les, light: add block availability check for ODR requests
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c57c54ce96
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f12f8a6c14
@ -200,6 +200,12 @@ func (f *lightFetcher) syncLoop() {
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// addPeer adds a new peer to the fetcher's peer set
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func (f *lightFetcher) addPeer(p *peer) {
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p.lock.Lock()
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p.hasBlock = func(hash common.Hash, number uint64) bool {
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return f.peerHasBlock(p, hash, number)
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}
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p.lock.Unlock()
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f.lock.Lock()
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defer f.lock.Unlock()
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@ -208,6 +214,10 @@ func (f *lightFetcher) addPeer(p *peer) {
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// removePeer removes a new peer from the fetcher's peer set
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func (f *lightFetcher) removePeer(p *peer) {
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p.lock.Lock()
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p.hasBlock = nil
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p.lock.Unlock()
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f.lock.Lock()
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defer f.lock.Unlock()
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@ -315,7 +325,7 @@ func (f *lightFetcher) announce(p *peer, head *announceData) {
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// based on its announcements
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func (f *lightFetcher) peerHasBlock(p *peer, hash common.Hash, number uint64) bool {
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f.lock.Lock()
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defer f.lock.Lock()
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defer f.lock.Unlock()
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fp := f.peers[p]
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if fp == nil || fp.root == nil {
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@ -188,6 +188,9 @@ func (self *LesOdr) networkRequest(ctx context.Context, lreq LesOdrRequest) erro
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var p *peer
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if self.serverPool != nil {
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p = self.serverPool.selectPeer(func(p *peer) (bool, uint64) {
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if !lreq.CanSend(p) {
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return false, 0
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}
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return true, p.fcServer.CanSend(lreq.GetCost(p))
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})
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}
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@ -36,6 +36,7 @@ import (
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type LesOdrRequest interface {
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GetCost(*peer) uint64
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CanSend(*peer) bool
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Request(uint64, *peer) error
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Valid(ethdb.Database, *Msg) bool // if true, keeps the retrieved object
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}
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@ -66,6 +67,11 @@ func (self *BlockRequest) GetCost(peer *peer) uint64 {
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return peer.GetRequestCost(GetBlockBodiesMsg, 1)
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}
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// CanSend tells if a certain peer is suitable for serving the given request
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func (self *BlockRequest) CanSend(peer *peer) bool {
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return peer.HasBlock(self.Hash, self.Number)
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}
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// Request sends an ODR request to the LES network (implementation of LesOdrRequest)
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func (self *BlockRequest) Request(reqID uint64, peer *peer) error {
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glog.V(logger.Debug).Infof("ODR: requesting body of block %08x from peer %v", self.Hash[:4], peer.id)
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@ -121,6 +127,11 @@ func (self *ReceiptsRequest) GetCost(peer *peer) uint64 {
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return peer.GetRequestCost(GetReceiptsMsg, 1)
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}
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// CanSend tells if a certain peer is suitable for serving the given request
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func (self *ReceiptsRequest) CanSend(peer *peer) bool {
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return peer.HasBlock(self.Hash, self.Number)
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}
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// Request sends an ODR request to the LES network (implementation of LesOdrRequest)
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func (self *ReceiptsRequest) Request(reqID uint64, peer *peer) error {
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glog.V(logger.Debug).Infof("ODR: requesting receipts for block %08x from peer %v", self.Hash[:4], peer.id)
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@ -171,6 +182,11 @@ func (self *TrieRequest) GetCost(peer *peer) uint64 {
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return peer.GetRequestCost(GetProofsMsg, 1)
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}
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// CanSend tells if a certain peer is suitable for serving the given request
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func (self *TrieRequest) CanSend(peer *peer) bool {
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return peer.HasBlock(self.Id.BlockHash, self.Id.BlockNumber)
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}
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// Request sends an ODR request to the LES network (implementation of LesOdrRequest)
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func (self *TrieRequest) Request(reqID uint64, peer *peer) error {
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glog.V(logger.Debug).Infof("ODR: requesting trie root %08x key %08x from peer %v", self.Id.Root[:4], self.Key[:4], peer.id)
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@ -221,6 +237,11 @@ func (self *CodeRequest) GetCost(peer *peer) uint64 {
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return peer.GetRequestCost(GetCodeMsg, 1)
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}
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// CanSend tells if a certain peer is suitable for serving the given request
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func (self *CodeRequest) CanSend(peer *peer) bool {
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return peer.HasBlock(self.Id.BlockHash, self.Id.BlockNumber)
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}
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// Request sends an ODR request to the LES network (implementation of LesOdrRequest)
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func (self *CodeRequest) Request(reqID uint64, peer *peer) error {
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glog.V(logger.Debug).Infof("ODR: requesting node data for hash %08x from peer %v", self.Hash[:4], peer.id)
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@ -274,6 +295,14 @@ func (self *ChtRequest) GetCost(peer *peer) uint64 {
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return peer.GetRequestCost(GetHeaderProofsMsg, 1)
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}
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// CanSend tells if a certain peer is suitable for serving the given request
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func (self *ChtRequest) CanSend(peer *peer) bool {
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peer.lock.RLock()
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defer peer.lock.RUnlock()
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return self.ChtNum <= (peer.headInfo.Number-light.ChtConfirmations)/light.ChtFrequency
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}
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// Request sends an ODR request to the LES network (implementation of LesOdrRequest)
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func (self *ChtRequest) Request(reqID uint64, peer *peer) error {
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glog.V(logger.Debug).Infof("ODR: requesting CHT #%d block #%d from peer %v", self.ChtNum, self.BlockNum, peer.id)
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12
les/peer.go
12
les/peer.go
@ -57,6 +57,7 @@ type peer struct {
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announceChn chan announceData
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poolEntry *poolEntry
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hasBlock func(common.Hash, uint64) bool
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fcClient *flowcontrol.ClientNode // nil if the peer is server only
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fcServer *flowcontrol.ServerNode // nil if the peer is client only
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@ -135,6 +136,9 @@ func sendResponse(w p2p.MsgWriter, msgcode, reqID, bv uint64, data interface{})
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}
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func (p *peer) GetRequestCost(msgcode uint64, amount int) uint64 {
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p.lock.RLock()
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defer p.lock.RUnlock()
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cost := p.fcCosts[msgcode].baseCost + p.fcCosts[msgcode].reqCost*uint64(amount)
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if cost > p.fcServerParams.BufLimit {
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cost = p.fcServerParams.BufLimit
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@ -142,6 +146,14 @@ func (p *peer) GetRequestCost(msgcode uint64, amount int) uint64 {
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return cost
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}
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// HasBlock checks if the peer has a given block
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func (p *peer) HasBlock(hash common.Hash, number uint64) bool {
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p.lock.RLock()
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hashBlock := p.hasBlock
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p.lock.RUnlock()
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return hashBlock != nil && hashBlock(hash, number)
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}
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// SendAnnounce announces the availability of a number of blocks through
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// a hash notification.
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func (p *peer) SendAnnounce(request announceData) error {
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@ -349,9 +349,8 @@ func (pm *ProtocolManager) blockLoop() {
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}
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var (
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lastChtKey = []byte("LastChtNumber") // chtNum (uint64 big endian)
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chtPrefix = []byte("cht") // chtPrefix + chtNum (uint64 big endian) -> trie root hash
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chtConfirmations = light.ChtFrequency / 2
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lastChtKey = []byte("LastChtNumber") // chtNum (uint64 big endian)
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chtPrefix = []byte("cht") // chtPrefix + chtNum (uint64 big endian) -> trie root hash
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)
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func getChtRoot(db ethdb.Database, num uint64) common.Hash {
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@ -372,8 +371,8 @@ func makeCht(db ethdb.Database) bool {
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headNum := core.GetBlockNumber(db, headHash)
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var newChtNum uint64
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if headNum > chtConfirmations {
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newChtNum = (headNum - chtConfirmations) / light.ChtFrequency
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if headNum > light.ChtConfirmations {
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newChtNum = (headNum - light.ChtConfirmations) / light.ChtFrequency
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}
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var lastChtNum uint64
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15
light/odr.go
15
light/odr.go
@ -48,6 +48,7 @@ type OdrRequest interface {
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// TrieID identifies a state or account storage trie
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type TrieID struct {
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BlockHash, Root common.Hash
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BlockNumber uint64
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AccKey []byte
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}
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@ -55,9 +56,10 @@ type TrieID struct {
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// header.
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func StateTrieID(header *types.Header) *TrieID {
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return &TrieID{
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BlockHash: header.Hash(),
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AccKey: nil,
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Root: header.Root,
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BlockHash: header.Hash(),
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BlockNumber: header.Number.Uint64(),
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AccKey: nil,
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Root: header.Root,
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}
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}
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@ -66,9 +68,10 @@ func StateTrieID(header *types.Header) *TrieID {
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// checking Merkle proofs.
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func StorageTrieID(state *TrieID, addr common.Address, root common.Hash) *TrieID {
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return &TrieID{
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BlockHash: state.BlockHash,
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AccKey: crypto.Keccak256(addr[:]),
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Root: root,
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BlockHash: state.BlockHash,
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BlockNumber: state.BlockNumber,
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AccKey: crypto.Keccak256(addr[:]),
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Root: root,
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}
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}
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@ -38,8 +38,9 @@ var (
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ErrNoTrustedCht = errors.New("No trusted canonical hash trie")
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ErrNoHeader = errors.New("Header not found")
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ChtFrequency = uint64(4096)
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trustedChtKey = []byte("TrustedCHT")
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ChtFrequency = uint64(4096)
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ChtConfirmations = uint64(2048)
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trustedChtKey = []byte("TrustedCHT")
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)
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type ChtNode struct {
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