = hanReader.getPackageTime();
|
||||
Serial.print("Time of the package is: ");
|
||||
Serial.println(time);
|
||||
|
||||
// Define a json object to keep the data
|
||||
StaticJsonBuffer<500> jsonBuffer;
|
||||
JsonObject& root = jsonBuffer.createObject();
|
||||
|
||||
// Any generic useful info here
|
||||
root["id"] = "espdebugger";
|
||||
root["up"] = millis();
|
||||
root["t"] = time;
|
||||
|
||||
// Add a sub-structure to the json object,
|
||||
// to keep the data from the meter itself
|
||||
JsonObject& data = root.createNestedObject("data");
|
||||
|
||||
// Based on the list number, get all details
|
||||
// according to OBIS specifications for the meter
|
||||
if (listSize == (int)Kaifa::List1)
|
||||
{
|
||||
data["P"] = hanReader.getInt((int)Kaifa_List1::ActivePowerImported);
|
||||
}
|
||||
else if (listSize == (int)Kaifa::List2)
|
||||
{
|
||||
data["lv"] = hanReader.getString((int)Kaifa_List2::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString((int)Kaifa_List2::MeterID);
|
||||
data["type"] = hanReader.getString((int)Kaifa_List2::MeterType);
|
||||
data["P"] = hanReader.getInt((int)Kaifa_List2::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt((int)Kaifa_List2::ReactiveImportPower);
|
||||
data["I1"] = hanReader.getInt((int)Kaifa_List2::CurrentL1);
|
||||
data["I2"] = hanReader.getInt((int)Kaifa_List2::CurrentL2);
|
||||
data["I3"] = hanReader.getInt((int)Kaifa_List2::CurrentL3);
|
||||
data["U1"] = hanReader.getInt((int)Kaifa_List2::VoltageL1);
|
||||
data["U2"] = hanReader.getInt((int)Kaifa_List2::VoltageL2);
|
||||
data["U3"] = hanReader.getInt((int)Kaifa_List2::VoltageL3);
|
||||
}
|
||||
else if (listSize == (int)Kaifa::List3)
|
||||
{
|
||||
data["lv"] = hanReader.getString((int)Kaifa_List3::ListVersionIdentifier);;
|
||||
data["id"] = hanReader.getString((int)Kaifa_List3::MeterID);
|
||||
data["type"] = hanReader.getString((int)Kaifa_List3::MeterType);
|
||||
data["P"] = hanReader.getInt((int)Kaifa_List3::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt((int)Kaifa_List3::ReactiveImportPower);
|
||||
data["I1"] = hanReader.getInt((int)Kaifa_List3::CurrentL1);
|
||||
data["I2"] = hanReader.getInt((int)Kaifa_List3::CurrentL2);
|
||||
data["I3"] = hanReader.getInt((int)Kaifa_List3::CurrentL3);
|
||||
data["U1"] = hanReader.getInt((int)Kaifa_List3::VoltageL1);
|
||||
data["U2"] = hanReader.getInt((int)Kaifa_List3::VoltageL2);
|
||||
data["U3"] = hanReader.getInt((int)Kaifa_List3::VoltageL3);
|
||||
data["tPI"] = hanReader.getInt((int)Kaifa_List3::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt((int)Kaifa_List3::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt((int)Kaifa_List3::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt((int)Kaifa_List3::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
|
||||
// Write the json to the debug port
|
||||
root.printTo(Serial1);
|
||||
Serial1.println();
|
||||
|
||||
// Publish the json to the MQTT server
|
||||
char msg[1024];
|
||||
root.printTo(msg, 1024);
|
||||
client.publish("sensors/out/espdebugger", msg);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Ensure the MQTT lirary gets some attention too
|
||||
void loopMqtt()
|
||||
{
|
||||
if (!client.connected()) {
|
||||
reconnectMqtt();
|
||||
}
|
||||
client.loop();
|
||||
}
|
||||
|
||||
void reconnectMqtt() {
|
||||
// Loop until we're reconnected
|
||||
while (!client.connected()) {
|
||||
Serial1.print("Attempting MQTT connection...");
|
||||
// Attempt to connect
|
||||
if (client.connect("ESP8266Client")) {
|
||||
Serial1.println("connected");
|
||||
// Once connected, publish an announcement...
|
||||
// client.publish("sensors", "hello world");
|
||||
// ... and resubscribe
|
||||
// client.subscribe("inTopic");
|
||||
}
|
||||
else {
|
||||
Serial1.print("failed, rc=");
|
||||
Serial1.print(client.state());
|
||||
Serial1.println(" try again in 5 seconds");
|
||||
// Wait 5 seconds before retrying
|
||||
delay(5000);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -1,9 +0,0 @@
|
||||
name=HANreader
|
||||
version=1.0.0
|
||||
author=roarfred
|
||||
maintainer=roarfred <not@important.com>
|
||||
sentence=HAN support
|
||||
paragraph=HAN support
|
||||
category=Sensors
|
||||
url=https://github.com/roarfred/AmsToMqttBridge
|
||||
architectures=*
|
||||
@@ -1,19 +0,0 @@
|
||||
Arduino Compatible Cross Platform C++ Library Project : For more information see http://www.visualmicro.com
|
||||
|
||||
This project works exactly the same way as an Arduino library.
|
||||
|
||||
Add this project to any solution that contains an Arduino project and #include <headers.h> in code as you would any normal Arduino library headers.
|
||||
|
||||
To enable intellisense and to support live build discovery outside of the "standard" Arduino library locations, ensure that the library is added as a shared project reference to the master Arduino project. To do this, right click the master project "References" node and then click "Add Reference". A window will open and the library will appear on the "Shared Projects" tab. Click the checkbox next to the library name to add the reference. If this library is moved the shared referencemust be removed and re-added.
|
||||
|
||||
VS2017 has a bug, workround: After moving existing source code within a "library or shared project", close and re-open the solution.
|
||||
|
||||
Visual Studio will display intellisense for libraries based on the platform/board that has been specified for the currently active "Startup Project" of the current solution.
|
||||
|
||||
|
||||
IMPORTANT: The arduino.cc Library Rules must be followed when adding code or restructing libraries.
|
||||
|
||||
|
||||
|
||||
|
||||
blog: http://www.visualmicro.com/post/2017/01/16/Arduino-Cross-Platform-Library-Development.aspx
|
||||
@@ -1,305 +0,0 @@
|
||||
// Aidon.h
|
||||
|
||||
#ifndef _AIDON_h
|
||||
#define _AIDON_h
|
||||
|
||||
|
||||
enum class Aidon
|
||||
{
|
||||
List1 = 0x01,
|
||||
List1PhaseShort = 0x09,
|
||||
List1PhaseLong = 0x0E,
|
||||
List3PhaseShort = 0x0D,
|
||||
List3PhaseLong = 0x12,
|
||||
List3PhaseITShort = 0x0C,
|
||||
List3PhaseITLong = 0x11,
|
||||
};
|
||||
|
||||
enum class Aidon_List1
|
||||
{
|
||||
ListSize,
|
||||
IGN_0,
|
||||
ActiveImportPower_OBIS,
|
||||
ActiveImportPower,
|
||||
IGN_1,
|
||||
ActiveImportPowerInt8,
|
||||
ActiveImportPowerEnum
|
||||
};
|
||||
|
||||
|
||||
enum class Aidon_List1Phase
|
||||
{
|
||||
ListSize,
|
||||
IGN_0,
|
||||
ListVersionIdentifier_OBIS,
|
||||
ListVersionIdentifier,
|
||||
IGN_1,
|
||||
MeterID_OBIS,
|
||||
MeterID,
|
||||
IGN_2,
|
||||
MeterType_OBIS,
|
||||
MeterType,
|
||||
IGN_3,
|
||||
ActiveImportPower_OBIS,
|
||||
ActiveImportPower,
|
||||
IGN_4,
|
||||
ActiveImportPowerInt8,
|
||||
ActiveImportPowerEnum,
|
||||
IGN_5,
|
||||
ActiveExportPower_OBIS,
|
||||
ActiveExportPower,
|
||||
IGN_6,
|
||||
ActiveExportPowerInt8,
|
||||
ActiveExportPowerEnum,
|
||||
IGN_7,
|
||||
ReactiveImportPower_OBIS,
|
||||
ReactiveImportPower,
|
||||
IGN_8,
|
||||
ReactiveImportPowerInt8,
|
||||
ReactiveImportPowerEnum,
|
||||
IGN_9,
|
||||
ReactiveExportPower_OBIS,
|
||||
ReactiveExportPower,
|
||||
IGN_10,
|
||||
ReactiveExportPowerInt8,
|
||||
ReactiveExportPowerEnum,
|
||||
IGN_11,
|
||||
CurrentL1_OBIS,
|
||||
CurrentL1,
|
||||
IGN_12,
|
||||
CurrentL1Int8,
|
||||
CurrentL1Enum,
|
||||
IGN_13,
|
||||
VoltageL1_OBIS,
|
||||
VoltageL1,
|
||||
IGN_14,
|
||||
VoltageL1Int8,
|
||||
VoltageL1Enum,
|
||||
IGN_15,
|
||||
Timestamp_OBIS,
|
||||
Timestamp,
|
||||
IGN_16,
|
||||
CumulativeActiveImportEnergy_OBIS,
|
||||
CumulativeActiveImportEnergy,
|
||||
IGN_17,
|
||||
CumulativeActiveImportEnergyInt8,
|
||||
CumulativeActiveImportEnergyEnum,
|
||||
IGN_18,
|
||||
CumulativeActiveExportEnergy_OBIS,
|
||||
CumulativeActiveExportEnergy,
|
||||
IGN_19,
|
||||
CumulativeActiveExportEnergyInt8,
|
||||
CumulativeActiveExportEnergyEnum,
|
||||
IGN_20,
|
||||
CumulativeReactiveImportEnergy_OBIS,
|
||||
CumulativeReactiveImportEnergy,
|
||||
IGN_21,
|
||||
CumulativeReactiveImportEnergyInt8,
|
||||
CumulativeReactiveImportEnergyEnum,
|
||||
IGN_22,
|
||||
CumulativeReactiveExportEnergy_OBIS,
|
||||
CumulativeReactiveExportEnergy,
|
||||
IGN_23,
|
||||
CumulativeReactiveExportEnergyInt8,
|
||||
CumulativeReactiveExportEnergyEnum
|
||||
};
|
||||
|
||||
enum class Aidon_List3Phase
|
||||
{
|
||||
ListSize,
|
||||
IGN_0,
|
||||
ListVersionIdentifier_OBIS,
|
||||
ListVersionIdentifier,
|
||||
IGN_1,
|
||||
MeterID_OBIS,
|
||||
MeterID,
|
||||
IGN_2,
|
||||
MeterType_OBIS,
|
||||
MeterType,
|
||||
IGN_3,
|
||||
ActiveImportPower_OBIS,
|
||||
ActiveImportPower,
|
||||
IGN_4,
|
||||
ActiveImportPowerInt8,
|
||||
ActiveImportPowerEnum,
|
||||
IGN_5,
|
||||
ActiveExportPower_OBIS,
|
||||
ActiveExportPower,
|
||||
IGN_6,
|
||||
ActiveExportPowerInt8,
|
||||
ActiveExportPowerEnum,
|
||||
IGN_7,
|
||||
ReactiveImportPower_OBIS,
|
||||
ReactiveImportPower,
|
||||
IGN_8,
|
||||
ReactiveImportPowerInt8,
|
||||
ReactiveImportPowerEnum,
|
||||
IGN_9,
|
||||
ReactiveExportPower_OBIS,
|
||||
ReactiveExportPower,
|
||||
IGN_10,
|
||||
ReactiveExportPowerInt8,
|
||||
ReactiveExportPowerEnum,
|
||||
IGN_11,
|
||||
CurrentL1_OBIS,
|
||||
CurrentL1,
|
||||
IGN_12,
|
||||
CurrentL1Int8,
|
||||
CurrentL1Enum,
|
||||
IGN_13,
|
||||
CurrentL2_OBIS,
|
||||
CurrentL2,
|
||||
IGN_14,
|
||||
CurrentL2Int8,
|
||||
CurrentL2Enum,
|
||||
IGN_15,
|
||||
CurrentL3_OBIS,
|
||||
CurrentL3,
|
||||
IGN_16,
|
||||
CurrentL3Int8,
|
||||
CurrentL3Enum,
|
||||
IGN_17,
|
||||
VoltageL1_OBIS,
|
||||
VoltageL1,
|
||||
IGN_18,
|
||||
VoltageL1Int8,
|
||||
VoltageL1Enum,
|
||||
IGN_19,
|
||||
VoltageL2_OBIS,
|
||||
VoltageL2,
|
||||
IGN_20,
|
||||
VoltageL2Int8,
|
||||
VoltageL2Enum,
|
||||
IGN_21,
|
||||
VoltageL3_OBIS,
|
||||
VoltageL3,
|
||||
IGN_22,
|
||||
VoltageL3Int8,
|
||||
VoltageL3Enum,
|
||||
IGN_23,
|
||||
Timestamp_OBIS,
|
||||
Timestamp,
|
||||
IGN_24,
|
||||
CumulativeActiveImportEnergy_OBIS,
|
||||
CumulativeActiveImportEnergy,
|
||||
IGN_25,
|
||||
CumulativeActiveImportEnergyInt8,
|
||||
CumulativeActiveImportEnergyEnum,
|
||||
IGN_26,
|
||||
CumulativeActiveExportEnergy_OBIS,
|
||||
CumulativeActiveExportEnergy,
|
||||
IGN_27,
|
||||
CumulativeActiveExportEnergyInt8,
|
||||
CumulativeActiveExportEnergyEnum,
|
||||
IGN_28,
|
||||
CumulativeReactiveImportEnergy_OBIS,
|
||||
CumulativeReactiveImportEnergy,
|
||||
IGN_29,
|
||||
CumulativeReactiveImportEnergyInt8,
|
||||
CumulativeReactiveImportEnergyEnum,
|
||||
IGN_30,
|
||||
CumulativeReactiveExportEnergy_OBIS,
|
||||
CumulativeReactiveExportEnergy,
|
||||
IGN_31,
|
||||
CumulativeReactiveExportEnergyInt8,
|
||||
CumulativeReactiveExportEnergyEnum
|
||||
};
|
||||
|
||||
enum class Aidon_List3PhaseIT
|
||||
{
|
||||
ListSize,
|
||||
IGN_0,
|
||||
ListVersionIdentifier_OBIS,
|
||||
ListVersionIdentifier,
|
||||
IGN_1,
|
||||
MeterID_OBIS,
|
||||
MeterID,
|
||||
IGN_2,
|
||||
MeterType_OBIS,
|
||||
MeterType,
|
||||
IGN_3,
|
||||
ActiveImportPower_OBIS,
|
||||
ActiveImportPower,
|
||||
IGN_4,
|
||||
ActiveImportPowerInt8,
|
||||
ActiveImportPowerEnum,
|
||||
IGN_5,
|
||||
ActiveExportPower_OBIS,
|
||||
ActiveExportPower,
|
||||
IGN_6,
|
||||
ActiveExportPowerInt8,
|
||||
ActiveExportPowerEnum,
|
||||
IGN_7,
|
||||
ReactiveImportPower_OBIS,
|
||||
ReactiveImportPower,
|
||||
IGN_8,
|
||||
ReactiveImportPowerInt8,
|
||||
ReactiveImportPowerEnum,
|
||||
IGN_9,
|
||||
ReactiveExportPower_OBIS,
|
||||
ReactiveExportPower,
|
||||
IGN_10,
|
||||
ReactiveExportPowerInt8,
|
||||
ReactiveExportPowerEnum,
|
||||
IGN_11,
|
||||
CurrentL1_OBIS,
|
||||
CurrentL1,
|
||||
IGN_12,
|
||||
CurrentL1Int8,
|
||||
CurrentL1Enum,
|
||||
IGN_13,
|
||||
CurrentL3_OBIS,
|
||||
CurrentL3,
|
||||
IGN_14,
|
||||
CurrentL3Int8,
|
||||
CurrentL3Enum,
|
||||
IGN_15,
|
||||
VoltageL1_OBIS,
|
||||
VoltageL1,
|
||||
IGN_16,
|
||||
VoltageL1Int8,
|
||||
VoltageL1Enum,
|
||||
IGN_17,
|
||||
VoltageL2_OBIS,
|
||||
VoltageL2,
|
||||
IGN_18,
|
||||
VoltageL2Int8,
|
||||
VoltageL2Enum,
|
||||
IGN_19,
|
||||
VoltageL3_OBIS,
|
||||
VoltageL3,
|
||||
IGN_20,
|
||||
VoltageL3Int8,
|
||||
VoltageL3Enum,
|
||||
IGN_21,
|
||||
Timestamp_OBIS,
|
||||
Timestamp,
|
||||
IGN_22,
|
||||
CumulativeActiveImportEnergy_OBIS,
|
||||
CumulativeActiveImportEnergy,
|
||||
IGN_23,
|
||||
CumulativeActiveImportEnergyInt8,
|
||||
CumulativeActiveImportEnergyEnum,
|
||||
IGN_24,
|
||||
CumulativeActiveExportEnergy_OBIS,
|
||||
CumulativeActiveExportEnergy,
|
||||
IGN_25,
|
||||
CumulativeActiveExportEnergyInt8,
|
||||
CumulativeActiveExportEnergyEnum,
|
||||
IGN_26,
|
||||
CumulativeReactiveImportEnergy_OBIS,
|
||||
CumulativeReactiveImportEnergy,
|
||||
IGN_27,
|
||||
CumulativeReactiveImportEnergyInt8,
|
||||
CumulativeReactiveImportEnergyEnum,
|
||||
IGN_28,
|
||||
CumulativeReactiveExportEnergy_OBIS,
|
||||
CumulativeReactiveExportEnergy,
|
||||
IGN_29,
|
||||
CumulativeReactiveExportEnergyInt8,
|
||||
CumulativeReactiveExportEnergyEnum
|
||||
};
|
||||
|
||||
|
||||
#endif
|
||||
|
||||
@@ -1,37 +0,0 @@
|
||||
#include "Crc16.h"
|
||||
|
||||
Crc16Class::Crc16Class()
|
||||
{
|
||||
unsigned short value;
|
||||
unsigned short temp;
|
||||
for (unsigned short i = 0; i < 256; ++i)
|
||||
{
|
||||
value = 0;
|
||||
temp = i;
|
||||
for (byte j = 0; j < 8; ++j)
|
||||
{
|
||||
if (((value ^ temp) & 0x0001) != 0)
|
||||
{
|
||||
value = (ushort)((value >> 1) ^ polynomial);
|
||||
}
|
||||
else
|
||||
{
|
||||
value >>= 1;
|
||||
}
|
||||
temp >>= 1;
|
||||
}
|
||||
table[i] = value;
|
||||
}
|
||||
}
|
||||
|
||||
unsigned short Crc16Class::ComputeChecksum(byte *data, int start, int length)
|
||||
{
|
||||
ushort fcs = 0xffff;
|
||||
for (int i = start; i < (start + length); i++)
|
||||
{
|
||||
byte index = (fcs ^ data[i]) & 0xff;
|
||||
fcs = (ushort)((fcs >> 8) ^ table[index]);
|
||||
}
|
||||
fcs ^= 0xffff;
|
||||
return fcs;
|
||||
}
|
||||
@@ -1,23 +0,0 @@
|
||||
#ifndef _CRC16_h
|
||||
#define _CRC16_h
|
||||
|
||||
#if defined(ARDUINO) && ARDUINO >= 100
|
||||
#include "Arduino.h"
|
||||
#else
|
||||
#include "WProgram.h"
|
||||
#endif
|
||||
|
||||
class Crc16Class
|
||||
{
|
||||
public:
|
||||
Crc16Class();
|
||||
unsigned short ComputeChecksum(byte *data, int start, int length);
|
||||
protected:
|
||||
private:
|
||||
const unsigned short polynomial = 0x8408;
|
||||
unsigned short table[256];
|
||||
};
|
||||
|
||||
#endif
|
||||
|
||||
|
||||
@@ -1,154 +0,0 @@
|
||||
#include "DlmsReader.h"
|
||||
|
||||
DlmsReader::DlmsReader()
|
||||
{
|
||||
//this->Clear();
|
||||
}
|
||||
|
||||
void DlmsReader::Clear()
|
||||
{
|
||||
this->position = 0;
|
||||
this->dataLength = 0;
|
||||
this->destinationAddressLength = 0;
|
||||
this->sourceAddressLength = 0;
|
||||
this->frameFormatType = 0;
|
||||
}
|
||||
|
||||
bool DlmsReader::Read(byte data)
|
||||
{
|
||||
if (position == 0 && data != 0x7E)
|
||||
{
|
||||
// we haven't started yet, wait for the start flag (no need to capture any data yet)
|
||||
return false;
|
||||
}
|
||||
else
|
||||
{
|
||||
// We have completed reading of one package, so clear and be ready for the next
|
||||
if (dataLength > 0 && position >= dataLength + 2)
|
||||
Clear();
|
||||
|
||||
// Check if we're about to run into a buffer overflow
|
||||
if (position >= DLMS_READER_BUFFER_SIZE)
|
||||
Clear();
|
||||
|
||||
// Check if this is a second start flag, which indicates the previous one was a stop from the last package
|
||||
if (position == 1 && data == 0x7E)
|
||||
{
|
||||
// just return, we can keep the one byte we had in the buffer
|
||||
return false;
|
||||
}
|
||||
|
||||
// We have started, so capture every byte
|
||||
buffer[position++] = data;
|
||||
|
||||
if (position == 1)
|
||||
{
|
||||
// This was the start flag, we're not done yet
|
||||
return false;
|
||||
}
|
||||
else if (position == 2)
|
||||
{
|
||||
// Capture the Frame Format Type
|
||||
frameFormatType = (byte)(data & 0xF0);
|
||||
if (!IsValidFrameFormat(frameFormatType))
|
||||
Clear();
|
||||
return false;
|
||||
}
|
||||
else if (position == 3)
|
||||
{
|
||||
// Capture the length of the data package
|
||||
dataLength = ((buffer[1] & 0x0F) << 8) | buffer[2];
|
||||
return false;
|
||||
}
|
||||
else if (destinationAddressLength == 0)
|
||||
{
|
||||
// Capture the destination address
|
||||
destinationAddressLength = GetAddress(3, destinationAddress, 0, DLMS_READER_MAX_ADDRESS_SIZE);
|
||||
if (destinationAddressLength > 3)
|
||||
Clear();
|
||||
return false;
|
||||
}
|
||||
else if (sourceAddressLength == 0)
|
||||
{
|
||||
// Capture the source address
|
||||
sourceAddressLength = GetAddress(3 + destinationAddressLength, sourceAddress, 0, DLMS_READER_MAX_ADDRESS_SIZE);
|
||||
if (sourceAddressLength > 3)
|
||||
Clear();
|
||||
return false;
|
||||
}
|
||||
else if (position == 4 + destinationAddressLength + sourceAddressLength + 2)
|
||||
{
|
||||
// Verify the header checksum
|
||||
ushort headerChecksum = GetChecksum(position - 3);
|
||||
if (headerChecksum != Crc16.ComputeChecksum(buffer, 1, position - 3))
|
||||
Clear();
|
||||
return false;
|
||||
}
|
||||
else if (position == dataLength + 1)
|
||||
{
|
||||
// Verify the data package checksum
|
||||
ushort checksum = this->GetChecksum(position - 3);
|
||||
if (checksum != Crc16.ComputeChecksum(buffer, 1, position - 3))
|
||||
Clear();
|
||||
return false;
|
||||
}
|
||||
else if (position == dataLength + 2)
|
||||
{
|
||||
// We're done, check the stop flag and signal we're done
|
||||
if (data == 0x7E)
|
||||
return true;
|
||||
else
|
||||
{
|
||||
Clear();
|
||||
return false;
|
||||
}
|
||||
}
|
||||
}
|
||||
return false;
|
||||
}
|
||||
|
||||
bool DlmsReader::IsValidFrameFormat(byte frameFormatType)
|
||||
{
|
||||
return frameFormatType == 0xA0;
|
||||
}
|
||||
|
||||
int DlmsReader::GetRawData(byte *dataBuffer, int start, int length)
|
||||
{
|
||||
if (dataLength > 0 && position == dataLength + 2)
|
||||
{
|
||||
int headerLength = 3 + destinationAddressLength + sourceAddressLength + 2;
|
||||
int bytesWritten = 0;
|
||||
for (int i = headerLength + 1; i < dataLength - 1; i++)
|
||||
{
|
||||
dataBuffer[i + start - headerLength - 1] = buffer[i];
|
||||
bytesWritten++;
|
||||
}
|
||||
return bytesWritten;
|
||||
}
|
||||
else
|
||||
return 0;
|
||||
}
|
||||
|
||||
int DlmsReader::GetAddress(int addressPosition, byte* addressBuffer, int start, int length)
|
||||
{
|
||||
int addressBufferPos = start;
|
||||
for (int i = addressPosition; i < position; i++)
|
||||
{
|
||||
addressBuffer[addressBufferPos++] = buffer[i];
|
||||
|
||||
// LSB=1 means this was the last address byte
|
||||
if ((buffer[i] & 0x01) == 0x01)
|
||||
break;
|
||||
|
||||
// See if we've reached last byte, try again when we've got more data
|
||||
else if (i == position - 1)
|
||||
return 0;
|
||||
}
|
||||
return addressBufferPos - start;
|
||||
}
|
||||
|
||||
ushort DlmsReader::GetChecksum(int checksumPosition)
|
||||
{
|
||||
return (ushort)(buffer[checksumPosition + 2] << 8 |
|
||||
buffer[checksumPosition + 1]);
|
||||
}
|
||||
@@ -1,42 +0,0 @@
|
||||
#ifndef _DLMSREADER_h
|
||||
#define _DLMSREADER_h
|
||||
|
||||
#include "Crc16.h"
|
||||
|
||||
#if defined(ARDUINO) && ARDUINO >= 100
|
||||
#include "Arduino.h"
|
||||
#else
|
||||
#include "WProgram.h"
|
||||
#endif
|
||||
|
||||
#define DLMS_READER_BUFFER_SIZE 512
|
||||
#define DLMS_READER_MAX_ADDRESS_SIZE 5
|
||||
|
||||
class DlmsReader
|
||||
{
|
||||
public:
|
||||
DlmsReader();
|
||||
bool Read(byte data);
|
||||
int GetRawData(byte *buffer, int start, int length);
|
||||
|
||||
protected:
|
||||
Crc16Class Crc16;
|
||||
|
||||
private:
|
||||
byte buffer[DLMS_READER_BUFFER_SIZE];
|
||||
int position;
|
||||
int dataLength;
|
||||
byte frameFormatType;
|
||||
byte destinationAddress[DLMS_READER_MAX_ADDRESS_SIZE];
|
||||
byte destinationAddressLength;
|
||||
byte sourceAddress[DLMS_READER_MAX_ADDRESS_SIZE];
|
||||
byte sourceAddressLength;
|
||||
|
||||
void Clear();
|
||||
int GetAddress(int addressPosition, byte* buffer, int start, int length);
|
||||
unsigned short GetChecksum(int checksumPosition);
|
||||
bool IsValidFrameFormat(byte frameFormatType);
|
||||
void WriteBuffer();
|
||||
};
|
||||
|
||||
#endif
|
||||
@@ -1,288 +0,0 @@
|
||||
#include "HanReader.h"
|
||||
|
||||
HanReader::HanReader()
|
||||
{
|
||||
|
||||
}
|
||||
|
||||
void HanReader::setup(Stream *hanPort, Stream *debugPort)
|
||||
{
|
||||
han = hanPort;
|
||||
bytesRead = 0;
|
||||
debug = debugPort;
|
||||
if (debug) debug->println("MBUS serial setup complete");
|
||||
}
|
||||
|
||||
void HanReader::setup(Stream *hanPort)
|
||||
{
|
||||
setup(hanPort, NULL);
|
||||
}
|
||||
|
||||
bool HanReader::read(byte data)
|
||||
{
|
||||
if (reader.Read(data))
|
||||
{
|
||||
bytesRead = reader.GetRawData(buffer, 0, 512);
|
||||
if (debug)
|
||||
{
|
||||
debug->print("Got valid DLMS data (");
|
||||
debug->print(bytesRead);
|
||||
debug->println(" bytes):");
|
||||
debugPrint(buffer, 0, bytesRead);
|
||||
}
|
||||
|
||||
/*
|
||||
Data should start with E6 E7 00 0F
|
||||
and continue with four bytes for the InvokeId
|
||||
*/
|
||||
if (bytesRead < 9)
|
||||
{
|
||||
if (debug) debug->println("Invalid HAN data: Less than 9 bytes received");
|
||||
return false;
|
||||
}
|
||||
else if (
|
||||
buffer[0] != 0xE6 ||
|
||||
buffer[1] != 0xE7 ||
|
||||
buffer[2] != 0x00 ||
|
||||
buffer[3] != 0x0F
|
||||
)
|
||||
{
|
||||
if (debug) debug->println("Invalid HAN data: Start should be E6 E7 00 0F");
|
||||
return false;
|
||||
}
|
||||
|
||||
listSize = getInt(0, buffer, 0, bytesRead);
|
||||
if (debug) debug->print("HAN data is valid, listSize: ");
|
||||
if (debug) debug->println(listSize);
|
||||
return true;
|
||||
}
|
||||
|
||||
return false;
|
||||
}
|
||||
|
||||
void HanReader::debugPrint(byte *buffer, int start, int length)
|
||||
{
|
||||
for (int i = start; i < start + length; i++)
|
||||
{
|
||||
if (buffer[i] < 0x10)
|
||||
debug->print("0");
|
||||
debug->print(buffer[i], HEX);
|
||||
debug->print(" ");
|
||||
if ((i - start + 1) % 16 == 0)
|
||||
debug->println("");
|
||||
else if ((i - start + 1) % 4 == 0)
|
||||
debug->print(" ");
|
||||
|
||||
yield(); // Let other get some resources too
|
||||
}
|
||||
debug->println("");
|
||||
}
|
||||
|
||||
bool HanReader::read()
|
||||
{
|
||||
if (han->available())
|
||||
{
|
||||
byte newByte = han->read();
|
||||
return read(newByte);
|
||||
}
|
||||
return false;
|
||||
}
|
||||
|
||||
int HanReader::getListSize()
|
||||
{
|
||||
return listSize;
|
||||
}
|
||||
|
||||
time_t HanReader::getPackageTime()
|
||||
{
|
||||
int packageTimePosition = dataHeader
|
||||
+ (compensateFor09HeaderBug ? 1 : 0);
|
||||
|
||||
return getTime(buffer, packageTimePosition, bytesRead);
|
||||
}
|
||||
|
||||
time_t HanReader::getTime(int objectId)
|
||||
{
|
||||
return getTime(objectId, buffer, 0, bytesRead);
|
||||
}
|
||||
|
||||
int HanReader::getInt(int objectId)
|
||||
{
|
||||
return getInt(objectId, buffer, 0, bytesRead);
|
||||
}
|
||||
|
||||
String HanReader::getString(int objectId)
|
||||
{
|
||||
return getString(objectId, buffer, 0, bytesRead);
|
||||
}
|
||||
|
||||
|
||||
int HanReader::findValuePosition(int dataPosition, byte *buffer, int start, int length)
|
||||
{
|
||||
// The first byte after the header gives the length
|
||||
// of the extended header information (variable)
|
||||
int headerSize = dataHeader + (compensateFor09HeaderBug ? 1 : 0);
|
||||
int firstData = headerSize + buffer[headerSize] + 1;
|
||||
|
||||
for (int i = start + firstData; i<length; i++)
|
||||
{
|
||||
if (dataPosition-- == 0)
|
||||
return i;
|
||||
else if (buffer[i] == 0x00) // null
|
||||
i += 0;
|
||||
else if (buffer[i] == 0x0A) // String
|
||||
i += buffer[i + 1] + 1;
|
||||
else if (buffer[i] == 0x09) // byte array
|
||||
i += buffer[i + 1] + 1;
|
||||
else if (buffer[i] == 0x01) // array (1 byte for reading size)
|
||||
i += 1;
|
||||
else if (buffer[i] == 0x02) // struct (1 byte for reading size)
|
||||
i += 1;
|
||||
else if (buffer[i] == 0x10) // int16 value (2 bytes)
|
||||
i += 2;
|
||||
else if (buffer[i] == 0x12) // uint16 value (2 bytes)
|
||||
i += 2;
|
||||
else if (buffer[i] == 0x06) // uint32 value (4 bytes)
|
||||
i += 4;
|
||||
else if (buffer[i] == 0x0F) // int8 value (1 bytes)
|
||||
i += 1;
|
||||
else if (buffer[i] == 0x16) // enum (1 bytes)
|
||||
i += 1;
|
||||
else
|
||||
{
|
||||
if (debug)
|
||||
{
|
||||
debug->print("Unknown data type found: 0x");
|
||||
debug->println(buffer[i], HEX);
|
||||
}
|
||||
return 0; // unknown data type found
|
||||
}
|
||||
}
|
||||
|
||||
if (debug)
|
||||
{
|
||||
debug->print("Passed the end of the data. Length was: ");
|
||||
debug->println(length);
|
||||
}
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
|
||||
time_t HanReader::getTime(int dataPosition, byte *buffer, int start, int length)
|
||||
{
|
||||
// TODO: check if the time is represented always as a 12 byte string (0x09 0x0C)
|
||||
int timeStart = findValuePosition(dataPosition, buffer, start, length);
|
||||
timeStart += 1;
|
||||
return getTime(buffer, start + timeStart, length - timeStart);
|
||||
}
|
||||
|
||||
time_t HanReader::getTime(byte *buffer, int start, int length)
|
||||
{
|
||||
int pos = start;
|
||||
int dataLength = buffer[pos++];
|
||||
|
||||
if (dataLength == 0x0C)
|
||||
{
|
||||
int year = buffer[pos] << 8 |
|
||||
buffer[pos + 1];
|
||||
|
||||
int month = buffer[pos + 2];
|
||||
int day = buffer[pos + 3];
|
||||
int hour = buffer[pos + 5];
|
||||
int minute = buffer[pos + 6];
|
||||
int second = buffer[pos + 7];
|
||||
|
||||
return toUnixTime(year, month, day, hour, minute, second);
|
||||
}
|
||||
else
|
||||
{
|
||||
// Date format not supported
|
||||
return (time_t)0L;
|
||||
}
|
||||
}
|
||||
|
||||
int HanReader::getInt(int dataPosition, byte *buffer, int start, int length)
|
||||
{
|
||||
int valuePosition = findValuePosition(dataPosition, buffer, start, length);
|
||||
|
||||
if (valuePosition > 0)
|
||||
{
|
||||
int value = 0;
|
||||
int bytes = 0;
|
||||
switch (buffer[valuePosition++])
|
||||
{
|
||||
case 0x10:
|
||||
bytes = 2;
|
||||
break;
|
||||
case 0x12:
|
||||
bytes = 2;
|
||||
break;
|
||||
case 0x06:
|
||||
bytes = 4;
|
||||
break;
|
||||
case 0x02:
|
||||
bytes = 1;
|
||||
break;
|
||||
case 0x01:
|
||||
bytes = 1;
|
||||
break;
|
||||
case 0x0F:
|
||||
bytes = 1;
|
||||
break;
|
||||
case 0x16:
|
||||
bytes = 1;
|
||||
break;
|
||||
}
|
||||
|
||||
for (int i = valuePosition; i < valuePosition + bytes; i++)
|
||||
{
|
||||
value = value << 8 | buffer[i];
|
||||
}
|
||||
|
||||
return value;
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
String HanReader::getString(int dataPosition, byte *buffer, int start, int length)
|
||||
{
|
||||
int valuePosition = findValuePosition(dataPosition, buffer, start, length);
|
||||
if (valuePosition > 0)
|
||||
{
|
||||
String value = String("");
|
||||
for (int i = valuePosition + 2; i < valuePosition + buffer[valuePosition + 1] + 2; i++)
|
||||
{
|
||||
value += String((char)buffer[i]);
|
||||
}
|
||||
return value;
|
||||
}
|
||||
return String("");
|
||||
}
|
||||
|
||||
time_t HanReader::toUnixTime(int year, int month, int day, int hour, int minute, int second)
|
||||
{
|
||||
byte daysInMonth[] = { 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 };
|
||||
long secondsPerMinute = 60;
|
||||
long secondsPerHour = secondsPerMinute * 60;
|
||||
long secondsPerDay = secondsPerHour * 24;
|
||||
|
||||
long time = (year - 1970) * secondsPerDay * 365L;
|
||||
|
||||
for (int yearCounter = 1970; yearCounter<year; yearCounter++)
|
||||
if ((yearCounter % 4 == 0) && ((yearCounter % 100 != 0) || (yearCounter % 400 == 0)))
|
||||
time += secondsPerDay;
|
||||
|
||||
if (month > 2 && (year % 4 == 0) && ((year % 100 != 0) || (year % 400 == 0)))
|
||||
time += secondsPerDay;
|
||||
|
||||
for (int monthCounter = 1; monthCounter<month; monthCounter++)
|
||||
time += daysInMonth[monthCounter - 1] * secondsPerDay;
|
||||
|
||||
time += (day - 1) * secondsPerDay;
|
||||
time += hour * secondsPerHour;
|
||||
time += minute * secondsPerMinute;
|
||||
time += second;
|
||||
|
||||
return (time_t)time;
|
||||
}
|
||||
@@ -1,52 +0,0 @@
|
||||
#ifndef _HANREADER_h
|
||||
#define _HANREADER_h
|
||||
|
||||
#if defined(ARDUINO) && ARDUINO >= 100
|
||||
#include "Arduino.h"
|
||||
#else
|
||||
#include "WProgram.h"
|
||||
#endif
|
||||
|
||||
|
||||
#include "DlmsReader.h"
|
||||
|
||||
|
||||
class HanReader
|
||||
{
|
||||
public:
|
||||
const uint dataHeader = 8;
|
||||
bool compensateFor09HeaderBug = false;
|
||||
|
||||
HanReader();
|
||||
void setup(Stream *hanPort);
|
||||
void setup(Stream *hanPort, Stream *debugPort);
|
||||
bool read();
|
||||
bool read(byte data);
|
||||
int getListSize();
|
||||
time_t getPackageTime();
|
||||
int getInt(int objectId);
|
||||
String getString(int objectId);
|
||||
time_t getTime(int objectId);
|
||||
|
||||
private:
|
||||
Stream *debug;
|
||||
Stream *han;
|
||||
byte buffer[512];
|
||||
int bytesRead;
|
||||
DlmsReader reader;
|
||||
int listSize;
|
||||
|
||||
int findValuePosition(int dataPosition, byte *buffer, int start, int length);
|
||||
|
||||
time_t getTime(int dataPosition, byte *buffer, int start, int length);
|
||||
time_t getTime(byte *buffer, int start, int length);
|
||||
int getInt(int dataPosition, byte *buffer, int start, int length);
|
||||
String getString(int dataPosition, byte *buffer, int start, int length);
|
||||
|
||||
time_t toUnixTime(int year, int month, int day, int hour, int minute, int second);
|
||||
|
||||
void debugPrint(byte *buffer, int start, int length);
|
||||
};
|
||||
|
||||
|
||||
#endif
|
||||
@@ -1,57 +0,0 @@
|
||||
#ifndef _KAIFA_h
|
||||
#define _KAIFA_h
|
||||
|
||||
enum class Kaifa : byte {
|
||||
List1 = 0x01,
|
||||
List1PhaseShort = 0x09,
|
||||
List3PhaseShort = 0x0D,
|
||||
List1PhaseLong = 0x0E,
|
||||
List3PhaseLong = 0x12
|
||||
};
|
||||
|
||||
enum class Kaifa_List1 {
|
||||
ListSize,
|
||||
ActivePowerImported
|
||||
};
|
||||
|
||||
enum class Kaifa_List3Phase {
|
||||
ListSize,
|
||||
ListVersionIdentifier,
|
||||
MeterID,
|
||||
MeterType,
|
||||
ActiveImportPower,
|
||||
ActiveExportPower,
|
||||
ReactiveImportPower,
|
||||
ReactiveExportPower,
|
||||
CurrentL1,
|
||||
CurrentL2,
|
||||
CurrentL3,
|
||||
VoltageL1,
|
||||
VoltageL2,
|
||||
VoltageL3,
|
||||
MeterClock,
|
||||
CumulativeActiveImportEnergy,
|
||||
CumulativeActiveExportEnergy,
|
||||
CumulativeReactiveImportEnergy,
|
||||
CumulativeReactiveExportEnergy
|
||||
};
|
||||
|
||||
enum class Kaifa_List1Phase {
|
||||
ListSize,
|
||||
ListVersionIdentifier,
|
||||
MeterID,
|
||||
MeterType,
|
||||
ActiveImportPower,
|
||||
ActiveExportPower,
|
||||
ReactiveImportPower,
|
||||
ReactiveExportPower,
|
||||
CurrentL1,
|
||||
VoltageL1,
|
||||
MeterClock,
|
||||
CumulativeActiveImportEnergy,
|
||||
CumulativeActiveExportEnergy,
|
||||
CumulativeReactiveImportEnergy,
|
||||
CumulativeReactiveExportEnergy
|
||||
};
|
||||
|
||||
#endif
|
||||
@@ -1,88 +0,0 @@
|
||||
// Kamstrup.h
|
||||
|
||||
#ifndef _KAMSTRUP_h
|
||||
#define _KAMSTRUP_h
|
||||
|
||||
|
||||
enum class Kamstrup
|
||||
{
|
||||
List3PhaseShort = 0x19,
|
||||
List3PhaseLong = 0x23,
|
||||
List1PhaseShort = 0x11,
|
||||
List1PhaseLong = 0x1B
|
||||
};
|
||||
|
||||
enum class Kamstrup_List3Phase
|
||||
{
|
||||
ListSize,
|
||||
ListVersionIdentifier,
|
||||
MeterID_OBIS,
|
||||
MeterID,
|
||||
MeterType_OBIS,
|
||||
MeterType,
|
||||
ActiveImportPower_OBIS,
|
||||
ActiveImportPower,
|
||||
ActiveExportPower_OBIS,
|
||||
ActiveExportPower,
|
||||
ReactiveImportPower_OBIS,
|
||||
ReactiveImportPower,
|
||||
ReactiveExportPower_OBIS,
|
||||
ReactiveExportPower,
|
||||
CurrentL1_OBIS,
|
||||
CurrentL1,
|
||||
CurrentL2_OBIS,
|
||||
CurrentL2,
|
||||
CurrentL3_OBIS,
|
||||
CurrentL3,
|
||||
VoltageL1_OBIS,
|
||||
VoltageL1,
|
||||
VoltageL2_OBIS,
|
||||
VoltageL2,
|
||||
VoltageL3_OBIS,
|
||||
VoltageL3,
|
||||
MeterClock_OBIS,
|
||||
MeterClock,
|
||||
CumulativeActiveImportEnergy_OBIS,
|
||||
CumulativeActiveImportEnergy,
|
||||
CumulativeActiveExportEnergy_OBIS,
|
||||
CumulativeActiveExportEnergy,
|
||||
CumulativeReactiveImportEnergy_OBIS,
|
||||
CumulativeReactiveImportEnergy,
|
||||
CumulativeReactiveExportEnergy_OBIS,
|
||||
CumulativeReactiveExportEnergy
|
||||
};
|
||||
|
||||
enum class Kamstrup_List1Phase
|
||||
{
|
||||
ListSize,
|
||||
ListVersionIdentifier,
|
||||
MeterID_OBIS,
|
||||
MeterID,
|
||||
MeterType_OBIS,
|
||||
MeterType,
|
||||
ActiveImportPower_OBIS,
|
||||
ActiveImportPower,
|
||||
ActiveExportPower_OBIS,
|
||||
ActiveExportPower,
|
||||
ReactiveImportPower_OBIS,
|
||||
ReactiveImportPower,
|
||||
ReactiveExportPower_OBIS,
|
||||
ReactiveExportPower,
|
||||
CurrentL1_OBIS,
|
||||
CurrentL1,
|
||||
VoltageL1_OBIS,
|
||||
VoltageL1,
|
||||
MeterClock_OBIS,
|
||||
MeterClock,
|
||||
CumulativeActiveImportEnergy_OBIS,
|
||||
CumulativeActiveImportEnergy,
|
||||
CumulativeActiveExportEnergy_OBIS,
|
||||
CumulativeActiveExportEnergy,
|
||||
CumulativeReactiveImportEnergy_OBIS,
|
||||
CumulativeReactiveImportEnergy,
|
||||
CumulativeReactiveExportEnergy_OBIS,
|
||||
CumulativeReactiveExportEnergy
|
||||
};
|
||||
|
||||
#endif
|
||||
|
||||
@@ -1,9 +0,0 @@
|
||||
name=HanToJson
|
||||
version=1.0.0
|
||||
author=roarfred
|
||||
maintainer=roarfred <not@important.com>
|
||||
sentence=HAN reader data to Json
|
||||
paragraph=HAN reader data to Json
|
||||
category=Sensors
|
||||
url=https://github.com/roarfred/AmsToMqttBridge
|
||||
architectures=*
|
||||
@@ -1,284 +0,0 @@
|
||||
#include "HanToJson.h"
|
||||
#include "Aidon.h"
|
||||
#include "Kaifa.h"
|
||||
#include "Kamstrup.h"
|
||||
|
||||
|
||||
static void hanToJsonKaifa3phase(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
if (listSize >= (int)Kaifa::List3PhaseShort)
|
||||
{
|
||||
data["lv"] = hanReader.getString( (int)Kaifa_List3Phase::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Kaifa_List3Phase::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Kaifa_List3Phase::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Kaifa_List3Phase::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Kaifa_List3Phase::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Kaifa_List3Phase::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Kaifa_List3Phase::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt((int)Kaifa_List3Phase::CurrentL1)) / 1000;
|
||||
data["I2"] = ((double) hanReader.getInt((int)Kaifa_List3Phase::CurrentL2)) / 1000;
|
||||
data["I3"] = ((double) hanReader.getInt((int)Kaifa_List3Phase::CurrentL3)) / 1000;
|
||||
data["U1"] = ((double) hanReader.getInt((int)Kaifa_List3Phase::VoltageL1)) / 10;
|
||||
data["U2"] = ((double) hanReader.getInt((int)Kaifa_List3Phase::VoltageL2)) / 10;
|
||||
data["U3"] = ((double) hanReader.getInt((int)Kaifa_List3Phase::VoltageL3)) / 10;
|
||||
}
|
||||
|
||||
if (listSize >= (int)Kaifa::List3PhaseLong)
|
||||
{
|
||||
data["rtc"] = hanReader.getTime( (int)Kaifa_List3Phase::MeterClock);
|
||||
data["tPI"] = hanReader.getInt( (int)Kaifa_List3Phase::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Kaifa_List3Phase::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Kaifa_List3Phase::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Kaifa_List3Phase::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonKaifa1phase(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
if (listSize >= (int)Kaifa::List1PhaseShort)
|
||||
{
|
||||
data["lv"] = hanReader.getString( (int)Kaifa_List1Phase::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Kaifa_List1Phase::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Kaifa_List1Phase::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Kaifa_List1Phase::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Kaifa_List1Phase::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Kaifa_List1Phase::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Kaifa_List1Phase::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt((int)Kaifa_List1Phase::CurrentL1)) / 1000;
|
||||
data["U1"] = ((double) hanReader.getInt((int)Kaifa_List1Phase::VoltageL1)) / 10;
|
||||
}
|
||||
|
||||
if (listSize >= (int)Kaifa::List1PhaseLong)
|
||||
{
|
||||
data["rtc"] = hanReader.getTime( (int)Kaifa_List1Phase::MeterClock);
|
||||
data["tPI"] = hanReader.getInt( (int)Kaifa_List1Phase::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Kaifa_List1Phase::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Kaifa_List1Phase::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Kaifa_List1Phase::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonKaifa(JsonObject& data, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
int listSize = hanReader.getListSize();
|
||||
|
||||
if (listSize == (int)Kaifa::List1)
|
||||
{
|
||||
// Handle listSize == 1 specially
|
||||
data["P"] = hanReader.getInt( (int)Kaifa_List1::ActivePowerImported);
|
||||
return;
|
||||
}
|
||||
|
||||
switch (listSize) {
|
||||
case (int)Kaifa::List3PhaseShort:
|
||||
case (int)Kaifa::List3PhaseLong:
|
||||
return hanToJsonKaifa3phase(listSize, data, hanReader, debugger);
|
||||
case (int)Kaifa::List1PhaseShort:
|
||||
case (int)Kaifa::List1PhaseLong:
|
||||
return hanToJsonKaifa1phase(listSize, data, hanReader, debugger);
|
||||
default:
|
||||
if (debugger) debugger->printf("Warning: Unknown listSize %d\n", listSize);
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
static void hanToJsonAidon3phase(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger) {
|
||||
if (listSize >= (int)Aidon::List3PhaseShort) {
|
||||
data["lv"] = hanReader.getString( (int)Aidon_List3Phase::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Aidon_List3Phase::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Aidon_List3Phase::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Aidon_List3Phase::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Aidon_List3Phase::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Aidon_List3Phase::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Aidon_List3Phase::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt( (int)Aidon_List3Phase::CurrentL1)) / 10;
|
||||
data["I2"] = ((double) hanReader.getInt( (int)Aidon_List3Phase::CurrentL2)) / 10;
|
||||
data["I3"] = ((double) hanReader.getInt( (int)Aidon_List3Phase::CurrentL3)) / 10;
|
||||
data["U1"] = ((double) hanReader.getInt( (int)Aidon_List3Phase::VoltageL1)) / 10;
|
||||
data["U2"] = ((double) hanReader.getInt( (int)Aidon_List3Phase::VoltageL2)) / 10;
|
||||
data["U3"] = ((double) hanReader.getInt( (int)Aidon_List3Phase::VoltageL3)) / 10;
|
||||
}
|
||||
|
||||
if (listSize >= (int)Aidon::List3PhaseLong) {
|
||||
data["rtc"] = hanReader.getTime( (int)Aidon_List3Phase::Timestamp);
|
||||
data["tPI"] = hanReader.getInt( (int)Aidon_List3Phase::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Aidon_List3Phase::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Aidon_List3Phase::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Aidon_List3Phase::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonAidon1phase(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
if (listSize >= (int)Aidon::List1PhaseShort)
|
||||
{
|
||||
data["lv"] = hanReader.getString( (int)Aidon_List1Phase::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Aidon_List1Phase::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Aidon_List1Phase::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Aidon_List1Phase::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Aidon_List1Phase::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Aidon_List1Phase::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Aidon_List1Phase::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt( (int)Aidon_List1Phase::CurrentL1)) / 10;
|
||||
data["U1"] = ((double) hanReader.getInt( (int)Aidon_List1Phase::VoltageL1)) / 10;
|
||||
}
|
||||
|
||||
if (listSize >= (int)Aidon::List1PhaseLong)
|
||||
{
|
||||
data["rtc"] = hanReader.getTime( (int)Aidon_List1Phase::Timestamp);
|
||||
data["tPI"] = hanReader.getInt( (int)Aidon_List1Phase::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Aidon_List1Phase::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Aidon_List1Phase::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Aidon_List1Phase::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonAidon3phaseIT(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
if (listSize >= (int)Aidon::List3PhaseITShort)
|
||||
{
|
||||
data["lv"] = hanReader.getString( (int)Aidon_List3PhaseIT::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Aidon_List3PhaseIT::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Aidon_List3PhaseIT::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Aidon_List3PhaseIT::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Aidon_List3PhaseIT::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Aidon_List3PhaseIT::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Aidon_List3PhaseIT::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt( (int)Aidon_List3PhaseIT::CurrentL1)) / 10;
|
||||
data["I2"] = 0;
|
||||
data["I3"] = ((double) hanReader.getInt( (int)Aidon_List3PhaseIT::CurrentL3)) / 10;
|
||||
data["U1"] = ((double) hanReader.getInt( (int)Aidon_List3PhaseIT::VoltageL1)) / 10;
|
||||
data["U2"] = ((double) hanReader.getInt( (int)Aidon_List3PhaseIT::VoltageL2)) / 10;
|
||||
data["U3"] = ((double) hanReader.getInt( (int)Aidon_List3PhaseIT::VoltageL3)) / 10;
|
||||
}
|
||||
|
||||
if (listSize >= (int)Aidon::List3PhaseITLong)
|
||||
{
|
||||
data["rtc"] = hanReader.getTime( (int)Aidon_List3PhaseIT::Timestamp);
|
||||
data["tPI"] = hanReader.getInt( (int)Aidon_List3PhaseIT::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Aidon_List3PhaseIT::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Aidon_List3PhaseIT::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Aidon_List3PhaseIT::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonAidon(JsonObject& data, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
int listSize = hanReader.getListSize();
|
||||
|
||||
// Based on the list number, get all details
|
||||
// according to OBIS specifications for the meter
|
||||
if (listSize == (int)Aidon::List1)
|
||||
{
|
||||
// Handle listSize == 1 specially
|
||||
data["P"] = hanReader.getInt((int)Aidon_List1::ActiveImportPower);
|
||||
return;
|
||||
}
|
||||
|
||||
switch (listSize) {
|
||||
case (int)Aidon::List3PhaseShort:
|
||||
case (int)Aidon::List3PhaseLong:
|
||||
return hanToJsonAidon3phase(listSize, data, hanReader, debugger);
|
||||
case (int)Aidon::List1PhaseShort:
|
||||
case (int)Aidon::List1PhaseLong:
|
||||
return hanToJsonAidon1phase(listSize, data, hanReader, debugger);
|
||||
case (int)Aidon::List3PhaseITShort:
|
||||
case (int)Aidon::List3PhaseITLong:
|
||||
return hanToJsonAidon3phaseIT(listSize, data, hanReader, debugger);
|
||||
default:
|
||||
if (debugger) debugger->printf("Warning: Unknown listSize %d\n", listSize);
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonKamstrup3phase(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger) {
|
||||
if (listSize >= (int)Kamstrup::List3PhaseShort) {
|
||||
data["lv"] = hanReader.getString( (int)Kamstrup_List3Phase::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Kamstrup_List3Phase::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Kamstrup_List3Phase::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Kamstrup_List3Phase::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Kamstrup_List3Phase::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Kamstrup_List3Phase::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Kamstrup_List3Phase::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt((int)Kamstrup_List3Phase::CurrentL1)) / 100;
|
||||
data["I2"] = ((double) hanReader.getInt((int)Kamstrup_List3Phase::CurrentL2)) / 100;
|
||||
data["I3"] = ((double) hanReader.getInt((int)Kamstrup_List3Phase::CurrentL3)) / 100;
|
||||
data["U1"] = hanReader.getInt( (int)Kamstrup_List3Phase::VoltageL1);
|
||||
data["U2"] = hanReader.getInt( (int)Kamstrup_List3Phase::VoltageL2);
|
||||
data["U3"] = hanReader.getInt( (int)Kamstrup_List3Phase::VoltageL3);
|
||||
}
|
||||
|
||||
if (listSize >= (int)Kamstrup::List3PhaseLong) {
|
||||
data["rtc"] = hanReader.getTime( (int)Kamstrup_List3Phase::MeterClock);
|
||||
data["tPI"] = hanReader.getInt( (int)Kamstrup_List3Phase::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Kamstrup_List3Phase::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Kamstrup_List3Phase::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Kamstrup_List3Phase::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonKamstrup1phase(int listSize, JsonObject& data, HanReader& hanReader, Stream *debugger) {
|
||||
if (listSize >= (int)Kamstrup::List1PhaseShort) {
|
||||
data["lv"] = hanReader.getString( (int)Kamstrup_List1Phase::ListVersionIdentifier);
|
||||
data["id"] = hanReader.getString( (int)Kamstrup_List1Phase::MeterID);
|
||||
data["type"] = hanReader.getString( (int)Kamstrup_List1Phase::MeterType);
|
||||
data["P"] = hanReader.getInt( (int)Kamstrup_List1Phase::ActiveImportPower);
|
||||
data["Q"] = hanReader.getInt( (int)Kamstrup_List1Phase::ReactiveImportPower);
|
||||
data["PO"] = hanReader.getInt( (int)Kamstrup_List1Phase::ActiveExportPower);
|
||||
data["QO"] = hanReader.getInt( (int)Kamstrup_List1Phase::ReactiveExportPower);
|
||||
data["I1"] = ((double) hanReader.getInt((int)Kamstrup_List1Phase::CurrentL1)) / 100;
|
||||
data["U1"] = hanReader.getInt( (int)Kamstrup_List1Phase::VoltageL1);
|
||||
}
|
||||
|
||||
if (listSize >= (int)Kamstrup::List1PhaseLong) {
|
||||
data["rtc"] = hanReader.getTime( (int)Kamstrup_List1Phase::MeterClock);
|
||||
data["tPI"] = hanReader.getInt( (int)Kamstrup_List1Phase::CumulativeActiveImportEnergy);
|
||||
data["tPO"] = hanReader.getInt( (int)Kamstrup_List1Phase::CumulativeActiveExportEnergy);
|
||||
data["tQI"] = hanReader.getInt( (int)Kamstrup_List1Phase::CumulativeReactiveImportEnergy);
|
||||
data["tQO"] = hanReader.getInt( (int)Kamstrup_List1Phase::CumulativeReactiveExportEnergy);
|
||||
}
|
||||
}
|
||||
|
||||
static void hanToJsonKamstrup(JsonObject& data, HanReader& hanReader, Stream *debugger) {
|
||||
int listSize = hanReader.getListSize();
|
||||
|
||||
switch (listSize) {
|
||||
case (int)Kamstrup::List3PhaseShort:
|
||||
case (int)Kamstrup::List3PhaseLong:
|
||||
return hanToJsonKamstrup3phase(listSize, data, hanReader, debugger);
|
||||
case (int)Kamstrup::List1PhaseShort:
|
||||
case (int)Kamstrup::List1PhaseLong:
|
||||
return hanToJsonKamstrup1phase(listSize, data, hanReader, debugger);
|
||||
default:
|
||||
if (debugger) debugger->printf("Warning: Unknown listSize %d\n", listSize);
|
||||
return;
|
||||
}
|
||||
}
|
||||
|
||||
void hanToJson(JsonObject& data, byte meterType, HanReader& hanReader, Stream *debugger)
|
||||
{
|
||||
// Based on the list number, get all details
|
||||
// according to OBIS specifications for the meter
|
||||
switch (meterType)
|
||||
{
|
||||
case 1: // Kaifa
|
||||
return hanToJsonKaifa(data, hanReader, debugger);
|
||||
case 2: // Aidon
|
||||
return hanToJsonAidon(data, hanReader, debugger);
|
||||
case 3: // Kamstrup
|
||||
return hanToJsonKamstrup(data, hanReader, debugger);
|
||||
default:
|
||||
if (debugger) {
|
||||
debugger->print("Meter type ");
|
||||
debugger->print(meterType, HEX);
|
||||
debugger->println(" is unknown");
|
||||
}
|
||||
break;
|
||||
}
|
||||
}
|
||||
|
||||
void hanToJson(JsonObject& data, byte meterType, HanReader& hanReader)
|
||||
{
|
||||
return hanToJson(data, meterType, hanReader, NULL);
|
||||
}
|
||||
@@ -1,17 +0,0 @@
|
||||
#ifndef _HANTOJSON_h
|
||||
#define _HANTOJSON_h
|
||||
|
||||
#if defined(ARDUINO) && ARDUINO >= 100
|
||||
#include "Arduino.h"
|
||||
#else
|
||||
#include "WProgram.h"
|
||||
#endif
|
||||
|
||||
#include <ArduinoJson.h>
|
||||
#include "HanReader.h"
|
||||
|
||||
void hanToJson(JsonObject& data, byte meterType, HanReader& hanReader);
|
||||
void hanToJson(JsonObject& root, byte meterType, HanReader& hanReader, Stream *debugPort);
|
||||
|
||||
|
||||
#endif
|
||||
@@ -4,12 +4,18 @@ default_envs = dev
|
||||
[env:dev]
|
||||
platform = espressif8266
|
||||
board = esp12e
|
||||
framework = ${common.framework}
|
||||
board_build.ldscript = eagle.flash.4m2m.ld
|
||||
framework = arduino
|
||||
lib_deps = ${common.lib_deps}
|
||||
lib_ignore = ${common.lib_ignore}
|
||||
lib_compat_mode = off
|
||||
build_flags =
|
||||
-D HW_ROARFRED=1
|
||||
-D WEBSOCKET_DISABLED=1
|
||||
-D DEBUG_MODE=1
|
||||
monitor_speed = 2400
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
monitor_speed = 115200 ; If serial port is shared with HAN, use baud and parity configured for meter
|
||||
monitor_flags =
|
||||
--parity
|
||||
E
|
||||
N
|
||||
|
||||
@@ -1,63 +1,48 @@
|
||||
[platformio]
|
||||
extra_configs = platformio-user.ini
|
||||
|
||||
|
||||
[common]
|
||||
lib_deps = Timezone@1.2.4, 256dpi/MQTT@2.5.0, OneWireNg@0.10.0, DallasTemperature@3.9.1, EspSoftwareSerial@6.14.1, https://github.com/gskjold/RemoteDebug.git, Time@1.6.1
|
||||
lib_ignore = OneWire
|
||||
|
||||
[env:esp8266]
|
||||
platform = espressif8266@3.2.0
|
||||
framework = arduino
|
||||
lib_deps = HanConfigAp@1.0.0, HanReader@1.0.0, HanToJson@1.0.0, ArduinoJson@^6.0.0, MQTT@^2.4.0, DallasTemperature@^3.8.0, EspSoftwareSerial@^6.7.1
|
||||
|
||||
[env:hw1esp12e]
|
||||
platform = espressif8266
|
||||
board = esp12e
|
||||
framework = ${common.framework}
|
||||
board_build.ldscript = eagle.flash.4m2m.ld
|
||||
build_flags = -D WEBSOCKET_DISABLED=1
|
||||
lib_deps = ${common.lib_deps}
|
||||
build_flags =
|
||||
-D HW_ROARFRED=1
|
||||
lib_ignore = ${common.lib_ignore}
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
|
||||
[env:esp12e]
|
||||
platform = espressif8266
|
||||
board = esp12e
|
||||
framework = ${common.framework}
|
||||
lib_deps = ${common.lib_deps}
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
|
||||
[env:d1mini]
|
||||
platform = espressif8266
|
||||
board = d1_mini
|
||||
framework = ${common.framework}
|
||||
lib_deps = ${common.lib_deps}
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
|
||||
[env:esp32]
|
||||
platform = espressif32
|
||||
platform = https://github.com/platformio/platform-espressif32.git#feature/arduino-upstream
|
||||
framework = arduino
|
||||
board = esp32dev
|
||||
framework = ${common.framework}
|
||||
board_build.f_cpu = 160000000L
|
||||
build_flags = -D WEBSOCKET_DISABLED=1
|
||||
lib_deps = ${common.lib_deps}
|
||||
lib_ignore = ${common.lib_ignore}
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
|
||||
[env:lolind32]
|
||||
platform = espressif32
|
||||
board = lolin_d32
|
||||
framework = ${common.framework}
|
||||
lib_deps = ${common.lib_deps}
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
|
||||
[env:featheresp32]
|
||||
platform = espressif32
|
||||
board = featheresp32
|
||||
framework = ${common.framework}
|
||||
[env:esp32s2]
|
||||
platform = https://github.com/tasmota/platform-espressif32.git#v2.0.3
|
||||
platform_packages = framework-arduinoespressif32 @ https://github.com/espressif/arduino-esp32.git#2.0.2
|
||||
framework = arduino
|
||||
board = esp32dev
|
||||
board_build.mcu = esp32s2
|
||||
board_build.variant = esp32s2
|
||||
board_build.flash_mode = qio
|
||||
board_build.f_cpu = 160000000L
|
||||
board_build.f_flash = 40000000L
|
||||
build_flags = -D WEBSOCKET_DISABLED=1
|
||||
lib_deps = ${common.lib_deps}
|
||||
lib_ignore = ${common.lib_ignore}
|
||||
extra_scripts =
|
||||
pre:scripts/addversion.py
|
||||
scripts/makeweb.py
|
||||
|
||||
@@ -1,16 +1,24 @@
|
||||
import os
|
||||
import subprocess
|
||||
from time import time
|
||||
|
||||
FILENAME_VERSION_H = 'src/version.h'
|
||||
version = os.environ.get('GITHUB_REF')
|
||||
version = os.environ.get('GITHUB_TAG')
|
||||
if version == None:
|
||||
version = "SNAPSHOT"
|
||||
|
||||
import datetime
|
||||
try:
|
||||
result = subprocess.run(['git','rev-parse','--short','HEAD'], capture_output=True, check=False)
|
||||
if result.returncode == 0:
|
||||
version = result.stdout.decode('utf-8').strip()
|
||||
else:
|
||||
version = "SNAPSHOT"
|
||||
except:
|
||||
version = "SNAPSHOT"
|
||||
|
||||
hf = """
|
||||
#ifndef VERSION
|
||||
#define VERSION "{}"
|
||||
#endif
|
||||
""".format(version)
|
||||
#define BUILD_EPOCH {}
|
||||
""".format(version, time())
|
||||
with open(FILENAME_VERSION_H, 'w+') as f:
|
||||
f.write(hf)
|
||||
|
||||
40
scripts/esp32/flash.sh
Executable file
@@ -0,0 +1,40 @@
|
||||
#!/bin/sh
|
||||
|
||||
if [ -z "$1" ];then
|
||||
echo "Usage: "
|
||||
echo " Flashing first time : $0 flash /dev/ttyUSB0"
|
||||
echo " When upgrading to new version : $0 upgrade /dev/ttyUSB0"
|
||||
echo " NOTE: Replace /dev/ttyUSB0 with correct port"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
if [ -z "$2" ];then
|
||||
echo "Please specify port"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
esptool=`which esptool`
|
||||
if [ -z "$esptool" ];then
|
||||
esptool=`which esptool.py`
|
||||
fi
|
||||
if [ -z "$esptool" ];then
|
||||
if [ -f esptool.py ];then
|
||||
esptool="esptool.py"
|
||||
fi
|
||||
fi
|
||||
if [ -z "$esptool" ];then
|
||||
echo "esptool.py not available to run following command: "
|
||||
esptool="echo esptool.py"
|
||||
fi
|
||||
|
||||
if [ "$1" = "flash" ];then
|
||||
$esptool --chip esp32 --port $2 --baud 460800 --before default_reset --after hard_reset write_flash -z --flash_mode dio --flash_freq 40m --flash_size detect \
|
||||
0x1000 bootloader_dio_40m.bin \
|
||||
0x8000 partitions.bin \
|
||||
0xe000 boot_app0.bin \
|
||||
0x10000 firmware.bin
|
||||
exit $?
|
||||
elif [ "$1" = "upgrade" ];then
|
||||
$esptool --chip esp32 --port $2 --baud 460800 --before default_reset --after hard_reset write_flash -z --flash_mode dio --flash_freq 40m --flash_size detect 0x10000 firmware.bin
|
||||
exit $?
|
||||
fi
|
||||
14
scripts/esp32/mkzip.sh
Executable file
@@ -0,0 +1,14 @@
|
||||
#!/bin/sh
|
||||
|
||||
env="esp32"
|
||||
build_dir=".pio/build/$env/"
|
||||
|
||||
if [ ! -d $build_dir ];then
|
||||
echo "No build directory"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
cp ~/.platformio/packages/framework-arduinoespressif32/tools/sdk/$env/bin/bootloader_dio_40m.bin $build_dir
|
||||
cp ~/.platformio/packages/framework-arduinoespressif32/tools/partitions/boot_app0.bin $build_dir
|
||||
chmod +x scripts/$env/flash.sh
|
||||
zip -j $env.zip $build_dir/*.bin scripts/$env/flash.sh
|
||||
40
scripts/esp32s2/flash.sh
Executable file
@@ -0,0 +1,40 @@
|
||||
#!/bin/sh
|
||||
|
||||
if [ -z "$1" ];then
|
||||
echo "Usage: "
|
||||
echo " Flashing first time : $0 flash /dev/ttyUSB0"
|
||||
echo " When upgrading to new version : $0 upgrade /dev/ttyUSB0"
|
||||
echo " NOTE: Replace /dev/ttyUSB0 with correct port"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
if [ -z "$2" ];then
|
||||
echo "Please specify port"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
esptool=`which esptool`
|
||||
if [ -z "$esptool" ];then
|
||||
esptool=`which esptool.py`
|
||||
fi
|
||||
if [ -z "$esptool" ];then
|
||||
if [ -f esptool.py ];then
|
||||
esptool="esptool.py"
|
||||
fi
|
||||
fi
|
||||
if [ -z "$esptool" ];then
|
||||
echo "esptool.py not available to run following command: "
|
||||
esptool="echo esptool.py"
|
||||
fi
|
||||
|
||||
if [ "$1" = "flash" ];then
|
||||
$esptool --chip esp32s2 --port $2 --baud 460800 --before default_reset --after hard_reset write_flash -z --flash_mode dio --flash_freq 40m --flash_size detect \
|
||||
0x1000 bootloader_qio_40m.bin \
|
||||
0x8000 partitions.bin \
|
||||
0xe000 boot_app0.bin \
|
||||
0x10000 firmware.bin
|
||||
exit $?
|
||||
elif [ "$1" = "upgrade" ];then
|
||||
$esptool --chip esp32s2 --port $2 --baud 460800 --before default_reset --after hard_reset write_flash -z --flash_mode dio --flash_freq 40m --flash_size detect 0x10000 firmware.bin
|
||||
exit $?
|
||||
fi
|
||||
14
scripts/esp32s2/mkzip.sh
Executable file
@@ -0,0 +1,14 @@
|
||||
#!/bin/sh
|
||||
|
||||
env="esp32s2"
|
||||
build_dir=".pio/build/$env/"
|
||||
|
||||
if [ ! -d $build_dir ];then
|
||||
echo "No build directory"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
cp ~/.platformio/packages/framework-arduinoespressif32/tools/sdk/$env/bin/bootloader_qio_40m.bin $build_dir
|
||||
cp ~/.platformio/packages/framework-arduinoespressif32/tools/partitions/boot_app0.bin $build_dir
|
||||
chmod +x scripts/$env/flash.sh
|
||||
zip -j $env.zip $build_dir/*.bin scripts/$env/flash.sh
|
||||
31
scripts/esp8266/flash.sh
Executable file
@@ -0,0 +1,31 @@
|
||||
#!/bin/sh
|
||||
|
||||
if [ -z "$1" ];then
|
||||
echo "Usage: "
|
||||
echo " Flashing first time : $0 flash /dev/ttyUSB0"
|
||||
echo " When upgrading to new version : $0 upgrade /dev/ttyUSB0"
|
||||
echo " NOTE: Replace /dev/ttyUSB0 with correct port"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
if [ -z "$2" ];then
|
||||
echo "Please specify port"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
esptool=`which esptool`
|
||||
if [ -z "$esptool" ];then
|
||||
esptool=`which esptool.py`
|
||||
fi
|
||||
if [ -z "$esptool" ];then
|
||||
if [ -f esptool.py ];then
|
||||
esptool="esptool.py"
|
||||
fi
|
||||
fi
|
||||
if [ -z "$esptool" ];then
|
||||
echo "esptool.py not available to run following command: "
|
||||
esptool="echo esptool.py"
|
||||
fi
|
||||
|
||||
$esptool --before default_reset --after hard_reset --chip esp8266 --port $2 --baud 115200 write_flash 0x0 firmware.bin
|
||||
exit $?
|
||||
12
scripts/esp8266/mkzip.sh
Executable file
@@ -0,0 +1,12 @@
|
||||
#!/bin/sh
|
||||
|
||||
env="esp8266"
|
||||
build_dir=".pio/build/$env/"
|
||||
|
||||
if [ ! -d $build_dir ];then
|
||||
echo "No build directory"
|
||||
exit 1
|
||||
fi
|
||||
|
||||
chmod +x scripts/$env/flash.sh
|
||||
zip -j $env.zip $build_dir/*.bin scripts/$env/flash.sh
|
||||
@@ -1,10 +1,43 @@
|
||||
import os
|
||||
import re
|
||||
import shutil
|
||||
import subprocess
|
||||
|
||||
try:
|
||||
from css_html_js_minify import html_minify, js_minify, css_minify
|
||||
except:
|
||||
from SCons.Script import (
|
||||
ARGUMENTS,
|
||||
COMMAND_LINE_TARGETS,
|
||||
DefaultEnvironment,
|
||||
)
|
||||
env = DefaultEnvironment()
|
||||
|
||||
env.Execute(
|
||||
env.VerboseAction(
|
||||
'$PYTHONEXE -m pip install "css_html_js_minify" ',
|
||||
"Installing Python dependencies",
|
||||
)
|
||||
)
|
||||
try:
|
||||
from css_html_js_minify import html_minify, js_minify, css_minify
|
||||
except:
|
||||
print("WARN: Unable to load minifier")
|
||||
|
||||
|
||||
webroot = "web"
|
||||
srcroot = "src/web/root"
|
||||
|
||||
version = os.environ.get('GITHUB_TAG')
|
||||
if version == None:
|
||||
try:
|
||||
result = subprocess.run(['git','rev-parse','--short','HEAD'], capture_output=True, check=False)
|
||||
if result.returncode == 0:
|
||||
version = result.stdout.decode('utf-8').strip()
|
||||
else:
|
||||
version = "SNAPSHOT"
|
||||
except:
|
||||
version = "SNAPSHOT"
|
||||
|
||||
if os.path.exists(srcroot):
|
||||
shutil.rmtree(srcroot)
|
||||
@@ -20,11 +53,28 @@ for filename in os.listdir(webroot):
|
||||
|
||||
varname = basename.upper()
|
||||
|
||||
with open(srcfile, encoding="utf-8") as f:
|
||||
content = f.read().replace("${version}", version)
|
||||
|
||||
try:
|
||||
if filename.endswith(".html"):
|
||||
content = html_minify(content)
|
||||
elif filename.endswith(".css"):
|
||||
content = css_minify(content)
|
||||
elif (filename.endswith(".js") and filename != 'gaugemeter.js') or filename.endswith(".json"):
|
||||
content = js_minify(content)
|
||||
except:
|
||||
print("WARN: Unable to minify")
|
||||
|
||||
with open(dstfile, "w") as dst:
|
||||
dst.write("const char ")
|
||||
dst.write("static const char ")
|
||||
dst.write(varname)
|
||||
dst.write("[] PROGMEM = R\"==\"==(\n")
|
||||
with open(srcfile, "r") as src:
|
||||
for line in src.readlines():
|
||||
dst.write(line)
|
||||
dst.write("\n)==\"==\";\n")
|
||||
dst.write("[] PROGMEM = R\"==\"==(")
|
||||
dst.write(content)
|
||||
dst.write(")==\"==\";\n")
|
||||
dst.write("const int ");
|
||||
dst.write(varname)
|
||||
dst.write("_LEN PROGMEM = ");
|
||||
dst.write(str(len(content)))
|
||||
dst.write(";");
|
||||
|
||||
11
scripts/mkzip.sh
Normal file
@@ -0,0 +1,11 @@
|
||||
#!/bin/sh
|
||||
|
||||
find -name firmware.bin | while read firmware;do
|
||||
dir=`dirname $firmware`
|
||||
env=`basename $dir`
|
||||
if [ -f scripts/$env/mkzip.sh ];then
|
||||
echo "Building zip for env '$env'"
|
||||
chmod +x scripts/$env/mkzip.sh
|
||||
scripts/$env/mkzip.sh
|
||||
fi
|
||||
done
|
||||
1055
src/AmsConfiguration.cpp
Normal file
273
src/AmsConfiguration.h
Normal file
@@ -0,0 +1,273 @@
|
||||
#ifndef _AMSCONFIGURATION_h
|
||||
#define _AMSCONFIGURATION_h
|
||||
#include <EEPROM.h>
|
||||
#include "Arduino.h"
|
||||
|
||||
#define EEPROM_SIZE 1024*3
|
||||
#define EEPROM_CHECK_SUM 94 // Used to check if config is stored. Change if structure changes
|
||||
#define EEPROM_CONFIG_ADDRESS 0
|
||||
#define EEPROM_TEMP_CONFIG_ADDRESS 2048
|
||||
|
||||
#define CONFIG_SYSTEM_START 8
|
||||
#define CONFIG_METER_START 32
|
||||
#define CONFIG_GPIO_START 266
|
||||
#define CONFIG_ENTSOE_START 290
|
||||
#define CONFIG_WIFI_START 360
|
||||
#define CONFIG_ENERGYACCOUNTING_START 576
|
||||
#define CONFIG_WEB_START 648
|
||||
#define CONFIG_DEBUG_START 824
|
||||
#define CONFIG_DOMOTICZ_START 856
|
||||
#define CONFIG_NTP_START 872
|
||||
#define CONFIG_MQTT_START 1004
|
||||
|
||||
#define CONFIG_MQTT_START_86 224
|
||||
#define CONFIG_METER_START_87 784
|
||||
#define CONFIG_ENTSOE_START_90 286
|
||||
#define CONFIG_WIFI_START_91 16
|
||||
#define CONFIG_METER_START_93 224
|
||||
|
||||
|
||||
struct SystemConfig {
|
||||
uint8_t boardType;
|
||||
}; // 1
|
||||
|
||||
struct WiFiConfig91 {
|
||||
char ssid[32];
|
||||
char psk[64];
|
||||
char ip[15];
|
||||
char gateway[15];
|
||||
char subnet[15];
|
||||
char dns1[15];
|
||||
char dns2[15];
|
||||
char hostname[32];
|
||||
bool mdns;
|
||||
}; // 204
|
||||
|
||||
struct WiFiConfig {
|
||||
char ssid[32];
|
||||
char psk[64];
|
||||
char ip[16];
|
||||
char gateway[16];
|
||||
char subnet[16];
|
||||
char dns1[16];
|
||||
char dns2[16];
|
||||
char hostname[32];
|
||||
bool mdns;
|
||||
uint8_t power;
|
||||
}; // 210
|
||||
|
||||
struct MqttConfig86 {
|
||||
char host[128];
|
||||
uint16_t port;
|
||||
char clientId[32];
|
||||
char publishTopic[64];
|
||||
char subscribeTopic[64];
|
||||
char username[64];
|
||||
char password[64];
|
||||
uint8_t payloadFormat;
|
||||
bool ssl;
|
||||
}; // 420
|
||||
|
||||
struct MqttConfig {
|
||||
char host[128];
|
||||
uint16_t port;
|
||||
char clientId[32];
|
||||
char publishTopic[64];
|
||||
char subscribeTopic[64];
|
||||
char username[128];
|
||||
char password[256];
|
||||
uint8_t payloadFormat;
|
||||
bool ssl;
|
||||
}; // 676
|
||||
|
||||
struct WebConfig {
|
||||
uint8_t security;
|
||||
char username[64];
|
||||
char password[64];
|
||||
}; // 129
|
||||
|
||||
struct MeterConfig {
|
||||
uint32_t baud;
|
||||
uint8_t parity;
|
||||
bool invert;
|
||||
uint8_t distributionSystem;
|
||||
uint8_t mainFuse;
|
||||
uint8_t productionCapacity;
|
||||
uint8_t encryptionKey[16];
|
||||
uint8_t authenticationKey[16];
|
||||
uint16_t wattageMultiplier;
|
||||
uint16_t voltageMultiplier;
|
||||
uint16_t amperageMultiplier;
|
||||
uint16_t accumulatedMultiplier;
|
||||
}; // 49
|
||||
|
||||
struct MeterConfig87 {
|
||||
uint8_t type;
|
||||
uint8_t distributionSystem;
|
||||
uint8_t mainFuse;
|
||||
uint8_t productionCapacity;
|
||||
uint8_t encryptionKey[16];
|
||||
uint8_t authenticationKey[16];
|
||||
bool substituteMissing;
|
||||
}; // 37
|
||||
|
||||
struct DebugConfig {
|
||||
bool telnet;
|
||||
bool serial;
|
||||
uint8_t level;
|
||||
}; // 3
|
||||
|
||||
struct GpioConfig {
|
||||
uint8_t hanPin;
|
||||
uint8_t apPin;
|
||||
uint8_t ledPin;
|
||||
bool ledInverted;
|
||||
uint8_t ledPinRed;
|
||||
uint8_t ledPinGreen;
|
||||
uint8_t ledPinBlue;
|
||||
bool ledRgbInverted;
|
||||
uint8_t tempSensorPin;
|
||||
uint8_t tempAnalogSensorPin;
|
||||
uint8_t vccPin;
|
||||
int16_t vccOffset;
|
||||
uint16_t vccMultiplier;
|
||||
uint8_t vccBootLimit;
|
||||
uint16_t vccResistorGnd;
|
||||
uint16_t vccResistorVcc;
|
||||
}; // 20
|
||||
|
||||
struct DomoticzConfig {
|
||||
uint16_t elidx;
|
||||
uint16_t vl1idx;
|
||||
uint16_t vl2idx;
|
||||
uint16_t vl3idx;
|
||||
uint16_t cl1idx;
|
||||
}; // 10
|
||||
|
||||
struct NtpConfig {
|
||||
bool enable;
|
||||
bool dhcp;
|
||||
int16_t offset;
|
||||
int16_t summerOffset;
|
||||
char server[64];
|
||||
}; // 70
|
||||
|
||||
struct EntsoeConfig {
|
||||
char token[37];
|
||||
char area[17];
|
||||
char currency[4];
|
||||
uint32_t multiplier;
|
||||
}; // 62
|
||||
|
||||
struct EnergyAccountingConfig {
|
||||
uint8_t thresholds[10];
|
||||
}; // 10
|
||||
|
||||
struct TempSensorConfig {
|
||||
uint8_t address[8];
|
||||
char name[16];
|
||||
bool common;
|
||||
};
|
||||
|
||||
class AmsConfiguration {
|
||||
public:
|
||||
bool hasConfig();
|
||||
int getConfigVersion();
|
||||
|
||||
bool save();
|
||||
|
||||
bool getSystemConfig(SystemConfig&);
|
||||
bool setSystemConfig(SystemConfig&);
|
||||
|
||||
bool getWiFiConfig(WiFiConfig&);
|
||||
bool setWiFiConfig(WiFiConfig&);
|
||||
void clearWifi(WiFiConfig&);
|
||||
void clearWifiIp(WiFiConfig&);
|
||||
bool isWifiChanged();
|
||||
void ackWifiChange();
|
||||
|
||||
bool getMqttConfig(MqttConfig&);
|
||||
bool setMqttConfig(MqttConfig&);
|
||||
void clearMqtt(MqttConfig&);
|
||||
void setMqttChanged();
|
||||
bool isMqttChanged();
|
||||
void ackMqttChange();
|
||||
|
||||
bool getWebConfig(WebConfig&);
|
||||
bool setWebConfig(WebConfig&);
|
||||
void clearAuth(WebConfig&);
|
||||
|
||||
bool getMeterConfig(MeterConfig&);
|
||||
bool setMeterConfig(MeterConfig&);
|
||||
void clearMeter(MeterConfig&);
|
||||
bool isMeterChanged();
|
||||
void ackMeterChanged();
|
||||
|
||||
bool getDebugConfig(DebugConfig&);
|
||||
bool setDebugConfig(DebugConfig&);
|
||||
void clearDebug(DebugConfig&);
|
||||
|
||||
bool pinUsed(uint8_t, GpioConfig&);
|
||||
|
||||
bool getGpioConfig(GpioConfig&);
|
||||
bool setGpioConfig(GpioConfig&);
|
||||
void clearGpio(GpioConfig&);
|
||||
|
||||
void print(Print* debugger);
|
||||
|
||||
bool getDomoticzConfig(DomoticzConfig&);
|
||||
bool setDomoticzConfig(DomoticzConfig&);
|
||||
void clearDomo(DomoticzConfig&);
|
||||
bool isDomoChanged();
|
||||
void ackDomoChange();
|
||||
|
||||
bool getNtpConfig(NtpConfig&);
|
||||
bool setNtpConfig(NtpConfig&);
|
||||
void clearNtp(NtpConfig&);
|
||||
bool isNtpChanged();
|
||||
void ackNtpChange();
|
||||
|
||||
bool getEntsoeConfig(EntsoeConfig&);
|
||||
bool setEntsoeConfig(EntsoeConfig&);
|
||||
void clearEntsoe(EntsoeConfig&);
|
||||
bool isEntsoeChanged();
|
||||
void ackEntsoeChange();
|
||||
|
||||
bool getEnergyAccountingConfig(EnergyAccountingConfig&);
|
||||
bool setEnergyAccountingConfig(EnergyAccountingConfig&);
|
||||
void clearEnergyAccountingConfig(EnergyAccountingConfig&);
|
||||
bool isEnergyAccountingChanged();
|
||||
void ackEnergyAccountingChange();
|
||||
|
||||
void loadTempSensors();
|
||||
void saveTempSensors();
|
||||
uint8_t getTempSensorCount();
|
||||
TempSensorConfig* getTempSensorConfig(uint8_t address[8]);
|
||||
void updateTempSensorConfig(uint8_t address[8], const char name[32], bool common);
|
||||
|
||||
bool isSensorAddressEqual(uint8_t a[8], uint8_t b[8]);
|
||||
|
||||
void clear();
|
||||
|
||||
protected:
|
||||
|
||||
private:
|
||||
uint8_t configVersion = 0;
|
||||
|
||||
bool wifiChanged, mqttChanged, meterChanged = true, domoChanged, ntpChanged = true, entsoeChanged = false, energyAccountingChanged = true;
|
||||
|
||||
uint8_t tempSensorCount = 0;
|
||||
TempSensorConfig** tempSensors = NULL;
|
||||
|
||||
bool relocateConfig86(); // 1.5.0
|
||||
bool relocateConfig87(); // 1.5.4
|
||||
bool relocateConfig90(); // 2.0.0
|
||||
bool relocateConfig91(); // 2.0.2
|
||||
bool relocateConfig92(); // 2.0.3
|
||||
bool relocateConfig93(); // 2.1 beta
|
||||
|
||||
void saveToFs();
|
||||
bool loadFromFs(uint8_t version);
|
||||
void deleteFromFs(uint8_t version);
|
||||
};
|
||||
#endif
|
||||
186
src/AmsData.cpp
Normal file
@@ -0,0 +1,186 @@
|
||||
#include "AmsData.h"
|
||||
|
||||
AmsData::AmsData() {}
|
||||
|
||||
void AmsData::apply(AmsData& other) {
|
||||
if(other.getListType() < 3) {
|
||||
unsigned long ms = this->lastUpdateMillis > other.getLastUpdateMillis() ? 0 : other.getLastUpdateMillis() - this->lastUpdateMillis;
|
||||
|
||||
if(ms > 0) {
|
||||
if(other.getActiveImportPower() > 0) {
|
||||
float add = other.getActiveImportPower() * (((float) ms) / 3600000.0);
|
||||
activeImportCounter += add / 1000.0;
|
||||
//Serial.printf("%dW, %dms, %.6fkWh added\n", other.getActiveImportPower(), ms, add);
|
||||
}
|
||||
|
||||
if(other.getListType() > 1) {
|
||||
ms = this->lastUpdateMillis > other.getLastUpdateMillis() ? 0 : other.getLastUpdateMillis() - this->lastList2;
|
||||
if(other.getActiveExportPower() > 0) {
|
||||
float add = other.getActiveExportPower() * (((float) ms) / 3600000.0);
|
||||
activeExportCounter += add / 1000.0;
|
||||
}
|
||||
if(other.getReactiveImportPower() > 0) {
|
||||
float add = other.getReactiveImportPower() * (((float) ms) / 3600000.0);
|
||||
reactiveImportCounter += add / 1000.0;
|
||||
}
|
||||
if(other.getReactiveExportPower() > 0) {
|
||||
float add = other.getReactiveExportPower() * (((float) ms) / 3600000.0);
|
||||
reactiveExportCounter += add / 1000.0;
|
||||
}
|
||||
}
|
||||
counterEstimated = true;
|
||||
}
|
||||
}
|
||||
|
||||
this->lastUpdateMillis = other.getLastUpdateMillis();
|
||||
if(other.getListType() > 1) {
|
||||
this->lastList2 = this->lastUpdateMillis;
|
||||
}
|
||||
this->packageTimestamp = other.getPackageTimestamp();
|
||||
if(other.getListType() > this->listType)
|
||||
this->listType = other.getListType();
|
||||
switch(other.getListType()) {
|
||||
case 4:
|
||||
this->powerFactor = other.getPowerFactor();
|
||||
this->l1PowerFactor = other.getL1PowerFactor();
|
||||
this->l2PowerFactor = other.getL2PowerFactor();
|
||||
this->l3PowerFactor = other.getL3PowerFactor();
|
||||
case 3:
|
||||
this->meterTimestamp = other.getMeterTimestamp();
|
||||
this->activeImportCounter = other.getActiveImportCounter();
|
||||
this->activeExportCounter = other.getActiveExportCounter();
|
||||
this->reactiveImportCounter = other.getReactiveImportCounter();
|
||||
this->reactiveExportCounter = other.getReactiveExportCounter();
|
||||
this->counterEstimated = false;
|
||||
case 2:
|
||||
this->listId = other.getListId();
|
||||
this->meterId = other.getMeterId();
|
||||
this->meterType = other.getMeterType();
|
||||
this->meterModel = other.getMeterModel();
|
||||
this->reactiveImportPower = other.getReactiveImportPower();
|
||||
this->activeExportPower = other.getActiveExportPower();
|
||||
this->reactiveExportPower = other.getReactiveExportPower();
|
||||
this->l1current = other.getL1Current();
|
||||
this->l2current = other.getL2Current();
|
||||
this->l3current = other.getL3Current();
|
||||
this->l1voltage = other.getL1Voltage();
|
||||
this->l2voltage = other.getL2Voltage();
|
||||
this->l3voltage = other.getL3Voltage();
|
||||
this->threePhase = other.isThreePhase();
|
||||
this->twoPhase = other.isTwoPhase();
|
||||
case 1:
|
||||
this->activeImportPower = other.getActiveImportPower();
|
||||
}
|
||||
}
|
||||
|
||||
unsigned long AmsData::getLastUpdateMillis() {
|
||||
return this->lastUpdateMillis;
|
||||
}
|
||||
|
||||
time_t AmsData::getPackageTimestamp() {
|
||||
return this->packageTimestamp;
|
||||
}
|
||||
|
||||
uint8_t AmsData::getListType() {
|
||||
return this->listType;
|
||||
}
|
||||
|
||||
String AmsData::getListId() {
|
||||
return this->listId;
|
||||
}
|
||||
|
||||
String AmsData::getMeterId() {
|
||||
return this->meterId;
|
||||
}
|
||||
|
||||
uint8_t AmsData::getMeterType() {
|
||||
return this->meterType;
|
||||
}
|
||||
|
||||
String AmsData::getMeterModel() {
|
||||
return this->meterModel;
|
||||
}
|
||||
|
||||
time_t AmsData::getMeterTimestamp() {
|
||||
return this->meterTimestamp;
|
||||
}
|
||||
|
||||
uint16_t AmsData::getActiveImportPower() {
|
||||
return this->activeImportPower;
|
||||
}
|
||||
|
||||
uint16_t AmsData::getReactiveImportPower() {
|
||||
return this->reactiveImportPower;
|
||||
}
|
||||
|
||||
uint16_t AmsData::getActiveExportPower() {
|
||||
return this->activeExportPower;
|
||||
}
|
||||
|
||||
uint16_t AmsData::getReactiveExportPower() {
|
||||
return this->reactiveExportPower;
|
||||
}
|
||||
|
||||
float AmsData::getL1Voltage() {
|
||||
return this->l1voltage;
|
||||
}
|
||||
|
||||
float AmsData::getL2Voltage() {
|
||||
return this->l2voltage;
|
||||
}
|
||||
|
||||
float AmsData::getL3Voltage() {
|
||||
return this->l3voltage;
|
||||
}
|
||||
|
||||
float AmsData::getL1Current() {
|
||||
return this->l1current;
|
||||
}
|
||||
|
||||
float AmsData::getL2Current() {
|
||||
return this->l2current;
|
||||
}
|
||||
|
||||
float AmsData::getL3Current() {
|
||||
return this->l3current;
|
||||
}
|
||||
|
||||
float AmsData::getPowerFactor() {
|
||||
return this->powerFactor;
|
||||
}
|
||||
|
||||
float AmsData::getL1PowerFactor() {
|
||||
return this->l1PowerFactor;
|
||||
}
|
||||
|
||||
float AmsData::getL2PowerFactor() {
|
||||
return this->l2PowerFactor;
|
||||
}
|
||||
|
||||
float AmsData::getL3PowerFactor() {
|
||||
return this->l3PowerFactor;
|
||||
}
|
||||
|
||||
double AmsData::getActiveImportCounter() {
|
||||
return this->activeImportCounter;
|
||||
}
|
||||
|
||||
double AmsData::getReactiveImportCounter() {
|
||||
return this->reactiveImportCounter;
|
||||
}
|
||||
|
||||
double AmsData::getActiveExportCounter() {
|
||||
return this->activeExportCounter;
|
||||
}
|
||||
|
||||
double AmsData::getReactiveExportCounter() {
|
||||
return this->reactiveExportCounter;
|
||||
}
|
||||
|
||||
bool AmsData::isThreePhase() {
|
||||
return this->threePhase;
|
||||
}
|
||||
|
||||
bool AmsData::isTwoPhase() {
|
||||
return this->twoPhase;
|
||||
}
|
||||