eth/protocols/snap, eth/downloader: don't use bloom filter in snap sync
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91726e8aad
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410089afea
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@ -240,7 +240,7 @@ func New(checkpoint uint64, stateDb ethdb.Database, stateBloom *trie.SyncBloom,
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headerProcCh: make(chan []*types.Header, 1),
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quitCh: make(chan struct{}),
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stateCh: make(chan dataPack),
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SnapSyncer: snap.NewSyncer(stateDb, stateBloom),
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SnapSyncer: snap.NewSyncer(stateDb),
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stateSyncStart: make(chan *stateSync),
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syncStatsState: stateSyncStats{
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processed: rawdb.ReadFastTrieProgress(stateDb),
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@ -177,7 +177,11 @@ func newHandler(config *handlerConfig) (*handler, error) {
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// Construct the downloader (long sync) and its backing state bloom if fast
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// sync is requested. The downloader is responsible for deallocating the state
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// bloom when it's done.
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if atomic.LoadUint32(&h.fastSync) == 1 {
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// Note: we don't enable it if snap-sync is performed, since it's very heavy
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// and the heal-portion of the snap sync is much lighter than fast. What we particularly
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// want to avoid, is a 90%-finished (but restarted) snap-sync to begin
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// indexing the entire trie
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if atomic.LoadUint32(&h.fastSync) == 1 && atomic.LoadUint32(&h.snapSync) == 0 {
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h.stateBloom = trie.NewSyncBloom(config.BloomCache, config.Database)
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}
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h.downloader = downloader.New(h.checkpointNumber, config.Database, h.stateBloom, h.eventMux, h.chain, nil, h.removePeer)
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@ -376,8 +376,7 @@ type SyncPeer interface {
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// - The peer delivers a stale response after a previous timeout
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// - The peer delivers a refusal to serve the requested state
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type Syncer struct {
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db ethdb.KeyValueStore // Database to store the trie nodes into (and dedup)
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bloom *trie.SyncBloom // Bloom filter to deduplicate nodes for state fixup
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db ethdb.KeyValueStore // Database to store the trie nodes into (and dedup)
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root common.Hash // Current state trie root being synced
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tasks []*accountTask // Current account task set being synced
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@ -446,10 +445,9 @@ type Syncer struct {
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// NewSyncer creates a new snapshot syncer to download the Ethereum state over the
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// snap protocol.
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func NewSyncer(db ethdb.KeyValueStore, bloom *trie.SyncBloom) *Syncer {
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func NewSyncer(db ethdb.KeyValueStore) *Syncer {
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return &Syncer{
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db: db,
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bloom: bloom,
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db: db,
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peers: make(map[string]SyncPeer),
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peerJoin: new(event.Feed),
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@ -546,7 +544,7 @@ func (s *Syncer) Sync(root common.Hash, cancel chan struct{}) error {
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s.lock.Lock()
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s.root = root
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s.healer = &healTask{
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scheduler: state.NewStateSync(root, s.db, s.bloom),
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scheduler: state.NewStateSync(root, s.db, nil),
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trieTasks: make(map[common.Hash]trie.SyncPath),
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codeTasks: make(map[common.Hash]struct{}),
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}
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@ -1660,7 +1658,6 @@ func (s *Syncer) processBytecodeResponse(res *bytecodeResponse) {
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bytes += common.StorageSize(len(code))
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rawdb.WriteCode(batch, hash, code)
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s.bloom.Add(hash[:])
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}
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if err := batch.Write(); err != nil {
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log.Crit("Failed to persist bytecodes", "err", err)
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@ -1796,7 +1793,6 @@ func (s *Syncer) processStorageResponse(res *storageResponse) {
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}
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// Node is not a boundary, persist to disk
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batch.Put(it.Key(), it.Value())
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s.bloom.Add(it.Key())
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bytes += common.StorageSize(common.HashLength + len(it.Value()))
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nodes++
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@ -1953,7 +1949,6 @@ func (s *Syncer) forwardAccountTask(task *accountTask) {
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}
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// Node is neither a boundary, not an incomplete account, persist to disk
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batch.Put(it.Key(), it.Value())
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s.bloom.Add(it.Key())
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bytes += common.StorageSize(common.HashLength + len(it.Value()))
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nodes++
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@ -525,7 +525,7 @@ func TestSyncBloatedProof(t *testing.T) {
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func setupSyncer(peers ...*testPeer) *Syncer {
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stateDb := rawdb.NewMemoryDatabase()
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syncer := NewSyncer(stateDb, trie.NewSyncBloom(1, stateDb))
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syncer := NewSyncer(stateDb)
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for _, peer := range peers {
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syncer.Register(peer)
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peer.remote = syncer
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