Token导航 LogoToken导航TokenDH.com
研究检索需要联网github未标认证来源可访问clear审计未展示

platform_engineering平台工程

Agent Skill

platform_engineering 用于查找、检索和筛选相关信息,适合在 Codex、Claude、Cursor、Gemini CLI 中需要根据关键词、任务场景或来源线索快速定位候选结果时使用。可结合来源仓库、安装命令和原始 README 继续核验具体用法。安装前建议确认权限范围、维护状态,以及是否会触发联网、命令执行或文件读写。

总安装

309

周安装

13

GitHub Stars

42

下载量

108
CodexClaudeCursorGemini CLI

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

3

许可证

MIT

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:platform_engineering(平台工程)
来源仓库:https://github.com/vuralserhat86/antigravity-agentic-skills
仓库路径:skills/platform_engineering
安装命令:
npx skills add https://github.com/vuralserhat86/antigravity-agentic-skills --skill platform_engineering
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。不同来源提供的安装方式可能略有差异;本站展示可直接复制的安装命令,安装前请核对来源页面。

skills.shnpx skills
npx skills add https://github.com/vuralserhat86/antigravity-agentic-skills --skill platform_engineering

简介

用于查找、检索和筛选平台工程相关实践信息。

  • 适合在关键词搜索、任务场景匹配或来源线索定位时使用。
  • 可结合来源仓库和原始 README 核验具体用法。
  • 安装前建议确认权限范围和是否会触发网络请求。
  • 注意维护状态和数据访问限制。platform_engineering 属于研究检索类 Skill,可作为该场景下的辅助能力补充。

SKILL.md

Platform Engineering

Purpose

Build Internal Developer Platforms (IDPs) that provide self-service infrastructure, reduce cognitive load, and accelerate developer productivity through golden paths and platform-as-product thinking.

Platform engineering represents the evolution beyond traditional DevOps, focusing on creating product-quality internal platforms that treat developers as customers. The discipline addresses the developer productivity crisis where engineers spend 30-40% of time on infrastructure and tooling instead of features.

When to Use This Skill

Trigger this skill when:

  • Building or improving an internal developer platform
  • Designing a developer portal (Backstage, Port, or commercial IDP)
  • Implementing golden paths and software templates
  • Establishing or restructuring a platform engineering team
  • Measuring and improving developer experience (DevEx)
  • Integrating IDP with infrastructure, CI/CD, observability, or security tools
  • Driving platform adoption across an engineering organization
  • Assessing platform maturity and identifying capability gaps

Core Concepts

Platform as Product

Treat internal platforms with the same rigor as customer-facing products:

Product Management Approach:

  • Define platform vision, strategy, and roadmap
  • Identify developer "customers" and their pain points
  • Measure success via adoption metrics, satisfaction surveys, and business impact
  • Iterate based on feedback loops and usage analytics
  • Balance new capabilities with platform reliability and support

Key Differences from Traditional DevOps:

  • DevOps focuses on delivery pipelines; platform engineering builds comprehensive developer experiences
  • Platform teams operate as product teams (product managers, UX designers, engineers)
  • Success measured by developer productivity and satisfaction, not just infrastructure metrics
  • Self-service is the primary interface, not ticket queues

Internal Developer Platform (IDP) Architecture

Three-Layer Architecture:

1. Developer Portal (Frontend)

  • Service catalog: Inventory of services with ownership, dependencies, health status
  • Software templates: Project scaffolding with best practices baked in
  • Documentation hub: Centralized, searchable, version-controlled docs
  • Self-service workflows: Environment provisioning, deployments, access requests

2. Platform Orchestration (Backend)

  • Infrastructure provisioning: Multi-cloud resource management
  • Environment management: Dev, staging, production lifecycle
  • Deployment automation: GitOps-based continuous delivery
  • Configuration management: Separation of app and infrastructure concerns

3. Integration Layer (Glue)

  • CI/CD integration: Pipeline visibility and triggering
  • Observability: Metrics, logs, traces surfaced in portal
  • Security: Vulnerability scanning, policy enforcement, secrets management
  • FinOps: Cost visibility, budgets, optimization recommendations

For detailed architecture patterns and component breakdowns, see references/idp-architecture.md.

Golden Paths and Scaffolding

Golden Path Principle: Provide opinionated templates that handle 80% of use cases while allowing escape hatches for the remaining 20%.

Template Components:

  • Repository structure and boilerplate code
  • Infrastructure as code (Kubernetes manifests, Terraform)
  • CI/CD pipeline configurations
  • Observability instrumentation (metrics, logging, tracing)
  • Security configurations (RBAC, network policies, secrets)
  • Documentation templates (README, runbooks, architecture diagrams)

Constraint Mechanisms:

  • Policy-as-code enforcement (OPA, Kyverno) for security and compliance
  • Resource limits and quotas to prevent over-provisioning
  • Required health checks and observability instrumentation
  • Approved base images and dependency scanning

For template design patterns and examples, see references/golden-paths.md.

Developer Experience (DevEx) Optimization

Cognitive Load Reduction:

  • Abstract infrastructure complexity without hiding necessary details
  • Provide sensible defaults with clear override mechanisms
  • Use progressive disclosure (simple for common cases, advanced options available)
  • Consolidate tooling (single developer portal vs. 15+ separate tools)

Key Metrics:

DORA Metrics:

  • Deployment frequency (how often code reaches production)
  • Lead time for changes (commit to production duration)
  • Mean time to recovery (MTTR for incidents)
  • Change failure rate (percentage of deployments causing incidents)

SPACE Framework:

  • Satisfaction: Developer happiness via surveys and NPS
  • Performance: Throughput and efficiency of work completed
  • Activity: Code commits, PRs, deployments (context, not raw counts)
  • Communication: Collaboration quality, discoverability
  • Efficiency: Minimize interruptions, reduce toil

Platform-Specific Metrics:

  • Platform adoption rate (percentage of teams using platform)
  • Self-service rate (actions completed without platform team tickets)
  • Onboarding time (new developer to first production deployment)
  • Template usage (which golden paths are adopted)
  • Support ticket volume and resolution time

Platform Maturity Assessment

Assess current platform capabilities using a 5-level maturity model:

Level 0: Ad-Hoc - Manual provisioning, no standardization Level 1: Basic Automation - Some IaC and CI/CD, limited self-service Level 2: Paved Paths - Golden path templates, early portal, limited coverage Level 3: Self-Service Platform - Comprehensive portal, 80%+ self-service Level 4: Product-Driven Platform - Data-driven, product team structure, FinOps integration Level 5: AI-Augmented Platform - AI-assisted troubleshooting, predictive optimization

For detailed assessment framework, gap analysis, and improvement roadmap, see references/maturity-model.md.

Decision Frameworks

Build vs. Buy IDP

Choose Open Source (Backstage) when:

  • Large enterprise (1000+ engineers)
  • Dedicated platform team available (5-10 engineers)
  • Deep customization required
  • Open-source ecosystem preferred
  • Long-term investment (3+ year horizon)

Choose Commercial IDP (Port, Humanitec, Cortex) when:

  • Mid-size organization (100-1000 engineers)
  • Faster time-to-value needed (3-6 months vs. 6-12 months)
  • Prefer managed solution with vendor support
  • Limited platform engineering resources (<5 engineers)
  • Standard use cases (web apps, microservices, CI/CD)

Choose Hybrid Approach when:

  • Large organization needing both flexibility and speed
  • Complex infrastructure requiring orchestration backend
  • Want best-in-class portal + orchestration components
  • Willing to integrate multiple systems (e.g., Backstage + Humanitec)

For complete decision tree, selection criteria, and ROI calculations, see references/decision-frameworks.md.

Golden Path Design: Flexibility vs. Standardization

Spectrum of Control:

High Standardization (Regulated Industries):

  • Limited technology choices, mandatory templates
  • Policy enforcement via admission controllers (OPA, Kyverno)
  • Escape hatches require approval process

Balanced Approach (Recommended for Most):

  • Recommended golden paths (easy, well-documented, supported)
  • Alternatives allowed with documentation
  • Soft enforcement (defaults + education, not hard blocks)
  • Clear ownership for deviations ("deviate and own")

High Flexibility (Innovative Organizations):

  • Golden paths as suggestions (not requirements)
  • Minimal policy enforcement (only critical security)
  • "Build it, run it" ownership model

For detailed guidance on choosing the right balance and enforcement strategies, see references/decision-frameworks.md.

Platform Team Structure

Centralized Model:

  • Single platform team (5-20 engineers) serving entire organization
  • Best for: Small to mid-size orgs (100-500 engineers)

Federated Model:

  • Central team (5-10 engineers) + embedded engineers (1-2 per business unit)
  • Best for: Large orgs (500-2000+ engineers), multiple business units

Hub-and-Spoke Model:

  • Central "hub" team (3-5 engineers) + "spoke" teams contributing plugins
  • Best for: Organizations with strong open-source culture

For team sizing, roles, responsibilities, and governance models, see references/decision-frameworks.md.

Tool Recommendations

Developer Portals

Backstage (Open Source, CNCF)

  • Trust Score: 78.7/100, 8,876 code snippets
  • Software catalog, scaffolder, TechDocs, plugin ecosystem
  • Recommended for: Enterprises with platform teams

Port (Commercial)

  • Managed platform, modern UI/UX, faster time-to-value
  • Recommended for: Mid-size orgs (100-1000 engineers)

Cortex (Commercial SaaS)

  • Enterprise IDP, compliance focus, engineering standards enforcement
  • Recommended for: Regulated industries

Platform Orchestration

Crossplane (Open Source, CNCF)

  • Trust Score: 67.4/100, universal control plane for multi-cloud
  • Kubernetes-native declarative infrastructure
  • Recommended for: Multi-cloud abstractions

Humanitec (Commercial)

  • Platform Orchestrator backend, environment and deployment management
  • Recommended for: Complex infrastructure, complements portals

Terraform Cloud (Commercial)

  • Mature IaC orchestration, workspace management
  • Recommended for: Terraform-heavy organizations

GitOps Continuous Delivery

Argo CD (Open Source, CNCF) - RECOMMENDED

  • Trust Score: 91.8/100 (HIGHEST)
  • Declarative GitOps for Kubernetes, multi-cluster management
  • Industry-leading documentation and community

Flux (Open Source, CNCF)

  • Toolkit approach, Kubernetes-native
  • Good for: GitOps-native operations

For detailed tool comparisons, integration patterns, and selection criteria, see references/tool-recommendations.md.

Implementation Guides

Bootstrapping a Platform

Foundation Phase (Months 1-3):

  1. Define platform vision and form platform team (3-5 members)
  2. Interview developers to identify pain points
  3. Set up developer portal (Backstage or commercial)
  4. Create initial service catalog and first golden path template

Pilot Phase (Months 4-6):

  1. Select 2-3 pilot teams for white-glove onboarding
  2. Rapid iteration based on feedback
  3. Expand to 3-5 golden path templates
  4. Integrate key tools (CI/CD, monitoring, secrets)

Expansion Phase (Months 7-12):

  1. Scale to 20-50% of engineering teams
  2. Build self-service documentation and training
  3. Establish platform SLOs and on-call rotation
  4. Internal evangelization (demos, champions program)

Maturity Phase (Year 2+):

  1. 80%+ adoption across organization
  2. Platform team operates as product team
  3. Continuous improvement via metrics and feedback
  4. AI-assisted capabilities, policy-as-code expansion

For detailed implementation steps and bootstrapping code, see references/implementation-backstage.md.

Creating Golden Path Templates

Template Design Process:

  1. Identify most common use case (web app, API, data pipeline)
  2. Define opinionated choices (language, framework, deployment pattern)
  3. Create repository structure and infrastructure manifests
  4. Configure CI/CD pipeline with security scanning
  5. Instrument observability and document usage
  6. Test with pilot team before broad rollout

Template Categories:

  • Full-stack web application (backend API + frontend + database)
  • Data pipeline (ETL/ELT with orchestration)
  • Machine learning service (model serving, monitoring)
  • Event-driven microservice (message broker integration)
  • Scheduled job (cron jobs, batch processing)

For template examples, scaffolding code, and customization patterns, see references/golden-paths.md and examples/ directory.

Driving Platform Adoption

Evangelization Strategies:

  • Showcase pilot team successes (internal blog posts, demos)
  • Lunch-and-learns on platform capabilities
  • Internal champions program (power users helping peers)
  • Office hours and Slack/Teams support channels

Incentive Alignment:

  • Make platform easier than alternatives (golden paths are "paved roads")
  • Integrate with workflows developers already use
  • Provide immediate value (faster onboarding, better visibility)
  • Celebrate early adopters, showcase their successes

For adoption metrics, tracking dashboards, and success patterns, see references/maturity-model.md.

Quick Reference

Platform Engineering Checklist

Strategy and Vision:

  • Platform vision and charter documented
  • Platform team formed with clear roles
  • Developer pain points identified via interviews
  • Success metrics defined (DORA, SPACE, adoption)

IDP Foundation:

  • Developer portal deployed (Backstage, Port, or commercial)
  • Service catalog established (ownership, dependencies, health)
  • First golden path template created and validated
  • Documentation hub accessible to all engineers

Self-Service Capabilities:

  • Environment provisioning (dev, staging, production)
  • Deployment automation (GitOps with Argo CD or Flux)
  • CI/CD integration visible in portal
  • Observability dashboards per-service

Security and Compliance:

  • Policy-as-code enforcement (OPA, Kyverno)
  • Secrets management integrated (Vault, cloud providers)
  • Vulnerability scanning in pipelines
  • RBAC and access controls configured

Operations and Support:

  • Platform SLOs defined and monitored
  • Support channels established (Slack, office hours)
  • Incident response playbooks documented
  • Feedback loops and usage analytics in place

Common Pitfalls

Building Too Much Upfront:

  • Start small (1 golden path, pilot team) and iterate
  • Avoid "boil the ocean" syndrome

Ignoring Developer Feedback:

  • Establish continuous feedback loops, not just quarterly surveys

Over-Standardization:

  • Provide clear escape hatches for advanced use cases

Under-Measuring Success:

  • Track DORA metrics, satisfaction surveys, self-service rates

Treating Platform as IT Project:

  • Platform engineering is product development, not infrastructure provisioning
  • Requires product managers, UX designers, customer focus

Integration with Other Skills

Related Skills:

  • kubernetes-operations: Cluster operations, namespace management, RBAC, network policies
  • infrastructure-as-code: Terraform, Pulumi for infrastructure provisioning integrated with platform
  • gitops-workflows: GitOps principles, Argo CD / Flux implementation patterns
  • building-ci-pipelines: CI/CD pipeline design integrated into platform templates
  • security-hardening: Security best practices enforced through golden paths
  • secret-management: Secrets management integrated into platform (Vault, cloud providers)
  • observability: Monitoring, logging, tracing integrated into developer portal

Cross-Skill Workflows:

Platform Bootstrapping:

  1. Use infrastructure-as-code to provision platform infrastructure
  2. Use kubernetes-operations to configure clusters
  3. Deploy developer portal (Backstage) on platform infrastructure
  4. Integrate gitops-workflows (Argo CD) for continuous delivery
  5. Add observability integrations (Prometheus, Grafana plugins)

Golden Path Creation:

  1. Design template based on common use case
  2. Use building-ci-pipelines patterns for CI/CD configuration
  3. Apply security-hardening best practices (SAST, container scanning)
  4. Integrate secret-management (Vault, encrypted configs)
  5. Add observability instrumentation (metrics, logging, tracing)

Example Use Cases

Use Case 1: E-Commerce Platform Team

Context: 300-engineer e-commerce company, microservices architecture, manual provisioning causing bottlenecks.

Approach: Deploy Backstage, create 3 golden paths, integrate Argo CD, pilot with 3 teams, expand to 20 teams over 6 months.

Results: Onboarding time 2 days → 2 hours, deployment frequency 2x/week → 10x/day, developer NPS +35.

Use Case 2: Financial Services Platform

Context: 1500-engineer bank, strict compliance, legacy infrastructure, fragmented tooling.

Approach: Adopt Port (commercial), high standardization golden paths, OPA Gatekeeper, federated model, Terraform Cloud.

Results: Compliance audit prep 3 weeks → 3 days, infrastructure drift incidents 90% reduction, per-service cost attribution.

Use Case 3: Startup Platform

Context: 50-engineer startup, rapid growth, need fast developer onboarding.

Approach: Lightweight Backstage (2 engineers), 2 golden paths, GitHub Actions, PaaS infrastructure (Fly.io), documentation focus.

Results: New engineer to production 1 day (vs. 2 weeks), 100% self-service, 2 engineers supporting 50 developers.

*Platform Engineering v1.1 - Enhanced*

🔄 Workflow

Kaynak: Platform Engineering Community & Team Topologies

Aşama 1: Discovery & Strategy (Product Mindset)

  • User Research: Geliştiricilerin en büyük acı noktalarını belirle (Örn: Env provisioning çok yavaş).
  • TVP (Thinnest Viable Platform): Her şeyi otomatize etme. Önce bir "Golden Path" (Örn: Spring Boot on K8s) seç.
  • Capabilities: Portal (Backstage/Port) mi yoksa sadece CLI mı? İhtiyaca göre karar ver.

Aşama 2: Implementation (Golden Paths)

  • Template: cookiecutter veya Backstage Scaffolder ile proje şablonu oluştur.
  • Orchestration: Infrastructure (Terraform/Crossplane) ile App Config'i ayır (Score/Workload spec).
  • Portal: Servis kataloğunu ve dokümantasyonu merkezi bir portale bağla.

Aşama 3: Adoption & Evolution

  • Marketing: Platformu ürün gibi pazarla (Internal Demos, Newsletters).
  • Metrics: DORA ve SPACE metriklerini ölç. Platform adoption rate'i takip et.
  • Feedback Loop: Geliştiricilerden düzenli geri bildirim al ve roadmap'i güncelle.

Kontrol Noktaları

AşamaDoğrulama
1Platform ekibi geliştiricilerin işine "engel" mi yoksa "hızlandırıcı" mı?
2"Cognitive Load" azaldı mı? (Geliştirici Kubernetes YAML yazmak zorunda mı?)
3Dokümantasyon "Self-service" olmaya yeterli mi?

适合场景

01

用户想查找某类 Agent Skill 时

02

需要根据任务场景推荐可安装能力包时

03

需要对比不同来源的安装命令和来源信息时

04

需要参考平台分布和安装热度时

能力概览

能力 1

按任务关键词查找相关 Skills

能力 2

展示可复制的安装命令

能力 3

保留来源站点、仓库和原始说明,方便继续核验

能力 4

补充不同宿主或平台的使用分布数据

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。

平台分布

Claude Code

27.47%
按下载量换算30

windsurf

24.73%
按下载量换算27

Antigravity

17.82%
按下载量换算19

trae

12.72%
按下载量换算14

OpenCode

8.35%
按下载量换算9

Gemini CLI

3.3%
按下载量换算4

安全审计

暂无安全审计结果可展示。

权限和风险

需要联网

该 Skill 可能需要联网访问来源站点、仓库或外部 API;具体网络访问范围需要结合源码和 README 复核。

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。

来源信息

继续浏览同类 Skills