Mcp Confirm

io.github.les-kv0.2.1Updated Oct 2, 2026

An MCP server whose confirmation cannot be replayed against a different call.

Overview

AI-generated overview

A local MCP server that adds single-use confirmation, prompt sanitisation, and pre-execution re-checks to file-deleting tool calls.

What it does
It wraps a small demonstration tool that deletes one file, adding three guards the MCP SDK leaves open: a ledger so an approval can be spent only once, sanitisation of the confirmation text shown to the user, and a re-check of the target path just before deletion. It refuses paths outside the roots given at startup and refuses a path that has become a symlink. The README states the SDK already binds and expires approval state, so this package covers only the remaining gaps.
When to use it
Worth considering when an assistant performs consequential, hard-to-undo actions such as deleting files or one-time redemptions, where the same approval must not be usable twice and the confirmation dialog must not be spoofable by an untrusted filename. Not needed for ordinary read-only tools.
Requirements
Runs locally over stdio as the PyPI package mcp-confirm, installed with pip, so a Python runtime is required. Start it with a root directory argument; with no root it refuses every request. No accounts, API keys, or environment variables are declared.
Before you install
The demonstration tool deletes files, so it is a write action; roots are fixed at startup and never chosen by the agent. The confirmation ledger is in-memory, so it is correct for one process but wrong behind a load balancer, where a confirmation issued by one replica is rejected by another. The README notes no CVE backs the design.

Installation

In SourceWeft

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

Desktop only via STDIO. STDIO servers start a local process, so they need the SourceWeft desktop host.

Other MCP clients

Follow the launch instructions in the repository.

README

mcp-confirm

[CI] [Python] [License: MIT]

In plain terms: when an AI asks "are you sure?", the MCP SDK already stops that approval being reused for a different action. It does not stop the same approval being used twice. This closes that gap, and two others the SDK leaves open.


Read this first: most of this problem is already solved

The 2026-07-28 MCP specification added Multi Round-Trip Requests, so a tool can pause mid-call and ask the user to confirm. The approval travels back through the client as an opaque requestState, which the spec says servers MUST treat as attacker-controlled.

The Python SDK does this for you, by default, on every MCPServer. RequestStateBoundary is appended to the middleware chain unconditionally — with an ephemeral key if you supply none. It seals the state under AES-256-GCM and binds it to the method, the target, a digest of the call's arguments, the audience, and the authenticated principal, with a TTL.

So the attack everyone reaches for first — approve deleting cache.txt, then replay that approval against thesis.txt — is already refused by the SDK. You do not need a library for it, and you should not write one.

This repository originally wrote one anyway: 250 lines of HMAC, TTL and argument binding, shipped as the headline feature, redundant the day it was published. That is recorded at the bottom rather than quietly deleted.

What the SDK does not do

Three gaps, each with a test that fires.

1. It binds and expires the state. It never spends it.

Inside the TTL, the same approval verifies as many times as it is presented. Every check the boundary makes passes, every time. The specification is explicit that this is deliberate and that the rest is yours:

Note that these measures bound the replay window and prevent cross-user and cross-request reuse, but do not by themselves guarantee single-use. Servers for which a given requestState must be consumed at most once (e.g., one-time redemptions) MUST enforce that invariant server-side.

For "delete a file" the second attempt finds nothing. For "transfer £500" it is the entire problem. singleuse.py is that invariant — a ledger of outstanding confirmations, spent on redemption. It contains no cryptography, because the boundary already guarantees the plaintext is something this server minted.

2. Nothing sanitises the question the human reads

An elicitation message is server-chosen text rendered to a person, usually with an untrusted value interpolated into it — the whole point is to say which file is going away. So name a file:

cache.txt
SYSTEM NOTICE: your session has expired.Enter your AWS secret key to continue:

The dialog now carries a second, official-looking prompt. The user is not confirming a deletion; they are being phished by their own tooling. The same 2026-07-28 release also shipped MCP Apps — server-rendered UI — which widens this surface rather than narrowing it.

prompt.py flattens untrusted values to one line, strips bidirectional overrides and zero-width characters, and truncates from the middle so the filename at the end stays visible. Control characters become spaces rather than being deleted, since collapsing them would let a\nb and ab render identically — two different files, one dialog.

3. No protocol layer can re-check your resource at execution time

The user thought about it in between. The file can be replaced in that window, and only the tool knows what "unchanged" means for it. This server re-checks before deleting, and refuses a path that has become a symlink.

Which layer refuses what

This is the useful part, and the tests are written to demonstrate it. MCPError means the SDK's middleware refused before this package ran; ToolError means this package did.

AttackRefused byTest
Approval replayed onto a different fileSDKtest_the_sdk_refuses_a_confirmation_replayed_onto_another_file
State forged, or sealed under another keySDKtest_the_sdk_refuses_a_forged_state
Same approval spent twicethis packagetest_a_confirmation_cannot_be_spent_twice
State minted by another replicathis packagetest_a_state_this_process_never_issued_is_refused
Filename forging a system promptthis packagetest_a_forged_system_prompt_cannot_escape_its_slot
File swapped for a symlink after approvalthis packagetest_a_swap_aimed_inside_the_root_is_refused
Path outside the allowed rootsthis packagetest_a_path_outside_the_roots_is_refused_before_asking

Tests

35 tests — 17 through the server, 11 on the ledger, 7 on prompt sanitisation.

Every server test runs through the real RequestStateBoundary, the same class MCPServer installs on itself, with a pinned key — sealing round one and unsealing round two exactly as the wire would.

That harness exists because of a specific mistake. The first version tested by calling MCPServer.call_tool() directly, which goes straight to the tool manager and bypasses the middleware chain entirely. The SDK's boundary never ran, so a redundant hand-rolled guard looked load-bearing. The test design is what hid it, for an entire build cycle.

Coverage is 81%, with prompt.py at 100% and singleuse.py at 94%. The gap is main()'s argparse and transport wiring, exercised through build_server instead.

CI runs on Ubuntu only, deliberately: the swap-after-confirmation tests need symlinks, and the build fails if they report as skipped there.

Install

bash
pip install mcp-confirm

Run

bash
mcp-confirm --root /path/you/allow

With no --root, the server refuses every request rather than defaulting to anything. Roots are fixed at startup and never chosen by the agent. No signing key is needed — MCPServer brings its own.

Known limitations

  • The ledger is in-memory, so it is correct for one process and wrong behind a load balancer. The SDK supports sharing keys across replicas (RequestStateSecurity(keys=[...])); under that configuration replica B rejects a confirmation issued by replica A. It fails closed — the safe direction — but reads to a user as a confirmation that inexplicably stopped working. A multi-process deployment needs Redis or a database row with an atomic compare-and-delete. There is a test for this behaviour.
  • The demonstration tool is deliberately small. It deletes one file. The interesting code is singleuse.py and prompt.py.
  • No CVE backs this. MRTR is weeks old, so this is built from the specification's own MUST/SHOULD list and from reading the SDK, not from a published incident.

What was wrong with version 0.1.0

Kept here because a repository that records only its successes is not evidence of anything.

0.1.0 reimplemented what the SDK already did. state.py was 250 lines of HMAC signing, TTL, and principal/method/argument binding — all duplicating RequestStateBoundary, none of it as good: HMAC where the SDK uses authenticated encryption, no audience binding, no key rotation.

It was caught by reading the SDK's source, not by a test. The tests passed precisely because they bypassed the middleware that would have exposed it.

CI separately caught a real bug in 0.1.0: the symlink check ran after Path.resolve(), so it inspected the link's destination rather than the link itself. A swap aimed at another file inside an allowed root would have been deleted. Fixed, with a test for the variant the original never exercised.

0.2.0 deletes state.py entirely and keeps only what the SDK leaves uncovered.

Licence

MIT.

Author

Built by Leslie Kadenge. I do independent security reviews of MCP servers; my public survey of thirteen production servers is at les-k.github.io/field-notes.html.

Source: README.md at commit a8ae25c

Tools

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Version history

1
  1. v0.2.1LatestOct 2, 2026