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package eth
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import (
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"context"
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"fmt"
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"math/big"
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"time"
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"github.com/ethereum/go-ethereum/accounts"
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"github.com/ethereum/go-ethereum/accounts/abi/bind"
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ethKeystore "github.com/ethereum/go-ethereum/accounts/keystore"
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ethCommon "github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/ethclient"
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"github.com/hermeznetwork/hermez-node/common"
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"github.com/hermeznetwork/hermez-node/log"
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)
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var (
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ErrAccountNil = fmt.Errorf("Authorized calls can't be made when the account is nil")
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// ErrReceiptStatusFailed when receiving a failed transaction
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ErrReceiptStatusFailed = fmt.Errorf("receipt status is failed")
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// ErrReceiptNotRecieved when unable to retrieve a transaction
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ErrReceiptNotReceived = fmt.Errorf("receipt not available")
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)
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const (
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errStrDeploy = "deployment of %s failed: %w"
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errStrWaitReceipt = "wait receipt of %s deploy failed: %w"
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)
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// Client is an ethereum client to call Smart Contract methods.
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type Client struct {
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client *ethclient.Client
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account *accounts.Account
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ks *ethKeystore.KeyStore
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ReceiptTimeout time.Duration
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}
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// NewClient creates a Client instance. The account is not mandatory (it can
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// be nil). If the account is nil, CallAuth will fail with ErrAccountNil.
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func NewClient(client *ethclient.Client, account *accounts.Account, ks *ethKeystore.KeyStore) *Client {
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return &Client{client: client, account: account, ks: ks, ReceiptTimeout: 60 * time.Second}
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}
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// BalanceAt retieves information about the default account
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func (c *Client) BalanceAt(addr ethCommon.Address) (*big.Int, error) {
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return c.client.BalanceAt(context.TODO(), addr, nil)
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}
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// Account returns the underlying ethereum account
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func (c *Client) Account() *accounts.Account {
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return c.account
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}
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// CallAuth performs a Smart Contract method call that requires authorization.
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// This call requires a valid account with Ether that can be spend during the
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// call.
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func (c *Client) CallAuth(gasLimit uint64,
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fn func(*ethclient.Client, *bind.TransactOpts) (*types.Transaction, error)) (*types.Transaction, error) {
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if c.account == nil {
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return nil, ErrAccountNil
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}
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gasPrice, err := c.client.SuggestGasPrice(context.Background())
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if err != nil {
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return nil, err
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}
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inc := new(big.Int).Set(gasPrice)
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inc.Div(inc, new(big.Int).SetUint64(100))
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gasPrice.Add(gasPrice, inc)
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log.Debug("Transaction metadata", "gasPrice", gasPrice)
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auth, err := bind.NewKeyStoreTransactor(c.ks, *c.account)
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if err != nil {
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return nil, err
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}
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auth.Value = big.NewInt(0) // in wei
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if gasLimit == 0 {
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auth.GasLimit = uint64(300000) // in units
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} else {
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auth.GasLimit = gasLimit // in units
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}
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auth.GasPrice = gasPrice
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tx, err := fn(c.client, auth)
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if tx != nil {
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log.Debug("Transaction", "tx", tx.Hash().Hex(), "nonce", tx.Nonce())
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}
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return tx, err
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}
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type ContractData struct {
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Address ethCommon.Address
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Tx *types.Transaction
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Receipt *types.Receipt
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}
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// Deploy a smart contract. `name` is used to log deployment information. fn
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// is a wrapper to the deploy function generated by abigen. In case of error,
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// the returned `ContractData` may have some parameters filled depending on the
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// kind of error that ocurred.
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// successfull.
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func (c *Client) Deploy(name string,
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fn func(c *ethclient.Client, auth *bind.TransactOpts) (ethCommon.Address, *types.Transaction, interface{}, error)) (ContractData, error) {
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var contractData ContractData
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log.Info("Deploying", "contract", name)
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tx, err := c.CallAuth(
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1000000,
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func(client *ethclient.Client, auth *bind.TransactOpts) (*types.Transaction, error) {
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addr, tx, _, err := fn(client, auth)
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if err != nil {
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return nil, err
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}
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contractData.Address = addr
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return tx, nil
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},
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)
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if err != nil {
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return contractData, fmt.Errorf(errStrDeploy, name, err)
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}
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log.Info("Waiting receipt", "tx", tx.Hash().Hex(), "contract", name)
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contractData.Tx = tx
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receipt, err := c.WaitReceipt(tx)
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if err != nil {
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return contractData, fmt.Errorf(errStrWaitReceipt, name, err)
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}
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contractData.Receipt = receipt
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return contractData, nil
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}
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// Call performs a read only Smart Contract method call.
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func (c *Client) Call(fn func(*ethclient.Client) error) error {
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return fn(c.client)
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}
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// WaitReceipt will block until a transaction is confirmed. Internally it
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// polls the state every 200 milliseconds.
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func (c *Client) WaitReceipt(tx *types.Transaction) (*types.Receipt, error) {
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return c.waitReceipt(tx, context.TODO(), c.ReceiptTimeout)
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}
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// GetReceipt will check if a transaction is confirmed and return
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// immediately, waiting at most 1 second and returning error if the transaction
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// is still pending.
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func (c *Client) GetReceipt(tx *types.Transaction) (*types.Receipt, error) {
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ctx, cancel := context.WithTimeout(context.TODO(), 1*time.Second)
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defer cancel()
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return c.waitReceipt(tx, ctx, 0)
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}
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func (c *Client) waitReceipt(tx *types.Transaction, ctx context.Context, timeout time.Duration) (*types.Receipt, error) {
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var err error
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var receipt *types.Receipt
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txid := tx.Hash()
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log.Debug("Waiting for receipt", "tx", txid.Hex())
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start := time.Now()
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for {
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receipt, err = c.client.TransactionReceipt(ctx, txid)
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if receipt != nil || time.Since(start) >= timeout {
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break
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}
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time.Sleep(200 * time.Millisecond)
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}
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if receipt != nil && receipt.Status == types.ReceiptStatusFailed {
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log.Error("Failed transaction", "tx", txid.Hex())
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return receipt, ErrReceiptStatusFailed
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}
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if receipt == nil {
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log.Debug("Pendingtransaction / Wait receipt timeout", "tx", txid.Hex(), "lasterr", err)
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return receipt, ErrReceiptNotReceived
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}
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log.Debug("Successfull transaction", "tx", txid.Hex())
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return receipt, err
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}
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// CurrentBlock returns the current block number in the blockchain
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func (c *Client) CurrentBlock() (*big.Int, error) {
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ctx, cancel := context.WithTimeout(context.TODO(), 1*time.Second)
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defer cancel()
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header, err := c.client.HeaderByNumber(ctx, nil)
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if err != nil {
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return nil, err
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}
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return header.Number, nil
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}
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// HeaderByNumber internally calls ethclient.Client HeaderByNumber
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func (c *Client) HeaderByNumber(ctx context.Context, number *big.Int) (*types.Header, error) {
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return c.client.HeaderByNumber(ctx, number)
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}
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// BlockByNumber internally calls ethclient.Client BlockByNumber
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func (c *Client) BlockByNumber(ctx context.Context, number *big.Int) (*types.Block, error) {
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return c.client.BlockByNumber(ctx, number)
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}
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func (c *Client) ForgeCall(callData *common.CallDataForge) ([]byte, error) {
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// TODO this depends on the smart contracts, once are ready this will be updated
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return nil, nil
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}
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