eth/downloader: header-chain order and ancestry check
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0a7d059b6a
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99b62f36b6
@ -1078,7 +1078,7 @@ func (d *Downloader) fetchHeaders(p *peer, td *big.Int, from uint64) error {
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// Otherwise insert all the new headers, aborting in case of junk
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glog.V(logger.Detail).Infof("%v: inserting %d headers from #%d", p, len(headerPack.headers), from)
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inserts := d.queue.Insert(headerPack.headers)
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inserts := d.queue.Insert(headerPack.headers, from)
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if len(inserts) != len(headerPack.headers) {
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glog.V(logger.Debug).Infof("%v: stale headers", p)
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return errBadPeer
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@ -139,10 +139,6 @@ func (dl *downloadTester) sync(id string, td *big.Int) error {
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if hashes+blocks == 0 && atomic.LoadInt32(&dl.downloader.processing) == 0 {
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break
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}
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// If there are queued blocks, but the head is missing, it's a stale leftover
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if hashes+blocks > 0 && atomic.LoadInt32(&dl.downloader.processing) == 0 && dl.downloader.queue.GetHeadBlock() == nil {
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break
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}
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// Otherwise sleep a bit and retry
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time.Sleep(time.Millisecond)
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}
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@ -660,6 +656,67 @@ func testEmptyBlockShortCircuit(t *testing.T, protocol int) {
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}
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}
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// Tests that headers are enqueued continuously, preventing malicious nodes from
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// stalling the downloader by feeding gapped header chains.
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func TestMissingHeaderAttack62(t *testing.T) { testMissingHeaderAttack(t, 62) }
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func TestMissingHeaderAttack63(t *testing.T) { testMissingHeaderAttack(t, 63) }
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func TestMissingHeaderAttack64(t *testing.T) { testMissingHeaderAttack(t, 64) }
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func testMissingHeaderAttack(t *testing.T, protocol int) {
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// Create a small enough block chain to download
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targetBlocks := blockCacheLimit - 15
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hashes, blocks := makeChain(targetBlocks, 0, genesis)
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tester := newTester()
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// Attempt a full sync with an attacker feeding gapped headers
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tester.newPeer("attack", protocol, hashes, blocks)
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missing := targetBlocks / 2
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delete(tester.peerBlocks["attack"], hashes[missing])
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if err := tester.sync("attack", nil); err == nil {
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t.Fatalf("succeeded attacker synchronisation")
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}
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// Synchronise with the valid peer and make sure sync succeeds
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tester.newPeer("valid", protocol, hashes, blocks)
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if err := tester.sync("valid", nil); err != nil {
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t.Fatalf("failed to synchronise blocks: %v", err)
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}
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if imported := len(tester.ownBlocks); imported != len(hashes) {
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t.Fatalf("synchronised block mismatch: have %v, want %v", imported, len(hashes))
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}
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}
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// Tests that if requested headers are shifted (i.e. first is missing), the queue
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// detects the invalid numbering.
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func TestShiftedHeaderAttack62(t *testing.T) { testShiftedHeaderAttack(t, 62) }
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func TestShiftedHeaderAttack63(t *testing.T) { testShiftedHeaderAttack(t, 63) }
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func TestShiftedHeaderAttack64(t *testing.T) { testShiftedHeaderAttack(t, 64) }
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func testShiftedHeaderAttack(t *testing.T, protocol int) {
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// Create a small enough block chain to download
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targetBlocks := blockCacheLimit - 15
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hashes, blocks := makeChain(targetBlocks, 0, genesis)
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tester := newTester()
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// Attempt a full sync with an attacker feeding shifted headers
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tester.newPeer("attack", protocol, hashes, blocks)
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delete(tester.peerBlocks["attack"], hashes[len(hashes)-2])
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if err := tester.sync("attack", nil); err == nil {
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t.Fatalf("succeeded attacker synchronisation")
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}
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// Synchronise with the valid peer and make sure sync succeeds
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tester.newPeer("valid", protocol, hashes, blocks)
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if err := tester.sync("valid", nil); err != nil {
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t.Fatalf("failed to synchronise blocks: %v", err)
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}
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if imported := len(tester.ownBlocks); imported != len(hashes) {
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t.Fatalf("synchronised block mismatch: have %v, want %v", imported, len(hashes))
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}
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}
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// Tests that if a peer sends an invalid body for a requested block, it gets
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// dropped immediately by the downloader.
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func TestInvalidBlockBodyAttack62(t *testing.T) { testInvalidBlockBodyAttack(t, 62) }
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@ -57,6 +57,7 @@ type queue struct {
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headerPool map[common.Hash]*types.Header // [eth/62] Pending headers, mapping from their hashes
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headerQueue *prque.Prque // [eth/62] Priority queue of the headers to fetch the bodies for
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headerHead common.Hash // [eth/62] Hash of the last queued header to verify order
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pendPool map[string]*fetchRequest // Currently pending block retrieval operations
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@ -91,6 +92,7 @@ func (q *queue) Reset() {
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q.headerPool = make(map[common.Hash]*types.Header)
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q.headerQueue.Reset()
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q.headerHead = common.Hash{}
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q.pendPool = make(map[string]*fetchRequest)
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@ -186,7 +188,7 @@ func (q *queue) Insert61(hashes []common.Hash, fifo bool) []common.Hash {
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// Insert adds a set of headers for the download queue for scheduling, returning
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// the new headers encountered.
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func (q *queue) Insert(headers []*types.Header) []*types.Header {
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func (q *queue) Insert(headers []*types.Header, from uint64) []*types.Header {
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q.lock.Lock()
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defer q.lock.Unlock()
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@ -196,13 +198,24 @@ func (q *queue) Insert(headers []*types.Header) []*types.Header {
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// Make sure no duplicate requests are executed
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hash := header.Hash()
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if _, ok := q.headerPool[hash]; ok {
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glog.V(logger.Warn).Infof("Header %x already scheduled", hash)
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glog.V(logger.Warn).Infof("Header #%d [%x] already scheduled", header.Number.Uint64(), hash[:4])
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continue
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}
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// Make sure chain order is honored and preserved throughout
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if header.Number == nil || header.Number.Uint64() != from {
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glog.V(logger.Warn).Infof("Header #%v [%x] broke chain ordering, expected %d", header.Number, hash[:4], from)
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break
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}
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if q.headerHead != (common.Hash{}) && q.headerHead != header.ParentHash {
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glog.V(logger.Warn).Infof("Header #%v [%x] broke chain ancestry", header.Number, hash[:4])
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break
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}
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// Queue the header for body retrieval
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inserts = append(inserts, header)
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q.headerPool[hash] = header
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q.headerQueue.Push(header, -float32(header.Number.Uint64()))
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q.headerHead = hash
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from++
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}
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return inserts
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}
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