Product Capability

作者 affaan-mef648e01899bMIT275K 個星標收錄於 2026年10月8日更新於 2026年10月8日儲存庫3 天前更新

Translate PRD intent, roadmap asks, or product discussions into an implementation-ready capability plan that exposes constraints, invariants, interfaces, and unresolved decisions before multi-service work starts. Use when the user needs an ECC-native PRD-to-SRS lane instead of vague planning prose.

AI 產生的概覽

將 PRD、路線圖等產品意圖轉為可實作的 capability 計畫,明確限制與待決問題。

功能
此技能會把來自 PRD、路線圖項目、討論或創辦人筆記的產品意圖,轉換成明確的能力計畫。它會重述能力,擷取業務規則、不變量、信任邊界、資料歸屬與發布要求等限制,並定義面向實作的契約,涵蓋參與者、介面、狀態、介面規格與資料影響。它也會列出非目標、待決問題與交接建議,並可更新持久性的產品脈絡檔案,或依範本建立該檔案。
適用情境
當產品意圖清楚但實作限制仍不明確時使用;當某項功能橫跨多個服務、儲存庫或團隊,需要在撰寫程式前確立能力契約時也適用。它也適合隱含假設在工程審查中反覆出現、需要可重複使用產物的情境。
執行需求
沒有指令碼,僅提供指示。它會從儲存庫讀取產品意圖、現行架構文件、既有能力脈絡與交付限制,並可能寫入產品脈絡檔案或範本路徑。

Product Capability

This skill turns product intent into explicit engineering constraints.

Use it when the gap is not "what should we build?" but "what exactly must be true before implementation starts?"

When to Use

  • A PRD, roadmap item, discussion, or founder note exists, but the implementation constraints are still implicit
  • A feature crosses multiple services, repos, or teams and needs a capability contract before coding
  • Product intent is clear, but architecture, data, lifecycle, or policy implications are still fuzzy
  • Senior engineers keep restating the same hidden assumptions during review
  • You need a reusable artifact that can survive across harnesses and sessions

Canonical Artifact

If the repo has a durable product-context file such as PRODUCT.md, docs/product/, or a program-spec directory, update it there.

If no capability manifest exists yet, create one using the template at:

  • docs/examples/product-capability-template.md

The goal is not to create another planning stack. The goal is to make hidden capability constraints durable and reusable.

Non-Negotiable Rules

  • Do not invent product truth. Mark unresolved questions explicitly.
  • Separate user-visible promises from implementation details.
  • Call out what is fixed policy, what is architecture preference, and what is still open.
  • If the request conflicts with existing repo constraints, say so clearly instead of smoothing it over.
  • Prefer one reusable capability artifact over scattered ad hoc notes.

Inputs

Read only what is needed:

  1. Product intent
    • issue, discussion, PRD, roadmap note, founder message
  2. Current architecture
    • relevant repo docs, contracts, schemas, routes, existing workflows
  3. Existing capability context
    • PRODUCT.md, design docs, RFCs, migration notes, operating-model docs
  4. Delivery constraints
    • auth, billing, compliance, rollout, backwards compatibility, performance, review policy

Core Workflow

1. Restate the capability

Compress the ask into one precise statement:

  • who the user or operator is
  • what new capability exists after this ships
  • what outcome changes because of it

If this statement is weak, the implementation will drift.

2. Resolve capability constraints

Extract the constraints that must hold before implementation:

  • business rules
  • scope boundaries
  • invariants
  • trust boundaries
  • data ownership
  • lifecycle transitions
  • rollout / migration requirements
  • failure and recovery expectations

These are the things that often live only in senior-engineer memory.

3. Define the implementation-facing contract

Produce an SRS-style capability plan with:

  • capability summary
  • explicit non-goals
  • actors and surfaces
  • required states and transitions
  • interfaces / inputs / outputs
  • data model implications
  • security / billing / policy constraints
  • observability and operator requirements
  • open questions blocking implementation

4. Translate into execution

End with the exact handoff:

  • ready for direct implementation
  • needs architecture review first
  • needs product clarification first

If useful, point to the next ECC-native lane:

  • project-flow-ops
  • workspace-surface-audit
  • api-connector-builder
  • dashboard-builder
  • tdd-workflow
  • verification-loop

Output Format

Return the result in this order:

text
CAPABILITY- one-paragraph restatement
CONSTRAINTS- fixed rules, invariants, and boundaries
IMPLEMENTATION CONTRACT- actors- surfaces- states and transitions- interface/data implications
NON-GOALS- what this lane explicitly does not own
OPEN QUESTIONS- blockers or product decisions still required
HANDOFF- what should happen next and which ECC lane should take it

Good Outcomes

  • Product intent is now concrete enough to implement without rediscovering hidden constraints mid-PR.
  • Engineering review has a durable artifact instead of relying on memory or Slack context.
  • The resulting plan is reusable across Claude Code, Codex, Cursor, OpenCode, and ECC 2.0 planning surfaces.

來源與署名

來源:affaan-m/ecc位於.agents/skills/product-capability提交ef648e0

授權條款: MIT

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