wfb-ng
TinyGo
wfb-ng | TinyGo | |
---|---|---|
12 | 96 | |
856 | 14,550 | |
- | 1.5% | |
7.5 | 9.3 | |
4 days ago | 6 days ago | |
Python | Go | |
GNU General Public License v3.0 only | GNU General Public License v3.0 or later |
Stars - the number of stars that a project has on GitHub. Growth - month over month growth in stars.
Activity is a relative number indicating how actively a project is being developed. Recent commits have higher weight than older ones.
For example, an activity of 9.0 indicates that a project is amongst the top 10% of the most actively developed projects that we are tracking.
wfb-ng
- Show HN: WFB-ng – long range high speed link for drones and robotics
- WFB-ng – long distance link for drones and robotics
- Can I use a Wi-Fi card instead of a proper radio receiver
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Go with Mavlink for drone autopilots
Not really what you looking for, but you might find it interesting: https://github.com/svpcom/wfb-ng/
- Wfb-ng: Long distance link using WiFi in raw mode
- Can someone identify this military video link system?
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DIY Wireless video transmitter/receiver (With Raspberry)
Use something like WiFiBroadcast if you need low delay and better image quality, otherwise high quality video stream over network need a lot computation, you can also take a look at WebRTC if want to stream into the tablet
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Video Decoding Performance of modern iGPUs
I am trying to use a wireless video transition system for my custom hexacopter using Wifibroadcast.
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Where can I find the people streaming 120FPS 1080p video over IP+Wifi with no frame drops and using only open source software (RPi02+RPiHDCAM+ffmpeg or gstreamer and maybe Wi-Fi Direct and receiver diversity)
7 yeas ago there was proof of concept called wifibroadcast / ez-wifibroadcast
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Question: any slightly higher power device that offer more data?
Raw wifi broadcast is a good option for video links: https://github.com/svpcom/wifibroadcast
TinyGo
- Cylon: JavaScript framework for robotics, drones, and the Internet of Things
- Gokrazy – Go Appliances
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A "Tiny" APISIX Plugin
Reading through the documentation, you will understand why this plugin is called "tiny," i.e., the SDK uses the TinyGo compiler instead of the official Go compiler. You can read more about why this is the case on the SDK\'s overview page, but the TLDR version is that the Go compiler can only produce Wasm binaries that run in the browser.
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What's Zig got that C, Rust and Go don't have? [video]
Not only you can fit Go into a kernel, there is at least two products that do so.
TamaGo, used to write the firmware used in USB armory.
https://www.withsecure.com/en/solutions/innovative-security-...
TinyGo, which even has official Arduino and ARM support, and is sponsored by Google
https://tinygo.org/
Ah but that isn't proper Go! Well neither is the C code that is allowed to be used in typical kernel code, almost nothing from ISO C standard library is available, and usually plenty of compiler specific language extensions are used instead.
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Show HN: A new stdlib for Golang focusing on platform native support
Reminds me of https://tinygo.org/ - a project that brings Golang to embedded devices, browser (wasm) contexts. Do you converge or diverge from that project?
- TinyGo release 0.29 is out
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Pico with C
You should also consider TinyGo. It can compile Go for the Pico, and is starting to get good device support.
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Rust 1.71.0
Thankfully some folks completly ignored whatever the rest of the world thinks system programming is all about and created:
- TinyGo (https://tinygo.org/), which is acknowledged by people in the industry[0][1]
- TamaGo unikernel on USB Armory secure key (https://www.withsecure.com/de/solutions/innovative-security-...)
And then there is the question if writing compilers, assemblers, linkers is systems programming or not.
[0]-https://www.cnx-software.com/2019/08/28/tinygo-go-compiler-f...
[1]-https://twitter.com/ArmSoftwareDev/status/131680481331796787...
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When would you (not) recommend Go over Rust?
Have you seen TinyGo? In the case of embedded system I would probably still chose C over Rust if the system didn't support dynamic memory allocation, and most embedded systems do not.
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“C is quirky, flawed, and an enormous success” – Dennis Ritchie
>I really hate how for microcontrollers the only two choices are either C++ or Micropython
There's TinyGo as well. https://tinygo.org/
What are some alternatives?
OpenHD - OpenHD
MicroPython - MicroPython - a lean and efficient Python implementation for microcontrollers and constrained systems
DroneBridge - DroneBridge is a system based on the WifiBroadcast approach. A bidirectional digital radio link between two endpoints is established using standard WiFi hardware and a custom protocol. DroneBridge is optimized for use in UAV applications and is a complete system. It is intended be a real alternative to other similar systems, such as DJI Lightbridge or OcuSync.
go - The Go programming language
DigiView-SBC - DigiView for Raspberry Pi
zig - General-purpose programming language and toolchain for maintaining robust, optimal, and reusable software.
gomavlib - Mavlink library (2.0 and 1.0) for the Go programming language
micropython-ulab - a numpy-like fast vector module for micropython, circuitpython, and their derivatives
EZ-WifiBroadcast - Affordable Digital HD Video Transmission made easy!
awesome-micropython - A curated list of awesome MicroPython libraries, frameworks, software and resources.
rpi-webrtc-streamer - This repo's objective is providing something like Web Cam server on the most popular Raspberry PI hardware. By integrating [WebRTC](https://webrtc.org/native-code/) and Raspberry PI, we can stream the Raspberry camera feed to browser or native client which talks WebRTC.
PlatformIO - Your Gateway to Embedded Software Development Excellence :alien: