Returning an error would indicate a complete failure initialising the Ethereum backend. Instead we should print the message and continue.
		
			
				
	
	
		
			323 lines
		
	
	
		
			7.2 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			323 lines
		
	
	
		
			7.2 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
package eth
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import (
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	"fmt"
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	"net"
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	"sync"
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	"github.com/ethereum/go-ethereum/core"
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	"github.com/ethereum/go-ethereum/crypto"
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	"github.com/ethereum/go-ethereum/ethdb"
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	"github.com/ethereum/go-ethereum/ethutil"
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	"github.com/ethereum/go-ethereum/event"
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	ethlogger "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/pow/ezp"
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	"github.com/ethereum/go-ethereum/rpc"
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	"github.com/ethereum/go-ethereum/whisper"
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)
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const (
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	seedNodeAddress = "poc-8.ethdev.com:30303"
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)
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type Config struct {
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	Name       string
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	Version    string
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	Identifier string
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	KeyStore   string
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	DataDir    string
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	LogFile    string
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	LogLevel   int
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	KeyRing    string
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	MaxPeers   int
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	Port       string
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	NATType    string
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	PMPGateway string
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	Shh  bool
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	Dial bool
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	KeyManager *crypto.KeyManager
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}
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var logger = ethlogger.NewLogger("SERV")
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type Ethereum struct {
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	// Channel for shutting down the ethereum
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	shutdownChan chan bool
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	quit         chan bool
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	// DB interface
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	db        ethutil.Database
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	blacklist p2p.Blacklist
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	//*** SERVICES ***
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	// State manager for processing new blocks and managing the over all states
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	blockProcessor *core.BlockProcessor
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	txPool         *core.TxPool
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	chainManager   *core.ChainManager
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	blockPool      *BlockPool
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	whisper        *whisper.Whisper
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	net      *p2p.Server
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	eventMux *event.TypeMux
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	txSub    event.Subscription
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	blockSub event.Subscription
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	RpcServer  *rpc.JsonRpcServer
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	keyManager *crypto.KeyManager
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	clientIdentity p2p.ClientIdentity
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	logger         ethlogger.LogSystem
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	synclock  sync.Mutex
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	syncGroup sync.WaitGroup
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	Mining bool
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}
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func New(config *Config) (*Ethereum, error) {
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	// Boostrap database
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	logger := ethlogger.New(config.DataDir, config.LogFile, config.LogLevel)
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	db, err := ethdb.NewLDBDatabase("blockchain")
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	if err != nil {
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		return nil, err
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	}
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	// Perform database sanity checks
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	d, _ := db.Get([]byte("ProtocolVersion"))
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	protov := ethutil.NewValue(d).Uint()
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	if protov != ProtocolVersion && protov != 0 {
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		return nil, fmt.Errorf("Database version mismatch. Protocol(%d / %d). `rm -rf %s`", protov, ProtocolVersion, ethutil.Config.ExecPath+"/database")
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	}
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	// Create new keymanager
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	var keyManager *crypto.KeyManager
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	switch config.KeyStore {
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	case "db":
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		keyManager = crypto.NewDBKeyManager(db)
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	case "file":
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		keyManager = crypto.NewFileKeyManager(config.DataDir)
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	default:
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		return nil, fmt.Errorf("unknown keystore type: %s", config.KeyStore)
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	}
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	// Initialise the keyring
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	keyManager.Init(config.KeyRing, 0, false)
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	// Create a new client id for this instance. This will help identifying the node on the network
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	clientId := p2p.NewSimpleClientIdentity(config.Name, config.Version, config.Identifier, keyManager.PublicKey())
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	saveProtocolVersion(db)
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	//ethutil.Config.Db = db
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	eth := &Ethereum{
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		shutdownChan:   make(chan bool),
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		quit:           make(chan bool),
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		db:             db,
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		keyManager:     keyManager,
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		clientIdentity: clientId,
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		blacklist:      p2p.NewBlacklist(),
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		eventMux:       &event.TypeMux{},
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		logger:         logger,
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	}
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	eth.chainManager = core.NewChainManager(db, eth.EventMux())
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	eth.txPool = core.NewTxPool(eth.EventMux())
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	eth.blockProcessor = core.NewBlockProcessor(db, eth.txPool, eth.chainManager, eth.EventMux())
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	eth.chainManager.SetProcessor(eth.blockProcessor)
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	eth.whisper = whisper.New()
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	hasBlock := eth.chainManager.HasBlock
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	insertChain := eth.chainManager.InsertChain
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	eth.blockPool = NewBlockPool(hasBlock, insertChain, ezp.Verify)
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	ethProto := EthProtocol(eth.txPool, eth.chainManager, eth.blockPool)
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	protocols := []p2p.Protocol{ethProto, eth.whisper.Protocol()}
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	nat, err := p2p.ParseNAT(config.NATType, config.PMPGateway)
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	if err != nil {
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		return nil, err
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	}
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	fmt.Println(nat)
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	eth.net = &p2p.Server{
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		Identity:  clientId,
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		MaxPeers:  config.MaxPeers,
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		Protocols: protocols,
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		Blacklist: eth.blacklist,
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		NAT:       p2p.UPNP(),
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		NoDial:    !config.Dial,
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	}
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	if len(config.Port) > 0 {
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		eth.net.ListenAddr = ":" + config.Port
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	}
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	return eth, nil
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}
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func (s *Ethereum) KeyManager() *crypto.KeyManager {
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	return s.keyManager
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}
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func (s *Ethereum) Logger() ethlogger.LogSystem {
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	return s.logger
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}
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func (s *Ethereum) ClientIdentity() p2p.ClientIdentity {
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	return s.clientIdentity
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}
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func (s *Ethereum) ChainManager() *core.ChainManager {
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	return s.chainManager
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}
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func (s *Ethereum) BlockProcessor() *core.BlockProcessor {
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	return s.blockProcessor
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}
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func (s *Ethereum) TxPool() *core.TxPool {
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	return s.txPool
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}
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func (s *Ethereum) BlockPool() *BlockPool {
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	return s.blockPool
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}
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func (s *Ethereum) Whisper() *whisper.Whisper {
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	return s.whisper
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}
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func (s *Ethereum) EventMux() *event.TypeMux {
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	return s.eventMux
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}
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func (self *Ethereum) Db() ethutil.Database {
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	return self.db
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}
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func (s *Ethereum) IsMining() bool {
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	return s.Mining
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}
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func (s *Ethereum) IsListening() bool {
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	// XXX TODO
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	return false
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}
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func (s *Ethereum) PeerCount() int {
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	return s.net.PeerCount()
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}
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func (s *Ethereum) Peers() []*p2p.Peer {
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	return s.net.Peers()
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}
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func (s *Ethereum) MaxPeers() int {
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	return s.net.MaxPeers
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}
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// Start the ethereum
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func (s *Ethereum) Start(seed bool) error {
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	err := s.net.Start()
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	if err != nil {
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		return err
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	}
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	// Start services
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	s.txPool.Start()
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	s.blockPool.Start()
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	if s.whisper != nil {
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		s.whisper.Start()
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	}
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	// broadcast transactions
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	s.txSub = s.eventMux.Subscribe(core.TxPreEvent{})
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	go s.txBroadcastLoop()
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	// broadcast mined blocks
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	s.blockSub = s.eventMux.Subscribe(core.NewMinedBlockEvent{})
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	go s.blockBroadcastLoop()
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	// TODO: read peers here
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	if seed {
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		logger.Infof("Connect to seed node %v", seedNodeAddress)
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		if err := s.SuggestPeer(seedNodeAddress); err != nil {
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			logger.Infoln(err)
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		}
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	}
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	logger.Infoln("Server started")
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	return nil
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}
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func (self *Ethereum) SuggestPeer(addr string) error {
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	netaddr, err := net.ResolveTCPAddr("tcp", addr)
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	if err != nil {
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		logger.Errorf("couldn't resolve %s:", addr, err)
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		return err
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	}
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	self.net.SuggestPeer(netaddr.IP, netaddr.Port, nil)
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	return nil
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}
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func (s *Ethereum) Stop() {
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	// Close the database
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	defer s.db.Close()
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	close(s.quit)
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	s.txSub.Unsubscribe()    // quits txBroadcastLoop
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	s.blockSub.Unsubscribe() // quits blockBroadcastLoop
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	if s.RpcServer != nil {
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		s.RpcServer.Stop()
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	}
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	s.txPool.Stop()
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	s.eventMux.Stop()
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	s.blockPool.Stop()
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	if s.whisper != nil {
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		s.whisper.Stop()
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	}
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	logger.Infoln("Server stopped")
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	close(s.shutdownChan)
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}
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// This function will wait for a shutdown and resumes main thread execution
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func (s *Ethereum) WaitForShutdown() {
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	<-s.shutdownChan
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}
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// now tx broadcasting is taken out of txPool
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// handled here via subscription, efficiency?
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func (self *Ethereum) txBroadcastLoop() {
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	// automatically stops if unsubscribe
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	for obj := range self.txSub.Chan() {
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		event := obj.(core.TxPreEvent)
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		self.net.Broadcast("eth", TxMsg, event.Tx.RlpData())
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	}
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}
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func (self *Ethereum) blockBroadcastLoop() {
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	// automatically stops if unsubscribe
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	for obj := range self.blockSub.Chan() {
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		switch ev := obj.(type) {
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		case core.NewMinedBlockEvent:
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			self.net.Broadcast("eth", NewBlockMsg, ev.Block.RlpData(), ev.Block.Td)
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		}
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	}
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}
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func saveProtocolVersion(db ethutil.Database) {
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	d, _ := db.Get([]byte("ProtocolVersion"))
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	protocolVersion := ethutil.NewValue(d).Uint()
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	if protocolVersion == 0 {
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		db.Put([]byte("ProtocolVersion"), ethutil.NewValue(ProtocolVersion).Bytes())
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	}
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}
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