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Manycore simulation for peta-scale system design: Motivation, tools, challenges and prospects

机译:Peta级系统设计的Manycore模拟:动机,工具,挑战和前景

摘要

The architecture design of peta-scale computing systems is complex and presents lots of difficulties to designs, as current tools lack support for relevant features of future scenarios. Novel systems must be designed with great care and tools, such as manycore architecture simulators, must be adapted accordingly. However, current simulation tools are very slow, often specific-purpose-oriented, suffer from various issues and are rarely able to simulate thousands of cores. The emergence of peta-scale systems and the upcoming manycore era brings nevertheless new challenges to computing systems and architectures, adding further difficulties and requirements on the development of the corresponding simulators. Furthermore, the design of architecture simulators for manycore systems involve methods and techniques from various interdisciplinary research areas, which in turn brings more challenges in different aspects. As system complexity grows, the growth of the simulation capacity is being outpaced (reaching the so called simulation wall). In this paper, we present the challenges for simulating future large scale manycore environments, and we investigate the adequacy of current modeling and simulation tools, methodologies and techniques. The aim of this work is to highlight how current approaches can best deal with the identified problems, smoothing the challenges of research in future peta-scale systems. (C) 2017 Elsevier B.V. All rights reserved.
机译:由于当前的工具缺乏对未来方案相关功能的支持,因此Peta级计算系统的体系结构设计非常复杂,并且给设计带来了许多困难。新系统的设计必须格外小心,并且必须相应地修改许多核心架构仿真器之类的工具。但是,当前的仿真工具非常慢,通常是针对特定目的的,遭受各种问题的困扰,并且很少能够仿真数千个内核。 Peta级系统的出现和即将到来的Manycore时代,给计算系统和体系结构带来了新的挑战,给相应的模拟器的开发增加了更多的困难和要求。此外,用于许多核心系统的体系结构仿真器的设计涉及跨学科研究领域的方法和技术,这又在不同方面带来了更多挑战。随着系统复杂性的增长,仿真能力的增长已经超过了(达到所谓的仿真墙)。在本文中,我们提出了模拟未来大规模多核环境的挑战,并研究了当前建模和模拟工具,方法论和技术的适当性。这项工作的目的是强调当前方法如何最好地解决已发现的问题,从而缓解未来Peta级系统研究的挑战。 (C)2017 Elsevier B.V.保留所有权利。

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