Removed events from the state manager
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fb4113dab4
commit
9e2f071d26
@ -309,9 +309,13 @@ out:
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}
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}
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// TODO figure out whether we were catching up
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// If caught up and just a new block has been propagated:
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// sm.eth.EventMux().Post(NewBlockEvent{block})
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// otherwise process and don't emit anything
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var err error
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for i, block := range blocks {
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err = self.eth.StateManager().Process(block, false)
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err = self.eth.StateManager().Process(block)
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if err != nil {
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poollogger.Infoln(err)
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poollogger.Debugf("Block #%v failed (%x...)\n", block.Number, block.Hash()[0:4])
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@ -98,6 +98,8 @@ func main() {
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// Leave the Println. This needs clean output for piping
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fmt.Printf("%s\n", block.State().Dump())
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fmt.Println(block)
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os.Exit(0)
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}
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@ -5,7 +5,6 @@ import (
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"fmt"
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"math/big"
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"sort"
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_ "strconv"
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"time"
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"github.com/ethereum/go-ethereum/ethcrypto"
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@ -240,15 +239,19 @@ func (block *Block) SetUncles(uncles []*Block) {
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block.UncleSha = ethcrypto.Sha3(ethutil.Encode(block.rlpUncles()))
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}
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func (self *Block) SetReceipts(receipts []*Receipt, txs []*Transaction) {
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func (self *Block) SetReceipts(receipts Receipts) {
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self.receipts = receipts
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self.setTransactions(txs)
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self.SetReceiptHash(receipts)
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}
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func (block *Block) setTransactions(txs []*Transaction) {
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block.transactions = txs
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func (self *Block) SetTransactions(txs Transactions) {
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self.setTransactions(txs)
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self.SetTransactionHash(txs)
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}
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block.LogsBloom = CreateBloom(txs)
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func (block *Block) setTransactions(txs Transactions) {
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block.transactions = txs
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block.LogsBloom = CreateBloom(block)
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}
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func (self *Block) SetTransactionHash(transactions Transactions) {
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@ -424,22 +427,7 @@ func (self *Block) Size() ethutil.StorageSize {
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return ethutil.StorageSize(len(self.RlpEncode()))
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}
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/*
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func DeriveReceiptHash(receipts Receipts) (sha []byte) {
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trie := ethtrie.New(ethutil.Config.Db, "")
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for i, receipt := range receipts {
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trie.Update(string(ethutil.NewValue(i).Encode()), string(ethutil.NewValue(receipt.RlpData()).Encode()))
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}
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switch trie.Root.(type) {
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case string:
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sha = []byte(trie.Root.(string))
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case []byte:
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sha = trie.Root.([]byte)
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default:
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panic(fmt.Sprintf("invalid root type %T", trie.Root))
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}
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return sha
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// Implement RlpEncodable
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func (self *Block) RlpData() interface{} {
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return self.Value().Val
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}
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*/
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@ -6,9 +6,10 @@ import (
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"github.com/ethereum/go-ethereum/vm"
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)
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func CreateBloom(txs Transactions) []byte {
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func CreateBloom(block *Block) []byte {
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bin := new(big.Int)
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for _, tx := range txs {
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bin.Or(bin, bloom9(block.Coinbase))
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for _, tx := range block.Transactions() {
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bin.Or(bin, LogsBloom(tx.logs))
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}
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@ -36,9 +37,7 @@ func bloom9(b []byte) *big.Int {
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r := new(big.Int)
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for _, i := range []int{0, 2, 4} {
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t := big.NewInt(1)
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//r |= 1 << (uint64(b[i+1]) + 256*(uint64(b[i])&1))
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r.Or(r, t.Rsh(t, uint(b[i+1])+256*(uint(b[i])&1)))
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r.Or(r, t.Lsh(t, uint(b[i+1])+256*(uint(b[i])&1)))
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}
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return r
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@ -87,8 +87,6 @@ func (bc *ChainManager) Reset() {
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bc.genesisBlock.state.Trie.Sync()
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// Prepare the genesis block
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bc.Add(bc.genesisBlock)
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//fk := append([]byte("bloom"), bc.genesisBlock.Hash()...)
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//bc.Ethereum.Db().Put(fk, make([]byte, 255))
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bc.CurrentBlock = bc.genesisBlock
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bc.SetTotalDifficulty(ethutil.Big("0"))
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@ -170,12 +170,6 @@ func (self *Filter) FilterMessages(msgs []*ethstate.Message) []*ethstate.Message
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}
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func (self *Filter) bloomFilter(block *Block) bool {
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//fk := append([]byte("bloom"), block.Hash()...)
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//bin, err := self.eth.Db().Get(fk)
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//if err != nil {
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// fmt.Println(err)
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//}
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// TODO update to the new bloom filter
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bloom := NewBloomFilter(nil)
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@ -101,7 +101,7 @@ func (self *StateManager) Stop() {
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func (self *StateManager) updateThread() {
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for ev := range self.events.Chan() {
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for _, block := range ev.(Blocks) {
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err := self.Process(block, false)
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err := self.Process(block)
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if err != nil {
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statelogger.Infoln(err)
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statelogger.Debugf("Block #%v failed (%x...)\n", block.Number, block.Hash()[0:4])
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@ -206,7 +206,7 @@ done:
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return receipts, handled, unhandled, erroneous, err
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}
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func (sm *StateManager) Process(block *Block, dontReact bool) (err error) {
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func (sm *StateManager) Process(block *Block) (err error) {
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// Processing a blocks may never happen simultaneously
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sm.mutex.Lock()
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defer sm.mutex.Unlock()
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@ -281,18 +281,9 @@ func (sm *StateManager) Process(block *Block, dontReact bool) (err error) {
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sm.transState = state.Copy()
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// Create a bloom bin for this block
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//filter := sm.createBloomFilter(state)
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// Persist the data
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//fk := append([]byte("bloom"), block.Hash()...)
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//sm.eth.Db().Put(fk, filter.Bin())
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statelogger.Infof("Imported block #%d (%x...)\n", block.Number, block.Hash()[0:4])
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if dontReact == false {
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sm.eth.EventMux().Post(NewBlockEvent{block})
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state.Manifest().Reset()
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}
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state.Manifest().Reset()
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sm.eth.TxPool().RemoveSet(block.Transactions())
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} else {
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@ -231,7 +231,7 @@ func (self *StateTransition) TransitionState() (err error) {
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msg.Output = ret
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} else {
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// Add default LOG. Default = big(sender.addr) + 1
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addr := ethutil.BigD(sender.Address())
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addr := ethutil.BigD(receiver.Address())
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tx.addLog(vm.Log{sender.Address(), [][]byte{addr.Add(addr, ethutil.Big1).Bytes()}, nil})
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}
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}
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@ -85,11 +85,7 @@ func (miner *Miner) listener() {
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for {
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select {
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case event, isopen := <-miner.events.Chan():
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if !isopen {
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return
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}
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case event := <-miner.events.Chan():
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switch event := event.(type) {
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case ethchain.NewBlockEvent:
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miner.stopMining()
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@ -114,16 +110,13 @@ func (miner *Miner) listener() {
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}
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}
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miner.txs = newtxs
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// Setup a fresh state to mine on
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//miner.block = miner.ethereum.ChainManager().NewBlock(miner.coinbase, miner.txs)
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} else {
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if bytes.Compare(block.PrevHash, miner.ethereum.ChainManager().CurrentBlock.PrevHash) == 0 {
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logger.Infoln("Adding uncle block")
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miner.uncles = append(miner.uncles, block)
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}
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}
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miner.startMining()
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case ethchain.TxEvent:
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if event.Type == ethchain.TxPre {
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@ -141,6 +134,8 @@ func (miner *Miner) listener() {
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// Apply new transactions
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miner.txs = append(miner.txs, event.Tx)
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}
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miner.startMining()
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}
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}
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@ -159,8 +154,12 @@ func (miner *Miner) startMining() {
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}
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func (miner *Miner) stopMining() {
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close(miner.powQuitChan)
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<-miner.powDone
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println("stop mining")
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_, isopen := <-miner.powQuitChan
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if isopen {
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close(miner.powQuitChan)
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}
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//<-miner.powDone
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}
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func (self *Miner) mineNewBlock() {
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@ -187,10 +186,9 @@ func (self *Miner) mineNewBlock() {
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}
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self.ethereum.TxPool().RemoveSet(erroneous)
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self.txs = append(txs, unhandledTxs...)
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self.block.SetReceiptHash(receipts)
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// Set the transactions to the block so the new SHA3 can be calculated
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self.block.SetReceipts(receipts, txs)
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self.block.SetReceipts(receipts)
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self.block.SetTransactions(txs)
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// Accumulate the rewards included for this block
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stateManager.AccumelateRewards(self.block.State(), self.block, parent)
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@ -203,7 +201,7 @@ func (self *Miner) mineNewBlock() {
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nonce := self.pow.Search(self.block, self.powQuitChan)
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if nonce != nil {
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self.block.Nonce = nonce
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err := self.ethereum.StateManager().Process(self.block, false)
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err := self.ethereum.StateManager().Process(self.block)
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if err != nil {
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logger.Infoln(err)
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} else {
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@ -212,7 +210,10 @@ func (self *Miner) mineNewBlock() {
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logger.Infoln(self.block)
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// Gather the new batch of transactions currently in the tx pool
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self.txs = self.ethereum.TxPool().CurrentTransactions()
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self.ethereum.EventMux().Post(ethchain.NewBlockEvent{self.block})
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}
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// Continue mining on the next block
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self.startMining()
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}
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self.powDone <- struct{}{}
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}
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@ -168,7 +168,24 @@ func New(db ethutil.Database, Root interface{}) *Trie {
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r := copyRoot(Root)
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p := copyRoot(Root)
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return &Trie{cache: NewCache(db), Root: r, prevRoot: p}
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trie := &Trie{cache: NewCache(db), Root: r, prevRoot: p}
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trie.setRoot(Root)
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return trie
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}
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func (self *Trie) setRoot(root interface{}) {
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switch t := root.(type) {
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case string:
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if t == "" {
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root = ethcrypto.Sha3([]byte(""))
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}
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self.Root = root
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case []byte:
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self.Root = root
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default:
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self.Root = self.cache.PutValue(root, true)
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}
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}
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/*
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@ -182,14 +199,7 @@ func (t *Trie) Update(key, value string) {
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k := CompactHexDecode(key)
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root := t.UpdateState(t.Root, k, value)
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switch root.(type) {
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case string:
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t.Root = root
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case []byte:
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t.Root = root
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default:
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t.Root = t.cache.PutValue(root, true)
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}
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t.setRoot(root)
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}
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func (t *Trie) Get(key string) string {
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@ -209,14 +219,7 @@ func (t *Trie) Delete(key string) {
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k := CompactHexDecode(key)
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root := t.deleteState(t.Root, k)
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switch root.(type) {
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case string:
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t.Root = root
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case []byte:
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t.Root = root
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default:
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t.Root = t.cache.PutValue(root, true)
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}
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t.setRoot(root)
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}
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func (self *Trie) GetRoot() []byte {
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