forked from cerc-io/laconicd-deprecated
436 lines
14 KiB
Go
436 lines
14 KiB
Go
package keeper
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import (
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"bytes"
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"fmt"
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"sort"
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"time"
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auctionkeeper "github.com/cerc-io/laconicd/x/auction/keeper"
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bondkeeper "github.com/cerc-io/laconicd/x/bond/keeper"
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"github.com/cerc-io/laconicd/x/nameservice/helpers"
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"github.com/cerc-io/laconicd/x/nameservice/types"
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"github.com/cosmos/cosmos-sdk/codec"
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"github.com/cosmos/cosmos-sdk/codec/legacy"
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storetypes "github.com/cosmos/cosmos-sdk/store/types"
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sdk "github.com/cosmos/cosmos-sdk/types"
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sdkerrors "github.com/cosmos/cosmos-sdk/types/errors"
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auth "github.com/cosmos/cosmos-sdk/x/auth/keeper"
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bank "github.com/cosmos/cosmos-sdk/x/bank/keeper"
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paramtypes "github.com/cosmos/cosmos-sdk/x/params/types"
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)
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var (
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// PrefixCIDToRecordIndex is the prefix for CID -> Record index.
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// Note: This is the primary index in the system.
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// Note: Golang doesn't support const arrays.
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PrefixCIDToRecordIndex = []byte{0x00}
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// PrefixNameAuthorityRecordIndex is the prefix for the name -> NameAuthority index.
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PrefixNameAuthorityRecordIndex = []byte{0x01}
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// PrefixCRNToNameRecordIndex is the prefix for the CRN -> NamingRecord index.
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PrefixCRNToNameRecordIndex = []byte{0x02}
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// PrefixBondIDToRecordsIndex is the prefix for the Bond ID -> [Record] index.
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PrefixBondIDToRecordsIndex = []byte{0x03}
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// PrefixBlockChangesetIndex is the prefix for the block changeset index.
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PrefixBlockChangesetIndex = []byte{0x04}
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// PrefixAuctionToAuthorityNameIndex is the prefix for the auction ID -> authority name index.
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PrefixAuctionToAuthorityNameIndex = []byte{0x05}
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// PrefixBondIDToAuthoritiesIndex is the prefix for the Bond ID -> [Authority] index.
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PrefixBondIDToAuthoritiesIndex = []byte{0x06}
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// PrefixExpiryTimeToRecordsIndex is the prefix for the Expiry Time -> [Record] index.
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PrefixExpiryTimeToRecordsIndex = []byte{0x10}
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// PrefixExpiryTimeToAuthoritiesIndex is the prefix for the Expiry Time -> [Authority] index.
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PrefixExpiryTimeToAuthoritiesIndex = []byte{0x11}
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// PrefixCIDToNamesIndex the the reverse index for naming, i.e. maps CID -> []Names.
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// TODO(ashwin): Move out of WNS once we have an indexing service.
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PrefixCIDToNamesIndex = []byte{0xe0}
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)
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// Keeper maintains the link to storage and exposes getter/setter methods for the various parts of the state machine
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type Keeper struct {
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accountKeeper auth.AccountKeeper
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bankKeeper bank.Keeper
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recordKeeper RecordKeeper
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bondKeeper bondkeeper.Keeper
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auctionKeeper auctionkeeper.Keeper
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storeKey storetypes.StoreKey // Unexposed key to access store from sdk.Context
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cdc codec.BinaryCodec // The wire codec for binary encoding/decoding.
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paramSubspace paramtypes.Subspace
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}
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// NewKeeper creates new instances of the nameservice Keeper
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func NewKeeper(cdc codec.BinaryCodec, accountKeeper auth.AccountKeeper, bankKeeper bank.Keeper, recordKeeper RecordKeeper,
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bondKeeper bondkeeper.Keeper, auctionKeeper auctionkeeper.Keeper, storeKey storetypes.StoreKey, ps paramtypes.Subspace,
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) Keeper {
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// set KeyTable if it has not already been set
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if !ps.HasKeyTable() {
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ps = ps.WithKeyTable(types.ParamKeyTable())
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}
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return Keeper{
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accountKeeper: accountKeeper,
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bankKeeper: bankKeeper,
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recordKeeper: recordKeeper,
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bondKeeper: bondKeeper,
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auctionKeeper: auctionKeeper,
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storeKey: storeKey,
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cdc: cdc,
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paramSubspace: ps,
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}
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}
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// GetRecordIndexKey Generates Bond ID -> Bond index key.
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func GetRecordIndexKey(id string) []byte {
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return append(PrefixCIDToRecordIndex, []byte(id)...)
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}
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// HasRecord - checks if a record by the given ID exists.
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func (k Keeper) HasRecord(ctx sdk.Context, id string) bool {
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store := ctx.KVStore(k.storeKey)
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return store.Has(GetRecordIndexKey(id))
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}
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// GetRecord - gets a record from the store.
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func (k Keeper) GetRecord(ctx sdk.Context, id string) (record types.Record) {
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store := ctx.KVStore(k.storeKey)
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result := store.Get(GetRecordIndexKey(id))
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k.cdc.MustUnmarshal(result, &record)
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return recordObjToRecord(store, record)
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}
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// ListRecords - get all records.
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func (k Keeper) ListRecords(ctx sdk.Context) []types.Record {
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var records []types.Record
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store := ctx.KVStore(k.storeKey)
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itr := sdk.KVStorePrefixIterator(store, PrefixCIDToRecordIndex)
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defer itr.Close()
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for ; itr.Valid(); itr.Next() {
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bz := store.Get(itr.Key())
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if bz != nil {
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var obj types.Record
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k.cdc.MustUnmarshal(bz, &obj)
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records = append(records, recordObjToRecord(store, obj))
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}
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}
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return records
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}
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// MatchRecords - get all matching records.
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func (k Keeper) MatchRecords(ctx sdk.Context, matchFn func(*types.RecordType) bool) []types.Record {
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var records []types.Record
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store := ctx.KVStore(k.storeKey)
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itr := sdk.KVStorePrefixIterator(store, PrefixCIDToRecordIndex)
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defer itr.Close()
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for ; itr.Valid(); itr.Next() {
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bz := store.Get(itr.Key())
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if bz != nil {
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var obj types.Record
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k.cdc.MustUnmarshal(bz, &obj)
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obj = recordObjToRecord(store, obj)
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record := obj.ToRecordType()
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if matchFn(&record) {
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records = append(records, obj)
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}
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}
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}
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return records
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}
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func (k Keeper) GetRecordExpiryQueue(ctx sdk.Context) []*types.ExpiryQueueRecord {
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var records []*types.ExpiryQueueRecord
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store := ctx.KVStore(k.storeKey)
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itr := sdk.KVStorePrefixIterator(store, PrefixExpiryTimeToRecordsIndex)
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defer itr.Close()
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for ; itr.Valid(); itr.Next() {
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record, err := helpers.BytesArrToStringArr(itr.Value())
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if err != nil {
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return records
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}
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records = append(records, &types.ExpiryQueueRecord{
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Id: string(itr.Key()[len(PrefixExpiryTimeToRecordsIndex):]),
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Value: record,
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})
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}
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return records
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}
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// ProcessSetRecord creates a record.
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func (k Keeper) ProcessSetRecord(ctx sdk.Context, msg types.MsgSetRecord) (*types.RecordType, error) {
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payload := msg.Payload.ToReadablePayload()
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record := types.RecordType{Attributes: payload.Record, BondID: msg.BondId}
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// Check signatures.
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resourceSignBytes, _ := record.GetSignBytes()
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cid, err := record.GetCID()
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if err != nil {
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return nil, sdkerrors.Wrap(sdkerrors.ErrInvalidRequest, "Invalid record JSON")
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}
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record.ID = cid
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if exists := k.HasRecord(ctx, record.ID); exists {
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// Immutable record already exists. No-op.
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return &record, nil
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}
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record.Owners = []string{}
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for _, sig := range payload.Signatures {
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pubKey, err := legacy.PubKeyFromBytes(helpers.BytesFromBase64(sig.PubKey))
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if err != nil {
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fmt.Println("Error decoding pubKey from bytes: ", err)
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return nil, sdkerrors.Wrap(sdkerrors.ErrUnauthorized, "Invalid public key.")
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}
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sigOK := pubKey.VerifySignature(resourceSignBytes, helpers.BytesFromBase64(sig.Sig))
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if !sigOK {
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fmt.Println("Signature mismatch: ", sig.PubKey)
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return nil, sdkerrors.Wrap(sdkerrors.ErrUnauthorized, "Invalid signature.")
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}
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record.Owners = append(record.Owners, pubKey.Address().String())
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}
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// Sort owners list.
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sort.Strings(record.Owners)
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sdkErr := k.processRecord(ctx, &record, false)
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if sdkErr != nil {
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return nil, sdkErr
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}
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return &record, nil
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}
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func (k Keeper) processRecord(ctx sdk.Context, record *types.RecordType, isRenewal bool) error {
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params := k.GetParams(ctx)
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rent := params.RecordRent
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err := k.bondKeeper.TransferCoinsToModuleAccount(ctx, record.BondID, types.RecordRentModuleAccountName, sdk.NewCoins(rent))
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if err != nil {
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return err
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}
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record.CreateTime = ctx.BlockHeader().Time.Format(time.RFC3339)
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record.ExpiryTime = ctx.BlockHeader().Time.Add(params.RecordRentDuration).Format(time.RFC3339)
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record.Deleted = false
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k.PutRecord(ctx, record.ToRecordObj())
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k.InsertRecordExpiryQueue(ctx, record.ToRecordObj())
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// Renewal doesn't change the name and bond indexes.
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if !isRenewal {
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k.AddBondToRecordIndexEntry(ctx, record.BondID, record.ID)
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}
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return nil
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}
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// PutRecord - saves a record to the store and updates ID -> Record index.
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func (k Keeper) PutRecord(ctx sdk.Context, record types.Record) {
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store := ctx.KVStore(k.storeKey)
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store.Set(GetRecordIndexKey(record.Id), k.cdc.MustMarshal(&record))
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k.updateBlockChangeSetForRecord(ctx, record.Id)
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}
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// AddBondToRecordIndexEntry adds the Bond ID -> [Record] index entry.
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func (k Keeper) AddBondToRecordIndexEntry(ctx sdk.Context, bondID string, id string) {
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store := ctx.KVStore(k.storeKey)
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store.Set(getBondIDToRecordsIndexKey(bondID, id), []byte{})
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}
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// Generates Bond ID -> Records index key.
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func getBondIDToRecordsIndexKey(bondID string, id string) []byte {
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return append(append(PrefixBondIDToRecordsIndex, []byte(bondID)...), []byte(id)...)
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}
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// getRecordExpiryQueueTimeKey gets the prefix for the record expiry queue.
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func getRecordExpiryQueueTimeKey(timestamp time.Time) []byte {
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timeBytes := sdk.FormatTimeBytes(timestamp)
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return append(PrefixExpiryTimeToRecordsIndex, timeBytes...)
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}
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// SetRecordExpiryQueueTimeSlice sets a specific record expiry queue timeslice.
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func (k Keeper) SetRecordExpiryQueueTimeSlice(ctx sdk.Context, timestamp time.Time, cids []string) {
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store := ctx.KVStore(k.storeKey)
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bz, _ := helpers.StrArrToBytesArr(cids)
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store.Set(getRecordExpiryQueueTimeKey(timestamp), bz)
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}
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// DeleteRecordExpiryQueueTimeSlice deletes a specific record expiry queue timeslice.
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func (k Keeper) DeleteRecordExpiryQueueTimeSlice(ctx sdk.Context, timestamp time.Time) {
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store := ctx.KVStore(k.storeKey)
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store.Delete(getRecordExpiryQueueTimeKey(timestamp))
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}
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// GetRecordExpiryQueueTimeSlice gets a specific record queue timeslice.
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// A timeslice is a slice of CIDs corresponding to records that expire at a certain time.
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func (k Keeper) GetRecordExpiryQueueTimeSlice(ctx sdk.Context, timestamp time.Time) []string {
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store := ctx.KVStore(k.storeKey)
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bz := store.Get(getRecordExpiryQueueTimeKey(timestamp))
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if bz == nil {
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return []string{}
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}
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cids, err := helpers.BytesArrToStringArr(bz)
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if err != nil {
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return []string{}
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}
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return cids
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}
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// InsertRecordExpiryQueue inserts a record CID to the appropriate timeslice in the record expiry queue.
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func (k Keeper) InsertRecordExpiryQueue(ctx sdk.Context, val types.Record) {
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expiryTime, err := time.Parse(time.RFC3339, val.ExpiryTime)
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if err != nil {
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panic(err)
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}
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timeSlice := k.GetRecordExpiryQueueTimeSlice(ctx, expiryTime)
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timeSlice = append(timeSlice, val.Id)
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k.SetRecordExpiryQueueTimeSlice(ctx, expiryTime, timeSlice)
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}
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// DeleteRecordExpiryQueue deletes a record CID from the record expiry queue.
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func (k Keeper) DeleteRecordExpiryQueue(ctx sdk.Context, record types.Record) {
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expiryTime, err := time.Parse(time.RFC3339, record.ExpiryTime)
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if err != nil {
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panic(err)
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}
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timeSlice := k.GetRecordExpiryQueueTimeSlice(ctx, expiryTime)
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var newTimeSlice []string
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for _, cid := range timeSlice {
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if !bytes.Equal([]byte(cid), []byte(record.Id)) {
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newTimeSlice = append(newTimeSlice, cid)
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}
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}
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if len(newTimeSlice) == 0 {
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k.DeleteRecordExpiryQueueTimeSlice(ctx, expiryTime)
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} else {
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k.SetRecordExpiryQueueTimeSlice(ctx, expiryTime, newTimeSlice)
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}
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}
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// RecordExpiryQueueIterator returns all the record expiry queue timeslices from time 0 until endTime.
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func (k Keeper) RecordExpiryQueueIterator(ctx sdk.Context, endTime time.Time) sdk.Iterator {
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store := ctx.KVStore(k.storeKey)
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rangeEndBytes := sdk.InclusiveEndBytes(getRecordExpiryQueueTimeKey(endTime))
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return store.Iterator(PrefixExpiryTimeToRecordsIndex, rangeEndBytes)
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}
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// GetAllExpiredRecords returns a concatenated list of all the timeslices before currTime.
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func (k Keeper) GetAllExpiredRecords(ctx sdk.Context, currTime time.Time) (expiredRecordCIDs []string) {
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// Gets an iterator for all timeslices from time 0 until the current block header time.
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itr := k.RecordExpiryQueueIterator(ctx, ctx.BlockHeader().Time)
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defer itr.Close()
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for ; itr.Valid(); itr.Next() {
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timeslice, err := helpers.BytesArrToStringArr(itr.Value())
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if err != nil {
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panic(err)
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}
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expiredRecordCIDs = append(expiredRecordCIDs, timeslice...)
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}
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return expiredRecordCIDs
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}
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// ProcessRecordExpiryQueue tries to renew expiring records (by collecting rent) else marks them as deleted.
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func (k Keeper) ProcessRecordExpiryQueue(ctx sdk.Context) {
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cids := k.GetAllExpiredRecords(ctx, ctx.BlockHeader().Time)
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for _, cid := range cids {
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record := k.GetRecord(ctx, cid)
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// If record doesn't have an associated bond or if bond no longer exists, mark it deleted.
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if record.BondId == "" || !k.bondKeeper.HasBond(ctx, record.BondId) {
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record.Deleted = true
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k.PutRecord(ctx, record)
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k.DeleteRecordExpiryQueue(ctx, record)
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return
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}
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// Try to renew the record by taking rent.
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k.TryTakeRecordRent(ctx, record)
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}
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}
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// TryTakeRecordRent tries to take rent from the record bond.
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func (k Keeper) TryTakeRecordRent(ctx sdk.Context, record types.Record) {
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params := k.GetParams(ctx)
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rent := params.RecordRent
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sdkErr := k.bondKeeper.TransferCoinsToModuleAccount(ctx, record.BondId, types.RecordRentModuleAccountName, sdk.NewCoins(rent))
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if sdkErr != nil {
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// Insufficient funds, mark record as deleted.
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record.Deleted = true
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k.PutRecord(ctx, record)
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k.DeleteRecordExpiryQueue(ctx, record)
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return
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}
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// Delete old expiry queue entry, create new one.
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k.DeleteRecordExpiryQueue(ctx, record)
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record.ExpiryTime = ctx.BlockHeader().Time.Add(params.RecordRentDuration).Format(time.RFC3339)
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k.InsertRecordExpiryQueue(ctx, record)
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// Save record.
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record.Deleted = false
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k.PutRecord(ctx, record)
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k.AddBondToRecordIndexEntry(ctx, record.BondId, record.Id)
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}
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// GetModuleBalances gets the nameservice module account(s) balances.
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func (k Keeper) GetModuleBalances(ctx sdk.Context) []*types.AccountBalance {
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var balances []*types.AccountBalance
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accountNames := []string{types.RecordRentModuleAccountName, types.AuthorityRentModuleAccountName}
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for _, accountName := range accountNames {
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moduleAddress := k.accountKeeper.GetModuleAddress(accountName)
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moduleAccount := k.accountKeeper.GetAccount(ctx, moduleAddress)
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if moduleAccount != nil {
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accountBalance := k.bankKeeper.GetAllBalances(ctx, moduleAddress)
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balances = append(balances, &types.AccountBalance{
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AccountName: accountName,
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Balance: accountBalance,
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})
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}
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}
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return balances
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}
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func recordObjToRecord(store sdk.KVStore, record types.Record) types.Record {
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reverseNameIndexKey := GetCIDToNamesIndexKey(record.Id)
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if store.Has(reverseNameIndexKey) {
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names, err := helpers.BytesArrToStringArr(store.Get(reverseNameIndexKey))
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if err != nil {
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panic(err)
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}
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record.Names = names
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}
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return record
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}
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