block_processor.go 13 KB

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  1. package core
  2. import (
  3. "fmt"
  4. "math/big"
  5. "sync"
  6. "time"
  7. "github.com/ethereum/go-ethereum/common"
  8. "github.com/ethereum/go-ethereum/core/state"
  9. "github.com/ethereum/go-ethereum/core/types"
  10. "github.com/ethereum/go-ethereum/event"
  11. "github.com/ethereum/go-ethereum/logger"
  12. "github.com/ethereum/go-ethereum/logger/glog"
  13. "github.com/ethereum/go-ethereum/params"
  14. "github.com/ethereum/go-ethereum/pow"
  15. "github.com/ethereum/go-ethereum/rlp"
  16. "gopkg.in/fatih/set.v0"
  17. )
  18. const (
  19. // must be bumped when consensus algorithm is changed, this forces the upgradedb
  20. // command to be run (forces the blocks to be imported again using the new algorithm)
  21. BlockChainVersion = 3
  22. )
  23. var receiptsPre = []byte("receipts-")
  24. type BlockProcessor struct {
  25. db common.Database
  26. extraDb common.Database
  27. // Mutex for locking the block processor. Blocks can only be handled one at a time
  28. mutex sync.Mutex
  29. // Canonical block chain
  30. bc *ChainManager
  31. // non-persistent key/value memory storage
  32. mem map[string]*big.Int
  33. // Proof of work used for validating
  34. Pow pow.PoW
  35. txpool *TxPool
  36. events event.Subscription
  37. eventMux *event.TypeMux
  38. }
  39. func NewBlockProcessor(db, extra common.Database, pow pow.PoW, txpool *TxPool, chainManager *ChainManager, eventMux *event.TypeMux) *BlockProcessor {
  40. sm := &BlockProcessor{
  41. db: db,
  42. extraDb: extra,
  43. mem: make(map[string]*big.Int),
  44. Pow: pow,
  45. bc: chainManager,
  46. eventMux: eventMux,
  47. txpool: txpool,
  48. }
  49. return sm
  50. }
  51. func (sm *BlockProcessor) TransitionState(statedb *state.StateDB, parent, block *types.Block, transientProcess bool) (receipts types.Receipts, err error) {
  52. coinbase := statedb.GetOrNewStateObject(block.Header().Coinbase)
  53. coinbase.SetGasPool(block.Header().GasLimit)
  54. // Process the transactions on to parent state
  55. receipts, err = sm.ApplyTransactions(coinbase, statedb, block, block.Transactions(), transientProcess)
  56. if err != nil {
  57. return nil, err
  58. }
  59. return receipts, nil
  60. }
  61. 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) {
  62. // If we are mining this block and validating we want to set the logs back to 0
  63. //statedb.EmptyLogs()
  64. cb := statedb.GetStateObject(coinbase.Address())
  65. _, gas, err := ApplyMessage(NewEnv(statedb, self.bc, tx, block), tx, cb)
  66. if err != nil && (IsNonceErr(err) || state.IsGasLimitErr(err) || IsInvalidTxErr(err)) {
  67. // If the account is managed, remove the invalid nonce.
  68. //from, _ := tx.From()
  69. //self.bc.TxState().RemoveNonce(from, tx.Nonce())
  70. return nil, nil, err
  71. }
  72. // Update the state with pending changes
  73. statedb.Update()
  74. cumulative := new(big.Int).Set(usedGas.Add(usedGas, gas))
  75. receipt := types.NewReceipt(statedb.Root().Bytes(), cumulative)
  76. logs := statedb.GetLogs(tx.Hash())
  77. receipt.SetLogs(logs)
  78. receipt.Bloom = types.CreateBloom(types.Receipts{receipt})
  79. glog.V(logger.Debug).Infoln(receipt)
  80. // Notify all subscribers
  81. if !transientProcess {
  82. go self.eventMux.Post(TxPostEvent{tx})
  83. go self.eventMux.Post(logs)
  84. }
  85. return receipt, gas, err
  86. }
  87. func (self *BlockProcessor) ChainManager() *ChainManager {
  88. return self.bc
  89. }
  90. func (self *BlockProcessor) ApplyTransactions(coinbase *state.StateObject, statedb *state.StateDB, block *types.Block, txs types.Transactions, transientProcess bool) (types.Receipts, error) {
  91. var (
  92. receipts types.Receipts
  93. totalUsedGas = big.NewInt(0)
  94. err error
  95. cumulativeSum = new(big.Int)
  96. )
  97. for i, tx := range txs {
  98. statedb.StartRecord(tx.Hash(), block.Hash(), i)
  99. receipt, txGas, err := self.ApplyTransaction(coinbase, statedb, block, tx, totalUsedGas, transientProcess)
  100. if err != nil && (IsNonceErr(err) || state.IsGasLimitErr(err) || IsInvalidTxErr(err)) {
  101. return nil, err
  102. }
  103. if err != nil {
  104. glog.V(logger.Core).Infoln("TX err:", err)
  105. }
  106. receipts = append(receipts, receipt)
  107. cumulativeSum.Add(cumulativeSum, new(big.Int).Mul(txGas, tx.GasPrice()))
  108. }
  109. if block.GasUsed().Cmp(totalUsedGas) != 0 {
  110. return nil, ValidationError(fmt.Sprintf("gas used error (%v / %v)", block.GasUsed(), totalUsedGas))
  111. }
  112. if transientProcess {
  113. go self.eventMux.Post(PendingBlockEvent{block, statedb.Logs()})
  114. }
  115. return receipts, err
  116. }
  117. func (sm *BlockProcessor) RetryProcess(block *types.Block) (logs state.Logs, err error) {
  118. // Processing a blocks may never happen simultaneously
  119. sm.mutex.Lock()
  120. defer sm.mutex.Unlock()
  121. header := block.Header()
  122. if !sm.bc.HasBlock(header.ParentHash) {
  123. return nil, ParentError(header.ParentHash)
  124. }
  125. parent := sm.bc.GetBlock(header.ParentHash)
  126. if !sm.Pow.Verify(block) {
  127. return nil, ValidationError("Block's nonce is invalid (= %x)", block.Nonce)
  128. }
  129. return sm.processWithParent(block, parent)
  130. }
  131. // Process block will attempt to process the given block's transactions and applies them
  132. // on top of the block's parent state (given it exists) and will return wether it was
  133. // successful or not.
  134. func (sm *BlockProcessor) Process(block *types.Block) (logs state.Logs, err error) {
  135. // Processing a blocks may never happen simultaneously
  136. sm.mutex.Lock()
  137. defer sm.mutex.Unlock()
  138. header := block.Header()
  139. if sm.bc.HasBlock(header.Hash()) {
  140. return nil, &KnownBlockError{header.Number, header.Hash()}
  141. }
  142. if !sm.bc.HasBlock(header.ParentHash) {
  143. return nil, ParentError(header.ParentHash)
  144. }
  145. parent := sm.bc.GetBlock(header.ParentHash)
  146. return sm.processWithParent(block, parent)
  147. }
  148. func (sm *BlockProcessor) processWithParent(block, parent *types.Block) (logs state.Logs, err error) {
  149. // Create a new state based on the parent's root (e.g., create copy)
  150. state := state.New(parent.Root(), sm.db)
  151. // Block validation
  152. if err = sm.ValidateHeader(block.Header(), parent.Header(), false); err != nil {
  153. return
  154. }
  155. // There can be at most two uncles
  156. if len(block.Uncles()) > 2 {
  157. return nil, ValidationError("Block can only contain maximum 2 uncles (contained %v)", len(block.Uncles()))
  158. }
  159. receipts, err := sm.TransitionState(state, parent, block, false)
  160. if err != nil {
  161. return
  162. }
  163. header := block.Header()
  164. // Validate the received block's bloom with the one derived from the generated receipts.
  165. // For valid blocks this should always validate to true.
  166. rbloom := types.CreateBloom(receipts)
  167. if rbloom != header.Bloom {
  168. err = fmt.Errorf("unable to replicate block's bloom=%x", rbloom)
  169. return
  170. }
  171. // The transactions Trie's root (R = (Tr [[i, RLP(T1)], [i, RLP(T2)], ... [n, RLP(Tn)]]))
  172. // can be used by light clients to make sure they've received the correct Txs
  173. txSha := types.DeriveSha(block.Transactions())
  174. if txSha != header.TxHash {
  175. err = fmt.Errorf("invalid transaction root hash. received=%x calculated=%x", header.TxHash, txSha)
  176. return
  177. }
  178. // Tre receipt Trie's root (R = (Tr [[H1, R1], ... [Hn, R1]]))
  179. receiptSha := types.DeriveSha(receipts)
  180. if receiptSha != header.ReceiptHash {
  181. err = fmt.Errorf("invalid receipt root hash. received=%x calculated=%x", header.ReceiptHash, receiptSha)
  182. return
  183. }
  184. // Verify UncleHash before running other uncle validations
  185. unclesSha := block.CalculateUnclesHash()
  186. if unclesSha != header.UncleHash {
  187. err = fmt.Errorf("invalid uncles root hash. received=%x calculated=%x", header.UncleHash, unclesSha)
  188. return
  189. }
  190. // Verify uncles
  191. if err = sm.VerifyUncles(state, block, parent); err != nil {
  192. return
  193. }
  194. // Accumulate static rewards; block reward, uncle's and uncle inclusion.
  195. AccumulateRewards(state, block)
  196. // Commit state objects/accounts to a temporary trie (does not save)
  197. // used to calculate the state root.
  198. state.Update()
  199. if header.Root != state.Root() {
  200. err = fmt.Errorf("invalid merkle root. received=%x got=%x", header.Root, state.Root())
  201. return
  202. }
  203. // store the receipts
  204. err = putReceipts(sm.extraDb, block.Hash(), receipts)
  205. if err != nil {
  206. return nil, err
  207. }
  208. // Sync the current block's state to the database
  209. state.Sync()
  210. // This puts transactions in a extra db for rpc
  211. for i, tx := range block.Transactions() {
  212. putTx(sm.extraDb, tx, block, uint64(i))
  213. }
  214. return state.Logs(), nil
  215. }
  216. // See YP section 4.3.4. "Block Header Validity"
  217. // Validates a block. Returns an error if the block is invalid.
  218. func (sm *BlockProcessor) ValidateHeader(block, parent *types.Header, checkPow bool) error {
  219. if big.NewInt(int64(len(block.Extra))).Cmp(params.MaximumExtraDataSize) == 1 {
  220. return fmt.Errorf("Block extra data too long (%d)", len(block.Extra))
  221. }
  222. expd := CalcDifficulty(block, parent)
  223. if expd.Cmp(block.Difficulty) != 0 {
  224. return fmt.Errorf("Difficulty check failed for block %v, %v", block.Difficulty, expd)
  225. }
  226. a := new(big.Int).Sub(block.GasLimit, parent.GasLimit)
  227. a.Abs(a)
  228. b := new(big.Int).Div(parent.GasLimit, params.GasLimitBoundDivisor)
  229. if !(a.Cmp(b) < 0) || (block.GasLimit.Cmp(params.MinGasLimit) == -1) {
  230. return fmt.Errorf("GasLimit check failed for block %v (%v > %v)", block.GasLimit, a, b)
  231. }
  232. if int64(block.Time) > time.Now().Unix() {
  233. return BlockFutureErr
  234. }
  235. if new(big.Int).Sub(block.Number, parent.Number).Cmp(big.NewInt(1)) != 0 {
  236. return BlockNumberErr
  237. }
  238. if block.Time <= parent.Time {
  239. return BlockEqualTSErr //ValidationError("Block timestamp equal or less than previous block (%v - %v)", block.Time, parent.Time)
  240. }
  241. if checkPow {
  242. // Verify the nonce of the block. Return an error if it's not valid
  243. if !sm.Pow.Verify(types.NewBlockWithHeader(block)) {
  244. return ValidationError("Block's nonce is invalid (= %x)", block.Nonce)
  245. }
  246. }
  247. return nil
  248. }
  249. func AccumulateRewards(statedb *state.StateDB, block *types.Block) {
  250. reward := new(big.Int).Set(BlockReward)
  251. for _, uncle := range block.Uncles() {
  252. num := new(big.Int).Add(big.NewInt(8), uncle.Number)
  253. num.Sub(num, block.Number())
  254. r := new(big.Int)
  255. r.Mul(BlockReward, num)
  256. r.Div(r, big.NewInt(8))
  257. statedb.AddBalance(uncle.Coinbase, r)
  258. reward.Add(reward, new(big.Int).Div(BlockReward, big.NewInt(32)))
  259. }
  260. // Get the account associated with the coinbase
  261. statedb.AddBalance(block.Header().Coinbase, reward)
  262. }
  263. func (sm *BlockProcessor) VerifyUncles(statedb *state.StateDB, block, parent *types.Block) error {
  264. ancestors := set.New()
  265. uncles := set.New()
  266. ancestorHeaders := make(map[common.Hash]*types.Header)
  267. for _, ancestor := range sm.bc.GetAncestors(block, 7) {
  268. ancestorHeaders[ancestor.Hash()] = ancestor.Header()
  269. ancestors.Add(ancestor.Hash())
  270. // Include ancestors uncles in the uncle set. Uncles must be unique.
  271. for _, uncle := range ancestor.Uncles() {
  272. uncles.Add(uncle.Hash())
  273. }
  274. }
  275. uncles.Add(block.Hash())
  276. for i, uncle := range block.Uncles() {
  277. hash := uncle.Hash()
  278. if uncles.Has(hash) {
  279. // Error not unique
  280. return UncleError("uncle[%d](%x) not unique", i, hash[:4])
  281. }
  282. uncles.Add(hash)
  283. if ancestors.Has(hash) {
  284. branch := fmt.Sprintf(" O - %x\n |\n", block.Hash())
  285. ancestors.Each(func(item interface{}) bool {
  286. branch += fmt.Sprintf(" O - %x\n |\n", hash)
  287. return true
  288. })
  289. glog.Infoln(branch)
  290. return UncleError("uncle[%d](%x) is ancestor", i, hash[:4])
  291. }
  292. if !ancestors.Has(uncle.ParentHash) || uncle.ParentHash == parent.Hash() {
  293. return UncleError("uncle[%d](%x)'s parent is not ancestor (%x)", i, hash[:4], uncle.ParentHash[0:4])
  294. }
  295. if err := sm.ValidateHeader(uncle, ancestorHeaders[uncle.ParentHash], true); err != nil {
  296. return ValidationError(fmt.Sprintf("uncle[%d](%x) header invalid: %v", i, hash[:4], err))
  297. }
  298. }
  299. return nil
  300. }
  301. // GetBlockReceipts returns the receipts beloniging to the block hash
  302. func (sm *BlockProcessor) GetBlockReceipts(bhash common.Hash) (receipts types.Receipts, err error) {
  303. return getBlockReceipts(sm.extraDb, bhash)
  304. }
  305. // GetLogs returns the logs of the given block. This method is using a two step approach
  306. // where it tries to get it from the (updated) method which gets them from the receipts or
  307. // the depricated way by re-processing the block.
  308. func (sm *BlockProcessor) GetLogs(block *types.Block) (logs state.Logs, err error) {
  309. receipts, err := sm.GetBlockReceipts(block.Hash())
  310. if err == nil && len(receipts) > 0 {
  311. // coalesce logs
  312. for _, receipt := range receipts {
  313. logs = append(logs, receipt.Logs()...)
  314. }
  315. return
  316. }
  317. // TODO: remove backward compatibility
  318. var (
  319. parent = sm.bc.GetBlock(block.Header().ParentHash)
  320. state = state.New(parent.Root(), sm.db)
  321. )
  322. sm.TransitionState(state, parent, block, true)
  323. return state.Logs(), nil
  324. }
  325. func getBlockReceipts(db common.Database, bhash common.Hash) (receipts types.Receipts, err error) {
  326. var rdata []byte
  327. rdata, err = db.Get(append(receiptsPre, bhash[:]...))
  328. if err == nil {
  329. err = rlp.DecodeBytes(rdata, &receipts)
  330. }
  331. return
  332. }
  333. func putTx(db common.Database, tx *types.Transaction, block *types.Block, i uint64) {
  334. rlpEnc, err := rlp.EncodeToBytes(tx)
  335. if err != nil {
  336. glog.V(logger.Debug).Infoln("Failed encoding tx", err)
  337. return
  338. }
  339. db.Put(tx.Hash().Bytes(), rlpEnc)
  340. var txExtra struct {
  341. BlockHash common.Hash
  342. BlockIndex uint64
  343. Index uint64
  344. }
  345. txExtra.BlockHash = block.Hash()
  346. txExtra.BlockIndex = block.NumberU64()
  347. txExtra.Index = i
  348. rlpMeta, err := rlp.EncodeToBytes(txExtra)
  349. if err != nil {
  350. glog.V(logger.Debug).Infoln("Failed encoding tx meta data", err)
  351. return
  352. }
  353. db.Put(append(tx.Hash().Bytes(), 0x0001), rlpMeta)
  354. }
  355. func putReceipts(db common.Database, hash common.Hash, receipts types.Receipts) error {
  356. storageReceipts := make([]*types.ReceiptForStorage, len(receipts))
  357. for i, receipt := range receipts {
  358. storageReceipts[i] = (*types.ReceiptForStorage)(receipt)
  359. }
  360. bytes, err := rlp.EncodeToBytes(storageReceipts)
  361. if err != nil {
  362. return err
  363. }
  364. db.Put(append(receiptsPre, hash[:]...), bytes)
  365. return nil
  366. }