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block_processor.go 11.1 KiB
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  • package core
    
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    import (
    
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    	"fmt"
    
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    	"math/big"
    	"sync"
    
    	"time"
    
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    	"github.com/ethereum/go-ethereum/common"
    
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    	"github.com/ethereum/go-ethereum/core/state"
    
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    	"github.com/ethereum/go-ethereum/core/types"
    
    	"github.com/ethereum/go-ethereum/event"
    
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    	"github.com/ethereum/go-ethereum/logger"
    
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    	"github.com/ethereum/go-ethereum/pow"
    
    	"github.com/ethereum/go-ethereum/rlp"
    
    	"gopkg.in/fatih/set.v0"
    
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    )
    
    
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    var statelogger = logger.NewLogger("BLOCK")
    
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    type BlockProcessor struct {
    
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    	db      common.Database
    	extraDb common.Database
    
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    	// Mutex for locking the block processor. Blocks can only be handled one at a time
    	mutex sync.Mutex
    
    	bc *ChainManager
    
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    	// non-persistent key/value memory storage
    	mem map[string]*big.Int
    
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    	// Proof of work used for validating
    
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    	Pow pow.PoW
    
    
    	txpool *TxPool
    
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    	// The last attempted block is mainly used for debugging purposes
    	// This does not have to be a valid block and will be set during
    	// 'Process' & canonical validation.
    
    	lastAttemptedBlock *types.Block
    
    	events event.Subscription
    
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    	eventMux *event.TypeMux
    
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    }
    
    
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    func NewBlockProcessor(db, extra common.Database, pow pow.PoW, txpool *TxPool, chainManager *ChainManager, eventMux *event.TypeMux) *BlockProcessor {
    
    	sm := &BlockProcessor{
    
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    		db:       db,
    
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    		mem:      make(map[string]*big.Int),
    
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    		Pow:      pow,
    
    		bc:       chainManager,
    		eventMux: eventMux,
    		txpool:   txpool,
    
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    	}
    
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    }
    
    
    func (sm *BlockProcessor) TransitionState(statedb *state.StateDB, parent, block *types.Block, transientProcess bool) (receipts types.Receipts, err error) {
    
    	coinbase := statedb.GetOrNewStateObject(block.Header().Coinbase)
    
    	coinbase.SetGasPool(block.Header().GasLimit)
    
    	// Process the transactions on to parent state
    
    	receipts, _, _, _, err = sm.ApplyTransactions(coinbase, statedb, block, block.Transactions(), transientProcess)
    
    	if err != nil {
    		return nil, err
    	}
    
    	return receipts, nil
    }
    
    
    func (self *BlockProcessor) ApplyTransaction(coinbase *state.StateObject, statedb *state.StateDB, block *types.Block, tx *types.Transaction, usedGas *big.Int, transientProcess bool) (*types.Receipt, *big.Int, error) {
    
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    	// If we are mining this block and validating we want to set the logs back to 0
    
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    	cb := statedb.GetStateObject(coinbase.Address())
    
    	_, gas, err := ApplyMessage(NewEnv(statedb, self.bc, tx, block), tx, cb)
    
    	if err != nil && (IsNonceErr(err) || state.IsGasLimitErr(err) || IsInvalidTxErr(err)) {
    
    		// If the account is managed, remove the invalid nonce.
    
    		from, _ := tx.From()
    		self.bc.TxState().RemoveNonce(from, tx.Nonce())
    
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    	// Update the state with pending changes
    
    	statedb.Update(nil)
    
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    	cumulative := new(big.Int).Set(usedGas.Add(usedGas, gas))
    
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    	receipt := types.NewReceipt(statedb.Root().Bytes(), cumulative)
    
    	receipt.SetLogs(statedb.Logs())
    
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    	receipt.Bloom = types.CreateBloom(types.Receipts{receipt})
    	chainlogger.Debugln(receipt)
    
    	// Notify all subscribers
    	if !transientProcess {
    		go self.eventMux.Post(TxPostEvent{tx})
    
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    		logs := statedb.Logs()
    		go self.eventMux.Post(logs)
    
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    	}
    
    
    	return receipt, gas, err
    
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    }
    
    func (self *BlockProcessor) ChainManager() *ChainManager {
    	return self.bc
    }
    
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    func (self *BlockProcessor) ApplyTransactions(coinbase *state.StateObject, statedb *state.StateDB, block *types.Block, txs types.Transactions, transientProcess bool) (types.Receipts, types.Transactions, types.Transactions, types.Transactions, error) {
    
    		receipts           types.Receipts
    		handled, unhandled types.Transactions
    		erroneous          types.Transactions
    
    		totalUsedGas       = big.NewInt(0)
    		err                error
    
    		cumulativeSum      = new(big.Int)
    
    	for _, tx := range txs {
    
    		receipt, txGas, err := self.ApplyTransaction(coinbase, statedb, block, tx, totalUsedGas, transientProcess)
    
    		if err != nil && (IsNonceErr(err) || state.IsGasLimitErr(err) || IsInvalidTxErr(err)) {
    			return nil, nil, nil, nil, err
    		}
    
    
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    		if err != nil {
    
    			statelogger.Infoln("TX err:", err)
    
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    		}
    		receipts = append(receipts, receipt)
    
    		handled = append(handled, tx)
    
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    		cumulativeSum.Add(cumulativeSum, new(big.Int).Mul(txGas, tx.GasPrice()))
    
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    	}
    
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    	block.Reward = cumulativeSum
    
    	block.Header().GasUsed = totalUsedGas
    
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    	if transientProcess {
    
    		go self.eventMux.Post(PendingBlockEvent{block, statedb.Logs()})
    
    	return receipts, handled, unhandled, erroneous, err
    
    // Process block will attempt to process the given block's transactions and applies them
    // on top of the block's parent state (given it exists) and will return wether it was
    // successful or not.
    
    func (sm *BlockProcessor) Process(block *types.Block) (td *big.Int, logs state.Logs, err error) {
    
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    	// Processing a blocks may never happen simultaneously
    
    	sm.mutex.Lock()
    	defer sm.mutex.Unlock()
    
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    	header := block.Header()
    	if sm.bc.HasBlock(header.Hash()) {
    
    		return nil, nil, &KnownBlockError{header.Number, header.Hash()}
    
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    	}
    
    
    	if !sm.bc.HasBlock(header.ParentHash) {
    
    		return nil, nil, ParentError(header.ParentHash)
    
    	parent := sm.bc.GetBlock(header.ParentHash)
    
    	return sm.processWithParent(block, parent)
    
    func (sm *BlockProcessor) processWithParent(block, parent *types.Block) (td *big.Int, logs state.Logs, err error) {
    
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    	sm.lastAttemptedBlock = block
    
    
    	// Create a new state based on the parent's root (e.g., create copy)
    
    	state := state.New(parent.Root(), sm.db)
    
    	// track (possible) uncle block
    	var uncle bool
    
    	// Block validation
    
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    	if err = sm.ValidateHeader(block.Header(), parent.Header()); err != nil {
    
    		if err != BlockEqualTSErr {
    			return
    		}
    		err = nil
    		uncle = true
    
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    	// There can be at most two uncles
    	if len(block.Uncles()) > 2 {
    
    		return nil, nil, ValidationError("Block can only contain one uncle (contained %v)", len(block.Uncles()))
    
    	receipts, err := sm.TransitionState(state, parent, block, false)
    
    	header := block.Header()
    
    
    	// Validate the received block's bloom with the one derived from the generated receipts.
    	// For valid blocks this should always validate to true.
    
    	rbloom := types.CreateBloom(receipts)
    
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    	if rbloom != header.Bloom {
    
    		err = fmt.Errorf("unable to replicate block's bloom=%x", rbloom)
    		return
    	}
    
    
    	// The transactions Trie's root (R = (Tr [[H1, T1], [H2, T2], ... [Hn, Tn]]))
    	// can be used by light clients to make sure they've received the correct Txs
    
    	txSha := types.DeriveSha(block.Transactions())
    
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    	if txSha != header.TxHash {
    
    		err = fmt.Errorf("validating transaction root. received=%x got=%x", header.TxHash, txSha)
    
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    	// Tre receipt Trie's root (R = (Tr [[H1, R1], ... [Hn, R1]]))
    
    	receiptSha := types.DeriveSha(receipts)
    
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    	if receiptSha != header.ReceiptHash {
    
    		err = fmt.Errorf("validating receipt root. received=%x got=%x", header.ReceiptHash, receiptSha)
    
    	// Accumulate static rewards; block reward, uncle's and uncle inclusion.
    
    	if err = sm.AccumulateRewards(state, block, parent); err != nil {
    
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    	}
    
    
    	// Commit state objects/accounts to a temporary trie (does not save)
    	// used to calculate the state root.
    
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    	state.Update(common.Big0)
    
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    	if header.Root != state.Root() {
    
    		err = fmt.Errorf("invalid merkle root. received=%x got=%x", header.Root, state.Root())
    
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    	}
    
    
    	// Calculate the td for this block
    	td = CalculateTD(block, parent)
    
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    	// Sync the current block's state to the database
    
    
    	if !uncle {
    		// Remove transactions from the pool
    		sm.txpool.RemoveSet(block.Transactions())
    	}
    
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    	for _, tx := range block.Transactions() {
    		putTx(sm.extraDb, tx)
    	}
    
    
    	if uncle {
    		chainlogger.Infof("found possible uncle block #%d (%x...)\n", header.Number, block.Hash().Bytes()[0:4])
    		return td, nil, BlockEqualTSErr
    	} else {
    
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    		chainlogger.Infof("processed block #%d (%d TXs %d UNCs) (%x...)\n", header.Number, len(block.Transactions()), len(block.Uncles()), block.Hash().Bytes()[0:4])
    
    	return td, state.Logs(), nil
    
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    }
    
    // Validates the current block. Returns an error if the block was invalid,
    // an uncle or anything that isn't on the current block chain.
    // Validation validates easy over difficult (dagger takes longer time = difficult)
    
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    func (sm *BlockProcessor) ValidateHeader(block, parent *types.Header) error {
    	if len(block.Extra) > 1024 {
    		return fmt.Errorf("Block extra data too long (%d)", len(block.Extra))
    
    	expd := CalcDifficulty(block, parent)
    
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    	if expd.Cmp(block.Difficulty) != 0 {
    		return fmt.Errorf("Difficulty check failed for block %v, %v", block.Difficulty, expd)
    
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    	// block.gasLimit - parent.gasLimit <= parent.gasLimit / 1024
    
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    	a := new(big.Int).Sub(block.GasLimit, parent.GasLimit)
    	b := new(big.Int).Div(parent.GasLimit, big.NewInt(1024))
    
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    	if a.Cmp(b) > 0 {
    
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    		return fmt.Errorf("GasLimit check failed for block %v (%v > %v)", block.GasLimit, a, b)
    
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    	if int64(block.Time) > time.Now().Unix() {
    
    		return BlockFutureErr
    	}
    
    
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    	if new(big.Int).Sub(block.Number, parent.Number).Cmp(big.NewInt(1)) != 0 {
    
    		return BlockNumberErr
    
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    	}
    
    	// Verify the nonce of the block. Return an error if it's not valid
    
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    	if !sm.Pow.Verify(types.NewBlockWithHeader(block)) {
    		return ValidationError("Block's nonce is invalid (= %x)", block.Nonce)
    
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    	}
    
    
    	if block.Time <= parent.Time {
    		return BlockEqualTSErr //ValidationError("Block timestamp equal or less than previous block (%v - %v)", block.Time, parent.Time)
    	}
    
    
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    	return nil
    }
    
    
    func (sm *BlockProcessor) AccumulateRewards(statedb *state.StateDB, block, parent *types.Block) error {
    
    	reward := new(big.Int).Set(BlockReward)
    
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    	ancestors := set.New()
    
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    	uncles := set.New()
    
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    	ancestorHeaders := make(map[common.Hash]*types.Header)
    
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    	for _, ancestor := range sm.bc.GetAncestors(block, 7) {
    
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    		ancestorHeaders[ancestor.Hash()] = ancestor.Header()
    		ancestors.Add(ancestor.Hash())
    
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    		// Include ancestors uncles in the uncle set. Uncles must be unique.
    		for _, uncle := range ancestor.Uncles() {
    
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    			uncles.Add(uncle.Hash())
    
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    		}
    
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    	uncles.Add(block.Hash())
    
    	for _, uncle := range block.Uncles() {
    
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    		if uncles.Has(uncle.Hash()) {
    
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    			// Error not unique
    			return UncleError("Uncle not unique")
    		}
    
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    		uncles.Add(uncle.Hash())
    
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    		if ancestors.Has(uncle.Hash()) {
    
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    			return UncleError("Uncle is ancestor")
    		}
    
    
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    		if !ancestors.Has(uncle.ParentHash) {
    
    			return UncleError(fmt.Sprintf("Uncle's parent unknown (%x)", uncle.ParentHash[0:4]))
    
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    		}
    
    		if err := sm.ValidateHeader(uncle, ancestorHeaders[uncle.ParentHash]); err != nil && err != BlockEqualTSErr {
    
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    			return ValidationError(fmt.Sprintf("%v", err))
    		}
    
    
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    		r := new(big.Int)
    		r.Mul(BlockReward, big.NewInt(15)).Div(r, big.NewInt(16))
    
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    		statedb.AddBalance(uncle.Coinbase, r)
    
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    		reward.Add(reward, new(big.Int).Div(BlockReward, big.NewInt(32)))
    
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    	}
    
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    	// Get the account associated with the coinbase
    
    	statedb.AddBalance(block.Header().Coinbase, reward)
    
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    	return nil
    }
    
    
    func (sm *BlockProcessor) GetLogs(block *types.Block) (logs state.Logs, err error) {
    	if !sm.bc.HasBlock(block.Header().ParentHash) {
    		return nil, ParentError(block.Header().ParentHash)
    	}
    
    	sm.lastAttemptedBlock = block
    
    	var (
    		parent = sm.bc.GetBlock(block.Header().ParentHash)
    
    		state  = state.New(parent.Root(), sm.db)
    
    	sm.TransitionState(state, parent, block, true)
    
    	sm.AccumulateRewards(state, block, parent)
    
    
    	return state.Logs(), nil
    }
    
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    func putTx(db common.Database, tx *types.Transaction) {
    
    	rlpEnc, err := rlp.EncodeToBytes(tx)
    	if err != nil {
    		statelogger.Infoln("Failed encoding tx", err)
    		return
    	}
    
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    	db.Put(tx.Hash().Bytes(), rlpEnc)