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Exploring instruction-fetch bandwidth requirement in wide-issue superscalar processors

机译:探索宽问题超标量处理器中的指令获取带宽需求

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The effective performance of wide-issue superscalar processors depends on many parameters, such as branch prediction accuracy, available instruction-level parallelism, and instruction-fetch bandwidth. This paper explores the relations between some of these parameters, and more particularly, the requirement in instruction-fetch bandwidth. We introduce new enhancements to boost effectively the instruction-fetch bandwidth of conventional fetch engines. However, experiments strongly show that performance improves less for a given instruction-fetch bandwidth gain as the base fetch bandwidth increases. At the level of bandwidth exhibited by the proposed schemes, the performance improvement is small. This clearly brings to light potential relations between the fetch bandwidth and the other parameters. We provide a model to explain this behaviour and quantify some relations. Based on the experimental observation that the available parallelism in an instruction window of size N grows as the square root /spl radic/N, we derive from the model that the instruction fetch bandwidth requirement increases as the square root of the distance between mispredicted branches. We also show that the instruction fetch bandwidth requirement increases linearly with the parallelism available in a fixed-size instruction window.
机译:宽发行超卡处理器的有效性能取决于许多参数,例如分支预测精度,可用指令级并行性和指令获取带宽。本文探讨了一些这些参数之间的关系,更具体地,是指令获取带宽的要求。我们引入了新的增强功能,以有效提升传统获取引擎的指令获取带宽。然而,实验强烈表明,由于基本获取带宽增加,所针对给定的指令 - 获取带宽增益的性能较少。在所提出的方案展出的带宽水平,性能改善很小。这清楚地带来了获取带宽与其他参数之间的潜在关系。我们提供了一个模型来解释这种行为并量化一些关系。基于实验观察,尺寸N的指令窗口中的可用行行性生长为平方根/ SPL Radic / n,我们从指令获取带宽要求增加的模型随着错误预定分支之间的距离的平方根而增加。我们还表明,指令获取带宽要求随固定尺寸指令窗口中可用的并行方式线性增加。

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