mirror of https://github.com/status-im/op-geth.git
420 lines
9.2 KiB
Go
420 lines
9.2 KiB
Go
package chain
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import (
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"bytes"
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"fmt"
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"math/big"
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"sort"
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"time"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/ethutil"
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"github.com/ethereum/go-ethereum/state"
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"github.com/ethereum/go-ethereum/trie"
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)
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type BlockInfo struct {
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Number uint64
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Hash []byte
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Parent []byte
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TD *big.Int
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}
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func (bi *BlockInfo) RlpDecode(data []byte) {
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decoder := ethutil.NewValueFromBytes(data)
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bi.Number = decoder.Get(0).Uint()
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bi.Hash = decoder.Get(1).Bytes()
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bi.Parent = decoder.Get(2).Bytes()
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bi.TD = decoder.Get(3).BigInt()
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}
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func (bi *BlockInfo) RlpEncode() []byte {
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return ethutil.Encode([]interface{}{bi.Number, bi.Hash, bi.Parent, bi.TD})
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}
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type Blocks []*Block
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func (self Blocks) AsSet() ethutil.UniqueSet {
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set := make(ethutil.UniqueSet)
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for _, block := range self {
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set.Insert(block.Hash())
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}
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return set
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}
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type BlockBy func(b1, b2 *Block) bool
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func (self BlockBy) Sort(blocks Blocks) {
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bs := blockSorter{
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blocks: blocks,
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by: self,
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}
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sort.Sort(bs)
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}
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type blockSorter struct {
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blocks Blocks
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by func(b1, b2 *Block) bool
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}
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func (self blockSorter) Len() int { return len(self.blocks) }
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func (self blockSorter) Swap(i, j int) {
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self.blocks[i], self.blocks[j] = self.blocks[j], self.blocks[i]
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}
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func (self blockSorter) Less(i, j int) bool { return self.by(self.blocks[i], self.blocks[j]) }
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func Number(b1, b2 *Block) bool { return b1.Number.Cmp(b2.Number) < 0 }
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type Block struct {
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// Hash to the previous block
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PrevHash ethutil.Bytes
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// Uncles of this block
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Uncles Blocks
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UncleSha []byte
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// The coin base address
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Coinbase []byte
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// Block Trie state
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//state *ethutil.Trie
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state *state.State
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// Difficulty for the current block
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Difficulty *big.Int
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// Creation time
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Time int64
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// The block number
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Number *big.Int
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// Minimum Gas Price
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MinGasPrice *big.Int
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// Gas limit
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GasLimit *big.Int
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// Gas used
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GasUsed *big.Int
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// Extra data
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Extra string
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// Block Nonce for verification
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Nonce ethutil.Bytes
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// List of transactions and/or contracts
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transactions Transactions
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receipts Receipts
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TxSha, ReceiptSha []byte
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LogsBloom []byte
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}
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func NewBlockFromBytes(raw []byte) *Block {
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block := &Block{}
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block.RlpDecode(raw)
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return block
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}
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// New block takes a raw encoded string
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func NewBlockFromRlpValue(rlpValue *ethutil.Value) *Block {
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block := &Block{}
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block.RlpValueDecode(rlpValue)
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return block
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}
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func CreateBlock(root interface{},
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prevHash []byte,
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base []byte,
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Difficulty *big.Int,
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Nonce []byte,
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extra string) *Block {
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block := &Block{
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PrevHash: prevHash,
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Coinbase: base,
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Difficulty: Difficulty,
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Nonce: Nonce,
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Time: time.Now().Unix(),
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Extra: extra,
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UncleSha: nil,
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GasUsed: new(big.Int),
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MinGasPrice: new(big.Int),
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GasLimit: new(big.Int),
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}
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block.SetUncles([]*Block{})
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block.state = state.New(trie.New(ethutil.Config.Db, root))
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return block
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}
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// Returns a hash of the block
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func (block *Block) Hash() ethutil.Bytes {
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return crypto.Sha3(ethutil.NewValue(block.header()).Encode())
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//return crypto.Sha3(block.Value().Encode())
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}
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func (block *Block) HashNoNonce() []byte {
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return crypto.Sha3(ethutil.Encode(block.miningHeader()))
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}
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func (block *Block) State() *state.State {
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return block.state
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}
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func (block *Block) Transactions() []*Transaction {
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return block.transactions
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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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// ((1024-1) * parent.gasLimit + (gasUsed * 6 / 5)) / 1024
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previous := new(big.Int).Mul(big.NewInt(1024-1), parent.GasLimit)
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current := new(big.Rat).Mul(new(big.Rat).SetInt(parent.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 := big.NewInt(125000)
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return ethutil.BigMax(min, result)
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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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bi.RlpDecode(data)
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return bi
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}
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func (self *Block) GetTransaction(hash []byte) *Transaction {
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for _, tx := range self.transactions {
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if bytes.Compare(tx.Hash(), hash) == 0 {
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return tx
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}
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}
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return nil
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}
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// Sync the block's state and contract respectively
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func (block *Block) Sync() {
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block.state.Sync()
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}
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func (block *Block) Undo() {
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// Sync the block state itself
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block.state.Reset()
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}
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/////// Block Encoding
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func (block *Block) rlpReceipts() interface{} {
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// Marshal the transactions of this block
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encR := make([]interface{}, len(block.receipts))
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for i, r := range block.receipts {
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// Cast it to a string (safe)
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encR[i] = r.RlpData()
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}
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return encR
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}
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func (block *Block) rlpUncles() interface{} {
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// Marshal the transactions of this block
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uncles := make([]interface{}, len(block.Uncles))
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for i, uncle := range block.Uncles {
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// Cast it to a string (safe)
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uncles[i] = uncle.header()
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}
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return uncles
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}
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func (block *Block) SetUncles(uncles []*Block) {
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block.Uncles = uncles
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block.UncleSha = crypto.Sha3(ethutil.Encode(block.rlpUncles()))
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}
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func (self *Block) SetReceipts(receipts Receipts) {
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self.receipts = receipts
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self.ReceiptSha = DeriveSha(receipts)
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self.LogsBloom = CreateBloom(self)
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}
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func (self *Block) SetTransactions(txs Transactions) {
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self.transactions = txs
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self.TxSha = DeriveSha(txs)
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}
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func (block *Block) Value() *ethutil.Value {
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return ethutil.NewValue([]interface{}{block.header(), block.transactions, block.rlpUncles()})
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}
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func (block *Block) RlpEncode() []byte {
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// Encode a slice interface which contains the header and the list of
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// transactions.
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return block.Value().Encode()
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}
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func (block *Block) RlpDecode(data []byte) {
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rlpValue := ethutil.NewValueFromBytes(data)
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block.RlpValueDecode(rlpValue)
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}
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func (block *Block) RlpValueDecode(decoder *ethutil.Value) {
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block.setHeader(decoder.Get(0))
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// Tx list might be empty if this is an uncle. Uncles only have their
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// header set.
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if decoder.Get(1).IsNil() == false { // Yes explicitness
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//receipts := decoder.Get(1)
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//block.receipts = make([]*Receipt, receipts.Len())
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txs := decoder.Get(1)
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block.transactions = make(Transactions, txs.Len())
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for i := 0; i < txs.Len(); i++ {
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block.transactions[i] = NewTransactionFromValue(txs.Get(i))
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//receipt := NewRecieptFromValue(receipts.Get(i))
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//block.transactions[i] = receipt.Tx
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//block.receipts[i] = receipt
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}
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}
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if decoder.Get(2).IsNil() == false { // Yes explicitness
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uncles := decoder.Get(2)
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block.Uncles = make([]*Block, uncles.Len())
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for i := 0; i < uncles.Len(); i++ {
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block.Uncles[i] = NewUncleBlockFromValue(uncles.Get(i))
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}
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}
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}
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func (self *Block) setHeader(header *ethutil.Value) {
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self.PrevHash = header.Get(0).Bytes()
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self.UncleSha = header.Get(1).Bytes()
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self.Coinbase = header.Get(2).Bytes()
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self.state = state.New(trie.New(ethutil.Config.Db, header.Get(3).Val))
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self.TxSha = header.Get(4).Bytes()
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self.ReceiptSha = header.Get(5).Bytes()
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self.LogsBloom = header.Get(6).Bytes()
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self.Difficulty = header.Get(7).BigInt()
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self.Number = header.Get(8).BigInt()
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self.MinGasPrice = header.Get(9).BigInt()
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self.GasLimit = header.Get(10).BigInt()
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self.GasUsed = header.Get(11).BigInt()
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self.Time = int64(header.Get(12).BigInt().Uint64())
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self.Extra = header.Get(13).Str()
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self.Nonce = header.Get(14).Bytes()
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}
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func NewUncleBlockFromValue(header *ethutil.Value) *Block {
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block := &Block{}
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block.setHeader(header)
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return block
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}
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func (block *Block) Trie() *trie.Trie {
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return block.state.Trie
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}
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func (block *Block) Root() interface{} {
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return block.state.Root()
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}
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func (block *Block) Diff() *big.Int {
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return block.Difficulty
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}
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func (self *Block) Receipts() []*Receipt {
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return self.receipts
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}
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func (block *Block) miningHeader() []interface{} {
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return []interface{}{
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// Sha of the previous block
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block.PrevHash,
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// Sha of uncles
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block.UncleSha,
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// Coinbase address
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block.Coinbase,
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// root state
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block.Root(),
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// tx root
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block.TxSha,
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// Sha of tx
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block.ReceiptSha,
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// Bloom
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block.LogsBloom,
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// Current block Difficulty
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block.Difficulty,
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// The block number
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block.Number,
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// Block minimum gas price
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block.MinGasPrice,
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// Block upper gas bound
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block.GasLimit,
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// Block gas used
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block.GasUsed,
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// Time the block was found?
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block.Time,
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// Extra data
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block.Extra,
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}
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}
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func (block *Block) header() []interface{} {
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return append(block.miningHeader(), block.Nonce)
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}
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func (block *Block) String() string {
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return fmt.Sprintf(`
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BLOCK(%x): Size: %v
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PrevHash: %x
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UncleSha: %x
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Coinbase: %x
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Root: %x
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TxSha %x
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ReceiptSha: %x
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Bloom: %x
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Difficulty: %v
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Number: %v
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MinGas: %v
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MaxLimit: %v
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GasUsed: %v
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Time: %v
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Extra: %v
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Nonce: %x
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NumTx: %v
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`,
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block.Hash(),
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block.Size(),
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block.PrevHash,
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block.UncleSha,
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block.Coinbase,
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block.Root(),
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block.TxSha,
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block.ReceiptSha,
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block.LogsBloom,
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block.Difficulty,
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block.Number,
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block.MinGasPrice,
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block.GasLimit,
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block.GasUsed,
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block.Time,
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block.Extra,
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block.Nonce,
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len(block.transactions),
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)
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}
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func (self *Block) Size() ethutil.StorageSize {
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return ethutil.StorageSize(len(self.RlpEncode()))
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}
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// Implement RlpEncodable
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func (self *Block) RlpData() interface{} {
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return self.Value().Val
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}
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