HercuLeS高级合成工具中的源和ir级优化

N. Kavvadias, K. Masselos
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引用次数: 4

摘要

HercuLeS是一个可扩展的高级综合环境,用于自动将算法映射到硬件。它克服了已知工作的局限性:不充分的表示、维护困难、代码模板的必要性、缺乏使用范例和对供应商的依赖性。重点强调的方面包括自动IP集成,特别是源和中间层的优化转换。在这种情况下,我们提出了循环和if转换优化的转换模式。此外,我们通过提出适合的方案来关注常数乘法和除法,以便在用户应用程序中直接解耦利用它们。结果表明,循环优化在循环性能方面提供了高达32%的好处,而if转换提供了6.5%的平均改进。通过应用算法优化,实现了比顺序实现3.3-5.9倍的加速。这也表明,与最先进的商业工具相比,HercuLeS具有很强的竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Source and IR-level optimisations in the HercuLeS high-level synthesis tool
HercuLeS is an extensible high-level synthesis environment for automatically mapping algorithms to hardware. It overcomes limitations of known work: insufficient representations, maintenance difficulties, necessity of code templates, lack of usage paradigms and vendor-dependence. Aspects that are highlighted include automatic IP integration and especially source- and intermediate-level optimising transformations. In this context, we present transformational patterns for loop and if-conversion optimisations. Further, we focus on constant multiplication and division by proposing a suitable scheme for their straightforward and decoupled utilisation in user applications. It is shown that loop optimisations provide benefits of up to 32% in cycle performance, while if-conversion delivers an average improvement of 6.5%. By applying arithmetic optimisations, a 3.3-5.9× speedup over sequential implementations is achieved. It is also shown that HercuLeS is highly competitive to state-of-the-art commercial tools.
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