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技能内容

GKE Service Networking Skill

This skill provides workflows for exposing applications running on GKE securely

to the internet or internal networks.

Deployable manifest templates live in assets/ — edit the # Replace ...

placeholders before applying.

Workflows

1. Configure Gateway API (Recommended)

The Gateway API is the modern way to manage routing in Kubernetes.

Prerequisites: Gateway API must be enabled on the cluster (enabled by

default on new clusters running GKE 1.26+; on older supported versions enable it

with --gateway-api=standard).

Templates:

  • assets/gateway.yaml — external Gateway using the

gke-l7-global-external-managed GatewayClass with an HTTP listener.

  • assets/httproute.yaml — HTTPRoute attaching to the Gateway via

parentRefs and routing a path prefix to a Service backendRef.

  • assets/httproute-traffic-split.yaml — HTTPRoute demonstrating weighted

traffic splitting (e.g. 90/10) for canary deployments across backend

services.

kubectl apply -f assets/gateway.yaml
kubectl apply -f assets/httproute.yaml

Traffic Splitting (Canary Deployments):

HTTPRoute supports weighted traffic splitting across multiple backend Services

for canary rollouts:

spec:
  rules:
    - backendRefs:
        - name: app-v1
          port: 80
          weight: 90
        - name: app-v2
          port: 80
          weight: 10

2. Configure Standard GKE Ingress

Use standard Ingress for simpler use cases or legacy setups.

Template: assets/ingress.yaml — GCE Ingress (`kubernetes.io/ingress.class:

"gce"` annotation) routing to a Service.

3. Secure with Cloud Armor

Cloud Armor provides WAF and DDoS protection.

  1. Create a Security Policy in Cloud Armor:
    gcloud compute security-policies create {security_policy_name} \
      --description "WAF policy for {app_name}"

    # Example rule: block an abusive IP range
    gcloud compute security-policies rules create 1000 \
      --security-policy {security_policy_name} \
      --action deny-403 \
      --src-ip-ranges "203.0.113.0/24" \
      --description "Block abusive range"
  1. Reference it in a BackendConfig: assets/backendconfig.yaml (sets

spec.securityPolicy.name).

  1. Associate the BackendConfig with your Service via annotations:
    # In your Kubernetes Service manifest metadata.annotations:
    cloud.google.com/backend-config: '{"default": "{backend_config_name}"}'
    # Or for specific port mappings:
    cloud.google.com/backend-config: '{"ports": {"80": "{backend_config_name}"}}'

4. Configure Google-Managed SSL Certificates

Automatically provision and renew SSL certificates.

Legacy Ingress approach: apply assets/managed-certificate.yaml (a

ManagedCertificate listing your domains), then reference it in the Ingress

annotations:

networking.gke.io/managed-certificates: {certificate_name}

Gateway API approach: for standard Certificate Manager integration, create a

CertificateMap and reference it in the Gateway metadata annotations using the

exact annotation networking.gke.io/certmap (spelled without any hyphens in

certmap):

metadata:
  annotations:
    networking.gke.io/certmap: {certificate_map_name}

> [!IMPORTANT] The annotation key is strictly networking.gke.io/certmap (do

> not use cert-map or certificate-map).

Alternatively, reference a Kubernetes Secret in the HTTPS listener's

tls.certificateRefs. Both variants are in assets/gateway-https.yaml.

5. Enable Container-Native Load Balancing (Recommended)

Container-native load balancing allows load balancers to target Kubernetes Pods

directly, rather than targeting nodes. This improves latency and distribution.

Prerequisites: Cluster must be VPC-native.

How it works: the cloud.google.com/neg annotation on a Service triggers

creation of a NEG that mirrors the Pod IPs. GKE often adds it for you — but not

always, and knowing which case you are in is the whole point.

# In your Kubernetes Service manifest metadata.annotations:
cloud.google.com/neg: '{"ingress": true}'

When the annotation is automatic (do not add it by hand):

  • Internal Ingress — container-native load balancing is always used, not

optional. Internal Ingress always uses GCE_VM_IP_PORT NEGs and requires a

VPC-native cluster.

  • External Ingress, but only when all four hold: the cluster is

VPC-native, is not on Shared VPC, does not use GKE Network Policy, and has

the HttpLoadBalancing add-on enabled (on by default — do not disable it).

GKE then annotates Services automatically.

When you must add it explicitly:

  • Standalone NEGs — you manage the load balancer yourself instead of

letting Ingress own it. Required if the LB must be configured outside GKE,

since Ingress overwrites managed load balancer settings on sync or upgrade.

You become responsible for every part of the load balancer.

  • Any external-Ingress cluster failing one of the four conditions above

Shared VPC, GKE Network Policy, or non-VPC-native. Enable per Service.

  • Legacy configurations — some older external Ingress objects created on

VPC-native clusters still use instance group backends.

Not supported / no NEG fallback:

  • Windows Server node pools.
  • Routes-based (non-VPC-native) clusters with external Ingress — the Ingress

controller falls back to unmanaged instance groups spanning all nodes.

> Scale consequence: without NEGs a cluster is capped at 1,000 nodes, and

> non-NEG Services behind Ingress stop functioning correctly beyond that. With

> NEGs there is no GKE node limit.

6. Configure Private Service Connect (PSC)

Private Service Connect allows you to expose services in one VPC to consumers in

another VPC securely, without VPC peering.

Prerequisite: The backing Service must be an internal passthrough Network

Load Balancer — i.e. type: LoadBalancer with the

networking.gke.io/load-balancer-type: "Internal" annotation. The

ServiceAttachment requires this; a ClusterIP or external LoadBalancer Service

will not work.

Steps:

  1. Create an internal LoadBalancer Service for your workload.
  2. Create a ServiceAttachment referencing that Service:

assets/service-attachment.yaml (sets connectionPreference, the PSC NAT

subnet, and the Service resourceRef).

  1. Share the ServiceAttachment URI with consumers to create a PSC endpoint in

their VPC.

7. Topology Aware Routing (Cost & Latency Optimization)

To minimize cross-zone data transfer costs and network latency, configure

Kubernetes Services with Topology Aware Routing. This routes traffic to Pods in

the same zone as the originating client:

# In your Kubernetes Service manifest metadata.annotations:
service.kubernetes.io/topology-mode: auto

Gotchas

  1. Certificate Manager API must be enabled for the

networking.gke.io/certmap annotation to work (`gcloud services enable

certificatemanager.googleapis.com`); without it the Gateway fails to

provision the certificate map.

  1. Regional Gateway classes need a proxy-only subnet: classes like

gke-l7-regional-external-managed and gke-l7-rilb require a subnet with

--purpose=REGIONAL_MANAGED_PROXY in the region; the Gateway stays

unprogrammed without it.

  1. ManagedCertificate provisioning depends on DNS: the certificate stays in

Provisioning until the domain's A/AAAA records point at the load balancer

IP, and can take 15-60 minutes after DNS is correct.

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