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https://gitlab.com/pulsechaincom/go-pulse.git
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ethdb/memorydb, trie: reduced allocations (#28473)
* trie: use pooling of iterator states in iterator The node iterator burns through a lot of memory while iterating a trie, and a lot of that can be avoided by using a fairly small pool (max 40 items). name old time/op new time/op delta Iterator-8 6.22ms ± 3% 5.40ms ± 6% -13.18% (p=0.008 n=5+5) name old alloc/op new alloc/op delta Iterator-8 2.36MB ± 0% 1.67MB ± 0% -29.23% (p=0.008 n=5+5) name old allocs/op new allocs/op delta Iterator-8 37.0k ± 0% 29.8k ± 0% ~ (p=0.079 n=4+5) * ethdb/memorydb: avoid one copying of key By making the transformation from []byte to string at an earlier point, we save an allocation which otherwise happens later on. name old time/op new time/op delta BatchAllocs-8 412µs ± 6% 382µs ± 2% -7.18% (p=0.016 n=5+4) name old alloc/op new alloc/op delta BatchAllocs-8 480kB ± 0% 490kB ± 0% +1.93% (p=0.008 n=5+5) name old allocs/op new allocs/op delta BatchAllocs-8 3.03k ± 0% 2.03k ± 0% -32.98% (p=0.008 n=5+5)
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a75a2d6db6
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@ -207,7 +207,7 @@ func (db *Database) Len() int {
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// keyvalue is a key-value tuple tagged with a deletion field to allow creating
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// memory-database write batches.
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type keyvalue struct {
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key []byte
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key string
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value []byte
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delete bool
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}
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@ -222,14 +222,14 @@ type batch struct {
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// Put inserts the given value into the batch for later committing.
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func (b *batch) Put(key, value []byte) error {
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b.writes = append(b.writes, keyvalue{common.CopyBytes(key), common.CopyBytes(value), false})
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b.writes = append(b.writes, keyvalue{string(key), common.CopyBytes(value), false})
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b.size += len(key) + len(value)
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return nil
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}
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// Delete inserts the a key removal into the batch for later committing.
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func (b *batch) Delete(key []byte) error {
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b.writes = append(b.writes, keyvalue{common.CopyBytes(key), nil, true})
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b.writes = append(b.writes, keyvalue{string(key), nil, true})
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b.size += len(key)
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return nil
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}
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@ -249,10 +249,10 @@ func (b *batch) Write() error {
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}
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for _, keyvalue := range b.writes {
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if keyvalue.delete {
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delete(b.db.db, string(keyvalue.key))
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delete(b.db.db, keyvalue.key)
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continue
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}
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b.db.db[string(keyvalue.key)] = keyvalue.value
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b.db.db[keyvalue.key] = keyvalue.value
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}
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return nil
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}
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@ -267,12 +267,12 @@ func (b *batch) Reset() {
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func (b *batch) Replay(w ethdb.KeyValueWriter) error {
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for _, keyvalue := range b.writes {
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if keyvalue.delete {
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if err := w.Delete(keyvalue.key); err != nil {
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if err := w.Delete([]byte(keyvalue.key)); err != nil {
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return err
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}
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continue
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}
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if err := w.Put(keyvalue.key, keyvalue.value); err != nil {
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if err := w.Put([]byte(keyvalue.key), keyvalue.value); err != nil {
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return err
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}
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}
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@ -17,6 +17,7 @@
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package memorydb
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import (
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"encoding/binary"
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"testing"
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"github.com/ethereum/go-ethereum/ethdb"
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@ -30,3 +31,20 @@ func TestMemoryDB(t *testing.T) {
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})
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})
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}
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// BenchmarkBatchAllocs measures the time/allocs for storing 120 kB of data
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func BenchmarkBatchAllocs(b *testing.B) {
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b.ReportAllocs()
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var key = make([]byte, 20)
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var val = make([]byte, 100)
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// 120 * 1_000 -> 120_000 == 120kB
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for i := 0; i < b.N; i++ {
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batch := New().NewBatch()
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for j := uint64(0); j < 1000; j++ {
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binary.BigEndian.PutUint64(key, j)
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binary.BigEndian.PutUint64(val, j)
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batch.Put(key, val)
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}
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batch.Write()
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}
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}
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@ -144,7 +144,8 @@ type nodeIterator struct {
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path []byte // Path to the current node
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err error // Failure set in case of an internal error in the iterator
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resolver NodeResolver // optional node resolver for avoiding disk hits
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resolver NodeResolver // optional node resolver for avoiding disk hits
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pool []*nodeIteratorState // local pool for iteratorstates
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}
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// errIteratorEnd is stored in nodeIterator.err when iteration is done.
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@ -172,6 +173,24 @@ func newNodeIterator(trie *Trie, start []byte) NodeIterator {
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return it
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}
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func (it *nodeIterator) putInPool(item *nodeIteratorState) {
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if len(it.pool) < 40 {
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item.node = nil
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it.pool = append(it.pool, item)
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}
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}
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func (it *nodeIterator) getFromPool() *nodeIteratorState {
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idx := len(it.pool) - 1
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if idx < 0 {
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return new(nodeIteratorState)
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}
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el := it.pool[idx]
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it.pool[idx] = nil
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it.pool = it.pool[:idx]
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return el
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}
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func (it *nodeIterator) AddResolver(resolver NodeResolver) {
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it.resolver = resolver
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}
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@ -423,8 +442,9 @@ func (st *nodeIteratorState) resolve(it *nodeIterator, path []byte) error {
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return nil
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}
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func findChild(n *fullNode, index int, path []byte, ancestor common.Hash) (node, *nodeIteratorState, []byte, int) {
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func (it *nodeIterator) findChild(n *fullNode, index int, ancestor common.Hash) (node, *nodeIteratorState, []byte, int) {
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var (
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path = it.path
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child node
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state *nodeIteratorState
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childPath []byte
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@ -433,13 +453,12 @@ func findChild(n *fullNode, index int, path []byte, ancestor common.Hash) (node,
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if n.Children[index] != nil {
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child = n.Children[index]
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hash, _ := child.cache()
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state = &nodeIteratorState{
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hash: common.BytesToHash(hash),
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node: child,
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parent: ancestor,
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index: -1,
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pathlen: len(path),
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}
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state = it.getFromPool()
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state.hash = common.BytesToHash(hash)
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state.node = child
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state.parent = ancestor
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state.index = -1
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state.pathlen = len(path)
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childPath = append(childPath, path...)
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childPath = append(childPath, byte(index))
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return child, state, childPath, index
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@ -452,7 +471,7 @@ func (it *nodeIterator) nextChild(parent *nodeIteratorState, ancestor common.Has
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switch node := parent.node.(type) {
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case *fullNode:
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// Full node, move to the first non-nil child.
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if child, state, path, index := findChild(node, parent.index+1, it.path, ancestor); child != nil {
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if child, state, path, index := it.findChild(node, parent.index+1, ancestor); child != nil {
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parent.index = index - 1
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return state, path, true
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}
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@ -460,13 +479,12 @@ func (it *nodeIterator) nextChild(parent *nodeIteratorState, ancestor common.Has
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// Short node, return the pointer singleton child
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if parent.index < 0 {
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hash, _ := node.Val.cache()
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state := &nodeIteratorState{
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hash: common.BytesToHash(hash),
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node: node.Val,
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parent: ancestor,
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index: -1,
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pathlen: len(it.path),
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}
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state := it.getFromPool()
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state.hash = common.BytesToHash(hash)
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state.node = node.Val
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state.parent = ancestor
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state.index = -1
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state.pathlen = len(it.path)
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path := append(it.path, node.Key...)
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return state, path, true
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}
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@ -480,7 +498,7 @@ func (it *nodeIterator) nextChildAt(parent *nodeIteratorState, ancestor common.H
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switch n := parent.node.(type) {
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case *fullNode:
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// Full node, move to the first non-nil child before the desired key position
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child, state, path, index := findChild(n, parent.index+1, it.path, ancestor)
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child, state, path, index := it.findChild(n, parent.index+1, ancestor)
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if child == nil {
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// No more children in this fullnode
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return parent, it.path, false
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@ -492,7 +510,7 @@ func (it *nodeIterator) nextChildAt(parent *nodeIteratorState, ancestor common.H
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}
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// The child is before the seek position. Try advancing
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for {
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nextChild, nextState, nextPath, nextIndex := findChild(n, index+1, it.path, ancestor)
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nextChild, nextState, nextPath, nextIndex := it.findChild(n, index+1, ancestor)
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// If we run out of children, or skipped past the target, return the
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// previous one
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if nextChild == nil || bytes.Compare(nextPath, key) >= 0 {
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@ -506,13 +524,12 @@ func (it *nodeIterator) nextChildAt(parent *nodeIteratorState, ancestor common.H
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// Short node, return the pointer singleton child
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if parent.index < 0 {
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hash, _ := n.Val.cache()
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state := &nodeIteratorState{
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hash: common.BytesToHash(hash),
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node: n.Val,
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parent: ancestor,
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index: -1,
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pathlen: len(it.path),
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}
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state := it.getFromPool()
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state.hash = common.BytesToHash(hash)
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state.node = n.Val
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state.parent = ancestor
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state.index = -1
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state.pathlen = len(it.path)
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path := append(it.path, n.Key...)
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return state, path, true
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}
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@ -533,6 +550,8 @@ func (it *nodeIterator) pop() {
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it.path = it.path[:last.pathlen]
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it.stack[len(it.stack)-1] = nil
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it.stack = it.stack[:len(it.stack)-1]
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// last is now unused
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it.putInPool(last)
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}
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func compareNodes(a, b NodeIterator) int {
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@ -616,3 +616,15 @@ func isTrieNode(scheme string, key, val []byte) (bool, []byte, common.Hash) {
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}
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return true, path, hash
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}
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func BenchmarkIterator(b *testing.B) {
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diskDb, srcDb, tr, _ := makeTestTrie(rawdb.HashScheme)
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root := tr.Hash()
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b.ReportAllocs()
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b.ResetTimer()
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for i := 0; i < b.N; i++ {
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if err := checkTrieConsistency(diskDb, srcDb.Scheme(), root, false); err != nil {
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b.Fatal(err)
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}
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}
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}
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@ -571,7 +571,7 @@ func testIncompleteSync(t *testing.T, scheme string) {
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hash := crypto.Keccak256Hash(result.Data)
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if hash != root {
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addedKeys = append(addedKeys, result.Path)
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addedHashes = append(addedHashes, crypto.Keccak256Hash(result.Data))
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addedHashes = append(addedHashes, hash)
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}
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}
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// Fetch the next batch to retrieve
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