585 lines
16 KiB
Go
585 lines
16 KiB
Go
/*
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* Copyright (c) 2013 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 main
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import (
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"bytes"
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"errors"
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"fmt"
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"github.com/conformal/btcjson"
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"github.com/conformal/btcutil"
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"github.com/conformal/btcwallet/tx"
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"github.com/conformal/btcwallet/wallet"
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"github.com/conformal/btcwire"
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"github.com/conformal/btcws"
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"sync"
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)
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var accounts = NewAccountStore()
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// Account is a structure containing all the components for a
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// complete wallet. It contains the Armory-style wallet (to store
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// addresses and keys), and tx and utxo data stores, along with locks
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// to prevent against incorrect multiple access.
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type Account struct {
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*wallet.Wallet
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mtx sync.RWMutex
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name string
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dirty bool
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fullRescan bool
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NewBlockTxJSONID uint64
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SpentOutpointJSONID uint64
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UtxoStore struct {
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sync.RWMutex
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dirty bool
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s tx.UtxoStore
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}
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TxStore struct {
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sync.RWMutex
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dirty bool
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s tx.TxStore
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}
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}
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// AccountStore stores all wallets currently being handled by
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// btcwallet. Wallet are stored in a map with the account name as the
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// key. A RWMutex is used to protect against incorrect concurrent
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// access.
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type AccountStore struct {
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sync.Mutex
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m map[string]*Account
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}
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// NewAccountStore returns an initialized and empty AccountStore.
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func NewAccountStore() *AccountStore {
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return &AccountStore{
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m: make(map[string]*Account),
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}
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}
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// Rollback rolls back each Account saved in the store.
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//
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// TODO(jrick): This must also roll back the UTXO and TX stores, and notify
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// all wallets of new account balances.
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func (s *AccountStore) Rollback(height int32, hash *btcwire.ShaHash) {
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for _, a := range s.m {
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a.Rollback(height, hash)
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}
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}
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// Rollback reverts each stored Account to a state before the block
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// with the passed chainheight and block hash was connected to the main
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// chain. This is used to remove transactions and utxos for each wallet
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// that occured on a chain no longer considered to be the main chain.
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func (a *Account) Rollback(height int32, hash *btcwire.ShaHash) {
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a.UtxoStore.Lock()
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a.UtxoStore.dirty = a.UtxoStore.dirty || a.UtxoStore.s.Rollback(height, hash)
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a.UtxoStore.Unlock()
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a.TxStore.Lock()
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a.TxStore.dirty = a.TxStore.dirty || a.TxStore.s.Rollback(height, hash)
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a.TxStore.Unlock()
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if err := a.writeDirtyToDisk(); err != nil {
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log.Errorf("cannot sync dirty wallet: %v", err)
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}
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}
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// CalculateBalance sums the amounts of all unspent transaction
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// outputs to addresses of a wallet and returns the balance as a
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// float64.
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//
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// If confirmations is 0, all UTXOs, even those not present in a
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// block (height -1), will be used to get the balance. Otherwise,
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// a UTXO must be in a block. If confirmations is 1 or greater,
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// the balance will be calculated based on how many how many blocks
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// include a UTXO.
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func (a *Account) CalculateBalance(confirms int) float64 {
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var bal uint64 // Measured in satoshi
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bs, err := GetCurBlock()
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if bs.Height == int32(btcutil.BlockHeightUnknown) || err != nil {
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return 0.
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}
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a.UtxoStore.RLock()
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for _, u := range a.UtxoStore.s {
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// Utxos not yet in blocks (height -1) should only be
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// added if confirmations is 0.
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if confirms == 0 || (u.Height != -1 && int(bs.Height-u.Height+1) >= confirms) {
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bal += u.Amt
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}
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}
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a.UtxoStore.RUnlock()
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return float64(bal) / float64(btcutil.SatoshiPerBitcoin)
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}
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// DumpPrivKeys returns the WIF-encoded private keys for all addresses
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// non-watching addresses in a wallets.
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func (a *Account) DumpPrivKeys() ([]string, error) {
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a.mtx.RLock()
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defer a.mtx.RUnlock()
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// Iterate over each active address, appending the private
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// key to privkeys.
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var privkeys []string
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for _, addr := range a.GetActiveAddresses() {
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key, err := a.GetAddressKey(addr.Address)
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if err != nil {
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return nil, err
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}
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encKey, err := btcutil.EncodePrivateKey(key.D.Bytes(),
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a.Net(), addr.Compressed)
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if err != nil {
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return nil, err
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}
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privkeys = append(privkeys, encKey)
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}
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return privkeys, nil
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}
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// DumpWIFPrivateKey returns the WIF encoded private key for a
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// single wallet address.
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func (a *Account) DumpWIFPrivateKey(address string) (string, error) {
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a.mtx.RLock()
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defer a.mtx.RUnlock()
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// Get private key from wallet if it exists.
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key, err := a.GetAddressKey(address)
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if err != nil {
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return "", err
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}
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// Get address info. This is needed to determine whether
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// the pubkey is compressed or not.
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info, err := a.GetAddressInfo(address)
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if err != nil {
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return "", err
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}
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// Return WIF-encoding of the private key.
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return btcutil.EncodePrivateKey(key.D.Bytes(), a.Net(), info.Compressed)
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}
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// ImportWIFPrivateKey takes a WIF encoded private key and adds it to the
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// wallet. If the import is successful, the payment address string is
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// returned.
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func (a *Account) ImportWIFPrivateKey(wif, label string,
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bs *wallet.BlockStamp) (string, error) {
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// Decode WIF private key and perform sanity checking.
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privkey, net, compressed, err := btcutil.DecodePrivateKey(wif)
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if err != nil {
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return "", err
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}
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if net != a.Net() {
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return "", errors.New("wrong network")
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}
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// Attempt to import private key into wallet.
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a.mtx.Lock()
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addr, err := a.ImportPrivateKey(privkey, compressed, bs)
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if err != nil {
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a.mtx.Unlock()
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return "", err
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}
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// Immediately write dirty wallet to disk.
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//
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// TODO(jrick): change writeDirtyToDisk to not grab the writer lock.
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// Don't want to let another goroutine waiting on the mutex to grab
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// the mutex before it is written to disk.
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a.dirty = true
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a.mtx.Unlock()
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if err := a.writeDirtyToDisk(); err != nil {
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log.Errorf("cannot write dirty wallet: %v", err)
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}
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log.Infof("Imported payment address %v", addr)
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// Return the payment address string of the imported private key.
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return addr, nil
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}
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// Track requests btcd to send notifications of new transactions for
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// each address stored in a wallet and sets up a new reply handler for
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// these notifications.
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func (a *Account) Track() {
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n := <-NewJSONID
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a.mtx.Lock()
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a.NewBlockTxJSONID = n
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a.mtx.Unlock()
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replyHandlers.Lock()
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replyHandlers.m[n] = a.newBlockTxOutHandler
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replyHandlers.Unlock()
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for _, addr := range a.GetActiveAddresses() {
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a.ReqNewTxsForAddress(addr.Address)
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}
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n = <-NewJSONID
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a.mtx.Lock()
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a.SpentOutpointJSONID = n
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a.mtx.Unlock()
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replyHandlers.Lock()
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replyHandlers.m[n] = a.spentUtxoHandler
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replyHandlers.Unlock()
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a.UtxoStore.RLock()
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for _, utxo := range a.UtxoStore.s {
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a.ReqSpentUtxoNtfn(utxo)
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}
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a.UtxoStore.RUnlock()
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}
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// RescanActiveAddresses requests btcd to rescan the blockchain for new
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// transactions to all active wallet addresses. This is needed for
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// catching btcwallet up to a long-running btcd process, as otherwise
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// it would have missed notifications as blocks are attached to the
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// main chain.
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func (a *Account) RescanActiveAddresses() {
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// Determine the block to begin the rescan from.
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beginBlock := int32(0)
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if a.fullRescan {
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// Need to perform a complete rescan since the wallet creation
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// block.
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beginBlock = a.EarliestBlockHeight()
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log.Debugf("Rescanning account '%v' for new transactions since block height %v",
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a.name, beginBlock)
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} else {
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// The last synced block height should be used the starting
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// point for block rescanning. Grab the block stamp here.
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bs := a.SyncedWith()
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log.Debugf("Rescanning account '%v' for new transactions since block height %v hash %v",
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a.name, bs.Height, bs.Hash)
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// If we're synced with block x, must scan the blocks x+1 to best block.
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beginBlock = bs.Height + 1
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}
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// Rescan active addresses starting at the determined block height.
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a.RescanAddresses(beginBlock, a.ActivePaymentAddresses())
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}
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// RescanAddresses requests btcd to rescan a set of addresses. This
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// is needed when, for example, importing private key(s), where btcwallet
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// is synced with btcd for all but several address.
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func (a *Account) RescanAddresses(beginBlock int32, addrs map[string]struct{}) {
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n := <-NewJSONID
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cmd, err := btcws.NewRescanCmd(fmt.Sprintf("btcwallet(%v)", n),
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beginBlock, addrs)
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if err != nil {
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log.Errorf("cannot create rescan request: %v", err)
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return
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}
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mcmd, err := cmd.MarshalJSON()
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if err != nil {
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log.Errorf("cannot create rescan request: %v", err)
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return
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}
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replyHandlers.Lock()
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replyHandlers.m[n] = func(result interface{}, e *btcjson.Error) bool {
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// Rescan is compatible with new txs from connected block
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// notifications, so use that handler.
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_ = a.newBlockTxOutHandler(result, e)
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if result != nil {
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// Notify frontends of new account balance.
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confirmed := a.CalculateBalance(1)
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unconfirmed := a.CalculateBalance(0) - confirmed
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NotifyWalletBalance(frontendNotificationMaster, a.name, confirmed)
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NotifyWalletBalanceUnconfirmed(frontendNotificationMaster, a.name, unconfirmed)
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return false
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}
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if bs, err := GetCurBlock(); err == nil {
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a.mtx.Lock()
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a.Wallet.SetSyncedWith(&bs)
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a.dirty = true
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a.mtx.Unlock()
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if err = a.writeDirtyToDisk(); err != nil {
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log.Errorf("cannot sync dirty wallet: %v",
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err)
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}
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}
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// If result is nil, the rescan has completed. Returning
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// true removes this handler.
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return true
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}
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replyHandlers.Unlock()
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btcdMsgs <- mcmd
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}
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// SortedActivePaymentAddresses returns a slice of all active payment
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// addresses in an account.
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func (a *Account) SortedActivePaymentAddresses() []string {
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a.mtx.RLock()
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defer a.mtx.RUnlock()
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infos := a.GetSortedActiveAddresses()
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addrs := make([]string, len(infos))
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for i, addr := range infos {
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addrs[i] = addr.Address
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}
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return addrs
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}
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// ActivePaymentAddresses returns a set of all active pubkey hashes
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// in an account.
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func (a *Account) ActivePaymentAddresses() map[string]struct{} {
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a.mtx.RLock()
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defer a.mtx.RUnlock()
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infos := a.GetActiveAddresses()
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addrs := make(map[string]struct{}, len(infos))
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for _, info := range infos {
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addrs[info.Address] = struct{}{}
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}
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return addrs
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}
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// ReqNewTxsForAddress sends a message to btcd to request tx updates
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// for addr for each new block that is added to the blockchain.
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func (a *Account) ReqNewTxsForAddress(addr string) {
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log.Debugf("Requesting notifications of TXs sending to address %v", addr)
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a.mtx.RLock()
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n := a.NewBlockTxJSONID
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a.mtx.RUnlock()
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cmd := btcws.NewNotifyNewTXsCmd(fmt.Sprintf("btcwallet(%d)", n),
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[]string{addr})
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mcmd, err := cmd.MarshalJSON()
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if err != nil {
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log.Errorf("cannot request transaction notifications: %v", err)
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}
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btcdMsgs <- mcmd
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}
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// ReqSpentUtxoNtfn sends a message to btcd to request updates for when
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// a stored UTXO has been spent.
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func (a *Account) ReqSpentUtxoNtfn(u *tx.Utxo) {
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log.Debugf("Requesting spent UTXO notifications for Outpoint hash %s index %d",
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u.Out.Hash, u.Out.Index)
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a.mtx.RLock()
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n := a.SpentOutpointJSONID
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a.mtx.RUnlock()
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cmd := btcws.NewNotifySpentCmd(fmt.Sprintf("btcwallet(%d)", n),
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(*btcwire.OutPoint)(&u.Out))
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mcmd, err := cmd.MarshalJSON()
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if err != nil {
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log.Errorf("cannot create spent request: %v", err)
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return
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}
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btcdMsgs <- mcmd
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}
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// spentUtxoHandler is the handler function for btcd spent UTXO notifications
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// resulting from transactions in newly-attached blocks.
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func (a *Account) spentUtxoHandler(result interface{}, e *btcjson.Error) bool {
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if e != nil {
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log.Errorf("Spent UTXO Handler: Error %d received from btcd: %s",
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e.Code, e.Message)
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return false
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}
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v, ok := result.(map[string]interface{})
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if !ok {
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return false
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}
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txHashBE, ok := v["txhash"].(string)
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if !ok {
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log.Error("Spent UTXO Handler: Unspecified transaction hash.")
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return false
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}
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txHash, err := btcwire.NewShaHashFromStr(txHashBE)
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if err != nil {
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log.Errorf("Spent UTXO Handler: Bad transaction hash: %s", err)
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return false
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}
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index, ok := v["index"].(float64)
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if !ok {
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log.Error("Spent UTXO Handler: Unspecified index.")
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}
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_, _ = txHash, index
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// Never remove this handler.
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return false
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}
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// newBlockTxOutHandler is the handler function for btcd transaction
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// notifications resulting from newly-attached blocks.
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func (a *Account) newBlockTxOutHandler(result interface{}, e *btcjson.Error) bool {
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if e != nil {
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log.Errorf("Tx Handler: Error %d received from btcd: %s",
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e.Code, e.Message)
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return false
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}
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v, ok := result.(map[string]interface{})
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if !ok {
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// The first result sent from btcd is nil. This could be used to
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// indicate that the request for notifications succeeded.
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if result != nil {
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log.Errorf("Tx Handler: Unexpected result type %T.", result)
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}
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return false
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}
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sender, ok := v["sender"].(string)
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if !ok {
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log.Error("Tx Handler: Unspecified sender.")
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return false
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}
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receiver, ok := v["receiver"].(string)
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if !ok {
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log.Error("Tx Handler: Unspecified receiver.")
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return false
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}
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blockhashBE, ok := v["blockhash"].(string)
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if !ok {
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log.Error("Tx Handler: Unspecified block hash.")
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return false
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}
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height, ok := v["height"].(float64)
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if !ok {
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log.Error("Tx Handler: Unspecified height.")
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return false
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}
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txhashBE, ok := v["txhash"].(string)
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if !ok {
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log.Error("Tx Handler: Unspecified transaction hash.")
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return false
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}
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index, ok := v["index"].(float64)
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if !ok {
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log.Error("Tx Handler: Unspecified transaction index.")
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return false
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}
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amt, ok := v["amount"].(float64)
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if !ok {
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log.Error("Tx Handler: Unspecified amount.")
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return false
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}
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pkscript58, ok := v["pkscript"].(string)
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if !ok {
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log.Error("Tx Handler: Unspecified pubkey script.")
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return false
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}
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pkscript := btcutil.Base58Decode(pkscript58)
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spent := false
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if tspent, ok := v["spent"].(bool); ok {
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spent = tspent
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}
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// btcd sends the block and tx hashes as BE strings. Convert both
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// to a LE ShaHash.
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blockhash, err := btcwire.NewShaHashFromStr(blockhashBE)
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if err != nil {
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log.Errorf("Tx Handler: Block hash string cannot be parsed: %v", err)
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return false
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}
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txhash, err := btcwire.NewShaHashFromStr(txhashBE)
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if err != nil {
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log.Errorf("Tx Handler: Tx hash string cannot be parsed: %v", err)
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return false
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}
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// TODO(jrick): btcd does not find the sender yet.
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senderHash, _, _ := btcutil.DecodeAddress(sender)
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receiverHash, _, err := btcutil.DecodeAddress(receiver)
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if err != nil {
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log.Errorf("Tx Handler: receiver address can not be decoded: %v", err)
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return false
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}
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// Add to TxStore.
|
|
t := &tx.RecvTx{
|
|
Amt: uint64(amt),
|
|
}
|
|
copy(t.TxHash[:], txhash[:])
|
|
copy(t.BlockHash[:], blockhash[:])
|
|
copy(t.SenderAddr[:], senderHash)
|
|
copy(t.ReceiverAddr[:], receiverHash)
|
|
|
|
a.TxStore.Lock()
|
|
txs := a.TxStore.s
|
|
a.TxStore.s = append(txs, t)
|
|
a.TxStore.dirty = true
|
|
a.TxStore.Unlock()
|
|
|
|
// Add to UtxoStore if unspent.
|
|
if !spent {
|
|
// First, iterate through all stored utxos. If an unconfirmed utxo
|
|
// (not present in a block) has the same outpoint as this utxo,
|
|
// update the block height and hash.
|
|
a.UtxoStore.RLock()
|
|
for _, u := range a.UtxoStore.s {
|
|
if bytes.Equal(u.Out.Hash[:], txhash[:]) && u.Out.Index == uint32(index) {
|
|
// Found a either a duplicate, or a change UTXO. If not change,
|
|
// ignore it.
|
|
a.UtxoStore.RUnlock()
|
|
if u.Height != -1 {
|
|
return false
|
|
}
|
|
|
|
a.UtxoStore.Lock()
|
|
copy(u.BlockHash[:], blockhash[:])
|
|
u.Height = int32(height)
|
|
a.UtxoStore.dirty = true
|
|
a.UtxoStore.Unlock()
|
|
|
|
return false
|
|
}
|
|
}
|
|
a.UtxoStore.RUnlock()
|
|
|
|
// After iterating through all UTXOs, it was not a duplicate or
|
|
// change UTXO appearing in a block. Append a new Utxo to the end.
|
|
|
|
u := &tx.Utxo{
|
|
Amt: uint64(amt),
|
|
Height: int32(height),
|
|
Subscript: pkscript,
|
|
}
|
|
copy(u.Out.Hash[:], txhash[:])
|
|
u.Out.Index = uint32(index)
|
|
copy(u.AddrHash[:], receiverHash)
|
|
copy(u.BlockHash[:], blockhash[:])
|
|
a.UtxoStore.Lock()
|
|
a.UtxoStore.s = append(a.UtxoStore.s, u)
|
|
a.UtxoStore.dirty = true
|
|
a.UtxoStore.Unlock()
|
|
|
|
// If this notification came from mempool (TODO: currently
|
|
// unimplemented) notify the new unconfirmed balance immediately.
|
|
// Otherwise, wait until the blockconnection notifiation is processed.
|
|
}
|
|
|
|
// Never remove this handler.
|
|
return false
|
|
}
|