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CASTED: Core-Adaptive Software Transient Error Detection for Tightly Coupled Cores

机译:铸造:紧密耦合核心的核心自适应软件瞬态错误检测

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Aggressive silicon process scaling over the last years has made transistors faster and less power consuming. Meanwhile, transistors have become more susceptible to errors. The need to maintain high reliability has led to the development of various software-based error detection methodologies which target either single-core or multi-core processors. In this work, we present CASTED, a Core-Adaptive Software Transient Error Detection methodology that focuses on improving the impact of error detection overhead on single-chip scalable architectures that are composed of tightly coupled cores. The proposed compiler methodology adaptively distributes the error detection overhead to the available resources across multiple cores, fully exploiting the abundant ILP of these architectures. CASTED adapts to a wide range of architecture configurations (issue-width, inter-core delay). We evaluate our technique on a range of architecture configurations using the Mediabench II video and SPEC CINT2000 benchmark suites. Our approach successfully adapts to (and regularly outperforms by up to 21.2%) the best fixed state-of-the-art approach while maintaining the same fault coverage.
机译:过去几年的侵略性硅工艺缩放使晶体管更快,耗费较少。同时,晶体管变得更容易受到误差。保持高可靠性的需要导致了各种基于软件的错误检测方法的开发,其针对单核或多核处理器。在这项工作中,我们呈现出铸造,一种核心自适应软件瞬态误差检测方法,专注于提高由紧密耦合核心组成的单芯片可伸缩架构上的错误检测开销的影响。所提出的编译器方法自适应地将错误检测开销分发给跨多个核心的可用资源,充分利用这些架构的丰富的ILP。铸件适应各种架构配置(发行宽度,核心间延迟)。我们使用MediaBench II视频和规范CINT2000基准套件对我们的技术进行了一系列建筑配置。我们的方法成功地适应了(并定期优于21.2%)最佳固定的最先进的方法,同时保持相同的故障覆盖。

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