子空间窥探:过滤带有操作系统支持的窥探

Daehoon Kim, Jeongseob Ahn, Jaehong Kim, Jaehyuk Huh
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引用次数: 58

摘要

尽管基于侦听的一致性协议通过简单而稳健的一致性机制提供了快速的缓存到缓存传输,但由于广播侦听的开销,扩展协议一直很困难。在本文中,我们提出了一种称为子空间窥探的相干过滤技术,该技术将每个内存页的潜在共享者存储在页表条目中。通过在页表项中使用共享器信息,页的一致性事务仅向系统(子空间)中的节点子集生成窥探请求。但是,随着应用程序的阶段可能发生变化,或者操作系统可能将线程迁移到不同的节点,页面的相干子空间可能会发生变化。为了动态调整子空间,子空间窥探支持一种收缩机制,即从子空间中删除过时的节点。子空间窥探可以集成到任何类型的相干协议和网络拓扑结构中。由于子空间窥探保证了子空间总是包含页面的精确共享者,因此它不会限制一致性协议和网络的设计。我们评估了无序网状网络上具有令牌相干性的子空间窥探。对于16核系统上的科学和服务器应用程序,子空间窥探平均减少44%的窥探。
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Subspace snooping: Filtering snoops with operating system support
Although snoop-based coherence protocols provide fast cache-to-cache transfers with a simple and robust coherence mechanism, scaling the protocols has been difficult due to the overheads of broadcast snooping. In this paper, we propose a coherence filtering technique called subspace snooping, which stores the potential sharers of each memory page in the page table entry. By using the sharer information in the page table entry, coherence transactions for a page generate snoop requests only to the subset of nodes in the system (subspace). However, the coherence subspace of a page may evolve, as the phases of applications may change or the operating system may migrate threads to different nodes. To adjust subspaces dynamically, subspace snooping supports a shrinking mechanism, which removes obsolete nodes from subspaces. Subspace snooping can be integrated to any type of coherence protocols and network topologies. As subspace snooping guarantees that a subspace always contains the precise sharers of a page, it does not restrict the designs of coherence protocols and networks. We evaluate subspace snooping with Token Coherence on un-ordered mesh networks. For scientific and server applications on a 16-core system, subspace snooping reduces 44% of snoops on average.
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