
Design System MCP
io.github.dgestevesv0.1.1更新于 Oct 7, 2026
Ground truth about your React design system for coding agents, plus a UI linter they can run.
概览
为编码助手提供 React 设计系统的组件、属性、变体和令牌的真实信息,并提供可对其自身输出运行的 UI 检查器。
- 功能
- 该服务器静态分析 React 项目的组件文件、令牌样式表和文档,并通过 MCP 提供这些信息。工具包括 list_components、get_component、search_components 和 get_tokens,可返回导入路径、属性、cva 变体值、解析后的令牌值及深色模式值。check_ui 可检查代码片段或文件,返回带规则 id、位置、消息和具体修复建议的诊断,覆盖硬编码颜色、间距和圆角、原生元素、未知组件、属性和变体,以及无可访问名称的图标按钮。还提供 ds://components/{name} 和 ds://tokens 资源以及 build-with-design-system 提示。
- 适用场景
- 当助手在已有组件库和设计令牌的 React 项目中编写界面,而你希望生成的代码使用真实组件、有效变体和语义令牌而不是任意 Tailwind 值时适用。也适合在 CI 中用命令行运行同一套规则。
- 运行要求
- 通过 npm 包 @dgesteves/design-system-mcp 以 stdio 在本地运行,通常使用 npx。需要 Node.js 22.18 或更高版本。需要包含组件文件的 React 项目,非默认布局可选配 design-system-mcp.config.json;项目根目录来自 --root、配置文件或客户端报告的工作区根目录。未声明账户、API 密钥或环境变量。
安装
在 SourceWeft 中
- 打开 控制台中的 Design System MCP,将其添加到工作区。
- 为需要使用其工具的对话启用该服务。
Desktop only,通过 STDIO。 STDIO 服务会启动本地进程,因此需要 SourceWeft 桌面宿主。
其他 MCP 客户端
参照 仓库 中的启动说明。
README
design-system-mcp
An MCP server that gives coding agents ground truth about your React design system, and a linter they can run on their own UI.
The problem
Coding agents write UI from their training data, not from your design system. Ask for a settings card in a shadcn/ui project and you get bg-[#ef4444], p-[13px], a native <button> with hand-rolled classes, variant="danger" on a Button that only knows destructive, <Card.Header> in a system that exports CardHeader, and an icon button nobody can name with a screen reader.
The agent cannot see your Storybook or docs site, and TypeScript only catches part of it after the fact. On the demo draft above, tsc reports 3 of the 11 problems (the invalid variant, the unknown prop and the missing member) and has no opinion on hex colors, off-scale spacing, native elements or accessible names.
design-system-mcp reads your components, tokens and docs, and serves them to the agent over MCP: what exists, which props and variant values are valid, which token to use. It also gives the agent check_ui, a linter it calls on its own output. Every finding has a rule id, a location and a concrete fix, so the agent can correct itself before you review anything.
Quickstart
In a shadcn/ui-style project (components/ui/*.tsx, app/globals.css) no config is needed. Give your agent the tools, check what was extracted, and run the same rules from the terminal:
Other layouts take a config file. Requires Node.js 22.18 or later.
Setup
The server speaks MCP over stdio. It finds the project from --root, a config file in the working directory, or the workspace roots the client reports.
Claude Code
To share it with your team, add --scope project, which writes .mcp.json at the repository root:
Cursor
.cursor/mcp.json:
VS Code (Copilot agent mode)
.vscode/mcp.json:
Any other MCP client: run npx -y @dgesteves/design-system-mcp --root /path/to/app as a stdio server. On native Windows, wrap it as cmd /c npx ....
The server sends usage instructions during the MCP handshake. Clients that ignore them benefit from one line in CLAUDE.md, AGENTS.md or .cursor/rules: "Before writing UI, use the design-system tools. Run check_ui on every file you change and fix all errors."
Tools
All tools are read-only, have zod-validated input schemas with size limits (up to 1,000,000 characters of code for check_ui), and return compact Markdown for the model plus JSON structuredContent (with an output schema) for programs.
Resources: ds://components/{name} (Markdown, with name completion) and ds://tokens (JSON). Prompt: build-with-design-system, which takes a task and walks the agent through search, contract, tokens and check_ui. Claude Code exposes it as /mcp__design-system__build-with-design-system.
What the agent sees, from the demo:
Rules
Color matches under ΔE 0.02 count as the same color; under 0.1 the fix is offered; beyond that the message names the nearest token but leaves the choice to the agent. Likewise, a spacing or radius step that is off by more than half the value (and more than 4px) is suggested but not auto-fixed. Rules that need tokens are skipped when the design system defines none of that category; a stylesheet that imports tailwindcss brings Tailwind's default spacing unit and radius scale, unless the theme resets that namespace (--spacing-*: initial, --radius-*: initial), in which case only the project's own steps are suggested. Syntax errors are reported as syntax.
Configuration
design-system-mcp.config.json (or .ts, .mjs, .js) in the project root. Every field is optional; the JSON Schema gives editor completion.
Paths and globs are relative to the root and use forward slashes. Windows-style backslashes (components\ui\**\*.tsx, .\tsconfig.app.json) are read as separators, except in a pattern that already uses /, where \ escapes glob syntax (app/\(marketing\)/**). A tsconfig that does not exist is a config error rather than a silent fallback.
Tokens can be W3C DTCG JSON ($type inheritance, aliases, object color and dimension values, $deprecated, modes under $extensions.modes) or CSS custom properties: :root values, .dark / [data-theme] / prefers-color-scheme / @variant dark modes, and Tailwind v4 @theme mappings, with calc() evaluated. Token stylesheets are read as one theme, so .dark can live in its own file; without a :root block the light mode is the base, and a dark mode never is. A DTCG file and the CSS generated from it are merged by custom property.
elements maps a native element to the component that replaces it ({ "a": "Link" }, or a key such as input[type=checkbox] for a non-text input type); a mapped component is treated as a drop-in, so the rename is auto-fixed.
Docs are Markdown or MDX, one file per component, matched by component: frontmatter, the first heading or the file name. Fenced tsx/jsx blocks become examples (title="..." in the fence names them); JSDoc @example tags work too.
CLI flags override the file: --root, --config, --components, --tokens, --docs (repeatable), --no-cache, --no-watch. Run design-system-mcp --help for the rest.
CI
check runs the same rules as check_ui and exits 1 on errors (or on more than --max-warnings warnings):
--format github prints workflow commands, so findings show up as annotations on the pull request. --format json prints the raw results.
How it works
- Components. One TypeScript program over the component files, with the project's
tsconfig(so path aliases and dependency types resolve). For each exported PascalCase function,forwardRef,memoor class component, and each alias of a library component (const Dialog = DialogPrimitive.Root), the checker gives the props type. Props declared in the project, or by packages such as Radix, are listed with types, required flags, defaults (from destructuring,@defaultordefaultVariants) and JSDoc. React's DOM attributes are summarised as "…plus 290 props fromReact.ComponentProps<"button">" but kept in full for linting. When dependency types are missing, extraction falls back to what resolves and marks the props as open, so the linter does not guess. - Variants.
cva()andtv()calls are read from the AST: values in declaration order, defaults, per-value classes and compound variants. They are linked to a component throughVariantProps<typeof x>or a call in its body. - Composition. Flat parts (
CardHeadernext toCardincard.tsx), static members (Card.Header = CardHeader) andObject.assign(Root, { List })become parent/part relationships. The wrapped native element comes fromComponentProps<"button">,ButtonHTMLAttributes<HTMLButtonElement>, theforwardRefelement type, or the rendered JSX (includingconst Comp = asChild ? Slot : "button"). - Model. Components, tokens and docs form one JSON model, cached in
node_modules/.cache/design-system-mcpand keyed on the sizes and mtimes of the component, token and docs files, the project files the components import and the tsconfig chain, plus the lockfile, the config and the package version. The server answers the MCP handshake immediately and loads in the background; requests wait for the load. File changes trigger a rebuild that reuses the previous TypeScript program, an edited config file is read again, and clients are notified that resources changed. - Lint.
check_uiparses the snippet on its own (no type-checking), resolves each JSX tag through its imports (named, default, namespace, relative, and barrels such as@/components/uior../components/ui) to a design-system component, and runs the rules against the model. Fixes are text edits with offsets, so an agent or a tool can apply them mechanically.
Design decisions
Static analysis, not another model. The agent is already the LLM; what it lacks is ground truth. Everything here is deterministic, takes milliseconds, runs offline, needs no API key, and can be unit-tested rule by rule. The cost: it cannot judge intent, such as whether a Dialog was the right call. That stays with the agent and the reviewer.
The TypeScript checker over react-docgen-typescript. react-docgen-typescript wraps the same API but hides the AST, and cva() parsing, composition and element inference all need it. One program serves all four. The runtime dependency is TypeScript 6, the last release with the JavaScript compiler API; TypeScript 7 (the Go port) does not expose a stable one yet.
Syntactic linting. Agents check fragments they have not saved, often without imports. Type-checking those would need the whole program and would fail on the fragment's missing context. check_ui complements tsc: it catches what types cannot express (tokens, native elements, accessible names) and says what to write instead.
BM25, not embeddings. A design system is tens to a few hundred documents whose vocabulary already lives in names, docs and variant values. Field-weighted BM25 with Porter stemming and a small synonym map ("modal" → Dialog, "delete" → destructive) ranks them well, deterministically, with no model download or API key. It does not understand paraphrases the synonym map does not cover.
OKLCH for nearest colors. Distance in OKLCH (ΔE in OKLab) tracks perceived difference, so the suggested token is the one that looks closest, not the one with the closest hex digits. It also matches how Tailwind v4 and shadcn/ui define colors.
Markdown for the model, JSON for programs. Tool results put compact Markdown in content, which costs fewer tokens than JSON and reads well to a model, and the full JSON in structuredContent for clients and scripts.
Limits
- React only. Fix suggestions are Tailwind classes when the tokens come from a Tailwind theme, otherwise
var(--token). - Linting is per file and syntactic. Class names built at runtime (
`bg-${color}-500`) are not checked, and spread props are trusted. no-unknown-propis skipped for components whose props type does not fully resolve (dependencies not installed).- Composition is inferred from naming and static members; other patterns need explicit exports.
- While the server runs, it rebuilds on changes in the component, token and docs folders, the config file, the tsconfig and the tsconfigs it extends. An edit to another file the components import (a shared
lib/types.ts) is picked up on the next start. - No typography or shadow rules yet, and stdio is the only transport.
Roadmap
- Angular and Web Components extraction: signal and decorator inputs, and the Custom Elements Manifest.
- Storybook import: stories as examples,
argTypesas prop docs, CSF as a docs source. - Figma variables: import variables and modes as tokens, through the REST API or a DTCG export.
- Typography and shadow rules, an ESLint plugin that wraps the same rules, and a Streamable HTTP transport for remote agents.
Development
Releases use Changesets: add one with pnpm changeset.
License
MIT © Diogo Esteves
来源:README.md,提交 5f9045b
工具
0版本历史
1- v0.1.1最新Oct 7, 2026


