568 lines
18 KiB
Go
568 lines
18 KiB
Go
package transactions
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//go:generate mockgen -package=mock_transactor -source=transactor.go -destination=mock/transactor.go
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import (
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"bytes"
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"context"
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"errors"
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"fmt"
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"math/big"
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"time"
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ethereum "github.com/ethereum/go-ethereum"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/common/hexutil"
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gethtypes "github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/log"
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"github.com/status-im/status-go/account"
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"github.com/status-im/status-go/eth-node/crypto"
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"github.com/status-im/status-go/eth-node/types"
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"github.com/status-im/status-go/params"
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"github.com/status-im/status-go/rpc"
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"github.com/status-im/status-go/services/wallet/bigint"
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wallet_common "github.com/status-im/status-go/services/wallet/common"
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)
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const (
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// sendTxTimeout defines how many seconds to wait before returning result in sentTransaction().
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sendTxTimeout = 300 * time.Second
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defaultGas = 90000
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ValidSignatureSize = 65
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)
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// ErrInvalidSignatureSize is returned if a signature is not 65 bytes to avoid panic from go-ethereum
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var ErrInvalidSignatureSize = errors.New("signature size must be 65")
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type ErrBadNonce struct {
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nonce uint64
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expectedNonce uint64
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}
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func (e *ErrBadNonce) Error() string {
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return fmt.Sprintf("bad nonce. expected %d, got %d", e.expectedNonce, e.nonce)
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}
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// Transactor is an interface that defines the methods for validating and sending transactions.
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type TransactorIface interface {
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NextNonce(rpcClient rpc.ClientInterface, chainID uint64, from types.Address) (uint64, error)
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EstimateGas(network *params.Network, from common.Address, to common.Address, value *big.Int, input []byte) (uint64, error)
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SendTransaction(sendArgs SendTxArgs, verifiedAccount *account.SelectedExtKey, lastUsedNonce int64) (hash types.Hash, nonce uint64, err error)
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SendTransactionWithChainID(chainID uint64, sendArgs SendTxArgs, lastUsedNonce int64, verifiedAccount *account.SelectedExtKey) (hash types.Hash, nonce uint64, err error)
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ValidateAndBuildTransaction(chainID uint64, sendArgs SendTxArgs, lastUsedNonce int64) (tx *gethtypes.Transaction, nonce uint64, err error)
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AddSignatureToTransaction(chainID uint64, tx *gethtypes.Transaction, sig []byte) (*gethtypes.Transaction, error)
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SendRawTransaction(chainID uint64, rawTx string) error
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BuildTransactionWithSignature(chainID uint64, args SendTxArgs, sig []byte) (*gethtypes.Transaction, error)
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SendTransactionWithSignature(from common.Address, symbol string, multiTransactionID wallet_common.MultiTransactionIDType, tx *gethtypes.Transaction) (hash types.Hash, err error)
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StoreAndTrackPendingTx(from common.Address, symbol string, chainID uint64, multiTransactionID wallet_common.MultiTransactionIDType, tx *gethtypes.Transaction) error
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}
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// Transactor validates, signs transactions.
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// It uses upstream to propagate transactions to the Ethereum network.
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type Transactor struct {
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rpcWrapper *rpcWrapper
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pendingTracker *PendingTxTracker
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sendTxTimeout time.Duration
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rpcCallTimeout time.Duration
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networkID uint64
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log log.Logger
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}
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// NewTransactor returns a new Manager.
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func NewTransactor() *Transactor {
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return &Transactor{
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sendTxTimeout: sendTxTimeout,
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log: log.New("package", "status-go/transactions.Manager"),
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}
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}
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// SetPendingTracker sets a pending tracker.
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func (t *Transactor) SetPendingTracker(tracker *PendingTxTracker) {
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t.pendingTracker = tracker
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}
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// SetNetworkID selects a correct network.
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func (t *Transactor) SetNetworkID(networkID uint64) {
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t.networkID = networkID
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}
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func (t *Transactor) NetworkID() uint64 {
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return t.networkID
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}
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// SetRPC sets RPC params, a client and a timeout
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func (t *Transactor) SetRPC(rpcClient *rpc.Client, timeout time.Duration) {
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t.rpcWrapper = newRPCWrapper(rpcClient, rpcClient.UpstreamChainID)
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t.rpcCallTimeout = timeout
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}
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func (t *Transactor) NextNonce(rpcClient rpc.ClientInterface, chainID uint64, from types.Address) (uint64, error) {
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wrapper := newRPCWrapper(rpcClient, chainID)
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ctx := context.Background()
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nonce, err := wrapper.PendingNonceAt(ctx, common.Address(from))
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if err != nil {
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return 0, err
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}
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// We need to take into consideration all pending transactions in case of Optimism, cause the network returns always
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// the nonce of last executed tx + 1 for the next nonce value.
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if chainID == wallet_common.OptimismMainnet ||
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chainID == wallet_common.OptimismSepolia {
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if t.pendingTracker != nil {
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countOfPendingTXs, err := t.pendingTracker.CountPendingTxsFromNonce(wallet_common.ChainID(chainID), common.Address(from), nonce)
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if err != nil {
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return 0, err
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}
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return nonce + countOfPendingTXs, nil
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}
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}
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return nonce, err
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}
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func (t *Transactor) EstimateGas(network *params.Network, from common.Address, to common.Address, value *big.Int, input []byte) (uint64, error) {
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rpcWrapper := newRPCWrapper(t.rpcWrapper.RPCClient, network.ChainID)
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ctx, cancel := context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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msg := ethereum.CallMsg{
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From: from,
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To: &to,
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Value: value,
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Data: input,
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}
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return rpcWrapper.EstimateGas(ctx, msg)
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}
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// SendTransaction is an implementation of eth_sendTransaction. It queues the tx to the sign queue.
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func (t *Transactor) SendTransaction(sendArgs SendTxArgs, verifiedAccount *account.SelectedExtKey, lastUsedNonce int64) (hash types.Hash, nonce uint64, err error) {
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hash, nonce, err = t.validateAndPropagate(t.rpcWrapper, verifiedAccount, sendArgs, lastUsedNonce)
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return
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}
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func (t *Transactor) SendTransactionWithChainID(chainID uint64, sendArgs SendTxArgs, lastUsedNonce int64, verifiedAccount *account.SelectedExtKey) (hash types.Hash, nonce uint64, err error) {
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wrapper := newRPCWrapper(t.rpcWrapper.RPCClient, chainID)
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hash, nonce, err = t.validateAndPropagate(wrapper, verifiedAccount, sendArgs, lastUsedNonce)
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return
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}
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func (t *Transactor) ValidateAndBuildTransaction(chainID uint64, sendArgs SendTxArgs, lastUsedNonce int64) (tx *gethtypes.Transaction, nonce uint64, err error) {
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wrapper := newRPCWrapper(t.rpcWrapper.RPCClient, chainID)
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tx, err = t.validateAndBuildTransaction(wrapper, sendArgs, lastUsedNonce)
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if err != nil {
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return nil, 0, err
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}
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return tx, tx.Nonce(), err
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}
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func (t *Transactor) AddSignatureToTransaction(chainID uint64, tx *gethtypes.Transaction, sig []byte) (*gethtypes.Transaction, error) {
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if len(sig) != ValidSignatureSize {
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return nil, ErrInvalidSignatureSize
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}
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rpcWrapper := newRPCWrapper(t.rpcWrapper.RPCClient, chainID)
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chID := big.NewInt(int64(rpcWrapper.chainID))
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signer := gethtypes.NewLondonSigner(chID)
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txWithSignature, err := tx.WithSignature(signer, sig)
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if err != nil {
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return nil, err
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}
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return txWithSignature, nil
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}
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func (t *Transactor) SendRawTransaction(chainID uint64, rawTx string) error {
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rpcWrapper := newRPCWrapper(t.rpcWrapper.RPCClient, chainID)
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ctx, cancel := context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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return rpcWrapper.SendRawTransaction(ctx, rawTx)
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}
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func createPendingTransaction(from common.Address, symbol string, chainID uint64, multiTransactionID wallet_common.MultiTransactionIDType, tx *gethtypes.Transaction) (pTx *PendingTransaction) {
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pTx = &PendingTransaction{
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Hash: tx.Hash(),
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Timestamp: uint64(time.Now().Unix()),
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Value: bigint.BigInt{Int: tx.Value()},
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From: from,
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To: *tx.To(),
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Nonce: tx.Nonce(),
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Data: string(tx.Data()),
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Type: WalletTransfer,
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ChainID: wallet_common.ChainID(chainID),
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MultiTransactionID: multiTransactionID,
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Symbol: symbol,
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AutoDelete: new(bool),
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}
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// Transaction downloader will delete pending transaction as soon as it is confirmed
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*pTx.AutoDelete = false
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return
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}
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func (t *Transactor) StoreAndTrackPendingTx(from common.Address, symbol string, chainID uint64, multiTransactionID wallet_common.MultiTransactionIDType, tx *gethtypes.Transaction) error {
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if t.pendingTracker == nil {
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return nil
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}
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pTx := createPendingTransaction(from, symbol, chainID, multiTransactionID, tx)
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return t.pendingTracker.StoreAndTrackPendingTx(pTx)
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}
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func (t *Transactor) sendTransaction(rpcWrapper *rpcWrapper, from common.Address, symbol string,
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multiTransactionID wallet_common.MultiTransactionIDType, tx *gethtypes.Transaction) (hash types.Hash, err error) {
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ctx, cancel := context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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if err := rpcWrapper.SendTransaction(ctx, tx); err != nil {
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return hash, err
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}
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err = t.StoreAndTrackPendingTx(from, symbol, rpcWrapper.chainID, multiTransactionID, tx)
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if err != nil {
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return hash, err
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}
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return types.Hash(tx.Hash()), nil
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}
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func (t *Transactor) SendTransactionWithSignature(from common.Address, symbol string,
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multiTransactionID wallet_common.MultiTransactionIDType, tx *gethtypes.Transaction) (hash types.Hash, err error) {
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rpcWrapper := newRPCWrapper(t.rpcWrapper.RPCClient, tx.ChainId().Uint64())
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return t.sendTransaction(rpcWrapper, from, symbol, multiTransactionID, tx)
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}
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// BuildTransactionAndSendWithSignature receive a transaction and a signature, serialize them together
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// It's different from eth_sendRawTransaction because it receives a signature and not a serialized transaction with signature.
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// Since the transactions is already signed, we assume it was validated and used the right nonce.
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func (t *Transactor) BuildTransactionWithSignature(chainID uint64, args SendTxArgs, sig []byte) (*gethtypes.Transaction, error) {
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if !args.Valid() {
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return nil, ErrInvalidSendTxArgs
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}
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if len(sig) != ValidSignatureSize {
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return nil, ErrInvalidSignatureSize
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}
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tx := t.buildTransaction(args)
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expectedNonce, err := t.NextNonce(t.rpcWrapper.RPCClient, chainID, args.From)
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if err != nil {
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return nil, err
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}
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if tx.Nonce() != expectedNonce {
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return nil, &ErrBadNonce{tx.Nonce(), expectedNonce}
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}
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txWithSignature, err := t.AddSignatureToTransaction(chainID, tx, sig)
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if err != nil {
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return nil, err
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}
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return txWithSignature, nil
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}
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func (t *Transactor) HashTransaction(args SendTxArgs) (validatedArgs SendTxArgs, hash types.Hash, err error) {
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if !args.Valid() {
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return validatedArgs, hash, ErrInvalidSendTxArgs
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}
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validatedArgs = args
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nonce, err := t.NextNonce(t.rpcWrapper.RPCClient, t.rpcWrapper.chainID, args.From)
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if err != nil {
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return validatedArgs, hash, err
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}
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gasPrice := (*big.Int)(args.GasPrice)
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gasFeeCap := (*big.Int)(args.MaxFeePerGas)
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gasTipCap := (*big.Int)(args.MaxPriorityFeePerGas)
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if args.GasPrice == nil && !args.IsDynamicFeeTx() {
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ctx, cancel := context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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gasPrice, err = t.rpcWrapper.SuggestGasPrice(ctx)
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if err != nil {
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return validatedArgs, hash, err
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}
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}
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chainID := big.NewInt(int64(t.networkID))
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value := (*big.Int)(args.Value)
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var gas uint64
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if args.Gas == nil {
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ctx, cancel := context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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var (
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gethTo common.Address
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gethToPtr *common.Address
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)
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if args.To != nil {
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gethTo = common.Address(*args.To)
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gethToPtr = &gethTo
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}
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if args.IsDynamicFeeTx() {
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gas, err = t.rpcWrapper.EstimateGas(ctx, ethereum.CallMsg{
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From: common.Address(args.From),
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To: gethToPtr,
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GasFeeCap: gasFeeCap,
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GasTipCap: gasTipCap,
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Value: value,
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Data: args.GetInput(),
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})
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} else {
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gas, err = t.rpcWrapper.EstimateGas(ctx, ethereum.CallMsg{
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From: common.Address(args.From),
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To: gethToPtr,
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GasPrice: gasPrice,
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Value: value,
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Data: args.GetInput(),
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})
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}
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if err != nil {
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return validatedArgs, hash, err
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}
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} else {
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gas = uint64(*args.Gas)
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}
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newNonce := hexutil.Uint64(nonce)
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newGas := hexutil.Uint64(gas)
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validatedArgs.Nonce = &newNonce
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if !args.IsDynamicFeeTx() {
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validatedArgs.GasPrice = (*hexutil.Big)(gasPrice)
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} else {
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validatedArgs.MaxPriorityFeePerGas = (*hexutil.Big)(gasTipCap)
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validatedArgs.MaxPriorityFeePerGas = (*hexutil.Big)(gasFeeCap)
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}
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validatedArgs.Gas = &newGas
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tx := t.buildTransaction(validatedArgs)
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hash = types.Hash(gethtypes.NewLondonSigner(chainID).Hash(tx))
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return validatedArgs, hash, nil
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}
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// make sure that only account which created the tx can complete it
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func (t *Transactor) validateAccount(args SendTxArgs, selectedAccount *account.SelectedExtKey) error {
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if selectedAccount == nil {
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return account.ErrNoAccountSelected
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}
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if !bytes.Equal(args.From.Bytes(), selectedAccount.Address.Bytes()) {
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return ErrInvalidTxSender
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}
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return nil
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}
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func (t *Transactor) validateAndBuildTransaction(rpcWrapper *rpcWrapper, args SendTxArgs, lastUsedNonce int64) (tx *gethtypes.Transaction, err error) {
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if !args.Valid() {
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return tx, ErrInvalidSendTxArgs
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}
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var nonce uint64
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if args.Nonce != nil {
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nonce = uint64(*args.Nonce)
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} else {
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// some chains, like arbitrum doesn't count pending txs in the nonce, so we need to calculate it manually
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if lastUsedNonce < 0 {
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nonce, err = t.NextNonce(rpcWrapper.RPCClient, rpcWrapper.chainID, args.From)
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if err != nil {
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return tx, err
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}
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} else {
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nonce = uint64(lastUsedNonce) + 1
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}
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}
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ctx, cancel := context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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gasPrice := (*big.Int)(args.GasPrice)
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// GasPrice should be estimated only for LegacyTx
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if !args.IsDynamicFeeTx() && args.GasPrice == nil {
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gasPrice, err = rpcWrapper.SuggestGasPrice(ctx)
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if err != nil {
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return tx, err
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}
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}
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value := (*big.Int)(args.Value)
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var gas uint64
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if args.Gas != nil {
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gas = uint64(*args.Gas)
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} else {
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ctx, cancel = context.WithTimeout(context.Background(), t.rpcCallTimeout)
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defer cancel()
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var (
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gethTo common.Address
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gethToPtr *common.Address
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)
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if args.To != nil {
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gethTo = common.Address(*args.To)
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gethToPtr = &gethTo
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}
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if args.IsDynamicFeeTx() {
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gasFeeCap := (*big.Int)(args.MaxFeePerGas)
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gasTipCap := (*big.Int)(args.MaxPriorityFeePerGas)
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gas, err = rpcWrapper.EstimateGas(ctx, ethereum.CallMsg{
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From: common.Address(args.From),
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To: gethToPtr,
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GasFeeCap: gasFeeCap,
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GasTipCap: gasTipCap,
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Value: value,
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Data: args.GetInput(),
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})
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} else {
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gas, err = rpcWrapper.EstimateGas(ctx, ethereum.CallMsg{
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From: common.Address(args.From),
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To: gethToPtr,
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GasPrice: gasPrice,
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Value: value,
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Data: args.GetInput(),
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})
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}
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if err != nil {
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return tx, err
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}
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}
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tx = t.buildTransactionWithOverrides(nonce, value, gas, gasPrice, args)
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return tx, nil
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}
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func (t *Transactor) validateAndPropagate(rpcWrapper *rpcWrapper, selectedAccount *account.SelectedExtKey, args SendTxArgs, lastUsedNonce int64) (hash types.Hash, nonce uint64, err error) {
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symbol := args.Symbol
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if args.Version == SendTxArgsVersion1 {
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symbol = args.FromTokenID
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}
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if err = t.validateAccount(args, selectedAccount); err != nil {
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return hash, nonce, err
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}
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tx, err := t.validateAndBuildTransaction(rpcWrapper, args, lastUsedNonce)
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if err != nil {
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return hash, nonce, err
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}
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chainID := big.NewInt(int64(rpcWrapper.chainID))
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signedTx, err := gethtypes.SignTx(tx, gethtypes.NewLondonSigner(chainID), selectedAccount.AccountKey.PrivateKey)
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if err != nil {
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return hash, nonce, err
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}
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hash, err = t.sendTransaction(rpcWrapper, common.Address(args.From), symbol, args.MultiTransactionID, signedTx)
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return hash, tx.Nonce(), err
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}
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func (t *Transactor) buildTransaction(args SendTxArgs) *gethtypes.Transaction {
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var (
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nonce uint64
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value *big.Int
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gas uint64
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gasPrice *big.Int
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)
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if args.Nonce != nil {
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nonce = uint64(*args.Nonce)
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}
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if args.Value != nil {
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value = (*big.Int)(args.Value)
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}
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if args.Gas != nil {
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gas = uint64(*args.Gas)
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}
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if args.GasPrice != nil {
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gasPrice = (*big.Int)(args.GasPrice)
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}
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return t.buildTransactionWithOverrides(nonce, value, gas, gasPrice, args)
|
|
}
|
|
|
|
func (t *Transactor) buildTransactionWithOverrides(nonce uint64, value *big.Int, gas uint64, gasPrice *big.Int, args SendTxArgs) *gethtypes.Transaction {
|
|
var tx *gethtypes.Transaction
|
|
|
|
if args.To != nil {
|
|
to := common.Address(*args.To)
|
|
var txData gethtypes.TxData
|
|
|
|
if args.IsDynamicFeeTx() {
|
|
gasTipCap := (*big.Int)(args.MaxPriorityFeePerGas)
|
|
gasFeeCap := (*big.Int)(args.MaxFeePerGas)
|
|
|
|
txData = &gethtypes.DynamicFeeTx{
|
|
Nonce: nonce,
|
|
Gas: gas,
|
|
GasTipCap: gasTipCap,
|
|
GasFeeCap: gasFeeCap,
|
|
To: &to,
|
|
Value: value,
|
|
Data: args.GetInput(),
|
|
}
|
|
} else {
|
|
txData = &gethtypes.LegacyTx{
|
|
Nonce: nonce,
|
|
GasPrice: gasPrice,
|
|
Gas: gas,
|
|
To: &to,
|
|
Value: value,
|
|
Data: args.GetInput(),
|
|
}
|
|
}
|
|
tx = gethtypes.NewTx(txData)
|
|
t.logNewTx(args, gas, gasPrice, value)
|
|
} else {
|
|
if args.IsDynamicFeeTx() {
|
|
gasTipCap := (*big.Int)(args.MaxPriorityFeePerGas)
|
|
gasFeeCap := (*big.Int)(args.MaxFeePerGas)
|
|
|
|
txData := &gethtypes.DynamicFeeTx{
|
|
Nonce: nonce,
|
|
Value: value,
|
|
Gas: gas,
|
|
GasTipCap: gasTipCap,
|
|
GasFeeCap: gasFeeCap,
|
|
Data: args.GetInput(),
|
|
}
|
|
tx = gethtypes.NewTx(txData)
|
|
} else {
|
|
tx = gethtypes.NewContractCreation(nonce, value, gas, gasPrice, args.GetInput())
|
|
}
|
|
t.logNewContract(args, gas, gasPrice, value, nonce)
|
|
}
|
|
|
|
return tx
|
|
}
|
|
|
|
func (t *Transactor) logNewTx(args SendTxArgs, gas uint64, gasPrice *big.Int, value *big.Int) {
|
|
t.log.Info("New transaction",
|
|
"From", args.From,
|
|
"To", *args.To,
|
|
"Gas", gas,
|
|
"GasPrice", gasPrice,
|
|
"Value", value,
|
|
)
|
|
}
|
|
|
|
func (t *Transactor) logNewContract(args SendTxArgs, gas uint64, gasPrice *big.Int, value *big.Int, nonce uint64) {
|
|
t.log.Info("New contract",
|
|
"From", args.From,
|
|
"Gas", gas,
|
|
"GasPrice", gasPrice,
|
|
"Value", value,
|
|
"Contract address", crypto.CreateAddress(args.From, nonce),
|
|
)
|
|
}
|