1#![forbid(unsafe_code)]
4#![warn(missing_docs)]
5
6use std::time::{SystemTime, UNIX_EPOCH};
7
8use pacta_contract::kernel::{Directive, Kernel, Notice, StepResult};
9use pacta_contract::{Outcome, Registry, Timestamp};
10use pacta_executor::{Execution, Executor};
11
12fn current_time() -> Timestamp {
16 let millis = SystemTime::now()
17 .duration_since(UNIX_EPOCH)
18 .map(|elapsed| u64::try_from(elapsed.as_millis()).unwrap_or(u64::MAX))
19 .unwrap_or(0);
20 Timestamp::from_millis(millis)
21}
22
23#[derive(Debug, Clone, Copy, PartialEq, Eq)]
28#[non_exhaustive]
29#[must_use]
30pub enum Step {
31 Idle,
33 Fulfilled,
35 Breached,
37}
38
39#[derive(Debug, Clone, PartialEq, Eq)]
44#[non_exhaustive]
45#[must_use]
46pub enum DriverError<RegistryError, ExecutorError> {
47 Registry(RegistryError),
49 Executor(ExecutorError),
52}
53
54impl<RegistryError, ExecutorError> std::fmt::Display for DriverError<RegistryError, ExecutorError>
55where
56 RegistryError: std::error::Error,
57 ExecutorError: std::error::Error,
58{
59 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
60 match self {
61 Self::Registry(error) => write!(f, "registry operation failed: {error}"),
62 Self::Executor(error) => write!(f, "executor infrastructure failed: {error}"),
63 }
64 }
65}
66
67impl<RegistryError, ExecutorError> std::error::Error for DriverError<RegistryError, ExecutorError>
68where
69 RegistryError: std::error::Error + 'static,
70 ExecutorError: std::error::Error + 'static,
71{
72 fn source(&self) -> Option<&(dyn std::error::Error + 'static)> {
73 match self {
74 Self::Registry(error) => Some(error),
75 Self::Executor(error) => Some(error),
76 }
77 }
78}
79
80pub struct Driver<R, E> {
93 registry: R,
94 executor: E,
95 dockets: Vec<String>,
96}
97
98impl<R, E> Driver<R, E> {
99 pub fn new(registry: R, executor: E, dockets: impl IntoIterator<Item = String>) -> Self {
101 Self {
102 registry,
103 executor,
104 dockets: dockets.into_iter().collect(),
105 }
106 }
107
108 #[must_use]
110 pub fn registry(&self) -> &R {
111 &self.registry
112 }
113
114 #[must_use]
116 pub fn executor(&self) -> &E {
117 &self.executor
118 }
119}
120
121impl<R, E> Driver<R, E>
122where
123 R: Registry,
124 E: Executor,
125{
126 pub fn step(&mut self) -> Result<Step, DriverError<R::Error, E::Error>> {
130 let dockets: Vec<&str> = self.dockets.iter().map(String::as_str).collect();
131 let now = current_time();
132 let mut kernel = Kernel::new();
133 let mut pending_executor_error: Option<E::Error> = None;
134
135 loop {
136 if let Some(result) = kernel.result() {
137 return match result {
138 StepResult::Idle => Ok(Step::Idle),
139 StepResult::Settled(outcome) => Ok(match outcome {
140 Outcome::Fulfilled => Step::Fulfilled,
141 Outcome::Breached => Step::Breached,
142 }),
143 StepResult::Unsettled => Err(DriverError::Executor(
146 pending_executor_error
147 .expect("an unsettled step implies a pending executor error"),
148 )),
149 _ => unreachable!("driver handles every current kernel step result"),
150 };
151 }
152
153 match kernel.poll() {
154 Directive::Claim => {
155 let claim = self
156 .registry
157 .claim(&dockets, now)
158 .map_err(DriverError::Registry)?;
159 kernel.on_event(Notice::Claimed(claim));
160 }
161 Directive::Execute(pact) => match self.executor.execute(Execution::new(pact)) {
162 Ok(outcome) => kernel.on_event(Notice::Executed(outcome)),
163 Err(error) => {
164 pending_executor_error = Some(error);
165 kernel.on_event(Notice::ExecutionFailed);
166 }
167 },
168 Directive::Settle(retainer, outcome) => {
169 match outcome {
170 Outcome::Fulfilled => self
171 .registry
172 .fulfill(&retainer)
173 .map_err(DriverError::Registry)?,
174 Outcome::Breached => self
175 .registry
176 .breach(&retainer)
177 .map_err(DriverError::Registry)?,
178 }
179 kernel.on_event(Notice::Settled);
180 }
181 Directive::Idle => return Ok(Step::Idle),
182 _ => unreachable!("driver handles every current kernel directive"),
183 }
184 }
185 }
186}
187
188#[cfg(test)]
189mod tests {
190 use std::sync::Mutex;
191
192 use pacta_contract::{Claim, Pact, Retainer, Timestamp, Transition};
193 use uuid::Uuid;
194
195 use super::*;
196
197 #[derive(Debug, Clone, Copy, PartialEq, Eq)]
198 struct TestError;
199
200 impl std::fmt::Display for TestError {
201 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
202 write!(f, "test error")
203 }
204 }
205
206 impl std::error::Error for TestError {}
207
208 #[derive(Default)]
209 struct RegistryState {
210 claim: Option<Claim>,
211 fulfilled: usize,
212 breached: usize,
213 }
214
215 #[derive(Default)]
216 struct TestRegistry {
217 state: Mutex<RegistryState>,
218 }
219
220 impl TestRegistry {
221 fn with_claim(claim: Claim) -> Self {
222 Self {
223 state: Mutex::new(RegistryState {
224 claim: Some(claim),
225 ..RegistryState::default()
226 }),
227 }
228 }
229 }
230
231 impl Registry for TestRegistry {
232 type Error = TestError;
233
234 fn claim(&self, _dockets: &[&str], _now: Timestamp) -> Result<Option<Claim>, Self::Error> {
235 Ok(self
236 .state
237 .lock()
238 .expect("registry state should not be poisoned")
239 .claim
240 .take())
241 }
242
243 fn lease_millis(&self) -> u64 {
244 0
245 }
246
247 fn apply(
250 &self,
251 _retainer: &Retainer,
252 _transition: &Transition<'_>,
253 ) -> Result<(), Self::Error> {
254 Ok(())
255 }
256
257 fn fulfill(&self, _retainer: &Retainer) -> Result<(), Self::Error> {
260 self.state
261 .lock()
262 .expect("registry state should not be poisoned")
263 .fulfilled += 1;
264 Ok(())
265 }
266
267 fn breach(&self, _retainer: &Retainer) -> Result<(), Self::Error> {
268 self.state
269 .lock()
270 .expect("registry state should not be poisoned")
271 .breached += 1;
272 Ok(())
273 }
274 }
275
276 struct TestExecutor {
277 outcome: Result<Outcome, TestError>,
278 executions: usize,
279 }
280
281 impl Executor for TestExecutor {
282 type Error = TestError;
283
284 fn execute(&mut self, _execution: Execution) -> Result<Outcome, Self::Error> {
285 self.executions += 1;
286 self.outcome
287 }
288 }
289
290 fn claim() -> Claim {
291 Claim::new(
292 Pact::new(
293 Uuid::new_v4(),
294 "default".to_string(),
295 "example".to_string(),
296 Vec::new(),
297 ),
298 Retainer::new(Uuid::new_v4()),
299 Timestamp::from_millis(0),
300 )
301 }
302
303 #[test]
304 fn successful_execution_fulfills_claim() {
305 let registry = TestRegistry::with_claim(claim());
306 let executor = TestExecutor {
307 outcome: Ok(Outcome::Fulfilled),
308 executions: 0,
309 };
310 let mut driver = Driver::new(registry, executor, ["default".to_string()]);
311
312 assert_eq!(driver.step(), Ok(Step::Fulfilled));
313 let state = driver
314 .registry()
315 .state
316 .lock()
317 .expect("registry state should not be poisoned");
318 assert_eq!(state.fulfilled, 1);
319 assert_eq!(state.breached, 0);
320 drop(state);
321 assert_eq!(driver.executor().executions, 1);
322 }
323
324 #[test]
325 fn breached_execution_breaches_claim() {
326 let registry = TestRegistry::with_claim(claim());
327 let executor = TestExecutor {
328 outcome: Ok(Outcome::Breached),
329 executions: 0,
330 };
331 let mut driver = Driver::new(registry, executor, ["default".to_string()]);
332
333 assert_eq!(driver.step(), Ok(Step::Breached));
334 let state = driver
335 .registry()
336 .state
337 .lock()
338 .expect("registry state should not be poisoned");
339 assert_eq!(state.fulfilled, 0);
340 assert_eq!(state.breached, 1);
341 drop(state);
342 assert_eq!(driver.executor().executions, 1);
343 }
344
345 #[test]
346 fn executor_error_leaves_claim_unsettled() {
347 let registry = TestRegistry::with_claim(claim());
348 let executor = TestExecutor {
349 outcome: Err(TestError),
350 executions: 0,
351 };
352 let mut driver = Driver::new(registry, executor, ["default".to_string()]);
353
354 assert_eq!(driver.step(), Err(DriverError::Executor(TestError)));
359 let state = driver
360 .registry()
361 .state
362 .lock()
363 .expect("registry state should not be poisoned");
364 assert_eq!(state.fulfilled, 0);
365 assert_eq!(state.breached, 0);
366 drop(state);
367 assert_eq!(driver.executor().executions, 1);
368 }
369
370 #[test]
371 fn empty_docket_is_idle() {
372 let registry = TestRegistry::default();
373 let executor = TestExecutor {
374 outcome: Ok(Outcome::Fulfilled),
375 executions: 0,
376 };
377 let mut driver = Driver::new(registry, executor, ["default".to_string()]);
378
379 assert_eq!(driver.step(), Ok(Step::Idle));
380 let state = driver
381 .registry()
382 .state
383 .lock()
384 .expect("registry state should not be poisoned");
385 assert_eq!(state.fulfilled, 0);
386 assert_eq!(state.breached, 0);
387 drop(state);
388 assert_eq!(driver.executor().executions, 0);
389 }
390
391 #[test]
392 fn driver_error_displays_and_exposes_source() {
393 use std::error::Error;
394
395 let executor_error: DriverError<TestError, TestError> = DriverError::Executor(TestError);
396 assert_eq!(
397 executor_error.to_string(),
398 "executor infrastructure failed: test error"
399 );
400 assert_eq!(
401 executor_error
402 .source()
403 .expect("driver error should expose its source")
404 .to_string(),
405 "test error"
406 );
407
408 let registry_error: DriverError<TestError, TestError> = DriverError::Registry(TestError);
409 assert_eq!(
410 registry_error.to_string(),
411 "registry operation failed: test error"
412 );
413 assert_eq!(
414 registry_error
415 .source()
416 .expect("driver error should expose its source")
417 .to_string(),
418 "test error"
419 );
420 }
421}