state_processor.go 5.1 KB
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// Copyright 2015 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.

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package core

import (
	"math/big"

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	"github.com/ethereum/go-ethereum/consensus"
	"github.com/ethereum/go-ethereum/consensus/misc"
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	"github.com/ethereum/go-ethereum/core/state"
	"github.com/ethereum/go-ethereum/core/types"
	"github.com/ethereum/go-ethereum/core/vm"
	"github.com/ethereum/go-ethereum/crypto"
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	"github.com/ethereum/go-ethereum/params"
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)

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// StateProcessor is a basic Processor, which takes care of transitioning
// state from one point to another.
//
// StateProcessor implements Processor.
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type StateProcessor struct {
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	config *params.ChainConfig // Chain configuration options
	bc     *BlockChain         // Canonical block chain
	engine consensus.Engine    // Consensus engine used for block rewards
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}

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// NewStateProcessor initialises a new StateProcessor.
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func NewStateProcessor(config *params.ChainConfig, bc *BlockChain, engine consensus.Engine) *StateProcessor {
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	return &StateProcessor{
		config: config,
		bc:     bc,
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		engine: engine,
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	}
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}

// Process processes the state changes according to the Ethereum rules by running
// the transaction messages using the statedb and applying any rewards to both
// the processor (coinbase) and any included uncles.
//
// Process returns the receipts and logs accumulated during the process and
// returns the amount of gas that was used in the process. If any of the
// transactions failed to execute due to insufficient gas it will return an error.
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func (p *StateProcessor) Process(block *types.Block, statedb *state.StateDB, cfg vm.Config) (types.Receipts, []*types.Log, *big.Int, error) {
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	var (
		receipts     types.Receipts
		totalUsedGas = big.NewInt(0)
		header       = block.Header()
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		allLogs      []*types.Log
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		gp           = new(GasPool).AddGas(block.GasLimit())
	)
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	// Mutate the the block and state according to any hard-fork specs
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	if p.config.DAOForkSupport && p.config.DAOForkBlock != nil && p.config.DAOForkBlock.Cmp(block.Number()) == 0 {
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		misc.ApplyDAOHardFork(statedb)
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	}
	// Iterate over and process the individual transactions
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	for i, tx := range block.Transactions() {
		statedb.StartRecord(tx.Hash(), block.Hash(), i)
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		receipt, _, err := ApplyTransaction(p.config, p.bc, gp, statedb, header, tx, totalUsedGas, cfg)
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		if err != nil {
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			return nil, nil, nil, err
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		}
		receipts = append(receipts, receipt)
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		allLogs = append(allLogs, receipt.Logs...)
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	}
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	// Finalize the block, applying any consensus engine specific extras (e.g. block rewards)
	p.engine.Finalize(p.bc, header, statedb, block.Transactions(), block.Uncles(), receipts)
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	return receipts, allLogs, totalUsedGas, nil
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}

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// ApplyTransaction attempts to apply a transaction to the given state database
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// and uses the input parameters for its environment. It returns the receipt
// for the transaction, gas used and an error if the transaction failed,
// indicating the block was invalid.
func ApplyTransaction(config *params.ChainConfig, bc *BlockChain, gp *GasPool, statedb *state.StateDB, header *types.Header, tx *types.Transaction, usedGas *big.Int, cfg vm.Config) (*types.Receipt, *big.Int, error) {
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	msg, err := tx.AsMessage(types.MakeSigner(config, header.Number))
	if err != nil {
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		return nil, nil, err
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	}
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	// Create a new context to be used in the EVM environment
	context := NewEVMContext(msg, header, bc)
	// Create a new environment which holds all relevant information
	// about the transaction and calling mechanisms.
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	vmenv := vm.NewEVM(context, statedb, config, cfg)
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	// Apply the transaction to the current state (included in the env)
	_, gas, err := ApplyMessage(vmenv, msg, gp)
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	if err != nil {
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		return nil, nil, err
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	}

	// Update the state with pending changes
	usedGas.Add(usedGas, gas)
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	// Create a new receipt for the transaction, storing the intermediate root and gas used by the tx
	// based on the eip phase, we're passing wether the root touch-delete accounts.
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	receipt := types.NewReceipt(statedb.IntermediateRoot(config.IsEIP158(header.Number)).Bytes(), usedGas)
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	receipt.TxHash = tx.Hash()
	receipt.GasUsed = new(big.Int).Set(gas)
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	// if the transaction created a contract, store the creation address in the receipt.
	if msg.To() == nil {
		receipt.ContractAddress = crypto.CreateAddress(vmenv.Context.Origin, tx.Nonce())
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	}

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	// Set the receipt logs and create a bloom for filtering
	receipt.Logs = statedb.GetLogs(tx.Hash())
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	receipt.Bloom = types.CreateBloom(types.Receipts{receipt})

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	return receipt, gas, err
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}