Back to rankings

tinygo-org/tinygo

Gotinygo.org

Go compiler for small places. Microcontrollers, WebAssembly (WASM/WASI), and command-line tools. Based on LLVM.

microcontrollertinygollvmwasmwebassemblyarduinoarmmicrobitsamd21stm32nrf51nrf52
Star Growth
Stars
17.6k
Forks
1.1k
Weekly Growth
Issues
418
5k10k15k
Aug 2018Mar 2021Nov 2023Jul 2026
ArtifactsGo Modulesgo get github.com/tinygo-org/tinygo
README

TinyGo - Go compiler for small places

Linux macOS Windows Docker Nix

TinyGo is a Go compiler intended for use in small places such as microcontrollers, WebAssembly (wasm/wasi), and command-line tools.

It reuses libraries used by the Go language tools alongside LLVM to provide an alternative way to compile programs written in the Go programming language.

[!IMPORTANT] You can help TinyGo with a financial contribution using OpenCollective. Please see https://opencollective.com/tinygo for more information. Thank you!

Embedded

Here is an example program that blinks the built-in LED when run directly on any supported board with onboard LED:

package main

import (
    "machine"
    "time"
)

func main() {
    led := machine.LED
    led.Configure(machine.PinConfig{Mode: machine.PinOutput})
    for {
        led.Low()
        time.Sleep(time.Millisecond * 1000)

        led.High()
        time.Sleep(time.Millisecond * 1000)
    }
}

The above program can be compiled and run without modification on an Arduino Uno, an Adafruit Circuit Playground Express, a Seeed Studio XIAO-ESP32S3 or any of the many supported boards that have a built-in LED, just by setting the correct TinyGo compiler target. For example, this compiles and flashes an Arduino Uno:

tinygo flash -target arduino-uno examples/blinky1

WebAssembly

TinyGo is very useful for compiling programs both for use in browsers (WASM) as well as for use on servers and other edge devices (WASI).

TinyGo programs can run in Fastly Compute, Fermyon Spin, wazero and many other WebAssembly runtimes.

Here is a small TinyGo program for use by a WASI host application:

package main

//go:wasmexport add
func add(x, y uint32) uint32 {
	return x + y
}

This compiles the above TinyGo program for use on any WASI Preview 1 runtime:

tinygo build -buildmode=c-shared -o add.wasm -target=wasip1 add.go

You can also use the same syntax as Go 1.24+:

GOOS=wasip1 GOARCH=wasm tinygo build -buildmode=c-shared -o add.wasm add.go

Installation

See the getting started instructions for information on how to install TinyGo, as well as how to run the TinyGo compiler using our Docker container.

Supported targets

Embedded

You can compile TinyGo programs for over 150 different microcontroller boards.

For more information, please see https://tinygo.org/docs/reference/microcontrollers/

WebAssembly

TinyGo programs can be compiled for both WASM and WASI targets.

For more information, see https://tinygo.org/docs/guides/webassembly/

Operating Systems

You can also compile programs for Linux, macOS, and Windows targets.

For more information:

Currently supported features:

For a description of currently supported Go language features, please see https://tinygo.org/lang-support/.

Documentation

Documentation is located on our web site at https://tinygo.org/.

You can find the web site code at https://github.com/tinygo-org/tinygo-site.

Getting help

If you're looking for a more interactive way to discuss TinyGo usage or development, we have a #TinyGo channel on the Gophers Slack.

If you need an invitation for the Gophers Slack, you can generate one here which should arrive fairly quickly (under 1 min): https://invite.slack.golangbridge.org

Contributing

Your contributions are welcome!

Please take a look at our Contributing page on our web site for details.

Project Scope

Goals:

  • Have very small binary sizes. Don't pay for what you don't use.
  • Support for most common microcontroller boards.
  • Be usable on the web using WebAssembly.
  • Good CGo support, with no more overhead than a regular function call.
  • Support most standard library packages and compile most Go code without modification.

Non-goals:

  • Be efficient while using zillions of goroutines. However, good goroutine support is certainly a goal.
  • Be as fast as gc. However, LLVM will probably be better at optimizing certain things so TinyGo might actually turn out to be faster for number crunching.
  • Be able to compile every Go program out there.

Why this project exists

We never expected Go to be an embedded language, and so it’s got serious problems...

-- Rob Pike, GopherCon 2014 Opening Keynote

TinyGo is a project to bring Go to microcontrollers and small systems with a single processor core. It is similar to emgo but a major difference is that we want to keep the Go memory model (which implies garbage collection of some sort). Another difference is that TinyGo uses LLVM internally instead of emitting C, which hopefully leads to smaller and more efficient code and certainly leads to more flexibility.

The original reasoning was: if Python can run on microcontrollers, then certainly Go should be able to run on even lower level micros.

License

This project is licensed under the BSD 3-clause license, just like the Go project itself.

Some code has been copied from the LLVM project and is therefore licensed under a variant of the Apache 2.0 license. This has been clearly indicated in the header of these files.

Some code has been copied and/or ported from Paul Stoffregen's Teensy libraries and is therefore licensed under PJRC's license. This has been clearly indicated in the header of these files.

Related repositories
lvgl/lvgl

Embedded graphics library to create beautiful UIs for any MCU, MPU and display type.

CMIT Licenseembeddedgui
lvgl.io
24.2k4.3k
micropython/micropython

MicroPython - a lean and efficient Python implementation for microcontrollers and constrained systems

COthermicropythonpython
micropython.org
21.9k8.9k
microsoft/IoT-For-Beginners

12 Weeks, 24 Lessons, IoT for All!

Jupyter NotebookMIT Licenseiotmicrocontroller
17k2.9k
zephyrproject-rtos/zephyr

Primary Git Repository for the Zephyr Project. Zephyr is a new generation, scalable, optimized, secure RTOS for multiple hardware architectures.

CApache License 2.0rtosiot
docs.zephyrproject.org
16k9.6k
RT-Thread/rt-thread

RT-Thread is an open source IoT Real-Time Operating System (RTOS). https://rt-thread.github.io/rt-thread/

CApache License 2.0embedded-systemskernel
rt-thread.io
12.1k5.4k
platformio/platformio-core

Your Gateway to Embedded Software Development Excellence :alien:

PythonPyPIApache License 2.0iotembedded
platformio.org
9.4k896
nhivp/Awesome-Embedded

A curated list of awesome embedded programming.

The Unlicenseembeddedmicrocontroller
nhivp.github.io/Awesome-Embedded/
8.9k1.2k
idea4good/GuiLite

✔️The smallest header-only GUI library(4 KLOC) for all platforms

C++Apache License 2.0embeddedmcu
youtube.com/watch
7.8k836
Serial-Studio/Serial-Studio

Open-source telemetry dashboard. Supports UART, BLE, MQTT, Modbus, CAN Bus and more.

C++Otherqtserial
serial-studio.com
7.1k1.1k
littlefs-project/littlefs

A little fail-safe filesystem designed for microcontrollers

CBSD 3-Clause "New" or "Revised" Licensefilesystemembedded
6.8k1k
olikraus/u8g2

U8glib library for monochrome displays, version 2

COtheru8g2microcontroller
6.6k1.2k
tock/tock

A secure embedded operating system for microcontrollers

Rustcrates.ioOtherembeddedoperating-system
tockos.org
6.4k849