虚拟链路:用于跨核心通信的可伸缩多生产者多消费者消息队列体系结构

Qinzhe Wu, J. Beard, Ashen Ekanayake, A. Gerstlauer, L. John
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引用次数: 3

摘要

随着每个系统芯片上处理元件数量的增加,跨核通信日益成为一个瓶颈。典型的跨核通信硬件解决方案往往不够灵活;虽然软件解决方案很灵活,但它们有性能扩展限制。我们将说明,一个关键问题是基于软件的消息队列机制中的共享状态问题。本文提出了一种新的轻量级通信机制Virtual-Link (VL),它具有硬件支持,可以实现M:N无锁的数据移动。VL将相干共享状态的数量减少到零,这是许多方法的瓶颈。VL通过将数据保持在快速路径上(即在片上互连内)提供进一步的延迟优势。VL允许在一致性总线上的pe之间进行定向缓存注入(存储),减少核心对核心通信的延迟。VL对于流数据上的细粒度任务特别有效。在具有7个基准测试的完整系统模拟器上的评估表明,VL比最先进的基于软件的通信机制实现了2.09倍的加速,同时减少了61%的内存流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual-Link: A Scalable Multi-Producer Multi-Consumer Message Queue Architecture for Cross-Core Communication
Cross-core communication is increasingly a bottleneck as the number of processing elements increase per systemon-chip. Typical hardware solutions to cross-core communication are often inflexible; while software solutions are flexible, they have performance scaling limitations. A key problem, as we will show, is that of shared state in software-based message queue mechanisms. This paper proposes Virtual-Link (VL), a novel light-weight communication mechanism with hardware support to facilitate M:N lock-free data movement. VL reduces the amount of coherent shared state, which is a bottleneck for many approaches, to zero. VL provides further latency benefit by keeping data on the fast path (i.e., within the onchip interconnect). VL enables directed cache-injection (stashing) between PEs on the coherence bus, reducing the latency for coreto-core communication. VL is particularly effective for fine-grain tasks on streaming data. Evaluation on a full system simulator with 7 benchmarks shows that VL achieves a $2.09\times$ speedup over state-of-the-art software-based communication mechanisms, while reducing memory traffic by 61%.
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