Credence: Augmenting Datacenter Switch Buffer Sharing with ML Predictions

Vamsi Addanki, Maciej Pacut, and Stefan Schmid.

21st USENIX Symposium on Networked Systems Design and Implementation (NSDI 24)2024

Apr Santa Clara, CA

Find the paper's word

Guess a five-letter word from this work. You have six tries.

Right placeElsewhereNot in the word

Use your keyboard or the keys below.

Abstract

Packet buffers in datacenter switches are shared across all the switch ports in order to improve the overall throughput. The trend of shrinking buffer sizes in datacenter switches makes buffer sharing extremely challenging and a critical performance issue. Literature suggests that push-out buffer sharing algorithms have significantly better performance guarantees compared to drop-tail algorithms. Unfortunately, switches are unable to benefit from these algorithms due to lack of support for push-out operations in hardware. Our key observation is that drop-tail buffers can emulate push-out buffers if the future packet arrivals are known ahead of time. Recent advancements in traffic predictions pave us a way towards better buffer sharing algorithms that leverage predictions.
     This paper is the first research attempt in this direction. We propose Credence, a drop-tail buffer sharing algorithm augmented with machine-learned predictions. Credence can unlock the performance only attainable by push-out algorithms so far. Its performance hinges on the accuracy of predictions. Specifically, Credence achieves near-optimal performance of the best known push-out algorithm LQD (Longest Queue Drop) with perfect predictions, but gracefully degrades to the performance of the simplest drop-tail algorithm Complete Sharing when the prediction error gets arbitrarily worse. Our evaluations show that Credence improves throughput by 1.5x compared to traditional approaches. In terms of flow completion times, we show that Credence improves upon the state-of-the-art approaches by up to 95% using off-the-shelf machine learning techniques that are also practical in today’s hardware. We believe this work opens several interesting future work opportunities both in systems and theory that we discuss at the end of this paper.

Cite this work

BibTeX entry
@inproceedings{credencensdi24,
  author = {Addanki, Vamsi and Pacut, Maciej and Schmid, Stefan},
  title = {Credence: Augmenting Datacenter Switch Buffer Sharing with ML Predictions},
  booktitle = {21st USENIX Symposium on Networked Systems Design and Implementation (NSDI 24)},
  year = {2024},
  address = {Santa Clara, CA},
  url = {https://www.usenix.org/conference/nsdi24/presentation/addanki-credence},
  publisher = {USENIX Association}
}

Watch