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core, trie: get rid of remainder of cache gen boilerplate
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parent
bc1298c33d
commit
d927ccfa62
4 changed files with 48 additions and 76 deletions
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@ -18,7 +18,6 @@ package state
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import (
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"fmt"
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"sync"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/ethdb"
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@ -27,10 +26,6 @@ import (
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)
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const (
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// Number of past tries to keep. This value is chosen such that
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// reasonable chain reorg depths will hit an existing trie.
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maxPastTries = 12
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// Number of codehash->size associations to keep.
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codeSizeCacheSize = 100000
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)
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@ -56,28 +51,61 @@ type Database interface {
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TrieDB() *trie.Database
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}
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// Trie is a Ethereum Merkle Trie.
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// Trie is a Ethereum Merkle Patricia trie.
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type Trie interface {
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// GetKey returns the sha3 preimage of a hashed key that was previously used
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// to store a value.
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//
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// TODO(fjl): remove this when SecureTrie is removed
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GetKey([]byte) []byte
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// TryGet returns the value for key stored in the trie. The value bytes must
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// not be modified by the caller. If a node was not found in the database, a
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// trie.MissingNodeError is returned.
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TryGet(key []byte) ([]byte, error)
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// TryUpdate associates key with value in the trie. If value has length zero, any
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// existing value is deleted from the trie. The value bytes must not be modified
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// by the caller while they are stored in the trie. If a node was not found in the
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// database, a trie.MissingNodeError is returned.
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TryUpdate(key, value []byte) error
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// TryDelete removes any existing value for key from the trie. If a node was not
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// found in the database, a trie.MissingNodeError is returned.
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TryDelete(key []byte) error
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Commit(onleaf trie.LeafCallback) (common.Hash, error)
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// Hash returns the root hash of the trie. It does not write to the database and
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// can be used even if the trie doesn't have one.
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Hash() common.Hash
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// Commit writes all nodes to the trie's memory database, tracking the internal
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// and external (for account tries) references.
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Commit(onleaf trie.LeafCallback) (common.Hash, error)
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// NodeIterator returns an iterator that returns nodes of the trie. Iteration
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// starts at the key after the given start key.
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NodeIterator(startKey []byte) trie.NodeIterator
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GetKey([]byte) []byte // TODO(fjl): remove this when SecureTrie is removed
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// Prove constructs a Merkle proof for key. The result contains all encoded nodes
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// on the path to the value at key. The value itself is also included in the last
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// node and can be retrieved by verifying the proof.
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//
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// If the trie does not contain a value for key, the returned proof contains all
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// nodes of the longest existing prefix of the key (at least the root), ending
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// with the node that proves the absence of the key.
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Prove(key []byte, fromLevel uint, proofDb ethdb.Writer) error
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}
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// NewDatabase creates a backing store for state. The returned database is safe for
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// concurrent use and retains a few recent expanded trie nodes in memory. To keep
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// more historical state in memory, use the NewDatabaseWithCache constructor.
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// concurrent use, but does not retain any recent trie nodes in memory. To keep some
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// historical state in memory, use the NewDatabaseWithCache constructor.
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func NewDatabase(db ethdb.Database) Database {
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return NewDatabaseWithCache(db, 0)
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}
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// NewDatabase creates a backing store for state. The returned database is safe for
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// concurrent use and retains both a few recent expanded trie nodes in memory, as
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// well as a lot of collapsed RLP trie nodes in a large memory cache.
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// NewDatabaseWithCache creates a backing store for state. The returned database
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// is safe for concurrent use and retains a lot of collapsed RLP trie nodes in a
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// large memory cache.
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func NewDatabaseWithCache(db ethdb.Database, cache int) Database {
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csc, _ := lru.New(codeSizeCacheSize)
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return &cachingDB{
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@ -88,38 +116,12 @@ func NewDatabaseWithCache(db ethdb.Database, cache int) Database {
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type cachingDB struct {
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db *trie.Database
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mu sync.Mutex
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pastTries []*trie.SecureTrie
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codeSizeCache *lru.Cache
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}
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// OpenTrie opens the main account trie.
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// OpenTrie opens the main account trie at a specific root hash.
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func (db *cachingDB) OpenTrie(root common.Hash) (Trie, error) {
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db.mu.Lock()
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defer db.mu.Unlock()
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for i := len(db.pastTries) - 1; i >= 0; i-- {
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if db.pastTries[i].Hash() == root {
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return cachedTrie{db.pastTries[i].Copy(), db}, nil
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}
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}
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tr, err := trie.NewSecure(root, db.db)
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if err != nil {
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return nil, err
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}
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return cachedTrie{tr, db}, nil
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}
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func (db *cachingDB) pushTrie(t *trie.SecureTrie) {
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db.mu.Lock()
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defer db.mu.Unlock()
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if len(db.pastTries) >= maxPastTries {
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copy(db.pastTries, db.pastTries[1:])
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db.pastTries[len(db.pastTries)-1] = t
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} else {
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db.pastTries = append(db.pastTries, t)
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}
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return trie.NewSecure(root, db.db)
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}
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// OpenStorageTrie opens the storage trie of an account.
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@ -130,8 +132,6 @@ func (db *cachingDB) OpenStorageTrie(addrHash, root common.Hash) (Trie, error) {
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// CopyTrie returns an independent copy of the given trie.
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func (db *cachingDB) CopyTrie(t Trie) Trie {
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switch t := t.(type) {
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case cachedTrie:
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return cachedTrie{t.SecureTrie.Copy(), db}
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case *trie.SecureTrie:
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return t.Copy()
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default:
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@ -161,21 +161,3 @@ func (db *cachingDB) ContractCodeSize(addrHash, codeHash common.Hash) (int, erro
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func (db *cachingDB) TrieDB() *trie.Database {
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return db.db
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}
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// cachedTrie inserts its trie into a cachingDB on commit.
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type cachedTrie struct {
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*trie.SecureTrie
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db *cachingDB
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}
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func (m cachedTrie) Commit(onleaf trie.LeafCallback) (common.Hash, error) {
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root, err := m.SecureTrie.Commit(onleaf)
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if err == nil {
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m.db.pushTrie(m.SecureTrie)
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}
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return root, err
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}
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func (m cachedTrie) Prove(key []byte, fromLevel uint, proofDb ethdb.Writer) error {
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return m.SecureTrie.Prove(key, fromLevel, proofDb)
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}
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@ -160,12 +160,6 @@ func (t *SecureTrie) Hash() common.Hash {
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return t.trie.Hash()
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}
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// Root returns the root hash of SecureTrie.
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// Deprecated: use Hash instead.
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func (t *SecureTrie) Root() []byte {
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return t.trie.Root()
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}
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// Copy returns a copy of SecureTrie.
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func (t *SecureTrie) Copy() *SecureTrie {
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cpy := *t
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@ -133,7 +133,7 @@ func testIterativeSync(t *testing.T, batch int) {
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queue = append(queue[:0], sched.Missing(batch)...)
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}
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// Cross check that the two tries are in sync
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checkTrieContents(t, triedb, srcTrie.Root(), srcData)
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checkTrieContents(t, triedb, srcTrie.Hash().Bytes(), srcData)
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}
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// Tests that the trie scheduler can correctly reconstruct the state even if only
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@ -167,7 +167,7 @@ func TestIterativeDelayedSync(t *testing.T) {
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queue = append(queue[len(results):], sched.Missing(10000)...)
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}
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// Cross check that the two tries are in sync
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checkTrieContents(t, triedb, srcTrie.Root(), srcData)
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checkTrieContents(t, triedb, srcTrie.Hash().Bytes(), srcData)
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}
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// Tests that given a root hash, a trie can sync iteratively on a single thread,
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@ -212,7 +212,7 @@ func testIterativeRandomSync(t *testing.T, batch int) {
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}
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}
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// Cross check that the two tries are in sync
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checkTrieContents(t, triedb, srcTrie.Root(), srcData)
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checkTrieContents(t, triedb, srcTrie.Hash().Bytes(), srcData)
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}
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// Tests that the trie scheduler can correctly reconstruct the state even if only
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@ -259,7 +259,7 @@ func TestIterativeRandomDelayedSync(t *testing.T) {
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}
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}
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// Cross check that the two tries are in sync
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checkTrieContents(t, triedb, srcTrie.Root(), srcData)
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checkTrieContents(t, triedb, srcTrie.Hash().Bytes(), srcData)
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}
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// Tests that a trie sync will not request nodes multiple times, even if they
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@ -299,7 +299,7 @@ func TestDuplicateAvoidanceSync(t *testing.T) {
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queue = append(queue[:0], sched.Missing(0)...)
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}
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// Cross check that the two tries are in sync
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checkTrieContents(t, triedb, srcTrie.Root(), srcData)
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checkTrieContents(t, triedb, srcTrie.Hash().Bytes(), srcData)
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}
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// Tests that at any point in time during a sync, only complete sub-tries are in
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@ -401,10 +401,6 @@ func (t *Trie) resolveHash(n hashNode, prefix []byte) (node, error) {
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return nil, &MissingNodeError{NodeHash: hash, Path: prefix}
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}
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// Root returns the root hash of the trie.
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// Deprecated: use Hash instead.
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func (t *Trie) Root() []byte { return t.Hash().Bytes() }
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// Hash returns the root hash of the trie. It does not write to the
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// database and can be used even if the trie doesn't have one.
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func (t *Trie) Hash() common.Hash {
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