use std::sync::atomic::{AtomicU32, AtomicU64, AtomicU8, Ordering};
use std::sync::Arc;
use std::time::Duration;
use serde::{Deserialize, Serialize};
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
pub enum CircuitState {
Closed,
Open,
HalfOpen,
}
pub struct CircuitBreaker {
state: AtomicU8,
failure_count: AtomicU32,
success_count: AtomicU32,
last_failure_time: AtomicU64,
config: CircuitBreakerConfig,
}
#[derive(Debug, Clone)]
pub struct CircuitBreakerConfig {
pub failure_threshold: u32,
pub success_threshold: u32,
pub cooldown: Duration,
}
impl Default for CircuitBreakerConfig {
fn default() -> Self {
Self {
failure_threshold: 5,
success_threshold: 3,
cooldown: Duration::from_secs(60),
}
}
}
impl CircuitBreaker {
#[must_use]
pub fn new(config: CircuitBreakerConfig) -> Self {
Self {
state: AtomicU8::new(CircuitState::Closed as u8),
failure_count: AtomicU32::new(0),
success_count: AtomicU32::new(0),
last_failure_time: AtomicU64::new(0),
config,
}
}
#[must_use]
pub fn with_default_config() -> Self {
Self::new(CircuitBreakerConfig::default())
}
#[must_use]
pub fn state(&self) -> CircuitState {
let state = self.state.load(Ordering::Acquire);
match state {
0 => CircuitState::Closed,
1 => {
let last_failure = self.last_failure_time.load(Ordering::Acquire);
let now = now_millis();
if now.saturating_sub(last_failure) >= self.config.cooldown.as_millis() as u64 {
self.state
.store(CircuitState::HalfOpen as u8, Ordering::Release);
CircuitState::HalfOpen
} else {
CircuitState::Open
}
}
2 => CircuitState::HalfOpen,
_ => CircuitState::Closed,
}
}
#[must_use]
pub fn is_allowed(&self) -> bool {
match self.state() {
CircuitState::Closed => true,
CircuitState::HalfOpen => true,
CircuitState::Open => false,
}
}
pub fn record_success(&self) {
match self.state() {
CircuitState::Closed => {
self.failure_count.store(0, Ordering::Release);
self.success_count.store(0, Ordering::Release);
}
CircuitState::HalfOpen => {
let successes = self.success_count.fetch_add(1, Ordering::AcqRel) + 1;
if successes >= self.config.success_threshold {
self.state
.store(CircuitState::Closed as u8, Ordering::Release);
self.failure_count.store(0, Ordering::Release);
self.success_count.store(0, Ordering::Release);
}
}
CircuitState::Open => {}
}
}
pub fn record_failure(&self) {
let now = now_millis();
self.last_failure_time.store(now, Ordering::Release);
match self.state() {
CircuitState::Closed => {
let failures = self.failure_count.fetch_add(1, Ordering::AcqRel) + 1;
if failures >= self.config.failure_threshold {
self.state
.store(CircuitState::Open as u8, Ordering::Release);
}
}
CircuitState::HalfOpen => {
self.state
.store(CircuitState::Open as u8, Ordering::Release);
self.success_count.store(0, Ordering::Release);
}
CircuitState::Open => {}
}
}
pub fn reset(&self) {
self.state
.store(CircuitState::Closed as u8, Ordering::Release);
self.failure_count.store(0, Ordering::Release);
self.success_count.store(0, Ordering::Release);
}
#[must_use]
pub fn failure_count(&self) -> u32 {
self.failure_count.load(Ordering::Acquire)
}
}
pub struct CircuitBreakerRegistry {
breakers: dashmap::DashMap<String, Arc<CircuitBreaker>>,
config: CircuitBreakerConfig,
}
impl CircuitBreakerRegistry {
#[must_use]
pub fn new(config: CircuitBreakerConfig) -> Self {
Self {
breakers: dashmap::DashMap::new(),
config,
}
}
#[must_use]
pub fn with_default_config() -> Self {
Self::new(CircuitBreakerConfig::default())
}
#[must_use]
pub fn get_or_create(&self, domain: &str) -> CircuitBreakerRef {
let entry = self
.breakers
.entry(domain.to_string())
.or_insert_with(|| Arc::new(CircuitBreaker::new(self.config.clone())));
CircuitBreakerRef {
inner: entry.value().clone(),
}
}
}
pub struct CircuitBreakerRef {
inner: Arc<CircuitBreaker>,
}
impl CircuitBreakerRef {
#[must_use]
pub fn is_allowed(&self) -> bool {
self.inner.is_allowed()
}
pub fn record_success(&self) {
self.inner.record_success();
}
pub fn record_failure(&self) {
self.inner.record_failure();
}
#[must_use]
pub fn state(&self) -> CircuitState {
self.inner.state()
}
#[must_use]
pub fn failure_count(&self) -> u32 {
self.inner.failure_count()
}
}
fn now_millis() -> u64 {
std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap_or_default()
.as_millis() as u64
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_circuit_breaker_closed_by_default() {
let cb = CircuitBreaker::with_default_config();
assert_eq!(cb.state(), CircuitState::Closed);
assert!(cb.is_allowed());
}
#[test]
fn test_circuit_breaker_opens_after_failures() {
let config = CircuitBreakerConfig {
failure_threshold: 3,
..Default::default()
};
let cb = CircuitBreaker::new(config);
cb.record_failure();
assert_eq!(cb.state(), CircuitState::Closed);
cb.record_failure();
assert_eq!(cb.state(), CircuitState::Closed);
cb.record_failure();
assert_eq!(cb.state(), CircuitState::Open);
assert!(!cb.is_allowed());
}
#[test]
fn test_circuit_breaker_success_resets_count() {
let config = CircuitBreakerConfig {
failure_threshold: 3,
..Default::default()
};
let cb = CircuitBreaker::new(config);
cb.record_failure();
cb.record_failure();
cb.record_success(); cb.record_failure();
assert_eq!(cb.state(), CircuitState::Closed); }
#[test]
fn test_circuit_breaker_registry() {
let registry = CircuitBreakerRegistry::with_default_config();
let cb = registry.get_or_create("example.com");
assert!(cb.is_allowed());
cb.record_failure();
assert_eq!(cb.failure_count(), 1);
}
}