mirror of
https://gitlab.com/pulsechaincom/erigon-pulse.git
synced 2024-12-25 13:07:17 +00:00
47d22773b9
* validate body * validate body * save * save * body deliveries messages handling into staged sync * body deliveries messages handling into staged sync * body deliveries messages handling into staged sync * body deliveries messages handling into staged sync * body deliveries messages handling into staged sync * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch * penalize right after verifyUncles and stop, don't batch
439 lines
14 KiB
Go
439 lines
14 KiB
Go
// Copyright 2015 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package eth
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import (
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"context"
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"errors"
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"fmt"
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"math"
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"math/big"
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"sync"
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"sync/atomic"
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"time"
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"github.com/c2h5oh/datasize"
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"github.com/ledgerwatch/turbo-geth/common"
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"github.com/ledgerwatch/turbo-geth/consensus"
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"github.com/ledgerwatch/turbo-geth/core"
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"github.com/ledgerwatch/turbo-geth/core/forkid"
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"github.com/ledgerwatch/turbo-geth/core/rawdb"
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"github.com/ledgerwatch/turbo-geth/core/types"
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"github.com/ledgerwatch/turbo-geth/core/vm"
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"github.com/ledgerwatch/turbo-geth/eth/downloader"
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"github.com/ledgerwatch/turbo-geth/eth/fetcher"
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"github.com/ledgerwatch/turbo-geth/eth/protocols/eth"
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"github.com/ledgerwatch/turbo-geth/eth/stagedsync"
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"github.com/ledgerwatch/turbo-geth/eth/stagedsync/stages"
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"github.com/ledgerwatch/turbo-geth/ethdb"
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"github.com/ledgerwatch/turbo-geth/event"
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"github.com/ledgerwatch/turbo-geth/log"
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"github.com/ledgerwatch/turbo-geth/p2p"
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"github.com/ledgerwatch/turbo-geth/params"
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)
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const (
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// txChanSize is the size of channel listening to NewTxsEvent.
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// The number is referenced from the size of tx pool.
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txChanSize = 4096
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)
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// txPool defines the methods needed from a transaction pool implementation to
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// support all the operations needed by the Ethereum chain protocols.
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type txPool interface {
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// Has returns an indicator whether txpool has a transaction
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// cached with the given hash.
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Has(hash common.Hash) bool
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// Get retrieves the transaction from local txpool with given
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// tx hash.
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Get(hash common.Hash) types.Transaction
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// AddRemotes should add the given transactions to the pool.
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AddRemotes([]types.Transaction) []error
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// Pending should return pending transactions.
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// The slice should be modifiable by the caller.
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Pending() (types.TransactionsGroupedBySender, error)
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// SubscribeNewTxsEvent should return an event subscription of
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// NewTxsEvent and send events to the given channel.
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SubscribeNewTxsEvent(chan<- core.NewTxsEvent) event.Subscription
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}
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// handlerConfig is the collection of initialization parameters to create a full
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// node network handler.
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type handlerConfig struct {
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Database ethdb.Database // Database for direct sync insertions
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ChainConfig *params.ChainConfig
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vmConfig *vm.Config
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genesis *types.Block
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engine consensus.Engine
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TxPool txPool // Transaction pool to propagate from
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Network uint64 // Network identifier to adfvertise
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BloomCache uint64 // Megabytes to alloc for fast sync bloom
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Checkpoint *params.TrustedCheckpoint // Hard coded checkpoint for sync challenges
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Whitelist map[uint64]common.Hash // Hard coded whitelist for sync challenged
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}
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type handler struct {
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networkID uint64
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forkFilter forkid.Filter // Fork ID filter, constant across the lifetime of the node
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acceptTxs uint32 // Flag whether we're considered synchronised (enables transaction processing)
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database ethdb.Database
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txpool txPool
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chainConfig *params.ChainConfig
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vmConfig *vm.Config
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genesis *types.Block
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engine consensus.Engine
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maxPeers int
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downloader *downloader.Downloader
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blockFetcher *fetcher.BlockFetcher
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txFetcher *fetcher.TxFetcher
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peers *peerSet
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txsCh chan core.NewTxsEvent
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txsSub event.Subscription
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whitelist map[uint64]common.Hash
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// channels for fetcher, syncer, txsyncLoop
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txsyncCh chan *txsync
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quitSync chan struct{}
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chainSync *chainSyncer
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wg sync.WaitGroup
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peerWG sync.WaitGroup
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tmpdir string
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batchSize datasize.ByteSize
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stagedSync *stagedsync.StagedSync
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currentHeight uint64 // Atomic variable to contain chain height
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}
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// newHandler returns a handler for all Ethereum chain management protocol.
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func newHandler(config *handlerConfig) (*handler, error) { //nolint:unparam
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h := &handler{
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networkID: config.Network,
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database: config.Database,
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txpool: config.TxPool,
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chainConfig: config.ChainConfig,
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vmConfig: config.vmConfig,
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genesis: config.genesis,
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engine: config.engine,
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peers: newPeerSet(),
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whitelist: config.Whitelist,
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txsyncCh: make(chan *txsync),
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quitSync: make(chan struct{}),
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}
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if headHeight, err := stages.GetStageProgress(config.Database, stages.Finish); err == nil {
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h.currentHeight = headHeight
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} else {
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return nil, fmt.Errorf("could not get Finish stage progress: %v", err)
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}
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heighter := func() uint64 {
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return atomic.LoadUint64(&h.currentHeight)
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}
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h.forkFilter = forkid.NewFilter(config.ChainConfig, config.genesis.Hash(), heighter)
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// Construct the downloader (long sync) and its backing state bloom if fast
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// sync is requested. The downloader is responsible for deallocating the state
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// bloom when it's done.
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sm, err := ethdb.GetStorageModeFromDB(config.Database)
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if err != nil {
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log.Error("Get storage mode", "err", err)
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}
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h.downloader = downloader.New(config.Database, config.ChainConfig, config.engine, config.vmConfig, h.removePeer, sm)
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h.downloader.SetTmpDir(h.tmpdir)
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h.downloader.SetBatchSize(h.batchSize)
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// Construct the fetcher (short sync)
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validator := func(header *types.Header) error {
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return h.engine.VerifyHeader(stagedsync.ChainReader{Cfg: *h.chainConfig, Db: h.database}, header, true)
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}
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inserter := func(blocks types.Blocks) (int, error) {
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if err == nil {
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atomic.StoreUint32(&h.acceptTxs, 1) // Mark initial sync done on any fetcher import
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}
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return 0, err
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}
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getBlockByHash := func(hash common.Hash) (b *types.Block) {
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_ = h.database.(ethdb.HasRwKV).RwKV().View(context.Background(), func(tx ethdb.Tx) error {
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b, err = rawdb.ReadBlockByHash(tx, hash)
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return err
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})
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return b
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}
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h.blockFetcher = fetcher.NewBlockFetcher(nil, getBlockByHash, validator, h.BroadcastBlock, heighter, nil, inserter, h.removePeer)
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fetchTx := func(peer string, hashes []common.Hash) error {
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p := h.peers.peer(peer)
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if p == nil {
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return errors.New("unknown peer")
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}
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return p.RequestTxs(hashes)
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}
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h.txFetcher = fetcher.NewTxFetcher(h.txpool.Has, h.txpool.AddRemotes, fetchTx)
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h.chainSync = newChainSyncer(h)
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return h, nil
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}
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func (h *handler) SetTmpDir(tmpdir string) {
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h.tmpdir = tmpdir
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if h.downloader != nil {
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h.downloader.SetTmpDir(tmpdir)
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}
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}
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func (h *handler) SetBatchSize(batchSize datasize.ByteSize) {
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h.batchSize = batchSize
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if h.downloader != nil {
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h.downloader.SetBatchSize(batchSize)
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}
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}
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func (h *handler) SetStagedSync(stagedSync *stagedsync.StagedSync) {
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h.stagedSync = stagedSync
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if h.downloader != nil {
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h.downloader.SetStagedSync(stagedSync)
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}
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}
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// runEthPeer registers an eth peer into the joint eth/snap peerset, adds it to
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// various subsistems and starts handling messages.
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func (h *handler) runEthPeer(peer *eth.Peer, handler eth.Handler) error {
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h.peerWG.Add(1)
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defer h.peerWG.Done()
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// Execute the Ethereum handshake
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var (
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genesis = h.genesis
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number = atomic.LoadUint64(&h.currentHeight)
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)
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hash, err := rawdb.ReadCanonicalHash(h.database, number)
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if err != nil {
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return fmt.Errorf("reading canonical hash for %d: %v", number, err)
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}
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td, err1 := rawdb.ReadTd(h.database, hash, number)
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if err1 != nil {
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return fmt.Errorf("reading td for %d %x: %v", number, hash, err1)
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}
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forkID := forkid.NewID(h.chainConfig, genesis.Hash(), number)
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if err := peer.Handshake(h.networkID, td, hash, genesis.Hash(), forkID, h.forkFilter); err != nil {
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peer.Log().Debug("Ethereum handshake failed", "err", err)
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return err
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}
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reject := false // reserved peer slots
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// Ignore maxPeers if this is a trusted peer
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if !peer.Peer.Info().Network.Trusted {
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if reject || h.peers.len() >= h.maxPeers {
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return p2p.DiscTooManyPeers
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}
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}
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peer.Log().Debug("Ethereum peer connected", "name", peer.Name())
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// Register the peer locally
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if err := h.peers.registerPeer(peer); err != nil {
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peer.Log().Error("Ethereum peer registration failed", "err", err)
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return err
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}
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defer h.removePeer(peer.ID())
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p := h.peers.peer(peer.ID())
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if p == nil {
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return errors.New("peer dropped during handling")
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}
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// Register the peer in the downloader. If the downloader considers it banned, we disconnect
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if err := h.downloader.RegisterPeer(peer.ID(), peer.Version(), peer); err != nil {
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peer.Log().Error("Failed to register peer in eth syncer", "err", err)
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return err
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}
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h.chainSync.handlePeerEvent()
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// Propagate existing transactions. new transactions appearing
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// after this will be sent via broadcasts.
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h.syncTransactions(peer)
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// If we have any explicit whitelist block hashes, request them
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for number := range h.whitelist {
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if err := peer.RequestHeadersByNumber(number, 1, 0, false); err != nil {
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return err
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}
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}
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// Handle incoming messages until the connection is torn down
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return handler(peer)
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}
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// removePeer unregisters a peer from the downloader and fetchers, removes it from
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// the set of tracked peers and closes the network connection to it.
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func (h *handler) removePeer(id string) {
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// Create a custom logger to avoid printing the entire id
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var logger log.Logger
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if len(id) < 16 {
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// Tests use short IDs, don't choke on them
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logger = log.New("peer", id)
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} else {
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logger = log.New("peer", id[:8])
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}
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// Abort if the peer does not exist
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peer := h.peers.peer(id)
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if peer == nil {
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logger.Error("Ethereum peer removal failed", "err", errPeerNotRegistered)
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return
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}
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// Remove the `eth` peer if it exists
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logger.Debug("Removing Ethereum peer")
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//nolint:errcheck
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h.downloader.UnregisterPeer(id)
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//nolint:errcheck
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h.txFetcher.Drop(id)
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if err := h.peers.unregisterPeer(id); err != nil {
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logger.Error("Ethereum peer removal failed", "err", err)
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}
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// Hard disconnect at the networking layer
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peer.Peer.Disconnect(p2p.DiscUselessPeer)
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}
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func (h *handler) Start(maxPeers int) {
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h.maxPeers = maxPeers
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// broadcast transactions
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h.wg.Add(1)
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h.txsCh = make(chan core.NewTxsEvent, txChanSize)
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h.txsSub = h.txpool.SubscribeNewTxsEvent(h.txsCh)
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go h.txBroadcastLoop()
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// start sync handlers
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h.wg.Add(2)
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go h.chainSync.loop()
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go h.txsyncLoop64() // TODO(karalabe): Legacy initial tx echange, drop with eth/64.
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}
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func (h *handler) Stop() {
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h.txsSub.Unsubscribe() // quits txBroadcastLoop
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// Quit chainSync and txsync64.
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// After this is done, no new peers will be accepted.
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close(h.quitSync)
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h.wg.Wait()
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// Disconnect existing sessions.
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// This also closes the gate for any new registrations on the peer set.
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// sessions which are already established but not added to h.peers yet
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// will exit when they try to register.
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h.peers.close()
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h.peerWG.Wait()
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log.Info("Ethereum protocol stopped")
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}
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// BroadcastBlock will either propagate a block to a subset of its peers, or
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// will only announce its availability (depending what's requested).
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func (h *handler) BroadcastBlock(block *types.Block, propagate bool) {
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hash := block.Hash()
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peers := h.peers.peersWithoutBlock(hash)
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// If propagation is requested, send to a subset of the peer
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if propagate {
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// Calculate the TD of the block (it's not imported yet, so block.Td is not valid)
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var td *big.Int
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if rawdb.HasBody(h.database, block.ParentHash(), block.NumberU64()-1) {
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parentTd, _ := rawdb.ReadTd(h.database, block.ParentHash(), block.NumberU64()-1)
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td = new(big.Int).Add(block.Difficulty(), parentTd)
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} else {
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// If the parent's unknown, abort insertion
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log.Error("Propagating dangling block", "number", block.Number(), "hash", hash)
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return
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}
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// Send the block to a subset of our peers
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transfer := peers[:int(math.Sqrt(float64(len(peers))))]
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for _, peer := range transfer {
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peer.AsyncSendNewBlock(block, td)
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}
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log.Trace("Propagated block", "hash", hash, "recipients", len(transfer), "duration", common.PrettyDuration(time.Since(block.ReceivedAt)))
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return
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}
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// Otherwise if the block is indeed in out own chain, announce it
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if rawdb.HasBody(h.database, hash, block.NumberU64()) {
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for _, peer := range peers {
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peer.AsyncSendNewBlockHash(block)
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}
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log.Trace("Announced block", "hash", hash, "recipients", len(peers), "duration", common.PrettyDuration(time.Since(block.ReceivedAt)))
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}
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}
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// BroadcastTransactions will propagate a batch of transactions
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// - To a square root of all peers
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// - And, separately, as announcements to all peers which are not known to
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// already have the given transaction.
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func (h *handler) BroadcastTransactions(txs types.Transactions) {
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var (
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annoCount int // Count of announcements made
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annoPeers int
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directCount int // Count of the txs sent directly to peers
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directPeers int // Count of the peers that were sent transactions directly
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txset = make(map[*ethPeer][]common.Hash) // Set peer->hash to transfer directly
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annos = make(map[*ethPeer][]common.Hash) // Set peer->hash to announce
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)
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// Broadcast transactions to a batch of peers not knowing about it
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for _, tx := range txs {
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peers := h.peers.peersWithoutTransaction(tx.Hash())
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// Send the tx unconditionally to a subset of our peers
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numDirect := int(math.Sqrt(float64(len(peers))))
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for _, peer := range peers[:numDirect] {
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txset[peer] = append(txset[peer], tx.Hash())
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}
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// For the remaining peers, send announcement only
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for _, peer := range peers[numDirect:] {
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annos[peer] = append(annos[peer], tx.Hash())
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}
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}
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for peer, hashes := range txset {
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directPeers++
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directCount += len(hashes)
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peer.AsyncSendTransactions(hashes)
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}
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for peer, hashes := range annos {
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annoPeers++
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annoCount += len(hashes)
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peer.AsyncSendPooledTransactionHashes(hashes)
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}
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log.Debug("Transaction broadcast", "txs", len(txs),
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"announce packs", annoPeers, "announced hashes", annoCount,
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"tx packs", directPeers, "broadcast txs", directCount)
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}
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// txBroadcastLoop announces new transactions to connected peers.
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func (h *handler) txBroadcastLoop() {
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defer h.wg.Done()
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for {
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select {
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case event := <-h.txsCh:
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h.BroadcastTransactions(event.Txs)
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case <-h.txsSub.Err():
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return
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}
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}
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}
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