Files
oak-gpui/crates/gpui/src/test.rs
T
Nathan SoboandAntonio Scandurra d7a78e14ac Allow disk-based diagnostic progress begin/end events to interleave
When multiple saves occur, we can have multiple start events followed by multiple end events. We don't want to update our project diagnostics view until all pending progress is finished.

Co-Authored-By: Antonio Scandurra <me@as-cii.com>
2022-01-06 09:32:08 -07:00

140 lines
3.8 KiB
Rust

use std::{
panic::{self, RefUnwindSafe},
rc::Rc,
sync::{
atomic::{AtomicU64, Ordering::SeqCst},
Arc,
},
};
use futures::StreamExt;
use smol::channel;
use crate::{
executor, platform, Entity, FontCache, Handle, MutableAppContext, Platform, Subscription,
TestAppContext,
};
#[cfg(test)]
#[ctor::ctor]
fn init_logger() {
env_logger::builder()
.filter_level(log::LevelFilter::Info)
.init();
}
pub fn run_test(
mut num_iterations: u64,
mut starting_seed: u64,
max_retries: usize,
test_fn: &mut (dyn RefUnwindSafe
+ Fn(&mut MutableAppContext, Rc<platform::test::ForegroundPlatform>, u64)),
) {
let is_randomized = num_iterations > 1;
if is_randomized {
if let Ok(value) = std::env::var("SEED") {
starting_seed = value.parse().expect("invalid SEED variable");
}
if let Ok(value) = std::env::var("ITERATIONS") {
num_iterations = value.parse().expect("invalid ITERATIONS variable");
}
}
let atomic_seed = AtomicU64::new(starting_seed as u64);
let mut retries = 0;
loop {
let result = panic::catch_unwind(|| {
let foreground_platform = Rc::new(platform::test::foreground_platform());
let platform = Arc::new(platform::test::platform());
let font_system = platform.fonts();
let font_cache = Arc::new(FontCache::new(font_system));
loop {
let seed = atomic_seed.load(SeqCst);
if seed >= starting_seed + num_iterations {
break;
}
if is_randomized {
dbg!(seed);
}
let (foreground, background) = executor::deterministic(seed);
let mut cx = TestAppContext::new(
foreground_platform.clone(),
platform.clone(),
foreground.clone(),
background.clone(),
font_cache.clone(),
0,
);
cx.update(|cx| test_fn(cx, foreground_platform.clone(), seed));
atomic_seed.fetch_add(1, SeqCst);
}
});
match result {
Ok(_) => {
break;
}
Err(error) => {
if retries < max_retries {
retries += 1;
println!("retrying: attempt {}", retries);
} else {
if is_randomized {
eprintln!("failing seed: {}", atomic_seed.load(SeqCst));
}
panic::resume_unwind(error);
}
}
}
}
}
pub struct Observation<T> {
rx: channel::Receiver<T>,
_subscription: Subscription,
}
impl<T> futures::Stream for Observation<T> {
type Item = T;
fn poll_next(
mut self: std::pin::Pin<&mut Self>,
cx: &mut std::task::Context<'_>,
) -> std::task::Poll<Option<Self::Item>> {
self.rx.poll_next_unpin(cx)
}
}
pub fn observe<T: Entity>(entity: &impl Handle<T>, cx: &mut TestAppContext) -> Observation<()> {
let (tx, rx) = smol::channel::unbounded();
let _subscription = cx.update(|cx| {
cx.observe(entity, move |_, _| {
let _ = smol::block_on(tx.send(()));
})
});
Observation { rx, _subscription }
}
pub fn subscribe<T: Entity>(
entity: &impl Handle<T>,
cx: &mut TestAppContext,
) -> Observation<T::Event>
where
T::Event: Clone,
{
let (tx, rx) = smol::channel::unbounded();
let _subscription = cx.update(|cx| {
cx.subscribe(entity, move |_, event, _| {
let _ = smol::block_on(tx.send(event.clone()));
})
});
Observation { rx, _subscription }
}