PLB: congestion signals are simple and effective for network load balancing
Mubashir Adnan Qureshi, Yuchung Cheng, Qianwen Yin, Qiaobin Fu, Gautam Kumar, Masoud Moshref, Junhua Yan, Van Jacobson, David Wetherall, Abdul Kabbani
Abstract
We present a new, host-based design for link load balancing and report the first experiences of link imbalance in datacenters. Our design, PLB (Protective Load Balancing), builds on transport protocols and ECMP/WCMP to reduce network hotspots. PLB randomly changes the paths of connections that experience congestion, preferring to repath after idle periods to minimize packet reordering. It repaths a connection by changing the IPv6 Flow Label on its packets, which switches include as part of ECMP/WCMP. Across hosts, this action drives down hotspots in the network, and lowers the latency of RPCs.
PLB is used fleetwide at Google for TCP and Pony Express traffic. We could deploy it when other designs were infeasible because PLB requires only small transport modifications and switch configuration changes, and is backwards-compatible. It has produced excellent gains: the median utilization imbalance of highly-loaded ToR uplinks in Google datacenters fell by 60%, packet drops correspondingly fell by 33%, and the tail latency (99p) of small RPCs fell by 20%. PLB is also a general solution that works for settings from datacenters to backbone networks, as well as different transports.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 3876d1d6-e557-4fd2-80de-7a4bc4e2b479Cited by top-tier papers25
- Alibaba HPN: A Data Center Network for Large Language Model TrainingKun Qian, Yongqing Xi, Jiamin Cao, Jiaqi Gao et al.SIGCOMM 2024 · 173 citations
- Network Load Balancing with In-network Reordering Support for RDMACha Hwan Song, Xin Zhe Khooi, Raj Joshi, Inho Choi et al.SIGCOMM 2023 · 110 citations
- Poseidon: Efficient, Robust, and Practical Datacenter CC via Deployable INTWeitao Wang, Masoud Moshref, Yuliang Li, Gautam Kumar et al.NSDI 2023 · 58 citations
- White-Boxing RDMA with Packet-Granular Software ControlChenxingyu Zhao, Jaehong Min, Ming Liu, Arvind KrishnamurthyNSDI 2025 · 28 citations
- μMon: Empowering Microsecond-level Network Monitoring with WaveletsHao Zheng, Chengyuan Huang, Xiangyu Han, Jiaqi Zheng et al.SIGCOMM 2024 · 26 citations
Builds on2
- Swift: Delay is Simple and Effective for Congestion Control in the DatacenterGautam Kumar, Nandita Dukkipati, Keon Jang, Hassan M. G. Wassel et al.SIGCOMM 2020 · 333 citations
- Orion: Google's Software-Defined Networking Control PlaneAndrew D. Ferguson, Steve D. Gribble, Chi-Yao Hong, Charles Killian et al.NSDI 2021 · 95 citations
Related papers
- Improving Network Availability with Protective ReRouteDavid Wetherall, Abdul Kabbani, Van Jacobson, Jim Winget et al.SIGCOMM 2023 · 18 citations
- Preventing Network Bottlenecks: Accelerating Datacenter Services with Hotspot-Aware Placement for Compute and StorageHamid Hajabdolali Bazzaz, Yingjie Bi, Weiwu Pang, Minlan Yu et al.NSDI 2025 · 3 citations
- Unlocking ECMP Programmability for Precise Traffic ControlYadong Liu, Yunming Xiao, Xuan Zhang, Weizhen Dang et al.NSDI 2025 · 10 citations
- Capybara: Dynamic Load Balancing with Microsecond-Scale TCP MigrationInho Choi, Nimish Wadekar, Guangda Sun, Raj Joshi et al.SIGCOMM 2026
- FLB: Fine-grained Load Balancing for Lossless Datacenter NetworksJinbin Hu, Wenxue Li, Xiangzhou Liu, Junfeng Wang et al.USENIX ATC 2025 · 10 citations
