blob: e064478c565565c8a68c2a581f60250edb63124e [file] [log] [blame]
use std::env;
use std::io::{self, Write};
use std::path::Path;
use std::thread;
use ignore::WalkBuilder;
use walkdir::WalkDir;
fn main() {
let mut path = env::args().nth(1).unwrap();
let mut parallel = false;
let mut simple = false;
let (tx, rx) = crossbeam_channel::bounded::<DirEntry>(100);
if path == "parallel" {
path = env::args().nth(2).unwrap();
parallel = true;
} else if path == "walkdir" {
path = env::args().nth(2).unwrap();
simple = true;
}
let stdout_thread = thread::spawn(move || {
let mut stdout = io::BufWriter::new(io::stdout());
for dent in rx {
write_path(&mut stdout, dent.path());
}
});
if parallel {
let walker = WalkBuilder::new(path).threads(6).build_parallel();
walker.run(|| {
let tx = tx.clone();
Box::new(move |result| {
use ignore::WalkState::*;
tx.send(DirEntry::Y(result.unwrap())).unwrap();
Continue
})
});
} else if simple {
let walker = WalkDir::new(path);
for result in walker {
tx.send(DirEntry::X(result.unwrap())).unwrap();
}
} else {
let walker = WalkBuilder::new(path).build();
for result in walker {
tx.send(DirEntry::Y(result.unwrap())).unwrap();
}
}
drop(tx);
stdout_thread.join().unwrap();
}
enum DirEntry {
X(walkdir::DirEntry),
Y(ignore::DirEntry),
}
impl DirEntry {
fn path(&self) -> &Path {
match *self {
DirEntry::X(ref x) => x.path(),
DirEntry::Y(ref y) => y.path(),
}
}
}
#[cfg(unix)]
fn write_path<W: Write>(mut wtr: W, path: &Path) {
use std::os::unix::ffi::OsStrExt;
wtr.write(path.as_os_str().as_bytes()).unwrap();
wtr.write(b"\n").unwrap();
}
#[cfg(not(unix))]
fn write_path<W: Write>(mut wtr: W, path: &Path) {
wtr.write(path.to_string_lossy().as_bytes()).unwrap();
wtr.write(b"\n").unwrap();
}