trie: rework trie hasher

This commit is contained in:
Gary Rong 2025-05-19 11:37:41 +08:00
parent a56558d092
commit a80f906f09
7 changed files with 88 additions and 107 deletions

View file

@ -17,6 +17,7 @@
package trie
import (
"fmt"
"sync"
"github.com/ethereum/go-ethereum/crypto"
@ -54,7 +55,7 @@ func returnHasherToPool(h *hasher) {
}
// hash collapses a node down into a hash node.
func (h *hasher) hash(n node, force bool) node {
func (h *hasher) hash(n node, force bool) []byte {
// Return the cached hash if it's available
if hash, _ := n.cache(); hash != nil {
return hash
@ -62,101 +63,86 @@ func (h *hasher) hash(n node, force bool) node {
// Trie not processed yet, walk the children
switch n := n.(type) {
case *shortNode:
collapsed := h.hashShortNodeChildren(n)
hashed := h.shortnodeToHash(collapsed, force)
if hn, ok := hashed.(hashNode); ok {
n.flags.hash = hn
} else {
n.flags.hash = nil
enc := h.encodeShortNode(n)
if len(enc) < 32 && !force {
buf := make([]byte, len(enc))
copy(buf, enc)
return buf // Nodes smaller than 32 bytes are stored inside their parent
}
return hashed
hash := h.hashData(enc)
n.flags.hash = hash
return hash
case *fullNode:
collapsed := h.hashFullNodeChildren(n)
hashed := h.fullnodeToHash(collapsed, force)
if hn, ok := hashed.(hashNode); ok {
n.flags.hash = hn
} else {
n.flags.hash = nil
enc := h.encodeFullNode(n)
if len(enc) < 32 && !force {
buf := make([]byte, len(enc))
copy(buf, enc)
return buf // Nodes smaller than 32 bytes are stored inside their parent
}
return hashed
default:
// Value and hash nodes don't have children, so they're left as were
hash := h.hashData(enc)
n.flags.hash = hash
return hash
case hashNode:
// hash nodes don't have children, so they're left as were
return n
}
}
// hashShortNodeChildren returns a copy of the supplied shortNode, with its child
// being replaced by either the hash or an embedded node if the child is small.
func (h *hasher) hashShortNodeChildren(n *shortNode) *shortNode {
var collapsed shortNode
collapsed.Key = hexToCompact(n.Key)
switch n.Val.(type) {
case *fullNode, *shortNode:
collapsed.Val = h.hash(n.Val, false)
default:
collapsed.Val = n.Val
panic(fmt.Errorf("unexpected node type, %T", n))
}
return &collapsed
}
// hashFullNodeChildren returns a copy of the supplied fullNode, with its child
func (h *hasher) encodeShortNode(n *shortNode) []byte {
// Encode leaf node
if hasTerm(n.Key) {
var ln leafNodeEncoder
ln.Key = hexToCompact(n.Key)
ln.Val = n.Val.(valueNode)
ln.encode(h.encbuf)
return h.encodedBytes()
}
// Encode extension node
var en extNodeEncoder
en.Key = hexToCompact(n.Key)
en.Val = h.hash(n.Val, false)
en.encode(h.encbuf)
return h.encodedBytes()
}
// encodeFullNode returns a copy of the supplied fullNode, with its child
// being replaced by either the hash or an embedded node if the child is small.
func (h *hasher) hashFullNodeChildren(n *fullNode) *fullNode {
var children [17]node
func (h *hasher) encodeFullNode(n *fullNode) []byte {
var fn fullnodeEncoder
if h.parallel {
var wg sync.WaitGroup
for i := 0; i < 16; i++ {
if child := n.Children[i]; child != nil {
wg.Add(1)
go func(i int) {
hasher := newHasher(false)
children[i] = hasher.hash(child, false)
returnHasherToPool(hasher)
wg.Done()
}(i)
} else {
children[i] = nilValueNode
if n.Children[i] == nil {
continue
}
wg.Add(1)
go func(i int) {
hasher := newHasher(false)
if child := n.Children[i]; child != nil {
fn.Children[i] = hasher.hash(child, false)
}
returnHasherToPool(hasher)
wg.Done()
}(i)
}
wg.Wait()
} else {
for i := 0; i < 16; i++ {
if child := n.Children[i]; child != nil {
children[i] = h.hash(child, false)
} else {
children[i] = nilValueNode
fn.Children[i] = h.hash(child, false)
}
}
}
if n.Children[16] != nil {
children[16] = n.Children[16]
fn.Children[16] = n.Children[16].(valueNode)
}
return &fullNode{flags: nodeFlag{}, Children: children}
}
// shortNodeToHash computes the hash of the given shortNode. The shortNode must
// first be collapsed, with its key converted to compact form. If the RLP-encoded
// node data is smaller than 32 bytes, the node itself is returned.
func (h *hasher) shortnodeToHash(n *shortNode, force bool) node {
n.encode(h.encbuf)
enc := h.encodedBytes()
if len(enc) < 32 && !force {
return n // Nodes smaller than 32 bytes are stored inside their parent
}
return h.hashData(enc)
}
// fullnodeToHash computes the hash of the given fullNode. If the RLP-encoded
// node data is smaller than 32 bytes, the node itself is returned.
func (h *hasher) fullnodeToHash(n *fullNode, force bool) node {
n.encode(h.encbuf)
enc := h.encodedBytes()
if len(enc) < 32 && !force {
return n // Nodes smaller than 32 bytes are stored inside their parent
}
return h.hashData(enc)
fn.encode(h.encbuf)
return h.encodedBytes()
}
// encodedBytes returns the result of the last encoding operation on h.encbuf.
@ -176,8 +162,8 @@ func (h *hasher) encodedBytes() []byte {
}
// hashData hashes the provided data
func (h *hasher) hashData(data []byte) hashNode {
n := make(hashNode, 32)
func (h *hasher) hashData(data []byte) []byte {
n := make([]byte, 32)
h.sha.Reset()
h.sha.Write(data)
h.sha.Read(n)
@ -196,16 +182,13 @@ func (h *hasher) hashDataTo(dst, data []byte) {
// node (for later RLP encoding) as well as the hashed node -- unless the
// node is smaller than 32 bytes, in which case it will be returned as is.
// This method does not do anything on value- or hash-nodes.
func (h *hasher) proofHash(original node) (collapsed, hashed node) {
func (h *hasher) proofHash(original node) []byte {
switch n := original.(type) {
case *shortNode:
sn := h.hashShortNodeChildren(n)
return sn, h.shortnodeToHash(sn, false)
return h.encodeShortNode(n)
case *fullNode:
fn := h.hashFullNodeChildren(n)
return fn, h.fullnodeToHash(fn, false)
return h.encodeFullNode(n)
default:
// Value and hash nodes don't have children, so they're left as were
return n, n
panic(fmt.Errorf("unexpected node type, %T", original))
}
}

View file

@ -20,7 +20,6 @@ import (
"bytes"
"container/heap"
"errors"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
)
@ -240,9 +239,9 @@ func (it *nodeIterator) LeafProof() [][]byte {
for i, item := range it.stack[:len(it.stack)-1] {
// Gather nodes that end up as hash nodes (or the root)
node, hashed := hasher.proofHash(item.node)
if _, ok := hashed.(hashNode); ok || i == 0 {
proofs = append(proofs, nodeToBytes(node))
enc := hasher.proofHash(item.node)
if len(enc) >= 32 || i == 0 {
proofs = append(proofs, common.CopyBytes(enc))
}
}
return proofs

View file

@ -68,10 +68,6 @@ type (
}
)
// nilValueNode is used when collapsing internal trie nodes for hashing, since
// unset children need to serialize correctly.
var nilValueNode = valueNode(nil)
// EncodeRLP encodes a full node into the consensus RLP format.
func (n *fullNode) EncodeRLP(w io.Writer) error {
eb := rlp.NewEncoderBuffer(w)

View file

@ -42,13 +42,19 @@ func (n *fullNode) encode(w rlp.EncoderBuffer) {
func (n *fullnodeEncoder) encode(w rlp.EncoderBuffer) {
offset := w.List()
for _, c := range n.Children {
for i, c := range n.Children {
if c == nil {
w.Write(rlp.EmptyString)
} else if len(c) < 32 {
w.Write(c) // rawNode
} else {
w.WriteBytes(c) // hashNode
if i == 16 {
w.WriteBytes(c) // valueNode
} else {
if len(c) < 32 {
w.Write(c) // rawNode
} else {
w.WriteBytes(c) // hashNode
}
}
}
}
w.ListEnd(offset)

View file

@ -22,6 +22,7 @@ import (
"fmt"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/log"
)
@ -85,16 +86,12 @@ func (t *Trie) Prove(key []byte, proofDb ethdb.KeyValueWriter) error {
defer returnHasherToPool(hasher)
for i, n := range nodes {
var hn node
n, hn = hasher.proofHash(n)
if hash, ok := hn.(hashNode); ok || i == 0 {
// If the node's database encoding is a hash (or is the
// root node), it becomes a proof element.
enc := nodeToBytes(n)
if !ok {
hash = hasher.hashData(enc)
}
proofDb.Put(hash, enc)
enc := hasher.proofHash(n)
if len(enc) == 32 {
fmt.Println("DEBUG")
}
if len(enc) >= 32 || i == 0 {
proofDb.Put(crypto.Keccak256(enc), enc)
}
}
return nil

View file

@ -626,7 +626,7 @@ func (t *Trie) resolveAndTrack(n hashNode, prefix []byte) (node, error) {
// Hash returns the root hash of the trie. It does not write to the
// database and can be used even if the trie doesn't have one.
func (t *Trie) Hash() common.Hash {
return common.BytesToHash(t.hashRoot().(hashNode))
return common.BytesToHash(t.hashRoot())
}
// Commit collects all dirty nodes in the trie and replaces them with the
@ -677,9 +677,9 @@ func (t *Trie) Commit(collectLeaf bool) (common.Hash, *trienode.NodeSet) {
}
// hashRoot calculates the root hash of the given trie
func (t *Trie) hashRoot() node {
func (t *Trie) hashRoot() []byte {
if t.root == nil {
return hashNode(types.EmptyRootHash.Bytes())
return types.EmptyRootHash.Bytes()
}
// If the number of changes is below 100, we let one thread handle it
h := newHasher(t.unhashed >= 100)

View file

@ -863,7 +863,7 @@ func (s *spongeDb) Flush() {
s.sponge.Write([]byte(key))
s.sponge.Write([]byte(s.values[key]))
}
fmt.Println(len(s.keys))
//fmt.Println(len(s.keys))
}
// spongeBatch is a dummy batch which immediately writes to the underlying spongedb