mirror of https://github.com/status-im/op-geth.git
core: partially removed nonce parallelisation and added merge error chk
Invalid forks are now detected Current setup of parellelisation actually inserts bad blocks. This fix is tmp until a better one is found
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4baa5ca963
commit
75f5ae80fd
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@ -548,18 +548,21 @@ func (self *ChainManager) InsertChain(chain types.Blocks) (int, error) {
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tstart = time.Now()
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)
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// check the nonce in parallel to the block processing
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// this speeds catching up significantly
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nonceErrCh := make(chan error)
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go func() {
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nonceErrCh <- verifyNonces(self.pow, chain)
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}()
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for i, block := range chain {
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if block == nil {
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continue
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}
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if BadHashes[block.Hash()] {
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err := fmt.Errorf("Found known bad hash in chain %x", block.Hash())
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blockErr(block, err)
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return i, err
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}
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// create a nonce channel for parallisation of the nonce check
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nonceErrCh := make(chan error)
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go verifyBlockNonce(self.pow, block, nonceErrCh)
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// Setting block.Td regardless of error (known for example) prevents errors down the line
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// in the protocol handler
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block.Td = new(big.Int).Set(CalcTD(block, self.GetBlock(block.ParentHash())))
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@ -568,13 +571,14 @@ func (self *ChainManager) InsertChain(chain types.Blocks) (int, error) {
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// all others will fail too (unless a known block is returned).
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logs, err := self.processor.Process(block)
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if err != nil {
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// empty the nonce channel
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<-nonceErrCh
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if IsKnownBlockErr(err) {
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stats.ignored++
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continue
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}
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// Do not penelise on future block. We'll need a block queue eventually that will queue
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// future block for future use
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if err == BlockFutureErr {
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block.SetQueued(true)
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self.futureBlocks.Push(block)
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@ -593,18 +597,23 @@ func (self *ChainManager) InsertChain(chain types.Blocks) (int, error) {
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return i, err
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}
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// Wait and check nonce channel and make sure it checks out fine
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// otherwise return the error
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if err := <-nonceErrCh; err != nil {
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return i, err
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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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// chain fork
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if block.ParentHash() != cblock.Hash() {
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// during split we merge two different chains and create the new canonical chain
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self.merge(cblock, block)
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err := self.merge(cblock, block)
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if err != nil {
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return i, err
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}
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queue[i] = ChainSplitEvent{block, logs}
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queueEvent.splitCount++
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@ -637,19 +646,16 @@ func (self *ChainManager) InsertChain(chain types.Blocks) (int, error) {
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queue[i] = ChainSideEvent{block, logs}
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queueEvent.sideCount++
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}
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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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// Delete from future blocks
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self.futureBlocks.Delete(block.Hash())
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stats.processed++
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}
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// check and wait for the nonce error channel and
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// make sure no nonce error was thrown in the process
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err := <-nonceErrCh
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if err != nil {
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return 0, err
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}
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if (stats.queued > 0 || stats.processed > 0 || stats.ignored > 0) && bool(glog.V(logger.Info)) {
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tend := time.Since(tstart)
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start, end := chain[0], chain[len(chain)-1]
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@ -663,7 +669,7 @@ func (self *ChainManager) InsertChain(chain types.Blocks) (int, error) {
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// diff takes two blocks, an old chain and a new chain and will reconstruct the blocks and inserts them
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// to be part of the new canonical chain.
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func (self *ChainManager) diff(oldBlock, newBlock *types.Block) types.Blocks {
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func (self *ChainManager) diff(oldBlock, newBlock *types.Block) (types.Blocks, error) {
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var (
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newChain types.Blocks
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commonBlock *types.Block
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@ -675,10 +681,17 @@ func (self *ChainManager) diff(oldBlock, newBlock *types.Block) types.Blocks {
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if oldBlock.NumberU64() > newBlock.NumberU64() {
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// reduce old chain
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for oldBlock = oldBlock; oldBlock.NumberU64() != newBlock.NumberU64(); oldBlock = self.GetBlock(oldBlock.ParentHash()) {
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if oldBlock == nil {
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return nil, fmt.Errorf("Invalid old chain")
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}
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}
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} else {
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// reduce new chain and append new chain blocks for inserting later on
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for newBlock = newBlock; newBlock.NumberU64() != oldBlock.NumberU64(); newBlock = self.GetBlock(newBlock.ParentHash()) {
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if newBlock == nil {
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return nil, fmt.Errorf("Invalid new chain")
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}
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newChain = append(newChain, newBlock)
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}
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}
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@ -692,6 +705,12 @@ func (self *ChainManager) diff(oldBlock, newBlock *types.Block) types.Blocks {
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newChain = append(newChain, newBlock)
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oldBlock, newBlock = self.GetBlock(oldBlock.ParentHash()), self.GetBlock(newBlock.ParentHash())
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if oldBlock == nil {
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return nil, fmt.Errorf("Invalid old chain")
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}
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if newBlock == nil {
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return nil, fmt.Errorf("Invalid new chain")
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}
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}
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if glog.V(logger.Info) {
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@ -699,17 +718,22 @@ func (self *ChainManager) diff(oldBlock, newBlock *types.Block) types.Blocks {
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glog.Infof("Fork detected @ %x. Reorganising chain from #%v %x to %x", commonHash[:4], numSplit, oldStart.Hash().Bytes()[:4], newStart.Hash().Bytes()[:4])
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}
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return newChain
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return newChain, nil
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}
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// merge merges two different chain to the new canonical chain
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func (self *ChainManager) merge(oldBlock, newBlock *types.Block) {
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newChain := self.diff(oldBlock, newBlock)
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func (self *ChainManager) merge(oldBlock, newBlock *types.Block) error {
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newChain, err := self.diff(oldBlock, newBlock)
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if err != nil {
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return fmt.Errorf("chain reorg failed: %v", err)
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}
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// insert blocks. Order does not matter. Last block will be written in ImportChain itself which creates the new head properly
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for _, block := range newChain {
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self.insert(block)
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}
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return nil
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}
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func (self *ChainManager) update() {
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@ -808,3 +832,11 @@ func verifyNonce(pow pow.PoW, in <-chan *types.Block, done chan<- error) {
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}
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}
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}
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func verifyBlockNonce(pow pow.PoW, block *types.Block, done chan<- error) {
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if !pow.Verify(block) {
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done <- ValidationError("Block(#%v) nonce is invalid (= %x)", block.Number(), block.Nonce)
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} else {
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done <- nil
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}
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}
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