Agent skill

spec

Write and maintain spec-first artifacts (service specs, API contracts via OpenAPI/protobuf/WebSocket schemas, ADRs, task lists, quickstarts). Use when creating specs/*.md, apps/*/spec/ bundles, or contracts/ docs, especially before major behavior changes or multi-agent collaboration. NOT for implementation task breakdown without spec artifacts (use plan); NOT for choosing system or code patterns (use architecture or design).

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Forks 31

Install this agent skill to your Project

npx add-skill https://github.com/majiayu000/claude-skill-registry/tree/main/skills/other/other/spec-bricerising-enterprise-software-

Metadata

Additional technical details for this skill

tags
spec-first contracts acceptance-criteria decision-records nfrs openapi protobuf adr
stage
Define
aliases
[
    "specification",
    "contract",
    "api-contract",
    "schema",
    "acceptance",
    "requirements"
]

SKILL.md

Spec (Spec-Driven Development)

Overview

Create a stable “source of truth” for agents and humans: write specs with testable acceptance criteria and keep them aligned with implementation.

This skill treats specs as operational tooling: they prevent scope drift, enforce invariants, and make AI iteration converge.

Core Idea

  • Specs define what must be true (contracts, scenarios, invariants, NFRs), not “how we coded it”.
  • Plans/tasks define how we’ll get there (phases, work breakdown, acceptance per task).
  • Code + tests are the proof.

Where Specs Live (Opinionated)

Use one (or both) of these:

  • System specs: specs/*.md for cross-service rules and shared constraints (auth, observability, eventing, product scope).
  • Decision records: specs/decisions/*.md for significant choices (trade-offs, migrations, taxonomy, compatibility).
  • Service spec bundle: apps/<service>/spec/ for service-local truth:
    • spec.md: requirements and acceptance scenarios
    • contracts/: OpenAPI/proto/WS message contracts
    • data-model.md: domain entities + storage boundaries
    • plan.md: phases and wiring/structure
    • tasks.md: checklist-style backlog with acceptance criteria
    • quickstart.md: how to run/verify the service in dev

Chooser (What Spec Artifact To Write)

  • Cross-service rule or shared constraint (auth, observability, eventing, product scope): write/update a system spec (specs/NNN-<topic>.md).
  • Significant trade-off or migration decision: write a decision record (specs/decisions/NNN-<topic>.md).
  • New or changed service behavior: write/update the service spec bundle (apps/<service>/spec/).
  • API/contract change (new endpoint, changed schema, new event): update contracts (contracts/: OpenAPI/proto/WS docs) in the spec bundle.
  • Task breakdown for implementation: update tasks.md in the spec bundle (or specs/tasks.md for repo-level backlog).
  • Minor behavior tweak within existing contracts: update acceptance scenarios in the existing spec; no new artifacts needed.

Clarifying Questions

  • Is this change scoped to one service or does it cross service boundaries?
  • Does it change externally visible behavior (API shapes, error codes, event schemas, auth rules)?
  • Are there existing specs/contracts that should be updated vs creating new ones?
  • Who are the consumers of this contract (other services, clients, external partners)?
  • Is backward compatibility required, or can we make breaking changes?

Workflow

  1. Load archobs data (before spec writing begins):

    bash
    archobs show clusters --format json
    archobs show risks --format json
    

    Use in spec writing:

    • Ensure spec contracts honor existing cluster boundaries. If the spec introduces a new boundary that cuts across a cluster with cohesion > 0.60, flag the conflict — the spec is fighting natural structure.
    • Files with risk > 0.5 in the spec's scope warrant stricter acceptance criteria and testing requirements.
    • Clusters with leakage > 0.20 that the spec touches may need explicit boundary contracts (interface types, Facade).

    If archobs artifacts are missing: run archobs report or note as a gap. Do not block spec writing on archobs — the spec can be amended when data becomes available.

0b. Versioning guidance from forecast (conditional — run when the spec pins an external dependency contract such as an API version, SDK, or protocol):

bash
intel forecast    # lifecycle phase for the dependency

Decision mapping: See Lifecycle Decision Mapping — Spec: Versioning Strategy for lifecycle phase → versioning strategy table.

  1. Decide the scope:
    • One service? write/update the service spec bundle.
    • Cross-service or product-wide? write/update a system spec.
  2. Write the objective function up front:
    • goal, constraints, anti-goals
    • boundary (in/out) and time horizon
  3. Externalize the system sketch:
    • actors + incentives
    • key flows (work/data/risk)
    • top constraints/bottlenecks
  4. Write acceptance-first:
    • user story + “independent test”
    • acceptance scenarios (Given/When/Then)
    • edge cases and invariants (“constitution requirements”)
  5. Lock down contracts:
    • HTTP/gRPC schemas, message types, error codes, idempotency keys
    • versioning rules and backward compatibility expectations
  6. Add non-functional requirements (NFRs) that matter:
    • latency budgets, concurrency, durability, audit, privacy
    • observability and resilience requirements (trace/log/metrics, timeouts/retries/idempotency)
  7. Add a compact decision table:
    • options considered (include baseline/no-change)
    • what is optimized vs knowingly worsened
    • kill criteria / reversal trigger
  8. Stress-test the decision (if 2+ viable approaches exist; skip for single viable approach):
    • Assumptions: What are facts vs assumptions? Which assumption is least certain — how will we validate it? Cross-reference with archobs data from step 0 and versioning guidance from step 0b (if applicable). (attach to decision table)
    • Second-Order Effects: What happens next week / next quarter / next year? What new load, toil, coupling, or failure mode does this create? If this fails in 6-12 months, what likely caused failure? Cross-reference with archobs data from step 0 and versioning guidance from step 0b (if applicable). (attach to decision table)
    • Opportunity Cost: What are we saying "no" to? Are we favoring this due to sunk cost, familiarity, or novelty? (attach to decision table)
    • If probe output already exists from an earlier Define-stage skill in this flow (including workflow orchestration), refine it instead of re-running.
  9. Add a measurement ladder:
    • decision being measured
    • leading indicators (early signal)
    • lagging outcomes (business/ops)
    • instrumentation sources + review ritual (owner/cadence/action trigger)
  10. Break it into tasks with acceptance:
  • keep tasks small and orderable
  • each task has an observable acceptance check
  1. Implement and keep docs honest:
  • if implementation forces a change in behavior, update specs first
  • keep quickstarts and contracts current

Guardrails

  • “No spec, no change”: don’t implement major behavior without updating the spec surface.
  • Don’t hide requirements in code; put them in spec.md where agents can find them.
  • Keep contracts stable; prefer additive changes and version explicitly when you can’t.
  • Write down non-goals to stop scope creep.
  • For non-trivial decisions, record opportunity cost explicitly to avoid accidental scope drift.
  • No metric without a named decision and review ritual.
  • If a design cannot be measured cheaply enough to guide weekly decisions, treat that as a constraint and simplify.

References

  • Templates: references/templates.md
  • Spec quality checklist: references/checklists.md
  • Structured-thinking probes + templates: ../references/ (checklists for inline probes, templates for escalation)
  • Architecture choices: architecture
  • In-process pattern choices: design
  • Typed boundaries/errors/lifetimes: typescript
  • Consumer-visible tests: testing

Output Template

When using this skill, return:

  • Scope + objective: boundary, constraints, anti-goals.
  • Artifacts created/updated: exact spec files (and contracts/ADRs when relevant).
  • Decision summary: options considered, selected option, trade-offs, kill criteria, and assumptions (facts vs assumptions, opportunity costs).
  • Measurement ladder: leading + lagging indicators, owner/cadence/action trigger.
  • Verification plan: concrete checks/commands that prove acceptance scenarios and failure expectations.
  • Next implementation tasks: ordered checklist with observable acceptance per task.

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