eth, les: fix time sensitive unit tests (#20741)
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@ -534,7 +534,7 @@ func testCheckpointChallenge(t *testing.T, syncmode downloader.SyncMode, checkpo
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}
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}
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// Wait until the test timeout passes to ensure proper cleanup
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time.Sleep(syncChallengeTimeout + 100*time.Millisecond)
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time.Sleep(syncChallengeTimeout + 300*time.Millisecond)
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// Verify that the remote peer is maintained or dropped
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if drop {
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@ -19,6 +19,7 @@ package les
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import (
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"math/big"
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"sync"
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"sync/atomic"
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"time"
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"github.com/ethereum/go-ethereum/common"
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@ -132,6 +133,10 @@ func (h *clientHandler) handle(p *serverPeer) error {
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if p.poolEntry != nil {
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h.backend.serverPool.registered(p.poolEntry)
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}
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// Mark the peer starts to be served.
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atomic.StoreUint32(&p.serving, 1)
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defer atomic.StoreUint32(&p.serving, 0)
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// Spawn a main loop to handle all incoming messages.
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for {
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if err := h.handleMsg(p); err != nil {
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@ -186,8 +186,6 @@ func testOdr(t *testing.T, protocol int, expFail uint64, checkCached bool, fn od
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server, client, tearDown := newClientServerEnv(t, 4, protocol, nil, nil, 0, false, true)
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defer tearDown()
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client.handler.synchronise(client.peer.speer)
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// Ensure the client has synced all necessary data.
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clientHead := client.handler.backend.blockchain.CurrentHeader()
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if clientHead.Number.Uint64() != 4 {
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14
les/peer.go
14
les/peer.go
@ -131,6 +131,7 @@ type peerCommons struct {
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network uint64 // Network ID being on.
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frozen uint32 // Flag whether the peer is frozen.
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announceType uint64 // New block announcement type.
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serving uint32 // The status indicates the peer is served.
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headInfo blockInfo // Latest block information.
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// Background task queue for caching peer tasks and executing in order.
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@ -636,13 +637,12 @@ type clientPeer struct {
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// responseLock ensures that responses are queued in the same order as
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// RequestProcessed is called
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responseLock sync.Mutex
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server bool
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invalidCount uint32 // Counter the invalid request the client peer has made.
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responseCount uint64 // Counter to generate an unique id for request processing.
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errCh chan error
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fcClient *flowcontrol.ClientNode // Server side mirror token bucket.
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balanceTracker *balanceTracker // set by clientPool.connect, used and removed by serverHandler
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responseLock sync.Mutex
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server bool
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invalidCount uint32 // Counter the invalid request the client peer has made.
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responseCount uint64 // Counter to generate an unique id for request processing.
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errCh chan error
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fcClient *flowcontrol.ClientNode // Server side mirror token bucket.
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}
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func newClientPeer(version int, network uint64, p *p2p.Peer, rw p2p.MsgReadWriter) *clientPeer {
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@ -81,7 +81,6 @@ func testAccess(t *testing.T, protocol int, fn accessTestFn) {
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// Assemble the test environment
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server, client, tearDown := newClientServerEnv(t, 4, protocol, nil, nil, 0, false, true)
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defer tearDown()
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client.handler.synchronise(client.peer.speer)
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// Ensure the client has synced all necessary data.
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clientHead := client.handler.backend.blockchain.CurrentHeader()
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@ -157,6 +157,9 @@ func (h *serverHandler) handle(p *clientPeer) error {
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clientConnectionGauge.Update(int64(h.server.peers.len()))
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connectionTimer.Update(time.Duration(mclock.Now() - connectedAt))
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}()
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// Mark the peer starts to be served.
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atomic.StoreUint32(&p.serving, 1)
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defer atomic.StoreUint32(&p.serving, 0)
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// Spawn a main loop to handle all incoming messages.
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for {
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@ -109,16 +109,12 @@ func testCheckpointSyncing(t *testing.T, protocol int, syncMode int) {
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}
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// Create connected peer pair.
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peer1, err1, peer2, err2 := newTestPeerPair("peer", protocol, server.handler, client.handler)
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peer1, peer2, err := newTestPeerPair("peer", protocol, server.handler, client.handler)
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if err != nil {
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t.Fatalf("Failed to connect testing peers %v", err)
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}
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defer peer1.close()
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defer peer2.close()
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select {
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case <-time.After(time.Millisecond * 100):
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case err := <-err1:
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t.Fatalf("peer 1 handshake error: %v", err)
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case err := <-err2:
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t.Fatalf("peer 2 handshake error: %v", err)
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}
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select {
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case err := <-done:
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@ -208,17 +204,10 @@ func testMissOracleBackend(t *testing.T, hasCheckpoint bool) {
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done <- fmt.Errorf("blockchain length mismatch, want %d, got %d", expected, header.Number)
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}
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}
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// Create connected peer pair.
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_, err1, _, err2 := newTestPeerPair("peer", 2, server.handler, client.handler)
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select {
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case <-time.After(time.Millisecond * 100):
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case err := <-err1:
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t.Fatalf("peer 1 handshake error: %v", err)
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case err := <-err2:
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t.Fatalf("peer 2 handshake error: %v", err)
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if _, _, err := newTestPeerPair("peer", 2, server.handler, client.handler); err != nil {
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t.Fatalf("Failed to connect testing peers %v", err)
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}
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select {
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case err := <-done:
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if err != nil {
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@ -22,7 +22,9 @@ package les
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import (
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"context"
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"crypto/rand"
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"fmt"
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"math/big"
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"sync/atomic"
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"testing"
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"time"
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@ -347,7 +349,7 @@ func (p *testPeer) close() {
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p.app.Close()
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}
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func newTestPeerPair(name string, version int, server *serverHandler, client *clientHandler) (*testPeer, <-chan error, *testPeer, <-chan error) {
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func newTestPeerPair(name string, version int, server *serverHandler, client *clientHandler) (*testPeer, *testPeer, error) {
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// Create a message pipe to communicate through
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app, net := p2p.MsgPipe()
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@ -371,11 +373,25 @@ func newTestPeerPair(name string, version int, server *serverHandler, client *cl
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go func() {
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select {
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case <-client.closeCh:
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errc1 <- p2p.DiscQuitting
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case errc1 <- client.handle(peer2):
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errc2 <- p2p.DiscQuitting
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case errc2 <- client.handle(peer2):
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}
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}()
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return &testPeer{cpeer: peer1, net: net, app: app}, errc1, &testPeer{speer: peer2, net: app, app: net}, errc2
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// Ensure the connection is established or exits when any error occurs
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for {
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select {
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case err := <-errc1:
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return nil, nil, fmt.Errorf("Failed to establish protocol connection %v", err)
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case err := <-errc2:
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return nil, nil, fmt.Errorf("Failed to establish protocol connection %v", err)
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default:
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}
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if atomic.LoadUint32(&peer1.serving) == 1 && atomic.LoadUint32(&peer2.serving) == 1 {
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break
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}
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time.Sleep(50 * time.Millisecond)
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}
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return &testPeer{cpeer: peer1, net: net, app: app}, &testPeer{speer: peer2, net: app, app: net}, nil
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}
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// handshake simulates a trivial handshake that expects the same state from the
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@ -514,17 +530,20 @@ func newClientServerEnv(t *testing.T, blocks int, protocol int, callback indexer
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callback(scIndexer, sbIndexer, sbtIndexer)
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}
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var (
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err error
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speer, cpeer *testPeer
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err1, err2 <-chan error
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)
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if connect {
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cpeer, err1, speer, err2 = newTestPeerPair("peer", protocol, server, client)
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done := make(chan struct{})
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client.syncDone = func() { close(done) }
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cpeer, speer, err = newTestPeerPair("peer", protocol, server, client)
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if err != nil {
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t.Fatalf("Failed to connect testing peers %v", err)
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}
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select {
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case <-time.After(time.Millisecond * 300):
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case err := <-err1:
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t.Fatalf("peer 1 handshake error: %v", err)
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case err := <-err2:
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t.Fatalf("peer 2 handshake error: %v", err)
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case <-done:
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case <-time.After(3 * time.Second):
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t.Fatal("test peer did not connect and sync within 3s")
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}
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}
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s := &testServer{
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