Kubernetes Security Policies
Comprehensive guidance for implementing security policies in Kubernetes clusters, covering Pod Security Standards, Network Policies, RBAC, Security Contexts, admission control, secrets management, and runtime security for production-grade hardened deployments.
When to Use This Skill
- Implementing Pod Security Standards (PSS/PSA) across namespaces
- Designing and enforcing Network Policies for micro-segmentation
- Configuring RBAC with least-privilege access control
- Setting Security Contexts for container hardening
- Deploying admission controllers (OPA/Gatekeeper, Kyverno)
- Managing secrets and sensitive data securely
- Implementing image security and vulnerability scanning
- Enforcing runtime security policies and threat detection
- Meeting compliance requirements (CIS, NIST, PCI-DSS, SOC2)
- Conducting security audits and hardening assessments
Core Security Concepts
Pod Security Standards (PSS):
Three progressive security levels enforced via Pod Security Admission (PSA):
- Privileged: Unrestricted (default)
- Baseline: Prevents known privilege escalations
- Restricted: Pod hardening best practices (production recommended)
Network Policies:
Zero-trust micro-segmentation controlling pod-to-pod and pod-to-external traffic using label selectors and namespace isolation.
RBAC (Role-Based Access Control):
Least-privilege access control using ServiceAccounts, Roles, RoleBindings for namespace-scoped permissions, and ClusterRoles for cluster-wide access.
Security Contexts:
Container and pod-level security settings including user/group IDs, capabilities, seccomp profiles, and filesystem restrictions.
Admission Control:
Policy enforcement at API admission time using OPA Gatekeeper (Rego) or Kyverno (YAML) to validate, mutate, or reject resources.
Secrets Management:
External secret storage integration (Vault, AWS Secrets Manager, Sealed Secrets) instead of native Kubernetes secrets.
Image Security:
Vulnerability scanning, signature verification, digest-based immutability, and private registry authentication.
Quick Reference
| Task |
Load reference |
| Pod Security Standards (PSS/PSA) |
skills/kubernetes-security-policies/references/pod-security-standards.md |
| Network Policies |
skills/kubernetes-security-policies/references/network-policies.md |
| RBAC (Roles, ServiceAccounts) |
skills/kubernetes-security-policies/references/rbac.md |
| Security Contexts (capabilities, seccomp) |
skills/kubernetes-security-policies/references/security-contexts.md |
| Admission Control (OPA, Kyverno) |
skills/kubernetes-security-policies/references/admission-control.md |
| Secrets Management (Vault, ESO) |
skills/kubernetes-security-policies/references/secrets-management.md |
| Image Security (scanning, signing) |
skills/kubernetes-security-policies/references/image-security.md |
| Best Practices & Compliance |
skills/kubernetes-security-policies/references/best-practices.md |
Security Implementation Workflow
Phase 1: Baseline Assessment
- Audit current security posture with kube-bench or kubescape
- Identify gaps against CIS Kubernetes Benchmark
- Document compliance requirements (PCI-DSS, NIST, SOC2)
Phase 2: Pod Security Standards
- Enable PSA audit mode on all namespaces
- Identify violations using
kubectl get pods -A --show-labels
- Remediate workloads to meet baseline/restricted standards
- Progressively enforce: dev (warn) → staging (baseline) → prod (restricted)
Phase 3: Network Segmentation
- Deploy default-deny NetworkPolicy to all namespaces
- Create explicit allow rules for required traffic flows
- Implement database isolation policies
- Add monitoring/observability exceptions
Phase 4: Access Control (RBAC)
- Audit existing RBAC with
kubectl auth can-i --list
- Create dedicated ServiceAccounts per application
- Define least-privilege Roles with specific resource/verb restrictions
- Disable
automountServiceAccountToken by default
- Minimize ClusterRole usage
Phase 5: Admission Control
- Choose policy engine: OPA Gatekeeper (Rego) or Kyverno (YAML)
- Implement validation policies: require labels, resource limits, non-root
- Add mutation policies: inject security contexts, sidecar containers
- Enforce image policies: disallow latest tag, require signatures
Phase 6: Secrets Management
- Deploy External Secrets Operator or Vault integration
- Migrate native Secrets to external secret stores
- Enable encryption at rest for etcd
- Implement secret rotation policies
Phase 7: Image Security
- Integrate vulnerability scanning in CI/CD (Trivy, Snyk)
- Implement image signing with Sigstore/Cosign
- Enforce signature verification via admission control
- Use immutable image digests instead of tags
Phase 8: Runtime Security
- Deploy Falco for runtime threat detection
- Enable Kubernetes audit logging
- Configure alerts for security events
- Implement intrusion detection policies
Common Mistakes
Pod Security:
- Running containers as root (always set
runAsNonRoot: true)
- Using privileged containers (avoid unless absolutely necessary)
- Writable root filesystem (set
readOnlyRootFilesystem: true)
- Missing resource limits (required for restricted PSS)
Network Policies:
- No default-deny policy (unrestricted pod-to-pod traffic)
- Overly permissive egress rules (allow all external traffic)
- Forgetting DNS egress (pods can't resolve names)
- Missing monitoring/observability exceptions
RBAC:
- Overly broad ClusterRole permissions (violates least privilege)
- Sharing ServiceAccounts across applications
- Using
* verbs or resources in Roles
- Not auditing RBAC permissions regularly
Secrets:
- Committing secrets to Git repositories
- Using environment variables instead of mounted files
- Relying on base64 encoding as encryption
- No secret rotation policy
Admission Control:
- Enforcing policies without audit phase first
- Blocking kube-system namespace accidentally
- No policy testing in staging environment
- Missing exemptions for system components
Images:
- Using
latest tag (not immutable, breaks reproducibility)
- No vulnerability scanning in CI/CD
- Unsigned images in production
- Large base images (use distroless or Alpine)
Resources
Source: onfire7777/universal-ai-skills-library — distributed by TomeVault.
1---2name: kubernetes-security-policies-23description: Kubernetes security policies, RBAC, and Pod Security Standards for hardened cluster deployments. Use when implementing cluster security, defining network policies, or enforcing security compliance in Kubernetes environments. Use when this capability is needed.4---5# Kubernetes Security Policies67Comprehensive guidance for implementing security policies in Kubernetes clusters, covering Pod Security Standards, Network Policies, RBAC, Security Contexts, admission control, secrets management, and runtime security for production-grade hardened deployments.89## When to Use This Skill1011- Implementing Pod Security Standards (PSS/PSA) across namespaces12- Designing and enforcing Network Policies for micro-segmentation13- Configuring RBAC with least-privilege access control14- Setting Security Contexts for container hardening15- Deploying admission controllers (OPA/Gatekeeper, Kyverno)16- Managing secrets and sensitive data securely17- Implementing image security and vulnerability scanning18- Enforcing runtime security policies and threat detection19- Meeting compliance requirements (CIS, NIST, PCI-DSS, SOC2)20- Conducting security audits and hardening assessments2122## Core Security Concepts2324**Pod Security Standards (PSS):**25Three progressive security levels enforced via Pod Security Admission (PSA):26- **Privileged:** Unrestricted (default)27- **Baseline:** Prevents known privilege escalations28- **Restricted:** Pod hardening best practices (production recommended)2930**Network Policies:**31Zero-trust micro-segmentation controlling pod-to-pod and pod-to-external traffic using label selectors and namespace isolation.3233**RBAC (Role-Based Access Control):**34Least-privilege access control using ServiceAccounts, Roles, RoleBindings for namespace-scoped permissions, and ClusterRoles for cluster-wide access.3536**Security Contexts:**37Container and pod-level security settings including user/group IDs, capabilities, seccomp profiles, and filesystem restrictions.3839**Admission Control:**40Policy enforcement at API admission time using OPA Gatekeeper (Rego) or Kyverno (YAML) to validate, mutate, or reject resources.4142**Secrets Management:**43External secret storage integration (Vault, AWS Secrets Manager, Sealed Secrets) instead of native Kubernetes secrets.4445**Image Security:**46Vulnerability scanning, signature verification, digest-based immutability, and private registry authentication.4748## Quick Reference4950| Task | Load reference |51| --- | --- |52| Pod Security Standards (PSS/PSA) | `skills/kubernetes-security-policies/references/pod-security-standards.md` |53| Network Policies | `skills/kubernetes-security-policies/references/network-policies.md` |54| RBAC (Roles, ServiceAccounts) | `skills/kubernetes-security-policies/references/rbac.md` |55| Security Contexts (capabilities, seccomp) | `skills/kubernetes-security-policies/references/security-contexts.md` |56| Admission Control (OPA, Kyverno) | `skills/kubernetes-security-policies/references/admission-control.md` |57| Secrets Management (Vault, ESO) | `skills/kubernetes-security-policies/references/secrets-management.md` |58| Image Security (scanning, signing) | `skills/kubernetes-security-policies/references/image-security.md` |59| Best Practices & Compliance | `skills/kubernetes-security-policies/references/best-practices.md` |6061## Security Implementation Workflow6263### Phase 1: Baseline Assessment641. Audit current security posture with kube-bench or kubescape652. Identify gaps against CIS Kubernetes Benchmark663. Document compliance requirements (PCI-DSS, NIST, SOC2)6768### Phase 2: Pod Security Standards691. Enable PSA audit mode on all namespaces702. Identify violations using `kubectl get pods -A --show-labels`713. Remediate workloads to meet baseline/restricted standards724. Progressively enforce: dev (warn) → staging (baseline) → prod (restricted)7374### Phase 3: Network Segmentation751. Deploy default-deny NetworkPolicy to all namespaces762. Create explicit allow rules for required traffic flows773. Implement database isolation policies784. Add monitoring/observability exceptions7980### Phase 4: Access Control (RBAC)811. Audit existing RBAC with `kubectl auth can-i --list`822. Create dedicated ServiceAccounts per application833. Define least-privilege Roles with specific resource/verb restrictions844. Disable `automountServiceAccountToken` by default855. Minimize ClusterRole usage8687### Phase 5: Admission Control881. Choose policy engine: OPA Gatekeeper (Rego) or Kyverno (YAML)892. Implement validation policies: require labels, resource limits, non-root903. Add mutation policies: inject security contexts, sidecar containers914. Enforce image policies: disallow latest tag, require signatures9293### Phase 6: Secrets Management941. Deploy External Secrets Operator or Vault integration952. Migrate native Secrets to external secret stores963. Enable encryption at rest for etcd974. Implement secret rotation policies9899### Phase 7: Image Security1001. Integrate vulnerability scanning in CI/CD (Trivy, Snyk)1012. Implement image signing with Sigstore/Cosign1023. Enforce signature verification via admission control1034. Use immutable image digests instead of tags104105### Phase 8: Runtime Security1061. Deploy Falco for runtime threat detection1072. Enable Kubernetes audit logging1083. Configure alerts for security events1094. Implement intrusion detection policies110111## Common Mistakes112113**Pod Security:**114- Running containers as root (always set `runAsNonRoot: true`)115- Using privileged containers (avoid unless absolutely necessary)116- Writable root filesystem (set `readOnlyRootFilesystem: true`)117- Missing resource limits (required for restricted PSS)118119**Network Policies:**120- No default-deny policy (unrestricted pod-to-pod traffic)121- Overly permissive egress rules (allow all external traffic)122- Forgetting DNS egress (pods can't resolve names)123- Missing monitoring/observability exceptions124125**RBAC:**126- Overly broad ClusterRole permissions (violates least privilege)127- Sharing ServiceAccounts across applications128- Using `*` verbs or resources in Roles129- Not auditing RBAC permissions regularly130131**Secrets:**132- Committing secrets to Git repositories133- Using environment variables instead of mounted files134- Relying on base64 encoding as encryption135- No secret rotation policy136137**Admission Control:**138- Enforcing policies without audit phase first139- Blocking kube-system namespace accidentally140- No policy testing in staging environment141- Missing exemptions for system components142143**Images:**144- Using `latest` tag (not immutable, breaks reproducibility)145- No vulnerability scanning in CI/CD146- Unsigned images in production147- Large base images (use distroless or Alpine)148149## Resources150151- **Pod Security Standards:** https://kubernetes.io/docs/concepts/security/pod-security-standards/152- **Network Policies:** https://kubernetes.io/docs/concepts/services-networking/network-policies/153- **RBAC:** https://kubernetes.io/docs/reference/access-authn-authz/rbac/154- **OPA Gatekeeper:** https://open-policy-agent.github.io/gatekeeper/155- **Kyverno:** https://kyverno.io/docs/156- **External Secrets Operator:** https://external-secrets.io/157- **Falco Runtime Security:** https://falco.org/docs/158- **CIS Benchmarks:** https://www.cisecurity.org/benchmark/kubernetes159- **NSA/CISA Hardening Guide:** https://media.defense.gov/2022/Aug/29/2003066362/-1/-1/0/CTR_KUBERNETES_HARDENING_GUIDANCE_1.2_20220829.PDF160161---162> Source: [onfire7777/universal-ai-skills-library](https://github.com/onfire7777/universal-ai-skills-library) — distributed by [TomeVault](https://tomevault.io).163<!-- tomevault:4.0:skill_md:2026-05-22 -->