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KAHRISMA: A Novel Hypermorphic Reconfigurable-Instruction-Set Multi-grained-Array Architecture

机译:KAHRISMA:一种新颖的超构可重构指令集多粒度数组体系结构

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Facing the requirements of next generation applications, current approaches of embedded systems design will soon hit the limit where they may no longer perform efficiently. The unpredictable nature and diverse processing behavior of future applications requires to transgress the barrier of tailor-made, application-/domain-specific embedded system designs. As a consequence, next generation architectures for embedded systems have to react much more flexible to unforeseeable run-time scenarios. In this paper we present our innovative processor architecture concept KAHRISMA (KArlsruhe's Hypermorphic Reconfigurable-Instruction-Set Multi-grained-Array). It tightly integrates coarse- and fine-grained run-time reconfigurable fabrics that can incorporate to realize hardware acceleration for computationally complex algorithms. Furthermore, the fabrics can be combined to realize different Instruction Set Architectures that may execute in parallel. With the help of an encrypted H.264 en-/decoding case study we demonstrate that our novel KAHRISMA architecture will deliver the required flexibility to design future-proof embedded systems that are not limited to a certain computational domain.
机译:面对下一代应用程序的需求,当前的嵌入式系统设计方法将很快达到极限,在这种情况下它们可能不再有效地发挥作用。未来应用程序的不可预测的性质和多样的处理行为要求突破量身定制的,针对应用程序/领域的嵌入式系统设计的障碍。结果,用于嵌入式系统的下一代体系结构必须对无法预料的运行时场景做出更加灵活的反应。在本文中,我们介绍了我们创新的处理器体系结构概念KAHRISMA(KArlsruhe的超晶格可重构指令集多粒度阵列)。它紧密集成了粗粒度和细粒度的运行时可重配置结构,这些结构可以合并以实现计算复杂算法的硬件加速。此外,可以将结构组合以实现可以并行执行的不同指令集架构。借助加密的H.264编码/解码案例研究,我们证明了我们新颖的KAHRISMA架构将提供所需的灵活性,以设计不限于特定计算领域的面向未来的嵌入式系统。

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