@@ -4093,6 +4093,73 @@ fn test_channel_ready_without_best_block_updated() {
40934093 nodes[1].node.handle_channel_ready(&nodes[0].node.get_our_node_id(), &as_channel_ready);
40944094}
40954095
4096+ #[test]
4097+ fn test_channel_monitor_skipping_block_when_channel_manager_is_leading() {
4098+ let chanmon_cfgs = create_chanmon_cfgs(2);
4099+ let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4100+ let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4101+ let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4102+
4103+ // Let channel_manager get ahead of chain_monitor by 1 block.
4104+ // This is to emulate race-condition where newly added channel_monitor skips processing 1 block,
4105+ // in case where client calls block_connect on channel_manager first and then on chain_monitor.
4106+ let height_1 = nodes[0].best_block_info().1 + 1;
4107+ let mut block_1 = create_dummy_block(nodes[0].best_block_hash(), height_1, Vec::new());
4108+
4109+ nodes[0].blocks.lock().unwrap().push((block_1.clone(), height_1));
4110+ nodes[0].node.block_connected(&block_1, height_1);
4111+
4112+ // Create channel, and it gets added to chain_monitor in funding_created.
4113+ let funding_tx = create_chan_between_nodes_with_value_init(&nodes[0], &nodes[1], 1_000_000, 0);
4114+
4115+ // Now, newly added channel_monitor in chain_monitor hasn't processed block_1,
4116+ // but it's best_block is block_1, since that was populated by channel_manager, and channel_manager
4117+ // was running ahead of chain_monitor at the time of funding_created.
4118+ // Later on, subsequent blocks are connected to both channel_manager and chain_monitor.
4119+ // Hence, this channel's channel_monitor skipped block_1, directly tries to process subsequent blocks.
4120+ confirm_transaction_at(&nodes[0], &funding_tx, nodes[0].best_block_info().1 + 1);
4121+ connect_blocks(&nodes[0], CHAN_CONFIRM_DEPTH);
4122+
4123+ // Ensure nodes[0] generates a channel_ready after the transactions_confirmed
4124+ let as_channel_ready = get_event_msg!(nodes[0], MessageSendEvent::SendChannelReady, nodes[1].node.get_our_node_id());
4125+ nodes[1].node.handle_channel_ready(&nodes[0].node.get_our_node_id(), &as_channel_ready);
4126+ }
4127+
4128+ #[test]
4129+ fn test_channel_monitor_skipping_block_when_channel_manager_is_lagging() {
4130+ let chanmon_cfgs = create_chanmon_cfgs(2);
4131+ let node_cfgs = create_node_cfgs(2, &chanmon_cfgs);
4132+ let node_chanmgrs = create_node_chanmgrs(2, &node_cfgs, &[None, None]);
4133+ let mut nodes = create_network(2, &node_cfgs, &node_chanmgrs);
4134+
4135+ // Let chain_monitor get ahead of channel_manager by 1 block.
4136+ // This is to emulate race-condition where newly added channel_monitor skips processing 1 block,
4137+ // in case where client calls block_connect on chain_monitor first and then on channel_manager.
4138+ let height_1 = nodes[0].best_block_info().1 + 1;
4139+ let mut block_1 = create_dummy_block(nodes[0].best_block_hash(), height_1, Vec::new());
4140+
4141+ nodes[0].blocks.lock().unwrap().push((block_1.clone(), height_1));
4142+ nodes[0].chain_monitor.chain_monitor.block_connected(&block_1, height_1);
4143+
4144+ // Create channel, and it gets added to chain_monitor in funding_created.
4145+ let funding_tx = create_chan_between_nodes_with_value_init(&nodes[0], &nodes[1], 1_000_000, 0);
4146+
4147+ // channel_manager can't really skip block_1, it should get it eventually.
4148+ nodes[0].node.block_connected(&block_1, height_1);
4149+
4150+ // Now, newly added channel_monitor in chain_monitor hasn't processed block_1, it's best_block is
4151+ // the block before block_1, since that was populated by channel_manager, and channel_manager was
4152+ // running behind at the time of funding_created.
4153+ // Later on, subsequent blocks are connected to both channel_manager and chain_monitor.
4154+ // Hence, this channel's channel_monitor skipped block_1, directly tries to process subsequent blocks.
4155+ confirm_transaction_at(&nodes[0], &funding_tx, nodes[0].best_block_info().1 + 1);
4156+ connect_blocks(&nodes[0], CHAN_CONFIRM_DEPTH);
4157+
4158+ // Ensure nodes[0] generates a channel_ready after the transactions_confirmed
4159+ let as_channel_ready = get_event_msg!(nodes[0], MessageSendEvent::SendChannelReady, nodes[1].node.get_our_node_id());
4160+ nodes[1].node.handle_channel_ready(&nodes[0].node.get_our_node_id(), &as_channel_ready);
4161+ }
4162+
40964163#[test]
40974164fn test_drop_messages_peer_disconnect_dual_htlc() {
40984165 // Test that we can handle reconnecting when both sides of a channel have pending
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