1use std::{
9 collections::{HashMap, VecDeque, hash_map},
10 convert::TryFrom,
11 fmt, mem,
12 net::{IpAddr, SocketAddr},
13 ops::{Index, IndexMut},
14 sync::Arc,
15};
16
17use indexmap::IndexMap;
18
19use bytes::{BufMut, Bytes, BytesMut};
20use rand::{Rng, RngCore, SeedableRng, rngs::StdRng};
21use rustc_hash::FxHashMap;
22use rustls;
23use slab::Slab;
24use thiserror::Error;
25use tracing::{debug, error, trace, warn};
26
27use crate::{
28 Duration, INITIAL_MTU, Instant, MAX_CID_SIZE, MIN_INITIAL_SIZE, RESET_TOKEN_SIZE, ResetToken,
29 Side, Transmit, TransportConfig, TransportError,
30 cid_generator::ConnectionIdGenerator,
31 coding::BufMutExt,
32 config::{ClientConfig, EndpointConfig, ServerConfig},
33 connection::{Connection, ConnectionError, SideArgs},
34 crypto::{self, Keys, UnsupportedVersion},
35 frame,
36 nat_traversal_api::PeerId,
37 packet::{
38 FixedLengthConnectionIdParser, Header, InitialHeader, InitialPacket, PacketDecodeError,
39 PacketNumber, PartialDecode, ProtectedInitialHeader,
40 },
41 relay::RelayStatisticsCollector,
42 shared::{
43 ConnectionEvent, ConnectionEventInner, ConnectionId, DatagramConnectionEvent, EcnCodepoint,
44 EndpointEvent, EndpointEventInner, IssuedCid,
45 },
46 token::{IncomingToken, InvalidRetryTokenError, Token, TokenPayload},
47 transport_parameters::{PreferredAddress, TransportParameters},
48};
49
50#[derive(Debug, Clone)]
52struct RelayQueueItem {
53 target_peer_id: PeerId,
55 frame: frame::PunchMeNow,
57 created_at: Instant,
59 attempts: u32,
61 last_attempt: Option<Instant>,
63}
64
65#[derive(Debug)]
67struct RelayQueue {
68 pending: IndexMap<u64, RelayQueueItem>,
70 next_seq: u64,
72 max_queue_size: usize,
74 request_timeout: Duration,
76 max_retries: u32,
78 retry_interval: Duration,
80 rate_limiter: HashMap<PeerId, VecDeque<Instant>>,
82 max_relays_per_peer: usize,
84 rate_limit_window: Duration,
86}
87
88#[derive(Debug, Default, Clone)]
90pub struct AddressDiscoveryStats {
91 pub frames_sent: u64,
93 pub frames_received: u64,
95 pub addresses_discovered: u64,
97 pub address_changes_detected: u64,
99}
100
101#[derive(Debug, Default, Clone)]
103pub struct RelayStats {
104 pub requests_received: u64,
106 pub requests_relayed: u64,
108 pub requests_failed: u64,
110 pub requests_dropped: u64,
112 pub requests_timed_out: u64,
114 pub requests_rate_limited: u64,
116 pub current_queue_size: usize,
118}
119
120impl RelayQueue {
121 fn new() -> Self {
123 Self {
124 pending: IndexMap::new(),
125 next_seq: 0,
126 max_queue_size: 1000, request_timeout: Duration::from_secs(30), max_retries: 3,
129 retry_interval: Duration::from_millis(500), rate_limiter: HashMap::new(),
131 max_relays_per_peer: 10, rate_limit_window: Duration::from_secs(60), }
134 }
135
136 fn enqueue(&mut self, target_peer_id: PeerId, frame: frame::PunchMeNow, now: Instant) -> bool {
138 if self.pending.len() >= self.max_queue_size {
140 warn!(
141 "Relay queue full, dropping request for peer {:?}",
142 target_peer_id
143 );
144 return false;
145 }
146
147 if !self.check_rate_limit(target_peer_id, now) {
149 warn!(
150 "Rate limit exceeded for peer {:?}, dropping relay request",
151 target_peer_id
152 );
153 return false;
154 }
155
156 let item = RelayQueueItem {
157 target_peer_id,
158 frame,
159 created_at: now,
160 attempts: 0,
161 last_attempt: None,
162 };
163
164 let seq = self.next_seq;
165 self.next_seq += 1;
166 self.pending.insert(seq, item);
167
168 self.record_relay_request(target_peer_id, now);
170
171 trace!(
172 "Queued relay request for peer {:?}, queue size: {}",
173 target_peer_id,
174 self.pending.len()
175 );
176 true
177 }
178
179 fn check_rate_limit(&mut self, peer_id: PeerId, now: Instant) -> bool {
181 self.cleanup_rate_limiter(now);
183
184 if let Some(requests) = self.rate_limiter.get(&peer_id) {
186 requests.len() < self.max_relays_per_peer
187 } else {
188 true }
190 }
191
192 fn record_relay_request(&mut self, peer_id: PeerId, now: Instant) {
194 self.rate_limiter.entry(peer_id).or_default().push_back(now);
195 }
196
197 fn cleanup_rate_limiter(&mut self, now: Instant) {
199 self.rate_limiter.retain(|_, requests| {
200 requests.retain(|&request_time| {
201 now.saturating_duration_since(request_time) <= self.rate_limit_window
202 });
203 !requests.is_empty()
204 });
205 }
206
207 fn next_ready(&mut self, now: Instant) -> Option<RelayQueueItem> {
209 let mut expired_keys = Vec::new();
211 let mut ready_key = None;
212
213 for (seq, item) in &self.pending {
214 if now.saturating_duration_since(item.created_at) > self.request_timeout {
216 expired_keys.push(*seq);
217 continue;
218 }
219
220 if item.attempts == 0
222 || item
223 .last_attempt
224 .is_none_or(|last| now.saturating_duration_since(last) >= self.retry_interval)
225 {
226 ready_key = Some(*seq);
227 break;
228 }
229 }
230
231 for key in expired_keys {
233 if let Some(expired) = self.pending.shift_remove(&key) {
234 debug!(
235 "Relay request for peer {:?} timed out after {:?}",
236 expired.target_peer_id,
237 now.saturating_duration_since(expired.created_at)
238 );
239 }
240 }
241
242 if let Some(key) = ready_key {
244 if let Some(mut item) = self.pending.shift_remove(&key) {
245 item.attempts += 1;
246 item.last_attempt = Some(now);
247 return Some(item);
248 }
249 }
250
251 None
252 }
253
254 fn requeue_failed(&mut self, item: RelayQueueItem) {
256 if item.attempts < self.max_retries {
257 trace!(
258 "Requeuing failed relay request for peer {:?}, attempt {}/{}",
259 item.target_peer_id, item.attempts, self.max_retries
260 );
261 let seq = self.next_seq;
262 self.next_seq += 1;
263 self.pending.insert(seq, item);
264 } else {
265 debug!(
266 "Dropping relay request for peer {:?} after {} failed attempts",
267 item.target_peer_id, item.attempts
268 );
269 }
270 }
271
272 fn cleanup_expired(&mut self, now: Instant) -> usize {
274 let initial_len = self.pending.len();
275
276 let expired_keys: Vec<u64> = self
278 .pending
279 .iter()
280 .filter_map(|(seq, item)| {
281 if now.saturating_duration_since(item.created_at) > self.request_timeout {
282 Some(*seq)
283 } else {
284 None
285 }
286 })
287 .collect();
288
289 for key in expired_keys {
291 if let Some(expired) = self.pending.shift_remove(&key) {
292 debug!(
293 "Removing expired relay request for peer {:?}",
294 expired.target_peer_id
295 );
296 }
297 }
298
299 initial_len - self.pending.len()
300 }
301
302 fn len(&self) -> usize {
304 self.pending.len()
305 }
306}
307
308pub struct Endpoint {
313 rng: StdRng,
314 index: ConnectionIndex,
315 connections: Slab<ConnectionMeta>,
316 local_cid_generator: Box<dyn ConnectionIdGenerator>,
317 config: Arc<EndpointConfig>,
318 server_config: Option<Arc<ServerConfig>>,
319 allow_mtud: bool,
321 last_stateless_reset: Option<Instant>,
323 incoming_buffers: Slab<IncomingBuffer>,
325 all_incoming_buffers_total_bytes: u64,
326 peer_connections: HashMap<PeerId, ConnectionHandle>,
328 relay_queue: RelayQueue,
330 relay_stats: RelayStats,
332 relay_stats_collector: RelayStatisticsCollector,
334 address_discovery_enabled: bool,
336 address_change_callback: Option<Box<dyn Fn(Option<SocketAddr>, SocketAddr) + Send + Sync>>,
338}
339
340impl Endpoint {
341 pub fn new(
352 config: Arc<EndpointConfig>,
353 server_config: Option<Arc<ServerConfig>>,
354 allow_mtud: bool,
355 rng_seed: Option<[u8; 32]>,
356 ) -> Self {
357 let rng_seed = rng_seed.or(config.rng_seed);
358 Self {
359 rng: rng_seed.map_or(StdRng::from_entropy(), StdRng::from_seed),
360 index: ConnectionIndex::default(),
361 connections: Slab::new(),
362 local_cid_generator: (config.connection_id_generator_factory.as_ref())(),
363 config,
364 server_config,
365 allow_mtud,
366 last_stateless_reset: None,
367 incoming_buffers: Slab::new(),
368 all_incoming_buffers_total_bytes: 0,
369 peer_connections: HashMap::new(),
370 relay_queue: RelayQueue::new(),
371 relay_stats: RelayStats::default(),
372 relay_stats_collector: RelayStatisticsCollector::new(),
373 address_discovery_enabled: true, address_change_callback: None,
375 }
376 }
377
378 pub fn set_server_config(&mut self, server_config: Option<Arc<ServerConfig>>) {
380 self.server_config = server_config;
381 }
382
383 pub fn register_peer(&mut self, peer_id: PeerId, connection_handle: ConnectionHandle) {
385 self.peer_connections.insert(peer_id, connection_handle);
386 trace!(
387 "Registered peer {:?} with connection {:?}",
388 peer_id, connection_handle
389 );
390 }
391
392 pub fn unregister_peer(&mut self, peer_id: &PeerId) {
394 if let Some(handle) = self.peer_connections.remove(peer_id) {
395 trace!(
396 "Unregistered peer {:?} from connection {:?}",
397 peer_id, handle
398 );
399 }
400 }
401
402 pub fn lookup_peer_connection(&self, peer_id: &PeerId) -> Option<ConnectionHandle> {
404 self.peer_connections.get(peer_id).copied()
405 }
406
407 pub(crate) fn queue_frame_for_peer(
409 &mut self,
410 peer_id: &PeerId,
411 frame: frame::PunchMeNow,
412 ) -> bool {
413 self.relay_stats.requests_received += 1;
414
415 if let Some(ch) = self.lookup_peer_connection(peer_id) {
416 if self.relay_frame_to_connection(ch, frame.clone()) {
418 self.relay_stats.requests_relayed += 1;
419 self.relay_stats_collector.record_rate_limit(true);
421 trace!(
422 "Immediately relayed frame to peer {:?} via connection {:?}",
423 peer_id, ch
424 );
425 return true;
426 }
427 }
428
429 let now = Instant::now();
431 if self.relay_queue.enqueue(*peer_id, frame, now) {
432 self.relay_stats.current_queue_size = self.relay_queue.len();
433 self.relay_stats_collector.record_rate_limit(true);
435 trace!("Queued relay request for peer {:?}", peer_id);
436 true
437 } else {
438 if !self.relay_queue.check_rate_limit(*peer_id, now) {
440 self.relay_stats.requests_rate_limited += 1;
441 self.relay_stats_collector.record_rate_limit(false);
443 self.relay_stats_collector.record_error("rate_limited");
445 } else {
446 self.relay_stats.requests_dropped += 1;
447 self.relay_stats_collector
449 .record_error("resource_exhausted");
450 }
451 false
452 }
453 }
454
455 fn relay_frame_to_connection(
457 &mut self,
458 ch: ConnectionHandle,
459 frame: frame::PunchMeNow,
460 ) -> bool {
461 let _event = ConnectionEvent(ConnectionEventInner::QueuePunchMeNow(frame));
463 if let Some(_conn) = self.connections.get_mut(ch.0) {
464 }
471 true
475 }
476
477 pub fn set_connection_peer_id(&mut self, connection_handle: ConnectionHandle, peer_id: PeerId) {
479 if let Some(connection) = self.connections.get_mut(connection_handle.0) {
480 connection.peer_id = Some(peer_id);
481 self.register_peer(peer_id, connection_handle);
482
483 self.process_queued_relays_for_peer(peer_id);
485 }
486 }
487
488 fn process_queued_relays_for_peer(&mut self, peer_id: PeerId) {
490 let _now = Instant::now();
491 let mut processed = 0;
492
493 let mut items_to_process = Vec::new();
495 let mut keys_to_remove = Vec::new();
496
497 for (seq, item) in &self.relay_queue.pending {
499 if item.target_peer_id == peer_id {
500 items_to_process.push(item.clone());
501 keys_to_remove.push(*seq);
502 }
503 }
504
505 for key in keys_to_remove {
507 self.relay_queue.pending.shift_remove(&key);
508 }
509
510 for item in items_to_process {
512 if let Some(ch) = self.lookup_peer_connection(&peer_id) {
513 if self.relay_frame_to_connection(ch, item.frame.clone()) {
514 self.relay_stats.requests_relayed += 1;
515 processed += 1;
516 trace!("Processed queued relay for peer {:?}", peer_id);
517 } else {
518 self.relay_queue.requeue_failed(item);
520 self.relay_stats.requests_failed += 1;
521 }
522 }
523 }
524
525 self.relay_stats.current_queue_size = self.relay_queue.len();
526
527 if processed > 0 {
528 debug!(
529 "Processed {} queued relay requests for peer {:?}",
530 processed, peer_id
531 );
532 }
533 }
534
535 pub fn process_relay_queue(&mut self) {
537 let now = Instant::now();
538 let mut processed = 0;
539 let mut failed = 0;
540
541 while let Some(item) = self.relay_queue.next_ready(now) {
543 if let Some(ch) = self.lookup_peer_connection(&item.target_peer_id) {
544 if self.relay_frame_to_connection(ch, item.frame.clone()) {
545 self.relay_stats.requests_relayed += 1;
546 processed += 1;
547 trace!(
548 "Successfully relayed frame to peer {:?}",
549 item.target_peer_id
550 );
551 } else {
552 self.relay_queue.requeue_failed(item);
554 self.relay_stats.requests_failed += 1;
555 self.relay_stats_collector
557 .record_error("connection_failure");
558 failed += 1;
559 }
560 } else {
561 self.relay_queue.requeue_failed(item);
563 self.relay_stats_collector.record_error("peer_not_found");
565 failed += 1;
566 }
567 }
568
569 let expired = self.relay_queue.cleanup_expired(now);
571 if expired > 0 {
572 self.relay_stats.requests_timed_out += expired as u64;
573 for _ in 0..expired {
575 self.relay_stats_collector.record_error("request_timeout");
576 }
577 debug!("Cleaned up {} expired relay requests", expired);
578 }
579
580 self.relay_stats.current_queue_size = self.relay_queue.len();
581
582 if processed > 0 || failed > 0 {
583 trace!(
584 "Relay queue processing: {} processed, {} failed, {} in queue",
585 processed,
586 failed,
587 self.relay_queue.len()
588 );
589 }
590 }
591
592 pub fn relay_stats(&self) -> &RelayStats {
594 &self.relay_stats
595 }
596
597 pub fn comprehensive_relay_stats(&self) -> crate::relay::RelayStatistics {
599 self.relay_stats_collector
601 .update_queue_stats(&self.relay_stats);
602 self.relay_stats_collector.collect_statistics()
603 }
604
605 pub fn relay_stats_collector(&self) -> &RelayStatisticsCollector {
607 &self.relay_stats_collector
608 }
609
610 pub fn relay_queue_len(&self) -> usize {
612 self.relay_queue.len()
613 }
614
615 pub fn handle_event(
619 &mut self,
620 ch: ConnectionHandle,
621 event: EndpointEvent,
622 ) -> Option<ConnectionEvent> {
623 use EndpointEventInner::*;
624 match event.0 {
625 EndpointEventInner::NeedIdentifiers(now, n) => {
626 return Some(self.send_new_identifiers(now, ch, n));
627 }
628 ResetToken(remote, token) => {
629 if let Some(old) = self.connections[ch].reset_token.replace((remote, token)) {
630 self.index.connection_reset_tokens.remove(old.0, old.1);
631 }
632 if self.index.connection_reset_tokens.insert(remote, token, ch) {
633 warn!("duplicate reset token");
634 }
635 }
636 RetireConnectionId(now, seq, allow_more_cids) => {
637 if let Some(cid) = self.connections[ch].loc_cids.remove(&seq) {
638 trace!("peer retired CID {}: {}", seq, cid);
639 self.index.retire(cid);
640 if allow_more_cids {
641 return Some(self.send_new_identifiers(now, ch, 1));
642 }
643 }
644 }
645 RelayPunchMeNow(target_peer_id, punch_me_now) => {
646 let peer_id = PeerId(target_peer_id);
648 if self.queue_frame_for_peer(&peer_id, punch_me_now) {
649 trace!(
650 "Successfully queued PunchMeNow frame for relay to peer {:?}",
651 peer_id
652 );
653 } else {
654 warn!("Failed to queue PunchMeNow relay for peer {:?}", peer_id);
655 }
656 }
657 SendAddressFrame(add_address_frame) => {
658 return Some(ConnectionEvent(ConnectionEventInner::QueueAddAddress(
660 add_address_frame,
661 )));
662 }
663 NatCandidateValidated { address, challenge } => {
664 trace!(
666 "NAT candidate validation succeeded for {} with challenge {:016x}",
667 address, challenge
668 );
669
670 debug!("NAT candidate {} validated successfully", address);
674 }
675 Drained => {
676 if let Some(conn) = self.connections.try_remove(ch.0) {
677 self.index.remove(&conn);
678 if let Some(peer_id) = conn.peer_id {
680 self.peer_connections.remove(&peer_id);
681 trace!("Cleaned up peer connection mapping for {:?}", peer_id);
682 }
683 } else {
684 error!(id = ch.0, "unknown connection drained");
688 }
689 }
690 }
691 None
692 }
693
694 pub fn handle(
696 &mut self,
697 now: Instant,
698 remote: SocketAddr,
699 local_ip: Option<IpAddr>,
700 ecn: Option<EcnCodepoint>,
701 data: BytesMut,
702 buf: &mut Vec<u8>,
703 ) -> Option<DatagramEvent> {
704 let datagram_len = data.len();
706 let event = match PartialDecode::new(
707 data,
708 &FixedLengthConnectionIdParser::new(self.local_cid_generator.cid_len()),
709 &self.config.supported_versions,
710 self.config.grease_quic_bit,
711 ) {
712 Ok((first_decode, remaining)) => DatagramConnectionEvent {
713 now,
714 remote,
715 ecn,
716 first_decode,
717 remaining,
718 },
719 Err(PacketDecodeError::UnsupportedVersion {
720 src_cid,
721 dst_cid,
722 version,
723 }) => {
724 if self.server_config.is_none() {
725 debug!("dropping packet with unsupported version");
726 return None;
727 }
728 trace!("sending version negotiation");
729 Header::VersionNegotiate {
731 random: self.rng.r#gen::<u8>() | 0x40,
732 src_cid: dst_cid,
733 dst_cid: src_cid,
734 }
735 .encode(buf);
736 buf.write::<u32>(match version {
738 0x0a1a_2a3a => 0x0a1a_2a4a,
739 _ => 0x0a1a_2a3a,
740 });
741 for &version in &self.config.supported_versions {
742 buf.write(version);
743 }
744 return Some(DatagramEvent::Response(Transmit {
745 destination: remote,
746 ecn: None,
747 size: buf.len(),
748 segment_size: None,
749 src_ip: local_ip,
750 }));
751 }
752 Err(e) => {
753 trace!("malformed header: {}", e);
754 return None;
755 }
756 };
757
758 let addresses = FourTuple { remote, local_ip };
759 let dst_cid = event.first_decode.dst_cid();
760
761 if let Some(route_to) = self.index.get(&addresses, &event.first_decode) {
762 match route_to {
764 RouteDatagramTo::Incoming(incoming_idx) => {
765 let incoming_buffer = &mut self.incoming_buffers[incoming_idx];
766 let Some(config) = &self.server_config else {
767 debug!("no server config available to buffer incoming datagram");
768 return None;
769 };
770
771 if incoming_buffer
772 .total_bytes
773 .checked_add(datagram_len as u64)
774 .is_some_and(|n| n <= config.incoming_buffer_size)
775 && self
776 .all_incoming_buffers_total_bytes
777 .checked_add(datagram_len as u64)
778 .is_some_and(|n| n <= config.incoming_buffer_size_total)
779 {
780 incoming_buffer.datagrams.push(event);
781 incoming_buffer.total_bytes += datagram_len as u64;
782 self.all_incoming_buffers_total_bytes += datagram_len as u64;
783 }
784
785 None
786 }
787 RouteDatagramTo::Connection(ch) => Some(DatagramEvent::ConnectionEvent(
788 ch,
789 ConnectionEvent(ConnectionEventInner::Datagram(event)),
790 )),
791 }
792 } else if event.first_decode.initial_header().is_some() {
793 self.handle_first_packet(datagram_len, event, addresses, buf)
796 } else if event.first_decode.has_long_header() {
797 debug!(
798 "ignoring non-initial packet for unknown connection {}",
799 dst_cid
800 );
801 None
802 } else if !event.first_decode.is_initial()
803 && self.local_cid_generator.validate(dst_cid).is_err()
804 {
805 debug!("dropping packet with invalid CID");
809 None
810 } else if dst_cid.is_empty() {
811 trace!("dropping unrecognized short packet without ID");
812 None
813 } else {
814 self.stateless_reset(now, datagram_len, addresses, *dst_cid, buf)
815 .map(DatagramEvent::Response)
816 }
817 }
818
819 fn stateless_reset(
820 &mut self,
821 now: Instant,
822 inciting_dgram_len: usize,
823 addresses: FourTuple,
824 dst_cid: ConnectionId,
825 buf: &mut Vec<u8>,
826 ) -> Option<Transmit> {
827 if self
828 .last_stateless_reset
829 .is_some_and(|last| last + self.config.min_reset_interval > now)
830 {
831 debug!("ignoring unexpected packet within minimum stateless reset interval");
832 return None;
833 }
834
835 const MIN_PADDING_LEN: usize = 5;
837
838 let max_padding_len = match inciting_dgram_len.checked_sub(RESET_TOKEN_SIZE) {
841 Some(headroom) if headroom > MIN_PADDING_LEN => headroom - 1,
842 _ => {
843 debug!(
844 "ignoring unexpected {} byte packet: not larger than minimum stateless reset size",
845 inciting_dgram_len
846 );
847 return None;
848 }
849 };
850
851 debug!(
852 "sending stateless reset for {} to {}",
853 dst_cid, addresses.remote
854 );
855 self.last_stateless_reset = Some(now);
856 const IDEAL_MIN_PADDING_LEN: usize = MIN_PADDING_LEN + MAX_CID_SIZE;
858 let padding_len = if max_padding_len <= IDEAL_MIN_PADDING_LEN {
859 max_padding_len
860 } else {
861 self.rng.gen_range(IDEAL_MIN_PADDING_LEN..max_padding_len)
862 };
863 buf.reserve(padding_len + RESET_TOKEN_SIZE);
864 buf.resize(padding_len, 0);
865 self.rng.fill_bytes(&mut buf[0..padding_len]);
866 buf[0] = 0b0100_0000 | (buf[0] >> 2);
867 buf.extend_from_slice(&ResetToken::new(&*self.config.reset_key, dst_cid));
868
869 debug_assert!(buf.len() < inciting_dgram_len);
870
871 Some(Transmit {
872 destination: addresses.remote,
873 ecn: None,
874 size: buf.len(),
875 segment_size: None,
876 src_ip: addresses.local_ip,
877 })
878 }
879
880 pub fn connect(
882 &mut self,
883 now: Instant,
884 config: ClientConfig,
885 remote: SocketAddr,
886 server_name: &str,
887 ) -> Result<(ConnectionHandle, Connection), ConnectError> {
888 if self.cids_exhausted() {
889 return Err(ConnectError::CidsExhausted);
890 }
891 if remote.port() == 0 || remote.ip().is_unspecified() {
892 return Err(ConnectError::InvalidRemoteAddress(remote));
893 }
894 if !self.config.supported_versions.contains(&config.version) {
895 return Err(ConnectError::UnsupportedVersion);
896 }
897
898 let remote_id = (config.initial_dst_cid_provider)();
899 trace!(initial_dcid = %remote_id);
900
901 let ch = ConnectionHandle(self.connections.vacant_key());
902 let loc_cid = self.new_cid(ch);
903 let params = TransportParameters::new(
904 &config.transport,
905 &self.config,
906 self.local_cid_generator.as_ref(),
907 loc_cid,
908 None,
909 &mut self.rng,
910 )?;
911 let tls = config
912 .crypto
913 .start_session(config.version, server_name, ¶ms)?;
914
915 let conn = self.add_connection(
916 ch,
917 config.version,
918 remote_id,
919 loc_cid,
920 remote_id,
921 FourTuple {
922 remote,
923 local_ip: None,
924 },
925 now,
926 tls,
927 config.transport,
928 SideArgs::Client {
929 token_store: config.token_store,
930 server_name: server_name.into(),
931 },
932 );
933 Ok((ch, conn))
934 }
935
936 fn send_new_identifiers(
937 &mut self,
938 now: Instant,
939 ch: ConnectionHandle,
940 num: u64,
941 ) -> ConnectionEvent {
942 let mut ids = vec![];
943 for _ in 0..num {
944 let id = self.new_cid(ch);
945 let meta = &mut self.connections[ch];
946 let sequence = meta.cids_issued;
947 meta.cids_issued += 1;
948 meta.loc_cids.insert(sequence, id);
949 ids.push(IssuedCid {
950 sequence,
951 id,
952 reset_token: ResetToken::new(&*self.config.reset_key, id),
953 });
954 }
955 ConnectionEvent(ConnectionEventInner::NewIdentifiers(ids, now))
956 }
957
958 fn new_cid(&mut self, ch: ConnectionHandle) -> ConnectionId {
960 loop {
961 let cid = self.local_cid_generator.generate_cid();
962 if cid.is_empty() {
963 debug_assert_eq!(self.local_cid_generator.cid_len(), 0);
965 return cid;
966 }
967 if let hash_map::Entry::Vacant(e) = self.index.connection_ids.entry(cid) {
968 e.insert(ch);
969 break cid;
970 }
971 }
972 }
973
974 fn handle_first_packet(
975 &mut self,
976 datagram_len: usize,
977 event: DatagramConnectionEvent,
978 addresses: FourTuple,
979 buf: &mut Vec<u8>,
980 ) -> Option<DatagramEvent> {
981 let dst_cid = event.first_decode.dst_cid();
982 let Some(header) = event.first_decode.initial_header() else {
983 debug!(
984 "unable to extract initial header for connection {}",
985 dst_cid
986 );
987 return None;
988 };
989
990 let crypto = {
991 let Some(server_config) = &self.server_config else {
992 debug!("packet for unrecognized connection {}", dst_cid);
993 return self
994 .stateless_reset(event.now, datagram_len, addresses, *dst_cid, buf)
995 .map(DatagramEvent::Response);
996 };
997 if datagram_len < MIN_INITIAL_SIZE as usize {
998 debug!("ignoring short initial for connection {}", dst_cid);
999 return None;
1000 }
1001 match server_config.crypto.initial_keys(header.version, dst_cid) {
1002 Ok(keys) => keys,
1003 Err(UnsupportedVersion) => {
1004 debug!(
1005 "ignoring initial packet version {:#x} unsupported by cryptographic layer",
1006 header.version
1007 );
1008 return None;
1009 }
1010 }
1011 };
1012
1013 if let Err(reason) = self.early_validate_first_packet(header) {
1014 return Some(DatagramEvent::Response(self.initial_close(
1015 header.version,
1016 addresses,
1017 &crypto,
1018 &header.src_cid,
1019 reason,
1020 buf,
1021 )));
1022 }
1023
1024 let packet = match event.first_decode.finish(Some(&*crypto.header.remote)) {
1025 Ok(packet) => packet,
1026 Err(e) => {
1027 trace!("unable to decode initial packet: {}", e);
1028 return None;
1029 }
1030 };
1031
1032 if !packet.reserved_bits_valid() {
1033 debug!("dropping connection attempt with invalid reserved bits");
1034 return None;
1035 }
1036
1037 let Header::Initial(header) = packet.header else {
1038 debug!("unexpected non-initial packet in handle_first_packet()");
1039 return None;
1040 };
1041
1042 let token = match self.server_config.as_ref() {
1043 Some(sc) => match IncomingToken::from_header(&header, sc, addresses.remote) {
1044 Ok(token) => token,
1045 Err(InvalidRetryTokenError) => {
1046 debug!("rejecting invalid retry token");
1047 return Some(DatagramEvent::Response(self.initial_close(
1048 header.version,
1049 addresses,
1050 &crypto,
1051 &header.src_cid,
1052 TransportError::INVALID_TOKEN(""),
1053 buf,
1054 )));
1055 }
1056 },
1057 None => {
1058 debug!("rejecting invalid retry token");
1059 return Some(DatagramEvent::Response(self.initial_close(
1060 header.version,
1061 addresses,
1062 &crypto,
1063 &header.src_cid,
1064 TransportError::INVALID_TOKEN(""),
1065 buf,
1066 )));
1067 }
1068 };
1069
1070 let incoming_idx = self.incoming_buffers.insert(IncomingBuffer::default());
1071 self.index
1072 .insert_initial_incoming(header.dst_cid, incoming_idx);
1073
1074 Some(DatagramEvent::NewConnection(Incoming {
1075 received_at: event.now,
1076 addresses,
1077 ecn: event.ecn,
1078 packet: InitialPacket {
1079 header,
1080 header_data: packet.header_data,
1081 payload: packet.payload,
1082 },
1083 rest: event.remaining,
1084 crypto,
1085 token,
1086 incoming_idx,
1087 improper_drop_warner: IncomingImproperDropWarner,
1088 }))
1089 }
1090
1091 #[allow(clippy::result_large_err)]
1094 pub fn accept(
1095 &mut self,
1096 mut incoming: Incoming,
1097 now: Instant,
1098 buf: &mut Vec<u8>,
1099 server_config: Option<Arc<ServerConfig>>,
1100 ) -> Result<(ConnectionHandle, Connection), AcceptError> {
1101 let remote_address_validated = incoming.remote_address_validated();
1102 incoming.improper_drop_warner.dismiss();
1103 let incoming_buffer = self.incoming_buffers.remove(incoming.incoming_idx);
1104 self.all_incoming_buffers_total_bytes -= incoming_buffer.total_bytes;
1105
1106 let packet_number = incoming.packet.header.number.expand(0);
1107 let InitialHeader {
1108 src_cid,
1109 dst_cid,
1110 version,
1111 ..
1112 } = incoming.packet.header;
1113 let server_config = match server_config.or_else(|| self.server_config.clone()) {
1114 Some(sc) => sc,
1115 None => {
1116 return Err(AcceptError {
1117 cause: ConnectionError::TransportError(
1118 crate::transport_error::Error::INTERNAL_ERROR(""),
1119 ),
1120 response: None,
1121 });
1122 }
1123 };
1124
1125 if server_config
1126 .transport
1127 .max_idle_timeout
1128 .is_some_and(|timeout| {
1129 incoming.received_at + Duration::from_millis(timeout.into()) <= now
1130 })
1131 {
1132 debug!("abandoning accept of stale initial");
1133 self.index.remove_initial(dst_cid);
1134 return Err(AcceptError {
1135 cause: ConnectionError::TimedOut,
1136 response: None,
1137 });
1138 }
1139
1140 if self.cids_exhausted() {
1141 debug!("refusing connection");
1142 self.index.remove_initial(dst_cid);
1143 return Err(AcceptError {
1144 cause: ConnectionError::CidsExhausted,
1145 response: Some(self.initial_close(
1146 version,
1147 incoming.addresses,
1148 &incoming.crypto,
1149 &src_cid,
1150 TransportError::CONNECTION_REFUSED(""),
1151 buf,
1152 )),
1153 });
1154 }
1155
1156 if incoming
1157 .crypto
1158 .packet
1159 .remote
1160 .decrypt(
1161 packet_number,
1162 &incoming.packet.header_data,
1163 &mut incoming.packet.payload,
1164 )
1165 .is_err()
1166 {
1167 debug!(packet_number, "failed to authenticate initial packet");
1168 self.index.remove_initial(dst_cid);
1169 return Err(AcceptError {
1170 cause: TransportError::PROTOCOL_VIOLATION("authentication failed").into(),
1171 response: None,
1172 });
1173 };
1174
1175 let ch = ConnectionHandle(self.connections.vacant_key());
1176 let loc_cid = self.new_cid(ch);
1177 let mut params = TransportParameters::new(
1178 &server_config.transport,
1179 &self.config,
1180 self.local_cid_generator.as_ref(),
1181 loc_cid,
1182 Some(&server_config),
1183 &mut self.rng,
1184 )?;
1185 params.stateless_reset_token = Some(ResetToken::new(&*self.config.reset_key, loc_cid));
1186 params.original_dst_cid = Some(incoming.token.orig_dst_cid);
1187 params.retry_src_cid = incoming.token.retry_src_cid;
1188 let mut pref_addr_cid = None;
1189 if server_config.has_preferred_address() {
1190 let cid = self.new_cid(ch);
1191 pref_addr_cid = Some(cid);
1192 params.preferred_address = Some(PreferredAddress {
1193 address_v4: server_config.preferred_address_v4,
1194 address_v6: server_config.preferred_address_v6,
1195 connection_id: cid,
1196 stateless_reset_token: ResetToken::new(&*self.config.reset_key, cid),
1197 });
1198 }
1199
1200 let tls = server_config.crypto.clone().start_session(version, ¶ms);
1201 let transport_config = server_config.transport.clone();
1202 let mut conn = self.add_connection(
1203 ch,
1204 version,
1205 dst_cid,
1206 loc_cid,
1207 src_cid,
1208 incoming.addresses,
1209 incoming.received_at,
1210 tls,
1211 transport_config,
1212 SideArgs::Server {
1213 server_config,
1214 pref_addr_cid,
1215 path_validated: remote_address_validated,
1216 },
1217 );
1218 conn.set_expected_peer_id_from_token(incoming.token.peer_id);
1219 self.index.insert_initial(dst_cid, ch);
1220
1221 match conn.handle_first_packet(
1222 incoming.received_at,
1223 incoming.addresses.remote,
1224 incoming.ecn,
1225 packet_number,
1226 incoming.packet,
1227 incoming.rest,
1228 ) {
1229 Ok(()) => {
1230 trace!(id = ch.0, icid = %dst_cid, "new connection");
1231
1232 for event in incoming_buffer.datagrams {
1233 conn.handle_event(ConnectionEvent(ConnectionEventInner::Datagram(event)))
1234 }
1235
1236 Ok((ch, conn))
1237 }
1238 Err(e) => {
1239 debug!("handshake failed: {}", e);
1240 self.handle_event(ch, EndpointEvent(EndpointEventInner::Drained));
1241 let response = match e {
1242 ConnectionError::TransportError(ref e) => Some(self.initial_close(
1243 version,
1244 incoming.addresses,
1245 &incoming.crypto,
1246 &src_cid,
1247 e.clone(),
1248 buf,
1249 )),
1250 _ => None,
1251 };
1252 Err(AcceptError { cause: e, response })
1253 }
1254 }
1255 }
1256
1257 fn early_validate_first_packet(
1259 &mut self,
1260 header: &ProtectedInitialHeader,
1261 ) -> Result<(), TransportError> {
1262 let Some(config) = &self.server_config else {
1263 return Err(TransportError::INTERNAL_ERROR(""));
1264 };
1265 if self.cids_exhausted() || self.incoming_buffers.len() >= config.max_incoming {
1266 return Err(TransportError::CONNECTION_REFUSED(""));
1267 }
1268
1269 if header.dst_cid.len() < 8
1274 && (header.token_pos.is_empty()
1275 || header.dst_cid.len() != self.local_cid_generator.cid_len())
1276 {
1277 debug!(
1278 "rejecting connection due to invalid DCID length {}",
1279 header.dst_cid.len()
1280 );
1281 return Err(TransportError::PROTOCOL_VIOLATION(
1282 "invalid destination CID length",
1283 ));
1284 }
1285
1286 Ok(())
1287 }
1288
1289 pub fn refuse(&mut self, incoming: Incoming, buf: &mut Vec<u8>) -> Transmit {
1291 self.clean_up_incoming(&incoming);
1292 incoming.improper_drop_warner.dismiss();
1293
1294 self.initial_close(
1295 incoming.packet.header.version,
1296 incoming.addresses,
1297 &incoming.crypto,
1298 &incoming.packet.header.src_cid,
1299 TransportError::CONNECTION_REFUSED(""),
1300 buf,
1301 )
1302 }
1303
1304 pub fn retry(&mut self, incoming: Incoming, buf: &mut Vec<u8>) -> Result<Transmit, RetryError> {
1308 if !incoming.may_retry() {
1309 return Err(RetryError(Box::new(incoming)));
1310 }
1311
1312 let Some(server_config_arc) = self.server_config.clone() else {
1313 return Err(RetryError(Box::new(incoming)));
1314 };
1315
1316 self.clean_up_incoming(&incoming);
1317 incoming.improper_drop_warner.dismiss();
1318
1319 let loc_cid = self.local_cid_generator.generate_cid();
1326
1327 let payload = TokenPayload::Retry {
1328 address: incoming.addresses.remote,
1329 orig_dst_cid: incoming.packet.header.dst_cid,
1330 issued: server_config_arc.time_source.now(),
1331 };
1332 let token = Token::new(payload, &mut self.rng).encode(&*server_config_arc.token_key);
1333
1334 let header = Header::Retry {
1335 src_cid: loc_cid,
1336 dst_cid: incoming.packet.header.src_cid,
1337 version: incoming.packet.header.version,
1338 };
1339
1340 let encode = header.encode(buf);
1341 buf.put_slice(&token);
1342 buf.extend_from_slice(&server_config_arc.crypto.retry_tag(
1343 incoming.packet.header.version,
1344 &incoming.packet.header.dst_cid,
1345 buf,
1346 ));
1347 encode.finish(buf, &*incoming.crypto.header.local, None);
1348
1349 Ok(Transmit {
1350 destination: incoming.addresses.remote,
1351 ecn: None,
1352 size: buf.len(),
1353 segment_size: None,
1354 src_ip: incoming.addresses.local_ip,
1355 })
1356 }
1357
1358 pub fn ignore(&mut self, incoming: Incoming) {
1363 self.clean_up_incoming(&incoming);
1364 incoming.improper_drop_warner.dismiss();
1365 }
1366
1367 fn clean_up_incoming(&mut self, incoming: &Incoming) {
1369 self.index.remove_initial(incoming.packet.header.dst_cid);
1370 let incoming_buffer = self.incoming_buffers.remove(incoming.incoming_idx);
1371 self.all_incoming_buffers_total_bytes -= incoming_buffer.total_bytes;
1372 }
1373
1374 fn add_connection(
1375 &mut self,
1376 ch: ConnectionHandle,
1377 version: u32,
1378 init_cid: ConnectionId,
1379 loc_cid: ConnectionId,
1380 rem_cid: ConnectionId,
1381 addresses: FourTuple,
1382 now: Instant,
1383 tls: Box<dyn crypto::Session>,
1384 transport_config: Arc<TransportConfig>,
1385 side_args: SideArgs,
1386 ) -> Connection {
1387 let mut rng_seed = [0; 32];
1388 self.rng.fill_bytes(&mut rng_seed);
1389 let side = side_args.side();
1390 let pref_addr_cid = side_args.pref_addr_cid();
1391 let conn = Connection::new(
1392 self.config.clone(),
1393 transport_config,
1394 init_cid,
1395 loc_cid,
1396 rem_cid,
1397 addresses.remote,
1398 addresses.local_ip,
1399 tls,
1400 self.local_cid_generator.as_ref(),
1401 now,
1402 version,
1403 self.allow_mtud,
1404 rng_seed,
1405 side_args,
1406 );
1407
1408 let mut cids_issued = 0;
1409 let mut loc_cids = FxHashMap::default();
1410
1411 loc_cids.insert(cids_issued, loc_cid);
1412 cids_issued += 1;
1413
1414 if let Some(cid) = pref_addr_cid {
1415 debug_assert_eq!(cids_issued, 1, "preferred address cid seq must be 1");
1416 loc_cids.insert(cids_issued, cid);
1417 cids_issued += 1;
1418 }
1419
1420 let id = self.connections.insert(ConnectionMeta {
1421 init_cid,
1422 cids_issued,
1423 loc_cids,
1424 addresses,
1425 side,
1426 reset_token: None,
1427 peer_id: None,
1428 });
1429 debug_assert_eq!(id, ch.0, "connection handle allocation out of sync");
1430
1431 self.index.insert_conn(addresses, loc_cid, ch, side);
1432
1433 conn
1434 }
1435
1436 fn initial_close(
1437 &mut self,
1438 version: u32,
1439 addresses: FourTuple,
1440 crypto: &Keys,
1441 remote_id: &ConnectionId,
1442 reason: TransportError,
1443 buf: &mut Vec<u8>,
1444 ) -> Transmit {
1445 let local_id = self.local_cid_generator.generate_cid();
1449 let number = PacketNumber::U8(0);
1450 let header = Header::Initial(InitialHeader {
1451 dst_cid: *remote_id,
1452 src_cid: local_id,
1453 number,
1454 token: Bytes::new(),
1455 version,
1456 });
1457
1458 let partial_encode = header.encode(buf);
1459 let max_len =
1460 INITIAL_MTU as usize - partial_encode.header_len - crypto.packet.local.tag_len();
1461 frame::Close::from(reason).encode(buf, max_len);
1462 buf.resize(buf.len() + crypto.packet.local.tag_len(), 0);
1463 partial_encode.finish(buf, &*crypto.header.local, Some((0, &*crypto.packet.local)));
1464 Transmit {
1465 destination: addresses.remote,
1466 ecn: None,
1467 size: buf.len(),
1468 segment_size: None,
1469 src_ip: addresses.local_ip,
1470 }
1471 }
1472
1473 pub fn config(&self) -> &EndpointConfig {
1475 &self.config
1476 }
1477
1478 pub fn enable_address_discovery(&mut self, enabled: bool) {
1485 self.address_discovery_enabled = enabled;
1486 }
1489
1490 pub fn address_discovery_enabled(&self) -> bool {
1492 self.address_discovery_enabled
1493 }
1494
1495 pub fn discovered_addresses(&self) -> Vec<SocketAddr> {
1503 Vec::new()
1505 }
1506
1507 pub fn set_address_change_callback<F>(&mut self, callback: F)
1512 where
1513 F: Fn(Option<SocketAddr>, SocketAddr) + Send + Sync + 'static,
1514 {
1515 self.address_change_callback = Some(Box::new(callback));
1516 }
1517
1518 pub fn clear_address_change_callback(&mut self) {
1520 self.address_change_callback = None;
1521 }
1522
1523 pub fn address_discovery_stats(&self) -> AddressDiscoveryStats {
1528 AddressDiscoveryStats::default()
1530 }
1531
1532 pub fn open_connections(&self) -> usize {
1534 self.connections.len()
1535 }
1536
1537 pub fn incoming_buffer_bytes(&self) -> u64 {
1540 self.all_incoming_buffers_total_bytes
1541 }
1542
1543 #[cfg(test)]
1544 #[allow(dead_code)]
1545 pub(crate) fn known_connections(&self) -> usize {
1546 let x = self.connections.len();
1547 debug_assert_eq!(x, self.index.connection_ids_initial.len());
1548 debug_assert!(x >= self.index.connection_reset_tokens.0.len());
1550 debug_assert!(x >= self.index.incoming_connection_remotes.len());
1552 debug_assert!(x >= self.index.outgoing_connection_remotes.len());
1553 x
1554 }
1555
1556 #[cfg(test)]
1557 #[allow(dead_code)]
1558 pub(crate) fn known_cids(&self) -> usize {
1559 self.index.connection_ids.len()
1560 }
1561
1562 fn cids_exhausted(&self) -> bool {
1567 self.local_cid_generator.cid_len() <= 4
1568 && self.local_cid_generator.cid_len() != 0
1569 && (2usize.pow(self.local_cid_generator.cid_len() as u32 * 8)
1570 - self.index.connection_ids.len())
1571 < 2usize.pow(self.local_cid_generator.cid_len() as u32 * 8 - 2)
1572 }
1573}
1574
1575impl fmt::Debug for Endpoint {
1576 fn fmt(&self, fmt: &mut fmt::Formatter<'_>) -> fmt::Result {
1577 fmt.debug_struct("Endpoint")
1578 .field("rng", &self.rng)
1579 .field("index", &self.index)
1580 .field("connections", &self.connections)
1581 .field("config", &self.config)
1582 .field("server_config", &self.server_config)
1583 .field("incoming_buffers.len", &self.incoming_buffers.len())
1585 .field(
1586 "all_incoming_buffers_total_bytes",
1587 &self.all_incoming_buffers_total_bytes,
1588 )
1589 .finish()
1590 }
1591}
1592
1593#[derive(Default)]
1595struct IncomingBuffer {
1596 datagrams: Vec<DatagramConnectionEvent>,
1597 total_bytes: u64,
1598}
1599
1600#[derive(Copy, Clone, Debug)]
1602enum RouteDatagramTo {
1603 Incoming(usize),
1604 Connection(ConnectionHandle),
1605}
1606
1607#[derive(Default, Debug)]
1609struct ConnectionIndex {
1610 connection_ids_initial: HashMap<ConnectionId, RouteDatagramTo>,
1616 connection_ids: FxHashMap<ConnectionId, ConnectionHandle>,
1620 incoming_connection_remotes: HashMap<FourTuple, ConnectionHandle>,
1624 outgoing_connection_remotes: HashMap<SocketAddr, ConnectionHandle>,
1633 connection_reset_tokens: ResetTokenTable,
1638}
1639
1640impl ConnectionIndex {
1641 fn insert_initial_incoming(&mut self, dst_cid: ConnectionId, incoming_key: usize) {
1643 if dst_cid.is_empty() {
1644 return;
1645 }
1646 self.connection_ids_initial
1647 .insert(dst_cid, RouteDatagramTo::Incoming(incoming_key));
1648 }
1649
1650 fn remove_initial(&mut self, dst_cid: ConnectionId) {
1652 if dst_cid.is_empty() {
1653 return;
1654 }
1655 let removed = self.connection_ids_initial.remove(&dst_cid);
1656 debug_assert!(removed.is_some());
1657 }
1658
1659 fn insert_initial(&mut self, dst_cid: ConnectionId, connection: ConnectionHandle) {
1661 if dst_cid.is_empty() {
1662 return;
1663 }
1664 self.connection_ids_initial
1665 .insert(dst_cid, RouteDatagramTo::Connection(connection));
1666 }
1667
1668 fn insert_conn(
1671 &mut self,
1672 addresses: FourTuple,
1673 dst_cid: ConnectionId,
1674 connection: ConnectionHandle,
1675 side: Side,
1676 ) {
1677 match dst_cid.len() {
1678 0 => match side {
1679 Side::Server => {
1680 self.incoming_connection_remotes
1681 .insert(addresses, connection);
1682 }
1683 Side::Client => {
1684 self.outgoing_connection_remotes
1685 .insert(addresses.remote, connection);
1686 }
1687 },
1688 _ => {
1689 self.connection_ids.insert(dst_cid, connection);
1690 }
1691 }
1692 }
1693
1694 fn retire(&mut self, dst_cid: ConnectionId) {
1696 self.connection_ids.remove(&dst_cid);
1697 }
1698
1699 fn remove(&mut self, conn: &ConnectionMeta) {
1701 if conn.side.is_server() {
1702 self.remove_initial(conn.init_cid);
1703 }
1704 for cid in conn.loc_cids.values() {
1705 self.connection_ids.remove(cid);
1706 }
1707 self.incoming_connection_remotes.remove(&conn.addresses);
1708 self.outgoing_connection_remotes
1709 .remove(&conn.addresses.remote);
1710 if let Some((remote, token)) = conn.reset_token {
1711 self.connection_reset_tokens.remove(remote, token);
1712 }
1713 }
1714
1715 fn get(&self, addresses: &FourTuple, datagram: &PartialDecode) -> Option<RouteDatagramTo> {
1717 let dst_cid = datagram.dst_cid();
1718 let is_empty_cid = dst_cid.is_empty();
1719
1720 if !is_empty_cid {
1722 if let Some(&ch) = self.connection_ids.get(dst_cid) {
1723 return Some(RouteDatagramTo::Connection(ch));
1724 }
1725 }
1726
1727 if datagram.is_initial() || datagram.is_0rtt() {
1729 if let Some(&ch) = self.connection_ids_initial.get(dst_cid) {
1730 return Some(ch);
1731 }
1732 }
1733
1734 if is_empty_cid {
1736 if let Some(&ch) = self.incoming_connection_remotes.get(addresses) {
1738 return Some(RouteDatagramTo::Connection(ch));
1739 }
1740 if let Some(&ch) = self.outgoing_connection_remotes.get(&addresses.remote) {
1741 return Some(RouteDatagramTo::Connection(ch));
1742 }
1743 }
1744
1745 let data = datagram.data();
1747 if data.len() < RESET_TOKEN_SIZE {
1748 return None;
1749 }
1750 self.connection_reset_tokens
1751 .get(addresses.remote, &data[data.len() - RESET_TOKEN_SIZE..])
1752 .cloned()
1753 .map(RouteDatagramTo::Connection)
1754 }
1755}
1756
1757#[derive(Debug)]
1758pub(crate) struct ConnectionMeta {
1759 init_cid: ConnectionId,
1760 cids_issued: u64,
1762 loc_cids: FxHashMap<u64, ConnectionId>,
1763 addresses: FourTuple,
1768 side: Side,
1769 reset_token: Option<(SocketAddr, ResetToken)>,
1772 peer_id: Option<PeerId>,
1774}
1775
1776#[derive(Debug, Copy, Clone, Eq, PartialEq, Hash, Ord, PartialOrd)]
1778pub struct ConnectionHandle(pub usize);
1779
1780impl From<ConnectionHandle> for usize {
1781 fn from(x: ConnectionHandle) -> Self {
1782 x.0
1783 }
1784}
1785
1786impl Index<ConnectionHandle> for Slab<ConnectionMeta> {
1787 type Output = ConnectionMeta;
1788 fn index(&self, ch: ConnectionHandle) -> &ConnectionMeta {
1789 &self[ch.0]
1790 }
1791}
1792
1793impl IndexMut<ConnectionHandle> for Slab<ConnectionMeta> {
1794 fn index_mut(&mut self, ch: ConnectionHandle) -> &mut ConnectionMeta {
1795 &mut self[ch.0]
1796 }
1797}
1798
1799pub enum DatagramEvent {
1801 ConnectionEvent(ConnectionHandle, ConnectionEvent),
1803 NewConnection(Incoming),
1805 Response(Transmit),
1807}
1808
1809pub struct Incoming {
1811 received_at: Instant,
1812 addresses: FourTuple,
1813 ecn: Option<EcnCodepoint>,
1814 packet: InitialPacket,
1815 rest: Option<BytesMut>,
1816 crypto: Keys,
1817 token: IncomingToken,
1818 incoming_idx: usize,
1819 improper_drop_warner: IncomingImproperDropWarner,
1820}
1821
1822impl Incoming {
1823 pub fn local_ip(&self) -> Option<IpAddr> {
1827 self.addresses.local_ip
1828 }
1829
1830 pub fn remote_address(&self) -> SocketAddr {
1832 self.addresses.remote
1833 }
1834
1835 pub fn remote_address_validated(&self) -> bool {
1843 self.token.validated
1844 }
1845
1846 pub fn may_retry(&self) -> bool {
1851 self.token.retry_src_cid.is_none()
1852 }
1853
1854 pub fn orig_dst_cid(&self) -> &ConnectionId {
1856 &self.token.orig_dst_cid
1857 }
1858}
1859
1860impl fmt::Debug for Incoming {
1861 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
1862 f.debug_struct("Incoming")
1863 .field("addresses", &self.addresses)
1864 .field("ecn", &self.ecn)
1865 .field("token", &self.token)
1868 .field("incoming_idx", &self.incoming_idx)
1869 .finish_non_exhaustive()
1871 }
1872}
1873
1874struct IncomingImproperDropWarner;
1875
1876impl IncomingImproperDropWarner {
1877 fn dismiss(self) {
1878 mem::forget(self);
1879 }
1880}
1881
1882impl Drop for IncomingImproperDropWarner {
1883 fn drop(&mut self) {
1884 warn!(
1885 "quinn_proto::Incoming dropped without passing to Endpoint::accept/refuse/retry/ignore \
1886 (may cause memory leak and eventual inability to accept new connections)"
1887 );
1888 }
1889}
1890
1891#[derive(Debug, Error, Clone, PartialEq, Eq)]
1895pub enum ConnectError {
1896 #[error("endpoint stopping")]
1900 EndpointStopping,
1901 #[error("CIDs exhausted")]
1905 CidsExhausted,
1906 #[error("invalid server name: {0}")]
1908 InvalidServerName(String),
1909 #[error("invalid remote address: {0}")]
1913 InvalidRemoteAddress(SocketAddr),
1914 #[error("no default client config")]
1918 NoDefaultClientConfig,
1919 #[error("unsupported QUIC version")]
1921 UnsupportedVersion,
1922 #[error("TLS error: {0}")]
1924 TlsError(String),
1925}
1926
1927#[derive(Debug)]
1929pub struct AcceptError {
1930 pub cause: ConnectionError,
1932 pub response: Option<Transmit>,
1934}
1935
1936impl From<rustls::Error> for ConnectError {
1937 fn from(error: rustls::Error) -> Self {
1938 ConnectError::TlsError(error.to_string())
1939 }
1940}
1941
1942impl From<crate::transport_error::Error> for AcceptError {
1943 fn from(error: crate::transport_error::Error) -> Self {
1944 Self {
1945 cause: ConnectionError::TransportError(error),
1946 response: None,
1947 }
1948 }
1949}
1950
1951#[derive(Debug, Error)]
1953#[error("retry() with validated Incoming")]
1954pub struct RetryError(Box<Incoming>);
1955
1956impl RetryError {
1957 pub fn into_incoming(self) -> Incoming {
1959 *self.0
1960 }
1961}
1962
1963#[derive(Default, Debug)]
1968struct ResetTokenTable(HashMap<SocketAddr, HashMap<ResetToken, ConnectionHandle>>);
1969
1970impl ResetTokenTable {
1971 fn insert(&mut self, remote: SocketAddr, token: ResetToken, ch: ConnectionHandle) -> bool {
1972 self.0
1973 .entry(remote)
1974 .or_default()
1975 .insert(token, ch)
1976 .is_some()
1977 }
1978
1979 fn remove(&mut self, remote: SocketAddr, token: ResetToken) {
1980 use std::collections::hash_map::Entry;
1981 match self.0.entry(remote) {
1982 Entry::Vacant(_) => {}
1983 Entry::Occupied(mut e) => {
1984 e.get_mut().remove(&token);
1985 if e.get().is_empty() {
1986 e.remove_entry();
1987 }
1988 }
1989 }
1990 }
1991
1992 fn get(&self, remote: SocketAddr, token: &[u8]) -> Option<&ConnectionHandle> {
1993 let token = ResetToken::from(<[u8; RESET_TOKEN_SIZE]>::try_from(token).ok()?);
1994 self.0.get(&remote)?.get(&token)
1995 }
1996}
1997
1998#[derive(Hash, Eq, PartialEq, Debug, Copy, Clone)]
2003struct FourTuple {
2004 remote: SocketAddr,
2005 local_ip: Option<IpAddr>,
2007}