cmd, eth: Add support for --whitelist <blocknum>=<hash>,...
flag
* Rejects peers that respond with a different hash for any of the passed in block numbers. * Meant for emergency situations when the network forks unexpectedly.
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c1e3fe6b14
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48b70ecff1
@ -87,6 +87,7 @@ var (
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utils.LightServFlag,
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utils.LightPeersFlag,
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utils.LightKDFFlag,
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utils.WhitelistFlag,
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utils.CacheFlag,
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utils.CacheDatabaseFlag,
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utils.CacheTrieFlag,
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@ -81,6 +81,7 @@ var AppHelpFlagGroups = []flagGroup{
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utils.LightServFlag,
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utils.LightPeersFlag,
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utils.LightKDFFlag,
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utils.WhitelistFlag,
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},
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},
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{
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@ -182,6 +182,10 @@ var (
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Name: "lightkdf",
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Usage: "Reduce key-derivation RAM & CPU usage at some expense of KDF strength",
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}
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WhitelistFlag = cli.StringFlag{
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Name: "whitelist",
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Usage: "Comma separated block number-to-hash mappings to enforce (<number>=<hash>)",
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}
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// Dashboard settings
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DashboardEnabledFlag = cli.BoolFlag{
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Name: metrics.DashboardEnabledFlag,
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@ -1072,6 +1076,34 @@ func setEthash(ctx *cli.Context, cfg *eth.Config) {
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}
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}
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func setWhitelist(ctx *cli.Context, cfg *eth.Config) {
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if ctx.GlobalIsSet(WhitelistFlag.Name) {
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entries := strings.Split(ctx.String(WhitelistFlag.Name), ",")
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whitelist := make(map[uint64]common.Hash)
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for _, entry := range entries {
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split := strings.SplitN(entry, "=", 2)
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if len(split) != 2 {
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Fatalf("invalid whitelist entry: %s", entry)
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}
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bn, err := strconv.ParseUint(split[0], 0, 64)
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if err != nil {
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Fatalf("Invalid whitelist block number %s: %v", split[0], err)
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}
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hash := common.Hash{}
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err = hash.UnmarshalText([]byte(split[1]))
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if err != nil {
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Fatalf("Invalid whitelist hash %s: %v", split[1], err)
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}
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whitelist[bn] = hash
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}
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cfg.Whitelist = whitelist
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}
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}
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// checkExclusive verifies that only a single instance of the provided flags was
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// set by the user. Each flag might optionally be followed by a string type to
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// specialize it further.
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@ -1137,6 +1169,7 @@ func SetEthConfig(ctx *cli.Context, stack *node.Node, cfg *eth.Config) {
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setGPO(ctx, &cfg.GPO)
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setTxPool(ctx, &cfg.TxPool)
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setEthash(ctx, cfg)
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setWhitelist(ctx, cfg)
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if ctx.GlobalIsSet(SyncModeFlag.Name) {
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cfg.SyncMode = *GlobalTextMarshaler(ctx, SyncModeFlag.Name).(*downloader.SyncMode)
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@ -173,7 +173,7 @@ func New(ctx *node.ServiceContext, config *Config) (*Ethereum, error) {
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}
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eth.txPool = core.NewTxPool(config.TxPool, eth.chainConfig, eth.blockchain)
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if eth.protocolManager, err = NewProtocolManager(eth.chainConfig, config.SyncMode, config.NetworkId, eth.eventMux, eth.txPool, eth.engine, eth.blockchain, chainDb); err != nil {
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if eth.protocolManager, err = NewProtocolManager(eth.chainConfig, config.SyncMode, config.NetworkId, eth.eventMux, eth.txPool, eth.engine, eth.blockchain, chainDb, config.Whitelist); err != nil {
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return nil, err
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}
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@ -87,6 +87,9 @@ type Config struct {
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SyncMode downloader.SyncMode
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NoPruning bool
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// Whitelist of required block number -> hash values to accept
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Whitelist map[uint64]common.Hash `toml:"-"`
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// Light client options
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LightServ int `toml:",omitempty"` // Maximum percentage of time allowed for serving LES requests
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LightPeers int `toml:",omitempty"` // Maximum number of LES client peers
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@ -17,6 +17,7 @@
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package eth
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import (
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"bytes"
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"encoding/json"
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"errors"
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"fmt"
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@ -88,6 +89,8 @@ type ProtocolManager struct {
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txsSub event.Subscription
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minedBlockSub *event.TypeMuxSubscription
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whitelist map[uint64]common.Hash
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// channels for fetcher, syncer, txsyncLoop
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newPeerCh chan *peer
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txsyncCh chan *txsync
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@ -101,7 +104,7 @@ 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 uint64, 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, mux *event.TypeMux, txpool txPool, engine consensus.Engine, blockchain *core.BlockChain, chaindb ethdb.Database, whitelist map[uint64]common.Hash) (*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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@ -110,6 +113,7 @@ func NewProtocolManager(config *params.ChainConfig, mode downloader.SyncMode, ne
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blockchain: blockchain,
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chainconfig: config,
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peers: newPeerSet(),
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whitelist: whitelist,
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newPeerCh: make(chan *peer),
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noMorePeers: make(chan struct{}),
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txsyncCh: make(chan *txsync),
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@ -307,6 +311,16 @@ func (pm *ProtocolManager) handle(p *peer) error {
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}
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}()
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}
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// If we have any explicit whitelist block hashes, request them
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for bn := range pm.whitelist {
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p.Log().Debug("Requesting whitelist block", "number", bn)
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if err := p.RequestHeadersByNumber(bn, 1, 0, false); err != nil {
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p.Log().Error("whitelist request failed", "err", err, "number", bn, "peer", p.id)
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return err
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}
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}
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// main loop. handle incoming messages.
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for {
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if err := pm.handleMsg(p); err != nil {
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@ -452,6 +466,16 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
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// Filter out any explicitly requested headers, deliver the rest to the downloader
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filter := len(headers) == 1
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if filter {
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// Check for any responses not matching our whitelist
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if expected, ok := pm.whitelist[headers[0].Number.Uint64()]; ok {
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actual := headers[0].Hash()
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if !bytes.Equal(expected.Bytes(), actual.Bytes()) {
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p.Log().Info("Dropping peer with non-matching whitelist block", "number", headers[0].Number.Uint64(), "hash", actual, "expected", expected)
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return errors.New("whitelist block mismatch")
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}
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p.Log().Debug("Whitelist block verified", "number", headers[0].Number.Uint64(), "hash", expected)
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}
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// If it's a potential DAO fork check, validate against the rules
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if p.forkDrop != nil && pm.chainconfig.DAOForkBlock.Cmp(headers[0].Number) == 0 {
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// Disable the fork drop timer
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@ -478,7 +478,7 @@ func testDAOChallenge(t *testing.T, localForked, remoteForked bool, timeout bool
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if err != nil {
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t.Fatalf("failed to create new blockchain: %v", err)
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}
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pm, err := NewProtocolManager(config, downloader.FullSync, DefaultConfig.NetworkId, evmux, new(testTxPool), pow, blockchain, db)
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pm, err := NewProtocolManager(config, downloader.FullSync, DefaultConfig.NetworkId, evmux, new(testTxPool), pow, blockchain, db, nil)
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if err != nil {
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t.Fatalf("failed to start test protocol manager: %v", err)
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}
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@ -559,7 +559,7 @@ func testBroadcastBlock(t *testing.T, totalPeers, broadcastExpected int) {
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if err != nil {
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t.Fatalf("failed to create new blockchain: %v", err)
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}
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pm, err := NewProtocolManager(config, downloader.FullSync, DefaultConfig.NetworkId, evmux, new(testTxPool), pow, blockchain, db)
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pm, err := NewProtocolManager(config, downloader.FullSync, DefaultConfig.NetworkId, evmux, new(testTxPool), pow, blockchain, db, nil)
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if err != nil {
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t.Fatalf("failed to start test protocol manager: %v", err)
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}
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@ -66,7 +66,7 @@ func newTestProtocolManager(mode downloader.SyncMode, blocks int, generator func
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panic(err)
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}
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pm, err := NewProtocolManager(gspec.Config, mode, DefaultConfig.NetworkId, evmux, &testTxPool{added: newtx}, engine, blockchain, db)
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pm, err := NewProtocolManager(gspec.Config, mode, DefaultConfig.NetworkId, evmux, &testTxPool{added: newtx}, engine, blockchain, db, nil)
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if err != nil {
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return nil, nil, err
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}
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