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scanning-kubernetes-manifests-with-kubesecscanning Kubernetes manifests with kubesec 部署

Agent Skill

用于辅助云资源、部署、容器、基础设施和运维自动化任务。它适合让 Agent 检查配置、整理部署步骤、分析资源状态、生成排障思路或辅助云服务接入。使用时需要明确目标环境、账号权限、区域和资源组,区分本地测试与生产操作;涉及删除资源、重启服务、修改网络或权限配置时,应先确认影响范围。

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安装说明

本站只整理中文说明和来源信息,不托管安装包,也不代用户安装。

GitHub

来源数

2

许可证

unknown

最后核验

2026-05-01

来源状态

来源可访问

安装方式

通过对话安装

复制提示词发给支持本地命令或 Skills 的 AI 助手,先确认命令和权限,再让它执行。

请帮我安装这个 Agent Skill:scanning-kubernetes-manifests-with-kubesec(scanning Kubernetes manifests with kubesec 部署)
来源仓库:https://github.com/mukul975/anthropic-cybersecurity-skills
仓库路径:skills/scanning-kubernetes-manifests-with-kubesec
安装命令:
npx skills add https://github.com/mukul975/anthropic-cybersecurity-skills --skill scanning-kubernetes-manifests-with-kubesec
安装前请先检查当前环境是否支持对应 CLI,并向我确认将要执行的命令、安装目录、联网范围和文件读写权限;确认后再执行。

命令行安装

复制命令到本机终端执行。该命令会通过 npx skills 从第三方来源获取 Skill;本站只展示命令,不托管安装包,也不自动执行。

skills.shnpx skills
npx skills add https://github.com/mukul975/anthropic-cybersecurity-skills --skill scanning-kubernetes-manifests-with-kubesec

简介

用于分析 Kubernetes 资源配置文件的安全性。

  • 适合在部署前检查 Pod、Service 等资源的安全策略。
  • 可识别特权提升、挂载敏感目录等高风险配置。scanning-kubernetes-manifests-with-kubesec 属于运维和基础设施类 Skill,可作为该场景下的辅助能力补充。
  • 安装命令指向 GitHub 仓库,需确保 kubectl 环境就绪。
  • 建议与 CI 流程集成,阻断不安全的 manifest 提交。

SKILL.md

Scanning Kubernetes Manifests with Kubesec

Overview

Kubesec is an open-source security risk analysis tool developed by ControlPlane that inspects Kubernetes resource manifests for common exploitable risks such as privilege escalation, writable host mounts, and excessive capabilities. It assigns a numerical security score to each resource and provides actionable recommendations for hardening. Kubesec can be used as a CLI binary, Docker container, kubectl plugin, admission webhook, or REST API endpoint.

When to Use

  • When conducting security assessments that involve scanning kubernetes manifests with kubesec
  • When following incident response procedures for related security events
  • When performing scheduled security testing or auditing activities
  • When validating security controls through hands-on testing

Prerequisites

  • Kubernetes manifest files (YAML/JSON) for Deployments, Pods, DaemonSets, StatefulSets
  • Docker or Go runtime for local installation
  • kubectl access for scanning live cluster resources
  • CI/CD pipeline access for automated scanning integration

Core Concepts

Security Scoring System

Kubesec assigns a score to each Kubernetes resource based on security checks:

  • Positive scores: Awarded for security-enhancing configurations (readOnlyRootFilesystem, runAsNonRoot)
  • Zero or negative scores: Indicate missing security controls or dangerous configurations
  • Critical advisories: Flagged configurations that represent immediate security risks

Check Categories

  1. Privilege Controls: Checks for privileged containers, host PID/network access, root execution
  2. Capabilities: Identifies excessive Linux capabilities (SYS_ADMIN, NET_RAW)
  3. Volume Mounts: Detects dangerous host path mounts and writable sensitive paths
  4. Resource Limits: Validates presence of CPU/memory resource constraints
  5. Security Context: Verifies seccomp profiles, AppArmor annotations, SELinux contexts

Installation

Binary Installation

# Linux/macOS
curl -sSL https://github.com/controlplaneio/kubesec/releases/latest/download/kubesec_linux_amd64.tar.gz | \
  tar xz -C /usr/local/bin/ kubesec

# Verify installation
kubesec version

Docker Installation

docker pull kubesec/kubesec:v2

# Scan a manifest file
docker run -i kubesec/kubesec:v2 scan /dev/stdin < deployment.yaml

kubectl Plugin

kubectl krew install kubesec-scan
kubectl kubesec-scan pod mypod -n default

Practical Scanning

Scanning a Single Manifest

# Scan a deployment manifest
kubesec scan deployment.yaml

# Scan with JSON output
kubesec scan -o json deployment.yaml

# Scan from stdin
cat pod.yaml | kubesec scan -

Sample Output

[
  {
    "object": "Pod/web-app.default",
    "valid": true,
    "fileName": "pod.yaml",
    "message": "Passed with a score of 3 points",
    "score": 3,
    "scoring": {
      "passed": [
        {
          "id": "ReadOnlyRootFilesystem",
          "selector": "containers[] .securityContext .readOnlyRootFilesystem == true",
          "reason": "An immutable root filesystem prevents applications from writing to their local disk",
          "points": 1
        },
        {
          "id": "RunAsNonRoot",
          "selector": "containers[] .securityContext .runAsNonRoot == true",
          "reason": "Force the running image to run as a non-root user",
          "points": 1
        },
        {
          "id": "LimitsCPU",
          "selector": "containers[] .resources .limits .cpu",
          "reason": "Enforcing CPU limits prevents DOS via resource exhaustion",
          "points": 1
        }
      ],
      "advise": [
        {
          "id": "ApparmorAny",
          "selector": "metadata .annotations .\"container.apparmor.security.beta.kubernetes.io/nginx\"",
          "reason": "Well defined AppArmor policies reduce the attack surface of the container",
          "points": 3
        },
        {
          "id": "ServiceAccountName",
          "selector": ".spec .serviceAccountName",
          "reason": "Service accounts restrict Kubernetes API access and should be configured",
          "points": 3
        }
      ]
    }
  }
]

Scanning Multiple Resources

# Scan all YAML files in a directory
for file in manifests/*.yaml; do
  echo "=== Scanning $file ==="
  kubesec scan "$file"
done

# Scan multi-document YAML
kubesec scan multi-resource.yaml

Using the HTTP API

# Scan via the public API
curl -sSX POST --data-binary @deployment.yaml \
  https://v2.kubesec.io/scan

# Run a local API server
kubesec http --port 8080 &

# Scan against local server
curl -sSX POST --data-binary @deployment.yaml \
  http://localhost:8080/scan

CI/CD Integration

GitHub Actions

name: Kubesec Scan
on: [pull_request]
jobs:
  kubesec:
    runs-on: ubuntu-latest
    steps:
      - uses: actions/checkout@v4
      - name: Install Kubesec
        run: |
          curl -sSL https://github.com/controlplaneio/kubesec/releases/latest/download/kubesec_linux_amd64.tar.gz | \
            tar xz -C /usr/local/bin/ kubesec
      - name: Scan Manifests
        run: |
          FAIL=0
          for file in k8s/*.yaml; do
            SCORE=$(kubesec scan "$file" | jq '.[0].score')
            echo "$file: score=$SCORE"
            if [ "$SCORE" -lt 0 ]; then
              echo "FAIL: $file has critical issues (score: $SCORE)"
              FAIL=1
            fi
          done
          exit $FAIL

GitLab CI

kubesec-scan:
  stage: security
  image: kubesec/kubesec:v2
  script:
    - |
      for file in k8s/*.yaml; do
        kubesec scan "$file" > /tmp/result.json
        SCORE=$(cat /tmp/result.json | jq '.[0].score')
        if [ "$SCORE" -lt 0 ]; then
          echo "CRITICAL: $file scored $SCORE"
          cat /tmp/result.json | jq '.[0].scoring.critical'
          exit 1
        fi
      done
  artifacts:
    paths:
      - kubesec-results/

Admission Webhook

Deploy Kubesec as a ValidatingWebhookConfiguration to reject insecure manifests at deploy time:

apiVersion: admissionregistration.k8s.io/v1
kind: ValidatingWebhookConfiguration
metadata:
  name: kubesec-webhook
webhooks:
  - name: kubesec.controlplane.io
    rules:
      - apiGroups: [""]
        apiVersions: ["v1"]
        operations: ["CREATE", "UPDATE"]
        resources: ["pods"]
      - apiGroups: ["apps"]
        apiVersions: ["v1"]
        operations: ["CREATE", "UPDATE"]
        resources: ["deployments", "daemonsets", "statefulsets"]
    clientConfig:
      service:
        name: kubesec-webhook
        namespace: kube-system
        path: /scan
    failurePolicy: Fail
    sideEffects: None
    admissionReviewVersions: ["v1"]

Security Checks Reference

Critical Checks (Negative Score)

CheckSelectorRisk
PrivilegedsecurityContext.privileged == trueFull host access
HostPIDspec.hostPID == trueProcess namespace escape
HostNetworkspec.hostNetwork == trueNetwork namespace escape
SYS_ADMINcapabilities.add contains SYS_ADMINNear-root capability

Best Practice Checks (Positive Score)

CheckPointsDescription
ReadOnlyRootFilesystem+1Prevents filesystem writes
RunAsNonRoot+1Non-root process execution
RunAsUser > 10000+1High UID reduces collision risk
LimitsCPU+1Prevents CPU resource exhaustion
LimitsMemory+1Prevents memory resource exhaustion
RequestsCPU+1Ensures scheduler resource awareness
ServiceAccountName+3Explicit service account
AppArmor annotation+3Kernel-level MAC enforcement
Seccomp profile+4Syscall filtering

References

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能力 3

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能力 4

展示第三方安全扫描或审计结果

安装后应在对应宿主中按原始 README 的触发条件使用;具体调用方式请以来源页面和 README 为准。

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安装前确认

本站仅展示第三方公开信息,不托管安装包,不提供自动安装或运行环境。安装前应自行审查源码、依赖和命令行为。来源安全扫描存在 warning/failed 结果,不能写成本站确认安全。当前只有一个来源,正式发布前建议补源仓库或其他目录站核验。

来源信息

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