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Docker & Kubernetes for Developers · 课时

实施网络策略

定义并应用网络策略,控制 Pod 之间的流量,以增强安全性和隔离性。

实施网络策略 是 CoddyKit 上的免费 Docker & Kubernetes for Developers 课时。 这是第 2 节课,共 4 节。 你可以在下方免费阅读本课时的完整内容 — 然后在浏览器中使用内置代码编辑器和全天候 AI 导师进行实践。 这是 Docker & Kubernetes for Developers 学习路径的一部分,你的进度在网页和 CoddyKit 应用中同步。 Docker & Kubernetes for Developers 课程共包含 4 节课。

本课时的部分内容尚未翻译,以英文显示。

Secure Pod Traffic with Policies

In Kubernetes, by default, all pods can communicate with each other. While convenient, this 'flat' network model can be a security risk, especially in multi-service environments.

Network Policies act like firewalls for your pods, allowing you to define rules for how they can communicate both internally and externally.

Why Network Policies Matter

Imagine a backend database pod that only your API service should access. Without Network Policies, any other pod in the cluster could potentially connect to it.

  • Isolation: Prevent unauthorized access between services.
  • Security: Enforce least privilege, allowing only necessary connections.
  • Compliance: Meet security standards by segmenting network traffic.

What is a Network Policy?

A Network Policy is a Kubernetes resource that uses labels to select pods and then defines rules specifying what network traffic is allowed to and from those selected pods.

These policies are enforced by the Container Network Interface (CNI) plugin installed in your cluster (e.g., Calico, Cilium, Weave Net).

Anatomy of a Network Policy

A Network Policy is defined using a YAML manifest, just like other Kubernetes resources. Here's a basic structure:

  • apiVersion and kind: Identifies it as a Network Policy.
  • metadata: Contains its name and optional labels.
  • spec: Where the actual policy rules are defined.
apiVersion: networking.k8s.io/v1
kind: NetworkPolicy
metadata:
  name: my-app-policy
spec:
  # Policy rules go here

Selecting Target Pods: podSelector

The spec.podSelector field is crucial. It defines which pods this policy will apply to. It uses label selectors to match pods within the same namespace where the policy is created.

An empty podSelector: {} selects all pods in the namespace.

spec:
  podSelector:
    matchLabels:
      app: my-app
  # ... other policy rules

Controlling Traffic Direction: policyTypes

The spec.policyTypes field specifies whether the policy applies to incoming (Ingress), outgoing (Egress), or both types of traffic for the selected pods.

  • Ingress: Controls traffic coming into the selected pods.
  • Egress: Controls traffic going out of the selected pods.

If omitted, it defaults to Ingress.

spec:
  podSelector:
    matchLabels:
      app: web
  policyTypes:
    - Ingress
    - Egress

Defining Ingress Rules

The spec.ingress section defines rules for incoming traffic. Each rule specifies allowed sources, which can be:

  • Other pods (using podSelector).
  • Namespaces (using namespaceSelector).
  • IP CIDR blocks (using ipBlock).
  • Specific ports (using ports).

If a pod is selected by a Network Policy with policyTypes: [Ingress], all incoming traffic is denied by default, unless explicitly allowed by an ingress rule.

Defining Egress Rules

Similarly, the spec.egress section defines rules for outgoing traffic from the selected pods. It specifies allowed destinations, using the same selectors as ingress rules (to.podSelector, to.namespaceSelector, to.ipBlock, and ports).

If a pod is selected by a Network Policy with policyTypes: [Egress], all outgoing traffic is denied by default, unless explicitly allowed by an egress rule.

Example: Isolate a Backend Pod

Let's create a policy to isolate a pod labeled app: backend. This policy will deny all incoming traffic to it by default.

By just specifying policyTypes: [Ingress] and an empty ingress: [] array, we explicitly deny all incoming connections.

apiVersion: networking.k8s.io/v1
kind: NetworkPolicy
metadata:
  name: backend-deny-all-ingress
spec:
  podSelector:
    matchLabels:
      app: backend
  policyTypes:
    - Ingress
  ingress: [] # Denies all incoming traffic

Example: Allow Specific Ingress

Now, let's refine the previous policy. We still want to deny all ingress to our app: backend pod, but we'll add a rule to allow incoming traffic specifically from pods labeled app: frontend.

apiVersion: networking.k8s.io/v1
kind: NetworkPolicy
metadata:
  name: backend-allow-frontend
spec:
  podSelector:
    matchLabels:
      app: backend
  policyTypes:
    - Ingress
  ingress:
    - from:
        - podSelector:
            matchLabels:
              app: frontend
      ports:
        - protocol: TCP
          port: 8080 # Assuming backend listens on 8080

Policy Check

You have an application pod labeled app: data-processor. You need to ensure it can only initiate connections to an external logging service at 192.168.1.10/32 on port 514, and no other outgoing traffic is allowed. Which key parts of a Network Policy would you configure?

Recap: Network Policies

You've learned how Kubernetes Network Policies provide crucial security and isolation for your applications!

  • Network Policies act as internal firewalls for pods.
  • They use podSelector to target specific pods.
  • policyTypes defines if rules apply to Ingress, Egress, or both.
  • ingress and egress sections define the actual allow rules, implicitly denying everything else.

By implementing Network Policies, you can significantly enhance the security posture of your Kubernetes applications.

常见问题解答

「实施网络策略」课时是免费的吗?

是的 — 「实施网络策略」的完整文本可在网页上免费阅读。要进行交互式练习(内置代码编辑器和全天候 AI 导师)并解锁 Docker & Kubernetes for Developers 课程的其余内容,请升级到 CoddyKit PRO。 Docker & Kubernetes for Developers 课程共包含 4 节课。

「实施网络策略」这节课中我会学到什么?

定义并应用网络策略,控制 Pod 之间的流量,以增强安全性和隔离性。 你通过在浏览器中直接运行的动手代码来练习 Docker & Kubernetes for Developers,全天候 AI 导师会在你学习这节课的过程中回答你的问题。

学习 Docker & Kubernetes for Developers 需要有经验吗?

无需任何先前经验。CoddyKit 上的 Docker & Kubernetes for Developers 课程适合初学者到高级学习者,你可以从这里开始或从头开始,按照自己的节奏学习。 这是第 2 节课,共 4 节。

「实施网络策略」课时需要多长时间?

大多数 CoddyKit 课程大约需要 5–10 分钟。每节课都很精短且互动,所以你能稳步进步,并在网页和应用中从离开的地方继续。

我能在这节 Docker & Kubernetes for Developers 课中编写并运行代码吗?

能。每节 Docker & Kubernetes for Developers 课都包含内置代码编辑器,你可以在浏览器中直接编写并运行真实代码,并获得即时 AI 反馈 — 无需本地设置。

此课程中的所有课时

  1. Kubernetes Ingress 与路由
  2. 实施网络策略
  3. K8s 中的服务发现与 DNS
  4. TLS 终止与使用 HTTPS 保护 Ingress
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