Directory Traversal Affecting unearth package, versions [0.2.0,]


Severity

Recommended
0.0
high
0
10

CVSS assessment by Snyk's Security Team. Learn more

Threat Intelligence

EPSS
0.38% (31st percentile)

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  • Snyk IDSNYK-PYTHON-UNEARTH-18610067
  • published11 Aug 2026
  • disclosed10 Aug 2026
  • creditYU SUN

Introduced: 10 Aug 2026

NewCVE-2026-73030  (opens in a new tab)
CWE-22  (opens in a new tab)

How to fix?

A fix was pushed into the master branch but not yet published.

Overview

unearth is an A utility to fetch and download python packages

Affected versions of this package are vulnerable to Directory Traversal through the is_within_directory check in _untar_archive and is_within_directory in unearth’s tar extraction code. An attacker can write files outside the intended extraction directory by supplying a malicious tar archive with ../ path components or symlink members that bypass the containment check. When is_within_directory compares unnormalized paths, crafted archive entries can satisfy the directory check without actually resolving inside the destination tree. This lets a remote attacker who can get a tar archive processed by unearth overwrite arbitrary filesystem locations accessible to the process, breaking file integrity and potentially corrupting or replacing application data.

Details

A Directory Traversal attack (also known as path traversal) aims to access files and directories that are stored outside the intended folder. By manipulating files with "dot-dot-slash (../)" sequences and its variations, or by using absolute file paths, it may be possible to access arbitrary files and directories stored on file system, including application source code, configuration, and other critical system files.

Directory Traversal vulnerabilities can be generally divided into two types:

  • Information Disclosure: Allows the attacker to gain information about the folder structure or read the contents of sensitive files on the system.

st is a module for serving static files on web pages, and contains a vulnerability of this type. In our example, we will serve files from the public route.

If an attacker requests the following URL from our server, it will in turn leak the sensitive private key of the root user.

curl http://localhost:8080/public/%2e%2e/%2e%2e/%2e%2e/%2e%2e/%2e%2e/root/.ssh/id_rsa

Note %2e is the URL encoded version of . (dot).

  • Writing arbitrary files: Allows the attacker to create or replace existing files. This type of vulnerability is also known as Zip-Slip.

One way to achieve this is by using a malicious zip archive that holds path traversal filenames. When each filename in the zip archive gets concatenated to the target extraction folder, without validation, the final path ends up outside of the target folder. If an executable or a configuration file is overwritten with a file containing malicious code, the problem can turn into an arbitrary code execution issue quite easily.

The following is an example of a zip archive with one benign file and one malicious file. Extracting the malicious file will result in traversing out of the target folder, ending up in /root/.ssh/ overwriting the authorized_keys file:

2018-04-15 22:04:29 .....           19           19  good.txt
2018-04-15 22:04:42 .....           20           20  ../../../../../../root/.ssh/authorized_keys

CVSS Base Scores

version 4.0
version 3.1