core/types: use common.{Hash,Address} in for transactions
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13ade2ed60
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16df850af2
@ -1,7 +1,6 @@
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package types
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import (
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"bytes"
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"encoding/binary"
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"fmt"
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"math/big"
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@ -156,9 +155,9 @@ func (self *Block) Transactions() Transactions {
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return self.transactions
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}
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func (self *Block) Transaction(hash []byte) *Transaction {
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func (self *Block) Transaction(hash common.Hash) *Transaction {
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for _, transaction := range self.transactions {
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if bytes.Equal(hash, transaction.Hash()) {
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if transaction.Hash() == hash {
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return transaction
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}
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}
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@ -2,13 +2,13 @@ package types
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import (
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"bytes"
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"crypto/ecdsa"
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"fmt"
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"math/big"
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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/crypto/secp256k1"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto/sha3"
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"github.com/ethereum/go-ethereum/rlp"
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)
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@ -20,7 +20,7 @@ type Transaction struct {
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AccountNonce uint64
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Price *big.Int
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GasLimit *big.Int
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Recipient []byte
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Recipient common.Address
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Amount *big.Int
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Payload []byte
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V byte
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@ -28,31 +28,24 @@ type Transaction struct {
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}
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func NewContractCreationTx(Amount, gasAmount, price *big.Int, data []byte) *Transaction {
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return NewTransactionMessage(nil, Amount, gasAmount, price, data)
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return NewTransactionMessage(common.Address{}, Amount, gasAmount, price, data)
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}
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func NewTransactionMessage(to []byte, Amount, gasAmount, price *big.Int, data []byte) *Transaction {
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func NewTransactionMessage(to common.Address, Amount, gasAmount, price *big.Int, data []byte) *Transaction {
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return &Transaction{Recipient: to, Amount: Amount, Price: price, GasLimit: gasAmount, Payload: data}
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}
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func NewTransactionFromBytes(data []byte) *Transaction {
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tx := &Transaction{}
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tx.RlpDecode(data)
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tx := new(Transaction)
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rlp.Decode(bytes.NewReader(data), tx)
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return tx
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}
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func NewTransactionFromAmount(val *common.Value) *Transaction {
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tx := &Transaction{}
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tx.RlpValueDecode(val)
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return tx
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}
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func (tx *Transaction) Hash() []byte {
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data := []interface{}{tx.AccountNonce, tx.Price, tx.GasLimit, tx.Recipient, tx.Amount, tx.Payload}
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return crypto.Sha3(common.Encode(data))
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func (tx *Transaction) Hash() (a common.Hash) {
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h := sha3.NewKeccak256()
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rlp.Encode(h, []interface{}{tx.AccountNonce, tx.Price, tx.GasLimit, tx.Recipient, tx.Amount, tx.Payload})
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h.Sum(a[:])
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return a
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}
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func (self *Transaction) Data() []byte {
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@ -79,11 +72,11 @@ func (self *Transaction) SetNonce(AccountNonce uint64) {
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self.AccountNonce = AccountNonce
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}
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func (self *Transaction) From() []byte {
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func (self *Transaction) From() common.Address {
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return self.sender()
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}
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func (self *Transaction) To() []byte {
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func (self *Transaction) To() common.Address {
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return self.Recipient
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}
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@ -97,48 +90,31 @@ func (tx *Transaction) Curve() (v byte, r []byte, s []byte) {
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func (tx *Transaction) Signature(key []byte) []byte {
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hash := tx.Hash()
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sig, _ := secp256k1.Sign(hash, key)
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sig, _ := secp256k1.Sign(hash[:], key)
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return sig
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}
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func (tx *Transaction) PublicKey() []byte {
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hash := tx.Hash()
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v, r, s := tx.Curve()
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sig := append(r, s...)
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sig = append(sig, v-27)
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//pubkey := crypto.Ecrecover(append(hash, sig...))
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pubkey, _ := secp256k1.RecoverPubkey(hash, sig)
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pubkey, _ := secp256k1.RecoverPubkey(hash[:], sig)
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return pubkey
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}
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func (tx *Transaction) sender() []byte {
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func (tx *Transaction) sender() (a common.Address) {
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pubkey := tx.PublicKey()
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// Validate the returned key.
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// Return nil if public key isn't in full format
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if len(pubkey) == 0 || pubkey[0] != 4 {
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return nil
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return a
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}
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return crypto.Sha3(pubkey[1:])[12:]
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}
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// TODO: deprecate after new accounts & key stores are integrated
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func (tx *Transaction) Sign(privk []byte) error {
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sig := tx.Signature(privk)
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tx.R = sig[:32]
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tx.S = sig[32:64]
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tx.V = sig[64] + 27
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return nil
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copy(a[:], crypto.Sha3(pubkey[1:]))
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return a
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}
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func (tx *Transaction) SetSignatureValues(sig []byte) error {
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@ -148,36 +124,17 @@ func (tx *Transaction) SetSignatureValues(sig []byte) error {
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return nil
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}
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func (tx *Transaction) SignECDSA(key *ecdsa.PrivateKey) error {
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return tx.Sign(crypto.FromECDSA(key))
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}
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// TODO: remove
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func (tx *Transaction) RlpData() interface{} {
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data := []interface{}{tx.AccountNonce, tx.Price, tx.GasLimit, tx.Recipient, tx.Amount, tx.Payload}
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return append(data, tx.V, new(big.Int).SetBytes(tx.R).Bytes(), new(big.Int).SetBytes(tx.S).Bytes())
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}
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// TODO: remove
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func (tx *Transaction) RlpEncode() []byte {
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return common.Encode(tx)
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}
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func (tx *Transaction) RlpDecode(data []byte) {
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rlp.Decode(bytes.NewReader(data), tx)
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}
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func (tx *Transaction) RlpValueDecode(decoder *common.Value) {
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tx.AccountNonce = decoder.Get(0).Uint()
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tx.Price = decoder.Get(1).BigInt()
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tx.GasLimit = decoder.Get(2).BigInt()
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tx.Recipient = decoder.Get(3).Bytes()
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tx.Amount = decoder.Get(4).BigInt()
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tx.Payload = decoder.Get(5).Bytes()
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tx.V = decoder.Get(6).Byte()
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tx.R = decoder.Get(7).Bytes()
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tx.S = decoder.Get(8).Bytes()
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}
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func (tx *Transaction) String() string {
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return fmt.Sprintf(`
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TX(%x)
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@ -213,6 +170,7 @@ func (tx *Transaction) String() string {
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// Transaction slice type for basic sorting
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type Transactions []*Transaction
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// TODO: remove
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func (self Transactions) RlpData() interface{} {
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// Marshal the transactions of this block
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enc := make([]interface{}, len(self))
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@ -223,6 +181,7 @@ func (self Transactions) RlpData() interface{} {
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return enc
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}
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func (s Transactions) Len() int { return len(s) }
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func (s Transactions) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
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func (s Transactions) GetRlp(i int) []byte { return common.Rlp(s[i]) }
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