NessGate

com.nessgatev1.6.0Updated Sep 29, 2026

Universal resolver for the agentic web: give a domain, get one normalized discovery answer.

VerifiedStreamable HTTPWeb executableOther

Installation

In SourceWeft

  1. Open NessGate in the dashboard and add it to a workspace.
  2. Enable the server for the chats that should use its tools.

Web executable via Streamable HTTP. Remote servers run from the web runtime once configured in a workspace.

Other MCP clients

Add this to your client's mcpServers config.

{
  "mcpServers": {
    "nessgate": {
      "type": "http",
      "url": "https://nessgate.com/mcp"
    }
  }
}

README

NessGate

Give NessGate a domain and your client's capabilities, and it tells you how that client can connect — and what's still missing. One call turns "here's a domain" into a concrete, sourced connection plan: which protocol to use, at which endpoint, over which transport, and exactly what authentication the service published — or, if it can't be done yet, the precise field the service is missing.

bash
curl -sX POST https://nessgate.com/connect/supabase.com \  -H 'content-type: application/json' \  -d '{"client":{"supports":[{"protocol":"mcp","auth":["oauth2","none"]}]}}'
jsonc
{  "domain": "supabase.com",  "outcome": "credentials-required",          // ready | credentials-required | incomplete | no-compatible-method  "connection": {    "protocol": "mcp",  "transport": "streamable-http",    "endpoint": "https://mcp.supabase.com/mcp",    "auth": { "type": "oauth2",              "authorizationEndpoint": "https://api.supabase.com/v1/oauth/authorize",              "tokenEndpoint":         "https://api.supabase.com/v1/oauth/token",              "scopes": ["projects:read", "database:write", "…"] }  }}// → everything needed to connect is known; you just supply your own credentials//   (which never touch NessGate). No scores; each field links back to its source.

Four honest outcomes, never a guess: ready (connect now, no credentials), credentials-required (everything's known — bring your own secret), incomplete (the service under-published — NessGate names the exact missing field), no-compatible-method (nothing your client speaks). Prefer the per-resource view? Add ?readiness=1 to /explore. Prefer the raw list of what a domain publishes? That's the original resolver, GET /discover/{domain} — unchanged and still here.

Why not just build this yourself?

You can — it's not impossible, just permanent. To turn a domain into a working connection you'd have to read and track every discovery standard (ARD, A2A, llms.txt, api-catalog, OpenAPI, ORD, host-meta, ANP, UCP, AID, MCP, GB/Z 185.4…), follow each one's auth story (OpenAPI security schemes, the MCP OAuth metadata chain RFC 9728 → RFC 8414, A2A card schemes), handle server quirks, timeouts, redirects, and SSRF safety on every hop, normalize it all into one shape, and keep doing that as the protocols change. NessGate does exactly that, reads on demand, stores nothing, and stays neutral — so you write your agent, not a compatibility layer. It's free, open (Apache-2.0), and independently implementable; if nessgate.com vanished, every domain's files would still stand on the domain itself.

Live at https://nessgate.com · Specification · Charter · API

NessGate reads the standards a domain already publishes; it defines none of them and stores nothing. The domain is always the authority.

Use it

Embeddable library — dependency-free, fetches the target domain directly (no runtime dependency on nessgate.com), runs anywhere with fetch — Node, Deno, Workers, and agent runtimes. (It runs in a browser too, but a browser can only read other domains that send CORS headers, and most .well-known files don't — so from a browser, resolve arbitrary domains via the hosted endpoint below, which sends open CORS.) Published as @nessgate/resolver:

js
import { resolve } from "@nessgate/resolver";      // or "https://nessgate.com/resolver.mjs"const { resources } = await resolve("example.com");

Hosted endpoint — open CORS, no auth:

curl https://nessgate.com/discover/example.com

MCP — the same lookup as a tool (discover_domain) at https://nessgate.com/mcp. Listed in the official MCP Registry as com.nessgate/nessgate (domain-verified remote server), so MCP-aware clients can install it directly.

Integrate it (≈5 lines)

Give an agent a domain, get back what to use — no per-standard code. Drop this into a tool, a retrieval step, or an onboarding flow:

js
import { resolve } from "@nessgate/resolver";           // dependency-free, no key, no accountconst { resources } = await resolve(domain);            // reads the domain directlyfor (const r of resources)  console.log(r.type, r.url, "←", r.sourceUrl);         // normalized record + where it came from// each r: { source, type, url, sourceUrl } — pick the one your agent needs (OpenAPI, A2A, MCP, …)

No SDK? The hosted endpoint is one HTTP GET (GET https://nessgate.com/discover/{domain}, open CORS, no auth), and the MCP tool discover_domain returns the same shape. Adding a new standard is a new adapter upstream — integrations don't change.

Full integration guide — library, HTTP, and MCP client config (including the mcp-remote bridge for stdio-only clients): docs/integrations.md.

Principles

NessGate is free, neutral infrastructure — see the Charter. It never charges to use or to be read, never sells ranking or placement (there is none), keeps no accounts, and stores no domain data. It reads a domain on demand (answers are cached at the edge for up to 10 minutes), never crawls or indexes, and makes no ownership or safety claim — it reports what a domain serves and links back to each source. The specification is open and the reference implementation is Apache-2.0 licensed: anyone may run their own resolver, and if nessgate.com disappeared, every domain's files would still stand on the domain itself.

Architecture

  • One stateless Cloudflare Worker (src/worker.js) serves the static site (public/, via the assets binding with run_worker_first), the resolver API, the MCP server, the per-domain pages, and the sitemap. There is no database.

  • The resolver (GET /discover/{domain}, and the embeddable public/resolver.mjs) reads what a domain publishes, normalizes it into one answer, fetches the domain directly, and stores nothing. Answers are computed fresh and cached at the edge for 10 minutes. A parity test keeps the worker's and the library's normalization byte-identical, and keeps packages/resolver/index.mjs (the npm package) byte-identical to public/resolver.mjs.

  • Adapter architecture — four discovery channels. Each supported standard is a small, independent adapter, and every adapter uses one of four channels to locate its document:

    • well-known — GET a fixed path (or paths) on the domain: llms.txt, ard-catalog (ARD / ai-catalog), a2a-agent-card (A2A), api-catalog (RFC 9727), ai-info.json, openapi, ord (Open Resource Discovery), awp (draft), host-meta (RFC 6415), anp (Agent Network Protocol /.well-known/agent-descriptions), and ucp (Universal Commerce Protocol /.well-known/ucp).
    • link-rel — parse <link rel="ard"> in the homepage, then GET the target (ard-link).
    • robots — parse an Agentmap: directive in /robots.txt, then GET the target (ard-agentmap).
    • dns — a DoH TXT lookup at _agent.<domain> (aid: v=aid1;u=<uri>;p=<proto>;a=<auth>).

    ARD: NessGate implements ARD's normative domain resolution — it fetches /.well-known/ard.json and honours the <link rel="ard"> relation (both MUST in ARD v0.91 §5.1) — plus the robots Agentmap: surface. ARD's optional in-page JSON-LD is found only by general web crawling, which NessGate does not do; ARD's DNS mechanism is described in §5.1 but not yet normatively specified (no record type or parameters). Neither is implemented — publishing a guessed record would be fake conformance. ANP and UCP are emerging; the AID TXT record (v=aid1 at _agent) and AWP are drafts, read as-is with no adoption claim. Note: the aid adapter is the AID TXT mechanism, not the IETF DNS-AID draft (SVCB at _agents.<domain> — a separate, unimplemented mechanism).

  • GB/Z 185 (China, 智能体互联) — 185.4 yes, 185.5 gated. NessGate normalizes GB/Z 185.4 agent descriptions ("ACS"): an ACS is an A2A-family card with GB/Z extensions (an agent identity code aic, an mTLS scheme, a certificate block), recognized by content and labelled gbz-185-4, preserving those fields and provenance. Recognition is domain-first: an ACS served at the agent-description location NessGate already reads is normalized — no GB/Z-specific .well-known path is guessed. GB/Z 185.5 discovery is a federated gateway service with no domain-native location, so it is not part of the hosted resolver and is never auto-discovered. The embeddable library exposes it as an opt-in, Node-only call (resolve(domain, { gbz: { gatewayUrl, fetch, query } })) that POSTs to the reference implementation's real …/acps-adp-v2/discover endpoint with a caller-supplied authenticated fetch (bring-your-own mTLS/OIDC — NessGate embeds no credentials) and normalizes the ACS records it returns. No guessed endpoints, no fake conformance.

  • Cloudflare KV (NESSGATE_KV) holds only approximate, IP-keyed hourly rate-limit counters that expire within the hour. Nothing else is stored.

  • Rate limiting: a Cloudflare-native edge limiter (burst, per-colo and eventually consistent — approximate by design) in front of an approximate KV hourly cap. Abuse protection, not exact global accounting.

  • SSRF protections: DoH pre-check against private/reserved IPs, on-domain redirects only (≤ 3), 1 MB caps, 8 s timeouts, HTTPS-only. Probes are read-only GETs of public well-known paths; the DNS-rebinding TOCTOU window is documented in src/worker.js and is immaterial here (Worker egress has no private network behind it, and probes assert nothing).

  • No accounts, no emails, no stored domain data.

Endpoints

EndpointPurpose
GET /discover/{domain}The resolver. Reads what the domain publishes across the supported adapters (llms.txt, ARD/ai-catalog via well-known paths, rel="ard" link, and robots Agentmap:; A2A agent card, RFC 9727 api-catalog, ai-info.json, OpenAPI, ORD, AWP, host-meta, ANP, UCP, AID, GB/Z 185.4) and returns one normalized answer — {domain, provenance, note, discovered[], resources[], checked[]}, each resource carrying its source and native sourceUrl. CORS open, no auth; nothing stored or crawled; 10-min cache, 120/hr/IP.
GET /explore/{domain}Evidence-based resolver (v2, additive). Everything /discover returns, plus bounded delegated discovery: it follows the explicit machine-readable pointers a domain declares (an llms.txt index's links, ARD/api-catalog entries) up to depth 2 — cross-host only where the publisher named the target — and federates the official MCP Registry for the domain's verified namespace. Every record carries an evidence class (publisher-hosted / publisher-declared / namespace-verified) and a provenance chain. Strictly bounded (depth ≤2, ≤8 hosts, ≤24 requests, global byte cap, SSRF checks on every hop); stateless, no crawling, no AI, no ownership claim. With ?org=1 (Organization Discovery), it additionally probes a bounded set of plausible same-registrable-domain hosts (homepage-linked subdomains + a small conventional shortlist, max 4 hosts × 2 paths) and reports only verified resources as same-domain-host — solving the "resources live on developers.example.com, not example.com" case. /discover stays unchanged.
GET /explore/{domain}?readiness=1Connection-readiness (opt-in, additive). Everything /explore returns, plus a readiness block on each connectable resource assessed from the service's OWN published metadata: ready / credentials-required / incomplete (with missing[] naming the exact under-published field), read-only, no scores. Resolves OpenAPI servers[]+securitySchemes, A2A cards, and the MCP OAuth metadata chain (RFC 9728 → RFC 8414). Bounded + SSRF-guarded; credentials never touch NessGate. Default /explore (no flag) is unchanged.
POST /connect/{domain}Connection plan. Body { client: { supports:[{protocol,versions?,transports?,auth?}], prefer? } }. Matches the client's declared capabilities against what the domain publishes (deterministic intersection, no scores) and returns one outcome — ready / credentials-required / incomplete / no-compatible-method — with a connection plan (endpoint, transport, version, auth metadata) and its provenance. Read-only; client capabilities are input only (nothing stored); the client connects directly.
POST /mcpModel Context Protocol server (Streamable HTTP, stateless, no auth) exposing one tool, discover_domain, that returns the same answer as /discover.
GET /{domain}Human-readable domain page — the resolver rendered for humans (live discovery).
GET /resolver.mjsThe embeddable resolver library (also on npm as @nessgate/resolver).
GET /openapi.json, /llms.txt, /spec, /sitemap.xml, /robots.txt, /.well-known/security.txt, /.well-known/api-catalogMachine discovery & docs

Operations runbook

  • Deploy flow: commit → npm run deploy (runs the full regression suite as a hard pre-deploy gate, then stamps the build with the git SHA via BUILD_ID) → npm run check (regression tests + live smoke checks, including proof that /version on production equals local HEAD) → push. CI (GitHub Actions) runs the regression suite on every push. The deploy-script gate is the effective production gate, since deploys run from the workstation.
  • Build verification: GET /version and the X-NessGate-Build header on every response identify the exact deployed commit.
  • Tests: npm test — no-network regression suite for the security-critical logic (normalization, SSRF/private-IP detection, probe-content validation, thin normalization, and worker↔library↔npm parity).
  • Rollback: npm run rollback (or npx wrangler rollback [version-id]; versions listed by npx wrangler deployments list).
  • Logs: npx wrangler tail nessgate.
  • CSS changes: bump the ?v=N on the stylesheet link in all pages (assets are cached; unversioned CSS changes will not reach browsers).

Configuration

wrangler.toml binds: assets (run_worker_first), KV, and a [[ratelimits]] binding. There are no D1 databases, no cron triggers, and no secrets — the resolver is stateless.

npm package

packages/resolver/ is published as @nessgate/resolver via GitHub Actions Trusted Publishing (OIDC, tokenless, with provenance) — see .github/workflows/publish-resolver.yml. index.mjs is kept byte-identical to public/resolver.mjs by the parity test.

License & contributing

The reference implementation is licensed under Apache-2.0 (LICENSE); the WordPress plugin is GPL, as required by WordPress.org. The protocol is open and independently implementable — see CONTRIBUTING.md, the naming/trademark policy in TRADEMARK.md, and the Charter. Anyone may build a compatible resolver without asking permission; independent implementations are a goal, not a threat. The canonical resolver/normalization logic lives in public/resolver.mjs and src/worker.js (kept byte-identical by a parity test).

Security contacts

[email protected] (see /.well-known/security.txt), [email protected], [email protected], [email protected].

Source: README.md at commit cffa0c4

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Version history

1
  1. v1.6.0LatestSep 16, 2026