2024-05-23 16:22:57 +00:00
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package transfer
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import (
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"database/sql"
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"encoding/hex"
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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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2024-10-28 20:54:17 +00:00
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"go.uber.org/zap"
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2024-05-23 16:22:57 +00:00
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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/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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2024-10-28 20:54:17 +00:00
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"github.com/status-im/status-go/logutils"
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2024-05-23 16:22:57 +00:00
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wallet_common "github.com/status-im/status-go/services/wallet/common"
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2024-06-06 20:08:25 +00:00
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"github.com/status-im/status-go/services/wallet/router/pathprocessor"
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2024-05-23 16:22:57 +00:00
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)
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func rowsToMultiTransactions(rows *sql.Rows) ([]*MultiTransaction, error) {
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var multiTransactions []*MultiTransaction
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for rows.Next() {
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multiTransaction := &MultiTransaction{}
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var fromAmountDB, toAmountDB sql.NullString
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var fromTxHash, toTxHash sql.RawBytes
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err := rows.Scan(
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&multiTransaction.ID,
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&multiTransaction.FromNetworkID,
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&fromTxHash,
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&multiTransaction.FromAddress,
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&multiTransaction.FromAsset,
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&fromAmountDB,
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&multiTransaction.ToNetworkID,
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&toTxHash,
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&multiTransaction.ToAddress,
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&multiTransaction.ToAsset,
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&toAmountDB,
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&multiTransaction.Type,
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&multiTransaction.CrossTxID,
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&multiTransaction.Timestamp,
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)
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if len(fromTxHash) > 0 {
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multiTransaction.FromTxHash = common.BytesToHash(fromTxHash)
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}
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if len(toTxHash) > 0 {
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multiTransaction.ToTxHash = common.BytesToHash(toTxHash)
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}
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if err != nil {
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return nil, err
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}
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if fromAmountDB.Valid {
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multiTransaction.FromAmount = new(hexutil.Big)
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if _, ok := (*big.Int)(multiTransaction.FromAmount).SetString(fromAmountDB.String, 0); !ok {
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return nil, errors.New("failed to convert fromAmountDB.String to big.Int: " + fromAmountDB.String)
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}
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}
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if toAmountDB.Valid {
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multiTransaction.ToAmount = new(hexutil.Big)
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if _, ok := (*big.Int)(multiTransaction.ToAmount).SetString(toAmountDB.String, 0); !ok {
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return nil, errors.New("failed to convert fromAmountDB.String to big.Int: " + toAmountDB.String)
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}
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}
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multiTransactions = append(multiTransactions, multiTransaction)
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}
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return multiTransactions, nil
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}
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func addSignaturesToTransactions(transactions map[common.Hash]*TransactionDescription, signatures map[string]SignatureDetails) error {
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if len(transactions) == 0 {
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return errors.New("no transactions to proceed with")
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}
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if len(signatures) != len(transactions) {
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return errors.New("not all transactions have been signed")
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}
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// check if all transactions have been signed
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for hash, desc := range transactions {
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sigDetails, ok := signatures[hash.String()]
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if !ok {
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return fmt.Errorf("missing signature for transaction %s", hash)
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}
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rBytes, _ := hex.DecodeString(sigDetails.R)
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sBytes, _ := hex.DecodeString(sigDetails.S)
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vByte := byte(0)
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if sigDetails.V == "01" {
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vByte = 1
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}
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desc.signature = make([]byte, crypto.SignatureLength)
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copy(desc.signature[32-len(rBytes):32], rBytes)
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copy(desc.signature[64-len(rBytes):64], sBytes)
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desc.signature[64] = vByte
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}
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return nil
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}
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func multiTransactionFromCommand(command *MultiTransactionCommand) *MultiTransaction {
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2024-07-17 08:09:49 +00:00
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toAmount := new(hexutil.Big)
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if command.ToAmount != nil {
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toAmount = command.ToAmount
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}
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2024-05-23 16:22:57 +00:00
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multiTransaction := NewMultiTransaction(
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/* Timestamp: */ uint64(time.Now().Unix()),
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/* FromNetworkID: */ 0,
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/* ToNetworkID: */ 0,
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/* FromTxHash: */ common.Hash{},
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/* ToTxHash: */ common.Hash{},
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/* FromAddress: */ command.FromAddress,
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/* ToAddress: */ command.ToAddress,
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/* FromAsset: */ command.FromAsset,
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/* ToAsset: */ command.ToAsset,
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/* FromAmount: */ command.FromAmount,
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2024-07-17 08:09:49 +00:00
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/* ToAmount: */ toAmount,
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2024-05-23 16:22:57 +00:00
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/* Type: */ command.Type,
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/* CrossTxID: */ "",
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)
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return multiTransaction
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}
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2024-06-06 20:08:25 +00:00
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func updateDataFromMultiTx(data []*pathprocessor.MultipathProcessorTxArgs, multiTransaction *MultiTransaction) {
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2024-05-23 16:22:57 +00:00
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for _, tx := range data {
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if tx.TransferTx != nil {
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tx.TransferTx.MultiTransactionID = multiTransaction.ID
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tx.TransferTx.Symbol = multiTransaction.FromAsset
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}
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if tx.HopTx != nil {
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tx.HopTx.MultiTransactionID = multiTransaction.ID
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tx.HopTx.Symbol = multiTransaction.FromAsset
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}
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if tx.CbridgeTx != nil {
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tx.CbridgeTx.MultiTransactionID = multiTransaction.ID
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tx.CbridgeTx.Symbol = multiTransaction.FromAsset
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}
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if tx.ERC721TransferTx != nil {
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tx.ERC721TransferTx.MultiTransactionID = multiTransaction.ID
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tx.ERC721TransferTx.Symbol = multiTransaction.FromAsset
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}
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if tx.ERC1155TransferTx != nil {
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tx.ERC1155TransferTx.MultiTransactionID = multiTransaction.ID
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tx.ERC1155TransferTx.Symbol = multiTransaction.FromAsset
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}
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if tx.SwapTx != nil {
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tx.SwapTx.MultiTransactionID = multiTransaction.ID
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tx.SwapTx.Symbol = multiTransaction.FromAsset
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}
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}
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}
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2024-06-06 20:08:25 +00:00
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func sendTransactions(data []*pathprocessor.MultipathProcessorTxArgs, pathProcessors map[string]pathprocessor.PathProcessor, account *account.SelectedExtKey) (
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2024-05-23 16:22:57 +00:00
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map[uint64][]types.Hash, error) {
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hashes := make(map[uint64][]types.Hash)
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2024-08-12 12:07:32 +00:00
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usedNonces := make(map[uint64]int64)
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2024-05-23 16:22:57 +00:00
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for _, tx := range data {
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2024-08-12 12:07:32 +00:00
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lastUsedNonce := int64(-1)
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if nonce, ok := usedNonces[tx.ChainID]; ok {
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lastUsedNonce = nonce
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}
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hash, usedNonce, err := pathProcessors[tx.Name].Send(tx, lastUsedNonce, account)
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2024-05-23 16:22:57 +00:00
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if err != nil {
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return nil, err // TODO: One of transfers within transaction could have been sent. Need to notify user about it
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}
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2024-08-12 12:07:32 +00:00
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2024-05-23 16:22:57 +00:00
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hashes[tx.ChainID] = append(hashes[tx.ChainID], hash)
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2024-08-12 12:07:32 +00:00
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usedNonces[tx.ChainID] = int64(usedNonce)
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2024-05-23 16:22:57 +00:00
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}
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return hashes, nil
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}
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func idFromTimestamp() wallet_common.MultiTransactionIDType {
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return wallet_common.MultiTransactionIDType(time.Now().UnixMilli())
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}
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var multiTransactionIDGenerator func() wallet_common.MultiTransactionIDType = idFromTimestamp
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func (tm *TransactionManager) removeMultiTransactionByAddress(address common.Address) error {
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// We must not remove those transactions, where from_address and to_address are different and both are stored in accounts DB
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// and one of them is equal to the address, as we want to keep the records for the other address
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// That is why we don't use cascade delete here with references to transfers table, as we might have 2 records in multi_transactions
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// for the same transaction, one for each address
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details := NewMultiTxDetails()
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details.FromAddress = address
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2024-05-26 08:31:13 +00:00
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mtxs, err := tm.storage.ReadMultiTransactions(details)
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2024-05-23 16:22:57 +00:00
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ids := make([]wallet_common.MultiTransactionIDType, 0)
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for _, mtx := range mtxs {
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// Remove self transactions as well, leave only those where we have the counterparty in accounts DB
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if mtx.FromAddress != mtx.ToAddress {
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// If both addresses are stored in accounts DB, we don't remove the record
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var addressToCheck common.Address
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if mtx.FromAddress == address {
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addressToCheck = mtx.ToAddress
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} else {
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addressToCheck = mtx.FromAddress
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}
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counterpartyExists, err := tm.accountsDB.AddressExists(types.Address(addressToCheck))
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if err != nil {
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2024-10-28 20:54:17 +00:00
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logutils.ZapLogger().Error("Failed to query accounts db for a given address",
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zap.Stringer("address", address),
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zap.Error(err),
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)
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2024-05-23 16:22:57 +00:00
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continue
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}
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// Skip removal if counterparty is in accounts DB and removed address is not sender
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if counterpartyExists && address != mtx.FromAddress {
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continue
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}
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}
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ids = append(ids, mtx.ID)
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}
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if len(ids) > 0 {
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for _, id := range ids {
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err = tm.storage.DeleteMultiTransaction(id)
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if err != nil {
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2024-10-28 20:54:17 +00:00
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logutils.ZapLogger().Error("Failed to delete multi transaction", zap.Int64("id", int64(id)), zap.Error(err))
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2024-05-23 16:22:57 +00:00
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}
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}
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}
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return err
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}
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