Systematic RISC-V based Firmware Design⋆

V. Herdt, Daniel Große, R. Drechsler, Christoph Gerum, Alexander Jung, Joscha Benz, O. Bringmann, Michael Schwarz, D. Stoffel, W. Kunz
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引用次数: 2

Abstract

Small embedded devices are highly specialized plat forms that integrate several peripherals alongside the CPU core. Embedded devices extensively rely on Firmware (FW) to control and access the peripherals as well as other important functionality. This poses challenges to FW development since the FW must be adapted to each specific device configuration. Besides ensuring functional correctness to avoid errors and security vulnerabilities, an important design factor today is the control and adaptivity of a system with respect to non-functional properties, like for example application-specific timing budgets. Furthermore, optimizations of the FW and HW/SW interface play a very important role due to the tight resource constraints of small embedded devices. To satisfy these requirements new FW design methods are needed targeting FW generation, FW verification and FW optimization.This paper presents such new methods to enable an early, efficient and systematic FW design taking the underlying HW architecture into account. We use the RISC-V Instruction Set Architecture (ISA) as a case study to demonstrate our methods.
基于RISC-V的系统固件设计
小型嵌入式设备是高度专业化的平台,它在CPU核心旁边集成了几个外围设备。嵌入式设备广泛依赖固件(FW)来控制和访问外设以及其他重要功能。这给FW的开发带来了挑战,因为FW需要根据不同的设备配置进行调整。除了确保功能正确性以避免错误和安全漏洞外,当今一个重要的设计因素是系统对非功能属性的控制和适应性,例如特定于应用程序的时间预算。此外,由于小型嵌入式设备的资源限制,FW和硬件/软件接口的优化起着非常重要的作用。为了满足这些需求,需要新的FW设计方法,包括FW生成、FW验证和FW优化。本文提出了这些新方法,以便在考虑底层硬件架构的情况下,尽早、高效、系统地设计FW。我们使用RISC-V指令集架构(ISA)作为案例研究来演示我们的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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