block conversion
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e620bde405
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@ -27,7 +27,7 @@ type Header struct {
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// Receipt sha
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ReceiptHash common.Hash
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// Bloom
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Bloom [256]byte
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Bloom Bloom
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// Difficulty for the current block
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Difficulty *big.Int
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// The block number
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@ -73,18 +73,20 @@ func (self *Header) RlpData() interface{} {
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return self.rlpData(true)
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}
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func (self *Header) Hash() []byte {
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return crypto.Sha3(common.Encode(self.rlpData(true)))
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func (self *Header) Hash() common.Hash {
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return common.BytesToHash(crypto.Sha3(common.Encode(self.rlpData(true))))
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}
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func (self *Header) HashNoNonce() []byte {
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return crypto.Sha3(common.Encode(self.rlpData(false)))
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func (self *Header) HashNoNonce() common.Hash {
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return common.BytesToHash(crypto.Sha3(common.Encode(self.rlpData(false))))
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}
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type Block struct {
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// Preset Hash for mock
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HeaderHash []byte
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ParentHeaderHash []byte
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// Preset Hash for mock (Tests)
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HeaderHash common.Hash
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ParentHeaderHash common.Hash
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// ^^^^ ignore ^^^^
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header *Header
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uncles []*Header
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transactions Transactions
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@ -94,7 +96,7 @@ type Block struct {
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Reward *big.Int
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}
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func NewBlock(parentHash []byte, coinbase []byte, root []byte, difficulty *big.Int, nonce uint64, extra string) *Block {
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func NewBlock(parentHash common.Hash, coinbase common.Address, root common.Hash, difficulty *big.Int, nonce uint64, extra string) *Block {
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header := &Header{
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Root: root,
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ParentHash: parentHash,
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@ -113,8 +115,7 @@ func NewBlock(parentHash []byte, coinbase []byte, root []byte, difficulty *big.I
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}
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func (self *Header) setNonce(nonce uint64) {
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self.Nonce = make([]byte, 8)
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binary.BigEndian.PutUint64(self.Nonce, nonce)
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binary.BigEndian.PutUint64(self.Nonce[:], nonce)
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}
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func NewBlockWithHeader(header *Header) *Block {
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@ -148,7 +149,7 @@ func (self *Block) Uncles() []*Header {
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func (self *Block) SetUncles(uncleHeaders []*Header) {
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self.uncles = uncleHeaders
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self.header.UncleHash = crypto.Sha3(common.Encode(uncleHeaders))
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self.header.UncleHash = common.BytesToHash(crypto.Sha3(common.Encode(uncleHeaders)))
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}
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func (self *Block) Transactions() Transactions {
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@ -198,21 +199,21 @@ func (self *Block) RlpDataForStorage() interface{} {
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// Header accessors (add as you need them)
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func (self *Block) Number() *big.Int { return self.header.Number }
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func (self *Block) NumberU64() uint64 { return self.header.Number.Uint64() }
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func (self *Block) MixDigest() []byte { return self.header.MixDigest }
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func (self *Block) MixDigest() common.Hash { return self.header.MixDigest }
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func (self *Block) Nonce() uint64 {
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return binary.BigEndian.Uint64(self.header.Nonce)
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return binary.BigEndian.Uint64(self.header.Nonce[:])
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}
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func (self *Block) SetNonce(nonce uint64) {
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self.header.setNonce(nonce)
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}
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func (self *Block) Bloom() []byte { return self.header.Bloom }
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func (self *Block) Coinbase() []byte { return self.header.Coinbase }
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func (self *Block) Bloom() Bloom { return self.header.Bloom }
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func (self *Block) Coinbase() common.Address { return self.header.Coinbase }
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func (self *Block) Time() int64 { return int64(self.header.Time) }
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func (self *Block) GasLimit() *big.Int { return self.header.GasLimit }
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func (self *Block) GasUsed() *big.Int { return self.header.GasUsed }
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func (self *Block) Root() []byte { return self.header.Root }
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func (self *Block) SetRoot(root []byte) { self.header.Root = root }
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func (self *Block) Root() common.Hash { return self.header.Root }
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func (self *Block) SetRoot(root common.Hash) { self.header.Root = root }
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func (self *Block) Size() common.StorageSize { return common.StorageSize(len(common.Encode(self))) }
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func (self *Block) GetTransaction(i int) *Transaction {
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if len(self.transactions) > i {
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@ -229,18 +230,18 @@ func (self *Block) GetUncle(i int) *Header {
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// Implement pow.Block
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func (self *Block) Difficulty() *big.Int { return self.header.Difficulty }
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func (self *Block) HashNoNonce() []byte { return self.header.HashNoNonce() }
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func (self *Block) HashNoNonce() common.Hash { return self.header.HashNoNonce() }
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func (self *Block) Hash() []byte {
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if self.HeaderHash != nil {
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func (self *Block) Hash() common.Hash {
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if (self.HeaderHash != common.Hash{}) {
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return self.HeaderHash
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} else {
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return self.header.Hash()
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}
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}
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func (self *Block) ParentHash() []byte {
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if self.ParentHeaderHash != nil {
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func (self *Block) ParentHash() common.Hash {
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if (self.ParentHeaderHash != common.Hash{}) {
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return self.ParentHeaderHash
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} else {
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return self.header.ParentHash
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@ -1 +1,20 @@
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package types
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import (
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"fmt"
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"math/big"
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"testing"
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"github.com/ethereum/go-ethereum/common"
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)
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func TestConversion(t *testing.T) {
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var (
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parent common.Hash
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coinbase common.Address
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hash common.Hash
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)
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block := NewBlock(parent, coinbase, hash, big.NewInt(0), 0, "")
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fmt.Println(block)
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}
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@ -3,18 +3,18 @@ package types
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import (
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"math/big"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/state"
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)
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func CreateBloom(receipts Receipts) []byte {
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func CreateBloom(receipts Receipts) Bloom {
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bin := new(big.Int)
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for _, receipt := range receipts {
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bin.Or(bin, LogsBloom(receipt.logs))
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}
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return common.LeftPadBytes(bin.Bytes(), 256)
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return BytesToBloom(bin.Bytes())
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}
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func LogsBloom(logs state.Logs) *big.Int {
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@ -5,3 +5,22 @@ import "math/big"
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type BlockProcessor interface {
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Process(*Block) (*big.Int, error)
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}
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type Bloom [256]byte
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func BytesToBloom(b []byte) Bloom {
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var bloom Bloom
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bloom.SetBytes(b)
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return bloom
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}
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func (b *Bloom) SetBytes(d []byte) {
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if len(b) > len(d) {
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panic("bloom bytes too big")
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}
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// reverse loop
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for i := len(d) - 1; i >= 0; i-- {
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b[i] = b[i]
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}
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}
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@ -1,8 +1,8 @@
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package types
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import (
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/trie"
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)
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@ -11,12 +11,12 @@ type DerivableList interface {
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GetRlp(i int) []byte
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}
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func DeriveSha(list DerivableList) []byte {
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func DeriveSha(list DerivableList) common.Hash {
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db, _ := ethdb.NewMemDatabase()
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trie := trie.New(nil, db)
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for i := 0; i < list.Len(); i++ {
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trie.Update(common.Encode(i), list.GetRlp(i))
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}
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return trie.Root()
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return common.BytesToHash(trie.Root())
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}
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@ -28,7 +28,6 @@ func (self *StateDB) RawDump() World {
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it := self.trie.Iterator()
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for it.Next() {
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fmt.Printf("%x\n", it.Key, len(it.Key))
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stateObject := NewStateObjectFromBytes(common.BytesToAddress(it.Key), it.Value, self.db)
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account := Account{Balance: stateObject.balance.String(), Nonce: stateObject.nonce, Root: common.Bytes2Hex(stateObject.Root()), CodeHash: common.Bytes2Hex(stateObject.codeHash)}
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