627 lines
21 KiB
Go
627 lines
21 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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"fmt"
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"math/big"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/consensus"
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"github.com/ethereum/go-ethereum/consensus/misc"
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"github.com/ethereum/go-ethereum/consensus/misc/eip1559"
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"github.com/ethereum/go-ethereum/consensus/misc/eip4844"
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"github.com/ethereum/go-ethereum/core/rawdb"
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"github.com/ethereum/go-ethereum/core/state"
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"github.com/ethereum/go-ethereum/core/systemcontracts"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/core/vm"
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/params"
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"github.com/ethereum/go-ethereum/triedb"
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"github.com/holiman/uint256"
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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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cm *chainMaker
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parent *types.Block
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header *types.Header
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statedb *state.StateDB
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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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withdrawals []*types.Withdrawal
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engine consensus.Engine
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// extra data of block
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sidecars types.BlobSidecars
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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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// SetPoS makes the header a PoS-header (0 difficulty)
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func (b *BlockGen) SetPoS() {
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b.header.Difficulty = new(big.Int)
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}
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// Difficulty returns the currently calculated difficulty of the block.
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func (b *BlockGen) Difficulty() *big.Int {
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return new(big.Int).Set(b.header.Difficulty)
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}
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// SetParentBeaconRoot sets the parent beacon root field of the generated
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// block.
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func (b *BlockGen) SetParentBeaconRoot(root common.Hash) {
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b.header.ParentBeaconRoot = &root
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var (
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blockContext = NewEVMBlockContext(b.header, b.cm, &b.header.Coinbase)
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vmenv = vm.NewEVM(blockContext, vm.TxContext{}, b.statedb, b.cm.config, vm.Config{})
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)
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ProcessBeaconBlockRoot(root, vmenv, b.statedb)
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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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// There are a few options can be passed as well in order to run some
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// customized rules.
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// - bc: enables the ability to query historical block hashes for BLOCKHASH
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// - vmConfig: extends the flexibility for customizing evm rules, e.g. enable extra EIPs
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func (b *BlockGen) addTx(bc *BlockChain, vmConfig vm.Config, 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.statedb.SetTxContext(tx.Hash(), len(b.txs), 0)
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receipt, err := ApplyTransaction(b.cm.config, bc, &b.header.Coinbase, b.gasPool, b.statedb, b.header, tx, &b.header.GasUsed, vmConfig, NewReceiptBloomGenerator())
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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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if b.header.BlobGasUsed != nil {
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*b.header.BlobGasUsed += receipt.BlobGasUsed
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}
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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 the protocol-imposed
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// limitations (gas limit, etc.), there are some further limitations on the content of
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// transactions that can be added. Notably, contract code relying on the BLOCKHASH
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// instruction will panic during execution if it attempts to access a block number outside
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// of the range created by GenerateChain.
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func (b *BlockGen) AddTx(tx *types.Transaction) {
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b.addTx(nil, vm.Config{}, 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 the
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// protocol-imposed limitations (gas limit, etc.), there are some further limitations on
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// the content of transactions that can be added. If contract code relies on the BLOCKHASH
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// instruction, the block in chain will be returned.
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func (b *BlockGen) AddTxWithChain(bc *BlockChain, tx *types.Transaction) {
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b.addTx(bc, vm.Config{}, tx)
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}
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// AddTxWithVMConfig 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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// The evm interpreter can be customized with the provided vm config.
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func (b *BlockGen) AddTxWithVMConfig(tx *types.Transaction, config vm.Config) {
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b.addTx(nil, config, tx)
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}
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// GetBalance returns the balance of the given address at the generated block.
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func (b *BlockGen) GetBalance(addr common.Address) *uint256.Int {
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return b.statedb.GetBalance(addr)
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}
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// AddUncheckedTx forcefully adds a transaction to the block without any 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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// AddBlobSidecar add block's blob sidecar for DA checking.
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func (b *BlockGen) AddBlobSidecar(sidecar *types.BlobSidecar) {
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b.sidecars = append(b.sidecars, sidecar)
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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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// Timestamp returns the timestamp of the block being generated.
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func (b *BlockGen) Timestamp() uint64 {
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return b.header.Time
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}
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// BaseFee returns the EIP-1559 base fee of the block being generated.
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func (b *BlockGen) BaseFee() *big.Int {
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return new(big.Int).Set(b.header.BaseFee)
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}
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// ExcessBlobGas returns the EIP-4844 ExcessBlobGas of the block.
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func (b *BlockGen) ExcessBlobGas() uint64 {
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excessBlobGas := b.header.ExcessBlobGas
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if excessBlobGas == nil {
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return 0
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}
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return *excessBlobGas
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}
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// Gas returns the amount of gas left in the current block.
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func (b *BlockGen) Gas() uint64 {
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return b.header.GasLimit - b.header.GasUsed
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}
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// Signer returns a valid signer instance for the current block.
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func (b *BlockGen) Signer() types.Signer {
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return types.MakeSigner(b.cm.config, b.header.Number, b.header.Time)
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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.statedb.Exist(addr) {
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panic("account does not exist")
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}
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return b.statedb.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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// The uncle will have the same timestamp and auto-generated difficulty
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h.Time = b.header.Time
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var parent *types.Header
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for i := b.i - 1; i >= 0; i-- {
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if b.cm.chain[i].Hash() == h.ParentHash {
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parent = b.cm.chain[i].Header()
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break
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}
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}
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h.Difficulty = b.engine.CalcDifficulty(b.cm, b.header.Time, parent)
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// The gas limit and price should be derived from the parent
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h.GasLimit = parent.GasLimit
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if b.cm.config.IsLondon(h.Number) {
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h.BaseFee = eip1559.CalcBaseFee(b.cm.config, parent)
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if b.cm.config.Parlia == nil && !b.cm.config.IsLondon(parent.Number) {
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parentGasLimit := parent.GasLimit * b.cm.config.ElasticityMultiplier()
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h.GasLimit = CalcGasLimit(parentGasLimit, parentGasLimit)
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}
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}
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b.uncles = append(b.uncles, h)
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}
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// AddWithdrawal adds a withdrawal to the generated block.
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// It returns the withdrawal index.
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func (b *BlockGen) AddWithdrawal(w *types.Withdrawal) uint64 {
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cpy := *w
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cpy.Index = b.nextWithdrawalIndex()
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b.withdrawals = append(b.withdrawals, &cpy)
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return cpy.Index
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}
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// nextWithdrawalIndex computes the index of the next withdrawal.
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func (b *BlockGen) nextWithdrawalIndex() uint64 {
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if len(b.withdrawals) != 0 {
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return b.withdrawals[len(b.withdrawals)-1].Index + 1
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}
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for i := b.i - 1; i >= 0; i-- {
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if wd := b.cm.chain[i].Withdrawals(); len(wd) != 0 {
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return wd[len(wd)-1].Index + 1
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}
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if i == 0 {
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// Correctly set the index if no parent had withdrawals.
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if wd := b.cm.bottom.Withdrawals(); len(wd) != 0 {
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return wd[len(wd)-1].Index + 1
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}
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}
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}
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return 0
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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.cm.bottom
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}
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return b.cm.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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if b.header.Time <= b.cm.bottom.Header().Time {
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panic("block time out of range")
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}
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b.header.Difficulty = b.engine.CalcDifficulty(b.cm, b.header.Time, b.parent.Header())
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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 ethdb.Database, n int, gen func(int, *BlockGen)) ([]*types.Block, []types.Receipts) {
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if config == nil {
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config = params.TestChainConfig
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}
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if engine == nil {
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panic("nil consensus engine")
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}
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cm := newChainMaker(parent, config, engine)
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genblock := func(i int, parent *types.Block, triedb *triedb.Database, statedb *state.StateDB) (*types.Block, types.Receipts) {
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b := &BlockGen{i: i, cm: cm, parent: parent, statedb: statedb, engine: engine}
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b.header = cm.makeHeader(parent, statedb, b.engine)
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// Set the difficulty for clique block. The chain maker doesn't have access
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// to a chain, so the difficulty will be left unset (nil). Set it here to the
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// correct value.
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if b.header.Difficulty == nil {
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if config.TerminalTotalDifficulty == nil {
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// Clique chain
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b.header.Difficulty = big.NewInt(2)
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} else {
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// Post-merge chain
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b.header.Difficulty = big.NewInt(0)
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}
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}
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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(statedb)
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}
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if !config.IsFeynman(b.header.Number, b.header.Time) {
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systemcontracts.UpgradeBuildInSystemContract(config, b.header.Number, parent.Time(), b.header.Time, statedb)
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}
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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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block, _, err := b.engine.FinalizeAndAssemble(cm, b.header, statedb, b.txs, b.uncles, b.receipts, b.withdrawals)
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if err != nil {
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panic(err)
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}
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if block.Header().EmptyWithdrawalsHash() {
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block = block.WithWithdrawals(make([]*types.Withdrawal, 0))
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}
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if config.IsCancun(block.Number(), block.Time()) {
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for _, s := range b.sidecars {
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s.BlockNumber = block.Number()
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s.BlockHash = block.Hash()
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}
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block = block.WithSidecars(b.sidecars)
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}
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// Write state changes to db
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root, _, err := statedb.Commit(b.header.Number.Uint64(), nil)
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if err != nil {
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panic(fmt.Sprintf("state write error: %v", err))
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}
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if err = triedb.Commit(root, false); err != nil {
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panic(fmt.Sprintf("trie write error: %v", err))
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}
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return block, b.receipts
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}
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return nil, nil
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}
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// Forcibly use hash-based state scheme for retaining all nodes in disk.
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triedb := triedb.NewDatabase(db, triedb.HashDefaults)
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defer triedb.Close()
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for i := 0; i < n; i++ {
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statedb, err := state.New(parent.Root(), state.NewDatabaseWithNodeDB(db, triedb), nil)
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if err != nil {
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panic(err)
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}
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block, receipts := genblock(i, parent, triedb, statedb)
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// Post-process the receipts.
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// Here we assign the final block hash and other info into the receipt.
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// In order for DeriveFields to work, the transaction and receipt lists need to be
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// of equal length. If AddUncheckedTx or AddUncheckedReceipt are used, there will be
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// extra ones, so we just trim the lists here.
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receiptsCount := len(receipts)
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txs := block.Transactions()
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if len(receipts) > len(txs) {
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receipts = receipts[:len(txs)]
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} else if len(receipts) < len(txs) {
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txs = txs[:len(receipts)]
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}
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var blobGasPrice *big.Int
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if block.ExcessBlobGas() != nil {
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blobGasPrice = eip4844.CalcBlobFee(*block.ExcessBlobGas())
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}
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if err := receipts.DeriveFields(config, block.Hash(), block.NumberU64(), block.Time(), block.BaseFee(), blobGasPrice, txs); err != nil {
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panic(err)
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}
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// Re-expand to ensure all receipts are returned.
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receipts = receipts[:receiptsCount]
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// Advance the chain.
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cm.add(block, receipts)
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parent = block
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}
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return cm.chain, cm.receipts
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}
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// GenerateChainWithGenesis is a wrapper of GenerateChain which will initialize
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// genesis block to database first according to the provided genesis specification
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// then generate chain on top.
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func GenerateChainWithGenesis(genesis *Genesis, engine consensus.Engine, n int, gen func(int, *BlockGen)) (ethdb.Database, []*types.Block, []types.Receipts) {
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db := rawdb.NewMemoryDatabase()
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triedb := triedb.NewDatabase(db, triedb.HashDefaults)
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defer triedb.Close()
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_, err := genesis.Commit(db, triedb)
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if err != nil {
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panic(err)
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}
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blocks, receipts := GenerateChain(genesis.Config, genesis.ToBlock(), engine, db, n, gen)
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return db, blocks, receipts
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}
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func (cm *chainMaker) makeHeader(parent *types.Block, state *state.StateDB, engine consensus.Engine) *types.Header {
|
|
time := parent.Time() + 10 // block time is fixed at 10 seconds
|
|
header := &types.Header{
|
|
Root: state.IntermediateRoot(cm.config.IsEIP158(parent.Number())),
|
|
ParentHash: parent.Hash(),
|
|
Coinbase: parent.Coinbase(),
|
|
Difficulty: engine.CalcDifficulty(cm, time, parent.Header()),
|
|
GasLimit: parent.GasLimit(),
|
|
Number: new(big.Int).Add(parent.Number(), common.Big1),
|
|
Time: time,
|
|
}
|
|
|
|
if cm.config.IsLondon(header.Number) {
|
|
header.BaseFee = eip1559.CalcBaseFee(cm.config, parent.Header())
|
|
if cm.config.Parlia == nil && !cm.config.IsLondon(parent.Number()) {
|
|
parentGasLimit := parent.GasLimit() * cm.config.ElasticityMultiplier()
|
|
header.GasLimit = CalcGasLimit(parentGasLimit, parentGasLimit)
|
|
}
|
|
}
|
|
if cm.config.IsCancun(header.Number, header.Time) {
|
|
var (
|
|
parentExcessBlobGas uint64
|
|
parentBlobGasUsed uint64
|
|
)
|
|
if parent.ExcessBlobGas() != nil {
|
|
parentExcessBlobGas = *parent.ExcessBlobGas()
|
|
parentBlobGasUsed = *parent.BlobGasUsed()
|
|
}
|
|
excessBlobGas := eip4844.CalcExcessBlobGas(parentExcessBlobGas, parentBlobGasUsed)
|
|
header.ExcessBlobGas = &excessBlobGas
|
|
header.BlobGasUsed = new(uint64)
|
|
if cm.config.Parlia != nil {
|
|
header.WithdrawalsHash = &types.EmptyWithdrawalsHash
|
|
}
|
|
if cm.config.Parlia == nil {
|
|
header.ParentBeaconRoot = new(common.Hash)
|
|
}
|
|
}
|
|
return header
|
|
}
|
|
|
|
// makeHeaderChain creates a deterministic chain of headers rooted at parent.
|
|
func makeHeaderChain(chainConfig *params.ChainConfig, parent *types.Header, n int, engine consensus.Engine, db ethdb.Database, seed int) []*types.Header {
|
|
blocks := makeBlockChain(chainConfig, types.NewBlockWithHeader(parent), n, engine, db, seed)
|
|
headers := make([]*types.Header, len(blocks))
|
|
for i, block := range blocks {
|
|
headers[i] = block.Header()
|
|
}
|
|
return headers
|
|
}
|
|
|
|
// makeHeaderChainWithGenesis creates a deterministic chain of headers from genesis.
|
|
func makeHeaderChainWithGenesis(genesis *Genesis, n int, engine consensus.Engine, seed int) (ethdb.Database, []*types.Header) {
|
|
db, blocks := makeBlockChainWithGenesis(genesis, n, engine, seed)
|
|
headers := make([]*types.Header, len(blocks))
|
|
for i, block := range blocks {
|
|
headers[i] = block.Header()
|
|
}
|
|
return db, headers
|
|
}
|
|
|
|
// makeBlockChain creates a deterministic chain of blocks rooted at parent.
|
|
func makeBlockChain(chainConfig *params.ChainConfig, parent *types.Block, n int, engine consensus.Engine, db ethdb.Database, seed int) []*types.Block {
|
|
blocks, _ := GenerateChain(chainConfig, parent, engine, db, n, func(i int, b *BlockGen) {
|
|
b.SetCoinbase(common.Address{0: byte(seed), 19: byte(i)})
|
|
})
|
|
return blocks
|
|
}
|
|
|
|
// makeBlockChain creates a deterministic chain of blocks from genesis
|
|
func makeBlockChainWithGenesis(genesis *Genesis, n int, engine consensus.Engine, seed int) (ethdb.Database, []*types.Block) {
|
|
db, blocks, _ := GenerateChainWithGenesis(genesis, engine, n, func(i int, b *BlockGen) {
|
|
b.SetCoinbase(common.Address{0: byte(seed), 19: byte(i)})
|
|
})
|
|
return db, blocks
|
|
}
|
|
|
|
// chainMaker contains the state of chain generation.
|
|
type chainMaker struct {
|
|
bottom *types.Block
|
|
engine consensus.Engine
|
|
config *params.ChainConfig
|
|
chain []*types.Block
|
|
chainByHash map[common.Hash]*types.Block
|
|
receipts []types.Receipts
|
|
}
|
|
|
|
func newChainMaker(bottom *types.Block, config *params.ChainConfig, engine consensus.Engine) *chainMaker {
|
|
return &chainMaker{
|
|
bottom: bottom,
|
|
config: config,
|
|
engine: engine,
|
|
chainByHash: make(map[common.Hash]*types.Block),
|
|
}
|
|
}
|
|
|
|
func (cm *chainMaker) add(b *types.Block, r []*types.Receipt) {
|
|
cm.chain = append(cm.chain, b)
|
|
cm.chainByHash[b.Hash()] = b
|
|
cm.receipts = append(cm.receipts, r)
|
|
}
|
|
|
|
func (cm *chainMaker) blockByNumber(number uint64) *types.Block {
|
|
if number == cm.bottom.NumberU64() {
|
|
return cm.bottom
|
|
}
|
|
cur := cm.CurrentHeader().Number.Uint64()
|
|
lowest := cm.bottom.NumberU64() + 1
|
|
if number < lowest || number > cur {
|
|
return nil
|
|
}
|
|
return cm.chain[number-lowest]
|
|
}
|
|
|
|
// ChainReader/ChainContext implementation
|
|
|
|
// Config returns the chain configuration (for consensus.ChainReader).
|
|
func (cm *chainMaker) Config() *params.ChainConfig {
|
|
return cm.config
|
|
}
|
|
|
|
// Engine returns the consensus engine (for ChainContext).
|
|
func (cm *chainMaker) Engine() consensus.Engine {
|
|
return cm.engine
|
|
}
|
|
|
|
func (cm *chainMaker) CurrentHeader() *types.Header {
|
|
if len(cm.chain) == 0 {
|
|
return cm.bottom.Header()
|
|
}
|
|
return cm.chain[len(cm.chain)-1].Header()
|
|
}
|
|
|
|
func (cm *chainMaker) GetHeaderByNumber(number uint64) *types.Header {
|
|
b := cm.blockByNumber(number)
|
|
if b == nil {
|
|
return nil
|
|
}
|
|
return b.Header()
|
|
}
|
|
|
|
func (cm *chainMaker) GetHeaderByHash(hash common.Hash) *types.Header {
|
|
b := cm.chainByHash[hash]
|
|
if b == nil {
|
|
return nil
|
|
}
|
|
return b.Header()
|
|
}
|
|
|
|
func (cm *chainMaker) GenesisHeader() *types.Header {
|
|
panic("not supported")
|
|
}
|
|
|
|
func (cm *chainMaker) GetHeader(hash common.Hash, number uint64) *types.Header {
|
|
return cm.GetHeaderByNumber(number)
|
|
}
|
|
|
|
func (cm *chainMaker) GetBlock(hash common.Hash, number uint64) *types.Block {
|
|
return cm.blockByNumber(number)
|
|
}
|
|
|
|
func (cm *chainMaker) GetTd(hash common.Hash, number uint64) *big.Int {
|
|
return nil // not supported
|
|
}
|
|
|
|
func (cm *chainMaker) GetHighestVerifiedHeader() *types.Header {
|
|
panic("not supported")
|
|
}
|
|
|
|
func (cm *chainMaker) ChasingHead() *types.Header {
|
|
panic("not supported")
|
|
}
|