193 lines
5.5 KiB
Rust
193 lines
5.5 KiB
Rust
use std::borrow::Borrow;
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use std::hash::Hash;
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use std::num::NonZeroUsize;
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use lru::LruCache;
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use sha1::Digest;
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use sha1::Sha1;
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use tokio::sync::Mutex;
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use tokio::sync::MutexGuard;
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/// A minimal LRU cache protected by a Tokio mutex.
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/// Calls outside a Tokio runtime are no-ops.
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pub struct BlockingLruCache<K, V> {
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inner: Mutex<LruCache<K, V>>,
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}
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impl<K, V> BlockingLruCache<K, V>
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where
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K: Eq + Hash,
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{
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/// Creates a cache with the provided non-zero capacity.
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#[must_use]
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pub fn new(capacity: NonZeroUsize) -> Self {
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Self {
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inner: Mutex::new(LruCache::new(capacity)),
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}
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}
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/// Returns a clone of the cached value for `key`, or computes and inserts it.
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pub fn get_or_insert_with(&self, key: K, value: impl FnOnce() -> V) -> V
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where
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V: Clone,
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{
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if let Some(mut guard) = lock_if_runtime(&self.inner) {
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if let Some(v) = guard.get(&key) {
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return v.clone();
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}
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let v = value();
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// Insert and return a clone to keep ownership in the cache.
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guard.put(key, v.clone());
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return v;
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}
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value()
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}
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/// Like `get_or_insert_with`, but the value factory may fail.
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pub fn get_or_try_insert_with<E>(
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&self,
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key: K,
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value: impl FnOnce() -> Result<V, E>,
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) -> Result<V, E>
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where
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V: Clone,
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{
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if let Some(mut guard) = lock_if_runtime(&self.inner) {
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if let Some(v) = guard.get(&key) {
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return Ok(v.clone());
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}
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let v = value()?;
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guard.put(key, v.clone());
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return Ok(v);
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}
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value()
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}
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/// Builds a cache if `capacity` is non-zero, returning `None` otherwise.
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#[must_use]
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pub fn try_with_capacity(capacity: usize) -> Option<Self> {
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NonZeroUsize::new(capacity).map(Self::new)
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}
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/// Returns a clone of the cached value corresponding to `key`, if present.
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pub fn get<Q>(&self, key: &Q) -> Option<V>
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where
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K: Borrow<Q>,
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Q: Hash + Eq + ?Sized,
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V: Clone,
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{
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let mut guard = lock_if_runtime(&self.inner)?;
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guard.get(key).cloned()
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}
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/// Inserts `value` for `key`, returning the previous entry if it existed.
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pub fn insert(&self, key: K, value: V) -> Option<V> {
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let mut guard = lock_if_runtime(&self.inner)?;
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guard.put(key, value)
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}
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/// Removes the entry for `key` if it exists, returning it.
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pub fn remove<Q>(&self, key: &Q) -> Option<V>
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where
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K: Borrow<Q>,
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Q: Hash + Eq + ?Sized,
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{
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let mut guard = lock_if_runtime(&self.inner)?;
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guard.pop(key)
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}
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/// Clears all entries from the cache.
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pub fn clear(&self) {
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if let Some(mut guard) = lock_if_runtime(&self.inner) {
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guard.clear();
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}
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}
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/// Executes `callback` with a mutable reference to the underlying cache.
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pub fn with_mut<R>(&self, callback: impl FnOnce(&mut LruCache<K, V>) -> R) -> R {
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if let Some(mut guard) = lock_if_runtime(&self.inner) {
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callback(&mut guard)
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} else {
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let mut disabled = LruCache::unbounded();
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callback(&mut disabled)
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}
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}
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/// Provides direct access to the cache guard when a Tokio runtime is available.
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pub fn blocking_lock(&self) -> Option<MutexGuard<'_, LruCache<K, V>>> {
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lock_if_runtime(&self.inner)
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}
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}
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fn lock_if_runtime<K, V>(m: &Mutex<LruCache<K, V>>) -> Option<MutexGuard<'_, LruCache<K, V>>>
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where
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K: Eq + Hash,
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{
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tokio::runtime::Handle::try_current().ok()?;
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Some(tokio::task::block_in_place(|| m.blocking_lock()))
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}
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/// Computes the SHA-1 digest of `bytes`.
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///
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/// Useful for content-based cache keys when you want to avoid staleness
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/// caused by path-only keys.
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#[must_use]
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pub fn sha1_digest(bytes: &[u8]) -> [u8; 20] {
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let mut hasher = Sha1::new();
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hasher.update(bytes);
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let result = hasher.finalize();
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let mut out = [0; 20];
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out.copy_from_slice(&result);
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out
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}
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#[cfg(test)]
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mod tests {
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use super::BlockingLruCache;
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use std::num::NonZeroUsize;
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#[tokio::test(flavor = "multi_thread")]
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async fn stores_and_retrieves_values() {
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let cache = BlockingLruCache::new(NonZeroUsize::new(2).expect("capacity"));
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assert!(cache.get(&"first").is_none());
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cache.insert("first", 1);
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assert_eq!(cache.get(&"first"), Some(1));
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}
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#[tokio::test(flavor = "multi_thread")]
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async fn evicts_least_recently_used() {
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let cache = BlockingLruCache::new(NonZeroUsize::new(2).expect("capacity"));
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cache.insert("a", 1);
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cache.insert("b", 2);
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assert_eq!(cache.get(&"a"), Some(1));
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cache.insert("c", 3);
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assert!(cache.get(&"b").is_none());
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assert_eq!(cache.get(&"a"), Some(1));
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assert_eq!(cache.get(&"c"), Some(3));
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}
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#[test]
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fn disabled_without_runtime() {
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let cache = BlockingLruCache::new(NonZeroUsize::new(2).expect("capacity"));
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cache.insert("first", 1);
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assert!(cache.get(&"first").is_none());
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assert_eq!(cache.get_or_insert_with("first", || 2), 2);
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assert!(cache.get(&"first").is_none());
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assert!(cache.remove(&"first").is_none());
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cache.clear();
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let result = cache.with_mut(|inner| {
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inner.put("tmp", 3);
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inner.get(&"tmp").cloned()
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});
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assert_eq!(result, Some(3));
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assert!(cache.get(&"tmp").is_none());
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assert!(cache.blocking_lock().is_none());
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}
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}
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