435 lines
13 KiB
Go
435 lines
13 KiB
Go
package transactions
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import (
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"errors"
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"fmt"
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"math/big"
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"reflect"
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"sync"
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"testing"
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"time"
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"github.com/golang/mock/gomock"
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"github.com/stretchr/testify/suite"
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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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gethcrypto "github.com/ethereum/go-ethereum/crypto"
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gethparams "github.com/ethereum/go-ethereum/params"
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"github.com/ethereum/go-ethereum/rlp"
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gethrpc "github.com/ethereum/go-ethereum/rpc"
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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/t/utils"
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"github.com/status-im/status-go/transactions/fake"
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)
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func TestTransactorSuite(t *testing.T) {
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utils.Init()
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suite.Run(t, new(TransactorSuite))
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}
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type TransactorSuite struct {
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suite.Suite
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server *gethrpc.Server
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client *gethrpc.Client
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txServiceMockCtrl *gomock.Controller
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txServiceMock *fake.MockPublicTransactionPoolAPI
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nodeConfig *params.NodeConfig
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manager *Transactor
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}
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func (s *TransactorSuite) SetupTest() {
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s.txServiceMockCtrl = gomock.NewController(s.T())
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s.server, s.txServiceMock = fake.NewTestServer(s.txServiceMockCtrl)
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s.client = gethrpc.DialInProc(s.server)
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// expected by simulated backend
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chainID := gethparams.AllEthashProtocolChanges.ChainID.Uint64()
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rpcClient, _ := rpc.NewClient(s.client, chainID, params.UpstreamRPCConfig{}, nil, nil)
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rpcClient.UpstreamChainID = chainID
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nodeConfig, err := utils.MakeTestNodeConfigWithDataDir("", "/tmp", chainID)
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s.Require().NoError(err)
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s.nodeConfig = nodeConfig
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s.manager = NewTransactor()
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s.manager.sendTxTimeout = time.Second
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s.manager.SetNetworkID(chainID)
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s.manager.SetRPC(rpcClient, time.Second)
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}
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func (s *TransactorSuite) TearDownTest() {
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s.txServiceMockCtrl.Finish()
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s.server.Stop()
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s.client.Close()
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}
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var (
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testGas = hexutil.Uint64(defaultGas + 1)
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testGasPrice = (*hexutil.Big)(big.NewInt(10))
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testNonce = hexutil.Uint64(10)
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)
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func (s *TransactorSuite) setupTransactionPoolAPI(args SendTxArgs, returnNonce, resultNonce hexutil.Uint64, account *account.SelectedExtKey, txErr error) {
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// Expect calls to gas functions only if there are no user defined values.
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// And also set the expected gas and gas price for RLP encoding the expected tx.
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var usedGas hexutil.Uint64
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var usedGasPrice *big.Int
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s.txServiceMock.EXPECT().GetTransactionCount(gomock.Any(), gomock.Eq(common.Address(account.Address)), gethrpc.PendingBlockNumber).Return(&returnNonce, nil)
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if !args.IsDynamicFeeTx() {
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if args.GasPrice == nil {
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usedGasPrice = (*big.Int)(testGasPrice)
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s.txServiceMock.EXPECT().GasPrice(gomock.Any()).Return(testGasPrice, nil)
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} else {
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usedGasPrice = (*big.Int)(args.GasPrice)
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}
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if args.Gas == nil {
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s.txServiceMock.EXPECT().EstimateGas(gomock.Any(), gomock.Any()).Return(testGas, nil)
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usedGas = testGas
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} else {
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usedGas = *args.Gas
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}
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}
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// Prepare the transaction and RLP encode it.
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data := s.rlpEncodeTx(args, s.nodeConfig, account, &resultNonce, usedGas, usedGasPrice)
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// Expect the RLP encoded transaction.
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s.txServiceMock.EXPECT().SendRawTransaction(gomock.Any(), data).Return(common.Hash{}, txErr)
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}
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func (s *TransactorSuite) rlpEncodeTx(args SendTxArgs, config *params.NodeConfig, account *account.SelectedExtKey, nonce *hexutil.Uint64, gas hexutil.Uint64, gasPrice *big.Int) hexutil.Bytes {
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var txData gethtypes.TxData
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to := common.Address(*args.To)
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if args.IsDynamicFeeTx() {
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gasTipCap := (*big.Int)(args.MaxPriorityFeePerGas)
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gasFeeCap := (*big.Int)(args.MaxFeePerGas)
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txData = &gethtypes.DynamicFeeTx{
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Nonce: uint64(*nonce),
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Gas: uint64(gas),
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GasTipCap: gasTipCap,
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GasFeeCap: gasFeeCap,
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To: &to,
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Value: args.Value.ToInt(),
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Data: args.GetInput(),
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}
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} else {
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txData = &gethtypes.LegacyTx{
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Nonce: uint64(*nonce),
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GasPrice: gasPrice,
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Gas: uint64(gas),
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To: &to,
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Value: args.Value.ToInt(),
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Data: args.GetInput(),
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}
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}
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newTx := gethtypes.NewTx(txData)
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chainID := big.NewInt(int64(s.nodeConfig.NetworkID))
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signedTx, err := gethtypes.SignTx(newTx, gethtypes.NewLondonSigner(chainID), account.AccountKey.PrivateKey)
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s.NoError(err)
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data, err := signedTx.MarshalBinary()
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s.NoError(err)
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return hexutil.Bytes(data)
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}
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func (s *TransactorSuite) TestGasValues() {
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key, _ := gethcrypto.GenerateKey()
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selectedAccount := &account.SelectedExtKey{
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Address: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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AccountKey: &types.Key{PrivateKey: key},
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}
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testCases := []struct {
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name string
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gas *hexutil.Uint64
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gasPrice *hexutil.Big
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maxFeePerGas *hexutil.Big
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maxPriorityFeePerGas *hexutil.Big
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}{
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{
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"noGasDef",
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nil,
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nil,
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nil,
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nil,
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},
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{
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"gasDefined",
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&testGas,
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nil,
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nil,
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nil,
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},
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{
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"gasPriceDefined",
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nil,
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testGasPrice,
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nil,
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nil,
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},
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{
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"nilSignTransactionSpecificArgs",
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nil,
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nil,
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nil,
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nil,
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},
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{
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"maxFeeAndPriorityset",
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nil,
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nil,
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testGasPrice,
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testGasPrice,
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},
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}
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for _, testCase := range testCases {
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s.T().Run(testCase.name, func(t *testing.T) {
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s.SetupTest()
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args := SendTxArgs{
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From: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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To: account.ToAddress(utils.TestConfig.Account2.WalletAddress),
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Gas: testCase.gas,
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GasPrice: testCase.gasPrice,
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MaxFeePerGas: testCase.maxFeePerGas,
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MaxPriorityFeePerGas: testCase.maxPriorityFeePerGas,
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}
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s.setupTransactionPoolAPI(args, testNonce, testNonce, selectedAccount, nil)
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hash, err := s.manager.SendTransaction(args, selectedAccount)
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s.NoError(err)
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s.False(reflect.DeepEqual(hash, common.Hash{}))
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})
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}
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}
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func (s *TransactorSuite) TestArgsValidation() {
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args := SendTxArgs{
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From: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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To: account.ToAddress(utils.TestConfig.Account2.WalletAddress),
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Data: types.HexBytes([]byte{0x01, 0x02}),
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Input: types.HexBytes([]byte{0x02, 0x01}),
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}
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s.False(args.Valid())
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selectedAccount := &account.SelectedExtKey{
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Address: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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}
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_, err := s.manager.SendTransaction(args, selectedAccount)
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s.EqualError(err, ErrInvalidSendTxArgs.Error())
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}
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func (s *TransactorSuite) TestAccountMismatch() {
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args := SendTxArgs{
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From: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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To: account.ToAddress(utils.TestConfig.Account2.WalletAddress),
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}
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var err error
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// missing account
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_, err = s.manager.SendTransaction(args, nil)
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s.EqualError(err, account.ErrNoAccountSelected.Error())
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// mismatched accounts
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selectedAccount := &account.SelectedExtKey{
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Address: account.FromAddress(utils.TestConfig.Account2.WalletAddress),
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}
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_, err = s.manager.SendTransaction(args, selectedAccount)
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s.EqualError(err, ErrInvalidTxSender.Error())
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}
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// TestLocalNonce verifies that local nonce will be used unless
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// upstream nonce is updated and higher than a local
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// in test we will run 3 transaction with nonce zero returned by upstream
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// node, after each call local nonce will be incremented
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// then, we return higher nonce, as if another node was used to send 2 transactions
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// upstream nonce will be equal to 5, we update our local counter to 5+1
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// as the last step, we verify that if tx failed nonce is not updated
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func (s *TransactorSuite) TestLocalNonce() {
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txCount := 3
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chainID := s.nodeConfig.NetworkID
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key, _ := gethcrypto.GenerateKey()
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selectedAccount := &account.SelectedExtKey{
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Address: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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AccountKey: &types.Key{PrivateKey: key},
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}
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nonce := hexutil.Uint64(0)
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for i := 0; i < txCount; i++ {
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args := SendTxArgs{
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From: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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To: account.ToAddress(utils.TestConfig.Account2.WalletAddress),
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}
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s.setupTransactionPoolAPI(args, nonce, hexutil.Uint64(i), selectedAccount, nil)
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_, err := s.manager.SendTransaction(args, selectedAccount)
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s.NoError(err)
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resultNonce, _ := s.manager.nonce.localNonce[chainID].Load(args.From)
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s.Equal(uint64(i)+1, resultNonce.(uint64))
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}
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nonce = hexutil.Uint64(5)
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args := SendTxArgs{
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From: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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To: account.ToAddress(utils.TestConfig.Account2.WalletAddress),
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}
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s.setupTransactionPoolAPI(args, nonce, nonce, selectedAccount, nil)
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_, err := s.manager.SendTransaction(args, selectedAccount)
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s.NoError(err)
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resultNonce, _ := s.manager.nonce.localNonce[chainID].Load(args.From)
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s.Equal(uint64(nonce)+1, resultNonce.(uint64))
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testErr := errors.New("test")
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s.txServiceMock.EXPECT().GetTransactionCount(gomock.Any(), gomock.Eq(common.Address(selectedAccount.Address)), gethrpc.PendingBlockNumber).Return(nil, testErr)
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args = SendTxArgs{
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From: account.FromAddress(utils.TestConfig.Account1.WalletAddress),
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To: account.ToAddress(utils.TestConfig.Account2.WalletAddress),
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}
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_, err = s.manager.SendTransaction(args, selectedAccount)
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s.EqualError(err, testErr.Error())
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resultNonce, _ = s.manager.nonce.localNonce[chainID].Load(args.From)
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s.Equal(uint64(nonce)+1, resultNonce.(uint64))
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}
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func (s *TransactorSuite) TestSendTransactionWithSignature() {
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privKey, err := crypto.GenerateKey()
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s.Require().NoError(err)
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address := crypto.PubkeyToAddress(privKey.PublicKey)
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scenarios := []struct {
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localNonce hexutil.Uint64
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txNonce hexutil.Uint64
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expectError bool
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}{
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{
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localNonce: hexutil.Uint64(0),
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txNonce: hexutil.Uint64(0),
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expectError: false,
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},
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{
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localNonce: hexutil.Uint64(1),
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txNonce: hexutil.Uint64(0),
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expectError: true,
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},
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{
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localNonce: hexutil.Uint64(0),
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txNonce: hexutil.Uint64(1),
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expectError: true,
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},
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}
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for _, scenario := range scenarios {
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desc := fmt.Sprintf("local nonce: %d, tx nonce: %d, expect error: %v", scenario.localNonce, scenario.txNonce, scenario.expectError)
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s.T().Run(desc, func(t *testing.T) {
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nonce := scenario.txNonce
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from := address
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to := address
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value := (*hexutil.Big)(big.NewInt(10))
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gas := hexutil.Uint64(21000)
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gasPrice := (*hexutil.Big)(big.NewInt(2000000000))
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data := []byte{}
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chainID := big.NewInt(int64(s.nodeConfig.NetworkID))
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s.manager.nonce.localNonce[s.nodeConfig.NetworkID] = &sync.Map{}
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s.manager.nonce.localNonce[s.nodeConfig.NetworkID].Store(address, uint64(scenario.localNonce))
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args := SendTxArgs{
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From: from,
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To: &to,
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Gas: &gas,
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GasPrice: gasPrice,
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Value: value,
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Nonce: &nonce,
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Data: nil,
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}
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// simulate transaction signed externally
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signer := gethtypes.NewLondonSigner(chainID)
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tx := gethtypes.NewTransaction(uint64(nonce), common.Address(to), (*big.Int)(value), uint64(gas), (*big.Int)(gasPrice), data)
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hash := signer.Hash(tx)
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sig, err := gethcrypto.Sign(hash[:], privKey)
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s.Require().NoError(err)
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txWithSig, err := tx.WithSignature(signer, sig)
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s.Require().NoError(err)
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expectedEncodedTx, err := rlp.EncodeToBytes(txWithSig)
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s.Require().NoError(err)
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s.txServiceMock.EXPECT().
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GetTransactionCount(gomock.Any(), common.Address(address), gethrpc.PendingBlockNumber).
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Return(&scenario.localNonce, nil)
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if !scenario.expectError {
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s.txServiceMock.EXPECT().
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SendRawTransaction(gomock.Any(), hexutil.Bytes(expectedEncodedTx)).
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Return(common.Hash{}, nil)
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}
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_, err = s.manager.SendTransactionWithSignature(s.nodeConfig.NetworkID, args, sig)
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if scenario.expectError {
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s.Error(err)
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// local nonce should not be incremented
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resultNonce, _ := s.manager.nonce.localNonce[s.nodeConfig.NetworkID].Load(args.From)
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s.Equal(uint64(scenario.localNonce), resultNonce.(uint64))
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} else {
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s.NoError(err)
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// local nonce should be incremented
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resultNonce, _ := s.manager.nonce.localNonce[s.nodeConfig.NetworkID].Load(args.From)
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s.Equal(uint64(nonce)+1, resultNonce.(uint64))
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}
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})
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}
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}
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func (s *TransactorSuite) TestSendTransactionWithSignature_InvalidSignature() {
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args := SendTxArgs{}
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_, err := s.manager.SendTransactionWithSignature(1, args, []byte{})
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s.Equal(ErrInvalidSignatureSize, err)
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}
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func (s *TransactorSuite) TestHashTransaction() {
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privKey, err := crypto.GenerateKey()
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s.Require().NoError(err)
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address := crypto.PubkeyToAddress(privKey.PublicKey)
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remoteNonce := hexutil.Uint64(1)
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txNonce := hexutil.Uint64(0)
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from := address
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to := address
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value := (*hexutil.Big)(big.NewInt(10))
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gas := hexutil.Uint64(21000)
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gasPrice := (*hexutil.Big)(big.NewInt(2000000000))
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args := SendTxArgs{
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From: from,
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To: &to,
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Gas: &gas,
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GasPrice: gasPrice,
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Value: value,
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Nonce: &txNonce,
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Data: nil,
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}
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s.txServiceMock.EXPECT().
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GetTransactionCount(gomock.Any(), common.Address(address), gethrpc.PendingBlockNumber).
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Return(&remoteNonce, nil)
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newArgs, hash, err := s.manager.HashTransaction(args)
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s.Require().NoError(err)
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// args should be updated with the right nonce
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s.NotEqual(*args.Nonce, *newArgs.Nonce)
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s.Equal(remoteNonce, *newArgs.Nonce)
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s.NotEqual(common.Hash{}, hash)
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}
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