Files
aho_corasick
ansi_term
arrayvec
atty
backtrace
backtrace_sys
base64
bincode
bitflags
byteorder
bytes
c2_chacha
capnp
capnp_futures
capnp_rpc
cfg_if
chrono
clap
crossbeam_deque
crossbeam_epoch
crossbeam_queue
crossbeam_utils
ctrlc
daemon
failure
failure_derive
flexi_logger
fnv
futures
getrandom
glob
hid_io
api
device
module
protocol
hidapi
install_service
iovec
lazy_static
libc
lock_api
log
memchr
memoffset
mio
mio_uds
nanoid
net2
nix
nodrop
num_cpus
num_integer
num_traits
open
parking_lot
parking_lot_core
pem
ppv_lite86
proc_macro2
quote
rand
rand_chacha
rand_core
rand_hc
rand_isaac
rand_jitter
rand_os
rand_pcg
rand_xorshift
rcgen
regex
regex_syntax
remove_dir_all
ring
rustc_demangle
rustls
scoped_tls
scopeguard
sct
serde
slab
smallvec
spin
stream_cancel
strsim
syn
synstructure
tempfile
textwrap
thread_local
time
tokio
tokio_codec
tokio_core
tokio_current_thread
tokio_executor
tokio_fs
tokio_io
tokio_reactor
tokio_rustls
tokio_sync
tokio_tcp
tokio_threadpool
tokio_timer
tokio_udp
tokio_uds
unicode_width
unicode_xid
untrusted
vec_map
void
webpki
windows_service
x11
xcb
xkbcommon
yasna
  1
  2
  3
  4
  5
  6
  7
  8
  9
 10
 11
 12
 13
 14
 15
 16
 17
 18
 19
 20
 21
 22
 23
 24
 25
 26
 27
 28
 29
 30
 31
 32
 33
 34
 35
 36
 37
 38
 39
 40
 41
 42
 43
 44
 45
 46
 47
 48
 49
 50
 51
 52
 53
 54
 55
 56
 57
 58
 59
 60
 61
 62
 63
 64
 65
 66
 67
 68
 69
 70
 71
 72
 73
 74
 75
 76
 77
 78
 79
 80
 81
 82
 83
 84
 85
 86
 87
 88
 89
 90
 91
 92
 93
 94
 95
 96
 97
 98
 99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
use std::fmt;

use {Async, IntoFuture, Poll};
use stream::{Stream, Fuse, FuturesOrdered};

/// An adaptor for a stream of futures to execute the futures concurrently, if
/// possible.
///
/// This adaptor will buffer up a list of pending futures, and then return their
/// results in the order that they were pulled out of the original stream. This
/// is created by the `Stream::buffered` method.
#[must_use = "streams do nothing unless polled"]
pub struct Buffered<S>
    where S: Stream,
          S::Item: IntoFuture,
{
    stream: Fuse<S>,
    queue: FuturesOrdered<<S::Item as IntoFuture>::Future>,
    max: usize,
}

impl<S> fmt::Debug for Buffered<S>
    where S: Stream + fmt::Debug,
          S::Item: IntoFuture,
          <<S as Stream>::Item as IntoFuture>::Future: fmt::Debug,
          <<S as Stream>::Item as IntoFuture>::Item: fmt::Debug,
          <<S as Stream>::Item as IntoFuture>::Error: fmt::Debug,
{
    fn fmt(&self, fmt: &mut fmt::Formatter) -> fmt::Result {
        fmt.debug_struct("Buffered")
            .field("stream", &self.stream)
            .field("queue", &self.queue)
            .field("max", &self.max)
            .finish()
    }
}

pub fn new<S>(s: S, amt: usize) -> Buffered<S>
    where S: Stream,
          S::Item: IntoFuture<Error=<S as Stream>::Error>,
{
    Buffered {
        stream: super::fuse::new(s),
        queue: FuturesOrdered::new(),
        max: amt,
    }
}

impl<S> Buffered<S>
    where S: Stream,
          S::Item: IntoFuture<Error=<S as Stream>::Error>,
{
    /// Acquires a reference to the underlying stream that this combinator is
    /// pulling from.
    pub fn get_ref(&self) -> &S {
        self.stream.get_ref()
    }

    /// Acquires a mutable reference to the underlying stream that this
    /// combinator is pulling from.
    ///
    /// Note that care must be taken to avoid tampering with the state of the
    /// stream which may otherwise confuse this combinator.
    pub fn get_mut(&mut self) -> &mut S {
        self.stream.get_mut()
    }

    /// Consumes this combinator, returning the underlying stream.
    ///
    /// Note that this may discard intermediate state of this combinator, so
    /// care should be taken to avoid losing resources when this is called.
    pub fn into_inner(self) -> S {
        self.stream.into_inner()
    }
}

// Forwarding impl of Sink from the underlying stream
impl<S> ::sink::Sink for Buffered<S>
    where S: ::sink::Sink + Stream,
          S::Item: IntoFuture,
{
    type SinkItem = S::SinkItem;
    type SinkError = S::SinkError;

    fn start_send(&mut self, item: S::SinkItem) -> ::StartSend<S::SinkItem, S::SinkError> {
        self.stream.start_send(item)
    }

    fn poll_complete(&mut self) -> Poll<(), S::SinkError> {
        self.stream.poll_complete()
    }

    fn close(&mut self) -> Poll<(), S::SinkError> {
        self.stream.close()
    }
}

impl<S> Stream for Buffered<S>
    where S: Stream,
          S::Item: IntoFuture<Error=<S as Stream>::Error>,
{
    type Item = <S::Item as IntoFuture>::Item;
    type Error = <S as Stream>::Error;

    fn poll(&mut self) -> Poll<Option<Self::Item>, Self::Error> {
        // First up, try to spawn off as many futures as possible by filling up
        // our slab of futures.
        while self.queue.len() < self.max {
            let future = match self.stream.poll()? {
                Async::Ready(Some(s)) => s.into_future(),
                Async::Ready(None) |
                Async::NotReady => break,
            };

            self.queue.push(future);
        }

        // Try polling a new future
        if let Some(val) = try_ready!(self.queue.poll()) {
            return Ok(Async::Ready(Some(val)));
        }

        // If we've gotten this far, then there are no events for us to process
        // and nothing was ready, so figure out if we're not done yet  or if
        // we've reached the end.
        if self.stream.is_done() {
            Ok(Async::Ready(None))
        } else {
            Ok(Async::NotReady)
        }
    }
}