377 lines
11 KiB
Go
377 lines
11 KiB
Go
// Copyright (c) 2018 The btcsuite developers
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// Use of this source code is governed by an ISC
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// license that can be found in the LICENSE file.
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package psbt
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// The Updater requires provision of a single PSBT and is able to add data to
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// both input and output sections. It can be called repeatedly to add more
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// data. It also allows addition of signatures via the addPartialSignature
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// function; this is called internally to the package in the Sign() function of
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// Updater, located in signer.go
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import (
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"bytes"
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"crypto/sha256"
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"github.com/lbryio/lbcd/txscript"
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"github.com/lbryio/lbcd/wire"
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"github.com/lbryio/lbcutil"
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)
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// Updater encapsulates the role 'Updater' as specified in BIP174; it accepts
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// Psbt structs and has methods to add fields to the inputs and outputs.
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type Updater struct {
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Upsbt *Packet
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}
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// NewUpdater returns a new instance of Updater, if the passed Psbt struct is
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// in a valid form, else an error.
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func NewUpdater(p *Packet) (*Updater, error) {
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if err := p.SanityCheck(); err != nil {
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return nil, err
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}
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return &Updater{Upsbt: p}, nil
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}
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// AddInNonWitnessUtxo adds the utxo information for an input which is
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// non-witness. This requires provision of a full transaction (which is the
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// source of the corresponding prevOut), and the input index. If addition of
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// this key-value pair to the Psbt fails, an error is returned.
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func (p *Updater) AddInNonWitnessUtxo(tx *wire.MsgTx, inIndex int) error {
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if inIndex > len(p.Upsbt.Inputs)-1 {
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return ErrInvalidPrevOutNonWitnessTransaction
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}
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p.Upsbt.Inputs[inIndex].NonWitnessUtxo = tx
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if err := p.Upsbt.SanityCheck(); err != nil {
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return ErrInvalidPsbtFormat
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}
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return nil
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}
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// AddInWitnessUtxo adds the utxo information for an input which is witness.
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// This requires provision of a full transaction *output* (which is the source
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// of the corresponding prevOut); not the full transaction because BIP143 means
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// the output information is sufficient, and the input index. If addition of
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// this key-value pair to the Psbt fails, an error is returned.
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func (p *Updater) AddInWitnessUtxo(txout *wire.TxOut, inIndex int) error {
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if inIndex > len(p.Upsbt.Inputs)-1 {
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return ErrInvalidPsbtFormat
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}
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p.Upsbt.Inputs[inIndex].WitnessUtxo = txout
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if err := p.Upsbt.SanityCheck(); err != nil {
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return ErrInvalidPsbtFormat
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}
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return nil
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}
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// addPartialSignature allows the Updater role to insert fields of type partial
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// signature into a Psbt, consisting of both the pubkey (as keydata) and the
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// ECDSA signature (as value). Note that the Signer role is encapsulated in
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// this function; signatures are only allowed to be added that follow the
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// sanity-check on signing rules explained in the BIP under `Signer`; if the
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// rules are not satisfied, an ErrInvalidSignatureForInput is returned.
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//
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// NOTE: This function does *not* validate the ECDSA signature itself.
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func (p *Updater) addPartialSignature(inIndex int, sig []byte,
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pubkey []byte) error {
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partialSig := PartialSig{
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PubKey: pubkey, Signature: sig,
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}
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// First validate the passed (sig, pub).
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if !partialSig.checkValid() {
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return ErrInvalidPsbtFormat
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}
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pInput := p.Upsbt.Inputs[inIndex]
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// First check; don't add duplicates.
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for _, x := range pInput.PartialSigs {
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if bytes.Equal(x.PubKey, partialSig.PubKey) {
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return ErrDuplicateKey
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}
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}
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// Attaching signature without utxo field is not allowed.
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if pInput.WitnessUtxo == nil && pInput.NonWitnessUtxo == nil {
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return ErrInvalidPsbtFormat
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}
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// Next, we perform a series of additional sanity checks.
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if pInput.NonWitnessUtxo != nil {
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if len(p.Upsbt.UnsignedTx.TxIn) < inIndex+1 {
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return ErrInvalidPrevOutNonWitnessTransaction
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}
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if pInput.NonWitnessUtxo.TxHash() !=
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p.Upsbt.UnsignedTx.TxIn[inIndex].PreviousOutPoint.Hash {
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return ErrInvalidSignatureForInput
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}
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// To validate that the redeem script matches, we must pull out
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// the scriptPubKey of the corresponding output and compare
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// that with the P2SH scriptPubKey that is generated by
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// redeemScript.
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if pInput.RedeemScript != nil {
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outIndex := p.Upsbt.UnsignedTx.TxIn[inIndex].PreviousOutPoint.Index
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scriptPubKey := pInput.NonWitnessUtxo.TxOut[outIndex].PkScript
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scriptHash := lbcutil.Hash160(pInput.RedeemScript)
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scriptHashScript, err := txscript.NewScriptBuilder().
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AddOp(txscript.OP_HASH160).
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AddData(scriptHash).
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AddOp(txscript.OP_EQUAL).
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Script()
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if err != nil {
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return err
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}
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if !bytes.Equal(scriptHashScript, scriptPubKey) {
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return ErrInvalidSignatureForInput
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}
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}
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}
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// It could be that we set both the non-witness and witness UTXO fields
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// in case it's from a wallet that patched the CVE-2020-14199
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// vulnerability. We detect whether the input being spent is actually a
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// witness input and then copy it over to the witness UTXO field in the
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// signer. Run the witness checks as well, even if we might already have
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// checked the script hash. But that should be a negligible performance
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// penalty.
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if pInput.WitnessUtxo != nil {
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scriptPubKey := pInput.WitnessUtxo.PkScript
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var script []byte
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if pInput.RedeemScript != nil {
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scriptHash := lbcutil.Hash160(pInput.RedeemScript)
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scriptHashScript, err := txscript.NewScriptBuilder().
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AddOp(txscript.OP_HASH160).
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AddData(scriptHash).
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AddOp(txscript.OP_EQUAL).
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Script()
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if err != nil {
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return err
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}
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if !bytes.Equal(scriptHashScript, scriptPubKey) {
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return ErrInvalidSignatureForInput
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}
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script = pInput.RedeemScript
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} else {
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script = scriptPubKey
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}
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// If a witnessScript field is present, this is a P2WSH,
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// whether nested or not (that is handled by the assignment to
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// `script` above); in that case, sanity check that `script` is
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// the p2wsh of witnessScript. Contrariwise, if no
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// witnessScript field is present, this will be signed as
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// p2wkh.
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if pInput.WitnessScript != nil {
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witnessScriptHash := sha256.Sum256(pInput.WitnessScript)
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witnessScriptHashScript, err := txscript.NewScriptBuilder().
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AddOp(txscript.OP_0).
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AddData(witnessScriptHash[:]).
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Script()
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if err != nil {
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return err
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}
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if !bytes.Equal(script, witnessScriptHashScript[:]) {
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return ErrInvalidSignatureForInput
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}
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} else {
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// Otherwise, this is a p2wkh input.
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pubkeyHash := lbcutil.Hash160(pubkey)
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pubkeyHashScript, err := txscript.NewScriptBuilder().
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AddOp(txscript.OP_0).
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AddData(pubkeyHash).
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Script()
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if err != nil {
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return err
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}
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// Validate that we're able to properly reconstruct the
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// witness program.
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if !bytes.Equal(pubkeyHashScript, script) {
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return ErrInvalidSignatureForInput
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}
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}
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}
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p.Upsbt.Inputs[inIndex].PartialSigs = append(
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p.Upsbt.Inputs[inIndex].PartialSigs, &partialSig,
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)
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if err := p.Upsbt.SanityCheck(); err != nil {
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return err
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}
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// Addition of a non-duplicate-key partial signature cannot violate
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// sanity-check rules.
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return nil
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}
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// AddInSighashType adds the sighash type information for an input. The
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// sighash type is passed as a 32 bit unsigned integer, along with the index
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// for the input. An error is returned if addition of this key-value pair to
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// the Psbt fails.
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func (p *Updater) AddInSighashType(sighashType txscript.SigHashType,
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inIndex int) error {
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p.Upsbt.Inputs[inIndex].SighashType = sighashType
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if err := p.Upsbt.SanityCheck(); err != nil {
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return err
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}
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return nil
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}
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// AddInRedeemScript adds the redeem script information for an input. The
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// redeem script is passed serialized, as a byte slice, along with the index of
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// the input. An error is returned if addition of this key-value pair to the
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// Psbt fails.
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func (p *Updater) AddInRedeemScript(redeemScript []byte,
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inIndex int) error {
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p.Upsbt.Inputs[inIndex].RedeemScript = redeemScript
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if err := p.Upsbt.SanityCheck(); err != nil {
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return ErrInvalidPsbtFormat
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}
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return nil
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}
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// AddInWitnessScript adds the witness script information for an input. The
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// witness script is passed serialized, as a byte slice, along with the index
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// of the input. An error is returned if addition of this key-value pair to the
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// Psbt fails.
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func (p *Updater) AddInWitnessScript(witnessScript []byte,
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inIndex int) error {
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p.Upsbt.Inputs[inIndex].WitnessScript = witnessScript
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if err := p.Upsbt.SanityCheck(); err != nil {
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return err
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}
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return nil
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}
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// AddInBip32Derivation takes a master key fingerprint as defined in BIP32, a
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// BIP32 path as a slice of uint32 values, and a serialized pubkey as a byte
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// slice, along with the integer index of the input, and inserts this data into
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// that input.
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//
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// NOTE: This can be called multiple times for the same input. An error is
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// returned if addition of this key-value pair to the Psbt fails.
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func (p *Updater) AddInBip32Derivation(masterKeyFingerprint uint32,
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bip32Path []uint32, pubKeyData []byte, inIndex int) error {
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bip32Derivation := Bip32Derivation{
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PubKey: pubKeyData,
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MasterKeyFingerprint: masterKeyFingerprint,
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Bip32Path: bip32Path,
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}
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if !bip32Derivation.checkValid() {
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return ErrInvalidPsbtFormat
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}
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// Don't allow duplicate keys
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for _, x := range p.Upsbt.Inputs[inIndex].Bip32Derivation {
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if bytes.Equal(x.PubKey, bip32Derivation.PubKey) {
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return ErrDuplicateKey
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}
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}
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p.Upsbt.Inputs[inIndex].Bip32Derivation = append(
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p.Upsbt.Inputs[inIndex].Bip32Derivation, &bip32Derivation,
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)
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if err := p.Upsbt.SanityCheck(); err != nil {
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return err
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}
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return nil
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}
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// AddOutBip32Derivation takes a master key fingerprint as defined in BIP32, a
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// BIP32 path as a slice of uint32 values, and a serialized pubkey as a byte
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// slice, along with the integer index of the output, and inserts this data
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// into that output.
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//
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// NOTE: That this can be called multiple times for the same output. An error
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// is returned if addition of this key-value pair to the Psbt fails.
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func (p *Updater) AddOutBip32Derivation(masterKeyFingerprint uint32,
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bip32Path []uint32, pubKeyData []byte, outIndex int) error {
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bip32Derivation := Bip32Derivation{
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PubKey: pubKeyData,
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MasterKeyFingerprint: masterKeyFingerprint,
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Bip32Path: bip32Path,
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}
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if !bip32Derivation.checkValid() {
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return ErrInvalidPsbtFormat
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}
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// Don't allow duplicate keys
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for _, x := range p.Upsbt.Outputs[outIndex].Bip32Derivation {
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if bytes.Equal(x.PubKey, bip32Derivation.PubKey) {
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return ErrDuplicateKey
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}
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}
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p.Upsbt.Outputs[outIndex].Bip32Derivation = append(
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p.Upsbt.Outputs[outIndex].Bip32Derivation, &bip32Derivation,
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)
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if err := p.Upsbt.SanityCheck(); err != nil {
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return err
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}
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return nil
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}
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// AddOutRedeemScript takes a redeem script as a byte slice and appends it to
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// the output at index outIndex.
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func (p *Updater) AddOutRedeemScript(redeemScript []byte,
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outIndex int) error {
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p.Upsbt.Outputs[outIndex].RedeemScript = redeemScript
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if err := p.Upsbt.SanityCheck(); err != nil {
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return ErrInvalidPsbtFormat
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}
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return nil
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}
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// AddOutWitnessScript takes a witness script as a byte slice and appends it to
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// the output at index outIndex.
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func (p *Updater) AddOutWitnessScript(witnessScript []byte,
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outIndex int) error {
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p.Upsbt.Outputs[outIndex].WitnessScript = witnessScript
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if err := p.Upsbt.SanityCheck(); err != nil {
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return err
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}
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return nil
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}
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