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ultrawork
Parallel execution engine for concurrent agent tasks. Use for "run in parallel", "concurrent execution", and "ultrawork".
Codex または Claude でインストール この Prompt をコピーして Codex、Claude、または他のアシスタントに貼り付けると、Skill ページを確認してインストールできます。
メニュー
Parallel execution engine for concurrent agent tasks. Use for "run in parallel", "concurrent execution", and "ultrawork".
Codex または Claude でインストール この Prompt をコピーして Codex、Claude、または他のアシスタントに貼り付けると、Skill ページを確認してインストールできます。
SOC 職業分類に基づく
Manage OMA skills — list, add, remove, search, and edit skills
Socratic deep interview with mathematical ambiguity gating before autonomous execution
Remove AI slop - low-quality, generic, or verbose content. Use for "clean up", "remove fluff", and "make concise".
Consensus planning - agree before executing. Use for "ralplan", "consensus", "pre-execution review".
Setup routing and environment configuration. Use for "setup", "configure", and "get started".
N coordinated agents on shared task list using Claude Code native teams, with git worktree isolation per executor
| name | ultrawork |
| description | Parallel execution engine for concurrent agent tasks. Use for "run in parallel", "concurrent execution", and "ultrawork". |
| trigger | /oma:ultrawork |
Execute multiple tasks in parallel using coordinated agent sub-processes.
Tasks are independent when:
ultrawork:parallelRun all tasks simultaneously. Use when tasks are truly independent.
ultrawork:staggeredOffset start times to prevent resource contention. Use for API rate limits.
ultrawork:adaptiveDynamic concurrency based on system load. Use for resource-intensive tasks.
## Ultrawork: {task description}
### Execution Plan
| Task | Dependencies | Est. Duration |
|------|--------------|---------------|
| {task 1} | none | {time} |
| {task 2} | none | {time} |
| {task 3} | task 1 | {time} |
### Execution
- **Mode:** {parallel|staggered|adaptive}
- **Concurrency:** {n} tasks
- **Started:** {time}
### Results
| Task | Status | Duration | Output |
|------|--------|----------|--------|
| {task 1} | ✅ | {time} | {summary} |
| {task 2} | ✅ | {time} | {summary} |
### Summary
- **Total duration:** {time}
- **Effective time:** {time} (parallel) vs {time} (sequential)
- **Speedup:** {n}x
- **Failures:** {n}
<Do_Not_Use_When>
/oma:ralph or /oma:ultraqa — those modes have their own coordination logic
</Do_Not_Use_When><Tool_Usage>
<Why_This_Exists> OMA orchestrates Auggie agents that work on real codebases. Some tasks are genuinely parallel — lint 10 files, generate docs for 5 modules, run independent test suites. Doing these sequentially in Auggie's session model wastes time and burns context tokens. ultrawork provides the coordination pattern (identify → dispatch → coordinate → collect → integrate) so parallel execution is deliberate and safe rather than chaotic. </Why_This_Exists>
Embarrassingly parallel file processing:
User: "Lint all 12 TypeScript files in the src/ directory"
Agent: /oma:ultrawork
OMA: [Analyzes — all 12 files are independent]
OMA: [Dispatches 12 parallel executor tasks, one per file]
OMA: [Collects: 12/12 pass, 0 failures]
OMA: [Integrates: Summary report of all lint results]
Parallel exploration before implementation:
User: "Audit all 6 skill directories for missing SKILL.md sections"
OMA: [Dispatches 6 parallel explorer agents, one per skill directory]
OMA: [Collects 6 audit reports]
OMA: [Integrates into a single gap analysis]
False independence — same file touched twice:
User: "Refactor the auth service and update all callers"
OMA: [Ultrawork dispatches 2 parallel tasks: refactor auth + update callers]
Task 1 modifies auth.ts; Task 2 is waiting for the new API to exist
→ Race condition: Task 2 either fails or works on stale interface
→ Should use ralph mode: sequential refactor-then-update chain.
Over-parallelization:
User: "Echo 'hello' in 5 parallel processes"
OMA: [Spawns 5 executor agents for echo]
OMA: [Result: same as running echo once, but 5x the token cost]
→ Use Bash background jobs directly.
<Escalation_And_Stop_Conditions>
<Final_Checklist>