func TestReporter(t *testing.T) { processes := []process.Process{ {PID: 1, PPID: 0, Name: "init"}, {PID: 2, PPID: 1, Name: "bash"}, {PID: 3, PPID: 1, Name: "apache", Threads: 2}, {PID: 4, PPID: 2, Name: "ping", Cmdline: "ping foo.bar.local"}, {PID: 5, PPID: 1, Cmdline: "tail -f /var/log/syslog"}, } walker := &mockWalker{processes: processes} getDeltaTotalJiffies := func() (uint64, float64, error) { return 0, 0., nil } now := time.Now() mtime.NowForce(now) defer mtime.NowReset() rpt, err := process.NewReporter(walker, "", getDeltaTotalJiffies).Report() if err != nil { t.Error(err) } // It reports the init process node, ok := rpt.Process.Nodes[report.MakeProcessNodeID("", "1")] if !ok { t.Errorf("Expected report to include the pid 1 init") } if name, ok := node.Latest.Lookup(process.Name); !ok || name != processes[0].Name { t.Errorf("Expected %q got %q", processes[0].Name, name) } // It reports plain processes (with parent pid, and metrics) node, ok = rpt.Process.Nodes[report.MakeProcessNodeID("", "2")] if !ok { t.Errorf("Expected report to include the pid 2 bash") } if name, ok := node.Latest.Lookup(process.Name); !ok || name != processes[1].Name { t.Errorf("Expected %q got %q", processes[1].Name, name) } if ppid, ok := node.Latest.Lookup(process.PPID); !ok || ppid != fmt.Sprint(processes[1].PPID) { t.Errorf("Expected %d got %q", processes[1].PPID, ppid) } if memoryUsage, ok := node.Metrics[process.MemoryUsage]; !ok { t.Errorf("Expected memory usage metric, but not found") } else if sample := memoryUsage.LastSample(); sample == nil { t.Errorf("Expected memory usage metric to have a sample, but there were none") } else if sample.Value != 0. { t.Errorf("Expected memory usage metric sample %f, got %f", 0., sample.Value) } // It reports thread-counts node, ok = rpt.Process.Nodes[report.MakeProcessNodeID("", "3")] if !ok { t.Errorf("Expected report to include the pid 3 apache") } if threads, ok := node.Latest.Lookup(process.Threads); !ok || threads != fmt.Sprint(processes[2].Threads) { t.Errorf("Expected %d got %q", processes[2].Threads, threads) } // It reports the Cmdline node, ok = rpt.Process.Nodes[report.MakeProcessNodeID("", "4")] if !ok { t.Errorf("Expected report to include the pid 4 ping") } if cmdline, ok := node.Latest.Lookup(process.Cmdline); !ok || cmdline != fmt.Sprint(processes[3].Cmdline) { t.Errorf("Expected %q got %q", processes[3].Cmdline, cmdline) } // It reports processes without a Name node, ok = rpt.Process.Nodes[report.MakeProcessNodeID("", "5")] if !ok { t.Errorf("Expected report to include the pid 5 tail") } if name, ok := node.Latest.Lookup(process.Name); ok { t.Errorf("Expected no name, but got %q", name) } if cmdline, ok := node.Latest.Lookup(process.Cmdline); !ok || cmdline != fmt.Sprint(processes[4].Cmdline) { t.Errorf("Expected %q got %q", processes[4].Cmdline, cmdline) } }
// Main runs the probe func probeMain(flags probeFlags) { setLogLevel(flags.logLevel) setLogFormatter(flags.logPrefix) // Setup in memory metrics sink inm := metrics.NewInmemSink(time.Minute, 2*time.Minute) sig := metrics.DefaultInmemSignal(inm) defer sig.Stop() metrics.NewGlobal(metrics.DefaultConfig("scope-probe"), inm) defer log.Info("probe exiting") if flags.spyProcs && os.Getegid() != 0 { log.Warn("--probe.process=true, but that requires root to find everything") } rand.Seed(time.Now().UnixNano()) var ( probeID = strconv.FormatInt(rand.Int63(), 16) hostName = hostname.Get() hostID = hostName // TODO(pb): we should sanitize the hostname ) log.Infof("probe starting, version %s, ID %s", version, probeID) log.Infof("command line: %v", os.Args) checkpointFlags := map[string]string{} if flags.kubernetesEnabled { checkpointFlags["kubernetes_enabled"] = "true" } go check(checkpointFlags) var targets = []string{} if !flags.noApp { targets = append(targets, fmt.Sprintf("localhost:%d", xfer.AppPort)) } if len(flag.Args()) > 0 { targets = append(targets, flag.Args()...) } log.Infof("publishing to: %s", strings.Join(targets, ", ")) probeConfig := appclient.ProbeConfig{ Token: flags.token, ProbeID: probeID, Insecure: flags.insecure, } clients := appclient.NewMultiAppClient(func(hostname, endpoint string) (appclient.AppClient, error) { return appclient.NewAppClient( probeConfig, hostname, endpoint, xfer.ControlHandlerFunc(controls.HandleControlRequest), ) }) defer clients.Stop() dnsLookupFn := net.LookupIP if flags.resolver != "" { dnsLookupFn = appclient.LookupUsing(flags.resolver) } resolver := appclient.NewResolver(targets, dnsLookupFn, clients.Set) defer resolver.Stop() processCache := process.NewCachingWalker(process.NewWalker(flags.procRoot)) scanner := procspy.NewConnectionScanner(processCache) endpointReporter := endpoint.NewReporter(hostID, hostName, flags.spyProcs, flags.useConntrack, scanner) defer endpointReporter.Stop() p := probe.New(flags.spyInterval, flags.publishInterval, clients) p.AddTicker(processCache) hostReporter := host.NewReporter(hostID, hostName, probeID, version, clients) defer hostReporter.Stop() p.AddReporter( endpointReporter, hostReporter, process.NewReporter(processCache, hostID, process.GetDeltaTotalJiffies), ) p.AddTagger(probe.NewTopologyTagger(), host.NewTagger(hostID)) if flags.dockerEnabled { // Don't add the bridge in Kubernetes since container IPs are global and // shouldn't be scoped if !flags.kubernetesEnabled { if err := report.AddLocalBridge(flags.dockerBridge); err != nil { log.Errorf("Docker: problem with bridge %s: %v", flags.dockerBridge, err) } } if registry, err := docker.NewRegistry(flags.dockerInterval, clients, true, hostID); err == nil { defer registry.Stop() p.AddTagger(docker.NewTagger(registry, processCache)) p.AddReporter(docker.NewReporter(registry, hostID, probeID, p)) } else { log.Errorf("Docker: failed to start registry: %v", err) } } if flags.kubernetesEnabled { if client, err := kubernetes.NewClient(flags.kubernetesAPI, flags.kubernetesInterval); err == nil { defer client.Stop() reporter := kubernetes.NewReporter(client, clients, probeID, hostID, p) defer reporter.Stop() p.AddReporter(reporter) p.AddTagger(reporter) } else { log.Errorf("Kubernetes: failed to start client: %v", err) log.Errorf("Kubernetes: make sure to run Scope inside a POD with a service account or provide a valid kubernetes.api url") } } if flags.weaveAddr != "" { client := weave.NewClient(sanitize.URL("http://", 6784, "")(flags.weaveAddr)) weave := overlay.NewWeave(hostID, client) defer weave.Stop() p.AddTagger(weave) p.AddReporter(weave) dockerBridgeIP, err := network.GetFirstAddressOf(flags.dockerBridge) if err != nil { log.Println("Error getting docker bridge ip:", err) } else { weaveDNSLookup := appclient.LookupUsing(dockerBridgeIP + ":53") weaveResolver := appclient.NewResolver([]string{flags.weaveHostname}, weaveDNSLookup, clients.Set) defer weaveResolver.Stop() } } pluginRegistry, err := plugins.NewRegistry( flags.pluginsRoot, pluginAPIVersion, map[string]string{ "probe_id": probeID, "api_version": pluginAPIVersion, }, ) if err != nil { log.Errorf("plugins: problem loading: %v", err) } else { defer pluginRegistry.Close() p.AddReporter(pluginRegistry) } if flags.httpListen != "" { go func() { log.Infof("Profiling data being exported to %s", flags.httpListen) log.Infof("go tool pprof http://%s/debug/pprof/{profile,heap,block}", flags.httpListen) log.Infof("Profiling endpoint %s terminated: %v", flags.httpListen, http.ListenAndServe(flags.httpListen, nil)) }() } p.Start() defer p.Stop() common.SignalHandlerLoop() }