Gke Ai Troubleshooting Tpu Dynamic Slices Monitoring

作者 google55b4e13eba6d无许可证21K 个星标收录于 2026年10月8日更新于 2026年10月8日仓库今天更新

Monitors, troubleshoots, and manages GKE TPU Dynamic Slices custom resources. Use when checking TPU slice lifecycle states, troubleshooting slice provisioning failures, validating single-slice or multi-slice (JobSet) workload manifests, or safely patching stuck finalizers and disabling the slice controller. Don't use for generic GKE cluster node pool creation or standard non-TPU workload management (use gke-basics or gke-cluster-creation instead).

精选包含脚本DevOps & Cloud
AI 生成的概览

监控和排查 GKE TPU 动态切片,验证工作负载清单,并执行高风险清理操作。

功能
指导代理使用 kubectl describe 检查 GKE TPU Slice 自定义资源,解读 Status.Conditions 生命周期状态,并诊断节点分配、拓扑和预留块不匹配等预配失败。它还会检查单切片和多切片 JobSet 工作负载清单中必需的注解和节点选择器。最后,它提供移除卡住 finalizer 和禁用切片控制器的高风险解决步骤,执行前需要用户确认。
适用场景
适用于检查 TPU 切片生命周期状态、排查切片预配失败,或验证单切片和多切片 JobSet 工作负载清单。也用于安全修补卡住的 finalizer 或禁用切片控制器。不适用于通用 GKE 节点池创建或标准非 TPU 工作负载管理。
运行要求
需要为 GKE 集群配置好的 kubectl 和 gcloud CLI、为项目启用 Cloud Logging,以及集群访问权限。附带一个可执行验证脚本和一个参考文档。

GKE TPU Dynamic Slices Monitoring & Management

Monitors the status of TPU Slice custom resources, troubleshoots provisioning failures, validates workload manifests on dynamic slices, and performs cleanups.

Prerequisites

  • Cloud Logging enabled for the project.
  • kubectl and gcloud CLIs configured to access the GKE cluster.

Diagnostic Workflow

Step 0: Context Acquisition & Time Window Definition

Gather project, cluster, and slice context using cluster tools or the following parameters:

  • Project ID: {project_id} (e.g., my-gcp-project)
  • Cluster Name: {cluster_name} (e.g., tpu-cluster)
  • Region/Zone: {location} (e.g., us-central1-a)
  • Slice Name: {slice_name} (e.g., test-slice)
  • Issue Time: {timestamp} (Optional; default to the last 30 minutes window [T - 30m] to [T + 30m])

Step 1: Describe the Slice Custom Resource [Low Risk]

When asked to inspect, troubleshoot, or check a slice status, immediately execute kubectl describe slice {slice_name} using available cluster tools to perform the inspection. Parse the resulting Status.Conditions output against the condition table below to diagnose the exact state and provide concrete recommendations.

  • Command:

    bash
    kubectl describe slice {slice_name}
State & Reason Analysis

Analyze the Status.Conditions (especially Type: Ready and its Reason and Status):

Lifecycle State / ReasonMeaningRecommended Action
SliceNotCreatedGKE Slice Controller is initializing the slice and performing resource checks.Wait a few minutes and re-check slice status.
SliceCreationFailedPrerequisites validation failed (e.g., selected nodes don't exist, nodes are already used by another slice, or the topology doesn't match the number of partitions).Verify selected nodes exist, are unallocated, and topology matches partition count.
ACTIVATINGGKE is actively forming and provisioning the TPU slice.Monitor node provisioning.
ACTIVEThe TPU slice is successfully formed and ready to host workloads.Proceed to deploy or check workloads.
ACTIVE_DEGRADEDThe slice is usable, but one or more sub-blocks are degraded.Monitor workload logs for interconnect or device errors. Check faulty node VMs.
FAILEDGKE failed to form the TPU slice (e.g., selected nodes are not part of the same reservation block).Ensure all selected nodes belong to the same reservation block.
DEACTIVATINGThe slice is dismantling (triggered by user deletion or a critical systemic failure).Wait for dismantling to finish, or patch finalizers if stuck.
INCOMPLETEThe terminal phase before the Slice CR is deleted from the cluster.No action required; the resource will be removed shortly.
Provisioning Failure Troubleshooting Checklist

When investigating slice creation or provisioning failures (SliceCreationFailed or FAILED), perform the following verification steps:

  1. Node Existence & Allocation Check: Verify that the selected TPU nodes exist in the cluster and are not already allocated to another slice (kubectl get nodes -l cloud.google.com/gke-tpu-slice, kubectl get slice -A).
  2. Topology Alignment: Confirm that the partition count matches the requested topology dimensions (e.g. topology 2x2 requires 4 nodes).
  3. Reservation Block Alignment Check: Confirm that all selected TPU nodes belong to the same reservation and reservation block.

Step 2: Verify Workload Specification [Low Risk]

Ensure workload manifests are configured correctly to target the dynamic slice.

1. Single-Slice Workload Requirements

Check that the Pod template contains the following annotations and selectors:

  • Annotations:
    • cloud.google.com/gke-tpu-slice-topology: "{topology}" (e.g., "4x4x4")
  • NodeSelector:
    • cloud.google.com/gke-tpu-topology: "{topology}" (e.g., "4x4x4")
    • cloud.google.com/gke-tpu-accelerator: "{accelerator_type}" (e.g., "tpu7x")
    • cloud.google.com/gke-tpu-slice: "{slice_name}" (e.g., "test-slice")
2. Multi-Slice (JobSet) Workload Requirements

If deploying a multi-slice JobSet, verify:

  • JobSet Annotation:
    • alpha.jobset.sigs.k8s.io/exclusive-topology: cloud.google.com/gke-tpu-slice
  • Pod Template Annotations:
    • cloud.google.com/gke-tpu-slice-topology: "{topology}"
  • Pod Template NodeSelector:
    • cloud.google.com/gke-tpu-topology: "{topology}"
    • cloud.google.com/gke-tpu-accelerator: "{accelerator_type}"
    • Note: Do NOT manually specify cloud.google.com/gke-tpu-slice in the nodeSelector; JobSet handles slice assignment automatically.

Resolution & Management Workflow

Resolution 1: Force Delete a Stuck Slice [High Risk]

If a slice is stuck in DEACTIVATING or deletion hangs indefinitely due to stuck finalizers:

  1. Identify Cause: Explain that finalizers on the slice resource (metadata.finalizers) are preventing Kubernetes from completing resource deletion.

  2. Propose Resolution: Propose removing finalizers from the metadata path (/metadata/finalizers) using a JSON patch operation:

    bash
    kubectl patch slice {slice_name} --type json -p='[{"op": "remove", "path": "/metadata/finalizers"}]'
  3. Provide Warning: Explicitly warn the user that removing finalizers bypasses standard controller dismantling and may leave underlying VM, network, or accelerator resources uncleaned or orphaned.

  4. CRITICAL SAFETY MANDATE: The response MUST explicitly ask the user for confirmation (e.g. "Removing finalizers on /metadata/finalizers via JSON patch is a high-risk operation that may leave orphaned resources. Do you confirm you want to apply this patch to slice {slice_name}?") and pause for user confirmation before applying or executing the patch.


Resolution 2: Disable and Clean Up Slice Controller [High Risk]

If dynamic slicing needs to be disabled:

  1. Check for existing Slices:

    bash
    kubectl get slice -A

    Ensure all slices are deleted before disabling the controller.

  2. Disable Slice Controller via gcloud:

    bash
    gcloud container clusters update {cluster_name} \    --location={location} \    --no-enable-slice-controller
  3. Delete the Slice CRD:

    bash
    kubectl delete crd slices.accelerator.gke.io
  4. Clean up Node Labels: Remove GKE TPU Slice labels from all nodes in the cluster:

    bash
    kubectl label nodes --all cloud.google.com/gke-tpu-slice- cloud.google.com/gke-tpu-slice-topology-
  • Safety Rule: Propose the exact commands and confirm before executing disabling or destructive cleanup steps.

来源与署名

来源:google/skills位于skills/cloud/gke-ai-troubleshooting-tpu-dynamic-slices-monitoring提交55b4e13

许可证: 无许可证

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