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Adapt intro node process_pending_htlcs test for non-intro nodes
[rust-lightning] / lightning / src / ln / functional_test_utils.rs
1 // This file is Copyright its original authors, visible in version control
2 // history.
3 //
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
8 // licenses.
9
10 //! A bunch of useful utilities for building networks of nodes and exchanging messages between
11 //! nodes for functional tests.
12
13 use crate::chain::{BestBlock, ChannelMonitorUpdateStatus, Confirm, Listen, Watch, chainmonitor::Persist};
14 use crate::chain::channelmonitor::ChannelMonitor;
15 use crate::chain::transaction::OutPoint;
16 use crate::events::{ClaimedHTLC, ClosureReason, Event, HTLCDestination, MessageSendEvent, MessageSendEventsProvider, PathFailure, PaymentPurpose, PaymentFailureReason};
17 use crate::events::bump_transaction::{BumpTransactionEvent, BumpTransactionEventHandler, Wallet, WalletSource};
18 use crate::ln::{ChannelId, PaymentPreimage, PaymentHash, PaymentSecret};
19 use crate::ln::channelmanager::{AChannelManager, ChainParameters, ChannelManager, ChannelManagerReadArgs, RAACommitmentOrder, PaymentSendFailure, RecipientOnionFields, PaymentId, MIN_CLTV_EXPIRY_DELTA};
20 use crate::ln::features::InitFeatures;
21 use crate::ln::msgs;
22 use crate::ln::msgs::{ChannelMessageHandler, OnionMessageHandler, RoutingMessageHandler};
23 use crate::ln::peer_handler::IgnoringMessageHandler;
24 use crate::onion_message::messenger::OnionMessenger;
25 use crate::routing::gossip::{P2PGossipSync, NetworkGraph, NetworkUpdate};
26 use crate::routing::router::{self, PaymentParameters, Route, RouteParameters};
27 use crate::sign::{EntropySource, RandomBytes};
28 use crate::util::config::{UserConfig, MaxDustHTLCExposure};
29 use crate::util::errors::APIError;
30 #[cfg(test)]
31 use crate::util::logger::Logger;
32 use crate::util::scid_utils;
33 use crate::util::test_channel_signer::TestChannelSigner;
34 use crate::util::test_utils;
35 use crate::util::test_utils::{panicking, TestChainMonitor, TestScorer, TestKeysInterface};
36 use crate::util::ser::{ReadableArgs, Writeable};
37
38 use bitcoin::blockdata::block::{Block, Header, Version};
39 use bitcoin::blockdata::locktime::absolute::LockTime;
40 use bitcoin::blockdata::transaction::{Transaction, TxIn, TxOut};
41 use bitcoin::hash_types::{BlockHash, TxMerkleNode};
42 use bitcoin::hashes::sha256::Hash as Sha256;
43 use bitcoin::hashes::Hash as _;
44 use bitcoin::network::constants::Network;
45 use bitcoin::pow::CompactTarget;
46 use bitcoin::secp256k1::{PublicKey, SecretKey};
47
48 use alloc::rc::Rc;
49 use core::cell::RefCell;
50 use core::iter::repeat;
51 use core::mem;
52 use core::ops::Deref;
53 use crate::io;
54 use crate::prelude::*;
55 use crate::sync::{Arc, Mutex, LockTestExt, RwLock};
56
57 pub const CHAN_CONFIRM_DEPTH: u32 = 10;
58
59 /// Mine the given transaction in the next block and then mine CHAN_CONFIRM_DEPTH - 1 blocks on
60 /// top, giving the given transaction CHAN_CONFIRM_DEPTH confirmations.
61 ///
62 /// Returns the SCID a channel confirmed in the given transaction will have, assuming the funding
63 /// output is the 1st output in the transaction.
64 pub fn confirm_transaction<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, tx: &Transaction) -> u64 {
65         let scid = confirm_transaction_at(node, tx, node.best_block_info().1 + 1);
66         connect_blocks(node, CHAN_CONFIRM_DEPTH - 1);
67         scid
68 }
69 /// Mine a single block containing the given transaction
70 ///
71 /// Returns the SCID a channel confirmed in the given transaction will have, assuming the funding
72 /// output is the 1st output in the transaction.
73 pub fn mine_transaction<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, tx: &Transaction) -> u64 {
74         let height = node.best_block_info().1 + 1;
75         confirm_transaction_at(node, tx, height)
76 }
77 /// Mine a single block containing the given transactions
78 pub fn mine_transactions<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, txn: &[&Transaction]) {
79         let height = node.best_block_info().1 + 1;
80         confirm_transactions_at(node, txn, height);
81 }
82 /// Mine a single block containing the given transaction without extra consistency checks which may
83 /// impact ChannelManager state.
84 pub fn mine_transaction_without_consistency_checks<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, tx: &Transaction) {
85         let height = node.best_block_info().1 + 1;
86         let mut block = Block {
87                 header: Header {
88                         version: Version::NO_SOFT_FORK_SIGNALLING,
89                         prev_blockhash: node.best_block_hash(),
90                         merkle_root: TxMerkleNode::all_zeros(),
91                         time: height,
92                         bits: CompactTarget::from_consensus(42),
93                         nonce: 42,
94                 },
95                 txdata: Vec::new(),
96         };
97         for _ in 0..*node.network_chan_count.borrow() { // Make sure we don't end up with channels at the same short id by offsetting by chan_count
98                 block.txdata.push(Transaction { version: 0, lock_time: LockTime::ZERO, input: Vec::new(), output: Vec::new() });
99         }
100         block.txdata.push((*tx).clone());
101         do_connect_block_without_consistency_checks(node, block, false);
102 }
103 /// Mine the given transaction at the given height, mining blocks as required to build to that
104 /// height
105 ///
106 /// Returns the SCID a channel confirmed in the given transaction will have, assuming the funding
107 /// output is the 1st output in the transaction.
108 pub fn confirm_transactions_at<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, txn: &[&Transaction], conf_height: u32) -> u64 {
109         let first_connect_height = node.best_block_info().1 + 1;
110         assert!(first_connect_height <= conf_height);
111         if conf_height > first_connect_height {
112                 connect_blocks(node, conf_height - first_connect_height);
113         }
114         let mut txdata = Vec::new();
115         for _ in 0..*node.network_chan_count.borrow() { // Make sure we don't end up with channels at the same short id by offsetting by chan_count
116                 txdata.push(Transaction { version: 0, lock_time: LockTime::ZERO, input: Vec::new(), output: Vec::new() });
117         }
118         for tx in txn {
119                 txdata.push((*tx).clone());
120         }
121         let block = create_dummy_block(node.best_block_hash(), conf_height, txdata);
122         connect_block(node, &block);
123         scid_utils::scid_from_parts(conf_height as u64, block.txdata.len() as u64 - 1, 0).unwrap()
124 }
125 pub fn confirm_transaction_at<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, tx: &Transaction, conf_height: u32) -> u64 {
126         confirm_transactions_at(node, &[tx], conf_height)
127 }
128
129 /// The possible ways we may notify a ChannelManager of a new block
130 #[derive(Clone, Copy, Debug, PartialEq)]
131 pub enum ConnectStyle {
132         /// Calls `best_block_updated` first, detecting transactions in the block only after receiving
133         /// the header and height information.
134         BestBlockFirst,
135         /// The same as `BestBlockFirst`, however when we have multiple blocks to connect, we only
136         /// make a single `best_block_updated` call.
137         BestBlockFirstSkippingBlocks,
138         /// The same as `BestBlockFirst` when connecting blocks. During disconnection only
139         /// `transaction_unconfirmed` is called.
140         BestBlockFirstReorgsOnlyTip,
141         /// Calls `transactions_confirmed` first, detecting transactions in the block before updating
142         /// the header and height information.
143         TransactionsFirst,
144         /// The same as `TransactionsFirst`, however when we have multiple blocks to connect, we only
145         /// make a single `best_block_updated` call.
146         TransactionsFirstSkippingBlocks,
147         /// The same as `TransactionsFirst`, however when we have multiple blocks to connect, we only
148         /// make a single `best_block_updated` call. Further, we call `transactions_confirmed` multiple
149         /// times to ensure it's idempotent.
150         TransactionsDuplicativelyFirstSkippingBlocks,
151         /// The same as `TransactionsFirst`, however when we have multiple blocks to connect, we only
152         /// make a single `best_block_updated` call. Further, we call `transactions_confirmed` multiple
153         /// times to ensure it's idempotent.
154         HighlyRedundantTransactionsFirstSkippingBlocks,
155         /// The same as `TransactionsFirst` when connecting blocks. During disconnection only
156         /// `transaction_unconfirmed` is called.
157         TransactionsFirstReorgsOnlyTip,
158         /// Provides the full block via the `chain::Listen` interface. In the current code this is
159         /// equivalent to `TransactionsFirst` with some additional assertions.
160         FullBlockViaListen,
161 }
162
163 impl ConnectStyle {
164         pub fn skips_blocks(&self) -> bool {
165                 match self {
166                         ConnectStyle::BestBlockFirst => false,
167                         ConnectStyle::BestBlockFirstSkippingBlocks => true,
168                         ConnectStyle::BestBlockFirstReorgsOnlyTip => true,
169                         ConnectStyle::TransactionsFirst => false,
170                         ConnectStyle::TransactionsFirstSkippingBlocks => true,
171                         ConnectStyle::TransactionsDuplicativelyFirstSkippingBlocks => true,
172                         ConnectStyle::HighlyRedundantTransactionsFirstSkippingBlocks => true,
173                         ConnectStyle::TransactionsFirstReorgsOnlyTip => true,
174                         ConnectStyle::FullBlockViaListen => false,
175                 }
176         }
177
178         pub fn updates_best_block_first(&self) -> bool {
179                 match self {
180                         ConnectStyle::BestBlockFirst => true,
181                         ConnectStyle::BestBlockFirstSkippingBlocks => true,
182                         ConnectStyle::BestBlockFirstReorgsOnlyTip => true,
183                         ConnectStyle::TransactionsFirst => false,
184                         ConnectStyle::TransactionsFirstSkippingBlocks => false,
185                         ConnectStyle::TransactionsDuplicativelyFirstSkippingBlocks => false,
186                         ConnectStyle::HighlyRedundantTransactionsFirstSkippingBlocks => false,
187                         ConnectStyle::TransactionsFirstReorgsOnlyTip => false,
188                         ConnectStyle::FullBlockViaListen => false,
189                 }
190         }
191
192         fn random_style() -> ConnectStyle {
193                 #[cfg(feature = "std")] {
194                         use core::hash::{BuildHasher, Hasher};
195                         // Get a random value using the only std API to do so - the DefaultHasher
196                         let rand_val = std::collections::hash_map::RandomState::new().build_hasher().finish();
197                         let res = match rand_val % 9 {
198                                 0 => ConnectStyle::BestBlockFirst,
199                                 1 => ConnectStyle::BestBlockFirstSkippingBlocks,
200                                 2 => ConnectStyle::BestBlockFirstReorgsOnlyTip,
201                                 3 => ConnectStyle::TransactionsFirst,
202                                 4 => ConnectStyle::TransactionsFirstSkippingBlocks,
203                                 5 => ConnectStyle::TransactionsDuplicativelyFirstSkippingBlocks,
204                                 6 => ConnectStyle::HighlyRedundantTransactionsFirstSkippingBlocks,
205                                 7 => ConnectStyle::TransactionsFirstReorgsOnlyTip,
206                                 8 => ConnectStyle::FullBlockViaListen,
207                                 _ => unreachable!(),
208                         };
209                         eprintln!("Using Block Connection Style: {:?}", res);
210                         res
211                 }
212                 #[cfg(not(feature = "std"))] {
213                         ConnectStyle::FullBlockViaListen
214                 }
215         }
216 }
217
218 pub fn create_dummy_header(prev_blockhash: BlockHash, time: u32) -> Header {
219         Header {
220                 version: Version::NO_SOFT_FORK_SIGNALLING,
221                 prev_blockhash,
222                 merkle_root: TxMerkleNode::all_zeros(),
223                 time,
224                 bits: CompactTarget::from_consensus(42),
225                 nonce: 42,
226         }
227 }
228
229 pub fn create_dummy_block(prev_blockhash: BlockHash, time: u32, txdata: Vec<Transaction>) -> Block {
230         Block { header: create_dummy_header(prev_blockhash, time), txdata }
231 }
232
233 pub fn connect_blocks<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, depth: u32) -> BlockHash {
234         let skip_intermediaries = node.connect_style.borrow().skips_blocks();
235
236         let height = node.best_block_info().1 + 1;
237         let mut block = create_dummy_block(node.best_block_hash(), height, Vec::new());
238         assert!(depth >= 1);
239         for i in 1..depth {
240                 let prev_blockhash = block.header.block_hash();
241                 do_connect_block_with_consistency_checks(node, block, skip_intermediaries);
242                 block = create_dummy_block(prev_blockhash, height + i, Vec::new());
243         }
244         let hash = block.header.block_hash();
245         do_connect_block_with_consistency_checks(node, block, false);
246         hash
247 }
248
249 pub fn connect_block<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, block: &Block) {
250         do_connect_block_with_consistency_checks(node, block.clone(), false);
251 }
252
253 fn call_claimable_balances<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>) {
254         // Ensure `get_claimable_balances`' self-tests never panic
255         for (funding_outpoint, _channel_id) in node.chain_monitor.chain_monitor.list_monitors() {
256                 node.chain_monitor.chain_monitor.get_monitor(funding_outpoint).unwrap().get_claimable_balances();
257         }
258 }
259
260 fn do_connect_block_with_consistency_checks<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, block: Block, skip_intermediaries: bool) {
261         call_claimable_balances(node);
262         do_connect_block_without_consistency_checks(node, block, skip_intermediaries);
263         call_claimable_balances(node);
264         node.node.test_process_background_events();
265 }
266
267 fn do_connect_block_without_consistency_checks<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, block: Block, skip_intermediaries: bool) {
268         let height = node.best_block_info().1 + 1;
269         #[cfg(feature = "std")] {
270                 eprintln!("Connecting block using Block Connection Style: {:?}", *node.connect_style.borrow());
271         }
272         // Update the block internally before handing it over to LDK, to ensure our assertions regarding
273         // transaction broadcast are correct.
274         node.blocks.lock().unwrap().push((block.clone(), height));
275         if !skip_intermediaries {
276                 let txdata: Vec<_> = block.txdata.iter().enumerate().collect();
277                 match *node.connect_style.borrow() {
278                         ConnectStyle::BestBlockFirst|ConnectStyle::BestBlockFirstSkippingBlocks|ConnectStyle::BestBlockFirstReorgsOnlyTip => {
279                                 node.chain_monitor.chain_monitor.best_block_updated(&block.header, height);
280                                 call_claimable_balances(node);
281                                 node.chain_monitor.chain_monitor.transactions_confirmed(&block.header, &txdata, height);
282                                 node.node.best_block_updated(&block.header, height);
283                                 node.node.transactions_confirmed(&block.header, &txdata, height);
284                         },
285                         ConnectStyle::TransactionsFirst|ConnectStyle::TransactionsFirstSkippingBlocks|
286                         ConnectStyle::TransactionsDuplicativelyFirstSkippingBlocks|ConnectStyle::HighlyRedundantTransactionsFirstSkippingBlocks|
287                         ConnectStyle::TransactionsFirstReorgsOnlyTip => {
288                                 if *node.connect_style.borrow() == ConnectStyle::HighlyRedundantTransactionsFirstSkippingBlocks {
289                                         let mut connections = Vec::new();
290                                         for (block, height) in node.blocks.lock().unwrap().iter() {
291                                                 if !block.txdata.is_empty() {
292                                                         // Reconnect all transactions we've ever seen to ensure transaction connection
293                                                         // is *really* idempotent. This is a somewhat likely deployment for some
294                                                         // esplora implementations of chain sync which try to reduce state and
295                                                         // complexity as much as possible.
296                                                         //
297                                                         // Sadly we have to clone the block here to maintain lockorder. In the
298                                                         // future we should consider Arc'ing the blocks to avoid this.
299                                                         connections.push((block.clone(), *height));
300                                                 }
301                                         }
302                                         for (old_block, height) in connections {
303                                                 node.chain_monitor.chain_monitor.transactions_confirmed(&old_block.header,
304                                                         &old_block.txdata.iter().enumerate().collect::<Vec<_>>(), height);
305                                         }
306                                 }
307                                 node.chain_monitor.chain_monitor.transactions_confirmed(&block.header, &txdata, height);
308                                 if *node.connect_style.borrow() == ConnectStyle::TransactionsDuplicativelyFirstSkippingBlocks {
309                                         node.chain_monitor.chain_monitor.transactions_confirmed(&block.header, &txdata, height);
310                                 }
311                                 call_claimable_balances(node);
312                                 node.chain_monitor.chain_monitor.best_block_updated(&block.header, height);
313                                 node.node.transactions_confirmed(&block.header, &txdata, height);
314                                 node.node.best_block_updated(&block.header, height);
315                         },
316                         ConnectStyle::FullBlockViaListen => {
317                                 node.chain_monitor.chain_monitor.block_connected(&block, height);
318                                 node.node.block_connected(&block, height);
319                         }
320                 }
321         }
322
323         for tx in &block.txdata {
324                 for input in &tx.input {
325                         node.wallet_source.remove_utxo(input.previous_output);
326                 }
327                 let wallet_script = node.wallet_source.get_change_script().unwrap();
328                 for (idx, output) in tx.output.iter().enumerate() {
329                         if output.script_pubkey == wallet_script {
330                                 let outpoint = bitcoin::OutPoint { txid: tx.txid(), vout: idx as u32 };
331                                 node.wallet_source.add_utxo(outpoint, output.value);
332                         }
333                 }
334         }
335 }
336
337 pub fn disconnect_blocks<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, count: u32) {
338         call_claimable_balances(node);
339         #[cfg(feature = "std")] {
340                 eprintln!("Disconnecting {} blocks using Block Connection Style: {:?}", count, *node.connect_style.borrow());
341         }
342         for i in 0..count {
343                 let orig = node.blocks.lock().unwrap().pop().unwrap();
344                 assert!(orig.1 > 0); // Cannot disconnect genesis
345                 let prev = node.blocks.lock().unwrap().last().unwrap().clone();
346
347                 match *node.connect_style.borrow() {
348                         ConnectStyle::FullBlockViaListen => {
349                                 node.chain_monitor.chain_monitor.block_disconnected(&orig.0.header, orig.1);
350                                 Listen::block_disconnected(node.node, &orig.0.header, orig.1);
351                         },
352                         ConnectStyle::BestBlockFirstSkippingBlocks|ConnectStyle::TransactionsFirstSkippingBlocks|
353                         ConnectStyle::HighlyRedundantTransactionsFirstSkippingBlocks|ConnectStyle::TransactionsDuplicativelyFirstSkippingBlocks => {
354                                 if i == count - 1 {
355                                         node.chain_monitor.chain_monitor.best_block_updated(&prev.0.header, prev.1);
356                                         node.node.best_block_updated(&prev.0.header, prev.1);
357                                 }
358                         },
359                         ConnectStyle::BestBlockFirstReorgsOnlyTip|ConnectStyle::TransactionsFirstReorgsOnlyTip => {
360                                 for tx in orig.0.txdata {
361                                         node.chain_monitor.chain_monitor.transaction_unconfirmed(&tx.txid());
362                                         node.node.transaction_unconfirmed(&tx.txid());
363                                 }
364                         },
365                         _ => {
366                                 node.chain_monitor.chain_monitor.best_block_updated(&prev.0.header, prev.1);
367                                 node.node.best_block_updated(&prev.0.header, prev.1);
368                         },
369                 }
370                 call_claimable_balances(node);
371         }
372 }
373
374 pub fn disconnect_all_blocks<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>) {
375         let count = node.blocks.lock().unwrap().len() as u32 - 1;
376         disconnect_blocks(node, count);
377 }
378
379 pub struct TestChanMonCfg {
380         pub tx_broadcaster: test_utils::TestBroadcaster,
381         pub fee_estimator: test_utils::TestFeeEstimator,
382         pub chain_source: test_utils::TestChainSource,
383         pub persister: test_utils::TestPersister,
384         pub logger: test_utils::TestLogger,
385         pub keys_manager: test_utils::TestKeysInterface,
386         pub scorer: RwLock<test_utils::TestScorer>,
387 }
388
389 pub struct NodeCfg<'a> {
390         pub chain_source: &'a test_utils::TestChainSource,
391         pub tx_broadcaster: &'a test_utils::TestBroadcaster,
392         pub fee_estimator: &'a test_utils::TestFeeEstimator,
393         pub router: test_utils::TestRouter<'a>,
394         pub message_router: test_utils::TestMessageRouter<'a>,
395         pub chain_monitor: test_utils::TestChainMonitor<'a>,
396         pub keys_manager: &'a test_utils::TestKeysInterface,
397         pub logger: &'a test_utils::TestLogger,
398         pub network_graph: Arc<NetworkGraph<&'a test_utils::TestLogger>>,
399         pub node_seed: [u8; 32],
400         pub override_init_features: Rc<RefCell<Option<InitFeatures>>>,
401 }
402
403 type TestChannelManager<'node_cfg, 'chan_mon_cfg> = ChannelManager<
404         &'node_cfg TestChainMonitor<'chan_mon_cfg>,
405         &'chan_mon_cfg test_utils::TestBroadcaster,
406         &'node_cfg test_utils::TestKeysInterface,
407         &'node_cfg test_utils::TestKeysInterface,
408         &'node_cfg test_utils::TestKeysInterface,
409         &'chan_mon_cfg test_utils::TestFeeEstimator,
410         &'node_cfg test_utils::TestRouter<'chan_mon_cfg>,
411         &'chan_mon_cfg test_utils::TestLogger,
412 >;
413
414 type TestOnionMessenger<'chan_man, 'node_cfg, 'chan_mon_cfg> = OnionMessenger<
415         DedicatedEntropy,
416         &'node_cfg test_utils::TestKeysInterface,
417         &'chan_mon_cfg test_utils::TestLogger,
418         &'node_cfg test_utils::TestMessageRouter<'chan_mon_cfg>,
419         &'chan_man TestChannelManager<'node_cfg, 'chan_mon_cfg>,
420         IgnoringMessageHandler,
421 >;
422
423 /// For use with [`OnionMessenger`] otherwise `test_restored_packages_retry` will fail. This is
424 /// because that test uses older serialized data produced by calling [`EntropySource`] in a specific
425 /// manner. Using the same [`EntropySource`] with [`OnionMessenger`] would introduce another call,
426 /// causing the produced data to no longer match.
427 pub struct DedicatedEntropy(RandomBytes);
428
429 impl Deref for DedicatedEntropy {
430         type Target = RandomBytes;
431         fn deref(&self) -> &Self::Target { &self.0 }
432 }
433
434 pub struct Node<'chan_man, 'node_cfg: 'chan_man, 'chan_mon_cfg: 'node_cfg> {
435         pub chain_source: &'chan_mon_cfg test_utils::TestChainSource,
436         pub tx_broadcaster: &'chan_mon_cfg test_utils::TestBroadcaster,
437         pub fee_estimator: &'chan_mon_cfg test_utils::TestFeeEstimator,
438         pub router: &'node_cfg test_utils::TestRouter<'chan_mon_cfg>,
439         pub chain_monitor: &'node_cfg test_utils::TestChainMonitor<'chan_mon_cfg>,
440         pub keys_manager: &'chan_mon_cfg test_utils::TestKeysInterface,
441         pub node: &'chan_man TestChannelManager<'node_cfg, 'chan_mon_cfg>,
442         pub onion_messenger: TestOnionMessenger<'chan_man, 'node_cfg, 'chan_mon_cfg>,
443         pub network_graph: &'node_cfg NetworkGraph<&'chan_mon_cfg test_utils::TestLogger>,
444         pub gossip_sync: P2PGossipSync<&'node_cfg NetworkGraph<&'chan_mon_cfg test_utils::TestLogger>, &'chan_mon_cfg test_utils::TestChainSource, &'chan_mon_cfg test_utils::TestLogger>,
445         pub node_seed: [u8; 32],
446         pub network_payment_count: Rc<RefCell<u8>>,
447         pub network_chan_count: Rc<RefCell<u32>>,
448         pub logger: &'chan_mon_cfg test_utils::TestLogger,
449         pub blocks: Arc<Mutex<Vec<(Block, u32)>>>,
450         pub connect_style: Rc<RefCell<ConnectStyle>>,
451         pub override_init_features: Rc<RefCell<Option<InitFeatures>>>,
452         pub wallet_source: Arc<test_utils::TestWalletSource>,
453         pub bump_tx_handler: BumpTransactionEventHandler<
454                 &'chan_mon_cfg test_utils::TestBroadcaster,
455                 Arc<Wallet<Arc<test_utils::TestWalletSource>, &'chan_mon_cfg test_utils::TestLogger>>,
456                 &'chan_mon_cfg test_utils::TestKeysInterface,
457                 &'chan_mon_cfg test_utils::TestLogger,
458         >,
459 }
460
461 impl<'a, 'b, 'c> Node<'a, 'b, 'c> {
462         pub fn init_features(&self, peer_node_id: &PublicKey) -> InitFeatures {
463                 self.override_init_features.borrow().clone()
464                         .unwrap_or_else(|| self.node.init_features() | self.onion_messenger.provided_init_features(peer_node_id))
465         }
466 }
467
468 #[cfg(feature = "std")]
469 impl<'a, 'b, 'c> std::panic::UnwindSafe for Node<'a, 'b, 'c> {}
470 #[cfg(feature = "std")]
471 impl<'a, 'b, 'c> std::panic::RefUnwindSafe for Node<'a, 'b, 'c> {}
472 impl<'a, 'b, 'c> Node<'a, 'b, 'c> {
473         pub fn best_block_hash(&self) -> BlockHash {
474                 self.blocks.lock().unwrap().last().unwrap().0.block_hash()
475         }
476         pub fn best_block_info(&self) -> (BlockHash, u32) {
477                 self.blocks.lock().unwrap().last().map(|(a, b)| (a.block_hash(), *b)).unwrap()
478         }
479         pub fn get_block_header(&self, height: u32) -> Header {
480                 self.blocks.lock().unwrap()[height as usize].0.header
481         }
482         /// Changes the channel signer's availability for the specified peer and channel.
483         ///
484         /// When `available` is set to `true`, the channel signer will behave normally. When set to
485         /// `false`, the channel signer will act like an off-line remote signer and will return `Err` for
486         /// several of the signing methods. Currently, only `get_per_commitment_point` and
487         /// `release_commitment_secret` are affected by this setting.
488         #[cfg(test)]
489         pub fn set_channel_signer_available(&self, peer_id: &PublicKey, chan_id: &ChannelId, available: bool) {
490                 use crate::sign::ChannelSigner;
491                 log_debug!(self.logger, "Setting channel signer for {} as available={}", chan_id, available);
492
493                 let per_peer_state = self.node.per_peer_state.read().unwrap();
494                 let chan_lock = per_peer_state.get(peer_id).unwrap().lock().unwrap();
495
496                 let mut channel_keys_id = None;
497                 if let Some(chan) = chan_lock.channel_by_id.get(chan_id).map(|phase| phase.context()) {
498                         chan.get_signer().as_ecdsa().unwrap().set_available(available);
499                         channel_keys_id = Some(chan.channel_keys_id);
500                 }
501
502                 let mut monitor = None;
503                 for (funding_txo, channel_id) in self.chain_monitor.chain_monitor.list_monitors() {
504                         if *chan_id == channel_id {
505                                 monitor = self.chain_monitor.chain_monitor.get_monitor(funding_txo).ok();
506                         }
507                 }
508                 if let Some(monitor) = monitor {
509                         monitor.do_signer_call(|signer| {
510                                 channel_keys_id = channel_keys_id.or(Some(signer.inner.channel_keys_id()));
511                                 signer.set_available(available)
512                         });
513                 }
514
515                 if available {
516                         self.keys_manager.unavailable_signers.lock().unwrap()
517                                 .remove(channel_keys_id.as_ref().unwrap());
518                 } else {
519                         self.keys_manager.unavailable_signers.lock().unwrap()
520                                 .insert(channel_keys_id.unwrap());
521                 }
522         }
523 }
524
525 /// If we need an unsafe pointer to a `Node` (ie to reference it in a thread
526 /// pre-std::thread::scope), this provides that with `Sync`. Note that accessing some of the fields
527 /// in the `Node` are not safe to use (i.e. the ones behind an `Rc`), but that's left to the caller
528 /// to figure out.
529 pub struct NodePtr(pub *const Node<'static, 'static, 'static>);
530 impl NodePtr {
531         pub fn from_node<'a, 'b: 'a, 'c: 'b>(node: &Node<'a, 'b, 'c>) -> Self {
532                 Self((node as *const Node<'a, 'b, 'c>).cast())
533         }
534 }
535 unsafe impl Send for NodePtr {}
536 unsafe impl Sync for NodePtr {}
537
538
539 pub trait NodeHolder {
540         type CM: AChannelManager;
541         fn node(&self) -> &ChannelManager<
542                 <Self::CM as AChannelManager>::M,
543                 <Self::CM as AChannelManager>::T,
544                 <Self::CM as AChannelManager>::ES,
545                 <Self::CM as AChannelManager>::NS,
546                 <Self::CM as AChannelManager>::SP,
547                 <Self::CM as AChannelManager>::F,
548                 <Self::CM as AChannelManager>::R,
549                 <Self::CM as AChannelManager>::L>;
550         fn chain_monitor(&self) -> Option<&test_utils::TestChainMonitor>;
551 }
552 impl<H: NodeHolder> NodeHolder for &H {
553         type CM = H::CM;
554         fn node(&self) -> &ChannelManager<
555                 <Self::CM as AChannelManager>::M,
556                 <Self::CM as AChannelManager>::T,
557                 <Self::CM as AChannelManager>::ES,
558                 <Self::CM as AChannelManager>::NS,
559                 <Self::CM as AChannelManager>::SP,
560                 <Self::CM as AChannelManager>::F,
561                 <Self::CM as AChannelManager>::R,
562                 <Self::CM as AChannelManager>::L> { (*self).node() }
563         fn chain_monitor(&self) -> Option<&test_utils::TestChainMonitor> { (*self).chain_monitor() }
564 }
565 impl<'a, 'b: 'a, 'c: 'b> NodeHolder for Node<'a, 'b, 'c> {
566         type CM = TestChannelManager<'b, 'c>;
567         fn node(&self) -> &TestChannelManager<'b, 'c> { &self.node }
568         fn chain_monitor(&self) -> Option<&test_utils::TestChainMonitor> { Some(self.chain_monitor) }
569 }
570
571 impl<'a, 'b, 'c> Drop for Node<'a, 'b, 'c> {
572         fn drop(&mut self) {
573                 if !panicking() {
574                         // Check that we processed all pending events
575                         let msg_events = self.node.get_and_clear_pending_msg_events();
576                         if !msg_events.is_empty() {
577                                 panic!("Had excess message events on node {}: {:?}", self.logger.id, msg_events);
578                         }
579                         let events = self.node.get_and_clear_pending_events();
580                         if !events.is_empty() {
581                                 panic!("Had excess events on node {}: {:?}", self.logger.id, events);
582                         }
583                         let added_monitors = self.chain_monitor.added_monitors.lock().unwrap().split_off(0);
584                         if !added_monitors.is_empty() {
585                                 panic!("Had {} excess added monitors on node {}", added_monitors.len(), self.logger.id);
586                         }
587
588                         // Check that if we serialize the network graph, we can deserialize it again.
589                         let network_graph = {
590                                 let mut w = test_utils::TestVecWriter(Vec::new());
591                                 self.network_graph.write(&mut w).unwrap();
592                                 let network_graph_deser = <NetworkGraph<_>>::read(&mut io::Cursor::new(&w.0), self.logger).unwrap();
593                                 assert!(network_graph_deser == *self.network_graph);
594                                 let gossip_sync = P2PGossipSync::new(
595                                         &network_graph_deser, Some(self.chain_source), self.logger
596                                 );
597                                 let mut chan_progress = 0;
598                                 loop {
599                                         let orig_announcements = self.gossip_sync.get_next_channel_announcement(chan_progress);
600                                         let deserialized_announcements = gossip_sync.get_next_channel_announcement(chan_progress);
601                                         assert!(orig_announcements == deserialized_announcements);
602                                         chan_progress = match orig_announcements {
603                                                 Some(announcement) => announcement.0.contents.short_channel_id + 1,
604                                                 None => break,
605                                         };
606                                 }
607                                 let mut node_progress = None;
608                                 loop {
609                                         let orig_announcements = self.gossip_sync.get_next_node_announcement(node_progress.as_ref());
610                                         let deserialized_announcements = gossip_sync.get_next_node_announcement(node_progress.as_ref());
611                                         assert!(orig_announcements == deserialized_announcements);
612                                         node_progress = match orig_announcements {
613                                                 Some(announcement) => Some(announcement.contents.node_id),
614                                                 None => break,
615                                         };
616                                 }
617                                 network_graph_deser
618                         };
619
620                         // Check that if we serialize and then deserialize all our channel monitors we get the
621                         // same set of outputs to watch for on chain as we have now. Note that if we write
622                         // tests that fully close channels and remove the monitors at some point this may break.
623                         let feeest = test_utils::TestFeeEstimator { sat_per_kw: Mutex::new(253) };
624                         let mut deserialized_monitors = Vec::new();
625                         {
626                                 for (outpoint, _channel_id) in self.chain_monitor.chain_monitor.list_monitors() {
627                                         let mut w = test_utils::TestVecWriter(Vec::new());
628                                         self.chain_monitor.chain_monitor.get_monitor(outpoint).unwrap().write(&mut w).unwrap();
629                                         let (_, deserialized_monitor) = <(BlockHash, ChannelMonitor<TestChannelSigner>)>::read(
630                                                 &mut io::Cursor::new(&w.0), (self.keys_manager, self.keys_manager)).unwrap();
631                                         deserialized_monitors.push(deserialized_monitor);
632                                 }
633                         }
634
635                         let broadcaster = test_utils::TestBroadcaster {
636                                 txn_broadcasted: Mutex::new(self.tx_broadcaster.txn_broadcasted.lock().unwrap().clone()),
637                                 blocks: Arc::new(Mutex::new(self.tx_broadcaster.blocks.lock().unwrap().clone())),
638                         };
639
640                         // Before using all the new monitors to check the watch outpoints, use the full set of
641                         // them to ensure we can write and reload our ChannelManager.
642                         {
643                                 let mut channel_monitors = new_hash_map();
644                                 for monitor in deserialized_monitors.iter_mut() {
645                                         channel_monitors.insert(monitor.get_funding_txo().0, monitor);
646                                 }
647
648                                 let scorer = RwLock::new(test_utils::TestScorer::new());
649                                 let mut w = test_utils::TestVecWriter(Vec::new());
650                                 self.node.write(&mut w).unwrap();
651                                 <(BlockHash, ChannelManager<&test_utils::TestChainMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestKeysInterface, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator, &test_utils::TestRouter, &test_utils::TestLogger>)>::read(&mut io::Cursor::new(w.0), ChannelManagerReadArgs {
652                                         default_config: *self.node.get_current_default_configuration(),
653                                         entropy_source: self.keys_manager,
654                                         node_signer: self.keys_manager,
655                                         signer_provider: self.keys_manager,
656                                         fee_estimator: &test_utils::TestFeeEstimator { sat_per_kw: Mutex::new(253) },
657                                         router: &test_utils::TestRouter::new(Arc::new(network_graph), &self.logger, &scorer),
658                                         chain_monitor: self.chain_monitor,
659                                         tx_broadcaster: &broadcaster,
660                                         logger: &self.logger,
661                                         channel_monitors,
662                                 }).unwrap();
663                         }
664
665                         let persister = test_utils::TestPersister::new();
666                         let chain_source = test_utils::TestChainSource::new(Network::Testnet);
667                         let chain_monitor = test_utils::TestChainMonitor::new(Some(&chain_source), &broadcaster, &self.logger, &feeest, &persister, &self.keys_manager);
668                         for deserialized_monitor in deserialized_monitors.drain(..) {
669                                 let funding_outpoint = deserialized_monitor.get_funding_txo().0;
670                                 if chain_monitor.watch_channel(funding_outpoint, deserialized_monitor) != Ok(ChannelMonitorUpdateStatus::Completed) {
671                                         panic!();
672                                 }
673                         }
674                         assert_eq!(*chain_source.watched_txn.unsafe_well_ordered_double_lock_self(), *self.chain_source.watched_txn.unsafe_well_ordered_double_lock_self());
675                         assert_eq!(*chain_source.watched_outputs.unsafe_well_ordered_double_lock_self(), *self.chain_source.watched_outputs.unsafe_well_ordered_double_lock_self());
676                 }
677         }
678 }
679
680 pub fn create_chan_between_nodes<'a, 'b, 'c: 'd, 'd>(node_a: &'a Node<'b, 'c, 'd>, node_b: &'a Node<'b, 'c, 'd>) -> (msgs::ChannelAnnouncement, msgs::ChannelUpdate, msgs::ChannelUpdate, ChannelId, Transaction) {
681         create_chan_between_nodes_with_value(node_a, node_b, 100000, 10001)
682 }
683
684 pub fn create_chan_between_nodes_with_value<'a, 'b, 'c: 'd, 'd>(node_a: &'a Node<'b, 'c, 'd>, node_b: &'a Node<'b, 'c, 'd>, channel_value: u64, push_msat: u64) -> (msgs::ChannelAnnouncement, msgs::ChannelUpdate, msgs::ChannelUpdate, ChannelId, Transaction) {
685         let (channel_ready, channel_id, tx) = create_chan_between_nodes_with_value_a(node_a, node_b, channel_value, push_msat);
686         let (announcement, as_update, bs_update) = create_chan_between_nodes_with_value_b(node_a, node_b, &channel_ready);
687         (announcement, as_update, bs_update, channel_id, tx)
688 }
689
690 /// Gets an RAA and CS which were sent in response to a commitment update
691 pub fn get_revoke_commit_msgs<CM: AChannelManager, H: NodeHolder<CM=CM>>(node: &H, recipient: &PublicKey) -> (msgs::RevokeAndACK, msgs::CommitmentSigned) {
692         let events = node.node().get_and_clear_pending_msg_events();
693         assert_eq!(events.len(), 2);
694         (match events[0] {
695                 MessageSendEvent::SendRevokeAndACK { ref node_id, ref msg } => {
696                         assert_eq!(node_id, recipient);
697                         (*msg).clone()
698                 },
699                 _ => panic!("Unexpected event"),
700         }, match events[1] {
701                 MessageSendEvent::UpdateHTLCs { ref node_id, ref updates } => {
702                         assert_eq!(node_id, recipient);
703                         assert!(updates.update_add_htlcs.is_empty());
704                         assert!(updates.update_fulfill_htlcs.is_empty());
705                         assert!(updates.update_fail_htlcs.is_empty());
706                         assert!(updates.update_fail_malformed_htlcs.is_empty());
707                         assert!(updates.update_fee.is_none());
708                         updates.commitment_signed.clone()
709                 },
710                 _ => panic!("Unexpected event"),
711         })
712 }
713
714 #[macro_export]
715 /// Gets an RAA and CS which were sent in response to a commitment update
716 ///
717 /// Don't use this, use the identically-named function instead.
718 macro_rules! get_revoke_commit_msgs {
719         ($node: expr, $node_id: expr) => {
720                 $crate::ln::functional_test_utils::get_revoke_commit_msgs(&$node, &$node_id)
721         }
722 }
723
724 /// Get an specific event message from the pending events queue.
725 #[macro_export]
726 macro_rules! get_event_msg {
727         ($node: expr, $event_type: path, $node_id: expr) => {
728                 {
729                         let events = $node.node.get_and_clear_pending_msg_events();
730                         assert_eq!(events.len(), 1);
731                         match events[0] {
732                                 $event_type { ref node_id, ref msg } => {
733                                         assert_eq!(*node_id, $node_id);
734                                         (*msg).clone()
735                                 },
736                                 _ => panic!("Unexpected event"),
737                         }
738                 }
739         }
740 }
741
742 /// Get an error message from the pending events queue.
743 pub fn get_err_msg(node: &Node, recipient: &PublicKey) -> msgs::ErrorMessage {
744         let events = node.node.get_and_clear_pending_msg_events();
745         assert_eq!(events.len(), 1);
746         match events[0] {
747                 MessageSendEvent::HandleError {
748                         action: msgs::ErrorAction::SendErrorMessage { ref msg }, ref node_id
749                 } => {
750                         assert_eq!(node_id, recipient);
751                         (*msg).clone()
752                 },
753                 MessageSendEvent::HandleError {
754                         action: msgs::ErrorAction::DisconnectPeer { ref msg }, ref node_id
755                 } => {
756                         assert_eq!(node_id, recipient);
757                         msg.as_ref().unwrap().clone()
758                 },
759                 _ => panic!("Unexpected event"),
760         }
761 }
762
763 /// Get a specific event from the pending events queue.
764 #[macro_export]
765 macro_rules! get_event {
766         ($node: expr, $event_type: path) => {
767                 {
768                         let mut events = $node.node.get_and_clear_pending_events();
769                         assert_eq!(events.len(), 1);
770                         let ev = events.pop().unwrap();
771                         match ev {
772                                 $event_type { .. } => {
773                                         ev
774                                 },
775                                 _ => panic!("Unexpected event"),
776                         }
777                 }
778         }
779 }
780
781 /// Gets an UpdateHTLCs MessageSendEvent
782 pub fn get_htlc_update_msgs(node: &Node, recipient: &PublicKey) -> msgs::CommitmentUpdate {
783         let events = node.node.get_and_clear_pending_msg_events();
784         assert_eq!(events.len(), 1);
785         match events[0] {
786                 MessageSendEvent::UpdateHTLCs { ref node_id, ref updates } => {
787                         assert_eq!(node_id, recipient);
788                         (*updates).clone()
789                 },
790                 _ => panic!("Unexpected event"),
791         }
792 }
793
794 #[macro_export]
795 /// Gets an UpdateHTLCs MessageSendEvent
796 ///
797 /// Don't use this, use the identically-named function instead.
798 macro_rules! get_htlc_update_msgs {
799         ($node: expr, $node_id: expr) => {
800                 $crate::ln::functional_test_utils::get_htlc_update_msgs(&$node, &$node_id)
801         }
802 }
803
804 /// Fetches the first `msg_event` to the passed `node_id` in the passed `msg_events` vec.
805 /// Returns the `msg_event`.
806 ///
807 /// Note that even though `BroadcastChannelAnnouncement` and `BroadcastChannelUpdate`
808 /// `msg_events` are stored under specific peers, this function does not fetch such `msg_events` as
809 /// such messages are intended to all peers.
810 pub fn remove_first_msg_event_to_node(msg_node_id: &PublicKey, msg_events: &mut Vec<MessageSendEvent>) -> MessageSendEvent {
811         let ev_index = msg_events.iter().position(|e| { match e {
812                 MessageSendEvent::SendAcceptChannel { node_id, .. } => {
813                         node_id == msg_node_id
814                 },
815                 MessageSendEvent::SendOpenChannel { node_id, .. } => {
816                         node_id == msg_node_id
817                 },
818                 MessageSendEvent::SendFundingCreated { node_id, .. } => {
819                         node_id == msg_node_id
820                 },
821                 MessageSendEvent::SendFundingSigned { node_id, .. } => {
822                         node_id == msg_node_id
823                 },
824                 MessageSendEvent::SendChannelReady { node_id, .. } => {
825                         node_id == msg_node_id
826                 },
827                 MessageSendEvent::SendAnnouncementSignatures { node_id, .. } => {
828                         node_id == msg_node_id
829                 },
830                 MessageSendEvent::UpdateHTLCs { node_id, .. } => {
831                         node_id == msg_node_id
832                 },
833                 MessageSendEvent::SendRevokeAndACK { node_id, .. } => {
834                         node_id == msg_node_id
835                 },
836                 MessageSendEvent::SendClosingSigned { node_id, .. } => {
837                         node_id == msg_node_id
838                 },
839                 MessageSendEvent::SendShutdown { node_id, .. } => {
840                         node_id == msg_node_id
841                 },
842                 MessageSendEvent::SendChannelReestablish { node_id, .. } => {
843                         node_id == msg_node_id
844                 },
845                 MessageSendEvent::SendChannelAnnouncement { node_id, .. } => {
846                         node_id == msg_node_id
847                 },
848                 MessageSendEvent::BroadcastChannelAnnouncement { .. } => {
849                         false
850                 },
851                 MessageSendEvent::BroadcastChannelUpdate { .. } => {
852                         false
853                 },
854                 MessageSendEvent::BroadcastNodeAnnouncement { .. } => {
855                         false
856                 },
857                 MessageSendEvent::SendChannelUpdate { node_id, .. } => {
858                         node_id == msg_node_id
859                 },
860                 MessageSendEvent::HandleError { node_id, .. } => {
861                         node_id == msg_node_id
862                 },
863                 MessageSendEvent::SendChannelRangeQuery { node_id, .. } => {
864                         node_id == msg_node_id
865                 },
866                 MessageSendEvent::SendShortIdsQuery { node_id, .. } => {
867                         node_id == msg_node_id
868                 },
869                 MessageSendEvent::SendReplyChannelRange { node_id, .. } => {
870                         node_id == msg_node_id
871                 },
872                 MessageSendEvent::SendGossipTimestampFilter { node_id, .. } => {
873                         node_id == msg_node_id
874                 },
875                 MessageSendEvent::SendAcceptChannelV2 { node_id, .. } => {
876                         node_id == msg_node_id
877                 },
878                 MessageSendEvent::SendOpenChannelV2 { node_id, .. } => {
879                         node_id == msg_node_id
880                 },
881                 MessageSendEvent::SendStfu { node_id, .. } => {
882                         node_id == msg_node_id
883                 },
884                 MessageSendEvent::SendSplice { node_id, .. } => {
885                         node_id == msg_node_id
886                 },
887                 MessageSendEvent::SendSpliceAck { node_id, .. } => {
888                         node_id == msg_node_id
889                 },
890                 MessageSendEvent::SendSpliceLocked { node_id, .. } => {
891                         node_id == msg_node_id
892                 },
893                 MessageSendEvent::SendTxAddInput { node_id, .. } => {
894                         node_id == msg_node_id
895                 },
896                 MessageSendEvent::SendTxAddOutput { node_id, .. } => {
897                         node_id == msg_node_id
898                 },
899                 MessageSendEvent::SendTxRemoveInput { node_id, .. } => {
900                         node_id == msg_node_id
901                 },
902                 MessageSendEvent::SendTxRemoveOutput { node_id, .. } => {
903                         node_id == msg_node_id
904                 },
905                 MessageSendEvent::SendTxComplete { node_id, .. } => {
906                         node_id == msg_node_id
907                 },
908                 MessageSendEvent::SendTxSignatures { node_id, .. } => {
909                         node_id == msg_node_id
910                 },
911                 MessageSendEvent::SendTxInitRbf { node_id, .. } => {
912                         node_id == msg_node_id
913                 },
914                 MessageSendEvent::SendTxAckRbf { node_id, .. } => {
915                         node_id == msg_node_id
916                 },
917                 MessageSendEvent::SendTxAbort { node_id, .. } => {
918                         node_id == msg_node_id
919                 },
920         }});
921         if ev_index.is_some() {
922                 msg_events.remove(ev_index.unwrap())
923         } else {
924                 panic!("Couldn't find any MessageSendEvent to the node!")
925         }
926 }
927
928 #[cfg(test)]
929 macro_rules! get_channel_ref {
930         ($node: expr, $counterparty_node: expr, $per_peer_state_lock: ident, $peer_state_lock: ident, $channel_id: expr) => {
931                 {
932                         $per_peer_state_lock = $node.node.per_peer_state.read().unwrap();
933                         $peer_state_lock = $per_peer_state_lock.get(&$counterparty_node.node.get_our_node_id()).unwrap().lock().unwrap();
934                         $peer_state_lock.channel_by_id.get_mut(&$channel_id).unwrap()
935                 }
936         }
937 }
938
939 #[cfg(test)]
940 macro_rules! get_feerate {
941         ($node: expr, $counterparty_node: expr, $channel_id: expr) => {
942                 {
943                         let mut per_peer_state_lock;
944                         let mut peer_state_lock;
945                         let phase = get_channel_ref!($node, $counterparty_node, per_peer_state_lock, peer_state_lock, $channel_id);
946                         phase.context().get_feerate_sat_per_1000_weight()
947                 }
948         }
949 }
950
951 #[cfg(test)]
952 macro_rules! get_channel_type_features {
953         ($node: expr, $counterparty_node: expr, $channel_id: expr) => {
954                 {
955                         let mut per_peer_state_lock;
956                         let mut peer_state_lock;
957                         let chan = get_channel_ref!($node, $counterparty_node, per_peer_state_lock, peer_state_lock, $channel_id);
958                         chan.context().get_channel_type().clone()
959                 }
960         }
961 }
962
963 /// Returns a channel monitor given a channel id, making some naive assumptions
964 #[macro_export]
965 macro_rules! get_monitor {
966         ($node: expr, $channel_id: expr) => {
967                 {
968                         use bitcoin::hashes::Hash;
969                         let mut monitor = None;
970                         // Assume funding vout is either 0 or 1 blindly
971                         for index in 0..2 {
972                                 if let Ok(mon) = $node.chain_monitor.chain_monitor.get_monitor(
973                                         $crate::chain::transaction::OutPoint {
974                                                 txid: bitcoin::Txid::from_slice(&$channel_id.0[..]).unwrap(), index
975                                         })
976                                 {
977                                         monitor = Some(mon);
978                                         break;
979                                 }
980                         }
981                         monitor.unwrap()
982                 }
983         }
984 }
985
986 /// Returns any local commitment transactions for the channel.
987 #[macro_export]
988 macro_rules! get_local_commitment_txn {
989         ($node: expr, $channel_id: expr) => {
990                 {
991                         $crate::get_monitor!($node, $channel_id).unsafe_get_latest_holder_commitment_txn(&$node.logger)
992                 }
993         }
994 }
995
996 /// Check the error from attempting a payment.
997 #[macro_export]
998 macro_rules! unwrap_send_err {
999         ($res: expr, $all_failed: expr, $type: pat, $check: expr) => {
1000                 match &$res {
1001                         &Err(PaymentSendFailure::AllFailedResendSafe(ref fails)) if $all_failed => {
1002                                 assert_eq!(fails.len(), 1);
1003                                 match fails[0] {
1004                                         $type => { $check },
1005                                         _ => panic!(),
1006                                 }
1007                         },
1008                         &Err(PaymentSendFailure::PartialFailure { ref results, .. }) if !$all_failed => {
1009                                 assert_eq!(results.len(), 1);
1010                                 match results[0] {
1011                                         Err($type) => { $check },
1012                                         _ => panic!(),
1013                                 }
1014                         },
1015                         &Err(PaymentSendFailure::PathParameterError(ref result)) if !$all_failed => {
1016                                 assert_eq!(result.len(), 1);
1017                                 match result[0] {
1018                                         Err($type) => { $check },
1019                                         _ => panic!(),
1020                                 }
1021                         },
1022                         _ => {panic!()},
1023                 }
1024         }
1025 }
1026
1027 /// Check whether N channel monitor(s) have been added.
1028 pub fn check_added_monitors<CM: AChannelManager, H: NodeHolder<CM=CM>>(node: &H, count: usize) {
1029         if let Some(chain_monitor) = node.chain_monitor() {
1030                 let mut added_monitors = chain_monitor.added_monitors.lock().unwrap();
1031                 let n = added_monitors.len();
1032                 assert_eq!(n, count, "expected {} monitors to be added, not {}", count, n);
1033                 added_monitors.clear();
1034         }
1035 }
1036
1037 /// Check whether N channel monitor(s) have been added.
1038 ///
1039 /// Don't use this, use the identically-named function instead.
1040 #[macro_export]
1041 macro_rules! check_added_monitors {
1042         ($node: expr, $count: expr) => {
1043                 $crate::ln::functional_test_utils::check_added_monitors(&$node, $count);
1044         }
1045 }
1046
1047 /// Checks whether the claimed HTLC for the specified path has the correct channel information.
1048 ///
1049 /// This will panic if the path is empty, if the HTLC's channel ID is not actually a channel that
1050 /// connects the final two nodes in the path, or if the `user_channel_id` is incorrect.
1051 pub fn check_claimed_htlc_channel<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, path: &[&Node<'a, 'b, 'c>], htlc: &ClaimedHTLC) {
1052         let mut nodes = path.iter().rev();
1053         let dest = nodes.next().expect("path should have a destination").node;
1054         let prev = nodes.next().unwrap_or(&origin_node).node;
1055         let dest_channels = dest.list_channels();
1056         let ch = dest_channels.iter().find(|ch| ch.channel_id == htlc.channel_id)
1057                 .expect("HTLC's channel should be one of destination node's channels");
1058         assert_eq!(htlc.user_channel_id, ch.user_channel_id);
1059         assert_eq!(ch.counterparty.node_id, prev.get_our_node_id());
1060 }
1061
1062 pub fn _reload_node<'a, 'b, 'c>(node: &'a Node<'a, 'b, 'c>, default_config: UserConfig, chanman_encoded: &[u8], monitors_encoded: &[&[u8]]) -> TestChannelManager<'b, 'c> {
1063         let mut monitors_read = Vec::with_capacity(monitors_encoded.len());
1064         for encoded in monitors_encoded {
1065                 let mut monitor_read = &encoded[..];
1066                 let (_, monitor) = <(BlockHash, ChannelMonitor<TestChannelSigner>)>
1067                         ::read(&mut monitor_read, (node.keys_manager, node.keys_manager)).unwrap();
1068                 assert!(monitor_read.is_empty());
1069                 monitors_read.push(monitor);
1070         }
1071
1072         let mut node_read = &chanman_encoded[..];
1073         let (_, node_deserialized) = {
1074                 let mut channel_monitors = new_hash_map();
1075                 for monitor in monitors_read.iter_mut() {
1076                         assert!(channel_monitors.insert(monitor.get_funding_txo().0, monitor).is_none());
1077                 }
1078                 <(BlockHash, TestChannelManager<'b, 'c>)>::read(&mut node_read, ChannelManagerReadArgs {
1079                         default_config,
1080                         entropy_source: node.keys_manager,
1081                         node_signer: node.keys_manager,
1082                         signer_provider: node.keys_manager,
1083                         fee_estimator: node.fee_estimator,
1084                         router: node.router,
1085                         chain_monitor: node.chain_monitor,
1086                         tx_broadcaster: node.tx_broadcaster,
1087                         logger: node.logger,
1088                         channel_monitors,
1089                 }).unwrap()
1090         };
1091         assert!(node_read.is_empty());
1092
1093         for monitor in monitors_read.drain(..) {
1094                 let funding_outpoint = monitor.get_funding_txo().0;
1095                 assert_eq!(node.chain_monitor.watch_channel(funding_outpoint, monitor),
1096                         Ok(ChannelMonitorUpdateStatus::Completed));
1097                 check_added_monitors!(node, 1);
1098         }
1099
1100         node_deserialized
1101 }
1102
1103 #[cfg(test)]
1104 macro_rules! reload_node {
1105         ($node: expr, $new_config: expr, $chanman_encoded: expr, $monitors_encoded: expr, $persister: ident, $new_chain_monitor: ident, $new_channelmanager: ident) => {
1106                 let chanman_encoded = $chanman_encoded;
1107
1108                 $persister = test_utils::TestPersister::new();
1109                 $new_chain_monitor = test_utils::TestChainMonitor::new(Some($node.chain_source), $node.tx_broadcaster.clone(), $node.logger, $node.fee_estimator, &$persister, &$node.keys_manager);
1110                 $node.chain_monitor = &$new_chain_monitor;
1111
1112                 $new_channelmanager = _reload_node(&$node, $new_config, &chanman_encoded, $monitors_encoded);
1113                 $node.node = &$new_channelmanager;
1114                 $node.onion_messenger.set_offers_handler(&$new_channelmanager);
1115         };
1116         ($node: expr, $chanman_encoded: expr, $monitors_encoded: expr, $persister: ident, $new_chain_monitor: ident, $new_channelmanager: ident) => {
1117                 reload_node!($node, $crate::util::config::UserConfig::default(), $chanman_encoded, $monitors_encoded, $persister, $new_chain_monitor, $new_channelmanager);
1118         };
1119 }
1120
1121 pub fn create_funding_transaction<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>,
1122         expected_counterparty_node_id: &PublicKey, expected_chan_value: u64, expected_user_chan_id: u128)
1123  -> (ChannelId, Transaction, OutPoint)
1124 {
1125         internal_create_funding_transaction(node, expected_counterparty_node_id, expected_chan_value, expected_user_chan_id, false)
1126 }
1127
1128 pub fn create_coinbase_funding_transaction<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>,
1129         expected_counterparty_node_id: &PublicKey, expected_chan_value: u64, expected_user_chan_id: u128)
1130  -> (ChannelId, Transaction, OutPoint)
1131 {
1132         internal_create_funding_transaction(node, expected_counterparty_node_id, expected_chan_value, expected_user_chan_id, true)
1133 }
1134
1135 fn internal_create_funding_transaction<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>,
1136         expected_counterparty_node_id: &PublicKey, expected_chan_value: u64, expected_user_chan_id: u128,
1137         coinbase: bool) -> (ChannelId, Transaction, OutPoint) {
1138         let chan_id = *node.network_chan_count.borrow();
1139
1140         let events = node.node.get_and_clear_pending_events();
1141         assert_eq!(events.len(), 1);
1142         match events[0] {
1143                 Event::FundingGenerationReady { ref temporary_channel_id, ref counterparty_node_id, ref channel_value_satoshis, ref output_script, user_channel_id } => {
1144                         assert_eq!(counterparty_node_id, expected_counterparty_node_id);
1145                         assert_eq!(*channel_value_satoshis, expected_chan_value);
1146                         assert_eq!(user_channel_id, expected_user_chan_id);
1147
1148                         let input = if coinbase {
1149                                 vec![TxIn {
1150                                         previous_output: bitcoin::OutPoint::null(),
1151                                         ..Default::default()
1152                                 }]
1153                         } else {
1154                                 Vec::new()
1155                         };
1156
1157                         let tx = Transaction { version: chan_id as i32, lock_time: LockTime::ZERO, input, output: vec![TxOut {
1158                                 value: *channel_value_satoshis, script_pubkey: output_script.clone(),
1159                         }]};
1160                         let funding_outpoint = OutPoint { txid: tx.txid(), index: 0 };
1161                         (*temporary_channel_id, tx, funding_outpoint)
1162                 },
1163                 _ => panic!("Unexpected event"),
1164         }
1165 }
1166
1167 pub fn sign_funding_transaction<'a, 'b, 'c>(node_a: &Node<'a, 'b, 'c>, node_b: &Node<'a, 'b, 'c>, channel_value: u64, expected_temporary_channel_id: ChannelId) -> Transaction {
1168         let (temporary_channel_id, tx, funding_output) = create_funding_transaction(node_a, &node_b.node.get_our_node_id(), channel_value, 42);
1169         assert_eq!(temporary_channel_id, expected_temporary_channel_id);
1170
1171         assert!(node_a.node.funding_transaction_generated(&temporary_channel_id, &node_b.node.get_our_node_id(), tx.clone()).is_ok());
1172         check_added_monitors!(node_a, 0);
1173
1174         let funding_created_msg = get_event_msg!(node_a, MessageSendEvent::SendFundingCreated, node_b.node.get_our_node_id());
1175         assert_eq!(funding_created_msg.temporary_channel_id, expected_temporary_channel_id);
1176         node_b.node.handle_funding_created(&node_a.node.get_our_node_id(), &funding_created_msg);
1177         {
1178                 let mut added_monitors = node_b.chain_monitor.added_monitors.lock().unwrap();
1179                 assert_eq!(added_monitors.len(), 1);
1180                 assert_eq!(added_monitors[0].0, funding_output);
1181                 added_monitors.clear();
1182         }
1183         expect_channel_pending_event(&node_b, &node_a.node.get_our_node_id());
1184
1185         node_a.node.handle_funding_signed(&node_b.node.get_our_node_id(), &get_event_msg!(node_b, MessageSendEvent::SendFundingSigned, node_a.node.get_our_node_id()));
1186         {
1187                 let mut added_monitors = node_a.chain_monitor.added_monitors.lock().unwrap();
1188                 assert_eq!(added_monitors.len(), 1);
1189                 assert_eq!(added_monitors[0].0, funding_output);
1190                 added_monitors.clear();
1191         }
1192         expect_channel_pending_event(&node_a, &node_b.node.get_our_node_id());
1193
1194         let events_4 = node_a.node.get_and_clear_pending_events();
1195         assert_eq!(events_4.len(), 0);
1196
1197         assert_eq!(node_a.tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
1198         assert_eq!(node_a.tx_broadcaster.txn_broadcasted.lock().unwrap()[0], tx);
1199         node_a.tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
1200
1201         // Ensure that funding_transaction_generated is idempotent.
1202         assert!(node_a.node.funding_transaction_generated(&temporary_channel_id, &node_b.node.get_our_node_id(), tx.clone()).is_err());
1203         assert!(node_a.node.get_and_clear_pending_msg_events().is_empty());
1204         check_added_monitors!(node_a, 0);
1205
1206         tx
1207 }
1208
1209 // Receiver must have been initialized with manually_accept_inbound_channels set to true.
1210 pub fn open_zero_conf_channel<'a, 'b, 'c, 'd>(initiator: &'a Node<'b, 'c, 'd>, receiver: &'a Node<'b, 'c, 'd>, initiator_config: Option<UserConfig>) -> (bitcoin::Transaction, ChannelId) {
1211         let initiator_channels = initiator.node.list_usable_channels().len();
1212         let receiver_channels = receiver.node.list_usable_channels().len();
1213
1214         initiator.node.create_channel(receiver.node.get_our_node_id(), 100_000, 10_001, 42, None, initiator_config).unwrap();
1215         let open_channel = get_event_msg!(initiator, MessageSendEvent::SendOpenChannel, receiver.node.get_our_node_id());
1216
1217         receiver.node.handle_open_channel(&initiator.node.get_our_node_id(), &open_channel);
1218         let events = receiver.node.get_and_clear_pending_events();
1219         assert_eq!(events.len(), 1);
1220         match events[0] {
1221                 Event::OpenChannelRequest { temporary_channel_id, .. } => {
1222                         receiver.node.accept_inbound_channel_from_trusted_peer_0conf(&temporary_channel_id, &initiator.node.get_our_node_id(), 0).unwrap();
1223                 },
1224                 _ => panic!("Unexpected event"),
1225         };
1226
1227         let accept_channel = get_event_msg!(receiver, MessageSendEvent::SendAcceptChannel, initiator.node.get_our_node_id());
1228         assert_eq!(accept_channel.common_fields.minimum_depth, 0);
1229         initiator.node.handle_accept_channel(&receiver.node.get_our_node_id(), &accept_channel);
1230
1231         let (temporary_channel_id, tx, _) = create_funding_transaction(&initiator, &receiver.node.get_our_node_id(), 100_000, 42);
1232         initiator.node.funding_transaction_generated(&temporary_channel_id, &receiver.node.get_our_node_id(), tx.clone()).unwrap();
1233         let funding_created = get_event_msg!(initiator, MessageSendEvent::SendFundingCreated, receiver.node.get_our_node_id());
1234
1235         receiver.node.handle_funding_created(&initiator.node.get_our_node_id(), &funding_created);
1236         check_added_monitors!(receiver, 1);
1237         let bs_signed_locked = receiver.node.get_and_clear_pending_msg_events();
1238         assert_eq!(bs_signed_locked.len(), 2);
1239         let as_channel_ready;
1240         match &bs_signed_locked[0] {
1241                 MessageSendEvent::SendFundingSigned { node_id, msg } => {
1242                         assert_eq!(*node_id, initiator.node.get_our_node_id());
1243                         initiator.node.handle_funding_signed(&receiver.node.get_our_node_id(), &msg);
1244                         expect_channel_pending_event(&initiator, &receiver.node.get_our_node_id());
1245                         expect_channel_pending_event(&receiver, &initiator.node.get_our_node_id());
1246                         check_added_monitors!(initiator, 1);
1247
1248                         assert_eq!(initiator.tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
1249                         assert_eq!(initiator.tx_broadcaster.txn_broadcasted.lock().unwrap().split_off(0)[0], tx);
1250
1251                         as_channel_ready = get_event_msg!(initiator, MessageSendEvent::SendChannelReady, receiver.node.get_our_node_id());
1252                 }
1253                 _ => panic!("Unexpected event"),
1254         }
1255         match &bs_signed_locked[1] {
1256                 MessageSendEvent::SendChannelReady { node_id, msg } => {
1257                         assert_eq!(*node_id, initiator.node.get_our_node_id());
1258                         initiator.node.handle_channel_ready(&receiver.node.get_our_node_id(), &msg);
1259                         expect_channel_ready_event(&initiator, &receiver.node.get_our_node_id());
1260                 }
1261                 _ => panic!("Unexpected event"),
1262         }
1263
1264         receiver.node.handle_channel_ready(&initiator.node.get_our_node_id(), &as_channel_ready);
1265         expect_channel_ready_event(&receiver, &initiator.node.get_our_node_id());
1266
1267         let as_channel_update = get_event_msg!(initiator, MessageSendEvent::SendChannelUpdate, receiver.node.get_our_node_id());
1268         let bs_channel_update = get_event_msg!(receiver, MessageSendEvent::SendChannelUpdate, initiator.node.get_our_node_id());
1269
1270         initiator.node.handle_channel_update(&receiver.node.get_our_node_id(), &bs_channel_update);
1271         receiver.node.handle_channel_update(&initiator.node.get_our_node_id(), &as_channel_update);
1272
1273         assert_eq!(initiator.node.list_usable_channels().len(), initiator_channels + 1);
1274         assert_eq!(receiver.node.list_usable_channels().len(), receiver_channels + 1);
1275
1276         (tx, as_channel_ready.channel_id)
1277 }
1278
1279 pub fn exchange_open_accept_chan<'a, 'b, 'c>(node_a: &Node<'a, 'b, 'c>, node_b: &Node<'a, 'b, 'c>, channel_value: u64, push_msat: u64) -> ChannelId {
1280         let create_chan_id = node_a.node.create_channel(node_b.node.get_our_node_id(), channel_value, push_msat, 42, None, None).unwrap();
1281         let open_channel_msg = get_event_msg!(node_a, MessageSendEvent::SendOpenChannel, node_b.node.get_our_node_id());
1282         assert_eq!(open_channel_msg.common_fields.temporary_channel_id, create_chan_id);
1283         assert_eq!(node_a.node.list_channels().iter().find(|channel| channel.channel_id == create_chan_id).unwrap().user_channel_id, 42);
1284         node_b.node.handle_open_channel(&node_a.node.get_our_node_id(), &open_channel_msg);
1285         if node_b.node.get_current_default_configuration().manually_accept_inbound_channels {
1286                 let events = node_b.node.get_and_clear_pending_events();
1287                 assert_eq!(events.len(), 1);
1288                 match &events[0] {
1289                         Event::OpenChannelRequest { temporary_channel_id, counterparty_node_id, .. } =>
1290                                 node_b.node.accept_inbound_channel(temporary_channel_id, counterparty_node_id, 42).unwrap(),
1291                         _ => panic!("Unexpected event"),
1292                 };
1293         }
1294         let accept_channel_msg = get_event_msg!(node_b, MessageSendEvent::SendAcceptChannel, node_a.node.get_our_node_id());
1295         assert_eq!(accept_channel_msg.common_fields.temporary_channel_id, create_chan_id);
1296         node_a.node.handle_accept_channel(&node_b.node.get_our_node_id(), &accept_channel_msg);
1297         assert_ne!(node_b.node.list_channels().iter().find(|channel| channel.channel_id == create_chan_id).unwrap().user_channel_id, 0);
1298
1299         create_chan_id
1300 }
1301
1302 pub fn create_chan_between_nodes_with_value_init<'a, 'b, 'c>(node_a: &Node<'a, 'b, 'c>, node_b: &Node<'a, 'b, 'c>, channel_value: u64, push_msat: u64) -> Transaction {
1303         let create_chan_id = exchange_open_accept_chan(node_a, node_b, channel_value, push_msat);
1304         sign_funding_transaction(node_a, node_b, channel_value, create_chan_id)
1305 }
1306
1307 pub fn create_chan_between_nodes_with_value_confirm_first<'a, 'b, 'c, 'd>(node_recv: &'a Node<'b, 'c, 'c>, node_conf: &'a Node<'b, 'c, 'd>, tx: &Transaction, conf_height: u32) {
1308         confirm_transaction_at(node_conf, tx, conf_height);
1309         connect_blocks(node_conf, CHAN_CONFIRM_DEPTH - 1);
1310         node_recv.node.handle_channel_ready(&node_conf.node.get_our_node_id(), &get_event_msg!(node_conf, MessageSendEvent::SendChannelReady, node_recv.node.get_our_node_id()));
1311 }
1312
1313 pub fn create_chan_between_nodes_with_value_confirm_second<'a, 'b, 'c>(node_recv: &Node<'a, 'b, 'c>, node_conf: &Node<'a, 'b, 'c>) -> ((msgs::ChannelReady, msgs::AnnouncementSignatures), ChannelId) {
1314         let channel_id;
1315         let events_6 = node_conf.node.get_and_clear_pending_msg_events();
1316         assert_eq!(events_6.len(), 3);
1317         let announcement_sigs_idx = if let MessageSendEvent::SendChannelUpdate { ref node_id, msg: _ } = events_6[1] {
1318                 assert_eq!(*node_id, node_recv.node.get_our_node_id());
1319                 2
1320         } else if let MessageSendEvent::SendChannelUpdate { ref node_id, msg: _ } = events_6[2] {
1321                 assert_eq!(*node_id, node_recv.node.get_our_node_id());
1322                 1
1323         } else { panic!("Unexpected event: {:?}", events_6[1]); };
1324         ((match events_6[0] {
1325                 MessageSendEvent::SendChannelReady { ref node_id, ref msg } => {
1326                         channel_id = msg.channel_id.clone();
1327                         assert_eq!(*node_id, node_recv.node.get_our_node_id());
1328                         msg.clone()
1329                 },
1330                 _ => panic!("Unexpected event"),
1331         }, match events_6[announcement_sigs_idx] {
1332                 MessageSendEvent::SendAnnouncementSignatures { ref node_id, ref msg } => {
1333                         assert_eq!(*node_id, node_recv.node.get_our_node_id());
1334                         msg.clone()
1335                 },
1336                 _ => panic!("Unexpected event"),
1337         }), channel_id)
1338 }
1339
1340 pub fn create_chan_between_nodes_with_value_confirm<'a, 'b, 'c: 'd, 'd>(node_a: &'a Node<'b, 'c, 'd>, node_b: &'a Node<'b, 'c, 'd>, tx: &Transaction) -> ((msgs::ChannelReady, msgs::AnnouncementSignatures), ChannelId) {
1341         let conf_height = core::cmp::max(node_a.best_block_info().1 + 1, node_b.best_block_info().1 + 1);
1342         create_chan_between_nodes_with_value_confirm_first(node_a, node_b, tx, conf_height);
1343         confirm_transaction_at(node_a, tx, conf_height);
1344         connect_blocks(node_a, CHAN_CONFIRM_DEPTH - 1);
1345         expect_channel_ready_event(&node_a, &node_b.node.get_our_node_id());
1346         create_chan_between_nodes_with_value_confirm_second(node_b, node_a)
1347 }
1348
1349 pub fn create_chan_between_nodes_with_value_a<'a, 'b, 'c: 'd, 'd>(node_a: &'a Node<'b, 'c, 'd>, node_b: &'a Node<'b, 'c, 'd>, channel_value: u64, push_msat: u64) -> ((msgs::ChannelReady, msgs::AnnouncementSignatures), ChannelId, Transaction) {
1350         let tx = create_chan_between_nodes_with_value_init(node_a, node_b, channel_value, push_msat);
1351         let (msgs, chan_id) = create_chan_between_nodes_with_value_confirm(node_a, node_b, &tx);
1352         (msgs, chan_id, tx)
1353 }
1354
1355 pub fn create_chan_between_nodes_with_value_b<'a, 'b, 'c>(node_a: &Node<'a, 'b, 'c>, node_b: &Node<'a, 'b, 'c>, as_funding_msgs: &(msgs::ChannelReady, msgs::AnnouncementSignatures)) -> (msgs::ChannelAnnouncement, msgs::ChannelUpdate, msgs::ChannelUpdate) {
1356         node_b.node.handle_channel_ready(&node_a.node.get_our_node_id(), &as_funding_msgs.0);
1357         let bs_announcement_sigs = get_event_msg!(node_b, MessageSendEvent::SendAnnouncementSignatures, node_a.node.get_our_node_id());
1358         node_b.node.handle_announcement_signatures(&node_a.node.get_our_node_id(), &as_funding_msgs.1);
1359
1360         let events_7 = node_b.node.get_and_clear_pending_msg_events();
1361         assert_eq!(events_7.len(), 1);
1362         let (announcement, bs_update) = match events_7[0] {
1363                 MessageSendEvent::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
1364                         (msg, update_msg.clone().unwrap())
1365                 },
1366                 _ => panic!("Unexpected event"),
1367         };
1368
1369         node_a.node.handle_announcement_signatures(&node_b.node.get_our_node_id(), &bs_announcement_sigs);
1370         let events_8 = node_a.node.get_and_clear_pending_msg_events();
1371         assert_eq!(events_8.len(), 1);
1372         let as_update = match events_8[0] {
1373                 MessageSendEvent::BroadcastChannelAnnouncement { ref msg, ref update_msg } => {
1374                         assert!(*announcement == *msg);
1375                         let update_msg = update_msg.clone().unwrap();
1376                         assert_eq!(update_msg.contents.short_channel_id, announcement.contents.short_channel_id);
1377                         assert_eq!(update_msg.contents.short_channel_id, bs_update.contents.short_channel_id);
1378                         update_msg
1379                 },
1380                 _ => panic!("Unexpected event"),
1381         };
1382
1383         *node_a.network_chan_count.borrow_mut() += 1;
1384
1385         expect_channel_ready_event(&node_b, &node_a.node.get_our_node_id());
1386         ((*announcement).clone(), as_update, bs_update)
1387 }
1388
1389 pub fn create_announced_chan_between_nodes<'a, 'b, 'c: 'd, 'd>(nodes: &'a Vec<Node<'b, 'c, 'd>>, a: usize, b: usize) -> (msgs::ChannelUpdate, msgs::ChannelUpdate, ChannelId, Transaction) {
1390         create_announced_chan_between_nodes_with_value(nodes, a, b, 100000, 10001)
1391 }
1392
1393 pub fn create_announced_chan_between_nodes_with_value<'a, 'b, 'c: 'd, 'd>(nodes: &'a Vec<Node<'b, 'c, 'd>>, a: usize, b: usize, channel_value: u64, push_msat: u64) -> (msgs::ChannelUpdate, msgs::ChannelUpdate, ChannelId, Transaction) {
1394         let chan_announcement = create_chan_between_nodes_with_value(&nodes[a], &nodes[b], channel_value, push_msat);
1395         update_nodes_with_chan_announce(nodes, a, b, &chan_announcement.0, &chan_announcement.1, &chan_announcement.2);
1396         (chan_announcement.1, chan_announcement.2, chan_announcement.3, chan_announcement.4)
1397 }
1398
1399 pub fn create_unannounced_chan_between_nodes_with_value<'a, 'b, 'c, 'd>(nodes: &'a Vec<Node<'b, 'c, 'd>>, a: usize, b: usize, channel_value: u64, push_msat: u64) -> (msgs::ChannelReady, Transaction) {
1400         let mut no_announce_cfg = test_default_channel_config();
1401         no_announce_cfg.channel_handshake_config.announced_channel = false;
1402         nodes[a].node.create_channel(nodes[b].node.get_our_node_id(), channel_value, push_msat, 42, None, Some(no_announce_cfg)).unwrap();
1403         let open_channel = get_event_msg!(nodes[a], MessageSendEvent::SendOpenChannel, nodes[b].node.get_our_node_id());
1404         nodes[b].node.handle_open_channel(&nodes[a].node.get_our_node_id(), &open_channel);
1405         let accept_channel = get_event_msg!(nodes[b], MessageSendEvent::SendAcceptChannel, nodes[a].node.get_our_node_id());
1406         nodes[a].node.handle_accept_channel(&nodes[b].node.get_our_node_id(), &accept_channel);
1407
1408         let (temporary_channel_id, tx, _) = create_funding_transaction(&nodes[a], &nodes[b].node.get_our_node_id(), channel_value, 42);
1409         nodes[a].node.funding_transaction_generated(&temporary_channel_id, &nodes[b].node.get_our_node_id(), tx.clone()).unwrap();
1410         nodes[b].node.handle_funding_created(&nodes[a].node.get_our_node_id(), &get_event_msg!(nodes[a], MessageSendEvent::SendFundingCreated, nodes[b].node.get_our_node_id()));
1411         check_added_monitors!(nodes[b], 1);
1412
1413         let cs_funding_signed = get_event_msg!(nodes[b], MessageSendEvent::SendFundingSigned, nodes[a].node.get_our_node_id());
1414         expect_channel_pending_event(&nodes[b], &nodes[a].node.get_our_node_id());
1415
1416         nodes[a].node.handle_funding_signed(&nodes[b].node.get_our_node_id(), &cs_funding_signed);
1417         expect_channel_pending_event(&nodes[a], &nodes[b].node.get_our_node_id());
1418         check_added_monitors!(nodes[a], 1);
1419
1420         assert_eq!(nodes[a].tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
1421         assert_eq!(nodes[a].tx_broadcaster.txn_broadcasted.lock().unwrap()[0], tx);
1422         nodes[a].tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
1423
1424         let conf_height = core::cmp::max(nodes[a].best_block_info().1 + 1, nodes[b].best_block_info().1 + 1);
1425         confirm_transaction_at(&nodes[a], &tx, conf_height);
1426         connect_blocks(&nodes[a], CHAN_CONFIRM_DEPTH - 1);
1427         confirm_transaction_at(&nodes[b], &tx, conf_height);
1428         connect_blocks(&nodes[b], CHAN_CONFIRM_DEPTH - 1);
1429         let as_channel_ready = get_event_msg!(nodes[a], MessageSendEvent::SendChannelReady, nodes[b].node.get_our_node_id());
1430         nodes[a].node.handle_channel_ready(&nodes[b].node.get_our_node_id(), &get_event_msg!(nodes[b], MessageSendEvent::SendChannelReady, nodes[a].node.get_our_node_id()));
1431         expect_channel_ready_event(&nodes[a], &nodes[b].node.get_our_node_id());
1432         let as_update = get_event_msg!(nodes[a], MessageSendEvent::SendChannelUpdate, nodes[b].node.get_our_node_id());
1433         nodes[b].node.handle_channel_ready(&nodes[a].node.get_our_node_id(), &as_channel_ready);
1434         expect_channel_ready_event(&nodes[b], &nodes[a].node.get_our_node_id());
1435         let bs_update = get_event_msg!(nodes[b], MessageSendEvent::SendChannelUpdate, nodes[a].node.get_our_node_id());
1436
1437         nodes[a].node.handle_channel_update(&nodes[b].node.get_our_node_id(), &bs_update);
1438         nodes[b].node.handle_channel_update(&nodes[a].node.get_our_node_id(), &as_update);
1439
1440         let mut found_a = false;
1441         for chan in nodes[a].node.list_usable_channels() {
1442                 if chan.channel_id == as_channel_ready.channel_id {
1443                         assert!(!found_a);
1444                         found_a = true;
1445                         assert!(!chan.is_public);
1446                 }
1447         }
1448         assert!(found_a);
1449
1450         let mut found_b = false;
1451         for chan in nodes[b].node.list_usable_channels() {
1452                 if chan.channel_id == as_channel_ready.channel_id {
1453                         assert!(!found_b);
1454                         found_b = true;
1455                         assert!(!chan.is_public);
1456                 }
1457         }
1458         assert!(found_b);
1459
1460         (as_channel_ready, tx)
1461 }
1462
1463 pub fn update_nodes_with_chan_announce<'a, 'b, 'c, 'd>(nodes: &'a Vec<Node<'b, 'c, 'd>>, a: usize, b: usize, ann: &msgs::ChannelAnnouncement, upd_1: &msgs::ChannelUpdate, upd_2: &msgs::ChannelUpdate) {
1464         for node in nodes {
1465                 assert!(node.gossip_sync.handle_channel_announcement(ann).unwrap());
1466                 node.gossip_sync.handle_channel_update(upd_1).unwrap();
1467                 node.gossip_sync.handle_channel_update(upd_2).unwrap();
1468
1469                 // Note that channel_updates are also delivered to ChannelManagers to ensure we have
1470                 // forwarding info for local channels even if its not accepted in the network graph.
1471                 node.node.handle_channel_update(&nodes[a].node.get_our_node_id(), &upd_1);
1472                 node.node.handle_channel_update(&nodes[b].node.get_our_node_id(), &upd_2);
1473         }
1474 }
1475
1476 pub fn do_check_spends<F: Fn(&bitcoin::blockdata::transaction::OutPoint) -> Option<TxOut>>(tx: &Transaction, get_output: F) {
1477         for outp in tx.output.iter() {
1478                 assert!(outp.value >= outp.script_pubkey.dust_value().to_sat(), "Spending tx output didn't meet dust limit");
1479         }
1480         let mut total_value_in = 0;
1481         for input in tx.input.iter() {
1482                 total_value_in += get_output(&input.previous_output).unwrap().value;
1483         }
1484         let mut total_value_out = 0;
1485         for output in tx.output.iter() {
1486                 total_value_out += output.value;
1487         }
1488         let min_fee = (tx.weight().to_wu() as u64 + 3) / 4; // One sat per vbyte (ie per weight/4, rounded up)
1489         // Input amount - output amount = fee, so check that out + min_fee is smaller than input
1490         assert!(total_value_out + min_fee <= total_value_in);
1491         tx.verify(get_output).unwrap();
1492 }
1493
1494 #[macro_export]
1495 macro_rules! check_spends {
1496         ($tx: expr, $($spends_txn: expr),*) => {
1497                 {
1498                         $(
1499                         for outp in $spends_txn.output.iter() {
1500                                 assert!(outp.value >= outp.script_pubkey.dust_value().to_sat(), "Input tx output didn't meet dust limit");
1501                         }
1502                         )*
1503                         let get_output = |out_point: &bitcoin::blockdata::transaction::OutPoint| {
1504                                 $(
1505                                         if out_point.txid == $spends_txn.txid() {
1506                                                 return $spends_txn.output.get(out_point.vout as usize).cloned()
1507                                         }
1508                                 )*
1509                                 None
1510                         };
1511                         $crate::ln::functional_test_utils::do_check_spends(&$tx, get_output);
1512                 }
1513         }
1514 }
1515
1516 macro_rules! get_closing_signed_broadcast {
1517         ($node: expr, $dest_pubkey: expr) => {
1518                 {
1519                         let events = $node.get_and_clear_pending_msg_events();
1520                         assert!(events.len() == 1 || events.len() == 2);
1521                         (match events[events.len() - 1] {
1522                                 MessageSendEvent::BroadcastChannelUpdate { ref msg } => {
1523                                         assert_eq!(msg.contents.flags & 2, 2);
1524                                         msg.clone()
1525                                 },
1526                                 _ => panic!("Unexpected event"),
1527                         }, if events.len() == 2 {
1528                                 match events[0] {
1529                                         MessageSendEvent::SendClosingSigned { ref node_id, ref msg } => {
1530                                                 assert_eq!(*node_id, $dest_pubkey);
1531                                                 Some(msg.clone())
1532                                         },
1533                                         _ => panic!("Unexpected event"),
1534                                 }
1535                         } else { None })
1536                 }
1537         }
1538 }
1539
1540 #[cfg(test)]
1541 macro_rules! check_warn_msg {
1542         ($node: expr, $recipient_node_id: expr, $chan_id: expr) => {{
1543                 let msg_events = $node.node.get_and_clear_pending_msg_events();
1544                 assert_eq!(msg_events.len(), 1);
1545                 match msg_events[0] {
1546                         MessageSendEvent::HandleError { action: ErrorAction::SendWarningMessage { ref msg, log_level: _ }, node_id } => {
1547                                 assert_eq!(node_id, $recipient_node_id);
1548                                 assert_eq!(msg.channel_id, $chan_id);
1549                                 msg.data.clone()
1550                         },
1551                         _ => panic!("Unexpected event"),
1552                 }
1553         }}
1554 }
1555
1556 /// Check that a channel's closing channel update has been broadcasted, and optionally
1557 /// check whether an error message event has occurred.
1558 pub fn check_closed_broadcast(node: &Node, num_channels: usize, with_error_msg: bool) -> Vec<msgs::ErrorMessage> {
1559         let msg_events = node.node.get_and_clear_pending_msg_events();
1560         assert_eq!(msg_events.len(), if with_error_msg { num_channels * 2 } else { num_channels });
1561         msg_events.into_iter().filter_map(|msg_event| {
1562                 match msg_event {
1563                         MessageSendEvent::BroadcastChannelUpdate { ref msg } => {
1564                                 assert_eq!(msg.contents.flags & 2, 2);
1565                                 None
1566                         },
1567                         MessageSendEvent::HandleError { action: msgs::ErrorAction::SendErrorMessage { msg }, node_id: _ } => {
1568                                 assert!(with_error_msg);
1569                                 // TODO: Check node_id
1570                                 Some(msg)
1571                         },
1572                         MessageSendEvent::HandleError { action: msgs::ErrorAction::DisconnectPeer { msg }, node_id: _ } => {
1573                                 assert!(with_error_msg);
1574                                 // TODO: Check node_id
1575                                 Some(msg.unwrap())
1576                         },
1577                         _ => panic!("Unexpected event"),
1578                 }
1579         }).collect()
1580 }
1581
1582 /// Check that a channel's closing channel update has been broadcasted, and optionally
1583 /// check whether an error message event has occurred.
1584 ///
1585 /// Don't use this, use the identically-named function instead.
1586 #[macro_export]
1587 macro_rules! check_closed_broadcast {
1588         ($node: expr, $with_error_msg: expr) => {
1589                 $crate::ln::functional_test_utils::check_closed_broadcast(&$node, 1, $with_error_msg).pop()
1590         }
1591 }
1592
1593 #[derive(Default)]
1594 pub struct ExpectedCloseEvent {
1595         pub channel_capacity_sats: Option<u64>,
1596         pub channel_id: Option<ChannelId>,
1597         pub counterparty_node_id: Option<PublicKey>,
1598         pub discard_funding: bool,
1599         pub reason: Option<ClosureReason>,
1600         pub channel_funding_txo: Option<OutPoint>,
1601         pub user_channel_id: Option<u128>,
1602 }
1603
1604 impl ExpectedCloseEvent {
1605         pub fn from_id_reason(channel_id: ChannelId, discard_funding: bool, reason: ClosureReason) -> Self {
1606                 Self {
1607                         channel_capacity_sats: None,
1608                         channel_id: Some(channel_id),
1609                         counterparty_node_id: None,
1610                         discard_funding,
1611                         reason: Some(reason),
1612                         channel_funding_txo: None,
1613                         user_channel_id: None,
1614                 }
1615         }
1616 }
1617
1618 /// Check that multiple channel closing events have been issued.
1619 pub fn check_closed_events(node: &Node, expected_close_events: &[ExpectedCloseEvent]) {
1620         let closed_events_count = expected_close_events.len();
1621         let discard_events_count = expected_close_events.iter().filter(|e| e.discard_funding).count();
1622         let events = node.node.get_and_clear_pending_events();
1623         assert_eq!(events.len(), closed_events_count + discard_events_count, "{:?}", events);
1624         for expected_event in expected_close_events {
1625                 assert!(events.iter().any(|e| matches!(
1626                         e,
1627                         Event::ChannelClosed {
1628                                 channel_id,
1629                                 reason,
1630                                 counterparty_node_id,
1631                                 channel_capacity_sats,
1632                                 channel_funding_txo,
1633                                 user_channel_id,
1634                                 ..
1635                         } if (
1636                                 expected_event.channel_id.map(|expected| *channel_id == expected).unwrap_or(true) &&
1637                                 expected_event.reason.as_ref().map(|expected| reason == expected).unwrap_or(true) &&
1638                                 expected_event.
1639                                         counterparty_node_id.map(|expected| *counterparty_node_id == Some(expected)).unwrap_or(true) &&
1640                                 expected_event.channel_capacity_sats
1641                                         .map(|expected| *channel_capacity_sats == Some(expected)).unwrap_or(true) &&
1642                                 expected_event.channel_funding_txo
1643                                         .map(|expected| *channel_funding_txo == Some(expected)).unwrap_or(true) &&
1644                                 expected_event.user_channel_id
1645                                         .map(|expected| *user_channel_id == expected).unwrap_or(true)
1646                         )
1647                 )));
1648         }
1649         assert_eq!(events.iter().filter(|e| matches!(
1650                 e,
1651                 Event::DiscardFunding { .. },
1652         )).count(), discard_events_count);
1653 }
1654
1655 /// Check that a channel's closing channel events has been issued
1656 pub fn check_closed_event(node: &Node, events_count: usize, expected_reason: ClosureReason, is_check_discard_funding: bool,
1657         expected_counterparty_node_ids: &[PublicKey], expected_channel_capacity: u64) {
1658         let expected_events_count = if is_check_discard_funding {
1659                 2 * expected_counterparty_node_ids.len()
1660         } else {
1661                 expected_counterparty_node_ids.len()
1662         };
1663         assert_eq!(events_count, expected_events_count);
1664         let expected_close_events = expected_counterparty_node_ids.iter().map(|node_id| ExpectedCloseEvent {
1665                 channel_capacity_sats: Some(expected_channel_capacity),
1666                 channel_id: None,
1667                 counterparty_node_id: Some(*node_id),
1668                 discard_funding: is_check_discard_funding,
1669                 reason: Some(expected_reason.clone()),
1670                 channel_funding_txo: None,
1671                 user_channel_id: None,
1672         }).collect::<Vec<_>>();
1673         check_closed_events(node, expected_close_events.as_slice());
1674 }
1675
1676 /// Check that a channel's closing channel events has been issued
1677 ///
1678 /// Don't use this, use the identically-named function instead.
1679 #[macro_export]
1680 macro_rules! check_closed_event {
1681         ($node: expr, $events: expr, $reason: expr, $counterparty_node_ids: expr, $channel_capacity: expr) => {
1682                 check_closed_event!($node, $events, $reason, false, $counterparty_node_ids, $channel_capacity);
1683         };
1684         ($node: expr, $events: expr, $reason: expr, $is_check_discard_funding: expr, $counterparty_node_ids: expr, $channel_capacity: expr) => {
1685                 $crate::ln::functional_test_utils::check_closed_event(&$node, $events, $reason,
1686                         $is_check_discard_funding, &$counterparty_node_ids, $channel_capacity);
1687         }
1688 }
1689
1690 pub fn handle_bump_htlc_event(node: &Node, count: usize) {
1691         let events = node.chain_monitor.chain_monitor.get_and_clear_pending_events();
1692         assert_eq!(events.len(), count);
1693         for event in events {
1694                 match event {
1695                         Event::BumpTransaction(bump_event) => {
1696                                 if let BumpTransactionEvent::HTLCResolution { .. } = &bump_event {}
1697                                 else { panic!(); }
1698                                 node.bump_tx_handler.handle_event(&bump_event);
1699                         },
1700                         _ => panic!(),
1701                 }
1702         }
1703 }
1704
1705 pub fn close_channel<'a, 'b, 'c>(outbound_node: &Node<'a, 'b, 'c>, inbound_node: &Node<'a, 'b, 'c>, channel_id: &ChannelId, funding_tx: Transaction, close_inbound_first: bool) -> (msgs::ChannelUpdate, msgs::ChannelUpdate, Transaction) {
1706         let (node_a, broadcaster_a, struct_a) = if close_inbound_first { (&inbound_node.node, &inbound_node.tx_broadcaster, inbound_node) } else { (&outbound_node.node, &outbound_node.tx_broadcaster, outbound_node) };
1707         let (node_b, broadcaster_b, struct_b) = if close_inbound_first { (&outbound_node.node, &outbound_node.tx_broadcaster, outbound_node) } else { (&inbound_node.node, &inbound_node.tx_broadcaster, inbound_node) };
1708         let (tx_a, tx_b);
1709
1710         node_a.close_channel(channel_id, &node_b.get_our_node_id()).unwrap();
1711         node_b.handle_shutdown(&node_a.get_our_node_id(), &get_event_msg!(struct_a, MessageSendEvent::SendShutdown, node_b.get_our_node_id()));
1712
1713         let events_1 = node_b.get_and_clear_pending_msg_events();
1714         assert!(events_1.len() >= 1);
1715         let shutdown_b = match events_1[0] {
1716                 MessageSendEvent::SendShutdown { ref node_id, ref msg } => {
1717                         assert_eq!(node_id, &node_a.get_our_node_id());
1718                         msg.clone()
1719                 },
1720                 _ => panic!("Unexpected event"),
1721         };
1722
1723         let closing_signed_b = if !close_inbound_first {
1724                 assert_eq!(events_1.len(), 1);
1725                 None
1726         } else {
1727                 Some(match events_1[1] {
1728                         MessageSendEvent::SendClosingSigned { ref node_id, ref msg } => {
1729                                 assert_eq!(node_id, &node_a.get_our_node_id());
1730                                 msg.clone()
1731                         },
1732                         _ => panic!("Unexpected event"),
1733                 })
1734         };
1735
1736         node_a.handle_shutdown(&node_b.get_our_node_id(), &shutdown_b);
1737         let (as_update, bs_update) = if close_inbound_first {
1738                 assert!(node_a.get_and_clear_pending_msg_events().is_empty());
1739                 node_a.handle_closing_signed(&node_b.get_our_node_id(), &closing_signed_b.unwrap());
1740
1741                 node_b.handle_closing_signed(&node_a.get_our_node_id(), &get_event_msg!(struct_a, MessageSendEvent::SendClosingSigned, node_b.get_our_node_id()));
1742                 assert_eq!(broadcaster_b.txn_broadcasted.lock().unwrap().len(), 1);
1743                 tx_b = broadcaster_b.txn_broadcasted.lock().unwrap().remove(0);
1744                 let (bs_update, closing_signed_b) = get_closing_signed_broadcast!(node_b, node_a.get_our_node_id());
1745
1746                 node_a.handle_closing_signed(&node_b.get_our_node_id(), &closing_signed_b.unwrap());
1747                 let (as_update, none_a) = get_closing_signed_broadcast!(node_a, node_b.get_our_node_id());
1748                 assert!(none_a.is_none());
1749                 assert_eq!(broadcaster_a.txn_broadcasted.lock().unwrap().len(), 1);
1750                 tx_a = broadcaster_a.txn_broadcasted.lock().unwrap().remove(0);
1751                 (as_update, bs_update)
1752         } else {
1753                 let closing_signed_a = get_event_msg!(struct_a, MessageSendEvent::SendClosingSigned, node_b.get_our_node_id());
1754
1755                 node_b.handle_closing_signed(&node_a.get_our_node_id(), &closing_signed_a);
1756                 node_a.handle_closing_signed(&node_b.get_our_node_id(), &get_event_msg!(struct_b, MessageSendEvent::SendClosingSigned, node_a.get_our_node_id()));
1757
1758                 assert_eq!(broadcaster_a.txn_broadcasted.lock().unwrap().len(), 1);
1759                 tx_a = broadcaster_a.txn_broadcasted.lock().unwrap().remove(0);
1760                 let (as_update, closing_signed_a) = get_closing_signed_broadcast!(node_a, node_b.get_our_node_id());
1761
1762                 node_b.handle_closing_signed(&node_a.get_our_node_id(), &closing_signed_a.unwrap());
1763                 let (bs_update, none_b) = get_closing_signed_broadcast!(node_b, node_a.get_our_node_id());
1764                 assert!(none_b.is_none());
1765                 assert_eq!(broadcaster_b.txn_broadcasted.lock().unwrap().len(), 1);
1766                 tx_b = broadcaster_b.txn_broadcasted.lock().unwrap().remove(0);
1767                 (as_update, bs_update)
1768         };
1769         assert_eq!(tx_a, tx_b);
1770         check_spends!(tx_a, funding_tx);
1771
1772         (as_update, bs_update, tx_a)
1773 }
1774
1775 pub struct SendEvent {
1776         pub node_id: PublicKey,
1777         pub msgs: Vec<msgs::UpdateAddHTLC>,
1778         pub commitment_msg: msgs::CommitmentSigned,
1779 }
1780 impl SendEvent {
1781         pub fn from_commitment_update(node_id: PublicKey, updates: msgs::CommitmentUpdate) -> SendEvent {
1782                 assert!(updates.update_fulfill_htlcs.is_empty());
1783                 assert!(updates.update_fail_htlcs.is_empty());
1784                 assert!(updates.update_fail_malformed_htlcs.is_empty());
1785                 assert!(updates.update_fee.is_none());
1786                 SendEvent { node_id, msgs: updates.update_add_htlcs, commitment_msg: updates.commitment_signed }
1787         }
1788
1789         pub fn from_event(event: MessageSendEvent) -> SendEvent {
1790                 match event {
1791                         MessageSendEvent::UpdateHTLCs { node_id, updates } => SendEvent::from_commitment_update(node_id, updates),
1792                         _ => panic!("Unexpected event type!"),
1793                 }
1794         }
1795
1796         pub fn from_node<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>) -> SendEvent {
1797                 let mut events = node.node.get_and_clear_pending_msg_events();
1798                 assert_eq!(events.len(), 1);
1799                 SendEvent::from_event(events.pop().unwrap())
1800         }
1801 }
1802
1803 #[macro_export]
1804 /// Don't use this, use the identically-named function instead.
1805 macro_rules! expect_pending_htlcs_forwardable_conditions {
1806         ($node: expr, $expected_failures: expr) => {
1807                 $crate::ln::functional_test_utils::expect_pending_htlcs_forwardable_conditions($node.node.get_and_clear_pending_events(), &$expected_failures);
1808         }
1809 }
1810
1811 #[macro_export]
1812 macro_rules! expect_htlc_handling_failed_destinations {
1813         ($events: expr, $expected_failures: expr) => {{
1814                 for event in $events {
1815                         match event {
1816                                 $crate::events::Event::PendingHTLCsForwardable { .. } => { },
1817                                 $crate::events::Event::HTLCHandlingFailed { ref failed_next_destination, .. } => {
1818                                         assert!($expected_failures.contains(&failed_next_destination))
1819                                 },
1820                                 _ => panic!("Unexpected destination"),
1821                         }
1822                 }
1823         }}
1824 }
1825
1826 /// Checks that an [`Event::PendingHTLCsForwardable`] is available in the given events and, if
1827 /// there are any [`Event::HTLCHandlingFailed`] events their [`HTLCDestination`] is included in the
1828 /// `expected_failures` set.
1829 pub fn expect_pending_htlcs_forwardable_conditions(events: Vec<Event>, expected_failures: &[HTLCDestination]) {
1830         match events[0] {
1831                 Event::PendingHTLCsForwardable { .. } => { },
1832                 _ => panic!("Unexpected event {:?}", events),
1833         };
1834
1835         let count = expected_failures.len() + 1;
1836         assert_eq!(events.len(), count);
1837
1838         if expected_failures.len() > 0 {
1839                 expect_htlc_handling_failed_destinations!(events, expected_failures)
1840         }
1841 }
1842
1843 #[macro_export]
1844 /// Clears (and ignores) a PendingHTLCsForwardable event
1845 ///
1846 /// Don't use this, call [`expect_pending_htlcs_forwardable_conditions()`] with an empty failure
1847 /// set instead.
1848 macro_rules! expect_pending_htlcs_forwardable_ignore {
1849         ($node: expr) => {
1850                 $crate::ln::functional_test_utils::expect_pending_htlcs_forwardable_conditions($node.node.get_and_clear_pending_events(), &[]);
1851         }
1852 }
1853
1854 #[macro_export]
1855 /// Clears (and ignores) PendingHTLCsForwardable and HTLCHandlingFailed events
1856 ///
1857 /// Don't use this, call [`expect_pending_htlcs_forwardable_conditions()`] instead.
1858 macro_rules! expect_pending_htlcs_forwardable_and_htlc_handling_failed_ignore {
1859         ($node: expr, $expected_failures: expr) => {
1860                 $crate::ln::functional_test_utils::expect_pending_htlcs_forwardable_conditions($node.node.get_and_clear_pending_events(), &$expected_failures);
1861         }
1862 }
1863
1864 #[macro_export]
1865 /// Handles a PendingHTLCsForwardable event
1866 macro_rules! expect_pending_htlcs_forwardable {
1867         ($node: expr) => {{
1868                 $crate::ln::functional_test_utils::expect_pending_htlcs_forwardable_conditions($node.node.get_and_clear_pending_events(), &[]);
1869                 $node.node.process_pending_htlc_forwards();
1870
1871                 // Ensure process_pending_htlc_forwards is idempotent.
1872                 $node.node.process_pending_htlc_forwards();
1873         }};
1874 }
1875
1876 #[macro_export]
1877 /// Handles a PendingHTLCsForwardable and HTLCHandlingFailed event
1878 macro_rules! expect_pending_htlcs_forwardable_and_htlc_handling_failed {
1879         ($node: expr, $expected_failures: expr) => {{
1880                 $crate::ln::functional_test_utils::expect_pending_htlcs_forwardable_conditions($node.node.get_and_clear_pending_events(), &$expected_failures);
1881                 $node.node.process_pending_htlc_forwards();
1882
1883                 // Ensure process_pending_htlc_forwards is idempotent.
1884                 $node.node.process_pending_htlc_forwards();
1885         }}
1886 }
1887
1888 #[cfg(test)]
1889 macro_rules! expect_pending_htlcs_forwardable_from_events {
1890         ($node: expr, $events: expr, $ignore: expr) => {{
1891                 assert_eq!($events.len(), 1);
1892                 match $events[0] {
1893                         Event::PendingHTLCsForwardable { .. } => { },
1894                         _ => panic!("Unexpected event"),
1895                 };
1896                 if $ignore {
1897                         $node.node.process_pending_htlc_forwards();
1898
1899                         // Ensure process_pending_htlc_forwards is idempotent.
1900                         $node.node.process_pending_htlc_forwards();
1901                 }
1902         }}
1903 }
1904
1905 #[macro_export]
1906 /// Performs the "commitment signed dance" - the series of message exchanges which occur after a
1907 /// commitment update.
1908 macro_rules! commitment_signed_dance {
1909         ($node_a: expr, $node_b: expr, $commitment_signed: expr, $fail_backwards: expr, true /* skip last step */) => {
1910                 $crate::ln::functional_test_utils::do_commitment_signed_dance(&$node_a, &$node_b, &$commitment_signed, $fail_backwards, true);
1911         };
1912         ($node_a: expr, $node_b: expr, (), $fail_backwards: expr, true /* skip last step */, true /* return extra message */, true /* return last RAA */) => {
1913                 $crate::ln::functional_test_utils::do_main_commitment_signed_dance(&$node_a, &$node_b, $fail_backwards)
1914         };
1915         ($node_a: expr, $node_b: expr, $commitment_signed: expr, $fail_backwards: expr, true /* skip last step */, false /* return extra message */, true /* return last RAA */) => {
1916                 {
1917                         $crate::ln::functional_test_utils::check_added_monitors(&$node_a, 0);
1918                         assert!($node_a.node.get_and_clear_pending_msg_events().is_empty());
1919                         $node_a.node.handle_commitment_signed(&$node_b.node.get_our_node_id(), &$commitment_signed);
1920                         check_added_monitors(&$node_a, 1);
1921                         let (extra_msg_option, bs_revoke_and_ack) = $crate::ln::functional_test_utils::do_main_commitment_signed_dance(&$node_a, &$node_b, $fail_backwards);
1922                         assert!(extra_msg_option.is_none());
1923                         bs_revoke_and_ack
1924                 }
1925         };
1926         ($node_a: expr, $node_b: expr, (), $fail_backwards: expr, true /* skip last step */, false /* no extra message */, $incl_claim: expr) => {
1927                 assert!($crate::ln::functional_test_utils::commitment_signed_dance_through_cp_raa(&$node_a, &$node_b, $fail_backwards, $incl_claim).is_none());
1928         };
1929         ($node_a: expr, $node_b: expr, $commitment_signed: expr, $fail_backwards: expr) => {
1930                 $crate::ln::functional_test_utils::do_commitment_signed_dance(&$node_a, &$node_b, &$commitment_signed, $fail_backwards, false);
1931         }
1932 }
1933
1934 /// Runs the commitment_signed dance after the initial commitment_signed is delivered through to
1935 /// the initiator's `revoke_and_ack` response. i.e. [`do_main_commitment_signed_dance`] plus the
1936 /// `revoke_and_ack` response to it.
1937 ///
1938 /// An HTLC claim on one channel blocks the RAA channel monitor update for the outbound edge
1939 /// channel until the inbound edge channel preimage monitor update completes. Thus, when checking
1940 /// for channel monitor updates, we need to know if an `update_fulfill_htlc` was included in the
1941 /// the commitment we're exchanging. `includes_claim` provides that information.
1942 ///
1943 /// Returns any additional message `node_b` generated in addition to the `revoke_and_ack` response.
1944 pub fn commitment_signed_dance_through_cp_raa(node_a: &Node<'_, '_, '_>, node_b: &Node<'_, '_, '_>, fail_backwards: bool, includes_claim: bool) -> Option<MessageSendEvent> {
1945         let (extra_msg_option, bs_revoke_and_ack) = do_main_commitment_signed_dance(node_a, node_b, fail_backwards);
1946         node_a.node.handle_revoke_and_ack(&node_b.node.get_our_node_id(), &bs_revoke_and_ack);
1947         check_added_monitors(node_a, if includes_claim { 0 } else { 1 });
1948         extra_msg_option
1949 }
1950
1951 /// Does the main logic in the commitment_signed dance. After the first `commitment_signed` has
1952 /// been delivered, this method picks up and delivers the response `revoke_and_ack` and
1953 /// `commitment_signed`, returning the recipient's `revoke_and_ack` and any extra message it may
1954 /// have included.
1955 pub fn do_main_commitment_signed_dance(node_a: &Node<'_, '_, '_>, node_b: &Node<'_, '_, '_>, fail_backwards: bool) -> (Option<MessageSendEvent>, msgs::RevokeAndACK) {
1956         let (as_revoke_and_ack, as_commitment_signed) = get_revoke_commit_msgs!(node_a, node_b.node.get_our_node_id());
1957         check_added_monitors!(node_b, 0);
1958         assert!(node_b.node.get_and_clear_pending_msg_events().is_empty());
1959         node_b.node.handle_revoke_and_ack(&node_a.node.get_our_node_id(), &as_revoke_and_ack);
1960         assert!(node_b.node.get_and_clear_pending_msg_events().is_empty());
1961         check_added_monitors!(node_b, 1);
1962         node_b.node.handle_commitment_signed(&node_a.node.get_our_node_id(), &as_commitment_signed);
1963         let (bs_revoke_and_ack, extra_msg_option) = {
1964                 let mut events = node_b.node.get_and_clear_pending_msg_events();
1965                 assert!(events.len() <= 2);
1966                 let node_a_event = remove_first_msg_event_to_node(&node_a.node.get_our_node_id(), &mut events);
1967                 (match node_a_event {
1968                         MessageSendEvent::SendRevokeAndACK { ref node_id, ref msg } => {
1969                                 assert_eq!(*node_id, node_a.node.get_our_node_id());
1970                                 (*msg).clone()
1971                         },
1972                         _ => panic!("Unexpected event"),
1973                 }, events.get(0).map(|e| e.clone()))
1974         };
1975         check_added_monitors!(node_b, 1);
1976         if fail_backwards {
1977                 assert!(node_a.node.get_and_clear_pending_events().is_empty());
1978                 assert!(node_a.node.get_and_clear_pending_msg_events().is_empty());
1979         }
1980         (extra_msg_option, bs_revoke_and_ack)
1981 }
1982
1983 /// Runs a full commitment_signed dance, delivering a commitment_signed, the responding
1984 /// `revoke_and_ack` and `commitment_signed`, and then the final `revoke_and_ack` response.
1985 ///
1986 /// If `skip_last_step` is unset, also checks for the payment failure update for the previous hop
1987 /// on failure or that no new messages are left over on success.
1988 pub fn do_commitment_signed_dance(node_a: &Node<'_, '_, '_>, node_b: &Node<'_, '_, '_>, commitment_signed: &msgs::CommitmentSigned, fail_backwards: bool, skip_last_step: bool) {
1989         check_added_monitors!(node_a, 0);
1990         assert!(node_a.node.get_and_clear_pending_msg_events().is_empty());
1991         node_a.node.handle_commitment_signed(&node_b.node.get_our_node_id(), commitment_signed);
1992         check_added_monitors!(node_a, 1);
1993
1994         // If this commitment signed dance was due to a claim, don't check for an RAA monitor update.
1995         let got_claim = node_a.node.test_raa_monitor_updates_held(node_b.node.get_our_node_id(), commitment_signed.channel_id);
1996         if fail_backwards { assert!(!got_claim); }
1997         commitment_signed_dance!(node_a, node_b, (), fail_backwards, true, false, got_claim);
1998
1999         if skip_last_step { return; }
2000
2001         if fail_backwards {
2002                 expect_pending_htlcs_forwardable_and_htlc_handling_failed!(node_a,
2003                         vec![crate::events::HTLCDestination::NextHopChannel{ node_id: Some(node_b.node.get_our_node_id()), channel_id: commitment_signed.channel_id }]);
2004                 check_added_monitors!(node_a, 1);
2005
2006                 let node_a_per_peer_state = node_a.node.per_peer_state.read().unwrap();
2007                 let mut number_of_msg_events = 0;
2008                 for (cp_id, peer_state_mutex) in node_a_per_peer_state.iter() {
2009                         let peer_state = peer_state_mutex.lock().unwrap();
2010                         let cp_pending_msg_events = &peer_state.pending_msg_events;
2011                         number_of_msg_events += cp_pending_msg_events.len();
2012                         if cp_pending_msg_events.len() == 1 {
2013                                 if let MessageSendEvent::UpdateHTLCs { .. } = cp_pending_msg_events[0] {
2014                                         assert_ne!(*cp_id, node_b.node.get_our_node_id());
2015                                 } else { panic!("Unexpected event"); }
2016                         }
2017                 }
2018                 // Expecting the failure backwards event to the previous hop (not `node_b`)
2019                 assert_eq!(number_of_msg_events, 1);
2020         } else {
2021                 assert!(node_a.node.get_and_clear_pending_msg_events().is_empty());
2022         }
2023 }
2024
2025 /// Get a payment preimage and hash.
2026 pub fn get_payment_preimage_hash(recipient: &Node, min_value_msat: Option<u64>, min_final_cltv_expiry_delta: Option<u16>) -> (PaymentPreimage, PaymentHash, PaymentSecret) {
2027         let mut payment_count = recipient.network_payment_count.borrow_mut();
2028         let payment_preimage = PaymentPreimage([*payment_count; 32]);
2029         *payment_count += 1;
2030         let payment_hash = PaymentHash(Sha256::hash(&payment_preimage.0[..]).to_byte_array());
2031         let payment_secret = recipient.node.create_inbound_payment_for_hash(payment_hash, min_value_msat, 7200, min_final_cltv_expiry_delta).unwrap();
2032         (payment_preimage, payment_hash, payment_secret)
2033 }
2034
2035 /// Get a payment preimage and hash.
2036 ///
2037 /// Don't use this, use the identically-named function instead.
2038 #[macro_export]
2039 macro_rules! get_payment_preimage_hash {
2040         ($dest_node: expr) => {
2041                 get_payment_preimage_hash!($dest_node, None)
2042         };
2043         ($dest_node: expr, $min_value_msat: expr) => {
2044                 crate::get_payment_preimage_hash!($dest_node, $min_value_msat, None)
2045         };
2046         ($dest_node: expr, $min_value_msat: expr, $min_final_cltv_expiry_delta: expr) => {
2047                 $crate::ln::functional_test_utils::get_payment_preimage_hash(&$dest_node, $min_value_msat, $min_final_cltv_expiry_delta)
2048         };
2049 }
2050
2051 /// Gets a route from the given sender to the node described in `payment_params`.
2052 pub fn get_route(send_node: &Node, route_params: &RouteParameters) -> Result<Route, msgs::LightningError> {
2053         let scorer = TestScorer::new();
2054         let keys_manager = TestKeysInterface::new(&[0u8; 32], bitcoin::network::constants::Network::Testnet);
2055         let random_seed_bytes = keys_manager.get_secure_random_bytes();
2056         router::get_route(
2057                 &send_node.node.get_our_node_id(), route_params, &send_node.network_graph.read_only(),
2058                 Some(&send_node.node.list_usable_channels().iter().collect::<Vec<_>>()),
2059                 send_node.logger, &scorer, &Default::default(), &random_seed_bytes
2060         )
2061 }
2062
2063 /// Like `get_route` above, but adds a random CLTV offset to the final hop.
2064 pub fn find_route(send_node: &Node, route_params: &RouteParameters) -> Result<Route, msgs::LightningError> {
2065         let scorer = TestScorer::new();
2066         let keys_manager = TestKeysInterface::new(&[0u8; 32], bitcoin::network::constants::Network::Testnet);
2067         let random_seed_bytes = keys_manager.get_secure_random_bytes();
2068         router::find_route(
2069                 &send_node.node.get_our_node_id(), route_params, &send_node.network_graph,
2070                 Some(&send_node.node.list_usable_channels().iter().collect::<Vec<_>>()),
2071                 send_node.logger, &scorer, &Default::default(), &random_seed_bytes
2072         )
2073 }
2074
2075 /// Gets a route from the given sender to the node described in `payment_params`.
2076 ///
2077 /// Don't use this, use the identically-named function instead.
2078 #[macro_export]
2079 macro_rules! get_route {
2080         ($send_node: expr, $payment_params: expr, $recv_value: expr) => {{
2081                 let route_params = $crate::routing::router::RouteParameters::from_payment_params_and_value($payment_params, $recv_value);
2082                 $crate::ln::functional_test_utils::get_route(&$send_node, &route_params)
2083         }}
2084 }
2085
2086 #[cfg(test)]
2087 #[macro_export]
2088 macro_rules! get_route_and_payment_hash {
2089         ($send_node: expr, $recv_node: expr, $recv_value: expr) => {{
2090                 let payment_params = $crate::routing::router::PaymentParameters::from_node_id($recv_node.node.get_our_node_id(), TEST_FINAL_CLTV)
2091                         .with_bolt11_features($recv_node.node.bolt11_invoice_features()).unwrap();
2092                 $crate::get_route_and_payment_hash!($send_node, $recv_node, payment_params, $recv_value)
2093         }};
2094         ($send_node: expr, $recv_node: expr, $payment_params: expr, $recv_value: expr) => {{
2095                 $crate::get_route_and_payment_hash!($send_node, $recv_node, $payment_params, $recv_value, None)
2096         }};
2097         ($send_node: expr, $recv_node: expr, $payment_params: expr, $recv_value: expr, $max_total_routing_fee_msat: expr) => {{
2098                 let mut route_params = $crate::routing::router::RouteParameters::from_payment_params_and_value($payment_params, $recv_value);
2099                 route_params.max_total_routing_fee_msat = $max_total_routing_fee_msat;
2100                 let (payment_preimage, payment_hash, payment_secret) =
2101                         $crate::ln::functional_test_utils::get_payment_preimage_hash(&$recv_node, Some($recv_value), None);
2102                 let route = $crate::ln::functional_test_utils::get_route(&$send_node, &route_params);
2103                 (route.unwrap(), payment_hash, payment_preimage, payment_secret)
2104         }}
2105 }
2106
2107 pub fn check_payment_claimable(
2108         event: &Event, expected_payment_hash: PaymentHash, expected_payment_secret: PaymentSecret,
2109         expected_recv_value: u64, expected_payment_preimage: Option<PaymentPreimage>,
2110         expected_receiver_node_id: PublicKey,
2111 ) {
2112         match event {
2113                 Event::PaymentClaimable { ref payment_hash, ref purpose, amount_msat, receiver_node_id, .. } => {
2114                         assert_eq!(expected_payment_hash, *payment_hash);
2115                         assert_eq!(expected_recv_value, *amount_msat);
2116                         assert_eq!(expected_receiver_node_id, receiver_node_id.unwrap());
2117                         match purpose {
2118                                 PaymentPurpose::InvoicePayment { payment_preimage, payment_secret, .. } => {
2119                                         assert_eq!(&expected_payment_preimage, payment_preimage);
2120                                         assert_eq!(expected_payment_secret, *payment_secret);
2121                                 },
2122                                 _ => {},
2123                         }
2124                 },
2125                 _ => panic!("Unexpected event"),
2126         }
2127 }
2128
2129 #[macro_export]
2130 #[cfg(any(test, ldk_bench, feature = "_test_utils"))]
2131 macro_rules! expect_payment_claimable {
2132         ($node: expr, $expected_payment_hash: expr, $expected_payment_secret: expr, $expected_recv_value: expr) => {
2133                 expect_payment_claimable!($node, $expected_payment_hash, $expected_payment_secret, $expected_recv_value, None, $node.node.get_our_node_id())
2134         };
2135         ($node: expr, $expected_payment_hash: expr, $expected_payment_secret: expr, $expected_recv_value: expr, $expected_payment_preimage: expr, $expected_receiver_node_id: expr) => {
2136                 let events = $node.node.get_and_clear_pending_events();
2137                 assert_eq!(events.len(), 1);
2138                 $crate::ln::functional_test_utils::check_payment_claimable(&events[0], $expected_payment_hash, $expected_payment_secret, $expected_recv_value, $expected_payment_preimage, $expected_receiver_node_id)
2139         };
2140 }
2141
2142 #[macro_export]
2143 #[cfg(any(test, ldk_bench, feature = "_test_utils"))]
2144 macro_rules! expect_payment_claimed {
2145         ($node: expr, $expected_payment_hash: expr, $expected_recv_value: expr) => {
2146                 let events = $node.node.get_and_clear_pending_events();
2147                 assert_eq!(events.len(), 1);
2148                 match events[0] {
2149                         $crate::events::Event::PaymentClaimed { ref payment_hash, amount_msat, .. } => {
2150                                 assert_eq!($expected_payment_hash, *payment_hash);
2151                                 assert_eq!($expected_recv_value, amount_msat);
2152                         },
2153                         _ => panic!("Unexpected event"),
2154                 }
2155         }
2156 }
2157
2158 pub fn expect_payment_sent<CM: AChannelManager, H: NodeHolder<CM=CM>>(node: &H,
2159         expected_payment_preimage: PaymentPreimage, expected_fee_msat_opt: Option<Option<u64>>,
2160         expect_per_path_claims: bool, expect_post_ev_mon_update: bool,
2161 ) {
2162         let events = node.node().get_and_clear_pending_events();
2163         let expected_payment_hash = PaymentHash(
2164                 bitcoin::hashes::sha256::Hash::hash(&expected_payment_preimage.0).to_byte_array());
2165         if expect_per_path_claims {
2166                 assert!(events.len() > 1);
2167         } else {
2168                 assert_eq!(events.len(), 1);
2169         }
2170         if expect_post_ev_mon_update {
2171                 check_added_monitors(node, 1);
2172         }
2173         let expected_payment_id = match events[0] {
2174                 Event::PaymentSent { ref payment_id, ref payment_preimage, ref payment_hash, ref fee_paid_msat } => {
2175                         assert_eq!(expected_payment_preimage, *payment_preimage);
2176                         assert_eq!(expected_payment_hash, *payment_hash);
2177                         if let Some(expected_fee_msat) = expected_fee_msat_opt {
2178                                 assert_eq!(*fee_paid_msat, expected_fee_msat);
2179                         } else {
2180                                 assert!(fee_paid_msat.is_some());
2181                         }
2182                         payment_id.unwrap()
2183                 },
2184                 _ => panic!("Unexpected event"),
2185         };
2186         if expect_per_path_claims {
2187                 for i in 1..events.len() {
2188                         match events[i] {
2189                                 Event::PaymentPathSuccessful { payment_id, payment_hash, .. } => {
2190                                         assert_eq!(payment_id, expected_payment_id);
2191                                         assert_eq!(payment_hash, Some(expected_payment_hash));
2192                                 },
2193                                 _ => panic!("Unexpected event"),
2194                         }
2195                 }
2196         }
2197 }
2198
2199 #[macro_export]
2200 macro_rules! expect_payment_sent {
2201         ($node: expr, $expected_payment_preimage: expr) => {
2202                 $crate::expect_payment_sent!($node, $expected_payment_preimage, None::<u64>, true);
2203         };
2204         ($node: expr, $expected_payment_preimage: expr, $expected_fee_msat_opt: expr) => {
2205                 $crate::expect_payment_sent!($node, $expected_payment_preimage, $expected_fee_msat_opt, true);
2206         };
2207         ($node: expr, $expected_payment_preimage: expr, $expected_fee_msat_opt: expr, $expect_paths: expr) => {
2208                 $crate::ln::functional_test_utils::expect_payment_sent(&$node, $expected_payment_preimage,
2209                         $expected_fee_msat_opt.map(|o| Some(o)), $expect_paths, true);
2210         }
2211 }
2212
2213 #[cfg(test)]
2214 #[macro_export]
2215 macro_rules! expect_payment_path_successful {
2216         ($node: expr) => {
2217                 let events = $node.node.get_and_clear_pending_events();
2218                 assert_eq!(events.len(), 1);
2219                 match events[0] {
2220                         $crate::events::Event::PaymentPathSuccessful { .. } => {},
2221                         _ => panic!("Unexpected event"),
2222                 }
2223         }
2224 }
2225
2226 pub fn expect_payment_forwarded<CM: AChannelManager, H: NodeHolder<CM=CM>>(
2227         event: Event, node: &H, prev_node: &H, next_node: &H, expected_fee: Option<u64>,
2228         expected_extra_fees_msat: Option<u64>, upstream_force_closed: bool,
2229         downstream_force_closed: bool
2230 ) {
2231         match event {
2232                 Event::PaymentForwarded {
2233                         total_fee_earned_msat, prev_channel_id, claim_from_onchain_tx, next_channel_id,
2234                         outbound_amount_forwarded_msat: _, skimmed_fee_msat
2235                 } => {
2236                         assert_eq!(total_fee_earned_msat, expected_fee);
2237
2238                         // Check that the (knowingly) withheld amount is always less or equal to the expected
2239                         // overpaid amount.
2240                         assert!(skimmed_fee_msat == expected_extra_fees_msat);
2241                         if !upstream_force_closed {
2242                                 // Is the event prev_channel_id in one of the channels between the two nodes?
2243                                 assert!(node.node().list_channels().iter().any(|x| x.counterparty.node_id == prev_node.node().get_our_node_id() && x.channel_id == prev_channel_id.unwrap()));
2244                         }
2245                         // We check for force closures since a force closed channel is removed from the
2246                         // node's channel list
2247                         if !downstream_force_closed {
2248                                 assert!(node.node().list_channels().iter().any(|x| x.counterparty.node_id == next_node.node().get_our_node_id() && x.channel_id == next_channel_id.unwrap()));
2249                         }
2250                         assert_eq!(claim_from_onchain_tx, downstream_force_closed);
2251                 },
2252                 _ => panic!("Unexpected event"),
2253         }
2254 }
2255
2256 #[macro_export]
2257 macro_rules! expect_payment_forwarded {
2258         ($node: expr, $prev_node: expr, $next_node: expr, $expected_fee: expr, $upstream_force_closed: expr, $downstream_force_closed: expr) => {
2259                 let mut events = $node.node.get_and_clear_pending_events();
2260                 assert_eq!(events.len(), 1);
2261                 $crate::ln::functional_test_utils::expect_payment_forwarded(
2262                         events.pop().unwrap(), &$node, &$prev_node, &$next_node, $expected_fee, None,
2263                         $upstream_force_closed, $downstream_force_closed
2264                 );
2265         }
2266 }
2267
2268 #[cfg(test)]
2269 #[macro_export]
2270 macro_rules! expect_channel_shutdown_state {
2271         ($node: expr, $chan_id: expr, $state: path) => {
2272                 let chan_details = $node.node.list_channels().into_iter().filter(|cd| cd.channel_id == $chan_id).collect::<Vec<ChannelDetails>>();
2273                 assert_eq!(chan_details.len(), 1);
2274                 assert_eq!(chan_details[0].channel_shutdown_state, Some($state));
2275         }
2276 }
2277
2278 #[cfg(any(test, ldk_bench, feature = "_test_utils"))]
2279 pub fn expect_channel_pending_event<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, expected_counterparty_node_id: &PublicKey) -> ChannelId {
2280         let events = node.node.get_and_clear_pending_events();
2281         assert_eq!(events.len(), 1);
2282         match &events[0] {
2283                 crate::events::Event::ChannelPending { channel_id, counterparty_node_id, .. } => {
2284                         assert_eq!(*expected_counterparty_node_id, *counterparty_node_id);
2285                         *channel_id
2286                 },
2287                 _ => panic!("Unexpected event"),
2288         }
2289 }
2290
2291 #[cfg(any(test, ldk_bench, feature = "_test_utils"))]
2292 pub fn expect_channel_ready_event<'a, 'b, 'c, 'd>(node: &'a Node<'b, 'c, 'd>, expected_counterparty_node_id: &PublicKey) {
2293         let events = node.node.get_and_clear_pending_events();
2294         assert_eq!(events.len(), 1);
2295         match events[0] {
2296                 crate::events::Event::ChannelReady{ ref counterparty_node_id, .. } => {
2297                         assert_eq!(*expected_counterparty_node_id, *counterparty_node_id);
2298                 },
2299                 _ => panic!("Unexpected event"),
2300         }
2301 }
2302
2303 #[cfg(any(test, feature = "_test_utils"))]
2304 pub fn expect_probe_successful_events(node: &Node, mut probe_results: Vec<(PaymentHash, PaymentId)>) {
2305         let mut events = node.node.get_and_clear_pending_events();
2306
2307         for event in events.drain(..) {
2308                 match event {
2309                         Event::ProbeSuccessful { payment_hash: ev_ph, payment_id: ev_pid, ..} => {
2310                                 let result_idx = probe_results.iter().position(|(payment_hash, payment_id)| *payment_hash == ev_ph && *payment_id == ev_pid);
2311                                 assert!(result_idx.is_some());
2312
2313                                 probe_results.remove(result_idx.unwrap());
2314                         },
2315                         _ => panic!(),
2316                 }
2317         };
2318
2319         // Ensure that we received a ProbeSuccessful event for each probe result.
2320         assert!(probe_results.is_empty());
2321 }
2322
2323 pub struct PaymentFailedConditions<'a> {
2324         pub(crate) expected_htlc_error_data: Option<(u16, &'a [u8])>,
2325         pub(crate) expected_blamed_scid: Option<u64>,
2326         pub(crate) expected_blamed_chan_closed: Option<bool>,
2327         pub(crate) expected_mpp_parts_remain: bool,
2328 }
2329
2330 impl<'a> PaymentFailedConditions<'a> {
2331         pub fn new() -> Self {
2332                 Self {
2333                         expected_htlc_error_data: None,
2334                         expected_blamed_scid: None,
2335                         expected_blamed_chan_closed: None,
2336                         expected_mpp_parts_remain: false,
2337                 }
2338         }
2339         pub fn mpp_parts_remain(mut self) -> Self {
2340                 self.expected_mpp_parts_remain = true;
2341                 self
2342         }
2343         pub fn blamed_scid(mut self, scid: u64) -> Self {
2344                 self.expected_blamed_scid = Some(scid);
2345                 self
2346         }
2347         pub fn blamed_chan_closed(mut self, closed: bool) -> Self {
2348                 self.expected_blamed_chan_closed = Some(closed);
2349                 self
2350         }
2351         pub fn expected_htlc_error_data(mut self, code: u16, data: &'a [u8]) -> Self {
2352                 self.expected_htlc_error_data = Some((code, data));
2353                 self
2354         }
2355 }
2356
2357 #[cfg(test)]
2358 macro_rules! expect_payment_failed_with_update {
2359         ($node: expr, $expected_payment_hash: expr, $payment_failed_permanently: expr, $scid: expr, $chan_closed: expr) => {
2360                 $crate::ln::functional_test_utils::expect_payment_failed_conditions(
2361                         &$node, $expected_payment_hash, $payment_failed_permanently,
2362                         $crate::ln::functional_test_utils::PaymentFailedConditions::new()
2363                                 .blamed_scid($scid).blamed_chan_closed($chan_closed));
2364         }
2365 }
2366
2367 #[cfg(test)]
2368 macro_rules! expect_payment_failed {
2369         ($node: expr, $expected_payment_hash: expr, $payment_failed_permanently: expr $(, $expected_error_code: expr, $expected_error_data: expr)*) => {
2370                 #[allow(unused_mut)]
2371                 let mut conditions = $crate::ln::functional_test_utils::PaymentFailedConditions::new();
2372                 $(
2373                         conditions = conditions.expected_htlc_error_data($expected_error_code, &$expected_error_data);
2374                 )*
2375                 $crate::ln::functional_test_utils::expect_payment_failed_conditions(&$node, $expected_payment_hash, $payment_failed_permanently, conditions);
2376         };
2377 }
2378
2379 pub fn expect_payment_failed_conditions_event<'a, 'b, 'c, 'd, 'e>(
2380         payment_failed_events: Vec<Event>, expected_payment_hash: PaymentHash,
2381         expected_payment_failed_permanently: bool, conditions: PaymentFailedConditions<'e>
2382 ) {
2383         if conditions.expected_mpp_parts_remain { assert_eq!(payment_failed_events.len(), 1); } else { assert_eq!(payment_failed_events.len(), 2); }
2384         let expected_payment_id = match &payment_failed_events[0] {
2385                 Event::PaymentPathFailed { payment_hash, payment_failed_permanently, payment_id, failure,
2386                         #[cfg(test)]
2387                         error_code,
2388                         #[cfg(test)]
2389                         error_data, .. } => {
2390                         assert_eq!(*payment_hash, expected_payment_hash, "unexpected payment_hash");
2391                         assert_eq!(*payment_failed_permanently, expected_payment_failed_permanently, "unexpected payment_failed_permanently value");
2392                         #[cfg(test)]
2393                         {
2394                                 assert!(error_code.is_some(), "expected error_code.is_some() = true");
2395                                 assert!(error_data.is_some(), "expected error_data.is_some() = true");
2396                                 if let Some((code, data)) = conditions.expected_htlc_error_data {
2397                                         assert_eq!(error_code.unwrap(), code, "unexpected error code");
2398                                         assert_eq!(&error_data.as_ref().unwrap()[..], data, "unexpected error data");
2399                                 }
2400                         }
2401
2402                         if let Some(chan_closed) = conditions.expected_blamed_chan_closed {
2403                                 if let PathFailure::OnPath { network_update: Some(upd) } = failure {
2404                                         match upd {
2405                                                 NetworkUpdate::ChannelUpdateMessage { ref msg } if !chan_closed => {
2406                                                         if let Some(scid) = conditions.expected_blamed_scid {
2407                                                                 assert_eq!(msg.contents.short_channel_id, scid);
2408                                                         }
2409                                                         const CHAN_DISABLED_FLAG: u8 = 2;
2410                                                         assert_eq!(msg.contents.flags & CHAN_DISABLED_FLAG, 0);
2411                                                 },
2412                                                 NetworkUpdate::ChannelFailure { short_channel_id, is_permanent } if chan_closed => {
2413                                                         if let Some(scid) = conditions.expected_blamed_scid {
2414                                                                 assert_eq!(*short_channel_id, scid);
2415                                                         }
2416                                                         assert!(is_permanent);
2417                                                 },
2418                                                 _ => panic!("Unexpected update type"),
2419                                         }
2420                                 } else { panic!("Expected network update"); }
2421                         }
2422
2423                         payment_id.unwrap()
2424                 },
2425                 _ => panic!("Unexpected event"),
2426         };
2427         if !conditions.expected_mpp_parts_remain {
2428                 match &payment_failed_events[1] {
2429                         Event::PaymentFailed { ref payment_hash, ref payment_id, ref reason } => {
2430                                 assert_eq!(*payment_hash, expected_payment_hash, "unexpected second payment_hash");
2431                                 assert_eq!(*payment_id, expected_payment_id);
2432                                 assert_eq!(reason.unwrap(), if expected_payment_failed_permanently {
2433                                         PaymentFailureReason::RecipientRejected
2434                                 } else {
2435                                         PaymentFailureReason::RetriesExhausted
2436                                 });
2437                         }
2438                         _ => panic!("Unexpected second event"),
2439                 }
2440         }
2441 }
2442
2443 pub fn expect_payment_failed_conditions<'a, 'b, 'c, 'd, 'e>(
2444         node: &'a Node<'b, 'c, 'd>, expected_payment_hash: PaymentHash, expected_payment_failed_permanently: bool,
2445         conditions: PaymentFailedConditions<'e>
2446 ) {
2447         let events = node.node.get_and_clear_pending_events();
2448         expect_payment_failed_conditions_event(events, expected_payment_hash, expected_payment_failed_permanently, conditions);
2449 }
2450
2451 pub fn send_along_route_with_secret<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, route: Route, expected_paths: &[&[&Node<'a, 'b, 'c>]], recv_value: u64, our_payment_hash: PaymentHash, our_payment_secret: PaymentSecret) -> PaymentId {
2452         let payment_id = PaymentId(origin_node.keys_manager.backing.get_secure_random_bytes());
2453         origin_node.node.send_payment_with_route(&route, our_payment_hash,
2454                 RecipientOnionFields::secret_only(our_payment_secret), payment_id).unwrap();
2455         check_added_monitors!(origin_node, expected_paths.len());
2456         pass_along_route(origin_node, expected_paths, recv_value, our_payment_hash, our_payment_secret);
2457         payment_id
2458 }
2459
2460 fn fail_payment_along_path<'a, 'b, 'c>(expected_path: &[&Node<'a, 'b, 'c>]) {
2461         let origin_node_id = expected_path[0].node.get_our_node_id();
2462
2463         // iterate from the receiving node to the origin node and handle update fail htlc.
2464         for (&node, &prev_node) in expected_path.iter().rev().zip(expected_path.iter().rev().skip(1)) {
2465                 let updates = get_htlc_update_msgs!(node, prev_node.node.get_our_node_id());
2466                 prev_node.node.handle_update_fail_htlc(&node.node.get_our_node_id(), &updates.update_fail_htlcs[0]);
2467                 check_added_monitors!(prev_node, 0);
2468
2469                 let is_first_hop = origin_node_id == prev_node.node.get_our_node_id();
2470                 // We do not want to fail backwards on the first hop. All other hops should fail backwards.
2471                 commitment_signed_dance!(prev_node, node, updates.commitment_signed, !is_first_hop);
2472         }
2473 }
2474
2475 pub fn do_pass_along_path<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_path: &[&Node<'a, 'b, 'c>], recv_value: u64, our_payment_hash: PaymentHash, our_payment_secret: Option<PaymentSecret>, ev: MessageSendEvent, payment_claimable_expected: bool, clear_recipient_events: bool, expected_preimage: Option<PaymentPreimage>, is_probe: bool) -> Option<Event> {
2476         let mut payment_event = SendEvent::from_event(ev);
2477         let mut prev_node = origin_node;
2478         let mut event = None;
2479
2480         for (idx, &node) in expected_path.iter().enumerate() {
2481                 let is_last_hop = idx == expected_path.len() - 1;
2482                 assert_eq!(node.node.get_our_node_id(), payment_event.node_id);
2483
2484                 node.node.handle_update_add_htlc(&prev_node.node.get_our_node_id(), &payment_event.msgs[0]);
2485                 check_added_monitors!(node, 0);
2486
2487                 if is_last_hop && is_probe {
2488                         commitment_signed_dance!(node, prev_node, payment_event.commitment_msg, true, true);
2489                 } else {
2490                         commitment_signed_dance!(node, prev_node, payment_event.commitment_msg, false);
2491                         expect_pending_htlcs_forwardable!(node);
2492                 }
2493
2494                 if is_last_hop && clear_recipient_events {
2495                         let events_2 = node.node.get_and_clear_pending_events();
2496                         if payment_claimable_expected {
2497                                 assert_eq!(events_2.len(), 1);
2498                                 match &events_2[0] {
2499                                         Event::PaymentClaimable { ref payment_hash, ref purpose, amount_msat,
2500                                                 receiver_node_id, ref via_channel_id, ref via_user_channel_id,
2501                                                 claim_deadline, onion_fields, ..
2502                                         } => {
2503                                                 assert_eq!(our_payment_hash, *payment_hash);
2504                                                 assert_eq!(node.node.get_our_node_id(), receiver_node_id.unwrap());
2505                                                 assert!(onion_fields.is_some());
2506                                                 match &purpose {
2507                                                         PaymentPurpose::InvoicePayment { payment_preimage, payment_secret, .. } => {
2508                                                                 assert_eq!(expected_preimage, *payment_preimage);
2509                                                                 assert_eq!(our_payment_secret.unwrap(), *payment_secret);
2510                                                                 assert_eq!(Some(*payment_secret), onion_fields.as_ref().unwrap().payment_secret);
2511                                                         },
2512                                                         PaymentPurpose::SpontaneousPayment(payment_preimage) => {
2513                                                                 assert_eq!(expected_preimage.unwrap(), *payment_preimage);
2514                                                                 assert_eq!(our_payment_secret, onion_fields.as_ref().unwrap().payment_secret);
2515                                                         },
2516                                                 }
2517                                                 assert_eq!(*amount_msat, recv_value);
2518                                                 assert!(node.node.list_channels().iter().any(|details| details.channel_id == via_channel_id.unwrap()));
2519                                                 assert!(node.node.list_channels().iter().any(|details| details.user_channel_id == via_user_channel_id.unwrap()));
2520                                                 assert!(claim_deadline.unwrap() > node.best_block_info().1);
2521                                         },
2522                                         _ => panic!("Unexpected event"),
2523                                 }
2524                                 event = Some(events_2[0].clone());
2525                         } else {
2526                                 assert!(events_2.is_empty());
2527                         }
2528                 } else if !is_last_hop {
2529                         let mut events_2 = node.node.get_and_clear_pending_msg_events();
2530                         assert_eq!(events_2.len(), 1);
2531                         check_added_monitors!(node, 1);
2532                         payment_event = SendEvent::from_event(events_2.remove(0));
2533                         assert_eq!(payment_event.msgs.len(), 1);
2534                 }
2535
2536                 prev_node = node;
2537         }
2538         event
2539 }
2540
2541 pub fn pass_along_path<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_path: &[&Node<'a, 'b, 'c>], recv_value: u64, our_payment_hash: PaymentHash, our_payment_secret: Option<PaymentSecret>, ev: MessageSendEvent, payment_claimable_expected: bool, expected_preimage: Option<PaymentPreimage>) -> Option<Event> {
2542         do_pass_along_path(origin_node, expected_path, recv_value, our_payment_hash, our_payment_secret, ev, payment_claimable_expected, true, expected_preimage, false)
2543 }
2544
2545 pub fn send_probe_along_route<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_route: &[&[&Node<'a, 'b, 'c>]]) {
2546         let mut events = origin_node.node.get_and_clear_pending_msg_events();
2547         assert_eq!(events.len(), expected_route.len());
2548
2549         check_added_monitors!(origin_node, expected_route.len());
2550
2551         for path in expected_route.iter() {
2552                 let ev = remove_first_msg_event_to_node(&path[0].node.get_our_node_id(), &mut events);
2553
2554                 do_pass_along_path(origin_node, path, 0, PaymentHash([0_u8; 32]), None, ev, false, false, None, true);
2555                 let nodes_to_fail_payment: Vec<_> = vec![origin_node].into_iter().chain(path.iter().cloned()).collect();
2556
2557                 fail_payment_along_path(nodes_to_fail_payment.as_slice());
2558         }
2559 }
2560
2561 pub fn pass_along_route<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_route: &[&[&Node<'a, 'b, 'c>]], recv_value: u64, our_payment_hash: PaymentHash, our_payment_secret: PaymentSecret) {
2562         let mut events = origin_node.node.get_and_clear_pending_msg_events();
2563         assert_eq!(events.len(), expected_route.len());
2564
2565         for (path_idx, expected_path) in expected_route.iter().enumerate() {
2566                 let ev = remove_first_msg_event_to_node(&expected_path[0].node.get_our_node_id(), &mut events);
2567                 // Once we've gotten through all the HTLCs, the last one should result in a
2568                 // PaymentClaimable (but each previous one should not!).
2569                 let expect_payment = path_idx == expected_route.len() - 1;
2570                 pass_along_path(origin_node, expected_path, recv_value, our_payment_hash.clone(), Some(our_payment_secret), ev, expect_payment, None);
2571         }
2572 }
2573
2574 pub fn send_along_route<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, route: Route, expected_route: &[&Node<'a, 'b, 'c>], recv_value: u64) -> (PaymentPreimage, PaymentHash, PaymentSecret, PaymentId) {
2575         let (our_payment_preimage, our_payment_hash, our_payment_secret) = get_payment_preimage_hash!(expected_route.last().unwrap());
2576         let payment_id = send_along_route_with_secret(origin_node, route, &[expected_route], recv_value, our_payment_hash, our_payment_secret);
2577         (our_payment_preimage, our_payment_hash, our_payment_secret, payment_id)
2578 }
2579
2580 pub fn do_claim_payment_along_route<'a, 'b, 'c>(
2581         origin_node: &Node<'a, 'b, 'c>, expected_paths: &[&[&Node<'a, 'b, 'c>]], skip_last: bool,
2582         our_payment_preimage: PaymentPreimage
2583 ) -> u64 {
2584         for path in expected_paths.iter() {
2585                 assert_eq!(path.last().unwrap().node.get_our_node_id(), expected_paths[0].last().unwrap().node.get_our_node_id());
2586         }
2587         expected_paths[0].last().unwrap().node.claim_funds(our_payment_preimage);
2588         pass_claimed_payment_along_route(
2589                 ClaimAlongRouteArgs::new(origin_node, expected_paths, our_payment_preimage)
2590                         .skip_last(skip_last)
2591         )
2592 }
2593
2594 pub struct ClaimAlongRouteArgs<'a, 'b, 'c, 'd> {
2595         pub origin_node: &'a Node<'b, 'c, 'd>,
2596         pub expected_paths: &'a [&'a [&'a Node<'b, 'c, 'd>]],
2597         pub expected_extra_fees: Vec<u32>,
2598         pub expected_min_htlc_overpay: Vec<u32>,
2599         pub skip_last: bool,
2600         pub payment_preimage: PaymentPreimage,
2601 }
2602
2603 impl<'a, 'b, 'c, 'd> ClaimAlongRouteArgs<'a, 'b, 'c, 'd> {
2604         pub fn new(
2605                 origin_node: &'a Node<'b, 'c, 'd>, expected_paths: &'a [&'a [&'a Node<'b, 'c, 'd>]],
2606                 payment_preimage: PaymentPreimage,
2607         ) -> Self {
2608                 Self {
2609                         origin_node, expected_paths, expected_extra_fees: vec![0; expected_paths.len()],
2610                         expected_min_htlc_overpay: vec![0; expected_paths.len()], skip_last: false, payment_preimage,
2611                 }
2612         }
2613         pub fn skip_last(mut self, skip_last: bool) -> Self {
2614                 self.skip_last = skip_last;
2615                 self
2616         }
2617         pub fn with_expected_extra_fees(mut self, extra_fees: Vec<u32>) -> Self {
2618                 self.expected_extra_fees = extra_fees;
2619                 self
2620         }
2621         pub fn with_expected_min_htlc_overpay(mut self, extra_fees: Vec<u32>) -> Self {
2622                 self.expected_min_htlc_overpay = extra_fees;
2623                 self
2624         }
2625 }
2626
2627 pub fn pass_claimed_payment_along_route<'a, 'b, 'c, 'd>(args: ClaimAlongRouteArgs) -> u64 {
2628         let ClaimAlongRouteArgs {
2629                 origin_node, expected_paths, expected_extra_fees, expected_min_htlc_overpay, skip_last,
2630                 payment_preimage: our_payment_preimage
2631         } = args;
2632         let claim_event = expected_paths[0].last().unwrap().node.get_and_clear_pending_events();
2633         assert_eq!(claim_event.len(), 1);
2634         match claim_event[0] {
2635                 Event::PaymentClaimed {
2636                         purpose: PaymentPurpose::SpontaneousPayment(preimage),
2637                         amount_msat,
2638                         ref htlcs,
2639                         .. }
2640                 | Event::PaymentClaimed {
2641                         purpose: PaymentPurpose::InvoicePayment { payment_preimage: Some(preimage), ..},
2642                         ref htlcs,
2643                         amount_msat,
2644                         ..
2645                 } => {
2646                         assert_eq!(preimage, our_payment_preimage);
2647                         assert_eq!(htlcs.len(), expected_paths.len());  // One per path.
2648                         assert_eq!(htlcs.iter().map(|h| h.value_msat).sum::<u64>(), amount_msat);
2649                         expected_paths.iter().zip(htlcs).for_each(|(path, htlc)| check_claimed_htlc_channel(origin_node, path, htlc));
2650                 },
2651                 Event::PaymentClaimed {
2652                         purpose: PaymentPurpose::InvoicePayment { .. },
2653                         payment_hash,
2654                         amount_msat,
2655                         ref htlcs,
2656                         ..
2657                 } => {
2658                         assert_eq!(&payment_hash.0, &Sha256::hash(&our_payment_preimage.0)[..]);
2659                         assert_eq!(htlcs.len(), expected_paths.len());  // One per path.
2660                         assert_eq!(htlcs.iter().map(|h| h.value_msat).sum::<u64>(), amount_msat);
2661                         expected_paths.iter().zip(htlcs).for_each(|(path, htlc)| check_claimed_htlc_channel(origin_node, path, htlc));
2662                 }
2663                 _ => panic!(),
2664         }
2665
2666         check_added_monitors!(expected_paths[0].last().unwrap(), expected_paths.len());
2667
2668         let mut expected_total_fee_msat = 0;
2669
2670         macro_rules! msgs_from_ev {
2671                 ($ev: expr) => {
2672                         match $ev {
2673                                 &MessageSendEvent::UpdateHTLCs { ref 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 } } => {
2674                                         assert!(update_add_htlcs.is_empty());
2675                                         assert_eq!(update_fulfill_htlcs.len(), 1);
2676                                         assert!(update_fail_htlcs.is_empty());
2677                                         assert!(update_fail_malformed_htlcs.is_empty());
2678                                         assert!(update_fee.is_none());
2679                                         ((update_fulfill_htlcs[0].clone(), commitment_signed.clone()), node_id.clone())
2680                                 },
2681                                 _ => panic!("Unexpected event"),
2682                         }
2683                 }
2684         }
2685         let mut per_path_msgs: Vec<((msgs::UpdateFulfillHTLC, msgs::CommitmentSigned), PublicKey)> = Vec::with_capacity(expected_paths.len());
2686         let mut events = expected_paths[0].last().unwrap().node.get_and_clear_pending_msg_events();
2687         assert_eq!(events.len(), expected_paths.len());
2688
2689         if events.len() == 1 {
2690                 per_path_msgs.push(msgs_from_ev!(&events[0]));
2691         } else {
2692                 for expected_path in expected_paths.iter() {
2693                         // For MPP payments, we want the fulfill message from the payee to the penultimate hop in the
2694                         // path.
2695                         let penultimate_hop_node_id = expected_path.iter().rev().skip(1).next()
2696                                 .map(|n| n.node.get_our_node_id())
2697                                 .unwrap_or(origin_node.node.get_our_node_id());
2698                         let ev = remove_first_msg_event_to_node(&penultimate_hop_node_id, &mut events);
2699                         per_path_msgs.push(msgs_from_ev!(&ev));
2700                 }
2701         }
2702
2703         for (i, (expected_route, (path_msgs, next_hop))) in expected_paths.iter().zip(per_path_msgs.drain(..)).enumerate() {
2704                 let mut next_msgs = Some(path_msgs);
2705                 let mut expected_next_node = next_hop;
2706
2707                 macro_rules! last_update_fulfill_dance {
2708                         ($node: expr, $prev_node: expr) => {
2709                                 {
2710                                         $node.node.handle_update_fulfill_htlc(&$prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().0);
2711                                         check_added_monitors!($node, 0);
2712                                         assert!($node.node.get_and_clear_pending_msg_events().is_empty());
2713                                         commitment_signed_dance!($node, $prev_node, next_msgs.as_ref().unwrap().1, false);
2714                                 }
2715                         }
2716                 }
2717                 macro_rules! mid_update_fulfill_dance {
2718                         ($idx: expr, $node: expr, $prev_node: expr, $next_node: expr, $new_msgs: expr) => {
2719                                 {
2720                                         $node.node.handle_update_fulfill_htlc(&$prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().0);
2721                                         let mut fee = {
2722                                                 let per_peer_state = $node.node.per_peer_state.read().unwrap();
2723                                                 let peer_state = per_peer_state.get(&$prev_node.node.get_our_node_id())
2724                                                         .unwrap().lock().unwrap();
2725                                                 let channel = peer_state.channel_by_id.get(&next_msgs.as_ref().unwrap().0.channel_id).unwrap();
2726                                                 if let Some(prev_config) = channel.context().prev_config() {
2727                                                         prev_config.forwarding_fee_base_msat
2728                                                 } else {
2729                                                         channel.context().config().forwarding_fee_base_msat
2730                                                 }
2731                                         };
2732
2733                                         let mut expected_extra_fee = None;
2734                                         if $idx == 1 {
2735                                                 fee += expected_extra_fees[i];
2736                                                 fee += expected_min_htlc_overpay[i];
2737                                                 expected_extra_fee = if expected_extra_fees[i] > 0 { Some(expected_extra_fees[i] as u64) } else { None };
2738                                         }
2739                                         let mut events = $node.node.get_and_clear_pending_events();
2740                                         assert_eq!(events.len(), 1);
2741                                         expect_payment_forwarded(events.pop().unwrap(), *$node, $next_node, $prev_node,
2742                                                 Some(fee as u64), expected_extra_fee, false, false);
2743                                         expected_total_fee_msat += fee as u64;
2744                                         check_added_monitors!($node, 1);
2745                                         let new_next_msgs = if $new_msgs {
2746                                                 let events = $node.node.get_and_clear_pending_msg_events();
2747                                                 assert_eq!(events.len(), 1);
2748                                                 let (res, nexthop) = msgs_from_ev!(&events[0]);
2749                                                 expected_next_node = nexthop;
2750                                                 Some(res)
2751                                         } else {
2752                                                 assert!($node.node.get_and_clear_pending_msg_events().is_empty());
2753                                                 None
2754                                         };
2755                                         commitment_signed_dance!($node, $prev_node, next_msgs.as_ref().unwrap().1, false);
2756                                         next_msgs = new_next_msgs;
2757                                 }
2758                         }
2759                 }
2760
2761                 let mut prev_node = expected_route.last().unwrap();
2762                 for (idx, node) in expected_route.iter().rev().enumerate().skip(1) {
2763                         assert_eq!(expected_next_node, node.node.get_our_node_id());
2764                         let update_next_msgs = !skip_last || idx != expected_route.len() - 1;
2765                         if next_msgs.is_some() {
2766                                 // Since we are traversing in reverse, next_node is actually the previous node
2767                                 let next_node: &Node;
2768                                 if idx == expected_route.len() - 1 {
2769                                         next_node = origin_node;
2770                                 } else {
2771                                         next_node = expected_route[expected_route.len() - 1 - idx - 1];
2772                                 }
2773                                 mid_update_fulfill_dance!(idx, node, prev_node, next_node, update_next_msgs);
2774                         } else {
2775                                 assert!(!update_next_msgs);
2776                                 assert!(node.node.get_and_clear_pending_msg_events().is_empty());
2777                         }
2778                         if !skip_last && idx == expected_route.len() - 1 {
2779                                 assert_eq!(expected_next_node, origin_node.node.get_our_node_id());
2780                         }
2781
2782                         prev_node = node;
2783                 }
2784
2785                 if !skip_last {
2786                         last_update_fulfill_dance!(origin_node, expected_route.first().unwrap());
2787                 }
2788         }
2789
2790         // Ensure that claim_funds is idempotent.
2791         expected_paths[0].last().unwrap().node.claim_funds(our_payment_preimage);
2792         assert!(expected_paths[0].last().unwrap().node.get_and_clear_pending_msg_events().is_empty());
2793         check_added_monitors!(expected_paths[0].last().unwrap(), 0);
2794
2795         expected_total_fee_msat
2796 }
2797 pub fn claim_payment_along_route<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_paths: &[&[&Node<'a, 'b, 'c>]], skip_last: bool, our_payment_preimage: PaymentPreimage) {
2798         let expected_total_fee_msat = do_claim_payment_along_route(origin_node, expected_paths, skip_last, our_payment_preimage);
2799         if !skip_last {
2800                 expect_payment_sent!(origin_node, our_payment_preimage, Some(expected_total_fee_msat));
2801         }
2802 }
2803
2804 pub fn claim_payment<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_route: &[&Node<'a, 'b, 'c>], our_payment_preimage: PaymentPreimage) {
2805         claim_payment_along_route(origin_node, &[expected_route], false, our_payment_preimage);
2806 }
2807
2808 pub const TEST_FINAL_CLTV: u32 = 70;
2809
2810 pub fn route_payment<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_route: &[&Node<'a, 'b, 'c>], recv_value: u64) -> (PaymentPreimage, PaymentHash, PaymentSecret, PaymentId) {
2811         let payment_params = PaymentParameters::from_node_id(expected_route.last().unwrap().node.get_our_node_id(), TEST_FINAL_CLTV)
2812                 .with_bolt11_features(expected_route.last().unwrap().node.bolt11_invoice_features()).unwrap();
2813         let route_params = RouteParameters::from_payment_params_and_value(payment_params, recv_value);
2814         let route = get_route(origin_node, &route_params).unwrap();
2815         assert_eq!(route.paths.len(), 1);
2816         assert_eq!(route.paths[0].hops.len(), expected_route.len());
2817         for (node, hop) in expected_route.iter().zip(route.paths[0].hops.iter()) {
2818                 assert_eq!(hop.pubkey, node.node.get_our_node_id());
2819         }
2820
2821         let res = send_along_route(origin_node, route, expected_route, recv_value);
2822         (res.0, res.1, res.2, res.3)
2823 }
2824
2825 pub fn route_over_limit<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_route: &[&Node<'a, 'b, 'c>], recv_value: u64)  {
2826         let payment_params = PaymentParameters::from_node_id(expected_route.last().unwrap().node.get_our_node_id(), TEST_FINAL_CLTV)
2827                 .with_bolt11_features(expected_route.last().unwrap().node.bolt11_invoice_features()).unwrap();
2828         let route_params = RouteParameters::from_payment_params_and_value(payment_params, recv_value);
2829         let network_graph = origin_node.network_graph.read_only();
2830         let scorer = test_utils::TestScorer::new();
2831         let seed = [0u8; 32];
2832         let keys_manager = test_utils::TestKeysInterface::new(&seed, Network::Testnet);
2833         let random_seed_bytes = keys_manager.get_secure_random_bytes();
2834         let route = router::get_route(&origin_node.node.get_our_node_id(), &route_params, &network_graph,
2835                 None, origin_node.logger, &scorer, &Default::default(), &random_seed_bytes).unwrap();
2836         assert_eq!(route.paths.len(), 1);
2837         assert_eq!(route.paths[0].hops.len(), expected_route.len());
2838         for (node, hop) in expected_route.iter().zip(route.paths[0].hops.iter()) {
2839                 assert_eq!(hop.pubkey, node.node.get_our_node_id());
2840         }
2841
2842         let (_, our_payment_hash, our_payment_secret) = get_payment_preimage_hash!(expected_route.last().unwrap());
2843         unwrap_send_err!(origin_node.node.send_payment_with_route(&route, our_payment_hash,
2844                         RecipientOnionFields::secret_only(our_payment_secret), PaymentId(our_payment_hash.0)),
2845                 true, APIError::ChannelUnavailable { ref err },
2846                 assert!(err.contains("Cannot send value that would put us over the max HTLC value in flight our peer will accept")));
2847 }
2848
2849 pub fn send_payment<'a, 'b, 'c>(origin: &Node<'a, 'b, 'c>, expected_route: &[&Node<'a, 'b, 'c>], recv_value: u64) -> (PaymentPreimage, PaymentHash, PaymentSecret, PaymentId) {
2850         let res = route_payment(&origin, expected_route, recv_value);
2851         claim_payment(&origin, expected_route, res.0);
2852         res
2853 }
2854
2855 pub fn fail_payment_along_route<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_paths: &[&[&Node<'a, 'b, 'c>]], skip_last: bool, our_payment_hash: PaymentHash) {
2856         for path in expected_paths.iter() {
2857                 assert_eq!(path.last().unwrap().node.get_our_node_id(), expected_paths[0].last().unwrap().node.get_our_node_id());
2858         }
2859         expected_paths[0].last().unwrap().node.fail_htlc_backwards(&our_payment_hash);
2860         let expected_destinations: Vec<HTLCDestination> = repeat(HTLCDestination::FailedPayment { payment_hash: our_payment_hash }).take(expected_paths.len()).collect();
2861         expect_pending_htlcs_forwardable_and_htlc_handling_failed!(expected_paths[0].last().unwrap(), expected_destinations);
2862
2863         pass_failed_payment_back(origin_node, expected_paths, skip_last, our_payment_hash, PaymentFailureReason::RecipientRejected);
2864 }
2865
2866 pub fn pass_failed_payment_back<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_paths_slice: &[&[&Node<'a, 'b, 'c>]], skip_last: bool, our_payment_hash: PaymentHash, expected_fail_reason: PaymentFailureReason) {
2867         let mut expected_paths: Vec<_> = expected_paths_slice.iter().collect();
2868         check_added_monitors!(expected_paths[0].last().unwrap(), expected_paths.len());
2869
2870         let mut per_path_msgs: Vec<((msgs::UpdateFailHTLC, msgs::CommitmentSigned), PublicKey)> = Vec::with_capacity(expected_paths.len());
2871         let events = expected_paths[0].last().unwrap().node.get_and_clear_pending_msg_events();
2872         assert_eq!(events.len(), expected_paths.len());
2873         for ev in events.iter() {
2874                 let (update_fail, commitment_signed, node_id) = match ev {
2875                         &MessageSendEvent::UpdateHTLCs { ref 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 } } => {
2876                                 assert!(update_add_htlcs.is_empty());
2877                                 assert!(update_fulfill_htlcs.is_empty());
2878                                 assert_eq!(update_fail_htlcs.len(), 1);
2879                                 assert!(update_fail_malformed_htlcs.is_empty());
2880                                 assert!(update_fee.is_none());
2881                                 (update_fail_htlcs[0].clone(), commitment_signed.clone(), node_id.clone())
2882                         },
2883                         _ => panic!("Unexpected event"),
2884                 };
2885                 per_path_msgs.push(((update_fail, commitment_signed), node_id));
2886         }
2887         per_path_msgs.sort_unstable_by(|(_, node_id_a), (_, node_id_b)| node_id_a.cmp(node_id_b));
2888         expected_paths.sort_unstable_by(|path_a, path_b| path_a[path_a.len() - 2].node.get_our_node_id().cmp(&path_b[path_b.len() - 2].node.get_our_node_id()));
2889
2890         for (i, (expected_route, (path_msgs, next_hop))) in expected_paths.iter().zip(per_path_msgs.drain(..)).enumerate() {
2891                 let mut next_msgs = Some(path_msgs);
2892                 let mut expected_next_node = next_hop;
2893                 let mut prev_node = expected_route.last().unwrap();
2894
2895                 for (idx, node) in expected_route.iter().rev().enumerate().skip(1) {
2896                         assert_eq!(expected_next_node, node.node.get_our_node_id());
2897                         let update_next_node = !skip_last || idx != expected_route.len() - 1;
2898                         if next_msgs.is_some() {
2899                                 node.node.handle_update_fail_htlc(&prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().0);
2900                                 commitment_signed_dance!(node, prev_node, next_msgs.as_ref().unwrap().1, update_next_node);
2901                                 if !update_next_node {
2902                                         expect_pending_htlcs_forwardable_and_htlc_handling_failed!(node, vec![HTLCDestination::NextHopChannel { node_id: Some(prev_node.node.get_our_node_id()), channel_id: next_msgs.as_ref().unwrap().0.channel_id }]);
2903                                 }
2904                         }
2905                         let events = node.node.get_and_clear_pending_msg_events();
2906                         if update_next_node {
2907                                 assert_eq!(events.len(), 1);
2908                                 match events[0] {
2909                                         MessageSendEvent::UpdateHTLCs { ref 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 } } => {
2910                                                 assert!(update_add_htlcs.is_empty());
2911                                                 assert!(update_fulfill_htlcs.is_empty());
2912                                                 assert_eq!(update_fail_htlcs.len(), 1);
2913                                                 assert!(update_fail_malformed_htlcs.is_empty());
2914                                                 assert!(update_fee.is_none());
2915                                                 expected_next_node = node_id.clone();
2916                                                 next_msgs = Some((update_fail_htlcs[0].clone(), commitment_signed.clone()));
2917                                         },
2918                                         _ => panic!("Unexpected event"),
2919                                 }
2920                         } else {
2921                                 assert!(events.is_empty());
2922                         }
2923                         if !skip_last && idx == expected_route.len() - 1 {
2924                                 assert_eq!(expected_next_node, origin_node.node.get_our_node_id());
2925                         }
2926
2927                         prev_node = node;
2928                 }
2929
2930                 if !skip_last {
2931                         let prev_node = expected_route.first().unwrap();
2932                         origin_node.node.handle_update_fail_htlc(&prev_node.node.get_our_node_id(), &next_msgs.as_ref().unwrap().0);
2933                         check_added_monitors!(origin_node, 0);
2934                         assert!(origin_node.node.get_and_clear_pending_msg_events().is_empty());
2935                         commitment_signed_dance!(origin_node, prev_node, next_msgs.as_ref().unwrap().1, false);
2936                         let events = origin_node.node.get_and_clear_pending_events();
2937                         if i == expected_paths.len() - 1 { assert_eq!(events.len(), 2); } else { assert_eq!(events.len(), 1); }
2938
2939                         let expected_payment_id = match events[0] {
2940                                 Event::PaymentPathFailed { payment_hash, payment_failed_permanently, ref path, ref payment_id, .. } => {
2941                                         assert_eq!(payment_hash, our_payment_hash);
2942                                         assert!(payment_failed_permanently);
2943                                         for (idx, hop) in expected_route.iter().enumerate() {
2944                                                 assert_eq!(hop.node.get_our_node_id(), path.hops[idx].pubkey);
2945                                         }
2946                                         payment_id.unwrap()
2947                                 },
2948                                 _ => panic!("Unexpected event"),
2949                         };
2950                         if i == expected_paths.len() - 1 {
2951                                 match events[1] {
2952                                         Event::PaymentFailed { ref payment_hash, ref payment_id, ref reason } => {
2953                                                 assert_eq!(*payment_hash, our_payment_hash, "unexpected second payment_hash");
2954                                                 assert_eq!(*payment_id, expected_payment_id);
2955                                                 assert_eq!(reason.unwrap(), expected_fail_reason);
2956                                         }
2957                                         _ => panic!("Unexpected second event"),
2958                                 }
2959                         }
2960                 }
2961         }
2962
2963         // Ensure that fail_htlc_backwards is idempotent.
2964         expected_paths[0].last().unwrap().node.fail_htlc_backwards(&our_payment_hash);
2965         assert!(expected_paths[0].last().unwrap().node.get_and_clear_pending_events().is_empty());
2966         assert!(expected_paths[0].last().unwrap().node.get_and_clear_pending_msg_events().is_empty());
2967         check_added_monitors!(expected_paths[0].last().unwrap(), 0);
2968 }
2969
2970 pub fn fail_payment<'a, 'b, 'c>(origin_node: &Node<'a, 'b, 'c>, expected_path: &[&Node<'a, 'b, 'c>], our_payment_hash: PaymentHash)  {
2971         fail_payment_along_route(origin_node, &[&expected_path[..]], false, our_payment_hash);
2972 }
2973
2974 pub fn create_chanmon_cfgs(node_count: usize) -> Vec<TestChanMonCfg> {
2975         let mut chan_mon_cfgs = Vec::new();
2976         for i in 0..node_count {
2977                 let tx_broadcaster = test_utils::TestBroadcaster::new(Network::Testnet);
2978                 let fee_estimator = test_utils::TestFeeEstimator { sat_per_kw: Mutex::new(253) };
2979                 let chain_source = test_utils::TestChainSource::new(Network::Testnet);
2980                 let logger = test_utils::TestLogger::with_id(format!("node {}", i));
2981                 let persister = test_utils::TestPersister::new();
2982                 let seed = [i as u8; 32];
2983                 let keys_manager = test_utils::TestKeysInterface::new(&seed, Network::Testnet);
2984                 let scorer = RwLock::new(test_utils::TestScorer::new());
2985
2986                 chan_mon_cfgs.push(TestChanMonCfg { tx_broadcaster, fee_estimator, chain_source, logger, persister, keys_manager, scorer });
2987         }
2988
2989         chan_mon_cfgs
2990 }
2991
2992 pub fn create_node_cfgs<'a>(node_count: usize, chanmon_cfgs: &'a Vec<TestChanMonCfg>) -> Vec<NodeCfg<'a>> {
2993         create_node_cfgs_with_persisters(node_count, chanmon_cfgs, chanmon_cfgs.iter().map(|c| &c.persister).collect())
2994 }
2995
2996 pub fn create_node_cfgs_with_persisters<'a>(node_count: usize, chanmon_cfgs: &'a Vec<TestChanMonCfg>, persisters: Vec<&'a impl Persist<TestChannelSigner>>) -> Vec<NodeCfg<'a>> {
2997         let mut nodes = Vec::new();
2998
2999         for i in 0..node_count {
3000                 let chain_monitor = test_utils::TestChainMonitor::new(Some(&chanmon_cfgs[i].chain_source), &chanmon_cfgs[i].tx_broadcaster, &chanmon_cfgs[i].logger, &chanmon_cfgs[i].fee_estimator, persisters[i], &chanmon_cfgs[i].keys_manager);
3001                 let network_graph = Arc::new(NetworkGraph::new(Network::Testnet, &chanmon_cfgs[i].logger));
3002                 let seed = [i as u8; 32];
3003                 nodes.push(NodeCfg {
3004                         chain_source: &chanmon_cfgs[i].chain_source,
3005                         logger: &chanmon_cfgs[i].logger,
3006                         tx_broadcaster: &chanmon_cfgs[i].tx_broadcaster,
3007                         fee_estimator: &chanmon_cfgs[i].fee_estimator,
3008                         router: test_utils::TestRouter::new(network_graph.clone(), &chanmon_cfgs[i].logger, &chanmon_cfgs[i].scorer),
3009                         message_router: test_utils::TestMessageRouter::new(network_graph.clone(), &chanmon_cfgs[i].keys_manager),
3010                         chain_monitor,
3011                         keys_manager: &chanmon_cfgs[i].keys_manager,
3012                         node_seed: seed,
3013                         network_graph,
3014                         override_init_features: Rc::new(RefCell::new(None)),
3015                 });
3016         }
3017
3018         nodes
3019 }
3020
3021 pub fn test_default_channel_config() -> UserConfig {
3022         let mut default_config = UserConfig::default();
3023         // Set cltv_expiry_delta slightly lower to keep the final CLTV values inside one byte in our
3024         // tests so that our script-length checks don't fail (see ACCEPTED_HTLC_SCRIPT_WEIGHT).
3025         default_config.channel_config.cltv_expiry_delta = MIN_CLTV_EXPIRY_DELTA;
3026         default_config.channel_handshake_config.announced_channel = true;
3027         default_config.channel_handshake_limits.force_announced_channel_preference = false;
3028         // When most of our tests were written, the default HTLC minimum was fixed at 1000.
3029         // It now defaults to 1, so we simply set it to the expected value here.
3030         default_config.channel_handshake_config.our_htlc_minimum_msat = 1000;
3031         // When most of our tests were written, we didn't have the notion of a `max_dust_htlc_exposure_msat`,
3032         // to avoid interfering with tests we bump it to 50_000_000 msat (assuming the default test
3033         // feerate of 253).
3034         default_config.channel_config.max_dust_htlc_exposure =
3035                 MaxDustHTLCExposure::FeeRateMultiplier(50_000_000 / 253);
3036         default_config
3037 }
3038
3039 pub fn create_node_chanmgrs<'a, 'b>(node_count: usize, cfgs: &'a Vec<NodeCfg<'b>>, node_config: &[Option<UserConfig>]) -> Vec<ChannelManager<&'a TestChainMonitor<'b>, &'b test_utils::TestBroadcaster, &'a test_utils::TestKeysInterface, &'a test_utils::TestKeysInterface, &'a test_utils::TestKeysInterface, &'b test_utils::TestFeeEstimator, &'a test_utils::TestRouter<'b>, &'b test_utils::TestLogger>> {
3040         let mut chanmgrs = Vec::new();
3041         for i in 0..node_count {
3042                 let network = Network::Testnet;
3043                 let genesis_block = bitcoin::blockdata::constants::genesis_block(network);
3044                 let params = ChainParameters {
3045                         network,
3046                         best_block: BestBlock::from_network(network),
3047                 };
3048                 let node = ChannelManager::new(cfgs[i].fee_estimator, &cfgs[i].chain_monitor, cfgs[i].tx_broadcaster, &cfgs[i].router, cfgs[i].logger, cfgs[i].keys_manager,
3049                         cfgs[i].keys_manager, cfgs[i].keys_manager, if node_config[i].is_some() { node_config[i].clone().unwrap() } else { test_default_channel_config() }, params, genesis_block.header.time);
3050                 chanmgrs.push(node);
3051         }
3052
3053         chanmgrs
3054 }
3055
3056 pub fn create_network<'a, 'b: 'a, 'c: 'b>(node_count: usize, cfgs: &'b Vec<NodeCfg<'c>>, chan_mgrs: &'a Vec<ChannelManager<&'b TestChainMonitor<'c>, &'c test_utils::TestBroadcaster, &'b test_utils::TestKeysInterface, &'b test_utils::TestKeysInterface, &'b test_utils::TestKeysInterface, &'c test_utils::TestFeeEstimator, &'c test_utils::TestRouter, &'c test_utils::TestLogger>>) -> Vec<Node<'a, 'b, 'c>> {
3057         let mut nodes = Vec::new();
3058         let chan_count = Rc::new(RefCell::new(0));
3059         let payment_count = Rc::new(RefCell::new(0));
3060         let connect_style = Rc::new(RefCell::new(ConnectStyle::random_style()));
3061
3062         for i in 0..node_count {
3063                 let dedicated_entropy = DedicatedEntropy(RandomBytes::new([i as u8; 32]));
3064                 let onion_messenger = OnionMessenger::new(
3065                         dedicated_entropy, cfgs[i].keys_manager, cfgs[i].logger, &cfgs[i].message_router,
3066                         &chan_mgrs[i], IgnoringMessageHandler {},
3067                 );
3068                 let gossip_sync = P2PGossipSync::new(cfgs[i].network_graph.as_ref(), None, cfgs[i].logger);
3069                 let wallet_source = Arc::new(test_utils::TestWalletSource::new(SecretKey::from_slice(&[i as u8 + 1; 32]).unwrap()));
3070                 nodes.push(Node{
3071                         chain_source: cfgs[i].chain_source, tx_broadcaster: cfgs[i].tx_broadcaster,
3072                         fee_estimator: cfgs[i].fee_estimator, router: &cfgs[i].router,
3073                         chain_monitor: &cfgs[i].chain_monitor, keys_manager: &cfgs[i].keys_manager,
3074                         node: &chan_mgrs[i], network_graph: cfgs[i].network_graph.as_ref(), gossip_sync,
3075                         node_seed: cfgs[i].node_seed, onion_messenger, network_chan_count: chan_count.clone(),
3076                         network_payment_count: payment_count.clone(), logger: cfgs[i].logger,
3077                         blocks: Arc::clone(&cfgs[i].tx_broadcaster.blocks),
3078                         connect_style: Rc::clone(&connect_style),
3079                         override_init_features: Rc::clone(&cfgs[i].override_init_features),
3080                         wallet_source: Arc::clone(&wallet_source),
3081                         bump_tx_handler: BumpTransactionEventHandler::new(
3082                                 cfgs[i].tx_broadcaster, Arc::new(Wallet::new(Arc::clone(&wallet_source), cfgs[i].logger)),
3083                                 &cfgs[i].keys_manager, cfgs[i].logger,
3084                         ),
3085                 })
3086         }
3087
3088         for i in 0..node_count {
3089                 for j in (i+1)..node_count {
3090                         let node_id_i = nodes[i].node.get_our_node_id();
3091                         let node_id_j = nodes[j].node.get_our_node_id();
3092
3093                         let init_i = msgs::Init {
3094                                 features: nodes[i].init_features(&node_id_j),
3095                                 networks: None,
3096                                 remote_network_address: None,
3097                         };
3098                         let init_j = msgs::Init {
3099                                 features: nodes[j].init_features(&node_id_i),
3100                                 networks: None,
3101                                 remote_network_address: None,
3102                         };
3103
3104                         nodes[i].node.peer_connected(&node_id_j, &init_j, true).unwrap();
3105                         nodes[j].node.peer_connected(&node_id_i, &init_i, false).unwrap();
3106                         nodes[i].onion_messenger.peer_connected(&node_id_j, &init_j, true).unwrap();
3107                         nodes[j].onion_messenger.peer_connected(&node_id_i, &init_i, false).unwrap();
3108                 }
3109         }
3110
3111         nodes
3112 }
3113
3114 // Note that the following only works for CLTV values up to 128
3115 pub const ACCEPTED_HTLC_SCRIPT_WEIGHT: usize = 137; // Here we have a diff due to HTLC CLTV expiry being < 2^15 in test
3116 pub const ACCEPTED_HTLC_SCRIPT_WEIGHT_ANCHORS: usize = 140; // Here we have a diff due to HTLC CLTV expiry being < 2^15 in test
3117
3118 #[derive(PartialEq)]
3119 pub enum HTLCType { NONE, TIMEOUT, SUCCESS }
3120 /// Tests that the given node has broadcast transactions for the given Channel
3121 ///
3122 /// First checks that the latest holder commitment tx has been broadcast, unless an explicit
3123 /// commitment_tx is provided, which may be used to test that a remote commitment tx was
3124 /// broadcast and the revoked outputs were claimed.
3125 ///
3126 /// Next tests that there is (or is not) a transaction that spends the commitment transaction
3127 /// that appears to be the type of HTLC transaction specified in has_htlc_tx.
3128 ///
3129 /// All broadcast transactions must be accounted for in one of the above three types of we'll
3130 /// also fail.
3131 pub fn test_txn_broadcast<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>, chan: &(msgs::ChannelUpdate, msgs::ChannelUpdate, ChannelId, Transaction), commitment_tx: Option<Transaction>, has_htlc_tx: HTLCType) -> Vec<Transaction>  {
3132         let mut node_txn = node.tx_broadcaster.txn_broadcasted.lock().unwrap();
3133         let mut txn_seen = new_hash_set();
3134         node_txn.retain(|tx| txn_seen.insert(tx.txid()));
3135         assert!(node_txn.len() >= if commitment_tx.is_some() { 0 } else { 1 } + if has_htlc_tx == HTLCType::NONE { 0 } else { 1 });
3136
3137         let mut res = Vec::with_capacity(2);
3138         node_txn.retain(|tx| {
3139                 if tx.input.len() == 1 && tx.input[0].previous_output.txid == chan.3.txid() {
3140                         check_spends!(tx, chan.3);
3141                         if commitment_tx.is_none() {
3142                                 res.push(tx.clone());
3143                         }
3144                         false
3145                 } else { true }
3146         });
3147         if let Some(explicit_tx) = commitment_tx {
3148                 res.push(explicit_tx.clone());
3149         }
3150
3151         assert_eq!(res.len(), 1);
3152
3153         if has_htlc_tx != HTLCType::NONE {
3154                 node_txn.retain(|tx| {
3155                         if tx.input.len() == 1 && tx.input[0].previous_output.txid == res[0].txid() {
3156                                 check_spends!(tx, res[0]);
3157                                 if has_htlc_tx == HTLCType::TIMEOUT {
3158                                         assert_ne!(tx.lock_time, LockTime::ZERO);
3159                                 } else {
3160                                         assert_eq!(tx.lock_time, LockTime::ZERO);
3161                                 }
3162                                 res.push(tx.clone());
3163                                 false
3164                         } else { true }
3165                 });
3166                 assert!(res.len() == 2 || res.len() == 3);
3167                 if res.len() == 3 {
3168                         assert_eq!(res[1], res[2]);
3169                 }
3170         }
3171
3172         assert!(node_txn.is_empty());
3173         res
3174 }
3175
3176 /// Tests that the given node has broadcast a claim transaction against the provided revoked
3177 /// HTLC transaction.
3178 pub fn test_revoked_htlc_claim_txn_broadcast<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>, revoked_tx: Transaction, commitment_revoked_tx: Transaction)  {
3179         let mut node_txn = node.tx_broadcaster.txn_broadcasted.lock().unwrap();
3180         // We may issue multiple claiming transaction on revoked outputs due to block rescan
3181         // for revoked htlc outputs
3182         if node_txn.len() != 1 && node_txn.len() != 2 && node_txn.len() != 3 { assert!(false); }
3183         node_txn.retain(|tx| {
3184                 if tx.input.len() == 1 && tx.input[0].previous_output.txid == revoked_tx.txid() {
3185                         check_spends!(tx, revoked_tx);
3186                         false
3187                 } else { true }
3188         });
3189         node_txn.retain(|tx| {
3190                 check_spends!(tx, commitment_revoked_tx);
3191                 false
3192         });
3193         assert!(node_txn.is_empty());
3194 }
3195
3196 pub fn check_preimage_claim<'a, 'b, 'c>(node: &Node<'a, 'b, 'c>, prev_txn: &Vec<Transaction>) -> Vec<Transaction>  {
3197         let mut node_txn = node.tx_broadcaster.txn_broadcasted.lock().unwrap();
3198         let mut txn_seen = new_hash_set();
3199         node_txn.retain(|tx| txn_seen.insert(tx.txid()));
3200
3201         let mut found_prev = false;
3202         for prev_tx in prev_txn {
3203                 for tx in &*node_txn {
3204                         if tx.input[0].previous_output.txid == prev_tx.txid() {
3205                                 check_spends!(tx, prev_tx);
3206                                 let mut iter = tx.input[0].witness.iter();
3207                                 iter.next().expect("expected 3 witness items");
3208                                 iter.next().expect("expected 3 witness items");
3209                                 assert!(iter.next().expect("expected 3 witness items").len() > 106); // must spend an htlc output
3210                                 assert_eq!(tx.input.len(), 1); // must spend a commitment tx
3211
3212                                 found_prev = true;
3213                                 break;
3214                         }
3215                 }
3216         }
3217         assert!(found_prev);
3218
3219         let mut res = Vec::new();
3220         mem::swap(&mut *node_txn, &mut res);
3221         res
3222 }
3223
3224 pub fn handle_announce_close_broadcast_events<'a, 'b, 'c>(nodes: &Vec<Node<'a, 'b, 'c>>, a: usize, b: usize, needs_err_handle: bool, expected_error: &str)  {
3225         let events_1 = nodes[a].node.get_and_clear_pending_msg_events();
3226         assert_eq!(events_1.len(), 2);
3227         let as_update = match events_1[0] {
3228                 MessageSendEvent::BroadcastChannelUpdate { ref msg } => {
3229                         msg.clone()
3230                 },
3231                 _ => panic!("Unexpected event"),
3232         };
3233         match events_1[1] {
3234                 MessageSendEvent::HandleError { node_id, action: msgs::ErrorAction::SendErrorMessage { ref msg } } => {
3235                         assert_eq!(node_id, nodes[b].node.get_our_node_id());
3236                         assert_eq!(msg.data, expected_error);
3237                         if needs_err_handle {
3238                                 nodes[b].node.handle_error(&nodes[a].node.get_our_node_id(), msg);
3239                         }
3240                 },
3241                 MessageSendEvent::HandleError { node_id, action: msgs::ErrorAction::DisconnectPeer { ref msg } } => {
3242                         assert_eq!(node_id, nodes[b].node.get_our_node_id());
3243                         assert_eq!(msg.as_ref().unwrap().data, expected_error);
3244                         if needs_err_handle {
3245                                 nodes[b].node.handle_error(&nodes[a].node.get_our_node_id(), msg.as_ref().unwrap());
3246                         }
3247                 },
3248                 _ => panic!("Unexpected event"),
3249         }
3250
3251         let events_2 = nodes[b].node.get_and_clear_pending_msg_events();
3252         assert_eq!(events_2.len(), if needs_err_handle { 1 } else { 2 });
3253         let bs_update = match events_2[0] {
3254                 MessageSendEvent::BroadcastChannelUpdate { ref msg } => {
3255                         msg.clone()
3256                 },
3257                 _ => panic!("Unexpected event"),
3258         };
3259         if !needs_err_handle {
3260                 match events_2[1] {
3261                         MessageSendEvent::HandleError { node_id, action: msgs::ErrorAction::SendErrorMessage { ref msg } } => {
3262                                 assert_eq!(node_id, nodes[a].node.get_our_node_id());
3263                                 assert_eq!(msg.data, expected_error);
3264                         },
3265                         MessageSendEvent::HandleError { node_id, action: msgs::ErrorAction::DisconnectPeer { ref msg } } => {
3266                                 assert_eq!(node_id, nodes[a].node.get_our_node_id());
3267                                 assert_eq!(msg.as_ref().unwrap().data, expected_error);
3268                         },
3269                         _ => panic!("Unexpected event"),
3270                 }
3271         }
3272
3273         for node in nodes {
3274                 node.gossip_sync.handle_channel_update(&as_update).unwrap();
3275                 node.gossip_sync.handle_channel_update(&bs_update).unwrap();
3276         }
3277 }
3278
3279 pub fn get_announce_close_broadcast_events<'a, 'b, 'c>(nodes: &Vec<Node<'a, 'b, 'c>>, a: usize, b: usize)  {
3280         handle_announce_close_broadcast_events(nodes, a, b, false, "Channel closed because commitment or closing transaction was confirmed on chain.");
3281 }
3282
3283 #[cfg(test)]
3284 macro_rules! get_channel_value_stat {
3285         ($node: expr, $counterparty_node: expr, $channel_id: expr) => {{
3286                 let peer_state_lock = $node.node.per_peer_state.read().unwrap();
3287                 let chan_lock = peer_state_lock.get(&$counterparty_node.node.get_our_node_id()).unwrap().lock().unwrap();
3288                 let chan = chan_lock.channel_by_id.get(&$channel_id).map(
3289                         |phase| if let ChannelPhase::Funded(chan) = phase { Some(chan) } else { None }
3290                 ).flatten().unwrap();
3291                 chan.get_value_stat()
3292         }}
3293 }
3294
3295 macro_rules! get_chan_reestablish_msgs {
3296         ($src_node: expr, $dst_node: expr) => {
3297                 {
3298                         let mut announcements = $crate::prelude::new_hash_set();
3299                         let mut res = Vec::with_capacity(1);
3300                         for msg in $src_node.node.get_and_clear_pending_msg_events() {
3301                                 if let MessageSendEvent::SendChannelReestablish { ref node_id, ref msg } = msg {
3302                                         assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3303                                         res.push(msg.clone());
3304                                 } else if let MessageSendEvent::SendChannelAnnouncement { ref node_id, ref msg, .. } = msg {
3305                                         assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3306                                         announcements.insert(msg.contents.short_channel_id);
3307                                 } else {
3308                                         panic!("Unexpected event")
3309                                 }
3310                         }
3311                         assert!(announcements.is_empty());
3312                         res
3313                 }
3314         }
3315 }
3316
3317 macro_rules! handle_chan_reestablish_msgs {
3318         ($src_node: expr, $dst_node: expr) => {
3319                 {
3320                         let msg_events = $src_node.node.get_and_clear_pending_msg_events();
3321                         let mut idx = 0;
3322                         let channel_ready = if let Some(&MessageSendEvent::SendChannelReady { ref node_id, ref msg }) = msg_events.get(0) {
3323                                 idx += 1;
3324                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3325                                 Some(msg.clone())
3326                         } else {
3327                                 None
3328                         };
3329
3330                         if let Some(&MessageSendEvent::SendAnnouncementSignatures { ref node_id, msg: _ }) = msg_events.get(idx) {
3331                                 idx += 1;
3332                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3333                         }
3334
3335                         let mut had_channel_update = false; // ChannelUpdate may be now or later, but not both
3336                         if let Some(&MessageSendEvent::SendChannelUpdate { ref node_id, .. }) = msg_events.get(idx) {
3337                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3338                                 idx += 1;
3339                                 had_channel_update = true;
3340                         }
3341
3342                         let mut revoke_and_ack = None;
3343                         let mut commitment_update = None;
3344                         let order = if let Some(ev) = msg_events.get(idx) {
3345                                 match ev {
3346                                         &MessageSendEvent::SendRevokeAndACK { ref node_id, ref msg } => {
3347                                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3348                                                 revoke_and_ack = Some(msg.clone());
3349                                                 idx += 1;
3350                                                 RAACommitmentOrder::RevokeAndACKFirst
3351                                         },
3352                                         &MessageSendEvent::UpdateHTLCs { ref node_id, ref updates } => {
3353                                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3354                                                 commitment_update = Some(updates.clone());
3355                                                 idx += 1;
3356                                                 RAACommitmentOrder::CommitmentFirst
3357                                         },
3358                                         _ => RAACommitmentOrder::CommitmentFirst,
3359                                 }
3360                         } else {
3361                                 RAACommitmentOrder::CommitmentFirst
3362                         };
3363
3364                         if let Some(ev) = msg_events.get(idx) {
3365                                 match ev {
3366                                         &MessageSendEvent::SendRevokeAndACK { ref node_id, ref msg } => {
3367                                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3368                                                 assert!(revoke_and_ack.is_none());
3369                                                 revoke_and_ack = Some(msg.clone());
3370                                                 idx += 1;
3371                                         },
3372                                         &MessageSendEvent::UpdateHTLCs { ref node_id, ref updates } => {
3373                                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3374                                                 assert!(commitment_update.is_none());
3375                                                 commitment_update = Some(updates.clone());
3376                                                 idx += 1;
3377                                         },
3378                                         _ => {},
3379                                 }
3380                         }
3381
3382                         if let Some(&MessageSendEvent::SendChannelUpdate { ref node_id, .. }) = msg_events.get(idx) {
3383                                 assert_eq!(*node_id, $dst_node.node.get_our_node_id());
3384                                 idx += 1;
3385                                 assert!(!had_channel_update);
3386                         }
3387
3388                         assert_eq!(msg_events.len(), idx);
3389
3390                         (channel_ready, revoke_and_ack, commitment_update, order)
3391                 }
3392         }
3393 }
3394
3395 pub struct ReconnectArgs<'a, 'b, 'c, 'd> {
3396         pub node_a: &'a Node<'b, 'c, 'd>,
3397         pub node_b: &'a Node<'b, 'c, 'd>,
3398         pub send_channel_ready: (bool, bool),
3399         pub pending_responding_commitment_signed: (bool, bool),
3400         /// Indicates that the pending responding commitment signed will be a dup for the recipient,
3401         /// and no monitor update is expected
3402         pub pending_responding_commitment_signed_dup_monitor: (bool, bool),
3403         pub pending_htlc_adds: (usize, usize),
3404         pub pending_htlc_claims: (usize, usize),
3405         pub pending_htlc_fails: (usize, usize),
3406         pub pending_cell_htlc_claims: (usize, usize),
3407         pub pending_cell_htlc_fails: (usize, usize),
3408         pub pending_raa: (bool, bool),
3409 }
3410
3411 impl<'a, 'b, 'c, 'd> ReconnectArgs<'a, 'b, 'c, 'd> {
3412         pub fn new(node_a: &'a Node<'b, 'c, 'd>, node_b: &'a Node<'b, 'c, 'd>) -> Self {
3413                 Self {
3414                         node_a,
3415                         node_b,
3416                         send_channel_ready: (false, false),
3417                         pending_responding_commitment_signed: (false, false),
3418                         pending_responding_commitment_signed_dup_monitor: (false, false),
3419                         pending_htlc_adds: (0, 0),
3420                         pending_htlc_claims: (0, 0),
3421                         pending_htlc_fails: (0, 0),
3422                         pending_cell_htlc_claims: (0, 0),
3423                         pending_cell_htlc_fails: (0, 0),
3424                         pending_raa: (false, false),
3425                 }
3426         }
3427 }
3428
3429 /// pending_htlc_adds includes both the holding cell and in-flight update_add_htlcs, whereas
3430 /// for claims/fails they are separated out.
3431 pub fn reconnect_nodes<'a, 'b, 'c, 'd>(args: ReconnectArgs<'a, 'b, 'c, 'd>) {
3432         let ReconnectArgs {
3433                 node_a, node_b, send_channel_ready, pending_htlc_adds, pending_htlc_claims, pending_htlc_fails,
3434                 pending_cell_htlc_claims, pending_cell_htlc_fails, pending_raa,
3435                 pending_responding_commitment_signed, pending_responding_commitment_signed_dup_monitor,
3436         } = args;
3437         node_a.node.peer_connected(&node_b.node.get_our_node_id(), &msgs::Init {
3438                 features: node_b.node.init_features(), networks: None, remote_network_address: None
3439         }, true).unwrap();
3440         let reestablish_1 = get_chan_reestablish_msgs!(node_a, node_b);
3441         node_b.node.peer_connected(&node_a.node.get_our_node_id(), &msgs::Init {
3442                 features: node_a.node.init_features(), networks: None, remote_network_address: None
3443         }, false).unwrap();
3444         let reestablish_2 = get_chan_reestablish_msgs!(node_b, node_a);
3445
3446         if send_channel_ready.0 {
3447                 // If a expects a channel_ready, it better not think it has received a revoke_and_ack
3448                 // from b
3449                 for reestablish in reestablish_1.iter() {
3450                         let n = reestablish.next_remote_commitment_number;
3451                         assert_eq!(n, 0, "expected a->b next_remote_commitment_number to be 0, got {}", n);
3452                 }
3453         }
3454         if send_channel_ready.1 {
3455                 // If b expects a channel_ready, it better not think it has received a revoke_and_ack
3456                 // from a
3457                 for reestablish in reestablish_2.iter() {
3458                         let n = reestablish.next_remote_commitment_number;
3459                         assert_eq!(n, 0, "expected b->a next_remote_commitment_number to be 0, got {}", n);
3460                 }
3461         }
3462         if send_channel_ready.0 || send_channel_ready.1 {
3463                 // If we expect any channel_ready's, both sides better have set
3464                 // next_holder_commitment_number to 1
3465                 for reestablish in reestablish_1.iter() {
3466                         let n = reestablish.next_local_commitment_number;
3467                         assert_eq!(n, 1, "expected a->b next_local_commitment_number to be 1, got {}", n);
3468                 }
3469                 for reestablish in reestablish_2.iter() {
3470                         let n = reestablish.next_local_commitment_number;
3471                         assert_eq!(n, 1, "expected b->a next_local_commitment_number to be 1, got {}", n);
3472                 }
3473         }
3474
3475         let mut resp_1 = Vec::new();
3476         for msg in reestablish_1 {
3477                 node_b.node.handle_channel_reestablish(&node_a.node.get_our_node_id(), &msg);
3478                 resp_1.push(handle_chan_reestablish_msgs!(node_b, node_a));
3479         }
3480         if pending_cell_htlc_claims.0 != 0 || pending_cell_htlc_fails.0 != 0 {
3481                 check_added_monitors!(node_b, 1);
3482         } else {
3483                 check_added_monitors!(node_b, 0);
3484         }
3485
3486         let mut resp_2 = Vec::new();
3487         for msg in reestablish_2 {
3488                 node_a.node.handle_channel_reestablish(&node_b.node.get_our_node_id(), &msg);
3489                 resp_2.push(handle_chan_reestablish_msgs!(node_a, node_b));
3490         }
3491         if pending_cell_htlc_claims.1 != 0 || pending_cell_htlc_fails.1 != 0 {
3492                 check_added_monitors!(node_a, 1);
3493         } else {
3494                 check_added_monitors!(node_a, 0);
3495         }
3496
3497         // We don't yet support both needing updates, as that would require a different commitment dance:
3498         assert!((pending_htlc_adds.0 == 0 && pending_htlc_claims.0 == 0 && pending_htlc_fails.0 == 0 &&
3499                          pending_cell_htlc_claims.0 == 0 && pending_cell_htlc_fails.0 == 0) ||
3500                         (pending_htlc_adds.1 == 0 && pending_htlc_claims.1 == 0 && pending_htlc_fails.1 == 0 &&
3501                          pending_cell_htlc_claims.1 == 0 && pending_cell_htlc_fails.1 == 0));
3502
3503         for chan_msgs in resp_1.drain(..) {
3504                 if send_channel_ready.0 {
3505                         node_a.node.handle_channel_ready(&node_b.node.get_our_node_id(), &chan_msgs.0.unwrap());
3506                         let announcement_event = node_a.node.get_and_clear_pending_msg_events();
3507                         if !announcement_event.is_empty() {
3508                                 assert_eq!(announcement_event.len(), 1);
3509                                 if let MessageSendEvent::SendChannelUpdate { .. } = announcement_event[0] {
3510                                         //TODO: Test announcement_sigs re-sending
3511                                 } else { panic!("Unexpected event! {:?}", announcement_event[0]); }
3512                         }
3513                 } else {
3514                         assert!(chan_msgs.0.is_none());
3515                 }
3516                 if pending_raa.0 {
3517                         assert!(chan_msgs.3 == RAACommitmentOrder::RevokeAndACKFirst);
3518                         node_a.node.handle_revoke_and_ack(&node_b.node.get_our_node_id(), &chan_msgs.1.unwrap());
3519                         assert!(node_a.node.get_and_clear_pending_msg_events().is_empty());
3520                         check_added_monitors!(node_a, 1);
3521                 } else {
3522                         assert!(chan_msgs.1.is_none());
3523                 }
3524                 if pending_htlc_adds.0 != 0 || pending_htlc_claims.0 != 0 || pending_htlc_fails.0 != 0 ||
3525                         pending_cell_htlc_claims.0 != 0 || pending_cell_htlc_fails.0 != 0 ||
3526                         pending_responding_commitment_signed.0
3527                 {
3528                         let commitment_update = chan_msgs.2.unwrap();
3529                         assert_eq!(commitment_update.update_add_htlcs.len(), pending_htlc_adds.0);
3530                         assert_eq!(commitment_update.update_fulfill_htlcs.len(), pending_htlc_claims.0 + pending_cell_htlc_claims.0);
3531                         assert_eq!(commitment_update.update_fail_htlcs.len(), pending_htlc_fails.0 + pending_cell_htlc_fails.0);
3532                         assert!(commitment_update.update_fail_malformed_htlcs.is_empty());
3533                         for update_add in commitment_update.update_add_htlcs {
3534                                 node_a.node.handle_update_add_htlc(&node_b.node.get_our_node_id(), &update_add);
3535                         }
3536                         for update_fulfill in commitment_update.update_fulfill_htlcs {
3537                                 node_a.node.handle_update_fulfill_htlc(&node_b.node.get_our_node_id(), &update_fulfill);
3538                         }
3539                         for update_fail in commitment_update.update_fail_htlcs {
3540                                 node_a.node.handle_update_fail_htlc(&node_b.node.get_our_node_id(), &update_fail);
3541                         }
3542
3543                         if !pending_responding_commitment_signed.0 {
3544                                 commitment_signed_dance!(node_a, node_b, commitment_update.commitment_signed, false);
3545                         } else {
3546                                 node_a.node.handle_commitment_signed(&node_b.node.get_our_node_id(), &commitment_update.commitment_signed);
3547                                 check_added_monitors!(node_a, 1);
3548                                 let as_revoke_and_ack = get_event_msg!(node_a, MessageSendEvent::SendRevokeAndACK, node_b.node.get_our_node_id());
3549                                 // No commitment_signed so get_event_msg's assert(len == 1) passes
3550                                 node_b.node.handle_revoke_and_ack(&node_a.node.get_our_node_id(), &as_revoke_and_ack);
3551                                 assert!(node_b.node.get_and_clear_pending_msg_events().is_empty());
3552                                 check_added_monitors!(node_b, if pending_responding_commitment_signed_dup_monitor.0 { 0 } else { 1 });
3553                         }
3554                 } else {
3555                         assert!(chan_msgs.2.is_none());
3556                 }
3557         }
3558
3559         for chan_msgs in resp_2.drain(..) {
3560                 if send_channel_ready.1 {
3561                         node_b.node.handle_channel_ready(&node_a.node.get_our_node_id(), &chan_msgs.0.unwrap());
3562                         let announcement_event = node_b.node.get_and_clear_pending_msg_events();
3563                         if !announcement_event.is_empty() {
3564                                 assert_eq!(announcement_event.len(), 1);
3565                                 match announcement_event[0] {
3566                                         MessageSendEvent::SendChannelUpdate { .. } => {},
3567                                         MessageSendEvent::SendAnnouncementSignatures { .. } => {},
3568                                         _ => panic!("Unexpected event {:?}!", announcement_event[0]),
3569                                 }
3570                         }
3571                 } else {
3572                         assert!(chan_msgs.0.is_none());
3573                 }
3574                 if pending_raa.1 {
3575                         assert!(chan_msgs.3 == RAACommitmentOrder::RevokeAndACKFirst);
3576                         node_b.node.handle_revoke_and_ack(&node_a.node.get_our_node_id(), &chan_msgs.1.unwrap());
3577                         assert!(node_b.node.get_and_clear_pending_msg_events().is_empty());
3578                         check_added_monitors!(node_b, 1);
3579                 } else {
3580                         assert!(chan_msgs.1.is_none());
3581                 }
3582                 if pending_htlc_adds.1 != 0 || pending_htlc_claims.1 != 0 || pending_htlc_fails.1 != 0 ||
3583                         pending_cell_htlc_claims.1 != 0 || pending_cell_htlc_fails.1 != 0 ||
3584                         pending_responding_commitment_signed.1
3585                 {
3586                         let commitment_update = chan_msgs.2.unwrap();
3587                         assert_eq!(commitment_update.update_add_htlcs.len(), pending_htlc_adds.1);
3588                         assert_eq!(commitment_update.update_fulfill_htlcs.len(), pending_htlc_claims.1 + pending_cell_htlc_claims.1);
3589                         assert_eq!(commitment_update.update_fail_htlcs.len(), pending_htlc_fails.1 + pending_cell_htlc_fails.1);
3590                         assert!(commitment_update.update_fail_malformed_htlcs.is_empty());
3591                         for update_add in commitment_update.update_add_htlcs {
3592                                 node_b.node.handle_update_add_htlc(&node_a.node.get_our_node_id(), &update_add);
3593                         }
3594                         for update_fulfill in commitment_update.update_fulfill_htlcs {
3595                                 node_b.node.handle_update_fulfill_htlc(&node_a.node.get_our_node_id(), &update_fulfill);
3596                         }
3597                         for update_fail in commitment_update.update_fail_htlcs {
3598                                 node_b.node.handle_update_fail_htlc(&node_a.node.get_our_node_id(), &update_fail);
3599                         }
3600
3601                         if !pending_responding_commitment_signed.1 {
3602                                 commitment_signed_dance!(node_b, node_a, commitment_update.commitment_signed, false);
3603                         } else {
3604                                 node_b.node.handle_commitment_signed(&node_a.node.get_our_node_id(), &commitment_update.commitment_signed);
3605                                 check_added_monitors!(node_b, 1);
3606                                 let bs_revoke_and_ack = get_event_msg!(node_b, MessageSendEvent::SendRevokeAndACK, node_a.node.get_our_node_id());
3607                                 // No commitment_signed so get_event_msg's assert(len == 1) passes
3608                                 node_a.node.handle_revoke_and_ack(&node_b.node.get_our_node_id(), &bs_revoke_and_ack);
3609                                 assert!(node_a.node.get_and_clear_pending_msg_events().is_empty());
3610                                 check_added_monitors!(node_a, if pending_responding_commitment_signed_dup_monitor.1 { 0 } else { 1 });
3611                         }
3612                 } else {
3613                         assert!(chan_msgs.2.is_none());
3614                 }
3615         }
3616 }
3617
3618 /// Initiates channel opening and creates a single batch funding transaction.
3619 /// This will go through the open_channel / accept_channel flow, and return the batch funding
3620 /// transaction with corresponding funding_created messages.
3621 pub fn create_batch_channel_funding<'a, 'b, 'c>(
3622         funding_node: &Node<'a, 'b, 'c>,
3623         params: &[(&Node<'a, 'b, 'c>, u64, u64, u128, Option<UserConfig>)],
3624 ) -> (Transaction, Vec<msgs::FundingCreated>) {
3625         let mut tx_outs = Vec::new();
3626         let mut temp_chan_ids = Vec::new();
3627         let mut funding_created_msgs = Vec::new();
3628
3629         for (other_node, channel_value_satoshis, push_msat, user_channel_id, override_config) in params {
3630                 // Initialize channel opening.
3631                 let temp_chan_id = funding_node.node.create_channel(
3632                         other_node.node.get_our_node_id(), *channel_value_satoshis, *push_msat, *user_channel_id,
3633                         None,
3634                         *override_config,
3635                 ).unwrap();
3636                 let open_channel_msg = get_event_msg!(funding_node, MessageSendEvent::SendOpenChannel, other_node.node.get_our_node_id());
3637                 other_node.node.handle_open_channel(&funding_node.node.get_our_node_id(), &open_channel_msg);
3638                 let accept_channel_msg = get_event_msg!(other_node, MessageSendEvent::SendAcceptChannel, funding_node.node.get_our_node_id());
3639                 funding_node.node.handle_accept_channel(&other_node.node.get_our_node_id(), &accept_channel_msg);
3640
3641                 // Create the corresponding funding output.
3642                 let events = funding_node.node.get_and_clear_pending_events();
3643                 assert_eq!(events.len(), 1);
3644                 match events[0] {
3645                         Event::FundingGenerationReady {
3646                                 ref temporary_channel_id,
3647                                 ref counterparty_node_id,
3648                                 channel_value_satoshis: ref event_channel_value_satoshis,
3649                                 ref output_script,
3650                                 user_channel_id: ref event_user_channel_id
3651                         } => {
3652                                 assert_eq!(temporary_channel_id, &temp_chan_id);
3653                                 assert_eq!(counterparty_node_id, &other_node.node.get_our_node_id());
3654                                 assert_eq!(channel_value_satoshis, event_channel_value_satoshis);
3655                                 assert_eq!(user_channel_id, event_user_channel_id);
3656                                 tx_outs.push(TxOut {
3657                                         value: *channel_value_satoshis, script_pubkey: output_script.clone(),
3658                                 });
3659                         },
3660                         _ => panic!("Unexpected event"),
3661                 };
3662                 temp_chan_ids.push((temp_chan_id, other_node.node.get_our_node_id()));
3663         }
3664
3665         // Compose the batch funding transaction and give it to the ChannelManager.
3666         let tx = Transaction {
3667                 version: 2,
3668                 lock_time: LockTime::ZERO,
3669                 input: Vec::new(),
3670                 output: tx_outs,
3671         };
3672         assert!(funding_node.node.batch_funding_transaction_generated(
3673                 temp_chan_ids.iter().map(|(a, b)| (a, b)).collect::<Vec<_>>().as_slice(),
3674                 tx.clone(),
3675         ).is_ok());
3676         check_added_monitors!(funding_node, 0);
3677         let events = funding_node.node.get_and_clear_pending_msg_events();
3678         assert_eq!(events.len(), params.len());
3679         for (other_node, ..) in params {
3680                 let funding_created = events
3681                         .iter()
3682                         .find_map(|event| match event {
3683                                 MessageSendEvent::SendFundingCreated { node_id, msg } if node_id == &other_node.node.get_our_node_id() => Some(msg.clone()),
3684                                 _ => None,
3685                         })
3686                         .unwrap();
3687                 funding_created_msgs.push(funding_created);
3688         }
3689         return (tx, funding_created_msgs);
3690 }