* fix(amneziawg): account for S4 junk in the default tunnel MTU
amneziawg prepends S4 random bytes to every transport packet
(device.NewOutboundElement) and, unlike content padding and random trailers,
never clamps them against the tunnel MTU. A full-size packet therefore lands on
the wire at MTU + 60 + S4 bytes: 20 IPv4 + 8 UDP + S4 + 16 transport header +
16 poly1305 tag.
With the 1420 default that overflows a 1500-byte link once S4 exceeds 20, and
GenerateObfuscation31 draws S4 from 12..27 inclusive -- so roughly 44% of newly
created inbounds fragment every full-size packet they send.
Measured on a live pair of interfaces, predicted against observed:
MTU 1380 S4 12 -> 1452 on the wire (fits)
MTU 1420 S4 12 -> 1492 (fits)
MTU 1420 S4 20 -> 1500 (exactly at the limit)
MTU 1420 S4 21 -> 1501 (fragments)
MTU 1420 S4 27 -> 1507 (fragments)
EffectiveMTU now subtracts S4 from the default; an explicit MTU is untouched.
Client configs carry the same number. They previously omitted the MTU line
whenever the server had no explicit value, which left the client on its own
1420 default and fragmented the client-to-server direction even after the
server side was fixed -- silently, and only in one direction. All three
emitters (the Go subscription text and the two TypeScript ones) now agree,
which is what the existing parity test exists to protect.
* fix(amneziawg): rebuild the device when S4 changes the derived MTU
Addresses review feedback on the previous commit.
Deriving the default MTU from S4 made a construction-time-only property depend
on a hot-reloadable input, but addressFingerprint -- ensureLocked's only rebuild
trigger -- still hashed the raw inst.MTU. S4 is a UAPI field, so an S4-only edit
took the in-place IpcSet branch and the gVisor netstack kept the MTU derived
from the old S4 while all three client emitters already advertised the new one.
Every panel-created inbound leaves mtu unset, so that was the normal case, not
an edge one: with S4 raised far enough the fragmentation this fix exists to
remove came straight back, and stayed until a panel restart or an unrelated
address edit.
Folding EffectiveMTU into the fingerprint fixes it. An explicit MTU still takes
the in-place branch on an S4 edit, since it does not move the interface MTU.
Also trims four comment blocks to the 2-line cap in CLAUDE.md, and points
NewDevice's doc comment at EffectiveMTU instead of the deleted defaultMTU.
3x-ui frontend
React 19 + Ant Design 6 + TypeScript + Vite 8. Three SPA bundles —
index.html (admin panel SPA, all /panel/* routes), login.html
(login + 2FA), and subpage.html (public subscription viewer). All
three are built into ../internal/web/dist/ and embedded into the Go binary
via embed.FS.
State is split between local useState, TanStack Query for server
state, and useTheme / useWebSocket contexts. Form validation,
API parsing, and the xray config model all run through a single
shared Zod schema tree (see Schemas).
Dev
npm install
npm run dev
Vite serves on http://localhost:5173/. API calls and /panel/*
routes proxy to the Go panel at http://localhost:2053/, so start
the Go panel first (go run main.go) and then Vite. The proxy
auto-rewrites /panel, /panel/settings, /panel/inbounds,
/panel/xray to the matching Vite-served HTML, so the sidebar's
production-style links work without round-tripping through Go.
Scripts
| Command | What |
|---|---|
npm run dev |
Vite dev server with API + WS proxy to Go |
npm run build |
Regenerates OpenAPI + Zod, then builds into ../internal/web/dist/ |
npm run preview |
Serve the built bundle locally |
npm run typecheck |
tsc --noEmit (strict, no emit) |
npm run lint |
oxlint over src/ + tools/ (.oxlintrc.json) |
npm run lint:deprecated |
Type-aware sweep for JSDoc @deprecated APIs (on demand) |
npm run format |
oxfmt (.oxfmtrc.json) — rewrites src/ + tools/ in place |
npm run format:check |
oxfmt in check mode (no writes) |
npm run test |
Vitest single run (schema fixtures, link parsers, …) |
npm run test:watch |
Vitest watch mode |
npm run storybook |
Storybook dev server on :6006 (component workbench + autodocs) |
npm run build-storybook |
Static Storybook build — CI compile-checks every story |
npm run gen:api |
Build public/openapi.json from pages/api-docs/endpoints.ts |
npm run gen:zod |
Run the Go-side openapigen tool → src/generated/{zod,types}.ts |
CI runs typecheck, lint, format:check, test, build, and
build-storybook on every PR (see ../.github/workflows/ci.yml).
One-off: scan for deprecated APIs
Run this command to sweep the codebase for usages of APIs marked
with the JSDoc @deprecated tag (AntD prop renames, Zod renames,
removed Web APIs, etc.):
npm run lint:deprecated
It is oxlint's type-aware mode (oxlint-tsgolint, which drives the
TypeScript 7 typescript-go checker) narrowed to no-deprecated, and
is not wired into npm run lint because typed linting needs a full
type-check pass.
Production build
npm run build
Outputs to ../internal/web/dist/ (HTML at the root, hashed JS/CSS under
assets/). manualChunks splits AntD, icons, codemirror, and
react-query into separate vendor bundles to keep the per-page
initial JS small. The Go binary embeds this directory at compile
time and internal/web/controller/dist.go serves the per-page HTML.
PWA mode
The login and panel pages expose a minimal network-only Progressive Web App.
The manifest, service worker, registration script, and icons are embedded with
the frontend and served under the runtime webBasePath. The service worker
does not use Cache Storage, does not intercept requests, and does not provide
offline access; panel authentication, API calls, and WebSocket traffic remain
normal network requests.
Layout
frontend/
├── index.html, login.html, subpage.html # 3 Vite entries
├── tsconfig.json
├── .oxlintrc.json # oxlint config (replaces the ESLint flat config)
├── .oxfmtrc.json # oxfmt config (Prettier-compatible settings)
├── tools/oxlint/
│ └── input-number-guard.mjs # oxlint JS plugin: the #6121/#6127 cleared-
│ # InputNumber guard (oxlint has no
│ # no-restricted-syntax)
├── vitest.config.ts
├── vite.config.js
├── .storybook/ # Storybook config (main.ts, preview.tsx)
├── scripts/
│ └── build-openapi.mjs # endpoints.ts → openapi.json
└── src/
├── entries/ # Per-page bootstrap (createRoot + render)
├── main.tsx # Shared root for the admin SPA (index.html)
├── routes.tsx # react-router routes mounted under /panel/
├── pages/ # One folder per route, page component + helpers
│ ├── index/, login/, inbounds/, clients/, xray/, nodes/,
│ ├── settings/, api-docs/, sub/
├── layouts/ # AdminLayout (sidebar + header + outlet)
├── components/ # Cross-page React components (+ co-located *.stories.tsx)
├── hooks/ # useClients, useTheme, useWebSocket, …
├── api/ # fetch client + CSRF handling, TanStack Query bridge,
│ # WebSocket client + queryClient.ts
├── i18n/ # react-i18next init (locales in internal/web/translation/)
├── lib/xray/ # Pure functions: link generation, defaults,
│ # form ⇄ wire adapters, protocol capabilities
├── schemas/ # Zod source-of-truth (see "Schemas" below)
├── generated/ # Code-generated zod + ts types from Go
│ # (DO NOT hand-edit — regenerated by gen:zod)
├── models/ # Thin legacy types still in transit
│ # (DBInbound, Status, AllSetting)
├── styles/ # Shared CSS modules
├── test/ # Vitest specs + golden fixtures
│ ├── *.test.ts
│ ├── __snapshots__/
│ └── golden/fixtures/ # Per-(protocol × network × security) JSON
└── utils/ # HttpUtil, ClipboardManager, SizeFormatter, …
Schemas
src/schemas/ is the single source of truth for the xray
configuration model. Every API response is parsed through it,
every form field is validated against it, and TypeScript types
are inferred via z.infer<typeof X> — never hand-written.
schemas/
├── primitives/ # Atomic reusable schemas (port, protocol, sniffing, …)
├── api/ # Backend response shapes (e.g. SlimInboundSchema)
├── forms/ # User-facing form shapes (narrower than api/)
├── protocols/
│ ├── inbound/ # Per-protocol settings (vmess, vless, trojan, …)
│ ├── outbound/
│ ├── stream/ # Network transports (tcp, ws, grpc, xhttp, kcp, …)
│ └── security/ # TLS, Reality, none
├── client.ts, dns.ts, routing.ts, setting.ts, status.ts, xray.ts
└── _envelope.ts # Generic `Msg<T>` envelope wrapper
Patterns:
- Discriminated unions for polymorphic data — inbound
settingsisz.discriminatedUnion('protocol', […]), same for stream and security. - Three validation layers, non-overlapping:
- API boundary:
parseMsg(msg, schema, ctx)inside TanStack QueryqueryFn— warn-only in prod, throws in dev - Form input:
antdRule(schema.shape.field)on every<Form.Item>— blocks submit + per-field inline error - Wire request:
Schema.parse(payload)insidemutationFn— throws, because a malformed payload here is always a developer bug
- API boundary:
- No
.loose()or[key: string]: anyin production schemas.typescript/no-explicit-any: erroris enforced by oxlint.
Form pattern (Pattern A)
All non-trivial modals use this single pattern:
const [form] = Form.useForm<InboundFormValues>();
const onFinish = async () => {
const values = await form.validateFields();
await createInbound.mutateAsync(values);
};
<Form form={form} onFinish={onFinish}>
<Form.Item
name="port"
label="Port"
rules={[antdRule(InboundFormSchema.shape.port, t)]}
>
<InputNumber min={1} max={65535} />
</Form.Item>
</Form>
No safeParse-on-submit handlers, no useRef<any> for form
references, no inline z.string().min(1) in rules. Conditional
fields use <Form.Item dependencies={...} shouldUpdate> with the
nested protocol schema.
Testing
Vitest runs everything under src/test/. Schemas have golden
fixture suites — one JSON per (protocol × network × security)
combination round-tripped through schema.parse → link generator
→ snapshot. Regenerate snapshots after intentional changes:
npx vitest run -u
Fixtures live in src/test/golden/fixtures/ and are auto-discovered
via import.meta.glob.
Storybook
Reusable components in src/components/ are developed and documented in
Storybook (@storybook/react-vite). It is a component workbench, not part
of the shipped panel — nothing here is embedded into the Go binary. The built
Storybook is published with the docs site at
docs.sanaei.dev/storybook by
.github/workflows/docs-deploy.yml.
npm run storybook # dev server on http://localhost:6006
npm run build-storybook # static build; CI runs this to compile-check every story
Addons: @storybook/addon-docs renders an autodocs page per component,
@storybook/addon-a11y flags accessibility issues in the canvas, and
@storybook/addon-vitest runs every story as a headless-browser test under
npm run test (Playwright/Chromium — run npx playwright install chromium once
locally). The .storybook/preview.tsx decorator wraps every story in the AntD
ConfigProvider and adds a light/dark theme toggle to the toolbar.
Conventions for a story:
- Co-locate it with its component as
<Component>.stories.tsx. - Set
tags: ['autodocs']so it gets a generated docs page. - Document props via story metadata, not JSDoc (the repo bans
//comments): a component summary inparameters.docs.description.componentand per-prop text inargTypes[prop].description.satisfies Meta<typeof Component>keeps the metadata type-checked.
Adding a new page
Most new routes go inside the admin SPA (index.html) via
routes.tsx — no new HTML or Vite entry needed.
- Add the page component under
src/pages/<page>/. - Register it in
src/routes.tsxunder the/panel/...tree. - If you need a brand-new top-level bundle (login-style standalone
page), add the HTML at
frontend/<page>.html, an entry atsrc/entries/<page>.tsx, and register it inrollupOptions.inputinvite.config.js. Then add the Go controller call toserveDistPage(c, "<page>.html").