mirror of
https://gitlab.com/pulsechaincom/erigon-pulse.git
synced 2024-12-22 19:50:36 +00:00
4607179849
* Fix typo * fix typos * Handle corner case when unwinding to geneis * No-op ForkChoice
467 lines
16 KiB
Go
467 lines
16 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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"context"
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"fmt"
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"math/big"
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"github.com/ledgerwatch/erigon/core/systemcontracts"
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"github.com/ledgerwatch/erigon-lib/kv"
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"github.com/ledgerwatch/erigon/common"
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"github.com/ledgerwatch/erigon/consensus"
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"github.com/ledgerwatch/erigon/consensus/misc"
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"github.com/ledgerwatch/erigon/core/state"
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"github.com/ledgerwatch/erigon/core/types"
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"github.com/ledgerwatch/erigon/core/vm"
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"github.com/ledgerwatch/erigon/params"
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"github.com/ledgerwatch/erigon/turbo/trie"
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)
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// BlockGen creates blocks for testing.
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// See GenerateChain for a detailed explanation.
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type BlockGen struct {
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i int
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parent *types.Block
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chain []*types.Block
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header *types.Header
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stateReader state.StateReader
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ibs *state.IntraBlockState
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gasPool *GasPool
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txs []types.Transaction
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receipts []*types.Receipt
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uncles []*types.Header
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config *params.ChainConfig
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engine consensus.Engine
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}
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// SetCoinbase sets the coinbase of the generated block.
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// It can be called at most once.
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func (b *BlockGen) SetCoinbase(addr common.Address) {
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if b.gasPool != nil {
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if len(b.txs) > 0 {
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panic("coinbase must be set before adding transactions")
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}
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panic("coinbase can only be set once")
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}
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b.header.Coinbase = addr
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b.gasPool = new(GasPool).AddGas(b.header.GasLimit)
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}
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// SetExtra sets the extra data field of the generated block.
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func (b *BlockGen) SetExtra(data []byte) {
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b.header.Extra = data
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}
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// SetNonce sets the nonce field of the generated block.
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func (b *BlockGen) SetNonce(nonce types.BlockNonce) {
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b.header.Nonce = nonce
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}
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// SetDifficulty sets the difficulty field of the generated block. This method is
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// useful for Clique tests where the difficulty does not depend on time. For the
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// ethash tests, please use OffsetTime, which implicitly recalculates the diff.
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func (b *BlockGen) SetDifficulty(diff *big.Int) {
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b.header.Difficulty = diff
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}
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// AddTx adds a transaction to the generated block. If no coinbase has
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// been set, the block's coinbase is set to the zero address.
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//
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// AddTx panics if the transaction cannot be executed. In addition to
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// the protocol-imposed limitations (gas limit, etc.), there are some
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// further limitations on the content of transactions that can be
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// added. Notably, contract code relying on the BLOCKHASH instruction
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// will panic during execution.
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func (b *BlockGen) AddTx(tx types.Transaction) {
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b.AddTxWithChain(nil, nil, tx)
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}
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func (b *BlockGen) AddFailedTx(tx types.Transaction) {
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b.AddFailedTxWithChain(nil, nil, tx)
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}
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// AddTxWithChain adds a transaction to the generated block. If no coinbase has
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// been set, the block's coinbase is set to the zero address.
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//
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// AddTxWithChain panics if the transaction cannot be executed. In addition to
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// the protocol-imposed limitations (gas limit, etc.), there are some
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// further limitations on the content of transactions that can be
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// added. If contract code relies on the BLOCKHASH instruction,
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// the block in chain will be returned.
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func (b *BlockGen) AddTxWithChain(getHeader func(hash common.Hash, number uint64) *types.Header, engine consensus.Engine, tx types.Transaction) {
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if b.gasPool == nil {
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b.SetCoinbase(common.Address{})
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}
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b.ibs.Prepare(tx.Hash(), common.Hash{}, len(b.txs))
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contractHasTEVM := func(_ common.Hash) (bool, error) { return false, nil }
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receipt, _, err := ApplyTransaction(b.config, getHeader, engine, &b.header.Coinbase, b.gasPool, b.ibs, state.NewNoopWriter(), b.header, tx, &b.header.GasUsed, vm.Config{}, contractHasTEVM)
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if err != nil {
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panic(err)
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}
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b.txs = append(b.txs, tx)
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b.receipts = append(b.receipts, receipt)
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}
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func (b *BlockGen) AddFailedTxWithChain(getHeader func(hash common.Hash, number uint64) *types.Header, engine consensus.Engine, tx types.Transaction) {
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if b.gasPool == nil {
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b.SetCoinbase(common.Address{})
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}
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b.ibs.Prepare(tx.Hash(), common.Hash{}, len(b.txs))
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contractHasTEVM := func(common.Hash) (bool, error) { return false, nil }
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receipt, _, err := ApplyTransaction(b.config, getHeader, engine, &b.header.Coinbase, b.gasPool, b.ibs, state.NewNoopWriter(), b.header, tx, &b.header.GasUsed, vm.Config{}, contractHasTEVM)
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_ = err // accept failed transactions
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b.txs = append(b.txs, tx)
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b.receipts = append(b.receipts, receipt)
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}
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// AddUncheckedTx forcefully adds a transaction to the block without any
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// validation.
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//
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// AddUncheckedTx will cause consensus failures when used during real
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// chain processing. This is best used in conjunction with raw block insertion.
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func (b *BlockGen) AddUncheckedTx(tx types.Transaction) {
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b.txs = append(b.txs, tx)
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}
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// Number returns the block number of the block being generated.
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func (b *BlockGen) Number() *big.Int {
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return new(big.Int).Set(b.header.Number)
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}
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// AddUncheckedReceipt forcefully adds a receipts to the block without a
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// backing transaction.
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//
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// AddUncheckedReceipt will cause consensus failures when used during real
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// chain processing. This is best used in conjunction with raw block insertion.
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func (b *BlockGen) AddUncheckedReceipt(receipt *types.Receipt) {
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b.receipts = append(b.receipts, receipt)
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}
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// TxNonce returns the next valid transaction nonce for the
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// account at addr. It panics if the account does not exist.
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func (b *BlockGen) TxNonce(addr common.Address) uint64 {
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if !b.ibs.Exist(addr) {
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panic("account does not exist")
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}
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return b.ibs.GetNonce(addr)
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}
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// AddUncle adds an uncle header to the generated block.
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func (b *BlockGen) AddUncle(h *types.Header) {
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b.uncles = append(b.uncles, h)
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}
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// PrevBlock returns a previously generated block by number. It panics if
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// num is greater or equal to the number of the block being generated.
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// For index -1, PrevBlock returns the parent block given to GenerateChain.
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func (b *BlockGen) PrevBlock(index int) *types.Block {
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if index >= b.i {
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panic(fmt.Errorf("block index %d out of range (%d,%d)", index, -1, b.i))
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}
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if index == -1 {
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return b.parent
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}
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return b.chain[index]
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}
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// OffsetTime modifies the time instance of a block, implicitly changing its
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// associated difficulty. It's useful to test scenarios where forking is not
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// tied to chain length directly.
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func (b *BlockGen) OffsetTime(seconds int64) {
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b.header.Time += uint64(seconds)
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parent := b.parent
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if b.header.Time <= parent.Time() {
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panic("block time out of range")
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}
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chainreader := &FakeChainReader{Cfg: b.config}
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b.header.Difficulty = b.engine.CalcDifficulty(
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chainreader,
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b.header.Time,
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parent.Time(),
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parent.Difficulty(),
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parent.NumberU64(),
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parent.Hash(),
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parent.UncleHash(),
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parent.Seal(),
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)
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}
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func (b *BlockGen) GetHeader() *types.Header {
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return b.header
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}
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func (b *BlockGen) GetParent() *types.Block {
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return b.parent
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}
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func (b *BlockGen) GetReceipts() []*types.Receipt {
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return b.receipts
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}
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var GenerateTrace bool
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type ChainPack struct {
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Length int
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Headers []*types.Header
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Blocks []*types.Block
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Receipts []types.Receipts
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TopBlock *types.Block // Convenience field to access the last block
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}
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// OneBlock returns a ChainPack which contains just one
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// block with given index
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func (cp ChainPack) Slice(i, j int) *ChainPack {
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return &ChainPack{
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Length: j + 1 - i,
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Headers: cp.Headers[i:j],
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Blocks: cp.Blocks[i:j],
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Receipts: cp.Receipts[i:j],
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TopBlock: cp.Blocks[j-1],
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}
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}
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// GenerateChain creates a chain of n blocks. The first block's
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// parent will be the provided parent. db is used to store
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// intermediate states and should contain the parent's state trie.
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//
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// The generator function is called with a new block generator for
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// every block. Any transactions and uncles added to the generator
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// become part of the block. If gen is nil, the blocks will be empty
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// and their coinbase will be the zero address.
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//
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// Blocks created by GenerateChain do not contain valid proof of work
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// values. Inserting them into BlockChain requires use of FakePow or
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// a similar non-validating proof of work implementation.
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func GenerateChain(config *params.ChainConfig, parent *types.Block, engine consensus.Engine, db kv.RwDB, n int, gen func(int, *BlockGen),
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intermediateHashes bool,
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) (*ChainPack, error) {
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if config == nil {
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config = params.TestChainConfig
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}
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headers, blocks, receipts := make([]*types.Header, n), make(types.Blocks, n), make([]types.Receipts, n)
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types.SetHeaderSealFlag(config.IsHeaderWithSeal())
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chainreader := &FakeChainReader{Cfg: config, current: parent}
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tx, errBegin := db.BeginRw(context.Background())
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if errBegin != nil {
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return nil, errBegin
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}
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defer tx.Rollback()
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genblock := func(i int, parent *types.Block, ibs *state.IntraBlockState, stateReader state.StateReader,
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plainStateWriter *state.PlainStateWriter) (*types.Block, types.Receipts, error) {
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b := &BlockGen{i: i, chain: blocks, parent: parent, ibs: ibs, stateReader: stateReader, config: config, engine: engine, txs: make([]types.Transaction, 0, 1), receipts: make([]*types.Receipt, 0, 1), uncles: make([]*types.Header, 0, 1)}
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b.header = makeHeader(chainreader, parent, ibs, b.engine)
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// Mutate the state and block according to any hard-fork specs
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if daoBlock := config.DAOForkBlock; daoBlock != nil {
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limit := new(big.Int).Add(daoBlock, params.DAOForkExtraRange)
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if b.header.Number.Cmp(daoBlock) >= 0 && b.header.Number.Cmp(limit) < 0 {
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if config.DAOForkSupport {
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b.header.Extra = common.CopyBytes(params.DAOForkBlockExtra)
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}
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}
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}
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if config.DAOForkSupport && config.DAOForkBlock != nil && config.DAOForkBlock.Cmp(b.header.Number) == 0 {
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misc.ApplyDAOHardFork(ibs)
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}
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systemcontracts.UpgradeBuildInSystemContract(config, b.header.Number, ibs)
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// Execute any user modifications to the block
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if gen != nil {
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gen(i, b)
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}
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if b.engine != nil {
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// Finalize and seal the block
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if _, _, _, err := b.engine.FinalizeAndAssemble(config, b.header, ibs, b.txs, b.uncles, b.receipts, nil, nil, nil, nil); err != nil {
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return nil, nil, fmt.Errorf("call to FinaliseAndAssemble: %w", err)
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}
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// Write state changes to db
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if err := ibs.CommitBlock(config.Rules(b.header.Number.Uint64()), plainStateWriter); err != nil {
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return nil, nil, fmt.Errorf("call to CommitBlock to plainStateWriter: %w", err)
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}
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if err := tx.ClearBucket(kv.HashedAccounts); err != nil {
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return nil, nil, fmt.Errorf("clear HashedAccounts bucket: %w", err)
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}
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if err := tx.ClearBucket(kv.HashedStorage); err != nil {
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return nil, nil, fmt.Errorf("clear HashedStorage bucket: %w", err)
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}
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if err := tx.ClearBucket(kv.TrieOfAccounts); err != nil {
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return nil, nil, fmt.Errorf("clear TrieOfAccounts bucket: %w", err)
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}
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if err := tx.ClearBucket(kv.TrieOfStorage); err != nil {
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return nil, nil, fmt.Errorf("clear TrieOfStorage bucket: %w", err)
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}
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c, err := tx.Cursor(kv.PlainState)
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if err != nil {
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return nil, nil, err
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}
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h := common.NewHasher()
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defer common.ReturnHasherToPool(h)
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for k, v, err := c.First(); k != nil; k, v, err = c.Next() {
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if err != nil {
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return nil, nil, fmt.Errorf("interate over plain state: %w", err)
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}
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var newK []byte
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if len(k) == common.AddressLength {
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newK = make([]byte, common.HashLength)
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} else {
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newK = make([]byte, common.HashLength*2+common.IncarnationLength)
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}
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h.Sha.Reset()
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//nolint:errcheck
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h.Sha.Write(k[:common.AddressLength])
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//nolint:errcheck
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h.Sha.Read(newK[:common.HashLength])
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if len(k) > common.AddressLength {
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copy(newK[common.HashLength:], k[common.AddressLength:common.AddressLength+common.IncarnationLength])
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h.Sha.Reset()
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//nolint:errcheck
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h.Sha.Write(k[common.AddressLength+common.IncarnationLength:])
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//nolint:errcheck
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h.Sha.Read(newK[common.HashLength+common.IncarnationLength:])
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if err = tx.Put(kv.HashedStorage, newK, common.CopyBytes(v)); err != nil {
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return nil, nil, fmt.Errorf("insert hashed key: %w", err)
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}
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} else {
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if err = tx.Put(kv.HashedAccounts, newK, common.CopyBytes(v)); err != nil {
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return nil, nil, fmt.Errorf("insert hashed key: %w", err)
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}
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}
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}
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c.Close()
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if GenerateTrace {
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fmt.Printf("State after %d================\n", b.header.Number)
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if err := tx.ForEach(kv.HashedAccounts, nil, func(k, v []byte) error {
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fmt.Printf("%x: %x\n", k, v)
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return nil
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}); err != nil {
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return nil, nil, fmt.Errorf("print state: %w", err)
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}
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fmt.Printf("..................\n")
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if err := tx.ForEach(kv.HashedStorage, nil, func(k, v []byte) error {
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fmt.Printf("%x: %x\n", k, v)
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return nil
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}); err != nil {
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return nil, nil, fmt.Errorf("print state: %w", err)
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}
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fmt.Printf("===============================\n")
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}
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if hash, err := trie.CalcRoot("GenerateChain", tx); err == nil {
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b.header.Root = hash
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} else {
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return nil, nil, fmt.Errorf("call to CalcTrieRoot: %w", err)
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}
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// Recreating block to make sure Root makes it into the header
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block := types.NewBlock(b.header, b.txs, b.uncles, b.receipts)
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return block, b.receipts, nil
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}
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return nil, nil, fmt.Errorf("no engine to generate blocks")
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}
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for i := 0; i < n; i++ {
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stateReader := state.NewPlainStateReader(tx)
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plainStateWriter := state.NewPlainStateWriter(tx, nil, parent.NumberU64()+uint64(i)+1)
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ibs := state.New(stateReader)
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block, receipt, err := genblock(i, parent, ibs, stateReader, plainStateWriter)
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if err != nil {
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return nil, fmt.Errorf("generating block %d: %w", i, err)
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}
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headers[i] = block.Header()
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blocks[i] = block
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receipts[i] = receipt
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parent = block
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}
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tx.Rollback()
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return &ChainPack{Length: n, Headers: headers, Blocks: blocks, Receipts: receipts, TopBlock: blocks[n-1]}, nil
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}
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func MakeEmptyHeader(parent *types.Header, chainConfig *params.ChainConfig, timestamp uint64, targetGasLimit *uint64) *types.Header {
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header := &types.Header{
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Root: parent.Root,
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ParentHash: parent.Hash(),
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Number: new(big.Int).Add(parent.Number, common.Big1),
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Difficulty: common.Big0,
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Time: timestamp,
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}
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parentGasLimit := parent.GasLimit
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// Set baseFee and GasLimit if we are on an EIP-1559 chain
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if chainConfig.IsLondon(header.Number.Uint64()) {
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header.Eip1559 = true
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header.BaseFee = misc.CalcBaseFee(chainConfig, parent)
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if !chainConfig.IsLondon(parent.Number.Uint64()) {
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parentGasLimit = parent.GasLimit * params.ElasticityMultiplier
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}
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}
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if targetGasLimit != nil {
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header.GasLimit = CalcGasLimit(parentGasLimit, *targetGasLimit)
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} else {
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header.GasLimit = parentGasLimit
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}
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return header
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}
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func makeHeader(chain consensus.ChainReader, parent *types.Block, state *state.IntraBlockState, engine consensus.Engine) *types.Header {
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var time uint64
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if parent.Time() == 0 {
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time = 10
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} else {
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time = parent.Time() + 10 // block time is fixed at 10 seconds
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}
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header := MakeEmptyHeader(parent.Header(), chain.Config(), time, nil)
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header.Coinbase = parent.Coinbase()
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header.Difficulty = engine.CalcDifficulty(chain, time,
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time-10,
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parent.Difficulty(),
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parent.NumberU64(),
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parent.Hash(),
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parent.UncleHash(),
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parent.Seal(),
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)
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header.Seal = engine.GenerateSeal(chain, header, parent.Header(), nil)
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header.WithSeal = chain.Config().IsHeaderWithSeal()
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return header
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}
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type FakeChainReader struct {
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Cfg *params.ChainConfig
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current *types.Block
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}
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// Config returns the chain configuration.
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func (cr *FakeChainReader) Config() *params.ChainConfig {
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return cr.Cfg
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}
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func (cr *FakeChainReader) CurrentHeader() *types.Header { return cr.current.Header() }
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func (cr *FakeChainReader) GetHeaderByNumber(number uint64) *types.Header { return nil }
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func (cr *FakeChainReader) GetHeaderByHash(hash common.Hash) *types.Header { return nil }
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func (cr *FakeChainReader) GetHeader(hash common.Hash, number uint64) *types.Header { return nil }
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func (cr *FakeChainReader) GetBlock(hash common.Hash, number uint64) *types.Block { return nil }
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func (cr *FakeChainReader) HasBlock(hash common.Hash, number uint64) bool { return false }
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func (cr *FakeChainReader) GetTd(hash common.Hash, number uint64) *big.Int { return nil }
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