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355 lines
8.1 KiB
355 lines
8.1 KiB
package eth
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import (
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"encoding/json"
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"net"
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"path"
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"sync"
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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/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/rpc"
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"github.com/ethereum/go-ethereum/state"
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)
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const (
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seedNodeAddress = "poc-7.ethdev.com:30300"
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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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// State manager for processing new blocks and managing the over all states
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blockManager *core.BlockManager
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// The transaction pool. Transaction can be pushed on this pool
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// for later including in the blocks
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txPool *core.TxPool
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// The canonical chain
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chainManager *core.ChainManager
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// The block pool
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blockPool *BlockPool
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// Event
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eventMux *event.TypeMux
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// Nonce
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Nonce uint64
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ListenAddr string
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blacklist p2p.Blacklist
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server *p2p.Server
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txSub event.Subscription
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blockSub event.Subscription
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// Capabilities for outgoing peers
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// serverCaps Caps
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peersFile string
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Mining bool
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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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synclock sync.Mutex
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syncGroup sync.WaitGroup
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filterMu sync.RWMutex
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filterId int
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filters map[int]*core.Filter
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}
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func New(db ethutil.Database, identity p2p.ClientIdentity, keyManager *crypto.KeyManager, nat p2p.NAT, port string, maxPeers int) (*Ethereum, error) {
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saveProtocolVersion(db)
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ethutil.Config.Db = db
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// FIXME:
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blacklist := p2p.NewBlacklist()
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// Sorry Py person. I must blacklist. you perform badly
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blacklist.Put(ethutil.Hex2Bytes("64656330303561383532336435376331616537643864663236623336313863373537353163636634333530626263396330346237336262623931383064393031"))
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peersFile := path.Join(ethutil.Config.ExecPath, "known_peers.json")
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nonce, _ := ethutil.RandomUint64()
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listenAddr := ":" + port
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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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Nonce: nonce,
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// serverCaps: caps,
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peersFile: peersFile,
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ListenAddr: listenAddr,
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keyManager: keyManager,
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clientIdentity: identity,
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blacklist: blacklist,
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eventMux: &event.TypeMux{},
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filters: make(map[int]*core.Filter),
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}
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eth.txPool = core.NewTxPool(eth)
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eth.chainManager = core.NewChainManager(eth.EventMux())
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eth.blockManager = core.NewBlockManager(eth)
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eth.chainManager.SetProcessor(eth.blockManager)
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hasBlock := eth.chainManager.HasBlock
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insertChain := eth.chainManager.InsertChain
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// pow := ezp.New()
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// verifyPoW := pow.Verify
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verifyPoW := func(*types.Block) bool { return true }
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eth.blockPool = NewBlockPool(hasBlock, insertChain, verifyPoW)
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// Start the tx pool
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eth.txPool.Start()
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ethProto := EthProtocol(eth.txPool, eth.chainManager, eth.blockPool)
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protocols := []p2p.Protocol{ethProto}
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server := &p2p.Server{
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Identity: identity,
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MaxPeers: maxPeers,
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Protocols: protocols,
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ListenAddr: listenAddr,
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Blacklist: blacklist,
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NAT: nat,
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}
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eth.server = server
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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) 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) BlockManager() *core.BlockManager {
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return s.blockManager
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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) 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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if s.ListenAddr == "" {
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return false
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} else {
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return true
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}
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}
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func (s *Ethereum) PeerCount() int {
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return s.server.PeerCount()
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}
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func (s *Ethereum) Peers() []*p2p.Peer {
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return s.server.Peers()
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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.server.Start()
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if err != nil {
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return err
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}
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s.blockPool.Start()
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go s.filterLoop()
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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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return 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.server.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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//
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// WritePeers(s.peersFile, s.server.PeerAddresses())
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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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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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func WritePeers(path string, addresses []string) {
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if len(addresses) > 0 {
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data, _ := json.MarshalIndent(addresses, "", " ")
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ethutil.WriteFile(path, data)
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}
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}
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func ReadPeers(path string) (ips []string, err error) {
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var data string
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data, err = ethutil.ReadAllFile(path)
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if err != nil {
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json.Unmarshal([]byte(data), &ips)
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}
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return
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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.server.Broadcast("eth", TxMsg, []interface{}{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.txSub.Chan() {
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event := obj.(core.NewMinedBlockEvent)
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self.server.Broadcast("eth", NewBlockMsg, event.Block.Value().Val)
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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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// InstallFilter adds filter for blockchain events.
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// The filter's callbacks will run for matching blocks and messages.
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// The filter should not be modified after it has been installed.
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func (self *Ethereum) InstallFilter(filter *core.Filter) (id int) {
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self.filterMu.Lock()
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id = self.filterId
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self.filters[id] = filter
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self.filterId++
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self.filterMu.Unlock()
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return id
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}
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func (self *Ethereum) UninstallFilter(id int) {
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self.filterMu.Lock()
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delete(self.filters, id)
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self.filterMu.Unlock()
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}
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// GetFilter retrieves a filter installed using InstallFilter.
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// The filter may not be modified.
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func (self *Ethereum) GetFilter(id int) *core.Filter {
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self.filterMu.RLock()
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defer self.filterMu.RUnlock()
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return self.filters[id]
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}
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func (self *Ethereum) filterLoop() {
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// Subscribe to events
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events := self.eventMux.Subscribe(core.NewBlockEvent{}, state.Messages(nil))
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for event := range events.Chan() {
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switch event.(type) {
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case core.NewBlockEvent:
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self.filterMu.RLock()
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for _, filter := range self.filters {
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if filter.BlockCallback != nil {
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e := event.(core.NewBlockEvent)
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filter.BlockCallback(e.Block)
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}
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}
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self.filterMu.RUnlock()
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case state.Messages:
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self.filterMu.RLock()
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for _, filter := range self.filters {
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if filter.MessageCallback != nil {
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e := event.(state.Messages)
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msgs := filter.FilterMessages(e)
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if len(msgs) > 0 {
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filter.MessageCallback(msgs)
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}
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}
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}
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self.filterMu.RUnlock()
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}
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}
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}
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