282 lines
11 KiB
Go
282 lines
11 KiB
Go
package lnwallet
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import (
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"sync"
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"github.com/lightningnetwork/lnd/channeldb"
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"github.com/btcsuite/btcd/btcec"
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"github.com/btcsuite/btcd/wire"
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"github.com/btcsuite/btcutil"
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)
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// ChannelContribution is the primary constituent of the funding workflow within
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// lnwallet. Each side first exchanges their respective contributions along with
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// channel specific paramters like the min fee/KB. Once contributions have been
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// exchanged, each side will then produce signatures for all their inputs to the
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// funding transactions, and finally a signature for the other party's version
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// of the commitment transaction.
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type ChannelContribution struct {
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// Amount of funds contributed to the funding transaction.
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FundingAmount btcutil.Amount
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// Inputs to the funding transaction.
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Inputs []*wire.TxIn
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// Outputs to be used in the case that the total value of the fund
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// ing inputs is greather than the total potential channel capacity.
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ChangeOutputs []*wire.TxOut
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// The key to be used for the funding transaction's P2SH multi-sig
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// 2-of-2 output.
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MultiSigKey *btcec.PublicKey
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// The key to be used for this party's version of the commitment
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// transaction.
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CommitKey *btcec.PublicKey
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// Address to be used for delivery of cleared channel funds in the scenario
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// of a cooperative channel closure.
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DeliveryAddress btcutil.Address
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// Hash to be used as the revocation for the initial version of this
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// party's commitment transaction.
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RevocationHash [20]byte
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// The delay (in blocks) to be used for the pay-to-self output in this
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// party's version of the commitment transaction.
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CsvDelay uint32
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}
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// ChannelReservation represents an intent to open a lightning payment channel
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// a counterpaty. The funding proceses from reservation to channel opening is a
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// 3-step process. In order to allow for full concurrency during the reservation
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// workflow, resources consumed by a contribution are "locked" themselves. This
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// prevents a number of race conditions such as two funding transactions
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// double-spending the same input. A reservation can also be cancelled, which
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// removes the resources from limbo, allowing another reservation to claim them.
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//
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// The reservation workflow consists of the following three steps:
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// 1. lnwallet.InitChannelReservation
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// * One requests the wallet to allocate the neccessary resources for a
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// channel reservation. These resources a put in limbo for the lifetime
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// of a reservation.
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// * Once completed the reservation will have the wallet's contribution
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// accessible via the .OurContribution() method. This contribution
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// contains the neccessary items to allow the remote party to build both
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// the funding, and commitment transactions.
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// 2. ChannelReservation.ProcessContribution
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// * The counterparty presents their contribution to the payment channel.
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// This allows us to build the funding, and commitment transactions
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// ourselves.
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// * We're now able to sign our inputs to the funding transactions, and
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// the counterparty's version of the commitment transaction.
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// * All signatures crafted by us, are now available via .OurSignatures().
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// 3. ChannelReservation.CompleteReservation
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// * The final step in the workflow. The counterparty presents the
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// signatures for all their inputs to the funding transation, as well
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// as a signature to our version of the commitment transaction.
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// * We then verify the validity of all signatures before considering the
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// channel "open".
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type ChannelReservation struct {
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// TODO(roasbeef): remove this? we're only implementing the golden...
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fundingType FundingType
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// This mutex MUST be held when either reading or modifying any of the
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// fields below.
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sync.RWMutex
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// For CLTV it is nLockTime, for CSV it's nSequence, for segwit it's
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// not needed
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fundingLockTime uint32
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// In order of sorted inputs. Sorting is done in accordance
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// to BIP-69: https://github.com/bitcoin/bips/blob/master/bip-0069.mediawiki.
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ourFundingSigs [][]byte
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theirFundingSigs [][]byte
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// Our signature for their version of the commitment transaction.
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ourCommitmentSig []byte
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theirCommitmentSig []byte
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ourContribution *ChannelContribution
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theirContribution *ChannelContribution
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partialState *channeldb.OpenChannel
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// The ID of this reservation, used to uniquely track the reservation
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// throughout its lifetime.
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reservationID uint64
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// A channel which will be sent on once the channel is considered
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// 'open'. A channel is open once the funding transaction has reached
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// a sufficient number of confirmations.
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chanOpen chan *LightningChannel
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wallet *LightningWallet
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}
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// newChannelReservation creates a new channel reservation. This function is
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// used only internally by lnwallet. In order to concurrent safety, the creation
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// of all channel reservations should be carried out via the
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// lnwallet.InitChannelReservation interface.
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func newChannelReservation(t FundingType, fundingAmt btcutil.Amount,
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minFeeRate btcutil.Amount, wallet *LightningWallet, id uint64) *ChannelReservation {
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// TODO(roasbeef): CSV here, or on delay?
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return &ChannelReservation{
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fundingType: t,
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ourContribution: &ChannelContribution{
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FundingAmount: fundingAmt,
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},
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theirContribution: &ChannelContribution{
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FundingAmount: fundingAmt,
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},
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partialState: &channeldb.OpenChannel{
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// TODO(roasbeef): assumes balanced symmetric channels.
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Capacity: fundingAmt * 2,
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OurBalance: fundingAmt,
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TheirBalance: fundingAmt,
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MinFeePerKb: minFeeRate,
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Db: wallet.channelDB,
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},
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reservationID: id,
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wallet: wallet,
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}
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}
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// OurContribution returns the wallet's fully populated contribution to the
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// pending payment channel. See 'ChannelContribution' for further details
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// regarding the contents of a contribution.
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// NOTE: This SHOULD NOT be modified.
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// TODO(roasbeef): make copy?
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func (r *ChannelReservation) OurContribution() *ChannelContribution {
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r.RLock()
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defer r.RUnlock()
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return r.ourContribution
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}
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// ProcesContribution verifies the counterparty's contribution to the pending
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// payment channel. As a result of this incoming message, lnwallet is able to
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// build the funding transaction, and both commitment transactions. Once this
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// message has been processed, all signatures to inputs to the funding
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// transaction belonging to the wallet are available. Additionally, the wallet
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// will generate a signature to the counterparty's version of the commitment
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// transaction.
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func (r *ChannelReservation) ProcessContribution(theirContribution *ChannelContribution) error {
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errChan := make(chan error, 1)
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r.wallet.msgChan <- &addContributionMsg{
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pendingFundingID: r.reservationID,
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contribution: theirContribution,
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err: errChan,
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}
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return <-errChan
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}
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// TheirContribution returns the counterparty's pending contribution to the
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// payment channel. See 'ChannelContribution' for further details regarding
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// the contents of a contribution. This attribute will ONLY be available
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// after a call to .ProcesContribution().
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// NOTE: This SHOULD NOT be modified.
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func (r *ChannelReservation) TheirContribution() *ChannelContribution {
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r.RLock()
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defer r.RUnlock()
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return r.theirContribution
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}
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// OurSignatures retrieves the wallet's signatures to all inputs to the funding
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// transaction belonging to itself, and also a signature for the counterparty's
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// version of the commitment transaction. The signatures for the wallet's
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// inputs to the funding transaction are returned in sorted order according to
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// BIP-69: https://github.com/bitcoin/bips/blob/master/bip-0069.mediawiki.
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// NOTE: These signatures will only be populated after a call to
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// .ProcesContribution()
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func (r *ChannelReservation) OurSignatures() ([][]byte, []byte) {
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r.RLock()
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defer r.RUnlock()
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return r.ourFundingSigs, r.ourCommitmentSig
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}
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// CompleteFundingReservation finalizes the pending channel reservation,
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// transitioning from a pending payment channel, to an open payment
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// channel. All passed signatures to the counterparty's inputs to the funding
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// transaction will be fully verified. Signatures are expected to be passed in
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// sorted order according to BIP-69:
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// https://github.com/bitcoin/bips/blob/master/bip-0069.mediawiki. Additionally,
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// verification is performed in order to ensure that the counterparty supplied
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// a valid signature to our version of the commitment transaction.
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// Once this method returns, caller's should then call .WaitForChannelOpen()
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// which will block until the funding transaction obtains the configured number
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// of confirmations. Once the method unblocks, a LightningChannel instance is
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// returned, marking the channel available for updates.
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func (r *ChannelReservation) CompleteReservation(fundingSigs [][]byte,
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commitmentSig []byte) error {
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errChan := make(chan error, 1)
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r.wallet.msgChan <- &addCounterPartySigsMsg{
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pendingFundingID: r.reservationID,
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theirFundingSigs: fundingSigs,
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theirCommitmentSig: commitmentSig,
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err: errChan,
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}
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return <-errChan
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}
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// OurSignatures returns the counterparty's signatures to all inputs to the
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// funding transaction belonging to them, as well as their signature for the
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// wallet's version of the commitment transaction. This methods is provided for
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// additional verification, such as needed by tests.
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// NOTE: These attributes will be unpopulated before a call to
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// .CompleteReservation().
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func (r *ChannelReservation) TheirSignatures() ([][]byte, []byte) {
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r.RLock()
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defer r.RUnlock()
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return r.theirFundingSigs, r.theirCommitmentSig
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}
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// FinalFundingTx returns the finalized, fully signed funding transaction for
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// this reservation.
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func (r *ChannelReservation) FinalFundingTx() *wire.MsgTx {
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r.RLock()
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defer r.RUnlock()
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return r.partialState.FundingTx
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}
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// Cancel abandons this channel reservation. This method should be called in
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// the scenario that communications with the counterparty break down. Upon
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// cancellation, all resources previously reserved for this pending payment
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// channel are returned to the free pool, allowing subsequent reservations to
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// utilize the now freed resources.
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func (r *ChannelReservation) Cancel() error {
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errChan := make(chan error, 1)
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r.wallet.msgChan <- &fundingReserveCancelMsg{
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pendingFundingID: r.reservationID,
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err: errChan,
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}
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return <-errChan
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}
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// WaitForChannelOpen blocks until the funding transaction for this pending
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// payment channel obtains the configured number of confirmations. Once
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// confirmations have been obtained, a fully initialized LightningChannel
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// instance is returned, allowing for channel updates.
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// NOTE: If this method is called before .CompleteReservation(), it will block
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// indefinitely.
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func (r *ChannelReservation) WaitForChannelOpen() *LightningChannel {
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return <-r.chanOpen
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}
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// * finish reset of tests
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// * comment out stuff that'll need a node.
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// * start on commitment side
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// * implement rusty's shachain
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// * set up logic to get notification from node when funding tx gets 6 deep.
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// * prob spawn into ChainNotifier struct
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// * create builder for initial funding transaction
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// * fascade through the wallet, for signing and such.
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// * channel should have active namespace to it's bucket, query at that point fo past commits etc
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