RPC to ourself do not pass through serialization + HTTPS
This commit is contained in:
parent
37f880bc09
commit
2fe82be3bc
8 changed files with 88 additions and 50 deletions
2
TODO
2
TODO
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@ -10,8 +10,6 @@ Improvements
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Membership: keep IP addresses of failed nodes and try to reping them regularly
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RPC client/server: do not go through the serialization+HTTP+TLS+deserialization when doing a request to ourself.
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Attaining S3 compatibility
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--------------------------
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@ -172,7 +172,7 @@ impl AdminRpcHandler {
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if self
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.rpc_client
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.call(
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node,
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*node,
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AdminRPC::LaunchRepair(opt_to_send.clone()),
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ADMIN_RPC_TIMEOUT,
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)
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32
src/block.rs
32
src/block.rs
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@ -96,19 +96,27 @@ impl BlockManager {
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}
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fn register_handler(self: Arc<Self>, rpc_server: &mut RpcServer, path: String) {
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let self2 = self.clone();
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rpc_server.add_handler::<Message, _, _>(path, move |msg, _addr| {
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let self2 = self.clone();
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async move {
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match msg {
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Message::PutBlock(m) => self2.write_block(&m.hash, &m.data).await,
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Message::GetBlock(h) => self2.read_block(&h).await,
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Message::NeedBlockQuery(h) => {
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self2.need_block(&h).await.map(Message::NeedBlockReply)
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}
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_ => Err(Error::BadRequest(format!("Unexpected RPC message"))),
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}
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}
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let self2 = self2.clone();
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async move { self2.handle(&msg).await }
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});
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let self2 = self.clone();
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self.rpc_client
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.set_local_handler(self.system.id, move |msg| {
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let self2 = self2.clone();
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async move { self2.handle(&msg).await }
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});
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}
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async fn handle(self: Arc<Self>, msg: &Message) -> Result<Message, Error> {
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match msg {
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Message::PutBlock(m) => self.write_block(&m.hash, &m.data).await,
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Message::GetBlock(h) => self.read_block(h).await,
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Message::NeedBlockQuery(h) => self.need_block(h).await.map(Message::NeedBlockReply),
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_ => Err(Error::BadRequest(format!("Unexpected RPC message"))),
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}
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}
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pub async fn spawn_background_worker(self: Arc<Self>) {
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@ -299,7 +307,7 @@ impl BlockManager {
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let msg = Arc::new(Message::NeedBlockQuery(*hash));
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let who_needs_fut = who.iter().map(|to| {
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self.rpc_client
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.call(to, msg.clone(), NEED_BLOCK_QUERY_TIMEOUT)
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.call_arc(*to, msg.clone(), NEED_BLOCK_QUERY_TIMEOUT)
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});
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let who_needs = join_all(who_needs_fut).await;
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@ -297,7 +297,7 @@ impl System {
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let (update_ring, ring) = watch::channel(Arc::new(ring));
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let rpc_http_client = Arc::new(
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RpcHttpClient::new(config.max_concurrent_requests, &config.rpc_tls)
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RpcHttpClient::new(config.max_concurrent_rpc_requests, &config.rpc_tls)
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.expect("Could not create RPC client"),
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);
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@ -633,7 +633,7 @@ impl System {
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async move {
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let resp = self
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.rpc_client
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.call(&peer, Message::PullStatus, PING_TIMEOUT)
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.call(peer, Message::PullStatus, PING_TIMEOUT)
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.await;
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if let Ok(Message::AdvertiseNodesUp(nodes)) = resp {
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let _: Result<_, _> = self.handle_advertise_nodes_up(&nodes).await;
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@ -644,7 +644,7 @@ impl System {
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pub async fn pull_config(self: Arc<Self>, peer: UUID) {
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let resp = self
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.rpc_client
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.call(&peer, Message::PullConfig, PING_TIMEOUT)
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.call(peer, Message::PullConfig, PING_TIMEOUT)
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.await;
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if let Ok(Message::AdvertiseConfig(config)) = resp {
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let _: Result<_, _> = self.handle_advertise_config(&config).await;
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@ -1,10 +1,13 @@
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use std::borrow::Borrow;
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use std::marker::PhantomData;
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use std::net::SocketAddr;
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use std::pin::Pin;
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use std::sync::Arc;
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use std::time::Duration;
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use arc_swap::ArcSwapOption;
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use bytes::IntoBuf;
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use futures::future::Future;
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use futures::stream::futures_unordered::FuturesUnordered;
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use futures::stream::StreamExt;
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use futures_util::future::FutureExt;
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@ -47,10 +50,15 @@ impl RequestStrategy {
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}
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}
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pub type LocalHandlerFn<M> =
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Box<dyn Fn(Arc<M>) -> Pin<Box<dyn Future<Output = Result<M, Error>> + Send>> + Send + Sync>;
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pub struct RpcClient<M: RpcMessage> {
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status: watch::Receiver<Arc<Status>>,
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background: Arc<BackgroundRunner>,
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local_handler: ArcSwapOption<(UUID, LocalHandlerFn<M>)>,
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pub rpc_addr_client: RpcAddrClient<M>,
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}
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@ -64,19 +72,38 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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rpc_addr_client: rac,
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background,
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status,
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local_handler: ArcSwapOption::new(None),
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})
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}
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pub fn set_local_handler<F, Fut>(&self, my_id: UUID, handler: F)
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where
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F: Fn(Arc<M>) -> Fut + Send + Sync + 'static,
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Fut: Future<Output = Result<M, Error>> + Send + 'static,
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{
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let handler_arc = Arc::new(handler);
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let handler: LocalHandlerFn<M> = Box::new(move |msg| {
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let handler_arc2 = handler_arc.clone();
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Box::pin(async move { handler_arc2(msg).await })
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});
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self.local_handler.swap(Some(Arc::new((my_id, handler))));
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}
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pub fn by_addr(&self) -> &RpcAddrClient<M> {
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&self.rpc_addr_client
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}
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pub async fn call<MB: Borrow<M>, N: Borrow<UUID>>(
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&self,
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to: N,
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msg: MB,
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timeout: Duration,
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) -> Result<M, Error> {
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pub async fn call(&self, to: UUID, msg: M, timeout: Duration) -> Result<M, Error> {
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self.call_arc(to, Arc::new(msg), timeout).await
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}
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pub async fn call_arc(&self, to: UUID, msg: Arc<M>, timeout: Duration) -> Result<M, Error> {
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if let Some(lh) = self.local_handler.load_full() {
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let (my_id, local_handler) = lh.as_ref();
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if to.borrow() == my_id {
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return local_handler(msg).await;
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}
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}
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let addr = {
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let status = self.status.borrow().clone();
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match status.nodes.get(to.borrow()) {
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@ -96,7 +123,7 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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let msg = Arc::new(msg);
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let mut resp_stream = to
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.iter()
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.map(|to| self.call(to, msg.clone(), timeout))
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.map(|to| self.call_arc(*to, msg.clone(), timeout))
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.collect::<FuturesUnordered<_>>();
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let mut results = vec![];
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@ -121,7 +148,7 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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.map(|to| {
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let self2 = self.clone();
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let msg = msg.clone();
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async move { self2.call(to, msg, timeout).await }
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async move { self2.call_arc(to, msg, timeout).await }
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})
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.collect::<FuturesUnordered<_>>();
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@ -155,7 +182,7 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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resp_stream.collect::<Vec<_>>().await;
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Ok(())
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});
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self.clone().background.spawn(wait_finished_fut.map(|x| {
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self.background.spawn(wait_finished_fut.map(|x| {
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x.unwrap_or_else(|e| Err(Error::Message(format!("Await failed: {}", e))))
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}));
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}
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@ -35,8 +35,8 @@ pub struct Config {
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pub bootstrap_peers: Vec<SocketAddr>,
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#[serde(default = "default_max_concurrent_requests")]
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pub max_concurrent_requests: usize,
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#[serde(default = "default_max_concurrent_rpc_requests")]
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pub max_concurrent_rpc_requests: usize,
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#[serde(default = "default_block_size")]
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pub block_size: usize,
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@ -53,7 +53,7 @@ pub struct Config {
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pub rpc_tls: Option<TlsConfig>,
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}
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fn default_max_concurrent_requests() -> usize {
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fn default_max_concurrent_rpc_requests() -> usize {
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12
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}
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fn default_block_size() -> usize {
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@ -262,7 +262,7 @@ pub async fn run_server(config_file: PathBuf) -> Result<(), Error> {
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info!("Initializing background runner...");
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let (send_cancel, watch_cancel) = watch::channel(false);
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let background = BackgroundRunner::new(8, watch_cancel.clone());
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let background = BackgroundRunner::new(16, watch_cancel.clone());
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let garage = Garage::new(config, id, db, background.clone(), &mut rpc_server).await;
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31
src/table.rs
31
src/table.rs
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@ -204,7 +204,7 @@ where
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let call_futures = call_list.drain().map(|(node, entries)| async move {
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let rpc = TableRPC::<F>::Update(entries);
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let resp = self.rpc_client.call(&node, rpc, TABLE_RPC_TIMEOUT).await?;
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let resp = self.rpc_client.call(node, rpc, TABLE_RPC_TIMEOUT).await?;
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Ok::<_, Error>((node, resp))
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});
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let mut resps = call_futures.collect::<FuturesUnordered<_>>();
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@ -358,20 +358,28 @@ where
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// =============== HANDLERS FOR RPC OPERATIONS (SERVER SIDE) ==============
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fn register_handler(self: Arc<Self>, rpc_server: &mut RpcServer, path: String) {
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let self2 = self.clone();
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rpc_server.add_handler::<TableRPC<F>, _, _>(path, move |msg, _addr| {
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let self2 = self.clone();
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async move { self2.handle(msg).await }
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})
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let self2 = self2.clone();
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async move { self2.handle(&msg).await }
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});
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let self2 = self.clone();
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self.rpc_client
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.set_local_handler(self.system.id, move |msg| {
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let self2 = self2.clone();
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async move { self2.handle(&msg).await }
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});
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}
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async fn handle(self: &Arc<Self>, msg: TableRPC<F>) -> Result<TableRPC<F>, Error> {
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async fn handle(self: &Arc<Self>, msg: &TableRPC<F>) -> Result<TableRPC<F>, Error> {
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match msg {
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TableRPC::ReadEntry(key, sort_key) => {
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let value = self.handle_read_entry(&key, &sort_key)?;
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let value = self.handle_read_entry(key, sort_key)?;
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Ok(TableRPC::ReadEntryResponse(value))
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}
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TableRPC::ReadRange(key, begin_sort_key, filter, limit) => {
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let values = self.handle_read_range(&key, &begin_sort_key, &filter, limit)?;
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let values = self.handle_read_range(key, begin_sort_key, filter, *limit)?;
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Ok(TableRPC::Update(values))
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}
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TableRPC::Update(pairs) => {
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@ -381,7 +389,7 @@ where
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TableRPC::SyncRPC(rpc) => {
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let syncer = self.syncer.load_full().unwrap();
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let response = syncer
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.handle_rpc(&rpc, self.system.background.stop_signal.clone())
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.handle_rpc(rpc, self.system.background.stop_signal.clone())
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.await?;
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Ok(TableRPC::SyncRPC(response))
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}
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@ -433,14 +441,11 @@ where
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Ok(ret)
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}
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pub async fn handle_update(
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self: &Arc<Self>,
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mut entries: Vec<Arc<ByteBuf>>,
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) -> Result<(), Error> {
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pub async fn handle_update(self: &Arc<Self>, entries: &[Arc<ByteBuf>]) -> Result<(), Error> {
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let syncer = self.syncer.load_full().unwrap();
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let mut epidemic_propagate = vec![];
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for update_bytes in entries.drain(..) {
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for update_bytes in entries.iter() {
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let update = rmp_serde::decode::from_read_ref::<_, F::E>(update_bytes.as_slice())?;
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let tree_key = self.tree_key(update.partition_key(), update.sort_key());
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@ -457,8 +457,8 @@ where
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.table
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.rpc_client
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.call(
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&who,
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&TableRPC::<F>::SyncRPC(SyncRPC::GetRootChecksumRange(
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who,
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TableRPC::<F>::SyncRPC(SyncRPC::GetRootChecksumRange(
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partition.begin.clone(),
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partition.end.clone(),
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)),
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@ -496,8 +496,8 @@ where
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.table
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.rpc_client
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.call(
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&who,
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&TableRPC::<F>::SyncRPC(SyncRPC::Checksums(step, retain)),
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who,
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TableRPC::<F>::SyncRPC(SyncRPC::Checksums(step, retain)),
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TABLE_SYNC_RPC_TIMEOUT,
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)
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.await?;
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@ -523,7 +523,7 @@ where
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}
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}
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if retain && diff_items.len() > 0 {
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self.table.handle_update(diff_items).await?;
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self.table.handle_update(&diff_items[..]).await?;
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}
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if items_to_send.len() > 0 {
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self.send_items(who, items_to_send).await?;
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@ -555,7 +555,7 @@ where
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let rpc_resp = self
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.table
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.rpc_client
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.call(&who, &TableRPC::<F>::Update(values), TABLE_SYNC_RPC_TIMEOUT)
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.call(who, TableRPC::<F>::Update(values), TABLE_SYNC_RPC_TIMEOUT)
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.await?;
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if let TableRPC::<F>::Ok = rpc_resp {
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Ok(())
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