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Beyond RED: Periodic Early Detection for on-chip buffer memories in network elements

机译:超出红色:在网络元素中的片上缓冲存储器的周期性早期检测

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The scalability and energy efficiency of future network equipment will critically depend on the ability to confine the memories that implement the packet buffers within the same traffic management chips that process and forward the packets. Despite massive research efforts aimed at trimming its demand of large buffers for the accommodation of TCP traffic, the bandwidth-delay product (BDP) rule remains to-date the dominant criterion for the sizing of packet buffers in commercial network elements, and arguably the only cause for their implementation in off-chip memories. Only the lack of a valid alternative justifies the lasting popularity of conventional buffer management methods for TCP traffic such as Tail Drop and Random Early Detection (RED), which fail to reconcile small buffer sizes with high-end throughput performance. Our contribution is twofold. First, we show that the RED algorithm is intrinsically flawed because of the way it maps buffer occupancy levels onto packet drop probabilities. Second, we introduce Periodic Early Detection (PED), a buffer management scheme with touchless configuration that sustains 100% link utilization using only 2.5% of the memory required by the BDP rule. While a more comprehensive study of PED's properties is in order, the clear superiority of the scheme under common benchmarking setups places it at the forefront of the candidate enablers for the on-chip implementation of buffer memories.
机译:未来网络设备的可扩展性和能量效率将批判性地取决于限制在处理和转发数据包的同一流量管理芯片内实现数据包缓冲区的存储器的能力。尽管旨在修剪其对TCP流量的大型缓冲区的需求的大规模研究工作,但带宽延迟产品(BDP)规则仍然是迄今为止商业网络元素中数据包缓冲区大小的主导标准,并且可以说是唯一的原因他们在片外记忆中实现。只有缺乏有效的替代方案对TCP流量的持续普及,例如尾部下降和随机早期检测(红色),这不能通过高端吞吐量性能来协调小缓冲大小。我们的贡献是双重的。首先,我们表明红算法本质上缺陷,因为它将缓冲区占用水平映射到分组丢弃概率。其次,我们引入定期早期检测(PED),一个具有不等型配置的缓冲管理方案,可使用BDP规则所需的2.5%的2.5%维持100%链路利用。虽然对PED的属性进行了更全面的研究,但是在共同的基准测试设置下的方案的清晰优势将其置于候选人推动者的最前沿,以便对缓冲存储器的片上执行的候选者。

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