Impact analysis of performance faults in modern microprocessors

Naghmeh Karimi, M. Maniatakos, C. Tirumurti, A. Jas, Y. Makris
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引用次数: 8

Abstract

Towards improving performance, modern microprocessors incorporate a variety of architectural features, such as branch prediction and speculative execution, which are not critical to the correctness of their operation. While faults in the corresponding hardware may not necessarily affect functional correctness, they may, nevertheless, adversely impact performance. In this paper, we investigate quantitatively the performance impact of such faults using a superscalar, dynamically-scheduled, out-of-order, Alpha-like microprocessor, on which we execute SPEC2000 integer benchmarks. We provide extensive fault simulation-based experimental results and we discuss how this information may guide the inclusion of additional hardware for performance loss recovery and yield enhancement.
现代微处理器性能故障的影响分析
为了提高性能,现代微处理器结合了各种体系结构特征,例如分支预测和推测执行,这些对其操作的正确性并不重要。虽然相应硬件中的故障不一定会影响功能的正确性,但它们可能会对性能产生不利影响。在本文中,我们使用一个超标量的、动态调度的、乱序的、类似alpha的微处理器,在其上执行SPEC2000整数基准测试,定量地研究了这些故障对性能的影响。我们提供了广泛的基于故障模拟的实验结果,并讨论了这些信息如何指导包含额外的硬件以恢复性能损失和提高产量。
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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