Rust Fire
July 18, 2026 ยท View on GitHub
Image by T5, source: https://www.pixiv.net/artworks/104959772
Turn a Rust function or module into a command-line application with one attribute.
Installation
cargo add fire
One function
/// Welcome a person.
#[fire::main]
fn welcome(name: String, excited: bool) {
let suffix = if excited { "!" } else { "." };
println!("Welcome, {name}{suffix}");
}
$ app --name "John Smith" --excited
Welcome, John Smith!
#[fire::main] generates the program entry point, so no separate fn main() or
registration call is needed.
Help
-h and --help are generated automatically from the function signature and
documentation comments:
/// Start the HTTP server.
#[fire::main]
fn serve(
/// Address to listen on.
host: String,
/// Enable verbose logging.
verbose: bool,
) {}
$ app --help
Start the HTTP server.
Usage: app --host <HOST> [--verbose]
Options:
--host <HOST> Address to listen on.
--verbose Enable verbose logging.
-h, --help Print help
For module applications, app --help lists the subcommands and
app <COMMAND> --help describes one subcommand.
Subcommands
Place #[fire::main] on an inline module to turn its functions into subcommands:
#[fire::main]
mod cli {
pub fn hello(name: String, times: Option<u32>) {
for _ in 0..times.unwrap_or(1) {
println!("Hello, {name}!");
}
}
pub fn bye() {
println!("Bye!");
}
}
$ app hello --name John --times 2
Hello, John!
Hello, John!
$ app bye
Bye!
Rust snake_case function and parameter names are exposed as CLI kebab-case
names.
Parameters
The function signature defines the CLI:
| Rust type | CLI behavior |
|---|---|
T | required option parsed with FromStr |
Option<T> | optional option |
bool | value-less flag, defaulting to false |
&str | borrowed string option |
Both common option formats are accepted:
$ app --name John
$ app --name=John
A command may return Result. Errors are printed to stderr and the application
exits with status 2.
#[fire::main]
fn deploy(target: String) -> Result<(), DeployError> {
do_deploy(&target)?;
Ok(())
}
Async
Pass tokio to the attribute to write async commands. Each async command
runs on a multi-threaded Tokio runtime, so add tokio with the
rt-multi-thread feature to your application:
/// Fetch a URL.
#[fire::main(tokio)]
async fn fetch(url: String) {
let body = reqwest::get(&url).await.unwrap();
// ...
}
The same works on modules, and async and synchronous commands can be mixed in one module.
License
BSD-2-Clause.