syndicate-rs/syndicate-server/src/services/tcp_relay_listener.rs

110 lines
4.4 KiB
Rust

use preserves_schema::Codec;
use std::convert::TryFrom;
use std::sync::Arc;
use syndicate::actor::*;
use syndicate::enclose;
use syndicate::preserves::rec;
use syndicate::preserves::value::NestedValue;
use syndicate::supervise::{Supervisor, SupervisorConfiguration};
use syndicate::trace;
use tokio::net::TcpListener;
use crate::language::language;
use crate::lifecycle;
use crate::protocol::detect_protocol;
use crate::schemas::internal_services::{TcpWithHttp, TcpWithoutHttp, TcpRelayListener};
use syndicate_macros::during;
pub fn on_demand(t: &mut Activation, ds: Arc<Cap>) {
t.spawn(Some(AnyValue::symbol("tcp_relay_listener")), move |t| {
enclose!((ds) during!(t, ds, language(), <run-service $spec: TcpWithHttp::<AnyValue>>, |t: &mut Activation| {
spec.httpd.assert(t, language(), &syndicate::schemas::http::HttpListener { port: spec.addr.port.clone() });
run_supervisor(t, ds.clone(), TcpRelayListener::TcpWithHttp(Box::new(spec)))
}));
enclose!((ds) during!(t, ds, language(), <run-service $spec: TcpWithoutHttp::<AnyValue>>, |t| {
run_supervisor(t, ds.clone(), TcpRelayListener::TcpWithoutHttp(Box::new(spec)))
}));
Ok(())
});
}
fn run_supervisor(t: &mut Activation, ds: Arc<Cap>, spec: TcpRelayListener) -> ActorResult {
Supervisor::start(
t,
Some(rec![AnyValue::symbol("relay"), language().unparse(&spec)]),
SupervisorConfiguration::default(),
enclose!((ds, spec) lifecycle::updater(ds, spec)),
enclose!((ds) move |t| enclose!((ds, spec) run(t, ds, spec))))
}
fn run(t: &mut Activation, ds: Arc<Cap>, spec: TcpRelayListener) -> ActorResult {
lifecycle::terminate_on_service_restart(t, &ds, &spec);
let (addr, gatekeeper, httpd) = match spec.clone() {
TcpRelayListener::TcpWithHttp(b) => {
let TcpWithHttp { addr, gatekeeper, httpd } = *b;
(addr, gatekeeper, Some(httpd))
}
TcpRelayListener::TcpWithoutHttp(b) => {
let TcpWithoutHttp { addr, gatekeeper } = *b;
(addr, gatekeeper, None)
}
};
let host = addr.host.clone();
let port = u16::try_from(&addr.port).map_err(|_| "Invalid TCP port number")?;
let facet = t.facet.clone();
let trace_collector = t.trace_collector();
t.linked_task(Some(AnyValue::symbol("listener")), async move {
let listen_addr = format!("{}:{}", host, port);
let listener = TcpListener::bind(listen_addr).await?;
{
let cause = trace_collector.as_ref().map(|_| trace::TurnCause::external("readiness"));
let account = Account::new(Some(AnyValue::symbol("readiness")), trace_collector.clone());
if !facet.activate(
&account, cause, |t| {
tracing::info!("listening");
ds.assert(t, language(), &lifecycle::ready(&spec));
Ok(())
})
{
return Ok(LinkedTaskTermination::Normal);
}
}
loop {
let (stream, addr) = listener.accept().await?;
let gatekeeper = gatekeeper.clone();
let name = Some(rec![AnyValue::symbol("tcp"), AnyValue::new(format!("{}", &addr))]);
let cause = trace_collector.as_ref().map(|_| trace::TurnCause::external("connect"));
let account = Account::new(name.clone(), trace_collector.clone());
if !facet.activate(
&account, cause, enclose!((trace_collector, httpd) move |t| {
t.spawn(name, move |t| {
Ok(t.linked_task(None, {
let facet = t.facet.clone();
async move {
detect_protocol(trace_collector,
facet,
stream,
gatekeeper,
httpd.map(|r| r.clone()),
addr,
port).await?;
Ok(LinkedTaskTermination::KeepFacet)
}
}))
});
Ok(())
}))
{
return Ok(LinkedTaskTermination::Normal);
}
}
});
Ok(())
}