core: seperated proccing mutex and getting mutex
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9f32117457
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@ -21,7 +21,7 @@ import (
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const (
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// must be bumped when consensus algorithm is changed, this forces the upgradedb
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// command to be run (forces the blocks to be imported again using the new algorithm)
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BlockChainVersion = 3
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BlockChainVersion = 2
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)
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var statelogger = logger.NewLogger("BLOCK")
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@ -74,8 +74,10 @@ type ChainManager struct {
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eventMux *event.TypeMux
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genesisBlock *types.Block
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// Last known total difficulty
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mu sync.RWMutex
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tsmu sync.RWMutex
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mu sync.RWMutex
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tsmu sync.RWMutex
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insertMu sync.Mutex
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td *big.Int
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currentBlock *types.Block
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lastBlockHash common.Hash
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@ -496,8 +498,8 @@ func (self *ChainManager) procFutureBlocks() {
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}
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func (self *ChainManager) InsertChain(chain types.Blocks) error {
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self.mu.Lock()
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defer self.mu.Unlock()
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self.insertMu.Lock()
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defer self.insertMu.Unlock()
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// A queued approach to delivering events. This is generally faster than direct delivery and requires much less mutex acquiring.
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var (
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@ -546,51 +548,55 @@ func (self *ChainManager) InsertChain(chain types.Blocks) error {
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block.Td = new(big.Int).Set(CalculateTD(block, self.GetBlock(block.ParentHash())))
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cblock := self.currentBlock
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// Write block to database. Eventually we'll have to improve on this and throw away blocks that are
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// not in the canonical chain.
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self.write(block)
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// Compare the TD of the last known block in the canonical chain to make sure it's greater.
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// At this point it's possible that a different chain (fork) becomes the new canonical chain.
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if block.Td.Cmp(self.td) > 0 {
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//if block.Header().Number.Cmp(new(big.Int).Add(cblock.Header().Number, common.Big1)) < 0 {
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if block.Number().Cmp(cblock.Number()) <= 0 {
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chash := cblock.Hash()
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hash := block.Hash()
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self.mu.Lock()
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{
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cblock := self.currentBlock
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// Write block to database. Eventually we'll have to improve on this and throw away blocks that are
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// not in the canonical chain.
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self.write(block)
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// Compare the TD of the last known block in the canonical chain to make sure it's greater.
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// At this point it's possible that a different chain (fork) becomes the new canonical chain.
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if block.Td.Cmp(self.td) > 0 {
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//if block.Header().Number.Cmp(new(big.Int).Add(cblock.Header().Number, common.Big1)) < 0 {
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if block.Number().Cmp(cblock.Number()) <= 0 {
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chash := cblock.Hash()
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hash := block.Hash()
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if glog.V(logger.Info) {
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glog.Infof("Split detected. New head #%v (%x) TD=%v, was #%v (%x) TD=%v\n", block.Header().Number, hash[:4], block.Td, cblock.Header().Number, chash[:4], self.td)
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if glog.V(logger.Info) {
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glog.Infof("Split detected. New head #%v (%x) TD=%v, was #%v (%x) TD=%v\n", block.Header().Number, hash[:4], block.Td, cblock.Header().Number, chash[:4], self.td)
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}
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// during split we merge two different chains and create the new canonical chain
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self.merge(self.getBlockByNumber(block.NumberU64()), block)
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queue[i] = ChainSplitEvent{block, logs}
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queueEvent.splitCount++
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}
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// during split we merge two different chains and create the new canonical chain
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self.merge(self.getBlockByNumber(block.NumberU64()), block)
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queue[i] = ChainSplitEvent{block, logs}
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queueEvent.splitCount++
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self.setTotalDifficulty(block.Td)
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self.insert(block)
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jsonlogger.LogJson(&logger.EthChainNewHead{
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BlockHash: block.Hash().Hex(),
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BlockNumber: block.Number(),
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ChainHeadHash: cblock.Hash().Hex(),
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BlockPrevHash: block.ParentHash().Hex(),
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})
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self.setTransState(state.New(block.Root(), self.stateDb))
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self.txState.SetState(state.New(block.Root(), self.stateDb))
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queue[i] = ChainEvent{block, logs}
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queueEvent.canonicalCount++
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if glog.V(logger.Debug) {
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glog.Infof("inserted block #%d (%d TXs %d UNCs) (%x...)\n", block.Number(), len(block.Transactions()), len(block.Uncles()), block.Hash().Bytes()[0:4])
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}
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} else {
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queue[i] = ChainSideEvent{block, logs}
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queueEvent.sideCount++
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}
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self.setTotalDifficulty(block.Td)
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self.insert(block)
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jsonlogger.LogJson(&logger.EthChainNewHead{
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BlockHash: block.Hash().Hex(),
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BlockNumber: block.Number(),
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ChainHeadHash: cblock.Hash().Hex(),
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BlockPrevHash: block.ParentHash().Hex(),
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})
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self.setTransState(state.New(block.Root(), self.stateDb))
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self.txState.SetState(state.New(block.Root(), self.stateDb))
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queue[i] = ChainEvent{block, logs}
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queueEvent.canonicalCount++
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if glog.V(logger.Debug) {
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glog.Infof("inserted block #%d (%d TXs %d UNCs) (%x...)\n", block.Number(), len(block.Transactions()), len(block.Uncles()), block.Hash().Bytes()[0:4])
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}
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} else {
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queue[i] = ChainSideEvent{block, logs}
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queueEvent.sideCount++
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}
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self.mu.Unlock()
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stats.processed++
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