@@ -3086,7 +3086,7 @@ fn test_blocked_chan_preimage_release() {
30863086 expect_payment_sent ( & nodes[ 2 ] , payment_preimage_2, None , true , true ) ;
30873087}
30883088
3089- fn do_test_inverted_mon_completion_order ( complete_bc_commitment_dance : bool ) {
3089+ fn do_test_inverted_mon_completion_order ( with_latest_manager : bool , complete_bc_commitment_dance : bool ) {
30903090 // When we forward a payment and receive an `update_fulfill_htlc` message from the downstream
30913091 // channel, we immediately claim the HTLC on the upstream channel, before even doing a
30923092 // `commitment_signed` dance on the downstream channel. This implies that our
@@ -3114,6 +3114,10 @@ fn do_test_inverted_mon_completion_order(complete_bc_commitment_dance: bool) {
31143114 let ( payment_preimage, payment_hash, _) = route_payment ( & nodes[ 0 ] , & [ & nodes[ 1 ] , & nodes[ 2 ] ] , 100_000 ) ;
31153115
31163116 let mon_ab = get_monitor ! ( nodes[ 1 ] , chan_id_ab) . encode ( ) ;
3117+ let mut manager_b = Vec :: new ( ) ;
3118+ if !with_latest_manager {
3119+ manager_b = nodes[ 1 ] . node . encode ( ) ;
3120+ }
31173121
31183122 nodes[ 2 ] . node . claim_funds ( payment_preimage) ;
31193123 check_added_monitors ( & nodes[ 2 ] , 1 ) ;
@@ -3150,58 +3154,222 @@ fn do_test_inverted_mon_completion_order(complete_bc_commitment_dance: bool) {
31503154 }
31513155
31523156 // Now reload node B
3153- let manager_b = nodes[ 1 ] . node . encode ( ) ;
3157+ if with_latest_manager {
3158+ manager_b = nodes[ 1 ] . node . encode ( ) ;
3159+ }
31543160
31553161 let mon_bc = get_monitor ! ( nodes[ 1 ] , chan_id_bc) . encode ( ) ;
31563162 reload_node ! ( nodes[ 1 ] , & manager_b, & [ & mon_ab, & mon_bc] , persister, new_chain_monitor, nodes_1_deserialized) ;
31573163
31583164 nodes[ 0 ] . node . peer_disconnected ( & nodes[ 1 ] . node . get_our_node_id ( ) ) ;
31593165 nodes[ 2 ] . node . peer_disconnected ( & nodes[ 1 ] . node . get_our_node_id ( ) ) ;
31603166
3161- // If we used the latest ChannelManager to reload from, we should have both channels still
3162- // live. The B <-> C channel's final RAA ChannelMonitorUpdate must still be blocked as
3163- // before - the ChannelMonitorUpdate for the A <-> B channel hasn't completed.
3164- // When we call `timer_tick_occurred` we will get that monitor update back, which we'll
3165- // complete after reconnecting to our peers.
3166- persister. set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3167- nodes[ 1 ] . node . timer_tick_occurred ( ) ;
3168- check_added_monitors ( & nodes[ 1 ] , 1 ) ;
3169- assert ! ( nodes[ 1 ] . node. get_and_clear_pending_msg_events( ) . is_empty( ) ) ;
3167+ if with_latest_manager {
3168+ // If we used the latest ChannelManager to reload from, we should have both channels still
3169+ // live. The B <-> C channel's final RAA ChannelMonitorUpdate must still be blocked as
3170+ // before - the ChannelMonitorUpdate for the A <-> B channel hasn't completed.
3171+ // When we call `timer_tick_occurred` we will get that monitor update back, which we'll
3172+ // complete after reconnecting to our peers.
3173+ persister. set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3174+ nodes[ 1 ] . node . timer_tick_occurred ( ) ;
3175+ check_added_monitors ( & nodes[ 1 ] , 1 ) ;
3176+ assert ! ( nodes[ 1 ] . node. get_and_clear_pending_msg_events( ) . is_empty( ) ) ;
31703177
3171- // Now reconnect B to both A and C. If the B <-> C commitment signed dance wasn't run to
3172- // the end go ahead and do that, though the -2 in `reconnect_nodes` indicates that we
3173- // expect to *not* receive the final RAA ChannelMonitorUpdate.
3174- if complete_bc_commitment_dance {
3175- reconnect_nodes ( & nodes[ 1 ] , & nodes[ 2 ] , ( false , false ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , false ) ) ;
3178+ // Now reconnect B to both A and C. If the B <-> C commitment signed dance wasn't run to
3179+ // the end go ahead and do that, though the -2 in `reconnect_nodes` indicates that we
3180+ // expect to *not* receive the final RAA ChannelMonitorUpdate.
3181+ if complete_bc_commitment_dance {
3182+ reconnect_nodes ( & nodes[ 1 ] , & nodes[ 2 ] , ( false , false ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , false ) ) ;
3183+ } else {
3184+ reconnect_nodes ( & nodes[ 1 ] , & nodes[ 2 ] , ( false , false ) , ( 0 , -2 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , true ) ) ;
3185+ }
3186+
3187+ reconnect_nodes ( & nodes[ 0 ] , & nodes[ 1 ] , ( false , false ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , false ) ) ;
3188+
3189+ // (Finally) complete the A <-> B ChannelMonitorUpdate, ensuring the preimage is durably on
3190+ // disk in the proper ChannelMonitor, unblocking the B <-> C ChannelMonitor updating
3191+ // process.
3192+ let ( outpoint, _, ab_update_id) = nodes[ 1 ] . chain_monitor . latest_monitor_update_id . lock ( ) . unwrap ( ) . get ( & chan_id_ab) . unwrap ( ) . clone ( ) ;
3193+ nodes[ 1 ] . chain_monitor . chain_monitor . channel_monitor_updated ( outpoint, ab_update_id) . unwrap ( ) ;
3194+
3195+ // When we fetch B's HTLC update messages next (now that the ChannelMonitorUpdate has
3196+ // completed), it will also release the final RAA ChannelMonitorUpdate on the B <-> C
3197+ // channel.
31763198 } else {
3177- reconnect_nodes ( & nodes[ 1 ] , & nodes[ 2 ] , ( false , false ) , ( 0 , -2 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , true ) ) ;
3178- }
3199+ // If the ChannelManager used in the reload was stale, check that the B <-> C channel was
3200+ // closed.
3201+ //
3202+ // Note that this will also process the ChannelMonitorUpdates which were queued up when we
3203+ // reloaded the ChannelManager. This will re-emit the A<->B preimage as well as the B<->C
3204+ // force-closure ChannelMonitorUpdate. Once the A<->B preimage update completes, the claim
3205+ // commitment update will be allowed to go out.
3206+ check_added_monitors ( & nodes[ 1 ] , 0 ) ;
3207+ persister. set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3208+ persister. set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3209+ check_closed_event ( & nodes[ 1 ] , 1 , ClosureReason :: OutdatedChannelManager , false ) ;
3210+ check_added_monitors ( & nodes[ 1 ] , 2 ) ;
3211+
3212+ nodes[ 1 ] . node . timer_tick_occurred ( ) ;
3213+ check_added_monitors ( & nodes[ 1 ] , 0 ) ;
3214+
3215+ // Don't bother to reconnect B to C - that channel has been closed. We don't need to
3216+ // exchange any messages here even though there's a pending commitment update because the
3217+ // ChannelMonitorUpdate hasn't yet completed.
3218+ reconnect_nodes ( & nodes[ 0 ] , & nodes[ 1 ] , ( false , false ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , false ) ) ;
31793219
3180- reconnect_nodes ( & nodes[ 0 ] , & nodes[ 1 ] , ( false , false ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( 0 , 0 ) , ( false , false ) ) ;
3220+ let ( outpoint, _, ab_update_id) = nodes[ 1 ] . chain_monitor . latest_monitor_update_id . lock ( ) . unwrap ( ) . get ( & chan_id_ab) . unwrap ( ) . clone ( ) ;
3221+ nodes[ 1 ] . chain_monitor . chain_monitor . channel_monitor_updated ( outpoint, ab_update_id) . unwrap ( ) ;
31813222
3182- // (Finally) complete the A <-> B ChannelMonitorUpdate, ensuring the preimage is durably on
3183- // disk in the proper ChannelMonitor, unblocking the B <-> C ChannelMonitor updating
3184- // process.
3185- let ( outpoint, _, ab_update_id) = nodes[ 1 ] . chain_monitor . latest_monitor_update_id . lock ( ) . unwrap ( ) . get ( & chan_id_ab) . unwrap ( ) . clone ( ) ;
3186- nodes[ 1 ] . chain_monitor . chain_monitor . channel_monitor_updated ( outpoint, ab_update_id) . unwrap ( ) ;
3223+ // The ChannelMonitorUpdate which was completed prior to the reconnect only contained the
3224+ // preimage (as it was a replay of the original ChannelMonitorUpdate from before we
3225+ // restarted). When we go to fetch the commitment transaction updates we'll poll the
3226+ // ChannelMonitorUpdate completion, then generate (and complete) a new ChannelMonitorUpdate
3227+ // with the actual commitment transaction, which will allow us to fulfill the HTLC with
3228+ // node A.
3229+ }
31873230
3188- // When we fetch B's HTLC update messages here (now that the ChannelMonitorUpdate has
3189- // completed), it will also release the final RAA ChannelMonitorUpdate on the B <-> C
3190- // channel.
31913231 let bs_updates = get_htlc_update_msgs ( & nodes[ 1 ] , & nodes[ 0 ] . node . get_our_node_id ( ) ) ;
31923232 check_added_monitors ( & nodes[ 1 ] , 1 ) ;
31933233
31943234 nodes[ 0 ] . node . handle_update_fulfill_htlc ( & nodes[ 1 ] . node . get_our_node_id ( ) , & bs_updates. update_fulfill_htlcs [ 0 ] ) ;
31953235 do_commitment_signed_dance ( & nodes[ 0 ] , & nodes[ 1 ] , & bs_updates. commitment_signed , false , false ) ;
31963236
3197- expect_payment_forwarded ! ( nodes[ 1 ] , & nodes[ 0 ] , & nodes[ 2 ] , Some ( 1_000 ) , false , false ) ;
3237+ expect_payment_forwarded ! ( nodes[ 1 ] , & nodes[ 0 ] , & nodes[ 2 ] , Some ( 1_000 ) , false , !with_latest_manager ) ;
31983238
31993239 // Finally, check that the payment was, ultimately, seen as sent by node A.
32003240 expect_payment_sent ( & nodes[ 0 ] , payment_preimage, None , true , true ) ;
32013241}
32023242
32033243#[ test]
32043244fn test_inverted_mon_completion_order ( ) {
3205- do_test_inverted_mon_completion_order ( true ) ;
3206- do_test_inverted_mon_completion_order ( false ) ;
3245+ do_test_inverted_mon_completion_order ( true , true ) ;
3246+ do_test_inverted_mon_completion_order ( true , false ) ;
3247+ do_test_inverted_mon_completion_order ( false , true ) ;
3248+ do_test_inverted_mon_completion_order ( false , false ) ;
3249+ }
3250+
3251+ fn do_test_durable_preimages_on_closed_channel ( close_chans_before_reload : bool , close_only_a : bool ) {
3252+ // Test that we can apply a `ChannelMonitorUpdate` with a payment preimage even if the channel
3253+ // is force-closed between when we generate the update on reload and when we go to handle the
3254+ // update or prior to generating the update at all.
3255+
3256+ if !close_chans_before_reload && close_only_a {
3257+ // If we're not closing, it makes no sense to "only close A"
3258+ panic ! ( ) ;
3259+ }
3260+
3261+ let chanmon_cfgs = create_chanmon_cfgs ( 3 ) ;
3262+ let node_cfgs = create_node_cfgs ( 3 , & chanmon_cfgs) ;
3263+
3264+ let persister;
3265+ let new_chain_monitor;
3266+ let nodes_1_deserialized;
3267+
3268+ let node_chanmgrs = create_node_chanmgrs ( 3 , & node_cfgs, & [ None , None , None ] ) ;
3269+ let mut nodes = create_network ( 3 , & node_cfgs, & node_chanmgrs) ;
3270+
3271+ let chan_id_ab = create_announced_chan_between_nodes ( & nodes, 0 , 1 ) . 2 ;
3272+ let chan_id_bc = create_announced_chan_between_nodes ( & nodes, 1 , 2 ) . 2 ;
3273+
3274+ // Route a payment from A, through B, to C, then claim it on C. Once we pass B the
3275+ // `update_fulfill_htlc` we have a monitor update for both of B's channels. We complete the one
3276+ // on the B<->C channel but leave the A<->B monitor update pending, then reload B.
3277+ let ( payment_preimage, payment_hash, _) = route_payment ( & nodes[ 0 ] , & [ & nodes[ 1 ] , & nodes[ 2 ] ] , 1_000_000 ) ;
3278+
3279+ let mon_ab = get_monitor ! ( nodes[ 1 ] , chan_id_ab) . encode ( ) ;
3280+
3281+ nodes[ 2 ] . node . claim_funds ( payment_preimage) ;
3282+ check_added_monitors ( & nodes[ 2 ] , 1 ) ;
3283+ expect_payment_claimed ! ( nodes[ 2 ] , payment_hash, 1_000_000 ) ;
3284+
3285+ chanmon_cfgs[ 1 ] . persister . set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3286+ let cs_updates = get_htlc_update_msgs ( & nodes[ 2 ] , & nodes[ 1 ] . node . get_our_node_id ( ) ) ;
3287+ nodes[ 1 ] . node . handle_update_fulfill_htlc ( & nodes[ 2 ] . node . get_our_node_id ( ) , & cs_updates. update_fulfill_htlcs [ 0 ] ) ;
3288+
3289+ // B generates a new monitor update for the A <-> B channel, but doesn't send the new messages
3290+ // for it since the monitor update is marked in-progress.
3291+ check_added_monitors ( & nodes[ 1 ] , 1 ) ;
3292+ assert ! ( nodes[ 1 ] . node. get_and_clear_pending_msg_events( ) . is_empty( ) ) ;
3293+
3294+ // Now step the Commitment Signed Dance between B and C forward a bit, ensuring we won't get
3295+ // the preimage when the nodes reconnect, at which point we have to ensure we get it from the
3296+ // ChannelMonitor.
3297+ nodes[ 1 ] . node . handle_commitment_signed ( & nodes[ 2 ] . node . get_our_node_id ( ) , & cs_updates. commitment_signed ) ;
3298+ check_added_monitors ( & nodes[ 1 ] , 1 ) ;
3299+ let _ = get_revoke_commit_msgs ! ( nodes[ 1 ] , nodes[ 2 ] . node. get_our_node_id( ) ) ;
3300+
3301+ let mon_bc = get_monitor ! ( nodes[ 1 ] , chan_id_bc) . encode ( ) ;
3302+
3303+ if close_chans_before_reload {
3304+ if !close_only_a {
3305+ chanmon_cfgs[ 1 ] . persister . set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3306+ nodes[ 1 ] . node . force_close_broadcasting_latest_txn ( & chan_id_bc, & nodes[ 2 ] . node . get_our_node_id ( ) ) . unwrap ( ) ;
3307+ check_closed_broadcast ( & nodes[ 1 ] , 1 , true ) ;
3308+ check_closed_event ( & nodes[ 1 ] , 1 , ClosureReason :: HolderForceClosed , false ) ;
3309+ }
3310+
3311+ chanmon_cfgs[ 1 ] . persister . set_update_ret ( ChannelMonitorUpdateStatus :: InProgress ) ;
3312+ nodes[ 1 ] . node . force_close_broadcasting_latest_txn ( & chan_id_ab, & nodes[ 0 ] . node . get_our_node_id ( ) ) . unwrap ( ) ;
3313+ check_closed_broadcast ( & nodes[ 1 ] , 1 , true ) ;
3314+ check_closed_event ( & nodes[ 1 ] , 1 , ClosureReason :: HolderForceClosed , false ) ;
3315+ }
3316+
3317+ // Now reload node B
3318+ let manager_b = nodes[ 1 ] . node . encode ( ) ;
3319+ reload_node ! ( nodes[ 1 ] , & manager_b, & [ & mon_ab, & mon_bc] , persister, new_chain_monitor, nodes_1_deserialized) ;
3320+
3321+ nodes[ 0 ] . node . peer_disconnected ( & nodes[ 1 ] . node . get_our_node_id ( ) ) ;
3322+ nodes[ 2 ] . node . peer_disconnected ( & nodes[ 1 ] . node . get_our_node_id ( ) ) ;
3323+
3324+ if close_chans_before_reload {
3325+ // If the channels were already closed, B will rebroadcast its closing transactions here.
3326+ let bs_close_txn = nodes[ 1 ] . tx_broadcaster . txn_broadcasted . lock ( ) . unwrap ( ) . split_off ( 0 ) ;
3327+ if close_only_a {
3328+ assert_eq ! ( bs_close_txn. len( ) , 2 ) ;
3329+ } else {
3330+ assert_eq ! ( bs_close_txn. len( ) , 3 ) ;
3331+ }
3332+ }
3333+
3334+ nodes[ 0 ] . node . force_close_broadcasting_latest_txn ( & chan_id_ab, & nodes[ 1 ] . node . get_our_node_id ( ) ) . unwrap ( ) ;
3335+ check_closed_event ( & nodes[ 0 ] , 1 , ClosureReason :: HolderForceClosed , false ) ;
3336+ let as_closing_tx = nodes[ 0 ] . tx_broadcaster . txn_broadcasted . lock ( ) . unwrap ( ) . split_off ( 0 ) ;
3337+ assert_eq ! ( as_closing_tx. len( ) , 1 ) ;
3338+
3339+ // In order to give B A's closing transaction without processing background events first, use
3340+ // the _without_checks utility method. This is similar to connecting blocks during startup
3341+ // prior to the node being full initialized.
3342+ mine_transaction_without_checks ( & nodes[ 1 ] , & as_closing_tx[ 0 ] ) ;
3343+
3344+ // After a timer tick a payment preimage ChannelMonitorUpdate is applied to the A<->B
3345+ // ChannelMonitor (possible twice), even though the channel has since been closed.
3346+ check_added_monitors ( & nodes[ 1 ] , 0 ) ;
3347+ nodes[ 1 ] . node . timer_tick_occurred ( ) ;
3348+ check_added_monitors ( & nodes[ 1 ] , if close_chans_before_reload { if !close_only_a { 4 } else { 3 } } else { 2 } ) ;
3349+
3350+ // Finally, check that B created a payment preimage transaction and close out the payment.
3351+ let bs_txn = nodes[ 1 ] . tx_broadcaster . txn_broadcasted . lock ( ) . unwrap ( ) . split_off ( 0 ) ;
3352+ assert_eq ! ( bs_txn. len( ) , if close_chans_before_reload && !close_only_a { 2 } else { 1 } ) ;
3353+ let bs_preimage_tx = & bs_txn[ 0 ] ;
3354+ check_spends ! ( bs_preimage_tx, as_closing_tx[ 0 ] ) ;
3355+
3356+ if !close_chans_before_reload {
3357+ check_closed_broadcast ( & nodes[ 1 ] , 1 , true ) ;
3358+ check_closed_event ( & nodes[ 1 ] , 1 , ClosureReason :: CommitmentTxConfirmed , false ) ;
3359+ } else {
3360+ // While we forwarded the payment a while ago, we don't want to process events too early or
3361+ // we'll run background tasks we wanted to test individually.
3362+ expect_payment_forwarded ! ( nodes[ 1 ] , nodes[ 0 ] , nodes[ 2 ] , None , false , !close_only_a) ;
3363+ }
3364+
3365+ mine_transactions ( & nodes[ 0 ] , & [ & as_closing_tx[ 0 ] , bs_preimage_tx] ) ;
3366+ check_closed_broadcast ( & nodes[ 0 ] , 1 , true ) ;
3367+ expect_payment_sent ( & nodes[ 0 ] , payment_preimage, None , true , true ) ;
3368+ }
3369+
3370+ #[ test]
3371+ fn test_durable_preimages_on_closed_channel ( ) {
3372+ do_test_durable_preimages_on_closed_channel ( true , true ) ;
3373+ do_test_durable_preimages_on_closed_channel ( true , false ) ;
3374+ do_test_durable_preimages_on_closed_channel ( false , false ) ;
32073375}
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