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E2E Performance test to print latency numbers for vsphere volume lifecycle operations
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parent
e873b36a44
commit
8c77b6c931
@ -34,6 +34,7 @@ go_library(
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"vsphere_volume_fstype.go",
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"vsphere_volume_master_restart.go",
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"vsphere_volume_ops_storm.go",
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"vsphere_volume_perf.go",
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"vsphere_volume_placement.go",
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"vsphere_volume_vsan_policy.go",
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],
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255
test/e2e/storage/vsphere_volume_perf.go
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255
test/e2e/storage/vsphere_volume_perf.go
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@ -0,0 +1,255 @@
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/*
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Copyright 2017 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 storage
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import (
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"fmt"
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"os"
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"strconv"
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"time"
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. "github.com/onsi/ginkgo"
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. "github.com/onsi/gomega"
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"k8s.io/api/core/v1"
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storageV1 "k8s.io/api/storage/v1"
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"k8s.io/apimachinery/pkg/types"
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clientset "k8s.io/client-go/kubernetes"
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"k8s.io/kubernetes/pkg/cloudprovider/providers/vsphere"
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"k8s.io/kubernetes/test/e2e/framework"
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)
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/* This test calculates latency numbers for volume lifecycle operations
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1. Create 4 type of storage classes
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2. Read the total number of volumes to be created and volumes per pod
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3. Create total PVCs (number of volumes)
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4. Create Pods with attached volumes per pod
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5. Verify access to the volumes
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6. Delete pods and wait for volumes to detach
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7. Delete the PVCs
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*/
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const (
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SCSIUnitsAvailablePerNode = 55
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CreateOp = "CreateOp"
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AttachOp = "AttachOp"
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DetachOp = "DetachOp"
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DeleteOp = "DeleteOp"
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)
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var _ = SIGDescribe("vcp-performance [Feature:vsphere]", func() {
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f := framework.NewDefaultFramework("vcp-performance")
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var (
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client clientset.Interface
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namespace string
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nodeSelectorList []*NodeSelector
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volumeCount int
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volumesPerPod int
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iterations int
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policyName string
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datastoreName string
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)
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BeforeEach(func() {
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var err error
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framework.SkipUnlessProviderIs("vsphere")
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client = f.ClientSet
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namespace = f.Namespace.Name
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// Read the environment variables
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volumeCountStr := os.Getenv("VCP_PERF_VOLUME_COUNT")
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Expect(volumeCountStr).NotTo(BeEmpty(), "ENV VCP_PERF_VOLUME_COUNT is not set")
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volumeCount, err = strconv.Atoi(volumeCountStr)
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Expect(err).NotTo(HaveOccurred(), "Error Parsing VCP_PERF_VOLUME_COUNT")
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volumesPerPodStr := os.Getenv("VCP_PERF_VOLUME_PER_POD")
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Expect(volumesPerPodStr).NotTo(BeEmpty(), "ENV VCP_PERF_VOLUME_PER_POD is not set")
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volumesPerPod, err = strconv.Atoi(volumesPerPodStr)
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Expect(err).NotTo(HaveOccurred(), "Error Parsing VCP_PERF_VOLUME_PER_POD")
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iterationsStr := os.Getenv("VCP_PERF_ITERATIONS")
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Expect(iterationsStr).NotTo(BeEmpty(), "ENV VCP_PERF_ITERATIONS is not set")
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iterations, err = strconv.Atoi(iterationsStr)
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Expect(err).NotTo(HaveOccurred(), "Error Parsing VCP_PERF_ITERATIONS")
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policyName = os.Getenv("VSPHERE_SPBM_GOLD_POLICY")
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datastoreName = os.Getenv("VSPHERE_DATASTORE")
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Expect(policyName).NotTo(BeEmpty(), "ENV VSPHERE_SPBM_GOLD_POLICY is not set")
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Expect(datastoreName).NotTo(BeEmpty(), "ENV VSPHERE_DATASTORE is not set")
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nodes := framework.GetReadySchedulableNodesOrDie(client)
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Expect(len(nodes.Items)).To(BeNumerically(">=", 1), "Requires at least %d nodes (not %d)", 2, len(nodes.Items))
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msg := fmt.Sprintf("Cannot attach %d volumes to %d nodes. Maximum volumes that can be attached on %d nodes is %d", volumeCount, len(nodes.Items), len(nodes.Items), SCSIUnitsAvailablePerNode*len(nodes.Items))
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Expect(volumeCount).To(BeNumerically("<=", SCSIUnitsAvailablePerNode*len(nodes.Items)), msg)
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msg = fmt.Sprintf("Cannot attach %d volumes per pod. Maximum volumes that can be attached per pod is %d", volumesPerPod, SCSIUnitsAvailablePerNode)
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Expect(volumesPerPod).To(BeNumerically("<=", SCSIUnitsAvailablePerNode), msg)
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nodeSelectorList = createNodeLabels(client, namespace, nodes)
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})
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It("vcp performance tests", func() {
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scList := getTestStorageClasses(client, policyName, datastoreName)
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defer func(scList []*storageV1.StorageClass) {
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for _, sc := range scList {
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client.StorageV1().StorageClasses().Delete(sc.Name, nil)
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}
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}(scList)
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sumLatency := make(map[string]float64)
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for i := 0; i < iterations; i++ {
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latency := invokeVolumeLifeCyclePerformance(f, client, namespace, scList, volumesPerPod, volumeCount, nodeSelectorList)
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for key, val := range latency {
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sumLatency[key] += val
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}
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}
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iterations64 := float64(iterations)
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framework.Logf("Average latency for below operations")
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framework.Logf("Creating %d PVCs and waiting for bound phase: %v seconds", volumeCount, sumLatency[CreateOp]/iterations64)
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framework.Logf("Creating %v Pod: %v seconds", volumeCount/volumesPerPod, sumLatency[AttachOp]/iterations64)
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framework.Logf("Deleting %v Pod and waiting for disk to be detached: %v seconds", volumeCount/volumesPerPod, sumLatency[DetachOp]/iterations64)
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framework.Logf("Deleting %v PVCs: %v seconds", volumeCount, sumLatency[DeleteOp]/iterations64)
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})
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})
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func getTestStorageClasses(client clientset.Interface, policyName, datastoreName string) []*storageV1.StorageClass {
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const (
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storageclass1 = "sc-default"
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storageclass2 = "sc-vsan"
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storageclass3 = "sc-spbm"
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storageclass4 = "sc-user-specified-ds"
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)
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scNames := []string{storageclass1, storageclass2, storageclass3, storageclass4}
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scArrays := make([]*storageV1.StorageClass, len(scNames))
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for index, scname := range scNames {
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// Create vSphere Storage Class
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By(fmt.Sprintf("Creating Storage Class : %v", scname))
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var sc *storageV1.StorageClass
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var err error
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switch scname {
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case storageclass1:
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sc, err = client.StorageV1().StorageClasses().Create(getVSphereStorageClassSpec(storageclass1, nil))
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case storageclass2:
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var scVSanParameters map[string]string
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scVSanParameters = make(map[string]string)
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scVSanParameters[Policy_HostFailuresToTolerate] = "1"
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sc, err = client.StorageV1().StorageClasses().Create(getVSphereStorageClassSpec(storageclass2, scVSanParameters))
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case storageclass3:
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var scSPBMPolicyParameters map[string]string
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scSPBMPolicyParameters = make(map[string]string)
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scSPBMPolicyParameters[SpbmStoragePolicy] = policyName
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sc, err = client.StorageV1().StorageClasses().Create(getVSphereStorageClassSpec(storageclass3, scSPBMPolicyParameters))
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case storageclass4:
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var scWithDSParameters map[string]string
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scWithDSParameters = make(map[string]string)
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scWithDSParameters[Datastore] = datastoreName
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scWithDatastoreSpec := getVSphereStorageClassSpec(storageclass4, scWithDSParameters)
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sc, err = client.StorageV1().StorageClasses().Create(scWithDatastoreSpec)
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}
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Expect(sc).NotTo(BeNil())
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Expect(err).NotTo(HaveOccurred())
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scArrays[index] = sc
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}
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return scArrays
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}
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// invokeVolumeLifeCyclePerformance peforms full volume life cycle management and records latency for each operation
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func invokeVolumeLifeCyclePerformance(f *framework.Framework, client clientset.Interface, namespace string, sc []*storageV1.StorageClass, volumesPerPod int, volumeCount int, nodeSelectorList []*NodeSelector) (latency map[string]float64) {
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var (
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totalpvclaims [][]*v1.PersistentVolumeClaim
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totalpvs [][]*v1.PersistentVolume
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totalpods []*v1.Pod
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)
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nodeVolumeMap := make(map[types.NodeName][]string)
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latency = make(map[string]float64)
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numPods := volumeCount / volumesPerPod
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By(fmt.Sprintf("Creating %d PVCs", volumeCount))
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start := time.Now()
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for i := 0; i < numPods; i++ {
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var pvclaims []*v1.PersistentVolumeClaim
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for j := 0; j < volumesPerPod; j++ {
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currsc := sc[((i*numPods)+j)%len(sc)]
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pvclaim, err := framework.CreatePVC(client, namespace, getVSphereClaimSpecWithStorageClassAnnotation(namespace, "2Gi", currsc))
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Expect(err).NotTo(HaveOccurred())
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pvclaims = append(pvclaims, pvclaim)
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}
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totalpvclaims = append(totalpvclaims, pvclaims)
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}
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for _, pvclaims := range totalpvclaims {
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persistentvolumes, err := framework.WaitForPVClaimBoundPhase(client, pvclaims, framework.ClaimProvisionTimeout)
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Expect(err).NotTo(HaveOccurred())
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totalpvs = append(totalpvs, persistentvolumes)
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}
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elapsed := time.Since(start)
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latency[CreateOp] = elapsed.Seconds()
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By("Creating pod to attach PVs to the node")
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start = time.Now()
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for i, pvclaims := range totalpvclaims {
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nodeSelector := nodeSelectorList[i%len(nodeSelectorList)]
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pod, err := framework.CreatePod(client, namespace, map[string]string{nodeSelector.labelKey: nodeSelector.labelValue}, pvclaims, false, "")
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Expect(err).NotTo(HaveOccurred())
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totalpods = append(totalpods, pod)
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defer framework.DeletePodWithWait(f, client, pod)
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}
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elapsed = time.Since(start)
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latency[AttachOp] = elapsed.Seconds()
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// Verify access to the volumes
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vsp, err := vsphere.GetVSphere()
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Expect(err).NotTo(HaveOccurred())
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for i, pod := range totalpods {
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verifyVSphereVolumesAccessible(pod, totalpvs[i], vsp)
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}
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By("Deleting pods")
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start = time.Now()
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for _, pod := range totalpods {
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err = framework.DeletePodWithWait(f, client, pod)
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Expect(err).NotTo(HaveOccurred())
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}
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elapsed = time.Since(start)
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latency[DetachOp] = elapsed.Seconds()
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for i, pod := range totalpods {
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for _, pv := range totalpvs[i] {
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nodeName := types.NodeName(pod.Spec.NodeName)
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nodeVolumeMap[nodeName] = append(nodeVolumeMap[nodeName], pv.Spec.VsphereVolume.VolumePath)
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}
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}
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err = waitForVSphereDisksToDetach(vsp, nodeVolumeMap)
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Expect(err).NotTo(HaveOccurred())
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By("Deleting the PVCs")
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start = time.Now()
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for _, pvclaims := range totalpvclaims {
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for _, pvc := range pvclaims {
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err = framework.DeletePersistentVolumeClaim(client, pvc.Name, namespace)
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Expect(err).NotTo(HaveOccurred())
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}
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}
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elapsed = time.Since(start)
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latency[DeleteOp] = elapsed.Seconds()
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return latency
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}
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