Host Congestion Control
Saksham Agarwal, Arvind Krishnamurthy, Rachit Agarwal
摘要
The conventional wisdom in systems and networking communities is that congestion happens primarily within the network fabric. However, adoption of high-bandwidth access links and relatively stagnant technology trends for resources within hosts have led to emergence of host congestion-that is, congestion within the host network that enables data exchange between NIC and CPU/memory. Such host congestion alters the many assumptions entrenched within decades of research and practice of congestion control.
We present hostCC, a congestion control architecture to handle both host and network fabric congestion. hostCC embodies three key ideas. First, in addition to congestion signals that originate within the network fabric, hostCC collects host congestion signals that capture the precise time, location, and reason for host congestion. Second, hostCC introduces a sub-RTT granularity host-local congestion response that uses congestion signals to allocate host resources between network traffic and host-local traffic. Finally, hostCC uses both host and network congestion signals to allocate network resources at an RTT granularity.
We realize hostCC within the Linux network stack. Our hostCC implementation requires no modifications in applications, host hardware, and/or network hardware; moreover, it can be integrated with existing congestion control protocols to handle both host and network fabric congestion. Evaluation of Linux DCTCP with and without hostCC suggests that, in the presence of host congestion, hostCC significantly reduces queueing and packet drops at the host, resulting in improved performance of networked applications in terms of throughput and tail latency.
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引用它的顶会 Paper21
- White-Boxing RDMA with Packet-Granular Software ControlChenxingyu Zhao, Jaehong Min, Ming Liu, Arvind KrishnamurthyNSDI 2025 · 被引用 28 次
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它引用的顶会 Paper6
- Swift: Delay is Simple and Effective for Congestion Control in the DatacenterGautam Kumar, Nandita Dukkipati, Keon Jang, Hassan M. G. Wassel 等SIGCOMM 2020 · 被引用 333 次
- Understanding host network stack overheadsQizhe Cai, Shubham Chaudhary, Midhul Vuppalapati, Jaehyun Hwang 等SIGCOMM 2021 · 被引用 150 次
- Reexamining Direct Cache Access to Optimize I/O Intensive Applications for Multi-hundred-gigabit NetworksAlireza Farshin, Amir Roozbeh, Gerald Q. Maguire Jr., Dejan KosticUSENIX ATC 2020 · 被引用 88 次
- dcPIM: near-optimal proactive datacenter transportQizhe Cai, Mina Tahmasbi Arashloo, Rachit AgarwalSIGCOMM 2022 · 被引用 30 次
- Towards μs tail latency and terabit ethernet: disaggregating the host network stackQizhe Cai, Midhul Vuppalapati, Jaehyun Hwang, Christos Kozyrakis 等SIGCOMM 2022 · 被引用 20 次
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