mirror of
https://gitlab.com/pulsechaincom/go-pulse.git
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703 lines
17 KiB
Go
703 lines
17 KiB
Go
// eXtended ETHereum
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package xeth
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import (
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"bytes"
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"encoding/json"
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"fmt"
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"math/big"
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"sync"
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"time"
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"github.com/ethereum/go-ethereum/accounts"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/event"
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"github.com/ethereum/go-ethereum/event/filter"
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"github.com/ethereum/go-ethereum/logger"
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"github.com/ethereum/go-ethereum/p2p"
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"github.com/ethereum/go-ethereum/state"
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"github.com/ethereum/go-ethereum/whisper"
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)
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var (
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pipelogger = logger.NewLogger("XETH")
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filterTickerTime = 5 * time.Minute
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defaultGasPrice = big.NewInt(10000000000000) //150000000000
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defaultGas = big.NewInt(90000) //500000
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)
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// to resolve the import cycle
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type Backend interface {
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BlockProcessor() *core.BlockProcessor
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ChainManager() *core.ChainManager
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AccountManager() *accounts.Manager
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TxPool() *core.TxPool
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PeerCount() int
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IsListening() bool
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Peers() []*p2p.Peer
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BlockDb() common.Database
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StateDb() common.Database
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ExtraDb() common.Database
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EventMux() *event.TypeMux
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Whisper() *whisper.Whisper
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IsMining() bool
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StartMining() error
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StopMining()
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Version() string
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}
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// Frontend should be implemented by users of XEth. Its methods are
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// called whenever XEth makes a decision that requires user input.
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type Frontend interface {
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// UnlockAccount is called when a transaction needs to be signed
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// but the key corresponding to the transaction's sender is
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// locked.
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//
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// It should unlock the account with the given address and return
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// true if unlocking succeeded.
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UnlockAccount(address []byte) bool
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// This is called for all transactions inititated through
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// Transact. It should prompt the user to confirm the transaction
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// and return true if the transaction was acknowledged.
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//
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// ConfirmTransaction is not used for Call transactions
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// because they cannot change any state.
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ConfirmTransaction(tx *types.Transaction) bool
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}
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// dummyFrontend is a non-interactive frontend that allows all
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// transactions but cannot not unlock any keys.
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type dummyFrontend struct{}
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func (dummyFrontend) UnlockAccount([]byte) bool { return false }
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func (dummyFrontend) ConfirmTransaction(*types.Transaction) bool { return true }
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type XEth struct {
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eth Backend
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blockProcessor *core.BlockProcessor
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chainManager *core.ChainManager
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accountManager *accounts.Manager
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state *State
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whisper *Whisper
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frontend Frontend
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quit chan struct{}
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filterManager *filter.FilterManager
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logMut sync.RWMutex
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logs map[int]*logFilter
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messagesMut sync.RWMutex
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messages map[int]*whisperFilter
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// regmut sync.Mutex
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// register map[string][]*interface{} // TODO improve return type
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}
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// New creates an XEth that uses the given frontend.
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// If a nil Frontend is provided, a default frontend which
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// confirms all transactions will be used.
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func New(eth Backend, frontend Frontend) *XEth {
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xeth := &XEth{
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eth: eth,
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blockProcessor: eth.BlockProcessor(),
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chainManager: eth.ChainManager(),
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accountManager: eth.AccountManager(),
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whisper: NewWhisper(eth.Whisper()),
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quit: make(chan struct{}),
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filterManager: filter.NewFilterManager(eth.EventMux()),
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frontend: frontend,
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logs: make(map[int]*logFilter),
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messages: make(map[int]*whisperFilter),
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}
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if frontend == nil {
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xeth.frontend = dummyFrontend{}
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}
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xeth.state = NewState(xeth, xeth.chainManager.TransState())
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go xeth.start()
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go xeth.filterManager.Start()
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return xeth
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}
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func (self *XEth) start() {
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timer := time.NewTicker(2 * time.Second)
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done:
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for {
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select {
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case <-timer.C:
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self.logMut.Lock()
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self.messagesMut.Lock()
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for id, filter := range self.logs {
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if time.Since(filter.timeout) > filterTickerTime {
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self.filterManager.UninstallFilter(id)
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delete(self.logs, id)
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}
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}
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for id, filter := range self.messages {
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if time.Since(filter.timeout) > filterTickerTime {
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self.Whisper().Unwatch(id)
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delete(self.messages, id)
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}
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}
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self.messagesMut.Unlock()
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self.logMut.Unlock()
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case <-self.quit:
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break done
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}
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}
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}
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func (self *XEth) stop() {
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close(self.quit)
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}
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func (self *XEth) DefaultGas() *big.Int { return defaultGas }
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func (self *XEth) DefaultGasPrice() *big.Int { return defaultGasPrice }
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func (self *XEth) AtStateNum(num int64) *XEth {
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chain := self.Backend().ChainManager()
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var block *types.Block
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if num < 0 {
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num = chain.CurrentBlock().Number().Int64() + num + 1
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}
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block = chain.GetBlockByNumber(uint64(num))
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var st *state.StateDB
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if block != nil {
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st = state.New(block.Root(), self.Backend().StateDb())
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} else {
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st = chain.State()
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}
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return self.WithState(st)
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}
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func (self *XEth) Backend() Backend { return self.eth }
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func (self *XEth) WithState(statedb *state.StateDB) *XEth {
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xeth := &XEth{
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eth: self.eth,
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blockProcessor: self.blockProcessor,
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chainManager: self.chainManager,
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whisper: self.whisper,
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}
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xeth.state = NewState(xeth, statedb)
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return xeth
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}
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func (self *XEth) State() *State { return self.state }
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func (self *XEth) Whisper() *Whisper { return self.whisper }
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func (self *XEth) BlockByHash(strHash string) *Block {
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hash := common.FromHex(strHash)
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block := self.chainManager.GetBlock(hash)
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return NewBlock(block)
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}
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func (self *XEth) EthBlockByHash(strHash string) *types.Block {
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hash := common.FromHex(strHash)
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block := self.chainManager.GetBlock(hash)
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return block
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}
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func (self *XEth) EthTransactionByHash(hash string) *types.Transaction {
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data, _ := self.eth.ExtraDb().Get(common.FromHex(hash))
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if len(data) != 0 {
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return types.NewTransactionFromBytes(data)
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}
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return nil
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}
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func (self *XEth) BlockByNumber(num int64) *Block {
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if num == -1 {
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return NewBlock(self.chainManager.CurrentBlock())
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}
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return NewBlock(self.chainManager.GetBlockByNumber(uint64(num)))
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}
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func (self *XEth) EthBlockByNumber(num int64) *types.Block {
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if num == -1 {
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return self.chainManager.CurrentBlock()
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}
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return self.chainManager.GetBlockByNumber(uint64(num))
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}
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func (self *XEth) Block(v interface{}) *Block {
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if n, ok := v.(int32); ok {
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return self.BlockByNumber(int64(n))
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} else if str, ok := v.(string); ok {
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return self.BlockByHash(str)
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} else if f, ok := v.(float64); ok { // Don't ask ...
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return self.BlockByNumber(int64(f))
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}
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return nil
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}
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func (self *XEth) Accounts() []string {
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// TODO: check err?
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accounts, _ := self.eth.AccountManager().Accounts()
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accountAddresses := make([]string, len(accounts))
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for i, ac := range accounts {
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accountAddresses[i] = common.ToHex(ac.Address)
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}
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return accountAddresses
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}
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func (self *XEth) PeerCount() int {
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return self.eth.PeerCount()
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}
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func (self *XEth) IsMining() bool {
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return self.eth.IsMining()
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}
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func (self *XEth) SetMining(shouldmine bool) bool {
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ismining := self.eth.IsMining()
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if shouldmine && !ismining {
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err := self.eth.StartMining()
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return err == nil
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}
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if ismining && !shouldmine {
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self.eth.StopMining()
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}
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return self.eth.IsMining()
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}
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func (self *XEth) IsListening() bool {
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return self.eth.IsListening()
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}
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func (self *XEth) Coinbase() string {
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cb, _ := self.eth.AccountManager().Coinbase()
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return common.ToHex(cb)
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}
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func (self *XEth) NumberToHuman(balance string) string {
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b := common.Big(balance)
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return common.CurrencyToString(b)
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}
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func (self *XEth) StorageAt(addr, storageAddr string) string {
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storage := self.State().SafeGet(addr).StorageString(storageAddr)
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return common.ToHex(storage.Bytes())
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}
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func (self *XEth) BalanceAt(addr string) string {
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return self.State().SafeGet(addr).Balance().String()
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}
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func (self *XEth) TxCountAt(address string) int {
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return int(self.State().SafeGet(address).Nonce())
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}
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func (self *XEth) CodeAt(address string) string {
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return common.ToHex(self.State().SafeGet(address).Code())
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}
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func (self *XEth) IsContract(address string) bool {
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return len(self.State().SafeGet(address).Code()) > 0
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}
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func (self *XEth) SecretToAddress(key string) string {
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pair, err := crypto.NewKeyPairFromSec(common.FromHex(key))
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if err != nil {
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return ""
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}
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return common.ToHex(pair.Address())
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}
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func (self *XEth) RegisterFilter(args *core.FilterOptions) int {
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var id int
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filter := core.NewFilter(self.Backend())
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filter.SetOptions(args)
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filter.LogsCallback = func(logs state.Logs) {
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self.logMut.Lock()
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defer self.logMut.Unlock()
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self.logs[id].add(logs...)
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}
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id = self.filterManager.InstallFilter(filter)
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self.logs[id] = &logFilter{timeout: time.Now()}
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return id
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}
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func (self *XEth) UninstallFilter(id int) bool {
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if _, ok := self.logs[id]; ok {
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delete(self.logs, id)
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self.filterManager.UninstallFilter(id)
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return true
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}
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return false
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}
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func (self *XEth) NewFilterString(word string) int {
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var id int
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filter := core.NewFilter(self.Backend())
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callback := func(block *types.Block, logs state.Logs) {
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self.logMut.Lock()
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defer self.logMut.Unlock()
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for _, log := range logs {
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self.logs[id].add(log)
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}
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self.logs[id].add(&state.StateLog{})
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}
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switch word {
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case "pending":
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filter.PendingCallback = callback
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case "latest":
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filter.BlockCallback = callback
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}
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id = self.filterManager.InstallFilter(filter)
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self.logs[id] = &logFilter{timeout: time.Now()}
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return id
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}
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func (self *XEth) FilterChanged(id int) state.Logs {
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self.logMut.Lock()
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defer self.logMut.Unlock()
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if self.logs[id] != nil {
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return self.logs[id].get()
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}
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return nil
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}
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func (self *XEth) Logs(id int) state.Logs {
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self.logMut.Lock()
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defer self.logMut.Unlock()
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filter := self.filterManager.GetFilter(id)
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if filter != nil {
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return filter.Find()
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}
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return nil
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}
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func (self *XEth) AllLogs(args *core.FilterOptions) state.Logs {
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filter := core.NewFilter(self.Backend())
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filter.SetOptions(args)
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return filter.Find()
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}
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func (p *XEth) NewWhisperFilter(opts *Options) int {
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var id int
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opts.Fn = func(msg WhisperMessage) {
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p.messagesMut.Lock()
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defer p.messagesMut.Unlock()
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p.messages[id].add(msg) // = append(p.messages[id], msg)
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}
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id = p.Whisper().Watch(opts)
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p.messages[id] = &whisperFilter{timeout: time.Now()}
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return id
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}
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func (p *XEth) UninstallWhisperFilter(id int) bool {
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if _, ok := p.messages[id]; ok {
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delete(p.messages, id)
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return true
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}
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return false
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}
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func (self *XEth) MessagesChanged(id int) []WhisperMessage {
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self.messagesMut.Lock()
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defer self.messagesMut.Unlock()
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if self.messages[id] != nil {
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return self.messages[id].get()
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}
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return nil
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}
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// func (self *XEth) Register(args string) bool {
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// self.regmut.Lock()
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// defer self.regmut.Unlock()
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// if _, ok := self.register[args]; ok {
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// self.register[args] = nil // register with empty
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// }
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// return true
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// }
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// func (self *XEth) Unregister(args string) bool {
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// self.regmut.Lock()
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// defer self.regmut.Unlock()
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// if _, ok := self.register[args]; ok {
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// delete(self.register, args)
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// return true
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// }
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// return false
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// }
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// // TODO improve return type
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// func (self *XEth) PullWatchTx(args string) []*interface{} {
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// self.regmut.Lock()
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// defer self.regmut.Unlock()
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// txs := self.register[args]
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// self.register[args] = nil
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// return txs
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// }
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type KeyVal struct {
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Key string `json:"key"`
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Value string `json:"value"`
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}
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func (self *XEth) EachStorage(addr string) string {
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var values []KeyVal
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object := self.State().SafeGet(addr)
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it := object.Trie().Iterator()
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for it.Next() {
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values = append(values, KeyVal{common.ToHex(it.Key), common.ToHex(it.Value)})
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}
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valuesJson, err := json.Marshal(values)
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if err != nil {
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return ""
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}
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return string(valuesJson)
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}
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func (self *XEth) ToAscii(str string) string {
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padded := common.RightPadBytes([]byte(str), 32)
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return "0x" + common.ToHex(padded)
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}
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func (self *XEth) FromAscii(str string) string {
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if common.IsHex(str) {
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str = str[2:]
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}
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return string(bytes.Trim(common.FromHex(str), "\x00"))
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}
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func (self *XEth) FromNumber(str string) string {
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if common.IsHex(str) {
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str = str[2:]
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}
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return common.BigD(common.FromHex(str)).String()
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}
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func (self *XEth) PushTx(encodedTx string) (string, error) {
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tx := types.NewTransactionFromBytes(common.FromHex(encodedTx))
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err := self.eth.TxPool().Add(tx)
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if err != nil {
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return "", err
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}
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if tx.To() == nil {
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addr := core.AddressFromMessage(tx)
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return common.ToHex(addr), nil
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}
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return common.ToHex(tx.Hash()), nil
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}
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func (self *XEth) Call(fromStr, toStr, valueStr, gasStr, gasPriceStr, dataStr string) (string, error) {
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statedb := self.State().State() //self.chainManager.TransState()
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msg := callmsg{
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from: statedb.GetOrNewStateObject(common.FromHex(fromStr)),
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to: common.FromHex(toStr),
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gas: common.Big(gasStr),
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gasPrice: common.Big(gasPriceStr),
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value: common.Big(valueStr),
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data: common.FromHex(dataStr),
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}
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if msg.gas.Cmp(big.NewInt(0)) == 0 {
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msg.gas = defaultGas
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}
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if msg.gasPrice.Cmp(big.NewInt(0)) == 0 {
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msg.gasPrice = defaultGasPrice
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}
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block := self.chainManager.CurrentBlock()
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vmenv := core.NewEnv(statedb, self.chainManager, msg, block)
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res, err := vmenv.Call(msg.from, msg.to, msg.data, msg.gas, msg.gasPrice, msg.value)
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return common.ToHex(res), err
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}
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func (self *XEth) Transact(fromStr, toStr, valueStr, gasStr, gasPriceStr, codeStr string) (string, error) {
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var (
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from []byte
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to []byte
|
|
value = common.NewValue(valueStr)
|
|
gas = common.Big(gasStr)
|
|
price = common.Big(gasPriceStr)
|
|
data []byte
|
|
contractCreation bool
|
|
)
|
|
|
|
// TODO if no_private_key then
|
|
//if _, exists := p.register[args.From]; exists {
|
|
// p.register[args.From] = append(p.register[args.From], args)
|
|
//} else {
|
|
/*
|
|
account := accounts.Get(common.FromHex(args.From))
|
|
if account != nil {
|
|
if account.Unlocked() {
|
|
if !unlockAccount(account) {
|
|
return
|
|
}
|
|
}
|
|
|
|
result, _ := account.Transact(common.FromHex(args.To), common.FromHex(args.Value), common.FromHex(args.Gas), common.FromHex(args.GasPrice), common.FromHex(args.Data))
|
|
if len(result) > 0 {
|
|
*reply = common.ToHex(result)
|
|
}
|
|
} else if _, exists := p.register[args.From]; exists {
|
|
p.register[ags.From] = append(p.register[args.From], args)
|
|
}
|
|
*/
|
|
|
|
// TODO: align default values to have the same type, e.g. not depend on
|
|
// common.Value conversions later on
|
|
if gas.Cmp(big.NewInt(0)) == 0 {
|
|
gas = defaultGas
|
|
}
|
|
|
|
if price.Cmp(big.NewInt(0)) == 0 {
|
|
price = defaultGasPrice
|
|
}
|
|
|
|
from = common.FromHex(fromStr)
|
|
data = common.FromHex(codeStr)
|
|
to = common.FromHex(toStr)
|
|
if len(to) == 0 {
|
|
contractCreation = true
|
|
}
|
|
|
|
var tx *types.Transaction
|
|
if contractCreation {
|
|
tx = types.NewContractCreationTx(value.BigInt(), gas, price, data)
|
|
} else {
|
|
tx = types.NewTransactionMessage(to, value.BigInt(), gas, price, data)
|
|
}
|
|
|
|
state := self.chainManager.TxState()
|
|
nonce := state.NewNonce(from) //state.GetNonce(from)
|
|
tx.SetNonce(nonce)
|
|
|
|
if err := self.sign(tx, from, false); err != nil {
|
|
return "", err
|
|
}
|
|
if err := self.eth.TxPool().Add(tx); err != nil {
|
|
return "", err
|
|
}
|
|
//state.IncrementNonce(from)
|
|
|
|
if contractCreation {
|
|
addr := core.AddressFromMessage(tx)
|
|
pipelogger.Infof("Contract addr %x\n", addr)
|
|
}
|
|
|
|
if types.IsContractAddr(to) {
|
|
return common.ToHex(core.AddressFromMessage(tx)), nil
|
|
}
|
|
return common.ToHex(tx.Hash()), nil
|
|
}
|
|
|
|
func (self *XEth) sign(tx *types.Transaction, from []byte, didUnlock bool) error {
|
|
sig, err := self.accountManager.Sign(accounts.Account{Address: from}, tx.Hash())
|
|
if err == accounts.ErrLocked {
|
|
if didUnlock {
|
|
return fmt.Errorf("sender account still locked after successful unlock")
|
|
}
|
|
if !self.frontend.UnlockAccount(from) {
|
|
return fmt.Errorf("could not unlock sender account")
|
|
}
|
|
// retry signing, the account should now be unlocked.
|
|
return self.sign(tx, from, true)
|
|
} else if err != nil {
|
|
return err
|
|
}
|
|
tx.SetSignatureValues(sig)
|
|
return nil
|
|
}
|
|
|
|
// callmsg is the message type used for call transations.
|
|
type callmsg struct {
|
|
from *state.StateObject
|
|
to []byte
|
|
gas, gasPrice *big.Int
|
|
value *big.Int
|
|
data []byte
|
|
}
|
|
|
|
// accessor boilerplate to implement core.Message
|
|
func (m callmsg) From() []byte { return m.from.Address() }
|
|
func (m callmsg) Nonce() uint64 { return m.from.Nonce() }
|
|
func (m callmsg) To() []byte { return m.to }
|
|
func (m callmsg) GasPrice() *big.Int { return m.gasPrice }
|
|
func (m callmsg) Gas() *big.Int { return m.gas }
|
|
func (m callmsg) Value() *big.Int { return m.value }
|
|
func (m callmsg) Data() []byte { return m.data }
|
|
|
|
type whisperFilter struct {
|
|
messages []WhisperMessage
|
|
timeout time.Time
|
|
id int
|
|
}
|
|
|
|
func (w *whisperFilter) add(msgs ...WhisperMessage) {
|
|
w.messages = append(w.messages, msgs...)
|
|
}
|
|
func (w *whisperFilter) get() []WhisperMessage {
|
|
w.timeout = time.Now()
|
|
tmp := w.messages
|
|
w.messages = nil
|
|
return tmp
|
|
}
|
|
|
|
type logFilter struct {
|
|
logs state.Logs
|
|
timeout time.Time
|
|
id int
|
|
}
|
|
|
|
func (l *logFilter) add(logs ...state.Log) {
|
|
l.logs = append(l.logs, logs...)
|
|
}
|
|
|
|
func (l *logFilter) get() state.Logs {
|
|
l.timeout = time.Now()
|
|
tmp := l.logs
|
|
l.logs = nil
|
|
return tmp
|
|
}
|