eth: fix data race accessing peer.td
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44147d057d
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f86707713c
@ -356,7 +356,7 @@ func (pm *ProtocolManager) importBlock(p *peer, block *types.Block, td *big.Int)
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p.blockHashes.Add(hash)
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p.SetHead(hash)
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if td != nil {
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p.td = td
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p.SetTd(td)
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}
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// Log the block's arrival
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_, chainHead, _ := pm.chainman.Status()
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@ -369,7 +369,7 @@ func (pm *ProtocolManager) importBlock(p *peer, block *types.Block, td *big.Int)
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})
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// If the block's already known or its difficulty is lower than ours, drop
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if pm.chainman.HasBlock(hash) {
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p.td = pm.chainman.GetBlock(hash).Td // update the peer's TD to the real value
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p.SetTd(pm.chainman.GetBlock(hash).Td) // update the peer's TD to the real value
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return nil
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}
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if td != nil && pm.chainman.Td().Cmp(td) > 0 && new(big.Int).Add(block.Number(), big.NewInt(7)).Cmp(pm.chainman.CurrentBlock().Number()) < 0 {
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39
eth/peer.go
39
eth/peer.go
@ -41,10 +41,10 @@ type peer struct {
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protv, netid int
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id string
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td *big.Int
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head common.Hash
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headLock sync.RWMutex
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td *big.Int
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lock sync.RWMutex
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genesis, ourHash common.Hash
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ourTd *big.Int
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@ -72,8 +72,8 @@ func newPeer(protv, netid int, genesis, head common.Hash, td *big.Int, p *p2p.Pe
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// Head retrieves a copy of the current head (most recent) hash of the peer.
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func (p *peer) Head() (hash common.Hash) {
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p.headLock.RLock()
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defer p.headLock.RUnlock()
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p.lock.RLock()
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defer p.lock.RUnlock()
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copy(hash[:], p.head[:])
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return hash
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@ -81,12 +81,28 @@ func (p *peer) Head() (hash common.Hash) {
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// SetHead updates the head (most recent) hash of the peer.
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func (p *peer) SetHead(hash common.Hash) {
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p.headLock.Lock()
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defer p.headLock.Unlock()
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p.lock.Lock()
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defer p.lock.Unlock()
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copy(p.head[:], hash[:])
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}
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// Td retrieves the current total difficulty of a peer.
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func (p *peer) Td() *big.Int {
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p.lock.RLock()
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defer p.lock.RUnlock()
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return new(big.Int).Set(p.td)
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}
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// SetTd updates the current total difficulty of a peer.
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func (p *peer) SetTd(td *big.Int) {
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p.lock.Lock()
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defer p.lock.Unlock()
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p.td.Set(td)
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}
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// sendTransactions sends transactions to the peer and includes the hashes
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// in it's tx hash set for future reference. The tx hash will allow the
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// manager to check whether the peer has already received this particular
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@ -275,11 +291,14 @@ func (ps *peerSet) BestPeer() *peer {
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ps.lock.RLock()
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defer ps.lock.RUnlock()
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var best *peer
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var (
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bestPeer *peer
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bestTd *big.Int
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)
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for _, p := range ps.peers {
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if best == nil || p.td.Cmp(best.td) > 0 {
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best = p
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if td := p.Td(); bestPeer == nil || td.Cmp(bestTd) > 0 {
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bestPeer, bestTd = p, td
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}
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}
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return best
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return bestPeer
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}
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@ -208,7 +208,7 @@ func (pm *ProtocolManager) synchronise(peer *peer) {
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return
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}
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// Make sure the peer's TD is higher than our own. If not drop.
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if peer.td.Cmp(pm.chainman.Td()) <= 0 {
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if peer.Td().Cmp(pm.chainman.Td()) <= 0 {
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return
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}
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// FIXME if we have the hash in our chain and the TD of the peer is
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