pathdb: add bloomfilter to pathdb difflayer

This commit is contained in:
Fynn 2024-05-29 10:06:12 +08:00
parent 3e896c875a
commit f31105d285
4 changed files with 197 additions and 1 deletions

View file

@ -17,15 +17,91 @@
package pathdb package pathdb
import ( import (
"encoding/binary"
"fmt" "fmt"
"math"
"math/rand"
"sync" "sync"
"time"
"github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/log" "github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/trie/trienode" "github.com/ethereum/go-ethereum/trie/trienode"
"github.com/ethereum/go-ethereum/trie/triestate" "github.com/ethereum/go-ethereum/trie/triestate"
bloomfilter "github.com/holiman/bloomfilter/v2"
) )
var (
// aggregatorMemoryLimit is the maximum size of the bottom-most diff layer
// that aggregates the writes from above until it's flushed into the disk
// layer.
//
// Note, bumping this up might drastically increase the size of the bloom
// filters that's stored in every diff layer. Don't do that without fully
// understanding all the implications.
aggregatorMemoryLimit = uint64(4 * 1024 * 1024)
// aggregatorItemLimit is an approximate number of items that will end up
// in the aggregator layer before it's flushed out to disk. A plain account
// weighs around 14B (+hash), a storage slot 32B (+hash), a deleted slot
// 0B (+hash). Slots are mostly set/unset in lockstep, so that average at
// 16B (+hash). All in all, the average entry seems to be 15+32=47B. Use a
// smaller number to be on the safe side.
aggregatorItemLimit = aggregatorMemoryLimit / 42
// bloomTargetError is the target false positive rate when the aggregator
// layer is at its fullest. The actual value will probably move around up
// and down from this number, it's mostly a ballpark figure.
//
// Note, dropping this down might drastically increase the size of the bloom
// filters that's stored in every diff layer. Don't do that without fully
// understanding all the implications.
bloomTargetError = 0.02
// bloomSize is the ideal bloom filter size given the maximum number of items
// it's expected to hold and the target false positive error rate.
bloomSize = math.Ceil(float64(aggregatorItemLimit) * math.Log(bloomTargetError) / math.Log(1/math.Pow(2, math.Log(2))))
// bloomFuncs is the ideal number of bits a single entry should set in the
// bloom filter to keep its size to a minimum (given it's size and maximum
// entry count).
bloomFuncs = math.Round((bloomSize / float64(aggregatorItemLimit)) * math.Log(2))
// the bloom offsets are runtime constants which determines which part of the
// account/storage hash the hasher functions looks at, to determine the
// bloom key for an account/slot. This is randomized at init(), so that the
// global population of nodes do not all display the exact same behaviour with
// regards to bloom content
bloomNodeHasherOffset = 0
)
func init() {
// Init the bloom offsets in the range [0:24] (requires 8 bytes)
bloomNodeHasherOffset = rand.Intn(25)
}
func nodeBloomHash(h common.Hash, p []byte) uint64 {
return binary.BigEndian.Uint64(h[bloomNodeHasherOffset:bloomNodeHasherOffset+8]) ^ pathBloomHash(p)
}
func pathBloomHash(p []byte) uint64 {
if len(p)&1 != 0 {
panic("can't convert hex key of odd length")
}
hashLen := len(p) / 2
if hashLen > 8 {
panic("hash value too long")
}
var hashValue uint64
for i := 0; i < hashLen; i++ {
hashValue <<= 8
hashValue |= uint64(p[i*2])<<4 | uint64(p[i*2+1])
}
return (uint64(hashLen) << 32) | (hashValue << 1)
}
// diffLayer represents a collection of modifications made to the in-memory tries // diffLayer represents a collection of modifications made to the in-memory tries
// along with associated state changes after running a block on top. // along with associated state changes after running a block on top.
// //
@ -42,6 +118,10 @@ type diffLayer struct {
parent layer // Parent layer modified by this one, never nil, **can be changed** parent layer // Parent layer modified by this one, never nil, **can be changed**
lock sync.RWMutex // Lock used to protect parent lock sync.RWMutex // Lock used to protect parent
origin *diskLayer
diffed *bloomfilter.Filter // Bloom filter tracking all the diffed items up to the disk layer
selfDiffed *bloomfilter.Filter // Bloom filter tracking all the diffed items of its own
} }
// newDiffLayer creates a new diff layer on top of an existing layer. // newDiffLayer creates a new diff layer on top of an existing layer.
@ -58,6 +138,15 @@ func newDiffLayer(parent layer, root common.Hash, id uint64, block uint64, nodes
states: states, states: states,
parent: parent, parent: parent,
} }
switch l := parent.(type) {
case *diskLayer:
dl.rebloom(l)
case *diffLayer:
dl.rebloom(l.origin)
default:
panic("unknown parent type")
}
for _, subset := range nodes { for _, subset := range nodes {
for path, n := range subset { for path, n := range subset {
dl.memory += uint64(n.Size() + len(path)) dl.memory += uint64(n.Size() + len(path))
@ -75,6 +164,53 @@ func newDiffLayer(parent layer, root common.Hash, id uint64, block uint64, nodes
return dl return dl
} }
// rebloom discards the layer's current bloom and rebuilds it from scratch based
// on the parent's and the local diffs.
func (dl *diffLayer) rebloom(origin *diskLayer) {
dl.lock.Lock()
defer dl.lock.Unlock()
defer func(start time.Time) {
bloomIndexTimer.Update(time.Since(start))
}(time.Now())
// Inject the new origin that triggered the rebloom
dl.origin = origin
// Retrieve the parent bloom or create a fresh empty one
if parent, ok := dl.parent.(*diffLayer); ok {
parent.lock.RLock()
dl.diffed, _ = parent.diffed.Copy()
parent.lock.RUnlock()
} else {
if dl.selfDiffed == nil {
dl.diffed, _ = bloomfilter.New(uint64(bloomSize), uint64(bloomFuncs))
} else {
dl.diffed, _ = dl.selfDiffed.NewCompatible()
}
}
if dl.selfDiffed == nil {
dl.selfDiffed, _ = dl.diffed.NewCompatible()
for owner, subset := range dl.nodes {
for path, _ := range subset {
dl.selfDiffed.AddHash(nodeBloomHash(owner, []byte(path)))
}
}
}
err := dl.diffed.UnionInPlace(dl.selfDiffed)
if err != nil {
log.Error("diff layer bloom filter failed to union in place", "id", dl.id, "err", err)
}
// Calculate the current false positive rate and update the error rate meter.
// This is a bit cheating because subsequent layers will overwrite it, but it
// should be fine, we're only interested in ballpark figures.
k := float64(dl.diffed.K())
n := float64(dl.diffed.N())
m := float64(dl.diffed.M())
bloomErrorGauge.Update(math.Pow(1.0-math.Exp((-k)*(n+0.5)/(m-1)), k))
}
// rootHash implements the layer interface, returning the root hash of // rootHash implements the layer interface, returning the root hash of
// corresponding state. // corresponding state.
func (dl *diffLayer) rootHash() common.Hash { func (dl *diffLayer) rootHash() common.Hash {
@ -97,7 +233,7 @@ func (dl *diffLayer) parentLayer() layer {
// node implements the layer interface, retrieving the trie node blob with the // node implements the layer interface, retrieving the trie node blob with the
// provided node information. No error will be returned if the node is not found. // provided node information. No error will be returned if the node is not found.
func (dl *diffLayer) node(owner common.Hash, path []byte, depth int) ([]byte, common.Hash, *nodeLoc, error) { func (dl *diffLayer) nodeInternal(owner common.Hash, path []byte, depth int) ([]byte, common.Hash, *nodeLoc, error) {
// Hold the lock, ensure the parent won't be changed during the // Hold the lock, ensure the parent won't be changed during the
// state accessing. // state accessing.
dl.lock.RLock() dl.lock.RLock()
@ -114,10 +250,33 @@ func (dl *diffLayer) node(owner common.Hash, path []byte, depth int) ([]byte, co
return n.Blob, n.Hash, &nodeLoc{loc: locDiffLayer, depth: depth}, nil return n.Blob, n.Hash, &nodeLoc{loc: locDiffLayer, depth: depth}, nil
} }
} }
// Trie node unknown to this layer, resolve from parent // Trie node unknown to this layer, resolve from parent
if diff, ok := dl.parent.(*diffLayer); ok {
return diff.nodeInternal(owner, path, depth+1)
}
// Failed to resolve through diff layers, fallback to disk layer
return dl.parent.node(owner, path, depth+1) return dl.parent.node(owner, path, depth+1)
} }
// Node implements the layer interface, retrieving the trie node blob with the
// provided node information. No error will be returned if the node is not found.
func (dl *diffLayer) node(owner common.Hash, path []byte, depth int) ([]byte, common.Hash, *nodeLoc, error) {
dl.lock.RLock()
defer dl.lock.RUnlock()
var origin *diskLayer
hit := dl.diffed.ContainsHash(nodeBloomHash(owner, path))
if !hit {
origin = dl.origin // extract origin while holding the lock
}
if origin != nil {
return origin.node(owner, path, depth+1)
}
return dl.nodeInternal(owner, path, 0)
}
// update implements the layer interface, creating a new layer on top of the // update implements the layer interface, creating a new layer on top of the
// existing layer tree with the specified data items. // existing layer tree with the specified data items.
func (dl *diffLayer) update(root common.Hash, id uint64, block uint64, nodes map[common.Hash]map[string]*trienode.Node, states *triestate.Set) *diffLayer { func (dl *diffLayer) update(root common.Hash, id uint64, block uint64, nodes map[common.Hash]map[string]*trienode.Node, states *triestate.Set) *diffLayer {

View file

@ -18,6 +18,7 @@ package pathdb
import ( import (
"bytes" "bytes"
"fmt"
"testing" "testing"
"github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/common"
@ -25,6 +26,7 @@ import (
"github.com/ethereum/go-ethereum/crypto" "github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/internal/testrand" "github.com/ethereum/go-ethereum/internal/testrand"
"github.com/ethereum/go-ethereum/trie/trienode" "github.com/ethereum/go-ethereum/trie/trienode"
"github.com/stretchr/testify/assert"
) )
func emptyLayer() *diskLayer { func emptyLayer() *diskLayer {
@ -170,3 +172,20 @@ func BenchmarkJournal(b *testing.B) {
layer.journal(new(bytes.Buffer)) layer.journal(new(bytes.Buffer))
} }
} }
func TestBloomHash(t *testing.T) {
n1 := nodeBloomHash(common.Hash{}, common.Hex2Bytes("0101"))
n2 := nodeBloomHash(common.Hash{}, common.Hex2Bytes("00000101"))
n3 := nodeBloomHash(common.Hash{}, common.Hex2Bytes("0000000000000000000000000101"))
n4 := nodeBloomHash(common.HexToHash("0xfffffffffffffffffffffffffffffffffffffffffffffff1ffffdfffffffffaf"), common.Hex2Bytes("0101"))
n5 := nodeBloomHash(common.HexToHash("0xf1234ffffffffffffffffffffffffffffffffffffffffff1ffffdfffffffffaf"), common.Hex2Bytes("00000101"))
fmt.Printf("hash: %x\n", n1)
fmt.Printf("hash: %x\n", n2)
fmt.Printf("hash: %x\n", n3)
fmt.Printf("hash: %x\n", n4)
fmt.Printf("hash: %x\n", n5)
assert.NotEqual(t, n1, n2)
assert.NotEqual(t, n1, n3)
assert.NotEqual(t, n1, n4)
assert.NotEqual(t, n4, n5)
}

View file

@ -145,6 +145,7 @@ func (tree *layerTree) cap(root common.Hash, layers int) error {
return nil return nil
} }
} }
var persisted *diskLayer
// We're out of layers, flatten anything below, stopping if it's the disk or if // We're out of layers, flatten anything below, stopping if it's the disk or if
// the memory limit is not yet exceeded. // the memory limit is not yet exceeded.
switch parent := diff.parentLayer().(type) { switch parent := diff.parentLayer().(type) {
@ -163,6 +164,7 @@ func (tree *layerTree) cap(root common.Hash, layers int) error {
} }
tree.layers[base.rootHash()] = base tree.layers[base.rootHash()] = base
diff.parent = base diff.parent = base
persisted = base.(*diskLayer)
diff.lock.Unlock() diff.lock.Unlock()
@ -190,6 +192,19 @@ func (tree *layerTree) cap(root common.Hash, layers int) error {
remove(root) remove(root)
} }
} }
// If the disk layer was modified, regenerate all the cumulative blooms
if persisted != nil {
var rebloom func(root common.Hash)
rebloom = func(root common.Hash) {
if diff, ok := tree.layers[root].(*diffLayer); ok {
diff.rebloom(persisted)
}
for _, child := range children[root] {
rebloom(child)
}
}
rebloom(persisted.root)
}
return nil return nil
} }

View file

@ -48,4 +48,7 @@ var (
historyBuildTimeMeter = metrics.NewRegisteredTimer("pathdb/history/time", nil) historyBuildTimeMeter = metrics.NewRegisteredTimer("pathdb/history/time", nil)
historyDataBytesMeter = metrics.NewRegisteredMeter("pathdb/history/bytes/data", nil) historyDataBytesMeter = metrics.NewRegisteredMeter("pathdb/history/bytes/data", nil)
historyIndexBytesMeter = metrics.NewRegisteredMeter("pathdb/history/bytes/index", nil) historyIndexBytesMeter = metrics.NewRegisteredMeter("pathdb/history/bytes/index", nil)
bloomIndexTimer = metrics.NewRegisteredResettingTimer("pathdb/bloom/index", nil)
bloomErrorGauge = metrics.NewRegisteredGaugeFloat64("pathdb/bloom/error", nil)
) )