The full upstream README, mirrored here for reference. Install config, tool schemas, adoption signals, and an original overview live on the MCP Trust listing page.
Check before you connect. A neutral, public danger grade for the MCP servers your AI agents rely on.
Live: mcp-trust.vercel.app
Not yet published to PyPI. Install from source using the Quickstart below.
mcp-trust runs as a read-only MCP server so an agent can check a server's
danger grade before connecting — it serves a baked snapshot of real scan
grades with explicit per-record provenance, so no database or network is needed.
| Tool | Description |
|---|---|
list_servers | Every graded MCP server with its A-F grade, transparency, and danger score. |
check_server | Full grade, risk dimensions, and findings for one server by slug. |
get_methodology | How the A-F grade and transparency axis are computed, plus the honesty model. |
The MCP runtime admits the packaged catalog only after deterministic schema-v2 validation, including duplicate-key rejection, required field/type checks, unique slugs and source coordinates, supported enums, sandbox/scan-mode agreement, and timezone-aware scan timestamps. Admission also binds grade to danger score, transparency to annotation coverage, and critical findings to the grade cap. Raw JSON is limited to 1 MiB, with deterministic server, finding, tool, and public-string ceilings. Schema v2 preserves additive unknown fields; missing or invalid required fields and unknown schema versions fail closed.
If catalog admission fails, list_servers and check_server serve zero records
and return mcp-trust-mcp-error.v1 with status UNKNOWN, error code
CATALOG_SNAPSHOT_INVALID, sorted reason codes, and server_count_served: 0.
get_methodology remains available. This boundary checks internal consistency;
it does not prove snapshot authenticity, authorship, immutability, or freshness.
Offline consumers can add those missing publication checks with
mcp-trust verify-snapshot: a detached Ed25519 statement binds the exact
snapshot bytes, publisher ID, bounded issue/expiry window, monotonic publication
ID, and prior consumer checkpoint. The consumer must independently pin the
trust-root SHA-256 and preserve the returned checkpoint for rollback resistance.
Invalid, expired, unknown-signer, forked, or rolled-back inputs return only
UNKNOWN reason codes and no grades. See
docs/OFFLINE-SNAPSHOT-TRUST-V1.md.
Statement freshness proves recent publication authorization, not a recent scan;
the per-record scan timestamp and 90-day stale policy remain separate checks.
No production trust root, signing key, statement, or checkpoint ships today, so the built-in MCP snapshot remains structural-only unless a consumer separately supplies and pins those inputs. Test fixture keys are not publication keys.
Connecting an MCP server hands it influence over what your agent does. Tool poisoning, prompt injection, over-broad permissions, and rug-pull tool mutations are documented attack classes -- and today there's no quick way to vet a server before you wire it in. MCP Trust Registry scans public MCP servers and gives each one a single readable danger grade (A-F), a separate transparency signal, and the findings behind them.
Think OSV.dev / Socket.dev / haveibeenpwned, scoped to MCP servers.
uv (used for dependency management and running the project)Render one versioned, secret-placeholder-only MCP connection intent into staged Codex, Claude Code, Claude Desktop, or VS Code configuration and receive an explicit semantic loss/widening report:
The studio is local-only. It never discovers or edits a real host config,
launches an MCP server, contacts a URL, or emits modeled secret values. Generated
configuration proves only documented host-format compatibility, not a runtime
connection or adoption. See
docs/MCP-CONFIG-PORTABILITY-STUDIO.md.
The registry does not reimplement vulnerability detection. It orchestrates a
pluggable scan engine -- the shipping backend wraps the public
mcp-audits (>=2.1) package -- and owns the
catalog, the public trust-grade normalization, persistence, and the lookup API.
For real scanning install the engine extra and select it:
Scanning launches the server's process. For untrusted servers, isolate execution in a locked-down container (no network, read-only fs, dropped caps, resource limits):
The default is no sandbox (safe only for servers you trust).
| Method | Path | Purpose |
|---|---|---|
GET | / | web -- public catalog page (grade + transparency per server) |
GET | /ui/servers/{slug} | web -- server detail page + README badge-embed snippet |
GET | /healthz | liveness |
GET | /servers | catalog + latest grade, provenance, and staleness per server (JSON) |
GET | /servers/{slug} | full latest scan record + provenance/staleness and metadata (JSON) |
POST | /servers/{slug}/scan | operator scan trigger; public deployments disable this route |
GET | /servers/{slug}/badge.json | shields.io-compatible README badge |
Every server has two orthogonal signals: a danger grade (A-F) and a transparency level (high/medium/low, from annotation coverage). Automated grades are not endorsements, certifications, or claims that a server is malicious. A low grade on a low-transparency server means "cannot verify safe," not "known dangerous."
HTTP scan triggering is fail-closed by default. Public deployments should set
MCP_TRUST_PUBLIC_READONLY=1, which makes POST /servers/{slug}/scan return
403 before any engine can run. Operator scans should normally run through the
CLI against the persistent registry DB, not through public traffic.
For local API demos with the deterministic StubEngine, set
MCP_TRUST_ALLOW_UNAUTHENTICATED_STUB_SCANS=1. Do not set that in public.
Token-gated API scan triggering is still available for private operator surfaces
by setting MCP_TRUST_SCAN_TOKEN and passing it as Authorization: Bearer <token> or X-MCP-Trust-Scan-Token.
If the newest stored scan row is unreadable, API, web, static, badge, and
snapshot projections fail closed to UNKNOWN; they never resurrect an older
grade. Stored source/risk/finding/evidence JSON has a 1 MiB per-field admission
ceiling, with bounded finding/tool collections and content-free diagnostics.
An unreadable older row leaves a readable latest grade intact but makes scan
history and grade-change claims explicitly UNKNOWN. Snapshot construction
stops until unreadable history is repaired or dispositioned.
All public surfaces use one fail-closed freshness projection. Exactly 90 days
after a scan is still FRESH; any later instant is STALE. Missing, malformed,
or future scan times are UNKNOWN, with verdict fields withheld. Unscanned
entries are NOT_APPLICABLE. Operator masking applies even when no scan exists
and is never inferred from scan state. Static pages and badges are immutable
historical evidence with a scan date or validity boundary; they do not promise
request-time freshness. Danger, transparency, and evidence quality remain
separate signals, and a grade is never an endorsement.
Set MCP_TRUST_RECEIPTS_DIR=/data/mcp-trust/receipts during real scan runs to
archive a JSON receipt for each scan and store its portable artifact filename in
report_ref.
Remote Registry candidates can be checked for discoverable MCP authorization
metadata without contacting the MCP endpoint or handling credentials. First
build a candidate manifest from a previously saved official Registry response,
then select one exact stable_id:
If a public WWW-Authenticate: Bearer challenge has already been obtained by a
separate operator workflow, pass its value with --www-authenticate. Otherwise
the command tries the MCP-required protected-resource well-known paths, followed
by RFC 8414 and OpenID Connect authorization-server discovery in specification
order.
The command emits McpAuthorizationPostureV1 JSON. Exit 0 and
state=metadata-ready mean only that at least one authorization server exposes
the endpoints and PKCE S256 metadata needed for policy review. They do not
prove authorization, credential availability, runtime security, scan
eligibility, or a trust grade. Unknown or invalid evidence exits 1 and stays
blocked; an invalid local manifest binding exits 2.
The network boundary is deliberately narrow: HTTPS metadata GETs only, no
ambient proxies, redirects, credentials, endpoint session, or writes. DNS is
resolved once per request; every answer must be globally routable, and the
connection is pinned to an accepted address while TLS validation and SNI remain
bound to the original hostname. Response bodies are size-bounded, validated,
and represented in output only by byte count and SHA-256. Successful metadata
responses must also carry a valid HTTP Date; declared cache freshness is
honored up to a 24-hour policy cap, while missing, future-dated, or stale source
evidence remains unknown. The implementation is based on the
MCP authorization specification,
RFC 9728,
RFC 8414, and
OpenID Connect Discovery.
This repository owns the language-neutral WebReleaseReadbackV1 contract and
its standard-library reference verifier. A consumer supplies an explicit HTTPS
origin plus a versioned route-sentinel manifest:
The command emits one structured receipt to stdout and exits nonzero when any
status, required or forbidden sentinel, exact body, digest, body bound, timeout,
or redirect assertion fails. It implements only GET and HEAD, ignores ambient
proxies, accepts no credentials, and has no deployment, alias, DNS, promotion,
or rollback capability. The schemas, deterministic artifact manifest, versioning
policy, and rollback boundary live under
contracts/web-release-readback-v1/.
The owner repository also consumes the contract through
deploy/web-release-readback.json. deploy/smoke-readonly.sh emits the shared
route receipt before running the registry-specific health, API, badge, portable
receipt-reference, and denied scan-POST assertions. This self-adoption is a
release readback check only; it neither deploys nor changes an alias.
This generic receipt is additive. Product-specific API, badge, privacy, release lineage, and denied-mutation checks remain owned by each consumer until proven receipt parity justifies removing only their duplicated HTTP assertion plumbing.
EvidenceLineageLedgerV1 is a metadata-only, fail-closed contract for MCP
corpus admit, refresh, publish, and withdraw decisions. It binds exact identity,
digests, portable receipt references, freshness, rights evidence, public
projections, supersession, and retention without storing raw logs or secrets.
The read-only assessor requires an explicit observation time and emits stable
reason codes; only an explicit ALLOWED status can authorize admit or publish.
See docs/EVIDENCE-LINEAGE-LEDGER-V1.md
for the schema, decision semantics, three-record packaged-catalog pilot, claim
ceiling, and rollback boundary. This source capability does not itself migrate
the catalog, publish or withdraw records, run scans, or change deployment state.
First emit the no-execution inventory, exact source/tool/image preflight, and deterministic repeated fixture receipt:
Runtime refresh commands require a separately prepared frozen [engine]
environment. They use its exact interpreter and never hydrate dependencies as
part of preflight or candidate creation:
The capacity receipt requires at least 5 GiB available and less than 100 percent
capacity in two readings at least 30 seconds apart. It is revalidated before
Docker, MCP, or registry-database work, expires after 120 seconds, and binds the
host filesystem device without recording a host path. The source contract does
not itself prove that an operator kept Colima stopped until the receipt passed,
or authenticate the observation against same-user replacement; provenance
without a separately sealed operator binding remains UNKNOWN.
Offline image qualification requires one newly observed, cohort-scoped receipt
per invocation. The set is append-only; use the same new reviewed set name for
all five cohorts, but never reuse a capacity receipt across cohorts:
The five exact qualification_receipt paths in
src/mcp_trust/catalog/refresh_policy.json are authoritative; a version label
in documentation is never authority.
The qualifier creates an immutable source/input-bound set manifest and writes a
pessimistic append-only attempt intent before the first Docker mutation. It
revalidates the bound receipt immediately before every Docker or Buildx
subprocess and never renews it. If capacity expires or regresses, no
qualification receipt is emitted and the intent remains unresolved, so Docker
state and qualification are UNKNOWN. Before retrying that cohort, issue a new
receipt with --operation cleanup and run the qualifier with
--cleanup-cohort "$cohort"; cleanup acts only on the exact recorded tags and
outputs and must append a successful readback receipt. Existing sets without
the immutable manifest, unknown artifacts, overwritten receipts, and source or
input drift are refused. A successful build appends a qualification completion
binding; cleanup completion is required only for an interrupted attempt. A
qualification manifest preserves its originating revision as provenance but
reopens against a qualification-specific digest map. That map includes the
qualifier and its runtime modules, Dockerfiles, dependency inputs, locks,
artifact descriptors, and nested source-build evidence. Generated
docker/refresh/qualification/ evidence and refresh_policy.json receipt
pointers are adoption metadata, so tracking them does not self-invalidate a
completed set; dependency-bundle bytes are independently revalidated against
their descriptor digests before each build, and receipt and graph integrity
remains independently mandatory.
Any executable or build-input drift still fails closed. A
per-set process lock and attempt-unique temporary tag prevent concurrent
qualification from sharing mutation state. Interruption cleanup removes only
the intent-recorded OCI, validation-receipt, and digest-bound tool-snapshot
residue. It never rewrites the final tag: readback must show either the recorded
baseline or the exact task-owned image ID, and any other value remains
ambiguous and blocked.
Do not execute a catalog server unless preflight returns READY. The receipt
binds the 31-entry classification, including the exact derived 22 scannable and
9 blocked execution boundary, source and policy digests, tool versions,
local Docker authority, immutable image IDs, and explicit network, filesystem,
resource, and secret controls. See
docs/GRADE-REFRESH-PROGRAM.md and the
operator runbook.
Create a review candidate without mutating the canonical registry, baked snapshot, static site, schedule, or deployment:
The command refuses local-process scans unless the bound preflight receipt is
current and READY, and Docker and every catalog-pinned image are available
locally at the recorded immutable IDs. Those sources run through the existing
network-off, read-only, capability-dropped, resource-bounded sandbox. Each local
container is pre-created and the connector is bound to start only that immutable
ID; scan evidence is accepted only after the bound daemon proves it absent. A
timeout without that readback remains UNKNOWN. Remote
endpoints are probed over their live network transport without a local process
sandbox and are labeled accordingly. New immutable bundles use
RefreshCandidateV2 and contain self-digested execution-bound receipts, catalog
identity, scan times and ages, blocked/masked/failed/timeout/unknown evidence
states, attributed scan drift, an honest
static snapshot, source/tool bindings, freshness counts and earliest expiry,
semantic projection digests, and a content-bound manifest. Legacy V1 bundles
remain structurally inspectable but are publication-ineligible.
Candidate creation has no publication or deployment authority. Structural verification reports schema and publication eligibility separately; a valid V1 artifact cannot acquire V2 authority by self-assertion. A current, complete, reviewed-input-bound V2 candidate is only an input to later local admission. Eligibility never grants approval, publication, deployment, rollback, scheduling, or outreach authority.
A separately supplied McpTrustPublicationApprovalV1 can be verified and used
to build a deterministic local copy-only package:
This admission is provider-free and local-only. It binds the V2 candidate, repeatability and triage lineage, exact V38 review, current provider evidence, rollback target, operator statement digest, and the minimum freshness expiry. Every mutation authority remains false. A package is not deployment authority, publication proof, rollback authority, scheduler authority, endorsement, or production-freshness evidence.
The manual static deploy lane requires a separate short-lived
McpTrustProductionDeployAuthorizationV4 binding that exact package, content
approval, provider and operator receipts, retained rollback bytes, source
revision, output, and tool digests. It revalidates before and after live TTY
confirmation. After any provider call, freshness remains UNKNOWN until a
provider/source-bound McpTrustProductionPublicationReceiptV1 verifies the
exact all-route readback receipt. A missing provider artifact digest can never
be promoted to FRESH.
Snapshot signing is a separate authority after candidate approval/staging. The refresh process never receives a signing or recovery key, and its SHA-256 manifest is not a publisher identity. Production signing remains disabled until an operator chooses the root, custody, thresholds, publication counter, and checkpoint owner described in the offline trust contract.
Live at mcp-trust.vercel.app as a statically
generated catalog, regenerated from the local registry. The bundled catalog
snapshot contains 23 visible real mcp-audits grades; eight reviewed entries
are withheld by masked-grades.json and are absent from the public snapshot.
The bundled snapshot labels the visible local-process grades' network and
sandbox provenance as unknown; only a receipt-verified refresh candidate may
claim network-off execution. Every grade is labeled by provenance, so
demo/stub data can never read as a real scan, and an unscanned server never
shows a letter grade. The current production deployment is the 31-server
static catalog; grades are static since 2026-07-11, when the weekly re-scan
lane was disabled and its deploy authority removed (see
docs/CAPABILITY-RULING-2026-07-10.md).
The static front door is the low-ops launch path (see
DEPLOY-VERCEL.md); a weekly launchd job under
deploy/launchd/ is persistently disabled and current host
readback shows it unloaded. A dormant installed plist remains and differs from
the repository template; treat it as configuration drift and do not load or
enable it. The compatibility entrypoint can create a local review candidate
only, after no-execution preflight; it cannot publish or deploy. The live FastAPI
service + VM path remains
documented in DEPLOY-VM.md as an alternative. See
SPEC.md for the full contract and LAUNCH-GATE.md
for launch history. The deployed catalog reports scan timestamps as its
freshness authority; static HTML does not claim to attest machine-local
scheduler state.
uv.lock is intentionally committed to the repository to ensure reproducible
installs across environments. When adding or updating dependencies, commit the
updated uv.lock alongside your pyproject.toml changes.
MIT