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main
tests/robustness/main_test.go
225 строк
7 KB
Chun-Hung Tseng
robutsness: don't visualize history if there is any failure during linearization
01 июн 2026, 00:03
01 июн 2026, 00:03
166348b
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// Copyright 2022 The etcd Authors // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // http://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. package robustness import ( "context" "fmt" "math/rand" "os" "path/filepath" "slices" "strings" "testing" "time" "github.com/stretchr/testify/require" "go.uber.org/zap" "go.uber.org/zap/zaptest" "golang.org/x/sync/errgroup" "go.etcd.io/etcd/tests/v3/framework" "go.etcd.io/etcd/tests/v3/framework/e2e" "go.etcd.io/etcd/tests/v3/robustness/client" "go.etcd.io/etcd/tests/v3/robustness/failpoint" "go.etcd.io/etcd/tests/v3/robustness/identity" "go.etcd.io/etcd/tests/v3/robustness/report" "go.etcd.io/etcd/tests/v3/robustness/scenarios" "go.etcd.io/etcd/tests/v3/robustness/traffic" "go.etcd.io/etcd/tests/v3/robustness/validate" ) var testRunner = framework.E2eTestRunner var ( WaitBeforeFailpoint = time.Second WaitJitter = time.Millisecond * 200 WaitAfterFailpoint = time.Second ) func TestMain(m *testing.M) { testRunner.TestMain(m) } func TestRobustnessExploratory(t *testing.T) { testRunner.BeforeTest(t) for _, s := range scenarios.Exploratory(t) { t.Run(s.Name, func(t *testing.T) { lg := zaptest.NewLogger(t) s.Cluster.Logger = lg ctx := t.Context() c, err := e2e.NewEtcdProcessCluster(ctx, t, e2e.WithConfig(&s.Cluster)) require.NoError(t, err) defer forcestopCluster(c) s.Failpoint, err = failpoint.PickRandom(c, s.Profile) require.NoError(t, err) t.Run(s.Failpoint.Name(), func(t *testing.T) { testRobustness(ctx, t, lg, s, c) }) }) } } func TestRobustnessRegression(t *testing.T) { testRunner.BeforeTest(t) for _, s := range scenarios.Regression(t) { t.Run(s.Name, func(t *testing.T) { lg := zaptest.NewLogger(t) s.Cluster.Logger = lg ctx := t.Context() c, err := e2e.NewEtcdProcessCluster(ctx, t, e2e.WithConfig(&s.Cluster)) require.NoError(t, err) defer forcestopCluster(c) testRobustness(ctx, t, lg, s, c) }) } } func testRobustness(ctx context.Context, t *testing.T, lg *zap.Logger, s scenarios.TestScenario, c *e2e.EtcdProcessCluster) { r, err := report.NewTestReport(lg, testResultsDirectory(t), report.ServerDataPaths(c), &report.TrafficDetail{ExpectUniqueRevision: s.Traffic.ExpectUniqueRevision()}) require.NoError(t, err) // t.Failed() returns false during panicking. We need to forcibly // save data on panicking. // Refer to: https://github.com/golang/go/issues/49929 panicked := true defer func() { err = r.Finalize(t.Failed(), panicked) if err != nil { t.Error(err) } }() clientReports := runScenario(ctx, t, s, lg, c) r.SetClientReports(clientReports) err = r.SaveEtcdData() if err != nil { t.Error(err) } validateConfig := validate.Config{ExpectRevisionUnique: s.Traffic.ExpectUniqueRevision()} persistedRequests, err := report.PersistedRequestsCluster(lg, c) if err != nil { t.Error(err) } result := validate.ValidateAndReturnVisualize(lg, validateConfig, clientReports, persistedRequests, 5*time.Minute) err = result.Error() if err != nil { t.Error(err) } else { r.SetVisualizer(result.Linearization.Visualize) } panicked = false } func runScenario(ctx context.Context, t *testing.T, s scenarios.TestScenario, lg *zap.Logger, clus *e2e.EtcdProcessCluster) (reports []report.ClientReport) { ctx, cancel := context.WithCancel(ctx) defer cancel() g := errgroup.Group{} var failpointClientReport []report.ClientReport failpointInjected := make(chan report.FailpointInjection, 1) // using baseTime time-measuring operation to get monotonic clock reading // see https://github.com/golang/go/blob/master/src/time/time.go#L17 baseTime := time.Now() ids := identity.NewIDProvider() g.Go(func() error { defer close(failpointInjected) // Give some time for traffic to reach qps target before injecting failpoint. time.Sleep(randomizeTime(WaitBeforeFailpoint, WaitJitter)) fr, err := failpoint.Inject(ctx, t, lg, clus, s.Failpoint, baseTime, ids) if err != nil { t.Error(err) cancel() } // Give some time for traffic to reach qps target after injecting failpoint. time.Sleep(randomizeTime(WaitAfterFailpoint, WaitJitter)) if fr != nil { failpointInjected <- fr.FailpointInjection failpointClientReport = fr.Client } return nil }) trafficSet := client.NewSet(ids, baseTime) defer trafficSet.Close() maxRevisionChan := make(chan int64, 1) g.Go(func() error { defer close(maxRevisionChan) operationReport := traffic.SimulateTraffic(ctx, t, lg, clus, s.Profile, s.Traffic, failpointInjected, trafficSet) maxRevision := report.OperationsMaxRevision(operationReport) maxRevisionChan <- maxRevision lg.Info("Finished simulating Traffic", zap.Int64("max-revision", maxRevision)) return nil }) watchSet := client.NewSet(ids, baseTime) defer watchSet.Close() g.Go(func() error { endpoints := processEndpoints(clus) err := client.CollectClusterWatchEvents(ctx, client.CollectClusterWatchEventsParam{ Lg: lg, Endpoints: endpoints, MaxRevisionChan: maxRevisionChan, ClientSet: watchSet, }) return err }) err := g.Wait() if err != nil { t.Error(err) } err = client.CheckEndOfTestHashKV(ctx, clus) if err != nil { t.Error(err) } return slices.Concat(trafficSet.Reports(), watchSet.Reports(), failpointClientReport) } func randomizeTime(base time.Duration, jitter time.Duration) time.Duration { return base - jitter + time.Duration(rand.Int63n(int64(jitter)*2)) } // forcestopCluster stops the etcd member with signal kill. func forcestopCluster(clus *e2e.EtcdProcessCluster) error { for _, member := range clus.Procs { member.Kill() } return clus.ConcurrentStop() } func testResultsDirectory(t *testing.T) string { resultsDirectory, ok := os.LookupEnv("RESULTS_DIR") if !ok { resultsDirectory = "/tmp/" } resultsDirectory, err := filepath.Abs(resultsDirectory) if err != nil { panic(err) } path, err := filepath.Abs(filepath.Join( resultsDirectory, strings.ReplaceAll(t.Name(), "/", "_"), fmt.Sprintf("%v", time.Now().UnixNano()))) require.NoError(t, err) err = os.RemoveAll(path) require.NoError(t, err) err = os.MkdirAll(path, 0o700) require.NoError(t, err) return path } func processEndpoints(clus *e2e.EtcdProcessCluster) []string { endpoints := make([]string, 0, len(clus.Procs)) for _, proc := range clus.Procs { endpoints = append(endpoints, proc.EndpointsGRPC()[0]) } return endpoints }