* fix(vector_stores): keep config-defined vector stores listed and read-only
Vector stores declared in config.yaml were purged from the in-memory registry by /vector_store/list because the database was treated as the only source of truth. Config-defined stores now carry is_config=True, stay in the list beside database rows, are never overwritten or evicted by database state, and reject /vector_store/new, /vector_store/update and /vector_store/delete with 400. The Admin UI renders them read-only
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* fix(ui): show vector store source and read-only state for config-defined stores
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* test(integration): audit config-owned vector stores across list, writes, search, authz, peers and redis outage
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* fix(ui): show a visible read-only hint in the config vector store actions menu
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
---------
Co-authored-by: ryan <ryan@berri.ai>
Co-authored-by: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
Cherry-pick of merge commit b3882d8e43 (PRs #39321, #39562, #40107), which landed on litellm_internal_staging instead of main.
Co-authored-by: ojensen-berri <ojensen@berri.ai>
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
A temporary-only member update no longer clones the team default budget into the private row. The row stores just the temp pair and auth, spend admission and reservation add the active increase to the current shared default, so a later lowering of the default reaches members with an active grant
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
Adds a persistent total_spend column to LiteLLM_VerificationToken and LiteLLM_DeletedVerificationToken, incremented in the same write as spend and left alone by budget resets. Surfaces it on /key/info, /key/list and the Admin UI Virtual Keys table and key detail view
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
POST /credentials let a duplicate name hit the unique index and handed back
Prisma's "Unique constraint failed" as a 500, so callers string-matched that
message to tell a caller mistake from a server fault. The unique violation now
maps to a 409 whose message names the PATCH route, two concurrent creates of
one name agree on it, and the detection lives in a repository helper the five
hand-rolled copies can move onto later
PATCH /credentials/{name} took a CredentialItem body, so the model_id the
Terraform adopt path sent was dropped. It now accepts UpdateCredentialItem and
shares the deployment lookup with create. Both handlers take the router as a
FastAPI dependency instead of reading the proxy global, which is what the
tests override
Adds a nullable tpd_limit column and field to keys, teams, budgets and end users. The batch submission limiter swaps the per-minute RPM/TPM descriptor of any scope that has a tpd_limit for a token-only 24h descriptor, so batch traffic is budgeted per day while online traffic keeps the existing per-minute limits. The Admin UI exposes the field on key, team and budget create/edit forms
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
Adds object_permission.skills to keys and teams, enforces it on
/claude-code/marketplace.json?key=, /claude-code/plugins and
/claude-code/plugins/{name}, and exposes an Allowed Skills selector in
the key and team create/edit forms of the Admin UI
Co-authored-by: yassin <yassin@berri.ai>
Co-authored-by: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
Encrypt secret maps at the shared persistence boundary, preserve plaintext API/runtime views, and extend rotation and migration scanning to legacy rows.
Co-authored-by: Claude Code <noreply@anthropic.com>
Every repository handed its `.table` back untyped, so a dozen modules had
each grown a private `_PrismaTableActions` Protocol to paper over it. They
had drifted: some declared `update` as returning the row, others the row or
None, and none agreed on whether `find_many` was covariant
Replace all of them with a single `TableActions[RowT_co]` in
`litellm/repositories/prisma_protocols.py`, keyed to the prisma row each
repository is bound to. Query inputs stay `Mapping[str, object]` so callers
keep passing plain dicts, and `find_many` returns `Sequence` so the row type
stays covariant
Typing the nullable returns honestly surfaced paths that were already
crashing. A team admin could never edit or delete a memory entry owned by
their team: the write-auth check fed a raw prisma row to a helper that
expects the domain model, so `members_with_roles` arrived as plain dicts and
the request died as a 500 instead of applying the edit. Non-admin members hit
the same 500 in place of the 403 they were owed, so refusal and breakage were
indistinguishable. `/v2/model/info?user_models_only=true` dereferenced a
missing user row rather than returning the 400 the route already had, three
team routes dereferenced a team deleted between the read and the write, and
the agent registry dereferenced a missing agent instead of naming it
basedpyright drops 2,132 errors, 1,454 of them reportAny and 73
reportExplicitAny. The dashboard's generated types pick up `string[]` where
they had `unknown[]` for a team's members, admins and models
Retypes the 54 highest-density reportAny/reportExplicitAny sources with real
types instead of shuffling the ceilings around: typed prisma table Protocols so
the untyped client surface stops at the query, local TypedDicts for JSON and
dict payloads, concrete chunk and logging types on the streaming and callback
surfaces, and 3-argument getattr with a Callable annotation where an SDK object
is genuinely duck-typed
No cast(), no type: ignore, no noqa, no suppression comments, and no new Any
annotations. Whole-tree basedpyright drops 1,941 errors with no rule rising
anywhere, and all three budget files are ratcheted so the cleared headroom
cannot silently grow back
Adds a GDC regression test pinning the named AttributeError that the typed
credential accessor now raises when with_gdch_audience is missing
* fix(proxy): add config_updated_at audit timestamp for virtual keys
updated_at carries Prisma's @updatedAt, so every batched spend flush
rewrites it and it cannot distinguish config changes from usage. Add an
additive config_updated_at column stamped only by key management writes
(update, bulk update, regenerate, block, unblock) via a shared helper,
expose it on key responses, and switch the key page's Last Updated to it
with a created_at fallback.
* test(proxy): assert config_updated_at survives key archival
* refactor(proxy): rename config_updated_at to settings_updated_at
About 35,000 fixes ruff marks safe across 32 rules (UP006/UP045/UP007
modern annotations, UP032 f-strings, SIM114/SIM118, RET501, and
friends), removal of the 1,296 typing imports the rewrite orphaned, and
hand fixes for what the fixers could not see: five star-import
freeloaders of typing names, two F823 late-import annotations, the
/get/config/list introspection crash on types.UnionType, redundant
function-local RoleMappings imports in ui_sso.py that shadowed the
module-level name once the annotation lost its quotes, and one FURB168
tautology.
B009/B010/PIE804/RUF019 are excluded on purpose: their safe fixes
rewrite getattr/setattr/**-splat/key-in-dict escape hatches into forms
basedpyright then rejects (283 new errors measured), so their budgets
stay at base values.
ruff-strict-budget.json drops by 39,579 this commit (39,968 across the
branch) with 28 rules at an actual 0 and 9 more sharply down.
type-discipline-budget.json ratchets LIT002/LIT006/LIT009 down; LIT001
moves to the now-honest total: the checker matches the spelling `set`
but not the alias `Set`, so the 160 typing.Set annotations rewritten to
set[...] were always mutable-set annotations and only now count.
* fix(mcp): annotate connected-app reachability on the gateway connect page
The MCP connect page resolved its server grid through the dashboard identity
(admin shortcut or view_all returns the whole registry) while the gateway DCR
session it sets up resolves servers as an admitted subject through grant
sources only, so the page showed servers and tool counts the session is never
served. GET /v1/mcp/server now accepts connected_app_view=true and stamps each
returned server with connected_app_reachable, computed by the same
_reload_admitted_user + get_allowed_mcp_servers pair the live session uses.
The connect page requests the flag in connect mode and renders unreachable
servers dimmed with a label, excluded from the Connected count and tool-count
fetches. Failure to build the admitted set marks everything unreachable, which
matches what such a session would actually be served. Default behavior without
the param is unchanged for every existing consumer.
* fix(mcp): block connecting unavailable servers from the connect-mode detail view
A server the connect page marks unavailable could still be added through its
detail view Connect action, so the selection could contain servers the
connected-app session is never served. The unavailability decision now lives in
one predicate, connectUnavailabilityLabel, consumed by the card indicator, the
detail view action area, the toggle-on path, the oauth auto-select effect, and
the Connected count, so no interaction path can disagree with the label. This
also closes the same pre-existing hole for servers marked not supported on this
connection, whose detail view likewise offered Connect, and removes a
grandfathered nested ternary, ratcheting the eslint suppressions baseline down
* fix(mcp): hide unreachable servers on the connect page instead of dimming them
Product decision: the connect page should only show what a connected-app
session will actually be served, so annotated-unreachable servers are now
filtered out of the connect-mode list at fetch time rather than rendered
dimmed. Unsupported auth types keep their existing dimmed label since they are
a property of the server, not the caller. A user with zero reachable servers
gets an explanatory empty state pointing at grants. The list filter is the
single source: counts, tabs, auto-select, detail view, and tool-count fetches
all derive from the already-filtered state
* fix(mcp): guarantee the connect view lists every session-reachable server
The connect view's membership came from the dashboard resolver with the
admitted-subject answer only annotated on top, so a server reachable by the
session but missing from the dashboard list would be invisible on the page; an
under-report, the mirror of the bug this PR fixes. The connect view now unions
in any session-reachable server the dashboard resolver did not list, built
from the registry and redacted through the same ladder, so page membership
equals the admitted set by construction in both directions
* fix(mcp): honor connected_app_view only for the dashboard UI session credential
The reachability view resolves through the owning user's admitted identity, so
a caller-passed virtual key could use the param to enumerate servers beyond
its own scope (ids, names, descriptions of the owner's wider grants). The view
is now gated on is_ui_session_credential, a predicate factored out of
resolve_ui_session_team_ids so the two user-identity widening sites share one
trust boundary: the SSO-minted dashboard session token acting as its user. Any
other credential gets the param as a no-op and the admitted resolver is never
consulted for it
* fix(mcp): resolve UI sessions with the admitted-user context everywhere, not per endpoint
The list endpoint unioned in session-reachable servers itself while tool
counts, Connect actions, and credential endpoints still authorized through
build_effective_auth_contexts, whose contexts carry team grants but never the
user row's own object permission; a user-granted server could render on the
connect page while every interaction on it failed. The admitted-user context
(the same auth a gateway session resolves with) is now appended inside
build_effective_auth_contexts for UI session credentials, so the page list and
every per-server action endpoint answer identically, and the list endpoint's
one-off union is deleted. Caller-passed keys are still never widened
(is_ui_session_credential gate inside the context builder) and a reload
failure falls back to team contexts only
* fix(mcp): resolve non-admin dashboard sessions as the admitted subject on tool routes
Server reachability on the REST tool routes came from the widened context
union while tool permission checks ran on the bare session key, which carries
no object permission, so a dashboard user could invoke tools their user-level
grant excludes. Rather than bookkeeping which context granted which server,
the routes now choose one principal at the boundary: acting_user_auth swaps a
non-admin UI session for the admitted-subject auth, the same identity a
gateway session resolves with, so reachability, per-source fail-closed tool
ceilings, rate limits, and billing attribution all bind through the admitted
arms that already exist downstream. Admin sessions keep their operator view
and caller-passed credentials are never widened. One swap point per route,
no per-server principal picking, no parallel permission logic
* fix(mcp): derive the connect page's detail view from the reachable server list
The detail view held its own copy of the server object, so it outlived the list it came
from. When a refetch dropped that server as unreachable, the open detail view kept
rendering it and its Connect action still ran: the guard looked the server back up by id
or name in the current list, found nothing, and fell through, because a missing target
read as "nothing to block" rather than "no longer connectable"
Store the selected server's id and derive the row from the list instead. A server the
list no longer carries cannot be the detail view's subject, so the stale render, the
stale tools query and the guard bypass stop being reachable states rather than being
blocked one at a time. handleToggle now takes the server it is toggling, which deletes
the lookup that could miss at all
* refactor(mcp): one owner for the identity a dashboard session acts as
Three call sites reloaded the admitted subject independently, and the management
endpoint carried its own copy of the reload, the HTTPException swallow and the logging.
admitted_user_context is now the only place that answers "what user identity does this
dashboard session act as", and the connected-app reachability helper reads it, which
also drops its dead empty-user_id branch
That owner now carries the request's tracing span onto the admitted principal.
_reload_admitted_user builds a fresh auth from the user row and has no span of its own,
so swapping it in on the REST tool routes silently detached every downstream lookup and
the tool-call logging from the request's trace
Toolset scoping and the acting-as-user swap are mutually exclusive, so they now share
one owner on the tools list route. The admitted subject resolves per grant source and a
team source deliberately carries none of the caller's object_permission, so a toolset
narrowing layered on top would evaporate on every team-granted server: the request would
be admitted through the toolset grant and then served tools from servers the toolset
never named. A request carrying a toolset name stays on the caller's own credential,
exactly as it did before the swap
* fix(mcp): commit every async connect-page write against the list as it stands
Three continuations in the panel decided against state captured before their await and
committed after it, so a reachability refetch landing in between could not be seen
handleToggle validated the server at click time and then, once listMCPTools resolved,
wrote its name into the selection whatever the list had since become; a server the
refresh had dropped was selected anyway. It now re-asks connectableNow at the commit,
and that predicate resolves the id against the current list, so absence fails closed
instead of reading as nothing to block
The load pipeline was worse, because its cancel flag was shared across runs: the
successor's effect body reset it to false before the predecessor's fetch resolved, so a
superseded load could still run setServers and put the dropped server back on the page
outright. The flag is now a per-effect local that only that run's cleanup can clear,
which is also what makes unmount stop the chunked tool-count loop again. The load
passes its own liveness check down to the tool-count and oauth-status writes rather
than having them consult a flag they share with every other run
* fix(mcp): write the connect-page server list to its ref as it is committed
connectableNow resolves a server id against serversRef, but that ref was a mirror kept
in step by a passive effect, so it lagged the state it mirrored by however long React
took to render and flush. A continuation resolving inside that window read the previous
list: the commit-time reachability check would find a server the refetch had already
dropped, call it connectable, and select it, which is the mismatch the check exists to
prevent
The lag was the whole defect, so the mirror is gone. commitServers writes the ref and
the state together, at the one point the list is ever replaced, and the ref is now
never older than the last committed list. Readers that want the newest answer
(connectableNow, the oauth auto-select effect) get it; rendering still derives from
state, so what is on screen is unchanged
Pinned by a test that resolves the refetch and the in-flight Connect in the same tick,
with no render flushed between them, which is the interleaving the earlier regression
could not reach. The two prop mirrors are deliberately untouched: their staleness is
inherent to appending to a parent-owned list from an async callback rather than caused
by the mirror, and no reachability decision reads them
Adds an admin-configured issuer to MCP servers. When set, OAuth metadata is
fetched from the issuer's own origin and adopted only when the document
self-attests that same issuer (RFC 8414 §3.3), making token_endpoint,
registration_endpoint, and scopes authoritative for the pinned issuer instead
of a document the MCP resource server chose. This closes the mix-up where a
compromised resource echoes a pinned authorization_url to smuggle its own
token endpoint and inflated scopes past the corroboration gate. Discovery is
same-authority against the issuer origin, fails closed on a §3.3 mismatch, and
does not fall back to resource-rooted discovery. Rows without an issuer keep
the existing corroboration-gate behavior unchanged.
Backend + schema only; UI field and live-proxy proof follow.
* fix(ui): derive key model scope so SCIM/management/read-only keys stop showing 'All Proxy Models'
key_type is not persisted on a key (the proxy maps it to allowed_routes and
drops it), so the keys tables only inspected the models list and rendered
'All Proxy Models' for any key with an empty models array, including SCIM,
Management and Read-only keys that cannot call a single model.
Add deriveKeyModelScope(allowed_routes) and render 'No model access' with a
scope tooltip for those recognized scopes; unrestricted, AI-API and custom
keys keep the existing model-list rendering.
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* refactor(ui): move key_scope helper to components root
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* feat(keys): persist key_type on virtual keys so the UI reads scope directly
Add a nullable key_type column to LiteLLM_VerificationToken (root, proxy,
and proxy-extras schemas plus an additive migration) and stop dropping the
value in handle_key_type, so management/read_only/llm_api/default keys store
their type alongside the derived allowed_routes. Surface it on the key read
and create response models. The dashboard now prefers the persisted key_type
for the no-inference buckets and keeps the allowed_routes derivation as the
fallback for keys created before the column existed (key_type null), so no
backfill is required.
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* style(keys): use PEP604 X | None for new key_type annotations to satisfy ruff UP045 budget
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* fix(keys): add key_type column to LiteLLM_DeletedVerificationToken
The deleted-token archive model inherits key_type from the verification
token, so regenerate/delete flows write key_type into
LiteLLM_DeletedVerificationToken. Add the column (all schemas + migration)
so the archive insert does not fail with FieldNotFoundError.
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* fix(migrations): regenerate key_type migration via runbook (canonical ADD COLUMN)
Co-Authored-By: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
---------
Co-authored-by: ryan <ryan@berri.ai>
Co-authored-by: Devin AI <158243242+devin-ai-integration[bot]@users.noreply.github.com>
* feat(mcp): let users select the entra_obo token_exchange profile in the UI and API
The backend token_exchange arm supports two wire dialects via token_exchange_profile
("rfc8693" default, or "entra_obo" for Microsoft Entra's On-Behalf-Of, the RFC 7523
jwt-bearer grant), but it could only be set through config.yaml. This surfaces it to the
create/update REST API and the dashboard so an admin can create an entra_obo server there,
completing the parity started in the parent PR for the other token-exchange fields.
token_exchange_profile becomes a dedicated column on LiteLLM_MCPServerTable, mirroring the
sibling fields: it is added to the request models, read column-first in
build_mcp_server_from_table with the credentials-blob as a back-compat fallback and a
default of rfc8693, and carried through both runtime-to-table builders so registry
round-trips preserve it. It is a non-secret dialect selector, so it is not scrubbed from
non-admin or virtual-key responses.
In the dashboard a Profile dropdown (RFC 8693 vs Microsoft Entra OBO) is added to the
token-exchange section. Entra OBO carries the target resource in the scope, so selecting it
makes the scope required and hints the api://<app-id>/.default form, while audience and
subject_token_type (which that dialect ignores) are hidden.
* fix(mcp): extend the blob-to-column lift and non-admin scrubbing to token_exchange_profile
token_exchange_profile gets the same storage contract as the other three
token-exchange settings: the column is authoritative, a blob copy is the legacy
shape — lifted into the column on every write and stripped from the stored
blob — and switching auth_type away from token exchange clears it
(_AUTH_FLOW_SCOPED_FIELDS). Both restricted-view sanitizers scrub it for
uniformity, and the edit form's auth-switch payload nulling includes it.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* test(mcp): assert every token-exchange setting is configurable via config.yaml
Pins the config surface: token_exchange_endpoint, audience, subject_token_type
and token_exchange_profile load from top-level config keys onto the built
server and through to the resolver spec; omitted keys resolve to their
documented defaults (RFC 8693 subject token type, rfc8693 profile), and
token_exchange servers need no oauth2_flow.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
---------
Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
* feat(mcp): support oauth2_token_exchange auth type via REST API and dashboard
OAuth 2.0 Token Exchange (RFC 8693, a.k.a. OBO) for MCP servers could previously only be
configured through config.yaml; the create/update REST API and the dashboard had no way to
express it. This wires token_exchange_endpoint, audience, and subject_token_type end to end.
These three are persisted as dedicated columns on LiteLLM_MCPServerTable, mirroring how token_url
and oauth2_flow are stored, so the edit form prefills them and they are unaffected by the
credentials-blob clearing on auth_type change. build_mcp_server_from_table reads the columns first
and falls back to the credentials blob so servers persisted before the columns existed still load.
client_id and client_secret continue to ride the existing encrypted credentials path.
On the dashboard, "OAuth Token Exchange (OBO)" is a distinct auth-type option with its own field
section. The McpOAuthMode classifier gains a token_exchange arm keyed off auth_type; the previous
catch-all oauth2 mode was renamed from "obo" to "authorization_code" so the two on-behalf-of
mechanisms are no longer conflated. The token-exchange IdP endpoint and audience are scrubbed from
non-admin and virtual-key responses, matching how token_url is treated.
* fix(ui): gate the MCP list-401 re-auth on authorization_code, not token_exchange
The renamed 401 gate keyed off isTokenExchange, but that condition exists for authorization_code:
when a stored per-user credential is present yet the tools/list 401s (the backend's refresh could
not mint a token), the user must re-authorize via the browser flow. token_exchange has no
gateway-side authorize step, so the Authorize gate never applied to it. The prior isObo flag was
undefined (a compile error) and, per this file's convention and its tests, meant authorization_code;
renaming it to isTokenExchange changed the behavior and broke the mcp_tools auth-gate test for an
authorization_code server whose token expired with no usable refresh. Gate on isAuthorizationCode
instead and drop the now-unused isTokenExchange
* fix(mcp): clear flow-scoped endpoint config when a server's auth_type changes
Switching an existing oauth2 server to oauth2_token_exchange left the old flow's
token_url on the row. The OBO resolver treats token_exchange_endpoint or token_url
as the configured exchange endpoint, so the stale value both suppressed the RFC
9728/8414 discovery this PR adds and sent the exchange grant (client credentials
plus the user's subject token) to the previous flow's token endpoint
update_mcp_server now mirrors its existing stale-credentials rule for the
flow-scoped columns (authorization_url, token_url, registration_url, oauth2_flow,
token_exchange_endpoint, audience, subject_token_type): when auth_type changes,
each one is cleared unless the same request explicitly provides it, so a
deliberate override in the switch request still wins. Updates that keep the
auth_type never touch these columns, which keeps legacy OBO rows that use
token_url as their exchange endpoint working
The edit form sends explicit nulls for the previous flow's fields on an auth type
switch; antd preserves unmounted field values by default, so without this the old
token_url would be re-sent verbatim and read as an explicit override. Transitions
are detected against the persisted auth_type, so saves that keep the auth type
send nothing extra
Reported by Cursor Bugbot on the PR
* fix(mcp): lift legacy blob token-exchange settings into their columns on every write
The three token-exchange settings live in dedicated columns but also exist on
MCPCredentials as the pre-column REST shape. Writes now lift incoming blob
values into the columns (an explicit top-level value wins, including an
explicit null) and strip them from the stored blob; the same-auth credentials
merge migrates legacy rows the same way. The read-time column-or-blob fallback
then only ever serves rows current code has never written, so clearing a column
to re-enable RFC 9728/8414 discovery can no longer be silently undone by a
stale blob copy.
Also asserts the auth-switch clearing fires on the external fields_set path
(PUT /v1/mcp/server).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* refactor(mcp): single source for the RFC 8693 default subject_token_type
The default was applied at four egress build sites plus two model defaults,
each with its own copy of the literal. All sites now share
DEFAULT_SUBJECT_TOKEN_TYPE from litellm.types.mcp. A DB-level DEFAULT is
deliberately not used: Prisma writes explicit values on insert, so a column
default would rarely apply, and NULL-means-RFC-default keeps existing rows
correct.
Also documents two review decisions in place: the audience column keeps the
RFC 8693 parameter name (RFC 8707 resource indicators are already a separate
concept named resource in the v2 egress types), and the migration's
out-of-order timestamp is safe under prisma migrate deploy.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* chore: fix import sort order in outbound_credentials/types.py (I001 strict budget)
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(mcp): purge legacy blob copies when a token-exchange column is written without credentials
The migrate-on-write in the credentials merge lifts blob values into null
columns, which is correct for legacy rows but could repopulate a column an
admin had cleared in an earlier no-credentials update (that path never touched
the blob, so the stale copy survived to be lifted later). An explicit
token-exchange column write (set or clear) now migrates the row even when the
update carries no credentials: untouched null columns are lifted, every blob
copy is stripped, and unrelated blob keys stay as-is. A cleared column can then
never be resurrected, because no write path leaves a blob copy behind.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* docs(mcp): state the blob-to-column lift contract on the legacy credential keys
The three token-exchange keys on MCPCredentials are the pre-column REST shape
(the only REST shape from 2026-05 until this PR). Document on both the blob
type and the request models that the dedicated columns are authoritative and
that writes lift blob values into them and strip the stored copy.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
* fix(mcp): scrub subject_token_type in the non-admin and virtual-key sanitizers
The other two token-exchange fields were cleared while subject_token_type was
left visible. It is a public RFC 8693 URN with no disclosure value, but the
sanitizers' rule is that these views receive no token-exchange config at all —
cleared for uniformity.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
---------
Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
CacheCodec.serialize dumped cached Pydantic models with model_dump(exclude_none=True), which drops any None-valued key, while deserialize does a strict model_validate. For a model with a required-but-nullable field (Optional[X] with no default), a None value is dropped on write and then fails model_validate on read with "Field required", so the entry can never be read back; that is a permanent cache miss, and in readers that rebuild the model from the raw cached dict an uncaught ValidationError that surfaces to the client as a 401
Removing exclude_none makes serialize and deserialize a lossless pair, so None fields are written as null and survive the round trip. LiteLLM_ManagedVectorStoresTable, the one cached model still carrying required-nullable fields and mis-caching on every read today, also gets the None defaults its peers already have
Add an optional per-server max_concurrent_requests that caps how many
tool calls LiteLLM sends to one MCP server at once, so batch-processing
backends are not overwhelmed by unbounded parallel dispatch. Excess calls
queue on a per-server asyncio.Semaphore instead of being rejected. Unset
or non-positive means unlimited, preserving existing behavior.
Resolves LIT-2749
* feat(mcp): add tool search virtual tools for large catalogs
When mcp_tool_search_enabled is set on a key's object_permission,
tools/list returns only mcp_tool_search and mcp_tool_call instead of
the full catalog. The LLM searches by keyword then calls discovered
tools by name, avoiding context bloat with 100+ tool deployments.
* fix(mcp): persist mcp_tool_search_enabled and route tool_call by name
The mcp_tool_search_enabled flag existed on the Pydantic models but the
Prisma schema lacked the column, so keys generated with the flag never
persisted it and tools/list kept returning the full catalog. Add the
column across all three schema.prisma copies plus a migration.
handle_mcp_tool_call passed server_name="" into call_tool, which built a
malformed prefixed name ("-<tool>") and failed to resolve the server.
Resolve the caller's allowed servers and dispatch through execute_mcp_tool
instead, matching how the normal /tools/call path routes.
* fix(mcp): filter list_tools to virtual tools on the protocol path
The REST surface (/mcp-rest/tools/list) returned only the two virtual
tools when mcp_tool_search_enabled was set, but the MCP protocol handler
(handle_list_tools, used by real MCP clients over streamable-http/SSE)
still returned the full catalog. Apply the same early return there so an
actual MCP client sees mcp_tool_search and mcp_tool_call instead of every
tool. call_tool was already intercepted on this path.
* fix(mcp): enforce IP + server filtering on virtual tool search/call
Review flagged that the virtual mcp_tool_search/mcp_tool_call path skipped
access controls the normal MCP flow applies. mcp_tool_call resolved allowed
servers from key permissions only, never applying IP filtering, so a caller
on a public IP could invoke a tool on a server marked
available_on_public_internet: false. mcp_tool_search listed the raw catalog
via global_mcp_server_manager.list_tools, exposing tool names/schemas that
/tools/list would hide and ignoring per-key/per-server tool filters.
Route both virtual handlers through the same filtered paths used by the
normal MCP flow: search now calls _list_mcp_tools and call resolves servers
via _get_allowed_mcp_servers, both threaded with the request client IP so
filter_server_ids_by_ip applies. execute_mcp_tool then enforces the server
allowlist and per-key tool permissions. Thread client_ip through
_list_mcp_tools/_get_tools_from_mcp_servers and pass it from the REST and
SSE call sites.
* fix(ci): ruff format server.py and sync dashboard API types
ruff format normalizes the list_tools client_ip changes in server.py, and
schema.d.ts gains the mcp_tool_search_enabled object-permission field so the
generated dashboard types match the proxy OpenAPI spec.
* style(mcp): drop quoted annotations and sort imports
Clears UP037 on the virtual tool handler signatures (redundant with
from __future__ import annotations) and I001 on the list_tools import block.
* refactor(mcp): extract virtual-tool dispatch and host progress capture
Pulls the mcp_tool_search/mcp_tool_call interception and the host
progress-callback setup out of mcp_server_tool_call into helpers, keeping
that handler under the strict cyclomatic-complexity ceiling after the
client_ip threading. No behavior change.
* test(mcp): cover SSE virtual-tool dispatch and host progress helpers
Adds unit tests for _dispatch_virtual_mcp_tool (non-virtual passthrough,
flag-disabled rejection, search/call routing with client_ip),
_capture_host_progress_callback, and the protocol list_tools virtual
early-return, covering the new server.py paths.
* fix(mcp): forward per-request auth headers through virtual tool handlers
The virtual mcp_tool_search/mcp_tool_call path intercepted the request
before the normal header extraction ran, so client-supplied per-request
auth (Authorization for upstream pass-through, x-mcp-auth-<alias>) was
dropped and execute_mcp_tool/_list_mcp_tools received None. Thread
mcp_auth_header, mcp_server_auth_headers, oauth2_headers, and raw_headers
from both the REST and SSE call sites through the handlers so upstream MCP
servers that require pass-through auth can be listed and called.
* fix(mcp): preserve requested server scope in virtual tool calls
A scoped MCP session (/mcp/<server>/ or header-scoped) carries an
mcp_servers scope that the normal call path passes into routing so the
session can only reach that server. The virtual-tool branch dropped it and
resolved with mcp_servers=None, letting a scoped session call mcp_tool_call
for any server the key can access. Thread the context mcp_servers scope
through _dispatch_virtual_mcp_tool into both handlers so search and call
resolve against the same scoped server set.
* fix(mcp): convert virtual tool errors to isError on the protocol path
The virtual-tool dispatch ran before the protocol handler's HTTPException
and guardrail handling, so a rejected virtual call (e.g. an out-of-scope
403 from execute_mcp_tool) raised out of mcp_server_tool_call and broke the
MCP JSON-RPC stream instead of returning an isError CallToolResult. Move
the dispatch inside the same try that wraps call_mcp_tool so virtual-tool
errors get the same isError conversion as normal tool calls.
* fix(mcp): spend-log virtual tool calls on the REST path
The REST virtual-tool branch returned before common_processing_pre_call_logic,
so execute_mcp_tool ran without a litellm_logging_obj and virtual mcp_tool_call
invocations were not spend-logged or guardrail-checked like normal calls. Run
the same pre-call pipeline in the call branch and thread the resulting
litellm_logging_obj through handle_mcp_tool_call into execute_mcp_tool.
* fix(mcp): reject virtual tool call when key has no accessible servers
handle_mcp_tool_call passed an empty allowed_mcp_servers list into
execute_mcp_tool; an unprefixed local tool name then fell through to the
local registry, which has no server permission check, so a key with only
mcp_tool_search_enabled and no server grants could run operator-configured
local tools by name. Reject with 403 before dispatch when no servers are
accessible, matching call_mcp_tool.
* docs(mcp): document virtual tool_search module and parity rule in AGENTS.md
* style(mcp): apply ruff format at repo line-length (120)
* fix(mcp): add mcp_tool_search_enabled to ObjectPermissionDict and customer test fixture
* chore: trigger CI
* fix(mcp): mirror pre-call pipeline, guard imports, coerce top_k, honor include_disabled_tools
- SSE mcp_tool_call now runs common_processing_pre_call_logic so it spend-logs and runs guardrails like the REST path (P1)
- coerce_top_k avoids ValueError on non-integer top_k from clients (both REST and SSE)
- guard mcp.types import in tool_search behind runtime/TYPE_CHECKING per package convention
- admin list with include_disabled_tools returns the real catalog even when mcp_tool_search_enabled is set
* feat(proxy): type Customer Management response_model for OpenAPI coverage
Add response_model to the five remaining untyped /customer operations
(block, unblock, new, update, delete) so the generated OpenAPI schema
documents a concrete response body. new/update reuse the canonical
LiteLLM_EndUserTable (matching info/list); block, unblock, and delete
get small dedicated models in
litellm/types/proxy/management_endpoints/customer_endpoints.py.
Together with the already-typed info/list/daily-activity routes this
brings the Customer Management group to full response_model coverage.
Regression tests assert each public /customer/* route declares the
expected response_model and that /customer/new surfaces a typed schema
in app.openapi(), so dropping a response_model fails CI.
* fix(proxy): keep budget_id in typed customer responses
Address review feedback on the Customer Management response_model typing.
Greptile flagged that response_model=LiteLLM_EndUserTable on /customer/new
and /customer/update silently drops fields the raw Prisma model_dump()
echoed. Checking the schema, budget_id is the only such scalar column that
was missing from the Pydantic model (created_at/updated_at/tpm_limit do not
exist on litellm_endusertable), so add budget_id to LiteLLM_EndUserTable.
This restores budget_id on new/update and also fixes the pre-existing gap
where /customer/info and /customer/list (already typed) dropped it, which
the UI Customer type expects. A regression test pins budget_id surviving the
response_model filter on /customer/update.
Also document UnblockUsersResponse.blocked_users via a Field description: it
holds the users that remain blocked after the call. The key name predates
this PR and is kept to avoid a backwards-incompatible rename on a beta route.
* fix(proxy): keep nested budget fields in customer responses
response_model=LiteLLM_EndUserTable nests the budget as the narrow write
allowlist LiteLLM_BudgetTable, which silently drops the server-managed
fields the customer endpoints used to return (budget_reset_at, created_at).
Introduce CustomerResponse, a thin response model that nests
LiteLLM_BudgetTableFull (the repo's budget response model), and apply it on
/customer/new, /customer/update, /customer/info and /customer/list. list
also builds CustomerResponse so its budget isn't narrowed at construction
time. created_by/updated_at/updated_by remain omitted, matching how budgets
are returned elsewhere.
The shared LiteLLM_EndUserTable is left untouched: it's constructed in many
places that pass narrow budget instances, and pydantic v2 won't coerce a
budget instance into a wider nested model. Typing only at the response
boundary (where the handler hands FastAPI a dict) sidesteps that. A
regression test pins budget_reset_at + created_at through the filter and
asserts the internal audit fields stay out.
* test(proxy): add golden-master characterization tests for customer responses
Lock the exact JSON body each customer-object endpoint (info/list/new/update)
and delete return today, so the upcoming type-safety refactor of the handlers
is only allowed to land if it reproduces these byte for byte. Pins null-field
inclusion, the nested budget shape (server fields kept, audit fields dropped),
and object_permission reverse-relation stripping. Green against current code.
* refactor(proxy): make the customer response flow type-safe
Replace the untyped dict + bolt-on response_model pattern on the customer
object endpoints with explicit typed construction. A single mapper,
_to_customer_response, validates a DB row into CustomerResponse at one
Any -> typed seam; new/update/info/list now return it (or a list of it) and
carry real -> CustomerResponse / -> List[CustomerResponse] return
annotations, and delete returns DeleteCustomersResponse. basedpyright now
verifies the handlers' return shapes instead of a runtime filter doing it
silently.
This also deletes the four copy-pasted object_permission reverse-relation
cleanup loops: pydantic's extra=ignore drops those undeclared fields during
validation, so the loops were dead code (proven by the golden-master tests,
which stay byte-for-byte green). basedpyright errors on the file drop from
140 to 116, all from removed dict plumbing.
CustomerResponse stays a thin subclass of LiteLLM_EndUserTable so it inherits
the existing validators/config unchanged (behavior preservation); only the
nested budget type is widened.
* refactor(proxy): annotate customer response mapper param as BaseModel
Address review nit: the mapper's untyped `record` added an ANN001 violation.
The incoming rows are pydantic v2 models, so type the param as BaseModel
rather than object (object has no model_dump, which would just move the
problem to basedpyright). This clears the ANN001 and also drops three
basedpyright unknown-type violations the untyped param was adding.
* style(test): ruff format customer endpoint tests
* test(proxy): give customer budget test update mocks a valid model_dump
The type-safe response refactor validates the update result via
_to_customer_response (CustomerResponse.model_validate(record.model_dump())).
These budget tests mocked the end-user update to return a bare MagicMock,
so model_dump() yielded a MagicMock that fails validation. Give each update
mock a minimal valid dict; the tests assert on the prisma calls, not the body.
* chore(ui): regenerate API types from proxy OpenAPI spec
* fix(ui): make generated API types stable across Python versions
Python 3.13 strips a docstring's common leading indentation at compile
time while 3.12 keeps it, so app.openapi() emits differently-indented
description strings depending on the interpreter. The dashboard type
generator ran locally on 3.13 and in CI on 3.12, so schema.d.ts drifted
and the "Verify schema.d.ts matches the proxy OpenAPI spec" check failed
Normalize every description through inspect.cleandoc in the spec dump so
the output is identical regardless of interpreter, then regenerate
The repo linted at 120 (E501, isort) but ran ruff format at 88 via a
--line-length 88 override in the Makefile and CI, leaving the formatter
and the linter disagreeing on wrap width. Drop the override so ruff.toml's
line-length = 120 is the single source of truth and reformat the tree to
match.