value stringlengths 25 18k ⌀ | subtecnique int64 0 1 | answer stringclasses 2
values | id stringlengths 5 9 | name stringlengths 3 102 |
|---|---|---|---|---|
APT29 has developed malware variants written in Python. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
APT39 has used a command line utility and a network scanner written in python. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
BRONZE BUTLER has made use of Python-based remote access tools. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
Bundlore has used Python scripts to execute payloads. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
Cobalt Strike can use Python to perform execution. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
CoinTicker executes a Python script to download its second stage. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
CookieMiner has used python scripts on the user’s system as well as the Python variant of the Empire agent EmPyre. | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
Dragonfly 2.0 used various types of scripting to perform operations including Python scripts. The group was observed installing Python 2.7 on a victim. ;; DropBook is a Python-based backdoor compiled with PyInstaller. ;; Ebury has used Python to implement its DGA. ;; IronNetInjector can use IronPython scripts to load ... | 1 | accept | T1059.006 | Command and Scripting Interpreter: Python |
CoinTicker downloads the EggShell mach-o binary using curl which does not set the quarantine flag. | 1 | accept | T1553.001 | Subvert Trust Controls: Gatekeeper Bypass |
OSX_OCEANLOTUS.D can delete the file quarantine attribute. | 1 | accept | T1553.001 | Subvert Trust Controls: Gatekeeper Bypass |
MacOS exploit allows execution of untrusted binaries using Gatekeeper Bypass | 1 | accept | T1553.001 | Subvert Trust Controls: Gatekeeper Bypass |
Command xattr when run as root can disable quarantine flag flag to enable execution of downloaded binary without user prompt. | 1 | accept | T1553.001 | Subvert Trust Controls: Gatekeeper Bypass |
Administrator should flag removal of com.apple.quarantine flag by user as suspicious activity | 1 | accept | T1553.001 | Subvert Trust Controls: Gatekeeper Bypass |
Cobalt Group has used odbcconf to proxy the execution of malicious DLL files. | 1 | accept | T1218.008 | Signed Binary Proxy Execution: Odbcconf |
Actors can use REGSVR flag from odbcconf.exe to execute malicious DLLs | 1 | accept | T1218.008 | Signed Binary Proxy Execution: Odbcconf |
A Microsoft Signed database utility odbcconf can be misused to run malicious payload bypassing application control solutions | 1 | accept | T1218.008 | Signed Binary Proxy Execution: Odbcconf |
Similar to Regsvr32, odbcconf.exe can also be used to proxy execution of malicious code | 1 | accept | T1218.008 | Signed Binary Proxy Execution: Odbcconf |
APT-21 actors attempt to bypass application control policies via proxy execution through odbcconf | 1 | accept | T1218.008 | Signed Binary Proxy Execution: Odbcconf |
APT19 used Regsvr32 to bypass application control techniques. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
APT32 created a Scheduled Task/Job that used regsvr32.exe to execute a COM scriptlet that dynamically downloaded a backdoor and injected it into memory. The group has also used regsvr32 to run their backdoor. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Astaroth can be loaded through regsvr32.exe. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Blue Mockingbird has executed custom-compiled XMRIG miner DLLs using regsvr32.exe. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Cobalt Group has used regsvr32.exe to execute scripts. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Deep Panda has used regsvr32.exe to execute a server variant of Derusbi in victim networks. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Derusbi variants have been seen that use Registry persistence to proxy execution through regsvr32.exe. | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Egregor has used regsvr32.exe to execute malicious DLLs. ;; EVILNUM can run a remote scriptlet that drops a file and executes it via regsvr32.exe. ;; Hi-Zor executes using regsvr32.exe called from the Registry Run Keys / Startup Folder persistence mechanism. ;; Inception has ensured persistence at system boot by setti... | 1 | accept | T1218.010 | Signed Binary Proxy Execution: Regsvr32 |
Agent Tesla has dropped RegAsm.exe onto systems for performing malicious activity. | 1 | accept | T1218.009 | Signed Binary Proxy Execution: Regsvcs/Regasm |
Malware then drops Regscvs.exe to perform malicious activity | 1 | accept | T1218.009 | Signed Binary Proxy Execution: Regsvcs/Regasm |
A windows command-line utility Regasm.exe to run malicious code before COM object registration | 1 | accept | T1218.009 | Signed Binary Proxy Execution: Regsvcs/Regasm |
Actors download Regscvs on the system to perform proxy execution of malicious code | 1 | accept | T1218.009 | Signed Binary Proxy Execution: Regsvcs/Regasm |
Microsoft signed binaries regscvs.exe and regasm.exe are used to execute malicious code onto infected system | 1 | accept | T1218.009 | Signed Binary Proxy Execution: Regsvcs/Regasm |
menuPass has used InstallUtil.exe to execute malicious software. | 1 | accept | T1218.004 | Signed Binary Proxy Execution: Installutil |
Mustang Panda has used InstallUtil.exe to execute a malicious Beacon stager. | 1 | accept | T1218.004 | Signed Binary Proxy Execution: Installutil |
InstallUtil.exe is used to execute malicious installer components in .Net binaries | 1 | accept | T1218.004 | Signed Binary Proxy Execution: Installutil |
Actors use microsoft signed InstallUtil.exe for performing proxy execution of malicious .Net code | 1 | accept | T1218.004 | Signed Binary Proxy Execution: Installutil |
Malware performs proxy execution via InstallUtil to evade application control solutions | 1 | accept | T1218.004 | Signed Binary Proxy Execution: Installutil |
Cobalt Group has used the command cmstp.exe /s /ns C:\Users\ADMINI~W\AppData\Local\Temp\XKNqbpzl.txt to bypass AppLocker and launch a malicious script. | 1 | accept | T1218.003 | Signed Binary Proxy Execution: Cmstp |
MuddyWater has used CMSTP.exe and a malicious INF to execute its POWERSTATS payload. | 1 | accept | T1218.003 | Signed Binary Proxy Execution: Cmstp |
obfuscated service profile file is written to %APPDATA%\Microsoft\%RANDOM%%RANDOM%.txt that is executed using cmstp.exe to download and execute a first-stage scriptlet | 1 | accept | T1218.003 | Signed Binary Proxy Execution: Cmstp |
That batch file writes a malicious INF file and supplies it as a parameter to the Microsoft utility cmstp.exe, which executes a remote scriptlet specified in the INF file. | 1 | accept | T1218.003 | Signed Binary Proxy Execution: Cmstp |
The LNK file runs cmd.exe to create %APPDATA%\Microsoft\.txt. This txt file will be further run by the cmstp.exe utility | 1 | accept | T1218.003 | Signed Binary Proxy Execution: Cmstp |
APT41 used compiled HTML (.chm) files for targeting. | 1 | accept | T1218.001 | Signed Binary Proxy Execution: Compiled Html File |
Astaroth uses ActiveX objects for file execution and manipulation. | 1 | accept | T1218.001 | Signed Binary Proxy Execution: Compiled Html File |
Dark Caracal leveraged a compiled HTML file that contained a command to download and run an executable. | 1 | accept | T1218.001 | Signed Binary Proxy Execution: Compiled Html File |
Lazarus Group has used CHM files to move concealed payloads. | 1 | accept | T1218.001 | Signed Binary Proxy Execution: Compiled Html File |
OilRig has used a CHM payload to load and execute another malicious file once delivered to a victim. | 1 | accept | T1218.001 | Signed Binary Proxy Execution: Compiled Html File |
Silence has weaponized CHM files in their phishing campaigns. | 1 | accept | T1218.001 | Signed Binary Proxy Execution: Compiled Html File |
null | 1 | accept | T1055.014 | Process Injection: Vdso Hijacking |
By writing shellcode in vDSO and hijacking the invocation process of a normal function, an attacker that successfully exploits this vulnerability could obtain reverse shell on a host to escape the container. | 1 | accept | T1055.014 | Process Injection: Vdso Hijacking |
Malware performs VDSO hijacking by redirecting calls to dynamically linked shared libraries to run malicious code | 1 | accept | T1055.014 | Process Injection: Vdso Hijacking |
adversary may hijack the syscall interface code stubs mapped into a process from the vdso shared object to execute syscalls to open and map a malicious shared object | 1 | accept | T1055.014 | Process Injection: Vdso Hijacking |
Execution via VDSO hijacking may also evade detection from security products since the execution is masked under a legitimate process | 1 | accept | T1055.014 | Process Injection: Vdso Hijacking |
Rootkits inject malicious code into processes via VDSO hijacking in order to evade process-based defenses as well as possibly elevate privileges | 1 | accept | T1055.014 | Process Injection: Vdso Hijacking |
null | 1 | accept | T1055.009 | Process Injection: Proc Memory |
Attacker uses Proc memory injection to execute malicious code in the address space of a legitimate process | 1 | accept | T1055.009 | Process Injection: Proc Memory |
Malware overwrites the target processes’ stack using memory mappings provided by the /proc filesystem | 1 | accept | T1055.009 | Process Injection: Proc Memory |
Malware enumerates the memory of a process via the /proc filesystem (/proc/[pid]) then crafting ROP payload to run malicious instructions. | 1 | accept | T1055.009 | Process Injection: Proc Memory |
Attackers use /proc filesystem to overwrite memory of legitimate process to perform malicious activity | 1 | accept | T1055.009 | Process Injection: Proc Memory |
Malicious code is run without detection using /proc filesystem together with ROP payloads | 1 | accept | T1055.009 | Process Injection: Proc Memory |
null | 1 | accept | T1055.008 | Process Injection: Ptrace System Calls |
Malware inject malicious code into processes via ptrace system calls to elevate privilages and evade process-based defenses | 1 | accept | T1055.008 | Process Injection: Ptrace System Calls |
Using proces injection via ptrace, attackers get access to the process's memory, system/network resources, and possibly elevated privileges | 1 | accept | T1055.008 | Process Injection: Ptrace System Calls |
Campaign uses Ptrace system call injection for executing malicious code in the address space of a trusted process. | 1 | accept | T1055.008 | Process Injection: Ptrace System Calls |
Malware then used ptrace to elevate privilage to modify hosts file. | 1 | accept | T1055.008 | Process Injection: Ptrace System Calls |
Infostealer used ptrace to dump authentication token from process memory. | 1 | accept | T1055.008 | Process Injection: Ptrace System Calls |
APT33 has used a variety of publicly available tools like Gpppassword to gather credentials. | 1 | accept | T1552.006 | Unsecured Credentials: Group Policy Preferences |
PowerSploit contains a collection of Exfiltration modules that can harvest credentials from Group Policy Preferences. | 1 | accept | T1552.006 | Unsecured Credentials: Group Policy Preferences |
Attackers try to find unsecured credentials in Group Policy Preferences (GPP) using Metasploit module | 1 | accept | T1552.006 | Unsecured Credentials: Group Policy Preferences |
APT campaign uses Gpppassword tool to extract credentials from GPP | 1 | accept | T1552.006 | Unsecured Credentials: Group Policy Preferences |
Attackers use opensource tools to gather and decrypt the password file from Group Policy Preference XML files | 1 | accept | T1552.006 | Unsecured Credentials: Group Policy Preferences |
Anchor can execute payloads via shell scripting. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
AppleJeus has used shell scripts to execute commands after installation and set persistence mechanisms. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
APT41 executed file /bin/pwd in activity exploiting CVE-2019-19781 against Citrix devices. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
Bundlore has leveraged /bin/sh and /bin/bash to execute commands on the victim machine. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
CallMe has the capability to create a reverse shell on victims. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
Chaos provides a reverse shell connection on 8338/TCP encrypted via AES. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
CoinTicker executes a bash script to establish a reverse shell. | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
CookieMiner has used a Unix shell script to run a series of commands targeting macOS. ;; Derusbi is capable of creating a remote Bash shell and executing commands. ;; Doki has executed shell scripts with /bin/sh. ;; Drovorub can execute arbitrary commands as root on a compromised system. ;; Exaramel for Linux has a co... | 1 | accept | T1059.004 | Command and Scripting Interpreter: Unix Shell |
APT1 has been known to use credential dumping using Mimikatz. | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT28 regularly deploys both publicly available (ex: Mimikatz) and custom password retrieval tools on victims. | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT3 has used a tool to dump credentials by injecting itself into lsass.exe and triggering with the argument dig." | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT32 used Mimikatz and customized versions of Windows Credential Dumper to harvest credentials. | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT33 has used a variety of publicly available tools like LaZagne Mimikatz and ProcDump to dump credentials. | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT39 has used Mimikatz Windows Credential Editor and ProcDump to dump credentials. | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT41 used the Windows Credential Editor to dump password hashes from memory and authenticate to other user accounts. | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
Blue Mockingbird has used Mimikatz to retrieve credentials from LSASS memory. ;; BRONZE BUTLER has used various tools (such as Mimikatz and WCE) to perform credential dumping. ;; Cleaver has been known to dump credentials using Mimikatz and Windows Credential Editor. ;; CozyCar has executed Mimikatz to harvest stored ... | 1 | accept | T1003.001 | OS Credential Dumping: Lsass Memory |
APT32 has used PubPrn.vbs within execution scripts to execute malware possibly bypassing defenses. | 1 | accept | T1216.001 | Signed Script Proxy Execution: Pubprn |
PubPrn.vbs can be used to proxy execution from a remote site | 1 | accept | T1216.001 | Signed Script Proxy Execution: Pubprn |
attacker uses a signed Microsoft WSH script (PubPrn.vbs) to run malicious code and bypass application whitelisting restrictions | 1 | accept | T1216.001 | Signed Script Proxy Execution: Pubprn |
Adversaries use the trusted PubPrn script to proxy execution of malicious files | 1 | accept | T1216.001 | Signed Script Proxy Execution: Pubprn |
To bypass application control restrictions, malware uses PubPrn script to execute malicious files from remote site | 1 | accept | T1216.001 | Signed Script Proxy Execution: Pubprn |
AppleJeus has loaded a plist file using the launchctl command. | 1 | accept | T1569.001 | System Services: Launchctl |
Calisto uses launchctl to enable screen sharing on the victim’s machine. | 1 | accept | T1569.001 | System Services: Launchctl |
LoudMiner launched the QEMU services in the /Library/LaunchDaemons/ folder using launchctl. | 1 | accept | T1569.001 | System Services: Launchctl |
Adversaries abuse launchctl to execute malicious commands on victim system | 1 | accept | T1569.001 | System Services: Launchctl |
Using launchctl adversaries can install persistence or execute changes they made | 1 | accept | T1569.001 | System Services: Launchctl |
ADVSTORESHELL stores output from command execution in a .dat file in the %TEMP% directory. | 1 | accept | T1074.001 | Data Staged: Local Data Staging |
APT28 has stored captured credential information in a file named pi.log. | 1 | accept | T1074.001 | Data Staged: Local Data Staging |
APT3 has been known to stage files for exfiltration in a single location. | 1 | accept | T1074.001 | Data Staged: Local Data Staging |
APT39 has utilized tools to aggregate data prior to exfiltration. | 1 | accept | T1074.001 | Data Staged: Local Data Staging |
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