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brainstorm
Brainstorm - Requirements Discovery (AI Coding Enhanced)
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。
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Brainstorm - Requirements Discovery (AI Coding Enhanced)
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
| name | brainstorm |
| description | Brainstorm - Requirements Discovery (AI Coding Enhanced) |
Guide AI through collaborative requirements discovery before implementation, optimized for AI coding workflows:
Triggered from $start when the user describes a development task, especially when:
Task-first (capture early) Always ensure a task exists at the start so the user's ideas are recorded immediately.
Action before asking If you can derive the answer from repo code, docs, configs, conventions, or quick research — do that first.
One question per message Never overwhelm the user with a list of questions. Ask one, update PRD, repeat.
Prefer concrete options For preference/decision questions, present 2–3 feasible, specific approaches with trade-offs.
Research-first for technical choices If the decision depends on industry conventions / similar tools / established patterns, do research first, then propose options.
Diverge → Converge After initial understanding, proactively consider future evolution, related scenarios, and failure/edge cases — then converge to an MVP with explicit out-of-scope.
No meta questions Do not ask "should I search?" or "can you paste the code so I can continue?" If you need information: search/inspect. If blocked: ask the minimal blocking question.
Before any Q&A, ensure a task exists. If none exists, create one immediately.
TASK_DIR=$(python3 ./.trellis/scripts/task.py create "brainstorm: <short goal>" --slug <auto>)
Create/seed prd.md immediately with what you know:
# brainstorm: <short goal>
## Goal
<one paragraph: what + why>
## What I already know
* <facts from user message>
* <facts discovered from repo/docs>
## Assumptions (temporary)
* <assumptions to validate>
## Open Questions
* <ONLY Blocking / Preference questions; keep list short>
## Requirements (evolving)
* <start with what is known>
## Acceptance Criteria (evolving)
* [ ] <testable criterion>
## Definition of Done (team quality bar)
* Tests added/updated (unit/integration where appropriate)
* Lint / typecheck / CI green
* Docs/notes updated if behavior changes
* Rollout/rollback considered if risky
## Out of Scope (explicit)
* <what we will not do in this task>
## Technical Notes
* <files inspected, constraints, links, references>
* <research notes summary if applicable>
Before asking questions like "what does the code look like?", gather context yourself:
Write findings into PRD:
What I already knowTechnical Notes| Complexity | Criteria | Action |
|---|---|---|
| Trivial | Single-line fix, typo, obvious change | Skip brainstorm, implement directly |
| Simple | Clear goal, 1–2 files, scope well-defined | Ask 1 confirm question, then implement |
| Moderate | Multiple files, some ambiguity | Light brainstorm (2–3 high-value questions) |
| Complex | Vague goal, architectural choices, multiple approaches | Full brainstorm |
Note: Task already exists from Step 0. Classification only affects depth of brainstorming.
Before asking ANY question, run the following gate:
If answer is available via:
→ Do not ask. Fetch it, summarize, update PRD.
Examples:
→ Do not ask. Take action.
→ Only ask Blocking or Preference.
Add a section in PRD (either within Technical Notes or as its own):
## Research Notes
### What similar tools do
* ...
* ...
### Constraints from our repo/project
* ...
### Feasible approaches here
**Approach A: <name>** (Recommended)
* How it works:
* Pros:
* Cons:
**Approach B: <name>**
* How it works:
* Pros:
* Cons:
**Approach C: <name>** (optional)
* ...
Then ask one preference question:
After you can summarize the goal, proactively broaden thinking before converging.
Future evolution
Related scenarios
Failure & edge cases
I understand you want to implement: <current goal>.
Before diving into design, let me quickly diverge to consider three categories (to avoid rework later):
1. Future evolution: <1–2 bullets>
2. Related scenarios: <1–2 bullets>
3. Failure/edge cases: <1–2 bullets>
For this MVP, which would you like to include (or none)?
1. Current requirement only (minimal viable)
2. Add <X> (reserve for future extension)
3. Add <Y> (improve robustness/consistency)
4. Other: describe your preference
Then update PRD:
RequirementsOut of ScopeOne question per message
Prefer multiple-choice when possible
After each user answer:
Open Questions → RequirementsAcceptance Criteria with testable checkboxesOut of ScopeFor <topic>, which approach do you prefer?
1. **Option A** — <what it means + trade-off>
2. **Option B** — <what it means + trade-off>
3. **Option C** — <what it means + trade-off>
4. **Other** — describe your preference
After requirements are clear enough, propose 2–3 approaches (if not already done via research-first):
Based on current information, here are 2–3 feasible approaches:
**Approach A: <name>** (Recommended)
* How:
* Pros:
* Cons:
**Approach B: <name>**
* How:
* Pros:
* Cons:
Which direction do you prefer?
Record the outcome in PRD as an ADR-lite section:
## Decision (ADR-lite)
**Context**: Why this decision was needed
**Decision**: Which approach was chosen
**Consequences**: Trade-offs, risks, potential future improvements
When open questions are resolved, confirm complete requirements with a structured summary:
Here's my understanding of the complete requirements:
**Goal**: <one sentence>
**Requirements**:
* ...
* ...
**Acceptance Criteria**:
* [ ] ...
* [ ] ...
**Definition of Done**:
* ...
**Out of Scope**:
* ...
**Technical Approach**:
<brief summary + key decisions>
**Implementation Plan (small PRs)**:
* PR1: <scaffolding + tests + minimal plumbing>
* PR2: <core behavior>
* PR3: <edge cases + docs + cleanup>
Does this look correct? If yes, I'll proceed with implementation.
For complex tasks with multiple independent work items, create subtasks:
# Create child tasks
CHILD1=$(python3 ./.trellis/scripts/task.py create "Child task 1" --slug child1 --parent "$TASK_DIR")
CHILD2=$(python3 ./.trellis/scripts/task.py create "Child task 2" --slug child2 --parent "$TASK_DIR")
# Or link existing tasks
python3 ./.trellis/scripts/task.py add-subtask "$TASK_DIR" "$CHILD_DIR"
prd.md should converge to:
# <Task Title>
## Goal
<why + what>
## Requirements
* ...
## Acceptance Criteria
* [ ] ...
## Definition of Done
* ...
## Technical Approach
<key design + decisions>
## Decision (ADR-lite)
Context / Decision / Consequences
## Out of Scope
* ...
## Technical Notes
<constraints, references, files, research notes>
After brainstorm completes (Step 8 confirmation approved), the flow continues to the Task Workflow's Phase 2: Prepare for Implementation:
Brainstorm
Step 0: Create task directory + seed PRD
Step 1–7: Discover requirements, research, converge
Step 8: Final confirmation → user approves
↓
Task Workflow Phase 2 (Prepare for Implementation)
Code-Spec Depth Check (if applicable)
→ Research codebase (based on confirmed PRD)
→ Configure code-spec context (jsonl files)
→ Activate task
↓
Task Workflow Phase 3 (Execute)
Implement → Check → Complete
The task directory and PRD already exist from brainstorm, so Phase 1 of the Task Workflow is skipped entirely.
| Command | When to Use |
|---|---|
$start | Entry point that triggers brainstorm |
$finish-work | After implementation is complete |
$update-spec | If new patterns emerge during work |