Clambling is a Windows backdoor associated with APT27 operations. It has been deployed alongside ASPXSpy web shells and PlugX through DLL side-loading using a signed Google Updater executable, reflecting tradecraft commonly used in Chinese espionage intrusions. Clambling has also been delivered through malicious files that rely on victim execution, and its dropper can use PowerShell to retrieve the malware.
The malware supports a broad set of post-compromise capabilities. It can identify the current username, enumerate the compromised host’s IP address, discover network shares, and query Registry keys for host profiling and targeted data collection, including checks associated with cryptocurrency wallet software. It can capture clipboard contents and record screen activity to AVI format, indicating surveillance and collection functionality.
For execution and evasion, Clambling has used process hollowing and process injection into legitimate Windows processes. It can bypass User Account Control through a dedicated DLL-based method, set its files to hidden, and use DLL side-loading by placing malicious libraries next to legitimate executables. For persistence, it can register itself as a Windows service and create or delete Registry keys. Clambling has also used Dropbox as a command-and-control and payload delivery channel.
Overall, Clambling is best characterized as a Windows backdoor used in espionage-oriented intrusions, combining stealth, privilege escalation, host discovery, surveillance, and persistence mechanisms.
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1 CVE Mallory has correlated with this family across public research and vendor advisories. Each row links to the full Mallory page for that vulnerability.
the operators deployed ASPXSpy web shells , then side-loaded PlugX and a “Clambling” backdoor through a signed Google Updater executable
1 distinct threat actor attributed by public researchers. Open in Mallory to see the full evidence chain and overlapping campaigns.
the operators deployed ASPXSpy web shells , then side-loaded PlugX and a “Clambling” backdoor through a signed Google Updater executable
29 distinct techniques documented for this family, organized by ATT&CK tactic.
The content repeatedly describes threat actors and malware being delivered through phishing or spearphishing emails containing malicious attachments such as Microsoft Office documents, PDFs, RAR/ZIP archives, CHM, ISO, IMG, HTA, LNK, and executable files disguised as documents.
The content repeatedly describes threat actors and malware using PowerShell to execute payloads, run commands, download additional malware, perform lateral movement, evade defenses, and execute scripts in memory.
During the 2016 Ukraine Electric Power Attack, Sandworm Team used the xp_cmdshell command in MS-SQL. During the 2025 Poland Wiper Attacks, the adversaries leveraged PsExec to run cmd.exe commands on multiple victim machines. Numerous malware families and groups are described as using cmd.exe, cmd /c, Windows command shell, or command-line interfaces to execute commands, payloads, reconnaissance, persistence, cleanup, and ransomware actions.
The content repeatedly describes victims being lured into opening malicious attachments, enabling macros, launching installers, clicking embedded files/links, or otherwise directly executing malicious content.
Sandworm Team leveraged Microsoft Office attachments which contained malicious macros that were automatically executed once the user permitted them... APT29 has used various forms of spearphishing attempting to get a user to open attachments... DarkGate is distributed through phishing links to VBS or MSI objects requiring user interaction for execution.
During the 2015 Ukraine Electric Power Attack, Sandworm Team modified in-registry Internet settings to lower internet security before launching rundll32.exe ... AADInternals can modify registry keys ... ADVSTORESHELL is capable of setting and deleting Registry values ... [many additional examples].
The content repeatedly describes malware and threat actors injecting shellcode, DLLs, or payloads into legitimate processes such as svchost.exe, explorer.exe, iexplore.exe, cmd.exe, lsass.exe, and browser processes.
Agent Tesla has used process hollowing to create and manipulate processes through sections of unmapped memory by reallocating that space with its malicious code. APT-C-36 has used process hollowing to execute malware in the memory of legitimate processes. Astaroth can create a new process in a suspended state from a targeted legitimate process in order to unmap its memory and replace it with malicious code.
During the 2016 Ukraine Electric Power Attack, Sandworm Team used an arbitrary system service to load at system boot for persistence for Industroyer. They also replaced the ImagePath registry value of a Windows service with a new backdoor binary.
Numerous malware families and threat groups are described as achieving persistence by adding values under Run/RunOnce/Policies\Explorer\Run Registry keys or by placing shortcuts/files in the Windows Startup folder.
The content repeatedly describes malware and threat actors that 'bypass UAC,' 'perform UAC bypass,' or use specific Windows components such as fodhelper.exe, eventvwr.exe, sdclt.exe, CMSTPLUA COM interface, SilentCleanup, and registry hijacks to gain elevated privileges.
The content repeatedly describes malware and threat actors using obfuscated code, encrypted strings, Base64/XOR/RC4/AES encoding, VMProtect/ConfuserEx/SmartAssembly, stack strings, control-flow flattening, opaque predicates, and hidden payloads to evade analysis and detection.
The content repeatedly describes malware and threat actors injecting shellcode, DLLs, or payloads into legitimate processes such as svchost.exe, explorer.exe, iexplore.exe, cmd.exe, lsass.exe, and browser processes.
Agent Tesla has used process hollowing to create and manipulate processes through sections of unmapped memory by reallocating that space with its malicious code. APT-C-36 has used process hollowing to execute malware in the memory of legitimate processes. Astaroth can create a new process in a suspended state from a targeted legitimate process in order to unmap its memory and replace it with malicious code.
The content repeatedly describes malware and threat actors decoding, decrypting, deobfuscating, or unpacking payloads, strings, configuration data, commands, and C2 responses prior to execution or use.
During the 2015 Ukraine Electric Power Attack, Sandworm Team modified in-registry Internet settings to lower internet security before launching rundll32.exe ... AADInternals can modify registry keys ... ADVSTORESHELL is capable of setting and deleting Registry values ... [many additional examples].
The content repeatedly describes malware and threat actors querying, enumerating, opening, and reading Windows Registry keys and values, e.g., "APT41 queried registry values to determine items such as configured RDP ports and network configurations" and "Reg may be used to gather details from the Windows Registry of a local or remote system at the command-line interface."
AdFind can extract subnet information from Active Directory; actors used ipconfig /all after exploiting a machine; numerous malware and groups used ipconfig, ifconfig, arp, route, netsh, nbtstat, NBTscan, and related APIs to gather IP, MAC, DNS, DHCP, gateway, proxy, domain, ARP cache, routing, and adapter details.
The content repeatedly describes malware and threat actors collecting the username, identifying the current user, enumerating logged-on users, or running commands such as whoami, query user, and quser to determine user context on compromised systems.
Tasklist can be used to discover processes running on a system. Numerous malware families and threat groups are described as listing running processes, enumerating PIDs, checking for specific process names, or using APIs such as CreateToolhelp32Snapshot and commands such as tasklist and ps.
The content repeatedly describes malware and threat actors collecting host details such as hostname, OS version, architecture, CPU, memory, BIOS, language, and other machine characteristics; e.g., "Action RAT has the ability to collect the hostname, OS version, and OS architecture of an infected host."
The content repeatedly describes malware and threat actors listing files and directories, enumerating drives, searching for files by extension/name/path, retrieving file metadata, and browsing file systems (for example: "APT28 has used Forfiles to locate PDF, Excel, and Word documents during collection" and "cmd can be used to find files and directories with native functionality such as dir commands").
The content repeatedly describes threat actors and malware collecting, stealing, identifying, copying, or staging files, documents, credentials, logs, databases, and other information from compromised hosts or local systems.
PlugX ... supports command execution, screen capture, keylogging, file operations, and process/service management.
The content repeatedly describes threat actors and malware using HTTP and HTTPS for command and control, such as: "Sandworm Team used BlackEnergy to communicate between compromised hosts and their command-and-control servers via HTTP post requests."
57 sources tracked across advisories, community write-ups, and news. New activity surfaces here as Mallory finds it.
Backdoor used in a gaming-sector intrusion, with keylogging, screenshotting, file management, and multi-protocol C2; attribution to APT27 remained unresolved.
Malware that injects into svchost.exe for execution.
Ransomware with the ability to enumerate network shares.
Backdoor capable of identifying the username on a compromised host.
Match every observed IP, domain, and hash against your live telemetry.
Named campaigns wielding this family, with evidence pinned to each claim.
CVEs this family uses for access and lateral movement.
YARA, Sigma, Snort, and vendor rules, auto-deployed to your SIEM.
Every documented technique, ranked by evidence weight.
Reddit, Mastodon, and CTI community discussion around this family.