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Flux: Optimal Scheduling of Optical Circuit Switches for LLM Training

Published 22 Sep 2026 in cs.NI and cs.DC | (2609.25949v1)

Abstract: Optical Circuit Switching (OCS) offers high bandwidth density and energy efficiency for LLM training, but incurs a non-negligible reconfiguration delay. Prior work typically schedules optical circuit switches independently of compute, using aggregate traffic demand to determine which circuits to provision and when. We argue that this separation creates a fundamental inefficiency: reconfigurations that ignore the compute timeline can stall communication, resulting in low circuit utilization and large buffer requirements. In this paper, we present Flux, a scheduler that optimally schedules optical circuit switches based on the structure of the entire workload. Flux remains effective across a wide range of switching speeds by reusing circuits and amortizing reconfiguration delay behind compute and communication. We show that Flux reduces training iteration time by up to 10×10\times and peak NIC buffer requirements by more than three orders of magnitude compared to traditional periodic schedulers.

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