253 lines
7.4 KiB
Markdown
253 lines
7.4 KiB
Markdown
# Smoke Test
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In this lab you will complete a series of tasks to ensure your Kubernetes cluster is functioning correctly.
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## Data Encryption
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In this section you will verify the ability to [encrypt secret data at rest](https://kubernetes.io/docs/tasks/administer-cluster/encrypt-data/#verifying-that-data-is-encrypted).
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Create a generic secret:
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```
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kubectl create secret generic kubernetes-the-hard-way \
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--from-literal="mykey=mydata"
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```
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Print a hexdump of the `kubernetes-the-hard-way` secret stored in etcd:
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```gcloud```
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```
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gcloud compute ssh controller-0 \
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--command "sudo ETCDCTL_API=3 etcdctl get \
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--endpoints=https://127.0.0.1:2379 \
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--cacert=/etc/etcd/ca.pem \
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--cert=/etc/etcd/kubernetes.pem \
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--key=/etc/etcd/kubernetes-key.pem\
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/registry/secrets/default/kubernetes-the-hard-way | hexdump -C"
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```
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```az```
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```
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ssh -i $HOME/.ssh/k8sthehardway azureuser@$(az vm show -d --name controller-0 --query "publicIps" -o tsv) \
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"sudo ETCDCTL_API=3 etcdctl get \
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--endpoints=https://127.0.0.1:2379 \
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--cacert=/etc/etcd/ca.pem \
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--cert=/etc/etcd/kubernetes.pem \
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--key=/etc/etcd/kubernetes-key.pem\
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/registry/secrets/default/kubernetes-the-hard-way | hexdump -C"
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```
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> output
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```
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00000000 2f 72 65 67 69 73 74 72 79 2f 73 65 63 72 65 74 |/registry/secret|
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00000010 73 2f 64 65 66 61 75 6c 74 2f 6b 75 62 65 72 6e |s/default/kubern|
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00000020 65 74 65 73 2d 74 68 65 2d 68 61 72 64 2d 77 61 |etes-the-hard-wa|
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00000030 79 0a 6b 38 73 3a 65 6e 63 3a 61 65 73 63 62 63 |y.k8s:enc:aescbc|
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00000040 3a 76 31 3a 6b 65 79 31 3a 97 d1 2c cd 89 0d 08 |:v1:key1:..,....|
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00000050 29 3c 7d 19 41 cb ea d7 3d 50 45 88 82 a3 1f 11 |)<}.A...=PE.....|
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00000060 26 cb 43 2e c8 cf 73 7d 34 7e b1 7f 9f 71 d2 51 |&.C...s}4~...q.Q|
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00000070 45 05 16 e9 07 d4 62 af f8 2e 6d 4a cf c8 e8 75 |E.....b...mJ...u|
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00000080 6b 75 1e b7 64 db 7d 7f fd f3 96 62 e2 a7 ce 22 |ku..d.}....b..."|
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00000090 2b 2a 82 01 c3 f5 83 ae 12 8b d5 1d 2e e6 a9 90 |+*..............|
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000000a0 bd f0 23 6c 0c 55 e2 52 18 78 fe bf 6d 76 ea 98 |..#l.U.R.x..mv..|
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000000b0 fc 2c 17 36 e3 40 87 15 25 13 be d6 04 88 68 5b |.,.6.@..%.....h[|
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000000c0 a4 16 81 f6 8e 3b 10 46 cb 2c ba 21 35 0c 5b 49 |.....;.F.,.!5.[I|
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000000d0 e5 27 20 4c b3 8e 6b d0 91 c2 28 f1 cc fa 6a 1b |.' L..k...(...j.|
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000000e0 31 19 74 e7 a5 66 6a 99 1c 84 c7 e0 b0 fc 32 86 |1.t..fj.......2.|
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000000f0 f3 29 5a a4 1c d5 a4 e3 63 26 90 95 1e 27 d0 14 |.)Z.....c&...'..|
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00000100 94 f0 ac 1a cd 0d b9 4b ae 32 02 a0 f8 b7 3f 0b |.......K.2....?.|
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00000110 6f ad 1f 4d 15 8a d6 68 95 63 cf 7d 04 9a 52 71 |o..M...h.c.}..Rq|
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00000120 75 ff 87 6b c5 42 e1 72 27 b5 e9 1a fe e8 c0 3f |u..k.B.r'......?|
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00000130 d9 04 5e eb 5d 43 0d 90 ce fa 04 a8 4a b0 aa 01 |..^.]C......J...|
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00000140 cf 6d 5b 80 70 5b 99 3c d6 5c c0 dc d1 f5 52 4a |.m[.p[.<.\....RJ|
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00000150 2c 2d 28 5a 63 57 8e 4f df 0a |,-(ZcW.O..|
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0000015a
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```
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The etcd key should be prefixed with `k8s:enc:aescbc:v1:key1`, which indicates the `aescbc` provider was used to encrypt the data with the `key1` encryption key.
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## Deployments
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In this section you will verify the ability to create and manage [Deployments](https://kubernetes.io/docs/concepts/workloads/controllers/deployment/).
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Create a deployment for the [nginx](https://nginx.org/en/) web server:
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```
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kubectl create deployment nginx --image=nginx
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```
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List the pod created by the `nginx` deployment:
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```
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kubectl get pods -l app=nginx
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```
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> output
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```
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NAME READY STATUS RESTARTS AGE
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nginx-f89759699-kpn5m 1/1 Running 0 10s
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```
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### Port Forwarding
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In this section you will verify the ability to access applications remotely using [port forwarding](https://kubernetes.io/docs/tasks/access-application-cluster/port-forward-access-application-cluster/).
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Retrieve the full name of the `nginx` pod:
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```
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POD_NAME=$(kubectl get pods -l app=nginx -o jsonpath="{.items[0].metadata.name}")
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```
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Forward port `8080` on your local machine to port `80` of the `nginx` pod:
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```
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kubectl port-forward $POD_NAME 8080:80
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```
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> output
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```
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Forwarding from 127.0.0.1:8080 -> 80
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Forwarding from [::1]:8080 -> 80
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```
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In a new terminal make an HTTP request using the forwarding address:
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```
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curl --head http://127.0.0.1:8080
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```
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> output
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```
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HTTP/1.1 200 OK
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Server: nginx/1.19.10
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Date: Sun, 02 May 2021 05:29:25 GMT
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Content-Type: text/html
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Content-Length: 612
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Last-Modified: Tue, 13 Apr 2021 15:13:59 GMT
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Connection: keep-alive
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ETag: "6075b537-264"
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Accept-Ranges: bytes
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```
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Switch back to the previous terminal and stop the port forwarding to the `nginx` pod:
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```
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Forwarding from 127.0.0.1:8080 -> 80
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Forwarding from [::1]:8080 -> 80
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Handling connection for 8080
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^C
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```
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### Logs
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In this section you will verify the ability to [retrieve container logs](https://kubernetes.io/docs/concepts/cluster-administration/logging/).
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Print the `nginx` pod logs:
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```
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kubectl logs $POD_NAME
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```
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> output
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```
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...
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127.0.0.1 - - [02/May/2021:05:29:25 +0000] "HEAD / HTTP/1.1" 200 0 "-" "curl/7.64.0" "-"
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```
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### Exec
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In this section you will verify the ability to [execute commands in a container](https://kubernetes.io/docs/tasks/debug-application-cluster/get-shell-running-container/#running-individual-commands-in-a-container).
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Print the nginx version by executing the `nginx -v` command in the `nginx` container:
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```
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kubectl exec -ti $POD_NAME -- nginx -v
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```
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> output
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```
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nginx version: nginx/1.19.10
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```
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## Services
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In this section you will verify the ability to expose applications using a [Service](https://kubernetes.io/docs/concepts/services-networking/service/).
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Expose the `nginx` deployment using a [NodePort](https://kubernetes.io/docs/concepts/services-networking/service/#type-nodeport) service:
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```
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kubectl expose deployment nginx --port 80 --type NodePort
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```
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> The LoadBalancer service type can not be used because your cluster is not configured with [cloud provider integration](https://kubernetes.io/docs/getting-started-guides/scratch/#cloud-provider). Setting up cloud provider integration is out of scope for this tutorial.
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Retrieve the node port assigned to the `nginx` service:
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```
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NODE_PORT=$(kubectl get svc nginx \
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--output=jsonpath='{range .spec.ports[0]}{.nodePort}')
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```
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Create a firewall rule that allows remote access to the `nginx` node port:
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```gcloud```
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```
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gcloud compute firewall-rules create kubernetes-the-hard-way-allow-nginx-service \
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--allow=tcp:${NODE_PORT} \
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--network kubernetes-the-hard-way
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```
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```az```
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```
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az network nsg rule create \
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--name kubernetes-the-hard-way-inbound-smoke-test \
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--nsg-name kubernetes-the-hard-way-nsg \
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--priority 300 \
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--access ALLOW \
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--source-address-prefixes 0.0.0.0/0 \
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--destination-port-ranges ${NODE_PORT} \
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--protocol Tcp \
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--direction Inbound
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```
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Retrieve the external IP address of a worker instance:
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```gcloud```
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```
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EXTERNAL_IP=$(gcloud compute instances describe worker-0 \
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--format 'value(networkInterfaces[0].accessConfigs[0].natIP)')
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```
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```az```
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```
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EXTERNAL_IP=$(az vm show -d -n worker-0 --query publicIps -o tsv)
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```
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Make an HTTP request using the external IP address and the `nginx` node port:
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```
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curl -I http://${EXTERNAL_IP}:${NODE_PORT}
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```
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> output
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```
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HTTP/1.1 200 OK
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Server: nginx/1.19.10
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Date: Sun, 02 May 2021 05:31:52 GMT
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Content-Type: text/html
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Content-Length: 612
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Last-Modified: Tue, 13 Apr 2021 15:13:59 GMT
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Connection: keep-alive
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ETag: "6075b537-264"
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Accept-Ranges: bytes
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```
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Next: [Cleaning Up](14-cleanup.md)
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