lightning_dns_resolver/
lib.rs

1//! A simple crate which uses [`dnssec_prover`] to create DNSSEC Proofs in response to bLIP 32
2//! Onion Message DNSSEC Proof Queries.
3
4#![deny(missing_docs)]
5#![deny(rustdoc::broken_intra_doc_links)]
6#![deny(rustdoc::private_intra_doc_links)]
7
8use std::net::SocketAddr;
9use std::ops::Deref;
10use std::sync::atomic::{AtomicUsize, Ordering};
11use std::sync::{Arc, Mutex};
12
13use dnssec_prover::query::build_txt_proof_async;
14
15use lightning::blinded_path::message::DNSResolverContext;
16use lightning::ln::peer_handler::IgnoringMessageHandler;
17use lightning::onion_message::dns_resolution::{
18	DNSResolverMessage, DNSResolverMessageHandler, DNSSECProof, DNSSECQuery,
19};
20use lightning::onion_message::messenger::{
21	MessageSendInstructions, Responder, ResponseInstruction,
22};
23
24use lightning_types::features::NodeFeatures;
25
26use tokio::runtime::Handle;
27
28#[cfg(not(any(target_pointer_width = "32", target_pointer_width = "64")))]
29const WE_REQUIRE_32_OR_64_BIT_USIZE: u8 = 424242;
30
31/// A resolver which implements [`DNSResolverMessageHandler`] and replies to [`DNSSECQuery`]
32/// messages with with [`DNSSECProof`]s.
33pub struct OMDomainResolver<PH: Deref>
34where
35	PH::Target: DNSResolverMessageHandler,
36{
37	state: Arc<OMResolverState>,
38	proof_handler: Option<PH>,
39	runtime_handle: Mutex<Option<Handle>>,
40}
41
42const MAX_PENDING_RESPONSES: usize = 1024;
43struct OMResolverState {
44	resolver: SocketAddr,
45	pending_replies: Mutex<Vec<(DNSResolverMessage, MessageSendInstructions)>>,
46	pending_query_count: AtomicUsize,
47}
48
49impl OMDomainResolver<IgnoringMessageHandler> {
50	/// Creates a new [`OMDomainResolver`] given the [`SocketAddr`] of a DNS resolver listening on
51	/// TCP (e.g. 8.8.8.8:53, 1.1.1.1:53 or your local DNS resolver).
52	///
53	/// Ignores any incoming [`DNSSECProof`] messages.
54	pub fn ignoring_incoming_proofs(resolver: SocketAddr) -> Self {
55		Self::new(resolver, None)
56	}
57}
58
59impl<PH: Deref> OMDomainResolver<PH>
60where
61	PH::Target: DNSResolverMessageHandler,
62{
63	/// Creates a new [`OMDomainResolver`] given the [`SocketAddr`] of a DNS resolver listening on
64	/// TCP (e.g. 8.8.8.8:53, 1.1.1.1:53 or your local DNS resolver).
65	///
66	/// Uses `tokio`'s [`Handle::current`] to fetch the async runtime on which futures will be
67	/// spawned.
68	///
69	/// The optional `proof_handler` can be provided to pass proofs coming back to us to the
70	/// underlying handler. This is useful when this resolver is handling incoming resolution
71	/// requests but some other handler is making proof requests of remote nodes and wants to get
72	/// results.
73	pub fn new(resolver: SocketAddr, proof_handler: Option<PH>) -> Self {
74		Self::with_runtime(resolver, proof_handler, Some(Handle::current()))
75	}
76
77	/// Creates a new [`OMDomainResolver`] given the [`SocketAddr`] of a DNS resolver listening on
78	/// TCP (e.g. 8.8.8.8:53, 1.1.1.1:53 or your local DNS resolver) and a `tokio` runtime
79	/// [`Handle`] on which futures will be spawned. If no runtime is provided, `set_runtime` must
80	/// be called before any queries will be handled.
81	///
82	/// The optional `proof_handler` can be provided to pass proofs coming back to us to the
83	/// underlying handler. This is useful when this resolver is handling incoming resolution
84	/// requests but some other handler is making proof requests of remote nodes and wants to get
85	/// results.
86	pub fn with_runtime(
87		resolver: SocketAddr, proof_handler: Option<PH>, runtime_handle: Option<Handle>,
88	) -> Self {
89		Self {
90			state: Arc::new(OMResolverState {
91				resolver,
92				pending_replies: Mutex::new(Vec::new()),
93				pending_query_count: AtomicUsize::new(0),
94			}),
95			proof_handler,
96			runtime_handle: Mutex::new(runtime_handle),
97		}
98	}
99
100	/// Sets the runtime on which futures will be spawned.
101	pub fn set_runtime(&self, runtime_handle: Handle) {
102		*self.runtime_handle.lock().unwrap() = Some(runtime_handle);
103	}
104}
105
106impl<PH: Deref> DNSResolverMessageHandler for OMDomainResolver<PH>
107where
108	PH::Target: DNSResolverMessageHandler,
109{
110	fn handle_dnssec_proof(&self, proof: DNSSECProof, context: DNSResolverContext) {
111		if let Some(proof_handler) = &self.proof_handler {
112			proof_handler.handle_dnssec_proof(proof, context);
113		}
114	}
115
116	fn handle_dnssec_query(
117		&self, q: DNSSECQuery, responder_opt: Option<Responder>,
118	) -> Option<(DNSResolverMessage, ResponseInstruction)> {
119		let responder = match responder_opt {
120			Some(responder) => responder,
121			None => return None,
122		};
123		let runtime = if let Some(runtime) = self.runtime_handle.lock().unwrap().clone() {
124			runtime
125		} else {
126			return None;
127		};
128		if self.state.pending_query_count.fetch_add(1, Ordering::Relaxed) > MAX_PENDING_RESPONSES {
129			self.state.pending_query_count.fetch_sub(1, Ordering::Relaxed);
130			return None;
131		}
132		let us = Arc::clone(&self.state);
133		runtime.spawn(async move {
134			if let Ok((proof, _ttl)) = build_txt_proof_async(us.resolver, &q.0).await {
135				let contents = DNSResolverMessage::DNSSECProof(DNSSECProof { name: q.0, proof });
136				let instructions = responder.respond().into_instructions();
137				us.pending_replies.lock().unwrap().push((contents, instructions));
138				us.pending_query_count.fetch_sub(1, Ordering::Relaxed);
139			}
140		});
141		None
142	}
143
144	fn provided_node_features(&self) -> NodeFeatures {
145		let mut features = NodeFeatures::empty();
146		features.set_dns_resolution_optional();
147		features
148	}
149
150	fn release_pending_messages(&self) -> Vec<(DNSResolverMessage, MessageSendInstructions)> {
151		core::mem::take(&mut *self.state.pending_replies.lock().unwrap())
152	}
153}
154
155#[cfg(test)]
156mod test {
157	use super::*;
158
159	use bitcoin::secp256k1::{self, PublicKey, Secp256k1};
160	use bitcoin::Block;
161
162	use lightning::blinded_path::message::{BlindedMessagePath, MessageContext};
163	use lightning::blinded_path::NodeIdLookUp;
164	use lightning::events::{Event, PaymentPurpose};
165	use lightning::ln::channelmanager::{PaymentId, Retry};
166	use lightning::ln::functional_test_utils::*;
167	use lightning::ln::msgs::{ChannelMessageHandler, Init, OnionMessageHandler};
168	use lightning::ln::peer_handler::IgnoringMessageHandler;
169	use lightning::onion_message::dns_resolution::{HumanReadableName, OMNameResolver};
170	use lightning::onion_message::messenger::{
171		AOnionMessenger, Destination, MessageRouter, OnionMessagePath, OnionMessenger,
172	};
173	use lightning::sign::{KeysManager, NodeSigner, Recipient};
174	use lightning::types::features::InitFeatures;
175	use lightning::types::payment::PaymentHash;
176	use lightning::util::logger::Logger;
177
178	use lightning::{
179		commitment_signed_dance, expect_payment_claimed, expect_pending_htlcs_forwardable,
180		get_htlc_update_msgs,
181	};
182
183	use std::ops::Deref;
184	use std::sync::Mutex;
185	use std::time::{Duration, Instant, SystemTime};
186
187	struct TestLogger {
188		node: &'static str,
189	}
190	impl Logger for TestLogger {
191		fn log(&self, record: lightning::util::logger::Record) {
192			eprintln!("{}: {}", self.node, record.args);
193		}
194	}
195	impl Deref for TestLogger {
196		type Target = TestLogger;
197		fn deref(&self) -> &TestLogger {
198			self
199		}
200	}
201
202	struct DummyNodeLookup {}
203	impl NodeIdLookUp for DummyNodeLookup {
204		fn next_node_id(&self, _: u64) -> Option<PublicKey> {
205			None
206		}
207	}
208	impl Deref for DummyNodeLookup {
209		type Target = DummyNodeLookup;
210		fn deref(&self) -> &DummyNodeLookup {
211			self
212		}
213	}
214
215	struct DirectlyConnectedRouter {}
216	impl MessageRouter for DirectlyConnectedRouter {
217		fn find_path(
218			&self, _sender: PublicKey, _peers: Vec<PublicKey>, destination: Destination,
219		) -> Result<OnionMessagePath, ()> {
220			Ok(OnionMessagePath {
221				destination,
222				first_node_addresses: None,
223				intermediate_nodes: Vec::new(),
224			})
225		}
226
227		fn create_blinded_paths<T: secp256k1::Signing + secp256k1::Verification>(
228			&self, recipient: PublicKey, context: MessageContext, _peers: Vec<PublicKey>,
229			secp_ctx: &Secp256k1<T>,
230		) -> Result<Vec<BlindedMessagePath>, ()> {
231			let keys = KeysManager::new(&[0; 32], 42, 43);
232			Ok(vec![BlindedMessagePath::one_hop(recipient, context, &keys, secp_ctx).unwrap()])
233		}
234	}
235	impl Deref for DirectlyConnectedRouter {
236		type Target = DirectlyConnectedRouter;
237		fn deref(&self) -> &DirectlyConnectedRouter {
238			self
239		}
240	}
241
242	struct URIResolver {
243		resolved_uri: Mutex<Option<(HumanReadableName, PaymentId, String)>>,
244		resolver: OMNameResolver,
245		pending_messages: Mutex<Vec<(DNSResolverMessage, MessageSendInstructions)>>,
246	}
247	impl DNSResolverMessageHandler for URIResolver {
248		fn handle_dnssec_query(
249			&self, _: DNSSECQuery, _: Option<Responder>,
250		) -> Option<(DNSResolverMessage, ResponseInstruction)> {
251			panic!();
252		}
253
254		fn handle_dnssec_proof(&self, msg: DNSSECProof, context: DNSResolverContext) {
255			let mut proof = self.resolver.handle_dnssec_proof_for_uri(msg, context).unwrap();
256			assert_eq!(proof.0.len(), 1);
257			let payment = proof.0.pop().unwrap();
258			let mut result = Some((payment.0, payment.1, proof.1));
259			core::mem::swap(&mut *self.resolved_uri.lock().unwrap(), &mut result);
260			assert!(result.is_none());
261		}
262		fn release_pending_messages(&self) -> Vec<(DNSResolverMessage, MessageSendInstructions)> {
263			core::mem::take(&mut *self.pending_messages.lock().unwrap())
264		}
265	}
266
267	fn create_resolver() -> (impl AOnionMessenger, PublicKey) {
268		let resolver_keys = Arc::new(KeysManager::new(&[99; 32], 42, 43));
269		let resolver_logger = TestLogger { node: "resolver" };
270		let resolver = OMDomainResolver::ignoring_incoming_proofs("8.8.8.8:53".parse().unwrap());
271		let resolver = Arc::new(resolver);
272		(
273			OnionMessenger::new(
274				Arc::clone(&resolver_keys),
275				Arc::clone(&resolver_keys),
276				resolver_logger,
277				DummyNodeLookup {},
278				DirectlyConnectedRouter {},
279				IgnoringMessageHandler {},
280				IgnoringMessageHandler {},
281				Arc::clone(&resolver),
282				IgnoringMessageHandler {},
283			),
284			resolver_keys.get_node_id(Recipient::Node).unwrap(),
285		)
286	}
287
288	fn get_om_init() -> Init {
289		let mut init_msg =
290			Init { features: InitFeatures::empty(), networks: None, remote_network_address: None };
291		init_msg.features.set_onion_messages_optional();
292		init_msg
293	}
294
295	#[tokio::test]
296	async fn resolution_test() {
297		let secp_ctx = Secp256k1::new();
298
299		let (resolver_messenger, resolver_id) = create_resolver();
300
301		let resolver_dest = Destination::Node(resolver_id);
302		let now = SystemTime::now().duration_since(SystemTime::UNIX_EPOCH).unwrap().as_secs();
303
304		let payment_id = PaymentId([42; 32]);
305		let name = HumanReadableName::from_encoded("matt@mattcorallo.com").unwrap();
306
307		let payer_keys = Arc::new(KeysManager::new(&[2; 32], 42, 43));
308		let payer_logger = TestLogger { node: "payer" };
309		let payer_id = payer_keys.get_node_id(Recipient::Node).unwrap();
310		let payer = Arc::new(URIResolver {
311			resolved_uri: Mutex::new(None),
312			resolver: OMNameResolver::new(now as u32, 1),
313			pending_messages: Mutex::new(Vec::new()),
314		});
315		let payer_messenger = Arc::new(OnionMessenger::new(
316			Arc::clone(&payer_keys),
317			Arc::clone(&payer_keys),
318			payer_logger,
319			DummyNodeLookup {},
320			DirectlyConnectedRouter {},
321			IgnoringMessageHandler {},
322			IgnoringMessageHandler {},
323			Arc::clone(&payer),
324			IgnoringMessageHandler {},
325		));
326
327		let init_msg = get_om_init();
328		payer_messenger.peer_connected(resolver_id, &init_msg, true).unwrap();
329		resolver_messenger.get_om().peer_connected(payer_id, &init_msg, false).unwrap();
330
331		let (msg, context) =
332			payer.resolver.resolve_name(payment_id, name.clone(), &*payer_keys).unwrap();
333		let query_context = MessageContext::DNSResolver(context);
334		let reply_path =
335			BlindedMessagePath::one_hop(payer_id, query_context, &*payer_keys, &secp_ctx).unwrap();
336		payer.pending_messages.lock().unwrap().push((
337			DNSResolverMessage::DNSSECQuery(msg),
338			MessageSendInstructions::WithSpecifiedReplyPath {
339				destination: resolver_dest,
340				reply_path,
341			},
342		));
343
344		let query = payer_messenger.next_onion_message_for_peer(resolver_id).unwrap();
345		resolver_messenger.get_om().handle_onion_message(payer_id, &query);
346
347		assert!(resolver_messenger.get_om().next_onion_message_for_peer(payer_id).is_none());
348		let start = Instant::now();
349		let response = loop {
350			tokio::time::sleep(Duration::from_millis(10)).await;
351			if let Some(msg) = resolver_messenger.get_om().next_onion_message_for_peer(payer_id) {
352				break msg;
353			}
354			assert!(start.elapsed() < Duration::from_secs(10), "Resolution took too long");
355		};
356
357		payer_messenger.handle_onion_message(resolver_id, &response);
358		let resolution = payer.resolved_uri.lock().unwrap().take().unwrap();
359		assert_eq!(resolution.0, name);
360		assert_eq!(resolution.1, payment_id);
361		assert!(resolution.2[.."bitcoin:".len()].eq_ignore_ascii_case("bitcoin:"));
362	}
363
364	#[tokio::test]
365	async fn end_to_end_test() {
366		let chanmon_cfgs = create_chanmon_cfgs(2);
367		let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
368		let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
369		let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
370
371		create_announced_chan_between_nodes(&nodes, 0, 1);
372
373		// The DNSSEC validation will only work with the current time, so set the time on the
374		// resolver.
375		let now = SystemTime::now().duration_since(SystemTime::UNIX_EPOCH).unwrap().as_secs();
376		let block = Block {
377			header: create_dummy_header(nodes[0].best_block_hash(), now as u32),
378			txdata: Vec::new(),
379		};
380		connect_block(&nodes[0], &block);
381		connect_block(&nodes[1], &block);
382
383		let payer_id = nodes[0].node.get_our_node_id();
384		let payee_id = nodes[1].node.get_our_node_id();
385
386		let (resolver_messenger, resolver_id) = create_resolver();
387		let init_msg = get_om_init();
388		nodes[0].onion_messenger.peer_connected(resolver_id, &init_msg, true).unwrap();
389		resolver_messenger.get_om().peer_connected(payer_id, &init_msg, false).unwrap();
390
391		let name = HumanReadableName::from_encoded("matt@mattcorallo.com").unwrap();
392
393		// When we get the proof back, override its contents to an offer from nodes[1]
394		let bs_offer = nodes[1].node.create_offer_builder(None).unwrap().build().unwrap();
395		nodes[0]
396			.node
397			.testing_dnssec_proof_offer_resolution_override
398			.lock()
399			.unwrap()
400			.insert(name.clone(), bs_offer);
401
402		let payment_id = PaymentId([42; 32]);
403		let resolvers = vec![Destination::Node(resolver_id)];
404		let retry = Retry::Attempts(0);
405		let amt = 42_000;
406		nodes[0]
407			.node
408			.pay_for_offer_from_human_readable_name(name, amt, payment_id, retry, None, resolvers)
409			.unwrap();
410
411		let query = nodes[0].onion_messenger.next_onion_message_for_peer(resolver_id).unwrap();
412		resolver_messenger.get_om().handle_onion_message(payer_id, &query);
413
414		assert!(resolver_messenger.get_om().next_onion_message_for_peer(payer_id).is_none());
415		let start = Instant::now();
416		let response = loop {
417			tokio::time::sleep(Duration::from_millis(10)).await;
418			if let Some(msg) = resolver_messenger.get_om().next_onion_message_for_peer(payer_id) {
419				break msg;
420			}
421			assert!(start.elapsed() < Duration::from_secs(10), "Resolution took too long");
422		};
423
424		nodes[0].onion_messenger.handle_onion_message(resolver_id, &response);
425
426		let invreq = nodes[0].onion_messenger.next_onion_message_for_peer(payee_id).unwrap();
427		nodes[1].onion_messenger.handle_onion_message(payer_id, &invreq);
428
429		let inv = nodes[1].onion_messenger.next_onion_message_for_peer(payer_id).unwrap();
430		nodes[0].onion_messenger.handle_onion_message(payee_id, &inv);
431
432		check_added_monitors(&nodes[0], 1);
433		let updates = get_htlc_update_msgs!(nodes[0], payee_id);
434		nodes[1].node.handle_update_add_htlc(payer_id, &updates.update_add_htlcs[0]);
435		commitment_signed_dance!(nodes[1], nodes[0], updates.commitment_signed, false);
436		expect_pending_htlcs_forwardable!(nodes[1]);
437
438		let claimable_events = nodes[1].node.get_and_clear_pending_events();
439		assert_eq!(claimable_events.len(), 1);
440		let our_payment_preimage;
441		if let Event::PaymentClaimable { purpose, amount_msat, .. } = &claimable_events[0] {
442			assert_eq!(*amount_msat, amt);
443			if let PaymentPurpose::Bolt12OfferPayment { payment_preimage, .. } = purpose {
444				our_payment_preimage = payment_preimage.unwrap();
445				nodes[1].node.claim_funds(our_payment_preimage);
446				let payment_hash: PaymentHash = our_payment_preimage.into();
447				expect_payment_claimed!(nodes[1], payment_hash, amt);
448			} else {
449				panic!();
450			}
451		} else {
452			panic!();
453		}
454
455		check_added_monitors(&nodes[1], 1);
456		let updates = get_htlc_update_msgs!(nodes[1], payer_id);
457		nodes[0].node.handle_update_fulfill_htlc(payee_id, &updates.update_fulfill_htlcs[0]);
458		commitment_signed_dance!(nodes[0], nodes[1], updates.commitment_signed, false);
459
460		expect_payment_sent(&nodes[0], our_payment_preimage, None, true, true);
461	}
462}