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404 lines
13 KiB
404 lines
13 KiB
package services
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import (
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"fmt"
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"math/big"
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"github.com/coinbase/rosetta-sdk-go/types"
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ethcommon "github.com/ethereum/go-ethereum/common"
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hmytypes "github.com/harmony-one/harmony/core/types"
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"github.com/harmony-one/harmony/internal/utils"
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"github.com/harmony-one/harmony/rosetta/common"
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rpcV2 "github.com/harmony-one/harmony/rpc/v2"
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"github.com/harmony-one/harmony/staking"
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stakingTypes "github.com/harmony-one/harmony/staking/types"
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)
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// GetNativeOperationsFromTransaction for one of the following transactions:
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// contract creation, cross-shard sender, same-shard transfer.
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// Native operations only include operations that affect the native currency balance of an account.
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func GetNativeOperationsFromTransaction(
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tx *hmytypes.Transaction, receipt *hmytypes.Receipt,
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) ([]*types.Operation, *types.Error) {
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senderAddress, err := tx.SenderAddress()
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if err != nil {
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senderAddress = FormatDefaultSenderAddress
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}
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accountID, rosettaError := newAccountIdentifier(senderAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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// All operations excepts for cross-shard tx payout expend gas
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gasExpended := new(big.Int).Mul(new(big.Int).SetUint64(receipt.GasUsed), tx.GasPrice())
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gasOperations := newNativeOperations(gasExpended, accountID)
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// Handle different cases of plain transactions
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var txOperations []*types.Operation
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if tx.To() == nil {
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txOperations, rosettaError = newContractCreationNativeOperations(
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gasOperations[0].OperationIdentifier, tx, receipt, senderAddress,
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)
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} else if tx.ShardID() != tx.ToShardID() {
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txOperations, rosettaError = newCrossShardSenderTransferNativeOperations(
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gasOperations[0].OperationIdentifier, tx, senderAddress,
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)
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} else {
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txOperations, rosettaError = newTransferNativeOperations(
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gasOperations[0].OperationIdentifier, tx, receipt, senderAddress,
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)
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}
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if rosettaError != nil {
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return nil, rosettaError
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}
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return append(gasOperations, txOperations...), nil
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}
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// GetOperationsFromStakingTransaction for all staking directives
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// Note that only native operations can come from staking transactions.
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func GetOperationsFromStakingTransaction(
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tx *stakingTypes.StakingTransaction, receipt *hmytypes.Receipt,
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) ([]*types.Operation, *types.Error) {
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senderAddress, err := tx.SenderAddress()
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if err != nil {
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senderAddress = FormatDefaultSenderAddress
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}
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accountID, rosettaError := newAccountIdentifier(senderAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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// All operations excepts for cross-shard tx payout expend gas
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gasExpended := new(big.Int).Mul(new(big.Int).SetUint64(receipt.GasUsed), tx.GasPrice())
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gasOperations := newNativeOperations(gasExpended, accountID)
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// Format staking message for metadata using decimal numbers (hence usage of rpcV2)
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rpcStakingTx, err := rpcV2.NewStakingTransaction(tx, ethcommon.Hash{}, 0, 0, 0)
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if err != nil {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": err.Error(),
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})
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}
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metadata, err := types.MarshalMap(rpcStakingTx.Msg)
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if err != nil {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": err.Error(),
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})
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}
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// Set correct amount depending on staking message directive that apply balance changes INSTANTLY
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var amount *types.Amount
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switch tx.StakingType() {
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case stakingTypes.DirectiveCreateValidator:
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if amount, rosettaError = getAmountFromCreateValidatorMessage(tx.Data()); rosettaError != nil {
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return nil, rosettaError
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}
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case stakingTypes.DirectiveDelegate:
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if amount, rosettaError = getAmountFromDelegateMessage(receipt, tx.Data()); rosettaError != nil {
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return nil, rosettaError
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}
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case stakingTypes.DirectiveCollectRewards:
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if amount, rosettaError = getAmountFromCollectRewards(receipt, senderAddress); rosettaError != nil {
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return nil, rosettaError
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}
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default:
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amount = &types.Amount{
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Value: "0", // All other staking transactions do not apply balance changes instantly or at all
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Currency: &common.NativeCurrency,
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}
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}
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return append(gasOperations, &types.Operation{
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OperationIdentifier: &types.OperationIdentifier{
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Index: gasOperations[0].OperationIdentifier.Index + 1,
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},
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RelatedOperations: []*types.OperationIdentifier{
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gasOperations[0].OperationIdentifier,
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},
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Type: tx.StakingType().String(),
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Status: common.SuccessOperationStatus.Status,
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Account: accountID,
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Amount: amount,
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Metadata: metadata,
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}), nil
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}
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func getAmountFromCreateValidatorMessage(data []byte) (*types.Amount, *types.Error) {
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msg, err := stakingTypes.RLPDecodeStakeMsg(data, stakingTypes.DirectiveCreateValidator)
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if err != nil {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": err.Error(),
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})
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}
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stkMsg, ok := msg.(*stakingTypes.CreateValidator)
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if !ok {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": "unable to parse staking message for create validator tx",
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})
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}
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return &types.Amount{
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Value: negativeBigValue(stkMsg.Amount),
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Currency: &common.NativeCurrency,
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}, nil
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}
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func getAmountFromDelegateMessage(receipt *hmytypes.Receipt, data []byte) (*types.Amount, *types.Error) {
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msg, err := stakingTypes.RLPDecodeStakeMsg(data, stakingTypes.DirectiveDelegate)
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if err != nil {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": err.Error(),
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})
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}
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stkMsg, ok := msg.(*stakingTypes.Delegate)
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if !ok {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": "unable to parse staking message for delegate tx",
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})
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}
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deductedAmt := stkMsg.Amount
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logs := hmytypes.FindLogsWithTopic(receipt, staking.DelegateTopic)
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for _, log := range logs {
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if len(log.Data) > ethcommon.AddressLength && log.Address == stkMsg.DelegatorAddress {
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// Remove re-delegation amount as funds were never credited to account's balance.
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deductedAmt = new(big.Int).Sub(deductedAmt, new(big.Int).SetBytes(log.Data[ethcommon.AddressLength:]))
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}
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}
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return &types.Amount{
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Value: negativeBigValue(deductedAmt),
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Currency: &common.NativeCurrency,
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}, nil
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}
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func getAmountFromCollectRewards(
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receipt *hmytypes.Receipt, senderAddress ethcommon.Address,
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) (*types.Amount, *types.Error) {
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var amount *types.Amount
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logs := hmytypes.FindLogsWithTopic(receipt, staking.CollectRewardsTopic)
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for _, log := range logs {
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if log.Address == senderAddress {
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amount = &types.Amount{
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Value: big.NewInt(0).SetBytes(log.Data).String(),
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Currency: &common.NativeCurrency,
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}
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break
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}
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}
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if amount == nil {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": fmt.Sprintf("collect rewards amount not found for %v", senderAddress),
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})
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}
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return amount, nil
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}
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// newTransferNativeOperations extracts & formats the native operation(s) for plain transaction,
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// including contract transactions.
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func newTransferNativeOperations(
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startingOperationID *types.OperationIdentifier,
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tx *hmytypes.Transaction, receipt *hmytypes.Receipt, senderAddress ethcommon.Address,
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) ([]*types.Operation, *types.Error) {
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if tx.To() == nil {
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return nil, common.NewError(common.CatchAllError, nil)
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}
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receiverAddress := *tx.To()
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// Common elements
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opType := common.NativeTransferOperation
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opStatus := common.SuccessOperationStatus.Status
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if receipt.Status == hmytypes.ReceiptStatusFailed {
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if len(tx.Data()) > 0 {
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opStatus = common.ContractFailureOperationStatus.Status
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} else {
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// Should never see a failed non-contract related transaction on chain
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opStatus = common.FailureOperationStatus.Status
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utils.Logger().Warn().Msgf("Failed transaction on chain: %v", tx.Hash().String())
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}
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}
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// Subtraction operation elements
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subOperationID := &types.OperationIdentifier{
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Index: startingOperationID.Index + 1,
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}
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subRelatedID := []*types.OperationIdentifier{
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startingOperationID,
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}
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subAccountID, rosettaError := newAccountIdentifier(senderAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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subAmount := &types.Amount{
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Value: negativeBigValue(tx.Value()),
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Currency: &common.NativeCurrency,
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}
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// Addition operation elements
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addOperationID := &types.OperationIdentifier{
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Index: subOperationID.Index + 1,
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}
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addRelatedID := []*types.OperationIdentifier{
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subOperationID,
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}
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addAccountID, rosettaError := newAccountIdentifier(receiverAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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addAmount := &types.Amount{
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Value: tx.Value().String(),
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Currency: &common.NativeCurrency,
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}
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return []*types.Operation{
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{
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OperationIdentifier: subOperationID,
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RelatedOperations: subRelatedID,
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Type: opType,
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Status: opStatus,
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Account: subAccountID,
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Amount: subAmount,
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},
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{
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OperationIdentifier: addOperationID,
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RelatedOperations: addRelatedID,
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Type: opType,
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Status: opStatus,
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Account: addAccountID,
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Amount: addAmount,
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},
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}, nil
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}
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// newCrossShardSenderTransferNativeOperations extracts & formats the native operation(s)
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// for cross-shard-tx on the sender's shard.
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func newCrossShardSenderTransferNativeOperations(
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startingOperationID *types.OperationIdentifier,
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tx *hmytypes.Transaction, senderAddress ethcommon.Address,
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) ([]*types.Operation, *types.Error) {
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if tx.To() == nil {
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return nil, common.NewError(common.CatchAllError, nil)
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}
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senderAccountID, rosettaError := newAccountIdentifier(senderAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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receiverAccountID, rosettaError := newAccountIdentifier(*tx.To())
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if rosettaError != nil {
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return nil, rosettaError
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}
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metadata, err := types.MarshalMap(common.CrossShardTransactionOperationMetadata{
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From: senderAccountID,
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To: receiverAccountID,
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})
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if err != nil {
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return nil, common.NewError(common.CatchAllError, map[string]interface{}{
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"message": err.Error(),
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})
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}
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return []*types.Operation{
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{
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OperationIdentifier: &types.OperationIdentifier{
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Index: startingOperationID.Index + 1,
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},
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RelatedOperations: []*types.OperationIdentifier{
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startingOperationID,
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},
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Type: common.NativeCrossShardTransferOperation,
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Status: common.SuccessOperationStatus.Status,
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Account: senderAccountID,
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Amount: &types.Amount{
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Value: negativeBigValue(tx.Value()),
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Currency: &common.NativeCurrency,
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},
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Metadata: metadata,
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},
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}, nil
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}
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// newContractCreationNativeOperations extracts & formats the native operation(s) for a contract creation tx
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func newContractCreationNativeOperations(
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startingOperationID *types.OperationIdentifier,
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tx *hmytypes.Transaction, txReceipt *hmytypes.Receipt, senderAddress ethcommon.Address,
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) ([]*types.Operation, *types.Error) {
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// TODO: correct the contract creation transaction...
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// Set execution status as necessary
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status := common.SuccessOperationStatus.Status
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if txReceipt.Status == hmytypes.ReceiptStatusFailed {
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status = common.ContractFailureOperationStatus.Status
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}
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contractAddressID, rosettaError := newAccountIdentifier(txReceipt.ContractAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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// Subtraction operation elements
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subOperationID := &types.OperationIdentifier{
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Index: startingOperationID.Index + 1,
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}
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subRelatedID := []*types.OperationIdentifier{
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startingOperationID,
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}
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subAccountID, rosettaError := newAccountIdentifier(senderAddress)
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if rosettaError != nil {
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return nil, rosettaError
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}
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subAmount := &types.Amount{
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Value: negativeBigValue(tx.Value()),
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Currency: &common.NativeCurrency,
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}
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// Addition operation elements
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addOperationID := &types.OperationIdentifier{
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Index: subOperationID.Index + 1,
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}
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addRelatedID := []*types.OperationIdentifier{
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subOperationID,
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}
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addAmount := &types.Amount{
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Value: tx.Value().String(),
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Currency: &common.NativeCurrency,
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}
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return []*types.Operation{
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{
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OperationIdentifier: subOperationID,
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RelatedOperations: subRelatedID,
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Type: common.ContractCreationOperation,
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Status: status,
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Account: subAccountID,
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Amount: subAmount,
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},
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{
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OperationIdentifier: addOperationID,
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RelatedOperations: addRelatedID,
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Type: common.ContractCreationOperation,
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Status: status,
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Account: contractAddressID,
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Amount: addAmount,
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},
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}, nil
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}
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// newNativeOperations creates a new operation with the gas fee as the first operation.
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// Note: the gas fee is gasPrice * gasUsed.
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func newNativeOperations(
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gasFeeInATTO *big.Int, accountID *types.AccountIdentifier,
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) []*types.Operation {
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return []*types.Operation{
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{
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OperationIdentifier: &types.OperationIdentifier{
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Index: 0, // gas operation is always first
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},
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Type: common.ExpendGasOperation,
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Status: common.SuccessOperationStatus.Status,
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Account: accountID,
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Amount: &types.Amount{
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Value: negativeBigValue(gasFeeInATTO),
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Currency: &common.NativeCurrency,
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},
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},
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}
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}
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