forked from cerc-io/plugeth
trie/triedb/hashdb: take lock around access to dirties cache (#28542)
Add read locking of db lock around access to dirties cache in hashdb.Database to prevent data race versus hashdb.Database.dereference which can modify the dirities map by deleting an item. Fixes #28541 --------- Co-authored-by: Gary Rong <garyrong0905@gmail.com>
This commit is contained in:
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ab0eb46a84
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@ -240,17 +240,6 @@ func (db *Database) Dereference(root common.Hash) error {
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return nil
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return nil
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}
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}
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// Node retrieves the rlp-encoded node blob with provided node hash. It's
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// only supported by hash-based database and will return an error for others.
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// Note, this function should be deprecated once ETH66 is deprecated.
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func (db *Database) Node(hash common.Hash) ([]byte, error) {
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hdb, ok := db.backend.(*hashdb.Database)
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if !ok {
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return nil, errors.New("not supported")
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}
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return hdb.Node(hash)
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}
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// Recover rollbacks the database to a specified historical point. The state is
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// Recover rollbacks the database to a specified historical point. The state is
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// supported as the rollback destination only if it's canonical state and the
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// supported as the rollback destination only if it's canonical state and the
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// corresponding trie histories are existent. It's only supported by path-based
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// corresponding trie histories are existent. It's only supported by path-based
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@ -82,11 +82,6 @@ var Defaults = &Config{
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// Database is an intermediate write layer between the trie data structures and
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// Database is an intermediate write layer between the trie data structures and
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// the disk database. The aim is to accumulate trie writes in-memory and only
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// the disk database. The aim is to accumulate trie writes in-memory and only
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// periodically flush a couple tries to disk, garbage collecting the remainder.
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// periodically flush a couple tries to disk, garbage collecting the remainder.
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//
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// Note, the trie Database is **not** thread safe in its mutations, but it **is**
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// thread safe in providing individual, independent node access. The rationale
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// behind this split design is to provide read access to RPC handlers and sync
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// servers even while the trie is executing expensive garbage collection.
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type Database struct {
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type Database struct {
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diskdb ethdb.Database // Persistent storage for matured trie nodes
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diskdb ethdb.Database // Persistent storage for matured trie nodes
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resolver ChildResolver // The handler to resolve children of nodes
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resolver ChildResolver // The handler to resolve children of nodes
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@ -113,7 +108,7 @@ type Database struct {
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// cachedNode is all the information we know about a single cached trie node
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// cachedNode is all the information we know about a single cached trie node
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// in the memory database write layer.
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// in the memory database write layer.
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type cachedNode struct {
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type cachedNode struct {
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node []byte // Encoded node blob
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node []byte // Encoded node blob, immutable
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parents uint32 // Number of live nodes referencing this one
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parents uint32 // Number of live nodes referencing this one
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external map[common.Hash]struct{} // The set of external children
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external map[common.Hash]struct{} // The set of external children
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flushPrev common.Hash // Previous node in the flush-list
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flushPrev common.Hash // Previous node in the flush-list
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@ -152,9 +147,9 @@ func New(diskdb ethdb.Database, config *Config, resolver ChildResolver) *Databas
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}
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}
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}
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}
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// insert inserts a simplified trie node into the memory database.
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// insert inserts a trie node into the memory database. All nodes inserted by
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// All nodes inserted by this function will be reference tracked
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// this function will be reference tracked. This function assumes the lock is
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// and in theory should only used for **trie nodes** insertion.
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// already held.
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func (db *Database) insert(hash common.Hash, node []byte) {
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func (db *Database) insert(hash common.Hash, node []byte) {
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// If the node's already cached, skip
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// If the node's already cached, skip
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if _, ok := db.dirties[hash]; ok {
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if _, ok := db.dirties[hash]; ok {
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@ -183,9 +178,9 @@ func (db *Database) insert(hash common.Hash, node []byte) {
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db.dirtiesSize += common.StorageSize(common.HashLength + len(node))
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db.dirtiesSize += common.StorageSize(common.HashLength + len(node))
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}
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}
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// Node retrieves an encoded cached trie node from memory. If it cannot be found
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// node retrieves an encoded cached trie node from memory. If it cannot be found
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// cached, the method queries the persistent database for the content.
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// cached, the method queries the persistent database for the content.
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func (db *Database) Node(hash common.Hash) ([]byte, error) {
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func (db *Database) node(hash common.Hash) ([]byte, error) {
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// It doesn't make sense to retrieve the metaroot
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// It doesn't make sense to retrieve the metaroot
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if hash == (common.Hash{}) {
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if hash == (common.Hash{}) {
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return nil, errors.New("not found")
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return nil, errors.New("not found")
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@ -198,11 +193,14 @@ func (db *Database) Node(hash common.Hash) ([]byte, error) {
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return enc, nil
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return enc, nil
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}
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}
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}
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}
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// Retrieve the node from the dirty cache if available
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// Retrieve the node from the dirty cache if available.
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db.lock.RLock()
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db.lock.RLock()
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dirty := db.dirties[hash]
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dirty := db.dirties[hash]
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db.lock.RUnlock()
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db.lock.RUnlock()
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// Return the cached node if it's found in the dirty set.
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// The dirty.node field is immutable and safe to read it
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// even without lock guard.
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if dirty != nil {
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if dirty != nil {
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memcacheDirtyHitMeter.Mark(1)
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memcacheDirtyHitMeter.Mark(1)
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memcacheDirtyReadMeter.Mark(int64(len(dirty.node)))
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memcacheDirtyReadMeter.Mark(int64(len(dirty.node)))
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@ -223,20 +221,6 @@ func (db *Database) Node(hash common.Hash) ([]byte, error) {
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return nil, errors.New("not found")
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return nil, errors.New("not found")
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}
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}
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// Nodes retrieves the hashes of all the nodes cached within the memory database.
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// This method is extremely expensive and should only be used to validate internal
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// states in test code.
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func (db *Database) Nodes() []common.Hash {
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db.lock.RLock()
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defer db.lock.RUnlock()
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var hashes = make([]common.Hash, 0, len(db.dirties))
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for hash := range db.dirties {
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hashes = append(hashes, hash)
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}
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return hashes
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}
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// Reference adds a new reference from a parent node to a child node.
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// Reference adds a new reference from a parent node to a child node.
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// This function is used to add reference between internal trie node
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// This function is used to add reference between internal trie node
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// and external node(e.g. storage trie root), all internal trie nodes
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// and external node(e.g. storage trie root), all internal trie nodes
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@ -344,16 +328,16 @@ func (db *Database) dereference(hash common.Hash) {
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// Cap iteratively flushes old but still referenced trie nodes until the total
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// Cap iteratively flushes old but still referenced trie nodes until the total
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// memory usage goes below the given threshold.
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// memory usage goes below the given threshold.
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//
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// Note, this method is a non-synchronized mutator. It is unsafe to call this
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// concurrently with other mutators.
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func (db *Database) Cap(limit common.StorageSize) error {
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func (db *Database) Cap(limit common.StorageSize) error {
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db.lock.Lock()
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defer db.lock.Unlock()
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// Create a database batch to flush persistent data out. It is important that
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// Create a database batch to flush persistent data out. It is important that
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// outside code doesn't see an inconsistent state (referenced data removed from
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// outside code doesn't see an inconsistent state (referenced data removed from
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// memory cache during commit but not yet in persistent storage). This is ensured
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// memory cache during commit but not yet in persistent storage). This is ensured
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// by only uncaching existing data when the database write finalizes.
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// by only uncaching existing data when the database write finalizes.
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nodes, storage, start := len(db.dirties), db.dirtiesSize, time.Now()
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batch := db.diskdb.NewBatch()
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batch := db.diskdb.NewBatch()
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nodes, storage, start := len(db.dirties), db.dirtiesSize, time.Now()
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// db.dirtiesSize only contains the useful data in the cache, but when reporting
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// db.dirtiesSize only contains the useful data in the cache, but when reporting
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// the total memory consumption, the maintenance metadata is also needed to be
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// the total memory consumption, the maintenance metadata is also needed to be
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@ -391,9 +375,6 @@ func (db *Database) Cap(limit common.StorageSize) error {
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return err
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return err
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}
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}
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// Write successful, clear out the flushed data
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// Write successful, clear out the flushed data
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db.lock.Lock()
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defer db.lock.Unlock()
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for db.oldest != oldest {
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for db.oldest != oldest {
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node := db.dirties[db.oldest]
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node := db.dirties[db.oldest]
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delete(db.dirties, db.oldest)
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delete(db.dirties, db.oldest)
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@ -424,10 +405,10 @@ func (db *Database) Cap(limit common.StorageSize) error {
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// Commit iterates over all the children of a particular node, writes them out
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// Commit iterates over all the children of a particular node, writes them out
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// to disk, forcefully tearing down all references in both directions. As a side
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// to disk, forcefully tearing down all references in both directions. As a side
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// effect, all pre-images accumulated up to this point are also written.
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// effect, all pre-images accumulated up to this point are also written.
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//
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// Note, this method is a non-synchronized mutator. It is unsafe to call this
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// concurrently with other mutators.
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func (db *Database) Commit(node common.Hash, report bool) error {
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func (db *Database) Commit(node common.Hash, report bool) error {
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db.lock.Lock()
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defer db.lock.Unlock()
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// Create a database batch to flush persistent data out. It is important that
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// Create a database batch to flush persistent data out. It is important that
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// outside code doesn't see an inconsistent state (referenced data removed from
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// outside code doesn't see an inconsistent state (referenced data removed from
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// memory cache during commit but not yet in persistent storage). This is ensured
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// memory cache during commit but not yet in persistent storage). This is ensured
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@ -449,8 +430,6 @@ func (db *Database) Commit(node common.Hash, report bool) error {
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return err
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return err
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}
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}
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// Uncache any leftovers in the last batch
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// Uncache any leftovers in the last batch
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db.lock.Lock()
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defer db.lock.Unlock()
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if err := batch.Replay(uncacher); err != nil {
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if err := batch.Replay(uncacher); err != nil {
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return err
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return err
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}
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}
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@ -499,13 +478,11 @@ func (db *Database) commit(hash common.Hash, batch ethdb.Batch, uncacher *cleane
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if err := batch.Write(); err != nil {
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if err := batch.Write(); err != nil {
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return err
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return err
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}
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}
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db.lock.Lock()
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err := batch.Replay(uncacher)
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err := batch.Replay(uncacher)
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batch.Reset()
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db.lock.Unlock()
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if err != nil {
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if err != nil {
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return err
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return err
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}
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}
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batch.Reset()
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}
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}
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return nil
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return nil
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}
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}
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@ -574,7 +551,7 @@ func (db *Database) Initialized(genesisRoot common.Hash) bool {
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func (db *Database) Update(root common.Hash, parent common.Hash, block uint64, nodes *trienode.MergedNodeSet, states *triestate.Set) error {
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func (db *Database) Update(root common.Hash, parent common.Hash, block uint64, nodes *trienode.MergedNodeSet, states *triestate.Set) error {
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// Ensure the parent state is present and signal a warning if not.
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// Ensure the parent state is present and signal a warning if not.
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if parent != types.EmptyRootHash {
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if parent != types.EmptyRootHash {
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if blob, _ := db.Node(parent); len(blob) == 0 {
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if blob, _ := db.node(parent); len(blob) == 0 {
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log.Error("parent state is not present")
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log.Error("parent state is not present")
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}
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}
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}
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}
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@ -655,7 +632,7 @@ func (db *Database) Scheme() string {
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// Reader retrieves a node reader belonging to the given state root.
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// Reader retrieves a node reader belonging to the given state root.
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// An error will be returned if the requested state is not available.
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// An error will be returned if the requested state is not available.
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func (db *Database) Reader(root common.Hash) (*reader, error) {
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func (db *Database) Reader(root common.Hash) (*reader, error) {
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if _, err := db.Node(root); err != nil {
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if _, err := db.node(root); err != nil {
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return nil, fmt.Errorf("state %#x is not available, %v", root, err)
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return nil, fmt.Errorf("state %#x is not available, %v", root, err)
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}
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}
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return &reader{db: db}, nil
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return &reader{db: db}, nil
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@ -666,9 +643,9 @@ type reader struct {
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db *Database
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db *Database
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}
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}
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// Node retrieves the trie node with the given node hash.
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// Node retrieves the trie node with the given node hash. No error will be
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// No error will be returned if the node is not found.
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// returned if the node is not found.
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func (reader *reader) Node(owner common.Hash, path []byte, hash common.Hash) ([]byte, error) {
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func (reader *reader) Node(owner common.Hash, path []byte, hash common.Hash) ([]byte, error) {
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blob, _ := reader.db.Node(hash)
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blob, _ := reader.db.node(hash)
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return blob, nil
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return blob, nil
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}
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}
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