dev-docs/v4-notes/known-gaps.md
The migration ships with a small set of deliberate compatibility boundaries and expected test gaps. FastMCP now depends on the stable MCP Python SDK 2.0 line; this page tracks what remains for the beta-to-stable transition and the advisory relationship with the SDK team.
The unit suite has three expected xfails. Two are strict SDK compatibility checks, so an upstream fix turns them into failures and prompts us to remove the markers.
Stateless HTTP elicitation (tests/client/test_streamable_http.py). One parametrized case exercises server-initiated elicitation over stateless HTTP. The sessionless protocol has no server-to-client back-channel, so the case is expected to xfail by construction. Guard-mode elicitation is the supported modern path.
MCP Apps (tests/test_apps.py). Two strict xfails track sdk-feedback #2: the SDK strips capabilities.extensions at pre-2026 negotiated versions, so the UI extension cannot be advertised to legacy-era clients. Modern clients receive the extension normally.
Credential-gated GitHub integration suites also use conditional xfail markers when their environment variables are absent. Those are test-environment controls rather than product gaps and are not part of the GA decision.
Every shim in the migration is temporary and carries a documented removal trigger.
| Shim | Location | Removal trigger |
|---|---|---|
_compat.py — camelCase field bridge | fastmcp_slim/fastmcp/_compat.py | User-migration aid; removed in a future release after users migrate reads to snake_case. Users can preview removal with mcp_camelcase_compat = False. |
FastMCPRequestContext ContextVar | fastmcp_slim/fastmcp/server/dependencies.py | The SDK deliberately passes context as an argument with no ContextVar; FastMCP's public get_context() needs ambient access, and the shim also lifts _meta, which the SDK's TypedDict drops. No planned removal — this is a permanent boundary, not a beta gap. |
FastMCPServerMiddleware | fastmcp_slim/fastmcp/server/low_level.py | Already the native SDK ServerMiddleware path; no cleaner hook exists. Permanent. |
Client get_session_id header sniff | fastmcp_slim/fastmcp/client/transports/http.py | SDK exposes session id (or an on_session_created callback) from streamable_http_client, at parity with sse_client (sdk-feedback #5). |
_sdk_context_shim.py — generic handler aliases | fastmcp_slim/fastmcp/client/_sdk_context_shim.py | The SDK's ClientRequestContext is not subscriptable, so FastMCP keeps the public generic SamplingHandler/RootsHandler/ElicitationHandler aliases. Permanent unless the SDK makes the context subscriptable (sdk-feedback #7). |
The 2026-07-28 era is stateless by protocol construction, and the recurring maintainer question is whether that statelessness has to be woven through FastMCP everywhere. It does not — but the honest accounting has three parts: features that are legacy-only because the protocol removed the mechanism, features that already work because they never relied on a session, and a short list of design holes where the current code doesn't error but also doesn't work. Everything below concerns 2026-07-28 connections only. Every client in the field today negotiates a handshake era, where all of this behaves exactly as it always has.
The SDK ground truth. On the modern paths the SDK's Connection is strictly per-request: a fresh Connection is built from each POST's envelope, its exit_stack unwinds when the request returns, connection.session_id is always None, and connection.state is a fresh dict per request. The manager's stateless flag never enters the picture — modern routing short-circuits ahead of it. There is no standing server→client stream: notifications emitted during a request ride that POST's own SSE sink, and anything emitted after the POST returns is dropped (_NO_CHANNEL); server→client requests raise NoBackChannelError. The only replacement is subscriptions/listen, which carries four list-changed / resource-updated event kinds and nothing else — no logging, progress, or task-status events, no resumability, and it is not yet wired into FastMCP. There is no EventStore or Last-Event-ID on modern paths at all; both belong to the legacy transport.
These are not bugs. The protocol removed the mechanism they depend on, so they are simply out of scope on 2026-07-28:
logging/setLevel is absent from the 2026 method registry, so the _client_log_levels handler is unreachable. There is no per-session log-level state because there is no session.EventStore / resumability. EventStore, SessionScopedEventStore, and Last-Event-ID resumption are never constructed on the modern paths. Resumability presupposes a durable stream, which the era does not have.These work on 2026-07-28 today because they never leaned on a protocol session:
tasks/get polling. Task result retrieval is keyed by task_id and backed by Docket/Redis, so a client polls across independent requests without any session affinity. This session-free polling is exactly why the execution engine survives the SEP-1686-to-SEP-2663 rework: the SEP-2663 wire shape (poll tasks/get, resolve in-task input via tasks/update) maps onto the same durable store, and SEP-2663's Mcp-Name: <taskId> routing header is moot for a shared-Redis deployment where any replica can serve the poll. See the xfail register.The remaining items are real holes, deferred to the first-class 2026 client workstream because they all reduce to one unanswered question — what is a session when the protocol has none? The danger in each is that the code currently returns without erroring, which reads as "works" but is actually silent degradation. Again: these affect 2026-07-28 connections only; on the handshake eras every one of them behaves correctly.
ctx.session_id and ctx.set_state / ctx.get_state (broken even single-replica). On a modern request ctx.session_id mints a fresh uuid4, cached on the per-request connection.state that is discarded when the request returns. So ctx.set_state and ctx.get_state silently never round-trip across requests — no error, just lost data. The open design decision is whether session_id should become None with set_state documented as session-era-only, or be re-based on an app-level key (the auth subject, or a client-supplied header).input_required, surfaces its outstanding elicit/sample/roots requests in an inputRequests map on tasks/get, and the client answers via tasks/update. That round-trips through the durable store with no session affinity, so it is stateless-safe by construction. The SEP-1686 push relay (server/tasks/elicitation.py, notifications.py) is removed; the fastmcp-tasks rebuild implements the poll-based channel instead. Foreground (non-task) elicitation on 2026 remains the guard-mode InputRequiredResult._caches are keyed by the per-request Connection, so on modern connections the proxy collapses to stateless proxying: results stay correct, but the per-session affinity guarantee is lost. This is decided alongside the session_id question — same root — or gated to the legacy/stdio transports.Multi-replica concerns (per-process rate-limiter buckets, shared Redis backends for state and tasks, a Redis SubscriptionBus) are deployment configuration rather than protocol gaps and are out of scope for this section.
FastMCP acts as an advisor to the SDK team. The migration produced a dossier of ten findings (sdk-feedback.md) — verified bugs and hard edges to report upstream, plus questions to bundle into a feedback thread. The highest-priority items:
CreateTaskResult on tools/call through the extensions mechanism, which the registries already admit.capabilities.extensions stripped at pre-2026 negotiated versions. Elevated: this now gates the io.modelcontextprotocol/tasks extension (and MCP Apps) on the modern era, so it blocks a flagship v4 feature rather than an edge case. Worth prioritizing in the upstream thread.javascript:/data: schemes.streamable_http_client drops session-id access with no replacement.message_handler.ctx.elicit / ctx.sample are era-gated to raise a clear error on modern connections (#4448).Filing is gated on maintainer approval of each issue text.
Separately, the SDK delegation round two work depends on three upstream feature requests — per-session event-store scoping, a user-middleware injection hook, and a lifespan hook — that would let FastMCP collapse its HTTP builders onto the SDK's and inherit the SDK's session-owner credential enforcement.
The beta-to-stable transition is a small set of tracked steps:
fastmcp-slim requires mcp>=2.0.0,<3.0.0 and mcp-types>=2.0.0,<3.0.0; the lock resolves both to 2.0.0.capabilities.extensions on legacy handshakes. Record that choice in the public protocol-support docs.4.0.0: Fourmidable changelog and update entries, and merge those changes to main before tagging so the stable docs publication PR contains them.release/3.x is protected and continues receiving security and compatibility patches for SDK v1 users.