The network is where AI verification becomes real. Lucid Computing, in partnership with the Research Institutes of Sweden (RISE), is building and operating an adversarial testbed for developing and red-teaming AI compute verification solutions. The premise of the project is that verification claims — where AI compute runs, how it is used, what model is loaded — are only as good as the adversarial attacks they can withstand. Our job is to build verification solutions that can survive such attacks. Network devices and network code form the backbone of these solutions, including designs like: Traffic shaping for workload classification — bandwidth-constrained pod uplinks, telemetry aggregation, and randomized inference routers/load balancers designed to make covert frontier training economically infeasible, without inspecting or retaining traffic contents. Network taps and the evidence plane — line-rate traffic capture and hashing, cryptographic commitment of network telemetry (rather than traffic contents), and the software that lets programmable NICs (FlexNICs) and traffic shapers constrain and observe the I/O path of GPU servers. Assurance and receipt infrastructure — software that cross-checks network telemetry against signed job manifests, evaluates policy, and emits chained, verifiable receipts. The devices you build must remain trustworthy when the adversary is the operator of the network itself — potentially a well-resourced, nation-state-class actor. Requirements like "never mirror or retain full traffic," "commit only to pre-agreed evidence," and "assume every component around you may be hostile" reshape familiar network designs in unfamiliar ways, and many of the right answers haven't been invented yet. You'll help invent them: contributing to threat models, proposing new security protocols and device designs, defending them in design reviews, and then hardening and remediating them when the red team publishes what it broke. You'll work alongside hardware/FPGA engineers (DC-SCM, FlexNIC prototypes), security engineers, and verification researchers, and your work will directly shape open, published reference architectures intended to be reused by frontier labs, governments, and future compute agreements.
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Job Type
Full-time
Career Level
Senior
Education Level
No Education Listed