Merge pull request #14377 from karalabe/unify-network-ids
cmd, eth, les, mobile: make networkid uint64 everywhere
This commit is contained in:
commit
fff16169c6
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@ -61,7 +61,7 @@ var (
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apiPortFlag = flag.Int("apiport", 8080, "Listener port for the HTTP API connection")
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ethPortFlag = flag.Int("ethport", 30303, "Listener port for the devp2p connection")
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bootFlag = flag.String("bootnodes", "", "Comma separated bootnode enode URLs to seed with")
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netFlag = flag.Int("network", 0, "Network ID to use for the Ethereum protocol")
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netFlag = flag.Uint64("network", 0, "Network ID to use for the Ethereum protocol")
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statsFlag = flag.String("ethstats", "", "Ethstats network monitoring auth string")
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netnameFlag = flag.String("faucet.name", "", "Network name to assign to the faucet")
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@ -179,7 +179,7 @@ type faucet struct {
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lock sync.RWMutex // Lock protecting the faucet's internals
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}
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func newFaucet(genesis *core.Genesis, port int, enodes []*discv5.Node, network int, stats string, ks *keystore.KeyStore, index []byte) (*faucet, error) {
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func newFaucet(genesis *core.Genesis, port int, enodes []*discv5.Node, network uint64, stats string, ks *keystore.KeyStore, index []byte) (*faucet, error) {
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// Assemble the raw devp2p protocol stack
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stack, err := node.New(&node.Config{
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Name: "geth",
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@ -120,7 +120,7 @@ func (w *wizard) makeGenesis() {
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// Query the user for some custom extras
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fmt.Println()
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fmt.Println("Specify your chain/network ID if you want an explicit one (default = random)")
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genesis.Config.ChainId = big.NewInt(int64(w.readDefaultInt(rand.Intn(65536))))
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genesis.Config.ChainId = new(big.Int).SetUint64(uint64(w.readDefaultInt(rand.Intn(65536))))
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fmt.Println()
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fmt.Println("Anything fun to embed into the genesis block? (max 32 bytes)")
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@ -148,7 +148,7 @@ var (
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Usage: "Number of recent ethash mining DAGs to keep on disk (1+GB each)",
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Value: eth.DefaultConfig.EthashDatasetsOnDisk,
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}
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NetworkIdFlag = cli.IntFlag{
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NetworkIdFlag = cli.Uint64Flag{
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Name: "networkid",
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Usage: "Network identifier (integer, 1=Frontier, 2=Morden (disused), 3=Ropsten)",
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Value: eth.DefaultConfig.NetworkId,
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@ -806,7 +806,7 @@ func SetEthConfig(ctx *cli.Context, stack *node.Node, cfg *eth.Config) {
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cfg.LightPeers = ctx.GlobalInt(LightPeersFlag.Name)
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}
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if ctx.GlobalIsSet(NetworkIdFlag.Name) {
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cfg.NetworkId = ctx.GlobalInt(NetworkIdFlag.Name)
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cfg.NetworkId = ctx.GlobalUint64(NetworkIdFlag.Name)
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}
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// Ethereum needs to know maxPeers to calculate the light server peer ratio.
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@ -80,7 +80,7 @@ type Ethereum struct {
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MinerThreads int
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etherbase common.Address
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netVersionId int
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networkId uint64
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netRPCService *ethapi.PublicNetAPI
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}
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@ -118,7 +118,7 @@ func New(ctx *node.ServiceContext, config *Config) (*Ethereum, error) {
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engine: CreateConsensusEngine(ctx, config, chainConfig, chainDb),
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shutdownChan: make(chan bool),
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stopDbUpgrade: stopDbUpgrade,
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netVersionId: config.NetworkId,
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networkId: config.NetworkId,
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etherbase: config.Etherbase,
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MinerThreads: config.MinerThreads,
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}
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@ -347,7 +347,7 @@ func (s *Ethereum) Engine() consensus.Engine { return s.engine }
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func (s *Ethereum) ChainDb() ethdb.Database { return s.chainDb }
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func (s *Ethereum) IsListening() bool { return true } // Always listening
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func (s *Ethereum) EthVersion() int { return int(s.protocolManager.SubProtocols[0].Version) }
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func (s *Ethereum) NetVersion() int { return s.netVersionId }
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func (s *Ethereum) NetVersion() uint64 { return s.networkId }
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func (s *Ethereum) Downloader() *downloader.Downloader { return s.protocolManager.downloader }
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// Protocols implements node.Service, returning all the currently configured
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@ -72,7 +72,7 @@ type Config struct {
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Genesis *core.Genesis `toml:",omitempty"`
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// Protocol options
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NetworkId int // Network ID to use for selecting peers to connect to
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NetworkId uint64 // Network ID to use for selecting peers to connect to
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SyncMode downloader.SyncMode
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// Light client options
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@ -15,7 +15,7 @@ import (
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func (c Config) MarshalTOML() (interface{}, error) {
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type Config struct {
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Genesis *core.Genesis `toml:",omitempty"`
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NetworkId int
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NetworkId uint64
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SyncMode downloader.SyncMode
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LightServ int `toml:",omitempty"`
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LightPeers int `toml:",omitempty"`
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@ -72,7 +72,7 @@ func (c Config) MarshalTOML() (interface{}, error) {
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func (c *Config) UnmarshalTOML(unmarshal func(interface{}) error) error {
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type Config struct {
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Genesis *core.Genesis `toml:",omitempty"`
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NetworkId *int
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NetworkId *uint64
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SyncMode *downloader.SyncMode
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LightServ *int `toml:",omitempty"`
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LightPeers *int `toml:",omitempty"`
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@ -60,7 +60,7 @@ func errResp(code errCode, format string, v ...interface{}) error {
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}
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type ProtocolManager struct {
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networkId int
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networkId uint64
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fastSync uint32 // Flag whether fast sync is enabled (gets disabled if we already have blocks)
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acceptTxs uint32 // Flag whether we're considered synchronised (enables transaction processing)
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@ -96,7 +96,7 @@ type ProtocolManager struct {
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// NewProtocolManager returns a new ethereum sub protocol manager. The Ethereum sub protocol manages peers capable
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// with the ethereum network.
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func NewProtocolManager(config *params.ChainConfig, mode downloader.SyncMode, networkId int, maxPeers int, mux *event.TypeMux, txpool txPool, engine consensus.Engine, blockchain *core.BlockChain, chaindb ethdb.Database) (*ProtocolManager, error) {
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func NewProtocolManager(config *params.ChainConfig, mode downloader.SyncMode, networkId uint64, maxPeers int, mux *event.TypeMux, txpool txPool, engine consensus.Engine, blockchain *core.BlockChain, chaindb ethdb.Database) (*ProtocolManager, error) {
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// Create the protocol manager with the base fields
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manager := &ProtocolManager{
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networkId: networkId,
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@ -733,7 +733,7 @@ func (self *ProtocolManager) txBroadcastLoop() {
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// EthNodeInfo represents a short summary of the Ethereum sub-protocol metadata known
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// about the host peer.
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type EthNodeInfo struct {
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Network int `json:"network"` // Ethereum network ID (1=Frontier, 2=Morden, Ropsten=3)
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Network uint64 `json:"network"` // Ethereum network ID (1=Frontier, 2=Morden, Ropsten=3)
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Difficulty *big.Int `json:"difficulty"` // Total difficulty of the host's blockchain
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Genesis common.Hash `json:"genesis"` // SHA3 hash of the host's genesis block
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Head common.Hash `json:"head"` // SHA3 hash of the host's best owned block
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@ -173,7 +173,7 @@ func newTestPeer(name string, version int, pm *ProtocolManager, shake bool) (*te
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func (p *testPeer) handshake(t *testing.T, td *big.Int, head common.Hash, genesis common.Hash) {
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msg := &statusData{
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ProtocolVersion: uint32(p.version),
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NetworkId: uint32(DefaultConfig.NetworkId),
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NetworkId: DefaultConfig.NetworkId,
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TD: td,
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CurrentBlock: head,
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GenesisBlock: genesis,
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@ -230,7 +230,7 @@ func (p *peer) RequestReceipts(hashes []common.Hash) error {
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// Handshake executes the eth protocol handshake, negotiating version number,
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// network IDs, difficulties, head and genesis blocks.
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func (p *peer) Handshake(network int, td *big.Int, head common.Hash, genesis common.Hash) error {
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func (p *peer) Handshake(network uint64, td *big.Int, head common.Hash, genesis common.Hash) error {
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// Send out own handshake in a new thread
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errc := make(chan error, 2)
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var status statusData // safe to read after two values have been received from errc
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@ -238,7 +238,7 @@ func (p *peer) Handshake(network int, td *big.Int, head common.Hash, genesis com
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go func() {
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errc <- p2p.Send(p.rw, StatusMsg, &statusData{
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ProtocolVersion: uint32(p.version),
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NetworkId: uint32(network),
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NetworkId: network,
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TD: td,
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CurrentBlock: head,
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GenesisBlock: genesis,
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@ -263,7 +263,7 @@ func (p *peer) Handshake(network int, td *big.Int, head common.Hash, genesis com
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return nil
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}
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func (p *peer) readStatus(network int, status *statusData, genesis common.Hash) (err error) {
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func (p *peer) readStatus(network uint64, status *statusData, genesis common.Hash) (err error) {
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msg, err := p.rw.ReadMsg()
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if err != nil {
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return err
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@ -281,7 +281,7 @@ func (p *peer) readStatus(network int, status *statusData, genesis common.Hash)
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if status.GenesisBlock != genesis {
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return errResp(ErrGenesisBlockMismatch, "%x (!= %x)", status.GenesisBlock[:8], genesis[:8])
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}
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if int(status.NetworkId) != network {
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if status.NetworkId != network {
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return errResp(ErrNetworkIdMismatch, "%d (!= %d)", status.NetworkId, network)
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}
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if int(status.ProtocolVersion) != p.version {
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@ -105,7 +105,7 @@ type txPool interface {
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// statusData is the network packet for the status message.
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type statusData struct {
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ProtocolVersion uint32
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NetworkId uint32
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NetworkId uint64
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TD *big.Int
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CurrentBlock common.Hash
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GenesisBlock common.Hash
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@ -55,7 +55,7 @@ func testStatusMsgErrors(t *testing.T, protocol int) {
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wantError: errResp(ErrNoStatusMsg, "first msg has code 2 (!= 0)"),
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},
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{
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code: StatusMsg, data: statusData{10, uint32(DefaultConfig.NetworkId), td, currentBlock, genesis},
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code: StatusMsg, data: statusData{10, DefaultConfig.NetworkId, td, currentBlock, genesis},
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wantError: errResp(ErrProtocolVersionMismatch, "10 (!= %d)", protocol),
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},
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{
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@ -63,7 +63,7 @@ func testStatusMsgErrors(t *testing.T, protocol int) {
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wantError: errResp(ErrNetworkIdMismatch, "999 (!= 1)"),
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},
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{
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code: StatusMsg, data: statusData{uint32(protocol), uint32(DefaultConfig.NetworkId), td, currentBlock, common.Hash{3}},
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code: StatusMsg, data: statusData{uint32(protocol), DefaultConfig.NetworkId, td, currentBlock, common.Hash{3}},
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wantError: errResp(ErrGenesisBlockMismatch, "0300000000000000 (!= %x)", genesis[:8]),
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},
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}
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@ -323,10 +323,10 @@ func (s *Service) login(conn *websocket.Conn) error {
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var network, protocol string
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if info := infos.Protocols["eth"]; info != nil {
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network = strconv.Itoa(info.(*eth.EthNodeInfo).Network)
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network = fmt.Sprintf("%d", info.(*eth.EthNodeInfo).Network)
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protocol = fmt.Sprintf("eth/%d", eth.ProtocolVersions[0])
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} else {
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network = strconv.Itoa(infos.Protocols["les"].(*eth.EthNodeInfo).Network)
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network = fmt.Sprintf("%d", infos.Protocols["les"].(*eth.EthNodeInfo).Network)
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protocol = fmt.Sprintf("les/%d", les.ProtocolVersions[0])
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}
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auth := &authMsg{
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@ -1435,11 +1435,11 @@ func (api *PrivateDebugAPI) SetHead(number hexutil.Uint64) {
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// PublicNetAPI offers network related RPC methods
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type PublicNetAPI struct {
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net *p2p.Server
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networkVersion int
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networkVersion uint64
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}
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// NewPublicNetAPI creates a new net API instance.
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func NewPublicNetAPI(net *p2p.Server, networkVersion int) *PublicNetAPI {
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func NewPublicNetAPI(net *p2p.Server, networkVersion uint64) *PublicNetAPI {
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return &PublicNetAPI{net, networkVersion}
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}
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@ -61,7 +61,7 @@ type LightEthereum struct {
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engine consensus.Engine
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accountManager *accounts.Manager
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netVersionId int
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networkId uint64
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netRPCService *ethapi.PublicNetAPI
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}
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@ -87,7 +87,7 @@ func New(ctx *node.ServiceContext, config *eth.Config) (*LightEthereum, error) {
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accountManager: ctx.AccountManager,
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engine: eth.CreateConsensusEngine(ctx, config, chainConfig, chainDb),
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shutdownChan: make(chan bool),
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netVersionId: config.NetworkId,
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networkId: config.NetworkId,
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}
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if eth.blockchain, err = light.NewLightChain(odr, eth.chainConfig, eth.engine, eth.eventMux); err != nil {
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return nil, err
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@ -187,7 +187,7 @@ func (s *LightEthereum) Protocols() []p2p.Protocol {
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// Ethereum protocol implementation.
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func (s *LightEthereum) Start(srvr *p2p.Server) error {
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log.Warn("Light client mode is an experimental feature")
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s.netRPCService = ethapi.NewPublicNetAPI(srvr, s.netVersionId)
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s.netRPCService = ethapi.NewPublicNetAPI(srvr, s.networkId)
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s.protocolManager.Start(srvr)
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return nil
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}
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@ -95,7 +95,7 @@ type ProtocolManager struct {
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lightSync bool
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txpool txPool
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txrelay *LesTxRelay
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networkId int
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networkId uint64
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chainConfig *params.ChainConfig
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blockchain BlockChain
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chainDb ethdb.Database
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@ -128,7 +128,7 @@ type ProtocolManager struct {
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// NewProtocolManager returns a new ethereum sub protocol manager. The Ethereum sub protocol manages peers capable
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// with the ethereum network.
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func NewProtocolManager(chainConfig *params.ChainConfig, lightSync bool, networkId int, mux *event.TypeMux, engine consensus.Engine, blockchain BlockChain, txpool txPool, chainDb ethdb.Database, odr *LesOdr, txrelay *LesTxRelay) (*ProtocolManager, error) {
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func NewProtocolManager(chainConfig *params.ChainConfig, lightSync bool, networkId uint64, mux *event.TypeMux, engine consensus.Engine, blockchain BlockChain, txpool txPool, chainDb ethdb.Database, odr *LesOdr, txrelay *LesTxRelay) (*ProtocolManager, error) {
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// Create the protocol manager with the base fields
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manager := &ProtocolManager{
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lightSync: lightSync,
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@ -310,7 +310,7 @@ func (pm *ProtocolManager) Stop() {
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log.Info("Light Ethereum protocol stopped")
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}
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func (pm *ProtocolManager) newPeer(pv, nv int, p *p2p.Peer, rw p2p.MsgReadWriter) *peer {
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func (pm *ProtocolManager) newPeer(pv int, nv uint64, p *p2p.Peer, rw p2p.MsgReadWriter) *peer {
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return newPeer(pv, nv, p, newMeteredMsgWriter(rw))
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}
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@ -49,7 +49,7 @@ type peer struct {
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rw p2p.MsgReadWriter
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version int // Protocol version negotiated
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network int // Network ID being on
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network uint64 // Network ID being on
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id string
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@ -69,7 +69,7 @@ type peer struct {
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fcCosts requestCostTable
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}
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func newPeer(version, network int, p *p2p.Peer, rw p2p.MsgReadWriter) *peer {
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func newPeer(version int, network uint64, p *p2p.Peer, rw p2p.MsgReadWriter) *peer {
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id := p.ID()
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return &peer{
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@ -384,7 +384,7 @@ func (p *peer) Handshake(td *big.Int, head common.Hash, headNum uint64, genesis
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if rGenesis != genesis {
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return errResp(ErrGenesisBlockMismatch, "%x (!= %x)", rGenesis[:8], genesis[:8])
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}
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if int(rNetwork) != p.network {
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if rNetwork != p.network {
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return errResp(ErrNetworkIdMismatch, "%d (!= %d)", rNetwork, p.network)
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}
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if int(rVersion) != p.version {
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@ -54,7 +54,7 @@ type NodeConfig struct {
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// EthereumNetworkID is the network identifier used by the Ethereum protocol to
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// decide if remote peers should be accepted or not.
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EthereumNetworkID int
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EthereumNetworkID int64 // uint64 in truth, but Java can't handle that...
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// EthereumGenesis is the genesis JSON to use to seed the blockchain with. An
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// empty genesis state is equivalent to using the mainnet's state.
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@ -148,7 +148,7 @@ func NewNode(datadir string, config *NodeConfig) (stack *Node, _ error) {
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ethConf := eth.DefaultConfig
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ethConf.Genesis = genesis
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ethConf.SyncMode = downloader.LightSync
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ethConf.NetworkId = config.EthereumNetworkID
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ethConf.NetworkId = uint64(config.EthereumNetworkID)
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ethConf.DatabaseCache = config.EthereumDatabaseCache
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if err := rawStack.Register(func(ctx *node.ServiceContext) (node.Service, error) {
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return les.New(ctx, ðConf)
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