lvgl/lv_micropython is tracked by TopGit as an open-source project, with 581 stars on GitHub, written primarily in C. Micropython bindings to LVGL for Embedded devices, Unix and JavaScript
Snapshot summary built from the project's own GitHub metadata — there's no written TopGit review yet. The page will update automatically when a full review is published.
WHY NO REVIEW YET
TopGit writes full reviews for the most-starred, most-requested repositories. This page is a snapshot until then — see the READ ME tab for the original README in full.
Micropython bindings to LVGL for Embedded devices, Unix and JavaScript
More information about MicroPython-LVGL binding and how to build it, see: README-LVGL.md
The MicroPython project
This is the MicroPython project, which aims to put an implementation
of Python 3.x on microcontrollers and small embedded systems.
You can find the official website at micropython.org.
WARNING: this project is in beta stage and is subject to changes of the
code-base, including project-wide name changes and API changes.
MicroPython implements the entire Python 3.4 syntax (including exceptions,
with, yield from, etc., and additionally async/await keywords from
Python 3.5 and some select features from later versions). The following core
datatypes are provided: str(including basic Unicode support), bytes,
bytearray, tuple, list, dict, set, frozenset, array.array,
collections.namedtuple, classes and instances. Builtin modules include
os, sys, time, re, and struct, etc. Some ports have support for
_thread module (multithreading), socket and ssl for networking, and
asyncio. Note that only a subset of Python 3 functionality is implemented
for the data types and modules.
MicroPython can execute scripts in textual source form (.py files) or from
precompiled bytecode (.mpy files), in both cases either from an on-device
filesystem or "frozen" into the MicroPython executable.
MicroPython also provides a set of MicroPython-specific modules to access
hardware-specific functionality and peripherals such as GPIO, Timers, ADC,
DAC, PWM, SPI, I2C, CAN, Bluetooth, and USB.
Getting started
See the online documentation for the API
reference and information about using MicroPython and information about how
it is implemented.
We use GitHub Discussions
as our forum, and Discord for chat. These
are great places to ask questions and advice from the community or to discuss your
MicroPython-based projects.
For bugs and feature requests, please raise an issue
and follow the templates there.
For information about the MicroPython pyboard,
the officially supported board from the
original Kickstarter campaign,
see the schematics and pinouts and
documentation.
Contributing
MicroPython is an open-source project and welcomes contributions. To be
productive, please be sure to follow the
Contributors' Guidelines
and the Code Conventions.
Note that MicroPython is licenced under the MIT license, and all contributions
should follow this license.
About this repository
This repository contains the following components:
py/ -- the core Python implementation, including compiler, runtime, and
core library.
mpy-cross/ -- the MicroPython cross-compiler which is used to turn scripts
into precompiled bytecode.
ports/ -- platform-specific code for the various ports and architectures that MicroPython runs on.
lib/ -- submodules for external dependencies.
tests/ -- test framework and test scripts.
docs/ -- user documentation in Sphinx reStructuredText format. This is used to generate the online documentation.
extmod/ -- additional (non-core) modules implemented in C.
tools/ -- various tools, including the pyboard.py module.
examples/ -- a few example Python scripts.
"make" is used to build the components, or "gmake" on BSD-based systems.
You will also need bash, gcc, and Python 3.3+ available as the command python3
(if your system only has Python 2.7 then invoke make with the additional option
PYTHON=python2). Some ports (rp2 and esp32) additionally use CMake.
Supported platforms & architectures
MicroPython runs on a wide range of microcontrollers, as well as on Unix-like
(including Linux, BSD, macOS, WSL) and Windows systems.
Microcontroller targets can be as small as 256kiB flash + 16kiB RAM, although
devices with at least 512kiB flash + 128kiB RAM allow a much more
full-featured experience.
The Unix and Windows ports allow both
development and testing of MicroPython itself, as well as providing
lightweight alternative to CPython on these platforms (in particular on
embedded Linux systems).
The "minimal" port provides an example of a very basic
MicroPython port and can be compiled as both a standalone Linux binary as
well as for ARM Cortex M4. Start with this if you want to port MicroPython to
another microcontroller. Additionally the "bare-arm" port
is an example of the absolute minimum configuration, and is used to keep
track of the code size of the core runtime and VM.
In addition, the following ports are provided in this repository:
webassembly -- Emscripten port targeting browsers and NodeJS.
zephyr -- Zephyr RTOS.
The MicroPython cross-compiler, mpy-cross
Most ports require the MicroPython cross-compiler to be built
first. This program, called mpy-cross, is used to pre-compile Python scripts
to .mpy files which can then be included (frozen) into the
firmware/executable for a port. To build mpy-cross use:
$ cd mpy-cross
$ make
External dependencies
The core MicroPython VM and runtime has no external dependencies, but a given
port might depend on third-party drivers or vendor HALs. This repository
includes several submodules linking to these external dependencies.
Before compiling a given port, use
$ cd ports/name
$ make submodules
to ensure that all required submodules are initialised.
The most recent commit recorded on lvgl/lv_micropython was 20 days ago, based on the GitHub push timestamp. The repository has 211 forks — one of the better signals of community interest.
How many stars does lvgl/lv_micropython have?
lvgl/lv_micropython has 581 GitHub stars — refresh the page for the live number, or check github.com/lvgl/lv_micropython. TopGit mirrors GitHub's count but does not claim minute-by-minute accuracy.
Is lvgl/lv_micropython open source?
TopGit's metadata for lvgl/lv_micropython does not record a license. Most public repositories on GitHub ARE open source, but the exact terms vary — verify by opening the LICENSE file directly.
What is lvgl/lv_micropython?
lvgl/lv_micropython (lvgl/lv_micropython) is a C project on GitHub. From the project's own README: Micropython bindings to LVGL for Embedded devices, Unix and JavaScript
What language is lvgl/lv_micropython written in?
lvgl/lv_micropython is written primarily in C. GitHub's language field is based on the largest share of bytes in the default branch.
Where do I read more about lvgl/lv_micropython?
This TopGit page is a snapshot — the READ ME tab shows the project's own README content (links stripped, images preserved). The GitHub repository at github.com/lvgl/lv_micropython is the definitive source.
Read full README in the tab above.
Still deciding about lv_micropython?
One click hands the question to an AI along with this page — see what it says about lv_micropython.