ArMOR: Defending against memory consistency model mismatches in heterogeneous architectures

Daniel Lustig, Caroline Trippel, Michael Pellauer, M. Martonosi
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引用次数: 39

Abstract

Architectural heterogeneity is increasing: numerous products and studies have proven the benefits of combining cores and accelerators with varying ISAs into a single system. However, an underappreciated barrier to unlocking the full potential of heterogeneity is the need to specify and to reconcile differences in memory consistency models across layers of the hardware-software stack and among on-chip components. This paper presents ArMOR, a framework for specifying, comparing, and translating between memory consistency models. ArMOR defines MOSTs, an architecture-independent and precise format for specifying the semantics of memory ordering requirements such as preserved program order or explicit fences. MOSTs allow any two consistency models to be directly and algorithmically compared, and they help avoid many of the pitfalls of traditional consistency model analysis. As a case study, we use ArMOR to automatically generate translation modules called shims that dynamically translate code compiled for one memory model to execute on hardware implementing a different model.
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装甲:在异构架构中防止内存一致性模型不匹配
体系结构的异构性正在增加:许多产品和研究已经证明了将具有不同isa的核心和加速器组合到单个系统中的好处。然而,在释放异构的全部潜力方面,一个未被充分认识的障碍是需要指定和协调跨硬件软件堆栈层和片上组件之间内存一致性模型的差异。本文介绍了ArMOR,一个用于指定、比较和转换内存一致性模型的框架。ArMOR定义了most,这是一种独立于体系结构的精确格式,用于指定内存排序需求的语义,例如保留程序顺序或显式围栏。most允许对任意两个一致性模型进行直接和算法上的比较,并且它们有助于避免传统一致性模型分析的许多缺陷。作为一个案例研究,我们使用ArMOR自动生成称为shims的翻译模块,该模块动态地翻译为一个内存模型编译的代码,以便在实现不同模型的硬件上执行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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