core/state: revert StateDB receiver name using <self>

This commit is contained in:
shuai.qi 2019-02-19 11:21:26 +08:00
parent e1c3b26e41
commit 772ee0dd62
3 changed files with 194 additions and 194 deletions

View file

@ -39,15 +39,15 @@ type Dump struct {
Accounts map[string]DumpAccount `json:"accounts"`
}
func (db *StateDB) RawDump() Dump {
func (self *StateDB) RawDump() Dump {
dump := Dump{
Root: fmt.Sprintf("%x", db.trie.Hash()),
Root: fmt.Sprintf("%x", self.trie.Hash()),
Accounts: make(map[string]DumpAccount),
}
it := trie.NewIterator(db.trie.NodeIterator(nil))
it := trie.NewIterator(self.trie.NodeIterator(nil))
for it.Next() {
addr := db.trie.GetKey(it.Key)
addr := self.trie.GetKey(it.Key)
var data Account
if err := rlp.DecodeBytes(it.Value, &data); err != nil {
panic(err)
@ -59,20 +59,20 @@ func (db *StateDB) RawDump() Dump {
Nonce: data.Nonce,
Root: common.Bytes2Hex(data.Root[:]),
CodeHash: common.Bytes2Hex(data.CodeHash),
Code: common.Bytes2Hex(obj.Code(db.db)),
Code: common.Bytes2Hex(obj.Code(self.db)),
Storage: make(map[string]string),
}
storageIt := trie.NewIterator(obj.getTrie(db.db).NodeIterator(nil))
storageIt := trie.NewIterator(obj.getTrie(self.db).NodeIterator(nil))
for storageIt.Next() {
account.Storage[common.Bytes2Hex(db.trie.GetKey(storageIt.Key))] = common.Bytes2Hex(storageIt.Value)
account.Storage[common.Bytes2Hex(self.trie.GetKey(storageIt.Key))] = common.Bytes2Hex(storageIt.Value)
}
dump.Accounts[common.Bytes2Hex(addr)] = account
}
return dump
}
func (db *StateDB) Dump() []byte {
json, err := json.MarshalIndent(db.RawDump(), "", " ")
func (self *StateDB) Dump() []byte {
json, err := json.MarshalIndent(self.RawDump(), "", " ")
if err != nil {
fmt.Println("dump err", err)
}

View file

@ -103,7 +103,7 @@ type Account struct {
}
// newObject creates a state object.
func newObject(db *StateDB, address common.Address, data Account) *stateObject {
func newObject(stateDB *StateDB, address common.Address, data Account) *stateObject {
if data.Balance == nil {
data.Balance = new(big.Int)
}
@ -111,7 +111,7 @@ func newObject(db *StateDB, address common.Address, data Account) *stateObject {
data.CodeHash = emptyCodeHash
}
return &stateObject{
db: db,
db: stateDB,
address: address,
addrHash: crypto.Keccak256Hash(address[:]),
data: data,
@ -296,10 +296,10 @@ func (s *stateObject) setBalance(amount *big.Int) {
// Return the gas back to the origin. Used by the Virtual machine or Closures
func (s *stateObject) ReturnGas(gas *big.Int) {}
func (s *stateObject) deepCopy(db *StateDB) *stateObject {
stateObject := newObject(db, s.address, s.data)
func (s *stateObject) deepCopy(stateDB *StateDB) *stateObject {
stateObject := newObject(stateDB, s.address, s.data)
if s.trie != nil {
stateObject.trie = db.db.CopyTrie(s.trie)
stateObject.trie = stateDB.db.CopyTrie(s.trie)
}
stateObject.code = s.code
stateObject.dirtyStorage = s.dirtyStorage.Copy()

View file

@ -106,114 +106,114 @@ func New(root common.Hash, db Database) (*StateDB, error) {
}
// setError remembers the first non-nil error it is called with.
func (db *StateDB) setError(err error) {
if db.dbErr == nil {
db.dbErr = err
func (self *StateDB) setError(err error) {
if self.dbErr == nil {
self.dbErr = err
}
}
func (db *StateDB) Error() error {
return db.dbErr
func (self *StateDB) Error() error {
return self.dbErr
}
// Reset clears out all ephemeral state objects from the state db, but keeps
// the underlying state trie to avoid reloading data for the next operations.
func (db *StateDB) Reset(root common.Hash) error {
tr, err := db.db.OpenTrie(root)
func (self *StateDB) Reset(root common.Hash) error {
tr, err := self.db.OpenTrie(root)
if err != nil {
return err
}
db.trie = tr
db.stateObjects = make(map[common.Address]*stateObject)
db.stateObjectsDirty = make(map[common.Address]struct{})
db.thash = common.Hash{}
db.bhash = common.Hash{}
db.txIndex = 0
db.logs = make(map[common.Hash][]*types.Log)
db.logSize = 0
db.preimages = make(map[common.Hash][]byte)
db.clearJournalAndRefund()
self.trie = tr
self.stateObjects = make(map[common.Address]*stateObject)
self.stateObjectsDirty = make(map[common.Address]struct{})
self.thash = common.Hash{}
self.bhash = common.Hash{}
self.txIndex = 0
self.logs = make(map[common.Hash][]*types.Log)
self.logSize = 0
self.preimages = make(map[common.Hash][]byte)
self.clearJournalAndRefund()
return nil
}
func (db *StateDB) AddLog(log *types.Log) {
db.journal.append(addLogChange{txhash: db.thash})
func (self *StateDB) AddLog(log *types.Log) {
self.journal.append(addLogChange{txhash: self.thash})
log.TxHash = db.thash
log.BlockHash = db.bhash
log.TxIndex = uint(db.txIndex)
log.Index = db.logSize
db.logs[db.thash] = append(db.logs[db.thash], log)
db.logSize++
log.TxHash = self.thash
log.BlockHash = self.bhash
log.TxIndex = uint(self.txIndex)
log.Index = self.logSize
self.logs[self.thash] = append(self.logs[self.thash], log)
self.logSize++
}
func (db *StateDB) GetLogs(hash common.Hash) []*types.Log {
return db.logs[hash]
func (self *StateDB) GetLogs(hash common.Hash) []*types.Log {
return self.logs[hash]
}
func (db *StateDB) Logs() []*types.Log {
func (self *StateDB) Logs() []*types.Log {
var logs []*types.Log
for _, lgs := range db.logs {
for _, lgs := range self.logs {
logs = append(logs, lgs...)
}
return logs
}
// AddPreimage records a SHA3 preimage seen by the VM.
func (db *StateDB) AddPreimage(hash common.Hash, preimage []byte) {
if _, ok := db.preimages[hash]; !ok {
db.journal.append(addPreimageChange{hash: hash})
func (self *StateDB) AddPreimage(hash common.Hash, preimage []byte) {
if _, ok := self.preimages[hash]; !ok {
self.journal.append(addPreimageChange{hash: hash})
pi := make([]byte, len(preimage))
copy(pi, preimage)
db.preimages[hash] = pi
self.preimages[hash] = pi
}
}
// Preimages returns a list of SHA3 preimages that have been submitted.
func (db *StateDB) Preimages() map[common.Hash][]byte {
return db.preimages
func (self *StateDB) Preimages() map[common.Hash][]byte {
return self.preimages
}
// AddRefund adds gas to the refund counter
func (db *StateDB) AddRefund(gas uint64) {
db.journal.append(refundChange{prev: db.refund})
db.refund += gas
func (self *StateDB) AddRefund(gas uint64) {
self.journal.append(refundChange{prev: self.refund})
self.refund += gas
}
// SubRefund removes gas from the refund counter.
// This method will panic if the refund counter goes below zero
func (db *StateDB) SubRefund(gas uint64) {
db.journal.append(refundChange{prev: db.refund})
if gas > db.refund {
func (self *StateDB) SubRefund(gas uint64) {
self.journal.append(refundChange{prev: self.refund})
if gas > self.refund {
panic("Refund counter below zero")
}
db.refund -= gas
self.refund -= gas
}
// Exist reports whether the given account address exists in the state.
// Notably this also returns true for suicided accounts.
func (db *StateDB) Exist(addr common.Address) bool {
return db.getStateObject(addr) != nil
func (self *StateDB) Exist(addr common.Address) bool {
return self.getStateObject(addr) != nil
}
// Empty returns whether the state object is either non-existent
// or empty according to the EIP161 specification (balance = nonce = code = 0)
func (db *StateDB) Empty(addr common.Address) bool {
so := db.getStateObject(addr)
func (self *StateDB) Empty(addr common.Address) bool {
so := self.getStateObject(addr)
return so == nil || so.empty()
}
// Retrieve the balance from the given address or 0 if object not found
func (db *StateDB) GetBalance(addr common.Address) *big.Int {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetBalance(addr common.Address) *big.Int {
stateObject := self.getStateObject(addr)
if stateObject != nil {
return stateObject.Balance()
}
return common.Big0
}
func (db *StateDB) GetNonce(addr common.Address) uint64 {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetNonce(addr common.Address) uint64 {
stateObject := self.getStateObject(addr)
if stateObject != nil {
return stateObject.Nonce()
}
@ -221,31 +221,31 @@ func (db *StateDB) GetNonce(addr common.Address) uint64 {
return 0
}
func (db *StateDB) GetCode(addr common.Address) []byte {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetCode(addr common.Address) []byte {
stateObject := self.getStateObject(addr)
if stateObject != nil {
return stateObject.Code(db.db)
return stateObject.Code(self.db)
}
return nil
}
func (db *StateDB) GetCodeSize(addr common.Address) int {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetCodeSize(addr common.Address) int {
stateObject := self.getStateObject(addr)
if stateObject == nil {
return 0
}
if stateObject.code != nil {
return len(stateObject.code)
}
size, err := db.db.ContractCodeSize(stateObject.addrHash, common.BytesToHash(stateObject.CodeHash()))
size, err := self.db.ContractCodeSize(stateObject.addrHash, common.BytesToHash(stateObject.CodeHash()))
if err != nil {
db.setError(err)
self.setError(err)
}
return size
}
func (db *StateDB) GetCodeHash(addr common.Address) common.Hash {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetCodeHash(addr common.Address) common.Hash {
stateObject := self.getStateObject(addr)
if stateObject == nil {
return common.Hash{}
}
@ -253,25 +253,25 @@ func (db *StateDB) GetCodeHash(addr common.Address) common.Hash {
}
// GetState retrieves a value from the given account's storage trie.
func (db *StateDB) GetState(addr common.Address, hash common.Hash) common.Hash {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetState(addr common.Address, hash common.Hash) common.Hash {
stateObject := self.getStateObject(addr)
if stateObject != nil {
return stateObject.GetState(db.db, hash)
return stateObject.GetState(self.db, hash)
}
return common.Hash{}
}
// GetProof returns the MerkleProof for a given Account
func (db *StateDB) GetProof(a common.Address) ([][]byte, error) {
func (self *StateDB) GetProof(a common.Address) ([][]byte, error) {
var proof proofList
err := db.trie.Prove(crypto.Keccak256(a.Bytes()), 0, &proof)
err := self.trie.Prove(crypto.Keccak256(a.Bytes()), 0, &proof)
return [][]byte(proof), err
}
// GetProof returns the StorageProof for given key
func (db *StateDB) GetStorageProof(a common.Address, key common.Hash) ([][]byte, error) {
func (self *StateDB) GetStorageProof(a common.Address, key common.Hash) ([][]byte, error) {
var proof proofList
trie := db.StorageTrie(a)
trie := self.StorageTrie(a)
if trie == nil {
return proof, errors.New("storage trie for requested address does not exist")
}
@ -280,32 +280,32 @@ func (db *StateDB) GetStorageProof(a common.Address, key common.Hash) ([][]byte,
}
// GetCommittedState retrieves a value from the given account's committed storage trie.
func (db *StateDB) GetCommittedState(addr common.Address, hash common.Hash) common.Hash {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetCommittedState(addr common.Address, hash common.Hash) common.Hash {
stateObject := self.getStateObject(addr)
if stateObject != nil {
return stateObject.GetCommittedState(db.db, hash)
return stateObject.GetCommittedState(self.db, hash)
}
return common.Hash{}
}
// Database retrieves the low level database supporting the lower level trie ops.
func (db *StateDB) Database() Database {
return db.db
func (self *StateDB) Database() Database {
return self.db
}
// StorageTrie returns the storage trie of an account.
// The return value is a copy and is nil for non-existent accounts.
func (db *StateDB) StorageTrie(addr common.Address) Trie {
stateObject := db.getStateObject(addr)
func (self *StateDB) StorageTrie(addr common.Address) Trie {
stateObject := self.getStateObject(addr)
if stateObject == nil {
return nil
}
cpy := stateObject.deepCopy(db)
return cpy.updateTrie(db.db)
cpy := stateObject.deepCopy(self)
return cpy.updateTrie(self.db)
}
func (db *StateDB) HasSuicided(addr common.Address) bool {
stateObject := db.getStateObject(addr)
func (self *StateDB) HasSuicided(addr common.Address) bool {
stateObject := self.getStateObject(addr)
if stateObject != nil {
return stateObject.suicided
}
@ -317,46 +317,46 @@ func (db *StateDB) HasSuicided(addr common.Address) bool {
*/
// AddBalance adds amount to the account associated with addr.
func (db *StateDB) AddBalance(addr common.Address, amount *big.Int) {
stateObject := db.GetOrNewStateObject(addr)
func (self *StateDB) AddBalance(addr common.Address, amount *big.Int) {
stateObject := self.GetOrNewStateObject(addr)
if stateObject != nil {
stateObject.AddBalance(amount)
}
}
// SubBalance subtracts amount from the account associated with addr.
func (db *StateDB) SubBalance(addr common.Address, amount *big.Int) {
stateObject := db.GetOrNewStateObject(addr)
func (self *StateDB) SubBalance(addr common.Address, amount *big.Int) {
stateObject := self.GetOrNewStateObject(addr)
if stateObject != nil {
stateObject.SubBalance(amount)
}
}
func (db *StateDB) SetBalance(addr common.Address, amount *big.Int) {
stateObject := db.GetOrNewStateObject(addr)
func (self *StateDB) SetBalance(addr common.Address, amount *big.Int) {
stateObject := self.GetOrNewStateObject(addr)
if stateObject != nil {
stateObject.SetBalance(amount)
}
}
func (db *StateDB) SetNonce(addr common.Address, nonce uint64) {
stateObject := db.GetOrNewStateObject(addr)
func (self *StateDB) SetNonce(addr common.Address, nonce uint64) {
stateObject := self.GetOrNewStateObject(addr)
if stateObject != nil {
stateObject.SetNonce(nonce)
}
}
func (db *StateDB) SetCode(addr common.Address, code []byte) {
stateObject := db.GetOrNewStateObject(addr)
func (self *StateDB) SetCode(addr common.Address, code []byte) {
stateObject := self.GetOrNewStateObject(addr)
if stateObject != nil {
stateObject.SetCode(crypto.Keccak256Hash(code), code)
}
}
func (db *StateDB) SetState(addr common.Address, key, value common.Hash) {
stateObject := db.GetOrNewStateObject(addr)
func (self *StateDB) SetState(addr common.Address, key, value common.Hash) {
stateObject := self.GetOrNewStateObject(addr)
if stateObject != nil {
stateObject.SetState(db.db, key, value)
stateObject.SetState(self.db, key, value)
}
}
@ -365,12 +365,12 @@ func (db *StateDB) SetState(addr common.Address, key, value common.Hash) {
//
// The account's state object is still available until the state is committed,
// getStateObject will return a non-nil account after Suicide.
func (db *StateDB) Suicide(addr common.Address) bool {
stateObject := db.getStateObject(addr)
func (self *StateDB) Suicide(addr common.Address) bool {
stateObject := self.getStateObject(addr)
if stateObject == nil {
return false
}
db.journal.append(suicideChange{
self.journal.append(suicideChange{
account: &addr,
prev: stateObject.suicided,
prevbalance: new(big.Int).Set(stateObject.Balance()),
@ -386,26 +386,26 @@ func (db *StateDB) Suicide(addr common.Address) bool {
//
// updateStateObject writes the given object to the trie.
func (db *StateDB) updateStateObject(stateObject *stateObject) {
func (self *StateDB) updateStateObject(stateObject *stateObject) {
addr := stateObject.Address()
data, err := rlp.EncodeToBytes(stateObject)
if err != nil {
panic(fmt.Errorf("can't encode object at %x: %v", addr[:], err))
}
db.setError(db.trie.TryUpdate(addr[:], data))
self.setError(self.trie.TryUpdate(addr[:], data))
}
// deleteStateObject removes the given object from the state trie.
func (db *StateDB) deleteStateObject(stateObject *stateObject) {
func (self *StateDB) deleteStateObject(stateObject *stateObject) {
stateObject.deleted = true
addr := stateObject.Address()
db.setError(db.trie.TryDelete(addr[:]))
self.setError(self.trie.TryDelete(addr[:]))
}
// Retrieve a state object given by the address. Returns nil if not found.
func (db *StateDB) getStateObject(addr common.Address) (stateObject *stateObject) {
func (self *StateDB) getStateObject(addr common.Address) (stateObject *stateObject) {
// Prefer 'live' objects.
if obj := db.stateObjects[addr]; obj != nil {
if obj := self.stateObjects[addr]; obj != nil {
if obj.deleted {
return nil
}
@ -413,9 +413,9 @@ func (db *StateDB) getStateObject(addr common.Address) (stateObject *stateObject
}
// Load the object from the database.
enc, err := db.trie.TryGet(addr[:])
enc, err := self.trie.TryGet(addr[:])
if len(enc) == 0 {
db.setError(err)
self.setError(err)
return nil
}
var data Account
@ -424,36 +424,36 @@ func (db *StateDB) getStateObject(addr common.Address) (stateObject *stateObject
return nil
}
// Insert into the live set.
obj := newObject(db, addr, data)
db.setStateObject(obj)
obj := newObject(self, addr, data)
self.setStateObject(obj)
return obj
}
func (db *StateDB) setStateObject(object *stateObject) {
db.stateObjects[object.Address()] = object
func (self *StateDB) setStateObject(object *stateObject) {
self.stateObjects[object.Address()] = object
}
// Retrieve a state object or create a new state object if nil.
func (db *StateDB) GetOrNewStateObject(addr common.Address) *stateObject {
stateObject := db.getStateObject(addr)
func (self *StateDB) GetOrNewStateObject(addr common.Address) *stateObject {
stateObject := self.getStateObject(addr)
if stateObject == nil || stateObject.deleted {
stateObject, _ = db.createObject(addr)
stateObject, _ = self.createObject(addr)
}
return stateObject
}
// createObject creates a new state object. If there is an existing account with
// the given address, it is overwritten and returned as the second return value.
func (db *StateDB) createObject(addr common.Address) (newobj, prev *stateObject) {
prev = db.getStateObject(addr)
newobj = newObject(db, addr, Account{})
func (self *StateDB) createObject(addr common.Address) (newobj, prev *stateObject) {
prev = self.getStateObject(addr)
newobj = newObject(self, addr, Account{})
newobj.setNonce(0) // sets the object to dirty
if prev == nil {
db.journal.append(createObjectChange{account: &addr})
self.journal.append(createObjectChange{account: &addr})
} else {
db.journal.append(resetObjectChange{prev: prev})
self.journal.append(resetObjectChange{prev: prev})
}
db.setStateObject(newobj)
self.setStateObject(newobj)
return newobj, prev
}
@ -467,21 +467,21 @@ func (db *StateDB) createObject(addr common.Address) (newobj, prev *stateObject)
// 2. tx_create(sha(account ++ nonce)) (note that this gets the address of 1)
//
// Carrying over the balance ensures that Ether doesn't disappear.
func (db *StateDB) CreateAccount(addr common.Address) {
newObj, prev := db.createObject(addr)
func (self *StateDB) CreateAccount(addr common.Address) {
newObj, prev := self.createObject(addr)
if prev != nil {
newObj.setBalance(prev.data.Balance)
}
}
func (db *StateDB) ForEachStorage(addr common.Address, cb func(key, value common.Hash) bool) {
so := db.getStateObject(addr)
func (self *StateDB) ForEachStorage(addr common.Address, cb func(key, value common.Hash) bool) {
so := self.getStateObject(addr)
if so == nil {
return
}
it := trie.NewIterator(so.getTrie(db.db).NodeIterator(nil))
it := trie.NewIterator(so.getTrie(self.db).NodeIterator(nil))
for it.Next() {
key := common.BytesToHash(db.trie.GetKey(it.Key))
key := common.BytesToHash(self.trie.GetKey(it.Key))
if value, dirty := so.dirtyStorage[key]; dirty {
cb(key, value)
continue
@ -492,26 +492,26 @@ func (db *StateDB) ForEachStorage(addr common.Address, cb func(key, value common
// Copy creates a deep, independent copy of the state.
// Snapshots of the copied state cannot be applied to the copy.
func (db *StateDB) Copy() *StateDB {
func (self *StateDB) Copy() *StateDB {
// Copy all the basic fields, initialize the memory ones
state := &StateDB{
db: db.db,
trie: db.db.CopyTrie(db.trie),
stateObjects: make(map[common.Address]*stateObject, len(db.journal.dirties)),
stateObjectsDirty: make(map[common.Address]struct{}, len(db.journal.dirties)),
refund: db.refund,
logs: make(map[common.Hash][]*types.Log, len(db.logs)),
logSize: db.logSize,
db: self.db,
trie: self.db.CopyTrie(self.trie),
stateObjects: make(map[common.Address]*stateObject, len(self.journal.dirties)),
stateObjectsDirty: make(map[common.Address]struct{}, len(self.journal.dirties)),
refund: self.refund,
logs: make(map[common.Hash][]*types.Log, len(self.logs)),
logSize: self.logSize,
preimages: make(map[common.Hash][]byte),
journal: newJournal(),
}
// Copy the dirty states, logs, and preimages
for addr := range db.journal.dirties {
for addr := range self.journal.dirties {
// As documented [here](https://github.com/ethereum/go-ethereum/pull/16485#issuecomment-380438527),
// and in the Finalise-method, there is a case where an object is in the journal but not
// in the stateObjects: OOG after touch on ripeMD prior to Byzantium. Thus, we need to check for
// nil
if object, exist := db.stateObjects[addr]; exist {
if object, exist := self.stateObjects[addr]; exist {
state.stateObjects[addr] = object.deepCopy(state)
state.stateObjectsDirty[addr] = struct{}{}
}
@ -519,13 +519,13 @@ func (db *StateDB) Copy() *StateDB {
// Above, we don't copy the actual journal. This means that if the copy is copied, the
// loop above will be a no-op, since the copy's journal is empty.
// Thus, here we iterate over stateObjects, to enable copies of copies
for addr := range db.stateObjectsDirty {
for addr := range self.stateObjectsDirty {
if _, exist := state.stateObjects[addr]; !exist {
state.stateObjects[addr] = db.stateObjects[addr].deepCopy(state)
state.stateObjects[addr] = self.stateObjects[addr].deepCopy(state)
state.stateObjectsDirty[addr] = struct{}{}
}
}
for hash, logs := range db.logs {
for hash, logs := range self.logs {
cpy := make([]*types.Log, len(logs))
for i, l := range logs {
cpy[i] = new(types.Log)
@ -533,46 +533,46 @@ func (db *StateDB) Copy() *StateDB {
}
state.logs[hash] = cpy
}
for hash, preimage := range db.preimages {
for hash, preimage := range self.preimages {
state.preimages[hash] = preimage
}
return state
}
// Snapshot returns an identifier for the current revision of the state.
func (db *StateDB) Snapshot() int {
id := db.nextRevisionId
db.nextRevisionId++
db.validRevisions = append(db.validRevisions, revision{id, db.journal.length()})
func (self *StateDB) Snapshot() int {
id := self.nextRevisionId
self.nextRevisionId++
self.validRevisions = append(self.validRevisions, revision{id, self.journal.length()})
return id
}
// RevertToSnapshot reverts all state changes made since the given revision.
func (db *StateDB) RevertToSnapshot(revid int) {
func (self *StateDB) RevertToSnapshot(revid int) {
// Find the snapshot in the stack of valid snapshots.
idx := sort.Search(len(db.validRevisions), func(i int) bool {
return db.validRevisions[i].id >= revid
idx := sort.Search(len(self.validRevisions), func(i int) bool {
return self.validRevisions[i].id >= revid
})
if idx == len(db.validRevisions) || db.validRevisions[idx].id != revid {
if idx == len(self.validRevisions) || self.validRevisions[idx].id != revid {
panic(fmt.Errorf("revision id %v cannot be reverted", revid))
}
snapshot := db.validRevisions[idx].journalIndex
snapshot := self.validRevisions[idx].journalIndex
// Replay the journal to undo changes and remove invalidated snapshots
db.journal.revert(db, snapshot)
db.validRevisions = db.validRevisions[:idx]
self.journal.revert(self, snapshot)
self.validRevisions = self.validRevisions[:idx]
}
// GetRefund returns the current value of the refund counter.
func (db *StateDB) GetRefund() uint64 {
return db.refund
func (self *StateDB) GetRefund() uint64 {
return self.refund
}
// Finalise finalises the state by removing the self destructed objects
// and clears the journal as well as the refunds.
func (db *StateDB) Finalise(deleteEmptyObjects bool) {
for addr := range db.journal.dirties {
stateObject, exist := db.stateObjects[addr]
func (self *StateDB) Finalise(deleteEmptyObjects bool) {
for addr := range self.journal.dirties {
stateObject, exist := self.stateObjects[addr]
if !exist {
// ripeMD is 'touched' at block 1714175, in tx 0x1237f737031e40bcde4a8b7e717b2d15e3ecadfe49bb1bbc71ee9deb09c6fcf2
// That tx goes out of gas, and although the notion of 'touched' does not exist there, the
@ -584,81 +584,81 @@ func (db *StateDB) Finalise(deleteEmptyObjects bool) {
}
if stateObject.suicided || (deleteEmptyObjects && stateObject.empty()) {
db.deleteStateObject(stateObject)
self.deleteStateObject(stateObject)
} else {
stateObject.updateRoot(db.db)
db.updateStateObject(stateObject)
stateObject.updateRoot(self.db)
self.updateStateObject(stateObject)
}
db.stateObjectsDirty[addr] = struct{}{}
self.stateObjectsDirty[addr] = struct{}{}
}
// Invalidate journal because reverting across transactions is not allowed.
db.clearJournalAndRefund()
self.clearJournalAndRefund()
}
// IntermediateRoot computes the current root hash of the state trie.
// It is called in between transactions to get the root hash that
// goes into transaction receipts.
func (db *StateDB) IntermediateRoot(deleteEmptyObjects bool) common.Hash {
db.Finalise(deleteEmptyObjects)
return db.trie.Hash()
func (self *StateDB) IntermediateRoot(deleteEmptyObjects bool) common.Hash {
self.Finalise(deleteEmptyObjects)
return self.trie.Hash()
}
// Prepare sets the current transaction hash and index and block hash which is
// used when the EVM emits new state logs.
func (db *StateDB) Prepare(thash, bhash common.Hash, ti int) {
db.thash = thash
db.bhash = bhash
db.txIndex = ti
func (self *StateDB) Prepare(thash, bhash common.Hash, ti int) {
self.thash = thash
self.bhash = bhash
self.txIndex = ti
}
func (db *StateDB) clearJournalAndRefund() {
db.journal = newJournal()
db.validRevisions = db.validRevisions[:0]
db.refund = 0
func (self *StateDB) clearJournalAndRefund() {
self.journal = newJournal()
self.validRevisions = self.validRevisions[:0]
self.refund = 0
}
// Commit writes the state to the underlying in-memory trie database.
func (db *StateDB) Commit(deleteEmptyObjects bool) (root common.Hash, err error) {
defer db.clearJournalAndRefund()
func (self *StateDB) Commit(deleteEmptyObjects bool) (root common.Hash, err error) {
defer self.clearJournalAndRefund()
for addr := range db.journal.dirties {
db.stateObjectsDirty[addr] = struct{}{}
for addr := range self.journal.dirties {
self.stateObjectsDirty[addr] = struct{}{}
}
// Commit objects to the trie.
for addr, stateObject := range db.stateObjects {
_, isDirty := db.stateObjectsDirty[addr]
for addr, stateObject := range self.stateObjects {
_, isDirty := self.stateObjectsDirty[addr]
switch {
case stateObject.suicided || (isDirty && deleteEmptyObjects && stateObject.empty()):
// If the object has been removed, don't bother syncing it
// and just mark it for deletion in the trie.
db.deleteStateObject(stateObject)
self.deleteStateObject(stateObject)
case isDirty:
// Write any contract code associated with the state object
if stateObject.code != nil && stateObject.dirtyCode {
db.db.TrieDB().InsertBlob(common.BytesToHash(stateObject.CodeHash()), stateObject.code)
self.db.TrieDB().InsertBlob(common.BytesToHash(stateObject.CodeHash()), stateObject.code)
stateObject.dirtyCode = false
}
// Write any storage changes in the state object to its storage trie.
if err := stateObject.CommitTrie(db.db); err != nil {
if err := stateObject.CommitTrie(self.db); err != nil {
return common.Hash{}, err
}
// Update the object in the main account trie.
db.updateStateObject(stateObject)
self.updateStateObject(stateObject)
}
delete(db.stateObjectsDirty, addr)
delete(self.stateObjectsDirty, addr)
}
// Write trie changes.
root, err = db.trie.Commit(func(leaf []byte, parent common.Hash) error {
root, err = self.trie.Commit(func(leaf []byte, parent common.Hash) error {
var account Account
if err := rlp.DecodeBytes(leaf, &account); err != nil {
return nil
}
if account.Root != emptyState {
db.db.TrieDB().Reference(account.Root, parent)
self.db.TrieDB().Reference(account.Root, parent)
}
code := common.BytesToHash(account.CodeHash)
if code != emptyCode {
db.db.TrieDB().Reference(code, parent)
self.db.TrieDB().Reference(code, parent)
}
return nil
})