289 lines
10 KiB
Rust
289 lines
10 KiB
Rust
use {
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quinn::Endpoint,
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solana_connection_cache::{
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client_connection::ClientConnection,
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connection_cache::{
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BaseClientConnection, ConnectionCache as BackendConnectionCache, ConnectionPool,
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NewConnectionConfig,
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},
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},
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solana_quic_client::{QuicConfig, QuicConnectionManager, QuicPool},
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solana_sdk::{pubkey::Pubkey, signature::Keypair, transport::Result as TransportResult},
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solana_streamer::streamer::StakedNodes,
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solana_udp_client::{UdpConfig, UdpConnectionManager, UdpPool},
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std::{
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error::Error,
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net::{IpAddr, Ipv4Addr, SocketAddr},
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sync::{Arc, RwLock},
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},
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};
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const DEFAULT_CONNECTION_POOL_SIZE: usize = 4;
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const DEFAULT_CONNECTION_CACHE_USE_QUIC: bool = true;
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/// A thin wrapper over connection-cache/ConnectionCache to ease
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/// construction of the ConnectionCache for code dealing both with udp and quic.
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/// For the scenario only using udp or quic, use connection-cache/ConnectionCache directly.
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pub enum ConnectionCache {
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Quic(Arc<BackendConnectionCache<QuicPool, QuicConnectionManager, QuicConfig>>),
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Udp(Arc<BackendConnectionCache<UdpPool, UdpConnectionManager, UdpConfig>>),
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}
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type QuicBaseClientConnection = <QuicPool as ConnectionPool>::BaseClientConnection;
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type UdpBaseClientConnection = <UdpPool as ConnectionPool>::BaseClientConnection;
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pub enum BlockingClientConnection {
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Quic(Arc<<QuicBaseClientConnection as BaseClientConnection>::BlockingClientConnection>),
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Udp(Arc<<UdpBaseClientConnection as BaseClientConnection>::BlockingClientConnection>),
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}
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pub enum NonblockingClientConnection {
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Quic(Arc<<QuicBaseClientConnection as BaseClientConnection>::NonblockingClientConnection>),
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Udp(Arc<<UdpBaseClientConnection as BaseClientConnection>::NonblockingClientConnection>),
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}
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impl ConnectionCache {
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/// Create a quic connection_cache
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pub fn new(connection_pool_size: usize) -> Self {
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Self::new_with_client_options(connection_pool_size, None, None, None)
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}
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/// Create a quic conneciton_cache with more client options
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pub fn new_with_client_options(
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connection_pool_size: usize,
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client_endpoint: Option<Endpoint>,
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cert_info: Option<(&Keypair, IpAddr)>,
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stake_info: Option<(&Arc<RwLock<StakedNodes>>, &Pubkey)>,
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) -> Self {
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// The minimum pool size is 1.
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let connection_pool_size = 1.max(connection_pool_size);
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let mut config = QuicConfig::new().unwrap();
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if let Some(client_endpoint) = client_endpoint {
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config.update_client_endpoint(client_endpoint);
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}
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if let Some(cert_info) = cert_info {
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config
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.update_client_certificate(cert_info.0, cert_info.1)
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.unwrap();
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}
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if let Some(stake_info) = stake_info {
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config.set_staked_nodes(stake_info.0, stake_info.1);
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}
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let connection_manager = QuicConnectionManager::new_with_connection_config(config);
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let cache = BackendConnectionCache::new(connection_manager, connection_pool_size).unwrap();
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Self::Quic(Arc::new(cache))
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}
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#[deprecated(
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since = "1.15.0",
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note = "This method does not do anything. Please use `new_with_client_options` instead to set the client certificate."
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)]
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pub fn update_client_certificate(
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&mut self,
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_keypair: &Keypair,
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_ipaddr: IpAddr,
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) -> Result<(), Box<dyn Error>> {
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Ok(())
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}
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#[deprecated(
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since = "1.15.0",
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note = "This method does not do anything. Please use `new_with_client_options` instead to set staked nodes information."
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)]
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pub fn set_staked_nodes(
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&mut self,
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_staked_nodes: &Arc<RwLock<StakedNodes>>,
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_client_pubkey: &Pubkey,
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) {
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}
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pub fn with_udp(connection_pool_size: usize) -> Self {
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// The minimum pool size is 1.
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let connection_pool_size = 1.max(connection_pool_size);
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let connection_manager = UdpConnectionManager::default();
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let cache = BackendConnectionCache::new(connection_manager, connection_pool_size).unwrap();
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Self::Udp(Arc::new(cache))
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}
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pub fn use_quic(&self) -> bool {
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matches!(self, Self::Quic(_))
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}
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pub fn get_connection(&self, addr: &SocketAddr) -> BlockingClientConnection {
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match self {
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Self::Quic(cache) => BlockingClientConnection::Quic(cache.get_connection(addr)),
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Self::Udp(cache) => BlockingClientConnection::Udp(cache.get_connection(addr)),
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}
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}
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pub fn get_nonblocking_connection(&self, addr: &SocketAddr) -> NonblockingClientConnection {
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match self {
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Self::Quic(cache) => {
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NonblockingClientConnection::Quic(cache.get_nonblocking_connection(addr))
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}
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Self::Udp(cache) => {
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NonblockingClientConnection::Udp(cache.get_nonblocking_connection(addr))
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}
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}
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}
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}
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impl Default for ConnectionCache {
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fn default() -> Self {
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if DEFAULT_CONNECTION_CACHE_USE_QUIC {
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let cert_info = (&Keypair::new(), IpAddr::V4(Ipv4Addr::new(0, 0, 0, 0)));
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ConnectionCache::new_with_client_options(
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DEFAULT_CONNECTION_POOL_SIZE,
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None,
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Some(cert_info),
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None,
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)
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} else {
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ConnectionCache::with_udp(DEFAULT_CONNECTION_POOL_SIZE)
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}
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}
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}
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macro_rules! dispatch {
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($(#[$meta:meta])* $vis:vis fn $name:ident$(<$($t:ident: $cons:ident),*>)?(&self $(, $arg:ident: $ty:ty)*) $(-> $out:ty)?) => {
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#[inline]
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$(#[$meta])*
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$vis fn $name$(<$($t: $cons),*>)?(&self $(, $arg:$ty)*) $(-> $out)? {
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match self {
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Self::Quic(this) => this.$name($($arg, )*),
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Self::Udp(this) => this.$name($($arg, )*),
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}
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}
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};
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($(#[$meta:meta])* $vis:vis fn $name:ident$(<$($t:ident: $cons:ident),*>)?(&mut self $(, $arg:ident: $ty:ty)*) $(-> $out:ty)?) => {
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#[inline]
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$(#[$meta])*
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$vis fn $name$(<$($t: $cons),*>)?(&mut self $(, $arg:$ty)*) $(-> $out)? {
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match self {
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Self::Quic(this) => this.$name($($arg, )*),
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Self::Udp(this) => this.$name($($arg, )*),
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}
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}
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};
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}
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pub(crate) use dispatch;
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impl ClientConnection for BlockingClientConnection {
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dispatch!(fn server_addr(&self) -> &SocketAddr);
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dispatch!(fn send_data(&self, buffer: &[u8]) -> TransportResult<()>);
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dispatch!(fn send_data_async(&self, buffer: Vec<u8>) -> TransportResult<()>);
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dispatch!(fn send_data_batch(&self, buffers: &[Vec<u8>]) -> TransportResult<()>);
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dispatch!(fn send_data_batch_async(&self, buffers: Vec<Vec<u8>>) -> TransportResult<()>);
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}
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#[async_trait::async_trait]
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impl solana_connection_cache::nonblocking::client_connection::ClientConnection
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for NonblockingClientConnection
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{
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dispatch!(fn server_addr(&self) -> &SocketAddr);
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async fn send_data(&self, buffer: &[u8]) -> TransportResult<()> {
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match self {
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Self::Quic(cache) => Ok(cache.send_data(buffer).await?),
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Self::Udp(cache) => Ok(cache.send_data(buffer).await?),
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}
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}
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async fn send_data_batch(&self, buffers: &[Vec<u8>]) -> TransportResult<()> {
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match self {
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Self::Quic(cache) => Ok(cache.send_data_batch(buffers).await?),
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Self::Udp(cache) => Ok(cache.send_data_batch(buffers).await?),
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}
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}
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}
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#[cfg(test)]
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mod tests {
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use {
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super::*,
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crate::connection_cache::ConnectionCache,
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crossbeam_channel::unbounded,
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solana_sdk::{net::DEFAULT_TPU_COALESCE_MS, quic::QUIC_PORT_OFFSET, signature::Keypair},
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solana_streamer::{
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nonblocking::quic::DEFAULT_WAIT_FOR_CHUNK_TIMEOUT_MS, quic::StreamStats,
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streamer::StakedNodes,
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},
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std::{
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net::{IpAddr, Ipv4Addr, SocketAddr, UdpSocket},
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sync::{
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atomic::{AtomicBool, Ordering},
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Arc, RwLock,
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},
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},
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};
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fn server_args() -> (
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UdpSocket,
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Arc<AtomicBool>,
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Keypair,
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IpAddr,
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Arc<StreamStats>,
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) {
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(
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UdpSocket::bind("127.0.0.1:0").unwrap(),
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Arc::new(AtomicBool::new(false)),
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Keypair::new(),
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"127.0.0.1".parse().unwrap(),
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Arc::new(StreamStats::default()),
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)
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}
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#[test]
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fn test_connection_with_specified_client_endpoint() {
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let port = u16::MAX - QUIC_PORT_OFFSET + 1;
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assert!(port.checked_add(QUIC_PORT_OFFSET).is_none());
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// Start a response receiver:
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let (
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response_recv_socket,
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response_recv_exit,
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keypair2,
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response_recv_ip,
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response_recv_stats,
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) = server_args();
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let (sender2, _receiver2) = unbounded();
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let staked_nodes = Arc::new(RwLock::new(StakedNodes::default()));
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let (response_recv_endpoint, response_recv_thread) = solana_streamer::quic::spawn_server(
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response_recv_socket,
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&keypair2,
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response_recv_ip,
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sender2,
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response_recv_exit.clone(),
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1,
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staked_nodes,
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10,
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10,
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response_recv_stats,
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DEFAULT_WAIT_FOR_CHUNK_TIMEOUT_MS,
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DEFAULT_TPU_COALESCE_MS,
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)
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.unwrap();
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let connection_cache =
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ConnectionCache::new_with_client_options(1, Some(response_recv_endpoint), None, None);
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// server port 1:
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let port1 = 9001;
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let addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::LOCALHOST), port1);
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let conn = connection_cache.get_connection(&addr);
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assert_eq!(conn.server_addr().port(), port1 + QUIC_PORT_OFFSET);
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// server port 2:
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let port2 = 9002;
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let addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::LOCALHOST), port2);
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let conn = connection_cache.get_connection(&addr);
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assert_eq!(conn.server_addr().port(), port2 + QUIC_PORT_OFFSET);
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response_recv_exit.store(true, Ordering::Relaxed);
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response_recv_thread.join().unwrap();
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}
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}
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