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OpenTimer v2: A New Parallel Incremental Timing Analysis Engine

机译:Opentimer v2:新的并行增量定时分析引擎

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Since the first release in 2015, OpenTimer v1 has been used in many industrial and academic projects for analyzing the timing of custom designs. After four-year research and developments, we have announced OpenTimer v2-a major release that efficiently supports: 1) a new task-based parallel incremental timing analysis engine to break through the performance bottleneck of existing loop-based methods; 2) a new application programming interface (API) concept to exploit high degrees of parallelisms; and 3) an enhanced support for industry-standard design formats to improve user experience. Compared with OpenTimer v1, we rearchitect v2 with a modern C++ programming language and advanced parallel computing techniques to largely improve the tool performance and usability. For a particular example, OpenTimer v2 achieved up to 5.33x speedup over v1 in incremental timing, and scaled higher with increasing cores. Our contributions include both technical innovations and engineering knowledge that are open and accessible to promote timing research in the community.
机译:自2015年首次发布以来,Opentimer V1已被用于许多工业和学术项目,用于分析定制设计的时机。经过四年的研究和发展,我们已经宣布了有效支持的Opentimer V2-A的主要版本:1)基于新的基于任务的并行增量定时分析引擎,可以破坏现有的基于环路的方法的性能瓶颈; 2)一种新的应用程序编程接口(API)概念,用于利用高度的并行度; 3)增强了对行业标准设计格式的支持,以提高用户体验。与OpenTimer V1相比,我们使用现代C ++编程语言和高级并行计算技术进行了探索,以大大提高工具性能和可用性。对于特定示例,Opentimer V2在增量定时的V1中实现了高达5.33倍的加速,并随着核心的增加而缩放。我们的贡献包括技术创新和工程知识,可开放和可访问,以促进社区中的时间研究。

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