value stringlengths 25 18k ⌀ | subtecnique int64 0 1 | answer stringclasses 2
values | id stringlengths 5 9 | name stringlengths 3 102 |
|---|---|---|---|---|
FIN6 often abuses systemd to exfiltrate data at a specific time each day. | 1 | accept | T1053.006 | Scheduled Task/Job: Systemd Timers |
The PipeMon installer has modified the Registry key HKLM\SYSTEM\CurrentControlSet\Control\Print\Environments\Windows x64\Print Processors to install PipeMon as a Print Processor. | 1 | accept | T1547.012 | Boot or Logon Autostart Execution: Print Processors |
The Ghostwriter campaign featured malware that could modify the kernel to initiate malicious code execution on boot. | 1 | accept | T1547.012 | Boot or Logon Autostart Execution: Print Processors |
Warzone RAT often injects LKM that auto executes code upon startup. | 1 | accept | T1547.012 | Boot or Logon Autostart Execution: Print Processors |
Malware such as POWERHOSE can repeatedly execute arbitrary code upon boot via kernel modification. | 1 | accept | T1547.012 | Boot or Logon Autostart Execution: Print Processors |
CozyBear will often modify a machine's kernel to allow for automatic code execution upon startup. | 1 | accept | T1547.012 | Boot or Logon Autostart Execution: Print Processors |
Exaramel for Linux has a hardcoded location under systemd that it uses to achieve persistence if it is running as root. | 1 | accept | T1543.002 | Create or Modify System Process: Systemd Service |
Fysbis has established persistence using a systemd service. | 1 | accept | T1543.002 | Create or Modify System Process: Systemd Service |
Hildegard has started a monero service. | 1 | accept | T1543.002 | Create or Modify System Process: Systemd Service |
Pupy can be used to establish persistence using a systemd service. | 1 | accept | T1543.002 | Create or Modify System Process: Systemd Service |
Rocke has installed a systemd service script to maintain persistence. | 1 | accept | T1543.002 | Create or Modify System Process: Systemd Service |
null | 1 | accept | T1564.007 | Hide Artifacts: Vba Stomping |
WastedLocker ransomware can inject malicious VBA scripts into MS Office documents for obfuscation. | 1 | accept | T1564.007 | Hide Artifacts: Vba Stomping |
ChamelGang utilizes VBA stomping to hide malicious payloads. | 1 | accept | T1564.007 | Hide Artifacts: Vba Stomping |
CozyBear often employs the tactic of obscuring VBA payloads within benign data. | 1 | accept | T1564.007 | Hide Artifacts: Vba Stomping |
MS Office can be used to hide malicious VBA code by replacing source code with legitimate data. | 1 | accept | T1564.007 | Hide Artifacts: Vba Stomping |
UNC215 will obfuscate their malicious payloads within MS Office documents. | 1 | accept | T1564.007 | Hide Artifacts: Vba Stomping |
APT28 has deployed a bootkit along with Downdelph to ensure its persistence on the victim. The bootkit shares code with some variants of BlackEnergy. | 1 | accept | T1542.003 | Pre |
APT41 deployed Master Boot Record bootkits on Windows systems to hide their malware and maintain persistence on victim systems. | 1 | accept | T1542.003 | Pre |
BOOTRASH is a Volume Boot Record (VBR) bootkit that uses the VBR to maintain persistence. | 1 | accept | T1542.003 | Pre |
Carberp has installed a bootkit on the system to maintain persistence. | 1 | accept | T1542.003 | Pre |
Some FinFisher variants incorporate an MBR rootkit. | 1 | accept | T1542.003 | Pre |
Lazarus Group malware WhiskeyAlfa-Three modifies sector 0 of the Master Boot Record (MBR) to ensure that the malware will persist even if a victim machine shuts down. | 1 | accept | T1542.003 | Pre |
ROCKBOOT is a Master Boot Record (MBR) bootkit that uses the MBR to establish persistence. | 1 | accept | T1542.003 | Pre |
TrickBot can implant malicious code into a compromised device's firmware. | 1 | accept | T1542.003 | Pre |
Empire contains modules that can discover and exploit unquoted path vulnerabilities. | 1 | accept | T1574.009 | Hijack Execution Flow: Path Interception By Unquoted Path |
PowerSploit contains a collection of Privesc-PowerUp modules that can discover and exploit unquoted path vulnerabilities. | 1 | accept | T1574.009 | Hijack Execution Flow: Path Interception By Unquoted Path |
UNC2215 abuse path calls that are unquoted to execute their malware at a higher level in the file path than the legitimate one. | 1 | accept | T1574.009 | Hijack Execution Flow: Path Interception By Unquoted Path |
REvil ransomware will execute it's payloads through placing them high up the file path of unprotected file calls from programs. | 1 | accept | T1574.009 | Hijack Execution Flow: Path Interception By Unquoted Path |
Care should be taken to always place quotation marks around file path calls to prevent malware from abusing it's lack of security to execute malicious code. | 1 | accept | T1574.009 | Hijack Execution Flow: Path Interception By Unquoted Path |
Empire contains modules that can discover and exploit search order hijacking vulnerabilities. | 1 | accept | T1574.008 | Hijack Execution Flow: Path Interception By Search Order Hijacking |
PowerSploit contains a collection of Privesc-PowerUp modules that can discover and exploit search order hijacking vulnerabilities. | 1 | accept | T1574.008 | Hijack Execution Flow: Path Interception By Search Order Hijacking |
Pakdoor can replace legitimate file paths with it's own malicious file paths. | 1 | accept | T1574.008 | Hijack Execution Flow: Path Interception By Search Order Hijacking |
ChamelGang will often install malware and then execute it by hijacking other programs filepath searches. | 1 | accept | T1574.008 | Hijack Execution Flow: Path Interception By Search Order Hijacking |
Earth Centaur can escalate the privileges of their malware via the hijacking of the path calls of other, higher privileged programs. | 1 | accept | T1574.008 | Hijack Execution Flow: Path Interception By Search Order Hijacking |
APT32 includes garbage code to mislead anti-malware software and researchers. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
BRONZE BUTLER downloader code has included 0" characters at the end of the file to inflate the file size in a likely attempt to evade anti-virus detection. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
Comnie appends a total of 64MB of garbage data to a file to deter any security products in place that may be scanning files on disk. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
CORESHELL contains unused machine instructions in a likely attempt to hinder analysis. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
A variant of Emissary appends junk data to the end of its DLL file to create a large file that may exceed the maximum size that anti-virus programs can scan. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
FatDuke has been packed with junk code and strings. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
FinFisher contains junk code in its functions in an effort to confuse disassembly programs. | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
Gamaredon Group has obfuscated .NET executables by inserting junk code. ;; Goopy has had null characters padded in its malicious DLL payload. ;; Grandoreiro has added BMP images to the resources section of its Portable Executable (PE) file increasing each binary to at least 300MB in size. ;; Higaisa performed padding ... | 1 | accept | T1027.001 | Obfuscated Files or Information: Binary Padding |
APT29 has used valid accounts including administrator accounts to help facilitate lateral movement on compromised networks. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
APT3 leverages valid accounts after gaining credentials for use within the victim domain. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
Chimera has used compromised domain accounts to gain access to the target environment. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
Cobalt Strike can use known credentials to run commands and spawn processes as a domain user account. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
Indrik Spider has collected credentials from infected systems including domain accounts. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
Operation Wocao has used domain credentials including domain admin for lateral movement and privilege escalation. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
Ryuk can use stolen domain admin accounts to move laterally within a victim domain. | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
Sandworm Team has used stolen credentials to access administrative accounts within the domain. ;; If Shamoon cannot access shares using current privileges it attempts access using hard coded domain-specific credentials gathered earlier in the intrusion. ;; TA505 has used stolen domain admin accounts to compromise addi... | 1 | accept | T1078.002 | Valid Accounts: Domain Accounts |
APT32 has used Web shells to maintain access to victim websites. | 1 | accept | T1505.003 | Server Software Component: Web Shell |
APT39 has installed ANTAK and ASPXSPY web shells. | 1 | accept | T1505.003 | Server Software Component: Web Shell |
ASPXSpy is a Web shell. The ASPXTool version used by Threat Group-3390 has been deployed to accessible servers running Internet Information Services (IIS). | 1 | accept | T1505.003 | Server Software Component: Web Shell |
China Chopper's server component is a Web Shell payload. | 1 | accept | T1505.003 | Server Software Component: Web Shell |
Deep Panda uses Web shells on publicly accessible Web servers to access victim networks. | 1 | accept | T1505.003 | Server Software Component: Web Shell |
Dragonfly 2.0 commonly created Web shells on victims' publicly accessible email and web servers which they used to maintain access to a victim network and download additional malicious files. | 1 | accept | T1505.003 | Server Software Component: Web Shell |
Fox Kitten has installed web shells on compromised hosts to maintain access. | 1 | accept | T1505.003 | Server Software Component: Web Shell |
GALLIUM used Web shells to persist in victim environments and assist in execution and exfiltration. ;; HAFNIUM has deployed multiple web shells on compromised servers including SIMPLESEESHARP SPORTSBALL China Chopper and ASPXSpy. ;; Kimsuky has used modified versions of open source PHP web shells to maintain access of... | 1 | accept | T1505.003 | Server Software Component: Web Shell |
APT29 has used the meek domain fronting plugin for Tor to hide the destination of C2 traffic. | 1 | accept | T1090.004 | Proxy: Domain Fronting |
meek uses Domain Fronting to disguise the destination of network traffic as another server that is hosted in the same Content Delivery Network (CDN) as the intended destination. | 1 | accept | T1090.004 | Proxy: Domain Fronting |
The Prometei botnet will utilise domain fronting to hide it's C2 infrastructure and it's compromised bots. | 1 | accept | T1090.004 | Proxy: Domain Fronting |
ATP29 often inserts multiple domains from the same CDN inside the SNI field to obfuscate the real C2 domain. | 1 | accept | T1090.004 | Proxy: Domain Fronting |
Evilnum utilises scripts that facilitate a proxy connection, sometimes involving domain fronting. | 1 | accept | T1090.004 | Proxy: Domain Fronting |
ABK can extract a malicious Portable Executable (PE) from a photo. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
APT37 uses steganography to send images to users that are embedded with shellcode. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
Avenger can extract backdoor malware from downloaded images. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
BBK can extract a malicious Portable Executable (PE) from a photo. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
BRONZE BUTLER has used steganography in multiple operations to conceal malicious payloads. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
build_downer can extract malware from a downloaded JPEG. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
IcedID has embedded binaries within RC4 encrypted .png files. | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
MuddyWater has stored obfuscated JavaScript code in an image file named temp.jpg. ;; Okrum's payload is encrypted and embedded within its loader or within a legitimate PNG file. ;; PolyglotDuke can use steganography to hide C2 information in images. ;; PowerDuke uses steganography to hide backdoors in PNG files which ... | 1 | accept | T1027.003 | Obfuscated Files or Information: Steganography |
One variant of BlackEnergy locates existing driver services that have been disabled and drops its driver component into one of those service's paths replacing the legitimate executable. The malware then sets the hijacked service to start automatically to establish persistence. | 1 | accept | T1574.010 | Hijack Execution Flow: Services File Permissions Weakness |
Threat actors will often hijack execution for malicious code execution through exploiting weakly protected service binaries. | 1 | accept | T1574.010 | Hijack Execution Flow: Services File Permissions Weakness |
The Sidewalk backdoor can escalate it's privileges by hijacking the execution flow or services that possess privileges above it. | 1 | accept | T1574.010 | Hijack Execution Flow: Services File Permissions Weakness |
Hive ransomware can abuse improperly set permissions of some services to perform privilege execution. | 1 | accept | T1574.010 | Hijack Execution Flow: Services File Permissions Weakness |
UNC215 will exploit poorly protected service binaries to execute their installed malware. | 1 | accept | T1574.010 | Hijack Execution Flow: Services File Permissions Weakness |
null | 1 | accept | T1574.011 | Hijack Execution Flow: Services Registry Permissions Weakness |
APT31 executes their own malicious payloads through hijacking registry services that have misconfigured permissions. | 1 | accept | T1574.011 | Hijack Execution Flow: Services Registry Permissions Weakness |
REvil abuse powershell to modify HKLM\SYSTEM\CurrentControlSet\Services to allow for the execution of their own malicious payloads. | 1 | accept | T1574.011 | Hijack Execution Flow: Services Registry Permissions Weakness |
APT31 abuses registry keys related to services to point to and execute malicious scripts installed on a machine. | 1 | accept | T1574.011 | Hijack Execution Flow: Services Registry Permissions Weakness |
UNC215 abuses registry related services to redirect the service's desired executable to a malicious one. | 1 | accept | T1574.011 | Hijack Execution Flow: Services Registry Permissions Weakness |
Dridex will modify a windows registry to allow associated services to execute malware. | 1 | accept | T1574.011 | Hijack Execution Flow: Services Registry Permissions Weakness |
Empire contains modules that can discover and exploit path interception opportunities in the PATH environment variable. | 1 | accept | T1574.007 | Hijack Execution Flow: Path Interception By Path Environment Variable |
PowerSploit contains a collection of Privesc-PowerUp modules that can discover and exploit path interception opportunities in the PATH environment variable. | 1 | accept | T1574.007 | Hijack Execution Flow: Path Interception By Path Environment Variable |
Grief ransomware utilises malware that inserts malicious payloads to be executed with the environmental variable PATH's list of directories. | 1 | accept | T1574.007 | Hijack Execution Flow: Path Interception By Path Environment Variable |
Certain CobaltStrike payloads will abuse the PATH variable to allow for malicious execution of files. | 1 | accept | T1574.007 | Hijack Execution Flow: Path Interception By Path Environment Variable |
The APT Naikon will abuse the Windows PATH variable to sequentially execute inserted malware. | 1 | accept | T1574.007 | Hijack Execution Flow: Path Interception By Path Environment Variable |
null | 1 | accept | T1499.001 | Endpoint Denial of Service: Os Exhaustion Flood |
The Lucifer cryptojacker can overwhelm the self imposed limits of resources of an OS when mining for cryptocurrency. | 1 | accept | T1499.001 | Endpoint Denial of Service: Os Exhaustion Flood |
Quantum Stresser could perform DDoS as a service through the targets of an OS' resources, forcing the machine to slow down and lock up. | 1 | accept | T1499.001 | Endpoint Denial of Service: Os Exhaustion Flood |
BlackNurse would target OS of victim machines and overwhelm their capacity to handle the demands placed upon it. | 1 | accept | T1499.001 | Endpoint Denial of Service: Os Exhaustion Flood |
GoBotKR can initiate a variety of DDoS attacks, including ones that target the finite resources of a system. | 1 | accept | T1499.001 | Endpoint Denial of Service: Os Exhaustion Flood |
Ransomware will often begin to damage the OS' ability to manage resources to coerce victims into paying the ransom. | 1 | accept | T1499.001 | Endpoint Denial of Service: Os Exhaustion Flood |
Anchor can establish persistence by creating a service. | 1 | accept | T1543.003 | Create or Modify System Process: Windows Service |
AppleJeus can install itself as a service. | 1 | accept | T1543.003 | Create or Modify System Process: Windows Service |
An APT19 Port 22 malware variant registers itself as a service. | 1 | accept | T1543.003 | Create or Modify System Process: Windows Service |
APT3 has a tool that creates a new service for persistence. | 1 | accept | T1543.003 | Create or Modify System Process: Windows Service |
APT32 modified Windows Services to ensure PowerShell scripts were loaded on the system. APT32 also creates a Windows service to establish persistence. | 1 | accept | T1543.003 | Create or Modify System Process: Windows Service |
APT41 modified legitimate Windows services to install malware backdoors. APT41 created the StorSyncSvc service to provide persistence for Cobalt Strike. | 1 | accept | T1543.003 | Create or Modify System Process: Windows Service |
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