Researchers detailed VoidLink, a modular Linux malware and command-and-control framework built for stealthy, long-term access in cloud and container environments. The framework is written largely in Zig and includes custom loaders, implants, rootkits, and more than 30 plugins, with logic to detect major cloud providers as well as Kubernetes and Docker so it can adapt to the host environment. Check Point said VoidLink supports multiple C2 channels including HTTP/HTTPS, DNS, ICMP, WebSocket, and HTTP/2, uses anti-analysis and anti-forensic features such as runtime code encryption, integrity checks, log wiping, and self-deletion on tampering, and offers several rootkit options including LD_PRELOAD, LKM, and eBPF implementations.
Datadog Security Labs highlighted VoidLink as an in-the-wild example of malware abusing eBPF to defeat host visibility, alongside LinkPro and Atomic Arch. In VoidLink’s case, the rootkit uses bpf_probe_write_user() to alter Netlink socket-diagnostic responses so tools such as ss omit selected TCP connections without breaking output parsing. Datadog said this reflects a broader shift toward eBPF-based kernel evasion that can hide activity from both user-space tools and some kernel introspection, and recommended monitoring BPF_PROG_LOAD events and flagging suspicious helper usage at load time as a high-confidence way to detect rootkit installation before the malicious program attaches.

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Datadog Security Labs published analysis describing VoidLink as one of three in-the-wild Linux malware examples abusing eBPF helpers for stealth. The article said VoidLink uses bpf_probe_write_user() to alter Netlink socket-diagnostic responses so tools such as ss omit selected TCP connections.
On its publication date, Check Point Research disclosed VoidLink, a modular cloud-native Linux malware and C2 framework with loaders, implants, rootkits, and more than 30 plugins. The researchers said they observed a functional C2 server and Chinese-localized dashboard but had not seen evidence of real-world infections.
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