map-codebase
Deep architecture report that fans out parallel inspections across different aspects of the codebase (structure, tech stack, APIs, patterns, data fl…
它会碰到什么
这一栏是扫描器报的事实,不是结论。命中多不等于有毒(安全工具、规则库、示例脚本本来就会包含危险写法),命中少也不等于干净。它和你手上的凭据、文件、网络有什么关系,需要你自己看。
技能内容
Map Codebase
Deep architecture report. Fans out parallel inspections across different aspects of the codebase, synthesizes their findings, and writes .turbo/codebase-map.md and .turbo/codebase-map.html. Analysis-only.
Task Tracking
At the start, use TaskCreate to create a task for each phase:
- Scope
- Launch inspection agents
- Synthesize and generate markdown report
- Generate HTML report
Step 1: Scope
If $ARGUMENTS specifies paths, use those directly (skip the question).
Otherwise, use AskUserQuestion to confirm scope:
- Entire codebase — inspect everything
- Specific paths — user provides directories or file patterns
Once scope is determined, glob for source files in the selected scope. Exclude generated and vendored directories (node_modules/, dist/, build/, vendor/, __pycache__/, .build/, DerivedData/, target/, .tox/, and others appropriate to the project).
Build a file manifest grouped by top-level source directory. This manifest is shared with all agents as a starting point. Agents may explore beyond it based on what they discover.
Step 2: Launch Inspection Agents
Before dispatching, read the project's test configuration and CI workflow to identify any test tier that resets a shared external resource between tests, such as a database, a fixed port, or a cache. Such tiers have no cross-process interlock, so agents running them concurrently wipe each other's state and return failures that look like real defects. Name any such tier to every agent as off-limits.
Emit all 7 Agent tool calls below in one assistant message. Each Agent call uses model: "opus" and no name. Wait for every agent to report before continuing. Do not begin the next step on a partial set, and do not relaunch an agent that has not yet reported. Each agent receives the scoped file manifest and its exploration brief, and its prompt directs it to treat the shared working tree and its git index as read-only — any empirical check runs in an isolated git worktree created under $TMPDIR and discarded afterward. HEAD stays where it is: read other refs with git show <ref>:<path> rather than git checkout or git switch. Refer to that worktree by absolute path in every command and join chained steps with &&, so a failed step cannot leave the rest running in the shared checkout. Run teardown and verification as their own commands. Give that worktree its own dependency install rather than reaching the shared tree's install by any route: removing a worktree deletes through symlinks, and a redirected suite writes into the shared install. When its own install is not possible, the check is left unrun and reported as such. Afterward the agent verifies that git worktree list no longer shows the worktree, that git status --short is clean, that HEAD is still on the branch it started on, and that the shared tree's dependency directory still resolves (a destroyed install leaves git status clean, since it is gitignored). It also confirms that no process whose command line names the worktree path is still running, since stopping a runner can leave the processes it spawned alive. When it cannot list processes, it reports that check as unrun and names the worktree path. Damage the agent cannot repair is reported with the exact repair command in place of findings.
Dimensions
Launch one agent per dimension. Each agent's prompt provides the file manifest and the exploration brief below. Agents explore adaptively: go deeper where complexity warrants it, stay high-level where things are straightforward. Findings should be concrete (reference specific files and directories) rather than generic.
| # | Dimension | Exploration Brief |
|---|---|---|
| 1 | Project Structure | Map directory layout, module organization, naming conventions, and file roles. Identify the organizing principle (feature-based, layer-based, hybrid). Note generated or build output directories. |
| 2 | Tech Stack and Build System | Identify languages, frameworks, package managers, build tools, and runtime requirements. Note version constraints and compatibility targets. |
| 3 | Entry Points and Public API | Find how the system is invoked: CLI commands, HTTP endpoints, event handlers, exported modules, main functions. Map the public surface area. |
| 4 | Core Abstractions and Patterns | Identify key types, classes, interfaces, and design patterns. Note architectural patterns (MVC, plugin system, pipeline, etc.) and how they shape the code. |
| 5 | Data Flow and State | Trace how data enters, transforms, persists, and exits the system. Identify state management approaches, storage layers, and data boundaries. |
| 6 | External Dependencies and Integrations | Map third-party services, APIs, databases, and system boundaries. Note how external dependencies are abstracted or coupled. |
| 7 | Testing and Quality Infrastructure | Describe the test strategy: frameworks, coverage approach, test organization, CI/CD pipeline. Note gaps or unusual patterns. |
Each agent writes its findings as structured markdown with sections and subsections.
Step 3: Synthesize and Generate Markdown Report
After all agents complete:
- Read all agent reports.
- Identify cross-cutting themes, connections between dimensions, and architectural trade-offs.
- Write a brief executive summary (3-5 sentences) capturing the system's essential character.
- Resolve contradictions or overlaps between dimension reports.
- Write
.turbo/codebase-map.mdusing the report template. Output the executive summary as text before writing the file.
Report Template
# Codebase Map
**Date:** <date>
**Scope:** <what was inspected>
## Executive Summary
<3-5 sentences: what the system is, how it's organized, what architectural choices define it>
## Project Structure
<from dimension 1>
## Tech Stack
<from dimension 2>
## Entry Points and API
<from dimension 3>
## Core Abstractions
<from dimension 4>
## Data Flow
<from dimension 5>
## External Dependencies
<from dimension 6>
## Testing and Quality
<from dimension 7>
## Cross-Cutting Observations
<themes, trade-offs, and connections identified during synthesis>
Step 4: Generate HTML Report
Convert the markdown report into a styled, interactive HTML page.
- Run the
/frontend-designskill to load design principles. - Read
.turbo/codebase-map.mdfor the full report content. - Write a self-contained
.turbo/codebase-map.html(single file, no external dependencies beyond Google Fonts) that presents the architecture report with:
- Executive summary card
- Sticky navigation between sections
- Collapsible dimension sections
[hidden] { display: none !important; }in the base styles, so a section whose own CSS sets adisplayvalue still hides- File and directory references as styled inline code
- Entrance animations and hover states
- Print-friendly styles via
@media print - Responsive layout for mobile
Rules
- If any agent reports a failure, proceed with findings from the remaining agents and note the failure in the report. An agent that has not yet reported is not a failure; wait for it.
- Each dimension agent operates independently. Overlapping observations from different angles are expected. The synthesis step resolves overlaps.
- Does not modify source code, stage files, or commit.
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同名技能的其他版本
有 2 个不同仓库或目录里都有叫 map-codebase 的技能。它们内容并不相同,别混用:
- tobihagemann/turbo — Deep architecture report that fans out parallel inspections across different aspects of th