es_entity/operation/mod.rs
1//! Handle execution of database operations and transactions.
2
3pub mod hooks;
4mod with_time;
5
6use sqlx::{Acquire, Transaction};
7
8use crate::{clock::ClockHandle, db, one_time_executor::OneTimeExecutor};
9
10pub use with_time::*;
11
12/// Default return type of the derived EsRepo::begin_op().
13///
14/// Used as a wrapper of a [`sqlx::Transaction`] but can also cache the time at which the
15/// transaction is taking place.
16///
17/// When a manual clock is provided, the transaction will automatically cache that
18/// clock's time, enabling deterministic testing. This cached time will be used in all
19/// time-dependent operations.
20pub struct DbOp<'c> {
21 tx: Transaction<'c, db::Db>,
22 clock: ClockHandle,
23 now: Option<chrono::DateTime<chrono::Utc>>,
24 commit_hooks: Option<hooks::CommitHooks>,
25}
26
27impl<'c> DbOp<'c> {
28 fn new(
29 tx: Transaction<'c, db::Db>,
30 clock: ClockHandle,
31 time: Option<chrono::DateTime<chrono::Utc>>,
32 ) -> Self {
33 Self {
34 tx,
35 clock,
36 now: time,
37 commit_hooks: Some(hooks::CommitHooks::new()),
38 }
39 }
40
41 /// Initializes a transaction using the global clock.
42 ///
43 /// Delegates to [`init_with_clock`](Self::init_with_clock) using the global clock handle.
44 pub async fn init(pool: &db::Pool) -> Result<DbOp<'static>, sqlx::Error> {
45 Self::init_with_clock(pool, crate::clock::Clock::handle()).await
46 }
47
48 /// Initializes a transaction with the specified clock.
49 ///
50 /// If the clock is manual, its current time will be cached in the transaction.
51 pub async fn init_with_clock(
52 pool: &db::Pool,
53 clock: &ClockHandle,
54 ) -> Result<DbOp<'static>, sqlx::Error> {
55 let tx = pool.begin().await?;
56
57 // If a manual clock is provided, cache its time for consistent
58 // timestamps within the transaction.
59 let time = clock.manual_now();
60
61 Ok(DbOp::new(tx, clock.clone(), time))
62 }
63
64 /// Transitions to a [`DbOpWithTime`] with the given time cached.
65 pub fn with_time(self, time: chrono::DateTime<chrono::Utc>) -> DbOpWithTime<'c> {
66 DbOpWithTime::new(self, time)
67 }
68
69 /// Transitions to a [`DbOpWithTime`] using the clock.
70 ///
71 /// Uses cached time if present, otherwise uses the clock's current time.
72 pub fn with_clock_time(self) -> DbOpWithTime<'c> {
73 let time = self.now.unwrap_or_else(|| self.clock.now());
74 DbOpWithTime::new(self, time)
75 }
76
77 /// Transitions to a [`DbOpWithTime`] using the database time.
78 ///
79 /// Priority order:
80 /// 1. Cached time if present
81 /// 2. Manual clock time if the clock is manual
82 /// 3. Database time via `SELECT NOW()`
83 pub async fn with_db_time(mut self) -> Result<DbOpWithTime<'c>, sqlx::Error> {
84 let time = if let Some(time) = self.now {
85 time
86 } else if let Some(manual_time) = self.clock.manual_now() {
87 manual_time
88 } else {
89 db::database_now(&mut *self.tx).await?
90 };
91
92 Ok(DbOpWithTime::new(self, time))
93 }
94
95 /// Returns the optionally cached [`chrono::DateTime`]
96 pub fn maybe_now(&self) -> Option<chrono::DateTime<chrono::Utc>> {
97 self.now
98 }
99
100 /// Begins a nested transaction.
101 pub async fn begin(&mut self) -> Result<DbOp<'_>, sqlx::Error> {
102 Ok(DbOp::new(
103 self.tx.begin().await?,
104 self.clock.clone(),
105 self.now,
106 ))
107 }
108
109 /// Commits the inner transaction.
110 pub async fn commit(mut self) -> Result<(), sqlx::Error> {
111 let commit_hooks = self.commit_hooks.take().expect("no hooks");
112 let post_hooks = commit_hooks.execute_pre(&mut self).await?;
113 self.tx.commit().await?;
114 post_hooks.execute();
115 Ok(())
116 }
117
118 /// Gets a mutable handle to the inner transaction
119 pub fn tx_mut(&mut self) -> &mut Transaction<'c, db::Db> {
120 &mut self.tx
121 }
122}
123
124impl<'o> AtomicOperation for DbOp<'o> {
125 fn maybe_now(&self) -> Option<chrono::DateTime<chrono::Utc>> {
126 self.maybe_now()
127 }
128
129 fn clock(&self) -> &ClockHandle {
130 &self.clock
131 }
132
133 fn connection(&mut self) -> &mut db::Connection {
134 self.tx.connection()
135 }
136
137 fn add_commit_hook<H: hooks::CommitHook>(&mut self, hook: H) -> Result<(), H> {
138 self.commit_hooks.as_mut().expect("no hooks").add(hook);
139 Ok(())
140 }
141
142 fn commit_hook<H: hooks::CommitHook>(&self) -> Option<&H> {
143 self.commit_hooks.as_ref()?.get_last::<H>()
144 }
145
146 fn supports_hooks(&self) -> bool {
147 true
148 }
149}
150
151/// Equivileant of [`DbOp`] just that the time is guaranteed to be cached.
152///
153/// Used as a wrapper of a [`sqlx::Transaction`] with cached time of the transaction.
154pub struct DbOpWithTime<'c> {
155 inner: DbOp<'c>,
156 now: chrono::DateTime<chrono::Utc>,
157}
158
159impl<'c> DbOpWithTime<'c> {
160 fn new(mut inner: DbOp<'c>, time: chrono::DateTime<chrono::Utc>) -> Self {
161 inner.now = Some(time);
162 Self { inner, now: time }
163 }
164
165 /// The cached [`chrono::DateTime`]
166 pub fn now(&self) -> chrono::DateTime<chrono::Utc> {
167 self.now
168 }
169
170 /// Begins a nested transaction.
171 pub async fn begin(&mut self) -> Result<DbOpWithTime<'_>, sqlx::Error> {
172 Ok(DbOpWithTime::new(self.inner.begin().await?, self.now))
173 }
174
175 /// Commits the inner transaction.
176 pub async fn commit(self) -> Result<(), sqlx::Error> {
177 self.inner.commit().await
178 }
179
180 /// Gets a mutable handle to the inner transaction
181 pub fn tx_mut(&mut self) -> &mut Transaction<'c, db::Db> {
182 self.inner.tx_mut()
183 }
184}
185
186impl<'o> AtomicOperation for DbOpWithTime<'o> {
187 fn maybe_now(&self) -> Option<chrono::DateTime<chrono::Utc>> {
188 Some(self.now())
189 }
190
191 fn clock(&self) -> &ClockHandle {
192 self.inner.clock()
193 }
194
195 fn connection(&mut self) -> &mut db::Connection {
196 self.inner.connection()
197 }
198
199 fn add_commit_hook<H: hooks::CommitHook>(&mut self, hook: H) -> Result<(), H> {
200 self.inner.add_commit_hook(hook)
201 }
202
203 fn commit_hook<H: hooks::CommitHook>(&self) -> Option<&H> {
204 self.inner.commit_hook::<H>()
205 }
206
207 fn supports_hooks(&self) -> bool {
208 self.inner.supports_hooks()
209 }
210}
211
212impl<'o> AtomicOperationWithTime for DbOpWithTime<'o> {
213 fn now(&self) -> chrono::DateTime<chrono::Utc> {
214 self.now
215 }
216}
217
218/// Trait to signify we can make multiple consistent database roundtrips.
219///
220/// Its a stand in for [`&mut sqlx::Transaction<'_, DB>`](`sqlx::Transaction`).
221/// The reason for having a trait is to support custom types that wrap the inner
222/// transaction while providing additional functionality.
223///
224/// See [`DbOp`] or [`DbOpWithTime`].
225pub trait AtomicOperation: Send {
226 /// Function for querying when the operation is taking place - if it is cached.
227 fn maybe_now(&self) -> Option<chrono::DateTime<chrono::Utc>> {
228 None
229 }
230
231 /// Returns the clock handle for time operations.
232 ///
233 /// Default implementation returns the global clock handle.
234 fn clock(&self) -> &ClockHandle {
235 crate::clock::Clock::handle()
236 }
237
238 /// Returns the raw underlying connection.
239 /// The desired way to represent this would actually be as a GAT:
240 /// ```rust
241 /// trait AtomicOperation {
242 /// type Executor<'c>: sqlx::PgExecutor<'c>
243 /// where Self: 'c;
244 ///
245 /// fn connection<'c>(&'c mut self) -> Self::Executor<'c>;
246 /// }
247 /// ```
248 ///
249 /// But GATs don't play well with `async_trait::async_trait` due to lifetime constraints
250 /// so we return the concrete [`&mut db::Connection`](`crate::db::Connection`) instead as a work around.
251 ///
252 /// Since this trait is generally applied to types that wrap a [`sqlx::Transaction`]
253 /// there is no variance in the return type - so its fine.
254 ///
255 /// Statements executed directly on the returned connection are **not**
256 /// annotated with trace context — use [`as_executor`](Self::as_executor)
257 /// unless raw connection access is required.
258 fn connection(&mut self) -> &mut db::Connection;
259
260 /// Returns the [`sqlx::Executor`] implementation that statements should be
261 /// executed through.
262 ///
263 /// The returned [`OneTimeExecutor`] annotates every statement with the
264 /// current span's `traceparent` SQL comment when the `tracing-context`
265 /// feature is enabled and a *sampled* span is active (see
266 /// [`crate::sql_commenter`]). Otherwise statements pass through untouched.
267 ///
268 /// Trade-off: the trace context makes annotated statement text unique, so
269 /// annotated statements bypass sqlx's per-connection prepared statement
270 /// cache (`persistent(false)`) — costing a server-side parse + plan per
271 /// execution. Un-annotated traffic keeps full prepared-statement reuse.
272 fn as_executor(&mut self) -> OneTimeExecutor<'_, &mut db::Connection> {
273 let now = self.maybe_now();
274 OneTimeExecutor::new(self.connection(), now)
275 }
276
277 /// Registers a commit hook that will run pre_commit before and post_commit after the transaction commits.
278 /// Returns Ok(()) if the hook was registered, Err(hook) if hooks are not supported.
279 fn add_commit_hook<H: hooks::CommitHook>(&mut self, hook: H) -> Result<(), H> {
280 Err(hook)
281 }
282
283 /// Typed shared access to the currently-accumulating commit hook of type `H`,
284 /// if this operation supports commit hooks and one is registered.
285 /// Returns the hook a subsequent `add_commit_hook::<H>` call would merge into.
286 fn commit_hook<H: hooks::CommitHook>(&self) -> Option<&H> {
287 None
288 }
289
290 /// Whether this operation supports commit hooks.
291 ///
292 /// `true` iff [`add_commit_hook`](Self::add_commit_hook) can register a hook
293 /// (i.e. the operation is backed by a [`DbOp`]-style commit-hook buffer, not
294 /// a bare [`sqlx::Transaction`]). Unlike [`commit_hook`](Self::commit_hook) —
295 /// whose `None` is ambiguous between "hooks unsupported" and "supported but
296 /// none registered yet" — this reports support directly, with no registration
297 /// attempt and no `&mut` access.
298 fn supports_hooks(&self) -> bool {
299 false
300 }
301}
302
303impl<'c> AtomicOperation for sqlx::Transaction<'c, db::Db> {
304 fn connection(&mut self) -> &mut db::Connection {
305 &mut *self
306 }
307}