//! Further functional tests which test blockchain reorganizations.
use chain::channelmonitor::{ANTI_REORG_DELAY, ChannelMonitor};
-use chain::Watch;
+use chain::{Confirm, Watch};
use ln::channelmanager::{ChannelManager, ChannelManagerReadArgs};
use ln::features::InitFeatures;
use ln::msgs::{ChannelMessageHandler, ErrorAction, HTLCFailChannelUpdate};
-use util::config::UserConfig;
use util::enforcing_trait_impls::EnforcingSigner;
-use util::events::{Event, EventsProvider, MessageSendEvent, MessageSendEventsProvider};
+use util::events::{Event, MessageSendEvent, MessageSendEventsProvider};
use util::test_utils;
use util::ser::{ReadableArgs, Writeable};
use bitcoin::hash_types::BlockHash;
use std::collections::HashMap;
-use std::mem;
+use core::mem;
use ln::functional_test_utils::*;
connect_blocks(&nodes[1], 2*CHAN_CONFIRM_DEPTH + 1 - nodes[1].best_block_info().1);
connect_blocks(&nodes[2], 2*CHAN_CONFIRM_DEPTH + 1 - nodes[2].best_block_info().1);
- let (our_payment_preimage, our_payment_hash) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], 1000000);
+ let (our_payment_preimage, our_payment_hash, _) = route_payment(&nodes[0], &[&nodes[1], &nodes[2]], 1000000);
// Provide preimage to node 2 by claiming payment
- nodes[2].node.claim_funds(our_payment_preimage, &None, 1000000);
+ nodes[2].node.claim_funds(our_payment_preimage);
check_added_monitors!(nodes[2], 1);
get_htlc_update_msgs!(nodes[2], nodes[1].node.get_our_node_id());
check_spends!(node_1_commitment_txn[1], node_1_commitment_txn[0]);
// Give node 2 node 1's transactions and get its response (claiming the HTLC instead).
- connect_block(&nodes[2], &Block { header, txdata: node_1_commitment_txn.clone() }, CHAN_CONFIRM_DEPTH*2 + 2);
+ connect_block(&nodes[2], &Block { header, txdata: node_1_commitment_txn.clone() });
check_added_monitors!(nodes[2], 1);
- check_closed_broadcast!(nodes[2], false); // We should get a BroadcastChannelUpdate (and *only* a BroadcstChannelUpdate)
+ check_closed_broadcast!(nodes[2], true); // We should get a BroadcastChannelUpdate (and *only* a BroadcstChannelUpdate)
let node_2_commitment_txn = nodes[2].tx_broadcaster.txn_broadcasted.lock().unwrap();
assert_eq!(node_2_commitment_txn.len(), 3); // ChannelMonitor: 1 offered HTLC-Claim, ChannelManger: 1 local commitment tx, 1 Received HTLC-Claim
assert_eq!(node_2_commitment_txn[1].output.len(), 2); // to-remote and Received HTLC (to-self is dust)
connect_blocks(&nodes[1], 1);
// Confirm node 1's commitment txn (and HTLC-Timeout) on node 1
header.prev_blockhash = nodes[1].best_block_hash();
- connect_block(&nodes[1], &Block { header, txdata: node_1_commitment_txn.clone() }, CHAN_CONFIRM_DEPTH*2 + 3);
+ connect_block(&nodes[1], &Block { header, txdata: node_1_commitment_txn.clone() });
// ...but return node 1's commitment tx in case claim is set and we're preparing to reorg
vec![node_1_commitment_txn[0].clone(), node_2_commitment_txn[0].clone()]
// Confirm node 2's commitment txn (and node 1's HTLC-Timeout) on node 1
header.prev_blockhash = nodes[1].best_block_hash();
- connect_block(&nodes[1], &Block { header, txdata: vec![node_2_commitment_txn[0].clone(), node_1_commitment_txn[0].clone()] }, CHAN_CONFIRM_DEPTH*2 + 3);
+ connect_block(&nodes[1], &Block { header, txdata: vec![node_2_commitment_txn[0].clone(), node_1_commitment_txn[0].clone()] });
// ...but return node 2's commitment tx (and claim) in case claim is set and we're preparing to reorg
node_2_commitment_txn
};
check_added_monitors!(nodes[1], 1);
- check_closed_broadcast!(nodes[1], false); // We should get a BroadcastChannelUpdate (and *only* a BroadcstChannelUpdate)
+ check_closed_broadcast!(nodes[1], true); // We should get a BroadcastChannelUpdate (and *only* a BroadcstChannelUpdate)
// Connect ANTI_REORG_DELAY - 2 blocks, giving us a confirmation count of ANTI_REORG_DELAY - 1.
connect_blocks(&nodes[1], ANTI_REORG_DELAY - 2);
check_added_monitors!(nodes[1], 0);
header: BlockHeader { version: 0x20000000, prev_blockhash: nodes[1].best_block_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 },
txdata: claim_txn,
};
- connect_block(&nodes[1], &block, CHAN_CONFIRM_DEPTH*2 + 4);
+ connect_block(&nodes[1], &block);
// ChannelManager only polls chain::Watch::release_pending_monitor_events when we
// probe it for events, so we probe non-message events here (which should still end up empty):
header: BlockHeader { version: 0x20000000, prev_blockhash: nodes[1].best_block_hash(), merkle_root: Default::default(), time: 42, bits: 42, nonce: 42 },
txdata: vec![],
};
- connect_block(&nodes[1], &block, CHAN_CONFIRM_DEPTH*2 + 3 + ANTI_REORG_DELAY - 1);
+ connect_block(&nodes[1], &block);
expect_pending_htlcs_forwardable!(nodes[1]);
}
do_test_onchain_htlc_reorg(false, false);
}
-fn do_test_unconf_chan(reload_node: bool, reorg_after_reload: bool) {
+fn do_test_unconf_chan(reload_node: bool, reorg_after_reload: bool, use_funding_unconfirmed: bool, connect_style: ConnectStyle) {
// After creating a chan between nodes, we disconnect all blocks previously seen to force a
// channel close on nodes[0] side. We also use this to provide very basic testing of logic
// around freeing background events which store monitor updates during block_[dis]connected.
let new_chain_monitor: test_utils::TestChainMonitor;
let nodes_0_deserialized: ChannelManager<EnforcingSigner, &test_utils::TestChainMonitor, &test_utils::TestBroadcaster, &test_utils::TestKeysInterface, &test_utils::TestFeeEstimator, &test_utils::TestLogger>;
let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
- let chan_id = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::known(), InitFeatures::known()).2;
+ *nodes[0].connect_style.borrow_mut() = connect_style;
+
+ let chan = create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::known(), InitFeatures::known());
let channel_state = nodes[0].node.channel_state.lock().unwrap();
assert_eq!(channel_state.by_id.len(), 1);
mem::drop(channel_state);
if !reorg_after_reload {
- disconnect_all_blocks(&nodes[0]);
- check_closed_broadcast!(nodes[0], false);
+ if use_funding_unconfirmed {
+ let relevant_txids = nodes[0].node.get_relevant_txids();
+ assert_eq!(&relevant_txids[..], &[chan.3.txid()]);
+ nodes[0].node.transaction_unconfirmed(&relevant_txids[0]);
+ } else {
+ disconnect_all_blocks(&nodes[0]);
+ }
+ if connect_style == ConnectStyle::FullBlockViaListen && !use_funding_unconfirmed {
+ handle_announce_close_broadcast_events(&nodes, 0, 1, true, "Funding transaction was un-confirmed. Locked at 6 confs, now have 2 confs.");
+ } else {
+ handle_announce_close_broadcast_events(&nodes, 0, 1, true, "Funding transaction was un-confirmed. Locked at 6 confs, now have 0 confs.");
+ }
+ check_added_monitors!(nodes[1], 1);
{
let channel_state = nodes[0].node.channel_state.lock().unwrap();
assert_eq!(channel_state.by_id.len(), 0);
assert!(chan_0_monitor_read.is_empty());
let mut nodes_0_read = &nodes_0_serialized[..];
- let config = UserConfig::default();
nodes_0_deserialized = {
let mut channel_monitors = HashMap::new();
channel_monitors.insert(chan_0_monitor.get_funding_txo().0, &mut chan_0_monitor);
<(BlockHash, ChannelManager<EnforcingSigner, &test_utils::TestChainMonitor, &test_utils::TestBroadcaster,
&test_utils::TestKeysInterface, &test_utils::TestFeeEstimator, &test_utils::TestLogger>)>::read(
&mut nodes_0_read, ChannelManagerReadArgs {
- default_config: config,
+ default_config: *nodes[0].node.get_current_default_configuration(),
keys_manager,
fee_estimator: node_cfgs[0].fee_estimator,
chain_monitor: nodes[0].chain_monitor,
};
nodes[0].node = &nodes_0_deserialized;
assert!(nodes_0_read.is_empty());
+ if !reorg_after_reload {
+ // If the channel is already closed when we reload the node, we'll broadcast a closing
+ // transaction via the ChannelMonitor which is missing a corresponding channel.
+ assert_eq!(nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
+ nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
+ }
nodes[0].chain_monitor.watch_channel(chan_0_monitor.get_funding_txo().0.clone(), chan_0_monitor).unwrap();
check_added_monitors!(nodes[0], 1);
}
if reorg_after_reload {
- disconnect_all_blocks(&nodes[0]);
- check_closed_broadcast!(nodes[0], false);
+ if use_funding_unconfirmed {
+ let relevant_txids = nodes[0].node.get_relevant_txids();
+ assert_eq!(&relevant_txids[..], &[chan.3.txid()]);
+ nodes[0].node.transaction_unconfirmed(&relevant_txids[0]);
+ } else {
+ disconnect_all_blocks(&nodes[0]);
+ }
+ if connect_style == ConnectStyle::FullBlockViaListen && !use_funding_unconfirmed {
+ handle_announce_close_broadcast_events(&nodes, 0, 1, true, "Funding transaction was un-confirmed. Locked at 6 confs, now have 2 confs.");
+ } else {
+ handle_announce_close_broadcast_events(&nodes, 0, 1, true, "Funding transaction was un-confirmed. Locked at 6 confs, now have 0 confs.");
+ }
+ check_added_monitors!(nodes[1], 1);
{
let channel_state = nodes[0].node.channel_state.lock().unwrap();
assert_eq!(channel_state.by_id.len(), 0);
}
// With expect_channel_force_closed set the TestChainMonitor will enforce that the next update
// is a ChannelForcClosed on the right channel with should_broadcast set.
- *nodes[0].chain_monitor.expect_channel_force_closed.lock().unwrap() = Some((chan_id, true));
+ *nodes[0].chain_monitor.expect_channel_force_closed.lock().unwrap() = Some((chan.2, true));
nodes[0].node.test_process_background_events(); // Required to free the pending background monitor update
check_added_monitors!(nodes[0], 1);
+ assert_eq!(nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().len(), 1);
+ nodes[0].tx_broadcaster.txn_broadcasted.lock().unwrap().clear();
+
+ // Now check that we can create a new channel
+ create_announced_chan_between_nodes(&nodes, 0, 1, InitFeatures::known(), InitFeatures::known());
+ send_payment(&nodes[0], &[&nodes[1]], 8000000);
}
#[test]
fn test_unconf_chan() {
- do_test_unconf_chan(true, true);
- do_test_unconf_chan(false, true);
- do_test_unconf_chan(true, false);
- do_test_unconf_chan(false, false);
+ do_test_unconf_chan(true, true, false, ConnectStyle::BestBlockFirstSkippingBlocks);
+ do_test_unconf_chan(false, true, false, ConnectStyle::BestBlockFirstSkippingBlocks);
+ do_test_unconf_chan(true, false, false, ConnectStyle::BestBlockFirstSkippingBlocks);
+ do_test_unconf_chan(false, false, false, ConnectStyle::BestBlockFirstSkippingBlocks);
+}
+
+#[test]
+fn test_unconf_chan_via_listen() {
+ do_test_unconf_chan(true, true, false, ConnectStyle::FullBlockViaListen);
+ do_test_unconf_chan(false, true, false, ConnectStyle::FullBlockViaListen);
+ do_test_unconf_chan(true, false, false, ConnectStyle::FullBlockViaListen);
+ do_test_unconf_chan(false, false, false, ConnectStyle::FullBlockViaListen);
+}
+
+#[test]
+fn test_unconf_chan_via_funding_unconfirmed() {
+ do_test_unconf_chan(true, true, true, ConnectStyle::BestBlockFirstSkippingBlocks);
+ do_test_unconf_chan(false, true, true, ConnectStyle::BestBlockFirstSkippingBlocks);
+ do_test_unconf_chan(true, false, true, ConnectStyle::BestBlockFirstSkippingBlocks);
+ do_test_unconf_chan(false, false, true, ConnectStyle::BestBlockFirstSkippingBlocks);
+
+ do_test_unconf_chan(true, true, true, ConnectStyle::FullBlockViaListen);
+ do_test_unconf_chan(false, true, true, ConnectStyle::FullBlockViaListen);
+ do_test_unconf_chan(true, false, true, ConnectStyle::FullBlockViaListen);
+ do_test_unconf_chan(false, false, true, ConnectStyle::FullBlockViaListen);
}
#[test]
// Connect blocks on node A to advance height towards TEST_FINAL_CLTV
// Provide node A with both preimage
- nodes[0].node.claim_funds(payment_preimage_1, &None, 3_000_000);
- nodes[0].node.claim_funds(payment_preimage_2, &None, 3_000_000);
+ nodes[0].node.claim_funds(payment_preimage_1);
+ nodes[0].node.claim_funds(payment_preimage_2);
check_added_monitors!(nodes[0], 2);
nodes[0].node.get_and_clear_pending_events();
nodes[0].node.get_and_clear_pending_msg_events();
// Connect blocks on node A commitment transaction
mine_transaction(&nodes[0], &remote_txn[0]);
- check_closed_broadcast!(nodes[0], false);
+ check_closed_broadcast!(nodes[0], true);
check_added_monitors!(nodes[0], 1);
// Verify node A broadcast tx claiming both HTLCs
{
// Connect blocks on node B
connect_blocks(&nodes[1], 135);
- check_closed_broadcast!(nodes[1], false);
+ check_closed_broadcast!(nodes[1], true);
check_added_monitors!(nodes[1], 1);
// Verify node B broadcast 2 HTLC-timeout txn
let partial_claim_tx = {