use crate::{
event::{self, api::Subscriber as _, IntoEvent as _},
packet,
path::secret::{self, map, Map},
random::Random,
stream::{
application,
environment::{Environment, Peer},
recv,
send::{self, flow},
server, shared,
},
};
use core::cell::UnsafeCell;
use s2n_quic_core::{
dc, endpoint,
inet::ExplicitCongestionNotification,
time::{Clock as _, Timestamp},
varint::VarInt,
};
use std::{io, sync::Arc};
use tracing::{debug_span, Instrument as _};
use super::environment::{ReadWorkerSocket as _, WriteWorkerSocket as _};
type Result<T = (), E = io::Error> = core::result::Result<T, E>;
pub struct AcceptError<Peer> {
pub secret_control: Vec<u8>,
pub peer: Option<Peer>,
pub error: io::Error,
}
#[inline]
pub fn open_stream<Env, P>(
env: &Env,
entry: map::Peer,
peer: P,
parameter_override: Option<&dyn Fn(dc::ApplicationParams) -> dc::ApplicationParams>,
) -> Result<application::Builder<Env::Subscriber>>
where
Env: Environment,
P: Peer<Env>,
{
let (crypto, mut parameters) = entry.pair(&peer.features());
if let Some(o) = parameter_override {
parameters = o(parameters);
}
let stream_id = packet::stream::Id {
queue_id: VarInt::ZERO,
is_reliable: true,
is_bidirectional: true,
};
let now = env.clock().get_time();
let meta = event::api::ConnectionMeta {
id: 0, timestamp: now.into_event(),
};
let info = event::api::ConnectionInfo {};
let subscriber = env.subscriber().clone();
let subscriber_ctx = subscriber.create_connection_context(&meta, &info);
build_stream(
now,
env,
peer,
stream_id,
crypto,
entry.map(),
parameters,
endpoint::Type::Client,
subscriber,
subscriber_ctx,
)
}
#[inline]
pub fn accept_stream<Env, P>(
now: Timestamp,
env: &Env,
peer: P,
packet: &server::InitialPacket,
map: &Map,
subscriber_ctx: <Env::Subscriber as event::Subscriber>::ConnectionContext,
parameter_override: Option<&dyn Fn(dc::ApplicationParams) -> dc::ApplicationParams>,
) -> Result<application::Builder<Env::Subscriber>, AcceptError<P>>
where
Env: Environment,
P: Peer<Env>,
{
let credentials = &packet.credentials;
let mut secret_control = vec![];
let Some((crypto, mut parameters)) =
map.pair_for_credentials(credentials, &peer.features(), &mut secret_control)
else {
let error = io::Error::new(
io::ErrorKind::NotFound,
format!("missing credentials for client: {credentials:?}"),
);
let error = AcceptError {
secret_control,
peer: Some(peer),
error,
};
return Err(error);
};
if let Some(o) = parameter_override {
parameters = o(parameters);
}
let stream_id = packet::stream::Id {
queue_id: packet.source_queue_id.unwrap_or(VarInt::ZERO),
..packet.stream_id
};
let subscriber = env.subscriber().clone();
let res = build_stream(
now,
env,
peer,
stream_id,
crypto,
map,
parameters,
endpoint::Type::Server,
subscriber,
subscriber_ctx,
);
match res {
Ok(stream) => Ok(stream),
Err(error) => {
let error = AcceptError {
secret_control,
peer: None,
error,
};
Err(error)
}
}
}
#[inline]
fn build_stream<Env, P>(
now: Timestamp,
env: &Env,
peer: P,
stream_id: packet::stream::Id,
crypto: secret::map::Bidirectional,
map: &Map,
parameters: dc::ApplicationParams,
endpoint_type: endpoint::Type,
subscriber: Env::Subscriber,
subscriber_ctx: <Env::Subscriber as event::Subscriber>::ConnectionContext,
) -> Result<application::Builder<Env::Subscriber>>
where
Env: Environment,
P: Peer<Env>,
{
let features = peer.features();
let (sockets, recv_buffer) = peer.setup(env)?;
let source_queue_id = sockets.source_queue_id;
let reader = recv::shared::State::new(
stream_id,
¶meters,
features,
recv_buffer,
endpoint_type,
&now,
);
let writer = {
let worker = sockets
.write_worker
.map(|socket| (send::state::State::new(stream_id, ¶meters), socket));
let (flow_offset, send_quantum, bandwidth) =
if let Some((worker, _socket)) = worker.as_ref() {
let flow_offset = worker.flow_offset();
let send_quantum = worker.send_quantum_packets();
let bandwidth = Some(worker.cca.bandwidth());
(flow_offset, send_quantum, bandwidth)
} else {
debug_assert!(
features.is_flow_controlled(),
"transports without flow control need background workers"
);
let flow_offset = VarInt::MAX;
let send_quantum = 10;
let bandwidth = None;
(flow_offset, send_quantum, bandwidth)
};
let flow = flow::non_blocking::State::new(flow_offset);
let path = send::path::Info {
max_datagram_size: parameters.max_datagram_size(),
send_quantum,
ecn: ExplicitCongestionNotification::Ect0,
next_expected_control_packet: VarInt::ZERO,
};
let state = send::shared::State::new(flow, path, bandwidth);
(state, worker)
};
let common = {
let application = send::application::state::State {
is_reliable: stream_id.is_reliable,
};
let remote_addr = sockets.remote_addr;
let fixed = shared::FixedValues {
remote_ip: UnsafeCell::new(remote_addr.ip()),
application: UnsafeCell::new(application),
credentials: UnsafeCell::new(crypto.credentials),
};
shared::Common {
clock: env.clock().clone(),
gso: env.gso(),
remote_port: remote_addr.port().into(),
remote_queue_id: stream_id.queue_id.as_u64().into(),
local_queue_id: if let Some(id) = source_queue_id {
id.as_u64()
} else {
u64::MAX
}
.into(),
last_peer_activity: Default::default(),
fixed,
closed_halves: 0u8.into(),
subscriber: shared::Subscriber {
subscriber,
context: subscriber_ctx,
},
}
};
let crypto = {
let secret::map::Bidirectional {
application,
control,
credentials: _,
} = crypto;
let control = control.map(|c| (c.sealer, c.opener));
shared::Crypto::new(application.sealer, application.opener, control, map)
};
let shared = Arc::new(shared::Shared {
receiver: reader,
sender: writer.0,
common,
crypto,
});
if let Some(socket) = sockets.read_worker {
let socket = socket.setup();
let shared = shared.clone();
let task = async move {
let mut reader = recv::worker::Worker::new(socket, shared, endpoint_type);
let mut prev_waker: Option<core::task::Waker> = None;
core::future::poll_fn(|cx| {
if prev_waker
.as_ref()
.map_or(true, |prev| !prev.will_wake(cx.waker()))
{
prev_waker = Some(cx.waker().clone());
reader.update_waker(cx);
}
reader.poll(cx)
})
.await;
};
let span = debug_span!("worker::read");
if span.is_disabled() {
env.spawn_reader(task);
} else {
env.spawn_reader(task.instrument(span));
}
}
if let Some((worker, socket)) = writer.1 {
let (socket, recv_buffer) = socket.setup();
let shared = shared.clone();
let task = async move {
let mut writer = send::worker::Worker::new(
socket,
recv_buffer,
Random::default(),
shared,
worker,
endpoint_type,
);
let mut prev_waker: Option<core::task::Waker> = None;
core::future::poll_fn(|cx| {
if prev_waker
.as_ref()
.map_or(true, |prev| !prev.will_wake(cx.waker()))
{
prev_waker = Some(cx.waker().clone());
writer.update_waker(cx);
}
writer.poll(cx)
})
.await;
};
let span = debug_span!("worker::write");
if span.is_disabled() {
env.spawn_writer(task);
} else {
env.spawn_writer(task.instrument(span));
}
}
let read = recv::application::Builder::new(endpoint_type, env.reader_rt());
let write = send::application::Builder::new(env.writer_rt());
let stream = application::Builder {
read,
write,
shared,
sockets: sockets.application,
queue_time: now,
};
Ok(stream)
}