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337 lines
10 KiB
337 lines
10 KiB
package rpc
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import (
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"context"
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"github.com/pkg/errors"
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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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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/rlp"
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"github.com/ethereum/go-ethereum/rpc"
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"github.com/harmony-one/harmony/core"
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"github.com/harmony-one/harmony/core/types"
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"github.com/harmony-one/harmony/hmy"
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common2 "github.com/harmony-one/harmony/internal/common"
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nodeconfig "github.com/harmony-one/harmony/internal/configs/node"
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"github.com/harmony-one/harmony/internal/utils"
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eth "github.com/harmony-one/harmony/rpc/eth"
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v1 "github.com/harmony-one/harmony/rpc/v1"
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v2 "github.com/harmony-one/harmony/rpc/v2"
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staking "github.com/harmony-one/harmony/staking/types"
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)
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// PublicPoolService provides an API to access the Harmony node's transaction pool.
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// It offers only methods that operate on public data that is freely available to anyone.
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type PublicPoolService struct {
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hmy *hmy.Harmony
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version Version
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}
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// NewPublicPoolAPI creates a new API for the RPC interface
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func NewPublicPoolAPI(hmy *hmy.Harmony, version Version) rpc.API {
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return rpc.API{
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Namespace: version.Namespace(),
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Version: APIVersion,
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Service: &PublicPoolService{hmy, version},
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Public: true,
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}
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}
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// SendRawTransaction will add the signed transaction to the transaction pool.
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// The sender is responsible for signing the transaction and using the correct nonce.
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func (s *PublicPoolService) SendRawTransaction(
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ctx context.Context, encodedTx hexutil.Bytes,
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) (common.Hash, error) {
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// DOS prevention
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if len(encodedTx) >= types.MaxEncodedPoolTransactionSize {
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err := errors.Wrapf(core.ErrOversizedData, "encoded tx size: %d", len(encodedTx))
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return common.Hash{}, err
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}
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var tx *types.Transaction
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var txHash common.Hash
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if s.version == Eth {
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ethTx := new(types.EthTransaction)
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if err := rlp.DecodeBytes(encodedTx, ethTx); err != nil {
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return common.Hash{}, err
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}
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txHash = ethTx.Hash()
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tx = ethTx.ConvertToHmy()
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} else {
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tx = new(types.Transaction)
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if err := rlp.DecodeBytes(encodedTx, tx); err != nil {
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return common.Hash{}, err
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}
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txHash = tx.Hash()
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}
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// Verify chainID
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if err := s.verifyChainID(tx); err != nil {
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return common.Hash{}, err
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}
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// Submit transaction
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if err := s.hmy.SendTx(ctx, tx); err != nil {
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utils.Logger().Warn().Err(err).Msg("Could not submit transaction")
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return txHash, err
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}
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// Log submission
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if tx.To() == nil {
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signer := types.MakeSigner(s.hmy.ChainConfig(), s.hmy.CurrentBlock().Epoch())
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ethSigner := types.NewEIP155Signer(s.hmy.ChainConfig().EthCompatibleChainID)
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if tx.IsEthCompatible() {
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signer = ethSigner
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}
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from, err := types.Sender(signer, tx)
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if err != nil {
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return common.Hash{}, err
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}
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addr := crypto.CreateAddress(from, tx.Nonce())
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utils.Logger().Info().
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Str("fullhash", tx.Hash().Hex()).
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Str("hashByType", tx.HashByType().Hex()).
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Str("contract", common2.MustAddressToBech32(addr)).
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Msg("Submitted contract creation")
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} else {
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utils.Logger().Info().
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Str("fullhash", tx.Hash().Hex()).
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Str("hashByType", tx.HashByType().Hex()).
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Str("recipient", tx.To().Hex()).
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Interface("tx", tx).
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Msg("Submitted transaction")
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}
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// Response output is the same for all versions
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return txHash, nil
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}
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func (s *PublicPoolService) verifyChainID(tx *types.Transaction) error {
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nodeChainID := s.hmy.ChainConfig().ChainID
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ethChainID := nodeconfig.GetDefaultConfig().GetNetworkType().ChainConfig().EthCompatibleChainID
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if tx.ChainID().Cmp(ethChainID) != 0 && tx.ChainID().Cmp(nodeChainID) != 0 {
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return errors.Wrapf(
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ErrInvalidChainID, "blockchain chain id:%s, given %s", nodeChainID.String(), tx.ChainID().String(),
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)
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}
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return nil
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}
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// SendRawStakingTransaction will add the signed transaction to the transaction pool.
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// The sender is responsible for signing the transaction and using the correct nonce.
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func (s *PublicPoolService) SendRawStakingTransaction(
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ctx context.Context, encodedTx hexutil.Bytes,
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) (common.Hash, error) {
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// DOS prevention
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if len(encodedTx) >= types.MaxEncodedPoolTransactionSize {
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err := errors.Wrapf(core.ErrOversizedData, "encoded tx size: %d", len(encodedTx))
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return common.Hash{}, err
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}
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// Verify staking transaction type & chain
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tx := new(staking.StakingTransaction)
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if err := rlp.DecodeBytes(encodedTx, tx); err != nil {
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return common.Hash{}, err
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}
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c := s.hmy.ChainConfig().ChainID
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if id := tx.ChainID(); id.Cmp(c) != 0 {
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return common.Hash{}, errors.Wrapf(
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ErrInvalidChainID, "blockchain chain id:%s, given %s", c.String(), id.String(),
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)
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}
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// Submit transaction
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if err := s.hmy.SendStakingTx(ctx, tx); err != nil {
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utils.Logger().Warn().Err(err).Msg("Could not submit staking transaction")
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return tx.Hash(), err
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}
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// Log submission
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utils.Logger().Info().
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Str("fullhash", tx.Hash().Hex()).
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Msg("Submitted Staking transaction")
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// Response output is the same for all versions
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return tx.Hash(), nil
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}
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// GetPoolStats returns stats for the tx-pool
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func (s *PublicPoolService) GetPoolStats(
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ctx context.Context,
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) (StructuredResponse, error) {
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pendingCount, queuedCount := s.hmy.GetPoolStats()
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// Response output is the same for all versions
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return StructuredResponse{
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"executable-count": pendingCount,
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"non-executable-count": queuedCount,
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}, nil
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}
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// PendingTransactions returns the plain transactions that are in the transaction pool
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func (s *PublicPoolService) PendingTransactions(
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ctx context.Context,
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) ([]StructuredResponse, error) {
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// Fetch all pending transactions (stx & plain tx)
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pending, err := s.hmy.GetPoolTransactions()
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if err != nil {
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return nil, err
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}
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// Only format and return plain transactions according to the version
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transactions := []StructuredResponse{}
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for i := range pending {
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if plainTx, ok := pending[i].(*types.Transaction); ok {
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var tx interface{}
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switch s.version {
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case V1:
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tx, err = v1.NewTransaction(plainTx, common.Hash{}, 0, 0, 0)
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if err != nil {
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingTransactions")
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continue // Legacy behavior is to not return error here
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}
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case V2:
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tx, err = v2.NewTransaction(plainTx, common.Hash{}, 0, 0, 0)
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if err != nil {
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingTransactions")
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continue // Legacy behavior is to not return error here
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}
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case Eth:
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tx, err = eth.NewTransaction(plainTx.ConvertToEth(), common.Hash{}, 0, 0, 0)
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if err != nil {
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingTransactions")
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continue // Legacy behavior is to not return error here
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}
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default:
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return nil, ErrUnknownRPCVersion
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}
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rpcTx, err := NewStructuredResponse(tx)
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if err == nil {
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transactions = append(transactions, rpcTx)
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} else {
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// Legacy behavior is to not return error here
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingTransactions")
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}
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} else if _, ok := pending[i].(*staking.StakingTransaction); ok {
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continue // Do not return staking transactions here.
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} else {
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return nil, types.ErrUnknownPoolTxType
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}
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}
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return transactions, nil
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}
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// PendingStakingTransactions returns the staking transactions that are in the transaction pool
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func (s *PublicPoolService) PendingStakingTransactions(
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ctx context.Context,
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) ([]StructuredResponse, error) {
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// Fetch all pending transactions (stx & plain tx)
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pending, err := s.hmy.GetPoolTransactions()
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if err != nil {
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return nil, err
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}
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// Only format and return staking transactions according to the version
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transactions := []StructuredResponse{}
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for i := range pending {
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if _, ok := pending[i].(*types.Transaction); ok {
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continue // Do not return plain transactions here
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} else if stakingTx, ok := pending[i].(*staking.StakingTransaction); ok {
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var tx interface{}
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switch s.version {
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case V1:
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tx, err = v1.NewStakingTransaction(stakingTx, common.Hash{}, 0, 0, 0)
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if err != nil {
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingStakingTransactions")
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continue // Legacy behavior is to not return error here
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}
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case V2:
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tx, err = v2.NewStakingTransaction(stakingTx, common.Hash{}, 0, 0, 0, true)
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if err != nil {
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingStakingTransactions")
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continue // Legacy behavior is to not return error here
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}
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default:
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return nil, ErrUnknownRPCVersion
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}
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rpcTx, err := NewStructuredResponse(tx)
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if err == nil {
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transactions = append(transactions, rpcTx)
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} else {
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// Legacy behavior is to not return error here
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utils.Logger().Debug().
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Err(err).
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Msgf("%v error at %v", LogTag, "PendingStakingTransactions")
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}
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} else {
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return nil, types.ErrUnknownPoolTxType
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}
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}
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return transactions, nil
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}
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// GetCurrentTransactionErrorSink ..
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func (s *PublicPoolService) GetCurrentTransactionErrorSink(
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ctx context.Context,
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) ([]StructuredResponse, error) {
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// For each transaction error in the error sink, format the response (same format for all versions)
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formattedErrors := []StructuredResponse{}
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for _, txError := range s.hmy.GetCurrentTransactionErrorSink() {
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formattedErr, err := NewStructuredResponse(txError)
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if err != nil {
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return nil, err
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}
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formattedErrors = append(formattedErrors, formattedErr)
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}
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return formattedErrors, nil
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}
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// GetCurrentStakingErrorSink ..
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func (s *PublicPoolService) GetCurrentStakingErrorSink(
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ctx context.Context,
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) ([]StructuredResponse, error) {
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// For each staking tx error in the error sink, format the response (same format for all versions)
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formattedErrors := []StructuredResponse{}
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for _, txErr := range s.hmy.GetCurrentStakingErrorSink() {
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formattedErr, err := NewStructuredResponse(txErr)
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if err != nil {
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return nil, err
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}
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formattedErrors = append(formattedErrors, formattedErr)
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}
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return formattedErrors, nil
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}
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// GetPendingCXReceipts ..
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func (s *PublicPoolService) GetPendingCXReceipts(
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ctx context.Context,
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) ([]StructuredResponse, error) {
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// For each cx receipt, format the response (same format for all versions)
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formattedReceipts := []StructuredResponse{}
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for _, receipts := range s.hmy.GetPendingCXReceipts() {
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formattedReceipt, err := NewStructuredResponse(receipts)
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if err != nil {
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return nil, err
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}
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formattedReceipts = append(formattedReceipts, formattedReceipt)
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}
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return formattedReceipts, nil
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}
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