openspec-ff-change

Avanzar rápidamente en la creación de artefactos de OpenSpec. Úsalo cuando el usuario quiera crear rápidamente todos los artefactos necesarios para la implementación sin pasar por…

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

Fast-forward through artifact creation - generate everything needed to start implementation in one go.

Input: The user's request should include a change name (kebab-case) OR a description of what they want to build.

Steps

  1. If no clear input provided, ask what they want to build

    Use the AskUserQuestion tool (open-ended, no preset options) to ask:

    "What change do you want to work on? Describe what you want to build or fix."

    From their description, derive a kebab-case name (e.g., "add user authentication" → add-user-auth).

    IMPORTANT: Do NOT proceed without understanding what the user wants to build.

  2. Create the change directory

    openspec new change "<name>"
    

    This creates a scaffolded change at openspec/changes/<name>/.

  3. Get the artifact build order

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

    Parse the JSON to get:

    • applyRequires: array of artifact IDs needed before implementation (e.g., ["tasks"])
    • artifacts: list of all artifacts with their status and dependencies
  4. Create artifacts in sequence until apply-ready

    Use the TodoWrite tool to track progress through the artifacts.

    Loop through artifacts in dependency order (artifacts with no pending dependencies first):

    a. For each artifact that is ready (dependencies satisfied):

    • Get instructions:
      openspec instructions <artifact-id> --change "<name>" --json
      
    • The instructions JSON includes:
      • 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 for this artifact type
      • outputPath: Where to write the artifact
      • dependencies: Completed artifacts to read for context
    • Read any completed dependency files for context
    • Create the artifact file using template as the structure
    • Apply context and rules as constraints - but do NOT copy them into the file
    • Show brief progress: "✓ Created "

    b. Continue until all applyRequires artifacts are complete

    • After creating each artifact, re-run openspec status --change "<name>" --json
    • Check if every artifact ID in applyRequires has status: "done" in the artifacts array
    • Stop when all applyRequires artifacts are done

    c. If an artifact requires user input (unclear context):

    • Use AskUserQuestion tool to clarify
    • Then continue with creation
  5. Show final status

    openspec status --change "<name>"
    

Output

After completing all artifacts, summarize:

  • Change name and location
  • List of artifacts created with brief descriptions
  • What's ready: "All artifacts created! Ready for implementation."
  • Prompt: "Run /opsx-apply or ask me to implement to start working on the tasks."

Artifact Creation Guidelines

  • Follow the instruction field from openspec instructions for each artifact type
  • The schema defines what each artifact should contain - follow it
  • Read dependency artifacts for context before creating new ones
  • Use template as the structure for your output file - fill in its sections
  • 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

Guardrails

  • Create ALL artifacts needed for implementation (as defined by schema's apply.requires)
  • Always read dependency artifacts before creating a new one
  • If context is critically unclear, ask the user - but prefer making reasonable decisions to keep momentum
  • If a change with that name already exists, suggest continuing that change instead
  • Verify each artifact file exists after writing before proceeding to next

Más skills de rivet-dev

ai-agent
rivet-dev
Construye un backend de agente de IA con memoria persistente: un Actor de Rivet por conversación, manejo de mensajes en cola y respuestas de LLM en streaming como eventos en tiempo real.
official
ai-agent-workspace
rivet-dev
Dale a cada agente de IA su propia computadora: un espacio de trabajo persistente con un sistema de archivos, procesos, shells, redes y sesiones de agente en un entorno ligero dentro del proceso…
official
chat-room
rivet-dev
Construye un backend de sala de chat en tiempo real con Rivet Actors: un actor por sala, historial de mensajes respaldado por SQLite y transmisión WebSocket a cada cliente conectado.
official
collaborative-text-editor
rivet-dev
Construye un backend de editor de texto colaborativo con CRDTs de Yjs y Rivet Actors: actores por documento retransmiten actualizaciones de sincronización y conciencia, y persisten instantáneas.
official
cron-jobs
rivet-dev
Trabajos cron duraderos con Rivet Actors: los temporizadores schedule.after y schedule.at sobreviven reinicios y fallos, además de rearmar trabajos recurrentes y manejadores idempotentes.
official
live-cursors
rivet-dev
Cursores en vivo y presencia multijugador con Rivet Actors: estado de cursor por conexión, actualizaciones en tiempo real mediante eventos o WebSockets sin procesar, y limitación de frecuencia.
official
per-tenant-database
rivet-dev
Aislamiento de datos multiinquilino con un Rivet Actor por inquilino: la clave del actor es el id del inquilino, por lo que cada inquilino obtiene su propio conjunto de datos aislado y migraciones.
official
rivetkit-client-javascript
rivet-dev
Cliente JavaScript para conectar con Rivet Actors mediante conexiones stateless o stateful. Compatible con entornos de navegador, Node.js y Bun con detección automática de endpoints mediante variables de entorno o configuración explícita. Ofrece dos modos de interacción: llamadas de acción stateless para solicitudes independientes y conexiones stateful con suscripciones a eventos en tiempo real. Incluye acceso HTTP y WebSocket de bajo nivel para actores que implementan manejadores onRequest o onWebSocket. Proporciona compuestos basados en arreglos...
official