db3819fcef
feature: expose preimage in forward+settle event
292 lines
12 KiB
Go
292 lines
12 KiB
Go
package htlcswitch
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import (
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"github.com/btcsuite/btcd/wire"
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"github.com/lightningnetwork/lnd/channeldb"
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"github.com/lightningnetwork/lnd/invoices"
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"github.com/lightningnetwork/lnd/lnpeer"
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"github.com/lightningnetwork/lnd/lntypes"
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"github.com/lightningnetwork/lnd/lnwallet"
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"github.com/lightningnetwork/lnd/lnwire"
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"github.com/lightningnetwork/lnd/record"
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)
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// InvoiceDatabase is an interface which represents the persistent subsystem
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// which may search, lookup and settle invoices.
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type InvoiceDatabase interface {
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// LookupInvoice attempts to look up an invoice according to its 32
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// byte payment hash.
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LookupInvoice(lntypes.Hash) (channeldb.Invoice, error)
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// NotifyExitHopHtlc attempts to mark an invoice as settled. If the
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// invoice is a debug invoice, then this method is a noop as debug
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// invoices are never fully settled. The return value describes how the
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// htlc should be resolved. If the htlc cannot be resolved immediately,
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// the resolution is sent on the passed in hodlChan later. The eob
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// field passes the entire onion hop payload into the invoice registry
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// for decoding purposes.
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NotifyExitHopHtlc(payHash lntypes.Hash, paidAmount lnwire.MilliSatoshi,
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expiry uint32, currentHeight int32,
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circuitKey channeldb.CircuitKey, hodlChan chan<- interface{},
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payload invoices.Payload) (invoices.HtlcResolution, error)
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// CancelInvoice attempts to cancel the invoice corresponding to the
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// passed payment hash.
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CancelInvoice(payHash lntypes.Hash) error
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// SettleHodlInvoice settles a hold invoice.
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SettleHodlInvoice(preimage lntypes.Preimage) error
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// HodlUnsubscribeAll unsubscribes from all htlc resolutions.
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HodlUnsubscribeAll(subscriber chan<- interface{})
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}
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// ChannelLink is an interface which represents the subsystem for managing the
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// incoming htlc requests, applying the changes to the channel, and also
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// propagating/forwarding it to htlc switch.
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//
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// abstraction level
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// ^
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// |
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// | - - - - - - - - - - - - Lightning - - - - - - - - - - - - -
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// |
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// | (Switch) (Switch) (Switch)
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// | Alice <-- channel link --> Bob <-- channel link --> Carol
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// |
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// | - - - - - - - - - - - - - TCP - - - - - - - - - - - - - - -
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// |
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// | (Peer) (Peer) (Peer)
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// | Alice <----- tcp conn --> Bob <---- tcp conn -----> Carol
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// |
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//
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type ChannelLink interface {
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// TODO(roasbeef): modify interface to embed mail boxes?
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// HandleSwitchPacket handles the switch packets. This packets might be
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// forwarded to us from another channel link in case the htlc update
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// came from another peer or if the update was created by user
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// initially.
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//
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// NOTE: This function MUST be non-blocking (or block as little as
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// possible).
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HandleSwitchPacket(*htlcPacket) error
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// HandleLocalAddPacket handles a locally-initiated UpdateAddHTLC
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// packet. It will be processed synchronously.
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HandleLocalAddPacket(*htlcPacket) error
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// HandleChannelUpdate handles the htlc requests as settle/add/fail
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// which sent to us from remote peer we have a channel with.
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//
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// NOTE: This function MUST be non-blocking (or block as little as
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// possible).
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HandleChannelUpdate(lnwire.Message)
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// ChannelPoint returns the channel outpoint for the channel link.
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ChannelPoint() *wire.OutPoint
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// ChanID returns the channel ID for the channel link. The channel ID
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// is a more compact representation of a channel's full outpoint.
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ChanID() lnwire.ChannelID
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// ShortChanID returns the short channel ID for the channel link. The
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// short channel ID encodes the exact location in the main chain that
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// the original funding output can be found.
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ShortChanID() lnwire.ShortChannelID
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// UpdateShortChanID updates the short channel ID for a link. This may
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// be required in the event that a link is created before the short
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// chan ID for it is known, or a re-org occurs, and the funding
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// transaction changes location within the chain.
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UpdateShortChanID() (lnwire.ShortChannelID, error)
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// UpdateForwardingPolicy updates the forwarding policy for the target
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// ChannelLink. Once updated, the link will use the new forwarding
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// policy to govern if it an incoming HTLC should be forwarded or not.
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UpdateForwardingPolicy(ForwardingPolicy)
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// CheckHtlcForward should return a nil error if the passed HTLC details
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// satisfy the current forwarding policy fo the target link. Otherwise,
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// a LinkError with a valid protocol failure message should be returned
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// in order to signal to the source of the HTLC, the policy consistency
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// issue.
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CheckHtlcForward(payHash [32]byte, incomingAmt lnwire.MilliSatoshi,
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amtToForward lnwire.MilliSatoshi,
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incomingTimeout, outgoingTimeout uint32,
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heightNow uint32) *LinkError
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// CheckHtlcTransit should return a nil error if the passed HTLC details
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// satisfy the current channel policy. Otherwise, a LinkError with a
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// valid protocol failure message should be returned in order to signal
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// the violation. This call is intended to be used for locally initiated
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// payments for which there is no corresponding incoming htlc.
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CheckHtlcTransit(payHash [32]byte, amt lnwire.MilliSatoshi,
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timeout uint32, heightNow uint32) *LinkError
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// Bandwidth returns the amount of milli-satoshis which current link
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// might pass through channel link. The value returned from this method
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// represents the up to date available flow through the channel. This
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// takes into account any forwarded but un-cleared HTLC's, and any
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// HTLC's which have been set to the over flow queue.
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Bandwidth() lnwire.MilliSatoshi
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// Stats return the statistics of channel link. Number of updates,
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// total sent/received milli-satoshis.
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Stats() (uint64, lnwire.MilliSatoshi, lnwire.MilliSatoshi)
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// Peer returns the representation of remote peer with which we have
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// the channel link opened.
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Peer() lnpeer.Peer
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// EligibleToForward returns a bool indicating if the channel is able
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// to actively accept requests to forward HTLC's. A channel may be
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// active, but not able to forward HTLC's if it hasn't yet finalized
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// the pre-channel operation protocol with the remote peer. The switch
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// will use this function in forwarding decisions accordingly.
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EligibleToForward() bool
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// MayAddOutgoingHtlc returns an error if we may not add an outgoing
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// htlc to the channel.
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MayAddOutgoingHtlc() error
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// AttachMailBox delivers an active MailBox to the link. The MailBox may
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// have buffered messages.
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AttachMailBox(MailBox)
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// Start/Stop are used to initiate the start/stop of the channel link
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// functioning.
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Start() error
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Stop()
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}
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// ForwardingLog is an interface that represents a time series database which
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// keep track of all successfully completed payment circuits. Every few
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// seconds, the switch will collate and flush out all the successful payment
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// circuits during the last interval.
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type ForwardingLog interface {
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// AddForwardingEvents is a method that should write out the set of
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// forwarding events in a batch to persistent storage. Outside
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// sub-systems can then query the contents of the log for analysis,
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// visualizations, etc.
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AddForwardingEvents([]channeldb.ForwardingEvent) error
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}
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// TowerClient is the primary interface used by the daemon to backup pre-signed
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// justice transactions to watchtowers.
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type TowerClient interface {
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// RegisterChannel persistently initializes any channel-dependent
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// parameters within the client. This should be called during link
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// startup to ensure that the client is able to support the link during
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// operation.
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RegisterChannel(lnwire.ChannelID) error
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// BackupState initiates a request to back up a particular revoked
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// state. If the method returns nil, the backup is guaranteed to be
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// successful unless the tower is unavailable and client is force quit,
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// or the justice transaction would create dust outputs when trying to
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// abide by the negotiated policy. If the channel we're trying to back
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// up doesn't have a tweak for the remote party's output, then
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// isTweakless should be true.
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BackupState(*lnwire.ChannelID, *lnwallet.BreachRetribution,
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channeldb.ChannelType) error
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}
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// InterceptableHtlcForwarder is the interface to set the interceptor
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// implementation that intercepts htlc forwards.
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type InterceptableHtlcForwarder interface {
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// SetInterceptor sets a ForwardInterceptor.
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SetInterceptor(interceptor ForwardInterceptor)
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}
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// ForwardInterceptor is a function that is invoked from the switch for every
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// incoming htlc that is intended to be forwarded. It is passed with the
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// InterceptedForward that contains the information about the packet and a way
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// to resolve it manually later in case it is held.
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// The return value indicates if this handler will take control of this forward
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// and resolve it later or let the switch execute its default behavior.
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type ForwardInterceptor func(InterceptedForward) bool
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// InterceptedPacket contains the relevant information for the interceptor about
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// an htlc.
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type InterceptedPacket struct {
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// IncomingCircuit contains the incoming channel and htlc id of the
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// packet.
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IncomingCircuit channeldb.CircuitKey
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// OutgoingChanID is the destination channel for this packet.
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OutgoingChanID lnwire.ShortChannelID
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// Hash is the payment hash of the htlc.
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Hash lntypes.Hash
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// OutgoingExpiry is the absolute block height at which the outgoing
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// htlc expires.
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OutgoingExpiry uint32
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// OutgoingAmount is the amount to forward.
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OutgoingAmount lnwire.MilliSatoshi
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// IncomingExpiry is the absolute block height at which the incoming
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// htlc expires.
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IncomingExpiry uint32
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// IncomingAmount is the amount of the accepted htlc.
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IncomingAmount lnwire.MilliSatoshi
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// CustomRecords are user-defined records in the custom type range that
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// were included in the payload.
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CustomRecords record.CustomSet
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// OnionBlob is the onion packet for the next hop
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OnionBlob [lnwire.OnionPacketSize]byte
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}
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// InterceptedForward is passed to the ForwardInterceptor for every forwarded
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// htlc. It contains all the information about the packet which accordingly
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// the interceptor decides if to hold or not.
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// In addition this interface allows a later resolution by calling either
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// Resume, Settle or Fail.
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type InterceptedForward interface {
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// Packet returns the intercepted packet.
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Packet() InterceptedPacket
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// Resume notifies the intention to resume an existing hold forward. This
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// basically means the caller wants to resume with the default behavior for
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// this htlc which usually means forward it.
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Resume() error
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// Settle notifies the intention to settle an existing hold
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// forward with a given preimage.
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Settle(lntypes.Preimage) error
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// Fails notifies the intention to fail an existing hold forward
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Fail() error
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}
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// htlcNotifier is an interface which represents the input side of the
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// HtlcNotifier which htlc events are piped through. This interface is intended
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// to allow for mocking of the htlcNotifier in tests, so is unexported because
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// it is not needed outside of the htlcSwitch package.
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type htlcNotifier interface {
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// NotifyForwardingEvent notifies the HtlcNotifier than a htlc has been
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// forwarded.
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NotifyForwardingEvent(key HtlcKey, info HtlcInfo,
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eventType HtlcEventType)
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// NotifyIncomingLinkFailEvent notifies that a htlc has failed on our
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// incoming link. It takes an isReceive bool to differentiate between
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// our node's receives and forwards.
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NotifyLinkFailEvent(key HtlcKey, info HtlcInfo,
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eventType HtlcEventType, linkErr *LinkError, incoming bool)
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// NotifyForwardingFailEvent notifies the HtlcNotifier that a htlc we
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// forwarded has failed down the line.
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NotifyForwardingFailEvent(key HtlcKey, eventType HtlcEventType)
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// NotifySettleEvent notifies the HtlcNotifier that a htlc that we
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// committed to as part of a forward or a receive to our node has been
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// settled.
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NotifySettleEvent(key HtlcKey, preimage lntypes.Preimage,
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eventType HtlcEventType)
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}
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