hydracache_db/query.rs
1use std::error::Error;
2use std::fmt;
3use std::future::Future;
4use std::marker::PhantomData;
5use std::time::Duration;
6
7use hydracache::{CacheKeyBuilder, CacheOptions, HydraCache, PostcardCodec, TagSet};
8use hydracache_core::CacheCodec;
9use serde::{de::DeserializeOwned, Serialize};
10
11use crate::{DbCacheError, Result};
12
13/// A database-oriented view over a [`HydraCache`] instance.
14///
15/// `DbCache` groups query result keys under a namespace while keeping all
16/// cache storage, single-flight, tags, TTL, and stats in the shared local cache.
17///
18/// # Example
19///
20/// ```rust
21/// use std::time::Duration;
22///
23/// use hydracache::HydraCache;
24/// use hydracache_db::DbCache;
25/// use serde::{Deserialize, Serialize};
26///
27/// #[derive(Debug, Clone, PartialEq, Eq, Serialize, Deserialize)]
28/// struct User {
29/// id: i64,
30/// name: String,
31/// }
32///
33/// # #[tokio::main]
34/// # async fn main() -> hydracache_db::Result<()> {
35/// let local = HydraCache::local().build();
36/// let queries = DbCache::new(local, "db");
37///
38/// let user = queries
39/// .entity::<User>("user", 42)
40/// // Later, invalidate_tag("user:42") removes this result.
41/// .collection_tag("users")
42/// .ttl(Duration::from_secs(60))
43/// .fetch_with(|| async {
44/// // Replace this block with code from sqlx, diesel, sea-orm, or any
45/// // other database client. It is called only when the cache does not
46/// // already contain "db:user:42" or when the cached value has expired.
47/// Ok::<_, std::io::Error>(User {
48/// id: 42,
49/// name: "Ada".to_owned(),
50/// })
51/// })
52/// .await?;
53///
54/// assert_eq!(user.id, 42);
55/// # Ok(())
56/// # }
57/// ```
58pub struct DbCache<C = PostcardCodec>
59where
60 C: CacheCodec,
61{
62 cache: HydraCache<C>,
63 namespace: String,
64}
65
66impl<C> Clone for DbCache<C>
67where
68 C: CacheCodec,
69{
70 fn clone(&self) -> Self {
71 Self {
72 cache: self.cache.clone(),
73 namespace: self.namespace.clone(),
74 }
75 }
76}
77
78impl<C> fmt::Debug for DbCache<C>
79where
80 C: CacheCodec,
81{
82 fn fmt(&self, formatter: &mut fmt::Formatter<'_>) -> fmt::Result {
83 formatter
84 .debug_struct("DbCache")
85 .field("namespace", &self.namespace)
86 .finish_non_exhaustive()
87 }
88}
89
90impl<C> DbCache<C>
91where
92 C: CacheCodec,
93{
94 /// Create a database query cache adapter over an existing local cache.
95 pub fn new(cache: HydraCache<C>, namespace: impl Into<String>) -> Self {
96 Self {
97 cache,
98 namespace: namespace.into(),
99 }
100 }
101
102 /// Return the namespace used for physical cache keys.
103 pub fn namespace(&self) -> &str {
104 &self.namespace
105 }
106
107 /// Return the underlying local cache.
108 pub fn cache(&self) -> &HydraCache<C> {
109 &self.cache
110 }
111
112 /// Start describing a cacheable database-loaded value.
113 ///
114 /// This is the preferred entry point when the query is already visible
115 /// inside the `fetch_with` loader through a database client, ORM, or
116 /// repository method.
117 pub fn cached<T>(&self) -> DbQuery<T, C> {
118 DbQuery {
119 cache: self.cache.clone(),
120 namespace: self.namespace.clone(),
121 name: None,
122 key: None,
123 tags: TagSet::new(),
124 ttl: None,
125 value: PhantomData,
126 }
127 }
128
129 /// Start describing an entity-shaped cached value.
130 ///
131 /// This is a convenience layer over [`DbCache::cached`] that sets both the
132 /// logical key and the entity invalidation tag from escaped key segments.
133 /// For example, `entity::<User>("user", 42)` creates key `user:42` and tag
134 /// `user:42`; with namespace `db`, the physical cache key is `db:user:42`.
135 ///
136 /// # Example
137 ///
138 /// ```rust
139 /// use hydracache::HydraCache;
140 /// use hydracache_db::DbCache;
141 /// use serde::{Deserialize, Serialize};
142 ///
143 /// #[derive(Debug, Clone, Serialize, Deserialize)]
144 /// struct User {
145 /// id: i64,
146 /// }
147 ///
148 /// let queries = DbCache::new(HydraCache::local().build(), "db");
149 /// let query = queries.entity::<User>("user", 42);
150 ///
151 /// assert_eq!(query.key_value(), Some("user:42"));
152 /// assert_eq!(query.tags_value(), &["user:42".to_owned()]);
153 /// assert_eq!(query.physical_key(), Some("db:user:42".to_owned()));
154 /// ```
155 pub fn entity<T>(&self, kind: impl ToString, id: impl ToString) -> DbQuery<T, C> {
156 self.cached::<T>().for_entity(kind, id)
157 }
158
159 /// Start describing a collection-shaped cached value.
160 ///
161 /// This sets both the logical key and the collection invalidation tag to
162 /// the escaped collection name. For example, `collection::<User>("users")`
163 /// creates key `users` and tag `users`.
164 ///
165 /// # Example
166 ///
167 /// ```rust
168 /// use hydracache::HydraCache;
169 /// use hydracache_db::DbCache;
170 /// use serde::{Deserialize, Serialize};
171 ///
172 /// #[derive(Debug, Clone, Serialize, Deserialize)]
173 /// struct User {
174 /// id: i64,
175 /// }
176 ///
177 /// let queries = DbCache::new(HydraCache::local().build(), "db");
178 /// let query = queries.collection::<User>("users:active");
179 ///
180 /// assert_eq!(query.key_value(), Some("users%3Aactive"));
181 /// assert_eq!(query.tags_value(), &["users%3Aactive".to_owned()]);
182 /// assert_eq!(query.physical_key(), Some("db:users%3Aactive".to_owned()));
183 /// ```
184 pub fn collection<T>(&self, name: impl ToString) -> DbQuery<T, C> {
185 let tag = collection_tag(name);
186 self.cached::<T>().key(tag.clone()).tag(tag)
187 }
188
189 /// Start describing a cacheable database-loaded value with a diagnostic name.
190 pub fn named<T>(&self, name: impl Into<String>) -> DbQuery<T, C> {
191 DbQuery {
192 cache: self.cache.clone(),
193 namespace: self.namespace.clone(),
194 name: Some(name.into()),
195 key: None,
196 tags: TagSet::new(),
197 ttl: None,
198 value: PhantomData,
199 }
200 }
201
202 /// Start describing a cacheable SQL query result.
203 ///
204 /// Prefer [`DbCache::cached`] or [`DbCache::named`] when writing new code.
205 /// This method remains useful if you want the SQL text itself to be the
206 /// diagnostic label for errors and logs.
207 pub fn query_as<T>(&self, sql: impl Into<String>) -> DbQuery<T, C> {
208 self.named(sql)
209 }
210}
211
212/// A cacheable database query descriptor.
213///
214/// The descriptor is deliberately explicit: callers choose the key, tags, and
215/// TTL that match their freshness model. An operation name is optional and used
216/// only for diagnostics. `fetch_with` executes the supplied loader only on a
217/// cache miss.
218pub struct DbQuery<T, C = PostcardCodec>
219where
220 C: CacheCodec,
221{
222 cache: HydraCache<C>,
223 namespace: String,
224 name: Option<String>,
225 key: Option<String>,
226 tags: TagSet,
227 ttl: Option<Duration>,
228 value: PhantomData<fn() -> T>,
229}
230
231impl<T, C> Clone for DbQuery<T, C>
232where
233 C: CacheCodec,
234{
235 fn clone(&self) -> Self {
236 Self {
237 cache: self.cache.clone(),
238 namespace: self.namespace.clone(),
239 name: self.name.clone(),
240 key: self.key.clone(),
241 tags: self.tags.clone(),
242 ttl: self.ttl,
243 value: PhantomData,
244 }
245 }
246}
247
248impl<T, C> fmt::Debug for DbQuery<T, C>
249where
250 C: CacheCodec,
251{
252 fn fmt(&self, formatter: &mut fmt::Formatter<'_>) -> fmt::Result {
253 formatter
254 .debug_struct("DbQuery")
255 .field("namespace", &self.namespace)
256 .field("name", &self.name)
257 .field("key", &self.key)
258 .field("tags", &self.tags)
259 .field("ttl", &self.ttl)
260 .finish_non_exhaustive()
261 }
262}
263
264impl<T, C> DbQuery<T, C>
265where
266 C: CacheCodec,
267{
268 /// Return the optional diagnostic operation name.
269 pub fn name(&self) -> Option<&str> {
270 self.name.as_deref()
271 }
272
273 /// Set or replace the diagnostic operation name.
274 pub fn with_name(mut self, name: impl Into<String>) -> Self {
275 self.name = Some(name.into());
276 self
277 }
278
279 /// Return the namespace used for physical cache keys.
280 pub fn namespace(&self) -> &str {
281 &self.namespace
282 }
283
284 /// Return the logical key, if one has been configured.
285 pub fn key_value(&self) -> Option<&str> {
286 self.key.as_deref()
287 }
288
289 /// Return the physical cache key, including the adapter namespace.
290 pub fn physical_key(&self) -> Option<String> {
291 self.key
292 .as_deref()
293 .map(|key| physical_key(&self.namespace, key))
294 }
295
296 /// Return the configured tags.
297 pub fn tags_value(&self) -> &[String] {
298 self.tags.as_slice()
299 }
300
301 /// Return the configured per-entry TTL.
302 pub fn ttl_value(&self) -> Option<Duration> {
303 self.ttl
304 }
305
306 /// Set the logical cache key for this query result.
307 pub fn key(mut self, key: impl Into<String>) -> Self {
308 self.key = Some(key.into());
309 self
310 }
311
312 /// Set the logical cache key from a segmented key builder.
313 pub fn key_builder(self, key: CacheKeyBuilder) -> Self {
314 self.key(key.build_string())
315 }
316
317 /// Set the logical key and add an entity invalidation tag.
318 ///
319 /// `for_entity("user", 42)` sets the key to `user:42` and adds the tag
320 /// `user:42`. Both segments are escaped with [`CacheKeyBuilder`], so `:` and
321 /// `%` inside one segment cannot accidentally create extra key segments.
322 ///
323 /// # Example
324 ///
325 /// ```rust
326 /// use hydracache::HydraCache;
327 /// use hydracache_db::DbCache;
328 /// use serde::{Deserialize, Serialize};
329 ///
330 /// #[derive(Debug, Clone, Serialize, Deserialize)]
331 /// struct User {
332 /// id: i64,
333 /// }
334 ///
335 /// let queries = DbCache::new(HydraCache::local().build(), "db");
336 /// let query = queries
337 /// .cached::<User>()
338 /// .tag("users")
339 /// .for_entity("user", 42);
340 ///
341 /// assert_eq!(query.key_value(), Some("user:42"));
342 /// assert_eq!(
343 /// query.tags_value(),
344 /// &["users".to_owned(), "user:42".to_owned()]
345 /// );
346 /// ```
347 pub fn for_entity(mut self, kind: impl ToString, id: impl ToString) -> Self {
348 let key = entity_key(kind, id);
349 self.key = Some(key.clone());
350 self.tags = self.tags.tag(key);
351 self
352 }
353
354 /// Add one invalidation tag.
355 pub fn tag(mut self, tag: impl Into<String>) -> Self {
356 self.tags = self.tags.tag(tag);
357 self
358 }
359
360 /// Add a collection invalidation tag from one escaped key segment.
361 ///
362 /// Use this with [`DbCache::entity`] or [`DbQuery::for_entity`] when one
363 /// entity result also belongs to a broader list or query group.
364 ///
365 /// # Example
366 ///
367 /// ```rust
368 /// use hydracache::HydraCache;
369 /// use hydracache_db::DbCache;
370 /// use serde::{Deserialize, Serialize};
371 ///
372 /// #[derive(Debug, Clone, Serialize, Deserialize)]
373 /// struct User {
374 /// id: i64,
375 /// }
376 ///
377 /// let queries = DbCache::new(HydraCache::local().build(), "db");
378 /// let query = queries
379 /// .entity::<User>("user", 42)
380 /// .collection_tag("users:active");
381 ///
382 /// assert_eq!(
383 /// query.tags_value(),
384 /// &["user:42".to_owned(), "users%3Aactive".to_owned()]
385 /// );
386 /// ```
387 pub fn collection_tag(mut self, name: impl ToString) -> Self {
388 self.tags = self.tags.tag(collection_tag(name));
389 self
390 }
391
392 /// Add several invalidation tags.
393 pub fn tags<I, S>(mut self, tags: I) -> Self
394 where
395 I: IntoIterator<Item = S>,
396 S: Into<String>,
397 {
398 self.tags = self.tags.tags(tags);
399 self
400 }
401
402 /// Replace invalidation tags from a reusable [`TagSet`].
403 pub fn tag_set(mut self, tags: TagSet) -> Self {
404 self.tags = tags;
405 self
406 }
407
408 /// Set a per-entry TTL for this query result.
409 pub fn ttl(mut self, ttl: Duration) -> Self {
410 self.ttl = Some(ttl);
411 self
412 }
413
414 /// Fetch a cached value or run the supplied database loader on miss.
415 ///
416 /// The loader is intentionally caller-supplied so the database library
417 /// remains responsible for pools, transactions, compile-time checked
418 /// queries, and row mapping. HydraCache owns only the cache boundary.
419 pub async fn fetch_with<E, F, Fut>(self, loader: F) -> Result<T>
420 where
421 T: Serialize + DeserializeOwned + Send + 'static,
422 E: Error + Send + Sync + 'static,
423 F: FnOnce() -> Fut + Send + 'static,
424 Fut: Future<Output = std::result::Result<T, E>> + Send + 'static,
425 {
426 self.fetch_value_with(loader).await
427 }
428
429 /// Fetch a cached value with an output type chosen by an adapter.
430 ///
431 /// Most application code should use [`DbQuery::fetch_with`]. This method is
432 /// intended for adapter crates that keep the descriptor type focused on a
433 /// database row while caching shapes such as `Option<T>` or `Vec<T>`.
434 pub async fn fetch_value_with<U, E, F, Fut>(self, loader: F) -> Result<U>
435 where
436 U: Serialize + DeserializeOwned + Send + 'static,
437 E: Error + Send + Sync + 'static,
438 F: FnOnce() -> Fut + Send + 'static,
439 Fut: Future<Output = std::result::Result<U, E>> + Send + 'static,
440 {
441 let Some(key) = self.physical_key() else {
442 return Err(DbCacheError::MissingKey {
443 operation: self.operation_label(),
444 });
445 };
446
447 self.cache
448 .get_or_load(&key, self.options(), loader)
449 .await
450 .map_err(DbCacheError::from)
451 }
452
453 fn options(&self) -> CacheOptions {
454 let mut options = CacheOptions::new().tag_set(self.tags.clone());
455 if let Some(ttl) = self.ttl {
456 options = options.ttl(ttl);
457 }
458 options
459 }
460
461 fn operation_label(&self) -> String {
462 match &self.name {
463 Some(name) => name.clone(),
464 None if self.namespace.is_empty() => "unnamed".to_owned(),
465 None => format!("{}:unnamed", self.namespace),
466 }
467 }
468}
469
470fn entity_key(kind: impl ToString, id: impl ToString) -> String {
471 CacheKeyBuilder::new().entity(kind, id).build_string()
472}
473
474fn collection_tag(name: impl ToString) -> String {
475 CacheKeyBuilder::from_segment(name).build_string()
476}
477
478fn physical_key(namespace: &str, key: &str) -> String {
479 if namespace.is_empty() {
480 key.to_owned()
481 } else {
482 format!("{namespace}:{key}")
483 }
484}