Vulnerabilities > CVE-2018-6328 - Improper Authentication vulnerability in Kaseya Unitrends Backup
Attack vector
NETWORK Attack complexity
LOW Privileges required
NONE Confidentiality impact
HIGH Integrity impact
HIGH Availability impact
HIGH Summary
It was discovered that the Unitrends Backup (UB) before 10.1.0 user interface was exposed to an authentication bypass, which then could allow an unauthenticated user to inject arbitrary commands into its /api/hosts parameters using backquotes.
Vulnerable Configurations
Common Weakness Enumeration (CWE)
Common Attack Pattern Enumeration and Classification (CAPEC)
- Authentication Abuse An attacker obtains unauthorized access to an application, service or device either through knowledge of the inherent weaknesses of an authentication mechanism, or by exploiting a flaw in the authentication scheme's implementation. In such an attack an authentication mechanism is functioning but a carefully controlled sequence of events causes the mechanism to grant access to the attacker. This attack may exploit assumptions made by the target's authentication procedures, such as assumptions regarding trust relationships or assumptions regarding the generation of secret values. This attack differs from Authentication Bypass attacks in that Authentication Abuse allows the attacker to be certified as a valid user through illegitimate means, while Authentication Bypass allows the user to access protected material without ever being certified as an authenticated user. This attack does not rely on prior sessions established by successfully authenticating users, as relied upon for the "Exploitation of Session Variables, Resource IDs and other Trusted Credentials" attack patterns.
- Exploiting Trust in Client (aka Make the Client Invisible) An attack of this type exploits a programs' vulnerabilities in client/server communication channel authentication and data integrity. It leverages the implicit trust a server places in the client, or more importantly, that which the server believes is the client. An attacker executes this type of attack by placing themselves in the communication channel between client and server such that communication directly to the server is possible where the server believes it is communicating only with a valid client. There are numerous variations of this type of attack.
- Utilizing REST's Trust in the System Resource to Register Man in the Middle This attack utilizes a REST(REpresentational State Transfer)-style applications' trust in the system resources and environment to place man in the middle once SSL is terminated. Rest applications premise is that they leverage existing infrastructure to deliver web services functionality. An example of this is a Rest application that uses HTTP Get methods and receives a HTTP response with an XML document. These Rest style web services are deployed on existing infrastructure such as Apache and IIS web servers with no SOAP stack required. Unfortunately from a security standpoint, there frequently is no interoperable identity security mechanism deployed, so Rest developers often fall back to SSL to deliver security. In large data centers, SSL is typically terminated at the edge of the network - at the firewall, load balancer, or router. Once the SSL is terminated the HTTP request is in the clear (unless developers have hashed or encrypted the values, but this is rare). The attacker can utilize a sniffer such as Wireshark to snapshot the credentials, such as username and password that are passed in the clear once SSL is terminated. Once the attacker gathers these credentials, they can submit requests to the web service provider just as authorized user do. There is not typically an authentication on the client side, beyond what is passed in the request itself so once this is compromised, then this is generally sufficient to compromise the service's authentication scheme.
- Man in the Middle Attack This type of attack targets the communication between two components (typically client and server). The attacker places himself in the communication channel between the two components. Whenever one component attempts to communicate with the other (data flow, authentication challenges, etc.), the data first goes to the attacker, who has the opportunity to observe or alter it, and it is then passed on to the other component as if it was never intercepted. This interposition is transparent leaving the two compromised components unaware of the potential corruption or leakage of their communications. The potential for Man-in-the-Middle attacks yields an implicit lack of trust in communication or identify between two components.
Exploit-Db
description Unitrends UEB 10.0 - Unauthenticated Root Remote Code Execution. CVE-2018-6328,CVE-2018-6329. Remote exploit for Linux platform file exploits/linux/remote/44297.py id EDB-ID:44297 last seen 2018-05-24 modified 2018-03-16 platform linux port published 2018-03-16 reporter Exploit-DB source https://www.exploit-db.com/download/44297/ title Unitrends UEB 10.0 - Unauthenticated Root Remote Code Execution type remote description Unitrends UEB - HTTP API Remote Code Execution (Metasploit). CVE-2017-12478,CVE-2018-6328. Remote exploit for Linux platform. Tags: Metasploit Framework (MSF... file exploits/linux/remote/45559.rb id EDB-ID:45559 last seen 2018-10-08 modified 2018-10-08 platform linux port 443 published 2018-10-08 reporter Exploit-DB source https://www.exploit-db.com/download/45559/ title Unitrends UEB - HTTP API Remote Code Execution (Metasploit) type remote
Metasploit
description | It was discovered that the api/storage web interface in Unitrends Backup (UB) before 10.0.0 has an issue in which one of its input parameters was not validated. A remote attacker could use this flaw to bypass authentication and execute arbitrary commands with root privilege on the target system. UEB v9 runs the api under root privileges and api/storage is vulnerable. UEB v10 runs the api under limited privileges and api/hosts is vulnerable. |
id | MSF:EXPLOIT/LINUX/HTTP/UEB_API_RCE |
last seen | 2020-05-30 |
modified | 2019-01-10 |
published | 2018-09-10 |
references |
|
reporter | Rapid7 |
source | https://github.com/rapid7/metasploit-framework/blob/master//modules/exploits/linux/http/ueb_api_rce.rb |
title | Unitrends UEB http api remote code execution |
Packetstorm
data source | https://packetstormsecurity.com/files/download/149687/ueb_api_rce.rb.txt |
id | PACKETSTORM:149687 |
last seen | 2018-10-06 |
published | 2018-10-05 |
reporter | h00die |
source | https://packetstormsecurity.com/files/149687/Unitrends-UEB-HTTP-API-Remote-Code-Execution.html |
title | Unitrends UEB HTTP API Remote Code Execution |
References
- https://support.unitrends.com/UnitrendsBackup/s/article/000001150
- https://support.unitrends.com/UnitrendsBackup/s/article/000001150
- https://support.unitrends.com/UnitrendsBackup/s/article/000006002
- https://support.unitrends.com/UnitrendsBackup/s/article/000006002
- https://www.exploit-db.com/exploits/44297/
- https://www.exploit-db.com/exploits/44297/
- https://www.exploit-db.com/exploits/45559/
- https://www.exploit-db.com/exploits/45559/