FIN7 APT Hackers Released New Hacking Tools in Their Malware Arsenal wells fargo cvv dump, joker stash ssn

Researchers discovered 2 new hacking tools called BOOSTWRITE and RDFSNIFFER that were added in FIN7 groups malware arsenal with sophisticated capabilities and techniques.
FireEye Mandiant investigators uncovered that these new hacking tools were added for hijacking the DLL load order of the legitimate Aloha utility and load the malware.
The Tool named BOOSTWRITE is a payload dropper that was employed to decrypt the embedder payloads using the specific decryption key from the command & control server and is highly capable of evading Antivirus detection.
BOOSTWRITE using various Tactics, Techniques, and Procedures (TTP’s) such as Code Signing, Execution through Module Load, Deobfuscate, Data Encrypted, DLL Hijacking and more.
Threat actors abuse the DLL search order that loads the legitimate ‘Dwrite.dll’ that loaded by applications.
During the infection routine, BOOSTWRITE placed on file system alongside the RDFClient binary which helps the loader to force the application to import DWriteCreateFactory instead of legitimate DWrite.dll.
RDFSNIFFER dropped by BOOSTWRITE which allows an attacker to tamper the legitimate connections via RDFClient, and alter the DLL to hijack elements of its user-interface.
“This module also contains a backdoor component that enables it to inject commands into an active RDFClient session. This backdoor allows an attacker to upload, download, execute and/or delete arbitrary files”
 Mandiant investigation identified that the BOOSTWRITE was signed using a code signing certificate issued by MANGO ENTERPRISE LIMITED and it  was uploaded to VirusTotal on October 3 .
“It is not a completely new technique for FIN7 as the group has used digital certificates in the past to sign their phishing documents, backdoors, and later stage tools,” FireEye said.
Researchers believe that the actors behind these tools are actively altering this malware to avoid traditional detection mechanisms.
FIN7 increases their chances of bypassing various security controls and successfully compromising victims by exploiting the trust, inherently provided by code certificates.
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