forked from Deuxfleurs/garage
293 lines
7.5 KiB
Rust
293 lines
7.5 KiB
Rust
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use std::collections::HashMap;
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use std::net::SocketAddr;
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use std::pin::Pin;
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use std::sync::atomic::{self, AtomicU32};
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use std::sync::{Arc, Mutex};
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use std::task::Poll;
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use arc_swap::ArcSwapOption;
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use async_trait::async_trait;
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use bytes::Bytes;
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use log::{debug, error, trace};
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use futures::io::AsyncReadExt;
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use futures::Stream;
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use kuska_handshake::async_std::{handshake_client, BoxStream};
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use tokio::net::TcpStream;
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use tokio::select;
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use tokio::sync::{mpsc, oneshot, watch};
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use tokio_util::compat::*;
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#[cfg(feature = "telemetry")]
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use opentelemetry::{
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trace::{FutureExt, Span, SpanKind, TraceContextExt, Tracer},
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Context, KeyValue,
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};
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#[cfg(feature = "telemetry")]
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use opentelemetry_contrib::trace::propagator::binary::*;
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use crate::error::*;
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use crate::message::*;
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use crate::netapp::*;
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use crate::recv::*;
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use crate::send::*;
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use crate::stream::*;
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use crate::util::*;
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pub(crate) struct ClientConn {
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pub(crate) remote_addr: SocketAddr,
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pub(crate) peer_id: NodeID,
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query_send: ArcSwapOption<mpsc::UnboundedSender<SendItem>>,
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next_query_number: AtomicU32,
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inflight: Mutex<HashMap<RequestID, oneshot::Sender<ByteStream>>>,
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}
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impl ClientConn {
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pub(crate) async fn init(
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netapp: Arc<NetApp>,
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socket: TcpStream,
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peer_id: NodeID,
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) -> Result<(), Error> {
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let remote_addr = socket.peer_addr()?;
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let mut socket = socket.compat();
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// Do handshake to authenticate and prove our identity to server
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let handshake = handshake_client(
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&mut socket,
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netapp.netid.clone(),
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netapp.id,
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netapp.privkey.clone(),
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peer_id,
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)
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.await?;
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debug!(
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"Handshake complete (client) with {}@{}",
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hex::encode(peer_id),
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remote_addr
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);
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// Create BoxStream layer that encodes content
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let (read, write) = socket.split();
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let (mut read, write) =
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BoxStream::from_handshake(read, write, handshake, 0x8000).split_read_write();
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// Before doing anything, receive version tag and
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// check they are running the same version as us
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let mut their_version_tag = VersionTag::default();
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read.read_exact(&mut their_version_tag[..]).await?;
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if their_version_tag != netapp.version_tag {
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let msg = format!(
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"different version tags: {} (theirs) vs. {} (ours)",
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hex::encode(their_version_tag),
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hex::encode(netapp.version_tag)
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);
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error!("Cannot connect to {}: {}", hex::encode(&peer_id[..8]), msg);
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return Err(Error::VersionMismatch(msg));
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}
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// Build and launch stuff that manages sending requests client-side
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let (query_send, query_recv) = mpsc::unbounded_channel();
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let (stop_recv_loop, stop_recv_loop_recv) = watch::channel(false);
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let conn = Arc::new(ClientConn {
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remote_addr,
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peer_id,
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next_query_number: AtomicU32::from(RequestID::default()),
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query_send: ArcSwapOption::new(Some(Arc::new(query_send))),
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inflight: Mutex::new(HashMap::new()),
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});
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netapp.connected_as_client(peer_id, conn.clone());
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let debug_name = format!("CLI {}", hex::encode(&peer_id[..8]));
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tokio::spawn(async move {
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let debug_name_2 = debug_name.clone();
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let send_future = tokio::spawn(conn.clone().send_loop(query_recv, write, debug_name_2));
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let conn2 = conn.clone();
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let recv_future = tokio::spawn(async move {
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select! {
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r = conn2.recv_loop(read, debug_name) => r,
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_ = await_exit(stop_recv_loop_recv) => Ok(())
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}
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});
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send_future.await.log_err("ClientConn send_loop");
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// FIXME: should do here: wait for inflight requests to all have their response
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stop_recv_loop
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.send(true)
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.log_err("ClientConn send true to stop_recv_loop");
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recv_future.await.log_err("ClientConn recv_loop");
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// Make sure we don't wait on any more requests that won't
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// have a response
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conn.inflight.lock().unwrap().clear();
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netapp.disconnected_as_client(&peer_id, conn);
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});
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Ok(())
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}
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pub fn close(&self) {
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self.query_send.store(None);
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}
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pub(crate) async fn call<T>(
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self: Arc<Self>,
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req: Req<T>,
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path: &str,
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prio: RequestPriority,
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) -> Result<Resp<T>, Error>
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where
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T: Message,
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{
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let query_send = self.query_send.load_full().ok_or(Error::ConnectionClosed)?;
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let id = self
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.next_query_number
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.fetch_add(1, atomic::Ordering::Relaxed);
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cfg_if::cfg_if! {
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if #[cfg(feature = "telemetry")] {
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let tracer = opentelemetry::global::tracer("netapp");
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let mut span = tracer.span_builder(format!("RPC >> {}", path))
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.with_kind(SpanKind::Client)
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.start(&tracer);
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let propagator = BinaryPropagator::new();
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let telemetry_id: Bytes = propagator.to_bytes(span.span_context()).to_vec().into();
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} else {
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let telemetry_id: Bytes = Bytes::new();
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}
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};
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// Encode request
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let req_enc = req.into_enc(prio, path.as_bytes().to_vec().into(), telemetry_id);
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let req_msg_len = req_enc.msg.len();
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let (req_stream, req_order) = req_enc.encode();
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// Send request through
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let (resp_send, resp_recv) = oneshot::channel();
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let old = self.inflight.lock().unwrap().insert(id, resp_send);
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if let Some(old_ch) = old {
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error!(
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"Too many inflight requests! RequestID collision. Interrupting previous request."
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);
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let _ = old_ch.send(Box::pin(futures::stream::once(async move {
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Err(std::io::Error::new(
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std::io::ErrorKind::Other,
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"RequestID collision, too many inflight requests",
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))
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})));
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}
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debug!(
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"request: query_send {}, path {}, prio {} (serialized message: {} bytes)",
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id, path, prio, req_msg_len
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);
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#[cfg(feature = "telemetry")]
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span.set_attribute(KeyValue::new("len_query_msg", req_msg_len as i64));
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query_send.send(SendItem::Stream(id, prio, req_order, req_stream))?;
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let canceller = CancelOnDrop::new(id, query_send.as_ref().clone());
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cfg_if::cfg_if! {
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if #[cfg(feature = "telemetry")] {
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let stream = resp_recv
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.with_context(Context::current_with_span(span))
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.await?;
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} else {
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let stream = resp_recv.await?;
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}
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}
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let stream = Box::pin(canceller.for_stream(stream));
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let resp_enc = RespEnc::decode(stream).await?;
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debug!("client: got response to request {} (path {})", id, path);
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Resp::from_enc(resp_enc)
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}
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}
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impl SendLoop for ClientConn {}
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#[async_trait]
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impl RecvLoop for ClientConn {
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fn recv_handler(self: &Arc<Self>, id: RequestID, stream: ByteStream) {
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trace!("ClientConn recv_handler {}", id);
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let mut inflight = self.inflight.lock().unwrap();
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if let Some(ch) = inflight.remove(&id) {
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if ch.send(stream).is_err() {
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debug!("Could not send request response, probably because request was interrupted. Dropping response.");
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}
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} else {
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debug!("Got unexpected response to request {}, dropping it", id);
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}
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}
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}
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// ----
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struct CancelOnDrop {
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id: RequestID,
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query_send: mpsc::UnboundedSender<SendItem>,
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}
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impl CancelOnDrop {
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fn new(id: RequestID, query_send: mpsc::UnboundedSender<SendItem>) -> Self {
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Self { id, query_send }
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}
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fn for_stream(self, stream: ByteStream) -> CancelOnDropStream {
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CancelOnDropStream {
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cancel: Some(self),
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stream,
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}
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}
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}
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impl Drop for CancelOnDrop {
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fn drop(&mut self) {
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trace!("cancelling request {}", self.id);
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let _ = self.query_send.send(SendItem::Cancel(self.id));
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}
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}
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#[pin_project::pin_project]
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struct CancelOnDropStream {
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cancel: Option<CancelOnDrop>,
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#[pin]
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stream: ByteStream,
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}
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impl Stream for CancelOnDropStream {
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type Item = Packet;
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fn poll_next(
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self: Pin<&mut Self>,
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cx: &mut std::task::Context<'_>,
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) -> Poll<Option<Self::Item>> {
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let this = self.project();
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let res = this.stream.poll_next(cx);
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if matches!(res, Poll::Ready(None)) {
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if let Some(c) = this.cancel.take() {
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std::mem::forget(c)
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}
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}
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res
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}
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fn size_hint(&self) -> (usize, Option<usize>) {
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self.stream.size_hint()
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}
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}
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