1#[cfg(feature = "async")]
2use core::task::Waker;
3
4use crate::iface::Context;
5use crate::time::{Duration, Instant};
6use crate::wire::dhcpv4::field as dhcpv4_field;
7use crate::wire::{
8 DHCP_CLIENT_PORT, DHCP_MAX_DNS_SERVER_COUNT, DHCP_SERVER_PORT, DhcpMessageType, DhcpPacket,
9 DhcpRepr, IpAddress, IpProtocol, Ipv4Address, Ipv4AddressExt, Ipv4Cidr, Ipv4Repr,
10 UDP_HEADER_LEN, UdpRepr,
11};
12use crate::wire::{DhcpOption, HardwareAddress};
13use heapless::Vec;
14
15#[cfg(feature = "async")]
16use super::WakerRegistration;
17
18use super::PollAt;
19
20const DEFAULT_LEASE_DURATION: Duration = Duration::from_secs(120);
21
22const DEFAULT_PARAMETER_REQUEST_LIST: &[u8] = &[
23 dhcpv4_field::OPT_SUBNET_MASK,
24 dhcpv4_field::OPT_ROUTER,
25 dhcpv4_field::OPT_DOMAIN_NAME_SERVER,
26];
27
28#[derive(Debug, Eq, PartialEq, Clone)]
30#[cfg_attr(feature = "defmt", derive(defmt::Format))]
31pub struct Config<'a> {
32 pub server: ServerInfo,
35 pub address: Ipv4Cidr,
37 pub router: Option<Ipv4Address>,
40 pub dns_servers: Vec<Ipv4Address, DHCP_MAX_DNS_SERVER_COUNT>,
42 pub packet: Option<DhcpPacket<&'a [u8]>>,
44}
45
46#[derive(Debug, Clone, Copy, Eq, PartialEq)]
48#[cfg_attr(feature = "defmt", derive(defmt::Format))]
49pub struct ServerInfo {
50 pub address: Ipv4Address,
52 pub identifier: Ipv4Address,
55}
56
57#[derive(Debug)]
58#[cfg_attr(feature = "defmt", derive(defmt::Format))]
59struct DiscoverState {
60 retry_at: Instant,
62}
63
64#[derive(Debug)]
65#[cfg_attr(feature = "defmt", derive(defmt::Format))]
66struct RequestState {
67 retry_at: Instant,
69 retry: u16,
71 server: ServerInfo,
73 requested_ip: Ipv4Address,
75}
76
77#[derive(Debug)]
78#[cfg_attr(feature = "defmt", derive(defmt::Format))]
79struct RenewState {
80 config: Config<'static>,
82
83 renew_at: Instant,
88
89 rebind_at: Instant,
95
96 rebinding: bool,
98
99 expires_at: Instant,
102}
103
104#[derive(Debug)]
105#[cfg_attr(feature = "defmt", derive(defmt::Format))]
106enum ClientState {
107 Discovering(DiscoverState),
109 Requesting(RequestState),
111 Renewing(RenewState),
113}
114
115#[derive(Debug, PartialEq, Eq, Copy, Clone)]
117#[cfg_attr(feature = "defmt", derive(defmt::Format))]
118#[non_exhaustive]
119pub struct RetryConfig {
120 pub discover_timeout: Duration,
121 pub initial_request_timeout: Duration,
123 pub request_retries: u16,
124 pub min_renew_timeout: Duration,
125 pub max_renew_timeout: Duration,
129}
130
131impl Default for RetryConfig {
132 fn default() -> Self {
133 Self {
134 discover_timeout: Duration::from_secs(10),
135 initial_request_timeout: Duration::from_secs(5),
136 request_retries: 5,
137 min_renew_timeout: Duration::from_secs(60),
138 max_renew_timeout: Duration::MAX,
139 }
140 }
141}
142
143#[derive(Debug, PartialEq, Eq, Clone)]
145#[cfg_attr(feature = "defmt", derive(defmt::Format))]
146pub enum Event<'a> {
147 Deconfigured,
149 Configured(Config<'a>),
151}
152
153#[derive(Debug)]
154pub struct Socket<'a> {
155 state: ClientState,
157 config_changed: bool,
159 transaction_id: u32,
161
162 max_lease_duration: Option<Duration>,
165
166 retry_config: RetryConfig,
167
168 ignore_naks: bool,
170
171 pub(crate) server_port: u16,
173
174 pub(crate) client_port: u16,
176
177 outgoing_options: &'a [DhcpOption<'a>],
180 parameter_request_list: Option<&'a [u8]>,
182
183 receive_packet_buffer: Option<&'a mut [u8]>,
185
186 #[cfg(feature = "async")]
188 waker: WakerRegistration,
189}
190
191impl<'a> Socket<'a> {
197 #[allow(clippy::new_without_default)]
199 pub fn new() -> Self {
200 Socket {
201 state: ClientState::Discovering(DiscoverState {
202 retry_at: Instant::from_millis(0),
203 }),
204 config_changed: true,
205 transaction_id: 1,
206 max_lease_duration: None,
207 retry_config: RetryConfig::default(),
208 ignore_naks: false,
209 outgoing_options: &[],
210 parameter_request_list: None,
211 receive_packet_buffer: None,
212 #[cfg(feature = "async")]
213 waker: WakerRegistration::new(),
214 server_port: DHCP_SERVER_PORT,
215 client_port: DHCP_CLIENT_PORT,
216 }
217 }
218
219 pub fn set_retry_config(&mut self, config: RetryConfig) {
221 self.retry_config = config;
222 }
223
224 pub fn get_retry_config(&self) -> RetryConfig {
226 self.retry_config
227 }
228
229 pub fn set_outgoing_options(&mut self, options: &'a [DhcpOption<'a>]) {
231 self.outgoing_options = options;
232 }
233
234 pub fn set_receive_packet_buffer(&mut self, buffer: &'a mut [u8]) {
236 self.receive_packet_buffer = Some(buffer);
237 }
238
239 pub fn set_parameter_request_list(&mut self, parameter_request_list: &'a [u8]) {
244 self.parameter_request_list = Some(parameter_request_list);
245 }
246
247 pub fn max_lease_duration(&self) -> Option<Duration> {
251 self.max_lease_duration
252 }
253
254 pub fn set_max_lease_duration(&mut self, max_lease_duration: Option<Duration>) {
262 self.max_lease_duration = max_lease_duration;
263 }
264
265 pub fn ignore_naks(&self) -> bool {
269 self.ignore_naks
270 }
271
272 pub fn set_ignore_naks(&mut self, ignore_naks: bool) {
279 self.ignore_naks = ignore_naks;
280 }
281
282 pub fn set_ports(&mut self, server_port: u16, client_port: u16) {
287 self.server_port = server_port;
288 self.client_port = client_port;
289 }
290
291 pub(crate) fn poll_at(&self, _cx: &mut Context) -> PollAt {
292 let t = match &self.state {
293 ClientState::Discovering(state) => state.retry_at,
294 ClientState::Requesting(state) => state.retry_at,
295 ClientState::Renewing(state) => if state.rebinding {
296 state.rebind_at
297 } else {
298 state.renew_at.min(state.rebind_at)
299 }
300 .min(state.expires_at),
301 };
302 PollAt::Time(t)
303 }
304
305 pub(crate) fn process(
306 &mut self,
307 cx: &mut Context,
308 ip_repr: &Ipv4Repr,
309 repr: &UdpRepr,
310 payload: &[u8],
311 ) {
312 let src_ip = ip_repr.src_addr;
313
314 assert!(repr.src_port == self.server_port && repr.dst_port == self.client_port);
316
317 let dhcp_packet = match DhcpPacket::new_checked(payload) {
318 Ok(dhcp_packet) => dhcp_packet,
319 Err(e) => {
320 net_debug!("DHCP invalid pkt from {}: {:?}", src_ip, e);
321 return;
322 }
323 };
324 let dhcp_repr = match DhcpRepr::parse(&dhcp_packet) {
325 Ok(dhcp_repr) => dhcp_repr,
326 Err(e) => {
327 net_debug!("DHCP error parsing pkt from {}: {:?}", src_ip, e);
328 return;
329 }
330 };
331
332 let HardwareAddress::Ethernet(ethernet_addr) = cx.hardware_addr() else {
333 panic!("using DHCPv4 socket with a non-ethernet hardware address.");
334 };
335
336 if dhcp_repr.client_hardware_address != ethernet_addr {
337 return;
338 }
339 if dhcp_repr.transaction_id != self.transaction_id {
340 return;
341 }
342 let server_identifier = match dhcp_repr.server_identifier {
343 Some(server_identifier) => server_identifier,
344 None => {
345 net_debug!(
346 "DHCP ignoring {:?} because missing server_identifier",
347 dhcp_repr.message_type
348 );
349 return;
350 }
351 };
352
353 net_debug!(
354 "DHCP recv {:?} from {}: {:?}",
355 dhcp_repr.message_type,
356 src_ip,
357 dhcp_repr
358 );
359
360 if let Some(buffer) = self.receive_packet_buffer.as_mut()
362 && let Some(buffer) = buffer.get_mut(..payload.len())
363 {
364 buffer.copy_from_slice(payload);
365 }
366
367 match (&mut self.state, dhcp_repr.message_type) {
368 (ClientState::Discovering(_state), DhcpMessageType::Offer) => {
369 if !dhcp_repr.your_ip.x_is_unicast() {
370 net_debug!("DHCP ignoring OFFER because your_ip is not unicast");
371 return;
372 }
373
374 self.state = ClientState::Requesting(RequestState {
375 retry_at: cx.now(),
376 retry: 0,
377 server: ServerInfo {
378 address: src_ip,
379 identifier: server_identifier,
380 },
381 requested_ip: dhcp_repr.your_ip, });
383 }
384 (ClientState::Requesting(state), DhcpMessageType::Ack) => {
385 if let Some((config, renew_at, rebind_at, expires_at)) =
386 Self::parse_ack(cx.now(), &dhcp_repr, self.max_lease_duration, state.server)
387 {
388 self.state = ClientState::Renewing(RenewState {
389 config,
390 renew_at,
391 rebind_at,
392 expires_at,
393 rebinding: false,
394 });
395 self.config_changed();
396 }
397 }
398 (ClientState::Requesting(_), DhcpMessageType::Nak) => {
399 if !self.ignore_naks {
400 self.reset();
401 }
402 }
403 (ClientState::Renewing(state), DhcpMessageType::Ack) => {
404 if let Some((config, renew_at, rebind_at, expires_at)) = Self::parse_ack(
405 cx.now(),
406 &dhcp_repr,
407 self.max_lease_duration,
408 state.config.server,
409 ) {
410 state.renew_at = renew_at;
411 state.rebind_at = rebind_at;
412 state.rebinding = false;
413 state.expires_at = expires_at;
414 let config_changed =
420 state.config != config || self.receive_packet_buffer.is_some();
421 if state.config != config {
422 state.config = config;
423 }
424 if config_changed {
425 self.config_changed();
426 }
427 }
428 }
429 (ClientState::Renewing(_), DhcpMessageType::Nak) => {
430 if !self.ignore_naks {
431 self.reset();
432 }
433 }
434 _ => {
435 net_debug!(
436 "DHCP ignoring {:?}: unexpected in current state",
437 dhcp_repr.message_type
438 );
439 }
440 }
441 }
442
443 fn parse_ack(
444 now: Instant,
445 dhcp_repr: &DhcpRepr,
446 max_lease_duration: Option<Duration>,
447 server: ServerInfo,
448 ) -> Option<(Config<'static>, Instant, Instant, Instant)> {
449 let subnet_mask = match dhcp_repr.subnet_mask {
450 Some(subnet_mask) => subnet_mask,
451 None => {
452 net_debug!("DHCP ignoring ACK because missing subnet_mask");
453 return None;
454 }
455 };
456
457 let prefix_len = match IpAddress::Ipv4(subnet_mask).prefix_len() {
458 Some(prefix_len) => prefix_len,
459 None => {
460 net_debug!("DHCP ignoring ACK because subnet_mask is not a valid mask");
461 return None;
462 }
463 };
464
465 if !dhcp_repr.your_ip.x_is_unicast() {
466 net_debug!("DHCP ignoring ACK because your_ip is not unicast");
467 return None;
468 }
469
470 let mut lease_duration = dhcp_repr
471 .lease_duration
472 .map(|d| Duration::from_secs(d as _))
473 .unwrap_or(DEFAULT_LEASE_DURATION);
474 if let Some(max_lease_duration) = max_lease_duration {
475 lease_duration = lease_duration.min(max_lease_duration);
476 }
477
478 let mut dns_servers = Vec::new();
481
482 dhcp_repr
483 .dns_servers
484 .iter()
485 .flatten()
486 .filter(|s| s.x_is_unicast())
487 .for_each(|a| {
488 dns_servers.push(*a).ok();
491 });
492
493 let config = Config {
494 server,
495 address: Ipv4Cidr::new(dhcp_repr.your_ip, prefix_len),
496 router: dhcp_repr.router,
497 dns_servers,
498 packet: None,
499 };
500
501 let (renew_duration, rebind_duration) = match (
508 dhcp_repr
509 .renew_duration
510 .map(|d| Duration::from_secs(d as u64)),
511 dhcp_repr
512 .rebind_duration
513 .map(|d| Duration::from_secs(d as u64)),
514 ) {
515 (Some(renew_duration), Some(rebind_duration))
516 if renew_duration < rebind_duration && rebind_duration < lease_duration =>
517 {
518 (renew_duration, rebind_duration)
519 }
520 (Some(renew_duration), None) if renew_duration < lease_duration => (
528 renew_duration,
529 renew_duration + (lease_duration - renew_duration) * 3 / 4,
530 ),
531
532 (None, Some(rebind_duration)) if rebind_duration < lease_duration => {
536 ((lease_duration / 2).min(rebind_duration), rebind_duration)
537 }
538
539 (_, _) => {
542 net_debug!("using default T1 and T2 values since the provided values are invalid");
543 (lease_duration / 2, lease_duration * 7 / 8)
544 }
545 };
546 let renew_at = now + renew_duration;
547 let rebind_at = now + rebind_duration;
548 let expires_at = now + lease_duration;
549
550 Some((config, renew_at, rebind_at, expires_at))
551 }
552
553 #[cfg(not(test))]
554 fn random_transaction_id(cx: &mut Context) -> u32 {
555 cx.rand().rand_u32()
556 }
557
558 #[cfg(test)]
559 fn random_transaction_id(_cx: &mut Context) -> u32 {
560 0x12345678
561 }
562
563 pub(crate) fn dispatch<F, E>(&mut self, cx: &mut Context, emit: F) -> Result<(), E>
564 where
565 F: FnOnce(&mut Context, (Ipv4Repr, UdpRepr, DhcpRepr)) -> Result<(), E>,
566 {
567 let HardwareAddress::Ethernet(ethernet_addr) = cx.hardware_addr() else {
570 panic!("using DHCPv4 socket with a non-ethernet hardware address.");
571 };
572
573 const MAX_IPV4_HEADER_LEN: usize = 60;
576
577 let mut dhcp_repr = DhcpRepr {
578 message_type: DhcpMessageType::Discover,
579 transaction_id: self.transaction_id,
580 secs: 0,
581 client_hardware_address: ethernet_addr,
582 client_ip: Ipv4Address::UNSPECIFIED,
583 your_ip: Ipv4Address::UNSPECIFIED,
584 server_ip: Ipv4Address::UNSPECIFIED,
585 router: None,
586 subnet_mask: None,
587 relay_agent_ip: Ipv4Address::UNSPECIFIED,
588 broadcast: false,
589 requested_ip: None,
590 client_identifier: Some(ethernet_addr),
591 server_identifier: None,
592 parameter_request_list: Some(
593 self.parameter_request_list
594 .unwrap_or(DEFAULT_PARAMETER_REQUEST_LIST),
595 ),
596 max_size: Some((cx.ip_mtu() - MAX_IPV4_HEADER_LEN - UDP_HEADER_LEN) as u16),
597 lease_duration: None,
598 renew_duration: None,
599 rebind_duration: None,
600 dns_servers: None,
601 additional_options: self.outgoing_options,
602 };
603
604 let udp_repr = UdpRepr {
605 src_port: self.client_port,
606 dst_port: self.server_port,
607 };
608
609 let mut ipv4_repr = Ipv4Repr {
610 src_addr: Ipv4Address::UNSPECIFIED,
611 dst_addr: Ipv4Address::BROADCAST,
612 next_header: IpProtocol::Udp,
613 payload_len: 0, hop_limit: 64,
615 };
616
617 match &mut self.state {
618 ClientState::Discovering(state) => {
619 if cx.now() < state.retry_at {
620 return Ok(());
621 }
622
623 let next_transaction_id = Self::random_transaction_id(cx);
624 dhcp_repr.transaction_id = next_transaction_id;
625
626 net_debug!(
628 "DHCP send DISCOVER to {}: {:?}",
629 ipv4_repr.dst_addr,
630 dhcp_repr
631 );
632 ipv4_repr.payload_len = udp_repr.header_len() + dhcp_repr.buffer_len();
633 emit(cx, (ipv4_repr, udp_repr, dhcp_repr))?;
634
635 state.retry_at = cx.now() + self.retry_config.discover_timeout;
637 self.transaction_id = next_transaction_id;
638 Ok(())
639 }
640 ClientState::Requesting(state) => {
641 if cx.now() < state.retry_at {
642 return Ok(());
643 }
644
645 if state.retry >= self.retry_config.request_retries {
646 net_debug!("DHCP request retries exceeded, restarting discovery");
647 self.reset();
648 return Ok(());
649 }
650
651 dhcp_repr.message_type = DhcpMessageType::Request;
652 dhcp_repr.requested_ip = Some(state.requested_ip);
653 dhcp_repr.server_identifier = Some(state.server.identifier);
654
655 net_debug!(
656 "DHCP send request to {}: {:?}",
657 ipv4_repr.dst_addr,
658 dhcp_repr
659 );
660 ipv4_repr.payload_len = udp_repr.header_len() + dhcp_repr.buffer_len();
661 emit(cx, (ipv4_repr, udp_repr, dhcp_repr))?;
662
663 state.retry_at = cx.now()
665 + (self.retry_config.initial_request_timeout << (state.retry as u32 / 2));
666 state.retry += 1;
667
668 Ok(())
669 }
670 ClientState::Renewing(state) => {
671 let now = cx.now();
672 if state.expires_at <= now {
673 net_debug!("DHCP lease expired");
674 self.reset();
675 return Ok(());
677 }
678
679 if now < state.renew_at || state.rebinding && now < state.rebind_at {
680 return Ok(());
681 }
682
683 state.rebinding |= now >= state.rebind_at;
684
685 ipv4_repr.src_addr = state.config.address.address();
686 if !state.rebinding {
688 ipv4_repr.dst_addr = state.config.server.address;
689 }
690 dhcp_repr.message_type = DhcpMessageType::Request;
691 dhcp_repr.client_ip = state.config.address.address();
692
693 let next_transaction_id = Self::random_transaction_id(cx);
694 dhcp_repr.transaction_id = next_transaction_id;
695
696 net_debug!("DHCP send renew to {}: {:?}", ipv4_repr.dst_addr, dhcp_repr);
697 ipv4_repr.payload_len = udp_repr.header_len() + dhcp_repr.buffer_len();
698 emit(cx, (ipv4_repr, udp_repr, dhcp_repr))?;
699
700 if state.rebinding {
706 state.rebind_at = now
707 + self
708 .retry_config
709 .min_renew_timeout
710 .max((state.expires_at - now) / 2)
711 .min(self.retry_config.max_renew_timeout);
712 } else {
713 state.renew_at = now
714 + self
715 .retry_config
716 .min_renew_timeout
717 .max((state.rebind_at - now) / 2)
718 .min(state.rebind_at - now)
719 .min(self.retry_config.max_renew_timeout);
720 }
721
722 self.transaction_id = next_transaction_id;
723 Ok(())
724 }
725 }
726 }
727
728 pub fn reset(&mut self) {
733 net_trace!("DHCP reset");
734 if let ClientState::Renewing(_) = &self.state {
735 self.config_changed();
736 }
737 self.state = ClientState::Discovering(DiscoverState {
738 retry_at: Instant::from_millis(0),
739 });
740 }
741
742 pub fn poll(&mut self) -> Option<Event<'_>> {
747 if !self.config_changed {
748 None
749 } else if let ClientState::Renewing(state) = &self.state {
750 self.config_changed = false;
751 Some(Event::Configured(Config {
752 server: state.config.server,
753 address: state.config.address,
754 router: state.config.router,
755 dns_servers: state.config.dns_servers.clone(),
756 packet: self
757 .receive_packet_buffer
758 .as_deref()
759 .map(DhcpPacket::new_unchecked),
760 }))
761 } else {
762 self.config_changed = false;
763 Some(Event::Deconfigured)
764 }
765 }
766
767 pub(crate) fn config_changed(&mut self) {
771 self.config_changed = true;
772 #[cfg(feature = "async")]
773 self.waker.wake();
774 }
775
776 #[cfg(feature = "async")]
788 pub fn register_waker(&mut self, waker: &Waker) {
789 self.waker.register(waker)
790 }
791}
792
793#[cfg(test)]
794mod test {
795
796 use std::ops::{Deref, DerefMut};
797
798 use super::*;
799 use crate::wire::EthernetAddress;
800
801 struct TestSocket {
805 socket: Socket<'static>,
806 cx: Context,
807 }
808
809 impl Deref for TestSocket {
810 type Target = Socket<'static>;
811 fn deref(&self) -> &Self::Target {
812 &self.socket
813 }
814 }
815
816 impl DerefMut for TestSocket {
817 fn deref_mut(&mut self) -> &mut Self::Target {
818 &mut self.socket
819 }
820 }
821
822 fn send(
823 s: &mut TestSocket,
824 timestamp: Instant,
825 (ip_repr, udp_repr, dhcp_repr): (Ipv4Repr, UdpRepr, DhcpRepr),
826 ) {
827 s.cx.set_now(timestamp);
828
829 net_trace!("send: {:?}", ip_repr);
830 net_trace!(" {:?}", udp_repr);
831 net_trace!(" {:?}", dhcp_repr);
832
833 let mut payload = vec![0; dhcp_repr.buffer_len()];
834 dhcp_repr
835 .emit(&mut DhcpPacket::new_unchecked(&mut payload))
836 .unwrap();
837
838 s.socket.process(&mut s.cx, &ip_repr, &udp_repr, &payload)
839 }
840
841 fn recv(s: &mut TestSocket, timestamp: Instant, reprs: &[(Ipv4Repr, UdpRepr, DhcpRepr)]) {
842 s.cx.set_now(timestamp);
843
844 let mut i = 0;
845
846 while s.socket.poll_at(&mut s.cx) <= PollAt::Time(timestamp) {
847 let _ = s
848 .socket
849 .dispatch(&mut s.cx, |_, (mut ip_repr, udp_repr, dhcp_repr)| {
850 assert_eq!(ip_repr.next_header, IpProtocol::Udp);
851 assert_eq!(
852 ip_repr.payload_len,
853 udp_repr.header_len() + dhcp_repr.buffer_len()
854 );
855
856 ip_repr.payload_len = 0;
858
859 net_trace!("recv: {:?}", ip_repr);
860 net_trace!(" {:?}", udp_repr);
861 net_trace!(" {:?}", dhcp_repr);
862
863 let got_repr = (ip_repr, udp_repr, dhcp_repr);
864 match reprs.get(i) {
865 Some(want_repr) => assert_eq!(want_repr, &got_repr),
866 None => panic!("Too many reprs emitted"),
867 }
868 i += 1;
869 Ok::<_, ()>(())
870 });
871 }
872
873 assert_eq!(i, reprs.len());
874 }
875
876 macro_rules! send {
877 ($socket:ident, $repr:expr) =>
878 (send!($socket, time 0, $repr));
879 ($socket:ident, time $time:expr, $repr:expr) =>
880 (send(&mut $socket, Instant::from_millis($time), $repr));
881 }
882
883 macro_rules! recv {
884 ($socket:ident, $reprs:expr) => ({
885 recv!($socket, time 0, $reprs);
886 });
887 ($socket:ident, time $time:expr, $reprs:expr) => ({
888 recv(&mut $socket, Instant::from_millis($time), &$reprs);
889 });
890 }
891
892 const TXID: u32 = 0x12345678;
896
897 const MY_IP: Ipv4Address = Ipv4Address::new(192, 168, 1, 42);
898 const SERVER_IP: Ipv4Address = Ipv4Address::new(192, 168, 1, 1);
899 const DNS_IP_1: Ipv4Address = Ipv4Address::new(1, 1, 1, 1);
900 const DNS_IP_2: Ipv4Address = Ipv4Address::new(1, 1, 1, 2);
901 const DNS_IP_3: Ipv4Address = Ipv4Address::new(1, 1, 1, 3);
902 const DNS_IPS: &[Ipv4Address] = &[DNS_IP_1, DNS_IP_2, DNS_IP_3];
903
904 const MASK_24: Ipv4Address = Ipv4Address::new(255, 255, 255, 0);
905
906 const MY_MAC: EthernetAddress = EthernetAddress([0x02, 0x02, 0x02, 0x02, 0x02, 0x02]);
907
908 const IP_BROADCAST: Ipv4Repr = Ipv4Repr {
909 src_addr: Ipv4Address::UNSPECIFIED,
910 dst_addr: Ipv4Address::BROADCAST,
911 next_header: IpProtocol::Udp,
912 payload_len: 0,
913 hop_limit: 64,
914 };
915
916 const IP_BROADCAST_ADDRESSED: Ipv4Repr = Ipv4Repr {
917 src_addr: MY_IP,
918 dst_addr: Ipv4Address::BROADCAST,
919 next_header: IpProtocol::Udp,
920 payload_len: 0,
921 hop_limit: 64,
922 };
923
924 const IP_SERVER_BROADCAST: Ipv4Repr = Ipv4Repr {
925 src_addr: SERVER_IP,
926 dst_addr: Ipv4Address::BROADCAST,
927 next_header: IpProtocol::Udp,
928 payload_len: 0,
929 hop_limit: 64,
930 };
931
932 const IP_RECV: Ipv4Repr = Ipv4Repr {
933 src_addr: SERVER_IP,
934 dst_addr: MY_IP,
935 next_header: IpProtocol::Udp,
936 payload_len: 0,
937 hop_limit: 64,
938 };
939
940 const IP_SEND: Ipv4Repr = Ipv4Repr {
941 src_addr: MY_IP,
942 dst_addr: SERVER_IP,
943 next_header: IpProtocol::Udp,
944 payload_len: 0,
945 hop_limit: 64,
946 };
947
948 const UDP_SEND: UdpRepr = UdpRepr {
949 src_port: DHCP_CLIENT_PORT,
950 dst_port: DHCP_SERVER_PORT,
951 };
952 const UDP_RECV: UdpRepr = UdpRepr {
953 src_port: DHCP_SERVER_PORT,
954 dst_port: DHCP_CLIENT_PORT,
955 };
956
957 const DIFFERENT_CLIENT_PORT: u16 = 6800;
958 const DIFFERENT_SERVER_PORT: u16 = 6700;
959
960 const UDP_SEND_DIFFERENT_PORT: UdpRepr = UdpRepr {
961 src_port: DIFFERENT_CLIENT_PORT,
962 dst_port: DIFFERENT_SERVER_PORT,
963 };
964 const UDP_RECV_DIFFERENT_PORT: UdpRepr = UdpRepr {
965 src_port: DIFFERENT_SERVER_PORT,
966 dst_port: DIFFERENT_CLIENT_PORT,
967 };
968
969 const DHCP_DEFAULT: DhcpRepr = DhcpRepr {
970 message_type: DhcpMessageType::Unknown(99),
971 transaction_id: TXID,
972 secs: 0,
973 client_hardware_address: MY_MAC,
974 client_ip: Ipv4Address::UNSPECIFIED,
975 your_ip: Ipv4Address::UNSPECIFIED,
976 server_ip: Ipv4Address::UNSPECIFIED,
977 router: None,
978 subnet_mask: None,
979 relay_agent_ip: Ipv4Address::UNSPECIFIED,
980 broadcast: false,
981 requested_ip: None,
982 client_identifier: None,
983 server_identifier: None,
984 parameter_request_list: None,
985 dns_servers: None,
986 max_size: None,
987 renew_duration: None,
988 rebind_duration: None,
989 lease_duration: None,
990 additional_options: &[],
991 };
992
993 const DHCP_DISCOVER: DhcpRepr = DhcpRepr {
994 message_type: DhcpMessageType::Discover,
995 client_identifier: Some(MY_MAC),
996 parameter_request_list: Some(&[1, 3, 6]),
997 max_size: Some(1432),
998 ..DHCP_DEFAULT
999 };
1000
1001 fn dhcp_offer() -> DhcpRepr<'static> {
1002 DhcpRepr {
1003 message_type: DhcpMessageType::Offer,
1004 server_ip: SERVER_IP,
1005 server_identifier: Some(SERVER_IP),
1006
1007 your_ip: MY_IP,
1008 router: Some(SERVER_IP),
1009 subnet_mask: Some(MASK_24),
1010 dns_servers: Some(Vec::from_slice(DNS_IPS).unwrap()),
1011 lease_duration: Some(1000),
1012
1013 ..DHCP_DEFAULT
1014 }
1015 }
1016
1017 const DHCP_REQUEST: DhcpRepr = DhcpRepr {
1018 message_type: DhcpMessageType::Request,
1019 client_identifier: Some(MY_MAC),
1020 server_identifier: Some(SERVER_IP),
1021 max_size: Some(1432),
1022
1023 requested_ip: Some(MY_IP),
1024 parameter_request_list: Some(&[1, 3, 6]),
1025 ..DHCP_DEFAULT
1026 };
1027
1028 fn dhcp_ack() -> DhcpRepr<'static> {
1029 DhcpRepr {
1030 message_type: DhcpMessageType::Ack,
1031 server_ip: SERVER_IP,
1032 server_identifier: Some(SERVER_IP),
1033
1034 your_ip: MY_IP,
1035 router: Some(SERVER_IP),
1036 subnet_mask: Some(MASK_24),
1037 dns_servers: Some(Vec::from_slice(DNS_IPS).unwrap()),
1038 lease_duration: Some(1000),
1039
1040 ..DHCP_DEFAULT
1041 }
1042 }
1043
1044 const DHCP_NAK: DhcpRepr = DhcpRepr {
1045 message_type: DhcpMessageType::Nak,
1046 server_ip: SERVER_IP,
1047 server_identifier: Some(SERVER_IP),
1048 ..DHCP_DEFAULT
1049 };
1050
1051 const DHCP_RENEW: DhcpRepr = DhcpRepr {
1052 message_type: DhcpMessageType::Request,
1053 client_identifier: Some(MY_MAC),
1054 client_ip: MY_IP,
1056 max_size: Some(1432),
1057
1058 requested_ip: None,
1059 parameter_request_list: Some(&[1, 3, 6]),
1060 ..DHCP_DEFAULT
1061 };
1062
1063 const DHCP_REBIND: DhcpRepr = DhcpRepr {
1064 message_type: DhcpMessageType::Request,
1065 client_identifier: Some(MY_MAC),
1066 client_ip: MY_IP,
1068 max_size: Some(1432),
1069
1070 requested_ip: None,
1071 parameter_request_list: Some(&[1, 3, 6]),
1072 ..DHCP_DEFAULT
1073 };
1074
1075 use crate::phy::Medium;
1079 use crate::tests::setup;
1080 use rstest::*;
1081
1082 fn socket(medium: Medium) -> TestSocket {
1083 let (iface, _, _) = setup(medium);
1084 let mut s = Socket::new();
1085 assert_eq!(s.poll(), Some(Event::Deconfigured));
1086 TestSocket {
1087 socket: s,
1088 cx: iface.inner,
1089 }
1090 }
1091
1092 fn socket_different_port(medium: Medium) -> TestSocket {
1093 let (iface, _, _) = setup(medium);
1094 let mut s = Socket::new();
1095 s.set_ports(DIFFERENT_SERVER_PORT, DIFFERENT_CLIENT_PORT);
1096
1097 assert_eq!(s.poll(), Some(Event::Deconfigured));
1098 TestSocket {
1099 socket: s,
1100 cx: iface.inner,
1101 }
1102 }
1103
1104 fn socket_bound(medium: Medium) -> TestSocket {
1105 let mut s = socket(medium);
1106 s.state = ClientState::Renewing(RenewState {
1107 config: Config {
1108 server: ServerInfo {
1109 address: SERVER_IP,
1110 identifier: SERVER_IP,
1111 },
1112 address: Ipv4Cidr::new(MY_IP, 24),
1113 dns_servers: Vec::from_slice(DNS_IPS).unwrap(),
1114 router: Some(SERVER_IP),
1115 packet: None,
1116 },
1117 renew_at: Instant::from_secs(500),
1118 rebind_at: Instant::from_secs(875),
1119 rebinding: false,
1120 expires_at: Instant::from_secs(1000),
1121 });
1122
1123 s
1124 }
1125
1126 #[rstest]
1127 #[case::ip(Medium::Ethernet)]
1128 #[cfg(feature = "medium-ethernet")]
1129 fn test_bind(#[case] medium: Medium) {
1130 let mut s = socket(medium);
1131
1132 recv!(s, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1133 assert_eq!(s.poll(), None);
1134 send!(s, (IP_RECV, UDP_RECV, dhcp_offer()));
1135 assert_eq!(s.poll(), None);
1136 recv!(s, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1137 assert_eq!(s.poll(), None);
1138 send!(s, (IP_RECV, UDP_RECV, dhcp_ack()));
1139
1140 assert_eq!(
1141 s.poll(),
1142 Some(Event::Configured(Config {
1143 server: ServerInfo {
1144 address: SERVER_IP,
1145 identifier: SERVER_IP,
1146 },
1147 address: Ipv4Cidr::new(MY_IP, 24),
1148 dns_servers: Vec::from_slice(DNS_IPS).unwrap(),
1149 router: Some(SERVER_IP),
1150 packet: None,
1151 }))
1152 );
1153
1154 match &s.state {
1155 ClientState::Renewing(r) => {
1156 assert_eq!(r.renew_at, Instant::from_secs(500));
1157 assert_eq!(r.rebind_at, Instant::from_secs(875));
1158 assert_eq!(r.expires_at, Instant::from_secs(1000));
1159 }
1160 _ => panic!("Invalid state"),
1161 }
1162 }
1163
1164 #[rstest]
1165 #[case::ip(Medium::Ethernet)]
1166 #[cfg(feature = "medium-ethernet")]
1167 fn test_bind_different_ports(#[case] medium: Medium) {
1168 let mut s = socket_different_port(medium);
1169
1170 recv!(s, [(IP_BROADCAST, UDP_SEND_DIFFERENT_PORT, DHCP_DISCOVER)]);
1171 assert_eq!(s.poll(), None);
1172 send!(s, (IP_RECV, UDP_RECV_DIFFERENT_PORT, dhcp_offer()));
1173 assert_eq!(s.poll(), None);
1174 recv!(s, [(IP_BROADCAST, UDP_SEND_DIFFERENT_PORT, DHCP_REQUEST)]);
1175 assert_eq!(s.poll(), None);
1176 send!(s, (IP_RECV, UDP_RECV_DIFFERENT_PORT, dhcp_ack()));
1177
1178 assert_eq!(
1179 s.poll(),
1180 Some(Event::Configured(Config {
1181 server: ServerInfo {
1182 address: SERVER_IP,
1183 identifier: SERVER_IP,
1184 },
1185 address: Ipv4Cidr::new(MY_IP, 24),
1186 dns_servers: Vec::from_slice(DNS_IPS).unwrap(),
1187 router: Some(SERVER_IP),
1188 packet: None,
1189 }))
1190 );
1191
1192 match &s.state {
1193 ClientState::Renewing(r) => {
1194 assert_eq!(r.renew_at, Instant::from_secs(500));
1195 assert_eq!(r.rebind_at, Instant::from_secs(875));
1196 assert_eq!(r.expires_at, Instant::from_secs(1000));
1197 }
1198 _ => panic!("Invalid state"),
1199 }
1200 }
1201
1202 #[rstest]
1203 #[case::ip(Medium::Ethernet)]
1204 #[cfg(feature = "medium-ethernet")]
1205 fn test_discover_retransmit(#[case] medium: Medium) {
1206 let mut s = socket(medium);
1207
1208 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1209 recv!(s, time 1_000, []);
1210 recv!(s, time 10_000, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1211 recv!(s, time 11_000, []);
1212 recv!(s, time 20_000, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1213
1214 send!(s, time 20_000, (IP_RECV, UDP_RECV, dhcp_offer()));
1216 recv!(s, time 20_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1217 }
1218
1219 #[rstest]
1220 #[case::ip(Medium::Ethernet)]
1221 #[cfg(feature = "medium-ethernet")]
1222 fn test_request_retransmit(#[case] medium: Medium) {
1223 let mut s = socket(medium);
1224
1225 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1226 send!(s, time 0, (IP_RECV, UDP_RECV, dhcp_offer()));
1227 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1228 recv!(s, time 1_000, []);
1229 recv!(s, time 5_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1230 recv!(s, time 6_000, []);
1231 recv!(s, time 10_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1232 recv!(s, time 15_000, []);
1233 recv!(s, time 20_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1234
1235 send!(s, time 20_000, (IP_RECV, UDP_RECV, dhcp_ack()));
1237
1238 match &s.state {
1239 ClientState::Renewing(r) => {
1240 assert_eq!(r.renew_at, Instant::from_secs(20 + 500));
1241 assert_eq!(r.expires_at, Instant::from_secs(20 + 1000));
1242 }
1243 _ => panic!("Invalid state"),
1244 }
1245 }
1246
1247 #[rstest]
1248 #[case::ip(Medium::Ethernet)]
1249 #[cfg(feature = "medium-ethernet")]
1250 fn test_request_timeout(#[case] medium: Medium) {
1251 let mut s = socket(medium);
1252
1253 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1254 send!(s, time 0, (IP_RECV, UDP_RECV, dhcp_offer()));
1255 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1256 recv!(s, time 5_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1257 recv!(s, time 10_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1258 recv!(s, time 20_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1259 recv!(s, time 30_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1260
1261 recv!(s, time 70_000, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1264
1265 send!(s, time 60_000, (IP_RECV, UDP_RECV, dhcp_offer()));
1267 recv!(s, time 60_000, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1268 }
1269
1270 #[rstest]
1271 #[case::ip(Medium::Ethernet)]
1272 #[cfg(feature = "medium-ethernet")]
1273 fn test_request_nak(#[case] medium: Medium) {
1274 let mut s = socket(medium);
1275
1276 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1277 send!(s, time 0, (IP_RECV, UDP_RECV, dhcp_offer()));
1278 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_REQUEST)]);
1279 send!(s, time 0, (IP_SERVER_BROADCAST, UDP_RECV, DHCP_NAK));
1280 recv!(s, time 0, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1281 }
1282
1283 #[rstest]
1284 #[case::ip(Medium::Ethernet)]
1285 #[cfg(feature = "medium-ethernet")]
1286 fn test_renew(#[case] medium: Medium) {
1287 let mut s = socket_bound(medium);
1288
1289 recv!(s, []);
1290 assert_eq!(s.poll(), None);
1291 recv!(s, time 500_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1292 assert_eq!(s.poll(), None);
1293
1294 match &s.state {
1295 ClientState::Renewing(r) => {
1296 assert_eq!(r.expires_at, Instant::from_secs(1000));
1299 }
1300 _ => panic!("Invalid state"),
1301 }
1302
1303 send!(s, time 500_000, (IP_RECV, UDP_RECV, dhcp_ack()));
1304 assert_eq!(s.poll(), None);
1305
1306 match &s.state {
1307 ClientState::Renewing(r) => {
1308 assert_eq!(r.renew_at, Instant::from_secs(500 + 500));
1310 assert_eq!(r.expires_at, Instant::from_secs(500 + 1000));
1311 }
1312 _ => panic!("Invalid state"),
1313 }
1314 }
1315
1316 #[rstest]
1317 #[case::ip(Medium::Ethernet)]
1318 #[cfg(feature = "medium-ethernet")]
1319 fn test_renew_rebind_retransmit(#[case] medium: Medium) {
1320 let mut s = socket_bound(medium);
1321
1322 recv!(s, []);
1323 recv!(s, time 499_000, []);
1325 recv!(s, time 500_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1326 recv!(s, time 687_000, []);
1328 recv!(s, time 687_500, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1329 recv!(s, time 781_000, []);
1331 recv!(s, time 781_250, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1332 recv!(s, time 841_000, []);
1334 recv!(s, time 841_250, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1335 recv!(s, time 874_000, []);
1337 recv!(s, time 875_000, [(IP_BROADCAST_ADDRESSED, UDP_SEND, DHCP_REBIND)]);
1339 recv!(s, time 937_000, []);
1341 recv!(s, time 937_500, [(IP_BROADCAST_ADDRESSED, UDP_SEND, DHCP_REBIND)]);
1342 recv!(s, time 997_000, []);
1344 recv!(s, time 997_500, [(IP_BROADCAST_ADDRESSED, UDP_SEND, DHCP_REBIND)]);
1345
1346 send!(s, time 999_000, (IP_RECV, UDP_RECV, dhcp_ack()));
1348 match &s.state {
1349 ClientState::Renewing(r) => {
1350 assert_eq!(r.renew_at, Instant::from_secs(999 + 500));
1352 assert_eq!(r.expires_at, Instant::from_secs(999 + 1000));
1353 }
1354 _ => panic!("Invalid state"),
1355 }
1356 }
1357
1358 #[rstest]
1359 #[case::ip(Medium::Ethernet)]
1360 #[cfg(feature = "medium-ethernet")]
1361 fn test_renew_rebind_timeout(#[case] medium: Medium) {
1362 let mut s = socket_bound(medium);
1363
1364 recv!(s, []);
1365 recv!(s, time 500_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1367 recv!(s, time 687_500, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1369 recv!(s, time 781_250, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1371 recv!(s, time 841_250, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1373 recv!(s, time 1_000_000, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1382 match &s.state {
1383 ClientState::Discovering(_) => {}
1384 _ => panic!("Invalid state"),
1385 }
1386 }
1387
1388 #[rstest]
1389 #[case::ip(Medium::Ethernet)]
1390 #[cfg(feature = "medium-ethernet")]
1391 fn test_min_max_renew_timeout(#[case] medium: Medium) {
1392 let mut s = socket_bound(medium);
1393 let config = RetryConfig {
1395 max_renew_timeout: Duration::from_secs(120),
1396 min_renew_timeout: Duration::from_secs(45),
1397 ..s.get_retry_config()
1398 };
1399 s.set_retry_config(config);
1400 recv!(s, []);
1401 recv!(s, time 499_999, []);
1403 recv!(s, time 500_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1404 recv!(s, time 619_999, []);
1406 recv!(s, time 620_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1407 recv!(s, time 739_999, []);
1409 recv!(s, time 740_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1410 recv!(s, time 807_499, []);
1412 recv!(s, time 807_500, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1413 recv!(s, time 852_499, []);
1415 recv!(s, time 852_500, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1416 recv!(s, time 874_999, []);
1418 recv!(s, time 875_000, [(IP_BROADCAST_ADDRESSED, UDP_SEND, DHCP_REBIND)]);
1419 }
1420
1421 #[rstest]
1422 #[case::ip(Medium::Ethernet)]
1423 #[cfg(feature = "medium-ethernet")]
1424 fn test_renew_nak(#[case] medium: Medium) {
1425 let mut s = socket_bound(medium);
1426
1427 recv!(s, time 500_000, [(IP_SEND, UDP_SEND, DHCP_RENEW)]);
1428 send!(s, time 500_000, (IP_SERVER_BROADCAST, UDP_RECV, DHCP_NAK));
1429 recv!(s, time 500_000, [(IP_BROADCAST, UDP_SEND, DHCP_DISCOVER)]);
1430 }
1431}