Aug 2026· Conference on Applications, Technologies, Architectures, and Protocols for Computer Communication· pp. 2186-2188· 0 citations· 21 references
Computer Science
TL;DR
Charon, a priority-aware sketch that replaces the structural separation used by prior methods with stratified admission sampling, achieves more than 2× higher detection accuracy for high-priority flows than the best baseline and up to four orders of magnitude lower average error than state-of-the-art priority-aware sketches.
Abstract
Per-flow measurement of priority-heterogeneous traffic underpins cloud service-level agreement (SLA) enforcement, anomaly detection, and distributed AI training in high-speed networks, yet remains challenging in the fast L1/L2-cache memory regime where high-priority flows are vastly outnumbered. We propose Charon, a priority-aware sketch that replaces the structural separation used by prior methods with stratified admission sampling: a single, online-adaptive, parameter-free rule decides whether each packet is admitted to the sketch. Across multiple real-world traces, Charon achieves more than 2× higher detection accuracy for high-priority flows than the best baseline and up to four orders of magnitude lower average error than state-of-the-art priority-aware sketches, with the gap widening as memory tightens, at high processing throughput. The implementation on the industry-grade Tofino switch further demonstrates low resource utilization.
Evaluation on representative workloads demonstrates that P2CS achieves performance comparable to in-network mechanisms while significantly reducing complexity and cost, and requires minimal software changes making it readily deployable in today's datacenter infrastructure.
Ali Munir, Xiao-Lin Pang, Junyi Zhang· Conference on Applications,...· 0 citations
Probabilistic state-proportional (PSP) dispatching, a packet-level load balancing algorithm using a Band-based discrete state representation, provides an effective balance among performance, stability, and overhead for artificial intelligence data centers.
Jia-Qi Liu, Chun-Yang Zhang, Heng Pan et al.· IEEE Conference on Local Com...· 0 citations
In data centers, large-scale many-to-one traffic can rapidly exhaust switch buffers and trigger priority-based flow control (PFC) pause, resulting in increased flow completion time (FCT) for uncongested flows. To address this issue, we propose an innovative switch-side fast and accurate flow control (FAFC) scheme. By d...
Cheng-Di Lu, Yuang Chen, Fangyu Zhang et al.· IEEE Transactions on Network...· 0 citations
A comprehensive implementation of the DualPI2 AQM in ns-3, while also mirroring the official Linux Kernel architecture is presented, which equips the research community with a robust tool to evaluate and advance L4S performance across diverse network topologies, ranging from data centers to wireless home and office env...
Maria Eduarda Veras, Eduardo Freitas, Assis T. de Oliveira et al.· 0 citations
This work introduces CSIG, a protocol that delivers precise, multi-bit bottleneck congestion signals via a fixed-length Ethernet header, and proposes Fast Ramp-Up, a congestion control primitive that leverages these bottleneck signals to reduce median RPC latency by 20% and unclaimed bandwidth by 60% in production.
Abhiram Ravi, Nandita Dukkipati, Weiwu Pang et al.· Conference on Applications,...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.