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How to Control a TCP: Minimally-Invasive Congestion Management for Datacenters

机译:如何控制TCP:针对数据中心的最小侵入性拥塞管理

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In multi-tenant datacenters, the hardware may be homogeneous but the traffic often is not. For instance, customers who pay an equal amount of money can get an unequal share of the bottleneck capacity when they do not open the same number of TCP connections. To address this problem, several recent proposals try to manipulate the traffic that TCP sends from the VMs. VCC and AC/DC are two new mechanisms that let the hypervisor control traffic by influencing the TCP receiver window (rwnd). This avoids changing the guest OS, but has limitations (it is not possible to make TCP increase its rate faster than it normally would). Seawall, on the other hand, completely rewrites TCP's congestion control, achieving fairness but requiring significant changes to both the hypervisor and the guest OS. There seems to be a need for a middle ground: a method to control TCP's sending rate without requiring a complete redesign of its congestion control. We introduce a minimally-invasive solution that is flexible enough to cater for needs ranging from weighted fairness in multi-tenant datacenters to potentially offering Internet-wide benefits from reduced interflow competition.
机译:在多租户数据中心中,硬件可能是同质的,但流量通常不是。例如,支付相同金额的客户在未打开相同数量的TCP连接时会获得瓶颈容量的不平等份额。为了解决这个问题,最近的一些提议试图操纵TCP从VM发送的流量。 VCC和AC / DC是使管理程序通过影响TCP接收器窗口(rwnd)来控制流量的两种新机制。这样可以避免更改来宾操作系统,但是有局限性(不可能使TCP的速率比正常情况下更快地增加)。另一方面,Seawall完全重写了TCP的拥塞控制,实现了公平,但需要对虚拟机管理程序和来宾OS进行重大更改。似乎需要中间立场:一种无需完全重新设计其拥塞控制即可控制TCP发送速率的方法。我们引入了一种微创解决方案,该解决方案具有足够的灵活性,可以满足从多租户数据中心的加权公平到潜在的因减少互通竞争而在Internet范围内带来好处的各种需求。

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