mirror of
https://gitlab.com/pulsechaincom/erigon-pulse.git
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449 lines
14 KiB
Go
449 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 core
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import (
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crand "crypto/rand"
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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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mrand "math/rand"
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"sync/atomic"
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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/rawdb"
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"github.com/ledgerwatch/turbo-geth/core/types"
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"github.com/ledgerwatch/turbo-geth/ethdb"
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"github.com/ledgerwatch/turbo-geth/log"
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"github.com/ledgerwatch/turbo-geth/params"
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)
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const (
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headerCacheLimit = 512
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tdCacheLimit = 1024
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numberCacheLimit = 2048
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)
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// HeaderChain implements the basic block header chain logic that is shared by
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// core.BlockChain and light.LightChain. It is not usable in itself, only as
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// a part of either structure.
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//
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// HeaderChain is responsible for maintaining the header chain including the
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// header query and updating.
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//
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// The components maintained by headerchain includes: (1) total difficult
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// (2) header (3) block hash -> number mapping (4) canonical number -> hash mapping
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// and (5) head header flag.
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//
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// It is not thread safe either, the encapsulating chain structures should do
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// the necessary mutex locking/unlocking.
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type HeaderChain struct {
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config *params.ChainConfig
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chainDb ethdb.Database
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genesisHeader *types.Header
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currentHeader atomic.Value // Current head of the header chain (may be above the block chain!)
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currentHeaderHash common.Hash // Hash of the current head of the header chain (prevent recomputing all the time)
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procInterrupt func() bool
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rand *mrand.Rand
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engine consensus.Engine
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}
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// NewHeaderChain creates a new HeaderChain structure. ProcInterrupt points
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// to the parent's interrupt semaphore.
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func NewHeaderChain(chainDb ethdb.Database, config *params.ChainConfig, engine consensus.Engine, procInterrupt func() bool) (*HeaderChain, error) {
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// Seed a fast but crypto originating random generator
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seed, err := crand.Int(crand.Reader, big.NewInt(math.MaxInt64))
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if err != nil {
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return nil, err
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}
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hc := &HeaderChain{
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config: config,
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chainDb: chainDb,
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procInterrupt: procInterrupt,
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rand: mrand.New(mrand.NewSource(seed.Int64())),
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engine: engine,
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}
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hc.genesisHeader = hc.GetHeaderByNumber(0)
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if hc.genesisHeader == nil {
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return nil, ErrNoGenesis
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}
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hc.currentHeader.Store(hc.genesisHeader)
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if head := rawdb.ReadHeadBlockHash(chainDb); head != (common.Hash{}) {
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if chead := hc.GetHeaderByHash(head); chead != nil {
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hc.currentHeader.Store(chead)
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}
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}
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hc.currentHeaderHash = hc.CurrentHeader().Hash()
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headHeaderGauge.Update(hc.CurrentHeader().Number.Int64())
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return hc, nil
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}
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// GetBlockNumber retrieves the block number belonging to the given hash
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// from the cache or database
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func (hc *HeaderChain) GetBlockNumber(dbr ethdb.Database, hash common.Hash) *uint64 {
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number := rawdb.ReadHeaderNumber(dbr, hash)
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return number
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}
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type headerWriteResult struct {
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status WriteStatus
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ignored int
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imported int
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lastHash common.Hash
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lastHeader *types.Header
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}
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func (hc *HeaderChain) ValidateHeaderChain(chain []*types.Header, checkFreq int) (int, error) {
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// Do a sanity check that the provided chain is actually ordered and linked
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for i := 1; i < len(chain); i++ {
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if chain[i].Number.Uint64() != chain[i-1].Number.Uint64()+1 {
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hash := chain[i].Hash()
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parentHash := chain[i-1].Hash()
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// Chain broke ancestry, log a message (programming error) and skip insertion
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log.Error("Non contiguous header insert", "number", chain[i].Number, "hash", hash,
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"parent", chain[i].ParentHash, "prevnumber", chain[i-1].Number, "prevhash", parentHash)
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return 0, fmt.Errorf("non contiguous insert: item %d is #%d [%x…], item %d is #%d [%x…] (parent [%x…])", i-1, chain[i-1].Number,
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parentHash.Bytes()[:4], i, chain[i].Number, hash.Bytes()[:4], chain[i].ParentHash[:4])
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}
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// If the header is a banned one, straight out abort
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if BadHashes[chain[i].ParentHash] {
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return i - 1, ErrBlacklistedHash
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}
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// If it's the last header in the cunk, we need to check it too
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if i == len(chain)-1 && BadHashes[chain[i].Hash()] {
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return i, ErrBlacklistedHash
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}
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}
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// Generate the list of seal verification requests, and start the parallel verifier
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seals := make([]bool, len(chain))
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if checkFreq != 0 {
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// In case of checkFreq == 0 all seals are left false.
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for i := 0; i < len(seals)/checkFreq; i++ {
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index := i*checkFreq + hc.rand.Intn(checkFreq)
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if index >= len(seals) {
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index = len(seals) - 1
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}
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seals[index] = true
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}
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// Last should always be verified to avoid junk.
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seals[len(seals)-1] = true
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}
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cancel, results := hc.engine.VerifyHeaders(hc, chain, seals)
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defer cancel()
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// Iterate over the headers and ensure they all check out
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for i, header := range chain {
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// If the chain is terminating, stop processing blocks
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if hc.procInterrupt() {
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log.Debug("Premature abort during headers verification")
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return 0, errors.New("aborted")
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}
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// If the header is a banned one, straight out abort
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if BadHashes[header.Hash()] {
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return i, ErrBlacklistedHash
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}
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// Otherwise wait for headers checks and ensure they pass
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if err := <-results; err != nil {
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return i, err
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}
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}
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return 0, nil
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}
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// GetBlockHashesFromHash retrieves a number of block hashes starting at a given
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// hash, fetching towards the genesis block.
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func (hc *HeaderChain) GetBlockHashesFromHash(hash common.Hash, max uint64) []common.Hash {
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// Get the origin header from which to fetch
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header := hc.GetHeaderByHash(hash)
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if header == nil {
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return nil
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}
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// Iterate the headers until enough is collected or the genesis reached
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chain := make([]common.Hash, 0, max)
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for i := uint64(0); i < max; i++ {
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next := header.ParentHash
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if header = hc.GetHeader(next, header.Number.Uint64()-1); header == nil {
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break
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}
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chain = append(chain, next)
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if header.Number.Sign() == 0 {
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break
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}
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}
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return chain
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}
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// GetAncestor retrieves the Nth ancestor of a given block. It assumes that either the given block or
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// a close ancestor of it is canonical. maxNonCanonical points to a downwards counter limiting the
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// number of blocks to be individually checked before we reach the canonical chain.
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//
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// Note: ancestor == 0 returns the same block, 1 returns its parent and so on.
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func (hc *HeaderChain) GetAncestor(hash common.Hash, number, ancestor uint64, maxNonCanonical *uint64) (common.Hash, uint64) {
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if ancestor > number {
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return common.Hash{}, 0
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}
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if ancestor == 1 {
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// in this case it is cheaper to just read the header
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if header := hc.GetHeader(hash, number); header != nil {
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return header.ParentHash, number - 1
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}
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return common.Hash{}, 0
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}
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for ancestor != 0 {
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h, err := rawdb.ReadCanonicalHash(hc.chainDb, number)
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if err != nil {
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panic(err)
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}
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if h == hash {
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ancestorHash, err := rawdb.ReadCanonicalHash(hc.chainDb, number-ancestor)
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if err != nil {
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panic(err)
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}
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h, err := rawdb.ReadCanonicalHash(hc.chainDb, number)
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if err != nil {
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panic(err)
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}
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if h == hash {
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number -= ancestor
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return ancestorHash, number
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}
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}
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if *maxNonCanonical == 0 {
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return common.Hash{}, 0
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}
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*maxNonCanonical--
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ancestor--
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header := hc.GetHeader(hash, number)
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if header == nil {
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return common.Hash{}, 0
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}
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hash = header.ParentHash
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number--
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}
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return hash, number
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}
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// GetTd retrieves a block's total difficulty in the canonical chain from the
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// database by hash and number, caching it if found.
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func (hc *HeaderChain) GetTd(dbr ethdb.Getter, hash common.Hash, number uint64) *big.Int {
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td, _ := rawdb.ReadTd(dbr, hash, number)
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return td
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}
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// GetTdByHash retrieves a block's total difficulty in the canonical chain from the
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// database by hash, caching it if found.
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func (hc *HeaderChain) GetTdByHash(hash common.Hash) *big.Int {
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number := hc.GetBlockNumber(hc.chainDb, hash)
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if number == nil {
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return nil
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}
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return hc.GetTd(hc.chainDb, hash, *number)
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}
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// GetHeader retrieves a block header from the database by hash and number,
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// caching it if found.
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func (hc *HeaderChain) GetHeader(hash common.Hash, number uint64) *types.Header {
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header := rawdb.ReadHeader(hc.chainDb, hash, number)
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if header == nil {
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return nil
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}
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return header
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}
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// GetHeaderByHash retrieves a block header from the database by hash, caching it if
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// found.
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func (hc *HeaderChain) GetHeaderByHash(hash common.Hash) *types.Header {
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number := hc.GetBlockNumber(hc.chainDb, hash)
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if number == nil {
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return nil
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}
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return hc.GetHeader(hash, *number)
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}
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// HasHeader checks if a block header is present in the database or not.
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// In theory, if header is present in the database, all relative components
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// like td and hash->number should be present too.
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func (hc *HeaderChain) HasHeader(hash common.Hash, number uint64) bool {
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return rawdb.HasHeader(hc.chainDb, hash, number)
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}
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// GetHeaderByNumber retrieves a block header from the database by number,
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// caching it (associated with its hash) if found.
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func (hc *HeaderChain) GetHeaderByNumber(number uint64) *types.Header {
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hash, err := rawdb.ReadCanonicalHash(hc.chainDb, number)
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if err != nil {
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panic(err)
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}
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if hash == (common.Hash{}) {
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return nil
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}
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return hc.GetHeader(hash, number)
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}
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func (hc *HeaderChain) GetCanonicalHash(number uint64) common.Hash {
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h, err := rawdb.ReadCanonicalHash(hc.chainDb, number)
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if err != nil {
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panic(err)
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}
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return h
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}
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// CurrentHeader retrieves the current head header of the canonical chain. The
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// header is retrieved from the HeaderChain's internal cache.
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func (hc *HeaderChain) CurrentHeader() *types.Header {
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headHash := rawdb.ReadHeadHeaderHash(hc.chainDb)
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headNumber := rawdb.ReadHeaderNumber(hc.chainDb, headHash)
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return rawdb.ReadHeader(hc.chainDb, headHash, *headNumber)
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}
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// SetCurrentHeader sets the current head header of the canonical chain.
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func (hc *HeaderChain) SetCurrentHeader(dbw ethdb.Putter, head *types.Header) {
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rawdb.WriteHeadHeaderHash(dbw, head.Hash())
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hc.currentHeader.Store(head)
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hc.currentHeaderHash = head.Hash()
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headHeaderGauge.Update(head.Number.Int64())
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}
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type (
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// UpdateHeadBlocksCallback is a callback function that is called by SetHead
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// before head header is updated. The method will return the actual block it
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// updated the head to (missing state) and a flag if setHead should continue
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// rewinding till that forcefully (exceeded ancient limits)
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UpdateHeadBlocksCallback func(ethdb.Database, *types.Header) (uint64, bool)
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// DeleteBlockContentCallback is a callback function that is called by SetHead
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// before each header is deleted.
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DeleteBlockContentCallback func(ethdb.Database, common.Hash, uint64)
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)
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// SetHead rewinds the local chain to a new head. Everything above the new head
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// will be deleted and the new one set.
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func (hc *HeaderChain) SetHead(head uint64, updateFn UpdateHeadBlocksCallback, delFn DeleteBlockContentCallback) {
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var (
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parentHash common.Hash
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batch = hc.chainDb.NewBatch()
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origin = true
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)
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for hdr := hc.CurrentHeader(); hdr != nil && hdr.Number.Uint64() > head; hdr = hc.CurrentHeader() {
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num := hdr.Number.Uint64()
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// Rewind block chain to new head.
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parent := hc.GetHeader(hdr.ParentHash, num-1)
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if parent == nil {
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parent = hc.genesisHeader
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}
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parentHash = hdr.ParentHash
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// Notably, since geth has the possibility for setting the head to a low
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// height which is even lower than ancient head.
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// In order to ensure that the head is always no higher than the data in
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// the database (ancient store or active store), we need to update head
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// first then remove the relative data from the database.
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//
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// Update head first(head fast block, head full block) before deleting the data.
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markerBatch := hc.chainDb.NewBatch()
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if updateFn != nil {
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newHead, force := updateFn(markerBatch, parent)
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if force && newHead < head {
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log.Warn("Force rewinding till ancient limit", "head", newHead)
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head = newHead
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}
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}
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// Update head header then.
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rawdb.WriteHeadHeaderHash(markerBatch, parentHash)
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if _, err := markerBatch.Commit(); err != nil {
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log.Crit("Failed to update chain markers", "error", err)
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}
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hc.currentHeader.Store(parent)
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hc.currentHeaderHash = parentHash
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headHeaderGauge.Update(parent.Number.Int64())
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// If this is the first iteration, wipe any leftover data upwards too so
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// we don't end up with dangling daps in the database
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var nums []uint64
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if origin {
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for n := num + 1; len(rawdb.ReadAllHashes(hc.chainDb, n)) > 0; n++ {
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nums = append([]uint64{n}, nums...) // suboptimal, but we don't really expect this path
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}
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origin = false
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}
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nums = append(nums, num)
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// Remove the related data from the database on all sidechains
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for _, num := range nums {
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// Gather all the side fork hashes
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hashes := rawdb.ReadAllHashes(hc.chainDb, num)
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if len(hashes) == 0 {
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// No hashes in the database whatsoever, probably frozen already
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hashes = append(hashes, hdr.Hash())
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}
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for _, hash := range hashes {
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if delFn != nil {
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delFn(batch, hash, num)
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}
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rawdb.DeleteHeader(batch, hash, num)
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if err := rawdb.DeleteTd(batch, hash, num); err != nil {
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panic(err)
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}
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}
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if err := rawdb.DeleteCanonicalHash(batch, num); err != nil {
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panic(err)
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}
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}
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}
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if _, err := batch.Commit(); err != nil {
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panic(err)
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}
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}
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// SetGenesis sets a new genesis block header for the chain
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func (hc *HeaderChain) SetGenesis(head *types.Header) {
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hc.genesisHeader = head
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}
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// Config retrieves the header chain's chain configuration.
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func (hc *HeaderChain) Config() *params.ChainConfig { return hc.config }
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// Engine retrieves the header chain's consensus engine.
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func (hc *HeaderChain) Engine() consensus.Engine { return hc.engine }
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func (hc *HeaderChain) SetEngine(engine consensus.Engine) {
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hc.engine = engine
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}
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// GetBlock implements consensus.ChainReader, and returns nil for every input as
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// a header chain does not have blocks available for retrieval.
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func (hc *HeaderChain) GetBlock(hash common.Hash, number uint64) *types.Block {
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return nil
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}
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