core/upgrade/: Add ReadyUpgrade (#2855)

This commit is contained in:
Thomas Eizinger
2022-09-07 17:08:23 +10:00
committed by GitHub
parent 8644c65a22
commit 2eca38cca0
5 changed files with 91 additions and 41 deletions

View File

@ -3,6 +3,9 @@
- Make RSA keypair support optional. To enable RSA support, `rsa` feature should be enabled. - Make RSA keypair support optional. To enable RSA support, `rsa` feature should be enabled.
See [PR 2860]. See [PR 2860].
- Add `ReadyUpgrade`. See [PR 2855].
[PR 2855]: https://github.com/libp2p/rust-libp2p/pull/2855
[PR 2860]: https://github.com/libp2p/rust-libp2p/pull/2860/ [PR 2860]: https://github.com/libp2p/rust-libp2p/pull/2860/
# 0.35.1 # 0.35.1

View File

@ -65,6 +65,7 @@ mod from_fn;
mod map; mod map;
mod optional; mod optional;
mod pending; mod pending;
mod ready;
mod select; mod select;
mod transfer; mod transfer;
@ -79,6 +80,7 @@ pub use self::{
map::{MapInboundUpgrade, MapInboundUpgradeErr, MapOutboundUpgrade, MapOutboundUpgradeErr}, map::{MapInboundUpgrade, MapInboundUpgradeErr, MapOutboundUpgrade, MapOutboundUpgradeErr},
optional::OptionalUpgrade, optional::OptionalUpgrade,
pending::PendingUpgrade, pending::PendingUpgrade,
ready::ReadyUpgrade,
select::SelectUpgrade, select::SelectUpgrade,
transfer::{read_length_prefixed, read_varint, write_length_prefixed, write_varint}, transfer::{read_length_prefixed, read_varint, write_length_prefixed, write_varint},
}; };

75
core/src/upgrade/ready.rs Normal file
View File

@ -0,0 +1,75 @@
// Copyright 2022 Protocol Labs.
// Copyright 2017-2018 Parity Technologies (UK) Ltd.
//
// Permission is hereby granted, free of charge, to any person obtaining a
// copy of this software and associated documentation files (the "Software"),
// to deal in the Software without restriction, including without limitation
// the rights to use, copy, modify, merge, publish, distribute, sublicense,
// and/or sell copies of the Software, and to permit persons to whom the
// Software is furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in
// all copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
// DEALINGS IN THE SOFTWARE.
use crate::upgrade::{InboundUpgrade, OutboundUpgrade, ProtocolName, UpgradeInfo};
use futures::future;
use std::iter;
use void::Void;
/// Implementation of [`UpgradeInfo`], [`InboundUpgrade`] and [`OutboundUpgrade`] that directly yields the substream.
#[derive(Debug, Copy, Clone)]
pub struct ReadyUpgrade<P> {
protocol_name: P,
}
impl<P> ReadyUpgrade<P> {
pub fn new(protocol_name: P) -> Self {
Self { protocol_name }
}
}
impl<P> UpgradeInfo for ReadyUpgrade<P>
where
P: ProtocolName + Clone,
{
type Info = P;
type InfoIter = iter::Once<P>;
fn protocol_info(&self) -> Self::InfoIter {
iter::once(self.protocol_name.clone())
}
}
impl<C, P> InboundUpgrade<C> for ReadyUpgrade<P>
where
P: ProtocolName + Clone,
{
type Output = C;
type Error = Void;
type Future = future::Ready<Result<Self::Output, Self::Error>>;
fn upgrade_inbound(self, stream: C, _: Self::Info) -> Self::Future {
future::ready(Ok(stream))
}
}
impl<C, P> OutboundUpgrade<C> for ReadyUpgrade<P>
where
P: ProtocolName + Clone,
{
type Output = C;
type Error = Void;
type Future = future::Ready<Result<Self::Output, Self::Error>>;
fn upgrade_outbound(self, stream: C, _: Self::Info) -> Self::Future {
future::ready(Ok(stream))
}
}

View File

@ -18,10 +18,11 @@
// FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
// DEALINGS IN THE SOFTWARE. // DEALINGS IN THE SOFTWARE.
use crate::protocol; use crate::{protocol, PROTOCOL_NAME};
use futures::future::BoxFuture; use futures::future::BoxFuture;
use futures::prelude::*; use futures::prelude::*;
use futures_timer::Delay; use futures_timer::Delay;
use libp2p_core::upgrade::ReadyUpgrade;
use libp2p_core::{upgrade::NegotiationError, UpgradeError}; use libp2p_core::{upgrade::NegotiationError, UpgradeError};
use libp2p_swarm::{ use libp2p_swarm::{
ConnectionHandler, ConnectionHandlerEvent, ConnectionHandlerUpgrErr, KeepAlive, ConnectionHandler, ConnectionHandlerEvent, ConnectionHandlerUpgrErr, KeepAlive,
@ -225,13 +226,13 @@ impl ConnectionHandler for Handler {
type InEvent = Void; type InEvent = Void;
type OutEvent = crate::Result; type OutEvent = crate::Result;
type Error = Failure; type Error = Failure;
type InboundProtocol = protocol::Ping; type InboundProtocol = ReadyUpgrade<&'static [u8]>;
type OutboundProtocol = protocol::Ping; type OutboundProtocol = ReadyUpgrade<&'static [u8]>;
type OutboundOpenInfo = (); type OutboundOpenInfo = ();
type InboundOpenInfo = (); type InboundOpenInfo = ();
fn listen_protocol(&self) -> SubstreamProtocol<protocol::Ping, ()> { fn listen_protocol(&self) -> SubstreamProtocol<ReadyUpgrade<&'static [u8]>, ()> {
SubstreamProtocol::new(protocol::Ping, ()) SubstreamProtocol::new(ReadyUpgrade::new(PROTOCOL_NAME), ())
} }
fn inject_fully_negotiated_inbound(&mut self, stream: NegotiatedSubstream, (): ()) { fn inject_fully_negotiated_inbound(&mut self, stream: NegotiatedSubstream, (): ()) {
@ -274,7 +275,8 @@ impl ConnectionHandler for Handler {
fn poll( fn poll(
&mut self, &mut self,
cx: &mut Context<'_>, cx: &mut Context<'_>,
) -> Poll<ConnectionHandlerEvent<protocol::Ping, (), crate::Result, Self::Error>> { ) -> Poll<ConnectionHandlerEvent<ReadyUpgrade<&'static [u8]>, (), crate::Result, Self::Error>>
{
match self.state { match self.state {
State::Inactive { reported: true } => { State::Inactive { reported: true } => {
return Poll::Pending; // nothing to do on this connection return Poll::Pending; // nothing to do on this connection
@ -366,7 +368,7 @@ impl ConnectionHandler for Handler {
} }
None => { None => {
self.outbound = Some(PingState::OpenStream); self.outbound = Some(PingState::OpenStream);
let protocol = SubstreamProtocol::new(protocol::Ping, ()) let protocol = SubstreamProtocol::new(ReadyUpgrade::new(PROTOCOL_NAME), ())
.with_timeout(self.config.timeout); .with_timeout(self.config.timeout);
return Poll::Ready(ConnectionHandlerEvent::OutboundSubstreamRequest { return Poll::Ready(ConnectionHandlerEvent::OutboundSubstreamRequest {
protocol, protocol,

View File

@ -20,13 +20,10 @@
use futures::prelude::*; use futures::prelude::*;
use instant::Instant; use instant::Instant;
use libp2p_core::{InboundUpgrade, OutboundUpgrade, UpgradeInfo};
use libp2p_swarm::NegotiatedSubstream;
use rand::{distributions, prelude::*}; use rand::{distributions, prelude::*};
use std::{io, iter, time::Duration}; use std::{io, time::Duration};
use void::Void;
pub const PROTOCOL_NAME: &[u8; 16] = b"/ipfs/ping/1.0.0"; pub const PROTOCOL_NAME: &[u8] = b"/ipfs/ping/1.0.0";
/// The `Ping` protocol upgrade. /// The `Ping` protocol upgrade.
/// ///
@ -52,35 +49,6 @@ pub struct Ping;
const PING_SIZE: usize = 32; const PING_SIZE: usize = 32;
impl UpgradeInfo for Ping {
type Info = &'static [u8];
type InfoIter = iter::Once<Self::Info>;
fn protocol_info(&self) -> Self::InfoIter {
iter::once(PROTOCOL_NAME)
}
}
impl InboundUpgrade<NegotiatedSubstream> for Ping {
type Output = NegotiatedSubstream;
type Error = Void;
type Future = future::Ready<Result<Self::Output, Self::Error>>;
fn upgrade_inbound(self, stream: NegotiatedSubstream, _: Self::Info) -> Self::Future {
future::ok(stream)
}
}
impl OutboundUpgrade<NegotiatedSubstream> for Ping {
type Output = NegotiatedSubstream;
type Error = Void;
type Future = future::Ready<Result<Self::Output, Self::Error>>;
fn upgrade_outbound(self, stream: NegotiatedSubstream, _: Self::Info) -> Self::Future {
future::ok(stream)
}
}
/// Sends a ping and waits for the pong. /// Sends a ping and waits for the pong.
pub async fn send_ping<S>(mut stream: S) -> io::Result<(S, Duration)> pub async fn send_ping<S>(mut stream: S) -> io::Result<(S, Duration)>
where where