620 lines
20 KiB
Go
620 lines
20 KiB
Go
/*
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* Copyright (c) 2014 Conformal Systems LLC <info@conformal.com>
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*
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* Permission to use, copy, modify, and distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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package votingpool
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import (
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"fmt"
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"sort"
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"github.com/btcsuite/btcscript"
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"github.com/btcsuite/btcutil"
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"github.com/btcsuite/btcutil/hdkeychain"
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"github.com/conformal/btcwallet/waddrmgr"
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"github.com/conformal/btcwallet/walletdb"
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)
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const (
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minSeriesPubKeys = 3
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)
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// SeriesData represents a Series for a given Pool.
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type SeriesData struct {
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version uint32
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// Whether or not a series is active. This is serialized/deserialized but
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// for now there's no way to deactivate a series.
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active bool
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// A.k.a. "m" in "m of n signatures needed".
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reqSigs uint32
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publicKeys []*hdkeychain.ExtendedKey
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privateKeys []*hdkeychain.ExtendedKey
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}
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// Pool represents an arrangement of notary servers to securely
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// store and account for customer cryptocurrency deposits and to redeem
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// valid withdrawals. For details about how the arrangement works, see
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// http://opentransactions.org/wiki/index.php?title=Category:Voting_Pools
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type Pool struct {
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ID []byte
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seriesLookup map[uint32]*SeriesData
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manager *waddrmgr.Manager
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namespace walletdb.Namespace
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}
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// Create creates a new entry in the database with the given ID
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// and returns the Pool representing it.
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func Create(namespace walletdb.Namespace, m *waddrmgr.Manager, poolID []byte) (*Pool, error) {
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err := namespace.Update(
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func(tx walletdb.Tx) error {
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return putPool(tx, poolID)
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})
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if err != nil {
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str := fmt.Sprintf("unable to add voting pool %v to db", poolID)
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return nil, managerError(waddrmgr.ErrVotingPoolAlreadyExists, str, err)
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}
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return newPool(namespace, m, poolID), nil
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}
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// Load fetches the entry in the database with the given ID and returns the Pool
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// representing it.
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func Load(namespace walletdb.Namespace, m *waddrmgr.Manager, poolID []byte) (*Pool, error) {
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err := namespace.View(
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func(tx walletdb.Tx) error {
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if exists := existsPool(tx, poolID); !exists {
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str := fmt.Sprintf("unable to find voting pool %v in db", poolID)
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return managerError(waddrmgr.ErrVotingPoolNotExists, str, nil)
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}
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return nil
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})
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if err != nil {
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return nil, err
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}
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vp := newPool(namespace, m, poolID)
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if err = vp.LoadAllSeries(); err != nil {
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return nil, err
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}
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return vp, nil
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}
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// newPool creates a new Pool instance.
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func newPool(namespace walletdb.Namespace, m *waddrmgr.Manager, poolID []byte) *Pool {
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return &Pool{
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ID: poolID,
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seriesLookup: make(map[uint32]*SeriesData),
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manager: m,
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namespace: namespace,
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}
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}
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// LoadAndGetDepositScript generates and returns a deposit script for the given seriesID,
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// branch and index of the Pool identified by poolID.
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func LoadAndGetDepositScript(namespace walletdb.Namespace, m *waddrmgr.Manager, poolID string, seriesID, branch, index uint32) ([]byte, error) {
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pid := []byte(poolID)
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vp, err := Load(namespace, m, pid)
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if err != nil {
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return nil, err
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}
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script, err := vp.DepositScript(seriesID, branch, index)
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if err != nil {
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return nil, err
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}
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return script, nil
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}
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// LoadAndCreateSeries loads the Pool with the given ID, creating a new one if it doesn't
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// yet exist, and then creates and returns a Series with the given seriesID, rawPubKeys
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// and reqSigs. See CreateSeries for the constraints enforced on rawPubKeys and reqSigs.
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func LoadAndCreateSeries(namespace walletdb.Namespace, m *waddrmgr.Manager, version uint32,
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poolID string, seriesID, reqSigs uint32, rawPubKeys []string) error {
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pid := []byte(poolID)
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vp, err := Load(namespace, m, pid)
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if err != nil {
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managerErr := err.(waddrmgr.ManagerError)
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if managerErr.ErrorCode == waddrmgr.ErrVotingPoolNotExists {
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vp, err = Create(namespace, m, pid)
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if err != nil {
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return err
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}
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} else {
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return err
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}
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}
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return vp.CreateSeries(version, seriesID, reqSigs, rawPubKeys)
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}
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// LoadAndReplaceSeries loads the voting pool with the given ID and calls ReplaceSeries,
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// passing the given series ID, public keys and reqSigs to it.
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func LoadAndReplaceSeries(namespace walletdb.Namespace, m *waddrmgr.Manager, version uint32,
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poolID string, seriesID, reqSigs uint32, rawPubKeys []string) error {
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pid := []byte(poolID)
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vp, err := Load(namespace, m, pid)
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if err != nil {
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return err
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}
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return vp.ReplaceSeries(version, seriesID, reqSigs, rawPubKeys)
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}
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// LoadAndEmpowerSeries loads the voting pool with the given ID and calls EmpowerSeries,
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// passing the given series ID and private key to it.
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func LoadAndEmpowerSeries(namespace walletdb.Namespace, m *waddrmgr.Manager,
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poolID string, seriesID uint32, rawPrivKey string) error {
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pid := []byte(poolID)
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pool, err := Load(namespace, m, pid)
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if err != nil {
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return err
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}
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return pool.EmpowerSeries(seriesID, rawPrivKey)
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}
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// GetSeries returns the series with the given ID, or nil if it doesn't
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// exist.
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func (vp *Pool) GetSeries(seriesID uint32) *SeriesData {
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series, exists := vp.seriesLookup[seriesID]
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if !exists {
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return nil
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}
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return series
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}
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// saveSeriesToDisk stores the given series ID and data in the database,
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// first encrypting the public/private extended keys.
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func (vp *Pool) saveSeriesToDisk(seriesID uint32, data *SeriesData) error {
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var err error
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encryptedPubKeys := make([][]byte, len(data.publicKeys))
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for i, pubKey := range data.publicKeys {
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encryptedPubKeys[i], err = vp.manager.Encrypt(
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waddrmgr.CKTPublic, []byte(pubKey.String()))
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if err != nil {
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str := fmt.Sprintf("key %v failed encryption", pubKey)
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return managerError(waddrmgr.ErrCrypto, str, err)
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}
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}
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encryptedPrivKeys := make([][]byte, len(data.privateKeys))
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for i, privKey := range data.privateKeys {
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if privKey == nil {
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encryptedPrivKeys[i] = nil
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} else {
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encryptedPrivKeys[i], err = vp.manager.Encrypt(
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waddrmgr.CKTPrivate, []byte(privKey.String()))
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}
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if err != nil {
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str := fmt.Sprintf("key %v failed encryption", privKey)
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return managerError(waddrmgr.ErrCrypto, str, err)
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}
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}
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err = vp.namespace.Update(func(tx walletdb.Tx) error {
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return putSeries(tx, vp.ID, data.version, seriesID, data.active,
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data.reqSigs, encryptedPubKeys, encryptedPrivKeys)
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})
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if err != nil {
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str := fmt.Sprintf("cannot put series #%d into db", seriesID)
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return managerError(waddrmgr.ErrSeriesStorage, str, err)
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}
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return nil
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}
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// CanonicalKeyOrder will return a copy of the input canonically
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// ordered which is defined to be lexicographical.
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func CanonicalKeyOrder(keys []string) []string {
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orderedKeys := make([]string, len(keys))
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copy(orderedKeys, keys)
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sort.Sort(sort.StringSlice(orderedKeys))
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return orderedKeys
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}
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// Convert the given slice of strings into a slice of ExtendedKeys,
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// checking that all of them are valid public (and not private) keys,
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// and that there are no duplicates.
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func convertAndValidatePubKeys(rawPubKeys []string) ([]*hdkeychain.ExtendedKey, error) {
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seenKeys := make(map[string]bool)
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keys := make([]*hdkeychain.ExtendedKey, len(rawPubKeys))
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for i, rawPubKey := range rawPubKeys {
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if _, seen := seenKeys[rawPubKey]; seen {
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str := fmt.Sprintf("duplicated public key: %v", rawPubKey)
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return nil, managerError(waddrmgr.ErrKeyDuplicate, str, nil)
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}
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seenKeys[rawPubKey] = true
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key, err := hdkeychain.NewKeyFromString(rawPubKey)
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if err != nil {
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str := fmt.Sprintf("invalid extended public key %v", rawPubKey)
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return nil, managerError(waddrmgr.ErrKeyChain, str, err)
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}
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if key.IsPrivate() {
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str := fmt.Sprintf("private keys not accepted: %v", rawPubKey)
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return nil, managerError(waddrmgr.ErrKeyIsPrivate, str, nil)
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}
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keys[i] = key
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}
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return keys, nil
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}
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// putSeries creates a new seriesData with the given arguments, ordering the
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// given public keys (using CanonicalKeyOrder), validating and converting them
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// to hdkeychain.ExtendedKeys, saves that to disk and adds it to this voting
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// pool's seriesLookup map. It also ensures inRawPubKeys has at least
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// minSeriesPubKeys items and reqSigs is not greater than the number of items in
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// inRawPubKeys.
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func (vp *Pool) putSeries(version, seriesID, reqSigs uint32, inRawPubKeys []string) error {
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if len(inRawPubKeys) < minSeriesPubKeys {
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str := fmt.Sprintf("need at least %d public keys to create a series", minSeriesPubKeys)
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return managerError(waddrmgr.ErrTooFewPublicKeys, str, nil)
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}
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if reqSigs > uint32(len(inRawPubKeys)) {
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str := fmt.Sprintf(
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"the number of required signatures cannot be more than the number of keys")
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return managerError(waddrmgr.ErrTooManyReqSignatures, str, nil)
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}
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rawPubKeys := CanonicalKeyOrder(inRawPubKeys)
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keys, err := convertAndValidatePubKeys(rawPubKeys)
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if err != nil {
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return err
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}
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data := &SeriesData{
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version: version,
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active: false,
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reqSigs: reqSigs,
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publicKeys: keys,
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privateKeys: make([]*hdkeychain.ExtendedKey, len(keys)),
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}
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err = vp.saveSeriesToDisk(seriesID, data)
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if err != nil {
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return err
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}
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vp.seriesLookup[seriesID] = data
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return nil
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}
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// CreateSeries will create and return a new non-existing series.
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//
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// - rawPubKeys has to contain three or more public keys;
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// - reqSigs has to be less or equal than the number of public keys in rawPubKeys.
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func (vp *Pool) CreateSeries(version, seriesID, reqSigs uint32, rawPubKeys []string) error {
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if series := vp.GetSeries(seriesID); series != nil {
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str := fmt.Sprintf("series #%d already exists", seriesID)
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return managerError(waddrmgr.ErrSeriesAlreadyExists, str, nil)
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}
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return vp.putSeries(version, seriesID, reqSigs, rawPubKeys)
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}
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// ReplaceSeries will replace an already existing series.
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//
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// - rawPubKeys has to contain three or more public keys
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// - reqSigs has to be less or equal than the number of public keys in rawPubKeys.
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func (vp *Pool) ReplaceSeries(version, seriesID, reqSigs uint32, rawPubKeys []string) error {
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series := vp.GetSeries(seriesID)
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if series == nil {
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str := fmt.Sprintf("series #%d does not exist, cannot replace it", seriesID)
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return managerError(waddrmgr.ErrSeriesNotExists, str, nil)
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}
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if series.IsEmpowered() {
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str := fmt.Sprintf("series #%d has private keys and cannot be replaced", seriesID)
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return managerError(waddrmgr.ErrSeriesAlreadyEmpowered, str, nil)
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}
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return vp.putSeries(version, seriesID, reqSigs, rawPubKeys)
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}
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// decryptExtendedKey uses Manager.Decrypt() to decrypt the encrypted byte slice and return
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// an extended (public or private) key representing it.
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func (vp *Pool) decryptExtendedKey(keyType waddrmgr.CryptoKeyType, encrypted []byte) (*hdkeychain.ExtendedKey, error) {
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decrypted, err := vp.manager.Decrypt(keyType, encrypted)
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if err != nil {
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str := fmt.Sprintf("cannot decrypt key %v", encrypted)
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return nil, managerError(waddrmgr.ErrCrypto, str, err)
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}
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result, err := hdkeychain.NewKeyFromString(string(decrypted))
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zero(decrypted)
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if err != nil {
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str := fmt.Sprintf("cannot get key from string %v", decrypted)
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return nil, managerError(waddrmgr.ErrKeyChain, str, err)
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}
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return result, nil
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}
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// validateAndDecryptSeriesKeys checks that the length of the public and private key
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// slices is the same, decrypts them, ensures the non-nil private keys have a matching
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// public key and returns them.
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func validateAndDecryptKeys(rawPubKeys, rawPrivKeys [][]byte, vp *Pool) (pubKeys, privKeys []*hdkeychain.ExtendedKey, err error) {
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pubKeys = make([]*hdkeychain.ExtendedKey, len(rawPubKeys))
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privKeys = make([]*hdkeychain.ExtendedKey, len(rawPrivKeys))
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if len(pubKeys) != len(privKeys) {
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return nil, nil, managerError(waddrmgr.ErrKeysPrivatePublicMismatch,
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"the pub key and priv key arrays should have the same number of elements",
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nil)
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}
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for i, encryptedPub := range rawPubKeys {
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pubKey, err := vp.decryptExtendedKey(waddrmgr.CKTPublic, encryptedPub)
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if err != nil {
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return nil, nil, err
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}
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pubKeys[i] = pubKey
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encryptedPriv := rawPrivKeys[i]
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var privKey *hdkeychain.ExtendedKey
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if encryptedPriv == nil {
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privKey = nil
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} else {
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privKey, err = vp.decryptExtendedKey(waddrmgr.CKTPrivate, encryptedPriv)
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if err != nil {
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return nil, nil, err
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}
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}
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privKeys[i] = privKey
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if privKey != nil {
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checkPubKey, err := privKey.Neuter()
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if err != nil {
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str := fmt.Sprintf("cannot neuter key %v", privKey)
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return nil, nil, managerError(waddrmgr.ErrKeyNeuter, str, err)
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}
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if pubKey.String() != checkPubKey.String() {
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str := fmt.Sprintf("public key %v different than expected %v",
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pubKey, checkPubKey)
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return nil, nil, managerError(waddrmgr.ErrKeyMismatch, str, nil)
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}
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}
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}
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return pubKeys, privKeys, nil
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}
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// LoadAllSeries fetches all series (decrypting their public and private
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// extended keys) for this Pool from the database and populates the
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// seriesLookup map with them. If there are any private extended keys for
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// a series, it will also ensure they have a matching extended public key
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// in that series.
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func (vp *Pool) LoadAllSeries() error {
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var series map[uint32]*dbSeriesRow
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err := vp.namespace.View(func(tx walletdb.Tx) error {
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var err error
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series, err = loadAllSeries(tx, vp.ID)
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return err
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})
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if err != nil {
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return err
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}
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for id, series := range series {
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pubKeys, privKeys, err := validateAndDecryptKeys(
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series.pubKeysEncrypted, series.privKeysEncrypted, vp)
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if err != nil {
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return err
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}
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vp.seriesLookup[id] = &SeriesData{
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publicKeys: pubKeys,
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privateKeys: privKeys,
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reqSigs: series.reqSigs,
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}
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}
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return nil
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}
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// existsSeries checks whether a series is stored in the database.
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// Used solely by the series creation test.
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func (vp *Pool) existsSeries(seriesID uint32) (bool, error) {
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var exists bool
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err := vp.namespace.View(
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func(tx walletdb.Tx) error {
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bucket := tx.RootBucket().Bucket(vp.ID)
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if bucket == nil {
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exists = false
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return nil
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}
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exists = bucket.Get(uint32ToBytes(seriesID)) != nil
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return nil
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})
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if err != nil {
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return false, err
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}
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return exists, nil
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}
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// Change the order of the pubkeys based on branch number.
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// Given the three pubkeys ABC, this would mean:
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// - branch 0: CBA (reversed)
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// - branch 1: ABC (first key priority)
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// - branch 2: BAC (second key priority)
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// - branch 3: CAB (third key priority)
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func branchOrder(pks []*hdkeychain.ExtendedKey, branch uint32) ([]*hdkeychain.ExtendedKey, error) {
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if pks == nil {
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// This really shouldn't happen, but we want to be good citizens, so we
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// return an error instead of crashing.
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return nil, managerError(waddrmgr.ErrInvalidValue, "pks cannot be nil", nil)
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}
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if branch > uint32(len(pks)) {
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return nil, managerError(waddrmgr.ErrInvalidBranch, "branch number is bigger than number of public keys", nil)
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}
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if branch == 0 {
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numKeys := len(pks)
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res := make([]*hdkeychain.ExtendedKey, numKeys)
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copy(res, pks)
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// reverse pk
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for i, j := 0, numKeys-1; i < j; i, j = i+1, j-1 {
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res[i], res[j] = res[j], res[i]
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}
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return res, nil
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}
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tmp := make([]*hdkeychain.ExtendedKey, len(pks))
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tmp[0] = pks[branch-1]
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j := 1
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for i := 0; i < len(pks); i++ {
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if i != int(branch-1) {
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tmp[j] = pks[i]
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j++
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}
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}
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return tmp, nil
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}
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// DepositScriptAddress constructs a multi-signature redemption script using DepositScript
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// and returns the pay-to-script-hash-address for that script.
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func (vp *Pool) DepositScriptAddress(seriesID, branch, index uint32) (btcutil.Address, error) {
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script, err := vp.DepositScript(seriesID, branch, index)
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if err != nil {
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return nil, err
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}
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scriptHash := btcutil.Hash160(script)
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|
|
return btcutil.NewAddressScriptHashFromHash(scriptHash, vp.manager.Net())
|
|
}
|
|
|
|
// DepositScript constructs and returns a multi-signature redemption script where
|
|
// a certain number (Series.reqSigs) of the public keys belonging to the series
|
|
// with the given ID are required to sign the transaction for it to be successful.
|
|
func (vp *Pool) DepositScript(seriesID, branch, index uint32) ([]byte, error) {
|
|
series := vp.GetSeries(seriesID)
|
|
if series == nil {
|
|
str := fmt.Sprintf("series #%d does not exist", seriesID)
|
|
return nil, managerError(waddrmgr.ErrSeriesNotExists, str, nil)
|
|
}
|
|
|
|
pubKeys, err := branchOrder(series.publicKeys, branch)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
pks := make([]*btcutil.AddressPubKey, len(pubKeys))
|
|
for i, key := range pubKeys {
|
|
child, err := key.Child(index)
|
|
// TODO: implement getting the next index until we find a valid one,
|
|
// in case there is a hdkeychain.ErrInvalidChild.
|
|
if err != nil {
|
|
str := fmt.Sprintf("child #%d for this pubkey %d does not exist", index, i)
|
|
return nil, managerError(waddrmgr.ErrKeyChain, str, err)
|
|
}
|
|
pubkey, err := child.ECPubKey()
|
|
if err != nil {
|
|
str := fmt.Sprintf("child #%d for this pubkey %d does not exist", index, i)
|
|
return nil, managerError(waddrmgr.ErrKeyChain, str, err)
|
|
}
|
|
pks[i], err = btcutil.NewAddressPubKey(pubkey.SerializeCompressed(), vp.manager.Net())
|
|
if err != nil {
|
|
str := fmt.Sprintf(
|
|
"child #%d for this pubkey %d could not be converted to an address",
|
|
index, i)
|
|
return nil, managerError(waddrmgr.ErrKeyChain, str, err)
|
|
}
|
|
}
|
|
|
|
script, err := btcscript.MultiSigScript(pks, int(series.reqSigs))
|
|
if err != nil {
|
|
str := fmt.Sprintf("error while making multisig script hash, %d", len(pks))
|
|
return nil, managerError(waddrmgr.ErrScriptCreation, str, err)
|
|
}
|
|
|
|
return script, nil
|
|
}
|
|
|
|
// EmpowerSeries adds the given extended private key (in raw format) to the
|
|
// series with the given ID, thus allowing it to sign deposit/withdrawal
|
|
// scripts. The series with the given ID must exist, the key must be a valid
|
|
// private extended key and must match one of the series' extended public keys.
|
|
func (vp *Pool) EmpowerSeries(seriesID uint32, rawPrivKey string) error {
|
|
// make sure this series exists
|
|
series := vp.GetSeries(seriesID)
|
|
if series == nil {
|
|
str := fmt.Sprintf("series %d does not exist for this voting pool",
|
|
seriesID)
|
|
return managerError(waddrmgr.ErrSeriesNotExists, str, nil)
|
|
}
|
|
|
|
// Check that the private key is valid.
|
|
privKey, err := hdkeychain.NewKeyFromString(rawPrivKey)
|
|
if err != nil {
|
|
str := fmt.Sprintf("invalid extended private key %v", rawPrivKey)
|
|
return managerError(waddrmgr.ErrKeyChain, str, err)
|
|
}
|
|
if !privKey.IsPrivate() {
|
|
str := fmt.Sprintf(
|
|
"to empower a series you need the extended private key, not an extended public key %v",
|
|
privKey)
|
|
return managerError(waddrmgr.ErrKeyIsPublic, str, err)
|
|
}
|
|
|
|
pubKey, err := privKey.Neuter()
|
|
if err != nil {
|
|
str := fmt.Sprintf("invalid extended private key %v, can't convert to public key",
|
|
rawPrivKey)
|
|
return managerError(waddrmgr.ErrKeyNeuter, str, err)
|
|
}
|
|
|
|
lookingFor := pubKey.String()
|
|
found := false
|
|
|
|
// Make sure the private key has the corresponding public key in the series,
|
|
// to be able to empower it.
|
|
for i, publicKey := range series.publicKeys {
|
|
if publicKey.String() == lookingFor {
|
|
found = true
|
|
series.privateKeys[i] = privKey
|
|
}
|
|
}
|
|
|
|
if !found {
|
|
str := fmt.Sprintf(
|
|
"private Key does not have a corresponding public key in this series")
|
|
return managerError(waddrmgr.ErrKeysPrivatePublicMismatch, str, nil)
|
|
}
|
|
|
|
err = vp.saveSeriesToDisk(seriesID, series)
|
|
|
|
if err != nil {
|
|
return err
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
// IsEmpowered returns true if this series is empowered (i.e. if it has
|
|
// at least one private key loaded).
|
|
func (s *SeriesData) IsEmpowered() bool {
|
|
for _, key := range s.privateKeys {
|
|
if key != nil {
|
|
return true
|
|
}
|
|
}
|
|
return false
|
|
}
|
|
|
|
// managerError creates a waddrmgr.ManagerError given a set of arguments.
|
|
// XXX(lars): We should probably make our own votingpoolError function.
|
|
func managerError(c waddrmgr.ErrorCode, desc string, err error) waddrmgr.ManagerError {
|
|
return waddrmgr.ManagerError{ErrorCode: c, Description: desc, Err: err}
|
|
}
|
|
|
|
// zero sets all bytes in the passed slice to zero. This is used to
|
|
// explicitly clear private key material from memory.
|
|
//
|
|
// XXX(lars) there exists currently around 4-5 other zero functions
|
|
// with at least 3 different implementations. We should try to
|
|
// consolidate these.
|
|
func zero(b []byte) {
|
|
for i := range b {
|
|
b[i] ^= b[i]
|
|
}
|
|
}
|