Files
deepseek-harness/packages/client/connection/tests/node-half.spec.ts
Yichen Jiang 2dd4b8e78d fix(host): pin model discovery to loopback and drop its unread wire field
llm.discoverModels was reachable from any declared trusted host. The
method takes a caller-supplied baseURL and makes the host issue a GET to
it, then reports the status or the parsed body — so on a LAN deployment
an anonymous caller had a probe for whatever the host can reach and the
browser cannot, plus a path that carries a draft credential. The
PRIVILEGED_METHODS doc already states the rule this broke: trustedHosts
is a DNS-rebinding fence, not authentication, so the configuration plane
stays loopback-same-origin. It is in that set now, asserted both against
the hand-built fence and over real HTTP beside the catalog reads that
deliberately stay reachable.

supportsDiscovery and listModelDiscoveryNamespaces are gone. The field
was required on the wire and read by nobody: its own contract said a
surface should offer the action "instead of naming an adapter family it
would have to hardcode", while the surface hardcodes llm-pi-ai in two
places and gates the button on whether there is anything to probe. Its
shape did not fit the second caller either — the create card has no row
to read a per-row field from. Keeping a required field alive for a
consumer that may never arrive costs every producer and fixture a value
nobody consults, which is exactly how the fixtures drifted. The registry
that fed it had no other production consumer, so registration and
disposal are now observed through the offer itself.

The Agent Note claimed the key is never logged, which the wire schema
beside it already contradicts, and predated both the provider field and
the catalog-answer path. The two new public types pointed at core.md
without a type-equiv block or manifest entry, so the generated service
catalog named documentation that did not exist.
2026-08-05 19:51:11 +08:00

246 lines
11 KiB
TypeScript

/** Node half: registers the /api prefix route bridging to the api gateway. */
import { EventEmitter, once } from 'node:events'
import { createServer, request as httpRequest } from 'node:http'
import { PassThrough, Readable } from 'node:stream'
import { Context } from 'cordis'
import { describe, expect, it } from 'vitest'
import type { AddressInfo } from 'node:net'
import type { IncomingMessage, ServerResponse } from 'node:http'
import type { ApiProxy } from '@deepseek-ai/dsh-host-apiproxy/api'
import type { HttpServerService, WebRoute, WebUpgradeRoute } from '@deepseek-ai/dsh-host-webserver'
import { API_PATH, apply, HOST_EVENTS_PATH, inject, MUX_EVENTS_PATH } from '../src/index.ts'
/** Structural httpServer fake recording both route registries. */
function fakeHttpServer(
routes: WebRoute[],
upgrades: WebUpgradeRoute[],
): Pick<HttpServerService, 'register' | 'registerUpgrade' | 'tapIndex' | 'port'> {
return {
register(route) {
routes.push(route)
return () => { routes.splice(routes.indexOf(route), 1) }
},
registerUpgrade(route) {
upgrades.push(route)
return () => { upgrades.splice(upgrades.indexOf(route), 1) }
},
tapIndex: () => () => {},
port: 0,
}
}
/** Bodyless GET carrying the given headers (enough for the trust fence + bridge). */
function fakeRequest(headers: Record<string, string>, url = `${API_PATH}/session.list`): IncomingMessage {
const request = Readable.from([]) as unknown as IncomingMessage
Object.assign(request, { url, method: 'GET', headers })
return request
}
/** Response recorder compatible with both the fence's short-circuit and the bridge. */
function fakeResponse(): { response: ServerResponse; state: { status?: number; body?: unknown } } {
const state: { status?: number; body?: unknown } = {}
const response = Object.assign(new EventEmitter(), {
writableEnded: false,
writeHead(value: number) { state.status = value; return this },
write() { return true },
end(this: { writableEnded: boolean }, value?: unknown) {
if (value !== undefined) state.body = value
this.writableEnded = true
return this
},
}) as unknown as ServerResponse
return { response, state }
}
async function mounted(config?: { trustedHosts?: string[] }): Promise<{
routes: WebRoute[]
upgrades: WebUpgradeRoute[]
dispose: () => Promise<void>
}> {
const ctx = new Context()
const routes: WebRoute[] = []
const upgrades: WebUpgradeRoute[] = []
ctx.provide('httpServer', fakeHttpServer(routes, upgrades) as HttpServerService)
ctx.provide('apiProxy', {} as unknown as ApiProxy)
const fiber = ctx.plugin({ inject: [...inject], apply }, config)
await fiber.await()
return { routes, upgrades, dispose: () => fiber.dispose() }
}
describe('connection node half', () => {
it('fails the load on a trustedHosts entry that is not a bare authority', async () => {
const routes: WebRoute[] = []
const upgrades: WebUpgradeRoute[] = []
const ctx = new Context()
ctx.provide('httpServer', fakeHttpServer(routes, upgrades) as HttpServerService)
ctx.provide('apiProxy', {} as unknown as ApiProxy)
const fiber = ctx.plugin({ inject: [...inject], apply }, { trustedHosts: ['harness.internal/path'] })
await expect(fiber).rejects.toThrow(/not a bare host\[:port\] authority/)
expect(routes).toHaveLength(0)
expect(upgrades).toHaveLength(0)
})
it('registers one HTTP route plus one upgrade route per downlink and removes all three with the fiber', async () => {
const { routes, upgrades, dispose } = await mounted()
expect(routes).toHaveLength(1)
expect(routes[0]).toMatchObject({ kind: 'prefix', path: API_PATH })
expect(upgrades.map(route => route.path)).toEqual([MUX_EVENTS_PATH, HOST_EVENTS_PATH])
await dispose()
expect(routes).toHaveLength(0)
expect(upgrades).toHaveLength(0)
})
it('requires WebSocket upgrade for network GETs to either event path', async () => {
const { routes, dispose } = await mounted()
for (const path of [MUX_EVENTS_PATH, HOST_EVENTS_PATH]) {
const { response, state } = fakeResponse()
await routes[0]!.handler(fakeRequest({ host: '127.0.0.1:3080' }, path), response)
expect(state.status).toBe(426)
expect(state.body).toBe('upgrade required')
}
await dispose()
})
it('rejects an untrusted WebSocket upgrade before protocol negotiation', async () => {
const { upgrades, dispose } = await mounted()
const socket = new PassThrough()
const chunks: Buffer[] = []
socket.on('data', (chunk: Buffer) => { chunks.push(chunk) })
const ended = once(socket, 'end')
await upgrades[0]!.handler(fakeRequest({
host: 'harness.example', origin: 'http://harness.example', 'sec-fetch-site': 'same-origin',
}, MUX_EVENTS_PATH), socket, Buffer.alloc(0))
await ended
expect(Buffer.concat(chunks).toString()).toContain('HTTP/1.1 403 Forbidden')
await dispose()
})
it('refuses an untrusted Host on any /api path before the bridge runs', async () => {
const { routes, dispose } = await mounted()
const { response, state } = fakeResponse()
await routes[0]!.handler(fakeRequest({
host: 'harness.example', origin: 'http://harness.example', 'sec-fetch-site': 'same-origin',
}), response)
expect(state.status).toBe(403)
expect(state.body).toBe('forbidden')
await dispose()
})
it('pins privileged methods to loopback even for a declared trusted authority', async () => {
const { routes, dispose } = await mounted({ trustedHosts: ['harness.example'] })
// The privileged set: native dialogs plus the whole settings/credential
// configuration plane, reads included, plus the one method that makes the
// host fetch a caller-chosen URL. The same declared authority reaches
// ordinary reads (carrier-level 404 from the empty proxy proves the fence
// passed), but each privileged method stays loopback-only and 403s.
for (const method of [
'host.pickDirectory', 'host.openPath',
'settings.describe', 'settings.openDocument', 'settings.update', 'settings.replace', 'settings.mutate',
'credentials.describe', 'credentials.set', 'credentials.unset',
'llm.discoverModels',
]) {
const denied = fakeResponse()
await routes[0]!.handler(
fakeRequest({ host: 'harness.example' }, `${API_PATH}/${method}`),
denied.response,
)
expect(denied.state.status).toBe(403)
expect(denied.state.body).toBe('forbidden')
}
const read = fakeResponse()
await routes[0]!.handler(fakeRequest({ host: 'harness.example' }), read.response)
expect(read.state.status).not.toBe(403)
await dispose()
})
it('passes loopback and declared-authority requests through to the bridge', async () => {
const { routes, dispose } = await mounted({ trustedHosts: ['harness.example:3080', '192.168.1.5'] })
// Loopback, no browser markers (curl shape): the fence passes; the carrier
// answers 404 for a GET unary path — proof the bridge ran.
const loopback = fakeResponse()
await routes[0]!.handler(fakeRequest({ host: '127.0.0.1:3080' }), loopback.response)
expect(loopback.state.status).toBe(404)
// LAN authority declared as a port-less IP literal — the shape the CLI
// derives for `--host 0.0.0.0` — passes markerless curl on any port.
const lan = fakeResponse()
await routes[0]!.handler(fakeRequest({ host: '192.168.1.5:3080' }), lan.response)
expect(lan.state.status).toBe(404)
// Declared public authority, same-origin browser shape.
const declared = fakeResponse()
await routes[0]!.handler(fakeRequest({
host: 'harness.example:3080', origin: 'http://harness.example:3080', 'sec-fetch-site': 'same-origin',
}), declared.response)
expect(declared.state.status).toBe(404)
await dispose()
})
})
describe('connection node half over a real HTTP server', () => {
/** Serve the registered prefix route from a real server and return its port. */
async function serve(routes: WebRoute[]): Promise<{ port: number; close: () => Promise<void> }> {
const server = createServer((request, response) => {
void routes[0]!.handler(request, response)
})
await new Promise<void>(resolve => server.listen(0, '127.0.0.1', resolve))
const address = server.address() as AddressInfo
return {
port: address.port,
close: () => new Promise<void>((resolve, reject) => {
server.close((error) => {
if (error === undefined || error === null) resolve()
else reject(error)
})
}),
}
}
/** One real request; `host` spoofs the authority the way a LAN client's browser would send it. */
function call(port: number, method: string, host: string): Promise<number> {
return new Promise((resolve, reject) => {
const request = httpRequest(
{ host: '127.0.0.1', port, path: `${API_PATH}/${method}`, method: 'GET', headers: { host } },
(response) => {
response.resume()
response.on('end', () => { resolve(response.statusCode ?? 0) })
},
)
request.on('error', reject)
request.end()
})
}
it('answers a declared LAN authority with 403 on every configuration method, over real HTTP', async () => {
// The fence's input is a real IncomingMessage parsed by Node from the
// wire, not a hand-assembled object: the Host header a LAN browser sends
// is exactly what decides loopback-only here, so the boundary is asserted
// against the parse the server actually performs.
const { routes, dispose } = await mounted({ trustedHosts: ['harness.example'] })
const { port, close } = await serve(routes)
try {
// Reads are as privileged as writes: describe returns the exposed
// configuration, and credentials.describe probes arbitrary env-var names.
for (const method of [
'settings.describe', 'settings.openDocument', 'settings.update', 'settings.replace', 'settings.mutate',
'credentials.describe', 'credentials.set', 'credentials.unset',
'host.pickDirectory', 'host.openPath',
// Carries a draft credential and turns the host into a fetcher for a
// URL the caller picked: an anonymous LAN caller must not reach it.
'llm.discoverModels',
]) {
expect([method, await call(port, method, 'harness.example')]).toEqual([method, 403])
}
// The model catalog stays reachable for the same authority: a LAN
// client's model picker needs it, and it carries no key or endpoint
// state (404 is the empty proxy's carrier answer — the fence passed).
for (const method of ['llm.providers', 'llm.models']) {
expect([method, await call(port, method, 'harness.example')]).toEqual([method, 404])
}
// Loopback reaches everything, configuration included.
expect(await call(port, 'settings.describe', `127.0.0.1:${String(port)}`)).toBe(404)
} finally {
await close()
await dispose()
}
})
})