mirror of
https://github.com/lightningnetwork/lnd.git
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217 lines
6.9 KiB
Go
217 lines
6.9 KiB
Go
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package chanfunding
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import (
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"fmt"
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"github.com/btcsuite/btcd/txscript"
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"github.com/btcsuite/btcd/wire"
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"github.com/btcsuite/btcutil"
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"github.com/lightningnetwork/lnd/input"
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"github.com/lightningnetwork/lnd/lnwallet/chainfee"
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)
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// ErrInsufficientFunds is a type matching the error interface which is
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// returned when coin selection for a new funding transaction fails to due
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// having an insufficient amount of confirmed funds.
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type ErrInsufficientFunds struct {
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amountAvailable btcutil.Amount
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amountSelected btcutil.Amount
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}
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// Error returns a human readable string describing the error.
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func (e *ErrInsufficientFunds) Error() string {
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return fmt.Sprintf("not enough witness outputs to create funding "+
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"transaction, need %v only have %v available",
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e.amountAvailable, e.amountSelected)
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}
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// Coin represents a spendable UTXO which is available for channel funding.
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// This UTXO need not reside in our internal wallet as an example, and instead
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// may be derived from an existing watch-only wallet. It wraps both the output
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// present within the UTXO set, and also the outpoint that generates this coin.
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type Coin struct {
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wire.TxOut
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wire.OutPoint
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}
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// selectInputs selects a slice of inputs necessary to meet the specified
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// selection amount. If input selection is unable to succeed due to insufficient
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// funds, a non-nil error is returned. Additionally, the total amount of the
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// selected coins are returned in order for the caller to properly handle
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// change+fees.
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func selectInputs(amt btcutil.Amount, coins []Coin) (btcutil.Amount, []Coin, error) {
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satSelected := btcutil.Amount(0)
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for i, coin := range coins {
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satSelected += btcutil.Amount(coin.Value)
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if satSelected >= amt {
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return satSelected, coins[:i+1], nil
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}
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}
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return 0, nil, &ErrInsufficientFunds{amt, satSelected}
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}
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// CoinSelect attempts to select a sufficient amount of coins, including a
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// change output to fund amt satoshis, adhering to the specified fee rate. The
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// specified fee rate should be expressed in sat/kw for coin selection to
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// function properly.
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func CoinSelect(feeRate chainfee.SatPerKWeight, amt btcutil.Amount,
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coins []Coin) ([]Coin, btcutil.Amount, error) {
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amtNeeded := amt
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for {
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// First perform an initial round of coin selection to estimate
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// the required fee.
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totalSat, selectedUtxos, err := selectInputs(amtNeeded, coins)
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if err != nil {
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return nil, 0, err
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}
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var weightEstimate input.TxWeightEstimator
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for _, utxo := range selectedUtxos {
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switch {
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case txscript.IsPayToWitnessPubKeyHash(utxo.PkScript):
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weightEstimate.AddP2WKHInput()
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case txscript.IsPayToScriptHash(utxo.PkScript):
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weightEstimate.AddNestedP2WKHInput()
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default:
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return nil, 0, fmt.Errorf("unsupported address type: %x",
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utxo.PkScript)
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}
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}
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// Channel funding multisig output is P2WSH.
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weightEstimate.AddP2WSHOutput()
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// Assume that change output is a P2WKH output.
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//
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// TODO: Handle wallets that generate non-witness change
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// addresses.
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// TODO(halseth): make coinSelect not estimate change output
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// for dust change.
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weightEstimate.AddP2WKHOutput()
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// The difference between the selected amount and the amount
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// requested will be used to pay fees, and generate a change
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// output with the remaining.
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overShootAmt := totalSat - amt
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// Based on the estimated size and fee rate, if the excess
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// amount isn't enough to pay fees, then increase the requested
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// coin amount by the estimate required fee, performing another
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// round of coin selection.
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totalWeight := int64(weightEstimate.Weight())
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requiredFee := feeRate.FeeForWeight(totalWeight)
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if overShootAmt < requiredFee {
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amtNeeded = amt + requiredFee
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continue
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}
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// If the fee is sufficient, then calculate the size of the
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// change output.
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changeAmt := overShootAmt - requiredFee
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return selectedUtxos, changeAmt, nil
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}
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}
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// CoinSelectSubtractFees attempts to select coins such that we'll spend up to
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// amt in total after fees, adhering to the specified fee rate. The selected
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// coins, the final output and change values are returned.
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func CoinSelectSubtractFees(feeRate chainfee.SatPerKWeight, amt,
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dustLimit btcutil.Amount, coins []Coin) ([]Coin, btcutil.Amount,
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btcutil.Amount, error) {
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// First perform an initial round of coin selection to estimate
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// the required fee.
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totalSat, selectedUtxos, err := selectInputs(amt, coins)
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if err != nil {
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return nil, 0, 0, err
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}
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var weightEstimate input.TxWeightEstimator
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for _, utxo := range selectedUtxos {
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switch {
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case txscript.IsPayToWitnessPubKeyHash(utxo.PkScript):
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weightEstimate.AddP2WKHInput()
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case txscript.IsPayToScriptHash(utxo.PkScript):
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weightEstimate.AddNestedP2WKHInput()
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default:
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return nil, 0, 0, fmt.Errorf("unsupported address "+
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"type: %x", utxo.PkScript)
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}
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}
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// Channel funding multisig output is P2WSH.
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weightEstimate.AddP2WSHOutput()
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// At this point we've got two possibilities, either create a
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// change output, or not. We'll first try without creating a
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// change output.
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//
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// Estimate the fee required for a transaction without a change
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// output.
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totalWeight := int64(weightEstimate.Weight())
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requiredFee := feeRate.FeeForWeight(totalWeight)
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// For a transaction without a change output, we'll let everything go
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// to our multi-sig output after subtracting fees.
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outputAmt := totalSat - requiredFee
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changeAmt := btcutil.Amount(0)
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// If the the output is too small after subtracting the fee, the coin
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// selection cannot be performed with an amount this small.
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if outputAmt <= dustLimit {
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return nil, 0, 0, fmt.Errorf("output amount(%v) after "+
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"subtracting fees(%v) below dust limit(%v)", outputAmt,
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requiredFee, dustLimit)
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}
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// We were able to create a transaction with no change from the
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// selected inputs. We'll remember the resulting values for
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// now, while we try to add a change output. Assume that change output
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// is a P2WKH output.
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weightEstimate.AddP2WKHOutput()
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// Now that we have added the change output, redo the fee
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// estimate.
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totalWeight = int64(weightEstimate.Weight())
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requiredFee = feeRate.FeeForWeight(totalWeight)
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// For a transaction with a change output, everything we don't spend
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// will go to change.
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newChange := totalSat - amt
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newOutput := amt - requiredFee
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// If adding a change output leads to both outputs being above
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// the dust limit, we'll add the change output. Otherwise we'll
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// go with the no change tx we originally found.
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if newChange > dustLimit && newOutput > dustLimit {
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outputAmt = newOutput
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changeAmt = newChange
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}
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// Sanity check the resulting output values to make sure we
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// don't burn a great part to fees.
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totalOut := outputAmt + changeAmt
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fee := totalSat - totalOut
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// Fail if more than 20% goes to fees.
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// TODO(halseth): smarter fee limit. Make configurable or dynamic wrt
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// total funding size?
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if fee > totalOut/5 {
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return nil, 0, 0, fmt.Errorf("fee %v on total output"+
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"value %v", fee, totalOut)
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}
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return selectedUtxos, outputAmt, changeAmt, nil
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}
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