use std::{collections::HashSet, path::PathBuf, time::Duration}; use television::{ action::Action, app::App, channels::TelevisionChannel, config::default_config_from_file, }; use tokio::{task::JoinHandle, time::timeout}; /// Default timeout for tests. /// /// This is kept quite high to avoid flakiness in CI. const DEFAULT_TIMEOUT: Duration = Duration::from_millis(500); /// Sets up an app with a file channel and default config. /// /// Returns a tuple containing the app's `JoinHandle` and the action channel's /// sender. /// /// The app is started in a separate task and can be interacted with by sending /// actions to the action channel. fn setup_app() -> ( JoinHandle, tokio::sync::mpsc::UnboundedSender, ) { let target_dir = PathBuf::from(env!("CARGO_MANIFEST_DIR")) .join("tests") .join("target_dir"); std::env::set_current_dir(&target_dir).unwrap(); let channel = TelevisionChannel::Files( television::channels::files::Channel::new(vec![target_dir]), ); let config = default_config_from_file().unwrap(); let passthrough_keybindings = Vec::new(); let input = None; let mut app = App::new(channel, config, &passthrough_keybindings, input); // retrieve the app's action channel handle in order to send a quit action let tx = app.action_tx.clone(); // start the app in a separate task let f = tokio::spawn(async move { app.run_headless().await.unwrap() }); // let the app spin up std::thread::sleep(Duration::from_millis(200)); (f, tx) } #[tokio::test(flavor = "multi_thread", worker_threads = 3)] async fn test_app_does_quit() { let (f, tx) = setup_app(); // send a quit action to the app tx.send(Action::Quit).unwrap(); // assert that the app quits within a default timeout std::thread::sleep(DEFAULT_TIMEOUT / 4); assert!(f.is_finished()); } #[tokio::test(flavor = "multi_thread", worker_threads = 3)] async fn test_app_starts_normally() { let (f, _) = setup_app(); // assert that the app is still running after the default timeout std::thread::sleep(DEFAULT_TIMEOUT / 4); assert!(!f.is_finished()); f.abort(); } #[tokio::test(flavor = "multi_thread", worker_threads = 3)] async fn test_app_basic_search() { let (f, tx) = setup_app(); // send actions to the app for c in "file1".chars() { tx.send(Action::AddInputChar(c)).unwrap(); } tx.send(Action::ConfirmSelection).unwrap(); // check the output with a timeout let output = timeout(DEFAULT_TIMEOUT, f) .await .expect("app did not finish within the default timeout") .unwrap(); assert!(output.selected_entries.is_some()); assert_eq!( &output .selected_entries .unwrap() .drain() .next() .unwrap() .name, "file1.txt" ); } #[tokio::test(flavor = "multi_thread", worker_threads = 3)] async fn test_app_basic_search_multiselect() { let (f, tx) = setup_app(); // send actions to the app for c in "file".chars() { tx.send(Action::AddInputChar(c)).unwrap(); } // select both files tx.send(Action::ToggleSelectionDown).unwrap(); std::thread::sleep(Duration::from_millis(50)); tx.send(Action::ToggleSelectionDown).unwrap(); std::thread::sleep(Duration::from_millis(50)); tx.send(Action::ConfirmSelection).unwrap(); // check the output with a timeout let output = timeout(DEFAULT_TIMEOUT, f) .await .expect("app did not finish within the default timeout") .unwrap(); assert!(output.selected_entries.is_some()); assert_eq!( output .selected_entries .as_ref() .unwrap() .iter() .map(|e| &e.name) .collect::>(), HashSet::from([&"file1.txt".to_string(), &"file2.txt".to_string()]) ); }