<div align="center">
<img src="logo.jpg" width="30%"></img>
[](https://docs.rs/lapin)
[](https://github.com/amqp-rs/lapin/actions)
[](https://crates.io/crates/lapin)
[](https://coveralls.io/github/amqp-rs/lapin?branch=main)
[](https://deps.rs/repo/github/amqp-rs/lapin)
[](LICENSE)
<strong>
A Rust AMQP client library.
</strong>
</div>
<br />
This project follows the [AMQP 0.9.1 specifications](https://www.rabbitmq.com/resources/specs/amqp0-9-1.pdf), targeting especially RabbitMQ.
## Feature switches
* `codegen`: generate code instead of using pregenerated one
* `native-tls`: enable amqps support through native-tls
* `openssl`: enable amqps support through openssl (preferred over native-tls when set)
* `rustls` (*default*): enable amqps support through rustls (preferred over openssl when set, uses rustls-native-certs by default)
* `rustls-native-certs`: same as rustls, be ensure we'll still use rustls-native-certs even if the default for rustls changes
* `rustls-webpki-roots-certs`: same as rustls but using webkit-roots instead of rustls-native-certs
## Integration with third-party runtimes
Lapin can use any runtime of your choice by passing it to the `ConnectionProperties`.
You can configure the executor to use through [executor-trait](https://crates.io/crates/executor-trait).
You can configure the reactor to use through [reactor-trait](https://crates.io/crates/reactor-trait).
There are implementations for tokio, async-std and others.
## Example
```rust
use futures_lite::stream::StreamExt;
use lapin::{
options::*, publisher_confirm::Confirmation, types::FieldTable, BasicProperties, Connection,
ConnectionProperties, Result,
};
use tracing::info;
fn main() -> Result<()> {
if std::env::var("RUST_LOG").is_err() {
std::env::set_var("RUST_LOG", "info");
}
tracing_subscriber::fmt::init();
let addr = std::env::var("AMQP_ADDR").unwrap_or_else(|_| "amqp://127.0.0.1:5672/%2f".into());
async_global_executor::block_on(async {
let conn = Connection::connect(
&addr,
ConnectionProperties::default(),
)
.await?;
info!("CONNECTED");
let channel_a = conn.create_channel().await?;
let channel_b = conn.create_channel().await?;
let queue = channel_a
.queue_declare(
"hello",
QueueDeclareOptions::default(),
FieldTable::default(),
)
.await?;
info!(?queue, "Declared queue");
let mut consumer = channel_b
.basic_consume(
"hello",
"my_consumer",
BasicConsumeOptions::default(),
FieldTable::default(),
)
.await?;
async_global_executor::spawn(async move {
info!("will consume");
while let Some(delivery) = consumer.next().await {
let delivery = delivery.expect("error in consumer");
delivery
.ack(BasicAckOptions::default())
.await
.expect("ack");
}
}).detach();
let payload = b"Hello world!";
loop {
let confirm = channel_a
.basic_publish(
"",
"hello",
BasicPublishOptions::default(),
payload,
BasicProperties::default(),
)
.await?
.await?;
assert_eq!(confirm, Confirmation::NotRequested);
}
})
}
```