English

ReclaimNet: Reclaim-Aware Network Protocols for Voluntary GPU Sharing on Campus

Networking and Internet Architecture 2026-05-29 v1

Abstract

University campuses host abundant but fragmented GPU resources whose voluntary sharing is blocked by a mismatch between revocable, autonomous ownership and migration mechanisms that assume stationary failure hazards, homogeneous interconnects, and unbounded transfer windows. We present ReclaimNet, a network-layer migration protocol suite that treats provider reclaim as a first-class contract rather than a failure case, combining three mechanisms: (i) reclaim-aware checkpoint scheduling that jointly adapts to time-varying departure hazards and contended bandwidth across co-resident jobs; (ii) volatility-aware destination selection integrating topology, survival probability, and notice-window feasibility; and (iii) deadline-aware migration traffic control with edge enforcement and a submillisecond TC BPF kill-switch. A two-month deployment on a 54-node heterogeneous campus testbed reduces work loss by 66% over Slurm preempt-and-requeue and 38% over pipeline-redundancy checkpointing, with 38% shorter downtime and under 3% degradation of background research traffic. The prototype is open-sourced at the anonymous repository https://anonymous.4open.science/r/ICNP2026-ReclaimNet/.

Keywords

Cite

@article{arxiv.2605.28872,
  title  = {ReclaimNet: Reclaim-Aware Network Protocols for Voluntary GPU Sharing on Campus},
  author = {Wenyang Jia and Jingjing Wang and Xianneng Zou and Kai Lei},
  journal= {arXiv preprint arXiv:2605.28872},
  year   = {2026}
}
R2 v1 2026-07-22T07:37:54.250Z