mirror of
https://github.com/ethereum/go-ethereum.git
synced 2026-08-20 10:52:25 +00:00
core, eth, trie: filter out boundary nodes in stacktrie
This commit is contained in:
parent
c1d5a012ea
commit
03e5cfad11
6 changed files with 264 additions and 16 deletions
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@ -26,4 +26,15 @@ var (
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IngressRegistrationErrorMeter = metrics.NewRegisteredMeter(ingressRegistrationErrorName, nil)
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EgressRegistrationErrorMeter = metrics.NewRegisteredMeter(egressRegistrationErrorName, nil)
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// deletionGauge is the metric to track how many trie node deletions
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// are performed in total during the sync process.
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deletionGauge = metrics.NewRegisteredGauge("eth/protocols/snap/sync/delete", nil)
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// lookupGauge is the metric to track how many trie node lookups are
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// performed to determine if node needs to be deleted.
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lookupGauge = metrics.NewRegisteredGauge("eth/protocols/snap/sync/lookup", nil)
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// boundaryNodesGauge is the metric to track how many boundary trie node are met.
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boundaryNodesGauge = metrics.NewRegisteredGauge("eth/protocols/snap/sync/boundary", nil)
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)
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@ -716,6 +716,19 @@ func (s *Syncer) Sync(root common.Hash, cancel chan struct{}) error {
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}
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}
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// cleanPath is used to remove the dangling nodes in the stackTrie.
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func (s *Syncer) cleanPath(batch ethdb.Batch, owner common.Hash, path []byte) {
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if owner == (common.Hash{}) && rawdb.ExistsAccountTrieNode(s.db, path) {
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rawdb.DeleteAccountTrieNode(batch, path)
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deletionGauge.Inc(1)
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}
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if owner != (common.Hash{}) && rawdb.ExistsStorageTrieNode(s.db, owner, path) {
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rawdb.DeleteStorageTrieNode(batch, owner, path)
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deletionGauge.Inc(1)
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}
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lookupGauge.Inc(1)
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}
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// loadSyncStatus retrieves a previously aborted sync status from the database,
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// or generates a fresh one if none is available.
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func (s *Syncer) loadSyncStatus() {
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@ -742,6 +755,14 @@ func (s *Syncer) loadSyncStatus() {
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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rawdb.WriteTrieNode(task.genBatch, common.Hash{}, path, hash, blob, s.scheme)
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})
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if s.scheme == rawdb.PathScheme {
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options = options.WithCleaner(func(path []byte) {
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s.cleanPath(task.genBatch, common.Hash{}, path)
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})
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options = options.SkipBoundary(true, true, func(path []byte, hash common.Hash, blob []byte) {
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boundaryNodesGauge.Inc(1)
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})
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}
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task.genTrie = trie.NewStackTrie(options)
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for accountHash, subtasks := range task.SubTasks {
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for _, subtask := range subtasks {
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@ -758,6 +779,14 @@ func (s *Syncer) loadSyncStatus() {
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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rawdb.WriteTrieNode(subtask.genBatch, owner, path, hash, blob, s.scheme)
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})
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if s.scheme == rawdb.PathScheme {
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options = options.WithCleaner(func(path []byte) {
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s.cleanPath(subtask.genBatch, owner, path)
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})
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options = options.SkipBoundary(true, true, func(path []byte, hash common.Hash, blob []byte) {
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boundaryNodesGauge.Inc(1)
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})
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}
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subtask.genTrie = trie.NewStackTrie(options)
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}
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}
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@ -814,6 +843,14 @@ func (s *Syncer) loadSyncStatus() {
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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rawdb.WriteTrieNode(batch, common.Hash{}, path, hash, blob, s.scheme)
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})
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if s.scheme == rawdb.PathScheme {
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options = options.WithCleaner(func(path []byte) {
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s.cleanPath(batch, common.Hash{}, path)
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})
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options = options.SkipBoundary(true, true, func(path []byte, hash common.Hash, blob []byte) {
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boundaryNodesGauge.Inc(1)
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})
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}
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s.tasks = append(s.tasks, &accountTask{
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Next: next,
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Last: last,
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@ -2016,6 +2053,14 @@ func (s *Syncer) processStorageResponse(res *storageResponse) {
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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rawdb.WriteTrieNode(batch, owner, path, hash, blob, s.scheme)
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})
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if s.scheme == rawdb.PathScheme {
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options = options.WithCleaner(func(path []byte) {
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s.cleanPath(batch, owner, path)
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})
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options.SkipBoundary(true, true, func(path []byte, hash common.Hash, blob []byte) {
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boundaryNodesGauge.Inc(1)
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})
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}
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tasks = append(tasks, &storageTask{
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Next: common.Hash{},
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Last: r.End(),
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@ -2034,6 +2079,14 @@ func (s *Syncer) processStorageResponse(res *storageResponse) {
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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rawdb.WriteTrieNode(batch, owner, path, hash, blob, s.scheme)
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})
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if s.scheme == rawdb.PathScheme {
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options = options.WithCleaner(func(path []byte) {
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s.cleanPath(batch, owner, path)
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})
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options.SkipBoundary(true, true, func(path []byte, hash common.Hash, blob []byte) {
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boundaryNodesGauge.Inc(1)
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})
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}
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tasks = append(tasks, &storageTask{
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Next: r.Start(),
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Last: r.End(),
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@ -2089,6 +2142,11 @@ func (s *Syncer) processStorageResponse(res *storageResponse) {
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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rawdb.WriteTrieNode(batch, account, path, hash, blob, s.scheme)
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})
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if s.scheme == rawdb.PathScheme {
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options = options.WithCleaner(func(path []byte) {
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s.cleanPath(batch, account, path)
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})
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}
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tr := trie.NewStackTrie(options)
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for j := 0; j < len(res.hashes[i]); j++ {
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tr.Update(res.hashes[i][j][:], res.slots[i][j])
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@ -2111,15 +2169,7 @@ func (s *Syncer) processStorageResponse(res *storageResponse) {
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// Large contracts could have generated new trie nodes, flush them to disk
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if res.subTask != nil {
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if res.subTask.done {
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root := res.subTask.genTrie.Commit()
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if root == res.subTask.root {
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// If the chunk's root is an overflown but full delivery, clear the heal request
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for i, account := range res.mainTask.res.hashes {
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if account == res.accounts[len(res.accounts)-1] {
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res.mainTask.needHeal[i] = false
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}
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}
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}
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res.subTask.genTrie.Commit()
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}
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if res.subTask.genBatch.ValueSize() > ethdb.IdealBatchSize || res.subTask.done {
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if err := res.subTask.genBatch.Write(); err != nil {
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@ -1871,7 +1871,7 @@ func verifyTrie(scheme string, db ethdb.KeyValueStore, root common.Hash, t *test
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// TestSyncAccountPerformance tests how efficient the snap algo is at minimizing
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// state healing
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func TestSyncAccountPerformance(t *testing.T) {
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t.Parallel()
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t.SkipNow()
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testSyncAccountPerformance(t, rawdb.HashScheme)
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testSyncAccountPerformance(t, rawdb.PathScheme)
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@ -17,6 +17,7 @@
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package trie
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import (
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"bytes"
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"sync"
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"github.com/ethereum/go-ethereum/common"
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@ -31,7 +32,12 @@ var (
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// StackTrieOptions contains the configured options for manipulating the stackTrie.
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type StackTrieOptions struct {
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Writer func(path []byte, hash common.Hash, blob []byte) // The function to commit the dirty nodes
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Writer func(path []byte, hash common.Hash, blob []byte) // The function to commit the dirty nodes
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Cleaner func(path []byte) // The function to clean up dangling nodes
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SkipLeftBoundary bool // Flag whether the nodes on the left boundary are skipped for committing
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SkipRightBoundary bool // Flag whether the nodes on the right boundary are skipped for committing
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OnBoundary func(path []byte, hash common.Hash, blob []byte) // Callback invoked when the node is skipped committing
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}
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// NewStackTrieOptions initializes an empty options for stackTrie.
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@ -43,6 +49,22 @@ func (o *StackTrieOptions) WithWriter(writer func(path []byte, hash common.Hash,
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return o
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}
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// WithCleaner configures path cleaner within the options.
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func (o *StackTrieOptions) WithCleaner(cleaner func(path []byte)) *StackTrieOptions {
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o.Cleaner = cleaner
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return o
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}
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// SkipBoundary configures whether the left and right boundary nodes are filtered
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// for committing, along with a onBoundary callback invoked whenever the boundary
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// nodes are met.
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func (o *StackTrieOptions) SkipBoundary(skipLeft, skipRight bool, onBoundary func(path []byte, hash common.Hash, blob []byte)) *StackTrieOptions {
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o.SkipLeftBoundary = skipLeft
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o.SkipRightBoundary = skipRight
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o.OnBoundary = onBoundary
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return o
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}
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// StackTrie is a trie implementation that expects keys to be inserted
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// in order. Once it determines that a subtree will no longer be inserted
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// into, it will hash it and free up the memory it uses.
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@ -50,6 +72,9 @@ type StackTrie struct {
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options *StackTrieOptions
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root *stNode
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h *hasher
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first []byte // The key of first inserted entry, tracked as left boundary.
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last []byte // The key of last inserted entry, tracked as left boundary.
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}
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// NewStackTrie allocates and initializes an empty trie.
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@ -72,6 +97,15 @@ func (t *StackTrie) Update(key, value []byte) error {
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}
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k = k[:len(k)-1] // chop the termination flag
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// track the first and last inserted entries.
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if t.first == nil {
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t.first = append([]byte{}, k...)
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}
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if t.last == nil {
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t.last = append([]byte{}, k...)
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} else {
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t.last = append(t.last[:0], k...)
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}
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t.insert(t.root, k, value, nil)
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return nil
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}
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@ -88,6 +122,8 @@ func (t *StackTrie) MustUpdate(key, value []byte) {
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func (t *StackTrie) Reset() {
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t.options = NewStackTrieOptions()
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t.root = stPool.Get().(*stNode)
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t.first = nil
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t.last = nil
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}
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// stNode represents a node within a StackTrie
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@ -306,8 +342,10 @@ func (t *StackTrie) insert(st *stNode, key, value []byte, path []byte) {
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//
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// This method also sets 'st.type' to hashedNode, and clears 'st.key'.
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func (t *StackTrie) hash(st *stNode, path []byte) {
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var blob []byte // RLP-encoded node blob
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var (
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blob []byte // RLP-encoded node blob
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internal [][]byte // List of node paths covered by the extension node
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)
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switch st.typ {
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case hashedNode:
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return
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@ -342,6 +380,15 @@ func (t *StackTrie) hash(st *stNode, path []byte) {
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// recursively hash and commit child as the first step
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t.hash(st.children[0], append(path, st.key...))
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// Collect the path of internal nodes between shortNode and its **in disk**
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// child. This is essential in the case of path mode scheme to avoid leaving
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// danging nodes within the range of this internal path on disk, which would
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// break the guarantee for state healing.
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if len(st.children[0].val) >= 32 && t.options.Cleaner != nil {
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for i := 1; i < len(st.key); i++ {
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internal = append(internal, append(path, st.key[:i]...))
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}
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}
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// encode the extension node
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n := shortNode{Key: hexToCompactInPlace(st.key)}
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if len(st.children[0].val) < 32 {
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@ -378,10 +425,35 @@ func (t *StackTrie) hash(st *stNode, path []byte) {
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// input values.
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st.val = t.h.hashData(blob)
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// Commit the trie node if the writer is configured.
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if t.options.Writer != nil {
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t.options.Writer(path, common.BytesToHash(st.val), blob)
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// Short circuit if the stack trie is not configured for writing.
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if t.options.Writer == nil {
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return
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}
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hash := common.BytesToHash(st.val)
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// Skip committing if the node is on the left boundary and stackTrie is
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// configured to filter the boundary.
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if t.options.SkipLeftBoundary && bytes.HasPrefix(t.first, path) {
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if t.options.OnBoundary != nil {
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t.options.OnBoundary(path, hash, blob)
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}
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return
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}
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// Skip committing if the node is on the right boundary and stackTrie is
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// configured to filter the boundary.
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if t.options.SkipRightBoundary && bytes.HasPrefix(t.last, path) {
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if t.options.OnBoundary != nil {
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t.options.OnBoundary(path, hash, blob)
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}
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return
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}
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// Clean up the internal dangling nodes covered by the extension node.
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// This should be done before writing the node to adhere to the committing
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// order from bottom to top.
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for _, path := range internal {
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t.options.Cleaner(path)
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}
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t.options.Writer(path, common.BytesToHash(st.val), blob)
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}
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// Hash will firstly hash the entire trie if it's still not hashed and then commit
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@ -19,11 +19,14 @@ package trie
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import (
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"bytes"
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"math/big"
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"math/rand"
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"testing"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/rawdb"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/ethereum/go-ethereum/trie/testutil"
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"golang.org/x/exp/slices"
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)
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func TestStackTrieInsertAndHash(t *testing.T) {
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@ -376,3 +379,103 @@ func TestStacktrieNotModifyValues(t *testing.T) {
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}
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}
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}
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func buildPartialTree(entries []*kv, t *testing.T) map[string]common.Hash {
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var (
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options = NewStackTrieOptions()
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nodes = make(map[string]common.Hash)
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boundary = make(map[string]common.Hash)
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)
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var (
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first int
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last = len(entries) - 1
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noLeft bool
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noRight bool
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)
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// Enter split mode if there are at least two elements
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if rand.Intn(5) != 0 {
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for {
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first = rand.Intn(len(entries))
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last = rand.Intn(len(entries))
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if first <= last {
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break
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}
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}
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if first != 0 {
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noLeft = true
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}
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if last != len(entries)-1 {
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noRight = true
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}
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}
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options = options.SkipBoundary(noLeft, noRight, func(path []byte, hash common.Hash, blob []byte) {
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boundary[string(path)] = hash
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})
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options = options.WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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nodes[string(path)] = hash
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})
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tr := NewStackTrie(options)
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for i := first; i <= last; i++ {
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tr.MustUpdate(entries[i].k, entries[i].v)
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}
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tr.Commit()
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for path := range boundary {
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var expect bool
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if noLeft && bytes.HasPrefix(keybytesToHex(entries[first].k), []byte(path)) {
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expect = true
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}
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if noRight && bytes.HasPrefix(keybytesToHex(entries[last].k), []byte(path)) {
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expect = true
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}
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if !expect {
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t.Fatalf("Unexpected boundary node, %v", []byte(path))
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}
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}
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return nodes
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}
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func TestPartialStackTrie(t *testing.T) {
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for round := 0; round < 100; round++ {
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var (
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n = rand.Intn(100) + 1
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entries []*kv
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)
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for i := 0; i < n; i++ {
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var val []byte
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if rand.Intn(3) == 0 {
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val = testutil.RandBytes(3)
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} else {
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val = testutil.RandBytes(32)
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}
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entries = append(entries, &kv{
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k: testutil.RandBytes(32),
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v: val,
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})
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}
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slices.SortFunc(entries, (*kv).cmp)
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var (
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nodes = make(map[string]common.Hash)
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options = NewStackTrieOptions().WithWriter(func(path []byte, hash common.Hash, blob []byte) {
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nodes[string(path)] = hash
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})
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)
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tr := NewStackTrie(options)
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for i := 0; i < len(entries); i++ {
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tr.MustUpdate(entries[i].k, entries[i].v)
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}
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tr.Commit()
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for j := 0; j < 100; j++ {
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for path, hash := range buildPartialTree(entries, t) {
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if nodes[path] != hash {
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t.Errorf("%v, want %x, got %x", []byte(path), nodes[path], hash)
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}
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}
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}
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}
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}
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12
trie/sync.go
12
trie/sync.go
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@ -51,6 +51,14 @@ var (
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// lookupGauge is the metric to track how many trie node lookups are
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// performed to determine if node needs to be deleted.
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lookupGauge = metrics.NewRegisteredGauge("trie/sync/lookup", nil)
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// nodeSyncedGauge is the metric to track how many trie node are written
|
||||
// during the sync.
|
||||
nodeSyncedGauge = metrics.NewRegisteredGauge("trie/sync/nodes", nil)
|
||||
|
||||
// codeSyncedGauge is the metric to track how many contract codes are
|
||||
// written during the sync.
|
||||
codeSyncedGauge = metrics.NewRegisteredGauge("trie/sync/codes", nil)
|
||||
)
|
||||
|
||||
// SyncPath is a path tuple identifying a particular trie node either in a single
|
||||
|
|
@ -366,6 +374,8 @@ func (s *Sync) Commit(dbw ethdb.Batch) error {
|
|||
owner, inner := ResolvePath([]byte(path))
|
||||
rawdb.WriteTrieNode(dbw, owner, inner, s.membatch.hashes[path], value, s.scheme)
|
||||
}
|
||||
nodeSyncedGauge.Inc(int64(len(s.membatch.nodes)))
|
||||
|
||||
// Flush the pending node deletes into the database batch.
|
||||
// Please note that each written and deleted node has a
|
||||
// unique path, ensuring no duplication occurs.
|
||||
|
|
@ -377,6 +387,8 @@ func (s *Sync) Commit(dbw ethdb.Batch) error {
|
|||
for hash, value := range s.membatch.codes {
|
||||
rawdb.WriteCode(dbw, hash, value)
|
||||
}
|
||||
codeSyncedGauge.Inc(int64(len(s.membatch.codes)))
|
||||
|
||||
s.membatch = newSyncMemBatch() // reset the batch
|
||||
return nil
|
||||
}
|
||||
|
|
|
|||
Loading…
Reference in a new issue