architecture-paradigm-event-driven
Applies event-driven async messaging to decouple producers and consumers. Use when designing real-time or multi-subscriber systems needing loose cou…
它会碰到什么
这一栏是扫描器报的事实,不是结论。命中多不等于有毒(安全工具、规则库、示例脚本本来就会包含危险写法),命中少也不等于干净。它和你手上的凭据、文件、网络有什么关系,需要你自己看。
技能内容
The Event-Driven Architecture Paradigm
When To Use
- Building async, loosely-coupled systems
- Systems with complex event processing pipelines
When NOT To Use
- Simple request-response applications without async needs
- Systems requiring strong transactional consistency
When to Employ This Paradigm
- For real-time or bursty workloads (e.g., IoT, financial trading, logistics) where loose coupling and asynchronous processing are beneficial.
- When multiple, distinct subsystems must react to the same business or domain events.
- When system extensibility is a high priority, allowing new components to be added without modifying existing services.
Adoption Steps
- Model the Events: Define canonical event schemas, establish a clear versioning strategy, and assign ownership for each event type.
- Select the Right Topology: For each data flow, make a deliberate choice between choreography (e.g., a simple pub/sub model) and orchestration (e.g., a central controller or saga orchestrator).
- Engineer the Event Platform: Choose the appropriate event brokers or message meshes. Configure critical parameters such as message ordering, topic partitions, and data retention policies.
- Plan for Failure Handling: Implement production-grade mechanisms for handling message failures, including Dead-Letter Queues (DLQs), automated retry logic, idempotent consumers, and tools for replaying events.
- Instrument for Observability: Implement detailed monitoring to track key metrics such as consumer lag, message throughput, schema validation failures, and the health of individual consumer applications.
Key Deliverables
- An Architecture Decision Record (ADR) that documents the event taxonomy, the chosen broker technology, and the governance policies (e.g., for naming, versioning, and retention).
- A centralized schema repository with automated CI validation and consumer-driven contract tests.
- Operational dashboards for monitoring system-wide throughput, consumer lag, and DLQ depth.
Risks & Mitigations
- Hidden Coupling through Events:
- Mitigation: Consumers may implicitly depend on undocumented event semantics or data fields. Publish a formal event catalog or schema registry and use linting tools to enforce event structure.
- Operational Complexity and "Noise":
- Mitigation: Without strong observability, diagnosing failed or "stuck" consumers is extremely difficult. Enforce the use of distributed tracing and standardized alerting across all event-driven components.
- "Event Storming" Analysis Paralysis:
- Mitigation: While event storming workshops are valuable, they can become unproductive if not properly managed. Keep modeling sessions time-boxed and focused on high-value business contexts first.
Concrete Components
These vocabulary items name the concrete tools and abstractions
that show up when the paradigm is implemented. They are not
required dependencies and they are not part of the skill's
`tools:` frontmatter (which is reserved for Claude Code tool
restrictions). Use this list to disambiguate during architecture
discussions.
- `
message-broker`: Kafka, NATS, RabbitMQ; the durable channel between producers and consumers - `
event-stream-processor`: Flink, Faust, or similar; consumes streams and emits derived events - `
distributed-tracing`: OpenTelemetry-style correlation IDs across asynchronous hops
Exit Criteria
- [ ] An ADR is produced documenting the event taxonomy, chosen broker technology, naming
conventions, versioning policy, and data retention settings.
- [ ] A centralized schema repository or registry exists with CI validation that blocks
unregistered event schemas from reaching production.
- [ ] Dead-Letter Queue (DLQ) configuration and retry policy are specified for every consumer
before any consumer is deployed.
- [ ] Observability dashboards cover at minimum: consumer lag, message throughput, schema
validation failure rate, and DLQ depth.
想直接用这个技能?
本站把开放许可(MIT / Apache 等)的技能按仓库打包整理到网盘,点一下转存到你自己的网盘,不用一个个从 GitHub 拉。许可未声明的技能只给原始仓库链接,不打包。
它属于哪个仓库
plugins/archetypes/skills/architecture-paradigm-event-driven/SKILL.md同一个仓库里的其他技能
- claude-code-plugin-reference
- night-market-architecture-contract
- night-market-build-and-env
- night-market-change-control
- night-market-collective-memory
- night-market-completion-integrity-campaign
- night-market-config-catalog
- night-market-debugging-playbook
- night-market-diagnostics-toolkit
- night-market-docs-and-writing
- night-market-failure-archaeology
- night-market-model-and-harness-updates