Описание
RMCP: Missing Resource Field Validation in OAuth Protected Resource Metadata Discovery
Summary
The rmcp library does not validate the resource parameter in OAuth Protected Resource metadata (RFC 9728), allowing a malicious MCP server to redirect OAuth flows to a legitimate authorization server and steal the resulting access tokens.
Details
RFC 9728 specifies two MUST requirements for resource parameter validation:
- Section 7.3: the client MUST ensure that the resource identifier URL it is using as the prefix for the metadata request exactly matches the
resourcevalue in the returned metadata document. - Section 3.3: if the
resourcevalue returned is not identical to the URL the client used, the data MUST NOT be used.
In the current implementation (crates/rmcp/src/transport/auth.rs), the ResourceServerMetadata struct (lines 390–394) does not include a resource field:
And discover_oauth_server_via_resource_metadata() (lines 1446–1465) proceeds without any resource URL validation.
Recommended fix
- Add the
resourcefield to the struct:struct ResourceServerMetadata { resource: Option<String>, // RFC 9728 REQUIRED field authorization_server: Option<String>, authorization_servers: Option<Vec<String>>, scopes_supported: Option<Vec<String>>, } - Add validation logic after fetching metadata:
let Some(resource_metadata) = self .fetch_resource_metadata_from_url(&resource_metadata_url) .await? else { return Ok(None); }; // RFC 9728: validate that the resource identifier matches our target server if let Some(resource) = &resource_metadata.resource { if resource.trim_end_matches('/') != self.base_url.as_str().trim_end_matches('/') { return Err(AuthError::MetadataError(format!( "Resource metadata mismatch: expected '{}', got '{}'", self.base_url, resource ))); } }
PoC
-
Attacker sets up a malicious MCP server at
fake-mcp.com/mcp. -
At
fake-mcp.com/mcp/.well-known/oauth-protected-resource, the attacker serves metadata declaring:- resource:
real-mcp.com/mcp(the legitimate server) - authorization_servers: the legitimate authorization server(s) of
real-mcp.com/mcp
- resource:
-
Victim configures any MCP client using
rmcpto connect tofake-mcp.com/mcp. -
rmcpfetches the protected resource metadata and, without validating that theresourcefield (real-mcp.com/mcp) differs from the configured server (fake-mcp.com/mcp), initiates an OAuth flow with the legitimate authorization server. -
The victim sees a legitimate authorization prompt and completes the flow.
-
The resulting access token — valid for
real-mcp.com/mcp— is sent tofake-mcp.com/mcpin subsequent requests. -
The attacker captures the token and can impersonate the victim on
real-mcp.com/mcp.
Impact
This is an access token theft vulnerability via OAuth resource metadata spoofing. All MCP clients built on rmcp that rely on OAuth-protected MCP servers are affected. An attacker who tricks a user into connecting to a malicious MCP server can steal valid access tokens for any legitimate MCP server, enabling full impersonation of the victim.
Credit
Jian Cui, Minsun Shim, Zhou Li, Xiaojing Liao University of Illinois Urbana-Champaign (UIUC) University of California, Irvine (UCI)
Ссылки
- https://github.com/modelcontextprotocol/rust-sdk/security/advisories/GHSA-33f5-2c5q-wgwj
- https://nvd.nist.gov/vuln/detail/CVE-2026-63127
- https://github.com/modelcontextprotocol/rust-sdk/pull/937
- https://github.com/modelcontextprotocol/rust-sdk/commit/c1a8b29ff2cc45e7820b900dae42cbb4958089ec
- https://github.com/modelcontextprotocol/rust-sdk/releases/tag/rmcp-v2.0.0
Пакеты
rmcp
< 2.0.0
2.0.0
Связанные уязвимости
RMCP is an official Rust SDK for the Model Context Protocol. Prior to 2.0.0, the rmcp crate's OAuth implementation in crates/rmcp/src/transport/auth.rs omits the RFC 9728 resource field from ResourceServerMetadata and allows discover_oauth_server_via_resource_metadata to use protected-resource metadata without confirming that the returned resource identifier exactly matches the configured MCP server. A malicious MCP server can publish metadata for a different legitimate MCP resource and its authorization server, causing a victim who connects and completes the authorization flow to obtain a legitimate access token that the client subsequently sends to the malicious server. The attacker can capture the token and impersonate the victim against the legitimate MCP resource within the token's granted scopes. This issue is fixed in version 2.0.0.