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use std::cell::RefCell;
use std::hash::Hash;
use futures::{Stream, Poll};
use shared::*;
pub struct OwnerMCS<S: Stream, K, F>(RefCell<Shared<S, K, F>>);
impl<S, K, F> OwnerMCS<S, K, F>
where S: Stream,
K: Copy + Eq + Hash,
F: Fn(&S::Item) -> K
{
pub fn new(stream: S, key_fn: F) -> OwnerMCS<S, K, F> {
OwnerMCS(RefCell::new(Shared::new(stream, key_fn)))
}
pub fn key_handle(&self, key: K) -> KeyHandle<S, K, F> {
KeyHandle::new(self, key)
}
pub fn try_key_handle(&self, key: K) -> Option<KeyHandle<S, K, F>> {
KeyHandle::try_new(self, key)
}
pub fn default_handle(&self) -> DefaultHandle<S, K, F> {
DefaultHandle::new(self)
}
}
pub struct DefaultHandle<'owner, S: 'owner, K: 'owner, F: 'owner>(&'owner OwnerMCS<S, K, F>)
where S: Stream;
impl<'owner, S, K, F> DefaultHandle<'owner, S, K, F>
where S: Stream,
K: Copy + Eq + Hash,
F: Fn(&S::Item) -> K
{
fn new(owner: &'owner OwnerMCS<S, K, F>) -> DefaultHandle<'owner, S, K, F> {
DefaultHandle(owner)
}
pub fn key_handle(&self, key: K) -> KeyHandle<S, K, F> {
KeyHandle::new(self.0, key)
}
pub fn try_key_handle(&self, key: K) -> Option<KeyHandle<S, K, F>> {
KeyHandle::try_new(self.0, key)
}
pub fn default_handle(&self) -> DefaultHandle<S, K, F> {
DefaultHandle::new(self.0)
}
}
impl<'owner, S, K, F> Stream for DefaultHandle<'owner, S, K, F>
where S: Stream,
K: Copy + Eq + Hash,
F: Fn(&S::Item) -> K
{
type Item = S::Item;
type Error = S::Error;
fn poll(&mut self) -> Poll<Option<Self::Item>, Self::Error> {
(self.0).0.borrow_mut().poll_default()
}
}
pub struct KeyHandle<'owner, S: 'owner, K: 'owner, F: 'owner>
where S: Stream,
K: Eq + Hash
{
owner: &'owner OwnerMCS<S, K, F>,
key: K,
}
impl<'owner, S, K, F> KeyHandle<'owner, S, K, F>
where S: Stream,
K: Copy + Eq + Hash,
F: Fn(&S::Item) -> K
{
fn new(owner: &'owner OwnerMCS<S, K, F>, key: K) -> KeyHandle<'owner, S, K, F> {
assert!(owner.0.borrow_mut().register_key(key),
"Tried to register duplicate handles");
KeyHandle { owner, key }
}
fn try_new(owner: &'owner OwnerMCS<S, K, F>, key: K) -> Option<KeyHandle<'owner, S, K, F>> {
if owner.0.borrow_mut().register_key(key) {
Some(KeyHandle { owner, key })
} else {
None
}
}
pub fn handle(&self, key: K) -> KeyHandle<S, K, F> {
KeyHandle::new(self.owner, key)
}
pub fn try_handle(&self, key: K) -> Option<KeyHandle<S, K, F>> {
KeyHandle::try_new(self.owner, key)
}
}
impl<'owner, S, K, F> Drop for KeyHandle<'owner, S, K, F>
where S: Stream,
K: Eq + Hash
{
fn drop(&mut self) {
self.owner.0.borrow_mut().deregister_key(&self.key);
}
}
impl<'owner, S, K, F> Stream for KeyHandle<'owner, S, K, F>
where S: Stream,
K: Copy + Eq + Hash,
F: Fn(&S::Item) -> K
{
type Item = S::Item;
type Error = S::Error;
fn poll(&mut self) -> Poll<Option<Self::Item>, Self::Error> {
self.owner.0.borrow_mut().poll_handle(self.key)
}
}
#[cfg(test)]
mod tests {
use super::*;
use futures::{Future, Stream, Sink};
use futures::stream::iter_ok;
use quickcheck::{QuickCheck, StdGen};
use rand;
use void::Void;
use atm_async_utils::test_channel::*;
use atm_async_utils::test_stream::*;
#[test]
fn test_success() {
let rng = StdGen::new(rand::thread_rng(), 50);
let mut quickcheck = QuickCheck::new().gen(rng).tests(1000);
quickcheck.quickcheck(success as fn(usize) -> bool);
}
fn success(buf_size: usize) -> bool {
let (sender, receiver) = test_channel::<u8, Void, Void>(buf_size + 1);
let owner = OwnerMCS::new(receiver, |x| match x {
y if y % 3 == 0 => 1,
y if y % 5 == 0 => 2,
_ => 0,
});
let default = owner.default_handle();
let s1 = owner.key_handle(1);
let s2 = owner.key_handle(2);
let sending = sender.send_all(iter_ok::<_, Void>(0..20));
let (_, threes, fives, defaults) = sending
.join4(s1.collect(), s2.collect(), default.collect())
.wait()
.unwrap();
return (threes == vec![0, 3, 6, 9, 12, 15, 18]) && (fives == vec![5, 10]) &&
(defaults == vec![1, 2, 4, 7, 8, 11, 13, 14, 16, 17, 19]);
}
#[test]
fn test_error() {
let (sender, receiver) = test_channel::<u8, Void, u8>(8);
let owner = OwnerMCS::new(TestStream::new(receiver,
vec![PollOp::Delegate,
PollOp::Err(13),
PollOp::Delegate,
PollOp::Delegate]),
|x| *x);
let mut r1 = owner.key_handle(1);
let mut r2 = owner.key_handle(2);
let sender = sender.send(1).wait().unwrap();
let sender = sender.send(2).wait().unwrap();
let _ = sender.send(1).wait().unwrap();
assert!(r1.poll().unwrap().is_ready());
assert!(r1.poll().is_err());
assert!(r2.poll().unwrap().is_ready());
assert!(r1.poll().unwrap().is_ready());
}
}