780 lines
26 KiB
Markdown
780 lines
26 KiB
Markdown
---
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name: refactor
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description: "Intelligent refactor command. Triggers: refactor, refactoring, cleanup, restructure, extract, simplify, modernize."
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---
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## Codex Harness Tool Compatibility
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This skill may include examples copied from the OpenCode harness. In Codex, do not call OpenCode-only tools such as `call_omo_agent(...)`, `task(...)`, `background_output(...)`, or `team_*(...)` literally. Translate those examples to Codex native tools:
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| OpenCode example | Codex tool to use |
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| --- | --- |
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| `call_omo_agent(subagent_type="explore", ...)` | `spawn_agent(agent_type="explorer", task_name="...", message="...")` |
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| `call_omo_agent(subagent_type="librarian", ...)` | `spawn_agent(agent_type="librarian", task_name="...", message="...")` |
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| `task(subagent_type="plan", ...)` | `spawn_agent(agent_type="plan", task_name="...", message="...")` |
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| `task(subagent_type="oracle", ...)` for final verification | `spawn_agent(agent_type="codex-ultrawork-reviewer", task_name="...", message="...")` |
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| `task(category="...", ...)` for implementation or QA | `spawn_agent(agent_type="worker", task_name="...", message="...")` |
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| `background_output(task_id="...")` | `wait_agent(...)` to wait for subagent completion and mailbox updates |
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| `team_*(...)` | Use Codex native subagents plus `send_message`, `followup_task`, `wait_agent`, and `close_agent` |
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When translating `load_skills=[...]`, include the requested skill names in the spawned agent's `message`. If a code block below conflicts with this section, this section wins.
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export const REFACTOR_TEMPLATE = `# Intelligent Refactor Command
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## Usage
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\`\`\`
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/refactor <refactoring-target> [--scope=<file|module|project>] [--strategy=<safe|aggressive>]
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Arguments:
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refactoring-target: What to refactor. Can be:
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- File path: src/auth/handler.ts
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- Symbol name: "AuthService class"
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- Pattern: "all functions using deprecated API"
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- Description: "extract validation logic into separate module"
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Options:
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--scope: Refactoring scope (default: module)
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- file: Single file only
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- module: Module/directory scope
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- project: Entire codebase
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--strategy: Risk tolerance (default: safe)
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- safe: Conservative, maximum test coverage required
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- aggressive: Allow broader changes with adequate coverage
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\`\`\`
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## What This Command Does
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Performs intelligent, deterministic refactoring with full codebase awareness. Unlike blind search-and-replace, this command:
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1. **Understands your intent** - Analyzes what you actually want to achieve
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2. **Maps the codebase** - Builds a definitive codemap before touching anything
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3. **Assesses risk** - Evaluates test coverage and determines verification strategy
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4. **Plans meticulously** - Creates a detailed plan with Plan agent
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5. **Executes precisely** - Step-by-step refactoring with LSP and AST-grep
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6. **Verifies constantly** - Runs tests after each change to ensure zero regression
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---
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# PHASE 0: INTENT GATE (MANDATORY FIRST STEP)
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**BEFORE ANY ACTION, classify and validate the request.**
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## Step 0.1: Parse Request Type
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| Signal | Classification | Action |
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|--------|----------------|--------|
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| Specific file/symbol | Explicit | Proceed to codebase analysis |
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| "Refactor X to Y" | Clear transformation | Proceed to codebase analysis |
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| "Improve", "Clean up" | Open-ended | **MUST ask**: "What specific improvement?" |
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| Ambiguous scope | Uncertain | **MUST ask**: "Which modules/files?" |
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| Missing context | Incomplete | **MUST ask**: "What's the desired outcome?" |
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## Step 0.2: Validate Understanding
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Before proceeding, confirm:
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- [ ] Target is clearly identified
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- [ ] Desired outcome is understood
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- [ ] Scope is defined (file/module/project)
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- [ ] Success criteria can be articulated
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**If ANY of above is unclear, ASK CLARIFYING QUESTION:**
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\`\`\`
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I want to make sure I understand the refactoring goal correctly.
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**What I understood**: [interpretation]
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**What I'm unsure about**: [specific ambiguity]
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Options I see:
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1. [Option A] - [implications]
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2. [Option B] - [implications]
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**My recommendation**: [suggestion with reasoning]
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Should I proceed with [recommendation], or would you prefer differently?
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\`\`\`
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## Step 0.3: Create Initial Todos
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**IMMEDIATELY after understanding the request, create todos:**
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\`\`\`
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TodoWrite([
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{"id": "phase-1", "content": "PHASE 1: Codebase Analysis - launch parallel explore agents", "status": "pending", "priority": "high"},
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{"id": "phase-2", "content": "PHASE 2: Build Codemap - map dependencies and impact zones", "status": "pending", "priority": "high"},
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{"id": "phase-3", "content": "PHASE 3: Test Assessment - analyze test coverage and verification strategy", "status": "pending", "priority": "high"},
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{"id": "phase-4", "content": "PHASE 4: Plan Generation - invoke Plan agent for detailed refactoring plan", "status": "pending", "priority": "high"},
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{"id": "phase-5", "content": "PHASE 5: Execute Refactoring - step-by-step with continuous verification", "status": "pending", "priority": "high"},
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{"id": "phase-6", "content": "PHASE 6: Final Verification - full test suite and regression check", "status": "pending", "priority": "high"}
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])
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\`\`\`
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---
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# PHASE 1: CODEBASE ANALYSIS (PARALLEL EXPLORATION)
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**Mark phase-1 as in_progress.**
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## 1.1: Launch Parallel Explore Agents (BACKGROUND)
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Fire ALL of these simultaneously using \`call_omo_agent\`:
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\`\`\`
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// Agent 1: Find the refactoring target
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call_omo_agent(
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subagent_type="explore",
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run_in_background=true,
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prompt="Find all occurrences and definitions of [TARGET].
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Report: file paths, line numbers, usage patterns."
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)
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// Agent 2: Find related code
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call_omo_agent(
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subagent_type="explore",
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run_in_background=true,
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prompt="Find all code that imports, uses, or depends on [TARGET].
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Report: dependency chains, import graphs."
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)
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// Agent 3: Find similar patterns
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call_omo_agent(
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subagent_type="explore",
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run_in_background=true,
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prompt="Find similar code patterns to [TARGET] in the codebase.
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Report: analogous implementations, established conventions."
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)
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// Agent 4: Find tests
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call_omo_agent(
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subagent_type="explore",
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run_in_background=true,
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prompt="Find all test files related to [TARGET].
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Report: test file paths, test case names, coverage indicators."
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)
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// Agent 5: Architecture context
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call_omo_agent(
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subagent_type="explore",
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run_in_background=true,
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prompt="Find architectural patterns and module organization around [TARGET].
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Report: module boundaries, layer structure, design patterns in use."
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)
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\`\`\`
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## 1.2: Direct Tool Exploration (WHILE AGENTS RUN)
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While background agents are running, use direct tools:
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### LSP Tools for Precise Analysis:
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\`\`\`typescript
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// Find definition(s)
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LspGotoDefinition(filePath, line, character) // Where is it defined?
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// Find ALL usages across workspace
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LspFindReferences(filePath, line, character, includeDeclaration=true)
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// Get file structure
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LspDocumentSymbols(filePath) // Hierarchical outline
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LspWorkspaceSymbols(filePath, query="[target_symbol]") // Search by name
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// Get current diagnostics
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lsp_diagnostics(filePath) // Errors, warnings before we start
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\`\`\`
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### AST-Grep for Pattern Analysis:
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\`\`\`typescript
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// Find structural patterns
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ast_grep_search(
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pattern="function $NAME($$$) { $$$ }", // or relevant pattern
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lang="typescript", // or relevant language
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paths=["src/"]
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)
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// Preview refactoring (DRY RUN)
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ast_grep_replace(
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pattern="[old_pattern]",
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rewrite="[new_pattern]",
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lang="[language]",
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dryRun=true // ALWAYS preview first
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)
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\`\`\`
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### Grep for Text Patterns:
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\`\`\`
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grep(pattern="[search_term]", path="src/", include="*.ts")
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\`\`\`
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## 1.3: Collect Background Results
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\`\`\`
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background_output(task_id="[agent_1_id]")
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background_output(task_id="[agent_2_id]")
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...
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\`\`\`
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**Mark phase-1 as completed after all results collected.**
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---
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# PHASE 2: BUILD CODEMAP (DEPENDENCY MAPPING)
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**Mark phase-2 as in_progress.**
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## 2.1: Construct Definitive Codemap
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Based on Phase 1 results, build:
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\`\`\`
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## CODEMAP: [TARGET]
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### Core Files (Direct Impact)
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- \`path/to/file.ts:L10-L50\` - Primary definition
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- \`path/to/file2.ts:L25\` - Key usage
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### Dependency Graph
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\`\`\`
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[TARGET]
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├── imports from:
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│ ├── module-a (types)
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│ └── module-b (utils)
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├── imported by:
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│ ├── consumer-1.ts
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│ ├── consumer-2.ts
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│ └── consumer-3.ts
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└── used by:
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├── handler.ts (direct call)
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└── service.ts (dependency injection)
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\`\`\`
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### Impact Zones
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| Zone | Risk Level | Files Affected | Test Coverage |
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|------|------------|----------------|---------------|
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| Core | HIGH | 3 files | 85% covered |
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| Consumers | MEDIUM | 8 files | 70% covered |
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| Edge | LOW | 2 files | 50% covered |
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### Established Patterns
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- Pattern A: [description] - used in N places
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- Pattern B: [description] - established convention
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\`\`\`
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## 2.2: Identify Refactoring Constraints
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Based on codemap:
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- **MUST follow**: [existing patterns identified]
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- **MUST NOT break**: [critical dependencies]
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- **Safe to change**: [isolated code zones]
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- **Requires migration**: [breaking changes impact]
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**Mark phase-2 as completed.**
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---
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# PHASE 3: TEST ASSESSMENT (VERIFICATION STRATEGY)
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**Mark phase-3 as in_progress.**
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## 3.1: Detect Test Infrastructure
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\`\`\`bash
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# Check for test commands
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cat package.json | jq '.scripts | keys[] | select(test("test"))'
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# Or for Python
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ls -la pytest.ini pyproject.toml setup.cfg
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# Or for Go
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ls -la *_test.go
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\`\`\`
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## 3.2: Analyze Test Coverage
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\`\`\`
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// Find all tests related to target
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call_omo_agent(
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subagent_type="explore",
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run_in_background=false, // Need this synchronously
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prompt="Analyze test coverage for [TARGET]:
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1. Which test files cover this code?
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2. What test cases exist?
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3. Are there integration tests?
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4. What edge cases are tested?
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5. Estimated coverage percentage?"
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)
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\`\`\`
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## 3.3: Determine Verification Strategy
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Based on test analysis:
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| Coverage Level | Strategy |
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|----------------|----------|
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| HIGH (>80%) | Run existing tests after each step |
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| MEDIUM (50-80%) | Run tests + add safety assertions |
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| LOW (<50%) | **PAUSE**: Propose adding tests first |
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| NONE | **BLOCK**: Refuse aggressive refactoring |
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**If coverage is LOW or NONE, ask user:**
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\`\`\`
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Test coverage for [TARGET] is [LEVEL].
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**Risk Assessment**: Refactoring without adequate tests is dangerous.
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Options:
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1. Add tests first, then refactor (RECOMMENDED)
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2. Proceed with extra caution, manual verification required
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3. Abort refactoring
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Which approach do you prefer?
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\`\`\`
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## 3.4: Document Verification Plan
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\`\`\`
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## VERIFICATION PLAN
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### Test Commands
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- Unit: \`bun test\` / \`npm test\` / \`pytest\` / etc.
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- Integration: [command if exists]
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- Type check: \`tsc --noEmit\` / \`pyright\` / etc.
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### Verification Checkpoints
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After each refactoring step:
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1. lsp_diagnostics → zero new errors
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2. Run test command → all pass
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3. Type check → clean
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### Regression Indicators
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- [Specific test that must pass]
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- [Behavior that must be preserved]
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- [API contract that must not change]
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\`\`\`
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**Mark phase-3 as completed.**
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---
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# PHASE 4: PLAN GENERATION (PLAN AGENT)
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**Mark phase-4 as in_progress.**
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## 4.1: Invoke Plan Agent
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\`\`\`
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Task(
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subagent_type="plan",
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prompt="Create a detailed refactoring plan:
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## Refactoring Goal
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[User's original request]
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## Codemap (from Phase 2)
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[Insert codemap here]
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## Test Coverage (from Phase 3)
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[Insert verification plan here]
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## Constraints
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- MUST follow existing patterns: [list]
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- MUST NOT break: [critical paths]
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- MUST run tests after each step
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## Requirements
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1. Break down into atomic refactoring steps
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2. Each step must be independently verifiable
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3. Order steps by dependency (what must happen first)
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4. Specify exact files and line ranges for each step
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5. Include rollback strategy for each step
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6. Define commit checkpoints"
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)
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\`\`\`
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## 4.2: Review and Validate Plan
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After receiving plan from Plan agent:
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1. **Verify completeness**: All identified files addressed?
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2. **Verify safety**: Each step reversible?
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3. **Verify order**: Dependencies respected?
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4. **Verify verification**: Test commands specified?
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## 4.3: Register Detailed Todos
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Convert Plan agent output into granular todos:
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\`\`\`
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TodoWrite([
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// Each step from the plan becomes a todo
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{"id": "refactor-1", "content": "Step 1: [description]", "status": "pending", "priority": "high"},
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{"id": "verify-1", "content": "Verify Step 1: run tests", "status": "pending", "priority": "high"},
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{"id": "refactor-2", "content": "Step 2: [description]", "status": "pending", "priority": "medium"},
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{"id": "verify-2", "content": "Verify Step 2: run tests", "status": "pending", "priority": "medium"},
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// ... continue for all steps
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])
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\`\`\`
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**Mark phase-4 as completed.**
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---
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# PHASE 5: EXECUTE REFACTORING (DETERMINISTIC EXECUTION)
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**Mark phase-5 as in_progress.**
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## 5.1: Execution Protocol
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For EACH refactoring step:
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### Pre-Step
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1. Mark step todo as \`in_progress\`
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2. Read current file state
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3. Verify lsp_diagnostics is baseline
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### Execute Step
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Use appropriate tool:
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**For Symbol Renames:**
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\`\`\`typescript
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lsp_prepare_rename(filePath, line, character) // Validate rename is possible
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lsp_rename(filePath, line, character, newName) // Execute rename
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\`\`\`
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**For Pattern Transformations:**
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\`\`\`typescript
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// Preview first
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ast_grep_replace(pattern, rewrite, lang, dryRun=true)
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// If preview looks good, execute
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ast_grep_replace(pattern, rewrite, lang, dryRun=false)
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\`\`\`
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**For Structural Changes:**
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\`\`\`typescript
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// Use Edit tool for precise changes
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edit(filePath, oldString, newString)
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\`\`\`
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### Post-Step Verification (MANDATORY)
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\`\`\`typescript
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// 1. Check diagnostics
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lsp_diagnostics(filePath) // Must be clean or same as baseline
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// 2. Run tests
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bash("bun test") // Or appropriate test command
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// 3. Type check
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bash("tsc --noEmit") // Or appropriate type check
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\`\`\`
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### Step Completion
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1. If verification passes → Mark step todo as \`completed\`
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2. If verification fails → **STOP AND FIX**
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## 5.2: Failure Recovery Protocol
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If ANY verification fails:
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1. **STOP** immediately
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2. **REVERT** the failed change
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3. **DIAGNOSE** what went wrong
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4. **OPTIONS**:
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- Fix the issue and retry
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- Skip this step (if optional)
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- Consult oracle agent for help
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- Ask user for guidance
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**NEVER proceed to next step with broken tests.**
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## 5.3: Commit Checkpoints
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After each logical group of changes:
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\`\`\`bash
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git add [changed-files]
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git commit -m "refactor(scope): description
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[details of what was changed and why]"
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\`\`\`
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**Mark phase-5 as completed when all refactoring steps done.**
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---
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# PHASE 6: FINAL VERIFICATION (REGRESSION CHECK)
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**Mark phase-6 as in_progress.**
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## 6.1: Full Test Suite
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\`\`\`bash
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# Run complete test suite
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bun test # or npm test, pytest, go test, etc.
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\`\`\`
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## 6.2: Type Check
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\`\`\`bash
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# Full type check
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tsc --noEmit # or equivalent
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\`\`\`
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## 6.3: Lint Check
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\`\`\`bash
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# Run linter
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eslint . # or equivalent
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\`\`\`
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## 6.4: Build Verification (if applicable)
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\`\`\`bash
|
||
# Ensure build still works
|
||
bun run build # or npm run build, etc.
|
||
\`\`\`
|
||
|
||
## 6.5: Final Diagnostics
|
||
|
||
\`\`\`typescript
|
||
// Check all changed files
|
||
for (file of changedFiles) {
|
||
lsp_diagnostics(file) // Must all be clean
|
||
}
|
||
\`\`\`
|
||
|
||
## 6.6: Generate Summary
|
||
|
||
\`\`\`markdown
|
||
## Refactoring Complete
|
||
|
||
### What Changed
|
||
- [List of changes made]
|
||
|
||
### Files Modified
|
||
- \`path/to/file.ts\` - [what changed]
|
||
- \`path/to/file2.ts\` - [what changed]
|
||
|
||
### Verification Results
|
||
- Tests: PASSED (X/Y passing)
|
||
- Type Check: CLEAN
|
||
- Lint: CLEAN
|
||
- Build: SUCCESS
|
||
|
||
### No Regressions Detected
|
||
All existing tests pass. No new errors introduced.
|
||
\`\`\`
|
||
|
||
**Mark phase-6 as completed.**
|
||
|
||
---
|
||
|
||
# CRITICAL RULES
|
||
|
||
## NEVER DO
|
||
- Skip lsp_diagnostics check after changes
|
||
- Proceed with failing tests
|
||
- Make changes without understanding impact
|
||
- Use \`as any\`, \`@ts-ignore\`, \`@ts-expect-error\`
|
||
- Delete tests to make them pass
|
||
- Commit broken code
|
||
- Refactor without understanding existing patterns
|
||
|
||
## ALWAYS DO
|
||
- Understand before changing
|
||
- Preview before applying (ast_grep dryRun=true)
|
||
- Verify after every change
|
||
- Follow existing codebase patterns
|
||
- Keep todos updated in real-time
|
||
- Commit at logical checkpoints
|
||
- Report issues immediately
|
||
|
||
## ABORT CONDITIONS
|
||
If any of these occur, **STOP and consult user**:
|
||
- Test coverage is zero for target code
|
||
- Changes would break public API
|
||
- Refactoring scope is unclear
|
||
- 3 consecutive verification failures
|
||
- User-defined constraints violated
|
||
|
||
---
|
||
|
||
# Tool Usage Philosophy
|
||
|
||
You already know these tools. Use them intelligently:
|
||
|
||
## LSP Tools
|
||
Leverage LSP tools for precision analysis. Key patterns:
|
||
- **Understand before changing**: \`LspGotoDefinition\` to grasp context
|
||
- **Impact analysis**: \`LspFindReferences\` to map all usages before modification
|
||
- **Safe refactoring**: \`lsp_prepare_rename\` → \`lsp_rename\` for symbol renames
|
||
- **Continuous verification**: \`lsp_diagnostics\` after every change
|
||
|
||
## AST-Grep
|
||
Use \`ast_grep_search\` and \`ast_grep_replace\` for structural transformations.
|
||
**Critical**: Always \`dryRun=true\` first, review, then execute.
|
||
|
||
## Agents
|
||
- \`explore\`: Parallel codebase pattern discovery
|
||
- \`plan\`: Detailed refactoring plan generation
|
||
- \`oracle\`: Read-only consultation for complex architectural decisions and debugging
|
||
- \`librarian\`: **Use proactively** when encountering deprecated methods or library migration tasks. Query official docs and OSS examples for modern replacements.
|
||
|
||
## Deprecated Code & Library Migration
|
||
When you encounter deprecated methods/APIs during refactoring:
|
||
1. Fire \`librarian\` to find the recommended modern alternative
|
||
2. **DO NOT auto-upgrade to latest version** unless user explicitly requests migration
|
||
3. If user requests library migration, use \`librarian\` to fetch latest API docs before making changes
|
||
|
||
---
|
||
|
||
**Remember: Refactoring without tests is reckless. Refactoring without understanding is destructive. This command ensures you do neither.**
|
||
|
||
<user-request>
|
||
$ARGUMENTS
|
||
</user-request>
|
||
`
|
||
|
||
export const REFACTOR_TEAM_MODE_ADDENDUM = `
|
||
---
|
||
|
||
# Team Mode Protocol (active when team_* tools are present)
|
||
|
||
Team mode is enabled for this session. The rules below **override Phase 4-6** above. Follow this protocol instead of the in-session step-by-step execution.
|
||
|
||
## Phase 4 override: Plan agent staffing requirement
|
||
|
||
When invoking the Plan agent in Phase 4.1, append this additional requirement to the prompt:
|
||
|
||
\`\`\`
|
||
7. (REQUIRED when team mode is active) Output a Team Staffing Recommendation section with these fields — missing fields fail Phase 5.0:
|
||
- total_atomic_steps: integer
|
||
- file_independent_steps: integer (parallelizable, no cross-file blocker)
|
||
- cross_file_dependent_steps: integer (has blockers)
|
||
- per_step_assignment: [{step_id, assigned_to: 'quick' | 'unspecified-low', blockedBy: [step_ids], rationale}]
|
||
- dispatch_path_recommendation: 'team' | 'legacy' with reason
|
||
- rationale for the composition
|
||
\`\`\`
|
||
|
||
**Classification rules** the plan agent must apply to each step:
|
||
- \`quick\`: mechanical edits — LSP rename, extract variable, inline, simple move, signature change without call-site logic.
|
||
- \`unspecified-low\`: logic-preserving refactors that need reasoning — extract function, restructure conditional, pattern transformation, cross-file API change.
|
||
- Recommend \`team\` path when \`file_independent_steps >= 3\`; recommend \`legacy\` otherwise.
|
||
|
||
## Phase 5 override: Dispatch path selection
|
||
|
||
Read the Team Staffing Recommendation from Phase 4. If any required field is missing, fail here and re-request the plan with the exact missing field names. Do not proceed with a partial plan.
|
||
|
||
Then choose the path:
|
||
|
||
- **Team path (5.1-T)**: when the plan recommends \`team\` AND \`file_independent_steps >= 3\`. Members execute in parallel, Lead orchestrates, a \`deep\` verifier lives outside the team.
|
||
- **Legacy path (5.1-L)**: otherwise. Use the original 5.1 / 5.2 / 5.3 flow from above.
|
||
|
||
Record the chosen path in the TodoWrite list.
|
||
|
||
## Phase 5.1-T: \`refactor-squad\` team execution
|
||
|
||
**Precondition checks** (fail hard if any step fails):
|
||
|
||
1. Load the \`team-mode\` skill via the \`skill\` tool for lifecycle, message protocol, and limits.
|
||
2. Call \`team_list\` and verify no active \`refactor-squad\` run exists; if one does, shutdown + delete the orphan before proceeding.
|
||
3. If \`~/.omo/teams/refactor-squad/config.json\` is missing, write it using the spec below.
|
||
|
||
**Team spec** (\`~/.omo/teams/refactor-squad/config.json\`):
|
||
|
||
\`\`\`json
|
||
{
|
||
"name": "refactor-squad",
|
||
"lead": { "kind": "subagent_type", "subagent_type": "sisyphus" },
|
||
"members": [
|
||
{
|
||
"kind": "category",
|
||
"category": "quick",
|
||
"prompt": "You handle mechanical refactoring steps (LSP rename, extract variable, inline, simple move, signature change). Use LSP tools for correctness. Apply the task description's per-step instructions verbatim — no scope expansion. After edits, run lsp_diagnostics on touched files. Report via team_send_message(teamRunId=<id>, to=\"lead\", summary=<files touched>, body=<lsp status + diff summary>) + team_task_update(status=completed). Never run tests — the external verifier handles that. Never git add, never --continue."
|
||
},
|
||
{ "kind": "category", "category": "quick", "prompt": "Same contract as peer quick worker." },
|
||
{
|
||
"kind": "category",
|
||
"category": "unspecified-low",
|
||
"prompt": "You handle logic-preserving refactors that need reasoning (extract function, restructure conditional, pattern transformation, cross-file API change). Read the task description's plan step carefully. Use ast_grep_replace with dryRun=true first, review the preview, then execute. If the step is ambiguous or would require out-of-scope changes, STOP and send team_send_message(teamRunId=<id>, to=\"lead\", summary=\"UNCLEAR\", body=<reason>) + team_task_update(status=pending). Same reporting contract as peer quick workers. Never run tests."
|
||
},
|
||
{ "kind": "category", "category": "unspecified-low", "prompt": "Same contract as peer unspecified-low worker." }
|
||
]
|
||
}
|
||
\`\`\`
|
||
|
||
Rationale for this composition:
|
||
- **4 workers = team mode's parallel cap.** 5+ just queues.
|
||
- **No verifier team member.** Verification needs \`deep\` reasoning (or \`unspecified-high\` fallback). In-team category routing downcasts to sisyphus-junior, which is weaker than required — the verifier runs OUTSIDE the team as a \`task(category="deep")\`.
|
||
- **quick × 2** for mechanical edits, **unspecified-low × 2** for reasoning edits — mirrors the plan's split.
|
||
|
||
**Team lifecycle** (one team, reused until Phase 6 cleanup):
|
||
|
||
1. \`team_create(teamName="refactor-squad")\`. Record \`teamRunId\`.
|
||
2. Broadcast the refactor Intent Card ONCE (keep task descriptions slim):
|
||
\`\`\`
|
||
team_send_message(
|
||
teamRunId=<id>, to="*", kind="announcement",
|
||
summary="refactor-intent",
|
||
body=<codemap summary + constraints + established patterns from Phase 2>
|
||
)
|
||
\`\`\`
|
||
3. Broadcast the verification spec ONCE:
|
||
\`\`\`
|
||
team_send_message(
|
||
teamRunId=<id>, to="*", kind="announcement",
|
||
summary="verify-spec",
|
||
body=<exact test/typecheck/lint commands + expected pass counts + regression indicators from Phase 3.4>
|
||
)
|
||
\`\`\`
|
||
4. For each plan step, \`team_task_create(teamRunId=<id>, subject="refactor step <N>: <short>", description=<per-step instructions from plan, including target files and line ranges, rollback strategy>, blockedBy=<from plan's per_step_assignment>)\`.
|
||
|
||
**Lead monitoring loop**:
|
||
|
||
While any team task is \`pending | claimed | in_progress\`:
|
||
|
||
- Wait for \`<system-reminder>\` or member messages. Avoid tight polling; a single \`team_status\` check is acceptable if no notification arrives within roughly 10 seconds of expected completion.
|
||
- On a worker completion report, immediately dispatch an **external verifier** — verification runs OUTSIDE the team because team-member category routing downcasts to sisyphus-junior:
|
||
\`\`\`
|
||
task(
|
||
category="deep",
|
||
load_skills=[],
|
||
run_in_background=true,
|
||
description="verify step <N>",
|
||
prompt=<files touched + verify-spec commands + instruction to return "PASS" or "FAIL:<failing test + specific error + suggested revert hunks>">
|
||
)
|
||
\`\`\`
|
||
If \`deep\` is unavailable, fall back to \`category="unspecified-high"\`. Do not create a commit checkpoint until the verifier returns PASS.
|
||
- On a verifier PASS: make the commit checkpoint for that step (see original 5.3). Proceed.
|
||
- On a verifier FAIL: Lead decides:
|
||
- **Retry with fix hint**: \`team_task_update(status=pending)\` on the original step + \`team_send_message(teamRunId=<id>, to=<original member>, summary="retry", body=<specific failure from verifier>)\`. Runtime reassigns.
|
||
- **Escalate**: after three FAIL cycles on the same step, STOP and consult the user with full evidence.
|
||
- On a member UNCLEAR message: re-harvest context via a targeted \`task()\` outside the team, broadcast an updated Intent Card fragment, then reassign.
|
||
|
||
Proceed to Phase 6 only when every team task is \`completed\` AND every paired verifier task returned PASS.
|
||
|
||
## Phase 6 override: Team cleanup before summary
|
||
|
||
If Phase 5 used the team path, dismantle \`refactor-squad\` BEFORE producing the 6.6 summary. Every exit path — success, escalation, abort — must cleanup; orphan teams poison the next session's precondition check.
|
||
|
||
1. \`team_shutdown_request\` for each member, then \`team_approve_shutdown\` if members do not self-approve within a reasonable window.
|
||
2. \`team_delete(teamRunId=<id>)\`.
|
||
3. \`team_list\` to confirm no residual \`refactor-squad\` run.
|
||
|
||
The \`~/.omo/teams/refactor-squad/config.json\` declaration stays on disk; next session reuses it.
|
||
|
||
Append to the 6.6 summary a "Dispatch path" line and, when team path was used, team metrics (teamRunId, tasks created, verifier runs, team lifetime).
|
||
|
||
## MUST NOT (team mode)
|
||
|
||
- Lead never edits files directly — orchestrate only.
|
||
- Do not inline the Intent Card or verify-spec into task descriptions — rely on the broadcasts.
|
||
- Do not recreate the team mid-session.
|
||
- Do not run tests from Lead — the external verifier owns that lane.
|
||
- Do not put \`oracle\` / \`librarian\` / \`deep\` into the team spec — oracle/librarian are team-ineligible, and \`deep\` under category routing downcasts to sisyphus-junior. Use them via \`task()\` outside the team when needed.
|
||
`
|