miner: seperate state, receipts for different mining work (#17323)
This commit is contained in:
parent
a72ba5a55b
commit
941018b570
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@ -27,10 +27,10 @@ import (
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type CpuAgent struct {
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mu sync.Mutex
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workCh chan *Work
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taskCh chan *Package
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returnCh chan<- *Package
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stop chan struct{}
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quitCurrentOp chan struct{}
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returnCh chan<- *Result
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chain consensus.ChainReader
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engine consensus.Engine
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@ -43,13 +43,17 @@ func NewCpuAgent(chain consensus.ChainReader, engine consensus.Engine) *CpuAgent
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chain: chain,
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engine: engine,
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stop: make(chan struct{}, 1),
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workCh: make(chan *Work, 1),
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taskCh: make(chan *Package, 1),
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}
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return agent
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}
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func (self *CpuAgent) Work() chan<- *Work { return self.workCh }
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func (self *CpuAgent) SetReturnCh(ch chan<- *Result) { self.returnCh = ch }
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func (self *CpuAgent) AssignTask(p *Package) {
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if atomic.LoadInt32(&self.started) == 1 {
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self.taskCh <- p
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}
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}
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func (self *CpuAgent) DeliverTo(ch chan<- *Package) { self.returnCh = ch }
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func (self *CpuAgent) Start() {
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if !atomic.CompareAndSwapInt32(&self.started, 0, 1) {
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@ -67,7 +71,7 @@ done:
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// Empty work channel
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for {
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select {
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case <-self.workCh:
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case <-self.taskCh:
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default:
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break done
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}
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@ -78,13 +82,13 @@ func (self *CpuAgent) update() {
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out:
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for {
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select {
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case work := <-self.workCh:
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case p := <-self.taskCh:
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self.mu.Lock()
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if self.quitCurrentOp != nil {
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close(self.quitCurrentOp)
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}
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self.quitCurrentOp = make(chan struct{})
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go self.mine(work, self.quitCurrentOp)
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go self.mine(p, self.quitCurrentOp)
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self.mu.Unlock()
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case <-self.stop:
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self.mu.Lock()
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@ -98,10 +102,11 @@ out:
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}
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}
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func (self *CpuAgent) mine(work *Work, stop <-chan struct{}) {
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if result, err := self.engine.Seal(self.chain, work.Block, stop); result != nil {
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log.Info("Successfully sealed new block", "number", result.Number(), "hash", result.Hash())
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self.returnCh <- &Result{work, result}
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func (self *CpuAgent) mine(p *Package, stop <-chan struct{}) {
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var err error
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if p.Block, err = self.engine.Seal(self.chain, p.Block, stop); p.Block != nil {
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log.Info("Successfully sealed new block", "number", p.Block.Number(), "hash", p.Block.Hash())
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self.returnCh <- p
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} else {
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if err != nil {
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log.Warn("Block sealing failed", "err", err)
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102
miner/worker.go
102
miner/worker.go
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@ -51,17 +51,16 @@ const (
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chainSideChanSize = 10
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)
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// Agent can register themself with the worker
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// Agent can register themselves with the worker
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type Agent interface {
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Work() chan<- *Work
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SetReturnCh(chan<- *Result)
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AssignTask(*Package)
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DeliverTo(chan<- *Package)
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Start()
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Stop()
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}
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// Work is the workers current environment and holds
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// all of the current state information
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type Work struct {
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// Env is the workers current environment and holds all of the current state information.
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type Env struct {
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config *params.ChainConfig
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signer types.Signer
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@ -72,8 +71,6 @@ type Work struct {
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tcount int // tx count in cycle
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gasPool *core.GasPool // available gas used to pack transactions
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Block *types.Block // the new block
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header *types.Header
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txs []*types.Transaction
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receipts []*types.Receipt
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@ -81,9 +78,11 @@ type Work struct {
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createdAt time.Time
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}
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type Result struct {
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Work *Work
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Block *types.Block
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// Package contains all information for consensus engine sealing and result submitting.
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type Package struct {
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Receipts []*types.Receipt
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State *state.StateDB
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Block *types.Block
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}
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// worker is the main object which takes care of applying messages to the new state
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@ -103,7 +102,7 @@ type worker struct {
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chainSideSub event.Subscription
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agents map[Agent]struct{}
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recv chan *Result
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recv chan *Package
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eth Backend
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chain *core.BlockChain
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@ -114,7 +113,7 @@ type worker struct {
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extra []byte
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currentMu sync.Mutex
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current *Work
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current *Env
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snapshotMu sync.RWMutex
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snapshotBlock *types.Block
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@ -126,7 +125,6 @@ type worker struct {
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unconfirmed *unconfirmedBlocks // set of locally mined blocks pending canonicalness confirmations
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// atomic status counters
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atWork int32 // The number of in-flight consensus engine work.
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running int32 // The indicator whether the consensus engine is running or not.
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}
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@ -140,7 +138,7 @@ func newWorker(config *params.ChainConfig, engine consensus.Engine, eth Backend,
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chainHeadCh: make(chan core.ChainHeadEvent, chainHeadChanSize),
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chainSideCh: make(chan core.ChainSideEvent, chainSideChanSize),
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chainDb: eth.ChainDb(),
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recv: make(chan *Result, resultQueueSize),
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recv: make(chan *Package, resultQueueSize),
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chain: eth.BlockChain(),
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proc: eth.BlockChain().Validator(),
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possibleUncles: make(map[common.Hash]*types.Block),
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@ -203,7 +201,6 @@ func (self *worker) stop() {
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for agent := range self.agents {
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agent.Stop()
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}
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atomic.StoreInt32(&self.atWork, 0)
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}
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func (self *worker) isRunning() bool {
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@ -214,7 +211,7 @@ func (self *worker) register(agent Agent) {
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self.mu.Lock()
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defer self.mu.Unlock()
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self.agents[agent] = struct{}{}
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agent.SetReturnCh(self.recv)
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agent.DeliverTo(self.recv)
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if self.isRunning() {
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agent.Start()
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}
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@ -284,26 +281,24 @@ func (self *worker) update() {
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func (self *worker) wait() {
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for {
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for result := range self.recv {
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atomic.AddInt32(&self.atWork, -1)
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if result == nil {
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continue
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}
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block := result.Block
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work := result.Work
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// Update the block hash in all logs since it is now available and not when the
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// receipt/log of individual transactions were created.
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for _, r := range work.receipts {
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for _, r := range result.Receipts {
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for _, l := range r.Logs {
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l.BlockHash = block.Hash()
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}
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}
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for _, log := range work.state.Logs() {
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for _, log := range result.State.Logs() {
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log.BlockHash = block.Hash()
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}
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self.currentMu.Lock()
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stat, err := self.chain.WriteBlockWithState(block, work.receipts, work.state)
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stat, err := self.chain.WriteBlockWithState(block, result.Receipts, result.State)
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self.currentMu.Unlock()
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if err != nil {
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log.Error("Failed writing block to chain", "err", err)
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@ -313,7 +308,7 @@ func (self *worker) wait() {
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self.mux.Post(core.NewMinedBlockEvent{Block: block})
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var (
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events []interface{}
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logs = work.state.Logs()
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logs = result.State.Logs()
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)
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events = append(events, core.ChainEvent{Block: block, Hash: block.Hash(), Logs: logs})
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if stat == core.CanonStatTy {
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@ -328,12 +323,9 @@ func (self *worker) wait() {
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}
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// push sends a new work task to currently live miner agents.
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func (self *worker) push(work *Work) {
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func (self *worker) push(p *Package) {
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for agent := range self.agents {
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atomic.AddInt32(&self.atWork, 1)
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if ch := agent.Work(); ch != nil {
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ch <- work
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}
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agent.AssignTask(p)
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}
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}
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@ -343,7 +335,7 @@ func (self *worker) makeCurrent(parent *types.Block, header *types.Header) error
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if err != nil {
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return err
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}
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work := &Work{
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env := &Env{
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config: self.config,
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signer: types.NewEIP155Signer(self.config.ChainID),
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state: state,
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@ -357,15 +349,15 @@ func (self *worker) makeCurrent(parent *types.Block, header *types.Header) error
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// when 08 is processed ancestors contain 07 (quick block)
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for _, ancestor := range self.chain.GetBlocksFromHash(parent.Hash(), 7) {
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for _, uncle := range ancestor.Uncles() {
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work.family.Add(uncle.Hash())
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env.family.Add(uncle.Hash())
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}
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work.family.Add(ancestor.Hash())
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work.ancestors.Add(ancestor.Hash())
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env.family.Add(ancestor.Hash())
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env.ancestors.Add(ancestor.Hash())
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}
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// Keep track of transactions which return errors so they can be removed
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work.tcount = 0
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self.current = work
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env.tcount = 0
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self.current = env
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return nil
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}
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@ -431,9 +423,9 @@ func (self *worker) commitNewWork() {
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return
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}
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// Create the current work task and check any fork transitions needed
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work := self.current
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env := self.current
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if self.config.DAOForkSupport && self.config.DAOForkBlock != nil && self.config.DAOForkBlock.Cmp(header.Number) == 0 {
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misc.ApplyDAOHardFork(work.state)
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misc.ApplyDAOHardFork(env.state)
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}
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// compute uncles for the new block.
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@ -445,7 +437,7 @@ func (self *worker) commitNewWork() {
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if len(uncles) == 2 {
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break
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}
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if err := self.commitUncle(work, uncle.Header()); err != nil {
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if err := self.commitUncle(env, uncle.Header()); err != nil {
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log.Trace("Bad uncle found and will be removed", "hash", hash)
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log.Trace(fmt.Sprint(uncle))
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@ -459,17 +451,23 @@ func (self *worker) commitNewWork() {
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delete(self.possibleUncles, hash)
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}
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var (
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emptyBlock *types.Block
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fullBlock *types.Block
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)
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// Create an empty block based on temporary copied state for sealing in advance without waiting block
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// execution finished.
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if work.Block, err = self.engine.Finalize(self.chain, header, work.state.Copy(), nil, uncles, nil); err != nil {
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emptyState := env.state.Copy()
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if emptyBlock, err = self.engine.Finalize(self.chain, header, emptyState, nil, uncles, nil); err != nil {
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log.Error("Failed to finalize block for temporary sealing", "err", err)
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} else {
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// Push empty work in advance without applying pending transaction.
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// The reason is transactions execution can cost a lot and sealer need to
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// take advantage of this part time.
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if self.isRunning() {
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log.Info("Commit new empty mining work", "number", work.Block.Number(), "uncles", len(uncles))
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self.push(work)
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log.Info("Commit new empty mining work", "number", emptyBlock.Number(), "uncles", len(uncles))
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self.push(&Package{nil, emptyState, emptyBlock})
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}
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}
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@ -480,34 +478,34 @@ func (self *worker) commitNewWork() {
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return
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}
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txs := types.NewTransactionsByPriceAndNonce(self.current.signer, pending)
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work.commitTransactions(self.mux, txs, self.chain, self.coinbase)
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env.commitTransactions(self.mux, txs, self.chain, self.coinbase)
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// Create the full block to seal with the consensus engine
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if work.Block, err = self.engine.Finalize(self.chain, header, work.state, work.txs, uncles, work.receipts); err != nil {
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if fullBlock, err = self.engine.Finalize(self.chain, header, env.state, env.txs, uncles, env.receipts); err != nil {
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log.Error("Failed to finalize block for sealing", "err", err)
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return
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}
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// We only care about logging if we're actually mining.
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if self.isRunning() {
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log.Info("Commit new full mining work", "number", work.Block.Number(), "txs", work.tcount, "uncles", len(uncles), "elapsed", common.PrettyDuration(time.Since(tstart)))
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self.unconfirmed.Shift(work.Block.NumberU64() - 1)
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self.push(work)
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log.Info("Commit new full mining work", "number", fullBlock.Number(), "txs", env.tcount, "uncles", len(uncles), "elapsed", common.PrettyDuration(time.Since(tstart)))
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self.unconfirmed.Shift(fullBlock.NumberU64() - 1)
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self.push(&Package{env.receipts, env.state, fullBlock})
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}
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self.updateSnapshot()
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}
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func (self *worker) commitUncle(work *Work, uncle *types.Header) error {
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func (self *worker) commitUncle(env *Env, uncle *types.Header) error {
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hash := uncle.Hash()
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if work.uncles.Contains(hash) {
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if env.uncles.Contains(hash) {
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return fmt.Errorf("uncle not unique")
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}
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if !work.ancestors.Contains(uncle.ParentHash) {
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if !env.ancestors.Contains(uncle.ParentHash) {
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return fmt.Errorf("uncle's parent unknown (%x)", uncle.ParentHash[0:4])
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}
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if work.family.Contains(hash) {
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if env.family.Contains(hash) {
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return fmt.Errorf("uncle already in family (%x)", hash)
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}
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work.uncles.Add(uncle.Hash())
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env.uncles.Add(uncle.Hash())
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return nil
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}
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@ -533,7 +531,7 @@ func (self *worker) updateSnapshot() {
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self.snapshotState = self.current.state.Copy()
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}
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func (env *Work) commitTransactions(mux *event.TypeMux, txs *types.TransactionsByPriceAndNonce, bc *core.BlockChain, coinbase common.Address) {
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func (env *Env) commitTransactions(mux *event.TypeMux, txs *types.TransactionsByPriceAndNonce, bc *core.BlockChain, coinbase common.Address) {
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if env.gasPool == nil {
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env.gasPool = new(core.GasPool).AddGas(env.header.GasLimit)
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}
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@ -618,7 +616,7 @@ func (env *Work) commitTransactions(mux *event.TypeMux, txs *types.TransactionsB
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}
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}
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func (env *Work) commitTransaction(tx *types.Transaction, bc *core.BlockChain, coinbase common.Address, gp *core.GasPool) (error, []*types.Log) {
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func (env *Env) commitTransaction(tx *types.Transaction, bc *core.BlockChain, coinbase common.Address, gp *core.GasPool) (error, []*types.Log) {
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snap := env.state.Snapshot()
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receipt, _, err := core.ApplyTransaction(env.config, bc, &coinbase, gp, env.state, env.header, tx, &env.header.GasUsed, vm.Config{})
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