dispatching-parallel-agents

par openai

À utiliser lorsque vous êtes confronté à 2 tâches indépendantes ou plus qui peuvent être traitées sans état partagé ni dépendances séquentielles.

npx skills add https://github.com/openai/plugins --skill dispatching-parallel-agents

Dispatching Parallel Agents

Overview

You delegate tasks to specialized agents with isolated context. By precisely crafting their instructions and context, you ensure they stay focused and succeed at their task. They should never inherit your session's context or history — you construct exactly what they need. This also preserves your own context for coordination work.

When you have multiple unrelated failures (different test files, different subsystems, different bugs), investigating them sequentially wastes time. Each investigation is independent and can happen in parallel.

Core principle: Dispatch one agent per independent problem domain. Let them work concurrently.

When to Use

digraph when_to_use {
    "Multiple failures?" [shape=diamond];
    "Are they independent?" [shape=diamond];
    "Single agent investigates all" [shape=box];
    "One agent per problem domain" [shape=box];
    "Can they work in parallel?" [shape=diamond];
    "Sequential agents" [shape=box];
    "Parallel dispatch" [shape=box];

    "Multiple failures?" -> "Are they independent?" [label="yes"];
    "Are they independent?" -> "Single agent investigates all" [label="no - related"];
    "Are they independent?" -> "Can they work in parallel?" [label="yes"];
    "Can they work in parallel?" -> "Parallel dispatch" [label="yes"];
    "Can they work in parallel?" -> "Sequential agents" [label="no - shared state"];
}

Use when:

  • 3+ test files failing with different root causes
  • Multiple subsystems broken independently
  • Each problem can be understood without context from others
  • No shared state between investigations

Don't use when:

  • Failures are related (fix one might fix others)
  • Need to understand full system state
  • Agents would interfere with each other

The Pattern

1. Identify Independent Domains

Group failures by what's broken:

  • File A tests: Tool approval flow
  • File B tests: Batch completion behavior
  • File C tests: Abort functionality

Each domain is independent - fixing tool approval doesn't affect abort tests.

2. Create Focused Agent Tasks

Each agent gets:

  • Specific scope: One test file or subsystem
  • Clear goal: Make these tests pass
  • Constraints: Don't change other code
  • Expected output: Summary of what you found and fixed

3. Dispatch in Parallel

// In Claude Code / AI environment
Task("Fix agent-tool-abort.test.ts failures")
Task("Fix batch-completion-behavior.test.ts failures")
Task("Fix tool-approval-race-conditions.test.ts failures")
// All three run concurrently

4. Review and Integrate

When agents return:

  • Read each summary
  • Verify fixes don't conflict
  • Run full test suite
  • Integrate all changes

Agent Prompt Structure

Good agent prompts are:

  1. Focused - One clear problem domain
  2. Self-contained - All context needed to understand the problem
  3. Specific about output - What should the agent return?
Fix the 3 failing tests in src/agents/agent-tool-abort.test.ts:

1. "should abort tool with partial output capture" - expects 'interrupted at' in message
2. "should handle mixed completed and aborted tools" - fast tool aborted instead of completed
3. "should properly track pendingToolCount" - expects 3 results but gets 0

These are timing/race condition issues. Your task:

1. Read the test file and understand what each test verifies
2. Identify root cause - timing issues or actual bugs?
3. Fix by:
   - Replacing arbitrary timeouts with event-based waiting
   - Fixing bugs in abort implementation if found
   - Adjusting test expectations if testing changed behavior

Do NOT just increase timeouts - find the real issue.

Return: Summary of what you found and what you fixed.

Common Mistakes

❌ Too broad: "Fix all the tests" - agent gets lost ✅ Specific: "Fix agent-tool-abort.test.ts" - focused scope

❌ No context: "Fix the race condition" - agent doesn't know where ✅ Context: Paste the error messages and test names

❌ No constraints: Agent might refactor everything ✅ Constraints: "Do NOT change production code" or "Fix tests only"

❌ Vague output: "Fix it" - you don't know what changed ✅ Specific: "Return summary of root cause and changes"

When NOT to Use

Related failures: Fixing one might fix others - investigate together first Need full context: Understanding requires seeing entire system Exploratory debugging: You don't know what's broken yet Shared state: Agents would interfere (editing same files, using same resources)

Real Example from Session

Scenario: 6 test failures across 3 files after major refactoring

Failures:

  • agent-tool-abort.test.ts: 3 failures (timing issues)
  • batch-completion-behavior.test.ts: 2 failures (tools not executing)
  • tool-approval-race-conditions.test.ts: 1 failure (execution count = 0)

Decision: Independent domains - abort logic separate from batch completion separate from race conditions

Dispatch:

Agent 1 → Fix agent-tool-abort.test.ts
Agent 2 → Fix batch-completion-behavior.test.ts
Agent 3 → Fix tool-approval-race-conditions.test.ts

Results:

  • Agent 1: Replaced timeouts with event-based waiting
  • Agent 2: Fixed event structure bug (threadId in wrong place)
  • Agent 3: Added wait for async tool execution to complete

Integration: All fixes independent, no conflicts, full suite green

Time saved: 3 problems solved in parallel vs sequentially

Key Benefits

  1. Parallelization - Multiple investigations happen simultaneously
  2. Focus - Each agent has narrow scope, less context to track
  3. Independence - Agents don't interfere with each other
  4. Speed - 3 problems solved in time of 1

Verification

After agents return:

  1. Review each summary - Understand what changed
  2. Check for conflicts - Did agents edit same code?
  3. Run full suite - Verify all fixes work together
  4. Spot check - Agents can make systematic errors

Real-World Impact

From debugging session (2025-10-03):

  • 6 failures across 3 files
  • 3 agents dispatched in parallel
  • All investigations completed concurrently
  • All fixes integrated successfully
  • Zero conflicts between agent changes

Plus de skills de openai

user-context
openai
Charger ou gérer les préférences de routage source durables du plugin Data Analytics, la logique d’intégration, la progression de la configuration et le registre de la couche sémantique.
official
notion-research-documentation
openai
Rechercher du contenu Notion et le synthétiser en notes structurées, rapports ou comparaisons avec citations. Interroger et récupérer des pages Notion à l'aide de requêtes ciblées, puis organiser les résultats par thème avec des citations de sources en ligne et une section de références. Choisir parmi quatre formats de sortie (note rapide, résumé de recherche, comparaison, rapport complet) en fonction de la portée et de l'objectif de l'utilisateur. Créer et mettre à jour des pages Notion à l'aide de modèles intégrés ; lier les sources directement et suivre les modifications à mesure que de nouvelles informations arrivent...
official
rcsb-pdb-skill
openai
Soumettre des requêtes RCSB PDB compactes pour les métadonnées principales, les requêtes Search API et les téléchargements FASTA. Utiliser lorsque l'utilisateur souhaite des résumés RCSB concis ; enregistrer le JSON brut ou…
official
pdf
openai
Lecture, création et validation de PDF avec rendu visuel et génération programmatique. Rendu des pages PDF en PNG pour inspection visuelle de la mise en page, de l'espacement et de la typographie avant livraison à l'aide de Poppler (pdftoppm). Génération programmatique de PDF avec reportlab pour un formatage fiable ; extraction de texte et de métadonnées avec pdfplumber ou pypdf. Application de normes de qualité : pas de texte rogné, d'éléments superposés, de tableaux cassés ou d'artefacts de rendu ; traits d'union ASCII uniquement, citations lisibles par l'humain. Utilisation...
official
test-coverage-improver
openai
Improve test coverage in the OpenAI Agents JS monorepo: run `pnpm test:coverage`, inspect coverage artifacts, identify low-coverage files and branches, propose…
official
playwright
openai
Automatisation de navigateur pilotée par terminal avec captures d'éléments et workflows d'interface utilisateur interactifs. Fonctionne via un script wrapper playwright-cli (nécessite npx) ; prend en charge les modes headless et headed pour le débogage visuel. Workflow principal : ouvrir une page, capturer pour des références d'éléments stables, interagir à l'aide des références, recapturer après navigation ou modifications du DOM. Inclut le remplissage de formulaires, le clic, la saisie, la gestion multi-onglets, la capture d'écran/PDF et l'enregistrement de traces pour le débogage de flux. Références d'éléments (par exemple, e3, e15)...
official
ukb-topmed-phewas-skill
openai
Récupérez des résumés compacts UKB-TOPMed PheWAS pour des variants uniques en acceptant une entrée rsID, GRCh37 ou GRCh38 et en résolvant la requête GRCh38 nécessaire. Utilisez lorsque…
official
code-review-context
openai
Contexte visible du modèle
official