PraisonAI: Arbitrary File Read via `@file:` Mention Path Traversal
The MentionsParser in src/praisonai-agents/praisonaiagents/tools/mentions.py processes @file: mentions in agent prompts by reading arbitrary files from the filesystem. When a file path is not found relative to the workspace, the parser falls back to using the path as an absolute path without any validation or boundary check. This allows an attacker who can influence agent prompts (via chat messages, Telegram/Discord/Slack bot inputs, or YAML workflow configs) to read any file on the filesystem accessible to the process user.
Vulnerable code (lines 165–178):
def _process_file_mention(self, file_path: str) -> Optional[str]:
"""Process @file:path mention."""
try:
# Resolve path relative to workspace
full_path = self.workspace_path / file_path
if not full_path.exists():
# Try as absolute path
full_path = Path(file_path)
if not full_path.exists():
self._log(f"File not found: {file_path}", logging.WARNING)
return f"# File: {file_path}\n[File not found]"
content = full_path.read_text(encoding="utf-8")
The vulnerability is in the fallback at line 171–172: When the file is not found relative to workspace_path, the code constructs full_path = Path(file_path), which accepts any absolute or relative path without validation. There is no:
.. path traversal checkThe file_path parameter originates from parsing @file: mentions in user/LLM prompts. The MentionsParser is used across the framework to process mentions in agent instructions and user messages.
Contrast with skill_tools.py read_skill_file (lines 140–193), which properly validates:
# skill_tools.py line 179 — proper validation
if os.path.commonpath([full_path, skill_path]) != skill_path:
return f"Error: Path traversal detected - {file_path} is outside skill directory"
Setup: Clean checkout at commit d5f1114a.
Positive trigger — arbitrary file read via @file: mention:
import sys
sys.path.insert(0, 'src/praisonai-agents')
from praisonaiagents.tools.mentions import MentionsParser
parser = MentionsParser()
# Test 1: Absolute path read (bypasses workspace resolution)
result = parser._process_file_mention('/etc/hostname')
print(f'Absolute path read: {result[:80]}...')
# Test 2: Relative path with traversal
result = parser._process_file_mention('../../../etc/hostname')
print(f'Traversal read: {result[:80]}...')
Expected output:
Absolute path read: # File: /etc/hostname
```linux
<hostname>
```...
Traversal read: # File: ../../../etc/hostname
```linux
<hostname>
```...
Negative control — non-existent file:
result = parser._process_file_mention('/nonexistent/secret.txt')
# Returns: "# File: /nonexistent/secret.txt\n[File not found]"
Cleanup: No persistence or side effects — read-only operation.
An attacker who can inject @file: mentions into agent prompts (via chat messages in Telegram/Discord/Slack bots, user input in web UI, or YAML workflow configurations) can read any file accessible to the process user, including:
.env files, ~/.aws/credentials, ~/.ssh/id_rsa, API keys/etc/passwd, /etc/shadow (if process has read access)This is particularly dangerous in bot deployments where auto_approve_tools defaults to True and untrusted users can send messages containing @file: mentions.
workspace_path:def _process_file_mention(self, file_path: str) -> Optional[str]:
full_path = (self.workspace_path / file_path).resolve()
# Ensure resolved path is within workspace
if not str(full_path).startswith(str(self.workspace_path.resolve())):
return f"# File: {file_path}\n[Access denied: path outside workspace]"
if not full_path.exists():
return f"# File: {file_path}\n[File not found]"
content = full_path.read_text(encoding="utf-8")
Add symlink resolution via .resolve() to prevent symlink-based traversal.
Add a protected path guard (.env, .git, .ssh, keys, credentials).
Apply the same os.path.commonpath pattern used by skill_tools.py.
왜 이 VPI인가 (설명가능 · 실험적)
VPI 산정 기준
| 영향도 | 75.00 |
| 악용 신호(추가 악용신호 없음) | ×1.00 |
| VPI | 75.00 |
VPI 공식 vpi-v1 기준