fixed async loop

pull/1/head
Jan Hrastnik 5 years ago committed by Blaž Hrastnik
parent 2985398adc
commit 065cbcee9e

1
.gitignore vendored

@ -1 +1,2 @@
target target
helix-term/rustfmt.toml

@ -1,14 +1,15 @@
use std::io::{self, stdout, Write};
use std::path::PathBuf;
use crossterm::{ use crossterm::{
cursor, cursor,
cursor::position, cursor::position,
event::{self, read, Event, KeyCode, KeyEvent}, event::{self, read, Event, EventStream, KeyCode, KeyEvent},
execute, queue, style, execute, queue, style,
terminal::{self, disable_raw_mode, enable_raw_mode}, terminal::{self, disable_raw_mode, enable_raw_mode},
Result, Result,
}; };
use futures::{future::FutureExt, select, StreamExt};
use std::io::{self, stdout, Write};
use std::path::PathBuf;
use std::time::Duration;
const HELP: &str = r#" const HELP: &str = r#"
- Use q to quit - Use q to quit
@ -20,40 +21,40 @@ pub struct Editor {
} }
impl Editor { impl Editor {
pub fn read_char() -> Result<char> { pub async fn print_events() {
loop { let mut reader = EventStream::new();
if let Ok(Event::Key(KeyEvent {
code: KeyCode::Char(c),
..
})) = event::read()
{
return Ok(c);
}
}
}
pub async fn print_events() -> Result<()> {
loop { loop {
// Handle key events // Handle key events
match Editor::read_char()? { let mut event = reader.next().await;
'h' => execute!(io::stdout(), cursor::MoveLeft(1))?, match event {
'j' => execute!(io::stdout(), cursor::MoveDown(1))?, Some(Ok(x)) => {
'k' => execute!(io::stdout(), cursor::MoveUp(1))?, if let Event::Key(KeyEvent {
'l' => execute!(io::stdout(), cursor::MoveRight(1))?, code: KeyCode::Char(c),
'q' => { ..
execute!( }) = x
io::stdout(), {
style::ResetColor, match c {
cursor::Show, 'h' => execute!(io::stdout(), cursor::MoveLeft(1)).unwrap(),
terminal::LeaveAlternateScreen 'j' => execute!(io::stdout(), cursor::MoveDown(1)).unwrap(),
)?; 'k' => execute!(io::stdout(), cursor::MoveUp(1)).unwrap(),
break; 'l' => execute!(io::stdout(), cursor::MoveRight(1)).unwrap(),
'q' => {
execute!(
io::stdout(),
style::ResetColor,
cursor::Show,
terminal::LeaveAlternateScreen
);
break;
}
_ => println!("{:?}", x),
}
}
} }
_ => println!("use 'q' to quit."), Some(Err(x)) => panic!(x),
None => break,
} }
} }
Ok(())
} }
pub fn run() -> Result<()> { pub fn run() -> Result<()> {
@ -85,6 +86,8 @@ impl Editor {
// Send a shutdown signal. // Send a shutdown signal.
drop(s); drop(s);
execute!(stdout, terminal::LeaveAlternateScreen)?;
// Wait for threads to finish. // Wait for threads to finish.
for t in threads { for t in threads {
t.join().unwrap(); t.join().unwrap();

@ -0,0 +1,100 @@
//! Demonstrates how to read events asynchronously with async-std.
//!
//! cargo run --features="event-stream" --example event-stream-async-std
use std::{
io::{stdout, Write},
time::Duration,
};
use futures::{future::FutureExt, select, StreamExt};
use smol::Timer;
// use futures_timer::Delay;
use crossterm::{
cursor::position,
event::{DisableMouseCapture, EnableMouseCapture, Event, EventStream, KeyCode},
execute,
terminal::{disable_raw_mode, enable_raw_mode},
Result,
};
const HELP: &str = r#"EventStream based on futures::Stream with async-std
- Keyboard, mouse and terminal resize events enabled
- Prints "." every second if there's no event
- Hit "c" to print current cursor position
- Use Esc to quit
"#;
async fn print_events() {
let mut reader = EventStream::new();
loop {
let mut delay = Timer::after(Duration::from_millis(1_000)).fuse();
let mut event = reader.next().fuse();
select! {
_ = delay => { println!(".\r"); },
maybe_event = event => {
match maybe_event {
Some(Ok(event)) => {
println!("Event::{:?}\r", event);
if event == Event::Key(KeyCode::Char('c').into()) {
println!("Cursor position: {:?}\r", position());
}
println!("test");
if event == Event::Key(KeyCode::Esc.into()) {
break;
}
}
Some(Err(e)) => println!("Error: {:?}\r", e),
None => break,
}
}
};
}
}
fn main() -> Result<()> {
println!("{}", HELP);
enable_raw_mode()?;
let mut stdout = stdout();
execute!(stdout, EnableMouseCapture)?;
use std::thread;
// Same number of threads as there are CPU cores.
let num_threads = num_cpus::get().max(1);
// A channel that sends the shutdown signal.
let (s, r) = piper::chan::<()>(0);
let mut threads = Vec::new();
// Create an executor thread pool.
for _ in 0..num_threads {
// Spawn an executor thread that waits for the shutdown signal.
let r = r.clone();
threads.push(thread::spawn(move || smol::run(r.recv())));
}
// No need to `run()`, now we can just block on the main future.
smol::block_on(print_events());
// Send a shutdown signal.
drop(s);
// Wait for threads to finish.
for t in threads {
t.join().unwrap();
}
execute!(stdout, DisableMouseCapture)?;
disable_raw_mode()
}
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