Files
mytheclipse/crates/mytheclipse-queue/tests/rate_limited_stress.rs
T
asepharyana 1dfc6d6865 fix(ci): restore full CI green — test-matrix, clippy, rustfmt, and rustdoc gates
Root cause of the failing CI run was that examples/tests referencing
feature-gated items were auto-detected (no required-features), so
`--all-targets` compiled them under feature combinations where those
modules didn't exist. Fixes:

- mytheclipse Cargo.toml: declare the `high_level` example and
  `race_stress` integration test with required-features = ["full"];
  `cargo build --all-targets` now skips them when full is off. This
  clears the whole test-matrix (workspace default, all-features, and
  every single-feature config) which all failed on E0432/E0433.
- lib.rs: auto_metrics_service depends on service_builder, so regate it
  behind all(observability, resiliency) instead of observability alone
  (observability-only build compiled the module without resiliency).
- mytheclipse-tracing: gate `pub mod fmt` behind any
  tracing-subscriber-providing feature so --no-default-features compiles.
- mytheclipse-queue: gate `pub mod worker` behind in-memory (worker.rs
  requires tokio, only provided by in-memory).
- clippy -D warnings fixes: deprecated base64 0.22 free fns -> Engine
  (paseto), unused key field, needless mut (service_builder), unused
  import/dead var/missing is_empty (bg_join), dead is_expired (dlock),
  while-let-iterator->for (parallel_map), type_complexity (shutdown_guard),
  MutexGuard held across await (middleware, now clones Arc'd layers),
  if-let-Err->is_err (queue), unused CliBuilder fields now wired into clap.
- rustdoc -D warnings: resolve retry/MetricsBridge/CircuitBreaker/KeyRing
  intra-doc links and fix the unparseable lifecycle.rs code fence.
- cargo fmt --all to satisfy the Rustfmt gate.
2026-08-30 00:33:21 +07:00

72 lines
2.3 KiB
Rust

//! Race-safety stress tests for the queue crate's rate-limited primitives.
use std::sync::atomic::{AtomicUsize, Ordering};
use std::sync::Arc;
use std::time::Duration;
use mytheclipse_queue::in_memory::InMemoryQueue;
use mytheclipse_queue::rate_limited::RateLimitedQueue;
use mytheclipse_queue::traits::Queue;
const TASKS: usize = 8;
const PER_TASK: usize = 1000;
#[tokio::test(flavor = "multi_thread", worker_threads = 4)]
async fn rate_limited_queue_no_item_loss_under_contention() {
// Enqueue 8000 items, dequeue them all concurrently: nothing may vanish.
let inner = InMemoryQueue::new();
let q = Arc::new(RateLimitedQueue::new(inner, 1_000_000.0, 10_000));
let producer: tokio::task::JoinHandle<()> = tokio::spawn({
let q = Arc::clone(&q);
async move {
for i in 0..(TASKS * PER_TASK) {
q.enqueue("stress", format!("item-{i}").into_bytes())
.await
.unwrap();
}
}
});
// Drain concurrently with the producer.
let seen = Arc::new(AtomicUsize::new(0));
let mut workers = Vec::new();
for _ in 0..TASKS {
let q = Arc::clone(&q);
let s = Arc::clone(&seen);
workers.push(tokio::spawn(async move {
loop {
match q
.dequeue("stress", Duration::from_millis(50))
.await
.unwrap()
{
Some(job) => {
let _ = String::from_utf8(job.payload).unwrap();
s.fetch_add(1, Ordering::SeqCst);
}
None => {
// Empty + producer done => we're finished.
break;
}
}
}
}));
}
producer.await.unwrap();
for w in workers {
w.await.unwrap();
}
// Slight subtlety: a worker may observe None while producer still has
// items in flight (producer finished above, but enqueue is async —
// actually producer.await guarantees all enqueues completed). Since the
// producer finished, any None means truly drained.
assert_eq!(
seen.load(Ordering::SeqCst),
TASKS * PER_TASK,
"items lost under contention"
);
}