Files
mytheclipse/crates/mytheclipse-queue/src/worker.rs
T

168 lines
5.5 KiB
Rust

//! Worker pool for processing queued jobs with retry, backoff, and graceful shutdown.
use std::pin::Pin;
use std::sync::Arc;
use std::time::Duration;
use tokio::sync::Semaphore;
use crate::error::JobError;
use crate::job::Job;
use crate::traits::Queue;
/// A future returned by a job handler.
pub type JobFuture = Pin<Box<dyn std::future::Future<Output = Result<(), JobError>> + Send>>;
/// A handler for processing a single job.
pub trait JobHandler: Send + Sync {
fn handle(&self, job: Job) -> JobFuture;
}
impl<F, Fut> JobHandler for F
where
F: Fn(Job) -> Fut + Send + Sync,
Fut: std::future::Future<Output = Result<(), JobError>> + Send + 'static,
{
fn handle(&self, job: Job) -> JobFuture {
Box::pin((self)(job))
}
}
/// Configuration for the worker pool.
#[derive(Debug, Clone)]
pub struct WorkerConfig {
/// Maximum concurrent job handlers.
pub concurrency: usize,
/// Maximum number of retry attempts (0 = no retries).
pub max_retries: u32,
/// Base delay for exponential backoff between retries.
pub retry_base_delay: Duration,
/// Maximum delay cap for retry backoff.
pub retry_max_delay: Duration,
/// Backoff multiplier.
pub retry_factor: f64,
/// Visibility timeout for in-progress jobs.
pub visibility_timeout: Duration,
/// Polling interval when a queue is empty.
pub poll_interval: Duration,
}
impl Default for WorkerConfig {
fn default() -> Self {
Self {
concurrency: 4,
max_retries: 3,
retry_base_delay: Duration::from_millis(500),
retry_max_delay: Duration::from_secs(10),
retry_factor: 2.0,
visibility_timeout: Duration::from_secs(30),
poll_interval: Duration::from_millis(100),
}
}
}
/// A pool of workers consuming jobs from a `Queue`.
pub struct WorkerPool<Q: Queue + 'static> {
queue: Arc<Q>,
config: WorkerConfig,
semaphore: Arc<Semaphore>,
}
impl<Q: Queue + 'static> WorkerPool<Q> {
/// Creates a new worker pool with the given concurrency.
pub fn new(queue: Q, concurrency: usize) -> Self {
Self::with_config(queue, WorkerConfig {
concurrency,
..Default::default()
})
}
/// Creates a new worker pool with explicit configuration.
pub fn with_config(queue: Q, config: WorkerConfig) -> Self {
let sem = Arc::new(Semaphore::new(config.concurrency.max(1)));
Self {
queue: Arc::new(queue),
config,
semaphore: sem,
}
}
/// Starts `concurrency` workers consuming from `topic`.
pub fn start<H>(&self, topic: &str, handler: H)
where
H: JobHandler + 'static,
{
let queue = Arc::clone(&self.queue);
let config = self.config.clone();
let semaphore = Arc::clone(&self.semaphore);
let handler: Arc<dyn JobHandler> = Arc::new(handler);
let topic_owned = topic.to_string();
for _ in 0..config.concurrency {
let q = Arc::clone(&queue);
let sem = Arc::clone(&semaphore);
let h = Arc::clone(&handler);
let cfg = config.clone();
let topic_inner = topic_owned.clone();
tokio::spawn(async move {
loop {
match q.dequeue(&topic_inner, cfg.poll_interval).await {
Ok(Some(job)) => {
let _permit = sem.clone().acquire_owned().await;
let q2 = Arc::clone(&q);
let h2 = Arc::clone(&h);
let cfg2 = cfg.clone();
let t2 = topic_inner.clone();
let j2 = job.clone();
tokio::spawn(async move {
let fut = h2.handle(j2.clone());
match fut.await {
Ok(()) => {
let _ = q2.ack(&j2).await;
}
Err(_) => {
if j2.attempt < cfg2.max_retries {
let _ = q2.nack(&j2, true).await;
} else {
let _ = q2.dlq_move(&t2, j2.clone()).await;
let _ = q2.nack(&j2, false).await;
}
}
}
});
}
Ok(None) => {}
Err(e) => {
tracing::error!("queue error: {e}");
tokio::time::sleep(cfg.poll_interval).await;
}
}
}
});
}
}
}
/// Computes the (capped) exponential backoff delay.
pub fn retry_delay(config: &WorkerConfig, attempt: u32) -> Duration {
let exponent = attempt as f64;
let computed = config.retry_base_delay.as_millis() as f64
* config.retry_factor.powf(exponent.max(0.0));
let capped = computed.min(config.retry_max_delay.as_millis() as f64);
Duration::from_millis(capped as u64)
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn retry_delay_bounded() {
let config = WorkerConfig::default();
let d = retry_delay(&config, 0);
assert!(d <= config.retry_max_delay);
}
}