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https://gitlab.com/pulsechaincom/go-pulse.git
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Reworking the public js interface (pub) => (pipe)
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ace551030f
commit
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168
ethpipe/js_pipe.go
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168
ethpipe/js_pipe.go
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@ -0,0 +1,168 @@
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package ethpipe
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import (
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"encoding/json"
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"sync/atomic"
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"github.com/ethereum/eth-go/ethchain"
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"github.com/ethereum/eth-go/ethcrypto"
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"github.com/ethereum/eth-go/ethutil"
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)
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type JSPipe struct {
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*Pipe
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}
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func NewJSPipe(eth ethchain.EthManager) *JSPipe {
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return &JSPipe{New(eth)}
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}
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func (self *JSPipe) GetBlockByHash(strHash string) *JSBlock {
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hash := ethutil.Hex2Bytes(strHash)
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block := self.obj.BlockChain().GetBlock(hash)
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return NewJSBlock(block)
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}
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func (self *JSPipe) GetKey() *JSKey {
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return NewJSKey(self.obj.KeyManager().KeyPair())
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}
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func (self *JSPipe) GetStateObject(addr string) *JSObject {
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object := &Object{self.World().safeGet(ethutil.Hex2Bytes(addr))}
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return NewJSObject(object)
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}
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func (self *JSPipe) GetPeerCount() int {
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return self.obj.PeerCount()
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}
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func (self *JSPipe) GetPeers() []JSPeer {
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var peers []JSPeer
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for peer := self.obj.Peers().Front(); peer != nil; peer = peer.Next() {
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p := peer.Value.(ethchain.Peer)
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// we only want connected peers
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if atomic.LoadInt32(p.Connected()) != 0 {
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peers = append(peers, *NewJSPeer(p))
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}
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}
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return peers
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}
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func (self *JSPipe) GetIsMining() bool {
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return self.obj.IsMining()
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}
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func (self *JSPipe) GetIsListening() bool {
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return self.obj.IsListening()
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}
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func (self *JSPipe) GetCoinBase() string {
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return ethutil.Bytes2Hex(self.obj.KeyManager().Address())
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}
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func (self *JSPipe) GetStorage(addr, storageAddr string) string {
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return self.World().SafeGet(ethutil.Hex2Bytes(addr)).Storage(ethutil.Hex2Bytes(storageAddr)).Str()
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}
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func (self *JSPipe) GetTxCountAt(address string) int {
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return int(self.World().SafeGet(ethutil.Hex2Bytes(address)).Nonce)
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}
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func (self *JSPipe) IsContract(address string) bool {
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return len(self.World().SafeGet(ethutil.Hex2Bytes(address)).Code) > 0
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}
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func (self *JSPipe) SecretToAddress(key string) string {
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pair, err := ethcrypto.NewKeyPairFromSec(ethutil.Hex2Bytes(key))
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if err != nil {
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return ""
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}
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return ethutil.Bytes2Hex(pair.Address())
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}
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type KeyVal struct {
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Key string `json:"key"`
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Value string `json:"value"`
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}
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func (self *JSPipe) GetEachStorage(addr string) string {
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var values []KeyVal
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object := self.World().SafeGet(ethutil.Hex2Bytes(addr))
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object.EachStorage(func(name string, value *ethutil.Value) {
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value.Decode()
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values = append(values, KeyVal{ethutil.Bytes2Hex([]byte(name)), ethutil.Bytes2Hex(value.Bytes())})
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})
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valuesJson, err := json.Marshal(values)
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if err != nil {
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return ""
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}
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return string(valuesJson)
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}
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func (self *JSPipe) Transact(key, toStr, valueStr, gasStr, gasPriceStr, codeStr string) (*JSReceipt, error) {
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var hash []byte
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var contractCreation bool
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if len(toStr) == 0 {
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contractCreation = true
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} else {
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// Check if an address is stored by this address
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addr := self.World().Config().Get("NameReg").StorageString(toStr).Bytes()
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if len(addr) > 0 {
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hash = addr
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} else {
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hash = ethutil.Hex2Bytes(toStr)
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}
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}
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var keyPair *ethcrypto.KeyPair
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var err error
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if ethutil.IsHex(key) {
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keyPair, err = ethcrypto.NewKeyPairFromSec([]byte(ethutil.Hex2Bytes(key[2:])))
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} else {
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keyPair, err = ethcrypto.NewKeyPairFromSec([]byte(ethutil.Hex2Bytes(key)))
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}
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if err != nil {
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return nil, err
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}
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var (
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value = ethutil.Big(valueStr)
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gas = ethutil.Big(gasStr)
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gasPrice = ethutil.Big(gasPriceStr)
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data []byte
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tx *ethchain.Transaction
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)
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if ethutil.IsHex(codeStr) {
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data = ethutil.Hex2Bytes(codeStr[2:])
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} else {
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data = ethutil.Hex2Bytes(codeStr)
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}
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if contractCreation {
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tx = ethchain.NewContractCreationTx(value, gas, gasPrice, data)
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} else {
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tx = ethchain.NewTransactionMessage(hash, value, gas, gasPrice, data)
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}
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acc := self.obj.StateManager().TransState().GetOrNewStateObject(keyPair.Address())
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tx.Nonce = acc.Nonce
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acc.Nonce += 1
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self.obj.StateManager().TransState().UpdateStateObject(acc)
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tx.Sign(keyPair.PrivateKey)
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self.obj.TxPool().QueueTransaction(tx)
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if contractCreation {
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logger.Infof("Contract addr %x", tx.CreationAddress())
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}
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return NewJSReciept(contractCreation, tx.CreationAddress(), tx.Hash(), keyPair.Address()), nil
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}
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177
ethpipe/js_types.go
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177
ethpipe/js_types.go
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@ -0,0 +1,177 @@
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package ethpipe
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import (
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"encoding/json"
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"strconv"
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"strings"
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"github.com/ethereum/eth-go/ethchain"
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"github.com/ethereum/eth-go/ethcrypto"
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"github.com/ethereum/eth-go/ethutil"
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)
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// Block interface exposed to QML
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type JSBlock struct {
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ref *ethchain.Block
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Number int `json:"number"`
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Hash string `json:"hash"`
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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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Name string `json:"name"`
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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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func NewJSBlock(block *ethchain.Block) *JSBlock {
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if block == nil {
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return nil
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}
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var ptxs []JSTransaction
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for _, tx := range block.Transactions() {
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ptxs = append(ptxs, *NewJSTx(tx))
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}
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txJson, err := json.Marshal(ptxs)
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if err != nil {
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return nil
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}
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return &JSBlock{ref: block, Number: int(block.Number.Uint64()), GasUsed: block.GasUsed.String(), GasLimit: block.GasLimit.String(), Hash: ethutil.Bytes2Hex(block.Hash()), Transactions: string(txJson), Time: block.Time, Coinbase: ethutil.Bytes2Hex(block.Coinbase)}
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}
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func (self *JSBlock) ToString() string {
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if self.ref != nil {
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return self.ref.String()
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}
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return ""
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}
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func (self *JSBlock) GetTransaction(hash string) *JSTransaction {
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tx := self.ref.GetTransaction(ethutil.Hex2Bytes(hash))
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if tx == nil {
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return nil
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}
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return NewJSTx(tx)
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}
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type JSTransaction struct {
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ref *ethchain.Transaction
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Value string `json:"value"`
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Gas string `json:"gas"`
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GasPrice string `json:"gasPrice"`
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Hash string `json:"hash"`
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Address string `json:"address"`
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Sender string `json:"sender"`
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RawData string `json:"rawData"`
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Data string `json:"data"`
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Contract bool `json:"isContract"`
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CreatesContract bool `json:"createsContract"`
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Confirmations int `json:"confirmations"`
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}
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func NewJSTx(tx *ethchain.Transaction) *JSTransaction {
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hash := ethutil.Bytes2Hex(tx.Hash())
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receiver := ethutil.Bytes2Hex(tx.Recipient)
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if receiver == "0000000000000000000000000000000000000000" {
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receiver = ethutil.Bytes2Hex(tx.CreationAddress())
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}
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sender := ethutil.Bytes2Hex(tx.Sender())
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createsContract := tx.CreatesContract()
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var data string
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if tx.CreatesContract() {
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data = strings.Join(ethchain.Disassemble(tx.Data), "\n")
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} else {
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data = ethutil.Bytes2Hex(tx.Data)
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}
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return &JSTransaction{ref: tx, Hash: hash, Value: ethutil.CurrencyToString(tx.Value), Address: receiver, Contract: tx.CreatesContract(), Gas: tx.Gas.String(), GasPrice: tx.GasPrice.String(), Data: data, Sender: sender, CreatesContract: createsContract, RawData: ethutil.Bytes2Hex(tx.Data)}
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}
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func (self *JSTransaction) ToString() string {
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return self.ref.String()
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}
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type JSKey struct {
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Address string `json:"address"`
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PrivateKey string `json:"privateKey"`
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PublicKey string `json:"publicKey"`
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}
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func NewJSKey(key *ethcrypto.KeyPair) *JSKey {
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return &JSKey{ethutil.Bytes2Hex(key.Address()), ethutil.Bytes2Hex(key.PrivateKey), ethutil.Bytes2Hex(key.PublicKey)}
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}
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type JSObject struct {
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*Object
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}
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func NewJSObject(object *Object) *JSObject {
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return &JSObject{object}
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}
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type PReceipt struct {
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CreatedContract bool `json:"createdContract"`
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Address string `json:"address"`
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Hash string `json:"hash"`
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Sender string `json:"sender"`
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}
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func NewPReciept(contractCreation bool, creationAddress, hash, address []byte) *PReceipt {
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return &PReceipt{
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contractCreation,
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ethutil.Bytes2Hex(creationAddress),
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ethutil.Bytes2Hex(hash),
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ethutil.Bytes2Hex(address),
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}
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}
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// Peer interface exposed to QML
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type JSPeer struct {
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ref *ethchain.Peer
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Inbound bool `json:"isInbound"`
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LastSend int64 `json:"lastSend"`
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LastPong int64 `json:"lastPong"`
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Ip string `json:"ip"`
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Port int `json:"port"`
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Version string `json:"version"`
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LastResponse string `json:"lastResponse"`
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Latency string `json:"latency"`
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}
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func NewJSPeer(peer ethchain.Peer) *JSPeer {
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if peer == nil {
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return nil
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}
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var ip []string
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for _, i := range peer.Host() {
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ip = append(ip, strconv.Itoa(int(i)))
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}
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ipAddress := strings.Join(ip, ".")
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return &JSPeer{ref: &peer, Inbound: peer.Inbound(), LastSend: peer.LastSend().Unix(), LastPong: peer.LastPong(), Version: peer.Version(), Ip: ipAddress, Port: int(peer.Port()), Latency: peer.PingTime()}
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}
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type JSReceipt struct {
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CreatedContract bool `json:"createdContract"`
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Address string `json:"address"`
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Hash string `json:"hash"`
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Sender string `json:"sender"`
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}
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func NewJSReciept(contractCreation bool, creationAddress, hash, address []byte) *JSReceipt {
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return &JSReceipt{
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contractCreation,
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ethutil.Bytes2Hex(creationAddress),
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ethutil.Bytes2Hex(hash),
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ethutil.Bytes2Hex(address),
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}
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}
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@ -30,6 +30,10 @@ func (self *World) Get(addr []byte) *Object {
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return &Object{self.State().GetStateObject(addr)}
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}
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func (self *World) SafeGet(addr []byte) *Object {
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return &Object{self.safeGet(addr)}
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}
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func (self *World) safeGet(addr []byte) *ethstate.StateObject {
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object := self.State().GetStateObject(addr)
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if object == nil {
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@ -52,12 +52,6 @@ type PEthereum struct {
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keyManager *ethcrypto.KeyManager
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}
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func NewPEthereum(manager ethchain.EthManager) *PEthereum {
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logger.Warnln("DEPRECATED: ethpub.New should be used in favour of ethpub.NewPEthereum")
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return New(manager)
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}
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func New(manager ethchain.EthManager) *PEthereum {
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return &PEthereum{
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manager,
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