plugeth/ethpub/pub.go

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package ethpub
import (
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"bytes"
"encoding/json"
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"github.com/ethereum/eth-go/ethchain"
"github.com/ethereum/eth-go/ethcrypto"
"github.com/ethereum/eth-go/ethlog"
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"github.com/ethereum/eth-go/ethutil"
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"math/big"
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"strings"
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"sync/atomic"
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)
var logger = ethlog.NewLogger("PUB")
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type PEthereum struct {
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manager ethchain.EthManager
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stateManager *ethchain.StateManager
blockChain *ethchain.BlockChain
txPool *ethchain.TxPool
keyManager *ethcrypto.KeyManager
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}
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func NewPEthereum(manager ethchain.EthManager) *PEthereum {
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return &PEthereum{
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manager,
manager.StateManager(),
manager.BlockChain(),
manager.TxPool(),
manager.KeyManager(),
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}
}
func (lib *PEthereum) GetBlock(hexHash string) *PBlock {
hash := ethutil.Hex2Bytes(hexHash)
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block := lib.blockChain.GetBlock(hash)
return NewPBlock(block)
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}
func (lib *PEthereum) GetKey() *PKey {
return NewPKey(lib.keyManager.KeyPair())
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}
func (lib *PEthereum) GetStateObject(address string) *PStateObject {
stateObject := lib.stateManager.CurrentState().GetStateObject(ethutil.Hex2Bytes(address))
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if stateObject != nil {
return NewPStateObject(stateObject)
}
// See GetStorage for explanation on "nil"
return NewPStateObject(nil)
}
func (lib *PEthereum) GetPeerCount() int {
return lib.manager.PeerCount()
}
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func (lib *PEthereum) GetPeers() []PPeer {
var peers []PPeer
for peer := lib.manager.Peers().Front(); peer != nil; peer = peer.Next() {
p := peer.Value.(ethchain.Peer)
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// we only want connected peers
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if atomic.LoadInt32(p.Connected()) != 0 {
peers = append(peers, *NewPPeer(p))
}
}
return peers
}
func (lib *PEthereum) GetIsMining() bool {
return lib.manager.IsMining()
}
func (lib *PEthereum) GetIsListening() bool {
return lib.manager.IsListening()
}
func (lib *PEthereum) GetCoinBase() string {
return ethutil.Bytes2Hex(lib.keyManager.Address())
}
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func (lib *PEthereum) GetTransactionsFor(address string, asJson bool) interface{} {
sBlk := lib.manager.BlockChain().LastBlockHash
blk := lib.manager.BlockChain().GetBlock(sBlk)
addr := []byte(ethutil.Hex2Bytes(address))
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var txs []*PTx
for ; blk != nil; blk = lib.manager.BlockChain().GetBlock(sBlk) {
sBlk = blk.PrevHash
// Loop through all transactions to see if we missed any while being offline
for _, tx := range blk.Transactions() {
if bytes.Compare(tx.Sender(), addr) == 0 || bytes.Compare(tx.Recipient, addr) == 0 {
ptx := NewPTx(tx)
//TODO: somehow move this to NewPTx
ptx.Confirmations = int(lib.manager.BlockChain().LastBlockNumber - blk.BlockInfo().Number)
txs = append(txs, ptx)
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}
}
}
if asJson {
txJson, err := json.Marshal(txs)
if err != nil {
return nil
}
return string(txJson)
}
return txs
}
func (lib *PEthereum) GetStorage(address, storageAddress string) string {
return lib.GetStateObject(address).GetStorage(storageAddress)
}
func (lib *PEthereum) GetTxCountAt(address string) int {
return lib.GetStateObject(address).Nonce()
}
func (lib *PEthereum) IsContract(address string) bool {
return lib.GetStateObject(address).IsContract()
}
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func (lib *PEthereum) SecretToAddress(key string) string {
pair, err := ethcrypto.NewKeyPairFromSec(ethutil.Hex2Bytes(key))
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if err != nil {
return ""
}
return ethutil.Bytes2Hex(pair.Address())
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}
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func (lib *PEthereum) Transact(key, recipient, valueStr, gasStr, gasPriceStr, dataStr string) (*PReceipt, error) {
return lib.createTx(key, recipient, valueStr, gasStr, gasPriceStr, dataStr)
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}
func (lib *PEthereum) Create(key, valueStr, gasStr, gasPriceStr, script string) (*PReceipt, error) {
return lib.createTx(key, "", valueStr, gasStr, gasPriceStr, script)
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}
var namereg = ethutil.Hex2Bytes("bb5f186604d057c1c5240ca2ae0f6430138ac010")
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func GetAddressFromNameReg(stateManager *ethchain.StateManager, name string) []byte {
recp := new(big.Int).SetBytes([]byte(name))
object := stateManager.CurrentState().GetStateObject(namereg)
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if object != nil {
reg := object.GetStorage(recp)
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return reg.Bytes()
}
return nil
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}
func (lib *PEthereum) createTx(key, recipient, valueStr, gasStr, gasPriceStr, scriptStr string) (*PReceipt, error) {
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var hash []byte
var contractCreation bool
if len(recipient) == 0 {
contractCreation = true
} else {
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// Check if an address is stored by this address
addr := GetAddressFromNameReg(lib.stateManager, recipient)
if len(addr) > 0 {
hash = addr
} else {
hash = ethutil.Hex2Bytes(recipient)
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}
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}
var keyPair *ethcrypto.KeyPair
var err error
if key[0:2] == "0x" {
keyPair, err = ethcrypto.NewKeyPairFromSec([]byte(ethutil.Hex2Bytes(key[2:])))
} else {
keyPair, err = ethcrypto.NewKeyPairFromSec([]byte(ethutil.Hex2Bytes(key)))
}
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if err != nil {
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return nil, err
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}
value := ethutil.Big(valueStr)
gas := ethutil.Big(gasStr)
gasPrice := ethutil.Big(gasPriceStr)
var tx *ethchain.Transaction
// Compile and assemble the given data
if contractCreation {
var script []byte
var err error
if ethutil.IsHex(scriptStr) {
script = ethutil.Hex2Bytes(scriptStr[2:])
} else {
script, err = ethutil.Compile(scriptStr)
if err != nil {
return nil, err
}
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}
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tx = ethchain.NewContractCreationTx(value, gas, gasPrice, script)
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} else {
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data := ethutil.StringToByteFunc(scriptStr, func(s string) (ret []byte) {
slice := strings.Split(s, "\n")
for _, dataItem := range slice {
d := ethutil.FormatData(dataItem)
ret = append(ret, d...)
}
return
})
tx = ethchain.NewTransactionMessage(hash, value, gas, gasPrice, data)
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}
acc := lib.stateManager.TransState().GetStateObject(keyPair.Address())
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tx.Nonce = acc.Nonce
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acc.Nonce += 1
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lib.stateManager.TransState().UpdateStateObject(acc)
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tx.Sign(keyPair.PrivateKey)
lib.txPool.QueueTransaction(tx)
if contractCreation {
logger.Infof("Contract addr %x", tx.CreationAddress())
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}
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return NewPReciept(contractCreation, tx.CreationAddress(), tx.Hash(), keyPair.Address()), nil
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}