Exclusive Control

T1668

Technique.View on attack.mitre.org

About this technique

Adversaries who successfully compromise a system may attempt to maintain persistence by “closing the door” behind them – in other words, by preventing other threat actors from initially accessing or maintaining a foothold on the same system.

For example, adversaries may patch a vulnerable, compromised system to prevent other threat actors from leveraging that vulnerability in the future. They may “close the door” in other ways, such as disabling vulnerable services, stripping privileges from accounts, or removing other malware already on the compromised device.

Hindering other threat actors may allow an adversary to maintain sole access to a compromised system or network. This prevents the threat actor from needing to compete with or even being removed themselves by other threat actors. It also reduces the “noise” in the environment, lowering the possibility of being caught and evicted by defenders. Finally, in the case of Resource Hijacking, leveraging a compromised device’s full power allows the threat actor to maximize profit.

Detection rules0

Rules on DetectionCode tagged with T1668.

Sigma0

No Sigma rules are mapped to this technique yet.

Splunk0

No Splunk rules are mapped to this technique yet.

Groups0

None recorded.

Software0

None recorded.

Campaigns0

None recorded.

Procedure examples0

No procedure examples are recorded for this technique.

References5

  1. CERT AT Fortinent Ransomware 2025 Open source
    CERT Austria. (2025, March 20). Ransomware-Gruppen nutzen weiterhin kritische Fortinet-Schwachstellen - Warnung vor gepatchten, aber bereits kompromittierten Geräten. Retrieved March 31, 2025.
  2. Mandiant-iab-control Open source
    Michael Raggi, Adam Aprahamian, Dan Kelly, Mathew Potaczek, Marcin Siedlarz, Austin Larsen. (2024, March 21). Bringing Access Back — Initial Access Brokers Exploit F5 BIG-IP (CVE-2023-46747) and ScreenConnect. Retrieved January 31, 2025.
  3. aquasec-postgres-processes Open source
    Assaf Morag. (2024, August 19). PG_MEM: A Malware Hidden in the Postgres Processes. Retrieved January 31, 2025.
  4. fsecure-netsky Open source
    F-Secure. (2004). Worm:W32/NetSky.H. Retrieved January 31, 2025.
  5. sophos-multiple-attackers Open source
    Matt Wixey. (2022, August 9). Multiple attackers increase pressure on victims, complicate incident response. Retrieved January 31, 2025.

Data from MITRE ATT&CK® (Enterprise). ATT&CK® is a registered trademark of The MITRE Corporation.