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Prevention of deadlocks and livelocks in lossless, backpressured packet networks

机译:防止僵局和硬锁在无损的背压,背压包网络中

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When congestion builds up in a packet network, two general approaches are possible to cope with the shortage of buffer space. One approach is to drop incoming packets for the buffer that is not available and to rely on the end-to-end protocols for the recovery of lost packets. The alternative approach is to insist that no packets should be dropped inside a packet network, even when congestion builds up. One way to accomplish this goal is to have the congested nodes send backpressure feedback to neighboring nodes, informing them of unavailability of buffering capacity and in effect stopping them from forwarding packets until enough buffer becomes available. While there are potential advantages in backpressured networks that do not allow packet dropping, such networks are susceptible to a condition known as deadlock in which throughput of the network or part of the network goes to zero (i.e., no packets are transmitted). In this paper, we describe a simple, lossless method of preventing deadlocks and livelocks in backpressured packet networks. In contrast with prior approaches, our proposed technique does not introduce any packet losses, does not corrupt the packet sequence, and does not require any changes to packet headers. In addition to presenting the new congestion control protocol in a general context, we describe an important application of the technique to Gigabit Ethernet (IEEE 802.3z).
机译:当拥塞在数据包网络中构建时,可以应对缓冲空间的短缺来应对两种一般方法。一种方法是为无法使用的缓冲区丢弃传入数据包,并依赖于恢复丢失数据包的端到端协议。替代方法是坚持认为,即使拥塞累积,也不会在数据包网络内丢弃数据包。实现此目标的一种方法是拥有拥挤的节点向邻近节点发送背压反馈,通知它们对缓冲容量的不可用,并且在转发数据包中停止它们直到可用的足够的缓冲区。虽然在不允许数据包丢弃的背压网络中存在潜在的优势,但是这种网络易于称为死锁的条件,其中网络或网络的一部分的吞吐量转到零(即,没有发送分组)。在本文中,我们描述了防止死锁和背压分组网络中的死锁和固定的简单无损方法。与现有方法相比,我们提出的技术不会引入任何数据包丢失,不会破坏数据包序列,并且不需要对数据包标头的任何更改。除了在一般背景下呈现新的拥塞控制协议之外,我们还描述了技术对千兆以太网(IEEE 802.3z)的重要应用。

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