1 // This file is Copyright its original authors, visible in version control
4 // This file is licensed under the Apache License, Version 2.0 <LICENSE-APACHE
5 // or http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
6 // <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your option.
7 // You may not use this file except in accordance with one or both of these
10 //! Tests of the onion error messages/codes which are returned when routing a payment fails.
11 //! These tests work by standing up full nodes and route payments across the network, checking the
12 //! returned errors decode to the correct thing.
14 use crate::chain::channelmonitor::{CLTV_CLAIM_BUFFER, LATENCY_GRACE_PERIOD_BLOCKS};
15 use crate::sign::{EntropySource, NodeSigner, Recipient};
16 use crate::events::{Event, HTLCDestination, MessageSendEvent, MessageSendEventsProvider, PathFailure, PaymentFailureReason};
17 use crate::ln::types::{PaymentHash, PaymentSecret};
18 use crate::ln::channel::EXPIRE_PREV_CONFIG_TICKS;
19 use crate::ln::channelmanager::{HTLCForwardInfo, FailureCode, CLTV_FAR_FAR_AWAY, DISABLE_GOSSIP_TICKS, MIN_CLTV_EXPIRY_DELTA, PendingAddHTLCInfo, PendingHTLCInfo, PendingHTLCRouting, PaymentId, RecipientOnionFields};
20 use crate::ln::onion_utils;
21 use crate::routing::gossip::{NetworkUpdate, RoutingFees};
22 use crate::routing::router::{get_route, PaymentParameters, Route, RouteParameters, RouteHint, RouteHintHop};
23 use crate::ln::features::{InitFeatures, Bolt11InvoiceFeatures};
24 use crate::ln::functional_test_utils::test_default_channel_config;
26 use crate::ln::msgs::{ChannelMessageHandler, ChannelUpdate, OutboundTrampolinePayload};
27 use crate::ln::wire::Encode;
28 use crate::util::ser::{Writeable, Writer, BigSize};
29 use crate::util::test_utils;
30 use crate::util::config::{UserConfig, ChannelConfig, MaxDustHTLCExposure};
31 use crate::util::errors::APIError;
33 use bitcoin::blockdata::constants::ChainHash;
34 use bitcoin::hashes::{Hash, HashEngine};
35 use bitcoin::hashes::hmac::{Hmac, HmacEngine};
36 use bitcoin::hashes::sha256::Hash as Sha256;
38 use bitcoin::secp256k1;
39 use bitcoin::secp256k1::{PublicKey, Secp256k1, SecretKey};
42 use crate::prelude::*;
43 use bitcoin::hashes::hex::FromHex;
45 use crate::ln::functional_test_utils::*;
47 fn run_onion_failure_test<F1,F2>(_name: &str, test_case: u8, nodes: &Vec<Node>, route: &Route, payment_hash: &PaymentHash, payment_secret: &PaymentSecret, callback_msg: F1, callback_node: F2, expected_retryable: bool, expected_error_code: Option<u16>, expected_channel_update: Option<NetworkUpdate>, expected_short_channel_id: Option<u64>)
48 where F1: for <'a> FnMut(&'a mut msgs::UpdateAddHTLC),
51 run_onion_failure_test_with_fail_intercept(_name, test_case, nodes, route, payment_hash, payment_secret, callback_msg, |_|{}, callback_node, expected_retryable, expected_error_code, expected_channel_update, expected_short_channel_id);
55 // 0: node1 fails backward
56 // 1: final node fails backward
57 // 2: payment completed but the user rejects the payment
58 // 3: final node fails backward (but tamper onion payloads from node0)
59 // 100: trigger error in the intermediate node and tamper returning fail_htlc
60 // 200: trigger error in the final node and tamper returning fail_htlc
61 fn run_onion_failure_test_with_fail_intercept<F1,F2,F3>(
62 _name: &str, test_case: u8, nodes: &Vec<Node>, route: &Route, payment_hash: &PaymentHash,
63 payment_secret: &PaymentSecret, mut callback_msg: F1, mut callback_fail: F2,
64 mut callback_node: F3, expected_retryable: bool, expected_error_code: Option<u16>,
65 expected_channel_update: Option<NetworkUpdate>, expected_short_channel_id: Option<u64>
67 where F1: for <'a> FnMut(&'a mut msgs::UpdateAddHTLC),
68 F2: for <'a> FnMut(&'a mut msgs::UpdateFailHTLC),
71 macro_rules! expect_event {
72 ($node: expr, $event_type: path) => {{
73 let events = $node.node.get_and_clear_pending_events();
74 assert_eq!(events.len(), 1);
76 $event_type { .. } => {},
77 _ => panic!("Unexpected event"),
82 macro_rules! expect_htlc_forward {
84 expect_event!($node, Event::PendingHTLCsForwardable);
85 $node.node.process_pending_htlc_forwards();
89 // 0 ~~> 2 send payment
90 let payment_id = PaymentId(nodes[0].keys_manager.backing.get_secure_random_bytes());
91 nodes[0].node.send_payment_with_route(&route, *payment_hash,
92 RecipientOnionFields::secret_only(*payment_secret), payment_id).unwrap();
93 check_added_monitors!(nodes[0], 1);
94 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
95 // temper update_add (0 => 1)
96 let mut update_add_0 = update_0.update_add_htlcs[0].clone();
97 if test_case == 0 || test_case == 3 || test_case == 100 {
98 callback_msg(&mut update_add_0);
101 // 0 => 1 update_add & CS
102 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add_0);
103 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
105 let update_1_0 = match test_case {
106 0|100 => { // intermediate node failure; fail backward to 0
107 let update_1_0 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
108 assert!(update_1_0.update_fail_htlcs.len()+update_1_0.update_fail_malformed_htlcs.len()==1 && (update_1_0.update_fail_htlcs.len()==1 || update_1_0.update_fail_malformed_htlcs.len()==1));
111 1|2|3|200 => { // final node failure; forwarding to 2
112 assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
114 if test_case != 200 {
117 expect_htlc_forward!(&nodes[1]);
119 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[2].node.get_our_node_id());
120 check_added_monitors!(&nodes[1], 1);
121 assert_eq!(update_1.update_add_htlcs.len(), 1);
122 // tamper update_add (1 => 2)
123 let mut update_add_1 = update_1.update_add_htlcs[0].clone();
124 if test_case != 3 && test_case != 200 {
125 callback_msg(&mut update_add_1);
129 nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &update_add_1);
130 commitment_signed_dance!(nodes[2], nodes[1], update_1.commitment_signed, false, true);
132 if test_case == 2 || test_case == 200 {
133 expect_htlc_forward!(&nodes[2]);
134 expect_event!(&nodes[2], Event::PaymentClaimable);
136 expect_pending_htlcs_forwardable_and_htlc_handling_failed!(nodes[2], vec![HTLCDestination::FailedPayment { payment_hash: payment_hash.clone() }]);
139 let update_2_1 = get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
140 if test_case == 2 || test_case == 200 {
141 check_added_monitors!(&nodes[2], 1);
143 assert!(update_2_1.update_fail_htlcs.len() == 1);
145 let mut fail_msg = update_2_1.update_fail_htlcs[0].clone();
146 if test_case == 200 {
147 callback_fail(&mut fail_msg);
151 nodes[1].node.handle_update_fail_htlc(&nodes[2].node.get_our_node_id(), &fail_msg);
152 commitment_signed_dance!(nodes[1], nodes[2], update_2_1.commitment_signed, true);
154 // backward fail on 1
155 let update_1_0 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
156 assert!(update_1_0.update_fail_htlcs.len() == 1);
162 // 1 => 0 commitment_signed_dance
163 if update_1_0.update_fail_htlcs.len() > 0 {
164 let mut fail_msg = update_1_0.update_fail_htlcs[0].clone();
165 if test_case == 100 {
166 callback_fail(&mut fail_msg);
168 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
170 nodes[0].node.handle_update_fail_malformed_htlc(&nodes[1].node.get_our_node_id(), &update_1_0.update_fail_malformed_htlcs[0]);
173 commitment_signed_dance!(nodes[0], nodes[1], update_1_0.commitment_signed, false, true);
175 let events = nodes[0].node.get_and_clear_pending_events();
176 assert_eq!(events.len(), 2);
177 if let &Event::PaymentPathFailed { ref payment_failed_permanently, ref short_channel_id, ref error_code, failure: PathFailure::OnPath { ref network_update }, .. } = &events[0] {
178 assert_eq!(*payment_failed_permanently, !expected_retryable);
179 assert_eq!(*error_code, expected_error_code);
180 if expected_channel_update.is_some() {
181 match network_update {
182 Some(update) => match update {
183 &NetworkUpdate::ChannelUpdateMessage { .. } => {
184 if let NetworkUpdate::ChannelUpdateMessage { .. } = expected_channel_update.unwrap() {} else {
185 panic!("channel_update not found!");
188 &NetworkUpdate::ChannelFailure { ref short_channel_id, ref is_permanent } => {
189 if let NetworkUpdate::ChannelFailure { short_channel_id: ref expected_short_channel_id, is_permanent: ref expected_is_permanent } = expected_channel_update.unwrap() {
190 assert!(*short_channel_id == *expected_short_channel_id);
191 assert!(*is_permanent == *expected_is_permanent);
193 panic!("Unexpected message event");
196 &NetworkUpdate::NodeFailure { ref node_id, ref is_permanent } => {
197 if let NetworkUpdate::NodeFailure { node_id: ref expected_node_id, is_permanent: ref expected_is_permanent } = expected_channel_update.unwrap() {
198 assert!(*node_id == *expected_node_id);
199 assert!(*is_permanent == *expected_is_permanent);
201 panic!("Unexpected message event");
205 None => panic!("Expected channel update"),
208 assert!(network_update.is_none());
210 if let Some(expected_short_channel_id) = expected_short_channel_id {
211 match short_channel_id {
212 Some(short_channel_id) => assert_eq!(*short_channel_id, expected_short_channel_id),
213 None => panic!("Expected short channel id"),
216 assert!(short_channel_id.is_none());
219 panic!("Unexpected event");
222 Event::PaymentFailed { payment_hash: ev_payment_hash, payment_id: ev_payment_id, reason: ref ev_reason } => {
223 assert_eq!(*payment_hash, ev_payment_hash);
224 assert_eq!(payment_id, ev_payment_id);
225 assert_eq!(if expected_retryable {
226 PaymentFailureReason::RetriesExhausted
228 PaymentFailureReason::RecipientRejected
229 }, ev_reason.unwrap());
231 _ => panic!("Unexpected second event"),
235 impl msgs::ChannelUpdate {
236 fn dummy(short_channel_id: u64) -> msgs::ChannelUpdate {
237 use bitcoin::hash_types::BlockHash;
238 use bitcoin::secp256k1::ffi::Signature as FFISignature;
239 use bitcoin::secp256k1::ecdsa::Signature;
240 msgs::ChannelUpdate {
241 signature: Signature::from(unsafe { FFISignature::new() }),
242 contents: msgs::UnsignedChannelUpdate {
243 chain_hash: ChainHash::from(BlockHash::hash(&vec![0u8][..]).as_ref()),
247 cltv_expiry_delta: 0,
248 htlc_minimum_msat: 0,
249 htlc_maximum_msat: msgs::MAX_VALUE_MSAT,
251 fee_proportional_millionths: 0,
258 struct BogusOnionHopData {
261 impl BogusOnionHopData {
262 fn new(orig: msgs::OutboundOnionPayload) -> Self {
263 Self { data: orig.encode() }
266 impl Writeable for BogusOnionHopData {
267 fn write<W: Writer>(&self, writer: &mut W) -> Result<(), io::Error> {
268 writer.write_all(&self.data[..])
272 const BADONION: u16 = 0x8000;
273 const PERM: u16 = 0x4000;
274 const NODE: u16 = 0x2000;
275 const UPDATE: u16 = 0x1000;
278 fn test_fee_failures() {
279 // Tests that the fee required when forwarding remains consistent over time. This was
280 // previously broken, with forwarding fees floating based on the fee estimator at the time of
283 // When this test was written, the default base fee floated based on the HTLC count.
284 // It is now fixed, so we simply set the fee to the expected value here.
285 let mut config = test_default_channel_config();
286 config.channel_config.forwarding_fee_base_msat = 196;
288 let chanmon_cfgs = create_chanmon_cfgs(3);
289 let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
290 let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[Some(config), Some(config), Some(config)]);
291 let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
292 let channels = [create_announced_chan_between_nodes(&nodes, 0, 1), create_announced_chan_between_nodes(&nodes, 1, 2)];
295 let (route, payment_hash_success, payment_preimage_success, payment_secret_success) = get_route_and_payment_hash!(nodes[0], nodes[2], 40_000);
296 nodes[0].node.send_payment_with_route(&route, payment_hash_success,
297 RecipientOnionFields::secret_only(payment_secret_success), PaymentId(payment_hash_success.0)).unwrap();
298 check_added_monitors!(nodes[0], 1);
299 pass_along_route(&nodes[0], &[&[&nodes[1], &nodes[2]]], 40_000, payment_hash_success, payment_secret_success);
300 claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage_success);
302 // If the hop gives fee_insufficient but enough fees were provided, then the previous hop
303 // malleated the payment before forwarding, taking funds when they shouldn't have.
304 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[2]);
305 let short_channel_id = channels[0].0.contents.short_channel_id;
306 run_onion_failure_test("fee_insufficient", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| {
307 msg.amount_msat -= 1;
308 }, || {}, true, Some(UPDATE|12), Some(NetworkUpdate::ChannelFailure { short_channel_id, is_permanent: true}), Some(short_channel_id));
310 // In an earlier version, we spuriously failed to forward payments if the expected feerate
311 // changed between the channel open and the payment.
313 let mut feerate_lock = chanmon_cfgs[1].fee_estimator.sat_per_kw.lock().unwrap();
317 let (payment_preimage_success, payment_hash_success, payment_secret_success) = get_payment_preimage_hash!(nodes[2]);
318 nodes[0].node.send_payment_with_route(&route, payment_hash_success,
319 RecipientOnionFields::secret_only(payment_secret_success), PaymentId(payment_hash_success.0)).unwrap();
320 check_added_monitors!(nodes[0], 1);
321 pass_along_route(&nodes[0], &[&[&nodes[1], &nodes[2]]], 40_000, payment_hash_success, payment_secret_success);
322 claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage_success);
326 fn test_onion_failure() {
327 // When we check for amount_below_minimum below, we want to test that we're using the *right*
328 // amount, thus we need different htlc_minimum_msat values. We set node[2]'s htlc_minimum_msat
329 // to 2000, which is above the default value of 1000 set in create_node_chanmgrs.
330 // This exposed a previous bug because we were using the wrong value all the way down in
331 // Channel::get_counterparty_htlc_minimum_msat().
332 let mut node_2_cfg: UserConfig = test_default_channel_config();
333 node_2_cfg.channel_handshake_config.our_htlc_minimum_msat = 2000;
334 node_2_cfg.channel_handshake_config.announced_channel = true;
335 node_2_cfg.channel_handshake_limits.force_announced_channel_preference = false;
337 // When this test was written, the default base fee floated based on the HTLC count.
338 // It is now fixed, so we simply set the fee to the expected value here.
339 let mut config = test_default_channel_config();
340 config.channel_config.forwarding_fee_base_msat = 196;
342 let chanmon_cfgs = create_chanmon_cfgs(3);
343 let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
344 let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[Some(config), Some(config), Some(node_2_cfg)]);
345 let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
346 let channels = [create_announced_chan_between_nodes(&nodes, 0, 1), create_announced_chan_between_nodes(&nodes, 1, 2)];
347 for node in nodes.iter() {
348 *node.keys_manager.override_random_bytes.lock().unwrap() = Some([3; 32]);
350 let (route, payment_hash, _, payment_secret) = get_route_and_payment_hash!(nodes[0], nodes[2], 40000);
352 send_payment(&nodes[0], &vec!(&nodes[1], &nodes[2])[..], 40000);
354 // intermediate node failure
355 let short_channel_id = channels[1].0.contents.short_channel_id;
356 run_onion_failure_test("invalid_realm", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| {
357 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
358 let cur_height = nodes[0].best_block_info().1 + 1;
359 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
360 let (mut onion_payloads, _htlc_msat, _htlc_cltv) = onion_utils::build_onion_payloads(
361 &route.paths[0], 40000, RecipientOnionFields::spontaneous_empty(), cur_height, &None).unwrap();
362 let mut new_payloads = Vec::new();
363 for payload in onion_payloads.drain(..) {
364 new_payloads.push(BogusOnionHopData::new(payload));
366 // break the first (non-final) hop payload by swapping the realm (0) byte for a byte
367 // describing a length-1 TLV payload, which is obviously bogus.
368 new_payloads[0].data[0] = 1;
369 msg.onion_routing_packet = onion_utils::construct_onion_packet_with_writable_hopdata(new_payloads, onion_keys, [0; 32], &payment_hash).unwrap();
370 }, ||{}, true, Some(PERM|22), Some(NetworkUpdate::ChannelFailure{short_channel_id, is_permanent: true}), Some(short_channel_id));
372 // final node failure
373 let short_channel_id = channels[1].0.contents.short_channel_id;
374 run_onion_failure_test("invalid_realm", 3, &nodes, &route, &payment_hash, &payment_secret, |msg| {
375 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
376 let cur_height = nodes[0].best_block_info().1 + 1;
377 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
378 let (mut onion_payloads, _htlc_msat, _htlc_cltv) = onion_utils::build_onion_payloads(
379 &route.paths[0], 40000, RecipientOnionFields::spontaneous_empty(), cur_height, &None).unwrap();
380 let mut new_payloads = Vec::new();
381 for payload in onion_payloads.drain(..) {
382 new_payloads.push(BogusOnionHopData::new(payload));
384 // break the last-hop payload by swapping the realm (0) byte for a byte describing a
385 // length-1 TLV payload, which is obviously bogus.
386 new_payloads[1].data[0] = 1;
387 msg.onion_routing_packet = onion_utils::construct_onion_packet_with_writable_hopdata(new_payloads, onion_keys, [0; 32], &payment_hash).unwrap();
388 }, ||{}, false, Some(PERM|22), Some(NetworkUpdate::ChannelFailure{short_channel_id, is_permanent: true}), Some(short_channel_id));
390 // the following three with run_onion_failure_test_with_fail_intercept() test only the origin node
391 // receiving simulated fail messages
392 // intermediate node failure
393 run_onion_failure_test_with_fail_intercept("temporary_node_failure", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
395 msg.amount_msat -= 1;
397 // and tamper returning error message
398 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
399 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
400 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), NODE|2, &[0;0]);
401 }, ||{}, true, Some(NODE|2), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[0].pubkey, is_permanent: false}), Some(route.paths[0].hops[0].short_channel_id));
403 // final node failure
404 run_onion_failure_test_with_fail_intercept("temporary_node_failure", 200, &nodes, &route, &payment_hash, &payment_secret, |_msg| {}, |msg| {
405 // and tamper returning error message
406 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
407 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
408 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[1].shared_secret.as_ref(), NODE|2, &[0;0]);
410 nodes[2].node.fail_htlc_backwards(&payment_hash);
411 }, true, Some(NODE|2), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[1].pubkey, is_permanent: false}), Some(route.paths[0].hops[1].short_channel_id));
412 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[2]);
414 // intermediate node failure
415 run_onion_failure_test_with_fail_intercept("permanent_node_failure", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
416 msg.amount_msat -= 1;
418 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
419 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
420 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), PERM|NODE|2, &[0;0]);
421 }, ||{}, true, Some(PERM|NODE|2), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[0].pubkey, is_permanent: true}), Some(route.paths[0].hops[0].short_channel_id));
423 // final node failure
424 run_onion_failure_test_with_fail_intercept("permanent_node_failure", 200, &nodes, &route, &payment_hash, &payment_secret, |_msg| {}, |msg| {
425 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
426 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
427 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[1].shared_secret.as_ref(), PERM|NODE|2, &[0;0]);
429 nodes[2].node.fail_htlc_backwards(&payment_hash);
430 }, false, Some(PERM|NODE|2), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[1].pubkey, is_permanent: true}), Some(route.paths[0].hops[1].short_channel_id));
431 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[2]);
433 // intermediate node failure
434 run_onion_failure_test_with_fail_intercept("required_node_feature_missing", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
435 msg.amount_msat -= 1;
437 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
438 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
439 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), PERM|NODE|3, &[0;0]);
441 nodes[2].node.fail_htlc_backwards(&payment_hash);
442 }, true, Some(PERM|NODE|3), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[0].pubkey, is_permanent: true}), Some(route.paths[0].hops[0].short_channel_id));
444 // final node failure
445 run_onion_failure_test_with_fail_intercept("required_node_feature_missing", 200, &nodes, &route, &payment_hash, &payment_secret, |_msg| {}, |msg| {
446 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
447 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
448 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[1].shared_secret.as_ref(), PERM|NODE|3, &[0;0]);
450 nodes[2].node.fail_htlc_backwards(&payment_hash);
451 }, false, Some(PERM|NODE|3), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[1].pubkey, is_permanent: true}), Some(route.paths[0].hops[1].short_channel_id));
452 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[2]);
454 // Our immediate peer sent UpdateFailMalformedHTLC because it couldn't understand the onion in
455 // the UpdateAddHTLC that we sent.
456 let short_channel_id = channels[0].0.contents.short_channel_id;
457 run_onion_failure_test("invalid_onion_version", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| { msg.onion_routing_packet.version = 1; }, ||{}, true,
458 Some(BADONION|PERM|4), None, Some(short_channel_id));
460 run_onion_failure_test("invalid_onion_hmac", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| { msg.onion_routing_packet.hmac = [3; 32]; }, ||{}, true,
461 Some(BADONION|PERM|5), None, Some(short_channel_id));
463 run_onion_failure_test("invalid_onion_key", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| { msg.onion_routing_packet.public_key = Err(secp256k1::Error::InvalidPublicKey);}, ||{}, true,
464 Some(BADONION|PERM|6), None, Some(short_channel_id));
466 let short_channel_id = channels[1].0.contents.short_channel_id;
467 let chan_update = ChannelUpdate::dummy(short_channel_id);
469 let mut err_data = Vec::new();
470 err_data.extend_from_slice(&(chan_update.serialized_length() as u16 + 2).to_be_bytes());
471 err_data.extend_from_slice(&ChannelUpdate::TYPE.to_be_bytes());
472 err_data.extend_from_slice(&chan_update.encode());
473 run_onion_failure_test_with_fail_intercept("temporary_channel_failure", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
474 msg.amount_msat -= 1;
476 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
477 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
478 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), UPDATE|7, &err_data);
479 }, ||{}, true, Some(UPDATE|7), Some(NetworkUpdate::ChannelUpdateMessage{msg: chan_update.clone()}), Some(short_channel_id));
481 // Check we can still handle onion failures that include channel updates without a type prefix
482 let err_data_without_type = chan_update.encode_with_len();
483 run_onion_failure_test_with_fail_intercept("temporary_channel_failure", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
484 msg.amount_msat -= 1;
486 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
487 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
488 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), UPDATE|7, &err_data_without_type);
489 }, ||{}, true, Some(UPDATE|7), Some(NetworkUpdate::ChannelUpdateMessage{msg: chan_update}), Some(short_channel_id));
491 let short_channel_id = channels[1].0.contents.short_channel_id;
492 run_onion_failure_test_with_fail_intercept("permanent_channel_failure", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
493 msg.amount_msat -= 1;
495 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
496 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
497 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), PERM|8, &[0;0]);
498 // short_channel_id from the processing node
499 }, ||{}, true, Some(PERM|8), Some(NetworkUpdate::ChannelFailure{short_channel_id, is_permanent: true}), Some(short_channel_id));
501 let short_channel_id = channels[1].0.contents.short_channel_id;
502 run_onion_failure_test_with_fail_intercept("required_channel_feature_missing", 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
503 msg.amount_msat -= 1;
505 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
506 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
507 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[0].shared_secret.as_ref(), PERM|9, &[0;0]);
508 // short_channel_id from the processing node
509 }, ||{}, true, Some(PERM|9), Some(NetworkUpdate::ChannelFailure{short_channel_id, is_permanent: true}), Some(short_channel_id));
511 let mut bogus_route = route.clone();
512 bogus_route.paths[0].hops[1].short_channel_id -= 1;
513 let short_channel_id = bogus_route.paths[0].hops[1].short_channel_id;
514 run_onion_failure_test("unknown_next_peer", 0, &nodes, &bogus_route, &payment_hash, &payment_secret, |_| {}, ||{}, true, Some(PERM|10),
515 Some(NetworkUpdate::ChannelFailure{short_channel_id, is_permanent:true}), Some(short_channel_id));
517 let short_channel_id = channels[1].0.contents.short_channel_id;
518 let amt_to_forward = nodes[1].node.per_peer_state.read().unwrap().get(&nodes[2].node.get_our_node_id())
519 .unwrap().lock().unwrap().channel_by_id.get(&channels[1].2).unwrap()
520 .context().get_counterparty_htlc_minimum_msat() - 1;
521 let mut bogus_route = route.clone();
522 let route_len = bogus_route.paths[0].hops.len();
523 bogus_route.paths[0].hops[route_len-1].fee_msat = amt_to_forward;
524 run_onion_failure_test("amount_below_minimum", 0, &nodes, &bogus_route, &payment_hash, &payment_secret, |_| {}, ||{}, true, Some(UPDATE|11), Some(NetworkUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy(short_channel_id)}), Some(short_channel_id));
526 // Clear pending payments so that the following positive test has the correct payment hash.
527 for node in nodes.iter() {
528 node.node.clear_pending_payments();
531 // Test a positive test-case with one extra msat, meeting the minimum.
532 bogus_route.paths[0].hops[route_len-1].fee_msat = amt_to_forward + 1;
533 let preimage = send_along_route(&nodes[0], bogus_route, &[&nodes[1], &nodes[2]], amt_to_forward+1).0;
534 claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], preimage);
536 let short_channel_id = channels[0].0.contents.short_channel_id;
537 run_onion_failure_test("fee_insufficient", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| {
538 msg.amount_msat -= 1;
539 }, || {}, true, Some(UPDATE|12), Some(NetworkUpdate::ChannelFailure { short_channel_id, is_permanent: true}), Some(short_channel_id));
541 let short_channel_id = channels[0].0.contents.short_channel_id;
542 run_onion_failure_test("incorrect_cltv_expiry", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| {
543 // need to violate: cltv_expiry - cltv_expiry_delta >= outgoing_cltv_value
544 msg.cltv_expiry -= 1;
545 }, || {}, true, Some(UPDATE|13), Some(NetworkUpdate::ChannelFailure { short_channel_id, is_permanent: true}), Some(short_channel_id));
547 let short_channel_id = channels[1].0.contents.short_channel_id;
548 run_onion_failure_test("expiry_too_soon", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| {
549 let height = msg.cltv_expiry - CLTV_CLAIM_BUFFER - LATENCY_GRACE_PERIOD_BLOCKS + 1;
550 connect_blocks(&nodes[0], height - nodes[0].best_block_info().1);
551 connect_blocks(&nodes[1], height - nodes[1].best_block_info().1);
552 connect_blocks(&nodes[2], height - nodes[2].best_block_info().1);
553 }, ||{}, true, Some(UPDATE|14), Some(NetworkUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy(short_channel_id)}), Some(short_channel_id));
555 run_onion_failure_test("unknown_payment_hash", 2, &nodes, &route, &payment_hash, &payment_secret, |_| {}, || {
556 nodes[2].node.fail_htlc_backwards(&payment_hash);
557 }, false, Some(PERM|15), None, None);
558 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[2]);
560 run_onion_failure_test("final_expiry_too_soon", 1, &nodes, &route, &payment_hash, &payment_secret, |msg| {
561 let height = msg.cltv_expiry - CLTV_CLAIM_BUFFER - LATENCY_GRACE_PERIOD_BLOCKS + 1;
562 connect_blocks(&nodes[0], height - nodes[0].best_block_info().1);
563 connect_blocks(&nodes[1], height - nodes[1].best_block_info().1);
564 connect_blocks(&nodes[2], height - nodes[2].best_block_info().1);
565 }, || {}, false, Some(0x4000 | 15), None, None);
567 run_onion_failure_test("final_incorrect_cltv_expiry", 1, &nodes, &route, &payment_hash, &payment_secret, |_| {}, || {
568 for (_, pending_forwards) in nodes[1].node.forward_htlcs.lock().unwrap().iter_mut() {
569 for f in pending_forwards.iter_mut() {
571 &mut HTLCForwardInfo::AddHTLC(PendingAddHTLCInfo { ref mut forward_info, .. }) =>
572 forward_info.outgoing_cltv_value -= 1,
577 }, true, Some(18), None, Some(channels[1].0.contents.short_channel_id));
579 run_onion_failure_test("final_incorrect_htlc_amount", 1, &nodes, &route, &payment_hash, &payment_secret, |_| {}, || {
580 // violate amt_to_forward > msg.amount_msat
581 for (_, pending_forwards) in nodes[1].node.forward_htlcs.lock().unwrap().iter_mut() {
582 for f in pending_forwards.iter_mut() {
584 &mut HTLCForwardInfo::AddHTLC(PendingAddHTLCInfo { ref mut forward_info, .. }) =>
585 forward_info.outgoing_amt_msat -= 1,
590 }, true, Some(19), None, Some(channels[1].0.contents.short_channel_id));
592 let short_channel_id = channels[1].0.contents.short_channel_id;
593 run_onion_failure_test("channel_disabled", 0, &nodes, &route, &payment_hash, &payment_secret, |_| {}, || {
594 // disconnect event to the channel between nodes[1] ~ nodes[2]
595 nodes[1].node.peer_disconnected(&nodes[2].node.get_our_node_id());
596 nodes[2].node.peer_disconnected(&nodes[1].node.get_our_node_id());
597 }, true, Some(UPDATE|7), Some(NetworkUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy(short_channel_id)}), Some(short_channel_id));
598 run_onion_failure_test("channel_disabled", 0, &nodes, &route, &payment_hash, &payment_secret, |_| {}, || {
599 // disconnect event to the channel between nodes[1] ~ nodes[2]
600 for _ in 0..DISABLE_GOSSIP_TICKS + 1 {
601 nodes[1].node.timer_tick_occurred();
602 nodes[2].node.timer_tick_occurred();
604 nodes[1].node.get_and_clear_pending_msg_events();
605 nodes[2].node.get_and_clear_pending_msg_events();
606 }, true, Some(UPDATE|20), Some(NetworkUpdate::ChannelUpdateMessage{msg: ChannelUpdate::dummy(short_channel_id)}), Some(short_channel_id));
607 reconnect_nodes(ReconnectArgs::new(&nodes[1], &nodes[2]));
609 run_onion_failure_test("expiry_too_far", 0, &nodes, &route, &payment_hash, &payment_secret, |msg| {
610 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
611 let mut route = route.clone();
612 let height = nodes[2].best_block_info().1;
613 route.paths[0].hops[1].cltv_expiry_delta += CLTV_FAR_FAR_AWAY + route.paths[0].hops[0].cltv_expiry_delta + 1;
614 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
615 let (onion_payloads, _, htlc_cltv) = onion_utils::build_onion_payloads(
616 &route.paths[0], 40000, RecipientOnionFields::spontaneous_empty(), height, &None).unwrap();
617 let onion_packet = onion_utils::construct_onion_packet(onion_payloads, onion_keys, [0; 32], &payment_hash).unwrap();
618 msg.cltv_expiry = htlc_cltv;
619 msg.onion_routing_packet = onion_packet;
620 }, ||{}, true, Some(21), Some(NetworkUpdate::NodeFailure{node_id: route.paths[0].hops[0].pubkey, is_permanent: true}), Some(route.paths[0].hops[0].short_channel_id));
622 run_onion_failure_test_with_fail_intercept("mpp_timeout", 200, &nodes, &route, &payment_hash, &payment_secret, |_msg| {}, |msg| {
623 // Tamper returning error message
624 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
625 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
626 msg.reason = onion_utils::build_first_hop_failure_packet(onion_keys[1].shared_secret.as_ref(), 23, &[0;0]);
628 nodes[2].node.fail_htlc_backwards(&payment_hash);
629 }, true, Some(23), None, None);
631 run_onion_failure_test_with_fail_intercept("bogus err packet with valid hmac", 200, &nodes,
632 &route, &payment_hash, &payment_secret, |_msg| {}, |msg| {
633 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
634 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
635 let mut decoded_err_packet = msgs::DecodedOnionErrorPacket {
640 let um = onion_utils::gen_um_from_shared_secret(&onion_keys[1].shared_secret.as_ref());
641 let mut hmac = HmacEngine::<Sha256>::new(&um);
642 hmac.input(&decoded_err_packet.encode()[32..]);
643 decoded_err_packet.hmac = Hmac::from_engine(hmac).to_byte_array();
644 msg.reason = onion_utils::encrypt_failure_packet(
645 &onion_keys[1].shared_secret.as_ref(), &decoded_err_packet.encode()[..])
646 }, || nodes[2].node.fail_htlc_backwards(&payment_hash), false, None,
647 Some(NetworkUpdate::NodeFailure { node_id: route.paths[0].hops[1].pubkey, is_permanent: true }),
648 Some(channels[1].0.contents.short_channel_id));
649 run_onion_failure_test_with_fail_intercept("0-length channel update in intermediate node UPDATE onion failure",
650 100, &nodes, &route, &payment_hash, &payment_secret, |msg| {
651 msg.amount_msat -= 1;
653 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
654 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
655 let mut decoded_err_packet = msgs::DecodedOnionErrorPacket {
657 0x10, 0x7, // UPDATE|7
658 0x0, 0x0 // 0-len channel update
660 pad: vec![0; 255 - 4 /* 4-byte error message */],
663 let um = onion_utils::gen_um_from_shared_secret(&onion_keys[0].shared_secret.as_ref());
664 let mut hmac = HmacEngine::<Sha256>::new(&um);
665 hmac.input(&decoded_err_packet.encode()[32..]);
666 decoded_err_packet.hmac = Hmac::from_engine(hmac).to_byte_array();
667 msg.reason = onion_utils::encrypt_failure_packet(
668 &onion_keys[0].shared_secret.as_ref(), &decoded_err_packet.encode()[..])
669 }, || {}, true, Some(0x1000|7),
670 Some(NetworkUpdate::ChannelFailure {
671 short_channel_id: channels[1].0.contents.short_channel_id,
674 Some(channels[1].0.contents.short_channel_id));
675 run_onion_failure_test_with_fail_intercept("0-length channel update in final node UPDATE onion failure",
676 200, &nodes, &route, &payment_hash, &payment_secret, |_msg| {}, |msg| {
677 let session_priv = SecretKey::from_slice(&[3; 32]).unwrap();
678 let onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
679 let mut decoded_err_packet = msgs::DecodedOnionErrorPacket {
681 0x10, 0x7, // UPDATE|7
682 0x0, 0x0 // 0-len channel update
684 pad: vec![0; 255 - 4 /* 4-byte error message */],
687 let um = onion_utils::gen_um_from_shared_secret(&onion_keys[1].shared_secret.as_ref());
688 let mut hmac = HmacEngine::<Sha256>::new(&um);
689 hmac.input(&decoded_err_packet.encode()[32..]);
690 decoded_err_packet.hmac = Hmac::from_engine(hmac).to_byte_array();
691 msg.reason = onion_utils::encrypt_failure_packet(
692 &onion_keys[1].shared_secret.as_ref(), &decoded_err_packet.encode()[..])
693 }, || nodes[2].node.fail_htlc_backwards(&payment_hash), true, Some(0x1000|7),
694 Some(NetworkUpdate::ChannelFailure {
695 short_channel_id: channels[1].0.contents.short_channel_id,
698 Some(channels[1].0.contents.short_channel_id));
702 fn test_overshoot_final_cltv() {
703 let chanmon_cfgs = create_chanmon_cfgs(3);
704 let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
705 let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None; 3]);
706 let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
707 create_announced_chan_between_nodes(&nodes, 0, 1);
708 create_announced_chan_between_nodes(&nodes, 1, 2);
709 let (route, payment_hash, payment_preimage, payment_secret) = get_route_and_payment_hash!(nodes[0], nodes[2], 40000);
711 let payment_id = PaymentId(nodes[0].keys_manager.backing.get_secure_random_bytes());
712 nodes[0].node.send_payment_with_route(&route, payment_hash, RecipientOnionFields::secret_only(payment_secret), payment_id).unwrap();
714 check_added_monitors!(nodes[0], 1);
715 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
716 let mut update_add_0 = update_0.update_add_htlcs[0].clone();
717 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add_0);
718 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
720 assert!(nodes[1].node.get_and_clear_pending_msg_events().is_empty());
721 for (_, pending_forwards) in nodes[1].node.forward_htlcs.lock().unwrap().iter_mut() {
722 for f in pending_forwards.iter_mut() {
724 &mut HTLCForwardInfo::AddHTLC(PendingAddHTLCInfo { ref mut forward_info, .. }) =>
725 forward_info.outgoing_cltv_value += 1,
730 expect_pending_htlcs_forwardable!(nodes[1]);
732 check_added_monitors!(&nodes[1], 1);
733 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[2].node.get_our_node_id());
734 let mut update_add_1 = update_1.update_add_htlcs[0].clone();
735 nodes[2].node.handle_update_add_htlc(&nodes[1].node.get_our_node_id(), &update_add_1);
736 commitment_signed_dance!(nodes[2], nodes[1], update_1.commitment_signed, false, true);
738 expect_pending_htlcs_forwardable!(nodes[2]);
739 expect_payment_claimable!(nodes[2], payment_hash, payment_secret, 40_000);
740 claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage);
743 fn do_test_onion_failure_stale_channel_update(announced_channel: bool) {
744 // Create a network of three nodes and two channels connecting them. We'll be updating the
745 // HTLC relay policy of the second channel, causing forwarding failures at the first hop.
746 let mut config = UserConfig::default();
747 config.channel_handshake_config.announced_channel = announced_channel;
748 config.channel_handshake_limits.force_announced_channel_preference = false;
749 config.accept_forwards_to_priv_channels = !announced_channel;
750 config.channel_config.max_dust_htlc_exposure = MaxDustHTLCExposure::FeeRateMultiplier(5_000_000 / 253);
751 let chanmon_cfgs = create_chanmon_cfgs(3);
752 let node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
755 let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, Some(config), None]);
756 let channel_manager_1_deserialized;
757 let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
759 let other_channel = create_chan_between_nodes(
760 &nodes[0], &nodes[1],
762 let channel_to_update = if announced_channel {
763 let channel = create_announced_chan_between_nodes(
766 (channel.2, channel.0.contents.short_channel_id)
768 let channel = create_unannounced_chan_between_nodes_with_value(
769 &nodes, 1, 2, 100000, 10001,
771 (channel.0.channel_id, channel.0.short_channel_id_alias.unwrap())
773 let channel_to_update_counterparty = &nodes[2].node.get_our_node_id();
775 let default_config = ChannelConfig::default();
777 // A test payment should succeed as the ChannelConfig has not been changed yet.
778 const PAYMENT_AMT: u64 = 40000;
779 let (route, payment_hash, payment_preimage, payment_secret) = if announced_channel {
780 get_route_and_payment_hash!(nodes[0], nodes[2], PAYMENT_AMT)
782 let hop_hints = vec![RouteHint(vec![RouteHintHop {
783 src_node_id: nodes[1].node.get_our_node_id(),
784 short_channel_id: channel_to_update.1,
786 base_msat: default_config.forwarding_fee_base_msat,
787 proportional_millionths: default_config.forwarding_fee_proportional_millionths,
789 cltv_expiry_delta: default_config.cltv_expiry_delta,
790 htlc_maximum_msat: None,
791 htlc_minimum_msat: None,
793 let payment_params = PaymentParameters::from_node_id(*channel_to_update_counterparty, TEST_FINAL_CLTV)
794 .with_bolt11_features(nodes[2].node.bolt11_invoice_features()).unwrap()
795 .with_route_hints(hop_hints).unwrap();
796 get_route_and_payment_hash!(nodes[0], nodes[2], payment_params, PAYMENT_AMT)
798 send_along_route_with_secret(&nodes[0], route.clone(), &[&[&nodes[1], &nodes[2]]], PAYMENT_AMT,
799 payment_hash, payment_secret);
800 claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage);
802 // Closure to force expiry of a channel's previous config.
803 let expire_prev_config = || {
804 for _ in 0..EXPIRE_PREV_CONFIG_TICKS {
805 nodes[1].node.timer_tick_occurred();
809 // Closure to update and retrieve the latest ChannelUpdate.
810 let update_and_get_channel_update = |config: &ChannelConfig, expect_new_update: bool,
811 prev_update: Option<&msgs::ChannelUpdate>, should_expire_prev_config: bool| -> Option<msgs::ChannelUpdate> {
812 nodes[1].node.update_channel_config(
813 channel_to_update_counterparty, &[channel_to_update.0], config,
815 let events = nodes[1].node.get_and_clear_pending_msg_events();
816 assert_eq!(events.len(), expect_new_update as usize);
817 if !expect_new_update {
820 let new_update = match &events[0] {
821 MessageSendEvent::BroadcastChannelUpdate { msg } => {
822 assert!(announced_channel);
825 MessageSendEvent::SendChannelUpdate { node_id, msg } => {
826 assert_eq!(node_id, channel_to_update_counterparty);
827 assert!(!announced_channel);
830 _ => panic!("expected Broadcast/SendChannelUpdate event"),
832 if prev_update.is_some() {
833 assert!(new_update.contents.timestamp > prev_update.unwrap().contents.timestamp)
835 if should_expire_prev_config {
836 expire_prev_config();
841 // We'll be attempting to route payments using the default ChannelUpdate for channels. This will
842 // lead to onion failures at the first hop once we update the ChannelConfig for the
844 let expect_onion_failure = |name: &str, error_code: u16, channel_update: &msgs::ChannelUpdate| {
845 let short_channel_id = channel_to_update.1;
846 let network_update = NetworkUpdate::ChannelUpdateMessage { msg: channel_update.clone() };
847 run_onion_failure_test(
848 name, 0, &nodes, &route, &payment_hash, &payment_secret, |_| {}, || {}, true,
849 Some(error_code), Some(network_update), Some(short_channel_id),
853 // Updates to cltv_expiry_delta below MIN_CLTV_EXPIRY_DELTA should fail with APIMisuseError.
854 let mut invalid_config = default_config.clone();
855 invalid_config.cltv_expiry_delta = 0;
856 match nodes[1].node.update_channel_config(
857 channel_to_update_counterparty, &[channel_to_update.0], &invalid_config,
859 Err(APIError::APIMisuseError{ .. }) => {},
860 _ => panic!("unexpected result applying invalid cltv_expiry_delta"),
863 // Increase the base fee which should trigger a new ChannelUpdate.
864 let mut config = nodes[1].node.list_usable_channels().iter()
865 .find(|channel| channel.channel_id == channel_to_update.0).unwrap()
867 config.forwarding_fee_base_msat = u32::max_value();
868 let msg = update_and_get_channel_update(&config, true, None, false).unwrap();
870 // The old policy should still be in effect until a new block is connected.
871 send_along_route_with_secret(&nodes[0], route.clone(), &[&[&nodes[1], &nodes[2]]], PAYMENT_AMT,
872 payment_hash, payment_secret);
873 claim_payment(&nodes[0], &[&nodes[1], &nodes[2]], payment_preimage);
875 // Connect a block, which should expire the previous config, leading to a failure when
876 // forwarding the HTLC.
877 expire_prev_config();
878 expect_onion_failure("fee_insufficient", UPDATE|12, &msg);
880 // Redundant updates should not trigger a new ChannelUpdate.
881 assert!(update_and_get_channel_update(&config, false, None, false).is_none());
883 // Similarly, updates that do not have an affect on ChannelUpdate should not trigger a new one.
884 config.force_close_avoidance_max_fee_satoshis *= 2;
885 assert!(update_and_get_channel_update(&config, false, None, false).is_none());
887 // Reset the base fee to the default and increase the proportional fee which should trigger a
888 // new ChannelUpdate.
889 config.forwarding_fee_base_msat = default_config.forwarding_fee_base_msat;
890 config.cltv_expiry_delta = u16::max_value();
891 let msg = update_and_get_channel_update(&config, true, Some(&msg), true).unwrap();
892 expect_onion_failure("incorrect_cltv_expiry", UPDATE|13, &msg);
894 // Reset the proportional fee and increase the CLTV expiry delta which should trigger a new
896 config.cltv_expiry_delta = default_config.cltv_expiry_delta;
897 config.forwarding_fee_proportional_millionths = u32::max_value();
898 let msg = update_and_get_channel_update(&config, true, Some(&msg), true).unwrap();
899 expect_onion_failure("fee_insufficient", UPDATE|12, &msg);
901 // To test persistence of the updated config, we'll re-initialize the ChannelManager.
902 let config_after_restart = {
903 let chan_1_monitor_serialized = get_monitor!(nodes[1], other_channel.3).encode();
904 let chan_2_monitor_serialized = get_monitor!(nodes[1], channel_to_update.0).encode();
905 reload_node!(nodes[1], *nodes[1].node.get_current_default_configuration(), &nodes[1].node.encode(),
906 &[&chan_1_monitor_serialized, &chan_2_monitor_serialized], persister, chain_monitor, channel_manager_1_deserialized);
907 nodes[1].node.list_channels().iter()
908 .find(|channel| channel.channel_id == channel_to_update.0).unwrap()
911 assert_eq!(config, config_after_restart);
915 fn test_onion_failure_stale_channel_update() {
916 do_test_onion_failure_stale_channel_update(false);
917 do_test_onion_failure_stale_channel_update(true);
921 fn test_always_create_tlv_format_onion_payloads() {
922 // Verify that we always generate tlv onion format payloads, even if the features specifically
923 // specifies no support for variable length onions, as the legacy payload format has been
924 // deprecated in BOLT4.
925 let chanmon_cfgs = create_chanmon_cfgs(3);
926 let mut node_cfgs = create_node_cfgs(3, &chanmon_cfgs);
928 // Set `node[1]`'s init features to features which return `false` for
929 // `supports_variable_length_onion()`
930 let mut no_variable_length_onion_features = InitFeatures::empty();
931 no_variable_length_onion_features.set_static_remote_key_required();
932 *node_cfgs[1].override_init_features.borrow_mut() = Some(no_variable_length_onion_features);
934 let node_chanmgrs = create_node_chanmgrs(3, &node_cfgs, &[None, None, None]);
935 let mut nodes = create_network(3, &node_cfgs, &node_chanmgrs);
937 create_announced_chan_between_nodes(&nodes, 0, 1);
938 create_announced_chan_between_nodes(&nodes, 1, 2);
940 let payment_params = PaymentParameters::from_node_id(nodes[2].node.get_our_node_id(), TEST_FINAL_CLTV)
941 .with_bolt11_features(Bolt11InvoiceFeatures::empty()).unwrap();
942 let (route, _payment_hash, _payment_preimage, _payment_secret) = get_route_and_payment_hash!(nodes[0], nodes[2], payment_params, 40000);
944 let hops = &route.paths[0].hops;
945 // Asserts that the first hop to `node[1]` signals no support for variable length onions.
946 assert!(!hops[0].node_features.supports_variable_length_onion());
947 // Asserts that the first hop to `node[1]` signals no support for variable length onions.
948 assert!(!hops[1].node_features.supports_variable_length_onion());
950 let cur_height = nodes[0].best_block_info().1 + 1;
951 let (onion_payloads, _htlc_msat, _htlc_cltv) = onion_utils::build_onion_payloads(
952 &route.paths[0], 40000, RecipientOnionFields::spontaneous_empty(), cur_height, &None).unwrap();
954 match onion_payloads[0] {
955 msgs::OutboundOnionPayload::Forward {..} => {},
957 "Should have generated a `msgs::OnionHopDataFormat::NonFinalNode` payload for `hops[0]`,
958 despite that the features signals no support for variable length onions"
961 match onion_payloads[1] {
962 msgs::OutboundOnionPayload::Receive {..} => {},
964 "Should have generated a `msgs::OnionHopDataFormat::FinalNode` payload for `hops[1]`,
965 despite that the features signals no support for variable length onions"
971 fn test_trampoline_onion_payload_serialization() {
972 // As per https://github.com/lightning/bolts/blob/c01d2e6267d4a8d1095f0f1188970055a9a22d29/bolt04/trampoline-payment-onion-test.json#L3
973 let trampoline_payload = OutboundTrampolinePayload::Forward {
974 amt_to_forward: 100000000,
975 outgoing_cltv_value: 800000,
976 outgoing_node_id: PublicKey::from_slice(&<Vec<u8>>::from_hex("02edabbd16b41c8371b92ef2f04c1185b4f03b6dcd52ba9b78d9d7c89c8f221145").unwrap()).unwrap(),
979 let slice_to_hex = |slice: &[u8]| {
981 .map(|b| format!("{:02x}", b).to_string())
985 let carol_payload_hex = slice_to_hex(&trampoline_payload.encode());
986 assert_eq!(carol_payload_hex, "2e020405f5e10004030c35000e2102edabbd16b41c8371b92ef2f04c1185b4f03b6dcd52ba9b78d9d7c89c8f221145");
989 fn do_test_fail_htlc_backwards_with_reason(failure_code: FailureCode) {
991 let chanmon_cfgs = create_chanmon_cfgs(2);
992 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
993 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
994 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
996 create_announced_chan_between_nodes(&nodes, 0, 1);
998 let payment_amount = 100_000;
999 let (route, payment_hash, _, payment_secret) = get_route_and_payment_hash!(nodes[0], nodes[1], payment_amount);
1000 nodes[0].node.send_payment_with_route(&route, payment_hash,
1001 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1002 check_added_monitors!(nodes[0], 1);
1004 let mut events = nodes[0].node.get_and_clear_pending_msg_events();
1005 let mut payment_event = SendEvent::from_event(events.pop().unwrap());
1006 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &payment_event.msgs[0]);
1007 commitment_signed_dance!(nodes[1], nodes[0], payment_event.commitment_msg, false);
1009 expect_pending_htlcs_forwardable!(nodes[1]);
1010 expect_payment_claimable!(nodes[1], payment_hash, payment_secret, payment_amount);
1011 nodes[1].node.fail_htlc_backwards_with_reason(&payment_hash, failure_code);
1013 expect_pending_htlcs_forwardable_and_htlc_handling_failed!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash: payment_hash }]);
1014 check_added_monitors!(nodes[1], 1);
1016 let events = nodes[1].node.get_and_clear_pending_msg_events();
1017 assert_eq!(events.len(), 1);
1018 let (update_fail_htlc, commitment_signed) = match events[0] {
1019 MessageSendEvent::UpdateHTLCs { node_id: _ , updates: msgs::CommitmentUpdate { ref update_add_htlcs, ref update_fulfill_htlcs, ref update_fail_htlcs, ref update_fail_malformed_htlcs, ref update_fee, ref commitment_signed } } => {
1020 assert!(update_add_htlcs.is_empty());
1021 assert!(update_fulfill_htlcs.is_empty());
1022 assert_eq!(update_fail_htlcs.len(), 1);
1023 assert!(update_fail_malformed_htlcs.is_empty());
1024 assert!(update_fee.is_none());
1025 (update_fail_htlcs[0].clone(), commitment_signed)
1027 _ => panic!("Unexpected event"),
1030 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &update_fail_htlc);
1031 commitment_signed_dance!(nodes[0], nodes[1], commitment_signed, false, true);
1033 let failure_data = match failure_code {
1034 FailureCode::TemporaryNodeFailure => vec![],
1035 FailureCode::RequiredNodeFeatureMissing => vec![],
1036 FailureCode::IncorrectOrUnknownPaymentDetails => {
1037 let mut htlc_msat_height_data = (payment_amount as u64).to_be_bytes().to_vec();
1038 htlc_msat_height_data.extend_from_slice(&CHAN_CONFIRM_DEPTH.to_be_bytes());
1039 htlc_msat_height_data
1041 FailureCode::InvalidOnionPayload(data) => {
1043 Some((typ, offset)) => [BigSize(typ).encode(), offset.encode()].concat(),
1049 let failure_code = failure_code.into();
1050 let permanent_flag = 0x4000;
1051 let permanent_fail = (failure_code & permanent_flag) != 0;
1052 expect_payment_failed!(nodes[0], payment_hash, permanent_fail, failure_code, failure_data);
1057 fn test_fail_htlc_backwards_with_reason() {
1058 do_test_fail_htlc_backwards_with_reason(FailureCode::TemporaryNodeFailure);
1059 do_test_fail_htlc_backwards_with_reason(FailureCode::RequiredNodeFeatureMissing);
1060 do_test_fail_htlc_backwards_with_reason(FailureCode::IncorrectOrUnknownPaymentDetails);
1061 do_test_fail_htlc_backwards_with_reason(FailureCode::InvalidOnionPayload(Some((1 << 16, 42))));
1062 do_test_fail_htlc_backwards_with_reason(FailureCode::InvalidOnionPayload(None));
1065 macro_rules! get_phantom_route {
1066 ($nodes: expr, $amt: expr, $channel: expr) => {{
1067 let phantom_pubkey = $nodes[1].keys_manager.get_node_id(Recipient::PhantomNode).unwrap();
1068 let phantom_route_hint = $nodes[1].node.get_phantom_route_hints();
1069 let payment_params = PaymentParameters::from_node_id(phantom_pubkey, TEST_FINAL_CLTV)
1070 .with_bolt11_features($nodes[1].node.bolt11_invoice_features()).unwrap()
1071 .with_route_hints(vec![RouteHint(vec![
1073 src_node_id: $nodes[0].node.get_our_node_id(),
1074 short_channel_id: $channel.0.contents.short_channel_id,
1076 base_msat: $channel.0.contents.fee_base_msat,
1077 proportional_millionths: $channel.0.contents.fee_proportional_millionths,
1079 cltv_expiry_delta: $channel.0.contents.cltv_expiry_delta,
1080 htlc_minimum_msat: None,
1081 htlc_maximum_msat: None,
1084 src_node_id: phantom_route_hint.real_node_pubkey,
1085 short_channel_id: phantom_route_hint.phantom_scid,
1088 proportional_millionths: 0,
1090 cltv_expiry_delta: MIN_CLTV_EXPIRY_DELTA,
1091 htlc_minimum_msat: None,
1092 htlc_maximum_msat: None,
1095 let scorer = test_utils::TestScorer::new();
1096 let network_graph = $nodes[0].network_graph.read_only();
1097 let route_params = RouteParameters::from_payment_params_and_value(payment_params, $amt);
1099 &$nodes[0].node.get_our_node_id(), &route_params, &network_graph,
1100 Some(&$nodes[0].node.list_usable_channels().iter().collect::<Vec<_>>()),
1101 $nodes[0].logger, &scorer, &Default::default(), &[0u8; 32]
1102 ).unwrap(), phantom_route_hint.phantom_scid)
1107 fn test_phantom_onion_hmac_failure() {
1108 let chanmon_cfgs = create_chanmon_cfgs(2);
1109 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1110 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1111 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1113 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1116 let recv_value_msat = 10_000;
1117 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_value_msat));
1118 let (route, phantom_scid) = get_phantom_route!(nodes, recv_value_msat, channel);
1120 // Route the HTLC through to the destination.
1121 nodes[0].node.send_payment_with_route(&route, payment_hash,
1122 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1123 check_added_monitors!(nodes[0], 1);
1124 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1125 let mut update_add = update_0.update_add_htlcs[0].clone();
1127 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1128 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1130 // Modify the payload so the phantom hop's HMAC is bogus.
1131 let sha256_of_onion = {
1132 let mut forward_htlcs = nodes[1].node.forward_htlcs.lock().unwrap();
1133 let mut pending_forward = forward_htlcs.get_mut(&phantom_scid).unwrap();
1134 match pending_forward[0] {
1135 HTLCForwardInfo::AddHTLC(PendingAddHTLCInfo {
1136 forward_info: PendingHTLCInfo {
1137 routing: PendingHTLCRouting::Forward { ref mut onion_packet, .. },
1141 onion_packet.hmac[onion_packet.hmac.len() - 1] ^= 1;
1142 Sha256::hash(&onion_packet.hop_data).to_byte_array().to_vec()
1144 _ => panic!("Unexpected forward"),
1147 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1148 nodes[1].node.process_pending_htlc_forwards();
1149 expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash }]);
1150 nodes[1].node.process_pending_htlc_forwards();
1151 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1152 check_added_monitors!(&nodes[1], 1);
1153 assert!(update_1.update_fail_htlcs.len() == 1);
1154 let fail_msg = update_1.update_fail_htlcs[0].clone();
1155 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1156 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1158 // Ensure the payment fails with the expected error.
1159 let mut fail_conditions = PaymentFailedConditions::new()
1160 .blamed_scid(phantom_scid)
1161 .blamed_chan_closed(true)
1162 .expected_htlc_error_data(0x8000 | 0x4000 | 5, &sha256_of_onion);
1163 expect_payment_failed_conditions(&nodes[0], payment_hash, false, fail_conditions);
1167 fn test_phantom_invalid_onion_payload() {
1168 let chanmon_cfgs = create_chanmon_cfgs(2);
1169 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1170 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1171 let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1173 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1176 let recv_value_msat = 10_000;
1177 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_value_msat));
1178 let (route, phantom_scid) = get_phantom_route!(nodes, recv_value_msat, channel);
1180 // We'll use the session priv later when constructing an invalid onion packet.
1181 let session_priv = [3; 32];
1182 *nodes[0].keys_manager.override_random_bytes.lock().unwrap() = Some(session_priv);
1183 nodes[0].node.send_payment_with_route(&route, payment_hash,
1184 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1185 check_added_monitors!(nodes[0], 1);
1186 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1187 let mut update_add = update_0.update_add_htlcs[0].clone();
1189 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1190 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1192 // Modify the onion packet to have an invalid payment amount.
1193 for (_, pending_forwards) in nodes[1].node.forward_htlcs.lock().unwrap().iter_mut() {
1194 for f in pending_forwards.iter_mut() {
1196 &mut HTLCForwardInfo::AddHTLC(PendingAddHTLCInfo {
1197 forward_info: PendingHTLCInfo {
1198 routing: PendingHTLCRouting::Forward { ref mut onion_packet, .. },
1202 // Construct the onion payloads for the entire route and an invalid amount.
1203 let height = nodes[0].best_block_info().1;
1204 let session_priv = SecretKey::from_slice(&session_priv).unwrap();
1205 let mut onion_keys = onion_utils::construct_onion_keys(&Secp256k1::new(), &route.paths[0], &session_priv).unwrap();
1206 let (mut onion_payloads, _, _) = onion_utils::build_onion_payloads(
1207 &route.paths[0], msgs::MAX_VALUE_MSAT + 1,
1208 RecipientOnionFields::secret_only(payment_secret), height + 1, &None).unwrap();
1209 // We only want to construct the onion packet for the last hop, not the entire route, so
1210 // remove the first hop's payload and its keys.
1211 onion_keys.remove(0);
1212 onion_payloads.remove(0);
1214 let new_onion_packet = onion_utils::construct_onion_packet(onion_payloads, onion_keys, [0; 32], &payment_hash).unwrap();
1215 onion_packet.hop_data = new_onion_packet.hop_data;
1216 onion_packet.hmac = new_onion_packet.hmac;
1218 _ => panic!("Unexpected forward"),
1222 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1223 nodes[1].node.process_pending_htlc_forwards();
1224 expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash }]);
1225 nodes[1].node.process_pending_htlc_forwards();
1226 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1227 check_added_monitors!(&nodes[1], 1);
1228 assert!(update_1.update_fail_htlcs.len() == 1);
1229 let fail_msg = update_1.update_fail_htlcs[0].clone();
1230 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1231 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1233 // Ensure the payment fails with the expected error.
1234 let error_data = Vec::new();
1235 let mut fail_conditions = PaymentFailedConditions::new()
1236 .blamed_scid(phantom_scid)
1237 .blamed_chan_closed(true)
1238 .expected_htlc_error_data(0x4000 | 22, &error_data);
1239 expect_payment_failed_conditions(&nodes[0], payment_hash, true, fail_conditions);
1243 fn test_phantom_final_incorrect_cltv_expiry() {
1244 let chanmon_cfgs = create_chanmon_cfgs(2);
1245 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1246 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1247 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1249 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1252 let recv_value_msat = 10_000;
1253 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_value_msat));
1254 let (route, phantom_scid) = get_phantom_route!(nodes, recv_value_msat, channel);
1256 // Route the HTLC through to the destination.
1257 nodes[0].node.send_payment_with_route(&route, payment_hash,
1258 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1259 check_added_monitors!(nodes[0], 1);
1260 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1261 let mut update_add = update_0.update_add_htlcs[0].clone();
1263 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1264 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1266 // Modify the payload so the phantom hop's HMAC is bogus.
1267 for (_, pending_forwards) in nodes[1].node.forward_htlcs.lock().unwrap().iter_mut() {
1268 for f in pending_forwards.iter_mut() {
1270 &mut HTLCForwardInfo::AddHTLC(PendingAddHTLCInfo {
1271 forward_info: PendingHTLCInfo { ref mut outgoing_cltv_value, .. }, ..
1273 *outgoing_cltv_value -= 1;
1275 _ => panic!("Unexpected forward"),
1279 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1280 nodes[1].node.process_pending_htlc_forwards();
1281 expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash }]);
1282 nodes[1].node.process_pending_htlc_forwards();
1283 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1284 check_added_monitors!(&nodes[1], 1);
1285 assert!(update_1.update_fail_htlcs.len() == 1);
1286 let fail_msg = update_1.update_fail_htlcs[0].clone();
1287 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1288 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1290 // Ensure the payment fails with the expected error.
1291 let expected_cltv: u32 = 80;
1292 let error_data = expected_cltv.to_be_bytes().to_vec();
1293 let mut fail_conditions = PaymentFailedConditions::new()
1294 .blamed_scid(phantom_scid)
1295 .expected_htlc_error_data(18, &error_data);
1296 expect_payment_failed_conditions(&nodes[0], payment_hash, false, fail_conditions);
1300 fn test_phantom_failure_too_low_cltv() {
1301 let chanmon_cfgs = create_chanmon_cfgs(2);
1302 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1303 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1304 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1306 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1309 let recv_value_msat = 10_000;
1310 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_value_msat));
1311 let (mut route, phantom_scid) = get_phantom_route!(nodes, recv_value_msat, channel);
1313 // Modify the route to have a too-low cltv.
1314 route.paths[0].hops[1].cltv_expiry_delta = 5;
1316 // Route the HTLC through to the destination.
1317 nodes[0].node.send_payment_with_route(&route, payment_hash,
1318 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1319 check_added_monitors!(nodes[0], 1);
1320 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1321 let mut update_add = update_0.update_add_htlcs[0].clone();
1323 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1324 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1326 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1327 nodes[1].node.process_pending_htlc_forwards();
1328 expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash }]);
1329 nodes[1].node.process_pending_htlc_forwards();
1330 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1331 check_added_monitors!(&nodes[1], 1);
1332 assert!(update_1.update_fail_htlcs.len() == 1);
1333 let fail_msg = update_1.update_fail_htlcs[0].clone();
1334 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1335 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1337 // Ensure the payment fails with the expected error.
1338 let mut error_data = recv_value_msat.to_be_bytes().to_vec();
1339 error_data.extend_from_slice(
1340 &nodes[0].node.best_block.read().unwrap().height.to_be_bytes(),
1342 let mut fail_conditions = PaymentFailedConditions::new()
1343 .blamed_scid(phantom_scid)
1344 .expected_htlc_error_data(0x4000 | 15, &error_data);
1345 expect_payment_failed_conditions(&nodes[0], payment_hash, true, fail_conditions);
1349 fn test_phantom_failure_modified_cltv() {
1350 // Test that we fail back phantoms if the upstream node fiddled with the CLTV too much with the
1351 // correct error code.
1352 let chanmon_cfgs = create_chanmon_cfgs(2);
1353 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1354 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1355 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1357 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1360 let recv_value_msat = 10_000;
1361 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_value_msat));
1362 let (mut route, phantom_scid) = get_phantom_route!(nodes, recv_value_msat, channel);
1364 // Route the HTLC through to the destination.
1365 nodes[0].node.send_payment_with_route(&route, payment_hash,
1366 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1367 check_added_monitors!(nodes[0], 1);
1368 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1369 let mut update_add = update_0.update_add_htlcs[0].clone();
1371 // Modify the route to have a too-low cltv.
1372 update_add.cltv_expiry -= 10;
1374 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1375 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1377 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1378 assert!(update_1.update_fail_htlcs.len() == 1);
1379 let fail_msg = update_1.update_fail_htlcs[0].clone();
1380 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1381 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1383 // Ensure the payment fails with the expected error.
1384 let mut fail_conditions = PaymentFailedConditions::new()
1385 .blamed_scid(phantom_scid)
1386 .expected_htlc_error_data(0x2000 | 2, &[]);
1387 expect_payment_failed_conditions(&nodes[0], payment_hash, false, fail_conditions);
1391 fn test_phantom_failure_expires_too_soon() {
1392 // Test that we fail back phantoms if the HTLC got delayed and we got blocks in between with
1393 // the correct error code.
1394 let chanmon_cfgs = create_chanmon_cfgs(2);
1395 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1396 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1397 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1399 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1402 let recv_value_msat = 10_000;
1403 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_value_msat));
1404 let (mut route, phantom_scid) = get_phantom_route!(nodes, recv_value_msat, channel);
1406 // Route the HTLC through to the destination.
1407 nodes[0].node.send_payment_with_route(&route, payment_hash,
1408 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1409 check_added_monitors!(nodes[0], 1);
1410 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1411 let mut update_add = update_0.update_add_htlcs[0].clone();
1413 connect_blocks(&nodes[1], CLTV_FAR_FAR_AWAY);
1414 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1415 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1417 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1418 assert!(update_1.update_fail_htlcs.len() == 1);
1419 let fail_msg = update_1.update_fail_htlcs[0].clone();
1420 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1421 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1423 // Ensure the payment fails with the expected error.
1424 let mut fail_conditions = PaymentFailedConditions::new()
1425 .blamed_scid(phantom_scid)
1426 .expected_htlc_error_data(0x2000 | 2, &[]);
1427 expect_payment_failed_conditions(&nodes[0], payment_hash, false, fail_conditions);
1431 fn test_phantom_failure_too_low_recv_amt() {
1432 let chanmon_cfgs = create_chanmon_cfgs(2);
1433 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1434 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1435 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1437 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1439 // Get the route with a too-low amount.
1440 let recv_amt_msat = 10_000;
1441 let bad_recv_amt_msat = recv_amt_msat - 10;
1442 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_amt_msat));
1443 let (mut route, phantom_scid) = get_phantom_route!(nodes, bad_recv_amt_msat, channel);
1445 // Route the HTLC through to the destination.
1446 nodes[0].node.send_payment_with_route(&route, payment_hash,
1447 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1448 check_added_monitors!(nodes[0], 1);
1449 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1450 let mut update_add = update_0.update_add_htlcs[0].clone();
1452 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1453 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1455 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1456 nodes[1].node.process_pending_htlc_forwards();
1457 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1458 nodes[1].node.process_pending_htlc_forwards();
1459 expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash: payment_hash.clone() }]);
1460 nodes[1].node.process_pending_htlc_forwards();
1461 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1462 check_added_monitors!(&nodes[1], 1);
1463 assert!(update_1.update_fail_htlcs.len() == 1);
1464 let fail_msg = update_1.update_fail_htlcs[0].clone();
1465 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1466 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1468 // Ensure the payment fails with the expected error.
1469 let mut error_data = bad_recv_amt_msat.to_be_bytes().to_vec();
1470 error_data.extend_from_slice(&nodes[1].node.best_block.read().unwrap().height.to_be_bytes());
1471 let mut fail_conditions = PaymentFailedConditions::new()
1472 .blamed_scid(phantom_scid)
1473 .expected_htlc_error_data(0x4000 | 15, &error_data);
1474 expect_payment_failed_conditions(&nodes[0], payment_hash, true, fail_conditions);
1478 fn test_phantom_dust_exposure_failure() {
1479 do_test_phantom_dust_exposure_failure(false);
1480 do_test_phantom_dust_exposure_failure(true);
1483 fn do_test_phantom_dust_exposure_failure(multiplier_dust_limit: bool) {
1484 // Set the max dust exposure to the dust limit.
1485 let max_dust_exposure = 546;
1486 let mut receiver_config = UserConfig::default();
1487 // Default test fee estimator rate is 253, so to set the max dust exposure to the dust limit,
1488 // we need to set the multiplier to 2.
1489 receiver_config.channel_config.max_dust_htlc_exposure =
1490 if multiplier_dust_limit { MaxDustHTLCExposure::FeeRateMultiplier(2) }
1491 else { MaxDustHTLCExposure::FixedLimitMsat(max_dust_exposure) };
1492 receiver_config.channel_handshake_config.announced_channel = true;
1494 let chanmon_cfgs = create_chanmon_cfgs(2);
1495 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1496 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, Some(receiver_config)]);
1497 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1499 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1501 // Get the route with an amount exceeding the dust exposure threshold of nodes[1].
1502 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(max_dust_exposure + 1));
1503 let (mut route, _) = get_phantom_route!(nodes, max_dust_exposure + 1, channel);
1505 // Route the HTLC through to the destination.
1506 nodes[0].node.send_payment_with_route(&route, payment_hash,
1507 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1508 check_added_monitors!(nodes[0], 1);
1509 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1510 let mut update_add = update_0.update_add_htlcs[0].clone();
1512 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1513 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1515 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1516 assert!(update_1.update_fail_htlcs.len() == 1);
1517 let fail_msg = update_1.update_fail_htlcs[0].clone();
1518 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1519 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1521 // Ensure the payment fails with the expected error.
1522 let mut err_data = Vec::new();
1523 err_data.extend_from_slice(&(channel.1.serialized_length() as u16 + 2).to_be_bytes());
1524 err_data.extend_from_slice(&ChannelUpdate::TYPE.to_be_bytes());
1525 err_data.extend_from_slice(&channel.1.encode());
1527 let mut fail_conditions = PaymentFailedConditions::new()
1528 .blamed_scid(channel.0.contents.short_channel_id)
1529 .blamed_chan_closed(false)
1530 .expected_htlc_error_data(0x1000 | 7, &err_data);
1531 expect_payment_failed_conditions(&nodes[0], payment_hash, false, fail_conditions);
1535 fn test_phantom_failure_reject_payment() {
1536 // Test that the user can successfully fail back a phantom node payment.
1537 let chanmon_cfgs = create_chanmon_cfgs(2);
1538 let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
1539 let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
1540 let nodes = create_network(2, &node_cfgs, &node_chanmgrs);
1542 let channel = create_announced_chan_between_nodes(&nodes, 0, 1);
1544 // Get the route with a too-low amount.
1545 let recv_amt_msat = 10_000;
1546 let (_, payment_hash, payment_secret) = get_payment_preimage_hash!(nodes[1], Some(recv_amt_msat));
1547 let (mut route, phantom_scid) = get_phantom_route!(nodes, recv_amt_msat, channel);
1549 // Route the HTLC through to the destination.
1550 nodes[0].node.send_payment_with_route(&route, payment_hash,
1551 RecipientOnionFields::secret_only(payment_secret), PaymentId(payment_hash.0)).unwrap();
1552 check_added_monitors!(nodes[0], 1);
1553 let update_0 = get_htlc_update_msgs!(nodes[0], nodes[1].node.get_our_node_id());
1554 let mut update_add = update_0.update_add_htlcs[0].clone();
1556 nodes[1].node.handle_update_add_htlc(&nodes[0].node.get_our_node_id(), &update_add);
1557 commitment_signed_dance!(nodes[1], nodes[0], &update_0.commitment_signed, false, true);
1559 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1560 nodes[1].node.process_pending_htlc_forwards();
1561 expect_pending_htlcs_forwardable_ignore!(nodes[1]);
1562 nodes[1].node.process_pending_htlc_forwards();
1563 expect_payment_claimable!(nodes[1], payment_hash, payment_secret, recv_amt_msat, None, route.paths[0].hops.last().unwrap().pubkey);
1564 nodes[1].node.fail_htlc_backwards(&payment_hash);
1565 expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore!(nodes[1], vec![HTLCDestination::FailedPayment { payment_hash }]);
1566 nodes[1].node.process_pending_htlc_forwards();
1568 let update_1 = get_htlc_update_msgs!(nodes[1], nodes[0].node.get_our_node_id());
1569 check_added_monitors!(&nodes[1], 1);
1570 assert!(update_1.update_fail_htlcs.len() == 1);
1571 let fail_msg = update_1.update_fail_htlcs[0].clone();
1572 nodes[0].node.handle_update_fail_htlc(&nodes[1].node.get_our_node_id(), &fail_msg);
1573 commitment_signed_dance!(nodes[0], nodes[1], update_1.commitment_signed, false);
1575 // Ensure the payment fails with the expected error.
1576 let mut error_data = recv_amt_msat.to_be_bytes().to_vec();
1577 error_data.extend_from_slice(&nodes[1].node.best_block.read().unwrap().height.to_be_bytes());
1578 let mut fail_conditions = PaymentFailedConditions::new()
1579 .blamed_scid(phantom_scid)
1580 .expected_htlc_error_data(0x4000 | 15, &error_data);
1581 expect_payment_failed_conditions(&nodes[0], payment_hash, true, fail_conditions);