cleanup and stats accounting organization
This commit is contained in:
parent
311dc908fe
commit
a80178da54
@ -1,3 +1,6 @@
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variables:
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GIT_SUBMODULE_STRATEGY: recursive
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stages:
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- clippy
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- test
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@ -1,3 +1,4 @@
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#![warn(clippy::all)]
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#![cfg_attr(target_arch = "wasm32", no_std)]
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#[macro_use]
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@ -12,7 +12,6 @@ use xx::*;
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////////////////////////////////////////////////////////////////////////////////////////
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const BANDWIDTH_TABLE_SIZE: usize = 10usize;
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const CONNECTION_PROCESSOR_CHANNEL_SIZE: usize = 128usize;
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pub const MAX_MESSAGE_SIZE: usize = MAX_ENVELOPE_SIZE;
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@ -32,14 +31,14 @@ pub enum NetworkClass {
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impl NetworkClass {
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pub fn inbound_capable(&self) -> bool {
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match self {
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matches!(
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self,
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Self::Server
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| Self::Mapped
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| Self::FullNAT
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| Self::AddressRestrictedNAT
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| Self::PortRestrictedNAT => true,
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_ => false,
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}
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| Self::Mapped
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| Self::FullNAT
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| Self::AddressRestrictedNAT
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| Self::PortRestrictedNAT
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)
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}
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}
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@ -59,12 +58,6 @@ pub struct NetworkManagerInner {
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routing_table: Option<RoutingTable>,
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components: Option<NetworkComponents>,
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network_class: Option<NetworkClass>,
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incoming_avg_bandwidth: f32,
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incoming_max_bandwidth: f32,
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incoming_bandwidth_table: Vec<f32>,
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outgoing_avg_bandwidth: f32,
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outgoing_max_bandwidth: f32,
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outgoing_bandwidth_table: Vec<f32>,
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connection_processor_jh: Option<JoinHandle<()>>,
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connection_add_channel_tx: Option<utils::channel::Sender<SystemPinBoxFuture<()>>>,
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}
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@ -79,33 +72,20 @@ pub struct NetworkManager {
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impl NetworkManager {
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fn new_inner() -> NetworkManagerInner {
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let mut inner = NetworkManagerInner {
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NetworkManagerInner {
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routing_table: None,
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components: None,
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network_class: None,
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incoming_avg_bandwidth: 0.0f32,
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incoming_max_bandwidth: 0.0f32,
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incoming_bandwidth_table: Vec::new(),
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outgoing_avg_bandwidth: 0.0f32,
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outgoing_max_bandwidth: 0.0f32,
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outgoing_bandwidth_table: Vec::new(),
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connection_processor_jh: None,
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connection_add_channel_tx: None,
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};
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inner
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.incoming_bandwidth_table
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.resize(BANDWIDTH_TABLE_SIZE, 0.0f32);
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inner
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.outgoing_bandwidth_table
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.resize(BANDWIDTH_TABLE_SIZE, 0.0f32);
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inner
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}
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}
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pub fn new(config: VeilidConfig, table_store: TableStore, crypto: Crypto) -> Self {
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Self {
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config: config.clone(),
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table_store: table_store,
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crypto: crypto,
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table_store,
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crypto,
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inner: Arc::new(Mutex::new(Self::new_inner())),
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}
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}
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@ -1,15 +1,5 @@
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use super::*;
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// Latency entry is per round-trip packet (ping or data)
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// - Size is number of entries
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const ROLLING_LATENCIES_SIZE: usize = 10;
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// Transfers entries are in bytes total for the interval
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// - Size is number of entries
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// - Interval is number of seconds in each entry
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const ROLLING_TRANSFERS_SIZE: usize = 10;
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pub const ROLLING_TRANSFERS_INTERVAL_SECS: u32 = 10;
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// Reliable pings are done with increased spacing between pings
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// - Start secs is the number of seconds between the first two pings
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// - Max secs is the maximum number of seconds between consecutive pings
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@ -42,9 +32,7 @@ pub struct BucketEntry {
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min_max_version: Option<(u8, u8)>,
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last_connection: Option<(ConnectionDescriptor, u64)>,
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dial_info_entries: VecDeque<DialInfoEntry>,
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rolling_latencies: VecDeque<u64>,
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rolling_transfers: VecDeque<(u64, u64)>,
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current_transfer: (u64, u64),
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stats_accounting: StatsAccounting,
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peer_stats: PeerStats,
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}
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@ -55,15 +43,13 @@ impl BucketEntry {
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min_max_version: None,
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last_connection: None,
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dial_info_entries: VecDeque::new(),
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rolling_latencies: VecDeque::new(),
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rolling_transfers: VecDeque::new(),
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current_transfer: (0, 0),
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stats_accounting: StatsAccounting::new(),
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peer_stats: PeerStats {
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time_added: get_timestamp(),
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last_seen: None,
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ping_stats: PingStats::default(),
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latency: None,
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transfer: (TransferStats::default(), TransferStats::default()),
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transfer: TransferStatsDownUp::default(),
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node_info: None,
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},
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}
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@ -213,10 +199,7 @@ impl BucketEntry {
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}
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pub fn last_connection(&self) -> Option<ConnectionDescriptor> {
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match self.last_connection.as_ref() {
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Some(x) => Some(x.0.clone()),
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None => None,
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}
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self.last_connection.as_ref().map(|x| x.0.clone())
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}
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pub fn set_min_max_version(&mut self, min_max_version: (u8, u8)) {
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@ -248,71 +231,13 @@ impl BucketEntry {
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///// stats methods
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// called every ROLLING_TRANSFERS_INTERVAL_SECS seconds
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pub(super) fn roll_transfers(&mut self, last_ts: u64, cur_ts: u64) {
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let dur_ms = (cur_ts - last_ts) / 1000u64;
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while self.rolling_transfers.len() >= ROLLING_TRANSFERS_SIZE {
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self.rolling_transfers.pop_front();
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}
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self.rolling_transfers.push_back(self.current_transfer);
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self.current_transfer = (0, 0);
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let xd = &mut self.peer_stats.transfer.0;
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let xu = &mut self.peer_stats.transfer.1;
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xd.maximum = 0;
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xu.maximum = 0;
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xd.minimum = u64::MAX;
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xu.minimum = u64::MAX;
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xd.average = 0;
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xu.average = 0;
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for (rtd, rtu) in &self.rolling_transfers {
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let bpsd = rtd * 1000u64 / dur_ms;
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let bpsu = rtu * 1000u64 / dur_ms;
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if bpsd > xd.maximum {
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xd.maximum = bpsd;
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}
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if bpsu > xu.maximum {
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xu.maximum = bpsu;
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}
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if bpsd < xd.minimum {
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xd.minimum = bpsd;
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}
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if bpsu < xu.minimum {
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xu.minimum = bpsu;
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}
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xd.average += bpsd;
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xu.average += bpsu;
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}
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let len = self.rolling_transfers.len() as u64;
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xd.average /= len;
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xu.average /= len;
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// total remains unchanged
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self.stats_accounting
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.roll_transfers(last_ts, cur_ts, &mut self.peer_stats.transfer);
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}
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// Called for every round trip packet we receive
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fn record_latency(&mut self, latency: u64) {
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while self.rolling_latencies.len() >= ROLLING_LATENCIES_SIZE {
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self.rolling_latencies.pop_front();
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}
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self.rolling_latencies.push_back(latency);
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let mut ls = LatencyStats {
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fastest: 0,
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average: 0,
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slowest: 0,
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};
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for rl in &self.rolling_latencies {
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if *rl < ls.fastest {
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ls.fastest = *rl;
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}
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if *rl > ls.slowest {
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ls.slowest = *rl;
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}
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ls.average += *rl;
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}
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let len = self.rolling_latencies.len() as u64;
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ls.average /= len;
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self.peer_stats.latency = Some(ls);
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self.peer_stats.latency = Some(self.stats_accounting.record_latency(latency));
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}
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///// state machine handling
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@ -381,23 +306,23 @@ impl BucketEntry {
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}
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////////////////////////////////////////////////////////////////
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/// Called by RPC processor as events happen
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/// Called when rpc processor things happen
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pub fn ping_sent(&mut self, ts: u64, bytes: u64) {
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pub(super) fn ping_sent(&mut self, ts: u64, bytes: u64) {
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self.peer_stats.ping_stats.total_sent += 1;
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self.current_transfer.1 += bytes;
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self.stats_accounting.add_up(bytes);
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self.peer_stats.ping_stats.in_flight += 1;
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self.peer_stats.ping_stats.last_pinged = Some(ts);
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}
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pub fn ping_rcvd(&mut self, ts: u64, bytes: u64) {
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self.current_transfer.0 += bytes;
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pub(super) fn ping_rcvd(&mut self, ts: u64, bytes: u64) {
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self.stats_accounting.add_down(bytes);
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self.touch_last_seen(ts);
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}
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pub fn pong_sent(&mut self, _ts: u64, bytes: u64) {
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self.current_transfer.1 += bytes;
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pub(super) fn pong_sent(&mut self, _ts: u64, bytes: u64) {
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self.stats_accounting.add_up(bytes);
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}
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pub fn pong_rcvd(&mut self, send_ts: u64, recv_ts: u64, bytes: u64) {
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self.current_transfer.0 += bytes;
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pub(super) fn pong_rcvd(&mut self, send_ts: u64, recv_ts: u64, bytes: u64) {
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self.stats_accounting.add_down(bytes);
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self.peer_stats.ping_stats.in_flight -= 1;
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self.peer_stats.ping_stats.total_returned += 1;
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self.peer_stats.ping_stats.consecutive_pongs += 1;
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@ -412,28 +337,28 @@ impl BucketEntry {
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self.record_latency(recv_ts - send_ts);
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self.touch_last_seen(recv_ts);
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}
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pub fn ping_lost(&mut self, _ts: u64) {
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pub(super) fn ping_lost(&mut self, _ts: u64) {
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self.peer_stats.ping_stats.in_flight -= 1;
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self.peer_stats.ping_stats.recent_lost_pings += 1;
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self.peer_stats.ping_stats.consecutive_pongs = 0;
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self.peer_stats.ping_stats.first_consecutive_pong_time = None;
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}
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pub fn question_sent(&mut self, _ts: u64, bytes: u64) {
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self.current_transfer.1 += bytes;
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pub(super) fn question_sent(&mut self, _ts: u64, bytes: u64) {
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self.stats_accounting.add_up(bytes);
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}
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pub fn question_rcvd(&mut self, ts: u64, bytes: u64) {
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self.current_transfer.0 += bytes;
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pub(super) fn question_rcvd(&mut self, ts: u64, bytes: u64) {
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self.stats_accounting.add_down(bytes);
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self.touch_last_seen(ts);
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}
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pub fn answer_sent(&mut self, _ts: u64, bytes: u64) {
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self.current_transfer.1 += bytes;
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pub(super) fn answer_sent(&mut self, _ts: u64, bytes: u64) {
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self.stats_accounting.add_up(bytes);
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}
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pub fn answer_rcvd(&mut self, send_ts: u64, recv_ts: u64, bytes: u64) {
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self.current_transfer.0 += bytes;
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pub(super) fn answer_rcvd(&mut self, send_ts: u64, recv_ts: u64, bytes: u64) {
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self.stats_accounting.add_down(bytes);
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self.record_latency(recv_ts - send_ts);
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self.touch_last_seen(recv_ts);
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}
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pub fn question_lost(&mut self, _ts: u64) {
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pub(super) fn question_lost(&mut self, _ts: u64) {
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self.peer_stats.ping_stats.consecutive_pongs = 0;
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self.peer_stats.ping_stats.first_consecutive_pong_time = None;
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}
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@ -3,12 +3,7 @@ mod bucket_entry;
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mod dial_info_entry;
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mod find_nodes;
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mod node_ref;
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use bucket::*;
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pub use bucket_entry::*;
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pub use dial_info_entry::*;
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pub use find_nodes::*;
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pub use node_ref::*;
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mod stats_accounting;
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use crate::dht::*;
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use crate::intf::*;
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@ -18,7 +13,13 @@ use crate::xx::*;
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use crate::*;
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use alloc::collections::VecDeque;
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use alloc::str::FromStr;
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use bucket::*;
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pub use bucket_entry::*;
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pub use dial_info_entry::*;
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pub use find_nodes::*;
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use futures_util::stream::{FuturesUnordered, StreamExt};
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pub use node_ref::*;
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pub use stats_accounting::*;
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//////////////////////////////////////////////////////////////////////////
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@ -42,16 +43,15 @@ struct RoutingTableInner {
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node_id: DHTKey,
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node_id_secret: DHTKeySecret,
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buckets: Vec<Bucket>,
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//recent_nodes: VecDeque<DHTKey>,
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//closest_reliable_nodes: Vec<DHTKey>,
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//fastest_reliable_nodes: Vec<DHTKey>,
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//closest_nodes: Vec<DHTKey>,
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//fastest_nodes: Vec<DHTKey>,
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local_dial_info: Vec<DialInfoDetail>,
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public_dial_info: Vec<DialInfoDetail>,
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bucket_entry_count: usize,
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// Waiters
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eventual_changed_dial_info: Eventual,
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// Transfer stats for this node
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stats_accounting: StatsAccounting,
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// latency: Option<LatencyStats>,
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transfer_stats: TransferStatsDownUp,
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}
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struct RoutingTableUnlockedInner {
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@ -72,25 +72,22 @@ pub struct RoutingTable {
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impl RoutingTable {
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fn new_inner(network_manager: NetworkManager) -> RoutingTableInner {
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RoutingTableInner {
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network_manager: network_manager,
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network_manager,
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node_id: DHTKey::default(),
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node_id_secret: DHTKeySecret::default(),
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buckets: Vec::new(),
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//recent_nodes: VecDeque::new(),
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//closest_reliable_nodes: Vec::new(),
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//fastest_reliable_nodes: Vec::new(),
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//closest_nodes: Vec::new(),
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//fastest_nodes: Vec::new(),
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local_dial_info: Vec::new(),
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public_dial_info: Vec::new(),
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bucket_entry_count: 0,
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eventual_changed_dial_info: Eventual::new(),
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stats_accounting: StatsAccounting::new(),
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transfer_stats: TransferStatsDownUp::default(),
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}
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}
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fn new_unlocked_inner(config: VeilidConfig) -> RoutingTableUnlockedInner {
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let c = config.get();
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RoutingTableUnlockedInner {
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rolling_transfers_task: TickTask::new(bucket_entry::ROLLING_TRANSFERS_INTERVAL_SECS),
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rolling_transfers_task: TickTask::new(ROLLING_TRANSFERS_INTERVAL_SECS),
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bootstrap_task: TickTask::new(1),
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peer_minimum_refresh_task: TickTask::new_us(c.network.dht.min_peer_refresh_time),
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ping_validator_task: TickTask::new(1),
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@ -155,7 +152,7 @@ impl RoutingTable {
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pub fn has_local_dial_info(&self) -> bool {
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let inner = self.inner.lock();
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inner.local_dial_info.len() > 0
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!inner.local_dial_info.is_empty()
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}
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pub fn local_dial_info(&self) -> Vec<DialInfoDetail> {
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@ -197,14 +194,14 @@ impl RoutingTable {
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}
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pub fn register_local_dial_info(&self, dial_info: DialInfo, origin: DialInfoOrigin) {
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let ts = get_timestamp();
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let timestamp = get_timestamp();
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let mut inner = self.inner.lock();
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inner.local_dial_info.push(DialInfoDetail {
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dial_info: dial_info.clone(),
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origin: origin,
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origin,
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network_class: None,
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timestamp: ts,
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timestamp,
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});
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info!(
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@ -224,7 +221,7 @@ impl RoutingTable {
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pub fn has_public_dial_info(&self) -> bool {
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let inner = self.inner.lock();
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inner.public_dial_info.len() > 0
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!inner.public_dial_info.is_empty()
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}
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pub fn public_dial_info(&self) -> Vec<DialInfoDetail> {
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@ -278,8 +275,8 @@ impl RoutingTable {
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inner.public_dial_info.push(DialInfoDetail {
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dial_info: dial_info.clone(),
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origin: origin,
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network_class: network_class,
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origin,
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network_class,
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timestamp: ts,
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});
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@ -466,10 +463,9 @@ impl RoutingTable {
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let mut inner = self.inner.lock();
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let idx = Self::find_bucket_index(&*inner, node_id);
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let bucket = &mut inner.buckets[idx];
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match bucket.entry_mut(&node_id) {
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None => None,
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Some(e) => Some(NodeRef::new(self.clone(), node_id, e)),
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}
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bucket
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.entry_mut(&node_id)
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.map(|e| NodeRef::new(self.clone(), node_id, e))
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}
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// Shortcut function to add a node to our routing table if it doesn't exist
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@ -629,7 +625,7 @@ impl RoutingTable {
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let node_id = ndis.node_id.key;
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bsmap
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.entry(node_id)
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.or_insert(Vec::new())
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.or_insert_with(Vec::new)
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.push(ndis.dial_info);
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}
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@ -697,7 +693,14 @@ impl RoutingTable {
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||||
|
||||
// Compute transfer statistics to determine how 'fast' a node is
|
||||
async fn rolling_transfers_task_routine(self, last_ts: u64, cur_ts: u64) -> Result<(), String> {
|
||||
let mut inner = self.inner.lock();
|
||||
let inner = &mut *self.inner.lock();
|
||||
|
||||
// Roll our own node's transfers
|
||||
inner
|
||||
.stats_accounting
|
||||
.roll_transfers(last_ts, cur_ts, &mut inner.transfer_stats);
|
||||
|
||||
// Roll all bucket entry transfers
|
||||
for b in &mut inner.buckets {
|
||||
b.roll_transfers(last_ts, cur_ts);
|
||||
}
|
||||
@ -728,4 +731,66 @@ impl RoutingTable {
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
//////////////////////////////////////////////////////////////////////
|
||||
// Stats Accounting
|
||||
|
||||
pub fn ping_sent(&self, node_ref: NodeRef, ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_up(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.ping_sent(ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn ping_rcvd(&self, node_ref: NodeRef, ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_down(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.ping_rcvd(ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn pong_sent(&self, node_ref: NodeRef, ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_up(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.pong_sent(ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn pong_rcvd(&self, node_ref: NodeRef, send_ts: u64, recv_ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_down(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.pong_rcvd(send_ts, recv_ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn ping_lost(&self, node_ref: NodeRef, ts: u64) {
|
||||
node_ref.operate(|e| {
|
||||
e.ping_lost(ts);
|
||||
})
|
||||
}
|
||||
pub fn question_sent(&self, node_ref: NodeRef, ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_up(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.question_sent(ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn question_rcvd(&self, node_ref: NodeRef, ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_down(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.question_rcvd(ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn answer_sent(&self, node_ref: NodeRef, ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_up(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.answer_sent(ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn answer_rcvd(&self, node_ref: NodeRef, send_ts: u64, recv_ts: u64, bytes: u64) {
|
||||
self.inner.lock().stats_accounting.add_down(bytes);
|
||||
node_ref.operate(|e| {
|
||||
e.answer_rcvd(send_ts, recv_ts, bytes);
|
||||
})
|
||||
}
|
||||
pub fn question_lost(&self, node_ref: NodeRef, ts: u64) {
|
||||
node_ref.operate(|e| {
|
||||
e.question_lost(ts);
|
||||
})
|
||||
}
|
||||
}
|
||||
|
104
veilid-core/src/routing_table/stats_accounting.rs
Normal file
104
veilid-core/src/routing_table/stats_accounting.rs
Normal file
@ -0,0 +1,104 @@
|
||||
use crate::xx::*;
|
||||
use crate::*;
|
||||
use alloc::collections::VecDeque;
|
||||
|
||||
// Latency entry is per round-trip packet (ping or data)
|
||||
// - Size is number of entries
|
||||
const ROLLING_LATENCIES_SIZE: usize = 10;
|
||||
|
||||
// Transfers entries are in bytes total for the interval
|
||||
// - Size is number of entries
|
||||
// - Interval is number of seconds in each entry
|
||||
const ROLLING_TRANSFERS_SIZE: usize = 10;
|
||||
pub const ROLLING_TRANSFERS_INTERVAL_SECS: u32 = 10;
|
||||
|
||||
#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
|
||||
pub struct TransferCount {
|
||||
down: u64,
|
||||
up: u64,
|
||||
}
|
||||
|
||||
#[derive(Debug, Clone, Default)]
|
||||
pub struct StatsAccounting {
|
||||
rolling_latencies: VecDeque<u64>,
|
||||
rolling_transfers: VecDeque<TransferCount>,
|
||||
current_transfer: TransferCount,
|
||||
}
|
||||
|
||||
impl StatsAccounting {
|
||||
pub fn new() -> Self {
|
||||
Self {
|
||||
rolling_latencies: VecDeque::new(),
|
||||
rolling_transfers: VecDeque::new(),
|
||||
current_transfer: TransferCount::default(),
|
||||
}
|
||||
}
|
||||
|
||||
pub fn add_down(&mut self, bytes: u64) {
|
||||
self.current_transfer.down += bytes;
|
||||
}
|
||||
|
||||
pub fn add_up(&mut self, bytes: u64) {
|
||||
self.current_transfer.up += bytes;
|
||||
}
|
||||
|
||||
pub fn roll_transfers(
|
||||
&mut self,
|
||||
last_ts: u64,
|
||||
cur_ts: u64,
|
||||
transfer_stats: &mut TransferStatsDownUp,
|
||||
) {
|
||||
let dur_ms = (cur_ts - last_ts) / 1000u64;
|
||||
while self.rolling_transfers.len() >= ROLLING_TRANSFERS_SIZE {
|
||||
self.rolling_transfers.pop_front();
|
||||
}
|
||||
self.rolling_transfers.push_back(self.current_transfer);
|
||||
|
||||
transfer_stats.down.total += self.current_transfer.down;
|
||||
transfer_stats.up.total += self.current_transfer.up;
|
||||
|
||||
self.current_transfer = TransferCount::default();
|
||||
|
||||
transfer_stats.down.maximum = 0;
|
||||
transfer_stats.up.maximum = 0;
|
||||
transfer_stats.down.minimum = u64::MAX;
|
||||
transfer_stats.up.minimum = u64::MAX;
|
||||
transfer_stats.down.average = 0;
|
||||
transfer_stats.up.average = 0;
|
||||
for xfer in &self.rolling_transfers {
|
||||
let bpsd = xfer.down * 1000u64 / dur_ms;
|
||||
let bpsu = xfer.up * 1000u64 / dur_ms;
|
||||
transfer_stats.down.maximum.max_assign(bpsd);
|
||||
transfer_stats.up.maximum.max_assign(bpsu);
|
||||
transfer_stats.down.minimum.min_assign(bpsd);
|
||||
transfer_stats.up.minimum.min_assign(bpsu);
|
||||
transfer_stats.down.average += bpsd;
|
||||
transfer_stats.down.average += bpsu;
|
||||
}
|
||||
let len = self.rolling_transfers.len() as u64;
|
||||
transfer_stats.down.average /= len;
|
||||
transfer_stats.up.average /= len;
|
||||
}
|
||||
|
||||
pub fn record_latency(&mut self, latency: u64) -> veilid_api::LatencyStats {
|
||||
while self.rolling_latencies.len() >= ROLLING_LATENCIES_SIZE {
|
||||
self.rolling_latencies.pop_front();
|
||||
}
|
||||
self.rolling_latencies.push_back(latency);
|
||||
|
||||
let mut ls = LatencyStats {
|
||||
fastest: 0,
|
||||
average: 0,
|
||||
slowest: 0,
|
||||
};
|
||||
for rl in &self.rolling_latencies {
|
||||
ls.fastest.min_assign(*rl);
|
||||
ls.slowest.max_assign(*rl);
|
||||
ls.average += *rl;
|
||||
}
|
||||
let len = self.rolling_latencies.len() as u64;
|
||||
ls.average /= len;
|
||||
|
||||
ls
|
||||
}
|
||||
}
|
@ -575,24 +575,32 @@ impl RPCProcessor {
|
||||
match &out {
|
||||
Err(_) => {
|
||||
self.cancel_op_id_waiter(waitable_reply.op_id);
|
||||
waitable_reply.node_ref.operate(|e| {
|
||||
if waitable_reply.is_ping {
|
||||
e.ping_lost(waitable_reply.send_ts);
|
||||
} else {
|
||||
e.question_lost(waitable_reply.send_ts);
|
||||
}
|
||||
});
|
||||
if waitable_reply.is_ping {
|
||||
self.routing_table()
|
||||
.ping_lost(waitable_reply.node_ref.clone(), waitable_reply.send_ts);
|
||||
} else {
|
||||
self.routing_table()
|
||||
.question_lost(waitable_reply.node_ref.clone(), waitable_reply.send_ts);
|
||||
}
|
||||
}
|
||||
Ok((rpcreader, _)) => {
|
||||
// Reply received
|
||||
let recv_ts = get_timestamp();
|
||||
waitable_reply.node_ref.operate(|e| {
|
||||
if waitable_reply.is_ping {
|
||||
e.pong_rcvd(waitable_reply.send_ts, recv_ts, rpcreader.header.body_len);
|
||||
} else {
|
||||
e.answer_rcvd(waitable_reply.send_ts, recv_ts, rpcreader.header.body_len);
|
||||
}
|
||||
});
|
||||
if waitable_reply.is_ping {
|
||||
self.routing_table().pong_rcvd(
|
||||
waitable_reply.node_ref,
|
||||
waitable_reply.send_ts,
|
||||
recv_ts,
|
||||
rpcreader.header.body_len,
|
||||
)
|
||||
} else {
|
||||
self.routing_table().answer_rcvd(
|
||||
waitable_reply.node_ref,
|
||||
waitable_reply.send_ts,
|
||||
recv_ts,
|
||||
rpcreader.header.body_len,
|
||||
)
|
||||
}
|
||||
}
|
||||
};
|
||||
|
||||
@ -749,13 +757,13 @@ impl RPCProcessor {
|
||||
|
||||
// Successfully sent
|
||||
let send_ts = get_timestamp();
|
||||
node_ref.operate(|e| {
|
||||
if is_ping {
|
||||
e.ping_sent(send_ts, bytes);
|
||||
} else {
|
||||
e.question_sent(send_ts, bytes);
|
||||
}
|
||||
});
|
||||
if is_ping {
|
||||
self.routing_table()
|
||||
.ping_sent(node_ref.clone(), send_ts, bytes);
|
||||
} else {
|
||||
self.routing_table()
|
||||
.question_sent(node_ref.clone(), send_ts, bytes);
|
||||
}
|
||||
|
||||
// Pass back waitable reply completion
|
||||
match eventual {
|
||||
@ -763,13 +771,13 @@ impl RPCProcessor {
|
||||
// if we don't want an answer, don't wait for one
|
||||
Ok(None)
|
||||
}
|
||||
Some(e) => Ok(Some(WaitableReply {
|
||||
op_id: op_id,
|
||||
eventual: e,
|
||||
timeout: timeout,
|
||||
node_ref: node_ref,
|
||||
send_ts: send_ts,
|
||||
is_ping: is_ping,
|
||||
Some(eventual) => Ok(Some(WaitableReply {
|
||||
op_id,
|
||||
eventual,
|
||||
timeout,
|
||||
node_ref,
|
||||
send_ts,
|
||||
is_ping,
|
||||
})),
|
||||
}
|
||||
}
|
||||
@ -916,13 +924,11 @@ impl RPCProcessor {
|
||||
// Reply successfully sent
|
||||
let send_ts = get_timestamp();
|
||||
|
||||
node_ref.operate(|e| {
|
||||
if is_pong {
|
||||
e.pong_sent(send_ts, bytes);
|
||||
} else {
|
||||
e.answer_sent(send_ts, bytes);
|
||||
}
|
||||
});
|
||||
if is_pong {
|
||||
self.routing_table().pong_sent(node_ref, send_ts, bytes);
|
||||
} else {
|
||||
self.routing_table().answer_sent(node_ref, send_ts, bytes);
|
||||
}
|
||||
|
||||
Ok(())
|
||||
}
|
||||
@ -985,16 +991,16 @@ impl RPCProcessor {
|
||||
let will_validate_dial_info = self.will_validate_dial_info();
|
||||
|
||||
NodeInfo {
|
||||
can_route: can_route,
|
||||
will_route: will_route,
|
||||
can_tunnel: can_tunnel,
|
||||
will_tunnel: will_tunnel,
|
||||
can_signal_lease: can_signal_lease,
|
||||
will_signal_lease: will_signal_lease,
|
||||
can_relay_lease: can_relay_lease,
|
||||
will_relay_lease: will_relay_lease,
|
||||
can_validate_dial_info: can_validate_dial_info,
|
||||
will_validate_dial_info: will_validate_dial_info,
|
||||
can_route,
|
||||
will_route,
|
||||
can_tunnel,
|
||||
will_tunnel,
|
||||
can_signal_lease,
|
||||
will_signal_lease,
|
||||
can_relay_lease,
|
||||
will_relay_lease,
|
||||
can_validate_dial_info,
|
||||
will_validate_dial_info,
|
||||
}
|
||||
}
|
||||
|
||||
@ -1007,9 +1013,7 @@ impl RPCProcessor {
|
||||
None => None,
|
||||
Some(c) => c.remote.to_socket_addr().ok(),
|
||||
});
|
||||
SenderInfo {
|
||||
socket_address: socket_address,
|
||||
}
|
||||
SenderInfo { socket_address }
|
||||
}
|
||||
|
||||
async fn process_info_q(&self, rpcreader: RPCMessageReader) -> Result<(), RPCError> {
|
||||
@ -1329,7 +1333,7 @@ impl RPCProcessor {
|
||||
let reader = capnp::message::Reader::new(msg.data, Default::default());
|
||||
let rpcreader = RPCMessageReader {
|
||||
header: msg.header,
|
||||
reader: reader,
|
||||
reader,
|
||||
};
|
||||
|
||||
let (which, is_q) = {
|
||||
@ -1379,13 +1383,17 @@ impl RPCProcessor {
|
||||
.lookup_node_ref(rpcreader.header.envelope.get_sender_id())
|
||||
{
|
||||
if which == 0u32 {
|
||||
sender_nr.operate(|e| {
|
||||
e.ping_rcvd(rpcreader.header.timestamp, rpcreader.header.body_len);
|
||||
});
|
||||
self.routing_table().ping_rcvd(
|
||||
sender_nr,
|
||||
rpcreader.header.timestamp,
|
||||
rpcreader.header.body_len,
|
||||
);
|
||||
} else {
|
||||
sender_nr.operate(|e| {
|
||||
e.question_rcvd(rpcreader.header.timestamp, rpcreader.header.body_len);
|
||||
});
|
||||
self.routing_table().question_rcvd(
|
||||
sender_nr,
|
||||
rpcreader.header.timestamp,
|
||||
rpcreader.header.body_len,
|
||||
);
|
||||
}
|
||||
}
|
||||
};
|
||||
@ -1508,9 +1516,9 @@ impl RPCProcessor {
|
||||
let msg = RPCMessage {
|
||||
header: RPCMessageHeader {
|
||||
timestamp: get_timestamp(),
|
||||
envelope: envelope,
|
||||
envelope,
|
||||
body_len: body.len() as u64,
|
||||
peer_noderef: peer_noderef,
|
||||
peer_noderef,
|
||||
},
|
||||
data: RPCMessageData { contents: body },
|
||||
};
|
||||
@ -1586,9 +1594,9 @@ impl RPCProcessor {
|
||||
|
||||
// Return the answer for anyone who may care
|
||||
let out = InfoAnswer {
|
||||
latency: latency,
|
||||
node_info: node_info,
|
||||
sender_info: sender_info,
|
||||
latency,
|
||||
node_info,
|
||||
sender_info,
|
||||
};
|
||||
|
||||
Ok(out)
|
||||
@ -1713,7 +1721,7 @@ impl RPCProcessor {
|
||||
let peers_reader = find_node_a
|
||||
.get_peers()
|
||||
.map_err(map_error_internal!("Missing peers"))?;
|
||||
let mut peers_vec = Vec::<PeerInfo>::with_capacity(
|
||||
let mut peers = Vec::<PeerInfo>::with_capacity(
|
||||
peers_reader
|
||||
.len()
|
||||
.try_into()
|
||||
@ -1732,13 +1740,10 @@ impl RPCProcessor {
|
||||
}
|
||||
}
|
||||
|
||||
peers_vec.push(peer_info);
|
||||
peers.push(peer_info);
|
||||
}
|
||||
|
||||
let out = FindNodeAnswer {
|
||||
latency: latency,
|
||||
peers: peers_vec,
|
||||
};
|
||||
let out = FindNodeAnswer { latency, peers };
|
||||
|
||||
Ok(out)
|
||||
}
|
||||
|
@ -671,6 +671,12 @@ pub struct LatencyStats {
|
||||
pub slowest: u64, // slowest latency in the ROLLING_LATENCIES_SIZE last latencies
|
||||
}
|
||||
|
||||
#[derive(Clone, Debug, Default)]
|
||||
pub struct TransferStatsDownUp {
|
||||
pub down: TransferStats,
|
||||
pub up: TransferStats,
|
||||
}
|
||||
|
||||
#[derive(Clone, Debug, Default)]
|
||||
pub struct TransferStats {
|
||||
pub total: u64, // total amount transferred ever
|
||||
@ -696,8 +702,8 @@ pub struct PeerStats {
|
||||
pub last_seen: Option<u64>, // when the peer was last seen for any reason
|
||||
pub ping_stats: PingStats, // information about pings
|
||||
pub latency: Option<LatencyStats>, // latencies for communications with the peer
|
||||
pub transfer: (TransferStats, TransferStats), // (download, upload) stats for communications with the peer
|
||||
pub node_info: Option<NodeInfo>, // last known node info
|
||||
pub transfer: TransferStatsDownUp, // Stats for communications with the peer
|
||||
pub node_info: Option<NodeInfo>, // Last known node info
|
||||
}
|
||||
|
||||
cfg_if! {
|
||||
|
@ -99,3 +99,24 @@ where
|
||||
}
|
||||
None
|
||||
}
|
||||
|
||||
pub trait CmpAssign {
|
||||
fn min_assign(&mut self, other: Self);
|
||||
fn max_assign(&mut self, other: Self);
|
||||
}
|
||||
|
||||
impl<T> CmpAssign for T
|
||||
where
|
||||
T: core::cmp::Ord,
|
||||
{
|
||||
fn min_assign(&mut self, other: Self) {
|
||||
if &other < self {
|
||||
*self = other;
|
||||
}
|
||||
}
|
||||
fn max_assign(&mut self, other: Self) {
|
||||
if &other > self {
|
||||
*self = other;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user