mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-11-15 02:40:23 +00:00
323 lines
12 KiB
Go
323 lines
12 KiB
Go
/*
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Copyright 2015 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package lifecycle
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import (
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"fmt"
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"strings"
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"sync"
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"time"
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"k8s.io/api/core/v1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apimachinery/pkg/fields"
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"k8s.io/apimachinery/pkg/labels"
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"k8s.io/apimachinery/pkg/util/sets"
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clientset "k8s.io/client-go/kubernetes"
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api "k8s.io/kubernetes/pkg/apis/core"
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"k8s.io/kubernetes/test/e2e/framework"
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testutils "k8s.io/kubernetes/test/utils"
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. "github.com/onsi/ginkgo"
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. "github.com/onsi/gomega"
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)
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const (
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// How long a node is allowed to go from "Ready" to "NotReady" after a
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// reboot is issued before the test is considered failed.
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rebootNodeNotReadyTimeout = 2 * time.Minute
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// How long a node is allowed to go from "NotReady" to "Ready" after a
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// reboot is issued and it is found to be "NotReady" before the test is
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// considered failed.
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rebootNodeReadyAgainTimeout = 5 * time.Minute
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// How long pods have to be "ready" after the reboot.
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rebootPodReadyAgainTimeout = 5 * time.Minute
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)
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var _ = SIGDescribe("Reboot [Disruptive] [Feature:Reboot]", func() {
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var f *framework.Framework
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BeforeEach(func() {
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// These tests requires SSH to nodes, so the provider check should be identical to there
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// (the limiting factor is the implementation of util.go's framework.GetSigner(...)).
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// Cluster must support node reboot
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framework.SkipUnlessProviderIs(framework.ProvidersWithSSH...)
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})
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AfterEach(func() {
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if CurrentGinkgoTestDescription().Failed {
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// Most of the reboot tests just make sure that addon/system pods are running, so dump
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// events for the kube-system namespace on failures
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namespaceName := metav1.NamespaceSystem
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By(fmt.Sprintf("Collecting events from namespace %q.", namespaceName))
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events, err := f.ClientSet.CoreV1().Events(namespaceName).List(metav1.ListOptions{})
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Expect(err).NotTo(HaveOccurred())
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for _, e := range events.Items {
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framework.Logf("event for %v: %v %v: %v", e.InvolvedObject.Name, e.Source, e.Reason, e.Message)
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}
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}
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// In GKE, our current tunneling setup has the potential to hold on to a broken tunnel (from a
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// rebooted/deleted node) for up to 5 minutes before all tunnels are dropped and recreated. Most tests
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// make use of some proxy feature to verify functionality. So, if a reboot test runs right before a test
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// that tries to get logs, for example, we may get unlucky and try to use a closed tunnel to a node that
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// was recently rebooted. There's no good way to framework.Poll for proxies being closed, so we sleep.
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//
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// TODO(cjcullen) reduce this sleep (#19314)
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if framework.ProviderIs("gke") {
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By("waiting 5 minutes for all dead tunnels to be dropped")
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time.Sleep(5 * time.Minute)
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}
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})
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f = framework.NewDefaultFramework("reboot")
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It("each node by ordering clean reboot and ensure they function upon restart", func() {
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// clean shutdown and restart
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// We sleep 10 seconds to give some time for ssh command to cleanly finish before the node is rebooted.
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testReboot(f.ClientSet, "nohup sh -c 'sleep 10 && sudo reboot' >/dev/null 2>&1 &", nil)
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})
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It("each node by ordering unclean reboot and ensure they function upon restart", func() {
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// unclean shutdown and restart
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// We sleep 10 seconds to give some time for ssh command to cleanly finish before the node is shutdown.
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testReboot(f.ClientSet, "nohup sh -c 'echo 1 | sudo tee /proc/sys/kernel/sysrq && sleep 10 && echo b | sudo tee /proc/sysrq-trigger' >/dev/null 2>&1 &", nil)
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})
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It("each node by triggering kernel panic and ensure they function upon restart", func() {
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// kernel panic
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// We sleep 10 seconds to give some time for ssh command to cleanly finish before kernel panic is triggered.
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testReboot(f.ClientSet, "nohup sh -c 'echo 1 | sudo tee /proc/sys/kernel/sysrq && sleep 10 && echo c | sudo tee /proc/sysrq-trigger' >/dev/null 2>&1 &", nil)
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})
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It("each node by switching off the network interface and ensure they function upon switch on", func() {
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// switch the network interface off for a while to simulate a network outage
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// We sleep 10 seconds to give some time for ssh command to cleanly finish before network is down.
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testReboot(f.ClientSet, "nohup sh -c 'sleep 10 && sudo ip link set eth0 down && sleep 120 && sudo ip link set eth0 up && (sudo dhclient || true)' >/dev/null 2>&1 &", nil)
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})
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It("each node by dropping all inbound packets for a while and ensure they function afterwards", func() {
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// tell the firewall to drop all inbound packets for a while
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// We sleep 10 seconds to give some time for ssh command to cleanly finish before starting dropping inbound packets.
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// We still accept packages send from localhost to prevent monit from restarting kubelet.
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tmpLogPath := "/tmp/drop-inbound.log"
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testReboot(f.ClientSet, dropPacketsScript("INPUT", tmpLogPath), catLogHook(tmpLogPath))
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})
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It("each node by dropping all outbound packets for a while and ensure they function afterwards", func() {
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// tell the firewall to drop all outbound packets for a while
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// We sleep 10 seconds to give some time for ssh command to cleanly finish before starting dropping outbound packets.
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// We still accept packages send to localhost to prevent monit from restarting kubelet.
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tmpLogPath := "/tmp/drop-outbound.log"
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testReboot(f.ClientSet, dropPacketsScript("OUTPUT", tmpLogPath), catLogHook(tmpLogPath))
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})
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})
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func testReboot(c clientset.Interface, rebootCmd string, hook terminationHook) {
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// Get all nodes, and kick off the test on each.
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nodelist := framework.GetReadySchedulableNodesOrDie(c)
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if hook != nil {
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defer func() {
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framework.Logf("Executing termination hook on nodes")
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hook(framework.TestContext.Provider, nodelist)
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}()
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}
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result := make([]bool, len(nodelist.Items))
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wg := sync.WaitGroup{}
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wg.Add(len(nodelist.Items))
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failed := false
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for ix := range nodelist.Items {
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go func(ix int) {
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defer wg.Done()
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n := nodelist.Items[ix]
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result[ix] = rebootNode(c, framework.TestContext.Provider, n.ObjectMeta.Name, rebootCmd)
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if !result[ix] {
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failed = true
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}
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}(ix)
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}
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// Wait for all to finish and check the final result.
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wg.Wait()
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if failed {
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for ix := range nodelist.Items {
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n := nodelist.Items[ix]
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if !result[ix] {
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framework.Logf("Node %s failed reboot test.", n.ObjectMeta.Name)
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}
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}
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framework.Failf("Test failed; at least one node failed to reboot in the time given.")
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}
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}
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func printStatusAndLogsForNotReadyPods(c clientset.Interface, ns string, podNames []string, pods []*v1.Pod) {
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printFn := func(id, log string, err error, previous bool) {
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prefix := "Retrieving log for container"
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if previous {
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prefix = "Retrieving log for the last terminated container"
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}
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if err != nil {
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framework.Logf("%s %s, err: %v:\n%s\n", prefix, id, err, log)
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} else {
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framework.Logf("%s %s:\n%s\n", prefix, id, log)
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}
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}
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podNameSet := sets.NewString(podNames...)
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for _, p := range pods {
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if p.Namespace != ns {
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continue
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}
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if !podNameSet.Has(p.Name) {
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continue
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}
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if ok, _ := testutils.PodRunningReady(p); ok {
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continue
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}
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framework.Logf("Status for not ready pod %s/%s: %+v", p.Namespace, p.Name, p.Status)
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// Print the log of the containers if pod is not running and ready.
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for _, container := range p.Status.ContainerStatuses {
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cIdentifer := fmt.Sprintf("%s/%s/%s", p.Namespace, p.Name, container.Name)
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log, err := framework.GetPodLogs(c, p.Namespace, p.Name, container.Name)
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printFn(cIdentifer, log, err, false)
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// Get log from the previous container.
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if container.RestartCount > 0 {
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printFn(cIdentifer, log, err, true)
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}
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}
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}
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}
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// rebootNode takes node name on provider through the following steps using c:
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// - ensures the node is ready
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// - ensures all pods on the node are running and ready
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// - reboots the node (by executing rebootCmd over ssh)
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// - ensures the node reaches some non-ready state
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// - ensures the node becomes ready again
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// - ensures all pods on the node become running and ready again
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//
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// It returns true through result only if all of the steps pass; at the first
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// failed step, it will return false through result and not run the rest.
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func rebootNode(c clientset.Interface, provider, name, rebootCmd string) bool {
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// Setup
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ns := metav1.NamespaceSystem
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ps, err := testutils.NewPodStore(c, ns, labels.Everything(), fields.OneTermEqualSelector(api.PodHostField, name))
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if err != nil {
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framework.Logf("Couldn't initialize pod store: %v", err)
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return false
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}
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defer ps.Stop()
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// Get the node initially.
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framework.Logf("Getting %s", name)
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node, err := c.CoreV1().Nodes().Get(name, metav1.GetOptions{})
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if err != nil {
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framework.Logf("Couldn't get node %s", name)
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return false
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}
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// Node sanity check: ensure it is "ready".
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if !framework.WaitForNodeToBeReady(c, name, framework.NodeReadyInitialTimeout) {
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return false
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}
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// Get all the pods on the node that don't have liveness probe set.
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// Liveness probe may cause restart of a pod during node reboot, and the pod may not be running.
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pods := ps.List()
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podNames := []string{}
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for _, p := range pods {
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probe := false
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for _, c := range p.Spec.Containers {
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if c.LivenessProbe != nil {
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probe = true
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break
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}
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}
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if !probe {
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podNames = append(podNames, p.ObjectMeta.Name)
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}
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}
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framework.Logf("Node %s has %d assigned pods with no liveness probes: %v", name, len(podNames), podNames)
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// For each pod, we do a sanity check to ensure it's running / healthy
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// or succeeded now, as that's what we'll be checking later.
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if !framework.CheckPodsRunningReadyOrSucceeded(c, ns, podNames, framework.PodReadyBeforeTimeout) {
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printStatusAndLogsForNotReadyPods(c, ns, podNames, pods)
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return false
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}
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// Reboot the node.
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if err = framework.IssueSSHCommand(rebootCmd, provider, node); err != nil {
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framework.Logf("Error while issuing ssh command: %v", err)
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return false
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}
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// Wait for some kind of "not ready" status.
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if !framework.WaitForNodeToBeNotReady(c, name, rebootNodeNotReadyTimeout) {
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return false
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}
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// Wait for some kind of "ready" status.
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if !framework.WaitForNodeToBeReady(c, name, rebootNodeReadyAgainTimeout) {
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return false
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}
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// Ensure all of the pods that we found on this node before the reboot are
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// running / healthy, or succeeded.
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if !framework.CheckPodsRunningReadyOrSucceeded(c, ns, podNames, rebootPodReadyAgainTimeout) {
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newPods := ps.List()
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printStatusAndLogsForNotReadyPods(c, ns, podNames, newPods)
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return false
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}
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framework.Logf("Reboot successful on node %s", name)
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return true
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}
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type terminationHook func(provider string, nodes *v1.NodeList)
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func catLogHook(logPath string) terminationHook {
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return func(provider string, nodes *v1.NodeList) {
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for _, n := range nodes.Items {
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cmd := fmt.Sprintf("cat %v && rm %v", logPath, logPath)
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if _, err := framework.IssueSSHCommandWithResult(cmd, provider, &n); err != nil {
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framework.Logf("Error while issuing ssh command: %v", err)
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}
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}
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}
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}
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func dropPacketsScript(chainName, logPath string) string {
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return strings.Replace(fmt.Sprintf(`
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nohup sh -c '
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set -x
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sleep 10
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while true; do sudo iptables -I ${CHAIN} 1 -s 127.0.0.1 -j ACCEPT && break; done
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while true; do sudo iptables -I ${CHAIN} 2 -j DROP && break; done
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date
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sleep 120
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while true; do sudo iptables -D ${CHAIN} -j DROP && break; done
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while true; do sudo iptables -D ${CHAIN} -s 127.0.0.1 -j ACCEPT && break; done
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' >%v 2>&1 &
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`, logPath), "${CHAIN}", chainName, -1)
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}
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