commit
8a2e50ab2a
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@ -154,6 +154,36 @@ func (block *Block) PayFee(addr []byte, fee *big.Int) bool {
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return true
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}
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func (block *Block) CalcGasLimit(parent *Block) *big.Int {
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if block.Number.Cmp(big.NewInt(0)) == 0 {
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return ethutil.BigPow(10, 6)
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}
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previous := new(big.Int).Mul(big.NewInt(1023), parent.GasLimit)
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current := new(big.Rat).Mul(new(big.Rat).SetInt(block.GasUsed), big.NewRat(6, 5))
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curInt := new(big.Int).Div(current.Num(), current.Denom())
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result := new(big.Int).Add(previous, curInt)
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result.Div(result, big.NewInt(1024))
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min := ethutil.BigPow(10, 4)
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return ethutil.BigMax(min, result)
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/*
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base := new(big.Int)
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base2 := new(big.Int)
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parentGL := bc.CurrentBlock.GasLimit
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parentUsed := bc.CurrentBlock.GasUsed
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base.Mul(parentGL, big.NewInt(1024-1))
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base2.Mul(parentUsed, big.NewInt(6))
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base2.Div(base2, big.NewInt(5))
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base.Add(base, base2)
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base.Div(base, big.NewInt(1024))
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*/
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}
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func (block *Block) BlockInfo() BlockInfo {
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bi := BlockInfo{}
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data, _ := ethutil.Config.Db.Get(append(block.Hash(), []byte("Info")...))
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@ -72,19 +72,7 @@ func (bc *BlockChain) NewBlock(coinbase []byte) *Block {
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block.Number = new(big.Int).Add(bc.CurrentBlock.Number, ethutil.Big1)
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// max(10000, (parent gas limit * (1024 - 1) + (parent gas used * 6 / 5)) / 1024)
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base := new(big.Int)
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base2 := new(big.Int)
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parentGL := bc.CurrentBlock.GasLimit
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parentUsed := bc.CurrentBlock.GasUsed
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base.Mul(parentGL, big.NewInt(1024-1))
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base2.Mul(parentUsed, big.NewInt(6))
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base2.Div(base2, big.NewInt(5))
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base.Add(base, base2)
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base.Div(base, big.NewInt(1024))
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block.GasLimit = ethutil.BigMax(big.NewInt(10000), base)
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block.GasLimit = block.CalcGasLimit(bc.CurrentBlock)
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}
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return block
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@ -2,6 +2,7 @@ package ethchain
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import (
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"fmt"
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"math/big"
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)
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// Parent error. In case a parent is unknown this error will be thrown
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@ -43,6 +44,23 @@ func IsValidationErr(err error) bool {
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return ok
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}
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type GasLimitErr struct {
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Message string
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Is, Max *big.Int
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}
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func IsGasLimitErr(err error) bool {
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_, ok := err.(*GasLimitErr)
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return ok
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}
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func (err *GasLimitErr) Error() string {
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return err.Message
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}
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func GasLimitError(is, max *big.Int) *GasLimitErr {
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return &GasLimitErr{Message: fmt.Sprintf("GasLimit error. Max %s, transaction would take it to %s", max, is), Is: is, Max: max}
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}
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type NonceErr struct {
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Message string
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Is, Exp uint64
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@ -188,6 +188,8 @@ func (sm *StateManager) ApplyTransactions(coinbase []byte, state *State, block *
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// Process each transaction/contract
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var receipts []*Receipt
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var validTxs []*Transaction
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var ignoredTxs []*Transaction // Transactions which go over the gasLimit
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totalUsedGas := big.NewInt(0)
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for _, tx := range txs {
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@ -196,6 +198,12 @@ func (sm *StateManager) ApplyTransactions(coinbase []byte, state *State, block *
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if IsNonceErr(err) {
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continue
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}
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if IsGasLimitErr(err) {
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ignoredTxs = append(ignoredTxs, tx)
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// We need to figure out if we want to do something with thse txes
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ethutil.Config.Log.Debugln("Gastlimit:", err)
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continue
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}
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ethutil.Config.Log.Infoln(err)
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}
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@ -207,6 +215,9 @@ func (sm *StateManager) ApplyTransactions(coinbase []byte, state *State, block *
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validTxs = append(validTxs, tx)
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}
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// Update the total gas used for the block (to be mined)
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block.GasUsed = totalUsedGas
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return receipts, validTxs
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}
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@ -226,6 +237,7 @@ func (sm *StateManager) ApplyTransaction(coinbase []byte, state *State, block *B
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script []byte
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)
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totalGasUsed = big.NewInt(0)
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snapshot := state.Snapshot()
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ca := state.GetAccount(coinbase)
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// Apply the transaction to the current state
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@ -266,6 +278,14 @@ func (sm *StateManager) ApplyTransaction(coinbase []byte, state *State, block *B
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}
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}
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parent := sm.bc.GetBlock(block.PrevHash)
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total := new(big.Int).Add(block.GasUsed, totalGasUsed)
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limit := block.CalcGasLimit(parent)
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if total.Cmp(limit) > 0 {
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state.Revert(snapshot)
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err = GasLimitError(total, limit)
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}
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return
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}
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@ -22,6 +22,7 @@ type TxMsgTy byte
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const (
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TxPre = iota
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TxPost
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minGasPrice = 1000000
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)
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type TxMsg struct {
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@ -181,6 +182,12 @@ func (pool *TxPool) ValidateTransaction(tx *Transaction) error {
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return fmt.Errorf("[TXPL] Insufficient amount in sender's (%x) account", tx.Sender())
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}
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if tx.IsContract() {
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if tx.GasPrice.Cmp(big.NewInt(minGasPrice)) < 0 {
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return fmt.Errorf("[TXPL] Gasprice to low, %s given should be at least %d.", tx.GasPrice, minGasPrice)
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}
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}
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// Increment the nonce making each tx valid only once to prevent replay
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// attacks
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@ -46,6 +46,8 @@ type PBlock struct {
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Transactions string `json:"transactions"`
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Time int64 `json:"time"`
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Coinbase string `json:"coinbase"`
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GasLimit string `json:"gasLimit"`
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GasUsed string `json:"gasUsed"`
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}
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// Creates a new QML Block from a chain block
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@ -64,7 +66,7 @@ func NewPBlock(block *ethchain.Block) *PBlock {
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return nil
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}
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return &PBlock{ref: block, Number: int(block.Number.Uint64()), Hash: ethutil.Hex(block.Hash()), Transactions: string(txJson), Time: block.Time, Coinbase: ethutil.Hex(block.Coinbase)}
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return &PBlock{ref: block, Number: int(block.Number.Uint64()), GasUsed: block.GasUsed.String(), GasLimit: block.GasLimit.String(), Hash: ethutil.Hex(block.Hash()), Transactions: string(txJson), Time: block.Time, Coinbase: ethutil.Hex(block.Coinbase)}
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}
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func (self *PBlock) ToString() string {
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@ -68,8 +68,8 @@ func BigCopy(src *big.Int) *big.Int {
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// Returns the maximum size big integer
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func BigMax(x, y *big.Int) *big.Int {
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if x.Cmp(y) <= 0 {
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return x
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return y
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}
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return y
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return x
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}
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@ -18,8 +18,8 @@ var (
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Wei = big.NewInt(1)
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)
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// Currency to string
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//
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// Currency to string
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// Returns a string representing a human readable format
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func CurrencyToString(num *big.Int) string {
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switch {
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14
peer.go
14
peer.go
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@ -18,6 +18,8 @@ const (
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outputBufferSize = 50
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// Current protocol version
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ProtocolVersion = 20
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// Interval for ping/pong message
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pingPongTimer = 30 * time.Second
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)
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type DiscReason byte
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@ -243,7 +245,7 @@ func (p *Peer) writeMessage(msg *ethwire.Msg) {
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err := ethwire.WriteMessage(p.conn, msg)
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if err != nil {
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ethutil.Config.Log.Debugln("Can't send message:", err)
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ethutil.Config.Log.Debugln("[PEER] Can't send message:", err)
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// Stop the client if there was an error writing to it
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p.Stop()
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return
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@ -253,7 +255,7 @@ func (p *Peer) writeMessage(msg *ethwire.Msg) {
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// Outbound message handler. Outbound messages are handled here
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func (p *Peer) HandleOutbound() {
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// The ping timer. Makes sure that every 2 minutes a ping is send to the peer
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pingTimer := time.NewTicker(30 * time.Second)
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pingTimer := time.NewTicker(pingPongTimer)
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serviceTimer := time.NewTicker(5 * time.Minute)
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out:
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p.writeMessage(msg)
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p.lastSend = time.Now()
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// Ping timer sends a ping to the peer each 2 minutes
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// Ping timer
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case <-pingTimer.C:
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timeSince := time.Since(time.Unix(p.lastPong, 0))
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if p.pingStartTime.IsZero() == false && timeSince > (pingPongTimer+10*time.Second) {
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ethutil.Config.Log.Infof("[PEER] Peer did not respond to latest pong fast enough, it took %s, disconnecting.\n", timeSince)
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p.Stop()
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return
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}
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p.writeMessage(ethwire.NewMessage(ethwire.MsgPingTy, ""))
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p.pingStartTime = time.Now()
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|
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Loading…
Reference in New Issue