The Connection type is a `Future` that drives all of the IO of the client connection. The Client type is separate, and is used to send requests into the connection.
574 lines
14 KiB
Rust
574 lines
14 KiB
Rust
use {FutureExt, SendFrame};
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use h2::{self, RecvError, SendError};
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use h2::frame::{self, Frame};
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use futures::{Async, Future, Poll, Stream};
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use futures::sync::oneshot;
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use futures::task::{self, Task};
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use tokio_io::{AsyncRead, AsyncWrite};
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use tokio_io::io::read_exact;
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use std::{cmp, fmt, io};
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use std::io::ErrorKind::WouldBlock;
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use std::sync::{Arc, Mutex};
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/// A mock I/O
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#[derive(Debug)]
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pub struct Mock {
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pipe: Pipe,
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}
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#[derive(Debug)]
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pub struct Handle {
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codec: ::Codec<Pipe>,
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}
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#[derive(Debug)]
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pub struct Pipe {
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inner: Arc<Mutex<Inner>>,
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}
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#[derive(Debug)]
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struct Inner {
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rx: Vec<u8>,
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rx_task: Option<Task>,
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tx: Vec<u8>,
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tx_task: Option<Task>,
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closed: bool,
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}
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const PREFACE: &'static [u8] = b"PRI * HTTP/2.0\r\n\r\nSM\r\n\r\n";
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/// Create a new mock and handle
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pub fn new() -> (Mock, Handle) {
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let inner = Arc::new(Mutex::new(Inner {
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rx: vec![],
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rx_task: None,
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tx: vec![],
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tx_task: None,
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closed: false,
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}));
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let mock = Mock {
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pipe: Pipe {
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inner: inner.clone(),
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},
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};
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let handle = Handle {
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codec: h2::Codec::new(Pipe {
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inner,
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}),
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};
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(mock, handle)
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}
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// ===== impl Handle =====
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impl Handle {
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/// Get a mutable reference to inner Codec.
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pub fn codec_mut(&mut self) -> &mut ::Codec<Pipe> {
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&mut self.codec
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}
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/// Send a frame
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pub fn send(&mut self, item: SendFrame) -> Result<(), SendError> {
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// Queue the frame
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self.codec.buffer(item).unwrap();
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// Flush the frame
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assert!(self.codec.flush()?.is_ready());
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Ok(())
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}
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/// Writes the client preface
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pub fn write_preface(&mut self) {
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use std::io::Write;
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// Write the connnection preface
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self.codec.get_mut().write(PREFACE).unwrap();
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}
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/// Read the client preface
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pub fn read_preface(self) -> Box<Future<Item = Self, Error = io::Error>> {
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let buf = vec![0; PREFACE.len()];
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let ret = read_exact(self, buf).and_then(|(me, buf)| {
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assert_eq!(buf, PREFACE);
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Ok(me)
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});
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Box::new(ret)
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}
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/// Perform the H2 handshake
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pub fn assert_client_handshake(
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self,
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) -> Box<Future<Item = (frame::Settings, Self), Error = h2::Error>> {
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self.assert_client_handshake_with_settings(frame::Settings::default())
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}
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/// Perform the H2 handshake
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pub fn assert_client_handshake_with_settings<T>(
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mut self,
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settings: T,
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) -> Box<Future<Item = (frame::Settings, Self), Error = h2::Error>>
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where
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T: Into<frame::Settings>,
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{
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let settings = settings.into();
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// Send a settings frame
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self.send(settings.into()).unwrap();
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let ret = self.read_preface()
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.unwrap()
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.and_then(|me| me.into_future().unwrap())
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.map(|(frame, mut me)| {
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match frame {
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Some(Frame::Settings(settings)) => {
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// Send the ACK
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let ack = frame::Settings::ack();
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// TODO: Don't unwrap?
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me.send(ack.into()).unwrap();
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(settings, me)
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},
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Some(frame) => {
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panic!("unexpected frame; frame={:?}", frame);
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},
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None => {
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panic!("unexpected EOF");
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},
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}
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})
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.then(|res| {
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let (settings, me) = res.unwrap();
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me.into_future()
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.map_err(|_| unimplemented!())
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.map(|(frame, me)| {
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let f = assert_settings!(frame.unwrap());
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// Is ACK
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assert!(f.is_ack());
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(settings, me)
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})
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});
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Box::new(ret)
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}
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/// Perform the H2 handshake
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pub fn assert_server_handshake(
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self,
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) -> Box<Future<Item = (frame::Settings, Self), Error = h2::Error>> {
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self.assert_server_handshake_with_settings(frame::Settings::default())
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}
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/// Perform the H2 handshake
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pub fn assert_server_handshake_with_settings<T>(
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mut self,
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settings: T,
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) -> Box<Future<Item = (frame::Settings, Self), Error = h2::Error>>
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where
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T: Into<frame::Settings>,
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{
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self.write_preface();
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let settings = settings.into();
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self.send(settings.into()).unwrap();
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let ret = self.into_future()
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.unwrap()
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.map(|(frame, mut me)| {
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match frame {
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Some(Frame::Settings(settings)) => {
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// Send the ACK
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let ack = frame::Settings::ack();
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// TODO: Don't unwrap?
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me.send(ack.into()).unwrap();
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(settings, me)
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},
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Some(frame) => {
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panic!("unexpected frame; frame={:?}", frame);
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},
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None => {
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panic!("unexpected EOF");
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},
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}
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})
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.then(|res| {
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let (settings, me) = res.unwrap();
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me.into_future()
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.map_err(|e| panic!("error: {:?}", e))
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.map(|(frame, me)| {
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let f = assert_settings!(frame.unwrap());
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// Is ACK
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assert!(f.is_ack());
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(settings, me)
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})
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});
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Box::new(ret)
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}
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}
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impl Stream for Handle {
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type Item = Frame;
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type Error = RecvError;
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fn poll(&mut self) -> Poll<Option<Self::Item>, RecvError> {
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self.codec.poll()
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}
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}
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impl io::Read for Handle {
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fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
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self.codec.get_mut().read(buf)
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}
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}
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impl AsyncRead for Handle {}
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impl io::Write for Handle {
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fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
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self.codec.get_mut().write(buf)
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}
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fn flush(&mut self) -> io::Result<()> {
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Ok(())
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}
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}
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impl AsyncWrite for Handle {
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fn shutdown(&mut self) -> Poll<(), io::Error> {
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use std::io::Write;
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try_nb!(self.flush());
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Ok(().into())
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}
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}
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impl Drop for Handle {
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fn drop(&mut self) {
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assert!(self.codec.shutdown().unwrap().is_ready());
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let mut me = self.codec.get_mut().inner.lock().unwrap();
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me.closed = true;
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if let Some(task) = me.rx_task.take() {
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task.notify();
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}
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}
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}
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// ===== impl Mock =====
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impl io::Read for Mock {
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fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
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assert!(
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buf.len() > 0,
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"attempted read with zero length buffer... wut?"
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);
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let mut me = self.pipe.inner.lock().unwrap();
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if me.rx.is_empty() {
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if me.closed {
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return Ok(0);
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}
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me.rx_task = Some(task::current());
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return Err(WouldBlock.into());
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}
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let n = cmp::min(buf.len(), me.rx.len());
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buf[..n].copy_from_slice(&me.rx[..n]);
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me.rx.drain(..n);
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Ok(n)
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}
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}
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impl AsyncRead for Mock {}
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impl io::Write for Mock {
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fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
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let mut me = self.pipe.inner.lock().unwrap();
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if me.closed {
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return Err(io::Error::new(io::ErrorKind::BrokenPipe, "mock closed"));
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}
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me.tx.extend(buf);
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if let Some(task) = me.tx_task.take() {
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task.notify();
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}
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Ok(buf.len())
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}
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fn flush(&mut self) -> io::Result<()> {
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Ok(())
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}
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}
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impl AsyncWrite for Mock {
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fn shutdown(&mut self) -> Poll<(), io::Error> {
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use std::io::Write;
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try_nb!(self.flush());
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Ok(().into())
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}
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}
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// ===== impl Pipe =====
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impl io::Read for Pipe {
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fn read(&mut self, buf: &mut [u8]) -> io::Result<usize> {
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assert!(
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buf.len() > 0,
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"attempted read with zero length buffer... wut?"
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);
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let mut me = self.inner.lock().unwrap();
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if me.tx.is_empty() {
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me.tx_task = Some(task::current());
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return Err(WouldBlock.into());
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}
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let n = cmp::min(buf.len(), me.tx.len());
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buf[..n].copy_from_slice(&me.tx[..n]);
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me.tx.drain(..n);
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Ok(n)
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}
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}
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impl AsyncRead for Pipe {}
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impl io::Write for Pipe {
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fn write(&mut self, buf: &[u8]) -> io::Result<usize> {
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let mut me = self.inner.lock().unwrap();
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me.rx.extend(buf);
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if let Some(task) = me.rx_task.take() {
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task.notify();
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}
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Ok(buf.len())
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}
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fn flush(&mut self) -> io::Result<()> {
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Ok(())
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}
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}
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impl AsyncWrite for Pipe {
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fn shutdown(&mut self) -> Poll<(), io::Error> {
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use std::io::Write;
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try_nb!(self.flush());
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Ok(().into())
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}
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}
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pub trait HandleFutureExt {
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fn recv_settings(self) -> RecvFrame<Box<Future<Item = (Option<Frame>, Handle), Error = ()>>>
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where
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Self: Sized + 'static,
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Self: Future<Item = (frame::Settings, Handle)>,
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Self::Error: fmt::Debug,
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{
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let map = self.map(|(settings, handle)| (Some(settings.into()), handle))
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.unwrap();
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let boxed: Box<Future<Item = (Option<Frame>, Handle), Error = ()>> = Box::new(map);
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RecvFrame {
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inner: boxed,
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frame: frame::Settings::default().into(),
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}
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}
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fn ignore_settings(self) -> Box<Future<Item = Handle, Error = ()>>
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where
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Self: Sized + 'static,
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Self: Future<Item = (frame::Settings, Handle)>,
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Self::Error: fmt::Debug,
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{
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Box::new(self.map(|(_settings, handle)| handle).unwrap())
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}
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fn recv_frame<T>(self, frame: T) -> RecvFrame<<Self as IntoRecvFrame>::Future>
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where
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Self: IntoRecvFrame + Sized,
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T: Into<Frame>,
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{
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self.into_recv_frame(frame.into())
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}
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fn send_frame<T>(self, frame: T) -> SendFrameFut<Self>
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where
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Self: Sized,
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T: Into<SendFrame>,
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{
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SendFrameFut {
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inner: self,
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frame: Some(frame.into()),
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}
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}
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fn idle_ms(self, ms: usize) -> Box<Future<Item = Handle, Error = Self::Error>>
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where
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Self: Sized + 'static,
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Self: Future<Item = Handle>,
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Self::Error: fmt::Debug,
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{
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use std::thread;
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use std::time::Duration;
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Box::new(self.and_then(move |handle| {
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// This is terrible... but oh well
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let (tx, rx) = oneshot::channel();
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thread::spawn(move || {
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thread::sleep(Duration::from_millis(ms as u64));
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tx.send(()).unwrap();
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});
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Idle {
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handle: Some(handle),
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timeout: rx,
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}.map_err(|_| unreachable!())
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}))
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}
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fn close(self) -> Box<Future<Item = (), Error = ()>>
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where
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Self: Future<Error = ()> + Sized + 'static,
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{
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Box::new(self.map(drop))
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}
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}
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pub struct RecvFrame<T> {
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inner: T,
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frame: Frame,
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}
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impl<T> Future for RecvFrame<T>
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where
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T: Future<Item = (Option<Frame>, Handle)>,
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T::Error: fmt::Debug,
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{
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type Item = Handle;
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type Error = ();
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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let (frame, handle) = match self.inner.poll().unwrap() {
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Async::Ready((frame, handle)) => (frame, handle),
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Async::NotReady => return Ok(Async::NotReady),
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};
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assert_eq!(frame.unwrap(), self.frame, "recv_frame");
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Ok(Async::Ready(handle))
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}
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}
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pub struct SendFrameFut<T> {
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inner: T,
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frame: Option<SendFrame>,
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}
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impl<T> Future for SendFrameFut<T>
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where
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T: Future<Item = Handle>,
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T::Error: fmt::Debug,
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{
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type Item = Handle;
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type Error = ();
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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let mut handle = match self.inner.poll().unwrap() {
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Async::Ready(handle) => handle,
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Async::NotReady => return Ok(Async::NotReady),
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};
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handle.send(self.frame.take().unwrap()).unwrap();
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Ok(Async::Ready(handle))
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}
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}
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pub struct Idle {
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handle: Option<Handle>,
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timeout: oneshot::Receiver<()>,
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}
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impl Future for Idle {
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type Item = Handle;
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type Error = ();
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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if self.timeout.poll().unwrap().is_ready() {
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return Ok(self.handle.take().unwrap().into());
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}
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match self.handle.as_mut().unwrap().poll() {
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Ok(Async::NotReady) => Ok(Async::NotReady),
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res => {
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panic!("Received unexpected frame on handle; frame={:?}", res);
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},
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}
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}
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}
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|
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impl<T> HandleFutureExt for T
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where
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T: Future + 'static,
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{
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}
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|
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pub trait IntoRecvFrame {
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type Future: Future;
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fn into_recv_frame(self, frame: Frame) -> RecvFrame<Self::Future>;
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}
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impl IntoRecvFrame for Handle {
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type Future = ::futures::stream::StreamFuture<Self>;
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fn into_recv_frame(self, frame: Frame) -> RecvFrame<Self::Future> {
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RecvFrame {
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inner: self.into_future(),
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frame: frame,
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}
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}
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}
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|
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impl<T> IntoRecvFrame for T
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where
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T: Future<Item = Handle> + 'static,
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T::Error: fmt::Debug,
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{
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type Future = Box<Future<Item = (Option<Frame>, Handle), Error = ()>>;
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fn into_recv_frame(self, frame: Frame) -> RecvFrame<Self::Future> {
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let into_fut = Box::new(
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self.unwrap()
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.and_then(|handle| handle.into_future().unwrap()),
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);
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RecvFrame {
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inner: into_fut,
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frame: frame,
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}
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}
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}
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