use std::io::{Read as _, Write as _}; use std::os::unix::io::AsRawFd as _; use std::os::unix::process::ExitStatusExt as _; use pty_process::Command as _; mod raw_guard; fn run(child: &pty_process::std::Child) { let _raw = raw_guard::RawGuard::new(); let mut buf = [0_u8; 4096]; let pty = child.pty().as_raw_fd(); let stdin = std::io::stdin().as_raw_fd(); loop { let mut set = nix::sys::select::FdSet::new(); set.insert(pty); set.insert(stdin); match nix::sys::select::select(None, Some(&mut set), None, None, None) { Ok(n) => { if n > 0 { if set.contains(pty) { match child.pty().read(&mut buf) { Ok(bytes) => { let buf = &buf[..bytes]; let stdout = std::io::stdout(); let mut stdout = stdout.lock(); stdout.write_all(buf).unwrap(); stdout.flush().unwrap(); } Err(e) => { // EIO means that the process closed the other // end of the pty if e.raw_os_error() != Some(libc::EIO) { eprintln!("pty read failed: {:?}", e); } break; } }; } if set.contains(stdin) { match std::io::stdin().read(&mut buf) { Ok(bytes) => { let buf = &buf[..bytes]; child.pty().write_all(buf).unwrap(); } Err(e) => { eprintln!("stdin read failed: {:?}", e); break; } } } } } Err(e) => { println!("select failed: {:?}", e); break; } } } } fn main() { let mut child = std::process::Command::new("sleep") .args(&["500"]) .spawn_pty(Some(&pty_process::Size::new(24, 80))) .unwrap(); run(&child); let status = child.wait().unwrap(); std::process::exit( status .code() .unwrap_or_else(|| status.signal().unwrap_or(0) + 128), ); }