forked from Deuxfleurs/garage
RequestStrategy with possible interruption or not
This commit is contained in:
parent
73574ab43e
commit
37f880bc09
4 changed files with 75 additions and 46 deletions
4
TODO
4
TODO
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@ -12,10 +12,6 @@ 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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RPC client/server: do not go through the serialization+HTTP+TLS+deserialization when doing a request to ourself.
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RPC requests: unify quorum + timeout in a "RequestStrategy" class,
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and add to the request strategy whether or not the request should continue in the background
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once `quorum` valid responses have been received
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Attaining S3 compatibility
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Attaining S3 compatibility
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--------------------------
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--------------------------
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44
src/block.rs
44
src/block.rs
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@ -317,7 +317,7 @@ impl BlockManager {
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e
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e
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)));
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)));
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}
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}
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_ => {
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Ok(_) => {
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return Err(Error::Message(format!(
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return Err(Error::Message(format!(
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"Unexpected response to NeedBlockQuery RPC"
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"Unexpected response to NeedBlockQuery RPC"
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)));
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)));
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@ -327,13 +327,14 @@ impl BlockManager {
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if need_nodes.len() > 0 {
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if need_nodes.len() > 0 {
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let put_block_message = self.read_block(hash).await?;
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let put_block_message = self.read_block(hash).await?;
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let put_responses = self
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self.rpc_client
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.rpc_client
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.try_call_many(
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.call_many(&need_nodes[..], put_block_message, BLOCK_RW_TIMEOUT)
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&need_nodes[..],
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.await;
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put_block_message,
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for resp in put_responses {
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RequestStrategy::with_quorum(need_nodes.len())
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resp?;
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.with_timeout(BLOCK_RW_TIMEOUT),
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}
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)
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.await?;
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}
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}
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}
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}
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fs::remove_file(path).await?;
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fs::remove_file(path).await?;
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@ -354,17 +355,20 @@ impl BlockManager {
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pub async fn rpc_get_block(&self, hash: &Hash) -> Result<Vec<u8>, Error> {
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pub async fn rpc_get_block(&self, hash: &Hash) -> Result<Vec<u8>, Error> {
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let ring = self.system.ring.borrow().clone();
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let ring = self.system.ring.borrow().clone();
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let who = ring.walk_ring(&hash, self.system.config.data_replication_factor);
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let who = ring.walk_ring(&hash, self.system.config.data_replication_factor);
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let msg = Arc::new(Message::GetBlock(*hash));
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let resps = self
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let mut resp_stream = who
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.rpc_client
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.iter()
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.try_call_many(
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.map(|to| self.rpc_client.call(to, msg.clone(), BLOCK_RW_TIMEOUT))
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&who[..],
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.collect::<FuturesUnordered<_>>();
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Message::GetBlock(*hash),
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RequestStrategy::with_quorum(1)
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.with_timeout(BLOCK_RW_TIMEOUT)
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.interrupt_after_quorum(true),
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)
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.await?;
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while let Some(resp) = resp_stream.next().await {
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for resp in resps {
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if let Ok(Message::PutBlock(msg)) = resp {
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if let Message::PutBlock(msg) = resp {
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if data::hash(&msg.data[..]) == *hash {
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return Ok(msg.data);
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return Ok(msg.data);
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}
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}
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}
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}
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}
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Err(Error::Message(format!(
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Err(Error::Message(format!(
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@ -380,8 +384,8 @@ impl BlockManager {
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.try_call_many(
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.try_call_many(
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&who[..],
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&who[..],
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Message::PutBlock(PutBlockMessage { hash, data }),
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Message::PutBlock(PutBlockMessage { hash, data }),
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(self.system.config.data_replication_factor + 1) / 2,
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RequestStrategy::with_quorum((self.system.config.data_replication_factor + 1) / 2)
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BLOCK_RW_TIMEOUT,
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.with_timeout(BLOCK_RW_TIMEOUT),
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)
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)
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.await?;
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.await?;
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Ok(())
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Ok(())
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@ -20,6 +20,33 @@ use crate::rpc_server::RpcMessage;
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use crate::server::TlsConfig;
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use crate::server::TlsConfig;
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use crate::tls_util;
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use crate::tls_util;
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const DEFAULT_TIMEOUT: Duration = Duration::from_secs(10);
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#[derive(Copy, Clone)]
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pub struct RequestStrategy {
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pub rs_timeout: Duration,
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pub rs_quorum: usize,
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pub rs_interrupt_after_quorum: bool,
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}
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impl RequestStrategy {
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pub fn with_quorum(quorum: usize) -> Self {
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RequestStrategy {
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rs_timeout: DEFAULT_TIMEOUT,
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rs_quorum: quorum,
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rs_interrupt_after_quorum: false,
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}
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}
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pub fn with_timeout(mut self, timeout: Duration) -> Self {
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self.rs_timeout = timeout;
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self
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}
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pub fn interrupt_after_quorum(mut self, interrupt: bool) -> Self {
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self.rs_interrupt_after_quorum = interrupt;
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self
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}
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}
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pub struct RpcClient<M: RpcMessage> {
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pub struct RpcClient<M: RpcMessage> {
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status: watch::Receiver<Arc<Status>>,
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status: watch::Receiver<Arc<Status>>,
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background: Arc<BackgroundRunner>,
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background: Arc<BackgroundRunner>,
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@ -83,9 +110,10 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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self: &Arc<Self>,
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self: &Arc<Self>,
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to: &[UUID],
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to: &[UUID],
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msg: M,
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msg: M,
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stop_after: usize,
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strategy: RequestStrategy,
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timeout: Duration,
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) -> Result<Vec<M>, Error> {
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) -> Result<Vec<M>, Error> {
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let timeout = strategy.rs_timeout;
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let msg = Arc::new(msg);
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let msg = Arc::new(msg);
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let mut resp_stream = to
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let mut resp_stream = to
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.to_vec()
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.to_vec()
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@ -104,7 +132,7 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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match resp {
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match resp {
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Ok(msg) => {
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Ok(msg) => {
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results.push(msg);
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results.push(msg);
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if results.len() >= stop_after {
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if results.len() >= strategy.rs_quorum {
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break;
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break;
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}
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}
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}
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}
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@ -114,23 +142,23 @@ impl<M: RpcMessage + 'static> RpcClient<M> {
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}
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}
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}
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}
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if results.len() >= stop_after {
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if results.len() >= strategy.rs_quorum {
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// Continue requests in background
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// Continue requests in background.
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// TODO: make this optionnal (only usefull for write requests)
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// Continue the remaining requests immediately using tokio::spawn
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// Continue the remaining requests immediately using tokio::spawn
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// but enqueue a task in the background runner
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// but enqueue a task in the background runner
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// to ensure that the process won't exit until the requests are done
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// to ensure that the process won't exit until the requests are done
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// (if we had just enqueued the resp_stream.collect directly in the background runner,
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// (if we had just enqueued the resp_stream.collect directly in the background runner,
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// the requests might have been put on hold in the background runner's queue,
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// the requests might have been put on hold in the background runner's queue,
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// in which case they might timeout or otherwise fail)
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// in which case they might timeout or otherwise fail)
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let wait_finished_fut = tokio::spawn(async move {
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if !strategy.rs_interrupt_after_quorum {
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resp_stream.collect::<Vec<_>>().await;
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let wait_finished_fut = tokio::spawn(async move {
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Ok(())
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resp_stream.collect::<Vec<_>>().await;
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});
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Ok(())
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self.clone().background.spawn(wait_finished_fut.map(|x| {
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});
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x.unwrap_or_else(|e| Err(Error::Message(format!("Await failed: {}", e))))
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self.clone().background.spawn(wait_finished_fut.map(|x| {
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}));
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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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Ok(results)
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Ok(results)
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} else {
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} else {
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17
src/table.rs
17
src/table.rs
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@ -179,8 +179,8 @@ where
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.try_call_many(
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.try_call_many(
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&who[..],
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&who[..],
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rpc,
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rpc,
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self.replication.write_quorum(),
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RequestStrategy::with_quorum(self.replication.write_quorum())
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TABLE_RPC_TIMEOUT,
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.with_timeout(TABLE_RPC_TIMEOUT),
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)
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)
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.await?;
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.await?;
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Ok(())
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Ok(())
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@ -237,8 +237,9 @@ where
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.try_call_many(
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.try_call_many(
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&who[..],
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&who[..],
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rpc,
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rpc,
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self.replication.read_quorum(),
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RequestStrategy::with_quorum(self.replication.read_quorum())
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TABLE_RPC_TIMEOUT,
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.with_timeout(TABLE_RPC_TIMEOUT)
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.interrupt_after_quorum(true),
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)
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)
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.await?;
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.await?;
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@ -292,8 +293,9 @@ where
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.try_call_many(
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.try_call_many(
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&who[..],
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&who[..],
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rpc,
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rpc,
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self.replication.read_quorum(),
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RequestStrategy::with_quorum(self.replication.read_quorum())
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TABLE_RPC_TIMEOUT,
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.with_timeout(TABLE_RPC_TIMEOUT)
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.interrupt_after_quorum(true),
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)
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)
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.await?;
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.await?;
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@ -347,8 +349,7 @@ where
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.try_call_many(
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.try_call_many(
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&who[..],
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&who[..],
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TableRPC::<F>::Update(vec![what_enc]),
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TableRPC::<F>::Update(vec![what_enc]),
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who.len(),
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RequestStrategy::with_quorum(who.len()).with_timeout(TABLE_RPC_TIMEOUT),
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TABLE_RPC_TIMEOUT,
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)
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)
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.await?;
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.await?;
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Ok(())
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Ok(())
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