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tenant.openagents/omega
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test.rs
1//! Test support for GPUI.
2//!
3//! GPUI provides first-class support for testing, which includes a macro to run test that rely on having a context,
4//! and a test implementation of the `ForegroundExecutor` and `BackgroundExecutor` which ensure that your tests run
5//! deterministically even in the face of arbitrary parallelism.
6//!
7//! The output of the `gpui::test` macro is understood by other rust test runners, so you can use it with `cargo test`
8//! or `cargo-nextest`, or another runner of your choice.
9//!
10//! To make it possible to test collaborative user interfaces (like Zed) you can ask for as many different contexts
11//! as you need.
12//!
13//! ## Example
14//!
15//! ```
16//! use gpui;
17//!
18//! #[gpui::test]
19//! async fn test_example(cx: &TestAppContext) {
20//! assert!(true)
21//! }
22//!
23//! #[gpui::test]
24//! async fn test_collaboration_example(cx_a: &TestAppContext, cx_b: &TestAppContext) {
25//! assert!(true)
26//! }
27//! ```
28use crate::{Entity, Subscription, TestAppContext, TestDispatcher};
29use futures::StreamExt as _;
30use proptest::prelude::{Just, Strategy, any};
31use std::{
32 env,
33 panic::{self, RefUnwindSafe, UnwindSafe},
34 pin::Pin,
35};
36
37/// Strategy injected into `#[gpui::property_test]` tests to control the seed
38/// given to the scheduler. Doesn't shrink, since all scheduler seeds are
39/// equivalent in complexity. If `$SEED` is set, it always uses that value.
40///
41/// Note: this function is not intended to be used directly. Rather, it is
42/// public so that it can be used from the `property_test` macro.
43pub fn seed_strategy() -> impl Strategy<Value = u64> {
44 match std::env::var("SEED") {
45 Ok(val) => Just(val.parse().unwrap()).boxed(),
46 Err(_) => any::<u64>().no_shrink().boxed(),
47 }
48}
49
50/// Applies a fixed RNG seed to a proptest config so that case generation
51/// is deterministic. Uses `$SEED` if set, otherwise defaults to `0`.
52/// This bridges the GPUI `SEED` env var to proptest's RNG seed, so that
53/// a single variable controls both the scheduler seed and case generation.
54///
55/// Note: this function is not intended to be used directly. Rather, it is
56/// public so that it can be used from the `property_test` macro.
57pub fn apply_seed_to_proptest_config(
58 mut config: proptest::test_runner::Config,
59) -> proptest::test_runner::Config {
60 let seed = env::var("SEED")
61 .ok()
62 .and_then(|val| val.parse::<u64>().ok())
63 .unwrap_or(0);
64 config.rng_seed = proptest::test_runner::RngSeed::Fixed(seed);
65 config
66}
67
68/// Similar to [`run_test`], but only runs the callback once, allowing
69/// [`FnOnce`] callbacks. This is intended for use with the
70/// `gpui::property_test` macro and generally should not be used directly.
71///
72/// Doesn't support many features of [`run_test`], since these are provided by
73/// proptest.
74pub fn run_test_once<R>(
75 seed: u64,
76 test_fn: Box<dyn UnwindSafe + FnOnce(TestDispatcher) -> R>,
77) -> R {
78 let result = panic::catch_unwind(|| {
79 let dispatcher = TestDispatcher::new(seed);
80 let scheduler = dispatcher.scheduler().clone();
81 let res = test_fn(dispatcher);
82 scheduler.end_test();
83 res
84 });
85
86 match result {
87 Ok(r) => r,
88 Err(e) => panic::resume_unwind(e),
89 }
90}
91
92/// Run the given test function with the configured parameters.
93/// This is intended for use with the `gpui::test` macro
94/// and generally should not be used directly.
95pub fn run_test(
96 num_iterations: usize,
97 explicit_seeds: &[u64],
98 max_retries: usize,
99 test_fn: &mut (dyn RefUnwindSafe + Fn(TestDispatcher, u64)),
100 on_fail_fn: Option<fn()>,
101) {
102 let (seeds, is_multiple_runs) = calculate_seeds(num_iterations as u64, explicit_seeds);
103
104 for seed in seeds {
105 let mut attempt = 0;
106 loop {
107 if is_multiple_runs {
108 eprintln!("seed = {seed}");
109 }
110 let result = panic::catch_unwind(|| {
111 let dispatcher = TestDispatcher::new(seed);
112 let scheduler = dispatcher.scheduler().clone();
113 test_fn(dispatcher, seed);
114 scheduler.end_test();
115 });
116
117 match result {
118 Ok(_) => break,
119 Err(error) => {
120 if attempt < max_retries {
121 println!("attempt {} failed, retrying", attempt);
122 attempt += 1;
123 // The panic payload might itself trigger an unwind on drop:
124 // https://doc.rust-lang.org/std/panic/fn.catch_unwind.html#notes
125 std::mem::forget(error);
126 } else {
127 if is_multiple_runs {
128 eprintln!("failing seed: {seed}");
129 eprintln!(
130 "You can rerun from this seed by setting the environmental variable SEED to {seed}"
131 );
132 }
133 if let Some(on_fail_fn) = on_fail_fn {
134 on_fail_fn()
135 }
136 panic::resume_unwind(error);
137 }
138 }
139 }
140 }
141 }
142}
143
144fn calculate_seeds(
145 iterations: u64,
146 explicit_seeds: &[u64],
147) -> (impl Iterator<Item = u64> + '_, bool) {
148 let iterations = env::var("ITERATIONS")
149 .ok()
150 .map(|var| var.parse().expect("invalid ITERATIONS variable"))
151 .unwrap_or(iterations);
152
153 let env_num = env::var("SEED")
154 .map(|seed| seed.parse().expect("invalid SEED variable as integer"))
155 .ok();
156
157 let empty_range = || 0..0;
158
159 let iter = {
160 let env_range = if let Some(env_num) = env_num {
161 env_num..env_num + 1
162 } else {
163 empty_range()
164 };
165
166 // if `iterations` is 1 and !(`explicit_seeds` is non-empty || `SEED` is set), then add the run `0`
167 // if `iterations` is 1 and (`explicit_seeds` is non-empty || `SEED` is set), then discard the run `0`
168 // if `iterations` isn't 1 and `SEED` is set, do `SEED..SEED+iterations`
169 // otherwise, do `0..iterations`
170 let iterations_range = match (iterations, env_num) {
171 (1, None) if explicit_seeds.is_empty() => 0..1,
172 (1, None) | (1, Some(_)) => empty_range(),
173 (iterations, Some(env)) => env..env + iterations,
174 (iterations, None) => 0..iterations,
175 };
176
177 // if `SEED` is set, ignore `explicit_seeds`
178 let explicit_seeds = if env_num.is_some() {
179 &[]
180 } else {
181 explicit_seeds
182 };
183
184 env_range
185 .chain(iterations_range)
186 .chain(explicit_seeds.iter().copied())
187 };
188 let is_multiple_runs = iter.clone().nth(1).is_some();
189 (iter, is_multiple_runs)
190}
191
192/// A test struct for converting an observation callback into a stream.
193pub struct Observation<T> {
194 rx: Pin<Box<async_channel::Receiver<T>>>,
195 _subscription: Subscription,
196}
197
198impl<T: 'static> futures::Stream for Observation<T> {
199 type Item = T;
200
201 fn poll_next(
202 mut self: std::pin::Pin<&mut Self>,
203 cx: &mut std::task::Context<'_>,
204 ) -> std::task::Poll<Option<Self::Item>> {
205 self.rx.poll_next_unpin(cx)
206 }
207}
208
209/// observe returns a stream of the change events from the given `Entity`
210pub fn observe<T: 'static>(entity: &Entity<T>, cx: &mut TestAppContext) -> Observation<()> {
211 let (tx, rx) = async_channel::unbounded();
212 let _subscription = cx.update(|cx| {
213 cx.observe(entity, move |_, _| {
214 let _ = gpui::block_on(tx.send(()));
215 })
216 });
217 let rx = Box::pin(rx);
218
219 Observation { rx, _subscription }
220}
221