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badger_transaction.go
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/
badger_transaction.go
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package storage
import (
"bytes"
"encoding/binary"
"encoding/hex"
"fmt"
"github.com/MixinNetwork/mixin/common"
"github.com/MixinNetwork/mixin/config"
"github.com/MixinNetwork/mixin/crypto"
"github.com/dgraph-io/badger/v3"
)
func (s *BadgerStore) ReadTransaction(hash crypto.Hash) (*common.VersionedTransaction, string, error) {
txn := s.snapshotsDB.NewTransaction(false)
defer txn.Discard()
return readTransactionAndFinalization(txn, hash)
}
func readTransactionAndFinalization(txn *badger.Txn, hash crypto.Hash) (*common.VersionedTransaction, string, error) {
tx, err := readTransaction(txn, hash)
if err != nil || tx == nil {
return tx, "", err
}
key := graphFinalizationKey(hash)
item, err := txn.Get(key)
if err == badger.ErrKeyNotFound {
return tx, "", nil
} else if err != nil {
return tx, "", err
}
val, err := item.ValueCopy(nil)
if err != nil {
return tx, "", err
}
if len(val) == 0 {
return tx, "MISSING", nil
}
var final crypto.Hash
copy(final[:], val)
return tx, final.String(), nil
}
func (s *BadgerStore) WriteTransaction(ver *common.VersionedTransaction) error {
txn := s.snapshotsDB.NewTransaction(true)
defer txn.Discard()
// FIXME assert kind checks, not needed at all
if config.Debug {
txHash := ver.PayloadHash()
for _, in := range ver.Inputs {
if len(in.Genesis) > 0 {
continue
}
if in.Deposit != nil {
ival, err := readDepositInput(txn, in.Deposit)
if err != nil {
panic(fmt.Errorf("deposit check error %s", err.Error()))
}
if !bytes.Equal(ival, txHash[:]) {
panic(fmt.Errorf("deposit locked for transaction %s", hex.EncodeToString(ival)))
}
continue
}
if in.Mint != nil {
dist, err := readMintInput(txn, in.Mint)
if err != nil {
panic(fmt.Errorf("mint check error %s", err.Error()))
}
if dist.Transaction != txHash || dist.Amount.Cmp(in.Mint.Amount) != 0 {
panic(fmt.Errorf("mint locked for transaction %s", dist.Transaction.String()))
}
continue
}
key := graphUtxoKey(in.Hash, in.Index)
item, err := txn.Get(key)
if err != nil {
panic(fmt.Errorf("UTXO check error %s %s:%d=>%s", err.Error(), in.Hash.String(), in.Index, txHash.String()))
}
ival, err := item.ValueCopy(nil)
if err != nil {
panic(fmt.Errorf("UTXO check error %s", err.Error()))
}
var out common.UTXOWithLock
err = common.DecompressMsgpackUnmarshal(ival, &out)
if err != nil {
panic(fmt.Errorf("UTXO check error %s", err.Error()))
}
if out.LockHash != txHash {
panic(fmt.Errorf("utxo %s:%d locked for transaction %s instead of %s", out.Hash, out.Index, out.LockHash, txHash))
}
}
}
// assert end
err := writeTransaction(txn, ver)
if err != nil {
return err
}
return txn.Commit()
}
func readTransaction(txn *badger.Txn, hash crypto.Hash) (*common.VersionedTransaction, error) {
key := graphTransactionKey(hash)
item, err := txn.Get(key)
if err == badger.ErrKeyNotFound {
return nil, nil
}
val, err := item.ValueCopy(nil)
if err != nil {
return nil, err
}
return common.DecompressUnmarshalVersionedTransaction(val)
}
func pruneTransaction(txn *badger.Txn, hash crypto.Hash) error {
key := graphFinalizationKey(hash)
_, err := txn.Get(key)
if err == nil {
return fmt.Errorf("prune finalized transaction %s", hash.String())
} else if err != badger.ErrKeyNotFound {
return err
}
key = graphTransactionKey(hash)
return txn.Delete(key)
}
func writeTransaction(txn *badger.Txn, ver *common.VersionedTransaction) error {
key := graphTransactionKey(ver.PayloadHash())
_, err := txn.Get(key)
if err == nil {
return nil
} else if err != badger.ErrKeyNotFound {
return err
}
val := ver.CompressMarshal()
return txn.Set(key, val)
}
func finalizeTransaction(txn *badger.Txn, ver *common.VersionedTransaction, snap *common.SnapshotWithTopologicalOrder) error {
key := graphFinalizationKey(ver.PayloadHash())
_, err := txn.Get(key)
if err == nil {
return nil
} else if err != badger.ErrKeyNotFound {
return err
}
snapHash := snap.PayloadHash()
err = txn.Set(key, snapHash[:])
if err != nil {
return err
}
var genesis bool
for _, in := range ver.Inputs {
if len(in.Genesis) > 0 {
genesis = true
break
}
}
for _, utxo := range ver.UnspentOutputs() {
err := writeUTXO(txn, utxo, ver.Extra, snap.Timestamp, genesis)
if err != nil {
return err
}
}
return nil
}
func writeUTXO(txn *badger.Txn, utxo *common.UTXO, extra []byte, timestamp uint64, genesis bool) error {
for _, k := range utxo.Keys {
key := graphGhostKey(*k)
// FIXME assert kind checks, not needed at all
if config.Debug {
_, err := txn.Get(key)
if err == nil {
panic("ErrorValidateFailed")
} else if err != badger.ErrKeyNotFound {
return err
}
}
// assert end
err := txn.Set(key, []byte{0})
if err != nil {
return err
}
}
key := graphUtxoKey(utxo.Hash, utxo.Index)
val := common.CompressMsgpackMarshalPanic(utxo)
err := txn.Set(key, val)
if err != nil {
return err
}
var signer, payee crypto.Key
if len(extra) >= len(signer) {
copy(signer[:], extra)
copy(payee[:], extra[len(signer):])
}
switch utxo.Type {
case common.OutputTypeNodePledge:
return writeNodePledge(txn, signer, payee, utxo.Hash, timestamp)
case common.OutputTypeNodeCancel:
return writeNodeCancel(txn, signer, payee, utxo.Hash, timestamp)
case common.OutputTypeNodeAccept:
return writeNodeAccept(txn, signer, payee, utxo.Hash, timestamp, genesis)
case common.OutputTypeNodeRemove:
return writeNodeRemove(txn, signer, payee, utxo.Hash, timestamp)
case common.OutputTypeDomainAccept:
return writeDomainAccept(txn, signer, utxo.Hash, timestamp)
}
return nil
}
func graphTransactionKey(hash crypto.Hash) []byte {
return append([]byte(graphPrefixTransaction), hash[:]...)
}
func graphFinalizationKey(hash crypto.Hash) []byte {
return append([]byte(graphPrefixFinalization), hash[:]...)
}
func graphUniqueKey(nodeId, hash crypto.Hash) []byte {
key := append(hash[:], nodeId[:]...)
return append([]byte(graphPrefixUnique), key...)
}
func graphGhostKey(k crypto.Key) []byte {
return append([]byte(graphPrefixGhost), k[:]...)
}
func graphUtxoKey(hash crypto.Hash, index int) []byte {
buf := make([]byte, binary.MaxVarintLen64)
size := binary.PutVarint(buf, int64(index))
key := append([]byte(graphPrefixUTXO), hash[:]...)
return append(key, buf[:size]...)
}