openspec-continue-change

作者: rivet-dev

繼續處理OpenSpec變更,建立下一個工件。當使用者想要推進變更、建立下一個工件或繼續時使用。

npx skills add https://github.com/rivet-dev/actors --skill openspec-continue-change

Continue working on a change by creating the next artifact.

Input: Optionally specify a change name. If omitted, check if it can be inferred from conversation context. If vague or ambiguous you MUST prompt for available changes.

Steps

  1. If no change name provided, prompt for selection

    Run openspec list --json to get available changes sorted by most recently modified. Then use the AskUserQuestion tool to let the user select which change to work on.

    Present the top 3-4 most recently modified changes as options, showing:

    • Change name
    • Schema (from schema field if present, otherwise "spec-driven")
    • Status (e.g., "0/5 tasks", "complete", "no tasks")
    • How recently it was modified (from lastModified field)

    Mark the most recently modified change as "(Recommended)" since it's likely what the user wants to continue.

    IMPORTANT: Do NOT guess or auto-select a change. Always let the user choose.

  2. Check current status

    openspec status --change "<name>" --json
    

    Parse the JSON to understand current state. The response includes:

    • schemaName: The workflow schema being used (e.g., "spec-driven")
    • artifacts: Array of artifacts with their status ("done", "ready", "blocked")
    • isComplete: Boolean indicating if all artifacts are complete
  3. Act based on status:


    If all artifacts are complete (isComplete: true):

    • Congratulate the user
    • Show final status including the schema used
    • Suggest: "All artifacts created! You can now implement this change or archive it."
    • STOP

    If artifacts are ready to create (status shows artifacts with status: "ready"):

    • Pick the FIRST artifact with status: "ready" from the status output
    • Get its instructions:
      openspec instructions <artifact-id> --change "<name>" --json
      
    • Parse the JSON. The key fields are:
      • context: Project background (constraints for you - do NOT include in output)
      • rules: Artifact-specific rules (constraints for you - do NOT include in output)
      • template: The structure to use for your output file
      • instruction: Schema-specific guidance
      • outputPath: Where to write the artifact
      • dependencies: Completed artifacts to read for context
    • Create the artifact file:
      • Read any completed dependency files for context
      • Use template as the structure - fill in its sections
      • Apply context and rules as constraints when writing - but do NOT copy them into the file
      • Write to the output path specified in instructions
    • Show what was created and what's now unlocked
    • STOP after creating ONE artifact

    If no artifacts are ready (all blocked):

    • This shouldn't happen with a valid schema
    • Show status and suggest checking for issues
  4. After creating an artifact, show progress

    openspec status --change "<name>"
    

Output

After each invocation, show:

  • Which artifact was created
  • Schema workflow being used
  • Current progress (N/M complete)
  • What artifacts are now unlocked
  • Prompt: "Want to continue? Just ask me to continue or tell me what to do next."

Artifact Creation Guidelines

The artifact types and their purpose depend on the schema. Use the instruction field from the instructions output to understand what to create.

Common artifact patterns:

spec-driven schema (proposal → specs → design → tasks):

  • proposal.md: Ask user about the change if not clear. Fill in Why, What Changes, Capabilities, Impact.
    • The Capabilities section is critical - each capability listed will need a spec file.
  • specs//spec.md: Create one spec per capability listed in the proposal's Capabilities section (use the capability name, not the change name).
  • design.md: Document technical decisions, architecture, and implementation approach.
  • tasks.md: Break down implementation into checkboxed tasks.

For other schemas, follow the instruction field from the CLI output.

Guardrails

  • Create ONE artifact per invocation
  • Always read dependency artifacts before creating a new one
  • Never skip artifacts or create out of order
  • If context is unclear, ask the user before creating
  • Verify the artifact file exists after writing before marking progress
  • Use the schema's artifact sequence, don't assume specific artifact names
  • IMPORTANT: context and rules are constraints for YOU, not content for the file
    • Do NOT copy <context>, <rules>, <project_context> blocks into the artifact
    • These guide what you write, but should never appear in the output

來自 rivet-dev 的更多技能

multiplayer-game
rivet-dev
構建多人遊戲的實用模式:配對系統、滴答循環、即時狀態、興趣管理與驗證。包含10種遊戲類型(大逃殺、競技場、IO風格、開放世界、派對、2D/3D物理、排位賽、回合制、放置類)的入門程式碼與架構模式,附帶角色拓撲、生命週期圖表及網路程式碼策略。涵蓋伺服器模擬基礎:固定即時循環與動作驅動更新、物理引擎選擇(Rapier 2D/3D),以及空間...
rivetkit
rivet-dev
為AI代理、多人應用程式及工作流程自動化提供長效、具狀態的運算。Actor是持久化的記憶體處理程序,能在無需資料庫往返的情況下跨請求維持狀態,並自動從零擴展至數百萬個並行實例。內建透過WebSocket與事件的即時通訊、用於有序訊息處理的持久佇列,以及用於結構化資料查詢的SQLite。透過Rivet Cloud或自託管方式,狀態可在重啟或崩潰後持續保留...
ai-agent
rivet-dev
建立一個具有持久記憶的AI agent後端:每個對話一個Rivet Actor、排隊消息處理、以及將串流LLM回應作為即時事件。
ai-agent-workspace
rivet-dev
賦予每個AI代理自己的電腦:一個持久的作業空間,包含檔案系統、程序、Shell、網路功能,以及輕量級進程內的代理會話…
chat-room
rivet-dev
使用 Rivet Actors 建立即時聊天室後端:每個房間一個 Actor、SQLite 支援的訊息歷史記錄,以及透過 WebSocket 向所有連線用戶端廣播。
collaborative-text-editor
rivet-dev
使用 Yjs CRDT 與 Rivet Actors 建構協作文字編輯器後端:每個文件的 Actor 負責轉發同步與感知更新,並持久化快照。
cron-jobs
rivet-dev
使用 Rivet Actors 實現持久化定時任務:schedule.after 和 schedule.at 計時器可在重啟與崩潰後保持狀態,並支援重新設定週期性任務與冪等處理器。
live-cursors
rivet-dev
使用 Rivet Actors 實現的即時游標與多人協作狀態:每個連線的游標狀態、透過事件或原始 WebSocket 的即時更新,以及節流控制。